зеркало из https://github.com/github/ruby.git
254 строки
5.0 KiB
Ruby
254 строки
5.0 KiB
Ruby
begin
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require "openssl"
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rescue LoadError
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end
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require 'test/unit'
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if defined?(OpenSSL)
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require 'socket'
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dir = File.expand_path(__FILE__)
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2.times {dir = File.dirname(dir)}
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$:.replace([File.join(dir, "ruby")] | $:)
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require 'ut_eof'
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module SSLPair
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def server
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host = "127.0.0.1"
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port = 0
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ctx = OpenSSL::SSL::SSLContext.new()
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ctx.ciphers = "ADH"
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tcps = TCPServer.new(host, port)
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ssls = OpenSSL::SSL::SSLServer.new(tcps, ctx)
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return ssls
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end
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def client(port)
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host = "127.0.0.1"
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ctx = OpenSSL::SSL::SSLContext.new()
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ctx.ciphers = "ADH"
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s = TCPSocket.new(host, port)
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ssl = OpenSSL::SSL::SSLSocket.new(s, ctx)
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ssl.connect
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ssl.sync_close = true
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ssl
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end
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def ssl_pair
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ssls = server
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th = Thread.new {
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ns = ssls.accept
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ssls.close
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ns
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}
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port = ssls.to_io.addr[1]
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c = client(port)
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s = th.value
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if block_given?
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begin
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yield c, s
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ensure
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c.close unless c.closed?
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s.close unless s.closed?
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end
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else
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return c, s
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end
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ensure
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if th && th.alive?
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th.kill
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th.join
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end
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end
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end
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class OpenSSL::TestEOF1 < Test::Unit::TestCase
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include TestEOF
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include SSLPair
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def open_file(content)
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s1, s2 = ssl_pair
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Thread.new { s2 << content; s2.close }
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yield s1
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end
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end
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class OpenSSL::TestEOF2 < Test::Unit::TestCase
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include TestEOF
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include SSLPair
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def open_file(content)
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s1, s2 = ssl_pair
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Thread.new { s1 << content; s1.close }
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yield s2
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end
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end
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class OpenSSL::TestPair < Test::Unit::TestCase
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include SSLPair
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def test_getc
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ssl_pair {|s1, s2|
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s1 << "a"
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assert_equal(?a, s2.getc)
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}
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end
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def test_readpartial
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ssl_pair {|s1, s2|
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s2.write "a\nbcd"
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assert_equal("a\n", s1.gets)
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assert_equal("bcd", s1.readpartial(10))
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s2.write "efg"
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assert_equal("efg", s1.readpartial(10))
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s2.close
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assert_raise(EOFError) { s1.readpartial(10) }
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assert_raise(EOFError) { s1.readpartial(10) }
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assert_equal("", s1.readpartial(0))
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}
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end
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def test_readall
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ssl_pair {|s1, s2|
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s2.close
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assert_equal("", s1.read)
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}
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end
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def test_readline
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ssl_pair {|s1, s2|
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s2.close
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assert_raise(EOFError) { s1.readline }
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}
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end
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def test_puts_meta
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ssl_pair {|s1, s2|
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begin
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old = $/
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$/ = '*'
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s1.puts 'a'
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ensure
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$/ = old
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end
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s1.close
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assert_equal("a\n", s2.read)
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}
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end
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def test_puts_empty
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ssl_pair {|s1, s2|
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s1.puts
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s1.close
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assert_equal("\n", s2.read)
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}
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end
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def test_read_nonblock
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ssl_pair {|s1, s2|
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err = nil
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assert_raise(OpenSSL::SSL::SSLError) {
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begin
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s2.read_nonblock(10)
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ensure
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err = $!
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end
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}
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assert_kind_of(IO::WaitReadable, err)
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s1.write "abc\ndef\n"
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IO.select([s2])
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assert_equal("ab", s2.read_nonblock(2))
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assert_equal("c\n", s2.gets)
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ret = nil
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assert_nothing_raised("[ruby-core:20298]") { ret = s2.read_nonblock(10) }
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assert_equal("def\n", ret)
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}
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end
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def test_write_nonblock
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ssl_pair {|s1, s2|
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n = 0
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begin
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n += s1.write_nonblock("a" * 100000)
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n += s1.write_nonblock("b" * 100000)
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n += s1.write_nonblock("c" * 100000)
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n += s1.write_nonblock("d" * 100000)
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n += s1.write_nonblock("e" * 100000)
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n += s1.write_nonblock("f" * 100000)
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rescue IO::WaitWritable
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end
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s1.close
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assert_equal(n, s2.read.length)
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}
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end
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def test_write_nonblock_with_buffered_data
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ssl_pair {|s1, s2|
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s1.write "foo"
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s1.write_nonblock("bar")
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s1.write "baz"
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s1.close
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assert_equal("foobarbaz", s2.read)
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}
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end
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def test_connect_accept_nonblock
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host = "127.0.0.1"
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port = 0
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ctx = OpenSSL::SSL::SSLContext.new()
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ctx.ciphers = "ADH"
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serv = TCPServer.new(host, port)
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ssls = OpenSSL::SSL::SSLServer.new(serv, ctx)
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port = serv.connect_address.ip_port
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sock1 = TCPSocket.new(host, port)
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sock2 = serv.accept
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serv.close
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th = Thread.new {
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s2 = OpenSSL::SSL::SSLSocket.new(sock2, ctx)
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s2.sync_close = true
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begin
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sleep 0.2
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s2.accept_nonblock
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rescue IO::WaitReadable
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IO.select([s2])
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retry
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rescue IO::WaitWritable
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IO.select(nil, [s2])
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retry
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end
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s2
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}
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sleep 0.1
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ctx = OpenSSL::SSL::SSLContext.new()
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ctx.ciphers = "ADH"
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s1 = OpenSSL::SSL::SSLSocket.new(sock1, ctx)
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begin
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sleep 0.2
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s1.connect_nonblock
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rescue IO::WaitReadable
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IO.select([s1])
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retry
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rescue IO::WaitWritable
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IO.select(nil, [s1])
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retry
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end
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s1.sync_close = true
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s2 = th.value
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s1.print "a\ndef"
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assert_equal("a\n", s2.gets)
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ensure
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serv.close if serv && !serv.closed?
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sock1.close if sock1 && !sock1.closed?
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sock2.close if sock2 && !sock2.closed?
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end
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end
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end
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