use crate::{
Bare, BareValueDomain, EvaluateOperand, Explain, IndexDomain, Indexed, Labeled, Multiple,
Operand, OrderState, QueryResult, Single,
capabilities::ValueMultiply,
execution::EvaluationCache,
operands::OperandHandle,
operations::{
Apply, BareStream, KeyedStream, LaneKernel, Operation, OperationContext, Prepare,
},
optimizer::{Estimate, OperationInputs, OptimizerHints, PlanIdentity, PlanInputs, Stats},
registry::operation_manifest,
traits::Product,
};
use graphrecords_core::GraphRecord;
#[derive(Clone, Explain, Operation, OperationInputs, OptimizerHints, PlanIdentity, PlanInputs)]
#[operation(scope = Lane)]
#[explain(label = "Product")]
#[plan(optimizer_hints(empty = if_any))]
pub struct ProductOperation;
impl Prepare for ProductOperation {
type Prepared<'a> = ();
fn prepare<'a>(
&'a self,
_graphrecord: &'a GraphRecord,
_cache: &'a EvaluationCache<'a>,
) -> QueryResult<Self::Prepared<'a>> {
Ok(())
}
}
impl<I, V, O> LaneKernel<Indexed<I, V>, Multiple<O>> for ProductOperation
where
I: IndexDomain,
V: ValueMultiply + BareValueDomain,
O: OrderState,
{
type Output = OperandHandle<Bare<V>, Single>;
fn execute<'a>(
_graphrecord: &'a GraphRecord,
mut values: KeyedStream<'a, I, V, Multiple<O>>,
_prepared: Self::Prepared<'a>,
) -> QueryResult<<Self::Output as EvaluateOperand>::ReturnValue<'a>> {
let product = values.try_fold(None, |product, (index, value)| {
let value = value?;
match product {
Some(product) => V::multiply(Self::LABEL, product, value)
.map(Some)
.map_err(|failure| failure.at::<I>(&index)),
None => Ok(Some(value)),
}
});
Ok(product.transpose())
}
fn estimate(&self, input: Estimate, _stats: &Stats) -> Estimate {
input.zero_or_one()
}
}
impl<V, O> LaneKernel<Bare<V>, Multiple<O>> for ProductOperation
where
V: ValueMultiply + BareValueDomain,
O: OrderState,
{
type Output = OperandHandle<Bare<V>, Single>;
fn execute<'a>(
_graphrecord: &'a GraphRecord,
mut values: BareStream<'a, V, Multiple<O>>,
_prepared: Self::Prepared<'a>,
) -> QueryResult<<Self::Output as EvaluateOperand>::ReturnValue<'a>> {
let product = values.try_fold(None, |product, value| {
let value = value?;
match product {
Some(product) => V::multiply(Self::LABEL, product, value).map(Some),
None => Ok(Some(value)),
}
});
Ok(product.transpose())
}
fn estimate(&self, input: Estimate, _stats: &Stats) -> Estimate {
input.zero_or_one()
}
}
impl<O: Apply<ProductOperation>> Product for O {
type ReturnOperand = O::Output;
fn product(&self) -> Self::ReturnOperand {
Self::ReturnOperand::new(OperationContext::new(self.clone(), ProductOperation))
}
}
operation_manifest! {
ProductOperation {
method: Product::product;
scope: lane;
kernel {
parameters: <
I: IndexDomain,
V: ValueMultiply + BareValueDomain,
O: OrderState,
>;
input: (Indexed<I, V>, Multiple<O>);
output: OperandHandle<Bare<V>, Single>;
}
kernel {
parameters: <
V: ValueMultiply + BareValueDomain,
O: OrderState,
>;
input: (Bare<V>, Multiple<O>);
output: OperandHandle<Bare<V>, Single>;
}
}
}