rocksdb/util/io_posix.h
krad f89caa127b Direct IO capability for RocksDB
Summary:
This patch adds direct IO capability to RocksDB Env.

The direct IO capability is required for persistent cache since NVM is best
accessed as 4K direct IO. SSDs can leverage direct IO for reading.

Direct IO requires the offset and size be sector size aligned, and memory to
be kernel page aligned. Since neither RocksDB/Persistent read cache data
layout is aligned to sector size, the code can accommodate reading unaligned IO size
(or unaligned memory) at the cost of an alloc/copy.

The write code path expects the size and memory to be aligned.

Test Plan: Run RocksDB unit tests

Reviewers: sdong

Subscribers: andrewkr, dhruba, leveldb

Differential Revision: https://reviews.facebook.net/D57393
2016-05-23 12:27:27 -07:00

229 lines
7.6 KiB
C++

// Copyright (c) 2011-present, Facebook, Inc. All rights reserved.
// This source code is licensed under the BSD-style license found in the
// LICENSE file in the root directory of this source tree. An additional grant
// of patent rights can be found in the PATENTS file in the same directory.
//
// Copyright (c) 2011 The LevelDB Authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file. See the AUTHORS file for names of contributors.
#pragma once
#include <unistd.h>
#include <atomic>
#include "rocksdb/env.h"
// For non linux platform, the following macros are used only as place
// holder.
#if !(defined OS_LINUX) && !(defined CYGWIN)
#define POSIX_FADV_NORMAL 0 /* [MC1] no further special treatment */
#define POSIX_FADV_RANDOM 1 /* [MC1] expect random page refs */
#define POSIX_FADV_SEQUENTIAL 2 /* [MC1] expect sequential page refs */
#define POSIX_FADV_WILLNEED 3 /* [MC1] will need these pages */
#define POSIX_FADV_DONTNEED 4 /* [MC1] dont need these pages */
#endif
namespace rocksdb {
static Status IOError(const std::string& context, int err_number) {
return Status::IOError(context, strerror(err_number));
}
class PosixHelper {
public:
static size_t GetUniqueIdFromFile(int fd, char* id, size_t max_size);
};
class PosixSequentialFile : public SequentialFile {
private:
std::string filename_;
FILE* file_;
int fd_;
bool use_os_buffer_;
public:
PosixSequentialFile(const std::string& fname, FILE* f,
const EnvOptions& options);
virtual ~PosixSequentialFile();
virtual Status Read(size_t n, Slice* result, char* scratch) override;
virtual Status Skip(uint64_t n) override;
virtual Status InvalidateCache(size_t offset, size_t length) override;
};
class PosixDirectIOSequentialFile : public SequentialFile {
public:
explicit PosixDirectIOSequentialFile(const std::string& filename, int fd)
: filename_(filename), fd_(fd) {}
virtual ~PosixDirectIOSequentialFile() {}
Status Read(size_t n, Slice* result, char* scratch) override;
Status Skip(uint64_t n) override;
Status InvalidateCache(size_t offset, size_t length) override;
private:
const std::string filename_;
int fd_ = -1;
std::atomic<size_t> off_{0}; // read offset
};
class PosixRandomAccessFile : public RandomAccessFile {
protected:
std::string filename_;
int fd_;
bool use_os_buffer_;
public:
PosixRandomAccessFile(const std::string& fname, int fd,
const EnvOptions& options);
virtual ~PosixRandomAccessFile();
virtual Status Read(uint64_t offset, size_t n, Slice* result,
char* scratch) const override;
#if defined(OS_LINUX) || defined(OS_MACOSX)
virtual size_t GetUniqueId(char* id, size_t max_size) const override;
#endif
virtual void Hint(AccessPattern pattern) override;
virtual Status InvalidateCache(size_t offset, size_t length) override;
};
// Direct IO random access file direct IO implementation
class PosixDirectIORandomAccessFile : public PosixRandomAccessFile {
public:
explicit PosixDirectIORandomAccessFile(const std::string& filename, int fd)
: PosixRandomAccessFile(filename, fd, EnvOptions()) {}
virtual ~PosixDirectIORandomAccessFile() {}
Status Read(uint64_t offset, size_t n, Slice* result,
char* scratch) const override;
virtual void Hint(AccessPattern pattern) override {}
