darkfid.rs 20 KB

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  1. use async_std::sync::Arc;
  2. //use drk::rpc::
  3. use drk::rpc::adapter::{RpcAdapter, AdapterPtr};
  4. use drk::rpc::jsonserver;
  5. //use drk::rpc::options::ProgramOptions;
  6. use rand::rngs::OsRng;
  7. use std::net::SocketAddr;
  8. use drk::blockchain::{rocks::columns, Rocks, RocksColumn};
  9. use drk::crypto::{
  10. load_params,
  11. merkle::{CommitmentTree, IncrementalWitness},
  12. merkle_node::MerkleNode,
  13. note::{EncryptedNote, Note},
  14. nullifier::Nullifier,
  15. save_params, setup_mint_prover, setup_spend_prover,
  16. };
  17. use drk::serial::Decodable;
  18. use drk::service::{ClientProgramOptions, GatewayClient, GatewaySlabsSubscriber};
  19. use drk::state::{state_transition, ProgramState, StateUpdate};
  20. use drk::wallet::{WalletDB, WalletPtr};
  21. use drk::{tx, Result};
  22. use rusqlite::Connection;
  23. use async_executor::Executor;
  24. use bellman::groth16;
  25. use bls12_381::Bls12;
  26. use easy_parallel::Parallel;
  27. use ff::Field;
  28. use log::*;
  29. use std::path::Path;
  30. #[allow(dead_code)]
  31. pub struct State {
  32. // The entire merkle tree state
  33. tree: CommitmentTree<MerkleNode>,
  34. // List of all previous and the current merkle roots
  35. // This is the hashed value of all the children.
  36. merkle_roots: RocksColumn<columns::MerkleRoots>,
  37. // Nullifiers prevent double spending
  38. nullifiers: RocksColumn<columns::Nullifiers>,
  39. // All received coins
  40. // Mint verifying key used by ZK
  41. mint_pvk: groth16::PreparedVerifyingKey<Bls12>,
  42. // Spend verifying key used by ZK
  43. spend_pvk: groth16::PreparedVerifyingKey<Bls12>,
  44. // Public key of the cashier
  45. // List of all our secret keys
  46. wallet: WalletPtr,
  47. }
  48. impl ProgramState for State {
  49. fn is_valid_cashier_public_key(&self, _public: &jubjub::SubgroupPoint) -> bool {
  50. let conn = Connection::open(&self.wallet.path).expect("Failed to connect to database");
  51. let mut stmt = conn
  52. .prepare("SELECT key_public FROM cashier WHERE key_public IN (SELECT key_public)")
  53. .expect("Cannot generate statement.");
  54. stmt.exists([1i32]).expect("Failed to read database")
  55. // do actual validity check
  56. }
  57. fn is_valid_merkle(&self, merkle_root: &MerkleNode) -> bool {
  58. self.merkle_roots
  59. .key_exist(*merkle_root)
  60. .expect("couldn't check if the merkle_root valid")
  61. }
  62. fn nullifier_exists(&self, nullifier: &Nullifier) -> bool {
  63. self.nullifiers
  64. .key_exist(nullifier.repr)
  65. .expect("couldn't check if nullifier exists")
  66. }
  67. // load from disk
  68. fn mint_pvk(&self) -> &groth16::PreparedVerifyingKey<Bls12> {
  69. &self.mint_pvk
  70. }
  71. fn spend_pvk(&self) -> &groth16::PreparedVerifyingKey<Bls12> {
  72. &self.spend_pvk
  73. }
  74. }
  75. impl State {
  76. async fn apply(&mut self, update: StateUpdate) -> Result<()> {
  77. // Extend our list of nullifiers with the ones from the update
  78. for nullifier in update.nullifiers {
  79. self.nullifiers.put(nullifier, vec![] as Vec<u8>)?;
  80. }
  81. // Update merkle tree and witnesses
  82. for (coin, enc_note) in update.coins.into_iter().zip(update.enc_notes.into_iter()) {
  83. // Add the new coins to the merkle tree
  84. let node = MerkleNode::from_coin(&coin);
  85. self.tree.append(node).expect("Append to merkle tree");
  86. // Keep track of all merkle roots that have existed
  87. self.merkle_roots.put(self.tree.root(), vec![] as Vec<u8>)?;
  88. // Also update all the coin witnesses
  89. for (_, _, _, witness) in self.wallet.own_coins.iter_mut() {
  90. witness.append(node).expect("append to witness");
  91. }
  92. if let Some((note, secret)) = self.try_decrypt_note(enc_note).await {
  93. // We need to keep track of the witness for this coin.
