Press n or j to go to the next uncovered block, b, p or k for the previous block.
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 | 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 2x 50x 50x 50x 50x 50x 50x 50x 50x 50x 4x 4x 50x 4x 4x 50x 4x 4x 50x 3x 3x 50x 3x 3x 50x 16x 16x 16x 16x 50x 6x 6x 50x 6x 6x 20x 50x 10x 10x 10x 10x 10x 10x 10x 10x 10x 10x 20x 50x 2x 2x 2x 2x 2x | /** * @license Apache-2.0 * * Copyright (c) 2025 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 max = require( '@stdlib/math/base/special/fast/max' ); var isLayout = require( '@stdlib/blas/base/assert/is-layout' ); var isMatrixTriangle = require( '@stdlib/blas/base/assert/is-matrix-triangle' ); var isMatrixTranspose = require( '@stdlib/blas/base/assert/is-transpose-operation' ); var isColumnMajor = require( '@stdlib/ndarray/base/assert/is-column-major-string' ); var format = require( '@stdlib/string/format' ); var base = require( './base.js' ); // MAIN // /** * Performs one of the symmetric rank `K` operations `C = α*A*A**T + β*C` or `C = α*A**T*A + β*C` where `α` and `β` are scalars, `C` is an `N` by `N` symmetric matrix and `A` is an `N` by `K` matrix in the first case and a `K` by `N` matrix in the second case. * * @param {string} order - storage layout * @param {string} uplo - specifies whether the upper or lower triangular part of the symmetric matrix `C` is supplied * @param {string} trans - specifies whether `A` should be transposed, conjugate-transposed, or not transposed * @param {NonNegativeInteger} N - order of the matrix `C` * @param {NonNegativeInteger} K - number of columns or number of rows of the matrix `A` * @param {number} alpha - scalar constant * @param {Float64Array} A - first matrix * @param {PositiveInteger} LDA - stride of the first dimension of `A` (a.k.a., leading dimension of the matrix `A`) * @param {number} beta - scalar constant * @param {Float64Array} C - second matrix * @param {PositiveInteger} LDC - stride of the first dimension of `C` (a.k.a., leading dimension of the matrix `C`) * @throws {TypeError} first argument must be a valid order * @throws {TypeError} second argument must be a valid side * @throws {TypeError} third argument must specify whether the lower or upper triangular matrix is supplied. * @throws {RangeError} fourth argument must be a nonnegative integer * @throws {RangeError} fifth argument must be a nonnegative integer * @throws {RangeError} eighth argument must be greater than or equal to max(1,N) when `A` is not transposed and max(1,K) otherwise * @throws {RangeError} eleventh argument must be greater than or equal to max(1,N) * @returns {Float64Array} `C` * * @example * var Float64Array = require( '@stdlib/array/float64' ); * * var A = new Float64Array( [ 1.0, 2.0, 3.0, 4.0, 5.0, 6.0, 7.0, 8.0, 9.0 ] ); * var C = new Float64Array( [ 1.0, 2.0, 3.0, 0.0, 4.0, 5.0, 0.0, 0.0, 6.0 ] ); * * dsyrk( 'row-major', 'upper', 'no-transpose', 3, 3, 1.0, A, 3, 1.0, C, 3 ); * // C => <Float64Array>[ 15.0, 34.0, 53.0, 0.0, 81.0, 127.0, 0.0, 0.0, 200.0 ] */ function dsyrk( order, uplo, trans, N, K, alpha, A, LDA, beta, C, LDC ) { // eslint-disable-line max-params var nrowsa; var iscm; var sa1; var sa2; var sc1; var sc2; if ( !isLayout( order ) ) { throw new TypeError( format( 'invalid argument. First argument must be a valid order. Value: `%s`.', order ) ); } if ( !isMatrixTriangle( uplo ) ) { throw new TypeError( format( 'invalid argument. Second argument must specify whether the lower or upper triangular matrix is supplied. Value: `%s`.', uplo ) ); } if ( !isMatrixTranspose( trans ) ) { throw new TypeError( format( 'invalid argument. Third argument must be a valid transpose operation. Value: `%s`.', trans ) ); } if ( N < 0 ) { throw new RangeError( format( 'invalid argument. Fourth argument must be a nonnegative integer. Value: `%d`.', N ) ); } if ( K < 0 ) { throw new RangeError( format( 'invalid argument. Fifth argument must be a nonnegative integer. Value: `%d`.', K ) ); } if ( trans === 'no-transpose' ) { nrowsa = N; } else { nrowsa = K; } if ( LDA < max( 1, nrowsa ) ) { throw new RangeError( format( 'invalid argument. Eighth argument must be greater than or equal to max(1,%d). Value: `%d`.', nrowsa, LDA ) ); } if ( LDC < max( 1, N ) ) { throw new RangeError( format( 'invalid argument. Eleventh argument must be greater than or equal to max(1,%d). Value: `%d`.', N, LDC ) ); } iscm = isColumnMajor( order ); if ( iscm ) { sa1 = 1; sa2 = LDA; sc1 = 1; sc2 = LDC; } else { // order === 'row-major' sa1 = LDA; sa2 = 1; sc1 = LDC; sc2 = 1; } return base( uplo, trans, N, K, alpha, A, sa1, sa2, 0, beta, C, sc1, sc2, 0 ); // eslint-disable-line max-len } // EXPORTS // module.exports = dsyrk; |