mirror of https://github.com/python/cpython
864 lines
22 KiB
Python
864 lines
22 KiB
Python
# Sun RPC version 2 -- RFC1057.
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# XXX There should be separate exceptions for the various reasons why
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# XXX an RPC can fail, rather than using RuntimeError for everything
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# XXX The UDP version of the protocol resends requests when it does
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# XXX not receive a timely reply -- use only for idempotent calls!
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# XXX There is no provision for call timeout on TCP connections
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import xdr
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import socket
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import os
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RPCVERSION = 2
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CALL = 0
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REPLY = 1
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AUTH_NULL = 0
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AUTH_UNIX = 1
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AUTH_SHORT = 2
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AUTH_DES = 3
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MSG_ACCEPTED = 0
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MSG_DENIED = 1
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SUCCESS = 0 # RPC executed successfully
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PROG_UNAVAIL = 1 # remote hasn't exported program
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PROG_MISMATCH = 2 # remote can't support version #
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PROC_UNAVAIL = 3 # program can't support procedure
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GARBAGE_ARGS = 4 # procedure can't decode params
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RPC_MISMATCH = 0 # RPC version number != 2
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AUTH_ERROR = 1 # remote can't authenticate caller
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AUTH_BADCRED = 1 # bad credentials (seal broken)
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AUTH_REJECTEDCRED = 2 # client must begin new session
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AUTH_BADVERF = 3 # bad verifier (seal broken)
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AUTH_REJECTEDVERF = 4 # verifier expired or replayed
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AUTH_TOOWEAK = 5 # rejected for security reasons
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class Packer(xdr.Packer):
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def pack_auth(self, auth):
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flavor, stuff = auth
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self.pack_enum(flavor)
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self.pack_opaque(stuff)
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def pack_auth_unix(self, stamp, machinename, uid, gid, gids):
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self.pack_uint(stamp)
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self.pack_string(machinename)
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self.pack_uint(uid)
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self.pack_uint(gid)
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self.pack_uint(len(gids))
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for i in gids:
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self.pack_uint(i)
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def pack_callheader(self, xid, prog, vers, proc, cred, verf):
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self.pack_uint(xid)
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self.pack_enum(CALL)
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self.pack_uint(RPCVERSION)
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self.pack_uint(prog)
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self.pack_uint(vers)
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self.pack_uint(proc)
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self.pack_auth(cred)
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self.pack_auth(verf)
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# Caller must add procedure-specific part of call
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def pack_replyheader(self, xid, verf):
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self.pack_uint(xid)
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self.pack_enum(REPLY)
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self.pack_uint(MSG_ACCEPTED)
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self.pack_auth(verf)
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self.pack_enum(SUCCESS)
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# Caller must add procedure-specific part of reply
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# Exceptions
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BadRPCFormat = 'rpc.BadRPCFormat'
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BadRPCVersion = 'rpc.BadRPCVersion'
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GarbageArgs = 'rpc.GarbageArgs'
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class Unpacker(xdr.Unpacker):
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def unpack_auth(self):
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flavor = self.unpack_enum()
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stuff = self.unpack_opaque()
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return (flavor, stuff)
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def unpack_callheader(self):
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xid = self.unpack_uint(xid)
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temp = self.unpack_enum()
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if temp <> CALL:
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raise BadRPCFormat, 'no CALL but ' + `temp`
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temp = self.unpack_uint()
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if temp <> RPCVERSION:
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raise BadRPCVerspion, 'bad RPC version ' + `temp`
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prog = self.unpack_uint()
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vers = self.unpack_uint()
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proc = self.unpack_uint()
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cred = self.unpack_auth()
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verf = self.unpack_auth()
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return xid, prog, vers, proc, cred, verf
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# Caller must add procedure-specific part of call
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def unpack_replyheader(self):
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xid = self.unpack_uint()
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mtype = self.unpack_enum()
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if mtype <> REPLY:
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raise RuntimeError, 'no REPLY but ' + `mtype`
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stat = self.unpack_enum()
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if stat == MSG_DENIED:
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stat = self.unpack_enum()
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if stat == RPC_MISMATCH:
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low = self.unpack_uint()
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high = self.unpack_uint()
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raise RuntimeError, \
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'MSG_DENIED: RPC_MISMATCH: ' + `low, high`
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if stat == AUTH_ERROR:
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stat = self.unpack_uint()
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raise RuntimeError, \
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'MSG_DENIED: AUTH_ERROR: ' + `stat`
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raise RuntimeError, 'MSG_DENIED: ' + `stat`
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if stat <> MSG_ACCEPTED:
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raise RuntimeError, \
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'Neither MSG_DENIED nor MSG_ACCEPTED: ' + `stat`
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verf = self.unpack_auth()
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stat = self.unpack_enum()
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if stat == PROG_UNAVAIL:
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raise RuntimeError, 'call failed: PROG_UNAVAIL'
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if stat == PROG_MISMATCH:
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low = self.unpack_uint()
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high = self.unpack_uint()
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raise RuntimeError, \
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'call failed: PROG_MISMATCH: ' + `low, high`
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if stat == PROC_UNAVAIL:
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raise RuntimeError, 'call failed: PROC_UNAVAIL'
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if stat == GARBAGE_ARGS:
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raise RuntimeError, 'call failed: GARBAGE_ARGS'
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if stat <> SUCCESS:
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raise RuntimeError, 'call failed: ' + `stat`
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return xid, verf
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# Caller must get procedure-specific part of reply
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# Subroutines to create opaque authentication objects
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def make_auth_null():
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return ''
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def make_auth_unix(seed, host, uid, gid, groups):
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p = Packer()
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p.pack_auth_unix(seed, host, uid, gid, groups)
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return p.get_buf()
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def make_auth_unix_default():
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try:
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from os import getuid, getgid
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uid = getuid()
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gid = getgid()
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except ImportError:
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uid = gid = 0
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import time
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return make_auth_unix(int(time.time()), \
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socket.gethostname(), uid, gid, [])
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# Common base class for clients
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class Client:
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def __init__(self, host, prog, vers, port):
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self.host = host
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self.prog = prog
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self.vers = vers
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self.port = port
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self.makesocket() # Assigns to self.sock
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self.bindsocket()
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self.connsocket()
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self.lastxid = 0 # XXX should be more random?
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self.addpackers()
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self.cred = None
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self.verf = None
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def close(self):
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self.sock.close()
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def makesocket(self):
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# This MUST be overridden
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raise RuntimeError, 'makesocket not defined'
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def connsocket(self):
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# Override this if you don't want/need a connection
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self.sock.connect((self.host, self.port))
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def bindsocket(self):
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# Override this to bind to a different port (e.g. reserved)
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self.sock.bind(('', 0))
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def addpackers(self):
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# Override this to use derived classes from Packer/Unpacker
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self.packer = Packer()
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self.unpacker = Unpacker('')
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def make_call(self, proc, args, pack_func, unpack_func):
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# Don't normally override this (but see Broadcast)
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if pack_func is None and args is not None:
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raise TypeError, 'non-null args with null pack_func'
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self.start_call(proc)
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if pack_func:
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pack_func(args)
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self.do_call()
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if unpack_func:
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result = unpack_func()
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else:
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result = None
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self.unpacker.done()
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return result
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def start_call(self, proc):
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# Don't override this
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self.lastxid = xid = self.lastxid + 1
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cred = self.mkcred()
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verf = self.mkverf()
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p = self.packer
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p.reset()
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p.pack_callheader(xid, self.prog, self.vers, proc, cred, verf)
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def do_call(self):
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# This MUST be overridden
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raise RuntimeError, 'do_call not defined'
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def mkcred(self):
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# Override this to use more powerful credentials
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if self.cred == None:
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self.cred = (AUTH_NULL, make_auth_null())
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return self.cred
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def mkverf(self):
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# Override this to use a more powerful verifier
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if self.verf == None:
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self.verf = (AUTH_NULL, make_auth_null())
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return self.verf
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def call_0(self): # Procedure 0 is always like this
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return self.make_call(0, None, None, None)
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# Record-Marking standard support
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def sendfrag(sock, last, frag):
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x = len(frag)
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if last: x = x | 0x80000000L
