[object Object]

[object Object][object Object]undefined
[object Object]
  • Description: Performs the sinh operation on the input tensor.

  • Formula:

    out= sinh(self)out = {\ {{sinh}{(self)}}}
  • Example:

    [object Object]
[object Object]
  • [object Object] and [object Object] implement the same function in different ways. Select a proper operator based on your requirements.
    • [object Object]: An output tensor object needs to be created to store the computation result.
    • [object Object]: No output tensor object needs to be created, and the computation result is stored in the memory of the input tensor.
  • Each operator has calls. First, [object Object] is called to obtain the input parameters and compute the required workspace size based on the process. Then, [object Object] is called to perform computation.
    • [object Object]
    • [object Object]
    • [object Object]
    • [object Object]
[object Object]
  • Parameters:

    • [object Object] (aclTensor*, computation input): [object Object] in the formula, aclTensor on the device. The shape must be the same as that of [object Object]. are supported. The can be ND. The shape cannot be greater than 8 dimensions. The data type must meet the type deduction rules with [object Object].
      • [object Object]Atlas inference products[object Object] and [object Object]Atlas training products[object Object]: The data type can be INT8, INT16, INT32, INT64, UINT8, BOOL, FLOAT16, FLOAT, DOUBLE, COMPLEX64, or COMPLEX128.
      • [object Object]Atlas A2 training products/Atlas A2 inference products[object Object] and [object Object]Atlas A3 training products/Atlas A3 inference products[object Object];: The data type can be INT8, INT16, INT32, INT64, UINT8, BOOL, FLOAT16, BFLOAT16, FLOAT, DOUBLE, COMPLEX64, or COMPLEX128.
    • [object Object] (aclTensor *, computation output): [object Object] in the formula, aclTensor on the device. The shape must be the same as that of [object Object]. are supported. The can be ND. The data type must meet the type deduction rules with [object Object].
      • [object Object]Atlas inference products[object Object] and [object Object]Atlas training products[object Object]: The data type can be FLOAT16, FLOAT, DOUBLE, COMPLEX64, or COMPLEX128.
      • [object Object]Atlas A2 training products/Atlas A2 inference products[object Object] and [object Object]Atlas A3 training products/Atlas A3 inference products[object Object]: The data type can be FLOAT16, FLOAT, DOUBLE, COMPLEX64, COMPLEX128, or BFLOAT16.
    • [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]
  • Parameters:

    • [object Object] (aclTensor*, computation input | computation output): [object Object] in the formula. 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, FLOAT, DOUBLE, COMPLEX64, or COMPLEX128.
      • [object Object]Atlas A2 training products/Atlas A2 inference products[object Object] and [object Object]Atlas A3 training products/Atlas A3 inference products[object Object]: The data type can be FLOAT16, FLOAT, DOUBLE, COMPLEX64, COMPLEX128, or BFLOAT16.
    • [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 compute:
    • [object Object] defaults to a deterministic implementation.
[object Object]

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

[object Object]

aclnnInplaceSinh sample code:

[object Object]