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Willy Tarreaubaaee002006-06-26 02:48:02 +02001/*
Willy Tarreau87b09662015-04-03 00:22:06 +02002 * Stream management functions.
Willy Tarreaubaaee002006-06-26 02:48:02 +02003 *
Willy Tarreaud28c3532012-04-19 19:28:33 +02004 * Copyright 2000-2012 Willy Tarreau <w@1wt.eu>
Willy Tarreaubaaee002006-06-26 02:48:02 +02005 *
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
13#include <stdlib.h>
Willy Tarreau81f9aa32010-06-01 17:45:26 +020014#include <unistd.h>
15#include <fcntl.h>
Willy Tarreaue3ba5f02006-06-29 18:54:54 +020016
17#include <common/config.h>
Willy Tarreau9b28e032012-10-12 23:49:43 +020018#include <common/buffer.h>
Willy Tarreau7c669d72008-06-20 15:04:11 +020019#include <common/debug.h>
Willy Tarreau2dd0d472006-06-29 17:53:05 +020020#include <common/memory.h>
Willy Tarreaubaaee002006-06-26 02:48:02 +020021
Willy Tarreaubaaee002006-06-26 02:48:02 +020022#include <types/capture.h>
Willy Tarreau55a8d0e2008-11-30 18:47:21 +010023#include <types/global.h>
Willy Tarreaubaaee002006-06-26 02:48:02 +020024
Willy Tarreau1d0dfb12009-07-07 15:10:31 +020025#include <proto/acl.h>
Willy Tarreau61612d42012-04-19 18:42:05 +020026#include <proto/arg.h>
Willy Tarreau55a8d0e2008-11-30 18:47:21 +010027#include <proto/backend.h>
Willy Tarreauc7e42382012-08-24 19:22:53 +020028#include <proto/channel.h>
Krzysztof Piotr Oledzki97f07b82009-12-15 22:31:24 +010029#include <proto/checks.h>
Willy Tarreaud2274c62012-07-06 14:29:45 +020030#include <proto/connection.h>
Willy Tarreau5ca791d2009-08-16 19:06:42 +020031#include <proto/dumpstats.h>
Willy Tarreaudd2f85e2012-09-02 22:34:23 +020032#include <proto/fd.h>
Willy Tarreau91c43d72010-06-20 11:19:22 +020033#include <proto/freq_ctr.h>
Willy Tarreau3041b9f2010-10-15 23:25:20 +020034#include <proto/frontend.h>
Willy Tarreau8d5d7f22007-01-21 19:16:41 +010035#include <proto/hdr_idx.h>
Thierry FOURNIER65f34c62015-02-16 20:11:43 +010036#include <proto/hlua.h>
Willy Tarreaud1d54542012-09-12 22:58:11 +020037#include <proto/listener.h>
Willy Tarreau332f8bf2007-05-13 21:36:56 +020038#include <proto/log.h>
Willy Tarreaucbaaec42012-09-06 11:32:07 +020039#include <proto/raw_sock.h>
Willy Tarreaufeb76402015-04-03 14:10:06 +020040#include <proto/session.h>
Willy Tarreau87b09662015-04-03 00:22:06 +020041#include <proto/stream.h>
Willy Tarreau3eba98a2009-01-25 13:56:13 +010042#include <proto/pipe.h>
Willy Tarreau55a8d0e2008-11-30 18:47:21 +010043#include <proto/proto_http.h>
44#include <proto/proto_tcp.h>
Willy Tarreau1d0dfb12009-07-07 15:10:31 +020045#include <proto/proxy.h>
Willy Tarreaubaaee002006-06-26 02:48:02 +020046#include <proto/queue.h>
Willy Tarreau7f062c42009-03-05 18:43:00 +010047#include <proto/server.h>
Willy Tarreaucd3b0942012-04-27 21:52:18 +020048#include <proto/sample.h>
Emeric Brun1d33b292010-01-04 15:47:17 +010049#include <proto/stick_table.h>
Willy Tarreau55a8d0e2008-11-30 18:47:21 +010050#include <proto/stream_interface.h>
Willy Tarreau55a8d0e2008-11-30 18:47:21 +010051#include <proto/task.h>
Willy Tarreaubaaee002006-06-26 02:48:02 +020052
Willy Tarreau87b09662015-04-03 00:22:06 +020053struct pool_head *pool2_stream;
54struct list streams;
Willy Tarreaubaaee002006-06-26 02:48:02 +020055
Willy Tarreau87b09662015-04-03 00:22:06 +020056/* list of streams waiting for at least one buffer */
Willy Tarreaubf883e02014-11-25 21:10:35 +010057struct list buffer_wq = LIST_HEAD_INIT(buffer_wq);
58
Willy Tarreau87b09662015-04-03 00:22:06 +020059static int conn_stream_complete(struct connection *conn);
60static int conn_stream_update(struct connection *conn);
Willy Tarreau2542b532012-08-31 16:01:23 +020061static struct task *expire_mini_session(struct task *t);
Willy Tarreau87b09662015-04-03 00:22:06 +020062int stream_complete(struct stream *s);
Willy Tarreau2542b532012-08-31 16:01:23 +020063
Willy Tarreau87b09662015-04-03 00:22:06 +020064/* data layer callbacks for an embryonic stream */
Willy Tarreau5e75e272012-10-02 21:21:20 +020065struct data_cb sess_conn_cb = {
66 .recv = NULL,
67 .send = NULL,
Willy Tarreau87b09662015-04-03 00:22:06 +020068 .wake = conn_stream_update,
69 .init = conn_stream_complete,
Willy Tarreau5e75e272012-10-02 21:21:20 +020070};
71
Willy Tarreau2542b532012-08-31 16:01:23 +020072/* This function is called from the protocol layer accept() in order to
Willy Tarreau87b09662015-04-03 00:22:06 +020073 * instanciate a new embryonic stream on behalf of a given listener and
Willy Tarreau2542b532012-08-31 16:01:23 +020074 * frontend. It returns a positive value upon success, 0 if the connection
75 * can be ignored, or a negative value upon critical failure. The accepted
76 * file descriptor is closed if we return <= 0.
Willy Tarreau81f9aa32010-06-01 17:45:26 +020077 */
Willy Tarreau87b09662015-04-03 00:22:06 +020078int stream_accept(struct listener *l, int cfd, struct sockaddr_storage *addr)
Willy Tarreau81f9aa32010-06-01 17:45:26 +020079{
Willy Tarreaub363a1f2013-10-01 10:45:07 +020080 struct connection *cli_conn;
Willy Tarreau81f9aa32010-06-01 17:45:26 +020081 struct proxy *p = l->frontend;
Willy Tarreau87b09662015-04-03 00:22:06 +020082 struct stream *s;
Willy Tarreau81f9aa32010-06-01 17:45:26 +020083 struct task *t;
Willy Tarreauabe8ea52010-11-11 10:56:04 +010084 int ret;
85
86
87 ret = -1; /* assume unrecoverable error by default */
Willy Tarreau81f9aa32010-06-01 17:45:26 +020088
Willy Tarreau32e3c6a2013-10-11 19:34:20 +020089 if (unlikely((cli_conn = conn_new()) == NULL))
Willy Tarreau81f9aa32010-06-01 17:45:26 +020090 goto out_close;
Willy Tarreau81f9aa32010-06-01 17:45:26 +020091
Willy Tarreau32e3c6a2013-10-11 19:34:20 +020092 conn_prepare(cli_conn, l->proto, l->xprt);
Willy Tarreauf2943dc2012-10-26 20:10:28 +020093
Willy Tarreau32e3c6a2013-10-11 19:34:20 +020094 cli_conn->t.sock.fd = cfd;
95 cli_conn->addr.from = *addr;
96 cli_conn->flags |= CO_FL_ADDR_FROM_SET;
97 cli_conn->target = &l->obj_type;
KOVACS Krisztianb3e54fe2014-11-17 15:11:45 +010098 cli_conn->proxy_netns = l->netns;
Willy Tarreau32e3c6a2013-10-11 19:34:20 +020099
Willy Tarreau87b09662015-04-03 00:22:06 +0200100 if (unlikely((s = pool_alloc2(pool2_stream)) == NULL))
Willy Tarreau32e3c6a2013-10-11 19:34:20 +0200101 goto out_free_conn;
Willy Tarreauf2943dc2012-10-26 20:10:28 +0200102
Willy Tarreau87b09662015-04-03 00:22:06 +0200103 /* minimum stream initialization required for an embryonic stream is
Willy Tarreau2542b532012-08-31 16:01:23 +0200104 * fairly low. We need very little to execute L4 ACLs, then we need a
105 * task to make the client-side connection live on its own.
106 * - flags
107 * - stick-entry tracking
108 */
Willy Tarreau81f9aa32010-06-01 17:45:26 +0200109 s->flags = 0;
110 s->logs.logwait = p->to_log;
Willy Tarreau9a355ec2013-06-11 17:45:46 +0200111 s->logs.level = 0;
Willy Tarreaud5ca9ab2013-05-28 17:40:25 +0200112
Thierry FOURNIERbc4c1ac2015-02-25 13:36:14 +0100113 /* Initialise the current rule list pointer to NULL. We are sure that
114 * any rulelist match the NULL pointer.
115 */
116 s->current_rule_list = NULL;
117
Willy Tarreaud5ca9ab2013-05-28 17:40:25 +0200118 memset(s->stkctr, 0, sizeof(s->stkctr));
Willy Tarreau81f9aa32010-06-01 17:45:26 +0200119
Willy Tarreaufeb76402015-04-03 14:10:06 +0200120 s->sess = pool_alloc2(pool2_session);
121 if (!s->sess)
122 goto out_free_stream;
123
Willy Tarreaufb0afa72015-04-03 14:46:27 +0200124 s->sess->listener = l;
Willy Tarreaue36cbcb2015-04-03 15:40:56 +0200125 s->sess->fe = p;
Willy Tarreau40606ab2015-04-03 18:08:29 +0200126 s->sess->origin = &cli_conn->obj_type;
Willy Tarreauabe8ea52010-11-11 10:56:04 +0100127
Willy Tarreaua5f5d8d2014-11-28 11:26:07 +0100128 s->si[0].flags = SI_FL_NONE;
129 s->si[1].flags = SI_FL_ISBACK;
130
Willy Tarreauf8a49ea2013-10-14 21:32:07 +0200131 /* On a mini-session, the connection is directly attached to the
Willy Tarreau87b09662015-04-03 00:22:06 +0200132 * stream's target so that we don't need to initialize the stream
Willy Tarreauf8a49ea2013-10-14 21:32:07 +0200133 * interfaces. Another benefit is that it's easy to detect a mini-
Willy Tarreau87b09662015-04-03 00:22:06 +0200134 * stream in dumps using this : it's the only one which has a
Willy Tarreauf8a49ea2013-10-14 21:32:07 +0200135 * connection in s->target.
136 */
137 s->target = &cli_conn->obj_type;
138
Willy Tarreau81f9aa32010-06-01 17:45:26 +0200139 s->logs.accept_date = date; /* user-visible date for logging */
140 s->logs.tv_accept = now; /* corrected date for internal use */
Willy Tarreau1f0da242014-01-25 11:01:50 +0100141 s->uniq_id = global.req_count++;
Willy Tarreau2542b532012-08-31 16:01:23 +0200142 p->feconn++;
Willy Tarreau87b09662015-04-03 00:22:06 +0200143 /* This stream was accepted, count it now */
Willy Tarreau2542b532012-08-31 16:01:23 +0200144 if (p->feconn > p->fe_counters.conn_max)
145 p->fe_counters.conn_max = p->feconn;
Willy Tarreau81f9aa32010-06-01 17:45:26 +0200146
Willy Tarreau2542b532012-08-31 16:01:23 +0200147 proxy_inc_fe_conn_ctr(l, p);
Willy Tarreau81f9aa32010-06-01 17:45:26 +0200148
Willy Tarreau59e3ff42013-12-16 02:16:50 +0100149 /* Add the minimum callbacks to prepare the connection's control layer.
150 * We need this so that we can safely execute the ACLs used by the
151 * "tcp-request connection" ruleset. We also carefully attach the
152 * connection to the stream interface without initializing the rest,
153 * so that ACLs can use si[0]->end.
154 */
155 si_attach_conn(&s->si[0], cli_conn);
156 conn_attach(cli_conn, s, &sess_conn_cb);
157 conn_ctrl_init(cli_conn);
158
Willy Tarreau2cff2f72013-12-16 10:12:54 +0100159 /* now evaluate the tcp-request layer4 rules. Since we expect to be able
160 * to abort right here as soon as possible, we check the rules before
161 * even initializing the stream interfaces.
162 */
Willy Tarreau81f9aa32010-06-01 17:45:26 +0200163 if ((l->options & LI_O_TCP_RULES) && !tcp_exec_req_rules(s)) {
Willy Tarreau81f9aa32010-06-01 17:45:26 +0200164 /* let's do a no-linger now to close with a single RST. */
165 setsockopt(cfd, SOL_SOCKET, SO_LINGER, (struct linger *) &nolinger, sizeof(struct linger));
Willy Tarreauabe8ea52010-11-11 10:56:04 +0100166 ret = 0; /* successful termination */
Willy Tarreau2542b532012-08-31 16:01:23 +0200167 goto out_free_session;
168 }
169
Willy Tarreau82569f92012-09-27 23:48:56 +0200170 /* monitor-net and health mode are processed immediately after TCP
171 * connection rules. This way it's possible to block them, but they
172 * never use the lower data layers, they send directly over the socket,
173 * as they were designed for. We first flush the socket receive buffer
174 * in order to avoid emission of an RST by the system. We ignore any
175 * error.
176 */
177 if (unlikely((p->mode == PR_MODE_HEALTH) ||
178 ((l->options & LI_O_CHK_MONNET) &&
179 addr->ss_family == AF_INET &&
180 (((struct sockaddr_in *)addr)->sin_addr.s_addr & p->mon_mask.s_addr) == p->mon_net.s_addr))) {
181 /* we have 4 possibilities here :
182 * - HTTP mode, from monitoring address => send "HTTP/1.0 200 OK"
183 * - HEALTH mode with HTTP check => send "HTTP/1.0 200 OK"
184 * - HEALTH mode without HTTP check => just send "OK"
185 * - TCP mode from monitoring address => just close
186 */
Willy Tarreau2b57cb82013-06-10 19:56:38 +0200187 if (l->proto->drain)
188 l->proto->drain(cfd);
Willy Tarreau82569f92012-09-27 23:48:56 +0200189 if (p->mode == PR_MODE_HTTP ||
190 (p->mode == PR_MODE_HEALTH && (p->options2 & PR_O2_CHK_ANY) == PR_O2_HTTP_CHK))
191 send(cfd, "HTTP/1.0 200 OK\r\n\r\n", 19, MSG_DONTWAIT|MSG_NOSIGNAL|MSG_MORE);
192 else if (p->mode == PR_MODE_HEALTH)
193 send(cfd, "OK\n", 3, MSG_DONTWAIT|MSG_NOSIGNAL|MSG_MORE);
194 ret = 0;
195 goto out_free_session;
196 }
197
Willy Tarreau22cda212012-08-31 17:43:29 +0200198 /* wait for a PROXY protocol header */
199 if (l->options & LI_O_ACC_PROXY) {
Willy Tarreaub363a1f2013-10-01 10:45:07 +0200200 cli_conn->flags |= CO_FL_ACCEPT_PROXY;
201 conn_sock_want_recv(cli_conn);
Willy Tarreau22cda212012-08-31 17:43:29 +0200202 }
203
Willy Tarreau2542b532012-08-31 16:01:23 +0200204 if (unlikely((t = task_new()) == NULL))
205 goto out_free_session;
206
207 t->context = s;
208 t->nice = l->nice;
209 s->task = t;
210
Willy Tarreau59e3ff42013-12-16 02:16:50 +0100211 /* Finish setting the callbacks. Right now the transport layer is present
Willy Tarreauf7bc57c2012-10-03 00:19:48 +0200212 * but not initialized. Also note we need to be careful as the stream
213 * int is not initialized yet.
Willy Tarreau2542b532012-08-31 16:01:23 +0200214 */
Willy Tarreaub363a1f2013-10-01 10:45:07 +0200215 conn_data_want_recv(cli_conn);
216 if (conn_xprt_init(cli_conn) < 0)
Willy Tarreauabe8ea52010-11-11 10:56:04 +0100217 goto out_free_task;
Willy Tarreau2542b532012-08-31 16:01:23 +0200218
219 /* OK, now either we have a pending handshake to execute with and
220 * then we must return to the I/O layer, or we can proceed with the
Willy Tarreau87b09662015-04-03 00:22:06 +0200221 * end of the stream initialization. In case of handshake, we also
Willy Tarreau2542b532012-08-31 16:01:23 +0200222 * set the I/O timeout to the frontend's client timeout.
223 */
224
Willy Tarreaub363a1f2013-10-01 10:45:07 +0200225 if (cli_conn->flags & CO_FL_HANDSHAKE) {
Willy Tarreau2542b532012-08-31 16:01:23 +0200226 t->process = expire_mini_session;
227 t->expire = tick_add_ifset(now_ms, p->timeout.client);
228 task_queue(t);
Willy Tarreaub363a1f2013-10-01 10:45:07 +0200229 cli_conn->flags |= CO_FL_INIT_DATA | CO_FL_WAKE_DATA;
Willy Tarreau2542b532012-08-31 16:01:23 +0200230 return 1;
Willy Tarreau81f9aa32010-06-01 17:45:26 +0200231 }
232
Willy Tarreau87b09662015-04-03 00:22:06 +0200233 /* OK let's complete stream initialization since there is no handshake */
Willy Tarreaub363a1f2013-10-01 10:45:07 +0200234 cli_conn->flags |= CO_FL_CONNECTED;
Willy Tarreau87b09662015-04-03 00:22:06 +0200235 ret = stream_complete(s);
Willy Tarreau2542b532012-08-31 16:01:23 +0200236 if (ret > 0)
237 return ret;
238
239 /* Error unrolling */
240 out_free_task:
241 task_free(t);
242 out_free_session:
Willy Tarreaufeb76402015-04-03 14:10:06 +0200243 pool_free2(pool2_session, s->sess);
244 out_free_stream:
Willy Tarreau2542b532012-08-31 16:01:23 +0200245 p->feconn--;
Willy Tarreau87b09662015-04-03 00:22:06 +0200246 stream_store_counters(s);
247 pool_free2(pool2_stream, s);
Willy Tarreau32e3c6a2013-10-11 19:34:20 +0200248 out_free_conn:
249 cli_conn->flags &= ~CO_FL_XPRT_TRACKED;
250 conn_xprt_close(cli_conn);
251 conn_free(cli_conn);
Willy Tarreau2542b532012-08-31 16:01:23 +0200252 out_close:
Willy Tarreauf7bc57c2012-10-03 00:19:48 +0200253 if (ret < 0 && l->xprt == &raw_sock && p->mode == PR_MODE_HTTP) {
Willy Tarreau2542b532012-08-31 16:01:23 +0200254 /* critical error, no more memory, try to emit a 500 response */
Willy Tarreau05bf5e12013-10-20 23:10:28 +0200255 struct chunk *err_msg = &p->errmsg[HTTP_ERR_500];
256 if (!err_msg->str)
257 err_msg = &http_err_chunks[HTTP_ERR_500];
Willy Tarreau2542b532012-08-31 16:01:23 +0200258 send(cfd, err_msg->str, err_msg->len, MSG_DONTWAIT|MSG_NOSIGNAL);
259 }
260
261 if (fdtab[cfd].owner)
262 fd_delete(cfd);
263 else
264 close(cfd);
265 return ret;
266}
Willy Tarreauabe8ea52010-11-11 10:56:04 +0100267
Willy Tarreau0af29122012-12-03 15:35:00 +0100268
Willy Tarreau87b09662015-04-03 00:22:06 +0200269/* prepare the trash with a log prefix for stream <s>. It only works with
270 * embryonic streams based on a real connection. This function requires that
Willy Tarreaub4f98092014-05-08 21:06:11 +0200271 * at s->target still points to the incoming connection.
Willy Tarreaub363a1f2013-10-01 10:45:07 +0200272 */
Willy Tarreau87b09662015-04-03 00:22:06 +0200273static void prepare_mini_sess_log_prefix(struct stream *s)
Willy Tarreau0af29122012-12-03 15:35:00 +0100274{
275 struct tm tm;
276 char pn[INET6_ADDRSTRLEN];
277 int ret;
278 char *end;
Willy Tarreaufb0afa72015-04-03 14:46:27 +0200279 struct session *sess = s->sess;
Willy Tarreauf8a49ea2013-10-14 21:32:07 +0200280 struct connection *cli_conn = __objt_conn(s->target);
Willy Tarreau0af29122012-12-03 15:35:00 +0100281
Willy Tarreaub363a1f2013-10-01 10:45:07 +0200282 ret = addr_to_str(&cli_conn->addr.from, pn, sizeof(pn));
Willy Tarreau0af29122012-12-03 15:35:00 +0100283 if (ret <= 0)
284 chunk_printf(&trash, "unknown [");
285 else if (ret == AF_UNIX)
Willy Tarreaufb0afa72015-04-03 14:46:27 +0200286 chunk_printf(&trash, "%s:%d [", pn, sess->listener->luid);
Willy Tarreau0af29122012-12-03 15:35:00 +0100287 else
Willy Tarreaub363a1f2013-10-01 10:45:07 +0200288 chunk_printf(&trash, "%s:%d [", pn, get_host_port(&cli_conn->addr.from));
Willy Tarreau0af29122012-12-03 15:35:00 +0100289
290 get_localtime(s->logs.accept_date.tv_sec, &tm);
291 end = date2str_log(trash.str + trash.len, &tm, &(s->logs.accept_date), trash.size - trash.len);
292 trash.len = end - trash.str;
Willy Tarreaufb0afa72015-04-03 14:46:27 +0200293 if (sess->listener->name)
Willy Tarreaue36cbcb2015-04-03 15:40:56 +0200294 chunk_appendf(&trash, "] %s/%s", sess->fe->id, sess->listener->name);
Willy Tarreau0af29122012-12-03 15:35:00 +0100295 else
Willy Tarreaue36cbcb2015-04-03 15:40:56 +0200296 chunk_appendf(&trash, "] %s/%d", sess->fe->id, sess->listener->luid);
Willy Tarreau0af29122012-12-03 15:35:00 +0100297}
298
Willy Tarreau87b09662015-04-03 00:22:06 +0200299/* This function kills an existing embryonic stream. It stops the connection's
Willy Tarreauf7bc57c2012-10-03 00:19:48 +0200300 * transport layer, releases assigned resources, resumes the listener if it was
Willy Tarreaub4f98092014-05-08 21:06:11 +0200301 * disabled and finally kills the file descriptor. This function requires that
302 * at s->target still points to the incoming connection.
Willy Tarreau2542b532012-08-31 16:01:23 +0200303 */
Willy Tarreau87b09662015-04-03 00:22:06 +0200304static void kill_mini_session(struct stream *s)
Willy Tarreau2542b532012-08-31 16:01:23 +0200305{
Willy Tarreau0af29122012-12-03 15:35:00 +0100306 int level = LOG_INFO;
Willy Tarreaufb0afa72015-04-03 14:46:27 +0200307 struct session *sess = s->sess;
Willy Tarreauf8a49ea2013-10-14 21:32:07 +0200308 struct connection *conn = __objt_conn(s->target);
Willy Tarreau0af29122012-12-03 15:35:00 +0100309 unsigned int log = s->logs.logwait;
310 const char *err_msg;
311
Willy Tarreaue36cbcb2015-04-03 15:40:56 +0200312 if (sess->fe->options2 & PR_O2_LOGERRORS)
Willy Tarreau0af29122012-12-03 15:35:00 +0100313 level = LOG_ERR;
314
Willy Tarreaue36cbcb2015-04-03 15:40:56 +0200315 if (log && (sess->fe->options & PR_O_NULLNOLOG)) {
Willy Tarreau0af29122012-12-03 15:35:00 +0100316 /* with "option dontlognull", we don't log connections with no transfer */
Willy Tarreau8e3bf692012-12-03 15:41:18 +0100317 if (!conn->err_code ||
Willy Tarreau20879a02012-12-03 16:32:10 +0100318 conn->err_code == CO_ER_PRX_EMPTY || conn->err_code == CO_ER_PRX_ABORT ||
319 conn->err_code == CO_ER_SSL_EMPTY || conn->err_code == CO_ER_SSL_ABORT)
Willy Tarreau0af29122012-12-03 15:35:00 +0100320 log = 0;
321 }
322
323 if (log) {
324 if (!conn->err_code && (s->task->state & TASK_WOKEN_TIMER)) {
325 if (conn->flags & CO_FL_ACCEPT_PROXY)
326 conn->err_code = CO_ER_PRX_TIMEOUT;
327 else if (conn->flags & CO_FL_SSL_WAIT_HS)
328 conn->err_code = CO_ER_SSL_TIMEOUT;
329 }
330
331 prepare_mini_sess_log_prefix(s);
332 err_msg = conn_err_code_str(conn);
333 if (err_msg)
Willy Tarreaue36cbcb2015-04-03 15:40:56 +0200334 send_log(sess->fe, level, "%s: %s\n", trash.str, err_msg);
Willy Tarreau0af29122012-12-03 15:35:00 +0100335 else
Willy Tarreaue36cbcb2015-04-03 15:40:56 +0200336 send_log(sess->fe, level, "%s: unknown connection error (code=%d flags=%08x)\n",
Willy Tarreau0af29122012-12-03 15:35:00 +0100337 trash.str, conn->err_code, conn->flags);
338 }
339
Willy Tarreau2542b532012-08-31 16:01:23 +0200340 /* kill the connection now */
Willy Tarreauf79c8172013-10-21 16:30:56 +0200341 conn_force_close(conn);
Willy Tarreaua23ee3a2014-02-05 00:18:47 +0100342 conn_free(conn);
Willy Tarreau2542b532012-08-31 16:01:23 +0200343
Willy Tarreaue36cbcb2015-04-03 15:40:56 +0200344 sess->fe->feconn--;
Willy Tarreau87b09662015-04-03 00:22:06 +0200345 stream_store_counters(s);
Willy Tarreau2542b532012-08-31 16:01:23 +0200346
Willy Tarreaufb0afa72015-04-03 14:46:27 +0200347 if (!(sess->listener->options & LI_O_UNLIMITED))
Willy Tarreau2542b532012-08-31 16:01:23 +0200348 actconn--;
349 jobs--;
Willy Tarreaufb0afa72015-04-03 14:46:27 +0200350 sess->listener->nbconn--;
351 if (sess->listener->state == LI_FULL)
352 resume_listener(sess->listener);
Willy Tarreau2542b532012-08-31 16:01:23 +0200353
354 /* Dequeues all of the listeners waiting for a resource */
355 if (!LIST_ISEMPTY(&global_listener_queue))
356 dequeue_all_listeners(&global_listener_queue);
357
Willy Tarreaue36cbcb2015-04-03 15:40:56 +0200358 if (!LIST_ISEMPTY(&sess->fe->listener_queue) &&
359 (!sess->fe->fe_sps_lim || freq_ctr_remain(&sess->fe->fe_sess_per_sec, sess->fe->fe_sps_lim, 0) > 0))
360 dequeue_all_listeners(&sess->fe->listener_queue);
Willy Tarreau2542b532012-08-31 16:01:23 +0200361
362 task_delete(s->task);
363 task_free(s->task);
Willy Tarreaufeb76402015-04-03 14:10:06 +0200364 /* FIXME: for now we have a 1:1 relation between stream and session so
365 * the stream must free the session.
366 */
367 pool_free2(pool2_session, s->sess);
Willy Tarreau87b09662015-04-03 00:22:06 +0200368 pool_free2(pool2_stream, s);
Willy Tarreau2542b532012-08-31 16:01:23 +0200369}
370
Willy Tarreau87b09662015-04-03 00:22:06 +0200371/* Finish initializing a stream from a connection, or kills it if the
Willy Tarreau22cda212012-08-31 17:43:29 +0200372 * connection shows and error. Returns <0 if the connection was killed.
Willy Tarreau2542b532012-08-31 16:01:23 +0200373 */
Willy Tarreau87b09662015-04-03 00:22:06 +0200374static int conn_stream_complete(struct connection *conn)
Willy Tarreau2542b532012-08-31 16:01:23 +0200375{
Willy Tarreau87b09662015-04-03 00:22:06 +0200376 struct stream *s = conn->owner;
Willy Tarreau2542b532012-08-31 16:01:23 +0200377
Willy Tarreau87b09662015-04-03 00:22:06 +0200378 if (!(conn->flags & CO_FL_ERROR) && (stream_complete(s) > 0)) {
Willy Tarreau071e1372012-10-03 01:39:48 +0200379 conn->flags &= ~CO_FL_INIT_DATA;
Willy Tarreau2542b532012-08-31 16:01:23 +0200380 return 0;
381 }
382
383 /* kill the connection now */
384 kill_mini_session(s);
385 return -1;
386}
387
Willy Tarreau87b09662015-04-03 00:22:06 +0200388/* Update an embryonic stream status. The connection is killed in case of
Willy Tarreau9683e9a2012-10-03 21:17:23 +0200389 * error, and <0 will be returned. Otherwise it does nothing.
390 */
Willy Tarreau87b09662015-04-03 00:22:06 +0200391static int conn_stream_update(struct connection *conn)
Willy Tarreau9683e9a2012-10-03 21:17:23 +0200392{
393 if (conn->flags & CO_FL_ERROR) {
394 kill_mini_session(conn->owner);
395 return -1;
396 }
397 return 0;
398}
399
Willy Tarreau87b09662015-04-03 00:22:06 +0200400/* Manages embryonic streams timeout. It is only called when the timeout
Willy Tarreau2542b532012-08-31 16:01:23 +0200401 * strikes and performs the required cleanup.
402 */
403static struct task *expire_mini_session(struct task *t)
404{
Willy Tarreau87b09662015-04-03 00:22:06 +0200405 struct stream *s = t->context;
Willy Tarreau2542b532012-08-31 16:01:23 +0200406
407 if (!(t->state & TASK_WOKEN_TIMER))
408 return t;
409
410 kill_mini_session(s);
411 return NULL;
412}
413
414/* This function is called from the I/O handler which detects the end of
Willy Tarreau87b09662015-04-03 00:22:06 +0200415 * handshake, in order to complete initialization of a valid stream. It must
416 * be called with an embryonic stream. It returns a positive value upon
Willy Tarreau2542b532012-08-31 16:01:23 +0200417 * success, 0 if the connection can be ignored, or a negative value upon
418 * critical failure. The accepted file descriptor is closed if we return <= 0.
Willy Tarreaub4f98092014-05-08 21:06:11 +0200419 * The client-side end point is assumed to be a connection, whose pointer is
420 * taken from s->target which is assumed to be valid. If the function fails,
421 * it restores s->target.
Willy Tarreau2542b532012-08-31 16:01:23 +0200422 */
Willy Tarreau87b09662015-04-03 00:22:06 +0200423int stream_complete(struct stream *s)
Willy Tarreau2542b532012-08-31 16:01:23 +0200424{
Willy Tarreaufb0afa72015-04-03 14:46:27 +0200425 struct session *sess = s->sess;
426 struct listener *l = sess->listener;
Willy Tarreaue36cbcb2015-04-03 15:40:56 +0200427 struct proxy *p = sess->fe;
Willy Tarreau2542b532012-08-31 16:01:23 +0200428 struct http_txn *txn;
429 struct task *t = s->task;
Willy Tarreauf8a49ea2013-10-14 21:32:07 +0200430 struct connection *conn = __objt_conn(s->target);
Willy Tarreau2542b532012-08-31 16:01:23 +0200431 int ret;
Willy Tarreau20d46a52012-12-09 15:55:40 +0100432 int i;
Willy Tarreau2542b532012-08-31 16:01:23 +0200433
434 ret = -1; /* assume unrecoverable error by default */
435
Willy Tarreau87b09662015-04-03 00:22:06 +0200436 /* OK, we're keeping the stream, so let's properly initialize the stream */
437 LIST_ADDQ(&streams, &s->list);
Willy Tarreau2542b532012-08-31 16:01:23 +0200438 LIST_INIT(&s->back_refs);
Willy Tarreaubf883e02014-11-25 21:10:35 +0100439 LIST_INIT(&s->buffer_wait);
Willy Tarreauf8a49ea2013-10-14 21:32:07 +0200440
Willy Tarreaue7dff022015-04-03 01:14:29 +0200441 s->flags |= SF_INITIALIZED;
Willy Tarreau2542b532012-08-31 16:01:23 +0200442 s->unique_id = NULL;
Willy Tarreau2542b532012-08-31 16:01:23 +0200443
444 t->process = l->handler;
445 t->context = s;
446 t->expire = TICK_ETERNITY;
447
Willy Tarreau87b09662015-04-03 00:22:06 +0200448 /* Note: initially, the stream's backend points to the frontend.