  94. // This allows us to prove inclusion of the coin in the merkle tree with ZK.
  95. // Just as we update the merkle tree with every new coin, so we do the same with
  96. // the witness.
  97. // Derive the current witness from the current tree.
  98. // This is done right after we add our coin to the tree (but before any other
  99. // coins are added)
  100. // Make a new witness for this coin
  101. let witness = IncrementalWitness::from_tree(&self.tree);
  102. // own_coins should not be vector
  103. self.wallet.own_coins.push((coin, note, secret, witness));
  104. self.wallet.put_own_coins().await?;
  105. }
  106. }
  107. Ok(())
  108. }
  109. async fn try_decrypt_note(&self, ciphertext: EncryptedNote) -> Option<(Note, jubjub::Fr)> {
  110. let vec = self.wallet.get_private().ok()?;
  111. let secret = self
  112. .wallet
  113. .get_value_deserialized::<jubjub::Fr>(vec)
  114. .await
  115. .expect("Deserialize failed");
  116. match ciphertext.decrypt(&secret) {
  117. Ok(note) => {
  118. // ... and return the decrypted note for this coin.
  119. return Some((note, secret.clone()));
  120. }
  121. Err(_) => {}
  122. }
  123. // We weren't able to decrypt the note with our key.
  124. None
  125. }
  126. }
  127. fn setup_addr(address: Option<SocketAddr>, default: SocketAddr) -> SocketAddr {
  128. match address {
  129. Some(addr) => addr,
  130. None => default,
  131. }
  132. }
  133. pub async fn subscribe(gateway_slabs_sub: GatewaySlabsSubscriber, mut state: State) -> Result<()> {
  134. loop {
  135. let slab = gateway_slabs_sub.recv().await?;
  136. let tx = tx::Transaction::decode(&slab.get_payload()[..])?;
  137. let update = state_transition(&state, tx)?;
  138. state.apply(update).await?;
  139. }
  140. }
  141. async fn start(executor: Arc<Executor<'_>>, options: Arc<ClientProgramOptions>) -> Result<()> {
  142. let connect_addr: SocketAddr = setup_addr(options.connect_addr, "127.0.0.1:3333".parse()?);
  143. let sub_addr: SocketAddr = setup_addr(options.sub_addr, "127.0.0.1:4444".parse()?);
  144. let database_path = options.database_path.as_path();
  145. let rocks = Rocks::new(database_path)?;
  146. let slabstore = RocksColumn::<columns::Slabs>::new(rocks.clone());
  147. //let adapter = RpcAdapter::new("wallet.db")?;
  148. //
  149. // Auto create trusted ceremony parameters if they don't exist
  150. if !Path::new("mint.params").exists() {
  151. let params = setup_mint_prover();
  152. save_params("mint.params", &params)?;
  153. }
  154. if !Path::new("spend.params").exists() {
  155. let params = setup_spend_prover();
  156. save_params("spend.params", &params)?;
  157. }
  158. // Load trusted setup parameters
  159. let (_mint_params, mint_pvk) = load_params("mint.params")?;
  160. let (_spend_params, spend_pvk) = load_params("spend.params")?;
  161. //let cashier_secret = jubjub::Fr::random(&mut OsRng);
  162. //let cashier_public = zcash_primitives::constants::SPENDING_KEY_GENERATOR * cashier_secret;
  163. // wallet secret key
  164. let secret = jubjub::Fr::random(&mut OsRng);
  165. // wallet public key
  166. let _public = zcash_primitives::constants::SPENDING_KEY_GENERATOR * secret;
  167. let merkle_roots = RocksColumn::<columns::MerkleRoots>::new(rocks.clone());
  168. let nullifiers = RocksColumn::<columns::Nullifiers>::new(rocks);
  169. //let wallet = adapter.wallet;
  170. let wallet = Arc::new(WalletDB::new("wallet.db")?);
  171. //let wallet2 = wallet.clone();
  172. let ex = executor.clone();
  173. let state = State {
  174. tree: CommitmentTree::empty(),
  175. merkle_roots,
  176. nullifiers,
  177. mint_pvk,
  178. spend_pvk,
  179. wallet: wallet.clone(),
  180. };
  181. let adapter = RpcAdapter::new(wallet.clone())?;
