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/*
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 *  Emulation of Linux signals
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 * 
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 *  Copyright (c) 2003 Fabrice Bellard
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 *
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 *  This program is free software; you can redistribute it and/or modify
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 *  it under the terms of the GNU General Public License as published by
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 *  the Free Software Foundation; either version 2 of the License, or
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 *  (at your option) any later version.
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 *
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 *  This program is distributed in the hope that it will be useful,
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 *  but WITHOUT ANY WARRANTY; without even the implied warranty of
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 *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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 *  GNU General Public License for more details.
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 *
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 *  You should have received a copy of the GNU General Public License
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 *  along with this program; if not, write to the Free Software
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 *  Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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 */
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#include <stdlib.h>
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#include <stdio.h>
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#include <string.h>
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#include <stdarg.h>
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#include <unistd.h>
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#include <signal.h>
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#include <errno.h>
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#include <sys/ucontext.h>
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#include "qemu.h"
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//#define DEBUG_SIGNAL
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#define MAX_SIGQUEUE_SIZE 1024
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struct sigqueue {
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    struct sigqueue *next;
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    target_siginfo_t info;
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};
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struct emulated_sigaction {
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    struct target_sigaction sa;
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    int pending; /* true if signal is pending */
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    struct sigqueue *first;
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    struct sigqueue info; /* in order to always have memory for the
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                             first signal, we put it here */
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};
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static struct emulated_sigaction sigact_table[TARGET_NSIG];
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static struct sigqueue sigqueue_table[MAX_SIGQUEUE_SIZE]; /* siginfo queue */
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static struct sigqueue *first_free; /* first free siginfo queue entry */
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static int signal_pending; /* non zero if a signal may be pending */
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static void host_signal_handler(int host_signum, siginfo_t *info, 
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                                void *puc);
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static uint8_t host_to_target_signal_table[65] = {
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    [SIGHUP] = TARGET_SIGHUP,
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    [SIGINT] = TARGET_SIGINT,
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    [SIGQUIT] = TARGET_SIGQUIT,
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    [SIGILL] = TARGET_SIGILL,
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    [SIGTRAP] = TARGET_SIGTRAP,
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    [SIGABRT] = TARGET_SIGABRT,
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/*    [SIGIOT] = TARGET_SIGIOT,*/
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    [SIGBUS] = TARGET_SIGBUS,
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    [SIGFPE] = TARGET_SIGFPE,
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    [SIGKILL] = TARGET_SIGKILL,
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    [SIGUSR1] = TARGET_SIGUSR1,
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    [SIGSEGV] = TARGET_SIGSEGV,
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    [SIGUSR2] = TARGET_SIGUSR2,
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    [SIGPIPE] = TARGET_SIGPIPE,
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    [SIGALRM] = TARGET_SIGALRM,
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    [SIGTERM] = TARGET_SIGTERM,
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#ifdef SIGSTKFLT
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    [SIGSTKFLT] = TARGET_SIGSTKFLT,
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#endif
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    [SIGCHLD] = TARGET_SIGCHLD,
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    [SIGCONT] = TARGET_SIGCONT,
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    [SIGSTOP] = TARGET_SIGSTOP,
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    [SIGTSTP] = TARGET_SIGTSTP,
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    [SIGTTIN] = TARGET_SIGTTIN,
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    [SIGTTOU] = TARGET_SIGTTOU,
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    [SIGURG] = TARGET_SIGURG,
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    [SIGXCPU] = TARGET_SIGXCPU,
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    [SIGXFSZ] = TARGET_SIGXFSZ,
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    [SIGVTALRM] = TARGET_SIGVTALRM,
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    [SIGPROF] = TARGET_SIGPROF,
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    [SIGWINCH] = TARGET_SIGWINCH,
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    [SIGIO] = TARGET_SIGIO,
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    [SIGPWR] = TARGET_SIGPWR,
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    [SIGSYS] = TARGET_SIGSYS,
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    /* next signals stay the same */
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};
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static uint8_t target_to_host_signal_table[65];
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static inline int host_to_target_signal(int sig)
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{
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    return host_to_target_signal_table[sig];
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}
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static inline int target_to_host_signal(int sig)
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{
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    return target_to_host_signal_table[sig];
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}
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static void host_to_target_sigset_internal(target_sigset_t *d, 
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                                           const sigset_t *s)
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{
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    int i;
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    unsigned long sigmask;
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    uint32_t target_sigmask;
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    sigmask = ((unsigned long *)s)[0];
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    target_sigmask = 0;
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    for(i = 0; i < 32; i++) {
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        if (sigmask & (1 << i)) 
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            target_sigmask |= 1 << (host_to_target_signal(i + 1) - 1);
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    }
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#if TARGET_LONG_BITS == 32 && HOST_LONG_BITS == 32
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    d->sig[0] = target_sigmask;
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    for(i = 1;i < TARGET_NSIG_WORDS; i++) {
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        d->sig[i] = ((unsigned long *)s)[i];
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    }
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#elif TARGET_LONG_BITS == 32 && HOST_LONG_BITS == 64 && TARGET_NSIG_WORDS == 2
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    d->sig[0] = target_sigmask;
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    d->sig[1] = sigmask >> 32;
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#else
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#warning host_to_target_sigset
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#endif
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}
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void host_to_target_sigset(target_sigset_t *d, const sigset_t *s)
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{
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    target_sigset_t d1;
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    int i;
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    host_to_target_sigset_internal(&d1, s);
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    for(i = 0;i < TARGET_NSIG_WORDS; i++)
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        d->sig[i] = tswapl(d1.sig[i]);
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}
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void target_to_host_sigset_internal(sigset_t *d, const target_sigset_t *s)
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{
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    int i;
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    unsigned long sigmask;
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    target_ulong target_sigmask;
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    target_sigmask = s->sig[0];
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    sigmask = 0;
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    for(i = 0; i < 32; i++) {
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        if (target_sigmask & (1 << i)) 
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            sigmask |= 1 << (target_to_host_signal(i + 1) - 1);
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    }
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#if TARGET_LONG_BITS == 32 && HOST_LONG_BITS == 32
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    ((unsigned long *)d)[0] = sigmask;
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    for(i = 1;i < TARGET_NSIG_WORDS; i++) {
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        ((unsigned long *)d)[i] = s->sig[i];
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    }
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#elif TARGET_LONG_BITS == 32 && HOST_LONG_BITS == 64 && TARGET_NSIG_WORDS == 2
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    ((unsigned long *)d)[0] = sigmask | ((unsigned long)(s->sig[1]) << 32);
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#else
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#warning target_to_host_sigset
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#endif /* TARGET_LONG_BITS */
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}
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void target_to_host_sigset(sigset_t *d, const target_sigset_t *s)
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{
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    target_sigset_t s1;
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    int i;
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    for(i = 0;i < TARGET_NSIG_WORDS; i++)
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        s1.sig[i] = tswapl(s->sig[i]);
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    target_to_host_sigset_internal(d, &s1);
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}
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void host_to_target_old_sigset(target_ulong *old_sigset, 
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                               const sigset_t *sigset)
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{
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    target_sigset_t d;
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    host_to_target_sigset(&d, sigset);
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    *old_sigset = d.sig[0];
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}
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void target_to_host_old_sigset(sigset_t *sigset, 
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                               const target_ulong *old_sigset)
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{
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    target_sigset_t d;
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    int i;
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    d.sig[0] = *old_sigset;
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    for(i = 1;i < TARGET_NSIG_WORDS; i++)
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        d.sig[i] = 0;
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    target_to_host_sigset(sigset, &d);
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}
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/* siginfo conversion */
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static inline void host_to_target_siginfo_noswap(target_siginfo_t *tinfo, 
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                                                 const siginfo_t *info)
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{
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    int sig;
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    sig = host_to_target_signal(info->si_signo);
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    tinfo->si_signo = sig;
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    tinfo->si_errno = 0;
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    tinfo->si_code = 0;
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    if (sig == SIGILL || sig == SIGFPE || sig == SIGSEGV || 
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        sig == SIGBUS || sig == SIGTRAP) {
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        /* should never come here, but who knows. The information for
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           the target is irrelevant */
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        tinfo->_sifields._sigfault._addr = 0;
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    } else if (sig >= TARGET_SIGRTMIN) {
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        tinfo->_sifields._rt._pid = info->si_pid;
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        tinfo->_sifields._rt._uid = info->si_uid;
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        /* XXX: potential problem if 64 bit */
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        tinfo->_sifields._rt._sigval.sival_ptr = 
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            (target_ulong)info->si_value.sival_ptr;
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    }
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}
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static void tswap_siginfo(target_siginfo_t *tinfo, 
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                          const target_siginfo_t *info)
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{
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    int sig;
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    sig = info->si_signo;
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    tinfo->si_signo = tswap32(sig);
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    tinfo->si_errno = tswap32(info->si_errno);
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    tinfo->si_code = tswap32(info->si_code);
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    if (sig == SIGILL || sig == SIGFPE || sig == SIGSEGV || 
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        sig == SIGBUS || sig == SIGTRAP) {
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        tinfo->_sifields._sigfault._addr = 
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            tswapl(info->_sifields._sigfault._addr);
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    } else if (sig >= TARGET_SIGRTMIN) {
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        tinfo->_sifields._rt._pid = tswap32(info->_sifields._rt._pid);
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        tinfo->_sifields._rt._uid = tswap32(info->_sifields._rt._uid);
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        tinfo->_sifields._rt._sigval.sival_ptr = 
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            tswapl(info->_sifields._rt._sigval.sival_ptr);
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    }
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}
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void host_to_target_siginfo(target_siginfo_t *tinfo, const siginfo_t *info)
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{
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    host_to_target_siginfo_noswap(tinfo, info);
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    tswap_siginfo(tinfo, tinfo);
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}
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/* XXX: we support only POSIX RT signals are used. */
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/* XXX: find a solution for 64 bit (additionnal malloced data is needed) */
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void target_to_host_siginfo(siginfo_t *info, const target_siginfo_t *tinfo)
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{
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    info->si_signo = tswap32(tinfo->si_signo);
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    info->si_errno = tswap32(tinfo->si_errno);
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    info->si_code = tswap32(tinfo->si_code);
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    info->si_pid = tswap32(tinfo->_sifields._rt._pid);
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    info->si_uid = tswap32(tinfo->_sifields._rt._uid);
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    info->si_value.sival_ptr = 
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        (void *)tswapl(tinfo->_sifields._rt._sigval.sival_ptr);
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}
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void signal_init(void)
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{
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    struct sigaction act;
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    int i, j;
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    /* generate signal conversion tables */
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    for(i = 1; i <= 64; i++) {
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        if (host_to_target_signal_table[i] == 0)
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            host_to_target_signal_table[i] = i;
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    }
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    for(i = 1; i <= 64; i++) {
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        j = host_to_target_signal_table[i];
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        target_to_host_signal_table[j] = i;
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    }
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    /* set all host signal handlers. ALL signals are blocked during
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       the handlers to serialize them. */
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    sigfillset(&act.sa_mask);
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    act.sa_flags = SA_SIGINFO;
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    act.sa_sigaction = host_signal_handler;
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    for(i = 1; i < NSIG; i++) {
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        sigaction(i, &act, NULL);
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    }
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    memset(sigact_table, 0, sizeof(sigact_table));
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    first_free = &sigqueue_table[0];
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    for(i = 0; i < MAX_SIGQUEUE_SIZE - 1; i++) 
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        sigqueue_table[i].next = &sigqueue_table[i + 1];
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    sigqueue_table[MAX_SIGQUEUE_SIZE - 1].next = NULL;
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}
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/* signal queue handling */
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static inline struct sigqueue *alloc_sigqueue(void)
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{
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    struct sigqueue *q = first_free;
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    if (!q)
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        return NULL;
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    first_free = q->next;
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    return q;
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}
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static inline void free_sigqueue(struct sigqueue *q)
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{
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    q->next = first_free;
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    first_free = q;
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}
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/* abort execution with signal */
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void __attribute((noreturn)) force_sig(int sig)
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{
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    int host_sig;
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    host_sig = target_to_host_signal(sig);
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    fprintf(stderr, "qemu: uncaught target signal %d (%s) - exiting\n", 
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            sig, strsignal(host_sig));
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#if 1
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    _exit(-host_sig);
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#else
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    {
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        struct sigaction act;
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        sigemptyset(&act.sa_mask);
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        act.sa_flags = SA_SIGINFO;
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        act.sa_sigaction = SIG_DFL;
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        sigaction(SIGABRT, &act, NULL);
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        abort();
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    }
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#endif
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}
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/* queue a signal so that it will be send to the virtual CPU as soon
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   as possible */
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int queue_signal(int sig, target_siginfo_t *info)
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{
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    struct emulated_sigaction *k;
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    struct sigqueue *q, **pq;
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    target_ulong handler;
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#if defined(DEBUG_SIGNAL)
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    fprintf(stderr, "queue_signal: sig=%d\n", 
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            sig);
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#endif
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    k = &sigact_table[sig - 1];
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    handler = k->sa._sa_handler;
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    if (handler == TARGET_SIG_DFL) {
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        /* default handler : ignore some signal. The other are fatal */
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        if (sig != TARGET_SIGCHLD && 
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            sig != TARGET_SIGURG && 
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            sig != TARGET_SIGWINCH) {
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            force_sig(sig);
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        } else {
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            return 0; /* indicate ignored */
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        }
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    } else if (handler == TARGET_SIG_IGN) {
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        /* ignore signal */
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        return 0;
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    } else if (handler == TARGET_SIG_ERR) {
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        force_sig(sig);
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    } else {
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        pq = &k->first;
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        if (sig < TARGET_SIGRTMIN) {
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            /* if non real time signal, we queue exactly one signal */
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            if (!k->pending)
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                q = &k->info;
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            else
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                return 0;
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        } else {
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            if (!k->pending) {
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                /* first signal */
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                q = &k->info;
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            } else {
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                q = alloc_sigqueue();
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                if (!q)
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                    return -EAGAIN;
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                while (*pq != NULL)
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                    pq = &(*pq)->next;
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            }
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        }
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        *pq = q;
378 9de5e440 bellard
        q->info = *info;
379 9de5e440 bellard
        q->next = NULL;
380 9de5e440 bellard
        k->pending = 1;
381 9de5e440 bellard
        /* signal that a new signal is pending */
382 9de5e440 bellard
        signal_pending = 1;
383 9de5e440 bellard
        return 1; /* indicates that the signal was queued */
384 9de5e440 bellard
    }
385 9de5e440 bellard
}
386 9de5e440 bellard
387 9de5e440 bellard
static void host_signal_handler(int host_signum, siginfo_t *info, 
388 9de5e440 bellard
                                void *puc)
389 9de5e440 bellard
{
390 9de5e440 bellard
    int sig;
391 9de5e440 bellard
    target_siginfo_t tinfo;
392 9de5e440 bellard
393 9de5e440 bellard
    /* the CPU emulator uses some host signals to detect exceptions,
394 9de5e440 bellard
       we we forward to it some signals */
395 58fe2f10 bellard
    if (host_signum == SIGSEGV || host_signum == SIGBUS 
396 58fe2f10 bellard
#if defined(TARGET_I386) && defined(USE_CODE_COPY)
397 58fe2f10 bellard
        || host_signum == SIGFPE
398 58fe2f10 bellard
#endif
399 58fe2f10 bellard
        ) {
400 b346ff46 bellard
        if (cpu_signal_handler(host_signum, info, puc))
401 9de5e440 bellard
            return;
402 9de5e440 bellard
    }
403 9de5e440 bellard
404 9de5e440 bellard
    /* get target signal number */
405 9de5e440 bellard
    sig = host_to_target_signal(host_signum);
406 9de5e440 bellard
    if (sig < 1 || sig > TARGET_NSIG)
407 9de5e440 bellard
        return;
408 9de5e440 bellard
#if defined(DEBUG_SIGNAL)
409 bc8a22cc bellard
    fprintf(stderr, "qemu: got signal %d\n", sig);
410 9de5e440 bellard
#endif
411 9de5e440 bellard
    host_to_target_siginfo_noswap(&tinfo, info);
412 9de5e440 bellard
    if (queue_signal(sig, &tinfo) == 1) {
413 9de5e440 bellard
        /* interrupt the virtual CPU as soon as possible */
414 68a79315 bellard
        cpu_interrupt(global_env, CPU_INTERRUPT_EXIT);
415 66fb9763 bellard
    }
416 66fb9763 bellard
}
417 66fb9763 bellard
418 66fb9763 bellard
int do_sigaction(int sig, const struct target_sigaction *act,
419 66fb9763 bellard
                 struct target_sigaction *oact)
420 66fb9763 bellard
{
421 66fb9763 bellard
    struct emulated_sigaction *k;
422 773b93ee bellard
    struct sigaction act1;
423 773b93ee bellard
    int host_sig;
424 66fb9763 bellard
425 66fb9763 bellard
    if (sig < 1 || sig > TARGET_NSIG)
426 66fb9763 bellard
        return -EINVAL;
427 66fb9763 bellard
    k = &sigact_table[sig - 1];
428 773b93ee bellard
#if defined(DEBUG_SIGNAL)
429 66fb9763 bellard
    fprintf(stderr, "sigaction sig=%d act=0x%08x, oact=0x%08x\n", 
430 66fb9763 bellard
            sig, (int)act, (int)oact);
431 66fb9763 bellard
#endif
432 66fb9763 bellard
    if (oact) {
433 66fb9763 bellard
        oact->_sa_handler = tswapl(k->sa._sa_handler);
434 66fb9763 bellard
        oact->sa_flags = tswapl(k->sa.sa_flags);
435 106ec879 bellard
        #if !defined(TARGET_MIPS)
436 106ec879 bellard
                oact->sa_restorer = tswapl(k->sa.sa_restorer);
437 106ec879 bellard
        #endif
438 66fb9763 bellard
        oact->sa_mask = k->sa.sa_mask;
439 66fb9763 bellard
    }
440 66fb9763 bellard
    if (act) {
441 66fb9763 bellard
        k->sa._sa_handler = tswapl(act->_sa_handler);
442 66fb9763 bellard
        k->sa.sa_flags = tswapl(act->sa_flags);
443 106ec879 bellard
        #if !defined(TARGET_MIPS)
444 106ec879 bellard
                k->sa.sa_restorer = tswapl(act->sa_restorer);
445 106ec879 bellard
        #endif
446 66fb9763 bellard
        k->sa.sa_mask = act->sa_mask;
447 773b93ee bellard
448 773b93ee bellard
        /* we update the host linux signal state */
449 773b93ee bellard
        host_sig = target_to_host_signal(sig);
450 773b93ee bellard
        if (host_sig != SIGSEGV && host_sig != SIGBUS) {
451 773b93ee bellard
            sigfillset(&act1.sa_mask);
452 773b93ee bellard
            act1.sa_flags = SA_SIGINFO;
453 773b93ee bellard
            if (k->sa.sa_flags & TARGET_SA_RESTART)
454 773b93ee bellard
                act1.sa_flags |= SA_RESTART;
455 773b93ee bellard
            /* NOTE: it is important to update the host kernel signal
456 773b93ee bellard
               ignore state to avoid getting unexpected interrupted
457 773b93ee bellard
               syscalls */
458 773b93ee bellard
            if (k->sa._sa_handler == TARGET_SIG_IGN) {
459 773b93ee bellard
                act1.sa_sigaction = (void *)SIG_IGN;
460 773b93ee bellard
            } else if (k->sa._sa_handler == TARGET_SIG_DFL) {
461 773b93ee bellard
                act1.sa_sigaction = (void *)SIG_DFL;
462 773b93ee bellard
            } else {
463 773b93ee bellard
                act1.sa_sigaction = host_signal_handler;
464 773b93ee bellard
            }
465 773b93ee bellard
            sigaction(host_sig, &act1, NULL);
466 773b93ee bellard
        }
467 66fb9763 bellard
    }
468 66fb9763 bellard
    return 0;
469 66fb9763 bellard
}
470 66fb9763 bellard
471 43fff238 bellard
#ifndef offsetof
472 43fff238 bellard
#define offsetof(type, field) ((size_t) &((type *)0)->field)
473 43fff238 bellard
#endif
474 43fff238 bellard
475 43fff238 bellard
static inline int copy_siginfo_to_user(target_siginfo_t *tinfo, 
476 43fff238 bellard
                                       const target_siginfo_t *info)
477 43fff238 bellard
{
478 43fff238 bellard
    tswap_siginfo(tinfo, info);
479 43fff238 bellard
    return 0;
480 43fff238 bellard
}
481 43fff238 bellard
482 66fb9763 bellard
#ifdef TARGET_I386
483 66fb9763 bellard
484 66fb9763 bellard
/* from the Linux kernel */
485 66fb9763 bellard
486 66fb9763 bellard
struct target_fpreg {
487 66fb9763 bellard
        uint16_t significand[4];
488 66fb9763 bellard
        uint16_t exponent;
489 66fb9763 bellard
};
490 66fb9763 bellard
491 66fb9763 bellard
struct target_fpxreg {
492 66fb9763 bellard
        uint16_t significand[4];
493 66fb9763 bellard
        uint16_t exponent;
494 66fb9763 bellard
        uint16_t padding[3];
495 66fb9763 bellard
};
496 66fb9763 bellard
497 66fb9763 bellard
struct target_xmmreg {
498 66fb9763 bellard
        target_ulong element[4];
499 66fb9763 bellard
};
500 66fb9763 bellard
501 66fb9763 bellard
struct target_fpstate {
502 66fb9763 bellard
        /* Regular FPU environment */
503 66fb9763 bellard
        target_ulong         cw;
504 66fb9763 bellard
        target_ulong        sw;
505 66fb9763 bellard
        target_ulong        tag;
506 66fb9763 bellard
        target_ulong        ipoff;
507 66fb9763 bellard
        target_ulong        cssel;
508 66fb9763 bellard
        target_ulong        dataoff;
509 66fb9763 bellard
        target_ulong        datasel;
510 66fb9763 bellard
        struct target_fpreg        _st[8];
511 66fb9763 bellard
        uint16_t        status;
512 66fb9763 bellard
        uint16_t        magic;                /* 0xffff = regular FPU data only */
513 66fb9763 bellard
514 66fb9763 bellard
        /* FXSR FPU environment */
515 66fb9763 bellard
        target_ulong        _fxsr_env[6];        /* FXSR FPU env is ignored */
516 66fb9763 bellard
        target_ulong        mxcsr;
517 66fb9763 bellard
        target_ulong        reserved;
518 66fb9763 bellard
        struct target_fpxreg        _fxsr_st[8];        /* FXSR FPU reg data is ignored */
519 66fb9763 bellard
        struct target_xmmreg        _xmm[8];
520 66fb9763 bellard
        target_ulong        padding[56];
521 66fb9763 bellard
};
522 66fb9763 bellard
523 66fb9763 bellard
#define X86_FXSR_MAGIC                0x0000
524 66fb9763 bellard
525 66fb9763 bellard
struct target_sigcontext {
526 66fb9763 bellard
        uint16_t gs, __gsh;
527 66fb9763 bellard
        uint16_t fs, __fsh;
528 66fb9763 bellard
        uint16_t es, __esh;
529 66fb9763 bellard
        uint16_t ds, __dsh;
530 66fb9763 bellard
        target_ulong edi;
531 66fb9763 bellard
        target_ulong esi;
532 66fb9763 bellard
        target_ulong ebp;
533 66fb9763 bellard
        target_ulong esp;
534 66fb9763 bellard
        target_ulong ebx;
535 66fb9763 bellard
        target_ulong edx;
536 66fb9763 bellard
        target_ulong ecx;
537 66fb9763 bellard
        target_ulong eax;
538 66fb9763 bellard
        target_ulong trapno;
539 66fb9763 bellard
        target_ulong err;
540 66fb9763 bellard
        target_ulong eip;
541 66fb9763 bellard
        uint16_t cs, __csh;
542 66fb9763 bellard
        target_ulong eflags;
543 66fb9763 bellard
        target_ulong esp_at_signal;
544 66fb9763 bellard
        uint16_t ss, __ssh;
545 66fb9763 bellard
        target_ulong fpstate; /* pointer */
546 66fb9763 bellard
        target_ulong oldmask;
547 66fb9763 bellard
        target_ulong cr2;
548 66fb9763 bellard
};
549 66fb9763 bellard
550 66fb9763 bellard
typedef struct target_sigaltstack {
551 66fb9763 bellard
        target_ulong ss_sp;
552 66fb9763 bellard
        int ss_flags;
553 66fb9763 bellard
        target_ulong ss_size;
554 66fb9763 bellard
} target_stack_t;
555 66fb9763 bellard
556 66fb9763 bellard
struct target_ucontext {
557 b8076a74 bellard
        target_ulong          tuc_flags;
558 b8076a74 bellard
        target_ulong      tuc_link;
559 b8076a74 bellard
        target_stack_t          tuc_stack;
560 b8076a74 bellard
        struct target_sigcontext tuc_mcontext;
561 b8076a74 bellard
        target_sigset_t          tuc_sigmask;        /* mask last for extensibility */
562 66fb9763 bellard
};
563 66fb9763 bellard
564 66fb9763 bellard
struct sigframe
565 66fb9763 bellard
{
566 66fb9763 bellard
    target_ulong pretcode;
567 66fb9763 bellard
    int sig;
568 66fb9763 bellard
    struct target_sigcontext sc;
569 66fb9763 bellard
    struct target_fpstate fpstate;
570 66fb9763 bellard
    target_ulong extramask[TARGET_NSIG_WORDS-1];
571 66fb9763 bellard
    char retcode[8];
572 66fb9763 bellard
};
573 66fb9763 bellard
574 66fb9763 bellard
struct rt_sigframe
575 66fb9763 bellard
{
576 66fb9763 bellard
    target_ulong pretcode;
577 66fb9763 bellard
    int sig;
578 66fb9763 bellard
    target_ulong pinfo;
579 66fb9763 bellard
    target_ulong puc;
580 66fb9763 bellard
    struct target_siginfo info;
581 66fb9763 bellard
    struct target_ucontext uc;
582 66fb9763 bellard
    struct target_fpstate fpstate;
583 66fb9763 bellard
    char retcode[8];
584 66fb9763 bellard
};
585 66fb9763 bellard
586 66fb9763 bellard
/*
587 66fb9763 bellard
 * Set up a signal frame.
588 66fb9763 bellard
 */
589 66fb9763 bellard
590 66fb9763 bellard
/* XXX: save x87 state */
591 66fb9763 bellard
static int
592 66fb9763 bellard
setup_sigcontext(struct target_sigcontext *sc, struct target_fpstate *fpstate,
593 66fb9763 bellard
                 CPUX86State *env, unsigned long mask)
594 66fb9763 bellard
{
595 66fb9763 bellard
        int err = 0;
596 66fb9763 bellard
597 a52c757c bellard
        err |= __put_user(env->segs[R_GS].selector, (unsigned int *)&sc->gs);
598 a52c757c bellard
        err |= __put_user(env->segs[R_FS].selector, (unsigned int *)&sc->fs);
599 a52c757c bellard
        err |= __put_user(env->segs[R_ES].selector, (unsigned int *)&sc->es);
600 a52c757c bellard
        err |= __put_user(env->segs[R_DS].selector, (unsigned int *)&sc->ds);
601 66fb9763 bellard
        err |= __put_user(env->regs[R_EDI], &sc->edi);
602 66fb9763 bellard
        err |= __put_user(env->regs[R_ESI], &sc->esi);
603 66fb9763 bellard
        err |= __put_user(env->regs[R_EBP], &sc->ebp);
604 66fb9763 bellard
        err |= __put_user(env->regs[R_ESP], &sc->esp);
605 66fb9763 bellard
        err |= __put_user(env->regs[R_EBX], &sc->ebx);
606 66fb9763 bellard
        err |= __put_user(env->regs[R_EDX], &sc->edx);
607 66fb9763 bellard
        err |= __put_user(env->regs[R_ECX], &sc->ecx);
608 66fb9763 bellard
        err |= __put_user(env->regs[R_EAX], &sc->eax);
609 66099dd9 bellard
        err |= __put_user(env->exception_index, &sc->trapno);
610 66099dd9 bellard
        err |= __put_user(env->error_code, &sc->err);
611 66fb9763 bellard
        err |= __put_user(env->eip, &sc->eip);
612 a52c757c bellard
        err |= __put_user(env->segs[R_CS].selector, (unsigned int *)&sc->cs);
613 66fb9763 bellard
        err |= __put_user(env->eflags, &sc->eflags);
614 66fb9763 bellard
        err |= __put_user(env->regs[R_ESP], &sc->esp_at_signal);
615 a52c757c bellard
        err |= __put_user(env->segs[R_SS].selector, (unsigned int *)&sc->ss);
616 ed2dcdf6 bellard
617 ed2dcdf6 bellard
        cpu_x86_fsave(env, (void *)fpstate, 1);
618 ed2dcdf6 bellard
        fpstate->status = fpstate->sw;
619 ed2dcdf6 bellard
        err |= __put_user(0xffff, &fpstate->magic);
620 ed2dcdf6 bellard
        err |= __put_user(fpstate, &sc->fpstate);
621 ed2dcdf6 bellard
622 66fb9763 bellard
        /* non-iBCS2 extensions.. */
623 66fb9763 bellard
        err |= __put_user(mask, &sc->oldmask);
624 a52c757c bellard
        err |= __put_user(env->cr[2], &sc->cr2);
625 66fb9763 bellard
        return err;
626 31e31b8a bellard
}
627 31e31b8a bellard
628 66fb9763 bellard
/*
629 66fb9763 bellard
 * Determine which stack to use..
630 66fb9763 bellard
 */
631 31e31b8a bellard
632 66fb9763 bellard
static inline void *
633 66fb9763 bellard
get_sigframe(struct emulated_sigaction *ka, CPUX86State *env, size_t frame_size)
634 31e31b8a bellard
{
635 66fb9763 bellard
        unsigned long esp;
636 66fb9763 bellard
637 66fb9763 bellard
        /* Default to using normal stack */
638 66fb9763 bellard
        esp = env->regs[R_ESP];
639 66fb9763 bellard
#if 0
640 66fb9763 bellard
        /* This is the X/Open sanctioned signal stack switching.  */
641 66fb9763 bellard
        if (ka->sa.sa_flags & SA_ONSTACK) {
642 66fb9763 bellard
                if (sas_ss_flags(esp) == 0)
643 66fb9763 bellard
                        esp = current->sas_ss_sp + current->sas_ss_size;
644 66fb9763 bellard
        }
645 66fb9763 bellard

