coverage.py 26 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557558559560561562563564565566567568569570571572573574575576577578579580581582583584585586587588589590591592593594595596597598599600601602603604605606607608609610611612613614615616617618619620621622623624625626627628629630631632633634635636637638639640641642643644645646647648649650651652653654655656657658659660661662663664665666667668669670671672673674675676677678679680681682683684685686687688689690691692693694695696697698699700701702703704705706707708709710711712713714715716717718719720721722723724725726727728729730731732733734735736737738739740741742743744745746747748749750751752753754755756757758759760761762763764765766767768769770771772773774775776777778779780781782783784785786787788789790791792793794
  1. #!/usr/bin/env python3
  2. #
  3. # Script to find coverage info after running tests.
  4. #
  5. # Example:
  6. # ./scripts/coverage.py lfs.t.a.gcda lfs_util.t.a.gcda -s
  7. #
  8. # Copyright (c) 2022, The littlefs authors.
  9. # Copyright (c) 2020, Arm Limited. All rights reserved.
  10. # SPDX-License-Identifier: BSD-3-Clause
  11. #
  12. import collections as co
  13. import csv
  14. import glob
  15. import itertools as it
  16. import json
  17. import math as m
  18. import os
  19. import re
  20. import shlex
  21. import subprocess as sp
  22. # TODO use explode_asserts to avoid counting assert branches?
  23. # TODO use dwarf=info to find functions for inline functions?
  24. GCDA_PATHS = ['*.gcda']
  25. GCOV_TOOL = ['gcov']
  26. # integer fields
  27. class IntField(co.namedtuple('IntField', 'x')):
  28. __slots__ = ()
  29. def __new__(cls, x):
  30. if isinstance(x, IntField):
  31. return x
  32. if isinstance(x, str):
  33. try:
  34. x = int(x, 0)
  35. except ValueError:
  36. # also accept +-∞ and +-inf
  37. if re.match('^\s*\+?\s*(?:∞|inf)\s*$', x):
  38. x = float('inf')
  39. elif re.match('^\s*-\s*(?:∞|inf)\s*$', x):
  40. x = float('-inf')
  41. else:
  42. raise
  43. return super().__new__(cls, x)
  44. def __int__(self):
  45. assert not m.isinf(self.x)
  46. return self.x
  47. def __float__(self):
  48. return float(self.x)
  49. def __str__(self):
  50. if self.x == float('inf'):
  51. return '∞'
  52. elif self.x == float('-inf'):
  53. return '-∞'
  54. else:
  55. return str(self.x)
  56. none = '%7s' % '-'
  57. def table(self):
  58. return '%7s' % (self,)
  59. diff_none = '%7s' % '-'
  60. diff_table = table
  61. def diff_diff(self, other):
  62. new = self.x if self else 0
  63. old = other.x if other else 0
  64. diff = new - old
  65. if diff == float('+inf'):
  66. return '%7s' % '+∞'
  67. elif diff == float('-inf'):
  68. return '%7s' % '-∞'
  69. else:
  70. return '%+7d' % diff
  71. def ratio(self, other):
  72. new = self.x if self else 0
  73. old = other.x if other else 0
  74. if m.isinf(new) and m.isinf(old):
  75. return 0.0
  76. elif m.isinf(new):
  77. return float('+inf')
  78. elif m.isinf(old):
  79. return float('-inf')
  80. elif not old and not new:
  81. return 0.0
  82. elif not old:
  83. return 1.0
  84. else:
  85. return (new-old) / old
  86. def __add__(self, other):
  87. return IntField(self.x + other.x)
  88. def __mul__(self, other):
  89. return IntField(self.x * other.x)
  90. def __lt__(self, other):
  91. return self.x < other.x
  92. def __gt__(self, other):
  93. return self.__class__.__lt__(other, self)
  94. def __le__(self, other):
