This replaces a lot of make_lw_shared(schema(...)) with make_shared_schema(...). This makes it easier to drop a dependency on the differences between seastar::make_shared and std::make_shared. Signed-off-by: Rafael Ávila de Espíndola <espindola@scylladb.com>
208 lines
7.7 KiB
C++
208 lines
7.7 KiB
C++
/*
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* Copyright (C) 2019 pengjian.uestc @ gmail.com
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*/
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/*
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* This file is part of Scylla.
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*
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* Scylla is free software: you can redistribute it and/or modify
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* it under the terms of the GNU Affero General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* Scylla is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* 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
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* along with Scylla. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "redis/keyspace_utils.hh"
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#include "schema_builder.hh"
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#include "types.hh"
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#include "exceptions/exceptions.hh"
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#include "cql3/statements/ks_prop_defs.hh"
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#include "seastar/core/future.hh"
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#include <memory>
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#include "log.hh"
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#include "db/query_context.hh"
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#include "auth/service.hh"
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#include "service/migration_manager.hh"
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#include "service/client_state.hh"
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#include "transport/server.hh"
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#include "db/system_keyspace.hh"
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#include "schema.hh"
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#include "database.hh"
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#include "gms/gossiper.hh"
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#include <seastar/core/print.hh>
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using namespace seastar;
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namespace redis {
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static logging::logger logger("keyspace_utils");
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schema_ptr strings_schema(sstring ks_name) {
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schema_builder builder(make_shared_schema(generate_legacy_id(ks_name, redis::STRINGs), ks_name, redis::STRINGs,
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// partition key
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{{"pkey", utf8_type}},
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// clustering key
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{},
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// regular columns
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{{"data", utf8_type}},
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// static columns
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{},
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// regular column name type
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utf8_type,
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// comment
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"save STRINGs for redis"
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));
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builder.set_gc_grace_seconds(0);
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builder.with(schema_builder::compact_storage::yes);
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builder.with_version(db::system_keyspace::generate_schema_version(builder.uuid()));
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return builder.build(schema_builder::compact_storage::yes);
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}
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schema_ptr lists_schema(sstring ks_name) {
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schema_builder builder(make_shared_schema(generate_legacy_id(ks_name, redis::LISTs), ks_name, redis::LISTs,
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// partition key
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{{"pkey", utf8_type}},
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// clustering key
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{{"ckey", bytes_type}},
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// regular columns
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{{"data", utf8_type}},
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// static columns
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{},
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// regular column name type
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utf8_type,
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// comment
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"save LISTs for redis"
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));
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builder.set_gc_grace_seconds(0);
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builder.with(schema_builder::compact_storage::yes);
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builder.with_version(db::system_keyspace::generate_schema_version(builder.uuid()));
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return builder.build(schema_builder::compact_storage::yes);
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}
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schema_ptr hashes_schema(sstring ks_name) {
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schema_builder builder(make_shared_schema(generate_legacy_id(ks_name, redis::HASHes), ks_name, redis::HASHes,
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// partition key
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{{"pkey", utf8_type}},
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// clustering key
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{{"ckey", utf8_type}},
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// regular columns
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{{"data", utf8_type}},
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// static columns
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{},
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// regular column name type
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utf8_type,
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// comment
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"save HASHes for redis"
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));
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builder.set_gc_grace_seconds(0);
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builder.with(schema_builder::compact_storage::yes);
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builder.with_version(db::system_keyspace::generate_schema_version(builder.uuid()));
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return builder.build(schema_builder::compact_storage::yes);
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}
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schema_ptr sets_schema(sstring ks_name) {
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schema_builder builder(make_shared_schema(generate_legacy_id(ks_name, redis::SETs), ks_name, redis::SETs,
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// partition key
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{{"pkey", utf8_type}},
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// clustering key
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{{"ckey", utf8_type}},
