forked from Mirrors/freeswitch
d8c4d22d40
git-svn-id: http://svn.freeswitch.org/svn/freeswitch/trunk@10802 d0543943-73ff-0310-b7d9-9358b9ac24b2
567 lines
14 KiB
C
567 lines
14 KiB
C
/*
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* This file is part of the Sofia-SIP package
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*
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* Copyright (C) 2005 Nokia Corporation.
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*
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* Contact: Pekka Pessi <pekka.pessi@nokia.com>
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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 License
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* as published by the Free Software Foundation; either version 2.1 of
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* the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful, but
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* 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 St, Fifth Floor, Boston, MA
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* 02110-1301 USA
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*
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*/
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/**@CFILE test_ops.c
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* @brief High-level test framework for Sofia SIP User Agent Engine
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*
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* @author Pekka Pessi <Pekka.Pessi@nokia.com>
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* @author Martti Mela <Martti Mela@nokia.com>
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*
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* @date Created: Wed Aug 17 12:12:12 EEST 2005 ppessi
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*/
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#include "config.h"
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#include "test_nua.h"
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#if HAVE_FUNC
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#elif HAVE_FUNCTION
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#define __func__ __FUNCTION__
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#else
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#define __func__ name
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#endif
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int save_events(CONDITION_PARAMS)
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{
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return save_event_in_list(ctx, event, ep, call) == event_is_normal;
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}
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int until_final_response(CONDITION_PARAMS)
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{
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return status >= 200;
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}
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int save_until_final_response(CONDITION_PARAMS)
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{
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save_event_in_list(ctx, event, ep, call);
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return
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nua_r_set_params <= event && event < nua_i_network_changed
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&& status >= 200;
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}
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/** Save events.
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*
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* Terminate when a event is saved.
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*/
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int save_until_received(CONDITION_PARAMS)
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{
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return save_event_in_list(ctx, event, ep, call) == event_is_normal;
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}
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/** Save events until nua_i_outbound is received. */
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int save_until_special(CONDITION_PARAMS)
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{
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return save_event_in_list(ctx, event, ep, call) == event_is_special;
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}
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/* Return call state from event tag list */
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int callstate(tagi_t const *tags)
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{
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tagi_t const *ti = tl_find(tags, nutag_callstate);
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return ti ? ti->t_value : -1;
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}
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/* Return true if offer is sent */
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int is_offer_sent(tagi_t const *tags)
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{
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tagi_t const *ti = tl_find(tags, nutag_offer_sent);
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return ti ? ti->t_value : 0;
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}
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/* Return true if answer is sent */
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int is_answer_sent(tagi_t const *tags)
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{
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tagi_t const *ti = tl_find(tags, nutag_answer_sent);
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return ti ? ti->t_value : 0;
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}
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/* Return true if offer is recv */
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int is_offer_recv(tagi_t const *tags)
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{
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tagi_t const *ti = tl_find(tags, nutag_offer_recv);
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return ti ? ti->t_value : 0;
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}
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/* Return true if answer is recv */
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int is_answer_recv(tagi_t const *tags)
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{
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tagi_t const *ti = tl_find(tags, nutag_answer_recv);
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return ti ? ti->t_value : 0;
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}
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/* Return true if offer/answer is sent/recv */
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int is_offer_answer_done(tagi_t const *tags)
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{
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tagi_t const *ti;
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return
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((ti = tl_find(tags, nutag_answer_recv)) && ti->t_value) ||
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((ti = tl_find(tags, nutag_offer_sent)) && ti->t_value) ||
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((ti = tl_find(tags, nutag_offer_recv)) && ti->t_value) ||
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((ti = tl_find(tags, nutag_answer_sent)) && ti->t_value);
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}
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/* Return audio state from event tag list */
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int audio_activity(tagi_t const *tags)
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{
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tagi_t const *ti = tl_find(tags, soatag_active_audio);
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return ti ? ti->t_value : -1;
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}
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/* Return video state from event tag list */
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int video_activity(tagi_t const *tags)
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{
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tagi_t const *ti = tl_find(tags, soatag_active_video);
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return ti ? ti->t_value : -1;
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}
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void print_event(nua_event_t event,
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char const *operation,
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int status, char const *phrase,
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nua_t *nua, struct context *ctx,
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struct endpoint *ep,
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nua_handle_t *nh, struct call *call,
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sip_t const *sip,
