409 lines
12 KiB
C
409 lines
12 KiB
C
/*
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* include/proto/stream_interface.h
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* This file contains stream_interface function prototypes
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*
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* Copyright (C) 2000-2014 Willy Tarreau - w@1wt.eu
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation, version 2.1
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* exclusively.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
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*/
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#ifndef _PROTO_STREAM_INTERFACE_H
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#define _PROTO_STREAM_INTERFACE_H
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#include <stdlib.h>
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#include <common/config.h>
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#include <types/server.h>
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#include <types/stream.h>
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#include <types/stream_interface.h>
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#include <proto/applet.h>
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#include <proto/channel.h>
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#include <proto/connection.h>
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/* main event functions used to move data between sockets and buffers */
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int stream_int_check_timeouts(struct stream_interface *si);
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void stream_int_report_error(struct stream_interface *si);
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void stream_int_retnclose(struct stream_interface *si, const struct chunk *msg);
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int conn_si_send_proxy(struct connection *conn, unsigned int flag);
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void stream_sock_read0(struct stream_interface *si);
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extern struct si_ops si_embedded_ops;
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extern struct si_ops si_conn_ops;
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extern struct si_ops si_applet_ops;
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extern struct data_cb si_conn_cb;
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extern struct data_cb si_idle_conn_cb;
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struct appctx *stream_int_register_handler(struct stream_interface *si, struct applet *app);
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void si_applet_wake_cb(struct stream_interface *si);
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void stream_int_update(struct stream_interface *si);
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void stream_int_update_conn(struct stream_interface *si);
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void stream_int_update_applet(struct stream_interface *si);
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void stream_int_notify(struct stream_interface *si);
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/* returns the channel which receives data from this stream interface (input channel) */
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static inline struct channel *si_ic(struct stream_interface *si)
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{
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if (si->flags & SI_FL_ISBACK)
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return &LIST_ELEM(si, struct stream *, si[1])->res;
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else
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return &LIST_ELEM(si, struct stream *, si[0])->req;
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}
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/* returns the channel which feeds data to this stream interface (output channel) */
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static inline struct channel *si_oc(struct stream_interface *si)
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{
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if (si->flags & SI_FL_ISBACK)
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return &LIST_ELEM(si, struct stream *, si[1])->req;
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else
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return &LIST_ELEM(si, struct stream *, si[0])->res;
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}
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/* returns the buffer which receives data from this stream interface (input channel's buffer) */
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static inline struct buffer *si_ib(struct stream_interface *si)
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{
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return si_ic(si)->buf;
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}
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/* returns the buffer which feeds data to this stream interface (output channel's buffer) */
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static inline struct buffer *si_ob(struct stream_interface *si)
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{
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return si_oc(si)->buf;
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}
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/* returns the stream associated to a stream interface */
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static inline struct stream *si_strm(struct stream_interface *si)
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{
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if (si->flags & SI_FL_ISBACK)
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return LIST_ELEM(si, struct stream *, si[1]);
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else
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return LIST_ELEM(si, struct stream *, si[0]);
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}
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/* returns the task associated to this stream interface */
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static inline struct task *si_task(struct stream_interface *si)
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{
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if (si->flags & SI_FL_ISBACK)
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return LIST_ELEM(si, struct stream *, si[1])->task;
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else
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return LIST_ELEM(si, struct stream *, si[0])->task;
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}
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/* returns the stream interface on the other side. Used during forwarding. */
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static inline struct stream_interface *si_opposite(struct stream_interface *si)
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{
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if (si->flags & SI_FL_ISBACK)
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return &LIST_ELEM(si, struct stream *, si[1])->si[0];
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else
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return &LIST_ELEM(si, struct stream *, si[0])->si[1];
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}
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/* initializes a stream interface in the SI_ST_INI state. It's detached from
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* any endpoint and only keeps its side which is expected to have already been
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* set.
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*/
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static inline void si_reset(struct stream_interface *si)
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{
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si->err_type = SI_ET_NONE;
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si->conn_retries = 0; /* used for logging too */
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si->exp = TICK_ETERNITY;
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si->flags &= SI_FL_ISBACK;
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si->end = NULL;
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si->state = si->prev_state = SI_ST_INI;
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si->ops = &si_embedded_ops;
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}
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/* sets the current and previous state of a stream interface to <state>. This
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* is mainly used to create one in the established state on incoming
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* conncetions.
