index.ts 5.4 KB

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  1. import path from 'path';
  2. import picocolors from 'picocolors';
  3. const SPAN_STATUS_START = 0;
  4. const SPAN_STATUS_END = 1;
  5. const NUM_OF_MS_IN_NANOSEC = 1_000_000;
  6. const spanTag = Symbol('span');
  7. export interface TraceResult {
  8. name: string,
  9. start: number,
  10. end: number,
  11. children: TraceResult[]
  12. }
  13. const rootTraceResult: TraceResult = {
  14. name: 'root',
  15. start: 0,
  16. end: 0,
  17. children: []
  18. };
  19. export interface Span {
  20. [spanTag]: true,
  21. readonly stop: (time?: number) => void,
  22. readonly traceChild: (name: string) => Span,
  23. readonly traceSyncFn: <T>(fn: (span: Span) => T) => T,
  24. readonly traceAsyncFn: <T>(fn: (span: Span) => T | Promise<T>) => Promise<T>,
  25. readonly tracePromise: <T>(promise: Promise<T>) => Promise<T>,
  26. readonly traceChildSync: <T>(name: string, fn: (span: Span) => T) => T,
  27. readonly traceChildAsync: <T>(name: string, fn: (span: Span) => Promise<T>) => Promise<T>,
  28. readonly traceChildPromise: <T>(name: string, promise: Promise<T>) => Promise<T>,
  29. readonly traceResult: TraceResult
  30. }
  31. export const createSpan = (name: string, parentTraceResult?: TraceResult): Span => {
  32. const start = Bun.nanoseconds();
  33. let curTraceResult: TraceResult;
  34. if (parentTraceResult == null) {
  35. curTraceResult = rootTraceResult;
  36. } else {
  37. curTraceResult = {
  38. name,
  39. start: start / NUM_OF_MS_IN_NANOSEC,
  40. end: 0,
  41. children: []
  42. };
  43. parentTraceResult.children.push(curTraceResult);
  44. }
  45. let status: typeof SPAN_STATUS_START | typeof SPAN_STATUS_END = SPAN_STATUS_START;
  46. const stop = (time?: number) => {
  47. if (status === SPAN_STATUS_END) {
  48. throw new Error(`span already stopped: ${name}`);
  49. }
  50. const end = time ?? Bun.nanoseconds();
  51. curTraceResult.end = end / NUM_OF_MS_IN_NANOSEC;
  52. status = SPAN_STATUS_END;
  53. };
  54. const traceChild = (name: string) => createSpan(name, curTraceResult);
  55. const span: Span = {
  56. [spanTag]: true,
  57. stop,
  58. traceChild,
  59. traceSyncFn<T>(fn: (span: Span) => T) {
  60. const res = fn(span);
  61. span.stop();
  62. return res;
  63. },
  64. async traceAsyncFn<T>(fn: (span: Span) => T | Promise<T>): Promise<T> {
  65. const res = await fn(span);
  66. span.stop();
  67. return res;
  68. },
  69. traceResult: curTraceResult,
  70. async tracePromise<T>(promise: Promise<T>): Promise<T> {
  71. const res = await promise;
  72. span.stop();
  73. return res;
  74. },
  75. traceChildSync: <T>(name: string, fn: (span: Span) => T): T => traceChild(name).traceSyncFn(fn),
  76. traceChildAsync: <T>(name: string, fn: (span: Span) => T | Promise<T>): Promise<T> => traceChild(name).traceAsyncFn(fn),
  77. traceChildPromise: <T>(name: string, promise: Promise<T>): Promise<T> => traceChild(name).tracePromise(promise)
  78. };
  79. // eslint-disable-next-line sukka/no-redundant-variable -- self reference
  80. return span;
  81. };
  82. export const task = (importMetaMain: boolean, importMetaPath: string) => <T>(fn: (span: Span) => Promise<T>, customName?: string) => {
  83. const taskName = customName ?? path.basename(importMetaPath, path.extname(importMetaPath));
  84. const dummySpan = createSpan(taskName);
  85. if (importMetaMain) {
  86. fn(dummySpan);
  87. }
  88. return async (span?: Span) => {
  89. if (span) {
  90. return span.traceChildAsync(taskName, fn);
  91. }
  92. return fn(dummySpan);
  93. };
  94. };
  95. // const isSpan = (obj: any): obj is Span => {
  96. // return typeof obj === 'object' && obj && spanTag in obj;
  97. // };
  98. // export const universalify = <A extends any[], R>(taskname: string, fn: (this: void, ...args: A) => R) => {
  99. // return (...args: A) => {
  100. // const lastArg = args[args.length - 1];
  101. // if (isSpan(lastArg)) {
  102. // return lastArg.traceChild(taskname).traceSyncFn(() => fn(...args));
  103. // }
  104. // return fn(...args);
  105. // };
  106. // };
  107. export const printTraceResult = (traceResult: TraceResult = rootTraceResult) => {
  108. printStats(traceResult.children);
  109. printTree(traceResult, node => `${node.name} ${picocolors.bold(`${(node.end - node.start).toFixed(3)}ms`)}`);
  110. };
  111. function printTree(initialTree: TraceResult, printNode: (node: TraceResult, branch: string) => string) {
  112. function printBranch(tree: TraceResult, branch: string, isGraphHead: boolean, isChildOfLastBranch: boolean) {
  113. const children = tree.children;
  114. let branchHead = '';
  115. if (!isGraphHead) {
  116. branchHead = children.length > 0 ? '┬ ' : '─ ';
  117. }
  118. const toPrint = printNode(tree, `${branch}${branchHead}`);
  119. if (typeof toPrint === 'string') {
  120. console.log(`${branch}${branchHead}${toPrint}`);
  121. }
  122. let baseBranch = branch;
  123. if (!isGraphHead) {
  124. baseBranch = branch.slice(0, -2) + (isChildOfLastBranch ? ' ' : '│ ');
  125. }
  126. const nextBranch = `${baseBranch}├─`;
  127. const lastBranch = `${baseBranch}└─`;
  128. children.forEach((child, index) => {
  129. const last = children.length - 1 === index;
  130. printBranch(child, last ? lastBranch : nextBranch, false, last);
  131. });
  132. }
  133. printBranch(initialTree, '', true, false);
  134. }
  135. function printStats(stats: TraceResult[]): void {
  136. stats.sort((a, b) => a.start - b.start);
  137. const longestTaskName = Math.max(...stats.map(i => i.name.length));
  138. const realStart = Math.min(...stats.map(i => i.start));
  139. const realEnd = Math.max(...stats.map(i => i.end));
  140. const statsStep = ((realEnd - realStart) / 120) | 0;
  141. stats.forEach(stat => {
  142. console.log(
  143. `[${stat.name}]${' '.repeat(longestTaskName - stat.name.length)}`,
  144. ' '.repeat(((stat.start - realStart) / statsStep) | 0),
  145. '='.repeat(Math.max(((stat.end - stat.start) / statsStep) | 0, 1))
  146. );
  147. });
  148. }