use std;
use std::ffi::{CStr,CString};
use nom;
use nom::IResult;
use nom::number::streaming::be_u32;
use der_parser::der::der_read_element_header;
use der_parser::ber::BerClass;
use kerberos_parser::krb5_parser;
use kerberos_parser::krb5::{EncryptionType,ErrorCode,MessageType,PrincipalName,Realm};
use crate::applayer::{self, *};
use crate::core;
use crate::core::{AppProto,Flow,ALPROTO_FAILED,ALPROTO_UNKNOWN,STREAM_TOCLIENT,STREAM_TOSERVER,sc_detect_engine_state_free};
#[repr(u32)]
pub enum KRB5Event {
MalformedData = 0,
WeakEncryption,
}
impl KRB5Event {
fn from_i32(value: i32) -> Option<KRB5Event> {
match value {
0 => Some(KRB5Event::MalformedData),
1 => Some(KRB5Event::WeakEncryption),
_ => None,
}
}
}
pub struct KRB5State {
pub req_id: u8,
pub record_ts: usize,
pub defrag_buf_ts: Vec<u8>,
pub record_tc: usize,
pub defrag_buf_tc: Vec<u8>,
transactions: Vec<KRB5Transaction>,
tx_id: u64,
}
pub struct KRB5Transaction {
pub msg_type: MessageType,
pub cname: Option<PrincipalName>,
pub realm: Option<Realm>,
pub sname: Option<PrincipalName>,
pub etype: Option<EncryptionType>,
pub error_code: Option<ErrorCode>,
id: u64,
de_state: Option<*mut core::DetectEngineState>,
events: *mut core::AppLayerDecoderEvents,
tx_data: applayer::AppLayerTxData,
}
pub fn to_hex_string(bytes: &[u8]) -> String {
let mut s = String::new();
for &b in bytes {
s.push_str(&format!("{:02X}", b));
}
s
}
impl KRB5State {
pub fn new() -> KRB5State {
KRB5State{
req_id: 0,
record_ts: 0,
defrag_buf_ts: Vec::new(),
record_tc: 0,
defrag_buf_tc: Vec::new(),
transactions: Vec::new(),
tx_id: 0,
}
}
fn parse(&mut self, i: &[u8], _direction: u8) -> i32 {
match der_read_element_header(i) {
Ok((_rem,hdr)) => {
if hdr.class != BerClass::Application { return 0; }
match hdr.tag.0 {
10 => {
self.req_id = 10;
},
11 => {
let res = krb5_parser::parse_as_rep(i);
if let Ok((_,kdc_rep)) = res {
let mut tx = self.new_tx();
tx.msg_type = MessageType::KRB_AS_REP;
tx.cname = Some(kdc_rep.cname);
tx.realm = Some(kdc_rep.crealm);
tx.sname = Some(kdc_rep.ticket.sname);
tx.etype = Some(kdc_rep.enc_part.etype);
self.transactions.push(tx);
if test_weak_encryption(kdc_rep.enc_part.etype) {
self.set_event(KRB5Event::WeakEncryption);
}
};
self.req_id = 0;
},
12 => {
self.req_id = 12;
},
13 => {
let res = krb5_parser::parse_tgs_rep(i);
if let Ok((_,kdc_rep)) = res {
let mut tx = self.new_tx();
tx.msg_type = MessageType::KRB_TGS_REP;
tx.cname = Some(kdc_rep.cname);
tx.realm = Some(kdc_rep.crealm);
tx.sname = Some(kdc_rep.ticket.sname);
tx.etype = Some(kdc_rep.enc_part.etype);
self.transactions.push(tx);
if test_weak_encryption(kdc_rep.enc_part.etype) {
self.set_event(KRB5Event::WeakEncryption);
}
};
self.req_id = 0;
},
14 => {
self.req_id = 14;
},
15 => {
self.req_id = 0;
},
30 => {
let res = krb5_parser::parse_krb_error(i);
if let Ok((_,error)) = res {
let mut tx = self.new_tx();
tx.msg_type = MessageType(self.req_id as u32);
tx.cname = error.cname;
tx.realm = error.crealm;
tx.sname = Some(error.sname);
tx.error_code = Some(error.error_code);
self.transactions.push(tx);
};
self.req_id = 0;
},
_ => { SCLogDebug!("unknown/unsupported tag {}", hdr.tag); },
