mips-dis.c revision 1.1.1.5 1 1.1 christos /* Print mips instructions for GDB, the GNU debugger, or for objdump.
2 1.1.1.5 christos Copyright (C) 1989-2019 Free Software Foundation, Inc.
3 1.1 christos Contributed by Nobuyuki Hikichi(hikichi (at) sra.co.jp).
4 1.1 christos
5 1.1 christos This file is part of the GNU opcodes library.
6 1.1 christos
7 1.1 christos This library is free software; you can redistribute it and/or modify
8 1.1 christos it under the terms of the GNU General Public License as published by
9 1.1 christos the Free Software Foundation; either version 3, or (at your option)
10 1.1 christos any later version.
11 1.1 christos
12 1.1 christos It is distributed in the hope that it will be useful, but WITHOUT
13 1.1 christos ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
14 1.1 christos or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public
15 1.1 christos License for more details.
16 1.1 christos
17 1.1 christos You should have received a copy of the GNU General Public License
18 1.1 christos along with this program; if not, write to the Free Software
19 1.1 christos Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
20 1.1 christos MA 02110-1301, USA. */
21 1.1 christos
22 1.1 christos #include "sysdep.h"
23 1.1.1.5 christos #include "disassemble.h"
24 1.1 christos #include "libiberty.h"
25 1.1 christos #include "opcode/mips.h"
26 1.1 christos #include "opintl.h"
27 1.1 christos
28 1.1 christos /* FIXME: These are needed to figure out if the code is mips16 or
29 1.1 christos not. The low bit of the address is often a good indicator. No
30 1.1 christos symbol table is available when this code runs out in an embedded
31 1.1 christos system as when it is used for disassembler support in a monitor. */
32 1.1 christos
33 1.1 christos #if !defined(EMBEDDED_ENV)
34 1.1 christos #define SYMTAB_AVAILABLE 1
35 1.1 christos #include "elf-bfd.h"
36 1.1 christos #include "elf/mips.h"
37 1.1 christos #endif
38 1.1 christos
39 1.1 christos /* Mips instructions are at maximum this many bytes long. */
40 1.1 christos #define INSNLEN 4
41 1.1 christos
42 1.1 christos
43 1.1 christos /* FIXME: These should be shared with gdb somehow. */
45 1.1 christos
46 1.1 christos struct mips_cp0sel_name
47 1.1 christos {
48 1.1 christos unsigned int cp0reg;
49 1.1 christos unsigned int sel;
50 1.1 christos const char * const name;
51 1.1 christos };
52 1.1 christos
53 1.1 christos static const char * const mips_gpr_names_numeric[32] =
54 1.1 christos {
55 1.1 christos "$0", "$1", "$2", "$3", "$4", "$5", "$6", "$7",
56 1.1 christos "$8", "$9", "$10", "$11", "$12", "$13", "$14", "$15",
57 1.1 christos "$16", "$17", "$18", "$19", "$20", "$21", "$22", "$23",
58 1.1 christos "$24", "$25", "$26", "$27", "$28", "$29", "$30", "$31"
59 1.1 christos };
60 1.1 christos
61 1.1 christos static const char * const mips_gpr_names_oldabi[32] =
62 1.1 christos {
63 1.1 christos "zero", "at", "v0", "v1", "a0", "a1", "a2", "a3",
64 1.1 christos "t0", "t1", "t2", "t3", "t4", "t5", "t6", "t7",
65 1.1 christos "s0", "s1", "s2", "s3", "s4", "s5", "s6", "s7",
66 1.1 christos "t8", "t9", "k0", "k1", "gp", "sp", "s8", "ra"
67 1.1 christos };
68 1.1 christos
69 1.1 christos static const char * const mips_gpr_names_newabi[32] =
70 1.1 christos {
71 1.1 christos "zero", "at", "v0", "v1", "a0", "a1", "a2", "a3",
72 1.1 christos "a4", "a5", "a6", "a7", "t0", "t1", "t2", "t3",
73 1.1 christos "s0", "s1", "s2", "s3", "s4", "s5", "s6", "s7",
74 1.1 christos "t8", "t9", "k0", "k1", "gp", "sp", "s8", "ra"
75 1.1 christos };
76 1.1 christos
77 1.1 christos static const char * const mips_fpr_names_numeric[32] =
78 1.1 christos {
79 1.1 christos "$f0", "$f1", "$f2", "$f3", "$f4", "$f5", "$f6", "$f7",
80 1.1 christos "$f8", "$f9", "$f10", "$f11", "$f12", "$f13", "$f14", "$f15",
81 1.1 christos "$f16", "$f17", "$f18", "$f19", "$f20", "$f21", "$f22", "$f23",
82 1.1 christos "$f24", "$f25", "$f26", "$f27", "$f28", "$f29", "$f30", "$f31"
83 1.1 christos };
84 1.1 christos
85 1.1 christos static const char * const mips_fpr_names_32[32] =
86 1.1 christos {
87 1.1 christos "fv0", "fv0f", "fv1", "fv1f", "ft0", "ft0f", "ft1", "ft1f",
88 1.1 christos "ft2", "ft2f", "ft3", "ft3f", "fa0", "fa0f", "fa1", "fa1f",
89 1.1 christos "ft4", "ft4f", "ft5", "ft5f", "fs0", "fs0f", "fs1", "fs1f",
90 1.1 christos "fs2", "fs2f", "fs3", "fs3f", "fs4", "fs4f", "fs5", "fs5f"
91 1.1 christos };
92 1.1 christos
93 1.1 christos static const char * const mips_fpr_names_n32[32] =
94 1.1 christos {
95 1.1 christos "fv0", "ft14", "fv1", "ft15", "ft0", "ft1", "ft2", "ft3",
96 1.1 christos "ft4", "ft5", "ft6", "ft7", "fa0", "fa1", "fa2", "fa3",
97 1.1 christos "fa4", "fa5", "fa6", "fa7", "fs0", "ft8", "fs1", "ft9",
98 1.1 christos "fs2", "ft10", "fs3", "ft11", "fs4", "ft12", "fs5", "ft13"
99 1.1 christos };
100 1.1 christos
101 1.1 christos static const char * const mips_fpr_names_64[32] =
102 1.1 christos {
103 1.1 christos "fv0", "ft12", "fv1", "ft13", "ft0", "ft1", "ft2", "ft3",
104 1.1 christos "ft4", "ft5", "ft6", "ft7", "fa0", "fa1", "fa2", "fa3",
105 1.1 christos "fa4", "fa5", "fa6", "fa7", "ft8", "ft9", "ft10", "ft11",
106 1.1 christos "fs0", "fs1", "fs2", "fs3", "fs4", "fs5", "fs6", "fs7"
107 1.1 christos };
108 1.1 christos
109 1.1 christos static const char * const mips_cp0_names_numeric[32] =
110 1.1 christos {
111 1.1 christos "$0", "$1", "$2", "$3", "$4", "$5", "$6", "$7",
112 1.1 christos "$8", "$9", "$10", "$11", "$12", "$13", "$14", "$15",
113 1.1 christos "$16", "$17", "$18", "$19", "$20", "$21", "$22", "$23",
114 1.1 christos "$24", "$25", "$26", "$27", "$28", "$29", "$30", "$31"
115 1.1 christos };
116 1.1 christos
117 1.1 christos static const char * const mips_cp1_names_numeric[32] =
118 1.1 christos {
119 1.1 christos "$0", "$1", "$2", "$3", "$4", "$5", "$6", "$7",
120 1.1 christos "$8", "$9", "$10", "$11", "$12", "$13", "$14", "$15",
121 1.1 christos "$16", "$17", "$18", "$19", "$20", "$21", "$22", "$23",
122 1.1 christos "$24", "$25", "$26", "$27", "$28", "$29", "$30", "$31"
123 1.1 christos };
124 1.1 christos
125 1.1 christos static const char * const mips_cp0_names_r3000[32] =
126 1.1 christos {
127 1.1 christos "c0_index", "c0_random", "c0_entrylo", "$3",
128 1.1 christos "c0_context", "$5", "$6", "$7",
129 1.1 christos "c0_badvaddr", "$9", "c0_entryhi", "$11",
130 1.1 christos "c0_sr", "c0_cause", "c0_epc", "c0_prid",
131 1.1 christos "$16", "$17", "$18", "$19",
132 1.1 christos "$20", "$21", "$22", "$23",
133 1.1 christos "$24", "$25", "$26", "$27",
134 1.1 christos "$28", "$29", "$30", "$31",
135 1.1 christos };
136 1.1 christos
137 1.1 christos static const char * const mips_cp0_names_r4000[32] =
138 1.1 christos {
139 1.1 christos "c0_index", "c0_random", "c0_entrylo0", "c0_entrylo1",
140 1.1 christos "c0_context", "c0_pagemask", "c0_wired", "$7",
141 1.1 christos "c0_badvaddr", "c0_count", "c0_entryhi", "c0_compare",
142 1.1 christos "c0_sr", "c0_cause", "c0_epc", "c0_prid",
143 1.1 christos "c0_config", "c0_lladdr", "c0_watchlo", "c0_watchhi",
144 1.1 christos "c0_xcontext", "$21", "$22", "$23",
145 1.1 christos "$24", "$25", "c0_ecc", "c0_cacheerr",
146 1.1 christos "c0_taglo", "c0_taghi", "c0_errorepc", "$31",
147 1.1 christos };
148 1.1 christos
149 1.1 christos static const char * const mips_cp0_names_r5900[32] =
150 1.1 christos {
151 1.1 christos "c0_index", "c0_random", "c0_entrylo0", "c0_entrylo1",
152 1.1 christos "c0_context", "c0_pagemask", "c0_wired", "$7",
153 1.1 christos "c0_badvaddr", "c0_count", "c0_entryhi", "c0_compare",
154 1.1 christos "c0_sr", "c0_cause", "c0_epc", "c0_prid",
155 1.1 christos "c0_config", "$17", "$18", "$19",
156 1.1 christos "$20", "$21", "$22", "c0_badpaddr",
157 1.1 christos "c0_depc", "c0_perfcnt", "$26", "$27",
158 1.1 christos "c0_taglo", "c0_taghi", "c0_errorepc", "$31"
159 1.1 christos };
160 1.1 christos
161 1.1 christos static const char * const mips_cp0_names_mips3264[32] =
162 1.1 christos {
163 1.1 christos "c0_index", "c0_random", "c0_entrylo0", "c0_entrylo1",
164 1.1 christos "c0_context", "c0_pagemask", "c0_wired", "$7",
165 1.1 christos "c0_badvaddr", "c0_count", "c0_entryhi", "c0_compare",
166 1.1 christos "c0_status", "c0_cause", "c0_epc", "c0_prid",
167 1.1 christos "c0_config", "c0_lladdr", "c0_watchlo", "c0_watchhi",
168 1.1 christos "c0_xcontext", "$21", "$22", "c0_debug",
169 1.1 christos "c0_depc", "c0_perfcnt", "c0_errctl", "c0_cacheerr",
170 1.1 christos "c0_taglo", "c0_taghi", "c0_errorepc", "c0_desave",
171 1.1 christos };
172 1.1 christos
173 1.1 christos static const char * const mips_cp1_names_mips3264[32] =
174 1.1 christos {
175 1.1 christos "c1_fir", "c1_ufr", "$2", "$3",
176 1.1 christos "c1_unfr", "$5", "$6", "$7",
177 1.1 christos "$8", "$9", "$10", "$11",
178 1.1 christos "$12", "$13", "$14", "$15",
179 1.1 christos "$16", "$17", "$18", "$19",
180 1.1 christos "$20", "$21", "$22", "$23",
181 1.1 christos "$24", "c1_fccr", "c1_fexr", "$27",
182 1.1 christos "c1_fenr", "$29", "$30", "c1_fcsr"
183 1.1 christos };
184 1.1 christos
185 1.1 christos static const struct mips_cp0sel_name mips_cp0sel_names_mips3264[] =
186 1.1 christos {
187 1.1 christos { 16, 1, "c0_config1" },
188 1.1 christos { 16, 2, "c0_config2" },
189 1.1 christos { 16, 3, "c0_config3" },
190 1.1 christos { 18, 1, "c0_watchlo,1" },
191 1.1 christos { 18, 2, "c0_watchlo,2" },
192 1.1 christos { 18, 3, "c0_watchlo,3" },
193 1.1 christos { 18, 4, "c0_watchlo,4" },
194 1.1 christos { 18, 5, "c0_watchlo,5" },
195 1.1 christos { 18, 6, "c0_watchlo,6" },
196 1.1 christos { 18, 7, "c0_watchlo,7" },
197 1.1 christos { 19, 1, "c0_watchhi,1" },
198 1.1 christos { 19, 2, "c0_watchhi,2" },
199 1.1 christos { 19, 3, "c0_watchhi,3" },
200 1.1 christos { 19, 4, "c0_watchhi,4" },
201 1.1 christos { 19, 5, "c0_watchhi,5" },
202 1.1 christos { 19, 6, "c0_watchhi,6" },
203 1.1 christos { 19, 7, "c0_watchhi,7" },
204 1.1 christos { 25, 1, "c0_perfcnt,1" },
205 1.1 christos { 25, 2, "c0_perfcnt,2" },
206 1.1 christos { 25, 3, "c0_perfcnt,3" },
207 1.1 christos { 25, 4, "c0_perfcnt,4" },
208 1.1 christos { 25, 5, "c0_perfcnt,5" },
209 1.1 christos { 25, 6, "c0_perfcnt,6" },
210 1.1 christos { 25, 7, "c0_perfcnt,7" },
211 1.1 christos { 27, 1, "c0_cacheerr,1" },
212 1.1 christos { 27, 2, "c0_cacheerr,2" },
213 1.1 christos { 27, 3, "c0_cacheerr,3" },
214 1.1 christos { 28, 1, "c0_datalo" },
215 1.1 christos { 29, 1, "c0_datahi" }
216 1.1 christos };
217 1.1 christos
218 1.1 christos static const char * const mips_cp0_names_mips3264r2[32] =
219 1.1 christos {
220 1.1 christos "c0_index", "c0_random", "c0_entrylo0", "c0_entrylo1",
221 1.1 christos "c0_context", "c0_pagemask", "c0_wired", "c0_hwrena",
222 1.1 christos "c0_badvaddr", "c0_count", "c0_entryhi", "c0_compare",
223 1.1 christos "c0_status", "c0_cause", "c0_epc", "c0_prid",
224 1.1 christos "c0_config", "c0_lladdr", "c0_watchlo", "c0_watchhi",
225 1.1 christos "c0_xcontext", "$21", "$22", "c0_debug",
226 1.1 christos "c0_depc", "c0_perfcnt", "c0_errctl", "c0_cacheerr",
227 1.1 christos "c0_taglo", "c0_taghi", "c0_errorepc", "c0_desave",
228 1.1 christos };
229 1.1 christos
230 1.1 christos static const struct mips_cp0sel_name mips_cp0sel_names_mips3264r2[] =
231 1.1 christos {
232 1.1 christos { 4, 1, "c0_contextconfig" },
233 1.1 christos { 0, 1, "c0_mvpcontrol" },
234 1.1 christos { 0, 2, "c0_mvpconf0" },
235 1.1 christos { 0, 3, "c0_mvpconf1" },
236 1.1 christos { 1, 1, "c0_vpecontrol" },
237 1.1 christos { 1, 2, "c0_vpeconf0" },
238 1.1 christos { 1, 3, "c0_vpeconf1" },
239 1.1 christos { 1, 4, "c0_yqmask" },
240 1.1 christos { 1, 5, "c0_vpeschedule" },
241 1.1 christos { 1, 6, "c0_vpeschefback" },
242 1.1 christos { 2, 1, "c0_tcstatus" },
243 1.1 christos { 2, 2, "c0_tcbind" },
244 1.1 christos { 2, 3, "c0_tcrestart" },
245 1.1 christos { 2, 4, "c0_tchalt" },
246 1.1 christos { 2, 5, "c0_tccontext" },
247 1.1 christos { 2, 6, "c0_tcschedule" },
248 1.1 christos { 2, 7, "c0_tcschefback" },
249 1.1 christos { 5, 1, "c0_pagegrain" },
250 1.1 christos { 6, 1, "c0_srsconf0" },
251 1.1 christos { 6, 2, "c0_srsconf1" },
252 1.1 christos { 6, 3, "c0_srsconf2" },
253 1.1 christos { 6, 4, "c0_srsconf3" },
254 1.1 christos { 6, 5, "c0_srsconf4" },
255 1.1 christos { 12, 1, "c0_intctl" },
256 1.1 christos { 12, 2, "c0_srsctl" },
257 1.1 christos { 12, 3, "c0_srsmap" },
258 1.1 christos { 15, 1, "c0_ebase" },
259 1.1 christos { 16, 1, "c0_config1" },
260 1.1 christos { 16, 2, "c0_config2" },
261 1.1 christos { 16, 3, "c0_config3" },
262 1.1 christos { 18, 1, "c0_watchlo,1" },
263 1.1 christos { 18, 2, "c0_watchlo,2" },
264 1.1 christos { 18, 3, "c0_watchlo,3" },
265 1.1 christos { 18, 4, "c0_watchlo,4" },
266 1.1 christos { 18, 5, "c0_watchlo,5" },
267 1.1 christos { 18, 6, "c0_watchlo,6" },
268 1.1 christos { 18, 7, "c0_watchlo,7" },
269 1.1 christos { 19, 1, "c0_watchhi,1" },
270 1.1 christos { 19, 2, "c0_watchhi,2" },
271 1.1 christos { 19, 3, "c0_watchhi,3" },
272 1.1 christos { 19, 4, "c0_watchhi,4" },
273 1.1 christos { 19, 5, "c0_watchhi,5" },
274 1.1 christos { 19, 6, "c0_watchhi,6" },
275 1.1 christos { 19, 7, "c0_watchhi,7" },
276 1.1 christos { 23, 1, "c0_tracecontrol" },
277 1.1 christos { 23, 2, "c0_tracecontrol2" },
278 1.1 christos { 23, 3, "c0_usertracedata" },
279 1.1 christos { 23, 4, "c0_tracebpc" },
280 1.1 christos { 25, 1, "c0_perfcnt,1" },
281 1.1 christos { 25, 2, "c0_perfcnt,2" },
282 1.1 christos { 25, 3, "c0_perfcnt,3" },
283 1.1 christos { 25, 4, "c0_perfcnt,4" },
284 1.1 christos { 25, 5, "c0_perfcnt,5" },
285 1.1 christos { 25, 6, "c0_perfcnt,6" },
286 1.1 christos { 25, 7, "c0_perfcnt,7" },
287 1.1 christos { 27, 1, "c0_cacheerr,1" },
288 1.1 christos { 27, 2, "c0_cacheerr,2" },
289 1.1 christos { 27, 3, "c0_cacheerr,3" },
290 1.1 christos { 28, 1, "c0_datalo" },
291 1.1 christos { 28, 2, "c0_taglo1" },
292 1.1 christos { 28, 3, "c0_datalo1" },
293 1.1 christos { 28, 4, "c0_taglo2" },
294 1.1 christos { 28, 5, "c0_datalo2" },
295 1.1 christos { 28, 6, "c0_taglo3" },
296 1.1 christos { 28, 7, "c0_datalo3" },
297 1.1 christos { 29, 1, "c0_datahi" },
298 1.1 christos { 29, 2, "c0_taghi1" },
299 1.1 christos { 29, 3, "c0_datahi1" },
300 1.1 christos { 29, 4, "c0_taghi2" },
301 1.1 christos { 29, 5, "c0_datahi2" },
302 1.1 christos { 29, 6, "c0_taghi3" },
303 1.1 christos { 29, 7, "c0_datahi3" },
304 1.1 christos };
305 1.1 christos
306 1.1 christos /* SB-1: MIPS64 (mips_cp0_names_mips3264) with minor mods. */
307 1.1 christos static const char * const mips_cp0_names_sb1[32] =
308 1.1 christos {
309 1.1 christos "c0_index", "c0_random", "c0_entrylo0", "c0_entrylo1",
310 1.1 christos "c0_context", "c0_pagemask", "c0_wired", "$7",
311 1.1 christos "c0_badvaddr", "c0_count", "c0_entryhi", "c0_compare",
312 1.1 christos "c0_status", "c0_cause", "c0_epc", "c0_prid",
313 1.1 christos "c0_config", "c0_lladdr", "c0_watchlo", "c0_watchhi",
314 1.1 christos "c0_xcontext", "$21", "$22", "c0_debug",
315 1.1 christos "c0_depc", "c0_perfcnt", "c0_errctl", "c0_cacheerr_i",
