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Willy Tarreau59f98392012-07-06 14:13:49 +02001/*
2 * Connection management functions
3 *
4 * Copyright 2000-2012 Willy Tarreau <w@1wt.eu>
5 *
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License
8 * as published by the Free Software Foundation; either version
9 * 2 of the License, or (at your option) any later version.
10 *
11 */
12
Willy Tarreaue1e4a612012-10-05 00:10:55 +020013#include <errno.h>
14
Willy Tarreau59f98392012-07-06 14:13:49 +020015#include <common/compat.h>
16#include <common/config.h>
KOVACS Krisztianb3e54fe2014-11-17 15:11:45 +010017#include <common/namespace.h>
Willy Tarreau59f98392012-07-06 14:13:49 +020018
Willy Tarreauc5788912012-08-24 18:12:41 +020019#include <proto/connection.h>
Willy Tarreaudd2f85e2012-09-02 22:34:23 +020020#include <proto/fd.h>
Willy Tarreau5f1504f2012-10-04 23:55:57 +020021#include <proto/frontend.h>
Willy Tarreau2da156f2012-07-23 15:07:23 +020022#include <proto/proto_tcp.h>
Willy Tarreau2c6be842012-07-06 17:12:34 +020023#include <proto/stream_interface.h>
Willy Tarreau59f98392012-07-06 14:13:49 +020024
Emeric Brun46591952012-05-18 15:47:34 +020025#ifdef USE_OPENSSL
26#include <proto/ssl_sock.h>
27#endif
28
Willy Tarreauf2943dc2012-10-26 20:10:28 +020029struct pool_head *pool2_connection;
Willy Tarreau13e14102016-12-22 20:25:26 +010030struct xprt_ops *registered_xprt[XPRT_ENTRIES] = { NULL, };
Willy Tarreauf2943dc2012-10-26 20:10:28 +020031
32/* perform minimal intializations, report 0 in case of error, 1 if OK. */
33int init_connection()
34{
35 pool2_connection = create_pool("connection", sizeof (struct connection), MEM_F_SHARED);
36 return pool2_connection != NULL;
37}
38
Willy Tarreau59f98392012-07-06 14:13:49 +020039/* I/O callback for fd-based connections. It calls the read/write handlers
Willy Tarreau7a798e52016-04-14 11:13:20 +020040 * provided by the connection's sock_ops, which must be valid.
Willy Tarreau59f98392012-07-06 14:13:49 +020041 */
Willy Tarreau7a798e52016-04-14 11:13:20 +020042void conn_fd_handler(int fd)
Willy Tarreau59f98392012-07-06 14:13:49 +020043{
Willy Tarreau80184712012-07-06 14:54:49 +020044 struct connection *conn = fdtab[fd].owner;
Willy Tarreau9e272bf2012-10-03 21:04:48 +020045 unsigned int flags;
Willy Tarreau59f98392012-07-06 14:13:49 +020046
Willy Tarreauc76ae332012-07-12 15:32:13 +020047 if (unlikely(!conn))
Willy Tarreau7a798e52016-04-14 11:13:20 +020048 return;
Willy Tarreau59f98392012-07-06 14:13:49 +020049
Willy Tarreau7d281492012-12-16 19:19:13 +010050 conn_refresh_polling_flags(conn);
51 flags = conn->flags & ~CO_FL_ERROR; /* ensure to call the wake handler upon error */
Willy Tarreaud29a0662012-12-10 16:33:38 +010052
Willy Tarreauc76ae332012-07-12 15:32:13 +020053 process_handshake:
Willy Tarreauf9dabec2012-08-17 17:33:53 +020054 /* The handshake callbacks are called in sequence. If either of them is
55 * missing something, it must enable the required polling at the socket
56 * layer of the connection. Polling state is not guaranteed when entering
57 * these handlers, so any handshake handler which does not complete its
Willy Tarreaud6e999b2013-11-25 08:41:15 +010058 * work must explicitly disable events it's not interested in. Error
59 * handling is also performed here in order to reduce the number of tests
60 * around.
Willy Tarreauf9dabec2012-08-17 17:33:53 +020061 */
Willy Tarreaud6e999b2013-11-25 08:41:15 +010062 while (unlikely(conn->flags & (CO_FL_HANDSHAKE | CO_FL_ERROR))) {
Willy Tarreau310987a2014-01-22 19:46:33 +010063 if (unlikely(conn->flags & CO_FL_ERROR))
Willy Tarreau2c6be842012-07-06 17:12:34 +020064 goto leave;
Willy Tarreau59f98392012-07-06 14:13:49 +020065
Bertrand Jacquin93b227d2016-06-04 15:11:10 +010066 if (conn->flags & CO_FL_ACCEPT_CIP)
67 if (!conn_recv_netscaler_cip(conn, CO_FL_ACCEPT_CIP))
68 goto leave;
69
Willy Tarreau22cda212012-08-31 17:43:29 +020070 if (conn->flags & CO_FL_ACCEPT_PROXY)
71 if (!conn_recv_proxy(conn, CO_FL_ACCEPT_PROXY))
72 goto leave;
73
Willy Tarreau57cd3e42013-10-24 22:01:26 +020074 if (conn->flags & CO_FL_SEND_PROXY)
75 if (!conn_si_send_proxy(conn, CO_FL_SEND_PROXY))
Willy Tarreau5f1504f2012-10-04 23:55:57 +020076 goto leave;
Emeric Brun46591952012-05-18 15:47:34 +020077#ifdef USE_OPENSSL
78 if (conn->flags & CO_FL_SSL_WAIT_HS)
79 if (!ssl_sock_handshake(conn, CO_FL_SSL_WAIT_HS))
80 goto leave;
81#endif
Willy Tarreauc76ae332012-07-12 15:32:13 +020082 }
83
Willy Tarreauf9dabec2012-08-17 17:33:53 +020084 /* Once we're purely in the data phase, we disable handshake polling */
85 if (!(conn->flags & CO_FL_POLL_SOCK))
86 __conn_sock_stop_both(conn);
Willy Tarreauc76ae332012-07-12 15:32:13 +020087
Willy Tarreau071e1372012-10-03 01:39:48 +020088 /* The data layer might not be ready yet (eg: when using embryonic
89 * sessions). If we're about to move data, we must initialize it first.
90 * The function may fail and cause the connection to be destroyed, thus
Willy Tarreau2542b532012-08-31 16:01:23 +020091 * we must not use it anymore and should immediately leave instead.
92 */
Willy Tarreau071e1372012-10-03 01:39:48 +020093 if ((conn->flags & CO_FL_INIT_DATA) && conn->data->init(conn) < 0)
Willy Tarreau7a798e52016-04-14 11:13:20 +020094 return;
Willy Tarreau2542b532012-08-31 16:01:23 +020095
Willy Tarreau153c3ca2012-10-22 22:47:55 +020096 /* The data transfer starts here and stops on error and handshakes. Note
97 * that we must absolutely test conn->xprt at each step in case it suddenly
98 * changes due to a quick unexpected close().
99 */
Willy Tarreaud8375892014-01-21 11:01:08 +0100100 if (conn->xprt && fd_recv_ready(fd) &&
101 ((conn->flags & (CO_FL_DATA_RD_ENA|CO_FL_WAIT_ROOM|CO_FL_ERROR|CO_FL_HANDSHAKE)) == CO_FL_DATA_RD_ENA)) {
Willy Tarreau3b5bc662012-10-05 21:29:37 +0200102 /* force detection of a flag change : it's impossible to have both
103 * CONNECTED and WAIT_CONN so we're certain to trigger a change.
