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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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/* XXX: do it properly */
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static inline int host_to_target_signal(int sig)
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{
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    return 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 sig;
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}
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void host_to_target_sigset(target_sigset_t *d, sigset_t *s)
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{
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    int i;
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    for(i = 0;i < TARGET_NSIG_WORDS; i++) {
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        d->sig[i] = tswapl(((unsigned long *)s)[i]);
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    }
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}
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void target_to_host_sigset(sigset_t *d, target_sigset_t *s)
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{
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    int i;
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    for(i = 0;i < TARGET_NSIG_WORDS; i++) {
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        ((unsigned long *)d)[i] = tswapl(s->sig[i]);
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    }
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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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    *old_sigset = tswap32(*(unsigned long *)sigset & 0xffffffff);
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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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    sigemptyset(sigset);
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    *(unsigned long *)sigset = tswapl(*old_sigset);
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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 || sig == SIGBUS) {
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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 || sig == SIGBUS) {
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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;
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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;
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        q->info = *info;
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        q->next = NULL;
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        k->pending = 1;
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        /* signal that a new signal is pending */
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        signal_pending = 1;
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        return 1; /* indicates that the signal was queued */
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    }
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}
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#if defined(DEBUG_SIGNAL)
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#ifdef __i386__
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static void dump_regs(struct ucontext *uc)
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{
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    fprintf(stderr, 
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            "EAX=%08x EBX=%08x ECX=%08x EDX=%08x\n"
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            "ESI=%08x EDI=%08x EBP=%08x ESP=%08x\n"
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            "EFL=%08x EIP=%08x\n",
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            uc->uc_mcontext.gregs[EAX],
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            uc->uc_mcontext.gregs[EBX],
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            uc->uc_mcontext.gregs[ECX],
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            uc->uc_mcontext.gregs[EDX],
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            uc->uc_mcontext.gregs[ESI],
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            uc->uc_mcontext.gregs[EDI],
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            uc->uc_mcontext.gregs[EBP],
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            uc->uc_mcontext.gregs[ESP],
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            uc->uc_mcontext.gregs[EFL],
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            uc->uc_mcontext.gregs[EIP]);
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}
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#else
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static void dump_regs(struct ucontext *uc)
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{
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}
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#endif
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#endif
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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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{
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    int sig;
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    target_siginfo_t tinfo;
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    /* the CPU emulator uses some host signals to detect exceptions,
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       we we forward to it some signals */
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    if (host_signum == SIGSEGV || host_signum == SIGBUS) {
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        if (cpu_x86_signal_handler(host_signum, info, puc))
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            return;
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    }
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    /* get target signal number */
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    sig = host_to_target_signal(host_signum);
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    if (sig < 1 || sig > TARGET_NSIG)
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        return;
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#if defined(DEBUG_SIGNAL)
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    fprintf(stderr, "qemu: got signal %d\n", sig);
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    dump_regs(puc);
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#endif
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    host_to_target_siginfo_noswap(&tinfo, info);
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    if (queue_signal(sig, &tinfo) == 1) {
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        /* interrupt the virtual CPU as soon as possible */
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        cpu_x86_interrupt(global_env);
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    }
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}
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int do_sigaction(int sig, const struct target_sigaction *act,
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                 struct target_sigaction *oact)
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{
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    struct emulated_sigaction *k;
