mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
synced 2026-04-26 05:17:58 +00:00
f0b99dd2f2
* *: Update to libp2p v0.33.0 * client/network: Consistently track request arrival time With https://github.com/libp2p/rust-libp2p/pull/1886/ one is guaranteed to receive either a `ResponseSent` or a `InboundFailure` event for each received inbound request via `RequestResponseEvent::Message`. Given this guarantee there is no need to track arrival times in a best-effort manner and thus there is no need to use a LRU cache for arrival times. * client/offchain: Adjust to PeerId API changes
455 lines
11 KiB
Rust
455 lines
11 KiB
Rust
// This file is part of Substrate.
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// Copyright (C) 2019-2021 Parity Technologies (UK) Ltd.
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// SPDX-License-Identifier: GPL-3.0-or-later WITH Classpath-exception-2.0
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with this program. If not, see <https://www.gnu.org/licenses/>.
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use std::{
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str::FromStr,
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sync::Arc,
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convert::TryFrom,
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thread::sleep,
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collections::HashSet,
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};
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use crate::NetworkProvider;
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use futures::Future;
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use log::error;
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use sc_network::{PeerId, Multiaddr};
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use codec::{Encode, Decode};
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use sp_core::OpaquePeerId;
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use sp_core::offchain::{
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Externalities as OffchainExt, HttpRequestId, Timestamp, HttpRequestStatus, HttpError,
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OffchainStorage, OpaqueNetworkState, OpaqueMultiaddr, StorageKind,
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};
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pub use sp_offchain::STORAGE_PREFIX;
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pub use http::SharedClient;
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#[cfg(not(target_os = "unknown"))]
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mod http;
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#[cfg(target_os = "unknown")]
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use http_dummy as http;
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#[cfg(target_os = "unknown")]
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mod http_dummy;
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mod timestamp;
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/// Asynchronous offchain API.
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///
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/// NOTE this is done to prevent recursive calls into the runtime (which are not supported currently).
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pub(crate) struct Api<Storage> {
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/// Offchain Workers database.
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db: Storage,
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/// A provider for substrate networking.
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network_provider: Arc<dyn NetworkProvider + Send + Sync>,
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/// Is this node a potential validator?
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is_validator: bool,
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/// Everything HTTP-related is handled by a different struct.
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http: http::HttpApi,
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}
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fn unavailable_yet<R: Default>(name: &str) -> R {
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error!(
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"The {:?} API is not available for offchain workers yet. Follow \
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https://github.com/paritytech/substrate/issues/1458 for details", name
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);
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Default::default()
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}
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const LOCAL_DB: &str = "LOCAL (fork-aware) DB";
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impl<Storage: OffchainStorage> OffchainExt for Api<Storage> {
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fn is_validator(&self) -> bool {
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self.is_validator
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}
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fn network_state(&self) -> Result<OpaqueNetworkState, ()> {
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let external_addresses = self.network_provider.external_addresses();
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let state = NetworkState::new(
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self.network_provider.local_peer_id(),
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external_addresses,
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);
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Ok(OpaqueNetworkState::from(state))
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}
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fn timestamp(&mut self) -> Timestamp {
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timestamp::now()
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}
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fn sleep_until(&mut self, deadline: Timestamp) {
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sleep(timestamp::timestamp_from_now(deadline));
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}
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fn random_seed(&mut self) -> [u8; 32] {
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rand::random()
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}
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fn local_storage_set(&mut self, kind: StorageKind, key: &[u8], value: &[u8]) {
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match kind {
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StorageKind::PERSISTENT => self.db.set(STORAGE_PREFIX, key, value),
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StorageKind::LOCAL => unavailable_yet(LOCAL_DB),
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}
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}
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fn local_storage_clear(&mut self, kind: StorageKind, key: &[u8]) {
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match kind {
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StorageKind::PERSISTENT => self.db.remove(STORAGE_PREFIX, key),
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StorageKind::LOCAL => unavailable_yet(LOCAL_DB),
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}
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}
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fn local_storage_compare_and_set(
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&mut self,
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kind: StorageKind,
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key: &[u8],
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old_value: Option<&[u8]>,
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new_value: &[u8],
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) -> bool {
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match kind {
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StorageKind::PERSISTENT => {
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self.db.compare_and_set(STORAGE_PREFIX, key, old_value, new_value)
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},
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StorageKind::LOCAL => unavailable_yet(LOCAL_DB),
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}
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}
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fn local_storage_get(&mut self, kind: StorageKind, key: &[u8]) -> Option<Vec<u8>> {
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match kind {
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StorageKind::PERSISTENT => self.db.get(STORAGE_PREFIX, key),
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StorageKind::LOCAL => unavailable_yet(LOCAL_DB),
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}
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}
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fn http_request_start(
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&mut self,
