[PRJ] Fetch the RSSI calibration from memory before performing the LBT verification in Sigfox applications of 'B-WL5M-SUBG1' and 'NUCLEO-WL55JC1' boards
This commit is contained in:
parent
139e8d28bc
commit
406f7a204c
|
@ -485,6 +485,7 @@ sfx_u8 RF_API_wait_for_clear_channel(sfx_u8 cs_min, sfx_s8 cs_threshold, sfx_rx_
|
|||
{
|
||||
sfx_u8 status = SFX_ERR_NONE;
|
||||
sfx_rx_state_enum_t cs_state = DL_TIMEOUT;
|
||||
sfx_s8 lbt_threshold_cal;
|
||||
/* Starts Rx Windows to sense if channel is occupied or clear*
|
||||
* If the channel is clear during the minimum carrier sense
|
||||
* value (cs_min), under the limit of the cs_threshold,
|
||||
|
@ -502,6 +503,8 @@ sfx_u8 RF_API_wait_for_clear_channel(sfx_u8 cs_min, sfx_s8 cs_threshold, sfx_rx_
|
|||
|
||||
HAL_Delay(Radio.GetWakeupTime());
|
||||
|
||||
lbt_threshold_cal = E2P_Read_RssiCal();
|
||||
cs_threshold += lbt_threshold_cal;
|
||||
APP_LOG(TS_ON, VLEVEL_M, "CS start cs_min=%dms, cs_threshold=%dBm\n\r", cs_min, cs_threshold);
|
||||
|
||||
while (RxCarrierSenseGetStatus() == 0)
|
||||
|
|
|
@ -485,6 +485,7 @@ sfx_u8 RF_API_wait_for_clear_channel(sfx_u8 cs_min, sfx_s8 cs_threshold, sfx_rx_
|
|||
{
|
||||
sfx_u8 status = SFX_ERR_NONE;
|
||||
sfx_rx_state_enum_t cs_state = DL_TIMEOUT;
|
||||
sfx_s8 lbt_threshold_cal;
|
||||
/* Starts Rx Windows to sense if channel is occupied or clear*
|
||||
* If the channel is clear during the minimum carrier sense
|
||||
* value (cs_min), under the limit of the cs_threshold,
|
||||
|
@ -502,6 +503,8 @@ sfx_u8 RF_API_wait_for_clear_channel(sfx_u8 cs_min, sfx_s8 cs_threshold, sfx_rx_
|
|||
|
||||
HAL_Delay(Radio.GetWakeupTime());
|
||||
|
||||
lbt_threshold_cal = E2P_Read_RssiCal();
|
||||
cs_threshold += lbt_threshold_cal;
|
||||
APP_LOG(TS_ON, VLEVEL_M, "CS start cs_min=%dms, cs_threshold=%dBm\n\r", cs_min, cs_threshold);
|
||||
|
||||
while (RxCarrierSenseGetStatus() == 0)
|
||||
|
|
|
@ -485,6 +485,7 @@ sfx_u8 RF_API_wait_for_clear_channel(sfx_u8 cs_min, sfx_s8 cs_threshold, sfx_rx_
|
|||
{
|
||||
sfx_u8 status = SFX_ERR_NONE;
|
||||
sfx_rx_state_enum_t cs_state = DL_TIMEOUT;
|
||||
sfx_s8 lbt_threshold_cal;
|
||||
/* Starts Rx Windows to sense if channel is occupied or clear*
|
||||
* If the channel is clear during the minimum carrier sense
|
||||
* value (cs_min), under the limit of the cs_threshold,
|
||||
|
@ -502,6 +503,8 @@ sfx_u8 RF_API_wait_for_clear_channel(sfx_u8 cs_min, sfx_s8 cs_threshold, sfx_rx_
|
|||
|
||||
HAL_Delay(Radio.GetWakeupTime());
|
||||
|
||||
lbt_threshold_cal = E2P_Read_RssiCal();
|
||||
cs_threshold += lbt_threshold_cal;
|
||||
APP_LOG(TS_ON, VLEVEL_M, "CS start cs_min=%dms, cs_threshold=%dBm\n\r", cs_min, cs_threshold);
|
||||
|
||||
while (RxCarrierSenseGetStatus() == 0)
|
||||
|
|
|
@ -485,6 +485,7 @@ sfx_u8 RF_API_wait_for_clear_channel(sfx_u8 cs_min, sfx_s8 cs_threshold, sfx_rx_
|
|||
{
|
||||
sfx_u8 status = SFX_ERR_NONE;
|
||||
sfx_rx_state_enum_t cs_state = DL_TIMEOUT;
|
||||
sfx_s8 lbt_threshold_cal;
|
||||
/* Starts Rx Windows to sense if channel is occupied or clear*
|
||||