Willy Tarreau9e272bf2012-10-03 21:04:48 +0200104 */
Willy Tarreau3b5bc662012-10-05 21:29:37 +0200105 flags = CO_FL_WAIT_L4_CONN | CO_FL_CONNECTED;
Willy Tarreau74beec32012-10-03 00:41:04 +0200106 conn->data->recv(conn);
Willy Tarreau9e272bf2012-10-03 21:04:48 +0200107 }
Willy Tarreau59f98392012-07-06 14:13:49 +0200108
Willy Tarreaud8375892014-01-21 11:01:08 +0100109 if (conn->xprt && fd_send_ready(fd) &&
110 ((conn->flags & (CO_FL_DATA_WR_ENA|CO_FL_WAIT_DATA|CO_FL_ERROR|CO_FL_HANDSHAKE)) == CO_FL_DATA_WR_ENA)) {
Willy Tarreau3b5bc662012-10-05 21:29:37 +0200111 /* force detection of a flag change : it's impossible to have both
112 * CONNECTED and WAIT_CONN so we're certain to trigger a change.
Willy Tarreau9e272bf2012-10-03 21:04:48 +0200113 */
Willy Tarreau3b5bc662012-10-05 21:29:37 +0200114 flags = CO_FL_WAIT_L4_CONN | CO_FL_CONNECTED;
Willy Tarreau74beec32012-10-03 00:41:04 +0200115 conn->data->send(conn);
Willy Tarreau9e272bf2012-10-03 21:04:48 +0200116 }
Willy Tarreau2da156f2012-07-23 15:07:23 +0200117
Willy Tarreauc76ae332012-07-12 15:32:13 +0200118 /* It may happen during the data phase that a handshake is
119 * enabled again (eg: SSL)
120 */
Willy Tarreaud6e999b2013-11-25 08:41:15 +0100121 if (unlikely(conn->flags & (CO_FL_HANDSHAKE | CO_FL_ERROR)))
Willy Tarreauc76ae332012-07-12 15:32:13 +0200122 goto process_handshake;
123
Willy Tarreaufd803bb2014-01-20 15:13:07 +0100124 if (unlikely(conn->flags & CO_FL_WAIT_L4_CONN)) {
Willy Tarreauf8deb0c2012-09-01 17:59:22 +0200125 /* still waiting for a connection to establish and nothing was
126 * attempted yet to probe the connection. Then let's retry the
127 * connect().
Willy Tarreau2da156f2012-07-23 15:07:23 +0200128 */
Willy Tarreau239d7182012-07-23 18:53:03 +0200129 if (!tcp_connect_probe(conn))
Willy Tarreauafad0e02012-08-09 14:45:22 +0200130 goto leave;
Willy Tarreau2da156f2012-07-23 15:07:23 +0200131 }
132
Willy Tarreau2c6be842012-07-06 17:12:34 +0200133 leave:
Willy Tarreau2396c1c2012-10-03 21:12:16 +0200134 /* The wake callback may be used to process a critical error and abort the
135 * connection. If so, we don't want to go further as the connection will
136 * have been released and the FD destroyed.
137 */
138 if ((conn->flags & CO_FL_WAKE_DATA) &&
139 ((conn->flags ^ flags) & CO_FL_CONN_STATE) &&
140 conn->data->wake(conn) < 0)
Willy Tarreau7a798e52016-04-14 11:13:20 +0200141 return;
Willy Tarreaufd31e532012-07-23 18:24:25 +0200142
Willy Tarreau8f8c92f2012-07-23 19:45:44 +0200143 /* Last check, verify if the connection just established */
Willy Tarreauc76ae332012-07-12 15:32:13 +0200144 if (unlikely(!(conn->flags & (CO_FL_WAIT_L4_CONN | CO_FL_WAIT_L6_CONN | CO_FL_CONNECTED))))
Willy Tarreau8f8c92f2012-07-23 19:45:44 +0200145 conn->flags |= CO_FL_CONNECTED;
146
Willy Tarreau61ace1b2012-07-23 12:14:26 +0200147 /* remove the events before leaving */
Willy Tarreau26d7cfc2012-12-07 00:09:43 +0100148 fdtab[fd].ev &= FD_POLL_STICKY;
Willy Tarreauf9dabec2012-08-17 17:33:53 +0200149
150 /* commit polling changes */
151 conn_cond_update_polling(conn);
Willy Tarreau7a798e52016-04-14 11:13:20 +0200152 return;
Willy Tarreau59f98392012-07-06 14:13:49 +0200153}
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200154
Willy Tarreaue9dfa792012-09-01 17:26:16 +0200155/* Update polling on connection <c>'s file descriptor depending on its current
156 * state as reported in the connection's CO_FL_CURR_* flags, reports of EAGAIN
157 * in CO_FL_WAIT_*, and the data layer expectations indicated by CO_FL_DATA_*.
158 * The connection flags are updated with the new flags at the end of the
Willy Tarreau0ffde2c2012-10-04 22:21:15 +0200159 * operation. Polling is totally disabled if an error was reported.
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200160 */
Willy Tarreaue9dfa792012-09-01 17:26:16 +0200161void conn_update_data_polling(struct connection *c)
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200162{
Willy Tarreaue9dfa792012-09-01 17:26:16 +0200163 unsigned int f = c->flags;
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200164
Willy Tarreau3c728722014-01-23 13:50:42 +0100165 if (!conn_ctrl_ready(c))
Willy Tarreauf79c8172013-10-21 16:30:56 +0200166 return;
167
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200168 /* update read status if needed */
Willy Tarreau310987a2014-01-22 19:46:33 +0100169 if (unlikely((f & (CO_FL_CURR_RD_ENA|CO_FL_DATA_RD_ENA)) == CO_FL_DATA_RD_ENA)) {
Willy Tarreauf817e9f2014-01-10 16:58:45 +0100170 fd_want_recv(c->t.sock.fd);
Willy Tarreauc8dd77f2012-11-05 17:52:26 +0100171 f |= CO_FL_CURR_RD_ENA;
Willy Tarreaue9dfa792012-09-01 17:26:16 +0200172 }
Willy Tarreauc8dd77f2012-11-05 17:52:26 +0100173 else if (unlikely((f & (CO_FL_CURR_RD_ENA|CO_FL_DATA_RD_ENA)) == CO_FL_CURR_RD_ENA)) {
174 fd_stop_recv(c->t.sock.fd);
175 f &= ~CO_FL_CURR_RD_ENA;
Willy Tarreaue9dfa792012-09-01 17:26:16 +0200176 }
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200177
178 /* update write status if needed */
Willy Tarreau310987a2014-01-22 19:46:33 +0100179 if (unlikely((f & (CO_FL_CURR_WR_ENA|CO_FL_DATA_WR_ENA)) == CO_FL_DATA_WR_ENA)) {
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200180 fd_want_send(c->t.sock.fd);
Willy Tarreauc8dd77f2012-11-05 17:52:26 +0100181 f |= CO_FL_CURR_WR_ENA;
182 }
183 else if (unlikely((f & (CO_FL_CURR_WR_ENA|CO_FL_DATA_WR_ENA)) == CO_FL_CURR_WR_ENA)) {
184 fd_stop_send(c->t.sock.fd);
185 f &= ~CO_FL_CURR_WR_ENA;
Willy Tarreaue9dfa792012-09-01 17:26:16 +0200186 }
Willy Tarreau310987a2014-01-22 19:46:33 +0100187 c->flags = f;
Willy Tarreaue9dfa792012-09-01 17:26:16 +0200188}
189
190/* Update polling on connection <c>'s file descriptor depending on its current
191 * state as reported in the connection's CO_FL_CURR_* flags, reports of EAGAIN
192 * in CO_FL_WAIT_*, and the sock layer expectations indicated by CO_FL_SOCK_*.
