mirror of
https://github.com/ClickHouse/ClickHouse.git
synced 2024-12-12 17:32:32 +00:00
475 lines
16 KiB
C++
475 lines
16 KiB
C++
#include <Interpreters/Cluster.h>
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#include <common/SimpleCache.h>
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#include <Common/DNSResolver.h>
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#include <Common/escapeForFileName.h>
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#include <Common/isLocalAddress.h>
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#include <Common/StringUtils/StringUtils.h>
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#include <Common/parseAddress.h>
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#include <IO/HexWriteBuffer.h>
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#include <IO/WriteHelpers.h>
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#include <IO/ReadHelpers.h>
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#include <Poco/Util/AbstractConfiguration.h>
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#include <Poco/Util/Application.h>
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namespace DB
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{
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namespace ErrorCodes
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{
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extern const int UNKNOWN_ELEMENT_IN_CONFIG;
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extern const int EXCESSIVE_ELEMENT_IN_CONFIG;
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extern const int LOGICAL_ERROR;
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extern const int SHARD_HAS_NO_CONNECTIONS;
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extern const int SYNTAX_ERROR;
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}
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namespace
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{
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/// Default shard weight.
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static constexpr UInt32 default_weight = 1;
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inline bool isLocalImpl(const Cluster::Address & address, const Poco::Net::SocketAddress & resolved_address, UInt16 clickhouse_port)
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{
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/// If there is replica, for which:
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/// - its port is the same that the server is listening;
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/// - its host is resolved to set of addresses, one of which is the same as one of addresses of network interfaces of the server machine*;
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/// then we must go to this shard without any inter-process communication.
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///
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/// * - this criteria is somewhat approximate.
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///
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/// Also, replica is considered non-local, if it has default database set
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/// (only reason is to avoid query rewrite).
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return address.default_database.empty() && isLocalAddress(resolved_address, clickhouse_port);
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}
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}
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/// Implementation of Cluster::Address class
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std::optional<Poco::Net::SocketAddress> Cluster::Address::getResolvedAddress() const
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{
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try
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{
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return DNSResolver::instance().resolveAddress(host_name, port);
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}
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catch (...)
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{
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/// Failure in DNS resolution in cluster initialization is Ok.
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tryLogCurrentException("Cluster");
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return {};
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}
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}
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bool Cluster::Address::isLocal(UInt16 clickhouse_port) const
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{
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if (auto resolved = getResolvedAddress())
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return isLocalImpl(*this, *resolved, clickhouse_port);
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return false;
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}
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Cluster::Address::Address(const Poco::Util::AbstractConfiguration & config, const String & config_prefix)
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{
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host_name = config.getString(config_prefix + ".host");
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port = static_cast<UInt16>(config.getInt(config_prefix + ".port"));
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if (config.has(config_prefix + ".user"))
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user_specified = true;
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user = config.getString(config_prefix + ".user", "default");
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password = config.getString(config_prefix + ".password", "");
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default_database = config.getString(config_prefix + ".default_database", "");
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secure = config.getBool(config_prefix + ".secure", false) ? Protocol::Secure::Enable : Protocol::Secure::Disable;
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compression = config.getBool(config_prefix + ".compression", true) ? Protocol::Compression::Enable : Protocol::Compression::Disable;
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is_local = isLocal(config.getInt("tcp_port", 0));
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}
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Cluster::Address::Address(const String & host_port_, const String & user_, const String & password_, UInt16 clickhouse_port, bool secure_)
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: user(user_), password(password_)
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{
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auto parsed_host_port = parseAddress(host_port_, clickhouse_port);
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host_name = parsed_host_port.first;
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port = parsed_host_port.second;
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secure = secure_ ? Protocol::Secure::Enable : Protocol::Secure::Disable;
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is_local = isLocal(clickhouse_port);
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}
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String Cluster::Address::toString() const
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{
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return toString(host_name, port);
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}
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String Cluster::Address::toString(const String & host_name, UInt16 port)
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{
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return escapeForFileName(host_name) + ':' + DB::toString(port);
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}
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String Cluster::Address::readableString() const
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{
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String res;
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/// If it looks like IPv6 address add braces to avoid ambiguity in ipv6_host:port notation
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if (host_name.find_first_of(':') != std::string::npos && !host_name.empty() && host_name.back() != ']')
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res += '[' + host_name + ']';
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else
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res += host_name;
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res += ':' + DB::toString(port);
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return res;
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}