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    if (sig < 1 || sig > TARGET_NSIG)
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        return -EINVAL;
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    k = &sigact_table[sig - 1];
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#if defined(DEBUG_SIGNAL) && 0
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    fprintf(stderr, "sigaction sig=%d act=0x%08x, oact=0x%08x\n", 
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            sig, (int)act, (int)oact);
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#endif
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    if (oact) {
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        oact->_sa_handler = tswapl(k->sa._sa_handler);
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        oact->sa_flags = tswapl(k->sa.sa_flags);
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        oact->sa_restorer = tswapl(k->sa.sa_restorer);
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        oact->sa_mask = k->sa.sa_mask;
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    }
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    if (act) {
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        k->sa._sa_handler = tswapl(act->_sa_handler);
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        k->sa.sa_flags = tswapl(act->sa_flags);
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        k->sa.sa_restorer = tswapl(act->sa_restorer);
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        k->sa.sa_mask = act->sa_mask;
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    }
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    return 0;
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}
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#ifdef TARGET_I386
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/* from the Linux kernel */
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struct target_fpreg {
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        uint16_t significand[4];
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        uint16_t exponent;
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};
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struct target_fpxreg {
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        uint16_t significand[4];
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        uint16_t exponent;
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        uint16_t padding[3];
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};
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struct target_xmmreg {
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        target_ulong element[4];
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};
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struct target_fpstate {
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        /* Regular FPU environment */
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        target_ulong         cw;
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        target_ulong        sw;
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        target_ulong        tag;
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        target_ulong        ipoff;
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        target_ulong        cssel;
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        target_ulong        dataoff;
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        target_ulong        datasel;
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        struct target_fpreg        _st[8];
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        uint16_t        status;
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        uint16_t        magic;                /* 0xffff = regular FPU data only */
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        /* FXSR FPU environment */
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        target_ulong        _fxsr_env[6];        /* FXSR FPU env is ignored */
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        target_ulong        mxcsr;
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        target_ulong        reserved;
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        struct target_fpxreg        _fxsr_st[8];        /* FXSR FPU reg data is ignored */
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        struct target_xmmreg        _xmm[8];
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        target_ulong        padding[56];
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};
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399 66fb9763 bellard
#define X86_FXSR_MAGIC                0x0000
400 66fb9763 bellard
401 66fb9763 bellard
struct target_sigcontext {
402 66fb9763 bellard
        uint16_t gs, __gsh;
403 66fb9763 bellard
        uint16_t fs, __fsh;
404 66fb9763 bellard
        uint16_t es, __esh;
405 66fb9763 bellard
        uint16_t ds, __dsh;
406 66fb9763 bellard
        target_ulong edi;
407 66fb9763 bellard
        target_ulong esi;
408 66fb9763 bellard
        target_ulong ebp;
409 66fb9763 bellard
        target_ulong esp;
410 66fb9763 bellard
        target_ulong ebx;
411 66fb9763 bellard
        target_ulong edx;
412 66fb9763 bellard
        target_ulong ecx;
413 66fb9763 bellard
        target_ulong eax;
414 66fb9763 bellard
        target_ulong trapno;
415 66fb9763 bellard
        target_ulong err;
416 66fb9763 bellard
        target_ulong eip;
417 66fb9763 bellard
        uint16_t cs, __csh;
418 66fb9763 bellard
        target_ulong eflags;
419 66fb9763 bellard
        target_ulong esp_at_signal;
420 66fb9763 bellard
        uint16_t ss, __ssh;
421 66fb9763 bellard
        target_ulong fpstate; /* pointer */
422 66fb9763 bellard
        target_ulong oldmask;
423 66fb9763 bellard
        target_ulong cr2;
424 66fb9763 bellard
};
425 66fb9763 bellard
426 66fb9763 bellard
typedef struct target_sigaltstack {
427 66fb9763 bellard
        target_ulong ss_sp;
428 66fb9763 bellard
        int ss_flags;
429 66fb9763 bellard
        target_ulong ss_size;
430 66fb9763 bellard
} target_stack_t;
431 66fb9763 bellard
432 66fb9763 bellard
struct target_ucontext {
433 66fb9763 bellard
        target_ulong          uc_flags;
434 66fb9763 bellard
        target_ulong      uc_link;
435 66fb9763 bellard
        target_stack_t          uc_stack;
436 66fb9763 bellard
        struct target_sigcontext uc_mcontext;
437 66fb9763 bellard
        target_sigset_t          uc_sigmask;        /* mask last for extensibility */
438 66fb9763 bellard
};
439 66fb9763 bellard
440 66fb9763 bellard
struct sigframe
441 66fb9763 bellard
{
442 66fb9763 bellard
    target_ulong pretcode;
443 66fb9763 bellard
    int sig;
444 66fb9763 bellard
    struct target_sigcontext sc;
445 66fb9763 bellard
    struct target_fpstate fpstate;
446 66fb9763 bellard
    target_ulong extramask[TARGET_NSIG_WORDS-1];
447 66fb9763 bellard
    char retcode[8];
448 66fb9763 bellard
};
449 66fb9763 bellard
450 66fb9763 bellard
struct rt_sigframe
451 66fb9763 bellard
{
452 66fb9763 bellard
    target_ulong pretcode;
453 66fb9763 bellard
    int sig;
454 66fb9763 bellard
    target_ulong pinfo;
455 66fb9763 bellard
    target_ulong puc;
456 66fb9763 bellard
    struct target_siginfo info;
457 66fb9763 bellard
    struct target_ucontext uc;
458 66fb9763 bellard
    struct target_fpstate fpstate;
459 66fb9763 bellard
    char retcode[8];
460 66fb9763 bellard
};
461 66fb9763 bellard
462 66fb9763 bellard
/*
463 66fb9763 bellard
 * Set up a signal frame.
