* config/tc-xtensa.c (xg_assembly_relax): Increment steps_taken for
[deliverable/binutils-gdb.git] / gdb / ppcnbsd-tdep.c
1 /* Target-dependent code for PowerPC systems running NetBSD.
2
3 Copyright (C) 2002, 2003, 2004 Free Software Foundation, Inc.
4
5 Contributed by Wasabi Systems, Inc.
6
7 This file is part of GDB.
8
9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation; either version 2 of the License, or
12 (at your option) any later version.
13
14 This program is distributed in the hope that it will be useful,
15 but WITHOUT ANY WARRANTY; without even the implied warranty of
16 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 GNU General Public License for more details.
18
19 You should have received a copy of the GNU General Public License
20 along with this program; if not, write to the Free Software
21 Foundation, Inc., 51 Franklin Street, Fifth Floor,
22 Boston, MA 02110-1301, USA. */
23
24 #include "defs.h"
25 #include "gdbcore.h"
26 #include "regcache.h"
27 #include "target.h"
28 #include "breakpoint.h"
29 #include "value.h"
30 #include "osabi.h"
31
32 #include "ppc-tdep.h"
33 #include "ppcnbsd-tdep.h"
34 #include "nbsd-tdep.h"
35 #include "tramp-frame.h"
36 #include "trad-frame.h"
37 #include "gdb_assert.h"
38 #include "solib-svr4.h"
39
40 #define REG_FIXREG_OFFSET(x) ((x) * 4)
41 #define REG_LR_OFFSET (32 * 4)
42 #define REG_CR_OFFSET (33 * 4)
43 #define REG_XER_OFFSET (34 * 4)
44 #define REG_CTR_OFFSET (35 * 4)
45 #define REG_PC_OFFSET (36 * 4)
46 #define SIZEOF_STRUCT_REG (37 * 4)
47
48 #define FPREG_FPR_OFFSET(x) ((x) * 8)
49 #define FPREG_FPSCR_OFFSET (32 * 8)
50 #define SIZEOF_STRUCT_FPREG (33 * 8)
51
52 void
53 ppcnbsd_supply_reg (char *regs, int regno)
54 {
55 struct gdbarch_tdep *tdep = gdbarch_tdep (current_gdbarch);
56 int i;
57
58 for (i = 0; i < ppc_num_gprs; i++)
59 {
60 if (regno == tdep->ppc_gp0_regnum + i || regno == -1)
61 regcache_raw_supply (current_regcache, tdep->ppc_gp0_regnum + i,
62 regs + REG_FIXREG_OFFSET (i));
63 }
64
65 if (regno == tdep->ppc_lr_regnum || regno == -1)
66 regcache_raw_supply (current_regcache, tdep->ppc_lr_regnum,
67 regs + REG_LR_OFFSET);
68
69 if (regno == tdep->ppc_cr_regnum || regno == -1)
70 regcache_raw_supply (current_regcache, tdep->ppc_cr_regnum,
71 regs + REG_CR_OFFSET);
72
73 if (regno == tdep->ppc_xer_regnum || regno == -1)
74 regcache_raw_supply (current_regcache, tdep->ppc_xer_regnum,
75 regs + REG_XER_OFFSET);
76
77 if (regno == tdep->ppc_ctr_regnum || regno == -1)
78 regcache_raw_supply (current_regcache, tdep->ppc_ctr_regnum,
79 regs + REG_CTR_OFFSET);
80
81 if (regno == PC_REGNUM || regno == -1)
82 regcache_raw_supply (current_regcache, PC_REGNUM,
83 regs + REG_PC_OFFSET);
84 }
85
86 void
87 ppcnbsd_fill_reg (char *regs, int regno)
88 {
89 struct gdbarch_tdep *tdep = gdbarch_tdep (current_gdbarch);
90 int i;
91
92 for (i = 0; i < ppc_num_gprs; i++)
93 {
94 if (regno == tdep->ppc_gp0_regnum + i || regno == -1)
95 regcache_raw_collect (current_regcache, tdep->ppc_gp0_regnum + i,
96 regs + REG_FIXREG_OFFSET (i));
97 }
98
99 if (regno == tdep->ppc_lr_regnum || regno == -1)
100 regcache_raw_collect (current_regcache, tdep->ppc_lr_regnum,
101 regs + REG_LR_OFFSET);
102
103 if (regno == tdep->ppc_cr_regnum || regno == -1)
104 regcache_raw_collect (current_regcache, tdep->ppc_cr_regnum,
105 regs + REG_CR_OFFSET);
106
107 if (regno == tdep->ppc_xer_regnum || regno == -1)
108 regcache_raw_collect (current_regcache, tdep->ppc_xer_regnum,
109 regs + REG_XER_OFFSET);
110
111 if (regno == tdep->ppc_ctr_regnum || regno == -1)
112 regcache_raw_collect (current_regcache, tdep->ppc_ctr_regnum,
113 regs + REG_CTR_OFFSET);
114
115 if (regno == PC_REGNUM || regno == -1)
116 regcache_raw_collect (current_regcache, PC_REGNUM, regs + REG_PC_OFFSET);
117 }
118
119 void
120 ppcnbsd_supply_fpreg (char *fpregs, int regno)
121 {
122 struct gdbarch_tdep *tdep = gdbarch_tdep (current_gdbarch);
123 int i;
124
125 /* FIXME: jimb/2004-05-05: Some PPC variants don't have floating
126 point registers. Traditionally, GDB's register set has still
127 listed the floating point registers for such machines, so this
128 code is harmless. However, the new E500 port actually omits the
129 floating point registers entirely from the register set --- they
130 don't even have register numbers assigned to them.
