use of com.infiniteautomation.mango.statistics.AnalogStatistics in project ma-core-public by infiniteautomation.
the class AnalogStatisticsQuantizerTest method testNoStartValueOneValuePerPeriod.
@Test
public void testNoStartValueOneValuePerPeriod() throws IOException {
// Generate data at 12 noon for every day in the period
NextTimePeriodAdjuster adjuster = new NextTimePeriodAdjuster(TimePeriods.DAYS, 1);
time = ZonedDateTime.of(2017, 01, 01, 12, 00, 00, 0, zoneId);
List<IdPointValueTime> data = new ArrayList<>();
double value = 1.0;
while (time.toInstant().isBefore(to.toInstant())) {
data.add(new IdPointValueTime(1, new NumericValue(value), time.toInstant().toEpochMilli()));
time = (ZonedDateTime) adjuster.adjustInto(time);
}
// Reset time to track periods
time = ZonedDateTime.of(2017, 01, 01, 00, 00, 00, 0, zoneId);
MutableInt counter = new MutableInt(0);
BucketCalculator bc = new TimePeriodBucketCalculator(from, to, TimePeriods.DAYS, 1);
AnalogStatisticsQuantizer quantizer = new AnalogStatisticsQuantizer(bc, new StatisticsGeneratorQuantizerCallback<AnalogStatistics>() {
@Override
public void quantizedStatistics(AnalogStatistics statisticsGenerator) throws IOException {
counter.increment();
AnalogStatistics stats = (AnalogStatistics) statisticsGenerator;
// Test periodStart
Assert.assertEquals(time.toInstant().toEpochMilli(), stats.getPeriodStartTime());
// Test periiodEnd
Assert.assertEquals(time.plusDays(1).toInstant().toEpochMilli(), stats.getPeriodEndTime());
ZonedDateTime sampleTime = time.plusHours(12);
// Test Minimum
Assert.assertEquals(1.0, stats.getMinimumValue(), 0.0001);
// Test Maximum
Assert.assertEquals(1.0, stats.getMaximumValue(), 0.0001);
if (counter.getValue() == 1) {
Assert.assertEquals((long) sampleTime.toInstant().toEpochMilli(), (long) stats.getMinimumTime());
Assert.assertEquals((long) sampleTime.toInstant().toEpochMilli(), (long) stats.getMaximumTime());
} else {
// Period start if there was a start value
Assert.assertEquals(time.toInstant().toEpochMilli(), (long) stats.getMinimumTime());
Assert.assertEquals(time.toInstant().toEpochMilli(), (long) stats.getMaximumTime());
}
// Test Average
Assert.assertEquals(1.0d, stats.getAverage(), 0.0001);
// Test Integral
if (counter.getValue() == 1) {
double integral = 1.0d * 12 * 60 * 60;
Assert.assertEquals(integral, stats.getIntegral(), 0.0001);
} else {
// 24Hrs
double integral = 1.0d * 24 * 60 * 60;
Assert.assertEquals(integral, stats.getIntegral(), 0.0001);
}
// Test sum
Assert.assertEquals(1.0d, stats.getSum(), 0.0001);
// Test first
Assert.assertEquals(1.0d, stats.getFirstValue(), 0.0001);
Assert.assertEquals((long) sampleTime.toInstant().toEpochMilli(), (long) stats.getFirstTime());
// Test last
Assert.assertEquals(1.0d, stats.getLastValue(), 0.0001);
Assert.assertEquals((long) sampleTime.toInstant().toEpochMilli(), (long) stats.getLastTime());
// Test start (the first start value will be null
if (counter.getValue() == 1)
Assert.assertEquals(null, stats.getStartValue());
else
Assert.assertEquals(1.0, stats.getStartValue(), 0.0001);
// Test count
Assert.assertEquals(1, stats.getCount());
// Test delta
Assert.assertEquals(0.0, stats.getDelta(), 0.0001);
// Move to next period time
time = (ZonedDateTime) adjuster.adjustInto(time);
}
});
quantizer.firstValue(null, 0, true);
for (int count = 0; count < data.size(); count++) quantizer.row(data.get(count), count + 1);
quantizer.lastValue(data.get(data.size() - 1), data.size() + 1, true);
quantizer.done();
Assert.assertEquals(new Integer(31), counter.getValue());
}
use of com.infiniteautomation.mango.statistics.AnalogStatistics in project ma-core-public by infiniteautomation.
the class AnalogStatisticsQuantizerTest method testStartValueAtPeriodStartNoPeriodValues.