193 * The connection flags are updated with the new flags at the end of the
Willy Tarreau0ffde2c2012-10-04 22:21:15 +0200194 * operation. Polling is totally disabled if an error was reported.
Willy Tarreaue9dfa792012-09-01 17:26:16 +0200195 */
196void conn_update_sock_polling(struct connection *c)
197{
198 unsigned int f = c->flags;
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200199
Willy Tarreau3c728722014-01-23 13:50:42 +0100200 if (!conn_ctrl_ready(c))
Willy Tarreauf79c8172013-10-21 16:30:56 +0200201 return;
202
Willy Tarreaue9dfa792012-09-01 17:26:16 +0200203 /* update read status if needed */
Willy Tarreau310987a2014-01-22 19:46:33 +0100204 if (unlikely((f & (CO_FL_CURR_RD_ENA|CO_FL_SOCK_RD_ENA)) == CO_FL_SOCK_RD_ENA)) {
Willy Tarreauf817e9f2014-01-10 16:58:45 +0100205 fd_want_recv(c->t.sock.fd);
Willy Tarreauc8dd77f2012-11-05 17:52:26 +0100206 f |= CO_FL_CURR_RD_ENA;
Willy Tarreaue9dfa792012-09-01 17:26:16 +0200207 }
Willy Tarreauc8dd77f2012-11-05 17:52:26 +0100208 else if (unlikely((f & (CO_FL_CURR_RD_ENA|CO_FL_SOCK_RD_ENA)) == CO_FL_CURR_RD_ENA)) {
209 fd_stop_recv(c->t.sock.fd);
210 f &= ~CO_FL_CURR_RD_ENA;
Willy Tarreaue9dfa792012-09-01 17:26:16 +0200211 }
212
213 /* update write status if needed */
Willy Tarreau310987a2014-01-22 19:46:33 +0100214 if (unlikely((f & (CO_FL_CURR_WR_ENA|CO_FL_SOCK_WR_ENA)) == CO_FL_SOCK_WR_ENA)) {
Willy Tarreauf817e9f2014-01-10 16:58:45 +0100215 fd_want_send(c->t.sock.fd);
Willy Tarreauc8dd77f2012-11-05 17:52:26 +0100216 f |= CO_FL_CURR_WR_ENA;
Willy Tarreaue9dfa792012-09-01 17:26:16 +0200217 }
Willy Tarreauc8dd77f2012-11-05 17:52:26 +0100218 else if (unlikely((f & (CO_FL_CURR_WR_ENA|CO_FL_SOCK_WR_ENA)) == CO_FL_CURR_WR_ENA)) {
219 fd_stop_send(c->t.sock.fd);
220 f &= ~CO_FL_CURR_WR_ENA;
Willy Tarreaue9dfa792012-09-01 17:26:16 +0200221 }
Willy Tarreau310987a2014-01-22 19:46:33 +0100222 c->flags = f;
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200223}
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200224
Willy Tarreauff3e6482015-03-12 23:56:52 +0100225/* Send a message over an established connection. It makes use of send() and
226 * returns the same return code and errno. If the socket layer is not ready yet
227 * then -1 is returned and ENOTSOCK is set into errno. If the fd is not marked
228 * as ready, or if EAGAIN or ENOTCONN is returned, then we return 0. It returns
229 * EMSGSIZE if called with a zero length message. The purpose is to simplify
230 * some rare attempts to directly write on the socket from above the connection
231 * (typically send_proxy). In case of EAGAIN, the fd is marked as "cant_send".
232 * It automatically retries on EINTR. Other errors cause the connection to be
233 * marked as in error state. It takes similar arguments as send() except the
234 * first one which is the connection instead of the file descriptor. Note,
235 * MSG_DONTWAIT and MSG_NOSIGNAL are forced on the flags.
236 */
237int conn_sock_send(struct connection *conn, const void *buf, int len, int flags)
238{
239 int ret;
240
241 ret = -1;
242 errno = ENOTSOCK;
243
244 if (conn->flags & CO_FL_SOCK_WR_SH)
245 goto fail;
246
247 if (!conn_ctrl_ready(conn))
248 goto fail;
249
250 errno = EMSGSIZE;
251 if (!len)
252 goto fail;
253
254 if (!fd_send_ready(conn->t.sock.fd))
255 goto wait;
256
257 do {
258 ret = send(conn->t.sock.fd, buf, len, flags | MSG_DONTWAIT | MSG_NOSIGNAL);
259 } while (ret < 0 && errno == EINTR);
260
261
262 if (ret > 0)
263 return ret;
264
265 if (ret == 0 || errno == EAGAIN || errno == ENOTCONN) {
266 wait:
267 fd_cant_send(conn->t.sock.fd);
268 return 0;
269 }
270 fail:
271 conn->flags |= CO_FL_SOCK_RD_SH | CO_FL_SOCK_WR_SH | CO_FL_ERROR;
272 return ret;
273}
274
Willy Tarreaud85c4852015-03-13 00:40:28 +0100275/* Drains possibly pending incoming data on the file descriptor attached to the
276 * connection and update the connection's flags accordingly. This is used to
277 * know whether we need to disable lingering on close. Returns non-zero if it
278 * is safe to close without disabling lingering, otherwise zero. The SOCK_RD_SH
279 * flag may also be updated if the incoming shutdown was reported by the drain()
280 * function.
281 */
282int conn_sock_drain(struct connection *conn)
283{
284 if (!conn_ctrl_ready(conn))
285 return 1;
286
287 if (conn->flags & (CO_FL_ERROR | CO_FL_SOCK_RD_SH))
288 return 1;
289
290 if (fdtab[conn->t.sock.fd].ev & (FD_POLL_ERR|FD_POLL_HUP)) {
291 fdtab[conn->t.sock.fd].linger_risk = 0;
292 }
293 else {
294 if (!fd_recv_ready(conn->t.sock.fd))
295 return 0;
296
297 /* disable draining if we were called and have no drain function */
298 if (!conn->ctrl->drain) {
299 __conn_data_stop_recv(conn);
300 return 0;
301 }
302
303 if (conn->ctrl->drain(conn->t.sock.fd) <= 0)
304 return 0;
305 }
306
307 conn->flags |= CO_FL_SOCK_RD_SH;
308 return 1;
309}
310
KOVACS Krisztianb3e54fe2014-11-17 15:11:45 +0100311/*
312 * Get data length from tlv
313 */
314static int get_tlv_length(const struct tlv *src)
315{
316 return (src->length_hi << 8) | src->length_lo;
317}
318
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200319/* This handshake handler waits a PROXY protocol header at the beginning of the
320 * raw data stream. The header looks like this :
321 *
322 * "PROXY" <SP> PROTO <SP> SRC3 <SP> DST3 <SP> SRC4 <SP> <DST4> "\r\n"
323 *
324 * There must be exactly one space between each field. Fields are :
325 * - PROTO : layer 4 protocol, which must be "TCP4" or "TCP6".