646 66fb9763 bellard
        /* This is the legacy signal stack switching. */
647 a52c757c bellard
        else 
648 66fb9763 bellard
#endif
649 a52c757c bellard
        if ((env->segs[R_SS].selector & 0xffff) != __USER_DS &&
650 a52c757c bellard
            !(ka->sa.sa_flags & TARGET_SA_RESTORER) &&
651 a52c757c bellard
            ka->sa.sa_restorer) {
652 a52c757c bellard
            esp = (unsigned long) ka->sa.sa_restorer;
653 a52c757c bellard
        }
654 53a5960a pbrook
        return g2h((esp - frame_size) & -8ul);
655 66fb9763 bellard
}
656 66fb9763 bellard
657 66fb9763 bellard
static void setup_frame(int sig, struct emulated_sigaction *ka,
658 66fb9763 bellard
                        target_sigset_t *set, CPUX86State *env)
659 66fb9763 bellard
{
660 66fb9763 bellard
        struct sigframe *frame;
661 9231944d bellard
        int i, err = 0;
662 66fb9763 bellard
663 66fb9763 bellard
        frame = get_sigframe(ka, env, sizeof(*frame));
664 66fb9763 bellard
665 66fb9763 bellard
        if (!access_ok(VERIFY_WRITE, frame, sizeof(*frame)))
666 66fb9763 bellard
                goto give_sigsegv;
667 66fb9763 bellard
        err |= __put_user((/*current->exec_domain
668 66fb9763 bellard
                           && current->exec_domain->signal_invmap
669 66fb9763 bellard
                           && sig < 32
670 66fb9763 bellard
                           ? current->exec_domain->signal_invmap[sig]
671 66fb9763 bellard
                           : */ sig),
672 66fb9763 bellard
                          &frame->sig);
673 66fb9763 bellard
        if (err)
674 66fb9763 bellard
                goto give_sigsegv;
675 66fb9763 bellard
676 66fb9763 bellard
        setup_sigcontext(&frame->sc, &frame->fpstate, env, set->sig[0]);
677 66fb9763 bellard
        if (err)
678 66fb9763 bellard
                goto give_sigsegv;
679 66fb9763 bellard
680 9231944d bellard
        for(i = 1; i < TARGET_NSIG_WORDS; i++) {
681 9231944d bellard
            if (__put_user(set->sig[i], &frame->extramask[i - 1]))
682 9231944d bellard
                goto give_sigsegv;
683 9231944d bellard
        }
684 66fb9763 bellard
685 66fb9763 bellard
        /* Set up to return from userspace.  If provided, use a stub
686 66fb9763 bellard
           already in userspace.  */
687 66fb9763 bellard
        if (ka->sa.sa_flags & TARGET_SA_RESTORER) {
688 66fb9763 bellard
                err |= __put_user(ka->sa.sa_restorer, &frame->pretcode);
689 66fb9763 bellard
        } else {
690 66fb9763 bellard
                err |= __put_user(frame->retcode, &frame->pretcode);
691 66fb9763 bellard
                /* This is popl %eax ; movl $,%eax ; int $0x80 */
692 66fb9763 bellard
                err |= __put_user(0xb858, (short *)(frame->retcode+0));
693 66fb9763 bellard
                err |= __put_user(TARGET_NR_sigreturn, (int *)(frame->retcode+2));
694 66fb9763 bellard
                err |= __put_user(0x80cd, (short *)(frame->retcode+6));
695 66fb9763 bellard
        }
696 66fb9763 bellard
697 66fb9763 bellard
        if (err)
698 66fb9763 bellard
                goto give_sigsegv;
699 66fb9763 bellard
700 66fb9763 bellard
        /* Set up registers for signal handler */
701 53a5960a pbrook
        env->regs[R_ESP] = h2g(frame);
702 66fb9763 bellard
        env->eip = (unsigned long) ka->sa._sa_handler;
703 66fb9763 bellard
704 66fb9763 bellard
        cpu_x86_load_seg(env, R_DS, __USER_DS);
705 66fb9763 bellard
        cpu_x86_load_seg(env, R_ES, __USER_DS);
706 66fb9763 bellard
        cpu_x86_load_seg(env, R_SS, __USER_DS);
707 66fb9763 bellard
        cpu_x86_load_seg(env, R_CS, __USER_CS);
708 66fb9763 bellard
        env->eflags &= ~TF_MASK;
709 66fb9763 bellard
710 66fb9763 bellard
        return;
711 66fb9763 bellard
712 66fb9763 bellard
give_sigsegv:
713 66fb9763 bellard
        if (sig == TARGET_SIGSEGV)
714 66fb9763 bellard
                ka->sa._sa_handler = TARGET_SIG_DFL;
715 66fb9763 bellard
        force_sig(TARGET_SIGSEGV /* , current */);
716 66fb9763 bellard
}
717 66fb9763 bellard
718 9de5e440 bellard
static void setup_rt_frame(int sig, struct emulated_sigaction *ka, 
719 9de5e440 bellard
                           target_siginfo_t *info,
720 66fb9763 bellard
                           target_sigset_t *set, CPUX86State *env)
721 66fb9763 bellard
{
722 66fb9763 bellard
        struct rt_sigframe *frame;
723 9231944d bellard
        int i, err = 0;
724 66fb9763 bellard
725 66fb9763 bellard
        frame = get_sigframe(ka, env, sizeof(*frame));
726 66fb9763 bellard
727 66fb9763 bellard
        if (!access_ok(VERIFY_WRITE, frame, sizeof(*frame)))
728 66fb9763 bellard
                goto give_sigsegv;
729 66fb9763 bellard
730 66fb9763 bellard
        err |= __put_user((/*current->exec_domain
731 66fb9763 bellard
                               && current->exec_domain->signal_invmap
732 66fb9763 bellard
                               && sig < 32
733 66fb9763 bellard
                               ? current->exec_domain->signal_invmap[sig]
734 66fb9763 bellard
                           : */sig),
735 66fb9763 bellard
                          &frame->sig);
736 66fb9763 bellard
        err |= __put_user((target_ulong)&frame->info, &frame->pinfo);
737 66fb9763 bellard
        err |= __put_user((target_ulong)&frame->uc, &frame->puc);
738 66fb9763 bellard
        err |= copy_siginfo_to_user(&frame->info, info);
739 66fb9763 bellard
        if (err)
740 66fb9763 bellard
                goto give_sigsegv;
741 31e31b8a bellard
742 66fb9763 bellard
        /* Create the ucontext.  */
743 b8076a74 bellard
        err |= __put_user(0, &frame->uc.tuc_flags);
744 b8076a74 bellard
        err |= __put_user(0, &frame->uc.tuc_link);
745 b8076a74 bellard
        err |= __put_user(/*current->sas_ss_sp*/ 0,
746 b8076a74 bellard
                          &frame->uc.tuc_stack.ss_sp);
747 66fb9763 bellard
        err |= __put_user(/* sas_ss_flags(regs->esp) */ 0,
748 b8076a74 bellard
                          &frame->uc.tuc_stack.ss_flags);
749 b8076a74 bellard
        err |= __put_user(/* current->sas_ss_size */ 0,
750 b8076a74 bellard
                          &frame->uc.tuc_stack.ss_size);
751 b8076a74 bellard
        err |= setup_sigcontext(&frame->uc.tuc_mcontext, &frame->fpstate,
752 66fb9763 bellard
                                env, set->sig[0]);
753 9231944d bellard
        for(i = 0; i < TARGET_NSIG_WORDS; i++) {
754 b8076a74 bellard
            if (__put_user(set->sig[i], &frame->uc.tuc_sigmask.sig[i]))
755 9231944d bellard
                goto give_sigsegv;
756 9231944d bellard
        }
757 31e31b8a bellard
758 66fb9763 bellard
        /* Set up to return from userspace.  If provided, use a stub
759 66fb9763 bellard
           already in userspace.  */
760 66fb9763 bellard
        if (ka->sa.sa_flags & TARGET_SA_RESTORER) {
761 66fb9763 bellard
                err |= __put_user(ka->sa.sa_restorer, &frame->pretcode);
762 66fb9763 bellard
        } else {
763 66fb9763 bellard
                err |= __put_user(frame->retcode, &frame->pretcode);
764 66fb9763 bellard
                /* This is movl $,%eax ; int $0x80 */
765 66fb9763 bellard
                err |= __put_user(0xb8, (char *)(frame->retcode+0));
766 66fb9763 bellard
                err |= __put_user(TARGET_NR_rt_sigreturn, (int *)(frame->retcode+1));
767 66fb9763 bellard
                err |= __put_user(0x80cd, (short *)(frame->retcode+5));
768 66fb9763 bellard
        }
769 66fb9763 bellard
770 66fb9763 bellard
        if (err)
771 66fb9763 bellard
                goto give_sigsegv;
772 66fb9763 bellard
773 66fb9763 bellard
        /* Set up registers for signal handler */
774 66fb9763 bellard
        env->regs[R_ESP] = (unsigned long) frame;
775 66fb9763 bellard
        env->eip = (unsigned long) ka->sa._sa_handler;
776 66fb9763 bellard
777 66fb9763 bellard
        cpu_x86_load_seg(env, R_DS, __USER_DS);
778 66fb9763 bellard
        cpu_x86_load_seg(env, R_ES, __USER_DS);
779 66fb9763 bellard
        cpu_x86_load_seg(env, R_SS, __USER_DS);
780 66fb9763 bellard
        cpu_x86_load_seg(env, R_CS, __USER_CS);
781 66fb9763 bellard
        env->eflags &= ~TF_MASK;
782 66fb9763 bellard
783 66fb9763 bellard
        return;
784 66fb9763 bellard
785 66fb9763 bellard
give_sigsegv:
786 66fb9763 bellard
        if (sig == TARGET_SIGSEGV)
787 66fb9763 bellard
                ka->sa._sa_handler = TARGET_SIG_DFL;
788 66fb9763 bellard
        force_sig(TARGET_SIGSEGV /* , current */);
789 66fb9763 bellard
}
790 66fb9763 bellard
791 66fb9763 bellard
static int
792 66fb9763 bellard
restore_sigcontext(CPUX86State *env, struct target_sigcontext *sc, int *peax)
793 66fb9763 bellard
{
794 66fb9763 bellard
        unsigned int err = 0;
795 66fb9763 bellard
796 66fb9763 bellard
        cpu_x86_load_seg(env, R_GS, lduw(&sc->gs));
797 66fb9763 bellard
        cpu_x86_load_seg(env, R_FS, lduw(&sc->fs));
798 66fb9763 bellard
        cpu_x86_load_seg(env, R_ES, lduw(&sc->es));
799 66fb9763 bellard
        cpu_x86_load_seg(env, R_DS, lduw(&sc->ds));
800 66fb9763 bellard
801 66fb9763 bellard
        env->regs[R_EDI] = ldl(&sc->edi);
802 66fb9763 bellard
        env->regs[R_ESI] = ldl(&sc->esi);
803 66fb9763 bellard
        env->regs[R_EBP] = ldl(&sc->ebp);
804 66fb9763 bellard
        env->regs[R_ESP] = ldl(&sc->esp);
805 66fb9763 bellard
        env->regs[R_EBX] = ldl(&sc->ebx);
806 66fb9763 bellard
        env->regs[R_EDX] = ldl(&sc->edx);
807 66fb9763 bellard
        env->regs[R_ECX] = ldl(&sc->ecx);
808 66fb9763 bellard
        env->eip = ldl(&sc->eip);
809 66fb9763 bellard
810 66fb9763 bellard
        cpu_x86_load_seg(env, R_CS, lduw(&sc->cs) | 3);
811 66fb9763 bellard
        cpu_x86_load_seg(env, R_SS, lduw(&sc->ss) | 3);
812 66fb9763 bellard
        
