979fbdc696
Summary: Each DB has a globally unique ID. A DB can be physically copied around, or backed-up and restored, and the users should be identify the same DB. This unique ID right now is stored as plain text in file IDENTITY under the DB directory. This approach introduces at least two problems: (1) the file is not checksumed; (2) the source of truth of a DB is the manifest file, which can be copied separately from IDENTITY file, causing the DB ID to be wrong. The goal of this PR is solve this problem by moving the DB ID to manifest. To begin with we will write to both identity file and manifest. Write to Manifest is controlled via the flag write_dbid_to_manifest in Options and default is false. Pull Request resolved: https://github.com/facebook/rocksdb/pull/5725 Test Plan: Added unit tests. Differential Revision: D16963840 Pulled By: vjnadimpalli fbshipit-source-id: 8a86a4c8c82c716003c40fd6b9d2d758030d92e9
488 lines
22 KiB
C++
488 lines
22 KiB
C++
// Copyright (c) 2011-present, Facebook, Inc. All rights reserved.
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// This source code is licensed under both the GPLv2 (found in the
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// COPYING file in the root directory) and Apache 2.0 License
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// (found in the LICENSE.Apache file in the root directory).
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//
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// Copyright (c) 2011 The LevelDB Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file. See the AUTHORS file for names of contributors.
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#include <cstring>
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#include "options/options_helper.h"
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#include "rocksdb/convenience.h"
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#include "test_util/testharness.h"
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#ifndef GFLAGS
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bool FLAGS_enable_print = false;
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#else
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#include "util/gflags_compat.h"
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using GFLAGS_NAMESPACE::ParseCommandLineFlags;
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DEFINE_bool(enable_print, false, "Print options generated to console.");
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#endif // GFLAGS
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namespace rocksdb {
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// Verify options are settable from options strings.
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// We take the approach that depends on compiler behavior that copy constructor
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// won't touch implicit padding bytes, so that the test is fragile.
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// As a result, we only run the tests to verify new fields in options are
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// settable through string on limited platforms as it depends on behavior of
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// compilers.
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#ifndef ROCKSDB_LITE
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#if defined OS_LINUX || defined OS_WIN
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#ifndef __clang__
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class OptionsSettableTest : public testing::Test {
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public:
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OptionsSettableTest() {}
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};
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const char kSpecialChar = 'z';
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typedef std::vector<std::pair<size_t, size_t>> OffsetGap;
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void FillWithSpecialChar(char* start_ptr, size_t total_size,
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const OffsetGap& blacklist) {
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size_t offset = 0;
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for (auto& pair : blacklist) {
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std::memset(start_ptr + offset, kSpecialChar, pair.first - offset);
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offset = pair.first + pair.second;
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}
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std::memset(start_ptr + offset, kSpecialChar, total_size - offset);
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}
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int NumUnsetBytes(char* start_ptr, size_t total_size,
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const OffsetGap& blacklist) {
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int total_unset_bytes_base = 0;
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size_t offset = 0;
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for (auto& pair : blacklist) {
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for (char* ptr = start_ptr + offset; ptr < start_ptr + pair.first; ptr++) {
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if (*ptr == kSpecialChar) {
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total_unset_bytes_base++;
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}
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}
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offset = pair.first + pair.second;
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}
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for (char* ptr = start_ptr + offset; ptr < start_ptr + total_size; ptr++) {
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if (*ptr == kSpecialChar) {
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total_unset_bytes_base++;
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}
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}
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return total_unset_bytes_base;
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}
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// If the test fails, likely a new option is added to BlockBasedTableOptions
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// but it cannot be set through GetBlockBasedTableOptionsFromString(), or the
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// test is not updated accordingly.
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// After adding an option, we need to make sure it is settable by
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// GetBlockBasedTableOptionsFromString() and add the option to the input string
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// passed to the GetBlockBasedTableOptionsFromString() in this test.
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// If it is a complicated type, you also need to add the field to
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// kBbtoBlacklist, and maybe add customized verification for it.
