radiate_extensions/alterers/
node_crossover.rsuse crate::NodeChromosome;
use radiate::alter::AlterType;
use radiate::engines::genome::*;
use radiate::{random_provider, Alter};
pub struct NodeCrossover<T>
where
T: Clone + PartialEq + Default + 'static,
{
pub rate: f32,
_marker: std::marker::PhantomData<T>,
}
impl<T> NodeCrossover<T>
where
T: Clone + PartialEq + Default + 'static,
{
pub fn new(rate: f32) -> Self {
Self {
rate,
_marker: std::marker::PhantomData,
}
}
}
impl<T> Alter<NodeChromosome<T>> for NodeCrossover<T>
where
T: Clone + PartialEq + Default,
{
fn name(&self) -> &'static str {
"Node Crossover"
}
fn rate(&self) -> f32 {
self.rate
}
fn alter_type(&self) -> AlterType {
AlterType::Crossover
}
#[inline]
fn cross_chromosomes(
&self,
chrom_one: &mut NodeChromosome<T>,
chrom_two: &mut NodeChromosome<T>,
) -> i32 {
let rate = self.rate();
let mut cross_count = 0;
for i in 0..std::cmp::min(chrom_one.len(), chrom_two.len()) {
if random_provider::random::<f32>() < rate {
let gene_one = chrom_one.get_gene(i);
let gene_two = chrom_two.get_gene(i);
if gene_one.value.arity() != gene_two.value.arity()
|| gene_one.node_type() != gene_two.node_type()
{
continue;
}
let new_gene_one = gene_one.with_allele(gene_two.allele());
let new_gene_two = gene_two.with_allele(gene_one.allele());
chrom_one.set_gene(i, new_gene_one);
chrom_two.set_gene(i, new_gene_two);
cross_count += 1;
}
}
cross_count
}
}