py: Factor out static/class method unwrapping code; add tests.
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69
py/objtype.c
69
py/objtype.c
@ -184,7 +184,31 @@ STATIC const qstr binary_op_method_name[] = {
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[MP_BINARY_OP_EXCEPTION_MATCH] = MP_QSTR_, // not implemented, used to make sure array has full size
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};
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// Given a member that was extracted from an instance, convert it correctly
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// and put the result in the dest[] array for a possible method call.
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// Conversion means dealing with static/class methods, callables, and values.
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// see http://docs.python.org/3.3/howto/descriptor.html
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STATIC void class_convert_return_attr(mp_obj_t self, mp_obj_t member, mp_obj_t *dest) {
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if (MP_OBJ_IS_TYPE(member, &mp_type_staticmethod)) {
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// return just the function
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dest[0] = ((mp_obj_static_class_method_t*)member)->fun;
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} else if (MP_OBJ_IS_TYPE(member, &mp_type_classmethod)) {
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// return a bound method, with self being the type of this object
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dest[0] = ((mp_obj_static_class_method_t*)member)->fun;
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dest[1] = mp_obj_get_type(self);
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} else if (mp_obj_is_callable(member)) {
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// return a bound method, with self being this object
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dest[0] = member;
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dest[1] = self;
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} else {
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// class member is a value, so just return that value
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dest[0] = member;
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}
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}
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STATIC mp_obj_t class_binary_op(int op, mp_obj_t lhs_in, mp_obj_t rhs_in) {
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// Note: For ducktyping, CPython does not look in the instance members or use
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// __getattr__ or __getattribute__. It only looks in the class dictionary.
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mp_obj_class_t *lhs = lhs_in;
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qstr op_name = binary_op_method_name[op];
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if (op_name == 0) {
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@ -192,7 +216,11 @@ STATIC mp_obj_t class_binary_op(int op, mp_obj_t lhs_in, mp_obj_t rhs_in) {
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}
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mp_obj_t member = mp_obj_class_lookup(lhs->base.type, op_name);
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if (member != MP_OBJ_NULL) {
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return mp_call_function_2(member, lhs_in, rhs_in);
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mp_obj_t dest[3];
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dest[1] = MP_OBJ_NULL;
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class_convert_return_attr(lhs_in, member, dest);
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dest[2] = rhs_in;
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return mp_call_method_n_kw(1, 0, dest);
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} else {
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return MP_OBJ_NULL;
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}
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@ -209,24 +237,7 @@ STATIC void class_load_attr(mp_obj_t self_in, qstr attr, mp_obj_t *dest) {
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}
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mp_obj_t member = mp_obj_class_lookup(self->base.type, attr);
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if (member != MP_OBJ_NULL) {
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// check if the methods are functions, static or class methods
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// see http://docs.python.org/3.3/howto/descriptor.html
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// TODO check that this is the correct place to have this logic
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if (MP_OBJ_IS_TYPE(member, &mp_type_staticmethod)) {
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// return just the function
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dest[0] = ((mp_obj_static_class_method_t*)member)->fun;
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} else if (MP_OBJ_IS_TYPE(member, &mp_type_classmethod)) {
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// return a bound method, with self being the type of this object
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dest[0] = ((mp_obj_static_class_method_t*)member)->fun;
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dest[1] = mp_obj_get_type(self_in);
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} else if (mp_obj_is_callable(member)) {
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// return a bound method, with self being this object
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dest[0] = member;
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dest[1] = self_in;
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} else {
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// class member is a value, so just return that value
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dest[0] = member;
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}
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class_convert_return_attr(self_in, member, dest);
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return;
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}
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@ -432,25 +443,7 @@ STATIC void super_load_attr(mp_obj_t self_in, qstr attr, mp_obj_t *dest) {
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assert(MP_OBJ_IS_TYPE(items[i], &mp_type_type));
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mp_obj_t member = mp_obj_class_lookup((mp_obj_type_t*)items[i], attr);
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if (member != MP_OBJ_NULL) {
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// XXX this and the code in class_load_attr need to be factored out
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// check if the methods are functions, static or class methods
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// see http://docs.python.org/3.3/howto/descriptor.html
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// TODO check that this is the correct place to have this logic
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if (MP_OBJ_IS_TYPE(member, &mp_type_staticmethod)) {
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// return just the function
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dest[0] = ((mp_obj_static_class_method_t*)member)->fun;
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} else if (MP_OBJ_IS_TYPE(member, &mp_type_classmethod)) {
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// return a bound method, with self being the type of this object
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dest[0] = ((mp_obj_static_class_method_t*)member)->fun;
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dest[1] = mp_obj_get_type(self->obj);
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} if (mp_obj_is_callable(member)) {
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// return a bound method, with self being this object
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dest[0] = member;
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dest[1] = self->obj;
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} else {
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// class member is a value, so just return that value
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dest[0] = member;
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}
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class_convert_return_attr(self, member, dest);
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return;
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}
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}
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2
tests/basics/class-emptybases.py
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2
tests/basics/class-emptybases.py
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@ -0,0 +1,2 @@
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class A():
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pass
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16
tests/basics/class-getattr.py
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16
tests/basics/class-getattr.py
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@ -0,0 +1,16 @@
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# test that __getattr__, __getattrribute__ and instance members don't override builtins
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class C:
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def __init__(self):
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self.__add__ = lambda: print('member __add__')
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def __add__(self, x):
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print('__add__')
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def __getattr__(self, attr):
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print('__getattr__', attr)
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return None
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def __getattrribute__(self, attr):
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print('__getattrribute__', attr)
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return None
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c = C()
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c.__add__
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c + 1 # should call __add__
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25
tests/basics/class-staticclassmethod.py
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25
tests/basics/class-staticclassmethod.py
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@ -0,0 +1,25 @@
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# test static and class methods
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class C:
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@staticmethod
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def f(rhs):
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print('f', rhs)
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@classmethod
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def g(self, rhs):
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print('g', rhs)
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# builtin wrapped in staticmethod
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@staticmethod
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def __sub__(rhs):
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print('sub', rhs)
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# builtin wrapped in classmethod
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@classmethod
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def __add__(self, rhs):
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print('add', rhs)
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c = C()
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c.f(0)
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c.g(0)
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c - 1
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c + 2
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@ -1,8 +1,11 @@
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# test closure with default args
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def f():
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a = 1
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def bar(b = 10, c = 20):
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print(a + b + c)
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bar()
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bar(2)
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bar(2, 3)
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print(f())
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