  182. // start the rpc server
  183. jsonserver::start(ex.clone(), options.clone(), adapter).await?;
  184. // create gateway client
  185. let mut client = GatewayClient::new(connect_addr, slabstore)?;
  186. // start subscribing
  187. let gateway_slabs_sub: GatewaySlabsSubscriber =
  188. client.start_subscriber(sub_addr, executor.clone()).await?;
  189. let subscribe_task = executor.spawn(subscribe(gateway_slabs_sub, state));
  190. // start gateway client
  191. client.start().await?;
  192. subscribe_task.cancel().await;
  193. Ok(())
  194. }
  195. fn main() -> Result<()> {
  196. use simplelog::*;
  197. let ex = Arc::new(Executor::new());
  198. let (signal, shutdown) = async_channel::unbounded::<()>();
  199. let options = Arc::new(ClientProgramOptions::load()?);
  200. let logger_config = ConfigBuilder::new().set_time_format_str("%T%.6f").build();
  201. let debug_level = if options.verbose {
  202. LevelFilter::Debug
  203. } else {
  204. LevelFilter::Off
  205. };
  206. CombinedLogger::init(vec![
  207. TermLogger::new(debug_level, logger_config, TerminalMode::Mixed).unwrap(),
  208. WriteLogger::new(
  209. LevelFilter::Debug,
  210. Config::default(),
  211. std::fs::File::create(options.log_path.as_path()).unwrap(),
  212. ),
  213. ])
  214. .unwrap();
  215. let ex2 = ex.clone();
  216. let (_, result) = Parallel::new()
  217. // Run four executor threads.
  218. .each(0..3, |_| smol::future::block_on(ex.run(shutdown.recv())))
  219. // Run the main future on the current thread.
  220. .finish(|| {
  221. smol::future::block_on(async move {
  222. start(ex2, options).await?;
  223. drop(signal);
  224. Ok::<(), drk::Error>(())
  225. })
  226. });
  227. result
  228. }
  229. //// $ cargo test test_ten_clients_simultaneously --bin darkfid
  230. //this will run 10 clients simultaneously
  231. //// $ cargo test test_subscriber --bin darkfid
  232. // Run Client A and send 10 slabs
  233. // Client B should receive 10 slabs from subscriber
  234. //// $ cargo test test_deposit --bin darkfid
  235. // Run Client A and send 10 slabs
  236. // Client B should receive 10 slabs from subscriber
  237. #[cfg(test)]
  238. mod test {
  239. use std::net::SocketAddr;
  240. use std::path::Path;
  241. use std::sync::Arc;
  242. use drk::blockchain::{rocks::columns, Rocks, RocksColumn, Slab};
  243. use drk::service::{GatewayClient, GatewaySlabsSubscriber};
  244. use async_executor::Executor;
  245. use easy_parallel::Parallel;
  246. use log::*;
  247. use rand::Rng;
  248. use simplelog::*;
  249. pub async fn subscribe(gateway_slabs_sub: GatewaySlabsSubscriber, id: String) {
  250. loop {
  251. gateway_slabs_sub.recv().await.unwrap();
  252. info!("Client {}: update state", id);
  253. }
  254. }
  255. fn setup_log() {
  256. let logger_config = ConfigBuilder::new().set_time_format_str("%T%.6f").build();
  257. CombinedLogger::init(vec![
  258. TermLogger::new(LevelFilter::Debug, logger_config, TerminalMode::Mixed).unwrap(),
  259. WriteLogger::new(
  260. LevelFilter::Debug,
  261. Config::default(),
  262. std::fs::File::create(Path::new("/tmp/dar.log")).unwrap(),
  263. ),
  264. ])
  265. .unwrap();
  266. }
  267. #[test]
  268. fn test_ten_clients_simultaneously() {
  269. setup_log();
  270. let mut thread_pools: Vec<std::thread::JoinHandle<()>> = vec![];
  271. for _ in 0..10 {
  272. let thread = std::thread::spawn(|| {
  273. let ex = Arc::new(Executor::new());
  274. let (signal, shutdown) = async_channel::unbounded::<()>();
  275. let ex2 = ex.clone();
  276. let (_, _) = Parallel::new()
  277. // Run four executor threads.
  278. .each(0..3, |_| smol::future::block_on(ex2.run(shutdown.recv())))
  279. // Run the main future on the current thread.
