python-netfilterqueue/netfilterqueue.pyx

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"""
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Bind to a Linux netfilter queue. Send packets to a user-specified callback
function.
Copyright: (c) 2011, Kerkhoff Technologies Inc.
License: MIT; see LICENSE.txt
"""
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VERSION = (0, 9, 0)
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# Constants for module users
COPY_NONE = 0
COPY_META = 1
COPY_PACKET = 2
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# Packet copying defaults
DEF DEFAULT_MAX_QUEUELEN = 1024
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DEF MaxPacketSize = 0xFFFF
DEF BufferSize = 4096
DEF MetadataSize = 80
DEF MaxCopySize = BufferSize - MetadataSize
# Experimentally determined overhead
DEF SockOverhead = 760+20
DEF SockCopySize = MaxCopySize + SockOverhead
# Socket queue should hold max number of packets of copysize bytes
DEF SockRcvSize = DEFAULT_MAX_QUEUELEN * SockCopySize // 2
cdef extern from *:
"""
#if PY_MAJOR_VERSION < 3
#define PyBytes_FromStringAndSize PyString_FromStringAndSize
#endif
"""
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cdef int global_callback(nfq_q_handle *qh, nfgenmsg *nfmsg,
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nfq_data *nfa, void *data) with gil:
"""Create a Packet and pass it to appropriate callback."""
cdef NetfilterQueue nfqueue = <NetfilterQueue>data
cdef object user_callback = <object>nfqueue.user_callback
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packet = Packet()
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packet.set_nfq_data(qh, nfa)
user_callback(packet)
packet.drop_refs()
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return 1
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cdef class Packet:
"""A packet received from NetfilterQueue."""
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def __cinit__(self):
self._verdict_is_set = False
self._mark_is_set = False
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self._given_payload = None
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def __str__(self):
cdef iphdr *hdr = <iphdr*>self.payload
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protocol = PROTOCOLS.get(hdr.protocol, "Unknown protocol")
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return "%s packet, %s bytes" % (protocol, self.payload_len)
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cdef set_nfq_data(self, nfq_q_handle *qh, nfq_data *nfa):
"""
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Assign a packet from NFQ to this object. Parse the header and load
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local values.
"""
cdef nfqnl_msg_packet_hw *hw
cdef nfqnl_msg_packet_hdr *hdr
hdr = nfq_get_msg_packet_hdr(nfa)
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self._qh = qh
self.id = ntohl(hdr.packet_id)
self.hw_protocol = ntohs(hdr.hw_protocol)
self.hook = hdr.hook
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hw = nfq_get_packet_hw(nfa)
if hw == NULL:
# nfq_get_packet_hw doesn't work on OUTPUT and PREROUTING chains
self._hwaddr_is_set = False
else:
self.hw_addr = hw.hw_addr
self._hwaddr_is_set = True
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self.payload_len = nfq_get_payload(nfa, &self.payload)
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if self.payload_len < 0:
raise OSError("Failed to get payload of packet.")
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nfq_get_timestamp(nfa, &self.timestamp)
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self.mark = nfq_get_nfmark(nfa)
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cdef drop_refs(self):
"""
Called at the end of the user_callback, when the storage passed to
set_nfq_data() is about to be deallocated.
"""
self.payload = NULL
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cdef void verdict(self, u_int8_t verdict):
"""Call appropriate set_verdict... function on packet."""
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if self._verdict_is_set:
raise RuntimeWarning("Verdict already given for this packet.")
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cdef u_int32_t modified_payload_len = 0
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cdef unsigned char *modified_payload = NULL
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if self._given_payload:
modified_payload_len = len(self._given_payload)
modified_payload = self._given_payload
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if self._mark_is_set:
nfq_set_verdict2(
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self._qh,
self.id,
verdict,
self._given_mark,
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modified_payload_len,
modified_payload)
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else:
nfq_set_verdict(
self._qh,
self.id,
verdict,
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modified_payload_len,
modified_payload)
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self._verdict_is_set = True
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def get_hw(self):
"""Return the hardware address as Python string."""
cdef object py_string
py_string = PyBytes_FromStringAndSize(<char*>self.hw_addr, 8)
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return py_string
cpdef bytes get_payload(self):
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"""Return payload as Python string."""
if self._owned_payload:
return self._owned_payload
elif self.payload != NULL:
return self.payload[:self.payload_len]
else:
raise RuntimeError(
"Payload data is no longer available. You must call "
"retain() within the user_callback in order to copy "
"the payload if you need to expect it after your "
"callback has returned."
