1 /* GNU/Linux S/390 specific low level interface, for the remote server
3 Copyright (C) 2001-2013 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/>. */
20 /* This file is used for both 31-bit and 64-bit S/390 systems. */
23 #include "linux-low.h"
24 #include "elf/common.h"
26 #include <asm/ptrace.h>
27 #include <sys/ptrace.h>
31 #ifndef HWCAP_S390_HIGH_GPRS
32 #define HWCAP_S390_HIGH_GPRS 512
35 #ifndef PTRACE_GETREGSET
36 #define PTRACE_GETREGSET 0x4204
39 #ifndef PTRACE_SETREGSET
40 #define PTRACE_SETREGSET 0x4205
43 /* Defined in auto-generated file s390-linux32.c. */
44 void init_registers_s390_linux32 (void);
45 extern const struct target_desc
*tdesc_s390_linux32
;
47 /* Defined in auto-generated file s390-linux32v1.c. */
48 void init_registers_s390_linux32v1 (void);
49 extern const struct target_desc
*tdesc_s390_linux32v1
;
51 /* Defined in auto-generated file s390-linux32v2.c. */
52 void init_registers_s390_linux32v2 (void);
53 extern const struct target_desc
*tdesc_s390_linux32v2
;
55 /* Defined in auto-generated file s390-linux64.c. */
56 void init_registers_s390_linux64 (void);
57 extern const struct target_desc
*tdesc_s390_linux64
;
59 /* Defined in auto-generated file s390-linux64v1.c. */
60 void init_registers_s390_linux64v1 (void);
61 extern const struct target_desc
*tdesc_s390_linux64v1
;
63 /* Defined in auto-generated file s390-linux64v2.c. */
64 void init_registers_s390_linux64v2 (void);
65 extern const struct target_desc
*tdesc_s390_linux64v2
;
67 /* Defined in auto-generated file s390-te-linux64.c. */
68 void init_registers_s390_te_linux64 (void);
69 extern const struct target_desc
*tdesc_s390_te_linux64
;
71 /* Defined in auto-generated file s390x-linux64.c. */
72 void init_registers_s390x_linux64 (void);
73 extern const struct target_desc
*tdesc_s390x_linux64
;
75 /* Defined in auto-generated file s390x-linux64v1.c. */
76 void init_registers_s390x_linux64v1 (void);
77 extern const struct target_desc
*tdesc_s390x_linux64v1
;
79 /* Defined in auto-generated file s390x-linux64v2.c. */
80 void init_registers_s390x_linux64v2 (void);
81 extern const struct target_desc
*tdesc_s390x_linux64v2
;
83 /* Defined in auto-generated file s390x-te-linux64.c. */
84 void init_registers_s390x_te_linux64 (void);
85 extern const struct target_desc
*tdesc_s390x_te_linux64
;
87 #define s390_num_regs 52
89 static int s390_regmap
[] = {
90 PT_PSWMASK
, PT_PSWADDR
,
92 PT_GPR0
, PT_GPR1
, PT_GPR2
, PT_GPR3
,
93 PT_GPR4
, PT_GPR5
, PT_GPR6
, PT_GPR7
,
94 PT_GPR8
, PT_GPR9
, PT_GPR10
, PT_GPR11
,
95 PT_GPR12
, PT_GPR13
, PT_GPR14
, PT_GPR15
,
97 PT_ACR0
, PT_ACR1
, PT_ACR2
, PT_ACR3
,
98 PT_ACR4
, PT_ACR5
, PT_ACR6
, PT_ACR7
,
99 PT_ACR8
, PT_ACR9
, PT_ACR10
, PT_ACR11
,
100 PT_ACR12
, PT_ACR13
, PT_ACR14
, PT_ACR15
,
105 PT_FPR0_HI
, PT_FPR1_HI
, PT_FPR2_HI
, PT_FPR3_HI
,
106 PT_FPR4_HI
, PT_FPR5_HI
, PT_FPR6_HI
, PT_FPR7_HI
