1use std::fmt;
5use std::future::Future;
6use std::io::Write as _;
7use std::pin::Pin;
8
9use std::collections::BTreeMap;
10
11use std::io::Read as _;
12
13use std::path::{Path, PathBuf};
14
15use serde::Deserialize;
16use zeroize::Zeroizing;
17
18#[derive(Deserialize)]
32#[serde(transparent)]
33pub struct Secret(Zeroizing<String>);
34
35impl Secret {
36 pub fn new(s: impl Into<String>) -> Self {
37 Self(Zeroizing::new(s.into()))
38 }
39
40 #[must_use]
41 pub fn expose(&self) -> &str {
42 self.0.as_str()
43 }
44}
45
46impl fmt::Debug for Secret {
47 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
48 f.write_str("[REDACTED]")
49 }
50}
51
52impl fmt::Display for Secret {
53 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
54 f.write_str("[REDACTED]")
55 }
56}
57
58pub trait VaultProvider: Send + Sync {
60 fn get_secret(
61 &self,
62 key: &str,
63 ) -> Pin<Box<dyn Future<Output = anyhow::Result<Option<String>>> + Send + '_>>;
64
65 fn list_keys(&self) -> Vec<String> {
67 Vec::new()
68 }
69}
70
71pub struct EnvVaultProvider;
73
74#[derive(Debug, thiserror::Error)]
75pub enum AgeVaultError {
76 #[error("failed to read key file: {0}")]
77 KeyRead(std::io::Error),
78 #[error("failed to parse age identity: {0}")]
79 KeyParse(String),
80 #[error("failed to read vault file: {0}")]
81 VaultRead(std::io::Error),
82 #[error("age decryption failed: {0}")]
83 Decrypt(age::DecryptError),
84 #[error("I/O error during decryption: {0}")]
85 Io(std::io::Error),
86 #[error("invalid JSON in vault: {0}")]
87 Json(serde_json::Error),
88 #[error("age encryption failed: {0}")]
89 Encrypt(String),
90 #[error("failed to write vault file: {0}")]
91 VaultWrite(std::io::Error),
92 #[error("failed to write key file: {0}")]
93 KeyWrite(std::io::Error),
94}
95
96pub struct AgeVaultProvider {
97 secrets: BTreeMap<String, Zeroizing<String>>,
98 key_path: PathBuf,
99 vault_path: PathBuf,
100}
101
102impl fmt::Debug for AgeVaultProvider {
103 fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
104 f.debug_struct("AgeVaultProvider")
105 .field("secrets", &format_args!("[{} secrets]", self.secrets.len()))
106 .field("key_path", &self.key_path)
107 .field("vault_path", &self.vault_path)
108 .finish()
109 }
110}
111
112impl AgeVaultProvider {
113 pub fn new(key_path: &Path, vault_path: &Path) -> Result<Self, AgeVaultError> {
122 Self::load(key_path, vault_path)
123 }
124
125 pub fn load(key_path: &Path, vault_path: &Path) -> Result<Self, AgeVaultError> {
131 let key_str =
132 Zeroizing::new(std::fs::read_to_string(key_path).map_err(AgeVaultError::KeyRead)?);
133 let identity = parse_identity(&key_str)?;
134 let ciphertext = std::fs::read(vault_path).map_err(AgeVaultError::VaultRead)?;
135 let secrets = decrypt_secrets(&identity, &ciphertext)?;
136 Ok(Self {
137 secrets,
138 key_path: key_path.to_owned(),
139 vault_path: vault_path.to_owned(),
140 })
141 }
142
143 pub fn save(&self) -> Result<(), AgeVaultError> {
152 let key_str = Zeroizing::new(
153 std::fs::read_to_string(&self.key_path).map_err(AgeVaultError::KeyRead)?,
154 );
155 let identity = parse_identity(&key_str)?;
156 let ciphertext = encrypt_secrets(&identity, &self.secrets)?;
157 atomic_write(&self.vault_path, &ciphertext)
158 }
159
160 pub fn set_secret_mut(&mut self, key: String, value: String) {
162 self.secrets.insert(key, Zeroizing::new(value));
163 }
164
165 pub fn remove_secret_mut(&mut self, key: &str) -> bool {
167 self.secrets.remove(key).is_some()
168 }
169
170 #[must_use]
