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Willy Tarreaucff64112008-11-03 06:26:53 +01001/*
2 * Functions managing stream_interface structures
3 *
Willy Tarreauf873d752012-05-11 17:47:17 +02004 * Copyright 2000-2012 Willy Tarreau <w@1wt.eu>
Willy Tarreaucff64112008-11-03 06:26:53 +01005 *
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 <errno.h>
14#include <fcntl.h>
15#include <stdio.h>
16#include <stdlib.h>
17
18#include <sys/socket.h>
19#include <sys/stat.h>
20#include <sys/types.h>
21
Willy Tarreau4c7e4b72020-05-27 12:58:42 +020022#include <haproxy/api.h>
Willy Tarreaub2551052020-06-09 09:07:15 +020023#include <haproxy/applet.h>
Willy Tarreauf1d32c42020-06-04 21:07:02 +020024#include <haproxy/channel.h>
Willy Tarreau7ea393d2020-06-04 18:02:10 +020025#include <haproxy/connection.h>
Willy Tarreau2741c8c2020-06-02 11:28:02 +020026#include <haproxy/dynbuf.h>
Willy Tarreaub7fc4c42021-10-06 18:56:42 +020027#include <haproxy/http_ana.h>
Willy Tarreau87735332020-06-04 09:08:41 +020028#include <haproxy/http_htx.h>
Willy Tarreaub2551052020-06-09 09:07:15 +020029#include <haproxy/pipe-t.h>
30#include <haproxy/pipe.h>
Willy Tarreaua264d962020-06-04 22:29:18 +020031#include <haproxy/proxy.h>
Willy Tarreaudfd3de82020-06-04 23:46:14 +020032#include <haproxy/stream-t.h>
Willy Tarreau5e539c92020-06-04 20:45:39 +020033#include <haproxy/stream_interface.h>
Willy Tarreaub2551052020-06-09 09:07:15 +020034#include <haproxy/task.h>
Willy Tarreauc2f7c582020-06-02 18:15:32 +020035#include <haproxy/ticks.h>
Willy Tarreaub2551052020-06-09 09:07:15 +020036#include <haproxy/tools.h>
Willy Tarreaucff64112008-11-03 06:26:53 +010037
Willy Tarreaufd31e532012-07-23 18:24:25 +020038
Willy Tarreau14bfe9a2018-12-19 15:19:27 +010039/* functions used by default on a detached stream-interface */
Willy Tarreau6fe15412013-09-29 15:16:03 +020040static void stream_int_shutr(struct stream_interface *si);
41static void stream_int_shutw(struct stream_interface *si);
Willy Tarreauf873d752012-05-11 17:47:17 +020042static void stream_int_chk_rcv(struct stream_interface *si);
43static void stream_int_chk_snd(struct stream_interface *si);
Willy Tarreau14bfe9a2018-12-19 15:19:27 +010044
45/* functions used on a conn_stream-based stream-interface */
Willy Tarreau6fe15412013-09-29 15:16:03 +020046static void stream_int_shutr_conn(struct stream_interface *si);
47static void stream_int_shutw_conn(struct stream_interface *si);
Willy Tarreauc5788912012-08-24 18:12:41 +020048static void stream_int_chk_rcv_conn(struct stream_interface *si);
49static void stream_int_chk_snd_conn(struct stream_interface *si);
Willy Tarreau14bfe9a2018-12-19 15:19:27 +010050
51/* functions used on an applet-based stream-interface */
Willy Tarreaud45b9f82015-04-13 16:30:14 +020052static void stream_int_shutr_applet(struct stream_interface *si);
53static void stream_int_shutw_applet(struct stream_interface *si);
54static void stream_int_chk_rcv_applet(struct stream_interface *si);
55static void stream_int_chk_snd_applet(struct stream_interface *si);
Willy Tarreau14bfe9a2018-12-19 15:19:27 +010056
57/* last read notification */
58static void stream_int_read0(struct stream_interface *si);
59
60/* post-IO notification callback */
61static void stream_int_notify(struct stream_interface *si);
Willy Tarreauf873d752012-05-11 17:47:17 +020062
Willy Tarreauc5788912012-08-24 18:12:41 +020063/* stream-interface operations for embedded tasks */
64struct si_ops si_embedded_ops = {
Willy Tarreau5c979a92012-05-07 17:15:39 +020065 .chk_rcv = stream_int_chk_rcv,
66 .chk_snd = stream_int_chk_snd,
Willy Tarreau8b3d7df2013-09-29 14:51:58 +020067 .shutr = stream_int_shutr,
68 .shutw = stream_int_shutw,
Willy Tarreau5c979a92012-05-07 17:15:39 +020069};
70
Willy Tarreauc5788912012-08-24 18:12:41 +020071/* stream-interface operations for connections */
72struct si_ops si_conn_ops = {
Willy Tarreauc5788912012-08-24 18:12:41 +020073 .chk_rcv = stream_int_chk_rcv_conn,
74 .chk_snd = stream_int_chk_snd_conn,
Willy Tarreau8b3d7df2013-09-29 14:51:58 +020075 .shutr = stream_int_shutr_conn,
76 .shutw = stream_int_shutw_conn,
Willy Tarreauc5788912012-08-24 18:12:41 +020077};
78
Willy Tarreaud45b9f82015-04-13 16:30:14 +020079/* stream-interface operations for connections */
80struct si_ops si_applet_ops = {
Willy Tarreaud45b9f82015-04-13 16:30:14 +020081 .chk_rcv = stream_int_chk_rcv_applet,
82 .chk_snd = stream_int_chk_snd_applet,
83 .shutr = stream_int_shutr_applet,
84 .shutw = stream_int_shutw_applet,
85};
86
Willy Tarreau14bfe9a2018-12-19 15:19:27 +010087
88/* Functions used to communicate with a conn_stream. The first two may be used
89 * directly, the last one is mostly a wake callback.
90 */
91int si_cs_recv(struct conn_stream *cs);
92int si_cs_send(struct conn_stream *cs);
93static int si_cs_process(struct conn_stream *cs);
94
95
Willy Tarreau74beec32012-10-03 00:41:04 +020096struct data_cb si_conn_cb = {
Olivier Houchard21df6cc2018-09-14 23:21:44 +020097 .wake = si_cs_process,
Willy Tarreau8e0bb0a2016-11-24 16:58:12 +010098 .name = "STRM",
Willy Tarreauc5788912012-08-24 18:12:41 +020099};
100
Willy Tarreaucff64112008-11-03 06:26:53 +0100101/*
102 * This function only has to be called once after a wakeup event in case of
103 * suspected timeout. It controls the stream interface timeouts and sets
104 * si->flags accordingly. It does NOT close anything, as this timeout may
105 * be used for any purpose. It returns 1 if the timeout fired, otherwise
106 * zero.
107 */
Willy Tarreau14bfe9a2018-12-19 15:19:27 +0100108int si_check_timeouts(struct stream_interface *si)
Willy Tarreaucff64112008-11-03 06:26:53 +0100109{
110 if (tick_is_expired(si->exp, now_ms)) {
111 si->flags |= SI_FL_EXP;
112 return 1;
113 }
114 return 0;
115}
116
Willy Tarreaufe3718a2008-11-30 18:14:12 +0100117/* to be called only when in SI_ST_DIS with SI_FL_ERR */
Willy Tarreau14bfe9a2018-12-19 15:19:27 +0100118void si_report_error(struct stream_interface *si)
Willy Tarreaucff64112008-11-03 06:26:53 +0100119{
120 if (!si->err_type)
121 si->err_type = SI_ET_DATA_ERR;
122
Willy Tarreau2bb4a962014-11-28 11:11:05 +0100123 si_oc(si)->flags |= CF_WRITE_ERROR;
124 si_ic(si)->flags |= CF_READ_ERROR;
Willy Tarreaucff64112008-11-03 06:26:53 +0100125}
126
127/*
Willy Tarreaudded32d2008-11-30 19:48:07 +0100128 * Returns a message to the client ; the connection is shut down for read,
129 * and the request is cleared so that no server connection can be initiated.
130 * The buffer is marked for read shutdown on the other side to protect the
131 * message, and the buffer write is enabled. The message is contained in a
Willy Tarreau148d0992010-01-10 10:21:21 +0100132 * "chunk". If it is null, then an empty message is used. The reply buffer does
133 * not need to be empty before this, and its contents will not be overwritten.
134 * The primary goal of this function is to return error messages to a client.
Willy Tarreaudded32d2008-11-30 19:48:07 +0100135 */
Willy Tarreau14bfe9a2018-12-19 15:19:27 +0100136void si_retnclose(struct stream_interface *si,
Willy Tarreau83061a82018-07-13 11:56:34 +0200137 const struct buffer *msg)
Willy Tarreaudded32d2008-11-30 19:48:07 +0100138{
Willy Tarreauafc8a222014-11-28 15:46:27 +0100139 struct channel *ic = si_ic(si);
140 struct channel *oc = si_oc(si);
141
142 channel_auto_read(ic);
143 channel_abort(ic);
144 channel_auto_close(ic);
145 channel_erase(ic);
146 channel_truncate(oc);
Willy Tarreau798e1282010-12-12 13:06:00 +0100147
Willy Tarreau843b7cb2018-07-13 10:54:26 +0200148 if (likely(msg && msg->data))
149 co_inject(oc, msg->area, msg->data);
Willy Tarreaudded32d2008-11-30 19:48:07 +0100150
Willy Tarreauafc8a222014-11-28 15:46:27 +0100151 oc->wex = tick_add_ifset(now_ms, oc->wto);
152 channel_auto_read(oc);
153 channel_auto_close(oc);
154 channel_shutr_now(oc);
Willy Tarreau5d881d02009-12-27 22:51:06 +0100155}
156
Willy Tarreau4a36b562012-08-06 19:31:45 +0200157/*
Willy Tarreaud45b9f82015-04-13 16:30:14 +0200158 * This function performs a shutdown-read on a detached stream interface in a
159 * connected or init state (it does nothing for other states). It either shuts
160 * the read side or marks itself as closed. The buffer flags are updated to
161 * reflect the new state. If the stream interface has SI_FL_NOHALF, we also
162 * forward the close to the write side. The owner task is woken up if it exists.
Willy Tarreau4a36b562012-08-06 19:31:45 +0200163 */
Willy Tarreau6fe15412013-09-29 15:16:03 +0200164static void stream_int_shutr(struct stream_interface *si)
Willy Tarreaufb90d942009-09-05 20:57:35 +0200165{
Willy Tarreauafc8a222014-11-28 15:46:27 +0100166 struct channel *ic = si_ic(si);
167
Willy Tarreauabb5d422018-11-14 16:58:52 +0100168 si_rx_shut_blk(si);
Willy Tarreauafc8a222014-11-28 15:46:27 +0100169 if (ic->flags & CF_SHUTR)
Willy Tarreau6fe15412013-09-29 15:16:03 +0200170 return;
Willy Tarreauafc8a222014-11-28 15:46:27 +0100171 ic->flags |= CF_SHUTR;
172 ic->rex = TICK_ETERNITY;
Willy Tarreaufb90d942009-09-05 20:57:35 +0200173
Willy Tarreau4f283fa2019-06-05 14:34:03 +0200174 if (!si_state_in(si->state, SI_SB_CON|SI_SB_RDY|SI_SB_EST))
Willy Tarreau6fe15412013-09-29 15:16:03 +0200175 return;
Willy Tarreaufb90d942009-09-05 20:57:35 +0200176
Willy Tarreau2bb4a962014-11-28 11:11:05 +0100177 if (si_oc(si)->flags & CF_SHUTW) {
Willy Tarreaufb90d942009-09-05 20:57:35 +0200178 si->state = SI_ST_DIS;
179 si->exp = TICK_ETERNITY;
Willy Tarreaud8ccffe2010-09-07 16:16:50 +0200180 }
Willy Tarreau4a36b562012-08-06 19:31:45 +0200181 else if (si->flags & SI_FL_NOHALF) {
182 /* we want to immediately forward this close to the write side */
183 return stream_int_shutw(si);
184 }
Willy Tarreau0bd05ea2010-07-02 11:18:03 +0200185
Willy Tarreau4a36b562012-08-06 19:31:45 +0200186 /* note that if the task exists, it must unregister itself once it runs */
Willy Tarreau07373b82014-11-28 12:08:47 +0100187 if (!(si->flags & SI_FL_DONT_WAKE))
188 task_wakeup(si_task(si), TASK_WOKEN_IO);
Willy Tarreaufb90d942009-09-05 20:57:35 +0200189}
190
Willy Tarreau4a36b562012-08-06 19:31:45 +0200191/*
Willy Tarreaud45b9f82015-04-13 16:30:14 +0200192 * This function performs a shutdown-write on a detached stream interface in a
193 * connected or init state (it does nothing for other states). It either shuts
194 * the write side or marks itself as closed. The buffer flags are updated to
195 * reflect the new state. It does also close everything if the SI was marked as
196 * being in error state. The owner task is woken up if it exists.
Willy Tarreau4a36b562012-08-06 19:31:45 +0200197 */
Willy Tarreau6fe15412013-09-29 15:16:03 +0200198static void stream_int_shutw(struct stream_interface *si)
Willy Tarreaufb90d942009-09-05 20:57:35 +0200199{
Willy Tarreauafc8a222014-11-28 15:46:27 +0100200 struct channel *ic = si_ic(si);
201 struct channel *oc = si_oc(si);
202
203 oc->flags &= ~CF_SHUTW_NOW;
204 if (oc->flags & CF_SHUTW)
Willy Tarreau6fe15412013-09-29 15:16:03 +0200205 return;
Willy Tarreauafc8a222014-11-28 15:46:27 +0100206 oc->flags |= CF_SHUTW;
207 oc->wex = TICK_ETERNITY;
Willy Tarreau43e69dc2018-11-06 19:23:03 +0100208 si_done_get(si);
Willy Tarreaufb90d942009-09-05 20:57:35 +0200209
Hongbo Longe39683c2017-03-10 18:41:51 +0100210 if (tick_isset(si->hcto)) {
211 ic->rto = si->hcto;
212 ic->rex = tick_add(now_ms, ic->rto);
213 }
214
Willy Tarreaufb90d942009-09-05 20:57:35 +0200215 switch (si->state) {
Willy Tarreau4f283fa2019-06-05 14:34:03 +0200216 case SI_ST_RDY:
Willy Tarreaufb90d942009-09-05 20:57:35 +0200217 case SI_ST_EST:
Willy Tarreau4a36b562012-08-06 19:31:45 +0200218 /* we have to shut before closing, otherwise some short messages
219 * may never leave the system, especially when there are remaining
220 * unread data in the socket input buffer, or when nolinger is set.
221 * However, if SI_FL_NOLINGER is explicitly set, we know there is
222 * no risk so we close both sides immediately.
