#define READLINE_LIBRARY
#if defined (HAVE_CONFIG_H)
# include <config.h>
#endif
#include <stdio.h>
#include <sys/types.h>
#include <signal.h>
#if defined (HAVE_UNISTD_H)
# include <unistd.h>
#endif
#include "rldefs.h"
#if defined (GWINSZ_IN_SYS_IOCTL)
# include <sys/ioctl.h>
#endif
#include "readline.h"
#include "history.h"
#include "rlprivate.h"
#if defined (HANDLE_SIGNALS)
#define SIGHANDLER_RETURN return
typedef void SigHandler (int);
#if defined (HAVE_POSIX_SIGNALS)
typedef struct sigaction sighandler_cxt;
# define rl_sigaction(s, nh, oh) sigaction(s, nh, oh)
#else
typedef struct { SigHandler *sa_handler; int sa_mask, sa_flags; } sighandler_cxt;
# define sigemptyset(m)
#endif
#ifndef SA_RESTART
# define SA_RESTART 0
#endif
static SigHandler *rl_set_sighandler (int, SigHandler *, sighandler_cxt *);
static void rl_maybe_set_sighandler (int, SigHandler *, sighandler_cxt *);
static void rl_maybe_restore_sighandler (int, sighandler_cxt *);
static void rl_signal_handler (int);
static void _rl_handle_signal (int);
int rl_catch_signals = 1;
#ifdef SIGWINCH
int rl_catch_sigwinch = 1;
#else
int rl_catch_sigwinch = 0;
#endif
int volatile _rl_caught_signal = 0;
int volatile _rl_handling_signal = 0;
int _rl_echoctl = 0;
int _rl_intr_char = 0;
int _rl_quit_char = 0;
int _rl_susp_char = 0;
static int signals_set_flag;
static int sigwinch_set_flag;
#if defined (HAVE_POSIX_SIGNALS)
sigset_t _rl_orig_sigset;
#endif
static sighandler_cxt old_int, old_term, old_hup, old_alrm, old_quit;
#if defined (SIGTSTP)
static sighandler_cxt old_tstp, old_ttou, old_ttin;
#endif
#if defined (SIGWINCH)
static sighandler_cxt old_winch;
#endif
_rl_sigcleanup_func_t *_rl_sigcleanup;
void *_rl_sigcleanarg;
void
_rl_signal_handler (int sig)
{
_rl_caught_signal = 0;
#if defined (SIGWINCH)
if (sig == SIGWINCH)
{
RL_SETSTATE(RL_STATE_SIGHANDLER);
_rl_handling_signal = SIGWINCH;
rl_resize_terminal ();
if (rl_signal_event_hook)
(*rl_signal_event_hook) ();
_rl_handling_signal = 0;
RL_UNSETSTATE(RL_STATE_SIGHANDLER);
}
else
#endif
_rl_handle_signal (sig);
SIGHANDLER_RETURN;
}
static void
rl_signal_handler (int sig)
{
_rl_caught_signal = sig;
SIGHANDLER_RETURN;
}
static void
_rl_handle_signal (int sig)
{
int block_sig;
#if defined (HAVE_POSIX_SIGNALS)
sigset_t set, oset;
#else
# if defined (HAVE_BSD_SIGNALS)
long omask;
# else
sighandler_cxt dummy_cxt;
# endif
#endif
RL_SETSTATE(RL_STATE_SIGHANDLER);
_rl_handling_signal = sig;
#if !defined (HAVE_BSD_SIGNALS) && !defined (HAVE_POSIX_SIGNALS)
# if defined (SIGALRM)
if (sig == SIGINT || sig == SIGALRM)
# else
if (sig == SIGINT)
# endif
rl_set_sighandler (sig, SIG_IGN, &dummy_cxt);
#endif
if (_rl_sigcleanup)
{
(*_rl_sigcleanup) (sig, _rl_sigcleanarg);
_rl_sigcleanup = 0;
_rl_sigcleanarg = 0;
}
#if defined (HAVE_POSIX_SIGNALS)
block_sig = 0;
sigemptyset (&set);
sigprocmask (SIG_BLOCK, (sigset_t *)NULL, &set);
#endif
switch (sig)
{
case SIGINT:
_rl_reset_completion_state ();
rl_free_line_state ();
#if defined (READLINE_CALLBACKS)
