Propagate transaction queue
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@@ -186,7 +186,7 @@ impl<C, S, A, M, EM> EthClient<C, S, A, M, EM>
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}.fake_sign(from))
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}
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fn dispatch_transaction(&self, signed_transaction: SignedTransaction, raw_transaction: Vec<u8>) -> Result<Value, Error> {
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fn dispatch_transaction(&self, signed_transaction: SignedTransaction) -> Result<Value, Error> {
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let hash = signed_transaction.hash();
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let import = {
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@@ -203,7 +203,6 @@ impl<C, S, A, M, EM> EthClient<C, S, A, M, EM>
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match import.into_iter().collect::<Result<Vec<_>, _>>() {
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Ok(_) => {
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take_weak!(self.sync).new_transaction(raw_transaction);
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to_value(&hash)
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}
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Err(e) => {
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@@ -504,8 +503,7 @@ impl<C, S, A, M, EM> Eth for EthClient<C, S, A, M, EM>
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data: request.data.map_or_else(Vec::new, |d| d.to_vec()),
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}.sign(&secret)
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};
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let raw_transaction = encode(&signed_transaction).to_vec();
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self.dispatch_transaction(signed_transaction, raw_transaction)
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self.dispatch_transaction(signed_transaction)
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},
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Err(_) => { to_value(&H256::zero()) }
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}
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@@ -517,7 +515,7 @@ impl<C, S, A, M, EM> Eth for EthClient<C, S, A, M, EM>
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.and_then(|(raw_transaction, )| {
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let raw_transaction = raw_transaction.to_vec();
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match UntrustedRlp::new(&raw_transaction).as_val() {
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Ok(signed_transaction) => self.dispatch_transaction(signed_transaction, raw_transaction),
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Ok(signed_transaction) => self.dispatch_transaction(signed_transaction),
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Err(_) => to_value(&H256::zero()),
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}
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})
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@@ -98,6 +98,10 @@ impl MinerService for TestMinerService {
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self.pending_transactions.lock().unwrap().get(hash).cloned()
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}
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fn pending_transactions(&self) -> Vec<SignedTransaction> {
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self.pending_transactions.lock().unwrap().values().cloned().collect()
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}
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fn last_nonce(&self, address: &Address) -> Option<U256> {
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self.last_nonces.read().unwrap().get(address).cloned()
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}
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@@ -16,7 +16,7 @@
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//! Test implementation of SyncProvider.
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use util::{U256, Bytes};
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use util::{U256};
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use ethsync::{SyncProvider, SyncStatus, SyncState};
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use std::sync::{RwLock};
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@@ -59,8 +59,5 @@ impl SyncProvider for TestSyncProvider {
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fn status(&self) -> SyncStatus {
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self.status.read().unwrap().clone()
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}
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fn new_transaction(&self, _raw_transaction: Bytes) {
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}
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}
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