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https://github.com/saymrwulf/stable-baselines3.git
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Add docstrings and missing types
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271a0a7818
commit
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4 changed files with 58 additions and 29 deletions
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@ -1,10 +1,13 @@
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from typing import List
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from typing import List, Union
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import numpy as np
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from gym import Env
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from gym.spaces import Discrete, MultiDiscrete, MultiBinary, Box
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from torchy_baselines.common.type_aliases import GymStepReturn, GymObs
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class IdentityEnv(Env):
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def __init__(self, dim, ep_length=100):
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"""
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@ -20,30 +23,32 @@ class IdentityEnv(Env):
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self.dim = dim
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self.reset()
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def reset(self):
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def reset(self) -> GymObs:
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self.current_step = 0
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self._choose_next_state()
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return self.state
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def step(self, action):
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def step(self, action: Union[int, np.ndarray]) -> GymStepReturn:
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reward = self._get_reward(action)
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self._choose_next_state()
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self.current_step += 1
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done = self.current_step >= self.ep_length
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return self.state, reward, done, {}
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def _choose_next_state(self):
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def _choose_next_state(self) -> None:
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self.state = self.action_space.sample()
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def _get_reward(self, action):
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return 1 if np.all(self.state == action) else 0
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def _get_reward(self, action: Union[int, np.ndarray]) -> float:
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return 1.0 if np.all(self.state == action) else 0.0
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def render(self, mode='human'):
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def render(self, mode: str = 'human') -> None:
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pass
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class IdentityEnvBox(IdentityEnv):
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def __init__(self, low=-1, high=1, eps=0.05, ep_length=100):
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def __init__(self, low: float = -1.0,
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high: float = 1.0, eps: float = 0.05,
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ep_length: int = 100):
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"""
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Identity environment for testing purposes
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@ -58,27 +63,27 @@ class IdentityEnvBox(IdentityEnv):
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self.eps = eps
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self.reset()
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def reset(self):
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def reset(self) -> np.ndarray:
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self.current_step = 0
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self._choose_next_state()
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return self.state
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def step(self, action):
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def step(self, action: np.ndarray) -> GymStepReturn:
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reward = self._get_reward(action)
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self._choose_next_state()
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self.current_step += 1
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done = self.current_step >= self.ep_length
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return self.state, reward, done, {}
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def _choose_next_state(self):
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def _choose_next_state(self) -> None:
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self.state = self.observation_space.sample()
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def _get_reward(self, action):
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return 1 if (self.state - self.eps) <= action <= (self.state + self.eps) else 0
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def _get_reward(self, action: np.ndarray) -> float:
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return 1.0 if (self.state - self.eps) <= action <= (self.state + self.eps) else 0.0
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class IdentityEnvMultiDiscrete(IdentityEnv):
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def __init__(self, dim, ep_length=100):
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def __init__(self, dim: int, ep_length: int = 100):
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"""
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Identity environment for testing purposes
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@ -92,7 +97,7 @@ class IdentityEnvMultiDiscrete(IdentityEnv):
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class IdentityEnvMultiBinary(IdentityEnv):
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def __init__(self, dim, ep_length=100):
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def __init__(self, dim: int, ep_length: int = 100):
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"""
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Identity environment for testing purposes
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@ -105,35 +110,39 @@ class IdentityEnvMultiBinary(IdentityEnv):
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self.reset()
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class FakeImageEnv(Env):
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"""
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Fake image environment for testing purposes, it mimics Atari games.
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:param action_dim: (int) Number of discrete actions
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:param screen_height: (int) Height of the image
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:param screen_width: (int) Width of the image
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:param n_channels: (int) Number of color channels
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:param discrete: (bool)
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"""
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def __init__(self, action_dim: int = 6,
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screen_height: int = 210,
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screen_width: int = 160,
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n_channels: int = 3,
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discrete: bool = True):
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"""
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Fake atari environment for testing purposes.