  95. return not self.__gt__(other)
  96. def __ge__(self, other):
  97. return not self.__lt__(other)
  98. def __truediv__(self, n):
  99. if m.isinf(self.x):
  100. return self
  101. else:
  102. return IntField(round(self.x / n))
  103. # fractional fields, a/b
  104. class FracField(co.namedtuple('FracField', 'a,b')):
  105. __slots__ = ()
  106. def __new__(cls, a, b=None):
  107. if isinstance(a, FracField) and b is None:
  108. return a
  109. if isinstance(a, str) and b is None:
  110. a, b = a.split('/', 1)
  111. if b is None:
  112. b = a
  113. return super().__new__(cls, IntField(a), IntField(b))
  114. def __str__(self):
  115. return '%s/%s' % (self.a, self.b)
  116. none = '%11s %7s' % ('-', '-')
  117. def table(self):
  118. if not self.b.x:
  119. return self.none
  120. t = self.a.x/self.b.x
  121. return '%11s %7s' % (
  122. self,
  123. '∞%' if t == float('+inf')
  124. else '-∞%' if t == float('-inf')
  125. else '%.1f%%' % (100*t))
  126. diff_none = '%11s' % '-'
  127. def diff_table(self):
  128. if not self.b.x:
  129. return self.diff_none
  130. return '%11s' % (self,)
  131. def diff_diff(self, other):
  132. new_a, new_b = self if self else (IntField(0), IntField(0))
  133. old_a, old_b = other if other else (IntField(0), IntField(0))
  134. return '%11s' % ('%s/%s' % (
  135. new_a.diff_diff(old_a).strip(),
  136. new_b.diff_diff(old_b).strip()))
  137. def ratio(self, other):
  138. new_a, new_b = self if self else (IntField(0), IntField(0))
  139. old_a, old_b = other if other else (IntField(0), IntField(0))
  140. new = new_a.x/new_b.x if new_b.x else 1.0
  141. old = old_a.x/old_b.x if old_b.x else 1.0
  142. return new - old
  143. def __add__(self, other):
  144. return FracField(self.a + other.a, self.b + other.b)
  145. def __mul__(self, other):
  146. return FracField(self.a * other.a, self.b + other.b)
  147. def __lt__(self, other):
  148. self_r = self.a.x/self.b.x if self.b.x else float('-inf')
  149. other_r = other.a.x/other.b.x if other.b.x else float('-inf')
  150. return self_r < other_r
  151. def __gt__(self, other):
  152. return self.__class__.__lt__(other, self)
  153. def __le__(self, other):
  154. return not self.__gt__(other)
  155. def __ge__(self, other):
  156. return not self.__lt__(other)
  157. def __truediv__(self, n):
  158. return FracField(self.a / n, self.b / n)
  159. # coverage results
  160. class CoverageResult(co.namedtuple('CoverageResult',
  161. 'file,function,line,'
  162. 'coverage_hits,coverage_lines,coverage_branches')):
  163. __slots__ = ()
  164. def __new__(cls, file, function, line,
  165. coverage_hits, coverage_lines, coverage_branches):
  166. return super().__new__(cls, file, function, int(IntField(line)),
  167. IntField(coverage_hits),
  168. FracField(coverage_lines),
  169. FracField(coverage_branches))
  170. def __add__(self, other):
  171. return CoverageResult(self.file, self.function, self.line,
  172. max(self.coverage_hits, other.coverage_hits),
  173. self.coverage_lines + other.coverage_lines,
  174. self.coverage_branches + other.coverage_branches)
  175. def openio(path, mode='r'):
  176. if path == '-':
  177. if mode == 'r':
  178. return os.fdopen(os.dup(sys.stdin.fileno()), 'r')
  179. else:
  180. return os.fdopen(os.dup(sys.stdout.fileno()), 'w')
  181. else:
  182. return open(path, mode)
  183. def collect(paths, *,
  184. gcov_tool=GCOV_TOOL,
  185. build_dir=None,
  186. everything=False,
  187. **args):
