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8ca9bda671
Original commit message from CVS: 2005-06-28 Andy Wingo <wingo@pobox.com> * tests/network-clock-utils.scm (debug, print-event): New utils. * tests/network-clock.scm (*debug*, *with-graph*): New parameters. (*packet-loss*): Unified loss probability. (network-time): Report out-of-band events. * tests/plot-data: Add support for out-of-band events. Hack it into this script instead of passing it down the pipe; should fix this later.
81 lines
2.4 KiB
Python
Executable file
81 lines
2.4 KiB
Python
Executable file
#!/usr/bin/env python
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from __future__ import division
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import pylab
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import optparse
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import sys
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def parse_data(l, state):
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state['data'].append([float(x) for x in filter(None, l.split(' '))])
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return state
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def parse_event(l, state):
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components = filter(None, l.split(' '))
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vals = [float(x) for x in components[1:]]
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if not components[0] in state:
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state[components[0]] = [vals]
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else:
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state[components[0]].append(vals)
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return state
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def read_line(fd, state):
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l = fd.readline()
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if not l:
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return None
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l = l.strip()
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if l[0].isdigit():
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return parse_data(l, state)
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else:
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return parse_event(l, state)
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def read_data(fd):
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state = {'data':[],
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'packet-sent':[],
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'packet-lost':[],
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'packet-received':[],
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'packet-observed':[]}
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newstate = state
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while newstate:
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state = newstate
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newstate = read_line(fd, state)
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return state
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def make_xticks(start, end, numticks):
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return range(int(start), int(end), int((start-end)/numticks))
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def make_plot(title):
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l = sys.stdin.readline()
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labels = l.strip().split(';')
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state = read_data(sys.stdin)
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data = state['data']
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lost_packets = state['packet-lost']
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obsv_packets = state['packet-observed']
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sent_packets = state['packet-sent']
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recd_packets = state['packet-received']
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domain = [x[0] for x in data]
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for i in range(1,len(labels)):
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pylab.plot(domain, [x[i] for x in data], label=labels[i])
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pylab.plot([x[0] for x in lost_packets], [x[1] for x in lost_packets],
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label='Client sent packet, but dropped', marker='x', linestyle=None, ms=8)
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pylab.plot([x[0] for x in sent_packets], [x[1] for x in sent_packets],
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label='Client sent packet', marker='^', linestyle=None, ms=8)
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pylab.plot([x[0] for x in obsv_packets], [x[1] for x in obsv_packets],
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label='Remote time observation', marker='D', linestyle=None, ms=8)
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pylab.plot([x[0] for x in recd_packets], [x[1] for x in recd_packets],
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label='Client received packet', marker='v', linestyle=None, ms=8)
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pylab.legend()
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pylab.ylabel(r'Clock time (s)')
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pylab.xlabel(r'Real time (s)')
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pylab.title(title)
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pylab.grid(True)
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pylab.show()
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def main(args):
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parser = optparse.OptionParser()
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title = ' '.join(args[1:])
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make_plot(title)
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main(sys.argv)
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