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tagi_t tags[])
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{
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tagi_t const *t;
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static su_nanotime_t started = 0;
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su_nanotime_t now;
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char timestamp[32];
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su_nanotime(&now);
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if (started == 0) started = now;
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now -= started; now /= 1000000;
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snprintf(timestamp, sizeof timestamp, "%03u.%03u",
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(unsigned)(now / 1000), (unsigned)(now % 1000));
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if (event == nua_i_state) {
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fprintf(stderr, "%s %s.nua(%p): event %s %s\n", timestamp,
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ep->name, (void *)nh, nua_event_name(event),
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nua_callstate_name(callstate(tags)));
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}
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else if ((int)event >= nua_r_set_params) {
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t = tl_find(tags, nutag_substate);
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if (t) {
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fprintf(stderr, "%s %s.nua(%p): event %s status %u %s (%s)\n", timestamp,
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ep->name, (void*)nh, nua_event_name(event), status, phrase,
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nua_substate_name(t->t_value));
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}
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else {
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fprintf(stderr, "%s %s.nua(%p): event %s status %u %s\n", timestamp,
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ep->name, (void *)nh, nua_event_name(event), status, phrase);
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}
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}
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else if (event == nua_i_notify) {
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t = tl_find(tags, nutag_substate);
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fprintf(stderr, "%s %s.nua(%p): event %s %s (%s)\n", timestamp,
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ep->name, (void *)nh, nua_event_name(event), phrase,
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nua_substate_name(t ? t->t_value : 0));
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}
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else if ((int)event >= nua_i_bye ||
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event == nua_i_invite || event == nua_i_cancel ||
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event == nua_i_ack) {
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fprintf(stderr, "%s %s.nua(%p): event %s %03d %s\n", timestamp,
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ep->name, (void *)nh, nua_event_name(event), status, phrase);
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}
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else if ((int)event >= 0) {
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fprintf(stderr, "%s %s.nua(%p): event %s %s\n", timestamp,
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ep->name, (void *)nh, nua_event_name(event), phrase);
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}
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else if (status > 0) {
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fprintf(stderr, "%s %s.nua(%p): call %s() with status %u %s\n", timestamp,
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ep->name, (void *)nh, operation, status, phrase);
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}
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else {
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t = tl_find(tags, siptag_subject_str);
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if (t && t->t_value) {
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char const *subject = (char const *)t->t_value;
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fprintf(stderr, "%s %s.nua(%p): call %s() \"%s\"\n", timestamp,
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ep->name, (void *)nh, operation, subject);
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}
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else
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fprintf(stderr, "%s %s.nua(%p): call %s()\n", timestamp,
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ep->name, (void *)nh, operation);
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}
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if (tags &&
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((tstflags & tst_verbatim) || ctx->print_tags || ep->print_tags))
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tl_print(stderr, "", tags);
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}
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void ep_callback(nua_event_t event,
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int status, char const *phrase,
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nua_t *nua, struct context *ctx,
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struct endpoint *ep,
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nua_handle_t *nh, struct call *call,
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sip_t const *sip,
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tagi_t tags[])
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{
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if (ep->printer)
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ep->printer(event, "", status, phrase, nua, ctx, ep, nh, call, sip, tags);
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if (call == NULL && nh) {
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for (call = ep->call; call; call = call->next) {
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if (!call->nh)
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break;
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if (nh == call->nh)
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break;
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}
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if (call && call->nh == NULL) {
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call->nh = nh;
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nua_handle_bind(nh, call);
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}
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}
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if ((ep->next_condition == NULL ||
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ep->next_condition(event, status, phrase,
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nua, ctx, ep, nh, call, sip, tags))
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&&
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(ep->next_event == -1 || ep->next_event == event))
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ep->running = 0;
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ep->last_event = event;
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if (call == NULL && nh)
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nua_handle_destroy(nh);
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}
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void a_callback(nua_event_t event,
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int status, char const *phrase,
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nua_t *nua, struct context *ctx,
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nua_handle_t *nh, struct call *call,
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sip_t const *sip,
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tagi_t tags[])
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{
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ep_callback(event, status, phrase, nua, ctx, &ctx->a, nh, call, sip, tags);
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}
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void b_callback(nua_event_t event,
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int status, char const *phrase,
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nua_t *nua, struct context *ctx,
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nua_handle_t *nh, struct call *call,
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sip_t const *sip,
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tagi_t tags[])
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{
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ep_callback(event, status, phrase, nua, ctx, &ctx->b, nh, call, sip, tags);
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}
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void c_callback(nua_event_t event,
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int status, char const *phrase,
