Fix CFLAGS in socket.
[awesomized/libmemcached] / libmemcached / quit.cc
1 /* vim:expandtab:shiftwidth=2:tabstop=2:smarttab:
2 *
3 * Libmemcached library
4 *
5 * Copyright (C) 2011 Data Differential, http://datadifferential.com/
6 * Copyright (C) 2010 Brian Aker All rights reserved.
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15 * * Redistributions in binary form must reproduce the above
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36 */
37
38 #include <libmemcached/common.h>
39
40 /*
41 This closes all connections (forces flush of input as well).
42
43 Maybe add a host specific, or key specific version?
44
45 The reason we send "quit" is that in case we have buffered IO, this
46 will force data to be completed.
47 */
48
49 void memcached_quit_server(org::libmemcached::Instance* ptr, bool io_death)
50 {
51 if (ptr->fd != INVALID_SOCKET)
52 {
53 if (io_death == false and memcached_is_udp(ptr->root) == false and ptr->options.is_shutting_down == false)
54 {
55 ptr->options.is_shutting_down= true;
56
57 memcached_return_t rc;
58 if (ptr->root->flags.binary_protocol)
59 {
60 protocol_binary_request_quit request= {}; // = {.bytes= {0}};
61
62 initialize_binary_request(ptr, request.message.header);
63
64 request.message.header.request.opcode = PROTOCOL_BINARY_CMD_QUIT;
65 request.message.header.request.datatype = PROTOCOL_BINARY_RAW_BYTES;
66
67 libmemcached_io_vector_st vector[]=
68 {
69 { request.bytes, sizeof(request.bytes) }
70 };
71
72 rc= memcached_vdo(ptr, vector, 1, true);
73 }
74 else
75 {
76 libmemcached_io_vector_st vector[]=
77 {
78 { memcached_literal_param("quit\r\n") }
79 };
80
81 rc= memcached_vdo(ptr, vector, 1, true);
82 }
83
84 /* read until socket is closed, or there is an error
85 * closing the socket before all data is read
86 * results in server throwing away all data which is
87 * not read
88 *
89 * In .40 we began to only do this if we had been doing buffered
90 * requests of had replication enabled.
91 */
92 if (memcached_success(rc) and (ptr->root->flags.buffer_requests or ptr->root->number_of_replicas))
93 {
94 if (0)
95 {
96 memcached_return_t rc_slurp;
97 while (memcached_continue(rc_slurp= memcached_io_slurp(ptr))) {} ;
98 WATCHPOINT_ASSERT(rc_slurp == MEMCACHED_CONNECTION_FAILURE);
99 }
100 else
101 {
102 memcached_io_slurp(ptr);
103 }
104 }
105
106 /*
107 * memcached_io_read may call memcached_quit_server with io_death if
108 * it encounters problems, but we don't care about those occurences.
109 * The intention of that loop is to drain the data sent from the
110 * server to ensure that the server processed all of the data we
111 * sent to the server.
112 */
113 ptr->server_failure_counter= 0;
114 }
115 memcached_io_close(ptr);
116 }
117
118 ptr->state= MEMCACHED_SERVER_STATE_NEW;
119 ptr->cursor_active_= 0;
120 ptr->io_bytes_sent= 0;
121 ptr->write_buffer_offset= size_t(ptr->root and memcached_is_udp(ptr->root) ? UDP_DATAGRAM_HEADER_LENGTH : 0);
122 ptr->read_buffer_length= 0;
123 ptr->read_ptr= ptr->read_buffer;
124 ptr->options.is_shutting_down= false;
125 memcached_server_response_reset(ptr);
126
127 // We reset the version so that if we end up talking to a different server
128 // we don't have stale server version information.
129 ptr->major_version= ptr->minor_version= ptr->micro_version= UINT8_MAX;
130
131 if (io_death)
132 {
133 memcached_mark_server_for_timeout(ptr);
134 }
135 }
136
137 void send_quit(memcached_st *ptr)
138 {
139 for (uint32_t x= 0; x < memcached_server_count(ptr); x++)
140 {
141 org::libmemcached::Instance* instance= memcached_instance_fetch(ptr, x);
142
143 memcached_quit_server(instance, false);
144 }
145 }
146
147 void memcached_quit(memcached_st *ptr)
148 {
149 memcached_return_t rc;
150 if (memcached_failed(rc= initialize_query(ptr, true)))
151 {
152 return;
153 }
154
155 send_quit(ptr);
156 }