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https://git.haproxy.org/git/haproxy.git/
synced 2025-08-09 16:47:18 +02:00
Now we don't touch the fd anymore there, instead we rely on the ->drain() provided by the control layer. As such the function was renamed to conn_ctrl_drain().
389 lines
10 KiB
C
389 lines
10 KiB
C
/*
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* Pass-through mux-demux for connections
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*
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* Copyright 2017 Willy Tarreau <w@1wt.eu>
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version
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* 2 of the License, or (at your option) any later version.
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*
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*/
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#include <haproxy/api.h>
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#include <haproxy/buf.h>
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#include <haproxy/connection.h>
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#include <haproxy/stream.h>
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#include <haproxy/task.h>
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struct mux_pt_ctx {
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struct conn_stream *cs;
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struct connection *conn;
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struct wait_event wait_event;
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};
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DECLARE_STATIC_POOL(pool_head_pt_ctx, "mux_pt", sizeof(struct mux_pt_ctx));
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static void mux_pt_destroy(struct mux_pt_ctx *ctx)
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{
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struct connection *conn = NULL;
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if (ctx) {
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/* The connection must be attached to this mux to be released */
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if (ctx->conn && ctx->conn->ctx == ctx)
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conn = ctx->conn;
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tasklet_free(ctx->wait_event.tasklet);
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if (conn && ctx->wait_event.events != 0)
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conn->xprt->unsubscribe(conn, conn->xprt_ctx, ctx->wait_event.events,
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&ctx->wait_event);
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pool_free(pool_head_pt_ctx, ctx);
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}
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if (conn) {
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conn->mux = NULL;
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conn->ctx = NULL;
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conn_stop_tracking(conn);
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conn_full_close(conn);
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if (conn->destroy_cb)
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conn->destroy_cb(conn);
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conn_free(conn);
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}
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}
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/* Callback, used when we get I/Os while in idle mode */
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static struct task *mux_pt_io_cb(struct task *t, void *tctx, unsigned short status)
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{
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struct mux_pt_ctx *ctx = tctx;
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if (ctx->cs) {
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/* There's a small race condition.
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* mux_pt_io_cb() is only supposed to be called if we have no
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* stream attached. However, maybe the tasklet got woken up,
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* and this connection was then attached to a new stream.
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* If this happened, just wake the tasklet up if anybody
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* subscribed to receive events, and otherwise call the wake
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* method, to make sure the event is noticed.
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*/
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if (ctx->conn->subs) {
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ctx->conn->subs->events = 0;
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tasklet_wakeup(ctx->conn->subs->tasklet);
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ctx->conn->subs = NULL;
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} else if (ctx->cs->data_cb->wake)
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ctx->cs->data_cb->wake(ctx->cs);
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return NULL;
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}
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conn_ctrl_drain(ctx->conn);
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if (ctx->conn->flags & (CO_FL_ERROR | CO_FL_SOCK_RD_SH | CO_FL_SOCK_WR_SH))
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mux_pt_destroy(ctx);
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else
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ctx->conn->xprt->subscribe(ctx->conn, ctx->conn->xprt_ctx, SUB_RETRY_RECV,
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&ctx->wait_event);
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return NULL;
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}
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/* Initialize the mux once it's attached. It is expected that conn->ctx
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* points to the existing conn_stream (for outgoing connections) or NULL (for
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* incoming ones, in which case one will be allocated and a new stream will be
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* instantiated). Returns < 0 on error.
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*/
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static int mux_pt_init(struct connection *conn, struct proxy *prx, struct session *sess,
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struct buffer *input)
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{
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struct conn_stream *cs = conn->ctx;
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struct mux_pt_ctx *ctx = pool_alloc(pool_head_pt_ctx);
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if (!ctx)
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goto fail;
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ctx->wait_event.tasklet = tasklet_new();
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if (!ctx->wait_event.tasklet)
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goto fail_free_ctx;
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ctx->wait_event.tasklet->context = ctx;
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ctx->wait_event.tasklet->process = mux_pt_io_cb;
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ctx->wait_event.events = 0;
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ctx->conn = conn;
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if (!cs) {
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cs = cs_new(conn, conn->target);
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if (!cs)
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goto fail_free_ctx;
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if (stream_create_from_cs(cs, &BUF_NULL) < 0)
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goto fail_free;
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}
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conn->ctx = ctx;
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ctx->cs = cs;
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cs->flags |= CS_FL_RCV_MORE;
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if (global.tune.options & GTUNE_USE_SPLICE)
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cs->flags |= CS_FL_MAY_SPLICE;
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return 0;
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fail_free:
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cs_free(cs);
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fail_free_ctx:
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if (ctx->wait_event.tasklet)
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tasklet_free(ctx->wait_event.tasklet);
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pool_free(pool_head_pt_ctx, ctx);
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fail:
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return -1;
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}
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/* callback to be used by default for the pass-through mux. It calls the data
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* layer wake() callback if it is set otherwise returns 0.
