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005328e3 1/* Target-dependent code for OpenBSD/i386.
67457012 2
6aba47ca 3 Copyright (C) 1988, 1989, 1991, 1992, 1994, 1996, 2000, 2001, 2002, 2003,
9b254dd1 4 2004, 2005, 2006, 2007, 2008 Free Software Foundation, Inc.
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5
6 This file is part of GDB.
7
8 This program is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
a9762ec7 10 the Free Software Foundation; either version 3 of the License, or
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11 (at your option) any later version.
12
13 This program is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
17
18 You should have received a copy of the GNU General Public License
a9762ec7 19 along with this program. If not, see <http://www.gnu.org/licenses/>. */
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20
21#include "defs.h"
22#include "arch-utils.h"
911bc6ee 23#include "frame.h"
508fbfea 24#include "frame-unwind.h"
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25#include "gdbcore.h"
26#include "regcache.h"
67457012 27#include "regset.h"
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28#include "symtab.h"
29#include "objfiles.h"
4be87837 30#include "osabi.h"
5d93ae8c 31#include "target.h"
508fbfea 32#include "trad-frame.h"
005328e3 33
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34#include "gdb_assert.h"
35#include "gdb_string.h"
36
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37#include "i386-tdep.h"
38#include "i387-tdep.h"
60a6eeb6 39#include "solib-svr4.h"
a28109e0 40#include "bsd-uthread.h"
005328e3 41
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42/* Support for signal handlers. */
43
44/* Since OpenBSD 3.2, the sigtramp routine is mapped at a random page
45 in virtual memory. The randomness makes it somewhat tricky to
46 detect it, but fortunately we can rely on the fact that the start
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47 of the sigtramp routine is page-aligned. We recognize the
48 trampoline by looking for the code that invokes the sigreturn
49 system call. The offset where we can find that code varies from
50 release to release.
51
52 By the way, the mapping mentioned above is read-only, so you cannot
53 place a breakpoint in the signal trampoline. */
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54
55/* Default page size. */
56static const int i386obsd_page_size = 4096;
57
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58/* Offset for sigreturn(2). */
59static const int i386obsd_sigreturn_offset[] = {
60 0x0a, /* OpenBSD 3.2 */
61 0x14, /* OpenBSD 3.6 */
62 0x3a, /* OpenBSD 3.8 */
63 -1
64};
65
377d9ebd 66/* Return whether the frame preceding NEXT_FRAME corresponds to an
911bc6ee 67 OpenBSD sigtramp routine. */
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68
69static int
911bc6ee 70i386obsd_sigtramp_p (struct frame_info *next_frame)
5d93ae8c 71{
911bc6ee 72 CORE_ADDR pc = frame_pc_unwind (next_frame);
5d93ae8c 73 CORE_ADDR start_pc = (pc & ~(i386obsd_page_size - 1));
3ed85247 74 /* The call sequence invoking sigreturn(2). */
63c0089f 75 const gdb_byte sigreturn[] =
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76 {
77 0xb8,
78 0x67, 0x00, 0x00, 0x00, /* movl $SYS_sigreturn, %eax */
79 0xcd, 0x80 /* int $0x80 */
80 };
c822af0c 81 size_t buflen = sizeof sigreturn;
3ed85247 82 const int *offset;
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83 gdb_byte *buf;
84 char *name;
5d93ae8c 85
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86 /* If the function has a valid symbol name, it isn't a
87 trampoline. */
88 find_pc_partial_function (pc, &name, NULL, NULL);
89 if (name != NULL)
90 return 0;
91
92 /* If the function lives in a valid section (even without a starting
93 point) it isn't a trampoline. */
94 if (find_pc_section (pc) != NULL)
