miden_client/sync/
block_header.rs1use alloc::sync::Arc;
2use alloc::vec::Vec;
3
4use miden_protocol::Word;
5use miden_protocol::block::{BlockHeader, BlockNumber};
6use miden_protocol::crypto::merkle::MerklePath;
7use miden_protocol::crypto::merkle::mmr::{Forest, InOrderIndex, MmrPeaks, PartialMmr};
8use tracing::warn;
9
10use crate::rpc::NodeRpcClient;
11use crate::store::{BlockRelevance, StoreError};
12use crate::{Client, ClientError};
13
14impl<AUTH> Client<AUTH> {
16 pub async fn get_block_header_by_num(
20 &self,
21 block_num: BlockNumber,
22 ) -> Result<Option<(BlockHeader, BlockRelevance)>, ClientError> {
23 self.store.get_block_header_by_num(block_num).await.map_err(Into::into)
24 }
25
26 pub async fn ensure_genesis_in_place(&mut self) -> Result<(), ClientError> {
30 if self.rpc_api.has_genesis_commitment().is_some() {
31 return Ok(());
32 }
33
34 let (genesis, _) = self
35 .rpc_api
36 .get_block_header_by_number(Some(BlockNumber::GENESIS), false)
37 .await?;
38
39 let blank_mmr_peaks = MmrPeaks::new(Forest::empty(), vec![])
40 .expect("Blank MmrPeaks should not fail to instantiate");
41 self.store.insert_block_header(&genesis, blank_mmr_peaks, false).await?;
42 self.rpc_api.set_genesis_commitment(genesis.commitment()).await?;
43 Ok(())
44 }
45
46 pub async fn get_current_partial_mmr(&self) -> Result<PartialMmr, ClientError> {
48 self.store.get_current_partial_mmr().await.map_err(Into::into)
49 }
50
51 pub(crate) async fn get_and_store_authenticated_block(
60 &self,
61 block_num: BlockNumber,
62 current_partial_mmr: &mut PartialMmr,
63 ) -> Result<BlockHeader, ClientError> {
64 if current_partial_mmr.is_tracked(block_num.as_usize()) {
65 warn!("Current partial MMR already contains the requested data");
66 let (block_header, _) = self
67 .store
68 .get_block_header_by_num(block_num)
69 .await?
70 .expect("Block header should be tracked");
71 return Ok(block_header);
72 }
73
74 let (block_header, path_nodes) =
76 fetch_block_header(self.rpc_api.clone(), block_num, current_partial_mmr).await?;
77
78 self.store
80 .insert_block_header(&block_header, current_partial_mmr.peaks(), true)
81 .await?;
82 self.store.insert_partial_blockchain_nodes(&path_nodes).await?;
83
84 Ok(block_header)
85 }
86}
87
88pub(crate) fn adjust_merkle_path_for_forest(
100 merkle_path: &MerklePath,
101 block_num: BlockNumber,
102 forest: Forest,
103) -> Vec<(InOrderIndex, Word)> {
104 let expected_path_len = forest
105 .leaf_to_corresponding_tree(block_num.as_usize())
106 .expect("forest includes block number") as usize;
107
108 let mut idx = InOrderIndex::from_leaf_pos(block_num.as_usize());
109 let mut path_nodes = Vec::with_capacity(expected_path_len);
110
111 for node in merkle_path.nodes().iter().take(expected_path_len) {
112 path_nodes.push((idx.sibling(), *node));
113 idx = idx.parent();
114 }
115
116 path_nodes
117}
118
119pub(crate) async fn fetch_block_header(
120 rpc_api: Arc<dyn NodeRpcClient>,
121 block_num: BlockNumber,
122 current_partial_mmr: &mut PartialMmr,
123) -> Result<(BlockHeader, Vec<(InOrderIndex, Word)>), ClientError> {
124 let (block_header, mmr_proof) = rpc_api.get_block_header_with_proof(block_num).await?;
125
126 let path_nodes = adjust_merkle_path_for_forest(
129 &mmr_proof.merkle_path,
130 block_num,
131 current_partial_mmr.forest(),
132 );
133
134 let merkle_path = MerklePath::new(path_nodes.iter().map(|(_, n)| *n).collect());
135
136 current_partial_mmr
137 .track(block_num.as_usize(), block_header.commitment(), &merkle_path)
138 .map_err(StoreError::MmrError)?;
