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Willy Tarreau59f98392012-07-06 14:13:49 +02001/*
2 * include/proto/connection.h
3 * This file contains connection function prototypes
4 *
5 * Copyright (C) 2000-2012 Willy Tarreau - w@1wt.eu
6 *
7 * This library is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU Lesser General Public
9 * License as published by the Free Software Foundation, version 2.1
10 * exclusively.
11 *
12 * This library is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 * Lesser General Public License for more details.
16 *
17 * You should have received a copy of the GNU Lesser General Public
18 * License along with this library; if not, write to the Free Software
19 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
20 */
21
22#ifndef _PROTO_CONNECTION_H
23#define _PROTO_CONNECTION_H
24
25#include <common/config.h>
Willy Tarreau2386be62017-09-21 19:40:52 +020026#include <common/ist.h>
Willy Tarreauf2943dc2012-10-26 20:10:28 +020027#include <common/memory.h>
Willy Tarreau59f98392012-07-06 14:13:49 +020028#include <types/connection.h>
Willy Tarreaud1d54542012-09-12 22:58:11 +020029#include <types/listener.h>
Willy Tarreau2b199c92012-11-23 17:32:21 +010030#include <proto/fd.h>
Willy Tarreau3fdb3662012-11-12 00:42:33 +010031#include <proto/obj_type.h>
Olivier Houchard6ff20392018-07-17 18:46:31 +020032#include <proto/task.h>
Willy Tarreau59f98392012-07-06 14:13:49 +020033
Willy Tarreaubafbe012017-11-24 17:34:44 +010034extern struct pool_head *pool_head_connection;
35extern struct pool_head *pool_head_connstream;
Willy Tarreau13e14102016-12-22 20:25:26 +010036extern struct xprt_ops *registered_xprt[XPRT_ENTRIES];
Christopher Faulet32f61c02018-04-10 14:33:41 +020037extern struct mux_proto_list mux_proto_list;
Willy Tarreauf2943dc2012-10-26 20:10:28 +020038
39/* perform minimal intializations, report 0 in case of error, 1 if OK. */
40int init_connection();
41
Willy Tarreau59f98392012-07-06 14:13:49 +020042/* I/O callback for fd-based connections. It calls the read/write handlers
Willy Tarreau7a798e52016-04-14 11:13:20 +020043 * provided by the connection's sock_ops.
Willy Tarreau59f98392012-07-06 14:13:49 +020044 */
Willy Tarreau7a798e52016-04-14 11:13:20 +020045void conn_fd_handler(int fd);
Willy Tarreau59f98392012-07-06 14:13:49 +020046
Willy Tarreau22cda212012-08-31 17:43:29 +020047/* receive a PROXY protocol header over a connection */
48int conn_recv_proxy(struct connection *conn, int flag);
David Safb76832014-05-08 23:42:08 -040049int make_proxy_line(char *buf, int buf_len, struct server *srv, struct connection *remote);
50int make_proxy_line_v1(char *buf, int buf_len, struct sockaddr_storage *src, struct sockaddr_storage *dst);
51int make_proxy_line_v2(char *buf, int buf_len, struct server *srv, struct connection *remote);
Willy Tarreau22cda212012-08-31 17:43:29 +020052
Olivier Houchard6ff20392018-07-17 18:46:31 +020053int conn_subscribe(struct connection *conn, int event_type, void *param);
Olivier Houchard83a0cd82018-09-28 17:57:58 +020054int conn_unsubscribe(struct connection *conn, int event_type, void *param);
55
Bertrand Jacquin93b227d2016-06-04 15:11:10 +010056/* receive a NetScaler Client IP insertion header over a connection */
57int conn_recv_netscaler_cip(struct connection *conn, int flag);
58
Willy Tarreauff3e6482015-03-12 23:56:52 +010059/* raw send() directly on the socket */
60int conn_sock_send(struct connection *conn, const void *buf, int len, int flags);
61
Willy Tarreaud85c4852015-03-13 00:40:28 +010062/* drains any pending bytes from the socket */
63int conn_sock_drain(struct connection *conn);
64
Willy Tarreaud02cdd22013-12-15 10:23:20 +010065/* returns true is the transport layer is ready */
Willy Tarreauaad69382014-01-23 14:21:42 +010066static inline int conn_xprt_ready(const struct connection *conn)
Willy Tarreaud02cdd22013-12-15 10:23:20 +010067{
Willy Tarreauaad69382014-01-23 14:21:42 +010068 return (conn->flags & CO_FL_XPRT_READY);
Willy Tarreaud02cdd22013-12-15 10:23:20 +010069}
70
71/* returns true is the control layer is ready */
Willy Tarreau3c728722014-01-23 13:50:42 +010072static inline int conn_ctrl_ready(const struct connection *conn)
Willy Tarreaud02cdd22013-12-15 10:23:20 +010073{
74 return (conn->flags & CO_FL_CTRL_READY);
75}
76
Willy Tarreauf79c8172013-10-21 16:30:56 +020077/* Calls the init() function of the transport layer if any and if not done yet,
78 * and sets the CO_FL_XPRT_READY flag to indicate it was properly initialized.
Willy Tarreauf7bc57c2012-10-03 00:19:48 +020079 * Returns <0 in case of error.
Willy Tarreau15678ef2012-08-31 13:54:11 +020080 */
Willy Tarreauf7bc57c2012-10-03 00:19:48 +020081static inline int conn_xprt_init(struct connection *conn)
Willy Tarreau15678ef2012-08-31 13:54:11 +020082{
Willy Tarreauf79c8172013-10-21 16:30:56 +020083 int ret = 0;
84
Willy Tarreauaad69382014-01-23 14:21:42 +010085 if (!conn_xprt_ready(conn) && conn->xprt && conn->xprt->init)
Willy Tarreauf79c8172013-10-21 16:30:56 +020086 ret = conn->xprt->init(conn);
87
88 if (ret >= 0)
89 conn->flags |= CO_FL_XPRT_READY;
90
91 return ret;
Willy Tarreau15678ef2012-08-31 13:54:11 +020092}
93
Willy Tarreauf79c8172013-10-21 16:30:56 +020094/* Calls the close() function of the transport layer if any and if not done
95 * yet, and clears the CO_FL_XPRT_READY flag. However this is not done if the
96 * CO_FL_XPRT_TRACKED flag is set, which allows logs to take data from the
97 * transport layer very late if needed.
Willy Tarreau6c03a642012-10-12 17:00:05 +020098 */
Willy Tarreauf7bc57c2012-10-03 00:19:48 +020099static inline void conn_xprt_close(struct connection *conn)
Willy Tarreau8b117082012-08-06 15:06:49 +0200100{
Willy Tarreauf79c8172013-10-21 16:30:56 +0200101 if ((conn->flags & (CO_FL_XPRT_READY|CO_FL_XPRT_TRACKED)) == CO_FL_XPRT_READY) {
Willy Tarreauaad69382014-01-23 14:21:42 +0100102 if (conn->xprt->close)
Willy Tarreau6c03a642012-10-12 17:00:05 +0200103 conn->xprt->close(conn);
Willy Tarreauf79c8172013-10-21 16:30:56 +0200104 conn->flags &= ~CO_FL_XPRT_READY;
105 }
106}
107
108/* Initializes the connection's control layer which essentially consists in
109 * registering the file descriptor for polling and setting the CO_FL_CTRL_READY
Willy Tarreau3c728722014-01-23 13:50:42 +0100110 * flag. The caller is responsible for ensuring that the control layer is
111 * already assigned to the connection prior to the call.
