1 /* Functions specific to running GDB native on HPPA running GNU/Linux.
3 Copyright (C) 2004-2022 Free Software Foundation, Inc.
5 This file is part of GDB.
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3 of the License, or
10 (at your option) any later version.
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
17 You should have received a copy of the GNU General Public License
18 along with this program. If not, see <http://www.gnu.org/licenses/>. */
25 #include "linux-nat.h"
26 #include "inf-ptrace.h"
29 #include <sys/procfs.h>
30 #include "nat/gdb_ptrace.h"
31 #include <linux/version.h>
33 #include <asm/ptrace.h>
34 #include "hppa-linux-offsets.h"
36 #include "hppa-tdep.h"
38 class hppa_linux_nat_target final
: public linux_nat_target
41 /* Add our register access methods. */
42 void fetch_registers (struct regcache
*, int) override
;
43 void store_registers (struct regcache
*, int) override
;
46 static hppa_linux_nat_target the_hppa_linux_nat_target
;
48 /* Prototypes for supply_gregset etc. */
51 /* These must match the order of the register names.
53 Some sort of lookup table is needed because the offsets associated
54 with the registers are all over the board. */
56 static const int u_offsets
[] =
58 /* general registers */
127 /* Floating point regs. */
138 PT_FR10
, PT_FR10
+ 4,
139 PT_FR11
, PT_FR11
+ 4,
140 PT_FR12
, PT_FR12
+ 4,
141 PT_FR13
, PT_FR13
+ 4,
142 PT_FR14
, PT_FR14
+ 4,
143 PT_FR15
, PT_FR15
+ 4,
144 PT_FR16
, PT_FR16
+ 4,
145 PT_FR17
, PT_FR17
+ 4,
146 PT_FR18
, PT_FR18
+ 4,
147 PT_FR19
, PT_FR19
+ 4,
148 PT_FR20
, PT_FR20
+ 4,
149 PT_FR21
, PT_FR21
+ 4,
150 PT_FR22
, PT_FR22
+ 4,
151 PT_FR23
, PT_FR23
+ 4,
152 PT_FR24
, PT_FR24
+ 4,
153 PT_FR25
, PT_FR25
+ 4,
154 PT_FR26
, PT_FR26
+ 4,
155 PT_FR27
, PT_FR27
+ 4,
156 PT_FR28
, PT_FR28
+ 4,
157 PT_FR29
, PT_FR29
+ 4,
158 PT_FR30
, PT_FR30
+ 4,
159 PT_FR31
, PT_FR31
+ 4,
163 hppa_linux_register_addr (int regno
, CORE_ADDR blockend
)
167 if ((unsigned) regno
>= ARRAY_SIZE (u_offsets
))
168 error (_("Invalid register number %d."), regno
);
170 if (u_offsets
[regno
] == -1)
174 addr
= (CORE_ADDR
) u_offsets
[regno
];
181 * Registers saved in a coredump:
186 * sar, iir, isr, ior, ipsw
191 #define GR_REGNUM(_n) (HPPA_R0_REGNUM+_n)
192 #define TR_REGNUM(_n) (HPPA_TR0_REGNUM+_n)
193 static const int greg_map
[] =
195 GR_REGNUM(0), GR_REGNUM(1), GR_REGNUM(2), GR_REGNUM(3),
196 GR_REGNUM(4), GR_REGNUM(5), GR_REGNUM(6), GR_REGNUM(7),
197 GR_REGNUM(8), GR_REGNUM(9), GR_REGNUM(10), GR_REGNUM(11),
198 GR_REGNUM(12), GR_REGNUM(13), GR_REGNUM(14), GR_REGNUM(15),
199 GR_REGNUM(16), GR_REGNUM(17), GR_REGNUM(18), GR_REGNUM(19),
200 GR_REGNUM(20), GR_REGNUM(21), GR_REGNUM(22), GR_REGNUM(23),
201 GR_REGNUM(24), GR_REGNUM(25), GR_REGNUM(26), GR_REGNUM(27),
202 GR_REGNUM(28), GR_REGNUM(29), GR_REGNUM(30), GR_REGNUM(31),
204 HPPA_SR4_REGNUM
+1, HPPA_SR4_REGNUM
+2, HPPA_SR4_REGNUM
+3, HPPA_SR4_REGNUM
+4,
205 HPPA_SR4_REGNUM
, HPPA_SR4_REGNUM
+5, HPPA_SR4_REGNUM
+6, HPPA_SR4_REGNUM
+7,
207 HPPA_PCOQ_HEAD_REGNUM
, HPPA_PCOQ_TAIL_REGNUM
,
208 HPPA_PCSQ_HEAD_REGNUM
, HPPA_PCSQ_TAIL_REGNUM
,
210 HPPA_SAR_REGNUM
, HPPA_IIR_REGNUM
, HPPA_ISR_REGNUM
, HPPA_IOR_REGNUM
,
211 HPPA_IPSW_REGNUM
, HPPA_RCR_REGNUM
,
213 TR_REGNUM(0), TR_REGNUM(1), TR_REGNUM(2), TR_REGNUM(3),
214 TR_REGNUM(4), TR_REGNUM(5), TR_REGNUM(6), TR_REGNUM(7),
216 HPPA_PID0_REGNUM
, HPPA_PID1_REGNUM
, HPPA_PID2_REGNUM
, HPPA_PID3_REGNUM
,
217 HPPA_CCR_REGNUM
, HPPA_EIEM_REGNUM
,
222 /* Fetch one register. */
225 fetch_register (struct regcache
*regcache
, int regno
)
227 struct gdbarch
*gdbarch
= regcache
->arch ();
231 if (gdbarch_cannot_fetch_register (gdbarch
, regno
))
233 regcache
->raw_supply (regno
, NULL
);
237 tid
= get_ptrace_pid (regcache
->ptid ());