  188. results = []
  189. for path in paths:
  190. # map to source file
  191. src_path = re.sub('\.t\.a\.gcda$', '.c', path)
  192. if build_dir:
  193. src_path = re.sub('%s/*' % re.escape(build_dir), '',
  194. src_path)
  195. # get coverage info through gcov's json output
  196. # note, gcov-tool may contain extra args
  197. cmd = GCOV_TOOL + ['-b', '-t', '--json-format', path]
  198. if args.get('verbose'):
  199. print(' '.join(shlex.quote(c) for c in cmd))
  200. proc = sp.Popen(cmd,
  201. stdout=sp.PIPE,
  202. stderr=sp.PIPE if not args.get('verbose') else None,
  203. universal_newlines=True,
  204. errors='replace')
  205. data = json.load(proc.stdout)
  206. proc.wait()
  207. if proc.returncode != 0:
  208. if not args.get('verbose'):
  209. for line in proc.stderr:
  210. sys.stdout.write(line)
  211. sys.exit(-1)
  212. # collect line/branch coverage
  213. for file in data['files']:
  214. if file['file'] != src_path:
  215. continue
  216. for line in file['lines']:
  217. func = line.get('function_name', '(inlined)')
  218. # discard internal function (this includes injected test cases)
  219. if not everything:
  220. if func.startswith('__'):
  221. continue
  222. results.append(CoverageResult(
  223. src_path, func, line['line_number'],
  224. line['count'],
  225. FracField(
  226. 1 if line['count'] > 0 else 0,
  227. 1),
  228. FracField(
  229. sum(1 if branch['count'] > 0 else 0
  230. for branch in line['branches']),
  231. len(line['branches']))))
  232. return results
  233. def fold(results, *,
  234. by=['file', 'function', 'line'],
  235. **_):
  236. folding = co.OrderedDict()
  237. for r in results:
  238. name = tuple(getattr(r, k) for k in by)
  239. if name not in folding:
  240. folding[name] = []
  241. folding[name].append(r)
  242. folded = []
  243. for rs in folding.values():
  244. folded.append(sum(rs[1:], start=rs[0]))
  245. return folded
  246. def table(results, diff_results=None, *,
  247. by_file=False,
  248. by_line=False,
  249. line_sort=False,
  250. reverse_line_sort=False,
  251. branch_sort=False,
  252. reverse_branch_sort=False,
  253. summary=False,
  254. all=False,
  255. percent=False,
  256. **_):
  257. all_, all = all, __builtins__.all
  258. # fold
  259. results = fold(results,
  260. by=['file', 'line'] if by_line
  261. else ['file'] if by_file
  262. else ['function'])
  263. if diff_results is not None:
  264. diff_results = fold(diff_results,
  265. by=['file', 'line'] if by_line
  266. else ['file'] if by_file
  267. else ['function'])
  268. table = {
  269. (r.file, r.line) if by_line
  270. else r.file if by_file
  271. else r.function: r
  272. for r in results}
  273. diff_table = {
  274. (r.file, r.line) if by_line
  275. else r.file if by_file
  276. else r.function: r
  277. for r in diff_results or []}
  278. # sort, note that python's sort is stable
  279. names = list(table.keys() | diff_table.keys())
  280. names.sort()
  281. if diff_results is not None:
  282. names.sort(key=lambda n: (
  283. -FracField.ratio(
  284. table[n].coverage_lines if n in table else None,
  285. diff_table[n].coverage_lines if n in diff_table else None),
  286. -FracField.ratio(
  287. table[n].coverage_branches if n in table else None,
  288. diff_table[n].coverage_branches if n in diff_table else None)))
  289. if line_sort:
  290. names.sort(key=lambda n: (table[n].coverage_lines,)
  291. if n in table else (),
  292. reverse=True)
