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* @license Apache-2.0
*
* Copyright (c) 2026 The Stdlib Authors.
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
'use strict';
// MODULES //
var hasOwnProp = require( '@stdlib/assert/has-own-property' );
var isPlainObject = require( '@stdlib/assert/is-plain-object' );
var isInteger = require( '@stdlib/assert/is-integer' ).isPrimitive;
var isndarrayLike = require( '@stdlib/assert/is-ndarray-like' );
var broadcastScalar = require( '@stdlib/ndarray/base/broadcast-scalar' );
var maybeBroadcastArray = require( '@stdlib/ndarray/base/maybe-broadcast-array' );
var nonCoreShape = require( '@stdlib/ndarray/base/complement-shape' );
var getShape = require( '@stdlib/ndarray/shape' );
var getOrder = require( '@stdlib/ndarray/order' );
var format = require( '@stdlib/string/format' );
var defaults = require( '@stdlib/ndarray/defaults' );
var base = require( './base.js' ).assign;
// VARIABLES //
var DEFAULT_DTYPE = defaults.get( 'dtypes.integer_index' );
// MAIN //
/**
* Returns the index of the last falsy element along an ndarray dimension and assigns the results to a provided output ndarray.
*
* ## Notes
*
* - If unable to find a falsy element along an ndarray dimension, the corresponding element in the returned ndarray is `-1`.
* - The function explicitly treats `NaN` values as falsy.
*
* @param {ndarrayLike} x - input ndarray
* @param {(ndarrayLike|integer)} [fromIndex=-1] - index from which to begin searching
* @param {ndarrayLike} out - output ndarray
* @param {Options} [options] - function options
* @param {integer} [options.dim=-1] - dimension over which to perform operation
* @throws {TypeError} function must be provided at least two arguments
* @throws {TypeError} first argument must be an ndarray-like object
* @throws {TypeError} second argument must be either an ndarray-like object or an integer
* @throws {TypeError} output argument must be an ndarray-like object
* @throws {TypeError} options argument must be an object
* @throws {RangeError} dimension index must not exceed input ndarray bounds
* @throws {RangeError} first argument must have at least one dimension
* @throws {Error} must provide valid options
* @returns {ndarray} output ndarray
*
* @example
* var Float64Array = require( '@stdlib/array/float64' );
* var zeros = require( '@stdlib/ndarray/zeros' );
* var ndarray = require( '@stdlib/ndarray/ctor' );
*
* // Create a data buffer:
* var xbuf = new Float64Array( [ 1.0, 3.0, 0.0, 2.0, 0.0, 4.0 ] );
*
* // Define the shape of the input array:
* var shape = [ 2, 3 ];
*
* // Define the array strides:
* var strides = [ 3, 1 ];
*
* // Define the index offset:
* var offset = 0;
*
* // Create an input ndarray:
* var x = new ndarray( 'float64', xbuf, shape, strides, offset, 'row-major' );
*
* // Create an output ndarray:
* var y = zeros( [ 2 ], {
* 'dtype': 'int32'
* });
*
* // Perform operation:
* var out = assign( x, y );
* // returns <ndarray>[ 2, 1 ]
*
* var bool = ( out === y );
* // returns true
*/
function assign( x, fromIndex, out ) {
var hasOptions;
var options;
var nargs;
var opts;
var fidx;
var iflg;
var ord;
var sh;
var o;
nargs = arguments.length;
if ( !isndarrayLike( x ) ) {
throw new TypeError( format( 'invalid argument. First argument must be an ndarray. Value: `%s`.', x ) );
}
// Resolve input ndarray meta data:
ord = getOrder( x );
// Initialize an options object:
opts = {
'dims': [ -1 ] // default behavior is to perform a reduction over the last dimension
};
// Initialize the `fromIndex` to the last element along a dimension:
fidx = -1;
// Initialize a flag indicating whether the `fromIndex` argument is a scalar:
iflg = true;
// Initialize a flag indicating whether an `options` argument was provided:
hasOptions = false;
// Case: assign( x, out )
if ( nargs <= 2 ) {
o = fromIndex;
if ( !isndarrayLike( o ) ) {
throw new TypeError( format( 'invalid argument. Second argument must be an ndarray. Value: `%s`.', o ) );
}
}
// Case: assign( x, ???, ??? )
else if ( nargs === 3 ) {
// Case: assign( x, from_index, out )
if ( isndarrayLike( out ) ) {
o = out;
// Case: assign( x, from_index_scalar, out )
if ( isInteger( fromIndex ) ) {
fidx = fromIndex;
}
// Case: assign( x, from_index_ndarray, out )
else if ( isndarrayLike( fromIndex ) ) {
fidx = fromIndex;
iflg = false;
}
// Case: assign( x, ???, out )
else {
throw new TypeError( format( 'invalid argument. Second argument must be either an ndarray or an integer. Value: `%s`.', fromIndex ) );
}
}
// Case: assign( x, out, options )
else {
o = fromIndex;
if ( !isndarrayLike( o ) ) {
throw new TypeError( format( 'invalid argument. Second argument must be an ndarray. Value: `%s`.', o ) );
}
options = out;
hasOptions = true;
}
}
// Case: assign( x, from_index, out, options )
else { // nargs > 3
// Case: assign( x, from_index_scalar, out, options )
if ( isInteger( fromIndex ) ) {
fidx = fromIndex;
}
// Case: assign( x, from_index_ndarray, out, options )
else if ( isndarrayLike( fromIndex ) ) {
fidx = fromIndex;
iflg = false;
}
// Case: assign( x, ???, out, options )
else {
throw new TypeError( format( 'invalid argument. Second argument must be either an ndarray or an integer. Value: `%s`.', fromIndex ) );
}
o = out;
if ( !isndarrayLike( o ) ) {
throw new TypeError( format( 'invalid argument. Third argument must be an ndarray. Value: `%s`.', o ) );
}
options = arguments[ 3 ];
hasOptions = true;
}
if ( hasOptions ) {
if ( !isPlainObject( options ) ) {
throw new TypeError( format( 'invalid argument. Options argument must be an object. Value: `%s`.', options ) );
}
// Resolve provided options...
if ( hasOwnProp( options, 'dim' ) ) {
opts.dims[ 0 ] = options.dim;
}
}
// Resolve the list of non-reduced dimensions:
sh = getShape( x );
if ( sh.length < 1 ) {
throw new RangeError( 'invalid argument. First argument must have at least one dimension.' );
}
sh = nonCoreShape( sh, opts.dims );
// Broadcast the `fromIndex` to match the shape of the non-reduced dimensions...
if ( iflg ) {
fidx = broadcastScalar( fidx, DEFAULT_DTYPE, sh, ord );
} else {
fidx = maybeBroadcastArray( fidx, sh );
}
return base( x, fidx, o, opts );
}
// EXPORTS //
module.exports = assign;
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