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header = (chr(int(x>>24 & 0xff)) + chr(int(x>>16 & 0xff)) + \
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chr(int(x>>8 & 0xff)) + chr(int(x & 0xff)))
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sock.send(header + frag)
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def sendrecord(sock, record):
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sendfrag(sock, 1, record)
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def recvfrag(sock):
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header = sock.recv(4)
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if len(header) < 4:
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raise EOFError
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x = long(ord(header[0]))<<24 | ord(header[1])<<16 | \
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ord(header[2])<<8 | ord(header[3])
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last = ((x & 0x80000000) != 0)
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n = int(x & 0x7fffffff)
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frag = ''
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while n > 0:
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buf = sock.recv(n)
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if not buf: raise EOFError
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n = n - len(buf)
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frag = frag + buf
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return last, frag
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def recvrecord(sock):
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record = ''
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last = 0
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while not last:
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last, frag = recvfrag(sock)
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record = record + frag
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return record
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# Try to bind to a reserved port (must be root)
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last_resv_port_tried = None
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def bindresvport(sock, host):
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global last_resv_port_tried
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FIRST, LAST = 600, 1024 # Range of ports to try
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if last_resv_port_tried == None:
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import os
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last_resv_port_tried = FIRST + os.getpid() % (LAST-FIRST)
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for i in range(last_resv_port_tried, LAST) + \
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range(FIRST, last_resv_port_tried):
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last_resv_port_tried = i
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try:
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sock.bind((host, i))
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return last_resv_port_tried
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except socket.error, (errno, msg):
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if errno <> 114:
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raise socket.error, (errno, msg)
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raise RuntimeError, 'can\'t assign reserved port'
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# Client using TCP to a specific port
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class RawTCPClient(Client):
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def makesocket(self):
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self.sock = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
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def do_call(self):
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call = self.packer.get_buf()
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sendrecord(self.sock, call)
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reply = recvrecord(self.sock)
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u = self.unpacker
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u.reset(reply)
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xid, verf = u.unpack_replyheader()
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if xid <> self.lastxid:
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# Can't really happen since this is TCP...
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raise RuntimeError, 'wrong xid in reply ' + `xid` + \
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' instead of ' + `self.lastxid`
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# Client using UDP to a specific port
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class RawUDPClient(Client):
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def makesocket(self):
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self.sock = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
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def do_call(self):
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call = self.packer.get_buf()
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self.sock.send(call)
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try:
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from select import select
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except ImportError:
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print 'WARNING: select not found, RPC may hang'
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select = None
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BUFSIZE = 8192 # Max UDP buffer size
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timeout = 1
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count = 5
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while 1:
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r, w, x = [self.sock], [], []
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if select:
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r, w, x = select(r, w, x, timeout)
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if self.sock not in r:
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count = count - 1
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if count < 0: raise RuntimeError, 'timeout'
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if timeout < 25: timeout = timeout *2
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## print 'RESEND', timeout, count
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self.sock.send(call)
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continue
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reply = self.sock.recv(BUFSIZE)
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u = self.unpacker
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u.reset(reply)
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xid, verf = u.unpack_replyheader()
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if xid <> self.lastxid:
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## print 'BAD xid'
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continue
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break
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# Client using UDP broadcast to a specific port
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class RawBroadcastUDPClient(RawUDPClient):
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def __init__(self, bcastaddr, prog, vers, port):
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RawUDPClient.__init__(self, bcastaddr, prog, vers, port)
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self.reply_handler = None
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self.timeout = 30
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def connsocket(self):
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# Don't connect -- use sendto
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self.sock.setsockopt(socket.SOL_SOCKET, socket.SO_BROADCAST, 1)
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def set_reply_handler(self, reply_handler):
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self.reply_handler = reply_handler
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def set_timeout(self, timeout):
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self.timeout = timeout # Use None for infinite timeout