)
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cpdef Py_ssize_t get_payload_len(self):
return self.payload_len
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cpdef double get_timestamp(self):
return self.timestamp.tv_sec + (self.timestamp.tv_usec/1000000.0)
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cpdef set_payload(self, bytes payload):
"""Set the new payload of this packet."""
self._given_payload = payload
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cpdef set_mark(self, u_int32_t mark):
self._given_mark = mark
self._mark_is_set = True
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cpdef get_mark(self):
if self._mark_is_set:
return self._given_mark
return self.mark
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cpdef retain(self):
self._owned_payload = self.get_payload()
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cpdef accept(self):
"""Accept the packet."""
self.verdict(NF_ACCEPT)
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cpdef drop(self):
"""Drop the packet."""
self.verdict(NF_DROP)
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cpdef repeat(self):
"""Repeat the packet."""
self.verdict(NF_REPEAT)
cdef class NetfilterQueue:
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"""Handle a single numbered queue."""
def __cinit__(self, *args, **kwargs):
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self.af = kwargs.get("af", PF_INET)
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self.h = nfq_open()
if self.h == NULL:
raise OSError("Failed to open NFQueue.")
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nfq_unbind_pf(self.h, self.af) # This does NOT kick out previous
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# running queues
if nfq_bind_pf(self.h, self.af) < 0:
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raise OSError("Failed to bind family %s. Are you root?" % self.af)
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def __dealloc__(self):
if self.qh != NULL:
nfq_destroy_queue(self.qh)
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# Don't call nfq_unbind_pf unless you want to disconnect any other
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# processes using this libnetfilter_queue on this protocol family!
nfq_close(self.h)
def bind(self, int queue_num, object user_callback,
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u_int32_t max_len=DEFAULT_MAX_QUEUELEN,
u_int8_t mode=NFQNL_COPY_PACKET,
u_int32_t range=MaxPacketSize,
u_int32_t sock_len=SockRcvSize):
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"""Create and bind to a new queue."""
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if self.qh != NULL:
raise RuntimeError("A queue is already bound; use unbind() first")
cdef unsigned int newsiz
self.user_callback = user_callback
self.qh = nfq_create_queue(self.h, queue_num,
<nfq_callback*>global_callback, <void*>self)
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if self.qh == NULL:
raise OSError("Failed to create queue %s." % queue_num)
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if range > MaxCopySize:
range = MaxCopySize
if nfq_set_mode(self.qh, mode, range) < 0:
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self.unbind()
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raise OSError("Failed to set packet copy mode.")
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nfq_set_queue_maxlen(self.qh, max_len)
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newsiz = nfnl_rcvbufsiz(nfq_nfnlh(self.h), sock_len)
if newsiz != sock_len * 2:
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try:
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import warnings
warnings.warn(
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"Socket rcvbuf limit is now %d, requested %d." % (newsiz, sock_len),
category=RuntimeWarning,
)
except: # if warnings are being treated as errors
self.unbind()
raise
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def unbind(self):
"""Destroy the queue."""
if self.qh != NULL:
nfq_destroy_queue(self.qh)
self.qh = NULL
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# See warning about nfq_unbind_pf in __dealloc__ above.
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def get_fd(self):
"""Get the file descriptor of the queue handler."""
return nfq_fd(self.h)
def run(self, block=True):
"""Accept packets using recv."""
cdef int fd = self.get_fd()
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cdef char buf[BufferSize]
cdef int rv
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cdef int recv_flags
recv_flags = 0 if block else MSG_DONTWAIT
while True:
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with nogil:
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rv = recv(fd, buf, sizeof(buf), recv_flags)
if (rv >= 0):
nfq_handle_packet(self.h, buf, rv)
else:
if errno != ENOBUFS:
break
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def run_socket(self, s):
"""Accept packets using socket.recv so that, for example, gevent can monkeypatch it."""