326 * - SRC3 : layer 3 (eg: IP) source address in standard text form
327 * - DST3 : layer 3 (eg: IP) destination address in standard text form
328 * - SRC4 : layer 4 (eg: TCP port) source address in standard text form
329 * - DST4 : layer 4 (eg: TCP port) destination address in standard text form
330 *
331 * This line MUST be at the beginning of the buffer and MUST NOT wrap.
332 *
333 * The header line is small and in all cases smaller than the smallest normal
334 * TCP MSS. So it MUST always be delivered as one segment, which ensures we
335 * can safely use MSG_PEEK and avoid buffering.
336 *
337 * Once the data is fetched, the values are set in the connection's address
338 * fields, and data are removed from the socket's buffer. The function returns
339 * zero if it needs to wait for more data or if it fails, or 1 if it completed
340 * and removed itself.
341 */
342int conn_recv_proxy(struct connection *conn, int flag)
343{
344 char *line, *end;
Willy Tarreau77992672014-06-14 11:06:17 +0200345 struct proxy_hdr_v2 *hdr_v2;
346 const char v2sig[] = PP2_SIGNATURE;
KOVACS Krisztianb3e54fe2014-11-17 15:11:45 +0100347 int tlv_length = 0;
KOVACS Krisztian7209c202015-07-03 14:09:10 +0200348 int tlv_offset = 0;
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200349
350 /* we might have been called just after an asynchronous shutr */
351 if (conn->flags & CO_FL_SOCK_RD_SH)
352 goto fail;
353
Willy Tarreau3c728722014-01-23 13:50:42 +0100354 if (!conn_ctrl_ready(conn))
Willy Tarreauf79c8172013-10-21 16:30:56 +0200355 goto fail;
356
Willy Tarreaufd803bb2014-01-20 15:13:07 +0100357 if (!fd_recv_ready(conn->t.sock.fd))
358 return 0;
359
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200360 do {
Willy Tarreau19d14ef2012-10-29 16:51:55 +0100361 trash.len = recv(conn->t.sock.fd, trash.str, trash.size, MSG_PEEK);
362 if (trash.len < 0) {
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200363 if (errno == EINTR)
364 continue;
365 if (errno == EAGAIN) {
Willy Tarreaue1f50c42014-01-22 20:02:06 +0100366 fd_cant_recv(conn->t.sock.fd);
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200367 return 0;
368 }
Willy Tarreau8e3bf692012-12-03 15:41:18 +0100369 goto recv_abort;
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200370 }
371 } while (0);
372
Willy Tarreau8e3bf692012-12-03 15:41:18 +0100373 if (!trash.len) {
374 /* client shutdown */
375 conn->err_code = CO_ER_PRX_EMPTY;
376 goto fail;
377 }
378
Willy Tarreau19d14ef2012-10-29 16:51:55 +0100379 if (trash.len < 6)
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200380 goto missing;
381
Willy Tarreau19d14ef2012-10-29 16:51:55 +0100382 line = trash.str;
383 end = trash.str + trash.len;
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200384
385 /* Decode a possible proxy request, fail early if it does not match */
Willy Tarreau77992672014-06-14 11:06:17 +0200386 if (strncmp(line, "PROXY ", 6) != 0)
387 goto not_v1;
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200388
389 line += 6;
Willy Tarreau4c20d292014-06-14 11:41:36 +0200390 if (trash.len < 9) /* shortest possible line */
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200391 goto missing;
392
David CARLIER42ff05e2016-03-24 09:22:36 +0000393 if (memcmp(line, "TCP4 ", 5) == 0) {
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200394 u32 src3, dst3, sport, dport;
395
396 line += 5;
397
398 src3 = inetaddr_host_lim_ret(line, end, &line);
399 if (line == end)
400 goto missing;
401 if (*line++ != ' ')
Willy Tarreau8e3bf692012-12-03 15:41:18 +0100402 goto bad_header;
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200403
404 dst3 = inetaddr_host_lim_ret(line, end, &line);
405 if (line == end)
406 goto missing;
407 if (*line++ != ' ')
Willy Tarreau8e3bf692012-12-03 15:41:18 +0100408 goto bad_header;
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200409
410 sport = read_uint((const char **)&line, end);
411 if (line == end)
412 goto missing;
413 if (*line++ != ' ')
Willy Tarreau8e3bf692012-12-03 15:41:18 +0100414 goto bad_header;
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200415
416 dport = read_uint((const char **)&line, end);
417 if (line > end - 2)
418 goto missing;
419 if (*line++ != '\r')
Willy Tarreau8e3bf692012-12-03 15:41:18 +0100420 goto bad_header;
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200421 if (*line++ != '\n')
Willy Tarreau8e3bf692012-12-03 15:41:18 +0100422 goto bad_header;
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200423
424 /* update the session's addresses and mark them set */
425 ((struct sockaddr_in *)&conn->addr.from)->sin_family = AF_INET;
426 ((struct sockaddr_in *)&conn->addr.from)->sin_addr.s_addr = htonl(src3);
427 ((struct sockaddr_in *)&conn->addr.from)->sin_port = htons(sport);
428
429 ((struct sockaddr_in *)&conn->addr.to)->sin_family = AF_INET;
430 ((struct sockaddr_in *)&conn->addr.to)->sin_addr.s_addr = htonl(dst3);
431 ((struct sockaddr_in *)&conn->addr.to)->sin_port = htons(dport);
432 conn->flags |= CO_FL_ADDR_FROM_SET | CO_FL_ADDR_TO_SET;
433 }
David CARLIER42ff05e2016-03-24 09:22:36 +0000434 else if (memcmp(line, "TCP6 ", 5) == 0) {
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200435 u32 sport, dport;
436 char *src_s;
437 char *dst_s, *sport_s, *dport_s;
438 struct in6_addr src3, dst3;
439
440 line += 5;
441
442 src_s = line;
443 dst_s = sport_s = dport_s = NULL;
444 while (1) {
445 if (line > end - 2) {
446 goto missing;
447 }
448 else if (*line == '\r') {
449 *line = 0;
450 line++;
451 if (*line++ != '\n')
Willy Tarreau8e3bf692012-12-03 15:41:18 +0100452 goto bad_header;
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200453 break;
454 }
455
456 if (*line == ' ') {
457 *line = 0;
458 if (!dst_s)
459 dst_s = line + 1;
460 else if (!sport_s)
461 sport_s = line + 1;
462 else if (!dport_s)
463 dport_s = line + 1;
464 }
465 line++;
466 }
467
468 if (!dst_s || !sport_s || !dport_s)
Willy Tarreau8e3bf692012-12-03 15:41:18 +0100469 goto bad_header;
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200470
471 sport = read_uint((const char **)&sport_s,dport_s - 1);
472 if (*sport_s != 0)
Willy Tarreau8e3bf692012-12-03 15:41:18 +0100473 goto bad_header;
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200474
475 dport = read_uint((const char **)&dport_s,line - 2);
