Feature #8073 » rinda.multicast.2.patch
lib/rinda/ring.rb (working copy) | ||
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require 'drb/drb'
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require 'rinda/rinda'
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require 'thread'
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require 'ipaddr'
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module Rinda
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... | ... | |
include DRbUndumped
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##
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# Special renewer for the RingServer to allow shutdown
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class Renewer # :nodoc:
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include DRbUndumped
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##
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# Set to false to shutdown future requests using this Renewer
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attr_accessor :renew
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def initialize # :nodoc:
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@renew = true
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end
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def renew # :nodoc:
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@renew ? 1 : true
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end
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end
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##
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# Advertises +ts+ on the UDP broadcast address at +port+.
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def initialize(ts, port=Ring_PORT)
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def initialize(ts, addresses=[Socket::INADDR_ANY], port=Ring_PORT)
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@port = port
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if Integer === addresses then
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addresses, @port = [Socket::INADDR_ANY], addresses
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end
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@renewer = Renewer.new
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@ts = ts
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@soc = UDPSocket.open
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@soc.bind('', port)
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@w_service = write_service
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@r_service = reply_service
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@sockets = addresses.map do |address|
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make_socket address
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end
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@w_services = write_services
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@r_service = reply_service
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end
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##
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# Creates a thread that picks up UDP packets and passes them to do_write
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# for decoding.
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# Creates a socket at +address+
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def write_service
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Thread.new do
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loop do
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msg = @soc.recv(1024)
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do_write(msg)
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def make_socket address
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addrinfo = Addrinfo.udp address, @port
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socket = Socket.new(addrinfo.pfamily, addrinfo.socktype,
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addrinfo.protocol)
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if addrinfo.ipv4_multicast? or addrinfo.ipv6_multicast? then
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if Socket.const_defined? :SO_REUSEPORT then
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socket.setsockopt(:SOCKET, :SO_REUSEPORT, true)
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else
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socket.setsockopt(:SOCKET, :SO_REUSEADDR, true)
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end
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if addrinfo.ipv4_multicast? then
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mreq = IPAddr.new(addrinfo.ip_address).hton +
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IPAddr.new('0.0.0.0').hton
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socket.setsockopt(:IPPROTO_IP, :IP_ADD_MEMBERSHIP, mreq)
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else
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mreq = IPAddr.new(addrinfo.ip_address).hton + [0].pack('I')
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socket.setsockopt(:IPPROTO_IPV6, :IPV6_JOIN_GROUP, mreq)
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end
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end
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socket.bind(addrinfo)
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socket
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end
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##
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# Creates threads that pick up UDP packets and passes them to do_write for
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# decoding.
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def write_services
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@sockets.map do |s|
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Thread.new(s) do |socket|
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loop do
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msg = socket.recv(1024)
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do_write(msg)
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end
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end
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end
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end
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... | ... | |
def reply_service
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Thread.new do
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loop do
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thread = Thread.current
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thread[:continue] = true
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while thread[:continue] do
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do_reply
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end
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end
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... | ... | |
# address of the local TupleSpace.
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def do_reply
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tuple = @ts.take([:lookup_ring, DRbObject])
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tuple = @ts.take([:lookup_ring, DRbObject], @renewer)
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Thread.new { tuple[1].call(@ts) rescue nil}
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rescue
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end
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##
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# Shuts down the RingServer
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def shutdown
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@renewer.renew = false
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@w_services.each do |thread|
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thread.kill
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end
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@sockets.each do |socket|
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socket.close
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end
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@r_service[:continue] = false
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end
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end
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##
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... | ... | |
attr_accessor :broadcast_list
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##
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# Maximum number of hops for sent multicast packets (if using a multicast
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# address in the broadcast list). The default is 1 (same as UDP
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# broadcast).
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attr_accessor :multicast_hops
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##
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# The interface index to send IPv6 multicast packets from.
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attr_accessor :multicast_interface
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##
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# The port that RingFinger will send query packets to.
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attr_accessor :port
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... | ... | |
@port = port
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@primary = nil
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@rings = []
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@multicast_hops = 1
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@multicast_interface = 0
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end
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##
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... | ... | |
msg = Marshal.dump([[:lookup_ring, DRbObject.new(block)], timeout])
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@broadcast_list.each do |it|
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soc = UDPSocket.open
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begin
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soc.setsockopt(Socket::SOL_SOCKET, Socket::SO_BROADCAST, true)
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soc.send(msg, 0, it, @port)
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rescue
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nil
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ensure
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soc.close
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end
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send_message it, msg
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end
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sleep(timeout)
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end
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... | ... | |
@primary
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end
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##
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# Creates a socket for +address+ with the appropriate multicast options
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# for multicast addresses.
