/opt/alt/python27/lib64/python2.7/lib-dynload
NameSizeModeActions
arraymodule.so424960755editdlrm
audioop.so244880755editdlrm
binascii.so210080755editdlrm
bz2.so370080755editdlrm
cmathmodule.so461520755editdlrm
cPickle.so772960755editdlrm
cStringIO.so192800755editdlrm
datetime.so827920755editdlrm
dbm.so120720755editdlrm
dlmodule.so91920755editdlrm
fcntlmodule.so146960755editdlrm
future_builtins.so81760755editdlrm
gdbmmodule.so167200755editdlrm
grpmodule.so94960755editdlrm
imageop.so141200755editdlrm
itertoolsmodule.so608800755editdlrm
linuxaudiodev.so130080755editdlrm
math.so344960755editdlrm
mmapmodule.so218000755editdlrm
nismodule.so122000755editdlrm
operator.so425120755editdlrm
ossaudiodev.so260320755editdlrm
parsermodule.so496320755editdlrm
pyexpat.so2083600755editdlrm
Python-2.7.18-py2.7.egg-info15250644editdlrm
readline.so248080755editdlrm
resource.so116400755editdlrm
selectmodule.so244640755editdlrm
spwdmodule.so90640755editdlrm
stropmodule.so253840755editdlrm
syslog.so88960755editdlrm
termios.so251920755editdlrm
timemodule.so219280755editdlrm
timingmodule.so57680755editdlrm
unicodedata.so6918560755editdlrm
xxsubtype.so90160755editdlrm
zlibmodule.so251920755editdlrm
_bisectmodule.so98720755editdlrm
_bsddb.so1694000755editdlrm
_codecs_cn.so1465680755editdlrm
_codecs_hk.so1545360755editdlrm
_codecs_iso2022.so212000755editdlrm
_codecs_jp.so2616400755editdlrm
_codecs_kr.so1341520755editdlrm
_codecs_tw.so1081040755editdlrm
_collectionsmodule.so323680755editdlrm
_cryptmodule.so50960755editdlrm
_csv.so298640755editdlrm
_ctypes.so1257520755editdlrm
_curses.so788480755editdlrm
_curses_panel.so130960755editdlrm
_elementtree.so508960755editdlrm
_functoolsmodule.so128320755editdlrm
_hashlib.so217680755editdlrm
_heapq.so223680755editdlrm
_hotshot.so274160755editdlrm
_io.so1551200755editdlrm
_json.so382800755editdlrm
_localemodule.so216080755editdlrm
_lsprof.so171600755editdlrm
_md5module.so140960755editdlrm
_multibytecodecmodule.so315040755editdlrm
_multiprocessing.so299680755editdlrm
_randommodule.so129040755editdlrm
_sha256module.so208640755editdlrm
_sha512module.so249600755editdlrm
_shamodule.so137760755editdlrm
_socketmodule.so826320755editdlrm
_sqlite3.so818400755editdlrm
_ssl.so953120755editdlrm
_struct.so379360755editdlrm
Edit: /opt/alt/python27/lib64/python2.7/lib-dynload/_socketmodule.so (82632B)
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H5HH _ [H=ԊHc1Ҁ8^fDH5 H=҇ 腊HGP0aff.SH=H1Ht'HHHHHt H.> H[HCHP0琐UHSHH; HtH; HHHuH[ÐHH_socketsocket.errorsocket.herrorsocket.gaierrorsocket.timeoutSocketTypehas_ipv6_socket.CAPIAF_UNSPECAF_INETAF_INET6AF_UNIXAF_AX25AF_IPXAF_APPLETALKAF_NETROMAF_BRIDGEAF_ATMPVCAF_X25AF_ROSEAF_DECnetAF_NETBEUIAF_SECURITYAF_KEYAF_NETLINKNETLINK_ROUTENETLINK_USERSOCKNETLINK_FIREWALLNETLINK_NFLOGNETLINK_XFRMNETLINK_IP6_FWNETLINK_DNRTMSGAF_ROUTEAF_ASHAF_ECONETAF_ATMSVCAF_SNAAF_IRDAAF_PPPOXAF_WANPIPEAF_LLCAF_BLUETOOTHBTPROTO_L2CAPBTPROTO_HCISOL_HCIHCI_FILTERHCI_TIME_STAMPHCI_DATA_DIRBTPROTO_SCOBTPROTO_RFCOMM00:00:00:00:00:00BDADDR_ANY00:00:00:FF:FF:FFBDADDR_LOCALAF_PACKETPF_PACKETPACKET_HOSTPACKET_BROADCASTPACKET_MULTICASTPACKET_OTHERHOSTPACKET_OUTGOINGPACKET_LOOPBACKPACKET_FASTROUTEAF_TIPCTIPC_ADDR_NAMESEQTIPC_ADDR_NAMETIPC_ADDR_IDTIPC_ZONE_SCOPETIPC_CLUSTER_SCOPETIPC_NODE_SCOPESOL_TIPCTIPC_IMPORTANCETIPC_SRC_DROPPABLETIPC_DEST_DROPPABLETIPC_CONN_TIMEOUTTIPC_LOW_IMPORTANCETIPC_MEDIUM_IMPORTANCETIPC_HIGH_IMPORTANCETIPC_CRITICAL_IMPORTANCETIPC_SUB_PORTSTIPC_SUB_SERVICETIPC_SUB_CANCELTIPC_WAIT_FOREVERTIPC_PUBLISHEDTIPC_WITHDRAWNTIPC_SUBSCR_TIMEOUTTIPC_CFG_SRVTIPC_TOP_SRVSOCK_STREAMSOCK_DGRAMSOCK_RAWSOCK_SEQPACKETSOCK_RDMSO_DEBUGSO_ACCEPTCONNSO_REUSEADDRSO_KEEPALIVESO_DONTROUTESO_BROADCASTSO_LINGERSO_OOBINLINESO_REUSEPORTSO_SNDBUFSO_RCVBUFSO_SNDLOWATSO_RCVLOWATSO_SNDTIMEOSO_RCVTIMEOSO_ERRORSO_TYPESO_SNDBUFFORCESO_RCVBUFFORCESO_NO_CHECKSO_PRIORITYSO_BSDCOMPATSO_PASSCREDSO_PEERCREDSO_SECURITY_AUTHENTICATIONSO_BINDTODEVICESO_ATTACH_FILTERSO_DETACH_FILTERSO_PEERNAMESO_TIMESTAMPSO_PEERSECSO_PASSSECSO_TIMESTAMPNSSOMAXCONNMSG_OOBMSG_PEEKMSG_DONTROUTEMSG_DONTWAITMSG_EORMSG_TRUNCMSG_CTRUNCMSG_WAITALLSOL_SOCKETSOL_IPSOL_TCPSOL_UDPIPPROTO_IPIPPROTO_HOPOPTSIPPROTO_ICMPIPPROTO_IGMPIPPROTO_IPV6IPPROTO_IPIPIPPROTO_TCPIPPROTO_EGPIPPROTO_PUPIPPROTO_UDPIPPROTO_IDPIPPROTO_TPIPPROTO_ROUTINGIPPROTO_FRAGMENTIPPROTO_RSVPIPPROTO_GREIPPROTO_ESPIPPROTO_AHIPPROTO_ICMPV6IPPROTO_NONEIPPROTO_DSTOPTSIPPROTO_PIMIPPROTO_RAWIPPORT_RESERVEDIPPORT_USERRESERVEDINADDR_ANYINADDR_BROADCASTINADDR_LOOPBACKINADDR_UNSPEC_GROUPINADDR_ALLHOSTS_GROUPINADDR_MAX_LOCAL_GROUPINADDR_NONEIP_OPTIONSIP_HDRINCLIP_TOSIP_TTLIP_RECVOPTSIP_RECVRETOPTSIP_RETOPTSIP_MULTICAST_IFIP_MULTICAST_TTLIP_MULTICAST_LOOPIP_ADD_MEMBERSHIPIP_DROP_MEMBERSHIPIP_DEFAULT_MULTICAST_TTLIP_DEFAULT_MULTICAST_LOOPIP_MAX_MEMBERSHIPSIPV6_JOIN_GROUPIPV6_LEAVE_GROUPIPV6_MULTICAST_HOPSIPV6_MULTICAST_IFIPV6_MULTICAST_LOOPIPV6_UNICAST_HOPSIPV6_V6ONLYIPV6_CHECKSUMIPV6_DSTOPTSIPV6_HOPLIMITIPV6_HOPOPTSIPV6_NEXTHOPIPV6_PKTINFOIPV6_RECVDSTOPTSIPV6_RECVHOPLIMITIPV6_RECVHOPOPTSIPV6_RECVPKTINFOIPV6_RECVRTHDRIPV6_RECVTCLASSIPV6_RTHDRIPV6_RTHDRDSTOPTSIPV6_RTHDR_TYPE_0IPV6_TCLASSTCP_NODELAYTCP_MAXSEGTCP_CORKTCP_KEEPIDLETCP_KEEPINTVLTCP_KEEPCNTTCP_SYNCNTTCP_LINGER2TCP_DEFER_ACCEPTTCP_WINDOW_CLAMPTCP_INFOTCP_QUICKACKTCP_CONGESTIONTCP_MD5SIGTCP_MD5SIG_MAXKEYLENEAI_ADDRFAMILYEAI_AGAINEAI_BADFLAGSEAI_FAILEAI_FAMILYEAI_MEMORYEAI_NODATAEAI_NONAMEEAI_OVERFLOWEAI_SERVICEEAI_SOCKTYPEEAI_SYSTEMAI_PASSIVEAI_CANONNAMEAI_NUMERICHOSTAI_NUMERICSERVAI_ALLAI_ADDRCONFIGAI_V4MAPPEDNI_MAXHOSTNI_MAXSERVNI_NOFQDNNI_NUMERICHOSTNI_NAMEREQDNI_NUMERICSERVNI_DGRAMSHUT_RDSHUT_WRSHUT_RDWRiii:setsockoptiis#:setsockoptgetsockaddrlen: bad familyTimeout value out of rangei:htonsi:ntohs%X:%X:%X:%X:%X:%X%cbad bluetooth address(is)s*|i:sendalltimed outs*|i:send%02X:%02X:%02X:%02X:%02X:%02XOiOiIIUnknown Bluetooth protocolshbhs#IIIIIInvalid address typew*|ii:recvfrom_intolNi|i:recvfromw*|ii:recv_intoi|i:recvnegative buffersize in recv|si:makefileii|i:getsockoptiii|i:fromfdis:inet_ptonunknown address familys#:inet_ntoas:inet_atonlong int larger than 32 bitsexpected int/long, %s found|iii:socketpairs:getprotobynameprotocol not foundi|s:getservbyportport/proto not founds|s:getservbynameservice/proto not found|iii:socketunsupported address familyaddress family mismatched%d.%d.%d.%d%cs:gethostbynameOi:getnameinfosi|IIIPv4 sockaddr must be 2 tupleOO|iiii:getaddrinfoidna%ldiiisOis#:inet_ntopunknown address family %dt#AF_UNIX path too longII:getsockaddrargeti:getsockaddrargeti|IIsigetsockaddrarg: wrong formatsi|iis#getsockaddrarg: bad familys*O:sendtos*iO:sendtosOOs:gethostbyname_exs:gethostbyaddr_socket.socketgethostnamentohlhtonlgetdefaulttimeoutsetdefaulttimeoutbuffernbytesflagsprotoacceptbindcloseconnectconnect_exdupfilenogetpeernamegetsocknamelistensetblockingsettimeoutgettimeoutshutdownthe socket familythe socket typethe socket protocolthe socket timeoutSO_SECURITY_ENCRYPTION_TRANSPORTSO_SECURITY_ENCRYPTION_NETWORKgetsockaddrlen: unknown BT protocolcan't convert negative number to unsigned longnegative buffersize in recvfrom_intonbytes is greater than the length of the buffernegative buffersize in recvfromnegative buffersize in