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golang
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1.17.2
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net
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..
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addrselect.go
(9.59 KB)
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addrselect_test.go
(6.28 KB)
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cgo_aix.go
(603 B)
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cgo_android.go
(293 B)
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cgo_bsd.go
(419 B)
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cgo_linux.go
(672 B)
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cgo_netbsd.go
(297 B)
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cgo_openbsd.go
(297 B)
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cgo_resnew.go
(668 B)
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cgo_resold.go
(654 B)
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cgo_socknew.go
(816 B)
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cgo_sockold.go
(937 B)
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cgo_solaris.go
(364 B)
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cgo_stub.go
(1.08 KB)
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cgo_unix.go
(9.65 KB)
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cgo_unix_test.go
(2.01 KB)
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cgo_windows.go
(423 B)
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conf.go
(8.78 KB)
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conf_netcgo.go
(387 B)
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conf_test.go
(9.76 KB)
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conn_test.go
(1.79 KB)
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dial.go
(22.72 KB)
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dial_test.go
(26.02 KB)
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dial_unix_test.go
(2.83 KB)
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dnsclient.go
(5.73 KB)
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dnsclient_test.go
(1.51 KB)
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dnsclient_unix.go
(22.12 KB)
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dnsclient_unix_test.go
(54.46 KB)
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dnsconfig_unix.go
(5.56 KB)
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dnsconfig_unix_test.go
(6.83 KB)
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dnsname_test.go
(1.99 KB)
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error_plan9.go
(224 B)
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error_plan9_test.go
(398 B)
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error_posix.go
(700 B)
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error_posix_test.go
(998 B)
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error_test.go
(19.59 KB)
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error_unix.go
(517 B)
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error_unix_test.go
(702 B)
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error_windows.go
(355 B)
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error_windows_test.go
(483 B)
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example_test.go
(3.88 KB)
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external_test.go
(4.08 KB)
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fcntl_libc_test.go
(400 B)
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fcntl_syscall_test.go
(545 B)
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fd_plan9.go
(3.56 KB)
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fd_posix.go
(2.58 KB)
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fd_unix.go
(5.54 KB)
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fd_windows.go
(4.62 KB)
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file.go
(1.69 KB)
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file_plan9.go
(2.68 KB)
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file_stub.go
(507 B)
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file_test.go
(6.55 KB)
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file_unix.go
(2.6 KB)
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file_windows.go
(521 B)
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hook.go
(628 B)
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hook_plan9.go
(283 B)
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hook_unix.go
(840 B)
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hook_windows.go
(875 B)
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hosts.go
(3.1 KB)
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hosts_test.go
(4.59 KB)
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http
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interface.go
(7.17 KB)
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interface_aix.go
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interface_bsd.go
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interface_bsd_test.go
(1.48 KB)
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interface_bsdvar.go
(753 B)
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interface_darwin.go
(1.29 KB)
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interface_freebsd.go
(1.42 KB)
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interface_linux.go