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def make_call(self, proc, args, pack_func, unpack_func):
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if pack_func is None and args is not None:
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raise TypeError, 'non-null args with null pack_func'
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self.start_call(proc)
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if pack_func:
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pack_func(args)
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call = self.packer.get_buf()
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self.sock.sendto(call, (self.host, self.port))
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try:
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from select import select
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except ImportError:
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print 'WARNING: select not found, broadcast will hang'
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select = None
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BUFSIZE = 8192 # Max UDP buffer size (for reply)
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replies = []
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if unpack_func is None:
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def dummy(): pass
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unpack_func = dummy
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while 1:
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r, w, x = [self.sock], [], []
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if select:
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if self.timeout is None:
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r, w, x = select(r, w, x)
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else:
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r, w, x = select(r, w, x, self.timeout)
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if self.sock not in r:
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break
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reply, fromaddr = self.sock.recvfrom(BUFSIZE)
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u = self.unpacker
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u.reset(reply)
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xid, verf = u.unpack_replyheader()
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if xid <> self.lastxid:
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## print 'BAD xid'
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continue
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reply = unpack_func()
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self.unpacker.done()
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replies.append((reply, fromaddr))
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if self.reply_handler:
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self.reply_handler(reply, fromaddr)
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return replies
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# Port mapper interface
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# Program number, version and (fixed!) port number
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PMAP_PROG = 100000
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PMAP_VERS = 2
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PMAP_PORT = 111
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# Procedure numbers
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PMAPPROC_NULL = 0 # (void) -> void
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PMAPPROC_SET = 1 # (mapping) -> bool
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PMAPPROC_UNSET = 2 # (mapping) -> bool
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PMAPPROC_GETPORT = 3 # (mapping) -> unsigned int
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PMAPPROC_DUMP = 4 # (void) -> pmaplist
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PMAPPROC_CALLIT = 5 # (call_args) -> call_result
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# A mapping is (prog, vers, prot, port) and prot is one of:
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IPPROTO_TCP = 6
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IPPROTO_UDP = 17
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# A pmaplist is a variable-length list of mappings, as follows:
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# either (1, mapping, pmaplist) or (0).
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# A call_args is (prog, vers, proc, args) where args is opaque;
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# a call_result is (port, res) where res is opaque.
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class PortMapperPacker(Packer):
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def pack_mapping(self, mapping):
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prog, vers, prot, port = mapping
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self.pack_uint(prog)
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self.pack_uint(vers)
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self.pack_uint(prot)
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self.pack_uint(port)
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def pack_pmaplist(self, list):
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self.pack_list(list, self.pack_mapping)
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def pack_call_args(self, ca):
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prog, vers, proc, args = ca
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self.pack_uint(prog)
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self.pack_uint(vers)
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self.pack_uint(proc)
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self.pack_opaque(args)
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class PortMapperUnpacker(Unpacker):
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def unpack_mapping(self):
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prog = self.unpack_uint()
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vers = self.unpack_uint()
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prot = self.unpack_uint()
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port = self.unpack_uint()
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return prog, vers, prot, port
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def unpack_pmaplist(self):
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return self.unpack_list(self.unpack_mapping)
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def unpack_call_result(self):
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port = self.unpack_uint()
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res = self.unpack_opaque()
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return port, res
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class PartialPortMapperClient:
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def addpackers(self):
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self.packer = PortMapperPacker()
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self.unpacker = PortMapperUnpacker('')
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def Set(self, mapping):
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return self.make_call(PMAPPROC_SET, mapping, \
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self.packer.pack_mapping, \
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self.unpacker.unpack_uint)
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def Unset(self, mapping):
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return self.make_call(PMAPPROC_UNSET, mapping, \
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self.packer.pack_mapping, \
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self.unpacker.unpack_uint)
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def Getport(self, mapping):
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return self.make_call(PMAPPROC_GETPORT, mapping, \
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self.packer.pack_mapping, \
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self.unpacker.unpack_uint)
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def Dump(self):
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return self.make_call(PMAPPROC_DUMP, None, \
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None, \
