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|
| | """Tests for VQBeT policy processor."""
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| |
|
| | import tempfile
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| |
|
| | import pytest
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| | import torch
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| |
|
| | from lerobot.configs.types import FeatureType, NormalizationMode, PolicyFeature
|
| | from lerobot.policies.vqbet.configuration_vqbet import VQBeTConfig
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| | from lerobot.policies.vqbet.processor_vqbet import make_vqbet_pre_post_processors
|
| | from lerobot.processor import (
|
| | AddBatchDimensionProcessorStep,
|
| | DataProcessorPipeline,
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| | DeviceProcessorStep,
|
| | NormalizerProcessorStep,
|
| | RenameObservationsProcessorStep,
|
| | TransitionKey,
|
| | UnnormalizerProcessorStep,
|
| | )
|
| | from lerobot.processor.converters import create_transition, transition_to_batch
|
| | from lerobot.utils.constants import ACTION, OBS_IMAGE, OBS_STATE
|
| |
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| |
|
| | def create_default_config():
|
| | """Create a default VQBeT configuration for testing."""
|
| | config = VQBeTConfig()
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| | config.input_features = {
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| | OBS_STATE: PolicyFeature(type=FeatureType.STATE, shape=(8,)),
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| | OBS_IMAGE: PolicyFeature(type=FeatureType.VISUAL, shape=(3, 224, 224)),
|
| | }
|
| | config.output_features = {
|
| | ACTION: PolicyFeature(type=FeatureType.ACTION, shape=(7,)),
|
| | }
|
| | config.normalization_mapping = {
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| | FeatureType.STATE: NormalizationMode.MEAN_STD,
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| | FeatureType.VISUAL: NormalizationMode.IDENTITY,
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| | FeatureType.ACTION: NormalizationMode.MIN_MAX,
|
| | }
|
| | config.device = "cpu"
|
| | return config
|
| |
|
| |
|
| | def create_default_stats():
|
| | """Create default dataset statistics for testing."""
|
| | return {
|
| | OBS_STATE: {"mean": torch.zeros(8), "std": torch.ones(8)},
|
| | OBS_IMAGE: {},
|
| | ACTION: {"min": torch.full((7,), -1.0), "max": torch.ones(7)},
|
| | }
|
| |
|
| |
|
| | def test_make_vqbet_processor_basic():
|
| | """Test basic creation of VQBeT processor."""
|
| | config = create_default_config()
|
| | stats = create_default_stats()
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| |
|
| | preprocessor, postprocessor = make_vqbet_pre_post_processors(
|
| | config,
|
| | stats,
|
| | )
|
| |
|
| |
|
| | assert preprocessor.name == "policy_preprocessor"
|
| | assert postprocessor.name == "policy_postprocessor"
|
| |
|
| |
|
| | assert len(preprocessor.steps) == 4
|
| | assert isinstance(preprocessor.steps[0], RenameObservationsProcessorStep)
|
| | assert isinstance(preprocessor.steps[1], AddBatchDimensionProcessorStep)
|
| | assert isinstance(preprocessor.steps[2], DeviceProcessorStep)
|
| | assert isinstance(preprocessor.steps[3], NormalizerProcessorStep)
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| |
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| |
|
| | assert len(postprocessor.steps) == 2
|
| | assert isinstance(postprocessor.steps[0], UnnormalizerProcessorStep)
|
| | assert isinstance(postprocessor.steps[1], DeviceProcessorStep)
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| |
|
| |
|
| | def test_vqbet_processor_with_images():
|
| | """Test VQBeT processor with image and state observations."""
|
| | config = create_default_config()
|
| | stats = create_default_stats()
|
| |
|
| | preprocessor, postprocessor = make_vqbet_pre_post_processors(
|
| | config,
|
| | stats,
|
| | )
|
| |
|
| |
|
| | observation = {
|
| | OBS_STATE: torch.randn(8),
|
| | OBS_IMAGE: torch.randn(3, 224, 224),
|
| | }
|
| | action = torch.randn(7)
|
| | transition = create_transition(observation, action)
|
| |
|
| | batch = transition_to_batch(transition)
|
| |
|
| |
|
| |
|
| | processed = preprocessor(batch)
|
| |
|
| |
|
| | assert processed[OBS_STATE].shape == (1, 8)
|
| | assert processed[OBS_IMAGE].shape == (1, 3, 224, 224)
|
| | assert processed[TransitionKey.ACTION.value].shape == (1, 7)
|
| |
|
| |
|
| | @pytest.mark.skipif(not torch.cuda.is_available(), reason="CUDA not available")
|
| | def test_vqbet_processor_cuda():
|
| | """Test VQBeT processor with CUDA device."""