813 66fb9763 bellard
        {
814 66fb9763 bellard
                unsigned int tmpflags;
815 66fb9763 bellard
                tmpflags = ldl(&sc->eflags);
816 66fb9763 bellard
                env->eflags = (env->eflags & ~0x40DD5) | (tmpflags & 0x40DD5);
817 66fb9763 bellard
                //                regs->orig_eax = -1;                /* disable syscall checks */
818 66fb9763 bellard
        }
819 66fb9763 bellard
820 66fb9763 bellard
        {
821 66fb9763 bellard
                struct _fpstate * buf;
822 ed2dcdf6 bellard
                buf = (void *)ldl(&sc->fpstate);
823 66fb9763 bellard
                if (buf) {
824 ed2dcdf6 bellard
#if 0
825 66fb9763 bellard
                        if (verify_area(VERIFY_READ, buf, sizeof(*buf)))
826 66fb9763 bellard
                                goto badframe;
827 ed2dcdf6 bellard
#endif
828 ed2dcdf6 bellard
                        cpu_x86_frstor(env, (void *)buf, 1);
829 66fb9763 bellard
                }
830 66fb9763 bellard
        }
831 ed2dcdf6 bellard
832 66fb9763 bellard
        *peax = ldl(&sc->eax);
833 66fb9763 bellard
        return err;
834 66fb9763 bellard
#if 0
835 66fb9763 bellard
badframe:
836 66fb9763 bellard
        return 1;
837 66fb9763 bellard
#endif
838 66fb9763 bellard
}
839 66fb9763 bellard
840 66fb9763 bellard
long do_sigreturn(CPUX86State *env)
841 66fb9763 bellard
{
842 53a5960a pbrook
    struct sigframe *frame = (struct sigframe *)g2h(env->regs[R_ESP] - 8);
843 66fb9763 bellard
    target_sigset_t target_set;
844 66fb9763 bellard
    sigset_t set;
845 66fb9763 bellard
    int eax, i;
846 66fb9763 bellard
847 447db213 bellard
#if defined(DEBUG_SIGNAL)
848 447db213 bellard
    fprintf(stderr, "do_sigreturn\n");
849 447db213 bellard
#endif
850 66fb9763 bellard
    /* set blocked signals */
851 9231944d bellard
    if (__get_user(target_set.sig[0], &frame->sc.oldmask))
852 9231944d bellard
        goto badframe;
853 9231944d bellard
    for(i = 1; i < TARGET_NSIG_WORDS; i++) {
854 9231944d bellard
        if (__get_user(target_set.sig[i], &frame->extramask[i - 1]))
855 9231944d bellard
            goto badframe;
856 9231944d bellard
    }
857 66fb9763 bellard
858 9231944d bellard
    target_to_host_sigset_internal(&set, &target_set);
859 66fb9763 bellard
    sigprocmask(SIG_SETMASK, &set, NULL);
860 66fb9763 bellard
    
861 66fb9763 bellard
    /* restore registers */
862 66fb9763 bellard
    if (restore_sigcontext(env, &frame->sc, &eax))
863 66fb9763 bellard
        goto badframe;
864 66fb9763 bellard
    return eax;
865 66fb9763 bellard
866 66fb9763 bellard
badframe:
867 66fb9763 bellard
    force_sig(TARGET_SIGSEGV);
868 66fb9763 bellard
    return 0;
869 66fb9763 bellard
}
870 66fb9763 bellard
871 66fb9763 bellard
long do_rt_sigreturn(CPUX86State *env)
872 66fb9763 bellard
{
873 53a5960a pbrook
        struct rt_sigframe *frame = (struct rt_sigframe *)g2h(env->regs[R_ESP] - 4);
874 66fb9763 bellard
        sigset_t set;
875 66fb9763 bellard
        //        stack_t st;
876 66fb9763 bellard
        int eax;
877 66fb9763 bellard
878 66fb9763 bellard
#if 0
879 66fb9763 bellard
        if (verify_area(VERIFY_READ, frame, sizeof(*frame)))
880 66fb9763 bellard
                goto badframe;
881 66fb9763 bellard
#endif
882 b8076a74 bellard
        target_to_host_sigset(&set, &frame->uc.tuc_sigmask);
883 66fb9763 bellard
        sigprocmask(SIG_SETMASK, &set, NULL);
884 66fb9763 bellard
        
