2016-02-10 00:12:00 +01:00
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// Copyright (c) 2011-present, Facebook, Inc. All rights reserved.
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2017-07-16 01:03:42 +02:00
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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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2013-10-16 23:59:46 +02:00
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//
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2011-03-18 23:37:00 +01:00
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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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2019-06-01 02:19:43 +02:00
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#include "rocksdb/comparator.h"
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2021-06-11 15:21:55 +02:00
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2019-06-01 02:19:43 +02:00
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#include <stdint.h>
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2021-06-11 15:21:55 +02:00
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2011-07-20 01:36:47 +02:00
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#include <algorithm>
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2015-08-06 00:45:21 +02:00
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#include <memory>
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2021-06-11 15:21:55 +02:00
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#include <mutex>
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2022-02-08 21:14:25 +01:00
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#include <sstream>
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2021-06-11 15:21:55 +02:00
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2022-02-08 21:14:25 +01:00
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#include "db/dbformat.h"
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2012-08-27 08:45:35 +02:00
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#include "port/port.h"
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2021-06-29 18:07:10 +02:00
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#include "rocksdb/convenience.h"
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2019-06-01 02:19:43 +02:00
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#include "rocksdb/slice.h"
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2021-06-29 18:07:10 +02:00
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#include "rocksdb/utilities/customizable_util.h"
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2021-06-11 15:21:55 +02:00
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#include "rocksdb/utilities/object_registry.h"
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2011-03-18 23:37:00 +01:00
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2020-02-20 21:07:53 +01:00
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namespace ROCKSDB_NAMESPACE {
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2011-03-18 23:37:00 +01:00
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namespace {
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class BytewiseComparatorImpl : public Comparator {
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public:
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BytewiseComparatorImpl() { }
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2021-06-11 15:21:55 +02:00
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static const char* kClassName() { return "leveldb.BytewiseComparator"; }
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const char* Name() const override { return kClassName(); }
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2011-03-18 23:37:00 +01:00
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2019-02-14 22:52:47 +01:00
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int Compare(const Slice& a, const Slice& b) const override {
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2011-03-18 23:37:00 +01:00
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return a.compare(b);
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}
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2019-02-14 22:52:47 +01:00
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bool Equal(const Slice& a, const Slice& b) const override { return a == b; }
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2015-09-09 00:30:49 +02:00
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2019-02-14 22:52:47 +01:00
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void FindShortestSeparator(std::string* start,
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const Slice& limit) const override {
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2011-03-18 23:37:00 +01:00
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// Find length of common prefix
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size_t min_length = std::min(start->size(), limit.size());
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size_t diff_index = 0;
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while ((diff_index < min_length) &&
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((*start)[diff_index] == limit[diff_index])) {
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diff_index++;
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}
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if (diff_index >= min_length) {
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// Do not shorten if one string is a prefix of the other
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} else {
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2016-04-26 08:02:14 +02:00
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uint8_t start_byte = static_cast<uint8_t>((*start)[diff_index]);
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uint8_t limit_byte = static_cast<uint8_t>(limit[diff_index]);
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2017-05-06 00:01:04 +02:00
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if (start_byte >= limit_byte) {
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2016-04-26 08:02:14 +02:00
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// Cannot shorten since limit is smaller than start or start is
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// already the shortest possible.
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return;
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}
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assert(start_byte < limit_byte);
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if (diff_index < limit.size() - 1 || start_byte + 1 < limit_byte) {
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2011-03-18 23:37:00 +01:00
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(*start)[diff_index]++;
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start->resize(diff_index + 1);
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2016-04-26 08:02:14 +02:00
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} else {
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// v
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// A A 1 A A A
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// A A 2
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//
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// Incrementing the current byte will make start bigger than limit, we
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// will skip this byte, and find the first non 0xFF byte in start and
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// increment it.
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diff_index++;
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while (diff_index < start->size()) {
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// Keep moving until we find the first non 0xFF byte to
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// increment it
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if (static_cast<uint8_t>((*start)[diff_index]) <
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static_cast<uint8_t>(0xff)) {
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(*start)[diff_index]++;
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start->resize(diff_index + 1);
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break;
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}
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diff_index++;
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}
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2011-03-18 23:37:00 +01:00
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}
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2016-04-26 08:02:14 +02:00
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assert(Compare(*start, limit) < 0);
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2011-03-18 23:37:00 +01:00
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}
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}
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2019-02-14 22:52:47 +01:00
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void FindShortSuccessor(std::string* key) const override {
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2011-03-18 23:37:00 +01:00
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// Find first character that can be incremented
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size_t n = key->size();
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2011-04-21 00:48:11 +02:00
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for (size_t i = 0; i < n; i++) {
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2011-03-18 23:37:00 +01:00
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const uint8_t byte = (*key)[i];
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if (byte != static_cast<uint8_t>(0xff)) {
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(*key)[i] = byte + 1;
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key->resize(i+1);
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return;
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}
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}
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// *key is a run of 0xffs. Leave it alone.