223 */
Willy Tarreau8b3d7df2013-09-29 14:51:58 +0200224 if (!(si->flags & (SI_FL_ERR | SI_FL_NOLINGER)) &&
Willy Tarreauafc8a222014-11-28 15:46:27 +0100225 !(ic->flags & (CF_SHUTR|CF_DONT_READ)))
Willy Tarreau6fe15412013-09-29 15:16:03 +0200226 return;
Willy Tarreaufb90d942009-09-05 20:57:35 +0200227
228 /* fall through */
229 case SI_ST_CON:
230 case SI_ST_CER:
Willy Tarreau32d3ee92010-12-29 14:03:02 +0100231 case SI_ST_QUE:
232 case SI_ST_TAR:
Willy Tarreau8b3d7df2013-09-29 14:51:58 +0200233 /* Note that none of these states may happen with applets */
Willy Tarreaufb90d942009-09-05 20:57:35 +0200234 si->state = SI_ST_DIS;
Tim Duesterhus588b3142020-05-29 14:35:51 +0200235 /* fall through */
Willy Tarreaufb90d942009-09-05 20:57:35 +0200236 default:
Willy Tarreauabb5d422018-11-14 16:58:52 +0100237 si->flags &= ~SI_FL_NOLINGER;
238 si_rx_shut_blk(si);
Willy Tarreauafc8a222014-11-28 15:46:27 +0100239 ic->flags |= CF_SHUTR;
240 ic->rex = TICK_ETERNITY;
Willy Tarreaufb90d942009-09-05 20:57:35 +0200241 si->exp = TICK_ETERNITY;
242 }
243
Willy Tarreau4a36b562012-08-06 19:31:45 +0200244 /* note that if the task exists, it must unregister itself once it runs */
Willy Tarreau07373b82014-11-28 12:08:47 +0100245 if (!(si->flags & SI_FL_DONT_WAKE))
246 task_wakeup(si_task(si), TASK_WOKEN_IO);
Willy Tarreaufb90d942009-09-05 20:57:35 +0200247}
248
249/* default chk_rcv function for scheduled tasks */
Willy Tarreauf873d752012-05-11 17:47:17 +0200250static void stream_int_chk_rcv(struct stream_interface *si)
Willy Tarreaufb90d942009-09-05 20:57:35 +0200251{
Willy Tarreauafc8a222014-11-28 15:46:27 +0100252 struct channel *ic = si_ic(si);
Willy Tarreaufb90d942009-09-05 20:57:35 +0200253
Willy Tarreauafc8a222014-11-28 15:46:27 +0100254 DPRINTF(stderr, "%s: si=%p, si->state=%d ic->flags=%08x oc->flags=%08x\n",
Willy Tarreaufb90d942009-09-05 20:57:35 +0200255 __FUNCTION__,
Willy Tarreauafc8a222014-11-28 15:46:27 +0100256 si, si->state, ic->flags, si_oc(si)->flags);
Willy Tarreaufb90d942009-09-05 20:57:35 +0200257
Christopher Fauletb3e0de42018-10-11 13:54:13 +0200258 if (ic->pipe) {
Willy Tarreaufb90d942009-09-05 20:57:35 +0200259 /* stop reading */
Willy Tarreaudb398432018-11-15 11:08:52 +0100260 si_rx_room_blk(si);
Willy Tarreaufb90d942009-09-05 20:57:35 +0200261 }
262 else {
263 /* (re)start reading */
Willy Tarreau3c39a7d2019-06-14 14:42:29 +0200264 tasklet_wakeup(si->wait_event.tasklet);
Willy Tarreau07373b82014-11-28 12:08:47 +0100265 if (!(si->flags & SI_FL_DONT_WAKE))
266 task_wakeup(si_task(si), TASK_WOKEN_IO);
Willy Tarreaufb90d942009-09-05 20:57:35 +0200267 }
268}
269
270/* default chk_snd function for scheduled tasks */
Willy Tarreauf873d752012-05-11 17:47:17 +0200271static void stream_int_chk_snd(struct stream_interface *si)
Willy Tarreaufb90d942009-09-05 20:57:35 +0200272{
Willy Tarreauafc8a222014-11-28 15:46:27 +0100273 struct channel *oc = si_oc(si);
Willy Tarreaufb90d942009-09-05 20:57:35 +0200274
Willy Tarreauafc8a222014-11-28 15:46:27 +0100275 DPRINTF(stderr, "%s: si=%p, si->state=%d ic->flags=%08x oc->flags=%08x\n",
Willy Tarreaufb90d942009-09-05 20:57:35 +0200276 __FUNCTION__,
Willy Tarreauafc8a222014-11-28 15:46:27 +0100277 si, si->state, si_ic(si)->flags, oc->flags);
Willy Tarreaufb90d942009-09-05 20:57:35 +0200278
Willy Tarreauafc8a222014-11-28 15:46:27 +0100279 if (unlikely(si->state != SI_ST_EST || (oc->flags & CF_SHUTW)))
Willy Tarreaufb90d942009-09-05 20:57:35 +0200280 return;
281
282 if (!(si->flags & SI_FL_WAIT_DATA) || /* not waiting for data */
Willy Tarreauafc8a222014-11-28 15:46:27 +0100283 channel_is_empty(oc)) /* called with nothing to send ! */
Willy Tarreaufb90d942009-09-05 20:57:35 +0200284 return;
285
286 /* Otherwise there are remaining data to be sent in the buffer,
287 * so we tell the handler.
288 */
289 si->flags &= ~SI_FL_WAIT_DATA;
Willy Tarreauafc8a222014-11-28 15:46:27 +0100290 if (!tick_isset(oc->wex))
291 oc->wex = tick_add_ifset(now_ms, oc->wto);
Willy Tarreaufb90d942009-09-05 20:57:35 +0200292
Willy Tarreau07373b82014-11-28 12:08:47 +0100293 if (!(si->flags & SI_FL_DONT_WAKE))
294 task_wakeup(si_task(si), TASK_WOKEN_IO);
Willy Tarreaufb90d942009-09-05 20:57:35 +0200295}
296
Willy Tarreaua9ff5e62015-07-19 18:46:30 +0200297/* Register an applet to handle a stream_interface as a new appctx. The SI will
Thayne McCombs8f0cc5c2021-01-07 21:35:52 -0700298 * wake it up every time it is solicited. The appctx must be deleted by the task
Willy Tarreaua9ff5e62015-07-19 18:46:30 +0200299 * handler using si_release_endpoint(), possibly from within the function itself.
300 * It also pre-initializes the applet's context and returns it (or NULL in case
301 * it could not be allocated).
Willy Tarreaufb90d942009-09-05 20:57:35 +0200302 */
Willy Tarreau14bfe9a2018-12-19 15:19:27 +0100303struct appctx *si_register_handler(struct stream_interface *si, struct applet *app)
Willy Tarreaufb90d942009-09-05 20:57:35 +0200304{
Willy Tarreau0a23bcb2013-12-01 11:31:38 +0100305 struct appctx *appctx;
306
Willy Tarreau07373b82014-11-28 12:08:47 +0100307 DPRINTF(stderr, "registering handler %p for si %p (was %p)\n", app, si, si_task(si));
Willy Tarreaufb90d942009-09-05 20:57:35 +0200308
Willy Tarreaua7513f52015-04-05 00:15:26 +0200309 appctx = si_alloc_appctx(si, app);
Willy Tarreaua69fc9f2014-12-22 19:34:00 +0100310 if (!appctx)
Willy Tarreau0a23bcb2013-12-01 11:31:38 +0100311 return NULL;
312
Willy Tarreau0cd3bd62018-11-06 18:46:37 +0100313 si_cant_get(si);
Willy Tarreau828824a2015-04-19 17:20:03 +0200314 appctx_wakeup(appctx);
Willy Tarreau1fbe1c92013-12-01 09:35:41 +0100315 return si_appctx(si);
Willy Tarreaufb90d942009-09-05 20:57:35 +0200316}
317
Willy Tarreau2c6be842012-07-06 17:12:34 +0200318/* This callback is used to send a valid PROXY protocol line to a socket being
Willy Tarreauafad0e02012-08-09 14:45:22 +0200319 * established. It returns 0 if it fails in a fatal way or needs to poll to go
320 * further, otherwise it returns non-zero and removes itself from the connection's
Willy Tarreaua1a74742012-08-24 12:14:49 +0200321 * flags (the bit is provided in <flag> by the caller). It is designed to be
322 * called by the connection handler and relies on it to commit polling changes.
Willy Tarreau57cd3e42013-10-24 22:01:26 +0200323 * Note that it can emit a PROXY line by relying on the other end's address
324 * when the connection is attached to a stream interface, or by resolving the
325 * local address otherwise (also called a LOCAL line).
Willy Tarreau2c6be842012-07-06 17:12:34 +0200326 */
327int conn_si_send_proxy(struct connection *conn, unsigned int flag)
328{
Willy Tarreaud02cdd22013-12-15 10:23:20 +0100329 if (!conn_ctrl_ready(conn))
Willy Tarreauf79c8172013-10-21 16:30:56 +0200330 goto out_error;
331
Willy Tarreau2c6be842012-07-06 17:12:34 +0200332 /* If we have a PROXY line to send, we'll use this to validate the
333 * connection, in which case the connection is validated only once
334 * we've sent the whole proxy line. Otherwise we use connect().
335 */
Tim Duesterhus36839dc2019-02-26 17:09:51 +0100336 if (conn->send_proxy_ofs) {
Willy Tarreau6b1379f2018-11-18 21:38:19 +0100337 const struct conn_stream *cs;
Willy Tarreau2c6be842012-07-06 17:12:34 +0200338 int ret;
339
Christopher Fauletd82056c2020-05-26 16:08:49 +0200340 /* If there is no mux attached to the connection, it means the
341 * connection context is a conn-stream.
342 */
343 cs = (conn->mux ? cs_get_first(conn) : conn->ctx);
344
Willy Tarreau2c6be842012-07-06 17:12:34 +0200345 /* The target server expects a PROXY line to be sent first.
346 * If the send_proxy_ofs is negative, it corresponds to the
347 * offset to start sending from then end of the proxy string
348 * (which is recomputed every time since it's constant). If
349 * it is positive, it means we have to send from the start.
Willy Tarreau57cd3e42013-10-24 22:01:26 +0200350 * We can only send a "normal" PROXY line when the connection
351 * is attached to a stream interface. Otherwise we can only
352 * send a LOCAL line (eg: for use with health checks).
Willy Tarreau2c6be842012-07-06 17:12:34 +0200353 */
Willy Tarreau6b1379f2018-11-18 21:38:19 +0100354
355 if (cs && cs->data_cb == &si_conn_cb) {
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200356 struct stream_interface *si = cs->data;
Tim Duesterhuscf6e0c82020-03-13 12:34:24 +0100357 struct stream *strm = si_strm(si);
358
Willy Tarreau843b7cb2018-07-13 10:54:26 +0200359 ret = make_proxy_line(trash.area, trash.size,
360 objt_server(conn->target),
Christopher Faulet0256da12021-12-15 09:50:17 +0100361 cs_conn(objt_cs(si_opposite(si)->end)),
Tim Duesterhuscf6e0c82020-03-13 12:34:24 +0100362 strm);
Willy Tarreau57cd3e42013-10-24 22:01:26 +0200363 }
364 else {
365 /* The target server expects a LOCAL line to be sent first. Retrieving
366 * local or remote addresses may fail until the connection is established.
367 */
Willy Tarreau7bb447c2019-07-17 11:40:51 +0200368 if (!conn_get_src(conn) || !conn_get_dst(conn))
Willy Tarreau57cd3e42013-10-24 22:01:26 +0200369 goto out_wait;
370
Willy Tarreau843b7cb2018-07-13 10:54:26 +0200371 ret = make_proxy_line(trash.area, trash.size,
Tim Duesterhuscf6e0c82020-03-13 12:34:24 +0100372 objt_server(conn->target), conn,
373 NULL);
Willy Tarreau57cd3e42013-10-24 22:01:26 +0200374 }
Willy Tarreaub363a1f2013-10-01 10:45:07 +0200375
Willy Tarreau2c6be842012-07-06 17:12:34 +0200376 if (!ret)
377 goto out_error;
378
Willy Tarreaub8020ce2013-10-24 21:10:08 +0200379 if (conn->send_proxy_ofs > 0)
380 conn->send_proxy_ofs = -ret; /* first call */
Willy Tarreau2c6be842012-07-06 17:12:34 +0200381
Willy Tarreaua1a74742012-08-24 12:14:49 +0200382 /* we have to send trash from (ret+sp for -sp bytes). If the
383 * data layer has a pending write, we'll also set MSG_MORE.
384 */
Willy Tarreau827fee72020-12-11 15:26:55 +0100385 ret = conn_ctrl_send(conn,
Willy Tarreau843b7cb2018-07-13 10:54:26 +0200386 trash.area + ret + conn->send_proxy_ofs,
387 -conn->send_proxy_ofs,
Willy Tarreau827fee72020-12-11 15:26:55 +0100388 (conn->subs && conn->subs->events & SUB_RETRY_SEND) ? CO_SFL_MSG_MORE : 0);
Willy Tarreau2c6be842012-07-06 17:12:34 +0200389
Willy Tarreau0a03c0f2015-03-13 00:05:28 +0100390 if (ret < 0)
Willy Tarreau2c6be842012-07-06 17:12:34 +0200391 goto out_error;
Willy Tarreau2c6be842012-07-06 17:12:34 +0200392
Willy Tarreaub8020ce2013-10-24 21:10:08 +0200393 conn->send_proxy_ofs += ret; /* becomes zero once complete */
394 if (conn->send_proxy_ofs != 0)
Willy Tarreau2c6be842012-07-06 17:12:34 +0200395 goto out_wait;
396
397 /* OK we've sent the whole line, we're connected */
398 }
399
Willy Tarreaua1a74742012-08-24 12:14:49 +0200400 /* The connection is ready now, simply return and let the connection
401 * handler notify upper layers if needed.
Willy Tarreau2c6be842012-07-06 17:12:34 +0200402 */
Willy Tarreauc192b0a2020-01-23 09:11:58 +0100403 conn->flags &= ~CO_FL_WAIT_L4_CONN;
Willy Tarreau2c6be842012-07-06 17:12:34 +0200404 conn->flags &= ~flag;
Willy Tarreauafad0e02012-08-09 14:45:22 +0200405 return 1;
Willy Tarreau2c6be842012-07-06 17:12:34 +0200406
407 out_error:
Willy Tarreauafad0e02012-08-09 14:45:22 +0200408 /* Write error on the file descriptor */
Willy Tarreau2c6be842012-07-06 17:12:34 +0200409 conn->flags |= CO_FL_ERROR;
Willy Tarreauafad0e02012-08-09 14:45:22 +0200410 return 0;
Willy Tarreau2c6be842012-07-06 17:12:34 +0200411
412 out_wait:
Willy Tarreauafad0e02012-08-09 14:45:22 +0200413 return 0;
Willy Tarreau2c6be842012-07-06 17:12:34 +0200414}
415
Willy Tarreau27375622013-12-17 00:00:28 +0100416
Willy Tarreau14bfe9a2018-12-19 15:19:27 +0100417/* This function is the equivalent to si_update() except that it's
Willy Tarreau615f28b2015-09-23 18:40:09 +0200418 * designed to be called from outside the stream handlers, typically the lower
419 * layers (applets, connections) after I/O completion. After updating the stream
420 * interface and timeouts, it will try to forward what can be forwarded, then to
421 * wake the associated task up if an important event requires special handling.
Willy Tarreaud0f5bbc2018-11-14 11:10:26 +0100422 * It may update SI_FL_WAIT_DATA and/or SI_FL_RXBLK_ROOM, that the callers are
Willy Tarreau0dfccb22018-10-25 13:55:20 +0200423 * encouraged to watch to take appropriate action.
Willy Tarreau14bfe9a2018-12-19 15:19:27 +0100424 * It should not be called from within the stream itself, si_update()
Willy Tarreau615f28b2015-09-23 18:40:09 +0200425 * is designed for this.
