mirror of
https://github.com/BlackLight/Snort_AIPreproc.git
synced 2024-11-24 04:35:11 +01:00
310 lines
8.5 KiB
C
310 lines
8.5 KiB
C
/*
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* =====================================================================================
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*
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* Filename: stream.c
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*
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* Description: It manages the streams of TCP packets, keeping them in a hashtable
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*
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* Version: 0.1
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* Created: 30/07/2010 15:02:54
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* Revision: none
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* Compiler: gcc
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*
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* Author: BlackLight (http://0x00.ath.cx), <blacklight@autistici.org>
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* Licence: GNU GPL v.3
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* Company: DO WHAT YOU WANT CAUSE A PIRATE IS FREE, YOU ARE A PIRATE!
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*
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* =====================================================================================
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*/
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#include "spp_ai.h"
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#include <pthread.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <unistd.h>
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#include <time.h>
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PRIVATE struct pkt_info *hash = NULL;
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PRIVATE time_t start_time = 0;
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/** pthread mutex for managing the access of multiple readers/writers to the hash table */
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PRIVATE pthread_mutex_t hash_mutex = PTHREAD_MUTEX_INITIALIZER;
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/** \defgroup stream Manage streams, sorting them into hash tables and linked lists
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* @{ */
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/**
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* \brief Remove a stream from the hash table (private function)
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* \param stream Stream to be removed
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*/
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PRIVATE void
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__AI_stream_free ( struct pkt_info* stream )
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{
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struct pkt_info *tmp = NULL;
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char ip [ INET_ADDRSTRLEN ];
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if ( !stream || !hash || HASH_COUNT(hash) == 0 )
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return;
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pthread_mutex_lock ( &hash_mutex );
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HASH_FIND ( hh, hash, &(stream->key), sizeof(struct pkt_key), tmp );
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pthread_mutex_unlock ( &hash_mutex );
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if ( !tmp )
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return;
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if ( stream->pkt )
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{
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if ( !stream->pkt->ip4_header )
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return;
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if ( stream->pkt->ip4_header->proto != IPPROTO_TCP || !stream->pkt->tcp_header )
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return;
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}
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inet_ntop ( AF_INET, &(stream->key.src_ip), ip, INET_ADDRSTRLEN );
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pthread_mutex_lock ( &hash_mutex );
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HASH_DEL ( hash, stream );
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pthread_mutex_unlock ( &hash_mutex );
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while ( stream )
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{
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tmp = stream->next;
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if ( stream->pkt )
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{
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free ( stream->pkt );
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stream->pkt = NULL;
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}
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free ( stream );
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stream = tmp;
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}
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stream = NULL;
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} /* ----- end of function __AI_stream_free ----- */
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/**
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* \brief Thread called for cleaning up the hash table from the traffic streams older than
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* a certain threshold
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*/
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void*
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AI_hashcleanup_thread ( void* arg )
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{
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struct pkt_info *h, *stream;
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time_t max_timestamp;
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while ( 1 ) {
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/* Sleep for the specified number of seconds */
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sleep ( config->hashCleanupInterval );
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/* If the hash is empty, come back to sleep */
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if ( !hash || !HASH_COUNT(hash) )
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continue;
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/* Check all the streams in the hash */
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for ( h = hash; h; h = (struct pkt_info*) h->next ) {
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if ( h->observed ) continue;
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max_timestamp = 0;
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/* Find the maximum timestamp in the flow */
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for ( stream = h; stream; stream = (struct pkt_info*) stream->next ) {
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if ( stream->timestamp > max_timestamp )
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max_timestamp = stream->timestamp;
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}
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/* If the most recent packet in the stream is older than the specified threshold, remove that stream */
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if ( time(NULL) - max_timestamp > config->streamExpireInterval ) {
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stream = h;
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if ( stream )
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{
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/* XXX This, sometimes, randomly, leads to the crash of the module.
