1use std::collections::HashMap;
18use std::num::NonZeroU64;
19use std::sync::Arc;
20use std::sync::atomic::{AtomicUsize, Ordering};
21use std::time::Instant;
22
23use bytes::Bytes;
24use common_telemetry::{debug, error, info};
25use datatypes::arrow::datatypes::SchemaRef;
26use partition::expr::PartitionExpr;
27use smallvec::{SmallVec, smallvec};
28use snafu::ResultExt;
29use store_api::region_request::RegionFlushReason;
30use store_api::storage::{RegionId, SequenceNumber};
31use strum::IntoStaticStr;
32use tokio::sync::{Semaphore, mpsc, watch};
33
34use crate::access_layer::{
35 AccessLayerRef, Metrics, OperationType, SstInfoArray, SstWriteRequest, WriteType,
36};
37use crate::cache::CacheManagerRef;
38use crate::config::MitoConfig;
39use crate::error::{
40 Error, FlushRegionSnafu, JoinSnafu, RegionClosedSnafu, RegionDroppedSnafu,
41 RegionTruncatedSnafu, Result,
42};
43use crate::manifest::action::{RegionEdit, RegionMetaAction, RegionMetaActionList};
44use crate::memtable::bulk::ENCODE_ROW_THRESHOLD;
45use crate::memtable::{BoxedRecordBatchIterator, EncodedRange, MemtableRanges, RangesOptions};
46use crate::metrics::{
47 FLUSH_BYTES_TOTAL, FLUSH_ELAPSED, FLUSH_FAILURE_TOTAL, FLUSH_FILE_TOTAL, FLUSH_REQUESTS_TOTAL,
48 INFLIGHT_FLUSH_COUNT,
49};
50use crate::read::FlatSource;
51use crate::read::flat_dedup::{FlatDedupIterator, FlatLastNonNull, FlatLastRow};
52use crate::read::flat_merge::FlatMergeIterator;
53use crate::region::options::{IndexOptions, MergeMode, RegionOptions};
54use crate::region::version::{VersionControlData, VersionControlRef, VersionRef};
55use crate::region::{ManifestContextRef, RegionLeaderState, RegionRoleState, parse_partition_expr};
56use crate::request::{
57 BackgroundNotify, FlushFailed, FlushFinished, OptionOutputTx, OutputTx, SenderBulkRequest,
58 SenderDdlRequest, SenderWriteRequest, WorkerRequest, WorkerRequestWithTime,
59};
60use crate::schedule::scheduler::{Job, SchedulerRef};
61use crate::sst::file::FileMeta;
62use crate::sst::parquet::metadata::extract_primary_key_range;
63use crate::sst::parquet::{
64 DEFAULT_READ_BATCH_SIZE, DEFAULT_ROW_GROUP_SIZE, SstInfo, WriteOptions, flat_format,
65};
66use crate::sst::{FlatSchemaOptions, FormatType, to_flat_sst_arrow_schema};
67use crate::worker::WorkerListener;
68
69pub trait WriteBufferManager: Send + Sync + std::fmt::Debug {
73 fn should_flush_engine(&self) -> bool;
75
76 fn should_stall(&self) -> bool;
78
79 fn reserve_mem(&self, mem: usize);
81
82 fn schedule_free_mem(&self, mem: usize);
87
88 fn free_mem(&self, mem: usize);
90
91 fn memory_usage(&self) -> usize;
93
94 fn flush_limit(&self) -> usize;
99}
100
101pub type WriteBufferManagerRef = Arc<dyn WriteBufferManager>;
102
103#[derive(Debug)]
108pub struct WriteBufferManagerImpl {
109 global_write_buffer_size: usize,
111 mutable_limit: usize,
113 memory_used: AtomicUsize,
115 memory_active: AtomicUsize,
117 notifier: Option<watch::Sender<()>>,
120}
121
122impl WriteBufferManagerImpl {
123 pub fn new(global_write_buffer_size: usize) -> Self {
125 Self {
126 global_write_buffer_size,
127 mutable_limit: Self::get_mutable_limit(global_write_buffer_size),
128 memory_used: AtomicUsize::new(0),
129 memory_active: AtomicUsize::new(0),
130 notifier: None,
131 }
132 }
133
134 pub fn with_notifier(mut self, notifier: watch::Sender<()>) -> Self {
136 self.notifier = Some(notifier);
137 self
138 }
139
140 pub fn mutable_usage(&self) -> usize {
142 self.memory_active.load(Ordering::Relaxed)
143 }
144
145 fn get_mutable_limit(global_write_buffer_size: usize) -> usize {
147 global_write_buffer_size / 2
149 }
150}
151
152impl WriteBufferManager for WriteBufferManagerImpl {
153 fn should_flush_engine(&self) -> bool {
154 let mutable_memtable_memory_usage = self.memory_active.load(Ordering::Relaxed);
155 if mutable_memtable_memory_usage >= self.mutable_limit {
156 debug!(
157 "Engine should flush (over mutable limit), mutable_usage: {}, memory_usage: {}, mutable_limit: {}, global_limit: {}",
158 mutable_memtable_memory_usage,
159 self.memory_usage(),
160 self.mutable_limit,
161 self.global_write_buffer_size,
162 );
163 return true;
164 }
165
166 let memory_usage = self.memory_used.load(Ordering::Relaxed);
167 if memory_usage >= self.global_write_buffer_size {
168 return true;
169 }
170
171 false
172 }
173
174 fn should_stall(&self) -> bool {
175 self.memory_usage() >= self.global_write_buffer_size
176 }
177
178 fn reserve_mem(&self, mem: usize) {
179 self.memory_used.fetch_add(mem, Ordering::Relaxed);
180 self.memory_active.fetch_add(mem, Ordering::Relaxed);
181 }
182
183 fn schedule_free_mem(&self, mem: usize) {
184 self.memory_active.fetch_sub(mem, Ordering::Relaxed);
185 }
186
187 fn free_mem(&self, mem: usize) {
188 self.memory_used.fetch_sub(mem, Ordering::Relaxed);
189 if let Some(notifier) = &self.notifier {
190 let _ = notifier.send(());
194 }
195 }
196
197 fn memory_usage(&self) -> usize {
198 self.memory_used.load(Ordering::Relaxed)
199 }
200
201 fn flush_limit(&self) -> usize {
202 self.mutable_limit
203 }
204}
205
206#[derive(Debug, IntoStaticStr, Clone, Copy, PartialEq, Eq)]
208pub enum FlushReason {
209 Others,
211 EngineFull,
213 Manual,
215 Alter,
217 Periodically,
219 Downgrading,
221 EnterStaging,
223 Closing,
225 RegionMigration,
227 Repartition,
229 RemoteWalPrune,
231}
232
233impl FlushReason {
234 fn as_str(&self) -> &'static str {
236 self.into()
237 }
238}
239
240impl From<RegionFlushReason> for FlushReason {
