1mod aead;
6mod ci_verdict;
7mod ed25519;
8mod error;
9pub mod original_boundary_acceptance;
10mod p256;
11mod pem_loader;
12pub mod pop;
13mod state_signature;
14pub mod thread_authority_admission;
15pub mod thread_genesis_admission;
16pub mod thread_operation;
17pub mod thread_ownership_claim;
18pub mod thread_ownership_resolution;
19
20#[cfg(test)]
21mod behavior_tests;
22
23use std::path::Path;
24
25pub use aead::{
26 AEAD_AES256_GCM_V1, AeadCiphertext, AeadError, Dek, PAD_BUCKETS, SoftwareRecipientSecret,
27 WRAP_HKDF_INFO, WrappedDek, decrypt_padded, encrypt_padded, pad_bucket_for, unwrap_dek,
28 wrap_dek,
29};
30pub use ci_verdict::{
31 Basis, BasisKind, CI_VERDICT_BODY_SCHEMA_VERSION, CI_VERDICT_DOMAIN, CheckClass,
32 CheckDescriptor, CiVerdictBody, Conclusion, Execution, FailureClass, FailureDetail, LogRef,
33 Outcome, Repro, SIGNED_VERDICT_FORMAT_VERSION, SignedVerdict, SignedVerdictError, SignerKind,
34 StateRef, ci_verdict_signing_payload, signed_verdict_from_signer,
35};
36pub use ed25519::Ed25519Signer;
37pub use error::SignerError;
38use heddle_object_model::object::ContentHash;
39pub use heddle_object_model::object::SignatureStatus;
40pub use p256::P256Signer;
41pub use pem_loader::{PemKind, classify_pem};
42pub use state_signature::{
43 StateSignatureError, public_key_bytes, signature_bytes, state_signature_from_signer,
44 verify_state_signature_bytes,
45};
46
47pub trait Signer: Send + Sync {
49 fn algorithm(&self) -> &'static str;
50 fn public_key(&self) -> &[u8];
51 fn sign(&self, data: &[u8]) -> Result<Vec<u8>, SignerError>;
52 fn verify(&self, data: &[u8], signature: &[u8]) -> Result<(), SignerError>;
53}
54
55impl Signer for Box<dyn Signer> {
56 fn algorithm(&self) -> &'static str {
57 (**self).algorithm()
58 }
59
60 fn public_key(&self) -> &[u8] {
61 (**self).public_key()
62 }
63
64 fn sign(&self, data: &[u8]) -> Result<Vec<u8>, SignerError> {
65 (**self).sign(data)
66 }
67
68 fn verify(&self, data: &[u8], signature: &[u8]) -> Result<(), SignerError> {
69 (**self).verify(data, signature)
70 }
71}
72
73const STATE_SIGNATURE_DOMAIN: &[u8; 16] = b"hd-state-sig-v1\x00";
74
75fn state_signature_payload(content_hash: &ContentHash) -> [u8; 48] {
76 let mut payload = [0; 48];
77 payload[..STATE_SIGNATURE_DOMAIN.len()].copy_from_slice(STATE_SIGNATURE_DOMAIN);
78 payload[STATE_SIGNATURE_DOMAIN.len()..].copy_from_slice(content_hash.as_bytes());
79 payload
80}
81
82pub fn load_signer(path: &Path, algorithm: Option<&str>) -> Result<Box<dyn Signer>, SignerError> {
86 reject_group_or_world_readable_key(path)?;
87 let key_data = std::fs::read(path)?;
88 let pem_content = String::from_utf8_lossy(&key_data);
89
90 if let Some(algo) = algorithm {
91 return match algo.to_lowercase().as_str() {
92 "ed25519" => {
93 Ed25519Signer::from_pem(&pem_content).map(|s| Box::new(s) as Box<dyn Signer>)
94 }
95 "p256" | "ecdsa-p256" => {
96 P256Signer::from_pem(&pem_content).map(|s| Box::new(s) as Box<dyn Signer>)
97 }
98 _ => Err(SignerError::UnsupportedAlgorithm(algo.to_string())),
99 };
100 }
101
102 pem_loader::load_signer_from_pem(&pem_content)
103}
104
105#[cfg(unix)]
113pub fn reject_group_or_world_readable_key(path: &Path) -> Result<(), SignerError> {
114 use std::os::unix::fs::PermissionsExt;
115
116 let mode = std::fs::metadata(path)?.permissions().mode() & 0o777;
117 if mode & 0o077 != 0 {
118 return Err(SignerError::InsecureKeyPermissions {
119 path: path.to_path_buf(),
120 mode,
121 });
122 }
123 Ok(())
124}
125
126#[cfg(not(unix))]
128pub fn reject_group_or_world_readable_key(_path: &Path) -> Result<(), SignerError> {
129 Ok(())
130}
131
132pub fn verify_state_signature(
134 content_hash: &ContentHash,
135 algorithm: &str,
136 public_key: &[u8],
137 signature: &[u8],
138) -> Result<(), SignerError> {
139 verify_payload_signature(
140 &state_signature_payload(content_hash),
141 algorithm,
142 public_key,
143 signature,
144 )
145}
146
147pub fn verify_payload_signature(
151 payload: &[u8],
152 algorithm: &str,
153 public_key: &[u8],
154 signature: &[u8],