172 pub fn list_keys(&self) -> Vec<&str> {
173 let mut keys: Vec<&str> = self.secrets.keys().map(String::as_str).collect();
174 keys.sort_unstable();
175 keys
176 }
177
178 #[must_use]
180 pub fn get(&self, key: &str) -> Option<&str> {
181 self.secrets.get(key).map(|v| v.as_str())
182 }
183
184 pub fn init_vault(dir: &Path) -> Result<(), AgeVaultError> {
194 use age::secrecy::ExposeSecret as _;
195
196 std::fs::create_dir_all(dir).map_err(AgeVaultError::KeyWrite)?;
197
198 let identity = age::x25519::Identity::generate();
199 let public_key = identity.to_public();
200
201 let key_content = Zeroizing::new(format!(
202 "# public key: {}\n{}\n",
203 public_key,
204 identity.to_string().expose_secret()
205 ));
206
207 let key_path = dir.join("vault-key.txt");
208 write_private_file(&key_path, key_content.as_bytes())?;
209
210 let vault_path = dir.join("secrets.age");
211 let empty: BTreeMap<String, Zeroizing<String>> = BTreeMap::new();
212 let ciphertext = encrypt_secrets(&identity, &empty)?;
213 atomic_write(&vault_path, &ciphertext)?;
214
215 println!("Vault initialized:");
216 println!(" Key: {}", key_path.display());
217 println!(" Vault: {}", vault_path.display());
218
219 Ok(())
220 }
221}
222
223#[must_use]
225pub fn default_vault_dir() -> PathBuf {
226 if let Ok(xdg) = std::env::var("XDG_CONFIG_HOME") {
227 return PathBuf::from(xdg).join("zeph");
228 }
229 if let Ok(appdata) = std::env::var("APPDATA") {
230 return PathBuf::from(appdata).join("zeph");
231 }
232 let home = std::env::var("HOME").unwrap_or_else(|_| ".".to_owned());
233 PathBuf::from(home).join(".config").join("zeph")
234}
235
236fn parse_identity(key_str: &str) -> Result<age::x25519::Identity, AgeVaultError> {
237 let key_line = key_str
238 .lines()
239 .find(|l| !l.starts_with('#') && !l.trim().is_empty())
240 .ok_or_else(|| AgeVaultError::KeyParse("no identity line found".into()))?;
241 key_line
242 .trim()
243 .parse()
244 .map_err(|e: &str| AgeVaultError::KeyParse(e.to_owned()))
245}
246
247fn decrypt_secrets(
248 identity: &age::x25519::Identity,
249 ciphertext: &[u8],
250) -> Result<BTreeMap<String, Zeroizing<String>>, AgeVaultError> {
251 let decryptor = age::Decryptor::new(ciphertext).map_err(AgeVaultError::Decrypt)?;
252 let mut reader = decryptor
253 .decrypt(std::iter::once(identity as &dyn age::Identity))
254 .map_err(AgeVaultError::Decrypt)?;
255 let mut plaintext = Zeroizing::new(Vec::with_capacity(ciphertext.len()));
256 reader
257 .read_to_end(&mut plaintext)
258 .map_err(AgeVaultError::Io)?;
259 let raw: BTreeMap<String, String> =
260 serde_json::from_slice(&plaintext).map_err(AgeVaultError::Json)?;
261 Ok(raw
262 .into_iter()
263 .map(|(k, v)| (k, Zeroizing::new(v)))
264 .collect())
265}
266
267fn encrypt_secrets(
268 identity: &age::x25519::Identity,
269 secrets: &BTreeMap<String, Zeroizing<String>>,
270) -> Result<Vec<u8>, AgeVaultError> {
271 let recipient = identity.to_public();
272 let encryptor =
273 age::Encryptor::with_recipients(std::iter::once(&recipient as &dyn age::Recipient))
274 .map_err(|e| AgeVaultError::Encrypt(e.to_string()))?;
275 let plain: BTreeMap<&str, &str> = secrets
276 .iter()
277 .map(|(k, v)| (k.as_str(), v.as_str()))
278 .collect();
279 let json = Zeroizing::new(serde_json::to_vec(&plain).map_err(AgeVaultError::Json)?);
280 let mut ciphertext = Vec::with_capacity(json.len() + 64);
281 let mut writer = encryptor
282 .wrap_output(&mut ciphertext)
283 .map_err(|e| AgeVaultError::Encrypt(e.to_string()))?;
