1#![allow(unknown_lints, mismatched_lifetime_syntaxes)]
4
5#[cfg(feature = "pubsub")]
6use super::get_block::SubFullBlocks;
7use super::{DynProvider, Empty, EthCallMany, MulticallBuilder, WatchBlocks};
8#[cfg(feature = "pubsub")]
9use crate::GetSubscription;
10use crate::{
11 heart::PendingTransactionError,
12 utils::{self, Eip1559Estimation, Eip1559Estimator},
13 EthCall, EthGetBlock, Identity, PendingTransaction, PendingTransactionBuilder,
14 PendingTransactionConfig, ProviderBuilder, ProviderCall, RootProvider, RpcWithBlock,
15 SendableTx,
16};
17use alloy_consensus::BlockHeader;
18use alloy_eips::eip2718::Encodable2718;
19use alloy_json_rpc::{RpcError, RpcRecv, RpcSend};
20use alloy_network::{Ethereum, Network};
21use alloy_network_primitives::{BlockResponse, ReceiptResponse};
22use alloy_primitives::{
23 hex, Address, BlockHash, BlockNumber, Bytes, StorageKey, StorageValue, TxHash, B256, U128,
24 U256, U64,
25};
26use alloy_rpc_client::{ClientRef, NoParams, PollerBuilder, WeakClient};
27#[cfg(feature = "pubsub")]
28use alloy_rpc_types_eth::pubsub::{Params, SubscriptionKind};
29use alloy_rpc_types_eth::{
30 erc4337::TransactionConditional,
31 simulate::{SimulatePayload, SimulatedBlock},
32 AccessListResult, BlockId, BlockNumberOrTag, Bundle, EIP1186AccountProofResponse,
33 EthCallResponse, FeeHistory, Filter, FilterChanges, Index, Log, SyncStatus,
34};
35use alloy_transport::TransportResult;
36use serde_json::value::RawValue;
37use std::borrow::Cow;
38
39pub type FilterPollerBuilder<R> = PollerBuilder<(U256,), Vec<R>>;
43
44#[cfg_attr(target_family = "wasm", async_trait::async_trait(?Send))]
70#[cfg_attr(not(target_family = "wasm"), async_trait::async_trait)]
71#[auto_impl::auto_impl(&, &mut, Rc, Arc, Box)]
72pub trait Provider<N: Network = Ethereum>: Send + Sync {
73 fn root(&self) -> &RootProvider<N>;
75
76 fn builder() -> ProviderBuilder<Identity, Identity, N>
78 where
79 Self: Sized,
80 {
81 ProviderBuilder::default()
82 }
83
84 #[inline]
88 fn client(&self) -> ClientRef<'_> {
89 self.root().client()
90 }
91
92 #[inline]
96 fn weak_client(&self) -> WeakClient {
97 self.root().weak_client()
98 }
99
100 #[auto_impl(keep_default_for(&, &mut, Rc, Arc, Box))]
113 #[doc(alias = "boxed")]
114 fn erased(self) -> DynProvider<N>
115 where
116 Self: Sized + 'static,
117 {
118 DynProvider::new(self)
119 }
120
121 fn get_accounts(&self) -> ProviderCall<NoParams, Vec<Address>> {
124 self.client().request_noparams("eth_accounts").into()
125 }
126
127 fn get_blob_base_fee(&self) -> ProviderCall<NoParams, U128, u128> {
129 self.client()
130 .request_noparams("eth_blobBaseFee")
131 .map_resp(utils::convert_u128 as fn(U128) -> u128)
132 .into()
133 }
134
135 fn get_block_number(&self) -> ProviderCall<NoParams, U64, BlockNumber> {
137 self.client()
138 .request_noparams("eth_blockNumber")
139 .map_resp(utils::convert_u64 as fn(U64) -> u64)
140 .into()
141 }
142
143 async fn get_block_number_by_id(
148 &self,
149 block_id: BlockId,
150 ) -> TransportResult<Option<BlockNumber>> {
151 match block_id {
152 BlockId::Number(BlockNumberOrTag::Number(num)) => Ok(Some(num)),
153 BlockId::Number(BlockNumberOrTag::Latest) => self.get_block_number().await.map(Some),
154 _ => {
155 let block = self.get_block(block_id).await?;
156 Ok(block.map(|b| b.header().number()))
157 }
158 }
159 }
160
161 #[doc(alias = "eth_call")]
189 #[doc(alias = "call_with_overrides")]
190 fn call(&self, tx: N::TransactionRequest) -> EthCall<N, Bytes> {
191 EthCall::call(self.weak_client(), tx).block(BlockNumberOrTag::Pending.into())
192 }
193
194 #[doc(alias = "eth_callMany")]
203 fn call_many<'req>(
204 &self,
205 bundles: &'req [Bundle],
206 ) -> EthCallMany<'req, N, Vec<Vec<EthCallResponse>>> {
207 EthCallMany::new(self.weak_client(), bundles)
208 }
209
210 #[auto_impl(keep_default_for(&, &mut, Rc, Arc, Box))]
216 fn multicall(&self) -> MulticallBuilder<Empty, &Self, N>
217 where
218 Self: Sized,
219 {
220 MulticallBuilder::new(self)
221 }
222
223 #[doc(alias = "eth_simulateV1")]
227 fn simulate<'req>(
228 &self,
229 payload: &'req SimulatePayload,
230 ) -> RpcWithBlock<&'req SimulatePayload, Vec<SimulatedBlock<N::BlockResponse>>> {
231 self.client().request("eth_simulateV1", payload).into()
232 }
233
234 fn get_chain_id(&self) -> ProviderCall<NoParams, U64, u64> {
236 self.client()
237 .request_noparams("eth_chainId")
238 .map_resp(utils::convert_u64 as fn(U64) -> u64)
239 .into()
240 }
241
242 fn create_access_list<'a>(
246 &self,
247 request: &'a N::TransactionRequest,
248 ) -> RpcWithBlock<&'a N::TransactionRequest, AccessListResult> {
249 self.client().request("eth_createAccessList", request).into()
250 }
251
252 fn estimate_gas(&self, tx: N::TransactionRequest) -> EthCall<N, U64, u64> {
266 EthCall::gas_estimate(self.weak_client(), tx)
267 .block(BlockNumberOrTag::Pending.into())
268 .map_resp(utils::convert_u64)
269 }
270
271 async fn estimate_eip1559_fees_with(
276 &self,
277 estimator: Eip1559Estimator,
278 ) -> TransportResult<Eip1559Estimation> {
279 let fee_history = self
280 .get_fee_history(
281 utils::EIP1559_FEE_ESTIMATION_PAST_BLOCKS,
282 BlockNumberOrTag::Latest,
283 &[utils::EIP1559_FEE_ESTIMATION_REWARD_PERCENTILE],
284 )
285 .await?;
286
287 let base_fee_per_gas = match fee_history.latest_block_base_fee() {
290 Some(base_fee) if base_fee != 0 => base_fee,
291 _ => {
292 self.get_block_by_number(BlockNumberOrTag::Latest)
294 .await?
295 .ok_or(RpcError::NullResp)?
296 .header()
297 .as_ref()
298 .base_fee_per_gas()
299 .ok_or(RpcError::UnsupportedFeature("eip1559"))?
