blob: 22ded9dd70b9ceb642ce4188b905bf1e26232f37 [file] [log] [blame]
bungeman@google.com85669f92011-06-17 13:58:14 +00001'''
2Created on May 19, 2011
3
4@author: bungeman
5'''
6
7import re
8import math
9
10class BenchDataPoint:
11 """A single data point produced by bench.
12
13 (str, str, str, float, {str:str})"""
14 def __init__(self, bench, config, time_type, time, settings):
15 self.bench = bench
16 self.config = config
17 self.time_type = time_type
18 self.time = time
19 self.settings = settings
20
21 def __repr__(self):
22 return "BenchDataPoint(%s, %s, %s, %s, %s)" % (
23 str(self.bench),
24 str(self.config),
25 str(self.time_type),
26 str(self.time),
27 str(self.settings),
28 )
29
30class _ExtremeType(object):
31 """Instances of this class compare greater or less than other objects."""
32 def __init__(self, cmpr, rep):
33 object.__init__(self)
34 self._cmpr = cmpr
35 self._rep = rep
36
37 def __cmp__(self, other):
38 if isinstance(other, self.__class__) and other._cmpr == self._cmpr:
39 return 0
40 return self._cmpr
41
42 def __repr__(self):
43 return self._rep
44
45Max = _ExtremeType(1, "Max")
46Min = _ExtremeType(-1, "Min")
47
48def parse(settings, lines):
49 """Parses bench output into a useful data structure.
50
51 ({str:str}, __iter__ -> str) -> [BenchDataPoint]"""
52
53 benches = []
54 current_bench = None
55 setting_re = '([^\s=]+)(?:=(\S+))?'
56 settings_re = 'skia bench:((?:\s+' + setting_re + ')*)'
57 bench_re = 'running bench (?:\[\d+ \d+\] )?\s*(\S+)'
bensong@google.comaf3d79a2012-07-02 20:48:51 +000058 time_re = '(?:(\w*)msecs = )?\s*((?:\d+\.\d+)(?:,\d+\.\d+)*)'
bungeman@google.com85669f92011-06-17 13:58:14 +000059 config_re = '(\S+): ((?:' + time_re + '\s+)+)'
60
61 for line in lines:
62
63 #see if this line is a settings line
64 settingsMatch = re.search(settings_re, line)
65 if (settingsMatch):
66 settings = dict(settings)
67 for settingMatch in re.finditer(setting_re, settingsMatch.group(1)):
68 if (settingMatch.group(2)):
69 settings[settingMatch.group(1)] = settingMatch.group(2)
70 else:
71 settings[settingMatch.group(1)] = True
72
73 #see if this line starts a new bench
74 new_bench = re.search(bench_re, line)
75 if new_bench:
76 current_bench = new_bench.group(1)
77
78 #add configs on this line to the current bench
79 if current_bench:
80 for new_config in re.finditer(config_re, line):
81 current_config = new_config.group(1)
82 times = new_config.group(2)
83 for new_time in re.finditer(time_re, times):
84 current_time_type = new_time.group(1)
bensong@google.comead2b392012-07-02 21:49:30 +000085 iters = [float(i) for i in
bensong@google.comaf3d79a2012-07-02 20:48:51 +000086 new_time.group(2).strip().split(',')]
87 current_time = sum(iters) / len(iters)
bungeman@google.com85669f92011-06-17 13:58:14 +000088 benches.append(BenchDataPoint(
89 current_bench
90 , current_config
91 , current_time_type
92 , current_time
93 , settings))
94
95 return benches
96
97class LinearRegression:
98 """Linear regression data based on a set of data points.
99
100 ([(Number,Number)])
101 There must be at least two points for this to make sense."""
102 def __init__(self, points):
103 n = len(points)
104 max_x = Min
105 min_x = Max
106
107 Sx = 0.0
108 Sy = 0.0
109 Sxx = 0.0
110 Sxy = 0.0
111 Syy = 0.0
112 for point in points:
113 x = point[0]
114 y = point[1]
115 max_x = max(max_x, x)
116 min_x = min(min_x, x)
117
118 Sx += x
119 Sy += y
120 Sxx += x*x
121 Sxy += x*y
122 Syy += y*y
123
124 B = (n*Sxy - Sx*Sy) / (n*Sxx - Sx*Sx)
125 a = (1.0/n)*(Sy - B*Sx)
126
127 se2 = 0
128 sB2 = 0
129 sa2 = 0
130 if (n >= 3):
131 se2 = (1.0/(n*(n-2)) * (n*Syy - Sy*Sy - B*B*(n*Sxx - Sx*Sx)))
132 sB2 = (n*se2) / (n*Sxx - Sx*Sx)
133 sa2 = sB2 * (1.0/n) * Sxx
134
135
136 self.slope = B
137 self.intercept = a
138 self.serror = math.sqrt(max(0, se2))
139 self.serror_slope = math.sqrt(max(0, sB2))
140 self.serror_intercept = math.sqrt(max(0, sa2))
141 self.max_x = max_x
142 self.min_x = min_x
143
144 def __repr__(self):
145 return "LinearRegression(%s, %s, %s, %s, %s)" % (
146 str(self.slope),
147 str(self.intercept),
148 str(self.serror),
149 str(self.serror_slope),
150 str(self.serror_intercept),
151 )
152
153 def find_min_slope(self):
154 """Finds the minimal slope given one standard deviation."""
155 slope = self.slope
156 intercept = self.intercept
157 error = self.serror
158 regr_start = self.min_x
159 regr_end = self.max_x
160 regr_width = regr_end - regr_start
161
162 if slope < 0:
163 lower_left_y = slope*regr_start + intercept - error
164 upper_right_y = slope*regr_end + intercept + error
165 return min(0, (upper_right_y - lower_left_y) / regr_width)
166
167 elif slope > 0:
168 upper_left_y = slope*regr_start + intercept + error
169 lower_right_y = slope*regr_end + intercept - error
170 return max(0, (lower_right_y - upper_left_y) / regr_width)
171
172 return 0
epoger@google.comc71174d2011-08-08 17:19:23 +0000173
174def CreateRevisionLink(revision_number):
175 """Returns HTML displaying the given revision number and linking to
176 that revision's change page at code.google.com, e.g.
177 http://code.google.com/p/skia/source/detail?r=2056
178 """
179 return '<a href="http://code.google.com/p/skia/source/detail?r=%s">%s</a>'%(
180 revision_number, revision_number)