Status InvalidateCache(size_t offset, size_t length) override {
return Status::OK();
}
};
class PosixWritableFile : public WritableFile {
protected:
const std::string filename_;
int fd_;
uint64_t filesize_;
#ifdef ROCKSDB_FALLOCATE_PRESENT
bool allow_fallocate_;
bool fallocate_with_keep_size_;
#endif
public:
explicit PosixWritableFile(const std::string& fname, int fd,
const EnvOptions& options);
virtual ~PosixWritableFile();
// Means Close() will properly take care of truncate
// and it does not need any additional information
virtual Status Truncate(uint64_t size) override { return Status::OK(); }
virtual Status Close() override;
virtual Status Append(const Slice& data) override;
virtual Status Flush() override;
virtual Status Sync() override;
virtual Status Fsync() override;
virtual bool IsSyncThreadSafe() const override;
virtual uint64_t GetFileSize() override;
virtual Status InvalidateCache(size_t offset, size_t length) override;
#ifdef ROCKSDB_FALLOCATE_PRESENT
virtual Status Allocate(uint64_t offset, uint64_t len) override;
virtual Status RangeSync(uint64_t offset, uint64_t nbytes) override;
virtual size_t GetUniqueId(char* id, size_t max_size) const override;
#endif
};
class PosixDirectIOWritableFile : public PosixWritableFile {
public:
explicit PosixDirectIOWritableFile(const std::string& filename, int fd)
: PosixWritableFile(filename, fd, EnvOptions()) {}
virtual ~PosixDirectIOWritableFile() {}
bool UseOSBuffer() const override { return false; }
size_t GetRequiredBufferAlignment() const override { return 4 * 1024; }
Status Append(const Slice& data) override;
Status PositionedAppend(const Slice& data, uint64_t offset) override;
bool UseDirectIO() const override { return true; }
Status InvalidateCache(size_t offset, size_t length) override {
return Status::OK();
}
};
class PosixMmapReadableFile : public RandomAccessFile {
private:
int fd_;
std::string filename_;
void* mmapped_region_;
size_t length_;
public:
PosixMmapReadableFile(const int fd, const std::string& fname, void* base,
size_t length, const EnvOptions& options);
virtual ~PosixMmapReadableFile();
virtual Status Read(uint64_t offset, size_t n, Slice* result,
char* scratch) const override;
virtual Status InvalidateCache(size_t offset, size_t length) override;
};
class PosixMmapFile : public WritableFile {
private:
std::string filename_;
int fd_;
size_t page_size_;
size_t map_size_; // How much extra memory to map at a time
char* base_; // The mapped region
char* limit_; // Limit of the mapped region
char* dst_; // Where to write next (in range [base_,limit_])
char* last_sync_; // Where have we synced up to
uint64_t file_offset_; // Offset of base_ in file
#ifdef ROCKSDB_FALLOCATE_PRESENT
bool allow_fallocate_; // If false, fallocate calls are bypassed
bool fallocate_with_keep_size_;
#endif
// Roundup x to a multiple of y
static size_t Roundup(size_t x, size_t y) { return ((x + y - 1) / y) * y; }
size_t TruncateToPageBoundary(size_t s) {
s -= (s & (page_size_ - 1));
assert((s % page_size_) == 0);
return s;
}
Status MapNewRegion();
Status UnmapCurrentRegion();
Status Msync();
public:
PosixMmapFile(const std::string& fname, int fd, size_t page_size,
const EnvOptions& options);
~PosixMmapFile();
// Means Close() will properly take care of truncate
// and it does not need any additional information
virtual Status Truncate(uint64_t size) override { return Status::OK(); }
virtual Status Close() override;
virtual Status Append(const Slice& data) override;
virtual Status Flush() override;
virtual Status Sync() override;
virtual Status Fsync() override;
virtual uint64_t GetFileSize() override;
virtual Status InvalidateCache(size_t offset, size_t length) override;
#ifdef ROCKSDB_FALLOCATE_PRESENT
virtual Status Allocate(uint64_t offset, uint64_t len) override;
#endif
};
class PosixDirectory : public Directory {
public:
explicit PosixDirectory(int fd) : fd_(fd) {}
~PosixDirectory();
virtual Status Fsync() override;
private:
int fd_;
};
} // namespace rocksdb