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*/
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static inline void si_set_state(struct stream_interface *si, int state)
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{
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si->state = si->prev_state = state;
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}
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/* only detaches the endpoint from the SI, which means that it's set to
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* NULL and that ->ops is mapped to si_embedded_ops. The previous endpoint
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* is returned.
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*/
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static inline enum obj_type *si_detach_endpoint(struct stream_interface *si)
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{
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enum obj_type *prev = si->end;
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si->end = NULL;
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si->ops = &si_embedded_ops;
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return prev;
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}
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/* Release the endpoint if it's a connection or an applet, then nullify it.
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* Note: released connections are closed then freed.
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*/
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static inline void si_release_endpoint(struct stream_interface *si)
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{
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struct connection *conn;
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struct appctx *appctx;
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if (!si->end)
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return;
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if ((conn = objt_conn(si->end))) {
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LIST_DEL(&conn->list);
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conn_force_close(conn);
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conn_free(conn);
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}
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else if ((appctx = objt_appctx(si->end))) {
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if (appctx->applet->release && si->state < SI_ST_DIS)
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appctx->applet->release(appctx);
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appctx_free(appctx); /* we share the connection pool */
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}
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si_detach_endpoint(si);
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}
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/* Turn an existing connection endpoint of stream interface <si> to idle mode,
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* which means that the connection will be polled for incoming events and might
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* be killed by the underlying I/O handler. If <pool> is not null, the
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* connection will also be added at the head of this list. This connection
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* remains assigned to the stream interface it is currently attached to.
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*/
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static inline void si_idle_conn(struct stream_interface *si, struct list *pool)
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{
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struct connection *conn = __objt_conn(si->end);
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if (pool)
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LIST_ADD(pool, &conn->list);
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conn_attach(conn, si, &si_idle_conn_cb);
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conn_data_want_recv(conn);
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}
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/* Attach connection <conn> to the stream interface <si>. The stream interface
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* is configured to work with a connection and the connection it configured
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* with a stream interface data layer.
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*/
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static inline void si_attach_conn(struct stream_interface *si, struct connection *conn)
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{
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si->ops = &si_conn_ops;
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si->end = &conn->obj_type;
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conn_attach(conn, si, &si_conn_cb);
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}
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/* Returns true if a connection is attached to the stream interface <si> and
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* if this connection is ready.
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*/
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static inline int si_conn_ready(struct stream_interface *si)
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{
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struct connection *conn = objt_conn(si->end);
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return conn && conn_ctrl_ready(conn) && conn_xprt_ready(conn);
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}
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/* Attach appctx <appctx> to the stream interface <si>. The stream interface
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* is configured to work with an applet context.
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*/
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static inline void si_attach_appctx(struct stream_interface *si, struct appctx *appctx)
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{
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si->ops = &si_applet_ops;
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si->end = &appctx->obj_type;
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appctx->owner = si;
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}
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/* returns a pointer to the appctx being run in the SI or NULL if none */
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static inline struct appctx *si_appctx(struct stream_interface *si)
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{
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return objt_appctx(si->end);
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}
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/* call the applet's release function if any. Needs to be called upon close() */
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static inline void si_applet_release(struct stream_interface *si)
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{
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struct appctx *appctx;
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appctx = si_appctx(si);
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if (appctx && appctx->applet->release && si->state < SI_ST_DIS)
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appctx->applet->release(appctx);
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}
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/* let an applet indicate that it wants to put some data into the input buffer */
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static inline void si_applet_want_put(struct stream_interface *si)
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{
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si->flags |= SI_FL_WANT_PUT;
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}
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/* let an applet indicate that it wanted to put some data into the input buffer
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* but it couldn't.
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*/
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static inline void si_applet_cant_put(struct stream_interface *si)
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{
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si->flags |= SI_FL_WANT_PUT | SI_FL_WAIT_ROOM;
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}
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/* let an applet indicate that it doesn't want to put data into the input buffer */
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static inline void si_applet_stop_put(struct stream_interface *si)
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{
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si->flags &= ~SI_FL_WANT_PUT;
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}
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/* let an applet indicate that it wants to get some data from the output buffer */
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static inline void si_applet_want_get(struct stream_interface *si)
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{
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si->flags |= SI_FL_WANT_GET;
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}
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/* let an applet indicate that it wanted to get some data from the output buffer
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* but it couldn't.
