* ltconfig, ltmain.sh, ltcf-cxx.sh: Upgraded to libtool 1.4a
[deliverable/binutils-gdb.git] / opcodes / m32r-opinst.c
CommitLineData
252b5132
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1/* Semantic operand instances for m32r.
2
3THIS FILE IS MACHINE GENERATED WITH CGEN.
4
27fca2d8 5Copyright 1996, 1997, 1998, 1999, 2000, 2001 Free Software Foundation, Inc.
252b5132
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6
7This file is part of the GNU Binutils and/or GDB, the GNU debugger.
8
9This program is free software; you can redistribute it and/or modify
10it under the terms of the GNU General Public License as published by
11the Free Software Foundation; either version 2, or (at your option)
12any later version.
13
14This program is distributed in the hope that it will be useful,
15but WITHOUT ANY WARRANTY; without even the implied warranty of
16MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17GNU General Public License for more details.
18
19You should have received a copy of the GNU General Public License along
20with this program; if not, write to the Free Software Foundation, Inc.,
2159 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
22
23*/
24
25#include "sysdep.h"
26#include "ansidecl.h"
27#include "bfd.h"
28#include "symcat.h"
29#include "m32r-desc.h"
30#include "m32r-opc.h"
31
32/* Operand references. */
33
b3466c39
DB
34#if defined (__STDC__) || defined (ALMOST_STDC) || defined (HAVE_STRINGIZE)
35#define OP_ENT(op) M32R_OPERAND_##op
36#else
37#define OP_ENT(op) M32R_OPERAND_/**/op
38#endif
252b5132
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39#define INPUT CGEN_OPINST_INPUT
40#define OUTPUT CGEN_OPINST_OUTPUT
41#define END CGEN_OPINST_END
42#define COND_REF CGEN_OPINST_COND_REF
252b5132 43
eb1b03df 44static const CGEN_OPINST sfmt_empty_ops[] = {
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45 { END }
46};
47
eb1b03df 48static const CGEN_OPINST sfmt_add_ops[] = {
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49 { INPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
50 { INPUT, "sr", HW_H_GR, CGEN_MODE_SI, OP_ENT (SR), 0, 0 },
51 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
52 { END }
53};
54
eb1b03df 55static const CGEN_OPINST sfmt_add3_ops[] = {
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56 { INPUT, "slo16", HW_H_SLO16, CGEN_MODE_INT, OP_ENT (SLO16), 0, 0 },
57 { INPUT, "sr", HW_H_GR, CGEN_MODE_SI, OP_ENT (SR), 0, 0 },
58 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
59 { END }
60};
61
eb1b03df 62static const CGEN_OPINST sfmt_and3_ops[] = {
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63 { INPUT, "sr", HW_H_GR, CGEN_MODE_SI, OP_ENT (SR), 0, 0 },
64 { INPUT, "uimm16", HW_H_UINT, CGEN_MODE_UINT, OP_ENT (UIMM16), 0, 0 },
65 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
66 { END }
67};
68
eb1b03df 69static const CGEN_OPINST sfmt_or3_ops[] = {
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70 { INPUT, "sr", HW_H_GR, CGEN_MODE_SI, OP_ENT (SR), 0, 0 },
71 { INPUT, "ulo16", HW_H_ULO16, CGEN_MODE_UINT, OP_ENT (ULO16), 0, 0 },
72 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
73 { END }
74};
75
eb1b03df 76static const CGEN_OPINST sfmt_addi_ops[] = {
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RH
77 { INPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
78 { INPUT, "simm8", HW_H_SINT, CGEN_MODE_INT, OP_ENT (SIMM8), 0, 0 },
79 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
80 { END }
81};
82