}
0
},
Err(nom::Err::Incomplete(_)) => {
SCLogDebug!("Insufficient data while parsing KRB5 data");
self.set_event(KRB5Event::MalformedData);
-1
},
Err(_) => {
SCLogDebug!("Error while parsing KRB5 data");
self.set_event(KRB5Event::MalformedData);
-1
},
}
}
pub fn free(&mut self) {
self.transactions.clear();
}
fn new_tx(&mut self) -> KRB5Transaction {
self.tx_id += 1;
KRB5Transaction::new(self.tx_id)
}
fn get_tx_by_id(&mut self, tx_id: u64) -> Option<&KRB5Transaction> {
self.transactions.iter().find(|&tx| tx.id == tx_id + 1)
}
fn free_tx(&mut self, tx_id: u64) {
let tx = self.transactions.iter().position(|ref tx| tx.id == tx_id + 1);
debug_assert!(tx != None);
if let Some(idx) = tx {
let _ = self.transactions.remove(idx);
}
}
fn set_event(&mut self, event: KRB5Event) {
if let Some(tx) = self.transactions.last_mut() {
let ev = event as u8;
core::sc_app_layer_decoder_events_set_event_raw(&mut tx.events, ev);
}
}
}
impl KRB5Transaction {
pub fn new(id: u64) -> KRB5Transaction {
KRB5Transaction{
msg_type: MessageType(0),
cname: None,
realm: None,
sname: None,
etype: None,
error_code: None,
id: id,
de_state: None,
events: std::ptr::null_mut(),
tx_data: applayer::AppLayerTxData::new(),
}
}
}
impl Drop for KRB5Transaction {
fn drop(&mut self) {
if self.events != std::ptr::null_mut() {
core::sc_app_layer_decoder_events_free_events(&mut self.events);
}
if let Some(state) = self.de_state {
sc_detect_engine_state_free(state);
}
}
}
pub fn test_weak_encryption(alg:EncryptionType) -> bool {
match alg {
EncryptionType::AES128_CTS_HMAC_SHA1_96 |
EncryptionType::AES256_CTS_HMAC_SHA1_96 |
EncryptionType::AES128_CTS_HMAC_SHA256_128 |
EncryptionType::AES256_CTS_HMAC_SHA384_192 |
EncryptionType::CAMELLIA128_CTS_CMAC |
EncryptionType::CAMELLIA256_CTS_CMAC => false,
_ => true, }
}
#[no_mangle]
pub extern "C" fn rs_krb5_state_new(_orig_state: *mut std::os::raw::c_void, _orig_proto: AppProto) -> *mut std::os::raw::c_void {
let state = KRB5State::new();
let boxed = Box::new(state);
return unsafe{std::mem::transmute(boxed)};
}
#[no_mangle]
pub extern "C" fn rs_krb5_state_free(state: *mut std::os::raw::c_void) {
let mut state: Box<KRB5State> = unsafe{std::mem::transmute(state)};
state.free();
}
#[no_mangle]
pub extern "C" fn rs_krb5_state_get_tx(state: *mut std::os::raw::c_void,
tx_id: u64)
-> *mut std::os::raw::c_void
{
let state = cast_pointer!(state,KRB5State);
match state.get_tx_by_id(tx_id) {
Some(tx) => unsafe{std::mem::transmute(tx)},
None => std::ptr::null_mut(),
}
}
#[no_mangle]
pub extern "C" fn rs_krb5_state_get_tx_count(state: *mut std::os::raw::c_void)
-> u64
{
let state = cast_pointer!(state,KRB5State);
state.tx_id
}
#[no_mangle]
pub extern "C" fn rs_krb5_state_tx_free(state: *mut std::os::raw::c_void,
tx_id: u64)
{
let state = cast_pointer!(state,KRB5State);
state.free_tx(tx_id);
}
#[no_mangle]
pub extern "C" fn rs_krb5_state_progress_completion_status(
_direction: u8)
-> std::os::raw::c_int
{
return 1;
}
#[no_mangle]
pub extern "C" fn rs_krb5_tx_get_alstate_progress(_tx: *mut std::os::raw::c_void,
_direction: u8)
-> std::os::raw::c_int
{
1
}
#[no_mangle]
