mirror of
https://github.com/logos-blockchain/logos-execution-zone.git
synced 2026-07-09 15:29:34 +00:00
384 lines
16 KiB
Rust
384 lines
16 KiB
Rust
use std::{path::Path, sync::Arc};
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use anyhow::{Context as _, Result};
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use arc_swap::ArcSwap;
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use common::{HashType, block::Block};
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// TODO: Remove after testnet
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use futures::StreamExt as _;
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pub use ingest_error::BlockIngestError;
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use log::{error, info, warn};
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use logos_blockchain_zone_sdk::{
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CommonHttpClient, Slot, ZoneMessage, adapter::NodeHttpClient, indexer::ZoneIndexer,
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};
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pub use stall_reason::StallReason;
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use crate::{
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block_store::{AcceptOutcome, IndexerStore},
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config::IndexerConfig,
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status::{IndexerStatus, IndexerSyncStatus},
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};
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pub mod block_store;
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pub mod config;
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pub mod ingest_error;
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pub mod stall_reason;
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pub mod status;
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/// Result of comparing the indexer's stored tip against the channel.
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enum ChainIdentityOutcome {
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/// Proceed from the cursor: channel still serves our chain, nothing to compare,
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/// or the check was inconclusive — none of which prove a reset.
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Consistent,
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/// The channel serves a different block at one of our ids — a chain reset.
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Mismatch(ChainMismatch),
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}
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/// The differing pair behind a [`ChainIdentityOutcome::Mismatch`]: our stored
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/// block vs. the block the channel serves at the same id, as `(block_id, hash)`.
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struct ChainMismatch {
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ours: (u64, HashType),
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channel: (u64, HashType),
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}
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impl std::fmt::Display for ChainMismatch {
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fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
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let Self { ours, channel } = self;
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write!(
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f,
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"stored block {} {} != channel block {} {}",
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ours.0, ours.1, channel.0, channel.1
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)
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}
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}
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#[derive(Clone)]
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pub struct IndexerCore {
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pub zone_indexer: Arc<ZoneIndexer<NodeHttpClient>>,
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pub config: IndexerConfig,
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pub store: IndexerStore,
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/// Live ingestion status; updated by the ingest stream, read by `status`.
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pub status: Arc<ArcSwap<IndexerSyncStatus>>,
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}
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impl IndexerCore {
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/// Builds the core, then verifies the stored chain matches the channel's by
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/// re-reading the channel at the stored tip's position. On mismatch: refuse
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/// (error) unless `config.allow_chain_reset` is set, in which case wipe the
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/// store and re-index from scratch.
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pub async fn new(config: IndexerConfig, storage_dir: &Path) -> Result<Self> {
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let home = storage_dir.join(format!("rocksdb-{}", config.channel_id));
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let core = Self::open(config.clone(), storage_dir)?;
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match core.chain_identity_outcome().await? {
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ChainIdentityOutcome::Consistent => Ok(core),
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ChainIdentityOutcome::Mismatch(mismatch) if config.allow_chain_reset => {
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warn!(
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"Chain reset detected ({mismatch}). Wiping indexer store at {} and \
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re-indexing.",
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home.display()
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);
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drop(core); // sole owner before the ingest task is spawned → closes the DB
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storage::indexer::RocksDBIO::destroy(&home)?;
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Self::open(config, storage_dir)
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}
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ChainIdentityOutcome::Mismatch(mismatch) => Err(anyhow::anyhow!(
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"Indexer store at {} holds a different chain than the channel now serves \
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({mismatch}). Delete the indexer storage directory, point at a fresh one, or \
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set `allow_chain_reset` in the indexer config.",
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home.display()
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)),
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}
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}
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/// Opens the store and builds the core without the chain-identity check.
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fn open(config: IndexerConfig, storage_dir: &Path) -> Result<Self> {
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// Namespace the DB by channel so indexers on different channels can
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// share a storage dir without their RocksDB state colliding.
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let home = storage_dir.join(format!("rocksdb-{}", config.channel_id));
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let basic_auth = config.bedrock_config.auth.clone().map(Into::into);
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let node = NodeHttpClient::new(
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CommonHttpClient::new(basic_auth),
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config.bedrock_config.addr.clone(),
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);
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let zone_indexer = ZoneIndexer::new(config.channel_id, node);
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Ok(Self {
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zone_indexer: Arc::new(zone_indexer),
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config,
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store: IndexerStore::open_db(&home)?,
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status: Arc::new(ArcSwap::from_pointee(IndexerSyncStatus::starting())),
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})
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}
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/// Detects when the local store belongs to a different chain than the connected L1
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/// (e.g. a wiped/restarted bedrock) so startup can reset instead of silently
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/// diverging. Mostly a dev convenience; won't trigger during normal live indexing.
