mirror of
https://github.com/facebook/rocksdb.git
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fdf882ded2
Summary: When dynamically linking two binaries together, different builds of RocksDB from two sources might cause errors. To provide a tool for user to solve the problem, the RocksDB namespace is changed to a flag which can be overridden in build time. Pull Request resolved: https://github.com/facebook/rocksdb/pull/6433 Test Plan: Build release, all and jtest. Try to build with ROCKSDB_NAMESPACE with another flag. Differential Revision: D19977691 fbshipit-source-id: aa7f2d0972e1c31d75339ac48478f34f6cfcfb3e
207 lines
7.2 KiB
C++
207 lines
7.2 KiB
C++
// Copyright (c) 2011-present, Facebook, Inc. All rights reserved.
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// This source code is licensed under both the GPLv2 (found in the
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// COPYING file in the root directory) and Apache 2.0 License
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// (found in the LICENSE.Apache file in the root directory).
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#include "memory/jemalloc_nodump_allocator.h"
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#include <string>
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#include <thread>
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#include "port/likely.h"
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#include "port/port.h"
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#include "util/string_util.h"
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namespace ROCKSDB_NAMESPACE {
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#ifdef ROCKSDB_JEMALLOC_NODUMP_ALLOCATOR
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std::atomic<extent_alloc_t*> JemallocNodumpAllocator::original_alloc_{nullptr};
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JemallocNodumpAllocator::JemallocNodumpAllocator(
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JemallocAllocatorOptions& options,
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std::unique_ptr<extent_hooks_t>&& arena_hooks, unsigned arena_index)
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: options_(options),
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arena_hooks_(std::move(arena_hooks)),
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arena_index_(arena_index),
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tcache_(&JemallocNodumpAllocator::DestroyThreadSpecificCache) {}
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int JemallocNodumpAllocator::GetThreadSpecificCache(size_t size) {
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// We always enable tcache. The only corner case is when there are a ton of
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// threads accessing with low frequency, then it could consume a lot of
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// memory (may reach # threads * ~1MB) without bringing too much benefit.
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if (options_.limit_tcache_size && (size <= options_.tcache_size_lower_bound ||
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size > options_.tcache_size_upper_bound)) {
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return MALLOCX_TCACHE_NONE;
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}
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unsigned* tcache_index = reinterpret_cast<unsigned*>(tcache_.Get());
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if (UNLIKELY(tcache_index == nullptr)) {
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// Instantiate tcache.
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tcache_index = new unsigned(0);
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size_t tcache_index_size = sizeof(unsigned);
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int ret =
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mallctl("tcache.create", tcache_index, &tcache_index_size, nullptr, 0);
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if (ret != 0) {
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// No good way to expose the error. Silently disable tcache.
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delete tcache_index;
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return MALLOCX_TCACHE_NONE;
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}
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tcache_.Reset(static_cast<void*>(tcache_index));
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}
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return MALLOCX_TCACHE(*tcache_index);
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}
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void* JemallocNodumpAllocator::Allocate(size_t size) {
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int tcache_flag = GetThreadSpecificCache(size);
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return mallocx(size, MALLOCX_ARENA(arena_index_) | tcache_flag);
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}
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void JemallocNodumpAllocator::Deallocate(void* p) {
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// Obtain tcache.
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size_t size = 0;
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if (options_.limit_tcache_size) {
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size = malloc_usable_size(p);
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}
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int tcache_flag = GetThreadSpecificCache(size);
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// No need to pass arena index to dallocx(). Jemalloc will find arena index
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// from its own metadata.
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dallocx(p, tcache_flag);
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}
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void* JemallocNodumpAllocator::Alloc(extent_hooks_t* extent, void* new_addr,
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size_t size, size_t alignment, bool* zero,
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bool* commit, unsigned arena_ind) {
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extent_alloc_t* original_alloc =
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original_alloc_.load(std::memory_order_relaxed);
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assert(original_alloc != nullptr);
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void* result = original_alloc(extent, new_addr, size, alignment, zero, commit,
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arena_ind);
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if (result != nullptr) {
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int ret = madvise(result, size, MADV_DONTDUMP);
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if (ret != 0) {
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fprintf(
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stderr,
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"JemallocNodumpAllocator failed to set MADV_DONTDUMP, error code: %d",
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ret);
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assert(false);
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}
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}
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return result;
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}
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Status JemallocNodumpAllocator::DestroyArena(unsigned arena_index) {
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assert(arena_index != 0);
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std::string key = "arena." + ToString(arena_index) + ".destroy";
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int ret = mallctl(key.c_str(), nullptr, 0, nullptr, 0);
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if (ret != 0) {
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return Status::Incomplete("Failed to destroy jemalloc arena, error code: " +
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ToString(ret));
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}
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return Status::OK();
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}
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void JemallocNodumpAllocator::DestroyThreadSpecificCache(void* ptr) {
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assert(ptr != nullptr);
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unsigned* tcache_index = static_cast<unsigned*>(ptr);
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size_t tcache_index_size = sizeof(unsigned);
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int ret __attribute__((__unused__)) =
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mallctl("tcache.destroy", nullptr, 0, tcache_index, tcache_index_size);
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// Silently ignore error.