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TEST_F(OptionsSettableTest, BlockBasedTableOptionsAllFieldsSettable) {
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// Items in the form of <offset, size>. Need to be in ascending order
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// and not overlapping. Need to updated if new pointer-option is added.
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const OffsetGap kBbtoBlacklist = {
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{offsetof(struct BlockBasedTableOptions, flush_block_policy_factory),
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sizeof(std::shared_ptr<FlushBlockPolicyFactory>)},
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{offsetof(struct BlockBasedTableOptions, block_cache),
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sizeof(std::shared_ptr<Cache>)},
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{offsetof(struct BlockBasedTableOptions, persistent_cache),
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sizeof(std::shared_ptr<PersistentCache>)},
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{offsetof(struct BlockBasedTableOptions, block_cache_compressed),
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sizeof(std::shared_ptr<Cache>)},
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{offsetof(struct BlockBasedTableOptions, filter_policy),
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sizeof(std::shared_ptr<const FilterPolicy>)},
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};
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// In this test, we catch a new option of BlockBasedTableOptions that is not
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// settable through GetBlockBasedTableOptionsFromString().
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// We count padding bytes of the option struct, and assert it to be the same
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// as unset bytes of an option struct initialized by
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// GetBlockBasedTableOptionsFromString().
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char* bbto_ptr = new char[sizeof(BlockBasedTableOptions)];
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// Count padding bytes by setting all bytes in the memory to a special char,
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// copy a well constructed struct to this memory and see how many special
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// bytes left.
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BlockBasedTableOptions* bbto = new (bbto_ptr) BlockBasedTableOptions();
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FillWithSpecialChar(bbto_ptr, sizeof(BlockBasedTableOptions), kBbtoBlacklist);
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// It based on the behavior of compiler that padding bytes are not changed
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// when copying the struct. It's prone to failure when compiler behavior
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// changes. We verify there is unset bytes to detect the case.
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*bbto = BlockBasedTableOptions();
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int unset_bytes_base =
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NumUnsetBytes(bbto_ptr, sizeof(BlockBasedTableOptions), kBbtoBlacklist);
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ASSERT_GT(unset_bytes_base, 0);
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bbto->~BlockBasedTableOptions();
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// Construct the base option passed into
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// GetBlockBasedTableOptionsFromString().
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bbto = new (bbto_ptr) BlockBasedTableOptions();
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FillWithSpecialChar(bbto_ptr, sizeof(BlockBasedTableOptions), kBbtoBlacklist);
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// This option is not setable:
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bbto->use_delta_encoding = true;
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char* new_bbto_ptr = new char[sizeof(BlockBasedTableOptions)];
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BlockBasedTableOptions* new_bbto =
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new (new_bbto_ptr) BlockBasedTableOptions();
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FillWithSpecialChar(new_bbto_ptr, sizeof(BlockBasedTableOptions),
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kBbtoBlacklist);
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// Need to update the option string if a new option is added.
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ASSERT_OK(GetBlockBasedTableOptionsFromString(
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*bbto,
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"cache_index_and_filter_blocks=1;"
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"cache_index_and_filter_blocks_with_high_priority=true;"
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"pin_l0_filter_and_index_blocks_in_cache=1;"
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"pin_top_level_index_and_filter=1;"
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"index_type=kHashSearch;"
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"data_block_index_type=kDataBlockBinaryAndHash;"
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"index_shortening=kNoShortening;"
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"data_block_hash_table_util_ratio=0.75;"
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"checksum=kxxHash;hash_index_allow_collision=1;no_block_cache=1;"
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"block_cache=1M;block_cache_compressed=1k;block_size=1024;"
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"block_size_deviation=8;block_restart_interval=4; "
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"metadata_block_size=1024;"
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"partition_filters=false;"
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"index_block_restart_interval=4;"
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"filter_policy=bloomfilter:4:true;whole_key_filtering=1;"
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"format_version=1;"
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"hash_index_allow_collision=false;"
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"verify_compression=true;read_amp_bytes_per_bit=0;"
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"enable_index_compression=false;"
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"block_align=true",
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new_bbto));
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ASSERT_EQ(unset_bytes_base,
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NumUnsetBytes(new_bbto_ptr, sizeof(BlockBasedTableOptions),
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kBbtoBlacklist));
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ASSERT_TRUE(new_bbto->block_cache.get() != nullptr);
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ASSERT_TRUE(new_bbto->block_cache_compressed.get() != nullptr);
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ASSERT_TRUE(new_bbto->filter_policy.get() != nullptr);
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bbto->~BlockBasedTableOptions();
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new_bbto->~BlockBasedTableOptions();
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delete[] bbto_ptr;
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delete[] new_bbto_ptr;
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}
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// If the test fails, likely a new option is added to DBOptions
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// but it cannot be set through GetDBOptionsFromString(), or the test is not
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// updated accordingly.