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nua_t *nua, struct context *ctx,
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nua_handle_t *nh, struct call *call,
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sip_t const *sip,
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tagi_t tags[])
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{
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ep_callback(event, status, phrase, nua, ctx, &ctx->c, nh, call, sip, tags);
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}
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void run_abc_until(struct context *ctx,
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nua_event_t a_event, condition_function *a_condition,
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nua_event_t b_event, condition_function *b_condition,
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nua_event_t c_event, condition_function *c_condition)
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{
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struct endpoint *a = &ctx->a, *b = &ctx->b, *c = &ctx->c;
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a->next_event = a_event;
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a->next_condition = a_condition;
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a->last_event = -1;
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a->running = a_condition != NULL && a_condition != save_events;
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a->running |= a_event != -1;
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memset(&a->flags, 0, sizeof a->flags);
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b->next_event = b_event;
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b->next_condition = b_condition;
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b->last_event = -1;
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b->running = b_condition != NULL && b_condition != save_events;
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b->running |= b_event != -1;
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memset(&b->flags, 0, sizeof b->flags);
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c->next_event = c_event;
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c->next_condition = c_condition;
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c->last_event = -1;
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c->running = c_condition != NULL && c_condition != save_events;
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c->running |= c_event != -1;
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memset(&c->flags, 0, sizeof c->flags);
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for (; a->running || b->running || c->running;) {
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su_root_step(ctx->root, 100);
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}
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}
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void run_ab_until(struct context *ctx,
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nua_event_t a_event, condition_function *a_condition,
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nua_event_t b_event, condition_function *b_condition)
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{
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run_abc_until(ctx, a_event, a_condition, b_event, b_condition, -1, NULL);
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}
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void run_bc_until(struct context *ctx,
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nua_event_t b_event, condition_function *b_condition,
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nua_event_t c_event, condition_function *c_condition)
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{
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run_abc_until(ctx, -1, NULL, b_event, b_condition, c_event, c_condition);
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}
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int run_a_until(struct context *ctx,
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nua_event_t a_event,
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condition_function *a_condition)
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{
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run_abc_until(ctx, a_event, a_condition, -1, NULL, -1, NULL);
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return ctx->a.last_event;
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}
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int run_b_until(struct context *ctx,
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nua_event_t b_event,
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condition_function *b_condition)
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{
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run_abc_until(ctx, -1, NULL, b_event, b_condition, -1, NULL);
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return ctx->b.last_event;
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}
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int run_c_until(struct context *ctx,
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nua_event_t event,
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condition_function *condition)
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{
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run_abc_until(ctx, -1, NULL, -1, NULL, event, condition);
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return ctx->c.last_event;
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}
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#define OPERATION(X, x) \
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int X(struct endpoint *ep, \
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struct call *call, nua_handle_t *nh, \
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tag_type_t tag, tag_value_t value, \
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...) \
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{ \
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ta_list ta; \
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ta_start(ta, tag, value); \
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\
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if (ep->printer) \
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ep->printer(-1, "nua_" #x, 0, "", ep->nua, ep->ctx, ep, \
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nh, call, NULL, ta_args(ta)); \
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\
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nua_##x(nh, ta_tags(ta)); \
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\
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ta_end(ta); \
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return 0; \
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} extern int dummy
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OPERATION(INVITE, invite);
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OPERATION(ACK, ack);
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OPERATION(BYE, bye);
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OPERATION(CANCEL, cancel);
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OPERATION(AUTHENTICATE, authenticate);
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OPERATION(UPDATE, update);
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OPERATION(INFO, info);
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OPERATION(PRACK, prack);
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OPERATION(REFER, refer);
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OPERATION(MESSAGE, message);
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OPERATION(METHOD, method);
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OPERATION(OPTIONS, options);
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OPERATION(PUBLISH, publish);
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OPERATION(UNPUBLISH, unpublish);
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OPERATION(REGISTER, register);
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OPERATION(UNREGISTER, unregister);
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OPERATION(SUBSCRIBE, subscribe);
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OPERATION(UNSUBSCRIBE, unsubscribe);
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OPERATION(NOTIFY, notify);
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OPERATION(NOTIFIER, notifier);
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OPERATION(TERMINATE, terminate);
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OPERATION(AUTHORIZE, authorize);
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/* Respond via endpoint and handle */
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int RESPOND(struct endpoint *ep,
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struct call *call,
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nua_handle_t *nh,
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int status, char const *phrase,
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tag_type_t tag, tag_value_t value,
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...)
