return sd_event_source_set_enabled(n->timer_event_source, SD_EVENT_ONESHOT);
}
- r = sd_event_add_time(
+ r = sd_event_add_time(
UNIT(n)->manager->event,
&n->timer_event_source,
CLOCK_MONOTONIC,
if (m->notify_fd < 0) {
_cleanup_close_ int fd = -1;
- union sockaddr_union sa = {
+ union sockaddr_union sa = {
.sa.sa_family = AF_UNIX,
};
static const int one = 1;
}
if (s->keep_alive_interval) {
- int value = s->keep_alive_interval / USEC_PER_SEC;
+ int value = s->keep_alive_interval / USEC_PER_SEC;
if (setsockopt(fd, SOL_TCP, TCP_KEEPINTVL, &value, sizeof(value)) < 0)
log_unit_warning_errno(UNIT(s), errno, "TCP_KEEPINTVL failed: %m");
}
/* Don't propagate state changes from the service if we are
already down or accepting connections */
- if ((s->state != SOCKET_RUNNING &&
+ if ((s->state != SOCKET_RUNNING &&
s->state != SOCKET_LISTENING) ||
s->accept)
return;
return r;
*data = (char *) val;
- *data_length = m->container->length;
+ *data_length = m->container->length;
m->container->read_pos += m->container->length;
}
if (cap & LLDP_SYSTEM_CAPABILITIES_ROUTER) {
- s = strjoin(t, lldp_system_capability_to_string(LLDP_SYSTEM_CAPABILITIES_ROUTER), " ", NULL);
+ s = strjoin(t, lldp_system_capability_to_string(LLDP_SYSTEM_CAPABILITIES_ROUTER), " ", NULL);
if (!s)
return NULL;
assert(link);
link->ipv4ll_route = false;
- link->ipv4ll_address = false;
+ link->ipv4ll_address = false;
r = sd_ipv4ll_get_address(link->ipv4ll, &addr);
if (r < 0)
int32_t *ttlp,
char **canonp);
- fallback = (enum nss_status (*)(const char *name,
- int af,
- struct hostent *result,
- char *buffer, size_t buflen,
- int *errnop, int *h_errnop,
- int32_t *ttlp,
- char **canonp))
+ fallback = (enum nss_status (*)(const char *name,
+ int af,
+ struct hostent *result,
+ char *buffer, size_t buflen,
+ int *errnop, int *h_errnop,
+ int32_t *ttlp,
+ char **canonp))
find_fallback("libnss_dns.so.2", "_nss_dns_gethostbyname3_r");
if (fallback)
return fallback(name, af, result, buffer, buflen, errnop, h_errnop, ttlp, canonp);
devicep->length = offsetof(struct device_path, drive) + sizeof(struct drive_path);
devicep->drive.part_nr = part;
devicep->drive.part_start = pstart;
- devicep->drive.part_size = psize;
+ devicep->drive.part_size = psize;
devicep->drive.signature_type = SIGNATURE_TYPE_GUID;
devicep->drive.mbr_type = MBR_TYPE_EFI_PARTITION_TABLE_HEADER;
id128_to_efi_guid(part_uuid, devicep->drive.signature);
if (timeout_warn_usec > 0 && timeout_warn_usec < timeout_usec && age_usec < timeout_warn_usec) {
spawn.timeout_warn = timeout_warn_usec - age_usec;
- r = sd_event_add_time(e, NULL, clock_boottime_or_monotonic(),
- usec + spawn.timeout_warn, USEC_PER_SEC,
- on_spawn_timeout_warning, &spawn);
+ r = sd_event_add_time(e, NULL, clock_boottime_or_monotonic(),
+ usec + spawn.timeout_warn, USEC_PER_SEC,
+ on_spawn_timeout_warning, &spawn);
if (r < 0)
return r;
}
udev_list_entry_foreach(list_entry, udev_device_get_devlinks_list_entry(event->dev)) {
const char *devlink;
- devlink = udev_list_entry_get_name(list_entry) + strlen("/dev/");
+ devlink = udev_list_entry_get_name(list_entry) + strlen("/dev/");
if (match_key(rules, cur, devlink) == 0) {
match = true;
break;
arg_children_max = 8;
if (sched_getaffinity(0, sizeof (cpu_set), &cpu_set) == 0) {
- arg_children_max += CPU_COUNT(&cpu_set) * 2;
+ arg_children_max += CPU_COUNT(&cpu_set) * 2;
}
log_debug("set children_max to %u", arg_children_max);