Willy Tarreauf79c8172013-10-21 16:30:56 +0200112 */
113static inline void conn_ctrl_init(struct connection *conn)
114{
Willy Tarreau3c728722014-01-23 13:50:42 +0100115 if (!conn_ctrl_ready(conn)) {
Willy Tarreau585744b2017-08-24 14:31:19 +0200116 int fd = conn->handle.fd;
Willy Tarreauf79c8172013-10-21 16:30:56 +0200117
Willy Tarreaua9786b62018-01-25 07:22:13 +0100118 fd_insert(fd, conn, conn_fd_handler, tid_bit);
Willy Tarreauf817e9f2014-01-10 16:58:45 +0100119 /* mark the fd as ready so as not to needlessly poll at the beginning */
120 fd_may_recv(fd);
121 fd_may_send(fd);
Willy Tarreauf79c8172013-10-21 16:30:56 +0200122 conn->flags |= CO_FL_CTRL_READY;
Willy Tarreau6c03a642012-10-12 17:00:05 +0200123 }
Willy Tarreau8b117082012-08-06 15:06:49 +0200124}
125
Willy Tarreauf79c8172013-10-21 16:30:56 +0200126/* Deletes the FD if the transport layer is already gone. Once done,
127 * it then removes the CO_FL_CTRL_READY flag.
128 */
129static inline void conn_ctrl_close(struct connection *conn)
130{
131 if ((conn->flags & (CO_FL_XPRT_READY|CO_FL_CTRL_READY)) == CO_FL_CTRL_READY) {
Willy Tarreau585744b2017-08-24 14:31:19 +0200132 fd_delete(conn->handle.fd);
Willy Tarreau6a0a80a2017-10-05 17:43:39 +0200133 conn->handle.fd = DEAD_FD_MAGIC;
Willy Tarreauf79c8172013-10-21 16:30:56 +0200134 conn->flags &= ~CO_FL_CTRL_READY;
135 }
136}
137
Willy Tarreau2b199c92012-11-23 17:32:21 +0100138/* If the connection still has a transport layer, then call its close() function
139 * if any, and delete the file descriptor if a control layer is set. This is
140 * used to close everything at once and atomically. However this is not done if
141 * the CO_FL_XPRT_TRACKED flag is set, which allows logs to take data from the
142 * transport layer very late if needed.
143 */
144static inline void conn_full_close(struct connection *conn)
145{
Willy Tarreauf79c8172013-10-21 16:30:56 +0200146 conn_xprt_close(conn);
147 conn_ctrl_close(conn);
148}
149
Willy Tarreaudc42acd2017-10-05 18:09:20 +0200150/* stop tracking a connection, allowing conn_full_close() to always
151 * succeed.
152 */
153static inline void conn_stop_tracking(struct connection *conn)
154{
155 conn->flags &= ~CO_FL_XPRT_TRACKED;
156}
157
Willy Tarreaue9dfa792012-09-01 17:26:16 +0200158/* Update polling on connection <c>'s file descriptor depending on its current
159 * state as reported in the connection's CO_FL_CURR_* flags, reports of EAGAIN
160 * in CO_FL_WAIT_*, and the sock layer expectations indicated by CO_FL_SOCK_*.
161 * The connection flags are updated with the new flags at the end of the
Willy Tarreau0ffde2c2012-10-04 22:21:15 +0200162 * operation. Polling is totally disabled if an error was reported.
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200163 */
Willy Tarreaue9dfa792012-09-01 17:26:16 +0200164void conn_update_sock_polling(struct connection *c);
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200165
Willy Tarreaue9dfa792012-09-01 17:26:16 +0200166/* Update polling on connection <c>'s file descriptor depending on its current
167 * state as reported in the connection's CO_FL_CURR_* flags, reports of EAGAIN
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200168 * in CO_FL_WAIT_*, and the upper layer expectations indicated by CO_FL_XPRT_*.
Willy Tarreaue9dfa792012-09-01 17:26:16 +0200169 * The connection flags are updated with the new flags at the end of the
Willy Tarreau0ffde2c2012-10-04 22:21:15 +0200170 * operation. Polling is totally disabled if an error was reported.
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200171 */
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200172void conn_update_xprt_polling(struct connection *c);
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200173
Willy Tarreau7d281492012-12-16 19:19:13 +0100174/* Refresh the connection's polling flags from its file descriptor status.
Willy Tarreau916e12d2017-10-25 09:22:43 +0200175 * This should be called at the beginning of a connection handler. It does
176 * nothing if CO_FL_WILL_UPDATE is present, indicating that an upper caller
177 * has already done it.
Willy Tarreau7d281492012-12-16 19:19:13 +0100178 */
179static inline void conn_refresh_polling_flags(struct connection *conn)
180{
Willy Tarreau916e12d2017-10-25 09:22:43 +0200181 if (conn_ctrl_ready(conn) && !(conn->flags & CO_FL_WILL_UPDATE)) {
Willy Tarreaubc97cc42017-10-25 10:28:45 +0200182 unsigned int flags = conn->flags;
Willy Tarreau7d281492012-12-16 19:19:13 +0100183
Willy Tarreaubc97cc42017-10-25 10:28:45 +0200184 flags &= ~(CO_FL_CURR_RD_ENA | CO_FL_CURR_WR_ENA | CO_FL_WAIT_ROOM);
Willy Tarreau585744b2017-08-24 14:31:19 +0200185 if (fd_recv_active(conn->handle.fd))
Willy Tarreau7d281492012-12-16 19:19:13 +0100186 flags |= CO_FL_CURR_RD_ENA;
Willy Tarreau585744b2017-08-24 14:31:19 +0200187 if (fd_send_active(conn->handle.fd))
Willy Tarreau7d281492012-12-16 19:19:13 +0100188 flags |= CO_FL_CURR_WR_ENA;
189 conn->flags = flags;
190 }
191}
192
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200193/* inspects c->flags and returns non-zero if XPRT ENA changes from the CURR ENA
Willy Tarreauc8dd77f2012-11-05 17:52:26 +0100194 * or if the WAIT flags are set with their respective ENA flags. Additionally,
Willy Tarreau0ffde2c2012-10-04 22:21:15 +0200195 * non-zero is also returned if an error was reported on the connection. This
196 * function is used quite often and is inlined. In order to proceed optimally
197 * with very little code and CPU cycles, the bits are arranged so that a change
Willy Tarreauc8dd77f2012-11-05 17:52:26 +0100198 * can be detected by a few left shifts, a xor, and a mask. These operations
199 * detect when W&D are both enabled for either direction, when C&D differ for
200 * either direction and when Error is set. The trick consists in first keeping
201 * only the bits we're interested in, since they don't collide when shifted,
202 * and to perform the AND at the end. In practice, the compiler is able to
203 * replace the last AND with a TEST in boolean conditions. This results in
204 * checks that are done in 4-6 cycles and less than 30 bytes.
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200205 */
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200206static inline unsigned int conn_xprt_polling_changes(const struct connection *c)
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200207{
Willy Tarreauc8dd77f2012-11-05 17:52:26 +0100208 unsigned int f = c->flags;
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200209 f &= CO_FL_XPRT_WR_ENA | CO_FL_XPRT_RD_ENA | CO_FL_CURR_WR_ENA |
Willy Tarreau310987a2014-01-22 19:46:33 +0100210 CO_FL_CURR_RD_ENA | CO_FL_ERROR;
Willy Tarreauc8dd77f2012-11-05 17:52:26 +0100211
Willy Tarreau310987a2014-01-22 19:46:33 +0100212 f = (f ^ (f << 1)) & (CO_FL_CURR_WR_ENA|CO_FL_CURR_RD_ENA); /* test C ^ D */
213 return f & (CO_FL_CURR_WR_ENA | CO_FL_CURR_RD_ENA | CO_FL_ERROR);
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200214}
215
Willy Tarreaue9dfa792012-09-01 17:26:16 +0200216/* inspects c->flags and returns non-zero if SOCK ENA changes from the CURR ENA
Willy Tarreauc8dd77f2012-11-05 17:52:26 +0100217 * or if the WAIT flags are set with their respective ENA flags. Additionally,
Willy Tarreau0ffde2c2012-10-04 22:21:15 +0200218 * non-zero is also returned if an error was reported on the connection. This
219 * function is used quite often and is inlined. In order to proceed optimally
220 * with very little code and CPU cycles, the bits are arranged so that a change
Willy Tarreauc8dd77f2012-11-05 17:52:26 +0100221 * can be detected by a few left shifts, a xor, and a mask. These operations
222 * detect when W&S are both enabled for either direction, when C&S differ for
223 * either direction and when Error is set. The trick consists in first keeping
224 * only the bits we're interested in, since they don't collide when shifted,
225 * and to perform the AND at the end. In practice, the compiler is able to
226 * replace the last AND with a TEST in boolean conditions. This results in
227 * checks that are done in 4-6 cycles and less than 30 bytes.