300 .into()
301 }
302 };
303
304 Ok(estimator.estimate(base_fee_per_gas, &fee_history.reward.unwrap_or_default()))
305 }
306
307 async fn estimate_eip1559_fees(&self) -> TransportResult<Eip1559Estimation> {
311 self.estimate_eip1559_fees_with(Eip1559Estimator::default()).await
312 }
313
314 async fn get_fee_history(
318 &self,
319 block_count: u64,
320 last_block: BlockNumberOrTag,
321 reward_percentiles: &[f64],
322 ) -> TransportResult<FeeHistory> {
323 self.client()
324 .request("eth_feeHistory", (U64::from(block_count), last_block, reward_percentiles))
325 .await
326 }
327
328 fn get_gas_price(&self) -> ProviderCall<NoParams, U128, u128> {
330 self.client()
331 .request_noparams("eth_gasPrice")
332 .map_resp(utils::convert_u128 as fn(U128) -> u128)
333 .into()
334 }
335
336 fn get_account_info(
342 &self,
343 address: Address,
344 ) -> RpcWithBlock<Address, alloy_rpc_types_eth::AccountInfo> {
345 self.client().request("eth_getAccountInfo", address).into()
346 }
347
348 fn get_account(&self, address: Address) -> RpcWithBlock<Address, alloy_consensus::Account> {
351 self.client().request("eth_getAccount", address).into()
352 }
353
354 fn get_balance(&self, address: Address) -> RpcWithBlock<Address, U256, U256> {
358 self.client().request("eth_getBalance", address).into()
359 }
360
361 fn get_block(&self, block: BlockId) -> EthGetBlock<N::BlockResponse> {
372 match block {
373 BlockId::Hash(hash) => EthGetBlock::by_hash(hash.block_hash, self.client()),
374 BlockId::Number(number) => EthGetBlock::by_number(number, self.client()),
375 }
376 }
377
378 fn get_block_by_hash(&self, hash: BlockHash) -> EthGetBlock<N::BlockResponse> {
403 EthGetBlock::by_hash(hash, self.client())
404 }
405
406 fn get_block_by_number(&self, number: BlockNumberOrTag) -> EthGetBlock<N::BlockResponse> {
431 EthGetBlock::by_number(number, self.client())
432 }
433
434 async fn get_block_transaction_count_by_hash(
436 &self,
437 hash: BlockHash,
438 ) -> TransportResult<Option<u64>> {
439 self.client()
440 .request("eth_getBlockTransactionCountByHash", (hash,))
441 .await
442 .map(|opt_count: Option<U64>| opt_count.map(|count| count.to::<u64>()))
443 }
444
445 async fn get_block_transaction_count_by_number(
447 &self,
448 block_number: BlockNumberOrTag,
449 ) -> TransportResult<Option<u64>> {
450 self.client()
451 .request("eth_getBlockTransactionCountByNumber", (block_number,))
452 .await
453 .map(|opt_count: Option<U64>| opt_count.map(|count| count.to::<u64>()))
454 }
455
456 fn get_block_receipts(
458 &self,
459 block: BlockId,
460 ) -> ProviderCall<(BlockId,), Option<Vec<N::ReceiptResponse>>> {
461 self.client().request("eth_getBlockReceipts", (block,)).into()
462 }
463
464 fn get_code_at(&self, address: Address) -> RpcWithBlock<Address, Bytes> {
466 self.client().request("eth_getCode", address).into()
467 }
468
469 async fn watch_blocks(&self) -> TransportResult<FilterPollerBuilder<B256>> {
492 let id = self.new_block_filter().await?;
493 Ok(PollerBuilder::new(self.weak_client(), "eth_getFilterChanges", (id,)))
494 }
495
496 async fn watch_full_blocks(&self) -> TransportResult<WatchBlocks<N::BlockResponse>> {
520 let id = self.new_block_filter().await?;
521 let poller = PollerBuilder::new(self.weak_client(), "eth_getFilterChanges", (id,));
522
523 Ok(WatchBlocks::new(poller))
524 }
525
526 async fn watch_pending_transactions(&self) -> TransportResult<FilterPollerBuilder<B256>> {
549 let id = self.new_pending_transactions_filter(false).await?;
550 Ok(PollerBuilder::new(self.weak_client(), "eth_getFilterChanges", (id,)))
551 }
552
553 async fn watch_logs(&self, filter: &Filter) -> TransportResult<FilterPollerBuilder<Log>> {
582 let id = self.new_filter(filter).await?;
583 Ok(PollerBuilder::new(self.weak_client(), "eth_getFilterChanges", (id,)))
584 }
585
586 async fn watch_full_pending_transactions(
613 &self,
614 ) -> TransportResult<FilterPollerBuilder<N::TransactionResponse>> {
615 let id = self.new_pending_transactions_filter(true).await?;
616 Ok(PollerBuilder::new(self.weak_client(), "eth_getFilterChanges", (id,)))
617 }
618
619 #[auto_impl(keep_default_for(&, &mut, Rc, Arc, Box))]
624 async fn get_filter_changes<R: RpcRecv>(&self, id: U256) -> TransportResult<Vec<R>>
625 where
626 Self: Sized,
627 {
628 self.client().request("eth_getFilterChanges", (id,)).await
629 }
630
631 async fn get_filter_changes_dyn(&self, id: U256) -> TransportResult<FilterChanges> {
636 self.client().request("eth_getFilterChanges", (id,)).await
637 }
638
639 async fn get_filter_logs(&self, id: U256) -> TransportResult<Vec<Log>> {
641 self.client().request("eth_getFilterLogs", (id,)).await
642 }
643
644 async fn uninstall_filter(&self, id: U256) -> TransportResult<bool> {
646 self.client().request("eth_uninstallFilter", (id,)).await
647 }
648
649 #[inline]
654 async fn watch_pending_transaction(
655 &self,
656 config: PendingTransactionConfig,
657 ) -> Result<PendingTransaction, PendingTransactionError> {
658 self.root().watch_pending_transaction(config).await
659 }
660
661 async fn get_logs(&self, filter: &Filter) -> TransportResult<Vec<Log>> {
663 self.client().request("eth_getLogs", (filter,)).await
664 }
665
666 fn get_proof(
670 &self,
671 address: Address,
672 keys: Vec<StorageKey>,
673 ) -> RpcWithBlock<(Address, Vec<StorageKey>), EIP1186AccountProofResponse> {
674 self.client().request("eth_getProof", (address, keys)).into()
675 }
676
677 fn get_storage_at(
679 &self,
680 address: Address,
681 key: U256,
682 ) -> RpcWithBlock<(Address, U256), StorageValue> {
683 self.client().request("eth_getStorageAt", (address, key)).into()
684 }
685
686 fn get_transaction_by_sender_nonce(
690 &self,
691 sender: Address,
692 nonce: u64,
693 ) -> ProviderCall<(Address, U64), Option<N::TransactionResponse>> {
694 self.client()
695 .request("eth_getTransactionBySenderAndNonce", (sender, U64::from(nonce)))
696 .into()
697 }
698
699 fn get_transaction_by_hash(
701 &self,
702 hash: TxHash,
703 ) -> ProviderCall<(TxHash,), Option<N::TransactionResponse>> {
704 self.client().request("eth_getTransactionByHash", (hash,)).into()
705 }
706
707 fn get_transaction_by_block_hash_and_index(
709 &self,
710 block_hash: B256,
711 index: usize,
712 ) -> ProviderCall<(B256, Index), Option<N::TransactionResponse>> {
713 self.client()
714 .request("eth_getTransactionByBlockHashAndIndex", (block_hash, Index(index)))
715 .into()
716 }
717
718 fn get_raw_transaction_by_block_hash_and_index(
720 &self,
721 block_hash: B256,
722 index: usize,
723 ) -> ProviderCall<(B256, Index), Option<Bytes>> {
724 self.client()
725 .request("eth_getRawTransactionByBlockHashAndIndex", (block_hash, Index(index)))
726 .into()
727 }
728
729 fn get_transaction_by_block_number_and_index(
731 &self,
732 block_number: BlockNumberOrTag,
733 index: usize,
734 ) -> ProviderCall<(BlockNumberOrTag, Index), Option<N::TransactionResponse>> {
735 self.client()
736 .request("eth_getTransactionByBlockNumberAndIndex", (block_number, Index(index)))