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* WHY??? Why can't computer science be deterministic, and if a
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* certain not-NULL stream exists in a not-NULL hash table why
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* should there be a crash, one day yes and the next one no? Until
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* I won't find an answer to these enigmatic questions, I will leave
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* this code commented, so if a certain stream goes timeout it won't
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* be removed. I'm sorry but it's not my fault. Ask the karma about this */
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/* __AI_stream_free ( stream ); */
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}
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}
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}
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}
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/* Hey we'll never reach this point unless 1 becomes != 1, but I have to place it
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* for letting not gcc annoy us */
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pthread_exit ((void*) 0);
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return (void*) 0;
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} /* ----- end of function AI_hashcleanup_thread ----- */
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/**
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* \brief Function called for appending a new packet to the hash table,
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* creating a new stream or appending it to an existing stream
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* \param pkt Packet to be appended
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*/
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void
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AI_pkt_enqueue ( SFSnortPacket* pkt )
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{
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struct pkt_key key;
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struct pkt_info *info;
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struct pkt_info *tmp;
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struct pkt_info *found = NULL;
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if ( start_time == 0 )
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start_time = time (NULL);
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/* If this is not an IP and/or TCP packet, it's not for me */
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if ( !( pkt->ip4_header && pkt->tcp_header ))
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return;
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if ( !( info = (struct pkt_info*) malloc( sizeof(struct pkt_info) )) )
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AI_fatal_err ( "Fatal dynamic memory allocation error", __FILE__, __LINE__ );
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memset ( &key, 0, sizeof(struct pkt_key));
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key.src_ip = pkt->ip4_header->source.s_addr;
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key.dst_port = pkt->tcp_header->destination_port;
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info->key = key;
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info->timestamp = time(NULL);
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info->observed = false;
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info->next = NULL;
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if ( !( info->pkt = (SFSnortPacket*) malloc ( sizeof (SFSnortPacket) )) )
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AI_fatal_err ( "Fatal dynamic memory allocation error", __FILE__, __LINE__ );
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memcpy ( info->pkt, pkt, sizeof (SFSnortPacket) );
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if ( hash ) {
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pthread_mutex_lock ( &hash_mutex );
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HASH_FIND ( hh, hash, &key, sizeof(struct pkt_key), found );
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pthread_mutex_unlock ( &hash_mutex );
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}
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/* If there is already an element of this traffic stream in my hash table,
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* append the packet just received to this stream*/
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if ( found ) {
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/* If the current packet contains a RST, just deallocate the stream */
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if ( info->pkt->tcp_header->flags & TCPHEADER_RST ) {
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pthread_mutex_lock ( &hash_mutex );
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HASH_FIND ( hh, hash, &key, sizeof(struct pkt_key), found );
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pthread_mutex_unlock ( &hash_mutex );
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if ( found ) {
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if ( !found->observed ) {
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__AI_stream_free ( found );
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}
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}
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} else {
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tmp = NULL;
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for ( ; found->next; found = found->next ) {
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/* If the sequence number of the next packet in the stream
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* is bigger than the sequence number of the current packet,
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* place the current packet before that */
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if ( ntohl( found->next->pkt->tcp_header->sequence ) >
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ntohl( info->pkt->tcp_header->sequence ) ) {
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tmp = found->next;
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found->next = info;
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info->next = tmp;
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break;
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}
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}
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if ( !tmp ) {
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found->next = info;
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}
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/* If the current packet contains an ACK and the latest one
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* in this stream contained a FIN, then the communication
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* on this stream is over */
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if ( found->pkt->tcp_header->flags & TCPHEADER_FIN ) {
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if ( info->pkt->tcp_header->flags & TCPHEADER_ACK ) {
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pthread_mutex_unlock ( &hash_mutex );
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HASH_FIND ( hh, hash, &key, sizeof(struct pkt_key), found );
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pthread_mutex_unlock ( &hash_mutex );
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if ( found ) {
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if ( !found->observed ) {
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__AI_stream_free ( found );
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}
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}
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}
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}
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}
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} else {
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/* If the packet contains the ACK flag, no payload and it is
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* associated to no active stream, just ignore it */
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/* if ( pkt->tcp_header->flags & TCPHEADER_ACK ) { */
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/* return; */
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/* } */
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/* If there is no stream associated to this packet, create
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* a new node in the hash table */
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pthread_mutex_lock ( &hash_mutex );
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HASH_ADD ( hh, hash, key, sizeof(struct pkt_key), info );
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pthread_mutex_unlock ( &hash_mutex );
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}
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return;
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} /* ----- end of function AI_pkt_enqueue ----- */
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/**
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* \brief Get a TCP stream by key
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* \param key Key of the stream to be picked up (struct pkt_key)
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* \return A pkt_info pointer to the stream if found, NULL otherwise
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*/
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struct pkt_info*
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AI_get_stream_by_key ( struct pkt_key key )
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{
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struct pkt_info *info = NULL;
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pthread_mutex_lock ( &hash_mutex );
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HASH_FIND ( hh, hash, &key, sizeof (struct pkt_key), info );
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pthread_mutex_unlock ( &hash_mutex );
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/* If no stream was found with that key, return */
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if ( info == NULL )
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return NULL;
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/* If the timestamp of the stream is older than the start time, return */
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if ( info->timestamp < start_time )
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return NULL;
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return info;
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} /* ----- end of function AI_get_stream_by_key ----- */
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/**
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* \brief Set the flag "observed" on a stream associated to a security alert, so that it won't be removed from the hash table
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* \param key Key of the stream to be set as "observed"
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*/
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void
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AI_set_stream_observed ( struct pkt_key key )
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{
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struct pkt_info *info = NULL;
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pthread_mutex_lock ( &hash_mutex );
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HASH_FIND ( hh, hash, &key, sizeof (struct pkt_key), info );
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pthread_mutex_unlock ( &hash_mutex );
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if ( info == NULL )
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return;
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pthread_mutex_lock ( &hash_mutex );
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info->observed = true;
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pthread_mutex_unlock ( &hash_mutex );
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} /* ----- end of function AI_set_stream_observed ----- */
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/** @} */
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