364 lines
9.9 KiB
C++
364 lines
9.9 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 "base/nested_output.h"
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#include "persistent-data/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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#include "thin-provisioning/metadata_counter.h"
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#include "thin-provisioning/superblock.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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namespace {
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class superblock_reporter : public superblock_detail::damage_visitor {
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public:
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superblock_reporter(nested_output &out)
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: out_(out),
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err_(NO_ERROR) {
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}
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virtual void visit(superblock_detail::superblock_corruption const &d) {
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out_ << "superblock is corrupt" << end_message();
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{
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nested_output::nest _ = out_.push();
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out_ << d.desc_ << end_message();
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}
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err_ << FATAL;
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}
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base::error_state get_error() const {
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return err_;
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}
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private:
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nested_output &out_;
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error_state err_;
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};
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//--------------------------------
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class devices_reporter : public device_tree_detail::damage_visitor {
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public:
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devices_reporter(nested_output &out)
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: out_(out),
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err_(NO_ERROR) {
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}
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virtual void visit(device_tree_detail::missing_devices const &d) {
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out_ << "missing devices: " << d.keys_ << end_message();
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{
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nested_output::nest _ = out_.push();
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out_ << d.desc_ << end_message();
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}
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err_ << FATAL;
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}
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error_state get_error() const {
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return err_;
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}
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private:
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nested_output &out_;
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error_state err_;
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};
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//--------------------------------
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class mapping_reporter : public mapping_tree_detail::damage_visitor {
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public:
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mapping_reporter(nested_output &out)
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: out_(out),
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err_(NO_ERROR) {
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}
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virtual void visit(mapping_tree_detail::missing_devices const &d) {
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out_ << "missing all mappings for devices: " << d.keys_ << end_message();
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{
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nested_output::nest _ = out_.push();
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out_ << d.desc_ << end_message();
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}
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err_ << FATAL;
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}
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virtual void visit(mapping_tree_detail::missing_mappings const &d) {
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out_ << "thin device " << d.thin_dev_ << " is missing mappings " << d.keys_ << end_message();
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{
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nested_output::nest _ = out_.push();
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out_ << d.desc_ << end_message();
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}
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err_ << FATAL;
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}
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error_state get_error() const {
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return err_;
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}
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private:
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nested_output &out_;
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error_state err_;
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};
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//--------------------------------
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error_state examine_superblock(block_manager<>::ptr bm,
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nested_output &out) {
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out << "examining superblock" << end_message();
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nested_output::nest _ = out.push();
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superblock_reporter sb_rep(out);
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check_superblock(bm, sb_rep);
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return sb_rep.get_error();
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}
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error_state examine_devices_tree_(transaction_manager::ptr tm,
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superblock_detail::superblock const &sb,
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nested_output &out) {
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out << "examining devices tree" << end_message();
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nested_output::nest _ = out.push();
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devices_reporter dev_rep(out);
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device_tree dtree(*tm, sb.device_details_root_,
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device_tree_detail::device_details_traits::ref_counter());
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check_device_tree(dtree, dev_rep);
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return dev_rep.get_error();
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}
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error_state examine_top_level_mapping_tree_(transaction_manager::ptr tm,
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superblock_detail::superblock const &sb,
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nested_output &out) {
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out << "examining top level of mapping tree" << end_message();
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nested_output::nest _ = out.push();
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mapping_reporter mapping_rep(out);
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dev_tree dtree(*tm, sb.data_mapping_root_,
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mapping_tree_detail::mtree_traits::ref_counter(*tm));
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check_mapping_tree(dtree, mapping_rep);
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return mapping_rep.get_error();
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}
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error_state examine_mapping_tree_(transaction_manager::ptr tm,
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superblock_detail::superblock const &sb,
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nested_output &out) {
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out << "examining mapping tree" << end_message();
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nested_output::nest _ = out.push();
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mapping_reporter mapping_rep(out);
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mapping_tree mtree(*tm, sb.data_mapping_root_,
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mapping_tree_detail::block_traits::ref_counter(tm->get_sm()));
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check_mapping_tree(mtree, mapping_rep);
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return mapping_rep.get_error();
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}
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error_state examine_top_level_mapping_tree(transaction_manager::ptr tm,
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superblock_detail::superblock const &sb,
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nested_output &out) {
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error_state err = examine_devices_tree_(tm, sb, out);
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err << examine_top_level_mapping_tree_(tm, sb, out);
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return err;
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}
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error_state examine_mapping_tree(transaction_manager::ptr tm,
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superblock_detail::superblock const &sb,
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nested_output &out) {
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error_state err = examine_devices_tree_(tm, sb, out);
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err << examine_mapping_tree_(tm, sb, out);
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return err;
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}
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error_state check_space_map_counts(transaction_manager::ptr tm,
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superblock_detail::superblock const &sb,
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nested_output &out) {
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out << "checking space map counts" << end_message();
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nested_output::nest _ = out.push();
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block_counter bc;
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count_metadata(tm, sb, bc);
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// Finally we need to check the metadata space map agrees
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// with the counts we've just calculated.