737 .into()
738 }
739
740 fn get_raw_transaction_by_block_number_and_index(
742 &self,
743 block_number: BlockNumberOrTag,
744 index: usize,
745 ) -> ProviderCall<(BlockNumberOrTag, Index), Option<Bytes>> {
746 self.client()
747 .request("eth_getRawTransactionByBlockNumberAndIndex", (block_number, Index(index)))
748 .into()
749 }
750
751 fn get_raw_transaction_by_hash(&self, hash: TxHash) -> ProviderCall<(TxHash,), Option<Bytes>> {
760 self.client().request("eth_getRawTransactionByHash", (hash,)).into()
761 }
762
763 #[doc(alias = "get_nonce")]
765 #[doc(alias = "get_account_nonce")]
766 fn get_transaction_count(
767 &self,
768 address: Address,
769 ) -> RpcWithBlock<Address, U64, u64, fn(U64) -> u64> {
770 self.client()
771 .request("eth_getTransactionCount", address)
772 .map_resp(utils::convert_u64 as fn(U64) -> u64)
773 .into()
774 }
775
776 fn get_transaction_receipt(
778 &self,
779 hash: TxHash,
780 ) -> ProviderCall<(TxHash,), Option<N::ReceiptResponse>> {
781 self.client().request("eth_getTransactionReceipt", (hash,)).into()
782 }
783
784 async fn get_uncle(&self, tag: BlockId, idx: u64) -> TransportResult<Option<N::BlockResponse>> {
786 let idx = U64::from(idx);
787 match tag {
788 BlockId::Hash(hash) => {
789 self.client()
790 .request("eth_getUncleByBlockHashAndIndex", (hash.block_hash, idx))
791 .await
792 }
793 BlockId::Number(number) => {
794 self.client().request("eth_getUncleByBlockNumberAndIndex", (number, idx)).await
795 }
796 }
797 }
798
799 async fn get_uncle_count(&self, tag: BlockId) -> TransportResult<u64> {
801 match tag {
802 BlockId::Hash(hash) => self
803 .client()
804 .request("eth_getUncleCountByBlockHash", (hash.block_hash,))
805 .await
806 .map(|count: U64| count.to::<u64>()),
807 BlockId::Number(number) => self
808 .client()
809 .request("eth_getUncleCountByBlockNumber", (number,))
810 .await
811 .map(|count: U64| count.to::<u64>()),
812 }
813 }
814
815 fn get_max_priority_fee_per_gas(&self) -> ProviderCall<NoParams, U128, u128> {
817 self.client()
818 .request_noparams("eth_maxPriorityFeePerGas")
819 .map_resp(utils::convert_u128 as fn(U128) -> u128)
820 .into()
821 }
822
823 async fn new_block_filter(&self) -> TransportResult<U256> {
829 self.client().request_noparams("eth_newBlockFilter").await
830 }
831
832 async fn new_filter(&self, filter: &Filter) -> TransportResult<U256> {
838 self.client().request("eth_newFilter", (filter,)).await
839 }
840
841 async fn new_pending_transactions_filter(&self, full: bool) -> TransportResult<U256> {
851 let param = if full { &[true][..] } else { &[] };
853 self.client().request("eth_newPendingTransactionFilter", param).await
854 }
855
856 async fn send_raw_transaction(
860 &self,
861 encoded_tx: &[u8],
862 ) -> TransportResult<PendingTransactionBuilder<N>> {
863 let rlp_hex = hex::encode_prefixed(encoded_tx);
864 let tx_hash = self.client().request("eth_sendRawTransaction", (rlp_hex,)).await?;
865 Ok(PendingTransactionBuilder::new(self.root().clone(), tx_hash))
866 }
867
868 async fn send_raw_transaction_conditional(
879 &self,
880 encoded_tx: &[u8],
881 conditional: TransactionConditional,
882 ) -> TransportResult<PendingTransactionBuilder<N>> {
883 let rlp_hex = hex::encode_prefixed(encoded_tx);
884 let tx_hash = self
885 .client()
886 .request("eth_sendRawTransactionConditional", (rlp_hex, conditional))
887 .await?;
888 Ok(PendingTransactionBuilder::new(self.root().clone(), tx_hash))
889 }
890
891 async fn send_transaction(
912 &self,
913 tx: N::TransactionRequest,
914 ) -> TransportResult<PendingTransactionBuilder<N>> {
915 self.send_transaction_internal(SendableTx::Builder(tx)).await
916 }
917
918 async fn send_tx_envelope(
923 &self,
924 tx: N::TxEnvelope,
925 ) -> TransportResult<PendingTransactionBuilder<N>> {
926 self.send_transaction_internal(SendableTx::Envelope(tx)).await
927 }
928
929 #[doc(hidden)]
937 async fn send_transaction_internal(
938 &self,
939 tx: SendableTx<N>,
940 ) -> TransportResult<PendingTransactionBuilder<N>> {
941 let _handle = self.root().get_heart();
944
945 match tx {
946 SendableTx::Builder(mut tx) => {
947 alloy_network::TransactionBuilder::prep_for_submission(&mut tx);
948 let tx_hash = self.client().request("eth_sendTransaction", (tx,)).await?;
949 Ok(PendingTransactionBuilder::new(self.root().clone(), tx_hash))
950 }
951 SendableTx::Envelope(tx) => {
952 let encoded_tx = tx.encoded_2718();
953 self.send_raw_transaction(&encoded_tx).await
954 }
955 }
956 }
957
958 async fn sign_transaction(&self, tx: N::TransactionRequest) -> TransportResult<Bytes> {
963 self.client().request("eth_signTransaction", (tx,)).await
964 }
965
966 #[cfg(feature = "pubsub")]
992 fn subscribe_blocks(&self) -> GetSubscription<(SubscriptionKind,), N::HeaderResponse> {
993 let rpc_call = self.client().request("eth_subscribe", (SubscriptionKind::NewHeads,));
994 GetSubscription::new(self.weak_client(), rpc_call)
995 }
996
997 #[cfg(feature = "pubsub")]
1021 fn subscribe_full_blocks(&self) -> SubFullBlocks<N> {
1022 SubFullBlocks::new(self.subscribe_blocks(), self.weak_client())
1023 }
1024
1025 #[cfg(feature = "pubsub")]
1051 fn subscribe_pending_transactions(&self) -> GetSubscription<(SubscriptionKind,), B256> {
1052 let rpc_call =
1053 self.client().request("eth_subscribe", (SubscriptionKind::NewPendingTransactions,));
1054 GetSubscription::new(self.weak_client(), rpc_call)
1055 }
1056
1057 #[cfg(feature = "pubsub")]
1088 fn subscribe_full_pending_transactions(
1089 &self,
1090 ) -> GetSubscription<(SubscriptionKind, Params), N::TransactionResponse> {
1091 let rpc_call = self.client().request(
1092 "eth_subscribe",
1093 (SubscriptionKind::NewPendingTransactions, Params::Bool(true)),
1094 );
1095 GetSubscription::new(self.weak_client(), rpc_call)
1096 }
1097
1098 #[cfg(feature = "pubsub")]
1129 fn subscribe_logs(&self, filter: &Filter) -> GetSubscription<(SubscriptionKind, Params), Log> {
1130 let rpc_call = self.client().request(
1131 "eth_subscribe",
1132 (SubscriptionKind::Logs, Params::Logs(Box::new(filter.clone()))),
1133 );
1134 GetSubscription::new(self.weak_client(), rpc_call)
1135 }
1136
1137 #[cfg(feature = "pubsub")]
1139 #[auto_impl(keep_default_for(&, &mut, Rc, Arc, Box))]
1140 fn subscribe<P, R>(&self, params: P) -> GetSubscription<P, R>
1141 where
1142 P: RpcSend,
1143 R: RpcRecv,
1144 Self: Sized,
1145 {
1146 let rpc_call = self.client().request("eth_subscribe", params);
1147 GetSubscription::new(self.weak_client(), rpc_call)
1148 }
1149
1150 #[cfg(feature = "pubsub")]
1171 #[auto_impl(keep_default_for(&, &mut, Rc, Arc, Box))]
1172 fn subscribe_to<R>(&self, method: &'static str) -> GetSubscription<NoParams, R>
1173 where
1174 R: RpcRecv,
1175 Self: Sized,
1176 {
1177 let mut rpc_call = self.client().request_noparams(method);
1178 rpc_call.set_is_subscription();
1179 GetSubscription::new(self.weak_client(), rpc_call)
1180 }
1181
1182 #[cfg(feature = "pubsub")]
