mirror of
https://github.com/ClickHouse/ClickHouse.git
synced 2024-12-12 09:22:05 +00:00
760 lines
27 KiB
C++
760 lines
27 KiB
C++
#include "TrieDictionary.h"
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#include <stack>
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#include <Columns/ColumnFixedString.h>
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#include <Columns/ColumnVector.h>
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#include <Common/assert_cast.h>
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#include <Common/IPv6ToBinary.h>
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#include <DataTypes/DataTypeFixedString.h>
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#include <DataTypes/DataTypeString.h>
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#include <IO/WriteIntText.h>
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#include <Poco/ByteOrder.h>
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#include <Common/formatIPv6.h>
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#include <common/itoa.h>
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#include <ext/map.h>
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#include <ext/range.h>
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#include "DictionaryBlockInputStream.h"
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#include "DictionaryFactory.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 LOGICAL_ERROR;
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extern const int TYPE_MISMATCH;
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extern const int BAD_ARGUMENTS;
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extern const int DICTIONARY_IS_EMPTY;
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}
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static void validateKeyTypes(const DataTypes & key_types)
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{
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if (key_types.size() != 1)
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throw Exception{"Expected a single IP address", ErrorCodes::TYPE_MISMATCH};
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const auto & actual_type = key_types[0]->getName();
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if (actual_type != "UInt32" && actual_type != "FixedString(16)")
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throw Exception{"Key does not match, expected either UInt32 or FixedString(16)", ErrorCodes::TYPE_MISMATCH};
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}
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/// Create IPAddress from 16 byte array converting to ipv4 if possible
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static Poco::Net::IPAddress ip4or6fromBytes(const uint8_t * data)
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{
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Poco::Net::IPAddress ipaddr(reinterpret_cast<const uint8_t *>(data), IPV6_BINARY_LENGTH);
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// try to consider as ipv4
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bool is_v4 = false;
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if (auto addr_v4 = IPv4ToBinary(ipaddr, is_v4); is_v4)
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return Poco::Net::IPAddress(reinterpret_cast<const uint8_t *>(&addr_v4), IPV4_BINARY_LENGTH);
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return ipaddr;
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}
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TrieDictionary::TrieDictionary(
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const StorageID & dict_id_,
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const DictionaryStructure & dict_struct_,
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DictionarySourcePtr source_ptr_,
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const DictionaryLifetime dict_lifetime_,
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bool require_nonempty_)
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: IDictionaryBase(dict_id_)
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, dict_struct(dict_struct_)
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, source_ptr{std::move(source_ptr_)}
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, dict_lifetime(dict_lifetime_)
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, require_nonempty(require_nonempty_)
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, total_ip_length(0)
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, logger(&Poco::Logger::get("TrieDictionary"))
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{
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createAttributes();
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loadData();
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calculateBytesAllocated();
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}
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TrieDictionary::~TrieDictionary()
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{
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}
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#define DECLARE(TYPE) \
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void TrieDictionary::get##TYPE( \
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const std::string & attribute_name, const Columns & key_columns, const DataTypes & key_types, ResultArrayType<TYPE> & out) const \
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{ \
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validateKeyTypes(key_types); \
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\
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const auto & attribute = getAttribute(attribute_name); \
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checkAttributeType(this, attribute_name, attribute.type, AttributeUnderlyingType::ut##TYPE); \
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\
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const auto null_value = std::get<TYPE>(attribute.null_values); \
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\
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getItemsImpl<TYPE, TYPE>( \
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attribute, \
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key_columns, \
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[&](const size_t row, const auto value) { out[row] = value; }, \
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[&](const size_t) { return null_value; }); \
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}
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DECLARE(UInt8)
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DECLARE(UInt16)
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DECLARE(UInt32)
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DECLARE(UInt64)
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DECLARE(UInt128)
