mirror of
https://github.com/liberatedsystems/RNode_Firmware_CE.git
synced 2024-10-01 03:15:40 -04:00
Added airtime limiting and channel timing stat reporting over serial/USB/bluetooth
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f2e1791562
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3
Config.h
3
Config.h
@ -359,6 +359,9 @@
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float us_per_byte = 0.0;
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#define current_airtime_bin(void) (millis()%AIRTIME_LONGTERM_MS)/AIRTIME_BINLEN_MS
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#endif
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float st_airtime_limit = 0.0;
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float lt_airtime_limit = 0.0;
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bool airtime_lock = false;
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bool stat_signal_detected = false;
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bool stat_signal_synced = false;
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@ -33,6 +33,8 @@
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#define CMD_DETECT 0x08
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#define CMD_IMPLICIT 0x09
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#define CMD_LEAVE 0x0A
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#define CMD_ST_ALOCK 0x0B
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#define CMD_LT_ALOCK 0x0C
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#define CMD_PROMISC 0x0E
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#define CMD_READY 0x0F
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@ -40,6 +42,7 @@
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#define CMD_STAT_TX 0x22
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#define CMD_STAT_RSSI 0x23
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#define CMD_STAT_SNR 0x24
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#define CMD_STAT_CHTM 0x25
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#define CMD_BLINK 0x30
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#define CMD_RANDOM 0x40
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@ -312,6 +312,8 @@ bool startRadio() {
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} else {
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radio_online = true;
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init_channel_stats();
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setTXPower();
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setBandwidth();
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setSpreadingFactor();
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@ -395,6 +397,9 @@ void flushQueue(void) {
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queue_height = 0;
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queued_bytes = 0;
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#if MCU_VARIANT == MCU_ESP32
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update_airtime();
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#endif
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queue_flushing = false;
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}
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@ -427,6 +432,8 @@ void update_airtime() {
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longterm_channel_util_sum += longterm_bins[bin];
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}
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longterm_channel_util = (float)longterm_channel_util_sum/(float)AIRTIME_BINS;
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kiss_indicate_channel_stats();
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#endif
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}
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@ -650,6 +657,52 @@ void serialCallback(uint8_t sbyte) {
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startRadio();
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kiss_indicate_radiostate();
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}
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} else if (command == CMD_ST_ALOCK) {
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if (sbyte == FESC) {
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ESCAPE = true;
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} else {
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if (ESCAPE) {
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if (sbyte == TFEND) sbyte = FEND;
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if (sbyte == TFESC) sbyte = FESC;
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ESCAPE = false;
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}
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if (frame_len < CMD_L) cmdbuf[frame_len++] = sbyte;
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}
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if (frame_len == 2) {
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uint16_t at = (uint16_t)cmdbuf[0] << 8 | (uint16_t)cmdbuf[1];
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if (at == 0) {
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st_airtime_limit = 0.0;
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} else {
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st_airtime_limit = (float)at/(100.0*100.0);
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if (st_airtime_limit >= 1.0) { st_airtime_limit = 0.0; }
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}
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kiss_indicate_st_alock();
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}
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} else if (command == CMD_LT_ALOCK) {
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if (sbyte == FESC) {
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ESCAPE = true;
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} else {
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if (ESCAPE) {
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if (sbyte == TFEND) sbyte = FEND;
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if (sbyte == TFESC) sbyte = FESC;
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ESCAPE = false;
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}
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if (frame_len < CMD_L) cmdbuf[frame_len++] = sbyte;
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}
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if (frame_len == 2) {
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uint16_t at = (uint16_t)cmdbuf[0] << 8 | (uint16_t)cmdbuf[1];
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if (at == 0) {
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lt_airtime_limit = 0.0;
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} else {
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lt_airtime_limit = (float)at/(100.0*100.0);
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if (lt_airtime_limit >= 1.0) { lt_airtime_limit = 0.0; }
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}
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kiss_indicate_lt_alock();
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}
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} else if (command == CMD_STAT_RX) {
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kiss_indicate_stat_rx();
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} else if (command == CMD_STAT_TX) {
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@ -884,9 +937,13 @@ void updateModemStatus() {
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if (dcd_led) {
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led_rx_on();
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} else {
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if (airtime_lock) {
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led_indicate_airtime_lock();
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} else {
