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Finish merging in the develop branch
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@@ -7,7 +7,7 @@ use std::collections::HashMap;
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use group::GroupEncoding;
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use serai_primitives::{Coin, Amount, Balance};
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use serai_primitives::{ExternalCoin, Amount, ExternalBalance};
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use serai_db::DbTxn;
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@@ -42,7 +42,7 @@ impl<S: ScannerFeed, P: TransactionPlanner<S, ()>> Scheduler<S, P> {
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block: &BlockFor<S>,
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key_for_change: KeyFor<S>,
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key: KeyFor<S>,
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coin: Coin,
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coin: ExternalCoin,
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) -> Result<Vec<EventualityFor<S>>, <Self as SchedulerTrait<S>>::EphemeralError> {
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let mut eventualities = vec![];
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@@ -79,7 +79,7 @@ impl<S: ScannerFeed, P: TransactionPlanner<S, ()>> Scheduler<S, P> {
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txn: &mut impl DbTxn,
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operating_costs: &mut u64,
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key: KeyFor<S>,
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coin: Coin,
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coin: ExternalCoin,
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value_of_outputs: u64,
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) -> Vec<Payment<AddressFor<S>>> {
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// Fetch all payments for this key
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@@ -133,7 +133,7 @@ impl<S: ScannerFeed, P: TransactionPlanner<S, ()>> Scheduler<S, P> {
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fn queue_branches(
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txn: &mut impl DbTxn,
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key: KeyFor<S>,
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coin: Coin,
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coin: ExternalCoin,
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effected_payments: Vec<Amount>,
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tx: TreeTransaction<AddressFor<S>>,
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) {
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@@ -149,7 +149,7 @@ impl<S: ScannerFeed, P: TransactionPlanner<S, ()>> Scheduler<S, P> {
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children thanks to our sort.
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*/
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for (amount, child) in effected_payments.into_iter().zip(children) {
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Db::<S>::queue_pending_branch(txn, key, Balance { coin, amount }, &child);
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Db::<S>::queue_pending_branch(txn, key, ExternalBalance { coin, amount }, &child);
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}
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}
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}
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@@ -216,8 +216,6 @@ impl<S: ScannerFeed, P: TransactionPlanner<S, ()>> Scheduler<S, P> {
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let branch_address = P::branch_address(key);
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'coin: for coin in S::NETWORK.coins() {
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let coin = *coin;
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// Perform any input aggregation we should
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eventualities
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.append(&mut self.aggregate_inputs(txn, block, key_for_change, key, coin).await?);
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@@ -308,7 +306,7 @@ impl<S: ScannerFeed, P: TransactionPlanner<S, ()>> Scheduler<S, P> {
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block: &BlockFor<S>,
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from: KeyFor<S>,
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to: KeyFor<S>,
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coin: Coin,
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coin: ExternalCoin,
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) -> Result<(), <Self as SchedulerTrait<S>>::EphemeralError> {
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let from_bytes = from.to_bytes().as_ref().to_vec();
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// Ensure our inputs are aggregated
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@@ -349,10 +347,10 @@ impl<S: ScannerFeed, P: TransactionPlanner<S, ()>> SchedulerTrait<S> for Schedul
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fn activate_key(txn: &mut impl DbTxn, key: KeyFor<S>) {
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for coin in S::NETWORK.coins() {
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assert!(Db::<S>::outputs(txn, key, *coin).is_none());
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Db::<S>::set_outputs(txn, key, *coin, &[]);
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assert!(Db::<S>::queued_payments(txn, key, *coin).is_none());
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Db::<S>::set_queued_payments(txn, key, *coin, &[]);
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assert!(Db::<S>::outputs(txn, key, coin).is_none());
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Db::<S>::set_outputs(txn, key, coin, &[]);
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assert!(Db::<S>::queued_payments(txn, key, coin).is_none());
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Db::<S>::set_queued_payments(txn, key, coin, &[]);
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}
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}
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@@ -368,18 +366,18 @@ impl<S: ScannerFeed, P: TransactionPlanner<S, ()>> SchedulerTrait<S> for Schedul
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for coin in S::NETWORK.coins() {
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// Move the payments to the new key
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{
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let still_queued = Db::<S>::queued_payments(txn, retiring_key, *coin).unwrap();
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let mut new_queued = Db::<S>::queued_payments(txn, new_key, *coin).unwrap();
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let still_queued = Db::<S>::queued_payments(txn, retiring_key, coin).unwrap();
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let mut new_queued = Db::<S>::queued_payments(txn, new_key, coin).unwrap();
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let mut queued = still_queued;
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queued.append(&mut new_queued);
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Db::<S>::set_queued_payments(txn, retiring_key, *coin, &[]);
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Db::<S>::set_queued_payments(txn, new_key, *coin, &queued);
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Db::<S>::set_queued_payments(txn, retiring_key, coin, &[]);
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Db::<S>::set_queued_payments(txn, new_key, coin, &queued);
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}
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// Move the outputs to the new key
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self.flush_outputs(txn, &mut eventualities, block, retiring_key, new_key, *coin).await?;
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self.flush_outputs(txn, &mut eventualities, block, retiring_key, new_key, coin).await?;
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}
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Ok(eventualities)
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}
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@@ -387,10 +385,10 @@ impl<S: ScannerFeed, P: TransactionPlanner<S, ()>> SchedulerTrait<S> for Schedul
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fn retire_key(txn: &mut impl DbTxn, key: KeyFor<S>) {
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for coin in S::NETWORK.coins() {
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assert!(Db::<S>::outputs(txn, key, *coin).unwrap().is_empty());
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Db::<S>::del_outputs(txn, key, *coin);
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assert!(Db::<S>::queued_payments(txn, key, *coin).unwrap().is_empty());
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Db::<S>::del_queued_payments(txn, key, *coin);
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assert!(Db::<S>::outputs(txn, key, coin).unwrap().is_empty());
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Db::<S>::del_outputs(txn, key, coin);
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assert!(Db::<S>::queued_payments(txn, key, coin).unwrap().is_empty());
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Db::<S>::del_queued_payments(txn, key, coin);
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}
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}
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@@ -463,7 +461,7 @@ impl<S: ScannerFeed, P: TransactionPlanner<S, ()>> SchedulerTrait<S> for Schedul
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block,
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active_keys[0].0,
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active_keys[1].0,
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*coin,
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coin,
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)
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.await?;
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}
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@@ -552,10 +550,10 @@ impl<S: ScannerFeed, P: TransactionPlanner<S, ()>> SchedulerTrait<S> for Schedul
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// Queue the payments for this key
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for coin in S::NETWORK.coins() {
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let mut queued_payments = Db::<S>::queued_payments(txn, fulfillment_key, *coin).unwrap();
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let mut queued_payments = Db::<S>::queued_payments(txn, fulfillment_key, coin).unwrap();
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queued_payments
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.extend(payments.iter().filter(|payment| payment.balance().coin == *coin).cloned());
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Db::<S>::set_queued_payments(txn, fulfillment_key, *coin, &queued_payments);
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.extend(payments.iter().filter(|payment| payment.balance().coin == coin).cloned());
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Db::<S>::set_queued_payments(txn, fulfillment_key, coin, &queued_payments);
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}
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// Handle the queued payments
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