1use std::path::Path;
2use std::process::Command;
3
4use ows_core::{
5 default_chain_for_type, ChainType, Config, EncryptedWallet, KeyType, WalletAccount,
6 ALL_CHAIN_TYPES,
7};
8use ows_signer::{
9 decrypt, encrypt, signer_for_chain, CryptoEnvelope, HdDeriver, Mnemonic, MnemonicStrength,
10 SecretBytes,
11};
12
13use crate::error::OwsLibError;
14use crate::types::{AccountInfo, SendResult, SignResult, WalletInfo};
15use crate::vault;
16
17fn wallet_to_info(w: &EncryptedWallet) -> WalletInfo {
19 WalletInfo {
20 id: w.id.clone(),
21 name: w.name.clone(),
22 accounts: w
23 .accounts
24 .iter()
25 .map(|a| AccountInfo {
26 chain_id: a.chain_id.clone(),
27 address: a.address.clone(),
28 derivation_path: a.derivation_path.clone(),
29 })
30 .collect(),
31 created_at: w.created_at.clone(),
32 }
33}
34
35fn parse_chain(s: &str) -> Result<ows_core::Chain, OwsLibError> {
36 ows_core::parse_chain(s).map_err(OwsLibError::InvalidInput)
37}
38
39fn derive_all_accounts(mnemonic: &Mnemonic, index: u32) -> Result<Vec<WalletAccount>, OwsLibError> {
41 let mut accounts = Vec::with_capacity(ALL_CHAIN_TYPES.len());
42 for ct in &ALL_CHAIN_TYPES {
43 let chain = default_chain_for_type(*ct);
44 let signer = signer_for_chain(*ct);
45 let path = signer.default_derivation_path(index);
46 let curve = signer.curve();
47 let key = HdDeriver::derive_from_mnemonic(mnemonic, "", &path, curve)?;
48 let address = signer.derive_address(key.expose())?;
49 let account_id = format!("{}:{}", chain.chain_id, address);
50 accounts.push(WalletAccount {
51 account_id,
52 address,
53 chain_id: chain.chain_id.to_string(),
54 derivation_path: path,
55 });
56 }
57 Ok(accounts)
58}
59
60struct KeyPair {
63 secp256k1: Vec<u8>,
64 ed25519: Vec<u8>,
65}
66
67impl Drop for KeyPair {
68 fn drop(&mut self) {
69 use zeroize::Zeroize;
70 self.secp256k1.zeroize();
71 self.ed25519.zeroize();
72 }
73}
74
75impl KeyPair {
76 fn key_for_curve(&self, curve: ows_signer::Curve) -> &[u8] {
78 match curve {
79 ows_signer::Curve::Secp256k1 => &self.secp256k1,
80 ows_signer::Curve::Ed25519 => &self.ed25519,
81 }
82 }
83
84 fn to_json_bytes(&self) -> Vec<u8> {
86 let obj = serde_json::json!({
87 "secp256k1": hex::encode(&self.secp256k1),
88 "ed25519": hex::encode(&self.ed25519),
89 });
90 obj.to_string().into_bytes()
91 }
92
93 fn from_json_bytes(bytes: &[u8]) -> Result<Self, OwsLibError> {
95 let s = String::from_utf8(bytes.to_vec())
96 .map_err(|_| OwsLibError::InvalidInput("invalid key pair data".into()))?;
97 let obj: serde_json::Value = serde_json::from_str(&s)?;
98 let secp = obj["secp256k1"]
99 .as_str()
100 .ok_or_else(|| OwsLibError::InvalidInput("missing secp256k1 key".into()))?;
101 let ed = obj["ed25519"]
102 .as_str()
103 .ok_or_else(|| OwsLibError::InvalidInput("missing ed25519 key".into()))?;
104 Ok(KeyPair {
105 secp256k1: hex::decode(secp)
106 .map_err(|e| OwsLibError::InvalidInput(format!("invalid secp256k1 hex: {e}")))?,
107 ed25519: hex::decode(ed)
108 .map_err(|e| OwsLibError::InvalidInput(format!("invalid ed25519 hex: {e}")))?,
109 })
110 }
111}
112
113fn derive_all_accounts_from_keys(keys: &KeyPair) -> Result<Vec<WalletAccount>, OwsLibError> {
115 let mut accounts = Vec::with_capacity(ALL_CHAIN_TYPES.len());
116 for ct in &ALL_CHAIN_TYPES {
117 let signer = signer_for_chain(*ct);
118 let key = keys.key_for_curve(signer.curve());
119 let address = signer.derive_address(key)?;
120 let chain = default_chain_for_type(*ct);
121 accounts.push(WalletAccount {
122 account_id: format!("{}:{}", chain.chain_id, address),
123 address,
124 chain_id: chain.chain_id.to_string(),
125 derivation_path: String::new(),
126 });
127 }
128 Ok(accounts)
129}
130
131pub fn generate_mnemonic(words: u32) -> Result<String, OwsLibError> {
133 let strength = match words {
134 12 => MnemonicStrength::Words12,
135 24 => MnemonicStrength::Words24,
136 _ => return Err(OwsLibError::InvalidInput("words must be 12 or 24".into())),
137 };
138
139 let mnemonic = Mnemonic::generate(strength)?;
140 let phrase = mnemonic.phrase();
141 String::from_utf8(phrase.expose().to_vec())
142 .map_err(|e| OwsLibError::InvalidInput(format!("invalid UTF-8 in mnemonic: {e}")))
143}
144
145pub fn derive_address(
147 mnemonic_phrase: &str,
148 chain: &str,
149 index: Option<u32>,
150) -> Result<String, OwsLibError> {
151 let chain = parse_chain(chain)?;
152 let mnemonic = Mnemonic::from_phrase(mnemonic_phrase)?;
153 let signer = signer_for_chain(chain.chain_type);
154 let path = signer.default_derivation_path(index.unwrap_or(0));
155 let curve = signer.curve();
156
157 let key = HdDeriver::derive_from_mnemonic(&mnemonic, "", &path, curve)?;
158 let address = signer.derive_address(key.expose())?;
159 Ok(address)
160}
161
162pub fn create_wallet(
165 name: &str,
166 words: Option<u32>,
167 passphrase: Option<&str>,
168 vault_path: Option<&Path>,
169) -> Result<WalletInfo, OwsLibError> {
170 let passphrase = passphrase.unwrap_or("");
171 let words = words.unwrap_or(12);
172 let strength = match words {
173 12 => MnemonicStrength::Words12,
174 24 => MnemonicStrength::Words24,
175 _ => return Err(OwsLibError::InvalidInput("words must be 12 or 24".into())),