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{
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ta_list ta;
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ta_start(ta, tag, value);
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if (ep->printer)
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ep->printer(-1, "nua_respond", status, phrase, ep->nua, ep->ctx, ep,
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nh, call, NULL, ta_args(ta));
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nua_respond(nh, status, phrase, ta_tags(ta));
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ta_end(ta);
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return 0;
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}
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/* Destroy a handle */
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int DESTROY(struct endpoint *ep,
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struct call *call,
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nua_handle_t *nh)
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{
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if (ep->printer)
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ep->printer(-1, "nua_handle_destroy", 0, "", ep->nua, ep->ctx, ep,
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nh, call, NULL, NULL);
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nua_handle_destroy(nh);
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if (call->nh == nh)
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call->nh = NULL;
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return 0;
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}
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/* Reject all but currently used handles */
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struct call *check_handle(struct endpoint *ep,
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struct call *call,
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nua_handle_t *nh,
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int status, char const *phrase)
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{
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if (call)
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return call;
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if (status)
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RESPOND(ep, call, nh, status, phrase, TAG_END());
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nua_handle_destroy(nh);
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return NULL;
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}
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/* Save nua event in call-specific list */
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int save_event_in_list(struct context *ctx,
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nua_event_t nevent,
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struct endpoint *ep,
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struct call *call)
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{
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struct eventlist *list;
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struct event *e;
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int action = ep->is_special(nevent);
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if (action == event_is_extra)
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return 0;
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else if (action == event_is_special || call == NULL)
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list = ep->specials;
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else if (call->events)
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list = call->events;
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else
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list = ep->events;
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e = su_zalloc(ctx->home, sizeof *e);
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if (!e) { perror("su_zalloc"), abort(); }
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if (!nua_save_event(ep->nua, e->saved_event)) {
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su_free(ctx->home, e);
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return -1;
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}
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*(e->prev = list->tail) = e; list->tail = &e->next;
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e->call = call;
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e->data = nua_event_data(e->saved_event);
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return action;
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}
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/* Free nua events from endpoint list */
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void free_events_in_list(struct context *ctx,
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struct eventlist *list)
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{
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struct event *e;
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while ((e = list->head)) {
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if ((*e->prev = e->next))
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e->next->prev = e->prev;
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nua_destroy_event(e->saved_event);
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su_free(ctx->home, e);
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}
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list->tail = &list->head;
|
|
}
|
|
|
|
void free_event_in_list(struct context *ctx,
|
|
struct eventlist *list,
|
|
struct event *e)
|
|
{
|
|
if (e) {
|
|
if ((*e->prev = e->next))
|
|
e->next->prev = e->prev;
|
|
nua_destroy_event(e->saved_event);
|
|
su_free(ctx->home, e);
|
|
|
|
if (list->head == NULL)
|
|
list->tail = &list->head;
|
|
}
|
|
}
|
|
|
|
struct event *event_by_type(struct event *e, nua_event_t etype)
|
|
{
|
|
for (; e; e = e->next) {
|
|
if (e->data->e_event == etype)
|
|
break;
|
|
}
|
|
|
|
return e;
|
|
}
|
|
|
|
size_t count_events(struct event const *e)
|
|
{
|
|
size_t n;
|
|
|
|
for (n = 0; e; e = e->next)
|
|
n++;
|
|
|
|
return n;
|
|
}
|
|
|
|
|
|
int is_special(nua_event_t e)
|
|
{
|
|
if (e == nua_i_active || e == nua_i_terminated)
|
|
return event_is_extra;
|
|
if (e == nua_i_outbound)
|
|
return event_is_special;
|
|
|
|
return event_is_normal;
|
|
}
|
|
|
|
void
|
|
endpoint_init(struct context *ctx, struct endpoint *e, char id)
|
|
{
|
|
e->name[0] = id;
|
|
e->ctx = ctx;
|
|
|
|
e->is_special = is_special;
|
|
|
|
call_init(e->call);
|
|
call_init(e->reg);
|
|
eventlist_init(e->events);
|
|
eventlist_init(e->specials);
|
|
}
|
|
|
|
void nolog(void *stream, char const *fmt, va_list ap) {}
|