284 writer.write_all(&json).map_err(AgeVaultError::Io)?;
285 writer
286 .finish()
287 .map_err(|e| AgeVaultError::Encrypt(e.to_string()))?;
288 Ok(ciphertext)
289}
290
291fn atomic_write(path: &Path, data: &[u8]) -> Result<(), AgeVaultError> {
292 let tmp_path = path.with_extension("age.tmp");
293 std::fs::write(&tmp_path, data).map_err(AgeVaultError::VaultWrite)?;
294 std::fs::rename(&tmp_path, path).map_err(AgeVaultError::VaultWrite)
295}
296
297#[cfg(unix)]
298fn write_private_file(path: &Path, data: &[u8]) -> Result<(), AgeVaultError> {
299 use std::os::unix::fs::OpenOptionsExt as _;
300 let mut file = std::fs::OpenOptions::new()
301 .write(true)
302 .create(true)
303 .truncate(true)
304 .mode(0o600)
305 .open(path)
306 .map_err(AgeVaultError::KeyWrite)?;
307 file.write_all(data).map_err(AgeVaultError::KeyWrite)
308}
309
310#[cfg(not(unix))]
313fn write_private_file(path: &Path, data: &[u8]) -> Result<(), AgeVaultError> {
314 std::fs::write(path, data).map_err(AgeVaultError::KeyWrite)
315}
316
317impl VaultProvider for AgeVaultProvider {
318 fn get_secret(
319 &self,
320 key: &str,
321 ) -> Pin<Box<dyn Future<Output = anyhow::Result<Option<String>>> + Send + '_>> {
322 let result = self.secrets.get(key).map(|v| (**v).clone());
323 Box::pin(async move { Ok(result) })
324 }
325
326 fn list_keys(&self) -> Vec<String> {
327 let mut keys: Vec<String> = self.secrets.keys().cloned().collect();
328 keys.sort_unstable();
329 keys
330 }
331}
332
333impl VaultProvider for EnvVaultProvider {
334 fn get_secret(
335 &self,
336 key: &str,
337 ) -> Pin<Box<dyn Future<Output = anyhow::Result<Option<String>>> + Send + '_>> {
338 let key = key.to_owned();
339 Box::pin(async move { Ok(std::env::var(&key).ok()) })
340 }
341
342 fn list_keys(&self) -> Vec<String> {
343 let mut keys: Vec<String> = std::env::vars()
344 .filter(|(k, _)| k.starts_with("ZEPH_SECRET_"))
345 .map(|(k, _)| k)
346 .collect();
347 keys.sort_unstable();
348 keys
349 }
350}
351
352#[cfg(test)]
354#[derive(Default)]
355pub struct MockVaultProvider {
356 secrets: std::collections::BTreeMap<String, String>,
357 listed_only: Vec<String>,
359}
360
361#[cfg(test)]
362impl MockVaultProvider {
363 #[must_use]
364 pub fn new() -> Self {
365 Self::default()
366 }
367
368 #[must_use]
369 pub fn with_secret(mut self, key: &str, value: &str) -> Self {
370 self.secrets.insert(key.to_owned(), value.to_owned());
371 self
372 }
373
374 #[must_use]
376 pub fn with_listed_key(mut self, key: &str) -> Self {
377 self.listed_only.push(key.to_owned());
378 self
379 }
380}
381
382#[cfg(test)]
383impl VaultProvider for MockVaultProvider {
384 fn get_secret(
385 &self,
386 key: &str,
387 ) -> Pin<Box<dyn Future<Output = anyhow::Result<Option<String>>> + Send + '_>> {
388 let result = self.secrets.get(key).cloned();
389 Box::pin(async move { Ok(result) })
390 }
391
392 fn list_keys(&self) -> Vec<String> {
393 let mut keys: Vec<String> = self
394 .secrets
395 .keys()
396 .cloned()
397 .chain(self.listed_only.iter().cloned())
398 .collect();
399 keys.sort_unstable();
400 keys.dedup();
401 keys
402 }
403}
404
405#[cfg(test)]
406mod tests {
407 use super::*;
408
409 #[test]
410 fn secret_expose_returns_inner() {
411 let secret = Secret::new("my-api-key");
412 assert_eq!(secret.expose(), "my-api-key");
413 }
414
415 #[test]
416 fn secret_debug_is_redacted() {
417 let secret = Secret::new("my-api-key");
418 assert_eq!(format!("{secret:?}"), "[REDACTED]");
419 }
420
421 #[test]
422 fn secret_display_is_redacted() {