pub extern "C" fn rs_krb5_state_set_tx_detect_state(
tx: *mut std::os::raw::c_void,
de_state: &mut core::DetectEngineState) -> std::os::raw::c_int
{
let tx = cast_pointer!(tx,KRB5Transaction);
tx.de_state = Some(de_state);
0
}
#[no_mangle]
pub extern "C" fn rs_krb5_state_get_tx_detect_state(
tx: *mut std::os::raw::c_void)
-> *mut core::DetectEngineState
{
let tx = cast_pointer!(tx,KRB5Transaction);
match tx.de_state {
Some(ds) => ds,
None => std::ptr::null_mut(),
}
}
#[no_mangle]
pub extern "C" fn rs_krb5_state_get_event_info_by_id(event_id: std::os::raw::c_int,
event_name: *mut *const std::os::raw::c_char,
event_type: *mut core::AppLayerEventType)
-> i8
{
if let Some(e) = KRB5Event::from_i32(event_id as i32) {
let estr = match e {
KRB5Event::MalformedData => { "malformed_data\0" },
KRB5Event::WeakEncryption => { "weak_encryption\0" },
};
unsafe{
*event_name = estr.as_ptr() as *const std::os::raw::c_char;
*event_type = core::APP_LAYER_EVENT_TYPE_TRANSACTION;
};
0
} else {
-1
}
}
#[no_mangle]
pub extern "C" fn rs_krb5_state_get_events(tx: *mut std::os::raw::c_void)
-> *mut core::AppLayerDecoderEvents
{
let tx = cast_pointer!(tx, KRB5Transaction);
return tx.events;
}
#[no_mangle]
pub extern "C" fn rs_krb5_state_get_event_info(event_name: *const std::os::raw::c_char,
event_id: *mut std::os::raw::c_int,
event_type: *mut core::AppLayerEventType)
-> std::os::raw::c_int
{
if event_name == std::ptr::null() { return -1; }
let c_event_name: &CStr = unsafe { CStr::from_ptr(event_name) };
let event = match c_event_name.to_str() {
Ok(s) => {
match s {
"malformed_data" => KRB5Event::MalformedData as i32,
"weak_encryption" => KRB5Event::WeakEncryption as i32,
_ => -1, }
},
Err(_) => -1, };
unsafe{
*event_type = core::APP_LAYER_EVENT_TYPE_TRANSACTION;
*event_id = event as std::os::raw::c_int;
};
0
}
static mut ALPROTO_KRB5 : AppProto = ALPROTO_UNKNOWN;
#[no_mangle]
pub extern "C" fn rs_krb5_probing_parser(_flow: *const Flow,
_direction: u8,
input:*const u8, input_len: u32,
_rdir: *mut u8) -> AppProto
{
let slice = build_slice!(input,input_len as usize);
let alproto = unsafe{ ALPROTO_KRB5 };
if slice.len() <= 10 { return unsafe{ALPROTO_FAILED}; }
match der_read_element_header(slice) {
Ok((rem, ref hdr)) => {
if hdr.class != BerClass::Application { return unsafe{ALPROTO_FAILED}; }
if hdr.tag.0 > 30 { return unsafe{ALPROTO_FAILED}; }
if rem.is_empty() || rem[0] != 0x30 { return unsafe{ALPROTO_FAILED}; }
if let Ok((rem,_hdr)) = der_read_element_header(rem) {
if rem.len() > 5 {
match (rem[2],rem[3],rem[4]) {
(2,1,5) => { return alproto; },
_ => (),
}
}
}
return unsafe{ALPROTO_FAILED};
},
Err(nom::Err::Incomplete(_)) => {
return ALPROTO_UNKNOWN;
},
Err(_) => {
return unsafe{ALPROTO_FAILED};
},
}
}
#[no_mangle]
pub extern "C" fn rs_krb5_probing_parser_tcp(_flow: *const Flow,
direction: u8,
input:*const u8, input_len: u32,
rdir: *mut u8) -> AppProto
{
let slice = build_slice!(input,input_len as usize);
if slice.len() <= 14 { return unsafe{ALPROTO_FAILED}; }
match be_u32(slice) as IResult<&[u8],u32> {
Ok((rem, record_mark)) => {
if record_mark > 16384 { return unsafe{ALPROTO_FAILED}; }