426 */
Willy Tarreau14bfe9a2018-12-19 15:19:27 +0100427static void stream_int_notify(struct stream_interface *si)
Willy Tarreau615f28b2015-09-23 18:40:09 +0200428{
429 struct channel *ic = si_ic(si);
430 struct channel *oc = si_oc(si);
Willy Tarreau47baeb82018-11-15 07:46:57 +0100431 struct stream_interface *sio = si_opposite(si);
Christopher Fauletd7607de2019-01-03 16:24:54 +0100432 struct task *task = si_task(si);
Willy Tarreau615f28b2015-09-23 18:40:09 +0200433
434 /* process consumer side */
435 if (channel_is_empty(oc)) {
Christopher Faulet0256da12021-12-15 09:50:17 +0100436 struct connection *conn = cs_conn(objt_cs(si->end));
Olivier Houcharde9bed532017-11-16 17:49:25 +0100437
Willy Tarreau615f28b2015-09-23 18:40:09 +0200438 if (((oc->flags & (CF_SHUTW|CF_SHUTW_NOW)) == CF_SHUTW_NOW) &&
Willy Tarreau911db9b2020-01-23 16:27:54 +0100439 (si->state == SI_ST_EST) && (!conn || !(conn->flags & (CO_FL_WAIT_XPRT | CO_FL_EARLY_SSL_HS))))
Willy Tarreau615f28b2015-09-23 18:40:09 +0200440 si_shutw(si);
441 oc->wex = TICK_ETERNITY;
442 }
443
Willy Tarreau8cf9c8e2016-12-13 15:21:25 +0100444 /* indicate that we may be waiting for data from the output channel or
445 * we're about to close and can't expect more data if SHUTW_NOW is there.
446 */
Christopher Fauletb3e0de42018-10-11 13:54:13 +0200447 if (!(oc->flags & (CF_SHUTW|CF_SHUTW_NOW)))
Willy Tarreau615f28b2015-09-23 18:40:09 +0200448 si->flags |= SI_FL_WAIT_DATA;
Willy Tarreau8cf9c8e2016-12-13 15:21:25 +0100449 else if ((oc->flags & (CF_SHUTW|CF_SHUTW_NOW)) == CF_SHUTW_NOW)
450 si->flags &= ~SI_FL_WAIT_DATA;
Willy Tarreau615f28b2015-09-23 18:40:09 +0200451
452 /* update OC timeouts and wake the other side up if it's waiting for room */
453 if (oc->flags & CF_WRITE_ACTIVITY) {
454 if ((oc->flags & (CF_SHUTW|CF_WRITE_PARTIAL)) == CF_WRITE_PARTIAL &&
455 !channel_is_empty(oc))
456 if (tick_isset(oc->wex))
457 oc->wex = tick_add_ifset(now_ms, oc->wto);
458
459 if (!(si->flags & SI_FL_INDEP_STR))
460 if (tick_isset(ic->rex))
461 ic->rex = tick_add_ifset(now_ms, ic->rto);
Willy Tarreauf26c26c2018-11-12 16:11:08 +0100462 }
Willy Tarreau615f28b2015-09-23 18:40:09 +0200463
Willy Tarreaub26a6f92018-11-14 17:10:36 +0100464 if (oc->flags & CF_DONT_READ)
465 si_rx_chan_blk(sio);
466 else
467 si_rx_chan_rdy(sio);
Willy Tarreau615f28b2015-09-23 18:40:09 +0200468
469 /* Notify the other side when we've injected data into the IC that
470 * needs to be forwarded. We can do fast-forwarding as soon as there
471 * are output data, but we avoid doing this if some of the data are
472 * not yet scheduled for being forwarded, because it is very likely
473 * that it will be done again immediately afterwards once the following
Willy Tarreaud0f5bbc2018-11-14 11:10:26 +0100474 * data are parsed (eg: HTTP chunking). We only SI_FL_RXBLK_ROOM once
Willy Tarreau615f28b2015-09-23 18:40:09 +0200475 * we've emptied *some* of the output buffer, and not just when there
476 * is available room, because applets are often forced to stop before
477 * the buffer is full. We must not stop based on input data alone because
478 * an HTTP parser might need more data to complete the parsing.
479 */
480 if (!channel_is_empty(ic) &&
Willy Tarreau47baeb82018-11-15 07:46:57 +0100481 (sio->flags & SI_FL_WAIT_DATA) &&
Willy Tarreau89b6a2b2018-11-18 15:46:10 +0100482 (!(ic->flags & CF_EXPECT_MORE) || c_full(ic) || ci_data(ic) == 0 || ic->pipe)) {
Willy Tarreau615f28b2015-09-23 18:40:09 +0200483 int new_len, last_len;
484
Willy Tarreau77e478c2018-06-19 07:03:14 +0200485 last_len = co_data(ic);
Willy Tarreau615f28b2015-09-23 18:40:09 +0200486 if (ic->pipe)
487 last_len += ic->pipe->data;
488
Willy Tarreau47baeb82018-11-15 07:46:57 +0100489 si_chk_snd(sio);
Willy Tarreau615f28b2015-09-23 18:40:09 +0200490
Willy Tarreau77e478c2018-06-19 07:03:14 +0200491 new_len = co_data(ic);
Willy Tarreau615f28b2015-09-23 18:40:09 +0200492 if (ic->pipe)
493 new_len += ic->pipe->data;
494
495 /* check if the consumer has freed some space either in the
496 * buffer or in the pipe.
497 */
Willy Tarreau47baeb82018-11-15 07:46:57 +0100498 if (new_len < last_len)
Willy Tarreaudb398432018-11-15 11:08:52 +0100499 si_rx_room_rdy(si);
Willy Tarreau615f28b2015-09-23 18:40:09 +0200500 }
501
Willy Tarreaub26a6f92018-11-14 17:10:36 +0100502 if (!(ic->flags & CF_DONT_READ))
503 si_rx_chan_rdy(si);
504
Willy Tarreau47baeb82018-11-15 07:46:57 +0100505 si_chk_rcv(si);
506 si_chk_rcv(sio);
507
Willy Tarreaub26a6f92018-11-14 17:10:36 +0100508 if (si_rx_blocked(si)) {
Willy Tarreau615f28b2015-09-23 18:40:09 +0200509 ic->rex = TICK_ETERNITY;
510 }
Willy Tarreaub26a6f92018-11-14 17:10:36 +0100511 else if ((ic->flags & (CF_SHUTR|CF_READ_PARTIAL)) == CF_READ_PARTIAL) {
Willy Tarreau615f28b2015-09-23 18:40:09 +0200512 /* we must re-enable reading if si_chk_snd() has freed some space */
513 if (!(ic->flags & CF_READ_NOEXP) && tick_isset(ic->rex))
514 ic->rex = tick_add_ifset(now_ms, ic->rto);
515 }
516
517 /* wake the task up only when needed */
518 if (/* changes on the production side */
519 (ic->flags & (CF_READ_NULL|CF_READ_ERROR)) ||
Willy Tarreau4f283fa2019-06-05 14:34:03 +0200520 !si_state_in(si->state, SI_SB_CON|SI_SB_RDY|SI_SB_EST) ||
Willy Tarreau615f28b2015-09-23 18:40:09 +0200521 (si->flags & SI_FL_ERR) ||
522 ((ic->flags & CF_READ_PARTIAL) &&
Christopher Faulet297d3e22019-03-22 14:16:14 +0100523 ((ic->flags & CF_EOI) || !ic->to_forward || sio->state != SI_ST_EST)) ||
Willy Tarreau615f28b2015-09-23 18:40:09 +0200524
525 /* changes on the consumption side */
526 (oc->flags & (CF_WRITE_NULL|CF_WRITE_ERROR)) ||
Willy Tarreauede3d882018-10-24 17:17:56 +0200527 ((oc->flags & CF_WRITE_ACTIVITY) &&
Willy Tarreau615f28b2015-09-23 18:40:09 +0200528 ((oc->flags & CF_SHUTW) ||
Willy Tarreau78f5ff82018-12-19 11:00:00 +0100529 (((oc->flags & CF_WAKE_WRITE) ||
530 !(oc->flags & (CF_AUTO_CLOSE|CF_SHUTW_NOW|CF_SHUTW))) &&
Willy Tarreau47baeb82018-11-15 07:46:57 +0100531 (sio->state != SI_ST_EST ||
Willy Tarreau615f28b2015-09-23 18:40:09 +0200532 (channel_is_empty(oc) && !oc->to_forward)))))) {
Christopher Fauletd7607de2019-01-03 16:24:54 +0100533 task_wakeup(task, TASK_WOKEN_IO);
534 }
535 else {
536 /* Update expiration date for the task and requeue it */
537 task->expire = tick_first((tick_is_expired(task->expire, now_ms) ? 0 : task->expire),
538 tick_first(tick_first(ic->rex, ic->wex),
539 tick_first(oc->rex, oc->wex)));
Willy Tarreau45bcb372019-08-01 18:51:38 +0200540
541 task->expire = tick_first(task->expire, ic->analyse_exp);
542 task->expire = tick_first(task->expire, oc->analyse_exp);
543
544 if (si->exp)
545 task->expire = tick_first(task->expire, si->exp);
546
547 if (sio->exp)
548 task->expire = tick_first(task->expire, sio->exp);
549
Christopher Fauletd7607de2019-01-03 16:24:54 +0100550 task_queue(task);
Willy Tarreau615f28b2015-09-23 18:40:09 +0200551 }
552 if (ic->flags & CF_READ_ACTIVITY)
553 ic->flags &= ~CF_READ_DONTWAIT;
Willy Tarreau615f28b2015-09-23 18:40:09 +0200554}
555
556
Olivier Houchardc2aa7112018-09-11 18:27:21 +0200557/* Called by I/O handlers after completion.. It propagates
Willy Tarreau651e1822015-09-23 20:06:13 +0200558 * connection flags to the stream interface, updates the stream (which may or
559 * may not take this opportunity to try to forward data), then update the
560 * connection's polling based on the channels and stream interface's final
561 * states. The function always returns 0.
Willy Tarreau100c4672012-08-20 12:06:26 +0200562 */
Olivier Houchardc2aa7112018-09-11 18:27:21 +0200563static int si_cs_process(struct conn_stream *cs)
Willy Tarreaufd31e532012-07-23 18:24:25 +0200564{
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200565 struct connection *conn = cs->conn;
566 struct stream_interface *si = cs->data;
Willy Tarreauafc8a222014-11-28 15:46:27 +0100567 struct channel *ic = si_ic(si);
568 struct channel *oc = si_oc(si);
Willy Tarreaufd31e532012-07-23 18:24:25 +0200569
Olivier Houchardc7ffa912018-08-28 19:37:41 +0200570 /* If we have data to send, try it now */
Willy Tarreau4f6516d2018-12-19 13:59:17 +0100571 if (!channel_is_empty(oc) && !(si->wait_event.events & SUB_RETRY_SEND))
Willy Tarreau908d26f2018-10-25 14:02:47 +0200572 si_cs_send(cs);
573
Willy Tarreau651e1822015-09-23 20:06:13 +0200574 /* First step, report to the stream-int what was detected at the
575 * connection layer : errors and connection establishment.
Olivier Houchardc31e2cb2019-06-24 16:08:08 +0200576 * Only add SI_FL_ERR if we're connected, or we're attempting to
577 * connect, we may get there because we got woken up, but only run
578 * after process_stream() noticed there were an error, and decided
579 * to retry to connect, the connection may still have CO_FL_ERROR,
580 * and we don't want to add SI_FL_ERR back
Christopher Faulet36b536d2019-11-20 11:56:33 +0100581 *
582 * Note: This test is only required because si_cs_process is also the SI
583 * wake callback. Otherwise si_cs_recv()/si_cs_send() already take
584 * care of it.
Willy Tarreau651e1822015-09-23 20:06:13 +0200585 */
Olivier Houchardc31e2cb2019-06-24 16:08:08 +0200586 if (si->state >= SI_ST_CON &&
587 (conn->flags & CO_FL_ERROR || cs->flags & CS_FL_ERROR))
Willy Tarreau3c55ec22012-07-23 19:19:51 +0200588 si->flags |= SI_FL_ERR;
589
Olivier Houchardccaa7de2017-10-02 11:51:03 +0200590 /* If we had early data, and the handshake ended, then
591 * we can remove the flag, and attempt to wake the task up,
592 * in the event there's an analyser waiting for the end of
593 * the handshake.
594 */
Willy Tarreau911db9b2020-01-23 16:27:54 +0100595 if (!(conn->flags & (CO_FL_WAIT_XPRT | CO_FL_EARLY_SSL_HS)) &&
Olivier Houchard6fa63d92017-11-27 18:41:32 +0100596 (cs->flags & CS_FL_WAIT_FOR_HS)) {
597 cs->flags &= ~CS_FL_WAIT_FOR_HS;
Olivier Houchardccaa7de2017-10-02 11:51:03 +0200598 task_wakeup(si_task(si), TASK_WOKEN_MSG);
599 }
600
Willy Tarreau7ab22adb2019-06-05 14:53:22 +0200601 if (!si_state_in(si->state, SI_SB_EST|SI_SB_DIS|SI_SB_CLO) &&
Willy Tarreau911db9b2020-01-23 16:27:54 +0100602 (conn->flags & CO_FL_WAIT_XPRT) == 0) {
Willy Tarreau8f8c92f2012-07-23 19:45:44 +0200603 si->exp = TICK_ETERNITY;
Willy Tarreauafc8a222014-11-28 15:46:27 +0100604 oc->flags |= CF_WRITE_NULL;
Willy Tarreaub27f54a2019-06-05 16:43:44 +0200605 if (si->state == SI_ST_CON)
606 si->state = SI_ST_RDY;
Willy Tarreau8f8c92f2012-07-23 19:45:44 +0200607 }
608
Christopher Faulet89e34c22021-01-21 16:22:01 +0100609 /* Report EOS on the channel if it was reached from the mux point of
610 * view.
611 *
612 * Note: This test is only required because si_cs_process is also the SI
613 * wake callback. Otherwise si_cs_recv()/si_cs_send() already take
614 * care of it.
615 */
616 if (cs->flags & CS_FL_EOS && !(ic->flags & CF_SHUTR)) {
617 /* we received a shutdown */
618 ic->flags |= CF_READ_NULL;
619 if (ic->flags & CF_AUTO_CLOSE)
620 channel_shutw_now(ic);
621 stream_int_read0(si);
622 }
623
Christopher Faulet297d3e22019-03-22 14:16:14 +0100624 /* Report EOI on the channel if it was reached from the mux point of
Christopher Faulet36b536d2019-11-20 11:56:33 +0100625 * view.
626 *
627 * Note: This test is only required because si_cs_process is also the SI
628 * wake callback. Otherwise si_cs_recv()/si_cs_send() already take
629 * care of it.
630 */
Christopher Faulet297d3e22019-03-22 14:16:14 +0100631 if ((cs->flags & CS_FL_EOI) && !(ic->flags & CF_EOI))
Christopher Faulet8e9e3ef2019-05-17 09:14:10 +0200632 ic->flags |= (CF_EOI|CF_READ_PARTIAL);
Christopher Faulet203b2b02019-03-08 09:23:46 +0100633
Willy Tarreau651e1822015-09-23 20:06:13 +0200634 /* Second step : update the stream-int and channels, try to forward any
635 * pending data, then possibly wake the stream up based on the new
636 * stream-int status.
Willy Tarreau44b5dc62012-08-24 12:12:53 +0200637 */
Willy Tarreau651e1822015-09-23 20:06:13 +0200638 stream_int_notify(si);
Willy Tarreaua64c7032019-08-01 14:17:02 +0200639 stream_release_buffers(si_strm(si));
Willy Tarreau2396c1c2012-10-03 21:12:16 +0200640 return 0;
Willy Tarreaufd31e532012-07-23 18:24:25 +0200641}
Willy Tarreau2c6be842012-07-06 17:12:34 +0200642
Willy Tarreau5368d802012-08-21 18:22:06 +0200643/*
644 * This function is called to send buffer data to a stream socket.