1184 async fn unsubscribe(&self, id: B256) -> TransportResult<()> {
1185 self.root().unsubscribe(id)
1186 }
1187
1188 fn syncing(&self) -> ProviderCall<NoParams, SyncStatus> {
1190 self.client().request_noparams("eth_syncing").into()
1191 }
1192
1193 #[doc(alias = "web3_client_version")]
1195 fn get_client_version(&self) -> ProviderCall<NoParams, String> {
1196 self.client().request_noparams("web3_clientVersion").into()
1197 }
1198
1199 #[doc(alias = "web3_sha3")]
1201 fn get_sha3(&self, data: &[u8]) -> ProviderCall<(String,), B256> {
1202 self.client().request("web3_sha3", (hex::encode_prefixed(data),)).into()
1203 }
1204
1205 fn get_net_version(&self) -> ProviderCall<NoParams, U64, u64> {
1207 self.client()
1208 .request_noparams("net_version")
1209 .map_resp(utils::convert_u64 as fn(U64) -> u64)
1210 .into()
1211 }
1212
1213 async fn raw_request<P, R>(&self, method: Cow<'static, str>, params: P) -> TransportResult<R>
1238 where
1239 P: RpcSend,
1240 R: RpcRecv,
1241 Self: Sized,
1242 {
1243 self.client().request(method, ¶ms).await
1244 }
1245
1246 async fn raw_request_dyn(
1269 &self,
1270 method: Cow<'static, str>,
1271 params: &RawValue,
1272 ) -> TransportResult<Box<RawValue>> {
1273 self.client().request(method, params).await
1274 }
1275
1276 #[inline]
1278 fn transaction_request(&self) -> N::TransactionRequest {
1279 Default::default()
1280 }
1281}
1282
1283#[cfg_attr(target_family = "wasm", async_trait::async_trait(?Send))]
1284#[cfg_attr(not(target_family = "wasm"), async_trait::async_trait)]
1285impl<N: Network> Provider<N> for RootProvider<N> {
1286 #[inline]
1287 fn root(&self) -> &Self {
1288 self
1289 }
1290
1291 #[inline]
1292 fn client(&self) -> ClientRef<'_> {
1293 self.inner.client_ref()
1294 }
1295
1296 #[inline]
1297 fn weak_client(&self) -> WeakClient {
1298 self.inner.weak_client()
1299 }
1300
1301 #[inline]
1302 async fn watch_pending_transaction(
1303 &self,
1304 config: PendingTransactionConfig,
1305 ) -> Result<PendingTransaction, PendingTransactionError> {
1306 let block_number =
1307 if let Some(receipt) = self.get_transaction_receipt(*config.tx_hash()).await? {
1308 if config.required_confirmations() <= 1 {
1310 return Ok(PendingTransaction::ready(*config.tx_hash()));
1311 }
1312 receipt.block_number()
1315 } else {
1316 None
1317 };
1318
1319 self.get_heart()
1320 .watch_tx(config, block_number)
1321 .await
1322 .map_err(|_| PendingTransactionError::FailedToRegister)
1323 }
1324}
1325
1326#[cfg(test)]
1327mod tests {
1328 use super::*;
1329 use crate::{builder, ext::test::async_ci_only, ProviderBuilder, WalletProvider};
1330 use alloy_consensus::{Transaction, TxEnvelope};
1331 use alloy_network::{AnyNetwork, EthereumWallet, TransactionBuilder};
1332 use alloy_node_bindings::{utils::run_with_tempdir, Anvil, Reth};
1333 use alloy_primitives::{address, b256, bytes, keccak256};
1334 use alloy_rlp::Decodable;
1335 use alloy_rpc_client::{BuiltInConnectionString, RpcClient};
1336 use alloy_rpc_types_eth::{request::TransactionRequest, Block};
1337 use alloy_signer_local::PrivateKeySigner;
1338 use alloy_transport::layers::{RetryBackoffLayer, RetryPolicy};
1339 use std::{io::Read, str::FromStr, time::Duration};
1340
1341 use alloy_consensus::transaction::SignerRecoverable;
1343 #[cfg(feature = "hyper")]
1344 use alloy_transport_http::{
1345 hyper,
1346 hyper::body::Bytes as HyperBytes,
1347 hyper_util::{
1348 client::legacy::{Client, Error},
1349 rt::TokioExecutor,
1350 },
1351 HyperResponse, HyperResponseFut,
1352 };
1353 #[cfg(feature = "hyper")]
1354 use http_body_util::Full;
1355 #[cfg(feature = "hyper")]
1356 use tower::{Layer, Service};
1357
1358 #[tokio::test]
1359 async fn test_provider_builder() {
1360 let provider =
1361 RootProvider::<Ethereum>::builder().with_recommended_fillers().connect_anvil();
1362 let num = provider.get_block_number().await.unwrap();
1363 assert_eq!(0, num);
1364 }
1365
1366 #[tokio::test]
1367 async fn test_builder_helper_fn() {
1368 let provider = builder::<Ethereum>().with_recommended_fillers().connect_anvil();
1369 let num = provider.get_block_number().await.unwrap();
1370 assert_eq!(0, num);
1371 }
1372
1373 #[cfg(feature = "hyper")]
1374 #[tokio::test]
1375 async fn test_default_hyper_transport() {
1376 let anvil = Anvil::new().spawn();
1377 let hyper_t = alloy_transport_http::HyperTransport::new_hyper(anvil.endpoint_url());
1378
1379 let rpc_client = alloy_rpc_client::RpcClient::new(hyper_t, true);
1380
1381 let provider = RootProvider::<Ethereum>::new(rpc_client);
1382 let num = provider.get_block_number().await.unwrap();
1383 assert_eq!(0, num);
1384 }
1385
1386 #[cfg(feature = "hyper")]
1387 #[tokio::test]
1388 async fn test_hyper_layer_transport() {
1389 struct LoggingLayer;
1390
1391 impl<S> Layer<S> for LoggingLayer {
1392 type Service = LoggingService<S>;
1393
1394 fn layer(&self, inner: S) -> Self::Service {
1395 LoggingService { inner }
1396 }
1397 }
1398
1399 #[derive(Clone)] struct LoggingService<S> {
1401 inner: S,
1402 }
1403
1404 impl<S, B> Service<hyper::Request<B>> for LoggingService<S>
1405 where
1406 S: Service<hyper::Request<B>, Response = HyperResponse, Error = Error>
1407 + Clone
1408 + Send
1409 + Sync
1410 + 'static,
1411 S::Future: Send,
1412 S::Error: std::error::Error + Send + Sync + 'static,
1413 B: From<Vec<u8>> + Send + 'static + Clone + Sync + std::fmt::Debug,
1414 {
1415 type Response = HyperResponse;
1416 type Error = Error;
1417 type Future = HyperResponseFut;
1418
1419 fn poll_ready(
1420 &mut self,
1421 cx: &mut std::task::Context<'_>,
1422 ) -> std::task::Poll<Result<(), Self::Error>> {
1423 self.inner.poll_ready(cx)
1424 }
1425
1426 fn call(&mut self, req: hyper::Request<B>) -> Self::Future {
1427 println!("Logging Layer - HyperRequest {req:?}");
1428
1429 let fut = self.inner.call(req);
1430
1431 Box::pin(fut)
1432 }
1433 }
1434 use http::header::{self, HeaderValue};
1435 use tower_http::{
1436 sensitive_headers::SetSensitiveRequestHeadersLayer, set_header::SetRequestHeaderLayer,
1437 };
1438 let anvil = Anvil::new().spawn();
1439 let hyper_client = Client::builder(TokioExecutor::new()).build_http::<Full<HyperBytes>>();
1440
1441 let service = tower::ServiceBuilder::new()
1443 .layer(SetRequestHeaderLayer::if_not_present(
1444 header::USER_AGENT,
1445 HeaderValue::from_static("alloy app"),
1446 ))
1447 .layer(SetRequestHeaderLayer::overriding(
1448 header::AUTHORIZATION,
1449 HeaderValue::from_static("some-jwt-token"),
1450 ))
1451 .layer(SetRequestHeaderLayer::appending(
1452 header::SET_COOKIE,
1453 HeaderValue::from_static("cookie-value"),
1454 ))
1455 .layer(SetSensitiveRequestHeadersLayer::new([header::AUTHORIZATION])) .layer(LoggingLayer)
1457 .service(hyper_client);
1458
1459 let layer_transport = alloy_transport_http::HyperClient::with_service(service);
1460
1461 let http_hyper =
1462 alloy_transport_http::Http::with_client(layer_transport, anvil.endpoint_url());
1463
1464 let rpc_client = alloy_rpc_client::RpcClient::new(http_hyper, true);