241 fn from(reason: RegionFlushReason) -> Self {
242 match reason {
243 RegionFlushReason::RegionMigration => FlushReason::RegionMigration,
244 RegionFlushReason::Repartition => FlushReason::Repartition,
245 RegionFlushReason::RemoteWalPrune => FlushReason::RemoteWalPrune,
246 }
247 }
248}
249
250pub(crate) struct RegionFlushTask {
252 pub(crate) region_id: RegionId,
254 pub(crate) reason: FlushReason,
256 pub(crate) senders: Vec<OutputTx>,
258 pub(crate) request_sender: mpsc::Sender<WorkerRequestWithTime>,
260
261 pub(crate) access_layer: AccessLayerRef,
262 pub(crate) listener: WorkerListener,
263 pub(crate) engine_config: Arc<MitoConfig>,
264 pub(crate) row_group_size: Option<usize>,
265 pub(crate) cache_manager: CacheManagerRef,
266 pub(crate) manifest_ctx: ManifestContextRef,
267
268 pub(crate) index_options: IndexOptions,
270 pub(crate) flush_semaphore: Arc<Semaphore>,
272 pub(crate) is_staging: bool,
274 pub(crate) partition_expr: Option<String>,
278}
279
280impl RegionFlushTask {
281 pub(crate) fn push_sender(&mut self, mut sender: OptionOutputTx) {
283 if let Some(sender) = sender.take_inner() {
284 self.senders.push(sender);
285 }
286 }
287
288 fn on_success(self) {
290 for sender in self.senders {
291 sender.send(Ok(0));
292 }
293 }
294
295 fn on_failure(&mut self, err: Arc<Error>) {
297 for sender in self.senders.drain(..) {
298 sender.send(Err(err.clone()).context(FlushRegionSnafu {
299 region_id: self.region_id,
300 }));
301 }
302 }
303
304 fn into_flush_job(mut self, version_control: &VersionControlRef) -> Job {
308 let version_data = version_control.current();
311
312 Box::pin(async move {
313 INFLIGHT_FLUSH_COUNT.inc();
314 self.do_flush(version_data).await;
315 INFLIGHT_FLUSH_COUNT.dec();
316 })
317 }
318
319 async fn do_flush(&mut self, version_data: VersionControlData) {
321 let timer = FLUSH_ELAPSED.with_label_values(&["total"]).start_timer();
322 self.listener.on_flush_begin(self.region_id).await;
323
324 let worker_request = match self.flush_memtables(&version_data).await {
325 Ok(edit) => {
326 let memtables_to_remove = version_data
327 .version
328 .memtables
329 .immutables()
330 .iter()
331 .map(|m| m.id())
332 .collect();
333 let flush_finished = FlushFinished {
334 region_id: self.region_id,
335 flushed_entry_id: version_data.last_entry_id,
337 senders: std::mem::take(&mut self.senders),
338 _timer: timer,
339 edit,
340 memtables_to_remove,
341 is_staging: self.is_staging,
342 flush_reason: self.reason,
343 };
344 WorkerRequest::Background {
345 region_id: self.region_id,
346 notify: BackgroundNotify::FlushFinished(flush_finished),
347 }
348 }
349 Err(e) => {
350 error!(e; "Failed to flush region {}", self.region_id);
351 timer.stop_and_discard();
353
354 let err = Arc::new(e);
355 self.on_failure(err.clone());
356 WorkerRequest::Background {
357 region_id: self.region_id,
358 notify: BackgroundNotify::FlushFailed(FlushFailed { err }),
359 }
360 }
361 };
362 self.send_worker_request(worker_request).await;
363 }
364
365 async fn flush_memtables(&self, version_data: &VersionControlData) -> Result<RegionEdit> {
368 let version = &version_data.version;
371 let timer = FLUSH_ELAPSED
372 .with_label_values(&["flush_memtables"])
373 .start_timer();
374
375 let mut write_opts = WriteOptions {
376 write_buffer_size: self.engine_config.sst_write_buffer_size,
377 ..Default::default()
378 };
379 if let Some(row_group_size) = self.row_group_size {
380 write_opts.row_group_size = row_group_size;
381 }
382
383 let DoFlushMemtablesResult {
384 file_metas,
385 flushed_bytes,
386 series_count,
387 encoded_part_count,
388 flush_metrics,
389 } = self.do_flush_memtables(version, write_opts).await?;
390
391 if !file_metas.is_empty() {
392 FLUSH_BYTES_TOTAL.inc_by(flushed_bytes);
393 }
394
395 let mut file_ids = Vec::with_capacity(file_metas.len());
396 let mut total_rows = 0;
397 let mut total_bytes = 0;
398 for meta in &file_metas {
399 file_ids.push(meta.file_id);
400 total_rows += meta.num_rows;
401 total_bytes += meta.file_size;
402 }
403 info!(
404 "Successfully flush memtables, region: {}, reason: {}, files: {:?}, series count: {}, total_rows: {}, total_bytes: {}, cost: {:?}, encoded_part_count: {}, metrics: {:?}",
405 self.region_id,
406 self.reason.as_str(),
407 file_ids,
408 series_count,
409 total_rows,
410 total_bytes,
411 timer.stop_and_record(),
412 encoded_part_count,
413 flush_metrics,
414 );
415 flush_metrics.observe();
416
417 let edit = RegionEdit {
418 files_to_add: file_metas,
419 files_to_remove: Vec::new(),
420 timestamp_ms: Some(chrono::Utc::now().timestamp_millis()),
421 compaction_time_window: None,
422 flushed_entry_id: Some(version_data.last_entry_id),
424 flushed_sequence: Some(version_data.committed_sequence),
425 committed_sequence: None,
426 };
427 info!(
428 "Applying {edit:?} to region {}, is_staging: {}",
429 self.region_id, self.is_staging
430 );
431
432 let action_list = RegionMetaActionList::with_action(RegionMetaAction::Edit(edit.clone()));
433
434 let expected_state = if matches!(self.reason, FlushReason::Downgrading) {
435 RegionLeaderState::Downgrading
436 } else {
437 let current_state = self.manifest_ctx.current_state();
439 if current_state == RegionRoleState::Leader(RegionLeaderState::Staging) {
440 RegionLeaderState::Staging
441 } else {
442 RegionLeaderState::Writable
443 }
444 };
445 let version = self
448 .manifest_ctx
449 .update_manifest(expected_state, action_list, self.is_staging)
