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https://github.com/0glabs/0g-storage-node.git
synced 2024-11-20 15:05:19 +00:00
feat: write cached segments to storage on log synced (#7)
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77bf2e122f
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@ -11,6 +11,7 @@ use std::time::{Duration, Instant};
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/// retrieved from blockchain.
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pub struct MemoryCachedFile {
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pub id: FileID,
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pub chunks_per_segment: usize,
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/// Window to control the cache of each file
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pub segments: HashMap<usize, ChunkArray>,
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/// Total number of chunks for the cache file, which is updated from log entry.
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@ -22,12 +23,13 @@ pub struct MemoryCachedFile {
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}
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impl MemoryCachedFile {
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fn new(root: DataRoot, timeout: Duration) -> Self {
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fn new(root: DataRoot, timeout: Duration, chunks_per_segment: usize) -> Self {
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MemoryCachedFile {
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id: FileID {
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root,
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tx_id: Default::default(),
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},
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chunks_per_segment,
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segments: HashMap::default(),
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total_chunks: 0,
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expired_at: Instant::now().add(timeout),
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@ -81,6 +83,7 @@ impl ChunkPoolCache {
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self.files.get(root)
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}
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#[allow(unused)]
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pub fn get_file_mut(&mut self, root: &DataRoot) -> Option<&mut MemoryCachedFile> {
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self.files.get_mut(root)
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}
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@ -126,10 +129,13 @@ impl ChunkPoolCache {
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// always GC at first
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self.garbage_collect();
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let file = self
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.files
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.entry(seg_info.root)
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.or_insert_with(|| MemoryCachedFile::new(seg_info.root, self.config.expiration_time()));
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let file = self.files.entry(seg_info.root).or_insert_with(|| {
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MemoryCachedFile::new(
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seg_info.root,
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self.config.expiration_time(),
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seg_info.chunks_per_segment,
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)
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});
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// Segment already cached in memory. Directly return OK
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if file.segments.contains_key(&seg_info.seg_index) {
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@ -204,33 +204,28 @@ impl MemoryChunkPool {
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/// Updates the cached file info when log entry retrieved from blockchain.
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pub async fn update_file_info(&self, tx: &Transaction) -> Result<bool> {
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let mut inner = self.inner.lock().await;
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// Do nothing if file not uploaded yet.
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let file = match inner.segment_cache.get_file_mut(&tx.data_merkle_root) {
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Some(f) => f,
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None => return Ok(false),
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};
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// Update the file info with transaction.
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file.update_with_tx(tx);
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// File partially uploaded and it's up to user thread
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// to write chunks into store and finalize transaction.
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if file.cached_chunk_num < file.total_chunks {
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return Ok(true);
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let maybe_file = self
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.inner
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.lock()
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.await
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.segment_cache
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.remove_file(&tx.data_merkle_root);
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if let Some(mut file) = maybe_file {
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file.update_with_tx(tx);
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for (seg_index, seg) in file.segments.into_iter() {
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self.write_chunks(
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SegmentInfo {
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root: tx.data_merkle_root,
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seg_data: seg.data.clone(),
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seg_index,
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chunks_per_segment: file.chunks_per_segment,
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},
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file.id,
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file.total_chunks * CHUNK_SIZE,
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)
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.await?
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}
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}
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// Otherwise, notify to write all memory cached chunks and finalize transaction.
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let file_id = FileID {
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root: tx.data_merkle_root,
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tx_id: tx.id(),
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};
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if let Err(e) = self.sender.send(file_id) {
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// Channel receiver will not be dropped until program exit.
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bail!("channel send error: {}", e);
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}
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Ok(true)
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}
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@ -242,10 +237,10 @@ impl MemoryChunkPool {
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Ok(LogSyncEvent::ReorgDetected { .. }) => {}
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Ok(LogSyncEvent::Reverted { .. }) => {}
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Ok(LogSyncEvent::TxSynced { tx }) => {
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if let Err(_e) = chunk_pool.update_file_info(&tx).await {
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if let Err(e) = chunk_pool.update_file_info(&tx).await {
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error!(
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"Failed to update file info. tx seq={}, tx_root={}",
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tx.seq, tx.data_merkle_root
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"Failed to update file info. tx seq={}, tx_root={}, error={}",
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tx.seq, tx.data_merkle_root, e
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);
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}
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}
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@ -16,6 +16,7 @@ enum SlotStatus {
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/// limit on writing threads per file. Meanwhile, the left_boundary field records
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/// how many segments have been uploaded.
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struct CtrlWindow {
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#[allow(unused)]
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size: usize,
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left_boundary: usize,
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slots: HashMap<usize, SlotStatus>,
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@ -380,7 +380,7 @@ impl Libp2pEventHandler {
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}
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// TODO(qhz): check if there is better way to check existence of requested chunks.
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let _ = match self
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match self
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.store
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.get_chunks_by_tx_and_index_range(
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msg.tx_id.seq,
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@ -154,7 +154,7 @@ impl SyncService {
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let store = Store::new(store, executor.clone());
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let manager =
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AutoSyncManager::new(store.clone(), sync_send.clone(), config.clone()).await?;
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AutoSyncManager::new(store.clone(), sync_send.clone(), config).await?;
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if config.auto_sync_enabled {
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manager.spwn(&executor, event_recv);
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}
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@ -17,7 +17,7 @@ class ExampleTest(TestFramework):
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self.contract.submit(submissions)
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wait_until(lambda: self.contract.num_submissions() == 1)
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wait_until(lambda: client.zgs_get_file_info(data_root) is not None)
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wait_until(lambda: client.zgs_get_file_info(data_root)["isCached"])
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wait_until(lambda: not client.zgs_get_file_info(data_root)["isCached"] and client.zgs_get_file_info(data_root)["uploadedSegNum"] == 1)
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client.zgs_upload_segment(segments[1])
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wait_until(lambda: client.zgs_get_file_info(data_root)["finalized"])
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@ -22,6 +22,7 @@ class CrashTest(TestFramework):
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self.log.info("segment: %s", segment)
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for i in range(self.num_nodes):
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self.nodes[i].admin_start_sync_file(0)
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self.log.info("wait for node: %s", i)
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wait_until(
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lambda: self.nodes[i].zgs_get_file_info(data_root) is not None
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@ -17,7 +17,7 @@ class RandomTest(TestFramework):
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self.num_blockchain_nodes = 1
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self.num_nodes = 4
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for i in range(self.num_nodes):
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self.zgs_node_configs[i] = {"find_peer_timeout_secs": 1, "confirmation_block_count": 1}
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self.zgs_node_configs[i] = {"find_peer_timeout_secs": 1, "confirmation_block_count": 1, "sync": {"auto_sync_enabled": True}}
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def run_test(self):
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max_size = 256 * 1024 * 64
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