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DECLARE(Int8)
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DECLARE(Int16)
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DECLARE(Int32)
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DECLARE(Int64)
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DECLARE(Float32)
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DECLARE(Float64)
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DECLARE(Decimal32)
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DECLARE(Decimal64)
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DECLARE(Decimal128)
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#undef DECLARE
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void TrieDictionary::getString(
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const std::string & attribute_name, const Columns & key_columns, const DataTypes & key_types, ColumnString * out) const
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{
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validateKeyTypes(key_types);
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const auto & attribute = getAttribute(attribute_name);
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checkAttributeType(this, attribute_name, attribute.type, AttributeUnderlyingType::utString);
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const auto & null_value = StringRef{std::get<String>(attribute.null_values)};
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getItemsImpl<StringRef, StringRef>(
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attribute,
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key_columns,
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[&](const size_t, const StringRef value) { out->insertData(value.data, value.size); },
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[&](const size_t) { return null_value; });
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}
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#define DECLARE(TYPE) \
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void TrieDictionary::get##TYPE( \
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const std::string & attribute_name, \
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const Columns & key_columns, \
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const DataTypes & key_types, \
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const PaddedPODArray<TYPE> & def, \
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ResultArrayType<TYPE> & out) const \
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{ \
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validateKeyTypes(key_types); \
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\
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const auto & attribute = getAttribute(attribute_name); \
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checkAttributeType(this, attribute_name, attribute.type, AttributeUnderlyingType::ut##TYPE); \
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\
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getItemsImpl<TYPE, TYPE>( \
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attribute, \
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key_columns, \
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[&](const size_t row, const auto value) { out[row] = value; }, \
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[&](const size_t row) { return def[row]; }); \
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}
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DECLARE(UInt8)
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DECLARE(UInt16)
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DECLARE(UInt32)
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DECLARE(UInt64)
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DECLARE(UInt128)
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DECLARE(Int8)
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DECLARE(Int16)
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DECLARE(Int32)
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DECLARE(Int64)
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DECLARE(Float32)
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DECLARE(Float64)
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DECLARE(Decimal32)
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DECLARE(Decimal64)
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DECLARE(Decimal128)
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#undef DECLARE
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void TrieDictionary::getString(
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const std::string & attribute_name,
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const Columns & key_columns,
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const DataTypes & key_types,
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const ColumnString * const def,
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ColumnString * const out) const
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{
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validateKeyTypes(key_types);
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const auto & attribute = getAttribute(attribute_name);
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checkAttributeType(this, attribute_name, attribute.type, AttributeUnderlyingType::utString);
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getItemsImpl<StringRef, StringRef>(
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attribute,
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key_columns,
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[&](const size_t, const StringRef value) { out->insertData(value.data, value.size); },
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[&](const size_t row) { return def->getDataAt(row); });
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}
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#define DECLARE(TYPE) \
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void TrieDictionary::get##TYPE( \
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const std::string & attribute_name, \
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const Columns & key_columns, \
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const DataTypes & key_types, \
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const TYPE def, \
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ResultArrayType<TYPE> & out) const \
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{ \
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validateKeyTypes(key_types); \
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\
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const auto & attribute = getAttribute(attribute_name); \
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checkAttributeType(this, attribute_name, attribute.type, AttributeUnderlyingType::ut##TYPE); \
