439 lines
10 KiB
C++
439 lines
10 KiB
C++
// Copyright (C) 2011 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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#include "thin-provisioning/file_utils.h"
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#include "thin-provisioning/metadata.h"
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#include "thin-provisioning/metadata_checker.h"
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using namespace persistent_data;
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using namespace thin_provisioning;
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//----------------------------------------------------------------
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#if 0
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void
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metadata_damage::set_message(std::string const &message)
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{
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message_ = message;
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}
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std::string const &
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metadata_damage::get_message() const
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{
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return message_;
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}
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//--------------------------------
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void
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super_block_corruption::visit(metadata_damage_visitor &visitor) const
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{
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visitor.visit(*this);
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}
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bool
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super_block_corruption::operator ==(super_block_corruption const &rhs) const
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{
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return true;
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}
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//--------------------------------
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missing_device_details::missing_device_details(range64 missing)
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: missing_(missing)
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{
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}
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void
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missing_device_details::visit(metadata_damage_visitor &visitor) const
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{
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visitor.visit(*this);
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}
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bool
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missing_device_details::operator ==(missing_device_details const &rhs) const
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{
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return missing_ == rhs.missing_;
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}
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//--------------------------------
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missing_devices::missing_devices(range64 missing)
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: missing_(missing)
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{
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}
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void
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missing_devices::visit(metadata_damage_visitor &visitor) const
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{
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visitor.visit(*this);
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}
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bool
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missing_devices::operator ==(missing_devices const &rhs) const
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{
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return missing_ == rhs.missing_;
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}
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//--------------------------------
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missing_mappings::missing_mappings(uint64_t dev, range64 missing)
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: dev_(dev),
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missing_(missing)
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{
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}
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void
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missing_mappings::visit(metadata_damage_visitor &visitor) const
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{
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visitor.visit(*this);
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}
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bool
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missing_mappings::operator ==(missing_mappings const &rhs) const
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{
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return dev_ == rhs.dev_ && missing_ == rhs.missing_;
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}
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//--------------------------------
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bad_metadata_ref_count::bad_metadata_ref_count(block_address b,
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ref_t actual,
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ref_t expected)
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: b_(b),
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actual_(actual),
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expected_(expected)
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{
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}
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void
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bad_metadata_ref_count::visit(metadata_damage_visitor &visitor) const
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{
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visitor.visit(*this);
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}
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bool
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bad_metadata_ref_count::operator ==(bad_metadata_ref_count const &rhs) const
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{
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return b_ == rhs.b_ && actual_ == rhs.actual_ && expected_ == rhs.expected_;
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}
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//--------------------------------
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bad_data_ref_count::bad_data_ref_count(block_address b,
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ref_t actual,
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ref_t expected)
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: b_(b),
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actual_(actual),
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expected_(expected)
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{
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}
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void
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bad_data_ref_count::visit(metadata_damage_visitor &visitor) const
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{
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visitor.visit(*this);
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}
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bool
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bad_data_ref_count::operator ==(bad_data_ref_count const &rhs) const
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{
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return b_ == rhs.b_ && actual_ == rhs.actual_ && expected_ == rhs.expected_;
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}
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//--------------------------------
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missing_metadata_ref_counts::missing_metadata_ref_counts(range64 missing)
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: missing_(missing)
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{
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}
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void
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missing_metadata_ref_counts::visit(metadata_damage_visitor &visitor) const
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{
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visitor.visit(*this);
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}
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bool
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missing_metadata_ref_counts::operator ==(missing_metadata_ref_counts const &rhs) const
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{
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return missing_ == rhs.missing_;
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}
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//--------------------------------
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missing_data_ref_counts::missing_data_ref_counts(range64 missing)
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: missing_(missing)
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{
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}
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void
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missing_data_ref_counts::visit(metadata_damage_visitor &visitor) const
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{
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visitor.visit(*this);
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}
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bool
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missing_data_ref_counts::operator ==(missing_data_ref_counts const &rhs) const
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{
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return missing_ == rhs.missing_;
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}
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//--------------------------------
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void
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metadata_damage_visitor::visit(metadata_damage const &damage)
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{
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damage.visit(*this);
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}
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//--------------------------------
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checker::checker(block_manager::ptr bm)
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: bm_(bm)
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{
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}
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//----------------------------------------------------------------
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#if 0
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namespace {
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// As well as the standard btree checks, we build up a set of what
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// devices having mappings defined, which can later be cross
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// referenced with the details tree. A separate block_counter is
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// used to later verify the data space map.
