Add event listener support on remote compactor side (#9821)
Summary: So the user is able to set event listener on the compactor side. Pull Request resolved: https://github.com/facebook/rocksdb/pull/9821 Test Plan: unittest added Reviewed By: ajkr Differential Revision: D35485388 Pulled By: jay-zhuang fbshipit-source-id: 669d8a3aaee012b75b940470306756c03ffa09b2
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@ -18,6 +18,7 @@
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* Added an option to dynamically charge an updating estimated memory usage of block-based table reader to block cache if block cache available. To enable this feature, set `BlockBasedTableOptions::reserve_table_reader_memory = true`.
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* Add new stat ASYNC_READ_BYTES that calculates number of bytes read during async read call and users can check if async code path is being called by RocksDB internal automatic prefetching for sequential reads.
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* Enable async prefetching if ReadOptions.readahead_size is set along with ReadOptions.async_io in FilePrefetchBuffer.
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* Add event listener support on remote compaction compactor side.
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### Behavior changes
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* Disallow usage of commit-time-write-batch for write-prepared/write-unprepared transactions if TransactionOptions::use_only_the_last_commit_time_batch_for_recovery is false to prevent two (or more) uncommitted versions of the same key in the database. Otherwise, bottommost compaction may violate the internal key uniqueness invariant of SSTs if the sequence numbers of both internal keys are zeroed out (#9794).
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@ -1251,7 +1251,7 @@ void CompactionJob::NotifyOnSubcompactionBegin(
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if (shutting_down_->load(std::memory_order_acquire)) {
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return;
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}
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if (c->is_manual_compaction() &&
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if (c->is_manual_compaction() && manual_compaction_paused_ &&
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manual_compaction_paused_->load(std::memory_order_acquire) > 0) {
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return;
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}
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@ -12,13 +12,16 @@ namespace ROCKSDB_NAMESPACE {
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class MyTestCompactionService : public CompactionService {
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public:
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MyTestCompactionService(std::string db_path, Options& options,
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std::shared_ptr<Statistics>& statistics)
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MyTestCompactionService(
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std::string db_path, Options& options,
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std::shared_ptr<Statistics>& statistics,
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std::vector<std::shared_ptr<EventListener>>& listeners)
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: db_path_(std::move(db_path)),
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options_(options),
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statistics_(statistics),
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start_info_("na", "na", "na", 0, Env::TOTAL),
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wait_info_("na", "na", "na", 0, Env::TOTAL) {}
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wait_info_("na", "na", "na", 0, Env::TOTAL),
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listeners_(listeners) {}
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static const char* kClassName() { return "MyTestCompactionService"; }
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@ -71,6 +74,9 @@ class MyTestCompactionService : public CompactionService {
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options_override.table_factory = options_.table_factory;
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options_override.sst_partitioner_factory = options_.sst_partitioner_factory;
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options_override.statistics = statistics_;
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if (!listeners_.empty()) {
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options_override.listeners = listeners_;
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}
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Status s = DB::OpenAndCompact(
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db_path_, db_path_ + "/" + ROCKSDB_NAMESPACE::ToString(info.job_id),
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@ -129,6 +135,7 @@ class MyTestCompactionService : public CompactionService {
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CompactionServiceJobStatus::kFailure;
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bool is_override_wait_result_ = false;
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std::string override_wait_result_;
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std::vector<std::shared_ptr<EventListener>> listeners_;
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};
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class CompactionServiceTest : public DBTestBase {
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@ -144,7 +151,7 @@ class CompactionServiceTest : public DBTestBase {
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compactor_statistics_ = CreateDBStatistics();
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compaction_service_ = std::make_shared<MyTestCompactionService>(
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dbname_, *options, compactor_statistics_);
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dbname_, *options, compactor_statistics_, remote_listeners);
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options->compaction_service = compaction_service_;
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DestroyAndReopen(*options);
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}
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@ -192,6 +199,8 @@ class CompactionServiceTest : public DBTestBase {
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}
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}
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std::vector<std::shared_ptr<EventListener>> remote_listeners;
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private:
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std::shared_ptr<Statistics> compactor_statistics_;
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std::shared_ptr<Statistics> primary_statistics_;
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@ -685,6 +694,88 @@ TEST_F(CompactionServiceTest, FallbackLocalManual) {
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VerifyTestData();
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}
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TEST_F(CompactionServiceTest, RemoteEventListener) {
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class RemoteEventListenerTest : public EventListener {
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public:
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const char* Name() const override { return "RemoteEventListenerTest"; }
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void OnSubcompactionBegin(const SubcompactionJobInfo& info) override {
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auto result = on_going_compactions.emplace(info.job_id);
