ClickHouse/dbms/src/Functions/concat.cpp

234 lines
8.9 KiB
C++

#include <Columns/ColumnString.h>
#include <DataTypes/DataTypeString.h>
#include <DataTypes/getLeastSupertype.h>
#include <Functions/FunctionFactory.h>
#include <Functions/FunctionHelpers.h>
#include <Functions/GatherUtils/Algorithms.h>
#include <Functions/GatherUtils/GatherUtils.h>
#include <Functions/GatherUtils/Sinks.h>
#include <Functions/GatherUtils/Slices.h>
#include <Functions/GatherUtils/Sources.h>
#include <Functions/IFunctionImpl.h>
#include <IO/WriteHelpers.h>
#include <ext/map.h>
#include <ext/range.h>
#include "formatString.h"
namespace DB
{
namespace ErrorCodes
{
extern const int ILLEGAL_TYPE_OF_ARGUMENT;
extern const int NUMBER_OF_ARGUMENTS_DOESNT_MATCH;
extern const int ILLEGAL_COLUMN;
}
using namespace GatherUtils;
template <typename Name, bool is_injective>
class ConcatImpl : public IFunction
{
public:
static constexpr auto name = Name::name;
ConcatImpl(const Context & context_) : context(context_) {}
static FunctionPtr create(const Context & context) { return std::make_shared<ConcatImpl>(context); }
String getName() const override { return name; }
bool isVariadic() const override { return true; }
size_t getNumberOfArguments() const override { return 0; }
bool isInjective(const Block &) override { return is_injective; }
bool useDefaultImplementationForConstants() const override { return true; }
DataTypePtr getReturnTypeImpl(const DataTypes & arguments) const override
{
if (arguments.size() < 2)
throw Exception(
"Number of arguments for function " + getName() + " doesn't match: passed " + toString(arguments.size())
+ ", should be at least 2.",
ErrorCodes::NUMBER_OF_ARGUMENTS_DOESNT_MATCH);
if (arguments.size() > FormatImpl::argument_threshold)
throw Exception(
"Number of arguments for function " + getName() + " doesn't match: passed " + toString(arguments.size())
+ ", should be at most " + std::to_string(FormatImpl::argument_threshold),
ErrorCodes::NUMBER_OF_ARGUMENTS_DOESNT_MATCH);
for (const auto arg_idx : ext::range(0, arguments.size()))
{
const auto arg = arguments[arg_idx].get();
if (!isStringOrFixedString(arg))
throw Exception{"Illegal type " + arg->getName() + " of argument " + std::to_string(arg_idx + 1) + " of function "
+ getName(),
ErrorCodes::ILLEGAL_TYPE_OF_ARGUMENT};
}
return std::make_shared<DataTypeString>();
}
void executeImpl(Block & block, const ColumnNumbers & arguments, size_t result, size_t input_rows_count) override
{
/// Format function is not proven to be faster for two arguments.
/// Actually there is overhead of 2 to 5 extra instructions for each string for checking empty strings in FormatImpl.
/// Though, benchmarks are really close, for most examples we saw executeBinary is slightly faster (0-3%).
/// For 3 and more arguments FormatImpl is much faster (up to 50-60%).
if (arguments.size() == 2)
executeBinary(block, arguments, result, input_rows_count);
else
executeFormatImpl(block, arguments, result, input_rows_count);
}
private:
const Context & context;
void executeBinary(Block & block, const ColumnNumbers & arguments, const size_t result, size_t input_rows_count)
{
const IColumn * c0 = block.getByPosition(arguments[0]).column.get();
const IColumn * c1 = block.getByPosition(arguments[1]).column.get();
const ColumnString * c0_string = checkAndGetColumn<ColumnString>(c0);
const ColumnString * c1_string = checkAndGetColumn<ColumnString>(c1);
const ColumnConst * c0_const_string = checkAndGetColumnConst<ColumnString>(c0);
const ColumnConst * c1_const_string = checkAndGetColumnConst<ColumnString>(c1);
auto c_res = ColumnString::create();
if (c0_string && c1_string)
concat(StringSource(*c0_string), StringSource(*c1_string), StringSink(*c_res, c0->size()));
else if (c0_string && c1_const_string)
concat(StringSource(*c0_string), ConstSource<StringSource>(*c1_const_string), StringSink(*c_res, c0->size()));
else if (c0_const_string && c1_string)
concat(ConstSource<StringSource>(*c0_const_string), StringSource(*c1_string), StringSink(*c_res, c0->size()));
else
{
/// Fallback: use generic implementation for not very important cases.
