findRegressions-simple.py 4.0 KB

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  1. #!/usr/bin/env python
  2. import re, string, sys, os, time, math
  3. DEBUG = 0
  4. (tp, exp) = ('compile', 'exec')
  5. def parse(file):
  6. f = open(file, 'r')
  7. d = f.read()
  8. # Cleanup weird stuff
  9. d = re.sub(r',\d+:\d', '', d)
  10. r = re.findall(r'TEST-(PASS|FAIL|RESULT.*?):\s+(.*?)\s+(.*?)\r*\n', d)
  11. test = {}
  12. fname = ''
  13. for t in r:
  14. if DEBUG:
  15. print t
  16. if t[0] == 'PASS' or t[0] == 'FAIL' :
  17. tmp = t[2].split('llvm-test/')
  18. if DEBUG:
  19. print tmp
  20. if len(tmp) == 2:
  21. fname = tmp[1].strip('\r\n')
  22. else:
  23. fname = tmp[0].strip('\r\n')
  24. if not test.has_key(fname):
  25. test[fname] = {}
  26. test[fname][t[1] + ' state'] = t[0]
  27. test[fname][t[1] + ' time'] = float('nan')
  28. else :
  29. try:
  30. n = t[0].split('RESULT-')[1]
  31. if DEBUG:
  32. print "n == ", n;
  33. if n == 'compile-success':
  34. test[fname]['compile time'] = float(t[2].split('program')[1].strip('\r\n'))
  35. elif n == 'exec-success':
  36. test[fname]['exec time'] = float(t[2].split('program')[1].strip('\r\n'))
  37. if DEBUG:
  38. print test[fname][string.replace(n, '-success', '')]
  39. else :
  40. # print "ERROR!"
  41. sys.exit(1)
  42. except:
  43. continue
  44. return test
  45. # Diff results and look for regressions.
  46. def diffResults(d_old, d_new):
  47. regressions = {}
  48. passes = {}
  49. removed = ''
  50. for x in ['compile state', 'compile time', 'exec state', 'exec time']:
  51. regressions[x] = ''
  52. passes[x] = ''
  53. for t in sorted(d_old.keys()) :
  54. if d_new.has_key(t):
  55. # Check if the test passed or failed.
  56. for x in ['compile state', 'compile time', 'exec state', 'exec time']:
  57. if not d_old[t].has_key(x) and not d_new[t].has_key(x):
  58. continue
  59. if d_old[t].has_key(x):
  60. if d_new[t].has_key(x):
  61. if d_old[t][x] == 'PASS':
  62. if d_new[t][x] != 'PASS':
  63. regressions[x] += t + "\n"
  64. else:
  65. if d_new[t][x] == 'PASS':
  66. passes[x] += t + "\n"
  67. else :
  68. regressions[x] += t + "\n"
  69. if x == 'compile state' or x == 'exec state':
  70. continue
  71. # For execution time, if there is no result it's a fail.
  72. if not d_old[t].has_key(x) and not d_new[t].has_key(x):
  73. continue
  74. elif not d_new[t].has_key(x):
  75. regressions[x] += t + "\n"
  76. elif not d_old[t].has_key(x):
  77. passes[x] += t + "\n"
  78. if math.isnan(d_old[t][x]) and math.isnan(d_new[t][x]):
  79. continue
  80. elif math.isnan(d_old[t][x]) and not math.isnan(d_new[t][x]):
  81. passes[x] += t + "\n"
  82. elif not math.isnan(d_old[t][x]) and math.isnan(d_new[t][x]):
  83. regressions[x] += t + ": NaN%\n"
  84. if d_new[t][x] > d_old[t][x] and d_old[t][x] > 0.0 and \
  85. (d_new[t][x] - d_old[t][x]) / d_old[t][x] > .05:
  86. regressions[x] += t + ": " + "{0:.1f}".format(100 * (d_new[t][x] - d_old[t][x]) / d_old[t][x]) + "%\n"
  87. else :
  88. removed += t + "\n"
  89. if len(regressions['compile state']) != 0:
  90. print 'REGRESSION: Compilation Failed'
  91. print regressions['compile state']
  92. if len(regressions['exec state']) != 0:
  93. print 'REGRESSION: Execution Failed'
  94. print regressions['exec state']
  95. if len(regressions['compile time']) != 0:
  96. print 'REGRESSION: Compilation Time'
  97. print regressions['compile time']
  98. if len(regressions['exec time']) != 0:
  99. print 'REGRESSION: Execution Time'
  100. print regressions['exec time']
  101. if len(passes['compile state']) != 0:
  102. print 'NEW PASSES: Compilation'
  103. print passes['compile state']
  104. if len(passes['exec state']) != 0:
  105. print 'NEW PASSES: Execution'
  106. print passes['exec state']
  107. if len(removed) != 0:
  108. print 'REMOVED TESTS'
  109. print removed
  110. # Main
  111. if len(sys.argv) < 3 :
  112. print 'Usage:', sys.argv[0], '<old log> <new log>'
  113. sys.exit(-1)
  114. d_old = parse(sys.argv[1])
  115. d_new = parse(sys.argv[2])
  116. diffResults(d_old, d_new)