423 let secret = Secret::new("my-api-key");
424 assert_eq!(format!("{secret}"), "[REDACTED]");
425 }
426
427 #[allow(unsafe_code)]
428 #[tokio::test]
429 async fn env_vault_returns_set_var() {
430 let key = "ZEPH_TEST_VAULT_SECRET_SET";
431 unsafe { std::env::set_var(key, "test-value") };
432 let vault = EnvVaultProvider;
433 let result = vault.get_secret(key).await.unwrap();
434 unsafe { std::env::remove_var(key) };
435 assert_eq!(result.as_deref(), Some("test-value"));
436 }
437
438 #[tokio::test]
439 async fn env_vault_returns_none_for_unset() {
440 let vault = EnvVaultProvider;
441 let result = vault
442 .get_secret("ZEPH_TEST_VAULT_NONEXISTENT_KEY_12345")
443 .await
444 .unwrap();
445 assert!(result.is_none());
446 }
447
448 #[tokio::test]
449 async fn mock_vault_returns_configured_secret() {
450 let vault = MockVaultProvider::new().with_secret("API_KEY", "secret-123");
451 let result = vault.get_secret("API_KEY").await.unwrap();
452 assert_eq!(result.as_deref(), Some("secret-123"));
453 }
454
455 #[tokio::test]
456 async fn mock_vault_returns_none_for_missing() {
457 let vault = MockVaultProvider::new();
458 let result = vault.get_secret("MISSING").await.unwrap();
459 assert!(result.is_none());
460 }
461
462 #[test]
463 fn secret_from_string() {
464 let s = Secret::new(String::from("test"));
465 assert_eq!(s.expose(), "test");
466 }
467
468 #[test]
469 fn secret_expose_roundtrip() {
470 let s = Secret::new("test");
471 let owned = s.expose().to_owned();
472 let s2 = Secret::new(owned);
473 assert_eq!(s.expose(), s2.expose());
474 }
475
476 #[test]
477 fn secret_deserialize() {
478 let json = "\"my-secret-value\"";
479 let secret: Secret = serde_json::from_str(json).unwrap();
480 assert_eq!(secret.expose(), "my-secret-value");
481 assert_eq!(format!("{secret:?}"), "[REDACTED]");
482 }
483
484 #[test]
485 fn mock_vault_list_keys_sorted() {
486 let vault = MockVaultProvider::new()
487 .with_secret("B_KEY", "v2")
488 .with_secret("A_KEY", "v1")
489 .with_secret("C_KEY", "v3");
490 let mut keys = vault.list_keys();
491 keys.sort_unstable();
492 assert_eq!(keys, vec!["A_KEY", "B_KEY", "C_KEY"]);
493 }
494
495 #[test]
496 fn mock_vault_list_keys_empty() {
497 let vault = MockVaultProvider::new();
498 assert!(vault.list_keys().is_empty());
499 }
500
501 #[allow(unsafe_code)]
502 #[test]
503 fn env_vault_list_keys_filters_zeph_secret_prefix() {
504 let key = "ZEPH_SECRET_TEST_LISTKEYS_UNIQUE_9999";
505 unsafe { std::env::set_var(key, "v") };
506 let vault = EnvVaultProvider;
507 let keys = vault.list_keys();
508 assert!(keys.contains(&key.to_owned()));
509 unsafe { std::env::remove_var(key) };
510 }
511}
512
513#[cfg(test)]
514mod age_tests {
515 use std::io::Write as _;
516
517 use age::secrecy::ExposeSecret;
518
519 use super::*;
520
521 fn encrypt_json(identity: &age::x25519::Identity, json: &serde_json::Value) -> Vec<u8> {
522 let recipient = identity.to_public();
523 let encryptor =
524 age::Encryptor::with_recipients(std::iter::once(&recipient as &dyn age::Recipient))
525 .expect("encryptor creation");
526 let mut encrypted = vec![];
527 let mut writer = encryptor.wrap_output(&mut encrypted).expect("wrap_output");
528 writer
529 .write_all(json.to_string().as_bytes())
530 .expect("write plaintext");
531 writer.finish().expect("finish encryption");
532 encrypted
533 }
534
535 fn write_temp_files(
536 identity: &age::x25519::Identity,
537 ciphertext: &[u8],
538 ) -> (tempfile::TempDir, std::path::PathBuf, std::path::PathBuf) {
