Further split values to chromosomes decorator

This commit is contained in:
SimpleArt
2020-11-20 09:15:31 -05:00
parent 965ad352a6
commit c212da2426

View File

@ -1,27 +1,30 @@
import random
def append_children_from_mating_pool(crossover_method):
def helper(ga):
mating_pool = ga.population.mating_pool
return lambda ga:\
ga.population.append_children(
[chromosome for chromosome in crossover_method(ga, mating_pool)]
[chromosome for chromosome in crossover_method(ga, ga.population.mating_pool)]
)
return helper
def values_to_chromosome(crossover_method):
def helper(ga, parent_1, parent_2):
return ga.make_chromosome([
ga.make_gene(value)
for value in crossover_method(ga, parent_1, parent_2)])
return helper
def genes_to_chromosome(crossover_method):
return lambda ga, parent_1, parent_2:\
return ga.make_chromosome(crossover_method(ga, parent_1, parent_2))
def values_to_genes(crossover_method):
return lambda ga, parent_1, parent_2:\
return (ga.make_gene(value) for value in crossover_method(ga, parent_1, parent_2))
class Crossover_Methods:
def __append_children_from_mating_pool(crossover_method):
return append_children_from_mating_pool(crossover_method)
def __values_to_chromosome(crossover_method):
def __genes_to_chromosome(crossover_method):
return values_to_chromosome(crossover_method)
def __values_to_genes(crossover_method):
return values_to_genes(crossover_method)
class Population:
@ -61,30 +64,33 @@ class Crossover_Methods:
"""Methods for crossing parents."""
@genes_to_chromosome
def single_point(ga, parent_1, parent_2):
"""Cross two parents by swapping genes at one random point."""
swap_index = random.randint(0, len(parent_1)-1)
return ga.make_chromosome(parent_1[:swap_index] + parent_2[swap_index:])
return parent_1[:swap_index] + parent_2[swap_index:]
@genes_to_chromosome
def multi_point(ga, parent_1, parent_2):
"""Cross two parents by swapping genes at multiple points."""
pass
@genes_to_chromosome
def uniform(ga, parent_1, parent_2):
"""Cross two parents by swapping all genes randomly."""
return ga.make_chromosome([ # Make a new chromosome
random.choice([gene_1, gene_2]) # by randomly selecting genes
for gene_1, gene_2 in zip(parent_1, parent_2)]) # from each parent
for gene_pair in zip(parent_1, parent_2):
yield random.choice(gene_pair)
class Arithmetic:
"""Crossover methods for numerical genes."""
@values_to_chromosome
@genes_to_chromosome
@values_to_genes
def int_random(ga, parent_1, parent_2):
"""Cross two parents by taking a random integer value between each of the genes."""
@ -95,7 +101,8 @@ class Crossover_Methods:
yield random.randint(*sorted([value_1, value_2]))
@values_to_chromosome
@genes_to_chromosome
@values_to_genes
def int_weighted(ga, parent_1, parent_2):
"""Cross two parents by taking a a weighted average of the genes."""
@ -109,7 +116,8 @@ class Crossover_Methods:
yield int(weight*value_1+(1-weight)*value_2)
@values_to_chromosome
@genes_to_chromosome
@values_to_genes
def float_random(ga, parent_one, parent_two):
"""Cross two parents by taking a random numeric value between each of the genes."""
@ -120,7 +128,8 @@ class Crossover_Methods:
yield random.uniform([value_1, value_2])
@values_to_chromosome
@genes_to_chromosome
@values_to_genes
def float_weighted(ga, parent_one, parent_two):
"""Cross two parents by taking a a weighted average of the genes."""