316 1.1 christos "c0_taglo_i", "c0_taghi_i", "c0_errorepc", "c0_desave",
317 1.1 christos };
318 1.1 christos
319 1.1 christos static const struct mips_cp0sel_name mips_cp0sel_names_sb1[] =
320 1.1 christos {
321 1.1 christos { 16, 1, "c0_config1" },
322 1.1 christos { 18, 1, "c0_watchlo,1" },
323 1.1 christos { 19, 1, "c0_watchhi,1" },
324 1.1 christos { 22, 0, "c0_perftrace" },
325 1.1 christos { 23, 3, "c0_edebug" },
326 1.1 christos { 25, 1, "c0_perfcnt,1" },
327 1.1 christos { 25, 2, "c0_perfcnt,2" },
328 1.1 christos { 25, 3, "c0_perfcnt,3" },
329 1.1 christos { 25, 4, "c0_perfcnt,4" },
330 1.1 christos { 25, 5, "c0_perfcnt,5" },
331 1.1 christos { 25, 6, "c0_perfcnt,6" },
332 1.1 christos { 25, 7, "c0_perfcnt,7" },
333 1.1 christos { 26, 1, "c0_buserr_pa" },
334 1.1 christos { 27, 1, "c0_cacheerr_d" },
335 1.1 christos { 27, 3, "c0_cacheerr_d_pa" },
336 1.1 christos { 28, 1, "c0_datalo_i" },
337 1.1 christos { 28, 2, "c0_taglo_d" },
338 1.1 christos { 28, 3, "c0_datalo_d" },
339 1.1 christos { 29, 1, "c0_datahi_i" },
340 1.1 christos { 29, 2, "c0_taghi_d" },
341 1.1 christos { 29, 3, "c0_datahi_d" },
342 1.1 christos };
343 1.1 christos
344 1.1 christos /* Xlr cop0 register names. */
345 1.1 christos static const char * const mips_cp0_names_xlr[32] = {
346 1.1 christos "c0_index", "c0_random", "c0_entrylo0", "c0_entrylo1",
347 1.1 christos "c0_context", "c0_pagemask", "c0_wired", "$7",
348 1.1 christos "c0_badvaddr", "c0_count", "c0_entryhi", "c0_compare",
349 1.1 christos "c0_status", "c0_cause", "c0_epc", "c0_prid",
350 1.1 christos "c0_config", "c0_lladdr", "c0_watchlo", "c0_watchhi",
351 1.1 christos "c0_xcontext", "$21", "$22", "c0_debug",
352 1.1 christos "c0_depc", "c0_perfcnt", "c0_errctl", "c0_cacheerr_i",
353 1.1 christos "c0_taglo_i", "c0_taghi_i", "c0_errorepc", "c0_desave",
354 1.1 christos };
355 1.1 christos
356 1.1 christos /* XLR's CP0 Select Registers. */
357 1.1 christos
358 1.1 christos static const struct mips_cp0sel_name mips_cp0sel_names_xlr[] = {
359 1.1 christos { 9, 6, "c0_extintreq" },
360 1.1 christos { 9, 7, "c0_extintmask" },
361 1.1 christos { 15, 1, "c0_ebase" },
362 1.1 christos { 16, 1, "c0_config1" },
363 1.1 christos { 16, 2, "c0_config2" },
364 1.1 christos { 16, 3, "c0_config3" },
365 1.1 christos { 16, 7, "c0_procid2" },
366 1.1 christos { 18, 1, "c0_watchlo,1" },
367 1.1 christos { 18, 2, "c0_watchlo,2" },
368 1.1 christos { 18, 3, "c0_watchlo,3" },
369 1.1 christos { 18, 4, "c0_watchlo,4" },
370 1.1 christos { 18, 5, "c0_watchlo,5" },
371 1.1 christos { 18, 6, "c0_watchlo,6" },
372 1.1 christos { 18, 7, "c0_watchlo,7" },
373 1.1 christos { 19, 1, "c0_watchhi,1" },
374 1.1 christos { 19, 2, "c0_watchhi,2" },
375 1.1 christos { 19, 3, "c0_watchhi,3" },
376 1.1 christos { 19, 4, "c0_watchhi,4" },
377 1.1 christos { 19, 5, "c0_watchhi,5" },
378 1.1 christos { 19, 6, "c0_watchhi,6" },
379 1.1 christos { 19, 7, "c0_watchhi,7" },
380 1.1 christos { 25, 1, "c0_perfcnt,1" },
381 1.1 christos { 25, 2, "c0_perfcnt,2" },
382 1.1 christos { 25, 3, "c0_perfcnt,3" },
383 1.1 christos { 25, 4, "c0_perfcnt,4" },
384 1.1 christos { 25, 5, "c0_perfcnt,5" },
385 1.1 christos { 25, 6, "c0_perfcnt,6" },
386 1.1 christos { 25, 7, "c0_perfcnt,7" },
387 1.1 christos { 27, 1, "c0_cacheerr,1" },
388 1.1 christos { 27, 2, "c0_cacheerr,2" },
389 1.1 christos { 27, 3, "c0_cacheerr,3" },
390 1.1 christos { 28, 1, "c0_datalo" },
391 1.1 christos { 29, 1, "c0_datahi" }
392 1.1 christos };
393 1.1 christos
394 1.1 christos static const char * const mips_hwr_names_numeric[32] =
395 1.1 christos {
396 1.1 christos "$0", "$1", "$2", "$3", "$4", "$5", "$6", "$7",
397 1.1 christos "$8", "$9", "$10", "$11", "$12", "$13", "$14", "$15",
398 1.1 christos "$16", "$17", "$18", "$19", "$20", "$21", "$22", "$23",
399 1.1 christos "$24", "$25", "$26", "$27", "$28", "$29", "$30", "$31"
400 1.1 christos };
401 1.1 christos
402 1.1 christos static const char * const mips_hwr_names_mips3264r2[32] =
403 1.1 christos {
404 1.1 christos "hwr_cpunum", "hwr_synci_step", "hwr_cc", "hwr_ccres",
405 1.1 christos "$4", "$5", "$6", "$7",
406 1.1 christos "$8", "$9", "$10", "$11", "$12", "$13", "$14", "$15",
407 1.1 christos "$16", "$17", "$18", "$19", "$20", "$21", "$22", "$23",
408 1.1 christos "$24", "$25", "$26", "$27", "$28", "$29", "$30", "$31"
409 1.1 christos };
410 1.1 christos
411 1.1 christos static const char * const msa_control_names[32] =
412 1.1 christos {
413 1.1 christos "msa_ir", "msa_csr", "msa_access", "msa_save",
414 1.1 christos "msa_modify", "msa_request", "msa_map", "msa_unmap",
415 1.1 christos "$8", "$9", "$10", "$11", "$12", "$13", "$14", "$15",
416 1.1 christos "$16", "$17", "$18", "$19", "$20", "$21", "$22", "$23",
417 1.1 christos "$24", "$25", "$26", "$27", "$28", "$29", "$30", "$31"
418 1.1 christos };
419 1.1 christos
420 1.1 christos struct mips_abi_choice
421 1.1 christos {
422 1.1 christos const char * name;
423 1.1 christos const char * const *gpr_names;
424 1.1 christos const char * const *fpr_names;
425 1.1 christos };
426 1.1 christos
427 1.1 christos struct mips_abi_choice mips_abi_choices[] =
428 1.1 christos {
429 1.1 christos { "numeric", mips_gpr_names_numeric, mips_fpr_names_numeric },
430 1.1 christos { "32", mips_gpr_names_oldabi, mips_fpr_names_32 },
431 1.1 christos { "n32", mips_gpr_names_newabi, mips_fpr_names_n32 },
432 1.1 christos { "64", mips_gpr_names_newabi, mips_fpr_names_64 },
433 1.1 christos };
434 1.1 christos
435 1.1 christos struct mips_arch_choice
436 1.1 christos {
437 1.1 christos const char *name;
438 1.1 christos int bfd_mach_valid;
439 1.1 christos unsigned long bfd_mach;
440 1.1 christos int processor;
441 1.1 christos int isa;
442 1.1 christos int ase;
443 1.1 christos const char * const *cp0_names;
444 1.1 christos const struct mips_cp0sel_name *cp0sel_names;
445 1.1 christos unsigned int cp0sel_names_len;
446 1.1 christos const char * const *cp1_names;
447 1.1 christos const char * const *hwr_names;
448 1.1 christos };
449 1.1 christos
450 1.1 christos const struct mips_arch_choice mips_arch_choices[] =
451 1.1 christos {
452 1.1 christos { "numeric", 0, 0, 0, 0, 0,
453 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
454 1.1 christos mips_hwr_names_numeric },
455 1.1 christos
456 1.1 christos { "r3000", 1, bfd_mach_mips3000, CPU_R3000, ISA_MIPS1, 0,
457 1.1 christos mips_cp0_names_r3000, NULL, 0, mips_cp1_names_numeric,
458 1.1 christos mips_hwr_names_numeric },
459 1.1 christos { "r3900", 1, bfd_mach_mips3900, CPU_R3900, ISA_MIPS1, 0,
460 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
461 1.1 christos mips_hwr_names_numeric },
462 1.1 christos { "r4000", 1, bfd_mach_mips4000, CPU_R4000, ISA_MIPS3, 0,
463 1.1 christos mips_cp0_names_r4000, NULL, 0, mips_cp1_names_numeric,
464 1.1 christos mips_hwr_names_numeric },
465 1.1 christos { "r4010", 1, bfd_mach_mips4010, CPU_R4010, ISA_MIPS2, 0,
466 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
467 1.1 christos mips_hwr_names_numeric },
468 1.1 christos { "vr4100", 1, bfd_mach_mips4100, CPU_VR4100, ISA_MIPS3, 0,
469 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
470 1.1 christos mips_hwr_names_numeric },
471 1.1 christos { "vr4111", 1, bfd_mach_mips4111, CPU_R4111, ISA_MIPS3, 0,
472 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
473 1.1 christos mips_hwr_names_numeric },
474 1.1 christos { "vr4120", 1, bfd_mach_mips4120, CPU_VR4120, ISA_MIPS3, 0,
475 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
476 1.1 christos mips_hwr_names_numeric },
477 1.1 christos { "r4300", 1, bfd_mach_mips4300, CPU_R4300, ISA_MIPS3, 0,
478 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
479 1.1 christos mips_hwr_names_numeric },
480 1.1 christos { "r4400", 1, bfd_mach_mips4400, CPU_R4400, ISA_MIPS3, 0,
481 1.1 christos mips_cp0_names_r4000, NULL, 0, mips_cp1_names_numeric,
482 1.1 christos mips_hwr_names_numeric },
483 1.1 christos { "r4600", 1, bfd_mach_mips4600, CPU_R4600, ISA_MIPS3, 0,
484 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
485 1.1 christos mips_hwr_names_numeric },
486 1.1 christos { "r4650", 1, bfd_mach_mips4650, CPU_R4650, ISA_MIPS3, 0,
487 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
488 1.1 christos mips_hwr_names_numeric },
489 1.1 christos { "r5000", 1, bfd_mach_mips5000, CPU_R5000, ISA_MIPS4, 0,
490 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
491 1.1 christos mips_hwr_names_numeric },
492 1.1 christos { "vr5400", 1, bfd_mach_mips5400, CPU_VR5400, ISA_MIPS4, 0,
493 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
494 1.1 christos mips_hwr_names_numeric },
495 1.1 christos { "vr5500", 1, bfd_mach_mips5500, CPU_VR5500, ISA_MIPS4, 0,
496 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
497 1.1 christos mips_hwr_names_numeric },
498 1.1 christos { "r5900", 1, bfd_mach_mips5900, CPU_R5900, ISA_MIPS3, 0,
499 1.1 christos mips_cp0_names_r5900, NULL, 0, mips_cp1_names_numeric,
500 1.1 christos mips_hwr_names_numeric },
501 1.1 christos { "r6000", 1, bfd_mach_mips6000, CPU_R6000, ISA_MIPS2, 0,
502 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
503 1.1 christos mips_hwr_names_numeric },
504 1.1 christos { "rm7000", 1, bfd_mach_mips7000, CPU_RM7000, ISA_MIPS4, 0,
505 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
506 1.1 christos mips_hwr_names_numeric },
507 1.1 christos { "rm9000", 1, bfd_mach_mips7000, CPU_RM7000, ISA_MIPS4, 0,
508 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
509 1.1 christos mips_hwr_names_numeric },
510 1.1 christos { "r8000", 1, bfd_mach_mips8000, CPU_R8000, ISA_MIPS4, 0,
511 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
512 1.1 christos mips_hwr_names_numeric },
513 1.1 christos { "r10000", 1, bfd_mach_mips10000, CPU_R10000, ISA_MIPS4, 0,
514 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
515 1.1 christos mips_hwr_names_numeric },
516 1.1 christos { "r12000", 1, bfd_mach_mips12000, CPU_R12000, ISA_MIPS4, 0,
517 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
518 1.1 christos mips_hwr_names_numeric },
519 1.1 christos { "r14000", 1, bfd_mach_mips14000, CPU_R14000, ISA_MIPS4, 0,
520 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
521 1.1 christos mips_hwr_names_numeric },
522 1.1 christos { "r16000", 1, bfd_mach_mips16000, CPU_R16000, ISA_MIPS4, 0,
523 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
524 1.1 christos mips_hwr_names_numeric },
525 1.1 christos { "mips5", 1, bfd_mach_mips5, CPU_MIPS5, ISA_MIPS5, 0,
526 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
527 1.1 christos mips_hwr_names_numeric },
528 1.1 christos
529 1.1 christos /* For stock MIPS32, disassemble all applicable MIPS-specified ASEs.
530 1.1 christos Note that MIPS-3D and MDMX are not applicable to MIPS32. (See
531 1.1 christos _MIPS32 Architecture For Programmers Volume I: Introduction to the
532 1.1 christos MIPS32 Architecture_ (MIPS Document Number MD00082, Revision 0.95),
533 1.1 christos page 1. */
534 1.1 christos { "mips32", 1, bfd_mach_mipsisa32, CPU_MIPS32,
535 1.1 christos ISA_MIPS32, ASE_SMARTMIPS,
536 1.1 christos mips_cp0_names_mips3264,
537 1.1 christos mips_cp0sel_names_mips3264, ARRAY_SIZE (mips_cp0sel_names_mips3264),
538 1.1 christos mips_cp1_names_mips3264, mips_hwr_names_numeric },
539 1.1 christos
540 1.1 christos { "mips32r2", 1, bfd_mach_mipsisa32r2, CPU_MIPS32R2,
541 1.1 christos ISA_MIPS32R2,
542 1.1.1.2 christos (ASE_SMARTMIPS | ASE_DSP | ASE_DSPR2 | ASE_EVA | ASE_MIPS3D
543 1.1.1.2 christos | ASE_MT | ASE_MCU | ASE_VIRT | ASE_MSA | ASE_XPA),
544 1.1.1.2 christos mips_cp0_names_mips3264r2,
545 1.1.1.2 christos mips_cp0sel_names_mips3264r2, ARRAY_SIZE (mips_cp0sel_names_mips3264r2),
546 1.1.1.2 christos mips_cp1_names_mips3264, mips_hwr_names_mips3264r2 },
547 1.1.1.2 christos
548 1.1.1.2 christos { "mips32r3", 1, bfd_mach_mipsisa32r3, CPU_MIPS32R3,
549 1.1.1.2 christos ISA_MIPS32R3,
550 1.1.1.2 christos (ASE_SMARTMIPS | ASE_DSP | ASE_DSPR2 | ASE_EVA | ASE_MIPS3D
551 1.1.1.2 christos | ASE_MT | ASE_MCU | ASE_VIRT | ASE_MSA | ASE_XPA),
552 1.1.1.2 christos mips_cp0_names_mips3264r2,
553 1.1.1.2 christos mips_cp0sel_names_mips3264r2, ARRAY_SIZE (mips_cp0sel_names_mips3264r2),
554 1.1.1.2 christos mips_cp1_names_mips3264, mips_hwr_names_mips3264r2 },
555 1.1.1.2 christos
556 1.1.1.2 christos { "mips32r5", 1, bfd_mach_mipsisa32r5, CPU_MIPS32R5,
557 1.1.1.2 christos ISA_MIPS32R5,
558 1.1.1.2 christos (ASE_SMARTMIPS | ASE_DSP | ASE_DSPR2 | ASE_EVA | ASE_MIPS3D
559 1.1.1.2 christos | ASE_MT | ASE_MCU | ASE_VIRT | ASE_MSA | ASE_XPA),
560 1.1.1.2 christos mips_cp0_names_mips3264r2,
561 1.1.1.2 christos mips_cp0sel_names_mips3264r2, ARRAY_SIZE (mips_cp0sel_names_mips3264r2),
562 1.1.1.2 christos mips_cp1_names_mips3264, mips_hwr_names_mips3264r2 },
563 1.1.1.2 christos
564 1.1.1.2 christos { "mips32r6", 1, bfd_mach_mipsisa32r6, CPU_MIPS32R6,
565 1.1.1.2 christos ISA_MIPS32R6,
566 1.1.1.5 christos (ASE_EVA | ASE_MSA | ASE_VIRT | ASE_XPA | ASE_MCU | ASE_MT | ASE_DSP
567 1.1 christos | ASE_DSPR2 | ASE_DSPR3 | ASE_CRC | ASE_GINV),
568 1.1 christos mips_cp0_names_mips3264r2,
569 1.1 christos mips_cp0sel_names_mips3264r2, ARRAY_SIZE (mips_cp0sel_names_mips3264r2),
570 1.1 christos mips_cp1_names_mips3264, mips_hwr_names_mips3264r2 },
571 1.1 christos
572 1.1 christos /* For stock MIPS64, disassemble all applicable MIPS-specified ASEs. */
573 1.1 christos { "mips64", 1, bfd_mach_mipsisa64, CPU_MIPS64,
574 1.1 christos ISA_MIPS64, ASE_MIPS3D | ASE_MDMX,
575 1.1 christos mips_cp0_names_mips3264,
576 1.1 christos mips_cp0sel_names_mips3264, ARRAY_SIZE (mips_cp0sel_names_mips3264),
577 1.1 christos mips_cp1_names_mips3264, mips_hwr_names_numeric },
578 1.1 christos
579 1.1 christos { "mips64r2", 1, bfd_mach_mipsisa64r2, CPU_MIPS64R2,
580 1.1 christos ISA_MIPS64R2,
581 1.1.1.2 christos (ASE_MIPS3D | ASE_DSP | ASE_DSPR2 | ASE_DSP64 | ASE_EVA | ASE_MT
582 1.1.1.2 christos | ASE_MCU | ASE_VIRT | ASE_VIRT64 | ASE_MSA | ASE_MSA64 | ASE_XPA),
583 1.1.1.2 christos mips_cp0_names_mips3264r2,
584 1.1.1.2 christos mips_cp0sel_names_mips3264r2, ARRAY_SIZE (mips_cp0sel_names_mips3264r2),
585 1.1.1.2 christos mips_cp1_names_mips3264, mips_hwr_names_mips3264r2 },
586 1.1.1.2 christos
587 1.1.1.2 christos { "mips64r3", 1, bfd_mach_mipsisa64r3, CPU_MIPS64R3,
588 1.1.1.2 christos ISA_MIPS64R3,
589 1.1.1.2 christos (ASE_MIPS3D | ASE_DSP | ASE_DSPR2 | ASE_DSP64 | ASE_EVA | ASE_MT
590 1.1.1.2 christos | ASE_MCU | ASE_VIRT | ASE_VIRT64 | ASE_MSA | ASE_MSA64 | ASE_XPA),
591 1.1.1.2 christos mips_cp0_names_mips3264r2,
592 1.1.1.2 christos mips_cp0sel_names_mips3264r2, ARRAY_SIZE (mips_cp0sel_names_mips3264r2),
593 1.1.1.2 christos mips_cp1_names_mips3264, mips_hwr_names_mips3264r2 },
594 1.1.1.2 christos
595 1.1.1.2 christos { "mips64r5", 1, bfd_mach_mipsisa64r5, CPU_MIPS64R5,
596 1.1.1.2 christos ISA_MIPS64R5,
597 1.1.1.2 christos (ASE_MIPS3D | ASE_DSP | ASE_DSPR2 | ASE_DSP64 | ASE_EVA | ASE_MT
598 1.1.1.2 christos | ASE_MCU | ASE_VIRT | ASE_VIRT64 | ASE_MSA | ASE_MSA64 | ASE_XPA),