@Test
public void testStartValueAtPeriodStartNoPeriodValues() throws IOException {
// Generate data at 12 noon for every day in the period
NextTimePeriodAdjuster adjuster = new NextTimePeriodAdjuster(TimePeriods.DAYS, 1);
// Reset time to track periods
time = ZonedDateTime.of(2017, 01, 01, 00, 00, 00, 0, zoneId);
MutableInt counter = new MutableInt(0);
BucketCalculator bc = new TimePeriodBucketCalculator(from, to, TimePeriods.DAYS, 1);
AnalogStatisticsQuantizer quantizer = new AnalogStatisticsQuantizer(bc, new StatisticsGeneratorQuantizerCallback<AnalogStatistics>() {
@Override
public void quantizedStatistics(AnalogStatistics statisticsGenerator) throws IOException {
counter.increment();
AnalogStatistics stats = (AnalogStatistics) statisticsGenerator;
// Test periodStart
Assert.assertEquals(time.toInstant().toEpochMilli(), stats.getPeriodStartTime());
// Test periodEnd
Assert.assertEquals(time.plusDays(1).toInstant().toEpochMilli(), stats.getPeriodEndTime());
ZonedDateTime sampleTime = time;
if (counter.getValue() == 1) {
// Test Minimum
Assert.assertEquals(1.0, stats.getMinimumValue(), 0.0001);
Assert.assertEquals((long) sampleTime.toInstant().toEpochMilli(), (long) stats.getMinimumTime());
// Test Maximum
Assert.assertEquals(1.0, stats.getMaximumValue(), 0.0001);
Assert.assertEquals((long) sampleTime.toInstant().toEpochMilli(), (long) stats.getMaximumTime());
// Test Average
Assert.assertEquals(1.0d, stats.getAverage(), 0.0001);
// Test Integral
// 24Hrs
double integral = 1.0d * 24 * 60 * 60;
Assert.assertEquals(integral, stats.getIntegral(), 0.0001);
// Test sum
Assert.assertEquals(1.0d, stats.getSum(), 0.0001);
// Test first
Assert.assertEquals(1.0d, stats.getFirstValue(), 0.0001);
Assert.assertEquals((long) sampleTime.toInstant().toEpochMilli(), (long) stats.getFirstTime());
// Test last
Assert.assertEquals(1.0d, stats.getLastValue(), 0.0001);
Assert.assertEquals((long) sampleTime.toInstant().toEpochMilli(), (long) stats.getLastTime());
// Test start
Assert.assertEquals(1.0, stats.getStartValue(), 0.0001);
// Test count
Assert.assertEquals(1, stats.getCount());
// Test delta
Assert.assertEquals(0.0, stats.getDelta(), 0.0001);
} else {
// No data in other periods
// Test Minimum
Assert.assertEquals(1.0, stats.getMinimumValue(), 0.0001);
Assert.assertEquals(time.toInstant().toEpochMilli(), (long) stats.getMinimumTime());
// Test Maximum
Assert.assertEquals(1.0, stats.getMaximumValue(), 0.0001);
Assert.assertEquals(time.toInstant().toEpochMilli(), (long) stats.getMaximumTime());
// Test Average
Assert.assertEquals(1.0, stats.getAverage(), 0.0001);
// Test Integral
double integral = 1.0 * 24 * 60 * 60;
Assert.assertEquals(integral, stats.getIntegral(), 0.0001);
// Test sum
Assert.assertEquals(0.0d, stats.getSum(), 0.0001);
// Test first
Assert.assertEquals(null, stats.getFirstValue());
Assert.assertEquals(null, stats.getFirstTime());
// Test last
Assert.assertEquals(null, stats.getLastValue());
Assert.assertEquals(null, stats.getLastTime());
// Test start
Assert.assertEquals(1.0, stats.getStartValue(), 0.0001);
// Test count
Assert.assertEquals(0, stats.getCount());
// Test delta
Assert.assertEquals(0.0d, stats.getDelta(), 0.0001);
}
// Move to next period time
time = (ZonedDateTime) adjuster.adjustInto(time);
}
});
quantizer.firstValue(new IdPointValueTime(1, new NumericValue(1.0), time.toInstant().toEpochMilli()), 0, false);
quantizer.done();
Assert.assertEquals(new Integer(31), counter.getValue());
}
use of com.infiniteautomation.mango.statistics.AnalogStatistics in project ma-core-public by infiniteautomation.
