ray/rllib/utils/typing.py

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from typing import Any, Dict, List, Tuple, Union, TYPE_CHECKING
if TYPE_CHECKING:
from ray.rllib.utils import try_import_tf, try_import_torch
_, tf, _ = try_import_tf()
torch, _ = try_import_torch()
from ray.rllib.policy.policy import PolicySpec
from ray.rllib.policy.sample_batch import SampleBatch, MultiAgentBatch
from ray.rllib.policy.view_requirement import ViewRequirement
# Represents a fully filled out config of a Trainer class.
# Note: Policy config dicts are usually the same as TrainerConfigDict, but
# parts of it may sometimes be altered in e.g. a multi-agent setup,
# where we have >1 Policies in the same Trainer.
TrainerConfigDict = dict
# A trainer config dict that only has overrides. It needs to be combined with
# the default trainer config to be used.
PartialTrainerConfigDict = dict
# Represents the env_config sub-dict of the trainer config that is passed to
# the env constructor.
EnvConfigDict = dict
# Represents the model config sub-dict of the trainer config that is passed to
# the model catalog.
ModelConfigDict = dict
# Objects that can be created through the `from_config()` util method
# need a config dict with a "type" key, a class path (str), or a type directly.
FromConfigSpec = Union[Dict[str, Any], type, str]
# Represents a BaseEnv, MultiAgentEnv, ExternalEnv, ExternalMultiAgentEnv,
# VectorEnv, or gym.Env.
EnvType = Any
# Represents a generic identifier for an agent (e.g., "agent1").
AgentID = Any
# Represents a generic identifier for a policy (e.g., "pol1").
PolicyID = str
# Type of the config["multiagent"]["policies"] dict for multi-agent training.
MultiAgentPolicyConfigDict = Dict[PolicyID, "PolicySpec"]
# Represents an environment id. These could be:
# - An int index for a sub-env within a vectorized env.
# - An external env ID (str), which changes(!) each episode.
EnvID = Union[int, str]
# Represents an episode id.
EpisodeID = int
# Represents an "unroll" (maybe across different sub-envs in a vector env).
UnrollID = int
# A dict keyed by agent ids, e.g. {"agent-1": value}.
MultiAgentDict = Dict[AgentID, Any]
# A dict keyed by env ids that contain further nested dictionaries keyed by
# agent ids. e.g., {"env-1": {"agent-1": value}}.
MultiEnvDict = Dict[EnvID, MultiAgentDict]
# Represents an observation returned from the env.
EnvObsType = Any
# Represents an action passed to the env.
EnvActionType = Any
# Info dictionary returned by calling step() on gym envs. Commonly empty dict.
EnvInfoDict = dict
# Represents a File object
FileType = Any
# Represents a ViewRequirements dict mapping column names (str) to
# ViewRequirement objects.
ViewRequirementsDict = Dict[str, "ViewRequirement"]
# Represents the result dict returned by Trainer.train().
ResultDict = dict
# A tf or torch local optimizer object.
LocalOptimizer = Union["tf.keras.optimizers.Optimizer",
"torch.optim.Optimizer"]
# Dict of tensors returned by compute gradients on the policy, e.g.,
# {"td_error": [...], "learner_stats": {"vf_loss": ..., ...}}, for multi-agent,
# {"policy1": {"learner_stats": ..., }, "policy2": ...}.
GradInfoDict = dict
# Dict of learner stats returned by compute gradients on the policy, e.g.,
# {"vf_loss": ..., ...}. This will always be nested under the "learner_stats"
# key(s) of a GradInfoDict. In the multi-agent case, this will be keyed by
# policy id.
LearnerStatsDict = dict
# Represents a generic tensor type.
# This could be an np.ndarray, tf.Tensor, or a torch.Tensor.
TensorType = Any
# List of grads+var tuples (tf) or list of gradient tensors (torch)
# representing model gradients and returned by compute_gradients().
ModelGradients = Union[List[Tuple[TensorType, TensorType]], List[TensorType]]
# Type of dict returned by get_weights() representing model weights.
ModelWeights = dict
# An input dict used for direct ModelV2 calls.
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ModelInputDict = Dict[str, TensorType]
# Some kind of sample batch.
SampleBatchType = Union["SampleBatch", "MultiAgentBatch"]
# Either a plain tensor, or a dict or tuple of tensors (or StructTensors).
TensorStructType = Union[TensorType, dict, tuple]
# A shape of a tensor.
TensorShape = Union[Tuple[int], List[int]]