logs_model.ts 11 KB

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  1. import _ from 'lodash';
  2. import ansicolor from 'vendor/ansicolor/ansicolor';
  3. import {
  4. colors,
  5. TimeSeries,
  6. Labels,
  7. LogLevel,
  8. SeriesData,
  9. findCommonLabels,
  10. findUniqueLabels,
  11. getLogLevel,
  12. toLegacyResponseData,
  13. FieldCache,
  14. FieldType,
  15. LogRowModel,
  16. LogsModel,
  17. LogsMetaItem,
  18. LogsMetaKind,
  19. LogsParser,
  20. LogLabelStatsModel,
  21. LogsDedupStrategy,
  22. } from '@grafana/ui';
  23. import { getThemeColor } from 'app/core/utils/colors';
  24. import { hasAnsiCodes } from 'app/core/utils/text';
  25. import { dateTime } from '@grafana/ui/src/utils/moment_wrapper';
  26. export const LogLevelColor = {
  27. [LogLevel.critical]: colors[7],
  28. [LogLevel.warning]: colors[1],
  29. [LogLevel.error]: colors[4],
  30. [LogLevel.info]: colors[0],
  31. [LogLevel.debug]: colors[5],
  32. [LogLevel.trace]: colors[2],
  33. [LogLevel.unknown]: getThemeColor('#8e8e8e', '#dde4ed'),
  34. };
  35. export enum LogsDedupDescription {
  36. none = 'No de-duplication',
  37. exact = 'De-duplication of successive lines that are identical, ignoring ISO datetimes.',
  38. numbers = 'De-duplication of successive lines that are identical when ignoring numbers, e.g., IP addresses, latencies.',
  39. signature = 'De-duplication of successive lines that have identical punctuation and whitespace.',
  40. }
  41. const LOGFMT_REGEXP = /(?:^|\s)(\w+)=("[^"]*"|\S+)/;
  42. export const LogsParsers: { [name: string]: LogsParser } = {
  43. JSON: {
  44. buildMatcher: label => new RegExp(`(?:{|,)\\s*"${label}"\\s*:\\s*"?([\\d\\.]+|[^"]*)"?`),
  45. getFields: line => {
  46. const fields: string[] = [];
  47. try {
  48. const parsed = JSON.parse(line);
  49. _.map(parsed, (value, key) => {
  50. const fieldMatcher = new RegExp(`"${key}"\\s*:\\s*"?${_.escapeRegExp(JSON.stringify(value))}"?`);
  51. const match = line.match(fieldMatcher);
  52. if (match) {
  53. fields.push(match[0]);
  54. }
  55. });
  56. } catch {}
  57. return fields;
  58. },
  59. getLabelFromField: field => (field.match(/^"(\w+)"\s*:/) || [])[1],
  60. getValueFromField: field => (field.match(/:\s*(.*)$/) || [])[1],
  61. test: line => {
  62. try {
  63. return JSON.parse(line);
  64. } catch (error) {}
  65. },
  66. },
  67. logfmt: {
  68. buildMatcher: label => new RegExp(`(?:^|\\s)${label}=("[^"]*"|\\S+)`),
  69. getFields: line => {
  70. const fields: string[] = [];
  71. line.replace(new RegExp(LOGFMT_REGEXP, 'g'), substring => {
  72. fields.push(substring.trim());
  73. return '';
  74. });
  75. return fields;
  76. },
  77. getLabelFromField: field => (field.match(LOGFMT_REGEXP) || [])[1],
  78. getValueFromField: field => (field.match(LOGFMT_REGEXP) || [])[2],
  79. test: line => LOGFMT_REGEXP.test(line),
  80. },
  81. };
  82. export function calculateFieldStats(rows: LogRowModel[], extractor: RegExp): LogLabelStatsModel[] {
  83. // Consider only rows that satisfy the matcher
  84. const rowsWithField = rows.filter(row => extractor.test(row.entry));
  85. const rowCount = rowsWithField.length;
  86. // Get field value counts for eligible rows
  87. const countsByValue = _.countBy(rowsWithField, row => (row as LogRowModel).entry.match(extractor)[1]);
  88. const sortedCounts = _.chain(countsByValue)
  89. .map((count, value) => ({ count, value, proportion: count / rowCount }))
  90. .sortBy('count')
  91. .reverse()
  92. .value();
  93. return sortedCounts;
  94. }
  95. export function calculateLogsLabelStats(rows: LogRowModel[], label: string): LogLabelStatsModel[] {
  96. // Consider only rows that have the given label
  97. const rowsWithLabel = rows.filter(row => row.labels[label] !== undefined);
  98. const rowCount = rowsWithLabel.length;
  99. // Get label value counts for eligible rows
  100. const countsByValue = _.countBy(rowsWithLabel, row => (row as LogRowModel).labels[label]);
  101. const sortedCounts = _.chain(countsByValue)
