mirror of
https://github.com/MidnightCommander/mc
synced 2024-12-22 20:36:50 +03:00
93b539444b
Signed-off-by: Yury V. Zaytsev <yury@shurup.com>
322 lines
9.8 KiB
C
322 lines
9.8 KiB
C
/*
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lib - common code for testing lib/utilinux:my_system() function
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Copyright (C) 2013-2024
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Free Software Foundation, Inc.
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Written by:
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Slava Zanko <slavazanko@gmail.com>, 2013
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This file is part of the Midnight Commander.
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The Midnight Commander is free software: you can redistribute it
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and/or modify it under the terms of the GNU General Public License as
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published by the Free Software Foundation, either version 3 of the License,
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or (at your option) any later version.
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The Midnight Commander 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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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <signal.h>
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#include <unistd.h>
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#include "lib/vfs/vfs.h"
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/* --------------------------------------------------------------------------------------------- */
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/* @CapturedValue */
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static sigset_t *sigemptyset_set__captured;
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/* @ThenReturnValue */
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static int sigemptyset__return_value = 0;
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#ifdef sigemptyset
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#undef sigemptyset
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#endif
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/* @Mock */
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int
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sigemptyset (sigset_t *set)
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{
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sigemptyset_set__captured = set;
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return sigemptyset__return_value;
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}
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/* --------------------------------------------------------------------------------------------- */
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/* @CapturedValue */
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static GPtrArray *sigaction_signum__captured = NULL;
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/* @CapturedValue */
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static GPtrArray *sigaction_act__captured = NULL;
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/* @CapturedValue */
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static GPtrArray *sigaction_oldact__captured = NULL;
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/* @ThenReturnValue */
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static int sigaction__return_value = 0;
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/* @Mock */
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int
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my_sigaction (int signum, const struct sigaction *act, struct sigaction *oldact)
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{
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int *tmp_signum;
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struct sigaction *tmp_act;
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/* store signum */
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tmp_signum = g_new (int, 1);
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memcpy (tmp_signum, &signum, sizeof (*tmp_signum));
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if (sigaction_signum__captured != NULL)
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g_ptr_array_add (sigaction_signum__captured, tmp_signum);
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/* store act */
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if (act != NULL)
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{
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tmp_act = g_new (struct sigaction, 1);
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memcpy (tmp_act, act, sizeof (*tmp_act));
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}
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else
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tmp_act = NULL;
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if (sigaction_act__captured != NULL)
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g_ptr_array_add (sigaction_act__captured, tmp_act);
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/* store oldact */
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if (oldact != NULL)
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{
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tmp_act = g_new (struct sigaction, 1);
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memcpy (tmp_act, oldact, sizeof (*tmp_act));
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}
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else
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tmp_act = NULL;
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if (sigaction_oldact__captured != NULL)
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g_ptr_array_add (sigaction_oldact__captured, tmp_act);
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return sigaction__return_value;
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}
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static void
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sigaction__init (void)
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{
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sigaction_signum__captured = g_ptr_array_new_with_free_func (g_free);
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sigaction_act__captured = g_ptr_array_new_with_free_func (g_free);
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sigaction_oldact__captured = g_ptr_array_new_with_free_func (g_free);
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}
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static void
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sigaction__deinit (void)
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{
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g_ptr_array_free (sigaction_signum__captured, TRUE);
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sigaction_signum__captured = NULL;
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g_ptr_array_free (sigaction_act__captured, TRUE);
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sigaction_act__captured = NULL;
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g_ptr_array_free (sigaction_oldact__captured, TRUE);
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sigaction_oldact__captured = NULL;
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}
