mirror of
https://github.com/esphome/esphome.git
synced 2024-11-26 17:05:21 +01:00
540 lines
17 KiB
Python
540 lines
17 KiB
Python
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from collections import OrderedDict
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from esphomeyaml.core import CORE, HexInt, Lambda, TimePeriod, TimePeriodMicroseconds, \
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TimePeriodMilliseconds, TimePeriodSeconds
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from esphomeyaml.helpers import cpp_string_escape, indent_all_but_first_and_last
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# pylint: disable=unused-import, wrong-import-order
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from typing import Any, Generator, List, Optional, Tuple, Union # noqa
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from esphomeyaml.core import ID # noqa
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class Expression(object):
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def __init__(self):
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self.requires = []
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self.required = False
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def __str__(self):
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raise NotImplementedError
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def require(self):
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self.required = True
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for require in self.requires:
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if require.required:
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continue
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require.require()
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def has_side_effects(self):
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return self.required
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SafeExpType = Union[Expression, bool, str, unicode, int, long, float, TimePeriod]
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class RawExpression(Expression):
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def __init__(self, text): # type: (Union[str, unicode]) -> None
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super(RawExpression, self).__init__()
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self.text = text
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def __str__(self):
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return str(self.text)
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# pylint: disable=redefined-builtin
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class AssignmentExpression(Expression):
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def __init__(self, type, modifier, name, rhs, obj):
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super(AssignmentExpression, self).__init__()
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self.type = type
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self.modifier = modifier
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self.name = name
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self.rhs = safe_exp(rhs)
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self.requires.append(self.rhs)
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self.obj = obj
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def __str__(self):
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type_ = self.type
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return u"{} {}{} = {}".format(type_, self.modifier, self.name, self.rhs)
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def has_side_effects(self):
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return self.rhs.has_side_effects()
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class ExpressionList(Expression):
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def __init__(self, *args):
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super(ExpressionList, self).__init__()
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# Remove every None on end
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args = list(args)
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while args and args[-1] is None:
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args.pop()
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self.args = []
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for arg in args:
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exp = safe_exp(arg)
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self.requires.append(exp)
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self.args.append(exp)
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def __str__(self):
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text = u", ".join(unicode(x) for x in self.args)
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return indent_all_but_first_and_last(text)
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class TemplateArguments(Expression):
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def __init__(self, *args): # type: (*SafeExpType) -> None
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super(TemplateArguments, self).__init__()
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self.args = ExpressionList(*args)
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self.requires.append(self.args)
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def __str__(self):
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return u'<{}>'.format(self.args)
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class CallExpression(Expression):
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def __init__(self, base, *args): # type: (Expression, *SafeExpType) -> None
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super(CallExpression, self).__init__()
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self.base = base
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if args and isinstance(args[0], TemplateArguments):
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self.template_args = args[0]
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self.requires.append(self.template_args)
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args = args[1:]
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else:
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self.template_args = None
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self.args = ExpressionList(*args)
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self.requires.append(self.args)
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def __str__(self):
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if self.template_args is not None:
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return u'{}{}({})'.format(self.base, self.template_args, self.args)
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return u'{}({})'.format(self.base, self.args)
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class StructInitializer(Expression):
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def __init__(self, base, *args): # type: (Expression, *Tuple[str, SafeExpType]) -> None
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super(StructInitializer, self).__init__()
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self.base = base
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if isinstance(base, Expression):
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self.requires.append(base)
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if not isinstance(args, OrderedDict):
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args = OrderedDict(args)
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self.args = OrderedDict()
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for key, value in args.iteritems():
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if value is None:
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continue
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exp = safe_exp(value)
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self.args[key] = exp
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self.requires.append(exp)
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def __str__(self):
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cpp = u'{}{{\n'.format(self.base)
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for key, value in self.args.iteritems():
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cpp += u' .{} = {},\n'.format(key, value)
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cpp += u'}'
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return cpp
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class ArrayInitializer(Expression):
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def __init__(self, *args, **kwargs): # type: (*Any, **Any) -> None
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super(ArrayInitializer, self).__init__()
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self.multiline = kwargs.get('multiline', True)
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self.args = []
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for arg in args:
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if arg is None:
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continue
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exp = safe_exp(arg)
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self.args.append(exp)
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self.requires.append(exp)
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def __str__(self):
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if not self.args:
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return u'{}'
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if self.multiline:
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cpp = u'{\n'
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for arg in self.args:
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cpp += u' {},\n'.format(arg)
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cpp += u'}'
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else:
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cpp = u'{' + u', '.join(str(arg) for arg in self.args) + u'}'
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return cpp
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class ParameterExpression(Expression):
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def __init__(self, type, id):
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super(ParameterExpression, self).__init__()
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self.type = type
