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Changed fixed 2 minute integration period to allow overriding
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@ -97,6 +97,9 @@ PROCESS_THREAD(test_weather_meter_sensors, ev, data)
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static uint16_t wind_speed_avg_2m;
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static uint16_t wind_speed_max;
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printf("Weather meter test example, integration period %u\n",
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WEATHER_METER_AVG_PERIOD);
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/* Register the callback handler when thresholds are met */
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WEATHER_METER_REGISTER_ANEMOMETER_INT(wind_speed_callback);
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WEATHER_METER_REGISTER_RAIN_GAUGE_INT(rain_callback);
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@ -120,9 +123,9 @@ PROCESS_THREAD(test_weather_meter_sensors, ev, data)
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rain = weather_meter.value(WEATHER_METER_RAIN_GAUGE);
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wind_speed = weather_meter.value(WEATHER_METER_ANEMOMETER);
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wind_dir = weather_meter.value(WEATHER_METER_WIND_VANE);
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wind_dir_avg_2m = weather_meter.value(WEATHER_METER_WIND_VANE_AVG_2M);
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wind_dir_avg_2m = weather_meter.value(WEATHER_METER_WIND_VANE_AVG_X);
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wind_speed_avg = weather_meter.value(WEATHER_METER_ANEMOMETER_AVG);
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wind_speed_avg_2m = weather_meter.value(WEATHER_METER_ANEMOMETER_AVG_2M);
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wind_speed_avg_2m = weather_meter.value(WEATHER_METER_ANEMOMETER_AVG_X);
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wind_speed_max = weather_meter.value(WEATHER_METER_ANEMOMETER_MAX);
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#if WEATHER_METER_RAIN_RETURN_TICKS
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@ -91,8 +91,8 @@ typedef struct {
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uint16_t value_max;
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uint64_t ticks_avg;
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uint64_t value_avg;
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uint32_t value_buf_2m;
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uint16_t value_avg_2m;
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uint32_t value_buf_xm;
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uint16_t value_avg_xm;
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} weather_meter_ext_t;
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typedef struct {
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@ -102,9 +102,9 @@ typedef struct {
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} weather_meter_sensors;
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typedef struct {
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uint32_t value_buf_2m;
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uint32_t value_buf_xm;
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uint16_t value_prev;
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uint16_t value_avg_2m;
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uint16_t value_avg_xm;
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} weather_meter_wind_vane_ext_t;
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static weather_meter_sensors weather_sensors;
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@ -200,7 +200,7 @@ rt_callback(struct rtimer *t, void *ptr)
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weather_sensors.anemometer.value = (uint16_t)wind_speed;
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anemometer.ticks_avg++;
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anemometer.value_avg += weather_sensors.anemometer.value;
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anemometer.value_buf_2m += weather_sensors.anemometer.value;
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anemometer.value_buf_xm += weather_sensors.anemometer.value;
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/* Take maximum value */
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if(weather_sensors.anemometer.value > anemometer.value_max) {
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@ -219,30 +219,30 @@ rt_callback(struct rtimer *t, void *ptr)
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wind_vane.value_prev += wind_dir_delta;
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}
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wind_vane.value_buf_2m += wind_vane.value_prev;
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wind_vane.value_buf_xm += wind_vane.value_prev;
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/* Calculate the 2 minute average */
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if(!(anemometer.ticks_avg % 120)) {
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PRINTF("Weather: calculate the 2m averages ***\n");
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if(!(anemometer.ticks_avg % WEATHER_METER_AVG_PERIOD)) {
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PRINTF("Weather: calculate the %u averages ***\n", WEATHER_METER_AVG_PERIOD);
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if(anemometer.value_buf_2m) {
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anemometer.value_avg_2m = anemometer.value_buf_2m / 120;
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anemometer.value_buf_2m = 0;
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if(anemometer.value_buf_xm) {
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anemometer.value_avg_xm = anemometer.value_buf_xm / WEATHER_METER_AVG_PERIOD;
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anemometer.value_buf_xm = 0;
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} else {
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anemometer.value_avg_2m = 0;