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/* --------------------------------------------------------------------------------------------- */
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/* @CapturedValue */
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static GPtrArray *signal_signum__captured;
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/* @CapturedValue */
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static GPtrArray *signal_handler__captured;
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/* @ThenReturnValue */
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static sighandler_t signal__return_value = NULL;
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/* @Mock */
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sighandler_t
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my_signal (int signum, sighandler_t handler)
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{
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int *tmp_signum;
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sighandler_t *tmp_handler;
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/* store signum */
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tmp_signum = g_new (int, 1);
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memcpy (tmp_signum, &signum, sizeof (*tmp_signum));
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g_ptr_array_add (signal_signum__captured, tmp_signum);
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/* store handler */
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if (handler != SIG_DFL)
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{
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tmp_handler = g_new (sighandler_t, 1);
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memcpy (tmp_handler, handler, sizeof (*tmp_handler));
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}
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else
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tmp_handler = (void *) SIG_DFL;
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g_ptr_array_add (signal_handler__captured, tmp_handler);
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return signal__return_value;
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}
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static void
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signal__init (void)
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{
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signal_signum__captured = g_ptr_array_new_with_free_func (g_free);
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signal_handler__captured = g_ptr_array_new_with_free_func (g_free);
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}
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static void
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signal__deinit (void)
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{
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g_ptr_array_free (signal_signum__captured, TRUE);
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signal_signum__captured = NULL;
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g_ptr_array_free (signal_handler__captured, TRUE);
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signal_handler__captured = NULL;
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}
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/* --------------------------------------------------------------------------------------------- */
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/* @ThenReturnValue */
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static pid_t fork__return_value;
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/* @Mock */
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pid_t
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my_fork (void)
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{
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return fork__return_value;
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}
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/* --------------------------------------------------------------------------------------------- */
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/* @CapturedValue */
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static int my_exit__status__captured;
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/* @Mock */
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void
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my_exit (int status)
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{
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my_exit__status__captured = status;
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}
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/* --------------------------------------------------------------------------------------------- */
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/* @CapturedValue */
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static char *execvp__file__captured = NULL;
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/* @CapturedValue */
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static GPtrArray *execvp__args__captured;
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/* @ThenReturnValue */
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static int execvp__return_value = 0;
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/* @Mock */
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int
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my_execvp (const char *file, char *const argv[])
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{
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char **one_arg;
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execvp__file__captured = g_strdup (file);
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for (one_arg = (char **) argv; *one_arg != NULL; one_arg++)
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g_ptr_array_add (execvp__args__captured, g_strdup (*one_arg));
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return execvp__return_value;
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}
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static void
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execvp__init (void)
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{
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execvp__args__captured = g_ptr_array_new_with_free_func (g_free);
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}
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static void
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execvp__deinit (void)
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{
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g_ptr_array_free (execvp__args__captured, TRUE);
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execvp__args__captured = NULL;
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MC_PTR_FREE (execvp__file__captured);
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}
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/* --------------------------------------------------------------------------------------------- */
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#define VERIFY_SIGACTION__ACT_IGNORED(_pntr) { \
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struct sigaction *_act = (struct sigaction *) _pntr; \