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// After adding an option, we need to make sure it is settable by
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// GetDBOptionsFromString() and add the option to the input string passed to
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// DBOptionsFromString()in this test.
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// If it is a complicated type, you also need to add the field to
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// kDBOptionsBlacklist, and maybe add customized verification for it.
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TEST_F(OptionsSettableTest, DBOptionsAllFieldsSettable) {
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const OffsetGap kDBOptionsBlacklist = {
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{offsetof(struct DBOptions, env), sizeof(Env*)},
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{offsetof(struct DBOptions, rate_limiter),
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sizeof(std::shared_ptr<RateLimiter>)},
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{offsetof(struct DBOptions, sst_file_manager),
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sizeof(std::shared_ptr<SstFileManager>)},
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{offsetof(struct DBOptions, info_log), sizeof(std::shared_ptr<Logger>)},
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{offsetof(struct DBOptions, statistics),
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sizeof(std::shared_ptr<Statistics>)},
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{offsetof(struct DBOptions, db_paths), sizeof(std::vector<DbPath>)},
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{offsetof(struct DBOptions, db_log_dir), sizeof(std::string)},
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{offsetof(struct DBOptions, wal_dir), sizeof(std::string)},
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{offsetof(struct DBOptions, write_buffer_manager),
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sizeof(std::shared_ptr<WriteBufferManager>)},
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{offsetof(struct DBOptions, listeners),
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sizeof(std::vector<std::shared_ptr<EventListener>>)},
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{offsetof(struct DBOptions, row_cache), sizeof(std::shared_ptr<Cache>)},
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{offsetof(struct DBOptions, wal_filter), sizeof(const WalFilter*)},
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};
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char* options_ptr = new char[sizeof(DBOptions)];
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// Count padding bytes by setting all bytes in the memory to a special char,
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// copy a well constructed struct to this memory and see how many special
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// bytes left.
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DBOptions* options = new (options_ptr) DBOptions();
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FillWithSpecialChar(options_ptr, sizeof(DBOptions), kDBOptionsBlacklist);
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// It based on the behavior of compiler that padding bytes are not changed
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// when copying the struct. It's prone to failure when compiler behavior
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// changes. We verify there is unset bytes to detect the case.
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*options = DBOptions();
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int unset_bytes_base =
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NumUnsetBytes(options_ptr, sizeof(DBOptions), kDBOptionsBlacklist);
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ASSERT_GT(unset_bytes_base, 0);
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options->~DBOptions();
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options = new (options_ptr) DBOptions();
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FillWithSpecialChar(options_ptr, sizeof(DBOptions), kDBOptionsBlacklist);
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char* new_options_ptr = new char[sizeof(DBOptions)];
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DBOptions* new_options = new (new_options_ptr) DBOptions();
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FillWithSpecialChar(new_options_ptr, sizeof(DBOptions), kDBOptionsBlacklist);
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// Need to update the option string if a new option is added.
