[object Object]

[object Object][object Object]undefined
[object Object]
  • Description: Returns the variance over the value of the specified dimension of the input tensor.
  • Calculation formula: If [object Object] is [object Object], the dimension is calculated. [object Object] is the shape. [object Object] is used to compute the average value [object Object] in the dimension.out=1max(0,NδN)j=0N1(selfijxiˉ)2out = \frac{1}{max(0, N - \delta N)}\sum_{j=0}^{N-1}(self_{ij}-\bar{x_{i}})^2 If [object Object], the dimension is retained after the reduce operation, and the value of the dimension in the output shape is 1. If [object Object], the dimension is not retained. When [object Object] is [object Object] or [object Object], all dimensions are calculated.
[object Object]

Each operator has calls. First, [object Object] is called to obtain the workspace size required for computation and the executor that contains the operator computation process. Then, [object Object] is called to perform computation.

  • [object Object]
  • [object Object]
[object Object]
  • Parameters

    • [object Object] (aclTensor*, compute input): input [object Object] in the formula. The shape supports 0 to 8 dimensions. The data types of [object Object] and [object Object] must meet the . are supported. The can be ND.
      • [object Object]Atlas inference products[object Object] and [object Object]Atlas training products[object Object]: The data type can be FLOAT16 or FLOAT.
      • [object Object]Atlas A2 training products/Atlas A2 inference products[object Object], [object Object]Atlas A3 training products/Atlas A3 inference products[object Object]: The data type can be BFLOAT16, FLOAT16, or FLOAT.
    • [object Object] (aclIntArray*, input): [object Object] in the formula. It is [object Object] on the host, indicating the dimension involved in computation. The value range is [-self.dim(), self.dim()-1], and the data must be unique. The supported data type is INT64. When [object Object] is [object Object] or [object Object], all dimensions are calculated.
    • [object Object] (int64_t, input): input [object Object] in the formula, correction value. The data type is int64_t.
    • [object Object] (bool, input): whether to retain the dimension of the reduced axis. The data type is bool.
    • [object Object] (aclTensor*, compute output): [object Object] in the formula. The shapes of [object Object] and [object Object] must meet the . are supported. The can be ND.
      • [object Object]Atlas inference products[object Object] and [object Object]Atlas training products[object Object]: The data type can be FLOAT16 or FLOAT.
      • [object Object]Atlas A2 training products/Atlas A2 inference products[object Object], [object Object]Atlas A3 training products/Atlas A3 inference products[object Object]: The data type can be BFLOAT16, FLOAT16, or FLOAT.
    • [object Object] (uint64_t*, output): size of the workspace to be allocated on the device.
    • [object Object] (aclOpExecutor**, output): operator executor, containing the operator computation process.
  • Returns:

[object Object]: status code. For details, see .

[object Object]
[object Object]
  • Parameters

    • [object Object] (void*, input): address of the workspace to be allocated on the device.
    • [object Object] (uint64_t, input): size of the workspace to be allocated on the device, which is obtained by calling [object Object].
    • [object Object] (aclOpExecutor*, input): operator executor, containing the operator computation process.
    • [object Object] (aclrtStream, input): stream for executing the task.
  • Returns:

[object Object]: status code. For details, see .

[object Object]
  • Deterministic computing:
    • [object Object] defaults to a deterministic implementation.
[object Object]

The following example is for reference only. For details, see .

[object Object]