464 66fb9763 bellard
 */
465 66fb9763 bellard
466 66fb9763 bellard
#define __put_user(x,ptr)\
467 66fb9763 bellard
({\
468 66fb9763 bellard
    int size = sizeof(*ptr);\
469 66fb9763 bellard
    switch(size) {\
470 66fb9763 bellard
    case 1:\
471 66fb9763 bellard
        stb(ptr, (typeof(*ptr))(x));\
472 66fb9763 bellard
        break;\
473 66fb9763 bellard
    case 2:\
474 66fb9763 bellard
        stw(ptr, (typeof(*ptr))(x));\
475 66fb9763 bellard
        break;\
476 66fb9763 bellard
    case 4:\
477 66fb9763 bellard
        stl(ptr, (typeof(*ptr))(x));\
478 66fb9763 bellard
        break;\
479 66fb9763 bellard
    case 8:\
480 66fb9763 bellard
        stq(ptr, (typeof(*ptr))(x));\
481 66fb9763 bellard
        break;\
482 66fb9763 bellard
    default:\
483 66fb9763 bellard
        abort();\
484 66fb9763 bellard
    }\
485 66fb9763 bellard
    0;\
486 66fb9763 bellard
})
487 66fb9763 bellard
488 66fb9763 bellard
#define get_user(val, ptr) (typeof(*ptr))(*(ptr))
489 66fb9763 bellard
490 66fb9763 bellard
491 66fb9763 bellard
#define __copy_to_user(dst, src, size)\
492 66fb9763 bellard
({\
493 66fb9763 bellard
    memcpy(dst, src, size);\
494 66fb9763 bellard
    0;\
495 66fb9763 bellard
})
496 66fb9763 bellard
497 9de5e440 bellard
static inline int copy_siginfo_to_user(target_siginfo_t *tinfo, 
498 9de5e440 bellard
                                       const target_siginfo_t *info)
499 66fb9763 bellard
{
500 9de5e440 bellard
    tswap_siginfo(tinfo, info);
501 66fb9763 bellard
    return 0;
502 66fb9763 bellard
}
503 66fb9763 bellard
504 66fb9763 bellard
/* XXX: save x87 state */
505 66fb9763 bellard
static int
506 66fb9763 bellard
setup_sigcontext(struct target_sigcontext *sc, struct target_fpstate *fpstate,
507 66fb9763 bellard
                 CPUX86State *env, unsigned long mask)
508 66fb9763 bellard
{
509 66fb9763 bellard
        int err = 0;
510 66fb9763 bellard
511 66fb9763 bellard
        err |= __put_user(env->segs[R_GS], (unsigned int *)&sc->gs);
512 66fb9763 bellard
        err |= __put_user(env->segs[R_FS], (unsigned int *)&sc->fs);
513 66fb9763 bellard
        err |= __put_user(env->segs[R_ES], (unsigned int *)&sc->es);
514 66fb9763 bellard
        err |= __put_user(env->segs[R_DS], (unsigned int *)&sc->ds);
515 66fb9763 bellard
        err |= __put_user(env->regs[R_EDI], &sc->edi);
516 66fb9763 bellard
        err |= __put_user(env->regs[R_ESI], &sc->esi);
517 66fb9763 bellard
        err |= __put_user(env->regs[R_EBP], &sc->ebp);
518 66fb9763 bellard
        err |= __put_user(env->regs[R_ESP], &sc->esp);
519 66fb9763 bellard
        err |= __put_user(env->regs[R_EBX], &sc->ebx);
520 66fb9763 bellard
        err |= __put_user(env->regs[R_EDX], &sc->edx);
521 66fb9763 bellard
        err |= __put_user(env->regs[R_ECX], &sc->ecx);
522 66fb9763 bellard
        err |= __put_user(env->regs[R_EAX], &sc->eax);
523 66fb9763 bellard
        err |= __put_user(/*current->thread.trap_no*/ 0, &sc->trapno);
524 66fb9763 bellard
        err |= __put_user(/*current->thread.error_code*/ 0, &sc->err);
525 66fb9763 bellard
        err |= __put_user(env->eip, &sc->eip);
526 66fb9763 bellard
        err |= __put_user(env->segs[R_CS], (unsigned int *)&sc->cs);
527 66fb9763 bellard
        err |= __put_user(env->eflags, &sc->eflags);
528 66fb9763 bellard
        err |= __put_user(env->regs[R_ESP], &sc->esp_at_signal);
529 66fb9763 bellard
        err |= __put_user(env->segs[R_SS], (unsigned int *)&sc->ss);
530 66fb9763 bellard
#if 0
531 66fb9763 bellard
        tmp = save_i387(fpstate);
532 66fb9763 bellard
        if (tmp < 0)
533 66fb9763 bellard
          err = 1;
534 66fb9763 bellard
        else
535 66fb9763 bellard
          err |= __put_user(tmp ? fpstate : NULL, &sc->fpstate);
536 66fb9763 bellard
#else
537 66fb9763 bellard
        err |= __put_user(0, &sc->fpstate);
538 66fb9763 bellard
#endif
539 66fb9763 bellard
        /* non-iBCS2 extensions.. */
540 66fb9763 bellard
        err |= __put_user(mask, &sc->oldmask);
541 66fb9763 bellard
        err |= __put_user(/*current->thread.cr2*/ 0, &sc->cr2);
542 66fb9763 bellard
        return err;
543 31e31b8a bellard
}
544 31e31b8a bellard
545 66fb9763 bellard
/*
546 66fb9763 bellard
 * Determine which stack to use..