eb1b03df 83static const CGEN_OPINST sfmt_addv_ops[] = {
252b5132
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84 { INPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
85 { INPUT, "sr", HW_H_GR, CGEN_MODE_SI, OP_ENT (SR), 0, 0 },
86 { OUTPUT, "condbit", HW_H_COND, CGEN_MODE_BI, 0, 0, 0 },
87 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
88 { END }
89};
90
eb1b03df 91static const CGEN_OPINST sfmt_addv3_ops[] = {
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92 { INPUT, "simm16", HW_H_SINT, CGEN_MODE_INT, OP_ENT (SIMM16), 0, 0 },
93 { INPUT, "sr", HW_H_GR, CGEN_MODE_SI, OP_ENT (SR), 0, 0 },
94 { OUTPUT, "condbit", HW_H_COND, CGEN_MODE_BI, 0, 0, 0 },
95 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
96 { END }
97};
98
eb1b03df 99static const CGEN_OPINST sfmt_addx_ops[] = {
252b5132
RH
100 { INPUT, "condbit", HW_H_COND, CGEN_MODE_BI, 0, 0, 0 },
101 { INPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
102 { INPUT, "sr", HW_H_GR, CGEN_MODE_SI, OP_ENT (SR), 0, 0 },
103 { OUTPUT, "condbit", HW_H_COND, CGEN_MODE_BI, 0, 0, 0 },
104 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
105 { END }
106};
107
eb1b03df 108static const CGEN_OPINST sfmt_bc8_ops[] = {
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109 { INPUT, "condbit", HW_H_COND, CGEN_MODE_BI, 0, 0, 0 },
110 { INPUT, "disp8", HW_H_IADDR, CGEN_MODE_USI, OP_ENT (DISP8), 0, COND_REF },
111 { OUTPUT, "pc", HW_H_PC, CGEN_MODE_USI, 0, 0, COND_REF },
112 { END }
113};
114
eb1b03df 115static const CGEN_OPINST sfmt_bc24_ops[] = {
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116 { INPUT, "condbit", HW_H_COND, CGEN_MODE_BI, 0, 0, 0 },
117 { INPUT, "disp24", HW_H_IADDR, CGEN_MODE_USI, OP_ENT (DISP24), 0, COND_REF },
118 { OUTPUT, "pc", HW_H_PC, CGEN_MODE_USI, 0, 0, COND_REF },
119 { END }
120};
121
eb1b03df 122static const CGEN_OPINST sfmt_beq_ops[] = {
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123 { INPUT, "disp16", HW_H_IADDR, CGEN_MODE_USI, OP_ENT (DISP16), 0, COND_REF },
124 { INPUT, "src1", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC1), 0, 0 },
125 { INPUT, "src2", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC2), 0, 0 },
126 { OUTPUT, "pc", HW_H_PC, CGEN_MODE_USI, 0, 0, COND_REF },
127 { END }
128};
129
eb1b03df 130static const CGEN_OPINST sfmt_beqz_ops[] = {
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131 { INPUT, "disp16", HW_H_IADDR, CGEN_MODE_USI, OP_ENT (DISP16), 0, COND_REF },
132 { INPUT, "src2", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC2), 0, 0 },
133 { OUTPUT, "pc", HW_H_PC, CGEN_MODE_USI, 0, 0, COND_REF },
134 { END }
135};
136
eb1b03df 137static const CGEN_OPINST sfmt_bl8_ops[] = {
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138 { INPUT, "disp8", HW_H_IADDR, CGEN_MODE_USI, OP_ENT (DISP8), 0, 0 },
139 { INPUT, "pc", HW_H_PC, CGEN_MODE_USI, 0, 0, 0 },
140 { OUTPUT, "h_gr_14", HW_H_GR, CGEN_MODE_SI, 0, 14, 0 },
141 { OUTPUT, "pc", HW_H_PC, CGEN_MODE_USI, 0, 0, 0 },
142 { END }
143};
144
eb1b03df 145static const CGEN_OPINST sfmt_bl24_ops[] = {
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RH
146 { INPUT, "disp24", HW_H_IADDR, CGEN_MODE_USI, OP_ENT (DISP24), 0, 0 },
147 { INPUT, "pc", HW_H_PC, CGEN_MODE_USI, 0, 0, 0 },
148 { OUTPUT, "h_gr_14", HW_H_GR, CGEN_MODE_SI, 0, 14, 0 },
149 { OUTPUT, "pc", HW_H_PC, CGEN_MODE_USI, 0, 0, 0 },
150 { END }
151};
152
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153static const CGEN_OPINST sfmt_bcl8_ops[] = {
