use crate::engine::volcano::steps::traits::CoreStep;
use crate::{
engine::{
context::NoopCtx,
traverser::Traverser,
volcano::steps::{
group::{GroupCountStep, GroupStep},
traits::{BufferedStep, StepRef},
vec_source::VecSourceStep,
},
},
types::gvalue::{GValue, Primitive},
};
use smallvec::smallvec;
use std::rc::Rc;
fn t(v: i64) -> Rc<Traverser> {
Traverser::new_rc(GValue::Scalar(Primitive::Int64(v)))
}
#[test]
fn test_group_step() {
let src = BufferedStep::new(VecSourceStep::empty());
src.inner.borrow_mut().core.inject(smallvec![t(1), t(2), t(1), t(3)]);
let mut step = GroupStep::default();
step.add_upper(src.clone() as StepRef);
let mut ctx = NoopCtx;
let res = step.produce(&mut ctx).unwrap().unwrap();
assert_eq!(res.len(), 1);
if let GValue::Map(entries) = &res[0].value {
assert_eq!(entries.len(), 3); } else {
panic!("expected Map");
}
}
#[test]
fn test_group_count_step() {
let src = BufferedStep::new(VecSourceStep::empty());
src.inner.borrow_mut().core.inject(smallvec![t(1), t(2), t(1), t(1), t(3)]);
let mut step = GroupCountStep::default();
step.add_upper(src.clone() as StepRef);
let mut ctx = NoopCtx;
let res = step.produce(&mut ctx).unwrap().unwrap();
assert_eq!(res.len(), 1);
if let GValue::Map(entries) = &res[0].value {
assert_eq!(entries.len(), 3); let cnt_1 = entries.iter().find(|(k, _)| k == &GValue::Scalar(Primitive::Int64(1))).unwrap();
assert_eq!(cnt_1.1, GValue::Scalar(Primitive::Int64(3)));
} else {
panic!("expected Map");
}
}
#[test]
fn test_group_empty() {
let src = BufferedStep::new(VecSourceStep::empty());
let mut step = GroupStep::default();
step.add_upper(src.clone() as StepRef);
let mut ctx = NoopCtx;
assert!(step.produce(&mut ctx).unwrap().is_some()); }
#[test]
fn test_group_count_empty() {
let src = BufferedStep::new(VecSourceStep::empty());
let mut step = GroupCountStep::default();
step.add_upper(src.clone() as StepRef);
let mut ctx = NoopCtx;
assert!(step.produce(&mut ctx).unwrap().is_some());
}
#[test]
fn test_group_no_upstream() {
let mut step = GroupStep::default();
let mut ctx = NoopCtx;
assert!(step.produce(&mut ctx).unwrap().is_none());
}
#[test]
fn test_group_done_flag() {
let src = BufferedStep::new(VecSourceStep::empty());
src.inner.borrow_mut().core.inject(smallvec![t(1)]);
let mut step = GroupStep::default();
step.add_upper(src.clone() as StepRef);
let mut ctx = NoopCtx;
assert!(step.produce(&mut ctx).unwrap().is_some());
assert!(step.produce(&mut ctx).unwrap().is_none());
}
#[test]
fn test_group_count_no_upstream() {
let mut step = GroupCountStep::default();
let mut ctx = NoopCtx;
assert!(step.produce(&mut ctx).unwrap().is_none());
}
#[test]
fn test_group_count_upper() {
let mut step = GroupCountStep::default();
assert!(step.upper().is_none());
let src = BufferedStep::new(VecSourceStep::empty());
step.add_upper(src.clone() as StepRef);
assert!(step.upper().is_some());
}
#[test]
fn test_group_upper() {
let mut step = GroupStep::default();
assert!(step.upper().is_none());
let src = BufferedStep::new(VecSourceStep::empty());
step.add_upper(src.clone() as StepRef);
assert!(step.upper().is_some());
}
#[test]
fn test_group_count_done_flag() {
let src = BufferedStep::new(VecSourceStep::empty());
src.inner.borrow_mut().core.inject(smallvec![t(1)]);
let mut step = GroupCountStep::default();
step.add_upper(src.clone() as StepRef);
let mut ctx = NoopCtx;
assert!(step.produce(&mut ctx).unwrap().is_some());
assert!(step.produce(&mut ctx).unwrap().is_none());
}