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200645 * It calls the mux layer's snd_buf function. It relies on the
Godbach4f489902013-12-04 17:24:06 +0800646 * caller to commit polling changes. The caller should check conn->flags
647 * for errors.
Willy Tarreau5368d802012-08-21 18:22:06 +0200648 */
Olivier Houchard0e367bb2018-09-14 19:41:13 +0200649int si_cs_send(struct conn_stream *cs)
Willy Tarreau5368d802012-08-21 18:22:06 +0200650{
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200651 struct connection *conn = cs->conn;
652 struct stream_interface *si = cs->data;
Willy Tarreauafc8a222014-11-28 15:46:27 +0100653 struct channel *oc = si_oc(si);
Willy Tarreau5368d802012-08-21 18:22:06 +0200654 int ret;
Olivier Houchard910b2bc2018-07-17 18:49:38 +0200655 int did_send = 0;
656
Willy Tarreaubddf7fc2018-12-19 17:17:10 +0100657 if (conn->flags & CO_FL_ERROR || cs->flags & (CS_FL_ERROR|CS_FL_ERR_PENDING)) {
Olivier Houchardc31e2cb2019-06-24 16:08:08 +0200658 /* We're probably there because the tasklet was woken up,
659 * but process_stream() ran before, detected there were an
660 * error and put the si back to SI_ST_TAR. There's still
661 * CO_FL_ERROR on the connection but we don't want to add
662 * SI_FL_ERR back, so give up
663 */
664 if (si->state < SI_ST_CON)
665 return 0;
Willy Tarreaubddf7fc2018-12-19 17:17:10 +0100666 si->flags |= SI_FL_ERR;
Olivier Houchardc2aa7112018-09-11 18:27:21 +0200667 return 1;
Willy Tarreaubddf7fc2018-12-19 17:17:10 +0100668 }
Olivier Houchard910b2bc2018-07-17 18:49:38 +0200669
Christopher Faulet328ed222019-09-23 15:57:29 +0200670 /* We're already waiting to be able to send, give up */
671 if (si->wait_event.events & SUB_RETRY_SEND)
672 return 0;
673
Olivier Houchard910b2bc2018-07-17 18:49:38 +0200674 /* we might have been called just after an asynchronous shutw */
Willy Tarreauf22758d2020-01-23 18:25:23 +0100675 if (oc->flags & CF_SHUTW)
Olivier Houchardc2aa7112018-09-11 18:27:21 +0200676 return 1;
Willy Tarreau5368d802012-08-21 18:22:06 +0200677
Christopher Faulete96993b2020-07-30 09:26:46 +0200678 /* we must wait because the mux is not installed yet */
679 if (!conn->mux)
680 return 0;
681
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200682 if (oc->pipe && conn->xprt->snd_pipe && conn->mux->snd_pipe) {
683 ret = conn->mux->snd_pipe(cs, oc->pipe);
Christopher Faulet86162db2019-07-05 11:49:11 +0200684 if (ret > 0)
Olivier Houchard910b2bc2018-07-17 18:49:38 +0200685 did_send = 1;
Willy Tarreau5368d802012-08-21 18:22:06 +0200686
Willy Tarreauafc8a222014-11-28 15:46:27 +0100687 if (!oc->pipe->data) {
688 put_pipe(oc->pipe);
689 oc->pipe = NULL;
Willy Tarreau5368d802012-08-21 18:22:06 +0200690 }
691
Christopher Faulet3f76f4c2018-11-20 10:21:08 +0100692 if (oc->pipe)
693 goto end;
Willy Tarreau5368d802012-08-21 18:22:06 +0200694 }
695
696 /* At this point, the pipe is empty, but we may still have data pending
697 * in the normal buffer.
698 */
Christopher Faulet55dec0d2018-11-20 10:30:02 +0100699 if (co_data(oc)) {
700 /* when we're here, we already know that there is no spliced
701 * data left, and that there are sendable buffered data.
702 */
Willy Tarreau5368d802012-08-21 18:22:06 +0200703
Willy Tarreau5368d802012-08-21 18:22:06 +0200704 /* check if we want to inform the kernel that we're interested in
705 * sending more data after this call. We want this if :
706 * - we're about to close after this last send and want to merge
707 * the ongoing FIN with the last segment.
708 * - we know we can't send everything at once and must get back
709 * here because of unaligned data
710 * - there is still a finite amount of data to forward
711 * The test is arranged so that the most common case does only 2
712 * tests.
713 */
Willy Tarreau1049b1f2014-02-02 01:51:17 +0100714 unsigned int send_flag = 0;
Willy Tarreau5368d802012-08-21 18:22:06 +0200715
Willy Tarreauafc8a222014-11-28 15:46:27 +0100716 if ((!(oc->flags & (CF_NEVER_WAIT|CF_SEND_DONTWAIT)) &&
717 ((oc->to_forward && oc->to_forward != CHN_INFINITE_FORWARD) ||
Willy Tarreau8945bb62020-06-19 17:07:06 +0200718 (oc->flags & CF_EXPECT_MORE) ||
Christopher Faulet9e3dc832020-07-22 16:28:44 +0200719 (IS_HTX_STRM(si_strm(si)) &&
720 (!(oc->flags & (CF_EOI|CF_SHUTR)) && htx_expect_more(htxbuf(&oc->buf)))))) ||
Willy Tarreauecd2e152017-11-07 15:07:25 +0100721 ((oc->flags & CF_ISRESP) &&
722 ((oc->flags & (CF_AUTO_CLOSE|CF_SHUTW_NOW)) == (CF_AUTO_CLOSE|CF_SHUTW_NOW))))
Willy Tarreau1049b1f2014-02-02 01:51:17 +0100723 send_flag |= CO_SFL_MSG_MORE;
Willy Tarreau5368d802012-08-21 18:22:06 +0200724
Willy Tarreauafc8a222014-11-28 15:46:27 +0100725 if (oc->flags & CF_STREAMER)
Willy Tarreau7bed9452014-02-02 02:00:24 +0100726 send_flag |= CO_SFL_STREAMER;
727
Christopher Faulet9f5382e2021-05-21 13:46:14 +0200728 if ((si->flags & SI_FL_L7_RETRY) && !b_data(&si->l7_buffer)) {
729 struct stream *s = si_strm(si);
730 /* If we want to be able to do L7 retries, copy
731 * the data we're about to send, so that we are able
732 * to resend them if needed
733 */
734 /* Try to allocate a buffer if we had none.
735 * If it fails, the next test will just
736 * disable the l7 retries by setting
737 * l7_conn_retries to 0.
738 */
739 if (!s->txn || (s->txn->req.msg_state != HTTP_MSG_DONE))
740 si->flags &= ~SI_FL_L7_RETRY;
741 else {
Christopher Faulet0fe18642021-06-11 15:55:56 +0200742 if (b_alloc(&si->l7_buffer) == NULL)
Christopher Faulet9f5382e2021-05-21 13:46:14 +0200743 si->flags &= ~SI_FL_L7_RETRY;
744 else {
745 memcpy(b_orig(&si->l7_buffer),
746 b_orig(&oc->buf),
747 b_size(&oc->buf));
748 si->l7_buffer.head = co_data(oc);
749 b_add(&si->l7_buffer, co_data(oc));
750 }
751
752 }
753 }
754
Olivier Houcharded0f2072018-08-16 15:41:52 +0200755 ret = cs->conn->mux->snd_buf(cs, &oc->buf, co_data(oc), send_flag);
Godbache68e02d2013-10-11 15:48:29 +0800756 if (ret > 0) {
Olivier Houchard910b2bc2018-07-17 18:49:38 +0200757 did_send = 1;
Willy Tarreau77e478c2018-06-19 07:03:14 +0200758 co_set_data(oc, co_data(oc) - ret);
Willy Tarreaudeccd112018-06-14 18:38:55 +0200759 c_realign_if_empty(oc);
760
761 if (!co_data(oc)) {
Godbache68e02d2013-10-11 15:48:29 +0800762 /* Always clear both flags once everything has been sent, they're one-shot */
Willy Tarreauafc8a222014-11-28 15:46:27 +0100763 oc->flags &= ~(CF_EXPECT_MORE | CF_SEND_DONTWAIT);
Godbache68e02d2013-10-11 15:48:29 +0800764 }
Godbache68e02d2013-10-11 15:48:29 +0800765 /* if some data remain in the buffer, it's only because the
766 * system buffers are full, we will try next time.
767 */
Willy Tarreau5368d802012-08-21 18:22:06 +0200768 }
Godbache68e02d2013-10-11 15:48:29 +0800769 }
Christopher Faulet55dec0d2018-11-20 10:30:02 +0100770
Willy Tarreauf6975aa2018-11-15 14:33:05 +0100771 end:
Christopher Faulet86162db2019-07-05 11:49:11 +0200772 if (did_send) {
773 oc->flags |= CF_WRITE_PARTIAL | CF_WROTE_DATA;
774 if (si->state == SI_ST_CON)
775 si->state = SI_ST_RDY;
Christopher Faulet037b3eb2019-07-05 13:44:29 +0200776
777 si_rx_room_rdy(si_opposite(si));
Christopher Faulet86162db2019-07-05 11:49:11 +0200778 }
779
780 if (conn->flags & CO_FL_ERROR || cs->flags & (CS_FL_ERROR|CS_FL_ERR_PENDING)) {
781 si->flags |= SI_FL_ERR;
782 return 1;
783 }
784
Olivier Houchard910b2bc2018-07-17 18:49:38 +0200785 /* We couldn't send all of our data, let the mux know we'd like to send more */
Willy Tarreau691fe392018-11-12 18:48:52 +0100786 if (!channel_is_empty(oc))
Willy Tarreau4f6516d2018-12-19 13:59:17 +0100787 conn->mux->subscribe(cs, SUB_RETRY_SEND, &si->wait_event);
Olivier Houchardf6535282018-08-31 17:29:12 +0200788 return did_send;
Willy Tarreau5368d802012-08-21 18:22:06 +0200789}
790
Willy Tarreau8ccd2082018-11-07 07:47:52 +0100791/* This is the ->process() function for any stream-interface's wait_event task.
792 * It's assigned during the stream-interface's initialization, for any type of
793 * stream interface. Thus it is always safe to perform a tasklet_wakeup() on a
794 * stream interface, as the presence of the CS is checked there.
795 */
Willy Tarreau144f84a2021-03-02 16:09:26 +0100796struct task *si_cs_io_cb(struct task *t, void *ctx, unsigned int state)
Olivier Houchard91894cb2018-08-02 18:06:28 +0200797{
Olivier Houchard8f0b4c62018-08-02 18:21:38 +0200798 struct stream_interface *si = ctx;
Olivier Houcharda6ff0352018-08-21 15:59:43 +0200799 struct conn_stream *cs = objt_cs(si->end);
Olivier Houchardf6535282018-08-31 17:29:12 +0200800 int ret = 0;
Olivier Houcharda6ff0352018-08-21 15:59:43 +0200801
Christopher Faulet0256da12021-12-15 09:50:17 +0100802 if (!cs_conn(cs))
Willy Tarreau74163142021-03-13 11:30:19 +0100803 return t;
Willy Tarreau8ccd2082018-11-07 07:47:52 +0100804
Willy Tarreau4f6516d2018-12-19 13:59:17 +0100805 if (!(si->wait_event.events & SUB_RETRY_SEND) && !channel_is_empty(si_oc(si)))
Olivier Houchardf6535282018-08-31 17:29:12 +0200806 ret = si_cs_send(cs);
Willy Tarreau4f6516d2018-12-19 13:59:17 +0100807 if (!(si->wait_event.events & SUB_RETRY_RECV))
Olivier Houchardf6535282018-08-31 17:29:12 +0200808 ret |= si_cs_recv(cs);
809 if (ret != 0)
Olivier Houchardc2aa7112018-09-11 18:27:21 +0200810 si_cs_process(cs);
Olivier Houchardf6535282018-08-31 17:29:12 +0200811
Willy Tarreaua64c7032019-08-01 14:17:02 +0200812 stream_release_buffers(si_strm(si));
Willy Tarreau74163142021-03-13 11:30:19 +0100813 return t;
Olivier Houchard91894cb2018-08-02 18:06:28 +0200814}
815
Willy Tarreau25f13102015-09-24 11:32:22 +0200816/* This function is designed to be called from within the stream handler to
Willy Tarreau236c4292019-06-06 08:19:20 +0200817 * update the input channel's expiration timer and the stream interface's
818 * Rx flags based on the channel's flags. It needs to be called only once
819 * after the channel's flags have settled down, and before they are cleared,
820 * though it doesn't harm to call it as often as desired (it just slightly
821 * hurts performance). It must not be called from outside of the stream
822 * handler, as what it does will be used to compute the stream task's
823 * expiration.
Willy Tarreau25f13102015-09-24 11:32:22 +0200824 */
Willy Tarreau236c4292019-06-06 08:19:20 +0200825void si_update_rx(struct stream_interface *si)
Willy Tarreau25f13102015-09-24 11:32:22 +0200826{
827 struct channel *ic = si_ic(si);
Willy Tarreau25f13102015-09-24 11:32:22 +0200828
Willy Tarreau236c4292019-06-06 08:19:20 +0200829 if (ic->flags & CF_SHUTR) {
830 si_rx_shut_blk(si);
831 return;
832 }
Willy Tarreaub26a6f92018-11-14 17:10:36 +0100833
Willy Tarreau236c4292019-06-06 08:19:20 +0200834 /* Read not closed, update FD status and timeout for reads */
835 if (ic->flags & CF_DONT_READ)
836 si_rx_chan_blk(si);
837 else
838 si_rx_chan_rdy(si);
Willy Tarreaub26a6f92018-11-14 17:10:36 +0100839
Christopher Faulet69fad002021-10-29 14:55:59 +0200840 if (!channel_is_empty(ic) || !channel_may_recv(ic)) {
Willy Tarreau236c4292019-06-06 08:19:20 +0200841 /* stop reading, imposed by channel's policy or contents */
842 si_rx_room_blk(si);
Willy Tarreau25f13102015-09-24 11:32:22 +0200843 }
Willy Tarreau236c4292019-06-06 08:19:20 +0200844 else {
845 /* (re)start reading and update timeout. Note: we don't recompute the timeout
Thayne McCombs8f0cc5c2021-01-07 21:35:52 -0700846 * every time we get here, otherwise it would risk never to expire. We only
Willy Tarreau236c4292019-06-06 08:19:20 +0200847 * update it if is was not yet set. The stream socket handler will already
848 * have updated it if there has been a completed I/O.
849 */
850 si_rx_room_rdy(si);
851 }
852 if (si->flags & SI_FL_RXBLK_ANY & ~SI_FL_RX_WAIT_EP)
853 ic->rex = TICK_ETERNITY;
854 else if (!(ic->flags & CF_READ_NOEXP) && !tick_isset(ic->rex))
855 ic->rex = tick_add_ifset(now_ms, ic->rto);
Willy Tarreau25f13102015-09-24 11:32:22 +0200856
Willy Tarreau236c4292019-06-06 08:19:20 +0200857 si_chk_rcv(si);
858}
859
860/* This function is designed to be called from within the stream handler to
861 * update the output channel's expiration timer and the stream interface's
862 * Tx flags based on the channel's flags. It needs to be called only once
863 * after the channel's flags have settled down, and before they are cleared,
864 * though it doesn't harm to call it as often as desired (it just slightly
865 * hurts performance). It must not be called from outside of the stream
866 * handler, as what it does will be used to compute the stream task's
867 * expiration.