  293. elif reverse_line_sort:
  294. names.sort(key=lambda n: (table[n].coverage_lines,)
  295. if n in table else (),
  296. reverse=False)
  297. elif branch_sort:
  298. names.sort(key=lambda n: (table[n].coverage_branches,)
  299. if n in table else (),
  300. reverse=True)
  301. elif reverse_branch_sort:
  302. names.sort(key=lambda n: (table[n].coverage_branches,)
  303. if n in table else (),
  304. reverse=False)
  305. # print header
  306. print('%-36s' % ('%s%s' % (
  307. 'line' if by_line
  308. else 'file' if by_file
  309. else 'function',
  310. ' (%d added, %d removed)' % (
  311. sum(1 for n in table if n not in diff_table),
  312. sum(1 for n in diff_table if n not in table))
  313. if diff_results is not None and not percent else '')
  314. if not summary else ''),
  315. end='')
  316. if diff_results is None:
  317. print(' %s %s' % (
  318. 'hits/line'.rjust(len(FracField.none)),
  319. 'hits/branch'.rjust(len(FracField.none))))
  320. elif percent:
  321. print(' %s %s' % (
  322. 'hits/line'.rjust(len(FracField.diff_none)),
  323. 'hits/branch'.rjust(len(FracField.diff_none))))
  324. else:
  325. print(' %s %s %s %s %s %s' % (
  326. 'oh/line'.rjust(len(FracField.diff_none)),
  327. 'oh/branch'.rjust(len(FracField.diff_none)),
  328. 'nh/line'.rjust(len(FracField.diff_none)),
  329. 'nh/branch'.rjust(len(FracField.diff_none)),
  330. 'dh/line'.rjust(len(FracField.diff_none)),
  331. 'dh/branch'.rjust(len(FracField.diff_none))))
  332. # print entries
  333. if not summary:
  334. for name in names:
  335. r = table.get(name)
  336. if diff_results is not None:
  337. diff_r = diff_table.get(name)
  338. line_ratio = FracField.ratio(
  339. r.coverage_lines if r else None,
  340. diff_r.coverage_lines if diff_r else None)
  341. branch_ratio = FracField.ratio(
  342. r.coverage_branches if r else None,
  343. diff_r.coverage_branches if diff_r else None)
  344. if not line_ratio and not branch_ratio and not all_:
  345. continue
  346. print('%-36s' % (
  347. ':'.join('%s' % n for n in name)
  348. if by_line else name), end='')
  349. if diff_results is None:
  350. print(' %s %s' % (
  351. r.coverage_lines.table()
  352. if r else FracField.none,
  353. r.coverage_branches.table()
  354. if r else FracField.none))
  355. elif percent:
  356. print(' %s %s%s' % (
  357. r.coverage_lines.diff_table()
  358. if r else FracField.diff_none,
  359. r.coverage_branches.diff_table()
  360. if r else FracField.diff_none,
  361. ' (%s)' % ', '.join(
  362. '+∞%' if t == float('+inf')
  363. else '-∞%' if t == float('-inf')
  364. else '%+.1f%%' % (100*t)
  365. for t in [line_ratio, branch_ratio])))
  366. else:
  367. print(' %s %s %s %s %s %s%s' % (
  368. diff_r.coverage_lines.diff_table()
  369. if diff_r else FracField.diff_none,
  370. diff_r.coverage_branches.diff_table()
  371. if diff_r else FracField.diff_none,
  372. r.coverage_lines.diff_table()
  373. if r else FracField.diff_none,
  374. r.coverage_branches.diff_table()
  375. if r else FracField.diff_none,
  376. FracField.diff_diff(
  377. r.coverage_lines if r else None,
  378. diff_r.coverage_lines if diff_r else None)
  379. if r or diff_r else FracField.diff_none,
  380. FracField.diff_diff(
  381. r.coverage_branches if r else None,
  382. diff_r.coverage_branches if diff_r else None)
  383. if r or diff_r else FracField.diff_none,
  384. ' (%s)' % ', '.join(
  385. '+∞%' if t == float('+inf')
