ClickHouse/src/Functions/polygonsIntersection.cpp

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#include <Functions/FunctionFactory.h>
#include <Functions/geometryConverters.h>
#include <boost/geometry.hpp>
#include <boost/geometry/geometries/point_xy.hpp>
#include <boost/geometry/geometries/polygon.hpp>
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#include <common/logger_useful.h>
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#include <Columns/ColumnArray.h>
#include <Columns/ColumnTuple.h>
#include <Columns/ColumnConst.h>
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#include <DataTypes/DataTypeArray.h>
#include <DataTypes/DataTypeTuple.h>
#include <DataTypes/DataTypeCustomGeo.h>
#include <memory>
#include <utility>
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#include <chrono>
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namespace DB
{
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namespace ErrorCodes
{
extern const int ILLEGAL_TYPE_OF_ARGUMENT;
}
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template <typename Point>
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class FunctionPolygonsIntersection : public IFunction
{
public:
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static inline const char * name;
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explicit FunctionPolygonsIntersection() = default;
static FunctionPtr create(const Context &)
{
return std::make_shared<FunctionPolygonsIntersection>();
}
String getName() const override
{
return name;
}
bool isVariadic() const override
{
return false;
}
size_t getNumberOfArguments() const override
{
return 2;
}
DataTypePtr getReturnTypeImpl(const DataTypes &) const override
{
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/// Intersection of each with figure with each could be easily represent as MultiPolygon.
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return DataTypeCustomMultiPolygonSerialization::nestedDataType();
}
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ColumnPtr executeImpl(const ColumnsWithTypeAndName & arguments, const DataTypePtr & /*result_type*/, size_t input_rows_count) const override
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{
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MultiPolygonSerializer<Point> serializer;
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callOnTwoGeometryDataTypes<Point>(arguments[0].type, arguments[1].type, [&](const auto & left_type, const auto & right_type)
{
using LeftConverterType = std::decay_t<decltype(left_type)>;
using RightConverterType = std::decay_t<decltype(right_type)>;
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using LeftConverter = typename LeftConverterType::Type;
using RightConverter = typename RightConverterType::Type;
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if constexpr (std::is_same_v<PointFromColumnConverter<Point>, LeftConverter> || std::is_same_v<PointFromColumnConverter<Point>, RightConverter>)
throw Exception(fmt::format("Any argument of function {} must not be Point", getName()), ErrorCodes::ILLEGAL_TYPE_OF_ARGUMENT);
else
{
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auto first = LeftConverter(arguments[0].column->convertToFullColumnIfConst()).convert();
auto second = RightConverter(arguments[1].column->convertToFullColumnIfConst()).convert();
/// We are not interested in some pitfalls in third-party libraries
/// NOLINTNEXTLINE(clang-analyzer-core.uninitialized.Assign)
for (size_t i = 0; i < input_rows_count; ++i)
{
/// Orient the polygons correctly.
boost::geometry::correct(first[i]);
boost::geometry::correct(second[i]);
MultiPolygon<Point> intersection{};
/// Main work here.
boost::geometry::intersection(first[i], second[i], intersection);
serializer.add(intersection);
}
}
});
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return serializer.finalize();
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}
bool useDefaultImplementationForConstants() const override
{
return true;
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}
};
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template <>
const char * FunctionPolygonsIntersection<CartesianPoint>::name = "polygonsIntersectionCartesian";
template <>
const char * FunctionPolygonsIntersection<GeographicPoint>::name = "polygonsIntersectionGeographic";
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void registerFunctionPolygonsIntersection(FunctionFactory & factory)
{
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factory.registerFunction<FunctionPolygonsIntersection<CartesianPoint>>();
factory.registerFunction<FunctionPolygonsIntersection<GeographicPoint>>();
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}
}