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assert(ret == 0);
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delete tcache_index;
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}
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JemallocNodumpAllocator::~JemallocNodumpAllocator() {
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// Destroy tcache before destroying arena.
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autovector<void*> tcache_list;
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tcache_.Scrape(&tcache_list, nullptr);
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for (void* tcache_index : tcache_list) {
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DestroyThreadSpecificCache(tcache_index);
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}
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// Destroy arena. Silently ignore error.
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Status s __attribute__((__unused__)) = DestroyArena(arena_index_);
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assert(s.ok());
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}
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size_t JemallocNodumpAllocator::UsableSize(void* p,
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size_t /*allocation_size*/) const {
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return malloc_usable_size(static_cast<void*>(p));
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}
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#endif // ROCKSDB_JEMALLOC_NODUMP_ALLOCATOR
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Status NewJemallocNodumpAllocator(
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JemallocAllocatorOptions& options,
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std::shared_ptr<MemoryAllocator>* memory_allocator) {
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*memory_allocator = nullptr;
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Status unsupported = Status::NotSupported(
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"JemallocNodumpAllocator only available with jemalloc version >= 5 "
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"and MADV_DONTDUMP is available.");
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#ifndef ROCKSDB_JEMALLOC_NODUMP_ALLOCATOR
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(void)options;
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return unsupported;
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#else
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if (!HasJemalloc()) {
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return unsupported;
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}
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if (memory_allocator == nullptr) {
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return Status::InvalidArgument("memory_allocator must be non-null.");
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}
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if (options.limit_tcache_size &&
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options.tcache_size_lower_bound >= options.tcache_size_upper_bound) {
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return Status::InvalidArgument(
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"tcache_size_lower_bound larger or equal to tcache_size_upper_bound.");
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}
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// Create arena.
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unsigned arena_index = 0;
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size_t arena_index_size = sizeof(arena_index);
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int ret =
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mallctl("arenas.create", &arena_index, &arena_index_size, nullptr, 0);
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if (ret != 0) {
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return Status::Incomplete("Failed to create jemalloc arena, error code: " +
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ToString(ret));
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}
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assert(arena_index != 0);
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// Read existing hooks.
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std::string key = "arena." + ToString(arena_index) + ".extent_hooks";
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extent_hooks_t* hooks;
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size_t hooks_size = sizeof(hooks);
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ret = mallctl(key.c_str(), &hooks, &hooks_size, nullptr, 0);
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if (ret != 0) {
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JemallocNodumpAllocator::DestroyArena(arena_index);
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return Status::Incomplete("Failed to read existing hooks, error code: " +
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ToString(ret));
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}
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// Store existing alloc.
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extent_alloc_t* original_alloc = hooks->alloc;
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extent_alloc_t* expected = nullptr;
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bool success =
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JemallocNodumpAllocator::original_alloc_.compare_exchange_strong(
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expected, original_alloc);
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if (!success && original_alloc != expected) {
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JemallocNodumpAllocator::DestroyArena(arena_index);
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return Status::Incomplete("Original alloc conflict.");
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}
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// Set the custom hook.
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std::unique_ptr<extent_hooks_t> new_hooks(new extent_hooks_t(*hooks));
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new_hooks->alloc = &JemallocNodumpAllocator::Alloc;
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extent_hooks_t* hooks_ptr = new_hooks.get();
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ret = mallctl(key.c_str(), nullptr, nullptr, &hooks_ptr, sizeof(hooks_ptr));
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if (ret != 0) {
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JemallocNodumpAllocator::DestroyArena(arena_index);
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return Status::Incomplete("Failed to set custom hook, error code: " +
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ToString(ret));
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}
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// Create cache allocator.
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memory_allocator->reset(
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new JemallocNodumpAllocator(options, std::move(new_hooks), arena_index));
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return Status::OK();
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#endif // ROCKSDB_JEMALLOC_NODUMP_ALLOCATOR
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}
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} // namespace ROCKSDB_NAMESPACE
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