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// regular columns
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{},
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// static columns
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{},
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// regular column name type
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utf8_type,
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// comment
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"save SETs for redis"
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));
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builder.set_gc_grace_seconds(0);
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builder.with(schema_builder::compact_storage::yes);
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builder.with_version(db::system_keyspace::generate_schema_version(builder.uuid()));
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return builder.build(schema_builder::compact_storage::yes);
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}
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schema_ptr zsets_schema(sstring ks_name) {
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schema_builder builder(make_shared_schema(generate_legacy_id(ks_name, redis::ZSETs), ks_name, redis::ZSETs,
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// partition key
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{{"pkey", utf8_type}},
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// clustering key
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{{"ckey", double_type}},
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// regular columns
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{{"data", utf8_type}},
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// static columns
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{},
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// regular column name type
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utf8_type,
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// comment
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"save ZSETs for redis"
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));
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builder.set_gc_grace_seconds(0);
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builder.with(schema_builder::compact_storage::yes);
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builder.with_version(db::system_keyspace::generate_schema_version(builder.uuid()));
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return builder.build(schema_builder::compact_storage::yes);
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}
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future<> create_keyspace_if_not_exists_impl(db::config& config, int default_replication_factor) {
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auto keyspace_replication_strategy_options = config.redis_keyspace_replication_strategy_options();
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if (keyspace_replication_strategy_options.count("class") == 0) {
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keyspace_replication_strategy_options["class"] = "SimpleStrategy";
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keyspace_replication_strategy_options["replication_factor"] = sprint("%d", default_replication_factor);
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}
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auto keyspace_gen = [&config, keyspace_replication_strategy_options = std::move(keyspace_replication_strategy_options)] (sstring name) {
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auto& proxy = service::get_local_storage_proxy();
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if (proxy.get_db().local().has_keyspace(name)) {
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return make_ready_future<>();
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}
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auto attrs = make_shared<cql3::statements::ks_prop_defs>();
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attrs->add_property(cql3::statements::ks_prop_defs::KW_DURABLE_WRITES, "true");
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std::map<sstring, sstring> replication_properties;
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for (auto&& option : keyspace_replication_strategy_options) {
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replication_properties.emplace(option.first, option.second);
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}
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attrs->add_property(cql3::statements::ks_prop_defs::KW_REPLICATION, replication_properties);
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attrs->validate();
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const auto& tm = proxy.get_token_metadata();
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return service::get_local_migration_manager().announce_new_keyspace(attrs->as_ks_metadata(name, tm), false);
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};
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auto table_gen = [] (sstring ks_name, sstring cf_name, schema_ptr schema) {
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auto& proxy = service::get_local_storage_proxy();
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if (proxy.get_db().local().has_schema(ks_name, cf_name)) {
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return make_ready_future<>();
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}
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logger.info("Create keyspace: {}, table: {} for redis.", ks_name, cf_name);
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return service::get_local_migration_manager().announce_new_column_family(schema, false);
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};
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// create 16 default database for redis.
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return parallel_for_each(boost::irange<unsigned>(0, 16), [keyspace_gen = std::move(keyspace_gen), table_gen = std::move(table_gen)] (auto c) {
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auto ks_name = sprint("REDIS_%d", c);
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return keyspace_gen(ks_name).then([ks_name, table_gen] {
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return when_all_succeed(
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table_gen(ks_name, redis::STRINGs, strings_schema(ks_name)),
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table_gen(ks_name, redis::LISTs, lists_schema(ks_name)),
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table_gen(ks_name, redis::SETs, sets_schema(ks_name)),
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table_gen(ks_name, redis::HASHes, hashes_schema(ks_name)),
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table_gen(ks_name, redis::ZSETs, zsets_schema(ks_name))
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).discard_result();
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});
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});
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}
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future<> maybe_create_keyspace(db::config& config) {
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return gms::get_up_endpoint_count().then([&config] (auto live_endpoint_count) {
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int replication_factor = 3;
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if (live_endpoint_count < replication_factor) {
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replication_factor = 1;
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logger.warn("Creating keyspace for redis with unsafe, live endpoint nodes count: {}.", live_endpoint_count);
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}
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return create_keyspace_if_not_exists_impl(config, replication_factor);
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});
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}
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}
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