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Added case for when negation is defined
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2 changed files with 12 additions and 6 deletions
7
vsp.py
7
vsp.py
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@ -107,7 +107,10 @@ Subalgebra 1: {set_to_str(self.subalgebra1)}
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Subalgebra 2: {set_to_str(self.subalgebra2)}
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"""
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def has_vsp(model: Model, impfunction: ModelFunction, mconjunction: Optional[ModelFunction] = None, mdisjunction: Optional[ModelFunction] = None) -> VSP_Result:
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def has_vsp(model: Model, impfunction: ModelFunction,
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mconjunction: Optional[ModelFunction] = None,
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mdisjunction: Optional[ModelFunction] = None,
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mnegation: Optional[ModelFunction] = None) -> VSP_Result:
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"""
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Checks whether a model has the variable
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sharing property.
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@ -173,6 +176,8 @@ def has_vsp(model: Model, impfunction: ModelFunction, mconjunction: Optional[Mod
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# If the subalgebras are order-dependent, skip this pair
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if order_dependent(xs, ys, model.ordering):
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continue
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if mnegation is not None and order_dependent(ys, xs, model.ordering):
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continue
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# Compute the closure of all operations
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# with just the xs
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11
vspursuer.py
11
vspursuer.py
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@ -3,7 +3,7 @@ from os import cpu_count
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import argparse
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import multiprocessing as mp
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from logic import Conjunction, Disjunction, Implication
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from logic import Conjunction, Disjunction, Negation, Implication
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from parse_magic import SourceFile, parse_matrices
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from vsp import has_vsp, VSP_Result
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@ -24,19 +24,20 @@ if __name__ == "__main__":
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# NOTE: When subprocess gets spawned, the logical operations will
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# have a different memory address than what's expected in interpretation.
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# This will make it so that we can pass the model functions directly instead.
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# Therefore, we need to pass the model functions directly instead.
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solutions_expanded = []
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for model, interpretation in solutions:
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impfunction = interpretation[Implication]
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mconjunction = interpretation.get(Conjunction)
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mdisjunction = interpretation.get(Disjunction)
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solutions_expanded.append((model, impfunction, mconjunction, mdisjunction))
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mnegation = interpretation.get(Negation)
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solutions_expanded.append((model, impfunction, mconjunction, mdisjunction, mnegation))
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num_has_vsp = 0
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with mp.Pool(processes=max(cpu_count() - 2, 1)) as pool:
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results = [
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pool.apply_async(has_vsp, (model, impfunction, mconjunction, mdisjunction,))
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for model, impfunction, mconjunction, mdisjunction in solutions_expanded
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pool.apply_async(has_vsp, (model, impfunction, mconjunction, mdisjunction, mnegation))
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for model, impfunction, mconjunction, mdisjunction, mnegation in solutions_expanded
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]
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for i, result in enumerate(results):
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