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#!/usr/bin/env python
importBaseHTTPServer
importarray
importbase64
importcStringIO
importgetopt
importhttplib
importos
importos.path
importre
importselect
importsocket
importstruct
importsubprocess
importsys
importthreading
importtime
importtraceback
importurllib
importxml.sax.saxutils
try:
fromhashlibimportsha1
exceptImportError:
# Python 2.4 uses this name.
fromshaimportshaassha1
try:
importnumpy
exceptImportError:
numpy=None
# Default local port in managed mode (choose one arbitrarily).
DEFAULT_LOCAL_PORT_MANAGED=0
# Default local port in external mode.
DEFAULT_LOCAL_PORT_EXTERNAL=9001
DEFAULT_REMOTE_PORT=9000
DEFAULT_REGISTER_METHODS= ["email", "http"]
# We will re-register if we have fewer than this many waiting proxies. The
# facilitator may choose to ignore our requests.
DESIRED_NUMBER_OF_PROXIES=3
LOG_DATE_FORMAT="%Y-%m-%d %H:%M:%S"
classoptions(object):
local_addrs= []
remote_addrs= []
register_addr=None
facilitator_url=None
managed=True
log_filename=None
log_file=sys.stdout
daemonize=False
register=False
register_commands= []
pid_filename=None
safe_logging=True
address_family=socket.AF_UNSPEC
# We accept up to this many bytes from a socket not yet matched with a partner
# before disconnecting it.
UNCONNECTED_BUFFER_LIMIT=10240
defusage(f=sys.stdout):
print>>f, """\
Usage: %(progname)s --register [LOCAL][:PORT] [REMOTE][:PORT]
Wait for connections on a local and a remote port. When any pair of connections
exists, data is ferried between them until one side is closed. By default
LOCAL is localhost addresses on port %(local_port)d and REMOTE is all addresses
on port %(remote_port)d.
The local connection acts as a SOCKS4a proxy, but the host and port in the SOCKS
request are ignored and the local connection is always linked to a remote
connection.
By default, runs as a managed proxy: informs a parent Tor project of support for
the "websocket" pluggable transport. In managed mode, the LOCAL port is chosen
arbitrarily instead of defaulting to %(local_port)d; however this can be
overridden by including a LOCAL port in the command. This is the way the
program should be invoked in a torrc ClientTransportPlugin "exec" line.
Use the --external option to run as an external proxy that does not
interact with Tor.
If any of the --register, --register-addr, or --register-methods options are
used, then your IP address will be sent to the facilitator so that proxies can
connect to you. You need to register in some way in order to get any service.
The --facilitator option allows controlling which facilitator is used; if
omitted, it uses a public default.
-4 registration helpers use IPv4.
-6 registration helpers use IPv6.
--daemon daemonize (Unix only).
--external be an external proxy (don't interact with Tor using
environment variables and stdout).
-f, --facilitator=URL advertise willingness to receive connections to URL.
-h, --help show this help.
-l, --log FILENAME write log to FILENAME (default stdout).
--pidfile FILENAME write PID to FILENAME after daemonizing.
-r, --register register with the facilitator.
--register-addr=ADDR register the given address (in case it differs from
REMOTE). Implies --register.
--register-methods=METHOD[,METHOD...]
register using the given comma-separated list of
methods. Implies --register. Possible methods are
email http
Default is "%(reg_methods)s".
--unsafe-logging don't scrub IP addresses from logs.\
"""% {
"progname": sys.argv[0],
"local_port": DEFAULT_LOCAL_PORT_EXTERNAL,
"remote_port": DEFAULT_REMOTE_PORT,
"reg_methods": ",".join(DEFAULT_REGISTER_METHODS),
}
defsafe_str(s):
"""Return s if options.safe_logging is true, and "[scrubbed]" otherwise."""