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"""
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self.observation_space = Box(low=0, high=255, shape=(screen_height, screen_width, n_channels), dtype=np.uint8)
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self.observation_space = Box(low=0, high=255, shape=(screen_height, screen_width,
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n_channels), dtype=np.uint8)
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if discrete:
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self.action_space = Discrete(action_dim)
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else:
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self.action_space = Box(low=-1, high=1, shape=(5,), dtype=np.float32)
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self.ep_length = 10
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def reset(self):
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def reset(self) -> np.ndarray:
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self.current_step = 0
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return self.observation_space.sample()
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def step(self, action: int):
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def step(self, action: Union[np.ndarray, int]) -> GymStepReturn:
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reward = 0.0
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self.current_step += 1
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done = self.current_step >= self.ep_length
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return self.observation_space.sample(), reward, done, {}
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def render(self, mode='human'):
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def render(self, mode: str = 'human') -> None:
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pass
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def get_action_meanings(self) -> List[str]:
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return ['NOOP']
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@ -59,7 +59,6 @@ class NatureCNN(BaseFeaturesExtractor):
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def __init__(self, observation_space: gym.spaces.Box,
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features_dim: int = 512):
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super(NatureCNN, self).__init__(observation_space, features_dim)
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# TODO: custom init?
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# We assume CxWxH images (channels first)
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# Re-ordering will be done by pre-preprocessing or wrapper
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assert is_image_space(observation_space), ('You should use NatureCNN '
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@ -1,7 +1,7 @@
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"""
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Common aliases for type hint
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"""
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from typing import Union, Dict, Any, NamedTuple, Optional, List, Callable
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from typing import Union, Dict, Any, NamedTuple, Optional, List, Callable, Tuple
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import numpy as np
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import torch as th
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@ -12,6 +12,8 @@ from torchy_baselines.common.callbacks import BaseCallback
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GymEnv = Union[gym.Env, VecEnv]
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GymObs = Union[Tuple, Dict[str, Any], np.ndarray, int]
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GymStepReturn = Tuple[GymObs, float, bool, Dict]
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TensorDict = Dict[str, th.Tensor]
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OptimizerStateDict = Dict[str, Any]
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MaybeCallback = Union[None, Callable, List[BaseCallback], BaseCallback]
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@ -1,15 +1,22 @@
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import warnings
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import typing
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import numpy as np
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from gym import spaces
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from torchy_baselines.common.vec_env.base_vec_env import VecEnv, VecEnvWrapper
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from torchy_baselines.common.preprocessing import is_image_space
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if typing.TYPE_CHECKING:
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from torchy_baselines.common.type_aliases import GymStepReturn
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class VecTransposeImage(VecEnvWrapper):
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"""
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Re-order channels, from WxHxC to CxWxH.
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It is required for PyTorch convolution layers.
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:param venv: (VecEnv)
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"""
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def __init__(self, venv: VecEnv):
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@ -20,6 +27,12 @@ class VecTransposeImage(VecEnvWrapper):
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@staticmethod
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def transpose_space(observation_space: spaces.Box) -> spaces.Box:
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"""
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Transpose an observation space (re-order channels).
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:param observation_space: (spaces.Box)
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:return: (spaces.Box)
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"""
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assert is_image_space(observation_space), 'The observation space must be an image'
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width, height, channels = observation_space.shape
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new_shape = (channels, width, height)
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@ -27,11 +40,17 @@ class VecTransposeImage(VecEnvWrapper):
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@staticmethod
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def transpose_image(image: np.ndarray) -> np.ndarray:
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"""
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Transpose an image or batch of images (re-order channels).
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:param image: (np.ndarray)
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:return: (np.ndarray)
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"""
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if len(image.shape) == 3:
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return np.transpose(image, (2, 0, 1))
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return np.transpose(image, (0, 3, 1, 2))
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def step_wait(self):
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def step_wait(self) -> 'GymStepReturn':
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observations, rewards, dones, infos = self.venv.step_wait()
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return self.transpose_image(observations), rewards, dones, infos
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