476 if (*dport_s != 0)
Willy Tarreau8e3bf692012-12-03 15:41:18 +0100477 goto bad_header;
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200478
479 if (inet_pton(AF_INET6, src_s, (void *)&src3) != 1)
Willy Tarreau8e3bf692012-12-03 15:41:18 +0100480 goto bad_header;
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200481
482 if (inet_pton(AF_INET6, dst_s, (void *)&dst3) != 1)
Willy Tarreau8e3bf692012-12-03 15:41:18 +0100483 goto bad_header;
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200484
485 /* update the session's addresses and mark them set */
486 ((struct sockaddr_in6 *)&conn->addr.from)->sin6_family = AF_INET6;
487 memcpy(&((struct sockaddr_in6 *)&conn->addr.from)->sin6_addr, &src3, sizeof(struct in6_addr));
488 ((struct sockaddr_in6 *)&conn->addr.from)->sin6_port = htons(sport);
489
490 ((struct sockaddr_in6 *)&conn->addr.to)->sin6_family = AF_INET6;
491 memcpy(&((struct sockaddr_in6 *)&conn->addr.to)->sin6_addr, &dst3, sizeof(struct in6_addr));
492 ((struct sockaddr_in6 *)&conn->addr.to)->sin6_port = htons(dport);
493 conn->flags |= CO_FL_ADDR_FROM_SET | CO_FL_ADDR_TO_SET;
494 }
Willy Tarreau4c20d292014-06-14 11:41:36 +0200495 else if (memcmp(line, "UNKNOWN\r\n", 9) == 0) {
496 /* This can be a UNIX socket forwarded by an haproxy upstream */
497 line += 9;
498 }
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200499 else {
Willy Tarreau4c20d292014-06-14 11:41:36 +0200500 /* The protocol does not match something known (TCP4/TCP6/UNKNOWN) */
Willy Tarreau8e3bf692012-12-03 15:41:18 +0100501 conn->err_code = CO_ER_PRX_BAD_PROTO;
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200502 goto fail;
503 }
504
Willy Tarreau77992672014-06-14 11:06:17 +0200505 trash.len = line - trash.str;
506 goto eat_header;
507
508 not_v1:
509 /* try PPv2 */
510 if (trash.len < PP2_HEADER_LEN)
511 goto missing;
512
513 hdr_v2 = (struct proxy_hdr_v2 *)trash.str;
514
515 if (memcmp(hdr_v2->sig, v2sig, PP2_SIGNATURE_LEN) != 0 ||
516 (hdr_v2->ver_cmd & PP2_VERSION_MASK) != PP2_VERSION) {
517 conn->err_code = CO_ER_PRX_NOT_HDR;
518 goto fail;
519 }
520
521 if (trash.len < PP2_HEADER_LEN + ntohs(hdr_v2->len))
522 goto missing;
523
524 switch (hdr_v2->ver_cmd & PP2_CMD_MASK) {
525 case 0x01: /* PROXY command */
526 switch (hdr_v2->fam) {
527 case 0x11: /* TCPv4 */
KOVACS Krisztianefd3aa92014-11-19 10:53:20 +0100528 if (ntohs(hdr_v2->len) < PP2_ADDR_LEN_INET)
529 goto bad_header;
530
Willy Tarreau77992672014-06-14 11:06:17 +0200531 ((struct sockaddr_in *)&conn->addr.from)->sin_family = AF_INET;
532 ((struct sockaddr_in *)&conn->addr.from)->sin_addr.s_addr = hdr_v2->addr.ip4.src_addr;
533 ((struct sockaddr_in *)&conn->addr.from)->sin_port = hdr_v2->addr.ip4.src_port;
534 ((struct sockaddr_in *)&conn->addr.to)->sin_family = AF_INET;
535 ((struct sockaddr_in *)&conn->addr.to)->sin_addr.s_addr = hdr_v2->addr.ip4.dst_addr;
536 ((struct sockaddr_in *)&conn->addr.to)->sin_port = hdr_v2->addr.ip4.dst_port;
537 conn->flags |= CO_FL_ADDR_FROM_SET | CO_FL_ADDR_TO_SET;
KOVACS Krisztian7209c202015-07-03 14:09:10 +0200538 tlv_offset = PP2_HEADER_LEN + PP2_ADDR_LEN_INET;
KOVACS Krisztianb3e54fe2014-11-17 15:11:45 +0100539 tlv_length = ntohs(hdr_v2->len) - PP2_ADDR_LEN_INET;
Willy Tarreau77992672014-06-14 11:06:17 +0200540 break;
541 case 0x21: /* TCPv6 */
KOVACS Krisztianefd3aa92014-11-19 10:53:20 +0100542 if (ntohs(hdr_v2->len) < PP2_ADDR_LEN_INET6)
543 goto bad_header;
544
Willy Tarreau77992672014-06-14 11:06:17 +0200545 ((struct sockaddr_in6 *)&conn->addr.from)->sin6_family = AF_INET6;
546 memcpy(&((struct sockaddr_in6 *)&conn->addr.from)->sin6_addr, hdr_v2->addr.ip6.src_addr, 16);
547 ((struct sockaddr_in6 *)&conn->addr.from)->sin6_port = hdr_v2->addr.ip6.src_port;
548 ((struct sockaddr_in6 *)&conn->addr.to)->sin6_family = AF_INET6;
549 memcpy(&((struct sockaddr_in6 *)&conn->addr.to)->sin6_addr, hdr_v2->addr.ip6.dst_addr, 16);
550 ((struct sockaddr_in6 *)&conn->addr.to)->sin6_port = hdr_v2->addr.ip6.dst_port;
551 conn->flags |= CO_FL_ADDR_FROM_SET | CO_FL_ADDR_TO_SET;
KOVACS Krisztian7209c202015-07-03 14:09:10 +0200552 tlv_offset = PP2_HEADER_LEN + PP2_ADDR_LEN_INET6;
KOVACS Krisztianb3e54fe2014-11-17 15:11:45 +0100553 tlv_length = ntohs(hdr_v2->len) - PP2_ADDR_LEN_INET6;
Willy Tarreau77992672014-06-14 11:06:17 +0200554 break;
555 }
KOVACS Krisztianb3e54fe2014-11-17 15:11:45 +0100556
557 /* TLV parsing */
558 if (tlv_length > 0) {
KOVACS Krisztianb3e54fe2014-11-17 15:11:45 +0100559 while (tlv_offset + TLV_HEADER_SIZE <= trash.len) {
560 const struct tlv *tlv_packet = (struct tlv *) &trash.str[tlv_offset];
561 const int tlv_len = get_tlv_length(tlv_packet);
562 tlv_offset += tlv_len + TLV_HEADER_SIZE;
563
564 switch (tlv_packet->type) {
565#ifdef CONFIG_HAP_NS
566 case PP2_TYPE_NETNS: {
567 const struct netns_entry *ns;
568 ns = netns_store_lookup((char*)tlv_packet->value, tlv_len);
569 if (ns)
570 conn->proxy_netns = ns;
571 break;
572 }
573#endif
574 default:
575 break;
576 }
577 }
578 }
579
Willy Tarreau77992672014-06-14 11:06:17 +0200580 /* unsupported protocol, keep local connection address */
581 break;
582 case 0x00: /* LOCAL command */
583 /* keep local connection address for LOCAL */
584 break;
585 default:
586 goto bad_header; /* not a supported command */
587 }
588
589 trash.len = PP2_HEADER_LEN + ntohs(hdr_v2->len);
590 goto eat_header;
591
592 eat_header:
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200593 /* remove the PROXY line from the request. For this we re-read the
594 * exact line at once. If we don't get the exact same result, we
595 * fail.
596 */
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200597 do {
Willy Tarreau19d14ef2012-10-29 16:51:55 +0100598 int len2 = recv(conn->t.sock.fd, trash.str, trash.len, 0);
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200599 if (len2 < 0 && errno == EINTR)
600 continue;
Willy Tarreau19d14ef2012-10-29 16:51:55 +0100601 if (len2 != trash.len)
Willy Tarreau8e3bf692012-12-03 15:41:18 +0100602 goto recv_abort;
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200603 } while (0);
604
605 conn->flags &= ~flag;
606 return 1;
607
608 missing:
609 /* Missing data. Since we're using MSG_PEEK, we can only poll again if
610 * we have not read anything. Otherwise we need to fail because we won't
611 * be able to poll anymore.