ifoptions.safe_logging:
return"[scrubbed]"
else:
returns
log_lock=threading.Lock()
deflog(msg):
log_lock.acquire()
try:
print>>options.log_file, (u"%s %s"% (time.strftime(LOG_DATE_FORMAT), msg)).encode("UTF-8")
options.log_file.flush()
finally:
log_lock.release()
defparse_addr_spec(spec, defhost=None, defport=None):
host=None
port=None
af=0
m=None
# IPv6 syntax.
ifnotm:
m=re.match(ur'^\[(.+)\]:(\d*)$', spec)
ifm:
host, port=m.groups()
af=socket.AF_INET6
ifnotm:
m=re.match(ur'^\[(.+)\]$', spec)
ifm:
host, =m.groups()
af=socket.AF_INET6
# IPv4/hostname/port-only syntax.
ifnotm:
try:
host, port=spec.split(":", 1)
exceptValueError:
host=spec
ifre.match(ur'^[\d.]+$', host):
af=socket.AF_INET
else:
af=0
host=hostordefhost
port=portordefport
ifportisnotNone:
port=int(port)
returnhost, port
defformat_addr(addr):
host, port=addr
ifnothost:
returnu":%d"%port
# Numeric IPv6 address?
try:
addrs=socket.getaddrinfo(host, port, 0, socket.SOCK_STREAM, socket.IPPROTO_TCP, socket.AI_NUMERICHOST)
af=addrs[0][0]
exceptsocket.gaierror, e:
af=0
ifaf==socket.AF_INET6:
result=u"[%s]"%host
else:
result="%s"%host
ifportisnotNone:
result+=u":%d"%port
returnresult
defsafe_format_addr(addr):
returnsafe_str(format_addr(addr))
defformat_sockaddr(sockaddr):
host, port=socket.getnameinfo(sockaddr, socket.NI_NUMERICHOST|socket.NI_NUMERICSERV)
port=int(port)
returnformat_addr((host, port))
defsafe_format_sockaddr(sockaddr):
returnsafe_str(format_sockaddr(sockaddr))
defsafe_format_peername(s):
try:
returnsafe_format_sockaddr(s.getpeername())
exceptsocket.error, e:
return"<unconnected>"
defapply_mask_numpy(payload, mask_key):
iflen(payload) ==0:
return""
payload_a=numpy.frombuffer(payload, dtype="|u4", count=len(payload)//4)
m, =numpy.frombuffer(mask_key, dtype="|u4", count=1)
result=numpy.bitwise_xor(payload_a, m).tostring()
i=len(payload) //4*4
ifi<len(payload):
remainder= []
whilei<len(payload):
remainder.append(chr(ord(payload[i]) ^ord(mask_key[i%4])))
i+=1
result=result+"".join(remainder)
returnresult
defapply_mask_py(payload, mask_key):
result=array.array("B", payload)
m=array.array("B", mask_key)
i=0
whilei<len(result) -7:
result[i] ^=m[0]
result[i+1] ^=m[1]
result[i+2] ^=m[2]
result[i+3] ^=m[3]
result[i+4] ^=m[0]
result[i+5] ^=m[1]
result[i+6] ^=m[2]
result[i+7] ^=m[3]
i+=8
whilei<len(result):
result[i] ^=m[i%4]
i+=1
returnresult.tostring()
ifnumpyisnotNone:
apply_mask=apply_mask_numpy
else:
apply_mask=apply_mask_py
classWebSocketFrame(object):
def__init__(self):
self.fin=False
self.opcode=None
self.payload=None
defis_control(self):
return (self.opcode&0x08) !=0
classWebSocketMessage(object):
def__init__(self):
self.opcode=None
self.payload=None
defis_control(self):
return (self.opcode&0x08) !=0
classWebSocketDecoder(object):
"""RFC 6455 section 5 is about the WebSocket framing format."""
# Raise an exception rather than buffer anything larger than this.
MAX_MESSAGE_LENGTH=1024*1024
classMaskingError(ValueError):
pass
def__init__(self, use_mask=False):
"""use_mask should be True for server-to-client sockets, and False for
client-to-server sockets."""
self.use_mask=use_mask
# Per-frame state.
self.buf=""
# Per-message state.
self.message_buf=""
self.message_opcode=None
deffeed(self, data):
self.buf+=data
defread_frame(self):
"""Read a frame from the internal buffer, if one is available. Returns a
WebSocketFrame object, or None if there are no complete frames to
read."""