885 b8076a74 bellard
        if (restore_sigcontext(env, &frame->uc.tuc_mcontext, &eax))
886 66fb9763 bellard
                goto badframe;
887 66fb9763 bellard
888 66fb9763 bellard
#if 0
889 b8076a74 bellard
        if (__copy_from_user(&st, &frame->uc.tuc_stack, sizeof(st)))
890 66fb9763 bellard
                goto badframe;
891 66fb9763 bellard
        /* It is more difficult to avoid calling this function than to
892 66fb9763 bellard
           call it and ignore errors.  */
893 66fb9763 bellard
        do_sigaltstack(&st, NULL, regs->esp);
894 66fb9763 bellard
#endif
895 66fb9763 bellard
        return eax;
896 66fb9763 bellard
897 66fb9763 bellard
badframe:
898 66fb9763 bellard
        force_sig(TARGET_SIGSEGV);
899 66fb9763 bellard
        return 0;
900 66fb9763 bellard
}
901 66fb9763 bellard
902 43fff238 bellard
#elif defined(TARGET_ARM)
903 43fff238 bellard
904 43fff238 bellard
struct target_sigcontext {
905 43fff238 bellard
        target_ulong trap_no;
906 43fff238 bellard
        target_ulong error_code;
907 43fff238 bellard
        target_ulong oldmask;
908 43fff238 bellard
        target_ulong arm_r0;
909 43fff238 bellard
        target_ulong arm_r1;
910 43fff238 bellard
        target_ulong arm_r2;
911 43fff238 bellard
        target_ulong arm_r3;
912 43fff238 bellard
        target_ulong arm_r4;
913 43fff238 bellard
        target_ulong arm_r5;
914 43fff238 bellard
        target_ulong arm_r6;
915 43fff238 bellard
        target_ulong arm_r7;
916 43fff238 bellard
        target_ulong arm_r8;
917 43fff238 bellard
        target_ulong arm_r9;
918 43fff238 bellard
        target_ulong arm_r10;
919 43fff238 bellard
        target_ulong arm_fp;
920 43fff238 bellard
        target_ulong arm_ip;
921 43fff238 bellard
        target_ulong arm_sp;
922 43fff238 bellard
        target_ulong arm_lr;
923 43fff238 bellard
        target_ulong arm_pc;
924 43fff238 bellard
        target_ulong arm_cpsr;
925 43fff238 bellard
        target_ulong fault_address;
926 43fff238 bellard
};
927 43fff238 bellard
928 43fff238 bellard
typedef struct target_sigaltstack {
929 43fff238 bellard
        target_ulong ss_sp;
930 43fff238 bellard
        int ss_flags;
931 43fff238 bellard
        target_ulong ss_size;
932 43fff238 bellard
} target_stack_t;
933 43fff238 bellard
934 43fff238 bellard
struct target_ucontext {
935 b8076a74 bellard
    target_ulong tuc_flags;
936 b8076a74 bellard
    target_ulong tuc_link;
937 b8076a74 bellard
    target_stack_t tuc_stack;
938 b8076a74 bellard
    struct target_sigcontext tuc_mcontext;
939 b8076a74 bellard
    target_sigset_t  tuc_sigmask;        /* mask last for extensibility */
940 43fff238 bellard
};
941 43fff238 bellard
942 43fff238 bellard
struct sigframe
943 43fff238 bellard
{
944 43fff238 bellard
    struct target_sigcontext sc;
945 43fff238 bellard
    target_ulong extramask[TARGET_NSIG_WORDS-1];
946 43fff238 bellard
    target_ulong retcode;
947 43fff238 bellard
};
948 43fff238 bellard
949 43fff238 bellard
struct rt_sigframe
950 43fff238 bellard
{
951 43fff238 bellard
    struct target_siginfo *pinfo;
952 43fff238 bellard
    void *puc;
953 43fff238 bellard
    struct target_siginfo info;
954 43fff238 bellard
    struct target_ucontext uc;
955 43fff238 bellard
    target_ulong retcode;
956 43fff238 bellard
};
957 43fff238 bellard
958 43fff238 bellard
#define TARGET_CONFIG_CPU_32 1
959 43fff238 bellard
960 43fff238 bellard
/*
961 43fff238 bellard
 * For ARM syscalls, we encode the syscall number into the instruction.
962 43fff238 bellard
 */
963 43fff238 bellard
#define SWI_SYS_SIGRETURN        (0xef000000|(TARGET_NR_sigreturn + ARM_SYSCALL_BASE))
964 43fff238 bellard
#define SWI_SYS_RT_SIGRETURN        (0xef000000|(TARGET_NR_rt_sigreturn + ARM_SYSCALL_BASE))
965 43fff238 bellard
966 43fff238 bellard
/*
967 43fff238 bellard
 * For Thumb syscalls, we pass the syscall number via r7.  We therefore
968 43fff238 bellard
 * need two 16-bit instructions.
969 43fff238 bellard
 */
970 43fff238 bellard
#define SWI_THUMB_SIGRETURN        (0xdf00 << 16 | 0x2700 | (TARGET_NR_sigreturn))
971 43fff238 bellard
#define SWI_THUMB_RT_SIGRETURN        (0xdf00 << 16 | 0x2700 | (TARGET_NR_rt_sigreturn))
972 43fff238 bellard
973 43fff238 bellard
static const target_ulong retcodes[4] = {
974 43fff238 bellard
        SWI_SYS_SIGRETURN,        SWI_THUMB_SIGRETURN,
975 43fff238 bellard
        SWI_SYS_RT_SIGRETURN,        SWI_THUMB_RT_SIGRETURN
976 43fff238 bellard
};
977 43fff238 bellard
978 43fff238 bellard
979 43fff238 bellard
#define __put_user_error(x,p,e) __put_user(x, p)
980 43fff238 bellard
#define __get_user_error(x,p,e) __get_user(x, p)
981 43fff238 bellard
982 43fff238 bellard
static inline int valid_user_regs(CPUState *regs)
983 43fff238 bellard
{
984 43fff238 bellard
    return 1;
985 43fff238 bellard
}
986 43fff238 bellard
987 43fff238 bellard
static int
988 43fff238 bellard
setup_sigcontext(struct target_sigcontext *sc, /*struct _fpstate *fpstate,*/
989 43fff238 bellard
                 CPUState *env, unsigned long mask)
990 43fff238 bellard
{
991 43fff238 bellard
        int err = 0;
992 43fff238 bellard
993 43fff238 bellard
        __put_user_error(env->regs[0], &sc->arm_r0, err);
994 43fff238 bellard
        __put_user_error(env->regs[1], &sc->arm_r1, err);
995 43fff238 bellard
        __put_user_error(env->regs[2], &sc->arm_r2, err);
996 43fff238 bellard
        __put_user_error(env->regs[3], &sc->arm_r3, err);
997 43fff238 bellard
        __put_user_error(env->regs[4], &sc->arm_r4, err);
998 43fff238 bellard
        __put_user_error(env->regs[5], &sc->arm_r5, err);
999 43fff238 bellard
        __put_user_error(env->regs[6], &sc->arm_r6, err);
1000 43fff238 bellard
        __put_user_error(env->regs[7], &sc->arm_r7, err);
1001 43fff238 bellard
        __put_user_error(env->regs[8], &sc->arm_r8, err);
1002 43fff238 bellard
        __put_user_error(env->regs[9], &sc->arm_r9, err);
1003 43fff238 bellard
        __put_user_error(env->regs[10], &sc->arm_r10, err);
1004 43fff238 bellard
        __put_user_error(env->regs[11], &sc->arm_fp, err);
1005 43fff238 bellard
        __put_user_error(env->regs[12], &sc->arm_ip, err);
1006 43fff238 bellard
        __put_user_error(env->regs[13], &sc->arm_sp, err);
1007 43fff238 bellard
        __put_user_error(env->regs[14], &sc->arm_lr, err);
1008 43fff238 bellard
        __put_user_error(env->regs[15], &sc->arm_pc, err);
1009 43fff238 bellard
#ifdef TARGET_CONFIG_CPU_32
1010 b5ff1b31 bellard
        __put_user_error(cpsr_read(env), &sc->arm_cpsr, err);
1011 43fff238 bellard
#endif
1012 43fff238 bellard
1013 43fff238 bellard
        __put_user_error(/* current->thread.trap_no */ 0, &sc->trap_no, err);
1014 43fff238 bellard
        __put_user_error(/* current->thread.error_code */ 0, &sc->error_code, err);
1015 43fff238 bellard
        __put_user_error(/* current->thread.address */ 0, &sc->fault_address, err);
1016 43fff238 bellard
        __put_user_error(mask, &sc->oldmask, err);
1017 43fff238 bellard
1018 43fff238 bellard
        return err;
1019 43fff238 bellard
}
1020 43fff238 bellard
1021 43fff238 bellard
static inline void *
1022 43fff238 bellard
get_sigframe(struct emulated_sigaction *ka, CPUState *regs, int framesize)
1023 43fff238 bellard
{
1024 43fff238 bellard
        unsigned long sp = regs->regs[13];
1025 43fff238 bellard
1026 43fff238 bellard
#if 0
1027 43fff238 bellard
        /*
1028 43fff238 bellard
         * This is the X/Open sanctioned signal stack switching.
1029 43fff238 bellard
         */
1030 43fff238 bellard
        if ((ka->sa.sa_flags & SA_ONSTACK) && !sas_ss_flags(sp))
1031 43fff238 bellard
                sp = current->sas_ss_sp + current->sas_ss_size;
1032 43fff238 bellard
#endif
1033 43fff238 bellard
        /*
1034 43fff238 bellard
         * ATPCS B01 mandates 8-byte alignment
1035 43fff238 bellard
         */
1036 53a5960a pbrook
        return g2h((sp - framesize) & ~7);
1037 43fff238 bellard
}
1038 43fff238 bellard
1039 43fff238 bellard
static int
1040 43fff238 bellard
setup_return(CPUState *env, struct emulated_sigaction *ka,
1041 43fff238 bellard
             target_ulong *rc, void *frame, int usig)
1042 43fff238 bellard
{
1043 43fff238 bellard
        target_ulong handler = (target_ulong)ka->sa._sa_handler;
1044 43fff238 bellard
        target_ulong retcode;
1045 43fff238 bellard
        int thumb = 0;
1046 43fff238 bellard
#if defined(TARGET_CONFIG_CPU_32)
1047 b5ff1b31 bellard
#if 0
1048 43fff238 bellard
        target_ulong cpsr = env->cpsr;
1049 43fff238 bellard

1050 43fff238 bellard
        /*
1051 43fff238 bellard
         * Maybe we need to deliver a 32-bit signal to a 26-bit task.
1052 43fff238 bellard
         */
1053 43fff238 bellard
        if (ka->sa.sa_flags & SA_THIRTYTWO)
1054 43fff238 bellard
                cpsr = (cpsr & ~MODE_MASK) | USR_MODE;
1055 43fff238 bellard

1056 43fff238 bellard
#ifdef CONFIG_ARM_THUMB
1057 43fff238 bellard
        if (elf_hwcap & HWCAP_THUMB) {
1058 43fff238 bellard
                /*
1059 43fff238 bellard
                 * The LSB of the handler determines if we're going to
1060 43fff238 bellard
                 * be using THUMB or ARM mode for this signal handler.
1061 43fff238 bellard
                 */
1062 43fff238 bellard
                thumb = handler & 1;
1063 43fff238 bellard