131
132 It's not clear to me how best to update this code, so this assert
133 will alert the first person to encounter the NetBSD/E500
134 combination to the problem. */
135 gdb_assert (ppc_floating_point_unit_p (current_gdbarch));
136
137 for (i = 0; i < ppc_num_fprs; i++)
138 {
139 if (regno == tdep->ppc_fp0_regnum + i || regno == -1)
140 regcache_raw_supply (current_regcache, tdep->ppc_fp0_regnum + i,
141 fpregs + FPREG_FPR_OFFSET (i));
142 }
143
144 if (regno == tdep->ppc_fpscr_regnum || regno == -1)
145 regcache_raw_supply (current_regcache, tdep->ppc_fpscr_regnum,
146 fpregs + FPREG_FPSCR_OFFSET);
147 }
148
149 void
150 ppcnbsd_fill_fpreg (char *fpregs, int regno)
151 {
152 struct gdbarch_tdep *tdep = gdbarch_tdep (current_gdbarch);
153 int i;
154
155 /* FIXME: jimb/2004-05-05: Some PPC variants don't have floating
156 point registers. Traditionally, GDB's register set has still
157 listed the floating point registers for such machines, so this
158 code is harmless. However, the new E500 port actually omits the
159 floating point registers entirely from the register set --- they
160 don't even have register numbers assigned to them.
161
162 It's not clear to me how best to update this code, so this assert
163 will alert the first person to encounter the NetBSD/E500
164 combination to the problem. */
165 gdb_assert (ppc_floating_point_unit_p (current_gdbarch));
166
167 for (i = 0; i < ppc_num_fprs; i++)
168 {
169 if (regno == tdep->ppc_fp0_regnum + i || regno == -1)
170 regcache_raw_collect (current_regcache, tdep->ppc_fp0_regnum + i,
171 fpregs + FPREG_FPR_OFFSET (i));
172 }
173
174 if (regno == tdep->ppc_fpscr_regnum || regno == -1)
175 regcache_raw_collect (current_regcache, tdep->ppc_fpscr_regnum,
176 fpregs + FPREG_FPSCR_OFFSET);
177 }
178
179 static void
180 fetch_core_registers (char *core_reg_sect, unsigned core_reg_size, int which,
181 CORE_ADDR ignore)
182 {
183 char *regs, *fpregs;
184
185 /* We get everything from one section. */
186 if (which != 0)
187 return;
188
189 regs = core_reg_sect;
190 fpregs = core_reg_sect + SIZEOF_STRUCT_REG;
191
192 /* Integer registers. */
193 ppcnbsd_supply_reg (regs, -1);
194
195 /* Floating point registers. */
196 ppcnbsd_supply_fpreg (fpregs, -1);
197 }
198
199 static void
200 fetch_elfcore_registers (char *core_reg_sect, unsigned core_reg_size, int which,
201 CORE_ADDR ignore)
202 {
203 switch (which)
204 {
205 case 0: /* Integer registers. */
206 if (core_reg_size != SIZEOF_STRUCT_REG)
207 warning (_("Wrong size register set in core file."));
208 else
209 ppcnbsd_supply_reg (core_reg_sect, -1);
210 break;
211
212 case 2: /* Floating point registers. */
213 if (core_reg_size != SIZEOF_STRUCT_FPREG)
214 warning (_("Wrong size FP register set in core file."));
215 else
216 ppcnbsd_supply_fpreg (core_reg_sect, -1);
217 break;
218
219 default:
220 /* Don't know what kind of register request this is; just ignore it. */
221 break;
222 }
223 }
224
225 static struct core_fns ppcnbsd_core_fns =
226 {
227 bfd_target_unknown_flavour, /* core_flavour */
228 default_check_format, /* check_format */
229 default_core_sniffer, /* core_sniffer */
230 fetch_core_registers, /* core_read_registers */
231 NULL /* next */
232 };
233
234 static struct core_fns ppcnbsd_elfcore_fns =
235 {
236 bfd_target_elf_flavour, /* core_flavour */
237 default_check_format, /* check_format */
238 default_core_sniffer, /* core_sniffer */
239 fetch_elfcore_registers, /* core_read_registers */
240 NULL /* next */
241 };
242
243 /* NetBSD is confused. It appears that 1.5 was using the correct SVr4