recv_intobuffer too small for requested bytesgetsockopt buflen out of rangeillegal IP address string passed to inet_ptonpacked IP wrong length for inet_ntoaillegal IP address string passed to inet_atongetservbyport: port must be 0-65535.wildcard resolved to multiple addressgetnameinfo() argument 1 must be a tuplegetsockaddrarg: flowinfo must be 0-1048575.sockaddr resolved to multiple addressesgetaddrinfo() argument 1 must be string or Nonegetaddrinfo() argument 2 must be integer or stringinvalid length of packed IP address stringgetsockaddrarg: AF_NETLINK address must be tuple, not %.500sgetsockaddrarg: AF_INET address must be tuple, not %.500sgetsockaddrarg: port must be 0-65535.getsockaddrarg: AF_INET6 address must be tuple, not %.500sgetsockaddrarg: unknown Bluetooth protocolgetsockaddrarg: AF_PACKET address must be tuple, not %.500sHardware address must be 8 bytes or lessgetsockaddrarg: protoNumber must be 0-65535.getsockaddrarg: AF_TIPC address must be tuple, not %.500sIIII|I;Invalid TIPC address formatsendto() takes 2 or 3 arguments (%d given)VVVVVVVVVVVVV VVVVVVVVVVVV̌Lܗt,Y YYYYYYYYYYYY YYYYYYYYYYYY,@@?_strptime_strptime_timeday of month out of rangehour out of rangeminute out of rangeseconds out of rangeday of week out of rangeday of year out of range(iiiiiiiii)accept2dyearyear >= 1900 requiredmktime argument out of range%s %s%3d %.2d:%.2d:%.2d %dasctime|O:localtime|O:gmtimed:sleeps|O:strftime timezonealtzonedaylight(zz)tznamePYTHONY2Kclockmktimetzsettime.struct_timetm_yearyear, for example, 1993tm_monmonth of year, range [1, 12]tm_mdayday of month, range [1, 31]tm_hourhours, range [0, 23]tm_minminutes, range [0, 59]tm_secseconds, range [0, 61])tm_wdaytm_ydayday of year, range [1, 366]tm_isdsttimestamp out of range for platform time_tThe time value as returned by gmtime(), localtime(), and strptime(), and accepted by asctime(), mktime() and strftime(). May be considered as a sequence of 9 integers. Note that several fields' values are not the same as those defined by the C language standard for struct tm. For example, the value of the field tm_year is the actual year, not year - 1900. See individual fields' descriptions for details.day of week, range [0, 6], Monday is 01 if summer time is in effect, 0 if not, and -1 if unknownJanFebMarAprMayJunJulAugSepOctNovDecSunMonTueWedThuFriSatư>MbP??.A;Xm@n`(Px0``І@(ЇXpP 0` x0`@hpX8Мx @ 0h 0 P ( 0P 0x ( P` P  Ю@ ` p ( 0P x @p0(0`` 0`P H`zRx kAGy$48kHY G $\0ML M J V J $YIP F %%4D_ E g A W I O A  A O A $xkAn A _ B <oMI X,\ADD ~ AAG p?$lAJ p AD  ؃ZD v F ZD v F $$XANP AD L ,dtAF I AG c AD 8wH nL BBB B(N0A8Gi 8A0A(B BBBG L`BDB B(N0A8G1 8A0A(B BBBE $LxARM AG $tAUPc AA ,AAGpz AAK LBBB B(D0A8Jn 8A0A(B BBBA ,HAXG AAA <LЏ{AS@ AE F AI \ AC Z AE LGBEE E(D0C8Dp 8A0A(B BBBE 4AXG} AAA  CAE 4ؒAS a AJ V AI \ AC LNN <lAHQ@j AAJ Y AAE NAA$PML Y F V B Lؔ0APD@N AAK T CAH | AAB ]AA$$MQf D $LMQf D $thqGSP0F$qN z H R F wD v F g I $xMMDPA A L pKBBB B(A0A8JF 8A0A(B BBBD $\pASf AA $؛AN@} AC jD0F F Y,wAP0V AH g AH ,PDo M w I [ E P A ,,Ax G o Q S J M F 4\ZAMDPx AAD  AAF $N0l F y A ,`AMD0a AAK 4AMD0a AAK y AAA $$ XVz H $L MI@d F t 1Ag$ \MY K $ AQ} AH $ HY  B L yBLB B(A0A8G 8A0A(B BBBF $\ AS` AI $ حMQl F , pM^ B $ 0ML] J $ MLc D $, ML_ H LT XBBB E(A0D8D: 8A0A(B BBBA $ ȽQ[ D $ Xji E $ ȿaAF e AK cA $4 U0H C b4\ pDf F i G l D \ D \ D  OIc D , \AUP AH A AF , (qAGPT AC d AK , x~AI0E AH R AE D 8DS I W,d AK0f AE XA$ XD0d H [ E d D , AW`~ AI R AE 4 ADD0 AAF d DAG $7D r<@7D r$Th AP`V AH |PDVdXBIA A(Nz (A ABBE V (A ABBD A (A ABBI $WKpJ D $A D DLA~ A ( Qa 9 8oX  @  p. o8ooo0 999999::.:>:N:^:n:~:::::::::;;.;>;N;^;n;~;;;;;;;;;<<.