1064 43fff238 bellard
                if (thumb)
1065 43fff238 bellard
                        cpsr |= T_BIT;
1066 43fff238 bellard
                else
1067 43fff238 bellard
                        cpsr &= ~T_BIT;
1068 43fff238 bellard
        }
1069 43fff238 bellard
#endif
1070 43fff238 bellard
#endif
1071 43fff238 bellard
#endif /* TARGET_CONFIG_CPU_32 */
1072 43fff238 bellard
1073 43fff238 bellard
        if (ka->sa.sa_flags & TARGET_SA_RESTORER) {
1074 43fff238 bellard
                retcode = (target_ulong)ka->sa.sa_restorer;
1075 43fff238 bellard
        } else {
1076 43fff238 bellard
                unsigned int idx = thumb;
1077 43fff238 bellard
1078 43fff238 bellard
                if (ka->sa.sa_flags & TARGET_SA_SIGINFO)
1079 43fff238 bellard
                        idx += 2;
1080 43fff238 bellard
1081 43fff238 bellard
                if (__put_user(retcodes[idx], rc))
1082 43fff238 bellard
                        return 1;
1083 43fff238 bellard
#if 0
1084 43fff238 bellard
                flush_icache_range((target_ulong)rc,
1085 43fff238 bellard
                                   (target_ulong)(rc + 1));
1086 43fff238 bellard
#endif
1087 43fff238 bellard
                retcode = ((target_ulong)rc) + thumb;
1088 43fff238 bellard
        }
1089 43fff238 bellard
1090 43fff238 bellard
        env->regs[0] = usig;
1091 53a5960a pbrook
        env->regs[13] = h2g(frame);
1092 43fff238 bellard
        env->regs[14] = retcode;
1093 43fff238 bellard
        env->regs[15] = handler & (thumb ? ~1 : ~3);
1094 43fff238 bellard
1095 b5ff1b31 bellard
#if 0
1096 43fff238 bellard
#ifdef TARGET_CONFIG_CPU_32
1097 43fff238 bellard
        env->cpsr = cpsr;
1098 43fff238 bellard
#endif
1099 b5ff1b31 bellard
#endif
1100 43fff238 bellard
1101 43fff238 bellard
        return 0;
1102 43fff238 bellard
}
1103 43fff238 bellard
1104 43fff238 bellard
static void setup_frame(int usig, struct emulated_sigaction *ka,
1105 43fff238 bellard
                        target_sigset_t *set, CPUState *regs)
1106 43fff238 bellard
{
1107 43fff238 bellard
        struct sigframe *frame = get_sigframe(ka, regs, sizeof(*frame));
1108 9231944d bellard
        int i, err = 0;
1109 43fff238 bellard
1110 43fff238 bellard
        err |= setup_sigcontext(&frame->sc, /*&frame->fpstate,*/ regs, set->sig[0]);
1111 43fff238 bellard
1112 9231944d bellard
        for(i = 1; i < TARGET_NSIG_WORDS; i++) {
1113 9231944d bellard
            if (__put_user(set->sig[i], &frame->extramask[i - 1]))
1114 9231944d bellard
                return;
1115 43fff238 bellard
        }
1116 43fff238 bellard
1117 43fff238 bellard
        if (err == 0)
1118 43fff238 bellard
            err = setup_return(regs, ka, &frame->retcode, frame, usig);
1119 43fff238 bellard
        //        return err;
1120 43fff238 bellard
}
1121 43fff238 bellard
1122 43fff238 bellard
static void setup_rt_frame(int usig, struct emulated_sigaction *ka, 
1123 43fff238 bellard
                           target_siginfo_t *info,
1124 43fff238 bellard
                           target_sigset_t *set, CPUState *env)
1125 43fff238 bellard
{
1126 43fff238 bellard
        struct rt_sigframe *frame = get_sigframe(ka, env, sizeof(*frame));
1127 9231944d bellard
        int i, err = 0;
1128 43fff238 bellard
1129 43fff238 bellard
        if (!access_ok(VERIFY_WRITE, frame, sizeof (*frame)))
1130 edf779ff bellard
            return /* 1 */;
1131 edf779ff bellard
1132 43fff238 bellard
        __put_user_error(&frame->info, (target_ulong *)&frame->pinfo, err);
1133 43fff238 bellard
        __put_user_error(&frame->uc, (target_ulong *)&frame->puc, err);
1134 43fff238 bellard
        err |= copy_siginfo_to_user(&frame->info, info);
1135 43fff238 bellard
1136 43fff238 bellard
        /* Clear all the bits of the ucontext we don't use.  */
1137 53a5960a pbrook
        memset(&frame->uc, 0, offsetof(struct target_ucontext, tuc_mcontext));
1138 43fff238 bellard
1139 b8076a74 bellard
        err |= setup_sigcontext(&frame->uc.tuc_mcontext, /*&frame->fpstate,*/
1140 43fff238 bellard
                                env, set->sig[0]);
1141 9231944d bellard
        for(i = 0; i < TARGET_NSIG_WORDS; i++) {
1142 b8076a74 bellard
            if (__put_user(set->sig[i], &frame->uc.tuc_sigmask.sig[i]))
1143 9231944d bellard
                return;
1144 9231944d bellard
        }
1145 43fff238 bellard
1146 43fff238 bellard
        if (err == 0)
1147 43fff238 bellard
                err = setup_return(env, ka, &frame->retcode, frame, usig);
1148 43fff238 bellard
1149 43fff238 bellard
        if (err == 0) {
1150 43fff238 bellard
                /*
1151 43fff238 bellard
                 * For realtime signals we must also set the second and third
1152 43fff238 bellard
                 * arguments for the signal handler.
1153 43fff238 bellard
                 *   -- Peter Maydell <pmaydell@chiark.greenend.org.uk> 2000-12-06
1154 43fff238 bellard
                 */
1155 43fff238 bellard
            env->regs[1] = (target_ulong)frame->pinfo;
1156 43fff238 bellard
            env->regs[2] = (target_ulong)frame->puc;
1157 43fff238 bellard
        }
1158 43fff238 bellard
1159 43fff238 bellard
        //        return err;
1160 43fff238 bellard
}
1161 43fff238 bellard
1162 43fff238 bellard
static int
1163 43fff238 bellard
restore_sigcontext(CPUState *env, struct target_sigcontext *sc)
1164 43fff238 bellard
{
1165 43fff238 bellard
        int err = 0;
1166 b5ff1b31 bellard
        uint32_t cpsr;
1167 43fff238 bellard
1168 43fff238 bellard
        __get_user_error(env->regs[0], &sc->arm_r0, err);
1169 43fff238 bellard
        __get_user_error(env->regs[1], &sc->arm_r1, err);
1170 43fff238 bellard
        __get_user_error(env->regs[2], &sc->arm_r2, err);
1171 43fff238 bellard
        __get_user_error(env->regs[3], &sc->arm_r3, err);
1172 43fff238 bellard
        __get_user_error(env->regs[4], &sc->arm_r4, err);
1173 43fff238 bellard
        __get_user_error(env->regs[5], &sc->arm_r5, err);
1174 43fff238 bellard
        __get_user_error(env->regs[6], &sc->arm_r6, err);
1175 43fff238 bellard
        __get_user_error(env->regs[7], &sc->arm_r7, err);
1176 43fff238 bellard
        __get_user_error(env->regs[8], &sc->arm_r8, err);
1177 43fff238 bellard
        __get_user_error(env->regs[9], &sc->arm_r9, err);
1178 43fff238 bellard
        __get_user_error(env->regs[10], &sc->arm_r10, err);
1179 43fff238 bellard
        __get_user_error(env->regs[11], &sc->arm_fp, err);
1180 43fff238 bellard
        __get_user_error(env->regs[12], &sc->arm_ip, err);
1181 43fff238 bellard
        __get_user_error(env->regs[13], &sc->arm_sp, err);
1182 43fff238 bellard
        __get_user_error(env->regs[14], &sc->arm_lr, err);
1183 43fff238 bellard
        __get_user_error(env->regs[15], &sc->arm_pc, err);
1184 43fff238 bellard
#ifdef TARGET_CONFIG_CPU_32
1185 b5ff1b31 bellard
        __get_user_error(cpsr, &sc->arm_cpsr, err);
1186 b5ff1b31 bellard
        cpsr_write(env, cpsr, 0xffffffff);
1187 43fff238 bellard
#endif
1188 43fff238 bellard
1189 43fff238 bellard
        err |= !valid_user_regs(env);
1190 43fff238 bellard
1191 43fff238 bellard
        return err;
1192 43fff238 bellard
}
1193 43fff238 bellard
1194 43fff238 bellard
long do_sigreturn(CPUState *env)
1195 43fff238 bellard
{
1196 43fff238 bellard
        struct sigframe *frame;
1197 43fff238 bellard
        target_sigset_t set;
1198 43fff238 bellard
        sigset_t host_set;
1199 9231944d bellard
        int i;
1200 43fff238 bellard
1201 43fff238 bellard
        /*
1202 43fff238 bellard
         * Since we stacked the signal on a 64-bit boundary,
1203 43fff238 bellard
         * then 'sp' should be word aligned here.  If it's
1204 43fff238 bellard
         * not, then the user is trying to mess with us.
1205 43fff238 bellard
         */
1206 43fff238 bellard
        if (env->regs[13] & 7)
1207 43fff238 bellard
                goto badframe;
1208 43fff238 bellard
1209 53a5960a pbrook
        frame = (struct sigframe *)g2h(env->regs[13]);
1210 43fff238 bellard
1211 43fff238 bellard
#if 0
1212 43fff238 bellard
        if (verify_area(VERIFY_READ, frame, sizeof (*frame)))
1213 43fff238 bellard
                goto badframe;
1214 43fff238 bellard
#endif
1215 9231944d bellard
        if (__get_user(set.sig[0], &frame->sc.oldmask))
1216 9231944d bellard
            goto badframe;
1217 9231944d bellard
        for(i = 1; i < TARGET_NSIG_WORDS; i++) {
1218 9231944d bellard
            if (__get_user(set.sig[i], &frame->extramask[i - 1]))
1219 9231944d bellard
                goto badframe;
1220 9231944d bellard
        }
1221 43fff238 bellard
1222 9231944d bellard
        target_to_host_sigset_internal(&host_set, &set);
1223 43fff238 bellard
        sigprocmask(SIG_SETMASK, &host_set, NULL);
1224 43fff238 bellard
1225 43fff238 bellard
        if (restore_sigcontext(env, &frame->sc))
1226 43fff238 bellard
                goto badframe;
1227 43fff238 bellard
1228 43fff238 bellard
#if 0
1229 43fff238 bellard
        /* Send SIGTRAP if we're single-stepping */
1230 43fff238 bellard
        if (ptrace_cancel_bpt(current))
1231 43fff238 bellard
                send_sig(SIGTRAP, current, 1);
1232 43fff238 bellard
#endif
1233 43fff238 bellard
        return env->regs[0];
1234 43fff238 bellard
1235 43fff238 bellard
badframe:
1236 43fff238 bellard
        force_sig(SIGSEGV /* , current */);
1237 43fff238 bellard
        return 0;
1238 43fff238 bellard
}
1239 43fff238 bellard
1240 43fff238 bellard
long do_rt_sigreturn(CPUState *env)
1241 43fff238 bellard
{
1242 43fff238 bellard
        struct rt_sigframe *frame;
1243 43fff238 bellard
        sigset_t host_set;
1244 43fff238 bellard
1245 43fff238 bellard
        /*
1246 43fff238 bellard
         * Since we stacked the signal on a 64-bit boundary,
1247 43fff238 bellard
         * then 'sp' should be word aligned here.  If it's
1248 43fff238 bellard
         * not, then the user is trying to mess with us.
1249 43fff238 bellard
         */
1250 43fff238 bellard
        if (env->regs[13] & 7)
1251 43fff238 bellard
                goto badframe;
1252 43fff238 bellard
1253 43fff238 bellard
        frame = (struct rt_sigframe *)env->regs[13];
1254 43fff238 bellard
1255 43fff238 bellard
#if 0
1256 43fff238 bellard
        if (verify_area(VERIFY_READ, frame, sizeof (*frame)))
1257 43fff238 bellard
                goto badframe;
1258 43fff238 bellard
#endif
1259 b8076a74 bellard
        target_to_host_sigset(&host_set, &frame->uc.tuc_sigmask);
1260 43fff238 bellard
        sigprocmask(SIG_SETMASK, &host_set, NULL);
1261 43fff238 bellard
1262 b8076a74 bellard
        if (restore_sigcontext(env, &frame->uc.tuc_mcontext))
1263 43fff238 bellard
                goto badframe;
1264 43fff238 bellard
1265 43fff238 bellard
#if 0
1266 43fff238 bellard
        /* Send SIGTRAP if we're single-stepping */
1267 43fff238 bellard
        if (ptrace_cancel_bpt(current))
1268 43fff238 bellard
                send_sig(SIGTRAP, current, 1);
1269 43fff238 bellard
#endif
1270 43fff238 bellard
        return env->regs[0];
1271 43fff238 bellard
1272 43fff238 bellard
badframe:
1273 43fff238 bellard
        force_sig(SIGSEGV /* , current */);
1274 43fff238 bellard
        return 0;
1275 43fff238 bellard
}
1276 43fff238 bellard
1277 6d5e216d bellard
#elif defined(TARGET_SPARC)
1278 80a9d035 bellard
1279 6d5e216d bellard
#define __SUNOS_MAXWIN   31
1280 6d5e216d bellard
1281 6d5e216d bellard
/* This is what SunOS does, so shall I. */
1282 6d5e216d bellard
struct target_sigcontext {
1283 6d5e216d bellard
        target_ulong sigc_onstack;      /* state to restore */
1284 6d5e216d bellard
1285 6d5e216d bellard
        target_ulong sigc_mask;         /* sigmask to restore */
1286 6d5e216d bellard
        target_ulong sigc_sp;           /* stack pointer */
1287 6d5e216d bellard
        target_ulong sigc_pc;           /* program counter */
1288 6d5e216d bellard
        target_ulong sigc_npc;          /* next program counter */
1289 6d5e216d bellard
        target_ulong sigc_psr;          /* for condition codes etc */
1290 6d5e216d bellard
        target_ulong sigc_g1;           /* User uses these two registers */
1291 6d5e216d bellard
        target_ulong sigc_o0;           /* within the trampoline code. */
1292 6d5e216d bellard
1293 6d5e216d bellard
        /* Now comes information regarding the users window set
1294 6d5e216d bellard
         * at the time of the signal.
1295 6d5e216d bellard
         */
1296 6d5e216d bellard
        target_ulong sigc_oswins;       /* outstanding windows */
1297 6d5e216d bellard
1298 6d5e216d bellard
        /* stack ptrs for each regwin buf */
1299 6d5e216d bellard
        char *sigc_spbuf[__SUNOS_MAXWIN];
1300 6d5e216d bellard
1301 6d5e216d bellard
        /* Windows to restore after signal */
1302 6d5e216d bellard
        struct {
1303 6d5e216d bellard
                target_ulong locals[8];
1304 6d5e216d bellard
                target_ulong ins[8];
1305 6d5e216d bellard
        } sigc_wbuf[__SUNOS_MAXWIN];
1306 6d5e216d bellard
};
1307 6d5e216d bellard
/* A Sparc stack frame */
1308 6d5e216d bellard
struct sparc_stackf {
1309 6d5e216d bellard
        target_ulong locals[8];
1310 6d5e216d bellard
        target_ulong ins[6];
1311 6d5e216d bellard
        struct sparc_stackf *fp;
1312 6d5e216d bellard
        target_ulong callers_pc;
1313 6d5e216d bellard
        char *structptr;
1314 6d5e216d bellard
        target_ulong xargs[6];
1315 6d5e216d bellard
        target_ulong xxargs[1];
1316 6d5e216d bellard
};
1317 6d5e216d bellard
1318 6d5e216d bellard
typedef struct {
1319 6d5e216d bellard
        struct {
1320 6d5e216d bellard
                target_ulong psr;
1321 6d5e216d bellard
                target_ulong pc;
1322 6d5e216d bellard
                target_ulong npc;
1323 6d5e216d bellard
                target_ulong y;
1324 6d5e216d bellard
                target_ulong u_regs[16]; /* globals and ins */
1325 6d5e216d bellard
        }               si_regs;
1326 6d5e216d bellard
        int             si_mask;
1327 6d5e216d bellard
} __siginfo_t;
1328 6d5e216d bellard
1329 6d5e216d bellard
typedef struct {
1330 6d5e216d bellard
        unsigned   long si_float_regs [32];
1331 6d5e216d bellard
        unsigned   long si_fsr;
1332 6d5e216d bellard
        unsigned   long si_fpqdepth;
1333 6d5e216d bellard
        struct {
1334 6d5e216d bellard
                unsigned long *insn_addr;
1335 6d5e216d bellard
                unsigned long insn;
1336 6d5e216d bellard
        } si_fpqueue [16];
1337 74ccb34e bellard
} qemu_siginfo_fpu_t;
1338 6d5e216d bellard
1339 6d5e216d bellard
1340 6d5e216d bellard
struct target_signal_frame {
1341 6d5e216d bellard
        struct sparc_stackf        ss;
1342 6d5e216d bellard
        __siginfo_t                info;
1343 74ccb34e bellard
        qemu_siginfo_fpu_t         *fpu_save;
1344 6d5e216d bellard
        target_ulong                insns[2] __attribute__ ((aligned (8)));
1345 6d5e216d bellard
        target_ulong                extramask[TARGET_NSIG_WORDS - 1];
1346 6d5e216d bellard
        target_ulong                extra_size; /* Should be 0 */
1347 74ccb34e bellard
        qemu_siginfo_fpu_t        fpu_state;
1348 6d5e216d bellard
};
1349 6d5e216d bellard
struct target_rt_signal_frame {
1350 6d5e216d bellard
        struct sparc_stackf        ss;
1351 6d5e216d bellard
        siginfo_t                info;
1352 6d5e216d bellard
        target_ulong                regs[20];
1353 6d5e216d bellard
        sigset_t                mask;
1354 74ccb34e bellard
        qemu_siginfo_fpu_t         *fpu_save;
1355 6d5e216d bellard
        unsigned int                insns[2];
1356 6d5e216d bellard
        stack_t                        stack;
1357 6d5e216d bellard
        unsigned int                extra_size; /* Should be 0 */
1358 74ccb34e bellard
        qemu_siginfo_fpu_t        fpu_state;
1359 6d5e216d bellard
};
1360 6d5e216d bellard
1361 e80cfcfc bellard
#define UREG_O0        16
1362 e80cfcfc bellard
#define UREG_O6        22
1363 e80cfcfc bellard
#define UREG_I0        0
1364 e80cfcfc bellard
#define UREG_I1        1
1365 e80cfcfc bellard
#define UREG_I2        2
1366 e80cfcfc bellard
#define UREG_I6        6
1367 e80cfcfc bellard
#define UREG_I7        7
1368 e80cfcfc bellard
#define UREG_L0               8
1369 6d5e216d bellard
#define UREG_FP        UREG_I6
1370 6d5e216d bellard
#define UREG_SP        UREG_O6
1371 6d5e216d bellard
1372 6d5e216d bellard
static inline void *get_sigframe(struct emulated_sigaction *sa, CPUState *env, unsigned long framesize)
1373 6d5e216d bellard
{
1374 6d5e216d bellard
        unsigned long sp;
1375 6d5e216d bellard
1376 6d5e216d bellard
        sp = env->regwptr[UREG_FP];
1377 6d5e216d bellard
#if 0
1378 6d5e216d bellard