# RFC 6255 section 5.2.
iflen(self.buf) <2:
returnNone
offset=0
b0, b1=struct.unpack_from(">BB", self.buf, offset)
offset+=2
fin= (b0&0x80) !=0
opcode=b0&0x0f
frame_masked= (b1&0x80) !=0
payload_len=b1&0x7f
ifpayload_len==126:
iflen(self.buf) <offset+2:
returnNone
payload_len, =struct.unpack_from(">H", self.buf, offset)
offset+=2
elifpayload_len==127:
iflen(self.buf) <offset+8:
returnNone
payload_len, =struct.unpack_from(">Q", self.buf, offset)
offset+=8
ifframe_masked:
ifnotself.use_mask:
# "A client MUST close a connection if it detects a masked
# frame."
raiseself.MaskingError("Got masked payload from server")
iflen(self.buf) <offset+4:
returnNone
mask_key=self.buf[offset:offset+4]
offset+=4
else:
ifself.use_mask:
# "The server MUST close the connection upon receiving a frame
# that is not masked."
raiseself.MaskingError("Got unmasked payload from client")
mask_key=None
ifpayload_len>self.MAX_MESSAGE_LENGTH:
raiseValueError("Refusing to buffer payload of %d bytes"%payload_len)
iflen(self.buf) <offset+payload_len:
returnNone
ifmask_key:
payload=apply_mask(self.buf[offset:offset+payload_len], mask_key)
else:
payload=self.buf[offset:offset+payload_len]
self.buf=self.buf[offset+payload_len:]
frame=WebSocketFrame()
frame.fin=fin
frame.opcode=opcode
frame.payload=payload
returnframe
defread_message(self):
"""Read a complete message. If the opcode is 1, the payload is decoded
from a UTF-8 binary string to a unicode string. If a control frame is
read while another fragmented message is in progress, the control frame
is returned as a new message immediately. Returns None if there is no
complete frame to be read."""
# RFC 6455 section 5.4 is about fragmentation.
whileTrue:
frame=self.read_frame()
ifframeisNone:
returnNone
# "Control frames (see Section 5.5) MAY be injected in the middle of
# a fragmented message. Control frames themselves MUST NOT be
# fragmented."
ifframe.is_control():
ifnotframe.fin:
raiseValueError("Control frame (opcode %d) has FIN bit clear"%frame.opcode)
message=WebSocketMessage()
message.opcode=frame.opcode
message.payload=frame.payload
returnmessage
ifself.message_opcodeisNone:
ifframe.opcode==0:
raiseValueError("First frame has opcode 0")
self.message_opcode=frame.opcode
else:
ifframe.opcode!=0:
raiseValueError("Non-first frame has nonzero opcode %d"%frame.opcode)
iflen(self.message_buf) +len(frame.payload) >self.MAX_MESSAGE_LENGTH:
raiseValueError("Refusing to buffer payload of %d bytes"% (len(self.message_buf) +len(frame.payload)))
self.message_buf+=frame.payload
ifframe.fin:
break
message=WebSocketMessage()
message.opcode=self.message_opcode
message.payload=self.message_buf
self.postprocess_message(message)
self.message_opcode=None
self.message_buf=""
returnmessage
defpostprocess_message(self, message):
ifmessage.opcode==1:
message.payload=message.payload.decode("utf-8")
returnmessage
classWebSocketEncoder(object):
def__init__(self, use_mask=False):
self.use_mask=use_mask
defencode_frame(self, opcode, payload):
ifopcode>=16:
raiseValueError("Opcode of %d is >= 16"%opcode)
length=len(payload)
ifself.use_mask:
mask_key=os.urandom(4)
payload=apply_mask(payload, mask_key)
mask_bit=0x80
else:
mask_key=""
mask_bit=0x00
iflength<126:
len_b, len_ext=length, ""
eliflength<0x10000:
len_b, len_ext=126, struct.pack(">H", length)
eliflength<0x10000000000000000:
len_b, len_ext=127, struct.pack(">Q", length)
else:
raiseValueError("payload length of %d is too long"%length)
returnchr(0x80|opcode) +chr(mask_bit|len_b) +len_ext+mask_key+payload
defencode_message(self, opcode, payload):
ifopcode==1:
payload=payload.encode("utf-8")
returnself.encode_frame(opcode, payload)
