source: frontend/node_modules/istanbul-lib-coverage/lib/file-coverage.js

Last change on this file was 9af201e, checked in by MBK <marija.karapandzova@…>, 13 days ago

Fix frontend appearance

  • Property mode set to 100644
File size: 13.7 KB
Line 
1/*
2 Copyright 2012-2015, Yahoo Inc.
3 Copyrights licensed under the New BSD License. See the accompanying LICENSE file for terms.
4 */
5'use strict';
6
7const percent = require('./percent');
8const dataProperties = require('./data-properties');
9const { CoverageSummary } = require('./coverage-summary');
10
11// returns a data object that represents empty coverage
12function emptyCoverage(filePath, reportLogic) {
13 const cov = {
14 path: filePath,
15 statementMap: {},
16 fnMap: {},
17 branchMap: {},
18 s: {},
19 f: {},
20 b: {}
21 };
22 if (reportLogic) cov.bT = {};
23 return cov;
24}
25
26// asserts that a data object "looks like" a coverage object
27function assertValidObject(obj) {
28 const valid =
29 obj &&
30 obj.path &&
31 obj.statementMap &&
32 obj.fnMap &&
33 obj.branchMap &&
34 obj.s &&
35 obj.f &&
36 obj.b;
37 if (!valid) {
38 throw new Error(
39 'Invalid file coverage object, missing keys, found:' +
40 Object.keys(obj).join(',')
41 );
42 }
43}
44
45const keyFromLoc = ({ start, end }) =>
46 `${start.line}|${start.column}|${end.line}|${end.column}`;
47
48const isObj = o => !!o && typeof o === 'object';
49const isLineCol = o =>
50 isObj(o) && typeof o.line === 'number' && typeof o.column === 'number';
51const isLoc = o => isObj(o) && isLineCol(o.start) && isLineCol(o.end);
52const getLoc = o => (isLoc(o) ? o : isLoc(o.loc) ? o.loc : null);
53
54// When merging, we can have a case where two ranges cover
55// the same block of code with `hits=1`, and each carve out a
56// different range with `hits=0` to indicate it's uncovered.
57// Find the nearest container so that we can properly indicate
58// that both sections are hit.
59// Returns null if no containing item is found.
60const findNearestContainer = (item, map) => {
61 const itemLoc = getLoc(item);
62 if (!itemLoc) return null;
63 // the B item is not an identified range in the A set, BUT
64 // it may be contained by an identified A range. If so, then
65 // any hit of that containing A range counts as a hit of this
66 // B range as well. We have to find the *narrowest* containing
67 // range to be accurate, since ranges can be hit and un-hit
68 // in a nested fashion.
69 let nearestContainingItem = null;
70 let containerDistance = null;
71 let containerKey = null;
72 for (const [i, mapItem] of Object.entries(map)) {
73 const mapLoc = getLoc(mapItem);
74 if (!mapLoc) continue;
75 // contained if all of line distances are > 0
76 // or line distance is 0 and col dist is >= 0
77 const distance = [
78 itemLoc.start.line - mapLoc.start.line,
79 itemLoc.start.column - mapLoc.start.column,
80 mapLoc.end.line - itemLoc.end.line,
81 mapLoc.end.column - itemLoc.end.column
82 ];
83 if (
84 distance[0] < 0 ||
85 distance[2] < 0 ||
86 (distance[0] === 0 && distance[1] < 0) ||
87 (distance[2] === 0 && distance[3] < 0)
88 ) {
89 continue;
90 }
91 if (nearestContainingItem === null) {
92 containerDistance = distance;
93 nearestContainingItem = mapItem;
94 containerKey = i;
95 continue;
96 }
97 // closer line more relevant than closer column
98 const closerBefore =
99 distance[0] < containerDistance[0] ||
100 (distance[0] === 0 && distance[1] < containerDistance[1]);
101 const closerAfter =
102 distance[2] < containerDistance[2] ||
103 (distance[2] === 0 && distance[3] < containerDistance[3]);
104 if (closerBefore || closerAfter) {
105 // closer
106 containerDistance = distance;
107 nearestContainingItem = mapItem;
108 containerKey = i;
109 }
110 }
111 return containerKey;
112};
113
114// either add two numbers, or all matching entries in a number[]
115const addHits = (aHits, bHits) => {
116 if (typeof aHits === 'number' && typeof bHits === 'number') {
117 return aHits + bHits;
118 } else if (Array.isArray(aHits) && Array.isArray(bHits)) {
119 return aHits.map((a, i) => (a || 0) + (bHits[i] || 0));
120 }
121 return null;
122};
123
124const addNearestContainerHits = (item, itemHits, map, mapHits) => {
125 const container = findNearestContainer(item, map);
126 if (container) {
127 return addHits(itemHits, mapHits[container]);
128 } else {
129 return itemHits;
130 }
131};
132
133const mergeProp = (aHits, aMap, bHits, bMap, itemKey = keyFromLoc) => {
134 const aItems = {};
135 for (const [key, itemHits] of Object.entries(aHits)) {
136 const item = aMap[key];
137 aItems[itemKey(item)] = [itemHits, item];
138 }
139 const bItems = {};
140 for (const [key, itemHits] of Object.entries(bHits)) {
141 const item = bMap[key];
142 bItems[itemKey(item)] = [itemHits, item];
143 }
144 const mergedItems = {};
145 for (const [key, aValue] of Object.entries(aItems)) {
146 let aItemHits = aValue[0];
147 const aItem = aValue[1];
148 const bValue = bItems[key];
149 if (!bValue) {
150 // not an identified range in b, but might be contained by one
151 aItemHits = addNearestContainerHits(aItem, aItemHits, bMap, bHits);
152 } else {
153 // is an identified range in b, so add the hits together
154 aItemHits = addHits(aItemHits, bValue[0]);
155 }
156 mergedItems[key] = [aItemHits, aItem];
157 }
158 // now find the items in b that are not in a. already added matches.