1379 6d5e216d bellard
        /* This is the X/Open sanctioned signal stack switching.  */
1380 6d5e216d bellard
        if (sa->sa_flags & TARGET_SA_ONSTACK) {
1381 6d5e216d bellard
                if (!on_sig_stack(sp) && !((current->sas_ss_sp + current->sas_ss_size) & 7))
1382 6d5e216d bellard
                        sp = current->sas_ss_sp + current->sas_ss_size;
1383 6d5e216d bellard
        }
1384 6d5e216d bellard
#endif
1385 53a5960a pbrook
        return g2h(sp - framesize);
1386 6d5e216d bellard
}
1387 6d5e216d bellard
1388 6d5e216d bellard
static int
1389 6d5e216d bellard
setup___siginfo(__siginfo_t *si, CPUState *env, target_ulong mask)
1390 6d5e216d bellard
{
1391 6d5e216d bellard
        int err = 0, i;
1392 6d5e216d bellard
1393 6d5e216d bellard
        err |= __put_user(env->psr, &si->si_regs.psr);
1394 6d5e216d bellard
        err |= __put_user(env->pc, &si->si_regs.pc);
1395 6d5e216d bellard
        err |= __put_user(env->npc, &si->si_regs.npc);
1396 6d5e216d bellard
        err |= __put_user(env->y, &si->si_regs.y);
1397 a315a145 bellard
        for (i=0; i < 8; i++) {
1398 6d5e216d bellard
                err |= __put_user(env->gregs[i], &si->si_regs.u_regs[i]);
1399 6d5e216d bellard
        }
1400 a315a145 bellard
        for (i=0; i < 8; i++) {
1401 e80cfcfc bellard
                err |= __put_user(env->regwptr[UREG_I0 + i], &si->si_regs.u_regs[i+8]);
1402 6d5e216d bellard
        }
1403 6d5e216d bellard
        err |= __put_user(mask, &si->si_mask);
1404 6d5e216d bellard
        return err;
1405 6d5e216d bellard
}
1406 e80cfcfc bellard
1407 80a9d035 bellard
#if 0
1408 6d5e216d bellard
static int
1409 6d5e216d bellard
setup_sigcontext(struct target_sigcontext *sc, /*struct _fpstate *fpstate,*/
1410 6d5e216d bellard
                 CPUState *env, unsigned long mask)
1411 6d5e216d bellard
{
1412 6d5e216d bellard
        int err = 0;
1413 6d5e216d bellard

1414 6d5e216d bellard
        err |= __put_user(mask, &sc->sigc_mask);
1415 6d5e216d bellard
        err |= __put_user(env->regwptr[UREG_SP], &sc->sigc_sp);
1416 6d5e216d bellard
        err |= __put_user(env->pc, &sc->sigc_pc);
1417 6d5e216d bellard
        err |= __put_user(env->npc, &sc->sigc_npc);
1418 6d5e216d bellard
        err |= __put_user(env->psr, &sc->sigc_psr);
1419 6d5e216d bellard
        err |= __put_user(env->gregs[1], &sc->sigc_g1);
1420 6d5e216d bellard
        err |= __put_user(env->regwptr[UREG_O0], &sc->sigc_o0);
1421 6d5e216d bellard

1422 6d5e216d bellard
        return err;
1423 6d5e216d bellard
}
1424 80a9d035 bellard
#endif
1425 6d5e216d bellard
#define NF_ALIGNEDSZ  (((sizeof(struct target_signal_frame) + 7) & (~7)))
1426 6d5e216d bellard
1427 6d5e216d bellard
static void setup_frame(int sig, struct emulated_sigaction *ka,
1428 6d5e216d bellard
                        target_sigset_t *set, CPUState *env)
1429 6d5e216d bellard
{
1430 6d5e216d bellard
        struct target_signal_frame *sf;
1431 6d5e216d bellard
        int sigframe_size, err, i;
1432 6d5e216d bellard
1433 6d5e216d bellard
        /* 1. Make sure everything is clean */
1434 6d5e216d bellard
        //synchronize_user_stack();
1435 6d5e216d bellard
1436 6d5e216d bellard
        sigframe_size = NF_ALIGNEDSZ;
1437 6d5e216d bellard
1438 6d5e216d bellard
        sf = (struct target_signal_frame *)
1439 6d5e216d bellard
                get_sigframe(ka, env, sigframe_size);
1440 6d5e216d bellard
1441 e80cfcfc bellard
        //fprintf(stderr, "sf: %x pc %x fp %x sp %x\n", sf, env->pc, env->regwptr[UREG_FP], env->regwptr[UREG_SP]);
1442 6d5e216d bellard
#if 0
1443 6d5e216d bellard
        if (invalid_frame_pointer(sf, sigframe_size))
1444 6d5e216d bellard
                goto sigill_and_return;
1445 6d5e216d bellard
#endif
1446 6d5e216d bellard
        /* 2. Save the current process state */
1447 6d5e216d bellard
        err = setup___siginfo(&sf->info, env, set->sig[0]);
1448 6d5e216d bellard
        err |= __put_user(0, &sf->extra_size);
1449 6d5e216d bellard
1450 6d5e216d bellard
        //err |= save_fpu_state(regs, &sf->fpu_state);
1451 6d5e216d bellard
        //err |= __put_user(&sf->fpu_state, &sf->fpu_save);
1452 6d5e216d bellard
1453 6d5e216d bellard
        err |= __put_user(set->sig[0], &sf->info.si_mask);
1454 6d5e216d bellard
        for (i = 0; i < TARGET_NSIG_WORDS - 1; i++) {
1455 6d5e216d bellard
                err |= __put_user(set->sig[i + 1], &sf->extramask[i]);
1456 6d5e216d bellard
        }
1457 6d5e216d bellard
1458 a315a145 bellard
        for (i = 0; i < 8; i++) {
1459 e80cfcfc bellard
                  err |= __put_user(env->regwptr[i + UREG_L0], &sf->ss.locals[i]);
1460 6d5e216d bellard
        }
1461 a315a145 bellard
        for (i = 0; i < 8; i++) {
1462 e80cfcfc bellard
                  err |= __put_user(env->regwptr[i + UREG_I0], &sf->ss.ins[i]);
1463 6d5e216d bellard
        }
1464 6d5e216d bellard
        if (err)
1465 6d5e216d bellard
                goto sigsegv;
1466 6d5e216d bellard
1467 6d5e216d bellard
        /* 3. signal handler back-trampoline and parameters */
1468 53a5960a pbrook
        env->regwptr[UREG_FP] = h2g(sf);
1469 6d5e216d bellard
        env->regwptr[UREG_I0] = sig;
1470 53a5960a pbrook
        env->regwptr[UREG_I1] = h2g(&sf->info);
1471 53a5960a pbrook
        env->regwptr[UREG_I2] = h2g(&sf->info);
1472 6d5e216d bellard
1473 6d5e216d bellard
        /* 4. signal handler */
1474 6d5e216d bellard
        env->pc = (unsigned long) ka->sa._sa_handler;
1475 6d5e216d bellard
        env->npc = (env->pc + 4);
1476 6d5e216d bellard
        /* 5. return to kernel instructions */
1477 6d5e216d bellard
        if (ka->sa.sa_restorer)
1478 6d5e216d bellard
                env->regwptr[UREG_I7] = (unsigned long)ka->sa.sa_restorer;
1479 6d5e216d bellard
        else {
1480 53a5960a pbrook
                env->regwptr[UREG_I7] = h2g(&(sf->insns[0]) - 2);
1481 6d5e216d bellard
1482 6d5e216d bellard
                /* mov __NR_sigreturn, %g1 */
1483 6d5e216d bellard
                err |= __put_user(0x821020d8, &sf->insns[0]);
1484 6d5e216d bellard
1485 6d5e216d bellard
                /* t 0x10 */
1486 6d5e216d bellard
                err |= __put_user(0x91d02010, &sf->insns[1]);
1487 6d5e216d bellard
                if (err)
1488 6d5e216d bellard
                        goto sigsegv;
1489 6d5e216d bellard
1490 6d5e216d bellard
                /* Flush instruction space. */
1491 6d5e216d bellard
                //flush_sig_insns(current->mm, (unsigned long) &(sf->insns[0]));
1492 80a9d035 bellard
                //                tb_flush(env);
1493 6d5e216d bellard
        }
1494 6d5e216d bellard
        return;
1495 6d5e216d bellard
1496 80a9d035 bellard
        //sigill_and_return:
1497 6d5e216d bellard
        force_sig(TARGET_SIGILL);
1498 6d5e216d bellard
sigsegv:
1499 e80cfcfc bellard
        //fprintf(stderr, "force_sig\n");
1500 6d5e216d bellard
        force_sig(TARGET_SIGSEGV);
1501 6d5e216d bellard
}
1502 6d5e216d bellard
static inline int
1503 74ccb34e bellard
restore_fpu_state(CPUState *env, qemu_siginfo_fpu_t *fpu)
1504 6d5e216d bellard
{
1505 6d5e216d bellard
        int err;
1506 6d5e216d bellard
#if 0
1507 6d5e216d bellard
#ifdef CONFIG_SMP
1508 6d5e216d bellard
        if (current->flags & PF_USEDFPU)
1509 6d5e216d bellard
                regs->psr &= ~PSR_EF;
1510 6d5e216d bellard
#else
1511 6d5e216d bellard
        if (current == last_task_used_math) {
1512 6d5e216d bellard
                last_task_used_math = 0;
1513 6d5e216d bellard
                regs->psr &= ~PSR_EF;
1514 6d5e216d bellard
        }
1515 6d5e216d bellard
#endif
1516 6d5e216d bellard
        current->used_math = 1;
1517 6d5e216d bellard
        current->flags &= ~PF_USEDFPU;
1518 6d5e216d bellard
#endif
1519 6d5e216d bellard
#if 0
1520 6d5e216d bellard
        if (verify_area (VERIFY_READ, fpu, sizeof(*fpu)))
1521 6d5e216d bellard
                return -EFAULT;
1522 6d5e216d bellard
#endif
1523 6d5e216d bellard
1524 fafffaef bellard
#if 0
1525 fafffaef bellard
        /* XXX: incorrect */
1526 6d5e216d bellard
        err = __copy_from_user(&env->fpr[0], &fpu->si_float_regs[0],
1527 6d5e216d bellard
                                     (sizeof(unsigned long) * 32));
1528 fafffaef bellard
#endif
1529 6d5e216d bellard
        err |= __get_user(env->fsr, &fpu->si_fsr);
1530 6d5e216d bellard
#if 0
1531 6d5e216d bellard
        err |= __get_user(current->thread.fpqdepth, &fpu->si_fpqdepth);
1532 6d5e216d bellard
        if (current->thread.fpqdepth != 0)
1533 6d5e216d bellard
                err |= __copy_from_user(&current->thread.fpqueue[0],
1534 6d5e216d bellard
                                        &fpu->si_fpqueue[0],
1535 6d5e216d bellard
                                        ((sizeof(unsigned long) +
1536 6d5e216d bellard
                                        (sizeof(unsigned long *)))*16));
1537 6d5e216d bellard
#endif
1538 6d5e216d bellard
        return err;
1539 6d5e216d bellard
}
1540 6d5e216d bellard
1541 6d5e216d bellard
1542 6d5e216d bellard
static void setup_rt_frame(int sig, struct emulated_sigaction *ka, 
1543 6d5e216d bellard
                           target_siginfo_t *info,
1544 6d5e216d bellard
                           target_sigset_t *set, CPUState *env)
1545 6d5e216d bellard
{
1546 6d5e216d bellard
    fprintf(stderr, "setup_rt_frame: not implemented\n");
1547 6d5e216d bellard
}
1548 6d5e216d bellard
1549 6d5e216d bellard
long do_sigreturn(CPUState *env)
1550 6d5e216d bellard
{
1551 6d5e216d bellard
        struct target_signal_frame *sf;
1552 e80cfcfc bellard
        uint32_t up_psr, pc, npc;
1553 6d5e216d bellard
        target_sigset_t set;
1554 e80cfcfc bellard
        sigset_t host_set;
1555 80a9d035 bellard
        target_ulong fpu_save;
1556 e80cfcfc bellard
        int err, i;
1557 6d5e216d bellard
1558 53a5960a pbrook
        sf = (struct target_signal_frame *)g2h(env->regwptr[UREG_FP]);
1559 80a9d035 bellard
#if 0
1560 e80cfcfc bellard
        fprintf(stderr, "sigreturn\n");
1561 e80cfcfc bellard
        fprintf(stderr, "sf: %x pc %x fp %x sp %x\n", sf, env->pc, env->regwptr[UREG_FP], env->regwptr[UREG_SP]);
1562 80a9d035 bellard
#endif
1563 e80cfcfc bellard
        //cpu_dump_state(env, stderr, fprintf, 0);
1564 6d5e216d bellard
1565 6d5e216d bellard
        /* 1. Make sure we are not getting garbage from the user */
1566 6d5e216d bellard
#if 0
1567 6d5e216d bellard
        if (verify_area (VERIFY_READ, sf, sizeof (*sf)))
1568 6d5e216d bellard
                goto segv_and_exit;
1569 6d5e216d bellard
#endif
1570 6d5e216d bellard
1571 6d5e216d bellard
        if (((uint) sf) & 3)
1572 6d5e216d bellard
                goto segv_and_exit;
1573 6d5e216d bellard
1574 6d5e216d bellard
        err = __get_user(pc,  &sf->info.si_regs.pc);
1575 6d5e216d bellard
        err |= __get_user(npc, &sf->info.si_regs.npc);
1576 6d5e216d bellard
1577 6d5e216d bellard
        if ((pc | npc) & 3)
1578 6d5e216d bellard
                goto segv_and_exit;
1579 6d5e216d bellard
1580 6d5e216d bellard
        /* 2. Restore the state */
1581 e80cfcfc bellard
        err |= __get_user(up_psr, &sf->info.si_regs.psr);
1582 e80cfcfc bellard
1583 6d5e216d bellard
        /* User can only change condition codes and FPU enabling in %psr. */
1584 a315a145 bellard
        env->psr = (up_psr & (PSR_ICC /* | PSR_EF */))
1585 a315a145 bellard
                  | (env->psr & ~(PSR_ICC /* | PSR_EF */));
1586 a315a145 bellard
1587 a315a145 bellard
        env->pc = pc;
1588 a315a145 bellard
        env->npc = npc;
1589 e80cfcfc bellard
        err |= __get_user(env->y, &sf->info.si_regs.y);
1590 a315a145 bellard
        for (i=0; i < 8; i++) {
1591 e80cfcfc bellard
                err |= __get_user(env->gregs[i], &sf->info.si_regs.u_regs[i]);
1592 e80cfcfc bellard
        }
1593 a315a145 bellard
        for (i=0; i < 8; i++) {
1594 e80cfcfc bellard
                err |= __get_user(env->regwptr[i + UREG_I0], &sf->info.si_regs.u_regs[i+8]);
1595 e80cfcfc bellard
        }
1596 6d5e216d bellard
1597 80a9d035 bellard
        err |= __get_user(fpu_save, (target_ulong *)&sf->fpu_save);
1598 6d5e216d bellard
1599 e80cfcfc bellard
        //if (fpu_save)
1600 e80cfcfc bellard
        //        err |= restore_fpu_state(env, fpu_save);
1601 6d5e216d bellard
1602 6d5e216d bellard
        /* This is pretty much atomic, no amount locking would prevent
1603 6d5e216d bellard
         * the races which exist anyways.
1604 6d5e216d bellard
         */
1605 6d5e216d bellard
        err |= __get_user(set.sig[0], &sf->info.si_mask);
1606 e80cfcfc bellard
        for(i = 1; i < TARGET_NSIG_WORDS; i++) {
1607 e80cfcfc bellard
            err |= (__get_user(set.sig[i], &sf->extramask[i - 1]));
1608 e80cfcfc bellard
        }
1609 e80cfcfc bellard
1610 e80cfcfc bellard
        target_to_host_sigset_internal(&host_set, &set);
1611 e80cfcfc bellard
        sigprocmask(SIG_SETMASK, &host_set, NULL);
1612 6d5e216d bellard
1613 6d5e216d bellard
        if (err)
1614 6d5e216d bellard
                goto segv_and_exit;
1615 6d5e216d bellard
1616 6d5e216d bellard
        return env->regwptr[0];
1617 6d5e216d bellard
1618 6d5e216d bellard
segv_and_exit:
1619 6d5e216d bellard
        force_sig(TARGET_SIGSEGV);
1620 6d5e216d bellard
}
1621 6d5e216d bellard
1622 6d5e216d bellard
long do_rt_sigreturn(CPUState *env)
1623 6d5e216d bellard
{
1624 6d5e216d bellard
    fprintf(stderr, "do_rt_sigreturn: not implemented\n");
1625 6d5e216d bellard
    return -ENOSYS;
1626 6d5e216d bellard
}
1627 6d5e216d bellard
1628 106ec879 bellard
#elif defined(TARGET_MIPS)
1629 106ec879 bellard
1630 106ec879 bellard
struct target_sigcontext {
1631 106ec879 bellard
    uint32_t   sc_regmask;     /* Unused */
1632 106ec879 bellard
    uint32_t   sc_status;
1633 106ec879 bellard
    uint64_t   sc_pc;
1634 106ec879 bellard
    uint64_t   sc_regs[32];
1635 106ec879 bellard
    uint64_t   sc_fpregs[32];
1636 106ec879 bellard
    uint32_t   sc_ownedfp;     /* Unused */
1637 106ec879 bellard
    uint32_t   sc_fpc_csr;
1638 106ec879 bellard
    uint32_t   sc_fpc_eir;     /* Unused */
1639 106ec879 bellard
    uint32_t   sc_used_math;
1640 106ec879 bellard
    uint32_t   sc_dsp;         /* dsp status, was sc_ssflags */
1641 106ec879 bellard
    uint64_t   sc_mdhi;
1642 106ec879 bellard
    uint64_t   sc_mdlo;
1643 106ec879 bellard
    target_ulong   sc_hi1;         /* Was sc_cause */
1644 106ec879 bellard
    target_ulong   sc_lo1;         /* Was sc_badvaddr */
1645 106ec879 bellard
    target_ulong   sc_hi2;         /* Was sc_sigset[4] */
1646 106ec879 bellard
    target_ulong   sc_lo2;
1647 106ec879 bellard
    target_ulong   sc_hi3;
1648 106ec879 bellard
    target_ulong   sc_lo3;
1649 106ec879 bellard
};
1650 106ec879 bellard
1651 106ec879 bellard
struct sigframe {
1652 106ec879 bellard
    uint32_t sf_ass[4];                        /* argument save space for o32 */
1653 106ec879 bellard
    uint32_t sf_code[2];                        /* signal trampoline */
1654 106ec879 bellard
    struct target_sigcontext sf_sc;
1655 106ec879 bellard
    target_sigset_t sf_mask;
1656 106ec879 bellard
};
1657 106ec879 bellard
1658 106ec879 bellard
/* Install trampoline to jump back from signal handler */
1659 106ec879 bellard
static inline int install_sigtramp(unsigned int *tramp,   unsigned int syscall)
1660 106ec879 bellard
{
1661 106ec879 bellard
    int err;
1662 106ec879 bellard
1663 106ec879 bellard
    /*
1664 106ec879 bellard
    * Set up the return code ...
1665 106ec879 bellard
    *
1666 106ec879 bellard
    *         li      v0, __NR__foo_sigreturn
1667 106ec879 bellard
    *         syscall
1668 106ec879 bellard
    */
1669 106ec879 bellard
1670 106ec879 bellard
    err = __put_user(0x24020000 + syscall, tramp + 0);
1671 106ec879 bellard
    err |= __put_user(0x0000000c          , tramp + 1);
1672 106ec879 bellard
    /* flush_cache_sigtramp((unsigned long) tramp); */
1673 106ec879 bellard
    return err;
1674 106ec879 bellard
}
1675 106ec879 bellard
1676 106ec879 bellard
static inline int
1677 106ec879 bellard
setup_sigcontext(CPUState *regs, struct target_sigcontext *sc)
1678 106ec879 bellard
{
1679 106ec879 bellard
    int err = 0;
1680 106ec879 bellard
1681 106ec879 bellard
    err |= __put_user(regs->PC, &sc->sc_pc);
1682 106ec879 bellard
1683 106ec879 bellard
    #define save_gp_reg(i) do {                                           \
1684 106ec879 bellard
        err |= __put_user(regs->gpr[i], &sc->sc_regs[i]);                \
1685 106ec879 bellard
    } while(0)
1686 106ec879 bellard
    __put_user(0, &sc->sc_regs[0]); save_gp_reg(1); save_gp_reg(2);
1687 106ec879 bellard
    save_gp_reg(3); save_gp_reg(4); save_gp_reg(5); save_gp_reg(6);
1688 106ec879 bellard
    save_gp_reg(7); save_gp_reg(8); save_gp_reg(9); save_gp_reg(10);
1689 106ec879 bellard
    save_gp_reg(11); save_gp_reg(12); save_gp_reg(13); save_gp_reg(14);
1690 106ec879 bellard
    save_gp_reg(15); save_gp_reg(16); save_gp_reg(17); save_gp_reg(18);
1691 106ec879 bellard
    save_gp_reg(19); save_gp_reg(20); save_gp_reg(21); save_gp_reg(22);
1692 106ec879 bellard
    save_gp_reg(23); save_gp_reg(24); save_gp_reg(25); save_gp_reg(26);
1693 106ec879 bellard
    save_gp_reg(27); save_gp_reg(28); save_gp_reg(29); save_gp_reg(30);
1694 106ec879 bellard
    save_gp_reg(31);
1695 106ec879 bellard
    #undef save_gp_reg
1696 106ec879 bellard
1697 106ec879 bellard
    err |= __put_user(regs->HI, &sc->sc_mdhi);
1698 106ec879 bellard
    err |= __put_user(regs->LO, &sc->sc_mdlo);
1699 106ec879 bellard
1700 106ec879 bellard
    /* Not used yet, but might be useful if we ever have DSP suppport */
1701 106ec879 bellard
#if 0
1702 106ec879 bellard
    if (cpu_has_dsp) {
1703 106ec879 bellard
        err |= __put_user(mfhi1(), &sc->sc_hi1);
1704 106ec879 bellard
        err |= __put_user(mflo1(), &sc->sc_lo1);
1705 106ec879 bellard
        err |= __put_user(mfhi2(), &sc->sc_hi2);
1706 106ec879 bellard
        err |= __put_user(mflo2(), &sc->sc_lo2);
1707 106ec879 bellard
        err |= __put_user(mfhi3(), &sc->sc_hi3);
1708 106ec879 bellard
        err |= __put_user(mflo3(), &sc->sc_lo3);
1709 106ec879 bellard
        err |= __put_user(rddsp(DSP_MASK), &sc->sc_dsp);
1710 106ec879 bellard
    }
1711 106ec879 bellard
    /* same with 64 bit */
1712 106ec879 bellard
    #ifdef CONFIG_64BIT
1713 106ec879 bellard
    err |= __put_user(regs->hi, &sc->sc_hi[0]);
1714 106ec879 bellard
    err |= __put_user(regs->lo, &sc->sc_lo[0]);
1715 106ec879 bellard
    if (cpu_has_dsp) {
1716 106ec879 bellard
        err |= __put_user(mfhi1(), &sc->sc_hi[1]);
1717 106ec879 bellard
        err |= __put_user(mflo1(), &sc->sc_lo[1]);
1718 106ec879 bellard
        err |= __put_user(mfhi2(), &sc->sc_hi[2]);
1719 106ec879 bellard
        err |= __put_user(mflo2(), &sc->sc_lo[2]);
1720 106ec879 bellard
        err |= __put_user(mfhi3(), &sc->sc_hi[3]);
1721 106ec879 bellard
        err |= __put_user(mflo3(), &sc->sc_lo[3]);
1722 106ec879 bellard
        err |= __put_user(rddsp(DSP_MASK), &sc->sc_dsp);
1723 106ec879 bellard
    }
1724 106ec879 bellard
    #endif
1725 106ec879 bellard

