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NamedTensor.cpp
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NamedTensor.cpp
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#define TORCH_ASSERT_NO_OPERATORS
#include <ATen/core/NamedTensor.h>
#include <ATen/core/TensorBase.h>
namespace at {
thread_local bool NamesMode_enabled = true;
bool NamesMode::is_enabled() {
return NamesMode_enabled;
}
void NamesMode::set_enabled(bool enabled) {
NamesMode_enabled = enabled;
c10::impl::tls_set_dispatch_key_excluded(DispatchKey::Named, !enabled);
}
const TensorBase& internal_set_names_inplace(const TensorBase& tensor, optional<DimnameList> names) {
impl::internal_set_names_inplace(tensor.unsafeGetTensorImpl(), names, /*validate_names=*/true);
return tensor;
}
const TensorBase& internal_set_names_inplace(const TensorBase& tensor, std::vector<Dimname>&& names, bool validate_names) {
impl::internal_set_names_inplace(tensor.unsafeGetTensorImpl(), std::move(names), validate_names);
return tensor;
}
DimnameList default_names(size_t len) {
static std::vector<Dimname> all_unnamed(kMaxNamedTensorDim, Dimname::wildcard());
TORCH_INTERNAL_ASSERT(
len <= kMaxNamedTensorDim,
"Only tensors with up to ", kMaxNamedTensorDim, " are supported.");
return DimnameList(&all_unnamed.front(), len);
}
static void check_unique_names(DimnameList names) {
// Strategy: Compare each element with the ones that come after it.
// Although this is O(N^2), in practice N is small (no more than 25).
for (auto it = names.begin(); it != names.end(); ++it) {
if (it->isWildcard()) continue;
auto dup = std::find(it + 1, names.end(), *it);
while (dup != names.end()) {
TORCH_CHECK(false,
"Cannot construct a tensor with duplicate names. Got names: ",
names, ".");
}
}
}
void check_names_valid_for(const TensorBase& tensor, DimnameList names) {
return impl::check_names_valid_for(tensor.unsafeGetTensorImpl(), names);
}
void check_names_valid_for(size_t tensor_dim, DimnameList names) {
TORCH_CHECK(
tensor_dim <= kMaxNamedTensorDim,
"Named tensors only support up to ", kMaxNamedTensorDim, " dims: "
"Attempted to create a tensor with dim ", tensor_dim, " with names ", names);
TORCH_CHECK(tensor_dim == names.size(),
"Number of names (", names.size(), ") and "
"number of dimensions in tensor (", tensor_dim, ") ",
"do not match. Attempted to create a tensor with names ", names);
check_unique_names(names);
}
namespace impl {
static NamedTensorMeta* get_named_tensor_meta(TensorImpl* impl) {
if (!NamesMode::is_enabled()) {
return nullptr;
}
return static_cast<NamedTensorMeta*>(impl->named_tensor_meta());
}
static const NamedTensorMeta* get_named_tensor_meta(const TensorImpl* impl) {
if (!NamesMode::is_enabled()) {
return nullptr;
}
return static_cast<const NamedTensorMeta*>(impl->named_tensor_meta());
}
void check_names_valid_for(TensorImpl* impl, DimnameList names) {
check_names_valid_for(impl->dim(), names);
}
void internal_set_names_inplace(TensorImpl* impl, optional<DimnameList> names, bool validate_names) {
TORCH_CHECK(impl->layout() == Layout::Strided,
"NYI: named tensors only support strided layout");
TORCH_CHECK(impl->device().is_cpu() || impl->device().is_cuda() || impl->device().is_privateuseone(),
"NYI: named tensors only support CPU, CUDA or ", c10::get_privateuse1_backend(), " tensors.");
if (!names) {
impl->set_named_tensor_meta(nullptr);
return;
}
if (validate_names) {
check_names_valid_for(impl, *names);
}
// Do this after validation!
if (std::all_of(names->begin(), names->end(), [](const Dimname& n) { return n.isWildcard(); })) {
impl->set_named_tensor_meta(nullptr);
return;
}
auto* meta = get_named_tensor_meta(impl);
if (meta == nullptr) {
// Constructor is private
impl->set_named_tensor_meta(std::make_unique<NamedTensorMeta>(NamedTensorMeta::HasNonWildcard, *names));
} else {
meta->set_names(NamedTensorMeta::HasNonWildcard, *names);
}
}
void internal_set_names_inplace(TensorImpl* impl, std::vector<Dimname>&& names, bool validate_names) {
if (validate_names) {
check_names_valid_for(impl, names);
}
// Do this after validation!
if (std::all_of(names.begin(), names.end(), [](const Dimname& n) { return n.isWildcard(); })) {
impl->set_named_tensor_meta(nullptr);
return;
}
auto* meta = get_named_tensor_meta(impl);
if (meta == nullptr) {
impl->set_named_tensor_meta(std::make_unique<NamedTensorMeta>(NamedTensorMeta::HasNonWildcard, names));
} else {
meta->set_names(NamedTensorMeta::HasNonWildcard, names);
}
}
optional<DimnameList> get_opt_names(const TensorImpl* impl) {
const auto* meta = get_named_tensor_meta(impl);
if (meta == nullptr) {
return nullopt;
} else {
return meta->names();
}
}
DimnameList get_names(const TensorImpl* impl) {
auto maybe_names = get_opt_names(impl);
if (maybe_names) {
return *maybe_names;
}
return default_names(impl->dim());
}
bool has_names(const TensorImpl* impl) {
return impl->has_named_tensor_meta() && NamesMode::is_enabled();
}
} // namespace impl
} // namespace at