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94 lines
1.8 KiB
Python
94 lines
1.8 KiB
Python
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#! /usr/local/python
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# Test network throughput.
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#
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# Usage:
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# 1) on host_A: throughput -s [port] # start a server
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# 2) on host_B: throughput -c count host_A [port] # start a client
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#
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# The server will service multiple clients until it is killed.
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#
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# The client performs one transfer of count*BUFSIZE bytes and
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# measures the time it takes (roundtrip!).
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import sys, time
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from socket import *
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MY_PORT = 50000 + 42
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BUFSIZE = 1024
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def main():
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if len(sys.argv) < 2:
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usage()
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if sys.argv[1] = '-s':
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server()
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elif sys.argv[1] = '-c':
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client()
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else:
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usage()
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def usage():
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sys.stdout = sys.stderr
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print 'Usage: (on host_A) throughput -s [port]'
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print 'and then: (on host_B) throughput -c count host_A [port]'
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sys.exit(2)
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def server():
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if len(sys.argv) > 2:
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port = eval(sys.argv[2])
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else:
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port = MY_PORT
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s = socket(AF_INET, SOCK_STREAM)
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s.bind('', port)
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s.listen(0)
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print 'Server ready...'
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while 1:
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conn, (host, remoteport) = s.accept()
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while 1:
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data = conn.recv(BUFSIZE)
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if not data:
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break
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del data
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conn.send('OK\n')
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conn.close()
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print 'Done with', host, 'port', remoteport
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def client():
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if len(sys.argv) < 4:
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usage()
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count = int(eval(sys.argv[2]))
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host = sys.argv[3]
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if len(sys.argv) > 4:
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port = eval(sys.argv[4])
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else:
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port = MY_PORT
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testdata = 'x' * (BUFSIZE-1) + '\n'
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t1 = time.millitimer()
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s = socket(AF_INET, SOCK_STREAM)
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t2 = time.millitimer()
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s.connect(host, port)
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t3 = time.millitimer()
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i = 0
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while i < count:
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i = i+1
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s.send(testdata)
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s.shutdown(1) # Send EOF
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t4 = time.millitimer()
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data = s.recv(BUFSIZE)
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t5 = time.millitimer()
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print data
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print 'Raw timers:', t1, t2, t3, t4, t5
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print 'Intervals:', t2-t1, t3-t2, t4-t3, t5-t4
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print 'Total:', t5-t1
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print 'Throughput:', int(float(BUFSIZE*count) / float(t5-t1)),
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print 'K/sec.'
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main()
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