384 lines
12 KiB
C
384 lines
12 KiB
C
/*
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* Functions managing stream_interface structures
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*
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* Copyright 2000-2011 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 <errno.h>
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#include <fcntl.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <sys/socket.h>
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#include <sys/stat.h>
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#include <sys/types.h>
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#include <common/compat.h>
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#include <common/config.h>
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#include <common/debug.h>
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#include <common/standard.h>
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#include <common/ticks.h>
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#include <common/time.h>
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#include <proto/buffers.h>
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#include <proto/fd.h>
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#include <proto/stream_interface.h>
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#include <proto/stream_sock.h>
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#include <proto/task.h>
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/*
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* This function only has to be called once after a wakeup event in case of
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* suspected timeout. It controls the stream interface timeouts and sets
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* si->flags accordingly. It does NOT close anything, as this timeout may
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* be used for any purpose. It returns 1 if the timeout fired, otherwise
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* zero.
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*/
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int stream_int_check_timeouts(struct stream_interface *si)
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{
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if (tick_is_expired(si->exp, now_ms)) {
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si->flags |= SI_FL_EXP;
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return 1;
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}
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return 0;
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}
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/* to be called only when in SI_ST_DIS with SI_FL_ERR */
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void stream_int_report_error(struct stream_interface *si)
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{
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if (!si->err_type)
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si->err_type = SI_ET_DATA_ERR;
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si->ob->flags |= BF_WRITE_ERROR;
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si->ib->flags |= BF_READ_ERROR;
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}
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/*
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* Returns a message to the client ; the connection is shut down for read,
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* and the request is cleared so that no server connection can be initiated.
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* The buffer is marked for read shutdown on the other side to protect the
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* message, and the buffer write is enabled. The message is contained in a
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* "chunk". If it is null, then an empty message is used. The reply buffer does
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* not need to be empty before this, and its contents will not be overwritten.
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* The primary goal of this function is to return error messages to a client.
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*/
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void stream_int_retnclose(struct stream_interface *si, const struct chunk *msg)
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{
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buffer_auto_read(si->ib);
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buffer_abort(si->ib);
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buffer_auto_close(si->ib);
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buffer_erase(si->ib);
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bi_erase(si->ob);
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if (likely(msg && msg->len))
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bo_inject(si->ob, msg->str, msg->len);
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si->ob->wex = tick_add_ifset(now_ms, si->ob->wto);
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buffer_auto_read(si->ob);
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buffer_auto_close(si->ob);
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buffer_shutr_now(si->ob);
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}
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/* default update function for scheduled tasks, not used for embedded tasks */
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void stream_int_update(struct stream_interface *si)
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{
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DPRINTF(stderr, "%s: si=%p, si->state=%d ib->flags=%08x ob->flags=%08x\n",
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__FUNCTION__,
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si, si->state, si->ib->flags, si->ob->flags);
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if (!(si->flags & SI_FL_DONT_WAKE) && si->owner)
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task_wakeup(si->owner, TASK_WOKEN_IO);
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}
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/* default update function for embedded tasks, to be used at the end of the i/o handler */
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void stream_int_update_embedded(struct stream_interface *si)
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{
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int old_flags = si->flags;
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DPRINTF(stderr, "%s: si=%p, si->state=%d ib->flags=%08x ob->flags=%08x\n",
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__FUNCTION__,
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si, si->state, si->ib->flags, si->ob->flags);
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if (si->state != SI_ST_EST)
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return;
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if ((si->ob->flags & (BF_OUT_EMPTY|BF_SHUTW|BF_HIJACK|BF_SHUTW_NOW)) == (BF_OUT_EMPTY|BF_SHUTW_NOW))
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si->shutw(si);
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if ((si->ob->flags & (BF_FULL|BF_SHUTW|BF_SHUTW_NOW|BF_HIJACK)) == 0)
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si->flags |= SI_FL_WAIT_DATA;
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/* we're almost sure that we need some space if the buffer is not
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* empty, even if it's not full, because the applets can't fill it.
