mirror of
https://github.com/Brandon-Rozek/matmod.git
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119 lines
4.7 KiB
Python
Executable file
119 lines
4.7 KiB
Python
Executable file
#!/usr/bin/env python3
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from os import process_cpu_count
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from time import sleep
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from typing import Dict, Iterator, Optional, Tuple
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import argparse
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import multiprocessing as mp
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from logic import Conjunction, Disjunction, Negation, Implication, Operation
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from model import Model, ModelFunction
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from parse_magic import SourceFile, parse_matrices
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from vsp import has_vsp
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def restructure_solutions(solutions: Iterator[Tuple[Model, Dict[Operation, ModelFunction]]], args) -> \
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Iterator[Tuple[Model, ModelFunction, Optional[ModelFunction], Optional[ModelFunction], Optional[ModelFunction]]]:
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"""
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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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Therefore, we need to pass the model functions directly instead.
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While we're at it, filter out models until we get to --skip-to
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if applicable.
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"""
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start_processing = args.get("skip_to") is None
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for model, interpretation in solutions:
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# If skip_to is defined, then don't process models
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# until then.
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if not start_processing and model.name == args.get("skip_to"):
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start_processing = True
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if not start_processing:
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continue
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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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mnegation = interpretation.get(Negation)
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yield (model, impfunction, mconjunction, mdisjunction, mnegation)
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def has_vsp_plus_model(model, impfunction, mconjunction, mdisjunction, mnegation):
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"""
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Wrapper so that we can save the model that satisfies VSP.
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NOTE: At the time of writing, models that don't satisfy VSP
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get discarded from memory for efficiency sake.
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"""
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vsp_result = has_vsp(model, impfunction, mconjunction, mdisjunction, mnegation)
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if vsp_result.has_vsp:
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return (model, vsp_result)
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return (None, vsp_result)
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if __name__ == "__main__":
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parser = argparse.ArgumentParser(description="VSP Checker")
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parser.add_argument("--verbose", action='store_true', help="Print out all parsed matrices")
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parser.add_argument("-i", type=str, help="Path to MaGIC ugly data file")
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parser.add_argument("-c", type=int, help="Number of CPUs to use. Default: MAX - 2.")
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parser.add_argument("--skip-to", type=str, help="Skip until a model name is found and process from then onwards.")
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args = vars(parser.parse_args())
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data_file_path = args.get("i")
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if data_file_path is None:
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data_file_path = input("Path to MaGIC Ugly Data File: ")
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data_file = open(data_file_path, "r")
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solutions = parse_matrices(SourceFile(data_file))
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solutions = restructure_solutions(solutions, args)
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num_cpu = args.get("c")
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if num_cpu is None:
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num_cpu = max(process_cpu_count() - 2, 1)
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# Set up parallel verification
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num_tested = 0
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num_has_vsp = 0
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with mp.Pool(processes=num_cpu) as pool:
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task_pool = []
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done_parsing = False
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# Populate initial task pool
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for _ in range(num_cpu):
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try:
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model, impfunction, mconjunction, mdisjunction, mnegation = next(solutions)
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except StopIteration:
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done_parsing = True
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break
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result_async = pool.apply_async(has_vsp_plus_model, (model, impfunction, mconjunction, mdisjunction, mnegation))
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task_pool.append(result_async)
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while len(task_pool) > 0:
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next_task_pool = []
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# Check the status of all the tasks, and spawn
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# new ones if finished
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for result_async in task_pool:
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if result_async.ready():
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model, vsp_result = result_async.get()
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print(vsp_result)
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num_tested += 1
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if args['verbose'] or vsp_result.has_vsp:
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print(model)
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if vsp_result.has_vsp:
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num_has_vsp += 1
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if done_parsing:
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continue
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# Submit new task if available
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try:
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model, impfunction, mconjunction, mdisjunction, mnegation = next(solutions)
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next_result_async = pool.apply_async(has_vsp_plus_model, (model, impfunction, mconjunction, mdisjunction, mnegation))
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next_task_pool.append(next_result_async)
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except StopIteration:
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done_parsing = True
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else:
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next_task_pool.append(result_async)
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task_pool = next_task_pool
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sleep(0.01)
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print(f"Tested {num_tested} models, {num_has_vsp} of which satisfy VSP")
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data_file.close()
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