176 };
177
178 if vault::wallet_name_exists(name, vault_path)? {
179 return Err(OwsLibError::WalletNameExists(name.to_string()));
180 }
181
182 let mnemonic = Mnemonic::generate(strength)?;
183 let accounts = derive_all_accounts(&mnemonic, 0)?;
184
185 let phrase = mnemonic.phrase();
186 let crypto_envelope = encrypt(phrase.expose(), passphrase)?;
187 let crypto_json = serde_json::to_value(&crypto_envelope)?;
188
189 let wallet_id = uuid::Uuid::new_v4().to_string();
190
191 let wallet = EncryptedWallet::new(
192 wallet_id,
193 name.to_string(),
194 accounts,
195 crypto_json,
196 KeyType::Mnemonic,
197 );
198
199 vault::save_encrypted_wallet(&wallet, vault_path)?;
200 Ok(wallet_to_info(&wallet))
201}
202
203pub fn import_wallet_mnemonic(
205 name: &str,
206 mnemonic_phrase: &str,
207 passphrase: Option<&str>,
208 index: Option<u32>,
209 vault_path: Option<&Path>,
210) -> Result<WalletInfo, OwsLibError> {
211 let passphrase = passphrase.unwrap_or("");
212 let index = index.unwrap_or(0);
213
214 if vault::wallet_name_exists(name, vault_path)? {
215 return Err(OwsLibError::WalletNameExists(name.to_string()));
216 }
217
218 let mnemonic = Mnemonic::from_phrase(mnemonic_phrase)?;
219 let accounts = derive_all_accounts(&mnemonic, index)?;
220
221 let phrase = mnemonic.phrase();
222 let crypto_envelope = encrypt(phrase.expose(), passphrase)?;
223 let crypto_json = serde_json::to_value(&crypto_envelope)?;
224
225 let wallet_id = uuid::Uuid::new_v4().to_string();
226
227 let wallet = EncryptedWallet::new(
228 wallet_id,
229 name.to_string(),
230 accounts,
231 crypto_json,
232 KeyType::Mnemonic,
233 );
234
235 vault::save_encrypted_wallet(&wallet, vault_path)?;
236 Ok(wallet_to_info(&wallet))
237}
238
239fn decode_hex_key(hex_str: &str) -> Result<Vec<u8>, OwsLibError> {
241 let trimmed = hex_str.strip_prefix("0x").unwrap_or(hex_str);
242 hex::decode(trimmed)
243 .map_err(|e| OwsLibError::InvalidInput(format!("invalid hex private key: {e}")))
244}
245
246pub fn import_wallet_private_key(
255 name: &str,
256 private_key_hex: &str,
257 chain: Option<&str>,
258 passphrase: Option<&str>,
259 vault_path: Option<&Path>,
260 secp256k1_key_hex: Option<&str>,
261 ed25519_key_hex: Option<&str>,
262) -> Result<WalletInfo, OwsLibError> {
263 let passphrase = passphrase.unwrap_or("");
264
265 if vault::wallet_name_exists(name, vault_path)? {
266 return Err(OwsLibError::WalletNameExists(name.to_string()));
267 }
268
269 let keys = match (secp256k1_key_hex, ed25519_key_hex) {
270 (Some(secp_hex), Some(ed_hex)) => KeyPair {
272 secp256k1: decode_hex_key(secp_hex)?,
273 ed25519: decode_hex_key(ed_hex)?,
274 },
275 _ => {
277 let key_bytes = decode_hex_key(private_key_hex)?;
278
279 let source_curve = match chain {
281 Some(c) => {
282 let parsed = parse_chain(c)?;
283 signer_for_chain(parsed.chain_type).curve()
284 }
285 None => ows_signer::Curve::Secp256k1,
286 };
287
288 let mut other_key = vec![0u8; 32];
290 getrandom::getrandom(&mut other_key).map_err(|e| {
291 OwsLibError::InvalidInput(format!("failed to generate random key: {e}"))
292 })?;
293
294 match source_curve {
295 ows_signer::Curve::Secp256k1 => KeyPair {
296 secp256k1: key_bytes,
297 ed25519: ed25519_key_hex
298 .map(decode_hex_key)
299 .transpose()?
300 .unwrap_or(other_key),
301 },
302 ows_signer::Curve::Ed25519 => KeyPair {
303 secp256k1: secp256k1_key_hex
304 .map(decode_hex_key)
305 .transpose()?
306 .unwrap_or(other_key),
307 ed25519: key_bytes,
308 },
309 }
310 }
311 };
312
313 let accounts = derive_all_accounts_from_keys(&keys)?;
314
315 let payload = keys.to_json_bytes();
316 let crypto_envelope = encrypt(&payload, passphrase)?;
317 let crypto_json = serde_json::to_value(&crypto_envelope)?;
318
319 let wallet_id = uuid::Uuid::new_v4().to_string();
320
321 let wallet = EncryptedWallet::new(
322 wallet_id,
323 name.to_string(),
324 accounts,
325 crypto_json,
326 KeyType::PrivateKey,
327 );
328
329 vault::save_encrypted_wallet(&wallet, vault_path)?;
330 Ok(wallet_to_info(&wallet))
331}
332
333pub fn list_wallets(vault_path: Option<&Path>) -> Result<Vec<WalletInfo>, OwsLibError> {
335 let wallets = vault::list_encrypted_wallets(vault_path)?;
336 Ok(wallets.iter().map(wallet_to_info).collect())
337}
338
339pub fn get_wallet(name_or_id: &str, vault_path: Option<&Path>) -> Result<WalletInfo, OwsLibError> {
341 let wallet = vault::load_wallet_by_name_or_id(name_or_id, vault_path)?;
342 Ok(wallet_to_info(&wallet))
343}
344
345pub fn delete_wallet(name_or_id: &str, vault_path: Option<&Path>) -> Result<(), OwsLibError> {
347 let wallet = vault::load_wallet_by_name_or_id(name_or_id, vault_path)?;
348 vault::delete_wallet_file(&wallet.id, vault_path)?;
349 Ok(())
350}
351
352pub fn export_wallet(
355 name_or_id: &str,
356 passphrase: Option<&str>,
357 vault_path: Option<&Path>,
358) -> Result<String, OwsLibError> {
359 let passphrase = passphrase.unwrap_or("");
360 let wallet = vault::load_wallet_by_name_or_id(name_or_id, vault_path)?;
361 let envelope: CryptoEnvelope = serde_json::from_value(wallet.crypto.clone())?;
362 let secret = decrypt(&envelope, passphrase)?;
