1use crate::ant_protocol::{PROOF_TAG_MERKLE, PROOF_TAG_SINGLE_NODE};
7use evmlib::common::TxHash;
8use evmlib::merkle_payments::MerklePaymentProof;
9use evmlib::ProofOfPayment;
10use serde::{Deserialize, Serialize};
11
12#[derive(Debug, Clone, Serialize, Deserialize)]
17pub struct PaymentProof {
18 pub proof_of_payment: ProofOfPayment,
20 pub tx_hashes: Vec<TxHash>,
23}
24
25#[derive(Debug, Clone, Copy, PartialEq, Eq)]
27pub enum ProofType {
28 SingleNode,
30 Merkle,
32}
33
34#[must_use]
38pub fn detect_proof_type(bytes: &[u8]) -> Option<ProofType> {
39 match bytes.first() {
40 Some(&PROOF_TAG_SINGLE_NODE) => Some(ProofType::SingleNode),
41 Some(&PROOF_TAG_MERKLE) => Some(ProofType::Merkle),
42 _ => None,
43 }
44}
45
46pub fn serialize_single_node_proof(
52 proof: &PaymentProof,
53) -> std::result::Result<Vec<u8>, rmp_serde::encode::Error> {
54 let body = rmp_serde::to_vec(proof)?;
55 let mut tagged = Vec::with_capacity(1 + body.len());
56 tagged.push(PROOF_TAG_SINGLE_NODE);
57 tagged.extend_from_slice(&body);
58 Ok(tagged)
59}
60
61pub fn serialize_merkle_proof(
67 proof: &MerklePaymentProof,
68) -> std::result::Result<Vec<u8>, rmp_serde::encode::Error> {
69 let body = rmp_serde::to_vec(proof)?;
70 let mut tagged = Vec::with_capacity(1 + body.len());
71 tagged.push(PROOF_TAG_MERKLE);
72 tagged.extend_from_slice(&body);
73 Ok(tagged)
74}
75
76pub fn deserialize_proof(bytes: &[u8]) -> Result<(ProofOfPayment, Vec<TxHash>), String> {
85 if bytes.first() != Some(&PROOF_TAG_SINGLE_NODE) {
86 return Err("Missing single-node proof tag byte".to_string());
87 }
88 let payload = bytes
89 .get(1..)
90 .ok_or_else(|| "Single-node proof tag present but no payload".to_string())?;
91 let proof = rmp_serde::from_slice::<PaymentProof>(payload)
92 .map_err(|e| format!("Failed to deserialize single-node proof: {e}"))?;
93 Ok((proof.proof_of_payment, proof.tx_hashes))
94}
95
96pub fn deserialize_merkle_proof(bytes: &[u8]) -> std::result::Result<MerklePaymentProof, String> {
104 if bytes.first() != Some(&PROOF_TAG_MERKLE) {
105 return Err("Missing merkle proof tag byte".to_string());
106 }
107 let payload = bytes
108 .get(1..)
109 .ok_or_else(|| "Merkle proof tag present but no payload".to_string())?;
110 rmp_serde::from_slice::<MerklePaymentProof>(payload)
111 .map_err(|e| format!("Failed to deserialize merkle proof: {e}"))
112}
113
114#[cfg(test)]
115#[allow(clippy::unwrap_used, clippy::expect_used, clippy::panic)]
116mod tests {
117 use super::*;
118 use alloy::primitives::FixedBytes;
119 use evmlib::common::Amount;
120 use evmlib::merkle_payments::{
121 MerklePaymentCandidateNode, MerklePaymentCandidatePool, MerklePaymentProof, MerkleTree,
122 CANDIDATES_PER_POOL,
123 };
124 use evmlib::EncodedPeerId;
125 use evmlib::PaymentQuote;
126 use evmlib::RewardsAddress;
127 use saorsa_core::MlDsa65;
128 use saorsa_pqc::pqc::types::MlDsaSecretKey;
129 use saorsa_pqc::pqc::MlDsaOperations;
130 use std::time::SystemTime;
131 use xor_name::XorName;
132
133 fn make_test_quote() -> PaymentQuote {
134 PaymentQuote {
135 content: XorName::random(&mut rand::thread_rng()),
136 timestamp: SystemTime::now(),
137 price: Amount::from(1u64),
138 rewards_address: RewardsAddress::new([1u8; 20]),
139 pub_key: vec![],
140 signature: vec![],
141 }
142 }
143
144 fn make_proof_of_payment() -> ProofOfPayment {