868 */
869void si_update_tx(struct stream_interface *si)
870{
871 struct channel *oc = si_oc(si);
872 struct channel *ic = si_ic(si);
873
874 if (oc->flags & CF_SHUTW)
875 return;
876
877 /* Write not closed, update FD status and timeout for writes */
878 if (channel_is_empty(oc)) {
879 /* stop writing */
880 if (!(si->flags & SI_FL_WAIT_DATA)) {
881 if ((oc->flags & CF_SHUTW_NOW) == 0)
882 si->flags |= SI_FL_WAIT_DATA;
883 oc->wex = TICK_ETERNITY;
Willy Tarreau25f13102015-09-24 11:32:22 +0200884 }
Willy Tarreau236c4292019-06-06 08:19:20 +0200885 return;
886 }
887
888 /* (re)start writing and update timeout. Note: we don't recompute the timeout
Thayne McCombs8f0cc5c2021-01-07 21:35:52 -0700889 * every time we get here, otherwise it would risk never to expire. We only
Willy Tarreau236c4292019-06-06 08:19:20 +0200890 * update it if is was not yet set. The stream socket handler will already
891 * have updated it if there has been a completed I/O.
892 */
893 si->flags &= ~SI_FL_WAIT_DATA;
894 if (!tick_isset(oc->wex)) {
895 oc->wex = tick_add_ifset(now_ms, oc->wto);
896 if (tick_isset(ic->rex) && !(si->flags & SI_FL_INDEP_STR)) {
897 /* Note: depending on the protocol, we don't know if we're waiting
898 * for incoming data or not. So in order to prevent the socket from
899 * expiring read timeouts during writes, we refresh the read timeout,
900 * except if it was already infinite or if we have explicitly setup
901 * independent streams.
Willy Tarreau25f13102015-09-24 11:32:22 +0200902 */
Willy Tarreau236c4292019-06-06 08:19:20 +0200903 ic->rex = tick_add_ifset(now_ms, ic->rto);
Willy Tarreau25f13102015-09-24 11:32:22 +0200904 }
905 }
906}
907
Willy Tarreau3b285d72019-06-06 08:20:17 +0200908/* perform a synchronous send() for the stream interface. The CF_WRITE_NULL and
909 * CF_WRITE_PARTIAL flags are cleared prior to the attempt, and will possibly
910 * be updated in case of success.
911 */
912void si_sync_send(struct stream_interface *si)
913{
914 struct channel *oc = si_oc(si);
915 struct conn_stream *cs;
916
917 oc->flags &= ~(CF_WRITE_NULL|CF_WRITE_PARTIAL);
918
919 if (oc->flags & CF_SHUTW)
920 return;
921
922 if (channel_is_empty(oc))
923 return;
924
925 if (!si_state_in(si->state, SI_SB_CON|SI_SB_RDY|SI_SB_EST))
926 return;
927
928 cs = objt_cs(si->end);
Christopher Faulet0256da12021-12-15 09:50:17 +0100929 if (!cs_conn(cs) || !cs->conn->mux)
Willy Tarreau3b285d72019-06-06 08:20:17 +0200930 return;
931
Christopher Faulet037b3eb2019-07-05 13:44:29 +0200932 si_cs_send(cs);
Willy Tarreau3b285d72019-06-06 08:20:17 +0200933}
934
Willy Tarreaud14844a2018-11-08 18:15:29 +0100935/* Updates at once the channel flags, and timers of both stream interfaces of a
936 * same stream, to complete the work after the analysers, then updates the data
937 * layer below. This will ensure that any synchronous update performed at the
938 * data layer will be reflected in the channel flags and/or stream-interface.
Willy Tarreau829bd472019-06-06 09:17:23 +0200939 * Note that this does not change the stream interface's current state, though
940 * it updates the previous state to the current one.
Willy Tarreaud14844a2018-11-08 18:15:29 +0100941 */
942void si_update_both(struct stream_interface *si_f, struct stream_interface *si_b)
943{
944 struct channel *req = si_ic(si_f);
945 struct channel *res = si_oc(si_f);
Willy Tarreaud14844a2018-11-08 18:15:29 +0100946
947 req->flags &= ~(CF_READ_NULL|CF_READ_PARTIAL|CF_READ_ATTACHED|CF_WRITE_NULL|CF_WRITE_PARTIAL);
948 res->flags &= ~(CF_READ_NULL|CF_READ_PARTIAL|CF_READ_ATTACHED|CF_WRITE_NULL|CF_WRITE_PARTIAL);
949
Willy Tarreaud14844a2018-11-08 18:15:29 +0100950 si_f->prev_state = si_f->state;
951 si_b->prev_state = si_b->state;
952
Willy Tarreaubf89ff32018-11-09 14:59:25 +0100953 /* let's recompute both sides states */
Willy Tarreau4f283fa2019-06-05 14:34:03 +0200954 if (si_state_in(si_f->state, SI_SB_RDY|SI_SB_EST))
Willy Tarreau14bfe9a2018-12-19 15:19:27 +0100955 si_update(si_f);
Willy Tarreaubf89ff32018-11-09 14:59:25 +0100956
Willy Tarreau4f283fa2019-06-05 14:34:03 +0200957 if (si_state_in(si_b->state, SI_SB_RDY|SI_SB_EST))
Willy Tarreau14bfe9a2018-12-19 15:19:27 +0100958 si_update(si_b);
Willy Tarreaubf89ff32018-11-09 14:59:25 +0100959
960 /* stream ints are processed outside of process_stream() and must be
961 * handled at the latest moment.
962 */
963 if (obj_type(si_f->end) == OBJ_TYPE_APPCTX &&
Willy Tarreau32742fd2018-11-14 14:07:59 +0100964 ((si_rx_endp_ready(si_f) && !si_rx_blocked(si_f)) ||
965 (si_tx_endp_ready(si_f) && !si_tx_blocked(si_f))))
Willy Tarreaubf89ff32018-11-09 14:59:25 +0100966 appctx_wakeup(si_appctx(si_f));
Willy Tarreaud14844a2018-11-08 18:15:29 +0100967
Willy Tarreaubf89ff32018-11-09 14:59:25 +0100968 if (obj_type(si_b->end) == OBJ_TYPE_APPCTX &&
Willy Tarreau32742fd2018-11-14 14:07:59 +0100969 ((si_rx_endp_ready(si_b) && !si_rx_blocked(si_b)) ||
970 (si_tx_endp_ready(si_b) && !si_tx_blocked(si_b))))
Willy Tarreaubf89ff32018-11-09 14:59:25 +0100971 appctx_wakeup(si_appctx(si_b));
Willy Tarreaud14844a2018-11-08 18:15:29 +0100972}
973
Willy Tarreau8b3d7df2013-09-29 14:51:58 +0200974/*
975 * This function performs a shutdown-read on a stream interface attached to
976 * a connection in a connected or init state (it does nothing for other
977 * states). It either shuts the read side or marks itself as closed. The buffer
978 * flags are updated to reflect the new state. If the stream interface has
979 * SI_FL_NOHALF, we also forward the close to the write side. If a control
980 * layer is defined, then it is supposed to be a socket layer and file
Willy Tarreau6fe15412013-09-29 15:16:03 +0200981 * descriptors are then shutdown or closed accordingly. The function
982 * automatically disables polling if needed.
Willy Tarreau8b3d7df2013-09-29 14:51:58 +0200983 */
Willy Tarreau6fe15412013-09-29 15:16:03 +0200984static void stream_int_shutr_conn(struct stream_interface *si)
Willy Tarreau8b3d7df2013-09-29 14:51:58 +0200985{
Olivier Houchard9aaf7782017-09-13 18:30:23 +0200986 struct conn_stream *cs = __objt_cs(si->end);
Willy Tarreauafc8a222014-11-28 15:46:27 +0100987 struct channel *ic = si_ic(si);
Willy Tarreau8b3d7df2013-09-29 14:51:58 +0200988
Willy Tarreauabb5d422018-11-14 16:58:52 +0100989 si_rx_shut_blk(si);
Willy Tarreauafc8a222014-11-28 15:46:27 +0100990 if (ic->flags & CF_SHUTR)
Willy Tarreau6fe15412013-09-29 15:16:03 +0200991 return;
Willy Tarreauafc8a222014-11-28 15:46:27 +0100992 ic->flags |= CF_SHUTR;
993 ic->rex = TICK_ETERNITY;
Willy Tarreau8b3d7df2013-09-29 14:51:58 +0200994
Willy Tarreau4f283fa2019-06-05 14:34:03 +0200995 if (!si_state_in(si->state, SI_SB_CON|SI_SB_RDY|SI_SB_EST))
Willy Tarreau6fe15412013-09-29 15:16:03 +0200996 return;
Willy Tarreau8b3d7df2013-09-29 14:51:58 +0200997
Willy Tarreau51d0a7e2019-01-31 19:09:59 +0100998 if (si->flags & SI_FL_KILL_CONN)
999 cs->flags |= CS_FL_KILL_CONN;
1000
Willy Tarreau2bb4a962014-11-28 11:11:05 +01001001 if (si_oc(si)->flags & CF_SHUTW) {
Willy Tarreaua553ae92017-10-05 18:52:17 +02001002 cs_close(cs);
Willy Tarreau8b3d7df2013-09-29 14:51:58 +02001003 si->state = SI_ST_DIS;
1004 si->exp = TICK_ETERNITY;
Willy Tarreau8b3d7df2013-09-29 14:51:58 +02001005 }
1006 else if (si->flags & SI_FL_NOHALF) {
1007 /* we want to immediately forward this close to the write side */
1008 return stream_int_shutw_conn(si);
1009 }
Willy Tarreau8b3d7df2013-09-29 14:51:58 +02001010}
1011
1012/*
1013 * This function performs a shutdown-write on a stream interface attached to
1014 * a connection in a connected or init state (it does nothing for other
1015 * states). It either shuts the write side or marks itself as closed. The
1016 * buffer flags are updated to reflect the new state. It does also close
1017 * everything if the SI was marked as being in error state. If there is a
Willy Tarreau1398aa12015-03-12 23:04:07 +01001018 * data-layer shutdown, it is called.
Willy Tarreau8b3d7df2013-09-29 14:51:58 +02001019 */
Willy Tarreau6fe15412013-09-29 15:16:03 +02001020static void stream_int_shutw_conn(struct stream_interface *si)
Willy Tarreau8b3d7df2013-09-29 14:51:58 +02001021{
Olivier Houchard9aaf7782017-09-13 18:30:23 +02001022 struct conn_stream *cs = __objt_cs(si->end);
Willy Tarreauafc8a222014-11-28 15:46:27 +01001023 struct channel *ic = si_ic(si);
1024 struct channel *oc = si_oc(si);
Willy Tarreau8b3d7df2013-09-29 14:51:58 +02001025
Willy Tarreauafc8a222014-11-28 15:46:27 +01001026 oc->flags &= ~CF_SHUTW_NOW;
1027 if (oc->flags & CF_SHUTW)
Willy Tarreau6fe15412013-09-29 15:16:03 +02001028 return;
Willy Tarreauafc8a222014-11-28 15:46:27 +01001029 oc->flags |= CF_SHUTW;
1030 oc->wex = TICK_ETERNITY;
Willy Tarreau43e69dc2018-11-06 19:23:03 +01001031 si_done_get(si);
Willy Tarreau8b3d7df2013-09-29 14:51:58 +02001032
Hongbo Longe39683c2017-03-10 18:41:51 +01001033 if (tick_isset(si->hcto)) {
1034 ic->rto = si->hcto;
1035 ic->rex = tick_add(now_ms, ic->rto);
1036 }
1037
Willy Tarreau8b3d7df2013-09-29 14:51:58 +02001038 switch (si->state) {
Willy Tarreau4f283fa2019-06-05 14:34:03 +02001039 case SI_ST_RDY:
Willy Tarreau8b3d7df2013-09-29 14:51:58 +02001040 case SI_ST_EST:
1041 /* we have to shut before closing, otherwise some short messages
1042 * may never leave the system, especially when there are remaining
1043 * unread data in the socket input buffer, or when nolinger is set.
1044 * However, if SI_FL_NOLINGER is explicitly set, we know there is
1045 * no risk so we close both sides immediately.
1046 */
Willy Tarreau51d0a7e2019-01-31 19:09:59 +01001047 if (si->flags & SI_FL_KILL_CONN)
1048 cs->flags |= CS_FL_KILL_CONN;
1049
Willy Tarreau8b3d7df2013-09-29 14:51:58 +02001050 if (si->flags & SI_FL_ERR) {
Ilya Shipitsin6fb0f212020-04-02 15:25:26 +05001051 /* quick close, the socket is already shut anyway */
Willy Tarreau8b3d7df2013-09-29 14:51:58 +02001052 }
1053 else if (si->flags & SI_FL_NOLINGER) {
Olivier Houchard9aaf7782017-09-13 18:30:23 +02001054 /* unclean data-layer shutdown, typically an aborted request
1055 * or a forwarded shutdown from a client to a server due to
1056 * option abortonclose. No need for the TLS layer to try to
1057 * emit a shutdown message.
1058 */
Willy Tarreauecdb3fe2017-10-05 15:25:48 +02001059 cs_shutw(cs, CS_SHW_SILENT);
Willy Tarreau8b3d7df2013-09-29 14:51:58 +02001060 }
1061 else {
Olivier Houchard9aaf7782017-09-13 18:30:23 +02001062 /* clean data-layer shutdown. This only happens on the
1063 * frontend side, or on the backend side when forwarding
1064 * a client close in TCP mode or in HTTP TUNNEL mode
1065 * while option abortonclose is set. We want the TLS
1066 * layer to try to signal it to the peer before we close.
1067 */
Willy Tarreauecdb3fe2017-10-05 15:25:48 +02001068 cs_shutw(cs, CS_SHW_NORMAL);
Willy Tarreau8b3d7df2013-09-29 14:51:58 +02001069
Willy Tarreaua5ea7512020-12-11 10:24:05 +01001070 if (!(ic->flags & (CF_SHUTR|CF_DONT_READ)))
Willy Tarreaua553ae92017-10-05 18:52:17 +02001071 return;
Willy Tarreau8b3d7df2013-09-29 14:51:58 +02001072 }
1073
1074 /* fall through */
1075 case SI_ST_CON:
1076 /* we may have to close a pending connection, and mark the
1077 * response buffer as shutr
1078 */
Willy Tarreau51d0a7e2019-01-31 19:09:59 +01001079 if (si->flags & SI_FL_KILL_CONN)
1080 cs->flags |= CS_FL_KILL_CONN;
Willy Tarreaua553ae92017-10-05 18:52:17 +02001081 cs_close(cs);
Willy Tarreau8b3d7df2013-09-29 14:51:58 +02001082 /* fall through */
1083 case SI_ST_CER:
1084 case SI_ST_QUE:
1085 case SI_ST_TAR:
1086 si->state = SI_ST_DIS;
Willy Tarreau4a59f2f2013-10-24 20:10:45 +02001087 /* fall through */
Willy Tarreau8b3d7df2013-09-29 14:51:58 +02001088 default:
Willy Tarreauabb5d422018-11-14 16:58:52 +01001089 si->flags &= ~SI_FL_NOLINGER;
1090 si_rx_shut_blk(si);
Willy Tarreauafc8a222014-11-28 15:46:27 +01001091 ic->flags |= CF_SHUTR;
1092 ic->rex = TICK_ETERNITY;
Willy Tarreau8b3d7df2013-09-29 14:51:58 +02001093 si->exp = TICK_ETERNITY;
Willy Tarreau100c4672012-08-20 12:06:26 +02001094 }
1095}
1096
Willy Tarreau46a8d922012-08-20 12:38:36 +02001097/* This function is used for inter-stream-interface calls. It is called by the
1098 * consumer to inform the producer side that it may be interested in checking
1099 * for free space in the buffer. Note that it intentionally does not update
1100 * timeouts, so that we can still check them later at wake-up. This function is
1101 * dedicated to connection-based stream interfaces.
