heatmap_ctrl.ts 11 KB

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  1. import { MetricsPanelCtrl } from 'app/plugins/sdk';
  2. import _ from 'lodash';
  3. import kbn from 'app/core/utils/kbn';
  4. import TimeSeries from 'app/core/time_series2';
  5. import { axesEditor } from './axes_editor';
  6. import { heatmapDisplayEditor } from './display_editor';
  7. import rendering from './rendering';
  8. import {
  9. convertToHeatMap,
  10. convertToCards,
  11. histogramToHeatmap,
  12. calculateBucketSize,
  13. sortSeriesByLabel,
  14. } from './heatmap_data_converter';
  15. const X_BUCKET_NUMBER_DEFAULT = 30;
  16. const Y_BUCKET_NUMBER_DEFAULT = 10;
  17. const panelDefaults = {
  18. heatmap: {},
  19. cards: {
  20. cardPadding: null,
  21. cardRound: null,
  22. },
  23. color: {
  24. mode: 'spectrum',
  25. cardColor: '#b4ff00',
  26. colorScale: 'sqrt',
  27. exponent: 0.5,
  28. colorScheme: 'interpolateOranges',
  29. },
  30. legend: {
  31. show: false,
  32. },
  33. dataFormat: 'timeseries',
  34. yBucketBound: 'auto',
  35. reverseYBuckets: false,
  36. xAxis: {
  37. show: true,
  38. },
  39. yAxis: {
  40. show: true,
  41. format: 'short',
  42. decimals: null,
  43. logBase: 1,
  44. splitFactor: null,
  45. min: null,
  46. max: null,
  47. },
  48. xBucketSize: null,
  49. xBucketNumber: null,
  50. yBucketSize: null,
  51. yBucketNumber: null,
  52. tooltip: {
  53. show: true,
  54. showHistogram: false,
  55. },
  56. highlightCards: true,
  57. };
  58. const colorModes = ['opacity', 'spectrum'];
  59. const opacityScales = ['linear', 'sqrt'];
  60. // Schemes from d3-scale-chromatic
  61. // https://github.com/d3/d3-scale-chromatic
  62. const colorSchemes = [
  63. // Diverging
  64. { name: 'Spectral', value: 'interpolateSpectral', invert: 'always' },
  65. { name: 'RdYlGn', value: 'interpolateRdYlGn', invert: 'always' },
  66. // Sequential (Single Hue)
  67. { name: 'Blues', value: 'interpolateBlues', invert: 'dark' },
  68. { name: 'Greens', value: 'interpolateGreens', invert: 'dark' },
  69. { name: 'Greys', value: 'interpolateGreys', invert: 'dark' },
  70. { name: 'Oranges', value: 'interpolateOranges', invert: 'dark' },
  71. { name: 'Purples', value: 'interpolatePurples', invert: 'dark' },
  72. { name: 'Reds', value: 'interpolateReds', invert: 'dark' },
  73. // Sequential (Multi-Hue)
  74. { name: 'Viridis', value: 'interpolateViridis', invert: 'light' },
  75. { name: 'Magma', value: 'interpolateMagma', invert: 'light' },
  76. { name: 'Inferno', value: 'interpolateInferno', invert: 'light' },
  77. { name: 'Plasma', value: 'interpolatePlasma', invert: 'light' },
  78. { name: 'Warm', value: 'interpolateWarm', invert: 'light' },
  79. { name: 'Cool', value: 'interpolateCool', invert: 'light' },
  80. { name: 'Cubehelix', value: 'interpolateCubehelixDefault', invert: 'light' },
  81. { name: 'BuGn', value: 'interpolateBuGn', invert: 'dark' },
  82. { name: 'BuPu', value: 'interpolateBuPu', invert: 'dark' },
  83. { name: 'GnBu', value: 'interpolateGnBu', invert: 'dark' },
  84. { name: 'OrRd', value: 'interpolateOrRd', invert: 'dark' },
  85. { name: 'PuBuGn', value: 'interpolatePuBuGn', invert: 'dark' },
  86. { name: 'PuBu', value: 'interpolatePuBu', invert: 'dark' },
  87. { name: 'PuRd', value: 'interpolatePuRd', invert: 'dark' },
  88. { name: 'RdPu', value: 'interpolateRdPu', invert: 'dark' },
  89. { name: 'YlGnBu', value: 'interpolateYlGnBu', invert: 'dark' },
  90. { name: 'YlGn', value: 'interpolateYlGn', invert: 'dark' },
  91. { name: 'YlOrBr', value: 'interpolateYlOrBr', invert: 'dark' },
  92. { name: 'YlOrRd', value: 'interpolateYlOrRd', invert: 'dark' },
  93. ];
  94. const dsSupportHistogramSort = ['prometheus', 'elasticsearch'];
  95. export class HeatmapCtrl extends MetricsPanelCtrl {
  96. static templateUrl = 'module.html';