rl_callback_sigcleanup ();
#endif
#if defined (SIGTSTP)
case SIGTSTP:
case SIGTTIN:
case SIGTTOU:
# if defined (HAVE_POSIX_SIGNALS)
if (block_sig == 0)
{
sigaddset (&set, SIGTTOU);
block_sig = 1;
}
# endif
#endif
#if defined (SIGHUP)
case SIGHUP:
# if defined (_AIX)
if (block_sig == 0)
{
sigaddset (&set, sig);
block_sig = 1;
}
# endif #endif
case SIGTERM:
#if defined (SIGALRM)
case SIGALRM:
if (sig == SIGALRM)
_rl_timeout_handle_sigalrm ();
#endif
#if defined (SIGQUIT)
case SIGQUIT:
#endif
#if defined (HAVE_POSIX_SIGNALS)
if (block_sig)
sigprocmask (SIG_BLOCK, &set, &oset);
#endif
#if defined (READLINE_CALLBACKS)
if (RL_ISSTATE (RL_STATE_CALLBACK) == 0 || rl_persistent_signal_handlers)
#endif
rl_echo_signal_char (sig);
rl_cleanup_after_signal ();
#if defined (HAVE_POSIX_SIGNALS)
if (block_sig)
sigprocmask (SIG_UNBLOCK, &set, &oset);
#endif
#if defined (__EMX__)
signal (sig, SIG_ACK);
#endif
#if defined (HAVE_KILL)
kill (getpid (), sig);
#else
raise (sig);
#endif
rl_reset_after_signal ();
}
_rl_handling_signal = 0;
RL_UNSETSTATE(RL_STATE_SIGHANDLER);
SIGHANDLER_RETURN;
}
#if defined (SIGWINCH)
static void
rl_sigwinch_handler (int sig)
{
SigHandler *oh;
#if defined (MUST_REINSTALL_SIGHANDLERS)
sighandler_cxt dummy_winch;
rl_set_sighandler (SIGWINCH, rl_sigwinch_handler, &dummy_winch);
#endif
RL_SETSTATE(RL_STATE_SIGHANDLER);
_rl_caught_signal = sig;
oh = (SigHandler *)old_winch.sa_handler;
if (oh && oh != (SigHandler *)SIG_IGN && oh != (SigHandler *)SIG_DFL)
(*oh) (sig);
RL_UNSETSTATE(RL_STATE_SIGHANDLER);
SIGHANDLER_RETURN;
}
#endif
#if !defined (HAVE_POSIX_SIGNALS)
static int
rl_sigaction (int sig, sighandler_cxt *nh, sighandler_cxt *oh)
{
oh->sa_handler = signal (sig, nh->sa_handler);
return 0;
}
#endif
static SigHandler *
rl_set_sighandler (int sig, SigHandler *handler, sighandler_cxt *ohandler)
{
sighandler_cxt old_handler;
#if defined (HAVE_POSIX_SIGNALS)
struct sigaction act;
act.sa_handler = handler;
# if defined (SIGWINCH)
act.sa_flags = (sig == SIGWINCH) ? SA_RESTART : 0;
# else
act.sa_flags = 0;
# endif
sigemptyset (&act.sa_mask);
sigemptyset (&ohandler->sa_mask);
sigaction (sig, &act, &old_handler);
#else
old_handler.sa_handler = (SigHandler *)signal (sig, handler);
#endif
if (handler != rl_signal_handler || old_handler.sa_handler != rl_signal_handler)
memcpy (ohandler, &old_handler, sizeof (sighandler_cxt));
return (ohandler->sa_handler);
}
static void
rl_maybe_set_sighandler (int sig, SigHandler *handler, sighandler_cxt *ohandler)
{
sighandler_cxt dummy;
SigHandler *oh;
sigemptyset (&dummy.sa_mask);
dummy.sa_flags = 0;
oh = rl_set_sighandler (sig, handler, ohandler);
if (oh == (SigHandler *)SIG_IGN)
rl_sigaction (sig, ohandler, &dummy);
}
static void
rl_maybe_restore_sighandler (int sig, sighandler_cxt *handler)
{
sighandler_cxt dummy;
sigemptyset (&dummy.sa_mask);
dummy.sa_flags = 0;
if (handler->sa_handler != SIG_IGN)
rl_sigaction (sig, handler, &dummy);
}
int
rl_set_signals (void)
{
sighandler_cxt dummy;
