Decorator for computing special cases
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@ -10,13 +10,14 @@
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Adding MO
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Adding MO
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"""
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"""
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from functools import wraps
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from multipledispatch import Dispatcher
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from multipledispatch import Dispatcher
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from ..tree import Tree
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from ..tree import Tree
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from ..MO.mo import MO, MOnumber
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from ..MO.mo import MO, MOnumber
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from ..MO.fraction import MOFraction
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from ..MO.fraction import MOFraction
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from .exceptions import AddError
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from .exceptions import AddError
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from .arithmetic import lcm
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from .arithmetic import lcm
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from .type_filter import args_are
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from .filters import special_case
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add_doc = """ Adding MOs
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add_doc = """ Adding MOs
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@ -25,9 +26,36 @@ add_doc = """ Adding MOs
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:return: Tree or MO
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:return: Tree or MO
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"""
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"""
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add = Dispatcher("add", doc=add_doc)
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add = Dispatcher("add", doc=add_doc)
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def add_filter(left, right):
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""" Automatic add on MO
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:param left: MO
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:param right: MO
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:returns: MO if it is a special case, nothing other wise
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>>> a = MOnumber(0)
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>>> b = MOFraction(1, 2)
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>>> add(a, b)
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<MOFraction 1 / 2>
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>>> add(b, a)
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<MOFraction 1 / 2>
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"""
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try:
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if left == 0:
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return right
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except TypeError:
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pass
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try:
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if right == 0:
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return left
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except TypeError:
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pass
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@add.register(MOnumber, MOnumber)
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@add.register(MOnumber, MOnumber)
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@special_case(add_filter)
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def monumber_monumber(left, right):
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def monumber_monumber(left, right):
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""" Simply add MO value
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""" Simply add MO value
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@ -40,6 +68,7 @@ def monumber_monumber(left, right):
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return MO.factory(left.value + right.value)
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return MO.factory(left.value + right.value)
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@add.register(MOnumber, MOFraction)
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@add.register(MOnumber, MOFraction)
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@special_case(add_filter)
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def monumber_mofraction(left, right):
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def monumber_mofraction(left, right):
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""" Return a tree with the MOnumber transformed into a MOFraction
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""" Return a tree with the MOnumber transformed into a MOFraction
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@ -58,6 +87,7 @@ def monumber_mofraction(left, right):
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return Tree("+", left_fraction, right)
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return Tree("+", left_fraction, right)
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@add.register(MOFraction, MOnumber)
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@add.register(MOFraction, MOnumber)
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@special_case(add_filter)
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def mofraction_monumber(left, right):
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def mofraction_monumber(left, right):
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""" Return a tree with the MOnumber transformed into a MOFraction
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""" Return a tree with the MOnumber transformed into a MOFraction
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@ -76,6 +106,7 @@ def mofraction_monumber(left, right):
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return Tree("+", left, right_fraction)
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return Tree("+", left, right_fraction)
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@add.register(MOFraction, MOFraction)
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@add.register(MOFraction, MOFraction)
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@special_case(add_filter)
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def mofraction_mofraction(left, right):
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def mofraction_mofraction(left, right):
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""" 3 differents cases:
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""" 3 differents cases:
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@ -15,7 +15,7 @@ from ..tree import Tree
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from ..MO.mo import MO, MOnumber
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from ..MO.mo import MO, MOnumber
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from ..MO.fraction import MOFraction
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from ..MO.fraction import MOFraction
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from .exceptions import DivideError
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from .exceptions import DivideError
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from .type_filter import args_are
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from .filters import special_case
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divide_doc = """ Dividing MOs
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divide_doc = """ Dividing MOs
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@ -27,7 +27,42 @@ divide_doc = """ Dividing MOs
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divide = Dispatcher("divide", doc=divide_doc)
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divide = Dispatcher("divide", doc=divide_doc)
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def divide_filter(left, right):
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""" Automatic divide on MO
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>>> a = MOnumber(4)
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>>> b = MOnumber(1)
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>>> divide(a, b)
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<MOnumber 4>
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>>> a = MOnumber(0)
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>>> b = MOnumber(1)
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>>> divide(a, b)
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<MOnumber 0>
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>>> a = MOnumber(4)
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>>> b = MOnumber(0)
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>>> divide(a, b)
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Traceback (most recent call last):
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...
