import celery.app.task
import os
import asyncio
import inspect
import importlib
import kombu.utils.json
from typing import (
    Any,
    Optional,
    Callable,
    Iterable,
)

def shared_task(func: Optional[Callable[Any, Any]]=None, **kwargs: Any) -> Any:
    #@celery.shared_task(
    #    base=Task,
    #    **kwargs,
    #)
    #def decorator2(*args, **kwargs):
    #    res = func(*args, **kwargs)
    #
    #    if inspect.isawaitable(res):
    #        return asyncio.run(res)
    #    else:
    #        return res
    #
    #def decorator(func2: Callable[Any, Any]):
    #    nonlocal func
    #
    #    if func is None:
    #        func = func2
    #
    #    return decorator2
    #
    #if func is None:
    #    return decorator
    #else:
    #    return decorator2
    return celery.shared_task(base=Task, **kwargs)

def is_async() -> bool:
    try:
        asyncio.get_running_loop()
        return True
    except RuntimeError:
        return False

class Task(celery.app.task.Task):
    def __call__(self, *args, **kwargs) -> Any:
        res = super().__call__(*args, **kwargs)
        if inspect.isawaitable(res) and not is_async():
            return asyncio.run(res)
        else:
            return res

    #def apply(self, *args, **kwargs):
    #    return self.__call__(*args, **kwargs)

    @classmethod
    def _loads(
        cls,
        data_str: Optional[str]=None,
        data: Optional[Any]=None,
    ) -> Any:
        if not data_str is None:
            data = kombu.utils.json.loads(data_str)

        if isinstance(data, dict) and data.get('type') == 'dataclass_json':
            module_name = data['module']
            class_names = data['_class'].split('.')

            m = importlib.import_module(module_name)

            c = m
            for current_name in class_names:
                c = getattr(c, current_name)

            return c(**data['data'])
        else:
            if isinstance(data, list):
                return [
                    cls._loads(data=o)
                    for o in data
                ]
            elif isinstance(data, dict):
                return {
                        k : cls._loads(data=v)
                    for k, v in data.items()
                }
            else:
                return data

    @classmethod
    def _dumps(
        cls,
        data: Any,
        need_native: Optional[bool]=None,
    ) -> Any:
        if need_native is None:
            need_native = False

        native = None
        if hasattr(data, 'to_dict'):
            native = dict(
                type='dataclass_json',
                module=data.__class__.__module__,
                _class=data.__class__.__qualname__,
                data=data.to_dict(),
            )
        else:
            if isinstance(data, (list, tuple)):
                native = [
                    cls._dumps(o, need_native=True,)
                    for o in data
                ]
            elif isinstance(data, dict):
                native = {
                    k : cls._dumps(v, need_native=True,)
                    for k, v in data.items()
                }
            else:
                native = data

        if not need_native:
            return kombu.utils.json.dumps(native)
        else:
            return native

def kombu_register_json_dataclass():
    import kombu.serialization
    kombu.serialization.register(
        'json-dataclass',
        Task._dumps,
        Task._loads,
        content_type='application/json',
        content_encoding='utf-8',
    )

def grid_of_videos(paths: Iterable[str]) -> Any:
    from ipywidgets import Output, GridspecLayout
    from IPython import display

    grid = GridspecLayout(1, len(paths))

    for i, path in enumerate(paths):
        assert os.path.exists(path)

        out = Output()
        with out:
            display.display(display.Video(
                url='/files/%s' % path,
                #embed=True
            ))

        grid[0, i] = out

    return grid