SigHandler *oh;
#if defined (HAVE_POSIX_SIGNALS)
static int sigmask_set = 0;
static sigset_t bset, oset;
#endif
#if defined (HAVE_POSIX_SIGNALS)
if (rl_catch_signals && sigmask_set == 0)
{
sigemptyset (&bset);
sigaddset (&bset, SIGINT);
sigaddset (&bset, SIGTERM);
#if defined (SIGHUP)
sigaddset (&bset, SIGHUP);
#endif
#if defined (SIGQUIT)
sigaddset (&bset, SIGQUIT);
#endif
#if defined (SIGALRM)
sigaddset (&bset, SIGALRM);
#endif
#if defined (SIGTSTP)
sigaddset (&bset, SIGTSTP);
#endif
#if defined (SIGTTIN)
sigaddset (&bset, SIGTTIN);
#endif
#if defined (SIGTTOU)
sigaddset (&bset, SIGTTOU);
#endif
sigmask_set = 1;
}
#endif
if (rl_catch_signals && signals_set_flag == 0)
{
#if defined (HAVE_POSIX_SIGNALS)
sigemptyset (&_rl_orig_sigset);
sigprocmask (SIG_BLOCK, &bset, &_rl_orig_sigset);
#endif
rl_maybe_set_sighandler (SIGINT, rl_signal_handler, &old_int);
rl_maybe_set_sighandler (SIGTERM, rl_signal_handler, &old_term);
#if defined (SIGHUP)
rl_maybe_set_sighandler (SIGHUP, rl_signal_handler, &old_hup);
#endif
#if defined (SIGQUIT)
rl_maybe_set_sighandler (SIGQUIT, rl_signal_handler, &old_quit);
#endif
#if defined (SIGALRM)
oh = rl_set_sighandler (SIGALRM, rl_signal_handler, &old_alrm);
if (oh == (SigHandler *)SIG_IGN)
rl_sigaction (SIGALRM, &old_alrm, &dummy);
#if defined (HAVE_POSIX_SIGNALS) && defined (SA_RESTART)
if (oh != (SigHandler *)SIG_DFL && (old_alrm.sa_flags & SA_RESTART))
rl_sigaction (SIGALRM, &old_alrm, &dummy);
#endif
#endif
#if defined (SIGTSTP)
rl_maybe_set_sighandler (SIGTSTP, rl_signal_handler, &old_tstp);
#endif
#if defined (SIGTTOU)
rl_maybe_set_sighandler (SIGTTOU, rl_signal_handler, &old_ttou);
#endif
#if defined (SIGTTIN)
rl_maybe_set_sighandler (SIGTTIN, rl_signal_handler, &old_ttin);
#endif
signals_set_flag = 1;
#if defined (HAVE_POSIX_SIGNALS)
sigprocmask (SIG_SETMASK, &_rl_orig_sigset, (sigset_t *)NULL);
#endif
}
else if (rl_catch_signals == 0)
{
#if defined (HAVE_POSIX_SIGNALS)
sigemptyset (&_rl_orig_sigset);
sigprocmask (SIG_BLOCK, (sigset_t *)NULL, &_rl_orig_sigset);
#endif
}
#if defined (SIGWINCH)
if (rl_catch_sigwinch && sigwinch_set_flag == 0)
{
rl_maybe_set_sighandler (SIGWINCH, rl_sigwinch_handler, &old_winch);
sigwinch_set_flag = 1;
}
#endif
return 0;
}
int
rl_clear_signals (void)
{
sighandler_cxt dummy;
if (rl_catch_signals && signals_set_flag == 1)
{
rl_maybe_restore_sighandler (SIGINT, &old_int);
rl_maybe_restore_sighandler (SIGTERM, &old_term);
#if defined (SIGHUP)
rl_maybe_restore_sighandler (SIGHUP, &old_hup);
#endif
#if defined (SIGQUIT)
rl_maybe_restore_sighandler (SIGQUIT, &old_quit);
#endif
#if defined (SIGALRM)
rl_maybe_restore_sighandler (SIGALRM, &old_alrm);
#endif
#if defined (SIGTSTP)
rl_maybe_restore_sighandler (SIGTSTP, &old_tstp);
#endif
#if defined (SIGTTOU)
rl_maybe_restore_sighandler (SIGTTOU, &old_ttou);
#endif
#if defined (SIGTTIN)
rl_maybe_restore_sighandler (SIGTTIN, &old_ttin);
#endif
signals_set_flag = 0;
}
#if defined (SIGWINCH)
if (rl_catch_sigwinch && sigwinch_set_flag == 1)
