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573 lines
22 KiB
C
573 lines
22 KiB
C
/* Copyright (C) 2007-2011 Open Information Security Foundation
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*
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* You can copy, redistribute or modify this Program under the terms of
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* the GNU General Public License version 2 as published by the Free
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* Software Foundation.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* version 2 along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
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* 02110-1301, USA.
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*/
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/**
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* \file
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*
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* \author Anoop Saldanha <anoopsaldanha@gmail.com>
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*
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* Performs content inspection on any buffer supplied.
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*/
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#include "suricata-common.h"
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#include "suricata.h"
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#include "decode.h"
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#include "detect.h"
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#include "detect-engine.h"
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#include "detect-parse.h"
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#include "detect-content.h"
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#include "detect-pcre.h"
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#include "detect-isdataat.h"
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#include "detect-bytetest.h"
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#include "detect-bytejump.h"
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#include "detect-byte-extract.h"
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#include "detect-replace.h"
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#include "detect-engine-content-inspection.h"
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#include "detect-uricontent.h"
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#include "detect-urilen.h"
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#include "detect-luajit.h"
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#include "app-layer-dcerpc.h"
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#include "util-spm.h"
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#include "util-spm-bm.h"
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#include "util-debug.h"
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#include "util-print.h"
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#include "util-unittest.h"
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#include "util-unittest-helper.h"
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#include "util-profiling.h"
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/**
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* \brief Run the actual payload match functions
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*
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* The following keywords are inspected:
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* - content, including all the http and dce modified contents
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* - isdaatat
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* - pcre
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* - bytejump
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* - bytetest
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* - byte_extract
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* - urilen
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* -
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*
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* All keywords are evaluated against the buffer with buffer_len.
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*
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* For accounting the last match in relative matching the
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* det_ctx->buffer_offset int is used.
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*
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* \param de_ctx Detection engine context
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* \param det_ctx Detection engine thread context
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* \param s Signature to inspect
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* \param sm SigMatch to inspect
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* \param f Flow (for pcre flowvar storage)
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* \param buffer Ptr to the buffer to inspect
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* \param buffer_len Length of the payload
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* \param stream_start_offset Indicates the start of the current buffer in
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* the whole buffer stream inspected. This
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* applies if the current buffer is inspected
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* in chunks.
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* \param inspection_mode Refers to the engine inspection mode we are currently
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* inspecting. Can be payload, stream, one of the http
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* buffer inspection modes or dce inspection mode.
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* \param data Used to send some custom data. For example in
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* payload inspection mode, data contains packet ptr,
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* and under dce inspection mode, contains dce state.
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*
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* \retval 0 no match
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* \retval 1 match
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*/
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int DetectEngineContentInspection(DetectEngineCtx *de_ctx, DetectEngineThreadCtx *det_ctx,
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Signature *s, SigMatch *sm,
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Flow *f,
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uint8_t *buffer, uint32_t buffer_len,
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uint32_t stream_start_offset,
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uint8_t inspection_mode, void *data)
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{
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SCEnter();
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KEYWORD_PROFILING_START;
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det_ctx->inspection_recursion_counter++;
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if (det_ctx->inspection_recursion_counter == de_ctx->inspection_recursion_limit) {
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det_ctx->discontinue_matching = 1;
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KEYWORD_PROFILING_END(det_ctx, sm->type, 0);
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SCReturnInt(0);
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}
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if (sm == NULL || buffer_len == 0) {
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KEYWORD_PROFILING_END(det_ctx, sm->type, 0);
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SCReturnInt(0);
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}
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/* \todo unify this which is phase 2 of payload inspection unification */
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if (sm->type == DETECT_CONTENT) {
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DetectContentData *cd = (DetectContentData *)sm->ctx;
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SCLogDebug("inspecting content %"PRIu32" buffer_len %"PRIu32, cd->id, buffer_len);
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/* we might have already have this content matched by the mpm.
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* (if there is any other reason why we'd want to avoid checking
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* it here, please fill it in) */
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//if (cd->flags & DETECT_CONTENT_NO_DOUBLE_INSPECTION_REQUIRED) {
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// goto match;
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//}
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/* rule parsers should take care of this */
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#ifdef DEBUG
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BUG_ON(cd->depth != 0 && cd->depth <= cd->offset);
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#endif
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/* search for our pattern, checking the matches recursively.
