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tensorflow/c/eager/c_api.cc
methods)); } TFE_TensorHandle* TFE_NewTensorHandleFromDeviceMemory( TFE_Context* ctx, const char* device_name, TF_DataType dtype, const int64_t* dims, int num_dims, void* data, size_t len, void (*deallocator)(void* data, size_t len, void* arg), void* deallocator_arg, TF_Status* status) { tensorflow::Device* device = nullptr; tensorflow::EagerContext* context =
Created: Tue Apr 07 12:39:13 GMT 2026 - Last Modified: Fri Nov 07 05:55:21 GMT 2025 - 43.9K bytes - Click Count (0) -
tensorflow/c/eager/abstract_operation.h
const char* attr_name, absl::Span<string const> values) { std::vector<const char*> raw_strs; std::vector<size_t> lengths; raw_strs.reserve(values.size()); lengths.reserve(values.size()); for (const auto& s : values) { raw_strs.emplace_back(s.data()); lengths.emplace_back(s.size()); } return SetAttrStringList(attr_name, reinterpret_cast<const void**>(raw_strs.data()),
Created: Tue Apr 07 12:39:13 GMT 2026 - Last Modified: Sat Oct 12 05:11:17 GMT 2024 - 7.3K bytes - Click Count (0) -
tensorflow/c/eager/c_api_experimental.cc
void* data = tensorflow::port::Malloc(value.length()); value.copy(static_cast<char*>(data), value.length(), 0); buf->data = data; buf->length = value.length(); buf->data_deallocator = [](void* data, size_t length) { tensorflow::port::Free(data); }; } TFE_MonitoringStringGauge0* TFE_MonitoringNewStringGauge0( const char* name, TF_Status* status, const char* description) {
Created: Tue Apr 07 12:39:13 GMT 2026 - Last Modified: Sat Oct 12 05:11:17 GMT 2024 - 35.9K bytes - Click Count (0) -
tensorflow/c/eager/gradients_internal.h
const char* value, size_t length, ForwardOperation*); absl::Status SetAttrTensor(AbstractOperation*, const char* attr_name, AbstractTensorInterface* tensor, ForwardOperation*); absl::Status SetAttrStringList(AbstractOperation*, const char* attr_name, const void* const* values, const size_t* lengths,Created: Tue Apr 07 12:39:13 GMT 2026 - Last Modified: Sat Oct 12 05:11:17 GMT 2024 - 4.7K bytes - Click Count (0) -
tensorflow/c/c_api_experimental.cc
} const char* TF_GraphDebugString(TF_Graph* graph, size_t* len) { tensorflow::mutex_lock c(graph->mu); const auto& debug_str = graph->graph.ToGraphDefDebug().DebugString(); *len = debug_str.size(); char* ret = static_cast<char*>(malloc(*len + 1)); memcpy(ret, debug_str.c_str(), *len + 1); return ret; } char* TF_FunctionDebugString(TF_Function* func, size_t* len) {
Created: Tue Apr 07 12:39:13 GMT 2026 - Last Modified: Sat Oct 04 05:55:32 GMT 2025 - 29.4K bytes - Click Count (0) -
tensorflow/c/c_api_test.cc
std::unique_ptr<const void*[]>* ptrs, std::unique_ptr<size_t[]>* lens) { ptrs->reset(new const void*[v.size()]); lens->reset(new size_t[v.size()]); for (size_t i = 0; i < v.size(); ++i) { (*ptrs)[i] = v[i].data(); (*lens)[i] = v[i].size(); } } class CApiColocationTest : public ::testing::Test { protected:Created: Tue Apr 07 12:39:13 GMT 2026 - Last Modified: Wed Jan 07 04:56:09 GMT 2026 - 97.3K bytes - Click Count (0) -
tensorflow/c/eager/c_api_unified_experimental_graph.cc
std::vector<TF_Output> tf_outputs(inputs.size()); for (int i = 0; i < inputs.size(); i++) { GraphTensor* t = dyn_cast<GraphTensor>(inputs[i]); if (!t) { return tensorflow::errors::InvalidArgument( "Unable to cast input to GraphTensor"); } tf_outputs[i] = t->output_; } TF_AddInputList(op_.get(), tf_outputs.data(), tf_outputs.size()); return absl::OkStatus(); }
Created: Tue Apr 07 12:39:13 GMT 2026 - Last Modified: Sat May 31 07:13:41 GMT 2025 - 15.7K bytes - Click Count (0) -
tensorflow/c/c_test_util.cc
static void BoolDeallocator(void* data, size_t, void* arg) { delete[] static_cast<bool*>(data); } static void Int32Deallocator(void* data, size_t, void* arg) { delete[] static_cast<int32_t*>(data); } static void DoubleDeallocator(void* data, size_t, void* arg) { delete[] static_cast<double*>(data); } static void FloatDeallocator(void* data, size_t, void* arg) { delete[] static_cast<float*>(data); }
Created: Tue Apr 07 12:39:13 GMT 2026 - Last Modified: Sat Oct 04 05:55:32 GMT 2025 - 17.8K bytes - Click Count (1) -
tensorflow/c/eager/gradients.cc
std::vector<int64_t> input_ids(inputs.size()); std::vector<tensorflow::DataType> input_dtypes(inputs.size()); for (int i = 0; i < inputs.size(); i++) { input_ids[i] = ToId(inputs[i]); input_dtypes[i] = inputs[i]->DataType(); } std::vector<TapeTensor> tape_tensors; tape_tensors.reserve(outputs.size()); for (auto t : outputs) { tape_tensors.push_back(TapeTensor(t)); }
Created: Tue Apr 07 12:39:13 GMT 2026 - Last Modified: Tue Feb 24 06:18:31 GMT 2026 - 19.6K bytes - Click Count (0) -
tensorflow/c/c_api.cc
size_t size = results.missing_unused_input_map_keys.size(); tf_results->missing_unused_key_names.resize(size); tf_results->missing_unused_key_indexes.resize(size); for (int i = 0; i < size; ++i) { TensorId id = results.missing_unused_input_map_keys[i]; tf_results->missing_unused_key_names_data.emplace_back(id.first); tf_results->missing_unused_key_names[i] =
Created: Tue Apr 07 12:39:13 GMT 2026 - Last Modified: Sat Oct 04 05:55:32 GMT 2025 - 102.4K bytes - Click Count (0)