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\
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getItemsImpl<TYPE, TYPE>( \
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attribute, key_columns, [&](const size_t row, const auto value) { out[row] = value; }, [&](const size_t) { return def; }); \
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}
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DECLARE(UInt8)
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DECLARE(UInt16)
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DECLARE(UInt32)
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DECLARE(UInt64)
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DECLARE(UInt128)
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DECLARE(Int8)
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DECLARE(Int16)
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DECLARE(Int32)
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DECLARE(Int64)
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DECLARE(Float32)
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DECLARE(Float64)
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DECLARE(Decimal32)
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DECLARE(Decimal64)
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DECLARE(Decimal128)
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#undef DECLARE
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void TrieDictionary::getString(
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const std::string & attribute_name,
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const Columns & key_columns,
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const DataTypes & key_types,
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const String & def,
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ColumnString * const out) const
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{
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validateKeyTypes(key_types);
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const auto & attribute = getAttribute(attribute_name);
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checkAttributeType(this, attribute_name, attribute.type, AttributeUnderlyingType::utString);
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getItemsImpl<StringRef, StringRef>(
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attribute,
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key_columns,
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[&](const size_t, const StringRef value) { out->insertData(value.data, value.size); },
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[&](const size_t) { return StringRef{def}; });
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}
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void TrieDictionary::has(const Columns & key_columns, const DataTypes & key_types, PaddedPODArray<UInt8> & out) const
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{
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validateKeyTypes(key_types);
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const auto & attribute = attributes.front();
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switch (attribute.type)
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{
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case AttributeUnderlyingType::utUInt8:
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has<UInt8>(attribute, key_columns, out);
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break;
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case AttributeUnderlyingType::utUInt16:
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has<UInt16>(attribute, key_columns, out);
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break;
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case AttributeUnderlyingType::utUInt32:
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has<UInt32>(attribute, key_columns, out);
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break;
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case AttributeUnderlyingType::utUInt64:
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has<UInt64>(attribute, key_columns, out);
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break;
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case AttributeUnderlyingType::utUInt128:
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has<UInt128>(attribute, key_columns, out);
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break;
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case AttributeUnderlyingType::utInt8:
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has<Int8>(attribute, key_columns, out);
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break;
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case AttributeUnderlyingType::utInt16:
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has<Int16>(attribute, key_columns, out);
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break;
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case AttributeUnderlyingType::utInt32:
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has<Int32>(attribute, key_columns, out);
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break;
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case AttributeUnderlyingType::utInt64:
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has<Int64>(attribute, key_columns, out);
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break;
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case AttributeUnderlyingType::utFloat32:
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has<Float32>(attribute, key_columns, out);
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break;
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case AttributeUnderlyingType::utFloat64:
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has<Float64>(attribute, key_columns, out);
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break;
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case AttributeUnderlyingType::utString:
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has<StringRef>(attribute, key_columns, out);
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break;
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case AttributeUnderlyingType::utDecimal32:
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has<Decimal32>(attribute, key_columns, out);
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break;
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case AttributeUnderlyingType::utDecimal64:
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has<Decimal64>(attribute, key_columns, out);
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break;
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case AttributeUnderlyingType::utDecimal128:
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has<Decimal128>(attribute, key_columns, out);