154 { INPUT, "condbit", HW_H_COND, CGEN_MODE_BI, 0, 0, 0 },
155 { INPUT, "disp8", HW_H_IADDR, CGEN_MODE_USI, OP_ENT (DISP8), 0, COND_REF },
156 { INPUT, "pc", HW_H_PC, CGEN_MODE_USI, 0, 0, COND_REF },
157 { OUTPUT, "h_gr_14", HW_H_GR, CGEN_MODE_SI, 0, 14, COND_REF },
158 { OUTPUT, "pc", HW_H_PC, CGEN_MODE_USI, 0, 0, COND_REF },
159 { END }
160};
161
162static const CGEN_OPINST sfmt_bcl24_ops[] = {
163 { INPUT, "condbit", HW_H_COND, CGEN_MODE_BI, 0, 0, 0 },
164 { INPUT, "disp24", HW_H_IADDR, CGEN_MODE_USI, OP_ENT (DISP24), 0, COND_REF },
165 { INPUT, "pc", HW_H_PC, CGEN_MODE_USI, 0, 0, COND_REF },
166 { OUTPUT, "h_gr_14", HW_H_GR, CGEN_MODE_SI, 0, 14, COND_REF },
167 { OUTPUT, "pc", HW_H_PC, CGEN_MODE_USI, 0, 0, COND_REF },
168 { END }
169};
170
eb1b03df 171static const CGEN_OPINST sfmt_bra8_ops[] = {
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172 { INPUT, "disp8", HW_H_IADDR, CGEN_MODE_USI, OP_ENT (DISP8), 0, 0 },
173 { OUTPUT, "pc", HW_H_PC, CGEN_MODE_USI, 0, 0, 0 },
174 { END }
175};
176
eb1b03df 177static const CGEN_OPINST sfmt_bra24_ops[] = {
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178 { INPUT, "disp24", HW_H_IADDR, CGEN_MODE_USI, OP_ENT (DISP24), 0, 0 },
179 { OUTPUT, "pc", HW_H_PC, CGEN_MODE_USI, 0, 0, 0 },
180 { END }
181};
182
eb1b03df 183static const CGEN_OPINST sfmt_cmp_ops[] = {
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184 { INPUT, "src1", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC1), 0, 0 },
185 { INPUT, "src2", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC2), 0, 0 },
186 { OUTPUT, "condbit", HW_H_COND, CGEN_MODE_BI, 0, 0, 0 },
187 { END }
188};
189
eb1b03df 190static const CGEN_OPINST sfmt_cmpi_ops[] = {
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191 { INPUT, "simm16", HW_H_SINT, CGEN_MODE_INT, OP_ENT (SIMM16), 0, 0 },
192 { INPUT, "src2", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC2), 0, 0 },
193 { OUTPUT, "condbit", HW_H_COND, CGEN_MODE_BI, 0, 0, 0 },
194 { END }
195};
196
1fa60b5d
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197static const CGEN_OPINST sfmt_cmpz_ops[] = {
198 { INPUT, "src2", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC2), 0, 0 },
199 { OUTPUT, "condbit", HW_H_COND, CGEN_MODE_BI, 0, 0, 0 },
200 { END }
201};
202
eb1b03df 203static const CGEN_OPINST sfmt_div_ops[] = {
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204 { INPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, COND_REF },
205 { INPUT, "sr", HW_H_GR, CGEN_MODE_SI, OP_ENT (SR), 0, 0 },
206 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, COND_REF },
207 { END }
208};
209
1fa60b5d
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210static const CGEN_OPINST sfmt_jc_ops[] = {
211 { INPUT, "condbit", HW_H_COND, CGEN_MODE_BI, 0, 0, 0 },
212 { INPUT, "sr", HW_H_GR, CGEN_MODE_SI, OP_ENT (SR), 0, COND_REF },
213 { OUTPUT, "pc", HW_H_PC, CGEN_MODE_USI, 0, 0, COND_REF },
214 { END }
215};
216
eb1b03df 217static const CGEN_OPINST sfmt_jl_ops[] = {
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218 { INPUT, "pc", HW_H_PC, CGEN_MODE_USI, 0, 0, 0 },
219 { INPUT, "sr", HW_H_GR, CGEN_MODE_SI, OP_ENT (SR), 0, 0 },
220 { OUTPUT, "h_gr_14", HW_H_GR, CGEN_MODE_SI, 0, 14, 0 },
221 { OUTPUT, "pc", HW_H_PC, CGEN_MODE_USI, 0, 0, 0 },
222 { END }
223};
224
eb1b03df 225static const CGEN_OPINST sfmt_jmp_ops[] = {
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226 { INPUT, "sr", HW_H_GR, CGEN_MODE_SI, OP_ENT (SR), 0, 0 },