  280. .finish(|| {
  281. smol::future::block_on(async move {
  282. let connect_addr: SocketAddr = "127.0.0.1:3333".parse().unwrap();
  283. let sub_addr: SocketAddr = "127.0.0.1:4444".parse().unwrap();
  284. let mut rng = rand::thread_rng();
  285. let rnd: u32 = rng.gen();
  286. let path_str = format!("database_{}.db", rnd);
  287. let database_path = Path::new(path_str.as_str());
  288. let rocks = Rocks::new(database_path.clone()).unwrap();
  289. let slabstore = RocksColumn::<columns::Slabs>::new(rocks.clone());
  290. // create gateway client
  291. let mut client = GatewayClient::new(connect_addr, slabstore).unwrap();
  292. // start subscribing
  293. let gateway_slabs_sub: GatewaySlabsSubscriber =
  294. client.start_subscriber(sub_addr, ex.clone()).await.unwrap();
  295. ex.clone()
  296. .spawn(subscribe(gateway_slabs_sub, rnd.clone().to_string()))
  297. .detach();
  298. // start gateway client
  299. client.start().await.unwrap();
  300. let slab = Slab::new("btc".to_string(), rnd.to_le_bytes().to_vec());
  301. client.put_slab(slab).await.unwrap();
  302. });
  303. drop(signal);
  304. Ok::<(), drk::Error>(())
  305. });
  306. });
  307. thread_pools.push(thread);
  308. }
  309. for t in thread_pools {
  310. t.join().unwrap();
  311. }
  312. }
  313. #[test]
  314. fn test_subscriber() {
  315. setup_log();
  316. let mut thread_pools: Vec<std::thread::JoinHandle<()>> = vec![];
  317. // Client A
  318. let thread = std::thread::spawn(|| {
  319. smol::future::block_on(async move {
  320. let connect_addr: SocketAddr = "127.0.0.1:3333".parse().unwrap();
  321. let mut rng = rand::thread_rng();
  322. let rnd: u32 = rng.gen();
  323. let path_str = format!("database_{}.db", rnd);
  324. let database_path = Path::new(path_str.as_str());
  325. let rocks = Rocks::new(database_path.clone()).unwrap();
  326. let slabstore = RocksColumn::<columns::Slabs>::new(rocks.clone());
  327. // create gateway client
  328. let mut client = GatewayClient::new(connect_addr, slabstore).unwrap();
  329. // start gateway client
  330. client.start().await.unwrap();
  331. let slab = Slab::new("btc".to_string(), rnd.to_le_bytes().to_vec());
  332. client.put_slab(slab.clone()).await.unwrap();
  333. client.put_slab(slab.clone()).await.unwrap();
  334. client.put_slab(slab.clone()).await.unwrap();
  335. client.put_slab(slab.clone()).await.unwrap();
  336. client.put_slab(slab.clone()).await.unwrap();
  337. client.put_slab(slab.clone()).await.unwrap();
  338. client.put_slab(slab.clone()).await.unwrap();
  339. client.put_slab(slab.clone()).await.unwrap();
  340. client.put_slab(slab.clone()).await.unwrap();
  341. client.put_slab(slab.clone()).await.unwrap();
  342. });
  343. });
  344. // Client B
  345. let thread2 = std::thread::spawn(|| {
  346. let ex = Arc::new(Executor::new());
  347. let (signal, shutdown) = async_channel::unbounded::<()>();
  348. let ex2 = ex.clone();
  349. let (_, _) = Parallel::new()
  350. // Run four executor threads.
  351. .each(0..3, |_| smol::future::block_on(ex2.run(shutdown.recv())))
  352. // Run the main future on the current thread.