,
107 PT_FPR8_HI
, PT_FPR9_HI
, PT_FPR10_HI
, PT_FPR11_HI
,
108 PT_FPR12_HI
, PT_FPR13_HI
, PT_FPR14_HI
, PT_FPR15_HI
,
110 PT_FPR0
, PT_FPR1
, PT_FPR2
, PT_FPR3
,
111 PT_FPR4
, PT_FPR5
, PT_FPR6
, PT_FPR7
,
112 PT_FPR8
, PT_FPR9
, PT_FPR10
, PT_FPR11
,
113 PT_FPR12
, PT_FPR13
, PT_FPR14
, PT_FPR15
,
120 #define s390_num_regs_3264 68
122 static int s390_regmap_3264
[] = {
123 PT_PSWMASK
, PT_PSWADDR
,
125 PT_GPR0
, PT_GPR0
, PT_GPR1
, PT_GPR1
,
126 PT_GPR2
, PT_GPR2
, PT_GPR3
, PT_GPR3
,
127 PT_GPR4
, PT_GPR4
, PT_GPR5
, PT_GPR5
,
128 PT_GPR6
, PT_GPR6
, PT_GPR7
, PT_GPR7
,
129 PT_GPR8
, PT_GPR8
, PT_GPR9
, PT_GPR9
,
130 PT_GPR10
, PT_GPR10
, PT_GPR11
, PT_GPR11
,
131 PT_GPR12
, PT_GPR12
, PT_GPR13
, PT_GPR13
,
132 PT_GPR14
, PT_GPR14
, PT_GPR15
, PT_GPR15
,
134 PT_ACR0
, PT_ACR1
, PT_ACR2
, PT_ACR3
,
135 PT_ACR4
, PT_ACR5
, PT_ACR6
, PT_ACR7
,
136 PT_ACR8
, PT_ACR9
, PT_ACR10
, PT_ACR11
,
137 PT_ACR12
, PT_ACR13
, PT_ACR14
, PT_ACR15
,
141 PT_FPR0
, PT_FPR1
, PT_FPR2
, PT_FPR3
,
142 PT_FPR4
, PT_FPR5
, PT_FPR6
, PT_FPR7
,
143 PT_FPR8
, PT_FPR9
, PT_FPR10
, PT_FPR11
,
144 PT_FPR12
, PT_FPR13
, PT_FPR14
, PT_FPR15
,
152 s390_cannot_fetch_register (int regno
)
158 s390_cannot_store_register (int regno
)
164 s390_collect_ptrace_register (struct regcache
*regcache
, int regno
, char *buf
)
166 int size
= register_size (regcache
->tdesc
, regno
);
167 if (size
< sizeof (long))
169 const struct regs_info
*regs_info
= (*the_low_target
.regs_info
) ();
170 struct usrregs_info
*usr
= regs_info
->usrregs
;
171 int regaddr
= usr
->regmap
[regno
];
173 memset (buf
, 0, sizeof (long));
175 if ((regno
^ 1) < usr
->num_regs
176 && usr
->regmap
[regno
^ 1] == regaddr
)
178 collect_register (regcache
, regno
& ~1, buf
);
179 collect_register (regcache
, (regno
& ~1) + 1,
180 buf
+ sizeof (long) - size
);
182 else if (regaddr
== PT_PSWMASK
)
184 /* Convert 4-byte PSW mask to 8 bytes by clearing bit 12 and copying
185 the basic addressing mode bit from the PSW address. */
186 char *addr
= alloca (register_size (regcache
->tdesc
, regno
^ 1));
187 collect_register (regcache
, regno
, buf
);
188 collect_register (regcache
, regno
^ 1, addr
);
190 buf
[size
] |= (addr
[0] & 0x80);
192 else if (regaddr
== PT_PSWADDR
)
194 /* Convert 4-byte PSW address to 8 bytes by clearing the addressing
195 mode bit (which gets copied to the PSW mask instead). */
196 collect_register (regcache
, regno
, buf
+ sizeof (long) - size
);
197 buf
[sizeof (long) - size
] &= ~0x80;
199 else if ((regaddr
>= PT_GPR0
&& regaddr
<= PT_GPR15
)
200 || regaddr
== PT_ORIGGPR2
)
201 collect_register (regcache
, regno
, buf
+ sizeof (long) - size
);
203 collect_register (regcache
, regno
, buf
);
206 collect_register (regcache
, regno
, buf
);
210 s390_supply_ptrace_register (struct regcache
*regcache
,
211 int regno
, const char *buf
)
213 int size
= register_size (regcache
->tdesc