<><N<^<n<~<<<<<<<<<==.=>=N=^=n=~=========>>.>>>N>^>n>~>>>>>>>>>??.?>?N?^?n?~?????????@@.@>@N@^@n@~@@@@@@@@@Implementation module for socket operations. See the socket module for documentation.socket([family[, type[, proto]]]) -> socket object Open a socket of the given type. The family argument specifies the address family; it defaults to AF_INET. The type argument specifies whether this is a stream (SOCK_STREAM, this is the default) or datagram (SOCK_DGRAM) socket. The protocol argument defaults to 0, specifying the default protocol. Keyword arguments are accepted. A socket object represents one endpoint of a network connection. Methods of socket objects (keyword arguments not allowed): accept() -- accept a connection, returning new socket and client address bind(addr) -- bind the socket to a local address close() -- close the socket connect(addr) -- connect the socket to a remote address connect_ex(addr) -- connect, return an error code instead of an exception dup() -- return a new socket object identical to the current one [*] fileno() -- return underlying file descriptor getpeername() -- return remote address [*] getsockname() -- return local address getsockopt(level, optname[, buflen]) -- get socket options gettimeout() -- return timeout or None listen(n) -- start listening for incoming connections makefile([mode, [bufsize]]) -- return a file object for the socket [*] recv(buflen[, flags]) -- receive data recv_into(buffer[, nbytes[, flags]]) -- receive data (into a buffer) recvfrom(buflen[, flags]) -- receive data and sender's address recvfrom_into(buffer[, nbytes, [, flags]) -- receive data and sender's address (into a buffer) sendall(data[, flags]) -- send all data send(data[, flags]) -- send data, may not send all of it sendto(data[, flags], addr) -- send data to a given address setblocking(0 | 1) -- set or clear the blocking I/O flag setsockopt(level, optname, value) -- set socket options settimeout(None | float) -- set or clear the timeout shutdown(how) -- shut down traffic in one or both directions [*] not available on all platforms!gethostbyname(host) -> address Return the IP address (a string of the form '255.255.255.255') for a host.gethostbyname_ex(host) -> (name, aliaslist, addresslist) Return the true host name, a list of aliases, and a list of IP addresses, for a host. The host argument is a string giving a host name or IP number.gethostbyaddr(host) -> (name, aliaslist, addresslist) Return the true host name, a list of aliases, and a list of IP addresses, for a host. The host argument is a string giving a host name or IP number.gethostname() -> string Return the current host name.getservbyname(servicename[, protocolname]) -> integer Return a port number from a service name and protocol name. The optional protocol name, if given, should be 'tcp' or 'udp', otherwise any protocol will match.getservbyport(port[, protocolname]) -> string Return the service name from a port number and protocol name. The optional protocol name, if given, should be 'tcp' or 'udp', otherwise any protocol will match.getprotobyname(name) -> integer Return the protocol number for the named protocol. (Rarely used.)fromfd(fd, family, type[, proto]) -> socket object Create a socket object from a duplicate of the given file descriptor. The remaining arguments are the same as for socket().socketpair([family[, type[, proto]]]) -> (socket object, socket object) Create a pair of socket objects from the sockets returned by the platform socketpair() function. The arguments are the same as for socket() except