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ASSERT_OK(
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GetDBOptionsFromString(*options,
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"wal_bytes_per_sync=4295048118;"
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"delete_obsolete_files_period_micros=4294967758;"
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"WAL_ttl_seconds=4295008036;"
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"WAL_size_limit_MB=4295036161;"
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"wal_dir=path/to/wal_dir;"
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"db_write_buffer_size=2587;"
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"max_subcompactions=64330;"
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"table_cache_numshardbits=28;"
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"max_open_files=72;"
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"max_file_opening_threads=35;"
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"max_background_jobs=8;"
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"base_background_compactions=3;"
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"max_background_compactions=33;"
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"use_fsync=true;"
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"use_adaptive_mutex=false;"
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"max_total_wal_size=4295005604;"
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"compaction_readahead_size=0;"
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"new_table_reader_for_compaction_inputs=false;"
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"keep_log_file_num=4890;"
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"skip_stats_update_on_db_open=false;"
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"max_manifest_file_size=4295009941;"
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"db_log_dir=path/to/db_log_dir;"
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"skip_log_error_on_recovery=true;"
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"writable_file_max_buffer_size=1048576;"
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"paranoid_checks=true;"
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"is_fd_close_on_exec=false;"
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"bytes_per_sync=4295013613;"
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"strict_bytes_per_sync=true;"
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"enable_thread_tracking=false;"
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"recycle_log_file_num=0;"
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"create_missing_column_families=true;"
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"log_file_time_to_roll=3097;"
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"max_background_flushes=35;"
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"create_if_missing=false;"
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"error_if_exists=true;"
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"delayed_write_rate=4294976214;"
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"manifest_preallocation_size=1222;"
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"allow_mmap_writes=false;"
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"stats_dump_period_sec=70127;"
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"stats_persist_period_sec=54321;"
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"persist_stats_to_disk=true;"
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"stats_history_buffer_size=14159;"
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"allow_fallocate=true;"
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"allow_mmap_reads=false;"
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"use_direct_reads=false;"
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"use_direct_io_for_flush_and_compaction=false;"
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"max_log_file_size=4607;"
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"random_access_max_buffer_size=1048576;"
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"advise_random_on_open=true;"
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"fail_if_options_file_error=false;"
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"enable_pipelined_write=false;"
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"unordered_write=false;"
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"allow_concurrent_memtable_write=true;"
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"wal_recovery_mode=kPointInTimeRecovery;"
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"enable_write_thread_adaptive_yield=true;"
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"write_thread_slow_yield_usec=5;"
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"write_thread_max_yield_usec=1000;"
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"access_hint_on_compaction_start=NONE;"
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"info_log_level=DEBUG_LEVEL;"
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"dump_malloc_stats=false;"
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"allow_2pc=false;"
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"avoid_flush_during_recovery=false;"
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"avoid_flush_during_shutdown=false;"
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"allow_ingest_behind=false;"
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"preserve_deletes=false;"
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"concurrent_prepare=false;"
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"two_write_queues=false;"
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"manual_wal_flush=false;"
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"seq_per_batch=false;"
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"atomic_flush=false;"
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"avoid_unnecessary_blocking_io=false;"
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"log_readahead_size=0;"
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"write_dbid_to_manifest=false",
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new_options));
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ASSERT_EQ(unset_bytes_base, NumUnsetBytes(new_options_ptr, sizeof(DBOptions),
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kDBOptionsBlacklist));
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options->~DBOptions();
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new_options->~DBOptions();
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delete[] options_ptr;
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delete[] new_options_ptr;
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}
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template <typename T1, typename T2>
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inline int offset_of(T1 T2::*member) {
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static T2 obj;
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return int(size_t(&(obj.*member)) - size_t(&obj));
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}
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// If the test fails, likely a new option is added to ColumnFamilyOptions
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// but it cannot be set through GetColumnFamilyOptionsFromString(), or the
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// test is not updated accordingly.
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// After adding an option, we need to make sure it is settable by
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// GetColumnFamilyOptionsFromString() and add the option to the input
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// string passed to GetColumnFamilyOptionsFromString()in this test.
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// If it is a complicated type, you also need to add the field to
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// kColumnFamilyOptionsBlacklist, and maybe add customized verification
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// for it.
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TEST_F(OptionsSettableTest, ColumnFamilyOptionsAllFieldsSettable) {
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// options in the blacklist need to appear in the same order as in
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// ColumnFamilyOptions.