1726 106ec879 bellard

1727 106ec879 bellard
    #endif
1728 106ec879 bellard

1729 106ec879 bellard

1730 106ec879 bellard
    #if 0
1731 106ec879 bellard
    err |= __put_user(!!used_math(), &sc->sc_used_math);
1732 106ec879 bellard

1733 106ec879 bellard
    if (!used_math())
1734 106ec879 bellard
        goto out;
1735 106ec879 bellard

1736 106ec879 bellard
    /*
1737 106ec879 bellard
    * Save FPU state to signal context.  Signal handler will "inherit"
1738 106ec879 bellard
    * current FPU state.
1739 106ec879 bellard
    */
1740 106ec879 bellard
    preempt_disable();
1741 106ec879 bellard

1742 106ec879 bellard
    if (!is_fpu_owner()) {
1743 106ec879 bellard
        own_fpu();
1744 106ec879 bellard
        restore_fp(current);
1745 106ec879 bellard
    }
1746 106ec879 bellard
    err |= save_fp_context(sc);
1747 106ec879 bellard

1748 106ec879 bellard
    preempt_enable();
1749 106ec879 bellard
    out:
1750 106ec879 bellard
#endif
1751 106ec879 bellard
    return err;
1752 106ec879 bellard
}
1753 106ec879 bellard
1754 106ec879 bellard
static inline int
1755 106ec879 bellard
restore_sigcontext(CPUState *regs, struct target_sigcontext *sc)
1756 106ec879 bellard
{
1757 106ec879 bellard
    int err = 0;
1758 106ec879 bellard
1759 106ec879 bellard
    err |= __get_user(regs->CP0_EPC, &sc->sc_pc);
1760 106ec879 bellard
1761 106ec879 bellard
    err |= __get_user(regs->HI, &sc->sc_mdhi);
1762 106ec879 bellard
    err |= __get_user(regs->LO, &sc->sc_mdlo);
1763 106ec879 bellard
1764 106ec879 bellard
    #define restore_gp_reg(i) do {                                           \
1765 106ec879 bellard
        err |= __get_user(regs->gpr[i], &sc->sc_regs[i]);                \
1766 106ec879 bellard
    } while(0)
1767 106ec879 bellard
    restore_gp_reg( 1); restore_gp_reg( 2); restore_gp_reg( 3);
1768 106ec879 bellard
    restore_gp_reg( 4); restore_gp_reg( 5); restore_gp_reg( 6);
1769 106ec879 bellard
    restore_gp_reg( 7); restore_gp_reg( 8); restore_gp_reg( 9);
1770 106ec879 bellard
    restore_gp_reg(10); restore_gp_reg(11); restore_gp_reg(12);
1771 106ec879 bellard
    restore_gp_reg(13); restore_gp_reg(14); restore_gp_reg(15);
1772 106ec879 bellard
    restore_gp_reg(16); restore_gp_reg(17); restore_gp_reg(18);
1773 106ec879 bellard
    restore_gp_reg(19); restore_gp_reg(20); restore_gp_reg(21);
1774 106ec879 bellard
    restore_gp_reg(22); restore_gp_reg(23); restore_gp_reg(24);
1775 106ec879 bellard
    restore_gp_reg(25); restore_gp_reg(26); restore_gp_reg(27);
1776 106ec879 bellard
    restore_gp_reg(28); restore_gp_reg(29); restore_gp_reg(30);
1777 106ec879 bellard
    restore_gp_reg(31);
1778 106ec879 bellard
    #undef restore_gp_reg
1779 106ec879 bellard
1780 106ec879 bellard
#if 0
1781 106ec879 bellard
    if (cpu_has_dsp) {
1782 106ec879 bellard
        err |= __get_user(treg, &sc->sc_hi1); mthi1(treg);
1783 106ec879 bellard
        err |= __get_user(treg, &sc->sc_lo1); mtlo1(treg);
1784 106ec879 bellard
        err |= __get_user(treg, &sc->sc_hi2); mthi2(treg);
1785 106ec879 bellard
        err |= __get_user(treg, &sc->sc_lo2); mtlo2(treg);
1786 106ec879 bellard
        err |= __get_user(treg, &sc->sc_hi3); mthi3(treg);
1787 106ec879 bellard
        err |= __get_user(treg, &sc->sc_lo3); mtlo3(treg);
1788 106ec879 bellard
        err |= __get_user(treg, &sc->sc_dsp); wrdsp(treg, DSP_MASK);
1789 106ec879 bellard
    }
1790 106ec879 bellard
    #ifdef CONFIG_64BIT
1791 106ec879 bellard
    err |= __get_user(regs->hi, &sc->sc_hi[0]);
1792 106ec879 bellard
    err |= __get_user(regs->lo, &sc->sc_lo[0]);
1793 106ec879 bellard
    if (cpu_has_dsp) {
1794 106ec879 bellard
        err |= __get_user(treg, &sc->sc_hi[1]); mthi1(treg);
1795 106ec879 bellard
        err |= __get_user(treg, &sc->sc_lo[1]); mthi1(treg);
1796 106ec879 bellard
        err |= __get_user(treg, &sc->sc_hi[2]); mthi2(treg);
1797 106ec879 bellard
        err |= __get_user(treg, &sc->sc_lo[2]); mthi2(treg);
1798 106ec879 bellard
        err |= __get_user(treg, &sc->sc_hi[3]); mthi3(treg);
1799 106ec879 bellard
        err |= __get_user(treg, &sc->sc_lo[3]); mthi3(treg);
1800 106ec879 bellard
        err |= __get_user(treg, &sc->sc_dsp); wrdsp(treg, DSP_MASK);
1801 106ec879 bellard
    }
1802 106ec879 bellard
    #endif
1803 106ec879 bellard

1804 106ec879 bellard
    err |= __get_user(used_math, &sc->sc_used_math);
1805 106ec879 bellard
    conditional_used_math(used_math);
1806 106ec879 bellard

1807 106ec879 bellard
    preempt_disable();
1808 106ec879 bellard

1809 106ec879 bellard
    if (used_math()) {
1810 106ec879 bellard
        /* restore fpu context if we have used it before */
1811 106ec879 bellard
        own_fpu();
1812 106ec879 bellard
        err |= restore_fp_context(sc);
1813 106ec879 bellard
    } else {
1814 106ec879 bellard
        /* signal handler may have used FPU.  Give it up. */
1815 106ec879 bellard
        lose_fpu();
1816 106ec879 bellard
    }
1817 106ec879 bellard

