Use workspaces to separate crates
[rust-lightning] / lightning / fuzz / fuzz_targets / router_target.rs
1 extern crate bitcoin;
2 extern crate bitcoin_hashes;
3 extern crate lightning;
4 extern crate secp256k1;
5
6 use bitcoin_hashes::sha256d::Hash as Sha256dHash;
7 use bitcoin::blockdata::script::{Script, Builder};
8
9 use lightning::chain::chaininterface::{ChainError,ChainWatchInterface, ChainListener};
10 use lightning::ln::channelmanager::ChannelDetails;
11 use lightning::ln::msgs;
12 use lightning::ln::msgs::{RoutingMessageHandler};
13 use lightning::ln::router::{Router, RouteHint};
14 use lightning::util::logger::Logger;
15 use lightning::util::ser::Readable;
16
17 use secp256k1::key::PublicKey;
18
19 mod utils;
20
21 use utils::test_logger;
22
23 use std::sync::{Weak, Arc};
24 use std::sync::atomic::{AtomicUsize, Ordering};
25
26 #[inline]
27 pub fn slice_to_be16(v: &[u8]) -> u16 {
28         ((v[0] as u16) << 8*1) |
29         ((v[1] as u16) << 8*0)
30 }
31
32 #[inline]
33 pub fn slice_to_be32(v: &[u8]) -> u32 {
34         ((v[0] as u32) << 8*3) |
35         ((v[1] as u32) << 8*2) |
36         ((v[2] as u32) << 8*1) |
37         ((v[3] as u32) << 8*0)
38 }
39
40 #[inline]
41 pub fn slice_to_be64(v: &[u8]) -> u64 {
42         ((v[0] as u64) << 8*7) |
43         ((v[1] as u64) << 8*6) |
44         ((v[2] as u64) << 8*5) |
45         ((v[3] as u64) << 8*4) |
46         ((v[4] as u64) << 8*3) |
47         ((v[5] as u64) << 8*2) |
48         ((v[6] as u64) << 8*1) |
49         ((v[7] as u64) << 8*0)
50 }
51
52
53 struct InputData {
54         data: Vec<u8>,
55         read_pos: AtomicUsize,
56 }
57 impl InputData {
58         fn get_slice(&self, len: usize) -> Option<&[u8]> {
59                 let old_pos = self.read_pos.fetch_add(len, Ordering::AcqRel);
60                 if self.data.len() < old_pos + len {
61                         return None;
62                 }
63                 Some(&self.data[old_pos..old_pos + len])
64         }
65         fn get_slice_nonadvancing(&self, len: usize) -> Option<&[u8]> {
66                 let old_pos = self.read_pos.load(Ordering::Acquire);
67                 if self.data.len() < old_pos + len {
68                         return None;
69                 }
70                 Some(&self.data[old_pos..old_pos + len])
71         }
72 }
73
74 struct DummyChainWatcher {
75         input: Arc<InputData>,
76 }
77
78 impl ChainWatchInterface for DummyChainWatcher {
79         fn install_watch_tx(&self, _txid: &Sha256dHash, _script_pub_key: &Script) { }
80         fn install_watch_outpoint(&self, _outpoint: (Sha256dHash, u32), _out_script: &Script) { }
81         fn watch_all_txn(&self) { }
82         fn register_listener(&self, _listener: Weak<ChainListener>) { }
83
84         fn get_chain_utxo(&self, _genesis_hash: Sha256dHash, _unspent_tx_output_identifier: u64) -> Result<(Script, u64), ChainError> {
85                 match self.input.get_slice(2) {
86                         Some(&[0, _]) => Err(ChainError::NotSupported),
87                         Some(&[1, _]) => Err(ChainError::NotWatched),
88                         Some(&[2, _]) => Err(ChainError::UnknownTx),
89                         Some(&[_, x]) => Ok((Builder::new().push_int(x as i64).into_script().to_v0_p2wsh(), 0)),
90                         None => Err(ChainError::UnknownTx),
91                         _ => unreachable!(),
92                 }
93         }
94 }
95
96 #[inline]
97 pub fn do_test(data: &[u8]) {
98         let input = Arc::new(InputData {
99                 data: data.to_vec(),
100                 read_pos: AtomicUsize::new(0),
101         });
102         macro_rules! get_slice_nonadvancing {
103                 ($len: expr) => {
104                         match input.get_slice_nonadvancing($len as usize) {
105                                 Some(slice) => slice,
106                                 None => return,
107                         }
108                 }
109         }
110         macro_rules! get_slice {
111                 ($len: expr) => {
112                         match input.get_slice($len as usize) {
113                                 Some(slice) => slice,
114                                 None => return,
115                         }
116                 }
117         }
118
119         macro_rules! decode_msg {
120                 ($MsgType: path, $len: expr) => {{
121                         let mut reader = ::std::io::Cursor::new(get_slice!($len));
122                         match <($MsgType)>::read(&mut reader) {
123                                 Ok(msg) => msg,
124                                 Err(e) => match e {
125                                         msgs::DecodeError::UnknownVersion => return,
126                                         msgs::DecodeError::UnknownRequiredFeature => return,
127                                         msgs::DecodeError::InvalidValue => return,
128                                         msgs::DecodeError::ExtraAddressesPerType => return,
129                                         msgs::DecodeError::BadLengthDescriptor => return,
130                                         msgs::DecodeError::ShortRead => panic!("We picked the length..."),
131                                         msgs::DecodeError::Io(e) => panic!(format!("{}", e)),
132                                 }
133                         }
134                 }}
135         }
136
137         macro_rules! decode_msg_with_len16 {
138                 ($MsgType: path, $begin_len: expr, $excess: expr) => {
139                         {
140                                 let extra_len = slice_to_be16(&get_slice_nonadvancing!($begin_len as usize + 2)[$begin_len..$begin_len + 2]);
141                                 decode_msg!($MsgType, $begin_len as usize + 2 + (extra_len as usize) + $excess)
142                         }
143                 }
144         }
145
146         macro_rules! get_pubkey {
147                 () => {
148                         match PublicKey::from_slice(get_slice!(33)) {
149                                 Ok(key) => key,
150                                 Err(_) => return,
151                         }
152                 }
153         }