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const OffsetGap kColumnFamilyOptionsBlacklist = {
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{offset_of(&ColumnFamilyOptions::inplace_callback),
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sizeof(UpdateStatus(*)(char*, uint32_t*, Slice, std::string*))},
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{offset_of(
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&ColumnFamilyOptions::memtable_insert_with_hint_prefix_extractor),
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sizeof(std::shared_ptr<const SliceTransform>)},
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{offset_of(&ColumnFamilyOptions::compression_per_level),
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sizeof(std::vector<CompressionType>)},
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{offset_of(
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&ColumnFamilyOptions::max_bytes_for_level_multiplier_additional),
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sizeof(std::vector<int>)},
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{offset_of(&ColumnFamilyOptions::memtable_factory),
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sizeof(std::shared_ptr<MemTableRepFactory>)},
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{offset_of(&ColumnFamilyOptions::table_properties_collector_factories),
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sizeof(ColumnFamilyOptions::TablePropertiesCollectorFactories)},
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{offset_of(&ColumnFamilyOptions::comparator), sizeof(Comparator*)},
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{offset_of(&ColumnFamilyOptions::merge_operator),
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sizeof(std::shared_ptr<MergeOperator>)},
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{offset_of(&ColumnFamilyOptions::compaction_filter),
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sizeof(const CompactionFilter*)},
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{offset_of(&ColumnFamilyOptions::compaction_filter_factory),
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sizeof(std::shared_ptr<CompactionFilterFactory>)},
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{offset_of(&ColumnFamilyOptions::prefix_extractor),
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sizeof(std::shared_ptr<const SliceTransform>)},
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{offset_of(&ColumnFamilyOptions::table_factory),
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sizeof(std::shared_ptr<TableFactory>)},
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{offset_of(&ColumnFamilyOptions::cf_paths),
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sizeof(std::vector<DbPath>)},
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{offset_of(&ColumnFamilyOptions::compaction_thread_limiter),
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sizeof(std::shared_ptr<ConcurrentTaskLimiter>)},
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};
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char* options_ptr = new char[sizeof(ColumnFamilyOptions)];
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// Count padding bytes by setting all bytes in the memory to a special char,
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// copy a well constructed struct to this memory and see how many special
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// bytes left.
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ColumnFamilyOptions* options = new (options_ptr) ColumnFamilyOptions();
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FillWithSpecialChar(options_ptr, sizeof(ColumnFamilyOptions),
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kColumnFamilyOptionsBlacklist);
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// It based on the behavior of compiler that padding bytes are not changed
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// when copying the struct. It's prone to failure when compiler behavior
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// changes. We verify there is unset bytes to detect the case.
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*options = ColumnFamilyOptions();
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// Deprecatd option which is not initialized. Need to set it to avoid
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// Valgrind error
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options->max_mem_compaction_level = 0;
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int unset_bytes_base = NumUnsetBytes(options_ptr, sizeof(ColumnFamilyOptions),
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kColumnFamilyOptionsBlacklist);
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ASSERT_GT(unset_bytes_base, 0);
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options->~ColumnFamilyOptions();
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options = new (options_ptr) ColumnFamilyOptions();
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FillWithSpecialChar(options_ptr, sizeof(ColumnFamilyOptions),
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kColumnFamilyOptionsBlacklist);
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// Following options are not settable through
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// GetColumnFamilyOptionsFromString():
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options->rate_limit_delay_max_milliseconds = 33;
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options->compaction_options_universal = CompactionOptionsUniversal();
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options->compression_opts = CompressionOptions();
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options->bottommost_compression_opts = CompressionOptions();
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options->hard_rate_limit = 0;
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options->soft_rate_limit = 0;
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options->purge_redundant_kvs_while_flush = false;
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options->max_mem_compaction_level = 0;
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options->compaction_filter = nullptr;
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char* new_options_ptr = new char[sizeof(ColumnFamilyOptions)];
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ColumnFamilyOptions* new_options =
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new (new_options_ptr) ColumnFamilyOptions();
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FillWithSpecialChar(new_options_ptr, sizeof(ColumnFamilyOptions),
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kColumnFamilyOptionsBlacklist);
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// Need to update the option string if a new option is added.
