use std::borrow::Cow;
use std::collections::HashMap;
use crate::data::{DataFrame, Value};
use super::{Position, PositionParams};
pub struct PositionStack;
impl Position for PositionStack {
fn compute(&self, data: &mut DataFrame, _params: &PositionParams) {
let x_col = match data.column("x") {
Some(c) => c.to_vec(),
None => return,
};
let y_col = match data.column("y") {
Some(c) => c.to_vec(),
None => return,
};
super::preserve_raw_y(data, &y_col);
let mut totals: HashMap<Cow<'_, str>, f64> = HashMap::new();
for (x, y) in x_col.iter().zip(y_col.iter()) {
*totals.entry(x.key_str()).or_insert(0.0) += y.as_f64().unwrap_or(0.0);
}
let mut consumed: HashMap<Cow<'_, str>, f64> = HashMap::new();
let mut new_y = Vec::with_capacity(y_col.len());
let mut ymin_vals = Vec::with_capacity(y_col.len());
for (x, y) in x_col.iter().zip(y_col.iter()) {
let x_key = x.key_str();
let y_val = y.as_f64().unwrap_or(0.0);
let total = totals.get(&x_key).copied().unwrap_or(0.0);
let run = consumed.get(&x_key).copied().unwrap_or(0.0);
new_y.push(Value::Float(total - run));
ymin_vals.push(Value::Float(total - run - y_val));
*consumed.entry(x_key).or_insert(0.0) += y_val;
}
if let Some(col) = data.column_mut("y") {
*col = new_y;
}
if !data.has_column("ymin") {
data.add_column("ymin".to_string(), ymin_vals);
} else if let Some(col) = data.column_mut("ymin") {
*col = ymin_vals;
}
}
fn name(&self) -> &str {
"stack"
}
}