539 let dir = tempfile::tempdir().expect("tempdir");
540 let key_path = dir.path().join("key.txt");
541 let vault_path = dir.path().join("secrets.age");
542 std::fs::write(&key_path, identity.to_string().expose_secret()).expect("write key");
543 std::fs::write(&vault_path, ciphertext).expect("write vault");
544 (dir, key_path, vault_path)
545 }
546
547 #[tokio::test]
548 async fn age_vault_returns_existing_secret() {
549 let identity = age::x25519::Identity::generate();
550 let json = serde_json::json!({"KEY": "value"});
551 let encrypted = encrypt_json(&identity, &json);
552 let (_dir, key_path, vault_path) = write_temp_files(&identity, &encrypted);
553
554 let vault = AgeVaultProvider::new(&key_path, &vault_path).unwrap();
555 let result = vault.get_secret("KEY").await.unwrap();
556 assert_eq!(result.as_deref(), Some("value"));
557 }
558
559 #[tokio::test]
560 async fn age_vault_returns_none_for_missing() {
561 let identity = age::x25519::Identity::generate();
562 let json = serde_json::json!({"KEY": "value"});
563 let encrypted = encrypt_json(&identity, &json);
564 let (_dir, key_path, vault_path) = write_temp_files(&identity, &encrypted);
565
566 let vault = AgeVaultProvider::new(&key_path, &vault_path).unwrap();
567 let result = vault.get_secret("MISSING").await.unwrap();
568 assert!(result.is_none());
569 }
570
571 #[test]
572 fn age_vault_bad_key_file() {
573 let err = AgeVaultProvider::new(
574 Path::new("/nonexistent/key.txt"),
575 Path::new("/nonexistent/vault.age"),
576 )
577 .unwrap_err();
578 assert!(matches!(err, AgeVaultError::KeyRead(_)));
579 }
580
581 #[test]
582 fn age_vault_bad_key_parse() {
583 let dir = tempfile::tempdir().unwrap();
584 let key_path = dir.path().join("bad-key.txt");
585 std::fs::write(&key_path, "not-a-valid-age-key").unwrap();
586
587 let vault_path = dir.path().join("vault.age");
588 std::fs::write(&vault_path, b"dummy").unwrap();
589
590 let err = AgeVaultProvider::new(&key_path, &vault_path).unwrap_err();
591 assert!(matches!(err, AgeVaultError::KeyParse(_)));
592 }
593
594 #[test]
595 fn age_vault_bad_vault_file() {
596 let dir = tempfile::tempdir().unwrap();
597 let identity = age::x25519::Identity::generate();
598 let key_path = dir.path().join("key.txt");
599 std::fs::write(&key_path, identity.to_string().expose_secret()).unwrap();
600
601 let err =
602 AgeVaultProvider::new(&key_path, Path::new("/nonexistent/vault.age")).unwrap_err();
603 assert!(matches!(err, AgeVaultError::VaultRead(_)));
604 }
605
606 #[test]
607 fn age_vault_wrong_key() {
608 let identity = age::x25519::Identity::generate();
609 let wrong_identity = age::x25519::Identity::generate();
610 let json = serde_json::json!({"KEY": "value"});
611 let encrypted = encrypt_json(&identity, &json);
612 let (_dir, _, vault_path) = write_temp_files(&identity, &encrypted);
613
614 let dir2 = tempfile::tempdir().unwrap();
615 let wrong_key_path = dir2.path().join("wrong-key.txt");
616 std::fs::write(&wrong_key_path, wrong_identity.to_string().expose_secret()).unwrap();
617
618 let err = AgeVaultProvider::new(&wrong_key_path, &vault_path).unwrap_err();
619 assert!(matches!(err, AgeVaultError::Decrypt(_)));
620 }
621
622 #[test]
623 fn age_vault_invalid_json() {
624 let identity = age::x25519::Identity::generate();
625 let recipient = identity.to_public();
626 let encryptor =
627 age::Encryptor::with_recipients(std::iter::once(&recipient as &dyn age::Recipient))
628 .expect("encryptor");