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std::pair<String, UInt16> Cluster::Address::fromString(const String & host_port_string)
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{
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auto pos = host_port_string.find_last_of(':');
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if (pos == std::string::npos)
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throw Exception("Incorrect <host>:<port> format " + host_port_string, ErrorCodes::SYNTAX_ERROR);
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return {unescapeForFileName(host_port_string.substr(0, pos)), parse<UInt16>(host_port_string.substr(pos + 1))};
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}
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String Cluster::Address::toFullString() const
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{
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return
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escapeForFileName(user) +
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(password.empty() ? "" : (':' + escapeForFileName(password))) + '@' +
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escapeForFileName(host_name) + ':' +
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std::to_string(port) +
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(default_database.empty() ? "" : ('#' + escapeForFileName(default_database)))
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+ ((secure == Protocol::Secure::Enable) ? "+secure" : "");
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}
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Cluster::Address Cluster::Address::fromFullString(const String & full_string)
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{
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const char * address_begin = full_string.data();
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const char * address_end = address_begin + full_string.size();
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Protocol::Secure secure = Protocol::Secure::Disable;
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const char * secure_tag = "+secure";
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if (endsWith(full_string, secure_tag))
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{
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address_end -= strlen(secure_tag);
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secure = Protocol::Secure::Enable;
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}
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const char * user_pw_end = strchr(full_string.data(), '@');
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const char * colon = strchr(full_string.data(), ':');
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if (!user_pw_end || !colon)
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throw Exception("Incorrect user[:password]@host:port#default_database format " + full_string, ErrorCodes::SYNTAX_ERROR);
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const bool has_pw = colon < user_pw_end;
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const char * host_end = has_pw ? strchr(user_pw_end + 1, ':') : colon;
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if (!host_end)
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throw Exception("Incorrect address '" + full_string + "', it does not contain port", ErrorCodes::SYNTAX_ERROR);
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const char * has_db = strchr(full_string.data(), '#');
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const char * port_end = has_db ? has_db : address_end;
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Address address;
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address.secure = secure;
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address.port = parse<UInt16>(host_end + 1, port_end - (host_end + 1));
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address.host_name = unescapeForFileName(std::string(user_pw_end + 1, host_end));
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address.user = unescapeForFileName(std::string(address_begin, has_pw ? colon : user_pw_end));
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address.password = has_pw ? unescapeForFileName(std::string(colon + 1, user_pw_end)) : std::string();
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address.default_database = has_db ? unescapeForFileName(std::string(has_db + 1, address_end)) : std::string();
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return address;
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}
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/// Implementation of Clusters class
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Clusters::Clusters(const Poco::Util::AbstractConfiguration & config, const Settings & settings, const String & config_name)
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{
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updateClusters(config, settings, config_name);
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}
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ClusterPtr Clusters::getCluster(const std::string & cluster_name) const
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{
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std::lock_guard lock(mutex);
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auto it = impl.find(cluster_name);
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return (it != impl.end()) ? it->second : nullptr;
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}
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void Clusters::setCluster(const String & cluster_name, const std::shared_ptr<Cluster> & cluster)
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{
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std::lock_guard lock(mutex);
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impl[cluster_name] = cluster;
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}
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void Clusters::updateClusters(const Poco::Util::AbstractConfiguration & config, const Settings & settings, const String & config_name)
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{
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Poco::Util::AbstractConfiguration::Keys config_keys;
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config.keys(config_name, config_keys);
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std::lock_guard lock(mutex);
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impl.clear();
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for (const auto & key : config_keys)
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{
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if (key.find('.') != String::npos)
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throw Exception("Cluster names with dots are not supported: '" + key + "'", ErrorCodes::SYNTAX_ERROR);
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impl.emplace(key, std::make_shared<Cluster>(config, settings, config_name + "." + key));
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}
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}
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Clusters::Impl Clusters::getContainer() const
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{
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std::lock_guard lock(mutex);
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/// The following line copies container of shared_ptrs to return value under lock
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return impl;
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}
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/// Implementation of `Cluster` class
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Cluster::Cluster(const Poco::Util::AbstractConfiguration & config, const Settings & settings, const String & cluster_name)
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{
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Poco::Util::AbstractConfiguration::Keys config_keys;
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config.keys(cluster_name, config_keys);
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if (config_keys.empty())
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throw Exception("No cluster elements (shard, node) specified in config at path " + cluster_name, ErrorCodes::SHARD_HAS_NO_CONNECTIONS);
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const auto & config_prefix = cluster_name + ".";
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UInt32 current_shard_num = 1;
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for (const auto & key : config_keys)
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{
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if (startsWith(key, "node"))
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{
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/// Shard without replicas.