the class AnalogStatisticsQuantizerTest method testStartValueAtStartManyValuesPerPeriod.
@Test
public void testStartValueAtStartManyValuesPerPeriod() throws IOException {
// Generate data at 12 noon for every day in the period
NextTimePeriodAdjuster adjuster = new NextTimePeriodAdjuster(TimePeriods.DAYS, 1);
NextTimePeriodAdjuster hourlyAdjuster = new NextTimePeriodAdjuster(TimePeriods.HOURS, 1);
time = ZonedDateTime.of(2017, 01, 01, 12, 00, 00, 0, zoneId);
List<IdPointValueTime> data = new ArrayList<>();
while (time.toInstant().isBefore(to.toInstant())) {
// Insert 10 values per day
double value = 1.0;
ZonedDateTime daily = ZonedDateTime.ofInstant(time.toInstant(), zoneId);
for (int i = 0; i < 10; i++) {
data.add(new IdPointValueTime(1, new NumericValue(value), daily.toInstant().toEpochMilli()));
daily = (ZonedDateTime) hourlyAdjuster.adjustInto(daily);
value = value + 1.0d;
}
time = (ZonedDateTime) adjuster.adjustInto(time);
}
// Reset time to track periods
time = ZonedDateTime.of(2017, 01, 01, 00, 00, 00, 0, zoneId);
MutableInt counter = new MutableInt(0);
BucketCalculator bc = new TimePeriodBucketCalculator(from, to, TimePeriods.DAYS, 1);
AnalogStatisticsQuantizer quantizer = new AnalogStatisticsQuantizer(bc, new StatisticsGeneratorQuantizerCallback<AnalogStatistics>() {
@Override
public void quantizedStatistics(AnalogStatistics statisticsGenerator) throws IOException {
counter.increment();
AnalogStatistics stats = (AnalogStatistics) statisticsGenerator;
// Test periodStart
Assert.assertEquals(time.toInstant().toEpochMilli(), stats.getPeriodStartTime());
// Test periiodEnd
Assert.assertEquals(time.plusDays(1).toInstant().toEpochMilli(), stats.getPeriodEndTime());
// Test Minimum
if (counter.getValue() == 1) {
Assert.assertEquals(1.0, stats.getMinimumValue(), 0.0001);
Assert.assertEquals(time.toInstant().toEpochMilli(), (long) stats.getMinimumTime());
// Test Maximum
Assert.assertEquals(10.0, stats.getMaximumValue(), 0.0001);
Assert.assertEquals(time.plusHours(12).plusHours(9).toInstant().toEpochMilli(), (long) stats.getMaximumTime());
} else {
Assert.assertEquals(1.0, stats.getMinimumValue(), 0.0001);
Assert.assertEquals(time.plusHours(12).toInstant().toEpochMilli(), (long) stats.getMinimumTime());
// Test Maximum
Assert.assertEquals(10.0, stats.getMaximumValue(), 0.0001);
Assert.assertEquals(time.toInstant().toEpochMilli(), (long) stats.getMaximumTime());
}
// 1-9 for 1hr each, 10 for 12hrs at the start and 2hrs at the end
if (counter.getValue() == 1) {
double integral = 1d * 13 * 60d * 60d + 2d * 60 * 60 + 3d * 60 * 60 + 4d * 60 * 60 + 5d * 60 * 60 + 6d * 60 * 60 + 7d * 60 * 60 + 8d * 60 * 60 + 9d * 60 * 60;
integral = integral + 10d * 3d * 60 * 60;
double average = integral / (24d * 60d * 60d);
Assert.assertEquals(average, stats.getAverage(), 0.0001);