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* if we match we look for the next SigMatch as well */
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uint8_t *found = NULL;
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uint32_t offset = 0;
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uint32_t depth = buffer_len;
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uint32_t prev_offset = 0; /**< used in recursive searching */
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uint32_t prev_buffer_offset = det_ctx->buffer_offset;
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do {
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if ((cd->flags & DETECT_CONTENT_DISTANCE) ||
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(cd->flags & DETECT_CONTENT_WITHIN)) {
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SCLogDebug("det_ctx->buffer_offset %"PRIu32, det_ctx->buffer_offset);
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offset = prev_buffer_offset;
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depth = buffer_len;
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int distance = cd->distance;
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if (cd->flags & DETECT_CONTENT_DISTANCE) {
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if (cd->flags & DETECT_CONTENT_DISTANCE_BE) {
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distance = det_ctx->bj_values[cd->distance];
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}
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if (distance < 0 && (uint32_t)(abs(distance)) > offset)
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offset = 0;
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else
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offset += distance;
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SCLogDebug("cd->distance %"PRIi32", offset %"PRIu32", depth %"PRIu32,
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distance, offset, depth);
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}
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if (cd->flags & DETECT_CONTENT_WITHIN) {
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if (cd->flags & DETECT_CONTENT_WITHIN_BE) {
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if ((int32_t)depth > (int32_t)(prev_buffer_offset + det_ctx->bj_values[cd->within] + distance)) {
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depth = prev_buffer_offset + det_ctx->bj_values[cd->within] + distance;
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}
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} else {
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if ((int32_t)depth > (int32_t)(prev_buffer_offset + cd->within + distance)) {
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depth = prev_buffer_offset + cd->within + distance;
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}
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SCLogDebug("cd->within %"PRIi32", det_ctx->buffer_offset %"PRIu32", depth %"PRIu32,
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cd->within, prev_buffer_offset, depth);
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}
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if (stream_start_offset != 0 && prev_buffer_offset == 0) {
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if (depth <= stream_start_offset) {
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goto no_match;
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} else if (depth >= (stream_start_offset + buffer_len)) {
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;
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} else {
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depth = depth - stream_start_offset;
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}
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}
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}
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if (cd->flags & DETECT_CONTENT_DEPTH_BE) {
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if ((det_ctx->bj_values[cd->depth] + prev_buffer_offset) < depth) {
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depth = prev_buffer_offset + det_ctx->bj_values[cd->depth];
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}
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} else {
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if (cd->depth != 0) {
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if ((cd->depth + prev_buffer_offset) < depth) {
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depth = prev_buffer_offset + cd->depth;
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}
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SCLogDebug("cd->depth %"PRIu32", depth %"PRIu32, cd->depth, depth);
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}
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}
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if (cd->flags & DETECT_CONTENT_OFFSET_BE) {
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if (det_ctx->bj_values[cd->offset] > offset)
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offset = det_ctx->bj_values[cd->offset];
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} else {
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if (cd->offset > offset) {
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offset = cd->offset;
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SCLogDebug("setting offset %"PRIu32, offset);
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}
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}
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} else { /* implied no relative matches */
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/* set depth */
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if (cd->flags & DETECT_CONTENT_DEPTH_BE) {
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depth = det_ctx->bj_values[cd->depth];
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} else {
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if (cd->depth != 0) {
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depth = cd->depth;
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}
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}
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if (stream_start_offset != 0 && cd->flags & DETECT_CONTENT_DEPTH) {
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if (depth <= stream_start_offset) {
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goto no_match;
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} else if (depth >= (stream_start_offset + buffer_len)) {
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;
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} else {
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depth = depth - stream_start_offset;
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}
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}
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/* set offset */
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if (cd->flags & DETECT_CONTENT_OFFSET_BE)
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offset = det_ctx->bj_values[cd->offset];
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else
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offset = cd->offset;
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prev_buffer_offset = 0;
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}
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/* update offset with prev_offset if we're searching for
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* matches after the first occurence. */
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SCLogDebug("offset %"PRIu32", prev_offset %"PRIu32, offset, prev_offset);
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if (prev_offset != 0)
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offset = prev_offset;
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SCLogDebug("offset %"PRIu32", depth %"PRIu32, offset, depth);
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if (depth > buffer_len)
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depth = buffer_len;
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/* if offset is bigger than depth we can never match on a pattern.