227 { OUTPUT, "pc", HW_H_PC, CGEN_MODE_USI, 0, 0, 0 },
228 { END }
229};
230
eb1b03df 231static const CGEN_OPINST sfmt_ld_ops[] = {
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232 { INPUT, "h_memory_sr", HW_H_MEMORY, CGEN_MODE_SI, 0, 0, 0 },
233 { INPUT, "sr", HW_H_GR, CGEN_MODE_USI, OP_ENT (SR), 0, 0 },
234 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
235 { END }
236};
237
eb1b03df
DE
238static const CGEN_OPINST sfmt_ld_d_ops[] = {
239 { INPUT, "h_memory_add__DFLT_sr_slo16", HW_H_MEMORY, CGEN_MODE_SI, 0, 0, 0 },
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240 { INPUT, "slo16", HW_H_SLO16, CGEN_MODE_INT, OP_ENT (SLO16), 0, 0 },
241 { INPUT, "sr", HW_H_GR, CGEN_MODE_SI, OP_ENT (SR), 0, 0 },
242 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
243 { END }
244};
245
eb1b03df 246static const CGEN_OPINST sfmt_ld_plus_ops[] = {
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247 { INPUT, "h_memory_sr", HW_H_MEMORY, CGEN_MODE_SI, 0, 0, 0 },
248 { INPUT, "sr", HW_H_GR, CGEN_MODE_USI, OP_ENT (SR), 0, 0 },
249 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
250 { OUTPUT, "sr", HW_H_GR, CGEN_MODE_SI, OP_ENT (SR), 0, 0 },
251 { END }
252};
253
eb1b03df 254static const CGEN_OPINST sfmt_ld24_ops[] = {
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255 { INPUT, "uimm24", HW_H_ADDR, CGEN_MODE_USI, OP_ENT (UIMM24), 0, 0 },
256 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
257 { END }
258};
259
eb1b03df 260static const CGEN_OPINST sfmt_ldi8_ops[] = {
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261 { INPUT, "simm8", HW_H_SINT, CGEN_MODE_INT, OP_ENT (SIMM8), 0, 0 },
262 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
263 { END }
264};
265
eb1b03df 266static const CGEN_OPINST sfmt_ldi16_ops[] = {
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267 { INPUT, "slo16", HW_H_SLO16, CGEN_MODE_INT, OP_ENT (SLO16), 0, 0 },
268 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
269 { END }
270};
271
eb1b03df 272static const CGEN_OPINST sfmt_lock_ops[] = {
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273 { INPUT, "h_memory_sr", HW_H_MEMORY, CGEN_MODE_SI, 0, 0, 0 },
274 { INPUT, "sr", HW_H_GR, CGEN_MODE_USI, OP_ENT (SR), 0, 0 },
275 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
276 { OUTPUT, "h_lock", HW_H_LOCK, CGEN_MODE_BI, 0, 0, 0 },
277 { END }
278};
279
eb1b03df 280static const CGEN_OPINST sfmt_machi_ops[] = {
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281 { INPUT, "accum", HW_H_ACCUM, CGEN_MODE_DI, 0, 0, 0 },
282 { INPUT, "src1", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC1), 0, 0 },
283 { INPUT, "src2", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC2), 0, 0 },
284 { OUTPUT, "accum", HW_H_ACCUM, CGEN_MODE_DI, 0, 0, 0 },
285 { END }
286};
287
1fa60b5d
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288static const CGEN_OPINST sfmt_machi_a_ops[] = {
289 { INPUT, "acc", HW_H_ACCUMS, CGEN_MODE_DI, OP_ENT (ACC), 0, 0 },
290 { INPUT, "src1", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC1), 0, 0 },
291 { INPUT, "src2", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC2), 0, 0 },
292 { OUTPUT, "acc", HW_H_ACCUMS, CGEN_MODE_DI, OP_ENT (ACC), 0, 0 },
293 { END }
294};
295
eb1b03df 296static const CGEN_OPINST sfmt_mulhi_ops[] = {
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297 { INPUT, "src1", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC1), 0, 0 },
298 { INPUT, "src2", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC2), 0, 0 },
