mathjs
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Math.js is an extensive math library for JavaScript and Node.js. It features a flexible expression parser and offers an integrated solution to work with numbers, big numbers, complex numbers, units, and matrices.
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JavaScript
// test lup
var assert = require('assert'),
approx = require('../../../../tools/approx'),
math = require('../../../../index');
describe('lup', function () {
it('should decompose matrix, n x n, no permutations, array', function () {
var m = [[2, 1], [1, 4]];
var r = math.lup(m);
// L
assert.deepEqual(r.L.valueOf(), [[1, 0], [0.5, 1]]);
// U
assert.deepEqual(r.U.valueOf(), [[2, 1], [0, 3.5]]);
// P
assert.deepEqual(r.p, [0, 1]);
// verify
approx.deepEqual(math.multiply(_p(r.p), m).valueOf(), math.multiply(r.L, r.U).valueOf());
});
it('should decompose matrix, n x n, no permutations, sparse', function () {
var m = math.matrix([[2, 1], [1, 4]], 'sparse');
var r = math.lup(m);
// L
assert.deepEqual(r.L.valueOf(), [[1, 0], [0.5, 1]]);
// U
assert.deepEqual(r.U.valueOf(), [[2, 1], [0, 3.5]]);
// P
assert.deepEqual(r.p, [0, 1]);
// verify
approx.deepEqual(math.multiply(_p(r.p), m).valueOf(), math.multiply(r.L, r.U).valueOf());
});
it('should decompose matrix, n x n, no permutations, dense format', function () {
var m = math.matrix([[2, 1], [1, 4]], 'dense');
var r = math.lup(m);
// L
assert.deepEqual(r.L.valueOf(), [[1, 0], [0.5, 1]]);
// U
assert.deepEqual(r.U.valueOf(), [[2, 1], [0, 3.5]]);
// P
assert.deepEqual(r.p, [0, 1]);
// verify
approx.deepEqual(math.multiply(_p(r.p), m).valueOf(), math.multiply(r.L, r.U).valueOf());
});
it('should decompose matrix, m x n, m < n, no permutations, dense format', function () {
var m = math.matrix(
[
[],
[]
]
);
var r = math.lup(m);
// L
assert.deepEqual(
r.L,
math.matrix(
[
[],
[]
]
));
// U
assert.deepEqual(
r.U,
math.matrix(
[
[],
[]
]
));
// P
assert.deepEqual(r.p, [0, 1]);
// verify
approx.deepEqual(math.multiply(_p(r.p), m).valueOf(), math.multiply(r.L, r.U).valueOf());
});
it('should decompose matrix, m x n, m > n, no permutations, dense format', function () {
var m = math.matrix(
[
[],
[],
[]
]
);
var r = math.lup(m);
// L
assert.deepEqual(
r.L,
math.matrix(
[
[],
[],
[]
]
));
// U
assert.deepEqual(
r.U,
math.matrix(
[
[],
[]
]
));
// P
assert.deepEqual(r.p, [0, 1, 2]);
// verify
approx.deepEqual(math.multiply(_p(r.p), m).valueOf(), math.multiply(r.L, r.U).valueOf());
});
it('should decompose matrix, n x n, dense format', function () {
var m = math.matrix(
[
[],
[-120, 1200, -2700, 1680],
[],
[-140, 1680, -4200, 2800]
]
);
var r = math.lup(m);
// L
approx.deepEqual(
r.L.valueOf(),
[
[],
[-0.5, 1, 0, 0],
[-0.5833333333333334, -0.7, 1, 0],
[]
]);
// U
approx.deepEqual(
r.U.valueOf(),
[
[],
[],
[],
[]
]);
// P
assert.deepEqual(r.p, [3, 1, 0, 2]);
// verify
approx.deepEqual(math.multiply(_p(r.p), m).valueOf(), math.multiply(r.L, r.U).valueOf());
});
it('should decompose matrix, 3 x 3, zero pivote value, dense format', function () {
