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22982235fb | ||
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23de8b8f4b | ||
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f0b4b0d286 | ||
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3a8764dcb4 | ||
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57d795c36b |
@@ -31,7 +31,7 @@ Das sind die verwendeten Libraries [1]:
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| https://github.com/mcci-catena/SHT1x.git | be7042c | Tue, 20 Sep 2011 13:56:23 +1000 |
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Patch arduino-lmic, so initial SF10 is used initially:
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Patch arduino-lmic, so initial SF12 is used initially:
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`
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[joerg@cinnamon src]$ git diff
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@@ -44,7 +44,7 @@ index efff7d5..74efb37 100644
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#define LMICbandplan_isFSK() (/* RX datarate */LMIC.dndr == EU868_DR_FSK)
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-#define LMICbandplan_getInitialDrJoin() (EU868_DR_SF7)
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+#define LMICbandplan_getInitialDrJoin() (EU868_DR_SF10)
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+#define LMICbandplan_getInitialDrJoin() (EU868_DR_SF12)
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void LMICeu868_setBcnRxParams(void);
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#define LMICbandplan_setBcnRxParams() LMICeu868_setBcnRxParams()
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+45
-12
@@ -60,6 +60,7 @@ cCommandStream::CommandFn cmdGetScaleA;
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cCommandStream::CommandFn cmdGetScaleB;
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cCommandStream::CommandFn cmdCalibrateZeroScaleA;
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cCommandStream::CommandFn cmdCalibrateZeroScaleB;
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cCommandStream::CommandFn cmdCalibrateScales;
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cCommandStream::CommandFn cmdCalibrateScaleA;
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cCommandStream::CommandFn cmdCalibrateScaleB;
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cCommandStream::CommandFn cmdSetDebugLevel;
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@@ -72,6 +73,7 @@ static const cCommandStream::cEntry sMyExtraCommmands[] =
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{ "hello", cmdHello },
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{ "get_calibration_settings", cmdGetCalibrationSettings },
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{ "get_sensor_readings", cmdGetSensorReadings },
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{ "calibrate_scales", cmdCalibrateScales },
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{ "calibrate_zero_scale_a", cmdCalibrateZeroScaleA },
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{ "calibrate_zero_scale_b", cmdCalibrateZeroScaleB },
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{ "calibrate_scale_a", cmdCalibrateScaleA },
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@@ -110,6 +112,7 @@ long iteration = 0; // what iteration number do we have, starts with 0
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long package_counter = 0; // sent package counter
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bool send_in_progress = false;
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bool stop_iterations = false;
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bool start_new_iteration = false;
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bool next_package_is_init_package = true;
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uint32_t gRebootMs;
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@@ -374,6 +377,9 @@ void setup_uplink(void)
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void loop()
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{
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gCatena.poll();
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if (start_new_iteration) {
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StartNewIteration();
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}
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}
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void ClearLoraData(void)
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@@ -498,7 +504,7 @@ uint8_t GetVBatValue(int millivolts)
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void DoDeepSleep(uint32_t sleep_time)
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{
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if (config_data.debug_level > 0) {
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gCatena.SafePrintf("DoDeepSleep, now going to deep sleep\n");
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gCatena.SafePrintf("DoDeepSleep, now going to deep sleep, millis: %d\n",millis());
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}
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// Prepare Deep Sleep
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@@ -515,7 +521,7 @@ void DoDeepSleep(uint32_t sleep_time)
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deepSleepRecovery();
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if (config_data.debug_level > 0) {
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gCatena.SafePrintf("done with deep sleep\n");
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gCatena.SafePrintf("done with deep sleep, millis: %d\n",millis());
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}
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}
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@@ -616,6 +622,7 @@ void ReadSensors(SENSOR_data &sensor_data) {
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}