  386. else '-∞%' if t == float('-inf')
  387. else '%+.1f%%' % (100*t)
  388. for t in [line_ratio, branch_ratio]
  389. if t)
  390. if line_ratio or branch_ratio else ''))
  391. # print total
  392. total = fold(results, by=[])
  393. r = total[0] if total else None
  394. if diff_results is not None:
  395. diff_total = fold(diff_results, by=[])
  396. diff_r = diff_total[0] if diff_total else None
  397. line_ratio = FracField.ratio(
  398. r.coverage_lines if r else None,
  399. diff_r.coverage_lines if diff_r else None)
  400. branch_ratio = FracField.ratio(
  401. r.coverage_branches if r else None,
  402. diff_r.coverage_branches if diff_r else None)
  403. print('%-36s' % 'TOTAL', end='')
  404. if diff_results is None:
  405. print(' %s %s' % (
  406. r.coverage_lines.table()
  407. if r else FracField.none,
  408. r.coverage_branches.table()
  409. if r else FracField.none))
  410. elif percent:
  411. print(' %s %s%s' % (
  412. r.coverage_lines.diff_table()
  413. if r else FracField.diff_none,
  414. r.coverage_branches.diff_table()
  415. if r else FracField.diff_none,
  416. ' (%s)' % ', '.join(
  417. '+∞%' if t == float('+inf')
  418. else '-∞%' if t == float('-inf')
  419. else '%+.1f%%' % (100*t)
  420. for t in [line_ratio, branch_ratio])))
  421. else:
  422. print(' %s %s %s %s %s %s%s' % (
  423. diff_r.coverage_lines.diff_table()
  424. if diff_r else FracField.diff_none,
  425. diff_r.coverage_branches.diff_table()
  426. if diff_r else FracField.diff_none,
  427. r.coverage_lines.diff_table()
  428. if r else FracField.diff_none,
  429. r.coverage_branches.diff_table()
  430. if r else FracField.diff_none,
  431. FracField.diff_diff(
  432. r.coverage_lines if r else None,
  433. diff_r.coverage_lines if diff_r else None)
  434. if r or diff_r else FracField.diff_none,
  435. FracField.diff_diff(
  436. r.coverage_branches if r else None,
  437. diff_r.coverage_branches if diff_r else None)
  438. if r or diff_r else FracField.diff_none,
  439. ' (%s)' % ', '.join(
  440. '+∞%' if t == float('+inf')
  441. else '-∞%' if t == float('-inf')
  442. else '%+.1f%%' % (100*t)
  443. for t in [line_ratio, branch_ratio]
  444. if t)
  445. if line_ratio or branch_ratio else ''))
  446. def annotate(paths, results, *,
  447. annotate=False,
  448. lines=False,
  449. branches=False,
  450. build_dir=None,
  451. **args):
  452. for path in paths:
  453. # map to source file
  454. src_path = re.sub('\.t\.a\.gcda$', '.c', path)
  455. if build_dir:
  456. src_path = re.sub('%s/*' % re.escape(build_dir), '',
  457. src_path)
  458. # flatten to line info
  459. results = fold(results, by=['file', 'line'])
  460. table = {r.line: r for r in results if r.file == src_path}
  461. # calculate spans to show
  462. if not annotate:
  463. spans = []
  464. last = None
  465. for line, r in sorted(table.items()):
  466. if ((lines and int(r.coverage_hits) == 0)
  467. or (branches
  468. and r.coverage_branches.a
  469. < r.coverage_branches.b)):
  470. if last is not None and line - last.stop <= args['context']:
  471. last = range(
  472. last.start,
  473. line+1+args['context'])
  474. else:
  475. if last is not None:
  476. spans.append(last)
  477. last = range(
  478. line-args['context'],
  479. line+1+args['context'])
  480. if last is not None:
  481. spans.append(last)
  482. with open(src_path) as f:
  483. skipped = False
  484. for i, line in enumerate(f):
  485. # skip lines not in spans?