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Addresses addresses;
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const auto & prefix = config_prefix + key;
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const auto weight = config.getInt(prefix + ".weight", default_weight);
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addresses.emplace_back(config, prefix);
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const auto & address = addresses.back();
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ShardInfo info;
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info.shard_num = current_shard_num;
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info.weight = weight;
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if (address.is_local)
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info.local_addresses.push_back(address);
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ConnectionPoolPtr pool = std::make_shared<ConnectionPool>(
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settings.distributed_connections_pool_size,
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address.host_name, address.port,
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address.default_database, address.user, address.password,
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"server", address.compression, address.secure);
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info.pool = std::make_shared<ConnectionPoolWithFailover>(
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ConnectionPoolPtrs{pool}, settings.load_balancing);
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info.per_replica_pools = {std::move(pool)};
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if (weight)
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slot_to_shard.insert(std::end(slot_to_shard), weight, shards_info.size());
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shards_info.emplace_back(std::move(info));
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addresses_with_failover.emplace_back(std::move(addresses));
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}
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else if (startsWith(key, "shard"))
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{
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/// Shard with replicas.
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Poco::Util::AbstractConfiguration::Keys replica_keys;
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config.keys(config_prefix + key, replica_keys);
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addresses_with_failover.emplace_back();
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Addresses & replica_addresses = addresses_with_failover.back();
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UInt32 current_replica_num = 1;
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const auto & partial_prefix = config_prefix + key + ".";
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const auto weight = config.getUInt(partial_prefix + ".weight", default_weight);
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bool internal_replication = config.getBool(partial_prefix + ".internal_replication", false);
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/// In case of internal_replication we will be appending names to dir_name_for_internal_replication
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std::string dir_name_for_internal_replication;
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auto first = true;
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for (const auto & replica_key : replica_keys)
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{
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if (startsWith(replica_key, "weight") || startsWith(replica_key, "internal_replication"))
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continue;
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if (startsWith(replica_key, "replica"))
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{
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replica_addresses.emplace_back(config, partial_prefix + replica_key);
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++current_replica_num;
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if (!replica_addresses.back().is_local)
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{
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if (internal_replication)
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{
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auto dir_name = replica_addresses.back().toFullString();
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if (first)
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dir_name_for_internal_replication = dir_name;
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else
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dir_name_for_internal_replication += "," + dir_name;
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}
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if (first) first = false;
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}
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}
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else
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throw Exception("Unknown element in config: " + replica_key, ErrorCodes::UNKNOWN_ELEMENT_IN_CONFIG);
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}
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Addresses shard_local_addresses;
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ConnectionPoolPtrs all_replicas_pools;
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all_replicas_pools.reserve(replica_addresses.size());
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for (const auto & replica : replica_addresses)
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{
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auto replica_pool = std::make_shared<ConnectionPool>(
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settings.distributed_connections_pool_size,
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replica.host_name, replica.port,
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replica.default_database, replica.user, replica.password,
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"server", replica.compression, replica.secure);
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all_replicas_pools.emplace_back(replica_pool);
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if (replica.is_local)
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shard_local_addresses.push_back(replica);
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}
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ConnectionPoolWithFailoverPtr shard_pool = std::make_shared<ConnectionPoolWithFailover>(
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all_replicas_pools, settings.load_balancing);
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if (weight)
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slot_to_shard.insert(std::end(slot_to_shard), weight, shards_info.size());
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shards_info.push_back({std::move(dir_name_for_internal_replication), current_shard_num, weight,
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std::move(shard_local_addresses), std::move(shard_pool), std::move(all_replicas_pools), internal_replication});
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}
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else
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throw Exception("Unknown element in config: " + key, ErrorCodes::UNKNOWN_ELEMENT_IN_CONFIG);