  102. .map((count, value) => ({ count, value, proportion: count / rowCount }))
  103. .sortBy('count')
  104. .reverse()
  105. .value();
  106. return sortedCounts;
  107. }
  108. const isoDateRegexp = /\d{4}-[01]\d-[0-3]\dT[0-2]\d:[0-5]\d:[0-6]\d[,\.]\d+([+-][0-2]\d:[0-5]\d|Z)/g;
  109. function isDuplicateRow(row: LogRowModel, other: LogRowModel, strategy: LogsDedupStrategy): boolean {
  110. switch (strategy) {
  111. case LogsDedupStrategy.exact:
  112. // Exact still strips dates
  113. return row.entry.replace(isoDateRegexp, '') === other.entry.replace(isoDateRegexp, '');
  114. case LogsDedupStrategy.numbers:
  115. return row.entry.replace(/\d/g, '') === other.entry.replace(/\d/g, '');
  116. case LogsDedupStrategy.signature:
  117. return row.entry.replace(/\w/g, '') === other.entry.replace(/\w/g, '');
  118. default:
  119. return false;
  120. }
  121. }
  122. export function dedupLogRows(logs: LogsModel, strategy: LogsDedupStrategy): LogsModel {
  123. if (strategy === LogsDedupStrategy.none) {
  124. return logs;
  125. }
  126. const dedupedRows = logs.rows.reduce((result: LogRowModel[], row: LogRowModel, index, list) => {
  127. const rowCopy = { ...row };
  128. const previous = result[result.length - 1];
  129. if (index > 0 && isDuplicateRow(row, previous, strategy)) {
  130. previous.duplicates++;
  131. } else {
  132. rowCopy.duplicates = 0;
  133. result.push(rowCopy);
  134. }
  135. return result;
  136. }, []);
  137. return {
  138. ...logs,
  139. rows: dedupedRows,
  140. };
  141. }
  142. export function getParser(line: string): LogsParser {
  143. let parser;
  144. try {
  145. if (LogsParsers.JSON.test(line)) {
  146. parser = LogsParsers.JSON;
  147. }
  148. } catch (error) {}
  149. if (!parser && LogsParsers.logfmt.test(line)) {
  150. parser = LogsParsers.logfmt;
  151. }
  152. return parser;
  153. }
  154. export function filterLogLevels(logs: LogsModel, hiddenLogLevels: Set<LogLevel>): LogsModel {
  155. if (hiddenLogLevels.size === 0) {
  156. return logs;
  157. }
  158. const filteredRows = logs.rows.reduce((result: LogRowModel[], row: LogRowModel, index, list) => {
  159. if (!hiddenLogLevels.has(row.logLevel)) {
  160. result.push(row);
  161. }
  162. return result;
  163. }, []);
  164. return {
  165. ...logs,
  166. rows: filteredRows,
  167. };
  168. }
  169. export function makeSeriesForLogs(rows: LogRowModel[], intervalMs: number): TimeSeries[] {
  170. // currently interval is rangeMs / resolution, which is too low for showing series as bars.
  171. // need at least 10px per bucket, so we multiply interval by 10. Should be solved higher up the chain
  172. // when executing queries & interval calculated and not here but this is a temporary fix.
  173. // intervalMs = intervalMs * 10;
  174. // Graph time series by log level
  175. const seriesByLevel: any = {};
  176. const bucketSize = intervalMs * 10;
  177. const seriesList: any[] = [];
  178. for (const row of rows) {
  179. let series = seriesByLevel[row.logLevel];
  180. if (!series) {
  181. seriesByLevel[row.logLevel] = series = {
  182. lastTs: null,
  183. datapoints: [],
  184. alias: row.logLevel,
  185. color: LogLevelColor[row.logLevel],
  186. };
  187. seriesList.push(series);
  188. }
  189. // align time to bucket size
  190. const time = Math.round(row.timeEpochMs / bucketSize) * bucketSize;
  191. // Entry for time
  192. if (time === series.lastTs) {
  193. series.datapoints[series.datapoints.length - 1][0]++;
  194. } else {
  195. series.datapoints.push([1, time]);
  196. series.lastTs = time;
  197. }
  198. // add zero to other levels to aid stacking so each level series has same number of points
  199. for (const other of seriesList) {
  200. if (other !== series && other.lastTs !== time) {
  201. other.datapoints.push([0, time]);
  202. other.lastTs = time;
  203. }
  204. }
  205. }
  206. return seriesList.map(series => {
  207. series.datapoints.sort((a: number[], b: number[]) => {
  208. return a[1] - b[1];
  209. });
  210. return {
  211. datapoints: series.datapoints,
  212. target: series.alias,
