Track bundled vendor runtime sources
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150
vendor/ComfyUI/comfy_api/internal/__init__.py
vendored
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150
vendor/ComfyUI/comfy_api/internal/__init__.py
vendored
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# Internal infrastructure for ComfyAPI
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from .api_registry import (
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ComfyAPIBase as ComfyAPIBase,
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ComfyAPIWithVersion as ComfyAPIWithVersion,
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register_versions as register_versions,
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get_all_versions as get_all_versions,
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)
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import asyncio
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from dataclasses import asdict
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from typing import Callable, Optional
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def first_real_override(cls: type, name: str, *, base: type=None) -> Optional[Callable]:
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"""Return the *callable* override of `name` visible on `cls`, or None if every
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implementation up to (and including) `base` is the placeholder defined on `base`.
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If base is not provided, it will assume cls has a GET_BASE_CLASS
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"""
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if base is None:
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if not hasattr(cls, "GET_BASE_CLASS"):
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raise ValueError("base is required if cls does not have a GET_BASE_CLASS; is this a valid ComfyNode subclass?")
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base = cls.GET_BASE_CLASS()
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base_attr = getattr(base, name, None)
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if base_attr is None:
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return None
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base_func = base_attr.__func__
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for c in cls.mro(): # NodeB, NodeA, ComfyNode, object …
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if c is base: # reached the placeholder – we're done
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break
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if name in c.__dict__: # first class that *defines* the attr
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func = getattr(c, name).__func__
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if func is not base_func: # real override
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return getattr(cls, name) # bound to *cls*
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return None
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class _ComfyNodeInternal:
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"""Class that all V3-based APIs inherit from for ComfyNode.
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This is intended to only be referenced within execution.py, as it has to handle all V3 APIs going forward."""
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@classmethod
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def GET_NODE_INFO_V1(cls):
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...
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class _NodeOutputInternal:
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"""Class that all V3-based APIs inherit from for NodeOutput.
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This is intended to only be referenced within execution.py, as it has to handle all V3 APIs going forward."""
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...
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def as_pruned_dict(dataclass_obj):
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'''Return dict of dataclass object with pruned None values.'''
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return prune_dict(asdict(dataclass_obj))
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def prune_dict(d: dict):
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return {k: v for k,v in d.items() if v is not None}
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def is_class(obj):
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'''
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Returns True if is a class type.
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Returns False if is a class instance.
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'''
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return isinstance(obj, type)
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def copy_class(cls: type) -> type:
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'''
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Copy a class and its attributes.
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'''
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if cls is None:
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return None
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cls_dict = {
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k: v for k, v in cls.__dict__.items()
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if k not in ('__dict__', '__weakref__', '__module__', '__doc__')
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}
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# new class
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new_cls = type(
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cls.__name__,
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(cls,),
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cls_dict
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)
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# metadata preservation
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new_cls.__module__ = cls.__module__
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new_cls.__doc__ = cls.__doc__
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return new_cls
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class classproperty(object):
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def __init__(self, f):
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self.f = f
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def __get__(self, obj, owner):
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return self.f(owner)
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# NOTE: this was ai generated and validated by hand
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def shallow_clone_class(cls, new_name=None):
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'''
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Shallow clone a class while preserving super() functionality.
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'''
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new_name = new_name or f"{cls.__name__}Clone"
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# Include the original class in the bases to maintain proper inheritance
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new_bases = (cls,) + cls.__bases__
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return type(new_name, new_bases, dict(cls.__dict__))
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# NOTE: this was ai generated and validated by hand
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def lock_class(cls):
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'''
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Lock a class so that its top-levelattributes cannot be modified.