299 { OUTPUT, "accum", HW_H_ACCUM, CGEN_MODE_DI, 0, 0, 0 },
300 { END }
301};
302
1fa60b5d
DE
303static const CGEN_OPINST sfmt_mulhi_a_ops[] = {
304 { INPUT, "src1", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC1), 0, 0 },
305 { INPUT, "src2", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC2), 0, 0 },
306 { OUTPUT, "acc", HW_H_ACCUMS, CGEN_MODE_DI, OP_ENT (ACC), 0, 0 },
307 { END }
308};
309
eb1b03df 310static const CGEN_OPINST sfmt_mv_ops[] = {
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RH
311 { INPUT, "sr", HW_H_GR, CGEN_MODE_SI, OP_ENT (SR), 0, 0 },
312 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
313 { END }
314};
315
eb1b03df 316static const CGEN_OPINST sfmt_mvfachi_ops[] = {
252b5132
RH
317 { INPUT, "accum", HW_H_ACCUM, CGEN_MODE_DI, 0, 0, 0 },
318 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
319 { END }
320};
321
1fa60b5d
DE
322static const CGEN_OPINST sfmt_mvfachi_a_ops[] = {
323 { INPUT, "accs", HW_H_ACCUMS, CGEN_MODE_DI, OP_ENT (ACCS), 0, 0 },
324 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
325 { END }
326};
327
eb1b03df 328static const CGEN_OPINST sfmt_mvfc_ops[] = {
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RH
329 { INPUT, "scr", HW_H_CR, CGEN_MODE_USI, OP_ENT (SCR), 0, 0 },
330 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
331 { END }
332};
333
eb1b03df 334static const CGEN_OPINST sfmt_mvtachi_ops[] = {
252b5132
RH
335 { INPUT, "accum", HW_H_ACCUM, CGEN_MODE_DI, 0, 0, 0 },
336 { INPUT, "src1", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC1), 0, 0 },
337 { OUTPUT, "accum", HW_H_ACCUM, CGEN_MODE_DI, 0, 0, 0 },
338 { END }
339};
340
1fa60b5d
DE
341static const CGEN_OPINST sfmt_mvtachi_a_ops[] = {
342 { INPUT, "accs", HW_H_ACCUMS, CGEN_MODE_DI, OP_ENT (ACCS), 0, 0 },
343 { INPUT, "src1", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC1), 0, 0 },
344 { OUTPUT, "accs", HW_H_ACCUMS, CGEN_MODE_DI, OP_ENT (ACCS), 0, 0 },
345 { END }
346};
347
eb1b03df 348static const CGEN_OPINST sfmt_mvtc_ops[] = {
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RH
349 { INPUT, "sr", HW_H_GR, CGEN_MODE_SI, OP_ENT (SR), 0, 0 },
350 { OUTPUT, "dcr", HW_H_CR, CGEN_MODE_USI, OP_ENT (DCR), 0, 0 },
351 { END }
352};
353
eb1b03df 354static const CGEN_OPINST sfmt_nop_ops[] = {
252b5132
RH
355 { END }
356};
357
eb1b03df 358static const CGEN_OPINST sfmt_rac_ops[] = {
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RH
359 { INPUT, "accum", HW_H_ACCUM, CGEN_MODE_DI, 0, 0, 0 },
360 { OUTPUT, "accum", HW_H_ACCUM, CGEN_MODE_DI, 0, 0, 0 },
361 { END }
362};
363
1fa60b5d
DE
364static const CGEN_OPINST sfmt_rac_dsi_ops[] = {
365 { INPUT, "accs", HW_H_ACCUMS, CGEN_MODE_DI, OP_ENT (ACCS), 0, 0 },
366 { INPUT, "imm1", HW_H_UINT, CGEN_MODE_INT, OP_ENT (IMM1), 0, 0 },
367 { OUTPUT, "accd", HW_H_ACCUMS, CGEN_MODE_DI, OP_ENT (ACCD), 0, 0 },
368 { END }
369};
370
eb1b03df 371static const CGEN_OPINST sfmt_rte_ops[] = {
252b5132
RH
372 { INPUT, "h_bbpsw", HW_H_BBPSW, CGEN_MODE_UQI, 0, 0, 0 },
373 { INPUT, "h_bpsw", HW_H_BPSW, CGEN_MODE_UQI, 0, 0, 0 },
374 { INPUT, "h_cr_14", HW_H_CR, CGEN_MODE_USI, 0, 14, 0 },
375 { INPUT, "h_cr_6", HW_H_CR, CGEN_MODE_USI, 0, 6, 0 },
376 { OUTPUT, "h_bpsw", HW_H_BPSW, CGEN_MODE_UQI, 0, 0, 0 },
377 { OUTPUT, "h_cr_6", HW_H_CR, CGEN_MODE_USI, 0, 6, 0 },
378 { OUTPUT, "h_psw", HW_H_PSW, CGEN_MODE_UQI, 0, 0, 0 },
379 { OUTPUT, "pc", HW_H_PC, CGEN_MODE_USI, 0, 0, 0 },
380 { END }
381};
382
eb1b03df 383static const CGEN_OPINST sfmt_seth_ops[] = {