612 */
Willy Tarreau8e3bf692012-12-03 15:41:18 +0100613 conn->err_code = CO_ER_PRX_TRUNCATED;
614 goto fail;
615
616 bad_header:
617 /* This is not a valid proxy protocol header */
618 conn->err_code = CO_ER_PRX_BAD_HDR;
619 goto fail;
620
621 recv_abort:
622 conn->err_code = CO_ER_PRX_ABORT;
Willy Tarreau26f4a042013-12-04 23:44:10 +0100623 conn->flags |= CO_FL_SOCK_RD_SH | CO_FL_SOCK_WR_SH;
Willy Tarreau8e3bf692012-12-03 15:41:18 +0100624 goto fail;
625
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200626 fail:
Willy Tarreaud486ef52012-12-10 17:03:52 +0100627 __conn_sock_stop_both(conn);
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200628 conn->flags |= CO_FL_ERROR;
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200629 return 0;
630}
631
Bertrand Jacquin93b227d2016-06-04 15:11:10 +0100632/* This handshake handler waits a NetScaler Client IP insertion header
633 * at the beginning of the raw data stream. The header looks like this:
634 *
635 * 4 bytes: CIP magic number
636 * 4 bytes: Header length
637 * 20+ bytes: Header of the last IP packet sent by the client during
638 * TCP handshake.
639 * 20+ bytes: Header of the last TCP packet sent by the client during
640 * TCP handshake.
641 *
642 * This line MUST be at the beginning of the buffer and MUST NOT be
643 * fragmented.
644 *
645 * The header line is small and in all cases smaller than the smallest normal
646 * TCP MSS. So it MUST always be delivered as one segment, which ensures we
647 * can safely use MSG_PEEK and avoid buffering.
648 *
649 * Once the data is fetched, the values are set in the connection's address
650 * fields, and data are removed from the socket's buffer. The function returns
651 * zero if it needs to wait for more data or if it fails, or 1 if it completed
652 * and removed itself.
653 */
654int conn_recv_netscaler_cip(struct connection *conn, int flag)
655{
656 char *line;
657 uint32_t cip_magic;
658 uint32_t cip_len;
659 uint8_t ip_v;
660
661 /* we might have been called just after an asynchronous shutr */
662 if (conn->flags & CO_FL_SOCK_RD_SH)
663 goto fail;
664
665 if (!conn_ctrl_ready(conn))
666 goto fail;
667
668 if (!fd_recv_ready(conn->t.sock.fd))
669 return 0;
670
671 do {
672 trash.len = recv(conn->t.sock.fd, trash.str, trash.size, MSG_PEEK);
673 if (trash.len < 0) {
674 if (errno == EINTR)
675 continue;
676 if (errno == EAGAIN) {
677 fd_cant_recv(conn->t.sock.fd);
678 return 0;
679 }
680 goto recv_abort;
681 }
682 } while (0);
683
684 if (!trash.len) {
685 /* client shutdown */
686 conn->err_code = CO_ER_CIP_EMPTY;
687 goto fail;
688 }
689
690 /* Fail if buffer length is not large enough to contain
691 * CIP magic, CIP length */
692 if (trash.len < 8)
693 goto missing;
694
695 line = trash.str;
696
697 cip_magic = ntohl(*(uint32_t *)line);
698 cip_len = ntohl(*(uint32_t *)(line+4));
699
700 /* Decode a possible NetScaler Client IP request, fail early if
701 * it does not match */
702 if (cip_magic != objt_listener(conn->target)->bind_conf->ns_cip_magic)
703 goto bad_magic;
704
705 /* Fail if buffer length is not large enough to contain
706 * CIP magic, CIP length, minimal IP header */
707 if (trash.len < 28)
708 goto missing;
709
710 line += 8;
711
712 /* Get IP version from the first four bits */
713 ip_v = (*line & 0xf0) >> 4;
714
715 if (ip_v == 4) {
716 struct ip *hdr_ip4;
David Carlier3015a2e2016-07-04 22:51:33 +0100717 struct my_tcphdr *hdr_tcp;
Bertrand Jacquin93b227d2016-06-04 15:11:10 +0100718
719 hdr_ip4 = (struct ip *)line;
720
721 if (trash.len < (8 + ntohs(hdr_ip4->ip_len))) {
722 /* Fail if buffer length is not large enough to contain
723 * CIP magic, CIP length, IPv4 header */
724 goto missing;
725 } else if (hdr_ip4->ip_p != IPPROTO_TCP) {
726 /* The protocol does not include a TCP header */
727 conn->err_code = CO_ER_CIP_BAD_PROTO;
728 goto fail;
729 } else if (trash.len < (28 + ntohs(hdr_ip4->ip_len))) {
730 /* Fail if buffer length is not large enough to contain
731 * CIP magic, CIP length, IPv4 header, TCP header */
732 goto missing;
733 }
734
David Carlier3015a2e2016-07-04 22:51:33 +0100735 hdr_tcp = (struct my_tcphdr *)(line + (hdr_ip4->ip_hl * 4));
Bertrand Jacquin93b227d2016-06-04 15:11:10 +0100736
737 /* update the session's addresses and mark them set */
738 ((struct sockaddr_in *)&conn->addr.from)->sin_family = AF_INET;
739 ((struct sockaddr_in *)&conn->addr.from)->sin_addr.s_addr = hdr_ip4->ip_src.s_addr;
740 ((struct sockaddr_in *)&conn->addr.from)->sin_port = hdr_tcp->source;
741
742 ((struct sockaddr_in *)&conn->addr.to)->sin_family = AF_INET;
743 ((struct sockaddr_in *)&conn->addr.to)->sin_addr.s_addr = hdr_ip4->ip_dst.s_addr;
744 ((struct sockaddr_in *)&conn->addr.to)->sin_port = hdr_tcp->dest;
745
746 conn->flags |= CO_FL_ADDR_FROM_SET | CO_FL_ADDR_TO_SET;
747 }
748 else if (ip_v == 6) {
749 struct ip6_hdr *hdr_ip6;
David Carlier3015a2e2016-07-04 22:51:33 +0100750 struct my_tcphdr *hdr_tcp;
Bertrand Jacquin93b227d2016-06-04 15:11:10 +0100751
752 hdr_ip6 = (struct ip6_hdr *)line;
753
754 if (trash.len < 28) {
755 /* Fail if buffer length is not large enough to contain
756 * CIP magic, CIP length, IPv6 header */
757 goto missing;
758 } else if (hdr_ip6->ip6_nxt != IPPROTO_TCP) {
759 /* The protocol does not include a TCP header */
760 conn->err_code = CO_ER_CIP_BAD_PROTO;
761 goto fail;
762 } else if (trash.len < 48) {
763 /* Fail if buffer length is not large enough to contain
764 * CIP magic, CIP length, IPv6 header, TCP header */
765 goto missing;
766 }
767
David Carlier3015a2e2016-07-04 22:51:33 +0100768 hdr_tcp = (struct my_tcphdr *)(line + sizeof(struct ip6_hdr));
Bertrand Jacquin93b227d2016-06-04 15:11:10 +0100769
770 /* update the session's addresses and mark them set */
771 ((struct sockaddr_in6 *)&conn->addr.from)->sin6_family = AF_INET6;
772 ((struct sockaddr_in6 *)&conn->addr.from)->sin6_addr = hdr_ip6->ip6_src;
773 ((struct sockaddr_in6 *)&conn->addr.from)->sin6_port = hdr_tcp->source;
774
775 ((struct sockaddr_in6 *)&conn->addr.to)->sin6_family = AF_INET6;
776 ((struct sockaddr_in6 *)&conn->addr.to)->sin6_addr = hdr_ip6->ip6_dst;
777 ((struct sockaddr_in6 *)&conn->addr.to)->sin6_port = hdr_tcp->dest;
778
779 conn->flags |= CO_FL_ADDR_FROM_SET | CO_FL_ADDR_TO_SET;
780 }
781 else {
782 /* The protocol does not match something known (IPv4/IPv6) */
783 conn->err_code = CO_ER_CIP_BAD_PROTO;
784 goto fail;
785 }
786
787 line += cip_len;
788 trash.len = line - trash.str;
789
790 /* remove the NetScaler Client IP header from the request. For this
791 * we re-read the exact line at once. If we don't get the exact same
792 * result, we fail.