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200228 */
229static inline unsigned int conn_sock_polling_changes(const struct connection *c)
230{
Willy Tarreauc8dd77f2012-11-05 17:52:26 +0100231 unsigned int f = c->flags;
232 f &= CO_FL_SOCK_WR_ENA | CO_FL_SOCK_RD_ENA | CO_FL_CURR_WR_ENA |
Willy Tarreau310987a2014-01-22 19:46:33 +0100233 CO_FL_CURR_RD_ENA | CO_FL_ERROR;
Willy Tarreauc8dd77f2012-11-05 17:52:26 +0100234
Willy Tarreau310987a2014-01-22 19:46:33 +0100235 f = (f ^ (f << 2)) & (CO_FL_CURR_WR_ENA|CO_FL_CURR_RD_ENA); /* test C ^ S */
236 return f & (CO_FL_CURR_WR_ENA | CO_FL_CURR_RD_ENA | CO_FL_ERROR);
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200237}
238
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200239/* Automatically updates polling on connection <c> depending on the XPRT flags
Willy Tarreau916e12d2017-10-25 09:22:43 +0200240 * if no handshake is in progress. It does nothing if CO_FL_WILL_UPDATE is
241 * present, indicating that an upper caller is going to do it again later.
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200242 */
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200243static inline void conn_cond_update_xprt_polling(struct connection *c)
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200244{
Willy Tarreau916e12d2017-10-25 09:22:43 +0200245 if (!(c->flags & CO_FL_WILL_UPDATE))
246 if (!(c->flags & CO_FL_POLL_SOCK) && conn_xprt_polling_changes(c))
247 conn_update_xprt_polling(c);
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200248}
249
250/* Automatically updates polling on connection <c> depending on the SOCK flags
Willy Tarreau916e12d2017-10-25 09:22:43 +0200251 * if a handshake is in progress. It does nothing if CO_FL_WILL_UPDATE is
252 * present, indicating that an upper caller is going to do it again later.
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200253 */
254static inline void conn_cond_update_sock_polling(struct connection *c)
255{
Willy Tarreau916e12d2017-10-25 09:22:43 +0200256 if (!(c->flags & CO_FL_WILL_UPDATE))
257 if ((c->flags & CO_FL_POLL_SOCK) && conn_sock_polling_changes(c))
258 conn_update_sock_polling(c);
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200259}
260
Willy Tarreau36fb02c2012-11-24 11:09:07 +0100261/* Stop all polling on the fd. This might be used when an error is encountered
Willy Tarreau916e12d2017-10-25 09:22:43 +0200262 * for example. It does not propage the change to the fd layer if
263 * CO_FL_WILL_UPDATE is present, indicating that an upper caller is going to do
264 * it later.
Willy Tarreau36fb02c2012-11-24 11:09:07 +0100265 */
266static inline void conn_stop_polling(struct connection *c)
267{
268 c->flags &= ~(CO_FL_CURR_RD_ENA | CO_FL_CURR_WR_ENA |
269 CO_FL_SOCK_RD_ENA | CO_FL_SOCK_WR_ENA |
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200270 CO_FL_XPRT_RD_ENA | CO_FL_XPRT_WR_ENA);
Willy Tarreau916e12d2017-10-25 09:22:43 +0200271 if (!(c->flags & CO_FL_WILL_UPDATE) && conn_ctrl_ready(c))
Willy Tarreau585744b2017-08-24 14:31:19 +0200272 fd_stop_both(c->handle.fd);
Willy Tarreau36fb02c2012-11-24 11:09:07 +0100273}
274
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200275/* Automatically update polling on connection <c> depending on the XPRT and
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200276 * SOCK flags, and on whether a handshake is in progress or not. This may be
277 * called at any moment when there is a doubt about the effectiveness of the
278 * polling state, for instance when entering or leaving the handshake state.
Willy Tarreau916e12d2017-10-25 09:22:43 +0200279 * It does nothing if CO_FL_WILL_UPDATE is present, indicating that an upper
280 * caller is going to do it again later.
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200281 */
282static inline void conn_cond_update_polling(struct connection *c)
283{
Willy Tarreau36fb02c2012-11-24 11:09:07 +0100284 if (unlikely(c->flags & CO_FL_ERROR))
285 conn_stop_polling(c);
Willy Tarreau916e12d2017-10-25 09:22:43 +0200286 else if (!(c->flags & CO_FL_WILL_UPDATE)) {
287 if (!(c->flags & CO_FL_POLL_SOCK) && conn_xprt_polling_changes(c))
288 conn_update_xprt_polling(c);
289 else if ((c->flags & CO_FL_POLL_SOCK) && conn_sock_polling_changes(c))
290 conn_update_sock_polling(c);
291 }
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200292}
293
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200294/* recompute the mux polling flags after updating the current conn_stream and
295 * propagate the result down the transport layer.
296 */
297static inline void cs_update_mux_polling(struct conn_stream *cs)
298{
299 struct connection *conn = cs->conn;
300
301 if (conn->mux && conn->mux->update_poll)
302 conn->mux->update_poll(cs);
303}
304
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200305/***** Event manipulation primitives for use by DATA I/O callbacks *****/
306/* The __conn_* versions do not propagate to lower layers and are only meant
307 * to be used by handlers called by the connection handler. The other ones
308 * may be used anywhere.
309 */
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200310static inline void __conn_xprt_want_recv(struct connection *c)
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200311{
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200312 c->flags |= CO_FL_XPRT_RD_ENA;
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200313}
314
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200315static inline void __conn_xprt_stop_recv(struct connection *c)
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200316{
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200317 c->flags &= ~CO_FL_XPRT_RD_ENA;
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200318}
319
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200320static inline void __cs_want_recv(struct conn_stream *cs)
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200321{
322 cs->flags |= CS_FL_DATA_RD_ENA;
323}
324
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200325static inline void __cs_stop_recv(struct conn_stream *cs)
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200326{
327 cs->flags &= ~CS_FL_DATA_RD_ENA;
328}
329
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200330static inline void cs_want_recv(struct conn_stream *cs)
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200331{
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200332 __cs_want_recv(cs);
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200333 cs_update_mux_polling(cs);
334}
335
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200336static inline void cs_stop_recv(struct conn_stream *cs)
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200337{
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200338 __cs_stop_recv(cs);
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200339 cs_update_mux_polling(cs);
340}
341
Willy Tarreau796c5b72016-11-29 21:47:02 +0100342/* this one is used only to stop speculative recv(). It doesn't stop it if the
343 * fd is already polled in order to avoid expensive polling status changes.
344 * Since it might require the upper layer to re-enable reading, we'll return 1
345 * if we've really stopped something otherwise zero.