# WebSocket implementations generally support text (opcode 1) messages, which
# are UTF-8-encoded text. Not all support binary (opcode 2) messages. During the
# WebSocket handshake, we use the "base64" value of the Sec-WebSocket-Protocol
# header field to indicate that text frames should encoded UTF-8-encoded
# base64-encoded binary data. Binary messages are always interpreted verbatim,
# but text messages are rejected if "base64" was not negotiated.
#
# The idea here is that browsers that know they don't support binary messages
# can negotiate "base64" with both endpoints and still reliably transport binary
# data. Those that know they can support binary messages can just use binary
# messages in the straightforward way.
classWebSocketBinaryDecoder(object):
def__init__(self, protocols, use_mask=False):
self.dec=WebSocketDecoder(use_mask)
self.base64="base64"inprotocols
deffeed(self, data):
self.dec.feed(data)
defread(self):
"""Returns None when there are currently no data to be read. Returns ""
when a close message is received."""
whileTrue:
message=self.dec.read_message()
ifmessageisNone:
returnNone
elifmessage.opcode==1:
ifnotself.base64:
raiseValueError("Received text message on decoder incapable of base64")
payload=base64.b64decode(message.payload)
ifpayload:
returnpayload
elifmessage.opcode==2:
ifmessage.payload:
returnmessage.payload
elifmessage.opcode==8:
return""
# Ignore all other opcodes.
returnNone
classWebSocketBinaryEncoder(object):
def__init__(self, protocols, use_mask=False):
self.enc=WebSocketEncoder(use_mask)
self.base64="base64"inprotocols
defencode(self, data):
ifself.base64:
returnself.enc.encode_message(1, base64.b64encode(data))
else:
returnself.enc.encode_message(2, data)
deflisten_socket(addr):
"""Return a socket listening on the given address."""
addrinfo=socket.getaddrinfo(addr[0], addr[1], 0, socket.SOCK_STREAM, socket.IPPROTO_TCP)[0]
s=socket.socket(addrinfo[0], addrinfo[1], addrinfo[2])
s.setsockopt(socket.SOL_SOCKET, socket.SO_REUSEADDR, 1)
ifaddrinfo[0] ==socket.AF_INET6andsocket.has_ipv6:
# Set the IPV6_V6ONLY socket option, otherwise some operating systems
# will listen on an IPv4 address as well as IPv6 by default. For
# example, "::" will listen on both "::" and "0.0.0.0", and "::1" will
# listen on both "::1" and "127.0.0.1". See
# https://trac.torproject.org/projects/tor/ticket/4760.
try:
s.setsockopt(socket.IPPROTO_IPV6, socket.IPV6_V6ONLY, 1)
exceptAttributeError:
# Python 2.7.3 on Windows does not define IPPROTO_IPV6; see
# http://bugs.python.org/issue6926. IPV6_V6ONLY is the default
# behavior on Windows anyway, so we can skip the setsockopt.
pass
s.bind(addr)
s.listen(10)
returns
# How long to wait for a WebSocket request on the remote socket. It is limited
# to avoid Slowloris-like attacks.
WEBSOCKET_REQUEST_TIMEOUT=2.0
# This subclass of BaseHTTPRequestHandler is essentially a means of parsing an
# HTTP request.
classWebSocketRequestHandler(BaseHTTPServer.BaseHTTPRequestHandler):
def__init__(self, request_text, fd):
self.rfile=cStringIO.StringIO(request_text)
self.wfile=fd.makefile()
self.error=False
self.raw_requestline=self.rfile.readline()
self.parse_request()
deflog_message(self, *args):
pass
defsend_error(self, code, message=None):
BaseHTTPServer.BaseHTTPRequestHandler.send_error(self, code, message)
self.error=True
MAGIC_GUID="258EAFA5-E914-47DA-95CA-C5AB0DC85B11"
defhandle_websocket_request(fd):
try:
request_text=fd.recv(10*1024)
exceptsocket.error, e:
log(u"Socket error while receiving WebSocket request: %s"%repr(str(e)))
returnNone
handler=WebSocketRequestHandler(request_text, fd)
ifhandler.errorornothasattr(handler, "path"):
