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........ r369001 | kpfleming | 2012-06-15 10:56:08 -0500 (Fri, 15 Jun 2012) | 11 lines Add support-level indications to many more source files. Since we now have tools that scan through the source tree looking for files with specific support levels, we need to ensure that every file that is a component of a 'core' or 'extended' module (or the main Asterisk binary) is explicitly marked with its support level. This patch adds support-level indications to many more source files in tree, but avoids adding them to third-party libraries that are included in the tree and to source files that don't end up involved in Asterisk itself. ........ r369002 | kpfleming | 2012-06-15 10:57:14 -0500 (Fri, 15 Jun 2012) | 3 lines Add a script to enable finding source files without support-levels defined. ........ Merged revisions 369001-369002 from http://svn.asterisk.org/svn/asterisk/branches/1.8 ........ Merged revisions 369005 from http://svn.asterisk.org/svn/asterisk/branches/10 git-svn-id: https://origsvn.digium.com/svn/asterisk/trunk@369013 65c4cc65-6c06-0410-ace0-fbb531ad65f3
374 lines
12 KiB
C
374 lines
12 KiB
C
/*
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* Asterisk -- An open source telephony toolkit.
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*
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* Copyright (C) 2012, Digium, Inc.
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*
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* Michael L. Young <elgueromexicano@gmail.com>
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*
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* See http://www.asterisk.org for more information about
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* the Asterisk project. Please do not directly contact
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* any of the maintainers of this project for assistance;
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* the project provides a web site, mailing lists and IRC
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* channels for your use.
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*
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* This program is free software, distributed under the terms of
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* the GNU General Public License Version 2. See the LICENSE file
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* at the top of the source tree.
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*/
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/*!
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* \file
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*
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* \brief Generate security events in the SIP channel
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*
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* \author Michael L. Young <elgueromexicano@gmail.com>
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*/
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/*** MODULEINFO
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<support_level>core</support_level>
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***/
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#include "asterisk.h"
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ASTERISK_FILE_VERSION(__FILE__, "$Revision$")
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#include "include/sip.h"
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#include "include/security_events.h"
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/*! \brief Determine transport type used to receive request*/
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static enum ast_security_event_transport_type security_event_get_transport(const struct sip_pvt *p)
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{
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int res = 0;
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switch (p->socket.type) {
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case SIP_TRANSPORT_UDP:
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return AST_SECURITY_EVENT_TRANSPORT_UDP;
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case SIP_TRANSPORT_TCP:
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return AST_SECURITY_EVENT_TRANSPORT_TCP;
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case SIP_TRANSPORT_TLS:
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return AST_SECURITY_EVENT_TRANSPORT_TLS;
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}
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return res;
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}
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void sip_report_invalid_peer(const struct sip_pvt *p)
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{
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char session_id[32];
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struct ast_security_event_inval_acct_id inval_acct_id = {
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.common.event_type = AST_SECURITY_EVENT_INVAL_ACCT_ID,
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.common.version = AST_SECURITY_EVENT_INVAL_ACCT_ID_VERSION,
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.common.service = "SIP",
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.common.account_id = p->exten,
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.common.local_addr = {
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.addr = &p->ourip,
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.transport = security_event_get_transport(p)
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},
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.common.remote_addr = {
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.addr = &p->sa,
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.transport = security_event_get_transport(p)
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},
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.common.session_id = session_id,
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};
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snprintf(session_id, sizeof(session_id), "%p", p);
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ast_security_event_report(AST_SEC_EVT(&inval_acct_id));
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}
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void sip_report_failed_acl(const struct sip_pvt *p, const char *aclname)
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{
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char session_id[32];
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struct ast_security_event_failed_acl failed_acl_event = {
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.common.event_type = AST_SECURITY_EVENT_FAILED_ACL,
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.common.version = AST_SECURITY_EVENT_FAILED_ACL_VERSION,
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.common.service = "SIP",
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.common.account_id = p->exten,
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.common.local_addr = {
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.addr = &p->ourip,
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.transport = security_event_get_transport(p)
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},
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.common.remote_addr = {
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.addr = &p->sa,
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.transport = security_event_get_transport(p)
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},
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.common.session_id = session_id,
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.acl_name = aclname,
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};
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snprintf(session_id, sizeof(session_id), "%p", p);
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ast_security_event_report(AST_SEC_EVT(&failed_acl_event));
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}
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void sip_report_inval_password(const struct sip_pvt *p, const char *response_challenge, const char *response_hash)
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{
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char session_id[32];
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struct ast_security_event_inval_password inval_password = {
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.common.event_type = AST_SECURITY_EVENT_INVAL_PASSWORD,
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.common.version = AST_SECURITY_EVENT_INVAL_PASSWORD_VERSION,
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.common.service = "SIP",
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.common.account_id = p->exten,
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.common.local_addr = {
