fpi-ssm: Make delayed actions cancellable
Add a GCancellable parameter to fpi_ssm_nex_state_delayed and fpi_ssm_jump_to_state_delayed() so that it's possible to cancel an action from the caller and in case the driver wants to cancel a delayed operation when a device action has been cancelled.
This commit is contained in:
parent
bac6382f67
commit
ff67bf5a16
8 changed files with 127 additions and 41 deletions
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@ -752,7 +752,7 @@ calibrate_run_state (FpiSsm *ssm, FpDevice *dev)
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if (self->calib_status == 0x00 &&
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self->last_read[0] == 0x01)
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self->calib_status = 0x01;
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fpi_ssm_next_state_delayed (ssm, 50);
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fpi_ssm_next_state_delayed (ssm, 50, NULL);
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}
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break;
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@ -864,7 +864,7 @@ rebootpwr_run_state (FpiSsm *ssm, FpDevice *_dev)
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}
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else
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{
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fpi_ssm_jump_to_state_delayed (ssm, 10, REBOOTPWR_GET_HWSTAT);
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fpi_ssm_jump_to_state_delayed (ssm, 10, REBOOTPWR_GET_HWSTAT, NULL);
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}
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break;
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}
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@ -946,11 +946,11 @@ powerup_run_state (FpiSsm *ssm, FpDevice *_dev)
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}
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else if (!self->profile->auth_cr)
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{
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fpi_ssm_jump_to_state_delayed (ssm, POWERUP_SET_HWSTAT, 10);
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fpi_ssm_jump_to_state_delayed (ssm, POWERUP_SET_HWSTAT, 10, NULL);
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}
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else
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{
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fpi_ssm_next_state_delayed (ssm, 10);
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fpi_ssm_next_state_delayed (ssm, 10, NULL);
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}
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break;
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@ -608,7 +608,7 @@ activate_ssm (FpiSsm *ssm, FpDevice *dev)
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clear_data (self);
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/* Wait for probable vdev->active changing */
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fpi_ssm_next_state_delayed (ssm, VFS_SSM_TIMEOUT);
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fpi_ssm_next_state_delayed (ssm, VFS_SSM_TIMEOUT, NULL);
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break;
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case SSM_NEXT_RECEIVE:
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@ -627,7 +627,8 @@ activate_ssm (FpiSsm *ssm, FpDevice *dev)
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case SSM_WAIT_ANOTHER_SCAN:
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/* Orange light is on now */
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fpi_ssm_jump_to_state_delayed (ssm, SSM_TURN_ON, VFS_SSM_ORANGE_TIMEOUT);
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fpi_ssm_jump_to_state_delayed (ssm, SSM_TURN_ON, VFS_SSM_ORANGE_TIMEOUT,
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NULL);
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break;
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default:
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@ -785,7 +785,7 @@ m_loop_state (FpiSsm *ssm, FpDevice *_dev)
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case M_LOOP_0_SLEEP:
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/* Wait fingerprint scanning */
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fpi_ssm_next_state_delayed (ssm, 50);
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fpi_ssm_next_state_delayed (ssm, 50, NULL);
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break;
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case M_LOOP_0_GET_STATE:
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@ -828,7 +828,7 @@ m_loop_state (FpiSsm *ssm, FpDevice *_dev)
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img_extract (ssm, dev);
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/* Wait handling image */
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fpi_ssm_next_state_delayed (ssm, 10);
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fpi_ssm_next_state_delayed (ssm, 10, NULL);
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break;
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case M_LOOP_0_CHECK_ACTION:
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@ -851,7 +851,7 @@ m_loop_state (FpiSsm *ssm, FpDevice *_dev)
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if (vfs_finger_state (self) == VFS_FINGER_PRESENT)
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{
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fpi_image_device_report_finger_status (dev, TRUE);
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fpi_ssm_next_state_delayed (ssm, 250);
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fpi_ssm_next_state_delayed (ssm, 250, NULL);
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}
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else
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{
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@ -881,7 +881,7 @@ m_loop_state (FpiSsm *ssm, FpDevice *_dev)
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case M_LOOP_1_SLEEP:
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/* Wait fingerprint scanning */
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fpi_ssm_next_state_delayed (ssm, 10);
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fpi_ssm_next_state_delayed (ssm, 10, NULL);
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break;
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case M_LOOP_2_ABORT_PRINT:
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@ -917,7 +917,7 @@ m_loop_state (FpiSsm *ssm, FpDevice *_dev)
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{
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/* Wait aborting */
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self->counter++;
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fpi_ssm_next_state_delayed (ssm, 100);
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fpi_ssm_next_state_delayed (ssm, 100, NULL);
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}
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else
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{
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@ -1055,7 +1055,7 @@ m_init_state (FpiSsm *ssm, FpDevice *_dev)
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{
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/* Wait aborting */
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self->counter++;
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fpi_ssm_next_state_delayed (ssm, 100);
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fpi_ssm_next_state_delayed (ssm, 100, NULL);
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}
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else
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{
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@ -1084,7 +1084,7 @@ m_init_state (FpiSsm *ssm, FpDevice *_dev)
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{
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/* Wait removing finger */
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self->counter++;
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fpi_ssm_next_state_delayed (ssm, 250);
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fpi_ssm_next_state_delayed (ssm, 250, NULL);
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}
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else
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{
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@ -97,7 +97,7 @@ m_loop_state (FpiSsm *ssm, FpDevice *_dev)
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case M_WAIT_PRINT:
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/* Wait fingerprint scanning */
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fpi_ssm_next_state_delayed (ssm, 200);
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fpi_ssm_next_state_delayed (ssm, 200, NULL);
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break;
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case M_CHECK_PRINT:
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@ -115,7 +115,7 @@ m_loop_state (FpiSsm *ssm, FpDevice *_dev)
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case M_READ_PRINT_WAIT:
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/* Wait fingerprint scanning */
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fpi_ssm_next_state_delayed (ssm, 200);
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fpi_ssm_next_state_delayed (ssm, 200, NULL);
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break;
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case M_READ_PRINT_POLL:
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@ -704,7 +704,7 @@ activate_loop (FpiSsm *ssm, FpDevice *_dev)
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break;
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case DEV_ACTIVATE_DATA_COMPLETE:
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fpi_ssm_next_state_delayed (ssm, 1);
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fpi_ssm_next_state_delayed (ssm, 1, NULL);
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break;
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case DEV_ACTIVATE_PREPARE_NEXT_CAPTURE:
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@ -88,6 +88,8 @@ struct _FpiSsm
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int cur_state;
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gboolean completed;
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GSource *timeout;
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GCancellable *cancellable;
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gulong cancellable_id;
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GError *error;
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FpiSsmCompletedCallback callback;
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FpiSsmHandlerCallback handler;
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@ -155,6 +157,81 @@ fpi_ssm_get_data (FpiSsm *machine)
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return machine->ssm_data;
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}
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static void
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fpi_ssm_clear_delayed_action (FpiSsm *machine)
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{
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if (machine->cancellable_id)
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{
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g_cancellable_disconnect (machine->cancellable, machine->cancellable_id);
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machine->cancellable_id = 0;
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}
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g_clear_object (&machine->cancellable);
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g_clear_pointer (&machine->timeout, g_source_destroy);
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}
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typedef struct _CancelledActionIdleData
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{
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gulong cancellable_id;
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GCancellable *cancellable;
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} CancelledActionIdleData;
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static gboolean
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on_delayed_action_cancelled_idle (gpointer user_data)
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{
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CancelledActionIdleData *data = user_data;
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g_cancellable_disconnect (data->cancellable, data->cancellable_id);
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g_object_unref (data->cancellable);
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g_free (data);
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return G_SOURCE_REMOVE;
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}
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static void
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on_delayed_action_cancelled (GCancellable *cancellable,
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FpiSsm *machine)
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{
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CancelledActionIdleData *data;
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g_clear_pointer (&machine->timeout, g_source_destroy);
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data = g_new0 (CancelledActionIdleData, 1);
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data->cancellable = g_steal_pointer (&machine->cancellable);
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data->cancellable_id = machine->cancellable_id;
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machine->cancellable_id = 0;
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g_idle_add_full (G_PRIORITY_HIGH_IDLE, on_delayed_action_cancelled_idle,
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data, NULL);
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}
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static void
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fpi_ssm_set_delayed_action_timeout (FpiSsm *machine,
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int delay,
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FpTimeoutFunc callback,
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GCancellable *cancellable,
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gpointer user_data,
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GDestroyNotify destroy_func)
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{
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BUG_ON (machine->completed);
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BUG_ON (machine->timeout != NULL);
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fpi_ssm_clear_delayed_action (machine);
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if (cancellable != NULL)
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{
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g_set_object (&machine->cancellable, cancellable);
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machine->cancellable_id =
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g_cancellable_connect (machine->cancellable,
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G_CALLBACK (on_delayed_action_cancelled),
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machine, NULL);
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}
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machine->timeout = fpi_device_add_timeout (machine->dev, delay, callback,
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user_data, destroy_func);
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}
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/**
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* fpi_ssm_free:
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* @machine: an #FpiSsm state machine
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@ -173,7 +250,7 @@ fpi_ssm_free (FpiSsm *machine)
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if (machine->ssm_data_destroy)
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g_clear_pointer (&machine->ssm_data, machine->ssm_data_destroy);
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g_clear_pointer (&machine->error, g_error_free);
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g_clear_pointer (&machine->timeout, g_source_destroy);
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fpi_ssm_clear_delayed_action (machine);
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g_free (machine);
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}
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@ -254,7 +331,8 @@ fpi_ssm_mark_completed (FpiSsm *machine)
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BUG_ON (machine->completed);
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BUG_ON (machine->timeout != NULL);
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g_clear_pointer (&machine->timeout, g_source_destroy);
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fpi_ssm_clear_delayed_action (machine);
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machine->completed = TRUE;