793 */
794 do {
795 int len2 = recv(conn->t.sock.fd, trash.str, trash.len, 0);
796 if (len2 < 0 && errno == EINTR)
797 continue;
798 if (len2 != trash.len)
799 goto recv_abort;
800 } while (0);
801
802 conn->flags &= ~flag;
803 return 1;
804
805 missing:
806 /* Missing data. Since we're using MSG_PEEK, we can only poll again if
807 * we have not read anything. Otherwise we need to fail because we won't
808 * be able to poll anymore.
809 */
810 conn->err_code = CO_ER_CIP_TRUNCATED;
811 goto fail;
812
813 bad_magic:
814 conn->err_code = CO_ER_CIP_BAD_MAGIC;
815 goto fail;
816
817 recv_abort:
818 conn->err_code = CO_ER_CIP_ABORT;
819 conn->flags |= CO_FL_SOCK_RD_SH | CO_FL_SOCK_WR_SH;
820 goto fail;
821
822 fail:
823 __conn_sock_stop_both(conn);
824 conn->flags |= CO_FL_ERROR;
825 return 0;
826}
827
David Safb76832014-05-08 23:42:08 -0400828int make_proxy_line(char *buf, int buf_len, struct server *srv, struct connection *remote)
829{
830 int ret = 0;
831
832 if (srv && (srv->pp_opts & SRV_PP_V2)) {
833 ret = make_proxy_line_v2(buf, buf_len, srv, remote);
834 }
835 else {
836 if (remote)
837 ret = make_proxy_line_v1(buf, buf_len, &remote->addr.from, &remote->addr.to);
838 else
839 ret = make_proxy_line_v1(buf, buf_len, NULL, NULL);
840 }
841
842 return ret;
843}
844
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200845/* Makes a PROXY protocol line from the two addresses. The output is sent to
846 * buffer <buf> for a maximum size of <buf_len> (including the trailing zero).
847 * It returns the number of bytes composing this line (including the trailing
848 * LF), or zero in case of failure (eg: not enough space). It supports TCP4,
Willy Tarreau2e1401a2013-10-01 11:41:55 +0200849 * TCP6 and "UNKNOWN" formats. If any of <src> or <dst> is null, UNKNOWN is
850 * emitted as well.
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200851 */
David Safb76832014-05-08 23:42:08 -0400852int make_proxy_line_v1(char *buf, int buf_len, struct sockaddr_storage *src, struct sockaddr_storage *dst)
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200853{
854 int ret = 0;
855
Willy Tarreau2e1401a2013-10-01 11:41:55 +0200856 if (src && dst && src->ss_family == dst->ss_family && src->ss_family == AF_INET) {
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200857 ret = snprintf(buf + ret, buf_len - ret, "PROXY TCP4 ");
858 if (ret >= buf_len)
859 return 0;
860
861 /* IPv4 src */
862 if (!inet_ntop(src->ss_family, &((struct sockaddr_in *)src)->sin_addr, buf + ret, buf_len - ret))
863 return 0;
864
865 ret += strlen(buf + ret);
866 if (ret >= buf_len)
867 return 0;
868
869 buf[ret++] = ' ';
870
871 /* IPv4 dst */
872 if (!inet_ntop(dst->ss_family, &((struct sockaddr_in *)dst)->sin_addr, buf + ret, buf_len - ret))
873 return 0;
874
875 ret += strlen(buf + ret);
876 if (ret >= buf_len)
877 return 0;
878
879 /* source and destination ports */
880 ret += snprintf(buf + ret, buf_len - ret, " %u %u\r\n",
881 ntohs(((struct sockaddr_in *)src)->sin_port),
882 ntohs(((struct sockaddr_in *)dst)->sin_port));
883 if (ret >= buf_len)
884 return 0;
885 }
Willy Tarreau2e1401a2013-10-01 11:41:55 +0200886 else if (src && dst && src->ss_family == dst->ss_family && src->ss_family == AF_INET6) {
Willy Tarreaue1e4a612012-10-05 00:10:55 +0200887 ret = snprintf(buf + ret, buf_len - ret, "PROXY TCP6 ");
888 if (ret >= buf_len)
889 return 0;
890
891 /* IPv6 src */
892 if (!inet_ntop(src->ss_family, &((struct sockaddr_in6 *)src)->sin6_addr, buf + ret, buf_len - ret))
893 return 0;
894
895 ret += strlen(buf + ret);
896 if (ret >= buf_len)
897 return 0;
898
899 buf[ret++] = ' ';
900
901 /* IPv6 dst */
902 if (!inet_ntop(dst->ss_family, &((struct sockaddr_in6 *)dst)->sin6_addr, buf + ret, buf_len - ret))
903 return 0;
904
905 ret += strlen(buf + ret);
906 if (ret >= buf_len)
907 return 0;
908
909 /* source and destination ports */
910 ret += snprintf(buf + ret, buf_len - ret, " %u %u\r\n",
911 ntohs(((struct sockaddr_in6 *)src)->sin6_port),
912 ntohs(((struct sockaddr_in6 *)dst)->sin6_port));
913 if (ret >= buf_len)
914 return 0;
915 }
916 else {
917 /* unknown family combination */
918 ret = snprintf(buf, buf_len, "PROXY UNKNOWN\r\n");
919 if (ret >= buf_len)
920 return 0;
921 }
922 return ret;
923}
David Safb76832014-05-08 23:42:08 -0400924
KOVACS Krisztianb3e54fe2014-11-17 15:11:45 +0100925#if defined(USE_OPENSSL) || defined(CONFIG_HAP_NS)
926static int make_tlv(char *dest, int dest_len, char type, uint16_t length, const char *value)
David Safb76832014-05-08 23:42:08 -0400927{
928 struct tlv *tlv;
929
930 if (!dest || (length + sizeof(*tlv) > dest_len))
931 return 0;
932
933 tlv = (struct tlv *)dest;
934
935 tlv->type = type;
936 tlv->length_hi = length >> 8;
937 tlv->length_lo = length & 0x00ff;
938 memcpy(tlv->value, value, length);
939 return length + sizeof(*tlv);
940}
941#endif
942
943int make_proxy_line_v2(char *buf, int buf_len, struct server *srv, struct connection *remote)
944{