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mapytex.calculus.core.compute.exceptions.DivideError: Division by zero
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"""
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try:
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if left == 0:
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return left
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except TypeError:
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pass
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try:
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if right == 1:
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return left
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except TypeError:
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pass
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try:
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if right == 0:
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raise DivideError("Division by zero")
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except TypeError:
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pass
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@divide.register(MOnumber, MOnumber)
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@divide.register(MOnumber, MOnumber)
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@special_case(divide_filter)
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def monumber_monumber(left, right):
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def monumber_monumber(left, right):
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""" Divide 2 monumbers and return a MOFraction
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""" Divide 2 monumbers and return a MOFraction
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@ -39,6 +74,7 @@ def monumber_monumber(left, right):
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return MOFraction(left, right)
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return MOFraction(left, right)
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@divide.register(MOnumber, MOFraction)
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@divide.register(MOnumber, MOFraction)
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@special_case(divide_filter)
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def monumber_mofraction(left, right):
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def monumber_mofraction(left, right):
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""" Divide a monumber and a mofraction by inverting MOFraction
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""" Divide a monumber and a mofraction by inverting MOFraction
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@ -63,6 +99,7 @@ def monumber_mofraction(left, right):
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return Tree("*", left, right.inverse())
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return Tree("*", left, right.inverse())
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@divide.register(MOFraction, MOnumber)
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@divide.register(MOFraction, MOnumber)
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@special_case(divide_filter)
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def mofraction_monumber(left, right):
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def mofraction_monumber(left, right):
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""" Divide a monumber and a mofraction by inverting MOnumber
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""" Divide a monumber and a mofraction by inverting MOnumber
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@ -82,6 +119,7 @@ def mofraction_monumber(left, right):
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return Tree("*", left, right_fraction)
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return Tree("*", left, right_fraction)
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@divide.register(MOFraction, MOFraction)
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@divide.register(MOFraction, MOFraction)
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@special_case(divide_filter)
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def mofraction_mofraction(left, right):
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def mofraction_mofraction(left, right):
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""" Divide two mofractions by inverting right MOFraction
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""" Divide two mofractions by inverting right MOFraction
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@ -99,37 +137,6 @@ def mofraction_mofraction(left, right):
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"""
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"""
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return Tree("*", left, right.inverse())
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return Tree("*", left, right.inverse())
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#def divide(left, right):
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# """ Perform the addition of left and right
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#
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# :param left: left MO
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# :param right: right MO
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# :returns: Tree or MO
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#
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# >>> a = MOnumber(4)
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# >>> b = MOnumber(6)
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# >>> divide(a, b)
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# <MOFraction 4 / 6>
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# >>> b = MOnumber(0)
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# >>> divide(a, b)
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# Traceback (most recent call last):
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# ...
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# mapytex.calculus.core.compute.exceptions.DivideError: Division by zero
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#
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# """
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# try:
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# right.value
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# except AttributeError:
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# pass
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# else:
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# if right.value == 0:
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# raise DivideError("Division by zero")
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#
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# if right.value == 1:
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# return left
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#
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# return MULFUNCTIONS[(type(left), type(right))](left, right)
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# -----------------------------
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# -----------------------------
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# Reglages pour 'vim'
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# Reglages pour 'vim'
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# vim:set autoindent expandtab tabstop=4 shiftwidth=4:
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# vim:set autoindent expandtab tabstop=4 shiftwidth=4:
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@ -36,7 +36,22 @@ def args_are(left_type, right_type):
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return filtered_func
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return filtered_func
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return type_filter
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return type_filter
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def special_case(filter):
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""" Decorate operation to filter special cases before call the function
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:param filter: (MO, MO) -> MO or Tree
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:returns: decorator
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"""
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def decorator(func):
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@wraps(func)
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def _func(left, right):
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ans = filter(left, right)
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if ans is None:
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return func(left, right)
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return ans
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return _func
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return decorator
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# -----------------------------
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# -----------------------------
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# Reglages pour 'vim'
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# Reglages pour 'vim'
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@ -16,7 +16,7 @@ from ..MO.mo import MO, MOnumber, MOstr
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from ..MO.fraction import MOFraction
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from ..MO.fraction import MOFraction