, regno
);
214 if (size
< sizeof (long))
216 const struct regs_info
*regs_info
= (*the_low_target
.regs_info
) ();
217 struct usrregs_info
*usr
= regs_info
->usrregs
;
218 int regaddr
= usr
->regmap
[regno
];
220 if ((regno
^ 1) < usr
->num_regs
221 && usr
->regmap
[regno
^ 1] == regaddr
)
223 supply_register (regcache
, regno
& ~1, buf
);
224 supply_register (regcache
, (regno
& ~1) + 1,
225 buf
+ sizeof (long) - size
);
227 else if (regaddr
== PT_PSWMASK
)
229 /* Convert 8-byte PSW mask to 4 bytes by setting bit 12 and copying
230 the basic addressing mode into the PSW address. */
231 char *mask
= alloca (size
);
232 char *addr
= alloca (register_size (regcache
->tdesc
, regno
^ 1));
233 memcpy (mask
, buf
, size
);
235 supply_register (regcache
, regno
, mask
);
237 collect_register (regcache
, regno
^ 1, addr
);
239 addr
[0] |= (buf
[size
] & 0x80);
240 supply_register (regcache
, regno
^ 1, addr
);
242 else if (regaddr
== PT_PSWADDR
)
244 /* Convert 8-byte PSW address to 4 bytes by truncating, but
245 keeping the addressing mode bit (which was set from the mask). */
246 char *addr
= alloca (size
);
248 collect_register (regcache
, regno
, addr
);
249 amode
= addr
[0] & 0x80;
250 memcpy (addr
, buf
+ sizeof (long) - size
, size
);
253 supply_register (regcache
, regno
, addr
);
255 else if ((regaddr
>= PT_GPR0
&& regaddr
<= PT_GPR15
)
256 || regaddr
== PT_ORIGGPR2
)
257 supply_register (regcache
, regno
, buf
+ sizeof (long) - size
);
259 supply_register (regcache
, regno
, buf
);
262 supply_register (regcache
, regno
, buf
);
265 /* Provide only a fill function for the general register set. ps_lgetregs
266 will use this for NPTL support. */
269 s390_fill_gregset (struct regcache
*regcache
, void *buf
)
272 const struct regs_info
*regs_info
= (*the_low_target
.regs_info
) ();
273 struct usrregs_info
*usr
= regs_info
->usrregs
;
275 for (i
= 0; i
< usr
->num_regs
; i
++)
277 if (usr
->regmap
[i
] < PT_PSWMASK
278 || usr
->regmap
[i
] > PT_ACR15
)
281 s390_collect_ptrace_register (regcache
, i
,
282 (char *) buf
+ usr
->regmap
[i
]);
286 /* Fill and store functions for extended register sets. */
289 s390_fill_last_break (struct regcache
*regcache
, void *buf
)
291 /* Last break address is read-only. */
295 s390_store_last_break (struct regcache
*regcache
, const void *buf
)
299 p
= (const char *) buf
+ 8 - register_size (regcache
->tdesc
, 0);
300 supply_register_by_name (regcache
, "last_break", p
);
304 s390_fill_system_call (struct regcache
*regcache
, void *buf
)
306 collect_register_by_name (regcache
, "system_call", buf
);
310 s390_store_system_call (struct regcache
*regcache
, const void *buf
)
312 supply_register_by_name (regcache
, "system_call", buf
);
315 static struct regset_info s390_regsets
[] = {
316 { 0, 0, 0, 0, GENERAL_REGS
, s390_fill_gregset
, NULL
},
317 /* Last break address is read-only; do not attempt PTRACE_SETREGSET. */