363
364 match wallet.key_type {
365 KeyType::Mnemonic => String::from_utf8(secret.expose().to_vec()).map_err(|_| {
366 OwsLibError::InvalidInput("wallet contains invalid UTF-8 mnemonic".into())
367 }),
368 KeyType::PrivateKey => {
369 String::from_utf8(secret.expose().to_vec())
371 .map_err(|_| OwsLibError::InvalidInput("wallet contains invalid key data".into()))
372 }
373 }
374}
375
376pub fn rename_wallet(
378 name_or_id: &str,
379 new_name: &str,
380 vault_path: Option<&Path>,
381) -> Result<(), OwsLibError> {
382 let mut wallet = vault::load_wallet_by_name_or_id(name_or_id, vault_path)?;
383
384 if wallet.name == new_name {
385 return Ok(());
386 }
387
388 if vault::wallet_name_exists(new_name, vault_path)? {
389 return Err(OwsLibError::WalletNameExists(new_name.to_string()));
390 }
391
392 wallet.name = new_name.to_string();
393 vault::save_encrypted_wallet(&wallet, vault_path)?;
394 Ok(())
395}
396
397pub fn sign_transaction(
399 wallet: &str,
400 chain: &str,
401 tx_hex: &str,
402 passphrase: Option<&str>,
403 index: Option<u32>,
404 vault_path: Option<&Path>,
405) -> Result<SignResult, OwsLibError> {
406 let passphrase = passphrase.unwrap_or("");
407 let chain = parse_chain(chain)?;
408
409 let tx_hex_clean = tx_hex.strip_prefix("0x").unwrap_or(tx_hex);
410 let tx_bytes = hex::decode(tx_hex_clean)
411 .map_err(|e| OwsLibError::InvalidInput(format!("invalid hex transaction: {e}")))?;
412
413 let key = decrypt_signing_key(wallet, chain.chain_type, passphrase, index, vault_path)?;
414 let signer = signer_for_chain(chain.chain_type);
415 let output = signer.sign_transaction(key.expose(), &tx_bytes)?;
416
417 Ok(SignResult {
418 signature: hex::encode(&output.signature),
419 recovery_id: output.recovery_id,
420 })
421}
422
423pub fn sign_message(
425 wallet: &str,
426 chain: &str,
427 message: &str,
428 passphrase: Option<&str>,
429 encoding: Option<&str>,
430 index: Option<u32>,
431 vault_path: Option<&Path>,
432) -> Result<SignResult, OwsLibError> {
433 let passphrase = passphrase.unwrap_or("");
434 let chain = parse_chain(chain)?;
435
436 let encoding = encoding.unwrap_or("utf8");
437 let msg_bytes = match encoding {
438 "utf8" => message.as_bytes().to_vec(),
439 "hex" => hex::decode(message)
440 .map_err(|e| OwsLibError::InvalidInput(format!("invalid hex message: {e}")))?,
441 _ => {
442 return Err(OwsLibError::InvalidInput(format!(
443 "unsupported encoding: {encoding} (use 'utf8' or 'hex')"
444 )))
445 }
446 };
447
448 let key = decrypt_signing_key(wallet, chain.chain_type, passphrase, index, vault_path)?;
449 let signer = signer_for_chain(chain.chain_type);
450 let output = signer.sign_message(key.expose(), &msg_bytes)?;
451
452 Ok(SignResult {
453 signature: hex::encode(&output.signature),
454 recovery_id: output.recovery_id,
455 })
456}
457
458pub fn sign_and_send(
460 wallet: &str,
461 chain: &str,
462 tx_hex: &str,
463 passphrase: Option<&str>,
464 index: Option<u32>,
465 rpc_url: Option<&str>,
466 vault_path: Option<&Path>,
467) -> Result<SendResult, OwsLibError> {
468 let passphrase = passphrase.unwrap_or("");
469 let chain_info = parse_chain(chain)?;
470
471 let tx_hex_clean = tx_hex.strip_prefix("0x").unwrap_or(tx_hex);
472 let tx_bytes = hex::decode(tx_hex_clean)
473 .map_err(|e| OwsLibError::InvalidInput(format!("invalid hex transaction: {e}")))?;
474
475 let key = decrypt_signing_key(wallet, chain_info.chain_type, passphrase, index, vault_path)?;
476
477 sign_encode_and_broadcast(key.expose(), chain, &tx_bytes, rpc_url)
478}
479
480pub fn sign_encode_and_broadcast(
487 private_key: &[u8],
488 chain: &str,
489 tx_bytes: &[u8],
490 rpc_url: Option<&str>,
491) -> Result<SendResult, OwsLibError> {
492 let chain = parse_chain(chain)?;
493 let signer = signer_for_chain(chain.chain_type);
494
495 let signable = signer.extract_signable_bytes(tx_bytes)?;
497
498 let output = signer.sign_transaction(private_key, signable)?;
500
501 let signed_tx = signer.encode_signed_transaction(tx_bytes, &output)?;
503
504 let rpc = resolve_rpc_url(chain.chain_id, chain.chain_type, rpc_url)?;
506
507 let tx_hash = broadcast(chain.chain_type, &rpc, &signed_tx)?;
509
510 Ok(SendResult { tx_hash })
511}
512
513fn decrypt_signing_key(
517 wallet_name_or_id: &str,
518 chain_type: ChainType,
519 passphrase: &str,
520 index: Option<u32>,
521 vault_path: Option<&Path>,
522) -> Result<SecretBytes, OwsLibError> {
523 let wallet = vault::load_wallet_by_name_or_id(wallet_name_or_id, vault_path)?;
524 let envelope: CryptoEnvelope = serde_json::from_value(wallet.crypto.clone())?;
525 let secret = decrypt(&envelope, passphrase)?;
526
527 match wallet.key_type {
528 KeyType::Mnemonic => {
529 let phrase = std::str::from_utf8(secret.expose()).map_err(|_| {
531 OwsLibError::InvalidInput("wallet contains invalid UTF-8 mnemonic".into())
532 })?;
533 let mnemonic = Mnemonic::from_phrase(phrase)?;
534 let signer = signer_for_chain(chain_type);
535 let path = signer.default_derivation_path(index.unwrap_or(0));
536 let curve = signer.curve();
537 Ok(HdDeriver::derive_from_mnemonic(
538 &mnemonic, "", &path, curve,
539 )?)