599 1.1.1.2 christos mips_cp0_names_mips3264r2,
600 1.1.1.2 christos mips_cp0sel_names_mips3264r2, ARRAY_SIZE (mips_cp0sel_names_mips3264r2),
601 1.1.1.2 christos mips_cp1_names_mips3264, mips_hwr_names_mips3264r2 },
602 1.1.1.2 christos
603 1.1.1.2 christos { "mips64r6", 1, bfd_mach_mipsisa64r6, CPU_MIPS64R6,
604 1.1.1.2 christos ISA_MIPS64R6,
605 1.1.1.5 christos (ASE_EVA | ASE_MSA | ASE_MSA64 | ASE_XPA | ASE_VIRT | ASE_VIRT64
606 1.1.1.5 christos | ASE_MCU | ASE_MT | ASE_DSP | ASE_DSPR2 | ASE_DSPR3 | ASE_CRC
607 1.1.1.5 christos | ASE_CRC64 | ASE_GINV),
608 1.1.1.5 christos mips_cp0_names_mips3264r2,
609 1.1.1.5 christos mips_cp0sel_names_mips3264r2, ARRAY_SIZE (mips_cp0sel_names_mips3264r2),
610 1.1.1.5 christos mips_cp1_names_mips3264, mips_hwr_names_mips3264r2 },
611 1.1.1.5 christos
612 1.1.1.5 christos { "interaptiv-mr2", 1, bfd_mach_mips_interaptiv_mr2, CPU_INTERAPTIV_MR2,
613 1.1.1.5 christos ISA_MIPS32R3,
614 1.1 christos ASE_MT | ASE_EVA | ASE_DSP | ASE_DSPR2 | ASE_MIPS16E2 | ASE_MIPS16E2_MT,
615 1.1 christos mips_cp0_names_mips3264r2,
616 1.1 christos mips_cp0sel_names_mips3264r2, ARRAY_SIZE (mips_cp0sel_names_mips3264r2),
617 1.1 christos mips_cp1_names_mips3264, mips_hwr_names_mips3264r2 },
618 1.1 christos
619 1.1 christos { "sb1", 1, bfd_mach_mips_sb1, CPU_SB1,
620 1.1 christos ISA_MIPS64 | INSN_SB1, ASE_MIPS3D,
621 1.1 christos mips_cp0_names_sb1,
622 1.1 christos mips_cp0sel_names_sb1, ARRAY_SIZE (mips_cp0sel_names_sb1),
623 1.1 christos mips_cp1_names_mips3264, mips_hwr_names_numeric },
624 1.1 christos
625 1.1 christos { "loongson2e", 1, bfd_mach_mips_loongson_2e, CPU_LOONGSON_2E,
626 1.1 christos ISA_MIPS3 | INSN_LOONGSON_2E, 0, mips_cp0_names_numeric,
627 1.1 christos NULL, 0, mips_cp1_names_numeric, mips_hwr_names_numeric },
628 1.1 christos
629 1.1.1.5 christos { "loongson2f", 1, bfd_mach_mips_loongson_2f, CPU_LOONGSON_2F,
630 1.1 christos ISA_MIPS3 | INSN_LOONGSON_2F, ASE_LOONGSON_MMI, mips_cp0_names_numeric,
631 1.1 christos NULL, 0, mips_cp1_names_numeric, mips_hwr_names_numeric },
632 1.1.1.5 christos
633 1.1.1.5 christos /* The loongson3a is an alias of gs464 for compatibility */
634 1.1.1.5 christos { "loongson3a", 1, bfd_mach_mips_gs464, CPU_GS464,
635 1.1.1.5 christos ISA_MIPS64R2, ASE_LOONGSON_MMI | ASE_LOONGSON_CAM | ASE_LOONGSON_EXT,
636 1.1.1.5 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_mips3264,
637 1.1.1.5 christos mips_hwr_names_numeric },
638 1.1.1.5 christos
639 1.1.1.5 christos { "gs464", 1, bfd_mach_mips_gs464, CPU_GS464,
640 1.1.1.5 christos ISA_MIPS64R2, ASE_LOONGSON_MMI | ASE_LOONGSON_CAM | ASE_LOONGSON_EXT,
641 1.1.1.5 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_mips3264,
642 1.1.1.5 christos mips_hwr_names_numeric },
643 1.1.1.5 christos
644 1.1.1.5 christos { "gs464e", 1, bfd_mach_mips_gs464e, CPU_GS464E,
645 1.1.1.5 christos ISA_MIPS64R2, ASE_LOONGSON_MMI | ASE_LOONGSON_CAM | ASE_LOONGSON_EXT
646 1.1.1.5 christos | ASE_LOONGSON_EXT2, mips_cp0_names_numeric, NULL, 0, mips_cp1_names_mips3264,
647 1.1.1.5 christos mips_hwr_names_numeric },
648 1.1.1.5 christos
649 1.1.1.5 christos { "gs264e", 1, bfd_mach_mips_gs464e, CPU_GS264E,
650 1.1.1.5 christos ISA_MIPS64R2, ASE_LOONGSON_MMI | ASE_LOONGSON_CAM | ASE_LOONGSON_EXT
651 1.1.1.5 christos | ASE_LOONGSON_EXT2 | ASE_MSA | ASE_MSA64, mips_cp0_names_numeric, NULL,
652 1.1 christos 0, mips_cp1_names_mips3264, mips_hwr_names_numeric },
653 1.1 christos
654 1.1 christos { "octeon", 1, bfd_mach_mips_octeon, CPU_OCTEON,
655 1.1 christos ISA_MIPS64R2 | INSN_OCTEON, 0, mips_cp0_names_numeric, NULL, 0,
656 1.1 christos mips_cp1_names_mips3264, mips_hwr_names_numeric },
657 1.1 christos
658 1.1 christos { "octeon+", 1, bfd_mach_mips_octeonp, CPU_OCTEONP,
659 1.1 christos ISA_MIPS64R2 | INSN_OCTEONP, 0, mips_cp0_names_numeric,
660 1.1 christos NULL, 0, mips_cp1_names_mips3264, mips_hwr_names_numeric },
661 1.1 christos
662 1.1 christos { "octeon2", 1, bfd_mach_mips_octeon2, CPU_OCTEON2,
663 1.1 christos ISA_MIPS64R2 | INSN_OCTEON2, 0, mips_cp0_names_numeric,
664 1.1 christos NULL, 0, mips_cp1_names_mips3264, mips_hwr_names_numeric },
665 1.1.1.2 christos
666 1.1.1.2 christos { "octeon3", 1, bfd_mach_mips_octeon3, CPU_OCTEON3,
667 1.1.1.2 christos ISA_MIPS64R5 | INSN_OCTEON3, ASE_VIRT | ASE_VIRT64,
668 1.1.1.2 christos mips_cp0_names_numeric,
669 1.1.1.2 christos NULL, 0, mips_cp1_names_mips3264, mips_hwr_names_numeric },
670 1.1 christos
671 1.1 christos { "xlr", 1, bfd_mach_mips_xlr, CPU_XLR,
672 1.1 christos ISA_MIPS64 | INSN_XLR, 0,
673 1.1 christos mips_cp0_names_xlr,
674 1.1 christos mips_cp0sel_names_xlr, ARRAY_SIZE (mips_cp0sel_names_xlr),
675 1.1 christos mips_cp1_names_mips3264, mips_hwr_names_numeric },
676 1.1 christos
677 1.1 christos /* XLP is mostly like XLR, with the prominent exception it is being
678 1.1 christos MIPS64R2. */
679 1.1 christos { "xlp", 1, bfd_mach_mips_xlr, CPU_XLR,
680 1.1 christos ISA_MIPS64R2 | INSN_XLR, 0,
681 1.1 christos mips_cp0_names_xlr,
682 1.1 christos mips_cp0sel_names_xlr, ARRAY_SIZE (mips_cp0sel_names_xlr),
683 1.1 christos mips_cp1_names_mips3264, mips_hwr_names_numeric },
684 1.1 christos
685 1.1 christos /* This entry, mips16, is here only for ISA/processor selection; do
686 1.1.1.5 christos not print its name. */
687 1.1.1.5 christos { "", 1, bfd_mach_mips16, CPU_MIPS16, ISA_MIPS64,
688 1.1 christos ASE_MIPS16E2 | ASE_MIPS16E2_MT,
689 1.1 christos mips_cp0_names_numeric, NULL, 0, mips_cp1_names_numeric,
690 1.1 christos mips_hwr_names_numeric },
691 1.1 christos };
692 1.1 christos
693 1.1 christos /* ISA and processor type to disassemble for, and register names to use.
694 1.1 christos set_default_mips_dis_options and parse_mips_dis_options fill in these
695 1.1 christos values. */
696 1.1 christos static int mips_processor;
697 1.1 christos static int mips_isa;
698 1.1 christos static int mips_ase;
699 1.1 christos static int micromips_ase;
700 1.1 christos static const char * const *mips_gpr_names;
701 1.1 christos static const char * const *mips_fpr_names;
702 1.1 christos static const char * const *mips_cp0_names;
703 1.1 christos static const struct mips_cp0sel_name *mips_cp0sel_names;
704 1.1 christos static int mips_cp0sel_names_len;
705 1.1 christos static const char * const *mips_cp1_names;
706 1.1 christos static const char * const *mips_hwr_names;
707 1.1 christos
708 1.1 christos /* Other options */
709 1.1 christos static int no_aliases; /* If set disassemble as most general inst. */
710 1.1 christos
711 1.1 christos static const struct mips_abi_choice *
713 1.1 christos choose_abi_by_name (const char *name, unsigned int namelen)
714 1.1 christos {
715 1.1 christos const struct mips_abi_choice *c;
716 1.1 christos unsigned int i;
717 1.1 christos
718 1.1 christos for (i = 0, c = NULL; i < ARRAY_SIZE (mips_abi_choices) && c == NULL; i++)
719 1.1 christos if (strncmp (mips_abi_choices[i].name, name, namelen) == 0
720 1.1 christos && strlen (mips_abi_choices[i].name) == namelen)
721 1.1 christos c = &mips_abi_choices[i];
722 1.1 christos
723 1.1 christos return c;
724 1.1 christos }
725 1.1 christos
726 1.1 christos static const struct mips_arch_choice *
727 1.1 christos choose_arch_by_name (const char *name, unsigned int namelen)
728 1.1 christos {
729 1.1 christos const struct mips_arch_choice *c = NULL;
730 1.1 christos unsigned int i;
731 1.1 christos
732 1.1 christos for (i = 0, c = NULL; i < ARRAY_SIZE (mips_arch_choices) && c == NULL; i++)
733 1.1 christos if (strncmp (mips_arch_choices[i].name, name, namelen) == 0
734 1.1 christos && strlen (mips_arch_choices[i].name) == namelen)
735 1.1 christos c = &mips_arch_choices[i];
736 1.1 christos
737 1.1 christos return c;
738 1.1 christos }
739 1.1 christos
740 1.1 christos static const struct mips_arch_choice *
741 1.1 christos choose_arch_by_number (unsigned long mach)
742 1.1 christos {
743 1.1 christos static unsigned long hint_bfd_mach;
744 1.1 christos static const struct mips_arch_choice *hint_arch_choice;
745 1.1 christos const struct mips_arch_choice *c;
746 1.1 christos unsigned int i;
747 1.1 christos
748 1.1 christos /* We optimize this because even if the user specifies no
749 1.1 christos flags, this will be done for every instruction! */
750 1.1 christos if (hint_bfd_mach == mach
751 1.1 christos && hint_arch_choice != NULL
752 1.1 christos && hint_arch_choice->bfd_mach == hint_bfd_mach)
753 1.1 christos return hint_arch_choice;
754 1.1 christos
755 1.1 christos for (i = 0, c = NULL; i < ARRAY_SIZE (mips_arch_choices) && c == NULL; i++)
756 1.1 christos {
757 1.1 christos if (mips_arch_choices[i].bfd_mach_valid
758 1.1 christos && mips_arch_choices[i].bfd_mach == mach)
759 1.1 christos {
760 1.1 christos c = &mips_arch_choices[i];
761 1.1 christos hint_bfd_mach = mach;
762 1.1 christos hint_arch_choice = c;
763 1.1 christos }
764 1.1 christos }
765 1.1 christos return c;
766 1.1 christos }
767 1.1 christos
768 1.1 christos /* Check if the object uses NewABI conventions. */
769 1.1 christos
770 1.1 christos static int
771 1.1 christos is_newabi (Elf_Internal_Ehdr *header)
772 1.1 christos {
773 1.1 christos /* There are no old-style ABIs which use 64-bit ELF. */
774 1.1 christos if (header->e_ident[EI_CLASS] == ELFCLASS64)
775 1.1 christos return 1;
776 1.1 christos
777 1.1 christos /* If a 32-bit ELF file, n32 is a new-style ABI. */
778 1.1 christos if ((header->e_flags & EF_MIPS_ABI2) != 0)
779 1.1 christos return 1;
780 1.1 christos
781 1.1 christos return 0;
782 1.1 christos }
783 1.1 christos
784 1.1 christos /* Check if the object has microMIPS ASE code. */
785 1.1 christos
786 1.1 christos static int
787 1.1 christos is_micromips (Elf_Internal_Ehdr *header)
788 1.1 christos {
789 1.1 christos if ((header->e_flags & EF_MIPS_ARCH_ASE_MICROMIPS) != 0)
790 1.1 christos return 1;
791 1.1 christos
792 1.1 christos return 0;
793 1.1.1.4 christos }
794 1.1.1.4 christos
795 1.1.1.4 christos /* Convert ASE flags from .MIPS.abiflags to internal values. */
796 1.1.1.4 christos
797 1.1.1.4 christos static unsigned long
798 1.1.1.4 christos mips_convert_abiflags_ases (unsigned long afl_ases)
799 1.1.1.4 christos {
800 1.1.1.4 christos unsigned long opcode_ases = 0;
801 1.1.1.4 christos
802 1.1.1.4 christos if (afl_ases & AFL_ASE_DSP)
803 1.1.1.4 christos opcode_ases |= ASE_DSP;
804 1.1.1.4 christos if (afl_ases & AFL_ASE_DSPR2)
805 1.1.1.4 christos opcode_ases |= ASE_DSPR2;
806 1.1.1.4 christos if (afl_ases & AFL_ASE_EVA)
807 1.1.1.4 christos opcode_ases |= ASE_EVA;
808 1.1.1.4 christos if (afl_ases & AFL_ASE_MCU)
809 1.1.1.4 christos opcode_ases |= ASE_MCU;
810 1.1.1.4 christos if (afl_ases & AFL_ASE_MDMX)
811 1.1.1.4 christos opcode_ases |= ASE_MDMX;
812 1.1.1.4 christos if (afl_ases & AFL_ASE_MIPS3D)
813 1.1.1.4 christos opcode_ases |= ASE_MIPS3D;
814 1.1.1.4 christos if (afl_ases & AFL_ASE_MT)
815 1.1.1.4 christos opcode_ases |= ASE_MT;
816 1.1.1.4 christos if (afl_ases & AFL_ASE_SMARTMIPS)
817 1.1.1.4 christos opcode_ases |= ASE_SMARTMIPS;
818 1.1.1.4 christos if (afl_ases & AFL_ASE_VIRT)
819 1.1.1.4 christos opcode_ases |= ASE_VIRT;
820 1.1.1.4 christos if (afl_ases & AFL_ASE_MSA)
821 1.1.1.4 christos opcode_ases |= ASE_MSA;
822 1.1.1.4 christos if (afl_ases & AFL_ASE_XPA)
823 1.1.1.4 christos opcode_ases |= ASE_XPA;
824 1.1.1.5 christos if (afl_ases & AFL_ASE_DSPR3)
825 1.1.1.5 christos opcode_ases |= ASE_DSPR3;
826 1.1.1.4 christos if (afl_ases & AFL_ASE_MIPS16E2)
827 1.1.1.4 christos opcode_ases |= ASE_MIPS16E2;
828 1.1.1.4 christos return opcode_ases;
829 1.1.1.5 christos }
830 1.1.1.5 christos
831 1.1.1.5 christos /* Calculate combination ASE flags from regular ASE flags. */
832 1.1.1.5 christos
833 1.1.1.5 christos static unsigned long
834 1.1.1.5 christos mips_calculate_combination_ases (unsigned long opcode_ases)
835 1.1.1.5 christos {
836 1.1.1.5 christos unsigned long combination_ases = 0;
837 1.1.1.5 christos
838 1.1.1.5 christos if ((opcode_ases & (ASE_XPA | ASE_VIRT)) == (ASE_XPA | ASE_VIRT))
839 1.1.1.5 christos combination_ases |= ASE_XPA_VIRT;
840 1.1.1.5 christos if ((opcode_ases & (ASE_MIPS16E2 | ASE_MT)) == (ASE_MIPS16E2 | ASE_MT))
841 1.1.1.5 christos combination_ases |= ASE_MIPS16E2_MT;
842 1.1.1.5 christos return combination_ases;
843 1.1 christos }
844 1.1 christos
845 1.1 christos static void
846 1.1 christos set_default_mips_dis_options (struct disassemble_info *info)
847 1.1 christos {
848 1.1 christos const struct mips_arch_choice *chosen_arch;
849 1.1 christos
850 1.1 christos /* Defaults: mipsIII/r3000 (?!), no microMIPS ASE (any compressed code
851 1.1 christos is MIPS16 ASE) (o)32-style ("oldabi") GPR names, and numeric FPR,
852 1.1 christos CP0 register, and HWR names. */
853 1.1 christos mips_isa = ISA_MIPS3;
854 1.1 christos mips_processor = CPU_R3000;
855 1.1 christos micromips_ase = 0;
856 1.1 christos mips_ase = 0;
857 1.1 christos mips_gpr_names = mips_gpr_names_oldabi;
858 1.1 christos mips_fpr_names = mips_fpr_names_numeric;
859 1.1 christos mips_cp0_names = mips_cp0_names_numeric;
860 1.1 christos mips_cp0sel_names = NULL;
861 1.1 christos mips_cp0sel_names_len = 0;
862 1.1 christos mips_cp1_names = mips_cp1_names_numeric;
863 1.1 christos mips_hwr_names = mips_hwr_names_numeric;
864 1.1 christos no_aliases = 0;
865 1.1 christos
866 1.1 christos /* Set ISA, architecture, and cp0 register names as best we can. */
867 1.1 christos #if ! SYMTAB_AVAILABLE
868 1.1 christos /* This is running out on a target machine, not in a host tool.
869 1.1 christos FIXME: Where does mips_target_info come from? */
870 1.1 christos target_processor = mips_target_info.processor;
871 1.1 christos mips_isa = mips_target_info.isa;
872 1.1 christos mips_ase = mips_target_info.ase;
873 1.1 christos #else
874 1.1 christos chosen_arch = choose_arch_by_number (info->mach);
875 1.1 christos if (chosen_arch != NULL)
876 1.1 christos {
877 1.1 christos mips_processor = chosen_arch->processor;
878 1.1 christos mips_isa = chosen_arch->isa;
879 1.1 christos mips_ase = chosen_arch->ase;
880 1.1 christos mips_cp0_names = chosen_arch->cp0_names;
881 1.1 christos mips_cp0sel_names = chosen_arch->cp0sel_names;
882 1.1 christos mips_cp0sel_names_len = chosen_arch->cp0sel_names_len;
883 1.1 christos mips_cp1_names = chosen_arch->cp1_names;
884 1.1.1.4 christos mips_hwr_names = chosen_arch->hwr_names;
885 1.1.1.4 christos }
886 1.1.1.4 christos
887 1.1.1.4 christos /* Update settings according to the ELF file header flags. */
888 1.1.1.4 christos if (info->flavour == bfd_target_elf_flavour && info->section != NULL)
889 1.1.1.4 christos {
890 1.1.1.4 christos struct bfd *abfd = info->section->owner;
891 1.1.1.4 christos Elf_Internal_Ehdr *header = elf_elfheader (abfd);
892 1.1.1.4 christos Elf_Internal_ABIFlags_v0 *abiflags = NULL;
893 1.1.1.4 christos
894 1.1.1.4 christos /* We won't ever get here if !HAVE_BFD_MIPS_ELF_GET_ABIFLAGS,
895 1.1.1.4 christos because we won't then have a MIPS/ELF BFD, however we need
896 1.1.1.4 christos to guard against a link error in a `--enable-targets=...'
