1 /* GNU/Linux/AArch64 specific low level interface, for the remote server for
4 Copyright (C) 2009-2015 Free Software Foundation, Inc.
5 Contributed by ARM Ltd.
7 This file is part of GDB.
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.
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.
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/>. */
23 #include "linux-low.h"
24 #include "nat/aarch64-linux.h"
25 #include "nat/aarch64-linux-hw-point.h"
26 #include "linux-aarch32-low.h"
27 #include "elf/common.h"
31 #include "nat/gdb_ptrace.h"
32 #include <asm/ptrace.h>
34 #include "gdb_proc_service.h"
36 /* Defined in auto-generated files. */
37 void init_registers_aarch64 (void);
38 extern const struct target_desc
*tdesc_aarch64
;
44 #define AARCH64_X_REGS_NUM 31
45 #define AARCH64_V_REGS_NUM 32
46 #define AARCH64_X0_REGNO 0
47 #define AARCH64_SP_REGNO 31
48 #define AARCH64_PC_REGNO 32
49 #define AARCH64_CPSR_REGNO 33
50 #define AARCH64_V0_REGNO 34
51 #define AARCH64_FPSR_REGNO (AARCH64_V0_REGNO + AARCH64_V_REGS_NUM)
52 #define AARCH64_FPCR_REGNO (AARCH64_V0_REGNO + AARCH64_V_REGS_NUM + 1)
54 #define AARCH64_NUM_REGS (AARCH64_V0_REGNO + AARCH64_V_REGS_NUM + 2)
56 /* Per-process arch-specific data we want to keep. */
58 struct arch_process_info
60 /* Hardware breakpoint/watchpoint data.
61 The reason for them to be per-process rather than per-thread is
62 due to the lack of information in the gdbserver environment;
63 gdbserver is not told that whether a requested hardware
64 breakpoint/watchpoint is thread specific or not, so it has to set
65 each hw bp/wp for every thread in the current process. The
66 higher level bp/wp management in gdb will resume a thread if a hw
67 bp/wp trap is not expected for it. Since the hw bp/wp setting is
68 same for each thread, it is reasonable for the data to live here.
70 struct aarch64_debug_reg_state debug_reg_state
;
73 /* Return true if the size of register 0 is 8 byte. */
78 struct regcache
*regcache
= get_thread_regcache (current_thread
, 0);
80 return register_size (regcache
->tdesc
, 0) == 8;
83 /* Implementation of linux_target_ops method "cannot_store_register". */
86 aarch64_cannot_store_register (int regno
)
88 return regno
>= AARCH64_NUM_REGS
;
91 /* Implementation of linux_target_ops method "cannot_fetch_register". */
94 aarch64_cannot_fetch_register (int regno
)
96 return regno
>= AARCH64_NUM_REGS
;
100 aarch64_fill_gregset (struct regcache
*regcache
, void *buf
)
102 struct user_pt_regs
*regset
= buf
;
105 for (i
= 0; i
< AARCH64_X_REGS_NUM
; i
++)
106 collect_register (regcache
, AARCH64_X0_REGNO
+ i
, ®set
->regs
[i
]);
107 collect_register (regcache
, AARCH64_SP_REGNO
, ®set
->sp
);
108 collect_register (regcache
, AARCH64_PC_REGNO
, ®set
->pc
);
109 collect_register (regcache
, AARCH64_CPSR_REGNO
, ®set
->pstate
);
113 aarch64_store_gregset (struct regcache
*regcache
, const void *buf
)
115 const struct user_pt_regs
*regset
= buf
;
118 for (i
= 0; i
< AARCH64_X_REGS_NUM
; i
++)
119 supply_register (regcache
, AARCH64_X0_REGNO
+ i
, ®set
->regs
[i
]);
120 supply_register (regcache
, AARCH64_SP_REGNO
, ®set
->sp
);
121 supply_register (regcache
, AARCH64_PC_REGNO
, ®set
->pc
);
122 supply_register (regcache
, AARCH64_CPSR_REGNO
, ®set
->pstate
);
126 aarch64_fill_fpregset (struct regcache
*regcache
, void *buf
)
128 struct user_fpsimd_state
*regset
= buf
;
131 for (i
= 0; i
< AARCH64_V_REGS_NUM
; i
++)
132 collect_register (regcache
, AARCH64_V0_REGNO
+ i
, ®set
->vregs
[i
]);
133 collect_register (regcache
, AARCH64_FPSR_REGNO
, ®set
->fpsr
);
134 collect_register (regcache
, AARCH64_FPCR_REGNO
, ®set
->fpcr
);
138 aarch64_store_fpregset (struct regcache
*regcache
, const void *buf
)
140 const struct user_fpsimd_state
*regset
= buf
;
143 for (i
= 0; i
< AARCH64_V_REGS_NUM
; i
++)
144 supply_register (regcache
, AARCH64_V0_REGNO
+ i
, ®set
->vregs
[i
]);
145 supply_register (regcache
