]> git.ipfire.org Git - thirdparty/binutils-gdb.git/blob - gdb/i386-nto-tdep.c
* blockframe.c (find_pc_partial_function_gnu_ifunc): Change type of
[thirdparty/binutils-gdb.git] / gdb / i386-nto-tdep.c
1 /* Target-dependent code for QNX Neutrino x86.
2
3 Copyright (C) 2003-2004, 2007-2012 Free Software Foundation, Inc.
4
5 Contributed by QNX Software Systems Ltd.
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 3 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, see <http://www.gnu.org/licenses/>. */
21
22 #include "defs.h"
23 #include "frame.h"
24 #include "osabi.h"
25 #include "regcache.h"
26 #include "target.h"
27
28 #include "gdb_assert.h"
29 #include "gdb_string.h"
30
31 #include "i386-tdep.h"
32 #include "i387-tdep.h"
33 #include "nto-tdep.h"
34 #include "solib.h"
35 #include "solib-svr4.h"
36
37 #ifndef X86_CPU_FXSR
38 #define X86_CPU_FXSR (1L << 12)
39 #endif
40
41 /* Why 13? Look in our /usr/include/x86/context.h header at the
42 x86_cpu_registers structure and you'll see an 'exx' junk register
43 that is just filler. Don't ask me, ask the kernel guys. */
44 #define NUM_GPREGS 13
45
46 /* Mapping between the general-purpose registers in `struct xxx'
47 format and GDB's register cache layout. */
48
49 /* From <x86/context.h>. */
50 static int i386nto_gregset_reg_offset[] =
51 {
52 7 * 4, /* %eax */
53 6 * 4, /* %ecx */
54 5 * 4, /* %edx */
55 4 * 4, /* %ebx */
56 11 * 4, /* %esp */
57 2 * 4, /* %epb */
58 1 * 4, /* %esi */
59 0 * 4, /* %edi */
60 8 * 4, /* %eip */
61 10 * 4, /* %eflags */
62 9 * 4, /* %cs */
63 12 * 4, /* %ss */
64 -1 /* filler */
65 };
66
67 /* Given a GDB register number REGNUM, return the offset into
68 Neutrino's register structure or -1 if the register is unknown. */
69
70 static int
71 nto_reg_offset (int regnum)
72 {
73 if (regnum >= 0 && regnum < ARRAY_SIZE (i386nto_gregset_reg_offset))
74 return i386nto_gregset_reg_offset[regnum];
75
76 return -1;
77 }
78
79 static void
80 i386nto_supply_gregset (struct regcache *regcache, char *gpregs)
81 {
82 struct gdbarch *gdbarch = get_regcache_arch (regcache);
83 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
84
85 if(tdep->gregset == NULL)
86 tdep->gregset = regset_alloc (gdbarch, i386_supply_gregset,
87 i386_collect_gregset);
88
89 gdb_assert (tdep->gregset_reg_offset == i386nto_gregset_reg_offset);
90 tdep->gregset->supply_regset (tdep->gregset, regcache, -1,
91 gpregs, NUM_GPREGS * 4);
92 }
93
94 static void
95 i386nto_supply_fpregset (struct regcache *regcache, char *fpregs)
96 {
97 if (nto_cpuinfo_valid && nto_cpuinfo_flags | X86_CPU_FXSR)
98 i387_supply_fxsave (regcache, -1, fpregs);
99 else
100 i387_supply_fsave (regcache, -1, fpregs);
101 }
102
103 static void
104 i386nto_supply_regset (struct regcache *regcache, int regset, char *data)
105 {
106 switch (regset)
107 {
108 case NTO_REG_GENERAL:
109 i386nto_supply_gregset (regcache, data);
110 break;
111 case NTO_REG_FLOAT:
112 i386nto_supply_fpregset (regcache, data);
113 break;
114 }
115 }
116
117 static int
118 i386nto_regset_id (int regno)
119 {
120 if (regno == -1)
121 return NTO_REG_END;
122 else if (regno < I386_NUM_GREGS)
123 return NTO_REG_GENERAL;
124 else if (regno < I386_NUM_GREGS + I387_NUM_REGS)
125 return NTO_REG_FLOAT;
126 else if (regno < I386_SSE_NUM_REGS)
127 return NTO_REG_FLOAT; /* We store xmm registers in fxsave_area. */
128
129 return -1; /* Error. */
130 }
131
132 static int
133 i386nto_register_area (struct gdbarch *gdbarch,
134 int regno, int regset, unsigned *off)