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method: &str,
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uri: &str,
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_meta: &[u8]
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) -> Result<HttpRequestId, ()> {
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self.http.request_start(method, uri)
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}
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fn http_request_add_header(
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&mut self,
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request_id: HttpRequestId,
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name: &str,
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value: &str
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) -> Result<(), ()> {
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self.http.request_add_header(request_id, name, value)
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}
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fn http_request_write_body(
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&mut self,
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request_id: HttpRequestId,
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chunk: &[u8],
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deadline: Option<Timestamp>
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) -> Result<(), HttpError> {
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self.http.request_write_body(request_id, chunk, deadline)
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}
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fn http_response_wait(
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&mut self,
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ids: &[HttpRequestId],
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deadline: Option<Timestamp>
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) -> Vec<HttpRequestStatus> {
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self.http.response_wait(ids, deadline)
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}
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fn http_response_headers(
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&mut self,
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request_id: HttpRequestId
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) -> Vec<(Vec<u8>, Vec<u8>)> {
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self.http.response_headers(request_id)
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}
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fn http_response_read_body(
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&mut self,
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request_id: HttpRequestId,
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buffer: &mut [u8],
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deadline: Option<Timestamp>
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) -> Result<usize, HttpError> {
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self.http.response_read_body(request_id, buffer, deadline)
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}
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fn set_authorized_nodes(&mut self, nodes: Vec<OpaquePeerId>, authorized_only: bool) {
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let peer_ids: HashSet<PeerId> = nodes.into_iter()
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.filter_map(|node| PeerId::from_bytes(&node.0).ok())
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.collect();
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self.network_provider.set_authorized_peers(peer_ids);
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self.network_provider.set_authorized_only(authorized_only);
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}
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}
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/// Information about the local node's network state.
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#[derive(Clone, Eq, PartialEq, Debug)]
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pub struct NetworkState {
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peer_id: PeerId,
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external_addresses: Vec<Multiaddr>,
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}
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impl NetworkState {
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fn new(peer_id: PeerId, external_addresses: Vec<Multiaddr>) -> Self {
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NetworkState {
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peer_id,
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external_addresses,
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}
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}
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}
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impl From<NetworkState> for OpaqueNetworkState {
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fn from(state: NetworkState) -> OpaqueNetworkState {
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let enc = Encode::encode(&state.peer_id.to_bytes());
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let peer_id = OpaquePeerId::new(enc);
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let external_addresses: Vec<OpaqueMultiaddr> = state
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.external_addresses
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.iter()
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.map(|multiaddr| {
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let e = Encode::encode(&multiaddr.to_string());
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OpaqueMultiaddr::new(e)
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})
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.collect();
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OpaqueNetworkState {
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peer_id,
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external_addresses,
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}
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}
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}
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impl TryFrom<OpaqueNetworkState> for NetworkState {
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type Error = ();
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fn try_from(state: OpaqueNetworkState) -> Result<Self, Self::Error> {
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let inner_vec = state.peer_id.0;
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let bytes: Vec<u8> = Decode::decode(&mut &inner_vec[..]).map_err(|_| ())?;
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let peer_id = PeerId::from_bytes(&bytes).map_err(|_| ())?;
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let external_addresses: Result<Vec<Multiaddr>, Self::Error> = state.external_addresses
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.iter()
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.map(|enc_multiaddr| -> Result<Multiaddr, Self::Error> {
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let inner_vec = &enc_multiaddr.0;
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let bytes = <Vec<u8>>::decode(&mut &inner_vec[..]).map_err(|_| ())?;
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let multiaddr_str = String::from_utf8(bytes).map_err(|_| ())?;
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let multiaddr = Multiaddr::from_str(&multiaddr_str).map_err(|_| ())?;
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Ok(multiaddr)
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})
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.collect();
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let external_addresses = external_addresses?;
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Ok(NetworkState {
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peer_id,
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external_addresses,
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})
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}
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}
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/// Offchain extensions implementation API
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///
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/// This is the asynchronous processing part of the API.
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pub(crate) struct AsyncApi {
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/// Everything HTTP-related is handled by a different struct.
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http: Option<http::HttpWorker>,
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}
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impl AsyncApi {
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/// Creates new Offchain extensions API implementation an the asynchronous processing part.
