Operator knows how to be printed
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@ -3,19 +3,35 @@
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from .fraction import Fraction
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from .fraction import Fraction
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from .generic import flatten_list
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class Operator(str):
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class Operator(str):
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"""The operator class, is a string (representation of the operator) with its arity"""
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"""The operator class, is a string (representation of the operator) with its arity"""
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PRIORITY = {"^": 5, "/": 4, "*" : 3, ":": 3, "+": 2, "-":2, "(": 1}
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PRIORITY = {"^": [0, 5], "/": [0, 4], "*" : [0,3], ":": [0,3], "+": [0,1], "-":[2,1]}
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OPERATIONS = { \
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OPERATIONS = { \
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"+": ["", "", ("__add__","__radd__")],\
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"+": ["", ("__add__","__radd__")],\
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"-": ["", "__neg__", ("__sub__", "__rsub__")], \
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"-": ["__neg__", ("__sub__", "__rsub__")], \
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"*": ["", "", ("__mul__", "__rmul__")], \
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"*": ["", ("__mul__", "__rmul__")], \
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"/": ["", "", ("__div__","__rdiv__")], \
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"/": ["", ("__div__","__rdiv__")], \
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"^": ["", "", ("__pow__", "")] \
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"^": ["", ("__pow__", "")] \
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}
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}
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TXT = { \
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"+": ["", "{op1} + {op2}"] ,\
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"-": ["- {op1}", "{op1} - {op2}"] ,\
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"*": ["", "{op1} * {op2}"] ,\
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"/": ["", "{op1} / {op2}"] ,\
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"^": ["", "{op1} ^ {op2}"] ,\
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}
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TEX = { \
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"+": ["", "{op1} + {op2}"] ,\
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"-": ["- {op1}", "{op1} - {op2}"] ,\
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"*": ["", "{op1} \\times {op2}"] ,\
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"/": ["", "\\frac{{ {op1} }}{{ {op2} }}"] ,\
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"^": ["", "{op1}^{{ {op2} }}"] ,\
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}
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def __new__(cls, operator, arity = 2):
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def __new__(cls, operator, arity = 2):
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op = str.__new__(cls, operator)
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op = str.__new__(cls, operator)
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@ -23,8 +39,10 @@ class Operator(str):
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# TODO: Add op.visibility |sam. nov. 8 17:00:08 CET 2014
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# TODO: Add op.visibility |sam. nov. 8 17:00:08 CET 2014
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op.priority = cls.PRIORITY[operator]
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op.priority = cls.PRIORITY[operator][arity - 1]
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op.actions = cls.OPERATIONS[operator][arity]
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op.actions = cls.OPERATIONS[operator][arity-1]
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op._txt = cls.TXT[operator][arity-1]
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op._tex = cls.TEX[operator][arity-1]
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op.isOperator = 1
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op.isOperator = 1
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@ -47,6 +65,149 @@ class Operator(str):
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else:
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else:
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return getattr(args[1], self.actions[1])(args[0])
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return getattr(args[1], self.actions[1])(args[0])
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def __txt__(self, *args):
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"""Txt rendering for the operator
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:*args: Operands for this operation
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:returns: String with operator and his operands
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>>> mul = Operator("*", 2)
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>>> add = Operator("+", 2)
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>>> sub1 = Operator("-", 1)
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>>> div = Operator("/", 1)
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>>> mul.__txt__(1,2)
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'1 * 2'
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>>> add.__txt__(1,2)
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'1 + 2'
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>>> f = save_mainOp('2 + 3',add)
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>>> mul.__txt__(f, 4)
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'( 2 + 3 ) * 4'
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>>> f = save_mainOp('-3',sub1)
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>>> sub1.__txt__(f)
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'- ( -3 )'
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>>> sub1.__txt__(-3)
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'- ( -3 )'
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>>> f = save_mainOp('2 + 3',add)
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>>> sub1.__txt__(f)
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'- ( 2 + 3 )'
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"""
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#vive le inline? ...