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break;
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}
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}
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void TrieDictionary::createAttributes()
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{
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const auto size = dict_struct.attributes.size();
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attributes.reserve(size);
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for (const auto & attribute : dict_struct.attributes)
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{
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attribute_index_by_name.emplace(attribute.name, attributes.size());
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attributes.push_back(createAttributeWithType(attribute.underlying_type, attribute.null_value));
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if (attribute.hierarchical)
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throw Exception{full_name + ": hierarchical attributes not supported for dictionary of type " + getTypeName(),
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ErrorCodes::TYPE_MISMATCH};
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}
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}
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void TrieDictionary::loadData()
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{
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auto stream = source_ptr->loadAll();
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stream->readPrefix();
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/// created upfront to avoid excess allocations
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const auto keys_size = dict_struct.key->size();
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ip_records.reserve(keys_size);
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const auto attributes_size = attributes.size();
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while (const auto block = stream->read())
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{
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const auto rows = block.rows();
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element_count += rows;
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const auto key_column_ptrs = ext::map<Columns>(
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ext::range(0, keys_size), [&](const size_t attribute_idx) { return block.safeGetByPosition(attribute_idx).column; });
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const auto attribute_column_ptrs = ext::map<Columns>(ext::range(0, attributes_size), [&](const size_t attribute_idx)
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{
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return block.safeGetByPosition(keys_size + attribute_idx).column;
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});
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for (const auto row_idx : ext::range(0, rows))
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{
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/// calculate key once per row
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const auto key_column = key_column_ptrs.front();
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for (const auto attribute_idx : ext::range(0, attributes_size))
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{
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const auto & attribute_column = *attribute_column_ptrs[attribute_idx];
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auto & attribute = attributes[attribute_idx];
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setAttributeValue(attribute, attribute_column[row_idx]);
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}
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size_t row_number = ip_records.size();
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std::string addr_str(key_column->getDataAt(row_idx).toString());
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size_t pos = addr_str.find('/');
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if (pos != std::string::npos)
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{
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IPAddress addr(addr_str.substr(0, pos));
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UInt8 prefix = std::stoi(addr_str.substr(pos + 1), nullptr, 10);
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addr = addr & IPAddress(prefix, addr.family());
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ip_records.emplace_back(IPRecord{addr, prefix, row_number});
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}
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else
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{
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IPAddress addr(addr_str);
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UInt8 prefix = addr.length() * 8;
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ip_records.emplace_back(IPRecord{addr, prefix, row_number});
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}
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total_ip_length += ip_records.back().addr.length();
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}
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}
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LOG_TRACE(logger, "{} ip records are read", ip_records.size());
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std::sort(ip_records.begin(), ip_records.end(), [](const auto & a, const auto & b)
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{
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if (a.addr.family() != b.addr.family())
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return a.addr.family() < b.addr.family();
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// prefer IPs with more narrow subnet
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if (a.addr == b.addr)
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return a.prefix < b.prefix;
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return a.addr < b.addr;
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});
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stream->readSuffix();
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if (require_nonempty && 0 == element_count)
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throw Exception{full_name + ": dictionary source is empty and 'require_nonempty' property is set.", ErrorCodes::DICTIONARY_IS_EMPTY};
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}
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template <typename T>
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void TrieDictionary::addAttributeSize(const Attribute & attribute)
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{
