}
static INT blink_in_normal_bandwidth(struct bcm_mini_adapter *ad,
- INT *num_of_time,
- INT *num_of_time_tx,
- INT *num_of_time_rx,
+ INT *time,
+ INT *time_tx,
+ INT *time_rx,
UCHAR GPIO_Num_tx,
UCHAR uiTxLedIndex,
UCHAR GPIO_Num_rx,
* Assign minimum number of blinks of
* either Tx or Rx.
*/
- if (*num_of_time_tx > *num_of_time_rx)
- *num_of_time = *num_of_time_rx;
+ if (*time_tx > *time_rx)
+ *time = *time_rx;
else
- *num_of_time = *num_of_time_tx;
- if (*num_of_time > 0) {
+ *time = *time_tx;
+ if (*time > 0) {
/* Blink both Tx and Rx LEDs */
if (LED_Blink(ad, 1 << GPIO_Num_tx, uiTxLedIndex, *timeout,
- *num_of_time, currdriverstate) == EVENT_SIGNALED)
+ *time, currdriverstate) == EVENT_SIGNALED)
return EVENT_SIGNALED;
if (LED_Blink(ad, 1 << GPIO_Num_rx, uiRxLedIndex, *timeout,
- *num_of_time, currdriverstate) == EVENT_SIGNALED)
+ *time, currdriverstate) == EVENT_SIGNALED)
return EVENT_SIGNALED;
}
- if (*num_of_time == *num_of_time_tx) {
+ if (*time == *time_tx) {
/* Blink pending rate of Rx */
if (LED_Blink(ad, (1 << GPIO_Num_rx), uiRxLedIndex, *timeout,
- *num_of_time_rx - *num_of_time,
+ *time_rx - *time,
currdriverstate) == EVENT_SIGNALED)
return EVENT_SIGNALED;
- *num_of_time = *num_of_time_rx;
+ *time = *time_rx;
} else {
/* Blink pending rate of Tx */
if (LED_Blink(ad, 1 << GPIO_Num_tx, uiTxLedIndex, *timeout,
- *num_of_time_tx - *num_of_time,
+ *time_tx - *time,
currdriverstate) == EVENT_SIGNALED)
return EVENT_SIGNALED;
- *num_of_time = *num_of_time_tx;
+ *time = *time_tx;
}
return 0;