mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
synced 2026-06-26 18:11:12 +00:00
53575a959c
With the latest optimizations of the `FinalityNotification` generation, the aux data pruning started to print a warning. The problem here was that we printed a warning and stopped the adding of blocks to prune when we hit the `heigh_limit`. This is now wrong, as we could for example have two 512 long forks and then we start finalizing one of them. The second fork head would be part of the stale heads at some point (in the current implementation when we finalize second fork head number + 1), but then we would actually need to go back into the past than `heigh_limit` (which was actually last_finalized - 1). We now go back until we reach the canonical chain. Also fixed some wrong comment that was added by be about the content of the `finalized` blocks in the `FinalityNotification`.
358 lines
12 KiB
Rust
358 lines
12 KiB
Rust
// This file is part of Substrate.
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// Copyright (C) 2019-2022 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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//! A set of APIs supported by the client along with their primitives.
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use sp_consensus::BlockOrigin;
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use sp_core::storage::StorageKey;
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use sp_runtime::{
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generic::{BlockId, SignedBlock},
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traits::{Block as BlockT, NumberFor},
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Justifications,
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};
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use std::{collections::HashSet, fmt, sync::Arc};
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use crate::{blockchain::Info, notifications::StorageEventStream, FinalizeSummary, ImportSummary};
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use sc_transaction_pool_api::ChainEvent;
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use sc_utils::mpsc::TracingUnboundedReceiver;
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use sp_blockchain;
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/// Type that implements `futures::Stream` of block import events.
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pub type ImportNotifications<Block> = TracingUnboundedReceiver<BlockImportNotification<Block>>;
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/// A stream of block finality notifications.
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pub type FinalityNotifications<Block> = TracingUnboundedReceiver<FinalityNotification<Block>>;
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/// Expected hashes of blocks at given heights.
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///
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/// This may be used as chain spec extension to set trusted checkpoints, i.e.
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/// the client will refuse to import a block with a different hash at the given
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/// height.
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pub type ForkBlocks<Block> = Option<Vec<(NumberFor<Block>, <Block as BlockT>::Hash)>>;
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/// Known bad block hashes.
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///
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/// This may be used as chain spec extension to filter out known, unwanted forks.
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pub type BadBlocks<Block> = Option<HashSet<<Block as BlockT>::Hash>>;
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/// Figure out the block type for a given type (for now, just a `Client`).
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pub trait BlockOf {
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/// The type of the block.
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type Type: BlockT;
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}
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/// A source of blockchain events.
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pub trait BlockchainEvents<Block: BlockT> {
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/// Get block import event stream. Not guaranteed to be fired for every
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/// imported block.
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fn import_notification_stream(&self) -> ImportNotifications<Block>;
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/// Get a stream of finality notifications. Not guaranteed to be fired for every
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/// finalized block.
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fn finality_notification_stream(&self) -> FinalityNotifications<Block>;
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/// Get storage changes event stream.
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///
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/// Passing `None` as `filter_keys` subscribes to all storage changes.
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fn storage_changes_notification_stream(
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&self,
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filter_keys: Option<&[StorageKey]>,
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child_filter_keys: Option<&[(StorageKey, Option<Vec<StorageKey>>)]>,
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) -> sp_blockchain::Result<StorageEventStream<Block::Hash>>;
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}
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/// List of operations to be performed on storage aux data.
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/// First tuple element is the encoded data key.
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/// Second tuple element is the encoded optional data to write.
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/// If `None`, the key and the associated data are deleted from storage.
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pub type AuxDataOperations = Vec<(Vec<u8>, Option<Vec<u8>>)>;
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/// Callback invoked before committing the operations created during block import.
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/// This gives the opportunity to perform auxiliary pre-commit actions and optionally
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/// enqueue further storage write operations to be atomically performed on commit.
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pub type OnImportAction<Block> =
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Box<dyn (Fn(&BlockImportNotification<Block>) -> AuxDataOperations) + Send>;
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/// Callback invoked before committing the operations created during block finalization.
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/// This gives the opportunity to perform auxiliary pre-commit actions and optionally
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/// enqueue further storage write operations to be atomically performed on commit.
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pub type OnFinalityAction<Block> =
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Box<dyn (Fn(&FinalityNotification<Block>) -> AuxDataOperations) + Send>;
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/// Interface to perform auxiliary actions before committing a block import or
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/// finality operation.
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pub trait PreCommitActions<Block: BlockT> {
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/// Actions to be performed on block import.
