@stdlib/strided-base-cmap
Apply a unary function to a single-precision complex floating-point strided input array and assign results to a single-precision complex floating-point strided output array.
Apply a unary function to a single-precision complex floating-point strided input array and assign results to a single-precision complex floating-point strided output array.
C API for registering a Node-API module exporting a strided array interface for applying a unary callback to a single-precision complex floating-point strided input array and assigning results to a single-precision complex floating-point strided output ar
C API for registering a Node-API module exporting a strided array interface for applying a unary callback to a single-precision floating-point strided input array and assigning results to a single-precision floating-point strided output array.
C API for registering a Node-API module exporting a strided array interface for applying a binary callback to single-precision floating-point strided input arrays and assigning results to a single-precision floating-point strided output array.
C API for registering a Node-API module exporting a strided array interface for applying a unary callback to a single-precision floating-point strided input array according to a strided mask array and assigning results to a single-precision floating-poin
C API for registering a Node-API module exporting a strided array interface for applying a binary callback to single-precision floating-point strided input arrays according to a strided mask array and assigning results to a single-precision floating-point
Test if a value is a 2-dimensional ndarray-like object containing single-precision floating-point numbers.
Test if a value is an ndarray-like object containing single-precision floating-point numbers.
Test if a value is a 1-dimensional ndarray-like object containing single-precision floating-point numbers.
Evaluate the signum function for a single-precision floating-point number.
Return the positive difference between `x` and `y`.