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95bf302189
Summary: The change to `make_unique<char[]>` in https://github.com/facebook/rocksdb/issues/10810 inadvertently started initializing data in Arena blocks, which could lead to increased memory use due to (at least on our implementation) force-mapping pages as a result. This change goes back to `new char[]` while keeping all the other good parts of https://github.com/facebook/rocksdb/issues/10810. Pull Request resolved: https://github.com/facebook/rocksdb/pull/11012 Test Plan: unit test added (fails on Linux before fix) Reviewed By: anand1976 Differential Revision: D41658893 Pulled By: pdillinger fbshipit-source-id: 267b7dccfadaeeb1be767d43c602a6abb0e71cd0
171 lines
5.3 KiB
C++
171 lines
5.3 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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//
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// Copyright (c) 2011 The LevelDB Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file. See the AUTHORS file for names of contributors.
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#include "memory/arena.h"
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#include <algorithm>
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#include "logging/logging.h"
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#include "port/malloc.h"
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#include "port/port.h"
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#include "rocksdb/env.h"
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#include "test_util/sync_point.h"
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#include "util/string_util.h"
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namespace ROCKSDB_NAMESPACE {
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size_t Arena::OptimizeBlockSize(size_t block_size) {
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// Make sure block_size is in optimal range
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block_size = std::max(Arena::kMinBlockSize, block_size);
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block_size = std::min(Arena::kMaxBlockSize, block_size);
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// make sure block_size is the multiple of kAlignUnit
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if (block_size % kAlignUnit != 0) {
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block_size = (1 + block_size / kAlignUnit) * kAlignUnit;
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}
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return block_size;
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}
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Arena::Arena(size_t block_size, AllocTracker* tracker, size_t huge_page_size)
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: kBlockSize(OptimizeBlockSize(block_size)), tracker_(tracker) {
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assert(kBlockSize >= kMinBlockSize && kBlockSize <= kMaxBlockSize &&
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kBlockSize % kAlignUnit == 0);
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TEST_SYNC_POINT_CALLBACK("Arena::Arena:0", const_cast<size_t*>(&kBlockSize));
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alloc_bytes_remaining_ = sizeof(inline_block_);
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blocks_memory_ += alloc_bytes_remaining_;
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aligned_alloc_ptr_ = inline_block_;
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unaligned_alloc_ptr_ = inline_block_ + alloc_bytes_remaining_;
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if (MemMapping::kHugePageSupported) {
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hugetlb_size_ = huge_page_size;
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if (hugetlb_size_ && kBlockSize > hugetlb_size_) {
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hugetlb_size_ = ((kBlockSize - 1U) / hugetlb_size_ + 1U) * hugetlb_size_;
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}
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}
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if (tracker_ != nullptr) {
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tracker_->Allocate(kInlineSize);
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}
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}
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Arena::~Arena() {
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if (tracker_ != nullptr) {
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assert(tracker_->is_freed());
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tracker_->FreeMem();
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}
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}
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char* Arena::AllocateFallback(size_t bytes, bool aligned) {
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if (bytes > kBlockSize / 4) {
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++irregular_block_num;
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// Object is more than a quarter of our block size. Allocate it separately
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// to avoid wasting too much space in leftover bytes.
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return AllocateNewBlock(bytes);
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}
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// We waste the remaining space in the current block.
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size_t size = 0;
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char* block_head = nullptr;
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if (MemMapping::kHugePageSupported && hugetlb_size_ > 0) {
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size = hugetlb_size_;
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block_head = AllocateFromHugePage(size);
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}
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if (!block_head) {
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size = kBlockSize;
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block_head = AllocateNewBlock(size);
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}
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alloc_bytes_remaining_ = size - bytes;
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if (aligned) {
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aligned_alloc_ptr_ = block_head + bytes;
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unaligned_alloc_ptr_ = block_head + size;
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return block_head;
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} else {
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aligned_alloc_ptr_ = block_head;
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unaligned_alloc_ptr_ = block_head + size - bytes;
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return unaligned_alloc_ptr_;
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}
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}
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char* Arena::AllocateFromHugePage(size_t bytes) {
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MemMapping mm = MemMapping::AllocateHuge(bytes);
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auto addr = static_cast<char*>(mm.Get());
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if (addr) {
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huge_blocks_.push_back(std::move(mm));
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blocks_memory_ += bytes;
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if (tracker_ != nullptr) {
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tracker_->Allocate(bytes);
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}
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}
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return addr;
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}
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char* Arena::AllocateAligned(size_t bytes, size_t huge_page_size,
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Logger* logger) {
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if (MemMapping::kHugePageSupported && hugetlb_size_ > 0 &&
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huge_page_size > 0 && bytes > 0) {
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// Allocate from a huge page TLB table.
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size_t reserved_size =
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((bytes - 1U) / huge_page_size + 1U) * huge_page_size;
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assert(reserved_size >= bytes);
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char* addr = AllocateFromHugePage(reserved_size);
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if (addr == nullptr) {
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ROCKS_LOG_WARN(logger,
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"AllocateAligned fail to allocate huge TLB pages: %s",
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errnoStr(errno).c_str());
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// fail back to malloc
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} else {
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return addr;
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}
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}
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size_t current_mod =
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reinterpret_cast<uintptr_t>(aligned_alloc_ptr_) & (kAlignUnit - 1);
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size_t slop = (current_mod == 0 ? 0 : kAlignUnit - current_mod);
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size_t needed = bytes + slop;
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char* result;
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if (needed <= alloc_bytes_remaining_) {
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result = aligned_alloc_ptr_ + slop;
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aligned_alloc_ptr_ += needed;
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alloc_bytes_remaining_ -= needed;
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} else {
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// AllocateFallback always returns aligned memory
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result = AllocateFallback(bytes, true /* aligned */);
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}
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assert((reinterpret_cast<uintptr_t>(result) & (kAlignUnit - 1)) == 0);
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return result;
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}
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char* Arena::AllocateNewBlock(size_t block_bytes) {
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// NOTE: std::make_unique zero-initializes the block so is not appropriate
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// here
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char* block = new char[block_bytes];
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blocks_.push_back(std::unique_ptr<char[]>(block));
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size_t allocated_size;
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#ifdef ROCKSDB_MALLOC_USABLE_SIZE
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allocated_size = malloc_usable_size(block);
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#ifndef NDEBUG
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// It's hard to predict what malloc_usable_size() returns.
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// A callback can allow users to change the costed size.
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std::pair<size_t*, size_t*> pair(&allocated_size, &block_bytes);
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TEST_SYNC_POINT_CALLBACK("Arena::AllocateNewBlock:0", &pair);
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#endif // NDEBUG
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#else
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allocated_size = block_bytes;
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#endif // ROCKSDB_MALLOC_USABLE_SIZE
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blocks_memory_ += allocated_size;
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if (tracker_ != nullptr) {
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tracker_->Allocate(allocated_size);
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}
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return block;
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}
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} // namespace ROCKSDB_NAMESPACE
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