Struct brontes_database::clickhouse::ReadOnlyMiddleware
source · pub struct ReadOnlyMiddleware<I: DBWriter> {
pub client: Clickhouse,
/* private fields */
}
Fields§
§client: Clickhouse
Implementations§
source§impl<I: DBWriter> ReadOnlyMiddleware<I>
impl<I: DBWriter> ReadOnlyMiddleware<I>
pub fn new(client: Clickhouse, inner: I) -> Self
Trait Implementations§
source§impl<I: DBWriter + Send + Sync> DBWriter for ReadOnlyMiddleware<I>
impl<I: DBWriter + Send + Sync> DBWriter for ReadOnlyMiddleware<I>
§type Inner = ReadOnlyMiddleware<I>
type Inner = ReadOnlyMiddleware<I>
allows for writing results to multiple databases
fn inner(&self) -> &Self::Inner
async fn write_block_analysis( &self, block_analysis: BlockAnalysis, ) -> Result<()>
async fn write_dex_quotes( &self, block_number: u64, quotes: Option<DexQuotes>, ) -> Result<()>
async fn write_token_info( &self, address: Address, decimals: u8, symbol: String, ) -> Result<()>
async fn save_mev_blocks( &self, block_number: u64, block: MevBlock, mev: Vec<Bundle>, ) -> Result<()>
async fn write_searcher_eoa_info( &self, searcher_eoa: Address, searcher_info: SearcherInfo, ) -> Result<()>
async fn write_searcher_contract_info( &self, searcher_contract: Address, searcher_info: SearcherInfo, ) -> Result<()>
async fn write_builder_info( &self, builder_coinbase_addr: Address, builder_info: BuilderInfo, ) -> Result<()>
async fn insert_pool( &self, block: u64, address: Address, tokens: &[Address], curve_lp_token: Option<Address>, classifier_name: Protocol, ) -> Result<()>
async fn insert_tree(&self, tree: BlockTree<Action>) -> Result<()>
async fn save_traces(&self, block: u64, traces: Vec<TxTrace>) -> Result<()>
fn write_searcher_info( &self, eoa_address: Address, contract_address: Option<Address>, eoa_info: SearcherInfo, contract_info: Option<SearcherInfo>, ) -> impl Future<Output = Result<(), Report>> + Send
fn write_address_meta( &self, address: Address, metadata: AddressMetadata, ) -> impl Future<Output = Result<(), Report>> + Send
source§impl<I: LibmdbxInit> LibmdbxInit for ReadOnlyMiddleware<I>
impl<I: LibmdbxInit> LibmdbxInit for ReadOnlyMiddleware<I>
source§async fn initialize_table<T: TracingProvider, CH: ClickhouseHandle>(
&'static self,
clickhouse: &'static CH,
tracer: Arc<T>,
tables: Tables,
clear_tables: bool,
block_range: Option<(u64, u64)>,
progress_bar: Arc<Vec<(Tables, ProgressBar)>>,
metrics: bool,
) -> Result<()>
async fn initialize_table<T: TracingProvider, CH: ClickhouseHandle>( &'static self, clickhouse: &'static CH, tracer: Arc<T>, tables: Tables, clear_tables: bool, block_range: Option<(u64, u64)>, progress_bar: Arc<Vec<(Tables, ProgressBar)>>, metrics: bool, ) -> Result<()>
initializes all the tables with data via the CLI
fn get_db_range(&self) -> Result<(u64, u64)>
source§async fn initialize_table_arbitrary<T: TracingProvider, CH: ClickhouseHandle>(
&'static self,
clickhouse: &'static CH,
tracer: Arc<T>,
tables: Tables,
block_range: Vec<u64>,
progress_bar: Arc<Vec<(Tables, ProgressBar)>>,
metrics: bool,
) -> Result<()>
async fn initialize_table_arbitrary<T: TracingProvider, CH: ClickhouseHandle>( &'static self, clickhouse: &'static CH, tracer: Arc<T>, tables: Tables, block_range: Vec<u64>, progress_bar: Arc<Vec<(Tables, ProgressBar)>>, metrics: bool, ) -> Result<()>
initializes all the tables with missing data ranges via the CLI
source§async fn initialize_full_range_tables<T: TracingProvider, CH: ClickhouseHandle>(
&'static self,
clickhouse: &'static CH,
tracer: Arc<T>,
metrics: bool,
) -> Result<()>
async fn initialize_full_range_tables<T: TracingProvider, CH: ClickhouseHandle>( &'static self, clickhouse: &'static CH, tracer: Arc<T>, metrics: bool, ) -> Result<()>