Willy Tarreau2542b532012-08-31 16:01:23 +0200449 * This changes later when switching rules are executed or
450 * when the default backend is assigned.
451 */
Willy Tarreaue36cbcb2015-04-03 15:40:56 +0200452 s->be = sess->fe;
William Lallemand82fe75c2012-10-23 10:25:10 +0200453 s->comp_algo = NULL;
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100454 s->req.buf = s->res.buf = NULL;
Willy Tarreau2542b532012-08-31 16:01:23 +0200455
Willy Tarreau87b09662015-04-03 00:22:06 +0200456 /* Let's count a stream now */
Willy Tarreaub36b4242010-06-04 20:59:39 +0200457 proxy_inc_fe_sess_ctr(l, p);
Willy Tarreau91c43d72010-06-20 11:19:22 +0200458
Willy Tarreaub4c84932013-07-23 19:15:30 +0200459 for (i = 0; i < MAX_SESS_STKCTR; i++) {
Willy Tarreau9e9879a2010-08-06 15:25:22 +0200460 void *ptr;
461
Willy Tarreaucc08d2c2014-01-28 23:18:23 +0100462 if (!stkctr_entry(&s->stkctr[i]))
Willy Tarreau20d46a52012-12-09 15:55:40 +0100463 continue;
464
Willy Tarreaucc08d2c2014-01-28 23:18:23 +0100465 ptr = stktable_data_ptr(s->stkctr[i].table, stkctr_entry(&s->stkctr[i]), STKTABLE_DT_SESS_CNT);
Willy Tarreau9e9879a2010-08-06 15:25:22 +0200466 if (ptr)
467 stktable_data_cast(ptr, sess_cnt)++;
468
Willy Tarreaucc08d2c2014-01-28 23:18:23 +0100469 ptr = stktable_data_ptr(s->stkctr[i].table, stkctr_entry(&s->stkctr[i]), STKTABLE_DT_SESS_RATE);
Willy Tarreau9e9879a2010-08-06 15:25:22 +0200470 if (ptr)
471 update_freq_ctr_period(&stktable_data_cast(ptr, sess_rate),
Willy Tarreau20d46a52012-12-09 15:55:40 +0100472 s->stkctr[i].table->data_arg[STKTABLE_DT_SESS_RATE].u, 1);
Willy Tarreau9e9879a2010-08-06 15:25:22 +0200473 }
474
Willy Tarreau32e3c6a2013-10-11 19:34:20 +0200475 /* this part should be common with other protocols */
Willy Tarreau819d3322014-11-28 12:12:34 +0100476 si_reset(&s->si[0]);
Willy Tarreau32e3c6a2013-10-11 19:34:20 +0200477 si_set_state(&s->si[0], SI_ST_EST);
478
Willy Tarreaub4f98092014-05-08 21:06:11 +0200479 /* attach the incoming connection to the stream interface now.
480 * We must do that *before* clearing ->target because we need
481 * to keep a pointer to the connection in case we have to call
482 * kill_mini_session().
483 */
Willy Tarreau32e3c6a2013-10-11 19:34:20 +0200484 si_attach_conn(&s->si[0], conn);
485
Willy Tarreaue36cbcb2015-04-03 15:40:56 +0200486 if (likely(sess->fe->options2 & PR_O2_INDEPSTR))
Willy Tarreau32e3c6a2013-10-11 19:34:20 +0200487 s->si[0].flags |= SI_FL_INDEP_STR;
488
Willy Tarreau81f9aa32010-06-01 17:45:26 +0200489 /* pre-initialize the other side's stream interface to an INIT state. The
490 * callbacks will be initialized before attempting to connect.
491 */
Willy Tarreau819d3322014-11-28 12:12:34 +0100492 si_reset(&s->si[1]);
Willy Tarreau2a6e8802013-10-24 15:50:53 +0200493 si_detach(&s->si[1]);
Willy Tarreaub363a1f2013-10-01 10:45:07 +0200494
Willy Tarreaue36cbcb2015-04-03 15:40:56 +0200495 if (likely(sess->fe->options2 & PR_O2_INDEPSTR))
Willy Tarreau81f9aa32010-06-01 17:45:26 +0200496 s->si[1].flags |= SI_FL_INDEP_STR;
497
Willy Tarreau87b09662015-04-03 00:22:06 +0200498 stream_init_srv_conn(s);
Willy Tarreau10b688f2015-03-13 16:43:12 +0100499 s->target = l->default_target; /* used by peers and CLI */
Willy Tarreau81f9aa32010-06-01 17:45:26 +0200500 s->pend_pos = NULL;
501
502 /* init store persistence */
503 s->store_count = 0;
504
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100505 channel_init(&s->req);
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100506 s->req.flags |= CF_READ_ATTACHED; /* the producer is already connected */
Willy Tarreau81f9aa32010-06-01 17:45:26 +0200507
508 /* activate default analysers enabled for this listener */
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100509 s->req.analysers = l->analysers;
Willy Tarreau81f9aa32010-06-01 17:45:26 +0200510
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100511 s->req.wto = TICK_ETERNITY;
512 s->req.rto = TICK_ETERNITY;
513 s->req.rex = TICK_ETERNITY;
514 s->req.wex = TICK_ETERNITY;
515 s->req.analyse_exp = TICK_ETERNITY;
Willy Tarreau81f9aa32010-06-01 17:45:26 +0200516
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100517 channel_init(&s->res);
Willy Tarreauef573c02014-11-28 14:17:09 +0100518 s->res.flags |= CF_ISRESP;
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100519 s->res.analysers = 0;
Willy Tarreau81f9aa32010-06-01 17:45:26 +0200520
Willy Tarreaue36cbcb2015-04-03 15:40:56 +0200521 if (sess->fe->options2 & PR_O2_NODELAY) {
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100522 s->req.flags |= CF_NEVER_WAIT;
523 s->res.flags |= CF_NEVER_WAIT;
Willy Tarreau96e31212011-05-30 18:10:30 +0200524 }
525
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100526 s->res.rto = TICK_ETERNITY;
527 s->res.wto = TICK_ETERNITY;
528 s->res.rex = TICK_ETERNITY;
529 s->res.wex = TICK_ETERNITY;
530 s->res.analyse_exp = TICK_ETERNITY;
Willy Tarreau81f9aa32010-06-01 17:45:26 +0200531
Willy Tarreau62f791e2012-03-09 11:32:30 +0100532 txn = &s->txn;
533 /* Those variables will be checked and freed if non-NULL in
Willy Tarreau87b09662015-04-03 00:22:06 +0200534 * stream.c:stream_free(). It is important that they are
Willy Tarreau62f791e2012-03-09 11:32:30 +0100535 * properly initialized.
536 */
537 txn->sessid = NULL;
538 txn->srv_cookie = NULL;
539 txn->cli_cookie = NULL;
540 txn->uri = NULL;
541 txn->req.cap = NULL;
542 txn->rsp.cap = NULL;
543 txn->hdr_idx.v = NULL;
544 txn->hdr_idx.size = txn->hdr_idx.used = 0;
Willy Tarreau068621e2013-12-23 15:11:25 +0100545 txn->flags = 0;
Willy Tarreau62f791e2012-03-09 11:32:30 +0100546 txn->req.flags = 0;
547 txn->rsp.flags = 0;
548 /* the HTTP messages need to know what buffer they're associated with */
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100549 txn->req.chn = &s->req;
550 txn->rsp.chn = &s->res;
Willy Tarreau62f791e2012-03-09 11:32:30 +0100551
Thierry FOURNIERa718b292015-03-04 16:48:34 +0100552 HLUA_INIT(&s->hlua);
Thierry FOURNIER65f34c62015-02-16 20:11:43 +0100553
Willy Tarreau81f9aa32010-06-01 17:45:26 +0200554 /* finish initialization of the accepted file descriptor */
Willy Tarreauf8a49ea2013-10-14 21:32:07 +0200555 conn_data_want_recv(conn);
Willy Tarreau81f9aa32010-06-01 17:45:26 +0200556
Willy Tarreauabe8ea52010-11-11 10:56:04 +0100557 if (p->accept && (ret = p->accept(s)) <= 0) {
558 /* Either we had an unrecoverable error (<0) or work is
559 * finished (=0, eg: monitoring), in both situations,
560 * we can release everything and close.
561 */
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100562 goto out_free_strm;
Willy Tarreau81f9aa32010-06-01 17:45:26 +0200563 }
564
Willy Tarreau93dbc2b2012-10-12 18:01:49 +0200565 /* if logs require transport layer information, note it on the connection */
566 if (s->logs.logwait & LW_XPRT)
Willy Tarreauf8a49ea2013-10-14 21:32:07 +0200567 conn->flags |= CO_FL_XPRT_TRACKED;
Willy Tarreau93dbc2b2012-10-12 18:01:49 +0200568
Willy Tarreau2542b532012-08-31 16:01:23 +0200569 /* we want the connection handler to notify the stream interface about updates. */
Willy Tarreauf8a49ea2013-10-14 21:32:07 +0200570 conn->flags |= CO_FL_WAKE_DATA;
Willy Tarreau2542b532012-08-31 16:01:23 +0200571
Willy Tarreau81f9aa32010-06-01 17:45:26 +0200572 /* it is important not to call the wakeup function directly but to
573 * pass through task_wakeup(), because this one knows how to apply
574 * priorities to tasks.
575 */
576 task_wakeup(t, TASK_WOKEN_INIT);
577 return 1;
578
579 /* Error unrolling */
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100580 out_free_strm:
Willy Tarreaub4f98092014-05-08 21:06:11 +0200581 /* and restore the connection pointer in case we destroyed it,
582 * because kill_mini_session() will need it.
583 */
Willy Tarreau3b246412014-11-25 17:10:33 +0100584 LIST_DEL(&s->list);
Willy Tarreaub4f98092014-05-08 21:06:11 +0200585 s->target = &conn->obj_type;
Willy Tarreauabe8ea52010-11-11 10:56:04 +0100586 return ret;
Willy Tarreau81f9aa32010-06-01 17:45:26 +0200587}
588
Willy Tarreaubaaee002006-06-26 02:48:02 +0200589/*
Willy Tarreau87b09662015-04-03 00:22:06 +0200590 * frees the context associated to a stream. It must have been removed first.
Willy Tarreaubaaee002006-06-26 02:48:02 +0200591 */
Willy Tarreau87b09662015-04-03 00:22:06 +0200592static void stream_free(struct stream *s)
Willy Tarreaubaaee002006-06-26 02:48:02 +0200593{
Willy Tarreau4dbc4a22007-03-03 16:23:22 +0100594 struct http_txn *txn = &s->txn;
Willy Tarreaue36cbcb2015-04-03 15:40:56 +0200595 struct proxy *fe = strm_sess(s)->fe;
Willy Tarreau62e4f1d2008-12-07 20:16:23 +0100596 struct bref *bref, *back;
Willy Tarreaub363a1f2013-10-01 10:45:07 +0200597 struct connection *cli_conn = objt_conn(s->si[0].end);
Willy Tarreaua4cda672010-06-06 18:28:49 +0200598 int i;
Willy Tarreau0f7562b2007-01-07 15:46:13 +0100599
Willy Tarreaubaaee002006-06-26 02:48:02 +0200600 if (s->pend_pos)
601 pendconn_free(s->pend_pos);
Willy Tarreau922a8062008-12-04 09:33:58 +0100602
Willy Tarreau3fdb3662012-11-12 00:42:33 +0100603 if (objt_server(s->target)) { /* there may be requests left pending in queue */
Willy Tarreaue7dff022015-04-03 01:14:29 +0200604 if (s->flags & SF_CURR_SESS) {
605 s->flags &= ~SF_CURR_SESS;
Willy Tarreau3fdb3662012-11-12 00:42:33 +0100606 objt_server(s->target)->cur_sess--;
Willy Tarreau1e62de62008-11-11 20:20:02 +0100607 }
Willy Tarreau3fdb3662012-11-12 00:42:33 +0100608 if (may_dequeue_tasks(objt_server(s->target), s->be))
609 process_srv_queue(objt_server(s->target));
Willy Tarreau1e62de62008-11-11 20:20:02 +0100610 }
Willy Tarreau922a8062008-12-04 09:33:58 +0100611
Willy Tarreau7c669d72008-06-20 15:04:11 +0200612 if (unlikely(s->srv_conn)) {
Willy Tarreau87b09662015-04-03 00:22:06 +0200613 /* the stream still has a reserved slot on a server, but
Willy Tarreau7c669d72008-06-20 15:04:11 +0200614 * it should normally be only the same as the one above,
615 * so this should not happen in fact.
616 */
617 sess_change_server(s, NULL);
618 }
619
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100620 if (s->req.pipe)
621 put_pipe(s->req.pipe);
Willy Tarreau259de1b2009-01-18 21:56:21 +0100622
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100623 if (s->res.pipe)
624 put_pipe(s->res.pipe);
Willy Tarreau259de1b2009-01-18 21:56:21 +0100625
Willy Tarreaubf883e02014-11-25 21:10:35 +0100626 /* We may still be present in the buffer wait queue */
627 if (!LIST_ISEMPTY(&s->buffer_wait)) {
628 LIST_DEL(&s->buffer_wait);
629 LIST_INIT(&s->buffer_wait);
630 }
631
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100632 b_drop(&s->req.buf);
633 b_drop(&s->res.buf);
Willy Tarreaubf883e02014-11-25 21:10:35 +0100634 if (!LIST_ISEMPTY(&buffer_wq))
Willy Tarreau87b09662015-04-03 00:22:06 +0200635 stream_offer_buffers();
Willy Tarreau9b28e032012-10-12 23:49:43 +0200636
Thierry FOURNIERa718b292015-03-04 16:48:34 +0100637 hlua_ctx_destroy(&s->hlua);
Willy Tarreau46023632010-01-07 22:51:47 +0100638 http_end_txn(s);
639
Willy Tarreau1e954912012-10-12 17:50:05 +0200640 /* ensure the client-side transport layer is destroyed */
Willy Tarreauf79c8172013-10-21 16:30:56 +0200641 if (cli_conn)
642 conn_force_close(cli_conn);
Willy Tarreau1e954912012-10-12 17:50:05 +0200643
Willy Tarreaua4cda672010-06-06 18:28:49 +0200644 for (i = 0; i < s->store_count; i++) {
645 if (!s->store[i].ts)
646 continue;
647 stksess_free(s->store[i].table, s->store[i].ts);
648 s->store[i].ts = NULL;
649 }
650
Willy Tarreau34eb6712011-10-24 18:15:04 +0200651 pool_free2(pool2_hdr_idx, txn->hdr_idx.v);
Willy Tarreau92fb9832007-10-16 17:34:28 +0200652 if (fe) {
Willy Tarreau46023632010-01-07 22:51:47 +0100653 pool_free2(fe->rsp_cap_pool, txn->rsp.cap);
654 pool_free2(fe->req_cap_pool, txn->req.cap);
Willy Tarreaubaaee002006-06-26 02:48:02 +0200655 }
Willy Tarreau0937bc42009-12-22 15:03:09 +0100656
Willy Tarreau87b09662015-04-03 00:22:06 +0200657 stream_store_counters(s);
Willy Tarreau9ba2dcc2010-06-14 21:04:55 +0200658
Willy Tarreau62e4f1d2008-12-07 20:16:23 +0100659 list_for_each_entry_safe(bref, back, &s->back_refs, users) {
Willy Tarreaufd3828e2009-02-22 15:17:24 +0100660 /* we have to unlink all watchers. We must not relink them if
Willy Tarreau87b09662015-04-03 00:22:06 +0200661 * this stream was the last one in the list.
Willy Tarreaufd3828e2009-02-22 15:17:24 +0100662 */
Willy Tarreau62e4f1d2008-12-07 20:16:23 +0100663 LIST_DEL(&bref->users);
Willy Tarreaufd3828e2009-02-22 15:17:24 +0100664 LIST_INIT(&bref->users);
Willy Tarreau87b09662015-04-03 00:22:06 +0200665 if (s->list.n != &streams)
666 LIST_ADDQ(&LIST_ELEM(s->list.n, struct stream *, list)->back_refs, &bref->users);
Willy Tarreau62e4f1d2008-12-07 20:16:23 +0100667 bref->ref = s->list.n;
668 }
Willy Tarreauf54f8bd2008-11-23 19:53:55 +0100669 LIST_DEL(&s->list);
Willy Tarreau32e3c6a2013-10-11 19:34:20 +0200670 si_release_endpoint(&s->si[1]);
671 si_release_endpoint(&s->si[0]);
Willy Tarreaufeb76402015-04-03 14:10:06 +0200672
673 /* FIXME: for now we have a 1:1 relation between stream and session so
674 * the stream must free the session.
675 */
676 pool_free2(pool2_session, s->sess);
Willy Tarreau87b09662015-04-03 00:22:06 +0200677 pool_free2(pool2_stream, s);
Willy Tarreau632f5a72007-07-11 10:42:35 +0200678
679 /* We may want to free the maximum amount of pools if the proxy is stopping */
Willy Tarreau92fb9832007-10-16 17:34:28 +0200680 if (fe && unlikely(fe->state == PR_STSTOPPED)) {
Willy Tarreau9b28e032012-10-12 23:49:43 +0200681 pool_flush2(pool2_buffer);
Willy Tarreau34eb6712011-10-24 18:15:04 +0200682 pool_flush2(pool2_hdr_idx);
Willy Tarreau48d63db2008-08-03 17:41:33 +0200683 pool_flush2(pool2_requri);
684 pool_flush2(pool2_capture);
Willy Tarreau87b09662015-04-03 00:22:06 +0200685 pool_flush2(pool2_stream);
Willy Tarreaufeb76402015-04-03 14:10:06 +0200686 pool_flush2(pool2_session);
Willy Tarreau3a5e0602014-11-13 16:46:28 +0100687 pool_flush2(pool2_connection);
688 pool_flush2(pool2_pendconn);
Willy Tarreau48d63db2008-08-03 17:41:33 +0200689 pool_flush2(fe->req_cap_pool);
690 pool_flush2(fe->rsp_cap_pool);
Willy Tarreau632f5a72007-07-11 10:42:35 +0200691 }
Willy Tarreauc6ca1a02007-05-13 19:43:47 +0200692}
693
Willy Tarreau78955f42014-12-28 13:09:02 +0100694/* Allocates a receive buffer for channel <chn>, but only if it's guaranteed
695 * that it's not the last available buffer or it's the response buffer. Unless
696 * the buffer is the response buffer, an extra control is made so that we always
697 * keep <tune.buffers.reserved> buffers available after this allocation. To be
698 * called at the beginning of recv() callbacks to ensure that the required
699 * buffers are properly allocated. Returns 0 in case of failure, non-zero
700 * otherwise.
Willy Tarreau656859d2014-11-25 19:46:36 +0100701 */
Willy Tarreau87b09662015-04-03 00:22:06 +0200702int stream_alloc_recv_buffer(struct channel *chn)
Willy Tarreau656859d2014-11-25 19:46:36 +0100703{
Willy Tarreau87b09662015-04-03 00:22:06 +0200704 struct stream *s;
Willy Tarreau656859d2014-11-25 19:46:36 +0100705 struct buffer *b;
Willy Tarreaua24adf02014-11-27 01:11:56 +0100706 int margin = 0;
Willy Tarreau656859d2014-11-25 19:46:36 +0100707
Willy Tarreau78955f42014-12-28 13:09:02 +0100708 if (!(chn->flags & CF_ISRESP))
Willy Tarreaua24adf02014-11-27 01:11:56 +0100709 margin = global.tune.reserved_bufs;
710
Willy Tarreau78955f42014-12-28 13:09:02 +0100711 s = chn_sess(chn);
712
713 b = b_alloc_margin(&chn->buf, margin);
Willy Tarreau656859d2014-11-25 19:46:36 +0100714 if (b)
715 return 1;
716
Willy Tarreaubf883e02014-11-25 21:10:35 +0100717 if (LIST_ISEMPTY(&s->buffer_wait))
718 LIST_ADDQ(&buffer_wq, &s->buffer_wait);
Willy Tarreau656859d2014-11-25 19:46:36 +0100719 return 0;
720}
721
Willy Tarreau87b09662015-04-03 00:22:06 +0200722/* Allocates a work buffer for stream <s>. It is meant to be called inside
723 * process_stream(). It will only allocate the side needed for the function
Willy Tarreaua24adf02014-11-27 01:11:56 +0100724 * to work fine. For a regular connection, only the response is needed so that
725 * an error message may be built and returned. In case where the initiator is
726 * an applet (eg: peers), then we need to allocate the request buffer for the
727 * applet to be able to send its data (in this case a response is not needed).
728 * Request buffers are never picked from the reserved pool, but response
729 * buffers may be allocated from the reserve. This is critical to ensure that
730 * a response may always flow and will never block a server from releasing a
731 * connection. Returns 0 in case of failure, non-zero otherwise.
Willy Tarreau656859d2014-11-25 19:46:36 +0100732 */
Willy Tarreau87b09662015-04-03 00:22:06 +0200733int stream_alloc_work_buffer(struct stream *s)
Willy Tarreau656859d2014-11-25 19:46:36 +0100734{
Willy Tarreaua24adf02014-11-27 01:11:56 +0100735 int margin;
736 struct buffer **buf;
737
738 if (objt_appctx(s->si[0].end)) {
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100739 buf = &s->req.buf;
Willy Tarreaua24adf02014-11-27 01:11:56 +0100740 margin = global.tune.reserved_bufs;
741 }
742 else {
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100743 buf = &s->res.buf;
Willy Tarreaua24adf02014-11-27 01:11:56 +0100744 margin = 0;
745 }
746
Willy Tarreaubf883e02014-11-25 21:10:35 +0100747 if (!LIST_ISEMPTY(&s->buffer_wait)) {
748 LIST_DEL(&s->buffer_wait);
749 LIST_INIT(&s->buffer_wait);
750 }
Willy Tarreau656859d2014-11-25 19:46:36 +0100751
Willy Tarreaua24adf02014-11-27 01:11:56 +0100752 if (b_alloc_margin(buf, margin))
Willy Tarreau656859d2014-11-25 19:46:36 +0100753 return 1;
754
Willy Tarreaubf883e02014-11-25 21:10:35 +0100755 LIST_ADDQ(&buffer_wq, &s->buffer_wait);
Willy Tarreau656859d2014-11-25 19:46:36 +0100756 return 0;
757}
758
759/* releases unused buffers after processing. Typically used at the end of the
Willy Tarreaubf883e02014-11-25 21:10:35 +0100760 * update() functions. It will try to wake up as many tasks as the number of
Willy Tarreau87b09662015-04-03 00:22:06 +0200761 * buffers that it releases. In practice, most often streams are blocked on
Willy Tarreaubf883e02014-11-25 21:10:35 +0100762 * a single buffer, so it makes sense to try to wake two up when two buffers
763 * are released at once.
Willy Tarreau656859d2014-11-25 19:46:36 +0100764 */
Willy Tarreau87b09662015-04-03 00:22:06 +0200765void stream_release_buffers(struct stream *s)
Willy Tarreau656859d2014-11-25 19:46:36 +0100766{
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100767 if (s->req.buf->size && buffer_empty(s->req.buf))
768 b_free(&s->req.buf);
Willy Tarreau656859d2014-11-25 19:46:36 +0100769
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100770 if (s->res.buf->size && buffer_empty(s->res.buf))
771 b_free(&s->res.buf);
Willy Tarreau656859d2014-11-25 19:46:36 +0100772
Willy Tarreaubf883e02014-11-25 21:10:35 +0100773 /* if we're certain to have at least 1 buffer available, and there is
774 * someone waiting, we can wake up a waiter and offer them.
775 */
Willy Tarreaua24adf02014-11-27 01:11:56 +0100776 if (!LIST_ISEMPTY(&buffer_wq))
Willy Tarreau87b09662015-04-03 00:22:06 +0200777 stream_offer_buffers();
Willy Tarreaubf883e02014-11-25 21:10:35 +0100778}
779
Willy Tarreau87b09662015-04-03 00:22:06 +0200780/* Runs across the list of pending streams waiting for a buffer and wakes one
Willy Tarreaua24adf02014-11-27 01:11:56 +0100781 * up if buffers are available. Will stop when the run queue reaches <rqlimit>.
Willy Tarreau87b09662015-04-03 00:22:06 +0200782 * Should not be called directly, use stream_offer_buffers() instead.
Willy Tarreaubf883e02014-11-25 21:10:35 +0100783 */
Willy Tarreau87b09662015-04-03 00:22:06 +0200784void __stream_offer_buffers(int rqlimit)
Willy Tarreaubf883e02014-11-25 21:10:35 +0100785{
Willy Tarreau87b09662015-04-03 00:22:06 +0200786 struct stream *sess, *bak;
Willy Tarreaubf883e02014-11-25 21:10:35 +0100787
788 list_for_each_entry_safe(sess, bak, &buffer_wq, buffer_wait) {
Willy Tarreaua24adf02014-11-27 01:11:56 +0100789 if (rqlimit <= run_queue)
790 break;
791
Willy Tarreaubf883e02014-11-25 21:10:35 +0100792 if (sess->task->state & TASK_RUNNING)
793 continue;
794
795 LIST_DEL(&sess->buffer_wait);
796 LIST_INIT(&sess->buffer_wait);
Willy Tarreaubf883e02014-11-25 21:10:35 +0100797 task_wakeup(sess->task, TASK_WOKEN_RES);
Willy Tarreaubf883e02014-11-25 21:10:35 +0100798 }
Willy Tarreau656859d2014-11-25 19:46:36 +0100799}
Willy Tarreauc6ca1a02007-05-13 19:43:47 +0200800
801/* perform minimal intializations, report 0 in case of error, 1 if OK. */
Willy Tarreau87b09662015-04-03 00:22:06 +0200802int init_stream()
Willy Tarreauc6ca1a02007-05-13 19:43:47 +0200803{
Willy Tarreau87b09662015-04-03 00:22:06 +0200804 LIST_INIT(&streams);
805 pool2_stream = create_pool("stream", sizeof(struct stream), MEM_F_SHARED);
806 return pool2_stream != NULL;
Willy Tarreaubaaee002006-06-26 02:48:02 +0200807}
808
Willy Tarreau87b09662015-04-03 00:22:06 +0200809void stream_process_counters(struct stream *s)
Willy Tarreau30e71012007-11-26 20:15:35 +0100810{
Willy Tarreaufb0afa72015-04-03 14:46:27 +0200811 struct session *sess = s->sess;
Krzysztof Piotr Oledzki583bc962007-11-24 22:12:47 +0100812 unsigned long long bytes;
Willy Tarreau20d46a52012-12-09 15:55:40 +0100813 void *ptr;
814 int i;
Krzysztof Piotr Oledzki583bc962007-11-24 22:12:47 +0100815
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100816 bytes = s->req.total - s->logs.bytes_in;
817 s->logs.bytes_in = s->req.total;
818 if (bytes) {
Willy Tarreaue36cbcb2015-04-03 15:40:56 +0200819 sess->fe->fe_counters.bytes_in += bytes;
Krzysztof Piotr Oledzki583bc962007-11-24 22:12:47 +0100820
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100821 s->be->be_counters.bytes_in += bytes;
Krzysztof Piotr Oledzki583bc962007-11-24 22:12:47 +0100822
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100823 if (objt_server(s->target))
824 objt_server(s->target)->counters.bytes_in += bytes;
Krzysztof Piotr Oledzkiaeebf9b2009-10-04 15:43:17 +0200825
Willy Tarreaufb0afa72015-04-03 14:46:27 +0200826 if (sess->listener && sess->listener->counters)
827 sess->listener->counters->bytes_in += bytes;
Willy Tarreau855e4bb2010-06-18 18:33:32 +0200828
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100829 for (i = 0; i < MAX_SESS_STKCTR; i++) {
830 if (!stkctr_entry(&s->stkctr[i]))
831 continue;
Willy Tarreau6c59e0a2010-06-20 11:56:30 +0200832
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100833 ptr = stktable_data_ptr(s->stkctr[i].table,
834 stkctr_entry(&s->stkctr[i]),
835 STKTABLE_DT_BYTES_IN_CNT);
836 if (ptr)
837 stktable_data_cast(ptr, bytes_in_cnt) += bytes;
Willy Tarreau6c59e0a2010-06-20 11:56:30 +0200838
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100839 ptr = stktable_data_ptr(s->stkctr[i].table,
840 stkctr_entry(&s->stkctr[i]),
841 STKTABLE_DT_BYTES_IN_RATE);
842 if (ptr)
843 update_freq_ctr_period(&stktable_data_cast(ptr, bytes_in_rate),
844 s->stkctr[i].table->data_arg[STKTABLE_DT_BYTES_IN_RATE].u, bytes);
Willy Tarreau30e71012007-11-26 20:15:35 +0100845 }
Krzysztof Piotr Oledzki583bc962007-11-24 22:12:47 +0100846 }
847
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100848 bytes = s->res.total - s->logs.bytes_out;
849 s->logs.bytes_out = s->res.total;
850 if (bytes) {
Willy Tarreaue36cbcb2015-04-03 15:40:56 +0200851 sess->fe->fe_counters.bytes_out += bytes;
Krzysztof Piotr Oledzki583bc962007-11-24 22:12:47 +0100852
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100853 s->be->be_counters.bytes_out += bytes;
Krzysztof Piotr Oledzki583bc962007-11-24 22:12:47 +0100854
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100855 if (objt_server(s->target))
856 objt_server(s->target)->counters.bytes_out += bytes;
Krzysztof Piotr Oledzkiaeebf9b2009-10-04 15:43:17 +0200857
Willy Tarreaufb0afa72015-04-03 14:46:27 +0200858 if (sess->listener && sess->listener->counters)
859 sess->listener->counters->bytes_out += bytes;
Willy Tarreauf059a0f2010-08-03 16:29:52 +0200860
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100861 for (i = 0; i < MAX_SESS_STKCTR; i++) {
862 if (!stkctr_entry(&s->stkctr[i]))
863 continue;
Willy Tarreau6c59e0a2010-06-20 11:56:30 +0200864
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100865 ptr = stktable_data_ptr(s->stkctr[i].table,
866 stkctr_entry(&s->stkctr[i]),
867 STKTABLE_DT_BYTES_OUT_CNT);
868 if (ptr)
869 stktable_data_cast(ptr, bytes_out_cnt) += bytes;
Willy Tarreau6c59e0a2010-06-20 11:56:30 +0200870
Willy Tarreau22ec1ea2014-11-27 20:45:39 +0100871 ptr = stktable_data_ptr(s->stkctr[i].table,
872 stkctr_entry(&s->stkctr[i]),
873 STKTABLE_DT_BYTES_OUT_RATE);
874 if (ptr)
875 update_freq_ctr_period(&stktable_data_cast(ptr, bytes_out_rate),
876 s->stkctr[i].table->data_arg[STKTABLE_DT_BYTES_OUT_RATE].u, bytes);
Willy Tarreau30e71012007-11-26 20:15:35 +0100877 }
Krzysztof Piotr Oledzki583bc962007-11-24 22:12:47 +0100878 }
879}
Willy Tarreaubaaee002006-06-26 02:48:02 +0200880
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100881/* This function is called with (si->state == SI_ST_CON) meaning that a
882 * connection was attempted and that the file descriptor is already allocated.