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self.unpacker.unpack_pmaplist)
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def Callit(self, ca):
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return self.make_call(PMAPPROC_CALLIT, ca, \
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self.packer.pack_call_args, \
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self.unpacker.unpack_call_result)
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class TCPPortMapperClient(PartialPortMapperClient, RawTCPClient):
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def __init__(self, host):
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RawTCPClient.__init__(self, \
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host, PMAP_PROG, PMAP_VERS, PMAP_PORT)
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class UDPPortMapperClient(PartialPortMapperClient, RawUDPClient):
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def __init__(self, host):
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RawUDPClient.__init__(self, \
|
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host, PMAP_PROG, PMAP_VERS, PMAP_PORT)
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class BroadcastUDPPortMapperClient(PartialPortMapperClient, \
|
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RawBroadcastUDPClient):
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def __init__(self, bcastaddr):
|
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RawBroadcastUDPClient.__init__(self, \
|
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bcastaddr, PMAP_PROG, PMAP_VERS, PMAP_PORT)
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# Generic clients that find their server through the Port mapper
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|
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class TCPClient(RawTCPClient):
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|
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def __init__(self, host, prog, vers):
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pmap = TCPPortMapperClient(host)
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port = pmap.Getport((prog, vers, IPPROTO_TCP, 0))
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pmap.close()
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if port == 0:
|
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raise RuntimeError, 'program not registered'
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RawTCPClient.__init__(self, host, prog, vers, port)
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class UDPClient(RawUDPClient):
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|
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def __init__(self, host, prog, vers):
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pmap = UDPPortMapperClient(host)
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port = pmap.Getport((prog, vers, IPPROTO_UDP, 0))
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pmap.close()
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if port == 0:
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raise RuntimeError, 'program not registered'
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RawUDPClient.__init__(self, host, prog, vers, port)
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class BroadcastUDPClient(Client):
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|
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def __init__(self, bcastaddr, prog, vers):
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self.pmap = BroadcastUDPPortMapperClient(bcastaddr)
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self.pmap.set_reply_handler(self.my_reply_handler)
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self.prog = prog
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self.vers = vers
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self.user_reply_handler = None
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self.addpackers()
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def close(self):
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self.pmap.close()
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def set_reply_handler(self, reply_handler):
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self.user_reply_handler = reply_handler
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def set_timeout(self, timeout):
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self.pmap.set_timeout(timeout)
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def my_reply_handler(self, reply, fromaddr):
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port, res = reply
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self.unpacker.reset(res)
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result = self.unpack_func()
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self.unpacker.done()
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self.replies.append((result, fromaddr))
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if self.user_reply_handler is not None:
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self.user_reply_handler(result, fromaddr)
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def make_call(self, proc, args, pack_func, unpack_func):
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self.packer.reset()
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if pack_func:
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pack_func(args)
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if unpack_func is None:
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def dummy(): pass
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self.unpack_func = dummy
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else:
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self.unpack_func = unpack_func
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self.replies = []
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packed_args = self.packer.get_buf()
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dummy_replies = self.pmap.Callit( \
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(self.prog, self.vers, proc, packed_args))
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return self.replies
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# Server classes
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# These are not symmetric to the Client classes
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# XXX No attempt is made to provide authorization hooks yet
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class Server:
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def __init__(self, host, prog, vers, port):
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self.host = host # Should normally be '' for default interface
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self.prog = prog
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self.vers = vers
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self.port = port # Should normally be 0 for random port
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self.makesocket() # Assigns to self.sock and self.prot
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self.bindsocket()
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self.host, self.port = self.sock.getsockname()
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self.addpackers()
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def register(self):
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mapping = self.prog, self.vers, self.prot, self.port
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p = TCPPortMapperClient(self.host)
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if not p.Set(mapping):
|
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raise RuntimeError, 'register failed'
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|
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def unregister(self):
|
|
mapping = self.prog, self.vers, self.prot, self.port
|
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p = TCPPortMapperClient(self.host)
|
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if not p.Unset(mapping):
|
|
raise RuntimeError, 'unregister failed'
|
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|
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def handle(self, call):
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|
# Don't use unpack_header but parse the header piecewise
|
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# XXX I have no idea if I am using the right error responses!
