ClickHouse/src/Functions/h3GetUnidirectionalEdgeBoundary.cpp
Li Yin 4088c0a7f3 Automated function registration
Automated register all functions with below naming convention by
iterating through the symbols:
void DB::registerXXX(DB::FunctionFactory &)
2022-07-29 15:39:50 +08:00

112 lines
3.6 KiB
C++

#include "config_functions.h"
#if USE_H3
#include <Columns/ColumnArray.h>
#include <Columns/ColumnsNumber.h>
#include <Columns/ColumnTuple.h>
#include <DataTypes/DataTypesNumber.h>
#include <DataTypes/DataTypeArray.h>
#include <DataTypes/DataTypeTuple.h>
#include <Functions/FunctionFactory.h>
#include <Functions/IFunction.h>
#include <Common/typeid_cast.h>
#include <IO/WriteHelpers.h>
#include <h3api.h>
namespace DB
{
namespace ErrorCodes
{
extern const int ILLEGAL_TYPE_OF_ARGUMENT;
extern const int ILLEGAL_COLUMN;
}
namespace
{
class FunctionH3GetUnidirectionalEdgeBoundary : public IFunction
{
public:
static constexpr auto name = "h3GetUnidirectionalEdgeBoundary";
static FunctionPtr create(ContextPtr) { return std::make_shared<FunctionH3GetUnidirectionalEdgeBoundary>(); }
std::string getName() const override { return name; }
size_t getNumberOfArguments() const override { return 1; }
bool useDefaultImplementationForConstants() const override { return true; }
bool isSuitableForShortCircuitArgumentsExecution(const DataTypesWithConstInfo & /*arguments*/) const override { return true; }
DataTypePtr getReturnTypeImpl(const DataTypes & arguments) const override
{
const auto * arg = arguments[0].get();
if (!WhichDataType(arg).isUInt64())
throw Exception(
ErrorCodes::ILLEGAL_TYPE_OF_ARGUMENT,
"Illegal type {} of argument {} of function {}. Must be UInt64",
arg->getName(), 1, getName());
return std::make_shared<DataTypeArray>(
std::make_shared<DataTypeTuple>(
DataTypes{std::make_shared<DataTypeFloat64>(), std::make_shared<DataTypeFloat64>()}));
}
ColumnPtr executeImpl(const ColumnsWithTypeAndName & arguments, const DataTypePtr &, size_t input_rows_count) const override
{
auto non_const_arguments = arguments;
for (auto & argument : non_const_arguments)
argument.column = argument.column->convertToFullColumnIfConst();
const auto * col_hindex_edge = checkAndGetColumn<ColumnUInt64>(non_const_arguments[0].column.get());
if (!col_hindex_edge)
throw Exception(
ErrorCodes::ILLEGAL_COLUMN,
"Illegal type {} of argument {} of function {}. Must be UInt64.",
arguments[0].type->getName(),
1,
getName());
const auto & data_hindex_edge = col_hindex_edge->getData();
auto latitude = ColumnFloat64::create();
auto longitude = ColumnFloat64::create();
auto offsets = DataTypeNumber<IColumn::Offset>().createColumn();
offsets->reserve(input_rows_count);
IColumn::Offset current_offset = 0;
for (size_t row = 0; row < input_rows_count; ++row)
{
H3Index edge = data_hindex_edge[row];
CellBoundary boundary{};
directedEdgeToBoundary(edge, &boundary);
for (int vert = 0; vert < boundary.numVerts; ++vert)
{
latitude->getData().push_back(radsToDegs(boundary.verts[vert].lat));
longitude->getData().push_back(radsToDegs(boundary.verts[vert].lng));
}
current_offset += boundary.numVerts;
offsets->insert(current_offset);
}
return ColumnArray::create(
ColumnTuple::create(Columns{std::move(latitude), std::move(longitude)}),
std::move(offsets));
}
};
}
REGISTER_FUNCTION(H3GetUnidirectionalEdgeBoundary)
{
factory.registerFunction<FunctionH3GetUnidirectionalEdgeBoundary>();
}
}
#endif