  486. if not annotate and not any(i+1 in s for s in spans):
  487. skipped = True
  488. continue
  489. if skipped:
  490. skipped = False
  491. print('%s@@ %s:%d @@%s' % (
  492. '\x1b[36m' if args['color'] else '',
  493. src_path,
  494. i+1,
  495. '\x1b[m' if args['color'] else ''))
  496. # build line
  497. if line.endswith('\n'):
  498. line = line[:-1]
  499. if i+1 in table:
  500. r = table[i+1]
  501. line = '%-*s // %s hits, %s branches' % (
  502. args['width'],
  503. line,
  504. r.coverage_hits,
  505. r.coverage_branches)
  506. if args['color']:
  507. if lines and int(r.coverage_hits) == 0:
  508. line = '\x1b[1;31m%s\x1b[m' % line
  509. elif (branches
  510. and r.coverage_branches.a
  511. < r.coverage_branches.b):
  512. line = '\x1b[35m%s\x1b[m' % line
  513. print(line)
  514. def main(gcda_paths, **args):
  515. # figure out what color should be
  516. if args.get('color') == 'auto':
  517. args['color'] = sys.stdout.isatty()
  518. elif args.get('color') == 'always':
  519. args['color'] = True
  520. else:
  521. args['color'] = False
  522. # find sizes
  523. if not args.get('use', None):
  524. # find .gcda files
  525. paths = []
  526. for path in gcda_paths:
  527. if os.path.isdir(path):
  528. path = path + '/*.gcda'
  529. for path in glob.glob(path):
  530. paths.append(path)
  531. if not paths:
  532. print('no .gcda files found in %r?' % gcda_paths)
  533. sys.exit(-1)
  534. results = collect(paths, **args)
  535. else:
  536. results = []
  537. with openio(args['use']) as f:
  538. reader = csv.DictReader(f)
  539. for r in reader:
  540. try:
  541. results.append(CoverageResult(**{
  542. k: v for k, v in r.items()
  543. if k in CoverageResult._fields}))
  544. except TypeError:
  545. pass
  546. # fold to remove duplicates
  547. results = fold(results)
  548. # sort because why not
  549. results.sort()
  550. # write results to CSV
  551. if args.get('output'):
  552. with openio(args['output'], 'w') as f:
  553. writer = csv.DictWriter(f, CoverageResult._fields)
  554. writer.writeheader()
  555. for r in results:
  556. writer.writerow(r._asdict())
  557. # find previous results?
  558. if args.get('diff'):
  559. diff_results = []
  560. try:
  561. with openio(args['diff']) as f:
  562. reader = csv.DictReader(f)
  563. for r in reader:
  564. try:
  565. diff_results.append(CoverageResult(**{
  566. k: v for k, v in r.items()
  567. if k in CoverageResult._fields}))
  568. except TypeError:
  569. pass
  570. except FileNotFoundError:
  571. pass
  572. # fold to remove duplicates
  573. diff_results = fold(diff_results)
  574. if not args.get('quiet'):
  575. if (args.get('annotate')
  576. or args.get('lines')
  577. or args.get('branches')):
  578. # annotate sources
  579. annotate(
  580. paths,
  581. results,
  582. **args)
  583. else:
  584. # print table
  585. table(
  586. results,
  587. diff_results if args.get('diff') else None,
  588. **args)
  589. # catch lack of coverage
  590. if args.get('error_on_lines') and any(
  591. r.coverage_lines.a < r.coverage_lines.b for r in results):
  592. sys.exit(2)
  593. elif args.get('error_on_branches') and any(
  594. r.coverage_branches.a < r.coverage_branches.b for r in results):
  595. sys.exit(3)
  596. if __name__ == "__main__":
  597. import argparse
  598. import sys
  599. parser = argparse.ArgumentParser(
  600. description="Find coverage info after running tests.")