240 val
= ptrace (PTRACE_PEEKUSER
, tid
, hppa_linux_register_addr (regno
, 0), 0);
242 error (_("Couldn't read register %s (#%d): %s."),
243 gdbarch_register_name (gdbarch
, regno
),
244 regno
, safe_strerror (errno
));
246 regcache
->raw_supply (regno
, &val
);
249 /* Store one register. */
252 store_register (const struct regcache
*regcache
, int regno
)
254 struct gdbarch
*gdbarch
= regcache
->arch ();
258 if (gdbarch_cannot_store_register (gdbarch
, regno
))
261 tid
= get_ptrace_pid (regcache
->ptid ());
264 regcache
->raw_collect (regno
, &val
);
265 ptrace (PTRACE_POKEUSER
, tid
, hppa_linux_register_addr (regno
, 0), val
);
267 error (_("Couldn't write register %s (#%d): %s."),
268 gdbarch_register_name (gdbarch
, regno
),
269 regno
, safe_strerror (errno
));
272 /* Fetch registers from the child process. Fetch all registers if
273 regno == -1, otherwise fetch all general registers or all floating
274 point registers depending upon the value of regno. */
277 hppa_linux_nat_target::fetch_registers (struct regcache
*regcache
, int regno
)
282 regno
< gdbarch_num_regs (regcache
->arch ());
284 fetch_register (regcache
, regno
);
288 fetch_register (regcache
, regno
);
292 /* Store registers back into the inferior. Store all registers if
293 regno == -1, otherwise store all general registers or all floating
294 point registers depending upon the value of regno. */
297 hppa_linux_nat_target::store_registers (struct regcache
*regcache
, int regno
)
302 regno
< gdbarch_num_regs (regcache
->arch ());
304 store_register (regcache
, regno
);
308 store_register (regcache
, regno
);
312 /* Fill GDB's register array with the general-purpose register values
316 supply_gregset (struct regcache
*regcache
, const gdb_gregset_t
*gregsetp
)
319 const greg_t
*regp
= (const elf_greg_t
*) gregsetp
;
321 for (i
= 0; i
< sizeof (greg_map
) / sizeof (greg_map
[0]); i
++, regp
++)
323 int regno
= greg_map
[i
];
324 regcache
->raw_supply (regno
, regp
);
328 /* Fill register regno (if it is a general-purpose register) in
329 *gregsetp with the appropriate value from GDB's register array.
330 If regno is -1, do this for all registers. */
333 fill_gregset (const struct regcache
*regcache
,
334 gdb_gregset_t
*gregsetp
, int regno
)
338 for (i
= 0; i
< sizeof (greg_map
) / sizeof (greg_map
[0]); i
++)
340 int mregno
= greg_map
[i
];
342 if (regno
== -1 || regno
== mregno
)
343 regcache
->raw_collect (mregno
, &(*gregsetp
)[i
]);
347 /* Given a pointer to a floating point register set in /proc format
348 (fpregset_t *), unpack the register contents and supply them as gdb's
349 idea of the current floating point register values. */
352 supply_fpregset (struct regcache
*regcache
, const gdb_fpregset_t
*fpregsetp
)
357 for (regi
= 0; regi
<= 31; regi
++)
359 from
= (const char *) &((*fpregsetp
)[regi
]);
360 regcache
->raw_supply (2*regi
+ HPPA_FP0_REGNUM
, from
);
361 regcache
->raw_supply (2*regi
+ HPPA_FP0_REGNUM
+ 1, from
+ 4);
365 /* Given a pointer to a floating point register set in /proc format
366 (fpregset_t *), update the register specified by REGNO from gdb's idea
367 of the current floating point register set. If REGNO is -1, update
371 fill_fpregset (const struct regcache
*regcache
,
372 gdb_fpregset_t
*fpregsetp
, int regno
)
376 for (i
= HPPA_FP0_REGNUM
; i
< HPPA_FP0_REGNUM
+ 32 * 2; i
++)
378 /* Gross. fpregset_t is double, registers[x] has single
380 char *to
= (char *) &((*fpregsetp
)[(i
- HPPA_FP0_REGNUM
) / 2]);
381 if ((i
- HPPA_FP0_REGNUM
) & 1)
383 regcache
->raw_collect (i
, to
);
387 void _initialize_hppa_linux_nat ();
389 _initialize_hppa_linux_nat ()
391 /* Register the target. */
392 linux_target
= &the_hppa_linux_nat_target
;
393 add_inf_child_target (&the_hppa_linux_nat_target
);