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* We can however, "match" on a negated pattern. */
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if (offset > depth || depth == 0) {
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if (cd->flags & DETECT_CONTENT_NEGATED) {
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goto match;
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} else {
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goto no_match;
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}
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}
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uint8_t *sbuffer = buffer + offset;
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uint32_t sbuffer_len = depth - offset;
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uint32_t match_offset = 0;
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SCLogDebug("sbuffer_len %"PRIu32, sbuffer_len);
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#ifdef DEBUG
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BUG_ON(sbuffer_len > buffer_len);
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#endif
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/* \todo Add another optimization here. If cd->content_len is
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* greater than sbuffer_len found is anyways NULL */
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/* do the actual search */
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if (cd->flags & DETECT_CONTENT_NOCASE)
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found = BoyerMooreNocase(cd->content, cd->content_len, sbuffer, sbuffer_len, cd->bm_ctx->bmGs, cd->bm_ctx->bmBc);
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else
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found = BoyerMoore(cd->content, cd->content_len, sbuffer, sbuffer_len, cd->bm_ctx->bmGs, cd->bm_ctx->bmBc);
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/* next we evaluate the result in combination with the
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* negation flag. */
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SCLogDebug("found %p cd negated %s", found, cd->flags & DETECT_CONTENT_NEGATED ? "true" : "false");
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if (found == NULL && !(cd->flags & DETECT_CONTENT_NEGATED)) {
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goto no_match;
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} else if (found == NULL && (cd->flags & DETECT_CONTENT_NEGATED)) {
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goto match;
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} else if (found != NULL && (cd->flags & DETECT_CONTENT_NEGATED)) {
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SCLogDebug("content %"PRIu32" matched at offset %"PRIu32", but negated so no match", cd->id, match_offset);
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/* don't bother carrying recursive matches now, for preceding
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* relative keywords */
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if (DETECT_CONTENT_IS_SINGLE(cd))
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det_ctx->discontinue_matching = 1;
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goto no_match;
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} else {
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match_offset = (uint32_t)((found - buffer) + cd->content_len);
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SCLogDebug("content %"PRIu32" matched at offset %"PRIu32"", cd->id, match_offset);
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det_ctx->buffer_offset = match_offset;
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/* Match branch, add replace to the list if needed */
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if (cd->flags & DETECT_CONTENT_REPLACE) {
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if (inspection_mode == DETECT_ENGINE_CONTENT_INSPECTION_MODE_PAYLOAD) {
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/* we will need to replace content if match is confirmed */
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det_ctx->replist = DetectReplaceAddToList(det_ctx->replist, found, cd);
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} else {
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SCLogWarning(SC_ERR_INVALID_VALUE, "Can't modify payload without packet");
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}
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}
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if (!(cd->flags & DETECT_CONTENT_RELATIVE_NEXT)) {
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SCLogDebug("no relative match coming up, so this is a match");
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goto match;
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}
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/* bail out if we have no next match. Technically this is an
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* error, as the current cd has the DETECT_CONTENT_RELATIVE_NEXT
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* flag set. */
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if (sm->next == NULL) {
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goto no_match;
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}
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SCLogDebug("content %"PRIu32, cd->id);
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KEYWORD_PROFILING_END(det_ctx, sm->type, 1);
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/* see if the next buffer keywords match. If not, we will
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* search for another occurence of this content and see
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* if the others match then until we run out of matches */
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int r = DetectEngineContentInspection(de_ctx, det_ctx, s, sm->next, f, buffer, buffer_len, stream_start_offset, inspection_mode, data);
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if (r == 1) {
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SCReturnInt(1);
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}
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if (det_ctx->discontinue_matching)
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goto no_match;
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/* set the previous match offset to the start of this match + 1 */
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prev_offset = (match_offset - (cd->content_len - 1));
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SCLogDebug("trying to see if there is another match after prev_offset %"PRIu32, prev_offset);
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}
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} while(1);
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} else if (sm->type == DETECT_ISDATAAT) {
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SCLogDebug("inspecting isdataat");
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DetectIsdataatData *id = (DetectIsdataatData *)sm->ctx;
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if (id->flags & ISDATAAT_RELATIVE) {
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if (det_ctx->buffer_offset + id->dataat > buffer_len) {
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SCLogDebug("det_ctx->buffer_offset + id->dataat %"PRIu32" > %"PRIu32, det_ctx->buffer_offset + id->dataat, buffer_len);
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if (id->flags & ISDATAAT_NEGATED)
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goto match;
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goto no_match;
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} else {
