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b7198c3afe
Summary: This diff allows a Writer to join the next write batch group without acquiring any locks. Waiting is performed via a per-Writer mutex, so all of the non-leader writers never need to acquire the db mutex. It is now possible to join a write batch group after the leader has been chosen but before the batch has been constructed. This diff doesn't increase parallelism, but reduces synchronization overheads. For some CPU-bound workloads (no WAL, RAM-sized working set) this can substantially reduce contention on the db mutex in a multi-threaded environment. With T=8 N=500000 in a CPU-bound scenario (see the test plan) this is good for a 33% perf win. Not all scenarios see such a win, but none show a loss. This code is slightly faster even for the single-threaded case (about 2% for the CPU-bound scenario below). Test Plan: 1. unit tests 2. COMPILE_WITH_TSAN=1 make check 3. stress high-contention scenarios with db_bench -benchmarks=fillrandom -threads=$T -batch_size=1 -memtablerep=skip_list -value_size=0 --num=$N -level0_slowdown_writes_trigger=9999 -level0_stop_writes_trigger=9999 -disable_auto_compactions --max_write_buffer_number=8 -max_background_flushes=8 --disable_wal --write_buffer_size=160000000 Reviewers: sdong, igor, rven, ljin, yhchiang Subscribers: dhruba Differential Revision: https://reviews.facebook.net/D43887
150 lines
5.3 KiB
C++
150 lines
5.3 KiB
C++
// Copyright (c) 2013, Facebook, Inc. All rights reserved.
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// This source code is licensed under the BSD-style license found in the
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// LICENSE file in the root directory of this source tree. An additional grant
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// of patent rights can be found in the PATENTS file in the same directory.
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#pragma once
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#include <assert.h>
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#include <stdint.h>
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#include <atomic>
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#include <condition_variable>
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#include <mutex>
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#include <type_traits>
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#include "rocksdb/status.h"
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#include "db/write_batch_internal.h"
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#include "util/autovector.h"
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#include "util/instrumented_mutex.h"
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namespace rocksdb {
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class WriteThread {
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public:
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// Information kept for every waiting writer.
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struct Writer {
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WriteBatch* batch;
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bool sync;
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bool disableWAL;
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bool in_batch_group;
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bool done;
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bool has_callback;
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Status status;
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bool made_waitable; // records lazy construction of mutex and cv
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bool joined; // read/write only under JoinMutex() (or pre-link)
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std::aligned_storage<sizeof(std::mutex)>::type join_mutex_bytes;
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std::aligned_storage<sizeof(std::condition_variable)>::type join_cv_bytes;
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Writer* link_older; // read/write only before linking, or as leader
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Writer* link_newer; // lazy, read/write only before linking, or as leader
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Writer()
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: batch(nullptr),
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sync(false),
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disableWAL(false),
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in_batch_group(false),
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done(false),
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has_callback(false),
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made_waitable(false),
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joined(false),
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link_older(nullptr),
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link_newer(nullptr) {}
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~Writer() {
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if (made_waitable) {
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JoinMutex().~mutex();
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JoinCV().~condition_variable();
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}
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}
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void CreateMutex() {
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assert(!joined);
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if (!made_waitable) {
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made_waitable = true;
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new (&join_mutex_bytes) std::mutex;
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new (&join_cv_bytes) std::condition_variable;
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}
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}
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// No other mutexes may be acquired while holding JoinMutex(), it is
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// always last in the order
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std::mutex& JoinMutex() {
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assert(made_waitable);
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return *static_cast<std::mutex*>(static_cast<void*>(&join_mutex_bytes));
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}
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std::condition_variable& JoinCV() {
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assert(made_waitable);
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return *static_cast<std::condition_variable*>(
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static_cast<void*>(&join_cv_bytes));
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}
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};
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WriteThread() : newest_writer_(nullptr) {}
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// IMPORTANT: None of the methods in this class rely on the db mutex
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// for correctness. All of the methods except JoinBatchGroup and
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// EnterUnbatched may be called either with or without the db mutex held.
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// Correctness is maintained by ensuring that only a single thread is
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// a leader at a time.
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// Registers w as ready to become part of a batch group, and blocks
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// until some other thread has completed the write (in which case
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// w->done will be set to true) or this write has become the leader
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// of a batch group (w->done will remain unset). The db mutex SHOULD
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// NOT be held when calling this function, because it will block.
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// If !w->done then JoinBatchGroup should be followed by a call to
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// EnterAsBatchGroupLeader and ExitAsBatchGroupLeader.
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//
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// Writer* w: Writer to be executed as part of a batch group
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void JoinBatchGroup(Writer* w);
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// Constructs a write batch group led by leader, which should be a
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// Writer passed to JoinBatchGroup on the current thread.
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//
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// Writer* leader: Writer passed to JoinBatchGroup, but !done
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// Writer** last_writer: Out-param for use by ExitAsBatchGroupLeader
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// autovector<WriteBatch*>* write_batch_group: Out-param of group members
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// returns: Total batch group size
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size_t EnterAsBatchGroupLeader(Writer* leader, Writer** last_writer,
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autovector<WriteBatch*>* write_batch_group);
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// Unlinks the Writer-s in a batch group, wakes up the non-leaders, and
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// wakes up the next leader (if any).
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//
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// Writer* leader: From EnterAsBatchGroupLeader
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// Writer* last_writer: Value of out-param of EnterAsBatchGroupLeader
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// Status status: Status of write operation
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void ExitAsBatchGroupLeader(Writer* leader, Writer* last_writer,
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Status status);
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// Waits for all preceding writers (unlocking mu while waiting), then
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// registers w as the currently proceeding writer.
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//
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// Writer* w: A Writer not eligible for batching
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// InstrumentedMutex* mu: The db mutex, to unlock while waiting
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// REQUIRES: db mutex held
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void EnterUnbatched(Writer* w, InstrumentedMutex* mu);
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// Completes a Writer begun with EnterUnbatched, unblocking subsequent
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// writers.
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void ExitUnbatched(Writer* w);
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private:
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// Points to the newest pending Writer. Only leader can remove
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// elements, adding can be done lock-free by anybody
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std::atomic<Writer*> newest_writer_;
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void Await(Writer* w);
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void MarkJoined(Writer* w);
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// Links w into the newest_writer_ list. Sets *wait_needed to false
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// if w was linked directly into the leader position, true otherwise.
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// Safe to call from multiple threads without external locking.
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void LinkOne(Writer* w, bool* wait_needed);
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// Computes any missing link_newer links. Should not be called
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// concurrently with itself.
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void CreateMissingNewerLinks(Writer* head);
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};
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} // namespace rocksdb
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