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self.id = id
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def __str__(self):
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return u"{} {}".format(self.type, self.id)
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class ParameterListExpression(Expression):
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def __init__(self, *parameters):
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super(ParameterListExpression, self).__init__()
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self.parameters = []
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for parameter in parameters:
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if not isinstance(parameter, ParameterExpression):
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parameter = ParameterExpression(*parameter)
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self.parameters.append(parameter)
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self.requires.append(parameter)
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def __str__(self):
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return u", ".join(unicode(x) for x in self.parameters)
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class LambdaExpression(Expression):
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def __init__(self, parts, parameters, capture='=', return_type=None):
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super(LambdaExpression, self).__init__()
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self.parts = parts
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if not isinstance(parameters, ParameterListExpression):
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parameters = ParameterListExpression(*parameters)
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self.parameters = parameters
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self.requires.append(self.parameters)
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self.capture = capture
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self.return_type = return_type
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if return_type is not None:
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self.requires.append(return_type)
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for i in range(1, len(parts), 3):
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self.requires.append(parts[i])
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def __str__(self):
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cpp = u'[{}]({})'.format(self.capture, self.parameters)
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if self.return_type is not None:
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cpp += u' -> {}'.format(self.return_type)
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cpp += u' {{\n{}\n}}'.format(self.content)
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return indent_all_but_first_and_last(cpp)
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@property
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def content(self):
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return u''.join(unicode(part) for part in self.parts)
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class Literal(Expression):
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def __str__(self):
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raise NotImplementedError
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class StringLiteral(Literal):
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def __init__(self, string): # type: (Union[str, unicode]) -> None
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super(StringLiteral, self).__init__()
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self.string = string
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def __str__(self):
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return u'{}'.format(cpp_string_escape(self.string))
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class IntLiteral(Literal):
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def __init__(self, i): # type: (Union[int, long]) -> None
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super(IntLiteral, self).__init__()
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self.i = i
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def __str__(self):
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if self.i > 4294967295:
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return u'{}ULL'.format(self.i)
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if self.i > 2147483647:
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return u'{}UL'.format(self.i)
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if self.i < -2147483648:
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return u'{}LL'.format(self.i)
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return unicode(self.i)
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class BoolLiteral(Literal):
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def __init__(self, binary): # type: (bool) -> None
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super(BoolLiteral, self).__init__()
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self.binary = binary
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def __str__(self):
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return u"true" if self.binary else u"false"
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class HexIntLiteral(Literal):
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def __init__(self, i): # type: (int) -> None
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super(HexIntLiteral, self).__init__()
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self.i = HexInt(i)
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def __str__(self):
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return str(self.i)
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class FloatLiteral(Literal):
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def __init__(self, value): # type: (float) -> None
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super(FloatLiteral, self).__init__()
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self.float_ = value
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def __str__(self):
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return u"{:f}f".format(self.float_)
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# pylint: disable=bad-continuation
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def safe_exp(obj # type: Union[Expression, bool, str, unicode, int, long, float, TimePeriod]
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):
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# type: (...) -> Expression
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if isinstance(obj, Expression):
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return obj
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elif isinstance(obj, bool):
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return BoolLiteral(obj)
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elif isinstance(obj, (str, unicode)):
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return StringLiteral(obj)
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elif isinstance(obj, HexInt):
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return HexIntLiteral(obj)
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elif isinstance(obj, (int, long)):
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return IntLiteral(obj)
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elif isinstance(obj, float):
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return FloatLiteral(obj)
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elif isinstance(obj, TimePeriodMicroseconds):
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return IntLiteral(int(obj.total_microseconds))
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elif isinstance(obj, TimePeriodMilliseconds):
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return IntLiteral(int(obj.total_milliseconds))
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elif isinstance(obj, TimePeriodSeconds):
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return IntLiteral(int(obj.total_seconds))
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raise ValueError(u"Object is not an expression", obj)
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class Statement(object):
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def __init__(self):
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pass
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def __str__(self):
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raise NotImplementedError
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class RawStatement(Statement):
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def __init__(self, text):
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super(RawStatement, self).__init__()
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self.text = text
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def __str__(self):
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return self.text
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class ExpressionStatement(Statement):
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def __init__(self, expression):
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super(ExpressionStatement, self).__init__()
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self.expression = safe_exp(expression)
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def __str__(self):
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return u"{};".format(self.expression)
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def statement(expression): # type: (Union[Expression, Statement]) -> Statement
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if isinstance(expression, Statement):
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return expression
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return ExpressionStatement(expression)
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def variable(id, # type: ID
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rhs, # type: Expression
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type=None # type: MockObj
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):
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# type: (...) -> MockObj
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rhs = safe_exp(rhs)
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obj = MockObj(id, u'.')