135 {
136 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
137 int len;
138
139 *off = 0;
140 if (regset == NTO_REG_GENERAL)
141 {
142 if (regno == -1)
143 return NUM_GPREGS * 4;
144
145 *off = nto_reg_offset (regno);
146 if (*off == -1)
147 return 0;
148 return 4;
149 }
150 else if (regset == NTO_REG_FLOAT)
151 {
152 unsigned off_adjust, regsize, regset_size, regno_base;
153 /* The following are flags indicating number in our fxsave_area. */
154 int first_four = (regno >= I387_FCTRL_REGNUM (tdep)
155 && regno <= I387_FISEG_REGNUM (tdep));
156 int second_four = (regno > I387_FISEG_REGNUM (tdep)
157 && regno <= I387_FOP_REGNUM (tdep));
158 int st_reg = (regno >= I387_ST0_REGNUM (tdep)
159 && regno < I387_ST0_REGNUM (tdep) + 8);
160 int xmm_reg = (regno >= I387_XMM0_REGNUM (tdep)
161 && regno < I387_MXCSR_REGNUM (tdep));
162
163 if (nto_cpuinfo_valid && nto_cpuinfo_flags | X86_CPU_FXSR)
164 {
165 off_adjust = 32;
166 regsize = 16;
167 regset_size = 512;
168 /* fxsave_area structure. */
169 if (first_four)
170 {
171 /* fpu_control_word, fpu_status_word, fpu_tag_word, fpu_operand
172 registers. */
173 regsize = 2; /* Two bytes each. */
174 off_adjust = 0;
175 regno_base = I387_FCTRL_REGNUM (tdep);
176 }
177 else if (second_four)
178 {
179 /* fpu_ip, fpu_cs, fpu_op, fpu_ds registers. */
180 regsize = 4;
181 off_adjust = 8;
182 regno_base = I387_FISEG_REGNUM (tdep) + 1;
183 }
184 else if (st_reg)
185 {
186 /* ST registers. */
187 regsize = 16;
188 off_adjust = 32;
189 regno_base = I387_ST0_REGNUM (tdep);
190 }
191 else if (xmm_reg)
192 {
193 /* XMM registers. */
194 regsize = 16;
195 off_adjust = 160;
196 regno_base = I387_XMM0_REGNUM (tdep);
197 }
198 else if (regno == I387_MXCSR_REGNUM (tdep))
199 {
200 regsize = 4;
201 off_adjust = 24;
202 regno_base = I387_MXCSR_REGNUM (tdep);
203 }
204 else
205 {
206 /* Whole regset. */
207 gdb_assert (regno == -1);
208 off_adjust = 0;
209 regno_base = 0;
210 regsize = regset_size;
211 }
212 }
213 else
214 {
215 regset_size = 108;
216 /* fsave_area structure. */
217 if (first_four || second_four)
218 {
219 /* fpu_control_word, ... , fpu_ds registers. */
220 regsize = 4;
221 off_adjust = 0;
222 regno_base = I387_FCTRL_REGNUM (tdep);
223 }
224 else if (st_reg)
225 {
226 /* One of ST registers. */
227 regsize = 10;
228 off_adjust = 7 * 4;
229 regno_base = I387_ST0_REGNUM (tdep);
230 }
231 else
232 {
233 /* Whole regset. */
234 gdb_assert (regno == -1);
235 off_adjust = 0;
236 regno_base = 0;
237 regsize = regset_size;
238 }
239 }
240
241 if (regno != -1)
242 *off = off_adjust + (regno - regno_base) * regsize;
243 else
244 *off = 0;
245 return regsize;
246 }
247 return -1;
248 }
249
250 static int
251 i386nto_regset_fill (const struct regcache *regcache, int regset, char *data)
252 {
253 if (regset == NTO_REG_GENERAL)
254 {
255 int regno;
256
257 for (regno = 0; regno < NUM_GPREGS; regno++)
258 {
259 int offset = nto_reg_offset (regno);
260 if (offset != -1)
261 regcache_raw_collect (regcache, regno, data + offset);
262 }
263 }
264 else if (regset == NTO_REG_FLOAT)
265 {
266 if (nto_cpuinfo_valid && nto_cpuinfo_flags | X86_CPU_FXSR)
267 i387_collect_fxsave (regcache, -1, data);
268 else
269 i387_collect_fsave (regcache, -1, data);
270 }
271 else
272 return -1;
273
274 return 0;
275 }
276
277 /* Return whether THIS_FRAME corresponds to a QNX Neutrino sigtramp
278 routine. */
279
280 static int
281 i386nto_sigtramp_p (struct frame_info *this_frame)
282 {
283 CORE_ADDR pc = get_frame_pc (this_frame);
