nm-online: obtain NMClient asynchronously

Before:

  $ time nm-online
  real	0m0.438s
  user	0m0.192s
  sys	0m0.023s

After:

  $ time ./clients/nm-online
  real	0m0.096s
  user	0m0.060s
  sys	0m0.010s
This commit is contained in:
Lubomir Rintel
2016-12-23 14:30:58 +01:00
parent f709393ed4
commit c5f17a97ea

View File

@@ -45,50 +45,70 @@
typedef struct
{
GMainLoop *loop;
NMClient *client;
gboolean exit_no_nm;
gboolean wait_startup;
gint64 start_timestamp_ms;
gint64 end_timestamp_ms;
gint64 progress_step_duration;
gboolean quiet;
} Timeout;
guint retval;
} OnlineData;
static void
quit_if_connected (OnlineData *data)
{
NMState state;
state = nm_client_get_state (data->client);
if (!nm_client_get_nm_running (data->client)) {
if (data->exit_no_nm) {
data->retval = 1;
g_main_loop_quit (data->loop);
}
} else if (data->wait_startup) {
if (!nm_client_get_startup (data->client)) {
data->retval = 0;
g_main_loop_quit (data->loop);
}
} else {
if ( state == NM_STATE_CONNECTED_LOCAL
|| state == NM_STATE_CONNECTED_SITE
|| state == NM_STATE_CONNECTED_GLOBAL) {
data->retval = 0;
g_main_loop_quit (data->loop);
}
}
if (data->exit_no_nm && (state != NM_STATE_CONNECTING)) {
data->retval = 1;
g_main_loop_quit (data->loop);
}
}
static void
client_properties_changed (GObject *object,
GParamSpec *pspec,
gpointer loop)
gpointer user_data)
{
NMClient *client = NM_CLIENT (object);
NMState state;
gboolean wait_startup = GPOINTER_TO_UINT (g_object_get_data (object, WAIT_STARTUP_TAG));
if (!nm_client_get_nm_running (client))
return;
if (wait_startup) {
if (!nm_client_get_startup (client))
g_main_loop_quit (loop);
} else {
state = nm_client_get_state (client);
if ( state == NM_STATE_CONNECTED_LOCAL
|| state == NM_STATE_CONNECTED_SITE
|| state == NM_STATE_CONNECTED_GLOBAL)
g_main_loop_quit (loop);
}
OnlineData *data = user_data;
quit_if_connected (data);
}
static gboolean
handle_timeout (gpointer data)
handle_timeout (gpointer user_data)
{
const Timeout *timeout = data;
const OnlineData *data = user_data;
const gint64 now = g_get_monotonic_time () / (G_USEC_PER_SEC / 1000);
gint64 remaining_ms = timeout->end_timestamp_ms - now;
const gint64 elapsed_ms = now - timeout->start_timestamp_ms;
gint64 remaining_ms = data->end_timestamp_ms - now;
const gint64 elapsed_ms = now - data->start_timestamp_ms;
int progress_next_step_i = 0;
if (!timeout->quiet) {
if (!data->quiet) {
int i;
/* calculate the next step (not the current): floor()+1 */
progress_next_step_i = (elapsed_ms / timeout->progress_step_duration) + 1;
progress_next_step_i = (elapsed_ms / data->progress_step_duration) + 1;
progress_next_step_i = MIN (progress_next_step_i, PROGRESS_STEPS);
g_print ("\r%s", _("Connecting"));
@@ -99,12 +119,12 @@ handle_timeout (gpointer data)
}
if (remaining_ms <= 3) {
if (!timeout->quiet)
if (!data->quiet)
g_print ("\n");
exit (1);
}
if (!timeout->quiet) {
if (!data->quiet) {
gint64 rem;
/* synchronize the timeout with the ticking of the seconds. */
@@ -116,43 +136,56 @@ handle_timeout (gpointer data)
remaining_ms = rem;
/* synchronize the timeout with the steps of the progress bar. */
rem = (progress_next_step_i * timeout->progress_step_duration) - elapsed_ms;
rem = (progress_next_step_i * data->progress_step_duration) - elapsed_ms;
if (rem <= 3)
rem = rem + timeout->progress_step_duration;
rem = rem + data->progress_step_duration;
rem = rem + 10; /* add small offset to awake a bit after the time out */
if (remaining_ms > rem)
remaining_ms = rem;
}
g_timeout_add (remaining_ms, handle_timeout, (void *) timeout);
g_timeout_add (remaining_ms, handle_timeout, user_data);
return G_SOURCE_REMOVE;
}
static void
got_client (GObject *source_object, GAsyncResult *res, gpointer user_data)
{
OnlineData *data = user_data;
GError *error = NULL;