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*/
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static int mux_pt_wake(struct connection *conn)
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{
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struct mux_pt_ctx *ctx = conn->ctx;
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struct conn_stream *cs = ctx->cs;
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int ret = 0;
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if (cs) {
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ret = cs->data_cb->wake ? cs->data_cb->wake(cs) : 0;
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if (ret < 0)
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return ret;
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} else {
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conn_ctrl_drain(conn);
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if (conn->flags & (CO_FL_ERROR | CO_FL_SOCK_RD_SH)) {
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mux_pt_destroy(ctx);
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return -1;
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}
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}
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/* If we had early data, and we're done with the handshake
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* then we know the data are safe, and we can remove the flag.
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*/
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if ((conn->flags & (CO_FL_EARLY_DATA | CO_FL_EARLY_SSL_HS | CO_FL_WAIT_XPRT)) ==
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CO_FL_EARLY_DATA)
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conn->flags &= ~CO_FL_EARLY_DATA;
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return ret;
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}
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/*
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* Attach a new stream to a connection
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* (Used for outgoing connections)
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*/
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static struct conn_stream *mux_pt_attach(struct connection *conn, struct session *sess)
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{
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struct conn_stream *cs;
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struct mux_pt_ctx *ctx = conn->ctx;
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if (ctx->wait_event.events)
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conn->xprt->unsubscribe(ctx->conn, conn->xprt_ctx, SUB_RETRY_RECV, &ctx->wait_event);
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cs = cs_new(conn, conn->target);
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if (!cs)
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goto fail;
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ctx->cs = cs;
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cs->flags |= CS_FL_RCV_MORE;
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return (cs);
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fail:
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return NULL;
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}
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/* Retrieves a valid conn_stream from this connection, or returns NULL. For
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* this mux, it's easy as we can only store a single conn_stream.
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*/
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static const struct conn_stream *mux_pt_get_first_cs(const struct connection *conn)
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{
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struct mux_pt_ctx *ctx = conn->ctx;
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struct conn_stream *cs = ctx->cs;
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return cs;
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}
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/* Destroy the mux and the associated connection if still attached to this mux
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* and no longer used */
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static void mux_pt_destroy_meth(void *ctx)
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{
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struct mux_pt_ctx *pt = ctx;
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if (!(pt->cs) || !(pt->conn) || pt->conn->ctx != pt)
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mux_pt_destroy(pt);
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}
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/*
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* Detach the stream from the connection and possibly release the connection.
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*/
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static void mux_pt_detach(struct conn_stream *cs)
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{
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struct connection *conn = cs->conn;
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struct mux_pt_ctx *ctx = cs->conn->ctx;
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/* Subscribe, to know if we got disconnected */
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if (conn->owner != NULL &&
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!(conn->flags & (CO_FL_ERROR | CO_FL_SOCK_RD_SH | CO_FL_SOCK_WR_SH))) {
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ctx->cs = NULL;
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conn->xprt->subscribe(conn, conn->xprt_ctx, SUB_RETRY_RECV, &ctx->wait_event);
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} else
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/* There's no session attached to that connection, destroy it */
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mux_pt_destroy(ctx);
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}
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/* returns the number of streams in use on a connection */
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static int mux_pt_used_streams(struct connection *conn)
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{
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struct mux_pt_ctx *ctx = conn->ctx;
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return ctx->cs ? 1 : 0;
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}
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/* returns the number of streams still available on a connection */
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static int mux_pt_avail_streams(struct connection *conn)
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{
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return 1 - mux_pt_used_streams(conn);
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}
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static void mux_pt_shutr(struct conn_stream *cs, enum cs_shr_mode mode)
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{
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if (cs->flags & CS_FL_SHR)
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return;
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cs->flags &= ~(CS_FL_RCV_MORE | CS_FL_WANT_ROOM);
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if (conn_xprt_ready(cs->conn) && cs->conn->xprt->shutr)
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cs->conn->xprt->shutr(cs->conn, cs->conn->xprt_ctx,
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(mode == CS_SHR_DRAIN));
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else if (mode == CS_SHR_DRAIN)
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conn_ctrl_drain(cs->conn);
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if (cs->flags & CS_FL_SHW)
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conn_full_close(cs->conn);
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}
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static void mux_pt_shutw(struct conn_stream *cs, enum cs_shw_mode mode)
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{
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if (cs->flags & CS_FL_SHW)
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return;
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if (conn_xprt_ready(cs->conn) && cs->conn->xprt->shutw)
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cs->conn->xprt->shutw(cs->conn, cs->conn->xprt_ctx,
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(mode == CS_SHW_NORMAL));
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if (!(cs->flags & CS_FL_SHR))
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conn_sock_shutw(cs->conn, (mode == CS_SHW_NORMAL));
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else
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conn_full_close(cs->conn);