155) -> Result<(), SignerError> {
156 match algorithm.to_lowercase().as_str() {
157 "ed25519" => Ed25519Signer::verify_with_public_key(payload, public_key, signature),
158 "p256" | "ecdsa-p256" => P256Signer::verify_with_public_key(payload, public_key, signature),
159 _ => Err(SignerError::UnsupportedAlgorithm(algorithm.to_string())),
160 }
161}
162
163#[cfg(test)]
164mod tests {
165 #[cfg(unix)]
166 use std::os::unix::fs::PermissionsExt;
167
168 use heddle_fs_prims::fs_atomic::write_file_atomic_secret;
169 use tempfile::TempDir;
170
171 use super::*;
172
173 #[test]
174 fn ed25519_seed_round_trips_through_pem() {
175 let signer = Ed25519Signer::generate().expect("generate key");
176 let seed = signer.to_seed();
177 let from_seed = Ed25519Signer::from_seed(&seed).expect("reload seed");
178 let from_pem =
179 Ed25519Signer::from_pem(&signer.to_pem().expect("export pem")).expect("reload pem");
180 assert_eq!(from_seed.to_seed(), seed);
181 assert_eq!(from_pem.to_seed(), seed);
182 assert_eq!(from_seed.public_key(), signer.public_key());
183 }
184
185 #[test]
186 fn test_ed25519_sign_verify_roundtrip() {
187 let signer = Ed25519Signer::generate().expect("generate key");
188 let data = b"test data for signing";
189
190 let signature = signer.sign(data).expect("sign data");
191 signer.verify(data, &signature).expect("verify signature");
192 }
193
194 #[test]
195 fn test_ed25519_sign_verify_invalid_signature_fails_explicitly() {
196 let signer = Ed25519Signer::generate().expect("generate key");
197 let data = b"test data for signing";
198
199 let signature = signer.sign(data).expect("sign data");
200 let error = signer
201 .verify(b"wrong data", &signature)
202 .expect_err("verify should fail");
203
204 assert!(matches!(error, SignerError::VerificationFailed));
205 }
206
207 #[test]
208 fn test_load_signer_ed25519() {
209 let temp = TempDir::new().expect("create temp dir");
210 let key_path = temp.path().join("test_ed25519.pem");
211
212 let signer = Ed25519Signer::generate().expect("generate key");
213 let pem = signer.to_pem().expect("export to PEM");
214 write_file_atomic_secret(&key_path, pem.as_bytes()).expect("write key file");
215
216 let loaded = load_signer(&key_path, Some("ed25519")).expect("load signer");
217 assert_eq!(loaded.algorithm(), "ed25519");
218 assert_eq!(loaded.public_key(), signer.public_key());
219 }
220
221 #[cfg(unix)]
222 #[test]
223 fn load_signer_refuses_group_or_world_readable_private_key() {
224 let temp = TempDir::new().expect("create temp dir");
225 let key_path = temp.path().join("test_ed25519.pem");
226
227 let signer = Ed25519Signer::generate().expect("generate key");
228 let pem = signer.to_pem().expect("export to PEM");
229 write_file_atomic_secret(&key_path, pem.as_bytes()).expect("write key file");
230 std::fs::set_permissions(&key_path, std::fs::Permissions::from_mode(0o644))
231 .expect("make key insecure");
232
233 let err = match load_signer(&key_path, Some("ed25519")) {
234 Ok(_) => panic!("insecure key must fail"),
235 Err(err) => err,
236 };
237 assert!(matches!(
238 err,
239 SignerError::InsecureKeyPermissions { mode: 0o644, .. }
240 ));
241 let msg = err.to_string();
244 assert!(msg.contains(&key_path.display().to_string()), "{msg}");
245 assert!(msg.contains("0644"), "{msg}");
246 assert!(msg.contains("0600"), "{msg}");
247 assert!(msg.contains("chmod 600"), "{msg}");
248 }
249
250 #[cfg(unix)]
251 #[test]
252 fn load_signer_accepts_owner_only_private_key() {
253 let temp = TempDir::new().expect("create temp dir");
254 let key_path = temp.path().join("test_ed25519.pem");
255
256 let signer = Ed25519Signer::generate().expect("generate key");
257 let pem = signer.to_pem().expect("export to PEM");
258 write_file_atomic_secret(&key_path, pem.as_bytes()).expect("write key file");
259 std::fs::set_permissions(&key_path, std::fs::Permissions::from_mode(0o600))
260 .expect("set owner-only mode");
261
262 let loaded = load_signer(&key_path, Some("ed25519")).expect("0600 key must load");
263 assert_eq!(loaded.public_key(), signer.public_key());
264 }
265}