Merge pull request #644 from oseiler2/master

Improve timesync from source GPS
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Verkehrsrot 2020-09-29 17:08:10 +02:00 committed by GitHub
commit b918f3fa4c
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7 changed files with 22 additions and 21 deletions

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@ -282,8 +282,8 @@ Hereafter described is the default *plain* format, which uses MSB bit numbering.
**Port #1:** Paxcount data
byte 1-2: Number of unique devices, seen on Wifi
byte 3-4: Number of unique devices, seen on Bluetooth [ommited if BT disabled]
byte 1-2: Number of unique devices, seen on Wifi [00 00 if Wifi scan disabled]
byte 3-4: Number of unique devices, seen on Bluetooth [ommited if BT scan disabled]
**Port #2:** Device status query result

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@ -33,7 +33,7 @@
//#define BME680_ADDR BME680_I2C_ADDR_PRIMARY // !! connect SDIO of BME680 to GND !!
// display (if connected)
#define HAS_DISPLAY 1
//#define HAS_DISPLAY 1
#define MY_DISPLAY_SDA SDA
#define MY_DISPLAY_SCL SCL
#define MY_DISPLAY_RST NOT_A_PIN

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@ -39,8 +39,8 @@ void setABPParameters() {
// devices' ping slots. LMIC does not have an easy way to define set this
// frequency and support for class B is spotty and untested, so this
// frequency is not configured here.
#elif defined(CFG_us915)
// NA-US channels 0-71 are configured automatically
#elif defined(CFG_us915) || defined(CFG_au915)
// NA-US and AU channels 0-71 are configured automatically
// but only one group of 8 should (a subband) should be active
// TTN recommends the second sub band, 1 in a zero based count.
// https://github.com/TheThingsNetwork/gateway-conf/blob/master/US-global_conf.json

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@ -116,7 +116,7 @@ uint16_t mac_add(uint8_t *paddr, int8_t rssi, bool sniff_type) {
} // added
// Log scan result
ESP_LOGD(TAG,
ESP_LOGV(TAG,
"%s %s RSSI %ddBi -> salted MAC %s -> Hash %04X -> WiFi:%d "
"BLTH:%d "
#if (COUNT_ENS)

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@ -56,10 +56,11 @@ void SendPayload(uint8_t port, sendprio_t prio) {
// write data to sdcard, if present
#if (HAS_SDCARD)
if ( port == COUNTERPORT ) {
if (port == COUNTERPORT) {
sdcardWriteData(macs_wifi, macs_ble
#if (COUNT_ENS)
, cwa_report()
,
cwa_report()
#endif
);
}
@ -86,7 +87,6 @@ void sendData() {
case COUNT_DATA:
payload.reset();
#if !(PAYLOAD_OPENSENSEBOX)
if (cfg.wifiscan)
payload.addCount(macs_wifi, MAC_SNIFF_WIFI);
if (cfg.blescan)
payload.addCount(macs_ble, MAC_SNIFF_BLE);
@ -102,7 +102,6 @@ void sendData() {
}
#endif
#if (PAYLOAD_OPENSENSEBOX)
if (cfg.wifiscan)
payload.addCount(macs_wifi, MAC_SNIFF_WIFI);
if (cfg.blescan)
payload.addCount(macs_ble, MAC_SNIFF_BLE);

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@ -54,9 +54,10 @@ uint8_t *sensor_read(uint8_t sensor) {
case 1:
// insert user specific sensor data frames here */
// insert user specific sensor data frames here
// note: Sensor1 fields are used for ENS count, if ENS detection enabled
#if (COUNT_ENS)
payload.addCount( cwa_report(), MAC_SNIFF_BLE_CWA);
payload.addCount(cwa_report(), MAC_SNIFF_BLE_CWA);
#else
buf[0] = length;
buf[1] = 0x01;

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@ -35,8 +35,10 @@ void calibrateTime(void) {
timesync_request();
#endif
// (only!) if we lost time, we try to fallback to local time source RTS or GPS
if (timeSource == _unsynced) {
// if no LORA timesource is available, or if we lost time, then fallback to
// local time source RTS or GPS
if (((!TIME_SYNC_LORASERVER) && (!TIME_SYNC_LORAWAN)) ||
(timeSource == _unsynced)) {
// has RTC -> fallback to RTC time
#ifdef HAS_RTC
@ -50,7 +52,6 @@ void calibrateTime(void) {
timeSource = _gps;
#endif
if (t)
setMyTime((uint32_t)t, t_msec, timeSource); // set time
} // fallback