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https://github.com/zeromq/libzmq.git
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Ruby binding functional
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@@ -17,74 +17,40 @@
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# along with this program. If not, see <http://www.gnu.org/licenses/>.
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require 'librbzmq'
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class Context
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if ARGV.length != 3
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puts "usage: local_thr <bind-to> <message-size> <message-count>"
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Process.exit
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end
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class Socket
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end
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bind_to = ARGV[0]
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message_size = ARGV[1].to_i
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message_count = ARGV[2].to_i
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ctx = Context.new(1, 1)
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s = Socket.new(ctx, SUB);
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s.bind(bind_to);
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class AssertionFailure < StandardError
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end
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def assert(bool, message = 'assertion failure')
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raise AssertionFailure.new(message) unless bool
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end
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if ARGV.length != 3
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puts "usage: local_thr <in-interface> <message-size>" + \
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" <message-count>"
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Process.exit
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end
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in_interface = ARGV[0]
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message_size = ARGV[1]
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message_count = ARGV[2]
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# Print out the test parameters.
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puts "message size: " + message_size.to_s + " [B]"
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puts "message count: " + message_count.to_s
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# Create 0MQ transport.
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rb_zmq = Zmq.new();
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msg = s.recv(0)
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# Create context.
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context = rb_zmq.context(1, 1);
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# Create the socket.
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in_socket = rb_zmq.socket(context, ZMQ_SUB);
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# Connect.
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rb_zmq.connect(in_socket, in_interface.to_s);
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# Receive first message
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data = rb_zmq.recv(in_socket, ZMQ_NOBLOCK);
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assert(rb_zmq.msg_size(data.msg) == message_size.to_i)
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# Get initial timestamp.
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start_time = Time.now
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# The message loop.
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for i in 0...message_count.to_i-1 do
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data = rb_zmq.recv(in_socket, ZMQ_NOBLOCK);
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assert(rb_zmq.msg_size(data.msg) == message_size.to_i)
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end
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# Get terminal timestamp.
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end_time = Time.now
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# Compute and print out the throughput.
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if end_time.to_f - start_time.to_f != 0
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message_throughput = message_count.to_i /
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(end_time.to_f - start_time.to_f);
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else
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message_throughput = message_count.to_i
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end
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megabit_throughput = message_throughput.to_f * message_size.to_i * 8 /
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1000000;
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puts "Your average throughput is " + "%0.2f" % message_throughput.to_s +
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" [msg/s]"
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puts "Your average throughput is " + "%0.2f" % megabit_throughput.to_s +
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" [Mb/s]"
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start_time = Time.now
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for i in 1...message_count.to_i do
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msg = s.recv(0)
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end
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end_time = Time.now
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elapsed = (end_time.to_f - start_time.to_f) * 1000000
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if elapsed == 0
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elapsed = 1
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end
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throughput = message_count * 1000000 / elapsed
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megabits = throughput * message_size * 8 / 1000000
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puts "message size: %i [B]" % message_size
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puts "message count: %i" % message_count
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puts "mean throughput: %i [msg/s]" % throughput
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puts "mean throughput: %.3f [Mb/s]" % megabits
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