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import socket
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while True:
try:
buf = s.recv(BufferSize)
rv = len(buf)
if rv >= 0:
nfq_handle_packet(self.h, buf, rv)
else:
break
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except socket.error as e:
err = e.args[0]
if err == ENOBUFS:
continue
elif err == EAGAIN or err == EWOULDBLOCK:
# This should only happen with a non-blocking socket, and the
# app should call run_socket again when more data is available.
break
else:
# This is bad. Let the caller handle it.
raise e
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PROTOCOLS = {
0: "HOPOPT",
1: "ICMP",
2: "IGMP",
3: "GGP",
4: "IP",
5: "ST",
6: "TCP",
7: "CBT",
8: "EGP",
9: "IGP",
10: "BBN-RCC-MON",
11: "NVP-II",
12: "PUP",
13: "ARGUS",
14: "EMCON",
15: "XNET",
16: "CHAOS",
17: "UDP",
18: "MUX",
19: "DCN-MEAS",
20: "HMP",
21: "PRM",
22: "XNS-IDP",
23: "TRUNK-1",
24: "TRUNK-2",
25: "LEAF-1",
26: "LEAF-2",
27: "RDP",
28: "IRTP",
29: "ISO-TP4",
30: "NETBLT",
31: "MFE-NSP",
32: "MERIT-INP",
33: "DCCP",
34: "3PC",
35: "IDPR",
36: "XTP",
37: "DDP",
38: "IDPR-CMTP",
39: "TP++",
40: "IL",
41: "IPv6",
42: "SDRP",
43: "IPv6-Route",
44: "IPv6-Frag",
45: "IDRP",
46: "RSVP",
47: "GRE",
48: "DSR",
49: "BNA",
50: "ESP",
51: "AH",
52: "I-NLSP",
53: "SWIPE",
54: "NARP",
55: "MOBILE",
56: "TLSP",
57: "SKIP",
58: "IPv6-ICMP",
59: "IPv6-NoNxt",
60: "IPv6-Opts",
61: "any host internal protocol",
62: "CFTP",
63: "any local network",
64: "SAT-EXPAK",
65: "KRYPTOLAN",
66: "RVD",
67: "IPPC",
68: "any distributed file system",
69: "SAT-MON",
70: "VISA",
71: "IPCV",
72: "CPNX",
73: "CPHB",
74: "WSN",
75: "PVP",
76: "BR-SAT-MON",
77: "SUN-ND",
78: "WB-MON",
79: "WB-EXPAK",
80: "ISO-IP",
81: "VMTP",
82: "SECURE-VMTP",
83: "VINES",
84: "TTP",
85: "NSFNET-IGP",
86: "DGP",
87: "TCF",
88: "EIGRP",
89: "OSPFIGP",
90: "Sprite-RPC",
91: "LARP",
92: "MTP",
93: "AX.25",
94: "IPIP",
95: "MICP",
96: "SCC-SP",
97: "ETHERIP",
98: "ENCAP",
99: "any private encryption scheme",
100: "GMTP",
101: "IFMP",
102: "PNNI",
103: "PIM",
104: "ARIS",
105: "SCPS",
106: "QNX",
107: "A/N",
108: "IPComp",
109: "SNP",
110: "Compaq-Peer",
111: "IPX-in-IP",
112: "VRRP",
113: "PGM",
114: "any 0-hop protocol",
115: "L2TP",
116: "DDX",
117: "IATP",
118: "STP",
119: "SRP",
120: "UTI",
121: "SMP",
122: "SM",
123: "PTP",
124: "ISIS",
125: "FIRE",
126: "CRTP",
127: "CRUDP",
128: "SSCOPMCE",
129: "IPLT",
130: "SPS",
131: "PIPE",
132: "SCTP",
133: "FC",
134: "RSVP-E2E-IGNORE",
135: "Mobility",
136: "UDPLite",
137: "MPLS-in-IP",
138: "manet",
139: "HIP",
140: "Shim6",
255: "Reserved",
}