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replacement = {"op"+str(i+1): ' '.join([str(o) if type(o)==int else o for o in self.add_parenthesis(op)]) for (i,op) in enumerate(args)}
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return self._txt.format(**replacement)
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def __tex__(self, *args):
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"""Tex rendering for the operator
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:*args: Operands for this operation
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:returns: String with operator and his operands
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>>> mul = Operator("*", 2)
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>>> add = Operator("+", 2)
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>>> sub1 = Operator("-", 1)
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>>> div = Operator("/", 1)
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>>> mul.__tex__(1,2)
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'1 \\\\times 2'
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>>> add.__tex__(1,2)
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'1 + 2'
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>>> f = save_mainOp('2 + 3',add)
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>>> mul.__tex__(f, 4)
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'( 2 + 3 ) \\\\times 4'
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>>> f = save_mainOp('-3',sub1)
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>>> sub1.__tex__(f)
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'- ( -3 )'
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>>> sub1.__tex__(-3)
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'- ( -3 )'
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>>> f = save_mainOp('2 + 3',add)
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>>> sub1.__tex__(f)
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'- ( 2 + 3 )'
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"""
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replacement = {"op"+str(i+1): ' '.join([str(o) if type(o)==int else o for o in self.add_parenthesis(op)]) for (i,op) in enumerate(args)}
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return self._tex.format(**replacement)
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def __p2i__(self, *args):
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"""Fix list transformation for the operator
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:*args: Operands for this operation
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:returns: list with the operator surrounded by operands
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>>> mul = Operator("*", 2)
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>>> add = Operator("+", 2)
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>>> sub1 = Operator("-", 1)
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>>> mul.__p2i__(1,2)
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[1, '*', 2]
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>>> f = save_mainOp([2, add, 3],add)
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>>> mul.__p2i__(f, 4)
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['(', 2, '+', 3, ')', '*', 4]
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>>> f = save_mainOp([sub1, 3],sub1)
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>>> sub1.__p2i__(f)
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['-', '(', '-', 3, ')']
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>>> sub1.__p2i__(-3)
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['-', '(', -3, ')']
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>>> f = save_mainOp([2, add, 3],add)
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>>> sub1.__p2i__(f)
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['-', '(', 2, '+', 3, ')']
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"""
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# TODO: Attention à gestion des fractions qui se comportent chelou avec les parenthèses |dim. nov. 9 09:21:52 CET 2014
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if self.arity == 1:
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# TODO: Marche juste avec -, il faudra voir quand il y aura d'autres operateurs unitaires |dim. nov. 9 09:24:53 CET 2014
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op1 = self.add_parenthesis(args[0])
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return flatten_list([self, op1])
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elif self.arity == 2:
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op1 = self.add_parenthesis(args[0])
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op2 = self.add_parenthesis(args[1])
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return flatten_list([op1, self, op2])
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def add_parenthesis(self, op):
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""" Add parenthesis if necessary """
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try:
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if op.mainOp.priority < self.priority:
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op = flatten_list(["("] + [op] + [")"])
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except AttributeError:
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if type(op) == int and op < 0:
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op = ['(', op, ')']
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return flatten_list([op])
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def save_mainOp(obj, mainOp):
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"""Create a temporary class build over built-in type to stock the main operation of a calculus
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:obj: the object to add the attribute
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:mainOp: the main operator
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:returns: the same object with the main operation attribute
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"""
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class Fake(type(obj)):
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""" The fake class """
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def __new__(cls, obj):
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op = type(obj).__new__(cls, obj)
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op.mainOp = mainOp
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return op
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return Fake(obj)
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if __name__ == '__main__':
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#op = Operator("+", 2)
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#print(op.__txt__(1,2))
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#mul = Operator("*", 2)
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#add = Operator("+", 2)
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#sub1 = Operator("-", 1)
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#div = Operator("/", 1)
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#print(mul.__txt__(1,2))
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#print(add.__txt__(1,2))
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#f = save_mainOp('2 + 3',add)
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#print(mul.__txt__(f, 4))
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#f = save_mainOp('-3',sub1)
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#print(sub1.__txt__(f))
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#print(sub1.__txt__(-3))
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#f = save_mainOp('2 + 3',add)
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#print(sub1.__txt__(f))
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import doctest
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doctest.testmod()
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