import ctypes as ct
class Point(ct.Structure):
_fields_ = [
('x', ct.c_int),
('y', ct.c_int),
]
p1 = Point(10, 10)
p2 = Point(10, 10)
print p1 == p2 # => False
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等式运算符 ' == '在上面的琐碎情况下给出False。有没有直接的方法?
编辑:
这是一个稍微改进的版本(基于接受的答案),它也可以处理嵌套数组:
import ctypes as ct
class CtStruct(ct.Structure):
def __eq__(self, other):
for field in self._fields_:
attr_name = field[0]
a, b = getattr(self, attr_name), getattr(other, attr_name)
is_array = isinstance(a, ct.Array)
if is_array and a[:] != b[:] or not is_array and a != b:
return False
return True
def __ne__(self, other):
for field in self._fields_:
attr_name = field[0]
a, b = getattr(self, attr_name), getattr(other, attr_name)
is_array = isinstance(a, ct.Array)
if is_array and a[:] != b[:] or not is_array and a != b:
return True
return False
class Point(CtStruct):
_fields_ = [
('x', ct.c_int),
('y', ct.c_int),
('arr', ct.c_int * 2),
]
p1 = Point(10, 20, (30, 40))
p2 = Point(10, 20, (30, 40))
print p1 == p2 # True
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创建一个类 MyCtStructure,那么它的所有子类都不需要实现__eq__& __ne__。在您的情况下,定义 eq 不再是一项乏味的工作。
import ctypes as ct
class MyCtStructure(ct.Structure):
def __eq__(self, other):
for fld in self._fields_:
if getattr(self, fld[0]) != getattr(other, fld[0]):
return False
return True
def __ne__(self, other):
for fld in self._fields_:
if getattr(self, fld[0]) != getattr(other, fld[0]):
return True
return False
class Point(MyCtStructure):
_fields_ = [
('x', ct.c_int),
('y', ct.c_int),
]
p1 = Point(10, 11)
p2 = Point(10, 11)
print p1 == p2
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