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.addr = &p->ourip,
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.transport = security_event_get_transport(p)
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},
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.common.remote_addr = {
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.addr = &p->sa,
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.transport = security_event_get_transport(p)
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},
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.common.session_id = session_id,
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.challenge = p->randdata,
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.received_challenge = response_challenge,
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.received_hash = response_hash,
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};
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snprintf(session_id, sizeof(session_id), "%p", p);
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ast_security_event_report(AST_SEC_EVT(&inval_password));
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}
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void sip_report_auth_success(const struct sip_pvt *p, uint32_t *using_password)
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{
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char session_id[32];
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struct ast_security_event_successful_auth successful_auth = {
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.common.event_type = AST_SECURITY_EVENT_SUCCESSFUL_AUTH,
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.common.version = AST_SECURITY_EVENT_SUCCESSFUL_AUTH_VERSION,
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.common.service = "SIP",
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.common.account_id = p->exten,
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.common.local_addr = {
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.addr = &p->ourip,
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.transport = security_event_get_transport(p)
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},
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.common.remote_addr = {
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.addr = &p->sa,
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.transport = security_event_get_transport(p)
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},
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.common.session_id = session_id,
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.using_password = using_password,
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};
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snprintf(session_id, sizeof(session_id), "%p", p);
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ast_security_event_report(AST_SEC_EVT(&successful_auth));
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}
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void sip_report_session_limit(const struct sip_pvt *p)
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{
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char session_id[32];
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struct ast_security_event_session_limit session_limit = {
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.common.event_type = AST_SECURITY_EVENT_SESSION_LIMIT,
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.common.version = AST_SECURITY_EVENT_SESSION_LIMIT_VERSION,
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.common.service = "SIP",
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.common.account_id = p->exten,
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.common.local_addr = {
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.addr = &p->ourip,
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.transport = security_event_get_transport(p)
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},
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.common.remote_addr = {
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.addr = &p->sa,
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.transport = security_event_get_transport(p)
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},
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.common.session_id = session_id,
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};
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snprintf(session_id, sizeof(session_id), "%p", p);
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ast_security_event_report(AST_SEC_EVT(&session_limit));
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}
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void sip_report_failed_challenge_response(const struct sip_pvt *p, const char *response, const char *expected_response)
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{
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char session_id[32];
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char account_id[256];
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struct ast_security_event_chal_resp_failed chal_resp_failed = {
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.common.event_type = AST_SECURITY_EVENT_CHAL_RESP_FAILED,
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.common.version = AST_SECURITY_EVENT_CHAL_RESP_FAILED_VERSION,
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.common.service = "SIP",
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.common.account_id = account_id,
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.common.local_addr = {
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.addr = &p->ourip,
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.transport = security_event_get_transport(p)
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},
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.common.remote_addr = {
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.addr = &p->sa,
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.transport = security_event_get_transport(p)
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},
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.common.session_id = session_id,
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.challenge = p->randdata,
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.response = response,
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.expected_response = expected_response,
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};
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if (!ast_strlen_zero(p->from)) { /* When dialing, show account making call */
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ast_copy_string(account_id, p->from, sizeof(account_id));
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} else {
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ast_copy_string(account_id, p->exten, sizeof(account_id));
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}
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snprintf(session_id, sizeof(session_id), "%p", p);
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ast_security_event_report(AST_SEC_EVT(&chal_resp_failed));
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}
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void sip_report_chal_sent(const struct sip_pvt *p)
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{
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char session_id[32];
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char account_id[256];
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struct ast_security_event_chal_sent chal_sent = {
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.common.event_type = AST_SECURITY_EVENT_CHAL_SENT,
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.common.version = AST_SECURITY_EVENT_CHAL_SENT_VERSION,
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.common.service = "SIP",
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.common.account_id = account_id,
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.common.local_addr = {
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.addr = &p->ourip,
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.transport = security_event_get_transport(p)
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},
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.common.remote_addr = {
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.addr = &p->sa,
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.transport = security_event_get_transport(p)
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},
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.common.session_id = session_id,
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.challenge = p->randdata,
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};
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if (!ast_strlen_zero(p->from)) { /* When dialing, show account making call */