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self.unpacker.reset(call)
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self.packer.reset()
|
|
xid = self.unpacker.unpack_uint()
|
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self.packer.pack_uint(xid)
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temp = self.unpacker.unpack_enum()
|
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if temp <> CALL:
|
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return None # Not worthy of a reply
|
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self.packer.pack_uint(REPLY)
|
|
temp = self.unpacker.unpack_uint()
|
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if temp <> RPCVERSION:
|
|
self.packer.pack_uint(MSG_DENIED)
|
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self.packer.pack_uint(RPC_MISMATCH)
|
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self.packer.pack_uint(RPCVERSION)
|
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self.packer.pack_uint(RPCVERSION)
|
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return self.packer.get_buf()
|
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self.packer.pack_uint(MSG_ACCEPTED)
|
|
self.packer.pack_auth((AUTH_NULL, make_auth_null()))
|
|
prog = self.unpacker.unpack_uint()
|
|
if prog <> self.prog:
|
|
self.packer.pack_uint(PROG_UNAVAIL)
|
|
return self.packer.get_buf()
|
|
vers = self.unpacker.unpack_uint()
|
|
if vers <> self.vers:
|
|
self.packer.pack_uint(PROG_MISMATCH)
|
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self.packer.pack_uint(self.vers)
|
|
self.packer.pack_uint(self.vers)
|
|
return self.packer.get_buf()
|
|
proc = self.unpacker.unpack_uint()
|
|
methname = 'handle_' + `proc`
|
|
try:
|
|
meth = getattr(self, methname)
|
|
except AttributeError:
|
|
self.packer.pack_uint(PROC_UNAVAIL)
|
|
return self.packer.get_buf()
|
|
cred = self.unpacker.unpack_auth()
|
|
verf = self.unpacker.unpack_auth()
|
|
try:
|
|
meth() # Unpack args, call turn_around(), pack reply
|
|
except (EOFError, GarbageArgs):
|
|
# Too few or too many arguments
|
|
self.packer.reset()
|
|
self.packer.pack_uint(xid)
|
|
self.packer.pack_uint(REPLY)
|
|
self.packer.pack_uint(MSG_ACCEPTED)
|
|
self.packer.pack_auth((AUTH_NULL, make_auth_null()))
|
|
self.packer.pack_uint(GARBAGE_ARGS)
|
|
return self.packer.get_buf()
|
|
|
|
def turn_around(self):
|
|
try:
|
|
self.unpacker.done()
|
|
except RuntimeError:
|
|
raise GarbageArgs
|
|
self.packer.pack_uint(SUCCESS)
|
|
|
|
def handle_0(self): # Handle NULL message
|
|
self.turn_around()
|
|
|
|
def makesocket(self):
|
|
# This MUST be overridden
|
|
raise RuntimeError, 'makesocket not defined'
|
|
|
|
def bindsocket(self):
|
|
# Override this to bind to a different port (e.g. reserved)
|
|
self.sock.bind((self.host, self.port))
|
|
|
|
def addpackers(self):
|
|
# Override this to use derived classes from Packer/Unpacker
|
|
self.packer = Packer()
|
|
self.unpacker = Unpacker('')
|
|
|
|
|
|
class TCPServer(Server):
|
|
|
|
def makesocket(self):
|
|
self.sock = socket.socket(socket.AF_INET, socket.SOCK_STREAM)
|
|
self.prot = IPPROTO_TCP
|
|
|
|
def loop(self):
|
|
self.sock.listen(0)
|
|
while 1:
|
|
self.session(self.sock.accept())
|
|
|
|
def session(self, connection):