var m = math.matrix(
[
[],
[],
[]
]);
var r = math.lup(m);
// L
approx.deepEqual(
r.L.valueOf(),
[
[],
[],
[]
]);
// U
approx.deepEqual(
r.U.valueOf(),
[
[],
[],
[]
]);
// P
assert.deepEqual(r.p, [2, 1, 0]);
// verify
approx.deepEqual(math.multiply(_p(r.p), m).valueOf(), math.multiply(r.L, r.U).valueOf());
});
it('should decompose matrix, 3 x 2, complex numbers, dense format', function () {
var m = math.matrix(
[
[],
[],
[]
]);
var r = math.lup(m);
// L
approx.deepEqual(
r.L.valueOf(),
[
[],
[],
[]
]);
// U
approx.deepEqual(
r.U.valueOf(),
[
[],
[]
]);
// P
assert.deepEqual(r.p, [0, 1, 2]);
// verify
approx.deepEqual(math.multiply(_p(r.p), m).valueOf(), math.multiply(r.L, r.U).valueOf());
});
it('should decompose matrix, m x n, m < n, no permutations, sparse', function () {
var m = math.matrix(
[
[],
[]
],
'sparse');
var r = math.lup(m);
// L
assert.deepEqual(
r.L.valueOf(),
[
[],
[]
]);
// U
assert.deepEqual(
r.U.valueOf(),
[
[],
[]
]);
// P
assert.deepEqual(r.p, [0, 1]);
// verify
approx.deepEqual(math.multiply(_p(r.p), m).valueOf(), math.multiply(r.L, r.U).valueOf());
});
it('should decompose matrix, m x n, m > n, no permutations, sparse', function () {
var m = math.matrix(
[
[],
[],
[]
],
'sparse');
var r = math.lup(m);
// L
assert.deepEqual(
r.L.valueOf(),
[
[],
[],
[]
]);
// U
assert.deepEqual(
r.U.valueOf(),
[
[],
[]
]);
// P
assert.deepEqual(r.p, [0, 1, 2]);
// verify
approx.deepEqual(math.multiply(_p(r.p), m).valueOf(), math.multiply(r.L, r.U).valueOf());
});
it('should decompose matrix, n x n, sparse', function () {
var m = math.matrix(
[
[],
[-120, 1200, -2700, 1680],
[],
[-140, 1680, -4200, 2800]
],
'sparse');
var r = math.lup(m);
// L
approx.deepEqual(
r.L.valueOf(),
[
[],
[-0.5, 1, 0, 0],
[-0.5833333333333334, -0.7, 1, 0],
[]
]);
// U
approx.deepEqual(
r.U.valueOf(),
[
[],
[],
[],
[]
]);
// P
assert.deepEqual(r.p, [3, 1, 0, 2]);
// verify
approx.deepEqual(math.multiply(_p(r.p), m).valueOf(), math.multiply(r.L, r.U).valueOf());
});
it('should decompose matrix, 3 x 3, zero pivote value, sparse', function () {
var m = math.matrix(
[
[],
[],
[]
],
'sparse');
var r = math.lup(m);
// L
approx.deepEqual(
r.L.valueOf(),
[
[],
[],
[]
]);
// U
approx.deepEqual(
r.U.valueOf(),
[
[],
[],
[]
]);
// P
assert.deepEqual(r.p, [2, 1, 0]);
// verify
approx.deepEqual(math.multiply(_p(r.p), m).valueOf(), math.multiply(r.L, r.U).valueOf());
});
it('should decompose matrix, 3 x 2, complex numbers, sparse', function () {
var m = math.matrix(
[
[],
[],
[]
], 'sparse');
var r = math.lup(m);
// L
approx.deepEqual(
r.L.valueOf(),
[
[],
[],
[]
]);
// U
approx.deepEqual(
r.U.valueOf(),
[
[],
[]
]);
// P
assert.deepEqual(r.p, [0, 1, 2]);
// verify
approx.deepEqual(math.multiply(_p(r.p), m).valueOf(), math.multiply(r.L, r.U).valueOf());
});
/**
* Creates a Matrix out of a row permutation vector
*/
function _p(p) {
// identity matrix
var identity = math.eye(p.length);
// array
var data = [];
// loop rows
for (var i = 0, l = p.length; i < l; i++) {
// swap row
data[p[i]] = identity._data[i];
}
return data;
}
});