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fn register_import_action(&self, op: OnImportAction<Block>);
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/// Actions to be performed on block finalization.
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fn register_finality_action(&self, op: OnFinalityAction<Block>);
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}
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/// Interface for fetching block data.
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pub trait BlockBackend<Block: BlockT> {
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/// Get block body by ID. Returns `None` if the body is not stored.
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fn block_body(
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&self,
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id: &BlockId<Block>,
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) -> sp_blockchain::Result<Option<Vec<<Block as BlockT>::Extrinsic>>>;
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/// Get all indexed transactions for a block,
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/// including renewed transactions.
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///
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/// Note that this will only fetch transactions
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/// that are indexed by the runtime with `storage_index_transaction`.
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fn block_indexed_body(
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&self,
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id: &BlockId<Block>,
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) -> sp_blockchain::Result<Option<Vec<Vec<u8>>>>;
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/// Get full block by id.
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fn block(&self, id: &BlockId<Block>) -> sp_blockchain::Result<Option<SignedBlock<Block>>>;
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/// Get block status.
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fn block_status(&self, id: &BlockId<Block>)
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-> sp_blockchain::Result<sp_consensus::BlockStatus>;
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/// Get block justifications for the block with the given id.
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fn justifications(&self, id: &BlockId<Block>) -> sp_blockchain::Result<Option<Justifications>>;
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/// Get block hash by number.
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fn block_hash(&self, number: NumberFor<Block>) -> sp_blockchain::Result<Option<Block::Hash>>;
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/// Get single indexed transaction by content hash.
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///
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/// Note that this will only fetch transactions
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/// that are indexed by the runtime with `storage_index_transaction`.
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fn indexed_transaction(&self, hash: &Block::Hash) -> sp_blockchain::Result<Option<Vec<u8>>>;
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/// Check if transaction index exists.
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fn has_indexed_transaction(&self, hash: &Block::Hash) -> sp_blockchain::Result<bool> {
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Ok(self.indexed_transaction(hash)?.is_some())
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}
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}
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/// Provide a list of potential uncle headers for a given block.
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pub trait ProvideUncles<Block: BlockT> {
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/// Gets the uncles of the block with `target_hash` going back `max_generation` ancestors.
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fn uncles(
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&self,
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target_hash: Block::Hash,
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max_generation: NumberFor<Block>,
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) -> sp_blockchain::Result<Vec<Block::Header>>;
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}
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/// Client info
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#[derive(Debug)]
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pub struct ClientInfo<Block: BlockT> {
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/// Best block hash.
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pub chain: Info<Block>,
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/// Usage info, if backend supports this.
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pub usage: Option<UsageInfo>,
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}
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/// A wrapper to store the size of some memory.
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#[derive(Default, Clone, Debug, Copy)]
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pub struct MemorySize(usize);
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impl MemorySize {
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/// Creates `Self` from the given `bytes` size.
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pub fn from_bytes(bytes: usize) -> Self {
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Self(bytes)
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}
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/// Returns the memory size as bytes.
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pub fn as_bytes(self) -> usize {
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self.0
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}
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}
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impl fmt::Display for MemorySize {
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fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
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if self.0 < 1024 {
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write!(f, "{} bytes", self.0)
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} else if self.0 < 1024 * 1024 {
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write!(f, "{:.2} KiB", self.0 as f64 / 1024f64)
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} else if self.0 < 1024 * 1024 * 1024 {
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write!(f, "{:.2} MiB", self.0 as f64 / (1024f64 * 1024f64))
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} else {
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write!(f, "{:.2} GiB", self.0 as f64 / (1024f64 * 1024f64 * 1024f64))
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}
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}
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}
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/// Memory statistics for state db.
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#[derive(Default, Clone, Debug)]
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pub struct StateDbMemoryInfo {
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/// Memory usage of the non-canonical overlay
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pub non_canonical: MemorySize,
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/// Memory usage of the pruning window.
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pub pruning: Option<MemorySize>,
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/// Memory usage of the pinned blocks.
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pub pinned: MemorySize,
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}
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/// Memory statistics for client instance.
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#[derive(Default, Clone, Debug)]
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pub struct MemoryInfo {
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/// Size of state cache.
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pub state_cache: MemorySize,
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/// Size of backend database cache.
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pub database_cache: MemorySize,
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/// Size of the state db.
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pub state_db: StateDbMemoryInfo,
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}
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/// I/O statistics for client instance.
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#[derive(Default, Clone, Debug)]
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pub struct IoInfo {
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/// Number of transactions.