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ASSERT_OK(GetColumnFamilyOptionsFromString(
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*options,
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"compaction_filter_factory=mpudlojcujCompactionFilterFactory;"
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"table_factory=PlainTable;"
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"prefix_extractor=rocksdb.CappedPrefix.13;"
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"comparator=leveldb.BytewiseComparator;"
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"compression_per_level=kBZip2Compression:kBZip2Compression:"
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"kBZip2Compression:kNoCompression:kZlibCompression:kBZip2Compression:"
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"kSnappyCompression;"
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"max_bytes_for_level_base=986;"
|
|
"snap_refresh_nanos=1000000000;"
|
|
"bloom_locality=8016;"
|
|
"target_file_size_base=4294976376;"
|
|
"memtable_huge_page_size=2557;"
|
|
"max_successive_merges=5497;"
|
|
"max_sequential_skip_in_iterations=4294971408;"
|
|
"arena_block_size=1893;"
|
|
"target_file_size_multiplier=35;"
|
|
"min_write_buffer_number_to_merge=9;"
|
|
"max_write_buffer_number=84;"
|
|
"write_buffer_size=1653;"
|
|
"max_compaction_bytes=64;"
|
|
"max_bytes_for_level_multiplier=60;"
|
|
"memtable_factory=SkipListFactory;"
|
|
"compression=kNoCompression;"
|
|
"bottommost_compression=kDisableCompressionOption;"
|
|
"level0_stop_writes_trigger=33;"
|
|
"num_levels=99;"
|
|
"level0_slowdown_writes_trigger=22;"
|
|
"level0_file_num_compaction_trigger=14;"
|
|
"compaction_filter=urxcqstuwnCompactionFilter;"
|
|
"soft_rate_limit=530.615385;"
|
|
"soft_pending_compaction_bytes_limit=0;"
|
|
"max_write_buffer_number_to_maintain=84;"
|
|
"max_write_buffer_size_to_maintain=2147483648;"
|
|
"merge_operator=aabcxehazrMergeOperator;"
|
|
"memtable_prefix_bloom_size_ratio=0.4642;"
|
|
"memtable_whole_key_filtering=true;"
|
|
"memtable_insert_with_hint_prefix_extractor=rocksdb.CappedPrefix.13;"
|
|
"paranoid_file_checks=true;"
|
|
"force_consistency_checks=true;"
|
|
"inplace_update_num_locks=7429;"
|
|
"optimize_filters_for_hits=false;"
|
|
"level_compaction_dynamic_level_bytes=false;"
|
|
"inplace_update_support=false;"
|
|
"compaction_style=kCompactionStyleFIFO;"
|
|
"compaction_pri=kMinOverlappingRatio;"
|
|
"hard_pending_compaction_bytes_limit=0;"
|
|
"disable_auto_compactions=false;"
|
|
"report_bg_io_stats=true;"
|
|
"ttl=60;"
|
|
"periodic_compaction_seconds=3600;"
|
|
"sample_for_compression=0;"
|
|
"compaction_options_fifo={max_table_files_size=3;allow_"
|
|
"compaction=false;};",
|
|
new_options));
|
|
|
|
ASSERT_EQ(unset_bytes_base,
|
|
NumUnsetBytes(new_options_ptr, sizeof(ColumnFamilyOptions),
|
|
kColumnFamilyOptionsBlacklist));
|
|
|
|
options->~ColumnFamilyOptions();
|
|
new_options->~ColumnFamilyOptions();
|
|
|
|
delete[] options_ptr;
|
|
delete[] new_options_ptr;
|
|
}
|
|
#endif // !__clang__
|
|
#endif // OS_LINUX || OS_WIN
|
|
#endif // !ROCKSDB_LITE
|
|
|
|
} // namespace rocksdb
|
|
|
|
int main(int argc, char** argv) {
|
|
::testing::InitGoogleTest(&argc, argv);
|
|
#ifdef GFLAGS
|
|
ParseCommandLineFlags(&argc, &argv, true);
|
|
#endif // GFLAGS
|
|
return RUN_ALL_TESTS();
|
|
}
|