547 66fb9763 bellard
 */
548 31e31b8a bellard
549 66fb9763 bellard
static inline void *
550 66fb9763 bellard
get_sigframe(struct emulated_sigaction *ka, CPUX86State *env, size_t frame_size)
551 31e31b8a bellard
{
552 66fb9763 bellard
        unsigned long esp;
553 66fb9763 bellard
554 66fb9763 bellard
        /* Default to using normal stack */
555 66fb9763 bellard
        esp = env->regs[R_ESP];
556 66fb9763 bellard
#if 0
557 66fb9763 bellard
        /* This is the X/Open sanctioned signal stack switching.  */
558 66fb9763 bellard
        if (ka->sa.sa_flags & SA_ONSTACK) {
559 66fb9763 bellard
                if (sas_ss_flags(esp) == 0)
560 66fb9763 bellard
                        esp = current->sas_ss_sp + current->sas_ss_size;
561 66fb9763 bellard
        }
562 66fb9763 bellard

563 66fb9763 bellard
        /* This is the legacy signal stack switching. */
564 66fb9763 bellard
        else if ((regs->xss & 0xffff) != __USER_DS &&
565 66fb9763 bellard
                 !(ka->sa.sa_flags & SA_RESTORER) &&
566 66fb9763 bellard
                 ka->sa.sa_restorer) {
567 66fb9763 bellard
                esp = (unsigned long) ka->sa.sa_restorer;
568 66fb9763 bellard
        }
569 66fb9763 bellard
#endif
570 66fb9763 bellard
        return (void *)((esp - frame_size) & -8ul);
571 66fb9763 bellard
}
572 66fb9763 bellard
573 66fb9763 bellard
static void setup_frame(int sig, struct emulated_sigaction *ka,
574 66fb9763 bellard
                        target_sigset_t *set, CPUX86State *env)
575 66fb9763 bellard
{
576 66fb9763 bellard
        struct sigframe *frame;
577 66fb9763 bellard
        int err = 0;
578 66fb9763 bellard
579 66fb9763 bellard
        frame = get_sigframe(ka, env, sizeof(*frame));
580 66fb9763 bellard
581 66fb9763 bellard
#if 0
582 66fb9763 bellard
        if (!access_ok(VERIFY_WRITE, frame, sizeof(*frame)))
583 66fb9763 bellard
                goto give_sigsegv;
584 66fb9763 bellard
#endif
585 66fb9763 bellard
        err |= __put_user((/*current->exec_domain
586 66fb9763 bellard
                           && current->exec_domain->signal_invmap
587 66fb9763 bellard
                           && sig < 32
588 66fb9763 bellard
                           ? current->exec_domain->signal_invmap[sig]
589 66fb9763 bellard
                           : */ sig),
590 66fb9763 bellard
                          &frame->sig);
591 66fb9763 bellard
        if (err)
592 66fb9763 bellard
                goto give_sigsegv;
593 66fb9763 bellard
594 66fb9763 bellard
        setup_sigcontext(&frame->sc, &frame->fpstate, env, set->sig[0]);
595 66fb9763 bellard
        if (err)
596 66fb9763 bellard
                goto give_sigsegv;
597 66fb9763 bellard
598 66fb9763 bellard
        if (TARGET_NSIG_WORDS > 1) {
599 66fb9763 bellard
                err |= __copy_to_user(frame->extramask, &set->sig[1],
600 66fb9763 bellard
                                      sizeof(frame->extramask));
601 66fb9763 bellard
        }
602 66fb9763 bellard
        if (err)
603 66fb9763 bellard
                goto give_sigsegv;
604 66fb9763 bellard
605 66fb9763 bellard
        /* Set up to return from userspace.  If provided, use a stub
606 66fb9763 bellard
           already in userspace.  */
607 66fb9763 bellard
        if (ka->sa.sa_flags & TARGET_SA_RESTORER) {
608 66fb9763 bellard
                err |= __put_user(ka->sa.sa_restorer, &frame->pretcode);
609 66fb9763 bellard
        } else {
610 66fb9763 bellard
                err |= __put_user(frame->retcode, &frame->pretcode);
611 66fb9763 bellard
                /* This is popl %eax ; movl $,%eax ; int $0x80 */
612 66fb9763 bellard
                err |= __put_user(0xb858, (short *)(frame->retcode+0));
613 66fb9763 bellard
                err |= __put_user(TARGET_NR_sigreturn, (int *)(frame->retcode+2));
614 66fb9763 bellard
                err |= __put_user(0x80cd, (short *)(frame->retcode+6));
615 66fb9763 bellard
        }
616 66fb9763 bellard
617 66fb9763 bellard
        if (err)
618 66fb9763 bellard