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class mapping_validator : public btree<2, block_traits>::visitor {
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public:
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typedef boost::shared_ptr<mapping_validator> ptr;
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typedef btree_checker<2, block_traits> checker;
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mapping_validator(block_counter &metadata_counter, block_counter &data_counter)
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: checker_(metadata_counter),
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data_counter_(data_counter)
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{
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}
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bool visit_internal(unsigned level,
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bool sub_root,
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optional<uint64_t> key,
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btree_detail::node_ref<uint64_traits> const &n) {
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return checker_.visit_internal(level, sub_root, key, n);
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}
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bool visit_internal_leaf(unsigned level,
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bool sub_root,
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optional<uint64_t> key,
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btree_detail::node_ref<uint64_traits> const &n) {
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bool r = checker_.visit_internal_leaf(level, sub_root, key, n);
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for (unsigned i = 0; i < n.get_nr_entries(); i++)
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devices_.insert(n.key_at(i));
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return r;
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}
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bool visit_leaf(unsigned level,
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bool sub_root,
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optional<uint64_t> key,
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btree_detail::node_ref<block_traits> const &n) {
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bool r = checker_.visit_leaf(level, sub_root, key, n);
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if (r)
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for (unsigned i = 0; i < n.get_nr_entries(); i++)
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data_counter_.inc(n.value_at(i).block_);
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return r;
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}
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set<uint64_t> const &get_devices() const {
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return devices_;
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}
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private:
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checker checker_;
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block_counter &data_counter_;
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set<uint64_t> devices_;
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};
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struct check_count : public space_map::iterator {
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check_count(string const &desc, block_counter const &expected)
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: bad_(false),
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expected_(expected),
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errors_(new error_set(desc)) {
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}
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virtual void operator() (block_address b, ref_t actual) {
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ref_t expected = expected_.get_count(b);
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if (actual != expected) {
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ostringstream out;
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out << b << ": was " << actual
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<< ", expected " << expected;
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errors_->add_child(out.str());
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bad_ = true;
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}
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}
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bool bad_;
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block_counter const &expected_;
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error_set::ptr errors_;
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};
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optional<error_set::ptr>
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check_ref_counts(string const &desc, block_counter const &counts,
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space_map::ptr sm) {
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check_count checker(desc, counts);
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sm->iterate(checker);
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return checker.bad_ ? optional<error_set::ptr>(checker.errors_) : optional<error_set::ptr>();
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}
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class metadata_checker {
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public:
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metadata_checker(string const &dev_path)
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: bm_(open_bm(dev_path)),
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errors_(new error_set("Errors in metadata")) {
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}
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boost::optional<error_set::ptr> check() {
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#if 1
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superblock sb = read_superblock();
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// FIXME: check version?
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check_mappings();
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return (errors_->get_children().size() > 0) ?
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optional<error_set::ptr>(errors_) :
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optional<error_set::ptr>();
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#else
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error_set::ptr errors(new error_set("Errors in metadata"));
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if (md->sb_.metadata_snap_) {
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block_manager<>::ptr bm = md->tm_->get_bm();
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block_address root = md->sb_.metadata_snap_;
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metadata_counter.inc(root);
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superblock sb;
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block_manager<>::read_ref r = bm->read_lock(root);
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superblock_disk const *sbd = reinterpret_cast<superblock_disk const *>(&r.data());
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superblock_traits::unpack(*sbd, sb);
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metadata_counter.inc(sb.data_mapping_root_);
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metadata_counter.inc(sb.device_details_root_);
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}
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set<uint64_t> const &mapped_devs = mv->get_devices();
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details_validator::ptr dv(new details_validator(metadata_counter));
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md->details_->visit(dv);
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set<uint64_t> const &details_devs = dv->get_devices();
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for (set<uint64_t>::const_iterator it = mapped_devs.begin(); it != mapped_devs.end(); ++it)
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if (details_devs.count(*it) == 0) {
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ostringstream out;
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out << "mapping exists for device " << *it
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<< ", yet there is no entry in the details tree.";
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throw runtime_error(out.str());
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}
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metadata_counter.inc(SUPERBLOCK_LOCATION);
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md->metadata_sm_->check(metadata_counter);
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md->data_sm_->check(metadata_counter);
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errors->add_child(check_ref_counts("Errors in metadata block reference counts",
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metadata_counter, md->metadata_sm_));
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errors->add_child(check_ref_counts("Errors in data block reference counts",
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data_counter, md->data_sm_));
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return (errors->get_children().size() > 0) ?
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optional<error_set::ptr>(errors) :
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optional<error_set::ptr>();
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#endif
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}
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private:
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static block_manager<>::ptr
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open_bm(string const &dev_path) {
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block_address nr_blocks = thin_provisioning::get_nr_blocks(dev_path);
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return block_manager<>::ptr(new block_manager<>(dev_path, nr_blocks, 1, block_io<>::READ_ONLY));
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}
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// FIXME: common code with metadata.cc
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superblock read_superblock() {
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superblock sb;
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block_manager<>::read_ref r = bm_->read_lock(SUPERBLOCK_LOCATION, superblock_validator());
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superblock_disk const *sbd = reinterpret_cast<superblock_disk const *>(&r.data());
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superblock_traits::unpack(*sbd, sb);
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return sb;
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}
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void check_mappings() {
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mapping_validator::ptr mv(
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new mapping_validator(metadata_counter_,
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data_counter_));
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md->mappings_->visit(mv);
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}
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typedef block_manager<>::read_ref read_ref;
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typedef block_manager<>::write_ref write_ref;
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typedef boost::shared_ptr<metadata> ptr;
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block_manager<>::ptr bm_;
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error_set::ptr errors_;
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block_counter metadata_counter_, data_counter_;
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#if 0
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tm_ptr tm_;
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superblock sb_;
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checked_space_map::ptr metadata_sm_;
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checked_space_map::ptr data_sm_;
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detail_tree::ptr details_;
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dev_tree::ptr mappings_top_level_;
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mapping_tree::ptr mappings_;
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#endif
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};
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}
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//----------------------------------------------------------------
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boost::optional<error_set::ptr>
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thin_provisioning::metadata_check(std::string const &dev_path)
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{
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metadata_checker checker(dev_path);
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return checker.check();
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}
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//----------------------------------------------------------------
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#endif
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#endif
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