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from ..MO.monomial import MOMonomial
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from ..MO.monomial import MOMonomial
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from .exceptions import MultiplyError
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from .exceptions import MultiplyError
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from .type_filter import args_are
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from .filters import special_case
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multiply_doc = """ Multiply MOs
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multiply_doc = """ Multiply MOs
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@ -28,7 +28,48 @@ multiply_doc = """ Multiply MOs
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multiply = Dispatcher("multiply", doc=multiply_doc)
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multiply = Dispatcher("multiply", doc=multiply_doc)
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def multiply_filter(left, right):
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""" Automatic multiply on MO
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:param left: MO
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:param right: MO
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:returns: MO if it is a special case, nothing other wise
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>>> a = MOnumber(1)
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>>> b = MOFraction(1, 2)
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>>> multiply(a, b)
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<MOFraction 1 / 2>
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>>> multiply(b, a)
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<MOFraction 1 / 2>
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>>> a = MOnumber(0)
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>>> b = MOFraction(1, 2)
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>>> multiply(a, b)
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<MOnumber 0>
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"""
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try:
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if left == 0:
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return left
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except TypeError:
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pass
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try:
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if right == 0:
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return right
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except TypeError:
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pass
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try:
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if left == 1:
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return right
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except TypeError:
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pass
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try:
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if right == 1:
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return left
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except TypeError:
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pass
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@multiply.register(MOnumber, MOnumber)
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@multiply.register(MOnumber, MOnumber)
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@special_case(multiply_filter)
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def monumber_monumber(left, right):
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def monumber_monumber(left, right):
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""" Simply multiply values
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""" Simply multiply values
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@ -41,6 +82,7 @@ def monumber_monumber(left, right):
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return MO.factory(left.value * right.value)
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return MO.factory(left.value * right.value)
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@multiply.register(MOnumber, MOFraction)
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@multiply.register(MOnumber, MOFraction)
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@special_case(multiply_filter)
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def monumber_mofraction(left, right):
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def monumber_mofraction(left, right):
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""" Return division Tree with on the numertor MOnumber times numerator of MOFraction
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""" Return division Tree with on the numertor MOnumber times numerator of MOFraction
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@ -67,6 +109,7 @@ def monumber_mofraction(left, right):
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return Tree("/", num, right._denominator)
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return Tree("/", num, right._denominator)
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@multiply.register(MOFraction, MOnumber)
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@multiply.register(MOFraction, MOnumber)
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@special_case(multiply_filter)
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def mofraction_monumber(left, right):
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def mofraction_monumber(left, right):
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""" Return division Tree with on the numertor MOnumber times numerator of MOFraction
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""" Return division Tree with on the numertor MOnumber times numerator of MOFraction
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@ -83,6 +126,7 @@ def mofraction_monumber(left, right):
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return Tree("/", num, left._denominator)
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return Tree("/", num, left._denominator)
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@multiply.register(MOFraction, MOFraction)
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@multiply.register(MOFraction, MOFraction)
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@special_case(multiply_filter)
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def mofraction_mofraction(left, right):
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def mofraction_mofraction(left, right):
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""" Multiply two mofractions (numertors together and denominators together)
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""" Multiply two mofractions (numertors together and denominators together)
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return Tree("/", num, denom)
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return Tree("/", num, denom)
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@multiply.register((MOnumber, MOFraction), MOstr)
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@multiply.register((MOnumber, MOFraction), MOstr)
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@special_case(multiply_filter)
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def moscalar_mostr(left, right):
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def moscalar_mostr(left, right):
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""" Multiply a scalar with a letter to create a MOMonomial
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""" Multiply a scalar with a letter to create a MOMonomial
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return MOMonomial(left, right)
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return MOMonomial(left, right)
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@multiply.register(MOstr, (MOnumber, MOFraction))
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@multiply.register(MOstr, (MOnumber, MOFraction))
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@special_case(multiply_filter)
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def mostr_moscalar(left, right):
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def mostr_moscalar(left, right):
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""" Multiply a scalar with a letter to create a MOMonomial
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""" Multiply a scalar with a letter to create a MOMonomial
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@ -130,6 +176,7 @@ def mostr_moscalar(left, right):
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return MOMonomial(right, left)
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return MOMonomial(right, left)
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@multiply.register((MOnumber, MOFraction), MOMonomial)
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@multiply.register((MOnumber, MOFraction), MOMonomial)
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@special_case(multiply_filter)
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def moscalar_monomonial(left, right):
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def moscalar_monomonial(left, right):
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""" Multiply a scalar with a monomial
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""" Multiply a scalar with a monomial
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