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*/
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if ((si->ib->flags & (BF_SHUTR|BF_OUT_EMPTY|BF_DONT_READ)) == 0)
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si->flags |= SI_FL_WAIT_ROOM;
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if (si->ob->flags & BF_WRITE_ACTIVITY) {
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if (tick_isset(si->ob->wex))
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si->ob->wex = tick_add_ifset(now_ms, si->ob->wto);
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}
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if (si->ib->flags & BF_READ_ACTIVITY ||
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(si->ob->flags & BF_WRITE_ACTIVITY && !(si->flags & SI_FL_INDEP_STR))) {
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if (tick_isset(si->ib->rex))
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si->ib->rex = tick_add_ifset(now_ms, si->ib->rto);
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}
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/* save flags to detect changes */
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old_flags = si->flags;
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if (likely((si->ob->flags & (BF_SHUTW|BF_WRITE_PARTIAL|BF_FULL|BF_DONT_READ)) == BF_WRITE_PARTIAL &&
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(si->ob->prod->flags & SI_FL_WAIT_ROOM)))
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si->ob->prod->chk_rcv(si->ob->prod);
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if (((si->ib->flags & (BF_READ_PARTIAL|BF_OUT_EMPTY)) == BF_READ_PARTIAL) &&
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(si->ib->cons->flags & SI_FL_WAIT_DATA)) {
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si->ib->cons->chk_snd(si->ib->cons);
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/* check if the consumer has freed some space */
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if (!(si->ib->flags & BF_FULL))
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si->flags &= ~SI_FL_WAIT_ROOM;
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}
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/* Note that we're trying to wake up in two conditions here :
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* - special event, which needs the holder task attention
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* - status indicating that the applet can go on working. This
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* is rather hard because we might be blocking on output and
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* don't want to wake up on input and vice-versa. The idea is
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* to only rely on the changes the chk_* might have performed.
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*/
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if (/* check stream interface changes */
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((old_flags & ~si->flags) & (SI_FL_WAIT_ROOM|SI_FL_WAIT_DATA)) ||
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/* changes on the production side */
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(si->ib->flags & (BF_READ_NULL|BF_READ_ERROR)) ||
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si->state != SI_ST_EST ||
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(si->flags & SI_FL_ERR) ||
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((si->ib->flags & BF_READ_PARTIAL) &&
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(!si->ib->to_forward || si->ib->cons->state != SI_ST_EST)) ||
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/* changes on the consumption side */
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(si->ob->flags & (BF_WRITE_NULL|BF_WRITE_ERROR)) ||
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((si->ob->flags & BF_WRITE_ACTIVITY) &&
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((si->ob->flags & BF_SHUTW) ||
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si->ob->prod->state != SI_ST_EST ||
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((si->ob->flags & BF_OUT_EMPTY) && !si->ob->to_forward)))) {
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if (!(si->flags & SI_FL_DONT_WAKE) && si->owner)
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task_wakeup(si->owner, TASK_WOKEN_IO);
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}
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if (si->ib->flags & BF_READ_ACTIVITY)
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si->ib->flags &= ~BF_READ_DONTWAIT;
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}
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/* default shutr function for scheduled tasks */
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void stream_int_shutr(struct stream_interface *si)
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{
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DPRINTF(stderr, "%s: si=%p, si->state=%d ib->flags=%08x ob->flags=%08x\n",
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__FUNCTION__,
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si, si->state, si->ib->flags, si->ob->flags);
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si->ib->flags &= ~BF_SHUTR_NOW;
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if (si->ib->flags & BF_SHUTR)
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return;
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si->ib->flags |= BF_SHUTR;
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si->ib->rex = TICK_ETERNITY;
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si->flags &= ~SI_FL_WAIT_ROOM;
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if (si->state != SI_ST_EST && si->state != SI_ST_CON)
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return;
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if (si->ob->flags & BF_SHUTW) {
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si->state = SI_ST_DIS;
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si->exp = TICK_ETERNITY;
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if (si->release)
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si->release(si);
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}
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/* note that if the task exist, it must unregister itself once it runs */
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if (!(si->flags & SI_FL_DONT_WAKE) && si->owner)
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task_wakeup(si->owner, TASK_WOKEN_IO);
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}
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/* default shutw function for scheduled tasks */
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void stream_int_shutw(struct stream_interface *si)
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{
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DPRINTF(stderr, "%s: si=%p, si->state=%d ib->flags=%08x ob->flags=%08x\n",
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__FUNCTION__,
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si, si->state, si->ib->flags, si->ob->flags);
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si->ob->flags &= ~BF_SHUTW_NOW;
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if (si->ob->flags & BF_SHUTW)
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return;
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si->ob->flags |= BF_SHUTW;
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si->ob->wex = TICK_ETERNITY;
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si->flags &= ~SI_FL_WAIT_DATA;
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switch (si->state) {
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case SI_ST_EST:
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if (!(si->ib->flags & (BF_SHUTR|BF_DONT_READ)))
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break;
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/* fall through */
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case SI_ST_CON:
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case SI_ST_CER:
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case SI_ST_QUE:
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case SI_ST_TAR:
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si->state = SI_ST_DIS;
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/* fall through */
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if (si->release)
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si->release(si);
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default:
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si->flags &= ~SI_FL_WAIT_ROOM;
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si->ib->flags |= BF_SHUTR;
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si->ib->rex = TICK_ETERNITY;
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si->exp = TICK_ETERNITY;
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}
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/* note that if the task exist, it must unregister itself once it runs */
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if (!(si->flags & SI_FL_DONT_WAKE) && si->owner)
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task_wakeup(si->owner, TASK_WOKEN_IO);
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}
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/* default chk_rcv function for scheduled tasks */
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void stream_int_chk_rcv(struct stream_interface *si)