                goto give_sigsegv;
619 66fb9763 bellard
620 66fb9763 bellard
        /* Set up registers for signal handler */
621 66fb9763 bellard
        env->regs[R_ESP] = (unsigned long) frame;
622 66fb9763 bellard
        env->eip = (unsigned long) ka->sa._sa_handler;
623 66fb9763 bellard
624 66fb9763 bellard
        cpu_x86_load_seg(env, R_DS, __USER_DS);
625 66fb9763 bellard
        cpu_x86_load_seg(env, R_ES, __USER_DS);
626 66fb9763 bellard
        cpu_x86_load_seg(env, R_SS, __USER_DS);
627 66fb9763 bellard
        cpu_x86_load_seg(env, R_CS, __USER_CS);
628 66fb9763 bellard
        env->eflags &= ~TF_MASK;
629 66fb9763 bellard
630 66fb9763 bellard
        return;
631 66fb9763 bellard
632 66fb9763 bellard
give_sigsegv:
633 66fb9763 bellard
        if (sig == TARGET_SIGSEGV)
634 66fb9763 bellard
                ka->sa._sa_handler = TARGET_SIG_DFL;
635 66fb9763 bellard
        force_sig(TARGET_SIGSEGV /* , current */);
636 66fb9763 bellard
}
637 66fb9763 bellard
638 9de5e440 bellard
static void setup_rt_frame(int sig, struct emulated_sigaction *ka, 
639 9de5e440 bellard
                           target_siginfo_t *info,
640 66fb9763 bellard
                           target_sigset_t *set, CPUX86State *env)
641 66fb9763 bellard
{
642 66fb9763 bellard
        struct rt_sigframe *frame;
643 66fb9763 bellard
        int err = 0;
644 66fb9763 bellard
645 66fb9763 bellard
        frame = get_sigframe(ka, env, sizeof(*frame));
646 66fb9763 bellard
647 66fb9763 bellard
#if 0
648 66fb9763 bellard
        if (!access_ok(VERIFY_WRITE, frame, sizeof(*frame)))
649 66fb9763 bellard
                goto give_sigsegv;
650 66fb9763 bellard
#endif
651 66fb9763 bellard
652 66fb9763 bellard
        err |= __put_user((/*current->exec_domain
653 66fb9763 bellard
                               && current->exec_domain->signal_invmap
654 66fb9763 bellard
                               && sig < 32
655 66fb9763 bellard
                               ? current->exec_domain->signal_invmap[sig]
656 66fb9763 bellard
                           : */sig),
657 66fb9763 bellard
                          &frame->sig);
658 66fb9763 bellard
        err |= __put_user((target_ulong)&frame->info, &frame->pinfo);
659 66fb9763 bellard
        err |= __put_user((target_ulong)&frame->uc, &frame->puc);
660 66fb9763 bellard
        err |= copy_siginfo_to_user(&frame->info, info);
661 66fb9763 bellard
        if (err)
662 66fb9763 bellard
                goto give_sigsegv;
663 31e31b8a bellard
664 66fb9763 bellard
        /* Create the ucontext.  */
665 66fb9763 bellard
        err |= __put_user(0, &frame->uc.uc_flags);
666 66fb9763 bellard
        err |= __put_user(0, &frame->uc.uc_link);
667 66fb9763 bellard
        err |= __put_user(/*current->sas_ss_sp*/ 0, &frame->uc.uc_stack.ss_sp);
668 66fb9763 bellard
        err |= __put_user(/* sas_ss_flags(regs->esp) */ 0,
669 66fb9763 bellard
                          &frame->uc.uc_stack.ss_flags);
670 66fb9763 bellard
        err |= __put_user(/* current->sas_ss_size */ 0, &frame->uc.uc_stack.ss_size);
671 66fb9763 bellard
        err |= setup_sigcontext(&frame->uc.uc_mcontext, &frame->fpstate,
672 66fb9763 bellard
                                env, set->sig[0]);
673 66fb9763 bellard
        err |= __copy_to_user(&frame->uc.uc_sigmask, set, sizeof(*set));
674 66fb9763 bellard
        if (err)
675 66fb9763 bellard
                goto give_sigsegv;
676 31e31b8a bellard
677 66fb9763 bellard
        /* Set up to return from userspace.  If provided, use a stub
678 66fb9763 bellard
           already in userspace.  */
679 66fb9763 bellard
        if (ka->sa.sa_flags & TARGET_SA_RESTORER) {
680 66fb9763 bellard
                err |= __put_user(ka->sa.sa_restorer, &frame->pretcode);
681 66fb9763 bellard
        } else {
682 66fb9763 bellard
                err |= __put_user(frame->retcode, &frame->pretcode);
683 66fb9763 bellard
                /* This is movl $,%eax ; int $0x80 */
684 66fb9763 bellard
                err |= __put_user(0xb8, (char *)(frame->retcode+0));