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++current_shard_num;
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}
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if (addresses_with_failover.empty())
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throw Exception("There must be either 'node' or 'shard' elements in config", ErrorCodes::EXCESSIVE_ELEMENT_IN_CONFIG);
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initMisc();
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}
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Cluster::Cluster(const Settings & settings, const std::vector<std::vector<String>> & names,
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const String & username, const String & password, UInt16 clickhouse_port, bool treat_local_as_remote, bool secure)
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{
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UInt32 current_shard_num = 1;
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for (const auto & shard : names)
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{
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Addresses current;
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for (auto & replica : shard)
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current.emplace_back(replica, username, password, clickhouse_port, secure);
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addresses_with_failover.emplace_back(current);
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Addresses shard_local_addresses;
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ConnectionPoolPtrs all_replicas;
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all_replicas.reserve(current.size());
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for (const auto & replica : current)
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{
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auto replica_pool = std::make_shared<ConnectionPool>(
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settings.distributed_connections_pool_size,
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replica.host_name, replica.port,
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replica.default_database, replica.user, replica.password,
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"server", replica.compression, replica.secure);
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all_replicas.emplace_back(replica_pool);
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if (replica.is_local && !treat_local_as_remote)
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shard_local_addresses.push_back(replica);
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}
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ConnectionPoolWithFailoverPtr shard_pool = std::make_shared<ConnectionPoolWithFailover>(
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all_replicas, settings.load_balancing);
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slot_to_shard.insert(std::end(slot_to_shard), default_weight, shards_info.size());
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shards_info.push_back({{}, current_shard_num, default_weight, std::move(shard_local_addresses), std::move(shard_pool),
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std::move(all_replicas), false});
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++current_shard_num;
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}
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initMisc();
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}
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Poco::Timespan Cluster::saturate(const Poco::Timespan & v, const Poco::Timespan & limit)
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{
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if (limit.totalMicroseconds() == 0)
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return v;
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else
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return (v > limit) ? limit : v;
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}
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void Cluster::initMisc()
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{
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for (const auto & shard_info : shards_info)
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{
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if (!shard_info.isLocal() && !shard_info.hasRemoteConnections())
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throw Exception("Found shard without any specified connection",
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ErrorCodes::SHARD_HAS_NO_CONNECTIONS);
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}
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for (const auto & shard_info : shards_info)
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{
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if (shard_info.isLocal())
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++local_shard_count;
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else
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++remote_shard_count;
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}
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for (auto & shard_info : shards_info)
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{
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if (!shard_info.isLocal())
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{
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any_remote_shard_info = &shard_info;
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break;
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}
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}
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}
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std::unique_ptr<Cluster> Cluster::getClusterWithSingleShard(size_t index) const
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{
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return std::unique_ptr<Cluster>{ new Cluster(*this, {index}) };
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}
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std::unique_ptr<Cluster> Cluster::getClusterWithMultipleShards(const std::vector<size_t> & indices) const
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{
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return std::unique_ptr<Cluster>{ new Cluster(*this, indices) };
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}
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Cluster::Cluster(const Cluster & from, const std::vector<size_t> & indices)
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: shards_info{}
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{
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for (size_t index : indices)
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{
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shards_info.emplace_back(from.shards_info.at(index));
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if (!from.addresses_with_failover.empty())
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addresses_with_failover.emplace_back(from.addresses_with_failover.at(index));
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}
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initMisc();
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}
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}
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