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}
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/*
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* Called from the upper layer, to get more data
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*/
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static size_t mux_pt_rcv_buf(struct conn_stream *cs, struct buffer *buf, size_t count, int flags)
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{
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size_t ret;
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if (!count) {
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cs->flags |= (CS_FL_RCV_MORE | CS_FL_WANT_ROOM);
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return 0;
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}
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b_realign_if_empty(buf);
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ret = cs->conn->xprt->rcv_buf(cs->conn, cs->conn->xprt_ctx, buf, count, flags);
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if (conn_xprt_read0_pending(cs->conn)) {
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cs->flags &= ~(CS_FL_RCV_MORE | CS_FL_WANT_ROOM);
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cs->flags |= CS_FL_EOS;
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}
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if (cs->conn->flags & CO_FL_ERROR) {
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cs->flags &= ~(CS_FL_RCV_MORE | CS_FL_WANT_ROOM);
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cs->flags |= CS_FL_ERROR;
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}
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return ret;
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}
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/* Called from the upper layer, to send data */
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static size_t mux_pt_snd_buf(struct conn_stream *cs, struct buffer *buf, size_t count, int flags)
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{
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size_t ret;
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ret = cs->conn->xprt->snd_buf(cs->conn, cs->conn->xprt_ctx, buf, count, flags);
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if (ret > 0)
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b_del(buf, ret);
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return ret;
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}
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/* Called from the upper layer, to subscribe <es> to events <event_type>. The
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* event subscriber <es> is not allowed to change from a previous call as long
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* as at least one event is still subscribed. The <event_type> must only be a
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* combination of SUB_RETRY_RECV and SUB_RETRY_SEND. It always returns 0.
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*/
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static int mux_pt_subscribe(struct conn_stream *cs, int event_type, struct wait_event *es)
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{
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return cs->conn->xprt->subscribe(cs->conn, cs->conn->xprt_ctx, event_type, es);
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}
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/* Called from the upper layer, to unsubscribe <es> from events <event_type>.
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* The <es> pointer is not allowed to differ from the one passed to the
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* subscribe() call. It always returns zero.
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*/
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static int mux_pt_unsubscribe(struct conn_stream *cs, int event_type, struct wait_event *es)
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{
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return cs->conn->xprt->unsubscribe(cs->conn, cs->conn->xprt_ctx, event_type, es);
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}
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#if defined(USE_LINUX_SPLICE)
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/* Send and get, using splicing */
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static int mux_pt_rcv_pipe(struct conn_stream *cs, struct pipe *pipe, unsigned int count)
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{
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int ret;
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ret = cs->conn->xprt->rcv_pipe(cs->conn, cs->conn->xprt_ctx, pipe, count);
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if (conn_xprt_read0_pending(cs->conn))
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cs->flags |= CS_FL_EOS;
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if (cs->conn->flags & CO_FL_ERROR)
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cs->flags |= CS_FL_ERROR;
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return (ret);
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}
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static int mux_pt_snd_pipe(struct conn_stream *cs, struct pipe *pipe)
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{
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return (cs->conn->xprt->snd_pipe(cs->conn, cs->conn->xprt_ctx, pipe));
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}
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#endif
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static int mux_pt_ctl(struct connection *conn, enum mux_ctl_type mux_ctl, void *output)
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{
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int ret = 0;
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switch (mux_ctl) {
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case MUX_STATUS:
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if (!(conn->flags & CO_FL_WAIT_XPRT))
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ret |= MUX_STATUS_READY;
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return ret;
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case MUX_EXIT_STATUS:
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return MUX_ES_UNKNOWN;
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default:
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return -1;
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}
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}
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/* The mux operations */
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const struct mux_ops mux_pt_ops = {
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.init = mux_pt_init,
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.wake = mux_pt_wake,
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.rcv_buf = mux_pt_rcv_buf,
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.snd_buf = mux_pt_snd_buf,
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.subscribe = mux_pt_subscribe,
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.unsubscribe = mux_pt_unsubscribe,
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#if defined(USE_LINUX_SPLICE)
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.rcv_pipe = mux_pt_rcv_pipe,
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.snd_pipe = mux_pt_snd_pipe,
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#endif
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.attach = mux_pt_attach,
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.get_first_cs = mux_pt_get_first_cs,
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.detach = mux_pt_detach,
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.avail_streams = mux_pt_avail_streams,
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.used_streams = mux_pt_used_streams,
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.destroy = mux_pt_destroy_meth,
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.ctl = mux_pt_ctl,
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.shutr = mux_pt_shutr,
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.shutw = mux_pt_shutw,
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.flags = MX_FL_NONE,
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.name = "PASS",
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};
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/* PROT selection : default mux has empty name */
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static struct mux_proto_list mux_proto_pt =
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{ .token = IST(""), .mode = PROTO_MODE_TCP, .side = PROTO_SIDE_BOTH, .mux = &mux_pt_ops };
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INITCALL1(STG_REGISTER, register_mux_proto, &mux_proto_pt);
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