233 lines
5.8 KiB
C++
233 lines
5.8 KiB
C++
// Copyright (C) 20011 Red Hat, Inc. All rights reserved.
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//
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// This file is part of the thin-provisioning-tools source.
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//
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// thin-provisioning-tools is free software: you can redistribute it
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// and/or modify it under the terms of the GNU General Public License
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// as published by the Free Software Foundation, either version 3 of
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// the License, or (at your option) any later version.
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//
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// thin-provisioning-tools is distributed in the hope that it will be
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// useful, but WITHOUT ANY WARRANTY; without even the implied warranty
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// of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License along
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// with thin-provisioning-tools. If not, see
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// <http://www.gnu.org/licenses/>.
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#ifndef BLOCK_H
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#define BLOCK_H
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#include "cache.h"
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#include <stdint.h>
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#include <map>
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#include <vector>
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#include <boost/noncopyable.hpp>
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#include <boost/optional.hpp>
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#include <boost/shared_ptr.hpp>
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#include <string.h>
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//----------------------------------------------------------------
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namespace persistent_data {
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uint32_t const MD_BLOCK_SIZE = 4096;
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typedef uint64_t block_address;
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template <uint32_t BlockSize>
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class block_io : private boost::noncopyable {
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public:
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typedef boost::shared_ptr<block_io> ptr;
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typedef unsigned char buffer[BlockSize];
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typedef unsigned char const const_buffer[BlockSize];
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block_io(std::string const &path, block_address nr_blocks, bool writeable = false);
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~block_io();
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block_address get_nr_blocks() const {
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return nr_blocks_;
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}
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void read_buffer(block_address location, buffer &buf) const;
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void write_buffer(block_address location, const_buffer &buf);
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private:
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int fd_;
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block_address nr_blocks_;
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bool writeable_;
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};
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template <uint32_t BlockSize = MD_BLOCK_SIZE>
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class block_manager : private boost::noncopyable {
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public:
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typedef boost::shared_ptr<block_manager> ptr;
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block_manager(std::string const &path,
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block_address nr_blocks,
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unsigned max_concurrent_locks,
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bool writeable = false);
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typedef unsigned char buffer[BlockSize];
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typedef unsigned char const const_buffer[BlockSize];
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class validator {
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public:
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typedef boost::shared_ptr<validator> ptr;
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virtual ~validator() {}
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virtual void check(const_buffer &b, block_address location) const = 0;
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virtual void prepare(buffer &b, block_address location) const = 0;
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};
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class noop_validator : public validator {
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public:
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void check(const_buffer &b, block_address location) const {}
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void prepare(buffer &b, block_address location) const {}
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};
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enum block_type {
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BT_SUPERBLOCK,
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BT_NORMAL
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};
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struct block {
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typedef boost::shared_ptr<block> ptr;
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block(typename block_io<BlockSize>::ptr io,
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block_address location,
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block_type bt,
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typename validator::ptr v,
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bool zero = false);
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~block();
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void check_read_lockable() const {
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// FIXME: finish
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}
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void check_write_lockable() const {
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// FIXME: finish
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}
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void flush();
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typename block_io<BlockSize>::ptr io_;
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block_address location_;
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buffer data_;
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typename validator::ptr validator_;
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block_type bt_;
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bool dirty_;
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};
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typedef typename block::ptr block_ptr;
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class read_ref {
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public:
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read_ref(block_manager<BlockSize> const &bm,
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block_ptr b);
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read_ref(read_ref const &rhs);
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virtual ~read_ref();
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read_ref const &operator =(read_ref const &rhs);
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block_address get_location() const;
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const_buffer &data() const;
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protected:
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block_manager<BlockSize> const &bm_;
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block_ptr block_;
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unsigned *holders_;
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};
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// Inherited from read_ref, since you can read a block that's write
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// locked.
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class write_ref : public read_ref {
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public:
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write_ref(block_manager<BlockSize> const &bm,
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typename block::ptr b);
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using read_ref::data;
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buffer &data();
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};
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// Locking methods
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read_ref
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read_lock(block_address location,
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typename validator::ptr v =
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typename validator::ptr(new noop_validator())) const;
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write_ref
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write_lock(block_address location,
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typename validator::ptr v =
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typename validator::ptr(new noop_validator()));
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write_ref
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write_lock_zero(block_address location,
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typename validator::ptr v =
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typename validator::ptr(new noop_validator()));
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// The super block is the one that should be written last.
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// Unlocking this block triggers the following events:
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//
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// i) synchronous write of all dirty blocks _except_ the
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// superblock.
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//
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// ii) synchronous write of superblock
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//
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// If any locks are held at the time of the superblock
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// being unlocked then an exception will be thrown.
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write_ref superblock(block_address b,
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typename validator::ptr v =
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typename validator::ptr(new noop_validator()));
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write_ref superblock_zero(block_address b,
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typename validator::ptr v =
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typename validator::ptr(new noop_validator()));
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block_address get_nr_blocks() const;
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void flush() const;
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private:
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void check(block_address b) const;
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void write_block(block_ptr b) const;
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enum lock_type {
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READ_LOCK,
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WRITE_LOCK
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};
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struct cache_traits {
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typedef typename block::ptr value_type;
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typedef block_address key_type;
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static key_type get_key(value_type const &v) {
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return v->location_;
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}
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};
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typename block_io<BlockSize>::ptr io_;
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mutable base::cache<cache_traits> cache_;
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// FIXME: we need a dirty list as well as a cache
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typedef std::map<block_address, std::pair<lock_type, unsigned> > held_map;
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mutable held_map held_locks_;
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};
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// A little utility to help build validators
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inline block_manager<>::validator::ptr
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mk_validator(block_manager<>::validator *v) {
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return block_manager<>::validator::ptr(v);
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}
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}
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#include "block.tcc"
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//----------------------------------------------------------------
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#endif
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