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ActivationHardtanhKernel.cu
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ActivationHardtanhKernel.cu
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#define TORCH_ASSERT_NO_OPERATORS
#define _USE_MATH_DEFINES
#include <ATen/native/Activation.h>
#include <cmath>
#include <thrust/tuple.h>
#include <ATen/AccumulateType.h>
#include <ATen/Dispatch.h>
#include <ATen/core/TensorBase.h>
#include <c10/core/Scalar.h>
#include <c10/cuda/CUDAMathCompat.h>
#include <ATen/cuda/ApplyGridUtils.cuh>
#include <ATen/cuda/detail/OffsetCalculator.cuh>
#include <ATen/native/cuda/Loops.cuh>
namespace at::native {
namespace {
void hardtanh_backward_kernel(
TensorIterator& iter,
const Scalar& min,
const Scalar& max) {
AT_DISPATCH_FLOATING_TYPES_AND2(
at::ScalarType::Half, at::ScalarType::BFloat16,
iter.dtype(), "hardtanh_backward_cuda", [&]() {
using opmath_t = at::opmath_type<scalar_t>;
auto min_val = min.to<opmath_t>();
auto max_val = max.to<opmath_t>();
gpu_kernel(
iter,
[min_val, max_val] GPU_LAMBDA(scalar_t a, scalar_t b) -> scalar_t {
opmath_t aop = static_cast<opmath_t>(a);
opmath_t bop = static_cast<opmath_t>(b);
return (bop <= min_val) || (bop >= max_val) ? opmath_t(0) : aop;
});
});
}
} // namespace
REGISTER_DISPATCH(hardtanh_backward_stub, &hardtanh_backward_kernel);
} // namespace at::native