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error_state err = NO_ERROR;
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persistent_space_map::ptr metadata_sm =
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open_metadata_sm(*tm, static_cast<void const*>(&sb.metadata_space_map_root_));
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for (unsigned b = 0; b < metadata_sm->get_nr_blocks(); b++) {
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ref_t c_actual = metadata_sm->get_count(b);
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ref_t c_expected = bc.get_count(b);
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if (c_actual != c_expected) {
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out << "metadata reference counts differ for block " << b
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<< ", expected " << c_expected
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<< ", but got " << c_actual
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<< end_message();
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err << (c_actual > c_expected ? NON_FATAL : FATAL);
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}
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}
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return err;
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}
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void print_info(transaction_manager::ptr tm,
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superblock_detail::superblock const &sb,
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nested_output &out)
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{
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out << "TRANSACTION_ID=" << sb.trans_id_ << "\n"
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<< "METADATA_FREE_BLOCKS=" << tm->get_sm()->get_nr_free()
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<< end_message();
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}
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block_address mapping_root(superblock_detail::superblock const &sb, check_options const &opts)
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{
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return opts.override_mapping_root_ ? *opts.override_mapping_root_ : sb.data_mapping_root_;
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}
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//--------------------------------
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class base_metadata_checker : public metadata_checker {
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public:
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base_metadata_checker(block_manager<>::ptr bm,
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check_options check_opts,
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output_options output_opts)
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: bm_(bm),
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options_(check_opts),
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out_(cerr, 2),
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info_out_(cout, 0) {
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if (output_opts == OUTPUT_QUIET) {
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out_.disable();
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info_out_.disable();
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}
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}
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error_state check() {
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error_state err = NO_ERROR;
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err << examine_superblock(bm_, out_);
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if (err == FATAL) {
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if (check_for_xml(bm_))
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out_ << "This looks like XML. thin_check only checks the binary metadata format." << end_message();
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return err;
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}
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superblock_detail::superblock sb = read_superblock(bm_);
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transaction_manager::ptr tm =
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open_tm(bm_, superblock_detail::SUPERBLOCK_LOCATION);
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sb.data_mapping_root_ = mapping_root(sb, options_);
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print_info(tm, sb, info_out_);
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err << examine_data_mappings(tm, sb, options_.check_data_mappings_, out_);
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// if we're checking everything, and there were no errors,
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// then we should check the space maps too.
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if (err != FATAL)
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err << examine_metadata_space_map(tm, sb, options_.check_metadata_space_map_, out_);
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return err;
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}
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private:
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static error_state
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examine_data_mappings(transaction_manager::ptr tm,
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superblock_detail::superblock const &sb,
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check_options::data_mapping_options option,
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nested_output &out) {
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error_state err = NO_ERROR;
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switch (option) {
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case check_options::DATA_MAPPING_LEVEL1:
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err << examine_top_level_mapping_tree(tm, sb, out);
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break;
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case check_options::DATA_MAPPING_LEVEL2:
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err << examine_mapping_tree(tm, sb, out);
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break;
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default:
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break; // do nothing
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}
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return err;
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}
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static error_state
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examine_metadata_space_map(transaction_manager::ptr tm,
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superblock_detail::superblock const &sb,
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check_options::metadata_space_map_options option,
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nested_output &out) {
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error_state err = NO_ERROR;
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switch (option) {
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case check_options::METADATA_SPACE_MAP_FULL:
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err << check_space_map_counts(tm, sb, out);
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break;
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default:
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break; // do nothing
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}
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return err;
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}
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block_manager<>::ptr bm_;
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check_options options_;
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nested_output out_;
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nested_output info_out_;
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};
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}
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//----------------------------------------------------------------
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check_options::check_options()
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: check_data_mappings_(DATA_MAPPING_LEVEL2),
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check_metadata_space_map_(METADATA_SPACE_MAP_FULL) {
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}
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void check_options::set_superblock_only() {
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check_data_mappings_ = DATA_MAPPING_NONE;
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check_metadata_space_map_ = METADATA_SPACE_MAP_NONE;
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}
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void check_options::set_skip_mappings() {
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check_data_mappings_ = DATA_MAPPING_LEVEL1;
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check_metadata_space_map_ = METADATA_SPACE_MAP_NONE;
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}
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void check_options::set_override_mapping_root(block_address b) {
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override_mapping_root_ = b;
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}
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metadata_checker::ptr
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thin_provisioning::create_base_checker(block_manager<>::ptr bm,
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check_options const &check_opts,
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output_options output_opts)
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{
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metadata_checker::ptr checker;
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checker = metadata_checker::ptr(new base_metadata_checker(bm, check_opts, output_opts));
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return checker;
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}
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//----------------------------------------------------------------
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