|
|
sock, (host, port) = connection
|
|
while 1:
|
|
try:
|
|
call = recvrecord(sock)
|
|
except EOFError:
|
|
break
|
|
except socket.error, msg:
|
|
print 'socket error:', msg
|
|
break
|
|
reply = self.handle(call)
|
|
if reply is not None:
|
|
sendrecord(sock, reply)
|
|
|
|
def forkingloop(self):
|
|
# Like loop but uses forksession()
|
|
self.sock.listen(0)
|
|
while 1:
|
|
self.forksession(self.sock.accept())
|
|
|
|
def forksession(self, connection):
|
|
# Like session but forks off a subprocess
|
|
import os
|
|
# Wait for deceased children
|
|
try:
|
|
while 1:
|
|
pid, sts = os.waitpid(0, 1)
|
|
except os.error:
|
|
pass
|
|
pid = None
|
|
try:
|
|
pid = os.fork()
|
|
if pid: # Parent
|
|
connection[0].close()
|
|
return
|
|
# Child
|
|
self.session(connection)
|
|
finally:
|
|
# Make sure we don't fall through in the parent
|
|
if pid == 0:
|
|
os._exit(0)
|
|
|
|
|
|
class UDPServer(Server):
|
|
|
|
def makesocket(self):
|
|
self.sock = socket.socket(socket.AF_INET, socket.SOCK_DGRAM)
|
|
self.prot = IPPROTO_UDP
|
|
|
|
def loop(self):
|
|
while 1:
|
|
self.session()
|
|
|
|
def session(self):
|
|
call, host_port = self.sock.recvfrom(8192)
|
|
reply = self.handle(call)
|
|
if reply <> None:
|
|
self.sock.sendto(reply, host_port)
|
|
|
|
|
|
# Simple test program -- dump local portmapper status
|
|
|
|
def test():
|
|
pmap = UDPPortMapperClient('')
|
|
list = pmap.Dump()
|
|
list.sort()
|
|
for prog, vers, prot, port in list:
|
|
print prog, vers,
|
|
if prot == IPPROTO_TCP: print 'tcp',
|
|
elif prot == IPPROTO_UDP: print 'udp',
|
|
else: print prot,
|
|
print port
|
|
|
|
|
|
# Test program for broadcast operation -- dump everybody's portmapper status
|
|
|
|
def testbcast():
|
|
import sys
|
|
if sys.argv[1:]:
|
|
bcastaddr = sys.argv[1]
|
|
else:
|
|
bcastaddr = '<broadcast>'
|
|
def rh(reply, fromaddr):
|
|
host, port = fromaddr
|
|
print host + '\t' + `reply`
|
|
pmap = BroadcastUDPPortMapperClient(bcastaddr)
|
|
pmap.set_reply_handler(rh)
|
|
pmap.set_timeout(5)
|
|
replies = pmap.Getport((100002, 1, IPPROTO_UDP, 0))
|
|
|
|
|
|
# Test program for server, with corresponding client
|
|
# On machine A: python -c 'import rpc; rpc.testsvr()'
|
|
# On machine B: python -c 'import rpc; rpc.testclt()' A
|
|
# (A may be == B)
|
|
|
|
def testsvr():
|
|
# Simple test class -- proc 1 doubles its string argument as reply
|
|
class S(UDPServer):
|
|
def handle_1(self):
|
|
arg = self.unpacker.unpack_string()
|
|
self.turn_around()
|
|
print 'RPC function 1 called, arg', `arg`
|
|
self.packer.pack_string(arg + arg)
|
|
#
|
|
s = S('', 0x20000000, 1, 0)
|
|
try:
|
|
s.unregister()
|
|
except RuntimeError, msg:
|
|
print 'RuntimeError:', msg, '(ignored)'
|
|
s.register()
|
|
print 'Service started...'
|
|
try:
|
|
s.loop()
|
|
finally:
|
|
s.unregister()
|
|
print 'Service interrupted.'
|
|
|
|
|
|
def testclt():
|
|
import sys
|
|
if sys.argv[1:]: host = sys.argv[1]
|
|
else: host = ''
|
|
# Client for above server
|
|
class C(UDPClient):
|
|
def call_1(self, arg):
|
|
return self.make_call(1, arg, \
|
|
self.packer.pack_string, \
|
|
self.unpacker.unpack_string)
|
|
c = C(host, 0x20000000, 1)
|
|
print 'making call...'
|
|
reply = c.call_1('hello, world, ')
|
|
print 'call returned', `reply`
|