/* Copyright (C) 2007-2013 Open Information Security Foundation
*
* You can copy, redistribute or modify this Program under the terms of
* the GNU General Public License version 2 as published by the Free
* Software Foundation.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* version 2 along with this program; if not, write to the Free Software
* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
* 02110-1301, USA.
*/
/**
* \file
*
* \author Tom DeCanio
*
* JSON Drop log module to log the dropped packet information
*
*/
#include "suricata-common.h"
#include "debug.h"
#include "detect.h"
#include "flow.h"
#include "conf.h"
#include "threads.h"
#include "tm-threads.h"
#include "threadvars.h"
#include "util-debug.h"
#include "decode-ipv4.h"
#include "detect-parse.h"
#include "detect-engine.h"
#include "detect-engine-mpm.h"
#include "detect-reference.h"
#include "output.h"
#include "output-json.h"
#include "output-json-alert.h"
#include "output-json-drop.h"
#include "util-unittest.h"
#include "util-unittest-helper.h"
#include "util-classification-config.h"
#include "util-privs.h"
#include "util-print.h"
#include "util-proto-name.h"
#include "util-logopenfile.h"
#include "util-time.h"
#include "util-buffer.h"
#define MODULE_NAME "JsonDropLog"
#ifdef HAVE_LIBJANSSON
#define LOG_DROP_ALERTS 1
typedef struct JsonDropOutputCtx_ {
LogFileCtx *file_ctx;
uint8_t flags;
} JsonDropOutputCtx;
typedef struct JsonDropLogThread_ {
JsonDropOutputCtx *drop_ctx;
MemBuffer *buffer;
} JsonDropLogThread;
/* default to true as this has been the default behavior for a long time */
static int g_droplog_flows_start = 1;
/**
* \brief Log the dropped packets in netfilter format when engine is running
* in inline mode
*
* \param tv Pointer the current thread variables
* \param p Pointer the packet which is being logged
*
* \return return TM_EODE_OK on success
*/
static int DropLogJSON (JsonDropLogThread *aft, const Packet *p)
{
uint16_t proto = 0;
json_t *js = CreateJSONHeader((Packet *)p, 0, "drop");//TODO const
if (unlikely(js == NULL))
return TM_ECODE_OK;
json_t *djs = json_object();
if (unlikely(djs == NULL)) {
json_decref(js);
return TM_ECODE_OK;
}
/* reset */
MemBufferReset(aft->buffer);
if (PKT_IS_IPV4(p)) {
json_object_set_new(djs, "len", json_integer(IPV4_GET_IPLEN(p)));
json_object_set_new(djs, "tos", json_integer(IPV4_GET_IPTOS(p)));
json_object_set_new(djs, "ttl", json_integer(IPV4_GET_IPTTL(p)));
json_object_set_new(djs, "ipid", json_integer(IPV4_GET_IPID(p)));
proto = IPV4_GET_IPPROTO(p);
} else if (PKT_IS_IPV6(p)) {
json_object_set_new(djs, "len", json_integer(IPV6_GET_PLEN(p)));
json_object_set_new(djs, "tc", json_integer(IPV6_GET_CLASS(p)));
json_object_set_new(djs, "hoplimit", json_integer(IPV6_GET_HLIM(p)));
json_object_set_new(djs, "flowlbl", json_integer(IPV6_GET_FLOW(p)));
proto = IPV6_GET_L4PROTO(p);
}
switch (proto) {
case IPPROTO_TCP:
if (PKT_IS_TCP(p)) {
json_object_set_new(djs, "tcpseq", json_integer(TCP_GET_SEQ(p)));
json_object_set_new(djs, "tcpack", json_integer(TCP_GET_ACK(p)));
json_object_set_new(djs, "tcpwin", json_integer(TCP_GET_WINDOW(p)));
json_object_set_new(djs, "syn", TCP_ISSET_FLAG_SYN(p) ? json_true() : json_false());
json_object_set_new(djs, "ack", TCP_ISSET_FLAG_ACK(p) ? json_true() : json_false());
json_object_set_new(djs, "psh", TCP_ISSET_FLAG_PUSH(p) ? json_true() : json_false());
json_object_set_new(djs, "rst", TCP_ISSET_FLAG_RST(p) ? json_true() : json_false());
json_object_set_new(djs, "urg", TCP_ISSET_FLAG_URG(p) ? json_true() : json_false());
json_object_set_new(djs, "fin", TCP_ISSET_FLAG_FIN(p) ? json_true() : json_false());
json_object_set_new(djs, "tcpres", json_integer(TCP_GET_RAW_X2(p->tcph)));
json_object_set_new(djs, "tcpurgp", json_integer(TCP_GET_URG_POINTER(p)));
