jiangchengfeiyi-xiaochengxu/node_modules/mathjs/lib/cjs/function/trigonometry/asech.js
2025-01-02 11:13:50 +08:00

59 lines
1.5 KiB
JavaScript

"use strict";
Object.defineProperty(exports, "__esModule", {
value: true
});
exports.createAsech = void 0;
var _factory = require("../../utils/factory.js");
var _index = require("../../plain/number/index.js");
const name = 'asech';
const dependencies = ['typed', 'config', 'Complex', 'BigNumber'];
const createAsech = exports.createAsech = /* #__PURE__ */(0, _factory.factory)(name, dependencies, _ref => {
let {
typed,
config,
Complex,
BigNumber
} = _ref;
/**
* Calculate the hyperbolic arcsecant of a value,
* defined as `asech(x) = acosh(1/x) = ln(sqrt(1/x^2 - 1) + 1/x)`.
*
* To avoid confusion with the matrix hyperbolic arcsecant, this function
* does not apply to matrices.
*
* Syntax:
*
* math.asech(x)
*
* Examples:
*
* math.asech(0.5) // returns 1.3169578969248166
*
* See also:
*
* acsch, acoth
*
* @param {number | BigNumber | Complex} x Function input
* @return {number | BigNumber | Complex} Hyperbolic arcsecant of x
*/
return typed(name, {
number: function (x) {
if (x <= 1 && x >= -1 || config.predictable) {
const xInv = 1 / x;
if (xInv > 0 || config.predictable) {
return (0, _index.asechNumber)(x);
}
const ret = Math.sqrt(xInv * xInv - 1);
return new Complex(Math.log(ret - xInv), Math.PI);
}
return new Complex(x, 0).asech();
},
Complex: function (x) {
return x.asech();
},
BigNumber: function (x) {
return new BigNumber(1).div(x).acosh();
}
});
});