blob: a08522077ea95b7f1713948800ef2d88eaf3e3c2 [file] [log] [blame]
#include "interfaces/sensor.h"
#include "openbmc.h"
/* ---------------------------------------------------------------------------------------------------- */
static const gchar* dbus_object_path = "/org/openbmc/sensors/HostStatus";
static const gchar* dbus_name = "org.openbmc.sensors.HostStatus";
static const guint poll_interval = 3000;
static guint heartbeat = 0;
static GDBusObjectManagerServer *manager = NULL;
/*
static gboolean
on_get_units (SensorValue *sen,
GDBusMethodInvocation *invocation,
gpointer user_data)
{
const gchar* val = sensor_value_get_units(sen);
sensor_value_complete_get_units(sen,invocation,val);
return TRUE;
}
static gboolean
on_get (SensorValue *sen,
GDBusMethodInvocation *invocation,
gpointer user_data)
{
guint reading = sensor_value_get_value(sen);
sensor_value_complete_get_value(sen,invocation,reading);
return TRUE;
}
static gboolean
on_set (SensorValue *sen,
GDBusMethodInvocation *invocation,
guint value,
gpointer user_data)
{
GVariant* v = NEW_VARIANT_U(value);
sensor_value_set_value(sen,v);
sensor_value_emit_changed(sen,v,sensor_value_get_units(sen));
sensor_value_complete_set_value(sen,invocation);
return TRUE;
}
*/
static void
on_bus_acquired (GDBusConnection *connection,
const gchar *name,
gpointer user_data)
{
g_print ("Acquired a message bus connection: %s\n",name);
cmdline *cmd = user_data;
if (cmd->argc < 2)
{
g_print("No objects created. Put object name(s) on command line\n");
return;
}
manager = g_dbus_object_manager_server_new (dbus_object_path);
int i=0;
for (i=1;i<cmd->argc;i++)
{
gchar *s;
s = g_strdup_printf ("%s/%s",dbus_object_path,cmd->argv[i]);
ObjectSkeleton *object = object_skeleton_new (s);
g_free (s);
SensorValue *sensor = sensor_value_skeleton_new ();
object_skeleton_set_sensor_value (object, sensor);
g_object_unref (sensor);
//must init variant
GVariant* v = NEW_VARIANT_U(0);
sensor_value_set_value(sensor,v);
// set units
sensor_value_set_units(sensor,"");
//define method callbacks here
//g_signal_connect (sensor,
// "handle-get-value",
// G_CALLBACK (on_get),
// NULL); /* user_data */
//g_signal_connect (sensor,
// "handle-get-units",
// G_CALLBACK (on_get_units),
// NULL); /* user_data */
//g_signal_connect (sensor,
// "handle-set-value",
// G_CALLBACK (on_set),
// NULL); /* user_data */
/* Export the object (@manager takes its own reference to @object) */
g_dbus_object_manager_server_export (manager, G_DBUS_OBJECT_SKELETON (object));
g_object_unref (object);
}
/* Export all objects */
g_dbus_object_manager_server_set_connection (manager, connection);
}
static void
on_name_acquired (GDBusConnection *connection,
const gchar *name,
gpointer user_data)
{
g_print ("Acquired the name %s\n", name);
}
static void
on_name_lost (GDBusConnection *connection,
const gchar *name,
gpointer user_data)
{
g_print ("Lost the name %s\n", name);
}
gint
main (gint argc, gchar *argv[])
{
GMainLoop *loop;
cmdline cmd;
cmd.argc = argc;
cmd.argv = argv;
guint id;
loop = g_main_loop_new (NULL, FALSE);
id = g_bus_own_name (G_BUS_TYPE_SESSION,
dbus_name,
G_BUS_NAME_OWNER_FLAGS_ALLOW_REPLACEMENT |
G_BUS_NAME_OWNER_FLAGS_REPLACE,
on_bus_acquired,
on_name_acquired,
on_name_lost,
&cmd,
NULL);
g_main_loop_run (loop);
g_bus_unown_name (id);
g_main_loop_unref (loop);
return 0;
}