1 | #!/usr/bin/python3 |
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2 | """ |
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3 | Python Script to plot values obtained by the rmit.py script |
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4 | Runs a R.I.P.L. |
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5 | |
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6 | ./plot.py |
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7 | -t trials |
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8 | -o option:values |
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9 | """ |
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10 | |
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11 | import argparse |
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12 | import itertools |
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13 | import json |
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14 | import math |
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15 | import numpy |
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16 | import re |
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17 | import sys |
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18 | |
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19 | import matplotlib.pyplot as plt |
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20 | from matplotlib.ticker import EngFormatter |
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21 | |
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22 | class Field: |
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23 | def __init__(self, unit, _min): |
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24 | self.unit = unit |
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25 | self.min = _min |
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26 | |
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27 | field_names = { |
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28 | "ns per ops" : Field('ns' , 0), |
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29 | "Number of processors" : Field('' , 1), |
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30 | "Ops per procs" : Field('Ops' , 0), |
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31 | "Ops per threads" : Field('Ops' , 0), |
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32 | "ns per ops/procs" : Field('ns' , 0), |
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33 | "Number of threads" : Field('thrd' , 1), |
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34 | "Total Operations(ops)": Field('Ops' , 0), |
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35 | "Ops/sec/procs" : Field('Ops' , 0), |
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36 | "Total blocks" : Field('Blocks', 0), |
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37 | "Ops per second" : Field('Ops' , 0), |
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38 | "Cycle size (# thrds)" : Field('thrd' , 1), |
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39 | "Duration (ms)" : Field('ms' , 0), |
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40 | } |
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41 | |
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42 | def plot(data, x, y): |
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43 | fig, ax = plt.subplots() |
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44 | colors = itertools.cycle(['#0095e3','#006cb4','#69df00','#0aa000','#fb0300','#e30002','#fd8f00','#ff7f00','#8f00d6','#4b009a','#ffff00','#b13f00']) |
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45 | series = {} |
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46 | for entry in data: |
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47 | if not entry[0] in series: |
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48 | series[entry[0]] = {'x':[], 'y':[]} |
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49 | |
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50 | if x in entry[2] and y in entry[2]: |
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51 | series[entry[0]]['x'].append(entry[2][x]) |
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52 | series[entry[0]]['y'].append(entry[2][y]) |
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53 | |
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54 | for name, data in series.items(): |
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55 | plt.scatter(data['x'], data['y'], color=next(colors), label=name, marker='x') |
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56 | |
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57 | mx = max([max(s['x']) for s in series.values()]) |
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58 | my = max([max(s['y']) for s in series.values()]) |
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59 | |
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60 | plt.ylabel(y) |
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61 | plt.xlim(field_names[x].min, mx + 0.25) |
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62 | plt.xticks(range(1, math.ceil(mx) + 1)) |
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63 | plt.xlabel(x) |
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64 | plt.ylim(field_names[y].min, my*1.2) |
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65 | plt.grid(b = True) |
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66 | ax.xaxis.set_major_formatter( EngFormatter(unit=field_names[x].unit) ) |
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67 | ax.yaxis.set_major_formatter( EngFormatter(unit=field_names[y].unit) ) |
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68 | plt.legend(loc='upper left') |
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69 | plt.show() |
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70 | |
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71 | |
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72 | if __name__ == "__main__": |
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73 | # ================================================================================ |
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74 | # parse command line arguments |
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75 | parser = parser = argparse.ArgumentParser(description='Python Script to draw R.M.I.T. results') |
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76 | parser.add_argument('-f', '--file', nargs='?', type=argparse.FileType('r'), default=sys.stdin) |
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77 | |
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78 | try: |
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79 | options = parser.parse_args() |
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80 | except: |
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81 | print('ERROR: invalid arguments', file=sys.stderr) |
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82 | parser.print_help(sys.stderr) |
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83 | sys.exit(1) |
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84 | |
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85 | # ================================================================================ |
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86 | # load data |
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87 | try : |
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88 | data = json.load(options.file) |
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89 | except : |
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90 | print('ERROR: could not read input', file=sys.stderr) |
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91 | parser.print_help(sys.stderr) |
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92 | sys.exit(1) |
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93 | |
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94 | # ================================================================================ |
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95 | # identify the keys |
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96 | |
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97 | series = set() |
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98 | fields = set() |
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99 | |
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100 | for entry in data: |
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101 | series.add(entry[0]) |
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102 | for label in entry[2].keys(): |
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103 | fields.add(label) |
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104 | |
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105 | print(series) |
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106 | print("fields") |
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107 | for f in fields: |
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108 | print("{}".format(f)) |
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109 | |
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110 | plot(data, "Number of processors", "ns per ops") |
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