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anemometer.value_avg_xm = 0;
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}
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wind_vane.value_buf_2m = wind_vane.value_buf_2m / 120;
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wind_vane.value_avg_2m = (uint16_t)wind_vane.value_buf_2m;
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if(wind_vane.value_avg_2m >= 3600) {
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wind_vane.value_avg_2m -= 3600;
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wind_vane.value_buf_xm = wind_vane.value_buf_xm / WEATHER_METER_AVG_PERIOD;
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wind_vane.value_avg_xm = (uint16_t)wind_vane.value_buf_xm;
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if(wind_vane.value_avg_xm >= 3600) {
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wind_vane.value_avg_xm -= 3600;
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}
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if(wind_vane.value_avg_2m < 0) {
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wind_vane.value_avg_2m += 3600;
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if(wind_vane.value_avg_xm < 0) {
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wind_vane.value_avg_xm += 3600;
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}
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wind_vane.value_buf_2m = 0;
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wind_vane.value_buf_xm = 0;
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wind_vane.value_prev = wind_dir;
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}
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@ -323,9 +323,9 @@ value(int type)
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if((type != WEATHER_METER_ANEMOMETER) &&
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(type != WEATHER_METER_RAIN_GAUGE) &&
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(type != WEATHER_METER_WIND_VANE) &&
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(type != WEATHER_METER_WIND_VANE_AVG_2M) &&
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(type != WEATHER_METER_WIND_VANE_AVG_X) &&
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(type != WEATHER_METER_ANEMOMETER_AVG) &&
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(type != WEATHER_METER_ANEMOMETER_AVG_2M) &&
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(type != WEATHER_METER_ANEMOMETER_AVG_X) &&
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(type != WEATHER_METER_ANEMOMETER_MAX)) {
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PRINTF("Weather: requested an invalid sensor value\n");
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return WEATHER_METER_ERROR;
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@ -340,8 +340,8 @@ value(int type)
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case WEATHER_METER_WIND_VANE:
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return weather_meter_get_wind_dir();
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case WEATHER_METER_WIND_VANE_AVG_2M:
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return wind_vane.value_avg_2m;
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case WEATHER_METER_WIND_VANE_AVG_X:
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return wind_vane.value_avg_xm;
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case WEATHER_METER_ANEMOMETER:
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return weather_sensors.anemometer.value;
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@ -353,8 +353,8 @@ value(int type)
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aux = anemometer.value_avg / anemometer.ticks_avg;
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return (uint16_t)aux;
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case WEATHER_METER_ANEMOMETER_AVG_2M:
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return anemometer.value_avg_2m;
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case WEATHER_METER_ANEMOMETER_AVG_X:
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return anemometer.value_avg_xm;
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case WEATHER_METER_ANEMOMETER_MAX:
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return anemometer.value_max;
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@ -55,12 +55,19 @@
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*/
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#define WEATHER_METER_RAIN_GAUGE 0x01
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#define WEATHER_METER_WIND_VANE 0x02
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#define WEATHER_METER_WIND_VANE_AVG_2M 0x03
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#define WEATHER_METER_WIND_VANE_AVG_X 0x03
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#define WEATHER_METER_ANEMOMETER 0x04
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#define WEATHER_METER_ANEMOMETER_AVG 0x05
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#define WEATHER_METER_ANEMOMETER_AVG_2M 0x06
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#define WEATHER_METER_ANEMOMETER_AVG_X 0x06
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#define WEATHER_METER_ANEMOMETER_MAX 0x07
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/* Period (seconds) to calculate an average */
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#ifdef WEATHER_METER_CONF_AVG_PERIOD
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#define WEATHER_METER_AVG_PERIOD WEATHER_METER_CONF_AVG_PERIOD
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#else
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#define WEATHER_METER_AVG_PERIOD 120
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#endif
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#define WEATHER_METER_ACTIVE SENSORS_ACTIVE
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#define WEATHER_METER_ANEMOMETER_INT_OVER HW_INT_OVER_THRS
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#define WEATHER_METER_ANEMOMETER_INT_DIS HW_INT_DISABLE
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