data->client = nm_client_new_finish (res, &error);
if (!data->client) {
g_printerr (_("Error: Could not create NMClient object: %s."),
error->message);
g_error_free (error);
data->retval = 1;
g_main_loop_quit (data->loop);
}
g_signal_connect (data->client, "notify",
G_CALLBACK (client_properties_changed), user_data);
quit_if_connected (data);
}
int
main (int argc, char *argv[])
{
OnlineData data = { 0, };
int t_secs = 30;
gboolean exit_no_nm = FALSE;
gboolean wait_startup = FALSE;
Timeout timeout;
GOptionContext *opt_ctx = NULL;
gboolean success;
NMClient *client;
NMState state = NM_STATE_UNKNOWN;
GMainLoop *loop;
gint64 remaining_ms;
GError *error = NULL;
GOptionEntry options[] = {
{"timeout", 't', 0, G_OPTION_ARG_INT, &t_secs, N_("Time to wait for a connection, in seconds (without the option, default value is 30)"), "<timeout>"},
{"exit", 'x', 0, G_OPTION_ARG_NONE, &exit_no_nm, N_("Exit immediately if NetworkManager is not running or connecting"), NULL},
{"quiet", 'q', 0, G_OPTION_ARG_NONE, &timeout.quiet, N_("Don't print anything"), NULL},
{"wait-for-startup", 's', 0, G_OPTION_ARG_NONE, &wait_startup, N_("Wait for NetworkManager startup instead of a connection"), NULL},
{"exit", 'x', 0, G_OPTION_ARG_NONE, &data.exit_no_nm, N_("Exit immediately if NetworkManager is not running or connecting"), NULL},
{"quiet", 'q', 0, G_OPTION_ARG_NONE, &data.quiet, N_("Don't print anything"), NULL},
{"wait-for-startup", 's', 0, G_OPTION_ARG_NONE, &data.wait_startup, N_("Wait for NetworkManager startup instead of a connection"), NULL},
{NULL}
};
timeout.start_timestamp_ms = g_get_monotonic_time () / (G_USEC_PER_SEC / 1000);
timeout.quiet = FALSE;
data.start_timestamp_ms = g_get_monotonic_time () / (G_USEC_PER_SEC / 1000);
/* Set locale to be able to use environment variables */
setlocale (LC_ALL, "");
@@ -184,62 +217,21 @@ main (int argc, char *argv[])
_("Invalid option. Please use --help to see a list of valid options."));
return 2;
}
remaining_ms = t_secs * 1000;
nm_g_type_init ();
client = nm_client_new (NULL, &error);
if (!client) {
g_printerr (_("Error: Could not create NMClient object: %s."), error->message);
g_error_free (error);
return 2;
}
loop = g_main_loop_new (NULL, FALSE);
g_object_set_data (G_OBJECT (client), WAIT_STARTUP_TAG, GUINT_TO_POINTER (wait_startup));
state = nm_client_get_state (client);
if (!nm_client_get_nm_running (client)) {
if (exit_no_nm) {
g_object_unref (client);
return 1;
}
} else if (wait_startup) {
if (!nm_client_get_startup (client)) {
g_object_unref (client);
return 0;
}
} else {
if ( state == NM_STATE_CONNECTED_LOCAL
|| state == NM_STATE_CONNECTED_SITE
|| state == NM_STATE_CONNECTED_GLOBAL) {
g_object_unref (client);
return 0;
}
}
if (exit_no_nm && (state != NM_STATE_CONNECTING)) {
g_object_unref (client);
return 1;
}
if (remaining_ms == 0) {
g_object_unref (client);
return 1;
}
g_signal_connect (client, "notify",
G_CALLBACK (client_properties_changed), loop);
timeout.end_timestamp_ms = timeout.start_timestamp_ms + remaining_ms;
timeout.progress_step_duration = (timeout.end_timestamp_ms - timeout.start_timestamp_ms + PROGRESS_STEPS/2) / PROGRESS_STEPS;
g_timeout_add (timeout.quiet ? remaining_ms : 0,
handle_timeout, &timeout);
g_main_loop_run (loop);
g_main_loop_unref (loop);
g_object_unref (client);
return 0;
data.loop = g_main_loop_new (NULL, FALSE);
remaining_ms = t_secs * 1000;
data.end_timestamp_ms = data.start_timestamp_ms + remaining_ms;
data.progress_step_duration = (data.end_timestamp_ms - data.start_timestamp_ms + PROGRESS_STEPS/2) / PROGRESS_STEPS;
g_timeout_add (data.quiet ? remaining_ms : 0, handle_timeout, &data);
nm_client_new_async (NULL, got_client, &data);
g_main_loop_run (data.loop);
g_main_loop_unref (data.loop);
if (data.client)
g_object_unref (data.client);
return data.retval;
}