450 .await?;
451 info!(
452 "Successfully update manifest version to {version}, region: {}, is_staging: {}, reason: {}",
453 self.region_id,
454 self.is_staging,
455 self.reason.as_str()
456 );
457
458 Ok(edit)
459 }
460
461 async fn do_flush_memtables(
462 &self,
463 version: &VersionRef,
464 write_opts: WriteOptions,
465 ) -> Result<DoFlushMemtablesResult> {
466 let memtables = version.memtables.immutables();
467 let mut file_metas = Vec::with_capacity(memtables.len());
468 let mut flushed_bytes = 0;
469 let mut series_count = 0;
470 let mut encoded_part_count = 0;
471 let mut flush_metrics = Metrics::new(WriteType::Flush);
472 let partition_expr = parse_partition_expr(self.partition_expr.as_deref())?;
473 for mem in memtables {
474 if mem.is_empty() {
475 continue;
477 }
478
479 let compact_start = std::time::Instant::now();
481 if let Err(e) = mem.compact(true) {
482 common_telemetry::error!(e; "Failed to compact memtable before flush");
483 }
484 let compact_cost = compact_start.elapsed();
485 flush_metrics.compact_memtable += compact_cost;
486
487 let mem_ranges = mem.ranges(None, RangesOptions::for_flush())?;
489 let num_mem_ranges = mem_ranges.ranges.len();
490
491 let num_mem_rows = mem_ranges.num_rows();
493 let memtable_series_count = mem_ranges.series_count();
494 let memtable_id = mem.id();
495 series_count += memtable_series_count;
498
499 let flush_start = Instant::now();
500 let FlushFlatMemResult {
501 num_encoded,
502 num_sources,
503 results,
504 } = self
505 .flush_flat_mem_ranges(version, &write_opts, mem_ranges)
506 .await?;
507 encoded_part_count += num_encoded;
508 for (source_idx, result) in results.into_iter().enumerate() {
509 let (max_sequence, ssts_written, metrics) = result?;
510 if ssts_written.is_empty() {
511 continue;
513 }
514
515 common_telemetry::debug!(
516 "Region {} flush one memtable {} {}/{}, metrics: {:?}",
517 self.region_id,
518 memtable_id,
519 source_idx,
520 num_sources,
521 metrics
522 );
523
524 flush_metrics = flush_metrics.merge(metrics);
525
526 for sst_info in ssts_written {
527 flushed_bytes += sst_info.file_size;
528 let pk_range = sst_info
529 .file_metadata
530 .as_ref()
531 .and_then(|meta| extract_primary_key_range(meta, &version.metadata));
532 file_metas.push(Self::new_file_meta(
533 self.region_id,
534 max_sequence,
535 sst_info,
536 partition_expr.clone(),
537 pk_range,
538 ));
539 }
540 }
541
542 common_telemetry::debug!(
543 "Region {} flush {} memtables for {}, num_mem_ranges: {}, num_encoded: {}, num_rows: {}, flush_cost: {:?}, compact_cost: {:?}",
544 self.region_id,
545 num_sources,
546 memtable_id,
547 num_mem_ranges,
548 num_encoded,
549 num_mem_rows,
550 flush_start.elapsed(),
551 compact_cost,
552 );
553 }
554
555 Ok(DoFlushMemtablesResult {
556 file_metas,
557 flushed_bytes,
558 series_count,
559 encoded_part_count,
560 flush_metrics,
561 })
562 }
563
564 async fn flush_flat_mem_ranges(
565 &self,
566 version: &VersionRef,
567 write_opts: &WriteOptions,
568 mem_ranges: MemtableRanges,
569 ) -> Result<FlushFlatMemResult> {
570 let batch_schema = to_flat_sst_arrow_schema(
571 &version.metadata,
572 &FlatSchemaOptions::from_encoding(version.metadata.primary_key_encoding),
573 );
574 let field_column_start =
575 flat_format::field_column_start(&version.metadata, batch_schema.fields().len());
576 let flat_sources = memtable_flat_sources(
577 batch_schema,
578 mem_ranges,
579 &version.options,
580 field_column_start,
581 )?;
582 let mut tasks = Vec::with_capacity(flat_sources.encoded.len() + flat_sources.sources.len());
583 let num_encoded = flat_sources.encoded.len();
584 for (source, max_sequence) in flat_sources.sources {
585 let write_request = self.new_write_request(version, max_sequence, source);
586 let access_layer = self.access_layer.clone();
587 let write_opts = write_opts.clone();
588 let semaphore = self.flush_semaphore.clone();
589 let task = common_runtime::spawn_global(async move {
590 let _permit = semaphore.acquire().await.unwrap();
591 let mut metrics = Metrics::new(WriteType::Flush);
592 let ssts = access_layer
593 .write_sst(write_request, &write_opts, &mut metrics)
594 .await?;
595 FLUSH_FILE_TOTAL.inc_by(ssts.len() as u64);
596 Ok((max_sequence, ssts, metrics))
597 });
598 tasks.push(task);
599 }
600 for (encoded, max_sequence) in flat_sources.encoded {
601 let access_layer = self.access_layer.clone();
602 let cache_manager = self.cache_manager.clone();
603 let region_id = version.metadata.region_id;
604 let semaphore = self.flush_semaphore.clone();
605 let task = common_runtime::spawn_global(async move {
606 let _permit = semaphore.acquire().await.unwrap();
607 let metrics = access_layer
608 .put_sst(&encoded.data, region_id, &encoded.sst_info, &cache_manager)
609 .await?;
610 FLUSH_FILE_TOTAL.inc();
611 Ok((max_sequence, smallvec![encoded.sst_info], metrics))
612 });
613 tasks.push(task);
614 }
615 let num_sources = tasks.len();
616 let results = futures::future::try_join_all(tasks)
617 .await
618 .context(JoinSnafu)?;
619 Ok(FlushFlatMemResult {
620 num_encoded,
621 num_sources,
622 results,
623 })
624 }
625
626 fn new_file_meta(
627 region_id: RegionId,
628 max_sequence: u64,
629 sst_info: SstInfo,
630 partition_expr: Option<PartitionExpr>,
631 primary_key_range: Option<(Bytes, Bytes)>,
632 ) -> FileMeta {
633 let (primary_key_min, primary_key_max) = match primary_key_range {
634 Some((min, max)) => (Some(min), Some(max)),
