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TensorCompare.cpp
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TensorCompare.cpp
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#include <ATen/ATen.h>
#include <ATen/CPUApplyUtils.h>
#include <ATen/ExpandUtils.h>
#include <ATen/NativeFunctions.h>
#include <ATen/native/ReduceOpsUtils.h>
#include <ATen/native/TensorCompare.h>
#include <c10/util/Exception.h>
namespace at {
namespace native {
Tensor max_quantized_cpu(const Tensor& self) {
return std::get<0>(self.reshape({-1}).max(/*dim=*/0));
}
Tensor& max_quantized_unary_out(const Tensor& self, Tensor& out) {
// TODO this implementation is inefficient for now.
TORCH_CHECK(self.device() == out.device());
TORCH_CHECK(canCast(
typeMetaToScalarType(self.dtype()),
typeMetaToScalarType(out.dtype())));
Tensor temp = max_quantized_cpu(self);
at::native::resize_output(out, temp.sizes());
out.copy_(temp);
return out;
}
Tensor min_quantized_cpu(const Tensor& self) {
return std::get<0>(self.reshape({-1}).min(/*dim=*/0));
}
Tensor& min_quantized_unary_out(const Tensor& self, Tensor& out) {
// TODO this implementation is inefficient for now.
TORCH_CHECK(self.device() == out.device());
TORCH_CHECK(canCast(
typeMetaToScalarType(self.dtype()),
typeMetaToScalarType(out.dtype())));
Tensor temp = min_quantized_cpu(self);
at::native::resize_output(out, temp.sizes());
out.copy_(temp);
return out;
}
// TODO: move to TensorMath.cpp
std::tuple<Tensor, Tensor> sort_quantized_cpu_stable(
const Tensor& self,
c10::optional<bool> stable,
int64_t dim,
bool descending) {
Tensor sort_int;
Tensor sort_indicies;
std::tie(sort_int, sort_indicies) =
at::sort(self.int_repr(), stable, dim, descending);
return std::forward_as_tuple(
at::_make_per_tensor_quantized_tensor(
sort_int, self.q_scale(), self.q_zero_point()),
sort_indicies);
}
} // namespace native
} // namespace at