return rs_krb5_probing_parser(_flow, direction,
rem.as_ptr(), rem.len() as u32, rdir);
},
Err(nom::Err::Incomplete(_)) => {
return ALPROTO_UNKNOWN;
},
Err(_) => {
return unsafe{ALPROTO_FAILED};
},
}
}
#[no_mangle]
pub extern "C" fn rs_krb5_parse_request(_flow: *const core::Flow,
state: *mut std::os::raw::c_void,
_pstate: *mut std::os::raw::c_void,
input: *const u8,
input_len: u32,
_data: *const std::os::raw::c_void,
_flags: u8) -> AppLayerResult {
let buf = build_slice!(input,input_len as usize);
let state = cast_pointer!(state,KRB5State);
if state.parse(buf, STREAM_TOSERVER) < 0 {
return AppLayerResult::err();
}
AppLayerResult::ok()
}
#[no_mangle]
pub extern "C" fn rs_krb5_parse_response(_flow: *const core::Flow,
state: *mut std::os::raw::c_void,
_pstate: *mut std::os::raw::c_void,
input: *const u8,
input_len: u32,
_data: *const std::os::raw::c_void,
_flags: u8) -> AppLayerResult {
let buf = build_slice!(input,input_len as usize);
let state = cast_pointer!(state,KRB5State);
if state.parse(buf, STREAM_TOCLIENT) < 0 {
return AppLayerResult::err();
}
AppLayerResult::ok()
}
#[no_mangle]
pub extern "C" fn rs_krb5_parse_request_tcp(_flow: *const core::Flow,
state: *mut std::os::raw::c_void,
_pstate: *mut std::os::raw::c_void,
input: *const u8,
input_len: u32,
_data: *const std::os::raw::c_void,
_flags: u8) -> AppLayerResult {
let buf = build_slice!(input,input_len as usize);
let state = cast_pointer!(state,KRB5State);
let mut v : Vec<u8>;
let tcp_buffer = match state.record_ts {
0 => buf,
_ => {
if state.defrag_buf_ts.len() + buf.len() > 100000 {
SCLogDebug!("rs_krb5_parse_request_tcp: TCP buffer exploded {} {}",
state.defrag_buf_ts.len(), buf.len());
return AppLayerResult::err();
}
v = state.defrag_buf_ts.split_off(0);
v.extend_from_slice(buf);
v.as_slice()
}
};
let mut cur_i = tcp_buffer;
while cur_i.len() > 0 {
if state.record_ts == 0 {
match be_u32(cur_i) as IResult<&[u8],u32> {
Ok((rem,record)) => {
state.record_ts = record as usize;
cur_i = rem;
},
Err(nom::Err::Incomplete(_)) => {
state.defrag_buf_ts.extend_from_slice(cur_i);
return AppLayerResult::ok();
}
_ => {
SCLogDebug!("rs_krb5_parse_request_tcp: reading record mark failed!");
return AppLayerResult::err();
}
}
}
if cur_i.len() >= state.record_ts {
if state.parse(cur_i, STREAM_TOSERVER) < 0 {
return AppLayerResult::err();
}
state.record_ts = 0;
cur_i = &cur_i[state.record_ts..];
} else {
state.defrag_buf_ts.extend_from_slice(cur_i);
return AppLayerResult::ok();
}
}
AppLayerResult::ok()
}
#[no_mangle]
pub extern "C" fn rs_krb5_parse_response_tcp(_flow: *const core::Flow,
state: *mut std::os::raw::c_void,
_pstate: *mut std::os::raw::c_void,
input: *const u8,
input_len: u32,
_data: *const std::os::raw::c_void,
_flags: u8) -> AppLayerResult {
let buf = build_slice!(input,input_len as usize);
let state = cast_pointer!(state,KRB5State);
let mut v : Vec<u8>;
let tcp_buffer = match state.record_tc {
0 => buf,
_ => {
if state.defrag_buf_tc.len() + buf.len() > 100000 {
SCLogDebug!("rs_krb5_parse_response_tcp: TCP buffer exploded {} {}",
state.defrag_buf_tc.len(), buf.len());
return AppLayerResult::err();
}
v = state.defrag_buf_tc.split_off(0);