897 1.1.1.4 christos configuration with a 32-bit host where the MIPS target is
898 1.1.1.4 christos a secondary, or with MIPS/ECOFF configurations. */
899 1.1.1.4 christos #ifdef HAVE_BFD_MIPS_ELF_GET_ABIFLAGS
900 1.1.1.4 christos abiflags = bfd_mips_elf_get_abiflags (abfd);
901 1.1.1.4 christos #endif
902 1.1.1.4 christos /* If an ELF "newabi" binary, use the n32/(n)64 GPR names. */
903 1.1.1.4 christos if (is_newabi (header))
904 1.1.1.4 christos mips_gpr_names = mips_gpr_names_newabi;
905 1.1.1.4 christos /* If a microMIPS binary, then don't use MIPS16 bindings. */
906 1.1.1.4 christos micromips_ase = is_micromips (header);
907 1.1.1.4 christos /* OR in any extra ASE flags set in ELF file structures. */
908 1.1.1.4 christos if (abiflags)
909 1.1.1.4 christos mips_ase |= mips_convert_abiflags_ases (abiflags->ases);
910 1.1.1.4 christos else if (header->e_flags & EF_MIPS_ARCH_ASE_MDMX)
911 1.1 christos mips_ase |= ASE_MDMX;
912 1.1.1.5 christos }
913 1.1 christos #endif
914 1.1 christos mips_ase |= mips_calculate_combination_ases (mips_ase);
915 1.1.1.5 christos }
916 1.1.1.5 christos
917 1.1 christos /* Parse an ASE disassembler option and set the corresponding global
918 1.1.1.5 christos ASE flag(s). Return TRUE if successful, FALSE otherwise. */
919 1.1.1.5 christos
920 1.1.1.5 christos static bfd_boolean
921 1.1 christos parse_mips_ase_option (const char *option)
922 1.1 christos {
923 1.1 christos if (CONST_STRNEQ (option, "msa"))
924 1.1.1.2 christos {
925 1.1.1.2 christos mips_ase |= ASE_MSA;
926 1.1.1.2 christos if ((mips_isa & INSN_ISA_MASK) == ISA_MIPS64R2
927 1.1.1.2 christos || (mips_isa & INSN_ISA_MASK) == ISA_MIPS64R3
928 1.1 christos || (mips_isa & INSN_ISA_MASK) == ISA_MIPS64R5
929 1.1.1.5 christos || (mips_isa & INSN_ISA_MASK) == ISA_MIPS64R6)
930 1.1 christos mips_ase |= ASE_MSA64;
931 1.1 christos return TRUE;
932 1.1 christos }
933 1.1 christos
934 1.1 christos if (CONST_STRNEQ (option, "virt"))
935 1.1.1.2 christos {
936 1.1.1.2 christos mips_ase |= ASE_VIRT;
937 1.1.1.2 christos if (mips_isa & ISA_MIPS64R2
938 1.1.1.2 christos || mips_isa & ISA_MIPS64R3
939 1.1 christos || mips_isa & ISA_MIPS64R5
940 1.1.1.5 christos || mips_isa & ISA_MIPS64R6)
941 1.1 christos mips_ase |= ASE_VIRT64;
942 1.1.1.2 christos return TRUE;
943 1.1.1.2 christos }
944 1.1.1.2 christos
945 1.1.1.2 christos if (CONST_STRNEQ (option, "xpa"))
946 1.1.1.5 christos {
947 1.1.1.5 christos mips_ase |= ASE_XPA;
948 1.1.1.5 christos return TRUE;
949 1.1.1.5 christos }
950 1.1.1.5 christos
951 1.1.1.5 christos if (CONST_STRNEQ (option, "ginv"))
952 1.1.1.5 christos {
953 1.1.1.5 christos mips_ase |= ASE_GINV;
954 1.1.1.5 christos return TRUE;
955 1.1.1.5 christos }
956 1.1.1.5 christos
957 1.1.1.5 christos if (CONST_STRNEQ (option, "loongson-mmi"))
958 1.1.1.5 christos {
959 1.1.1.5 christos mips_ase |= ASE_LOONGSON_MMI;
960 1.1.1.5 christos return TRUE;
961 1.1.1.5 christos }
962 1.1.1.5 christos
963 1.1.1.5 christos if (CONST_STRNEQ (option, "loongson-cam"))
964 1.1.1.5 christos {
965 1.1.1.5 christos mips_ase |= ASE_LOONGSON_CAM;
966 1.1.1.5 christos return TRUE;
967 1.1.1.5 christos }
968 1.1.1.5 christos
969 1.1.1.5 christos /* Put here for match ext2 frist */
970 1.1.1.5 christos if (CONST_STRNEQ (option, "loongson-ext2"))
971 1.1.1.5 christos {
972 1.1.1.5 christos mips_ase |= ASE_LOONGSON_EXT2;
973 1.1.1.5 christos return TRUE;
974 1.1.1.5 christos }
975 1.1.1.5 christos
976 1.1.1.5 christos if (CONST_STRNEQ (option, "loongson-ext"))
977 1.1.1.5 christos {
978 1.1.1.5 christos mips_ase |= ASE_LOONGSON_EXT;
979 1.1.1.5 christos return TRUE;
980 1.1.1.5 christos }
981 1.1.1.5 christos
982 1.1.1.5 christos return FALSE;
983 1.1.1.5 christos }
984 1.1.1.5 christos
985 1.1.1.5 christos static void
986 1.1.1.5 christos parse_mips_dis_option (const char *option, unsigned int len)
987 1.1.1.5 christos {
988 1.1.1.5 christos unsigned int i, optionlen, vallen;
989 1.1.1.5 christos const char *val;
990 1.1.1.5 christos const struct mips_abi_choice *chosen_abi;
991 1.1.1.5 christos const struct mips_arch_choice *chosen_arch;
992 1.1.1.5 christos
993 1.1.1.5 christos /* Try to match options that are simple flags */
994 1.1.1.5 christos if (CONST_STRNEQ (option, "no-aliases"))
995 1.1.1.2 christos {
996 1.1.1.2 christos no_aliases = 1;
997 1.1.1.3 christos return;
998 1.1.1.5 christos }
999 1.1.1.5 christos
1000 1.1.1.5 christos if (parse_mips_ase_option (option))
1001 1.1.1.5 christos {
1002 1.1.1.5 christos mips_ase |= mips_calculate_combination_ases (mips_ase);
1003 1.1.1.3 christos return;
1004 1.1 christos }
1005 1.1 christos
1006 1.1 christos /* Look for the = that delimits the end of the option name. */
1007 1.1 christos for (i = 0; i < len; i++)
1008 1.1 christos if (option[i] == '=')
1009 1.1 christos break;
1010 1.1 christos
1011 1.1 christos if (i == 0) /* Invalid option: no name before '='. */
1012 1.1 christos return;
1013 1.1 christos if (i == len) /* Invalid option: no '='. */
1014 1.1 christos return;
1015 1.1 christos if (i == (len - 1)) /* Invalid option: no value after '='. */
1016 1.1 christos return;
1017 1.1 christos
1018 1.1 christos optionlen = i;
1019 1.1 christos val = option + (optionlen + 1);
1020 1.1 christos vallen = len - (optionlen + 1);
1021 1.1 christos
1022 1.1 christos if (strncmp ("gpr-names", option, optionlen) == 0
1023 1.1 christos && strlen ("gpr-names") == optionlen)
1024 1.1 christos {
1025 1.1 christos chosen_abi = choose_abi_by_name (val, vallen);
1026 1.1 christos if (chosen_abi != NULL)
1027 1.1 christos mips_gpr_names = chosen_abi->gpr_names;
1028 1.1 christos return;
1029 1.1 christos }
1030 1.1 christos
1031 1.1 christos if (strncmp ("fpr-names", option, optionlen) == 0
1032 1.1 christos && strlen ("fpr-names") == optionlen)
1033 1.1 christos {
1034 1.1 christos chosen_abi = choose_abi_by_name (val, vallen);
1035 1.1 christos if (chosen_abi != NULL)
1036 1.1 christos mips_fpr_names = chosen_abi->fpr_names;
1037 1.1 christos return;
1038 1.1 christos }
1039 1.1 christos
1040 1.1 christos if (strncmp ("cp0-names", option, optionlen) == 0
1041 1.1 christos && strlen ("cp0-names") == optionlen)
1042 1.1 christos {
1043 1.1 christos chosen_arch = choose_arch_by_name (val, vallen);
1044 1.1 christos if (chosen_arch != NULL)
1045 1.1 christos {
1046 1.1 christos mips_cp0_names = chosen_arch->cp0_names;
1047 1.1 christos mips_cp0sel_names = chosen_arch->cp0sel_names;
1048 1.1 christos mips_cp0sel_names_len = chosen_arch->cp0sel_names_len;
1049 1.1 christos }
1050 1.1 christos return;
1051 1.1 christos }
1052 1.1 christos
1053 1.1 christos if (strncmp ("cp1-names", option, optionlen) == 0
1054 1.1 christos && strlen ("cp1-names") == optionlen)
1055 1.1 christos {
1056 1.1 christos chosen_arch = choose_arch_by_name (val, vallen);
1057 1.1 christos if (chosen_arch != NULL)
1058 1.1 christos mips_cp1_names = chosen_arch->cp1_names;
1059 1.1 christos return;
1060 1.1 christos }
1061 1.1 christos
1062 1.1 christos if (strncmp ("hwr-names", option, optionlen) == 0
1063 1.1 christos && strlen ("hwr-names") == optionlen)
1064 1.1 christos {
1065 1.1 christos chosen_arch = choose_arch_by_name (val, vallen);
1066 1.1 christos if (chosen_arch != NULL)
1067 1.1 christos mips_hwr_names = chosen_arch->hwr_names;
1068 1.1 christos return;
1069 1.1 christos }
1070 1.1 christos
1071 1.1 christos if (strncmp ("reg-names", option, optionlen) == 0
1072 1.1 christos && strlen ("reg-names") == optionlen)
1073 1.1 christos {
1074 1.1 christos /* We check both ABI and ARCH here unconditionally, so
1075 1.1 christos that "numeric" will do the desirable thing: select
1076 1.1 christos numeric register names for all registers. Other than
1077 1.1 christos that, a given name probably won't match both. */
1078 1.1 christos chosen_abi = choose_abi_by_name (val, vallen);
1079 1.1 christos if (chosen_abi != NULL)
1080 1.1 christos {
1081 1.1 christos mips_gpr_names = chosen_abi->gpr_names;
1082 1.1 christos mips_fpr_names = chosen_abi->fpr_names;
1083 1.1 christos }
1084 1.1 christos chosen_arch = choose_arch_by_name (val, vallen);
1085 1.1 christos if (chosen_arch != NULL)
1086 1.1 christos {
1087 1.1 christos mips_cp0_names = chosen_arch->cp0_names;
1088 1.1 christos mips_cp0sel_names = chosen_arch->cp0sel_names;
1089 1.1 christos mips_cp0sel_names_len = chosen_arch->cp0sel_names_len;
1090 1.1 christos mips_cp1_names = chosen_arch->cp1_names;
1091 1.1 christos mips_hwr_names = chosen_arch->hwr_names;
1092 1.1 christos }
1093 1.1 christos return;
1094 1.1 christos }
1095 1.1 christos
1096 1.1 christos /* Invalid option. */
1097 1.1 christos }
1098 1.1 christos
1099 1.1 christos static void
1100 1.1 christos parse_mips_dis_options (const char *options)
1101 1.1 christos {
1102 1.1 christos const char *option_end;
1103 1.1 christos
1104 1.1 christos if (options == NULL)
1105 1.1 christos return;
1106 1.1 christos
1107 1.1 christos while (*options != '\0')
1108 1.1 christos {
1109 1.1 christos /* Skip empty options. */
1110 1.1 christos if (*options == ',')
1111 1.1 christos {
1112 1.1 christos options++;
1113 1.1 christos continue;
1114 1.1 christos }
1115 1.1 christos
1116 1.1 christos /* We know that *options is neither NUL or a comma. */
1117 1.1 christos option_end = options + 1;
1118 1.1 christos while (*option_end != ',' && *option_end != '\0')
1119 1.1 christos option_end++;
1120 1.1 christos
1121 1.1 christos parse_mips_dis_option (options, option_end - options);
1122 1.1 christos
1123 1.1 christos /* Go on to the next one. If option_end points to a comma, it
1124 1.1 christos will be skipped above. */
1125 1.1 christos options = option_end;
1126 1.1 christos }
1127 1.1 christos }
1128 1.1 christos
1129 1.1 christos static const struct mips_cp0sel_name *
1130 1.1 christos lookup_mips_cp0sel_name (const struct mips_cp0sel_name *names,
1131 1.1 christos unsigned int len,
1132 1.1 christos unsigned int cp0reg,
1133 1.1 christos unsigned int sel)
1134 1.1 christos {
1135 1.1 christos unsigned int i;
1136 1.1 christos
1137 1.1 christos for (i = 0; i < len; i++)
1138 1.1 christos if (names[i].cp0reg == cp0reg && names[i].sel == sel)
1139 1.1 christos return &names[i];
1140 1.1 christos return NULL;
1141 1.1 christos }
1142 1.1 christos
1143 1.1 christos /* Print register REGNO, of type TYPE, for instruction OPCODE. */
1144 1.1 christos
1145 1.1 christos static void
1146 1.1 christos print_reg (struct disassemble_info *info, const struct mips_opcode *opcode,
1147 1.1 christos enum mips_reg_operand_type type, int regno)
1148 1.1 christos {
1149 1.1 christos switch (type)
1150 1.1 christos {
1151 1.1 christos case OP_REG_GP:
1152 1.1 christos info->fprintf_func (info->stream, "%s", mips_gpr_names[regno]);
1153 1.1 christos break;
1154 1.1 christos
1155 1.1 christos case OP_REG_FP:
1156 1.1 christos info->fprintf_func (info->stream, "%s", mips_fpr_names[regno]);
1157 1.1 christos break;
1158 1.1 christos
1159 1.1 christos case OP_REG_CCC:
1160 1.1 christos if (opcode->pinfo & (FP_D | FP_S))
1161 1.1 christos info->fprintf_func (info->stream, "$fcc%d", regno);
1162 1.1 christos else
1163 1.1 christos info->fprintf_func (info->stream, "$cc%d", regno);
1164 1.1 christos break;
1165 1.1 christos
1166 1.1 christos case OP_REG_VEC:
1167 1.1 christos if (opcode->membership & INSN_5400)
1168 1.1 christos info->fprintf_func (info->stream, "$f%d", regno);
1169 1.1 christos else
1170 1.1 christos info->fprintf_func (info->stream, "$v%d", regno);
1171 1.1 christos break;
1172 1.1 christos
1173 1.1 christos case OP_REG_ACC:
1174 1.1 christos info->fprintf_func (info->stream, "$ac%d", regno);
1175 1.1 christos break;
1176 1.1 christos
1177 1.1 christos case OP_REG_COPRO:
1178 1.1 christos if (opcode->name[strlen (opcode->name) - 1] == '0')
1179 1.1 christos info->fprintf_func (info->stream, "%s", mips_cp0_names[regno]);
1180 1.1 christos else if (opcode->name[strlen (opcode->name) - 1] == '1')
1181 1.1 christos info->fprintf_func (info->stream, "%s", mips_cp1_names[regno]);
1182 1.1 christos else
1183 1.1 christos info->fprintf_func (info->stream, "$%d", regno);
1184 1.1 christos break;
1185 1.1 christos
1186 1.1 christos case OP_REG_HW:
1187 1.1 christos info->fprintf_func (info->stream, "%s", mips_hwr_names[regno]);
1188 1.1 christos break;
1189 1.1 christos
1190 1.1 christos case OP_REG_VF:
1191 1.1 christos info->fprintf_func (info->stream, "$vf%d", regno);
1192 1.1 christos break;
1193 1.1 christos
1194 1.1 christos case OP_REG_VI:
1195 1.1 christos info->fprintf_func (info->stream, "$vi%d", regno);
1196 1.1 christos break;
1197 1.1 christos
1198 1.1 christos case OP_REG_R5900_I:
1199 1.1 christos info->fprintf_func (info->stream, "$I");
1200 1.1 christos break;
1201 1.1 christos
1202 1.1 christos case OP_REG_R5900_Q:
1203 1.1 christos info->fprintf_func (info->stream, "$Q");
1204 1.1 christos break;
1205 1.1 christos
1206 1.1 christos case OP_REG_R5900_R:
1207 1.1 christos info->fprintf_func (info->stream, "$R");
1208 1.1 christos break;
1209 1.1 christos
1210 1.1 christos case OP_REG_R5900_ACC:
1211 1.1 christos info->fprintf_func (info->stream, "$ACC");
1212 1.1 christos break;
1213 1.1 christos
1214 1.1 christos case OP_REG_MSA:
1215 1.1 christos info->fprintf_func (info->stream, "$w%d", regno);
1216 1.1 christos break;
1217 1.1 christos
1218 1.1 christos case OP_REG_MSA_CTRL:
1219 1.1 christos info->fprintf_func (info->stream, "%s", msa_control_names[regno]);
1220 1.1 christos break;
1221 1.1 christos
1222 1.1 christos }
1223 1.1 christos }
1224 1.1 christos
1225 1.1 christos /* Used to track the state carried over from previous operands in
1227 1.1 christos an instruction. */
1228 1.1 christos struct mips_print_arg_state {
1229 1.1 christos /* The value of the last OP_INT seen. We only use this for OP_MSB,
1230 1.1 christos where the value is known to be unsigned and small. */
1231 1.1 christos unsigned int last_int;
1232 1.1 christos
1233 1.1 christos /* The type and number of the last OP_REG seen. We only use this for
1234 1.1.1.2 christos OP_REPEAT_DEST_REG and OP_REPEAT_PREV_REG. */
1235 1.1.1.2 christos enum mips_reg_operand_type last_reg_type;
1236 1.1 christos unsigned int last_regno;
1237 1.1 christos unsigned int dest_regno;
1238 1.1 christos unsigned int seen_dest;
1239 1.1 christos };
1240 1.1 christos
1241 1.1 christos /* Initialize STATE for the start of an instruction. */
1242 1.1 christos
1243 1.1 christos static inline void
1244 1.1 christos init_print_arg_state (struct mips_print_arg_state *state)
1245 1.1 christos {
1246 1.1 christos memset (state, 0, sizeof (*state));
1247 1.1 christos }
1248 1.1 christos
1249 1.1 christos /* Print OP_VU0_SUFFIX or OP_VU0_MATCH_SUFFIX operand OPERAND,
1250 1.1 christos whose value is given by UVAL. */
1251 1.1 christos
1252 1.1 christos static void
1253 1.1 christos print_vu0_channel (struct disassemble_info *info,
1254 1.1 christos const struct mips_operand *operand, unsigned int uval)
1255 1.1 christos {
1256 1.1 christos if (operand->size == 4)
1257 1.1 christos info->fprintf_func (info->stream, "%s%s%s%s",
1258 1.1 christos uval & 8 ? "x" : "",
1259 1.1 christos uval & 4 ? "y" : "",
1260 1.1 christos uval & 2 ? "z" : "",
1261 1.1 christos uval & 1 ? "w" : "");
1262 1.1 christos else if (operand->size == 2)
1263 1.1 christos info->fprintf_func (info->stream, "%c", "xyzw"[uval]);
1264 1.1 christos else
1265 1.1.1.2 christos abort ();
1266 1.1.1.2 christos }
1267 1.1.1.2 christos
1268 1.1.1.2 christos /* Record information about a register operand. */
1269 1.1.1.2 christos
1270 1.1.1.2 christos static void
1271 1.1.1.2 christos mips_seen_register (struct mips_print_arg_state *state,
1272 1.1.1.2 christos unsigned int regno,
1273 1.1.1.2 christos enum mips_reg_operand_type reg_type)
1274 1.1.1.2 christos {
1275 1.1.1.2 christos state->last_reg_type = reg_type;
1276 1.1.1.2 christos state->last_regno = regno;
1277 1.1.1.2 christos
1278 1.1.1.2 christos if (!state->seen_dest)
1279 1.1.1.2 christos {
1280 1.1.1.2 christos state->seen_dest = 1;
1281 1.1.1.2 christos state->dest_regno = regno;
1282 1.1.1.5 christos }
1283 1.1.1.5 christos }
1284 1.1.1.5 christos
1285 1.1.1.5 christos /* Print SAVE/RESTORE instruction operands according to the argument
1286 1.1.1.5 christos register mask AMASK, the number of static registers saved NSREG,
1287 1.1.1.5 christos the $ra, $s0 and $s1 register specifiers RA, S0 and S1 respectively,
1288 1.1.1.5 christos and the frame size FRAME_SIZE. */
1289 1.1.1.5 christos
1290 1.1.1.5 christos static void
1291 1.1.1.5 christos mips_print_save_restore (struct disassemble_info *info, unsigned int amask,
1292 1.1.1.5 christos unsigned int nsreg, unsigned int ra,
1293 1.1.1.5 christos unsigned int s0, unsigned int s1,
1294 1.1.1.5 christos unsigned int frame_size)
1295 1.1.1.5 christos {
1296 1.1.1.5 christos const fprintf_ftype infprintf = info->fprintf_func;
1297 1.1.1.5 christos unsigned int nargs, nstatics, smask, i, j;
1298 1.1.1.5 christos void *is = info->stream;
1299 1.1.1.5 christos const char *sep;
1300 1.1.1.5 christos
1301 1.1.1.5 christos if (amask == MIPS_SVRS_ALL_ARGS)
1302 1.1.1.5 christos {
1303 1.1.1.5 christos nargs = 4;
1304 1.1.1.5 christos nstatics = 0;
1305 1.1.1.5 christos }
1306 1.1.1.5 christos else if (amask == MIPS_SVRS_ALL_STATICS)
1307 1.1.1.5 christos {
1308 1.1.1.5 christos nargs = 0;
1309 1.1.1.5 christos nstatics = 4;
1310 1.1.1.5 christos }
1311 1.1.1.5 christos else
1312 1.1.1.5 christos {
1313 1.1.1.5 christos nargs = amask >> 2;
1314 1.1.1.5 christos nstatics = amask & 3;
1315 1.1.1.5 christos }
1316 1.1.1.5 christos
1317 1.1.1.5 christos sep = "";
1318 1.1.1.5 christos if (nargs > 0)
1319 1.1.1.5 christos {
1320 1.1.1.5 christos infprintf (is, "%s", mips_gpr_names[4]);
1321 1.1.1.5 christos if (nargs > 1)
1322 1.1.1.5 christos infprintf (is, "-%s", mips_gpr_names[4 + nargs - 1]);
1323 1.1.1.5 christos sep = ",";
1324 1.1.1.5 christos }
1325 1.1.1.5 christos
1326 1.1.1.5 christos infprintf (is, "%s%d", sep, frame_size);
1327 1.1.1.5 christos
1328 1.1.1.5 christos if (ra) /* $ra */
1329 1.1.1.5 christos infprintf (is, ",%s", mips_gpr_names[31]);
1330 1.1.1.5 christos
1331 1.1.1.5 christos smask = 0;
1332 1.1.1.5 christos if (s0) /* $s0 */
1333 1.1.1.5 christos smask |= 1 << 0;
1334 1.1.1.5 christos if (s1) /* $s1 */
1335 1.1.1.5 christos smask |= 1 << 1;
1336 1.1.1.5 christos if (nsreg > 0) /* $s2-$s8 */
1337 1.1.1.5 christos smask |= ((1 << nsreg) - 1) << 2;
1338 1.1.1.5 christos
1339 1.1.1.5 christos for (i = 0; i < 9; i++)
1340 1.1.1.5 christos if (smask & (1 << i))
1341 1.1.1.5 christos {
1342 1.1.1.5 christos infprintf (is, ",%s", mips_gpr_names[i == 8 ? 30 : (16 + i)]);
1343 1.1.1.5 christos /* Skip over string of set bits. */
1344 1.1.1.5 christos for (j = i; smask & (2 << j); j++)
1345 1.1.1.5 christos continue;
1346 1.1.1.5 christos if (j > i)
1347 1.1.1.5 christos infprintf (is, "-%s", mips_gpr_names[j == 8 ? 30 : (16 + j)]);
1348 1.1.1.5 christos i = j + 1;
1349 1.1.1.5 christos }
1350 1.1.1.5 christos /* Statics $ax - $a3. */
1351 1.1.1.5 christos if (nstatics == 1)
1352 1.1.1.5 christos infprintf (is, ",%s", mips_gpr_names[7]);
1353 1.1.1.5 christos else if (nstatics > 0)
1354 1.1.1.5 christos infprintf (is, ",%s-%s",
1355 1.1.1.5 christos mips_gpr_names[7 - nstatics + 1],
1356 1.1.1.5 christos mips_gpr_names[7]);
1357 1.1 christos }
1358 1.1 christos
1359 1.1 christos
1360 1.1 christos /* Print operand OPERAND of OPCODE, using STATE to track inter-operand state.