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id.type = type or id.type
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assignment = AssignmentExpression(id.type, '', id, rhs, obj)
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CORE.add(assignment)
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CORE.register_variable(id, obj)
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obj.requires.append(assignment)
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return obj
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def Pvariable(id, # type: ID
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rhs, # type: Expression
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has_side_effects=True, # type: bool
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type=None # type: MockObj
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):
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# type: (...) -> MockObj
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rhs = safe_exp(rhs)
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if not has_side_effects and hasattr(rhs, '_has_side_effects'):
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# pylint: disable=attribute-defined-outside-init, protected-access
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rhs._has_side_effects = False
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obj = MockObj(id, u'->', has_side_effects=has_side_effects)
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id.type = type or id.type
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assignment = AssignmentExpression(id.type, '*', id, rhs, obj)
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CORE.add(assignment)
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CORE.register_variable(id, obj)
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obj.requires.append(assignment)
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return obj
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def add(expression, # type: Union[Expression, Statement]
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require=True # type: bool
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):
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# type: (...) -> None
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CORE.add(expression, require=require)
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def get_variable(id): # type: (ID) -> Generator[MockObj]
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for var in CORE.get_variable(id):
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yield None
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yield var
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def process_lambda(value, # type: Lambda
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parameters, # type: List[Tuple[Expression, str]]
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capture='=', # type: str
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return_type=None # type: Optional[Expression]
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):
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# type: (...) -> Generator[LambdaExpression]
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from esphomeyaml.components.globals import GlobalVariableComponent
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if value is None:
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yield
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return
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parts = value.parts[:]
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for i, id in enumerate(value.requires_ids):
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for full_id, var in CORE.get_variable_with_full_id(id):
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yield
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if full_id is not None and isinstance(full_id.type, MockObjClass) and \
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full_id.type.inherits_from(GlobalVariableComponent):
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parts[i * 3 + 1] = var.value()
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continue
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if parts[i * 3 + 2] == '.':
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parts[i * 3 + 1] = var._
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else:
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parts[i * 3 + 1] = var
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parts[i * 3 + 2] = ''
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yield LambdaExpression(parts, parameters, capture, return_type)
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def templatable(value, # type: Any
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input_type, # type: Expression
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output_type # type: Optional[Expression]
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):
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if isinstance(value, Lambda):
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lambda_ = None
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for lambda_ in process_lambda(value, [(input_type, 'x')], return_type=output_type):
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yield None
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yield lambda_
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else:
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yield value
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class MockObj(Expression):
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def __init__(self, base, op=u'.', has_side_effects=True):
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self.base = base
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self.op = op
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self._has_side_effects = has_side_effects
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super(MockObj, self).__init__()
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def __getattr__(self, attr): # type: (str) -> MockObj
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if attr == u'_':
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obj = MockObj(u'{}{}'.format(self.base, self.op))
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obj.requires.append(self)
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return obj
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if attr == u'new':
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obj = MockObj(u'new {}'.format(self.base), u'->')
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obj.requires.append(self)
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return obj
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next_op = u'.'
