remove incompleted I2C gps support
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2961948759
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02c29afca6
@ -19,13 +19,9 @@ TinyGPSCustom gpsyear(gps, "GPZDA", 4); // field 4 = year (4-digit)
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static const String ZDA_Request = "$EIGPQ,ZDA*39\r\n";
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TaskHandle_t GpsTask;
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#ifdef GPS_SERIAL
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HardwareSerial GPS_Serial(1); // use UART #1
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static uint16_t nmea_txDelay_ms =
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(tx_Ticks(NMEA_FRAME_SIZE, GPS_SERIAL) / portTICK_PERIOD_MS);
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#else
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static uint16_t nmea_txDelay_ms = 0;
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#endif
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// helper functions to send UBX commands to ublox gps chip
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@ -35,28 +31,16 @@ void sendPacket(byte *packet, byte len) {
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uint8_t CK_A = 0;
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uint8_t CK_B = 0;
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for (int i = 0; i < len; i++) {
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#ifdef GPS_SERIAL
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for (int i = 0; i < len; i++)
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GPS_Serial.write(packet[i]);
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#elif defined GPS_I2C
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Wire.write(packet[i]);
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#endif
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}
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// calculate Fletcher checksum
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// calculate and send Fletcher checksum
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for (int i = 2; i < len; i++) {
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CK_A += packet[i];
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CK_B += CK_A;
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}
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// send checksum
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#ifdef GPS_SERIAL
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GPS_Serial.write(CK_A);
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GPS_Serial.write(CK_B);
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#elif defined GPS_I2C
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Wire.write(CK_A);
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Wire.write(CK_B);
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#endif
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}
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// Send a packet to the receiver to restore default configuration.
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@ -189,7 +173,6 @@ int gps_init(void) {
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restoreDefaults();
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#ifdef GPS_SERIAL
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ESP_LOGI(TAG, "Opening serial GPS");
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GPS_Serial.begin(GPS_SERIAL);
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changeBaudrate(GPS_BAUDRATE);
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@ -197,18 +180,6 @@ int gps_init(void) {
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GPS_Serial.flush();
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GPS_Serial.updateBaudRate(GPS_BAUDRATE);
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#elif defined GPS_I2C
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ESP_LOGI(TAG, "Opening I2C GPS");
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Wire.begin(GPS_I2C, 400000); // I2C connect to GPS device with 400 KHz
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Wire.beginTransmission(GPS_ADDR);
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Wire.write(0x00); // dummy write
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if (Wire.endTransmission()) {
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ESP_LOGE(TAG, "Quectel L76 GPS chip not found");
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return 0;
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} else
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ESP_LOGI(TAG, "Quectel L76 GPS chip found");
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#endif
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disableNmea();
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changeFrequency();
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// enableNavTimeUTC();
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@ -242,13 +213,9 @@ bool gps_hasfix() {
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time_t get_gpstime(uint16_t *msec) {
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// poll NMEA ZDA sentence
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#ifdef GPS_SERIAL
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GPS_Serial.print(ZDA_Request);
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// wait for gps NMEA answer
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// vTaskDelay(tx_Ticks(NMEA_FRAME_SIZE, GPS_SERIAL));
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#elif defined GPS_I2C
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Wire.print(ZDA_Request);
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#endif
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// did we get a current date & time?
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if (gpstime.isValid()) {
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@ -291,17 +258,10 @@ void gps_loop(void *pvParameters) {
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while (1) {
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while (cfg.payloadmask & GPS_DATA) {
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#ifdef GPS_SERIAL
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// feed GPS decoder with serial NMEA data from GPS device
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while (GPS_Serial.available())
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if (gps.encode(GPS_Serial.read()))
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break; // NMEA sentence complete
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#elif defined GPS_I2C
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Wire.requestFrom(GPS_ADDR, 32); // caution: this is a blocking call
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while (Wire.available())
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if (gps.encode(Wire.read()))
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break; // NMEA sentence complete
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#endif
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// (only) while device time is not set or unsynched, and we have a valid
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// GPS time, we call calibrateTime to poll time immeditately from GPS
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@ -20,11 +20,6 @@
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#define HAS_ANTENNA_SWITCH (16) // pin for switching wifi antenna
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#define WIFI_ANTENNA 0 // 0 = internal, 1 = external
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// uncomment this only if your LoPy runs on a PYTRACK BOARD
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#define HAS_GPS 1
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#define GPS_I2C GPIO_NUM_25, GPIO_NUM_26 // SDA (P22), SCL (P21)
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#define GPS_ADDR 0x10
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// uncomment this only if your LoPy runs on a EXPANSION BOARD
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//#define HAS_LED (12) // use if LoPy is on Expansion Board, this has a user LED
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//#define LED_ACTIVE_LOW 1 // use if LoPy is on Expansion Board, this has a user LED
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@ -30,11 +30,6 @@
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#define HAS_ANTENNA_SWITCH (21) // pin for switching wifi antenna (P12)
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#define WIFI_ANTENNA 0 // 0 = internal, 1 = external
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// uncomment defines in this section ONLY if your LoPy lives on a PYTRACK BOARD
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//#define HAS_GPS 1
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//#define GPS_I2C GPIO_NUM_25, GPIO_NUM_26 // SDA (P22), SCL (P21)
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//#define GPS_ADDR 0x10
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// uncomment defines in this section ONLY if your LoPy lives on a EXPANSION BOARD
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//#define HAS_LED (12) // use if LoPy is on Expansion Board, this has a user LED
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//#define LED_ACTIVE_LOW 1 // use if LoPy is on Expansion Board, this has a user LED
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