244 convention but, 1.6 switched to the below broken convention. For
245 the moment use the broken convention. Ulgh!. */
246
247 static enum return_value_convention
248 ppcnbsd_return_value (struct gdbarch *gdbarch, struct type *valtype,
249 struct regcache *regcache, void *readbuf,
250 const void *writebuf)
251 {
252 if ((TYPE_CODE (valtype) == TYPE_CODE_STRUCT
253 || TYPE_CODE (valtype) == TYPE_CODE_UNION)
254 && !((TYPE_LENGTH (valtype) == 16 || TYPE_LENGTH (valtype) == 8)
255 && TYPE_VECTOR (valtype))
256 && !(TYPE_LENGTH (valtype) == 1
257 || TYPE_LENGTH (valtype) == 2
258 || TYPE_LENGTH (valtype) == 4
259 || TYPE_LENGTH (valtype) == 8))
260 return RETURN_VALUE_STRUCT_CONVENTION;
261 else
262 return ppc_sysv_abi_broken_return_value (gdbarch, valtype, regcache,
263 readbuf, writebuf);
264 }
265
266 static void
267 ppcnbsd_sigtramp_cache_init (const struct tramp_frame *self,
268 struct frame_info *next_frame,
269 struct trad_frame_cache *this_cache,
270 CORE_ADDR func)
271 {
272 CORE_ADDR base;
273 CORE_ADDR offset;
274 int i;
275 struct gdbarch *gdbarch = get_frame_arch (next_frame);
276 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
277
278 base = frame_unwind_register_unsigned (next_frame, SP_REGNUM);
279 offset = base + 0x18 + 2 * tdep->wordsize;
280 for (i = 0; i < ppc_num_gprs; i++)
281 {
282 int regnum = i + tdep->ppc_gp0_regnum;
283 trad_frame_set_reg_addr (this_cache, regnum, offset);
284 offset += tdep->wordsize;
285 }
286 trad_frame_set_reg_addr (this_cache, tdep->ppc_lr_regnum, offset);
287 offset += tdep->wordsize;
288 trad_frame_set_reg_addr (this_cache, tdep->ppc_cr_regnum, offset);
289 offset += tdep->wordsize;
290 trad_frame_set_reg_addr (this_cache, tdep->ppc_xer_regnum, offset);
291 offset += tdep->wordsize;
292 trad_frame_set_reg_addr (this_cache, tdep->ppc_ctr_regnum, offset);
293 offset += tdep->wordsize;
294 trad_frame_set_reg_addr (this_cache, PC_REGNUM, offset); /* SRR0? */
295 offset += tdep->wordsize;
296
297 /* Construct the frame ID using the function start. */
298 trad_frame_set_id (this_cache, frame_id_build (base, func));
299 }
300
301 /* Given the NEXT frame, examine the instructions at and around this
302 frame's resume address (aka PC) to see of they look like a signal
303 trampoline. Return the address of the trampolines first
304 instruction, or zero if it isn't a signal trampoline. */
305
306 static const struct tramp_frame ppcnbsd_sigtramp = {
307 SIGTRAMP_FRAME,
308 4, /* insn size */
309 { /* insn */
310 { 0x38610018, -1 }, /* addi r3,r1,24 */
311 { 0x38000127, -1 }, /* li r0,295 */
312 { 0x44000002, -1 }, /* sc */
313 { 0x38000001, -1 }, /* li r0,1 */
314 { 0x44000002, -1 }, /* sc */
315 { TRAMP_SENTINEL_INSN, -1 }
316 },
317 ppcnbsd_sigtramp_cache_init
318 };
319
320 static void
321 ppcnbsd_init_abi (struct gdbarch_info info,
322 struct gdbarch *gdbarch)
323 {
324 /* For NetBSD, this is an on again, off again thing. Some systems
325 do use the broken struct convention, and some don't. */
326 set_gdbarch_return_value (gdbarch, ppcnbsd_return_value);
327 set_solib_svr4_fetch_link_map_offsets (gdbarch,
328 nbsd_ilp32_solib_svr4_fetch_link_map_offsets);
329 tramp_frame_prepend_unwinder (gdbarch, &ppcnbsd_sigtramp);
330 }
331
332 void
333 _initialize_ppcnbsd_tdep (void)
334 {
335 gdbarch_register_osabi (bfd_arch_powerpc, 0, GDB_OSABI_NETBSD_ELF,
336 ppcnbsd_init_abi);
337
338 deprecated_add_core_fns (&ppcnbsd_core_fns);
339 deprecated_add_core_fns (&ppcnbsd_elfcore_fns);
340 }
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