629 let mut encrypted = vec![];
630 let mut writer = encryptor.wrap_output(&mut encrypted).expect("wrap");
631 writer.write_all(b"not json").expect("write");
632 writer.finish().expect("finish");
633
634 let (_dir, key_path, vault_path) = write_temp_files(&identity, &encrypted);
635 let err = AgeVaultProvider::new(&key_path, &vault_path).unwrap_err();
636 assert!(matches!(err, AgeVaultError::Json(_)));
637 }
638
639 #[tokio::test]
640 async fn age_encrypt_decrypt_resolve_secrets_roundtrip() {
641 let identity = age::x25519::Identity::generate();
642 let json = serde_json::json!({
643 "ZEPH_CLAUDE_API_KEY": "sk-ant-test-123",
644 "ZEPH_TELEGRAM_TOKEN": "tg-token-456"
645 });
646 let encrypted = encrypt_json(&identity, &json);
647 let (_dir, key_path, vault_path) = write_temp_files(&identity, &encrypted);
648
649 let vault = AgeVaultProvider::new(&key_path, &vault_path).unwrap();
650 let mut config =
651 crate::config::Config::load(Path::new("/nonexistent/config.toml")).unwrap();
652 config.resolve_secrets(&vault).await.unwrap();
653
654 assert_eq!(
655 config.secrets.claude_api_key.as_ref().unwrap().expose(),
656 "sk-ant-test-123"
657 );
658 let tg = config.telegram.unwrap();
659 assert_eq!(tg.token.as_deref(), Some("tg-token-456"));
660 }
661
662 #[test]
663 fn age_vault_debug_impl() {
664 let identity = age::x25519::Identity::generate();
665 let json = serde_json::json!({"KEY1": "value1", "KEY2": "value2"});
666 let encrypted = encrypt_json(&identity, &json);
667 let (_dir, key_path, vault_path) = write_temp_files(&identity, &encrypted);
668
669 let vault = AgeVaultProvider::new(&key_path, &vault_path).unwrap();
670 let debug = format!("{vault:?}");
671 assert!(debug.contains("AgeVaultProvider"));
672 assert!(debug.contains("[2 secrets]"));
673 assert!(!debug.contains("value1"));
674 }
675
676 #[tokio::test]
677 async fn age_vault_key_file_with_comments() {
678 let identity = age::x25519::Identity::generate();
679 let json = serde_json::json!({"KEY": "value"});
680 let encrypted = encrypt_json(&identity, &json);
681 let (_dir, key_path, vault_path) = write_temp_files(&identity, &encrypted);
682
683 let key_with_comments = format!(
684 "# created: 2026-02-11T12:00:00+03:00\n# public key: {}\n{}\n",
685 identity.to_public(),
686 identity.to_string().expose_secret()
687 );
688 std::fs::write(&key_path, &key_with_comments).unwrap();
689
690 let vault = AgeVaultProvider::new(&key_path, &vault_path).unwrap();
691 let result = vault.get_secret("KEY").await.unwrap();
692 assert_eq!(result.as_deref(), Some("value"));
693 }
694
695 #[test]
696 fn age_vault_key_file_only_comments() {
697 let dir = tempfile::tempdir().unwrap();
698 let key_path = dir.path().join("comments-only.txt");
699 std::fs::write(&key_path, "# comment\n# another\n").unwrap();
700 let vault_path = dir.path().join("vault.age");
701 std::fs::write(&vault_path, b"dummy").unwrap();
702
703 let err = AgeVaultProvider::new(&key_path, &vault_path).unwrap_err();
704 assert!(matches!(err, AgeVaultError::KeyParse(_)));
705 }
706
707 #[test]
708 fn age_vault_error_display() {
709 let key_err =
710 AgeVaultError::KeyRead(std::io::Error::new(std::io::ErrorKind::NotFound, "test"));
711 assert!(key_err.to_string().contains("failed to read key file"));
712
713 let parse_err = AgeVaultError::KeyParse("bad key".into());
714 assert!(
715 parse_err
716 .to_string()
717 .contains("failed to parse age identity")
718 );
719
720 let vault_err =
721 AgeVaultError::VaultRead(std::io::Error::new(std::io::ErrorKind::NotFound, "test"));