returnNone
method=handler.command
path=handler.path
headers=handler.headers
# See RFC 6455 section 4.2.1 for this sequence of checks.
#
# 1. An HTTP/1.1 or higher GET request, including a "Request-URI"...
ifmethod!="GET":
handler.send_error(405)
returnNone
ifpath!="/":
handler.send_error(404)
returnNone
# 2. A |Host| header field containing the server's authority.
# We deliberately skip this test.
# 3. An |Upgrade| header field containing the value "websocket", treated as
# an ASCII case-insensitive value.
upgrade=headers.get("upgrade")
ifupgradeisNone:
handler.send_error(400)
returnNone
if"websocket"notin [x.strip().lower() forxinupgrade.split(",")]:
handler.send_error(400)
returnNone
# 4. A |Connection| header field that includes the token "Upgrade", treated
# as an ASCII case-insensitive value.
connection=headers.get("connection")
ifconnectionisNone:
handler.send_error(400)
returnNone
if"upgrade"notin [x.strip().lower() forxinconnection.split(",")]:
handler.send_error(400)
returnNone
# 5. A |Sec-WebSocket-Key| header field with a base64-encoded value that,
# when decoded, is 16 bytes in length.
try:
key=headers.get("sec-websocket-key")
iflen(base64.b64decode(key)) !=16:
raiseTypeError("Sec-WebSocket-Key must be 16 bytes")
exceptTypeError:
handler.send_error(400)
returnNone
# 6. A |Sec-WebSocket-Version| header field, with a value of 13. We also
# allow 8 from draft-ietf-hybi-thewebsocketprotocol-10.
version=headers.get("sec-websocket-version")
KNOWN_VERSIONS= ["8", "13"]
ifversionnotinKNOWN_VERSIONS:
# "If this version does not match a version understood by the server,
# the server MUST abort the WebSocket handshake described in this
# section and instead send an appropriate HTTP error code (such as 426
# Upgrade Required) and a |Sec-WebSocket-Version| header field
# indicating the version(s) the server is capable of understanding."
handler.send_response(426)
handler.send_header("Sec-WebSocket-Version", ", ".join(KNOWN_VERSIONS))
handler.end_headers()
returnNone
# 7. Optionally, an |Origin| header field.
# 8. Optionally, a |Sec-WebSocket-Protocol| header field, with a list of
# values indicating which protocols the client would like to speak, ordered
# by preference.
protocols_str=headers.get("sec-websocket-protocol")
ifprotocols_strisNone:
protocols= []
else:
protocols= [x.strip().lower() forxinprotocols_str.split(",")]
# 9. Optionally, a |Sec-WebSocket-Extensions| header field...
# 10. Optionally, other header fields...
# See RFC 6455 section 4.2.2, item 5 for these steps.
# 1. A Status-Line with a 101 response code as per RFC 2616.
handler.send_response(101)
# 2. An |Upgrade| header field with value "websocket" as per RFC 2616.
handler.send_header("Upgrade", "websocket")
# 3. A |Connection| header field with value "Upgrade".
handler.send_header("Connection", "Upgrade")
# 4. A |Sec-WebSocket-Accept| header field. The value of this header field
# is constructed by concatenating /key/, defined above in step 4 in Section
# 4.2.2, with the string "258EAFA5-E914-47DA-95CA-C5AB0DC85B11", taking the
# SHA-1 hash of this concatenated value to obtain a 20-byte value and
# base64-encoding (see Section 4 of [RFC4648]) this 20-byte hash.
accept_key=base64.b64encode(sha1(key+MAGIC_GUID).digest())
handler.send_header("Sec-WebSocket-Accept", accept_key)
# 5. Optionally, a |Sec-WebSocket-Protocol| header field, with a value
# /subprotocol/ as defined in step 4 in Section 4.2.2.
if"base64"inprotocols:
handler.send_header("Sec-WebSocket-Protocol", "base64")
# 6. Optionally, a |Sec-WebSocket-Extensions| header field...
handler.end_headers()
returnprotocols
defgrab_string(s, pos):
"""Grab a NUL-terminated string from the given string, starting at the given
offset. Return (pos, str) tuple, or (pos, None) on error."""
