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from typing import Optional |
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from torch import Tensor |
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from typing_extensions import Literal |
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from torchmetrics.functional.pairwise.helpers import _check_input, _reduce_distance_matrix |
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from torchmetrics.utilities.compute import _safe_matmul |
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def _pairwise_linear_similarity_update( |
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x: Tensor, y: Optional[Tensor] = None, zero_diagonal: Optional[bool] = None |
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) -> Tensor: |
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"""Calculate the pairwise linear similarity matrix. |
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Args: |
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x: tensor of shape ``[N,d]`` |
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y: tensor of shape ``[M,d]`` |
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zero_diagonal: determines if the diagonal of the distance matrix should be set to zero |
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""" |
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x, y, zero_diagonal = _check_input(x, y, zero_diagonal) |
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distance = _safe_matmul(x, y) |
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if zero_diagonal: |
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distance.fill_diagonal_(0) |
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return distance |
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def pairwise_linear_similarity( |
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x: Tensor, |
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y: Optional[Tensor] = None, |
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reduction: Literal["mean", "sum", "none", None] = None, |
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zero_diagonal: Optional[bool] = None, |
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) -> Tensor: |
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r"""Calculate pairwise linear similarity. |
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.. math:: |
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s_{lin}(x,y) = <x,y> = \sum_{d=1}^D x_d \cdot y_d |
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If both :math:`x` and :math:`y` are passed in, the calculation will be performed pairwise between |
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the rows of :math:`x` and :math:`y`. |
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If only :math:`x` is passed in, the calculation will be performed between the rows of :math:`x`. |
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Args: |
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x: Tensor with shape ``[N, d]`` |
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y: Tensor with shape ``[M, d]``, optional |
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reduction: reduction to apply along the last dimension. Choose between `'mean'`, `'sum'` |
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(applied along column dimension) or `'none'`, `None` for no reduction |
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zero_diagonal: if the diagonal of the distance matrix should be set to 0. If only `x` is given |
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this defaults to `True` else if `y` is also given it defaults to `False` |
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Returns: |
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A ``[N,N]`` matrix of distances if only ``x`` is given, else a ``[N,M]`` matrix |
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Example: |
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>>> import torch |
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>>> from torchmetrics.functional.pairwise import pairwise_linear_similarity |
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>>> x = torch.tensor([[2, 3], [3, 5], [5, 8]], dtype=torch.float32) |
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>>> y = torch.tensor([[1, 0], [2, 1]], dtype=torch.float32) |
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>>> pairwise_linear_similarity(x, y) |
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tensor([[ 2., 7.], |
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[ 3., 11.], |
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[ 5., 18.]]) |
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>>> pairwise_linear_similarity(x) |
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tensor([[ 0., 21., 34.], |
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[21., 0., 55.], |
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[34., 55., 0.]]) |
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""" |
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distance = _pairwise_linear_similarity_update(x, y, zero_diagonal) |
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return _reduce_distance_matrix(distance, reduction) |
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