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RH
384 { INPUT, "hi16", HW_H_HI16, CGEN_MODE_SI, OP_ENT (HI16), 0, 0 },
385 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
386 { END }
387};
388
eb1b03df 389static const CGEN_OPINST sfmt_sll3_ops[] = {
252b5132
RH
390 { INPUT, "simm16", HW_H_SINT, CGEN_MODE_SI, OP_ENT (SIMM16), 0, 0 },
391 { INPUT, "sr", HW_H_GR, CGEN_MODE_SI, OP_ENT (SR), 0, 0 },
392 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
393 { END }
394};
395
eb1b03df 396static const CGEN_OPINST sfmt_slli_ops[] = {
252b5132
RH
397 { INPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
398 { INPUT, "uimm5", HW_H_UINT, CGEN_MODE_INT, OP_ENT (UIMM5), 0, 0 },
399 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
400 { END }
401};
402
eb1b03df 403static const CGEN_OPINST sfmt_st_ops[] = {
252b5132
RH
404 { INPUT, "src1", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC1), 0, 0 },
405 { INPUT, "src2", HW_H_GR, CGEN_MODE_USI, OP_ENT (SRC2), 0, 0 },
406 { OUTPUT, "h_memory_src2", HW_H_MEMORY, CGEN_MODE_SI, 0, 0, 0 },
407 { END }
408};
409
eb1b03df 410static const CGEN_OPINST sfmt_st_d_ops[] = {
252b5132
RH
411 { INPUT, "slo16", HW_H_SLO16, CGEN_MODE_INT, OP_ENT (SLO16), 0, 0 },
412 { INPUT, "src1", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC1), 0, 0 },
413 { INPUT, "src2", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC2), 0, 0 },
eb1b03df 414 { OUTPUT, "h_memory_add__DFLT_src2_slo16", HW_H_MEMORY, CGEN_MODE_SI, 0, 0, 0 },
252b5132
RH
415 { END }
416};
417
eb1b03df 418static const CGEN_OPINST sfmt_stb_ops[] = {
252b5132
RH
419 { INPUT, "src1", HW_H_GR, CGEN_MODE_QI, OP_ENT (SRC1), 0, 0 },
420 { INPUT, "src2", HW_H_GR, CGEN_MODE_USI, OP_ENT (SRC2), 0, 0 },
421 { OUTPUT, "h_memory_src2", HW_H_MEMORY, CGEN_MODE_QI, 0, 0, 0 },
422 { END }
423};
424
eb1b03df 425static const CGEN_OPINST sfmt_stb_d_ops[] = {
252b5132
RH
426 { INPUT, "slo16", HW_H_SLO16, CGEN_MODE_INT, OP_ENT (SLO16), 0, 0 },
427 { INPUT, "src1", HW_H_GR, CGEN_MODE_QI, OP_ENT (SRC1), 0, 0 },
428 { INPUT, "src2", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC2), 0, 0 },
eb1b03df 429 { OUTPUT, "h_memory_add__DFLT_src2_slo16", HW_H_MEMORY, CGEN_MODE_QI, 0, 0, 0 },
252b5132
RH
430 { END }
431};
432
eb1b03df 433static const CGEN_OPINST sfmt_sth_ops[] = {
252b5132
RH
434 { INPUT, "src1", HW_H_GR, CGEN_MODE_HI, OP_ENT (SRC1), 0, 0 },
435 { INPUT, "src2", HW_H_GR, CGEN_MODE_USI, OP_ENT (SRC2), 0, 0 },
436 { OUTPUT, "h_memory_src2", HW_H_MEMORY, CGEN_MODE_HI, 0, 0, 0 },
437 { END }
438};
439
eb1b03df 440static const CGEN_OPINST sfmt_sth_d_ops[] = {
252b5132
RH
441 { INPUT, "slo16", HW_H_SLO16, CGEN_MODE_INT, OP_ENT (SLO16), 0, 0 },
442 { INPUT, "src1", HW_H_GR, CGEN_MODE_HI, OP_ENT (SRC1), 0, 0 },
443 { INPUT, "src2", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC2), 0, 0 },
eb1b03df 444 { OUTPUT, "h_memory_add__DFLT_src2_slo16", HW_H_MEMORY, CGEN_MODE_HI, 0, 0, 0 },
252b5132
RH
445 { END }
446};
447
eb1b03df 448static const CGEN_OPINST sfmt_st_plus_ops[] = {
252b5132
RH
449 { INPUT, "src1", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC1), 0, 0 },
450 { INPUT, "src2", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC2), 0, 0 },
451 { OUTPUT, "h_memory_new_src2", HW_H_MEMORY, CGEN_MODE_SI, 0, 0, 0 },
452 { OUTPUT, "src2", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC2), 0, 0 },
453 { END }
454};
455
eb1b03df 456static const CGEN_OPINST sfmt_trap_ops[] = {
252b5132
RH
