use arrow::array::ArrayRef;
use arrow::datatypes::DataType;
use datafusion_common::{Result, ScalarValue};
use datafusion_expr::function::Hint;
use datafusion_expr::ColumnarValue;
macro_rules! get_optimal_return_type {
($FUNC:ident, $largeUtf8Type:expr, $utf8Type:expr) => {
pub(crate) fn $FUNC(arg_type: &DataType, name: &str) -> Result<DataType> {
Ok(match arg_type {
DataType::LargeUtf8 | DataType::LargeBinary => $largeUtf8Type,
DataType::Utf8 | DataType::Binary => $utf8Type,
DataType::Utf8View | DataType::BinaryView => $utf8Type,
DataType::Null => DataType::Null,
DataType::Dictionary(_, value_type) => match **value_type {
DataType::LargeUtf8 | DataType::LargeBinary => $largeUtf8Type,
DataType::Utf8 | DataType::Binary => $utf8Type,
DataType::Null => DataType::Null,
_ => {
return datafusion_common::exec_err!(
"The {} function can only accept strings, but got {:?}.",
name.to_uppercase(),
**value_type
);
}
},
data_type => {
return datafusion_common::exec_err!(
"The {} function can only accept strings, but got {:?}.",
name.to_uppercase(),
data_type
);
}
})
}
};
}
get_optimal_return_type!(utf8_to_str_type, DataType::LargeUtf8, DataType::Utf8);
get_optimal_return_type!(utf8_to_int_type, DataType::Int64, DataType::Int32);
pub(super) fn make_scalar_function<F>(
inner: F,
hints: Vec<Hint>,
) -> impl Fn(&[ColumnarValue]) -> Result<ColumnarValue>
where
F: Fn(&[ArrayRef]) -> Result<ArrayRef>,
{
move |args: &[ColumnarValue]| {
let len = args
.iter()
.fold(Option::<usize>::None, |acc, arg| match arg {
ColumnarValue::Scalar(_) => acc,
ColumnarValue::Array(a) => Some(a.len()),
});
let is_scalar = len.is_none();
let inferred_length = len.unwrap_or(1);
let args = args
.iter()
.zip(hints.iter().chain(std::iter::repeat(&Hint::Pad)))
.map(|(arg, hint)| {
let expansion_len = match hint {
Hint::AcceptsSingular => 1,
Hint::Pad => inferred_length,
};
arg.to_array(expansion_len)
})
.collect::<Result<Vec<_>>>()?;
let result = (inner)(&args);
if is_scalar {
let result = result.and_then(|arr| ScalarValue::try_from_array(&arr, 0));
result.map(ColumnarValue::Scalar)
} else {
result.map(ColumnarValue::Array)
}
}
}
#[cfg(test)]
pub mod test {
macro_rules! test_function {
($FUNC:expr, $ARGS:expr, $EXPECTED:expr, $EXPECTED_TYPE:ty, $EXPECTED_DATA_TYPE:expr, $ARRAY_TYPE:ident) => {
let expected: Result<Option<$EXPECTED_TYPE>> = $EXPECTED;
let func = $FUNC;
let type_array = $ARGS.iter().map(|arg| arg.data_type()).collect::<Vec<_>>();
let cardinality = $ARGS
.iter()
.fold(Option::<usize>::None, |acc, arg| match arg {
ColumnarValue::Scalar(_) => acc,
ColumnarValue::Array(a) => Some(a.len()),
})
.unwrap_or(1);
let scalar_arguments = $ARGS.iter().map(|arg| match arg {
ColumnarValue::Scalar(scalar) => Some(scalar.clone()),
ColumnarValue::Array(_) => None,
}).collect::<Vec<_>>();
let scalar_arguments_refs = scalar_arguments.iter().map(|arg| arg.as_ref()).collect::<Vec<_>>();
let nullables = $ARGS.iter().map(|arg| match arg {
ColumnarValue::Scalar(scalar) => scalar.is_null(),
ColumnarValue::Array(a) => a.null_count() > 0,
}).collect::<Vec<_>>();
let return_info = func.return_type_from_args(datafusion_expr::ReturnTypeArgs {
arg_types: &type_array,
scalar_arguments: &scalar_arguments_refs,
nullables: &nullables
});
match expected {
Ok(expected) => {
assert_eq!(return_info.is_ok(), true);
let (return_type, _nullable) = return_info.unwrap().into_parts();
assert_eq!(return_type, $EXPECTED_DATA_TYPE);
let result = func.invoke_with_args(datafusion_expr::ScalarFunctionArgs{args: $ARGS, number_rows: cardinality, return_type: &return_type});
assert_eq!(result.is_ok(), true, "function returned an error: {}", result.unwrap_err());
let result = result.unwrap().to_array(cardinality).expect("Failed to convert to array");
let result = result.as_any().downcast_ref::<$ARRAY_TYPE>().expect("Failed to convert to type");
assert_eq!(result.data_type(), &$EXPECTED_DATA_TYPE);
match expected {
Some(v) => assert_eq!(result.value(0), v),
None => assert!(result.is_null(0)),
};
}
Err(expected_error) => {
if return_info.is_err() {
match return_info {
Ok(_) => assert!(false, "expected error"),
Err(error) => { datafusion_common::assert_contains!(expected_error.strip_backtrace(), error.strip_backtrace()); }
}
}
else {
let (return_type, _nullable) = return_info.unwrap().into_parts();
match func.invoke_with_args(datafusion_expr::ScalarFunctionArgs{args: $ARGS, number_rows: cardinality, return_type: &return_type}) {
Ok(_) => assert!(false, "expected error"),
Err(error) => {
assert!(expected_error.strip_backtrace().starts_with(&error.strip_backtrace()));
}
}
}
}
};
};
}
use arrow::datatypes::DataType;
#[allow(unused_imports)]
pub(crate) use test_function;
use super::*;
#[test]
fn string_to_int_type() {
let v = utf8_to_int_type(&DataType::Utf8, "test").unwrap();
assert_eq!(v, DataType::Int32);
let v = utf8_to_int_type(&DataType::Utf8View, "test").unwrap();
assert_eq!(v, DataType::Int32);
let v = utf8_to_int_type(&DataType::LargeUtf8, "test").unwrap();
assert_eq!(v, DataType::Int64);
}
}