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}
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2018-06-27 00:56:26 +02:00
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2019-02-14 22:52:47 +01:00
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bool IsSameLengthImmediateSuccessor(const Slice& s,
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const Slice& t) const override {
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2018-06-27 00:56:26 +02:00
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if (s.size() != t.size() || s.size() == 0) {
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return false;
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}
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size_t diff_ind = s.difference_offset(t);
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// same slice
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if (diff_ind >= s.size()) return false;
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uint8_t byte_s = static_cast<uint8_t>(s[diff_ind]);
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uint8_t byte_t = static_cast<uint8_t>(t[diff_ind]);
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// first different byte must be consecutive, and remaining bytes must be
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// 0xff for s and 0x00 for t
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if (byte_s != uint8_t{0xff} && byte_s + 1 == byte_t) {
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for (size_t i = diff_ind + 1; i < s.size(); ++i) {
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byte_s = static_cast<uint8_t>(s[i]);
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byte_t = static_cast<uint8_t>(t[i]);
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if (byte_s != uint8_t{0xff} || byte_t != uint8_t{0x00}) {
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return false;
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}
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}
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return true;
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} else {
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return false;
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}
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}
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2018-08-15 23:27:47 +02:00
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2019-02-14 22:52:47 +01:00
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bool CanKeysWithDifferentByteContentsBeEqual() const override {
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2018-08-15 23:27:47 +02:00
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return false;
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}
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2019-06-06 08:07:28 +02:00
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2020-03-07 01:21:03 +01:00
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using Comparator::CompareWithoutTimestamp;
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int CompareWithoutTimestamp(const Slice& a, bool /*a_has_ts*/, const Slice& b,
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bool /*b_has_ts*/) const override {
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2019-06-06 08:07:28 +02:00
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return a.compare(b);
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}
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2021-03-10 20:13:55 +01:00
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bool EqualWithoutTimestamp(const Slice& a, const Slice& b) const override {
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return a == b;
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}
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2011-03-18 23:37:00 +01:00
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};
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2014-09-26 10:35:12 +02:00
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class ReverseBytewiseComparatorImpl : public BytewiseComparatorImpl {
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public:
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ReverseBytewiseComparatorImpl() { }
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2021-06-11 15:21:55 +02:00
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static const char* kClassName() {
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2014-09-27 10:06:13 +02:00
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return "rocksdb.ReverseBytewiseComparator";
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2014-09-26 10:35:12 +02:00
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}
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2021-06-11 15:21:55 +02:00
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const char* Name() const override { return kClassName(); }
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2014-09-26 10:35:12 +02:00
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2019-02-14 22:52:47 +01:00
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int Compare(const Slice& a, const Slice& b) const override {
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2014-09-26 10:35:12 +02:00
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return -a.compare(b);
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}
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2018-05-18 03:24:20 +02:00
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void FindShortestSeparator(std::string* start,
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const Slice& limit) const override {
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// Find length of common prefix
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size_t min_length = std::min(start->size(), limit.size());
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size_t diff_index = 0;
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while ((diff_index < min_length) &&
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((*start)[diff_index] == limit[diff_index])) {
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diff_index++;
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}
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assert(diff_index <= min_length);
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if (diff_index == min_length) {
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// Do not shorten if one string is a prefix of the other
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//
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// We could handle cases like:
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// V
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// A A 2 X Y
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// A A 2
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// in a similar way as BytewiseComparator::FindShortestSeparator().
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// We keep it simple by not implementing it. We can come back to it
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// later when needed.
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} else {
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uint8_t start_byte = static_cast<uint8_t>((*start)[diff_index]);
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uint8_t limit_byte = static_cast<uint8_t>(limit[diff_index]);
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if (start_byte > limit_byte && diff_index < start->size() - 1) {
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// Case like
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// V
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// A A 3 A A
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// A A 1 B B
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//
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// or
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// v
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// A A 2 A A
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// A A 1 B B
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// In this case "AA2" will be good.
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#ifndef NDEBUG
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std::string old_start = *start;
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#endif
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start->resize(diff_index + 1);
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#ifndef NDEBUG
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assert(old_start >= *start);
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#endif
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assert(Slice(*start).compare(limit) > 0);
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}
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}
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}
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void FindShortSuccessor(std::string* /*key*/) const override {
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// Don't do anything for simplicity.