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'''
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# Locked instance __setattr__
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def locked_instance_setattr(self, name, value):
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raise AttributeError(
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f"Cannot set attribute '{name}' on immutable instance of {type(self).__name__}"
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)
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# Locked metaclass
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class LockedMeta(type(cls)):
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def __setattr__(cls_, name, value):
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raise AttributeError(
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f"Cannot modify class attribute '{name}' on locked class '{cls_.__name__}'"
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)
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# Rebuild class with locked behavior
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locked_dict = dict(cls.__dict__)
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locked_dict['__setattr__'] = locked_instance_setattr
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return LockedMeta(cls.__name__, cls.__bases__, locked_dict)
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def make_locked_method_func(type_obj, func, class_clone):
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"""
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Returns a function that, when called with **inputs, will execute:
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getattr(type_obj, func).__func__(lock_class(class_clone), **inputs)
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Supports both synchronous and asynchronous methods.
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"""
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locked_class = lock_class(class_clone)
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method = getattr(type_obj, func).__func__
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# Check if the original method is async
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if asyncio.iscoroutinefunction(method):
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async def wrapped_async_func(**inputs):
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return await method(locked_class, **inputs)
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return wrapped_async_func
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else:
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def wrapped_func(**inputs):
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return method(locked_class, **inputs)
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return wrapped_func
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39
vendor/ComfyUI/comfy_api/internal/api_registry.py
vendored
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39
vendor/ComfyUI/comfy_api/internal/api_registry.py
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@@ -0,0 +1,39 @@
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from typing import NamedTuple
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from comfy_api.internal.singleton import ProxiedSingleton
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from packaging import version as packaging_version
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class ComfyAPIBase(ProxiedSingleton):
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def __init__(self):
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pass
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class ComfyAPIWithVersion(NamedTuple):
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version: str
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api_class: type[ComfyAPIBase]
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def parse_version(version_str: str) -> packaging_version.Version:
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"""
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Parses a version string into a packaging_version.Version object.
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Raises ValueError if the version string is invalid.
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"""
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if version_str == "latest":
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return packaging_version.parse("9999999.9999999.9999999")
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return packaging_version.parse(version_str)
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registered_versions: list[ComfyAPIWithVersion] = []
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def register_versions(versions: list[ComfyAPIWithVersion]):
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versions.sort(key=lambda x: parse_version(x.version))
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global registered_versions
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registered_versions = versions
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def get_all_versions() -> list[ComfyAPIWithVersion]:
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"""
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Returns a list of all registered ComfyAPI versions.
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"""
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return registered_versions
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1002
vendor/ComfyUI/comfy_api/internal/async_to_sync.py
vendored
Normal file
1002
vendor/ComfyUI/comfy_api/internal/async_to_sync.py
vendored
Normal file
File diff suppressed because it is too large
Load Diff
33
vendor/ComfyUI/comfy_api/internal/singleton.py
vendored
Normal file
33
vendor/ComfyUI/comfy_api/internal/singleton.py
vendored
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@@ -0,0 +1,33 @@
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from typing import TypeVar
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class SingletonMetaclass(type):
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T = TypeVar("T", bound="SingletonMetaclass")
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_instances = {}
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def __call__(cls, *args, **kwargs):
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if cls not in cls._instances:
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cls._instances[cls] = super(SingletonMetaclass, cls).__call__(
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*args, **kwargs
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)
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return cls._instances[cls]
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def inject_instance(cls: type[T], instance: T) -> None:
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assert cls not in SingletonMetaclass._instances, (
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"Cannot inject instance after first instantiation"
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)
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SingletonMetaclass._instances[cls] = instance
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def get_instance(cls: type[T], *args, **kwargs) -> T:
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"""
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Gets the singleton instance of the class, creating it if it doesn't exist.
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"""
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if cls not in SingletonMetaclass._instances:
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SingletonMetaclass._instances[cls] = super(
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SingletonMetaclass, cls
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).__call__(*args, **kwargs)
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return cls._instances[cls]
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class ProxiedSingleton(object, metaclass=SingletonMetaclass):
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def __init__(self):
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super().__init__()
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