685 66fb9763 bellard
                err |= __put_user(TARGET_NR_rt_sigreturn, (int *)(frame->retcode+1));
686 66fb9763 bellard
                err |= __put_user(0x80cd, (short *)(frame->retcode+5));
687 66fb9763 bellard
        }
688 66fb9763 bellard
689 66fb9763 bellard
        if (err)
690 66fb9763 bellard
                goto give_sigsegv;
691 66fb9763 bellard
692 66fb9763 bellard
        /* Set up registers for signal handler */
693 66fb9763 bellard
        env->regs[R_ESP] = (unsigned long) frame;
694 66fb9763 bellard
        env->eip = (unsigned long) ka->sa._sa_handler;
695 66fb9763 bellard
696 66fb9763 bellard
        cpu_x86_load_seg(env, R_DS, __USER_DS);
697 66fb9763 bellard
        cpu_x86_load_seg(env, R_ES, __USER_DS);
698 66fb9763 bellard
        cpu_x86_load_seg(env, R_SS, __USER_DS);
699 66fb9763 bellard
        cpu_x86_load_seg(env, R_CS, __USER_CS);
700 66fb9763 bellard
        env->eflags &= ~TF_MASK;
701 66fb9763 bellard
702 66fb9763 bellard
        return;
703 66fb9763 bellard
704 66fb9763 bellard
give_sigsegv:
705 66fb9763 bellard
        if (sig == TARGET_SIGSEGV)
706 66fb9763 bellard
                ka->sa._sa_handler = TARGET_SIG_DFL;
707 66fb9763 bellard
        force_sig(TARGET_SIGSEGV /* , current */);
708 66fb9763 bellard
}
709 66fb9763 bellard
710 66fb9763 bellard
static int
711 66fb9763 bellard
restore_sigcontext(CPUX86State *env, struct target_sigcontext *sc, int *peax)
712 66fb9763 bellard
{
713 66fb9763 bellard
        unsigned int err = 0;
714 66fb9763 bellard
715 66fb9763 bellard
716 66fb9763 bellard
        
717 66fb9763 bellard
#define COPY(x)                err |= __get_user(regs->x, &sc->x)
718 66fb9763 bellard
719 66fb9763 bellard
#define COPY_SEG(seg)                                                        \
720 66fb9763 bellard
        { unsigned short tmp;                                                \
721 66fb9763 bellard
          err |= __get_user(tmp, &sc->seg);                                \
722 66fb9763 bellard
          regs->x##seg = tmp; }
723 66fb9763 bellard
724 66fb9763 bellard
#define COPY_SEG_STRICT(seg)                                                \
725 66fb9763 bellard
        { unsigned short tmp;                                                \
726 66fb9763 bellard
          err |= __get_user(tmp, &sc->seg);                                \
727 66fb9763 bellard
          regs->x##seg = tmp|3; }
728 66fb9763 bellard
729 66fb9763 bellard
#define GET_SEG(seg)                                                        \
730 66fb9763 bellard
        { unsigned short tmp;                                                \
731 66fb9763 bellard
          err |= __get_user(tmp, &sc->seg);                                \
732 66fb9763 bellard
          loadsegment(seg,tmp); }
733 66fb9763 bellard
734 66fb9763 bellard
        cpu_x86_load_seg(env, R_GS, lduw(&sc->gs));
735 66fb9763 bellard
        cpu_x86_load_seg(env, R_FS, lduw(&sc->fs));
736 66fb9763 bellard
        cpu_x86_load_seg(env, R_ES, lduw(&sc->es));
737 66fb9763 bellard
        cpu_x86_load_seg(env, R_DS, lduw(&sc->ds));
738 66fb9763 bellard
739 66fb9763 bellard
        env->regs[R_EDI] = ldl(&sc->edi);
740 66fb9763 bellard
        env->regs[R_ESI] = ldl(&sc->esi);
741 66fb9763 bellard
        env->regs[R_EBP] = ldl(&sc->ebp);
742 66fb9763 bellard
        env->regs[R_ESP] = ldl(&sc->esp);
743 66fb9763 bellard
        env->regs[R_EBX] = ldl(&sc->ebx);
744 66fb9763 bellard
        env->regs[R_EDX] = ldl(&sc->edx);
745 66fb9763 bellard
        env->regs[R_ECX] = ldl(&sc->ecx);
746 66fb9763 bellard
        env->eip = ldl(&sc->eip);
747 66fb9763 bellard
748 66fb9763 bellard
        cpu_x86_load_seg(env, R_CS, lduw(&sc->cs) | 3);
749 66fb9763 bellard
        cpu_x86_load_seg(env, R_SS, lduw(&sc->ss) | 3);
750 66fb9763 bellard
        
751 66fb9763 bellard
        {
752 66fb9763 bellard
                unsigned int tmpflags;
753 66fb9763 bellard
                tmpflags = ldl(&sc->eflags);