1465
1466 let provider = RootProvider::<Ethereum>::new(rpc_client);
1467 let num = provider.get_block_number().await.unwrap();
1468 assert_eq!(0, num);
1469
1470 let cloned_t = provider.client().transport().clone();
1472
1473 let rpc_client = alloy_rpc_client::RpcClient::new(cloned_t, true);
1474
1475 let provider = RootProvider::<Ethereum>::new(rpc_client);
1476 let num = provider.get_block_number().await.unwrap();
1477 assert_eq!(0, num);
1478 }
1479
1480 #[cfg(feature = "hyper")]
1481 #[tokio::test]
1482 #[cfg_attr(windows, ignore = "no reth on windows")]
1483 async fn test_auth_layer_transport() {
1484 crate::ext::test::async_ci_only(|| async move {
1485 use alloy_node_bindings::Reth;
1486 use alloy_rpc_types_engine::JwtSecret;
1487 use alloy_transport_http::{AuthLayer, AuthService, Http, HyperClient};
1488
1489 let secret = JwtSecret::random();
1490
1491 let reth =
1492 Reth::new().arg("--rpc.jwtsecret").arg(hex::encode(secret.as_bytes())).spawn();
1493
1494 let hyper_client =
1495 Client::builder(TokioExecutor::new()).build_http::<Full<HyperBytes>>();
1496
1497 let service =
1498 tower::ServiceBuilder::new().layer(AuthLayer::new(secret)).service(hyper_client);
1499
1500 let layer_transport: HyperClient<
1501 Full<HyperBytes>,
1502 AuthService<
1503 Client<
1504 alloy_transport_http::hyper_util::client::legacy::connect::HttpConnector,
1505 Full<HyperBytes>,
1506 >,
1507 >,
1508 > = HyperClient::with_service(service);
1509
1510 let http_hyper = Http::with_client(layer_transport, reth.endpoint_url());
1511
1512 let rpc_client = alloy_rpc_client::RpcClient::new(http_hyper, true);
1513
1514 let provider = RootProvider::<Ethereum>::new(rpc_client);
1515
1516 let num = provider.get_block_number().await.unwrap();
1517 assert_eq!(0, num);
1518 })
1519 .await;
1520 }
1521
1522 #[tokio::test]
1523 async fn test_builder_helper_fn_any_network() {
1524 let anvil = Anvil::new().spawn();
1525 let provider =
1526 builder::<AnyNetwork>().with_recommended_fillers().connect_http(anvil.endpoint_url());
1527 let num = provider.get_block_number().await.unwrap();
1528 assert_eq!(0, num);
1529 }
1530
1531 #[cfg(feature = "reqwest")]
1532 #[tokio::test]
1533 async fn object_safety() {
1534 let provider = ProviderBuilder::new().connect_anvil();
1535
1536 let refdyn = &provider as &dyn Provider<_>;
1537 let num = refdyn.get_block_number().await.unwrap();
1538 assert_eq!(0, num);
1539 }
1540
1541 #[cfg(feature = "ws")]
1542 #[tokio::test]
1543 async fn subscribe_blocks_http() {
1544 let provider = ProviderBuilder::new().connect_anvil_with_config(|a| a.block_time(1));
1545
1546 let err = provider.subscribe_blocks().await.unwrap_err();
1547 let alloy_json_rpc::RpcError::Transport(
1548 alloy_transport::TransportErrorKind::PubsubUnavailable,
1549 ) = err
1550 else {
1551 panic!("{err:?}");
1552 };
1553 }
1554
1555 #[cfg(feature = "ws")]
1557 #[tokio::test]
1558 async fn websocket_tls_setup() {
1559 for url in ["wss://mainnet.infura.io/ws/v3/b0f825787ba840af81e46c6a64d20754"] {
1560 let _ = ProviderBuilder::<_, _, Ethereum>::default().connect(url).await.unwrap();
1561 }
1562 }
1563
1564 #[cfg(feature = "ws")]
1565 #[tokio::test]
1566 async fn subscribe_blocks_ws() {
1567 use futures::stream::StreamExt;
1568
1569 let anvil = Anvil::new().block_time_f64(0.2).spawn();
1570 let ws = alloy_rpc_client::WsConnect::new(anvil.ws_endpoint());
1571 let client = alloy_rpc_client::RpcClient::connect_pubsub(ws).await.unwrap();
1572 let provider = RootProvider::<Ethereum>::new(client);
1573
1574 let sub = provider.subscribe_blocks().await.unwrap();
1575 let mut stream = sub.into_stream().take(5);
1576 let mut next = None;
1577 while let Some(header) = stream.next().await {
1578 if let Some(next) = &mut next {
1579 assert_eq!(header.number, *next);
1580 *next += 1;
1581 } else {
1582 next = Some(header.number + 1);
1583 }
1584 }
1585 }
1586
1587 #[cfg(feature = "ws")]
1588 #[tokio::test]
1589 async fn subscribe_full_blocks() {
1590 use futures::StreamExt;
1591
1592 let anvil = Anvil::new().block_time_f64(0.2).spawn();
1593 let ws = alloy_rpc_client::WsConnect::new(anvil.ws_endpoint());
1594 let client = alloy_rpc_client::RpcClient::connect_pubsub(ws).await.unwrap();
1595
1596 let provider = RootProvider::<Ethereum>::new(client);
1597
1598 let sub = provider.subscribe_full_blocks().hashes().channel_size(10);
1599
1600 let mut stream = sub.into_stream().await.unwrap().take(5);
1601
1602 let mut next = None;
1603 while let Some(Ok(block)) = stream.next().await {
1604 if let Some(next) = &mut next {
1605 assert_eq!(block.header().number, *next);
1606 *next += 1;
1607 } else {
1608 next = Some(block.header().number + 1);
1609 }
1610 }
1611 }
1612
1613 #[tokio::test]
1614 #[cfg(feature = "ws")]
1615 async fn subscribe_blocks_ws_remote() {
1616 use futures::stream::StreamExt;
1617
1618 let url = "wss://eth-mainnet.g.alchemy.com/v2/viFmeVzhg6bWKVMIWWS8MhmzREB-D4f7";
1619 let ws = alloy_rpc_client::WsConnect::new(url);
1620 let Ok(client) = alloy_rpc_client::RpcClient::connect_pubsub(ws).await else { return };
1621 let provider = RootProvider::<Ethereum>::new(client);
1622 let sub = provider.subscribe_blocks().await.unwrap();
1623 let mut stream = sub.into_stream().take(1);
1624 while let Some(header) = stream.next().await {
1625 println!("New block {header:?}");
1626 assert!(header.number > 0);
1627 }
1628 }
1629
1630 #[tokio::test]
1631 async fn test_custom_retry_policy() {
1632 #[derive(Debug, Clone)]
1633 struct CustomPolicy;
1634 impl RetryPolicy for CustomPolicy {
1635 fn should_retry(&self, _err: &alloy_transport::TransportError) -> bool {
1636 true
1637 }
1638
1639 fn backoff_hint(
1640 &self,
1641 _error: &alloy_transport::TransportError,
1642 ) -> Option<std::time::Duration> {
1643 None
1644 }
1645 }
1646
1647 let retry_layer = RetryBackoffLayer::new_with_policy(10, 100, 10000, CustomPolicy);
1648 let anvil = Anvil::new().spawn();
1649 let client = RpcClient::builder().layer(retry_layer).http(anvil.endpoint_url());
1650
1651 let provider = RootProvider::<Ethereum>::new(client);
1652 let num = provider.get_block_number().await.unwrap();
1653 assert_eq!(0, num);
1654 }
1655
1656 #[tokio::test]
1657 async fn test_send_tx() {
1658 let provider = ProviderBuilder::new().connect_anvil_with_wallet();
1659 let tx = TransactionRequest {
1660 value: Some(U256::from(100)),
1661 to: Some(address!("d8dA6BF26964aF9D7eEd9e03E53415D37aA96045").into()),
1662 gas_price: Some(20e9 as u128),
1663 gas: Some(21000),
1664 ..Default::default()
1665 };
1666
1667 let builder = provider.send_transaction(tx.clone()).await.expect("failed to send tx");
1668 let hash1 = *builder.tx_hash();
1669 let hash2 = builder.watch().await.expect("failed to await pending tx");
1670 assert_eq!(hash1, hash2);
1671
1672 let builder = provider.send_transaction(tx).await.expect("failed to send tx");
1673 let hash1 = *builder.tx_hash();
1674 let hash2 =
