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Stdlib Authors","url":"https://github.com/stdlib-js/stdlib/graphs/contributors"},"license":"Apache-2.0","homepage":"https://stdlib.io","keywords":["stdlib","base","strided","array","ndarray","nullary","apply","foreach","map","transform","fill"],"repository":{"type":"git","url":"git://github.com/stdlib-js/strided-base-nullary.git"},"description":"Apply a nullary callback and assign results to elements in a strided output array.","contributors":[{"name":"The Stdlib Authors","url":"https://github.com/stdlib-js/stdlib/graphs/contributors"}],"maintainers":[{"name":"stdlib-bot","email":"kgryte+stdlibbot@gmail.com"},{"name":"kgryte","email":"kgryte@gmail.com"},{"name":"planeshifter","email":"pgb@andrew.cmu.edu"},{"name":"rreusser","email":"rsreusser@gmail.com"}],"readme":"<!--\n\n@license Apache-2.0\n\nCopyright (c) 2020 The Stdlib Authors.\n\nLicensed under the Apache License, Version 2.0 (the \"License\");\nyou may not use this file except in compliance with the License.\nYou may obtain a copy of the License at\n\n   http://www.apache.org/licenses/LICENSE-2.0\n\nUnless required by applicable law or agreed to in writing, software\ndistributed under the License is distributed on an \"AS IS\" BASIS,\nWITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.\nSee the License for the specific language governing permissions and\nlimitations under the License.\n\n-->\n\n\n<details>\n  <summary>\n    About stdlib...\n  </summary>\n  <p>We believe in a future in which the web is a preferred environment for numerical computation. To help realize this future, we've built stdlib. stdlib is a standard library, with an emphasis on numerical and scientific computation, written in JavaScript (and C) for execution in browsers and in Node.js.</p>\n  <p>The library is fully decomposable, being architected in such a way that you can swap out and mix and match APIs and functionality to cater to your exact preferences and use cases.</p>\n  <p>When you use stdlib, you can be absolutely certain that you are using the most thorough, rigorous, well-written, studied, documented, tested, measured, and high-quality code out there.</p>\n  <p>To join us in bringing numerical computing to the web, get started by checking us out on <a href=\"https://github.com/stdlib-js/stdlib\">GitHub</a>, and please consider <a href=\"https://opencollective.com/stdlib\">financially supporting stdlib</a>. We greatly appreciate your continued support!</p>\n</details>\n\n# Nullary\n\n[![NPM version][npm-image]][npm-url] [![Build Status][test-image]][test-url] [![Coverage Status][coverage-image]][coverage-url] <!-- [![dependencies][dependencies-image]][dependencies-url] -->\n\n> Apply a nullary callback and assign results to elements in a strided output array.\n\n<section class=\"intro\">\n\n</section>\n\n<!-- /.intro -->\n\n<section class=\"installation\">\n\n## Installation\n\n```bash\nnpm install @stdlib/strided-base-nullary\n```\n\n</section>\n\n<section class=\"usage\">\n\n## Usage\n\n```javascript\nvar nullary = require( '@stdlib/strided-base-nullary' );\n```\n\n#### nullary( arrays, shape, strides, fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```javascript\nvar Float64Array = require( '@stdlib/array-float64' );\n\nfunction fill() {\n    return 3.0;\n}\n\nvar x = new Float64Array( [ -2.0, 1.0, 3.0, -5.0, 4.0, 0.0, -1.0, -3.0 ] );\n\nnullary( [ x ], [ x.length ], [ 1 ], fill );\n// x => <Float64Array>[ 3.0, 3.0, 3.0, 3.0, 3.0, 3.0, 3.0, 3.0 ]\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: array-like object containing one strided output array.\n-   **shape**: array-like object containing a single element, the number of indexed elements.\n-   **strides**: array-like object containing the stride length for the strided output array.\n-   **fcn**: nullary function to apply.\n\nThe `shape` and `strides` parameters determine which elements in the strided output array are accessed at runtime. For example, to index the first `N` elements of the strided output array in reverse order,\n\n```javascript\nvar Float64Array = require( '@stdlib/array-float64' );\n\nfunction fill() {\n    return 3.0;\n}\n\nvar x = new Float64Array( [ -1.0, -2.0, -3.0, -4.0, -5.0, -6.0 ] );\n\nnullary( [ x ], [ 3 ], [ -1 ], fill );\n// x => <Float64Array>[ 3.0, 3.0, 3.0, -4.0, -5.0, -6.0 ]\n```\n\nNote that indexing is relative to the first index. To introduce an offset, use [`typed array`][mdn-typed-array] views.\n\n```javascript\nvar Float64Array = require( '@stdlib/array-float64' );\n\nfunction fill() {\n    return 3.0;\n}\n\n// Initial arrays...\nvar x0 = new Float64Array( [ -1.0, -2.0, -3.0, -4.0, -5.0, -6.0 ] );\n\n// Create offset views...\nvar x1 = new Float64Array( x0.buffer, x0.BYTES_PER_ELEMENT*1 ); // start at 2nd element\n\nnullary( [ x1 ], [ 3 ], [ 1 ], fill );\n// x0 => <Float64Array>[ -1.0, 3.0, 3.0, 3.0, -5.0, -6.0 ]\n```\n\n#### nullary.ndarray( arrays, shape, strides, offsets, fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array using alternative indexing semantics.\n\n```javascript\nvar Float64Array = require( '@stdlib/array-float64' );\n\nfunction fill() {\n    return 3.0;\n}\n\nvar x = new Float64Array( [ -1.0, -2.0, -3.0, -4.0, -5.0 ] );\n\nnullary.ndarray( [ x ], [ x.length ], [ 1 ], [ 0 ], fill );\n// x => <Float64Array>[ 3.0, 3.0, 3.0, 3.0, 3.0 ]\n```\n\nThe function accepts the following additional arguments:\n\n-   **offsets**: array-like object containing the starting index (i.e., index offset) for the strided output array.\n\nWhile [`typed array`][mdn-typed-array] views mandate a view offset based on the underlying `buffer`, the `offsets` parameter supports indexing semantics based on starting indices. For example, to index the last `N` elements in the strided output array,\n\n```javascript\nvar Float64Array = require( '@stdlib/array-float64' );\n\nfunction fill() {\n    return 3.0;\n}\n\nvar x = new Float64Array( [ -1.0, -2.0, -3.0, -4.0, -5.0, -6.0 ] );\n\nnullary.ndarray( [ x ], [ 3 ], [ -1 ], [ x.length-1 ], fill );\n// x => <Float64Array>[ -1.0, -2.0, -3.0, 3.0, 3.0, 3.0 ]\n```\n\n</section>\n\n<!-- /.usage -->\n\n<section class=\"notes\">\n\n</section>\n\n<!-- /.notes -->\n\n<section class=\"examples\">\n\n## Examples\n\n<!-- eslint no-undef: \"error\" -->\n\n```javascript\nvar discreteUniform = require( '@stdlib/random-base-discrete-uniform' ).factory;\nvar filledarray = require( '@stdlib/array-filled' );\nvar nullary = require( '@stdlib/strided-base-nullary' );\n\nvar x = filledarray( 0.0, 10, 'generic' );\nconsole.log( x );\n\nvar shape = [ x.length ];\nvar strides = [ 1 ];\nvar offsets = [ 0 ];\n\nnullary.ndarray( [ x ], shape, strides, offsets, discreteUniform( -100, 100 ) );\nconsole.log( x );\n```\n\n</section>\n\n<!-- /.examples -->\n\n<!