return 1;
}
-int main(int argc, char *argv[]) {
+static int run(int argc, char *argv[]) {
_cleanup_(sd_bus_flush_close_unrefp) sd_bus *bus = NULL;
int r;
log_open();
r = parse_argv(argc, argv);
- if (r < 0)
- return EXIT_FAILURE;
- if (r == 0)
- return EXIT_SUCCESS;
+ if (r <= 0)
+ return r;
r = sd_bus_default_system(&bus);
- if (r < 0) {
- log_error_errno(r, "Failed to connect to bus: %m");
- return EXIT_FAILURE;
- }
+ if (r < 0)
+ return log_error_errno(r, "Failed to connect to bus: %m");
if (arg_action == ACTION_LIST) {
-
r = print_inhibitors(bus);
pager_close();
- if (r < 0)
- return EXIT_FAILURE;
+ return r;
} else {
_cleanup_(sd_bus_error_free) sd_bus_error error = SD_BUS_ERROR_NULL;
arg_mode = "block";
fd = inhibit(bus, &error);
- if (fd < 0) {
- log_error("Failed to inhibit: %s", bus_error_message(&error, fd));
- return EXIT_FAILURE;
- }
+ if (fd < 0)
+ return log_error("Failed to inhibit: %s", bus_error_message(&error, fd));
r = safe_fork("(inhibit)", FORK_RESET_SIGNALS|FORK_DEATHSIG|FORK_CLOSE_ALL_FDS|FORK_LOG, &pid);
if (r < 0)
- return EXIT_FAILURE;
+ return r;
if (r == 0) {
/* Child */
execvp(argv[optind], argv + optind);
_exit(EXIT_FAILURE);
}
- r = wait_for_terminate_and_check(argv[optind], pid, WAIT_LOG);
- return r < 0 ? EXIT_FAILURE : r;
+ return wait_for_terminate_and_check(argv[optind], pid, WAIT_LOG);
}
-
- return EXIT_SUCCESS;
}
+
+DEFINE_MAIN_FUNCTION_WITH_POSITIVE_FAILURE(run);