use kernel::PARENT_KERNELS;
use vortex_dtype::DType;
use vortex_dtype::Nullability;
use vortex_dtype::PType;
use vortex_error::VortexExpect;
use vortex_error::VortexResult;
use vortex_error::vortex_bail;
use vortex_error::vortex_ensure;
use vortex_session::VortexSession;
use crate::ArrayRef;
use crate::DeserializeMetadata;
use crate::ExecutionCtx;
use crate::ProstMetadata;
use crate::SerializeMetadata;
use crate::arrays::ListViewArray;
use crate::arrays::listview::compute::rules::PARENT_RULES;
use crate::buffer::BufferHandle;
use crate::serde::ArrayChildren;
use crate::validity::Validity;
use crate::vtable;
use crate::vtable::ArrayId;
use crate::vtable::VTable;
use crate::vtable::ValidityVTableFromValidityHelper;
mod array;
mod kernel;
mod operations;
mod validity;
mod visitor;
vtable!(ListView);
#[derive(Debug)]
pub struct ListViewVTable;
impl ListViewVTable {
pub const ID: ArrayId = ArrayId::new_ref("vortex.listview");
}
#[derive(Clone, prost::Message)]
pub struct ListViewMetadata {
#[prost(uint64, tag = "1")]
elements_len: u64,
#[prost(enumeration = "PType", tag = "2")]
offset_ptype: i32,
#[prost(enumeration = "PType", tag = "3")]
size_ptype: i32,
}
impl VTable for ListViewVTable {
type Array = ListViewArray;
type Metadata = ProstMetadata<ListViewMetadata>;
type ArrayVTable = Self;
type OperationsVTable = Self;
type ValidityVTable = ValidityVTableFromValidityHelper;
type VisitorVTable = Self;
fn id(_array: &Self::Array) -> ArrayId {
Self::ID
}
fn metadata(array: &ListViewArray) -> VortexResult<Self::Metadata> {
Ok(ProstMetadata(ListViewMetadata {
elements_len: array.elements().len() as u64,
offset_ptype: PType::try_from(array.offsets().dtype())? as i32,
size_ptype: PType::try_from(array.sizes().dtype())? as i32,
}))
}
fn serialize(metadata: Self::Metadata) -> VortexResult<Option<Vec<u8>>> {
Ok(Some(metadata.serialize()))
}
fn deserialize(
bytes: &[u8],
_dtype: &DType,
_len: usize,
_buffers: &[BufferHandle],
_session: &VortexSession,
) -> VortexResult<Self::Metadata> {
let metadata = <Self::Metadata as DeserializeMetadata>::deserialize(bytes)?;
Ok(ProstMetadata(metadata))
}
fn build(
dtype: &DType,
len: usize,
metadata: &Self::Metadata,
buffers: &[BufferHandle],
children: &dyn ArrayChildren,
) -> VortexResult<ListViewArray> {
vortex_ensure!(
buffers.is_empty(),
"`ListViewArray::build` expects no buffers"
);
let DType::List(element_dtype, _) = dtype else {
vortex_bail!("Expected List dtype, got {:?}", dtype);
};
let validity = if children.len() == 3 {
Validity::from(dtype.nullability())
} else if children.len() == 4 {
let validity = children.get(3, &Validity::DTYPE, len)?;
Validity::Array(validity)
} else {
vortex_bail!(
"`ListViewArray::build` expects 3 or 4 children, got {}",
children.len()
);
};
let elements = children.get(
0,
element_dtype.as_ref(),
usize::try_from(metadata.0.elements_len)?,
)?;
let offsets = children.get(
1,
&DType::Primitive(metadata.0.offset_ptype(), Nullability::NonNullable),
len,
)?;
let sizes = children.get(
2,
&DType::Primitive(metadata.0.size_ptype(), Nullability::NonNullable),
len,
)?;
ListViewArray::try_new(elements, offsets, sizes, validity)
}
fn with_children(array: &mut Self::Array, children: Vec<ArrayRef>) -> VortexResult<()> {
vortex_ensure!(
children.len() == 3 || children.len() == 4,
"ListViewArray expects 3 or 4 children, got {}",
children.len()
);
let mut iter = children.into_iter();
let elements = iter
.next()
.vortex_expect("children length already validated");
let offsets = iter
.next()
.vortex_expect("children length already validated");
let sizes = iter
.next()
.vortex_expect("children length already validated");
let validity = if let Some(validity_array) = iter.next() {
Validity::Array(validity_array)
} else {
Validity::from(array.dtype.nullability())
};
let new_array = ListViewArray::try_new(elements, offsets, sizes, validity)?;
*array = new_array;
Ok(())
}
fn execute(array: &Self::Array, _ctx: &mut ExecutionCtx) -> VortexResult<ArrayRef> {
Ok(array.to_array())
}
fn reduce_parent(
array: &Self::Array,
parent: &ArrayRef,
child_idx: usize,
) -> VortexResult<Option<ArrayRef>> {
PARENT_RULES.evaluate(array, parent, child_idx)
}
fn execute_parent(
array: &Self::Array,
parent: &ArrayRef,
child_idx: usize,
ctx: &mut ExecutionCtx,
) -> VortexResult<Option<ArrayRef>> {
PARENT_KERNELS.execute(array, parent, child_idx, ctx)
}
}