1102 */
Willy Tarreauc5788912012-08-24 18:12:41 +02001103static void stream_int_chk_rcv_conn(struct stream_interface *si)
Willy Tarreau46a8d922012-08-20 12:38:36 +02001104{
Christopher Fauletb3e0de42018-10-11 13:54:13 +02001105 /* (re)start reading */
Willy Tarreau4f283fa2019-06-05 14:34:03 +02001106 if (si_state_in(si->state, SI_SB_CON|SI_SB_RDY|SI_SB_EST))
Willy Tarreau3c39a7d2019-06-14 14:42:29 +02001107 tasklet_wakeup(si->wait_event.tasklet);
Willy Tarreau46a8d922012-08-20 12:38:36 +02001108}
1109
1110
Willy Tarreaude5722c2012-08-20 15:01:10 +02001111/* This function is used for inter-stream-interface calls. It is called by the
1112 * producer to inform the consumer side that it may be interested in checking
1113 * for data in the buffer. Note that it intentionally does not update timeouts,
1114 * so that we can still check them later at wake-up.
1115 */
Willy Tarreauc5788912012-08-24 18:12:41 +02001116static void stream_int_chk_snd_conn(struct stream_interface *si)
Willy Tarreaude5722c2012-08-20 15:01:10 +02001117{
Willy Tarreauafc8a222014-11-28 15:46:27 +01001118 struct channel *oc = si_oc(si);
Olivier Houchard9aaf7782017-09-13 18:30:23 +02001119 struct conn_stream *cs = __objt_cs(si->end);
Willy Tarreaude5722c2012-08-20 15:01:10 +02001120
Willy Tarreau4f283fa2019-06-05 14:34:03 +02001121 if (unlikely(!si_state_in(si->state, SI_SB_CON|SI_SB_RDY|SI_SB_EST) ||
Olivier Houchardb2fc04e2019-04-11 13:56:26 +02001122 (oc->flags & CF_SHUTW)))
Willy Tarreaude5722c2012-08-20 15:01:10 +02001123 return;
Willy Tarreaude5722c2012-08-20 15:01:10 +02001124
Willy Tarreauafc8a222014-11-28 15:46:27 +01001125 if (unlikely(channel_is_empty(oc))) /* called with nothing to send ! */
Willy Tarreaude5722c2012-08-20 15:01:10 +02001126 return;
1127
Willy Tarreauafc8a222014-11-28 15:46:27 +01001128 if (!oc->pipe && /* spliced data wants to be forwarded ASAP */
Willy Tarreaub0165872012-12-15 10:12:39 +01001129 !(si->flags & SI_FL_WAIT_DATA)) /* not waiting for data */
Willy Tarreaude5722c2012-08-20 15:01:10 +02001130 return;
1131
Willy Tarreau4f6516d2018-12-19 13:59:17 +01001132 if (!(si->wait_event.events & SUB_RETRY_SEND) && !channel_is_empty(si_oc(si)))
Olivier Houchard31f04e42018-10-22 16:01:09 +02001133 si_cs_send(cs);
Willy Tarreau33a09a52018-10-25 13:49:49 +02001134
Willy Tarreaubddf7fc2018-12-19 17:17:10 +01001135 if (cs->flags & (CS_FL_ERROR|CS_FL_ERR_PENDING) || cs->conn->flags & CO_FL_ERROR) {
Willy Tarreau3b9c8502017-10-25 14:22:28 +02001136 /* Write error on the file descriptor */
Olivier Houchardc31e2cb2019-06-24 16:08:08 +02001137 if (si->state >= SI_ST_CON)
1138 si->flags |= SI_FL_ERR;
Willy Tarreau3b9c8502017-10-25 14:22:28 +02001139 goto out_wakeup;
Willy Tarreaude5722c2012-08-20 15:01:10 +02001140 }
1141
1142 /* OK, so now we know that some data might have been sent, and that we may
1143 * have to poll first. We have to do that too if the buffer is not empty.
1144 */
Willy Tarreauafc8a222014-11-28 15:46:27 +01001145 if (channel_is_empty(oc)) {
Willy Tarreaude5722c2012-08-20 15:01:10 +02001146 /* the connection is established but we can't write. Either the
1147 * buffer is empty, or we just refrain from sending because the
1148 * ->o limit was reached. Maybe we just wrote the last
1149 * chunk and need to close.
1150 */
Willy Tarreauafc8a222014-11-28 15:46:27 +01001151 if (((oc->flags & (CF_SHUTW|CF_AUTO_CLOSE|CF_SHUTW_NOW)) ==
Willy Tarreau03cdb7c2012-08-27 23:14:58 +02001152 (CF_AUTO_CLOSE|CF_SHUTW_NOW)) &&
Willy Tarreau4f283fa2019-06-05 14:34:03 +02001153 si_state_in(si->state, SI_SB_RDY|SI_SB_EST)) {
Willy Tarreaude5722c2012-08-20 15:01:10 +02001154 si_shutw(si);
1155 goto out_wakeup;
1156 }
1157
Willy Tarreauafc8a222014-11-28 15:46:27 +01001158 if ((oc->flags & (CF_SHUTW|CF_SHUTW_NOW)) == 0)
Willy Tarreaude5722c2012-08-20 15:01:10 +02001159 si->flags |= SI_FL_WAIT_DATA;
Willy Tarreauafc8a222014-11-28 15:46:27 +01001160 oc->wex = TICK_ETERNITY;
Willy Tarreaude5722c2012-08-20 15:01:10 +02001161 }
1162 else {
1163 /* Otherwise there are remaining data to be sent in the buffer,
1164 * which means we have to poll before doing so.
1165 */
Willy Tarreaude5722c2012-08-20 15:01:10 +02001166 si->flags &= ~SI_FL_WAIT_DATA;
Willy Tarreauafc8a222014-11-28 15:46:27 +01001167 if (!tick_isset(oc->wex))
1168 oc->wex = tick_add_ifset(now_ms, oc->wto);
Willy Tarreaude5722c2012-08-20 15:01:10 +02001169 }
1170
Willy Tarreauafc8a222014-11-28 15:46:27 +01001171 if (likely(oc->flags & CF_WRITE_ACTIVITY)) {
1172 struct channel *ic = si_ic(si);
1173
Willy Tarreaude5722c2012-08-20 15:01:10 +02001174 /* update timeout if we have written something */
Willy Tarreauafc8a222014-11-28 15:46:27 +01001175 if ((oc->flags & (CF_SHUTW|CF_WRITE_PARTIAL)) == CF_WRITE_PARTIAL &&
1176 !channel_is_empty(oc))
1177 oc->wex = tick_add_ifset(now_ms, oc->wto);
Willy Tarreaude5722c2012-08-20 15:01:10 +02001178
Willy Tarreauafc8a222014-11-28 15:46:27 +01001179 if (tick_isset(ic->rex) && !(si->flags & SI_FL_INDEP_STR)) {
Willy Tarreaude5722c2012-08-20 15:01:10 +02001180 /* Note: to prevent the client from expiring read timeouts
1181 * during writes, we refresh it. We only do this if the
1182 * interface is not configured for "independent streams",
1183 * because for some applications it's better not to do this,
1184 * for instance when continuously exchanging small amounts
1185 * of data which can full the socket buffers long before a
1186 * write timeout is detected.
1187 */
Willy Tarreauafc8a222014-11-28 15:46:27 +01001188 ic->rex = tick_add_ifset(now_ms, ic->rto);
Willy Tarreaude5722c2012-08-20 15:01:10 +02001189 }
1190 }
1191
1192 /* in case of special condition (error, shutdown, end of write...), we
1193 * have to notify the task.
1194 */
Willy Tarreauafc8a222014-11-28 15:46:27 +01001195 if (likely((oc->flags & (CF_WRITE_NULL|CF_WRITE_ERROR|CF_SHUTW)) ||
1196 ((oc->flags & CF_WAKE_WRITE) &&
1197 ((channel_is_empty(oc) && !oc->to_forward) ||
Willy Tarreau7ab22adb2019-06-05 14:53:22 +02001198 !si_state_in(si->state, SI_SB_EST))))) {
Willy Tarreaude5722c2012-08-20 15:01:10 +02001199 out_wakeup:
Willy Tarreau07373b82014-11-28 12:08:47 +01001200 if (!(si->flags & SI_FL_DONT_WAKE))
1201 task_wakeup(si_task(si), TASK_WOKEN_IO);
Willy Tarreaude5722c2012-08-20 15:01:10 +02001202 }
1203}
1204
Willy Tarreaueecf6ca2012-08-20 15:09:53 +02001205/*
Willy Tarreauce323de2012-08-20 21:41:06 +02001206 * This is the callback which is called by the connection layer to receive data
Olivier Houchard9aaf7782017-09-13 18:30:23 +02001207 * into the buffer from the connection. It iterates over the mux layer's
Willy Tarreauf7bc57c2012-10-03 00:19:48 +02001208 * rcv_buf function.
Willy Tarreauce323de2012-08-20 21:41:06 +02001209 */
Olivier Houchard0e367bb2018-09-14 19:41:13 +02001210int si_cs_recv(struct conn_stream *cs)
Willy Tarreauce323de2012-08-20 21:41:06 +02001211{
Olivier Houchard9aaf7782017-09-13 18:30:23 +02001212 struct connection *conn = cs->conn;
1213 struct stream_interface *si = cs->data;
Willy Tarreauafc8a222014-11-28 15:46:27 +01001214 struct channel *ic = si_ic(si);
Olivier Houchardf6535282018-08-31 17:29:12 +02001215 int ret, max, cur_read = 0;
Willy Tarreauce323de2012-08-20 21:41:06 +02001216 int read_poll = MAX_READ_POLL_LOOPS;
Christopher Fauletc6618d62018-10-11 15:56:04 +02001217 int flags = 0;
Willy Tarreauce323de2012-08-20 21:41:06 +02001218
Christopher Faulet04400bc2019-10-25 10:21:01 +02001219 /* If not established yet, do nothing. */
1220 if (si->state != SI_ST_EST)
1221 return 0;
1222
Olivier Houchardf6535282018-08-31 17:29:12 +02001223 /* If another call to si_cs_recv() failed, and we subscribed to
1224 * recv events already, give up now.
1225 */
Willy Tarreau4f6516d2018-12-19 13:59:17 +01001226 if (si->wait_event.events & SUB_RETRY_RECV)
Olivier Houchardf6535282018-08-31 17:29:12 +02001227 return 0;
Willy Tarreauce323de2012-08-20 21:41:06 +02001228
Willy Tarreauce323de2012-08-20 21:41:06 +02001229 /* maybe we were called immediately after an asynchronous shutr */
Willy Tarreauafc8a222014-11-28 15:46:27 +01001230 if (ic->flags & CF_SHUTR)
Olivier Houchardc2aa7112018-09-11 18:27:21 +02001231 return 1;
Willy Tarreauce323de2012-08-20 21:41:06 +02001232
Christopher Faulete96993b2020-07-30 09:26:46 +02001233 /* we must wait because the mux is not installed yet */
1234 if (!conn->mux)
1235 return 0;
1236
Willy Tarreau54e917c2017-08-30 07:35:35 +02001237 /* stop here if we reached the end of data */
Olivier Houchard9aaf7782017-09-13 18:30:23 +02001238 if (cs->flags & CS_FL_EOS)
Christopher Faulet36b536d2019-11-20 11:56:33 +01001239 goto end_recv;
Willy Tarreau54e917c2017-08-30 07:35:35 +02001240
Christopher Fauletf061e422018-12-07 14:51:20 +01001241 /* stop immediately on errors. Note that we DON'T want to stop on
1242 * POLL_ERR, as the poller might report a write error while there
1243 * are still data available in the recv buffer. This typically
1244 * happens when we send too large a request to a backend server
1245 * which rejects it before reading it all.
1246 */
1247 if (!(cs->flags & CS_FL_RCV_MORE)) {
1248 if (!conn_xprt_ready(conn))
1249 return 0;
1250 if (conn->flags & CO_FL_ERROR || cs->flags & CS_FL_ERROR)
Christopher Faulet36b536d2019-11-20 11:56:33 +01001251 goto end_recv;
Christopher Fauletf061e422018-12-07 14:51:20 +01001252 }
Willy Tarreauf26c26c2018-11-12 16:11:08 +01001253
Willy Tarreau7ab99a32018-12-18 09:15:43 +01001254 /* prepare to detect if the mux needs more room */
1255 cs->flags &= ~CS_FL_WANT_ROOM;
1256
Willy Tarreau77e478c2018-06-19 07:03:14 +02001257 if ((ic->flags & (CF_STREAMER | CF_STREAMER_FAST)) && !co_data(ic) &&
Willy Tarreau7e312732014-02-12 16:35:14 +01001258 global.tune.idle_timer &&
Willy Tarreauafc8a222014-11-28 15:46:27 +01001259 (unsigned short)(now_ms - ic->last_read) >= global.tune.idle_timer) {
Willy Tarreauc5890e62014-02-09 17:47:01 +01001260 /* The buffer was empty and nothing was transferred for more
1261 * than one second. This was caused by a pause and not by
1262 * congestion. Reset any streaming mode to reduce latency.
1263 */
Willy Tarreauafc8a222014-11-28 15:46:27 +01001264 ic->xfer_small = 0;
1265 ic->xfer_large = 0;
1266 ic->flags &= ~(CF_STREAMER | CF_STREAMER_FAST);
Willy Tarreauc5890e62014-02-09 17:47:01 +01001267 }
1268
Willy Tarreau96199b12012-08-24 00:46:52 +02001269 /* First, let's see if we may splice data across the channel without
1270 * using a buffer.
1271 */
Willy Tarreau17ccd1a2020-01-17 16:19:34 +01001272 if (cs->flags & CS_FL_MAY_SPLICE &&
Willy Tarreauafc8a222014-11-28 15:46:27 +01001273 (ic->pipe || ic->to_forward >= MIN_SPLICE_FORWARD) &&
1274 ic->flags & CF_KERN_SPLICING) {
Willy Tarreaud760eec2018-07-10 09:50:25 +02001275 if (c_data(ic)) {
Willy Tarreau96199b12012-08-24 00:46:52 +02001276 /* We're embarrassed, there are already data pending in
1277 * the buffer and we don't want to have them at two
1278 * locations at a time. Let's indicate we need some
1279 * place and ask the consumer to hurry.