159 for (const [key, bValue] of Object.entries(bItems)) {
160 let bItemHits = bValue[0];
161 const bItem = bValue[1];
162 if (mergedItems[key]) continue;
163 // not an identified range in b, but might be contained by one
164 bItemHits = addNearestContainerHits(bItem, bItemHits, aMap, aHits);
165 mergedItems[key] = [bItemHits, bItem];
166 }
167
168 const hits = {};
169 const map = {};
170
171 Object.values(mergedItems).forEach(([itemHits, item], i) => {
172 hits[i] = itemHits;
173 map[i] = item;
174 });
175
176 return [hits, map];
177};
178
179/**
180 * provides a read-only view of coverage for a single file.
181 * The deep structure of this object is documented elsewhere. It has the following
182 * properties:
183 *
184 * * `path` - the file path for which coverage is being tracked
185 * * `statementMap` - map of statement locations keyed by statement index
186 * * `fnMap` - map of function metadata keyed by function index
187 * * `branchMap` - map of branch metadata keyed by branch index
188 * * `s` - hit counts for statements
189 * * `f` - hit count for functions
190 * * `b` - hit count for branches
191 */
192class FileCoverage {
193 /**
194 * @constructor
195 * @param {Object|FileCoverage|String} pathOrObj is a string that initializes
196 * and empty coverage object with the specified file path or a data object that
197 * has all the required properties for a file coverage object.
198 */
199 constructor(pathOrObj, reportLogic = false) {
200 if (!pathOrObj) {
201 throw new Error(
202 'Coverage must be initialized with a path or an object'
203 );
204 }
205 if (typeof pathOrObj === 'string') {
206 this.data = emptyCoverage(pathOrObj, reportLogic);
207 } else if (pathOrObj instanceof FileCoverage) {
208 this.data = pathOrObj.data;
209 } else if (typeof pathOrObj === 'object') {
210 this.data = pathOrObj;
211 } else {
212 throw new Error('Invalid argument to coverage constructor');
213 }
214 assertValidObject(this.data);
215 }
216
217 /**
218 * returns computed line coverage from statement coverage.
219 * This is a map of hits keyed by line number in the source.
220 */
221 getLineCoverage() {
222 const statementMap = this.data.statementMap;
223 const statements = this.data.s;
224 const lineMap = Object.create(null);
225
226 Object.entries(statements).forEach(([st, count]) => {
227 /* istanbul ignore if: is this even possible? */
228 if (!statementMap[st]) {
229 return;
230 }
231 const { line } = statementMap[st].start;
232 const prevVal = lineMap[line];
233 if (prevVal === undefined || prevVal < count) {
234 lineMap[line] = count;
235 }
236 });
237 return lineMap;
238 }
239
240 /**
241 * returns an array of uncovered line numbers.
242 * @returns {Array} an array of line numbers for which no hits have been
243 * collected.
244 */
245 getUncoveredLines() {
246 const lc = this.getLineCoverage();
247 const ret = [];
248 Object.entries(lc).forEach(([l, hits]) => {
249 if (hits === 0) {
250 ret.push(l);
251 }
252 });
253 return ret;
254 }
255
256 /**
257 * returns a map of branch coverage by source line number.
258 * @returns {Object} an object keyed by line number. Each object
259 * has a `covered`, `total` and `coverage` (percentage) property.