v.extend_from_slice(buf);
v.as_slice()
}
};
let mut cur_i = tcp_buffer;
while cur_i.len() > 0 {
if state.record_tc == 0 {
match be_u32(cur_i) as IResult<&[u8],_> {
Ok((rem,record)) => {
state.record_tc = record as usize;
cur_i = rem;
},
Err(nom::Err::Incomplete(_)) => {
state.defrag_buf_tc.extend_from_slice(cur_i);
return AppLayerResult::ok();
}
_ => {
SCLogDebug!("reading record mark failed!");
return AppLayerResult::ok();
}
}
}
if cur_i.len() >= state.record_tc {
if state.parse(cur_i, STREAM_TOCLIENT) < 0 {
return AppLayerResult::err();
}
state.record_tc = 0;
cur_i = &cur_i[state.record_tc..];
} else {
state.defrag_buf_tc.extend_from_slice(cur_i);
return AppLayerResult::ok();
}
}
AppLayerResult::ok()
}
export_tx_data_get!(rs_krb5_get_tx_data, KRB5Transaction);
const PARSER_NAME : &'static [u8] = b"krb5\0";
#[no_mangle]
pub unsafe extern "C" fn rs_register_krb5_parser() {
let default_port = CString::new("88").unwrap();
let mut parser = RustParser {
name : PARSER_NAME.as_ptr() as *const std::os::raw::c_char,
default_port : default_port.as_ptr(),
ipproto : core::IPPROTO_UDP,
probe_ts : Some(rs_krb5_probing_parser),
probe_tc : Some(rs_krb5_probing_parser),
min_depth : 0,
max_depth : 16,
state_new : rs_krb5_state_new,
state_free : rs_krb5_state_free,
tx_free : rs_krb5_state_tx_free,
parse_ts : rs_krb5_parse_request,
parse_tc : rs_krb5_parse_response,
get_tx_count : rs_krb5_state_get_tx_count,
get_tx : rs_krb5_state_get_tx,
tx_get_comp_st : rs_krb5_state_progress_completion_status,
tx_get_progress : rs_krb5_tx_get_alstate_progress,
get_de_state : rs_krb5_state_get_tx_detect_state,
set_de_state : rs_krb5_state_set_tx_detect_state,
get_events : Some(rs_krb5_state_get_events),
get_eventinfo : Some(rs_krb5_state_get_event_info),
get_eventinfo_byid : Some(rs_krb5_state_get_event_info_by_id),
localstorage_new : None,
localstorage_free : None,
get_files : None,
get_tx_iterator : None,
get_tx_data : rs_krb5_get_tx_data,
apply_tx_config : None,
flags : APP_LAYER_PARSER_OPT_UNIDIR_TXS,
truncate : None,
};
let ip_proto_str = CString::new("udp").unwrap();
if AppLayerProtoDetectConfProtoDetectionEnabled(ip_proto_str.as_ptr(), parser.name) != 0 {
let alproto = AppLayerRegisterProtocolDetection(&parser, 1);
ALPROTO_KRB5 = alproto;
if AppLayerParserConfParserEnabled(ip_proto_str.as_ptr(), parser.name) != 0 {
let _ = AppLayerRegisterParser(&parser, alproto);
}
} else {
SCLogDebug!("Protocol detector and parser disabled for KRB5/UDP.");
}
parser.ipproto = core::IPPROTO_TCP;
parser.probe_ts = Some(rs_krb5_probing_parser_tcp);
parser.probe_tc = Some(rs_krb5_probing_parser_tcp);
parser.parse_ts = rs_krb5_parse_request_tcp;
parser.parse_tc = rs_krb5_parse_response_tcp;
let ip_proto_str = CString::new("tcp").unwrap();
if AppLayerProtoDetectConfProtoDetectionEnabled(ip_proto_str.as_ptr(), parser.name) != 0 {
let alproto = AppLayerRegisterProtocolDetection(&parser, 1);
ALPROTO_KRB5 = alproto;
if AppLayerParserConfParserEnabled(ip_proto_str.as_ptr(), parser.name) != 0 {
let _ = AppLayerRegisterParser(&parser, alproto);
}
} else {
SCLogDebug!("Protocol detector and parser disabled for KRB5/TCP.");
}
}