1280 */
Christopher Fauletc6618d62018-10-11 15:56:04 +02001281 flags |= CO_RFL_BUF_FLUSH;
Willy Tarreau96199b12012-08-24 00:46:52 +02001282 goto abort_splice;
1283 }
Willy Tarreauce323de2012-08-20 21:41:06 +02001284
Willy Tarreauafc8a222014-11-28 15:46:27 +01001285 if (unlikely(ic->pipe == NULL)) {
1286 if (pipes_used >= global.maxpipes || !(ic->pipe = get_pipe())) {
1287 ic->flags &= ~CF_KERN_SPLICING;
Willy Tarreau96199b12012-08-24 00:46:52 +02001288 goto abort_splice;
1289 }
1290 }
1291
Olivier Houchard9aaf7782017-09-13 18:30:23 +02001292 ret = conn->mux->rcv_pipe(cs, ic->pipe, ic->to_forward);
Willy Tarreau96199b12012-08-24 00:46:52 +02001293 if (ret < 0) {
1294 /* splice not supported on this end, let's disable it */
Willy Tarreauafc8a222014-11-28 15:46:27 +01001295 ic->flags &= ~CF_KERN_SPLICING;
Willy Tarreau96199b12012-08-24 00:46:52 +02001296 goto abort_splice;
1297 }
Willy Tarreauce323de2012-08-20 21:41:06 +02001298
Willy Tarreau96199b12012-08-24 00:46:52 +02001299 if (ret > 0) {
Willy Tarreauafc8a222014-11-28 15:46:27 +01001300 if (ic->to_forward != CHN_INFINITE_FORWARD)
1301 ic->to_forward -= ret;
1302 ic->total += ret;
Willy Tarreau96199b12012-08-24 00:46:52 +02001303 cur_read += ret;
Willy Tarreauafc8a222014-11-28 15:46:27 +01001304 ic->flags |= CF_READ_PARTIAL;
Willy Tarreauce323de2012-08-20 21:41:06 +02001305 }
Willy Tarreau96199b12012-08-24 00:46:52 +02001306
Christopher Faulet36b536d2019-11-20 11:56:33 +01001307 if (conn->flags & CO_FL_ERROR || cs->flags & (CS_FL_EOS|CS_FL_ERROR))
1308 goto end_recv;
Willy Tarreau96199b12012-08-24 00:46:52 +02001309
Willy Tarreau61d39a02013-07-18 21:49:32 +02001310 if (conn->flags & CO_FL_WAIT_ROOM) {
1311 /* the pipe is full or we have read enough data that it
1312 * could soon be full. Let's stop before needing to poll.
1313 */
Willy Tarreaudb398432018-11-15 11:08:52 +01001314 si_rx_room_blk(si);
Willy Tarreauffb12052018-11-15 16:06:02 +01001315 goto done_recv;
Willy Tarreau61d39a02013-07-18 21:49:32 +02001316 }
Willy Tarreau56a77e52012-09-02 18:34:44 +02001317
Willy Tarreauce323de2012-08-20 21:41:06 +02001318 /* splice not possible (anymore), let's go on on standard copy */
1319 }
Willy Tarreau96199b12012-08-24 00:46:52 +02001320
1321 abort_splice:
Willy Tarreauafc8a222014-11-28 15:46:27 +01001322 if (ic->pipe && unlikely(!ic->pipe->data)) {
1323 put_pipe(ic->pipe);
1324 ic->pipe = NULL;
Willy Tarreau96199b12012-08-24 00:46:52 +02001325 }
1326
Willy Tarreau17ccd1a2020-01-17 16:19:34 +01001327 if (ic->pipe && ic->to_forward && !(flags & CO_RFL_BUF_FLUSH) && cs->flags & CS_FL_MAY_SPLICE) {
Willy Tarreauc640ef12019-12-03 18:13:04 +01001328 /* don't break splicing by reading, but still call rcv_buf()
1329 * to pass the flag.
1330 */
1331 goto done_recv;
1332 }
1333
Christopher Fauleta73e59b2016-12-09 17:30:18 +01001334 /* now we'll need a input buffer for the stream */
Willy Tarreau581abd32018-10-25 10:21:41 +02001335 if (!si_alloc_ibuf(si, &(si_strm(si)->buffer_wait)))
Willy Tarreau10fc09e2014-11-25 19:46:36 +01001336 goto end_recv;
Willy Tarreau10fc09e2014-11-25 19:46:36 +01001337
Christopher Faulet2bc364c2021-09-21 15:22:12 +02001338 /* For an HTX stream, if the buffer is stuck (no output data with some
1339 * input data) and if the HTX message is fragmented or if its free space
1340 * wraps, we force an HTX deframentation. It is a way to have a
1341 * contiguous free space nad to let the mux to copy as much data as
1342 * possible.
1343 *
1344 * NOTE: A possible optim may be to let the mux decides if defrag is
1345 * required or not, depending on amount of data to be xferred.
1346 */
1347 if (IS_HTX_STRM(si_strm(si)) && !co_data(ic)) {
1348 struct htx *htx = htxbuf(&ic->buf);
1349
1350 if (htx_is_not_empty(htx) && ((htx->flags & HTX_FL_FRAGMENTED) || htx_space_wraps(htx)))
1351 htx_defrag(htxbuf(&ic->buf), NULL, 0);
1352 }
Christopher Faulet68a14db2021-09-21 15:14:57 +02001353
1354 /* Instruct the mux it must subscribed for read events */
1355 flags |= ((!conn_is_back(conn) && (si_strm(si)->be->options & PR_O_ABRT_CLOSE)) ? CO_RFL_KEEP_RECV : 0);
1356
Willy Tarreau61d39a02013-07-18 21:49:32 +02001357 /* Important note : if we're called with POLL_IN|POLL_HUP, it means the read polling
1358 * was enabled, which implies that the recv buffer was not full. So we have a guarantee
1359 * that if such an event is not handled above in splice, it will be handled here by
1360 * recv().
1361 */
Olivier Houchardc490efd2018-12-04 15:46:16 +01001362 while ((cs->flags & CS_FL_RCV_MORE) ||
Willy Tarreau93c9f592020-01-17 17:24:30 +01001363 (!(conn->flags & (CO_FL_ERROR | CO_FL_HANDSHAKE)) &&
Olivier Houchardc490efd2018-12-04 15:46:16 +01001364 (!(cs->flags & (CS_FL_ERROR|CS_FL_EOS))) && !(ic->flags & CF_SHUTR))) {
Christopher Faulet68a14db2021-09-21 15:14:57 +02001365 int cur_flags = flags;
1366
1367 /* Compute transient CO_RFL_* flags */
Christopher Faulet564e39c2021-09-21 15:50:55 +02001368 if (co_data(ic)) {
1369 cur_flags |= (CO_RFL_BUF_WET | CO_RFL_BUF_NOT_STUCK);
1370 }
Christopher Faulet68a14db2021-09-21 15:14:57 +02001371
Christopher Faulet4eb7d742018-10-11 15:29:21 +02001372 /* <max> may be null. This is the mux responsibility to set
1373 * CS_FL_RCV_MORE on the CS if more space is needed.
1374 */
Willy Tarreauafc8a222014-11-28 15:46:27 +01001375 max = channel_recv_max(ic);
Christopher Faulet68a14db2021-09-21 15:14:57 +02001376 ret = cs->conn->mux->rcv_buf(cs, &ic->buf, max, cur_flags);
Willy Tarreau674e0ad2018-12-05 13:45:41 +01001377
Christopher Fauletdf994082021-09-23 14:17:20 +02001378 if (cs->flags & CS_FL_WANT_ROOM) {
Christopher Fauletae179252022-02-21 16:12:00 +01001379 /* CS_FL_WANT_ROOM must not be reported if the channel's
1380 * buffer is empty.
1381 */
1382 BUG_ON(c_empty(ic));
1383
Willy Tarreaudb398432018-11-15 11:08:52 +01001384 si_rx_room_blk(si);
Christopher Fauletdf994082021-09-23 14:17:20 +02001385 /* Add READ_PARTIAL because some data are pending but
1386 * cannot be xferred to the channel
1387 */
1388 ic->flags |= CF_READ_PARTIAL;
1389 }
Willy Tarreau6577b482017-12-10 21:19:33 +01001390
Willy Tarreauf26c26c2018-11-12 16:11:08 +01001391 if (ret <= 0) {
Willy Tarreau1ac5f202019-12-03 18:08:45 +01001392 /* if we refrained from reading because we asked for a
1393 * flush to satisfy rcv_pipe(), we must not subscribe
1394 * and instead report that there's not enough room
1395 * here to proceed.
1396 */
1397 if (flags & CO_RFL_BUF_FLUSH)
1398 si_rx_room_blk(si);
Willy Tarreauce323de2012-08-20 21:41:06 +02001399 break;
Willy Tarreauf26c26c2018-11-12 16:11:08 +01001400 }
Willy Tarreauce323de2012-08-20 21:41:06 +02001401
1402 cur_read += ret;
1403
1404 /* if we're allowed to directly forward data, we must update ->o */
Willy Tarreauafc8a222014-11-28 15:46:27 +01001405 if (ic->to_forward && !(ic->flags & (CF_SHUTW|CF_SHUTW_NOW))) {
Willy Tarreauce323de2012-08-20 21:41:06 +02001406 unsigned long fwd = ret;
Willy Tarreauafc8a222014-11-28 15:46:27 +01001407 if (ic->to_forward != CHN_INFINITE_FORWARD) {
1408 if (fwd > ic->to_forward)
1409 fwd = ic->to_forward;
1410 ic->to_forward -= fwd;
Willy Tarreauce323de2012-08-20 21:41:06 +02001411 }
Willy Tarreaubcbd3932018-06-06 07:13:22 +02001412 c_adv(ic, fwd);
Willy Tarreauce323de2012-08-20 21:41:06 +02001413 }
1414
Willy Tarreauafc8a222014-11-28 15:46:27 +01001415 ic->flags |= CF_READ_PARTIAL;
1416 ic->total += ret;
Willy Tarreauce323de2012-08-20 21:41:06 +02001417
Christopher Faulet883d83e2021-09-09 10:17:59 +02001418 /* End-of-input reached, we can leave. In this case, it is
1419 * important to break the loop to not block the SI because of
1420 * the channel's policies.This way, we are still able to receive
1421 * shutdowns.
1422 */
1423 if (cs->flags & CS_FL_EOI)
1424 break;
1425
Willy Tarreauf26c26c2018-11-12 16:11:08 +01001426 if ((ic->flags & CF_READ_DONTWAIT) || --read_poll <= 0) {
1427 /* we're stopped by the channel's policy */
Willy Tarreaub26a6f92018-11-14 17:10:36 +01001428 si_rx_chan_blk(si);
Willy Tarreau62dd6982017-11-18 11:26:20 +01001429 break;
Willy Tarreauf26c26c2018-11-12 16:11:08 +01001430 }
Willy Tarreauce323de2012-08-20 21:41:06 +02001431
1432 /* if too many bytes were missing from last read, it means that
1433 * it's pointless trying to read again because the system does
1434 * not have them in buffers.
1435 */
1436 if (ret < max) {
Willy Tarreauce323de2012-08-20 21:41:06 +02001437 /* if a streamer has read few data, it may be because we
1438 * have exhausted system buffers. It's not worth trying
1439 * again.
1440 */
Willy Tarreauf26c26c2018-11-12 16:11:08 +01001441 if (ic->flags & CF_STREAMER) {
1442 /* we're stopped by the channel's policy */
Willy Tarreaub26a6f92018-11-14 17:10:36 +01001443 si_rx_chan_blk(si);
Willy Tarreauce323de2012-08-20 21:41:06 +02001444 break;
Willy Tarreauf26c26c2018-11-12 16:11:08 +01001445 }
Willy Tarreauce323de2012-08-20 21:41:06 +02001446
1447 /* if we read a large block smaller than what we requested,
1448 * it's almost certain we'll never get anything more.
1449 */
Willy Tarreauf26c26c2018-11-12 16:11:08 +01001450 if (ret >= global.tune.recv_enough) {
1451 /* we're stopped by the channel's policy */
Willy Tarreaub26a6f92018-11-14 17:10:36 +01001452 si_rx_chan_blk(si);
Willy Tarreauce323de2012-08-20 21:41:06 +02001453 break;
Willy Tarreauf26c26c2018-11-12 16:11:08 +01001454 }
Willy Tarreauce323de2012-08-20 21:41:06 +02001455 }
Christopher Fauletb3e0de42018-10-11 13:54:13 +02001456
1457 /* if we are waiting for more space, don't try to read more data
1458 * right now.
1459 */
Willy Tarreaub26a6f92018-11-14 17:10:36 +01001460 if (si_rx_blocked(si))
Christopher Fauletb3e0de42018-10-11 13:54:13 +02001461 break;
Willy Tarreauce323de2012-08-20 21:41:06 +02001462 } /* while !flags */
1463
Willy Tarreauffb12052018-11-15 16:06:02 +01001464 done_recv:
Willy Tarreauc5890e62014-02-09 17:47:01 +01001465 if (cur_read) {
Willy Tarreauafc8a222014-11-28 15:46:27 +01001466 if ((ic->flags & (CF_STREAMER | CF_STREAMER_FAST)) &&
Willy Tarreauc9fa0482018-07-10 17:43:27 +02001467 (cur_read <= ic->buf.size / 2)) {
Willy Tarreauafc8a222014-11-28 15:46:27 +01001468 ic->xfer_large = 0;
1469 ic->xfer_small++;
1470 if (ic->xfer_small >= 3) {
Willy Tarreauc5890e62014-02-09 17:47:01 +01001471 /* we have read less than half of the buffer in
1472 * one pass, and this happened at least 3 times.
1473 * This is definitely not a streamer.
1474 */
Willy Tarreauafc8a222014-11-28 15:46:27 +01001475 ic->flags &= ~(CF_STREAMER | CF_STREAMER_FAST);
Willy Tarreauc5890e62014-02-09 17:47:01 +01001476 }
Willy Tarreauafc8a222014-11-28 15:46:27 +01001477 else if (ic->xfer_small >= 2) {
Willy Tarreauc5890e62014-02-09 17:47:01 +01001478 /* if the buffer has been at least half full twice,
1479 * we receive faster than we send, so at least it
1480 * is not a "fast streamer".
1481 */
Willy Tarreauafc8a222014-11-28 15:46:27 +01001482 ic->flags &= ~CF_STREAMER_FAST;
Willy Tarreauc5890e62014-02-09 17:47:01 +01001483 }
1484 }
Willy Tarreauafc8a222014-11-28 15:46:27 +01001485 else if (!(ic->flags & CF_STREAMER_FAST) &&
Willy Tarreauc9fa0482018-07-10 17:43:27 +02001486 (cur_read >= ic->buf.size - global.tune.maxrewrite)) {
Willy Tarreauc5890e62014-02-09 17:47:01 +01001487 /* we read a full buffer at once */
Willy Tarreauafc8a222014-11-28 15:46:27 +01001488 ic->xfer_small = 0;
1489 ic->xfer_large++;
1490 if (ic->xfer_large >= 3) {
Willy Tarreauc5890e62014-02-09 17:47:01 +01001491 /* we call this buffer a fast streamer if it manages
1492 * to be filled in one call 3 consecutive times.
