use of org.n52.oxf.TableType.Entry in project series-rest-api by 52North.
the class PDFReportGenerator method addDataTable.
private void addDataTable(TimeSeries timeseries, TimeseriesMetadataOutput metadata, TvpDataCollection<QuantityData> dataCollection) {
TableType dataTable = timeseries.addNewTable();
// TODO add language context
dataTable.setLeftColHeader("Date");
dataTable.setRightColHeader(createValueTableHeader(metadata));
QuantityData data = dataCollection.getSeries(metadata.getId());
for (QuantityValue valueEntry : data.getValues()) {
Entry entry = dataTable.addNewEntry();
// TODO update TableType schema to allow start/end time
entry.setTime(new DateTime(valueEntry.getTimestamp()).toString());
entry.setValue(Double.toString(valueEntry.getValue()));
}
}
use of org.n52.oxf.TableType.Entry in project series-rest-api by 52North.
the class StatusIntervalsExtension method createIntervals.
private StatusInterval[] createIntervals(ConfigInterval configInterval) {
Map<String, StatusInterval> statusIntervals = configInterval.getStatusIntervals();
for (Entry<String, StatusInterval> entry : statusIntervals.entrySet()) {
StatusInterval value = entry.getValue();
value.setName(entry.getKey());
}
return statusIntervals.values().toArray(new StatusInterval[0]);
}
use of org.n52.oxf.TableType.Entry in project series-rest-api by 52North.
the class MultipleChartsRenderer method writeDataToChart.
@Override
public void writeDataToChart(DataCollection<QuantityData> data) {
Map<String, QuantityData> allTimeseries = data.getAllSeries();
List<? extends DatasetOutput> timeseriesMetadatas = getMetadataOutputs();
int rendererCount = timeseriesMetadatas.size();
for (int rendererIndex = 0; rendererIndex < timeseriesMetadatas.size(); rendererIndex++) {
/*
* For each index put data and its renderer configured to a particular style.
*
* As each timeseries may define its custom styling and different chart types we have to loop over
* all timeseries to configure chart rendering.
*/
DatasetOutput timeseriesMetadata = timeseriesMetadatas.get(rendererIndex);
String timeseriesId = timeseriesMetadata.getId();
StyleProperties style = getTimeseriesStyleFor(timeseriesId);
QuantityData timeseriesData = allTimeseries.get(timeseriesId);
String chartId = createChartId(timeseriesMetadata);
ChartIndexConfiguration configuration = new ChartIndexConfiguration(chartId, rendererIndex);
configuration.setData(timeseriesData, timeseriesMetadata, style);
configuration.setRenderer(createRenderer(style));
if (timeseriesData.hasReferenceValues()) {
int referenceIndex = rendererCount;
/*
* Configure timeseries reference value renderers with the same metadata and add it at the end
* of the plot's renderer list.
*/
QuantityDatasetMetadata metadata = timeseriesData.getMetadata();
Map<String, QuantityData> referenceValues = metadata.getReferenceValues();
for (Entry<String, QuantityData> referencedTimeseries : referenceValues.entrySet()) {
String referenceTimeseriesId = referencedTimeseries.getKey();
ReferenceValueOutput referenceOutput = getReferenceValue(referenceTimeseriesId, timeseriesMetadata);
String referenceChartId = createChartId(timeseriesMetadata, referenceOutput.getLabel());
QuantityData referenceData = referenceValues.get(referenceTimeseriesId);
ChartIndexConfiguration referenceConfiguration = new ChartIndexConfiguration(referenceChartId, referenceIndex);
StyleProperties referenceStyle = getTimeseriesStyleFor(timeseriesId, referenceTimeseriesId);
referenceConfiguration.setReferenceData(referenceData, timeseriesMetadata, referenceStyle);
referenceConfiguration.setRenderer(createRenderer(referenceStyle));
referenceIndex++;
}
}
}
}
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