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221 行
7.0 KiB
221 行
7.0 KiB
from distutils.util import strtobool
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import os
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from typing import Any, List, Set
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from distutils.version import LooseVersion
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try:
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from tf2onnx.tfonnx import process_tf_graph, tf_optimize
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from tf2onnx import optimizer
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ONNX_EXPORT_ENABLED = True
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except ImportError:
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# Either onnx and tf2onnx not installed, or they're not compatible with the version of tensorflow
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ONNX_EXPORT_ENABLED = False
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pass
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from mlagents.tf_utils import tf
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from tensorflow.python.platform import gfile
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from tensorflow.python.framework import graph_util
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from mlagents_envs.logging_util import get_logger
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from mlagents.trainers.settings import SerializationSettings
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from mlagents.trainers.tf import tensorflow_to_barracuda as tf2bc
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if LooseVersion(tf.__version__) < LooseVersion("1.12.0"):
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# ONNX is only tested on 1.12.0 and later
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ONNX_EXPORT_ENABLED = False
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logger = get_logger(__name__)
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POSSIBLE_INPUT_NODES = frozenset(
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[
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"action_masks",
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"epsilon",
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"prev_action",
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"recurrent_in",
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"sequence_length",
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"vector_observation",
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]
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)
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POSSIBLE_OUTPUT_NODES = frozenset(
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["action", "action_probs", "recurrent_out", "value_estimate"]
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)
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MODEL_CONSTANTS = frozenset(
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[
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"action_output_shape",
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"is_continuous_control",
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"memory_size",
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"version_number",
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"trainer_major_version",
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"trainer_minor_version",
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"trainer_patch_version",
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]
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)
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VISUAL_OBSERVATION_PREFIX = "visual_observation_"
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def export_policy_model(
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model_path: str,
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output_filepath: str,
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behavior_name: str,
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graph: tf.Graph,
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sess: tf.Session,
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) -> None:
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"""
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Exports a TF graph for a Policy to .nn and/or .onnx format for Unity embedding.
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:param output_filepath: file path to output the model (without file suffix)
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:param behavior_name: behavior name of the trained model
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:param graph: Tensorflow Graph for the policy
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:param sess: Tensorflow session for the policy
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"""
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frozen_graph_def = _make_frozen_graph(behavior_name, graph, sess)
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if not os.path.exists(output_filepath):
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os.makedirs(output_filepath)
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# Save frozen graph
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frozen_graph_def_path = model_path + "/frozen_graph_def.pb"
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with gfile.GFile(frozen_graph_def_path, "wb") as f:
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f.write(frozen_graph_def.SerializeToString())
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# Convert to barracuda
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if SerializationSettings.convert_to_barracuda:
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tf2bc.convert(frozen_graph_def_path, f"{output_filepath}.nn")
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logger.info(f"Exported {output_filepath}.nn")
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# Save to onnx too (if we were able to import it)
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if ONNX_EXPORT_ENABLED:
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if SerializationSettings.convert_to_onnx:
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try:
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onnx_graph = convert_frozen_to_onnx(behavior_name, frozen_graph_def)
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onnx_output_path = f"{output_filepath}.onnx"
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with open(onnx_output_path, "wb") as f:
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f.write(onnx_graph.SerializeToString())
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logger.info(f"Converting to {onnx_output_path}")
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except Exception:
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# Make conversion errors fatal depending on environment variables (only done during CI)
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if _enforce_onnx_conversion():
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raise
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logger.exception(
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"Exception trying to save ONNX graph. Please report this error on "
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"https://github.com/Unity-Technologies/ml-agents/issues and "
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"attach a copy of frozen_graph_def.pb"
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)
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else:
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if _enforce_onnx_conversion():
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raise RuntimeError(
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"ONNX conversion enforced, but couldn't import dependencies."
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)
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def _make_frozen_graph(
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behavior_name: str, graph: tf.Graph, sess: tf.Session
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) -> tf.GraphDef:
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with graph.as_default():
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target_nodes = ",".join(_process_graph(behavior_name, graph))
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graph_def = graph.as_graph_def()
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output_graph_def = graph_util.convert_variables_to_constants(
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sess, graph_def, target_nodes.replace(" ", "").split(",")
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)
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return output_graph_def
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def convert_frozen_to_onnx(behavior_name: str, frozen_graph_def: tf.GraphDef) -> Any:
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# This is basically https://github.com/onnx/tensorflow-onnx/blob/master/tf2onnx/convert.py
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inputs = _get_input_node_names(frozen_graph_def)
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outputs = _get_output_node_names(frozen_graph_def)
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logger.info(f"onnx export - inputs:{inputs} outputs:{outputs}")
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frozen_graph_def = tf_optimize(
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inputs, outputs, frozen_graph_def, fold_constant=True
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)
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with tf.Graph().as_default() as tf_graph:
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tf.import_graph_def(frozen_graph_def, name="")
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with tf.Session(graph=tf_graph):
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g = process_tf_graph(
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tf_graph,
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input_names=inputs,
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output_names=outputs,
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opset=SerializationSettings.onnx_opset,
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)
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onnx_graph = optimizer.optimize_graph(g)
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model_proto = onnx_graph.make_model(behavior_name)
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return model_proto
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def _get_input_node_names(frozen_graph_def: Any) -> List[str]:
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"""
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Get the list of input node names from the graph.
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Names are suffixed with ":0"
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"""
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node_names = _get_frozen_graph_node_names(frozen_graph_def)
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input_names = node_names & POSSIBLE_INPUT_NODES
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# Check visual inputs sequentially, and exit as soon as we don't find one
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vis_index = 0
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while True:
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vis_node_name = f"{VISUAL_OBSERVATION_PREFIX}{vis_index}"
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if vis_node_name in node_names:
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input_names.add(vis_node_name)
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else:
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break
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vis_index += 1
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# Append the port
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return [f"{n}:0" for n in input_names]
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def _get_output_node_names(frozen_graph_def: Any) -> List[str]:
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"""
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Get the list of output node names from the graph.
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Also include constants, so that they will be readable by the
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onnx importer.
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Names are suffixed with ":0"
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"""
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node_names = _get_frozen_graph_node_names(frozen_graph_def)
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output_names = node_names & (POSSIBLE_OUTPUT_NODES | MODEL_CONSTANTS)
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# Append the port
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return [f"{n}:0" for n in output_names]
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def _get_frozen_graph_node_names(frozen_graph_def: Any) -> Set[str]:
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"""
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Get all the node names from the graph.
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"""
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names = set()
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for node in frozen_graph_def.node:
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names.add(node.name)
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return names
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def _process_graph(behavior_name: str, graph: tf.Graph) -> List[str]:
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"""
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Gets the list of the output nodes present in the graph for inference
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:return: list of node names
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"""
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all_nodes = [x.name for x in graph.as_graph_def().node]
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nodes = [x for x in all_nodes if x in POSSIBLE_OUTPUT_NODES | MODEL_CONSTANTS]
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logger.info("List of nodes to export for behavior :" + behavior_name)
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for n in nodes:
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logger.info("\t" + n)
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return nodes
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def _enforce_onnx_conversion() -> bool:
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env_var_name = "TEST_ENFORCE_ONNX_CONVERSION"
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if env_var_name not in os.environ:
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return False
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val = os.environ[env_var_name]
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try:
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# This handles e.g. "false" converting reasonably to False
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return strtobool(val)
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except Exception:
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return False
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