e801cc607b
We're never going to use anything other than 4k, and by hard coding it we avoid making block_manager a template.
292 lines
7.6 KiB
C++
292 lines
7.6 KiB
C++
// Copyright (C) 2011-2012 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 "gmock/gmock.h"
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#include "persistent-data/space-maps/disk.h"
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#include "persistent-data/space-maps/core.h"
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#include "persistent-data/space-maps/careful_alloc.h"
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#include "persistent-data/space-maps/recursive.h"
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using namespace std;
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using namespace persistent_data;
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using namespace testing;
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//----------------------------------------------------------------
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namespace {
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block_address const NR_BLOCKS = 1000; // FIXME: bump up
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block_address const SUPERBLOCK = 0;
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block_address const MAX_LOCKS = 8;
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class SpaceMapTests : public Test {
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public:
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SpaceMapTests()
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: bm_(new block_manager("./test.data", NR_BLOCKS, MAX_LOCKS, block_manager::READ_WRITE)),
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sm_(new core_map(NR_BLOCKS)),
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tm_(bm_, sm_) {
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}
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struct sm_core_creator {
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static space_map::ptr
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create(transaction_manager &tm) {
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return space_map::ptr(new persistent_data::core_map(NR_BLOCKS));
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}
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};
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struct sm_careful_alloc_creator {
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static space_map::ptr
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create(transaction_manager &tm) {
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return create_careful_alloc_sm(
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checked_space_map::ptr(
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new core_map(NR_BLOCKS)));
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}
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};
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struct sm_recursive_creator {
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static checked_space_map::ptr
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create(transaction_manager &tm) {
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return create_recursive_sm(
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checked_space_map::ptr(
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new core_map(NR_BLOCKS)));
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}
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};
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struct sm_disk_creator {
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static persistent_space_map::ptr
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create(transaction_manager &tm) {
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return persistent_data::create_disk_sm(tm, NR_BLOCKS);
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}
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static persistent_space_map::ptr
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open(transaction_manager &tm, void *root) {
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return persistent_data::open_disk_sm(tm, root);
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}
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};
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struct sm_metadata_creator {
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static persistent_space_map::ptr
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create(transaction_manager &tm) {
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return persistent_data::create_metadata_sm(tm, NR_BLOCKS);
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}
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static persistent_space_map::ptr
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open(transaction_manager &tm, void *root) {
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return persistent_data::open_metadata_sm(tm, root);
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}
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};
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//--------------------------------
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void test_get_nr_blocks(space_map::ptr sm) {
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ASSERT_THAT(sm->get_nr_blocks(), Eq(NR_BLOCKS));
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}
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void test_get_nr_free(space_map::ptr sm) {
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ASSERT_THAT(sm->get_nr_free(), Eq(NR_BLOCKS));
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for (unsigned i = 0; i < NR_BLOCKS; i++) {
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boost::optional<block_address> mb = sm->new_block();
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ASSERT_TRUE(!!mb);
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ASSERT_THAT(sm->get_nr_free(), Eq(NR_BLOCKS - i - 1));
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}
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for (unsigned i = 0; i < NR_BLOCKS; i++) {
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sm->dec(i);
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ASSERT_THAT(sm->get_nr_free(), Eq(i + 1));
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}
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}
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void test_runs_out_of_space(space_map::ptr sm) {
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boost::optional<block_address> mb;
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for (unsigned i = 0; i < NR_BLOCKS; i++)
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mb = sm->new_block();
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mb = sm->new_block();
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ASSERT_FALSE(mb);
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}
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void test_inc_and_dec(space_map::ptr sm) {
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block_address b = 63;
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for (unsigned i = 0; i < 50; i++) {
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ASSERT_THAT(sm->get_count(b), Eq(i));
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sm->inc(b);
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}
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for (unsigned i = 50; i > 0; i--) {
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ASSERT_THAT(sm->get_count(b), Eq(i));
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sm->dec(b);
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}
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}
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void test_not_allocated_twice(space_map::ptr sm) {
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boost::optional<block_address> mb = sm->new_block();
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ASSERT_TRUE(!!mb);
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for (;;) {
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boost::optional<block_address> b = sm->new_block();
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if (!b)
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break;
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if (b) {
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ASSERT_TRUE(*b != *mb);
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}
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}
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}
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void test_set_count(space_map::ptr sm) {
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sm->set_count(43, 5);
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ASSERT_THAT(sm->get_count(43), Eq(5u));
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}
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void test_set_affects_nr_allocated(space_map::ptr sm) {
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for (unsigned i = 0; i < NR_BLOCKS; i++) {
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sm->set_count(i, 1);
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ASSERT_THAT(sm->get_nr_free(), Eq(NR_BLOCKS - i - 1));
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}
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for (unsigned i = 0; i < NR_BLOCKS; i++) {
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sm->set_count(i, 0);
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ASSERT_THAT(sm->get_nr_free(), Eq(i + 1));
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}
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}
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// Ref counts below 3 gets stored as bitmaps, above 3 they go into
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// a btree with uint32_t values. Worth checking this thoroughly,
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// especially for the metadata format which may have complications
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// due to recursion.