(6.9 KB)
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interface_linux_test.go
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interface_plan9.go
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interface_solaris.go
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interface_stub.go
(830 B)
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interface_test.go
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interface_unix_test.go
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interface_windows.go
(5.41 KB)
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internal
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ip.go
(17.66 KB)
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ip_test.go
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iprawsock.go
(7.08 KB)
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iprawsock_plan9.go
(874 B)
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iprawsock_posix.go
(3.56 KB)
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iprawsock_test.go
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ipsock.go
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ipsock_plan9.go
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ipsock_plan9_test.go
(645 B)
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ipsock_posix.go
(6.28 KB)
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ipsock_test.go
(6.81 KB)
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listen_test.go
(21.34 KB)
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lookup.go
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lookup_fake.go
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lookup_plan9.go
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lookup_test.go
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lookup_unix.go
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lookup_windows.go
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lookup_windows_test.go
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mac.go
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mac_test.go
(3.26 KB)
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mail
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main_cloexec_test.go
(750 B)
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main_conf_test.go
(952 B)
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main_noconf_test.go
(537 B)
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main_plan9_test.go
(392 B)
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main_posix_test.go
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main_test.go
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main_unix_test.go
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main_windows_test.go
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mockserver_test.go
(11.39 KB)
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net.go
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net_fake.go
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net_test.go
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net_windows_test.go
(15.94 KB)
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netgo_unix_test.go
(741 B)
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nss.go
(3.8 KB)
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nss_test.go
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packetconn_test.go
(3.57 KB)
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parse.go
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parse_test.go
(2.14 KB)
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pipe.go
(5.43 KB)
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pipe_test.go
(1.2 KB)
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platform_test.go
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port.go
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port_test.go
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port_unix.go
(1.39 KB)
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protoconn_test.go
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rawconn.go
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rawconn_stub_test.go
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rawconn_test.go
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rawconn_unix_test.go
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rawconn_windows_test.go
(3.12 KB)
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rpc
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sendfile_linux.go
(1.1 KB)
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sendfile_stub.go
(391 B)
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sendfile_test.go
(6.91 KB)
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sendfile_unix_alt.go
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sendfile_windows.go
(1.02 KB)
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server_test.go
(11.11 KB)
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smtp
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sock_bsd.go
(968 B)
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sock_cloexec.go
(1.53 KB)
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sock_linux.go
(1.53 KB)
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sock_linux_test.go
(545 B)
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sock_plan9.go
(262 B)
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sock_posix.go
(6.92 KB)
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sock_stub.go