139
140 Ok((block_header, path_nodes))
141}
142
143#[cfg(test)]
144mod tests {
145 use miden_protocol::block::BlockNumber;
146 use miden_protocol::crypto::merkle::MerklePath;
147 use miden_protocol::crypto::merkle::mmr::{Forest, InOrderIndex, Mmr, PartialMmr};
148 use miden_protocol::{Felt, Word};
149
150 use super::adjust_merkle_path_for_forest;
151
152 fn word(n: u64) -> Word {
153 Word::new([Felt::new(n), Felt::new(0), Felt::new(0), Felt::new(0)])
154 }
155
156 #[test]
157 fn adjust_merkle_path_truncates_to_forest_bounds() {
158 let forest = Forest::new(5);
159 let block_num = BlockNumber::from(4u32);
161 let path = MerklePath::new(vec![word(1), word(2), word(3)]);
162
163 let adjusted = adjust_merkle_path_for_forest(&path, block_num, forest);
164 assert!(adjusted.is_empty());
166 }
167
168 #[test]
169 fn adjust_merkle_path_keeps_proof_valid_for_smaller_forest() {
170 let mut mmr = Mmr::new();
173 for value in 0u64..8 {
174 mmr.add(word(value));
175 }
176
177 let large_forest = Forest::new(8);
178 let small_forest = Forest::new(5);
179 let leaf_pos = 4usize;
180 let block_num = BlockNumber::from(u32::try_from(leaf_pos).unwrap());
181
182 let proof = mmr.open_at(leaf_pos, large_forest).expect("valid proof");
183 let adjusted_nodes =
184 adjust_merkle_path_for_forest(&proof.merkle_path, block_num, small_forest);
185 let adjusted_path = MerklePath::new(adjusted_nodes.iter().map(|(_, n)| *n).collect());
186
187 let peaks = mmr.peaks_at(small_forest).unwrap();
188 let mut partial = PartialMmr::from_peaks(peaks);
189 let leaf = mmr.get(leaf_pos).expect("leaf exists");
190
191 partial
192 .track(leaf_pos, leaf, &adjusted_path)
193 .expect("adjusted path should verify against smaller forest peaks");
194 }
195
196 #[test]
197 fn adjust_merkle_path_correct_indices() {
198 let forest = Forest::new(6);
200 let block_num = BlockNumber::from(1u32);
202 let nodes = vec![word(10), word(11), word(12), word(13)];
203 let path = MerklePath::new(nodes.clone());
204
205 let adjusted = adjust_merkle_path_for_forest(&path, block_num, forest);
206
207 assert_eq!(adjusted.len(), 2);
208 assert_eq!(adjusted[0].1, nodes[0]);
209 assert_eq!(adjusted[1].1, nodes[1]);
210
211 let mut idx = InOrderIndex::from_leaf_pos(1);
212 let expected0 = idx.sibling();
213 idx = idx.parent();
214 let expected1 = idx.sibling();
215
216 assert_eq!(adjusted[0].0, expected0);
217 assert_eq!(adjusted[1].0, expected1);
218 }
219
220 #[test]
221 fn adjust_path_limit_correct_when_siblings_in_bounds() {
222 let large_leaves = 8usize;
225 let small_leaves = 7usize;
226 let leaf_pos = 2usize;
227 let mut mmr = Mmr::new();
228 for value in 0u64..large_leaves as u64 {
229 mmr.add(word(value));
230 }
231
232 let small_forest = Forest::new(small_leaves);
233 let proof = mmr.open_at(leaf_pos, Forest::new(large_leaves)).expect("valid proof");
234 let expected_depth =
235 small_forest.leaf_to_corresponding_tree(leaf_pos).expect("leaf is in forest") as usize;
236
237 let mut idx = InOrderIndex::from_leaf_pos(leaf_pos);
240 for _ in 0..expected_depth {
241 idx = idx.parent();
242 }
243 let next_sibling = idx.sibling();
244 let rightmost = InOrderIndex::from_leaf_pos(small_leaves - 1);
245 assert!(next_sibling <= rightmost);
246 assert!(proof.merkle_path.depth() as usize > expected_depth);
247
248 let adjusted = adjust_merkle_path_for_forest(
249 &proof.merkle_path,
250 BlockNumber::from(u32::try_from(leaf_pos).unwrap()),
251 small_forest,
252 );
253 assert_eq!(adjusted.len(), expected_depth);
254 }
255}