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void test_high_ref_counts(space_map::ptr sm) {
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srand(1234);
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for (unsigned i = 0; i < NR_BLOCKS; i++)
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sm->set_count(i, rand() % 6789);
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sm->commit();
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for (unsigned i = 0; i < NR_BLOCKS; i++) {
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sm->inc(i);
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sm->inc(i);
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if (i % 1000)
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sm->commit();
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}
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sm->commit();
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srand(1234);
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for (unsigned i = 0; i < NR_BLOCKS; i++)
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ASSERT_THAT(sm->get_count(i), Eq((rand() % 6789u) + 2u));
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for (unsigned i = 0; i < NR_BLOCKS; i++)
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sm->dec(i);
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srand(1234);
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for (unsigned i = 0; i < NR_BLOCKS; i++)
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ASSERT_THAT(sm->get_count(i), Eq((rand() % 6789u) + 1u));
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}
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template <typename SMCreator>
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void test_sm_reopen() {
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unsigned char buffer[128];
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{
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persistent_space_map::ptr sm = SMCreator::create(tm_);
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for (unsigned i = 0, step = 1; i < NR_BLOCKS; i += step, step++)
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sm->inc(i);
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sm->commit();
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ASSERT_THAT(sm->root_size(), Le(sizeof(buffer)));
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sm->copy_root(buffer, sizeof(buffer));
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}
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{
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persistent_space_map::ptr sm = SMCreator::open(tm_, buffer);
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for (unsigned i = 0, step = 1; i < NR_BLOCKS; i += step, step++)
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ASSERT_THAT(sm->get_count(i), Eq(1u));
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}
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}
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template <typename SMCreator>
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void do_tests() {
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test_get_nr_blocks(SMCreator::create(tm_));
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test_get_nr_free(SMCreator::create(tm_));
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test_runs_out_of_space(SMCreator::create(tm_));
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test_inc_and_dec(SMCreator::create(tm_));
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test_not_allocated_twice(SMCreator::create(tm_));
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test_set_count(SMCreator::create(tm_));
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test_set_affects_nr_allocated(SMCreator::create(tm_));
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test_high_ref_counts(SMCreator::create(tm_));
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}
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void
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copy_space_maps(space_map::ptr lhs, space_map::ptr rhs) {
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for (block_address b = 0; b < rhs->get_nr_blocks(); b++) {
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uint32_t count = rhs->get_count(b);
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if (count > 0)
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lhs->set_count(b, rhs->get_count(b));
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}
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}
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block_manager::ptr bm_;
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space_map::ptr sm_;
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transaction_manager tm_;
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};
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}
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//----------------------------------------------------------------
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TEST_F(SpaceMapTests, test_sm_core)
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{
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do_tests<sm_core_creator>();
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}
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TEST_F(SpaceMapTests, test_sm_careful_alloc)
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{
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do_tests<sm_careful_alloc_creator>();
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}
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TEST_F(SpaceMapTests, test_sm_recursive)
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{
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do_tests<sm_recursive_creator>();
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}
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TEST_F(SpaceMapTests, test_sm_disk)
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{
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do_tests<sm_disk_creator>();
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test_sm_reopen<sm_disk_creator>();
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}
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TEST_F(SpaceMapTests, test_sm_metadata)
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{
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do_tests<sm_metadata_creator>();
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test_sm_reopen<sm_metadata_creator>();
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}
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TEST_F(SpaceMapTests, test_metadata_and_disk)
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{
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block_manager::ptr bm(
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new block_manager("./test.data", NR_BLOCKS, MAX_LOCKS, block_manager::READ_WRITE));
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space_map::ptr core_sm(new core_map(NR_BLOCKS));
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transaction_manager::ptr tm(new transaction_manager(bm, core_sm));
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persistent_space_map::ptr metadata_sm = persistent_data::create_metadata_sm(*tm, NR_BLOCKS);
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copy_space_maps(metadata_sm, core_sm);
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tm->set_sm(metadata_sm);
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persistent_space_map::ptr data_sm_ = create_disk_sm(*tm, NR_BLOCKS * 2);
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}
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//----------------------------------------------------------------
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