* If the channel is clear during the minimum carrier sense
|
||||
* value (cs_min), under the limit of the cs_threshold,
|
||||
|
@ -502,6 +503,8 @@ sfx_u8 RF_API_wait_for_clear_channel(sfx_u8 cs_min, sfx_s8 cs_threshold, sfx_rx_
|
|||
|
||||
HAL_Delay(Radio.GetWakeupTime());
|
||||
|
||||
lbt_threshold_cal = E2P_Read_RssiCal();
|
||||
cs_threshold += lbt_threshold_cal;
|
||||
APP_LOG(TS_ON, VLEVEL_M, "CS start cs_min=%dms, cs_threshold=%dBm\n\r", cs_min, cs_threshold);
|
||||
|
||||
while (RxCarrierSenseGetStatus() == 0)
|
||||
|
|
|
@ -485,6 +485,7 @@ sfx_u8 RF_API_wait_for_clear_channel(sfx_u8 cs_min, sfx_s8 cs_threshold, sfx_rx_
|
|||
{
|
||||
sfx_u8 status = SFX_ERR_NONE;
|
||||
sfx_rx_state_enum_t cs_state = DL_TIMEOUT;
|
||||
sfx_s8 lbt_threshold_cal;
|
||||
/* Starts Rx Windows to sense if channel is occupied or clear*
|
||||
* If the channel is clear during the minimum carrier sense
|
||||
* value (cs_min), under the limit of the cs_threshold,
|
||||
|
@ -502,6 +503,8 @@ sfx_u8 RF_API_wait_for_clear_channel(sfx_u8 cs_min, sfx_s8 cs_threshold, sfx_rx_
|
|||
|
||||
HAL_Delay(Radio.GetWakeupTime());
|
||||
|
||||
lbt_threshold_cal = E2P_Read_RssiCal();
|
||||
cs_threshold += lbt_threshold_cal;
|
||||
APP_LOG(TS_ON, VLEVEL_M, "CS start cs_min=%dms, cs_threshold=%dBm\n\r", cs_min, cs_threshold);
|
||||
|
||||
while (RxCarrierSenseGetStatus() == 0)
|
||||
|
|
|
@ -485,6 +485,7 @@ sfx_u8 RF_API_wait_for_clear_channel(sfx_u8 cs_min, sfx_s8 cs_threshold, sfx_rx_
|
|||
{
|
||||
sfx_u8 status = SFX_ERR_NONE;
|
||||
sfx_rx_state_enum_t cs_state = DL_TIMEOUT;
|
||||
sfx_s8 lbt_threshold_cal;
|
||||
/* Starts Rx Windows to sense if channel is occupied or clear*
|
||||
* If the channel is clear during the minimum carrier sense
|
||||
* value (cs_min), under the limit of the cs_threshold,
|
||||
|
@ -502,6 +503,8 @@ sfx_u8 RF_API_wait_for_clear_channel(sfx_u8 cs_min, sfx_s8 cs_threshold, sfx_rx_
|
|||
|
||||
HAL_Delay(Radio.GetWakeupTime());
|
||||
|
||||
lbt_threshold_cal = E2P_Read_RssiCal();
|
||||
cs_threshold += lbt_threshold_cal;
|
||||
APP_LOG(TS_ON, VLEVEL_M, "CS start cs_min=%dms, cs_threshold=%dBm\n\r", cs_min, cs_threshold);
|
||||
|
||||
while (RxCarrierSenseGetStatus() == 0)
|
||||
|
|
|
@ -485,6 +485,7 @@ sfx_u8 RF_API_wait_for_clear_channel(sfx_u8 cs_min, sfx_s8 cs_threshold, sfx_rx_
|
|||
{
|
||||
sfx_u8 status = SFX_ERR_NONE;
|
||||
sfx_rx_state_enum_t cs_state = DL_TIMEOUT;
|
||||
sfx_s8 lbt_threshold_cal;
|
||||
/* Starts Rx Windows to sense if channel is occupied or clear*
|
||||
* If the channel is clear during the minimum carrier sense
|
||||
* value (cs_min), under the limit of the cs_threshold,
|
||||
|
@ -502,6 +503,8 @@ sfx_u8 RF_API_wait_for_clear_channel(sfx_u8 cs_min, sfx_s8 cs_threshold, sfx_rx_
|
|||
|
||||
HAL_Delay(Radio.GetWakeupTime());
|
||||
|
||||
lbt_threshold_cal = E2P_Read_RssiCal();
|
||||
cs_threshold += lbt_threshold_cal;
|
||||
APP_LOG(TS_ON, VLEVEL_M, "CS start cs_min=%dms, cs_threshold=%dBm\n\r", cs_min, cs_threshold);
|
||||
|
||||
while (RxCarrierSenseGetStatus() == 0)
|
||||
|
|
Loading…
Reference in New Issue