Initialize the small tables that aren’t indexed by block number
fn state_to_initialize( &self, start_block: u64, end_block: u64, ) -> Result<StateToInitialize>
source§impl<I: LibmdbxInit> LibmdbxReader for ReadOnlyMiddleware<I>
impl<I: LibmdbxInit> LibmdbxReader for ReadOnlyMiddleware<I>
fn has_dex_quotes(&self, block_num: u64) -> Result<bool>
fn get_most_recent_block(&self) -> Result<u64>
fn get_cex_trades(&self, block: u64) -> Result<CexTradeMap>
fn get_metadata_no_dex_price( &self, block_num: u64, quote_asset: Address, ) -> Result<Metadata>
fn fetch_all_searcher_eoa_info(&self) -> Result<Vec<(Address, SearcherInfo)>>
fn fetch_all_searcher_contract_info( &self, ) -> Result<Vec<(Address, SearcherInfo)>>
fn try_fetch_searcher_eoa_info( &self, searcher_eoa: Address, ) -> Result<Option<SearcherInfo>>
fn try_fetch_searcher_contract_info( &self, searcher_eoa: Address, ) -> Result<Option<SearcherInfo>>
fn try_fetch_builder_info( &self, builder_coinbase_addr: Address, ) -> Result<Option<BuilderInfo>>
fn try_fetch_searcher_eoa_infos( &self, searcher_eoa: Vec<Address>, ) -> Result<FastHashMap<Address, SearcherInfo>>
fn try_fetch_searcher_contract_infos( &self, searcher_eoa: Vec<Address>, ) -> Result<FastHashMap<Address, SearcherInfo>>
fn fetch_all_builder_info(&self) -> Result<Vec<(Address, BuilderInfo)>>
fn try_fetch_mev_blocks( &self, _start_block: Option<u64>, _end_block: u64, ) -> Result<Vec<MevBlockWithClassified>>
fn fetch_all_mev_blocks( &self, _start_block: Option<u64>, ) -> Result<Vec<MevBlockWithClassified>>
fn get_metadata(&self, block_num: u64, quote_asset: Address) -> Result<Metadata>
fn try_fetch_address_metadata( &self, address: Address, ) -> Result<Option<AddressMetadata>>
fn try_fetch_address_metadatas( &self, address: Vec<Address>, ) -> Result<FastHashMap<Address, AddressMetadata>>
fn fetch_all_address_metadata(&self) -> Result<Vec<(Address, AddressMetadata)>>
fn get_dex_quotes(&self, block: u64) -> Result<DexQuotes>
fn try_fetch_token_info(&self, address: Address) -> Result<TokenInfoWithAddress>
fn protocols_created_before( &self, start_block: u64, ) -> Result<FastHashMap<(Address, Protocol), Pair>>
fn protocols_created_range( &self, start_block: u64, end_block: u64, ) -> Result<ProtocolCreatedRange>
fn get_protocol_details(&self, address: Address) -> Result<ProtocolInfo>
fn load_trace(&self, block_num: u64) -> Result<Vec<TxTrace>>
fn try_fetch_searcher_info( &self, eoa_address: Address, contract_address: Option<Address>, ) -> Result<(Option<SearcherInfo>, Option<SearcherInfo>), Report>
fn try_fetch_searcher_infos( &self, eoa: Vec<Address>, contract: Vec<Address>, ) -> Result<HashMap<Address, (SearcherInfo, Option<SearcherInfo>), RandomState>, Report>
fn fetch_all_searcher_info( &self, ) -> Result<(Vec<(Address, SearcherInfo)>, Vec<(Address, SearcherInfo)>), Report>
fn try_fetch_token_decimals(&self, address: Address) -> Result<u8, Report>
fn get_protocol(&self, address: Address) -> Result<Protocol, Report>
source§fn get_protocol_details_sorted(
&self,
address: Address,
) -> Result<ProtocolInfo, Report>
fn get_protocol_details_sorted( &self, address: Address, ) -> Result<ProtocolInfo, Report>
returns protocol details with the tokens sorted from smallest to
biggest. This is needed as for some reason the tokens in the
database for a given protocol don’t seems to always be ordered
correctly
Auto Trait Implementations§
impl<I> Freeze for ReadOnlyMiddleware<I>where
I: Freeze,
impl<I> !RefUnwindSafe for ReadOnlyMiddleware<I>
impl<I> Send for ReadOnlyMiddleware<I>
impl<I> Sync for ReadOnlyMiddleware<I>where
I: Sync,
impl<I> Unpin for ReadOnlyMiddleware<I>
impl<I> !UnwindSafe for ReadOnlyMiddleware<I>
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