, AARCH64_FPSR_REGNO
, ®set
->fpsr
);
146 supply_register (regcache
, AARCH64_FPCR_REGNO
, ®set
->fpcr
);
149 /* Enable miscellaneous debugging output. The name is historical - it
150 was originally used to debug LinuxThreads support. */
151 extern int debug_threads
;
153 /* Implementation of linux_target_ops method "get_pc". */
156 aarch64_get_pc (struct regcache
*regcache
)
158 if (register_size (regcache
->tdesc
, 0) == 8)
162 collect_register_by_name (regcache
, "pc", &pc
);
164 debug_printf ("stop pc is %08lx\n", pc
);
171 collect_register_by_name (regcache
, "pc", &pc
);
173 debug_printf ("stop pc is %04x\n", pc
);
178 /* Implementation of linux_target_ops method "set_pc". */
181 aarch64_set_pc (struct regcache
*regcache
, CORE_ADDR pc
)
183 if (register_size (regcache
->tdesc
, 0) == 8)
185 unsigned long newpc
= pc
;
186 supply_register_by_name (regcache
, "pc", &newpc
);
190 unsigned int newpc
= pc
;
191 supply_register_by_name (regcache
, "pc", &newpc
);
195 #define aarch64_breakpoint_len 4
197 /* AArch64 BRK software debug mode instruction.
198 This instruction needs to match gdb/aarch64-tdep.c
199 (aarch64_default_breakpoint). */
200 static const gdb_byte aarch64_breakpoint
[] = {0x00, 0x00, 0x20, 0xd4};
202 /* Implementation of linux_target_ops method "breakpoint_at". */
205 aarch64_breakpoint_at (CORE_ADDR where
)
207 gdb_byte insn
[aarch64_breakpoint_len
];
209 (*the_target
->read_memory
) (where
, (unsigned char *) &insn
,
210 aarch64_breakpoint_len
);
211 if (memcmp (insn
, aarch64_breakpoint
, aarch64_breakpoint_len
) == 0)
218 aarch64_init_debug_reg_state (struct aarch64_debug_reg_state
*state
)
222 for (i
= 0; i
< AARCH64_HBP_MAX_NUM
; ++i
)
224 state
->dr_addr_bp
[i
] = 0;
225 state
->dr_ctrl_bp
[i
] = 0;
226 state
->dr_ref_count_bp
[i
] = 0;
229 for (i
= 0; i
< AARCH64_HWP_MAX_NUM
; ++i
)
231 state
->dr_addr_wp
[i
] = 0;
232 state
->dr_ctrl_wp
[i
] = 0;
233 state
->dr_ref_count_wp
[i
] = 0;
237 /* Return the pointer to the debug register state structure in the
238 current process' arch-specific data area. */
240 struct aarch64_debug_reg_state
*
241 aarch64_get_debug_reg_state (pid_t pid
)
243 struct process_info
*proc
= find_process_pid (pid
);
245 return &proc
->priv
->arch_private
->debug_reg_state
;
248 /* Implementation of linux_target_ops method "supports_z_point_type". */
251 aarch64_supports_z_point_type (char z_type
)
257 if (!extended_protocol
&& is_64bit_tdesc ())
259 /* Only enable Z0 packet in non-multi-arch debugging. If
260 extended protocol is used, don't enable Z0 packet because
261 GDBserver may attach to 32-bit process. */
266 /* Disable Z0 packet so that GDBserver doesn't have to handle
267 different breakpoint instructions (aarch64, arm, thumb etc)
268 in multi-arch debugging. */
273 case Z_PACKET_WRITE_WP
:
274 case Z_PACKET_READ_WP
:
275 case Z_PACKET_ACCESS_WP
:
282 /* Implementation of linux_target_ops method "insert_point".
284 It actually only records the info of the to-be-inserted bp/wp;
285 the actual insertion will happen when threads are resumed. */
288 aarch64_insert_point (enum raw_bkpt_type type
, CORE_ADDR addr
,
289 int len
, struct raw_breakpoint
*bp
)
292 enum target_hw_bp_type targ_type
;
293 struct aarch64_debug_reg_state
*state
294 = aarch64_get_debug_reg_state (pid_of (current_thread
));
297 fprintf (stderr
, "insert_point on entry (addr=0x%08lx, len=%d)\n",
298 (unsigned long) addr
, len
);
300 /* Determine the type from the raw breakpoint type. */
301 targ_type
= raw_bkpt_type_to_target_hw_bp_type (type
);
303 if (targ_type
!= hw_execute
)
305 if (aarch64_linux_region_ok_for_watchpoint (addr
, len
))
306 ret
= aarch64_handle_watchpoint (targ_type
, addr
, len
,
307 1 /* is_insert */, state
);
313 aarch64_handle_breakpoint (targ_type
, addr
, len
, 1 /* is_insert */,
317 aarch64_show_debug_reg_state (state
, "insert_point", addr
, len
,
323 /* Implementation of linux_target_ops method "remove_point".