346 */
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200347static inline int __conn_xprt_done_recv(struct connection *c)
Willy Tarreau796c5b72016-11-29 21:47:02 +0100348{
Willy Tarreau585744b2017-08-24 14:31:19 +0200349 if (!conn_ctrl_ready(c) || !fd_recv_polled(c->handle.fd)) {
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200350 c->flags &= ~CO_FL_XPRT_RD_ENA;
Willy Tarreau796c5b72016-11-29 21:47:02 +0100351 return 1;
352 }
353 return 0;
354}
355
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200356static inline void __conn_xprt_want_send(struct connection *c)
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200357{
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200358 c->flags |= CO_FL_XPRT_WR_ENA;
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200359}
360
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200361static inline void __conn_xprt_stop_send(struct connection *c)
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200362{
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200363 c->flags &= ~CO_FL_XPRT_WR_ENA;
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200364}
365
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200366static inline void __conn_xprt_stop_both(struct connection *c)
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200367{
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200368 c->flags &= ~(CO_FL_XPRT_WR_ENA | CO_FL_XPRT_RD_ENA);
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200369}
370
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200371static inline void __cs_want_send(struct conn_stream *cs)
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200372{
373 cs->flags |= CS_FL_DATA_WR_ENA;
374}
375
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200376static inline void __cs_stop_send(struct conn_stream *cs)
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200377{
378 cs->flags &= ~CS_FL_DATA_WR_ENA;
379}
380
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200381static inline void cs_stop_send(struct conn_stream *cs)
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200382{
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200383 __cs_stop_send(cs);
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200384 cs_update_mux_polling(cs);
385}
386
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200387static inline void cs_want_send(struct conn_stream *cs)
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200388{
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200389 __cs_want_send(cs);
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200390 cs_update_mux_polling(cs);
391}
392
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200393static inline void __cs_stop_both(struct conn_stream *cs)
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200394{
395 cs->flags &= ~(CS_FL_DATA_WR_ENA | CS_FL_DATA_RD_ENA);
396}
397
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200398static inline void cs_stop_both(struct conn_stream *cs)
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200399{
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200400 __cs_stop_both(cs);
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200401 cs_update_mux_polling(cs);
402}
403
404
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200405static inline void conn_xprt_want_recv(struct connection *c)
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200406{
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200407 __conn_xprt_want_recv(c);
408 conn_cond_update_xprt_polling(c);
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200409}
410
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200411static inline void conn_xprt_stop_recv(struct connection *c)
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200412{
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200413 __conn_xprt_stop_recv(c);
414 conn_cond_update_xprt_polling(c);
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200415}
416
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200417static inline void conn_xprt_want_send(struct connection *c)
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200418{
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200419 __conn_xprt_want_send(c);
420 conn_cond_update_xprt_polling(c);
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200421}
422
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200423static inline void conn_xprt_stop_send(struct connection *c)
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200424{
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200425 __conn_xprt_stop_send(c);
426 conn_cond_update_xprt_polling(c);
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200427}
428
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200429static inline void conn_xprt_stop_both(struct connection *c)
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200430{
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200431 __conn_xprt_stop_both(c);
432 conn_cond_update_xprt_polling(c);
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200433}
434
435/***** Event manipulation primitives for use by handshake I/O callbacks *****/
436/* The __conn_* versions do not propagate to lower layers and are only meant
437 * to be used by handlers called by the connection handler. The other ones
438 * may be used anywhere.
439 */
440static inline void __conn_sock_want_recv(struct connection *c)
441{
442 c->flags |= CO_FL_SOCK_RD_ENA;
443}
444
445static inline void __conn_sock_stop_recv(struct connection *c)
446{
447 c->flags &= ~CO_FL_SOCK_RD_ENA;
448}
449
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200450static inline void __conn_sock_want_send(struct connection *c)
451{
452 c->flags |= CO_FL_SOCK_WR_ENA;
453}
454
455static inline void __conn_sock_stop_send(struct connection *c)
456{
457 c->flags &= ~CO_FL_SOCK_WR_ENA;
458}
459
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200460static inline void __conn_sock_stop_both(struct connection *c)
461{
462 c->flags &= ~(CO_FL_SOCK_WR_ENA | CO_FL_SOCK_RD_ENA);
463}
464
465static inline void conn_sock_want_recv(struct connection *c)
466{
467 __conn_sock_want_recv(c);
468 conn_cond_update_sock_polling(c);
469}
470
471static inline void conn_sock_stop_recv(struct connection *c)
472{
473 __conn_sock_stop_recv(c);
474 conn_cond_update_sock_polling(c);
475}
476
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200477static inline void conn_sock_want_send(struct connection *c)
478{
479 __conn_sock_want_send(c);
480 conn_cond_update_sock_polling(c);
481}
482
483static inline void conn_sock_stop_send(struct connection *c)
484{
485 __conn_sock_stop_send(c);
486 conn_cond_update_sock_polling(c);
487}
488
Willy Tarreaub5e2cbd2012-08-17 11:55:04 +0200489static inline void conn_sock_stop_both(struct connection *c)
490{
491 __conn_sock_stop_both(c);
492 conn_cond_update_sock_polling(c);
493}
Willy Tarreau8b117082012-08-06 15:06:49 +0200494
Willy Tarreau7b271b22017-10-25 09:59:22 +0200495/* read shutdown, called from the rcv_buf/rcv_pipe handlers when
496 * detecting an end of connection.
497 */
Willy Tarreau3af56a92012-08-20 16:55:48 +0200498static inline void conn_sock_read0(struct connection *c)
499{
500 c->flags |= CO_FL_SOCK_RD_SH;
501 __conn_sock_stop_recv(c);
Willy Tarreauad38ace2013-12-15 14:19:38 +0100502 /* we don't risk keeping ports unusable if we found the
503 * zero from the other side.
504 */
Willy Tarreau3c728722014-01-23 13:50:42 +0100505 if (conn_ctrl_ready(c))
Willy Tarreau585744b2017-08-24 14:31:19 +0200506 fdtab[c->handle.fd].linger_risk = 0;
Willy Tarreau3af56a92012-08-20 16:55:48 +0200507}
508
Willy Tarreau7b271b22017-10-25 09:59:22 +0200509/* write shutdown, indication that the upper layer is not willing to send
Willy Tarreaua48c1412017-12-22 18:46:33 +0100510 * anything anymore and wants to close after pending data are sent. The
511 * <clean> argument will allow not to perform the socket layer shutdown if
512 * equal to 0.
Willy Tarreau7b271b22017-10-25 09:59:22 +0200513 */
Willy Tarreaua48c1412017-12-22 18:46:33 +0100514static inline void conn_sock_shutw(struct connection *c, int clean)
Willy Tarreau3af56a92012-08-20 16:55:48 +0200515{
516 c->flags |= CO_FL_SOCK_WR_SH;
Willy Tarreau7b271b22017-10-25 09:59:22 +0200517 conn_refresh_polling_flags(c);
Willy Tarreau3af56a92012-08-20 16:55:48 +0200518 __conn_sock_stop_send(c);
Willy Tarreau7b271b22017-10-25 09:59:22 +0200519 conn_cond_update_sock_polling(c);
520
Willy Tarreaua48c1412017-12-22 18:46:33 +0100521 /* don't perform a clean shutdown if we're going to reset or
522 * if the shutr was already received.