the default family is AF_UNIX if defined on the platform; otherwise, the default is AF_INET.ntohs(integer) -> integer Convert a 16-bit integer from network to host byte order.ntohl(integer) -> integer Convert a 32-bit integer from network to host byte order.htons(integer) -> integer Convert a 16-bit integer from host to network byte order.htonl(integer) -> integer Convert a 32-bit integer from host to network byte order.inet_aton(string) -> packed 32-bit IP representation Convert an IP address in string format (123.45.67.89) to the 32-bit packed binary format used in low-level network functions.inet_ntoa(packed_ip) -> ip_address_string Convert an IP address from 32-bit packed binary format to string formatinet_pton(af, ip) -> packed IP address string Convert an IP address from string format to a packed string suitable for use with low-level network functions.inet_ntop(af, packed_ip) -> string formatted IP address Convert a packed IP address of the given family to string format.getaddrinfo(host, port [, family, socktype, proto, flags]) -> list of (family, socktype, proto, canonname, sockaddr) Resolve host and port into addrinfo struct.getnameinfo(sockaddr, flags) --> (host, port) Get host and port for a sockaddr.getdefaulttimeout() -> timeout Returns the default timeout in seconds (float) for new socket objects. A value of None indicates that new socket objects have no timeout. When the socket module is first imported, the default is None.setdefaulttimeout(timeout) Set the default timeout in seconds (float) for new socket objects. A value of None indicates that new socket objects have no timeout. When the socket module is first imported, the default is None.accept() -> (socket object, address info) Wait for an incoming connection. Return a new socket representing the connection, and the address of the client. For IP sockets, the address info is a pair (hostaddr, port).bind(address) Bind the socket to a local address. For IP sockets, the address is a pair (host, port); the host must refer to the local host. For raw packet sockets the address is a tuple (ifname, proto [,pkttype [,hatype]])close() Close the socket. It cannot be used after this call.connect(address) Connect the socket to a remote address. For IP sockets, the address is a pair (host, port).connect_ex(address) -> errno This is like connect(address), but returns an error code (the errno value) instead of raising an exception when an error occurs.dup() -> socket object Return a new socket object connected to the same system resource.fileno() -> integer Return the integer file descriptor of the socket.getpeername() -> address info Return the address of the remote endpoint. For IP sockets, the address info is a pair (hostaddr, port).getsockname() -> address info Return the address of the local endpoint. For IP sockets, the address info is a pair (hostaddr, port).getsockopt(level, option[, buffersize]) -> value Get a socket option. See the Unix manual for level and option. If a nonzero buffersize argument is given, the return value is a string of that length; otherwise it is an integer.listen(backlog) Enable a server to accept connections. The backlog argument must be at least 0 (if it is lower, it is set to 0); it specifies the number of unaccepted connections that the system will allow before refusing new connections.makefile([mode[, buffersize]]) -> file object Return a regular file object corresponding to the socket. The mode and buffersize arguments are as for the built-in open() function.recv(buffersize[, flags]) -> data Receive up to buffersize