improving signal handling of the App class
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e8804b20ec
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@ -41,20 +41,22 @@ public:
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App (Mmgr* mmgr) QSE_CPP_NOEXCEPT;
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virtual ~App () QSE_CPP_NOEXCEPT;
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int daemonize (bool chdir_to_root = true, int fork_count = 1) QSE_CPP_NOEXCEPT;
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int daemonize (bool chdir_to_root = true, int fork_count = 1, bool root_only = false) QSE_CPP_NOEXCEPT;
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int chroot (const qse_mchar_t* mpath) QSE_CPP_NOEXCEPT;
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int chroot (const qse_wchar_t* wpath) QSE_CPP_NOEXCEPT;
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#if 0
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int switchUser (uid_t uid, gid_t gid, bool permanently) QSE_CPP_NOEXCEPT;
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int switchUser (qse_uid_t uid, qse_gid_t gid, bool permanently) QSE_CPP_NOEXCEPT;
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int restoreUser () QSE_CPP_NOEXCEPT;
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#endif
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virtual void on_signal (int sig) { }
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int subscribeToSignal (int sig, bool accept);
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int subscribeToAllSignals (bool accept);
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void unsubscribeFromSignal (int sig);
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void unsubscribeFromAllSignals ();
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typedef void (*SignalHandler) (int sig);
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static qse_size_t _sighrs[2][QSE_NSIGS];
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@ -70,17 +72,13 @@ public:
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int guardProcess (const qse_mchar_t* proc_name);
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protected:
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bool _root_only;
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private:
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App* _prev_app;
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App* _next_app;
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public:
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struct _SigLink
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{
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enum
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enum State
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{
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UNHANDLED,
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ACCEPTED,
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@ -90,17 +88,23 @@ public:
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_SigLink(): _prev(QSE_NULL), _next(QSE_NULL), _state(UNHANDLED) {}
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App* _prev;
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App* _next;
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int _state;
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State _state;
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};
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_SigLink _sig[QSE_NSIGS];
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long int _guarded_child_pid;
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protected:
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static int set_signal_handler_no_mutex (int sig, SignalHandler sighr);
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static int unset_signal_handler_no_mutex (int sig);
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int subscribe_to_signal_no_mutex (int sig, _SigLink::State reqstate);
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void unsubscribe_from_signal_no_mutex (int sig);
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void unsubscribe_from_all_signals_no_mutex ();
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void on_guard_signal (int sig);
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static void handle_signal (int sig);
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};
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// functor as a template parameter
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@ -30,6 +30,7 @@
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#include "../cmn/syscall.h"
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#include <qse/cmn/mbwc.h>
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extern "C" { int printf (const char* fmt, ...); }
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/////////////////////////////////
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QSE_BEGIN_NAMESPACE(QSE)
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/////////////////////////////////
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@ -43,7 +44,7 @@ static struct
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int sa_flags;
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} g_app_oldsi[QSE_NSIGS] = { { 0, 0 }, };
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App::App (Mmgr* mmgr) QSE_CPP_NOEXCEPT: Mmged(mmgr), _root_only(false), _prev_app(QSE_NULL), _next_app(QSE_NULL)
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App::App (Mmgr* mmgr) QSE_CPP_NOEXCEPT: Mmged(mmgr), _prev_app(QSE_NULL), _next_app(QSE_NULL), _guarded_child_pid(-1)
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{
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ScopedMutexLocker sml(g_app_mutex);
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if (!g_app_top)
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@ -70,9 +71,9 @@ App::~App () QSE_CPP_NOEXCEPT
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}
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}
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int App::daemonize (bool chdir_to_root, int fork_count) QSE_CPP_NOEXCEPT
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int App::daemonize (bool chdir_to_root, int fork_count, bool root_only) QSE_CPP_NOEXCEPT
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{
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if (this->_root_only && QSE_GETEUID() != 0) return -1;
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if (root_only && QSE_GETEUID() != 0) return -1;
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if (fork_count >= 1)
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{
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@ -269,7 +270,8 @@ int App::unset_signal_handler_no_mutex(int sig)
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return 0;
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}
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static void handle_signal (int sig)
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/*static*/ void App::handle_signal (int sig)
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{
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ScopedMutexLocker sml(g_app_mutex);
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App* app = g_app_sig[sig];
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@ -282,18 +284,75 @@ static void handle_signal (int sig)
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// the actual signal handler is called with the mutex locked.
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// it must not call subscribeToSingal() or unsubscribeFromSingal()
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// from within the handler.
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app->on_signal (sig);
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if (app->_guarded_child_pid >= 0) app->on_guard_signal (sig);
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else app->on_signal (sig);
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}
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app = next;
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}
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}
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void App::on_guard_signal (int sig)
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{
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printf ("relaying %d to %d\n", sig, this->_guarded_child_pid);
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::kill (this->_guarded_child_pid, sig);
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}
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int App::subscribeToSignal (int sig, bool accept)
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{
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QSE_ASSERT (sig >= 0 && sig < QSE_NSIGS);
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int reqstate = accept? _SigLink::ACCEPTED: _SigLink::IGNORED;
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_SigLink::State reqstate = accept? _SigLink::ACCEPTED: _SigLink::IGNORED;
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ScopedMutexLocker sml(g_app_mutex);
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return this->subscribe_to_signal_no_mutex(sig, reqstate);
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}
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int App::subscribeToAllSignals (bool accept)
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{
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_SigLink::State reqstate = accept? _SigLink::ACCEPTED: _SigLink::IGNORED;
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_SigLink::State _old_state[QSE_NSIGS];
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ScopedMutexLocker sml(g_app_mutex);
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for (int i = 0; i < QSE_NSIGS; i++)
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{
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_old_state[i] = this->_sig[i]._state;
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if (this->subscribe_to_signal_no_mutex(i, reqstate) <= -1)
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{
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// roll back on a best-efforts basis.
