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@ -1291,6 +1291,12 @@ def meshgrid(*xi, sparse=False, indexing='xy'):
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if indexing not in ('xy', 'ij'):
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_raise_type_error("Valid values for `indexing` are 'xy' and 'ij'.")
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shape_out = ()
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for x in xi:
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shape_out += (x.size,)
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if _is_shape_empty(shape_out):
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return ones(shape_out)
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grids = []
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for x in xi:
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if F.rank(x) == 1:
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@ -1351,7 +1357,7 @@ class nd_grid:
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else:
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step = 1
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if isinstance(step, complex):
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v = linspace(k.start, k.stop, int(abs(step.imag)))
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v = linspace(k.start, k.stop, int(abs(step)))
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else:
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v = arange(k.start, k.stop, step)
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xi.append(v)
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@ -1362,6 +1368,8 @@ class nd_grid:
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if self.sparse:
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return grids
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if isinstance(grids, Tensor_):
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return grids
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expanded = []
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for grid in grids:
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expanded.append(F.expand_dims(grid, 0))
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@ -1380,6 +1388,11 @@ class mGridClass(nd_grid):
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as specifying the number of points to create between the start and
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stop values, where the stop value is inclusive.
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Note:
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Unlike Numpy, if the step length is a complex number with a real
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component, the step length is handled as equivalent to
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``int(abs(step))``.
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Returns:
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Tensor or tuple of tensor, a meshgrid.
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@ -1422,6 +1435,11 @@ class oGridClass(nd_grid):
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as specifying the number of points to create between the start and
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stop values, where the stop value is inclusive.
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Note:
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Unlike Numpy, if the step length is a complex number with a real
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component, the step length is handled as equivalent to
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``int(abs(step))``.
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Raises:
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TypeError: if slicing indices are not integers.
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