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{
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struct buffer *ib = si->ib;
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DPRINTF(stderr, "%s: si=%p, si->state=%d ib->flags=%08x ob->flags=%08x\n",
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__FUNCTION__,
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si, si->state, si->ib->flags, si->ob->flags);
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if (unlikely(si->state != SI_ST_EST || (ib->flags & BF_SHUTR)))
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return;
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if (ib->flags & (BF_FULL|BF_HIJACK|BF_DONT_READ)) {
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/* stop reading */
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if ((ib->flags & (BF_FULL|BF_HIJACK|BF_DONT_READ)) == BF_FULL)
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si->flags |= SI_FL_WAIT_ROOM;
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}
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else {
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/* (re)start reading */
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si->flags &= ~SI_FL_WAIT_ROOM;
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if (!(si->flags & SI_FL_DONT_WAKE) && si->owner)
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task_wakeup(si->owner, TASK_WOKEN_IO);
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}
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}
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/* default chk_snd function for scheduled tasks */
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void stream_int_chk_snd(struct stream_interface *si)
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{
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struct buffer *ob = si->ob;
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DPRINTF(stderr, "%s: si=%p, si->state=%d ib->flags=%08x ob->flags=%08x\n",
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__FUNCTION__,
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si, si->state, si->ib->flags, si->ob->flags);
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if (unlikely(si->state != SI_ST_EST || (si->ob->flags & BF_SHUTW)))
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return;
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if (!(si->flags & SI_FL_WAIT_DATA) || /* not waiting for data */
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(ob->flags & BF_OUT_EMPTY)) /* called with nothing to send ! */
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return;
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/* Otherwise there are remaining data to be sent in the buffer,
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* so we tell the handler.
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*/
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si->flags &= ~SI_FL_WAIT_DATA;
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if (!tick_isset(ob->wex))
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ob->wex = tick_add_ifset(now_ms, ob->wto);
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if (!(si->flags & SI_FL_DONT_WAKE) && si->owner)
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task_wakeup(si->owner, TASK_WOKEN_IO);
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}
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/* Register an applet to handle a stream_interface as part of the stream
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* interface's owner task, which is returned. The SI will wake it up everytime
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* it is solicited. The task's processing function must call the applet's
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* function before returning. It must be deleted by the task handler using
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* stream_int_unregister_handler(), possibly from within the function itself.
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* It also pre-initializes applet.state to zero.
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*/
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struct task *stream_int_register_handler(struct stream_interface *si, struct si_applet *app)
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{
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DPRINTF(stderr, "registering handler %p for si %p (was %p)\n", app, si, si->owner);
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si->update = stream_int_update_embedded;
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si->shutr = stream_int_shutr;
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si->shutw = stream_int_shutw;
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si->chk_rcv = stream_int_chk_rcv;
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si->chk_snd = stream_int_chk_snd;
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si->connect = NULL;
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set_target_applet(&si->target, app);
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si->applet.state = 0;
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si->release = app->release;
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si->flags |= SI_FL_WAIT_DATA;
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return si->owner;
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}
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/* Register a function to handle a stream_interface as a standalone task. The
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* new task itself is returned and is assigned as si->owner. The stream_interface
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* pointer will be pointed to by the task's context. The handler can be detached
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* by using stream_int_unregister_handler().
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* FIXME: the code should be updated to ensure that we don't change si->owner
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* anymore as this is not needed. However, process_session still relies on it.
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*/
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struct task *stream_int_register_handler_task(struct stream_interface *si,
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struct task *(*fct)(struct task *))
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{
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struct task *t;
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DPRINTF(stderr, "registering handler %p for si %p (was %p)\n", fct, si, si->owner);
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si->update = stream_int_update;
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si->shutr = stream_int_shutr;
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si->shutw = stream_int_shutw;
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si->chk_rcv = stream_int_chk_rcv;
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si->chk_snd = stream_int_chk_snd;
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si->connect = NULL;
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clear_target(&si->target);
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si->release = NULL;
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si->flags |= SI_FL_WAIT_DATA;
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t = task_new();
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si->owner = t;
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if (!t)
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return t;
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set_target_task(&si->target, t);
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t->process = fct;
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t->context = si;
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task_wakeup(si->owner, TASK_WOKEN_INIT);
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return t;
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}
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/* Unregister a stream interface handler. This must be called by the handler task
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* itself when it detects that it is in the SI_ST_DIS state. This function can
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* both detach standalone handlers and embedded handlers.
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*/
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void stream_int_unregister_handler(struct stream_interface *si)
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{
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if (si->target.type == TARG_TYPE_TASK) {
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/* external handler : kill the task */
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task_delete(si->target.ptr.t);
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task_free(si->target.ptr.t);
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}
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si->release = NULL;
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si->owner = NULL;
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clear_target(&si->target);
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}
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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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