  213. alias: series.alias,
  214. color: series.color,
  215. };
  216. });
  217. }
  218. function isLogsData(series: SeriesData) {
  219. return series.fields.some(f => f.type === FieldType.time) && series.fields.some(f => f.type === FieldType.string);
  220. }
  221. export function seriesDataToLogsModel(seriesData: SeriesData[], intervalMs: number): LogsModel {
  222. const metricSeries: SeriesData[] = [];
  223. const logSeries: SeriesData[] = [];
  224. for (const series of seriesData) {
  225. if (isLogsData(series)) {
  226. logSeries.push(series);
  227. continue;
  228. }
  229. metricSeries.push(series);
  230. }
  231. const logsModel = logSeriesToLogsModel(logSeries);
  232. if (logsModel) {
  233. if (metricSeries.length === 0) {
  234. logsModel.series = makeSeriesForLogs(logsModel.rows, intervalMs);
  235. } else {
  236. logsModel.series = [];
  237. for (const series of metricSeries) {
  238. logsModel.series.push(toLegacyResponseData(series) as TimeSeries);
  239. }
  240. }
  241. return logsModel;
  242. }
  243. return {
  244. hasUniqueLabels: false,
  245. rows: [],
  246. meta: [],
  247. series: [],
  248. };
  249. }
  250. export function logSeriesToLogsModel(logSeries: SeriesData[]): LogsModel {
  251. if (logSeries.length === 0) {
  252. return undefined;
  253. }
  254. const allLabels: Labels[] = [];
  255. for (let n = 0; n < logSeries.length; n++) {
  256. const series = logSeries[n];
  257. if (series.labels) {
  258. allLabels.push(series.labels);
  259. }
  260. }
  261. let commonLabels: Labels = {};
  262. if (allLabels.length > 0) {
  263. commonLabels = findCommonLabels(allLabels);
  264. }
  265. const rows: LogRowModel[] = [];
  266. let hasUniqueLabels = false;
  267. for (let i = 0; i < logSeries.length; i++) {
  268. const series = logSeries[i];
  269. const fieldCache = new FieldCache(series.fields);
  270. const uniqueLabels = findUniqueLabels(series.labels, commonLabels);
  271. if (Object.keys(uniqueLabels).length > 0) {
  272. hasUniqueLabels = true;
  273. }
  274. for (let j = 0; j < series.rows.length; j++) {
  275. rows.push(processLogSeriesRow(series, fieldCache, j, uniqueLabels));
  276. }
  277. }
  278. const sortedRows = rows.sort((a, b) => {
  279. return a.timestamp > b.timestamp ? -1 : 1;
  280. });
  281. // Meta data to display in status
  282. const meta: LogsMetaItem[] = [];
  283. if (_.size(commonLabels) > 0) {
  284. meta.push({
  285. label: 'Common labels',
  286. value: commonLabels,
  287. kind: LogsMetaKind.LabelsMap,
  288. });
  289. }
  290. const limits = logSeries.filter(series => series.meta && series.meta.limit);
  291. if (limits.length > 0) {
  292. meta.push({
  293. label: 'Limit',
  294. value: `${limits[0].meta.limit} (${sortedRows.length} returned)`,
  295. kind: LogsMetaKind.String,
  296. });
  297. }
  298. return {
  299. hasUniqueLabels,
  300. meta,
  301. rows: sortedRows,
  302. };
  303. }
  304. export function processLogSeriesRow(
  305. series: SeriesData,
  306. fieldCache: FieldCache,
  307. rowIndex: number,
  308. uniqueLabels: Labels
  309. ): LogRowModel {
  310. const row = series.rows[rowIndex];
  311. const timeFieldIndex = fieldCache.getFirstFieldOfType(FieldType.time).index;
  312. const ts = row[timeFieldIndex];
  313. const stringFieldIndex = fieldCache.getFirstFieldOfType(FieldType.string).index;
  314. const message = row[stringFieldIndex];
  315. const time = dateTime(ts);
  316. const timeEpochMs = time.valueOf();
  317. const timeFromNow = time.fromNow();
  318. const timeLocal = time.format('YYYY-MM-DD HH:mm:ss');
  319. const logLevel = getLogLevel(message);
  320. const hasAnsi = hasAnsiCodes(message);
  321. const searchWords = series.meta && series.meta.searchWords ? series.meta.searchWords : [];
  322. return {
  323. logLevel,
  324. timeFromNow,
  325. timeEpochMs,
  326. timeLocal,
  327. uniqueLabels,
  328. hasAnsi,
  329. searchWords,
  330. entry: hasAnsi ? ansicolor.strip(message) : message,
  331. raw: message,
  332. labels: series.labels,
  333. timestamp: ts,
  334. };
  335. }