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void StartNewIteration() {
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start_new_iteration = false;
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uint32_t wait_time;
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wait_time = 0;
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@@ -672,7 +679,7 @@ void StartNewIteration() {
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// we send data the first time the system is started, when the array is full
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// or when the weight has fallen more than threshold or the first measurement is
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// more than one hour old (which should not happen :-) )
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if ( (next_package_is_init_package) || (my_position >= MAX_VALUES_TO_SEND) || (abs(last_sensor_reading.weight - current_sensor_reading.weight) > SEND_DIFF_THRESHOLD_5GRAMS) || ((millis() - timer_pos0) > 3600000)) {
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if ( (next_package_is_init_package) || (my_position >= MAX_VALUES_TO_SEND) || ((my_position > 1) && (abs(last_sensor_reading.weight - current_sensor_reading.weight) > SEND_DIFF_THRESHOLD_5GRAMS)) || ((millis() - timer_pos0) > 3600000)) {
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lora_data.offset_last_reading = (uint8_t)((millis() - timer_pos0) / 1000 / 60);
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if (config_data.debug_level > 0) {
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gCatena.SafePrintf("startSendingUplink(), my_position: %d, iteration: %d, package_counter: %d\n", my_position, iteration, package_counter);
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@@ -760,13 +767,14 @@ void StartNewIteration() {
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if (config_data.debug_level > 0) {
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gCatena.SafePrintf("LMIC.opmode just before Sleeping: %#x\n", LMIC.opmode);
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gCatena.SafePrintf("LMIC.globalDutyRate: %d, LMIC.globalDutyAvail: %d\n", LMIC.globalDutyRate, LMIC.globalDutyAvail );
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gCatena.SafePrintf("LMIC.globalDutyRate: %d, LMIC.globalDutyAvail: %d, os_getTime: %d\n", LMIC.globalDutyRate, LMIC.globalDutyAvail, os_getTime());
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gCatena.SafePrintf("LMIC.seqnoUp: %d, LMIC.seqnoDn: %d\n",LMIC.seqnoUp, LMIC.seqnoDn);
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}
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if (!fUsbPower) {
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DoDeepSleep(sleep_time_sec);
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if (! stop_iterations) {
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StartNewIteration();
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start_new_iteration = true;
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}
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}
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@@ -815,28 +823,33 @@ void startSendingUplink(bool firstTime)
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package_counter++;
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if (config_data.debug_level > 0) {
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gCatena.SafePrintf("LMIC.opmode just after SendBuffer (successful): %#x\n", LMIC.opmode);
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gCatena.SafePrintf("LMIC.globalDutyRate: %d, LMIC.globalDutyAvail: %d\n", LMIC.globalDutyRate, LMIC.globalDutyAvail );
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gCatena.SafePrintf("LMIC.globalDutyRate: %d, LMIC.globalDutyAvail: %d, os_getTime: %d\n", LMIC.globalDutyRate, LMIC.globalDutyAvail, os_getTime());
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gCatena.SafePrintf("LMIC.seqnoUp: %d, LMIC.seqnoDn: %d\n",LMIC.seqnoUp, LMIC.seqnoDn);
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}
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}
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else {
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gCatena.SafePrintf("LMIC.opmode just before SendBuffer (failed): %#x\n", LMIC.opmode);
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gCatena.SafePrintf("LMIC.globalDutyRate: %d, LMIC.globalDutyAvail: %d\n", LMIC.globalDutyRate, LMIC.globalDutyAvail );
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gCatena.SafePrintf("LMIC.globalDutyRate: %d, LMIC.globalDutyAvail: %d, os_getTime: %d\n", LMIC.globalDutyRate, LMIC.globalDutyAvail, os_getTime());
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gCatena.SafePrintf("LMIC.seqnoUp: %d, LMIC.seqnoDn: %d\n",LMIC.seqnoUp, LMIC.seqnoDn);
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}
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} else {
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if (config_data.debug_level > 0) {
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gCatena.SafePrintf("LMIC.opmode just before SendBuffer: %#x\n", LMIC.opmode);
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gCatena.SafePrintf("LMIC.globalDutyRate: %d, LMIC.globalDutyAvail: %d\n", LMIC.globalDutyRate, LMIC.globalDutyAvail );
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gCatena.SafePrintf("LMIC.globalDutyRate: %d, LMIC.globalDutyAvail: %d, os_getTime: %d\n", LMIC.globalDutyRate, LMIC.globalDutyAvail, os_getTime());
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gCatena.SafePrintf("LMIC.seqnoUp: %d, LMIC.seqnoDn: %d\n",LMIC.seqnoUp, LMIC.seqnoDn);
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gCatena.SafePrintf("SendBuffer not firstTime\n");
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}
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if (gLoRaWAN.SendBuffer((uint8_t*)&lora_data, sizeof(LORA_data), sendBufferDoneCb, NULL, fConfirmed, kUplinkPort)) {