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ast_copy_string(account_id, p->from, sizeof(account_id));
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} else {
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ast_copy_string(account_id, p->exten, sizeof(account_id));
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}
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snprintf(session_id, sizeof(session_id), "%p", p);
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ast_security_event_report(AST_SEC_EVT(&chal_sent));
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}
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void sip_report_inval_transport(const struct sip_pvt *p, const char *transport)
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{
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char session_id[32];
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struct ast_security_event_inval_transport inval_transport = {
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.common.event_type = AST_SECURITY_EVENT_INVAL_TRANSPORT,
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.common.version = AST_SECURITY_EVENT_INVAL_TRANSPORT_VERSION,
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.common.service = "SIP",
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.common.account_id = p->exten,
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.common.local_addr = {
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.addr = &p->ourip,
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.transport = security_event_get_transport(p)
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},
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.common.remote_addr = {
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.addr = &p->sa,
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.transport = security_event_get_transport(p)
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},
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.common.session_id = session_id,
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.transport = transport,
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};
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snprintf(session_id, sizeof(session_id), "%p", p);
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ast_security_event_report(AST_SEC_EVT(&inval_transport));
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}
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int sip_report_security_event(const struct sip_pvt *p, const struct sip_request *req, const int res) {
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struct sip_peer *peer_report;
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enum check_auth_result res_report = res;
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struct ast_str *buf;
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char *c;
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const char *authtoken;
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char *reqheader, *respheader;
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int result = 0;
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char aclname[256];
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struct digestkeys keys[] = {
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[K_RESP] = { "response=", "" },
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[K_URI] = { "uri=", "" },
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[K_USER] = { "username=", "" },
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[K_NONCE] = { "nonce=", "" },
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[K_LAST] = { NULL, NULL}
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};
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peer_report = sip_find_peer(p->exten, NULL, TRUE, FINDPEERS, FALSE, 0);
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switch(res_report) {
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case AUTH_DONT_KNOW:
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break;
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case AUTH_SUCCESSFUL:
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if (peer_report) {
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if (ast_strlen_zero(peer_report->secret) && ast_strlen_zero(peer_report->md5secret)) {
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sip_report_auth_success(p, (uint32_t *) 0);
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} else {
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sip_report_auth_success(p, (uint32_t *) 1);
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}
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}
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break;
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case AUTH_CHALLENGE_SENT:
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sip_report_chal_sent(p);
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break;
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case AUTH_SECRET_FAILED:
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case AUTH_USERNAME_MISMATCH:
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sip_auth_headers(WWW_AUTH, &respheader, &reqheader);
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authtoken = sip_get_header(req, reqheader);
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buf = ast_str_thread_get(&check_auth_buf, CHECK_AUTH_BUF_INITLEN);
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ast_str_set(&buf, 0, "%s", authtoken);
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c = buf->str;
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sip_digest_parser(c, keys);
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if (res_report == AUTH_SECRET_FAILED) {
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sip_report_inval_password(p, keys[K_NONCE].s, keys[K_RESP].s);
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} else {
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if (peer_report) {
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sip_report_failed_challenge_response(p, keys[K_USER].s, peer_report->username);
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}
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}
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break;
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case AUTH_NOT_FOUND:
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/* with sip_cfg.alwaysauthreject on, generates 2 events */
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sip_report_invalid_peer(p);
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break;
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case AUTH_FAKE_AUTH:
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sip_report_invalid_peer(p);
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break;
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case AUTH_UNKNOWN_DOMAIN:
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snprintf(aclname, sizeof(aclname), "domain_must_match");
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sip_report_failed_acl(p, aclname);
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break;
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case AUTH_PEER_NOT_DYNAMIC:
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snprintf(aclname, sizeof(aclname), "peer_not_dynamic");
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sip_report_failed_acl(p, aclname);
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break;
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case AUTH_ACL_FAILED:
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/* with sip_cfg.alwaysauthreject on, generates 2 events */
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snprintf(aclname, sizeof(aclname), "device_must_match_acl");
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sip_report_failed_acl(p, aclname);
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break;
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case AUTH_BAD_TRANSPORT:
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sip_report_inval_transport(p, sip_get_transport(req->socket.type));
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break;
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case AUTH_RTP_FAILED:
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break;
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case AUTH_SESSION_LIMIT:
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sip_report_session_limit(p);
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break;
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}
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if (peer_report) {
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sip_unref_peer(peer_report, "sip_report_security_event: sip_unref_peer: from handle_incoming");
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}
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return result;
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}
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