284 const char *name;
285
286 find_pc_partial_function (pc, &name, NULL, NULL);
287 return name && strcmp ("__signalstub", name) == 0;
288 }
289
290 /* Assuming THIS_FRAME is a QNX Neutrino sigtramp routine, return the
291 address of the associated sigcontext structure. */
292
293 static CORE_ADDR
294 i386nto_sigcontext_addr (struct frame_info *this_frame)
295 {
296 struct gdbarch *gdbarch = get_frame_arch (this_frame);
297 enum bfd_endian byte_order = gdbarch_byte_order (gdbarch);
298 char buf[4];
299 CORE_ADDR ptrctx;
300
301 /* We store __ucontext_t addr in EDI register. */
302 get_frame_register (this_frame, I386_EDI_REGNUM, buf);
303 ptrctx = extract_unsigned_integer (buf, 4, byte_order);
304 ptrctx += 24 /* Context pointer is at this offset. */;
305
306 return ptrctx;
307 }
308
309 static void
310 init_i386nto_ops (void)
311 {
312 nto_regset_id = i386nto_regset_id;
313 nto_supply_gregset = i386nto_supply_gregset;
314 nto_supply_fpregset = i386nto_supply_fpregset;
315 nto_supply_altregset = nto_dummy_supply_regset;
316 nto_supply_regset = i386nto_supply_regset;
317 nto_register_area = i386nto_register_area;
318 nto_regset_fill = i386nto_regset_fill;
319 nto_fetch_link_map_offsets =
320 svr4_ilp32_fetch_link_map_offsets;
321 }
322
323 static void
324 i386nto_init_abi (struct gdbarch_info info, struct gdbarch *gdbarch)
325 {
326 struct gdbarch_tdep *tdep = gdbarch_tdep (gdbarch);
327 static struct target_so_ops nto_svr4_so_ops;
328
329 /* Deal with our strange signals. */
330 nto_initialize_signals ();
331
332 /* NTO uses ELF. */
333 i386_elf_init_abi (info, gdbarch);
334
335 /* Neutrino rewinds to look more normal. Need to override the i386
336 default which is [unfortunately] to decrement the PC. */
337 set_gdbarch_decr_pc_after_break (gdbarch, 0);
338
339 tdep->gregset_reg_offset = i386nto_gregset_reg_offset;
340 tdep->gregset_num_regs = ARRAY_SIZE (i386nto_gregset_reg_offset);
341 tdep->sizeof_gregset = NUM_GPREGS * 4;
342
343 tdep->sigtramp_p = i386nto_sigtramp_p;
344 tdep->sigcontext_addr = i386nto_sigcontext_addr;
345 tdep->sc_reg_offset = i386nto_gregset_reg_offset;
346 tdep->sc_num_regs = ARRAY_SIZE (i386nto_gregset_reg_offset);
347
348 /* Setjmp()'s return PC saved in EDX (5). */
349 tdep->jb_pc_offset = 20; /* 5x32 bit ints in. */
350
351 set_solib_svr4_fetch_link_map_offsets
352 (gdbarch, svr4_ilp32_fetch_link_map_offsets);
353
354 /* Initialize this lazily, to avoid an initialization order
355 dependency on solib-svr4.c's _initialize routine. */
356 if (nto_svr4_so_ops.in_dynsym_resolve_code == NULL)
357 {
358 nto_svr4_so_ops = svr4_so_ops;
359
360 /* Our loader handles solib relocations differently than svr4. */
361 nto_svr4_so_ops.relocate_section_addresses
362 = nto_relocate_section_addresses;
363
364 /* Supply a nice function to find our solibs. */
365 nto_svr4_so_ops.find_and_open_solib
366 = nto_find_and_open_solib;
367
368 /* Our linker code is in libc. */
369 nto_svr4_so_ops.in_dynsym_resolve_code
370 = nto_in_dynsym_resolve_code;
371 }
372 set_solib_ops (gdbarch, &nto_svr4_so_ops);
373 }
374
375 /* Provide a prototype to silence -Wmissing-prototypes. */
376 extern initialize_file_ftype _initialize_i386nto_tdep;
377
378 void
379 _initialize_i386nto_tdep (void)
380 {
381 init_i386nto_ops ();
382 gdbarch_register_osabi (bfd_arch_i386, 0, GDB_OSABI_QNXNTO,
383 i386nto_init_abi);
384 gdbarch_register_osabi_sniffer (bfd_arch_i386, bfd_target_elf_flavour,
385 nto_elf_osabi_sniffer);
386 }