i=pos
whilei<len(s):
ifs[i] =='\0':
return (i+1, s[pos:i])
i+=1
returnpos, None
# http://ftp.icm.edu.pl/packages/socks/socks4/SOCKS4.protocol
# https://en.wikipedia.org/wiki/SOCKS#SOCKS4a
defparse_socks_request(data):
"""Parse the 8-byte SOCKS header at the beginning of data. Returns a
(dest, port) tuple. Raises ValueError on error."""
try:
ver, cmd, dport, o1, o2, o3, o4=struct.unpack(">BBHBBBB", data[:8])
exceptstruct.error:
raiseValueError("Couldn't unpack SOCKS4 header")
ifver!=4:
raiseValueError("Wrong SOCKS version (%d)"%ver)
ifcmd!=1:
raiseValueError("Wrong SOCKS command (%d)"%cmd)
pos, userid=grab_string(data, 8)
ifuseridisNone:
raiseValueError("Couldn't read userid")
ifo1==0ando2==0ando3==0ando4!=0:
pos, dest=grab_string(data, pos)
ifdestisNone:
raiseValueError("Couldn't read destination")
else:
dest="%d.%d.%d.%d"% (o1, o2, o3, o4)
returndest, dport
defhandle_socks_request(fd):
try:
addr=fd.getpeername()
data=fd.recv(100)
exceptsocket.error, e:
log(u"Socket error from SOCKS-pending: %s"%repr(str(e)))
returnFalse
try:
dest_addr=parse_socks_request(data)
exceptValueError, e:
log(u"Error parsing SOCKS request: %s."%str(e))
# Error reply.
fd.sendall(struct.pack(">BBHBBBB", 0, 91, 0, 0, 0, 0, 0))
returnFalse
log(u"Got SOCKS request for %s."%safe_format_addr(dest_addr))
fd.sendall(struct.pack(">BBHBBBB", 0, 90, dest_addr[1], 127, 0, 0, 1))
# Note we throw away the requested address and port.
returnTrue
defreport_pending():
log(u"locals (%d): %s"% (len(locals), [safe_format_peername(x) forxinlocals]))
log(u"remotes (%d): %s"% (len(remotes), [safe_format_peername(x) forxinremotes]))
register_condvar=threading.Condition()
defregister():
ifnotoptions.register:
return
register_condvar.acquire()
register_condvar.notify()
register_condvar.release()
defregister_using_command(command):
basename=os.path.basename(command[0])
try:
log(u"Running command: %s"%" ".join(command))
p=subprocess.Popen(command, stdout=subprocess.PIPE, stderr=subprocess.PIPE)
stdout, stderr=p.communicate()
exceptOSError, e:
log(u"Error running %s: %s"% (basename, str(e)))
returnFalse
forlineinstdout.splitlines():
log(u"%s: %s"% (basename, line))
forlineinstderr.splitlines():
log(u"%s: %s"% (basename, line))
ifp.returncode!=0:
log("%s exited with status %d."% (basename, p.returncode))
returnFalse
returnTrue
defregister_one():
spec=format_addr(options.register_addr)
log(u"Trying to register \"%s\"."%spec)
forcommandinoptions.register_commands:
ifregister_using_command(command+ [spec]):
break
else:
log(u"All registration commands failed.")
defregistration_thread_func():
whileTrue:
register_condvar.acquire()
register_condvar.wait()
register_condvar.release()
iflen(unlinked_remotes) <DESIRED_NUMBER_OF_PROXIES:
register_one()
defproxy_chunk_local_to_remote(local, remote, data=None):
ifdataisNone:
try:
data=local.recv(65536)
exceptsocket.error, e: # Can be "Connection reset by peer".