1675 builder.get_receipt().await.expect("failed to await pending tx").transaction_hash;
1676 assert_eq!(hash1, hash2);
1677 }
1678
1679 #[tokio::test]
1680 async fn test_watch_confirmed_tx() {
1681 let provider = ProviderBuilder::new().connect_anvil_with_wallet();
1682 let tx = TransactionRequest {
1683 value: Some(U256::from(100)),
1684 to: Some(address!("d8dA6BF26964aF9D7eEd9e03E53415D37aA96045").into()),
1685 gas_price: Some(20e9 as u128),
1686 gas: Some(21000),
1687 ..Default::default()
1688 };
1689
1690 let builder = provider.send_transaction(tx.clone()).await.expect("failed to send tx");
1691 let hash1 = *builder.tx_hash();
1692
1693 loop {
1695 if provider
1696 .get_transaction_receipt(hash1)
1697 .await
1698 .expect("failed to await pending tx")
1699 .is_some()
1700 {
1701 break;
1702 }
1703 }
1704
1705 let tx2 = TransactionRequest {
1707 value: Some(U256::from(100)),
1708 to: Some(address!("d8dA6BF26964aF9D7eEd9e03E53415D37aA96045").into()),
1709 gas_price: Some(20e9 as u128),
1710 gas: Some(21000),
1711 ..Default::default()
1712 };
1713 provider.send_transaction(tx2).await.expect("failed to send tx").watch().await.unwrap();
1714
1715 let watch = builder.watch();
1717 let watch_with_timeout = tokio::time::timeout(Duration::from_secs(1), watch);
1719 let hash2 = watch_with_timeout
1720 .await
1721 .expect("Watching tx timed out")
1722 .expect("failed to await pending tx");
1723 assert_eq!(hash1, hash2);
1724 }
1725
1726 #[tokio::test]
1727 async fn gets_block_number() {
1728 let provider = ProviderBuilder::new().connect_anvil();
1729 let num = provider.get_block_number().await.unwrap();
1730 assert_eq!(0, num)
1731 }
1732
1733 #[tokio::test]
1734 async fn gets_block_number_for_id() {
1735 let provider = ProviderBuilder::new().connect_anvil();
1736
1737 let block_num = provider
1738 .get_block_number_by_id(BlockId::Number(BlockNumberOrTag::Number(0)))
1739 .await
1740 .unwrap();
1741 assert_eq!(block_num, Some(0));
1742
1743 let block_num = provider
1744 .get_block_number_by_id(BlockId::Number(BlockNumberOrTag::Latest))
1745 .await
1746 .unwrap();
1747 assert_eq!(block_num, Some(0));
1748
1749 let block =
1750 provider.get_block_by_number(BlockNumberOrTag::Number(0)).await.unwrap().unwrap();
1751 let hash = block.header.hash;
1752 let block_num = provider.get_block_number_by_id(BlockId::Hash(hash.into())).await.unwrap();
1753 assert_eq!(block_num, Some(0));
1754 }
1755
1756 #[tokio::test]
1757 async fn gets_block_number_with_raw_req() {
1758 let provider = ProviderBuilder::new().connect_anvil();
1759 let num: U64 =
1760 provider.raw_request("eth_blockNumber".into(), NoParams::default()).await.unwrap();
1761 assert_eq!(0, num.to::<u64>())
1762 }
1763
1764 #[cfg(feature = "anvil-api")]
1765 #[tokio::test]
1766 async fn gets_transaction_count() {
1767 let provider = ProviderBuilder::new().connect_anvil();
1768 let accounts = provider.get_accounts().await.unwrap();
1769 let sender = accounts[0];
1770
1771 let count = provider.get_transaction_count(sender).await.unwrap();
1773 assert_eq!(count, 0);
1774
1775 let tx = TransactionRequest {
1777 value: Some(U256::from(100)),
1778 from: Some(sender),
1779 to: Some(address!("d8dA6BF26964aF9D7eEd9e03E53415D37aA96045").into()),
1780 gas_price: Some(20e9 as u128),
1781 gas: Some(21000),
1782 ..Default::default()
1783 };
1784 let _ = provider.send_transaction(tx).await.unwrap().get_receipt().await;
1785
1786 let count = provider.get_transaction_count(sender).await.unwrap();
1788 assert_eq!(count, 1);
1789
1790 let count = provider.get_transaction_count(sender).block_id(0.into()).await.unwrap();
1792 assert_eq!(count, 0);
1793 }
1794
1795 #[tokio::test]
1796 async fn gets_block_by_hash() {
1797 let provider = ProviderBuilder::new().connect_anvil();
1798 let num = 0;
1799 let tag: BlockNumberOrTag = num.into();
1800 let block = provider.get_block_by_number(tag).full().await.unwrap().unwrap();
1801 let hash = block.header.hash;
1802 let block = provider.get_block_by_hash(hash).full().await.unwrap().unwrap();
1803 assert_eq!(block.header.hash, hash);
1804 }
1805
1806 #[tokio::test]
1807 async fn gets_block_by_hash_with_raw_req() {
1808 let provider = ProviderBuilder::new().connect_anvil();
1809 let num = 0;
1810 let tag: BlockNumberOrTag = num.into();
1811 let block = provider.get_block_by_number(tag).full().await.unwrap().unwrap();
1812 let hash = block.header.hash;
1813 let block: Block = provider
1814 .raw_request::<(B256, bool), Block>("eth_getBlockByHash".into(), (hash, true))
1815 .await
1816 .unwrap();
1817 assert_eq!(block.header.hash, hash);
1818 }
1819
1820 #[tokio::test]
1821 async fn gets_block_by_number_full() {
1822 let provider = ProviderBuilder::new().connect_anvil();
1823 let num = 0;
1824 let tag: BlockNumberOrTag = num.into();
1825 let block = provider.get_block_by_number(tag).full().await.unwrap().unwrap();
1826 assert_eq!(block.header.number, num);
1827 }
1828
1829 #[tokio::test]
1830 async fn gets_block_by_number() {
1831 let provider = ProviderBuilder::new().connect_anvil();
1832 let num = 0;
1833 let tag: BlockNumberOrTag = num.into();
1834 let block = provider.get_block_by_number(tag).full().await.unwrap().unwrap();
1835 assert_eq!(block.header.number, num);
1836 }
1837
1838 #[tokio::test]
1839 async fn gets_client_version() {
1840 let provider = ProviderBuilder::new().connect_anvil();
1841 let version = provider.get_client_version().await.unwrap();
1842 assert!(version.contains("anvil"), "{version}");
1843 }
1844
1845 #[tokio::test]
1846 async fn gets_sha3() {
1847 let provider = ProviderBuilder::new().connect_anvil();
1848 let data = b"alloy";
1849 let hash = provider.get_sha3(data).await.unwrap();
1850 assert_eq!(hash, keccak256(data));
1851 }
1852
1853 #[tokio::test]
1854 async fn gets_chain_id() {
1855 let dev_chain_id: u64 = 13371337;
1856
1857 let provider =
1858 ProviderBuilder::new().connect_anvil_with_config(|a| a.chain_id(dev_chain_id));
1859
1860 let chain_id = provider.get_chain_id().await.unwrap();
1861 assert_eq!(chain_id, dev_chain_id);
1862 }
1863
1864 #[tokio::test]
1865 async fn gets_network_id() {
1866 let dev_chain_id: u64 = 13371337;
1867 let provider =
1868 ProviderBuilder::new().connect_anvil_with_config(|a| a.chain_id(dev_chain_id));
1869
1870 let chain_id = provider.get_net_version().await.unwrap();
1871 assert_eq!(chain_id, dev_chain_id);
1872 }
1873
1874 #[tokio::test]
1875 async fn gets_storage_at() {
1876 let provider = ProviderBuilder::new().connect_anvil();
1877 let addr = Address::with_last_byte(16);
1878 let storage = provider.get_storage_at(addr, U256::ZERO).await.unwrap();
1879 assert_eq!(storage, U256::ZERO);
1880 }
1881
1882 #[tokio::test]
1883 async fn gets_transaction_by_hash_not_found() {
1884 let provider = ProviderBuilder::new().connect_anvil();
1885 let tx_hash = b256!("5c03fab9114ceb98994b43892ade87ddfd9ae7e8f293935c3bd29d435dc9fd95");
1886 let tx = provider.get_transaction_by_hash(tx_hash).await.expect("failed to fetch tx");