  97. opacityScales: any = [];
  98. colorModes: any = [];
  99. colorSchemes: any = [];
  100. selectionActivated: boolean;
  101. unitFormats: any;
  102. data: any;
  103. series: any[];
  104. timeSrv: any;
  105. dataWarning: any;
  106. decimals: number;
  107. scaledDecimals: number;
  108. /** @ngInject */
  109. constructor($scope, $injector, timeSrv) {
  110. super($scope, $injector);
  111. this.timeSrv = timeSrv;
  112. this.selectionActivated = false;
  113. _.defaultsDeep(this.panel, panelDefaults);
  114. this.opacityScales = opacityScales;
  115. this.colorModes = colorModes;
  116. this.colorSchemes = colorSchemes;
  117. // Bind grafana panel events
  118. this.events.on('render', this.onRender.bind(this));
  119. this.events.on('data-received', this.onDataReceived.bind(this));
  120. this.events.on('data-error', this.onDataError.bind(this));
  121. this.events.on('data-snapshot-load', this.onDataReceived.bind(this));
  122. this.events.on('init-edit-mode', this.onInitEditMode.bind(this));
  123. this.onCardColorChange = this.onCardColorChange.bind(this);
  124. }
  125. onInitEditMode() {
  126. this.addEditorTab('Axes', axesEditor, 2);
  127. this.addEditorTab('Display', heatmapDisplayEditor, 3);
  128. this.unitFormats = kbn.getUnitFormats();
  129. }
  130. zoomOut(evt) {
  131. this.publishAppEvent('zoom-out', 2);
  132. }
  133. onRender() {
  134. if (!this.range || !this.series) {
  135. return;
  136. }
  137. if (this.panel.dataFormat === 'tsbuckets') {
  138. this.convertHistogramToHeatmapData();
  139. } else {
  140. this.convertTimeSeriesToHeatmapData();
  141. }
  142. }
  143. convertTimeSeriesToHeatmapData() {
  144. let xBucketSize, yBucketSize, bucketsData, heatmapStats;
  145. const logBase = this.panel.yAxis.logBase;
  146. const xBucketNumber = this.panel.xBucketNumber || X_BUCKET_NUMBER_DEFAULT;
  147. const xBucketSizeByNumber = Math.floor((this.range.to - this.range.from) / xBucketNumber);
  148. // Parse X bucket size (number or interval)
  149. const isIntervalString = kbn.interval_regex.test(this.panel.xBucketSize);
  150. if (isIntervalString) {
  151. xBucketSize = kbn.interval_to_ms(this.panel.xBucketSize);
  152. } else if (
  153. isNaN(Number(this.panel.xBucketSize)) ||
  154. this.panel.xBucketSize === '' ||
  155. this.panel.xBucketSize === null
  156. ) {
  157. xBucketSize = xBucketSizeByNumber;
  158. } else {
  159. xBucketSize = Number(this.panel.xBucketSize);
  160. }
  161. // Calculate Y bucket size
  162. heatmapStats = this.parseSeries(this.series);
  163. const yBucketNumber = this.panel.yBucketNumber || Y_BUCKET_NUMBER_DEFAULT;
  164. if (logBase !== 1) {
  165. yBucketSize = this.panel.yAxis.splitFactor;
  166. } else {
  167. if (heatmapStats.max === heatmapStats.min) {
  168. if (heatmapStats.max) {
  169. yBucketSize = heatmapStats.max / Y_BUCKET_NUMBER_DEFAULT;
  170. } else {
  171. yBucketSize = 1;
  172. }
  173. } else {
  174. yBucketSize = (heatmapStats.max - heatmapStats.min) / yBucketNumber;
  175. }
  176. yBucketSize = this.panel.yBucketSize || yBucketSize;
  177. }
  178. bucketsData = convertToHeatMap(this.series, yBucketSize, xBucketSize, logBase);
  179. // Set default Y range if no data
  180. if (!heatmapStats.min && !heatmapStats.max) {
  181. heatmapStats = { min: -1, max: 1, minLog: 1 };
  182. yBucketSize = 1;
  183. }
  184. const { cards, cardStats } = convertToCards(bucketsData);
  185. this.data = {
  186. buckets: bucketsData,
  187. heatmapStats: heatmapStats,
  188. xBucketSize: xBucketSize,
  189. yBucketSize: yBucketSize,
  190. cards: cards,
  191. cardStats: cardStats,
  192. };
  193. }
  194. convertHistogramToHeatmapData() {
  195. const panelDatasource = this.getPanelDataSourceType();
  196. let xBucketSize, yBucketSize, bucketsData, tsBuckets;
  197. // Try to sort series by bucket bound, if datasource doesn't do it.