  353. .finish(|| {
  354. smol::future::block_on(async move {
  355. let connect_addr: SocketAddr = "127.0.0.1:3333".parse().unwrap();
  356. let sub_addr: SocketAddr = "127.0.0.1:4444".parse().unwrap();
  357. let mut rng = rand::thread_rng();
  358. let rnd: u32 = rng.gen();
  359. let path_str = format!("database_{}.db", rnd);
  360. let database_path = Path::new(path_str.as_str());
  361. let rocks = Rocks::new(database_path.clone()).unwrap();
  362. let slabstore = RocksColumn::<columns::Slabs>::new(rocks.clone());
  363. // create gateway client
  364. let mut client = GatewayClient::new(connect_addr, slabstore).unwrap();
  365. // start subscribing
  366. let gateway_slabs_sub: GatewaySlabsSubscriber =
  367. client.start_subscriber(sub_addr, ex.clone()).await.unwrap();
  368. ex.clone()
  369. .spawn(subscribe(gateway_slabs_sub, "B".to_string()))
  370. .detach();
  371. // start gateway client
  372. client.start().await.unwrap();
  373. // sleep for 2 seconds
  374. std::thread::sleep(std::time::Duration::from_secs(2));
  375. });
  376. drop(signal);
  377. Ok::<(), drk::Error>(())
  378. });
  379. });
  380. thread_pools.push(thread);
  381. thread_pools.push(thread2);
  382. for t in thread_pools {
  383. t.join().unwrap();
  384. }
  385. }
  386. #[test]
  387. fn test_deposit() {
  388. setup_log();
  389. let mut thread_pools: Vec<std::thread::JoinHandle<()>> = vec![];
  390. // Client A: User
  391. let thread = std::thread::spawn(|| {
  392. smol::future::block_on(async move {
  393. let connect_addr: SocketAddr = "127.0.0.1:3333".parse().unwrap();
  394. let mut rng = rand::thread_rng();
  395. let rnd: u32 = rng.gen();
  396. let path_str = format!("database_{}.db", rnd);
  397. let database_path = Path::new(path_str.as_str());
  398. let rocks = Rocks::new(database_path.clone()).unwrap();
  399. let slabstore = RocksColumn::<columns::Slabs>::new(rocks.clone());
  400. // create gateway client
  401. let mut client = GatewayClient::new(connect_addr, slabstore).unwrap();
  402. // start gateway client
  403. client.start().await.unwrap();
  404. let slab = Slab::new("btc".to_string(), rnd.to_le_bytes().to_vec());
  405. client.put_slab(slab.clone()).await.unwrap();
  406. client.put_slab(slab.clone()).await.unwrap();
  407. client.put_slab(slab.clone()).await.unwrap();
  408. client.put_slab(slab.clone()).await.unwrap();
  409. client.put_slab(slab.clone()).await.unwrap();
  410. client.put_slab(slab.clone()).await.unwrap();
  411. client.put_slab(slab.clone()).await.unwrap();
  412. client.put_slab(slab.clone()).await.unwrap();
  413. client.put_slab(slab.clone()).await.unwrap();
  414. client.put_slab(slab.clone()).await.unwrap();
  415. });
  416. });
  417. // Client B: Cashier
  418. let thread2 = std::thread::spawn(|| {
  419. let ex = Arc::new(Executor::new());
  420. let (signal, shutdown) = async_channel::unbounded::<()>();
  421. let ex2 = ex.clone();
  422. let (_, _) = Parallel::new()
  423. // Run four executor threads.
  424. .each(0..3, |_| smol::future::block_on(ex2.run(shutdown.recv())))
  425. // Run the main future on the current thread.
  426. .finish(|| {
  427. smol::future::block_on(async move {
  428. let connect_addr: SocketAddr = "127.0.0.1:3333".parse().unwrap();
  429. let sub_addr: SocketAddr = "127.0.0.1:4444".parse().unwrap();
  430. let mut rng = rand::thread_rng();
  431. let rnd: u32 = rng.gen();
  432. let path_str = format!("database_{}.db", rnd);
  433. let database_path = Path::new(path_str.as_str());
  434. let rocks = Rocks::new(database_path.clone()).unwrap();
  435. let slabstore = RocksColumn::<columns::Slabs>::new(rocks.clone());
  436. // create gateway client
  437. let mut client = GatewayClient::new(connect_addr, slabstore).unwrap();
  438. // start subscribing
  439. let gateway_slabs_sub: GatewaySlabsSubscriber =
  440. client.start_subscriber(sub_addr, ex.clone()).await.unwrap();
  441. ex.clone()
  442. .spawn(subscribe(gateway_slabs_sub, "B".to_string()))
  443. .detach();
  444. // start gateway client
  445. client.start().await.unwrap();
  446. // sleep for 2 seconds
  447. std::thread::sleep(std::time::Duration::from_secs(2));
  448. });
  449. drop(signal);
  450. Ok::<(), drk::Error>(())
  451. });
  452. });
  453. thread_pools.push(thread);
  454. thread_pools.push(thread2);
  455. for t in thread_pools {
  456. t.join().unwrap();
  457. }
  458. }
  459. }