#pragma once // @generated by torchgen/gen.py from Function.h #include <ATen/Context.h> #include <ATen/DeviceGuard.h> #include <ATen/TensorUtils.h> #include <ATen/TracerMode.h> #include <ATen/core/Generator.h> #include <ATen/core/Reduction.h> #include <ATen/core/Tensor.h> #include <c10/core/Scalar.h> #include <c10/core/Storage.h> #include <c10/core/TensorOptions.h> #include <c10/util/Deprecated.h> #include <c10/util/Optional.h> #include <ATen/ops/repeat_ops.h> namespace at { namespace symint { template <typename T, typename = std::enable_if_t<std::is_same<T, int64_t>::value>> at::Tensor repeat(const at::Tensor & self, at::IntArrayRef repeats) { return at::_ops::repeat::call(self, c10::fromIntArrayRefSlow(repeats)); } } namespace symint { template <typename T, typename = std::enable_if_t<std::is_same<T, c10::SymInt>::value>> at::Tensor repeat(const at::Tensor & self, c10::SymIntArrayRef repeats) { return at::_ops::repeat::call(self, repeats); } } // aten::repeat.out(Tensor self, SymInt[] repeats, *, Tensor(a!) out) -> Tensor(a!) inline at::Tensor & repeat_out(at::Tensor & out, const at::Tensor & self, at::IntArrayRef repeats) { return at::_ops::repeat_out::call(self, c10::fromIntArrayRefSlow(repeats), out); } namespace symint { template <typename T, typename = std::enable_if_t<std::is_same<T, int64_t>::value>> at::Tensor & repeat_out(at::Tensor & out, const at::Tensor & self, at::IntArrayRef repeats) { return at::_ops::repeat_out::call(self, c10::fromIntArrayRefSlow(repeats), out); } } // aten::repeat.out(Tensor self, SymInt[] repeats, *, Tensor(a!) out) -> Tensor(a!) inline at::Tensor & repeat_outf(const at::Tensor & self, at::IntArrayRef repeats, at::Tensor & out) { return at::_ops::repeat_out::call(self, c10::fromIntArrayRefSlow(repeats), out); } namespace symint { template <typename T, typename = std::enable_if_t<std::is_same<T, int64_t>::value>> at::Tensor & repeat_outf(const at::Tensor & self, at::IntArrayRef repeats, at::Tensor & out) { return at::_ops::repeat_out::call(self, c10::fromIntArrayRefSlow(repeats), out); } } // aten::repeat.out(Tensor self, SymInt[] repeats, *, Tensor(a!) out) -> Tensor(a!) inline at::Tensor & repeat_symint_out(at::Tensor & out, const at::Tensor & self, c10::SymIntArrayRef repeats) { return at::_ops::repeat_out::call(self, repeats, out); } namespace symint { template <typename T, typename = std::enable_if_t<std::is_same<T, c10::SymInt>::value>> at::Tensor & repeat_out(at::Tensor & out, const at::Tensor & self, c10::SymIntArrayRef repeats) { return at::_ops::repeat_out::call(self, repeats, out); } } // aten::repeat.out(Tensor self, SymInt[] repeats, *, Tensor(a!) out) -> Tensor(a!) inline at::Tensor & repeat_symint_outf(const at::Tensor & self, c10::SymIntArrayRef repeats, at::Tensor & out) { return at::_ops::repeat_out::call(self, repeats, out); } namespace symint { template <typename T, typename = std::enable_if_t<std::is_same<T, c10::SymInt>::value>> at::Tensor & repeat_outf(const at::Tensor & self, c10::SymIntArrayRef repeats, at::Tensor & out) { return at::_ops::repeat_out::call(self, repeats, out); } } }
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