318 { PTRACE_GETREGSET
, PTRACE_GETREGSET
, NT_S390_LAST_BREAK
, 0,
319 EXTENDED_REGS
, s390_fill_last_break
, s390_store_last_break
},
320 { PTRACE_GETREGSET
, PTRACE_SETREGSET
, NT_S390_SYSTEM_CALL
, 0,
321 EXTENDED_REGS
, s390_fill_system_call
, s390_store_system_call
},
322 { 0, 0, 0, -1, -1, NULL
, NULL
}
326 static const unsigned char s390_breakpoint
[] = { 0, 1 };
327 #define s390_breakpoint_len 2
330 s390_get_pc (struct regcache
*regcache
)
332 if (register_size (regcache
->tdesc
, 0) == 4)
335 collect_register_by_name (regcache
, "pswa", &pswa
);
336 return pswa
& 0x7fffffff;
341 collect_register_by_name (regcache
, "pswa", &pc
);
347 s390_set_pc (struct regcache
*regcache
, CORE_ADDR newpc
)
349 if (register_size (regcache
->tdesc
, 0) == 4)
352 collect_register_by_name (regcache
, "pswa", &pswa
);
353 pswa
= (pswa
& 0x80000000) | (newpc
& 0x7fffffff);
354 supply_register_by_name (regcache
, "pswa", &pswa
);
358 unsigned long pc
= newpc
;
359 supply_register_by_name (regcache
, "pswa", &pc
);
365 s390_get_hwcap (const struct target_desc
*tdesc
)
367 int wordsize
= register_size (tdesc
, 0);
368 unsigned char *data
= alloca (2 * wordsize
);
371 while ((*the_target
->read_auxv
) (offset
, data
, 2 * wordsize
) == 2 * wordsize
)
375 unsigned int *data_p
= (unsigned int *)data
;
376 if (data_p
[0] == AT_HWCAP
)
381 unsigned long *data_p
= (unsigned long *)data
;
382 if (data_p
[0] == AT_HWCAP
)
386 offset
+= 2 * wordsize
;
394 s390_check_regset (int pid
, int regset
, int regsize
)
396 gdb_byte
*buf
= alloca (regsize
);
400 iov
.iov_len
= regsize
;
402 if (ptrace (PTRACE_GETREGSET
, pid
, (long) regset
, (long) &iov
) >= 0
409 /* For a 31-bit inferior, whether the kernel supports using the full
411 static int have_hwcap_s390_high_gprs
= 0;
415 s390_arch_setup (void)
417 const struct target_desc
*tdesc
;
418 struct regset_info
*regset
;
420 /* Check whether the kernel supports extra register sets. */
421 int pid
= pid_of (get_thread_lwp (current_inferior
));
422 int have_regset_last_break
423 = s390_check_regset (pid
, NT_S390_LAST_BREAK
, 8);
424 int have_regset_system_call
425 = s390_check_regset (pid
, NT_S390_SYSTEM_CALL
, 4);
426 int have_regset_tdb
= s390_check_regset (pid
, NT_S390_TDB
, 256);
428 /* Update target_regsets according to available register sets. */
429 for (regset
= s390_regsets
; regset
->fill_function
!= NULL
; regset
++)
430 if (regset
->get_request
== PTRACE_GETREGSET
)
431 switch (regset
->nt_type
)
433 case NT_S390_LAST_BREAK
:
434 regset
->size
= have_regset_last_break
? 8 : 0;
436 case NT_S390_SYSTEM_CALL
:
437 regset
->size
= have_regset_system_call
? 4 : 0;
440 regset
->size
= have_regset_tdb
? 256 : 0;
445 /* Assume 31-bit inferior process. */
446 if (have_regset_system_call
)
447 tdesc
= tdesc_s390_linux32v2
;
448 else if (have_regset_last_break
)
449 tdesc
= tdesc_s390_linux32v1