  601. parser.add_argument(
  602. 'gcda_paths',
  603. nargs='*',
  604. default=GCDA_PATHS,
  605. help="Description of where to find *.gcda files. May be a directory "
  606. "or a list of paths. Defaults to %r." % GCDA_PATHS)
  607. parser.add_argument(
  608. '-v', '--verbose',
  609. action='store_true',
  610. help="Output commands that run behind the scenes.")
  611. parser.add_argument(
  612. '-q', '--quiet',
  613. action='store_true',
  614. help="Don't show anything, useful with -o.")
  615. parser.add_argument(
  616. '-o', '--output',
  617. help="Specify CSV file to store results.")
  618. parser.add_argument(
  619. '-u', '--use',
  620. help="Don't parse anything, use this CSV file.")
  621. parser.add_argument(
  622. '-d', '--diff',
  623. help="Specify CSV file to diff against.")
  624. parser.add_argument(
  625. '-a', '--all',
  626. action='store_true',
  627. help="Show all, not just the ones that changed.")
  628. parser.add_argument(
  629. '-p', '--percent',
  630. action='store_true',
  631. help="Only show percentage change, not a full diff.")
  632. parser.add_argument(
  633. '-b', '--by-file',
  634. action='store_true',
  635. help="Group by file.")
  636. parser.add_argument(
  637. '--by-line',
  638. action='store_true',
  639. help="Group by line.")
  640. parser.add_argument(
  641. '-s', '--line-sort',
  642. action='store_true',
  643. help="Sort by line coverage.")
  644. parser.add_argument(
  645. '-S', '--reverse-line-sort',
  646. action='store_true',
  647. help="Sort by line coverage, but backwards.")
  648. parser.add_argument(
  649. '--branch-sort',
  650. action='store_true',
  651. help="Sort by branch coverage.")
  652. parser.add_argument(
  653. '--reverse-branch-sort',
  654. action='store_true',
  655. help="Sort by branch coverage, but backwards.")
  656. parser.add_argument(
  657. '-Y', '--summary',
  658. action='store_true',
  659. help="Only show the total size.")
  660. parser.add_argument(
  661. '-l', '--annotate',
  662. action='store_true',
  663. help="Show source files annotated with coverage info.")
  664. parser.add_argument(
  665. '-L', '--lines',
  666. action='store_true',
  667. help="Show uncovered lines.")
  668. parser.add_argument(
  669. '-B', '--branches',
  670. action='store_true',
  671. help="Show uncovered branches.")
  672. parser.add_argument(
  673. '-c', '--context',
  674. type=lambda x: int(x, 0),
  675. default=3,
  676. help="Show a additional lines of context. Defaults to 3.")
  677. parser.add_argument(
  678. '-W', '--width',
  679. type=lambda x: int(x, 0),
  680. default=80,
  681. help="Assume source is styled with this many columns. Defaults to 80.")
  682. parser.add_argument(
  683. '--color',
  684. choices=['never', 'always', 'auto'],
  685. default='auto',
  686. help="When to use terminal colors. Defaults to 'auto'.")
  687. parser.add_argument(
  688. '-e', '--error-on-lines',
  689. action='store_true',
  690. help="Error if any lines are not covered.")
  691. parser.add_argument(
  692. '-E', '--error-on-branches',
  693. action='store_true',
  694. help="Error if any branches are not covered.")
  695. parser.add_argument(
  696. '-A', '--everything',
  697. action='store_true',
  698. help="Include builtin and libc specific symbols.")
  699. parser.add_argument(
  700. '--gcov-tool',
  701. default=GCOV_TOOL,
  702. type=lambda x: x.split(),
  703. help="Path to the gcov tool to use. Defaults to %r." % GCOV_TOOL)
  704. parser.add_argument(
  705. '--build-dir',
  706. help="Specify the relative build directory. Used to map object files "
  707. "to the correct source files.")
  708. sys.exit(main(**{k: v
  709. for k, v in vars(parser.parse_intermixed_args()).items()
  710. if v is not None}))