523 */
524 if (conn_ctrl_ready(c) && !(c->flags & CO_FL_SOCK_RD_SH) && clean)
Willy Tarreau585744b2017-08-24 14:31:19 +0200525 shutdown(c->handle.fd, SHUT_WR);
Willy Tarreau3af56a92012-08-20 16:55:48 +0200526}
527
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200528static inline void conn_xprt_shutw(struct connection *c)
Willy Tarreau3af56a92012-08-20 16:55:48 +0200529{
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200530 __conn_xprt_stop_send(c);
Willy Tarreau729c69f2015-03-12 22:51:10 +0100531
532 /* clean data-layer shutdown */
533 if (c->xprt && c->xprt->shutw)
534 c->xprt->shutw(c, 1);
535}
536
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200537static inline void conn_xprt_shutw_hard(struct connection *c)
Willy Tarreau729c69f2015-03-12 22:51:10 +0100538{
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200539 __conn_xprt_stop_send(c);
Willy Tarreau729c69f2015-03-12 22:51:10 +0100540
541 /* unclean data-layer shutdown */
542 if (c->xprt && c->xprt->shutw)
543 c->xprt->shutw(c, 0);
Willy Tarreau3af56a92012-08-20 16:55:48 +0200544}
545
Willy Tarreauecdb3fe2017-10-05 15:25:48 +0200546/* shut read */
547static inline void cs_shutr(struct conn_stream *cs, enum cs_shr_mode mode)
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200548{
549 __cs_stop_recv(cs);
550
551 /* clean data-layer shutdown */
552 if (cs->conn->mux && cs->conn->mux->shutr)
Willy Tarreauecdb3fe2017-10-05 15:25:48 +0200553 cs->conn->mux->shutr(cs, mode);
554 cs->flags |= (mode == CS_SHR_DRAIN) ? CS_FL_SHRD : CS_FL_SHRR;
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200555}
556
Willy Tarreauecdb3fe2017-10-05 15:25:48 +0200557/* shut write */
558static inline void cs_shutw(struct conn_stream *cs, enum cs_shw_mode mode)
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200559{
560 __cs_stop_send(cs);
561
562 /* clean data-layer shutdown */
563 if (cs->conn->mux && cs->conn->mux->shutw)
Willy Tarreauecdb3fe2017-10-05 15:25:48 +0200564 cs->conn->mux->shutw(cs, mode);
565 cs->flags |= (mode == CS_SHW_NORMAL) ? CS_FL_SHWN : CS_FL_SHWS;
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200566}
567
Willy Tarreau6978db32017-10-05 18:19:43 +0200568/* completely close a conn_stream (but do not detach it) */
569static inline void cs_close(struct conn_stream *cs)
570{
571 cs_shutw(cs, CS_SHW_SILENT);
572 cs_shutr(cs, CS_SHR_RESET);
573 cs->flags = CS_FL_NONE;
574}
575
Willy Tarreau3af56a92012-08-20 16:55:48 +0200576/* detect sock->data read0 transition */
Olivier Houchard1a0545f2017-09-13 18:30:23 +0200577static inline int conn_xprt_read0_pending(struct connection *c)
Willy Tarreau3af56a92012-08-20 16:55:48 +0200578{
Willy Tarreau54e917c2017-08-30 07:35:35 +0200579 return (c->flags & CO_FL_SOCK_RD_SH) != 0;
Willy Tarreau3af56a92012-08-20 16:55:48 +0200580}
581
Willy Tarreau910c6aa2013-10-24 15:08:37 +0200582/* prepares a connection to work with protocol <proto> and transport <xprt>.
Willy Tarreau53a47662017-08-28 10:53:00 +0200583 * The transport's is initialized as well, and the mux and its context are
Willy Tarreaube373152018-09-06 11:45:30 +0200584 * cleared. The target is not reinitialized and it is recommended that it is
585 * set prior to calling this function so that the function may make use of it
586 * in the future to refine the mux choice if needed.
Willy Tarreau910c6aa2013-10-24 15:08:37 +0200587 */
588static inline void conn_prepare(struct connection *conn, const struct protocol *proto, const struct xprt_ops *xprt)
589{
590 conn->ctrl = proto;
591 conn->xprt = xprt;
Willy Tarreau53a47662017-08-28 10:53:00 +0200592 conn->mux = NULL;
Willy Tarreau910c6aa2013-10-24 15:08:37 +0200593 conn->xprt_st = 0;
594 conn->xprt_ctx = NULL;
Willy Tarreau53a47662017-08-28 10:53:00 +0200595 conn->mux_ctx = NULL;
Willy Tarreau910c6aa2013-10-24 15:08:37 +0200596}
597
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200598/*
599 * Initializes all required fields for a new conn_strema.
600 */
601static inline void cs_init(struct conn_stream *cs, struct connection *conn)
602{
603 cs->obj_type = OBJ_TYPE_CS;
604 cs->flags = CS_FL_NONE;
605 cs->conn = conn;
606}
607
Willy Tarreaud0155772013-10-14 17:10:08 +0200608/* Initializes all required fields for a new connection. Note that it does the
609 * minimum acceptable initialization for a connection that already exists and
610 * is about to be reused. It also leaves the addresses untouched, which makes
611 * it usable across connection retries to reset a connection to a known state.
612 */
613static inline void conn_init(struct connection *conn)
614{
615 conn->obj_type = OBJ_TYPE_CONN;
616 conn->flags = CO_FL_NONE;
Olivier Houchardc2aae742017-09-22 18:26:28 +0200617 conn->tmp_early_data = -1;
Olivier Houchard90084a12017-11-23 18:21:29 +0100618 conn->sent_early_data = 0;
Willy Tarreau53a47662017-08-28 10:53:00 +0200619 conn->mux = NULL;
620 conn->mux_ctx = NULL;
Willy Tarreaud0155772013-10-14 17:10:08 +0200621 conn->owner = NULL;
Willy Tarreaub8020ce2013-10-24 21:10:08 +0200622 conn->send_proxy_ofs = 0;
Willy Tarreau585744b2017-08-24 14:31:19 +0200623 conn->handle.fd = DEAD_FD_MAGIC;
Willy Tarreaud0155772013-10-14 17:10:08 +0200624 conn->err_code = CO_ER_NONE;
625 conn->target = NULL;
Willy Tarreau8e3c6ce2017-08-28 15:46:01 +0200626 conn->xprt_done_cb = NULL;
Willy Tarreau436d3332017-10-08 11:16:46 +0200627 conn->destroy_cb = NULL;
KOVACS Krisztianb3e54fe2014-11-17 15:11:45 +0100628 conn->proxy_netns = NULL;
Willy Tarreaud75d40e2015-08-04 17:25:58 +0200629 LIST_INIT(&conn->list);
Olivier Houchardfa8aa862018-10-10 18:25:41 +0200630 conn->send_wait = NULL;
631 conn->recv_wait = NULL;
Willy Tarreaud0155772013-10-14 17:10:08 +0200632}
633
Willy Tarreau8e3c6ce2017-08-28 15:46:01 +0200634/* sets <owner> as the connection's owner */
Willy Tarreau436d3332017-10-08 11:16:46 +0200635static inline void conn_set_owner(struct connection *conn, void *owner, void (*cb)(struct connection *))
Willy Tarreau8e3c6ce2017-08-28 15:46:01 +0200636{
637 conn->owner = owner;
Willy Tarreau436d3332017-10-08 11:16:46 +0200638 conn->destroy_cb = cb;
Willy Tarreau8e3c6ce2017-08-28 15:46:01 +0200639}
640
641/* registers <cb> as a callback to notify for transport's readiness or failure */
642static inline void conn_set_xprt_done_cb(struct connection *conn, int (*cb)(struct connection *))
643{
644 conn->xprt_done_cb = cb;
645}
646
647/* unregisters the callback to notify for transport's readiness or failure */
648static inline void conn_clear_xprt_done_cb(struct connection *conn)
649{
650 conn->xprt_done_cb = NULL;
651}
652
Willy Tarreaub97f3b12013-10-20 22:56:45 +0200653/* Tries to allocate a new connection and initialized its main fields. The
654 * connection is returned on success, NULL on failure. The connection must
Willy Tarreaubafbe012017-11-24 17:34:44 +0100655 * be released using pool_free() or conn_free().
Willy Tarreaub97f3b12013-10-20 22:56:45 +0200656 */
657static inline struct connection *conn_new()
658{
659 struct connection *conn;
660
Willy Tarreaubafbe012017-11-24 17:34:44 +0100661 conn = pool_alloc(pool_head_connection);
Willy Tarreaub97f3b12013-10-20 22:56:45 +0200662 if (likely(conn != NULL))
663 conn_init(conn);
664 return conn;
665}
666
Willy Tarreau5e1cc5e2018-03-02 10:43:58 +0100667/* Releases a conn_stream previously allocated by cs_new(), as well as any
668 * buffer it would still hold.
669 */
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200670static inline void cs_free(struct conn_stream *cs)
671{
Willy Tarreau5e1cc5e2018-03-02 10:43:58 +0100672
Willy Tarreaubafbe012017-11-24 17:34:44 +0100673 pool_free(pool_head_connstream, cs);
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200674}
675
676/* Tries to allocate a new conn_stream and initialize its main fields. If
677 * <conn> is NULL, then a new connection is allocated on the fly, initialized,
678 * and assigned to cs->conn ; this connection will then have to be released
Willy Tarreaubafbe012017-11-24 17:34:44 +0100679 * using pool_free() or conn_free(). The conn_stream is initialized and added
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200680 * to the mux's stream list on success, then returned. On failure, nothing is
681 * allocated and NULL is returned.