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led_rx_off();
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}
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}
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}
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void checkModemStatus() {
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@ -905,7 +962,10 @@ void checkModemStatus() {
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total_channel_util = local_channel_util + airtime;
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if (total_channel_util > 1.0) total_channel_util = 1.0;
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longterm_bins[current_airtime_bin()] = total_channel_util;
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int16_t cb = current_airtime_bin();
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uint16_t nb = cb+1; if (nb == AIRTIME_BINS) { nb = 0; }
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if (total_channel_util > longterm_bins[cb]) longterm_bins[cb] = total_channel_util;
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longterm_bins[nb] = 0.0;
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update_airtime();
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}
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@ -1047,8 +1107,13 @@ void loop() {
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kiss_indicate_stat_snr();
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kiss_write_packet();
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}
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airtime_lock = false;
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if (st_airtime_limit != 0.0 && airtime >= st_airtime_limit) airtime_lock = true;
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if (lt_airtime_limit != 0.0 && longterm_airtime >= lt_airtime_limit) airtime_lock = true;
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#endif
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if (!airtime_lock) {
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if (queue_height > 0) {
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if (!dcd_waiting) updateModemStatus();
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@ -1066,6 +1131,7 @@ void loop() {
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dcd_waiting = true;
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}
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}
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}
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} else {
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if (hw_ready) {
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Binary file not shown.
47
Utilities.h
47
Utilities.h
@ -218,6 +218,13 @@ void led_indicate_error(int cycles) {
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#endif
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}
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// LED Indication: Airtime Lock
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void led_indicate_airtime_lock() {
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#if HAS_NP == true
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npset(32,0,2);
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#endif
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}
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// LED Indication: Boot Error
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void led_indicate_boot_error() {
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#if HAS_NP == true
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@ -687,6 +694,44 @@ void kiss_indicate_frequency() {
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serial_write(FEND);
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}
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void kiss_indicate_st_alock() {
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uint16_t at = (uint16_t)(st_airtime_limit*100*100);
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serial_write(FEND);
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serial_write(CMD_ST_ALOCK);
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escaped_serial_write(at>>8);
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escaped_serial_write(at);
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serial_write(FEND);
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}
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void kiss_indicate_lt_alock() {
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uint16_t at = (uint16_t)(lt_airtime_limit*100*100);
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serial_write(FEND);
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serial_write(CMD_LT_ALOCK);
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escaped_serial_write(at>>8);
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escaped_serial_write(at);
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serial_write(FEND);
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}
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void kiss_indicate_channel_stats() {
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#if MCU_VARIANT == MCU_ESP32
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uint16_t ats = (uint16_t)(airtime*100*100);
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uint16_t atl = (uint16_t)(longterm_airtime*100*100);
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uint16_t cls = (uint16_t)(total_channel_util*100*100);
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uint16_t cll = (uint16_t)(longterm_channel_util*100*100);
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serial_write(FEND);
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serial_write(CMD_STAT_CHTM);
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escaped_serial_write(ats>>8);
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escaped_serial_write(ats);
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escaped_serial_write(atl>>8);
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escaped_serial_write(atl);
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escaped_serial_write(cls>>8);
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escaped_serial_write(cls);
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escaped_serial_write(cll>>8);
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escaped_serial_write(cll);
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serial_write(FEND);
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#endif
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}
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void kiss_indicate_btpin() {
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#if HAS_BLUETOOTH
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serial_write(FEND);
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@ -1182,6 +1227,7 @@ void unlock_rom() {
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}
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void init_channel_stats() {
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#if MCU_VARIANT == MCU_ESP32
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for (uint16_t ai = 0; ai < DCD_SAMPLES; ai++) { util_samples[ai] = false; }
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for (uint16_t ai = 0; ai < AIRTIME_BINS; ai++) { airtime_bins[ai] = 0; }
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for (uint16_t ai = 0; ai < AIRTIME_BINS; ai++) { longterm_bins[ai] = 0.0; }
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@ -1189,6 +1235,7 @@ void init_channel_stats() {
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total_channel_util = 0.0;
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airtime = 0.0;
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longterm_airtime = 0.0;
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#endif
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}
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typedef struct FIFOBuffer
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