Willy Tarreau8fccfa22014-06-14 08:28:06 +0200945 const char pp2_signature[] = PP2_SIGNATURE;
David Safb76832014-05-08 23:42:08 -0400946 int ret = 0;
Willy Tarreau8fccfa22014-06-14 08:28:06 +0200947 struct proxy_hdr_v2 *hdr = (struct proxy_hdr_v2 *)buf;
Vincent Bernat6e615892016-05-18 16:17:44 +0200948 struct sockaddr_storage null_addr = { .ss_family = 0 };
David Safb76832014-05-08 23:42:08 -0400949 struct sockaddr_storage *src = &null_addr;
950 struct sockaddr_storage *dst = &null_addr;
KOVACS Krisztianb3e54fe2014-11-17 15:11:45 +0100951
David Safb76832014-05-08 23:42:08 -0400952#ifdef USE_OPENSSL
David Safb76832014-05-08 23:42:08 -0400953 char *value = NULL;
954 struct tlv_ssl *tlv;
955 int ssl_tlv_len = 0;
Dave McCowan77d1f012014-07-17 14:34:01 -0400956 struct chunk *cn_trash;
David Safb76832014-05-08 23:42:08 -0400957#endif
958
959 if (buf_len < PP2_HEADER_LEN)
960 return 0;
Willy Tarreau8fccfa22014-06-14 08:28:06 +0200961 memcpy(hdr->sig, pp2_signature, PP2_SIGNATURE_LEN);
David Safb76832014-05-08 23:42:08 -0400962
963 if (remote) {
964 src = &remote->addr.from;
965 dst = &remote->addr.to;
966 }
KOVACS Krisztianb3e54fe2014-11-17 15:11:45 +0100967
David Safb76832014-05-08 23:42:08 -0400968 if (src && dst && src->ss_family == dst->ss_family && src->ss_family == AF_INET) {
969 if (buf_len < PP2_HDR_LEN_INET)
970 return 0;
Willy Tarreau8fccfa22014-06-14 08:28:06 +0200971 hdr->ver_cmd = PP2_VERSION | PP2_CMD_PROXY;
972 hdr->fam = PP2_FAM_INET | PP2_TRANS_STREAM;
973 hdr->addr.ip4.src_addr = ((struct sockaddr_in *)src)->sin_addr.s_addr;
974 hdr->addr.ip4.dst_addr = ((struct sockaddr_in *)dst)->sin_addr.s_addr;
975 hdr->addr.ip4.src_port = ((struct sockaddr_in *)src)->sin_port;
976 hdr->addr.ip4.dst_port = ((struct sockaddr_in *)dst)->sin_port;
David Safb76832014-05-08 23:42:08 -0400977 ret = PP2_HDR_LEN_INET;
978 }
979 else if (src && dst && src->ss_family == dst->ss_family && src->ss_family == AF_INET6) {
980 if (buf_len < PP2_HDR_LEN_INET6)
981 return 0;
Willy Tarreau8fccfa22014-06-14 08:28:06 +0200982 hdr->ver_cmd = PP2_VERSION | PP2_CMD_PROXY;
983 hdr->fam = PP2_FAM_INET6 | PP2_TRANS_STREAM;
984 memcpy(hdr->addr.ip6.src_addr, &((struct sockaddr_in6 *)src)->sin6_addr, 16);
985 memcpy(hdr->addr.ip6.dst_addr, &((struct sockaddr_in6 *)dst)->sin6_addr, 16);
986 hdr->addr.ip6.src_port = ((struct sockaddr_in6 *)src)->sin6_port;
987 hdr->addr.ip6.dst_port = ((struct sockaddr_in6 *)dst)->sin6_port;
David Safb76832014-05-08 23:42:08 -0400988 ret = PP2_HDR_LEN_INET6;
989 }
990 else {
991 if (buf_len < PP2_HDR_LEN_UNSPEC)
992 return 0;
Willy Tarreau8fccfa22014-06-14 08:28:06 +0200993 hdr->ver_cmd = PP2_VERSION | PP2_CMD_LOCAL;
994 hdr->fam = PP2_FAM_UNSPEC | PP2_TRANS_UNSPEC;
David Safb76832014-05-08 23:42:08 -0400995 ret = PP2_HDR_LEN_UNSPEC;
996 }
997
998#ifdef USE_OPENSSL
999 if (srv->pp_opts & SRV_PP_V2_SSL) {
1000 if ((buf_len - ret) < sizeof(struct tlv_ssl))
1001 return 0;
1002 tlv = (struct tlv_ssl *)&buf[ret];
1003 memset(tlv, 0, sizeof(struct tlv_ssl));
1004 ssl_tlv_len += sizeof(struct tlv_ssl);
1005 tlv->tlv.type = PP2_TYPE_SSL;
1006 if (ssl_sock_is_ssl(remote)) {
1007 tlv->client |= PP2_CLIENT_SSL;
1008 value = ssl_sock_get_version(remote);
1009 if (value) {
KOVACS Krisztianb3e54fe2014-11-17 15:11:45 +01001010 ssl_tlv_len += make_tlv(&buf[ret+ssl_tlv_len], (buf_len-ret-ssl_tlv_len), PP2_TYPE_SSL_VERSION, strlen(value), value);
David Safb76832014-05-08 23:42:08 -04001011 }
Dave McCowan328fb582014-07-30 10:39:13 -04001012 if (ssl_sock_get_cert_used_sess(remote)) {
1013 tlv->client |= PP2_CLIENT_CERT_SESS;
David Safb76832014-05-08 23:42:08 -04001014 tlv->verify = htonl(ssl_sock_get_verify_result(remote));
Dave McCowan328fb582014-07-30 10:39:13 -04001015 if (ssl_sock_get_cert_used_conn(remote))
1016 tlv->client |= PP2_CLIENT_CERT_CONN;
David Safb76832014-05-08 23:42:08 -04001017 }
1018 if (srv->pp_opts & SRV_PP_V2_SSL_CN) {
Dave McCowan77d1f012014-07-17 14:34:01 -04001019 cn_trash = get_trash_chunk();
Willy Tarreau3b9a0c92014-07-19 06:37:33 +02001020 if (ssl_sock_get_remote_common_name(remote, cn_trash) > 0) {
KOVACS Krisztianb3e54fe2014-11-17 15:11:45 +01001021 ssl_tlv_len += make_tlv(&buf[ret+ssl_tlv_len], (buf_len - ret - ssl_tlv_len), PP2_TYPE_SSL_CN, cn_trash->len, cn_trash->str);
David Safb76832014-05-08 23:42:08 -04001022 }
1023 }
1024 }
1025 tlv->tlv.length_hi = (uint16_t)(ssl_tlv_len - sizeof(struct tlv)) >> 8;
1026 tlv->tlv.length_lo = (uint16_t)(ssl_tlv_len - sizeof(struct tlv)) & 0x00ff;
1027 ret += ssl_tlv_len;
1028 }
1029#endif
1030
KOVACS Krisztianb3e54fe2014-11-17 15:11:45 +01001031#ifdef CONFIG_HAP_NS
1032 if (remote && (remote->proxy_netns)) {
1033 if ((buf_len - ret) < sizeof(struct tlv))
1034 return 0;
1035 ret += make_tlv(&buf[ret], buf_len, PP2_TYPE_NETNS, remote->proxy_netns->name_len, remote->proxy_netns->node.key);
1036 }
1037#endif
1038
Willy Tarreau8fccfa22014-06-14 08:28:06 +02001039 hdr->len = htons((uint16_t)(ret - PP2_HEADER_LEN));
David Safb76832014-05-08 23:42:08 -04001040
1041 return ret;
1042}