754 66fb9763 bellard
                env->eflags = (env->eflags & ~0x40DD5) | (tmpflags & 0x40DD5);
755 66fb9763 bellard
                //                regs->orig_eax = -1;                /* disable syscall checks */
756 66fb9763 bellard
        }
757 66fb9763 bellard
758 66fb9763 bellard
#if 0
759 66fb9763 bellard
        {
760 66fb9763 bellard
                struct _fpstate * buf;
761 66fb9763 bellard
                err |= __get_user(buf, &sc->fpstate);
762 66fb9763 bellard
                if (buf) {
763 66fb9763 bellard
                        if (verify_area(VERIFY_READ, buf, sizeof(*buf)))
764 66fb9763 bellard
                                goto badframe;
765 66fb9763 bellard
                        err |= restore_i387(buf);
766 66fb9763 bellard
                }
767 66fb9763 bellard
        }
768 66fb9763 bellard
#endif
769 66fb9763 bellard
        *peax = ldl(&sc->eax);
770 66fb9763 bellard
        return err;
771 66fb9763 bellard
#if 0
772 66fb9763 bellard
badframe:
773 66fb9763 bellard
        return 1;
774 66fb9763 bellard
#endif
775 66fb9763 bellard
}
776 66fb9763 bellard
777 66fb9763 bellard
long do_sigreturn(CPUX86State *env)
778 66fb9763 bellard
{
779 66fb9763 bellard
    struct sigframe *frame = (struct sigframe *)(env->regs[R_ESP] - 8);
780 66fb9763 bellard
    target_sigset_t target_set;
781 66fb9763 bellard
    sigset_t set;
782 66fb9763 bellard
    int eax, i;
783 66fb9763 bellard
784 66fb9763 bellard
    /* set blocked signals */
785 66fb9763 bellard
    target_set.sig[0] = frame->sc.oldmask;
786 66fb9763 bellard
    for(i = 1; i < TARGET_NSIG_WORDS; i++)
787 66fb9763 bellard
        target_set.sig[i] = frame->extramask[i - 1];
788 66fb9763 bellard
789 66fb9763 bellard
    target_to_host_sigset(&set, &target_set);
790 66fb9763 bellard
    sigprocmask(SIG_SETMASK, &set, NULL);
791 66fb9763 bellard
    
792 66fb9763 bellard
    /* restore registers */
793 66fb9763 bellard
    if (restore_sigcontext(env, &frame->sc, &eax))
794 66fb9763 bellard
        goto badframe;
795 66fb9763 bellard
    return eax;
796 66fb9763 bellard
797 66fb9763 bellard
badframe:
798 66fb9763 bellard
    force_sig(TARGET_SIGSEGV);
799 66fb9763 bellard
    return 0;
800 66fb9763 bellard
}
801 66fb9763 bellard
802 66fb9763 bellard
long do_rt_sigreturn(CPUX86State *env)
803 66fb9763 bellard
{
804 66fb9763 bellard
        struct rt_sigframe *frame = (struct rt_sigframe *)(env->regs[R_ESP] - 4);
805 66fb9763 bellard
        target_sigset_t target_set;
806 66fb9763 bellard
        sigset_t set;
807 66fb9763 bellard
        //        stack_t st;
808 66fb9763 bellard
        int eax;
809 66fb9763 bellard
810 66fb9763 bellard
#if 0
811 66fb9763 bellard
        if (verify_area(VERIFY_READ, frame, sizeof(*frame)))
812 66fb9763 bellard
                goto badframe;
813 66fb9763 bellard
#endif
814 66fb9763 bellard
        memcpy(&target_set, &frame->uc.uc_sigmask, sizeof(target_sigset_t));
815 66fb9763 bellard
816 66fb9763 bellard
        target_to_host_sigset(&set, &target_set);
817 66fb9763 bellard
        sigprocmask(SIG_SETMASK, &set, NULL);
818 66fb9763 bellard
        
819 66fb9763 bellard
        if (restore_sigcontext(env, &frame->uc.uc_mcontext, &eax))
820 66fb9763 bellard
                goto badframe;
821 66fb9763 bellard
822 66fb9763 bellard
#if 0
823 66fb9763 bellard
        if (__copy_from_user(&st, &frame->uc.uc_stack, sizeof(st)))
824 66fb9763 bellard
                goto badframe;
825 66fb9763 bellard
        /* It is more difficult to avoid calling this function than to
826 66fb9763 bellard
           call it and ignore errors.  */
827 66fb9763 bellard
        do_sigaltstack(&st, NULL, regs->esp);
828 66fb9763 bellard
#endif
829 66fb9763 bellard
        return eax;
830 66fb9763 bellard
831 66fb9763 bellard
badframe:
832 66fb9763 bellard
        force_sig(TARGET_SIGSEGV);
833 66fb9763 bellard
        return 0;
834 66fb9763 bellard
}
835 66fb9763 bellard
836 66fb9763 bellard
#endif
837 66fb9763 bellard
838 66fb9763 bellard