540 }
541 KeyType::PrivateKey => {
542 let keys = KeyPair::from_json_bytes(secret.expose())?;
544 let signer = signer_for_chain(chain_type);
545 Ok(SecretBytes::from_slice(keys.key_for_curve(signer.curve())))
546 }
547 }
548}
549
550fn resolve_rpc_url(
552 chain_id: &str,
553 chain_type: ChainType,
554 explicit: Option<&str>,
555) -> Result<String, OwsLibError> {
556 if let Some(url) = explicit {
557 return Ok(url.to_string());
558 }
559
560 let config = Config::load_or_default();
561 let defaults = Config::default_rpc();
562
563 if let Some(url) = config.rpc.get(chain_id) {
565 return Ok(url.clone());
566 }
567 if let Some(url) = defaults.get(chain_id) {
568 return Ok(url.clone());
569 }
570
571 let namespace = chain_type.namespace();
573 for (key, url) in &config.rpc {
574 if key.starts_with(namespace) {
575 return Ok(url.clone());
576 }
577 }
578 for (key, url) in &defaults {
579 if key.starts_with(namespace) {
580 return Ok(url.clone());
581 }
582 }
583
584 Err(OwsLibError::InvalidInput(format!(
585 "no RPC URL configured for chain '{chain_id}'"
586 )))
587}
588
589fn broadcast(chain: ChainType, rpc_url: &str, signed_bytes: &[u8]) -> Result<String, OwsLibError> {
591 match chain {
592 ChainType::Evm => broadcast_evm(rpc_url, signed_bytes),
593 ChainType::Solana => broadcast_solana(rpc_url, signed_bytes),
594 ChainType::Bitcoin => broadcast_bitcoin(rpc_url, signed_bytes),
595 ChainType::Cosmos => broadcast_cosmos(rpc_url, signed_bytes),
596 ChainType::Tron => broadcast_tron(rpc_url, signed_bytes),
597 ChainType::Ton => broadcast_ton(rpc_url, signed_bytes),
598 ChainType::Spark => Err(OwsLibError::InvalidInput(
599 "broadcast not yet supported for Spark".into(),
600 )),
601 }
602}
603
604fn broadcast_evm(rpc_url: &str, signed_bytes: &[u8]) -> Result<String, OwsLibError> {
605 let hex_tx = format!("0x{}", hex::encode(signed_bytes));
606 let body = serde_json::json!({
607 "jsonrpc": "2.0",
608 "method": "eth_sendRawTransaction",
609 "params": [hex_tx],
610 "id": 1
611 });
612 let resp = curl_post_json(rpc_url, &body.to_string())?;
613 extract_json_field(&resp, "result")
614}
615
616fn broadcast_solana(rpc_url: &str, signed_bytes: &[u8]) -> Result<String, OwsLibError> {
617 use base64::Engine;
618 let b64_tx = base64::engine::general_purpose::STANDARD.encode(signed_bytes);
619 let body = serde_json::json!({
620 "jsonrpc": "2.0",
621 "method": "sendTransaction",
622 "params": [b64_tx],
623 "id": 1
624 });
625 let resp = curl_post_json(rpc_url, &body.to_string())?;
626 extract_json_field(&resp, "result")
627}
628
629fn broadcast_bitcoin(rpc_url: &str, signed_bytes: &[u8]) -> Result<String, OwsLibError> {
630 let hex_tx = hex::encode(signed_bytes);
631 let url = format!("{}/tx", rpc_url.trim_end_matches('/'));
632 let output = Command::new("curl")
633 .args([
634 "-fsSL",
635 "-X",
636 "POST",
637 "-H",
638 "Content-Type: text/plain",
639 "-d",
640 &hex_tx,
641 &url,
642 ])
643 .output()
644 .map_err(|e| OwsLibError::BroadcastFailed(format!("failed to run curl: {e}")))?;
645
646 if !output.status.success() {
647 let stderr = String::from_utf8_lossy(&output.stderr);
648 return Err(OwsLibError::BroadcastFailed(format!(
649 "broadcast failed: {stderr}"
650 )));
651 }
652
653 let tx_hash = String::from_utf8_lossy(&output.stdout).trim().to_string();
654 if tx_hash.is_empty() {
655 return Err(OwsLibError::BroadcastFailed(
656 "empty response from broadcast".into(),
657 ));
658 }
659 Ok(tx_hash)
660}
661
662fn broadcast_cosmos(rpc_url: &str, signed_bytes: &[u8]) -> Result<String, OwsLibError> {
663 use base64::Engine;
664 let b64_tx = base64::engine::general_purpose::STANDARD.encode(signed_bytes);
665 let url = format!("{}/cosmos/tx/v1beta1/txs", rpc_url.trim_end_matches('/'));
666 let body = serde_json::json!({
667 "tx_bytes": b64_tx,
668 "mode": "BROADCAST_MODE_SYNC"
669 });
670 let resp = curl_post_json(&url, &body.to_string())?;
671 let parsed: serde_json::Value = serde_json::from_str(&resp)?;
672 parsed["tx_response"]["txhash"]
673 .as_str()
674 .map(|s| s.to_string())
675 .ok_or_else(|| OwsLibError::BroadcastFailed(format!("no txhash in response: {resp}")))
676}
677
678fn broadcast_tron(rpc_url: &str, signed_bytes: &[u8]) -> Result<String, OwsLibError> {
679 let hex_tx = hex::encode(signed_bytes);
680 let url = format!("{}/wallet/broadcasthex", rpc_url.trim_end_matches('/'));
681 let body = serde_json::json!({ "transaction": hex_tx });
682 let resp = curl_post_json(&url, &body.to_string())?;
683 extract_json_field(&resp, "txid")
684}
685
686fn broadcast_ton(rpc_url: &str, signed_bytes: &[u8]) -> Result<String, OwsLibError> {
687 use base64::Engine;
688 let b64_boc = base64::engine::general_purpose::STANDARD.encode(signed_bytes);
689 let url = format!("{}/sendBoc", rpc_url.trim_end_matches('/'));
690 let body = serde_json::json!({ "boc": b64_boc });
691 let resp = curl_post_json(&url, &body.to_string())?;
692 let parsed: serde_json::Value = serde_json::from_str(&resp)?;
693 parsed["result"]["hash"]
694 .as_str()
695 .map(|s| s.to_string())
696 .ok_or_else(|| OwsLibError::BroadcastFailed(format!("no hash in response: {resp}")))
697}
698
699fn curl_post_json(url: &str, body: &str) -> Result<String, OwsLibError> {
700 let output = Command::new("curl")
701 .args([
702 "-fsSL",
703 "-X",
704 "POST",
705 "-H",
706 "Content-Type: application/json",
707 "-d",
708 body,
709 url,
710 ])
711 .output()
712 .map_err(|e| OwsLibError::BroadcastFailed(format!("failed to run curl: {e}")))?;
713
714 if !output.status.success() {
715 let stderr = String::from_utf8_lossy(&output.stderr);
716 return Err(OwsLibError::BroadcastFailed(format!(
717 "broadcast failed: {stderr}"