722 assert!(vault_err.to_string().contains("failed to read vault file"));
723
724 let enc_err = AgeVaultError::Encrypt("bad".into());
725 assert!(enc_err.to_string().contains("age encryption failed"));
726
727 let write_err = AgeVaultError::VaultWrite(std::io::Error::new(
728 std::io::ErrorKind::PermissionDenied,
729 "test",
730 ));
731 assert!(write_err.to_string().contains("failed to write vault file"));
732 }
733
734 #[test]
735 fn age_vault_set_and_list_keys() {
736 let identity = age::x25519::Identity::generate();
737 let json = serde_json::json!({"A": "1"});
738 let encrypted = encrypt_json(&identity, &json);
739 let (_dir, key_path, vault_path) = write_temp_files(&identity, &encrypted);
740
741 let mut vault = AgeVaultProvider::load(&key_path, &vault_path).unwrap();
742 vault.set_secret_mut("B".to_owned(), "2".to_owned());
743 vault.set_secret_mut("C".to_owned(), "3".to_owned());
744
745 let keys = vault.list_keys();
746 assert_eq!(keys, vec!["A", "B", "C"]);
747 }
748
749 #[test]
750 fn age_vault_remove_secret() {
751 let identity = age::x25519::Identity::generate();
752 let json = serde_json::json!({"X": "val", "Y": "val2"});
753 let encrypted = encrypt_json(&identity, &json);
754 let (_dir, key_path, vault_path) = write_temp_files(&identity, &encrypted);
755
756 let mut vault = AgeVaultProvider::load(&key_path, &vault_path).unwrap();
757 assert!(vault.remove_secret_mut("X"));
758 assert!(!vault.remove_secret_mut("NONEXISTENT"));
759 assert_eq!(vault.list_keys(), vec!["Y"]);
760 }
761
762 #[tokio::test]
763 async fn age_vault_save_roundtrip() {
764 let identity = age::x25519::Identity::generate();
765 let json = serde_json::json!({"ORIG": "value"});
766 let encrypted = encrypt_json(&identity, &json);
767 let (_dir, key_path, vault_path) = write_temp_files(&identity, &encrypted);
768
769 let mut vault = AgeVaultProvider::load(&key_path, &vault_path).unwrap();
770 vault.set_secret_mut("NEW_KEY".to_owned(), "new_value".to_owned());
771 vault.save().unwrap();
772
773 let reloaded = AgeVaultProvider::load(&key_path, &vault_path).unwrap();
774 let result = reloaded.get_secret("NEW_KEY").await.unwrap();
775 assert_eq!(result.as_deref(), Some("new_value"));
776
777 let orig = reloaded.get_secret("ORIG").await.unwrap();
778 assert_eq!(orig.as_deref(), Some("value"));
779 }
780
781 #[test]
782 fn age_vault_get_method_returns_str() {
783 let identity = age::x25519::Identity::generate();
784 let json = serde_json::json!({"FOO": "bar"});
785 let encrypted = encrypt_json(&identity, &json);
786 let (_dir, key_path, vault_path) = write_temp_files(&identity, &encrypted);
787
788 let vault = AgeVaultProvider::load(&key_path, &vault_path).unwrap();
789 assert_eq!(vault.get("FOO"), Some("bar"));
790 assert_eq!(vault.get("MISSING"), None);
791 }
792
793 #[test]
794 fn age_vault_empty_secret_value() {
795 let identity = age::x25519::Identity::generate();
796 let json = serde_json::json!({"EMPTY": ""});
797 let encrypted = encrypt_json(&identity, &json);
798 let (_dir, key_path, vault_path) = write_temp_files(&identity, &encrypted);
799
800 let vault = AgeVaultProvider::load(&key_path, &vault_path).unwrap();
801 assert_eq!(vault.get("EMPTY"), Some(""));
802 }
803
804 #[test]
805 fn age_vault_init_vault() {
806 let dir = tempfile::tempdir().unwrap();
807 AgeVaultProvider::init_vault(dir.path()).unwrap();
808
809 let key_path = dir.path().join("vault-key.txt");
810 let vault_path = dir.path().join("secrets.age");