}
break;
case IPPROTO_UDP:
if (PKT_IS_UDP(p)) {
json_object_set_new(djs, "udplen", json_integer(UDP_GET_LEN(p)));
}
break;
case IPPROTO_ICMP:
if (PKT_IS_ICMPV4(p)) {
json_object_set_new(djs, "icmp_id", json_integer(ICMPV4_GET_ID(p)));
json_object_set_new(djs, "icmp_seq", json_integer(ICMPV4_GET_SEQ(p)));
} else if(PKT_IS_ICMPV6(p)) {
json_object_set_new(djs, "icmp_id", json_integer(ICMPV6_GET_ID(p)));
json_object_set_new(djs, "icmp_seq", json_integer(ICMPV6_GET_SEQ(p)));
}
break;
}
json_object_set_new(js, "drop", djs);
if (aft->drop_ctx->flags & LOG_DROP_ALERTS) {
int logged = 0;
int i;
for (i = 0; i < p->alerts.cnt; i++) {
const PacketAlert *pa = &p->alerts.alerts[i];
if (unlikely(pa->s == NULL)) {
continue;
}
if ((pa->action & (ACTION_REJECT|ACTION_REJECT_DST|ACTION_REJECT_BOTH)) ||
((pa->action & ACTION_DROP) && EngineModeIsIPS()))
{
AlertJsonHeader(p, pa, js);
logged = 1;
}
}
if (logged == 0) {
if (p->alerts.drop.action != 0) {
const PacketAlert *pa = &p->alerts.drop;
AlertJsonHeader(p, pa, js);
}
}
}
OutputJSONBuffer(js, aft->drop_ctx->file_ctx, &aft->buffer);
json_object_del(js, "drop");
json_object_clear(js);
json_decref(js);
return TM_ECODE_OK;
}
#define OUTPUT_BUFFER_SIZE 65535
static TmEcode JsonDropLogThreadInit(ThreadVars *t, const void *initdata, void **data)
{
JsonDropLogThread *aft = SCMalloc(sizeof(JsonDropLogThread));
if (unlikely(aft == NULL))
return TM_ECODE_FAILED;
memset(aft, 0, sizeof(*aft));
if(initdata == NULL)
{
SCLogDebug("Error getting context for EveLogDrop. \"initdata\" argument NULL");
SCFree(aft);
return TM_ECODE_FAILED;
}
aft->buffer = MemBufferCreateNew(OUTPUT_BUFFER_SIZE);
if (aft->buffer == NULL) {
SCFree(aft);
return TM_ECODE_FAILED;
}
/** Use the Ouptut Context (file pointer and mutex) */
aft->drop_ctx = ((OutputCtx *)initdata)->data;
*data = (void *)aft;
return TM_ECODE_OK;
}
static TmEcode JsonDropLogThreadDeinit(ThreadVars *t, void *data)
{
JsonDropLogThread *aft = (JsonDropLogThread *)data;
if (aft == NULL) {
return TM_ECODE_OK;
}
MemBufferFree(aft->buffer);
/* clear memory */
memset(aft, 0, sizeof(*aft));
SCFree(aft);
return TM_ECODE_OK;
}
static void JsonDropOutputCtxFree(JsonDropOutputCtx *drop_ctx)
{
if (drop_ctx != NULL) {
if (drop_ctx->file_ctx != NULL)
LogFileFreeCtx(drop_ctx->file_ctx);
SCFree(drop_ctx);
}
}
static void JsonDropLogDeInitCtx(OutputCtx *output_ctx)
{
OutputDropLoggerDisable();
JsonDropOutputCtx *drop_ctx = output_ctx->data;
JsonDropOutputCtxFree(drop_ctx);
SCFree(output_ctx);
}
static void JsonDropLogDeInitCtxSub(OutputCtx *output_ctx)
{
OutputDropLoggerDisable();
JsonDropOutputCtx *drop_ctx = output_ctx->data;
SCFree(drop_ctx);
SCLogDebug("cleaning up sub output_ctx %p", output_ctx);
SCFree(output_ctx);
}
#define DEFAULT_LOG_FILENAME "drop.json"
static OutputCtx *JsonDropLogInitCtx(ConfNode *conf)
{
if (OutputDropLoggerEnable() != 0) {
SCLogError(SC_ERR_CONF_YAML_ERROR, "only one 'drop' logger "
"can be enabled");
return NULL;
}
JsonDropOutputCtx *drop_ctx = SCCalloc(1, sizeof(*drop_ctx));
if (drop_ctx == NULL)
return NULL;
drop_ctx->file_ctx = LogFileNewCtx();
if (drop_ctx->file_ctx == NULL) {
JsonDropOutputCtxFree(drop_ctx);
return NULL;
}
if (SCConfLogOpenGeneric(conf, drop_ctx->file_ctx, DEFAULT_LOG_FILENAME, 1) < 0) {
JsonDropOutputCtxFree(drop_ctx);
return NULL;
}
OutputCtx *output_ctx = SCCalloc(1, sizeof(OutputCtx));
if (unlikely(output_ctx == NULL)) {
JsonDropOutputCtxFree(drop_ctx);
return NULL;
}
if (conf) {
const char *extended = ConfNodeLookupChildValue(conf, "alerts");
if (extended != NULL) {
if (ConfValIsTrue(extended)) {
drop_ctx->flags = LOG_DROP_ALERTS;
}
}
extended = ConfNodeLookupChildValue(conf, "flows");
if (extended != NULL) {