718 )));
719 }
720
721 Ok(String::from_utf8_lossy(&output.stdout).to_string())
722}
723
724fn extract_json_field(json_str: &str, field: &str) -> Result<String, OwsLibError> {
725 let parsed: serde_json::Value = serde_json::from_str(json_str)?;
726
727 if let Some(error) = parsed.get("error") {
728 return Err(OwsLibError::BroadcastFailed(format!("RPC error: {error}")));
729 }
730
731 parsed[field]
732 .as_str()
733 .map(|s| s.to_string())
734 .ok_or_else(|| {
735 OwsLibError::BroadcastFailed(format!("no '{field}' in response: {json_str}"))
736 })
737}
738
739#[cfg(test)]
740mod tests {
741 use super::*;
742
743 fn save_privkey_wallet(
748 name: &str,
749 privkey_hex: &str,
750 passphrase: &str,
751 vault: &Path,
752 ) -> WalletInfo {
753 let key_bytes = hex::decode(privkey_hex).unwrap();
754
755 let mut ed_key = vec![0u8; 32];
757 getrandom::getrandom(&mut ed_key).unwrap();
758
759 let keys = KeyPair {
760 secp256k1: key_bytes,
761 ed25519: ed_key,
762 };
763 let accounts = derive_all_accounts_from_keys(&keys).unwrap();
764 let payload = keys.to_json_bytes();
765 let crypto_envelope = encrypt(&payload, passphrase).unwrap();
766 let crypto_json = serde_json::to_value(&crypto_envelope).unwrap();
767 let wallet = EncryptedWallet::new(
768 uuid::Uuid::new_v4().to_string(),
769 name.to_string(),
770 accounts,
771 crypto_json,
772 KeyType::PrivateKey,
773 );
774 vault::save_encrypted_wallet(&wallet, Some(vault)).unwrap();
775 wallet_to_info(&wallet)
776 }
777
778 const TEST_PRIVKEY: &str = "4c0883a69102937d6231471b5dbb6204fe5129617082792ae468d01a3f362318";
779
780 #[test]
785 fn mnemonic_12_words() {
786 let phrase = generate_mnemonic(12).unwrap();
787 assert_eq!(phrase.split_whitespace().count(), 12);
788 }
789
790 #[test]
791 fn mnemonic_24_words() {
792 let phrase = generate_mnemonic(24).unwrap();
793 assert_eq!(phrase.split_whitespace().count(), 24);
794 }
795
796 #[test]
797 fn mnemonic_invalid_word_count() {
798 assert!(generate_mnemonic(15).is_err());
799 assert!(generate_mnemonic(0).is_err());
800 assert!(generate_mnemonic(13).is_err());
801 }
802
803 #[test]
804 fn mnemonic_is_unique_each_call() {
805 let a = generate_mnemonic(12).unwrap();
806 let b = generate_mnemonic(12).unwrap();
807 assert_ne!(a, b, "two generated mnemonics should differ");
808 }
809
810 #[test]
815 fn derive_address_all_chains() {
816 let phrase = generate_mnemonic(12).unwrap();
817 let chains = ["evm", "solana", "bitcoin", "cosmos", "tron", "ton"];
818 for chain in &chains {
819 let addr = derive_address(&phrase, chain, None).unwrap();
820 assert!(!addr.is_empty(), "address should be non-empty for {chain}");
821 }
822 }
823
824 #[test]
825 fn derive_address_evm_format() {
826 let phrase = generate_mnemonic(12).unwrap();
827 let addr = derive_address(&phrase, "evm", None).unwrap();
828 assert!(addr.starts_with("0x"), "EVM address should start with 0x");
829 assert_eq!(addr.len(), 42, "EVM address should be 42 chars");
830 }
831
832 #[test]
833 fn derive_address_deterministic() {
834 let phrase = generate_mnemonic(12).unwrap();
835 let a = derive_address(&phrase, "evm", None).unwrap();
836 let b = derive_address(&phrase, "evm", None).unwrap();
837 assert_eq!(a, b, "same mnemonic should produce same address");
838 }
839
840 #[test]
841 fn derive_address_different_index() {
842 let phrase = generate_mnemonic(12).unwrap();
843 let a = derive_address(&phrase, "evm", Some(0)).unwrap();
844 let b = derive_address(&phrase, "evm", Some(1)).unwrap();
845 assert_ne!(a, b, "different indices should produce different addresses");
846 }
847
848 #[test]
849 fn derive_address_invalid_chain() {
850 let phrase = generate_mnemonic(12).unwrap();
851 assert!(derive_address(&phrase, "nonexistent", None).is_err());
852 }
853
854 #[test]
855 fn derive_address_invalid_mnemonic() {
856 assert!(derive_address("not a valid mnemonic phrase at all", "evm", None).is_err());
857 }
858
859 #[test]
864 fn mnemonic_wallet_create_export_reimport() {
865 let v1 = tempfile::tempdir().unwrap();
866 let v2 = tempfile::tempdir().unwrap();
867
868 let w1 = create_wallet("w1", None, None, Some(v1.path())).unwrap();
870 assert!(!w1.accounts.is_empty());
871
872 let phrase = export_wallet("w1", None, Some(v1.path())).unwrap();
874 assert_eq!(phrase.split_whitespace().count(), 12);
875
876 let w2 = import_wallet_mnemonic("w2", &phrase, None, None, Some(v2.path())).unwrap();
878
879 assert_eq!(w1.accounts.len(), w2.accounts.len());
881 for (a1, a2) in w1.accounts.iter().zip(w2.accounts.iter()) {
882 assert_eq!(a1.chain_id, a2.chain_id);
883 assert_eq!(
884 a1.address, a2.address,
885 "address mismatch for {}",
886 a1.chain_id
887 );
888 }
889 }
890
891 #[test]
892 fn mnemonic_wallet_sign_message_all_chains() {
893 let dir = tempfile::tempdir().unwrap();
894 let vault = dir.path();
895 create_wallet("multi-sign", None, None, Some(vault)).unwrap();
896
897 let chains = ["evm", "solana", "bitcoin", "cosmos", "tron", "ton", "spark"];
898 for chain in &chains {
899 let result = sign_message(
900 "multi-sign",
901 chain,
902 "test msg",
903 None,
904 None,
905 None,
906 Some(vault),
907 );
908 assert!(
909 result.is_ok(),
910 "sign_message should work for {chain}: {:?}",
911 result.err()
912 );
913 let sig = result.unwrap();
914 assert!(
915 !sig.signature.is_empty(),
916 "signature should be non-empty for {chain}"
917 );
918 }
919 }
920
921 #[test]
922 fn mnemonic_wallet_sign_tx_all_chains() {
923 let dir = tempfile::tempdir().unwrap();
924 let vault = dir.path();
925 create_wallet("tx-sign", None, None, Some(vault)).unwrap();
926
927 let generic_tx_hex = "deadbeefdeadbeefdeadbeefdeadbeefdeadbeefdeadbeefdeadbeefdeadbeef";