// Test Integral
Assert.assertEquals(integral, stats.getIntegral(), 0.0001);
} else {
double integral = 1d * 60d * 60d + 2d * 60 * 60 + 3d * 60 * 60 + 4d * 60 * 60 + 5d * 60 * 60 + 6d * 60 * 60 + 7d * 60 * 60 + 8d * 60 * 60 + 9d * 60 * 60;
integral = integral + 10d * 15d * 60 * 60;
double average = integral / (24d * 60d * 60d);
Assert.assertEquals(average, stats.getAverage(), 0.0001);
// Test Integral
Assert.assertEquals(integral, stats.getIntegral(), 0.0001);
}
// Test sum
if (counter.getValue() == 1) {
Assert.assertEquals(56d, stats.getSum(), 0.0001);
// Test first
Assert.assertEquals(1.0d, stats.getFirstValue(), 0.0001);
Assert.assertEquals((long) time.toInstant().toEpochMilli(), (long) stats.getFirstTime());
} else {
Assert.assertEquals(55d, stats.getSum(), 0.0001);
// Test first
Assert.assertEquals(1.0d, stats.getFirstValue(), 0.0001);
Assert.assertEquals((long) time.plusHours(12).toInstant().toEpochMilli(), (long) stats.getFirstTime());
}
// Test last
Assert.assertEquals(10.0d, stats.getLastValue(), 0.0001);
Assert.assertEquals((long) time.plusHours(12).plusHours(9).toInstant().toEpochMilli(), (long) stats.getLastTime());
if (counter.getValue() == 1) {
// Test start (the first start value will be null
Assert.assertEquals(1.0, stats.getStartValue(), 0.0001);
// Test count
Assert.assertEquals(11, stats.getCount());
} else {
// Test start (the first start value will be null
Assert.assertEquals(10.0, stats.getStartValue(), 0.0001);
// Test count
Assert.assertEquals(10, stats.getCount());
}
// Test delta
if (counter.getValue() == 1) {
// 1 to 10
Assert.assertEquals(9.0, stats.getDelta(), 0.0001);
} else {
Assert.assertEquals(0.0, stats.getDelta(), 0.0001);
}
// Move to next period time
time = (ZonedDateTime) adjuster.adjustInto(time);
}
});
quantizer.firstValue(new IdPointValueTime(1, new NumericValue(1.0), time.toInstant().toEpochMilli()), 0, false);
for (int count = 0; count < data.size(); count++) quantizer.row(data.get(count), count + 1);
quantizer.lastValue(data.get(data.size() - 1), data.size() + 1, true);
quantizer.done();
Assert.assertEquals(new Integer(31), counter.getValue());
}
use of com.infiniteautomation.mango.statistics.AnalogStatistics in project ma-core-public by infiniteautomation.
the class DataPointRT method initializeIntervalLogging.
//
// / Interval logging
//
/**
*/
public void initializeIntervalLogging(long nextPollTime, boolean quantize) {
if (vo.getLoggingType() != DataPointVO.LoggingTypes.INTERVAL && vo.getLoggingType() != DataPointVO.LoggingTypes.ON_CHANGE_INTERVAL)
return;
synchronized (intervalLoggingLock) {
long loggingPeriodMillis = Common.getMillis(vo.getIntervalLoggingPeriodType(), vo.getIntervalLoggingPeriod());
long delay = loggingPeriodMillis;
if (quantize) {
// Quantize the start.