void process_pending_signals(void *cpu_env)
839 66fb9763 bellard
{
840 66fb9763 bellard
    int sig;
841 66fb9763 bellard
    target_ulong handler;
842 9de5e440 bellard
    sigset_t set, old_set;
843 9de5e440 bellard
    target_sigset_t target_old_set;
844 66fb9763 bellard
    struct emulated_sigaction *k;
845 66fb9763 bellard
    struct sigqueue *q;
846 66fb9763 bellard
    
847 31e31b8a bellard
    if (!signal_pending)
848 31e31b8a bellard
        return;
849 31e31b8a bellard
850 66fb9763 bellard
    k = sigact_table;
851 66fb9763 bellard
    for(sig = 1; sig <= TARGET_NSIG; sig++) {
852 66fb9763 bellard
        if (k->pending)
853 31e31b8a bellard
            goto handle_signal;
854 66fb9763 bellard
        k++;
855 31e31b8a bellard
    }
856 31e31b8a bellard
    /* if no signal is pending, just return */
857 31e31b8a bellard
    signal_pending = 0;
858 31e31b8a bellard
    return;
859 66fb9763 bellard
860 31e31b8a bellard
 handle_signal:
861 66fb9763 bellard
#ifdef DEBUG_SIGNAL
862 bc8a22cc bellard
    fprintf(stderr, "qemu: process signal %d\n", sig);
863 66fb9763 bellard
#endif
864 66fb9763 bellard
    /* dequeue signal */
865 66fb9763 bellard
    q = k->first;
866 66fb9763 bellard
    k->first = q->next;
867 66fb9763 bellard
    if (!k->first)
868 66fb9763 bellard
        k->pending = 0;
869 66fb9763 bellard
870 66fb9763 bellard
    handler = k->sa._sa_handler;
871 66fb9763 bellard
    if (handler == TARGET_SIG_DFL) {
872 66fb9763 bellard
        /* default handler : ignore some signal. The other are fatal */
873 66fb9763 bellard
        if (sig != TARGET_SIGCHLD && 
874 66fb9763 bellard
            sig != TARGET_SIGURG && 
875 66fb9763 bellard
            sig != TARGET_SIGWINCH) {
876 66fb9763 bellard
            force_sig(sig);
877 66fb9763 bellard
        }
878 66fb9763 bellard
    } else if (handler == TARGET_SIG_IGN) {
879 66fb9763 bellard
        /* ignore sig */
880 66fb9763 bellard
    } else if (handler == TARGET_SIG_ERR) {
881 66fb9763 bellard
        force_sig(sig);
882 66fb9763 bellard
    } else {
883 9de5e440 bellard
        /* compute the blocked signals during the handler execution */
884 9de5e440 bellard
        target_to_host_sigset(&set, &k->sa.sa_mask);
885 9de5e440 bellard
        /* SA_NODEFER indicates that the current signal should not be
886 9de5e440 bellard
           blocked during the handler */
887 9de5e440 bellard
        if (!(k->sa.sa_flags & TARGET_SA_NODEFER))
888 9de5e440 bellard
            sigaddset(&set, target_to_host_signal(sig));
889 9de5e440 bellard
        
890 9de5e440 bellard
        /* block signals in the handler using Linux */
891 9de5e440 bellard
        sigprocmask(SIG_BLOCK, &set, &old_set);
892 9de5e440 bellard
        /* save the previous blocked signal state to restore it at the
893 9de5e440 bellard
           end of the signal execution (see do_sigreturn) */
894 9de5e440 bellard
        host_to_target_sigset(&target_old_set, &old_set);
895 9de5e440 bellard
896 bc8a22cc bellard
        /* if the CPU is in VM86 mode, we restore the 32 bit values */
897 bc8a22cc bellard
#ifdef TARGET_I386
898 bc8a22cc bellard
        {
899 bc8a22cc bellard
            CPUX86State *env = cpu_env;
900 bc8a22cc bellard
            if (env->eflags & VM_MASK)
901 bc8a22cc bellard
                save_v86_state(env);
902 bc8a22cc bellard
        }
903 bc8a22cc bellard
#endif
904 9de5e440 bellard
        /* prepare the stack frame of the virtual CPU */
905 66fb9763 bellard
        if (k->sa.sa_flags & TARGET_SA_SIGINFO)
906 9de5e440 bellard
            setup_rt_frame(sig, k, &q->info, &target_old_set, cpu_env);
907 66fb9763 bellard
        else
908 9de5e440 bellard
            setup_frame(sig, k, &target_old_set, cpu_env);
909 66fb9763 bellard
        if (k->sa.sa_flags & TARGET_SA_RESETHAND)
910 66fb9763 bellard
            k->sa._sa_handler = TARGET_SIG_DFL;
911 31e31b8a bellard
    }
912 66fb9763 bellard
    if (q != &k->info)
913 66fb9763 bellard
        free_sigqueue(q);
914 66fb9763 bellard
}
915 31e31b8a bellard