928 let mut solana_tx = vec![0x01u8]; solana_tx.extend_from_slice(&[0u8; 64]); solana_tx.extend_from_slice(&[0xDE, 0xAD, 0xBE, 0xEF]); let solana_tx_hex = hex::encode(&solana_tx);
934
935 let chains = ["evm", "solana", "bitcoin", "cosmos", "tron", "ton", "spark"];
936 for chain in &chains {
937 let tx = if *chain == "solana" {
938 &solana_tx_hex
939 } else {
940 generic_tx_hex
941 };
942 let result = sign_transaction("tx-sign", chain, tx, None, None, Some(vault));
943 assert!(
944 result.is_ok(),
945 "sign_transaction should work for {chain}: {:?}",
946 result.err()
947 );
948 }
949 }
950
951 #[test]
952 fn mnemonic_wallet_signing_is_deterministic() {
953 let dir = tempfile::tempdir().unwrap();
954 let vault = dir.path();
955 create_wallet("det-sign", None, None, Some(vault)).unwrap();
956
957 let s1 = sign_message("det-sign", "evm", "hello", None, None, None, Some(vault)).unwrap();
958 let s2 = sign_message("det-sign", "evm", "hello", None, None, None, Some(vault)).unwrap();
959 assert_eq!(
960 s1.signature, s2.signature,
961 "same message should produce same signature"
962 );
963 }
964
965 #[test]
966 fn mnemonic_wallet_different_messages_produce_different_sigs() {
967 let dir = tempfile::tempdir().unwrap();
968 let vault = dir.path();
969 create_wallet("diff-msg", None, None, Some(vault)).unwrap();
970
971 let s1 = sign_message("diff-msg", "evm", "hello", None, None, None, Some(vault)).unwrap();
972 let s2 = sign_message("diff-msg", "evm", "world", None, None, None, Some(vault)).unwrap();
973 assert_ne!(s1.signature, s2.signature);
974 }
975
976 #[test]
981 fn privkey_wallet_sign_message() {
982 let dir = tempfile::tempdir().unwrap();
983 save_privkey_wallet("pk-sign", TEST_PRIVKEY, "", dir.path());
984
985 let sig = sign_message(
986 "pk-sign",
987 "evm",
988 "hello",
989 None,
990 None,
991 None,
992 Some(dir.path()),
993 )
994 .unwrap();
995 assert!(!sig.signature.is_empty());
996 assert!(sig.recovery_id.is_some());
997 }
998
999 #[test]
1000 fn privkey_wallet_sign_transaction() {
1001 let dir = tempfile::tempdir().unwrap();
1002 save_privkey_wallet("pk-tx", TEST_PRIVKEY, "", dir.path());
1003
1004 let tx = "deadbeefdeadbeefdeadbeefdeadbeefdeadbeefdeadbeefdeadbeefdeadbeef";
1005 let sig = sign_transaction("pk-tx", "evm", tx, None, None, Some(dir.path())).unwrap();
1006 assert!(!sig.signature.is_empty());
1007 }
1008
1009 #[test]
1010 fn privkey_wallet_export_returns_json() {
1011 let dir = tempfile::tempdir().unwrap();
1012 save_privkey_wallet("pk-export", TEST_PRIVKEY, "", dir.path());
1013
1014 let exported = export_wallet("pk-export", None, Some(dir.path())).unwrap();
1015 let obj: serde_json::Value = serde_json::from_str(&exported).unwrap();
1016 assert_eq!(
1017 obj["secp256k1"].as_str().unwrap(),
1018 TEST_PRIVKEY,
1019 "exported secp256k1 key should match original"
1020 );
1021 assert!(obj["ed25519"].as_str().is_some(), "should have ed25519 key");
1022 }
1023
1024 #[test]
1025 fn privkey_wallet_signing_is_deterministic() {
1026 let dir = tempfile::tempdir().unwrap();
1027 save_privkey_wallet("pk-det", TEST_PRIVKEY, "", dir.path());
1028
1029 let s1 = sign_message("pk-det", "evm", "test", None, None, None, Some(dir.path())).unwrap();
1030 let s2 = sign_message("pk-det", "evm", "test", None, None, None, Some(dir.path())).unwrap();
1031 assert_eq!(s1.signature, s2.signature);
1032 }
1033
1034 #[test]
1035 fn privkey_and_mnemonic_wallets_produce_different_sigs() {
1036 let dir = tempfile::tempdir().unwrap();
1037 let vault = dir.path();
1038
1039 create_wallet("mn-w", None, None, Some(vault)).unwrap();
1040 save_privkey_wallet("pk-w", TEST_PRIVKEY, "", vault);
1041
1042 let mn_sig = sign_message("mn-w", "evm", "hello", None, None, None, Some(vault)).unwrap();
1043 let pk_sig = sign_message("pk-w", "evm", "hello", None, None, None, Some(vault)).unwrap();
1044 assert_ne!(
1045 mn_sig.signature, pk_sig.signature,
1046 "different keys should produce different signatures"
1047 );
1048 }
1049
1050 #[test]
1051 fn privkey_wallet_import_via_api() {
1052 let dir = tempfile::tempdir().unwrap();
1053 let vault = dir.path();
1054
1055 let info = import_wallet_private_key(
1056 "pk-api",
1057 TEST_PRIVKEY,
1058 Some("evm"),
1059 None,
1060 Some(vault),
1061 None,
1062 None,
1063 )
1064 .unwrap();
1065 assert!(
1066 !info.accounts.is_empty(),
1067 "should derive at least one account"
1068 );
1069
1070 let sig = sign_message("pk-api", "evm", "hello", None, None, None, Some(vault)).unwrap();
1072 assert!(!sig.signature.is_empty());
1073
1074 let exported = export_wallet("pk-api", None, Some(vault)).unwrap();
1076 let obj: serde_json::Value = serde_json::from_str(&exported).unwrap();
1077 assert_eq!(obj["secp256k1"].as_str().unwrap(), TEST_PRIVKEY);
1078 }
1079
1080 #[test]
1081 fn privkey_wallet_import_both_curve_keys() {
1082 let dir = tempfile::tempdir().unwrap();
1083 let vault = dir.path();
1084
1085 let secp_key = "4c0883a69102937d6231471b5dbb6204fe5129617082792ae468d01a3f362318";
1086 let ed_key = "9d61b19deffd5a60ba844af492ec2cc44449c5697b326919703bac031cae7f60";
1087
1088 let info = import_wallet_private_key(
1089 "pk-both",
1090 "", None, None,
1093 Some(vault),
1094 Some(secp_key),
1095 Some(ed_key),
1096 )
1097 .unwrap();
1098
1099 assert_eq!(
1100 info.accounts.len(),
1101 6,
1102 "should have one account per chain type"
1103 );
1104
1105 let sig = sign_message("pk-both", "evm", "hello", None, None, None, Some(vault)).unwrap();
1107 assert!(!sig.signature.is_empty());
1108
1109 let sig =
1111 sign_message("pk-both", "solana", "hello", None, None, None, Some(vault)).unwrap();
1112 assert!(!sig.signature.is_empty());