1361 1.1 christos UVAL is the encoding of the operand (shifted into bit 0) and BASE_PC is
1362 1.1 christos the base address for OP_PCREL operands. */
1363 1.1 christos
1364 1.1 christos static void
1365 1.1 christos print_insn_arg (struct disassemble_info *info,
1366 1.1 christos struct mips_print_arg_state *state,
1367 1.1 christos const struct mips_opcode *opcode,
1368 1.1 christos const struct mips_operand *operand,
1369 1.1 christos bfd_vma base_pc,
1370 1.1 christos unsigned int uval)
1371 1.1 christos {
1372 1.1 christos const fprintf_ftype infprintf = info->fprintf_func;
1373 1.1 christos void *is = info->stream;
1374 1.1 christos
1375 1.1 christos switch (operand->type)
1376 1.1 christos {
1377 1.1 christos case OP_INT:
1378 1.1 christos {
1379 1.1 christos const struct mips_int_operand *int_op;
1380 1.1 christos
1381 1.1 christos int_op = (const struct mips_int_operand *) operand;
1382 1.1 christos uval = mips_decode_int_operand (int_op, uval);
1383 1.1 christos state->last_int = uval;
1384 1.1 christos if (int_op->print_hex)
1385 1.1 christos infprintf (is, "0x%x", uval);
1386 1.1 christos else
1387 1.1 christos infprintf (is, "%d", uval);
1388 1.1 christos }
1389 1.1 christos break;
1390 1.1 christos
1391 1.1 christos case OP_MAPPED_INT:
1392 1.1 christos {
1393 1.1 christos const struct mips_mapped_int_operand *mint_op;
1394 1.1 christos
1395 1.1 christos mint_op = (const struct mips_mapped_int_operand *) operand;
1396 1.1 christos uval = mint_op->int_map[uval];
1397 1.1 christos state->last_int = uval;
1398 1.1 christos if (mint_op->print_hex)
1399 1.1 christos infprintf (is, "0x%x", uval);
1400 1.1 christos else
1401 1.1 christos infprintf (is, "%d", uval);
1402 1.1 christos }
1403 1.1 christos break;
1404 1.1 christos
1405 1.1 christos case OP_MSB:
1406 1.1 christos {
1407 1.1 christos const struct mips_msb_operand *msb_op;
1408 1.1 christos
1409 1.1 christos msb_op = (const struct mips_msb_operand *) operand;
1410 1.1 christos uval += msb_op->bias;
1411 1.1 christos if (msb_op->add_lsb)
1412 1.1 christos uval -= state->last_int;
1413 1.1 christos infprintf (is, "0x%x", uval);
1414 1.1 christos }
1415 1.1 christos break;
1416 1.1 christos
1417 1.1 christos case OP_REG:
1418 1.1 christos case OP_OPTIONAL_REG:
1419 1.1 christos {
1420 1.1 christos const struct mips_reg_operand *reg_op;
1421 1.1 christos
1422 1.1 christos reg_op = (const struct mips_reg_operand *) operand;
1423 1.1.1.2 christos uval = mips_decode_reg_operand (reg_op, uval);
1424 1.1 christos print_reg (info, opcode, reg_op->reg_type, uval);
1425 1.1 christos
1426 1.1 christos mips_seen_register (state, uval, reg_op->reg_type);
1427 1.1 christos }
1428 1.1 christos break;
1429 1.1 christos
1430 1.1 christos case OP_REG_PAIR:
1431 1.1 christos {
1432 1.1 christos const struct mips_reg_pair_operand *pair_op;
1433 1.1 christos
1434 1.1 christos pair_op = (const struct mips_reg_pair_operand *) operand;
1435 1.1 christos print_reg (info, opcode, pair_op->reg_type,
1436 1.1 christos pair_op->reg1_map[uval]);
1437 1.1 christos infprintf (is, ",");
1438 1.1 christos print_reg (info, opcode, pair_op->reg_type,
1439 1.1 christos pair_op->reg2_map[uval]);
1440 1.1 christos }
1441 1.1 christos break;
1442 1.1 christos
1443 1.1 christos case OP_PCREL:
1444 1.1 christos {
1445 1.1 christos const struct mips_pcrel_operand *pcrel_op;
1446 1.1 christos
1447 1.1.1.5 christos pcrel_op = (const struct mips_pcrel_operand *) operand;
1448 1.1.1.5 christos info->target = mips_decode_pcrel_operand (pcrel_op, base_pc, uval);
1449 1.1.1.5 christos
1450 1.1.1.5 christos /* For jumps and branches clear the ISA bit except for
1451 1.1 christos the GDB disassembler. */
1452 1.1 christos if (pcrel_op->include_isa_bit
1453 1.1 christos && info->flavour != bfd_target_unknown_flavour)
1454 1.1 christos info->target &= -2;
1455 1.1 christos
1456 1.1 christos (*info->print_address_func) (info->target, info);
1457 1.1 christos }
1458 1.1 christos break;
1459 1.1 christos
1460 1.1 christos case OP_PERF_REG:
1461 1.1 christos infprintf (is, "%d", uval);
1462 1.1 christos break;
1463 1.1 christos
1464 1.1 christos case OP_ADDIUSP_INT:
1465 1.1 christos {
1466 1.1 christos int sval;
1467 1.1 christos
1468 1.1 christos sval = mips_signed_operand (operand, uval) * 4;
1469 1.1 christos if (sval >= -8 && sval < 8)
1470 1.1 christos sval ^= 0x400;
1471 1.1 christos infprintf (is, "%d", sval);
1472 1.1 christos break;
1473 1.1 christos }
1474 1.1 christos
1475 1.1 christos case OP_CLO_CLZ_DEST:
1476 1.1 christos {
1477 1.1 christos unsigned int reg1, reg2;
1478 1.1 christos
1479 1.1 christos reg1 = uval & 31;
1480 1.1 christos reg2 = uval >> 5;
1481 1.1 christos /* If one is zero use the other. */
1482 1.1 christos if (reg1 == reg2 || reg2 == 0)
1483 1.1 christos infprintf (is, "%s", mips_gpr_names[reg1]);
1484 1.1 christos else if (reg1 == 0)
1485 1.1 christos infprintf (is, "%s", mips_gpr_names[reg2]);
1486 1.1 christos else
1487 1.1 christos /* Bogus, result depends on processor. */
1488 1.1 christos infprintf (is, "%s or %s", mips_gpr_names[reg1],
1489 1.1 christos mips_gpr_names[reg2]);
1490 1.1.1.2 christos }
1491 1.1.1.2 christos break;
1492 1.1.1.2 christos
1493 1.1.1.2 christos case OP_SAME_RS_RT:
1494 1.1.1.2 christos case OP_CHECK_PREV:
1495 1.1.1.2 christos case OP_NON_ZERO_REG:
1496 1.1.1.2 christos {
1497 1.1.1.2 christos print_reg (info, opcode, OP_REG_GP, uval & 31);
1498 1.1.1.2 christos mips_seen_register (state, uval, OP_REG_GP);
1499 1.1 christos }
1500 1.1 christos break;
1501 1.1 christos
1502 1.1 christos case OP_LWM_SWM_LIST:
1503 1.1 christos if (operand->size == 2)
1504 1.1 christos {
1505 1.1 christos if (uval == 0)
1506 1.1 christos infprintf (is, "%s,%s",
1507 1.1 christos mips_gpr_names[16],
1508 1.1 christos mips_gpr_names[31]);
1509 1.1 christos else
1510 1.1 christos infprintf (is, "%s-%s,%s",
1511 1.1 christos mips_gpr_names[16],
1512 1.1 christos mips_gpr_names[16 + uval],
1513 1.1 christos mips_gpr_names[31]);
1514 1.1 christos }
1515 1.1 christos else
1516 1.1 christos {
1517 1.1 christos int s_reg_encode;
1518 1.1 christos
1519 1.1 christos s_reg_encode = uval & 0xf;
1520 1.1 christos if (s_reg_encode != 0)
1521 1.1 christos {
1522 1.1 christos if (s_reg_encode == 1)
1523 1.1 christos infprintf (is, "%s", mips_gpr_names[16]);
1524 1.1 christos else if (s_reg_encode < 9)
1525 1.1 christos infprintf (is, "%s-%s",
1526 1.1 christos mips_gpr_names[16],
1527 1.1 christos mips_gpr_names[15 + s_reg_encode]);
1528 1.1 christos else if (s_reg_encode == 9)
1529 1.1 christos infprintf (is, "%s-%s,%s",
1530 1.1 christos mips_gpr_names[16],
1531 1.1 christos mips_gpr_names[23],
1532 1.1 christos mips_gpr_names[30]);
1533 1.1 christos else
1534 1.1 christos infprintf (is, "UNKNOWN");
1535 1.1 christos }
1536 1.1 christos
1537 1.1 christos if (uval & 0x10) /* For ra. */
1538 1.1 christos {
1539 1.1 christos if (s_reg_encode == 0)
1540 1.1 christos infprintf (is, "%s", mips_gpr_names[31]);
1541 1.1 christos else
1542 1.1 christos infprintf (is, ",%s", mips_gpr_names[31]);
1543 1.1 christos }
1544 1.1 christos }
1545 1.1 christos break;
1546 1.1 christos
1547 1.1 christos case OP_ENTRY_EXIT_LIST:
1548 1.1 christos {
1549 1.1 christos const char *sep;
1550 1.1 christos unsigned int amask, smask;
1551 1.1 christos
1552 1.1 christos sep = "";
1553 1.1 christos amask = (uval >> 3) & 7;
1554 1.1 christos if (amask > 0 && amask < 5)
1555 1.1 christos {
1556 1.1 christos infprintf (is, "%s", mips_gpr_names[4]);
1557 1.1 christos if (amask > 1)
1558 1.1 christos infprintf (is, "-%s", mips_gpr_names[amask + 3]);
1559 1.1 christos sep = ",";
1560 1.1 christos }
1561 1.1 christos
1562 1.1 christos smask = (uval >> 1) & 3;
1563 1.1 christos if (smask == 3)
1564 1.1 christos {
1565 1.1 christos infprintf (is, "%s??", sep);
1566 1.1 christos sep = ",";
1567 1.1 christos }
1568 1.1 christos else if (smask > 0)
1569 1.1 christos {
1570 1.1 christos infprintf (is, "%s%s", sep, mips_gpr_names[16]);
1571 1.1 christos if (smask > 1)
1572 1.1 christos infprintf (is, "-%s", mips_gpr_names[smask + 15]);
1573 1.1 christos sep = ",";
1574 1.1 christos }
1575 1.1 christos
1576 1.1 christos if (uval & 1)
1577 1.1 christos {
1578 1.1 christos infprintf (is, "%s%s", sep, mips_gpr_names[31]);
1579 1.1 christos sep = ",";
1580 1.1 christos }
1581 1.1 christos
1582 1.1 christos if (amask == 5 || amask == 6)
1583 1.1 christos {
1584 1.1 christos infprintf (is, "%s%s", sep, mips_fpr_names[0]);
1585 1.1 christos if (amask == 6)
1586 1.1 christos infprintf (is, "-%s", mips_fpr_names[1]);
1587 1.1 christos }
1588 1.1 christos }
1589 1.1.1.5 christos break;
1590 1.1 christos
1591 1.1 christos case OP_SAVE_RESTORE_LIST:
1592 1.1 christos /* Should be handled by the caller due to complex behavior. */
1593 1.1 christos abort ();
1594 1.1 christos
1595 1.1 christos case OP_MDMX_IMM_REG:
1596 1.1 christos {
1597 1.1 christos unsigned int vsel;
1598 1.1 christos
1599 1.1 christos vsel = uval >> 5;
1600 1.1 christos uval &= 31;
1601 1.1 christos if ((vsel & 0x10) == 0)
1602 1.1 christos {
1603 1.1 christos int fmt;
1604 1.1 christos
1605 1.1 christos vsel &= 0x0f;
1606 1.1 christos for (fmt = 0; fmt < 3; fmt++, vsel >>= 1)
1607 1.1 christos if ((vsel & 1) == 0)
1608 1.1 christos break;
1609 1.1 christos print_reg (info, opcode, OP_REG_VEC, uval);
1610 1.1 christos infprintf (is, "[%d]", vsel >> 1);
1611 1.1 christos }
1612 1.1 christos else if ((vsel & 0x08) == 0)
1613 1.1 christos print_reg (info, opcode, OP_REG_VEC, uval);
1614 1.1 christos else
1615 1.1 christos infprintf (is, "0x%x", uval);
1616 1.1 christos }
1617 1.1 christos break;
1618 1.1 christos
1619 1.1 christos case OP_REPEAT_PREV_REG:
1620 1.1 christos print_reg (info, opcode, state->last_reg_type, state->last_regno);
1621 1.1.1.2 christos break;
1622 1.1.1.2 christos
1623 1.1 christos case OP_REPEAT_DEST_REG:
1624 1.1 christos print_reg (info, opcode, state->last_reg_type, state->dest_regno);
1625 1.1 christos break;
1626 1.1 christos
1627 1.1 christos case OP_PC:
1628 1.1.1.5 christos infprintf (is, "$pc");
1629 1.1.1.5 christos break;
1630 1.1.1.5 christos
1631 1.1.1.5 christos case OP_REG28:
1632 1.1 christos print_reg (info, opcode, OP_REG_GP, 28);
1633 1.1 christos break;
1634 1.1 christos
1635 1.1 christos case OP_VU0_SUFFIX:
1636 1.1 christos case OP_VU0_MATCH_SUFFIX:
1637 1.1 christos print_vu0_channel (info, operand, uval);
1638 1.1 christos break;
1639 1.1 christos
1640 1.1 christos case OP_IMM_INDEX:
1641 1.1 christos infprintf (is, "[%d]", uval);
1642 1.1 christos break;
1643 1.1 christos
1644 1.1 christos case OP_REG_INDEX:
1645 1.1 christos infprintf (is, "[");
1646 1.1 christos print_reg (info, opcode, OP_REG_GP, uval);
1647 1.1 christos infprintf (is, "]");
1648 1.1 christos break;
1649 1.1.1.2 christos }
1650 1.1.1.2 christos }
1651 1.1.1.2 christos
1652 1.1.1.2 christos /* Validate the arguments for INSN, which is described by OPCODE.
