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nexedi
linux
Commits
9491d77e
Commit
9491d77e
authored
Apr 13, 2003
by
Martin Schwidefsky
Committed by
Linus Torvalds
Apr 13, 2003
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[PATCH] s390/s390x unification (2/7)
Merge s390x and s390 to one architecture.
parent
a922abe4
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arch/s390/kernel/compat_linux.c
arch/s390/kernel/compat_linux.c
+2863
-0
arch/s390/kernel/compat_linux.h
arch/s390/kernel/compat_linux.h
+193
-0
arch/s390/kernel/compat_ptrace.h
arch/s390/kernel/compat_ptrace.h
+86
-0
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arch/s390/kernel/compat_linux.c
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9491d77e
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arch/s390/kernel/compat_linux.h
0 → 100644
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9491d77e
#ifndef _ASM_S390X_S390_H
#define _ASM_S390X_S390_H
#include <linux/config.h>
#include <linux/compat.h>
#include <linux/socket.h>
#include <linux/nfs_fs.h>
#include <linux/sunrpc/svc.h>
#include <linux/nfsd/nfsd.h>
#include <linux/nfsd/export.h>
/* Macro that masks the high order bit of an 32 bit pointer and converts it*/
/* to a 64 bit pointer */
#define A(__x) ((unsigned long)((__x) & 0x7FFFFFFFUL))
#define AA(__x) \
((unsigned long)(__x))
/* Now 32bit compatibility types */
struct
ipc_kludge_32
{
__u32
msgp
;
/* pointer */
__s32
msgtyp
;
};
struct
old_sigaction32
{
__u32
sa_handler
;
/* Really a pointer, but need to deal with 32 bits */
compat_old_sigset_t
sa_mask
;
/* A 32 bit mask */
__u32
sa_flags
;
__u32
sa_restorer
;
/* Another 32 bit pointer */
};
typedef
union
sigval32
{
int
sival_int
;
__u32
sival_ptr
;
}
sigval_t32
;
typedef
struct
siginfo32
{
int
si_signo
;
int
si_errno
;
int
si_code
;
union
{
int
_pad
[((
128
/
sizeof
(
int
))
-
3
)];
/* kill() */
struct
{
pid_t
_pid
;
/* sender's pid */
uid_t
_uid
;
/* sender's uid */
}
_kill
;
/* POSIX.1b timers */
struct
{
unsigned
int
_timer1
;
unsigned
int
_timer2
;
}
_timer
;
/* POSIX.1b signals */
struct
{
pid_t
_pid
;
/* sender's pid */
uid_t
_uid
;
/* sender's uid */
sigval_t32
_sigval
;
}
_rt
;
/* SIGCHLD */
struct
{
pid_t
_pid
;
/* which child */
uid_t
_uid
;
/* sender's uid */
int
_status
;
/* exit code */
compat_clock_t
_utime
;
compat_clock_t
_stime
;
}
_sigchld
;
/* SIGILL, SIGFPE, SIGSEGV, SIGBUS */
struct
{
__u32
_addr
;
/* faulting insn/memory ref. - pointer */
}
_sigfault
;
/* SIGPOLL */
struct
{
int
_band
;
/* POLL_IN, POLL_OUT, POLL_MSG */
int
_fd
;
}
_sigpoll
;
}
_sifields
;
}
siginfo_t32
;
/*
* How these fields are to be accessed.
*/
#define si_pid _sifields._kill._pid
#define si_uid _sifields._kill._uid
#define si_status _sifields._sigchld._status
#define si_utime _sifields._sigchld._utime
#define si_stime _sifields._sigchld._stime
#define si_value _sifields._rt._sigval
#define si_int _sifields._rt._sigval.sival_int
#define si_ptr _sifields._rt._sigval.sival_ptr
#define si_addr _sifields._sigfault._addr
#define si_band _sifields._sigpoll._band
#define si_fd _sifields._sigpoll._fd
/* asm/sigcontext.h */
typedef
union
{
__u64
d
;
__u32
f
;
}
freg_t32
;
typedef
struct
{
unsigned
int
fpc
;
freg_t32
fprs
[
__NUM_FPRS
];
}
_s390_fp_regs32
;
typedef
struct
{
__u32
mask
;
__u32
addr
;
}
_psw_t32
__attribute__
((
aligned
(
8
)));
#define PSW32_MASK_PER 0x40000000UL
#define PSW32_MASK_DAT 0x04000000UL
#define PSW32_MASK_IO 0x02000000UL
#define PSW32_MASK_EXT 0x01000000UL
#define PSW32_MASK_KEY 0x00F00000UL
#define PSW32_MASK_MCHECK 0x00040000UL
#define PSW32_MASK_WAIT 0x00020000UL
#define PSW32_MASK_PSTATE 0x00010000UL
#define PSW32_MASK_ASC 0x0000C000UL
#define PSW32_MASK_CC 0x00003000UL
#define PSW32_MASK_PM 0x00000f00UL
#define PSW32_ADDR_AMODE31 0x80000000UL