811 assert!(key_path.exists());
812 assert!(vault_path.exists());
813
814 let vault = AgeVaultProvider::load(&key_path, &vault_path).unwrap();
815 assert_eq!(vault.list_keys(), Vec::<&str>::new());
816 }
817
818 #[tokio::test]
819 async fn age_vault_keys_sorted_after_roundtrip() {
820 let identity = age::x25519::Identity::generate();
821 let json = serde_json::json!({"ZEBRA": "z", "APPLE": "a", "MANGO": "m"});
823 let encrypted = encrypt_json(&identity, &json);
824 let (_dir, key_path, vault_path) = write_temp_files(&identity, &encrypted);
825
826 let vault = AgeVaultProvider::load(&key_path, &vault_path).unwrap();
827 let keys = vault.list_keys();
828 assert_eq!(keys, vec!["APPLE", "MANGO", "ZEBRA"]);
829 }
830
831 #[test]
832 fn age_vault_save_preserves_key_order() {
833 let identity = age::x25519::Identity::generate();
834 let json = serde_json::json!({"Z_KEY": "z", "A_KEY": "a", "M_KEY": "m"});
835 let encrypted = encrypt_json(&identity, &json);
836 let (_dir, key_path, vault_path) = write_temp_files(&identity, &encrypted);
837
838 let mut vault = AgeVaultProvider::load(&key_path, &vault_path).unwrap();
839 vault.set_secret_mut("B_KEY".to_owned(), "b".to_owned());
840 vault.save().unwrap();
841
842 let reloaded = AgeVaultProvider::load(&key_path, &vault_path).unwrap();
843 let keys = reloaded.list_keys();
844 assert_eq!(keys, vec!["A_KEY", "B_KEY", "M_KEY", "Z_KEY"]);
845 }
846
847 #[test]
848 fn age_vault_decrypt_returns_btreemap_sorted() {
849 let identity = age::x25519::Identity::generate();
850 let json_str = r#"{"zoo":"z","bar":"b","alpha":"a"}"#;
852 let recipient = identity.to_public();
853 let encryptor =
854 age::Encryptor::with_recipients(std::iter::once(&recipient as &dyn age::Recipient))
855 .expect("encryptor");
856 let mut encrypted = vec![];
857 let mut writer = encryptor.wrap_output(&mut encrypted).expect("wrap");
858 writer.write_all(json_str.as_bytes()).expect("write");
859 writer.finish().expect("finish");
860
861 let ciphertext = encrypted;
862 let secrets = decrypt_secrets(&identity, &ciphertext).unwrap();
863 let keys: Vec<&str> = secrets.keys().map(String::as_str).collect();
864 assert_eq!(keys, vec!["alpha", "bar", "zoo"]);
866 }
867
868 #[test]
869 fn age_vault_into_iter_consumes_all_entries() {
870 let identity = age::x25519::Identity::generate();
873 let json = serde_json::json!({"K1": "v1", "K2": "v2", "K3": "v3"});
874 let encrypted = encrypt_json(&identity, &json);
875 let ciphertext = encrypted;
876 let secrets = decrypt_secrets(&identity, &ciphertext).unwrap();
877
878 let mut pairs: Vec<(String, String)> = secrets
879 .into_iter()
880 .map(|(k, v)| (k, v.as_str().to_owned()))
881 .collect();
882 pairs.sort_by(|a, b| a.0.cmp(&b.0));
883
884 assert_eq!(pairs.len(), 3);
885 assert_eq!(pairs[0], ("K1".to_owned(), "v1".to_owned()));
886 assert_eq!(pairs[1], ("K2".to_owned(), "v2".to_owned()));
887 assert_eq!(pairs[2], ("K3".to_owned(), "v3".to_owned()));
888 }
889
890 use proptest::prelude::*;
891
892 proptest! {
893 #[test]
894 fn secret_value_roundtrip(s in ".*") {
895 let secret = Secret::new(s.clone());
896 assert_eq!(secret.expose(), s.as_str());
897 }
898
899 #[test]
900 fn secret_debug_always_redacted(s in ".*") {
901 let secret = Secret::new(s);
902 assert_eq!(format!("{secret:?}"), "[REDACTED]");
903 }
904
905 #[test]
906 fn secret_display_always_redacted(s in ".*") {
907 let secret = Secret::new(s);
908 assert_eq!(format!("{secret}"), "[REDACTED]");
909 }
910 }
911}