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Results 1 - 10 of 30 for out_dims (0.23 sec)

  1. tensorflow/c/eager/gradient_checker.cc

               int32_t step = 1) {
      for (int32_t i = start; i < end; i += step) {
        (*data)[i] = i;
      }
    }
    
    // Fills out_dims with the dimensions of the given tensor.
    void GetDims(const TF_Tensor* t, int64_t* out_dims) {
      int num_dims = TF_NumDims(t);
      for (int i = 0; i < num_dims; i++) {
        out_dims[i] = TF_Dim(t, i);
      }
    }
    
    // Runs model as is if output is a scalar,
    // else sums the output tensor before returning.
    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/eager/c_api_unified_experimental_graph.cc

        DCHECK(shape != nullptr);
        TF_Status status;
        int num_dims = TF_GraphGetTensorNumDims(graph_, output_, &status);
        DCHECK_GE(num_dims, -1);
        TF_RETURN_IF_ERROR(StatusFromTF_Status(&status));
        if (num_dims == kUnknownRank) {
          return absl::OkStatus();
        }
    
        std::vector<int64_t> dims(num_dims, kUnknownDim);
        TF_GraphGetTensorShape(graph_, output_,
    Registered: Tue Nov 05 12:39:12 UTC 2024
    - Last Modified: Sat Oct 12 05:11:17 UTC 2024
    - 15.7K bytes
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  3. tensorflow/c/c_api_experimental.cc

                                     const int64_t* dims, int num_dims) {
      DCHECK(index >= 0 && index < shape_list->num_items);
      TF_ShapeAndType& shape = shape_list->items[index];
      DCHECK(shape.dims == nullptr) << "Shape at " << index << " is already set!";
      DCHECK(num_dims >= 0) << "Number of dimensions cannot be negative!";
      shape.num_dims = num_dims;
      shape.dims = new int64_t[num_dims];
      memcpy(shape.dims, dims, sizeof(int64_t) * num_dims);
    Registered: Tue Nov 05 12:39:12 UTC 2024
    - Last Modified: Sat Oct 12 16:27:48 UTC 2024
    - 29.5K bytes
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  4. tensorflow/c/eager/c_api_test_util.h

                                                      int num_dims);
    
    // Get a Matrix TensorHandle with given float values and dimensions
    TFE_TensorHandle* TestTensorHandleWithDimsFloat(TFE_Context* ctx, float data[],
                                                    int64_t dims[], int num_dims);
    
    // Get a Matrix TensorHandle with given int values and dimensions
    Registered: Tue Nov 05 12:39:12 UTC 2024
    - Last Modified: Mon Jul 17 23:43:59 UTC 2023
    - 7.7K bytes
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  5. tensorflow/c/eager/c_api.cc

          } else {
            const auto num_dims = tensor_shape.dim_size();
            std::unique_ptr<int64_t[]> dims(new int64_t[num_dims]);
            for (int i = 0; i < num_dims; ++i) {
              dims[i] = tensor_shape.dim(i).size();
            }
            TFE_OpSetAttrShape(op, attr_name, dims.get(), num_dims, status);
          }
        } break;
        case tensorflow::AttrValue::kFunc: {
    Registered: Tue Nov 05 12:39:12 UTC 2024
    - Last Modified: Sat Oct 12 05:11:17 UTC 2024
    - 43.9K bytes
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  6. tensorflow/c/eager/gradients.cc

                              const int64_t* dims, const int num_dims,
                              ForwardOperation* forward_op_) {
      if (num_dims > TensorShape::MaxDimensions()) {
        return errors::InvalidArgument("Value specified for `", attr_name, "` has ",
                                       num_dims,
                                       " dimensions which is over the limit of ",
    Registered: Tue Nov 05 12:39:12 UTC 2024
    - Last Modified: Sat Oct 12 05:11:17 UTC 2024
    - 19.7K bytes
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  7. tensorflow/c/c_test_util.h

    TF_Tensor* BoolTensor(int32_t v);
    
    // Create a tensor with values of type TF_INT8 provided by `values`.
    TF_Tensor* Int8Tensor(const int64_t* dims, int num_dims, const char* values);
    
    // Create a tensor with values of type TF_INT32 provided by `values`.
    TF_Tensor* Int32Tensor(const int64_t* dims, int num_dims,
                           const int32_t* values);
    
    // Create 1 dimensional tensor with values from `values`
    Registered: Tue Nov 05 12:39:12 UTC 2024
    - Last Modified: Thu Aug 09 01:06:53 UTC 2018
    - 6K bytes
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  8. tensorflow/c/c_api_experimental_test.cc

        CHECK_EQ(output_shapes->num_items, 1);
    
        int num_dims = output_shapes->items[0].num_dims;
        int64_t* dims = output_shapes->items[0].dims;
    
        if (!expected_shape.has_value()) {
          EXPECT_EQ(num_dims, -1);
          EXPECT_EQ(dims, nullptr);
          return;
        }
    
        EXPECT_EQ(num_dims, expected_shape->size());
        for (size_t i = 0; i < num_dims; ++i) {
          EXPECT_EQ(dims[i], (*expected_shape)[i]);
        }
    Registered: Tue Nov 05 12:39:12 UTC 2024
    - Last Modified: Tue Jan 17 22:27:52 UTC 2023
    - 13.1K bytes
    - Viewed (0)
  9. 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(
    Registered: Tue Nov 05 12:39:12 UTC 2024
    - Last Modified: Sat Oct 12 05:11:17 UTC 2024
    - 39.1K bytes
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  10. tensorflow/c/c_api.h

                                                        TF_Status* status);
    
    // Fills in `dims` with the list of shapes in the attribute `attr_name` of
    // `oper` and `num_dims` with the corresponding number of dimensions. On return,
    // for every i where `num_dims[i]` > 0, `dims[i]` will be an array of
    // `num_dims[i]` elements. A value of -1 for `num_dims[i]` indicates that the
    Registered: Tue Nov 05 12:39:12 UTC 2024
    - Last Modified: Thu Oct 26 21:08:15 UTC 2023
    - 82.3K bytes
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