Output 1.0, Beispiel s. example.py
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src/Output/output.py
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src/Output/output.py
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import matplotlib.pyplot as plt
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from matplotlib import colors
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import numpy as np
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from SchedulingAlgorithms.simanneal import rate
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def create_plot(problem, solution):
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end = rate(solution)
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with plt.xkcd():
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fig,ax = plt.subplots()
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for m in range(0, problem.machines):
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mach_ops = [ x for x in solution if problem.problem_data[x[1][0]][x[1][1]][1] == m ]
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xranges = [ (x[0], problem.problem_data[x[1][0]][x[1][1]][0]) for x in mach_ops ]
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ax.broken_barh(xranges, ((problem.machines - m)*10, 9),
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facecolors=[list(colors.XKCD_COLORS.values())[x[1][0]] for x in mach_ops])
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ax.set_ylim(5, 5 + (problem.machines+1)*10)
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ax.set_xlim(0, 1.25 * end)
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ax.set_yticks([15 + m * 10 for m in range(0, problem.machines)])
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ax.set_yticklabels([ problem.machines - 1 - m for m in range(0, problem.machines)] )
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plt.show()
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INSTANCES = [(5, 5)]
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TASKS = [[(1, 21), (0, 53), (4, 95), (3, 55), (2, 35)],
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[(0, 21), (3, 52), (4, 16), (2, 26), (1, 71)],
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[(3, 39), (4, 98), (1, 42), (2, 31), (0, 12)],
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[(1, 77), (0, 55), (4, 79), (2, 66), (3, 77)],
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[(0, 83), (3, 34), (2, 64), (1, 19), (4, 37)]]
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from Generator import generator as g
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from SchedulingAlgorithms import simanneal as sim
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from Output import output as o
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g.mock()
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problem = g.problem
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sim.init(problem)
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solution = sim.anneal()
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o.create_plot(problem, solution)
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