1818 106ec879 bellard
    preempt_enable();
1819 106ec879 bellard
#endif
1820 106ec879 bellard
    return err;
1821 106ec879 bellard
}
1822 106ec879 bellard
/*
1823 106ec879 bellard
 * Determine which stack to use..
1824 106ec879 bellard
 */
1825 106ec879 bellard
static inline void *
1826 106ec879 bellard
get_sigframe(struct emulated_sigaction *ka, CPUState *regs, size_t frame_size)
1827 106ec879 bellard
{
1828 106ec879 bellard
    unsigned long sp;
1829 106ec879 bellard
1830 106ec879 bellard
    /* Default to using normal stack */
1831 106ec879 bellard
    sp = regs->gpr[29];
1832 106ec879 bellard
1833 106ec879 bellard
    /*
1834 106ec879 bellard
     * FPU emulator may have it's own trampoline active just
1835 106ec879 bellard
     * above the user stack, 16-bytes before the next lowest
1836 106ec879 bellard
     * 16 byte boundary.  Try to avoid trashing it.
1837 106ec879 bellard
     */
1838 106ec879 bellard
    sp -= 32;
1839 106ec879 bellard
1840 106ec879 bellard
#if 0
1841 106ec879 bellard
    /* This is the X/Open sanctioned signal stack switching.  */
1842 106ec879 bellard
    if ((ka->sa.sa_flags & SA_ONSTACK) && (sas_ss_flags (sp) == 0))
1843 106ec879 bellard
        sp = current->sas_ss_sp + current->sas_ss_size;
1844 106ec879 bellard
#endif
1845 106ec879 bellard
1846 106ec879 bellard
    return g2h((sp - frame_size) & ~7);
1847 106ec879 bellard
}
1848 106ec879 bellard
1849 106ec879 bellard
static void setup_frame(int sig, struct emulated_sigaction * ka, 
1850 106ec879 bellard
                   target_sigset_t *set, CPUState *regs)
1851 106ec879 bellard
{
1852 106ec879 bellard
    struct sigframe *frame;
1853 106ec879 bellard
    int i;
1854 106ec879 bellard
1855 106ec879 bellard
    frame = get_sigframe(ka, regs, sizeof(*frame));
1856 106ec879 bellard
    if (!access_ok(VERIFY_WRITE, frame, sizeof (*frame)))
1857 106ec879 bellard
        goto give_sigsegv;
1858 106ec879 bellard
1859 106ec879 bellard
    install_sigtramp(frame->sf_code, TARGET_NR_sigreturn);
1860 106ec879 bellard
1861 106ec879 bellard
    if(setup_sigcontext(regs, &frame->sf_sc))
1862 106ec879 bellard
        goto give_sigsegv;
1863 106ec879 bellard
1864 106ec879 bellard
    for(i = 0; i < TARGET_NSIG_WORDS; i++) {
1865 106ec879 bellard
        if(__put_user(set->sig[i], &frame->sf_mask.sig[i]))
1866 106ec879 bellard
            goto give_sigsegv;
1867 106ec879 bellard
    }
1868 106ec879 bellard
1869 106ec879 bellard
    /*
1870 106ec879 bellard
    * Arguments to signal handler:
1871 106ec879 bellard
    *
1872 106ec879 bellard
    *   a0 = signal number
1873 106ec879 bellard
    *   a1 = 0 (should be cause)
1874 106ec879 bellard
    *   a2 = pointer to struct sigcontext
1875 106ec879 bellard
    *
1876 106ec879 bellard
    * $25 and PC point to the signal handler, $29 points to the
1877 106ec879 bellard
    * struct sigframe.
1878 106ec879 bellard
    */
1879 106ec879 bellard
    regs->gpr[ 4] = sig;
1880 106ec879 bellard
    regs->gpr[ 5] = 0;
1881 106ec879 bellard
    regs->gpr[ 6] = h2g(&frame->sf_sc);
1882 106ec879 bellard
    regs->gpr[29] = h2g(frame);
1883 106ec879 bellard
    regs->gpr[31] = h2g(frame->sf_code);
1884 106ec879 bellard
    /* The original kernel code sets CP0_EPC to the handler
1885 106ec879 bellard
    * since it returns to userland using eret
1886 106ec879 bellard
    * we cannot do this here, and we must set PC directly */
1887 106ec879 bellard
    regs->PC = regs->gpr[25] = ka->sa._sa_handler;
1888 106ec879 bellard
    return;
1889 106ec879 bellard
1890 106ec879 bellard
give_sigsegv:
1891 106ec879 bellard
    force_sig(TARGET_SIGSEGV/*, current*/);
1892 106ec879 bellard
    return;        
1893 106ec879 bellard
}
1894 106ec879 bellard
1895 106ec879 bellard
long do_sigreturn(CPUState *regs)
1896 106ec879 bellard
{
1897 106ec879 bellard
   struct sigframe *frame;
1898 106ec879 bellard
   sigset_t blocked;
1899 106ec879 bellard
   target_sigset_t target_set;
1900 106ec879 bellard
   int i;
1901 106ec879 bellard
1902 106ec879 bellard
#if defined(DEBUG_SIGNAL)
1903 106ec879 bellard
   fprintf(stderr, "do_sigreturn\n");
1904 106ec879 bellard
#endif
1905 106ec879 bellard
   frame = (struct sigframe *) regs->gpr[29];
1906 106ec879 bellard
   if (!access_ok(VERIFY_READ, frame, sizeof(*frame)))
1907 106ec879 bellard
           goto badframe;
1908 106ec879 bellard
1909 106ec879 bellard
   for(i = 0; i < TARGET_NSIG_WORDS; i++) {
1910 106ec879 bellard
           if(__get_user(target_set.sig[i], &frame->sf_mask.sig[i]))
1911 106ec879 bellard
            goto badframe;
1912 106ec879 bellard
   }                
1913 106ec879 bellard
1914 106ec879 bellard
   target_to_host_sigset_internal(&blocked, &target_set);
1915 106ec879 bellard
   sigprocmask(SIG_SETMASK, &blocked, NULL);
1916 106ec879 bellard
1917 106ec879 bellard
   if (restore_sigcontext(regs, &frame->sf_sc))
1918 106ec879 bellard
           goto badframe;
1919 106ec879 bellard
1920 106ec879 bellard
#if 0
1921 106ec879 bellard
   /*
1922 106ec879 bellard
    * Don't let your children do this ...
1923 106ec879 bellard
    */
1924 106ec879 bellard
   __asm__ __volatile__(
1925 106ec879 bellard
           "move\t$29, %0\n\t"
1926 106ec879 bellard
           "j\tsyscall_exit"
1927 106ec879 bellard
           :/* no outputs */
1928 106ec879 bellard
           :"r" (&regs));
1929 106ec879 bellard
   /* Unreached */
1930 106ec879 bellard
#endif
1931 106ec879 bellard
    
1932 106ec879 bellard
    regs->PC = regs->CP0_EPC;
1933 106ec879 bellard
   /* I am not sure this is right, but it seems to work
1934 106ec879 bellard
    * maybe a problem with nested signals ? */
1935 106ec879 bellard
    regs->CP0_EPC = 0;
1936 106ec879 bellard
    return 0;
1937 106ec879 bellard
1938 106ec879 bellard
badframe:
1939 106ec879 bellard
   force_sig(TARGET_SIGSEGV/*, current*/);
1940 106ec879 bellard
   return 0;        
1941 106ec879 bellard
1942 106ec879 bellard
}
1943 106ec879 bellard
1944 106ec879 bellard
static void setup_rt_frame(int sig, struct emulated_sigaction *ka, 
1945 106ec879 bellard
                           target_siginfo_t *info,
1946 106ec879 bellard
                           target_sigset_t *set, CPUState *env)
1947 106ec879 bellard
{
1948 106ec879 bellard
    fprintf(stderr, "setup_rt_frame: not implemented\n");
1949 106ec879 bellard
}
1950 106ec879 bellard
1951 106ec879 bellard
long do_rt_sigreturn(CPUState *env)
1952 106ec879 bellard
{
1953 106ec879 bellard
    fprintf(stderr, "do_rt_sigreturn: not implemented\n");
1954 106ec879 bellard
    return -ENOSYS;
1955 106ec879 bellard
}
1956 6d5e216d bellard
1957 b346ff46 bellard
#else
1958 b346ff46 bellard
1959 b346ff46 bellard
static void setup_frame(int sig, struct emulated_sigaction *ka,
1960 b346ff46 bellard
                        target_sigset_t *set, CPUState *env)
1961 b346ff46 bellard
{
1962 b346ff46 bellard
    fprintf(stderr, "setup_frame: not implemented\n");
1963 b346ff46 bellard
}
1964 b346ff46 bellard
1965 b346ff46 bellard
static void setup_rt_frame(int sig, struct emulated_sigaction *ka, 
1966 b346ff46 bellard
                           target_siginfo_t *info,
1967 b346ff46 bellard
                           target_sigset_t *set, CPUState *env)
1968 b346ff46 bellard
{
1969 b346ff46 bellard
    fprintf(stderr, "setup_rt_frame: not implemented\n");
1970 b346ff46 bellard
}
1971 b346ff46 bellard
1972 b346ff46 bellard
long do_sigreturn(CPUState *env)
1973 b346ff46 bellard
{
1974 b346ff46 bellard
    fprintf(stderr, "do_sigreturn: not implemented\n");
1975 b346ff46 bellard
    return -ENOSYS;
1976 b346ff46 bellard
}
1977 b346ff46 bellard
1978 b346ff46 bellard
long do_rt_sigreturn(CPUState *env)
1979 b346ff46 bellard
{
1980 b346ff46 bellard
    fprintf(stderr, "do_rt_sigreturn: not implemented\n");
1981 b346ff46 bellard
    return -ENOSYS;
1982 b346ff46 bellard
}
1983 b346ff46 bellard
1984 66fb9763 bellard
#endif
1985 66fb9763 bellard
1986 66fb9763 bellard
void process_pending_signals(void *cpu_env)
1987 66fb9763 bellard
{
1988 66fb9763 bellard
    int sig;
1989 66fb9763 bellard
    target_ulong handler;
1990 9de5e440 bellard
    sigset_t set, old_set;
1991 9de5e440 bellard
    target_sigset_t target_old_set;
1992 66fb9763 bellard
    struct emulated_sigaction *k;
1993 66fb9763 bellard
    struct sigqueue *q;
1994 66fb9763 bellard
    
1995 31e31b8a bellard
    if (!signal_pending)
1996 31e31b8a bellard
        return;
1997 31e31b8a bellard
1998 66fb9763 bellard
    k = sigact_table;
1999 66fb9763 bellard
    for(sig = 1; sig <= TARGET_NSIG; sig++) {
2000 66fb9763 bellard
        if (k->pending)
2001 31e31b8a bellard
            goto handle_signal;
2002 66fb9763 bellard
        k++;
2003 31e31b8a bellard
    }
2004 31e31b8a bellard
    /* if no signal is pending, just return */
2005 31e31b8a bellard
    signal_pending = 0;
2006 31e31b8a bellard
    return;
2007 66fb9763 bellard
2008 31e31b8a bellard
 handle_signal:
2009 66fb9763 bellard
#ifdef DEBUG_SIGNAL
2010 bc8a22cc bellard
    fprintf(stderr, "qemu: process signal %d\n", sig);
2011 66fb9763 bellard
#endif
2012 66fb9763 bellard
    /* dequeue signal */
2013 66fb9763 bellard
    q = k->first;
2014 66fb9763 bellard
    k->first = q->next;
2015 66fb9763 bellard
    if (!k->first)
2016 66fb9763 bellard
        k->pending = 0;
2017 1fddef4b bellard
      
2018 1fddef4b bellard
    sig = gdb_handlesig (cpu_env, sig);
2019 1fddef4b bellard
    if (!sig) {
2020 1fddef4b bellard
        fprintf (stderr, "Lost signal\n");
2021 1fddef4b bellard
        abort();
2022 1fddef4b bellard
    }
2023 66fb9763 bellard
2024 66fb9763 bellard
    handler = k->sa._sa_handler;
2025 66fb9763 bellard
    if (handler == TARGET_SIG_DFL) {
2026 66fb9763 bellard
        /* default handler : ignore some signal. The other are fatal */
2027 66fb9763 bellard
        if (sig != TARGET_SIGCHLD && 
2028 66fb9763 bellard
            sig != TARGET_SIGURG && 
2029 66fb9763 bellard
            sig != TARGET_SIGWINCH) {
2030 66fb9763 bellard
            force_sig(sig);
2031 66fb9763 bellard
        }
2032 66fb9763 bellard
    } else if (handler == TARGET_SIG_IGN) {
2033 66fb9763 bellard
        /* ignore sig */
2034 66fb9763 bellard
    } else if (handler == TARGET_SIG_ERR) {
2035 66fb9763 bellard
        force_sig(sig);
2036 66fb9763 bellard
    } else {
2037 9de5e440 bellard
        /* compute the blocked signals during the handler execution */
2038 9de5e440 bellard
        target_to_host_sigset(&set, &k->sa.sa_mask);
2039 9de5e440 bellard
        /* SA_NODEFER indicates that the current signal should not be
2040 9de5e440 bellard
           blocked during the handler */
2041 9de5e440 bellard
        if (!(k->sa.sa_flags & TARGET_SA_NODEFER))
2042 9de5e440 bellard
            sigaddset(&set, target_to_host_signal(sig));
2043 9de5e440 bellard
        
2044 9de5e440 bellard
        /* block signals in the handler using Linux */
2045 9de5e440 bellard
        sigprocmask(SIG_BLOCK, &set, &old_set);
2046 9de5e440 bellard
        /* save the previous blocked signal state to restore it at the
2047 9de5e440 bellard
           end of the signal execution (see do_sigreturn) */
2048 9231944d bellard
        host_to_target_sigset_internal(&target_old_set, &old_set);
2049 9de5e440 bellard
2050 bc8a22cc bellard
        /* if the CPU is in VM86 mode, we restore the 32 bit values */
2051 bc8a22cc bellard
#ifdef TARGET_I386
2052 bc8a22cc bellard
        {
2053 bc8a22cc bellard
            CPUX86State *env = cpu_env;
2054 bc8a22cc bellard
            if (env->eflags & VM_MASK)
2055 bc8a22cc bellard
                save_v86_state(env);
2056 bc8a22cc bellard
        }
2057 bc8a22cc bellard
#endif
2058 9de5e440 bellard
        /* prepare the stack frame of the virtual CPU */
2059 66fb9763 bellard
        if (k->sa.sa_flags & TARGET_SA_SIGINFO)
2060 9de5e440 bellard
            setup_rt_frame(sig, k, &q->info, &target_old_set, cpu_env);
2061 66fb9763 bellard
        else
2062 9de5e440 bellard
            setup_frame(sig, k, &target_old_set, cpu_env);
2063 66fb9763 bellard
        if (k->sa.sa_flags & TARGET_SA_RESETHAND)
2064 66fb9763 bellard
            k->sa._sa_handler = TARGET_SIG_DFL;
2065 31e31b8a bellard
    }
2066 66fb9763 bellard
    if (q != &k->info)
2067 66fb9763 bellard
        free_sigqueue(q);
2068 66fb9763 bellard
}
2069 31e31b8a bellard