  198. if (!_.includes(dsSupportHistogramSort, panelDatasource)) {
  199. this.series.sort(sortSeriesByLabel);
  200. }
  201. if (this.panel.reverseYBuckets) {
  202. this.series.reverse();
  203. }
  204. // Convert histogram to heatmap. Each histogram bucket represented by the series which name is
  205. // a top (or bottom, depends of datasource) bucket bound. Further, these values will be used as Y axis labels.
  206. bucketsData = histogramToHeatmap(this.series);
  207. tsBuckets = _.map(this.series, 'label');
  208. const yBucketBound = this.panel.yBucketBound;
  209. if (
  210. (panelDatasource === 'prometheus' && yBucketBound !== 'lower' && yBucketBound !== 'middle') ||
  211. yBucketBound === 'upper'
  212. ) {
  213. // Prometheus labels are upper inclusive bounds, so add empty bottom bucket label.
  214. tsBuckets = [''].concat(tsBuckets);
  215. } else {
  216. // Elasticsearch uses labels as lower bucket bounds, so add empty top bucket label.
  217. // Use this as a default mode as well.
  218. tsBuckets.push('');
  219. }
  220. // Calculate bucket size based on heatmap data
  221. const xBucketBoundSet = _.map(_.keys(bucketsData), key => Number(key));
  222. xBucketSize = calculateBucketSize(xBucketBoundSet);
  223. // Always let yBucketSize=1 in 'tsbuckets' mode
  224. yBucketSize = 1;
  225. const { cards, cardStats } = convertToCards(bucketsData);
  226. this.data = {
  227. buckets: bucketsData,
  228. xBucketSize: xBucketSize,
  229. yBucketSize: yBucketSize,
  230. tsBuckets: tsBuckets,
  231. cards: cards,
  232. cardStats: cardStats,
  233. };
  234. }
  235. getPanelDataSourceType() {
  236. if (this.datasource.meta && this.datasource.meta.id) {
  237. return this.datasource.meta.id;
  238. } else {
  239. return 'unknown';
  240. }
  241. }
  242. onDataReceived(dataList) {
  243. this.series = dataList.map(this.seriesHandler.bind(this));
  244. this.dataWarning = null;
  245. const datapointsCount = _.reduce(
  246. this.series,
  247. (sum, series) => {
  248. return sum + series.datapoints.length;
  249. },
  250. 0
  251. );
  252. if (datapointsCount === 0) {
  253. this.dataWarning = {
  254. title: 'No data points',
  255. tip: 'No datapoints returned from data query',
  256. };
  257. } else {
  258. for (const series of this.series) {
  259. if (series.isOutsideRange) {
  260. this.dataWarning = {
  261. title: 'Data points outside time range',
  262. tip: 'Can be caused by timezone mismatch or missing time filter in query',
  263. };
  264. break;
  265. }
  266. }
  267. }
  268. this.render();
  269. }
  270. onDataError() {
  271. this.series = [];
  272. this.render();
  273. }
  274. onCardColorChange(newColor) {
  275. this.panel.color.cardColor = newColor;
  276. this.render();
  277. }
  278. seriesHandler(seriesData) {
  279. if (seriesData.datapoints === undefined) {
  280. throw new Error('Heatmap error: data should be a time series');
  281. }
  282. const series = new TimeSeries({
  283. datapoints: seriesData.datapoints,
  284. alias: seriesData.target,
  285. });
  286. series.flotpairs = series.getFlotPairs(this.panel.nullPointMode);
  287. const datapoints = seriesData.datapoints || [];
  288. if (datapoints && datapoints.length > 0) {
  289. const last = datapoints[datapoints.length - 1][1];
  290. const from = this.range.from;
  291. if (last - from < -10000) {
  292. series.isOutsideRange = true;
  293. }
  294. }
  295. return series;
  296. }
  297. parseSeries(series) {
  298. const min = _.min(_.map(series, s => s.stats.min));
  299. const minLog = _.min(_.map(series, s => s.stats.logmin));
  300. const max = _.max(_.map(series, s => s.stats.max));
  301. return {
  302. max: max,
  303. min: min,
  304. minLog: minLog,
  305. };
  306. }
  307. parseHistogramSeries(series) {
  308. const bounds = _.map(series, s => Number(s.alias));
  309. const min = _.min(bounds);
  310. const minLog = _.min(bounds);
  311. const max = _.max(bounds);
  312. return {
  313. max: max,
  314. min: min,
  315. minLog: minLog,
  316. };
  317. }
  318. link(scope, elem, attrs, ctrl) {
  319. rendering(scope, elem, attrs, ctrl);
  320. }
  321. }