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package_counter++;
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if (config_data.debug_level > 0) {
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gCatena.SafePrintf("LMIC.opmode just after SendBuffer (successful): %#x\n", LMIC.opmode);
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gCatena.SafePrintf("LMIC.globalDutyRate: %d, LMIC.globalDutyAvail: %d\n", LMIC.globalDutyRate, LMIC.globalDutyAvail );
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gCatena.SafePrintf("LMIC.globalDutyRate: %d, LMIC.globalDutyAvail: %d, os_getTime: %d\n", LMIC.globalDutyRate, LMIC.globalDutyAvail, os_getTime());
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gCatena.SafePrintf("LMIC.seqnoUp: %d, LMIC.seqnoDn: %d\n",LMIC.seqnoUp, LMIC.seqnoDn);
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}
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} else {
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gCatena.SafePrintf("LMIC.opmode just before SendBuffer (failed): %#x\n", LMIC.opmode);
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gCatena.SafePrintf("LMIC.globalDutyRate: %d, LMIC.globalDutyAvail: %d\n", LMIC.globalDutyRate, LMIC.globalDutyAvail );
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gCatena.SafePrintf("LMIC.globalDutyRate: %d, LMIC.globalDutyAvail: %d, os_getTime: %d\n", LMIC.globalDutyRate, LMIC.globalDutyAvail, os_getTime());
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gCatena.SafePrintf("LMIC.seqnoUp: %d, LMIC.seqnoDn: %d\n",LMIC.seqnoUp, LMIC.seqnoDn);
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}
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}
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@@ -959,6 +972,8 @@ void deepSleepRecovery(void)
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SPI.begin();
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if (fFlash)
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gSPI2.begin();
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// we wait 100 milliseconds after wakeup...
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delay(100);
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}
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@@ -969,7 +984,7 @@ static void startNewIterationCb(osjob_t* pJob)
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}
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if (! stop_iterations) {
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StartNewIteration();
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start_new_iteration = true;
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}
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}
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@@ -1102,7 +1117,6 @@ cCommandStream::CommandStatus cmdHello(cCommandStream * pThis, void *pContext, i
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return cCommandStream::CommandStatus::kSuccess;
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}
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cCommandStream::CommandStatus cmdGetCalibrationSettings(cCommandStream * pThis, void *pContext, int argc, char **argv)
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{
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pThis->printf("{\n");
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@@ -1167,6 +1181,25 @@ cCommandStream::CommandStatus cmdCalibrateZeroScaleB(cCommandStream * pThis, voi
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return cCommandStream::CommandStatus::kSuccess;
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}
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cCommandStream::CommandStatus cmdCalibrateScales(cCommandStream * pThis, void *pContext, int argc, char **argv)
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{
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String s_cal_w1_0(argv[1]);
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String s_cal_w1_factor(argv[2]);
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String s_cal_w2_0(argv[3]);
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String s_cal_w2_factor(argv[4]);
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config_data.cal_w1_0 = s_cal_w1_0.toInt();
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config_data.cal_w1_factor = s_cal_w1_factor.toFloat();
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config_data.cal_w2_0 = s_cal_w2_0.toInt();
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config_data.cal_w2_factor = s_cal_w2_factor.toFloat();
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gCatena.getFram()->saveField(cFramStorage::kAppConf, (const uint8_t *)&config_data, sizeof(config_data));
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pThis->printf("{ \"msg\": \"calibrate_scales was successful\" }\n");
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return cCommandStream::CommandStatus::kSuccess;
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}
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cCommandStream::CommandStatus cmdCalibrateScaleA(cCommandStream * pThis, void *pContext, int argc, char **argv)
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{
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String w1_gramm(argv[1]);
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+1
-1
@@ -56,7 +56,7 @@ enum {
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\****************************************************************************/
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static const int32_t fwVersion = 20200604;
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static const int32_t fwVersion = 20200608;
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static const byte INIT_PACKAGE_INTERVAL = 100; // send an init package every 100 packages;
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static const byte MAX_VALUES_TO_SEND = 8;
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Reference in New Issue
Block a user