2015-03-27 09:52:20 +00:00
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#!/usr/bin/env python
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# Copyright 2015 the V8 project authors. All rights reserved.
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# Use of this source code is governed by a BSD-style license that can be
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# found in the LICENSE file.
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'''
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python %prog
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Convert a perf trybot JSON file into a pleasing HTML page. It can read
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from standard input or via the --filename option. Examples:
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cat results.json | %prog --title "ia32 results"
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%prog -f results.json -t "ia32 results" -o results.html
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'''
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import commands
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import json
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import math
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from optparse import OptionParser
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import os
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import shutil
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import sys
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import tempfile
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PERCENT_CONSIDERED_SIGNIFICANT = 0.5
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PROBABILITY_CONSIDERED_SIGNIFICANT = 0.02
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PROBABILITY_CONSIDERED_MEANINGLESS = 0.05
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def ComputeZ(baseline_avg, baseline_sigma, mean, n):
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if baseline_sigma == 0:
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return 1000.0;
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return abs((mean - baseline_avg) / (baseline_sigma / math.sqrt(n)))
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# Values from http://www.fourmilab.ch/rpkp/experiments/analysis/zCalc.html
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def ComputeProbability(z):
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if z > 2.575829: # p 0.005: two sided < 0.01
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return 0
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if z > 2.326348: # p 0.010
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return 0.01
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if z > 2.170091: # p 0.015
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return 0.02
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if z > 2.053749: # p 0.020
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return 0.03
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if z > 1.959964: # p 0.025: two sided < 0.05
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return 0.04
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if z > 1.880793: # p 0.030
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return 0.05
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if z > 1.811910: # p 0.035
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return 0.06
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if z > 1.750686: # p 0.040
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return 0.07
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if z > 1.695397: # p 0.045
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return 0.08
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if z > 1.644853: # p 0.050: two sided < 0.10
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return 0.09
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if z > 1.281551: # p 0.100: two sided < 0.20
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return 0.10
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return 0.20 # two sided p >= 0.20
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class Result:
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def __init__(self, test_name, count, hasScoreUnits, result, sigma,
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master_result, master_sigma):
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self.result_ = float(result)
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self.sigma_ = float(sigma)
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self.master_result_ = float(master_result)
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self.master_sigma_ = float(master_sigma)
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self.significant_ = False
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self.notable_ = 0
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self.percentage_string_ = ""
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# compute notability and significance.
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2017-09-04 15:50:20 +00:00
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try:
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if hasScoreUnits:
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compare_num = 100*self.result_/self.master_result_ - 100
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else:
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compare_num = 100*self.master_result_/self.result_ - 100
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if abs(compare_num) > 0.1:
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self.percentage_string_ = "%3.1f" % (compare_num)
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z = ComputeZ(self.master_result_, self.master_sigma_, self.result_, count)
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p = ComputeProbability(z)
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if p < PROBABILITY_CONSIDERED_SIGNIFICANT:
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self.significant_ = True
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if compare_num >= PERCENT_CONSIDERED_SIGNIFICANT:
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self.notable_ = 1
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elif compare_num <= -PERCENT_CONSIDERED_SIGNIFICANT:
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self.notable_ = -1
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except ZeroDivisionError:
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self.percentage_string_ = "NaN"
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self.significant_ = True
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2015-03-27 09:52:20 +00:00
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def result(self):
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return self.result_
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def sigma(self):
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return self.sigma_
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def master_result(self):
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return self.master_result_
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def master_sigma(self):
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return self.master_sigma_
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def percentage_string(self):
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return self.percentage_string_;
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def isSignificant(self):
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return self.significant_
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def isNotablyPositive(self):
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return self.notable_ > 0
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def isNotablyNegative(self):
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return self.notable_ < 0
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class Benchmark:
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def __init__(self, name, data):
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self.name_ = name
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self.tests_ = {}
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for test in data:
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2016-05-02 14:23:03 +00:00
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# strip off "<name>/" prefix, allowing for subsequent "/"s
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test_name = test.split("/", 1)[1]
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2015-03-27 09:52:20 +00:00
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self.appendResult(test_name, data[test])
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# tests is a dictionary of Results
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def tests(self):
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return self.tests_
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def SortedTestKeys(self):
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keys = self.tests_.keys()
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keys.sort()
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t = "Total"
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if t in keys:
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keys.remove(t)
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keys.append(t)
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return keys
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def name(self):
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return self.name_
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def appendResult(self, test_name, test_data):
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with_string = test_data["result with patch "]
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data = with_string.split()
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master_string = test_data["result without patch"]
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master_data = master_string.split()
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runs = int(test_data["runs"])
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units = test_data["units"]
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hasScoreUnits = units == "score"
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self.tests_[test_name] = Result(test_name,
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runs,
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hasScoreUnits,
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data[0], data[2],
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master_data[0], master_data[2])
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class BenchmarkRenderer:
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def __init__(self, output_file):
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self.print_output_ = []
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self.output_file_ = output_file
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def Print(self, str_data):
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self.print_output_.append(str_data)
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def FlushOutput(self):
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string_data = "\n".join(self.print_output_)
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print_output = []
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if self.output_file_:
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# create a file
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with open(self.output_file_, "w") as text_file:
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text_file.write(string_data)
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else:
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print(string_data)
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def RenderOneBenchmark(self, benchmark):
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self.Print("<h2>")
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self.Print("<a name=\"" + benchmark.name() + "\">")
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self.Print(benchmark.name() + "</a> <a href=\"#top\">(top)</a>")
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self.Print("</h2>");
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self.Print("<table class=\"benchmark\">")
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self.Print("<thead>")
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self.Print(" <th>Test</th>")
