Remove IFunction::createResultColumn.

Given that the list of supported types is hardcoded in
LLVMContext::Data::toNativeType, this method is redundant because
LLVMPreparedFunction can create a ColumnVector itself.
This commit is contained in:
pyos 2018-04-24 17:28:01 +03:00
parent 6b526f784c
commit 3810173103
4 changed files with 36 additions and 45 deletions

View File

@ -1,4 +1,3 @@
#include <Columns/ColumnVector.h>
#include <DataTypes/DataTypesNumber.h>
#include <Functions/FunctionFactory.h>
#include <Functions/IFunction.h>
@ -36,31 +35,6 @@ public:
return static_cast<llvm::IRBuilder<>&>(builder).CreateFAdd(values[0], values[1]);
return static_cast<llvm::IRBuilder<>&>(builder).CreateAdd(values[0], values[1]);
}
IColumn::Ptr createResultColumn(const DataTypes & types, size_t size) const
{
if (types[0]->equals(DataTypeInt8{}))
return ColumnVector<Int8>::create(size);
if (types[0]->equals(DataTypeInt16{}))
return ColumnVector<Int16>::create(size);
if (types[0]->equals(DataTypeInt32{}))
return ColumnVector<Int32>::create(size);
if (types[0]->equals(DataTypeInt64{}))
return ColumnVector<Int64>::create(size);
if (types[0]->equals(DataTypeUInt8{}))
return ColumnVector<UInt8>::create(size);
if (types[0]->equals(DataTypeUInt16{}))
return ColumnVector<UInt16>::create(size);
if (types[0]->equals(DataTypeUInt32{}))
return ColumnVector<UInt32>::create(size);
if (types[0]->equals(DataTypeUInt64{}))
return ColumnVector<UInt64>::create(size);
if (types[0]->equals(DataTypeFloat32{}))
return ColumnVector<Float32>::create(size);
if (types[0]->equals(DataTypeFloat64{}))
return ColumnVector<Float64>::create(size);
throw Exception("invalid input type", ErrorCodes::LOGICAL_ERROR);
}
//#endif
static FunctionPtr create(const Context &) { return std::make_shared<FunctionSomething>(); }

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@ -2,7 +2,6 @@
#include <memory>
#include <Columns/IColumn.h>
#include <Core/Names.h>
#include <Core/Field.h>
#include <Core/Block.h>
@ -91,12 +90,6 @@ public:
virtual const DataTypes & getArgumentTypes() const = 0;
virtual const DataTypePtr & getReturnType() const = 0;
/// Create an empty result column of a given size. Only called on JIT-compilable functions.
virtual IColumn::Ptr createResultColumn(size_t /*size*/) const
{
throw Exception(getName() + " is not JIT-compilable", ErrorCodes::NOT_IMPLEMENTED);
}
/// Do preparations and return executable.
/// sample_block should contain data types of arguments and values of constants, if relevant.
virtual PreparedFunctionPtr prepare(const Block & sample_block) const = 0;
@ -318,11 +311,6 @@ public:
throw Exception("getReturnType is not implemented for IFunction", ErrorCodes::NOT_IMPLEMENTED);
}
virtual IColumn::Ptr createResultColumn(const DataTypes & /*arguments*/, size_t /*size*/) const
{
throw Exception(getName() + " is not JIT-compilable", ErrorCodes::NOT_IMPLEMENTED);
}
protected:
FunctionBasePtr buildImpl(const ColumnsWithTypeAndName & /*arguments*/, const DataTypePtr & /*return_type*/) const final
{
@ -363,8 +351,6 @@ public:
const DataTypes & getArgumentTypes() const override { return arguments; }
const DataTypePtr & getReturnType() const override { return return_type; }
IColumn::Ptr createResultColumn(size_t size) const override { return function->createResultColumn(arguments, size); }
bool isCompilable() const override { return function->isCompilable(arguments); }
llvm::Value * compile(llvm::IRBuilderBase & builder, const ValuePlaceholders & values) const override { return function->compile(builder, arguments, values); }

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@ -1,4 +1,3 @@
#include <DataTypes/DataTypesNumber.h>
#include <Interpreters/ExpressionJIT.h>
#include <llvm/IR/BasicBlock.h>

View File

@ -1,5 +1,7 @@
#pragma once
#include <Columns/ColumnVector.h>
#include <DataTypes/DataTypesNumber.h>
#include <Functions/IFunction.h>
#include <Interpreters/ExpressionActions.h>
@ -7,6 +9,11 @@
namespace DB
{
namespace ErrorCodes
{
extern const int LOGICAL_ERROR;
}
class LLVMContext
{
struct Data;
@ -54,11 +61,38 @@ public:
is_const[i] = column->isColumnConst();
block_size = column->size();
}
auto col_res = parent->createResultColumn(block_size);
if (!col_res->isColumnConst() && !col_res->isDummy() && block_size)
auto col_res = createColumn(parent->getReturnType(), block_size);
if (block_size)
function(columns.data(), is_const.data(), const_cast<char *>(col_res->getDataAt(0).data), block_size);
block.getByPosition(result).column = std::move(col_res);
};
private:
static IColumn::Ptr createColumn(const DataTypePtr & type, size_t size)
{
if (type->equals(DataTypeInt8{}))
return ColumnVector<Int8>::create(size);
if (type->equals(DataTypeInt16{}))
return ColumnVector<Int16>::create(size);
if (type->equals(DataTypeInt32{}))
return ColumnVector<Int32>::create(size);
if (type->equals(DataTypeInt64{}))
return ColumnVector<Int64>::create(size);
if (type->equals(DataTypeUInt8{}))
return ColumnVector<UInt8>::create(size);
if (type->equals(DataTypeUInt16{}))
return ColumnVector<UInt16>::create(size);
if (type->equals(DataTypeUInt32{}))
return ColumnVector<UInt32>::create(size);
if (type->equals(DataTypeUInt64{}))
return ColumnVector<UInt64>::create(size);
if (type->equals(DataTypeFloat32{}))
return ColumnVector<Float32>::create(size);
if (type->equals(DataTypeFloat64{}))
return ColumnVector<Float64>::create(size);
throw Exception("LLVMPreparedFunction::createColumn received an unsupported data type; check "
"that the list is consistent with LLVMContext::Data::toNativeType", ErrorCodes::LOGICAL_ERROR);
}
};
class LLVMFunction : public std::enable_shared_from_this<LLVMFunction>, public IFunctionBase
@ -81,8 +115,6 @@ public:
PreparedFunctionPtr prepare(const Block &) const override { return std::make_shared<LLVMPreparedFunction>(context, shared_from_this()); }
IColumn::Ptr createResultColumn(size_t size) const override { return actions.back().function->createResultColumn(size); }
bool isDeterministic() override
{
for (const auto & action : actions)