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200682 */
683static inline struct conn_stream *cs_new(struct connection *conn)
684{
685 struct conn_stream *cs;
686
Willy Tarreaubafbe012017-11-24 17:34:44 +0100687 cs = pool_alloc(pool_head_connstream);
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200688 if (!likely(cs))
689 return NULL;
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200690
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200691 if (!conn) {
692 conn = conn_new();
693 if (!likely(conn)) {
694 cs_free(cs);
695 return NULL;
696 }
697 conn_init(conn);
698 }
699
700 cs_init(cs, conn);
701 return cs;
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200702}
703
Olivier Houchard1fddc9b2018-10-21 00:32:01 +0200704static inline void conn_force_unsubscribe(struct connection *conn)
Willy Tarreaub97f3b12013-10-20 22:56:45 +0200705{
Olivier Houchard1fddc9b2018-10-21 00:32:01 +0200706 if (conn->recv_wait) {
Olivier Houchardfa8aa862018-10-10 18:25:41 +0200707 conn->recv_wait->wait_reason &= ~SUB_CAN_RECV;
Olivier Houchard1fddc9b2018-10-21 00:32:01 +0200708 conn->recv_wait = NULL;
709 }
710 if (conn->send_wait) {
Olivier Houchardfa8aa862018-10-10 18:25:41 +0200711 conn->send_wait->wait_reason &= ~SUB_CAN_SEND;
Olivier Houchard1fddc9b2018-10-21 00:32:01 +0200712 conn->send_wait = NULL;
713 }
714
715}
716
717/* Releases a connection previously allocated by conn_new() */
718static inline void conn_free(struct connection *conn)
719{
720 conn_force_unsubscribe(conn);
Willy Tarreaubafbe012017-11-24 17:34:44 +0100721 pool_free(pool_head_connection, conn);
Willy Tarreaub97f3b12013-10-20 22:56:45 +0200722}
723
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200724/* Release a conn_stream, and kill the connection if it was the last one */
725static inline void cs_destroy(struct conn_stream *cs)
726{
Olivier Houchard302f9ef2018-04-13 15:50:27 +0200727 if (cs->conn->mux)
728 cs->conn->mux->detach(cs);
729 else {
730 /* It's too early to have a mux, let's just destroy
731 * the connection
732 */
733 struct connection *conn = cs->conn;
734
735 conn_stop_tracking(conn);
736 conn_full_close(conn);
737 if (conn->destroy_cb)
738 conn->destroy_cb(conn);
739 conn_free(conn);
740 }
Willy Tarreau63dd75d2017-10-08 15:16:00 +0200741 cs_free(cs);
742}
743
Olivier Houcharde2b40b92017-09-13 18:30:23 +0200744/* Returns the conn from a cs. If cs is NULL, returns NULL */
745static inline struct connection *cs_conn(const struct conn_stream *cs)
746{
747 return cs ? cs->conn : NULL;
748}
Willy Tarreaub97f3b12013-10-20 22:56:45 +0200749
Willy Tarreau986a9d22012-08-30 21:11:38 +0200750/* Retrieves the connection's source address */
751static inline void conn_get_from_addr(struct connection *conn)
752{
753 if (conn->flags & CO_FL_ADDR_FROM_SET)
754 return;
755
Willy Tarreau3c728722014-01-23 13:50:42 +0100756 if (!conn_ctrl_ready(conn) || !conn->ctrl->get_src)
Willy Tarreau986a9d22012-08-30 21:11:38 +0200757 return;
758
Willy Tarreau585744b2017-08-24 14:31:19 +0200759 if (conn->ctrl->get_src(conn->handle.fd, (struct sockaddr *)&conn->addr.from,
Willy Tarreau3fdb3662012-11-12 00:42:33 +0100760 sizeof(conn->addr.from),
761 obj_type(conn->target) != OBJ_TYPE_LISTENER) == -1)
Willy Tarreau986a9d22012-08-30 21:11:38 +0200762 return;
763 conn->flags |= CO_FL_ADDR_FROM_SET;
764}
765
766/* Retrieves the connection's original destination address */
767static inline void conn_get_to_addr(struct connection *conn)
768{
769 if (conn->flags & CO_FL_ADDR_TO_SET)
770 return;
771
Willy Tarreau3c728722014-01-23 13:50:42 +0100772 if (!conn_ctrl_ready(conn) || !conn->ctrl->get_dst)
Willy Tarreau986a9d22012-08-30 21:11:38 +0200773 return;
774
Willy Tarreau585744b2017-08-24 14:31:19 +0200775 if (conn->ctrl->get_dst(conn->handle.fd, (struct sockaddr *)&conn->addr.to,
Willy Tarreau3fdb3662012-11-12 00:42:33 +0100776 sizeof(conn->addr.to),
777 obj_type(conn->target) != OBJ_TYPE_LISTENER) == -1)
Willy Tarreau986a9d22012-08-30 21:11:38 +0200778 return;
779 conn->flags |= CO_FL_ADDR_TO_SET;
780}
781
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200782/* Attaches a conn_stream to a data layer and sets the relevant callbacks */
783static inline void cs_attach(struct conn_stream *cs, void *data, const struct data_cb *data_cb)
Willy Tarreaudda5e7c2012-09-24 17:15:42 +0200784{
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200785 cs->data_cb = data_cb;
786 cs->data = data;
Willy Tarreaubd99aab2012-10-02 20:57:19 +0200787}
788
Olivier Houchardfa8aa862018-10-10 18:25:41 +0200789static inline struct wait_event *wl_set_waitcb(struct wait_event *wl, struct task *(*cb)(struct task *, void *, unsigned short), void *ctx)
Willy Tarreau83188852018-07-18 08:18:20 +0200790{
791 if (!wl->task->process) {
792 wl->task->process = cb;
793 wl->task->context = ctx;
794 }
795 return wl;
796}
797
Willy Tarreau53a47662017-08-28 10:53:00 +0200798/* Installs the connection's mux layer for upper context <ctx>.
799 * Returns < 0 on error.
800 */
Willy Tarreau175a2bb2018-09-12 12:02:05 +0200801static inline int conn_install_mux(struct connection *conn, const struct mux_ops *mux,
802 void *ctx, struct proxy *prx)
Willy Tarreau53a47662017-08-28 10:53:00 +0200803{
804 conn->mux = mux;
805 conn->mux_ctx = ctx;
Willy Tarreau175a2bb2018-09-12 12:02:05 +0200806 return mux->init ? mux->init(conn, prx) : 0;
Willy Tarreau53a47662017-08-28 10:53:00 +0200807}
808
Willy Tarreau0af29122012-12-03 15:35:00 +0100809/* returns a human-readable error code for conn->err_code, or NULL if the code
810 * is unknown.