1887
1888 assert!(tx.is_none());
1889 }
1890
1891 #[tokio::test]
1892 async fn gets_transaction_by_hash() {
1893 let provider = ProviderBuilder::new().connect_anvil_with_wallet();
1894
1895 let req = TransactionRequest::default()
1896 .from(provider.default_signer_address())
1897 .to(Address::repeat_byte(5))
1898 .value(U256::ZERO)
1899 .input(bytes!("deadbeef").into());
1900
1901 let tx_hash = *provider.send_transaction(req).await.expect("failed to send tx").tx_hash();
1902
1903 let tx = provider
1904 .get_transaction_by_hash(tx_hash)
1905 .await
1906 .expect("failed to fetch tx")
1907 .expect("tx not included");
1908 assert_eq!(tx.input(), &bytes!("deadbeef"));
1909 }
1910
1911 #[tokio::test]
1912 #[ignore]
1913 async fn gets_logs() {
1914 let provider = ProviderBuilder::new().connect_anvil();
1915 let filter = Filter::new()
1916 .at_block_hash(b256!(
1917 "b20e6f35d4b46b3c4cd72152faec7143da851a0dc281d390bdd50f58bfbdb5d3"
1918 ))
1919 .event_signature(b256!(
1920 "e1fffcc4923d04b559f4d29a8bfc6cda04eb5b0d3c460751c2402c5c5cc9109c"
1921 ));
1922 let logs = provider.get_logs(&filter).await.unwrap();
1923 assert_eq!(logs.len(), 1);
1924 }
1925
1926 #[tokio::test]
1927 #[ignore]
1928 async fn gets_tx_receipt() {
1929 let provider = ProviderBuilder::new().connect_anvil();
1930 let receipt = provider
1931 .get_transaction_receipt(b256!(
1932 "5c03fab9114ceb98994b43892ade87ddfd9ae7e8f293935c3bd29d435dc9fd95"
1933 ))
1934 .await
1935 .unwrap();
1936 assert!(receipt.is_some());
1937 let receipt = receipt.unwrap();
1938 assert_eq!(
1939 receipt.transaction_hash,
1940 b256!("5c03fab9114ceb98994b43892ade87ddfd9ae7e8f293935c3bd29d435dc9fd95")
1941 );
1942 }
1943
1944 #[tokio::test]
1945 async fn gets_max_priority_fee_per_gas() {
1946 let provider = ProviderBuilder::new().connect_anvil();
1947 let _fee = provider.get_max_priority_fee_per_gas().await.unwrap();
1948 }
1949
1950 #[tokio::test]
1951 async fn gets_fee_history() {
1952 let provider = ProviderBuilder::new().connect_anvil();
1953 let block_number = provider.get_block_number().await.unwrap();
1954 let fee_history = provider
1955 .get_fee_history(
1956 utils::EIP1559_FEE_ESTIMATION_PAST_BLOCKS,
1957 BlockNumberOrTag::Number(block_number),
1958 &[utils::EIP1559_FEE_ESTIMATION_REWARD_PERCENTILE],
1959 )
1960 .await
1961 .unwrap();
1962 assert_eq!(fee_history.oldest_block, 0_u64);
1963 }
1964
1965 #[tokio::test]
1966 async fn gets_block_transaction_count_by_hash() {
1967 let provider = ProviderBuilder::new().connect_anvil();
1968 let block = provider.get_block(BlockId::latest()).await.unwrap().unwrap();
1969 let hash = block.header.hash;
1970 let tx_count = provider.get_block_transaction_count_by_hash(hash).await.unwrap();
1971 assert!(tx_count.is_some());
1972 }
1973
1974 #[tokio::test]
1975 async fn gets_block_transaction_count_by_number() {
1976 let provider = ProviderBuilder::new().connect_anvil();
1977 let tx_count =
1978 provider.get_block_transaction_count_by_number(BlockNumberOrTag::Latest).await.unwrap();
1979 assert!(tx_count.is_some());
1980 }
1981
1982 #[tokio::test]
1983 async fn gets_block_receipts() {
1984 let provider = ProviderBuilder::new().connect_anvil();
1985 let receipts =
1986 provider.get_block_receipts(BlockId::Number(BlockNumberOrTag::Latest)).await.unwrap();
1987 assert!(receipts.is_some());
1988 }
1989
1990 #[tokio::test]
1991 async fn sends_raw_transaction() {
1992 let provider = ProviderBuilder::new().connect_anvil();
1993 let pending = provider
1994 .send_raw_transaction(
1995 bytes!("f865808477359400825208940000000000000000000000000000000000000000018082f4f5a00505e227c1c636c76fac55795db1a40a4d24840d81b40d2fe0cc85767f6bd202a01e91b437099a8a90234ac5af3cb7ca4fb1432e133f75f9a91678eaf5f487c74b").as_ref()
1997 )
1998 .await.unwrap();
1999 assert_eq!(
2000 pending.tx_hash().to_string(),
2001 "0x9dae5cf33694a02e8a7d5de3fe31e9d05ca0ba6e9180efac4ab20a06c9e598a3"
2002 );
2003 }
2004
2005 #[tokio::test]
2006 async fn connect_boxed() {
2007 let anvil = Anvil::new().spawn();
2008
2009 let provider = RootProvider::<Ethereum>::connect(anvil.endpoint().as_str()).await;
2010
2011 match provider {
2012 Ok(provider) => {
2013 let num = provider.get_block_number().await.unwrap();
2014 assert_eq!(0, num);
2015 }
2016 Err(e) => {
2017 assert_eq!(
2018 format!("{e}"),
2019 "hyper not supported by BuiltinConnectionString. Please instantiate a hyper client manually"
2020 );
2021 }
2022 }
2023 }
2024
2025 #[tokio::test]
2026 async fn any_network_wallet_filler() {
2027 use alloy_serde::WithOtherFields;
2028 let anvil = Anvil::new().spawn();
2029 let signer: PrivateKeySigner =
2030 "0xac0974bec39a17e36ba4a6b4d238ff944bacb478cbed5efcae784d7bf4f2ff80".parse().unwrap();
2031 let wallet = EthereumWallet::from(signer);
2032
2033 let provider = ProviderBuilder::new()
2034 .network::<AnyNetwork>()
2035 .wallet(wallet)
2036 .connect_http(anvil.endpoint_url());
2037
2038 let tx = TransactionRequest::default()
2039 .with_to(address!("c02aaa39b223fe8d0a0e5c4f27ead9083c756cc2"))
2040 .value(U256::from(325235));
2041
2042 let tx = WithOtherFields::new(tx);
2043
2044 let builder = provider.send_transaction(tx).await.unwrap().get_receipt().await.unwrap();
2045
2046 assert!(builder.status());
2047 }
2048
2049 #[tokio::test]
2050 async fn builtin_connect_boxed() {
2051 let anvil = Anvil::new().spawn();
2052
2053 let conn: BuiltInConnectionString = anvil.endpoint().parse().unwrap();
2054
2055 let transport = conn.connect_boxed().await.unwrap();
2056
2057 let client = alloy_rpc_client::RpcClient::new(transport, true);
2058
2059 let provider = RootProvider::<Ethereum>::new(client);
2060
2061 let num = provider.get_block_number().await.unwrap();
2062 assert_eq!(0, num);
2063 }
2064
2065 #[tokio::test]
2066 async fn test_uncle_count() {
2067 let provider = ProviderBuilder::new().connect_anvil();
2068
2069 let count = provider.get_uncle_count(0.into()).await.unwrap();
2070 assert_eq!(count, 0);
2071 }
2072
2073 #[tokio::test]
2074 #[cfg(any(
2075 feature = "reqwest-default-tls",
2076 feature = "reqwest-rustls-tls",
2077 feature = "reqwest-native-tls",
2078 ))]
2079 #[ignore = "ignore until <https://github.com/paradigmxyz/reth/pull/14727> is in"]
2080 async fn call_mainnet() {
2081 use alloy_network::TransactionBuilder;
2082 use alloy_sol_types::SolValue;
2083
2084 let url = "https://docs-demo.quiknode.pro/";
2085 let provider = ProviderBuilder::new().connect_http(url.parse().unwrap());
2086 let req = TransactionRequest::default()
2087 .with_to(address!("c02aaa39b223fe8d0a0e5c4f27ead9083c756cc2")) .with_input(bytes!("06fdde03")); let result = provider.call(req.clone()).await.unwrap();
2090 assert_eq!(String::abi_decode(&result).unwrap(), "Wrapped Ether");
2091
2092 let result = provider.call(req).block(0.into()).await.unwrap();
2093 assert_eq!(result.to_string(), "0x");
2094 }
2095
2096 #[tokio::test]
2097 async fn call_many_mainnet() {
2098 use alloy_rpc_types_eth::{BlockOverrides, StateContext};