1653 1.1.1.2 christos Use DECODE_OPERAND to get the encoding of each operand. */
1654 1.1.1.2 christos
1655 1.1.1.2 christos static bfd_boolean
1656 1.1.1.2 christos validate_insn_args (const struct mips_opcode *opcode,
1657 1.1.1.2 christos const struct mips_operand *(*decode_operand) (const char *),
1658 1.1.1.2 christos unsigned int insn)
1659 1.1.1.2 christos {
1660 1.1.1.2 christos struct mips_print_arg_state state;
1661 1.1.1.2 christos const struct mips_operand *operand;
1662 1.1.1.2 christos const char *s;
1663 1.1.1.2 christos unsigned int uval;
1664 1.1.1.2 christos
1665 1.1.1.2 christos init_print_arg_state (&state);
1666 1.1.1.2 christos for (s = opcode->args; *s; ++s)
1667 1.1.1.2 christos {
1668 1.1.1.2 christos switch (*s)
1669 1.1.1.2 christos {
1670 1.1.1.2 christos case ',':
1671 1.1.1.2 christos case '(':
1672 1.1.1.2 christos case ')':
1673 1.1.1.2 christos break;
1674 1.1.1.2 christos
1675 1.1.1.2 christos case '#':
1676 1.1.1.2 christos ++s;
1677 1.1.1.2 christos break;
1678 1.1.1.2 christos
1679 1.1.1.2 christos default:
1680 1.1.1.2 christos operand = decode_operand (s);
1681 1.1.1.2 christos
1682 1.1.1.2 christos if (operand)
1683 1.1.1.2 christos {
1684 1.1.1.2 christos uval = mips_extract_operand (operand, insn);
1685 1.1.1.2 christos switch (operand->type)
1686 1.1.1.2 christos {
1687 1.1.1.2 christos case OP_REG:
1688 1.1.1.2 christos case OP_OPTIONAL_REG:
1689 1.1.1.2 christos {
1690 1.1.1.2 christos const struct mips_reg_operand *reg_op;
1691 1.1.1.2 christos
1692 1.1.1.2 christos reg_op = (const struct mips_reg_operand *) operand;
1693 1.1.1.2 christos uval = mips_decode_reg_operand (reg_op, uval);
1694 1.1.1.2 christos mips_seen_register (&state, uval, reg_op->reg_type);
1695 1.1.1.2 christos }
1696 1.1.1.2 christos break;
1697 1.1.1.2 christos
1698 1.1.1.2 christos case OP_SAME_RS_RT:
1699 1.1.1.2 christos {
1700 1.1.1.2 christos unsigned int reg1, reg2;
1701 1.1.1.2 christos
1702 1.1.1.2 christos reg1 = uval & 31;
1703 1.1.1.2 christos reg2 = uval >> 5;
1704 1.1.1.2 christos
1705 1.1.1.2 christos if (reg1 != reg2 || reg1 == 0)
1706 1.1.1.2 christos return FALSE;
1707 1.1.1.2 christos }
1708 1.1.1.2 christos break;
1709 1.1.1.2 christos
1710 1.1.1.2 christos case OP_CHECK_PREV:
1711 1.1.1.2 christos {
1712 1.1.1.2 christos const struct mips_check_prev_operand *prev_op;
1713 1.1.1.2 christos
1714 1.1.1.2 christos prev_op = (const struct mips_check_prev_operand *) operand;
1715 1.1.1.2 christos
1716 1.1.1.2 christos if (!prev_op->zero_ok && uval == 0)
1717 1.1.1.2 christos return FALSE;
1718 1.1.1.2 christos
1719 1.1.1.2 christos if (((prev_op->less_than_ok && uval < state.last_regno)
1720 1.1.1.2 christos || (prev_op->greater_than_ok && uval > state.last_regno)
1721 1.1.1.2 christos || (prev_op->equal_ok && uval == state.last_regno)))
1722 1.1.1.2 christos break;
1723 1.1.1.2 christos
1724 1.1.1.2 christos return FALSE;
1725 1.1.1.2 christos }
1726 1.1.1.2 christos
1727 1.1.1.2 christos case OP_NON_ZERO_REG:
1728 1.1.1.2 christos {
1729 1.1.1.2 christos if (uval == 0)
1730 1.1.1.2 christos return FALSE;
1731 1.1.1.2 christos }
1732 1.1.1.2 christos break;
1733 1.1.1.2 christos
1734 1.1.1.2 christos case OP_INT:
1735 1.1.1.2 christos case OP_MAPPED_INT:
1736 1.1.1.2 christos case OP_MSB:
1737 1.1.1.2 christos case OP_REG_PAIR:
1738 1.1.1.2 christos case OP_PCREL:
1739 1.1.1.2 christos case OP_PERF_REG:
1740 1.1.1.2 christos case OP_ADDIUSP_INT:
1741 1.1.1.2 christos case OP_CLO_CLZ_DEST:
1742 1.1.1.2 christos case OP_LWM_SWM_LIST:
1743 1.1.1.2 christos case OP_ENTRY_EXIT_LIST:
1744 1.1.1.2 christos case OP_MDMX_IMM_REG:
1745 1.1.1.5 christos case OP_REPEAT_PREV_REG:
1746 1.1.1.2 christos case OP_REPEAT_DEST_REG:
1747 1.1.1.2 christos case OP_PC:
1748 1.1.1.2 christos case OP_REG28:
1749 1.1.1.2 christos case OP_VU0_SUFFIX:
1750 1.1.1.2 christos case OP_VU0_MATCH_SUFFIX:
1751 1.1.1.5 christos case OP_IMM_INDEX:
1752 1.1.1.2 christos case OP_REG_INDEX:
1753 1.1.1.2 christos case OP_SAVE_RESTORE_LIST:
1754 1.1.1.2 christos break;
1755 1.1.1.2 christos }
1756 1.1.1.2 christos }
1757 1.1.1.2 christos if (*s == 'm' || *s == '+' || *s == '-')
1758 1.1.1.2 christos ++s;
1759 1.1.1.2 christos }
1760 1.1.1.2 christos }
1761 1.1 christos return TRUE;
1762 1.1 christos }
1763 1.1.1.2 christos
1764 1.1.1.2 christos /* Print the arguments for INSN, which is described by OPCODE.
1765 1.1 christos Use DECODE_OPERAND to get the encoding of each operand. Use BASE_PC
1766 1.1 christos as the base of OP_PCREL operands, adjusting by LENGTH if the OP_PCREL
1767 1.1 christos operand is for a branch or jump. */
1768 1.1 christos
1769 1.1 christos static void
1770 1.1.1.2 christos print_insn_args (struct disassemble_info *info,
1771 1.1 christos const struct mips_opcode *opcode,
1772 1.1 christos const struct mips_operand *(*decode_operand) (const char *),
1773 1.1 christos unsigned int insn, bfd_vma insn_pc, unsigned int length)
1774 1.1 christos {
1775 1.1 christos const fprintf_ftype infprintf = info->fprintf_func;
1776 1.1 christos void *is = info->stream;
1777 1.1 christos struct mips_print_arg_state state;
1778 1.1 christos const struct mips_operand *operand;
1779 1.1 christos const char *s;
1780 1.1 christos
1781 1.1 christos init_print_arg_state (&state);
1782 1.1 christos for (s = opcode->args; *s; ++s)
1783 1.1 christos {
1784 1.1 christos switch (*s)
1785 1.1 christos {
1786 1.1 christos case ',':
1787 1.1 christos case '(':
1788 1.1 christos case ')':
1789 1.1 christos infprintf (is, "%c", *s);
1790 1.1 christos break;
1791 1.1 christos
1792 1.1 christos case '#':
1793 1.1 christos ++s;
1794 1.1 christos infprintf (is, "%c%c", *s, *s);
1795 1.1 christos break;
1796 1.1 christos
1797 1.1 christos default:
1798 1.1 christos operand = decode_operand (s);
1799 1.1 christos if (!operand)
1800 1.1 christos {
1801 1.1 christos /* xgettext:c-format */
1802 1.1 christos infprintf (is,
1803 1.1 christos _("# internal error, undefined operand in `%s %s'"),
1804 1.1.1.5 christos opcode->name, opcode->args);
1805 1.1.1.5 christos return;
1806 1.1 christos }
1807 1.1.1.5 christos
1808 1.1.1.5 christos if (operand->type == OP_SAVE_RESTORE_LIST)
1809 1.1.1.5 christos {
1810 1.1.1.5 christos /* Handle this case here because of the complex behavior. */
1811 1.1.1.5 christos unsigned int amask = (insn >> 15) & 0xf;
1812 1.1.1.5 christos unsigned int nsreg = (insn >> 23) & 0x7;
1813 1.1.1.5 christos unsigned int ra = insn & 0x1000; /* $ra */
1814 1.1.1.5 christos unsigned int s0 = insn & 0x800; /* $s0 */
1815 1.1.1.5 christos unsigned int s1 = insn & 0x400; /* $s1 */
1816 1.1.1.5 christos unsigned int frame_size = (((insn >> 15) & 0xf0)
1817 1.1.1.5 christos | ((insn >> 6) & 0x0f)) * 8;
1818 1.1.1.5 christos mips_print_save_restore (info, amask, nsreg, ra, s0, s1,
1819 1.1.1.5 christos frame_size);
1820 1.1.1.5 christos }
1821 1.1.1.5 christos else if (operand->type == OP_REG
1822 1.1.1.5 christos && s[1] == ','
1823 1.1.1.5 christos && s[2] == 'H'
1824 1.1 christos && opcode->name[strlen (opcode->name) - 1] == '0')
1825 1.1 christos {
1826 1.1 christos /* Coprocessor register 0 with sel field. */
1827 1.1 christos const struct mips_cp0sel_name *n;
1828 1.1 christos unsigned int reg, sel;
1829 1.1 christos
1830 1.1 christos reg = mips_extract_operand (operand, insn);
1831 1.1 christos s += 2;
1832 1.1 christos operand = decode_operand (s);
1833 1.1 christos sel = mips_extract_operand (operand, insn);
1834 1.1 christos
1835 1.1 christos /* CP0 register including 'sel' code for mftc0, to be
1836 1.1 christos printed textually if known. If not known, print both
1837 1.1 christos CP0 register name and sel numerically since CP0 register
1838 1.1 christos with sel 0 may have a name unrelated to register being
1839 1.1 christos printed. */
1840 1.1 christos n = lookup_mips_cp0sel_name (mips_cp0sel_names,
1841 1.1 christos mips_cp0sel_names_len,
1842 1.1 christos reg, sel);
1843 1.1 christos if (n != NULL)
1844 1.1 christos infprintf (is, "%s", n->name);
1845 1.1 christos else
1846 1.1.1.2 christos infprintf (is, "$%d,%d", reg, sel);
1847 1.1.1.2 christos }
1848 1.1.1.2 christos else
1849 1.1.1.2 christos {
1850 1.1.1.2 christos bfd_vma base_pc = insn_pc;
1851 1.1.1.2 christos
1852 1.1.1.2 christos /* Adjust the PC relative base so that branch/jump insns use
1853 1.1.1.2 christos the following PC as the base but genuinely PC relative
1854 1.1.1.2 christos operands use the current PC. */
1855 1.1.1.2 christos if (operand->type == OP_PCREL)
1856 1.1.1.2 christos {
1857 1.1.1.2 christos const struct mips_pcrel_operand *pcrel_op;
1858 1.1.1.2 christos
1859 1.1.1.2 christos pcrel_op = (const struct mips_pcrel_operand *) operand;
1860 1.1.1.2 christos /* The include_isa_bit flag is sufficient to distinguish
1861 1.1.1.2 christos branch/jump from other PC relative operands. */
1862 1.1.1.2 christos if (pcrel_op->include_isa_bit)
1863 1.1.1.2 christos base_pc += length;
1864 1.1.1.2 christos }
1865 1.1.1.2 christos
1866 1.1.1.2 christos print_insn_arg (info, &state, opcode, operand, base_pc,
1867 1.1 christos mips_extract_operand (operand, insn));
1868 1.1 christos }
1869 1.1 christos if (*s == 'm' || *s == '+' || *s == '-')
1870 1.1 christos ++s;
1871 1.1 christos break;
1872 1.1 christos }
1873 1.1 christos }
1874 1.1 christos }
1875 1.1 christos
1876 1.1 christos /* Print the mips instruction at address MEMADDR in debugged memory,
1878 1.1 christos on using INFO. Returns length of the instruction, in bytes, which is
1879 1.1 christos always INSNLEN. BIGENDIAN must be 1 if this is big-endian code, 0 if
1880 1.1 christos this is little-endian code. */
1881 1.1 christos
1882 1.1 christos static int
1883 1.1 christos print_insn_mips (bfd_vma memaddr,
1884 1.1 christos int word,
1885 1.1 christos struct disassemble_info *info)
1886 1.1 christos {
1887 1.1 christos #define GET_OP(insn, field) \
1888 1.1 christos (((insn) >> OP_SH_##field) & OP_MASK_##field)
1889 1.1 christos static const struct mips_opcode *mips_hash[OP_MASK_OP + 1];
1890 1.1 christos const fprintf_ftype infprintf = info->fprintf_func;
1891 1.1 christos const struct mips_opcode *op;
1892 1.1 christos static bfd_boolean init = 0;
1893 1.1 christos void *is = info->stream;
1894 1.1 christos
1895 1.1 christos /* Build a hash table to shorten the search time. */
1896 1.1 christos if (! init)
1897 1.1 christos {
1898 1.1 christos unsigned int i;
1899 1.1 christos
1900 1.1 christos for (i = 0; i <= OP_MASK_OP; i++)
1901 1.1 christos {
1902 1.1 christos for (op = mips_opcodes; op < &mips_opcodes[NUMOPCODES]; op++)
1903 1.1 christos {
1904 1.1 christos if (op->pinfo == INSN_MACRO
1905 1.1 christos || (no_aliases && (op->pinfo2 & INSN2_ALIAS)))
1906 1.1 christos continue;
1907 1.1 christos if (i == GET_OP (op->match, OP))
1908 1.1 christos {
1909 1.1 christos mips_hash[i] = op;
1910 1.1 christos break;
1911 1.1 christos }
1912 1.1 christos }
1913 1.1 christos }
1914 1.1 christos
1915 1.1 christos init = 1;
1916 1.1 christos }
1917 1.1 christos
1918 1.1 christos info->bytes_per_chunk = INSNLEN;
1919 1.1 christos info->display_endian = info->endian;
1920 1.1 christos info->insn_info_valid = 1;
1921 1.1 christos info->branch_delay_insns = 0;
1922 1.1 christos info->data_size = 0;
1923 1.1 christos info->insn_type = dis_nonbranch;
1924 1.1 christos info->target = 0;
1925 1.1 christos info->target2 = 0;
1926 1.1 christos
1927 1.1 christos op = mips_hash[GET_OP (word, OP)];
1928 1.1.1.3 christos if (op != NULL)
1929 1.1 christos {
1930 1.1 christos for (; op < &mips_opcodes[NUMOPCODES]; op++)
1931 1.1 christos {
1932 1.1.1.2 christos if (op->pinfo != INSN_MACRO
1933 1.1 christos && !(no_aliases && (op->pinfo2 & INSN2_ALIAS))
1934 1.1.1.2 christos && (word & op->mask) == op->match)
1935 1.1.1.2 christos {
1936 1.1.1.2 christos /* We always disassemble the jalx instruction, except for MIPS r6. */
1937 1.1 christos if (!opcode_is_member (op, mips_isa, mips_ase, mips_processor)
1938 1.1 christos && (strcmp (op->name, "jalx")
1939 1.1 christos || (mips_isa & INSN_ISA_MASK) == ISA_MIPS32R6
1940 1.1 christos || (mips_isa & INSN_ISA_MASK) == ISA_MIPS64R6))
1941 1.1 christos continue;
1942 1.1 christos
1943 1.1 christos /* Figure out instruction type and branch delay information. */
1944 1.1 christos if ((op->pinfo & INSN_UNCOND_BRANCH_DELAY) != 0)
1945 1.1 christos {
1946 1.1 christos if ((op->pinfo & (INSN_WRITE_GPR_31 | INSN_WRITE_1)) != 0)
1947 1.1 christos info->insn_type = dis_jsr;
1948 1.1 christos else
1949 1.1 christos info->insn_type = dis_branch;
1950 1.1 christos info->branch_delay_insns = 1;
1951 1.1 christos }
1952 1.1 christos else if ((op->pinfo & (INSN_COND_BRANCH_DELAY
1953 1.1 christos | INSN_COND_BRANCH_LIKELY)) != 0)
1954 1.1 christos {
1955 1.1 christos if ((op->pinfo & INSN_WRITE_GPR_31) != 0)
1956 1.1 christos info->insn_type = dis_condjsr;
1957 1.1 christos else
1958 1.1 christos info->insn_type = dis_condbranch;
1959 1.1 christos info->branch_delay_insns = 1;
1960 1.1 christos }
1961 1.1.1.2 christos else if ((op->pinfo & (INSN_STORE_MEMORY
1962 1.1.1.2 christos | INSN_LOAD_MEMORY)) != 0)
1963 1.1.1.2 christos info->insn_type = dis_dref;
1964 1.1 christos
1965 1.1 christos if (!validate_insn_args (op, decode_mips_operand, word))
1966 1.1 christos continue;
1967 1.1 christos
1968 1.1 christos infprintf (is, "%s", op->name);
1969 1.1 christos if (op->pinfo2 & INSN2_VU0_CHANNEL_SUFFIX)
1970 1.1 christos {
1971 1.1 christos unsigned int uval;
1972 1.1 christos
1973 1.1 christos infprintf (is, ".");
1974 1.1 christos uval = mips_extract_operand (&mips_vu0_channel_mask, word);
1975 1.1 christos print_vu0_channel (info, &mips_vu0_channel_mask, uval);
1976 1.1 christos }
1977 1.1 christos
1978 1.1.1.2 christos if (op->args[0])
1979 1.1 christos {
1980 1.1 christos infprintf (is, "\t");
1981 1.1 christos print_insn_args (info, op, decode_mips_operand, word,
1982 1.1 christos memaddr, 4);
1983 1.1 christos }
1984 1.1 christos
1985 1.1 christos return INSNLEN;
1986 1.1 christos }
1987 1.1 christos }
1988 1.1 christos }
1989 1.1 christos #undef GET_OP
1990 1.1 christos
1991 1.1 christos /* Handle undefined instructions. */
1992 1.1 christos info->insn_type = dis_noninsn;
1993 1.1 christos infprintf (is, "0x%x", word);
1994 1.1 christos return INSNLEN;
1995 1.1 christos }
1996 1.1 christos
1997 1.1 christos /* Disassemble an operand for a mips16 instruction. */
1999 1.1 christos
2000 1.1 christos static void
2001 1.1 christos print_mips16_insn_arg (struct disassemble_info *info,
2002 1.1 christos struct mips_print_arg_state *state,
2003 1.1 christos const struct mips_opcode *opcode,
2004 1.1 christos char type, bfd_vma memaddr,
2005 1.1 christos unsigned insn, bfd_boolean use_extend,
2006 1.1.1.4 christos unsigned extend, bfd_boolean is_offset)
2007 1.1 christos {
2008 1.1 christos const fprintf_ftype infprintf = info->fprintf_func;
2009 1.1 christos void *is = info->stream;
2010 1.1 christos const struct mips_operand *operand, *ext_operand;
2011 1.1 christos unsigned short ext_size;
2012 1.1 christos unsigned int uval;
2013 1.1 christos bfd_vma baseaddr;
2014 1.1 christos
2015 1.1 christos if (!use_extend)
2016 1.1 christos extend = 0;
2017 1.1 christos
2018 1.1 christos switch (type)
2019 1.1 christos {
2020 1.1 christos case ',':
2021 1.1 christos case '(':
2022 1.1 christos case ')':
2023 1.1 christos infprintf (is, "%c", type);
2024 1.1 christos break;
2025 1.1 christos
2026 1.1 christos default:
2027 1.1 christos operand = decode_mips16_operand (type, FALSE);
2028 1.1 christos if (!operand)
2029 1.1 christos {
2030 1.1 christos /* xgettext:c-format */
2031 1.1 christos infprintf (is, _("# internal error, undefined operand in `%s %s'"),
2032 1.1 christos opcode->name, opcode->args);
2033 1.1.1.4 christos return;
2034 1.1 christos }
2035 1.1.1.5 christos
2036 1.1.1.5 christos if (operand->type == OP_SAVE_RESTORE_LIST)
2037 1.1.1.5 christos {
2038 1.1.1.5 christos /* Handle this case here because of the complex interaction
2039 1.1.1.5 christos with the EXTEND opcode. */
2040 1.1.1.5 christos unsigned int amask = extend & 0xf;
2041 1.1 christos unsigned int nsreg = (extend >> 8) & 0x7;
2042 1.1 christos unsigned int ra = insn & 0x40; /* $ra */
2043 1.1.1.5 christos unsigned int s0 = insn & 0x20; /* $s0 */
2044 1.1 christos unsigned int s1 = insn & 0x10; /* $s1 */
2045 1.1 christos unsigned int frame_size = ((extend & 0xf0) | (insn & 0x0f)) * 8;
2046 1.1 christos if (frame_size == 0 && !use_extend)
2047 1.1 christos frame_size = 128;
2048 1.1 christos mips_print_save_restore (info, amask, nsreg, ra, s0, s1, frame_size);
2049 1.1 christos break;
2050 1.1 christos }
2051 1.1 christos
2052 1.1 christos if (is_offset && operand->type == OP_INT)
2053 1.1 christos {
2054 1.1 christos const struct mips_int_operand *int_op;
2055 1.1 christos
2056 1.1.1.4 christos int_op = (const struct mips_int_operand *) operand;
2057 1.1.1.4 christos info->insn_type = dis_dref;
2058 1.1 christos info->data_size = 1 << int_op->shift;
2059 1.1.1.4 christos }
2060 1.1.1.5 christos
2061 1.1.1.5 christos ext_size = 0;
2062 1.1.1.5 christos if (use_extend)
2063 1.1 christos {
2064 1.1.1.4 christos ext_operand = decode_mips16_operand (type, TRUE);
2065 1.1.1.4 christos if (ext_operand != operand
2066 1.1 christos || (operand->type == OP_INT && operand->lsb == 0
2067 1.1 christos && mips_opcode_32bit_p (opcode)))
2068 1.1.1.4 christos {
2069 1.1.1.4 christos ext_size = ext_operand->size;
2070 1.1.1.5 christos operand = ext_operand;
2071 1.1.1.4 christos }
2072 1.1.1.4 christos }
2073 1.1.1.4 christos if (operand->size == 26)
2074 1.1.1.4 christos uval = ((extend & 0x1f) << 21) | ((extend & 0x3e0) << 11) | insn;
2075 1.1.1.4 christos else if (ext_size == 16 || ext_size == 9)
2076 1.1.1.4 christos uval = ((extend & 0x1f) << 11) | (extend & 0x7e0) | (insn & 0x1f);
2077 1.1.1.4 christos else if (ext_size == 15)
2078 1.1.1.5 christos uval = ((extend & 0xf) << 11) | (extend & 0x7f0) | (insn & 0xf);
2079 1.1.1.5 christos else if (ext_size == 6)
2080 1.1 christos uval = ((extend >> 6) & 0x1f) | (extend & 0x20);
2081 1.1 christos else
2082 1.1 christos uval = mips_extract_operand (operand, (extend << 16) | insn);
2083 1.1 christos if (ext_size == 9)
2084 1.1 christos uval &= (1U << ext_size) - 1;
2085 1.1 christos
2086 1.1 christos baseaddr = memaddr + 2;
2087 1.1 christos if (operand->type == OP_PCREL)
2088 1.1 christos {
2089 1.1 christos const struct mips_pcrel_operand *pcrel_op;
2090 1.1.1.4 christos
2091 1.1.1.4 christos pcrel_op = (const struct mips_pcrel_operand *) operand;
2092 1.1 christos if (!pcrel_op->include_isa_bit && use_extend)
2093 1.1.1.4 christos baseaddr = memaddr - 2;
2094 1.1.1.4 christos else if (!pcrel_op->include_isa_bit)
2095 1.1.1.4 christos {
2096 1.1.1.4 christos bfd_byte buffer[2];
2097 1.1.1.4 christos
2098 1.1.1.4 christos /* If this instruction is in the delay slot of a JAL/JALX
2099 1.1.1.4 christos instruction, the base address is the address of the
2100 1.1.1.4 christos JAL/JALX instruction. If it is in the delay slot of
2101 1.1.1.4 christos a JR/JALR instruction, the base address is the address
2102 1.1.1.4 christos of the JR/JALR instruction. This test is unreliable:
2103 1.1.1.4 christos we have no way of knowing whether the previous word is
2104 1.1.1.4 christos instruction or data. */
2105 1.1.1.4 christos if (info->read_memory_func (memaddr - 4, buffer, 2, info) == 0
2106 1.1.1.4 christos && (((info->endian == BFD_ENDIAN_BIG
2107 1.1.1.4 christos ? bfd_getb16 (buffer)
2108 1.1.1.4 christos : bfd_getl16 (buffer))
2109 1.1.1.4 christos & 0xf800) == 0x1800))
2110 1.1.1.4 christos baseaddr = memaddr - 4;
2111 1.1.1.4 christos else if (info->read_memory_func (memaddr - 2, buffer, 2,
2112 1.1.1.4 christos info) == 0
2113 1.1.1.4 christos && (((info->endian == BFD_ENDIAN_BIG
2114 1.1.1.4 christos ? bfd_getb16 (buffer)
2115 1.1.1.4 christos : bfd_getl16 (buffer))
2116 1.1.1.4 christos & 0xf89f) == 0xe800)
2117 1.1.1.4 christos && (((info->endian == BFD_ENDIAN_BIG
2118 1.1.1.4 christos ? bfd_getb16 (buffer)
2119 1.1.1.4 christos : bfd_getl16 (buffer))
2120 1.1 christos & 0x0060) != 0x0060))
2121 1.1 christos baseaddr = memaddr - 2;
2122 1.1 christos else
2123 1.1 christos baseaddr = memaddr;
2124 1.1 christos }
2125 1.1 christos }
2126 1.1 christos
2127 1.1 christos print_insn_arg (info, state, opcode, operand, baseaddr + 1, uval);
2128 1.1 christos break;
2129 1.1 christos }
2130 1.1 christos }
2131 1.1 christos
2132 1.1 christos
2133 1.1 christos /* Check if the given address is the last word of a MIPS16 PLT entry.