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mctest_assert_ptr_eq (_act->sa_handler, SIG_IGN); \
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ck_assert_int_eq (_act->sa_flags, 0); \
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}
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#define VERIFY_SIGACTION__IS_RESTORED(oldact_idx, act_idx) { \
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struct sigaction *_oldact = (struct sigaction *) g_ptr_array_index(sigaction_oldact__captured, oldact_idx); \
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struct sigaction *_act = (struct sigaction *) g_ptr_array_index(sigaction_act__captured, act_idx); \
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ck_assert_msg (memcmp(_oldact, _act, sizeof(struct sigaction)) == 0, \
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"sigaction(): oldact[%d] should be equals to act[%d]", oldact_idx, act_idx); \
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}
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/* @Verify */
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#define VERIFY_SIGACTION_CALLS() { \
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ck_assert_int_eq (sigaction_signum__captured->len, 6); \
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\
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ck_assert_int_eq (*((int *) g_ptr_array_index(sigaction_signum__captured, 0)), SIGINT); \
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ck_assert_int_eq (*((int *) g_ptr_array_index(sigaction_signum__captured, 1)), SIGQUIT); \
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ck_assert_int_eq (*((int *) g_ptr_array_index(sigaction_signum__captured, 2)), SIGTSTP); \
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ck_assert_int_eq (*((int *) g_ptr_array_index(sigaction_signum__captured, 3)), SIGINT); \
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ck_assert_int_eq (*((int *) g_ptr_array_index(sigaction_signum__captured, 4)), SIGQUIT); \
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ck_assert_int_eq (*((int *) g_ptr_array_index(sigaction_signum__captured, 5)), SIGTSTP); \
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\
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VERIFY_SIGACTION__ACT_IGNORED(g_ptr_array_index(sigaction_act__captured, 0)); \
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VERIFY_SIGACTION__ACT_IGNORED(g_ptr_array_index(sigaction_act__captured, 1)); \
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{ \
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struct sigaction *_act = g_ptr_array_index(sigaction_act__captured, 2); \
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ck_assert_msg (memcmp (_act, &startup_handler, sizeof(struct sigaction)) == 0, \
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"The 'act' in third call to sigaction() should be equals to startup_handler"); \
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} \
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\
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VERIFY_SIGACTION__IS_RESTORED (0, 3); \
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VERIFY_SIGACTION__IS_RESTORED (1, 4); \
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VERIFY_SIGACTION__IS_RESTORED (2, 5); \
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\
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ck_assert_msg (g_ptr_array_index(sigaction_oldact__captured, 3) == NULL, \
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"oldact in fourth call to sigaction() should be NULL"); \
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ck_assert_msg (g_ptr_array_index(sigaction_oldact__captured, 4) == NULL, \
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"oldact in fifth call to sigaction() should be NULL"); \
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ck_assert_msg (g_ptr_array_index(sigaction_oldact__captured, 5) == NULL, \
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"oldact in sixth call to sigaction() should be NULL"); \
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}
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/* --------------------------------------------------------------------------------------------- */
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#define VERIFY_SIGNAL_HANDLER_IS_SIG_DFL(_idx) { \
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sighandler_t *tmp_handler = (sighandler_t *) g_ptr_array_index(signal_handler__captured, _idx);\
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mctest_assert_ptr_eq (tmp_handler, (sighandler_t *) SIG_DFL); \
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}
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/* @Verify */
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#define VERIFY_SIGNAL_CALLS() { \
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ck_assert_int_eq (signal_signum__captured->len, 4); \
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ck_assert_int_eq (*((int *) g_ptr_array_index(signal_signum__captured, 0)), SIGINT); \
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ck_assert_int_eq (*((int *) g_ptr_array_index(signal_signum__captured, 1)), SIGQUIT); \
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ck_assert_int_eq (*((int *) g_ptr_array_index(signal_signum__captured, 2)), SIGTSTP); \
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ck_assert_int_eq (*((int *) g_ptr_array_index(signal_signum__captured, 3)), SIGCHLD); \
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\
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VERIFY_SIGNAL_HANDLER_IS_SIG_DFL (0); \
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VERIFY_SIGNAL_HANDLER_IS_SIG_DFL (1); \
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VERIFY_SIGNAL_HANDLER_IS_SIG_DFL (2); \
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VERIFY_SIGNAL_HANDLER_IS_SIG_DFL (3); \
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}
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/* --------------------------------------------------------------------------------------------- */
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/* @Before */
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static void
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setup (void)
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{
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signal__return_value = NULL;
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sigaction__init ();
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signal__init ();
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execvp__init ();
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}
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/* --------------------------------------------------------------------------------------------- */
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/* @After */
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static void
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teardown (void)
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{
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execvp__deinit ();
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signal__deinit ();
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sigaction__deinit ();
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}
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/* --------------------------------------------------------------------------------------------- */
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