883 * We must check for establishment, error and abort. Possible output states
884 * are SI_ST_EST (established), SI_ST_CER (error), SI_ST_DIS (abort), and
885 * SI_ST_CON (no change). The function returns 0 if it switches to SI_ST_CER,
Willy Tarreau87b09662015-04-03 00:22:06 +0200886 * otherwise 1. This only works with connection-based streams.
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100887 */
Willy Tarreau87b09662015-04-03 00:22:06 +0200888static int sess_update_st_con_tcp(struct stream *s)
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100889{
Willy Tarreau7b8c4f92014-11-28 15:15:44 +0100890 struct stream_interface *si = &s->si[1];
891 struct channel *req = &s->req;
892 struct channel *rep = &s->res;
Willy Tarreaub363a1f2013-10-01 10:45:07 +0200893 struct connection *srv_conn = __objt_conn(si->end);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100894
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100895 /* If we got an error, or if nothing happened and the connection timed
896 * out, we must give up. The CER state handler will take care of retry
897 * attempts and error reports.
898 */
899 if (unlikely(si->flags & (SI_FL_EXP|SI_FL_ERR))) {
Willy Tarreau103197d2014-11-28 15:26:12 +0100900 if (unlikely(req->flags & CF_WRITE_PARTIAL)) {
Willy Tarreaue3224e82012-10-29 22:41:31 +0100901 /* Some data were sent past the connection establishment,
902 * so we need to pretend we're established to log correctly
903 * and let later states handle the failure.
904 */
Willy Tarreaue3224e82012-10-29 22:41:31 +0100905 si->state = SI_ST_EST;
906 si->err_type = SI_ET_DATA_ERR;
Willy Tarreau103197d2014-11-28 15:26:12 +0100907 rep->flags |= CF_READ_ERROR | CF_WRITE_ERROR;
Willy Tarreaue3224e82012-10-29 22:41:31 +0100908 return 1;
909 }
Willy Tarreau127334e2009-03-28 10:47:26 +0100910 si->exp = TICK_ETERNITY;
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100911 si->state = SI_ST_CER;
Willy Tarreau0ede5a32012-12-08 08:44:02 +0100912
Willy Tarreauf79c8172013-10-21 16:30:56 +0200913 conn_force_close(srv_conn);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100914
915 if (si->err_type)
916 return 0;
917
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100918 if (si->flags & SI_FL_ERR)
919 si->err_type = SI_ET_CONN_ERR;
920 else
921 si->err_type = SI_ET_CONN_TO;
922 return 0;
923 }
924
925 /* OK, maybe we want to abort */
Willy Tarreaua7a7ebc2012-12-30 00:50:35 +0100926 if (!(req->flags & CF_WRITE_PARTIAL) &&
927 unlikely((rep->flags & CF_SHUTW) ||
Willy Tarreau03cdb7c2012-08-27 23:14:58 +0200928 ((req->flags & CF_SHUTW_NOW) && /* FIXME: this should not prevent a connection from establishing */
929 ((!(req->flags & CF_WRITE_ACTIVITY) && channel_is_empty(req)) ||
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100930 s->be->options & PR_O_ABRT_CLOSE)))) {
931 /* give up */
Willy Tarreau73b013b2012-05-21 16:31:45 +0200932 si_shutw(si);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100933 si->err_type |= SI_ET_CONN_ABRT;
Willy Tarreau84455332009-03-15 22:34:05 +0100934 if (s->srv_error)
935 s->srv_error(s, si);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100936 return 1;
937 }
938
939 /* we need to wait a bit more if there was no activity either */
Willy Tarreau03cdb7c2012-08-27 23:14:58 +0200940 if (!(req->flags & CF_WRITE_ACTIVITY))
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100941 return 1;
942
943 /* OK, this means that a connection succeeded. The caller will be
944 * responsible for handling the transition from CON to EST.
945 */
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100946 si->state = SI_ST_EST;
947 si->err_type = SI_ET_NONE;
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100948 return 1;
949}
950
951/* This function is called with (si->state == SI_ST_CER) meaning that a
952 * previous connection attempt has failed and that the file descriptor
953 * has already been released. Possible causes include asynchronous error
954 * notification and time out. Possible output states are SI_ST_CLO when
955 * retries are exhausted, SI_ST_TAR when a delay is wanted before a new
956 * connection attempt, SI_ST_ASS when it's wise to retry on the same server,
957 * and SI_ST_REQ when an immediate redispatch is wanted. The buffers are
958 * marked as in error state. It returns 0.
959 */
Willy Tarreau87b09662015-04-03 00:22:06 +0200960static int sess_update_st_cer(struct stream *s)
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100961{
Willy Tarreau7b8c4f92014-11-28 15:15:44 +0100962 struct stream_interface *si = &s->si[1];
963
Willy Tarreau87b09662015-04-03 00:22:06 +0200964 /* we probably have to release last stream from the server */
Willy Tarreau3fdb3662012-11-12 00:42:33 +0100965 if (objt_server(s->target)) {
966 health_adjust(objt_server(s->target), HANA_STATUS_L4_ERR);
Krzysztof Piotr Oledzki97f07b82009-12-15 22:31:24 +0100967
Willy Tarreaue7dff022015-04-03 01:14:29 +0200968 if (s->flags & SF_CURR_SESS) {
969 s->flags &= ~SF_CURR_SESS;
Willy Tarreau3fdb3662012-11-12 00:42:33 +0100970 objt_server(s->target)->cur_sess--;
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100971 }
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100972 }
973
974 /* ensure that we have enough retries left */
Willy Tarreauee28de02010-06-01 09:51:00 +0200975 si->conn_retries--;
976 if (si->conn_retries < 0) {
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100977 if (!si->err_type) {
978 si->err_type = SI_ET_CONN_ERR;
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100979 }
980
Willy Tarreau3fdb3662012-11-12 00:42:33 +0100981 if (objt_server(s->target))
982 objt_server(s->target)->counters.failed_conns++;
Willy Tarreau7d0aaf32011-03-10 23:25:56 +0100983 s->be->be_counters.failed_conns++;
Willy Tarreaub89cfca2010-12-29 14:32:28 +0100984 sess_change_server(s, NULL);
Willy Tarreau3fdb3662012-11-12 00:42:33 +0100985 if (may_dequeue_tasks(objt_server(s->target), s->be))
986 process_srv_queue(objt_server(s->target));
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100987
988 /* shutw is enough so stop a connecting socket */
Willy Tarreau73b013b2012-05-21 16:31:45 +0200989 si_shutw(si);
Willy Tarreau103197d2014-11-28 15:26:12 +0100990 s->req.flags |= CF_WRITE_ERROR;
991 s->res.flags |= CF_READ_ERROR;
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100992
993 si->state = SI_ST_CLO;
Willy Tarreau0cac36f2008-11-30 20:44:17 +0100994 if (s->srv_error)
995 s->srv_error(s, si);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +0100996 return 0;
997 }
998
999 /* If the "redispatch" option is set on the backend, we are allowed to
1000 * retry on another server for the last retry. In order to achieve this,
Willy Tarreau87b09662015-04-03 00:22:06 +02001001 * we must mark the stream unassigned, and eventually clear the DIRECT
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001002 * bit to ignore any persistence cookie. We won't count a retry nor a
1003 * redispatch yet, because this will depend on what server is selected.
Willy Tarreau33a14e52014-06-13 17:49:40 +02001004 * If the connection is not persistent, the balancing algorithm is not
1005 * determinist (round robin) and there is more than one active server,
1006 * we accept to perform an immediate redispatch without waiting since
1007 * we don't care about this particular server.
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001008 */
Willy Tarreau33a14e52014-06-13 17:49:40 +02001009 if (objt_server(s->target) &&
1010 (si->conn_retries == 0 ||
Willy Tarreaue7dff022015-04-03 01:14:29 +02001011 (!(s->flags & SF_DIRECT) && s->be->srv_act > 1 &&
Willy Tarreau33a14e52014-06-13 17:49:40 +02001012 ((s->be->lbprm.algo & BE_LB_KIND) == BE_LB_KIND_RR))) &&
Willy Tarreaue7dff022015-04-03 01:14:29 +02001013 s->be->options & PR_O_REDISP && !(s->flags & SF_FORCE_PRST)) {
Willy Tarreaub89cfca2010-12-29 14:32:28 +01001014 sess_change_server(s, NULL);
Willy Tarreau3fdb3662012-11-12 00:42:33 +01001015 if (may_dequeue_tasks(objt_server(s->target), s->be))
1016 process_srv_queue(objt_server(s->target));
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001017
Willy Tarreaue7dff022015-04-03 01:14:29 +02001018 s->flags &= ~(SF_DIRECT | SF_ASSIGNED | SF_ADDR_SET);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001019 si->state = SI_ST_REQ;
1020 } else {
Willy Tarreau3fdb3662012-11-12 00:42:33 +01001021 if (objt_server(s->target))
1022 objt_server(s->target)->counters.retries++;
Willy Tarreau7d0aaf32011-03-10 23:25:56 +01001023 s->be->be_counters.retries++;
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001024 si->state = SI_ST_ASS;
1025 }
1026
1027 if (si->flags & SI_FL_ERR) {
1028 /* The error was an asynchronous connection error, and we will
1029 * likely have to retry connecting to the same server, most
1030 * likely leading to the same result. To avoid this, we wait
Willy Tarreaub0290662014-06-13 17:04:44 +02001031 * MIN(one second, connect timeout) before retrying.
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001032 */
1033
Willy Tarreaub0290662014-06-13 17:04:44 +02001034 int delay = 1000;
1035
1036 if (s->be->timeout.connect && s->be->timeout.connect < delay)
1037 delay = s->be->timeout.connect;
1038
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001039 if (!si->err_type)
1040 si->err_type = SI_ET_CONN_ERR;
1041
Willy Tarreaudb6d0122014-06-13 17:40:15 +02001042 /* only wait when we're retrying on the same server */
1043 if (si->state == SI_ST_ASS ||
1044 (s->be->lbprm.algo & BE_LB_KIND) != BE_LB_KIND_RR ||
1045 (s->be->srv_act <= 1)) {
1046 si->state = SI_ST_TAR;
1047 si->exp = tick_add(now_ms, MS_TO_TICKS(delay));
1048 }
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001049 return 0;
1050 }
1051 return 0;
1052}
1053
1054/*
1055 * This function handles the transition between the SI_ST_CON state and the
Willy Tarreau85e7d002010-05-31 11:57:51 +02001056 * SI_ST_EST state. It must only be called after switching from SI_ST_CON (or
Willy Tarreau26d8c592012-05-07 18:12:14 +02001057 * SI_ST_INI) to SI_ST_EST, but only when a ->proto is defined.
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001058 */
Willy Tarreau87b09662015-04-03 00:22:06 +02001059static void sess_establish(struct stream *s)
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001060{
Willy Tarreau7b8c4f92014-11-28 15:15:44 +01001061 struct stream_interface *si = &s->si[1];
1062 struct channel *req = &s->req;
1063 struct channel *rep = &s->res;
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001064
Willy Tarreau0e37f1c2013-12-31 23:06:46 +01001065 /* First, centralize the timers information */
1066 s->logs.t_connect = tv_ms_elapsed(&s->logs.tv_accept, &now);
1067 si->exp = TICK_ETERNITY;
1068
Willy Tarreau3fdb3662012-11-12 00:42:33 +01001069 if (objt_server(s->target))
1070 health_adjust(objt_server(s->target), HANA_STATUS_L4_OK);
Krzysztof Piotr Oledzki97f07b82009-12-15 22:31:24 +01001071
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001072 if (s->be->mode == PR_MODE_TCP) { /* let's allow immediate data connection in this case */
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001073 /* if the user wants to log as soon as possible, without counting
1074 * bytes from the server, then this is the right moment. */
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02001075 if (!LIST_ISEMPTY(&strm_sess(s)->fe->logformat) && !(s->logs.logwait & LW_BYTES)) {
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001076 s->logs.t_close = s->logs.t_connect; /* to get a valid end date */
Willy Tarreaua5555ec2008-11-30 19:02:32 +01001077 s->do_log(s);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001078 }
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001079 }
1080 else {
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001081 s->txn.rsp.msg_state = HTTP_MSG_RPBEFORE;
Willy Tarreaud81ca042013-12-31 22:33:13 +01001082 rep->flags |= CF_READ_DONTWAIT; /* a single read is enough to get response headers */
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001083 }
1084
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02001085 rep->analysers |= strm_sess(s)->fe->fe_rsp_ana | s->be->be_rsp_ana;
Willy Tarreau03cdb7c2012-08-27 23:14:58 +02001086 rep->flags |= CF_READ_ATTACHED; /* producer is now attached */
Willy Tarreau644c1012014-04-30 18:11:11 +02001087 if (req->flags & CF_WAKE_CONNECT) {
1088 req->flags |= CF_WAKE_ONCE;
1089 req->flags &= ~CF_WAKE_CONNECT;
1090 }
Willy Tarreaub363a1f2013-10-01 10:45:07 +02001091 if (objt_conn(si->end)) {
Willy Tarreaud04e8582010-05-31 12:31:35 +02001092 /* real connections have timeouts */
1093 req->wto = s->be->timeout.server;
1094 rep->rto = s->be->timeout.server;
1095 }
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001096 req->wex = TICK_ETERNITY;
1097}
1098
Willy Tarreau7b8c4f92014-11-28 15:15:44 +01001099/* Update back stream interface status for input states SI_ST_ASS, SI_ST_QUE,
1100 * SI_ST_TAR. Other input states are simply ignored.
Willy Tarreau9e5a3aa2013-12-31 23:32:12 +01001101 * Possible output states are SI_ST_CLO, SI_ST_TAR, SI_ST_ASS, SI_ST_REQ, SI_ST_CON
1102 * and SI_ST_EST. Flags must have previously been updated for timeouts and other
1103 * conditions.
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001104 */
Willy Tarreau87b09662015-04-03 00:22:06 +02001105static void sess_update_stream_int(struct stream *s)
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001106{
Willy Tarreau3fdb3662012-11-12 00:42:33 +01001107 struct server *srv = objt_server(s->target);
Willy Tarreau7b8c4f92014-11-28 15:15:44 +01001108 struct stream_interface *si = &s->si[1];
Willy Tarreau103197d2014-11-28 15:26:12 +01001109 struct channel *req = &s->req;
Willy Tarreau827aee92011-03-10 16:55:02 +01001110
Willy Tarreau02d6cfc2012-03-01 18:19:58 +01001111 DPRINTF(stderr,"[%u] %s: sess=%p rq=%p, rp=%p, exp(r,w)=%u,%u rqf=%08x rpf=%08x rqh=%d rqt=%d rph=%d rpt=%d cs=%d ss=%d\n",
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001112 now_ms, __FUNCTION__,
1113 s,
Willy Tarreau103197d2014-11-28 15:26:12 +01001114 req, s->rep,
1115 req->rex, s->res.wex,
1116 req->flags, s->res.flags,
1117 req->buf->i, req->buf->o, s->res.buf->i, s->res.buf->o, s->si[0].state, req->cons->state);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001118
1119 if (si->state == SI_ST_ASS) {
1120 /* Server assigned to connection request, we have to try to connect now */
1121 int conn_err;
1122
1123 conn_err = connect_server(s);
Willy Tarreau3fdb3662012-11-12 00:42:33 +01001124 srv = objt_server(s->target);
Willy Tarreau827aee92011-03-10 16:55:02 +01001125
Willy Tarreaue7dff022015-04-03 01:14:29 +02001126 if (conn_err == SF_ERR_NONE) {
Willy Tarreau9e5a3aa2013-12-31 23:32:12 +01001127 /* state = SI_ST_CON or SI_ST_EST now */
Willy Tarreau827aee92011-03-10 16:55:02 +01001128 if (srv)
1129 srv_inc_sess_ctr(srv);
Bhaskar Maddalaa20cb852014-02-03 16:26:46 -05001130 if (srv)
1131 srv_set_sess_last(srv);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001132 return;
1133 }
1134
1135 /* We have received a synchronous error. We might have to
1136 * abort, retry immediately or redispatch.
1137 */
Willy Tarreaue7dff022015-04-03 01:14:29 +02001138 if (conn_err == SF_ERR_INTERNAL) {
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001139 if (!si->err_type) {
1140 si->err_type = SI_ET_CONN_OTHER;
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001141 }
1142
Willy Tarreau827aee92011-03-10 16:55:02 +01001143 if (srv)
1144 srv_inc_sess_ctr(srv);
1145 if (srv)
Bhaskar Maddalaa20cb852014-02-03 16:26:46 -05001146 srv_set_sess_last(srv);
1147 if (srv)
Willy Tarreau827aee92011-03-10 16:55:02 +01001148 srv->counters.failed_conns++;
Willy Tarreau7d0aaf32011-03-10 23:25:56 +01001149 s->be->be_counters.failed_conns++;
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001150
Willy Tarreau87b09662015-04-03 00:22:06 +02001151 /* release other streams waiting for this server */
Willy Tarreaub89cfca2010-12-29 14:32:28 +01001152 sess_change_server(s, NULL);
Willy Tarreau827aee92011-03-10 16:55:02 +01001153 if (may_dequeue_tasks(srv, s->be))
1154 process_srv_queue(srv);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001155
1156 /* Failed and not retryable. */
Willy Tarreau73b013b2012-05-21 16:31:45 +02001157 si_shutr(si);
1158 si_shutw(si);
Willy Tarreau103197d2014-11-28 15:26:12 +01001159 req->flags |= CF_WRITE_ERROR;
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001160
1161 s->logs.t_queue = tv_ms_elapsed(&s->logs.tv_accept, &now);
1162
Willy Tarreau87b09662015-04-03 00:22:06 +02001163 /* no stream was ever accounted for this server */
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001164 si->state = SI_ST_CLO;
Willy Tarreau0cac36f2008-11-30 20:44:17 +01001165 if (s->srv_error)
1166 s->srv_error(s, si);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001167 return;
1168 }
1169
1170 /* We are facing a retryable error, but we don't want to run a
1171 * turn-around now, as the problem is likely a source port
1172 * allocation problem, so we want to retry now.
1173 */
1174 si->state = SI_ST_CER;
1175 si->flags &= ~SI_FL_ERR;
Willy Tarreau7b8c4f92014-11-28 15:15:44 +01001176 sess_update_st_cer(s);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001177 /* now si->state is one of SI_ST_CLO, SI_ST_TAR, SI_ST_ASS, SI_ST_REQ */
1178 return;
1179 }
1180 else if (si->state == SI_ST_QUE) {
1181 /* connection request was queued, check for any update */
1182 if (!s->pend_pos) {
1183 /* The connection is not in the queue anymore. Either
1184 * we have a server connection slot available and we
1185 * go directly to the assigned state, or we need to
1186 * load-balance first and go to the INI state.
1187 */
1188 si->exp = TICK_ETERNITY;
Willy Tarreaue7dff022015-04-03 01:14:29 +02001189 if (unlikely(!(s->flags & SF_ASSIGNED)))
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001190 si->state = SI_ST_REQ;
1191 else {
1192 s->logs.t_queue = tv_ms_elapsed(&s->logs.tv_accept, &now);
1193 si->state = SI_ST_ASS;
1194 }
1195 return;
1196 }
1197
1198 /* Connection request still in queue... */
1199 if (si->flags & SI_FL_EXP) {
1200 /* ... and timeout expired */
1201 si->exp = TICK_ETERNITY;
1202 s->logs.t_queue = tv_ms_elapsed(&s->logs.tv_accept, &now);
Willy Tarreau827aee92011-03-10 16:55:02 +01001203 if (srv)
1204 srv->counters.failed_conns++;
Willy Tarreau7d0aaf32011-03-10 23:25:56 +01001205 s->be->be_counters.failed_conns++;
Willy Tarreau73b013b2012-05-21 16:31:45 +02001206 si_shutr(si);
1207 si_shutw(si);
Willy Tarreau103197d2014-11-28 15:26:12 +01001208 req->flags |= CF_WRITE_TIMEOUT;
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001209 if (!si->err_type)
1210 si->err_type = SI_ET_QUEUE_TO;
1211 si->state = SI_ST_CLO;
Willy Tarreau0cac36f2008-11-30 20:44:17 +01001212 if (s->srv_error)
1213 s->srv_error(s, si);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001214 return;
1215 }
1216
1217 /* Connection remains in queue, check if we have to abort it */
Willy Tarreau103197d2014-11-28 15:26:12 +01001218 if ((req->flags & (CF_READ_ERROR)) ||
1219 ((req->flags & CF_SHUTW_NOW) && /* empty and client aborted */
1220 (channel_is_empty(req) || s->be->options & PR_O_ABRT_CLOSE))) {
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001221 /* give up */
1222 si->exp = TICK_ETERNITY;
1223 s->logs.t_queue = tv_ms_elapsed(&s->logs.tv_accept, &now);
Willy Tarreau73b013b2012-05-21 16:31:45 +02001224 si_shutr(si);
1225 si_shutw(si);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001226 si->err_type |= SI_ET_QUEUE_ABRT;
1227 si->state = SI_ST_CLO;
Willy Tarreau0cac36f2008-11-30 20:44:17 +01001228 if (s->srv_error)
1229 s->srv_error(s, si);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001230 return;
1231 }
1232
1233 /* Nothing changed */
1234 return;
1235 }
1236 else if (si->state == SI_ST_TAR) {
1237 /* Connection request might be aborted */
Willy Tarreau103197d2014-11-28 15:26:12 +01001238 if ((req->flags & (CF_READ_ERROR)) ||
1239 ((req->flags & CF_SHUTW_NOW) && /* empty and client aborted */
1240 (channel_is_empty(req) || s->be->options & PR_O_ABRT_CLOSE))) {
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001241 /* give up */
1242 si->exp = TICK_ETERNITY;
Willy Tarreau73b013b2012-05-21 16:31:45 +02001243 si_shutr(si);
1244 si_shutw(si);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001245 si->err_type |= SI_ET_CONN_ABRT;
1246 si->state = SI_ST_CLO;
Willy Tarreau0cac36f2008-11-30 20:44:17 +01001247 if (s->srv_error)
1248 s->srv_error(s, si);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001249 return;
1250 }
1251
1252 if (!(si->flags & SI_FL_EXP))
1253 return; /* still in turn-around */
1254
1255 si->exp = TICK_ETERNITY;
1256
Willy Tarreau87b09662015-04-03 00:22:06 +02001257 /* we keep trying on the same server as long as the stream is
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001258 * marked "assigned".
1259 * FIXME: Should we force a redispatch attempt when the server is down ?
1260 */
Willy Tarreaue7dff022015-04-03 01:14:29 +02001261 if (s->flags & SF_ASSIGNED)
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001262 si->state = SI_ST_ASS;
1263 else
1264 si->state = SI_ST_REQ;
1265 return;
1266 }
1267}
1268
Willy Tarreau87b09662015-04-03 00:22:06 +02001269/* Set correct stream termination flags in case no analyser has done it. It
Simon Hormandec5be42011-06-08 09:19:07 +09001270 * also counts a failed request if the server state has not reached the request
1271 * stage.
1272 */
Willy Tarreau87b09662015-04-03 00:22:06 +02001273static void sess_set_term_flags(struct stream *s)
Simon Hormandec5be42011-06-08 09:19:07 +09001274{
Willy Tarreaue7dff022015-04-03 01:14:29 +02001275 if (!(s->flags & SF_FINST_MASK)) {
Simon Hormandec5be42011-06-08 09:19:07 +09001276 if (s->si[1].state < SI_ST_REQ) {
1277
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02001278 strm_sess(s)->fe->fe_counters.failed_req++;
Willy Tarreaufb0afa72015-04-03 14:46:27 +02001279 if (strm_sess(s)->listener->counters)
1280 strm_sess(s)->listener->counters->failed_req++;
Simon Hormandec5be42011-06-08 09:19:07 +09001281
Willy Tarreaue7dff022015-04-03 01:14:29 +02001282 s->flags |= SF_FINST_R;
Simon Hormandec5be42011-06-08 09:19:07 +09001283 }
1284 else if (s->si[1].state == SI_ST_QUE)
Willy Tarreaue7dff022015-04-03 01:14:29 +02001285 s->flags |= SF_FINST_Q;
Simon Hormandec5be42011-06-08 09:19:07 +09001286 else if (s->si[1].state < SI_ST_EST)
Willy Tarreaue7dff022015-04-03 01:14:29 +02001287 s->flags |= SF_FINST_C;
Simon Hormandec5be42011-06-08 09:19:07 +09001288 else if (s->si[1].state == SI_ST_EST || s->si[1].prev_state == SI_ST_EST)
Willy Tarreaue7dff022015-04-03 01:14:29 +02001289 s->flags |= SF_FINST_D;
Simon Hormandec5be42011-06-08 09:19:07 +09001290 else
Willy Tarreaue7dff022015-04-03 01:14:29 +02001291 s->flags |= SF_FINST_L;
Simon Hormandec5be42011-06-08 09:19:07 +09001292 }
1293}
1294
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001295/* This function initiates a server connection request on a stream interface
Willy Tarreaud84fb5e2013-11-30 09:06:53 +01001296 * already in SI_ST_REQ state. Upon success, the state goes to SI_ST_ASS for
1297 * a real connection to a server, indicating that a server has been assigned,
1298 * or SI_ST_EST for a successful connection to an applet. It may also return
1299 * SI_ST_QUE, or SI_ST_CLO upon error.
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001300 */
Willy Tarreau87b09662015-04-03 00:22:06 +02001301static void sess_prepare_conn_req(struct stream *s)
Willy Tarreau02d6cfc2012-03-01 18:19:58 +01001302{
Willy Tarreau7b8c4f92014-11-28 15:15:44 +01001303 struct stream_interface *si = &s->si[1];
1304
Willy Tarreau02d6cfc2012-03-01 18:19:58 +01001305 DPRINTF(stderr,"[%u] %s: sess=%p rq=%p, rp=%p, exp(r,w)=%u,%u rqf=%08x rpf=%08x rqh=%d rqt=%d rph=%d rpt=%d cs=%d ss=%d\n",
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001306 now_ms, __FUNCTION__,
1307 s,
1308 s->req, s->rep,
Willy Tarreau22ec1ea2014-11-27 20:45:39 +01001309 s->req.rex, s->res.wex,
1310 s->req.flags, s->res.flags,
Willy Tarreau350f4872014-11-28 14:42:25 +01001311 s->req.buf->i, s->req.buf->o, s->res.buf->i, s->res.buf->o, s->si[0].state, s->req.cons->state);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001312
1313 if (si->state != SI_ST_REQ)
1314 return;
1315
Willy Tarreaud84fb5e2013-11-30 09:06:53 +01001316 if (unlikely(obj_type(s->target) == OBJ_TYPE_APPLET)) {
1317 /* the applet directly goes to the EST state */
Willy Tarreau4384ddf2013-12-01 12:25:52 +01001318 struct appctx *appctx = objt_appctx(si->end);
1319
1320 if (!appctx || appctx->applet != __objt_applet(s->target))
1321 appctx = stream_int_register_handler(si, objt_applet(s->target));
1322
1323 if (!appctx) {
1324 /* No more memory, let's immediately abort. Force the
1325 * error code to ignore the ERR_LOCAL which is not a
1326 * real error.
1327 */
Willy Tarreaue7dff022015-04-03 01:14:29 +02001328 s->flags &= ~(SF_ERR_MASK | SF_FINST_MASK);
Willy Tarreau4384ddf2013-12-01 12:25:52 +01001329
1330 si_shutr(si);
1331 si_shutw(si);
Willy Tarreau103197d2014-11-28 15:26:12 +01001332 s->req.flags |= CF_WRITE_ERROR;
Willy Tarreau6bbb2f62013-12-09 17:14:23 +01001333 si->err_type = SI_ET_CONN_RES;
Willy Tarreau4384ddf2013-12-01 12:25:52 +01001334 si->state = SI_ST_CLO;
1335 if (s->srv_error)
1336 s->srv_error(s, si);
1337 return;
1338 }
1339
Willy Tarreaud84fb5e2013-11-30 09:06:53 +01001340 s->logs.t_queue = tv_ms_elapsed(&s->logs.tv_accept, &now);
Willy Tarreaud84fb5e2013-11-30 09:06:53 +01001341 si->state = SI_ST_EST;
1342 si->err_type = SI_ET_NONE;
Willy Tarreaub9a551e2014-04-23 00:35:17 +02001343 be_set_sess_last(s->be);
Willy Tarreaufac4bd12013-11-30 09:21:49 +01001344 /* let sess_establish() finish the job */
Willy Tarreaud84fb5e2013-11-30 09:06:53 +01001345 return;
1346 }
1347
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001348 /* Try to assign a server */
1349 if (srv_redispatch_connect(s) != 0) {
1350 /* We did not get a server. Either we queued the
1351 * connection request, or we encountered an error.
1352 */
1353 if (si->state == SI_ST_QUE)
1354 return;
1355
1356 /* we did not get any server, let's check the cause */
Willy Tarreau73b013b2012-05-21 16:31:45 +02001357 si_shutr(si);
1358 si_shutw(si);
Willy Tarreau103197d2014-11-28 15:26:12 +01001359 s->req.flags |= CF_WRITE_ERROR;
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001360 if (!si->err_type)
1361 si->err_type = SI_ET_CONN_OTHER;
1362 si->state = SI_ST_CLO;
Willy Tarreau0cac36f2008-11-30 20:44:17 +01001363 if (s->srv_error)
1364 s->srv_error(s, si);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001365 return;
1366 }
1367
1368 /* The server is assigned */
1369 s->logs.t_queue = tv_ms_elapsed(&s->logs.tv_accept, &now);
1370 si->state = SI_ST_ASS;
Willy Tarreaub9a551e2014-04-23 00:35:17 +02001371 be_set_sess_last(s->be);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001372}
1373
Willy Tarreau1d0dfb12009-07-07 15:10:31 +02001374/* This stream analyser checks the switching rules and changes the backend
Willy Tarreau4de91492010-01-22 19:10:05 +01001375 * if appropriate. The default_backend rule is also considered, then the
1376 * target backend's forced persistence rules are also evaluated last if any.
Willy Tarreau1d0dfb12009-07-07 15:10:31 +02001377 * It returns 1 if the processing can continue on next analysers, or zero if it
1378 * either needs more data or wants to immediately abort the request.
1379 */
Willy Tarreau87b09662015-04-03 00:22:06 +02001380static int process_switching_rules(struct stream *s, struct channel *req, int an_bit)
Willy Tarreau1d0dfb12009-07-07 15:10:31 +02001381{
Cyril Bonté47fdd8e2010-04-25 00:00:51 +02001382 struct persist_rule *prst_rule;
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02001383 struct proxy *fe = strm_sess(s)->fe;
Willy Tarreau4de91492010-01-22 19:10:05 +01001384
Willy Tarreau1d0dfb12009-07-07 15:10:31 +02001385 req->analysers &= ~an_bit;
1386 req->analyse_exp = TICK_ETERNITY;
1387
Willy Tarreau87b09662015-04-03 00:22:06 +02001388 DPRINTF(stderr,"[%u] %s: stream=%p b=%p, exp(r,w)=%u,%u bf=%08x bh=%d analysers=%02x\n",
Willy Tarreau1d0dfb12009-07-07 15:10:31 +02001389 now_ms, __FUNCTION__,
1390 s,
1391 req,
1392 req->rex, req->wex,
1393 req->flags,
Willy Tarreau9b28e032012-10-12 23:49:43 +02001394 req->buf->i,
Willy Tarreau1d0dfb12009-07-07 15:10:31 +02001395 req->analysers);
1396
1397 /* now check whether we have some switching rules for this request */
Willy Tarreaue7dff022015-04-03 01:14:29 +02001398 if (!(s->flags & SF_BE_ASSIGNED)) {
Willy Tarreau1d0dfb12009-07-07 15:10:31 +02001399 struct switching_rule *rule;
1400
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02001401 list_for_each_entry(rule, &fe->switching_rules, list) {
Willy Tarreauf51658d2014-04-23 01:21:56 +02001402 int ret = 1;
Willy Tarreau1d0dfb12009-07-07 15:10:31 +02001403
Willy Tarreauf51658d2014-04-23 01:21:56 +02001404 if (rule->cond) {
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02001405 ret = acl_exec_cond(rule->cond, fe, s, &s->txn, SMP_OPT_DIR_REQ|SMP_OPT_FINAL);
Willy Tarreauf51658d2014-04-23 01:21:56 +02001406 ret = acl_pass(ret);
1407 if (rule->cond->pol == ACL_COND_UNLESS)
1408 ret = !ret;
1409 }
Willy Tarreau1d0dfb12009-07-07 15:10:31 +02001410
1411 if (ret) {
Bertrand Jacquin702d44f2013-11-19 11:43:06 +01001412 /* If the backend name is dynamic, try to resolve the name.