2134 1.1 christos This word is data and depending on the value it may interfere with
2135 1.1 christos disassembly of further PLT entries. We make use of the fact PLT
2136 1.1 christos symbols are marked BSF_SYNTHETIC. */
2137 1.1 christos static bfd_boolean
2138 1.1 christos is_mips16_plt_tail (struct disassemble_info *info, bfd_vma addr)
2139 1.1 christos {
2140 1.1 christos if (info->symbols
2141 1.1 christos && info->symbols[0]
2142 1.1 christos && (info->symbols[0]->flags & BSF_SYNTHETIC)
2143 1.1 christos && addr == bfd_asymbol_value (info->symbols[0]) + 12)
2144 1.1.1.4 christos return TRUE;
2145 1.1.1.4 christos
2146 1.1.1.4 christos return FALSE;
2147 1.1.1.4 christos }
2148 1.1.1.4 christos
2149 1.1.1.4 christos /* Whether none, a 32-bit or a 16-bit instruction match has been done. */
2150 1.1.1.4 christos
2151 1.1.1.4 christos enum match_kind
2152 1.1.1.4 christos {
2153 1.1 christos MATCH_NONE,
2154 1.1 christos MATCH_FULL,
2155 1.1 christos MATCH_SHORT
2156 1.1 christos };
2157 1.1 christos
2158 1.1 christos /* Disassemble mips16 instructions. */
2159 1.1 christos
2160 1.1 christos static int
2161 1.1 christos print_insn_mips16 (bfd_vma memaddr, struct disassemble_info *info)
2162 1.1 christos {
2163 1.1 christos const fprintf_ftype infprintf = info->fprintf_func;
2164 1.1.1.4 christos int status;
2165 1.1.1.5 christos bfd_byte buffer[4];
2166 1.1.1.4 christos const struct mips_opcode *op, *opend;
2167 1.1.1.4 christos struct mips_print_arg_state state;
2168 1.1.1.4 christos void *is = info->stream;
2169 1.1 christos bfd_boolean have_second;
2170 1.1 christos bfd_boolean extend_only;
2171 1.1 christos unsigned int second;
2172 1.1 christos unsigned int first;
2173 1.1 christos unsigned int full;
2174 1.1 christos
2175 1.1 christos info->bytes_per_chunk = 2;
2176 1.1 christos info->display_endian = info->endian;
2177 1.1 christos info->insn_info_valid = 1;
2178 1.1 christos info->branch_delay_insns = 0;
2179 1.1 christos info->data_size = 0;
2180 1.1 christos info->target = 0;
2181 1.1 christos info->target2 = 0;
2182 1.1 christos
2183 1.1 christos #define GET_OP(insn, field) \
2184 1.1 christos (((insn) >> MIPS16OP_SH_##field) & MIPS16OP_MASK_##field)
2185 1.1 christos /* Decode PLT entry's GOT slot address word. */
2186 1.1 christos if (is_mips16_plt_tail (info, memaddr))
2187 1.1 christos {
2188 1.1 christos info->insn_type = dis_noninsn;
2189 1.1 christos status = (*info->read_memory_func) (memaddr, buffer, 4, info);
2190 1.1 christos if (status == 0)
2191 1.1 christos {
2192 1.1 christos unsigned int gotslot;
2193 1.1 christos
2194 1.1 christos if (info->endian == BFD_ENDIAN_BIG)
2195 1.1 christos gotslot = bfd_getb32 (buffer);
2196 1.1 christos else
2197 1.1 christos gotslot = bfd_getl32 (buffer);
2198 1.1 christos infprintf (is, ".word\t0x%x", gotslot);
2199 1.1 christos
2200 1.1 christos return 4;
2201 1.1 christos }
2202 1.1 christos }
2203 1.1 christos else
2204 1.1 christos {
2205 1.1 christos info->insn_type = dis_nonbranch;
2206 1.1 christos status = (*info->read_memory_func) (memaddr, buffer, 2, info);
2207 1.1 christos }
2208 1.1 christos if (status != 0)
2209 1.1.1.5 christos {
2210 1.1.1.5 christos (*info->memory_error_func) (status, memaddr, info);
2211 1.1 christos return -1;
2212 1.1.1.4 christos }
2213 1.1 christos
2214 1.1.1.4 christos extend_only = FALSE;
2215 1.1 christos
2216 1.1.1.4 christos if (info->endian == BFD_ENDIAN_BIG)
2217 1.1.1.4 christos first = bfd_getb16 (buffer);
2218 1.1 christos else
2219 1.1.1.4 christos first = bfd_getl16 (buffer);
2220 1.1 christos
2221 1.1.1.4 christos status = (*info->read_memory_func) (memaddr + 2, buffer, 2, info);
2222 1.1 christos if (status == 0)
2223 1.1.1.4 christos {
2224 1.1.1.4 christos have_second = TRUE;
2225 1.1.1.4 christos if (info->endian == BFD_ENDIAN_BIG)
2226 1.1.1.4 christos second = bfd_getb16 (buffer);
2227 1.1.1.4 christos else
2228 1.1.1.4 christos second = bfd_getl16 (buffer);
2229 1.1.1.4 christos full = (first << 16) | second;
2230 1.1.1.4 christos }
2231 1.1 christos else
2232 1.1 christos {
2233 1.1 christos have_second = FALSE;
2234 1.1 christos second = 0;
2235 1.1 christos full = first;
2236 1.1 christos }
2237 1.1 christos
2238 1.1.1.4 christos /* FIXME: Should probably use a hash table on the major opcode here. */
2239 1.1 christos
2240 1.1.1.4 christos opend = mips16_opcodes + bfd_mips16_num_opcodes;
2241 1.1.1.4 christos for (op = mips16_opcodes; op < opend; op++)
2242 1.1 christos {
2243 1.1.1.4 christos enum match_kind match;
2244 1.1.1.4 christos
2245 1.1.1.4 christos if (!opcode_is_member (op, mips_isa, mips_ase, mips_processor))
2246 1.1.1.4 christos continue;
2247 1.1.1.4 christos
2248 1.1.1.4 christos if (op->pinfo == INSN_MACRO
2249 1.1.1.4 christos || (no_aliases && (op->pinfo2 & INSN2_ALIAS)))
2250 1.1.1.4 christos match = MATCH_NONE;
2251 1.1.1.4 christos else if (mips_opcode_32bit_p (op))
2252 1.1.1.4 christos {
2253 1.1.1.4 christos if (have_second
2254 1.1.1.4 christos && (full & op->mask) == op->match)
2255 1.1.1.4 christos match = MATCH_FULL;
2256 1.1.1.4 christos else
2257 1.1.1.4 christos match = MATCH_NONE;
2258 1.1.1.4 christos }
2259 1.1.1.4 christos else if ((first & op->mask) == op->match)
2260 1.1.1.4 christos {
2261 1.1.1.4 christos match = MATCH_SHORT;
2262 1.1.1.5 christos second = 0;
2263 1.1.1.4 christos full = first;
2264 1.1.1.5 christos }
2265 1.1.1.5 christos else if ((first & 0xf800) == 0xf000
2266 1.1.1.5 christos && have_second
2267 1.1.1.5 christos && !extend_only
2268 1.1.1.5 christos && (second & op->mask) == op->match)
2269 1.1.1.5 christos {
2270 1.1.1.5 christos if (op->pinfo2 & INSN2_SHORT_ONLY)
2271 1.1.1.5 christos {
2272 1.1.1.5 christos match = MATCH_NONE;
2273 1.1.1.4 christos extend_only = TRUE;
2274 1.1.1.4 christos }
2275 1.1 christos else
2276 1.1.1.4 christos match = MATCH_FULL;
2277 1.1.1.4 christos }
2278 1.1.1.4 christos else
2279 1.1 christos match = MATCH_NONE;
2280 1.1 christos
2281 1.1 christos if (match != MATCH_NONE)
2282 1.1 christos {
2283 1.1 christos const char *s;
2284 1.1 christos
2285 1.1 christos infprintf (is, "%s", op->name);
2286 1.1 christos if (op->args[0] != '\0')
2287 1.1 christos infprintf (is, "\t");
2288 1.1 christos
2289 1.1.1.4 christos init_print_arg_state (&state);
2290 1.1 christos for (s = op->args; *s != '\0'; s++)
2291 1.1 christos {
2292 1.1 christos if (*s == ','
2293 1.1 christos && s[1] == 'w'
2294 1.1 christos && GET_OP (full, RX) == GET_OP (full, RY))
2295 1.1 christos {
2296 1.1 christos /* Skip the register and the comma. */
2297 1.1.1.4 christos ++s;
2298 1.1 christos continue;
2299 1.1 christos }
2300 1.1 christos if (*s == ','
2301 1.1 christos && s[1] == 'v'
2302 1.1 christos && GET_OP (full, RZ) == GET_OP (full, RX))
2303 1.1.1.5 christos {
2304 1.1.1.5 christos /* Skip the register and the comma. */
2305 1.1.1.5 christos ++s;
2306 1.1.1.5 christos continue;
2307 1.1.1.4 christos }
2308 1.1.1.5 christos if (s[0] == 'N'
2309 1.1.1.5 christos && s[1] == ','
2310 1.1.1.5 christos && s[2] == 'O'
2311 1.1.1.5 christos && op->name[strlen (op->name) - 1] == '0')
2312 1.1.1.5 christos {
2313 1.1.1.5 christos /* Coprocessor register 0 with sel field. */
2314 1.1.1.5 christos const struct mips_cp0sel_name *n;
2315 1.1.1.5 christos const struct mips_operand *operand;
2316 1.1.1.5 christos unsigned int reg, sel;
2317 1.1.1.5 christos
2318 1.1.1.5 christos operand = decode_mips16_operand (*s, TRUE);
2319 1.1.1.5 christos reg = mips_extract_operand (operand, (first << 16) | second);
2320 1.1.1.5 christos s += 2;
2321 1.1.1.5 christos operand = decode_mips16_operand (*s, TRUE);
2322 1.1.1.5 christos sel = mips_extract_operand (operand, (first << 16) | second);
2323 1.1.1.5 christos
2324 1.1.1.5 christos /* CP0 register including 'sel' code for mftc0, to be
2325 1.1.1.5 christos printed textually if known. If not known, print both
2326 1.1.1.5 christos CP0 register name and sel numerically since CP0 register
2327 1.1.1.5 christos with sel 0 may have a name unrelated to register being
2328 1.1.1.5 christos printed. */
2329 1.1.1.5 christos n = lookup_mips_cp0sel_name (mips_cp0sel_names,
2330 1.1.1.5 christos mips_cp0sel_names_len,
2331 1.1.1.4 christos reg, sel);
2332 1.1.1.5 christos if (n != NULL)
2333 1.1.1.5 christos infprintf (is, "%s", n->name);
2334 1.1.1.5 christos else
2335 1.1.1.5 christos infprintf (is, "$%d,%d", reg, sel);
2336 1.1.1.5 christos }
2337 1.1.1.5 christos else
2338 1.1.1.5 christos switch (match)
2339 1.1.1.5 christos {
2340 1.1.1.5 christos case MATCH_FULL:
2341 1.1.1.5 christos print_mips16_insn_arg (info, &state, op, *s, memaddr + 2,
2342 1.1.1.5 christos second, TRUE, first, s[1] == '(');
2343 1.1.1.5 christos break;
2344 1.1.1.5 christos case MATCH_SHORT:
2345 1.1.1.5 christos print_mips16_insn_arg (info, &state, op, *s, memaddr,
2346 1.1 christos first, FALSE, 0, s[1] == '(');
2347 1.1 christos break;
2348 1.1 christos case MATCH_NONE: /* Stop the compiler complaining. */
2349 1.1 christos break;
2350 1.1 christos }
2351 1.1 christos }
2352 1.1 christos
2353 1.1 christos /* Figure out branch instruction type and delay slot information. */
2354 1.1 christos if ((op->pinfo & INSN_UNCOND_BRANCH_DELAY) != 0)
2355 1.1 christos info->branch_delay_insns = 1;
2356 1.1 christos if ((op->pinfo & INSN_UNCOND_BRANCH_DELAY) != 0
2357 1.1 christos || (op->pinfo2 & INSN2_UNCOND_BRANCH) != 0)
2358 1.1 christos {
2359 1.1 christos if ((op->pinfo & INSN_WRITE_GPR_31) != 0)
2360 1.1 christos info->insn_type = dis_jsr;
2361 1.1 christos else
2362 1.1.1.4 christos info->insn_type = dis_branch;
2363 1.1 christos }
2364 1.1 christos else if ((op->pinfo2 & INSN2_COND_BRANCH) != 0)
2365 1.1 christos info->insn_type = dis_condbranch;
2366 1.1 christos
2367 1.1.1.4 christos return match == MATCH_FULL ? 4 : 2;
2368 1.1 christos }
2369 1.1 christos }
2370 1.1.1.4 christos #undef GET_OP
2371 1.1 christos
2372 1.1 christos infprintf (is, "0x%x", first);
2373 1.1 christos info->insn_type = dis_noninsn;
2374 1.1 christos
2375 1.1 christos return 2;
2376 1.1 christos }
2377 1.1 christos
2378 1.1 christos /* Disassemble microMIPS instructions. */
2379 1.1 christos
2380 1.1 christos static int
2381 1.1 christos print_insn_micromips (bfd_vma memaddr, struct disassemble_info *info)
2382 1.1 christos {
2383 1.1 christos const fprintf_ftype infprintf = info->fprintf_func;
2384 1.1 christos const struct mips_opcode *op, *opend;
2385 1.1 christos void *is = info->stream;
2386 1.1 christos bfd_byte buffer[2];
2387 1.1 christos unsigned int higher;
2388 1.1 christos unsigned int length;
2389 1.1 christos int status;
2390 1.1 christos unsigned int insn;
2391 1.1 christos
2392 1.1 christos info->bytes_per_chunk = 2;
2393 1.1 christos info->display_endian = info->endian;
2394 1.1 christos info->insn_info_valid = 1;
2395 1.1 christos info->branch_delay_insns = 0;
2396 1.1 christos info->data_size = 0;
2397 1.1 christos info->insn_type = dis_nonbranch;
2398 1.1 christos info->target = 0;
2399 1.1 christos info->target2 = 0;
2400 1.1 christos
2401 1.1 christos status = (*info->read_memory_func) (memaddr, buffer, 2, info);
2402 1.1 christos if (status != 0)
2403 1.1 christos {
2404 1.1 christos (*info->memory_error_func) (status, memaddr, info);
2405 1.1 christos return -1;
2406 1.1 christos }
2407 1.1 christos
2408 1.1 christos length = 2;
2409 1.1 christos
2410 1.1.1.3 christos if (info->endian == BFD_ENDIAN_BIG)
2411 1.1 christos insn = bfd_getb16 (buffer);
2412 1.1 christos else
2413 1.1 christos insn = bfd_getl16 (buffer);
2414 1.1 christos
2415 1.1 christos if ((insn & 0x1c00) == 0x0000 || (insn & 0x1000) == 0x1000)
2416 1.1 christos {
2417 1.1 christos /* This is a 32-bit microMIPS instruction. */
2418 1.1 christos higher = insn;
2419 1.1 christos
2420 1.1 christos status = (*info->read_memory_func) (memaddr + 2, buffer, 2, info);
2421 1.1 christos if (status != 0)
2422 1.1 christos {
2423 1.1 christos infprintf (is, "micromips 0x%x", higher);
2424 1.1 christos (*info->memory_error_func) (status, memaddr + 2, info);
2425 1.1 christos return -1;
2426 1.1 christos }
2427 1.1 christos
2428 1.1 christos if (info->endian == BFD_ENDIAN_BIG)
2429 1.1 christos insn = bfd_getb16 (buffer);
2430 1.1 christos else
2431 1.1 christos insn = bfd_getl16 (buffer);
2432 1.1 christos
2433 1.1 christos insn = insn | (higher << 16);
2434 1.1 christos
2435 1.1 christos length += 2;
2436 1.1 christos }
2437 1.1 christos
2438 1.1 christos /* FIXME: Should probably use a hash table on the major opcode here. */
2439 1.1 christos
2440 1.1 christos opend = micromips_opcodes + bfd_micromips_num_opcodes;
2441 1.1 christos for (op = micromips_opcodes; op < opend; op++)
2442 1.1 christos {
2443 1.1 christos if (op->pinfo != INSN_MACRO
2444 1.1.1.2 christos && !(no_aliases && (op->pinfo2 & INSN2_ALIAS))
2445 1.1.1.2 christos && (insn & op->mask) == op->match
2446 1.1.1.2 christos && ((length == 2 && (op->mask & 0xffff0000) == 0)
2447 1.1 christos || (length == 4 && (op->mask & 0xffff0000) != 0)))
2448 1.1 christos {
2449 1.1 christos if (!validate_insn_args (op, decode_micromips_operand, insn))
2450 1.1 christos continue;
2451 1.1 christos
2452 1.1 christos infprintf (is, "%s", op->name);
2453 1.1.1.2 christos
2454 1.1 christos if (op->args[0])
2455 1.1 christos {
2456 1.1 christos infprintf (is, "\t");
2457 1.1 christos print_insn_args (info, op, decode_micromips_operand, insn,
2458 1.1 christos memaddr + 1, length);
2459 1.1 christos }
2460 1.1 christos
2461 1.1 christos /* Figure out instruction type and branch delay information. */
2462 1.1 christos if ((op->pinfo
2463 1.1 christos & (INSN_UNCOND_BRANCH_DELAY | INSN_COND_BRANCH_DELAY)) != 0)
2464 1.1 christos info->branch_delay_insns = 1;
2465 1.1 christos if (((op->pinfo & INSN_UNCOND_BRANCH_DELAY)
2466 1.1 christos | (op->pinfo2 & INSN2_UNCOND_BRANCH)) != 0)
2467 1.1 christos {
2468 1.1 christos if ((op->pinfo & (INSN_WRITE_GPR_31 | INSN_WRITE_1)) != 0)
2469 1.1 christos info->insn_type = dis_jsr;
2470 1.1 christos else
2471 1.1 christos info->insn_type = dis_branch;
2472 1.1 christos }
2473 1.1 christos else if (((op->pinfo & INSN_COND_BRANCH_DELAY)
2474 1.1 christos | (op->pinfo2 & INSN2_COND_BRANCH)) != 0)
2475 1.1 christos {
2476 1.1 christos if ((op->pinfo & INSN_WRITE_GPR_31) != 0)
2477 1.1 christos info->insn_type = dis_condjsr;
2478 1.1 christos else
2479 1.1 christos info->insn_type = dis_condbranch;
2480 1.1 christos }
2481 1.1 christos else if ((op->pinfo
2482 1.1 christos & (INSN_STORE_MEMORY | INSN_LOAD_MEMORY)) != 0)
2483 1.1 christos info->insn_type = dis_dref;
2484 1.1 christos
2485 1.1 christos return length;
2486 1.1 christos }
2487 1.1 christos }
2488 1.1 christos
2489 1.1 christos infprintf (is, "0x%x", insn);
2490 1.1 christos info->insn_type = dis_noninsn;