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pub transactions: u64,
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/// Total bytes read from disk.
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pub bytes_read: u64,
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/// Total bytes written to disk.
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pub bytes_written: u64,
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/// Total key writes to disk.
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pub writes: u64,
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/// Total key reads from disk.
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pub reads: u64,
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/// Average size of the transaction.
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pub average_transaction_size: u64,
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/// State reads (keys)
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pub state_reads: u64,
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/// State reads (keys) from cache.
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pub state_reads_cache: u64,
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/// State reads (keys)
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pub state_writes: u64,
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/// State write (keys) already cached.
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pub state_writes_cache: u64,
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/// State write (trie nodes) to backend db.
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pub state_writes_nodes: u64,
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}
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/// Usage statistics for running client instance.
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///
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/// Returning backend determines the scope of these stats,
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/// but usually it is either from service start or from previous
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/// gathering of the statistics.
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#[derive(Default, Clone, Debug)]
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pub struct UsageInfo {
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/// Memory statistics.
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pub memory: MemoryInfo,
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/// I/O statistics.
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pub io: IoInfo,
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}
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impl fmt::Display for UsageInfo {
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fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
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write!(
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f,
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"caches: ({} state, {} db overlay), \
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state db: ({} non-canonical, {} pruning, {} pinned), \
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i/o: ({} tx, {} write, {} read, {} avg tx, {}/{} key cache reads/total, {} trie nodes writes)",
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self.memory.state_cache,
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self.memory.database_cache,
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self.memory.state_db.non_canonical,
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self.memory.state_db.pruning.unwrap_or_default(),
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self.memory.state_db.pinned,
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self.io.transactions,
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self.io.bytes_written,
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self.io.bytes_read,
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self.io.average_transaction_size,
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self.io.state_reads_cache,
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self.io.state_reads,
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self.io.state_writes_nodes,
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)
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}
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}
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/// Summary of an imported block
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#[derive(Clone, Debug)]
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pub struct BlockImportNotification<Block: BlockT> {
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/// Imported block header hash.
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pub hash: Block::Hash,
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/// Imported block origin.
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pub origin: BlockOrigin,
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/// Imported block header.
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pub header: Block::Header,
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/// Is this the new best block.
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pub is_new_best: bool,
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/// Tree route from old best to new best parent.
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///
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/// If `None`, there was no re-org while importing.
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pub tree_route: Option<Arc<sp_blockchain::TreeRoute<Block>>>,
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}
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/// Summary of a finalized block.
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#[derive(Clone, Debug)]
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pub struct FinalityNotification<Block: BlockT> {
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/// Finalized block header hash.
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pub hash: Block::Hash,
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/// Finalized block header.
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pub header: Block::Header,
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/// Path from the old finalized to new finalized parent (implicitly finalized blocks).
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///
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/// This maps to the range `(old_finalized, new_finalized)`.
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pub tree_route: Arc<[Block::Hash]>,
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/// Stale branches heads.
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pub stale_heads: Arc<[Block::Hash]>,
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}
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impl<B: BlockT> TryFrom<BlockImportNotification<B>> for ChainEvent<B> {
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type Error = ();
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fn try_from(n: BlockImportNotification<B>) -> Result<Self, ()> {
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if n.is_new_best {
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Ok(Self::NewBestBlock { hash: n.hash, tree_route: n.tree_route })
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} else {
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Err(())
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}
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}
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}
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impl<B: BlockT> From<FinalityNotification<B>> for ChainEvent<B> {
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fn from(n: FinalityNotification<B>) -> Self {
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Self::Finalized { hash: n.hash, tree_route: n.tree_route }
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}
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}
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impl<B: BlockT> From<FinalizeSummary<B>> for FinalityNotification<B> {
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fn from(mut summary: FinalizeSummary<B>) -> Self {
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let hash = summary.finalized.pop().unwrap_or_default();
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FinalityNotification {
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hash,
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header: summary.header,
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tree_route: Arc::from(summary.finalized),
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stale_heads: Arc::from(summary.stale_heads),
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}
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}
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}
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impl<B: BlockT> From<ImportSummary<B>> for BlockImportNotification<B> {
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fn from(summary: ImportSummary<B>) -> Self {
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BlockImportNotification {
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hash: summary.hash,
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origin: summary.origin,
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header: summary.header,
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is_new_best: summary.is_new_best,
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tree_route: summary.tree_route.map(Arc::new),
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}
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}
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}
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