-- C interface documentation. -->\n\n* * *\n\n<section class=\"c\">\n\n## C APIs\n\n<!-- Section to include introductory text. Make sure to keep an empty line after the intro `section` element and another before the `/section` close. -->\n\n<section class=\"intro\">\n\nCharacter codes for data types:\n\n<!-- The following is auto-generated. Do not manually edit. See scripts/loops.js. -->\n\n<!-- charcodes -->\n\n-   **x**: `bool` (boolean).\n-   **z**: `complex128` (double-precision floating-point complex number).\n-   **c**: `complex64` (single-precision floating-point complex number).\n-   **f**: `float32` (single-precision floating-point number).\n-   **d**: `float64` (double-precision floating-point number).\n-   **k**: `int16` (signed 16-bit integer).\n-   **i**: `int32` (signed 32-bit integer).\n-   **s**: `int8` (signed 8-bit integer).\n-   **t**: `uint16` (unsigned 16-bit integer).\n-   **u**: `uint32` (unsigned 32-bit integer).\n-   **b**: `uint8` (unsigned 8-bit integer).\n\n<!-- ./charcodes -->\n\nFunction name suffix naming convention:\n\n```text\nstdlib_strided_<output_data_type>[_as_<callback_return_data_type>]\n```\n\nFor example,\n\n<!-- run-disable -->\n\n```c\nvoid stdlib_strided_d(...) {...}\n```\n\nis a function which accepts one double-precision floating-point strided output array. In other words, the suffix encodes the function type signature.\n\nTo support callbacks whose return values are of a different data type than the strided output array data type, the naming convention supports appending an `as` suffix. For example,\n\n<!-- run-disable -->\n\n```c\nvoid stdlib_strided_f_as_d(...) {...}\n```\n\nis a function which accepts one single-precision floating-point strided output array. However, the callback returns double-precision floating-point numbers. Accordingly, the output value needs to be cast using the following conversion sequence\n\n```c\n// Evaluate the callback:\ndouble out = f();\n\n// Convert the callback return value to single-precision:\ny[ i ] = (float)out;\n```\n\n</section>\n\n<!-- /.intro -->\n\n<!-- C usage documentation. -->\n\n<section class=\"usage\">\n\n### Usage\n\n```c\n#include \"stdlib/strided/base/nullary.h\"\n```\n\n<!-- The following is auto-generated. Do not manually edit. See scripts/loops.js. -->\n\n<!-- loops -->\n\n#### stdlib_strided_b( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 1 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic uint8_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_b( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `uint8_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_b( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_c( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include \"stdlib/complex/float32/ctor.h\"\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 8 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic stdlib_complex64_t fcn( void ) {\n    // ...\n}\n\n// Apply the callback:\nstdlib_strided_c( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `stdlib_complex64_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_c( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_c_as_b( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 8 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic uint8_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_c_as_b( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `uint8_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_c_as_b( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_c_as_f( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 8 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic float fcn( void ) {\n    return 3.0f;\n}\n\n// Apply the callback:\nstdlib_strided_c_as_f( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `float (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_c_as_f( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_c_as_k( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 8 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic int16_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_c_as_k( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `int16_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_c_as_k( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_c_as_s( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 8 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic int8_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_c_as_s( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `int8_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_c_as_s( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_c_as_t( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 8 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic uint16_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_c_as_t( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `uint16_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_c_as_t( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_c_as_z( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include \"stdlib/complex/float64/ctor.h\"\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 8 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic stdlib_complex128_t fcn( void ) {\n    // ...\n}\n\n// Apply the callback:\nstdlib_strided_c_as_z( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `stdlib_complex128_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_c_as_z( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_d( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 8 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic double fcn( void ) {\n    return 3.0;\n}\n\n// Apply the callback:\nstdlib_strided_d( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `double (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_d( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_d_as_b( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 8 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic uint8_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_d_as_b( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `uint8_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_d_as_b( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_d_as_f( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 8 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic float fcn( void ) {\n    return 3.0f;\n}\n\n// Apply the callback:\nstdlib_strided_d_as_f( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `float (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_d_as_f( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_d_as_i( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 8 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic int32_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_d_as_i( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `int32_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_d_as_i( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_d_as_k( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 8 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic int16_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_d_as_k( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `int16_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_d_as_k( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_d_as_s( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 8 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic int8_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_d_as_s( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `int8_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_d_as_s( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_d_as_t( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 8 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic uint16_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_d_as_t( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `uint16_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_d_as_t( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_d_as_u( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 8 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic uint32_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_d_as_u( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `uint32_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_d_as_u( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_f( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 4 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic float fcn( void ) {\n    return 3.0f;\n}\n\n// Apply the callback:\nstdlib_strided_f( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `float (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_f( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_f_as_b( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 4 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic uint8_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_f_as_b( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `uint8_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_f_as_b( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_f_as_d( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 4 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic double fcn( void ) {\n    return 3.0;\n}\n\n// Apply the callback:\nstdlib_strided_f_as_d( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `double (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_f_as_d( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_f_as_k( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 4 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic int16_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_f_as_k( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `int16_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_f_as_k( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_f_as_s( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 4 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic int8_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_f_as_s( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `int8_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_f_as_s( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_f_as_t( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 4 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic uint16_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_f_as_t( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `uint16_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_f_as_t( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_i( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 4 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic int32_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_i( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `int32_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_i( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_i_as_b( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 4 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic uint8_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_i_as_b( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `uint8_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_i_as_b( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_i_as_k( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 4 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic int16_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_i_as_k( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `int16_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_i_as_k( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_i_as_s( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 4 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic int8_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_i_as_s( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `int8_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_i_as_s( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_i_as_t( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 4 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic uint16_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_i_as_t( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `uint16_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_i_as_t( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_k( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 2 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic int16_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_k( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `int16_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_k( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_k_as_b( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 2 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic uint8_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_k_as_b( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `uint8_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_k_as_b( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_k_as_s( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 2 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic int8_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_k_as_s( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `int8_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_k_as_s( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_s( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 1 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic int8_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_s( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `int8_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_s( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_t( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 2 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic uint16_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_t( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `uint16_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_t( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_t_as_b( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 2 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic uint8_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_t_as_b( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `uint8_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_t_as_b( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_u( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 4 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic uint32_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_u( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `uint32_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_u( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_u_as_b( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 4 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic uint8_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_u_as_b( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `uint8_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_u_as_b( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_u_as_t( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 4 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic uint16_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_u_as_t( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `uint16_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_u_as_t( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_x( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdbool.h>\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 1 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic bool fcn( void ) {\n    return true;\n}\n\n// Apply the callback:\nstdlib_strided_x( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `bool (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_x( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_z( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include \"stdlib/complex/float64/ctor.h\"\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 16 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic stdlib_complex128_t fcn( void ) {\n    // ...\n}\n\n// Apply the callback:\nstdlib_strided_z( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `stdlib_complex128_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_z( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_z_as_b( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 16 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic uint8_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_z_as_b( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `uint8_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_z_as_b( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_z_as_c( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include \"stdlib/complex/float32/ctor.h\"\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 16 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic stdlib_complex64_t fcn( void ) {\n    // ...\n}\n\n// Apply the callback:\nstdlib_strided_z_as_c( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `stdlib_complex64_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_z_as_c( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_z_as_d( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 16 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic double fcn( void ) {\n    return 3.0;\n}\n\n// Apply the callback:\nstdlib_strided_z_as_d( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `double (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_z_as_d( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_z_as_f( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 16 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic float fcn( void ) {\n    return 3.0f;\n}\n\n// Apply the callback:\nstdlib_strided_z_as_f( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `float (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_z_as_f( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_z_as_i( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 16 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic int32_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_z_as_i( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `int32_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_z_as_i( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_z_as_k( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 16 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic int16_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_z_as_k( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `int16_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_z_as_k( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_z_as_s( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 16 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic int8_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_z_as_s( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided array.\n-   **fcn**: `[in] void*` a `int8_t (*f)()` function to apply provided as a `void` pointer.\n\n```c\nvoid stdlib_strided_z_as_s( uint8_t *arrays[], const int64_t *shape, const int64_t *strides, void *fcn );\n```\n\n#### stdlib_strided_z_as_t( \\*arrays\\[], \\*shape, \\*strides, \\*fcn )\n\nApplies a nullary callback and assigns results to elements in a strided output array.\n\n```c\n#include <stdint.h>\n\n// Create underlying byte arrays:\nuint8_t out[] = { 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };\n\n// Define a pointer to an array containing pointers to strided arrays:\nuint8_t *arrays[] = { out };\n\n// Define the strides:\nint64_t strides[] = { 16 };\n\n// Define the number of elements over which to iterate:\nint64_t shape[] = { 3 };\n\n// Define a callback:\nstatic uint16_t fcn( void ) {\n    return 3;\n}\n\n// Apply the callback:\nstdlib_strided_z_as_t( arrays, shape, strides, (void *)fcn );\n```\n\nThe function accepts the following arguments:\n\n-   **arrays**: `[inout] uint8_t**` array whose only element is a pointer to a strided output array.\n-   **shape**: `[in] int64_t*` array whose only element is the number of elements over which to iterate.\n-   **strides**: `[in] int64_t*` array containing strides (in bytes) for each strided ar","readmeFilename":"README.md"}