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if (machine->error)
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@ -309,7 +387,7 @@ fpi_ssm_next_state (FpiSsm *machine)
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BUG_ON (machine->completed);
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BUG_ON (machine->timeout != NULL);
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g_clear_pointer (&machine->timeout, g_source_destroy);
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fpi_ssm_clear_delayed_action (machine);
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machine->cur_state++;
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if (machine->cur_state == machine->nr_states)
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@ -325,7 +403,7 @@ fpi_ssm_cancel_delayed_state_change (FpiSsm *machine)
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BUG_ON (machine->completed);
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BUG_ON (machine->timeout == NULL);
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g_clear_pointer (&machine->timeout, g_source_destroy);
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fpi_ssm_clear_delayed_action (machine);
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}
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static void
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@ -342,24 +420,25 @@ on_device_timeout_next_state (FpDevice *dev,
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* fpi_ssm_next_state_delayed:
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* @machine: an #FpiSsm state machine
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* @delay: the milliseconds to wait before switching to the next state
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* @cancellable: (nullable): a #GCancellable to cancel the delayed operation
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*
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* Iterate to next state of a state machine with a delay of @delay ms. If the
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* current state is the last state, then the state machine will be marked as
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* completed, as if calling fpi_ssm_mark_completed().
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* Passing a valid #GCancellable will cause the action to be cancelled when
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* @cancellable is.
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*/
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void
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fpi_ssm_next_state_delayed (FpiSsm *machine,
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int delay)
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int delay,
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GCancellable *cancellable)
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{
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g_autofree char *source_name = NULL;
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g_return_if_fail (machine != NULL);
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BUG_ON (machine->completed);
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BUG_ON (machine->timeout != NULL);
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g_clear_pointer (&machine->timeout, g_source_destroy);
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machine->timeout = fpi_device_add_timeout (machine->dev, delay,
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on_device_timeout_next_state,
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fpi_ssm_set_delayed_action_timeout (machine, delay,
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on_device_timeout_next_state, cancellable,
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machine, NULL);
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source_name = g_strdup_printf ("[%s] ssm %p jump to next state %d",
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@ -384,7 +463,8 @@ fpi_ssm_jump_to_state (FpiSsm *machine, int state)
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BUG_ON (state < 0 || state >= machine->nr_states);
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BUG_ON (machine->timeout != NULL);
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g_clear_pointer (&machine->timeout, g_source_destroy);
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fpi_ssm_clear_delayed_action (machine);
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machine->cur_state = state;
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__ssm_call_handler (machine);
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}
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@ -410,14 +490,18 @@ on_device_timeout_jump_to_state (FpDevice *dev,
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* @machine: an #FpiSsm state machine
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* @state: the state to jump to
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* @delay: the milliseconds to wait before switching to @state state
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* @cancellable: (nullable): a #GCancellable to cancel the delayed operation
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*
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* Jump to the @state state with a delay of @delay milliseconds, bypassing
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* intermediary states.
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* Passing a valid #GCancellable will cause the action to be cancelled when
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* @cancellable is.
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*/
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void
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fpi_ssm_jump_to_state_delayed (FpiSsm *machine,
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int state,
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int delay)
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int delay,
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GCancellable *cancellable)
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{
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FpiSsmJumpToStateDelayedData *data;
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g_autofree char *source_name = NULL;
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@ -430,10 +514,9 @@ fpi_ssm_jump_to_state_delayed (FpiSsm *machine,
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data->machine = machine;
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data->next_state = state;
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g_clear_pointer (&machine->timeout, g_source_destroy);
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machine->timeout = fpi_device_add_timeout (machine->dev, delay,
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fpi_ssm_set_delayed_action_timeout (machine, delay,
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on_device_timeout_jump_to_state,
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data, g_free);
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cancellable, data, g_free);
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source_name = g_strdup_printf ("[%s] ssm %p jump to state %d",
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fp_device_get_device_id (machine->dev),
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@ -74,10 +74,12 @@ void fpi_ssm_next_state (FpiSsm *machine);
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void fpi_ssm_jump_to_state (FpiSsm *machine,
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int state);
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void fpi_ssm_next_state_delayed (FpiSsm *machine,
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int delay);
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int delay,
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GCancellable *cancellable);
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void fpi_ssm_jump_to_state_delayed (FpiSsm *machine,
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int state,
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int delay);
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int delay,
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GCancellable *cancellable);
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void fpi_ssm_cancel_delayed_state_change (FpiSsm *machine);
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void fpi_ssm_mark_completed (FpiSsm *machine);
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void fpi_ssm_mark_failed (FpiSsm *machine,
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Reference in a new issue