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if attr.startswith(u'P') and self.op not in ['::', '']:
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attr = attr[1:]
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next_op = u'->'
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if attr.startswith(u'_'):
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attr = attr[1:]
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obj = MockObj(u'{}{}{}'.format(self.base, self.op, attr), next_op)
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obj.requires.append(self)
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return obj
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def __call__(self, *args, **kwargs): # type: (*Any, **Any) -> MockObj
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call = CallExpression(self.base, *args)
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obj = MockObj(call, self.op)
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obj.requires.append(self)
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obj.requires.append(call)
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return obj
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def __str__(self): # type: () -> unicode
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return unicode(self.base)
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def require(self): # type: () -> None
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self.required = True
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for require in self.requires:
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if require.required:
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continue
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require.require()
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def template(self, args): # type: (Union[TemplateArguments, Expression]) -> MockObj
|
||
|
if not isinstance(args, TemplateArguments):
|
||
|
args = TemplateArguments(args)
|
||
|
obj = MockObj(u'{}{}'.format(self.base, args))
|
||
|
obj.requires.append(self)
|
||
|
obj.requires.append(args)
|
||
|
return obj
|
||
|
|
||
|
def namespace(self, name): # type: (str) -> MockObj
|
||
|
obj = MockObj(u'{}{}{}'.format(self.base, self.op, name), u'::')
|
||
|
obj.requires.append(self)
|
||
|
return obj
|
||
|
|
||
|
def class_(self, name, *parents): # type: (str, *MockObjClass) -> MockObjClass
|
||
|
op = '' if self.op == '' else '::'
|
||
|
obj = MockObjClass(u'{}{}{}'.format(self.base, op, name), u'.', parents=parents)
|
||
|
obj.requires.append(self)
|
||
|
return obj
|
||
|
|
||
|
def struct(self, name): # type: (str) -> MockObjClass
|
||
|
return self.class_(name)
|
||
|
|
||
|
def enum(self, name, is_class=False): # type: (str, bool) -> MockObj
|
||
|
if is_class:
|
||
|
return self.namespace(name)
|
||
|
|
||
|
return self
|
||
|
|
||
|
def operator(self, name): # type: (str) -> MockObj
|
||
|
if name == 'ref':
|
||
|
obj = MockObj(u'{} &'.format(self.base), u'')
|
||
|
obj.requires.append(self)
|
||
|
return obj
|
||
|
if name == 'ptr':
|
||
|
obj = MockObj(u'{} *'.format(self.base), u'')
|
||
|
obj.requires.append(self)
|
||
|
return obj
|
||
|
if name == "const":
|
||
|
obj = MockObj(u'const {}'.format(self.base), u'')
|
||
|
obj.requires.append(self)
|
||
|
return obj
|
||
|
raise NotImplementedError
|
||
|
|
||
|
def has_side_effects(self): # type: () -> bool
|
||
|
return self._has_side_effects
|
||
|
|
||
|
def __getitem__(self, item): # type: (Union[str, Expression]) -> MockObj
|
||
|
next_op = u'.'
|
||
|
if isinstance(item, str) and item.startswith(u'P'):
|
||
|
item = item[1:]
|
||
|
next_op = u'->'
|
||
|
obj = MockObj(u'{}[{}]'.format(self.base, item), next_op)
|
||
|
obj.requires.append(self)
|
||
|
if isinstance(item, Expression):
|
||
|
obj.requires.append(item)
|
||
|
return obj
|
||
|
|
||
|
|
||
|
class MockObjClass(MockObj):
|
||
|
def __init__(self, *args, **kwargs):
|
||
|
parens = kwargs.pop('parents')
|
||
|
MockObj.__init__(self, *args, **kwargs)
|
||
|
self._parents = []
|
||
|
for paren in parens:
|
||
|
if not isinstance(paren, MockObjClass):
|
||
|
raise ValueError
|
||
|
self._parents.append(paren)
|
||
|
# pylint: disable=protected-access
|
||
|
self._parents += paren._parents
|
||
|
|
||
|
def inherits_from(self, other): # type: (MockObjClass) -> bool
|
||
|
if self == other:
|
||
|
return True
|
||
|
for parent in self._parents:
|
||
|
if parent == other:
|
||
|
return True
|
||
|
return False
|
||
|
|
||
|
def template(self, args): # type: (Union[TemplateArguments, Expression]) -> MockObjClass
|
||
|
if not isinstance(args, TemplateArguments):
|
||
|
args = TemplateArguments(args)
|
||
|
new_parents = self._parents[:]
|
||
|
new_parents.append(self)
|
||
|
obj = MockObjClass(u'{}{}'.format(self.base, args), parents=new_parents)
|
||
|
obj.requires.append(self)
|
||
|
obj.requires.append(args)
|
||
|
return obj
|