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pub fn new<S: OffchainStorage>(
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db: S,
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network_provider: Arc<dyn NetworkProvider + Send + Sync>,
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is_validator: bool,
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shared_client: SharedClient,
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) -> (Api<S>, Self) {
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let (http_api, http_worker) = http::http(shared_client);
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let api = Api {
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db,
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network_provider,
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is_validator,
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http: http_api,
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};
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let async_api = Self {
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http: Some(http_worker),
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};
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(api, async_api)
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}
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/// Run a processing task for the API
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pub fn process(mut self) -> impl Future<Output = ()> {
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let http = self.http.take().expect("Take invoked only once.");
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http
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}
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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use std::{convert::{TryFrom, TryInto}, time::SystemTime};
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use sc_client_db::offchain::LocalStorage;
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use sc_network::{NetworkStateInfo, PeerId};
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struct TestNetwork();
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impl NetworkProvider for TestNetwork {
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fn set_authorized_peers(&self, _peers: HashSet<PeerId>) {
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unimplemented!()
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}
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fn set_authorized_only(&self, _reserved_only: bool) {
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unimplemented!()
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}
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}
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impl NetworkStateInfo for TestNetwork {
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fn external_addresses(&self) -> Vec<Multiaddr> {
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Vec::new()
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}
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fn local_peer_id(&self) -> PeerId {
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PeerId::random()
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}
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}
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fn offchain_api() -> (Api<LocalStorage>, AsyncApi) {
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sp_tracing::try_init_simple();
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let db = LocalStorage::new_test();
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let mock = Arc::new(TestNetwork());
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let shared_client = SharedClient::new();
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AsyncApi::new(
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db,
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mock,
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false,
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shared_client,
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)
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}
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#[test]
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fn should_get_timestamp() {
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let mut api = offchain_api().0;
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// Get timestamp from std.
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let now = SystemTime::now();
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let d: u64 = now.duration_since(SystemTime::UNIX_EPOCH).unwrap().as_millis().try_into().unwrap();
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// Get timestamp from offchain api.
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let timestamp = api.timestamp();
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// Compare.
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assert!(timestamp.unix_millis() > 0);
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assert!(timestamp.unix_millis() >= d);
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}
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#[test]
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fn should_sleep() {
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let mut api = offchain_api().0;
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// Arrange.
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let now = api.timestamp();
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let delta = sp_core::offchain::Duration::from_millis(100);
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let deadline = now.add(delta);
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// Act.
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api.sleep_until(deadline);
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let new_now = api.timestamp();
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// Assert.
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// The diff could be more than the sleep duration.
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assert!(new_now.unix_millis() - 100 >= now.unix_millis());
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}
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#[test]
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fn should_set_and_get_local_storage() {
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// given
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let kind = StorageKind::PERSISTENT;
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let mut api = offchain_api().0;
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let key = b"test";
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// when
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assert_eq!(api.local_storage_get(kind, key), None);
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api.local_storage_set(kind, key, b"value");
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// then
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assert_eq!(api.local_storage_get(kind, key), Some(b"value".to_vec()));
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}
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#[test]
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fn should_compare_and_set_local_storage() {
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// given
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let kind = StorageKind::PERSISTENT;
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let mut api = offchain_api().0;
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let key = b"test";
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api.local_storage_set(kind, key, b"value");
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// when
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assert_eq!(api.local_storage_compare_and_set(kind, key, Some(b"val"), b"xxx"), false);
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assert_eq!(api.local_storage_get(kind, key), Some(b"value".to_vec()));
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// when
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assert_eq!(api.local_storage_compare_and_set(kind, key, Some(b"value"), b"xxx"), true);
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assert_eq!(api.local_storage_get(kind, key), Some(b"xxx".to_vec()));
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}
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#[test]
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fn should_compare_and_set_local_storage_with_none() {
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// given
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let kind = StorageKind::PERSISTENT;
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let mut api = offchain_api().0;
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let key = b"test";
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// when
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let res = api.local_storage_compare_and_set(kind, key, None, b"value");
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// then
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assert_eq!(res, true);
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assert_eq!(api.local_storage_get(kind, key), Some(b"value".to_vec()));
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}
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#[test]
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fn should_convert_network_states() {
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// given
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let state = NetworkState::new(
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PeerId::random(),
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vec![
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Multiaddr::try_from("/ip4/127.0.0.1/tcp/1234".to_string()).unwrap(),
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Multiaddr::try_from("/ip6/2601:9:4f81:9700:803e:ca65:66e8:c21").unwrap(),
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],
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);
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// when
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let opaque_state = OpaqueNetworkState::from(state.clone());
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let converted_back_state = NetworkState::try_from(opaque_state).unwrap();
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// then
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assert_eq!(state, converted_back_state);
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}
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#[test]
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fn should_get_random_seed() {
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// given
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let mut api = offchain_api().0;
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let seed = api.random_seed();
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// then
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assert_ne!(seed, [0; 32]);
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}
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}
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