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SCLogDebug("relative isdataat match");
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if (id->flags & ISDATAAT_NEGATED)
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goto no_match;
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goto match;
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}
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} else {
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if (id->dataat < buffer_len) {
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SCLogDebug("absolute isdataat match");
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if (id->flags & ISDATAAT_NEGATED)
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goto no_match;
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goto match;
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} else {
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SCLogDebug("absolute isdataat mismatch, id->isdataat %"PRIu32", buffer_len %"PRIu32"", id->dataat, buffer_len);
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if (id->flags & ISDATAAT_NEGATED)
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goto match;
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goto no_match;
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}
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}
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} else if (sm->type == DETECT_PCRE) {
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SCLogDebug("inspecting pcre");
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DetectPcreData *pe = (DetectPcreData *)sm->ctx;
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uint32_t prev_buffer_offset = det_ctx->buffer_offset;
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uint32_t prev_offset = 0;
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int r = 0;
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det_ctx->pcre_match_start_offset = 0;
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do {
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Packet *p = NULL;
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if (inspection_mode == DETECT_ENGINE_CONTENT_INSPECTION_MODE_PAYLOAD)
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p = (Packet *)data;
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r = DetectPcrePayloadMatch(det_ctx, s, sm, p, f,
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buffer, buffer_len);
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if (r == 0) {
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goto no_match;
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}
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if (!(pe->flags & DETECT_PCRE_RELATIVE_NEXT)) {
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SCLogDebug("no relative match coming up, so this is a match");
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goto match;
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}
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KEYWORD_PROFILING_END(det_ctx, sm->type, 1);
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/* save it, in case we need to do a pcre match once again */
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prev_offset = det_ctx->pcre_match_start_offset;
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/* see if the next payload keywords match. If not, we will
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* search for another occurence of this pcre and see
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* if the others match, until we run out of matches */
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r = DetectEngineContentInspection(de_ctx, det_ctx, s, sm->next,
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f, buffer, buffer_len, stream_start_offset, inspection_mode, data);
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if (r == 1) {
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SCReturnInt(1);
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}
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if (det_ctx->discontinue_matching)
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goto no_match;
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det_ctx->buffer_offset = prev_buffer_offset;
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det_ctx->pcre_match_start_offset = prev_offset;
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} while (1);
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} else if (sm->type == DETECT_BYTETEST) {
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DetectBytetestData *btd = (DetectBytetestData *)sm->ctx;
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uint8_t flags = btd->flags;
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int32_t offset = btd->offset;
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uint64_t value = btd->value;
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if (flags & DETECT_BYTETEST_OFFSET_BE) {
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offset = det_ctx->bj_values[offset];
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}
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if (flags & DETECT_BYTETEST_VALUE_BE) {
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value = det_ctx->bj_values[value];
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}
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/* if we have dce enabled we will have to use the endianness
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* specified by the dce header */
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if (flags & DETECT_BYTETEST_DCE) {
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DCERPCState *dcerpc_state = (DCERPCState *)data;
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/* enable the endianness flag temporarily. once we are done
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* processing we reset the flags to the original value*/
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flags |= ((dcerpc_state->dcerpc.dcerpchdr.packed_drep[0] & 0x10) ?
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DETECT_BYTETEST_LITTLE: 0);
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}
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if (DetectBytetestDoMatch(det_ctx, s, sm, buffer, buffer_len, flags,
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offset, value) != 1) {
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goto no_match;
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}
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goto match;
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} else if (sm->type == DETECT_BYTEJUMP) {
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DetectBytejumpData *bjd = (DetectBytejumpData *)sm->ctx;
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uint8_t flags = bjd->flags;
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int32_t offset = bjd->offset;
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if (flags & DETECT_BYTEJUMP_OFFSET_BE) {
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offset = det_ctx->bj_values[offset];
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}
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/* if we have dce enabled we will have to use the endianness
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* specified by the dce header */
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if (flags & DETECT_BYTEJUMP_DCE) {
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DCERPCState *dcerpc_state = (DCERPCState *)data;
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/* enable the endianness flag temporarily. once we are done
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* processing we reset the flags to the original value*/
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flags |= ((dcerpc_state->dcerpc.dcerpchdr.packed_drep[0] & 0x10) ?