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while (i > 0)
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{
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--i;
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switch (_old_state[i])
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{
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case _SigLink::UNHANDLED:
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this->unsubscribe_from_signal_no_mutex (i);
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break;
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case _SigLink::ACCEPTED:
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case _SigLink::IGNORED:
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this->subscribe_to_signal_no_mutex (i, _old_state[i]);
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break;
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}
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}
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return -1;
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}
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}
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return 0;
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}
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void App::unsubscribeFromSignal (int sig)
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{
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QSE_ASSERT (sig >= 0 && sig < QSE_NSIGS);
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ScopedMutexLocker sml(g_app_mutex);
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this->unsubscribe_from_signal_no_mutex (sig);
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}
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void App::unsubscribeFromAllSignals ()
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{
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ScopedMutexLocker sml(g_app_mutex);
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this->unsubscribe_from_all_signals_no_mutex ();
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}
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int App::subscribe_to_signal_no_mutex (int sig, _SigLink::State reqstate)
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{
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if (sig == SIGKILL || sig == SIGSTOP) return 0;
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_SigLink& sl = this->_sig[sig];
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if (QSE_LIKELY(sl._state == _SigLink::UNHANDLED))
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@ -315,7 +374,7 @@ int App::subscribeToSignal (int sig, bool accept)
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{
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// no application is set to accept this signal.
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// this is the first time to
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if (App::set_signal_handler_no_mutex(sig, handle_signal) <= -1)
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if (App::set_signal_handler_no_mutex(sig, App::handle_signal) <= -1)
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{
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// roll back
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g_app_sig[sig] = xapp;
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@ -323,6 +382,7 @@ int App::subscribeToSignal (int sig, bool accept)
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sl._state = _SigLink::UNHANDLED;
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sl._next = QSE_NULL;
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QSE_ASSERT (sl._prev == QSE_NULL);
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if (errno == EINVAL) return 0; /// dirty hack???
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return -1;
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}
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}
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@ -339,15 +399,10 @@ int App::subscribeToSignal (int sig, bool accept)
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return 0;
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}
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void App::unsubscribeFromSignal (int sig)
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{
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QSE_ASSERT (sig >= 0 && sig < QSE_NSIGS);
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ScopedMutexLocker sml(g_app_mutex);
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this->unsubscribe_from_signal_no_mutex (sig);
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}
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void App::unsubscribe_from_signal_no_mutex (int sig)
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{
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if (sig == SIGKILL || sig == SIGSTOP) return;
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_SigLink& sl = this->_sig[sig];
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if (QSE_UNLIKELY(sl._state == _SigLink::UNHANDLED))
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{
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@ -382,17 +437,33 @@ void App::unsubscribe_from_all_signals_no_mutex()
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}
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}
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int App::guardProcess (const qse_mchar_t* proc_name)
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int App::guardProcess (const qse_mchar_t* proc_name, /* TODO: get the list of signals to relay??? */)
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{
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// TODO: enhance it
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while (1)
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{
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pid_t pid = ::fork();
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if (pid == -1) return -1;
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if (pid == 0) break; // child
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int _SigLink::State old_sig_states[QSE_NSIGS];
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this->subscribeToAllSignals(true);
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this->_guarded_child_pid = pid;
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int status;
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while (::waitpid(pid, &status, 0) != pid);
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while (::waitpid(pid, &status, 0) != pid)
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{
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// if there is a signal sent to this guarding process,
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// the signal should be relayed to the child process
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// via on_guard_signal().
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// ------------------------------------------------------
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// do nothing inside this loop block.
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// ------------------------------------------------------
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}
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this->_guarded_child_pid = -1;
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// TODO: restore signal handlers to the previous states
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if (WIFEXITED(status) && WEXITSTATUS(status) == 0)
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{
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return 0;
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@ -93,26 +93,24 @@ static int test1()
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QSE::HeapMmgr heap_mmgr (QSE::Mmgr::getDFL(), 30000);
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MyApp app (&heap_mmgr);
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MyApp app2 (&heap_mmgr);
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MyApp app3 (&heap_mmgr);
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MyApp app4 (&heap_mmgr);
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//MyApp app2 (&heap_mmgr);
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//MyApp app3 (&heap_mmgr);
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//MyApp app4 (&heap_mmgr);
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app.subscribeToSignal (SIGINT, true);
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app.subscribeToSignal (SIGTERM, true);
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app4.subscribeToSignal (SIGINT, true);
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app3.subscribeToSignal (SIGINT, true);
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app2.subscribeToSignal (SIGINT, true);
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//app4.subscribeToSignal (SIGINT, true);
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//app3.subscribeToSignal (SIGINT, true);
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//app2.subscribeToSignal (SIGINT, true);
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int n = app.run();
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app.subscribeToSignal (SIGTERM, false);
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app.subscribeToSignal (SIGINT, false);
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app4.unsubscribeFromSignal (SIGINT);
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app3.unsubscribeFromSignal (SIGINT);
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app2.unsubscribeFromSignal (SIGINT);
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//app4.unsubscribeFromSignal (SIGINT);
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//app3.unsubscribeFromSignal (SIGINT);
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//app2.unsubscribeFromSignal (SIGINT);
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return n;
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}
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