457 { INPUT, "h_bpsw", HW_H_BPSW, CGEN_MODE_UQI, 0, 0, 0 },
458 { INPUT, "h_cr_6", HW_H_CR, CGEN_MODE_USI, 0, 6, 0 },
459 { INPUT, "h_psw", HW_H_PSW, CGEN_MODE_UQI, 0, 0, 0 },
460 { INPUT, "pc", HW_H_PC, CGEN_MODE_USI, 0, 0, 0 },
461 { INPUT, "uimm4", HW_H_UINT, CGEN_MODE_UINT, OP_ENT (UIMM4), 0, 0 },
462 { OUTPUT, "h_bbpsw", HW_H_BBPSW, CGEN_MODE_UQI, 0, 0, 0 },
463 { OUTPUT, "h_bpsw", HW_H_BPSW, CGEN_MODE_UQI, 0, 0, 0 },
464 { OUTPUT, "h_cr_14", HW_H_CR, CGEN_MODE_USI, 0, 14, 0 },
465 { OUTPUT, "h_cr_6", HW_H_CR, CGEN_MODE_USI, 0, 6, 0 },
466 { OUTPUT, "h_psw", HW_H_PSW, CGEN_MODE_UQI, 0, 0, 0 },
467 { OUTPUT, "pc", HW_H_PC, CGEN_MODE_SI, 0, 0, 0 },
468 { END }
469};
470
eb1b03df 471static const CGEN_OPINST sfmt_unlock_ops[] = {
252b5132
RH
472 { INPUT, "h_lock", HW_H_LOCK, CGEN_MODE_BI, 0, 0, 0 },
473 { INPUT, "src1", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC1), 0, COND_REF },
474 { INPUT, "src2", HW_H_GR, CGEN_MODE_USI, OP_ENT (SRC2), 0, COND_REF },
475 { OUTPUT, "h_lock", HW_H_LOCK, CGEN_MODE_BI, 0, 0, 0 },
476 { OUTPUT, "h_memory_src2", HW_H_MEMORY, CGEN_MODE_SI, 0, 0, COND_REF },
477 { END }
478};
479
1fa60b5d
DE
480static const CGEN_OPINST sfmt_satb_ops[] = {
481 { INPUT, "sr", HW_H_GR, CGEN_MODE_SI, OP_ENT (SR), 0, 0 },
482 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
483 { END }
484};
485
486static const CGEN_OPINST sfmt_sat_ops[] = {
487 { INPUT, "condbit", HW_H_COND, CGEN_MODE_BI, 0, 0, 0 },
488 { INPUT, "sr", HW_H_GR, CGEN_MODE_SI, OP_ENT (SR), 0, COND_REF },
489 { OUTPUT, "dr", HW_H_GR, CGEN_MODE_SI, OP_ENT (DR), 0, 0 },
490 { END }
491};
492
493static const CGEN_OPINST sfmt_sadd_ops[] = {
494 { INPUT, "h_accums_0", HW_H_ACCUMS, CGEN_MODE_DI, 0, 0, 0 },
495 { INPUT, "h_accums_1", HW_H_ACCUMS, CGEN_MODE_DI, 0, 1, 0 },
496 { OUTPUT, "h_accums_0", HW_H_ACCUMS, CGEN_MODE_DI, 0, 0, 0 },
497 { END }
498};
499
500static const CGEN_OPINST sfmt_macwu1_ops[] = {
501 { INPUT, "h_accums_1", HW_H_ACCUMS, CGEN_MODE_DI, 0, 1, 0 },
502 { INPUT, "src1", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC1), 0, 0 },
503 { INPUT, "src2", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC2), 0, 0 },
504 { OUTPUT, "h_accums_1", HW_H_ACCUMS, CGEN_MODE_DI, 0, 1, 0 },
505 { END }
506};
507
508static const CGEN_OPINST sfmt_mulwu1_ops[] = {
509 { INPUT, "src1", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC1), 0, 0 },
510 { INPUT, "src2", HW_H_GR, CGEN_MODE_SI, OP_ENT (SRC2), 0, 0 },
511 { OUTPUT, "h_accums_1", HW_H_ACCUMS, CGEN_MODE_DI, 0, 1, 0 },
512 { END }
513};
514
515static const CGEN_OPINST sfmt_sc_ops[] = {
516 { INPUT, "condbit", HW_H_COND, CGEN_MODE_BI, 0, 0, 0 },
517 { END }
518};
519
b3466c39 520#undef OP_ENT
252b5132
RH
521#undef INPUT
522#undef OUTPUT
523#undef END
524#undef COND_REF
252b5132
RH
525
526/* Operand instance lookup table. */
527
528static const CGEN_OPINST *m32r_cgen_opinst_table[MAX_INSNS] = {
529 0,
eb1b03df
DE
530 & sfmt_add_ops[0],
531 & sfmt_add3_ops[0],
532 & sfmt_add_ops[0],
533 & sfmt_and3_ops[0],
534 & sfmt_add_ops[0],
535 & sfmt_or3_ops[0],
536 & sfmt_add_ops[0],
537 & sfmt_and3_ops[0],
538 & sfmt_addi_ops[0],
539 & sfmt_addv_ops[0],
540 & sfmt_addv3_ops[0],
541 & sfmt_addx_ops[0],
542 & sfmt_bc8_ops[0],
543 & sfmt_bc24_ops[0],
544 & sfmt_beq_ops[0],
545 & sfmt_beqz_ops[0],
546 & sfmt_beqz_ops[0],
547 & sfmt_beqz_ops[0],
548 & sfmt_beqz_ops[0],
549 & sfmt_beqz_ops[0],
550 & sfmt_beqz_ops[0],
551 & sfmt_bl8_ops[0],
552 & sfmt_bl24_ops[0],
1fa60b5d
DE
553 & sfmt_bcl8_ops[0],
