1use alloc::collections::{BTreeMap, BTreeSet};
2use alloc::vec::Vec;
3
4use miden_protocol::Word;
5use miden_protocol::account::AccountId;
6use miden_protocol::block::{BlockHeader, BlockNumber};
7use miden_protocol::crypto::merkle::mmr::{InOrderIndex, MmrPeaks};
8use miden_protocol::note::{NoteId, Nullifier};
9use miden_protocol::transaction::TransactionId;
10
11use super::SyncSummary;
12use crate::account::Account;
13use crate::note::{NoteUpdateTracker, NoteUpdateType};
14use crate::rpc::domain::transaction::TransactionInclusion;
15use crate::transaction::{DiscardCause, TransactionRecord, TransactionStatus};
16
17#[derive(Default)]
22pub struct StateSyncUpdate {
23 pub block_num: BlockNumber,
25 pub block_updates: BlockUpdates,
27 pub note_updates: NoteUpdateTracker,
29 pub transaction_updates: TransactionUpdateTracker,
31 pub account_updates: AccountUpdates,
33}
34
35impl From<&StateSyncUpdate> for SyncSummary {
36 fn from(value: &StateSyncUpdate) -> Self {
37 let new_public_note_ids = value
38 .note_updates
39 .updated_input_notes()
40 .filter_map(|note_update| {
41 let note = note_update.inner();
42 if let NoteUpdateType::Insert = note_update.update_type() {
43 Some(note.id())
44 } else {
45 None
46 }
47 })
48 .collect();
49
50 let committed_note_ids: BTreeSet<NoteId> = value
51 .note_updates
52 .updated_input_notes()
53 .filter_map(|note_update| {
54 let note = note_update.inner();
55 if let NoteUpdateType::Update = note_update.update_type() {
56 note.is_committed().then_some(note.id())
57 } else {
58 None
59 }
60 })
61 .chain(value.note_updates.updated_output_notes().filter_map(|note_update| {
62 let note = note_update.inner();
63 if let NoteUpdateType::Update = note_update.update_type() {
64 note.is_committed().then_some(note.id())
65 } else {
66 None
67 }
68 }))
69 .collect();
70
71 let consumed_note_ids: BTreeSet<NoteId> = value
72 .note_updates
73 .updated_input_notes()
74 .filter_map(|note| note.inner().is_consumed().then_some(note.inner().id()))
75 .collect();
76
77 SyncSummary::new(
78 value.block_num,
79 new_public_note_ids,
80 committed_note_ids.into_iter().collect(),
81 consumed_note_ids.into_iter().collect(),
82 value
83 .account_updates
84 .updated_public_accounts()
85 .iter()
86 .map(Account::id)
87 .collect(),
88 value
89 .account_updates
90 .mismatched_private_accounts()
91 .iter()
92 .map(|(id, _)| *id)
93 .collect(),
94 value.transaction_updates.committed_transactions().map(|t| t.id).collect(),
95 )
96 }
97}
98
99#[derive(Debug, Clone, Default)]
101pub struct BlockUpdates {
102 block_headers: Vec<(BlockHeader, bool, MmrPeaks)>,
105 new_authentication_nodes: Vec<(InOrderIndex, Word)>,
108}
109
110impl BlockUpdates {
111 pub fn new(
113 block_headers: Vec<(BlockHeader, bool, MmrPeaks)>,
114 new_authentication_nodes: Vec<(InOrderIndex, Word)>,
115 ) -> Self {
116 Self { block_headers, new_authentication_nodes }
117 }
118
119 pub fn insert(
128 &mut self,
129 block_header: BlockHeader,
130 has_client_notes: bool,
131 peaks: MmrPeaks,
132 new_authentication_nodes: Vec<(InOrderIndex, Word)>,
133 ) {
134 self.block_headers.push((block_header, has_client_notes, peaks));
135
136 self.new_authentication_nodes.reserve(new_authentication_nodes.len());
137 self.new_authentication_nodes.extend(new_authentication_nodes);
138 }
139
140 pub fn block_headers(&self) -> &[(BlockHeader, bool, MmrPeaks)] {
143 &self.block_headers
144 }
145
146 pub fn extend_authentication_nodes(&mut self, nodes: Vec<(InOrderIndex, Word)>) {
152 self.new_authentication_nodes.extend(nodes);
153 }
154
155 pub fn new_authentication_nodes(&self) -> &[(InOrderIndex, Word)] {
158 &self.new_authentication_nodes
159 }
160}
161
162#[derive(Default)]
164pub struct TransactionUpdateTracker {
165 transactions: BTreeMap<TransactionId, TransactionRecord>,
166}
167
168impl TransactionUpdateTracker {
169 pub fn new(transactions: Vec<TransactionRecord>) -> Self {
171 let transactions =
172 transactions.into_iter().map(|tx| (tx.id, tx)).collect::<BTreeMap<_, _>>();
173
174 Self { transactions }
175 }
176