635 None => (None, None),
636 };
637 FileMeta {
638 region_id,
639 file_id: sst_info.file_id,
640 time_range: sst_info.time_range,
641 level: 0,
642 file_size: sst_info.file_size,
643 max_row_group_uncompressed_size: sst_info.max_row_group_uncompressed_size,
644 available_indexes: sst_info.index_metadata.build_available_indexes(),
645 indexes: sst_info.index_metadata.build_indexes(),
646 index_file_size: sst_info.index_metadata.file_size,
647 index_version: 0,
648 num_rows: sst_info.num_rows as u64,
649 num_row_groups: sst_info.num_row_groups,
650 sequence: NonZeroU64::new(max_sequence),
651 partition_expr,
652 num_series: sst_info.num_series,
653 primary_key_min,
654 primary_key_max,
655 }
656 }
657
658 fn new_write_request(
659 &self,
660 version: &VersionRef,
661 max_sequence: u64,
662 source: FlatSource,
663 ) -> SstWriteRequest {
664 let flat_format = version
665 .options
666 .sst_format
667 .map(|f| f == FormatType::Flat)
668 .unwrap_or(self.engine_config.default_flat_format);
669 SstWriteRequest {
670 op_type: OperationType::Flush,
671 metadata: version.metadata.clone(),
672 source,
673 cache_manager: self.cache_manager.clone(),
674 storage: version.options.storage.clone(),
675 max_sequence: Some(max_sequence),
676 sst_write_format: if flat_format {
677 FormatType::Flat
678 } else {
679 FormatType::PrimaryKey
680 },
681 index_options: self.index_options.clone(),
682 index_config: self.engine_config.index.clone(),
683 inverted_index_config: self.engine_config.inverted_index.clone(),
684 fulltext_index_config: self.engine_config.fulltext_index.clone(),
685 bloom_filter_index_config: self.engine_config.bloom_filter_index.clone(),
686 #[cfg(feature = "vector_index")]
687 vector_index_config: self.engine_config.vector_index.clone(),
688 }
689 }
690
691 pub(crate) async fn send_worker_request(&self, request: WorkerRequest) {
693 if let Err(e) = self
694 .request_sender
695 .send(WorkerRequestWithTime::new(request))
696 .await
697 {
698 error!(
699 "Failed to notify flush job status for region {}, request: {:?}",
700 self.region_id, e.0
701 );
702 }
703 }
704
705 fn merge(&mut self, mut other: RegionFlushTask) {
707 assert_eq!(self.region_id, other.region_id);
708 self.senders.append(&mut other.senders);
710 }
711}
712
713struct FlushFlatMemResult {
714 num_encoded: usize,
715 num_sources: usize,
716 results: Vec<Result<(SequenceNumber, SstInfoArray, Metrics)>>,
717}
718
719struct DoFlushMemtablesResult {
720 file_metas: Vec<FileMeta>,
721 flushed_bytes: u64,
722 series_count: usize,
723 encoded_part_count: usize,
724 flush_metrics: Metrics,
725}
726
727struct FlatSources {
728 sources: SmallVec<[(FlatSource, SequenceNumber); 4]>,
729 encoded: SmallVec<[(EncodedRange, SequenceNumber); 4]>,
730}
731
732fn memtable_flat_sources(
734 schema: SchemaRef,
735 mem_ranges: MemtableRanges,
736 options: &RegionOptions,
737 field_column_start: usize,
738) -> Result<FlatSources> {
739 let MemtableRanges { ranges } = mem_ranges;
740 let mut flat_sources = FlatSources {
741 sources: SmallVec::new(),
742 encoded: SmallVec::new(),
743 };
744
745 if ranges.len() == 1 {
746 debug!("Flushing single flat range");
747
748 let only_range = ranges.into_values().next().unwrap();
749 let max_sequence = only_range.stats().max_sequence();
750 if let Some(encoded) = only_range.encoded() {
751 flat_sources.encoded.push((encoded, max_sequence));
752 } else {
753 let iter = only_range.build_record_batch_iter(None, None)?;
754 let iter = maybe_dedup_one(
757 options.append_mode,
758 options.merge_mode(),
759 field_column_start,
760 iter,
761 );
762 flat_sources
763 .sources
764 .push((FlatSource::new_iter(schema, iter), max_sequence));
765 };
766 } else {
767 let min_flush_rows = *ENCODE_ROW_THRESHOLD;
768 let total_rows: usize = ranges
770 .values()
771 .filter(|r| r.encoded().is_none())
772 .map(|r| r.num_rows())
773 .sum();
774 debug!(
775 "Flushing multiple flat ranges, total_rows: {}, min_flush_rows: {}, num_ranges: {}",
776 total_rows,
777 min_flush_rows,
778 ranges.len()
779 );
780 let mut rows_remaining = total_rows;
781 let mut last_iter_rows = 0;
782 let num_ranges = ranges.len();
783 let mut input_iters = Vec::with_capacity(num_ranges);
784 let mut current_ranges = Vec::new();
785 for (_range_id, range) in ranges {
786 if let Some(encoded) = range.encoded() {
787 let max_sequence = range.stats().max_sequence();
788 flat_sources.encoded.push((encoded, max_sequence));
789 continue;
790 }
791
792 let iter = range.build_record_batch_iter(None, None)?;
793 input_iters.push(iter);
794 let range_rows = range.num_rows();
795 last_iter_rows += range_rows;
796 rows_remaining -= range_rows;
797 current_ranges.push(range);
798
799 if last_iter_rows >= min_flush_rows
802 && (rows_remaining == 0 || rows_remaining >= DEFAULT_ROW_GROUP_SIZE)
803 {
804 debug!(
805 "Flush batch ready, rows: {}, min_rows: {}, num_iters: {}, remaining: {}",
806 last_iter_rows,
807 min_flush_rows,
808 input_iters.len(),
809 rows_remaining
810 );
811
812 let max_sequence = current_ranges
814 .iter()
815 .map(|r| r.stats().max_sequence())
816 .max()
817 .unwrap_or(0);
818
819 let maybe_dedup = merge_and_dedup(
820 &schema,
821 options.append_mode,
822 options.merge_mode(),
823 field_column_start,
824 std::mem::replace(&mut input_iters, Vec::with_capacity(num_ranges)),
825 )?;
826
827 flat_sources.sources.push((
828 FlatSource::new_iter(schema.clone(), maybe_dedup),
829 max_sequence,
830 ));