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ASSERT_TRUE(result.second); // make sure there's no duplication
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compaction_num++;
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EventListener::OnSubcompactionBegin(info);
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}
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void OnSubcompactionCompleted(const SubcompactionJobInfo& info) override {
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auto num = on_going_compactions.erase(info.job_id);
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ASSERT_TRUE(num == 1); // make sure the compaction id exists
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EventListener::OnSubcompactionCompleted(info);
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}
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void OnTableFileCreated(const TableFileCreationInfo& info) override {
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ASSERT_EQ(on_going_compactions.count(info.job_id), 1);
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file_created++;
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EventListener::OnTableFileCreated(info);
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}
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void OnTableFileCreationStarted(
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const TableFileCreationBriefInfo& info) override {
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ASSERT_EQ(on_going_compactions.count(info.job_id), 1);
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file_creation_started++;
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EventListener::OnTableFileCreationStarted(info);
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}
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bool ShouldBeNotifiedOnFileIO() override {
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file_io_notified++;
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return EventListener::ShouldBeNotifiedOnFileIO();
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}
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std::atomic_uint64_t file_io_notified{0};
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std::atomic_uint64_t file_creation_started{0};
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std::atomic_uint64_t file_created{0};
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std::set<int> on_going_compactions; // store the job_id
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std::atomic_uint64_t compaction_num{0};
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};
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auto listener = new RemoteEventListenerTest();
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remote_listeners.emplace_back(listener);
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Options options = CurrentOptions();
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ReopenWithCompactionService(&options);
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for (int i = 0; i < 20; i++) {
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for (int j = 0; j < 10; j++) {
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int key_id = i * 10 + j;
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ASSERT_OK(Put(Key(key_id), "value" + ToString(key_id)));
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}
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ASSERT_OK(Flush());
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}
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for (int i = 0; i < 10; i++) {
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for (int j = 0; j < 10; j++) {
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int key_id = i * 20 + j * 2;
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ASSERT_OK(Put(Key(key_id), "value_new" + ToString(key_id)));
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}
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ASSERT_OK(Flush());
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}
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ASSERT_OK(dbfull()->TEST_WaitForCompact());
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// check the events are triggered
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ASSERT_TRUE(listener->file_io_notified > 0);
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ASSERT_TRUE(listener->file_creation_started > 0);
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ASSERT_TRUE(listener->file_created > 0);
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ASSERT_TRUE(listener->compaction_num > 0);
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ASSERT_TRUE(listener->on_going_compactions.empty());
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// verify result
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for (int i = 0; i < 200; i++) {
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auto result = Get(Key(i));
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if (i % 2) {
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ASSERT_EQ(result, "value" + ToString(i));
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} else {
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ASSERT_EQ(result, "value_new" + ToString(i));
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}
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}
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}
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} // namespace ROCKSDB_NAMESPACE
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int main(int argc, char** argv) {
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@ -825,6 +825,7 @@ Status DB::OpenAndCompact(
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override_options.table_factory;
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compaction_input.column_family.options.sst_partitioner_factory =
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override_options.sst_partitioner_factory;
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compaction_input.db_options.listeners = override_options.listeners;
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std::vector<ColumnFamilyDescriptor> column_families;
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column_families.push_back(compaction_input.column_family);
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@ -1932,6 +1932,14 @@ struct CompactionServiceOptionsOverride {
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std::shared_ptr<TableFactory> table_factory;
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std::shared_ptr<SstPartitionerFactory> sst_partitioner_factory = nullptr;
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// Only subsets of events are triggered in remote compaction worker, like:
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// `OnTableFileCreated`, `OnTableFileCreationStarted`,
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// `ShouldBeNotifiedOnFileIO` `OnSubcompactionBegin`,
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// `OnSubcompactionCompleted`, etc. Worth mentioning, `OnCompactionBegin` and
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// `OnCompactionCompleted` won't be triggered. They will be triggered on the
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// primary DB side.
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std::vector<std::shared_ptr<EventListener>> listeners;
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// statistics is used to collect DB operation metrics, the metrics won't be
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// returned to CompactionService primary host, to collect that, the user needs
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// to set it here.
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