|
| | config = create_default_config()
|
| | config.device = "cuda"
|
| | stats = create_default_stats()
|
| |
|
| | preprocessor, postprocessor = make_vqbet_pre_post_processors(
|
| | config,
|
| | stats,
|
| | )
|
| |
|
| |
|
| | observation = {
|
| | OBS_STATE: torch.randn(8),
|
| | OBS_IMAGE: torch.randn(3, 224, 224),
|
| | }
|
| | action = torch.randn(7)
|
| | transition = create_transition(observation, action)
|
| |
|
| | batch = transition_to_batch(transition)
|
| |
|
| |
|
| |
|
| | processed = preprocessor(batch)
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| |
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| |
|
| | assert processed[OBS_STATE].device.type == "cuda"
|
| | assert processed[OBS_IMAGE].device.type == "cuda"
|
| | assert processed[TransitionKey.ACTION.value].device.type == "cuda"
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| |
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| |
|
| | postprocessed = postprocessor(processed[TransitionKey.ACTION.value])
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| |
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| |
|
| | assert postprocessed.device.type == "cpu"
|
| |
|
| |
|
| | @pytest.mark.skipif(not torch.cuda.is_available(), reason="CUDA not available")
|
| | def test_vqbet_processor_accelerate_scenario():
|
| | """Test VQBeT processor in simulated Accelerate scenario."""
|
| | config = create_default_config()
|
| | config.device = "cuda:0"
|
| | stats = create_default_stats()
|
| |
|
| | preprocessor, postprocessor = make_vqbet_pre_post_processors(
|
| | config,
|
| | stats,
|
| | )
|
| |
|
| |
|
| | device = torch.device("cuda:0")
|
| | observation = {
|
| | OBS_STATE: torch.randn(1, 8).to(device),
|
| | OBS_IMAGE: torch.randn(1, 3, 224, 224).to(device),
|
| | }
|
| | action = torch.randn(1, 7).to(device)
|
| | transition = create_transition(observation, action)
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| |
|
| | batch = transition_to_batch(transition)
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| |
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| |
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| |
|
| | processed = preprocessor(batch)
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| |
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| |
|
| | assert processed[OBS_STATE].device == device
|
| | assert processed[OBS_IMAGE].device == device
|
| | assert processed[TransitionKey.ACTION.value].device == device
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| |
|
| |
|
| | @pytest.mark.skipif(torch.cuda.device_count() < 2, reason="Requires at least 2 GPUs")
|
| | def test_vqbet_processor_multi_gpu():
|
| | """Test VQBeT processor with multi-GPU setup."""
|
| | config = create_default_config()
|
| | config.device = "cuda:0"
|
| | stats = create_default_stats()
|
| |
|
| | preprocessor, postprocessor = make_vqbet_pre_post_processors(
|
| | config,
|
| | stats,
|
| | )
|
| |
|
| |
|
| | device = torch.device("cuda:1")
|
| | observation = {
|
| | OBS_STATE: torch.randn(1, 8).to(device),
|
| | OBS_IMAGE: torch.randn(1, 3, 224, 224).to(device),
|
| | }
|
| | action = torch.randn(1, 7).to(device)
|
| | transition = create_transition(observation, action)
|
| |
|
| | batch = transition_to_batch(transition)
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| |
|
| |
|
| |
|
| | processed = preprocessor(batch)
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| |
|
| |
|
| | assert processed[OBS_STATE].device == device
|
| | assert processed[OBS_IMAGE].device == device
|
| | assert processed[TransitionKey.ACTION.value].device == device
|
| |
|
| |
|
| | def test_vqbet_processor_without_stats():
|
| | """Test VQBeT processor creation without dataset statistics."""