1413 * If we can't resolve the name, or if any error occurs, break
1414 * the loop and fallback to the default backend.
1415 */
1416 struct proxy *backend;
1417
1418 if (rule->dynamic) {
1419 struct chunk *tmp = get_trash_chunk();
1420 if (!build_logline(s, tmp->str, tmp->size, &rule->be.expr))
1421 break;
1422 backend = findproxy(tmp->str, PR_CAP_BE);
1423 if (!backend)
1424 break;
1425 }
1426 else
1427 backend = rule->be.backend;
1428
Willy Tarreau87b09662015-04-03 00:22:06 +02001429 if (!stream_set_backend(s, backend))
Willy Tarreaubedb9ba2009-07-12 08:27:39 +02001430 goto sw_failed;
Willy Tarreau1d0dfb12009-07-07 15:10:31 +02001431 break;
1432 }
1433 }
1434
1435 /* To ensure correct connection accounting on the backend, we
1436 * have to assign one if it was not set (eg: a listen). This
1437 * measure also takes care of correctly setting the default
1438 * backend if any.
1439 */
Willy Tarreaue7dff022015-04-03 01:14:29 +02001440 if (!(s->flags & SF_BE_ASSIGNED))
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02001441 if (!stream_set_backend(s, fe->defbe.be ? fe->defbe.be : s->be))
Willy Tarreaubedb9ba2009-07-12 08:27:39 +02001442 goto sw_failed;
Willy Tarreau1d0dfb12009-07-07 15:10:31 +02001443 }
1444
Willy Tarreaufb356202010-08-03 14:02:05 +02001445 /* we don't want to run the TCP or HTTP filters again if the backend has not changed */
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02001446 if (fe == s->be) {
Willy Tarreau22ec1ea2014-11-27 20:45:39 +01001447 s->req.analysers &= ~AN_REQ_INSPECT_BE;
1448 s->req.analysers &= ~AN_REQ_HTTP_PROCESS_BE;
Willy Tarreaufb356202010-08-03 14:02:05 +02001449 }
Willy Tarreau1d0dfb12009-07-07 15:10:31 +02001450
Cyril Bonté47fdd8e2010-04-25 00:00:51 +02001451 /* as soon as we know the backend, we must check if we have a matching forced or ignored
Willy Tarreau87b09662015-04-03 00:22:06 +02001452 * persistence rule, and report that in the stream.
Willy Tarreau4de91492010-01-22 19:10:05 +01001453 */
Cyril Bonté47fdd8e2010-04-25 00:00:51 +02001454 list_for_each_entry(prst_rule, &s->be->persist_rules, list) {
Willy Tarreau4de91492010-01-22 19:10:05 +01001455 int ret = 1;
1456
1457 if (prst_rule->cond) {
Willy Tarreau32a6f2e2012-04-25 10:13:36 +02001458 ret = acl_exec_cond(prst_rule->cond, s->be, s, &s->txn, SMP_OPT_DIR_REQ|SMP_OPT_FINAL);
Willy Tarreau4de91492010-01-22 19:10:05 +01001459 ret = acl_pass(ret);
1460 if (prst_rule->cond->pol == ACL_COND_UNLESS)
1461 ret = !ret;
1462 }
1463
1464 if (ret) {
1465 /* no rule, or the rule matches */
Cyril Bonté47fdd8e2010-04-25 00:00:51 +02001466 if (prst_rule->type == PERSIST_TYPE_FORCE) {
Willy Tarreaue7dff022015-04-03 01:14:29 +02001467 s->flags |= SF_FORCE_PRST;
Cyril Bonté47fdd8e2010-04-25 00:00:51 +02001468 } else {
Willy Tarreaue7dff022015-04-03 01:14:29 +02001469 s->flags |= SF_IGNORE_PRST;
Cyril Bonté47fdd8e2010-04-25 00:00:51 +02001470 }
Willy Tarreau4de91492010-01-22 19:10:05 +01001471 break;
1472 }
1473 }
1474
Willy Tarreau1d0dfb12009-07-07 15:10:31 +02001475 return 1;
Willy Tarreaubedb9ba2009-07-12 08:27:39 +02001476
1477 sw_failed:
1478 /* immediately abort this request in case of allocation failure */
Willy Tarreau22ec1ea2014-11-27 20:45:39 +01001479 channel_abort(&s->req);
1480 channel_abort(&s->res);
Willy Tarreaubedb9ba2009-07-12 08:27:39 +02001481
Willy Tarreaue7dff022015-04-03 01:14:29 +02001482 if (!(s->flags & SF_ERR_MASK))
1483 s->flags |= SF_ERR_RESOURCE;
1484 if (!(s->flags & SF_FINST_MASK))
1485 s->flags |= SF_FINST_R;
Willy Tarreaubedb9ba2009-07-12 08:27:39 +02001486
1487 s->txn.status = 500;
Willy Tarreau22ec1ea2014-11-27 20:45:39 +01001488 s->req.analysers = 0;
1489 s->req.analyse_exp = TICK_ETERNITY;
Willy Tarreaubedb9ba2009-07-12 08:27:39 +02001490 return 0;
Willy Tarreau1d0dfb12009-07-07 15:10:31 +02001491}
1492
Willy Tarreau4a5cade2012-04-05 21:09:48 +02001493/* This stream analyser works on a request. It applies all use-server rules on
1494 * it then returns 1. The data must already be present in the buffer otherwise
1495 * they won't match. It always returns 1.
1496 */
Willy Tarreau87b09662015-04-03 00:22:06 +02001497static int process_server_rules(struct stream *s, struct channel *req, int an_bit)
Willy Tarreau4a5cade2012-04-05 21:09:48 +02001498{
1499 struct proxy *px = s->be;
1500 struct server_rule *rule;
1501
Willy Tarreau87b09662015-04-03 00:22:06 +02001502 DPRINTF(stderr,"[%u] %s: stream=%p b=%p, exp(r,w)=%u,%u bf=%08x bl=%d analysers=%02x\n",
Willy Tarreau4a5cade2012-04-05 21:09:48 +02001503 now_ms, __FUNCTION__,
1504 s,
1505 req,
1506 req->rex, req->wex,
1507 req->flags,
Willy Tarreau9b28e032012-10-12 23:49:43 +02001508 req->buf->i + req->buf->o,
Willy Tarreau4a5cade2012-04-05 21:09:48 +02001509 req->analysers);
1510
Willy Tarreaue7dff022015-04-03 01:14:29 +02001511 if (!(s->flags & SF_ASSIGNED)) {
Willy Tarreau4a5cade2012-04-05 21:09:48 +02001512 list_for_each_entry(rule, &px->server_rules, list) {
1513 int ret;
1514
Willy Tarreau32a6f2e2012-04-25 10:13:36 +02001515 ret = acl_exec_cond(rule->cond, s->be, s, &s->txn, SMP_OPT_DIR_REQ|SMP_OPT_FINAL);
Willy Tarreau4a5cade2012-04-05 21:09:48 +02001516 ret = acl_pass(ret);
1517 if (rule->cond->pol == ACL_COND_UNLESS)
1518 ret = !ret;
1519
1520 if (ret) {
1521 struct server *srv = rule->srv.ptr;
1522
Willy Tarreau892337c2014-05-13 23:41:20 +02001523 if ((srv->state != SRV_ST_STOPPED) ||
Willy Tarreau4a5cade2012-04-05 21:09:48 +02001524 (px->options & PR_O_PERSIST) ||
Willy Tarreaue7dff022015-04-03 01:14:29 +02001525 (s->flags & SF_FORCE_PRST)) {
1526 s->flags |= SF_DIRECT | SF_ASSIGNED;
Willy Tarreau3fdb3662012-11-12 00:42:33 +01001527 s->target = &srv->obj_type;
Willy Tarreau4a5cade2012-04-05 21:09:48 +02001528 break;
1529 }
1530 /* if the server is not UP, let's go on with next rules
1531 * just in case another one is suited.
1532 */
1533 }
1534 }
1535 }
1536
1537 req->analysers &= ~an_bit;
1538 req->analyse_exp = TICK_ETERNITY;
1539 return 1;
1540}
1541
Emeric Brun1d33b292010-01-04 15:47:17 +01001542/* This stream analyser works on a request. It applies all sticking rules on
1543 * it then returns 1. The data must already be present in the buffer otherwise
1544 * they won't match. It always returns 1.
1545 */
Willy Tarreau87b09662015-04-03 00:22:06 +02001546static int process_sticking_rules(struct stream *s, struct channel *req, int an_bit)
Emeric Brun1d33b292010-01-04 15:47:17 +01001547{
1548 struct proxy *px = s->be;
1549 struct sticking_rule *rule;
1550
Willy Tarreau87b09662015-04-03 00:22:06 +02001551 DPRINTF(stderr,"[%u] %s: stream=%p b=%p, exp(r,w)=%u,%u bf=%08x bh=%d analysers=%02x\n",
Emeric Brun1d33b292010-01-04 15:47:17 +01001552 now_ms, __FUNCTION__,
1553 s,
1554 req,
1555 req->rex, req->wex,
1556 req->flags,
Willy Tarreau9b28e032012-10-12 23:49:43 +02001557 req->buf->i,
Emeric Brun1d33b292010-01-04 15:47:17 +01001558 req->analysers);
1559
1560 list_for_each_entry(rule, &px->sticking_rules, list) {
1561 int ret = 1 ;
1562 int i;
1563
Willy Tarreau9667a802013-12-09 12:52:13 +01001564 /* Only the first stick store-request of each table is applied
1565 * and other ones are ignored. The purpose is to allow complex
1566 * configurations which look for multiple entries by decreasing
1567 * order of precision and to stop at the first which matches.
1568 * An example could be a store of the IP address from an HTTP
1569 * header first, then from the source if not found.
1570 */
Emeric Brun1d33b292010-01-04 15:47:17 +01001571 for (i = 0; i < s->store_count; i++) {
1572 if (rule->table.t == s->store[i].table)
1573 break;
1574 }
1575
1576 if (i != s->store_count)
1577 continue;
1578
1579 if (rule->cond) {
Willy Tarreau32a6f2e2012-04-25 10:13:36 +02001580 ret = acl_exec_cond(rule->cond, px, s, &s->txn, SMP_OPT_DIR_REQ|SMP_OPT_FINAL);
Emeric Brun1d33b292010-01-04 15:47:17 +01001581 ret = acl_pass(ret);
1582 if (rule->cond->pol == ACL_COND_UNLESS)
1583 ret = !ret;
1584 }
1585
1586 if (ret) {
1587 struct stktable_key *key;
1588
Willy Tarreaub5975de2014-06-25 16:20:53 +02001589 key = stktable_fetch_key(rule->table.t, px, s, &s->txn, SMP_OPT_DIR_REQ|SMP_OPT_FINAL, rule->expr, NULL);
Emeric Brun1d33b292010-01-04 15:47:17 +01001590 if (!key)
1591 continue;
1592
1593 if (rule->flags & STK_IS_MATCH) {
1594 struct stksess *ts;
1595
Willy Tarreauf16d2b82010-06-06 15:38:59 +02001596 if ((ts = stktable_lookup_key(rule->table.t, key)) != NULL) {
Willy Tarreaue7dff022015-04-03 01:14:29 +02001597 if (!(s->flags & SF_ASSIGNED)) {
Emeric Brun1d33b292010-01-04 15:47:17 +01001598 struct eb32_node *node;
Willy Tarreau13c29de2010-06-06 16:40:39 +02001599 void *ptr;
Emeric Brun1d33b292010-01-04 15:47:17 +01001600
1601 /* srv found in table */
Willy Tarreau13c29de2010-06-06 16:40:39 +02001602 ptr = stktable_data_ptr(rule->table.t, ts, STKTABLE_DT_SERVER_ID);
1603 node = eb32_lookup(&px->conf.used_server_id, stktable_data_cast(ptr, server_id));
Emeric Brun1d33b292010-01-04 15:47:17 +01001604 if (node) {
1605 struct server *srv;
1606
1607 srv = container_of(node, struct server, conf.id);
Willy Tarreau892337c2014-05-13 23:41:20 +02001608 if ((srv->state != SRV_ST_STOPPED) ||
Willy Tarreau4de91492010-01-22 19:10:05 +01001609 (px->options & PR_O_PERSIST) ||
Willy Tarreaue7dff022015-04-03 01:14:29 +02001610 (s->flags & SF_FORCE_PRST)) {
1611 s->flags |= SF_DIRECT | SF_ASSIGNED;
Willy Tarreau3fdb3662012-11-12 00:42:33 +01001612 s->target = &srv->obj_type;
Emeric Brun1d33b292010-01-04 15:47:17 +01001613 }
1614 }
1615 }
Emeric Brun85e77c72010-09-23 18:16:52 +02001616 stktable_touch(rule->table.t, ts, 1);
Emeric Brun1d33b292010-01-04 15:47:17 +01001617 }
1618 }
1619 if (rule->flags & STK_IS_STORE) {
1620 if (s->store_count < (sizeof(s->store) / sizeof(s->store[0]))) {
1621 struct stksess *ts;
1622
1623 ts = stksess_new(rule->table.t, key);
1624 if (ts) {
1625 s->store[s->store_count].table = rule->table.t;
1626 s->store[s->store_count++].ts = ts;
1627 }
1628 }
1629 }
1630 }
1631 }
1632
1633 req->analysers &= ~an_bit;
1634 req->analyse_exp = TICK_ETERNITY;
1635 return 1;
1636}
1637
1638/* This stream analyser works on a response. It applies all store rules on it
1639 * then returns 1. The data must already be present in the buffer otherwise
1640 * they won't match. It always returns 1.
1641 */
Willy Tarreau87b09662015-04-03 00:22:06 +02001642static int process_store_rules(struct stream *s, struct channel *rep, int an_bit)
Emeric Brun1d33b292010-01-04 15:47:17 +01001643{
1644 struct proxy *px = s->be;
1645 struct sticking_rule *rule;
1646 int i;
Willy Tarreau9667a802013-12-09 12:52:13 +01001647 int nbreq = s->store_count;
Emeric Brun1d33b292010-01-04 15:47:17 +01001648
Willy Tarreau87b09662015-04-03 00:22:06 +02001649 DPRINTF(stderr,"[%u] %s: stream=%p b=%p, exp(r,w)=%u,%u bf=%08x bh=%d analysers=%02x\n",
Emeric Brun1d33b292010-01-04 15:47:17 +01001650 now_ms, __FUNCTION__,
1651 s,
Willy Tarreau2e2b3eb2010-02-09 20:55:44 +01001652 rep,
1653 rep->rex, rep->wex,
1654 rep->flags,
Willy Tarreau9b28e032012-10-12 23:49:43 +02001655 rep->buf->i,
Willy Tarreau2e2b3eb2010-02-09 20:55:44 +01001656 rep->analysers);
Emeric Brun1d33b292010-01-04 15:47:17 +01001657
1658 list_for_each_entry(rule, &px->storersp_rules, list) {
1659 int ret = 1 ;
Emeric Brun1d33b292010-01-04 15:47:17 +01001660
Willy Tarreau9667a802013-12-09 12:52:13 +01001661 /* Only the first stick store-response of each table is applied
1662 * and other ones are ignored. The purpose is to allow complex
1663 * configurations which look for multiple entries by decreasing
1664 * order of precision and to stop at the first which matches.
1665 * An example could be a store of a set-cookie value, with a
1666 * fallback to a parameter found in a 302 redirect.
1667 *
1668 * The store-response rules are not allowed to override the
1669 * store-request rules for the same table, but they may coexist.
1670 * Thus we can have up to one store-request entry and one store-
1671 * response entry for the same table at any time.
1672 */
1673 for (i = nbreq; i < s->store_count; i++) {
1674 if (rule->table.t == s->store[i].table)
1675 break;
1676 }
1677
1678 /* skip existing entries for this table */
1679 if (i < s->store_count)
1680 continue;
1681
Emeric Brun1d33b292010-01-04 15:47:17 +01001682 if (rule->cond) {
Willy Tarreau32a6f2e2012-04-25 10:13:36 +02001683 ret = acl_exec_cond(rule->cond, px, s, &s->txn, SMP_OPT_DIR_RES|SMP_OPT_FINAL);
Emeric Brun1d33b292010-01-04 15:47:17 +01001684 ret = acl_pass(ret);
1685 if (rule->cond->pol == ACL_COND_UNLESS)
1686 ret = !ret;
1687 }
1688
1689 if (ret) {
1690 struct stktable_key *key;
1691
Willy Tarreaub5975de2014-06-25 16:20:53 +02001692 key = stktable_fetch_key(rule->table.t, px, s, &s->txn, SMP_OPT_DIR_RES|SMP_OPT_FINAL, rule->expr, NULL);
Emeric Brun1d33b292010-01-04 15:47:17 +01001693 if (!key)
1694 continue;
1695
Willy Tarreau37e340c2013-12-06 23:05:21 +01001696 if (s->store_count < (sizeof(s->store) / sizeof(s->store[0]))) {
Emeric Brun1d33b292010-01-04 15:47:17 +01001697 struct stksess *ts;
1698
1699 ts = stksess_new(rule->table.t, key);
1700 if (ts) {
1701 s->store[s->store_count].table = rule->table.t;
Emeric Brun1d33b292010-01-04 15:47:17 +01001702 s->store[s->store_count++].ts = ts;
1703 }
1704 }
1705 }
1706 }
1707
1708 /* process store request and store response */
1709 for (i = 0; i < s->store_count; i++) {
Willy Tarreauf16d2b82010-06-06 15:38:59 +02001710 struct stksess *ts;
Willy Tarreau13c29de2010-06-06 16:40:39 +02001711 void *ptr;
Willy Tarreauf16d2b82010-06-06 15:38:59 +02001712
Willy Tarreauc93cd162014-05-13 15:54:22 +02001713 if (objt_server(s->target) && objt_server(s->target)->flags & SRV_F_NON_STICK) {
Simon Hormanfa461682011-06-25 09:39:49 +09001714 stksess_free(s->store[i].table, s->store[i].ts);
1715 s->store[i].ts = NULL;
1716 continue;
1717 }
1718
Willy Tarreauf16d2b82010-06-06 15:38:59 +02001719 ts = stktable_lookup(s->store[i].table, s->store[i].ts);
1720 if (ts) {
1721 /* the entry already existed, we can free ours */
Emeric Brun85e77c72010-09-23 18:16:52 +02001722 stktable_touch(s->store[i].table, ts, 1);
Emeric Brun1d33b292010-01-04 15:47:17 +01001723 stksess_free(s->store[i].table, s->store[i].ts);
Emeric Brun1d33b292010-01-04 15:47:17 +01001724 }
Willy Tarreauf16d2b82010-06-06 15:38:59 +02001725 else
Emeric Brun85e77c72010-09-23 18:16:52 +02001726 ts = stktable_store(s->store[i].table, s->store[i].ts, 1);
Willy Tarreauf16d2b82010-06-06 15:38:59 +02001727
1728 s->store[i].ts = NULL;
Willy Tarreau13c29de2010-06-06 16:40:39 +02001729 ptr = stktable_data_ptr(s->store[i].table, ts, STKTABLE_DT_SERVER_ID);
Willy Tarreau3fdb3662012-11-12 00:42:33 +01001730 stktable_data_cast(ptr, server_id) = objt_server(s->target)->puid;
Emeric Brun1d33b292010-01-04 15:47:17 +01001731 }
Willy Tarreau2a164ee2010-06-18 09:57:45 +02001732 s->store_count = 0; /* everything is stored */
Emeric Brun1d33b292010-01-04 15:47:17 +01001733
1734 rep->analysers &= ~an_bit;
1735 rep->analyse_exp = TICK_ETERNITY;
1736 return 1;
1737}
1738
Willy Tarreau1e0bbaf2010-01-06 23:53:24 +01001739/* This macro is very specific to the function below. See the comments in
Willy Tarreau87b09662015-04-03 00:22:06 +02001740 * process_stream() below to understand the logic and the tests.
Willy Tarreau1e0bbaf2010-01-06 23:53:24 +01001741 */
1742#define UPDATE_ANALYSERS(real, list, back, flag) { \
1743 list = (((list) & ~(flag)) | ~(back)) & (real); \
1744 back = real; \
1745 if (!(list)) \
1746 break; \
1747 if (((list) ^ ((list) & ((list) - 1))) < (flag)) \
1748 continue; \
1749}
1750
Willy Tarreau87b09662015-04-03 00:22:06 +02001751/* Processes the client, server, request and response jobs of a stream task,
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001752 * then puts it back to the wait queue in a clean state, or cleans up its
1753 * resources if it must be deleted. Returns in <next> the date the task wants
1754 * to be woken up, or TICK_ETERNITY. In order not to call all functions for
1755 * nothing too many times, the request and response buffers flags are monitored
1756 * and each function is called only if at least another function has changed at
1757 * least one flag it is interested in.
1758 */
Willy Tarreau87b09662015-04-03 00:22:06 +02001759struct task *process_stream(struct task *t)
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001760{
Willy Tarreau827aee92011-03-10 16:55:02 +01001761 struct server *srv;
Willy Tarreau87b09662015-04-03 00:22:06 +02001762 struct stream *s = t->context;
Willy Tarreaufb0afa72015-04-03 14:46:27 +02001763 struct session *sess = s->sess;
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001764 unsigned int rqf_last, rpf_last;
Willy Tarreau815a9b22010-07-27 17:15:12 +02001765 unsigned int rq_prod_last, rq_cons_last;
1766 unsigned int rp_cons_last, rp_prod_last;
Willy Tarreau576507f2010-01-07 00:09:04 +01001767 unsigned int req_ana_back;
Willy Tarreau8f128b42014-11-28 15:07:47 +01001768 struct channel *req, *res;
1769 struct stream_interface *si_f, *si_b;
1770
1771 req = &s->req;
1772 res = &s->res;
1773
1774 si_f = &s->si[0];
1775 si_b = &s->si[1];
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001776
1777 //DPRINTF(stderr, "%s:%d: cs=%d ss=%d(%d) rqf=0x%08x rpf=0x%08x\n", __FUNCTION__, __LINE__,
Willy Tarreau8f128b42014-11-28 15:07:47 +01001778 // si_f->state, si_b->state, si_b->err_type, req->flags, res->flags);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001779
Krzysztof Piotr Oledzkif9423ae2010-01-29 19:26:18 +01001780 /* this data may be no longer valid, clear it */
1781 memset(&s->txn.auth, 0, sizeof(s->txn.auth));
1782
Willy Tarreau6f0a7ba2014-06-23 15:22:31 +02001783 /* This flag must explicitly be set every time */
Willy Tarreau8f128b42014-11-28 15:07:47 +01001784 req->flags &= ~(CF_READ_NOEXP|CF_WAKE_WRITE);
1785 res->flags &= ~(CF_READ_NOEXP|CF_WAKE_WRITE);
Willy Tarreaub67a9b82009-06-21 22:03:51 +02001786
1787 /* Keep a copy of req/rep flags so that we can detect shutdowns */
Willy Tarreau8f128b42014-11-28 15:07:47 +01001788 rqf_last = req->flags & ~CF_MASK_ANALYSER;
1789 rpf_last = res->flags & ~CF_MASK_ANALYSER;
Willy Tarreaub67a9b82009-06-21 22:03:51 +02001790
Willy Tarreau89f7ef22009-09-05 20:57:35 +02001791 /* we don't want the stream interface functions to recursively wake us up */
Willy Tarreau8f128b42014-11-28 15:07:47 +01001792 si_f->flags |= SI_FL_DONT_WAKE;
1793 si_b->flags |= SI_FL_DONT_WAKE;
Willy Tarreau89f7ef22009-09-05 20:57:35 +02001794
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001795 /* 1a: Check for low level timeouts if needed. We just set a flag on
1796 * stream interfaces when their timeouts have expired.
1797 */
1798 if (unlikely(t->state & TASK_WOKEN_TIMER)) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01001799 stream_int_check_timeouts(si_f);
1800 stream_int_check_timeouts(si_b);
Willy Tarreaub67a9b82009-06-21 22:03:51 +02001801
Willy Tarreau8263d2b2012-08-28 00:06:31 +02001802 /* check channel timeouts, and close the corresponding stream interfaces
Willy Tarreaub67a9b82009-06-21 22:03:51 +02001803 * for future reads or writes. Note: this will also concern upper layers
1804 * but we do not touch any other flag. We must be careful and correctly
1805 * detect state changes when calling them.
1806 */
1807
Willy Tarreau8f128b42014-11-28 15:07:47 +01001808 channel_check_timeouts(req);
Willy Tarreaub67a9b82009-06-21 22:03:51 +02001809
Willy Tarreau8f128b42014-11-28 15:07:47 +01001810 if (unlikely((req->flags & (CF_SHUTW|CF_WRITE_TIMEOUT)) == CF_WRITE_TIMEOUT)) {
1811 si_b->flags |= SI_FL_NOLINGER;
1812 si_shutw(si_b);
Willy Tarreau14641402009-12-29 14:49:56 +01001813 }
1814
Willy Tarreau8f128b42014-11-28 15:07:47 +01001815 if (unlikely((req->flags & (CF_SHUTR|CF_READ_TIMEOUT)) == CF_READ_TIMEOUT)) {
1816 if (si_f->flags & SI_FL_NOHALF)
1817 si_f->flags |= SI_FL_NOLINGER;
1818 si_shutr(si_f);
Willy Tarreau7bb68ab2012-05-13 14:48:59 +02001819 }
Willy Tarreaub67a9b82009-06-21 22:03:51 +02001820
Willy Tarreau8f128b42014-11-28 15:07:47 +01001821 channel_check_timeouts(res);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001822
Willy Tarreau8f128b42014-11-28 15:07:47 +01001823 if (unlikely((res->flags & (CF_SHUTW|CF_WRITE_TIMEOUT)) == CF_WRITE_TIMEOUT)) {
1824 si_f->flags |= SI_FL_NOLINGER;
1825 si_shutw(si_f);
Willy Tarreau14641402009-12-29 14:49:56 +01001826 }
1827
Willy Tarreau8f128b42014-11-28 15:07:47 +01001828 if (unlikely((res->flags & (CF_SHUTR|CF_READ_TIMEOUT)) == CF_READ_TIMEOUT)) {
1829 if (si_b->flags & SI_FL_NOHALF)
1830 si_b->flags |= SI_FL_NOLINGER;
1831 si_shutr(si_b);
Willy Tarreau7bb68ab2012-05-13 14:48:59 +02001832 }
Willy Tarreau798f4322012-11-08 14:49:17 +01001833
1834 /* Once in a while we're woken up because the task expires. But
1835 * this does not necessarily mean that a timeout has been reached.
Willy Tarreau87b09662015-04-03 00:22:06 +02001836 * So let's not run a whole stream processing if only an expiration
Willy Tarreau798f4322012-11-08 14:49:17 +01001837 * timeout needs to be refreshed.
1838 */
Willy Tarreau8f128b42014-11-28 15:07:47 +01001839 if (!((req->flags | res->flags) &
Willy Tarreau798f4322012-11-08 14:49:17 +01001840 (CF_SHUTR|CF_READ_ACTIVITY|CF_READ_TIMEOUT|CF_SHUTW|
1841 CF_WRITE_ACTIVITY|CF_WRITE_TIMEOUT|CF_ANA_TIMEOUT)) &&
Willy Tarreau8f128b42014-11-28 15:07:47 +01001842 !((si_f->flags | si_b->flags) & (SI_FL_EXP|SI_FL_ERR)) &&
Willy Tarreau798f4322012-11-08 14:49:17 +01001843 ((t->state & TASK_WOKEN_ANY) == TASK_WOKEN_TIMER))
1844 goto update_exp_and_leave;
Willy Tarreaub67a9b82009-06-21 22:03:51 +02001845 }
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001846
Willy Tarreau10fc09e2014-11-25 19:46:36 +01001847 /* below we may emit error messages so we have to ensure that we have
1848 * our buffers properly allocated.
1849 */
Willy Tarreau87b09662015-04-03 00:22:06 +02001850 if (!stream_alloc_work_buffer(s)) {
Willy Tarreau10fc09e2014-11-25 19:46:36 +01001851 /* No buffer available, we've been subscribed to the list of
1852 * buffer waiters, let's wait for our turn.
1853 */
1854 goto update_exp_and_leave;
1855 }
1856
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001857 /* 1b: check for low-level errors reported at the stream interface.
1858 * First we check if it's a retryable error (in which case we don't
1859 * want to tell the buffer). Otherwise we report the error one level
1860 * upper by setting flags into the buffers. Note that the side towards
1861 * the client cannot have connect (hence retryable) errors. Also, the
1862 * connection setup code must be able to deal with any type of abort.
1863 */
Willy Tarreau3fdb3662012-11-12 00:42:33 +01001864 srv = objt_server(s->target);
Willy Tarreau8f128b42014-11-28 15:07:47 +01001865 if (unlikely(si_f->flags & SI_FL_ERR)) {
1866 if (si_f->state == SI_ST_EST || si_f->state == SI_ST_DIS) {
1867 si_shutr(si_f);
1868 si_shutw(si_f);
1869 stream_int_report_error(si_f);
1870 if (!(req->analysers) && !(res->analysers)) {
Willy Tarreau7d0aaf32011-03-10 23:25:56 +01001871 s->be->be_counters.cli_aborts++;
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02001872 sess->fe->fe_counters.cli_aborts++;
Willy Tarreau827aee92011-03-10 16:55:02 +01001873 if (srv)
1874 srv->counters.cli_aborts++;
Willy Tarreaue7dff022015-04-03 01:14:29 +02001875 if (!(s->flags & SF_ERR_MASK))
1876 s->flags |= SF_ERR_CLICL;
1877 if (!(s->flags & SF_FINST_MASK))
1878 s->flags |= SF_FINST_D;
Willy Tarreau05cb29b2008-12-14 11:44:04 +01001879 }
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001880 }
1881 }
1882
Willy Tarreau8f128b42014-11-28 15:07:47 +01001883 if (unlikely(si_b->flags & SI_FL_ERR)) {
1884 if (si_b->state == SI_ST_EST || si_b->state == SI_ST_DIS) {
1885 si_shutr(si_b);
1886 si_shutw(si_b);
1887 stream_int_report_error(si_b);
Willy Tarreau7d0aaf32011-03-10 23:25:56 +01001888 s->be->be_counters.failed_resp++;
Willy Tarreau827aee92011-03-10 16:55:02 +01001889 if (srv)
1890 srv->counters.failed_resp++;
Willy Tarreau8f128b42014-11-28 15:07:47 +01001891 if (!(req->analysers) && !(res->analysers)) {
Willy Tarreau7d0aaf32011-03-10 23:25:56 +01001892 s->be->be_counters.srv_aborts++;
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02001893 sess->fe->fe_counters.srv_aborts++;
Willy Tarreau827aee92011-03-10 16:55:02 +01001894 if (srv)
1895 srv->counters.srv_aborts++;
Willy Tarreaue7dff022015-04-03 01:14:29 +02001896 if (!(s->flags & SF_ERR_MASK))
1897 s->flags |= SF_ERR_SRVCL;
1898 if (!(s->flags & SF_FINST_MASK))
1899 s->flags |= SF_FINST_D;
Willy Tarreau05cb29b2008-12-14 11:44:04 +01001900 }
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001901 }
1902 /* note: maybe we should process connection errors here ? */
1903 }
1904
Willy Tarreau8f128b42014-11-28 15:07:47 +01001905 if (si_b->state == SI_ST_CON) {
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001906 /* we were trying to establish a connection on the server side,
1907 * maybe it succeeded, maybe it failed, maybe we timed out, ...