1113
1114 let exported = export_wallet("pk-both", None, Some(vault)).unwrap();
1116 let obj: serde_json::Value = serde_json::from_str(&exported).unwrap();
1117 assert_eq!(obj["secp256k1"].as_str().unwrap(), secp_key);
1118 assert_eq!(obj["ed25519"].as_str().unwrap(), ed_key);
1119 }
1120
1121 #[test]
1126 fn passphrase_protected_mnemonic_wallet() {
1127 let dir = tempfile::tempdir().unwrap();
1128 let vault = dir.path();
1129
1130 create_wallet("pass-mn", None, Some("s3cret"), Some(vault)).unwrap();
1131
1132 let sig = sign_message(
1134 "pass-mn",
1135 "evm",
1136 "hello",
1137 Some("s3cret"),
1138 None,
1139 None,
1140 Some(vault),
1141 )
1142 .unwrap();
1143 assert!(!sig.signature.is_empty());
1144
1145 let phrase = export_wallet("pass-mn", Some("s3cret"), Some(vault)).unwrap();
1147 assert_eq!(phrase.split_whitespace().count(), 12);
1148
1149 assert!(sign_message(
1151 "pass-mn",
1152 "evm",
1153 "hello",
1154 Some("wrong"),
1155 None,
1156 None,
1157 Some(vault)
1158 )
1159 .is_err());
1160 assert!(export_wallet("pass-mn", Some("wrong"), Some(vault)).is_err());
1161
1162 assert!(sign_message("pass-mn", "evm", "hello", None, None, None, Some(vault)).is_err());
1164 }
1165
1166 #[test]
1167 fn passphrase_protected_privkey_wallet() {
1168 let dir = tempfile::tempdir().unwrap();
1169 save_privkey_wallet("pass-pk", TEST_PRIVKEY, "mypass", dir.path());
1170
1171 let sig = sign_message(
1173 "pass-pk",
1174 "evm",
1175 "hello",
1176 Some("mypass"),
1177 None,
1178 None,
1179 Some(dir.path()),
1180 )
1181 .unwrap();
1182 assert!(!sig.signature.is_empty());
1183
1184 let exported = export_wallet("pass-pk", Some("mypass"), Some(dir.path())).unwrap();
1185 let obj: serde_json::Value = serde_json::from_str(&exported).unwrap();
1186 assert_eq!(obj["secp256k1"].as_str().unwrap(), TEST_PRIVKEY);
1187
1188 assert!(sign_message(
1190 "pass-pk",
1191 "evm",
1192 "hello",
1193 Some("wrong"),
1194 None,
1195 None,
1196 Some(dir.path())
1197 )
1198 .is_err());
1199 assert!(export_wallet("pass-pk", Some("wrong"), Some(dir.path())).is_err());
1200 }
1201
1202 #[test]
1207 fn evm_signature_is_recoverable() {
1208 use sha3::Digest;
1209 let dir = tempfile::tempdir().unwrap();
1210 let vault = dir.path();
1211
1212 let info = create_wallet("verify-evm", None, None, Some(vault)).unwrap();
1213 let evm_addr = info
1214 .accounts
1215 .iter()
1216 .find(|a| a.chain_id.starts_with("eip155:"))
1217 .unwrap()
1218 .address
1219 .clone();
1220
1221 let sig = sign_message(
1222 "verify-evm",
1223 "evm",
1224 "hello world",
1225 None,
1226 None,
1227 None,
1228 Some(vault),
1229 )
1230 .unwrap();
1231
1232 let msg = b"hello world";
1234 let prefix = format!("\x19Ethereum Signed Message:\n{}", msg.len());
1235 let mut prefixed = prefix.into_bytes();
1236 prefixed.extend_from_slice(msg);
1237
1238 let hash = sha3::Keccak256::digest(&prefixed);
1239 let sig_bytes = hex::decode(&sig.signature).unwrap();
1240 assert_eq!(
1241 sig_bytes.len(),
1242 65,
1243 "EVM signature should be 65 bytes (r + s + v)"
1244 );
1245
1246 let v = sig_bytes[64];
1248 assert!(
1249 v == 27 || v == 28,
1250 "EIP-191 v byte should be 27 or 28, got {v}"
1251 );
1252 let recid = k256::ecdsa::RecoveryId::try_from(v - 27).unwrap();
1253 let ecdsa_sig = k256::ecdsa::Signature::from_slice(&sig_bytes[..64]).unwrap();
1254 let recovered_key =
1255 k256::ecdsa::VerifyingKey::recover_from_prehash(&hash, &ecdsa_sig, recid).unwrap();
1256
1257 let pubkey_bytes = recovered_key.to_encoded_point(false);
1259 let pubkey_hash = sha3::Keccak256::digest(&pubkey_bytes.as_bytes()[1..]);
1260 let recovered_addr = format!("0x{}", hex::encode(&pubkey_hash[12..]));
1261
1262 assert_eq!(
1264 recovered_addr.to_lowercase(),
1265 evm_addr.to_lowercase(),
1266 "recovered address should match wallet's EVM address"
1267 );
1268 }
1269
1270 #[test]
1275 fn error_nonexistent_wallet() {
1276 let dir = tempfile::tempdir().unwrap();
1277 assert!(get_wallet("nope", Some(dir.path())).is_err());
1278 assert!(export_wallet("nope", None, Some(dir.path())).is_err());
1279 assert!(sign_message("nope", "evm", "x", None, None, None, Some(dir.path())).is_err());
1280 assert!(delete_wallet("nope", Some(dir.path())).is_err());
1281 }
1282
1283 #[test]
1284 fn error_duplicate_wallet_name() {
1285 let dir = tempfile::tempdir().unwrap();
1286 let vault = dir.path();
1287 create_wallet("dup", None, None, Some(vault)).unwrap();
1288 assert!(create_wallet("dup", None, None, Some(vault)).is_err());
1289 }
1290
1291 #[test]
1292 fn error_invalid_private_key_hex() {
1293 let dir = tempfile::tempdir().unwrap();
1294 assert!(import_wallet_private_key(
1295 "bad",
1296 "not-hex",
1297 Some("evm"),
1298 None,
1299 Some(dir.path()),
1300 None,
1301 None,
1302 )
1303 .is_err());
1304 }
1305
1306 #[test]
1307 fn error_invalid_chain_for_signing() {
1308 let dir = tempfile::tempdir().unwrap();
1309 let vault = dir.path();
1310 create_wallet("chain-err", None, None, Some(vault)).unwrap();
1311 assert!(
1312 sign_message("chain-err", "fakecoin", "hi", None, None, None, Some(vault)).is_err()
1313 );
1314 }
1315
1316 #[test]
1317 fn error_invalid_tx_hex() {
1318 let dir = tempfile::tempdir().unwrap();
1319 let vault = dir.path();
1320 create_wallet("hex-err", None, None, Some(vault)).unwrap();
1321 assert!(
1322 sign_transaction("hex-err", "evm", "not-valid-hex!", None, None, Some(vault)).is_err()
1323 );
1324 }
1325
1326 #[test]
1331 fn list_wallets_empty_vault() {
1332 let dir = tempfile::tempdir().unwrap();
1333 let wallets = list_wallets(Some(dir.path())).unwrap();
1334 assert!(wallets.is_empty());
1335 }
1336
1337 #[test]
1338 fn get_wallet_by_name_and_id() {