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95 return 0;
96
9c8e3411 97 /* Allocate buffer. */
c822af0c 98 buf = alloca (buflen);
9c8e3411 99
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100 /* Loop over all offsets. */
101 for (offset = i386obsd_sigreturn_offset; *offset != -1; offset++)
102 {
103 /* If we can't read the instructions, return zero. */
104 if (!safe_frame_unwind_memory (next_frame, start_pc + *offset,
105 buf, buflen))
106 return 0;
107
108 /* Check for sigreturn(2). */
109 if (memcmp (buf, sigreturn, buflen) == 0)
110 return 1;
111 }
9c8e3411 112
911bc6ee 113 return 0;
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114}
115\f
116/* Mapping between the general-purpose registers in `struct reg'
117 format and GDB's register cache layout. */
118
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119/* From <machine/reg.h>. */
120static int i386obsd_r_reg_offset[] =
121{
122 0 * 4, /* %eax */
123 1 * 4, /* %ecx */
124 2 * 4, /* %edx */
125 3 * 4, /* %ebx */
126 4 * 4, /* %esp */
127 5 * 4, /* %ebp */
128 6 * 4, /* %esi */
129 7 * 4, /* %edi */
130 8 * 4, /* %eip */
131 9 * 4, /* %eflags */
132 10 * 4, /* %cs */
133 11 * 4, /* %ss */
134 12 * 4, /* %ds */
135 13 * 4, /* %es */
136 14 * 4, /* %fs */
137 15 * 4 /* %gs */
138};
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139
140static void
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141i386obsd_aout_supply_regset (const struct regset *regset,
142 struct regcache *regcache, int regnum,
143 const void *regs, size_t len)
005328e3 144{
9ea75c57 145 const struct gdbarch_tdep *tdep = gdbarch_tdep (regset->arch);
3ed85247 146 const gdb_byte *gregs = regs;
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147
148 gdb_assert (len >= tdep->sizeof_gregset + I387_SIZEOF_FSAVE);
005328e3 149
67457012 150 i386_supply_gregset (regset, regcache, regnum, regs, tdep->sizeof_gregset);
3ed85247 151 i387_supply_fsave (regcache, regnum, gregs + tdep->sizeof_gregset);
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152}
153
49cfa46f 154static const struct regset *
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155i386obsd_aout_regset_from_core_section (struct gdbarch *gdbarch,
156 const char *sect_name,
157 size_t sect_size)
005328e3 158{
67457012 159 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
005328e3 160
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161 /* OpenBSD a.out core dumps don't use seperate register sets for the
162 general-purpose and floating-point registers. */
005328e3 163
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164 if (strcmp (sect_name, ".reg") == 0
165 && sect_size >= tdep->sizeof_gregset + I387_SIZEOF_FSAVE)
005328e3 166 {
67457012 167 if (tdep->gregset == NULL)
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168 tdep->gregset =
169 regset_alloc (gdbarch, i386obsd_aout_supply_regset, NULL);
67457012 170 return tdep->gregset;
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171 }
172
67457012 173 return NULL;
005328e3 174}
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175\f
176
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177/* Sigtramp routine location for OpenBSD 3.1 and earlier releases. */
178CORE_ADDR i386obsd_sigtramp_start_addr = 0xbfbfdf20;
179CORE_ADDR i386obsd_sigtramp_end_addr = 0xbfbfdff0;
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180
181/* From <machine/signal.h>. */
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182int i386obsd_sc_reg_offset[I386_NUM_GREGS] =
183{
184 10 * 4, /* %eax */
185 9 * 4, /* %ecx */
186 8 * 4, /* %edx */
187 7 * 4, /* %ebx */
188 14 * 4, /* %esp */
189 6 * 4, /* %ebp */
190 5 * 4, /* %esi */
191 4 * 4, /* %edi */
192 11 * 4, /* %eip */
193 13 * 4, /* %eflags */
194 12 * 4, /* %cs */
195 15 * 4, /* %ss */
196 3 * 4, /* %ds */
197 2 * 4, /* %es */
198 1 * 4, /* %fs */
199 0 * 4 /* %gs */
200};
005328e3 201