if (strcasecmp(extended, "start") == 0) {
g_droplog_flows_start = 1;
} else if (strcasecmp(extended, "all") == 0) {
g_droplog_flows_start = 0;
} else {
SCLogWarning(SC_ERR_CONF_YAML_ERROR, "valid options for "
"'flow' are 'start' and 'all'");
}
}
}
output_ctx->data = drop_ctx;
output_ctx->DeInit = JsonDropLogDeInitCtx;
return output_ctx;
}
static OutputCtx *JsonDropLogInitCtxSub(ConfNode *conf, OutputCtx *parent_ctx)
{
if (OutputDropLoggerEnable() != 0) {
SCLogError(SC_ERR_CONF_YAML_ERROR, "only one 'drop' logger "
"can be enabled");
return NULL;
}
AlertJsonThread *ajt = parent_ctx->data;
JsonDropOutputCtx *drop_ctx = SCCalloc(1, sizeof(*drop_ctx));
if (drop_ctx == NULL)
return NULL;
OutputCtx *output_ctx = SCCalloc(1, sizeof(OutputCtx));
if (unlikely(output_ctx == NULL)) {
JsonDropOutputCtxFree(drop_ctx);
return NULL;
}
if (conf) {
const char *extended = ConfNodeLookupChildValue(conf, "alerts");
if (extended != NULL) {
if (ConfValIsTrue(extended)) {
drop_ctx->flags = LOG_DROP_ALERTS;
}
}
extended = ConfNodeLookupChildValue(conf, "flows");
if (extended != NULL) {
if (strcasecmp(extended, "start") == 0) {
g_droplog_flows_start = 1;
} else if (strcasecmp(extended, "all") == 0) {
g_droplog_flows_start = 0;
} else {
SCLogWarning(SC_ERR_CONF_YAML_ERROR, "valid options for "
"'flow' are 'start' and 'all'");
}
}
}
drop_ctx->file_ctx = ajt->file_ctx;
output_ctx->data = drop_ctx;
output_ctx->DeInit = JsonDropLogDeInitCtxSub;
return output_ctx;
}
/**
* \brief Log the dropped packets when engine is running in inline mode
*
* \param tv Pointer the current thread variables
* \param data Pointer to the droplog struct
* \param p Pointer the packet which is being logged
*
* \retval 0 on succes
*/
static int JsonDropLogger(ThreadVars *tv, void *thread_data, const Packet *p)
{
JsonDropLogThread *td = thread_data;
int r = DropLogJSON(td, p);
if (r < 0)
return -1;
if (!g_droplog_flows_start)
return 0;
if (p->flow) {
if (p->flow->flags & FLOW_ACTION_DROP) {
if (PKT_IS_TOSERVER(p) && !(p->flow->flags & FLOW_TOSERVER_DROP_LOGGED))
p->flow->flags |= FLOW_TOSERVER_DROP_LOGGED;
else if (PKT_IS_TOCLIENT(p) && !(p->flow->flags & FLOW_TOCLIENT_DROP_LOGGED))
p->flow->flags |= FLOW_TOCLIENT_DROP_LOGGED;
}
}
return 0;
}
/**
* \brief Check if we need to drop-log this packet
*
* \param tv Pointer the current thread variables
* \param p Pointer the packet which is tested
*
* \retval bool TRUE or FALSE
*/
static int JsonDropLogCondition(ThreadVars *tv, const Packet *p)
{
if (!EngineModeIsIPS()) {
SCLogDebug("engine is not running in inline mode, so returning");
return FALSE;
}
if (PKT_IS_PSEUDOPKT(p)) {
SCLogDebug("drop log doesn't log pseudo packets");
return FALSE;
}
if (g_droplog_flows_start && p->flow != NULL) {
int ret = FALSE;
/* for a flow that will be dropped fully, log just once per direction */
if (p->flow->flags & FLOW_ACTION_DROP) {
if (PKT_IS_TOSERVER(p) && !(p->flow->flags & FLOW_TOSERVER_DROP_LOGGED))
ret = TRUE;
else if (PKT_IS_TOCLIENT(p) && !(p->flow->flags & FLOW_TOCLIENT_DROP_LOGGED))
ret = TRUE;
}
/* if drop is caused by signature, log anyway */
if (p->alerts.drop.action != 0)
ret = TRUE;
return ret;
} else if (PACKET_TEST_ACTION(p, ACTION_DROP)) {
return TRUE;
}
return FALSE;
}
void JsonDropLogRegister (void)
{
OutputRegisterPacketModule(LOGGER_JSON_DROP, MODULE_NAME, "drop-json-log",
JsonDropLogInitCtx, JsonDropLogger, JsonDropLogCondition,
JsonDropLogThreadInit, JsonDropLogThreadDeinit, NULL);
OutputRegisterPacketSubModule(LOGGER_JSON_DROP, "eve-log", MODULE_NAME,
"eve-log.drop", JsonDropLogInitCtxSub, JsonDropLogger,
JsonDropLogCondition, JsonDropLogThreadInit, JsonDropLogThreadDeinit,
NULL);
}
#else
void JsonDropLogRegister (void)
{
}
#endif
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