(420 B)
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sock_windows.go
(1.16 KB)
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sockaddr_posix.go
(1.05 KB)
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sockopt_aix.go
(1.43 KB)
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sockopt_bsd.go
(2.26 KB)
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sockopt_linux.go
(1.25 KB)
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sockopt_plan9.go
(406 B)
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sockopt_posix.go
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sockopt_solaris.go
(1.25 KB)
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sockopt_stub.go
(760 B)
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sockopt_windows.go
(1.51 KB)
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sockoptip_bsdvar.go
(929 B)
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sockoptip_linux.go
(735 B)
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sockoptip_posix.go
(1.53 KB)
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sockoptip_stub.go
(971 B)
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sockoptip_windows.go
(819 B)
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splice_linux.go
(1.09 KB)
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splice_stub.go
(304 B)
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splice_test.go
(10.51 KB)
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sys_cloexec.go
(1 KB)
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tcpsock.go
(9.88 KB)
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tcpsock_plan9.go
(2.13 KB)
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tcpsock_posix.go
(5.39 KB)
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tcpsock_test.go
(17.53 KB)
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tcpsock_unix_test.go
(2.41 KB)
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tcpsockopt_darwin.go
(770 B)
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tcpsockopt_dragonfly.go
(698 B)
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tcpsockopt_openbsd.go
(365 B)
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tcpsockopt_plan9.go
(525 B)
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tcpsockopt_posix.go
(592 B)
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tcpsockopt_solaris.go
(1.15 KB)
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tcpsockopt_stub.go
(415 B)
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tcpsockopt_unix.go
(757 B)
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tcpsockopt_windows.go
(741 B)
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testdata
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textproto
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timeout_test.go
(23.39 KB)
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udpsock.go
(9.19 KB)
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udpsock_plan9.go
(3.79 KB)
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udpsock_plan9_test.go
(1.31 KB)
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udpsock_posix.go
(4.27 KB)
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udpsock_test.go
(12.27 KB)
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unixsock.go
(10.17 KB)
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unixsock_linux_test.go
(2.29 KB)
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unixsock_plan9.go
(1.24 KB)
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unixsock_posix.go
(6.03 KB)
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unixsock_readmsg_cloexec.go
(691 B)
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unixsock_readmsg_cmsg_cloexec.go
(373 B)
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unixsock_readmsg_other.go
(301 B)
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unixsock_readmsg_test.go
(2.62 KB)
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unixsock_test.go
(10.56 KB)
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unixsock_windows_test.go
(2.09 KB)
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url
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write_unix_test.go
(1.67 KB)
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writev_test.go
(5.02 KB)
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writev_unix.go
(797 B)
Editing: interface_linux.go
// Copyright 2011 The Go Authors. All rights reserved. // Use of this source code is governed by a BSD-style // license that can be found in the LICENSE file. package net import ( "os" "syscall" "unsafe" ) // If the ifindex is zero, interfaceTable returns mappings of all // network interfaces. Otherwise it returns a mapping of a specific // interface. func interfaceTable(ifindex int) ([]Interface, error) { tab, err := syscall.NetlinkRIB(syscall.RTM_GETLINK, syscall.AF_UNSPEC) if err != nil { return nil, os.NewSyscallError("netlinkrib", err) } msgs, err := syscall.ParseNetlinkMessage(tab) if err != nil { return nil, os.NewSyscallError("parsenetlinkmessage", err) } var ift []Interface loop: for _, m := range msgs { switch m.Header.Type { case syscall.NLMSG_DONE: break loop case syscall.RTM_NEWLINK: ifim := (*syscall.IfInfomsg)(unsafe.Pointer(&m.Data[0])) if ifindex == 0 || ifindex == int(ifim.Index) { attrs, err := syscall.ParseNetlinkRouteAttr(&m) if err != nil { return nil, os.NewSyscallError("parsenetlinkrouteattr", err) } ift = append(ift, *newLink(ifim, attrs)) if