2099
2100 let url = "https://docs-demo.quiknode.pro/";
2101 let provider = ProviderBuilder::new().connect_http(url.parse().unwrap());
2102 let tx1 = TransactionRequest::default()
2103 .with_to(address!("6b175474e89094c44da98b954eedeac495271d0f"))
2104 .with_gas_limit(1000000)
2105 .with_gas_price(2023155498)
2106 .with_input(hex!("a9059cbb000000000000000000000000bc0E63965946815d105E7591407704e6e1964E590000000000000000000000000000000000000000000000000000000005f5e100"));
2107 let tx2 = TransactionRequest::default()
2108 .with_to(address!("833589fcd6edb6e08f4c7c32d4f71b54bda02913"))
2109 .with_gas_price(2023155498)
2110 .with_input(hex!(
2111 "70a08231000000000000000000000000bc0E63965946815d105E7591407704e6e1964E59"
2112 ));
2113
2114 let transactions = vec![tx1.clone(), tx2.clone()];
2115
2116 let block_override =
2117 BlockOverrides { number: Some(U256::from(12279785)), ..Default::default() };
2118
2119 let bundles = vec![Bundle { transactions, block_override: Some(block_override.clone()) }];
2120
2121 let context = StateContext {
2122 block_number: Some(BlockId::number(12279785)),
2123 transaction_index: Some(1.into()),
2124 };
2125
2126 let results = provider.call_many(&bundles).context(&context).await.unwrap();
2127
2128 let tx1_res = EthCallResponse {
2129 value: Some(
2130 hex!("0000000000000000000000000000000000000000000000000000000000000001").into(),
2131 ),
2132 error: None,
2133 };
2134 let tx2_res = EthCallResponse { value: Some(Bytes::new()), error: None };
2135 let expected = vec![vec![tx1_res.clone(), tx2_res.clone()]];
2136
2137 assert_eq!(results, expected);
2138
2139 let bundles = vec![
2141 Bundle {
2142 transactions: vec![tx1.clone()],
2143 block_override: Some(block_override.clone()),
2144 },
2145 Bundle {
2146 transactions: vec![tx2.clone()],
2147 block_override: Some(block_override.clone()),
2148 },
2149 ];
2150
2151 let results = provider.call_many(&bundles).context(&context).await.unwrap();
2152 let expected = vec![vec![tx1_res.clone()], vec![tx2_res.clone()]];
2153 assert_eq!(results, expected);
2154
2155 let b1 =
2157 vec![Bundle { transactions: vec![tx1], block_override: Some(block_override.clone()) }];
2158 let b2 = vec![Bundle { transactions: vec![tx2], block_override: Some(block_override) }];
2159
2160 let results = provider.call_many(&b1).context(&context).extend_bundles(&b2).await.unwrap();
2161 assert_eq!(results, expected);
2162 }
2163
2164 #[tokio::test]
2165 #[cfg(feature = "hyper-tls")]
2166 async fn hyper_https() {
2167 let url = "https://reth-ethereum.ithaca.xyz/rpc";
2168
2169 let provider = ProviderBuilder::new().connect(url).await.unwrap();
2172
2173 let _num = provider.get_block_number().await.unwrap();
2174 }
2175
2176 #[tokio::test]
2177 async fn test_empty_transactions() {
2178 let provider = ProviderBuilder::new().connect_anvil();
2179
2180 let block = provider.get_block_by_number(0.into()).await.unwrap().unwrap();
2181 assert!(block.transactions.is_hashes());
2182 }
2183
2184 #[tokio::test]
2185 async fn disable_test() {
2186 let provider = ProviderBuilder::new()
2187 .disable_recommended_fillers()
2188 .with_cached_nonce_management()
2189 .connect_anvil();
2190
2191 let tx = TransactionRequest::default()
2192 .with_kind(alloy_primitives::TxKind::Create)
2193 .value(U256::from(1235))
2194 .with_input(Bytes::from_str("ffffffffffffff").unwrap());
2195
2196 let err = provider.send_transaction(tx).await.unwrap_err().to_string();
2197 assert!(err.contains("missing properties: [(\"NonceManager\", [\"from\"])]"));
2198 }
2199
2200 #[tokio::test]
2201 async fn capture_anvil_logs() {
2202 let mut anvil = Anvil::new().keep_stdout().spawn();
2203
2204 let provider = ProviderBuilder::new().connect_http(anvil.endpoint_url());
2205
2206 let tx = TransactionRequest::default()
2207 .with_from(address!("f39Fd6e51aad88F6F4ce6aB8827279cffFb92266"))
2208 .with_to(address!("70997970C51812dc3A010C7d01b50e0d17dc79C8"))
2209 .value(U256::from(100));
2210
2211 let _ = provider.send_transaction(tx).await.unwrap().get_receipt().await.unwrap();
2212
2213 anvil.child_mut().kill().unwrap();
2214
2215 let mut output = String::new();
2216 anvil.child_mut().stdout.take().unwrap().read_to_string(&mut output).unwrap();
2217
2218 assert_eq!(anvil.chain_id(), 31337);
2219 assert_eq!(anvil.addresses().len(), 10);
2220 assert_eq!(anvil.keys().len(), 10);
2221
2222 assert!(output.contains("eth_sendTransaction"));
2223 assert!(output.contains("Block Number: 1"))
2224 }
2225
2226 #[tokio::test]
2227 async fn custom_estimator() {
2228 let provider = ProviderBuilder::new()
2229 .disable_recommended_fillers()
2230 .with_cached_nonce_management()
2231 .connect_anvil();
2232
2233 let _ = provider
2234 .estimate_eip1559_fees_with(Eip1559Estimator::new(|_fee, _rewards| Eip1559Estimation {
2235 max_fee_per_gas: 0,
2236 max_priority_fee_per_gas: 0,
2237 }))
2238 .await;
2239 }
2240
2241 #[tokio::test]
2242 #[cfg(not(windows))]
2243 async fn eth_sign_transaction() {
2244 async_ci_only(|| async {
2245 run_with_tempdir("reth-sign-tx", |dir| async {
2246 let reth = Reth::new().dev().disable_discovery().data_dir(dir).spawn();
2247 let provider = ProviderBuilder::new().connect_http(reth.endpoint_url());
2248
2249 let accounts = provider.get_accounts().await.unwrap();
2250 let from = accounts[0];
2251
2252 let tx = TransactionRequest::default()
2253 .from(from)
2254 .to(Address::random())
2255 .value(U256::from(100))
2256 .gas_limit(21000);
2257
2258 let signed_tx = provider.sign_transaction(tx).await.unwrap().to_vec();
2259
2260 let tx = TxEnvelope::decode(&mut signed_tx.as_slice()).unwrap();
2261
2262 let signer = tx.recover_signer().unwrap();
2263
2264 assert_eq!(signer, from);
2265 })
2266 .await
2267 })
2268 .await;
2269 }
2270
2271 #[cfg(feature = "throttle")]
2272 use alloy_transport::layers::ThrottleLayer;
2273
2274 #[cfg(feature = "throttle")]
2275 #[tokio::test]
2276 async fn test_throttled_provider() {
2277 let request_per_second = 10;
2278 let throttle_layer = ThrottleLayer::new(request_per_second);
2279
2280 let anvil = Anvil::new().spawn();
2281 let client = RpcClient::builder().layer(throttle_layer).http(anvil.endpoint_url());
2282 let provider = RootProvider::<Ethereum>::new(client);
2283
2284 let num_requests = 10;
2285 let start = std::time::Instant::now();
2286 for _ in 0..num_requests {
2287 provider.get_block_number().await.unwrap();
2288 }
2289
2290 let elapsed = start.elapsed();
2291 assert_eq!(elapsed.as_secs_f64().round() as u32, 1);
2292 }
2293
2294 #[tokio::test]
2295 #[cfg(feature = "hyper")]
2296 async fn test_connect_hyper_tls() {
2297 let p =
2298 ProviderBuilder::new().connect("https://reth-ethereum.ithaca.xyz/rpc").await.unwrap();
2299
2300 let _num = p.get_block_number().await.unwrap();
2301
2302 let anvil = Anvil::new().spawn();
2303 let p = ProviderBuilder::new().connect(&anvil.endpoint()).await.unwrap();
2304
2305 let _num = p.get_block_number().await.unwrap();
2306 }
2307}