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const auto & vec = std::get<ContainerType<T>>(attribute.maps);
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bytes_allocated += sizeof(ContainerType<T>) + (vec.capacity() * sizeof(T));
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bucket_count = vec.size();
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}
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void TrieDictionary::calculateBytesAllocated()
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{
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bytes_allocated += ip_records.size() * sizeof(ip_records.front());
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bytes_allocated += total_ip_length;
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bytes_allocated += attributes.size() * sizeof(attributes.front());
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for (const auto & attribute : attributes)
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{
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switch (attribute.type)
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{
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case AttributeUnderlyingType::utUInt8:
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addAttributeSize<UInt8>(attribute);
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break;
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case AttributeUnderlyingType::utUInt16:
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addAttributeSize<UInt16>(attribute);
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break;
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case AttributeUnderlyingType::utUInt32:
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addAttributeSize<UInt32>(attribute);
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break;
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case AttributeUnderlyingType::utUInt64:
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addAttributeSize<UInt64>(attribute);
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break;
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case AttributeUnderlyingType::utUInt128:
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addAttributeSize<UInt128>(attribute);
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break;
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case AttributeUnderlyingType::utInt8:
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addAttributeSize<Int8>(attribute);
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break;
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case AttributeUnderlyingType::utInt16:
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addAttributeSize<Int16>(attribute);
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break;
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case AttributeUnderlyingType::utInt32:
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addAttributeSize<Int32>(attribute);
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break;
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case AttributeUnderlyingType::utInt64:
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addAttributeSize<Int64>(attribute);
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break;
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case AttributeUnderlyingType::utFloat32:
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addAttributeSize<Float32>(attribute);
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break;
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case AttributeUnderlyingType::utFloat64:
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addAttributeSize<Float64>(attribute);
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break;
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case AttributeUnderlyingType::utDecimal32:
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addAttributeSize<Decimal32>(attribute);
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break;
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case AttributeUnderlyingType::utDecimal64:
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addAttributeSize<Decimal64>(attribute);
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break;
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case AttributeUnderlyingType::utDecimal128:
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addAttributeSize<Decimal128>(attribute);
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break;
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case AttributeUnderlyingType::utString:
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{
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addAttributeSize<StringRef>(attribute);
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bytes_allocated += sizeof(Arena) + attribute.string_arena->size();
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break;
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}
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}
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}
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}
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template <typename T>
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void TrieDictionary::createAttributeImpl(Attribute & attribute, const Field & null_value)
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{
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attribute.null_values = T(null_value.get<NearestFieldType<T>>());
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attribute.maps.emplace<ContainerType<T>>();
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}
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TrieDictionary::Attribute TrieDictionary::createAttributeWithType(const AttributeUnderlyingType type, const Field & null_value)
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{
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Attribute attr{type, {}, {}, {}};
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switch (type)
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{
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case AttributeUnderlyingType::utUInt8:
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createAttributeImpl<UInt8>(attr, null_value);
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break;
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case AttributeUnderlyingType::utUInt16:
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createAttributeImpl<UInt16>(attr, null_value);
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break;
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case AttributeUnderlyingType::utUInt32:
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createAttributeImpl<UInt32>(attr, null_value);
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break;
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case AttributeUnderlyingType::utUInt64:
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createAttributeImpl<UInt64>(attr, null_value);
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break;
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case AttributeUnderlyingType::utUInt128:
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createAttributeImpl<UInt128>(attr, null_value);
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break;
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case AttributeUnderlyingType::utInt8:
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createAttributeImpl<Int8>(attr, null_value);
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break;
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case AttributeUnderlyingType::utInt16:
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createAttributeImpl<Int16>(attr, null_value);
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break;
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case AttributeUnderlyingType::utInt32:
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createAttributeImpl<Int32>(attr, null_value);
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break;
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case AttributeUnderlyingType::utInt64:
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createAttributeImpl<Int64>(attr, null_value);
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break;
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case AttributeUnderlyingType::utFloat32:
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createAttributeImpl<Float32>(attr, null_value);
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break;
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case AttributeUnderlyingType::utFloat64:
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createAttributeImpl<Float64>(attr, null_value);
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break;
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case AttributeUnderlyingType::utDecimal32:
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createAttributeImpl<Decimal32>(attr, null_value);
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break;
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case AttributeUnderlyingType::utDecimal64:
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createAttributeImpl<Decimal64>(attr, null_value);
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break;
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case AttributeUnderlyingType::utDecimal128:
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createAttributeImpl<Decimal128>(attr, null_value);
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break;
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case AttributeUnderlyingType::utString:
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{
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attr.null_values = null_value.get<String>();
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attr.maps.emplace<ContainerType<StringRef>>();
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attr.string_arena = std::make_unique<Arena>();
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break;
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}
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}
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return attr;
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}
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|
|
|
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template <typename AttributeType, typename OutputType, typename ValueSetter, typename DefaultGetter>
|
|
void TrieDictionary::getItemsImpl(
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const Attribute & attribute, const Columns & key_columns, ValueSetter && set_value, DefaultGetter && get_default) const
|
|
{
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|
auto & vec = std::get<ContainerType<AttributeType>>(attribute.maps);
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|
|
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const auto first_column = key_columns.front();
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const auto rows = first_column->size();
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|
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if (first_column->isNumeric())
|
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{
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|
for (const auto i : ext::range(0, rows))
|
|
{
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|
auto addr = Poco::ByteOrder::toNetwork(UInt32(first_column->get64(i)));
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auto ipaddr = IPAddress(reinterpret_cast<const uint8_t *>(&addr), IPV4_BINARY_LENGTH);
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auto found = lookupIPRecord(ipaddr);
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set_value(i, (found != ipRecordNotFound()) ? static_cast<OutputType>(vec[found->row]) : get_default(i));
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|
}
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|
}
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|
else
|
|
{
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|
for (const auto i : ext::range(0, rows))
|
|
{
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auto addr = first_column->getDataAt(i);
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|
if (addr.size != IPV6_BINARY_LENGTH)
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throw Exception("Expected key to be FixedString(16)", ErrorCodes::LOGICAL_ERROR);
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|
|
|
auto ipaddr = ip4or6fromBytes(reinterpret_cast<const uint8_t *>(addr.data));
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|
auto found = lookupIPRecord(ipaddr);
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|
set_value(i, (found != ipRecordNotFound()) ? static_cast<OutputType>(vec[found->row]) : get_default(i));
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|
}
|
|
}
|
|
|
|
query_count.fetch_add(rows, std::memory_order_relaxed);
|
|
}
|
|
|
|
template <typename T>
|
|
void TrieDictionary::setAttributeValueImpl(Attribute & attribute, const T value)
|
|
{
|
|
auto & vec = std::get<ContainerType<T>>(attribute.maps);
|
|
vec.push_back(value);
|
|
}
|
|
|
|
void TrieDictionary::setAttributeValue(Attribute & attribute, const Field & value)
|
|
{
|
|
switch (attribute.type)
|
|
{
|
|
case AttributeUnderlyingType::utUInt8:
|
|
return setAttributeValueImpl<UInt8>(attribute, value.get<UInt64>());
|
|
case AttributeUnderlyingType::utUInt16:
|
|
return setAttributeValueImpl<UInt16>(attribute, value.get<UInt64>());
|
|
case AttributeUnderlyingType::utUInt32:
|
|
return setAttributeValueImpl<UInt32>(attribute, value.get<UInt64>());
|
|
case AttributeUnderlyingType::utUInt64:
|
|
return setAttributeValueImpl<UInt64>(attribute, value.get<UInt64>());
|
|
case AttributeUnderlyingType::utUInt128:
|
|