177 pub fn committed_transactions(&self) -> impl Iterator<Item = &TransactionRecord> {
179 self.transactions
180 .values()
181 .filter(|tx| matches!(tx.status, TransactionStatus::Committed { .. }))
182 }
183
184 pub fn discarded_transactions(&self) -> impl Iterator<Item = &TransactionRecord> {
186 self.transactions
187 .values()
188 .filter(|tx| matches!(tx.status, TransactionStatus::Discarded(_)))
189 }
190
191 fn mutable_pending_transactions(&mut self) -> impl Iterator<Item = &mut TransactionRecord> {
193 self.transactions
194 .values_mut()
195 .filter(|tx| matches!(tx.status, TransactionStatus::Pending))
196 }
197
198 pub fn updated_transaction_ids(&self) -> impl Iterator<Item = TransactionId> {
200 self.committed_transactions()
201 .chain(self.discarded_transactions())
202 .map(|tx| tx.id)
203 }
204
205 pub fn apply_transaction_inclusion(
208 &mut self,
209 transaction_inclusion: &TransactionInclusion,
210 timestamp: u64,
211 ) {
212 if let Some(transaction) = self.transactions.get_mut(&transaction_inclusion.transaction_id)
213 {
214 transaction.commit_transaction(transaction_inclusion.block_num, timestamp);
215 return;
216 }
217
218 if let Some(transaction) = self.transactions.values_mut().find(|tx| {
222 tx.details.account_id == transaction_inclusion.account_id
223 && tx.details.init_account_state == transaction_inclusion.initial_state_commitment
224 }) {
225 transaction.commit_transaction(transaction_inclusion.block_num, timestamp);
226 }
227 }
228
229 pub fn apply_sync_height_update(
232 &mut self,
233 new_sync_height: BlockNumber,
234 tx_discard_delta: Option<u32>,
235 ) {
236 if let Some(tx_discard_delta) = tx_discard_delta {
237 self.discard_transaction_with_predicate(
238 |transaction| {
239 transaction.details.submission_height
240 < new_sync_height.checked_sub(tx_discard_delta).unwrap_or_default()
241 },
242 DiscardCause::Stale,
243 );
244 }
245
246 self.discard_transaction_with_predicate(
249 |transaction| transaction.details.expiration_block_num <= new_sync_height,
250 DiscardCause::Expired,
251 );
252 }
253
254 pub fn apply_input_note_nullified(&mut self, input_note_nullifier: Nullifier) {
258 self.discard_transaction_with_predicate(
259 |transaction| {
260 transaction
263 .details
264 .input_note_nullifiers
265 .contains(&input_note_nullifier.as_word())
266 },
267 DiscardCause::InputConsumed,
268 );
269 }
270
271 pub fn apply_invalid_initial_account_state(&mut self, invalid_account_state: Word) {
273 self.discard_transaction_with_predicate(
274 |transaction| transaction.details.init_account_state == invalid_account_state,
275 DiscardCause::DiscardedInitialState,
276 );
277 }
278
279 fn discard_transaction_with_predicate<F>(&mut self, predicate: F, discard_cause: DiscardCause)
282 where
283 F: Fn(&TransactionRecord) -> bool,
284 {
285 let mut new_invalid_account_states = vec![];
286
287 for transaction in self.mutable_pending_transactions() {
288 if predicate(transaction) && transaction.discard_transaction(discard_cause) {
294 new_invalid_account_states.push(transaction.details.final_account_state);
295 }
296 }
297
298 for state in new_invalid_account_states {
299 self.apply_invalid_initial_account_state(state);
300 }
301 }
302}
303
304#[derive(Debug, Clone, Default)]
309pub struct AccountUpdates {
310 updated_public_accounts: Vec<Account>,
312 mismatched_private_accounts: Vec<(AccountId, Word)>,
319}
320
321impl AccountUpdates {
322 pub fn new(
324 updated_public_accounts: Vec<Account>,
325 mismatched_private_accounts: Vec<(AccountId, Word)>,
326 ) -> Self {
327 Self {
328 updated_public_accounts,
329 mismatched_private_accounts,
330 }
331 }
332
333 pub fn updated_public_accounts(&self) -> &[Account] {
335 &self.updated_public_accounts
336 }
337
338 pub fn mismatched_private_accounts(&self) -> &[(AccountId, Word)] {
340 &self.mismatched_private_accounts
341 }
342
343 pub fn extend(&mut self, other: AccountUpdates) {
344 self.updated_public_accounts.extend(other.updated_public_accounts);
345 self.mismatched_private_accounts.extend(other.mismatched_private_accounts);
346 }
347}