#pragma once // @generated by torchgen/gen.py from Operator.h #include #include // Forward declarations of any types needed in the operator signatures. // We can't directly include these classes because it will cause circular include dependencies. // This file is included by TensorBody.h, which defines the Tensor class. #include namespace at { namespace _ops { struct TORCH_API upsample_bilinear2d_backward_vec { using schema = at::Tensor (const at::Tensor &, at::OptionalSymIntArrayRef, c10::SymIntArrayRef, bool, c10::optional>); using ptr_schema = schema*; // See Note [static constexpr char* members for windows NVCC] STATIC_CONSTEXPR_STR_INL_EXCEPT_WIN_CUDA(name, "aten::upsample_bilinear2d_backward") STATIC_CONSTEXPR_STR_INL_EXCEPT_WIN_CUDA(overload_name, "vec") STATIC_CONSTEXPR_STR_INL_EXCEPT_WIN_CUDA(schema_str, "upsample_bilinear2d_backward.vec(Tensor grad_output, SymInt[]? output_size, SymInt[] input_size, bool align_corners, float[]? scale_factors) -> Tensor") static at::Tensor call(const at::Tensor & grad_output, at::OptionalSymIntArrayRef output_size, c10::SymIntArrayRef input_size, bool align_corners, c10::optional> scale_factors); static at::Tensor redispatch(c10::DispatchKeySet dispatchKeySet, const at::Tensor & grad_output, at::OptionalSymIntArrayRef output_size, c10::SymIntArrayRef input_size, bool align_corners, c10::optional> scale_factors); }; struct TORCH_API upsample_bilinear2d_backward_grad_input { using schema = at::Tensor & (const at::Tensor &, c10::SymIntArrayRef, c10::SymIntArrayRef, bool, c10::optional, c10::optional, at::Tensor &); using ptr_schema = schema*; // See Note [static constexpr char* members for windows NVCC] STATIC_CONSTEXPR_STR_INL_EXCEPT_WIN_CUDA(name, "aten::upsample_bilinear2d_backward") STATIC_CONSTEXPR_STR_INL_EXCEPT_WIN_CUDA(overload_name, "grad_input") STATIC_CONSTEXPR_STR_INL_EXCEPT_WIN_CUDA(schema_str, "upsample_bilinear2d_backward.grad_input(Tensor grad_output, SymInt[2] output_size, SymInt[4] input_size, bool align_corners, float? scales_h=None, float? scales_w=None, *, Tensor(a!) grad_input) -> Tensor(a!)") static at::Tensor & call(const at::Tensor & grad_output, c10::SymIntArrayRef output_size, c10::SymIntArrayRef input_size, bool align_corners, c10::optional scales_h, c10::optional scales_w, at::Tensor & grad_input); static at::Tensor & redispatch(c10::DispatchKeySet dispatchKeySet, const at::Tensor & grad_output, c10::SymIntArrayRef output_size, c10::SymIntArrayRef input_size, bool align_corners, c10::optional scales_h, c10::optional scales_w, at::Tensor & grad_input); }; struct TORCH_API upsample_bilinear2d_backward { using schema = at::Tensor (const at::Tensor &, c10::SymIntArrayRef, c10::SymIntArrayRef, bool, c10::optional, c10::optional); using ptr_schema = schema*; // See Note [static constexpr char* members for windows NVCC] STATIC_CONSTEXPR_STR_INL_EXCEPT_WIN_CUDA(name, "aten::upsample_bilinear2d_backward") STATIC_CONSTEXPR_STR_INL_EXCEPT_WIN_CUDA(overload_name, "") STATIC_CONSTEXPR_STR_INL_EXCEPT_WIN_CUDA(schema_str, "upsample_bilinear2d_backward(Tensor grad_output, SymInt[2] output_size, SymInt[4] input_size, bool align_corners, float? scales_h=None, float? scales_w=None) -> Tensor") static at::Tensor call(const at::Tensor & grad_output, c10::SymIntArrayRef output_size, c10::SymIntArrayRef input_size, bool align_corners, c10::optional scales_h, c10::optional scales_w); static at::Tensor redispatch(c10::DispatchKeySet dispatchKeySet, const at::Tensor & grad_output, c10::SymIntArrayRef output_size, c10::SymIntArrayRef input_size, bool align_corners, c10::optional scales_h, c10::optional scales_w); }; struct TORCH_API upsample_bilinear2d_backward_vec_out { using schema = at::Tensor & (const at::Tensor &, at::OptionalSymIntArrayRef, c10::SymIntArrayRef, bool, c10::optional>, at::Tensor &); using ptr_schema = schema*; // See Note [static constexpr char* members for windows NVCC] STATIC_CONSTEXPR_STR_INL_EXCEPT_WIN_CUDA(name, "aten::upsample_bilinear2d_backward") STATIC_CONSTEXPR_STR_INL_EXCEPT_WIN_CUDA(overload_name, "vec_out") STATIC_CONSTEXPR_STR_INL_EXCEPT_WIN_CUDA(schema_str, "upsample_bilinear2d_backward.vec_out(Tensor grad_output, SymInt[]? output_size, SymInt[] input_size, bool align_corners, float[]? scale_factors, *, Tensor(a!) out) -> Tensor(a!)") static at::Tensor & call(const at::Tensor & grad_output, at::OptionalSymIntArrayRef output_size, c10::SymIntArrayRef input_size, bool align_corners, c10::optional> scale_factors, at::Tensor & out); static at::Tensor & redispatch(c10::DispatchKeySet dispatchKeySet, const at::Tensor & grad_output, at::OptionalSymIntArrayRef output_size, c10::SymIntArrayRef input_size, bool align_corners, c10::optional> scale_factors, at::Tensor & out); }; }} // namespace at::_ops