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202/* From /usr/src/lib/libpthread/arch/i386/uthread_machdep.c. */
203static int i386obsd_uthread_reg_offset[] =
204{
205 11 * 4, /* %eax */
206 10 * 4, /* %ecx */
207 9 * 4, /* %edx */
208 8 * 4, /* %ebx */
209 -1, /* %esp */
210 6 * 4, /* %ebp */
211 5 * 4, /* %esi */
212 4 * 4, /* %edi */
213 12 * 4, /* %eip */
214 -1, /* %eflags */
215 13 * 4, /* %cs */
216 -1, /* %ss */
217 3 * 4, /* %ds */
218 2 * 4, /* %es */
219 1 * 4, /* %fs */
220 0 * 4 /* %gs */
221};
222
223/* Offset within the thread structure where we can find the saved
224 stack pointer (%esp). */
225#define I386OBSD_UTHREAD_ESP_OFFSET 176
226
227static void
228i386obsd_supply_uthread (struct regcache *regcache,
229 int regnum, CORE_ADDR addr)
230{
231 CORE_ADDR sp_addr = addr + I386OBSD_UTHREAD_ESP_OFFSET;
232 CORE_ADDR sp = 0;
63c0089f 233 gdb_byte buf[4];
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234 int i;
235
236 gdb_assert (regnum >= -1);
237
238 if (regnum == -1 || regnum == I386_ESP_REGNUM)
239 {
240 int offset;
241
242 /* Fetch stack pointer from thread structure. */
243 sp = read_memory_unsigned_integer (sp_addr, 4);
244
245 /* Adjust the stack pointer such that it looks as if we just
246 returned from _thread_machdep_switch. */
247 offset = i386obsd_uthread_reg_offset[I386_EIP_REGNUM] + 4;
248 store_unsigned_integer (buf, 4, sp + offset);
249 regcache_raw_supply (regcache, I386_ESP_REGNUM, buf);
250 }
251
252 for (i = 0; i < ARRAY_SIZE (i386obsd_uthread_reg_offset); i++)
253 {
254 if (i386obsd_uthread_reg_offset[i] != -1
255 && (regnum == -1 || regnum == i))
256 {
257 /* Fetch stack pointer from thread structure (if we didn't
258 do so already). */
259 if (sp == 0)
260 sp = read_memory_unsigned_integer (sp_addr, 4);
261
262 /* Read the saved register from the stack frame. */
263 read_memory (sp + i386obsd_uthread_reg_offset[i], buf, 4);
264 regcache_raw_supply (regcache, i, buf);
265 }
266 }
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267}
268
269static void
270i386obsd_collect_uthread (const struct regcache *regcache,
271 int regnum, CORE_ADDR addr)
272{
273 CORE_ADDR sp_addr = addr + I386OBSD_UTHREAD_ESP_OFFSET;
274 CORE_ADDR sp = 0;
63c0089f 275 gdb_byte buf[4];
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276 int i;
277
278 gdb_assert (regnum >= -1);
279
280 if (regnum == -1 || regnum == I386_ESP_REGNUM)
281 {
282 int offset;
283
284 /* Calculate the stack pointer (frame pointer) that will be
285 stored into the thread structure. */
286 offset = i386obsd_uthread_reg_offset[I386_EIP_REGNUM] + 4;
287 regcache_raw_collect (regcache, I386_ESP_REGNUM, buf);
288 sp = extract_unsigned_integer (buf, 4) - offset;
289
290 /* Store the stack pointer. */
291 write_memory_unsigned_integer (sp_addr, 4, sp);
292
293 /* The stack pointer was (potentially) modified. Make sure we
294 build a proper stack frame. */
295 regnum = -1;
296 }
297
298 for (i = 0; i < ARRAY_SIZE (i386obsd_uthread_reg_offset); i++)
299 {
300 if (i386obsd_uthread_reg_offset[i] != -1
301 && (regnum == -1 || regnum == i))
302 {
303 /* Fetch stack pointer from thread structure (if we didn't
304 calculate it already). */
305 if (sp == 0)
306 sp = read_memory_unsigned_integer (sp_addr, 4);
307
308 /* Write the register into the stack frame. */
309 regcache_raw_collect (regcache, i, buf);
310 write_memory (sp + i386obsd_uthread_reg_offset[i], buf, 4);
311 }
312 }
313}
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314\f
315/* Kernel debugging support. */
316
317/* From <machine/frame.h>. Note that %esp and %ess are only saved in
318 a trap frame when entering the kernel from user space. */
319static int i386obsd_tf_reg_offset[] =
320{
321 10 * 4, /* %eax */
322 9 * 4, /* %ecx */
323 8 * 4, /* %edx */
324 7 * 4, /* %ebx */
325 -1, /* %esp */
326 6 * 4, /* %ebp */
327 5 * 4, /* %esi */
328 4 * 4, /* %edi */