1908 */
Willy Tarreau7b8c4f92014-11-28 15:15:44 +01001909 if (unlikely(!sess_update_st_con_tcp(s)))
1910 sess_update_st_cer(s);
Willy Tarreau8f128b42014-11-28 15:07:47 +01001911 else if (si_b->state == SI_ST_EST)
Willy Tarreau7b8c4f92014-11-28 15:15:44 +01001912 sess_establish(s);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001913
1914 /* state is now one of SI_ST_CON (still in progress), SI_ST_EST
1915 * (established), SI_ST_DIS (abort), SI_ST_CLO (last error),
1916 * SI_ST_ASS/SI_ST_TAR/SI_ST_REQ for retryable errors.
1917 */
1918 }
1919
Willy Tarreau8f128b42014-11-28 15:07:47 +01001920 rq_prod_last = si_f->state;
1921 rq_cons_last = si_b->state;
1922 rp_cons_last = si_f->state;
1923 rp_prod_last = si_b->state;
Willy Tarreau815a9b22010-07-27 17:15:12 +02001924
1925 resync_stream_interface:
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001926 /* Check for connection closure */
1927
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001928 DPRINTF(stderr,
Willy Tarreau02d6cfc2012-03-01 18:19:58 +01001929 "[%u] %s:%d: task=%p s=%p, sfl=0x%08x, rq=%p, rp=%p, exp(r,w)=%u,%u rqf=%08x rpf=%08x rqh=%d rqt=%d rph=%d rpt=%d cs=%d ss=%d, cet=0x%x set=0x%x retr=%d\n",
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001930 now_ms, __FUNCTION__, __LINE__,
1931 t,
1932 s, s->flags,
Willy Tarreau8f128b42014-11-28 15:07:47 +01001933 req, res,
1934 req->rex, res->wex,
1935 req->flags, res->flags,
1936 req->buf->i, req->buf->o, res->buf->i, res->buf->o, si_f->state, si_b->state,
1937 si_f->err_type, si_b->err_type,
1938 si_b->conn_retries);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001939
1940 /* nothing special to be done on client side */
Willy Tarreau8f128b42014-11-28 15:07:47 +01001941 if (unlikely(si_f->state == SI_ST_DIS))
1942 si_f->state = SI_ST_CLO;
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001943
1944 /* When a server-side connection is released, we have to count it and
1945 * check for pending connections on this server.
1946 */
Willy Tarreau8f128b42014-11-28 15:07:47 +01001947 if (unlikely(si_b->state == SI_ST_DIS)) {
1948 si_b->state = SI_ST_CLO;
Willy Tarreau3fdb3662012-11-12 00:42:33 +01001949 srv = objt_server(s->target);
Willy Tarreau827aee92011-03-10 16:55:02 +01001950 if (srv) {
Willy Tarreaue7dff022015-04-03 01:14:29 +02001951 if (s->flags & SF_CURR_SESS) {
1952 s->flags &= ~SF_CURR_SESS;
Willy Tarreau827aee92011-03-10 16:55:02 +01001953 srv->cur_sess--;
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001954 }
1955 sess_change_server(s, NULL);
Willy Tarreau827aee92011-03-10 16:55:02 +01001956 if (may_dequeue_tasks(srv, s->be))
1957 process_srv_queue(srv);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001958 }
1959 }
1960
1961 /*
1962 * Note: of the transient states (REQ, CER, DIS), only REQ may remain
1963 * at this point.
1964 */
1965
Willy Tarreau0be0ef92009-03-08 19:20:25 +01001966 resync_request:
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001967 /* Analyse request */
Willy Tarreau8f128b42014-11-28 15:07:47 +01001968 if (((req->flags & ~rqf_last) & CF_MASK_ANALYSER) ||
1969 ((req->flags ^ rqf_last) & CF_MASK_STATIC) ||
1970 si_f->state != rq_prod_last ||
1971 si_b->state != rq_cons_last ||
Thierry FOURNIER2e05a8c2014-11-24 14:49:56 +01001972 s->task->state & TASK_WOKEN_MSG) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01001973 unsigned int flags = req->flags;
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01001974
Willy Tarreau8f128b42014-11-28 15:07:47 +01001975 if (si_f->state >= SI_ST_EST) {
Willy Tarreaue34070e2010-01-08 00:32:27 +01001976 int max_loops = global.tune.maxpollevents;
Willy Tarreau1e0bbaf2010-01-06 23:53:24 +01001977 unsigned int ana_list;
1978 unsigned int ana_back;
Willy Tarreau1a52dbd2009-06-28 19:37:53 +02001979
Willy Tarreau90deb182010-01-07 00:20:41 +01001980 /* it's up to the analysers to stop new connections,
1981 * disable reading or closing. Note: if an analyser
1982 * disables any of these bits, it is responsible for
1983 * enabling them again when it disables itself, so
1984 * that other analysers are called in similar conditions.
1985 */
Willy Tarreau8f128b42014-11-28 15:07:47 +01001986 channel_auto_read(req);
1987 channel_auto_connect(req);
1988 channel_auto_close(req);
Willy Tarreauedcf6682008-11-30 23:15:34 +01001989
1990 /* We will call all analysers for which a bit is set in
Willy Tarreau8f128b42014-11-28 15:07:47 +01001991 * req->analysers, following the bit order from LSB
Willy Tarreauedcf6682008-11-30 23:15:34 +01001992 * to MSB. The analysers must remove themselves from
Willy Tarreau1a52dbd2009-06-28 19:37:53 +02001993 * the list when not needed. Any analyser may return 0
1994 * to break out of the loop, either because of missing
1995 * data to take a decision, or because it decides to
Willy Tarreau87b09662015-04-03 00:22:06 +02001996 * kill the stream. We loop at least once through each
Willy Tarreau1a52dbd2009-06-28 19:37:53 +02001997 * analyser, and we may loop again if other analysers
1998 * are added in the middle.
Willy Tarreau1e0bbaf2010-01-06 23:53:24 +01001999 *
2000 * We build a list of analysers to run. We evaluate all
2001 * of these analysers in the order of the lower bit to
2002 * the higher bit. This ordering is very important.
2003 * An analyser will often add/remove other analysers,
2004 * including itself. Any changes to itself have no effect
2005 * on the loop. If it removes any other analysers, we
2006 * want those analysers not to be called anymore during
2007 * this loop. If it adds an analyser that is located
2008 * after itself, we want it to be scheduled for being
2009 * processed during the loop. If it adds an analyser
2010 * which is located before it, we want it to switch to
2011 * it immediately, even if it has already been called
2012 * once but removed since.
2013 *
2014 * In order to achieve this, we compare the analyser
2015 * list after the call with a copy of it before the
2016 * call. The work list is fed with analyser bits that
2017 * appeared during the call. Then we compare previous
2018 * work list with the new one, and check the bits that
2019 * appeared. If the lowest of these bits is lower than
2020 * the current bit, it means we have enabled a previous
2021 * analyser and must immediately loop again.
Willy Tarreauedcf6682008-11-30 23:15:34 +01002022 */
Willy Tarreau1e0bbaf2010-01-06 23:53:24 +01002023
Willy Tarreau8f128b42014-11-28 15:07:47 +01002024 ana_list = ana_back = req->analysers;
Willy Tarreaue34070e2010-01-08 00:32:27 +01002025 while (ana_list && max_loops--) {
Willy Tarreau1e0bbaf2010-01-06 23:53:24 +01002026 /* Warning! ensure that analysers are always placed in ascending order! */
Willy Tarreau1a52dbd2009-06-28 19:37:53 +02002027
Willy Tarreaufb356202010-08-03 14:02:05 +02002028 if (ana_list & AN_REQ_INSPECT_FE) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002029 if (!tcp_inspect_request(s, req, AN_REQ_INSPECT_FE))
Willy Tarreauedcf6682008-11-30 23:15:34 +01002030 break;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002031 UPDATE_ANALYSERS(req->analysers, ana_list, ana_back, AN_REQ_INSPECT_FE);
Willy Tarreau1a52dbd2009-06-28 19:37:53 +02002032 }
Willy Tarreauedcf6682008-11-30 23:15:34 +01002033
Willy Tarreau1e0bbaf2010-01-06 23:53:24 +01002034 if (ana_list & AN_REQ_WAIT_HTTP) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002035 if (!http_wait_for_request(s, req, AN_REQ_WAIT_HTTP))
Willy Tarreaud787e662009-07-07 10:14:51 +02002036 break;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002037 UPDATE_ANALYSERS(req->analysers, ana_list, ana_back, AN_REQ_WAIT_HTTP);
Willy Tarreaud787e662009-07-07 10:14:51 +02002038 }
2039
Willy Tarreau1e0bbaf2010-01-06 23:53:24 +01002040 if (ana_list & AN_REQ_HTTP_PROCESS_FE) {
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002041 if (!http_process_req_common(s, req, AN_REQ_HTTP_PROCESS_FE, sess->fe))
Willy Tarreau1d0dfb12009-07-07 15:10:31 +02002042 break;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002043 UPDATE_ANALYSERS(req->analysers, ana_list, ana_back, AN_REQ_HTTP_PROCESS_FE);
Willy Tarreau1d0dfb12009-07-07 15:10:31 +02002044 }
2045
Willy Tarreau1e0bbaf2010-01-06 23:53:24 +01002046 if (ana_list & AN_REQ_SWITCHING_RULES) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002047 if (!process_switching_rules(s, req, AN_REQ_SWITCHING_RULES))
Willy Tarreau1d0dfb12009-07-07 15:10:31 +02002048 break;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002049 UPDATE_ANALYSERS(req->analysers, ana_list, ana_back, AN_REQ_SWITCHING_RULES);
Willy Tarreau1d0dfb12009-07-07 15:10:31 +02002050 }
2051
Willy Tarreaufb356202010-08-03 14:02:05 +02002052 if (ana_list & AN_REQ_INSPECT_BE) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002053 if (!tcp_inspect_request(s, req, AN_REQ_INSPECT_BE))
Willy Tarreaufb356202010-08-03 14:02:05 +02002054 break;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002055 UPDATE_ANALYSERS(req->analysers, ana_list, ana_back, AN_REQ_INSPECT_BE);
Willy Tarreaufb356202010-08-03 14:02:05 +02002056 }
2057
Willy Tarreau1e0bbaf2010-01-06 23:53:24 +01002058 if (ana_list & AN_REQ_HTTP_PROCESS_BE) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002059 if (!http_process_req_common(s, req, AN_REQ_HTTP_PROCESS_BE, s->be))
Willy Tarreau1d0dfb12009-07-07 15:10:31 +02002060 break;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002061 UPDATE_ANALYSERS(req->analysers, ana_list, ana_back, AN_REQ_HTTP_PROCESS_BE);
Willy Tarreau1d0dfb12009-07-07 15:10:31 +02002062 }
2063
Willy Tarreau1e0bbaf2010-01-06 23:53:24 +01002064 if (ana_list & AN_REQ_HTTP_TARPIT) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002065 if (!http_process_tarpit(s, req, AN_REQ_HTTP_TARPIT))
Willy Tarreau60b85b02008-11-30 23:28:40 +01002066 break;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002067 UPDATE_ANALYSERS(req->analysers, ana_list, ana_back, AN_REQ_HTTP_TARPIT);
Willy Tarreau1a52dbd2009-06-28 19:37:53 +02002068 }
Willy Tarreau60b85b02008-11-30 23:28:40 +01002069
Willy Tarreau4a5cade2012-04-05 21:09:48 +02002070 if (ana_list & AN_REQ_SRV_RULES) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002071 if (!process_server_rules(s, req, AN_REQ_SRV_RULES))
Willy Tarreau4a5cade2012-04-05 21:09:48 +02002072 break;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002073 UPDATE_ANALYSERS(req->analysers, ana_list, ana_back, AN_REQ_SRV_RULES);
Willy Tarreau4a5cade2012-04-05 21:09:48 +02002074 }
2075
Willy Tarreau1e0bbaf2010-01-06 23:53:24 +01002076 if (ana_list & AN_REQ_HTTP_INNER) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002077 if (!http_process_request(s, req, AN_REQ_HTTP_INNER))
Willy Tarreauc465fd72009-08-31 00:17:18 +02002078 break;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002079 UPDATE_ANALYSERS(req->analysers, ana_list, ana_back, AN_REQ_HTTP_INNER);
Willy Tarreauc465fd72009-08-31 00:17:18 +02002080 }
2081
Willy Tarreau1e0bbaf2010-01-06 23:53:24 +01002082 if (ana_list & AN_REQ_HTTP_BODY) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002083 if (!http_wait_for_request_body(s, req, AN_REQ_HTTP_BODY))
Willy Tarreaud34af782008-11-30 23:36:37 +01002084 break;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002085 UPDATE_ANALYSERS(req->analysers, ana_list, ana_back, AN_REQ_HTTP_BODY);
Willy Tarreau1a52dbd2009-06-28 19:37:53 +02002086 }
Emeric Brun647caf12009-06-30 17:57:00 +02002087
Willy Tarreau1e0bbaf2010-01-06 23:53:24 +01002088 if (ana_list & AN_REQ_PRST_RDP_COOKIE) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002089 if (!tcp_persist_rdp_cookie(s, req, AN_REQ_PRST_RDP_COOKIE))
Emeric Brun647caf12009-06-30 17:57:00 +02002090 break;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002091 UPDATE_ANALYSERS(req->analysers, ana_list, ana_back, AN_REQ_PRST_RDP_COOKIE);
Emeric Brun647caf12009-06-30 17:57:00 +02002092 }
Willy Tarreaud98cf932009-12-27 22:54:55 +01002093
Emeric Brun1d33b292010-01-04 15:47:17 +01002094 if (ana_list & AN_REQ_STICKING_RULES) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002095 if (!process_sticking_rules(s, req, AN_REQ_STICKING_RULES))
Emeric Brun1d33b292010-01-04 15:47:17 +01002096 break;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002097 UPDATE_ANALYSERS(req->analysers, ana_list, ana_back, AN_REQ_STICKING_RULES);
Emeric Brun1d33b292010-01-04 15:47:17 +01002098 }
2099
Willy Tarreau1e0bbaf2010-01-06 23:53:24 +01002100 if (ana_list & AN_REQ_HTTP_XFER_BODY) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002101 if (!http_request_forward_body(s, req, AN_REQ_HTTP_XFER_BODY))
Willy Tarreaud98cf932009-12-27 22:54:55 +01002102 break;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002103 UPDATE_ANALYSERS(req->analysers, ana_list, ana_back, AN_REQ_HTTP_XFER_BODY);
Willy Tarreaud98cf932009-12-27 22:54:55 +01002104 }
Willy Tarreaue34070e2010-01-08 00:32:27 +01002105 break;
2106 }
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002107 }
Willy Tarreau84455332009-03-15 22:34:05 +01002108
Willy Tarreau8f128b42014-11-28 15:07:47 +01002109 rq_prod_last = si_f->state;
2110 rq_cons_last = si_b->state;
2111 req->flags &= ~CF_WAKE_ONCE;
2112 rqf_last = req->flags;
Willy Tarreau815a9b22010-07-27 17:15:12 +02002113
Willy Tarreau8f128b42014-11-28 15:07:47 +01002114 if ((req->flags ^ flags) & CF_MASK_STATIC)
Willy Tarreau3deb3d02009-06-21 22:43:05 +02002115 goto resync_request;
Willy Tarreau3deb3d02009-06-21 22:43:05 +02002116 }
2117
Willy Tarreau576507f2010-01-07 00:09:04 +01002118 /* we'll monitor the request analysers while parsing the response,
2119 * because some response analysers may indirectly enable new request
2120 * analysers (eg: HTTP keep-alive).
2121 */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002122 req_ana_back = req->analysers;
Willy Tarreau576507f2010-01-07 00:09:04 +01002123
Willy Tarreau3deb3d02009-06-21 22:43:05 +02002124 resync_response:
2125 /* Analyse response */
2126
Willy Tarreau8f128b42014-11-28 15:07:47 +01002127 if (((res->flags & ~rpf_last) & CF_MASK_ANALYSER) ||
2128 (res->flags ^ rpf_last) & CF_MASK_STATIC ||
2129 si_f->state != rp_cons_last ||
2130 si_b->state != rp_prod_last ||
Thierry FOURNIER2e05a8c2014-11-24 14:49:56 +01002131 s->task->state & TASK_WOKEN_MSG) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002132 unsigned int flags = res->flags;
Willy Tarreau3deb3d02009-06-21 22:43:05 +02002133
Willy Tarreau8f128b42014-11-28 15:07:47 +01002134 if ((res->flags & CF_MASK_ANALYSER) &&
2135 (res->analysers & AN_REQ_ALL)) {
Willy Tarreau0499e352010-12-17 07:13:42 +01002136 /* Due to HTTP pipelining, the HTTP request analyser might be waiting
2137 * for some free space in the response buffer, so we might need to call
2138 * it when something changes in the response buffer, but still we pass
2139 * it the request buffer. Note that the SI state might very well still
2140 * be zero due to us returning a flow of redirects!
2141 */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002142 res->analysers &= ~AN_REQ_ALL;
2143 req->flags |= CF_WAKE_ONCE;
Willy Tarreau0499e352010-12-17 07:13:42 +01002144 }
2145
Willy Tarreau8f128b42014-11-28 15:07:47 +01002146 if (si_b->state >= SI_ST_EST) {
Willy Tarreaue34070e2010-01-08 00:32:27 +01002147 int max_loops = global.tune.maxpollevents;
Willy Tarreau1e0bbaf2010-01-06 23:53:24 +01002148 unsigned int ana_list;
2149 unsigned int ana_back;
Willy Tarreaub37c27e2009-10-18 22:53:08 +02002150
Willy Tarreau90deb182010-01-07 00:20:41 +01002151 /* it's up to the analysers to stop disable reading or
2152 * closing. Note: if an analyser disables any of these
2153 * bits, it is responsible for enabling them again when
2154 * it disables itself, so that other analysers are called
2155 * in similar conditions.
2156 */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002157 channel_auto_read(res);
2158 channel_auto_close(res);
Willy Tarreaub37c27e2009-10-18 22:53:08 +02002159
2160 /* We will call all analysers for which a bit is set in
Willy Tarreau8f128b42014-11-28 15:07:47 +01002161 * res->analysers, following the bit order from LSB
Willy Tarreaub37c27e2009-10-18 22:53:08 +02002162 * to MSB. The analysers must remove themselves from
2163 * the list when not needed. Any analyser may return 0
2164 * to break out of the loop, either because of missing
2165 * data to take a decision, or because it decides to
Willy Tarreau87b09662015-04-03 00:22:06 +02002166 * kill the stream. We loop at least once through each
Willy Tarreaub37c27e2009-10-18 22:53:08 +02002167 * analyser, and we may loop again if other analysers
2168 * are added in the middle.
2169 */
Willy Tarreau1e0bbaf2010-01-06 23:53:24 +01002170
Willy Tarreau8f128b42014-11-28 15:07:47 +01002171 ana_list = ana_back = res->analysers;
Willy Tarreaue34070e2010-01-08 00:32:27 +01002172 while (ana_list && max_loops--) {
Willy Tarreau1e0bbaf2010-01-06 23:53:24 +01002173 /* Warning! ensure that analysers are always placed in ascending order! */
2174
Emeric Brun97679e72010-09-23 17:56:44 +02002175 if (ana_list & AN_RES_INSPECT) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002176 if (!tcp_inspect_response(s, res, AN_RES_INSPECT))
Emeric Brun97679e72010-09-23 17:56:44 +02002177 break;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002178 UPDATE_ANALYSERS(res->analysers, ana_list, ana_back, AN_RES_INSPECT);
Emeric Brun97679e72010-09-23 17:56:44 +02002179 }
2180
Willy Tarreau1e0bbaf2010-01-06 23:53:24 +01002181 if (ana_list & AN_RES_WAIT_HTTP) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002182 if (!http_wait_for_response(s, res, AN_RES_WAIT_HTTP))
Willy Tarreaub37c27e2009-10-18 22:53:08 +02002183 break;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002184 UPDATE_ANALYSERS(res->analysers, ana_list, ana_back, AN_RES_WAIT_HTTP);
Willy Tarreaub37c27e2009-10-18 22:53:08 +02002185 }
2186
Emeric Brun1d33b292010-01-04 15:47:17 +01002187 if (ana_list & AN_RES_STORE_RULES) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002188 if (!process_store_rules(s, res, AN_RES_STORE_RULES))
Emeric Brun1d33b292010-01-04 15:47:17 +01002189 break;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002190 UPDATE_ANALYSERS(res->analysers, ana_list, ana_back, AN_RES_STORE_RULES);
Emeric Brun1d33b292010-01-04 15:47:17 +01002191 }
2192
Willy Tarreau1e0bbaf2010-01-06 23:53:24 +01002193 if (ana_list & AN_RES_HTTP_PROCESS_BE) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002194 if (!http_process_res_common(s, res, AN_RES_HTTP_PROCESS_BE, s->be))
Willy Tarreaub37c27e2009-10-18 22:53:08 +02002195 break;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002196 UPDATE_ANALYSERS(res->analysers, ana_list, ana_back, AN_RES_HTTP_PROCESS_BE);
Willy Tarreaub37c27e2009-10-18 22:53:08 +02002197 }
Willy Tarreaud98cf932009-12-27 22:54:55 +01002198
Willy Tarreau1e0bbaf2010-01-06 23:53:24 +01002199 if (ana_list & AN_RES_HTTP_XFER_BODY) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002200 if (!http_response_forward_body(s, res, AN_RES_HTTP_XFER_BODY))
Willy Tarreaud98cf932009-12-27 22:54:55 +01002201 break;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002202 UPDATE_ANALYSERS(res->analysers, ana_list, ana_back, AN_RES_HTTP_XFER_BODY);
Willy Tarreaud98cf932009-12-27 22:54:55 +01002203 }
Willy Tarreaue34070e2010-01-08 00:32:27 +01002204 break;
2205 }
Willy Tarreau3deb3d02009-06-21 22:43:05 +02002206 }
2207
Willy Tarreau8f128b42014-11-28 15:07:47 +01002208 rp_cons_last = si_f->state;
2209 rp_prod_last = si_b->state;
2210 rpf_last = res->flags;
Willy Tarreau815a9b22010-07-27 17:15:12 +02002211
Willy Tarreau8f128b42014-11-28 15:07:47 +01002212 if ((res->flags ^ flags) & CF_MASK_STATIC)
Willy Tarreau3deb3d02009-06-21 22:43:05 +02002213 goto resync_response;
Willy Tarreau3deb3d02009-06-21 22:43:05 +02002214 }
2215
Willy Tarreau576507f2010-01-07 00:09:04 +01002216 /* maybe someone has added some request analysers, so we must check and loop */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002217 if (req->analysers & ~req_ana_back)
Willy Tarreau576507f2010-01-07 00:09:04 +01002218 goto resync_request;
2219
Willy Tarreau8f128b42014-11-28 15:07:47 +01002220 if ((req->flags & ~rqf_last) & CF_MASK_ANALYSER)
Willy Tarreau0499e352010-12-17 07:13:42 +01002221 goto resync_request;
2222
Willy Tarreau3deb3d02009-06-21 22:43:05 +02002223 /* FIXME: here we should call protocol handlers which rely on
2224 * both buffers.
2225 */
2226
2227
2228 /*
Willy Tarreau87b09662015-04-03 00:22:06 +02002229 * Now we propagate unhandled errors to the stream. Normally
Willy Tarreauae526782010-03-04 20:34:23 +01002230 * we're just in a data phase here since it means we have not
2231 * seen any analyser who could set an error status.
Willy Tarreau3deb3d02009-06-21 22:43:05 +02002232 */
Willy Tarreau3fdb3662012-11-12 00:42:33 +01002233 srv = objt_server(s->target);
Willy Tarreaue7dff022015-04-03 01:14:29 +02002234 if (unlikely(!(s->flags & SF_ERR_MASK))) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002235 if (req->flags & (CF_READ_ERROR|CF_READ_TIMEOUT|CF_WRITE_ERROR|CF_WRITE_TIMEOUT)) {
Willy Tarreau3deb3d02009-06-21 22:43:05 +02002236 /* Report it if the client got an error or a read timeout expired */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002237 req->analysers = 0;
2238 if (req->flags & CF_READ_ERROR) {
Willy Tarreau7d0aaf32011-03-10 23:25:56 +01002239 s->be->be_counters.cli_aborts++;
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002240 sess->fe->fe_counters.cli_aborts++;
Willy Tarreau827aee92011-03-10 16:55:02 +01002241 if (srv)
2242 srv->counters.cli_aborts++;
Willy Tarreaue7dff022015-04-03 01:14:29 +02002243 s->flags |= SF_ERR_CLICL;
Willy Tarreauae526782010-03-04 20:34:23 +01002244 }
Willy Tarreau8f128b42014-11-28 15:07:47 +01002245 else if (req->flags & CF_READ_TIMEOUT) {
Willy Tarreau7d0aaf32011-03-10 23:25:56 +01002246 s->be->be_counters.cli_aborts++;
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002247 sess->fe->fe_counters.cli_aborts++;
Willy Tarreau827aee92011-03-10 16:55:02 +01002248 if (srv)
2249 srv->counters.cli_aborts++;
Willy Tarreaue7dff022015-04-03 01:14:29 +02002250 s->flags |= SF_ERR_CLITO;
Willy Tarreauae526782010-03-04 20:34:23 +01002251 }
Willy Tarreau8f128b42014-11-28 15:07:47 +01002252 else if (req->flags & CF_WRITE_ERROR) {
Willy Tarreau7d0aaf32011-03-10 23:25:56 +01002253 s->be->be_counters.srv_aborts++;
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002254 sess->fe->fe_counters.srv_aborts++;
Willy Tarreau827aee92011-03-10 16:55:02 +01002255 if (srv)
2256 srv->counters.srv_aborts++;
Willy Tarreaue7dff022015-04-03 01:14:29 +02002257 s->flags |= SF_ERR_SRVCL;
Willy Tarreauae526782010-03-04 20:34:23 +01002258 }
2259 else {
Willy Tarreau7d0aaf32011-03-10 23:25:56 +01002260 s->be->be_counters.srv_aborts++;
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002261 sess->fe->fe_counters.srv_aborts++;
Willy Tarreau827aee92011-03-10 16:55:02 +01002262 if (srv)
2263 srv->counters.srv_aborts++;
Willy Tarreaue7dff022015-04-03 01:14:29 +02002264 s->flags |= SF_ERR_SRVTO;
Willy Tarreauae526782010-03-04 20:34:23 +01002265 }
Willy Tarreau84455332009-03-15 22:34:05 +01002266 sess_set_term_flags(s);
2267 }
Willy Tarreau8f128b42014-11-28 15:07:47 +01002268 else if (res->flags & (CF_READ_ERROR|CF_READ_TIMEOUT|CF_WRITE_ERROR|CF_WRITE_TIMEOUT)) {
Willy Tarreau3deb3d02009-06-21 22:43:05 +02002269 /* Report it if the server got an error or a read timeout expired */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002270 res->analysers = 0;
2271 if (res->flags & CF_READ_ERROR) {
Willy Tarreau7d0aaf32011-03-10 23:25:56 +01002272 s->be->be_counters.srv_aborts++;
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002273 sess->fe->fe_counters.srv_aborts++;
Willy Tarreau827aee92011-03-10 16:55:02 +01002274 if (srv)
2275 srv->counters.srv_aborts++;
Willy Tarreaue7dff022015-04-03 01:14:29 +02002276 s->flags |= SF_ERR_SRVCL;
Willy Tarreauae526782010-03-04 20:34:23 +01002277 }
Willy Tarreau8f128b42014-11-28 15:07:47 +01002278 else if (res->flags & CF_READ_TIMEOUT) {
Willy Tarreau7d0aaf32011-03-10 23:25:56 +01002279 s->be->be_counters.srv_aborts++;
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002280 sess->fe->fe_counters.srv_aborts++;
Willy Tarreau827aee92011-03-10 16:55:02 +01002281 if (srv)
2282 srv->counters.srv_aborts++;
Willy Tarreaue7dff022015-04-03 01:14:29 +02002283 s->flags |= SF_ERR_SRVTO;
Willy Tarreauae526782010-03-04 20:34:23 +01002284 }
Willy Tarreau8f128b42014-11-28 15:07:47 +01002285 else if (res->flags & CF_WRITE_ERROR) {
Willy Tarreau7d0aaf32011-03-10 23:25:56 +01002286 s->be->be_counters.cli_aborts++;
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002287 sess->fe->fe_counters.cli_aborts++;
Willy Tarreau827aee92011-03-10 16:55:02 +01002288 if (srv)
2289 srv->counters.cli_aborts++;
Willy Tarreaue7dff022015-04-03 01:14:29 +02002290 s->flags |= SF_ERR_CLICL;
Willy Tarreauae526782010-03-04 20:34:23 +01002291 }
2292 else {
Willy Tarreau7d0aaf32011-03-10 23:25:56 +01002293 s->be->be_counters.cli_aborts++;
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002294 sess->fe->fe_counters.cli_aborts++;
Willy Tarreau827aee92011-03-10 16:55:02 +01002295 if (srv)
2296 srv->counters.cli_aborts++;
Willy Tarreaue7dff022015-04-03 01:14:29 +02002297 s->flags |= SF_ERR_CLITO;
Willy Tarreauae526782010-03-04 20:34:23 +01002298 }
Willy Tarreau3deb3d02009-06-21 22:43:05 +02002299 sess_set_term_flags(s);
2300 }
Willy Tarreau84455332009-03-15 22:34:05 +01002301 }
2302
Willy Tarreau3deb3d02009-06-21 22:43:05 +02002303 /*
2304 * Here we take care of forwarding unhandled data. This also includes
2305 * connection establishments and shutdown requests.
2306 */
2307
2308
Willy Tarreau7c84bab2009-03-08 21:38:23 +01002309 /* If noone is interested in analysing data, it's time to forward
Willy Tarreau31971e52009-09-20 12:07:52 +02002310 * everything. We configure the buffer to forward indefinitely.
Willy Tarreau03cdb7c2012-08-27 23:14:58 +02002311 * Note that we're checking CF_SHUTR_NOW as an indication of a possible
Willy Tarreau8263d2b2012-08-28 00:06:31 +02002312 * recent call to channel_abort().
Willy Tarreau6b66f3e2008-12-14 17:31:54 +01002313 */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002314 if (unlikely(!req->analysers &&
2315 !(req->flags & (CF_SHUTW|CF_SHUTR_NOW)) &&
2316 (si_f->state >= SI_ST_EST) &&
2317 (req->to_forward != CHN_INFINITE_FORWARD))) {
Willy Tarreaub31c9712012-11-11 23:05:39 +01002318 /* This buffer is freewheeling, there's no analyser
Willy Tarreau7c84bab2009-03-08 21:38:23 +01002319 * attached to it. If any data are left in, we'll permit them to
2320 * move.
2321 */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002322 channel_auto_read(req);
2323 channel_auto_connect(req);
2324 channel_auto_close(req);
2325 buffer_flush(req->buf);
Willy Tarreau5bd8c372009-01-19 00:32:22 +01002326
Willy Tarreauda4d9fe2010-11-07 20:26:56 +01002327 /* We'll let data flow between the producer (if still connected)
2328 * to the consumer (which might possibly not be connected yet).