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self.Print(" <th>Result</th>")
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self.Print(" <th>Master</th>")
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self.Print(" <th>%</th>")
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self.Print("</thead>")
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self.Print("<tbody>")
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tests = benchmark.tests()
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for test in benchmark.SortedTestKeys():
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t = tests[test]
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self.Print(" <tr>")
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self.Print(" <td>" + test + "</td>")
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self.Print(" <td>" + str(t.result()) + "</td>")
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self.Print(" <td>" + str(t.master_result()) + "</td>")
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t = tests[test]
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res = t.percentage_string()
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if t.isSignificant():
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res = self.bold(res)
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if t.isNotablyPositive():
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res = self.green(res)
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elif t.isNotablyNegative():
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res = self.red(res)
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self.Print(" <td>" + res + "</td>")
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self.Print(" </tr>")
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self.Print("</tbody>")
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self.Print("</table>")
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def ProcessJSONData(self, data, title):
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self.Print("<h1>" + title + "</h1>")
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self.Print("<ul>")
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for benchmark in data:
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if benchmark != "errors":
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self.Print("<li><a href=\"#" + benchmark + "\">" + benchmark + "</a></li>")
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self.Print("</ul>")
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for benchmark in data:
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if benchmark != "errors":
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benchmark_object = Benchmark(benchmark, data[benchmark])
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self.RenderOneBenchmark(benchmark_object)
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def bold(self, data):
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return "<b>" + data + "</b>"
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def red(self, data):
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return "<font color=\"red\">" + data + "</font>"
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def green(self, data):
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return "<font color=\"green\">" + data + "</font>"
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def PrintHeader(self):
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data = """<html>
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<head>
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<title>Output</title>
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<style type="text/css">
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/*
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Style inspired by Andy Ferra's gist at https://gist.github.com/andyferra/2554919
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*/
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body {
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font-family: Helvetica, arial, sans-serif;
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font-size: 14px;
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line-height: 1.6;
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padding-top: 10px;
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padding-bottom: 10px;
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background-color: white;
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padding: 30px;
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}
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h1, h2, h3, h4, h5, h6 {
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margin: 20px 0 10px;
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padding: 0;
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font-weight: bold;
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-webkit-font-smoothing: antialiased;
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cursor: text;
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position: relative;
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}
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h1 {
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font-size: 28px;
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color: black;
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}
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h2 {
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font-size: 24px;
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border-bottom: 1px solid #cccccc;
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color: black;
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}
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h3 {
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font-size: 18px;
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}
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h4 {
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font-size: 16px;
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}
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h5 {
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font-size: 14px;
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}
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h6 {
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color: #777777;
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font-size: 14px;
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}
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p, blockquote, ul, ol, dl, li, table, pre {
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margin: 15px 0;
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}
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li p.first {
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display: inline-block;
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}
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ul, ol {
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padding-left: 30px;
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}
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ul :first-child, ol :first-child {
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margin-top: 0;
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}
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ul :last-child, ol :last-child {
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margin-bottom: 0;
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}
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table {
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padding: 0;
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}
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table tr {
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border-top: 1px solid #cccccc;
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background-color: white;
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margin: 0;
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padding: 0;
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}
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table tr:nth-child(2n) {
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background-color: #f8f8f8;
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}
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table tr th {
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font-weight: bold;
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border: 1px solid #cccccc;
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text-align: left;
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margin: 0;
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padding: 6px 13px;
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}
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table tr td {
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border: 1px solid #cccccc;
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text-align: left;
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margin: 0;
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padding: 6px 13px;
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}
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table tr th :first-child, table tr td :first-child {
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margin-top: 0;
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}
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table tr th :last-child, table tr td :last-child {
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margin-bottom: 0;
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}
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</style>
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</head>
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<body>
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"""
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self.Print(data)
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def PrintFooter(self):
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data = """</body>
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</html>
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"""
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self.Print(data)
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def Render(opts, args):
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if opts.filename:
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with open(opts.filename) as json_data:
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data = json.load(json_data)
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else:
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# load data from stdin
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data = json.load(sys.stdin)
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if opts.title:
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title = opts.title
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elif opts.filename:
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title = opts.filename
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else:
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title = "Benchmark results"
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renderer = BenchmarkRenderer(opts.output)
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renderer.PrintHeader()
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renderer.ProcessJSONData(data, title)
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renderer.PrintFooter()
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renderer.FlushOutput()
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if __name__ == '__main__':
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parser = OptionParser(usage=__doc__)
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parser.add_option("-f", "--filename", dest="filename",
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help="Specifies the filename for the JSON results "
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"rather than reading from stdin.")
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parser.add_option("-t", "--title", dest="title",
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help="Optional title of the web page.")
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parser.add_option("-o", "--output", dest="output",
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help="Write html output to this file rather than stdout.")
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(opts, args) = parser.parse_args()
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Render(opts, args)
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