vortex_array/array/chunked/compute/
mod.rsuse vortex_dtype::DType;
use vortex_error::VortexResult;
use crate::array::chunked::ChunkedArray;
use crate::array::ChunkedEncoding;
use crate::compute::{
try_cast, BinaryBooleanFn, BinaryNumericFn, CastFn, CompareFn, ComputeVTable, FillNullFn,
FilterFn, InvertFn, ScalarAtFn, SliceFn, TakeFn,
};
use crate::{ArrayData, IntoArrayData};
mod binary_numeric;
mod boolean;
mod compare;
mod fill_null;
mod filter;
mod invert;
mod scalar_at;
mod slice;
mod take;
impl ComputeVTable for ChunkedEncoding {
fn binary_boolean_fn(&self) -> Option<&dyn BinaryBooleanFn<ArrayData>> {
Some(self)
}
fn binary_numeric_fn(&self) -> Option<&dyn BinaryNumericFn<ArrayData>> {
Some(self)
}
fn cast_fn(&self) -> Option<&dyn CastFn<ArrayData>> {
Some(self)
}
fn compare_fn(&self) -> Option<&dyn CompareFn<ArrayData>> {
Some(self)
}
fn fill_null_fn(&self) -> Option<&dyn FillNullFn<ArrayData>> {
Some(self)
}
fn filter_fn(&self) -> Option<&dyn FilterFn<ArrayData>> {
Some(self)
}
fn invert_fn(&self) -> Option<&dyn InvertFn<ArrayData>> {
Some(self)
}
fn scalar_at_fn(&self) -> Option<&dyn ScalarAtFn<ArrayData>> {
Some(self)
}
fn slice_fn(&self) -> Option<&dyn SliceFn<ArrayData>> {
Some(self)
}
fn take_fn(&self) -> Option<&dyn TakeFn<ArrayData>> {
Some(self)
}
}
impl CastFn<ChunkedArray> for ChunkedEncoding {
fn cast(&self, array: &ChunkedArray, dtype: &DType) -> VortexResult<ArrayData> {
let mut cast_chunks = Vec::new();
for chunk in array.chunks() {
cast_chunks.push(try_cast(&chunk, dtype)?);
}
Ok(ChunkedArray::try_new(cast_chunks, dtype.clone())?.into_array())
}
}
#[cfg(test)]
mod test {
use vortex_buffer::buffer;
use vortex_dtype::{DType, Nullability, PType};
use crate::array::chunked::ChunkedArray;
use crate::compute::try_cast;
use crate::{IntoArrayData, IntoArrayVariant};
#[test]
fn test_cast_chunked() {
let arr0 = buffer![0u32, 1].into_array();
let arr1 = buffer![2u32, 3].into_array();
let chunked = ChunkedArray::try_new(
vec![arr0, arr1],
DType::Primitive(PType::U32, Nullability::NonNullable),
)
.unwrap()
.into_array();
let root = ChunkedArray::try_new(
vec![chunked],
DType::Primitive(PType::U32, Nullability::NonNullable),
)
.unwrap()
.into_array();
assert_eq!(
try_cast(
&root,
&DType::Primitive(PType::U64, Nullability::NonNullable)
)
.unwrap()
.into_primitive()
.unwrap()
.as_slice::<u64>(),
&[0u64, 1, 2, 3],
);
}
}