1493 */
Willy Tarreauafc8a222014-11-28 15:46:27 +01001494 ic->flags |= (CF_STREAMER | CF_STREAMER_FAST);
Willy Tarreauc5890e62014-02-09 17:47:01 +01001495 }
1496 }
1497 else {
Willy Tarreauafc8a222014-11-28 15:46:27 +01001498 ic->xfer_small = 0;
1499 ic->xfer_large = 0;
Willy Tarreauc5890e62014-02-09 17:47:01 +01001500 }
Willy Tarreauafc8a222014-11-28 15:46:27 +01001501 ic->last_read = now_ms;
Willy Tarreauc5890e62014-02-09 17:47:01 +01001502 }
1503
Willy Tarreau10fc09e2014-11-25 19:46:36 +01001504 end_recv:
Christopher Faulete6d8cb12019-11-20 16:42:00 +01001505 ret = (cur_read != 0);
1506
Christopher Faulet36b536d2019-11-20 11:56:33 +01001507 /* Report EOI on the channel if it was reached from the mux point of
1508 * view. */
Christopher Faulete6d8cb12019-11-20 16:42:00 +01001509 if ((cs->flags & CS_FL_EOI) && !(ic->flags & CF_EOI)) {
Christopher Faulet36b536d2019-11-20 11:56:33 +01001510 ic->flags |= (CF_EOI|CF_READ_PARTIAL);
Christopher Faulete6d8cb12019-11-20 16:42:00 +01001511 ret = 1;
1512 }
Willy Tarreau10fc09e2014-11-25 19:46:36 +01001513
Christopher Faulet36b536d2019-11-20 11:56:33 +01001514 if (conn->flags & CO_FL_ERROR || cs->flags & CS_FL_ERROR) {
1515 cs->flags |= CS_FL_ERROR;
1516 si->flags |= SI_FL_ERR;
Christopher Faulete6d8cb12019-11-20 16:42:00 +01001517 ret = 1;
Christopher Faulet36b536d2019-11-20 11:56:33 +01001518 }
1519 else if (cs->flags & CS_FL_EOS) {
Willy Tarreau18955db2020-01-23 16:32:24 +01001520 /* we received a shutdown */
1521 ic->flags |= CF_READ_NULL;
1522 if (ic->flags & CF_AUTO_CLOSE)
1523 channel_shutw_now(ic);
1524 stream_int_read0(si);
Christopher Faulete6d8cb12019-11-20 16:42:00 +01001525 ret = 1;
Christopher Faulet36b536d2019-11-20 11:56:33 +01001526 }
1527 else if (!si_rx_blocked(si)) {
1528 /* Subscribe to receive events if we're blocking on I/O */
Willy Tarreau4f6516d2018-12-19 13:59:17 +01001529 conn->mux->subscribe(cs, SUB_RETRY_RECV, &si->wait_event);
Willy Tarreaudd5621a2018-11-15 16:55:14 +01001530 si_rx_endp_done(si);
1531 } else {
1532 si_rx_endp_more(si);
Christopher Faulete6d8cb12019-11-20 16:42:00 +01001533 ret = 1;
Willy Tarreaudd5621a2018-11-15 16:55:14 +01001534 }
Christopher Faulete6d8cb12019-11-20 16:42:00 +01001535 return ret;
Willy Tarreauce323de2012-08-20 21:41:06 +02001536}
1537
1538/*
Willy Tarreau9bf9c142012-08-20 15:38:41 +02001539 * This function propagates a null read received on a socket-based connection.
1540 * It updates the stream interface. If the stream interface has SI_FL_NOHALF,
Willy Tarreau11405122015-03-12 22:32:27 +01001541 * the close is also forwarded to the write side as an abort.
Willy Tarreau9bf9c142012-08-20 15:38:41 +02001542 */
Willy Tarreau14bfe9a2018-12-19 15:19:27 +01001543static void stream_int_read0(struct stream_interface *si)
Willy Tarreau9bf9c142012-08-20 15:38:41 +02001544{
Olivier Houchard9aaf7782017-09-13 18:30:23 +02001545 struct conn_stream *cs = __objt_cs(si->end);
Willy Tarreauafc8a222014-11-28 15:46:27 +01001546 struct channel *ic = si_ic(si);
1547 struct channel *oc = si_oc(si);
Willy Tarreaub363a1f2013-10-01 10:45:07 +02001548
Willy Tarreauabb5d422018-11-14 16:58:52 +01001549 si_rx_shut_blk(si);
Willy Tarreauafc8a222014-11-28 15:46:27 +01001550 if (ic->flags & CF_SHUTR)
Willy Tarreau9bf9c142012-08-20 15:38:41 +02001551 return;
Willy Tarreauafc8a222014-11-28 15:46:27 +01001552 ic->flags |= CF_SHUTR;
1553 ic->rex = TICK_ETERNITY;
Willy Tarreau9bf9c142012-08-20 15:38:41 +02001554
Willy Tarreau4f283fa2019-06-05 14:34:03 +02001555 if (!si_state_in(si->state, SI_SB_CON|SI_SB_RDY|SI_SB_EST))
Willy Tarreau9bf9c142012-08-20 15:38:41 +02001556 return;
1557
Willy Tarreauafc8a222014-11-28 15:46:27 +01001558 if (oc->flags & CF_SHUTW)
Willy Tarreau9bf9c142012-08-20 15:38:41 +02001559 goto do_close;
1560
1561 if (si->flags & SI_FL_NOHALF) {
1562 /* we want to immediately forward this close to the write side */
Willy Tarreau87b09662015-04-03 00:22:06 +02001563 /* force flag on ssl to keep stream in cache */
Willy Tarreauecdb3fe2017-10-05 15:25:48 +02001564 cs_shutw(cs, CS_SHW_SILENT);
Willy Tarreau9bf9c142012-08-20 15:38:41 +02001565 goto do_close;
1566 }
1567
1568 /* otherwise that's just a normal read shutdown */
Willy Tarreau9bf9c142012-08-20 15:38:41 +02001569 return;
1570
1571 do_close:
Willy Tarreauf9fbfe82012-11-21 21:51:53 +01001572 /* OK we completely close the socket here just as if we went through si_shut[rw]() */
Willy Tarreaua553ae92017-10-05 18:52:17 +02001573 cs_close(cs);
Willy Tarreauf9fbfe82012-11-21 21:51:53 +01001574
Willy Tarreauafc8a222014-11-28 15:46:27 +01001575 oc->flags &= ~CF_SHUTW_NOW;
1576 oc->flags |= CF_SHUTW;
1577 oc->wex = TICK_ETERNITY;
Willy Tarreauf9fbfe82012-11-21 21:51:53 +01001578
Willy Tarreau43e69dc2018-11-06 19:23:03 +01001579 si_done_get(si);
Willy Tarreauf9fbfe82012-11-21 21:51:53 +01001580
Christopher Faulet04400bc2019-10-25 10:21:01 +02001581 si->state = SI_ST_DIS;
Willy Tarreau9bf9c142012-08-20 15:38:41 +02001582 si->exp = TICK_ETERNITY;
Willy Tarreau9bf9c142012-08-20 15:38:41 +02001583 return;
1584}
1585
Willy Tarreau651e1822015-09-23 20:06:13 +02001586/* Callback to be used by applet handlers upon completion. It updates the stream
1587 * (which may or may not take this opportunity to try to forward data), then
Emeric Brun2802b072017-06-30 14:11:56 +02001588 * may re-enable the applet's based on the channels and stream interface's final
Willy Tarreau651e1822015-09-23 20:06:13 +02001589 * states.
1590 */
Willy Tarreauaa977ba2015-09-25 11:45:06 +02001591void si_applet_wake_cb(struct stream_interface *si)
Willy Tarreaue5f86492015-04-19 15:16:35 +02001592{
Willy Tarreaueca572f2015-09-25 19:11:55 +02001593 struct channel *ic = si_ic(si);
1594
1595 /* If the applet wants to write and the channel is closed, it's a
1596 * broken pipe and it must be reported.
1597 */
Willy Tarreau05b9b642018-11-14 13:43:35 +01001598 if (!(si->flags & SI_FL_RX_WAIT_EP) && (ic->flags & CF_SHUTR))
Willy Tarreaueca572f2015-09-25 19:11:55 +02001599 si->flags |= SI_FL_ERR;
1600
Willy Tarreau186dcdd2018-11-16 16:18:34 +01001601 /* automatically mark the applet having data available if it reported
1602 * begin blocked by the channel.
1603 */
1604 if (si_rx_blocked(si))
1605 si_rx_endp_more(si);
1606
Willy Tarreau651e1822015-09-23 20:06:13 +02001607 /* update the stream-int, channels, and possibly wake the stream up */
1608 stream_int_notify(si);
Willy Tarreaua64c7032019-08-01 14:17:02 +02001609 stream_release_buffers(si_strm(si));
Willy Tarreaue5f86492015-04-19 15:16:35 +02001610
Willy Tarreau32742fd2018-11-14 14:07:59 +01001611 /* stream_int_notify may have passed through chk_snd and released some
1612 * RXBLK flags. Process_stream will consider those flags to wake up the
1613 * appctx but in the case the task is not in runqueue we may have to
1614 * wakeup the appctx immediately.
Emeric Brun2802b072017-06-30 14:11:56 +02001615 */
Olivier Houchard51205a12019-04-17 19:29:35 +02001616 if ((si_rx_endp_ready(si) && !si_rx_blocked(si)) ||
1617 (si_tx_endp_ready(si) && !si_tx_blocked(si)))
Willy Tarreau563cc372015-04-19 18:13:56 +02001618 appctx_wakeup(si_appctx(si));
Willy Tarreaud45b9f82015-04-13 16:30:14 +02001619}
1620
1621/*
1622 * This function performs a shutdown-read on a stream interface attached to an
1623 * applet in a connected or init state (it does nothing for other states). It
1624 * either shuts the read side or marks itself as closed. The buffer flags are
1625 * updated to reflect the new state. If the stream interface has SI_FL_NOHALF,
1626 * we also forward the close to the write side. The owner task is woken up if
1627 * it exists.
1628 */
1629static void stream_int_shutr_applet(struct stream_interface *si)
1630{
1631 struct channel *ic = si_ic(si);
1632
Willy Tarreauabb5d422018-11-14 16:58:52 +01001633 si_rx_shut_blk(si);
Willy Tarreaud45b9f82015-04-13 16:30:14 +02001634 if (ic->flags & CF_SHUTR)
1635 return;
1636 ic->flags |= CF_SHUTR;
1637 ic->rex = TICK_ETERNITY;
Willy Tarreaud45b9f82015-04-13 16:30:14 +02001638
Willy Tarreau828824a2015-04-19 17:20:03 +02001639 /* Note: on shutr, we don't call the applet */
1640
Willy Tarreau4f283fa2019-06-05 14:34:03 +02001641 if (!si_state_in(si->state, SI_SB_CON|SI_SB_RDY|SI_SB_EST))
Willy Tarreaud45b9f82015-04-13 16:30:14 +02001642 return;
1643
1644 if (si_oc(si)->flags & CF_SHUTW) {
Willy Tarreau958f0742015-09-25 20:24:26 +02001645 si_applet_release(si);
Willy Tarreaud45b9f82015-04-13 16:30:14 +02001646 si->state = SI_ST_DIS;
1647 si->exp = TICK_ETERNITY;
Willy Tarreaud45b9f82015-04-13 16:30:14 +02001648 }
1649 else if (si->flags & SI_FL_NOHALF) {
1650 /* we want to immediately forward this close to the write side */
1651 return stream_int_shutw_applet(si);
1652 }
Willy Tarreaud45b9f82015-04-13 16:30:14 +02001653}
1654
1655/*
1656 * This function performs a shutdown-write on a stream interface attached to an
1657 * applet in a connected or init state (it does nothing for other states). It
1658 * either shuts the write side or marks itself as closed. The buffer flags are
1659 * updated to reflect the new state. It does also close everything if the SI
1660 * was marked as being in error state. The owner task is woken up if it exists.
1661 */
1662static void stream_int_shutw_applet(struct stream_interface *si)
1663{
1664 struct channel *ic = si_ic(si);
1665 struct channel *oc = si_oc(si);
1666
1667 oc->flags &= ~CF_SHUTW_NOW;
1668 if (oc->flags & CF_SHUTW)
1669 return;
1670 oc->flags |= CF_SHUTW;
1671 oc->wex = TICK_ETERNITY;
Willy Tarreau43e69dc2018-11-06 19:23:03 +01001672 si_done_get(si);
Willy Tarreaud45b9f82015-04-13 16:30:14 +02001673
Hongbo Longe39683c2017-03-10 18:41:51 +01001674 if (tick_isset(si->hcto)) {
1675 ic->rto = si->hcto;
1676 ic->rex = tick_add(now_ms, ic->rto);
1677 }
1678
Willy Tarreau828824a2015-04-19 17:20:03 +02001679 /* on shutw we always wake the applet up */
1680 appctx_wakeup(si_appctx(si));
1681
Willy Tarreaud45b9f82015-04-13 16:30:14 +02001682 switch (si->state) {
Willy Tarreau4f283fa2019-06-05 14:34:03 +02001683 case SI_ST_RDY:
Willy Tarreaud45b9f82015-04-13 16:30:14 +02001684 case SI_ST_EST:
1685 /* we have to shut before closing, otherwise some short messages
1686 * may never leave the system, especially when there are remaining
1687 * unread data in the socket input buffer, or when nolinger is set.
1688 * However, if SI_FL_NOLINGER is explicitly set, we know there is
1689 * no risk so we close both sides immediately.
1690 */
1691 if (!(si->flags & (SI_FL_ERR | SI_FL_NOLINGER)) &&
1692 !(ic->flags & (CF_SHUTR|CF_DONT_READ)))
1693 return;
1694
1695 /* fall through */
1696 case SI_ST_CON:
1697 case SI_ST_CER:
1698 case SI_ST_QUE:
1699 case SI_ST_TAR:
1700 /* Note that none of these states may happen with applets */
Willy Tarreaud45b9f82015-04-13 16:30:14 +02001701 si_applet_release(si);
Willy Tarreau958f0742015-09-25 20:24:26 +02001702 si->state = SI_ST_DIS;
Tim Duesterhus588b3142020-05-29 14:35:51 +02001703 /* fall through */
Willy Tarreaud45b9f82015-04-13 16:30:14 +02001704 default:
Willy Tarreauabb5d422018-11-14 16:58:52 +01001705 si->flags &= ~SI_FL_NOLINGER;
1706 si_rx_shut_blk(si);
Willy Tarreaud45b9f82015-04-13 16:30:14 +02001707 ic->flags |= CF_SHUTR;
1708 ic->rex = TICK_ETERNITY;
1709 si->exp = TICK_ETERNITY;
1710 }
Willy Tarreaud45b9f82015-04-13 16:30:14 +02001711}
1712
1713/* chk_rcv function for applets */
1714static void stream_int_chk_rcv_applet(struct stream_interface *si)
1715{
1716 struct channel *ic = si_ic(si);
1717
1718 DPRINTF(stderr, "%s: si=%p, si->state=%d ic->flags=%08x oc->flags=%08x\n",
1719 __FUNCTION__,
1720 si, si->state, ic->flags, si_oc(si)->flags);
1721
Christopher Fauletb3e0de42018-10-11 13:54:13 +02001722 if (!ic->pipe) {
Willy Tarreaud45b9f82015-04-13 16:30:14 +02001723 /* (re)start reading */
Willy Tarreau828824a2015-04-19 17:20:03 +02001724 appctx_wakeup(si_appctx(si));
Thierry FOURNIER5bc2cbf2015-09-04 18:40:36 +02001725 }
Willy Tarreaud45b9f82015-04-13 16:30:14 +02001726}
1727
1728/* chk_snd function for applets */
1729static void stream_int_chk_snd_applet(struct stream_interface *si)
1730{
1731 struct channel *oc = si_oc(si);
1732
1733 DPRINTF(stderr, "%s: si=%p, si->state=%d ic->flags=%08x oc->flags=%08x\n",
1734 __FUNCTION__,
1735 si, si->state, si_ic(si)->flags, oc->flags);
1736
1737 if (unlikely(si->state != SI_ST_EST || (oc->flags & CF_SHUTW)))
1738 return;
1739
Willy Tarreau828824a2015-04-19 17:20:03 +02001740 /* we only wake the applet up if it was waiting for some data */
1741
1742 if (!(si->flags & SI_FL_WAIT_DATA))
Willy Tarreaud45b9f82015-04-13 16:30:14 +02001743 return;
1744
Willy Tarreaud45b9f82015-04-13 16:30:14 +02001745 if (!tick_isset(oc->wex))
1746 oc->wex = tick_add_ifset(now_ms, oc->wto);
1747
Willy Tarreau828824a2015-04-19 17:20:03 +02001748 if (!channel_is_empty(oc)) {
1749 /* (re)start sending */
1750 appctx_wakeup(si_appctx(si));
1751 }
Willy Tarreaud45b9f82015-04-13 16:30:14 +02001752}
1753
Willy Tarreaudded32d2008-11-30 19:48:07 +01001754/*
Willy Tarreaucff64112008-11-03 06:26:53 +01001755 * Local variables:
1756 * c-indent-level: 8
1757 * c-basic-offset: 8
1758 * End:
1759 */