325 It actually only records the info of the to-be-removed bp/wp,
326 the actual removal will be done when threads are resumed. */
329 aarch64_remove_point (enum raw_bkpt_type type
, CORE_ADDR addr
,
330 int len
, struct raw_breakpoint
*bp
)
333 enum target_hw_bp_type targ_type
;
334 struct aarch64_debug_reg_state
*state
335 = aarch64_get_debug_reg_state (pid_of (current_thread
));
338 fprintf (stderr
, "remove_point on entry (addr=0x%08lx, len=%d)\n",
339 (unsigned long) addr
, len
);
341 /* Determine the type from the raw breakpoint type. */
342 targ_type
= raw_bkpt_type_to_target_hw_bp_type (type
);
344 /* Set up state pointers. */
345 if (targ_type
!= hw_execute
)
347 aarch64_handle_watchpoint (targ_type
, addr
, len
, 0 /* is_insert */,
351 aarch64_handle_breakpoint (targ_type
, addr
, len
, 0 /* is_insert */,
355 aarch64_show_debug_reg_state (state
, "remove_point", addr
, len
,
361 /* Implementation of linux_target_ops method "stopped_data_address". */
364 aarch64_stopped_data_address (void)
368 struct aarch64_debug_reg_state
*state
;
370 pid
= lwpid_of (current_thread
);
372 /* Get the siginfo. */
373 if (ptrace (PTRACE_GETSIGINFO
, pid
, NULL
, &siginfo
) != 0)
374 return (CORE_ADDR
) 0;
376 /* Need to be a hardware breakpoint/watchpoint trap. */
377 if (siginfo
.si_signo
!= SIGTRAP
378 || (siginfo
.si_code
& 0xffff) != 0x0004 /* TRAP_HWBKPT */)
379 return (CORE_ADDR
) 0;
381 /* Check if the address matches any watched address. */
382 state
= aarch64_get_debug_reg_state (pid_of (current_thread
));
383 for (i
= aarch64_num_wp_regs
- 1; i
>= 0; --i
)
385 const unsigned int len
= aarch64_watchpoint_length (state
->dr_ctrl_wp
[i
]);
386 const CORE_ADDR addr_trap
= (CORE_ADDR
) siginfo
.si_addr
;
387 const CORE_ADDR addr_watch
= state
->dr_addr_wp
[i
];
388 if (state
->dr_ref_count_wp
[i
]
389 && DR_CONTROL_ENABLED (state
->dr_ctrl_wp
[i
])
390 && addr_trap
>= addr_watch
391 && addr_trap
< addr_watch
+ len
)
395 return (CORE_ADDR
) 0;
398 /* Implementation of linux_target_ops method "stopped_by_watchpoint". */
401 aarch64_stopped_by_watchpoint (void)
403 if (aarch64_stopped_data_address () != 0)
409 /* Fetch the thread-local storage pointer for libthread_db. */
412 ps_get_thread_area (const struct ps_prochandle
*ph
,
413 lwpid_t lwpid
, int idx
, void **base
)
415 return aarch64_ps_get_thread_area (ph
, lwpid
, idx
, base
,
419 /* Implementation of linux_target_ops method "siginfo_fixup". */
422 aarch64_linux_siginfo_fixup (siginfo_t
*native
, void *inf
, int direction
)
424 /* Is the inferior 32-bit? If so, then fixup the siginfo object. */
425 if (!is_64bit_tdesc ())
428 aarch64_compat_siginfo_from_siginfo ((struct compat_siginfo
*) inf
,
431 aarch64_siginfo_from_compat_siginfo (native
,
432 (struct compat_siginfo
*) inf
);
440 /* Implementation of linux_target_ops method "linux_new_process". */
442 static struct arch_process_info
*
443 aarch64_linux_new_process (void)
445 struct arch_process_info
*info
= XCNEW (struct arch_process_info
);
447 aarch64_init_debug_reg_state (&info
->debug_reg_state
);
452 /* Implementation of linux_target_ops method "linux_new_fork". */
455 aarch64_linux_new_fork (struct process_info
*parent
,
456 struct process_info
*child
)
458 /* These are allocated by linux_add_process. */
459 gdb_assert (parent
->priv
!= NULL
460 && parent
->priv
->arch_private
!= NULL
);
461 gdb_assert (child
->priv
!= NULL
462 && child
->priv
->arch_private
!= NULL
);
464 /* Linux kernel before 2.6.33 commit
465 72f674d203cd230426437cdcf7dd6f681dad8b0d
466 will inherit hardware debug registers from parent
467 on fork/vfork/clone. Newer Linux kernels create such tasks with
468 zeroed debug registers.