831 last_iter_rows = 0;
832 current_ranges.clear();
833 }
834 }
835
836 if !input_iters.is_empty() {
838 debug!(
839 "Flush remaining batch, rows: {}, min_rows: {}, num_iters: {}, remaining: {}",
840 last_iter_rows,
841 min_flush_rows,
842 input_iters.len(),
843 rows_remaining
844 );
845 let max_sequence = current_ranges
846 .iter()
847 .map(|r| r.stats().max_sequence())
848 .max()
849 .unwrap_or(0);
850
851 let maybe_dedup = merge_and_dedup(
852 &schema,
853 options.append_mode,
854 options.merge_mode(),
855 field_column_start,
856 input_iters,
857 )?;
858
859 flat_sources
860 .sources
861 .push((FlatSource::new_iter(schema, maybe_dedup), max_sequence));
862 }
863 }
864
865 Ok(flat_sources)
866}
867
868pub fn merge_and_dedup(
913 schema: &SchemaRef,
914 append_mode: bool,
915 merge_mode: MergeMode,
916 field_column_start: usize,
917 input_iters: Vec<BoxedRecordBatchIterator>,
918) -> Result<BoxedRecordBatchIterator> {
919 let merge_iter = FlatMergeIterator::new(schema.clone(), input_iters, DEFAULT_READ_BATCH_SIZE)?;
920 let maybe_dedup = if append_mode {
921 Box::new(merge_iter) as _
923 } else {
924 match merge_mode {
926 MergeMode::LastRow => {
927 Box::new(FlatDedupIterator::new(merge_iter, FlatLastRow::new(false))) as _
928 }
929 MergeMode::LastNonNull => Box::new(FlatDedupIterator::new(
930 merge_iter,
931 FlatLastNonNull::new(field_column_start, false),
932 )) as _,
933 }
934 };
935 Ok(maybe_dedup)
936}
937
938pub fn maybe_dedup_one(
939 append_mode: bool,
940 merge_mode: MergeMode,
941 field_column_start: usize,
942 input_iter: BoxedRecordBatchIterator,
943) -> BoxedRecordBatchIterator {
944 if append_mode {
945 input_iter
947 } else {
948 match merge_mode {
950 MergeMode::LastRow => {
951 Box::new(FlatDedupIterator::new(input_iter, FlatLastRow::new(false)))
952 }
953 MergeMode::LastNonNull => Box::new(FlatDedupIterator::new(
954 input_iter,
955 FlatLastNonNull::new(field_column_start, false),
956 )),
957 }
958 }
959}
960
961pub(crate) struct FlushScheduler {
963 region_status: HashMap<RegionId, FlushStatus>,
965 scheduler: SchedulerRef,
967}
968
969impl FlushScheduler {
970 pub(crate) fn new(scheduler: SchedulerRef) -> FlushScheduler {
972 FlushScheduler {
973 region_status: HashMap::new(),
974 scheduler,
975 }
976 }
977
978 pub(crate) fn is_flush_requested(&self, region_id: RegionId) -> bool {
980 self.region_status.contains_key(®ion_id)
981 }
982
983 fn schedule_flush_task(
984 &mut self,
985 version_control: &VersionControlRef,
986 task: RegionFlushTask,
987 ) -> Result<()> {
988 let region_id = task.region_id;
989
990 if let Err(e) = version_control.freeze_mutable() {
992 error!(e; "Failed to freeze the mutable memtable for region {}", region_id);
993
994 return Err(e);
995 }
996 let job = task.into_flush_job(version_control);
998 if let Err(e) = self.scheduler.schedule(job) {
999 error!(e; "Failed to schedule flush job for region {}", region_id);
1002
1003 return Err(e);
1004 }
1005 Ok(())
1006 }
1007
1008 pub(crate) fn schedule_flush(
1010 &mut self,
1011 region_id: RegionId,
1012 version_control: &VersionControlRef,
1013 task: RegionFlushTask,
1014 ) -> Result<()> {
1015 debug_assert_eq!(region_id, task.region_id);
1016
1017 let version = version_control.current().version;
1018 if version.memtables.is_empty() {
1019 debug_assert!(!self.region_status.contains_key(®ion_id));
1020 task.on_success();
1022 return Ok(());
1023 }
1024
1025 FLUSH_REQUESTS_TOTAL
1027 .with_label_values(&[task.reason.as_str()])
1028 .inc();
1029
1030 if let Some(flush_status) = self.region_status.get_mut(®ion_id) {
1032 debug!("Merging flush task for region {}", region_id);
1034 flush_status.merge_task(task);
1035 return Ok(());
1036 }
1037
1038 self.schedule_flush_task(version_control, task)?;
1039
1040 let _ = self.region_status.insert(
1042 region_id,
1043 FlushStatus::new(region_id, version_control.clone()),
1044 );
1045
1046 Ok(())
1047 }
1048
1049 pub(crate) fn on_flush_success(
1053 &mut self,
1054 region_id: RegionId,
1055 ) -> Option<(
1056 Vec<SenderDdlRequest>,
1057 Vec<SenderWriteRequest>,
1058 Vec<SenderBulkRequest>,
1059 )> {
1060 let flush_status = self.region_status.get_mut(®ion_id)?;
1061 if flush_status.pending_task.is_none() {
1063 debug!(
1066 "Region {} doesn't have any pending flush task, removing it from the status",
1067 region_id
1068 );
1069 let flush_status = self.region_status.remove(®ion_id).unwrap();
1070 return Some((
1071 flush_status.pending_ddls,
1072 flush_status.pending_writes,
1073 flush_status.pending_bulk_writes,
1074 ));
1075 }
1076
1077 let version_data = flush_status.version_control.current();
1079 if version_data.version.memtables.is_empty() {
1080 let task = flush_status.pending_task.take().unwrap();
1083 task.on_success();
1085 debug!(
1086 "Region {} has nothing to flush, removing it from the status",
1087 region_id
1088 );
1089 let flush_status = self.region_status.remove(®ion_id).unwrap();
1091 return Some((
1092 flush_status.pending_ddls,
1093 flush_status.pending_writes,
1094 flush_status.pending_bulk_writes,
1095 ));
1096 }
1097
1098 debug!("Scheduling pending flush task for region {}", region_id);
1100 let task = flush_status.pending_task.take().unwrap();
1102 let version_control = flush_status.version_control.clone();
1103 if let Err(err) = self.schedule_flush_task(&version_control, task) {
1104 error!(
1105 err;
1106 "Flush succeeded for region {region_id}, but failed to schedule next flush for it."