// Compute delay only if we are offset from the next poll time
long nextPollOffset = (nextPollTime % loggingPeriodMillis);
if (nextPollOffset != 0)
delay = loggingPeriodMillis - nextPollOffset;
LOG.debug("First interval log should be at: " + (nextPollTime + delay));
}
if (vo.getLoggingType() == DataPointVO.LoggingTypes.INTERVAL) {
intervalValue = pointValue;
if (vo.getIntervalLoggingType() == DataPointVO.IntervalLoggingTypes.AVERAGE) {
intervalStartTime = timer == null ? Common.timer.currentTimeMillis() : timer.currentTimeMillis();
if (averagingValues.size() > 0) {
Double nullValue = null;
AnalogStatistics stats = new AnalogStatistics(intervalStartTime - loggingPeriodMillis, intervalStartTime, nullValue, averagingValues);
PointValueTime newValue = new PointValueTime(stats.getAverage(), intervalStartTime);
valueCache.logPointValueAsync(newValue, null);
// Fire logged Events
fireEvents(null, newValue, null, false, false, true, false, false);
averagingValues.clear();
}
}
// Are we using a custom timer?
if (this.timer == null)
intervalLoggingTask = new TimeoutTask(new FixedRateTrigger(delay, loggingPeriodMillis), createIntervalLoggingTimeoutClient());
else
intervalLoggingTask = new TimeoutTask(new FixedRateTrigger(delay, loggingPeriodMillis), createIntervalLoggingTimeoutClient(), this.timer);
} else if (vo.getLoggingType() == DataPointVO.LoggingTypes.ON_CHANGE_INTERVAL) {
rescheduleChangeInterval(delay);
}
}
}
use of com.infiniteautomation.mango.statistics.AnalogStatistics in project ma-modules-public by infiniteautomation.
the class PointValueTimeWriter method writeAllStatistics.
public void writeAllStatistics(StatisticsGenerator statisticsGenerator, DataPointVO vo, boolean rendered) throws IOException {
if (statisticsGenerator instanceof ValueChangeCounter) {
// We only need the timestamp here for image links
ValueChangeCounter stats = (ValueChangeCounter) statisticsGenerator;
writeDataValue(RollupEnum.START.name(), vo, stats.getStartValue(), stats.getPeriodStartTime(), rendered);
writeDataValue(RollupEnum.FIRST.name(), vo, stats.getFirstValue(), stats.getFirstTime(), rendered);
writeDataValue(RollupEnum.LAST.name(), vo, stats.getLastValue(), stats.getLastTime(), rendered);
writeIntegerField(RollupEnum.COUNT.name(), stats.getCount());
} else if (statisticsGenerator instanceof StartsAndRuntimeList) {
StartsAndRuntimeList stats = (StartsAndRuntimeList) statisticsGenerator;
writeDataValue(RollupEnum.START.name(), vo, stats.getStartValue(), stats.getPeriodStartTime(), rendered);
writeDataValue(RollupEnum.FIRST.name(), vo, stats.getFirstValue(), stats.getFirstTime(), rendered);
writeDataValue(RollupEnum.LAST.name(), vo, stats.getLastValue(), stats.getLastTime(), rendered);
writeIntegerField(RollupEnum.COUNT.name(), stats.getCount());
} else if (statisticsGenerator instanceof AnalogStatistics) {
AnalogStatistics stats = (AnalogStatistics) statisticsGenerator;
writeAccumulator(RollupEnum.ACCUMULATOR.name(), vo, stats, rendered);
writeAnalogStatistic(RollupEnum.AVERAGE.name(), vo, stats.getAverage(), rendered);
writeAnalogStatistic(RollupEnum.DELTA.name(), vo, stats.getDelta(), rendered);
writeAnalogStatistic(RollupEnum.MINIMUM.name(), vo, stats.getMinimumValue(), rendered);
writeAnalogStatistic(RollupEnum.MAXIMUM.name(), vo, stats.getMaximumValue(), rendered);
writeAnalogStatistic(RollupEnum.SUM.name(), vo, stats.getSum(), rendered);
writeAnalogStatistic(RollupEnum.START.name(), vo, stats.getStartValue(), rendered);
writeAnalogStatistic(RollupEnum.FIRST.name(), vo, stats.getFirstValue(), rendered);
writeAnalogStatistic(RollupEnum.LAST.name(), vo, stats.getLastValue(), rendered);
writeIntegral(RollupEnum.INTEGRAL.name(), vo, stats.getIntegral(), rendered);
writeIntegerField(RollupEnum.COUNT.name(), stats.getCount());
}
}
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