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def make_socket address # :nodoc:
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addrinfo = Addrinfo.udp address, @port
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soc = Socket.new(addrinfo.pfamily, addrinfo.socktype, addrinfo.protocol)
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if addrinfo.ipv4_multicast? then
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soc.setsockopt(:IPPROTO_IP, :IP_MULTICAST_LOOP, true)
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soc.setsockopt(:IPPROTO_IP, :IP_MULTICAST_TTL,
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[@multicast_hops].pack('c'))
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elsif addrinfo.ipv6_multicast? then
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soc.setsockopt(:IPPROTO_IPV6, :IPV6_MULTICAST_LOOP, true)
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soc.setsockopt(:IPPROTO_IPV6, :IPV6_MULTICAST_HOPS,
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[@multicast_hops].pack('I'))
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soc.setsockopt(:IPPROTO_IPV6, :IPV6_MULTICAST_IF,
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[@multicast_interface].pack('I'))
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else
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soc.setsockopt(:SOL_SOCKET, :SO_BROADCAST, true)
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end
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soc.connect addrinfo
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soc
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end
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def send_message address, message # :nodoc:
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soc = make_socket(address)
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soc.send(message, 0)
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rescue
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nil
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ensure
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soc.close if soc
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end
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end
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##
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test/rinda/test_rinda.rb (working copy) | ||
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require 'drb/drb'
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require 'drb/eq'
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require 'rinda/ring'
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require 'rinda/tuplespace'
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require 'singleton'
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... | ... | |
@server = DRb.primary_server || DRb.start_service
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end
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class TestRingServer < Test::Unit::TestCase
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def setup
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@port = Rinda::Ring_PORT
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@ts = Rinda::TupleSpace.new
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@rs = Rinda::RingServer.new @ts, [], @port
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end
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def teardown
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@rs.shutdown
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end
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def test_make_socket_unicast
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v4 = @rs.make_socket '127.0.0.1'
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assert_equal '127.0.0.1', v4.local_address.ip_address
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assert_equal @port, v4.local_address.ip_port
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end
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def test_make_socket_ipv4_multicast
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v4mc = @rs.make_socket '239.0.0.1'
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if Socket.const_defined? :SO_REUSEPORT then
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assert v4mc.getsockopt(:SOCKET, :SO_REUSEPORT).bool
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else
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assert v4mc.getsockopt(:SOCKET, :SO_REUSEADDR).bool
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end
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assert_equal '239.0.0.1', v4mc.local_address.ip_address
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assert_equal @port, v4mc.local_address.ip_port
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end
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def test_make_socket_ipv6_multicast
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begin
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v6mc = @rs.make_socket 'ff02::1'
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rescue Errno::EADDRNOTAVAIL
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return # IPv6 address for multicast not available
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end
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if Socket.const_defined? :SO_REUSEPORT then
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assert v6mc.getsockopt(:SOCKET, :SO_REUSEPORT).bool
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else
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assert v6mc.getsockopt(:SOCKET, :SO_REUSEADDR).bool
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end
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assert_equal 'ff02::1', v6mc.local_address.ip_address
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assert_equal @port, v6mc.local_address.ip_port
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end
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def test_shutdown
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@rs.shutdown
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assert_nil @rs.do_reply, 'otherwise should hang forever'
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end
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end
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class TestRingFinger < Test::Unit::TestCase
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def setup
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@rf = Rinda::RingFinger.new
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@rf.multicast_interface = 1
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end
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def test_make_socket_unicast
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v4 = @rf.make_socket '127.0.0.1'
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assert v4.getsockopt(:SOL_SOCKET, :SO_BROADCAST).bool
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end
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def test_make_socket_ipv4_multicast
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v4mc = @rf.make_socket '239.0.0.1'
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assert_equal 1, v4mc.getsockopt(:IPPROTO_IP, :IP_MULTICAST_LOOP).int
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assert_equal 1, v4mc.getsockopt(:IPPROTO_IP, :IP_MULTICAST_TTL).int
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end
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def test_make_socket_ipv6_multicast
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v6mc = @rf.make_socket 'ff02::1'
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assert_equal 1, v6mc.getsockopt(:IPPROTO_IPV6, :IPV6_MULTICAST_LOOP).int
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assert_equal 1, v6mc.getsockopt(:IPPROTO_IPV6, :IPV6_MULTICAST_HOPS).int
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end
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def test_make_socket_multicast_hops
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@rf.multicast_hops = 2
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v4mc = @rf.make_socket '239.0.0.1'
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assert_equal 2, v4mc.getsockopt(:IPPROTO_IP, :IP_MULTICAST_TTL).int
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v6mc = @rf.make_socket 'ff02::1'
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assert_equal 2, v6mc.getsockopt(:IPPROTO_IPV6, :IPV6_MULTICAST_HOPS).int
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end
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end
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end
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