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c9a4f6ce36
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c9a4f6ce36 | |||
a6ca7ff7a3 |
1 changed files with 31 additions and 11 deletions
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@ -15,7 +15,18 @@ from logic import (
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)
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from vsp import has_vsp
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def parse_matrices(infile: TextIO) -> List[Tuple[Model, Dict]]:
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class SourceFile:
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def __init__(self, fileobj: TextIO):
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self.fileobj = fileobj
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self.current_line = 0
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def __next__(self):
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contents = next(self.fileobj)
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self.current_line += 1
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return contents
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def parse_matrices(infile: SourceFile) -> List[Tuple[Model, Dict]]:
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next(infile) # Skip header line
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solutions: List[Tuple[Model, Dict]] = []
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@ -27,31 +38,40 @@ def parse_matrices(infile: TextIO) -> List[Tuple[Model, Dict]]:
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carrier_set = carrier_set_from_size(size)
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num_negation = 0
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while True:
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mnegation = parse_negation(infile, size)
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if mnegation is None:
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break
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num_negation += 1
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num_order = 0
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while True:
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result = parse_order(infile, size)
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if result is None:
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break
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mconjunction, mdisjunction = result
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num_order += 1
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num_designated = 0
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while True:
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designated_values = parse_designated(infile, size)
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if designated_values is None:
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break
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num_designated += 1
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results = parse_implication(infile, size)
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if result is None:
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break
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num_implication = 0
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for mimplication in results:
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logical_operations = {
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mnegation, mimplication
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}
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model = Model(carrier_set, logical_operations, designated_values, name=str(len(solutions)))
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num_implication += 1
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model_name = f"{size}.{num_negation}.{num_order}.{num_designated}.{num_implication}"
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model = Model(carrier_set, logical_operations, designated_values, name=model_name)
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interpretation = {
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Negation: mnegation,
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Implication: mimplication
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@ -77,17 +97,17 @@ def carrier_set_from_size(size: int):
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mvalue_from_index(i) for i in range(size + 1)
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}
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def parse_size(infile: TextIO) -> Optional[int]:
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def parse_size(infile: SourceFile) -> Optional[int]:
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"""
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Parse the line representing the matrix size.
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"""
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size = int(next(infile))
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if size == -1:
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return None
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assert size > 0, "Unexpected size"
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assert size > 0, f"Unexpected size at line {infile.current_line}"
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return size
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def parse_negation(infile: TextIO, size: int) -> Optional[ModelFunction]:
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def parse_negation(infile: SourceFile, size: int) -> Optional[ModelFunction]:
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"""
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Parse the line representing the negation table.
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"""
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@ -96,7 +116,7 @@ def parse_negation(infile: TextIO, size: int) -> Optional[ModelFunction]:
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return None
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row = line.split(" ")
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assert len(row) == size + 1, "Negation table doesn't match size"
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assert len(row) == size + 1, f"Negation table doesn't match size at line {infile.current_line}"
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mapping = {}
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for i, j in zip(range(size + 1), row):
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@ -126,7 +146,7 @@ def determine_cresult(size: int, ordering: Dict[ModelValue, ModelValue], a: Mode
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"""
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for i in range(size + 1):
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c = mvalue_from_index(i)
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if not ordering[(c, a)]:
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continue
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if not ordering[(c, b)]:
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@ -178,7 +198,7 @@ def parse_order(infile: TextIO, size: int) -> Optional[Tuple[ModelFunction, Mode
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table = line.split(" ")
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assert len(table) == (size + 1)**2
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assert len(table) == (size + 1)**2, f"Order table doesn't match expected size at line {infile.current_line}"
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omapping = {}
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table_i = 0
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@ -228,7 +248,7 @@ def parse_designated(infile: TextIO, size: int) -> Optional[Set[ModelValue]]:
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return None
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row = line.split(" ")
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assert len(row) == size + 1, "Designated table doesn't match size"
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assert len(row) == size + 1, f"Designated table doesn't match expected size at line {infile.current_line}"
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designated_values = set()
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@ -252,7 +272,7 @@ def parse_implication(infile: TextIO, size: int) -> Optional[List[ModelFunction]
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# Split and remove the last '-1' character
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table = line.split(" ")[:-1]
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assert len(table) % (size + 1)**2 == 0
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assert len(table) % (size + 1)**2 == 0, f"Implication table does not match expected size at line {infile.current_line}"
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table_i = 0
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mimplications: List[ModelFunction] = []
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@ -277,7 +297,7 @@ def parse_implication(infile: TextIO, size: int) -> Optional[List[ModelFunction]
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if __name__ == "__main__":
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solutions: List[Model] = parse_matrices(sys.stdin)
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solutions: List[Model] = parse_matrices(SourceFile(sys.stdin))
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print(f"Parsed {len(solutions)} matrices")
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for i, (model, interpretation) in enumerate(solutions):
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print(model)
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