Genome graph rewritten to more straightforward approach

This commit is contained in:
rendo 2026-03-30 12:17:29 +05:00
commit b4583ff917
4 changed files with 26 additions and 37 deletions

View file

@ -7,6 +7,6 @@ edition = "2024"
godot = "0.4.5" godot = "0.4.5"
rand = "0.10.0" rand = "0.10.0"
[lib] #[lib]
crate-type = ["cdylib"] #crate-type = ["cdylib"]

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@ -3,15 +3,13 @@ use std::{collections::VecDeque, fmt::Display};
use crate::genetics::gene::Gene; use crate::genetics::gene::Gene;
pub struct PlantGenome { pub struct PlantGenome {
pub(crate) genes: Vec<Gene>, pub(crate) graph: Vec<(Gene,Vec<usize>)>,
pub(crate) edges: Vec<(usize,usize)>
} }
impl PlantGenome { impl PlantGenome {
pub fn new() -> Self { pub fn new() -> Self {
Self { Self {
genes: Vec::new(), graph: Vec::new()
edges: Vec::new()
} }
} }
pub fn from_edges(nodes: Vec<Gene>,edges: Vec<(usize,usize)>) -> Result<Self,PlantCreationError> { pub fn from_edges(nodes: Vec<Gene>,edges: Vec<(usize,usize)>) -> Result<Self,PlantCreationError> {
@ -23,9 +21,13 @@ impl PlantGenome {
return Err(PlantCreationError::EmptyEdges); return Err(PlantCreationError::EmptyEdges);
} }
let mut graph: Vec<(Gene,Vec<usize>)>= nodes.iter().map(|gene|{(gene.clone(),Vec::new())}).collect();
for edge in edges {
graph[edge.0].1.push(edge.1);
}
return Ok(Self { return Ok(Self {
genes: nodes, graph
edges
}); });
} }
} }
@ -33,31 +35,13 @@ impl PlantGenome {
impl Display for PlantGenome { impl Display for PlantGenome {
fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result { fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
let indents = { let indents = {
// Vibe code let mut result: Vec<(usize,Gene)> = vec![(0,self.graph[0].0.clone())];
let n = self.genes.len(); let mut tree: VecDeque<(usize,&Vec<usize>)> = VecDeque::from([(0,&self.graph[0].1)]);
while tree.is_empty() == false {
// Build adjacency list let (depth,children) = tree.pop_front().unwrap();
let mut adj = vec![Vec::new(); n]; for child in children {
for &(u, v) in &self.edges { result.push((depth+1,self.graph[*child].0.clone()));
adj[u].push(v); tree.push_back((depth+1,&self.graph[*child].1));
adj[v].push(u); // remove if directed
}
let mut visited = vec![false; n];
let mut queue = VecDeque::new();
let mut result = Vec::new();
queue.push_back((0, 0));
visited[0] = true;
while let Some((node, depth)) = queue.pop_front() {
result.push((depth, self.genes[node].clone()));
for &next in &adj[node] {
if !visited[next] {
visited[next] = true;
queue.push_back((next, depth + 1));
}
} }
} }
@ -65,7 +49,7 @@ impl Display for PlantGenome {
}; };
for (depth,gene) in indents { for (depth,gene) in indents {
let indent = "____".repeat(depth); let indent = "\t".repeat(depth);
writeln!(f,"{}{}",indent,gene)?; writeln!(f,"{}{}",indent,gene)?;
} }

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@ -12,16 +12,16 @@ impl<'a> GenomeModificator<'a> {
} }
pub fn allelic_crossingover(&mut self,chance: Option<u8>) { pub fn allelic_crossingover(&mut self,chance: Option<u8>) {
let mut generator = rand::rng(); let mut generator = rand::rng();
let amount: usize = *[self.0.genes.len(),self.1.genes.len()].iter().min().unwrap_or(&0); let amount: usize = *[self.0.graph.len(),self.1.graph.len()].iter().min().unwrap_or(&0);
for i in 0..amount { for i in 0..amount {
let computed = generator.random_range(0..chance.unwrap_or(2).max(2)); let computed = generator.random_range(0..chance.unwrap_or(2).max(2));
if computed != 0 {continue;} if computed != 0 {continue;}
swap(&mut self.0.genes[i], &mut self.1.genes[i]); swap(&mut self.0.graph[i].0, &mut self.1.graph[i].0);
} }
} }
/*pub fn categoric_crossingover(&mut self,chance: Option<u8>) { /*pub fn categoric_crossingover(&mut self,chance: Option<u8>) {
helper(self.0.genes.iter().map(|mut gene|(gene.place.clone(),&mut gene)).collect::<Vec<(String,&mut Gene)>>().append(&mut self.1.genes.iter().map(|mut gene|(gene.place.clone(),&mut gene)).collect::<Vec<(String,&mut Gene)>>()),chance); helper(self.0.graph.iter().map(|mut gene|(gene.place.clone(),&mut gene)).collect::<Vec<(String,&mut Gene)>>().append(&mut self.1.graph.iter().map(|mut gene|(gene.place.clone(),&mut gene)).collect::<Vec<(String,&mut Gene)>>()),chance);
} }
fn helper(test: HashMap<String,Vec<&mut Gene>>,chance: Option<u8>) { fn helper(test: HashMap<String,Vec<&mut Gene>>,chance: Option<u8>) {
}*/ }*/

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@ -0,0 +1,5 @@
use rust_pvz_genetics::genetics::plant_templates::peashooter_template;
fn main() {
let peashooter = peashooter_template();
println!("{}",peashooter);
}