Willy Tarreau7c84bab2009-03-08 21:38:23 +01002329 */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002330 if (!(req->flags & (CF_SHUTR|CF_SHUTW_NOW)))
2331 channel_forward(req, CHN_INFINITE_FORWARD);
Willy Tarreau6b66f3e2008-12-14 17:31:54 +01002332 }
Willy Tarreauf890dc92008-12-13 21:12:26 +01002333
Willy Tarreau7c84bab2009-03-08 21:38:23 +01002334 /* check if it is wise to enable kernel splicing to forward request data */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002335 if (!(req->flags & (CF_KERN_SPLICING|CF_SHUTR)) &&
2336 req->to_forward &&
Willy Tarreau7c84bab2009-03-08 21:38:23 +01002337 (global.tune.options & GTUNE_USE_SPLICE) &&
Willy Tarreau8f128b42014-11-28 15:07:47 +01002338 (objt_conn(si_f->end) && __objt_conn(si_f->end)->xprt && __objt_conn(si_f->end)->xprt->rcv_pipe) &&
2339 (objt_conn(si_b->end) && __objt_conn(si_b->end)->xprt && __objt_conn(si_b->end)->xprt->snd_pipe) &&
Willy Tarreau7c84bab2009-03-08 21:38:23 +01002340 (pipes_used < global.maxpipes) &&
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002341 (((sess->fe->options2|s->be->options2) & PR_O2_SPLIC_REQ) ||
2342 (((sess->fe->options2|s->be->options2) & PR_O2_SPLIC_AUT) &&
Willy Tarreau8f128b42014-11-28 15:07:47 +01002343 (req->flags & CF_STREAMER_FAST)))) {
2344 req->flags |= CF_KERN_SPLICING;
Willy Tarreau7c84bab2009-03-08 21:38:23 +01002345 }
2346
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002347 /* reflect what the L7 analysers have seen last */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002348 rqf_last = req->flags;
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002349
2350 /*
2351 * Now forward all shutdown requests between both sides of the buffer
2352 */
2353
Willy Tarreau520d95e2009-09-19 21:04:57 +02002354 /* first, let's check if the request buffer needs to shutdown(write), which may
2355 * happen either because the input is closed or because we want to force a close
Willy Tarreau05cdd962014-05-10 14:30:07 +02002356 * once the server has begun to respond. If a half-closed timeout is set, we adjust
2357 * the other side's timeout as well.
Willy Tarreau520d95e2009-09-19 21:04:57 +02002358 */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002359 if (unlikely((req->flags & (CF_SHUTW|CF_SHUTW_NOW|CF_AUTO_CLOSE|CF_SHUTR)) ==
Willy Tarreau05cdd962014-05-10 14:30:07 +02002360 (CF_AUTO_CLOSE|CF_SHUTR))) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002361 channel_shutw_now(req);
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002362 if (tick_isset(sess->fe->timeout.clientfin)) {
2363 res->wto = sess->fe->timeout.clientfin;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002364 res->wex = tick_add(now_ms, res->wto);
Willy Tarreau05cdd962014-05-10 14:30:07 +02002365 }
2366 }
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002367
2368 /* shutdown(write) pending */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002369 if (unlikely((req->flags & (CF_SHUTW|CF_SHUTW_NOW)) == CF_SHUTW_NOW &&
2370 channel_is_empty(req))) {
2371 if (req->flags & CF_READ_ERROR)
2372 si_b->flags |= SI_FL_NOLINGER;
2373 si_shutw(si_b);
Willy Tarreau05cdd962014-05-10 14:30:07 +02002374 if (tick_isset(s->be->timeout.serverfin)) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002375 res->rto = s->be->timeout.serverfin;
2376 res->rex = tick_add(now_ms, res->rto);
Willy Tarreau05cdd962014-05-10 14:30:07 +02002377 }
Willy Tarreau8615c2a2013-06-21 08:20:19 +02002378 }
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002379
2380 /* shutdown(write) done on server side, we must stop the client too */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002381 if (unlikely((req->flags & (CF_SHUTW|CF_SHUTR|CF_SHUTR_NOW)) == CF_SHUTW &&
2382 !req->analysers))
2383 channel_shutr_now(req);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002384
2385 /* shutdown(read) pending */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002386 if (unlikely((req->flags & (CF_SHUTR|CF_SHUTR_NOW)) == CF_SHUTR_NOW)) {
2387 if (si_f->flags & SI_FL_NOHALF)
2388 si_f->flags |= SI_FL_NOLINGER;
2389 si_shutr(si_f);
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002390 if (tick_isset(sess->fe->timeout.clientfin)) {
2391 res->wto = sess->fe->timeout.clientfin;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002392 res->wex = tick_add(now_ms, res->wto);
Willy Tarreau05cdd962014-05-10 14:30:07 +02002393 }
Willy Tarreau7bb68ab2012-05-13 14:48:59 +02002394 }
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002395
Willy Tarreau520d95e2009-09-19 21:04:57 +02002396 /* it's possible that an upper layer has requested a connection setup or abort.
2397 * There are 2 situations where we decide to establish a new connection :
2398 * - there are data scheduled for emission in the buffer
Willy Tarreau03cdb7c2012-08-27 23:14:58 +02002399 * - the CF_AUTO_CONNECT flag is set (active connection)
Willy Tarreau520d95e2009-09-19 21:04:57 +02002400 */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002401 if (si_b->state == SI_ST_INI) {
2402 if (!(req->flags & CF_SHUTW)) {
2403 if ((req->flags & CF_AUTO_CONNECT) || !channel_is_empty(req)) {
Willy Tarreaucf644ed2013-09-29 17:19:56 +02002404 /* If we have an appctx, there is no connect method, so we
2405 * immediately switch to the connected state, otherwise we
2406 * perform a connection request.
Willy Tarreau520d95e2009-09-19 21:04:57 +02002407 */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002408 si_b->state = SI_ST_REQ; /* new connection requested */
2409 si_b->conn_retries = s->be->conn_retries;
Willy Tarreau520d95e2009-09-19 21:04:57 +02002410 }
Willy Tarreau73201222009-08-16 18:27:24 +02002411 }
Willy Tarreauf41ffdc2009-09-20 08:19:25 +02002412 else {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002413 si_b->state = SI_ST_CLO; /* shutw+ini = abort */
2414 channel_shutw_now(req); /* fix buffer flags upon abort */
2415 channel_shutr_now(res);
Willy Tarreauf41ffdc2009-09-20 08:19:25 +02002416 }
Willy Tarreau92795622009-03-06 12:51:23 +01002417 }
2418
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002419
2420 /* we may have a pending connection request, or a connection waiting
2421 * for completion.
2422 */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002423 if (si_b->state >= SI_ST_REQ && si_b->state < SI_ST_CON) {
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002424 do {
2425 /* nb: step 1 might switch from QUE to ASS, but we first want
2426 * to give a chance to step 2 to perform a redirect if needed.
2427 */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002428 if (si_b->state != SI_ST_REQ)
Willy Tarreau7b8c4f92014-11-28 15:15:44 +01002429 sess_update_stream_int(s);
Willy Tarreau8f128b42014-11-28 15:07:47 +01002430 if (si_b->state == SI_ST_REQ)
Willy Tarreau7b8c4f92014-11-28 15:15:44 +01002431 sess_prepare_conn_req(s);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002432
Willy Tarreau9e5a3aa2013-12-31 23:32:12 +01002433 /* applets directly go to the ESTABLISHED state. Similarly,
2434 * servers experience the same fate when their connection
2435 * is reused.
2436 */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002437 if (unlikely(si_b->state == SI_ST_EST))
Willy Tarreau7b8c4f92014-11-28 15:15:44 +01002438 sess_establish(s);
Willy Tarreaufac4bd12013-11-30 09:21:49 +01002439
Willy Tarreaub44c8732013-12-31 23:16:50 +01002440 /* Now we can add the server name to a header (if requested) */
2441 /* check for HTTP mode and proxy server_name_hdr_name != NULL */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002442 if ((si_b->state >= SI_ST_CON) &&
Willy Tarreaub44c8732013-12-31 23:16:50 +01002443 (s->be->server_id_hdr_name != NULL) &&
2444 (s->be->mode == PR_MODE_HTTP) &&
2445 objt_server(s->target)) {
2446 http_send_name_header(&s->txn, s->be, objt_server(s->target)->id);
Willy Tarreau1e5dfda2013-04-07 18:19:16 +02002447 }
2448
Willy Tarreau3fdb3662012-11-12 00:42:33 +01002449 srv = objt_server(s->target);
Willy Tarreaue7dff022015-04-03 01:14:29 +02002450 if (si_b->state == SI_ST_ASS && srv && srv->rdr_len && (s->flags & SF_REDIRECTABLE))
Willy Tarreau8f128b42014-11-28 15:07:47 +01002451 http_perform_server_redirect(s, si_b);
2452 } while (si_b->state == SI_ST_ASS);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002453 }
2454
Willy Tarreau3deb3d02009-06-21 22:43:05 +02002455 /* Benchmarks have shown that it's optimal to do a full resync now */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002456 if (si_f->state == SI_ST_DIS || si_b->state == SI_ST_DIS)
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002457 goto resync_stream_interface;
2458
Willy Tarreau815a9b22010-07-27 17:15:12 +02002459 /* otherwise we want to check if we need to resync the req buffer or not */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002460 if ((req->flags ^ rqf_last) & CF_MASK_STATIC)
Willy Tarreau0be0ef92009-03-08 19:20:25 +01002461 goto resync_request;
2462
Willy Tarreau3deb3d02009-06-21 22:43:05 +02002463 /* perform output updates to the response buffer */
Willy Tarreau84455332009-03-15 22:34:05 +01002464
Willy Tarreau7c84bab2009-03-08 21:38:23 +01002465 /* If noone is interested in analysing data, it's time to forward
Willy Tarreau31971e52009-09-20 12:07:52 +02002466 * everything. We configure the buffer to forward indefinitely.
Willy Tarreau03cdb7c2012-08-27 23:14:58 +02002467 * Note that we're checking CF_SHUTR_NOW as an indication of a possible
Willy Tarreau8263d2b2012-08-28 00:06:31 +02002468 * recent call to channel_abort().
Willy Tarreau6b66f3e2008-12-14 17:31:54 +01002469 */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002470 if (unlikely(!res->analysers &&
2471 !(res->flags & (CF_SHUTW|CF_SHUTR_NOW)) &&
2472 (si_b->state >= SI_ST_EST) &&
2473 (res->to_forward != CHN_INFINITE_FORWARD))) {
Willy Tarreaub31c9712012-11-11 23:05:39 +01002474 /* This buffer is freewheeling, there's no analyser
Willy Tarreau7c84bab2009-03-08 21:38:23 +01002475 * attached to it. If any data are left in, we'll permit them to
2476 * move.
2477 */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002478 channel_auto_read(res);
2479 channel_auto_close(res);
2480 buffer_flush(res->buf);
Willy Tarreauda4d9fe2010-11-07 20:26:56 +01002481
2482 /* We'll let data flow between the producer (if still connected)
2483 * to the consumer.
2484 */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002485 if (!(res->flags & (CF_SHUTR|CF_SHUTW_NOW)))
2486 channel_forward(res, CHN_INFINITE_FORWARD);
Willy Tarreauce887fd2012-05-12 12:50:00 +02002487
2488 /* if we have no analyser anymore in any direction and have a
Willy Tarreau05cdd962014-05-10 14:30:07 +02002489 * tunnel timeout set, use it now. Note that we must respect
2490 * the half-closed timeouts as well.
Willy Tarreauce887fd2012-05-12 12:50:00 +02002491 */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002492 if (!req->analysers && s->be->timeout.tunnel) {
2493 req->rto = req->wto = res->rto = res->wto =
Willy Tarreauce887fd2012-05-12 12:50:00 +02002494 s->be->timeout.tunnel;
Willy Tarreau05cdd962014-05-10 14:30:07 +02002495
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002496 if ((req->flags & CF_SHUTR) && tick_isset(sess->fe->timeout.clientfin))
2497 res->wto = sess->fe->timeout.clientfin;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002498 if ((req->flags & CF_SHUTW) && tick_isset(s->be->timeout.serverfin))
2499 res->rto = s->be->timeout.serverfin;
2500 if ((res->flags & CF_SHUTR) && tick_isset(s->be->timeout.serverfin))
2501 req->wto = s->be->timeout.serverfin;
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002502 if ((res->flags & CF_SHUTW) && tick_isset(sess->fe->timeout.clientfin))
2503 req->rto = sess->fe->timeout.clientfin;
Willy Tarreau05cdd962014-05-10 14:30:07 +02002504
Willy Tarreau8f128b42014-11-28 15:07:47 +01002505 req->rex = tick_add(now_ms, req->rto);
2506 req->wex = tick_add(now_ms, req->wto);
2507 res->rex = tick_add(now_ms, res->rto);
2508 res->wex = tick_add(now_ms, res->wto);
Willy Tarreauce887fd2012-05-12 12:50:00 +02002509 }
Willy Tarreau6b66f3e2008-12-14 17:31:54 +01002510 }
Willy Tarreauf890dc92008-12-13 21:12:26 +01002511
Willy Tarreau7c84bab2009-03-08 21:38:23 +01002512 /* check if it is wise to enable kernel splicing to forward response data */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002513 if (!(res->flags & (CF_KERN_SPLICING|CF_SHUTR)) &&
2514 res->to_forward &&
Willy Tarreau7c84bab2009-03-08 21:38:23 +01002515 (global.tune.options & GTUNE_USE_SPLICE) &&
Willy Tarreau8f128b42014-11-28 15:07:47 +01002516 (objt_conn(si_f->end) && __objt_conn(si_f->end)->xprt && __objt_conn(si_f->end)->xprt->snd_pipe) &&
2517 (objt_conn(si_b->end) && __objt_conn(si_b->end)->xprt && __objt_conn(si_b->end)->xprt->rcv_pipe) &&
Willy Tarreau7c84bab2009-03-08 21:38:23 +01002518 (pipes_used < global.maxpipes) &&
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002519 (((sess->fe->options2|s->be->options2) & PR_O2_SPLIC_RTR) ||
2520 (((sess->fe->options2|s->be->options2) & PR_O2_SPLIC_AUT) &&
Willy Tarreau8f128b42014-11-28 15:07:47 +01002521 (res->flags & CF_STREAMER_FAST)))) {
2522 res->flags |= CF_KERN_SPLICING;
Willy Tarreau7c84bab2009-03-08 21:38:23 +01002523 }
2524
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002525 /* reflect what the L7 analysers have seen last */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002526 rpf_last = res->flags;
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002527
2528 /*
2529 * Now forward all shutdown requests between both sides of the buffer
2530 */
2531
2532 /*
2533 * FIXME: this is probably where we should produce error responses.
2534 */
2535
Willy Tarreau6b66f3e2008-12-14 17:31:54 +01002536 /* first, let's check if the response buffer needs to shutdown(write) */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002537 if (unlikely((res->flags & (CF_SHUTW|CF_SHUTW_NOW|CF_AUTO_CLOSE|CF_SHUTR)) ==
Willy Tarreau05cdd962014-05-10 14:30:07 +02002538 (CF_AUTO_CLOSE|CF_SHUTR))) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002539 channel_shutw_now(res);
Willy Tarreau05cdd962014-05-10 14:30:07 +02002540 if (tick_isset(s->be->timeout.serverfin)) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002541 req->wto = s->be->timeout.serverfin;
2542 req->wex = tick_add(now_ms, req->wto);
Willy Tarreau05cdd962014-05-10 14:30:07 +02002543 }
2544 }
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002545
2546 /* shutdown(write) pending */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002547 if (unlikely((res->flags & (CF_SHUTW|CF_SHUTW_NOW)) == CF_SHUTW_NOW &&
2548 channel_is_empty(res))) {
2549 si_shutw(si_f);
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002550 if (tick_isset(sess->fe->timeout.clientfin)) {
2551 req->rto = sess->fe->timeout.clientfin;
Willy Tarreau8f128b42014-11-28 15:07:47 +01002552 req->rex = tick_add(now_ms, req->rto);
Willy Tarreau05cdd962014-05-10 14:30:07 +02002553 }
2554 }
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002555
2556 /* shutdown(write) done on the client side, we must stop the server too */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002557 if (unlikely((res->flags & (CF_SHUTW|CF_SHUTR|CF_SHUTR_NOW)) == CF_SHUTW) &&
2558 !res->analysers)
2559 channel_shutr_now(res);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002560
2561 /* shutdown(read) pending */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002562 if (unlikely((res->flags & (CF_SHUTR|CF_SHUTR_NOW)) == CF_SHUTR_NOW)) {
2563 if (si_b->flags & SI_FL_NOHALF)
2564 si_b->flags |= SI_FL_NOLINGER;
2565 si_shutr(si_b);
Willy Tarreau05cdd962014-05-10 14:30:07 +02002566 if (tick_isset(s->be->timeout.serverfin)) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002567 req->wto = s->be->timeout.serverfin;
2568 req->wex = tick_add(now_ms, req->wto);
Willy Tarreau05cdd962014-05-10 14:30:07 +02002569 }
Willy Tarreau7bb68ab2012-05-13 14:48:59 +02002570 }
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002571
Willy Tarreau8f128b42014-11-28 15:07:47 +01002572 if (si_f->state == SI_ST_DIS || si_b->state == SI_ST_DIS)
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002573 goto resync_stream_interface;
2574
Willy Tarreau8f128b42014-11-28 15:07:47 +01002575 if (req->flags != rqf_last)
Willy Tarreau0be0ef92009-03-08 19:20:25 +01002576 goto resync_request;
2577
Willy Tarreau8f128b42014-11-28 15:07:47 +01002578 if ((res->flags ^ rpf_last) & CF_MASK_STATIC)
Willy Tarreau0be0ef92009-03-08 19:20:25 +01002579 goto resync_response;
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002580
Willy Tarreau89f7ef22009-09-05 20:57:35 +02002581 /* we're interested in getting wakeups again */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002582 si_f->flags &= ~SI_FL_DONT_WAKE;
2583 si_b->flags &= ~SI_FL_DONT_WAKE;
Willy Tarreau89f7ef22009-09-05 20:57:35 +02002584
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002585 /* This is needed only when debugging is enabled, to indicate
2586 * client-side or server-side close. Please note that in the unlikely
2587 * event where both sides would close at once, the sequence is reported
2588 * on the server side first.
2589 */
2590 if (unlikely((global.mode & MODE_DEBUG) &&
2591 (!(global.mode & MODE_QUIET) ||
2592 (global.mode & MODE_VERBOSE)))) {
Willy Tarreau8f128b42014-11-28 15:07:47 +01002593 if (si_b->state == SI_ST_CLO &&
2594 si_b->prev_state == SI_ST_EST) {
Willy Tarreau19d14ef2012-10-29 16:51:55 +01002595 chunk_printf(&trash, "%08x:%s.srvcls[%04x:%04x]\n",
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002596 s->uniq_id, s->be->id,
Willy Tarreau8f128b42014-11-28 15:07:47 +01002597 objt_conn(si_f->end) ? (unsigned short)objt_conn(si_f->end)->t.sock.fd : -1,
2598 objt_conn(si_b->end) ? (unsigned short)objt_conn(si_b->end)->t.sock.fd : -1);
Willy Tarreau89efaed2013-12-13 15:14:55 +01002599 shut_your_big_mouth_gcc(write(1, trash.str, trash.len));
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002600 }
2601
Willy Tarreau8f128b42014-11-28 15:07:47 +01002602 if (si_f->state == SI_ST_CLO &&
2603 si_f->prev_state == SI_ST_EST) {
Willy Tarreau19d14ef2012-10-29 16:51:55 +01002604 chunk_printf(&trash, "%08x:%s.clicls[%04x:%04x]\n",
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002605 s->uniq_id, s->be->id,
Willy Tarreau8f128b42014-11-28 15:07:47 +01002606 objt_conn(si_f->end) ? (unsigned short)objt_conn(si_f->end)->t.sock.fd : -1,
2607 objt_conn(si_b->end) ? (unsigned short)objt_conn(si_b->end)->t.sock.fd : -1);
Willy Tarreau89efaed2013-12-13 15:14:55 +01002608 shut_your_big_mouth_gcc(write(1, trash.str, trash.len));
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002609 }
2610 }
2611
Willy Tarreau8f128b42014-11-28 15:07:47 +01002612 if (likely((si_f->state != SI_ST_CLO) ||
2613 (si_b->state > SI_ST_INI && si_b->state < SI_ST_CLO))) {
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002614
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002615 if ((sess->fe->options & PR_O_CONTSTATS) && (s->flags & SF_BE_ASSIGNED))
Willy Tarreau87b09662015-04-03 00:22:06 +02002616 stream_process_counters(s);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002617
Willy Tarreau8f128b42014-11-28 15:07:47 +01002618 if (si_f->state == SI_ST_EST && obj_type(si_f->end) != OBJ_TYPE_APPCTX)
2619 si_update(si_f);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002620
Willy Tarreau8f128b42014-11-28 15:07:47 +01002621 if (si_b->state == SI_ST_EST && obj_type(si_b->end) != OBJ_TYPE_APPCTX)
2622 si_update(si_b);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002623
Willy Tarreau8f128b42014-11-28 15:07:47 +01002624 req->flags &= ~(CF_READ_NULL|CF_READ_PARTIAL|CF_WRITE_NULL|CF_WRITE_PARTIAL|CF_READ_ATTACHED);
2625 res->flags &= ~(CF_READ_NULL|CF_READ_PARTIAL|CF_WRITE_NULL|CF_WRITE_PARTIAL|CF_READ_ATTACHED);
2626 si_f->prev_state = si_f->state;
2627 si_b->prev_state = si_b->state;
2628 si_f->flags &= ~(SI_FL_ERR|SI_FL_EXP);
2629 si_b->flags &= ~(SI_FL_ERR|SI_FL_EXP);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002630
Willy Tarreau6f0a7ba2014-06-23 15:22:31 +02002631 /* Trick: if a request is being waiting for the server to respond,
2632 * and if we know the server can timeout, we don't want the timeout
2633 * to expire on the client side first, but we're still interested
2634 * in passing data from the client to the server (eg: POST). Thus,
2635 * we can cancel the client's request timeout if the server's
2636 * request timeout is set and the server has not yet sent a response.
2637 */
2638
Willy Tarreau8f128b42014-11-28 15:07:47 +01002639 if ((res->flags & (CF_AUTO_CLOSE|CF_SHUTR)) == 0 &&
2640 (tick_isset(req->wex) || tick_isset(res->rex))) {
2641 req->flags |= CF_READ_NOEXP;
2642 req->rex = TICK_ETERNITY;
Willy Tarreau6f0a7ba2014-06-23 15:22:31 +02002643 }
2644
Willy Tarreaucf644ed2013-09-29 17:19:56 +02002645 /* When any of the stream interfaces is attached to an applet,
2646 * we have to call it here. Note that this one may wake the
2647 * task up again. If at least one applet was called, the current
2648 * task might have been woken up, in which case we don't want it
2649 * to be requeued to the wait queue but rather to the run queue
2650 * to run ASAP. The bitwise "or" in the condition ensures that
2651 * both functions are always called and that we wake up if at
2652 * least one did something.
Willy Tarreau1accfc02009-09-05 20:57:35 +02002653 */
Willy Tarreau8f128b42014-11-28 15:07:47 +01002654 if ((si_applet_call(si_b) | si_applet_call(si_f)) != 0) {
Willy Tarreau1accfc02009-09-05 20:57:35 +02002655 if (task_in_rq(t)) {
Willy Tarreau1accfc02009-09-05 20:57:35 +02002656 t->expire = TICK_ETERNITY;
Willy Tarreau87b09662015-04-03 00:22:06 +02002657 stream_release_buffers(s);
Willy Tarreau1accfc02009-09-05 20:57:35 +02002658 return t;
2659 }
2660 }
2661
Willy Tarreau798f4322012-11-08 14:49:17 +01002662 update_exp_and_leave:
Willy Tarreau8f128b42014-11-28 15:07:47 +01002663 t->expire = tick_first(tick_first(req->rex, req->wex),
2664 tick_first(res->rex, res->wex));
2665 if (req->analysers)
2666 t->expire = tick_first(t->expire, req->analyse_exp);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002667
Willy Tarreau8f128b42014-11-28 15:07:47 +01002668 if (si_f->exp)
2669 t->expire = tick_first(t->expire, si_f->exp);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002670
Willy Tarreau8f128b42014-11-28 15:07:47 +01002671 if (si_b->exp)
2672 t->expire = tick_first(t->expire, si_b->exp);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002673
2674#ifdef DEBUG_FULL
Willy Tarreau127334e2009-03-28 10:47:26 +01002675 fprintf(stderr,
2676 "[%u] queuing with exp=%u req->rex=%u req->wex=%u req->ana_exp=%u"
2677 " rep->rex=%u rep->wex=%u, si[0].exp=%u, si[1].exp=%u, cs=%d, ss=%d\n",
Willy Tarreau8f128b42014-11-28 15:07:47 +01002678 now_ms, t->expire, req->rex, req->wex, req->analyse_exp,
2679 res->rex, res->wex, si_f->exp, si_b->exp, si_f->state, si_b->state);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002680#endif
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002681
2682#ifdef DEBUG_DEV
2683 /* this may only happen when no timeout is set or in case of an FSM bug */
Willy Tarreaud0a201b2009-03-08 15:53:06 +01002684 if (!tick_isset(t->expire))
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002685 ABORT_NOW();
2686#endif
Willy Tarreau87b09662015-04-03 00:22:06 +02002687 stream_release_buffers(s);
Willy Tarreau26c25062009-03-08 09:38:41 +01002688 return t; /* nothing more to do */
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002689 }
2690
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002691 sess->fe->feconn--;
Willy Tarreaue7dff022015-04-03 01:14:29 +02002692 if (s->flags & SF_BE_ASSIGNED)
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002693 s->be->beconn--;
Willy Tarreauaf7ad002010-08-31 15:39:26 +02002694 jobs--;
Willy Tarreaufb0afa72015-04-03 14:46:27 +02002695 if (sess->listener) {
2696 if (!(sess->listener->options & LI_O_UNLIMITED))
Thierry FOURNIERa47a94f2014-03-20 15:42:53 +01002697 actconn--;
Willy Tarreaufb0afa72015-04-03 14:46:27 +02002698 sess->listener->nbconn--;
2699 if (sess->listener->state == LI_FULL)
2700 resume_listener(sess->listener);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002701
Thierry FOURNIERa47a94f2014-03-20 15:42:53 +01002702 /* Dequeues all of the listeners waiting for a resource */
2703 if (!LIST_ISEMPTY(&global_listener_queue))
2704 dequeue_all_listeners(&global_listener_queue);
Willy Tarreau08ceb102011-07-24 22:58:00 +02002705
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002706 if (!LIST_ISEMPTY(&sess->fe->listener_queue) &&
2707 (!sess->fe->fe_sps_lim || freq_ctr_remain(&sess->fe->fe_sess_per_sec, sess->fe->fe_sps_lim, 0) > 0))
2708 dequeue_all_listeners(&sess->fe->listener_queue);
Thierry FOURNIERa47a94f2014-03-20 15:42:53 +01002709 }
Willy Tarreau07687c12011-07-24 23:55:06 +02002710
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002711 if (unlikely((global.mode & MODE_DEBUG) &&
2712 (!(global.mode & MODE_QUIET) || (global.mode & MODE_VERBOSE)))) {
Willy Tarreau19d14ef2012-10-29 16:51:55 +01002713 chunk_printf(&trash, "%08x:%s.closed[%04x:%04x]\n",
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002714 s->uniq_id, s->be->id,
Willy Tarreau8f128b42014-11-28 15:07:47 +01002715 objt_conn(si_f->end) ? (unsigned short)objt_conn(si_f->end)->t.sock.fd : -1,
2716 objt_conn(si_b->end) ? (unsigned short)objt_conn(si_b->end)->t.sock.fd : -1);
Willy Tarreau89efaed2013-12-13 15:14:55 +01002717 shut_your_big_mouth_gcc(write(1, trash.str, trash.len));
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002718 }
2719
2720 s->logs.t_close = tv_ms_elapsed(&s->logs.tv_accept, &now);
Willy Tarreau87b09662015-04-03 00:22:06 +02002721 stream_process_counters(s);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002722
Krzysztof Piotr Oledzkide71d162009-10-24 15:36:15 +02002723 if (s->txn.status) {
2724 int n;
2725
2726 n = s->txn.status / 100;
2727 if (n < 1 || n > 5)
2728 n = 0;
2729
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002730 if (sess->fe->mode == PR_MODE_HTTP) {
2731 sess->fe->fe_counters.p.http.rsp[n]++;
Willy Tarreaue7dff022015-04-03 01:14:29 +02002732 if (s->comp_algo && (s->flags & SF_COMP_READY))
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002733 sess->fe->fe_counters.p.http.comp_rsp++;
Willy Tarreau5e16cbc2012-11-24 14:54:13 +01002734 }
Willy Tarreaue7dff022015-04-03 01:14:29 +02002735 if ((s->flags & SF_BE_ASSIGNED) &&
Willy Tarreau5e16cbc2012-11-24 14:54:13 +01002736 (s->be->mode == PR_MODE_HTTP)) {
Willy Tarreau7d0aaf32011-03-10 23:25:56 +01002737 s->be->be_counters.p.http.rsp[n]++;
Willy Tarreau5e16cbc2012-11-24 14:54:13 +01002738 s->be->be_counters.p.http.cum_req++;
Willy Tarreaue7dff022015-04-03 01:14:29 +02002739 if (s->comp_algo && (s->flags & SF_COMP_READY))
Willy Tarreau5e16cbc2012-11-24 14:54:13 +01002740 s->be->be_counters.p.http.comp_rsp++;
2741 }
Krzysztof Piotr Oledzkide71d162009-10-24 15:36:15 +02002742 }
2743
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002744 /* let's do a final log if we need it */
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002745 if (!LIST_ISEMPTY(&sess->fe->logformat) && s->logs.logwait &&
Willy Tarreaue7dff022015-04-03 01:14:29 +02002746 !(s->flags & SF_MONITOR) &&
Willy Tarreaue36cbcb2015-04-03 15:40:56 +02002747 (!(sess->fe->options & PR_O_NULLNOLOG) || req->total)) {
Willy Tarreaua5555ec2008-11-30 19:02:32 +01002748 s->do_log(s);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002749 }
2750
Willy Tarreau87b09662015-04-03 00:22:06 +02002751 /* update time stats for this stream */
2752 stream_update_time_stats(s);
Willy Tarreau4bfc5802014-06-17 12:19:18 +02002753
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002754 /* the task MUST not be in the run queue anymore */
Willy Tarreau87b09662015-04-03 00:22:06 +02002755 stream_free(s);
Willy Tarreau26c25062009-03-08 09:38:41 +01002756 task_delete(t);
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002757 task_free(t);
Willy Tarreau26c25062009-03-08 09:38:41 +01002758 return NULL;
Willy Tarreau55a8d0e2008-11-30 18:47:21 +01002759}
2760
Willy Tarreau87b09662015-04-03 00:22:06 +02002761/* Update the stream's backend and server time stats */
2762void stream_update_time_stats(struct stream *s)
Willy Tarreau4bfc5802014-06-17 12:19:18 +02002763{
2764 int t_request;
2765 int t_queue;
2766 int t_connect;
2767 int t_data;
2768 int t_close;
2769 struct server *srv;
2770
2771 t_request = 0;
2772 t_queue = s->logs.t_queue;
2773 t_connect = s->logs.t_connect;
2774 t_close = s->logs.t_close;
2775 t_data = s->logs.t_data;
2776
2777 if (s->be->mode != PR_MODE_HTTP)
2778 t_data = t_connect;
2779
2780 if (t_connect < 0 || t_data < 0)
2781 return;
2782
2783 if (tv_isge(&s->logs.tv_request, &s->logs.tv_accept))
2784 t_request = tv_ms_elapsed(&s->logs.tv_accept, &s->logs.tv_request);
2785
2786 t_data -= t_connect;
2787 t_connect -= t_queue;
2788 t_queue -= t_request;
2789
2790 srv = objt_server(s->target);
2791 if (srv) {
2792 swrate_add(&srv->counters.q_time, TIME_STATS_SAMPLES, t_queue);
2793 swrate_add(&srv->counters.c_time, TIME_STATS_SAMPLES, t_connect);
2794 swrate_add(&srv->counters.d_time, TIME_STATS_SAMPLES, t_data);
2795 swrate_add(&srv->counters.t_time, TIME_STATS_SAMPLES, t_close);
2796 }
2797 swrate_add(&s->be->be_counters.q_time, TIME_STATS_SAMPLES, t_queue);
2798 swrate_add(&s->be->be_counters.c_time, TIME_STATS_SAMPLES, t_connect);
2799 swrate_add(&s->be->be_counters.d_time, TIME_STATS_SAMPLES, t_data);
2800 swrate_add(&s->be->be_counters.t_time, TIME_STATS_SAMPLES, t_close);
2801}
2802
Willy Tarreau7c669d72008-06-20 15:04:11 +02002803/*
2804 * This function adjusts sess->srv_conn and maintains the previous and new
Willy Tarreau87b09662015-04-03 00:22:06 +02002805 * server's served stream counts. Setting newsrv to NULL is enough to release
Willy Tarreau7c669d72008-06-20 15:04:11 +02002806 * current connection slot. This function also notifies any LB algo which might
Willy Tarreau87b09662015-04-03 00:22:06 +02002807 * expect to be informed about any change in the number of active streams on a
Willy Tarreau7c669d72008-06-20 15:04:11 +02002808 * server.
