PAPI: Use UNIX domain sockets instead of shared memory
[vpp.git] / src / vpp-api / python / vpp_papi / vpp_transport_socket.py
1 #
2 # VPP Unix Domain Socket Transport.
3 #
4 import socket
5 import struct
6 import threading
7 import select
8 import multiprocessing
9 import logging
10
11
12 class VppTransport:
13     def __init__(self, parent, read_timeout, server_address):
14         self.connected = False
15         self.read_timeout = read_timeout if read_timeout > 0 else 1
16         self.parent = parent
17         self.server_address = server_address
18         self.header = struct.Struct('>QII')
19         self.message_table = {}
20         self.sque = multiprocessing.Queue()
21         self.q = multiprocessing.Queue()
22         self.message_thread = threading.Thread(target=self.msg_thread_func)
23
24     def msg_thread_func(self):
25         while True:
26             try:
27                 rlist, _, _ = select.select([self.socket,
28                                              self.sque._reader], [], [])
29             except socket.error:
30                 # Terminate thread
31                 logging.error('select failed')
32                 self.q.put(None)
33                 return
34
35             for r in rlist:
36                 if r == self.sque._reader:
37                     # Terminate
38                     self.q.put(None)
39                     return
40
41                 elif r == self.socket:
42                     try:
43                         msg = self._read()
44                         if not msg:
45                             self.q.put(None)
46                             return
47                     except socket.error:
48                         self.q.put(None)
49                         return
50                     # Put either to local queue or if context == 0
51                     # callback queue
52                     r = self.parent.decode_incoming_msg(msg)
53                     if hasattr(r, 'context') and r.context > 0:
54                         self.q.put(msg)
55                     else:
56                         self.parent.msg_handler_async(msg)
57                 else:
58                     raise IOError(2, 'Unknown response from select')
59
60     def connect(self, name, pfx, msg_handler, rx_qlen):
61
62         # Create a UDS socket
63         self.socket = socket.socket(socket.AF_UNIX, socket.SOCK_SEQPACKET)
64         self.socket.settimeout(self.read_timeout)
65
66         # Connect the socket to the port where the server is listening
67         try:
68             self.socket.connect(self.server_address)
69         except socket.error as msg:
70             logging.error(msg)
71             raise
72
73         self.connected = True
74
75         # Initialise sockclnt_create
76         sockclnt_create = self.parent.messages['sockclnt_create']
77         sockclnt_create_reply = self.parent.messages['sockclnt_create_reply']
78
79         args = {'_vl_msg_id': 15,
80                 'name': name,
81                 'context': 124}
82         b = sockclnt_create.pack(args)
83         self.write(b)
84         msg = self._read()
85         hdr, length = self.parent.header.unpack(msg, 0)
86         if hdr.msgid != 16:
87             raise IOError('Invalid reply message')
88
89         r, length = sockclnt_create_reply.unpack(msg)
90         self.socket_index = r.index
91         for m in r.message_table:
92             n = m.name.rstrip(b'\x00\x13')
93             self.message_table[n] = m.index
94
95         self.message_thread.daemon = True
96         self.message_thread.start()
97
98         return 0
99
100     def disconnect(self):
101         try:  # Might fail, if VPP closes socket before packet makes it out
102             rv = self.parent.api.sockclnt_delete(index=self.socket_index)
103         except IOError:
104             pass
105         self.connected = False
106         self.socket.close()
107         self.sque.put(True)  # Terminate listening thread
108         self.message_thread.join()
109
110     def suspend(self):
111         pass
112
113     def resume(self):
114         pass
115
116     def callback(self):
117         raise NotImplemented
118
119     def get_callback(self, async):
120         return self.callback
121
122     def get_msg_index(self, name):
123         try:
124             return self.message_table[name]
125         except KeyError:
126             return 0
127
128     def msg_table_max_index(self):
129         return len(self.message_table)
130
131     def write(self, buf):
132         """Send a binary-packed message to VPP."""
133         if not self.connected:
134             raise IOError(1, 'Not connected')
135
136         # Send header
137         header = self.header.pack(0, len(buf), 0)
138         n = self.socket.send(header)
139         n = self.socket.send(buf)
140
141     def _read(self):
142         # Header and message
143         try:
144             msg = self.socket.recv(4096)
145             if len(msg) == 0:
146                 return None
147         except socket.error as message:
148             logging.error(message)
149             raise
150
151         (_, l, _) = self.header.unpack(msg[:16])
152
153         if l > len(msg):
154             buf = bytearray(l + 16)
155             view = memoryview(buf)
156             view[:4096] = msg
157             view = view[4096:]
158             # Read rest of message
159             remaining_bytes = l - 4096 + 16
160             while remaining_bytes > 0:
161                 bytes_to_read = (remaining_bytes if remaining_bytes
162                                  <= 4096 else 4096)
163                 nbytes = self.socket.recv_into(view, bytes_to_read)
164                 if nbytes == 0:
165                     logging.error('recv failed')
166                     break
167                 view = view[nbytes:]
168                 remaining_bytes -= nbytes
169         else:
170             buf = msg
171         return buf[16:]
172
173     def read(self):
174         if not self.connected:
175             raise IOError(1, 'Not connected')
176         return self.q.get()