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Results 51 - 60 of 72 for z_shape (0.11 sec)

  1. tensorflow/c/eager/gradient_checker.cc

      memcpy(theta_data.data(), TF_TensorData(theta_tensor),
             TF_TensorByteSize(theta_tensor));
    
      // Initialize space for the numerical gradient.
      vector<float> dtheta_approx(num_elems);
    
      // Get theta shape and store in theta_dims.
      int num_dims = TF_NumDims(theta_tensor);
      vector<int64_t> theta_dims(num_dims);
      GetDims(theta_tensor, theta_dims.data());
    
      // Initialize auxilary data structures.
    Registered: Tue Nov 05 12:39:12 UTC 2024
    - Last Modified: Sat Oct 12 05:11:17 UTC 2024
    - 7.3K bytes
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  2. tensorflow/c/c_api_internal.h

    };
    
    struct TF_Library {
      void* lib_handle;
      TF_Buffer op_list;
    };
    
    struct TF_Graph {
      TF_Graph();
    
      mutable tensorflow::mutex mu;
      tensorflow::Graph graph TF_GUARDED_BY(mu);
    
      // Runs shape inference.
      tensorflow::ShapeRefiner refiner TF_GUARDED_BY(mu);
    
      // Maps from name of an operation to the Node* in 'graph'.
      std::unordered_map<tensorflow::string, tensorflow::Node*> name_map
          TF_GUARDED_BY(mu);
    
    Registered: Tue Nov 05 12:39:12 UTC 2024
    - Last Modified: Sat May 13 00:49:12 UTC 2023
    - 7.6K bytes
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  3. tensorflow/c/eager/c_api_experimental.h

      // Computes the rank of the tensor handle.
      //
      // Shapes are specified via callbacks because retrieving the shape of a tensor
      // is a blocking operation for async eager; custom devices should avoid
      // retrieving shapes of tensors they wrap until the custom device tensor's
      // shape is explicitly requested where possible.
      int (*num_dims)(void* data, TF_Status* status);
    
      // Computes the axis length at `dim_index`.
    Registered: Tue Nov 05 12:39:12 UTC 2024
    - Last Modified: Wed Feb 21 22:37:46 UTC 2024
    - 39.5K bytes
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  4. guava-tests/test/com/google/common/graph/AbstractStandardUndirectedGraphTest.java

                EndpointPair.unordered(1, 1),
                EndpointPair.unordered(1, 3))
            .inOrder();
      }
    
      /**
       * Populates the graph with nodes and edges in a star shape with node `1` in the middle.
       *
       * <p>Note that the edges are added in a shuffled order to properly test the effect of the
       * insertion order.
       */
      private void populateTShapedGraph() {
        putEdge(2, 1);
    Registered: Fri Nov 01 12:43:10 UTC 2024
    - Last Modified: Tue Jul 02 18:21:29 UTC 2024
    - 12.7K bytes
    - Viewed (0)
  5. android/guava-tests/test/com/google/common/graph/AbstractStandardUndirectedGraphTest.java

                EndpointPair.unordered(1, 1),
                EndpointPair.unordered(1, 3))
            .inOrder();
      }
    
      /**
       * Populates the graph with nodes and edges in a star shape with node `1` in the middle.
       *
       * <p>Note that the edges are added in a shuffled order to properly test the effect of the
       * insertion order.
       */
      private void populateTShapedGraph() {
        putEdge(2, 1);
    Registered: Fri Nov 01 12:43:10 UTC 2024
    - Last Modified: Tue Jul 02 18:21:29 UTC 2024
    - 12.7K bytes
    - Viewed (0)
  6. tensorflow/c/eager/c_api_test.cc

        // .device of shape is GPU since the op is executed on GPU
        device_name = TFE_TensorHandleDeviceName(retvals[0], status.get());
        ASSERT_EQ(TF_OK, TF_GetCode(status.get())) << TF_Message(status.get());
        ASSERT_TRUE(absl::StrContains(device_name, "GPU:0")) << device_name;
    
        // .backing_device of shape is CPU since the tensor is backed by CPU
        backing_device_name =
    Registered: Tue Nov 05 12:39:12 UTC 2024
    - Last Modified: Thu Aug 03 20:50:20 UTC 2023
    - 94.6K bytes
    - Viewed (0)
  7. docs/en/docs/tutorial/dependencies/index.md

    It is just a function that can take all the same parameters that a *path operation function* can take:
    
    {* ../../docs_src/dependencies/tutorial001_an_py310.py hl[8:9] *}
    
    That's it.
    
    **2 lines**.
    
    And it has the same shape and structure that all your *path operation functions* have.
    
    You can think of it as a *path operation function* without the "decorator" (without the `@app.get("/some-path")`).
    
    And it can return anything you want.
    
    Registered: Sun Nov 03 07:19:11 UTC 2024
    - Last Modified: Mon Oct 28 11:18:17 UTC 2024
    - 9.2K bytes
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  8. docs/en/docs/tutorial/schema-extra-example.md

    And Swagger UI has supported this particular `examples` field for a while. So, you can use it to **show** different **examples in the docs UI**.
    
    The shape of this OpenAPI-specific field `examples` is a `dict` with **multiple examples** (instead of a `list`), each with extra information that will be added to **OpenAPI** too.
    
    Registered: Sun Nov 03 07:19:11 UTC 2024
    - Last Modified: Sun Oct 06 20:36:54 UTC 2024
    - 11.6K bytes
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  9. docs/en/docs/tutorial/first-steps.md

    This schema definition includes your API paths, the possible parameters they take, etc.
    
    #### Data "schema"
    
    The term "schema" might also refer to the shape of some data, like a JSON content.
    
    In that case, it would mean the JSON attributes, and data types they have, etc.
    
    #### OpenAPI and JSON Schema
    
    Registered: Sun Nov 03 07:19:11 UTC 2024
    - Last Modified: Sat Oct 26 11:48:16 UTC 2024
    - 11.8K bytes
    - Viewed (0)
  10. tensorflow/c/c_api_function_test.cc

                                                               TF_DeleteStatus);
    
      TF_Tensor* tensor_shape = Int32Tensor({37, 1});
      TF_Operation* shape = Const(tensor_shape, func_graph.get(), s.get(), "shape");
      TF_Operation* random =
          RandomUniform(shape, TF_FLOAT, func_graph.get(), s.get());
    
      TF_Output outputs[] = {{random, 0}};
      *func = TF_GraphToFunction(func_graph.get(), name,
    Registered: Tue Nov 05 12:39:12 UTC 2024
    - Last Modified: Thu Jul 20 22:08:54 UTC 2023
    - 63.6K bytes
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