811 */
812static inline const char *conn_err_code_str(struct connection *c)
813{
814 switch (c->err_code) {
815 case CO_ER_NONE: return "Success";
Willy Tarreau45b34e82014-01-24 16:06:50 +0100816
817 case CO_ER_CONF_FDLIM: return "Reached configured maxconn value";
818 case CO_ER_PROC_FDLIM: return "Too many sockets on the process";
819 case CO_ER_SYS_FDLIM: return "Too many sockets on the system";
820 case CO_ER_SYS_MEMLIM: return "Out of system buffers";
821 case CO_ER_NOPROTO: return "Protocol or address family not supported";
822 case CO_ER_SOCK_ERR: return "General socket error";
823 case CO_ER_PORT_RANGE: return "Source port range exhausted";
824 case CO_ER_CANT_BIND: return "Can't bind to source address";
825 case CO_ER_FREE_PORTS: return "Out of local source ports on the system";
826 case CO_ER_ADDR_INUSE: return "Local source address already in use";
827
Willy Tarreau8e3bf692012-12-03 15:41:18 +0100828 case CO_ER_PRX_EMPTY: return "Connection closed while waiting for PROXY protocol header";
829 case CO_ER_PRX_ABORT: return "Connection error while waiting for PROXY protocol header";
Willy Tarreau0af29122012-12-03 15:35:00 +0100830 case CO_ER_PRX_TIMEOUT: return "Timeout while waiting for PROXY protocol header";
Willy Tarreau8e3bf692012-12-03 15:41:18 +0100831 case CO_ER_PRX_TRUNCATED: return "Truncated PROXY protocol header received";
832 case CO_ER_PRX_NOT_HDR: return "Received something which does not look like a PROXY protocol header";
833 case CO_ER_PRX_BAD_HDR: return "Received an invalid PROXY protocol header";
834 case CO_ER_PRX_BAD_PROTO: return "Received an unhandled protocol in the PROXY protocol header";
Bertrand Jacquin93b227d2016-06-04 15:11:10 +0100835
836 case CO_ER_CIP_EMPTY: return "Connection closed while waiting for NetScaler Client IP header";
837 case CO_ER_CIP_ABORT: return "Connection error while waiting for NetScaler Client IP header";
838 case CO_ER_CIP_TRUNCATED: return "Truncated NetScaler Client IP header received";
839 case CO_ER_CIP_BAD_MAGIC: return "Received an invalid NetScaler Client IP magic number";
840 case CO_ER_CIP_BAD_PROTO: return "Received an unhandled protocol in the NetScaler Client IP header";
841
Willy Tarreau20879a02012-12-03 16:32:10 +0100842 case CO_ER_SSL_EMPTY: return "Connection closed during SSL handshake";
843 case CO_ER_SSL_ABORT: return "Connection error during SSL handshake";
Willy Tarreau0af29122012-12-03 15:35:00 +0100844 case CO_ER_SSL_TIMEOUT: return "Timeout during SSL handshake";
Willy Tarreau20879a02012-12-03 16:32:10 +0100845 case CO_ER_SSL_TOO_MANY: return "Too many SSL connections";
846 case CO_ER_SSL_NO_MEM: return "Out of memory when initializing an SSL connection";
847 case CO_ER_SSL_RENEG: return "Rejected a client-initiated SSL renegociation attempt";
848 case CO_ER_SSL_CA_FAIL: return "SSL client CA chain cannot be verified";
849 case CO_ER_SSL_CRT_FAIL: return "SSL client certificate not trusted";
Willy Tarreau71d058c2017-07-26 20:09:56 +0200850 case CO_ER_SSL_MISMATCH: return "Server presented an SSL certificate different from the configured one";
851 case CO_ER_SSL_MISMATCH_SNI: return "Server presented an SSL certificate different from the expected one";
Willy Tarreau20879a02012-12-03 16:32:10 +0100852 case CO_ER_SSL_HANDSHAKE: return "SSL handshake failure";
Willy Tarreaub3966372014-04-25 18:54:29 +0200853 case CO_ER_SSL_HANDSHAKE_HB: return "SSL handshake failure after heartbeat";
Willy Tarreauf51c6982014-04-25 20:02:39 +0200854 case CO_ER_SSL_KILLED_HB: return "Stopped a TLSv1 heartbeat attack (CVE-2014-0160)";
Willy Tarreau830bf612013-12-01 20:29:58 +0100855 case CO_ER_SSL_NO_TARGET: return "Attempt to use SSL on an unknown target (internal error)";
Willy Tarreau0af29122012-12-03 15:35:00 +0100856 }
857 return NULL;
858}
859
Willy Tarreau2dc770c2016-11-23 18:00:08 +0100860static inline const char *conn_get_ctrl_name(const struct connection *conn)
861{
862 if (!conn_ctrl_ready(conn))
863 return "NONE";
864 return conn->ctrl->name;
865}
866
867static inline const char *conn_get_xprt_name(const struct connection *conn)
868{
Willy Tarreau2dc770c2016-11-23 18:00:08 +0100869 if (!conn_xprt_ready(conn))
870 return "NONE";
Willy Tarreau8e0bb0a2016-11-24 16:58:12 +0100871 return conn->xprt->name;
Willy Tarreau2dc770c2016-11-23 18:00:08 +0100872}
873
Willy Tarreau53a47662017-08-28 10:53:00 +0200874static inline const char *conn_get_mux_name(const struct connection *conn)
875{
876 if (!conn->mux)
877 return "NONE";
878 return conn->mux->name;
879}
880
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200881static inline const char *cs_get_data_name(const struct conn_stream *cs)
Willy Tarreau2dc770c2016-11-23 18:00:08 +0100882{
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200883 if (!cs->data_cb)
Willy Tarreau2dc770c2016-11-23 18:00:08 +0100884 return "NONE";
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200885 return cs->data_cb->name;
Willy Tarreau2dc770c2016-11-23 18:00:08 +0100886}
887
Willy Tarreau13e14102016-12-22 20:25:26 +0100888/* registers pointer to transport layer <id> (XPRT_*) */
889static inline void xprt_register(int id, struct xprt_ops *xprt)
890{
891 if (id >= XPRT_ENTRIES)
892 return;
893 registered_xprt[id] = xprt;
894}
895
896/* returns pointer to transport layer <id> (XPRT_*) or NULL if not registered */
897static inline struct xprt_ops *xprt_get(int id)
898{
899 if (id >= XPRT_ENTRIES)
900 return NULL;
901 return registered_xprt[id];
902}
Willy Tarreau2dc770c2016-11-23 18:00:08 +0100903
Willy Tarreaua9c17412016-12-04 18:42:09 +0100904static inline int conn_get_alpn(const struct connection *conn, const char **str, int *len)
905{
906 if (!conn_xprt_ready(conn) || !conn->xprt->get_alpn)
907 return 0;
908 return conn->xprt->get_alpn(conn, str, len);
909}
910
Christopher Faulet32f61c02018-04-10 14:33:41 +0200911/* registers proto mux list <list>. Modifies the list element! */
912static inline void register_mux_proto(struct mux_proto_list *list)
Willy Tarreau2386be62017-09-21 19:40:52 +0200913{
Christopher Faulet32f61c02018-04-10 14:33:41 +0200914 LIST_ADDQ(&mux_proto_list.list, &list->list);
Willy Tarreau2386be62017-09-21 19:40:52 +0200915}
916
Christopher Faulet32f61c02018-04-10 14:33:41 +0200917/* unregisters proto mux list <list> */
918static inline void unregister_mux_proto(struct mux_proto_list *list)
Willy Tarreau2386be62017-09-21 19:40:52 +0200919{
920 LIST_DEL(&list->list);
921 LIST_INIT(&list->list);
922}
923
Christopher Faulete15c6c42018-08-08 10:21:56 +0200924static inline struct mux_proto_list *get_mux_proto(const struct ist proto)
Christopher Faulet98d9fe22018-04-10 14:37:32 +0200925{
926 struct mux_proto_list *item;
Christopher Faulet98d9fe22018-04-10 14:37:32 +0200927
928 list_for_each_entry(item, &mux_proto_list.list, list) {
929 if (isteq(proto, item->token))
930 return item;
931 }
932 return NULL;
933}
934
935/* Lists the known proto mux on <out> */
936static inline void list_mux_proto(FILE *out)
937{
938 struct mux_proto_list *item;
939 struct ist proto;
940 char *mode, *side;
941
Christopher Faulet9c9ef032018-08-08 10:25:57 +0200942 fprintf(out, "Available multiplexer protocols :\n"
943 "(protocols markes as <default> cannot be specified using 'proto' keyword)\n");
Christopher Faulet98d9fe22018-04-10 14:37:32 +0200944 list_for_each_entry(item, &mux_proto_list.list, list) {
945 proto = item->token;
946
947 if (item->mode == PROTO_MODE_ANY)
948 mode = "TCP|HTTP";
949 else if (item->mode == PROTO_MODE_TCP)
950 mode = "TCP";
951 else if (item->mode == PROTO_MODE_HTTP)
952 mode = "HTTP";
953 else
954 mode = "NONE";
955
956 if (item->side == PROTO_SIDE_BOTH)
957 side = "FE|BE";
958 else if (item->side == PROTO_SIDE_FE)
959 side = "FE";
960 else if (item->side == PROTO_SIDE_BE)
961 side = "BE";
962 else
963 side = "NONE";
964
965 fprintf(out, " %15s : mode=%-10s side=%s\n",
Christopher Faulet9c9ef032018-08-08 10:25:57 +0200966 (proto.len ? proto.ptr : "<default>"), mode, side);
Christopher Faulet98d9fe22018-04-10 14:37:32 +0200967 }
968}
969
Christopher Faulet7ce0c892018-04-10 15:01:45 +0200970/* returns the first mux in the list matching the exact same <mux_proto> and
971 * compatible with the <proto_side> (FE or BE) and the <proto_mode> (TCP or
972 * HTTP). <mux_proto> can be empty. Will fall back to the first compatible mux
973 * with exactly the same <proto_mode> or with an empty name. May return
974 * null if the code improperly registered the default mux to use as a fallback.