1107 );
1108 }
1109 None
1111 }
1112
1113 pub(crate) fn on_flush_failed(&mut self, region_id: RegionId, err: Arc<Error>) {
1115 error!(err; "Region {} failed to flush, cancel all pending tasks", region_id);
1116
1117 FLUSH_FAILURE_TOTAL.inc();
1118
1119 let Some(flush_status) = self.region_status.remove(®ion_id) else {
1121 return;
1122 };
1123
1124 flush_status.on_failure(err);
1126 }
1127
1128 pub(crate) fn on_region_dropped(&mut self, region_id: RegionId) {
1130 self.remove_region_on_failure(
1131 region_id,
1132 Arc::new(RegionDroppedSnafu { region_id }.build()),
1133 );
1134 }
1135
1136 pub(crate) fn on_region_closed(&mut self, region_id: RegionId) {
1138 self.remove_region_on_failure(region_id, Arc::new(RegionClosedSnafu { region_id }.build()));
1139 }
1140
1141 pub(crate) fn on_region_truncated(&mut self, region_id: RegionId) {
1143 self.remove_region_on_failure(
1144 region_id,
1145 Arc::new(RegionTruncatedSnafu { region_id }.build()),
1146 );
1147 }
1148
1149 fn remove_region_on_failure(&mut self, region_id: RegionId, err: Arc<Error>) {
1150 let Some(flush_status) = self.region_status.remove(®ion_id) else {
1152 return;
1153 };
1154
1155 flush_status.on_failure(err);
1157 }
1158
1159 pub(crate) fn add_ddl_request_to_pending(&mut self, request: SenderDdlRequest) {
1164 let status = self.region_status.get_mut(&request.region_id).unwrap();
1165 status.pending_ddls.push(request);
1166 }
1167
1168 pub(crate) fn add_write_request_to_pending(&mut self, request: SenderWriteRequest) {
1173 let status = self
1174 .region_status
1175 .get_mut(&request.request.region_id)
1176 .unwrap();
1177 status.pending_writes.push(request);
1178 }
1179
1180 pub(crate) fn add_bulk_request_to_pending(&mut self, request: SenderBulkRequest) {
1185 let status = self.region_status.get_mut(&request.region_id).unwrap();
1186 status.pending_bulk_writes.push(request);
1187 }
1188
1189 pub(crate) fn has_pending_ddls(&self, region_id: RegionId) -> bool {
1191 self.region_status
1192 .get(®ion_id)
1193 .map(|status| !status.pending_ddls.is_empty())
1194 .unwrap_or(false)
1195 }
1196}
1197
1198impl Drop for FlushScheduler {
1199 fn drop(&mut self) {
1200 for (region_id, flush_status) in self.region_status.drain() {
1201 flush_status.on_failure(Arc::new(RegionClosedSnafu { region_id }.build()));
1203 }
1204 }
1205}
1206
1207struct FlushStatus {
1211 region_id: RegionId,
1213 version_control: VersionControlRef,
1215 pending_task: Option<RegionFlushTask>,
1217 pending_ddls: Vec<SenderDdlRequest>,
1219 pending_writes: Vec<SenderWriteRequest>,
1221 pending_bulk_writes: Vec<SenderBulkRequest>,
1223}
1224
1225impl FlushStatus {
1226 fn new(region_id: RegionId, version_control: VersionControlRef) -> FlushStatus {
1227 FlushStatus {
1228 region_id,
1229 version_control,
1230 pending_task: None,
1231 pending_ddls: Vec::new(),
1232 pending_writes: Vec::new(),
1233 pending_bulk_writes: Vec::new(),
1234 }
1235 }
1236
1237 fn merge_task(&mut self, task: RegionFlushTask) {
1239 if let Some(pending) = &mut self.pending_task {
1240 pending.merge(task);
1241 } else {
1242 self.pending_task = Some(task);
1243 }
1244 }
1245
1246 fn on_failure(self, err: Arc<Error>) {
1247 if let Some(mut task) = self.pending_task {
1248 task.on_failure(err.clone());
1249 }
1250 for ddl in self.pending_ddls {
1251 ddl.sender.send(Err(err.clone()).context(FlushRegionSnafu {
1252 region_id: self.region_id,
1253 }));
1254 }
1255 for write_req in self.pending_writes {
1256 write_req
1257 .sender
1258 .send(Err(err.clone()).context(FlushRegionSnafu {
1259 region_id: self.region_id,
1260 }));
1261 }
1262 }
1263}
1264
1265#[cfg(test)]
1266mod tests {
1267 use mito_codec::row_converter::build_primary_key_codec;
1268 use tokio::sync::oneshot;
1269
1270 use super::*;
1271 use crate::cache::CacheManager;
1272 use crate::memtable::bulk::part::BulkPartConverter;
1273 use crate::memtable::time_series::TimeSeriesMemtableBuilder;
1274 use crate::memtable::{Memtable, RangesOptions};
1275 use crate::sst::{FlatSchemaOptions, to_flat_sst_arrow_schema};
1276 use crate::test_util::memtable_util::{build_key_values_with_ts_seq_values, metadata_for_test};
1277 use crate::test_util::scheduler_util::{SchedulerEnv, VecScheduler};
1278 use crate::test_util::version_util::{VersionControlBuilder, write_rows_to_version};
1279
1280 #[test]
1281 fn test_get_mutable_limit() {
1282 assert_eq!(4, WriteBufferManagerImpl::get_mutable_limit(8));
1283 assert_eq!(5, WriteBufferManagerImpl::get_mutable_limit(10));
1284 assert_eq!(32, WriteBufferManagerImpl::get_mutable_limit(64));
1285 assert_eq!(0, WriteBufferManagerImpl::get_mutable_limit(0));
1286 }
1287
1288 #[test]
1289 fn test_over_mutable_limit() {
1290 let manager = WriteBufferManagerImpl::new(1000);
1292 manager.reserve_mem(400);
1293 assert!(!manager.should_flush_engine());
1294 assert!(!manager.should_stall());
1295
1296 manager.reserve_mem(400);
1298 assert!(manager.should_flush_engine());
1299
1300 manager.schedule_free_mem(400);
1302 assert!(!manager.should_flush_engine());
1303 assert_eq!(800, manager.memory_used.load(Ordering::Relaxed));
1304 assert_eq!(400, manager.memory_active.load(Ordering::Relaxed));
1305
1306 manager.free_mem(400);
1308 assert_eq!(400, manager.memory_used.load(Ordering::Relaxed));