|
| | config = create_default_config()
|
| |
|
| | preprocessor, postprocessor = make_vqbet_pre_post_processors(config, dataset_stats=None)
|
| |
|
| |
|
| | assert preprocessor is not None
|
| | assert postprocessor is not None
|
| |
|
| |
|
| | observation = {
|
| | OBS_STATE: torch.randn(8),
|
| | OBS_IMAGE: torch.randn(3, 224, 224),
|
| | }
|
| | action = torch.randn(7)
|
| | transition = create_transition(observation, action)
|
| |
|
| | batch = transition_to_batch(transition)
|
| |
|
| | processed = preprocessor(batch)
|
| | assert processed is not None
|
| |
|
| |
|
| | def test_vqbet_processor_save_and_load():
|
| | """Test saving and loading VQBeT processor."""
|
| | config = create_default_config()
|
| | stats = create_default_stats()
|
| |
|
| | preprocessor, postprocessor = make_vqbet_pre_post_processors(
|
| | config,
|
| | stats,
|
| | )
|
| |
|
| | with tempfile.TemporaryDirectory() as tmpdir:
|
| |
|
| | preprocessor.save_pretrained(tmpdir)
|
| |
|
| |
|
| | loaded_preprocessor = DataProcessorPipeline.from_pretrained(
|
| | tmpdir, config_filename="policy_preprocessor.json"
|
| | )
|
| |
|
| |
|
| | observation = {
|
| | OBS_STATE: torch.randn(8),
|
| | OBS_IMAGE: torch.randn(3, 224, 224),
|
| | }
|
| | action = torch.randn(7)
|
| | transition = create_transition(observation, action)
|
| |
|
| | batch = transition_to_batch(transition)
|
| | processed = loaded_preprocessor(batch)
|
| | assert processed[OBS_STATE].shape == (1, 8)
|
| | assert processed[OBS_IMAGE].shape == (1, 3, 224, 224)
|
| | assert processed[TransitionKey.ACTION.value].shape == (1, 7)
|
| |
|
| |
|
| | @pytest.mark.skipif(not torch.cuda.is_available(), reason="CUDA not available")
|
| | def test_vqbet_processor_mixed_precision():
|
| | """Test VQBeT processor with mixed precision."""
|
| | config = create_default_config()
|
| | config.device = "cuda"
|
| | stats = create_default_stats()
|
| |
|
| |
|
| | preprocessor, postprocessor = make_vqbet_pre_post_processors(
|
| | config,
|
| | stats,
|
| | )
|
| |
|
| |
|
| | modified_steps = []
|
| | for step in preprocessor.steps:
|
| | if isinstance(step, DeviceProcessorStep):
|
| | modified_steps.append(DeviceProcessorStep(device=config.device, float_dtype="float16"))
|
| | elif isinstance(step, NormalizerProcessorStep):
|
| |
|
| | modified_steps.append(
|
| | NormalizerProcessorStep(
|
| | features=step.features,
|
| | norm_map=step.norm_map,
|
| | stats=step.stats,
|
| | device=config.device,
|
| | dtype=torch.float16,
|
| | )
|
| | )
|
| | else:
|
| | modified_steps.append(step)
|
| | preprocessor.steps = modified_steps
|
| |
|
| |
|
| | observation = {
|
| | OBS_STATE: torch.randn(8, dtype=torch.float32),
|
| | OBS_IMAGE: torch.randn(3, 224, 224, dtype=torch.float32),
|
| | }
|
| | action = torch.randn(7, dtype=torch.float32)
|
| | transition = create_transition(observation, action)
|
| |
|
| | batch = transition_to_batch(transition)
|
| |
|
| |
|
| |
|
| | processed = preprocessor(batch)
|
| |
|
| |
|
| | assert processed[OBS_STATE].dtype == torch.float16
|
| | assert processed[OBS_IMAGE].dtype == torch.float16
|
| | assert processed[TransitionKey.ACTION.value].dtype == torch.float16
|
| |
|
| |
|
| | def test_vqbet_processor_large_batch():
|
| | """Test VQBeT processor with large batch sizes."""