554 & sfmt_bcl24_ops[0],
eb1b03df
DE
555 & sfmt_bc8_ops[0],
556 & sfmt_bc24_ops[0],
557 & sfmt_beq_ops[0],
558 & sfmt_bra8_ops[0],
559 & sfmt_bra24_ops[0],
1fa60b5d
DE
560 & sfmt_bcl8_ops[0],
561 & sfmt_bcl24_ops[0],
eb1b03df
DE
562 & sfmt_cmp_ops[0],
563 & sfmt_cmpi_ops[0],
564 & sfmt_cmp_ops[0],
565 & sfmt_cmpi_ops[0],
1fa60b5d
DE
566 & sfmt_cmp_ops[0],
567 & sfmt_cmpz_ops[0],
eb1b03df
DE
568 & sfmt_div_ops[0],
569 & sfmt_div_ops[0],
570 & sfmt_div_ops[0],
571 & sfmt_div_ops[0],
1fa60b5d
DE
572 & sfmt_div_ops[0],
573 & sfmt_jc_ops[0],
574 & sfmt_jc_ops[0],
eb1b03df
DE
575 & sfmt_jl_ops[0],
576 & sfmt_jmp_ops[0],
577 & sfmt_ld_ops[0],
578 & sfmt_ld_d_ops[0],
579 & sfmt_ld_ops[0],
580 & sfmt_ld_d_ops[0],
581 & sfmt_ld_ops[0],
582 & sfmt_ld_d_ops[0],
583 & sfmt_ld_ops[0],
584 & sfmt_ld_d_ops[0],
585 & sfmt_ld_ops[0],
586 & sfmt_ld_d_ops[0],
587 & sfmt_ld_plus_ops[0],
588 & sfmt_ld24_ops[0],
589 & sfmt_ldi8_ops[0],
590 & sfmt_ldi16_ops[0],
591 & sfmt_lock_ops[0],
592 & sfmt_machi_ops[0],
1fa60b5d 593 & sfmt_machi_a_ops[0],
eb1b03df 594 & sfmt_machi_ops[0],
1fa60b5d 595 & sfmt_machi_a_ops[0],
eb1b03df 596 & sfmt_machi_ops[0],
1fa60b5d 597 & sfmt_machi_a_ops[0],
eb1b03df 598 & sfmt_machi_ops[0],
1fa60b5d 599 & sfmt_machi_a_ops[0],
eb1b03df
DE
600 & sfmt_add_ops[0],
601 & sfmt_mulhi_ops[0],
1fa60b5d 602 & sfmt_mulhi_a_ops[0],
eb1b03df 603 & sfmt_mulhi_ops[0],
1fa60b5d 604 & sfmt_mulhi_a_ops[0],
eb1b03df 605 & sfmt_mulhi_ops[0],
1fa60b5d 606 & sfmt_mulhi_a_ops[0],
eb1b03df 607 & sfmt_mulhi_ops[0],
1fa60b5d 608 & sfmt_mulhi_a_ops[0],
eb1b03df
DE
609 & sfmt_mv_ops[0],
610 & sfmt_mvfachi_ops[0],
1fa60b5d 611 & sfmt_mvfachi_a_ops[0],
eb1b03df 612 & sfmt_mvfachi_ops[0],
1fa60b5d 613 & sfmt_mvfachi_a_ops[0],
eb1b03df 614 & sfmt_mvfachi_ops[0],
1fa60b5d 615 & sfmt_mvfachi_a_ops[0],
eb1b03df
DE
616 & sfmt_mvfc_ops[0],
617 & sfmt_mvtachi_ops[0],
1fa60b5d 618 & sfmt_mvtachi_a_ops[0],
eb1b03df 619 & sfmt_mvtachi_ops[0],
1fa60b5d 620 & sfmt_mvtachi_a_ops[0],
eb1b03df
DE
621 & sfmt_mvtc_ops[0],
622 & sfmt_mv_ops[0],
623 & sfmt_nop_ops[0],
624 & sfmt_mv_ops[0],
625 & sfmt_rac_ops[0],
1fa60b5d 626 & sfmt_rac_dsi_ops[0],
eb1b03df 627 & sfmt_rac_ops[0],
1fa60b5d 628 & sfmt_rac_dsi_ops[0],
eb1b03df
DE
629 & sfmt_rte_ops[0],
630 & sfmt_seth_ops[0],
631 & sfmt_add_ops[0],
632 & sfmt_sll3_ops[0],
633 & sfmt_slli_ops[0],
634 & sfmt_add_ops[0],
635 & sfmt_sll3_ops[0],
636 & sfmt_slli_ops[0],
637 & sfmt_add_ops[0],
638 & sfmt_sll3_ops[0],
639 & sfmt_slli_ops[0],
640 & sfmt_st_ops[0],
641 & sfmt_st_d_ops[0],
642 & sfmt_stb_ops[0],
643 & sfmt_stb_d_ops[0],
644 & sfmt_sth_ops[0],
645 & sfmt_sth_d_ops[0],
646 & sfmt_st_plus_ops[0],
647 & sfmt_st_plus_ops[0],
648 & sfmt_add_ops[0],
649 & sfmt_addv_ops[0],
650 & sfmt_addx_ops[0],
651 & sfmt_trap_ops[0],
652 & sfmt_unlock_ops[0],
1fa60b5d
DE
653 & sfmt_satb_ops[0],
654 & sfmt_satb_ops[0],
655 & sfmt_sat_ops[0],
656 & sfmt_cmpz_ops[0],
657 & sfmt_sadd_ops[0],
658 & sfmt_macwu1_ops[0],
659 & sfmt_machi_ops[0],
660 & sfmt_mulwu1_ops[0],
661 & sfmt_macwu1_ops[0],
662 & sfmt_sc_ops[0],
663 & sfmt_sc_ops[0],
252b5132
RH
664};
665
666/* Function to call before using the operand instance table. */
667
668void
669m32r_cgen_init_opinst_table (cd)
670 CGEN_CPU_DESC cd;
671{
672 int i;
673 const CGEN_OPINST **oi = & m32r_cgen_opinst_table[0];
674 CGEN_INSN *insns = (CGEN_INSN *) cd->insn_table.init_entries;
675 for (i = 0; i < MAX_INSNS; ++i)
676 insns[i].opinst = oi[i];
677}
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