329 13 * 4, /* %eip */
330 15 * 4, /* %eflags */
331 14 * 4, /* %cs */
332 -1, /* %ss */
333 3 * 4, /* %ds */
334 2 * 4, /* %es */
335 0 * 4, /* %fs */
336 1 * 4 /* %gs */
337};
338
339static struct trad_frame_cache *
340i386obsd_trapframe_cache(struct frame_info *next_frame, void **this_cache)
341{
342 struct trad_frame_cache *cache;
343 CORE_ADDR func, sp, addr;
344 ULONGEST cs;
7238f002 345 char *name;
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346 int i;
347
348 if (*this_cache)
349 return *this_cache;
350
351 cache = trad_frame_cache_zalloc (next_frame);
352 *this_cache = cache;
353
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354 /* NORMAL_FRAME matches the type in i386obsd_trapframe_unwind, but
355 SIGTRAMP_FRAME might be more appropriate. */
356 func = frame_func_unwind (next_frame, NORMAL_FRAME);
508fbfea 357 sp = frame_unwind_register_unsigned (next_frame, I386_ESP_REGNUM);
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358
359 find_pc_partial_function (func, &name, NULL, NULL);
6d566cff 360 if (name && strncmp (name, "Xintr", 5) == 0)
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361 addr = sp + 8; /* It's an interrupt frame. */
362 else
363 addr = sp;
364
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365 for (i = 0; i < ARRAY_SIZE (i386obsd_tf_reg_offset); i++)
366 if (i386obsd_tf_reg_offset[i] != -1)
7238f002 367 trad_frame_set_reg_addr (cache, i, addr + i386obsd_tf_reg_offset[i]);
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368
369 /* Read %cs from trap frame. */
7238f002 370 addr += i386obsd_tf_reg_offset[I386_CS_REGNUM];
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371 cs = read_memory_unsigned_integer (addr, 4);
372 if ((cs & I386_SEL_RPL) == I386_SEL_UPL)
373 {
6d566cff 374 /* Trap from user space; terminate backtrace. */
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375 trad_frame_set_id (cache, null_frame_id);
376 }
377 else
378 {
379 /* Construct the frame ID using the function start. */
380 trad_frame_set_id (cache, frame_id_build (sp + 8, func));
381 }
382
383 return cache;
384}
385
386static void
387i386obsd_trapframe_this_id (struct frame_info *next_frame,
388 void **this_cache, struct frame_id *this_id)
389{
390 struct trad_frame_cache *cache =
391 i386obsd_trapframe_cache (next_frame, this_cache);
392
393 trad_frame_get_id (cache, this_id);
394}
395
396static void
397i386obsd_trapframe_prev_register (struct frame_info *next_frame,
398 void **this_cache, int regnum,
399 int *optimizedp, enum lval_type *lvalp,
400 CORE_ADDR *addrp, int *realnump,
401 gdb_byte *valuep)
402{
403 struct trad_frame_cache *cache =
404 i386obsd_trapframe_cache (next_frame, this_cache);
405
406 trad_frame_get_register (cache, next_frame, regnum,
407 optimizedp, lvalp, addrp, realnump, valuep);
408}
409
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410static int
411i386obsd_trapframe_sniffer (const struct frame_unwind *self,
412 struct frame_info *next_frame,
413 void **this_prologue_cache)
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414{
415 ULONGEST cs;
416 char *name;
417
e5cc6d11 418 /* Check Current Privilege Level and bail out if we're not executing
6d566cff 419 in kernel space. */
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420 cs = frame_unwind_register_unsigned (next_frame, I386_CS_REGNUM);
421 if ((cs & I386_SEL_RPL) == I386_SEL_UPL)
6d566cff 422 return 0;
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423
424 find_pc_partial_function (frame_pc_unwind (next_frame), &name, NULL, NULL);
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425 return (name && (strcmp (name, "calltrap") == 0
426 || strcmp (name, "syscall1") == 0
427 || strncmp (name, "Xintr", 5) == 0
428 || strncmp (name, "Xsoft", 5) == 0));
508fbfea 429}
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430
431static const struct frame_unwind i386obsd_trapframe_unwind = {