{
sigemptyset (&dummy.sa_mask);
rl_sigaction (SIGWINCH, &old_winch, &dummy);
sigwinch_set_flag = 0;
}
#endif
return 0;
}
void
rl_cleanup_after_signal (void)
{
_rl_clean_up_for_exit ();
if (rl_deprep_term_function)
(*rl_deprep_term_function) ();
rl_clear_pending_input ();
rl_clear_signals ();
}
void
rl_reset_after_signal (void)
{
if (rl_prep_term_function)
(*rl_prep_term_function) (_rl_meta_flag);
rl_set_signals ();
}
void
_rl_state_sigcleanup (void)
{
if (RL_ISSTATE (RL_STATE_ISEARCH))
_rl_isearch_cleanup (_rl_iscxt, 0);
else if (RL_ISSTATE (RL_STATE_NSEARCH))
_rl_nsearch_sigcleanup (_rl_nscxt, 0);
else if (RL_ISSTATE (RL_STATE_READSTR))
_rl_readstr_sigcleanup (_rl_rscxt, 0);
}
void
rl_free_line_state (void)
{
register HIST_ENTRY *entry;
if (RL_ISSTATE (RL_STATE_CALLBACK) == 0)
_rl_state_sigcleanup ();
rl_free_undo_list ();
entry = current_history ();
if (entry)
entry->data = (char *)NULL;
_rl_kill_kbd_macro ();
rl_clear_message ();
_rl_reset_argument ();
}
int
rl_pending_signal (void)
{
return (_rl_caught_signal);
}
void
rl_check_signals (void)
{
RL_CHECK_SIGNALS ();
}
#endif
#if defined (HAVE_POSIX_SIGNALS)
static sigset_t sigwinch_set, sigwinch_oset;
#else
# if defined (HAVE_BSD_SIGNALS)
static int sigint_oldmask;
static int sigwinch_oldmask;
# endif
#endif
static int sigint_blocked;
static int sigwinch_blocked;
void
_rl_block_sigint (void)
{
if (sigint_blocked)
return;
sigint_blocked = 1;
}
void
_rl_release_sigint (void)
{
if (sigint_blocked == 0)
return;
sigint_blocked = 0;
if (RL_ISSTATE (RL_STATE_SIGHANDLER) == 0)
RL_CHECK_SIGNALS ();
}
void
_rl_block_sigwinch (void)
{
if (sigwinch_blocked)
return;
#if defined (SIGWINCH)
#if defined (HAVE_POSIX_SIGNALS)
sigemptyset (&sigwinch_set);
sigemptyset (&sigwinch_oset);
sigaddset (&sigwinch_set, SIGWINCH);
sigprocmask (SIG_BLOCK, &sigwinch_set, &sigwinch_oset);
#else
# if defined (HAVE_BSD_SIGNALS)
sigwinch_oldmask = sigblock (sigmask (SIGWINCH));
# else
# if defined (HAVE_USG_SIGHOLD)
sighold (SIGWINCH);
# endif
# endif
#endif
#endif
sigwinch_blocked = 1;
}
void
_rl_release_sigwinch (void)
{
if (sigwinch_blocked == 0)
return;
#if defined (SIGWINCH)
#if defined (HAVE_POSIX_SIGNALS)
sigprocmask (SIG_SETMASK, &sigwinch_oset, (sigset_t *)NULL);
#else
# if defined (HAVE_BSD_SIGNALS)
sigsetmask (sigwinch_oldmask);
# else
# if defined (HAVE_USG_SIGHOLD)
sigrelse (SIGWINCH);
# endif
# endif
#endif
#endif
sigwinch_blocked = 0;
}
void
rl_echo_signal_char (int sig)
{
char cstr[3];
int cslen, c;
if (_rl_echoctl == 0 || _rl_echo_control_chars == 0)
return;
switch (sig)
{
case SIGINT: c = _rl_intr_char; break;
#if defined (SIGQUIT)
case SIGQUIT: c = _rl_quit_char; break;
#endif
#if defined (SIGTSTP)
case SIGTSTP: c = _rl_susp_char; break;
#endif
default: return;
}
if (CTRL_CHAR (c) || c == RUBOUT)
{
cstr[0] = '^';
cstr[1] = CTRL_CHAR (c) ? UNCTRL (c) : '?';
cstr[cslen = 2] = '\0';
}
else
{
cstr[0] = c;
cstr[cslen = 1] = '\0';
}
_rl_output_some_chars (cstr, cslen);
}