ifindex == int(ifim.Index) { break loop } } } } return ift, nil } const ( // See linux/if_arp.h. // Note that Linux doesn't support IPv4 over IPv6 tunneling. sysARPHardwareIPv4IPv4 = 768 // IPv4 over IPv4 tunneling sysARPHardwareIPv6IPv6 = 769 // IPv6 over IPv6 tunneling sysARPHardwareIPv6IPv4 = 776 // IPv6 over IPv4 tunneling sysARPHardwareGREIPv4 = 778 // any over GRE over IPv4 tunneling sysARPHardwareGREIPv6 = 823 // any over GRE over IPv6 tunneling ) func newLink(ifim *syscall.IfInfomsg, attrs []syscall.NetlinkRouteAttr) *Interface { ifi := &Interface{Index: int(ifim.Index), Flags: linkFlags(ifim.Flags)} for _, a := range attrs { switch a.Attr.Type { case syscall.IFLA_ADDRESS: // We never return any /32 or /128 IP address // prefix on any IP tunnel interface as the // hardware address. switch len(a.Value) { case IPv4len: switch ifim.Type { case sysARPHardwareIPv4IPv4, sysARPHardwareGREIPv4, sysARPHardwareIPv6IPv4: continue } case IPv6len: switch ifim.Type { case sysARPHardwareIPv6IPv6, sysARPHardwareGREIPv6: continue } } var nonzero bool for _, b := range a.Value { if b != 0 { nonzero = true break } } if nonzero { ifi.HardwareAddr = a.Value[:] } case syscall.IFLA_IFNAME: ifi.Name = string(a.Value[:len(a.Value)-1]) case syscall.IFLA_MTU: ifi.MTU = int(*(*uint32)(unsafe.Pointer(&a.Value[:4][0]))) } } return ifi } func linkFlags(rawFlags uint32) Flags { var f Flags if rawFlags&syscall.IFF_UP != 0 { f |= FlagUp } if rawFlags&syscall.IFF_BROADCAST != 0 { f |= FlagBroadcast } if rawFlags&syscall.IFF_LOOPBACK != 0 { f |= FlagLoopback } if rawFlags&syscall.IFF_POINTOPOINT != 0 { f |= FlagPointToPoint } if rawFlags&syscall.IFF_MULTICAST != 0 { f |= FlagMulticast } return f } // If the ifi is nil, interfaceAddrTable returns addresses for all // network interfaces. Otherwise it returns addresses for a specific // interface. func interfaceAddrTable(ifi *Interface) ([]Addr, error) { tab, err := syscall.NetlinkRIB(syscall.RTM_GETADDR, syscall.AF_UNSPEC) if err != nil { return nil, os.NewSyscallError("netlinkrib", err) } msgs, err := syscall.ParseNetlinkMessage(tab) if err != nil { return nil, os.NewSyscallError("parsenetlinkmessage", err) } var ift []Interface if ifi == nil { var err error ift, err = interfaceTable(0) if err != nil { return nil, err } } ifat, err := addrTable(ift, ifi, msgs) if err != nil { return nil, err } return ifat, nil } func addrTable(ift []Interface, ifi *Interface, msgs []syscall.NetlinkMessage) ([]Addr, error) { var ifat []Addr loop: for _, m := range msgs { switch m.Header.Type { case syscall.NLMSG_DONE: break loop case syscall.RTM_NEWADDR: ifam := (*syscall.IfAddrmsg)(unsafe.Pointer(&m.Data[0])) if len(ift) != 0 || ifi.Index == int(ifam.Index) { if len(ift) != 0 { var err error ifi, err = interfaceByIndex(ift, int(ifam.Index)) if err != nil { return nil, err } } attrs, err := syscall.ParseNetlinkRouteAttr(&m) if err != nil { return nil, os.NewSyscallError("parsenetlinkrouteattr", err) } ifa := newAddr(ifam, attrs) if ifa != nil { ifat = append(ifat, ifa) } } } } return ifat, nil } func newAddr(ifam *syscall.IfAddrmsg, attrs []syscall.NetlinkRouteAttr) Addr { var ipPointToPoint bool // Seems like we need to make sure whether the IP interface // stack consists of IP point-to-point numbered or unnumbered // addressing. for _, a := range attrs { if a.Attr.Type == syscall.IFA_LOCAL { ipPointToPoint = true break } } for _, a := range attrs { if ipPointToPoint && a.Attr.Type == syscall.IFA_ADDRESS { continue } switch ifam.Family { case syscall.AF_INET: return &IPNet{IP: IPv4(a.Value[0], a.Value[1], a.Value[2], a.Value[3]), Mask: CIDRMask(int(ifam.Prefixlen), 8*IPv4len)} case syscall.AF_INET6: ifa := &IPNet{IP: make(IP, IPv6len), Mask: CIDRMask(int(ifam.Prefixlen), 8*IPv6len)} copy(ifa.IP, a.Value[:]) return ifa } } return nil } // interfaceMulticastAddrTable returns addresses for a specific // interface. func interfaceMulticastAddrTable(ifi *Interface) ([]Addr, error) { ifmat4 := parseProcNetIGMP("/proc/net/igmp", ifi) ifmat6 := parseProcNetIGMP6("/proc/net/igmp6", ifi) return append(ifmat4, ifmat6...), nil } func parseProcNetIGMP(path string, ifi *Interface) []Addr { fd, err := open(path) if err != nil { return nil } defer fd.close() var ( ifmat []Addr name string ) fd.readLine() // skip first line b := make([]byte, IPv4len) for l, ok := fd.readLine(); ok; l, ok = fd.readLine() { f := splitAtBytes(l, " :\r\t\n") if len(f) < 4 { continue } switch { case l[0] != ' ' && l[0] != '\t': // new interface line name = f[1] case len(f[0]) == 8: if ifi == nil || name == ifi.Name { // The Linux kernel puts the IP // address in /proc/net/igmp in native // endianness. for i := 0; i+1 < len(f[0]); i += 2 { b[i/2], _ = xtoi2(f[0][i:i+2], 0) } i := *(*uint32)(unsafe.Pointer(&b[:4][0])) ifma := &IPAddr{IP: IPv4(byte(i>>24), byte(i>>16), byte(i>>8), byte(i))} ifmat = append(ifmat, ifma) } } } return ifmat } func parseProcNetIGMP6(path string, ifi *Interface) []Addr { fd, err := open(path) if err != nil { return nil } defer fd.close() var ifmat []Addr b := make([]byte, IPv6len) for l, ok := fd.readLine(); ok; l, ok = fd.readLine() { f := splitAtBytes(l, " \r\t\n") if len(f) < 6 { continue } if ifi == nil || f[1] == ifi.Name { for i := 0; i+1 < len(f[2]); i += 2 { b[i/2], _ = xtoi2(f[2][i:i+2], 0) } ifma := &IPAddr{IP: IP{b[0], b[1], b[2], b[3], b[4], b[5], b[6], b[7], b[8], b[9], b[10], b[11], b[12], b[13], b[14], b[15]}} ifmat = append(ifmat, ifma) } } return ifmat }
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