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240 lines
6.9 KiB
C
240 lines
6.9 KiB
C
/* Copyright (C) 2016 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 Justin Viiret <justin.viiret@intel.com>
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*
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* Single pattern matcher that uses the Hyperscan regex matcher.
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*/
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#include "suricata-common.h"
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#include "util-hyperscan.h"
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#include "util-spm.h"
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#include "util-spm-hs.h"
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#include "util-debug.h"
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#ifdef BUILD_HYPERSCAN
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#include <hs.h>
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/**
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* \internal
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* \brief Hyperscan match callback, called by hs_scan.
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*/
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static int MatchEvent(unsigned int id, unsigned long long from,
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unsigned long long to, unsigned int flags, void *context)
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{
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uint64_t *match_offset = context;
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BUG_ON(*match_offset != UINT64_MAX);
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*match_offset = to;
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return 1; /* Terminate matching. */
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}
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typedef struct SpmHsCtx_ {
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hs_database_t *db;
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uint16_t needle_len;
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} SpmHsCtx;
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static void HSDestroyCtx(SpmCtx *ctx)
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{
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if (ctx == NULL) {
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return;
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}
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SpmHsCtx *sctx = ctx->ctx;
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if (sctx) {
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hs_free_database(sctx->db);
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SCFree(sctx);
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}
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SCFree(ctx);
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}
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static int HSBuildDatabase(const uint8_t *needle, uint16_t needle_len,
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int nocase, SpmHsCtx *sctx,
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SpmGlobalThreadCtx *global_thread_ctx)
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{
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char *expr = HSRenderPattern(needle, needle_len);
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if (expr == NULL) {
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SCLogDebug("HSRenderPattern returned NULL");
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return -1;
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}
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unsigned flags = nocase ? HS_FLAG_CASELESS : 0;
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hs_database_t *db = NULL;
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hs_compile_error_t *compile_err = NULL;
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hs_error_t err = hs_compile(expr, flags, HS_MODE_BLOCK, NULL, &db,
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&compile_err);
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if (err != HS_SUCCESS) {
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SCLogError("Unable to compile '%s' with Hyperscan, "
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"returned %d.",
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expr, err);
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exit(EXIT_FAILURE);
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}
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SCFree(expr);
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/* Update scratch for this database. */
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hs_scratch_t *scratch = global_thread_ctx->ctx;
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err = hs_alloc_scratch(db, &scratch);
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if (err != HS_SUCCESS) {
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/* If scratch allocation failed, this is not recoverable: other SPM
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* contexts may need this scratch space. */
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SCLogError("Unable to alloc scratch for Hyperscan, returned %d.", err);
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exit(EXIT_FAILURE);
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}
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global_thread_ctx->ctx = scratch;
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sctx->db = db;
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sctx->needle_len = needle_len;
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return 0;
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}
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static SpmCtx *HSInitCtx(const uint8_t *needle, uint16_t needle_len, int nocase,
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SpmGlobalThreadCtx *global_thread_ctx)
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{
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SpmCtx *ctx = SCMalloc(sizeof(SpmCtx));
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if (ctx == NULL) {
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SCLogDebug("Unable to alloc SpmCtx.");
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return NULL;
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}
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memset(ctx, 0, sizeof(SpmCtx));
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ctx->matcher = SPM_HS;
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SpmHsCtx *sctx = SCMalloc(sizeof(SpmHsCtx));
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if (sctx == NULL) {
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SCLogDebug("Unable to alloc SpmHsCtx.");
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SCFree(ctx);
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return NULL;
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}
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ctx->ctx = sctx;
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memset(sctx, 0, sizeof(SpmHsCtx));
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if (HSBuildDatabase(needle, needle_len, nocase, sctx,
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global_thread_ctx) != 0) {
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SCLogDebug("HSBuildDatabase failed.");
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HSDestroyCtx(ctx);
