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use datafusion_expr::logical_plan::CrossJoin;
use pyo3::prelude::*;
use std::fmt::{self, Display, Formatter};
use super::logical_node::LogicalNode;
use crate::common::df_schema::PyDFSchema;
use crate::sql::logical::PyLogicalPlan;
#[pyclass(name = "CrossJoin", module = "datafusion.expr", subclass)]
#[derive(Clone)]
pub struct PyCrossJoin {
cross_join: CrossJoin,
}
impl From<CrossJoin> for PyCrossJoin {
fn from(cross_join: CrossJoin) -> PyCrossJoin {
PyCrossJoin { cross_join }
}
}
impl From<PyCrossJoin> for CrossJoin {
fn from(cross_join: PyCrossJoin) -> Self {
cross_join.cross_join
}
}
impl Display for PyCrossJoin {
fn fmt(&self, f: &mut Formatter) -> fmt::Result {
write!(
f,
"CrossJoin
\nLeft: {:?}
\nRight: {:?}
\nSchema: {:?}",
&self.cross_join.left, &self.cross_join.right, &self.cross_join.schema
)
}
}
#[pymethods]
impl PyCrossJoin {
fn left(&self) -> PyResult<PyLogicalPlan> {
Ok(self.cross_join.left.as_ref().clone().into())
}
fn right(&self) -> PyResult<PyLogicalPlan> {
Ok(self.cross_join.right.as_ref().clone().into())
}
fn schema(&self) -> PyResult<PyDFSchema> {
Ok(self.cross_join.schema.as_ref().clone().into())
}
fn __repr__(&self) -> PyResult<String> {
Ok(format!("CrossJoin({})", self))
}
fn __name__(&self) -> PyResult<String> {
Ok("CrossJoin".to_string())
}
}
impl LogicalNode for PyCrossJoin {
fn inputs(&self) -> Vec<PyLogicalPlan> {
vec![
PyLogicalPlan::from((*self.cross_join.left).clone()),
PyLogicalPlan::from((*self.cross_join.right).clone()),
]
}
fn to_variant(&self, py: Python) -> PyResult<PyObject> {
Ok(self.clone().into_py(py))
}
}