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}
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2018-08-15 23:27:47 +02:00
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2019-02-14 22:52:47 +01:00
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bool CanKeysWithDifferentByteContentsBeEqual() const override {
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2018-08-15 23:27:47 +02:00
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return false;
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}
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2019-06-06 08:07:28 +02:00
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2020-03-07 01:21:03 +01:00
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using Comparator::CompareWithoutTimestamp;
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int CompareWithoutTimestamp(const Slice& a, bool /*a_has_ts*/, const Slice& b,
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bool /*b_has_ts*/) const override {
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2019-06-06 08:07:28 +02:00
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return -a.compare(b);
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}
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2018-05-18 03:24:20 +02:00
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};
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2022-02-08 21:14:25 +01:00
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// EXPERIMENTAL
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// Comparator with 64-bit integer timestamp.
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// We did not performance test this yet.
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template <typename TComparator>
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class ComparatorWithU64TsImpl : public Comparator {
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static_assert(std::is_base_of<Comparator, TComparator>::value,
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"template type must be a inherited type of comparator");
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public:
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explicit ComparatorWithU64TsImpl() : Comparator(/*ts_sz=*/sizeof(uint64_t)) {
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assert(cmp_without_ts_.timestamp_size() == 0);
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}
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static const char* kClassName() {
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static std::string class_name = kClassNameInternal();
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return class_name.c_str();
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}
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const char* Name() const override { return kClassName(); }
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void FindShortSuccessor(std::string*) const override {}
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void FindShortestSeparator(std::string*, const Slice&) const override {}
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int Compare(const Slice& a, const Slice& b) const override {
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int ret = CompareWithoutTimestamp(a, b);
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size_t ts_sz = timestamp_size();
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if (ret != 0) {
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return ret;
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}
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// Compare timestamp.
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// For the same user key with different timestamps, larger (newer) timestamp
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// comes first.
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return -CompareTimestamp(ExtractTimestampFromUserKey(a, ts_sz),
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ExtractTimestampFromUserKey(b, ts_sz));
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}
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using Comparator::CompareWithoutTimestamp;
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int CompareWithoutTimestamp(const Slice& a, bool a_has_ts, const Slice& b,
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bool b_has_ts) const override {
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const size_t ts_sz = timestamp_size();
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assert(!a_has_ts || a.size() >= ts_sz);
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assert(!b_has_ts || b.size() >= ts_sz);
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Slice lhs = a_has_ts ? StripTimestampFromUserKey(a, ts_sz) : a;
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Slice rhs = b_has_ts ? StripTimestampFromUserKey(b, ts_sz) : b;
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return cmp_without_ts_.Compare(lhs, rhs);
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}
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int CompareTimestamp(const Slice& ts1, const Slice& ts2) const override {
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assert(ts1.size() == sizeof(uint64_t));
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assert(ts2.size() == sizeof(uint64_t));
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uint64_t lhs = DecodeFixed64(ts1.data());
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uint64_t rhs = DecodeFixed64(ts2.data());
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if (lhs < rhs) {
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return -1;
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} else if (lhs > rhs) {
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return 1;
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} else {
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return 0;
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}
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}
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private:
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static std::string kClassNameInternal() {
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std::stringstream ss;
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ss << TComparator::kClassName() << ".u64ts";
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return ss.str();
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}
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TComparator cmp_without_ts_;
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};
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2014-09-26 10:35:12 +02:00
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}// namespace
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2011-11-14 18:06:16 +01:00
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2011-03-18 23:37:00 +01:00
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const Comparator* BytewiseComparator() {
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2015-08-11 19:55:27 +02:00
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static BytewiseComparatorImpl bytewise;
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return &bytewise;
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2011-03-18 23:37:00 +01:00
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}
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2014-09-26 10:35:12 +02:00
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const Comparator* ReverseBytewiseComparator() {
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2015-08-11 19:55:27 +02:00
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static ReverseBytewiseComparatorImpl rbytewise;
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return &rbytewise;
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2014-09-26 10:35:12 +02:00
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}
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2022-02-08 21:14:25 +01:00
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const Comparator* BytewiseComparatorWithU64Ts() {
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static ComparatorWithU64TsImpl<BytewiseComparatorImpl> comp_with_u64_ts;
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return &comp_with_u64_ts;
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}
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2021-06-11 15:21:55 +02:00
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#ifndef ROCKSDB_LITE
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static int RegisterBuiltinComparators(ObjectLibrary& library,
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const std::string& /*arg*/) {
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2022-01-11 15:32:42 +01:00
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library.AddFactory<const Comparator>(
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2021-06-11 15:21:55 +02:00
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BytewiseComparatorImpl::kClassName(),
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[](const std::string& /*uri*/,
|
|
|
|
std::unique_ptr<const Comparator>* /*guard */,
|
|
|
|
std::string* /* errmsg */) { return BytewiseComparator(); });
|
2022-01-11 15:32:42 +01:00
|
|
|
library.AddFactory<const Comparator>(
|
2021-06-11 15:21:55 +02:00
|
|
|
ReverseBytewiseComparatorImpl::kClassName(),
|
|
|
|
[](const std::string& /*uri*/,
|
|
|
|
std::unique_ptr<const Comparator>* /*guard */,
|
|
|
|
std::string* /* errmsg */) { return ReverseBytewiseComparator(); });
|
2022-02-08 21:14:25 +01:00
|
|
|
library.AddFactory<const Comparator>(
|
|
|
|
ComparatorWithU64TsImpl<BytewiseComparatorImpl>::kClassName(),
|
|
|
|
[](const std::string& /*uri*/,
|
|
|
|
std::unique_ptr<const Comparator>* /*guard */,
|
|
|
|
std::string* /* errmsg */) { return BytewiseComparatorWithU64Ts(); });
|
|
|
|
return 3;
|
2021-06-11 15:21:55 +02:00
|
|
|
}
|
|
|
|
#endif // ROCKSDB_LITE
|
|
|
|
|
|
|
|
Status Comparator::CreateFromString(const ConfigOptions& config_options,
|
|
|
|
const std::string& value,
|
|
|
|
const Comparator** result) {
|
|
|
|
#ifndef ROCKSDB_LITE
|
|
|
|
static std::once_flag once;
|
|
|
|
std::call_once(once, [&]() {
|
|
|
|
RegisterBuiltinComparators(*(ObjectLibrary::Default().get()), "");
|
|
|
|
});
|
|
|
|
#endif // ROCKSDB_LITE
|
|
|
|
std::string id;
|
|
|
|
std::unordered_map<std::string, std::string> opt_map;
|
2021-06-29 18:07:10 +02:00
|
|
|
Status status = Customizable::GetOptionsMap(config_options, *result, value,
|
|
|
|
&id, &opt_map);
|
2021-06-11 15:21:55 +02:00
|
|
|
if (!status.ok()) { // GetOptionsMap failed
|
|
|
|
return status;
|
|
|
|
}
|
|
|
|
if (id == BytewiseComparatorImpl::kClassName()) {
|
|
|
|
*result = BytewiseComparator();
|
|
|
|
} else if (id == ReverseBytewiseComparatorImpl::kClassName()) {
|
|
|
|
*result = ReverseBytewiseComparator();
|
2022-02-08 21:14:25 +01:00
|
|
|
} else if (id ==
|
|
|
|
ComparatorWithU64TsImpl<BytewiseComparatorImpl>::kClassName()) {
|
|
|
|
*result = BytewiseComparatorWithU64Ts();
|
2021-06-11 15:21:55 +02:00
|
|
|
} else if (value.empty()) {
|
|
|
|
// No Id and no options. Clear the object
|
|
|
|
*result = nullptr;
|
|
|
|
return Status::OK();
|
|
|
|
} else if (id.empty()) { // We have no Id but have options. Not good
|
|
|
|
return Status::NotSupported("Cannot reset object ", id);
|
|
|
|
} else {
|
|
|
|
#ifndef ROCKSDB_LITE
|
|
|
|
status = config_options.registry->NewStaticObject(id, result);
|
|
|
|
#else
|
|
|
|
status = Status::NotSupported("Cannot load object in LITE mode ", id);
|
|
|
|
#endif // ROCKSDB_LITE
|
|
|
|
if (!status.ok()) {
|
|
|
|
if (config_options.ignore_unsupported_options &&
|
|
|
|
status.IsNotSupported()) {
|
|
|
|
return Status::OK();
|
|
|
|
} else {
|
|
|
|
return status;
|
|
|
|
}
|
2022-02-11 14:10:10 +01:00
|
|
|
} else {
|
2021-06-11 15:21:55 +02:00
|
|
|
Comparator* comparator = const_cast<Comparator*>(*result);
|
2022-02-11 14:10:10 +01:00
|
|
|
status =
|
|
|
|
Customizable::ConfigureNewObject(config_options, comparator, opt_map);
|
2021-06-11 15:21:55 +02:00
|
|
|
}
|
|
|
|
}
|
|
|
|
return status;
|
|
|
|
}
|
2020-02-20 21:07:53 +01:00
|
|
|
} // namespace ROCKSDB_NAMESPACE
|