Willy Tarreau2386be62017-09-21 19:40:52 +0200975 */
Christopher Faulet7ce0c892018-04-10 15:01:45 +0200976static inline const struct mux_ops *conn_get_best_mux(struct connection *conn,
977 const struct ist mux_proto,
978 int proto_side, int proto_mode)
Willy Tarreau2386be62017-09-21 19:40:52 +0200979{
Christopher Faulet32f61c02018-04-10 14:33:41 +0200980 struct mux_proto_list *item;
Christopher Faulet7ce0c892018-04-10 15:01:45 +0200981 struct mux_proto_list *fallback = NULL;
Willy Tarreau2386be62017-09-21 19:40:52 +0200982
Christopher Faulet32f61c02018-04-10 14:33:41 +0200983 list_for_each_entry(item, &mux_proto_list.list, list) {
Christopher Faulet7ce0c892018-04-10 15:01:45 +0200984 if (!(item->side & proto_side) || !(item->mode & proto_mode))
Willy Tarreau2386be62017-09-21 19:40:52 +0200985 continue;
Christopher Faulet7ce0c892018-04-10 15:01:45 +0200986 if (istlen(mux_proto) && isteq(mux_proto, item->token))
Willy Tarreau2386be62017-09-21 19:40:52 +0200987 return item->mux;
Christopher Faulet7ce0c892018-04-10 15:01:45 +0200988 else if (!istlen(item->token)) {
989 if (!fallback || (item->mode == proto_mode && fallback->mode != proto_mode))
990 fallback = item;
991 }
Willy Tarreau2386be62017-09-21 19:40:52 +0200992 }
Christopher Faulet7ce0c892018-04-10 15:01:45 +0200993 return (fallback ? fallback->mux : NULL);
994
Willy Tarreau2386be62017-09-21 19:40:52 +0200995}
996
Willy Tarreau57f81852018-09-06 14:52:21 +0200997/* returns 0 if the connection is valid and is a frontend connection, otherwise
998 * returns 1 indicating it's a backend connection. And uninitialized connection
999 * also returns 1 to better handle the usage in the middle of initialization.
1000 */
1001static inline int conn_is_back(const struct connection *conn)
1002{
1003 return !objt_listener(conn->target);
1004}
1005
Willy Tarreau6ac98ac2018-09-06 11:48:44 +02001006/* returns a pointer to the proxy associated with this connection. For a front
1007 * connection it returns a pointer to the frontend ; for a back connection, it
1008 * returns a pointer to the backend.
1009 */
1010static inline struct proxy *conn_get_proxy(const struct connection *conn)
1011{
1012 struct listener *l;
1013 struct server *s;
1014
1015 /* check if it's a frontend connection */
1016 l = objt_listener(conn->target);
1017 if (l)
1018 return l->bind_conf->frontend;
1019
1020 /* check if it's a backend connection */
1021 s = objt_server(conn->target);
1022 if (s)
1023 return s->proxy;
1024
1025 return objt_proxy(conn->target);
1026}
1027
Christopher Faulet7ce0c892018-04-10 15:01:45 +02001028/* installs the best mux for incoming connection <conn> using the upper context
1029 * <ctx>. If the mux protocol is forced, we use it to find the best
1030 * mux. Otherwise we use the ALPN name, if any. Returns < 0 on error.
Willy Tarreau2386be62017-09-21 19:40:52 +02001031 */
Christopher Faulet7ce0c892018-04-10 15:01:45 +02001032static inline int conn_install_mux_fe(struct connection *conn, void *ctx)
Willy Tarreau2386be62017-09-21 19:40:52 +02001033{
Willy Tarreau55e0da62018-09-20 11:26:52 +02001034 struct bind_conf *bind_conf = __objt_listener(conn->target)->bind_conf;
Christopher Faulet7ce0c892018-04-10 15:01:45 +02001035 const struct mux_ops *mux_ops;
Willy Tarreau2386be62017-09-21 19:40:52 +02001036
Christopher Faulet7ce0c892018-04-10 15:01:45 +02001037 if (bind_conf->mux_proto)
1038 mux_ops = bind_conf->mux_proto->mux;
1039 else {
1040 struct ist mux_proto;
1041 const char *alpn_str = NULL;
1042 int alpn_len = 0;
1043 int mode = (1 << (bind_conf->frontend->mode == PR_MODE_HTTP));
Willy Tarreau2386be62017-09-21 19:40:52 +02001044
Christopher Faulet7ce0c892018-04-10 15:01:45 +02001045 conn_get_alpn(conn, &alpn_str, &alpn_len);
1046 mux_proto = ist2(alpn_str, alpn_len);
1047 mux_ops = conn_get_best_mux(conn, mux_proto, PROTO_SIDE_FE, mode);
1048 if (!mux_ops)
1049 return -1;
1050 }
Willy Tarreau175a2bb2018-09-12 12:02:05 +02001051 return conn_install_mux(conn, mux_ops, ctx, bind_conf->frontend);
Willy Tarreau2386be62017-09-21 19:40:52 +02001052}
1053
Christopher Faulet7ce0c892018-04-10 15:01:45 +02001054/* installs the best mux for outgoing connection <conn> using the upper context
1055 * <ctx>. If the mux protocol is forced, we use it to find the best mux. Returns
Willy Tarreau2e0b2b52017-09-15 06:59:55 +02001056 * < 0 on error.
Willy Tarreau2386be62017-09-21 19:40:52 +02001057 */
Christopher Faulet7ce0c892018-04-10 15:01:45 +02001058static inline int conn_install_mux_be(struct connection *conn, void *ctx)
Willy Tarreau2386be62017-09-21 19:40:52 +02001059{
Christopher Faulet7ce0c892018-04-10 15:01:45 +02001060 struct server *srv = objt_server(conn->target);
Willy Tarreau287527a2018-08-08 18:40:44 +02001061 struct proxy *prx = objt_proxy(conn->target);
Willy Tarreau2386be62017-09-21 19:40:52 +02001062 const struct mux_ops *mux_ops;
1063
Willy Tarreau287527a2018-08-08 18:40:44 +02001064 if (srv)
1065 prx = srv->proxy;
1066
1067 if (!prx) // target must be either proxy or server
1068 return -1;
1069
1070 if (srv && srv->mux_proto)
Christopher Faulet7ce0c892018-04-10 15:01:45 +02001071 mux_ops = srv->mux_proto->mux;
1072 else {
1073 int mode;
1074
Willy Tarreau287527a2018-08-08 18:40:44 +02001075 mode = (1 << (prx->mode == PR_MODE_HTTP));
Christopher Faulet7ce0c892018-04-10 15:01:45 +02001076 mux_ops = conn_get_best_mux(conn, ist(NULL), PROTO_SIDE_BE, mode);
1077 if (!mux_ops)
1078 return -1;
1079 }
Willy Tarreau175a2bb2018-09-12 12:02:05 +02001080 return conn_install_mux(conn, mux_ops, ctx, prx);
Willy Tarreau2386be62017-09-21 19:40:52 +02001081}
1082
Willy Tarreau59f98392012-07-06 14:13:49 +02001083#endif /* _PROTO_CONNECTION_H */
1084
1085/*
1086 * Local variables:
1087 * c-indent-level: 8
1088 * c-basic-offset: 8
1089 * End:
1090 */