|
| | config = create_default_config()
|
| | stats = create_default_stats()
|
| |
|
| | preprocessor, postprocessor = make_vqbet_pre_post_processors(
|
| | config,
|
| | stats,
|
| | )
|
| |
|
| |
|
| | batch_size = 128
|
| | observation = {
|
| | OBS_STATE: torch.randn(batch_size, 8),
|
| | OBS_IMAGE: torch.randn(batch_size, 3, 224, 224),
|
| | }
|
| | action = torch.randn(batch_size, 7)
|
| | transition = create_transition(observation, action)
|
| |
|
| | batch = transition_to_batch(transition)
|
| |
|
| |
|
| |
|
| | processed = preprocessor(batch)
|
| |
|
| |
|
| | assert processed[OBS_STATE].shape == (batch_size, 8)
|
| | assert processed[OBS_IMAGE].shape == (batch_size, 3, 224, 224)
|
| | assert processed[TransitionKey.ACTION.value].shape == (batch_size, 7)
|
| |
|
| |
|
| | def test_vqbet_processor_sequential_processing():
|
| | """Test VQBeT processor with sequential data processing."""
|
| | config = create_default_config()
|
| | stats = create_default_stats()
|
| |
|
| | preprocessor, postprocessor = make_vqbet_pre_post_processors(
|
| | config,
|
| | stats,
|
| | )
|
| |
|
| |
|
| | results = []
|
| | for _ in range(5):
|
| | observation = {
|
| | OBS_STATE: torch.randn(8),
|
| | OBS_IMAGE: torch.randn(3, 224, 224),
|
| | }
|
| | action = torch.randn(7)
|
| | transition = create_transition(observation, action)
|
| |
|
| | batch = transition_to_batch(transition)
|
| |
|
| | processed = preprocessor(batch)
|
| | results.append(processed)
|
| |
|
| |
|
| | for result in results:
|
| | assert result[OBS_STATE].shape == (1, 8)
|
| | assert result[OBS_IMAGE].shape == (1, 3, 224, 224)
|
| | assert result[TransitionKey.ACTION.value].shape == (1, 7)
|
| |
|
| |
|
| | @pytest.mark.skipif(not torch.cuda.is_available(), reason="CUDA not available")
|
| | def test_vqbet_processor_bfloat16_device_float32_normalizer():
|
| | """Test: DeviceProcessor(bfloat16) + NormalizerProcessor(float32) → output bfloat16 via automatic adaptation"""
|
| | config = create_default_config()
|
| | config.device = "cuda"
|
| | stats = create_default_stats()
|
| |
|
| | preprocessor, _ = make_vqbet_pre_post_processors(
|
| | config,
|
| | stats,
|
| | )
|
| |
|
| |
|
| | modified_steps = []
|
| | for step in preprocessor.steps:
|
| | if isinstance(step, DeviceProcessorStep):
|
| |
|
| | modified_steps.append(DeviceProcessorStep(device=config.device, float_dtype="bfloat16"))
|
| | elif isinstance(step, NormalizerProcessorStep):
|
| |
|
| | modified_steps.append(
|
| | NormalizerProcessorStep(
|
| | features=step.features,
|
| | norm_map=step.norm_map,
|
| | stats=step.stats,
|
| | device=config.device,
|
| | dtype=torch.float32,
|
| | )
|
| | )
|
| | else:
|
| | modified_steps.append(step)
|
| | preprocessor.steps = modified_steps
|
| |
|
| |
|
| | normalizer_step = preprocessor.steps[3]
|
| | assert normalizer_step.dtype == torch.float32
|
| |
|
| |
|
| | observation = {
|
| | OBS_STATE: torch.randn(8, dtype=torch.float32),
|
| | OBS_IMAGE: torch.randn(3, 224, 224, dtype=torch.float32),
|
| | }
|
| | action = torch.randn(7, dtype=torch.float32)
|
| | transition = create_transition(observation, action)
|
| |
|
| | batch = transition_to_batch(transition)
|
| |
|
| |
|
| | processed = preprocessor(batch)
|
| |
|
| |
|
| | assert processed[OBS_STATE].dtype == torch.bfloat16
|
| | assert processed[OBS_IMAGE].dtype == torch.bfloat16
|
| | assert processed[TransitionKey.ACTION.value].dtype == torch.bfloat16
|
| |
|
| |
|
| | assert normalizer_step.dtype == torch.bfloat16
|
| |
|
| | for stat_tensor in normalizer_step._tensor_stats[OBS_STATE].values():
|
| | assert stat_tensor.dtype == torch.bfloat16
|
| |
|
| |
|