log(u"Socket error from local: %s"%repr(str(e)))
remote.close()
returnFalse
ifnotdata:
log(u"EOF from local %s."%safe_format_peername(local))
local.close()
remote.close()
returnFalse
else:
try:
remote.send_chunk(data)
exceptsocket.error, e:
log(u"Socket error writing to remote: %s"%repr(str(e)))
local.close()
returnFalse
returnTrue
defproxy_chunk_remote_to_local(remote, local, data=None):
ifdataisNone:
try:
data=remote.recv(65536)
exceptsocket.error, e: # Can be "Connection reset by peer".
log(u"Socket error from remote: %s"%repr(str(e)))
local.close()
returnFalse
ifnotdata:
log(u"EOF from remote %s."%safe_format_peername(remote))
remote.close()
local.close()
returnFalse
else:
remote.dec.feed(data)
whileTrue:
try:
data=remote.dec.read()
except (WebSocketDecoder.MaskingError, ValueError), e:
log(u"WebSocket decode error from remote: %s"%repr(str(e)))
remote.close()
local.close()
returnFalse
ifdataisNone:
break
elifnotdata:
log(u"WebSocket close from remote %s."%safe_format_peername(remote))
remote.close()
local.close()
returnFalse
try:
local.send_chunk(data)
exceptsocket.error, e:
log(u"Socket error writing to local: %s"%repr(str(e)))
remote.close()
returnFalse
returnTrue
defreceive_unlinked(fd, label):
"""Receive and buffer data on a socket that has not been linked yet. Returns
True iff there was no error and the socket may still be used; otherwise, the
socket will be closed before returning."""
try:
data=fd.recv(1024)
exceptsocket.error, e:
log(u"Socket error from %s: %s"% (label, repr(str(e))))
fd.close()
returnFalse
ifnotdata:
log(u"EOF from unlinked %s %s with %d bytes buffered."% (label, safe_format_peername(fd), len(fd.buf)))
fd.close()
returnFalse
else:
log(u"Data from unlinked %s %s (%d bytes)."% (label, safe_format_peername(fd), len(data)))
fd.buf+=data
iflen(fd.buf) >=UNCONNECTED_BUFFER_LIMIT:
log(u"Refusing to buffer more than %d bytes from %s %s."% (UNCONNECTED_BUFFER_LIMIT, label, safe_format_peername(fd)))
fd.close()
returnFalse
returnTrue
defmatch_proxies():
whileunlinked_remotesandunlinked_locals:
remote=unlinked_remotes.pop(0)
local=unlinked_locals.pop(0)
log(u"Linking %s and %s."% (safe_format_peername(local), safe_format_peername(remote)))
remote.partner=local
local.partner=remote
ifremote.buf:
ifnotproxy_chunk_remote_to_local(remote, local, remote.buf):
remotes.remove(remote)
locals.remove(local)
register()
return
iflocal.buf:
ifnotproxy_chunk_local_to_remote(local, remote, local.buf):
remotes.remove(remote)
locals.remove(local)
return
classTimeoutSocket(object):
def__init__(self, fd):
self.fd=fd
self.birthday=time.time()
defage(self):
returntime.time() -self.birthday
def__getattr__(self, name):
returngetattr(self.fd, name)
classRemoteSocket(object):
def__init__(self, fd, protocols):
self.fd=fd
self.buf=""
self.partner=None
self.dec=WebSocketBinaryDecoder(protocols, use_mask=True)
self.enc=WebSocketBinaryEncoder(protocols, use_mask=False)
defsend_chunk(self, data):
self.sendall(self.enc.encode(data))
def__getattr__(self, name):
returngetattr(self.fd, name)
classLocalSocket(object):
def__init__(self, fd):
self.fd=fd
self.buf=""
self.partner=None
defsend_chunk(self, data):
self.sendall(data)
def__getattr__(self, name):
returngetattr(self.fd, name)
defproxy_loop():
whileTrue:
