test_inputs.py 3.23 KB
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# SPDX-License-Identifier: Apache-2.0
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# SPDX-FileCopyrightText: Copyright contributors to the vLLM project
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import torch

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from vllm.multimodal.inputs import MultiModalKwargs, NestedTensors
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def assert_nested_tensors_equal(expected: NestedTensors,
                                actual: NestedTensors):
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    assert type(expected) == type(actual)  # noqa: E721
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    if isinstance(expected, torch.Tensor):
        assert torch.equal(expected, actual)
    else:
        for expected_item, actual_item in zip(expected, actual):
            assert_nested_tensors_equal(expected_item, actual_item)


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def assert_multimodal_inputs_equal(expected: MultiModalKwargs,
                                   actual: MultiModalKwargs):
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    assert set(expected.keys()) == set(actual.keys())
    for key in expected:
        assert_nested_tensors_equal(expected[key], actual[key])


def test_multimodal_input_batch_single_tensor():
    t = torch.rand([1, 2])
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    result = MultiModalKwargs.batch([{"image": t}])
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    assert_multimodal_inputs_equal(result, {"image": t.unsqueeze(0)})


def test_multimodal_input_batch_multiple_tensors():
    a = torch.rand([1, 1, 2])
    b = torch.rand([1, 1, 2])
    c = torch.rand([1, 1, 2])
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    result = MultiModalKwargs.batch([{"image": a}, {"image": b}, {"image": c}])
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    assert_multimodal_inputs_equal(result, {"image": torch.stack([a, b, c])})


def test_multimodal_input_batch_multiple_heterogeneous_tensors():
    a = torch.rand([1, 2, 2])
    b = torch.rand([1, 3, 2])
    c = torch.rand([1, 4, 2])
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    result = MultiModalKwargs.batch([{"image": a}, {"image": b}, {"image": c}])
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    assert_multimodal_inputs_equal(result, {"image": [a, b, c]})


def test_multimodal_input_batch_nested_tensors():
    a = torch.rand([2, 3])
    b = torch.rand([2, 3])
    c = torch.rand([2, 3])
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    result = MultiModalKwargs.batch([{
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        "image": [a]
    }, {
        "image": [b]
    }, {
        "image": [c]
    }])
    assert_multimodal_inputs_equal(result, {
        "image":
        torch.stack([a.unsqueeze(0),
                     b.unsqueeze(0),
                     c.unsqueeze(0)])
    })


def test_multimodal_input_batch_heterogeneous_lists():
    a = torch.rand([1, 2, 3])
    b = torch.rand([1, 2, 3])
    c = torch.rand([1, 2, 3])
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    result = MultiModalKwargs.batch([{"image": [a, b]}, {"image": [c]}])
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    assert_multimodal_inputs_equal(
        result,
        {"image": [torch.stack([a, b]), c.unsqueeze(0)]})


def test_multimodal_input_batch_multiple_batchable_lists():
    a = torch.rand([1, 2, 3])
    b = torch.rand([1, 2, 3])
    c = torch.rand([1, 2, 3])
    d = torch.rand([1, 2, 3])
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    result = MultiModalKwargs.batch([{"image": [a, b]}, {"image": [c, d]}])
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    assert_multimodal_inputs_equal(
        result,
        {"image": torch.stack([torch.stack([a, b]),
                               torch.stack([c, d])])})
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def test_multimodal_input_batch_mixed_stacking_depths():
    a = torch.rand([1, 2, 3])
    b = torch.rand([1, 3, 3])
    c = torch.rand([1, 4, 3])

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    result = MultiModalKwargs.batch([{"image": [a, b]}, {"image": [c]}])
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    assert_multimodal_inputs_equal(result, {"image": [[a, b], c.unsqueeze(0)]})

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    result = MultiModalKwargs.batch([{"image": [a]}, {"image": [b, c]}])
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    assert_multimodal_inputs_equal(result, {"image": [a.unsqueeze(0), [b, c]]})