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return NULL;
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}
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return ctx;
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}
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static uint8_t *HSScan(const SpmCtx *ctx, SpmThreadCtx *thread_ctx,
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const uint8_t *haystack, uint32_t haystack_len)
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{
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const SpmHsCtx *sctx = ctx->ctx;
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hs_scratch_t *scratch = thread_ctx->ctx;
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if (unlikely(haystack_len == 0)) {
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return NULL;
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}
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uint64_t match_offset = UINT64_MAX;
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hs_error_t err = hs_scan(sctx->db, (const char *)haystack, haystack_len, 0,
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scratch, MatchEvent, &match_offset);
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if (err != HS_SUCCESS && err != HS_SCAN_TERMINATED) {
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/* An error value (other than HS_SCAN_TERMINATED) from hs_scan()
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* indicates that it was passed an invalid database or scratch region,
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* which is not something we can recover from at scan time. */
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SCLogError("Hyperscan returned fatal error %d.", err);
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exit(EXIT_FAILURE);
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}
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if (match_offset == UINT64_MAX) {
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return NULL;
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}
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BUG_ON(match_offset < sctx->needle_len);
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/* Note: existing API returns non-const ptr */
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return (uint8_t *)haystack + (match_offset - sctx->needle_len);
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}
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static SpmGlobalThreadCtx *HSInitGlobalThreadCtx(void)
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{
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SpmGlobalThreadCtx *global_thread_ctx = SCMalloc(sizeof(SpmGlobalThreadCtx));
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if (global_thread_ctx == NULL) {
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SCLogDebug("Unable to alloc SpmGlobalThreadCtx.");
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return NULL;
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}
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memset(global_thread_ctx, 0, sizeof(*global_thread_ctx));
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global_thread_ctx->matcher = SPM_HS;
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/* We store scratch in the HS-specific ctx. This will be initialized as
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* patterns are compiled by SpmInitCtx. */
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global_thread_ctx->ctx = NULL;
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return global_thread_ctx;
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}
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static void HSDestroyGlobalThreadCtx(SpmGlobalThreadCtx *global_thread_ctx)
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{
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if (global_thread_ctx == NULL) {
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return;
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}
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hs_free_scratch(global_thread_ctx->ctx);
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SCFree(global_thread_ctx);
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}
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static void HSDestroyThreadCtx(SpmThreadCtx *thread_ctx)
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{
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if (thread_ctx == NULL) {
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return;
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}
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hs_free_scratch(thread_ctx->ctx);
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SCFree(thread_ctx);
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}
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static SpmThreadCtx *HSMakeThreadCtx(const SpmGlobalThreadCtx *global_thread_ctx)
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{
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SpmThreadCtx *thread_ctx = SCMalloc(sizeof(SpmThreadCtx));
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if (thread_ctx == NULL) {
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SCLogDebug("Unable to alloc SpmThreadCtx.");
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return NULL;
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}
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memset(thread_ctx, 0, sizeof(*thread_ctx));
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thread_ctx->matcher = SPM_HS;
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if (global_thread_ctx->ctx != NULL) {
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hs_scratch_t *scratch = NULL;
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hs_error_t err = hs_clone_scratch(global_thread_ctx->ctx, &scratch);
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if (err != HS_SUCCESS) {
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SCLogError("Unable to clone scratch (error %d).", err);
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exit(EXIT_FAILURE);
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}
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thread_ctx->ctx = scratch;
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}
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return thread_ctx;
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}
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void SpmHSRegister(void)
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{
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spm_table[SPM_HS].name = "hs";
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spm_table[SPM_HS].InitGlobalThreadCtx = HSInitGlobalThreadCtx;
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spm_table[SPM_HS].DestroyGlobalThreadCtx = HSDestroyGlobalThreadCtx;
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spm_table[SPM_HS].MakeThreadCtx = HSMakeThreadCtx;
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spm_table[SPM_HS].DestroyThreadCtx = HSDestroyThreadCtx;
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spm_table[SPM_HS].InitCtx = HSInitCtx;
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spm_table[SPM_HS].DestroyCtx = HSDestroyCtx;
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spm_table[SPM_HS].Scan = HSScan;
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}
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#endif /* BUILD_HYPERSCAN */
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