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@ -93,10 +93,11 @@ void ThresholdDestroy(void)
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#define SID 0
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#define GID 1
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#define TRACK 2
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#define REV 2
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#define TRACK 3
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typedef struct ThresholdEntry_ {
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uint32_t key[3];
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uint32_t key[4];
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uint32_t tv_timeout; /**< Timeout for new_action (for rate_filter)
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its not "seconds", that define the time interval */
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@ -522,14 +523,15 @@ static FlowVarThreshold *FlowThresholdVarGet(Flow *f)
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return NULL;
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}
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static ThresholdEntry *ThresholdFlowLookupEntry(Flow *f, uint32_t sid, uint32_t gid)
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static ThresholdEntry *ThresholdFlowLookupEntry(Flow *f, uint32_t sid, uint32_t gid, uint32_t rev)
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{
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FlowVarThreshold *t = FlowThresholdVarGet(f);
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if (t == NULL)
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return NULL;
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for (FlowThresholdEntryList *e = t->thresholds; e != NULL; e = e->next) {
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if (e->threshold.key[SID] == sid && e->threshold.key[GID] == gid) {
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if (e->threshold.key[SID] == sid && e->threshold.key[GID] == gid &&
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e->threshold.key[REV] == rev) {
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return &e->threshold;
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}
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}
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@ -617,10 +619,11 @@ static inline void RateFilterSetAction(PacketAlert *pa, uint8_t new_action)
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}
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static int ThresholdSetup(const DetectThresholdData *td, ThresholdEntry *te,
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const SCTime_t packet_time, const uint32_t sid, const uint32_t gid)
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const SCTime_t packet_time, const uint32_t sid, const uint32_t gid, const uint32_t rev)
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{
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te->key[SID] = sid;
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te->key[GID] = gid;
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te->key[REV] = rev;
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te->key[TRACK] = td->track;
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te->seconds = td->seconds;
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@ -774,6 +777,7 @@ static int ThresholdGetFromHash(struct Thresholds *tctx, const Packet *p, const
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memset(&lookup, 0, sizeof(lookup));
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lookup.key[SID] = s->id;
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lookup.key[GID] = s->gid;
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lookup.key[REV] = s->rev;
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lookup.key[TRACK] = td->track;
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if (td->track == TRACK_SRC) {
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COPY_ADDRESS(&p->src, &lookup.addr);
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@ -807,7 +811,7 @@ static int ThresholdGetFromHash(struct Thresholds *tctx, const Packet *p, const
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ThresholdEntry *te = res.data->data;
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if (res.is_new) {
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// new threshold, set up
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r = ThresholdSetup(td, te, p->ts, s->id, s->gid);
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r = ThresholdSetup(td, te, p->ts, s->id, s->gid, s->rev);
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} else {
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// existing, check/update
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r = ThresholdCheckUpdate(td, te, p, s->id, pa);
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@ -826,11 +830,11 @@ static int ThresholdGetFromHash(struct Thresholds *tctx, const Packet *p, const
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* \retval 0 no match
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*/
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static int ThresholdHandlePacketFlow(Flow *f, Packet *p, const DetectThresholdData *td,
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uint32_t sid, uint32_t gid, PacketAlert *pa)
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uint32_t sid, uint32_t gid, uint32_t rev, PacketAlert *pa)
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{
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int ret = 0;
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ThresholdEntry *found = ThresholdFlowLookupEntry(f, sid, gid);
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SCLogDebug("found %p sid %u gid %u", found, sid, gid);
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ThresholdEntry *found = ThresholdFlowLookupEntry(f, sid, gid, rev);
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SCLogDebug("found %p sid %u gid %u rev %u", found, sid, gid, rev);
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if (found == NULL) {
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FlowThresholdEntryList *new = SCCalloc(1, sizeof(*new));
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@ -838,7 +842,7 @@ static int ThresholdHandlePacketFlow(Flow *f, Packet *p, const DetectThresholdDa
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return 0;
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// new threshold, set up
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ret = ThresholdSetup(td, &new->threshold, p->ts, sid, gid);
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ret = ThresholdSetup(td, &new->threshold, p->ts, sid, gid, rev);
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if (AddEntryToFlow(f, new, p->ts) == -1) {
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SCFree(new);
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@ -899,7 +903,7 @@ int PacketAlertThreshold(DetectEngineCtx *de_ctx, DetectEngineThreadCtx *det_ctx
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ret = ThresholdGetFromHash(&ctx, p, s, td, pa);
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} else if (td->track == TRACK_FLOW) {
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if (p->flow) {
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ret = ThresholdHandlePacketFlow(p->flow, p, td, s->id, s->gid, pa);
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ret = ThresholdHandlePacketFlow(p->flow, p, td, s->id, s->gid, s->rev, pa);
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}
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}
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