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///
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/// Compares the first block the channel serves at/after the cursor (the tip's
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/// recent L1 slot, so ~one batch — not a from-genesis scan) against our stored
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/// block of the *same id*. Comparing by the channel's id, not our tip id, is what
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/// catches a *shorter* reset chain: it has no block at our tip id, but its low-id
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/// block here differs from ours.
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async fn chain_identity_outcome(&self) -> Result<ChainIdentityOutcome> {
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// Don't skip parked stores: the stall is persisted and only clears on a
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// successful apply, so skipping would re-park forever and never catch a reset.
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// Safe anyway — a same-chain park sits at an id we never applied, so the lookup
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// below misses → Consistent.
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let Some(cursor) = self.store.get_zone_cursor()? else {
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return Ok(ChainIdentityOutcome::Consistent); // empty / cold store
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};
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// Inconclusive cases stay Consistent (ingest parks if truly divergent) rather
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// than wipe a valid store: empty/unreadable read (notably bedrock's LIB behind
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// our tip), or an id we don't hold. Blind spot: a genesis-only store can't be
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// told apart (genesis is deterministic), but that window is transient.
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let Some(channel_block) = self.fetch_channel_block_from(cursor).await? else {
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return Ok(ChainIdentityOutcome::Consistent);
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};
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let Some(ours) = self.store.get_block_at_id(channel_block.header.block_id)? else {
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return Ok(ChainIdentityOutcome::Consistent);
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};
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Ok(compare_block(&ours, &channel_block))
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}
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/// Reads the first block the channel serves at/after the tip's slot.
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///
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/// `None` = inconclusive (timeout/error, or bedrock's LIB behind our tip → empty stream).
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async fn fetch_channel_block_from(&self, cursor: Slot) -> Result<Option<Block>> {
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const TIP_FETCH_TIMEOUT: std::time::Duration = std::time::Duration::from_secs(30);
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// `next_messages` is exclusive, so `cursor - 1` includes the tip's own slot.
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let Some(from_slot) = cursor.into_inner().checked_sub(1) else {
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// Slot-0 cursor is degenerate (inscriptions live at wall-clock slots);
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// so we bail rather than let `next_messages(None)` do a from-genesis scan.
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return Ok(None);
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};
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let fetch = async {
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let stream = self
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.zone_indexer
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.next_messages(Some(Slot::from(from_slot)))
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.await?;
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let mut stream = std::pin::pin!(stream);
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while let Some((msg, _slot)) = stream.next().await {
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if let ZoneMessage::Block(zone_block) = msg {
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let block: Block = borsh::from_slice(&zone_block.data)
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.context("Failed to deserialize channel block")?;
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return Ok::<Option<Block>, anyhow::Error>(Some(block));
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}
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}
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Ok(None)
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};
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match tokio::time::timeout(TIP_FETCH_TIMEOUT, fetch).await {
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Ok(Ok(found)) => Ok(found),
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Ok(Err(err)) => {
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warn!("Failed to read channel tip for the consistency check; proceeding: {err:#}");
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Ok(None)
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}
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Err(_elapsed) => {
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warn!("Timed out reading channel tip for the consistency check; proceeding");
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Ok(None)
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}
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}
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}
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/// Snapshot of the current ingestion status (sync state + indexed tip).
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///
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/// Combines the ingest loop's live status with the L2 tip read fresh from the
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/// store, so callers (FFI/RPC) can tell "catching up" from "failed".
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#[must_use]
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pub fn status(&self) -> IndexerStatus {
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let sync = IndexerSyncStatus::clone(&self.status.load());
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let indexed_block_id = self.store.get_last_block_id().ok().flatten();
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let stall_reason = self.store.get_stall_reason().ok().flatten();
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IndexerStatus {
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sync,
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indexed_block_id,
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stall_reason,
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}
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}
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/// Atomically publish a new ingestion status for readers of `status`.
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fn set_status(&self, status: IndexerSyncStatus) {
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self.status.store(Arc::new(status));
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}
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/// Advances the in-memory L1 read cursor past `slot` and persists it.
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/// A persist failure is only logged: the worst case is re-reading a batch
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/// after a restart, which ingestion handles idempotently.
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fn advance_cursor(&self, cursor: &mut Option<Slot>, slot: Slot) {
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*cursor = Some(slot);
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if let Err(err) = self.store.set_zone_cursor(&slot) {
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warn!("Failed to persist indexer cursor: {err:#}");
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}
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}
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/// Parks on an inscription that could not be parsed as an L2 block:
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/// records the stall and flips the status. The validated tip stays frozen.