2809 */
Willy Tarreau87b09662015-04-03 00:22:06 +02002810void sess_change_server(struct stream *sess, struct server *newsrv)
Willy Tarreau7c669d72008-06-20 15:04:11 +02002811{
2812 if (sess->srv_conn == newsrv)
2813 return;
2814
2815 if (sess->srv_conn) {
2816 sess->srv_conn->served--;
2817 if (sess->srv_conn->proxy->lbprm.server_drop_conn)
2818 sess->srv_conn->proxy->lbprm.server_drop_conn(sess->srv_conn);
Willy Tarreau87b09662015-04-03 00:22:06 +02002819 stream_del_srv_conn(sess);
Willy Tarreau7c669d72008-06-20 15:04:11 +02002820 }
2821
2822 if (newsrv) {
2823 newsrv->served++;
2824 if (newsrv->proxy->lbprm.server_take_conn)
2825 newsrv->proxy->lbprm.server_take_conn(newsrv);
Willy Tarreau87b09662015-04-03 00:22:06 +02002826 stream_add_srv_conn(sess, newsrv);
Willy Tarreau7c669d72008-06-20 15:04:11 +02002827 }
2828}
2829
Willy Tarreau84455332009-03-15 22:34:05 +01002830/* Handle server-side errors for default protocols. It is called whenever a a
2831 * connection setup is aborted or a request is aborted in queue. It sets the
Willy Tarreau87b09662015-04-03 00:22:06 +02002832 * stream termination flags so that the caller does not have to worry about
Willy Tarreau84455332009-03-15 22:34:05 +01002833 * them. It's installed as ->srv_error for the server-side stream_interface.
2834 */
Willy Tarreau87b09662015-04-03 00:22:06 +02002835void default_srv_error(struct stream *s, struct stream_interface *si)
Willy Tarreau84455332009-03-15 22:34:05 +01002836{
2837 int err_type = si->err_type;
2838 int err = 0, fin = 0;
2839
2840 if (err_type & SI_ET_QUEUE_ABRT) {
Willy Tarreaue7dff022015-04-03 01:14:29 +02002841 err = SF_ERR_CLICL;
2842 fin = SF_FINST_Q;
Willy Tarreau84455332009-03-15 22:34:05 +01002843 }
2844 else if (err_type & SI_ET_CONN_ABRT) {
Willy Tarreaue7dff022015-04-03 01:14:29 +02002845 err = SF_ERR_CLICL;
2846 fin = SF_FINST_C;
Willy Tarreau84455332009-03-15 22:34:05 +01002847 }
2848 else if (err_type & SI_ET_QUEUE_TO) {
Willy Tarreaue7dff022015-04-03 01:14:29 +02002849 err = SF_ERR_SRVTO;
2850 fin = SF_FINST_Q;
Willy Tarreau84455332009-03-15 22:34:05 +01002851 }
2852 else if (err_type & SI_ET_QUEUE_ERR) {
Willy Tarreaue7dff022015-04-03 01:14:29 +02002853 err = SF_ERR_SRVCL;
2854 fin = SF_FINST_Q;
Willy Tarreau84455332009-03-15 22:34:05 +01002855 }
2856 else if (err_type & SI_ET_CONN_TO) {
Willy Tarreaue7dff022015-04-03 01:14:29 +02002857 err = SF_ERR_SRVTO;
2858 fin = SF_FINST_C;
Willy Tarreau84455332009-03-15 22:34:05 +01002859 }
2860 else if (err_type & SI_ET_CONN_ERR) {
Willy Tarreaue7dff022015-04-03 01:14:29 +02002861 err = SF_ERR_SRVCL;
2862 fin = SF_FINST_C;
Willy Tarreau84455332009-03-15 22:34:05 +01002863 }
Willy Tarreau2d400bb2012-05-14 12:11:47 +02002864 else if (err_type & SI_ET_CONN_RES) {
Willy Tarreaue7dff022015-04-03 01:14:29 +02002865 err = SF_ERR_RESOURCE;
2866 fin = SF_FINST_C;
Willy Tarreau2d400bb2012-05-14 12:11:47 +02002867 }
Willy Tarreau84455332009-03-15 22:34:05 +01002868 else /* SI_ET_CONN_OTHER and others */ {
Willy Tarreaue7dff022015-04-03 01:14:29 +02002869 err = SF_ERR_INTERNAL;
2870 fin = SF_FINST_C;
Willy Tarreau84455332009-03-15 22:34:05 +01002871 }
2872
Willy Tarreaue7dff022015-04-03 01:14:29 +02002873 if (!(s->flags & SF_ERR_MASK))
Willy Tarreau84455332009-03-15 22:34:05 +01002874 s->flags |= err;
Willy Tarreaue7dff022015-04-03 01:14:29 +02002875 if (!(s->flags & SF_FINST_MASK))
Willy Tarreau84455332009-03-15 22:34:05 +01002876 s->flags |= fin;
2877}
Willy Tarreau7c669d72008-06-20 15:04:11 +02002878
Willy Tarreaue7dff022015-04-03 01:14:29 +02002879/* kill a stream and set the termination flags to <why> (one of SF_ERR_*) */
Willy Tarreau87b09662015-04-03 00:22:06 +02002880void stream_shutdown(struct stream *stream, int why)
Willy Tarreaua2a64e92011-09-07 23:01:56 +02002881{
Willy Tarreau87b09662015-04-03 00:22:06 +02002882 if (stream->req.flags & (CF_SHUTW|CF_SHUTW_NOW))
Willy Tarreaua2a64e92011-09-07 23:01:56 +02002883 return;
2884
Willy Tarreau87b09662015-04-03 00:22:06 +02002885 channel_shutw_now(&stream->req);
2886 channel_shutr_now(&stream->res);
2887 stream->task->nice = 1024;
Willy Tarreaue7dff022015-04-03 01:14:29 +02002888 if (!(stream->flags & SF_ERR_MASK))
Willy Tarreau87b09662015-04-03 00:22:06 +02002889 stream->flags |= why;
2890 task_wakeup(stream->task, TASK_WOKEN_OTHER);
Willy Tarreaua2a64e92011-09-07 23:01:56 +02002891}
Willy Tarreau9ba2dcc2010-06-14 21:04:55 +02002892
Willy Tarreau8b22a712010-06-18 17:46:06 +02002893/************************************************************************/
2894/* All supported ACL keywords must be declared here. */
2895/************************************************************************/
2896
Willy Tarreau4d4149c2013-07-23 19:33:46 +02002897/* Returns a pointer to a stkctr depending on the fetch keyword name.
2898 * It is designed to be called as sc[0-9]_* sc_* or src_* exclusively.
Willy Tarreaua65536c2013-07-22 22:40:11 +02002899 * sc[0-9]_* will return a pointer to the respective field in the
Willy Tarreau87b09662015-04-03 00:22:06 +02002900 * stream <l4>. sc_* requires an UINT argument specifying the stick
Willy Tarreau4d4149c2013-07-23 19:33:46 +02002901 * counter number. src_* will fill a locally allocated structure with
Willy Tarreaua65536c2013-07-22 22:40:11 +02002902 * the table and entry corresponding to what is specified with src_*.
Willy Tarreau0f791d42013-07-23 19:56:43 +02002903 * NULL may be returned if the designated stkctr is not tracked. For
2904 * the sc_* and sc[0-9]_* forms, an optional table argument may be
2905 * passed. When present, the currently tracked key is then looked up
2906 * in the specified table instead of the current table. The purpose is
2907 * to be able to convery multiple values per key (eg: have gpc0 from
2908 * multiple tables).
Willy Tarreaua65536c2013-07-22 22:40:11 +02002909 */
Willy Tarreaue12704b2014-07-15 19:06:18 +02002910struct stkctr *
Willy Tarreau87b09662015-04-03 00:22:06 +02002911smp_fetch_sc_stkctr(struct stream *l4, const struct arg *args, const char *kw)
Willy Tarreaua65536c2013-07-22 22:40:11 +02002912{
2913 static struct stkctr stkctr;
Willy Tarreau6a0b6bd2014-04-09 13:25:42 +02002914 struct stksess *stksess;
Willy Tarreau4d4149c2013-07-23 19:33:46 +02002915 unsigned int num = kw[2] - '0';
Willy Tarreau0f791d42013-07-23 19:56:43 +02002916 int arg = 0;
Willy Tarreaua65536c2013-07-22 22:40:11 +02002917
Willy Tarreau0f791d42013-07-23 19:56:43 +02002918 if (num == '_' - '0') {
2919 /* sc_* variant, args[0] = ctr# (mandatory) */
2920 num = args[arg++].data.uint;
Willy Tarreau4d4149c2013-07-23 19:33:46 +02002921 if (num >= MAX_SESS_STKCTR)
2922 return NULL;
Willy Tarreaua65536c2013-07-22 22:40:11 +02002923 }
Willy Tarreau0f791d42013-07-23 19:56:43 +02002924 else if (num > 9) { /* src_* variant, args[0] = table */
Willy Tarreaub363a1f2013-10-01 10:45:07 +02002925 struct stktable_key *key;
2926 struct connection *conn = objt_conn(l4->si[0].end);
2927
2928 if (!conn)
2929 return NULL;
Willy Tarreaua65536c2013-07-22 22:40:11 +02002930
Thierry FOURNIER74c219d2014-04-14 14:35:40 +02002931 key = addr_to_stktable_key(&conn->addr.from, args->data.prx->table.type);
Willy Tarreaua65536c2013-07-22 22:40:11 +02002932 if (!key)
2933 return NULL;
Willy Tarreaub363a1f2013-10-01 10:45:07 +02002934
Willy Tarreaua65536c2013-07-22 22:40:11 +02002935 stkctr.table = &args->data.prx->table;
Willy Tarreaucc08d2c2014-01-28 23:18:23 +01002936 stkctr_set_entry(&stkctr, stktable_lookup_key(stkctr.table, key));
Willy Tarreaua65536c2013-07-22 22:40:11 +02002937 return &stkctr;
2938 }
Willy Tarreau0f791d42013-07-23 19:56:43 +02002939
2940 /* Here, <num> contains the counter number from 0 to 9 for
2941 * the sc[0-9]_ form, or even higher using sc_(num) if needed.
2942 * args[arg] is the first optional argument.
2943 */
Willy Tarreau6a0b6bd2014-04-09 13:25:42 +02002944 stksess = stkctr_entry(&l4->stkctr[num]);
2945 if (!stksess)
2946 return NULL;
2947
Willy Tarreau0f791d42013-07-23 19:56:43 +02002948 if (unlikely(args[arg].type == ARGT_TAB)) {
2949 /* an alternate table was specified, let's look up the same key there */
2950 stkctr.table = &args[arg].data.prx->table;
Willy Tarreau6a0b6bd2014-04-09 13:25:42 +02002951 stkctr_set_entry(&stkctr, stktable_lookup(stkctr.table, stksess));
Willy Tarreau0f791d42013-07-23 19:56:43 +02002952 return &stkctr;
2953 }
Willy Tarreau6a0b6bd2014-04-09 13:25:42 +02002954 return &l4->stkctr[num];
Willy Tarreaua65536c2013-07-22 22:40:11 +02002955}
2956
Willy Tarreau87b09662015-04-03 00:22:06 +02002957/* set return a boolean indicating if the requested stream counter is
Willy Tarreau88821242013-07-22 18:29:29 +02002958 * currently being tracked or not.
2959 * Supports being called as "sc[0-9]_tracked" only.
2960 */
Willy Tarreau6f1615f2013-06-03 15:15:22 +02002961static int
Willy Tarreau87b09662015-04-03 00:22:06 +02002962smp_fetch_sc_tracked(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01002963 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreau6f1615f2013-06-03 15:15:22 +02002964{
2965 smp->flags = SMP_F_VOL_TEST;
2966 smp->type = SMP_T_BOOL;
Thierry FOURNIERd988f212014-04-15 01:15:52 +02002967 smp->data.uint = !!smp_fetch_sc_stkctr(l4, args, kw);
Willy Tarreau6f1615f2013-06-03 15:15:22 +02002968 return 1;
2969}
2970
Willy Tarreau87b09662015-04-03 00:22:06 +02002971/* set <smp> to the General Purpose Counter 0 value from the stream's tracked
Willy Tarreau30b20462013-07-22 19:46:52 +02002972 * frontend counters or from the src.
2973 * Supports being called as "sc[0-9]_get_gpc0" or "src_get_gpc0" only. Value
2974 * zero is returned if the key is new.
2975 */
Willy Tarreauc3bd9722010-06-20 12:47:25 +02002976static int
Willy Tarreau87b09662015-04-03 00:22:06 +02002977smp_fetch_sc_get_gpc0(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01002978 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreauc3bd9722010-06-20 12:47:25 +02002979{
Willy Tarreau30b20462013-07-22 19:46:52 +02002980 struct stkctr *stkctr = smp_fetch_sc_stkctr(l4, args, kw);
2981
2982 if (!stkctr)
2983 return 0;
2984
Willy Tarreau37406352012-04-23 16:16:37 +02002985 smp->flags = SMP_F_VOL_TEST;
Willy Tarreauf853c462012-04-23 18:53:56 +02002986 smp->type = SMP_T_UINT;
2987 smp->data.uint = 0;
Willy Tarreau30b20462013-07-22 19:46:52 +02002988
Willy Tarreaucc08d2c2014-01-28 23:18:23 +01002989 if (stkctr_entry(stkctr) != NULL) {
2990 void *ptr = stktable_data_ptr(stkctr->table, stkctr_entry(stkctr), STKTABLE_DT_GPC0);
Willy Tarreauc3bd9722010-06-20 12:47:25 +02002991 if (!ptr)
2992 return 0; /* parameter not stored */
Willy Tarreauf853c462012-04-23 18:53:56 +02002993 smp->data.uint = stktable_data_cast(ptr, gpc0);
Willy Tarreauc3bd9722010-06-20 12:47:25 +02002994 }
2995 return 1;
2996}
2997
Willy Tarreau87b09662015-04-03 00:22:06 +02002998/* set <smp> to the General Purpose Counter 0's event rate from the stream's
Willy Tarreaub5e0af02013-07-22 23:47:07 +02002999 * tracked frontend counters or from the src.
3000 * Supports being called as "sc[0-9]_gpc0_rate" or "src_gpc0_rate" only.
3001 * Value zero is returned if the key is new.
3002 */
Willy Tarreauba2ffd12013-05-29 15:54:14 +02003003static int
Willy Tarreau87b09662015-04-03 00:22:06 +02003004smp_fetch_sc_gpc0_rate(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01003005 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreauba2ffd12013-05-29 15:54:14 +02003006{
Willy Tarreaub5e0af02013-07-22 23:47:07 +02003007 struct stkctr *stkctr = smp_fetch_sc_stkctr(l4, args, kw);
3008
3009 if (!stkctr)
3010 return 0;
3011
Willy Tarreauba2ffd12013-05-29 15:54:14 +02003012 smp->flags = SMP_F_VOL_TEST;
3013 smp->type = SMP_T_UINT;
3014 smp->data.uint = 0;
Willy Tarreaucc08d2c2014-01-28 23:18:23 +01003015 if (stkctr_entry(stkctr) != NULL) {
3016 void *ptr = stktable_data_ptr(stkctr->table, stkctr_entry(stkctr), STKTABLE_DT_GPC0_RATE);
Willy Tarreauba2ffd12013-05-29 15:54:14 +02003017 if (!ptr)
3018 return 0; /* parameter not stored */
3019 smp->data.uint = read_freq_ctr_period(&stktable_data_cast(ptr, gpc0_rate),
Willy Tarreaub5e0af02013-07-22 23:47:07 +02003020 stkctr->table->data_arg[STKTABLE_DT_GPC0_RATE].u);
Willy Tarreauba2ffd12013-05-29 15:54:14 +02003021 }
3022 return 1;
3023}
3024
Willy Tarreau87b09662015-04-03 00:22:06 +02003025/* Increment the General Purpose Counter 0 value from the stream's tracked
Willy Tarreau710d38c2013-07-23 00:07:04 +02003026 * frontend counters and return it into temp integer.
3027 * Supports being called as "sc[0-9]_inc_gpc0" or "src_inc_gpc0" only.
Willy Tarreauc3bd9722010-06-20 12:47:25 +02003028 */
3029static int
Willy Tarreau87b09662015-04-03 00:22:06 +02003030smp_fetch_sc_inc_gpc0(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01003031 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreauc3bd9722010-06-20 12:47:25 +02003032{
Willy Tarreau710d38c2013-07-23 00:07:04 +02003033 struct stkctr *stkctr = smp_fetch_sc_stkctr(l4, args, kw);
3034
3035 if (!stkctr)
3036 return 0;
3037
Willy Tarreau37406352012-04-23 16:16:37 +02003038 smp->flags = SMP_F_VOL_TEST;
Willy Tarreauf853c462012-04-23 18:53:56 +02003039 smp->type = SMP_T_UINT;
3040 smp->data.uint = 0;
Willy Tarreaucc08d2c2014-01-28 23:18:23 +01003041 if (stkctr_entry(stkctr) != NULL) {
Willy Tarreauba2ffd12013-05-29 15:54:14 +02003042 void *ptr;
3043
3044 /* First, update gpc0_rate if it's tracked. Second, update its
3045 * gpc0 if tracked. Returns gpc0's value otherwise the curr_ctr.
3046 */
Willy Tarreaucc08d2c2014-01-28 23:18:23 +01003047 ptr = stktable_data_ptr(stkctr->table, stkctr_entry(stkctr), STKTABLE_DT_GPC0_RATE);
Willy Tarreauba2ffd12013-05-29 15:54:14 +02003048 if (ptr) {
3049 update_freq_ctr_period(&stktable_data_cast(ptr, gpc0_rate),
Willy Tarreau710d38c2013-07-23 00:07:04 +02003050 stkctr->table->data_arg[STKTABLE_DT_GPC0_RATE].u, 1);
Willy Tarreauba2ffd12013-05-29 15:54:14 +02003051 smp->data.uint = (&stktable_data_cast(ptr, gpc0_rate))->curr_ctr;
3052 }
3053
Willy Tarreaucc08d2c2014-01-28 23:18:23 +01003054 ptr = stktable_data_ptr(stkctr->table, stkctr_entry(stkctr), STKTABLE_DT_GPC0);
Willy Tarreauba2ffd12013-05-29 15:54:14 +02003055 if (ptr)
3056 smp->data.uint = ++stktable_data_cast(ptr, gpc0);
3057
Willy Tarreauc3bd9722010-06-20 12:47:25 +02003058 }
3059 return 1;
3060}
3061
Willy Tarreau87b09662015-04-03 00:22:06 +02003062/* Clear the General Purpose Counter 0 value from the stream's tracked
Willy Tarreaub9f441d2013-07-23 00:10:35 +02003063 * frontend counters and return its previous value into temp integer.
3064 * Supports being called as "sc[0-9]_clr_gpc0" or "src_clr_gpc0" only.
Willy Tarreauf73cd112011-08-13 01:45:16 +02003065 */
3066static int
Willy Tarreau87b09662015-04-03 00:22:06 +02003067smp_fetch_sc_clr_gpc0(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01003068 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreauf73cd112011-08-13 01:45:16 +02003069{
Willy Tarreaub9f441d2013-07-23 00:10:35 +02003070 struct stkctr *stkctr = smp_fetch_sc_stkctr(l4, args, kw);
3071
3072 if (!stkctr)
3073 return 0;
3074
Willy Tarreau37406352012-04-23 16:16:37 +02003075 smp->flags = SMP_F_VOL_TEST;
Willy Tarreauf853c462012-04-23 18:53:56 +02003076 smp->type = SMP_T_UINT;
3077 smp->data.uint = 0;
Willy Tarreaucc08d2c2014-01-28 23:18:23 +01003078 if (stkctr_entry(stkctr) != NULL) {
3079 void *ptr = stktable_data_ptr(stkctr->table, stkctr_entry(stkctr), STKTABLE_DT_GPC0);
Willy Tarreauf73cd112011-08-13 01:45:16 +02003080 if (!ptr)
3081 return 0; /* parameter not stored */
Willy Tarreauf853c462012-04-23 18:53:56 +02003082 smp->data.uint = stktable_data_cast(ptr, gpc0);
Willy Tarreauf73cd112011-08-13 01:45:16 +02003083 stktable_data_cast(ptr, gpc0) = 0;
3084 }
3085 return 1;
3086}
3087
Willy Tarreau87b09662015-04-03 00:22:06 +02003088/* set <smp> to the cumulated number of connections from the stream's tracked
Willy Tarreau3b46c5c2013-07-23 00:22:50 +02003089 * frontend counters. Supports being called as "sc[0-9]_conn_cnt" or
3090 * "src_conn_cnt" only.
3091 */
Willy Tarreau9a3f8492010-06-18 19:53:25 +02003092static int
Willy Tarreau87b09662015-04-03 00:22:06 +02003093smp_fetch_sc_conn_cnt(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01003094 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreau9a3f8492010-06-18 19:53:25 +02003095{
Willy Tarreau3b46c5c2013-07-23 00:22:50 +02003096 struct stkctr *stkctr = smp_fetch_sc_stkctr(l4, args, kw);
3097
3098 if (!stkctr)
3099 return 0;
3100
Willy Tarreau37406352012-04-23 16:16:37 +02003101 smp->flags = SMP_F_VOL_TEST;
Willy Tarreauf853c462012-04-23 18:53:56 +02003102 smp->type = SMP_T_UINT;
3103 smp->data.uint = 0;
Willy Tarreaucc08d2c2014-01-28 23:18:23 +01003104 if (stkctr_entry(stkctr) != NULL) {
3105 void *ptr = stktable_data_ptr(stkctr->table, stkctr_entry(stkctr), STKTABLE_DT_CONN_CNT);
Willy Tarreau9a3f8492010-06-18 19:53:25 +02003106 if (!ptr)
3107 return 0; /* parameter not stored */
Willy Tarreauf853c462012-04-23 18:53:56 +02003108 smp->data.uint = stktable_data_cast(ptr, conn_cnt);
Willy Tarreau9a3f8492010-06-18 19:53:25 +02003109 }
Willy Tarreau9a3f8492010-06-18 19:53:25 +02003110 return 1;
3111}
3112
Willy Tarreau87b09662015-04-03 00:22:06 +02003113/* set <smp> to the connection rate from the stream's tracked frontend
Willy Tarreauc8c65702013-07-23 15:09:35 +02003114 * counters. Supports being called as "sc[0-9]_conn_rate" or "src_conn_rate"
3115 * only.
3116 */
Willy Tarreau91c43d72010-06-20 11:19:22 +02003117static int
Willy Tarreau87b09662015-04-03 00:22:06 +02003118smp_fetch_sc_conn_rate(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01003119 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreau91c43d72010-06-20 11:19:22 +02003120{
Willy Tarreauc8c65702013-07-23 15:09:35 +02003121 struct stkctr *stkctr = smp_fetch_sc_stkctr(l4, args, kw);
3122
3123 if (!stkctr)
3124 return 0;
3125
Willy Tarreau37406352012-04-23 16:16:37 +02003126 smp->flags = SMP_F_VOL_TEST;
Willy Tarreauf853c462012-04-23 18:53:56 +02003127 smp->type = SMP_T_UINT;
3128 smp->data.uint = 0;
Willy Tarreaucc08d2c2014-01-28 23:18:23 +01003129 if (stkctr_entry(stkctr) != NULL) {
3130 void *ptr = stktable_data_ptr(stkctr->table, stkctr_entry(stkctr), STKTABLE_DT_CONN_RATE);
Willy Tarreau91c43d72010-06-20 11:19:22 +02003131 if (!ptr)
3132 return 0; /* parameter not stored */
Willy Tarreauf853c462012-04-23 18:53:56 +02003133 smp->data.uint = read_freq_ctr_period(&stktable_data_cast(ptr, conn_rate),
Willy Tarreauc8c65702013-07-23 15:09:35 +02003134 stkctr->table->data_arg[STKTABLE_DT_CONN_RATE].u);
Willy Tarreau91c43d72010-06-20 11:19:22 +02003135 }
3136 return 1;
3137}
3138
Willy Tarreau87b09662015-04-03 00:22:06 +02003139/* set temp integer to the number of connections from the stream's source address
Willy Tarreau8b22a712010-06-18 17:46:06 +02003140 * in the table pointed to by expr, after updating it.
Willy Tarreau0146c2e2012-04-20 11:37:56 +02003141 * Accepts exactly 1 argument of type table.
Willy Tarreau8b22a712010-06-18 17:46:06 +02003142 */
3143static int
Willy Tarreau87b09662015-04-03 00:22:06 +02003144smp_fetch_src_updt_conn_cnt(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01003145 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreau8b22a712010-06-18 17:46:06 +02003146{
Willy Tarreaub363a1f2013-10-01 10:45:07 +02003147 struct connection *conn = objt_conn(l4->si[0].end);
Willy Tarreau8b22a712010-06-18 17:46:06 +02003148 struct stksess *ts;
3149 struct stktable_key *key;
3150 void *ptr;
3151
Willy Tarreaub363a1f2013-10-01 10:45:07 +02003152 if (!conn)
3153 return 0;
3154
Thierry FOURNIER74c219d2014-04-14 14:35:40 +02003155 key = addr_to_stktable_key(&conn->addr.from, px->table.type);
Willy Tarreau8b22a712010-06-18 17:46:06 +02003156 if (!key)
David du Colombier4f92d322011-03-24 11:09:31 +01003157 return 0;
Willy Tarreau8b22a712010-06-18 17:46:06 +02003158
Willy Tarreau24e32d82012-04-23 23:55:44 +02003159 px = args->data.prx;
Willy Tarreau8b22a712010-06-18 17:46:06 +02003160
Willy Tarreau1f7e9252010-06-20 12:27:21 +02003161 if ((ts = stktable_update_key(&px->table, key)) == NULL)
3162 /* entry does not exist and could not be created */
3163 return 0;
Willy Tarreau8b22a712010-06-18 17:46:06 +02003164
3165 ptr = stktable_data_ptr(&px->table, ts, STKTABLE_DT_CONN_CNT);
3166 if (!ptr)
3167 return 0; /* parameter not stored in this table */
3168
Willy Tarreauf853c462012-04-23 18:53:56 +02003169 smp->type = SMP_T_UINT;
3170 smp->data.uint = ++stktable_data_cast(ptr, conn_cnt);
Willy Tarreau37406352012-04-23 16:16:37 +02003171 smp->flags = SMP_F_VOL_TEST;
Willy Tarreau8b22a712010-06-18 17:46:06 +02003172 return 1;
3173}
3174
Willy Tarreau87b09662015-04-03 00:22:06 +02003175/* set <smp> to the number of concurrent connections from the stream's tracked
Willy Tarreauf44a5532013-07-23 15:17:53 +02003176 * frontend counters. Supports being called as "sc[0-9]_conn_cur" or
3177 * "src_conn_cur" only.
3178 */
Willy Tarreau9b0ddcf2010-06-18 21:14:36 +02003179static int
Willy Tarreau87b09662015-04-03 00:22:06 +02003180smp_fetch_sc_conn_cur(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01003181 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreau9b0ddcf2010-06-18 21:14:36 +02003182{
Willy Tarreauf44a5532013-07-23 15:17:53 +02003183 struct stkctr *stkctr = smp_fetch_sc_stkctr(l4, args, kw);
3184
3185 if (!stkctr)
3186 return 0;
3187
Willy Tarreau37406352012-04-23 16:16:37 +02003188 smp->flags = SMP_F_VOL_TEST;
Willy Tarreauf853c462012-04-23 18:53:56 +02003189 smp->type = SMP_T_UINT;
3190 smp->data.uint = 0;
Willy Tarreaucc08d2c2014-01-28 23:18:23 +01003191 if (stkctr_entry(stkctr) != NULL) {
3192 void *ptr = stktable_data_ptr(stkctr->table, stkctr_entry(stkctr), STKTABLE_DT_CONN_CUR);
Willy Tarreau9b0ddcf2010-06-18 21:14:36 +02003193 if (!ptr)
3194 return 0; /* parameter not stored */
Willy Tarreauf853c462012-04-23 18:53:56 +02003195 smp->data.uint = stktable_data_cast(ptr, conn_cur);
Willy Tarreau9b0ddcf2010-06-18 21:14:36 +02003196 }
3197 return 1;
3198}
3199
Willy Tarreau87b09662015-04-03 00:22:06 +02003200/* set <smp> to the cumulated number of streams from the stream's tracked
Willy Tarreau20843082013-07-23 15:35:33 +02003201 * frontend counters. Supports being called as "sc[0-9]_sess_cnt" or
3202 * "src_sess_cnt" only.
3203 */
Willy Tarreauf4d17d92010-06-18 22:10:12 +02003204static int
Willy Tarreau87b09662015-04-03 00:22:06 +02003205smp_fetch_sc_sess_cnt(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01003206 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreauf4d17d92010-06-18 22:10:12 +02003207{
Willy Tarreau20843082013-07-23 15:35:33 +02003208 struct stkctr *stkctr = smp_fetch_sc_stkctr(l4, args, kw);
3209
3210 if (!stkctr)
3211 return 0;
3212
Willy Tarreau37406352012-04-23 16:16:37 +02003213 smp->flags = SMP_F_VOL_TEST;
Willy Tarreauf853c462012-04-23 18:53:56 +02003214 smp->type = SMP_T_UINT;
3215 smp->data.uint = 0;
Willy Tarreaucc08d2c2014-01-28 23:18:23 +01003216 if (stkctr_entry(stkctr) != NULL) {
3217 void *ptr = stktable_data_ptr(stkctr->table, stkctr_entry(stkctr), STKTABLE_DT_SESS_CNT);
Willy Tarreauf4d17d92010-06-18 22:10:12 +02003218 if (!ptr)
3219 return 0; /* parameter not stored */
Willy Tarreauf853c462012-04-23 18:53:56 +02003220 smp->data.uint = stktable_data_cast(ptr, sess_cnt);
Willy Tarreauf4d17d92010-06-18 22:10:12 +02003221 }
3222 return 1;
3223}
3224
Willy Tarreau87b09662015-04-03 00:22:06 +02003225/* set <smp> to the stream rate from the stream's tracked frontend counters.
