thin-provisioning-tools/era/era_debug.cc

229 lines
6.8 KiB
C++

// Copyright (C) 2012 Red Hat, Inc. All rights reserved.
//
// This file is part of the thin-provisioning-tools source.
//
// thin-provisioning-tools is free software: you can redistribute it
// and/or modify it under the terms of the GNU General Public License
// as published by the Free Software Foundation, either version 3 of
// the License, or (at your option) any later version.
//
// thin-provisioning-tools is distributed in the hope that it will be
// useful, but WITHOUT ANY WARRANTY; without even the implied warranty
// of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU General Public License for more details.
//
// You should have received a copy of the GNU General Public License along
// with thin-provisioning-tools. If not, see
// <http://www.gnu.org/licenses/>.
#include <boost/lexical_cast.hpp>
#include <getopt.h>
#include <iostream>
#include <string>
#include "dbg-lib/array_block_dumper.h"
#include "dbg-lib/btree_node_dumper.h"
#include "dbg-lib/bitset_block_dumper.h"
#include "dbg-lib/command_interpreter.h"
#include "dbg-lib/commands.h"
#include "dbg-lib/index_block_dumper.h"
#include "dbg-lib/output_formatter.h"
#include "dbg-lib/sm_show_traits.h"
#include "persistent-data/file_utils.h"
#include "persistent-data/space-maps/disk_structures.h"
#include "era/commands.h"
#include "era/metadata.h"
#include "version.h"
using namespace dbg;
using namespace persistent_data;
using namespace std;
using namespace era;
//----------------------------------------------------------------
namespace {
class help : public dbg::command {
virtual void exec(strings const &args, ostream &out) {
out << "Commands:" << endl
<< " superblock [block#]" << endl
<< " block_node <block# of array block-tree node>" << endl
<< " bitset_block <block# of bitset block>" << endl
<< " era_block <block# of era array block>" << endl
<< " index_block <block# of metadata space map root>" << endl
<< " writeset_node <block# of writeset tree node>" << endl
<< " exit" << endl;
}
};
// for displaying the writeset tree
class writeset_show_traits : public era::era_detail_traits {
public:
typedef era_detail_traits value_trait;
static void show(formatter::ptr f, string const &key, era_detail const &value) {
field(*f, "nr_bits", value.nr_bits);
field(*f, "writeset_root", value.writeset_root);
}
};
class show_superblock : public dbg::command {
public:
explicit show_superblock(block_manager::ptr bm)
: bm_(bm) {
}
virtual void exec(strings const &args, ostream &out) {
if (args.size() > 2)
throw runtime_error("incorrect number of arguments");
block_address b = era::SUPERBLOCK_LOCATION;
if (args.size() == 2)
b = boost::lexical_cast<block_address>(args[1]);
era::superblock sb = read_superblock(bm_, b);
formatter::ptr f = create_xml_formatter();
ostringstream version;
field(*f, "csum", sb.csum);
field(*f, "flags", sb.flags.encode());
field(*f, "blocknr", sb.blocknr);
field(*f, "uuid", sb.uuid); // FIXME: delimit, and handle non-printable chars
field(*f, "magic", sb.magic);
field(*f, "version", sb.version);
sm_disk_detail::sm_root_disk const *d;
sm_disk_detail::sm_root v;
{
d = reinterpret_cast<sm_disk_detail::sm_root_disk const *>(sb.metadata_space_map_root);
sm_disk_detail::sm_root_traits::unpack(*d, v);
formatter::ptr f2 = create_xml_formatter();
sm_root_show_traits::show(f2, "value", v);
f->child("metadata_space_map_root", f2);
}
field(*f, "data_block_size", sb.data_block_size);
field(*f, "metadata_block_size", sb.metadata_block_size);
field(*f, "nr_blocks", sb.nr_blocks);
field(*f, "current_era", sb.current_era);
{
formatter::ptr f2 = create_xml_formatter();
writeset_show_traits::show(f2, "value", sb.current_detail);
f->child("current_writeset", f2);
}
field(*f, "writeset_tree_root", sb.writeset_tree_root);
field(*f, "era_array_root", sb.era_array_root);
if (sb.metadata_snap)
field(*f, "metadata_snap", *sb.metadata_snap);
f->output(out, 0);
}
private:
block_manager::ptr bm_;
};
//--------------------------------
template <typename ShowTraits>
dbg::command::ptr
create_btree_node_handler(block_manager::ptr bm) {
return create_block_handler(bm, create_btree_node_dumper<ShowTraits>());
}
template <typename ShowTraits>
dbg::command::ptr
create_array_block_handler(block_manager::ptr bm,
typename ShowTraits::value_trait::ref_counter rc) {
return create_block_handler(bm, create_array_block_dumper<ShowTraits>(rc));
}
dbg::command::ptr
create_bitset_block_handler(block_manager::ptr bm) {
return create_block_handler(bm, create_bitset_block_dumper());
}
dbg::command::ptr
create_index_block_handler(block_manager::ptr bm) {
return create_block_handler(bm, create_index_block_dumper());
}
int debug(string const &path) {
using dbg::command;
try {
block_manager::ptr bm = open_bm(path, block_manager::READ_ONLY);
transaction_manager::ptr null_tm = open_tm(bm, era::SUPERBLOCK_LOCATION);
command_interpreter::ptr interp = create_command_interpreter(cin, cout);
interp->register_command("hello", create_hello_handler());
interp->register_command("superblock", command::ptr(new show_superblock(bm)));
interp->register_command("block_node", create_btree_node_handler<uint64_show_traits>(bm));
interp->register_command("bitset_block", create_bitset_block_handler(bm));
interp->register_command("era_block", create_array_block_handler<uint32_show_traits>(bm,
uint32_traits::ref_counter()));
interp->register_command("index_block", create_index_block_handler(bm));
interp->register_command("writeset_node", create_btree_node_handler<writeset_show_traits>(bm));
interp->register_command("help", command::ptr(new help));
interp->register_command("exit", create_exit_handler(interp));
interp->enter_main_loop();
} catch (std::exception &e) {
cerr << e.what();
return 1;
}
return 0;
}
}
//----------------------------------------------------------------
era_debug_cmd::era_debug_cmd()
: command("era_debug")
{
}
void
era_debug_cmd::usage(std::ostream &out) const
{
out << "Usage: " << get_name() << " {device|file}" << endl
<< "Options:" << endl
<< " {-h|--help}" << endl
<< " {-V|--version}" << endl;
}
int
era_debug_cmd::run(int argc, char **argv)
{
int c;
const char shortopts[] = "hV";
const struct option longopts[] = {
{ "help", no_argument, NULL, 'h'},
{ "version", no_argument, NULL, 'V'},
{ NULL, no_argument, NULL, 0 }
};
while ((c = getopt_long(argc, argv, shortopts, longopts, NULL)) != -1) {
switch(c) {
case 'h':
usage(cout);
return 0;
case 'V':
cerr << THIN_PROVISIONING_TOOLS_VERSION << endl;
return 0;
}
}
if (argc == optind) {
usage(cerr);
exit(1);
}
return debug(argv[optind]);
}
//----------------------------------------------------------------