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fn park_undeserializable(&self, slot: Slot, error: std::io::Error) {
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let error = anyhow::Error::new(error);
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// use `:#` to get the entire error chain
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let reason = format!("{error:#}");
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error!("Failed to deserialize L2 block from zone-sdk: {reason}");
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if let Err(err) =
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self.store
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.record_stall(None, slot, BlockIngestError::Deserialize(reason.clone()))
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{
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warn!("Failed to record stall reason: {err:#}");
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}
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self.set_status(IndexerSyncStatus::stalled(format!(
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"failed to deserialize L2 block: {reason}"
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)));
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}
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pub fn subscribe_parse_block_stream(&self) -> impl futures::Stream<Item = Result<Block>> + '_ {
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let poll_interval = self.config.consensus_info_polling_interval;
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let initial_cursor = self
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.store
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.get_zone_cursor()
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.expect("Failed to load zone-sdk indexer cursor");
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async_stream::stream! {
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let mut cursor = initial_cursor;
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if cursor.is_some() {
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info!("Resuming indexer from cursor {cursor:?}");
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} else {
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info!("Starting indexer from beginning of channel");
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}
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loop {
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let stream = match self.zone_indexer.next_messages(cursor).await {
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Ok(s) => s,
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Err(err) => {
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error!("Failed to start zone-sdk next_messages stream: {err}");
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self.set_status(IndexerSyncStatus::error(format!(
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"cannot reach L1 / read channel: {err}"
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)));
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tokio::time::sleep(poll_interval).await;
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continue;
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}
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};
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let mut stream = std::pin::pin!(stream);
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let mut announced_syncing = false;
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let mut had_cycle_error = false;
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while let Some((msg, slot)) = stream.next().await {
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if !announced_syncing {
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self.set_status(IndexerSyncStatus::syncing());
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announced_syncing = true;
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}
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let zone_block = match msg {
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ZoneMessage::Block(b) => b,
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// FIXME: will be handled in prep of decentralized sequencers
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ZoneMessage::Deposit(_) | ZoneMessage::Withdraw(_) => continue,
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};
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let block: Block = match borsh::from_slice(&zone_block.data) {
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Ok(b) => b,
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Err(error) => {
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self.park_undeserializable(slot, error);
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// L1 proceeds regardless
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self.advance_cursor(&mut cursor, slot);
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continue;
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}
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};
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match self.store.accept_block(&block, slot).await {
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Ok(AcceptOutcome::Applied) => {
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info!("Indexed L2 block {}", block.header.block_id);
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self.set_status(IndexerSyncStatus::syncing());
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self.advance_cursor(&mut cursor, slot);
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yield Ok(block);
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}
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Ok(AcceptOutcome::AlreadyApplied) => {
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info!(
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"Skipping already-applied block {}",
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block.header.block_id
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);
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self.advance_cursor(&mut cursor, slot);
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}
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Ok(AcceptOutcome::Parked(ingest_err)) => {
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error!(
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"Parked at block {}: {ingest_err}",
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block.header.block_id
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);
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self.set_status(IndexerSyncStatus::stalled(ingest_err.to_string()));
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// L1 proceeds regardless
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self.advance_cursor(&mut cursor, slot);
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}
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Err(err) => {
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// Infrastructure error (DB read/write), not a bad block.
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// will re-poll from the same cursor next cycle.
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error!(
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"Store error applying block {}: {err:#}",
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block.header.block_id
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);
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self.set_status(IndexerSyncStatus::error(format!(
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"store error: {err:#}"
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)));
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had_cycle_error = true;
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break;
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}
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}
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}
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if had_cycle_error {
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tokio::time::sleep(poll_interval).await;
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continue;
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}
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// Stream drained. Stay Stalled if parked; otherwise we are caught up.
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if self.store.get_stall_reason().ok().flatten().is_none() {
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self.set_status(IndexerSyncStatus::caught_up());
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}
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tokio::time::sleep(poll_interval).await;
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}
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}
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}
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}
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/// Pure comparison of our stored block against the channel's block at the same id:
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/// a mismatch is differing hashes. Missing/unreadable cases are handled upstream.
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fn compare_block(ours: &Block, channel: &Block) -> ChainIdentityOutcome {
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if ours.header.hash == channel.header.hash {
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ChainIdentityOutcome::Consistent
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} else {
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ChainIdentityOutcome::Mismatch(ChainMismatch {
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ours: (ours.header.block_id, ours.header.hash),
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channel: (channel.header.block_id, channel.header.hash),
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})
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}
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}
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#[cfg(test)]
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mod chain_identity_tests {
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use common::{HashType, block::Block, test_utils::produce_dummy_block};
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use super::{ChainIdentityOutcome, compare_block};
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fn block_with_prev(prev_seed: u8) -> Block {
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produce_dummy_block(5, Some(HashType([prev_seed; 32])), vec![])
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}
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#[test]
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fn matching_block_is_consistent() {
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let b = block_with_prev(1);
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assert!(matches!(
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compare_block(&b, &b),
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ChainIdentityOutcome::Consistent
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));
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}
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#[test]
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fn differing_block_is_mismatch() {
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let stored = block_with_prev(1);
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let current = block_with_prev(2);
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assert!(matches!(
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compare_block(&stored, ¤t),
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ChainIdentityOutcome::Mismatch(_)
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));
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}
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}
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