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DETECT_BYTEJUMP_LITTLE: 0);
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}
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if (DetectBytejumpDoMatch(det_ctx, s, sm, buffer, buffer_len,
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flags, offset) != 1) {
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goto no_match;
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}
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goto match;
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|
|
} else if (sm->type == DETECT_BYTE_EXTRACT) {
|
|
|
|
DetectByteExtractData *bed = (DetectByteExtractData *)sm->ctx;
|
|
uint8_t endian = bed->endian;
|
|
|
|
/* if we have dce enabled we will have to use the endianness
|
|
* specified by the dce header */
|
|
if ((bed->flags & DETECT_BYTE_EXTRACT_FLAG_ENDIAN) &&
|
|
endian == DETECT_BYTE_EXTRACT_ENDIAN_DCE) {
|
|
|
|
DCERPCState *dcerpc_state = (DCERPCState *)data;
|
|
/* enable the endianness flag temporarily. once we are done
|
|
* processing we reset the flags to the original value*/
|
|
endian |= ((dcerpc_state->dcerpc.dcerpchdr.packed_drep[0] == 0x10) ?
|
|
DETECT_BYTE_EXTRACT_ENDIAN_LITTLE : DETECT_BYTE_EXTRACT_ENDIAN_BIG);
|
|
}
|
|
|
|
if (DetectByteExtractDoMatch(det_ctx, sm, s, buffer,
|
|
buffer_len,
|
|
&det_ctx->bj_values[bed->local_id],
|
|
endian) != 1) {
|
|
goto no_match;
|
|
}
|
|
|
|
goto match;
|
|
|
|
/* we should never get here, but bail out just in case */
|
|
} else if (sm->type == DETECT_AL_URILEN) {
|
|
SCLogDebug("inspecting uri len");
|
|
|
|
int r = 0;
|
|
DetectUrilenData *urilend = (DetectUrilenData *) sm->ctx;
|
|
|
|
switch (urilend->mode) {
|
|
case DETECT_URILEN_EQ:
|
|
if (buffer_len == urilend->urilen1)
|
|
r = 1;
|
|
break;
|
|
case DETECT_URILEN_LT:
|
|
if (buffer_len < urilend->urilen1)
|
|
r = 1;
|
|
break;
|
|
case DETECT_URILEN_GT:
|
|
if (buffer_len > urilend->urilen1)
|
|
r = 1;
|
|
break;
|
|
case DETECT_URILEN_RA:
|
|
if (buffer_len > urilend->urilen1 &&
|
|
buffer_len < urilend->urilen2) {
|
|
r = 1;
|
|
}
|
|
break;
|
|
}
|
|
|
|
if (r == 1) {
|
|
goto match;
|
|
}
|
|
|
|
det_ctx->discontinue_matching = 0;
|
|
|
|
goto no_match;
|
|
#ifdef HAVE_LUAJIT
|
|
}
|
|
else if (sm->type == DETECT_LUAJIT) {
|
|
SCLogDebug("luajit starting");
|
|
/* for flowvar gets and sets we need to know the flow's lock status */
|
|
int need_flow_lock = 0;
|
|
if (inspection_mode <= DETECT_ENGINE_CONTENT_INSPECTION_MODE_STREAM)
|
|
need_flow_lock = 1;
|
|
|
|
if (DetectLuajitMatchBuffer(det_ctx, s, sm, buffer, buffer_len,
|
|
det_ctx->buffer_offset, f, need_flow_lock) != 1)
|
|
{
|
|
SCLogDebug("luajit no_match");
|
|
goto no_match;
|
|
}
|
|
SCLogDebug("luajit match");
|
|
goto match;
|
|
#endif
|
|
} else {
|
|
SCLogDebug("sm->type %u", sm->type);
|
|
#ifdef DEBUG
|
|
BUG_ON(1);
|
|
#endif
|
|
}
|
|
|
|
no_match:
|
|
KEYWORD_PROFILING_END(det_ctx, sm->type, 0);
|
|
SCReturnInt(0);
|
|
|
|
match:
|
|
/* this sigmatch matched, inspect the next one. If it was the last,
|
|
* the buffer portion of the signature matched. */
|
|
if (sm->next != NULL) {
|
|
KEYWORD_PROFILING_END(det_ctx, sm->type, 1);
|
|
int r = DetectEngineContentInspection(de_ctx, det_ctx, s, sm->next, f, buffer, buffer_len, stream_start_offset, inspection_mode, data);
|
|
SCReturnInt(r);
|
|
} else {
|
|
KEYWORD_PROFILING_END(det_ctx, sm->type, 1);
|
|
SCReturnInt(1);
|
|
}
|
|
}
|