2491 1.1.1.3 christos
2492 1.1.1.3 christos return length;
2493 1.1.1.3 christos }
2494 1.1.1.3 christos
2495 1.1.1.3 christos /* Return 1 if a symbol associated with the location being disassembled
2496 1.1.1.3 christos indicates a compressed mode, either MIPS16 or microMIPS, according to
2497 1.1 christos MICROMIPS_P. We iterate over all the symbols at the address being
2498 1.1 christos considered assuming if at least one of them indicates code compression,
2499 1.1.1.3 christos then such code has been genuinely produced here (other symbols could
2500 1.1 christos have been derived from function symbols defined elsewhere or could
2501 1.1 christos define data). Otherwise, return 0. */
2502 1.1 christos
2503 1.1 christos static bfd_boolean
2504 1.1 christos is_compressed_mode_p (struct disassemble_info *info, bfd_boolean micromips_p)
2505 1.1 christos {
2506 1.1.1.3 christos int i;
2507 1.1 christos int l;
2508 1.1.1.3 christos
2509 1.1 christos for (i = info->symtab_pos, l = i + info->num_symbols; i < l; i++)
2510 1.1 christos if (((info->symtab[i])->flags & BSF_SYNTHETIC) != 0
2511 1.1 christos && ((!micromips_p
2512 1.1 christos && ELF_ST_IS_MIPS16 ((*info->symbols)->udata.i))
2513 1.1 christos || (micromips_p
2514 1.1 christos && ELF_ST_IS_MICROMIPS ((*info->symbols)->udata.i))))
2515 1.1.1.3 christos return 1;
2516 1.1 christos else if (bfd_asymbol_flavour (info->symtab[i]) == bfd_target_elf_flavour
2517 1.1.1.3 christos && info->symtab[i]->section == info->section)
2518 1.1 christos {
2519 1.1 christos elf_symbol_type *symbol = (elf_symbol_type *) info->symtab[i];
2520 1.1 christos if ((!micromips_p
2521 1.1 christos && ELF_ST_IS_MIPS16 (symbol->internal_elf_sym.st_other))
2522 1.1 christos || (micromips_p
2523 1.1 christos && ELF_ST_IS_MICROMIPS (symbol->internal_elf_sym.st_other)))
2524 1.1 christos return 1;
2525 1.1 christos }
2526 1.1 christos
2527 1.1 christos return 0;
2528 1.1 christos }
2529 1.1 christos
2530 1.1 christos /* In an environment where we do not know the symbol type of the
2531 1.1 christos instruction we are forced to assume that the low order bit of the
2532 1.1 christos instructions' address may mark it as a mips16 instruction. If we
2533 1.1 christos are single stepping, or the pc is within the disassembled function,
2534 1.1 christos this works. Otherwise, we need a clue. Sometimes. */
2535 1.1 christos
2536 1.1 christos static int
2537 1.1 christos _print_insn_mips (bfd_vma memaddr,
2538 1.1 christos struct disassemble_info *info,
2539 1.1 christos enum bfd_endian endianness)
2540 1.1 christos {
2541 1.1 christos bfd_byte buffer[INSNLEN];
2542 1.1 christos int status;
2543 1.1 christos
2544 1.1 christos set_default_mips_dis_options (info);
2545 1.1 christos parse_mips_dis_options (info->disassembler_options);
2546 1.1 christos
2547 1.1 christos if (info->mach == bfd_mach_mips16)
2548 1.1 christos return print_insn_mips16 (memaddr, info);
2549 1.1 christos if (info->mach == bfd_mach_mips_micromips)
2550 1.1 christos return print_insn_micromips (memaddr, info);
2551 1.1.1.3 christos
2552 1.1.1.3 christos #if 1
2553 1.1.1.3 christos /* FIXME: If odd address, this is CLEARLY a compressed instruction. */
2554 1.1.1.3 christos /* Only a few tools will work this way. */
2555 1.1.1.3 christos if (memaddr & 0x01)
2556 1.1.1.3 christos {
2557 1.1 christos if (micromips_ase)
2558 1.1 christos return print_insn_micromips (memaddr, info);
2559 1.1 christos else
2560 1.1.1.3 christos return print_insn_mips16 (memaddr, info);
2561 1.1.1.3 christos }
2562 1.1.1.3 christos #endif
2563 1.1.1.3 christos
2564 1.1 christos #if SYMTAB_AVAILABLE
2565 1.1 christos if (is_compressed_mode_p (info, TRUE))
2566 1.1 christos return print_insn_micromips (memaddr, info);
2567 1.1 christos if (is_compressed_mode_p (info, FALSE))
2568 1.1 christos return print_insn_mips16 (memaddr, info);
2569 1.1 christos #endif
2570 1.1 christos
2571 1.1 christos status = (*info->read_memory_func) (memaddr, buffer, INSNLEN, info);
2572 1.1 christos if (status == 0)
2573 1.1 christos {
2574 1.1 christos int insn;
2575 1.1 christos
2576 1.1 christos if (endianness == BFD_ENDIAN_BIG)
2577 1.1 christos insn = bfd_getb32 (buffer);
2578 1.1 christos else
2579 1.1 christos insn = bfd_getl32 (buffer);
2580 1.1 christos
2581 1.1 christos return print_insn_mips (memaddr, insn, info);
2582 1.1 christos }
2583 1.1 christos else
2584 1.1 christos {
2585 1.1 christos (*info->memory_error_func) (status, memaddr, info);
2586 1.1 christos return -1;
2587 1.1 christos }
2588 1.1 christos }
2589 1.1 christos
2590 1.1 christos int
2591 1.1 christos print_insn_big_mips (bfd_vma memaddr, struct disassemble_info *info)
2592 1.1 christos {
2593 1.1 christos return _print_insn_mips (memaddr, info, BFD_ENDIAN_BIG);
2594 1.1 christos }
2595 1.1 christos
2596 1.1 christos int
2597 1.1.1.5 christos print_insn_little_mips (bfd_vma memaddr, struct disassemble_info *info)
2598 1.1.1.5 christos {
2599 1.1.1.5 christos return _print_insn_mips (memaddr, info, BFD_ENDIAN_LITTLE);
2600 1.1.1.5 christos }
2601 1.1.1.5 christos
2602 1.1.1.5 christos /* Indices into option argument vector for options accepting an argument.
2604 1.1.1.5 christos Use MIPS_OPTION_ARG_NONE for options accepting no argument. */
2605 1.1.1.5 christos typedef enum
2606 1.1.1.5 christos {
2607 1.1.1.5 christos MIPS_OPTION_ARG_NONE = -1,
2608 1.1.1.5 christos MIPS_OPTION_ARG_ABI,
2609 1.1.1.5 christos MIPS_OPTION_ARG_ARCH,
2610 1.1.1.5 christos MIPS_OPTION_ARG_SIZE
2611 1.1.1.5 christos } mips_option_arg_t;
2612 1.1.1.5 christos
2613 1.1.1.5 christos /* Valid MIPS disassembler options. */
2614 1.1.1.5 christos static struct
2615 1.1.1.5 christos {
2616 1.1.1.5 christos const char *name;
2617 1.1.1.5 christos const char *description;
2618 1.1.1.5 christos mips_option_arg_t arg;
2619 1.1.1.5 christos } mips_options[] =
2620 1.1.1.5 christos {
2621 1.1.1.5 christos { "no-aliases", N_("Use canonical instruction forms.\n"),
2622 1.1.1.5 christos MIPS_OPTION_ARG_NONE },
2623 1.1.1.5 christos { "msa", N_("Recognize MSA instructions.\n"),
2624 1.1.1.5 christos MIPS_OPTION_ARG_NONE },
2625 1.1.1.5 christos { "virt", N_("Recognize the virtualization ASE instructions.\n"),
2626 1.1.1.5 christos MIPS_OPTION_ARG_NONE },
2627 1.1.1.5 christos { "xpa", N_("Recognize the eXtended Physical Address (XPA) ASE\n\
2628 1.1.1.5 christos instructions.\n"),
2629 1.1.1.5 christos MIPS_OPTION_ARG_NONE },
2630 1.1.1.5 christos { "ginv", N_("Recognize the Global INValidate (GINV) ASE "
2631 1.1.1.5 christos "instructions.\n"),
2632 1.1.1.5 christos MIPS_OPTION_ARG_NONE },
2633 1.1.1.5 christos { "loongson-mmi",
2634 1.1.1.5 christos N_("Recognize the Loongson MultiMedia extensions "
2635 1.1.1.5 christos "Instructions (MMI) ASE instructions.\n"),
2636 1.1.1.5 christos MIPS_OPTION_ARG_NONE },
2637 1.1.1.5 christos { "loongson-cam",
2638 1.1.1.5 christos N_("Recognize the Loongson Content Address Memory (CAM) "
2639 1.1.1.5 christos " instructions.\n"),
2640 1.1.1.5 christos MIPS_OPTION_ARG_NONE },
2641 1.1.1.5 christos { "loongson-ext",
2642 1.1.1.5 christos N_("Recognize the Loongson EXTensions (EXT) "
2643 1.1.1.5 christos " instructions.\n"),
2644 1.1.1.5 christos MIPS_OPTION_ARG_NONE },
2645 1.1.1.5 christos { "loongson-ext2",
2646 1.1.1.5 christos N_("Recognize the Loongson EXTensions R2 (EXT2) "
2647 1.1.1.5 christos " instructions.\n"),
2648 1.1.1.5 christos MIPS_OPTION_ARG_NONE },
2649 1.1.1.5 christos { "gpr-names=", N_("Print GPR names according to specified ABI.\n\
2650 1.1.1.5 christos Default: based on binary being disassembled.\n"),
2651 1.1.1.5 christos MIPS_OPTION_ARG_ABI },
2652 1.1.1.5 christos { "fpr-names=", N_("Print FPR names according to specified ABI.\n\
2653 1.1.1.5 christos Default: numeric.\n"),
2654 1.1.1.5 christos MIPS_OPTION_ARG_ABI },
2655 1.1.1.5 christos { "cp0-names=", N_("Print CP0 register names according to specified "
2656 1.1.1.5 christos "architecture.\n\
2657 1.1.1.5 christos Default: based on binary being disassembled.\n"),
2658 1.1.1.5 christos MIPS_OPTION_ARG_ARCH },
2659 1.1.1.5 christos { "hwr-names=", N_("Print HWR names according to specified architecture.\n\
2660 1.1.1.5 christos Default: based on binary being disassembled.\n"),
2661 1.1.1.5 christos MIPS_OPTION_ARG_ARCH },
2662 1.1.1.5 christos { "reg-names=", N_("Print GPR and FPR names according to specified ABI.\n"),
2663 1.1.1.5 christos MIPS_OPTION_ARG_ABI },
2664 1.1.1.5 christos { "reg-names=", N_("Print CP0 register and HWR names according to "
2665 1.1.1.5 christos "specified\n\
2666 1.1.1.5 christos architecture."),
2667 1.1.1.5 christos MIPS_OPTION_ARG_ARCH }
2668 1.1.1.5 christos };
2669 1.1.1.5 christos
2670 1.1.1.5 christos /* Build the structure representing valid MIPS disassembler options.
2671 1.1.1.5 christos This is done dynamically for maintenance ease purpose; a static
2672 1.1.1.5 christos initializer would be unreadable. */
2673 1.1.1.5 christos
2674 1.1.1.5 christos const disasm_options_and_args_t *
2675 1.1.1.5 christos disassembler_options_mips (void)
2676 1.1.1.5 christos {
2677 1.1.1.5 christos static disasm_options_and_args_t *opts_and_args;
2678 1.1.1.5 christos
2679 1.1.1.5 christos if (opts_and_args == NULL)
2680 1.1.1.5 christos {
2681 1.1.1.5 christos size_t num_options = ARRAY_SIZE (mips_options);
2682 1.1.1.5 christos size_t num_args = MIPS_OPTION_ARG_SIZE;
2683 1.1.1.5 christos disasm_option_arg_t *args;
2684 1.1.1.5 christos disasm_options_t *opts;
2685 1.1.1.5 christos size_t i;
2686 1.1.1.5 christos size_t j;
2687 1.1.1.5 christos
2688 1.1.1.5 christos args = XNEWVEC (disasm_option_arg_t, num_args + 1);
2689 1.1.1.5 christos
2690 1.1.1.5 christos args[MIPS_OPTION_ARG_ABI].name = "ABI";
2691 1.1.1.5 christos args[MIPS_OPTION_ARG_ABI].values
2692 1.1.1.5 christos = XNEWVEC (const char *, ARRAY_SIZE (mips_abi_choices) + 1);
2693 1.1.1.5 christos for (i = 0; i < ARRAY_SIZE (mips_abi_choices); i++)
2694 1.1.1.5 christos args[MIPS_OPTION_ARG_ABI].values[i] = mips_abi_choices[i].name;
2695 1.1.1.5 christos /* The array we return must be NULL terminated. */
2696 1.1.1.5 christos args[MIPS_OPTION_ARG_ABI].values[i] = NULL;
2697 1.1.1.5 christos
2698 1.1.1.5 christos args[MIPS_OPTION_ARG_ARCH].name = "ARCH";
2699 1.1.1.5 christos args[MIPS_OPTION_ARG_ARCH].values
2700 1.1.1.5 christos = XNEWVEC (const char *, ARRAY_SIZE (mips_arch_choices) + 1);
2701 1.1.1.5 christos for (i = 0, j = 0; i < ARRAY_SIZE (mips_arch_choices); i++)
2702 1.1.1.5 christos if (*mips_arch_choices[i].name != '\0')
2703 1.1.1.5 christos args[MIPS_OPTION_ARG_ARCH].values[j++] = mips_arch_choices[i].name;
2704 1.1.1.5 christos /* The array we return must be NULL terminated. */
2705 1.1.1.5 christos args[MIPS_OPTION_ARG_ARCH].values[j] = NULL;
2706 1.1.1.5 christos
2707 1.1.1.5 christos /* The array we return must be NULL terminated. */
2708 1.1.1.5 christos args[MIPS_OPTION_ARG_SIZE].name = NULL;
2709 1.1.1.5 christos args[MIPS_OPTION_ARG_SIZE].values = NULL;
2710 1.1.1.5 christos
2711 1.1.1.5 christos opts_and_args = XNEW (disasm_options_and_args_t);
2712 1.1.1.5 christos opts_and_args->args = args;
2713 1.1.1.5 christos
2714 1.1.1.5 christos opts = &opts_and_args->options;
2715 1.1.1.5 christos opts->name = XNEWVEC (const char *, num_options + 1);
2716 1.1.1.5 christos opts->description = XNEWVEC (const char *, num_options + 1);
2717 1.1.1.5 christos opts->arg = XNEWVEC (const disasm_option_arg_t *, num_options + 1);
2718 1.1.1.5 christos for (i = 0; i < num_options; i++)
2719 1.1.1.5 christos {
2720 1.1.1.5 christos opts->name[i] = mips_options[i].name;
2721 1.1.1.5 christos opts->description[i] = _(mips_options[i].description);
2722 1.1.1.5 christos if (mips_options[i].arg != MIPS_OPTION_ARG_NONE)
2723 1.1.1.5 christos opts->arg[i] = &args[mips_options[i].arg];
2724 1.1.1.5 christos else
2725 1.1.1.5 christos opts->arg[i] = NULL;
2726 1.1.1.5 christos }
2727 1.1.1.5 christos /* The array we return must be NULL terminated. */
2728 1.1.1.5 christos opts->name[i] = NULL;
2729 1.1.1.5 christos opts->description[i] = NULL;
2730 1.1 christos opts->arg[i] = NULL;
2731 1.1 christos }
2732 1.1 christos
2733 1.1.1.5 christos return opts_and_args;
2734 1.1.1.5 christos }
2735 1.1.1.5 christos
2736 1.1.1.5 christos void
2737 1.1.1.5 christos print_mips_disassembler_options (FILE *stream)
2738 1.1.1.5 christos {
2739 1.1.1.5 christos const disasm_options_and_args_t *opts_and_args;
2740 1.1.1.5 christos const disasm_option_arg_t *args;
2741 1.1.1.5 christos const disasm_options_t *opts;
2742 1.1.1.5 christos size_t max_len = 0;
2743 1.1 christos size_t i;
2744 1.1 christos size_t j;
2745 1.1 christos
2746 1.1.1.5 christos opts_and_args = disassembler_options_mips ();
2747 1.1.1.2 christos opts = &opts_and_args->options;
2748 1.1.1.5 christos args = opts_and_args->args;
2749 1.1.1.5 christos
2750 1.1.1.5 christos fprintf (stream, _("\n\
2751 1.1.1.5 christos The following MIPS specific disassembler options are supported for use\n\
2752 1.1 christos with the -M switch (multiple options should be separated by commas):\n\n"));
2753 1.1.1.5 christos
2754 1.1.1.5 christos /* Compute the length of the longest option name. */
2755 1.1.1.5 christos for (i = 0; opts->name[i] != NULL; i++)
2756 1.1.1.5 christos {
2757 1.1.1.5 christos size_t len = strlen (opts->name[i]);
2758 1.1 christos
2759 1.1.1.5 christos if (opts->arg[i] != NULL)
2760 1.1.1.5 christos len += strlen (opts->arg[i]->name);
2761 1.1.1.5 christos if (max_len < len)
2762 1.1.1.5 christos max_len = len;
2763 1.1.1.5 christos }
2764 1.1.1.5 christos
2765 1.1.1.5 christos for (i = 0, max_len++; opts->name[i] != NULL; i++)
2766 1.1.1.5 christos {
2767 1.1 christos fprintf (stream, " %s", opts->name[i]);
2768 1.1.1.5 christos if (opts->arg[i] != NULL)
2769 1.1.1.5 christos fprintf (stream, "%s", opts->arg[i]->name);
2770 1.1.1.5 christos if (opts->description[i] != NULL)
2771 1.1.1.5 christos {
2772 1.1.1.5 christos size_t len = strlen (opts->name[i]);
2773 1.1.1.5 christos
2774 1.1.1.5 christos if (opts->arg[i] != NULL)
2775 1.1 christos len += strlen (opts->arg[i]->name);
2776 1.1.1.5 christos fprintf (stream,
2777 1.1.1.5 christos "%*c %s", (int) (max_len - len), ' ', opts->description[i]);
2778 1.1.1.5 christos }
2779 1.1.1.5 christos fprintf (stream, _("\n"));
2780 1.1.1.5 christos }
2781 1.1.1.5 christos
2782 1.1.1.5 christos for (i = 0; args[i].name != NULL; i++)
2783 1.1.1.5 christos {
2784 1.1.1.5 christos fprintf (stream, _("\n\
2785 1.1 christos For the options above, the following values are supported for \"%s\":\n "),
2786 1.1 christos args[i].name);
2787 1.1 christos for (j = 0; args[i].values[j] != NULL; j++)
2788 fprintf (stream, " %s", args[i].values[j]);
2789 fprintf (stream, _("\n"));
2790 }
2791
2792 fprintf (stream, _("\n"));
2793 }
2794