470 GDB core assumes the child inherits the watchpoints/hw
471 breakpoints of the parent, and will remove them all from the
472 forked off process. Copy the debug registers mirrors into the
473 new process so that all breakpoints and watchpoints can be
474 removed together. The debug registers mirror will become zeroed
475 in the end before detaching the forked off process, thus making
476 this compatible with older Linux kernels too. */
478 *child
->priv
->arch_private
= *parent
->priv
->arch_private
;
481 /* Return the right target description according to the ELF file of
484 static const struct target_desc
*
485 aarch64_linux_read_description (void)
487 unsigned int machine
;
491 tid
= lwpid_of (current_thread
);
493 is_elf64
= linux_pid_exe_is_elf_64_file (tid
, &machine
);
496 return tdesc_aarch64
;
498 return tdesc_arm_with_neon
;
501 /* Implementation of linux_target_ops method "arch_setup". */
504 aarch64_arch_setup (void)
506 current_process ()->tdesc
= aarch64_linux_read_description ();
508 aarch64_linux_get_debug_reg_capacity (lwpid_of (current_thread
));
511 static struct regset_info aarch64_regsets
[] =
513 { PTRACE_GETREGSET
, PTRACE_SETREGSET
, NT_PRSTATUS
,
514 sizeof (struct user_pt_regs
), GENERAL_REGS
,
515 aarch64_fill_gregset
, aarch64_store_gregset
},
516 { PTRACE_GETREGSET
, PTRACE_SETREGSET
, NT_FPREGSET
,
517 sizeof (struct user_fpsimd_state
), FP_REGS
,
518 aarch64_fill_fpregset
, aarch64_store_fpregset
520 { 0, 0, 0, -1, -1, NULL
, NULL
}
523 static struct regsets_info aarch64_regsets_info
=
525 aarch64_regsets
, /* regsets */
527 NULL
, /* disabled_regsets */
530 static struct regs_info regs_info_aarch64
=
532 NULL
, /* regset_bitmap */
534 &aarch64_regsets_info
,
537 /* Implementation of linux_target_ops method "regs_info". */
539 static const struct regs_info
*
540 aarch64_regs_info (void)
542 if (is_64bit_tdesc ())
543 return ®s_info_aarch64
;
545 return ®s_info_aarch32
;
548 /* Implementation of linux_target_ops method "supports_tracepoints". */
551 aarch64_supports_tracepoints (void)
553 if (current_thread
== NULL
)
557 /* We don't support tracepoints on aarch32 now. */
558 return is_64bit_tdesc ();
562 /* Implementation of linux_target_ops method "supports_range_stepping". */
565 aarch64_supports_range_stepping (void)
570 struct linux_target_ops the_low_target
=
574 aarch64_cannot_fetch_register
,
575 aarch64_cannot_store_register
,
576 NULL
, /* fetch_register */
579 (const unsigned char *) &aarch64_breakpoint
,
580 aarch64_breakpoint_len
,
581 NULL
, /* breakpoint_reinsert_addr */
582 0, /* decr_pc_after_break */
583 aarch64_breakpoint_at
,
584 aarch64_supports_z_point_type
,
585 aarch64_insert_point
,
586 aarch64_remove_point
,
587 aarch64_stopped_by_watchpoint
,
588 aarch64_stopped_data_address
,
589 NULL
, /* collect_ptrace_register */
590 NULL
, /* supply_ptrace_register */
591 aarch64_linux_siginfo_fixup
,
592 aarch64_linux_new_process
,
593 aarch64_linux_new_thread
,
594 aarch64_linux_new_fork
,
595 aarch64_linux_prepare_to_resume
,
596 NULL
, /* process_qsupported */
597 aarch64_supports_tracepoints
,
598 NULL
, /* get_thread_area */
599 NULL
, /* install_fast_tracepoint_jump_pad */
601 NULL
, /* get_min_fast_tracepoint_insn_len */
602 aarch64_supports_range_stepping
,
606 initialize_low_arch (void)
608 init_registers_aarch64 ();
610 initialize_low_arch_aarch32 ();
612 initialize_regsets_info (&aarch64_regsets_info
);