1309 assert_eq!(400, manager.memory_active.load(Ordering::Relaxed));
1310 }
1311
1312 #[test]
1313 fn test_over_global() {
1314 let manager = WriteBufferManagerImpl::new(1000);
1316 manager.reserve_mem(1100);
1317 assert!(manager.should_stall());
1318 manager.schedule_free_mem(200);
1320 assert!(manager.should_flush_engine());
1321 assert!(manager.should_stall());
1322
1323 manager.schedule_free_mem(450);
1325 assert!(manager.should_flush_engine());
1326 assert!(manager.should_stall());
1327
1328 manager.reserve_mem(50);
1330 assert!(manager.should_flush_engine());
1331 manager.reserve_mem(100);
1332 assert!(manager.should_flush_engine());
1333 }
1334
1335 #[test]
1336 fn test_manager_notify() {
1337 let (sender, receiver) = watch::channel(());
1338 let manager = WriteBufferManagerImpl::new(1000).with_notifier(sender);
1339 manager.reserve_mem(500);
1340 assert!(!receiver.has_changed().unwrap());
1341 manager.schedule_free_mem(500);
1342 assert!(!receiver.has_changed().unwrap());
1343 manager.free_mem(500);
1344 assert!(receiver.has_changed().unwrap());
1345 }
1346
1347 #[tokio::test]
1348 async fn test_schedule_empty() {
1349 let env = SchedulerEnv::new().await;
1350 let (tx, _rx) = mpsc::channel(4);
1351 let mut scheduler = env.mock_flush_scheduler();
1352 let builder = VersionControlBuilder::new();
1353
1354 let version_control = Arc::new(builder.build());
1355 let (output_tx, output_rx) = oneshot::channel();
1356 let mut task = RegionFlushTask {
1357 region_id: builder.region_id(),
1358 reason: FlushReason::Others,
1359 senders: Vec::new(),
1360 request_sender: tx,
1361 access_layer: env.access_layer.clone(),
1362 listener: WorkerListener::default(),
1363 engine_config: Arc::new(MitoConfig::default()),
1364 row_group_size: None,
1365 cache_manager: Arc::new(CacheManager::default()),
1366 manifest_ctx: env
1367 .mock_manifest_context(version_control.current().version.metadata.clone())
1368 .await,
1369 index_options: IndexOptions::default(),
1370 flush_semaphore: Arc::new(Semaphore::new(2)),
1371 is_staging: false,
1372 partition_expr: None,
1373 };
1374 task.push_sender(OptionOutputTx::from(output_tx));
1375 scheduler
1376 .schedule_flush(builder.region_id(), &version_control, task)
1377 .unwrap();
1378 assert!(scheduler.region_status.is_empty());
1379 let output = output_rx.await.unwrap().unwrap();
1380 assert_eq!(output, 0);
1381 assert!(scheduler.region_status.is_empty());
1382 }
1383
1384 #[tokio::test]
1385 async fn test_schedule_pending_request() {
1386 let job_scheduler = Arc::new(VecScheduler::default());
1387 let env = SchedulerEnv::new().await.scheduler(job_scheduler.clone());
1388 let (tx, _rx) = mpsc::channel(4);
1389 let mut scheduler = env.mock_flush_scheduler();
1390 let mut builder = VersionControlBuilder::new();
1391 builder.set_memtable_builder(Arc::new(TimeSeriesMemtableBuilder::default()));
1393 let version_control = Arc::new(builder.build());
1394 let version_data = version_control.current();
1396 write_rows_to_version(&version_data.version, "host0", 0, 10);
1397 let manifest_ctx = env
1398 .mock_manifest_context(version_data.version.metadata.clone())
1399 .await;
1400 let mut tasks: Vec<_> = (0..3)
1402 .map(|_| RegionFlushTask {
1403 region_id: builder.region_id(),
1404 reason: FlushReason::Others,
1405 senders: Vec::new(),
1406 request_sender: tx.clone(),
1407 access_layer: env.access_layer.clone(),
1408 listener: WorkerListener::default(),
1409 engine_config: Arc::new(MitoConfig::default()),
1410 row_group_size: None,
1411 cache_manager: Arc::new(CacheManager::default()),
1412 manifest_ctx: manifest_ctx.clone(),
1413 index_options: IndexOptions::default(),
1414 flush_semaphore: Arc::new(Semaphore::new(2)),
1415 is_staging: false,
1416 partition_expr: None,
1417 })
1418 .collect();
1419 let task = tasks.pop().unwrap();
1421 scheduler
1422 .schedule_flush(builder.region_id(), &version_control, task)
1423 .unwrap();
1424 assert_eq!(1, scheduler.region_status.len());
1426 assert_eq!(1, job_scheduler.num_jobs());
1427 let version_data = version_control.current();
1429 assert_eq!(0, version_data.version.memtables.immutables()[0].id());
1430 let output_rxs: Vec<_> = tasks
1432 .into_iter()
1433 .map(|mut task| {
1434 let (output_tx, output_rx) = oneshot::channel();
1435 task.push_sender(OptionOutputTx::from(output_tx));
1436 scheduler
1437 .schedule_flush(builder.region_id(), &version_control, task)
1438 .unwrap();
1439 output_rx
1440 })
1441 .collect();
1442 version_control.apply_edit(
1444 Some(RegionEdit {
1445 files_to_add: Vec::new(),
1446 files_to_remove: Vec::new(),
1447 timestamp_ms: None,
1448 compaction_time_window: None,
1449 flushed_entry_id: None,
1450 flushed_sequence: None,
1451 committed_sequence: None,
1452 }),
1453 &[0],
1454 builder.file_purger(),
1455 );
1456 scheduler.on_flush_success(builder.region_id());
1457 assert_eq!(1, job_scheduler.num_jobs());
1459 assert!(scheduler.region_status.is_empty());
1461 for output_rx in output_rxs {
1462 let output = output_rx.await.unwrap().unwrap();
1463 assert_eq!(output, 0);
1464 }
1465 }
1466
1467 #[test]
1469 fn test_memtable_flat_sources_single_range_append_mode_behavior() {
1470 let metadata = metadata_for_test();