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*/
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static inline void si_applet_cant_get(struct stream_interface *si)
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{
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si->flags |= SI_FL_WANT_GET | SI_FL_WAIT_DATA;
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}
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/* let an applet indicate that it doesn't want to get data from the input buffer */
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static inline void si_applet_stop_get(struct stream_interface *si)
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{
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si->flags &= ~SI_FL_WANT_GET;
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}
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/* Try to allocate a new connection and assign it to the interface. If
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* an endpoint was previously allocated, it is released first. The newly
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* allocated connection is initialized, assigned to the stream interface,
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* and returned.
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*/
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static inline struct connection *si_alloc_conn(struct stream_interface *si)
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{
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struct connection *conn;
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si_release_endpoint(si);
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conn = conn_new();
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if (conn)
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si_attach_conn(si, conn);
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return conn;
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}
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/* Release the interface's existing endpoint (connection or appctx) and
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* allocate then initialize a new appctx which is assigned to the interface
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* and returned. NULL may be returned upon memory shortage. Applet <applet>
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* is assigned to the appctx, but it may be NULL.
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*/
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static inline struct appctx *si_alloc_appctx(struct stream_interface *si, struct applet *applet)
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{
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struct appctx *appctx;
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si_release_endpoint(si);
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appctx = appctx_new(applet);
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if (appctx)
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si_attach_appctx(si, appctx);
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return appctx;
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}
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/* Sends a shutr to the connection using the data layer */
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static inline void si_shutr(struct stream_interface *si)
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{
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si->ops->shutr(si);
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}
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/* Sends a shutw to the connection using the data layer */
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static inline void si_shutw(struct stream_interface *si)
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{
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si->ops->shutw(si);
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}
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/* Updates the stream interface and timers, then updates the data layer below */
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static inline void si_update(struct stream_interface *si)
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{
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stream_int_update(si);
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if (si->ops->update)
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si->ops->update(si);
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}
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/* Calls chk_rcv on the connection using the data layer */
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static inline void si_chk_rcv(struct stream_interface *si)
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{
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si->ops->chk_rcv(si);
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}
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/* Calls chk_snd on the connection using the data layer */
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static inline void si_chk_snd(struct stream_interface *si)
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{
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si->ops->chk_snd(si);
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}
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/* Calls chk_snd on the connection using the ctrl layer */
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static inline int si_connect(struct stream_interface *si)
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{
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struct connection *conn = objt_conn(si->end);
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int ret = SF_ERR_NONE;
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if (unlikely(!conn || !conn->ctrl || !conn->ctrl->connect))
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return SF_ERR_INTERNAL;
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if (!conn_ctrl_ready(conn) || !conn_xprt_ready(conn)) {
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ret = conn->ctrl->connect(conn, !channel_is_empty(si_oc(si)), 0);
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if (ret != SF_ERR_NONE)
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return ret;
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/* we need to be notified about connection establishment */
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conn->flags |= CO_FL_WAKE_DATA;
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/* we're in the process of establishing a connection */
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si->state = SI_ST_CON;
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}
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else {
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/* reuse the existing connection */
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if (!channel_is_empty(si_oc(si))) {
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/* we'll have to send a request there. */
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conn_data_want_send(conn);
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}
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/* the connection is established */
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si->state = SI_ST_EST;
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}
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/* needs src ip/port for logging */
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if (si->flags & SI_FL_SRC_ADDR)
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conn_get_from_addr(conn);
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return ret;
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}
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/* for debugging, reports the stream interface state name */
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static inline const char *si_state_str(int state)
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{
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switch (state) {
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case SI_ST_INI: return "INI";
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case SI_ST_REQ: return "REQ";
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case SI_ST_QUE: return "QUE";
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case SI_ST_TAR: return "TAR";
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case SI_ST_ASS: return "ASS";
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case SI_ST_CON: return "CON";
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case SI_ST_CER: return "CER";
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case SI_ST_EST: return "EST";
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case SI_ST_DIS: return "DIS";
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case SI_ST_CLO: return "CLO";
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default: return "???";
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}
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}
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#endif /* _PROTO_STREAM_INTERFACE_H */
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/*
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* Local variables:
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* c-indent-level: 8
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* c-basic-offset: 8
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* End:
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*/
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