145 let random_peer = EncodedPeerId::new(rand::random());
146 ProofOfPayment {
147 peer_quotes: vec![(random_peer, make_test_quote())],
148 }
149 }
150
151 #[test]
152 fn test_payment_proof_serialization_roundtrip() {
153 let tx_hash = FixedBytes::from([0xABu8; 32]);
154 let proof = PaymentProof {
155 proof_of_payment: make_proof_of_payment(),
156 tx_hashes: vec![tx_hash],
157 };
158
159 let bytes = serialize_single_node_proof(&proof).unwrap();
160 let (pop, hashes) = deserialize_proof(&bytes).unwrap();
161
162 assert_eq!(pop.peer_quotes.len(), 1);
163 assert_eq!(hashes.len(), 1);
164 assert_eq!(hashes.first().unwrap(), &tx_hash);
165 }
166
167 #[test]
168 fn test_payment_proof_with_empty_tx_hashes() {
169 let proof = PaymentProof {
170 proof_of_payment: make_proof_of_payment(),
171 tx_hashes: vec![],
172 };
173
174 let bytes = serialize_single_node_proof(&proof).unwrap();
175 let (pop, hashes) = deserialize_proof(&bytes).unwrap();
176
177 assert_eq!(pop.peer_quotes.len(), 1);
178 assert!(hashes.is_empty());
179 }
180
181 #[test]
182 fn test_deserialize_proof_rejects_garbage() {
183 let garbage = vec![0xFF, 0x00, 0x01, 0x02];
184 let result = deserialize_proof(&garbage);
185 assert!(result.is_err());
186 }
187
188 #[test]
189 fn test_deserialize_proof_rejects_untagged() {
190 let proof = PaymentProof {
192 proof_of_payment: make_proof_of_payment(),
193 tx_hashes: vec![],
194 };
195 let raw_bytes = rmp_serde::to_vec(&proof).unwrap();
196 let result = deserialize_proof(&raw_bytes);
197 assert!(result.is_err());
198 }
199
200 #[test]
201 fn test_payment_proof_multiple_tx_hashes() {
202 let tx1 = FixedBytes::from([0x11u8; 32]);
203 let tx2 = FixedBytes::from([0x22u8; 32]);
204 let proof = PaymentProof {
205 proof_of_payment: make_proof_of_payment(),
206 tx_hashes: vec![tx1, tx2],
207 };
208
209 let bytes = serialize_single_node_proof(&proof).unwrap();
210 let (_, hashes) = deserialize_proof(&bytes).unwrap();
211
212 assert_eq!(hashes.len(), 2);
213 assert_eq!(hashes.first().unwrap(), &tx1);
214 assert_eq!(hashes.get(1).unwrap(), &tx2);
215 }
216
217 #[test]
222 fn test_detect_proof_type_single_node() {
223 let bytes = [PROOF_TAG_SINGLE_NODE, 0x00, 0x01];
224 let result = detect_proof_type(&bytes);
225 assert_eq!(result, Some(ProofType::SingleNode));
226 }
227
228 #[test]
229 fn test_detect_proof_type_merkle() {
230 let bytes = [PROOF_TAG_MERKLE, 0x00, 0x01];
231 let result = detect_proof_type(&bytes);
232 assert_eq!(result, Some(ProofType::Merkle));
233 }
234
235 #[test]
236 fn test_detect_proof_type_unknown_tag() {
237 let bytes = [0xFF, 0x00, 0x01];
238 let result = detect_proof_type(&bytes);
239 assert_eq!(result, None);
240 }
241
242 #[test]
243 fn test_detect_proof_type_empty_bytes() {
244 let bytes: &[u8] = &[];
245 let result = detect_proof_type(bytes);
246 assert_eq!(result, None);
247 }
248
249 #[test]
254 fn test_serialize_single_node_proof_roundtrip_with_tag() {
255 let tx_hash = FixedBytes::from([0xCCu8; 32]);
256 let proof = PaymentProof {
257 proof_of_payment: make_proof_of_payment(),
258 tx_hashes: vec![tx_hash],
259 };
260
261 let tagged_bytes = serialize_single_node_proof(&proof).unwrap();
262
263 assert_eq!(
265 tagged_bytes.first().copied(),
266 Some(PROOF_TAG_SINGLE_NODE),
267 "Tagged proof must start with PROOF_TAG_SINGLE_NODE"
268 );
269
