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tensorflow/c/eager/abstract_tensor_handle.h
namespace tensorflow { // Abstract interface to a Tensor handle in either tracing or immediate // execution mode. class AbstractTensorHandle : public core::RefCounted { protected: enum AbstractTensorHandleKind { kGraph, kMlir, kEager, kTfrt, kCustomDevice }; explicit AbstractTensorHandle(AbstractTensorHandleKind kind) : kind_(kind) {} ~AbstractTensorHandle() override {} public:
C - Registered: Tue Apr 30 12:39:09 GMT 2024 - Last Modified: Fri Mar 03 00:30:36 GMT 2023 - 3K bytes - Viewed (0) -
tensorflow/c/eager/immediate_execution_context.h
namespace tensorflow { class EagerExecutor; class EagerContext; class CustomDevice; class CustomDeviceOpHandler; class Device; // LINT.IfChange // Note: Keep in sync with exported copy of enum in eager/c_api.h. enum ContextDevicePlacementPolicy { // Running operations with input tensors on the wrong device will fail. DEVICE_PLACEMENT_EXPLICIT = 0, // Copy the tensor to the right device but log a warning.
C - Registered: Tue Apr 30 12:39:09 GMT 2024 - Last Modified: Thu Jul 06 08:34:00 GMT 2023 - 12.3K bytes - Viewed (0) -
tensorflow/c/eager/c_api.h
TF_Status* status); // Controls how to act when we try to run an operation on a given device but // some input tensors are not on that device. // LINT.IfChange // Note: Keep in sync with internal copy of enum in eager/context.h. typedef enum TFE_ContextDevicePlacementPolicy { // Running operations with input tensors on the wrong device will fail. TFE_DEVICE_PLACEMENT_EXPLICIT = 0, // Copy the tensor to the right device but log a warning.
C - Registered: Tue Apr 30 12:39:09 GMT 2024 - Last Modified: Thu Apr 27 21:07:00 GMT 2023 - 22.8K bytes - Viewed (1) -
tensorflow/c/eager/abstract_function.h
// representation between various supported formats e.g. FunctionDef and Mlir // function. class AbstractFunction : public core::RefCounted { protected: enum AbstractFunctionKind { kGraph, kMlir }; explicit AbstractFunction(AbstractFunctionKind kind) : kind_(kind) {} public: // Returns which subclass is this instance of.
C - Registered: Tue Apr 30 12:39:09 GMT 2024 - Last Modified: Mon Mar 04 19:49:06 GMT 2024 - 1.9K bytes - Viewed (0) -
tensorflow/c/eager/parallel_device/parallel_device_lib.h
if (values.size() != num_underlying_devices()) { TF_SetStatus( status, TF_INVALID_ARGUMENT, "Number of values did not match number of underlying devices."); return nullptr; } TF_DataType datatype_enum( static_cast<TF_DataType>(DataTypeToEnum<DataType>().value)); for (int device_index = 0; device_index < num_underlying_devices(); ++device_index) {
C - Registered: Tue Apr 30 12:39:09 GMT 2024 - Last Modified: Tue Apr 25 15:21:13 GMT 2023 - 12.9K bytes - Viewed (0) -
tensorflow/c/eager/c_api_test.cc
TFE_DeleteContext(ctx); EXPECT_EQ(TF_OK, TF_GetCode(status)) << TF_Message(status); const int num_devices = TF_DeviceListCount(devices); EXPECT_GE(num_devices, 1) << "At least one CPU device should exist"; for (int i = 0; i < num_devices; ++i) { EXPECT_NE("", TF_DeviceListName(devices, i, status)) << i; EXPECT_EQ(TF_OK, TF_GetCode(status)) << TF_Message(status); }
C++ - Registered: Tue Apr 30 12:39:09 GMT 2024 - Last Modified: Thu Aug 03 20:50:20 GMT 2023 - 94.6K bytes - Viewed (1) -
tensorflow/c/c_api_test.cc
const int batch_size = 4; const int num_dims = 2; int64_t* dims = new int64_t[num_dims]; int64_t num_elements = 1; dims[0] = batch_size; dims[1] = 1; for (int64_t i = 0; i < num_dims; ++i) { num_elements *= dims[i]; } TF_Tensor* t = TF_AllocateTensor(TF_STRING, dims, num_dims, sizeof(TF_TString) * num_elements); delete[] dims;
C++ - Registered: Tue Apr 30 12:39:09 GMT 2024 - Last Modified: Mon Apr 15 03:35:10 GMT 2024 - 96.9K bytes - Viewed (3) -
tensorflow/c/eager/c_api_experimental_test.cc
std::vector<TFE_TensorHandle*> result; result.push_back(nullptr); int num_retvals = 1; TFE_Execute(op, result.data(), &num_retvals, status); TFE_DeleteOp(op); ASSERT_TRUE(TF_GetCode(status) == TF_OK) << TF_Message(status); ASSERT_EQ(num_retvals, 1); TF_Tensor* r = TFE_TensorHandleResolve(result[0], status);
C++ - Registered: Tue Apr 30 12:39:09 GMT 2024 - Last Modified: Thu Aug 03 03:14:26 GMT 2023 - 31.5K bytes - Viewed (1) -
tensorflow/c/experimental/filesystem/modular_filesystem.cc
// TensorFlow, so we need to use `plugin_memory_free_` here. char** children = nullptr; const int num_children = ops_->get_children(filesystem_.get(), translated_name.c_str(), &children, plugin_status.get()); if (num_children >= 0) { for (int i = 0; i < num_children; i++) { result->push_back(std::string(children[i])); plugin_memory_free_(children[i]); }
C++ - Registered: Tue Apr 30 12:39:09 GMT 2024 - Last Modified: Wed Sep 06 19:12:29 GMT 2023 - 23.1K bytes - Viewed (0) -
tensorflow/c/eager/c_api_unified_experimental_test.cc
// Build an abstract input tensor. int64_t dims[] = {2, 2}; // Matrices will be 2 x 2 int num_dims = sizeof(dims) / sizeof(dims[0]); float vals[] = {0.0f, 0.0f, 0.0f, 0.0f}; TFE_Context* eager_ctx = TF_ExecutionContextGetTFEContext(ctx, status.get()); TFE_TensorHandle* t = TestMatrixTensorHandleWithInput(eager_ctx, vals, dims, num_dims); TF_AbstractTensor* at = TF_CreateAbstractTensorFromEagerTensor(
C++ - Registered: Tue Apr 30 12:39:09 GMT 2024 - Last Modified: Fri May 19 21:44:52 GMT 2023 - 39.1K bytes - Viewed (0)