rset=remote_listen+local_listen+websocket_pending+socks_pending+locals+remotes
rset, _, _=select.select(rset, [], [], WEBSOCKET_REQUEST_TIMEOUT)
forfdinrset:
iffdinremote_listen:
remote_c, addr=fd.accept()
log(u"Remote connection from %s."%safe_format_sockaddr(addr))
websocket_pending.append(TimeoutSocket(remote_c))
eliffdinlocal_listen:
local_c, addr=fd.accept()
log(u"Local connection from %s."%safe_format_sockaddr(addr))
socks_pending.append(local_c)
register()
eliffdinwebsocket_pending:
log(u"Data from WebSocket-pending %s."%safe_format_peername(fd))
protocols=handle_websocket_request(fd)
ifprotocolsisnotNone:
wrapped=RemoteSocket(fd, protocols)
remotes.append(wrapped)
unlinked_remotes.append(wrapped)
else:
fd.close()
register()
websocket_pending.remove(fd)
report_pending()
eliffdinsocks_pending:
log(u"SOCKS request from %s."%safe_format_peername(fd))
ifhandle_socks_request(fd):
wrapped=LocalSocket(fd)
locals.append(wrapped)
unlinked_locals.append(wrapped)
else:
fd.close()
socks_pending.remove(fd)
report_pending()
eliffdinremotes:
local=fd.partner
iflocal:
ifnotproxy_chunk_remote_to_local(fd, local):
remotes.remove(fd)
locals.remove(local)
register()
else:
ifnotreceive_unlinked(fd, "remote"):
remotes.remove(fd)
unlinked_remotes.remove(fd)
register()
report_pending()
eliffdinlocals:
remote=fd.partner
ifremote:
ifnotproxy_chunk_local_to_remote(fd, remote):
remotes.remove(remote)
locals.remove(fd)
else:
ifnotreceive_unlinked(fd, "local"):
locals.remove(fd)
unlinked_locals.remove(fd)
report_pending()
match_proxies()
whilewebsocket_pending:
pending=websocket_pending[0]
ifpending.age() <WEBSOCKET_REQUEST_TIMEOUT:
break
log(u"Expired remote connection from %s."%safe_format_peername(pending))
pending.close()
websocket_pending.pop(0)
report_pending()
defbuild_register_command(method):
# sys.path[0] is initialized to the directory containing the Python script file.
script_dir=sys.path[0]
ifnotscript_dir:
# Maybe the script was read from stdin; in any case don't guess at the directory.
raiseValueError("Can't find executable directory for registration helpers")
af= []
ifoptions.address_family==socket.AF_INET:
af= ["-4"]
elifoptions.address_family==socket.AF_INET6:
af= ["-6"]
ifmethod=="email":
command= [os.path.join(script_dir, "flashproxy-reg-email")] +af
returncommand
elifmethod=="http":
command= [os.path.join(script_dir, "flashproxy-reg-http")] +af
ifoptions.facilitator_urlisnotNone:
command+= ["-f", options.facilitator_url]
returncommand
else:
raiseValueError("Unknown registration method \"%s\""%method)
defpt_escape(s):
result= []
forcins:
ifc=="\n":
result.append("\\n")
elifc=="\\":
result.append("\\\\")
elif0<ord(c) <128:
result.append(c)
else:
result.append("\\x%02x"%ord(c))
return"".join(result)
defpt_line(keyword, *args):
log(keyword+" "+" ".join(pt_escape(x) forxinargs))
printkeyword, " ".join(pt_escape(x) forxinargs)
sys.stdout.flush()
defpt_enverror(msg):
pt_line("ENV-ERROR", msg)
sys.exit(1)
defpt_smethoderror(msg):
pt_line("SMETHOD-ERROR", msg)
sys.exit(1)
defpt_get_client_transports(known):
result= []
ifos.environ.get("TOR_PT_CLIENT_TRANSPORTS") =="*":
returnknown
formethodinos.environ.get("TOR_PT_CLIENT_TRANSPORTS", "").split(","):
ifmethodinknown:
result.append(method)
returnresult
defpt_setup_managed():