Willy Tarreau3a96f3f2013-07-23 15:48:01 +02003226 * Supports being called as "sc[0-9]_sess_rate" or "src_sess_rate" only.
3227 */
Willy Tarreau91c43d72010-06-20 11:19:22 +02003228static int
Willy Tarreau87b09662015-04-03 00:22:06 +02003229smp_fetch_sc_sess_rate(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01003230 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreau91c43d72010-06-20 11:19:22 +02003231{
Willy Tarreau3a96f3f2013-07-23 15:48:01 +02003232 struct stkctr *stkctr = smp_fetch_sc_stkctr(l4, args, kw);
3233
3234 if (!stkctr)
3235 return 0;
3236
Willy Tarreau37406352012-04-23 16:16:37 +02003237 smp->flags = SMP_F_VOL_TEST;
Willy Tarreauf853c462012-04-23 18:53:56 +02003238 smp->type = SMP_T_UINT;
3239 smp->data.uint = 0;
Willy Tarreaucc08d2c2014-01-28 23:18:23 +01003240 if (stkctr_entry(stkctr) != NULL) {
3241 void *ptr = stktable_data_ptr(stkctr->table, stkctr_entry(stkctr), STKTABLE_DT_SESS_RATE);
Willy Tarreau91c43d72010-06-20 11:19:22 +02003242 if (!ptr)
3243 return 0; /* parameter not stored */
Willy Tarreauf853c462012-04-23 18:53:56 +02003244 smp->data.uint = read_freq_ctr_period(&stktable_data_cast(ptr, sess_rate),
Willy Tarreau3a96f3f2013-07-23 15:48:01 +02003245 stkctr->table->data_arg[STKTABLE_DT_SESS_RATE].u);
Willy Tarreau91c43d72010-06-20 11:19:22 +02003246 }
3247 return 1;
3248}
3249
Willy Tarreau87b09662015-04-03 00:22:06 +02003250/* set <smp> to the cumulated number of HTTP requests from the stream's tracked
Willy Tarreau91200da2013-07-23 15:55:19 +02003251 * frontend counters. Supports being called as "sc[0-9]_http_req_cnt" or
3252 * "src_http_req_cnt" only.
3253 */
Willy Tarreauda7ff642010-06-23 11:44:09 +02003254static int
Willy Tarreau87b09662015-04-03 00:22:06 +02003255smp_fetch_sc_http_req_cnt(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01003256 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreauda7ff642010-06-23 11:44:09 +02003257{
Willy Tarreau91200da2013-07-23 15:55:19 +02003258 struct stkctr *stkctr = smp_fetch_sc_stkctr(l4, args, kw);
3259
3260 if (!stkctr)
3261 return 0;
3262
Willy Tarreau37406352012-04-23 16:16:37 +02003263 smp->flags = SMP_F_VOL_TEST;
Willy Tarreauf853c462012-04-23 18:53:56 +02003264 smp->type = SMP_T_UINT;
3265 smp->data.uint = 0;
Willy Tarreaucc08d2c2014-01-28 23:18:23 +01003266 if (stkctr_entry(stkctr) != NULL) {
3267 void *ptr = stktable_data_ptr(stkctr->table, stkctr_entry(stkctr), STKTABLE_DT_HTTP_REQ_CNT);
Willy Tarreauda7ff642010-06-23 11:44:09 +02003268 if (!ptr)
3269 return 0; /* parameter not stored */
Willy Tarreauf853c462012-04-23 18:53:56 +02003270 smp->data.uint = stktable_data_cast(ptr, http_req_cnt);
Willy Tarreauda7ff642010-06-23 11:44:09 +02003271 }
3272 return 1;
3273}
3274
Willy Tarreau87b09662015-04-03 00:22:06 +02003275/* set <smp> to the HTTP request rate from the stream's tracked frontend
Willy Tarreaucf477632013-07-23 16:04:37 +02003276 * counters. Supports being called as "sc[0-9]_http_req_rate" or
3277 * "src_http_req_rate" only.
3278 */
Willy Tarreauda7ff642010-06-23 11:44:09 +02003279static int
Willy Tarreau87b09662015-04-03 00:22:06 +02003280smp_fetch_sc_http_req_rate(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01003281 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreauda7ff642010-06-23 11:44:09 +02003282{
Willy Tarreaucf477632013-07-23 16:04:37 +02003283 struct stkctr *stkctr = smp_fetch_sc_stkctr(l4, args, kw);
3284
3285 if (!stkctr)
3286 return 0;
3287
Willy Tarreau37406352012-04-23 16:16:37 +02003288 smp->flags = SMP_F_VOL_TEST;
Willy Tarreauf853c462012-04-23 18:53:56 +02003289 smp->type = SMP_T_UINT;
3290 smp->data.uint = 0;
Willy Tarreaucc08d2c2014-01-28 23:18:23 +01003291 if (stkctr_entry(stkctr) != NULL) {
3292 void *ptr = stktable_data_ptr(stkctr->table, stkctr_entry(stkctr), STKTABLE_DT_HTTP_REQ_RATE);
Willy Tarreauda7ff642010-06-23 11:44:09 +02003293 if (!ptr)
3294 return 0; /* parameter not stored */
Willy Tarreauf853c462012-04-23 18:53:56 +02003295 smp->data.uint = read_freq_ctr_period(&stktable_data_cast(ptr, http_req_rate),
Willy Tarreaucf477632013-07-23 16:04:37 +02003296 stkctr->table->data_arg[STKTABLE_DT_HTTP_REQ_RATE].u);
Willy Tarreauda7ff642010-06-23 11:44:09 +02003297 }
3298 return 1;
3299}
3300
Willy Tarreau87b09662015-04-03 00:22:06 +02003301/* set <smp> to the cumulated number of HTTP requests errors from the stream's
Willy Tarreau30d07c32013-07-23 16:45:38 +02003302 * tracked frontend counters. Supports being called as "sc[0-9]_http_err_cnt" or
3303 * "src_http_err_cnt" only.
3304 */
Willy Tarreauda7ff642010-06-23 11:44:09 +02003305static int
Willy Tarreau87b09662015-04-03 00:22:06 +02003306smp_fetch_sc_http_err_cnt(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01003307 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreauda7ff642010-06-23 11:44:09 +02003308{
Willy Tarreau30d07c32013-07-23 16:45:38 +02003309 struct stkctr *stkctr = smp_fetch_sc_stkctr(l4, args, kw);
3310
3311 if (!stkctr)
3312 return 0;
3313
Willy Tarreau37406352012-04-23 16:16:37 +02003314 smp->flags = SMP_F_VOL_TEST;
Willy Tarreauf853c462012-04-23 18:53:56 +02003315 smp->type = SMP_T_UINT;
3316 smp->data.uint = 0;
Willy Tarreaucc08d2c2014-01-28 23:18:23 +01003317 if (stkctr_entry(stkctr) != NULL) {
3318 void *ptr = stktable_data_ptr(stkctr->table, stkctr_entry(stkctr), STKTABLE_DT_HTTP_ERR_CNT);
Willy Tarreauda7ff642010-06-23 11:44:09 +02003319 if (!ptr)
3320 return 0; /* parameter not stored */
Willy Tarreauf853c462012-04-23 18:53:56 +02003321 smp->data.uint = stktable_data_cast(ptr, http_err_cnt);
Willy Tarreauda7ff642010-06-23 11:44:09 +02003322 }
3323 return 1;
3324}
3325
Willy Tarreau87b09662015-04-03 00:22:06 +02003326/* set <smp> to the HTTP request error rate from the stream's tracked frontend
Willy Tarreau9daf2622013-07-23 16:48:54 +02003327 * counters. Supports being called as "sc[0-9]_http_err_rate" or
3328 * "src_http_err_rate" only.
3329 */
Willy Tarreauda7ff642010-06-23 11:44:09 +02003330static int
Willy Tarreau87b09662015-04-03 00:22:06 +02003331smp_fetch_sc_http_err_rate(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01003332 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreauda7ff642010-06-23 11:44:09 +02003333{
Willy Tarreau9daf2622013-07-23 16:48:54 +02003334 struct stkctr *stkctr = smp_fetch_sc_stkctr(l4, args, kw);
3335
3336 if (!stkctr)
3337 return 0;
3338
Willy Tarreau37406352012-04-23 16:16:37 +02003339 smp->flags = SMP_F_VOL_TEST;
Willy Tarreauf853c462012-04-23 18:53:56 +02003340 smp->type = SMP_T_UINT;
3341 smp->data.uint = 0;
Willy Tarreaucc08d2c2014-01-28 23:18:23 +01003342 if (stkctr_entry(stkctr) != NULL) {
3343 void *ptr = stktable_data_ptr(stkctr->table, stkctr_entry(stkctr), STKTABLE_DT_HTTP_ERR_RATE);
Willy Tarreauda7ff642010-06-23 11:44:09 +02003344 if (!ptr)
3345 return 0; /* parameter not stored */
Willy Tarreauf853c462012-04-23 18:53:56 +02003346 smp->data.uint = read_freq_ctr_period(&stktable_data_cast(ptr, http_err_rate),
Willy Tarreau9daf2622013-07-23 16:48:54 +02003347 stkctr->table->data_arg[STKTABLE_DT_HTTP_ERR_RATE].u);
Willy Tarreauda7ff642010-06-23 11:44:09 +02003348 }
3349 return 1;
3350}
3351
Willy Tarreau5077d4b2013-07-23 17:17:10 +02003352/* set <smp> to the number of kbytes received from clients, as found in the
Willy Tarreau87b09662015-04-03 00:22:06 +02003353 * stream's tracked frontend counters. Supports being called as
Willy Tarreau5077d4b2013-07-23 17:17:10 +02003354 * "sc[0-9]_kbytes_in" or "src_kbytes_in" only.
3355 */
Willy Tarreau1aa006f2010-06-18 21:52:52 +02003356static int
Willy Tarreau87b09662015-04-03 00:22:06 +02003357smp_fetch_sc_kbytes_in(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01003358 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreau1aa006f2010-06-18 21:52:52 +02003359{
Willy Tarreau5077d4b2013-07-23 17:17:10 +02003360 struct stkctr *stkctr = smp_fetch_sc_stkctr(l4, args, kw);
3361
3362 if (!stkctr)
3363 return 0;
3364
Willy Tarreau37406352012-04-23 16:16:37 +02003365 smp->flags = SMP_F_VOL_TEST;
Willy Tarreauf853c462012-04-23 18:53:56 +02003366 smp->type = SMP_T_UINT;
3367 smp->data.uint = 0;
Willy Tarreaucc08d2c2014-01-28 23:18:23 +01003368 if (stkctr_entry(stkctr) != NULL) {
3369 void *ptr = stktable_data_ptr(stkctr->table, stkctr_entry(stkctr), STKTABLE_DT_BYTES_IN_CNT);
Willy Tarreau1aa006f2010-06-18 21:52:52 +02003370 if (!ptr)
3371 return 0; /* parameter not stored */
Willy Tarreauf853c462012-04-23 18:53:56 +02003372 smp->data.uint = stktable_data_cast(ptr, bytes_in_cnt) >> 10;
Willy Tarreau1aa006f2010-06-18 21:52:52 +02003373 }
3374 return 1;
3375}
3376
Willy Tarreau613fe992013-07-23 17:39:19 +02003377/* set <smp> to the data rate received from clients in bytes/s, as found
Willy Tarreau87b09662015-04-03 00:22:06 +02003378 * in the stream's tracked frontend counters. Supports being called as
Willy Tarreau613fe992013-07-23 17:39:19 +02003379 * "sc[0-9]_bytes_in_rate" or "src_bytes_in_rate" only.
Willy Tarreau6c59e0a2010-06-20 11:56:30 +02003380 */
3381static int
Willy Tarreau87b09662015-04-03 00:22:06 +02003382smp_fetch_sc_bytes_in_rate(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01003383 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreau6c59e0a2010-06-20 11:56:30 +02003384{
Willy Tarreau613fe992013-07-23 17:39:19 +02003385 struct stkctr *stkctr = smp_fetch_sc_stkctr(l4, args, kw);
3386
3387 if (!stkctr)
3388 return 0;
3389
Willy Tarreau37406352012-04-23 16:16:37 +02003390 smp->flags = SMP_F_VOL_TEST;
Willy Tarreauf853c462012-04-23 18:53:56 +02003391 smp->type = SMP_T_UINT;
3392 smp->data.uint = 0;
Willy Tarreaucc08d2c2014-01-28 23:18:23 +01003393 if (stkctr_entry(stkctr) != NULL) {
3394 void *ptr = stktable_data_ptr(stkctr->table, stkctr_entry(stkctr), STKTABLE_DT_BYTES_IN_RATE);
Willy Tarreau6c59e0a2010-06-20 11:56:30 +02003395 if (!ptr)
3396 return 0; /* parameter not stored */
Willy Tarreauf853c462012-04-23 18:53:56 +02003397 smp->data.uint = read_freq_ctr_period(&stktable_data_cast(ptr, bytes_in_rate),
Willy Tarreau613fe992013-07-23 17:39:19 +02003398 stkctr->table->data_arg[STKTABLE_DT_BYTES_IN_RATE].u);
Willy Tarreau6c59e0a2010-06-20 11:56:30 +02003399 }
3400 return 1;
3401}
3402
Willy Tarreau53aea102013-07-23 17:39:02 +02003403/* set <smp> to the number of kbytes sent to clients, as found in the
Willy Tarreau87b09662015-04-03 00:22:06 +02003404 * stream's tracked frontend counters. Supports being called as
Willy Tarreau53aea102013-07-23 17:39:02 +02003405 * "sc[0-9]_kbytes_out" or "src_kbytes_out" only.
3406 */
Willy Tarreau1aa006f2010-06-18 21:52:52 +02003407static int
Willy Tarreau87b09662015-04-03 00:22:06 +02003408smp_fetch_sc_kbytes_out(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01003409 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreau1aa006f2010-06-18 21:52:52 +02003410{
Willy Tarreau53aea102013-07-23 17:39:02 +02003411 struct stkctr *stkctr = smp_fetch_sc_stkctr(l4, args, kw);
3412
3413 if (!stkctr)
3414 return 0;
3415
Willy Tarreau37406352012-04-23 16:16:37 +02003416 smp->flags = SMP_F_VOL_TEST;
Willy Tarreauf853c462012-04-23 18:53:56 +02003417 smp->type = SMP_T_UINT;
3418 smp->data.uint = 0;
Willy Tarreaucc08d2c2014-01-28 23:18:23 +01003419 if (stkctr_entry(stkctr) != NULL) {
3420 void *ptr = stktable_data_ptr(stkctr->table, stkctr_entry(stkctr), STKTABLE_DT_BYTES_OUT_CNT);
Willy Tarreau855e4bb2010-06-18 18:33:32 +02003421 if (!ptr)
3422 return 0; /* parameter not stored */
Willy Tarreauf853c462012-04-23 18:53:56 +02003423 smp->data.uint = stktable_data_cast(ptr, bytes_out_cnt) >> 10;
Willy Tarreau855e4bb2010-06-18 18:33:32 +02003424 }
Willy Tarreau855e4bb2010-06-18 18:33:32 +02003425 return 1;
3426}
3427
Willy Tarreaua0b68ed2013-07-23 18:26:32 +02003428/* set <smp> to the data rate sent to clients in bytes/s, as found in the
Willy Tarreau87b09662015-04-03 00:22:06 +02003429 * stream's tracked frontend counters. Supports being called as
Willy Tarreaua0b68ed2013-07-23 18:26:32 +02003430 * "sc[0-9]_bytes_out_rate" or "src_bytes_out_rate" only.
Willy Tarreau6c59e0a2010-06-20 11:56:30 +02003431 */
3432static int
Willy Tarreau87b09662015-04-03 00:22:06 +02003433smp_fetch_sc_bytes_out_rate(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01003434 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreau6c59e0a2010-06-20 11:56:30 +02003435{
Willy Tarreaua0b68ed2013-07-23 18:26:32 +02003436 struct stkctr *stkctr = smp_fetch_sc_stkctr(l4, args, kw);
3437
3438 if (!stkctr)
3439 return 0;
3440
Willy Tarreau37406352012-04-23 16:16:37 +02003441 smp->flags = SMP_F_VOL_TEST;
Willy Tarreauf853c462012-04-23 18:53:56 +02003442 smp->type = SMP_T_UINT;
3443 smp->data.uint = 0;
Willy Tarreaucc08d2c2014-01-28 23:18:23 +01003444 if (stkctr_entry(stkctr) != NULL) {
3445 void *ptr = stktable_data_ptr(stkctr->table, stkctr_entry(stkctr), STKTABLE_DT_BYTES_OUT_RATE);
Willy Tarreau6c59e0a2010-06-20 11:56:30 +02003446 if (!ptr)
3447 return 0; /* parameter not stored */
Willy Tarreauf853c462012-04-23 18:53:56 +02003448 smp->data.uint = read_freq_ctr_period(&stktable_data_cast(ptr, bytes_out_rate),
Willy Tarreaua0b68ed2013-07-23 18:26:32 +02003449 stkctr->table->data_arg[STKTABLE_DT_BYTES_OUT_RATE].u);
Willy Tarreau6c59e0a2010-06-20 11:56:30 +02003450 }
3451 return 1;
3452}
3453
Willy Tarreau87b09662015-04-03 00:22:06 +02003454/* set <smp> to the number of active trackers on the SC entry in the stream's
Willy Tarreau563eef42013-07-23 18:32:02 +02003455 * tracked frontend counters. Supports being called as "sc[0-9]_trackers" only.
3456 */
Willy Tarreau2406db42012-12-09 12:16:43 +01003457static int
Willy Tarreau87b09662015-04-03 00:22:06 +02003458smp_fetch_sc_trackers(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01003459 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreau2406db42012-12-09 12:16:43 +01003460{
Willy Tarreau563eef42013-07-23 18:32:02 +02003461 struct stkctr *stkctr = smp_fetch_sc_stkctr(l4, args, kw);
Willy Tarreau2406db42012-12-09 12:16:43 +01003462
Willy Tarreau563eef42013-07-23 18:32:02 +02003463 if (!stkctr)
Willy Tarreau2406db42012-12-09 12:16:43 +01003464 return 0;
3465
Willy Tarreau563eef42013-07-23 18:32:02 +02003466 smp->flags = SMP_F_VOL_TEST;
3467 smp->type = SMP_T_UINT;
Willy Tarreaucc08d2c2014-01-28 23:18:23 +01003468 smp->data.uint = stkctr_entry(stkctr)->ref_cnt;
Willy Tarreau563eef42013-07-23 18:32:02 +02003469 return 1;
Willy Tarreaue25c9172013-05-28 18:32:20 +02003470}
3471
Willy Tarreau34db1082012-04-19 17:16:54 +02003472/* set temp integer to the number of used entries in the table pointed to by expr.
Willy Tarreau0146c2e2012-04-20 11:37:56 +02003473 * Accepts exactly 1 argument of type table.
Willy Tarreau34db1082012-04-19 17:16:54 +02003474 */
Willy Tarreauc735a072011-03-29 00:57:02 +02003475static int
Willy Tarreau87b09662015-04-03 00:22:06 +02003476smp_fetch_table_cnt(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01003477 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreauc735a072011-03-29 00:57:02 +02003478{
Willy Tarreau37406352012-04-23 16:16:37 +02003479 smp->flags = SMP_F_VOL_TEST;
Willy Tarreauf853c462012-04-23 18:53:56 +02003480 smp->type = SMP_T_UINT;
Willy Tarreau24e32d82012-04-23 23:55:44 +02003481 smp->data.uint = args->data.prx->table.current;
Willy Tarreauc735a072011-03-29 00:57:02 +02003482 return 1;
3483}
3484
Willy Tarreau34db1082012-04-19 17:16:54 +02003485/* set temp integer to the number of free entries in the table pointed to by expr.
Willy Tarreau0146c2e2012-04-20 11:37:56 +02003486 * Accepts exactly 1 argument of type table.
Willy Tarreau34db1082012-04-19 17:16:54 +02003487 */
Willy Tarreauc735a072011-03-29 00:57:02 +02003488static int
Willy Tarreau87b09662015-04-03 00:22:06 +02003489smp_fetch_table_avl(struct proxy *px, struct stream *l4, void *l7, unsigned int opt,
Thierry FOURNIERf41a8092014-12-07 18:37:57 +01003490 const struct arg *args, struct sample *smp, const char *kw, void *private)
Willy Tarreauc735a072011-03-29 00:57:02 +02003491{
Willy Tarreau24e32d82012-04-23 23:55:44 +02003492 px = args->data.prx;
Willy Tarreau37406352012-04-23 16:16:37 +02003493 smp->flags = SMP_F_VOL_TEST;
Willy Tarreauf853c462012-04-23 18:53:56 +02003494 smp->type = SMP_T_UINT;
3495 smp->data.uint = px->table.size - px->table.current;
Willy Tarreauc735a072011-03-29 00:57:02 +02003496 return 1;
3497}
Willy Tarreau8b22a712010-06-18 17:46:06 +02003498
Willy Tarreau61612d42012-04-19 18:42:05 +02003499/* Note: must not be declared <const> as its list will be overwritten.
3500 * Please take care of keeping this list alphabetically sorted.
3501 */
Willy Tarreaudc13c112013-06-21 23:16:39 +02003502static struct acl_kw_list acl_kws = {ILH, {
Willy Tarreau281c7992013-01-08 01:23:27 +01003503 { /* END */ },
Willy Tarreau8b22a712010-06-18 17:46:06 +02003504}};
3505
Willy Tarreau281c7992013-01-08 01:23:27 +01003506/* Note: must not be declared <const> as its list will be overwritten.
3507 * Please take care of keeping this list alphabetically sorted.
3508 */
Willy Tarreaudc13c112013-06-21 23:16:39 +02003509static struct sample_fetch_kw_list smp_fetch_keywords = {ILH, {
Willy Tarreau0f791d42013-07-23 19:56:43 +02003510 { "sc_bytes_in_rate", smp_fetch_sc_bytes_in_rate, ARG2(1,UINT,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3511 { "sc_bytes_out_rate", smp_fetch_sc_bytes_out_rate, ARG2(1,UINT,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3512 { "sc_clr_gpc0", smp_fetch_sc_clr_gpc0, ARG2(1,UINT,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3513 { "sc_conn_cnt", smp_fetch_sc_conn_cnt, ARG2(1,UINT,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3514 { "sc_conn_cur", smp_fetch_sc_conn_cur, ARG2(1,UINT,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3515 { "sc_conn_rate", smp_fetch_sc_conn_rate, ARG2(1,UINT,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3516 { "sc_get_gpc0", smp_fetch_sc_get_gpc0, ARG2(1,UINT,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3517 { "sc_gpc0_rate", smp_fetch_sc_gpc0_rate, ARG2(1,UINT,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3518 { "sc_http_err_cnt", smp_fetch_sc_http_err_cnt, ARG2(1,UINT,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3519 { "sc_http_err_rate", smp_fetch_sc_http_err_rate, ARG2(1,UINT,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3520 { "sc_http_req_cnt", smp_fetch_sc_http_req_cnt, ARG2(1,UINT,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3521 { "sc_http_req_rate", smp_fetch_sc_http_req_rate, ARG2(1,UINT,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3522 { "sc_inc_gpc0", smp_fetch_sc_inc_gpc0, ARG2(1,UINT,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3523 { "sc_kbytes_in", smp_fetch_sc_kbytes_in, ARG2(1,UINT,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3524 { "sc_kbytes_out", smp_fetch_sc_kbytes_out, ARG2(1,UINT,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3525 { "sc_sess_cnt", smp_fetch_sc_sess_cnt, ARG2(1,UINT,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3526 { "sc_sess_rate", smp_fetch_sc_sess_rate, ARG2(1,UINT,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3527 { "sc_tracked", smp_fetch_sc_tracked, ARG2(1,UINT,TAB), NULL, SMP_T_BOOL, SMP_USE_INTRN, },
3528 { "sc_trackers", smp_fetch_sc_trackers, ARG2(1,UINT,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3529 { "sc0_bytes_in_rate", smp_fetch_sc_bytes_in_rate, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3530 { "sc0_bytes_out_rate", smp_fetch_sc_bytes_out_rate, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3531 { "sc0_clr_gpc0", smp_fetch_sc_clr_gpc0, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3532 { "sc0_conn_cnt", smp_fetch_sc_conn_cnt, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3533 { "sc0_conn_cur", smp_fetch_sc_conn_cur, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3534 { "sc0_conn_rate", smp_fetch_sc_conn_rate, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3535 { "sc0_get_gpc0", smp_fetch_sc_get_gpc0, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3536 { "sc0_gpc0_rate", smp_fetch_sc_gpc0_rate, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3537 { "sc0_http_err_cnt", smp_fetch_sc_http_err_cnt, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3538 { "sc0_http_err_rate", smp_fetch_sc_http_err_rate, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3539 { "sc0_http_req_cnt", smp_fetch_sc_http_req_cnt, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3540 { "sc0_http_req_rate", smp_fetch_sc_http_req_rate, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3541 { "sc0_inc_gpc0", smp_fetch_sc_inc_gpc0, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3542 { "sc0_kbytes_in", smp_fetch_sc_kbytes_in, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3543 { "sc0_kbytes_out", smp_fetch_sc_kbytes_out, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3544 { "sc0_sess_cnt", smp_fetch_sc_sess_cnt, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3545 { "sc0_sess_rate", smp_fetch_sc_sess_rate, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3546 { "sc0_tracked", smp_fetch_sc_tracked, ARG1(0,TAB), NULL, SMP_T_BOOL, SMP_USE_INTRN, },
3547 { "sc0_trackers", smp_fetch_sc_trackers, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3548 { "sc1_bytes_in_rate", smp_fetch_sc_bytes_in_rate, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3549 { "sc1_bytes_out_rate", smp_fetch_sc_bytes_out_rate, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3550 { "sc1_clr_gpc0", smp_fetch_sc_clr_gpc0, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3551 { "sc1_conn_cnt", smp_fetch_sc_conn_cnt, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3552 { "sc1_conn_cur", smp_fetch_sc_conn_cur, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3553 { "sc1_conn_rate", smp_fetch_sc_conn_rate, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3554 { "sc1_get_gpc0", smp_fetch_sc_get_gpc0, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3555 { "sc1_gpc0_rate", smp_fetch_sc_gpc0_rate, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3556 { "sc1_http_err_cnt", smp_fetch_sc_http_err_cnt, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3557 { "sc1_http_err_rate", smp_fetch_sc_http_err_rate, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3558 { "sc1_http_req_cnt", smp_fetch_sc_http_req_cnt, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3559 { "sc1_http_req_rate", smp_fetch_sc_http_req_rate, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3560 { "sc1_inc_gpc0", smp_fetch_sc_inc_gpc0, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3561 { "sc1_kbytes_in", smp_fetch_sc_kbytes_in, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3562 { "sc1_kbytes_out", smp_fetch_sc_kbytes_out, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3563 { "sc1_sess_cnt", smp_fetch_sc_sess_cnt, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3564 { "sc1_sess_rate", smp_fetch_sc_sess_rate, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3565 { "sc1_tracked", smp_fetch_sc_tracked, ARG1(0,TAB), NULL, SMP_T_BOOL, SMP_USE_INTRN, },
3566 { "sc1_trackers", smp_fetch_sc_trackers, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3567 { "sc2_bytes_in_rate", smp_fetch_sc_bytes_in_rate, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3568 { "sc2_bytes_out_rate", smp_fetch_sc_bytes_out_rate, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3569 { "sc2_clr_gpc0", smp_fetch_sc_clr_gpc0, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3570 { "sc2_conn_cnt", smp_fetch_sc_conn_cnt, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3571 { "sc2_conn_cur", smp_fetch_sc_conn_cur, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3572 { "sc2_conn_rate", smp_fetch_sc_conn_rate, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3573 { "sc2_get_gpc0", smp_fetch_sc_get_gpc0, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3574 { "sc2_gpc0_rate", smp_fetch_sc_gpc0_rate, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3575 { "sc2_http_err_cnt", smp_fetch_sc_http_err_cnt, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3576 { "sc2_http_err_rate", smp_fetch_sc_http_err_rate, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3577 { "sc2_http_req_cnt", smp_fetch_sc_http_req_cnt, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3578 { "sc2_http_req_rate", smp_fetch_sc_http_req_rate, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3579 { "sc2_inc_gpc0", smp_fetch_sc_inc_gpc0, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3580 { "sc2_kbytes_in", smp_fetch_sc_kbytes_in, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3581 { "sc2_kbytes_out", smp_fetch_sc_kbytes_out, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3582 { "sc2_sess_cnt", smp_fetch_sc_sess_cnt, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3583 { "sc2_sess_rate", smp_fetch_sc_sess_rate, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3584 { "sc2_tracked", smp_fetch_sc_tracked, ARG1(0,TAB), NULL, SMP_T_BOOL, SMP_USE_INTRN, },
3585 { "sc2_trackers", smp_fetch_sc_trackers, ARG1(0,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3586 { "src_bytes_in_rate", smp_fetch_sc_bytes_in_rate, ARG1(1,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3587 { "src_bytes_out_rate", smp_fetch_sc_bytes_out_rate, ARG1(1,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3588 { "src_clr_gpc0", smp_fetch_sc_clr_gpc0, ARG1(1,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3589 { "src_conn_cnt", smp_fetch_sc_conn_cnt, ARG1(1,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3590 { "src_conn_cur", smp_fetch_sc_conn_cur, ARG1(1,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3591 { "src_conn_rate", smp_fetch_sc_conn_rate, ARG1(1,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3592 { "src_get_gpc0", smp_fetch_sc_get_gpc0, ARG1(1,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3593 { "src_gpc0_rate", smp_fetch_sc_gpc0_rate, ARG1(1,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3594 { "src_http_err_cnt", smp_fetch_sc_http_err_cnt, ARG1(1,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3595 { "src_http_err_rate", smp_fetch_sc_http_err_rate, ARG1(1,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3596 { "src_http_req_cnt", smp_fetch_sc_http_req_cnt, ARG1(1,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3597 { "src_http_req_rate", smp_fetch_sc_http_req_rate, ARG1(1,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3598 { "src_inc_gpc0", smp_fetch_sc_inc_gpc0, ARG1(1,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3599 { "src_kbytes_in", smp_fetch_sc_kbytes_in, ARG1(1,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3600 { "src_kbytes_out", smp_fetch_sc_kbytes_out, ARG1(1,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3601 { "src_sess_cnt", smp_fetch_sc_sess_cnt, ARG1(1,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3602 { "src_sess_rate", smp_fetch_sc_sess_rate, ARG1(1,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3603 { "src_updt_conn_cnt", smp_fetch_src_updt_conn_cnt, ARG1(1,TAB), NULL, SMP_T_UINT, SMP_USE_L4CLI, },
3604 { "table_avl", smp_fetch_table_avl, ARG1(1,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
3605 { "table_cnt", smp_fetch_table_cnt, ARG1(1,TAB), NULL, SMP_T_UINT, SMP_USE_INTRN, },
Willy Tarreau281c7992013-01-08 01:23:27 +01003606 { /* END */ },
3607}};
3608
Willy Tarreau8b22a712010-06-18 17:46:06 +02003609__attribute__((constructor))
Willy Tarreau87b09662015-04-03 00:22:06 +02003610static void __stream_init(void)
Willy Tarreau8b22a712010-06-18 17:46:06 +02003611{
Willy Tarreau281c7992013-01-08 01:23:27 +01003612 sample_register_fetches(&smp_fetch_keywords);
Willy Tarreau8b22a712010-06-18 17:46:06 +02003613 acl_register_keywords(&acl_kws);
3614}
3615
Willy Tarreaubaaee002006-06-26 02:48:02 +02003616/*
3617 * Local variables:
3618 * c-indent-level: 8
3619 * c-basic-offset: 8
3620 * End:
3621 */