bytes from the socket. For the optional flags argument, see the Unix manual. When no data is available, block until at least one byte is available or until the remote end is closed. When the remote end is closed and all data is read, return the empty string.recv_into(buffer, [nbytes[, flags]]) -> nbytes_read A version of recv() that stores its data into a buffer rather than creating a new string. Receive up to buffersize bytes from the socket. If buffersize is not specified (or 0), receive up to the size available in the given buffer. See recv() for documentation about the flags.recvfrom(buffersize[, flags]) -> (data, address info) Like recv(buffersize, flags) but also return the sender's address info.recvfrom_into(buffer[, nbytes[, flags]]) -> (nbytes, address info) Like recv_into(buffer[, nbytes[, flags]]) but also return the sender's address info.send(data[, flags]) -> count Send a data string to the socket. For the optional flags argument, see the Unix manual. Return the number of bytes sent; this may be less than len(data) if the network is busy.sendall(data[, flags]) Send a data string to the socket. For the optional flags argument, see the Unix manual. This calls send() repeatedly until all data is sent. If an error occurs, it's impossible to tell how much data has been sent.sendto(data[, flags], address) -> count Like send(data, flags) but allows specifying the destination address. For IP sockets, the address is a pair (hostaddr, port).setblocking(flag) Set the socket to blocking (flag is true) or non-blocking (false). setblocking(True) is equivalent to settimeout(None); setblocking(False) is equivalent to settimeout(0.0).settimeout(timeout) Set a timeout on socket operations. 'timeout' can be a float, giving in seconds, or None. Setting a timeout of None disables the timeout feature and is equivalent to setblocking(1). Setting a timeout of zero is the same as setblocking(0).gettimeout() -> timeout Returns the timeout in seconds (float) associated with socket operations. A timeout of None indicates that timeouts on socket operations are disabled.setsockopt(level, option, value) Set a socket option. See the Unix manual for level and option. The value argument can either be an integer or a string.shutdown(flag) Shut down the reading side of the socket (flag == SHUT_RD), the writing side of the socket (flag == SHUT_WR), or both ends (flag == SHUT_RDWR).8y 0#! &!Ay` 0 ` @@!!`!@@!u!}!\!| !\!|!T{@!H {!$ z! !!` ! Y !PZ ! !$$*0@w !7 !<o !B !JЙ`!U u!Yp\`!`s!lr`! pq!xp!o!n!m !j!i!- a!_!!\@!0[!X !X!PW!*(This module provides various functions to manipulate time values. There are two standard representations of time. One is the number of seconds since the Epoch, in UTC (a.k.a. GMT). It may be an integer or a floating point number (to represent fractions of seconds). The Epoch is system-defined; on Unix, it is generally January 1st, 1970. The actual value can be retrieved by calling gmtime(0). The other representation is a tuple of 9 integers giving local time. The tuple items are: year (four digits, e.g. 1998) month (1-12) day (1-31) hours (0-23) minutes (0-59) seconds (0-59) weekday (0-6, Monday is 0) Julian day (day in the year, 1-366) DST (Daylight Savings Time) flag (-1, 0 or 1) If the DST flag is 0, the time is given in the regular time zone; if it is 1, the time is given in the DST time zone; if it is -1, mktime() should guess based on the date and time. Variables: timezone -- difference in seconds between UTC and local standard time altzone -- difference in seconds between UTC and local DST time daylight -- whether local time should reflect DST tzname -- tuple of (standard time zone name, DST time zone name) Functions: time() -- return current time in seconds since the Epoch as a float clock() -- return CPU time since process start as a float sleep() -- delay for a number of seconds given as a float gmtime() -- convert seconds since Epoch to UTC tuple localtime() -- convert seconds since Epoch to local time tuple asctime() -- convert time tuple to string ctime() -- convert time in seconds to string mktime() -- convert local time tuple to seconds since Epoch strftime() -- convert time tuple to string according to format specification strptime() -- parse string to time tuple according to format specification tzset() -- change the local timezonetime() -> floating point number Return the current time in seconds since the Epoch. Fractions of a second may be present if the system clock provides them.clock() -> floating point number Return the CPU time or real time since the start of the process or since the first call to clock(). This has as much precision as the system records.sleep(seconds) Delay execution for a given number of seconds. The argument may be a floating point number for subsecond precision.gmtime([seconds]) -> (tm_year, tm_mon, tm_mday, tm_hour, tm_min, tm_sec, tm_wday, tm_yday, tm_isdst) Convert seconds since the Epoch to a time tuple expressing UTC (a.k.a. GMT). When 'seconds' is not passed in, convert the current time instead.localtime([seconds]) -> (tm_year,tm_mon,tm_mday,tm_hour,tm_min, tm_sec,tm_wday,tm_yday,tm_isdst) Convert seconds since the Epoch to a time tuple expressing local time. When 'seconds' is not passed in, convert the current time instead.asctime([tuple]) -> string Convert a time tuple to a string, e.g. 'Sat Jun 06 16:26:11 1998'. When the time tuple is not present, current time as returned by localtime() is used.ctime(seconds) -> string Convert a time in seconds since the Epoch to a string in local time. This is equivalent to asctime(localtime(seconds)). When the time tuple is not present, current time as returned by localtime() is used.mktime(tuple) -> floating point number Convert a time tuple in local time to seconds since the Epoch.strftime(format[, tuple]) -> string Convert a time tuple to a string according to a format specification. See the library reference manual for formatting codes. When the time tuple is not present, current time as returned by localtime() is used.strptime(string, format) -> struct_time Parse a string to a time tuple according to a format specification. See the library reference manual for formatting codes (same as strftime()).tzset() Initialize, or reinitialize, the local timezone to the value stored in os.environ['TZ']. The TZ environment variable should be specified in standard Unix timezone format as documented in the tzset man page (eg. 'US/Eastern', 'Europe/Amsterdam'). Unknown timezones will silently fall back to UTC. If the TZ environment variable is not set, the local timezone is set to the systems best guess of wallclock time. Changing the TZ environment variable without calling tzset *may* change the local timezone used by methods such as localtime, but this behaviour should not be relied on.Ч .!.!/!@ 0!@1!`2! 3!Ц 4!4!5!$`6!*h`:! ;C[b )8_socketmodule.so.debug5\c.shstrtab.note.gnu.build-id.gnu.hash.dynsym.dynstr.gnu.version.gnu.version_r.rela.dyn.rela.plt.init.text.fini.rodata.eh_frame_hdr.eh_frame.ctors.dtors.jcr.data.rel.ro.dynamic.got.got.plt.data.bss.gnu_debuglink $oL( P 0XX8oEo88`T^p.p.  h99c99pnAA(st88z`` d   ( (0 0 p@ @ D ;!; ;;