;
451 tdesc
= tdesc_s390_linux32
;
453 /* On a 64-bit host, check the low bit of the (31-bit) PSWM
454 -- if this is one, we actually have a 64-bit inferior. */
458 struct regcache
*regcache
= new_register_cache (tdesc
);
459 fetch_inferior_registers (regcache
, find_regno (tdesc
, "pswm"));
460 collect_register_by_name (regcache
, "pswm", &pswm
);
461 free_register_cache (regcache
);
466 tdesc
= tdesc_s390x_te_linux64
;
467 if (have_regset_system_call
)
468 tdesc
= tdesc_s390x_linux64v2
;
469 else if (have_regset_last_break
)
470 tdesc
= tdesc_s390x_linux64v1
;
472 tdesc
= tdesc_s390x_linux64
;
475 /* For a 31-bit inferior, check whether the kernel supports
476 using the full 64-bit GPRs. */
477 else if (s390_get_hwcap (tdesc
) & HWCAP_S390_HIGH_GPRS
)
479 have_hwcap_s390_high_gprs
= 1;
482 tdesc
= tdesc_s390_te_linux64
;
483 else if (have_regset_system_call
)
484 tdesc
= tdesc_s390_linux64v2
;
485 else if (have_regset_last_break
)
486 tdesc
= tdesc_s390_linux64v1
;
488 tdesc
= tdesc_s390_linux64
;
492 current_process ()->tdesc
= tdesc
;
497 s390_breakpoint_at (CORE_ADDR pc
)
499 unsigned char c
[s390_breakpoint_len
];
500 read_inferior_memory (pc
, c
, s390_breakpoint_len
);
501 return memcmp (c
, s390_breakpoint
, s390_breakpoint_len
) == 0;
504 static struct usrregs_info s390_usrregs_info
=
510 static struct regsets_info s390_regsets_info
=
512 s390_regsets
, /* regsets */
514 NULL
, /* disabled_regsets */
517 static struct regs_info regs_info
=
519 NULL
, /* regset_bitmap */
525 static struct usrregs_info s390_usrregs_info_3264
=
531 static struct regsets_info s390_regsets_info_3264
=
533 s390_regsets
, /* regsets */
535 NULL
, /* disabled_regsets */
538 static struct regs_info regs_info_3264
=
540 NULL
, /* regset_bitmap */
541 &s390_usrregs_info_3264
,
542 &s390_regsets_info_3264
546 static const struct regs_info
*
547 s390_regs_info (void)
550 if (have_hwcap_s390_high_gprs
)
552 const struct target_desc
*tdesc
= current_process ()->tdesc
;
554 if (register_size (tdesc
, 0) == 4)
555 return ®s_info_3264
;
561 struct linux_target_ops the_low_target
= {
564 s390_cannot_fetch_register
,
565 s390_cannot_store_register
,
566 NULL
, /* fetch_register */
578 s390_collect_ptrace_register
,
579 s390_supply_ptrace_register
,
583 initialize_low_arch (void)
585 /* Initialize the Linux target descriptions. */
587 init_registers_s390_linux32 ();
588 init_registers_s390_linux32v1 ();
589 init_registers_s390_linux32v2 ();
590 init_registers_s390_linux64 ();
591 init_registers_s390_linux64v1 ();
592 init_registers_s390_linux64v2 ();
593 init_registers_s390_te_linux64 ();
594 init_registers_s390x_linux64 ();
595 init_registers_s390x_linux64v1 ();
596 init_registers_s390x_linux64v2 ();
597 init_registers_s390x_te_linux64 ();
599 initialize_regsets_info (&s390_regsets_info
);
601 initialize_regsets_info (&s390_regsets_info_3264
);