260 */
261 getBranchCoverageByLine() {
262 const branchMap = this.branchMap;
263 const branches = this.b;
264 const ret = {};
265 Object.entries(branchMap).forEach(([k, map]) => {
266 const line = map.line || map.loc.start.line;
267 const branchData = branches[k];
268 ret[line] = ret[line] || [];
269 ret[line].push(...branchData);
270 });
271 Object.entries(ret).forEach(([k, dataArray]) => {
272 const covered = dataArray.filter(item => item > 0);
273 const coverage = (covered.length / dataArray.length) * 100;
274 ret[k] = {
275 covered: covered.length,
276 total: dataArray.length,
277 coverage
278 };
279 });
280 return ret;
281 }
282
283 /**
284 * return a JSON-serializable POJO for this file coverage object
285 */
286 toJSON() {
287 return this.data;
288 }
289
290 /**
291 * merges a second coverage object into this one, updating hit counts
292 * @param {FileCoverage} other - the coverage object to be merged into this one.
293 * Note that the other object should have the same structure as this one (same file).
294 */
295 merge(other) {
296 if (other.all === true) {
297 return;
298 }
299
300 if (this.all === true) {
301 this.data = other.data;
302 return;
303 }
304
305 let [hits, map] = mergeProp(
306 this.s,
307 this.statementMap,
308 other.s,
309 other.statementMap
310 );
311 this.data.s = hits;
312 this.data.statementMap = map;
313
314 const keyFromLocProp = x => keyFromLoc(x.loc);
315 const keyFromLocationsProp = x => keyFromLoc(x.locations[0]);
316
317 [hits, map] = mergeProp(
318 this.f,
319 this.fnMap,
320 other.f,
321 other.fnMap,
322 keyFromLocProp
323 );
324 this.data.f = hits;
325 this.data.fnMap = map;
326
327 [hits, map] = mergeProp(
328 this.b,
329 this.branchMap,
330 other.b,
331 other.branchMap,
332 keyFromLocationsProp
333 );
334 this.data.b = hits;
335 this.data.branchMap = map;
336
337 // Tracking additional information about branch truthiness
338 // can be optionally enabled:
339 if (this.bT && other.bT) {
340 [hits, map] = mergeProp(
341 this.bT,
342 this.branchMap,
343 other.bT,
344 other.branchMap,
345 keyFromLocationsProp
346 );
347 this.data.bT = hits;
348 }
349 }
350
351 computeSimpleTotals(property) {
352 let stats = this[property];
353
354 if (typeof stats === 'function') {
355 stats = stats.call(this);
356 }
357
358 const ret = {
359 total: Object.keys(stats).length,
360 covered: Object.values(stats).filter(v => !!v).length,
361 skipped: 0
362 };
363 ret.pct = percent(ret.covered, ret.total);
364 return ret;
365 }
366
367 computeBranchTotals(property) {
368 const stats = this[property];
369 const ret = { total: 0, covered: 0, skipped: 0 };
370
371 Object.values(stats).forEach(branches => {
372 ret.covered += branches.filter(hits => hits > 0).length;
373 ret.total += branches.length;
374 });
375 ret.pct = percent(ret.covered, ret.total);
376 return ret;
377 }
378
379 /**
380 * resets hit counts for all statements, functions and branches
381 * in this coverage object resulting in zero coverage.
382 */
383 resetHits() {
384 const statements = this.s;
385 const functions = this.f;
386 const branches = this.b;
387 const branchesTrue = this.bT;
388 Object.keys(statements).forEach(s => {
389 statements[s] = 0;
390 });
391 Object.keys(functions).forEach(f => {
392 functions[f] = 0;
393 });
394 Object.keys(branches).forEach(b => {
395 branches[b].fill(0);
396 });
397 // Tracking additional information about branch truthiness
398 // can be optionally enabled:
399 if (branchesTrue) {
400 Object.keys(branchesTrue).forEach(bT => {
401 branchesTrue[bT].fill(0);
402 });
403 }
404 }
405
406 /**
407 * returns a CoverageSummary for this file coverage object
408 * @returns {CoverageSummary}
409 */
410 toSummary() {
411 const ret = {};
412 ret.lines = this.computeSimpleTotals('getLineCoverage');
413 ret.functions = this.computeSimpleTotals('f', 'fnMap');
414 ret.statements = this.computeSimpleTotals('s', 'statementMap');
415 ret.branches = this.computeBranchTotals('b');
416 // Tracking additional information about branch truthiness
417 // can be optionally enabled:
418 if (this.bT) {
419 ret.branchesTrue = this.computeBranchTotals('bT');
420 }
421 return new CoverageSummary(ret);
422 }
423}
424
425// expose coverage data attributes
426dataProperties(FileCoverage, [
427 'path',
428 'statementMap',
429 'fnMap',
430 'branchMap',
431 's',
432 'f',
433 'b',
434 'bT',
435 'all'
436]);
437
438module.exports = {
439 FileCoverage,
440 // exported for testing
441 findNearestContainer,
442 addHits,
443 addNearestContainerHits
444};
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