154
155         let logger: Arc<Logger> = Arc::new(test_logger::TestLogger::new("".to_owned()));
156         let chain_monitor = Arc::new(DummyChainWatcher {
157                 input: Arc::clone(&input),
158         });
159
160         let our_pubkey = get_pubkey!();
161         let router = Router::new(our_pubkey.clone(), chain_monitor, Arc::clone(&logger));
162
163         loop {
164                 match get_slice!(1)[0] {
165                         0 => {
166                                 let start_len = slice_to_be16(&get_slice_nonadvancing!(64 + 2)[64..64 + 2]) as usize;
167                                 let addr_len = slice_to_be16(&get_slice_nonadvancing!(64+start_len+2 + 74)[64+start_len+2 + 72..64+start_len+2 + 74]);
168                                 if addr_len > (37+1)*4 {
169                                         return;
170                                 }
171                                 let _ = router.handle_node_announcement(&decode_msg_with_len16!(msgs::NodeAnnouncement, 64, 288));
172                         },
173                         1 => {
174                                 let _ = router.handle_channel_announcement(&decode_msg_with_len16!(msgs::ChannelAnnouncement, 64*4, 32+8+33*4));
175                         },
176                         2 => {
177                                 let _ = router.handle_channel_update(&decode_msg!(msgs::ChannelUpdate, 128));
178                         },
179                         3 => {
180                                 match get_slice!(1)[0] {
181                                         0 => {
182                                                 router.handle_htlc_fail_channel_update(&msgs::HTLCFailChannelUpdate::ChannelUpdateMessage {msg: decode_msg!(msgs::ChannelUpdate, 128)});
183                                         },
184                                         1 => {
185                                                 let short_channel_id = slice_to_be64(get_slice!(8));
186                                                 router.handle_htlc_fail_channel_update(&msgs::HTLCFailChannelUpdate::ChannelClosed {short_channel_id, is_permanent: false});
187                                         },
188                                         _ => return,
189                                 }
190                         },
191                         4 => {
192                                 let target = get_pubkey!();
193                                 let mut first_hops_vec = Vec::new();
194                                 let first_hops = match get_slice!(1)[0] {
195                                         0 => None,
196                                         1 => {
197                                                 let count = slice_to_be16(get_slice!(2));
198                                                 for _ in 0..count {
199                                                         first_hops_vec.push(ChannelDetails {
200                                                                 channel_id: [0; 32],
201                                                                 short_channel_id: Some(slice_to_be64(get_slice!(8))),
202                                                                 remote_network_id: get_pubkey!(),
203                                                                 channel_value_satoshis: slice_to_be64(get_slice!(8)),
204                                                                 user_id: 0,
205                                                                 inbound_capacity_msat: 0,
206                                                                 is_live: true,
207                                                                 outbound_capacity_msat: 0,
208                                                         });
209                                                 }
210                                                 Some(&first_hops_vec[..])
211                                         },
212                                         _ => return,
213                                 };
214                                 let mut last_hops_vec = Vec::new();
215                                 let last_hops = {
216                                         let count = slice_to_be16(get_slice!(2));
217                                         for _ in 0..count {
218                                                 last_hops_vec.push(RouteHint {
219                                                         src_node_id: get_pubkey!(),
220                                                         short_channel_id: slice_to_be64(get_slice!(8)),
221                                                         fee_base_msat: slice_to_be32(get_slice!(4)),
222                                                         fee_proportional_millionths: slice_to_be32(get_slice!(4)),
223                                                         cltv_expiry_delta: slice_to_be16(get_slice!(2)),
224                                                         htlc_minimum_msat: slice_to_be64(get_slice!(8)),
225                                                 });
226                                         }
227                                         &last_hops_vec[..]
228                                 };
229                                 let _ = router.get_route(&target, first_hops, last_hops, slice_to_be64(get_slice!(8)), slice_to_be32(get_slice!(4)));
230                         },
231                         _ => return,
232                 }
233         }
234 }
235
236 #[cfg(feature = "afl")]
237 #[macro_use] extern crate afl;
238 #[cfg(feature = "afl")]
239 fn main() {
240         fuzz!(|data| {
241                 do_test(data);
242         });
243 }
244
245 #[cfg(feature = "honggfuzz")]
246 #[macro_use] extern crate honggfuzz;
247 #[cfg(feature = "honggfuzz")]
248 fn main() {
249         loop {
250                 fuzz!(|data| {
251                         do_test(data);
252                 });
253         }
254 }
255
256 extern crate hex;
257 #[cfg(test)]
258 mod tests {
259
260         #[test]
261         fn duplicate_crash() {
262                 super::do_test(&::hex::decode("00").unwrap());
263         }
264 }