1472 let schema = to_flat_sst_arrow_schema(
1473 &metadata,
1474 &FlatSchemaOptions::from_encoding(metadata.primary_key_encoding),
1475 );
1476
1477 let capacity = 16;
1480 let pk_codec = build_primary_key_codec(&metadata);
1481 let mut converter =
1482 BulkPartConverter::new(&metadata, schema.clone(), capacity, pk_codec, true);
1483 let kvs = build_key_values_with_ts_seq_values(
1484 &metadata,
1485 "dup_key".to_string(),
1486 1,
1487 vec![1000i64, 1000i64].into_iter(),
1488 vec![Some(1.0f64), Some(2.0f64)].into_iter(),
1489 1,
1490 );
1491 converter.append_key_values(&kvs).unwrap();
1492 let part = converter.convert().unwrap();
1493
1494 let build_ranges = |append_mode: bool| -> MemtableRanges {
1497 let memtable = crate::memtable::bulk::BulkMemtable::new(
1498 1,
1499 crate::memtable::bulk::BulkMemtableConfig::default(),
1500 metadata.clone(),
1501 None,
1502 None,
1503 append_mode,
1504 MergeMode::LastRow,
1505 );
1506 memtable.write_bulk(part.clone()).unwrap();
1507 memtable.ranges(None, RangesOptions::for_flush()).unwrap()
1508 };
1509
1510 {
1512 let mem_ranges = build_ranges(false);
1513 assert_eq!(1, mem_ranges.ranges.len());
1514
1515 let options = RegionOptions {
1516 append_mode: false,
1517 merge_mode: Some(MergeMode::LastRow),
1518 ..Default::default()
1519 };
1520
1521 let flat_sources = memtable_flat_sources(
1522 schema.clone(),
1523 mem_ranges,
1524 &options,
1525 metadata.primary_key.len(),
1526 )
1527 .unwrap();
1528 assert!(flat_sources.encoded.is_empty());
1529 assert_eq!(1, flat_sources.sources.len());
1530
1531 let mut total_rows = 0usize;
1533 for (source, _sequence) in flat_sources.sources {
1534 total_rows += source
1535 .take_iter()
1536 .map(|x| x.unwrap().num_rows())
1537 .sum::<usize>();
1538 }
1539 assert_eq!(1, total_rows, "dedup should keep a single row");
1540 }
1541
1542 {
1544 let mem_ranges = build_ranges(true);
1545 assert_eq!(1, mem_ranges.ranges.len());
1546
1547 let options = RegionOptions {
1548 append_mode: true,
1549 ..Default::default()
1550 };
1551
1552 let flat_sources =
1553 memtable_flat_sources(schema, mem_ranges, &options, metadata.primary_key.len())
1554 .unwrap();
1555 assert!(flat_sources.encoded.is_empty());
1556 assert_eq!(1, flat_sources.sources.len());
1557
1558 let mut total_rows = 0usize;
1559 for (source, _sequence) in flat_sources.sources {
1560 total_rows += source
1561 .take_iter()
1562 .map(|x| x.unwrap().num_rows())
1563 .sum::<usize>();
1564 }
1565 assert_eq!(2, total_rows, "append_mode should preserve duplicates");
1566 }
1567 }
1568
1569 #[tokio::test]
1570 async fn test_schedule_pending_request_on_flush_success() {
1571 common_telemetry::init_default_ut_logging();
1572 let job_scheduler = Arc::new(VecScheduler::default());
1573 let env = SchedulerEnv::new().await.scheduler(job_scheduler.clone());
1574 let (tx, _rx) = mpsc::channel(4);
1575 let mut scheduler = env.mock_flush_scheduler();
1576 let mut builder = VersionControlBuilder::new();
1577 builder.set_memtable_builder(Arc::new(TimeSeriesMemtableBuilder::default()));
1579 let version_control = Arc::new(builder.build());
1580 let version_data = version_control.current();
1582 write_rows_to_version(&version_data.version, "host0", 0, 10);
1583 let manifest_ctx = env
1584 .mock_manifest_context(version_data.version.metadata.clone())
1585 .await;
1586 let mut tasks: Vec<_> = (0..2)
1588 .map(|_| RegionFlushTask {
1589 region_id: builder.region_id(),
1590 reason: FlushReason::Others,
1591 senders: Vec::new(),
1592 request_sender: tx.clone(),
1593 access_layer: env.access_layer.clone(),
1594 listener: WorkerListener::default(),
1595 engine_config: Arc::new(MitoConfig::default()),
1596 row_group_size: None,
1597 cache_manager: Arc::new(CacheManager::default()),
1598 manifest_ctx: manifest_ctx.clone(),
1599 index_options: IndexOptions::default(),
1600 flush_semaphore: Arc::new(Semaphore::new(2)),
1601 is_staging: false,
1602 partition_expr: None,
1603 })
1604 .collect();
1605 let task = tasks.pop().unwrap();
1607 scheduler
1608 .schedule_flush(builder.region_id(), &version_control, task)
1609 .unwrap();
1610 assert_eq!(1, scheduler.region_status.len());
1612 assert_eq!(1, job_scheduler.num_jobs());
1613 let task = tasks.pop().unwrap();
1615 scheduler
1616 .schedule_flush(builder.region_id(), &version_control, task)
1617 .unwrap();
1618 assert!(
1619 scheduler
1620 .region_status
1621 .get(&builder.region_id())
1622 .unwrap()
1623 .pending_task
1624 .is_some()
1625 );
1626
1627 let version_data = version_control.current();
1629 assert_eq!(0, version_data.version.memtables.immutables()[0].id());
1630 version_control.apply_edit(
1632 Some(RegionEdit {
1633 files_to_add: Vec::new(),
1634 files_to_remove: Vec::new(),
1635 timestamp_ms: None,
1636 compaction_time_window: None,
1637 flushed_entry_id: None,
1638 flushed_sequence: None,
1639 committed_sequence: None,
1640 }),
1641 &[0],
1642 builder.file_purger(),
1643 );
1644 write_rows_to_version(&version_data.version, "host1", 0, 10);
1645 scheduler.on_flush_success(builder.region_id());
1646 assert_eq!(2, job_scheduler.num_jobs());
1647 assert!(
1649 scheduler
1650 .region_status
1651 .get(&builder.region_id())
1652 .unwrap()
1653 .pending_task
1654 .is_none()
1655 );
1656 }
1657}