return setAttributeValueImpl<UInt128>(attribute, value.get<UInt128>());
|
|
case AttributeUnderlyingType::utInt8:
|
|
return setAttributeValueImpl<Int8>(attribute, value.get<Int64>());
|
|
case AttributeUnderlyingType::utInt16:
|
|
return setAttributeValueImpl<Int16>(attribute, value.get<Int64>());
|
|
case AttributeUnderlyingType::utInt32:
|
|
return setAttributeValueImpl<Int32>(attribute, value.get<Int64>());
|
|
case AttributeUnderlyingType::utInt64:
|
|
return setAttributeValueImpl<Int64>(attribute, value.get<Int64>());
|
|
case AttributeUnderlyingType::utFloat32:
|
|
return setAttributeValueImpl<Float32>(attribute, value.get<Float64>());
|
|
case AttributeUnderlyingType::utFloat64:
|
|
return setAttributeValueImpl<Float64>(attribute, value.get<Float64>());
|
|
|
|
case AttributeUnderlyingType::utDecimal32:
|
|
return setAttributeValueImpl<Decimal32>(attribute, value.get<Decimal32>());
|
|
case AttributeUnderlyingType::utDecimal64:
|
|
return setAttributeValueImpl<Decimal64>(attribute, value.get<Decimal64>());
|
|
case AttributeUnderlyingType::utDecimal128:
|
|
return setAttributeValueImpl<Decimal128>(attribute, value.get<Decimal128>());
|
|
|
|
case AttributeUnderlyingType::utString:
|
|
{
|
|
const auto & string = value.get<String>();
|
|
const auto * string_in_arena = attribute.string_arena->insert(string.data(), string.size());
|
|
return setAttributeValueImpl<StringRef>(attribute, StringRef{string_in_arena, string.size()});
|
|
}
|
|
}
|
|
}
|
|
|
|
const TrieDictionary::Attribute & TrieDictionary::getAttribute(const std::string & attribute_name) const
|
|
{
|
|
const auto it = attribute_index_by_name.find(attribute_name);
|
|
if (it == std::end(attribute_index_by_name))
|
|
throw Exception{full_name + ": no such attribute '" + attribute_name + "'", ErrorCodes::BAD_ARGUMENTS};
|
|
|
|
return attributes[it->second];
|
|
}
|
|
|
|
template <typename T>
|
|
void TrieDictionary::has(const Attribute &, const Columns & key_columns, PaddedPODArray<UInt8> & out) const
|
|
{
|
|
const auto first_column = key_columns.front();
|
|
const auto rows = first_column->size();
|
|
if (first_column->isNumeric())
|
|
{
|
|
for (const auto i : ext::range(0, rows))
|
|
{
|
|
auto addr = Int32(first_column->get64(i));
|
|
auto ipaddr = IPAddress(reinterpret_cast<const uint8_t *>(&addr), IPV4_BINARY_LENGTH);
|
|
auto found = lookupIPRecord(ipaddr);
|
|
out[i] = (found != ipRecordNotFound());
|
|
}
|
|
}
|
|
else
|
|
{
|
|
for (const auto i : ext::range(0, rows))
|
|
{
|
|
auto addr = first_column->getDataAt(i);
|
|
if (unlikely(addr.size != 16))
|
|
throw Exception("Expected key to be FixedString(16)", ErrorCodes::LOGICAL_ERROR);
|
|
|
|
auto ipaddr = ip4or6fromBytes(reinterpret_cast<const uint8_t *>(addr.data));
|
|
auto found = lookupIPRecord(ipaddr);
|
|
out[i] = (found != ipRecordNotFound());
|
|
}
|
|
}
|
|
|
|
query_count.fetch_add(rows, std::memory_order_relaxed);
|
|
}
|
|
|
|
Columns TrieDictionary::getKeyColumns() const
|
|
{
|
|
auto ip_column = ColumnFixedString::create(IPV6_BINARY_LENGTH);
|
|
auto mask_column = ColumnVector<UInt8>::create();
|
|
|
|
for (const auto & record : ip_records)
|
|
{
|
|
auto ip_array = IPv6ToBinary(record.addr);
|
|
ip_column->insertData(ip_array.data(), IPV6_BINARY_LENGTH);
|
|
mask_column->insertValue(record.prefix);
|
|
}
|
|
|
|
return {std::move(ip_column), std::move(mask_column)};
|
|
}
|
|
|
|
BlockInputStreamPtr TrieDictionary::getBlockInputStream(const Names & column_names, size_t max_block_size) const
|
|
{
|
|
using BlockInputStreamType = DictionaryBlockInputStream<TrieDictionary, UInt64>;
|
|
|
|
auto get_keys = [](const Columns & columns, const std::vector<DictionaryAttribute> & dict_attributes)
|
|
{
|
|
const auto & attr = dict_attributes.front();
|
|
return ColumnsWithTypeAndName(
|
|
{ColumnWithTypeAndName(columns.front(), std::make_shared<DataTypeFixedString>(IPV6_BINARY_LENGTH), attr.name)});
|
|
};
|
|
auto get_view = [](const Columns & columns, const std::vector<DictionaryAttribute> & dict_attributes)
|
|
{
|
|
auto column = ColumnString::create();
|
|
const auto & ip_column = assert_cast<const ColumnFixedString &>(*columns.front());
|
|
const auto & mask_column = assert_cast<const ColumnVector<UInt8> &>(*columns.back());
|
|
char buffer[48];
|
|
for (size_t row : ext::range(0, ip_column.size()))
|
|
{
|
|
UInt8 mask = mask_column.getElement(row);
|
|
char * ptr = buffer;
|
|
formatIPv6(reinterpret_cast<const unsigned char *>(ip_column.getDataAt(row).data), ptr);
|
|
*(ptr - 1) = '/';
|
|
ptr = itoa(mask, ptr);
|
|
column->insertData(buffer, ptr - buffer);
|
|
}
|
|
return ColumnsWithTypeAndName{
|
|
ColumnWithTypeAndName(std::move(column), std::make_shared<DataTypeString>(), dict_attributes.front().name)};
|
|
};
|
|
return std::make_shared<BlockInputStreamType>(
|
|
shared_from_this(), max_block_size, getKeyColumns(), column_names, std::move(get_keys), std::move(get_view));
|
|
}
|
|
|
|
int TrieDictionary::matchIPAddrWithRecord(const IPAddress & ipaddr, const IPRecord & record) const
|
|
{
|
|
if (ipaddr.family() != record.addr.family())
|
|
return ipaddr.family() < record.addr.family() ? -1 : 1;
|
|
|
|
auto masked_ipaddr = ipaddr & IPAddress(record.prefix, record.addr.family());
|
|
if (masked_ipaddr < record.addr)
|
|
return -1;
|
|
if (masked_ipaddr == record.addr)
|
|
return 0;
|
|
return 1;
|
|
}
|
|
|
|
TrieDictionary::IPRecordConstIt TrieDictionary::ipRecordNotFound() const
|
|
{
|
|
return ip_records.end();
|
|
}
|
|
|
|
TrieDictionary::IPRecordConstIt TrieDictionary::lookupIPRecord(const IPAddress & target) const
|
|
{
|
|
if (ip_records.empty())
|
|
return ipRecordNotFound();
|
|
|
|
auto comp = [&](const IPAddress & needle, const IPRecord & record) -> bool
|
|
{
|
|
return matchIPAddrWithRecord(needle, record) < 0;
|
|
};
|
|
|
|
auto next_it = std::upper_bound(ip_records.begin(), ip_records.end(), target, comp);
|
|
|
|
if (next_it == ip_records.begin())
|
|
return ipRecordNotFound();
|
|
|
|
auto found = next_it - 1;
|
|
if (matchIPAddrWithRecord(target, *found) == 0)
|
|
return found;
|
|
|
|
return ipRecordNotFound();
|
|
}
|
|
|
|
void registerDictionaryTrie(DictionaryFactory & factory)
|
|
{
|
|
auto create_layout = [=](const std::string &,
|
|
const DictionaryStructure & dict_struct,
|
|
const Poco::Util::AbstractConfiguration & config,
|
|
const std::string & config_prefix,
|
|
DictionarySourcePtr source_ptr) -> DictionaryPtr
|
|
{
|
|
if (!dict_struct.key)
|
|
throw Exception{"'key' is required for dictionary of layout 'ip_trie'", ErrorCodes::BAD_ARGUMENTS};
|
|
|
|
const auto dict_id = StorageID::fromDictionaryConfig(config, config_prefix);
|
|
const DictionaryLifetime dict_lifetime{config, config_prefix + ".lifetime"};
|
|
const bool require_nonempty = config.getBool(config_prefix + ".require_nonempty", false);
|
|
// This is specialised trie for storing IPv4 and IPv6 prefixes.
|
|
return std::make_unique<TrieDictionary>(dict_id, dict_struct, std::move(source_ptr), dict_lifetime, require_nonempty);
|
|
};
|
|
factory.registerLayout("ip_trie", create_layout, true);
|
|
}
|
|
|
|
}
|