#define PSW32_ADDR_INSN 0x7FFFFFFFUL
#define PSW32_BASE_BITS 0x00080000UL
#define PSW32_ASC_PRIMARY 0x00000000UL
#define PSW32_ASC_ACCREG 0x00004000UL
#define PSW32_ASC_SECONDARY 0x00008000UL
#define PSW32_ASC_HOME 0x0000C000UL
#define PSW32_USER_BITS (PSW32_BASE_BITS | PSW32_MASK_DAT | PSW32_ASC_HOME | \
PSW32_MASK_IO | PSW32_MASK_EXT | PSW32_MASK_MCHECK | \
PSW32_MASK_PSTATE)
typedef
struct
{
_psw_t32
psw
;
__u32
gprs
[
__NUM_GPRS
];
__u32
acrs
[
__NUM_ACRS
];
}
_s390_regs_common32
;
typedef
struct
{
_s390_regs_common32
regs
;
_s390_fp_regs32
fpregs
;
}
_sigregs32
;
#define _SIGCONTEXT_NSIG32 64
#define _SIGCONTEXT_NSIG_BPW32 32
#define __SIGNAL_FRAMESIZE32 96
#define _SIGMASK_COPY_SIZE32 (sizeof(u32)*2)
struct
sigcontext32
{
__u32
oldmask
[
_COMPAT_NSIG_WORDS
];
__u32
sregs
;
/* pointer */
};
/* asm/signal.h */
struct
sigaction32
{
__u32
sa_handler
;
/* pointer */
__u32
sa_flags
;
__u32
sa_restorer
;
/* pointer */
compat_sigset_t
sa_mask
;
/* mask last for extensibility */
};
typedef
struct
{
__u32
ss_sp
;
/* pointer */
int
ss_flags
;
compat_size_t
ss_size
;
}
stack_t32
;
/* asm/ucontext.h */
struct
ucontext32
{
__u32
uc_flags
;
__u32
uc_link
;
/* pointer */
stack_t32
uc_stack
;
_sigregs32
uc_mcontext
;
compat_sigset_t
uc_sigmask
;
/* mask last for extensibility */
};
#endif
/* _ASM_S390X_S390_H */
arch/s390/kernel/compat_ptrace.h
0 → 100644
View file @
9491d77e
#ifndef _PTRACE32_H
#define _PTRACE32_H
#include "compat_linux.h"
/* needed for _psw_t32 */
typedef
struct
{
__u32
cr
[
3
];
}
per_cr_words32
__attribute__
((
packed
));
typedef
struct
{
__u16
perc_atmid
;
/* 0x096 */
__u32
address
;
/* 0x098 */
__u8
access_id
;
/* 0x0a1 */
}
per_lowcore_words32
__attribute__
((
packed
));
typedef
struct
{
union
{
per_cr_words32
words
;
}
control_regs
__attribute__
((
packed
));
/*
* Use these flags instead of setting em_instruction_fetch
* directly they are used so that single stepping can be
* switched on & off while not affecting other tracing
*/
unsigned
single_step
:
1
;
unsigned
instruction_fetch
:
1
;
unsigned
:
30
;
/*
* These addresses are copied into cr10 & cr11 if single
* stepping is switched off
*/
__u32
starting_addr
;
__u32
ending_addr
;
union
{
per_lowcore_words32
words
;
}
lowcore
;
}
per_struct32
__attribute__
((
packed
));
struct
user_regs_struct32
{
_psw_t32
psw
;
u32
gprs
[
NUM_GPRS
];
u32
acrs
[
NUM_ACRS
];
u32
orig_gpr2
;
s390_fp_regs
fp_regs
;
/*
* These per registers are in here so that gdb can modify them
* itself as there is no "official" ptrace interface for hardware
* watchpoints. This is the way intel does it.
*/
per_struct32
per_info
;
u32
ieee_instruction_pointer
;
/* Used to give failing instruction back to user for ieee exceptions */
};
struct
user32
{
/* We start with the registers, to mimic the way that "memory"
is returned from the ptrace(3,...) function. */
struct
user_regs_struct32
regs
;
/* Where the registers are actually stored */
/* The rest of this junk is to help gdb figure out what goes where */
u32
u_tsize
;
/* Text segment size (pages). */
u32
u_dsize
;
/* Data segment size (pages). */
u32
u_ssize
;
/* Stack segment size (pages). */
u32
start_code
;
/* Starting virtual address of text. */
u32
start_stack
;
/* Starting virtual address of stack area.
This is actually the bottom of the stack,
the top of the stack is always found in the
esp register. */
s32
signal
;
/* Signal that caused the core dump. */
u32
u_ar0
;
/* Used by gdb to help find the values for */
/* the registers. */
u32
magic
;
/* To uniquely identify a core file */
char
u_comm
[
32
];
/* User command that was responsible */
};
typedef
struct
{
__u32
len
;
__u32
kernel_addr
;
__u32
process_addr
;
}
ptrace_area_emu31
;
#endif
/* _PTRACE32_H */
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