executeFormatImpl(block, arguments, result, input_rows_count);
return;
}
block.getByPosition(result).column = std::move(c_res);
}
void executeFormatImpl(Block & block, const ColumnNumbers & arguments, const size_t result, size_t input_rows_count)
{
auto c_res = ColumnString::create();
std::vector<const ColumnString::Chars *> data(arguments.size());
std::vector<const ColumnString::Offsets *> offsets(arguments.size());
std::vector<size_t> fixed_string_N(arguments.size());
std::vector<String> constant_strings(arguments.size());
bool has_column_string = false;
bool has_column_fixed_string = false;
for (size_t i = 0; i < arguments.size(); ++i)
{
const ColumnPtr & column = block.getByPosition(arguments[i]).column;
if (const ColumnString * col = checkAndGetColumn<ColumnString>(column.get()))
{
has_column_string = true;
data[i] = &col->getChars();
offsets[i] = &col->getOffsets();
}
else if (const ColumnFixedString * fixed_col = checkAndGetColumn<ColumnFixedString>(column.get()))
{
has_column_fixed_string = true;
data[i] = &fixed_col->getChars();
fixed_string_N[i] = fixed_col->getN();
}
else if (const ColumnConst * const_col = checkAndGetColumnConstStringOrFixedString(column.get()))
{
constant_strings[i] = const_col->getValue<String>();
}
else
throw Exception(
"Illegal column " + column->getName() + " of argument of function " + getName(), ErrorCodes::ILLEGAL_COLUMN);
}
String pattern;
pattern.reserve(2 * arguments.size());
for (size_t i = 0; i < arguments.size(); ++i)
pattern += "{}";
FormatImpl::formatExecute(
has_column_string,
has_column_fixed_string,
std::move(pattern),
data,
offsets,
fixed_string_N,
constant_strings,
c_res->getChars(),
c_res->getOffsets(),
input_rows_count);
block.getByPosition(result).column = std::move(c_res);
}
};
struct NameConcat
{
static constexpr auto name = "concat";
};
struct NameConcatAssumeInjective
{
static constexpr auto name = "concatAssumeInjective";
};
using FunctionConcat = ConcatImpl<NameConcat, false>;
using FunctionConcatAssumeInjective = ConcatImpl<NameConcatAssumeInjective, true>;
/// Also works with arrays.
class ConcatOverloadResolver : public IFunctionOverloadResolverImpl
{
public:
static constexpr auto name = "concat";
static FunctionOverloadResolverImplPtr create(const Context & context) { return std::make_unique<ConcatOverloadResolver>(context); }
explicit ConcatOverloadResolver(const Context & context_) : context(context_) {}
String getName() const override { return name; }
size_t getNumberOfArguments() const override { return 0; }
bool isVariadic() const override { return true; }
FunctionBaseImplPtr build(const ColumnsWithTypeAndName & arguments, const DataTypePtr & return_type) const override
{
if (isArray(arguments.at(0).type))
{
return FunctionOverloadResolverAdaptor(FunctionFactory::instance().getImpl("arrayConcat", context)).buildImpl(arguments);
}
else
return std::make_unique<DefaultFunction>(
FunctionConcat::create(context), ext::map<DataTypes>(arguments, [](const auto & elem) { return elem.type; }), return_type);
}
DataTypePtr getReturnType(const DataTypes & arguments) const override
{
if (arguments.size() < 2)
throw Exception(
"Number of arguments for function " + getName() + " doesn't match: passed " + toString(arguments.size())
+ ", should be at least 2.",
ErrorCodes::NUMBER_OF_ARGUMENTS_DOESNT_MATCH);
/// We always return Strings from concat, even if arguments were fixed strings.
return std::make_shared<DataTypeString>();
}
private:
const Context & context;
};
void registerFunctionsConcat(FunctionFactory & factory)
{
factory.registerFunction<ConcatOverloadResolver>(FunctionFactory::CaseInsensitive);
factory.registerFunction<FunctionConcatAssumeInjective>();
}
}