432 /* FIXME: kettenis/20051219: This really is more like an interrupt
433 frame, but SIGTRAMP_FRAME would print <signal handler called>,
434 which really is not what we want here. */
435 NORMAL_FRAME,
436 i386obsd_trapframe_this_id,
437 i386obsd_trapframe_prev_register,
438 NULL,
439 i386obsd_trapframe_sniffer
440};
508fbfea 441\f
a28109e0 442
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443static void
444i386obsd_init_abi (struct gdbarch_info info, struct gdbarch *gdbarch)
445{
446 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
447
448 /* Obviously OpenBSD is BSD-based. */
449 i386bsd_init_abi (info, gdbarch);
450
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451 /* OpenBSD has a different `struct reg'. */
452 tdep->gregset_reg_offset = i386obsd_r_reg_offset;
453 tdep->gregset_num_regs = ARRAY_SIZE (i386obsd_r_reg_offset);
454 tdep->sizeof_gregset = 16 * 4;
455
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456 /* OpenBSD uses -freg-struct-return by default. */
457 tdep->struct_return = reg_struct_return;
458
459 /* OpenBSD uses a different memory layout. */
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460 tdep->sigtramp_start = i386obsd_sigtramp_start_addr;
461 tdep->sigtramp_end = i386obsd_sigtramp_end_addr;
911bc6ee 462 tdep->sigtramp_p = i386obsd_sigtramp_p;
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463
464 /* OpenBSD has a `struct sigcontext' that's different from the
f2e7c15d 465 original 4.3 BSD. */
a3386186 466 tdep->sc_reg_offset = i386obsd_sc_reg_offset;
67457012 467 tdep->sc_num_regs = ARRAY_SIZE (i386obsd_sc_reg_offset);
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468
469 /* OpenBSD provides a user-level threads implementation. */
470 bsd_uthread_set_supply_uthread (gdbarch, i386obsd_supply_uthread);
471 bsd_uthread_set_collect_uthread (gdbarch, i386obsd_collect_uthread);
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472
473 /* Unwind kernel trap frames correctly. */
7238f002 474 frame_unwind_prepend_unwinder (gdbarch, &i386obsd_trapframe_unwind);
005328e3 475}
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476
477/* OpenBSD a.out. */
478
479static void
480i386obsd_aout_init_abi (struct gdbarch_info info, struct gdbarch *gdbarch)
481{
482 i386obsd_init_abi (info, gdbarch);
483
484 /* OpenBSD a.out has a single register set. */
485 set_gdbarch_regset_from_core_section
486 (gdbarch, i386obsd_aout_regset_from_core_section);
487}
488
489/* OpenBSD ELF. */
490
491static void
492i386obsd_elf_init_abi (struct gdbarch_info info, struct gdbarch *gdbarch)
493{
494 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
495
496 /* It's still OpenBSD. */
497 i386obsd_init_abi (info, gdbarch);
498
499 /* But ELF-based. */
500 i386_elf_init_abi (info, gdbarch);
501
502 /* OpenBSD ELF uses SVR4-style shared libraries. */
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503 set_solib_svr4_fetch_link_map_offsets
504 (gdbarch, svr4_ilp32_fetch_link_map_offsets);
505}
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506\f
507
508/* Provide a prototype to silence -Wmissing-prototypes. */
509void _initialize_i386obsd_tdep (void);
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510
511void
512_initialize_i386obsd_tdep (void)
513{
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514 /* FIXME: kettenis/20021020: Since OpenBSD/i386 binaries are
515 indistingushable from NetBSD/i386 a.out binaries, building a GDB
516 that should support both these targets will probably not work as
517 expected. */
518#define GDB_OSABI_OPENBSD_AOUT GDB_OSABI_NETBSD_AOUT
519
05816f70 520 gdbarch_register_osabi (bfd_arch_i386, 0, GDB_OSABI_OPENBSD_AOUT,
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521 i386obsd_aout_init_abi);
522 gdbarch_register_osabi (bfd_arch_i386, 0, GDB_OSABI_OPENBSD_ELF,
523 i386obsd_elf_init_abi);
005328e3 524}