1339 let dir = tempfile::tempdir().unwrap();
1340 let vault = dir.path();
1341 let info = create_wallet("lookup", None, None, Some(vault)).unwrap();
1342
1343 let by_name = get_wallet("lookup", Some(vault)).unwrap();
1344 assert_eq!(by_name.id, info.id);
1345
1346 let by_id = get_wallet(&info.id, Some(vault)).unwrap();
1347 assert_eq!(by_id.name, "lookup");
1348 }
1349
1350 #[test]
1351 fn rename_wallet_works() {
1352 let dir = tempfile::tempdir().unwrap();
1353 let vault = dir.path();
1354 let info = create_wallet("before", None, None, Some(vault)).unwrap();
1355
1356 rename_wallet("before", "after", Some(vault)).unwrap();
1357
1358 assert!(get_wallet("before", Some(vault)).is_err());
1359 let after = get_wallet("after", Some(vault)).unwrap();
1360 assert_eq!(after.id, info.id);
1361 }
1362
1363 #[test]
1364 fn rename_to_existing_name_fails() {
1365 let dir = tempfile::tempdir().unwrap();
1366 let vault = dir.path();
1367 create_wallet("a", None, None, Some(vault)).unwrap();
1368 create_wallet("b", None, None, Some(vault)).unwrap();
1369 assert!(rename_wallet("a", "b", Some(vault)).is_err());
1370 }
1371
1372 #[test]
1373 fn delete_wallet_removes_from_list() {
1374 let dir = tempfile::tempdir().unwrap();
1375 let vault = dir.path();
1376 create_wallet("del-me", None, None, Some(vault)).unwrap();
1377 assert_eq!(list_wallets(Some(vault)).unwrap().len(), 1);
1378
1379 delete_wallet("del-me", Some(vault)).unwrap();
1380 assert_eq!(list_wallets(Some(vault)).unwrap().len(), 0);
1381 }
1382
1383 #[test]
1388 fn sign_message_hex_encoding() {
1389 let dir = tempfile::tempdir().unwrap();
1390 let vault = dir.path();
1391 create_wallet("hex-enc", None, None, Some(vault)).unwrap();
1392
1393 let sig = sign_message(
1395 "hex-enc",
1396 "evm",
1397 "68656c6c6f",
1398 None,
1399 Some("hex"),
1400 None,
1401 Some(vault),
1402 )
1403 .unwrap();
1404 assert!(!sig.signature.is_empty());
1405
1406 let sig2 = sign_message(
1408 "hex-enc",
1409 "evm",
1410 "hello",
1411 None,
1412 Some("utf8"),
1413 None,
1414 Some(vault),
1415 )
1416 .unwrap();
1417 assert_eq!(
1418 sig.signature, sig2.signature,
1419 "hex and utf8 encoding of same bytes should produce same signature"
1420 );
1421 }
1422
1423 #[test]
1424 fn sign_message_invalid_encoding() {
1425 let dir = tempfile::tempdir().unwrap();
1426 let vault = dir.path();
1427 create_wallet("bad-enc", None, None, Some(vault)).unwrap();
1428 assert!(sign_message(
1429 "bad-enc",
1430 "evm",
1431 "hello",
1432 None,
1433 Some("base64"),
1434 None,
1435 Some(vault)
1436 )
1437 .is_err());
1438 }
1439
1440 #[test]
1445 fn multiple_wallets_coexist() {
1446 let dir = tempfile::tempdir().unwrap();
1447 let vault = dir.path();
1448
1449 create_wallet("w1", None, None, Some(vault)).unwrap();
1450 create_wallet("w2", None, None, Some(vault)).unwrap();
1451 save_privkey_wallet("w3", TEST_PRIVKEY, "", vault);
1452
1453 let wallets = list_wallets(Some(vault)).unwrap();
1454 assert_eq!(wallets.len(), 3);
1455
1456 let s1 = sign_message("w1", "evm", "test", None, None, None, Some(vault)).unwrap();
1458 let s2 = sign_message("w2", "evm", "test", None, None, None, Some(vault)).unwrap();
1459 let s3 = sign_message("w3", "evm", "test", None, None, None, Some(vault)).unwrap();
1460
1461 assert_ne!(s1.signature, s2.signature);
1463 assert_ne!(s1.signature, s3.signature);
1464 assert_ne!(s2.signature, s3.signature);
1465
1466 delete_wallet("w2", Some(vault)).unwrap();
1468 assert_eq!(list_wallets(Some(vault)).unwrap().len(), 2);
1469 assert!(sign_message("w1", "evm", "test", None, None, None, Some(vault)).is_ok());
1470 assert!(sign_message("w3", "evm", "test", None, None, None, Some(vault)).is_ok());
1471 }
1472
1473 #[test]
1478 fn signed_tx_must_differ_from_raw_signature() {
1479 let dir = tempfile::tempdir().unwrap();
1489 let vault = dir.path();
1490 save_privkey_wallet("send-bug", TEST_PRIVKEY, "", vault);
1491
1492 let items: Vec<u8> = [
1494 ows_signer::rlp::encode_bytes(&[1]), ows_signer::rlp::encode_bytes(&[]), ows_signer::rlp::encode_bytes(&[1]), ows_signer::rlp::encode_bytes(&[100]), ows_signer::rlp::encode_bytes(&[0x52, 0x08]), ows_signer::rlp::encode_bytes(&[0xDE, 0xAD]), ows_signer::rlp::encode_bytes(&[]), ows_signer::rlp::encode_bytes(&[]), ows_signer::rlp::encode_list(&[]), ]
1504 .concat();
1505
1506 let mut unsigned_tx = vec![0x02u8];
1507 unsigned_tx.extend_from_slice(&ows_signer::rlp::encode_list(&items));
1508 let tx_hex = hex::encode(&unsigned_tx);
1509
1510 let sign_result =
1512 sign_transaction("send-bug", "evm", &tx_hex, None, None, Some(vault)).unwrap();
1513 let raw_signature = hex::decode(&sign_result.signature).unwrap();
1514
1515 let key = decrypt_signing_key("send-bug", ChainType::Evm, "", None, Some(vault)).unwrap();
1517 let signer = signer_for_chain(ChainType::Evm);
1518 let output = signer.sign_transaction(key.expose(), &unsigned_tx).unwrap();
1519 let full_signed_tx = signer
1520 .encode_signed_transaction(&unsigned_tx, &output)
1521 .unwrap();
1522
1523 assert_eq!(
1526 raw_signature.len(),
1527 65,
1528 "raw EVM signature should be 65 bytes (r || s || v)"
1529 );
1530 assert!(
1531 full_signed_tx.len() > raw_signature.len(),
1532 "full signed tx ({} bytes) must be larger than raw signature ({} bytes)",
1533 full_signed_tx.len(),
1534 raw_signature.len()
1535 );
1536 assert_ne!(
1537 raw_signature, full_signed_tx,
1538 "raw signature and full signed transaction must differ — \
1539 broadcasting the raw signature (as CLI send_transaction.rs:43 does) is wrong"
1540 );
1541
1542 assert_eq!(
1544 full_signed_tx[0], 0x02,
1545 "full signed EIP-1559 tx must start with type byte 0x02"
1546 );
1547 }
1548}