270 assert_eq!(
272 detect_proof_type(&tagged_bytes),
273 Some(ProofType::SingleNode)
274 );
275
276 let (pop, hashes) = deserialize_proof(&tagged_bytes).unwrap();
278 assert_eq!(pop.peer_quotes.len(), 1);
279 assert_eq!(hashes.len(), 1);
280 assert_eq!(hashes.first().unwrap(), &tx_hash);
281 }
282
283 fn make_test_merkle_proof() -> MerklePaymentProof {
289 let timestamp = std::time::SystemTime::now()
290 .duration_since(std::time::UNIX_EPOCH)
291 .unwrap()
292 .as_secs();
293
294 let addresses: Vec<xor_name::XorName> = (0..4u8)
296 .map(|i| xor_name::XorName::from_content(&[i]))
297 .collect();
298 let tree = MerkleTree::from_xornames(addresses.clone()).unwrap();
299
300 let candidate_nodes: [MerklePaymentCandidateNode; CANDIDATES_PER_POOL] =
302 std::array::from_fn(|i| {
303 let ml_dsa = MlDsa65::new();
304 let (pub_key, secret_key) = ml_dsa.generate_keypair().expect("keygen");
305 let price = Amount::from(1024u64);
306 #[allow(clippy::cast_possible_truncation)]
307 let reward_address = RewardsAddress::new([i as u8; 20]);
308 let msg =
309 MerklePaymentCandidateNode::bytes_to_sign(&price, &reward_address, timestamp);
310 let sk = MlDsaSecretKey::from_bytes(secret_key.as_bytes()).expect("sk");
311 let signature = ml_dsa.sign(&sk, &msg).expect("sign").as_bytes().to_vec();
312
313 MerklePaymentCandidateNode {
314 pub_key: pub_key.as_bytes().to_vec(),
315 price,
316 reward_address,
317 merkle_payment_timestamp: timestamp,
318 signature,
319 }
320 });
321
322 let reward_candidates = tree.reward_candidates(timestamp).unwrap();
323 let midpoint_proof = reward_candidates.first().unwrap().clone();
324
325 let pool = MerklePaymentCandidatePool {
326 midpoint_proof,
327 candidate_nodes,
328 };
329
330 let first_address = *addresses.first().unwrap();
331 let address_proof = tree.generate_address_proof(0, first_address).unwrap();
332
333 MerklePaymentProof::new(first_address, address_proof, pool)
334 }
335
336 #[test]
337 fn test_serialize_merkle_proof_roundtrip() {
338 let merkle_proof = make_test_merkle_proof();
339
340 let tagged_bytes = serialize_merkle_proof(&merkle_proof).unwrap();
341
342 assert_eq!(
344 tagged_bytes.first().copied(),
345 Some(PROOF_TAG_MERKLE),
346 "Tagged merkle proof must start with PROOF_TAG_MERKLE"
347 );
348
349 assert_eq!(detect_proof_type(&tagged_bytes), Some(ProofType::Merkle));
351
352 let recovered = deserialize_merkle_proof(&tagged_bytes).unwrap();
354 assert_eq!(recovered.address, merkle_proof.address);
355 assert_eq!(
356 recovered.winner_pool.candidate_nodes.len(),
357 CANDIDATES_PER_POOL
358 );
359 }
360
361 #[test]
362 fn test_deserialize_merkle_proof_rejects_wrong_tag() {
363 let merkle_proof = make_test_merkle_proof();
364 let mut tagged_bytes = serialize_merkle_proof(&merkle_proof).unwrap();
365
366 if let Some(first) = tagged_bytes.first_mut() {
368 *first = PROOF_TAG_SINGLE_NODE;
369 }
370
371 let result = deserialize_merkle_proof(&tagged_bytes);
372 assert!(result.is_err(), "Should reject wrong tag byte");
373 let err_msg = result.unwrap_err();
374 assert!(
375 err_msg.contains("Missing merkle proof tag"),
376 "Error should mention missing tag: {err_msg}"
377 );
378 }
379
380 #[test]
381 fn test_deserialize_merkle_proof_rejects_empty() {
382 let result = deserialize_merkle_proof(&[]);
383 assert!(result.is_err());
384 }
385}