feat: Template operations #41
@ -1,5 +1,5 @@
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import PocomathInstance from '../core/PocomathInstance.mjs'
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import * as bigints from './native.mjs'
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import * as generic from '../generic/arithmetic.mjs'
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import * as generic from '../generic/all.mjs'
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export default PocomathInstance.merge('bigint', bigints, generic)
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5
src/bigint/compare.mjs
Normal file
5
src/bigint/compare.mjs
Normal file
@ -0,0 +1,5 @@
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export * from './Types/bigint.mjs'
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export const compare = {
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'bigint,bigint': () => (a,b) => a === b ? 0n : (a > b ? 1n : -1n)
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}
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@ -3,6 +3,7 @@ import gcdType from '../generic/gcdType.mjs'
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export * from './Types/bigint.mjs'
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export {add} from './add.mjs'
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export {compare} from './compare.mjs'
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export {divide} from './divide.mjs'
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export const gcd = gcdType('bigint')
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export {isZero} from './isZero.mjs'
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@ -1,10 +1,20 @@
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export * from './Types/Complex.mjs'
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export const add = {
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/* Relying on conversions for both complex + number and complex + bigint
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* leads to an infinite loop when adding a number and a bigint, since they
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* both convert to Complex.
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*/
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'Complex,number': ({
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'self(number,number)': addNum,
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'complex(any,any)': cplx
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}) => (z,x) => cplx(addNum(z.re, x), z.im),
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'Complex,bigint': ({
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'self(bigint,bigint)': addBigInt,
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'complex(any,any)': cplx
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}) => (z,x) => cplx(addBigInt(z.re, x), z.im),
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'Complex,Complex': ({
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self,
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'complex(any,any)': cplx
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19
src/complex/equal.mjs
Normal file
19
src/complex/equal.mjs
Normal file
@ -0,0 +1,19 @@
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export * from './Types/Complex.mjs'
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export const equal = {
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'Complex,number': ({
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'isZero(number)': isZ,
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'self(number,number)': eqNum
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}) => (z, x) => eqNum(z.re, x) && isZ(z.im),
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'Complex,bigint': ({
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'isZero(bigint)': isZ,
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'self(bigint,bigint)': eqBigInt
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}) => (z, b) => eqBigInt(z.re, b) && isZ(z.im),
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'Complex,Complex': ({self}) => (w,z) => self(w.re, z.re) && self(w.im, z.im),
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'GaussianInteger,GaussianInteger': ({
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'self(bigint,bigint)': eq
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}) => (a,b) => eq(a.re, b.re) && eq(a.im, b.im)
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}
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@ -7,6 +7,7 @@ export {absquare} from './absquare.mjs'
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export {add} from './add.mjs'
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export {conjugate} from './conjugate.mjs'
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export {complex} from './complex.mjs'
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export {equal} from './equal.mjs'
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export {gcd} from './gcd.mjs'
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export {invert} from './invert.mjs'
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export {isZero} from './isZero.mjs'
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@ -3,7 +3,7 @@ export * from './Types/Complex.mjs'
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export const sqrt = {
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Complex: ({
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config,
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zero,
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isZero,
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sign,
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one,
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add,
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@ -16,11 +16,8 @@ export const sqrt = {
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}) => {
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if (config.predictable) {
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return z => {
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const imZero = zero(z.im)
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const imSign = sign(z.im)
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const reOne = one(z.re)
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const reSign = sign(z.re)
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if (imSign === imZero && reSign === reOne) return complex(self(z.re))
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if (isZero(z.im) && sign(z.re) === reOne) return complex(self(z.re))
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const reTwo = add(reOne, reOne)
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return complex(
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multiply(sign(z.im), self(divide(add(abs(z),z.re), reTwo))),
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@ -29,11 +26,8 @@ export const sqrt = {
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}
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}
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return z => {
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const imZero = zero(z.im)
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const imSign = sign(z.im)
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const reOne = one(z.re)
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const reSign = sign(z.re)
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if (imSign === imZero && reSign === reOne) return self(z.re)
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if (isZero(z.im) && sign(z.re) === reOne) return self(z.re)
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const reTwo = add(reOne, reOne)
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return complex(
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multiply(sign(z.im), self(divide(add(abs(z),z.re), reTwo))),
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@ -40,7 +40,8 @@ export default class PocomathInstance {
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/* List of types installed in the instance. We start with just dummies
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* for the 'any' type and for type parameters:
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*/
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this.Types = {any: anySpec, T: anySpec}
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this.Types = {any: anySpec}
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this.Types[theTemplateParam] = anySpec
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this._subtypes = {} // For each type, gives all of its (in)direct subtypes
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/* The following gives for each type, a set of all types that could
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* match in typed-function's dispatch algorithm before the given type.
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@ -51,7 +52,7 @@ export default class PocomathInstance {
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this._priorTypes = {}
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this._usedTypes = new Set() // all types that have occurred in a signature
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this._doomed = new Set() // for detecting circular reference
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this._config = {predictable: false}
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this._config = {predictable: false, epsilon: 1e-12}
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const self = this
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this.config = new Proxy(this._config, {
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get: (target, property) => target[property],
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@ -106,6 +107,20 @@ export default class PocomathInstance {
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* refer to just adding two numbers. In this case, it is of course
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* necessary to specify an alias to be able to refer to the supplied
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* operation in the body of the implementation.
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*
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* You can specify template implementations. If any item in the signature
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* contains the word 'T' (currently the only allowed type parameter) then
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* the signature/implementation is a template. The T can match any type
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* of argument, and it may appear in the dependencies, where it is
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* replaced by the matching type. A bare 'T' in the dependencies will be
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* supplied with the name of the type as its value. See the implementation
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* of `subtract` for an example.
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* Usually templates are instantiated as needed, but for some heavily
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* used functions, or functions with non-template signatures that refer
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* to signatures generated from a template, it makes more sense to just
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* instantiate the template immediately for all known types. This eager
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* instantiation can be accomplished by prefixin the signature with an
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* exclamation point.
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*/
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install(ops) {
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if (ops instanceof PocomathInstance) {
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@ -273,6 +288,7 @@ export default class PocomathInstance {
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while (nextSuper) {
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this._typed.addConversion(
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{from, to: nextSuper, convert: spec.from[from]})
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this._invalidateDependents(':' + nextSuper)
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this._priorTypes[nextSuper].add(from)
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nextSuper = this.Types[nextSuper].refines
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}
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@ -292,6 +308,7 @@ export default class PocomathInstance {
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to: nextSuper,
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convert: this.Types[to].from[type]
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})
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this._invalidateDependents(':' + nextSuper)
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this._priorTypes[nextSuper].add(type)
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nextSuper = this.Types[nextSuper].refines
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}
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@ -305,13 +322,12 @@ export default class PocomathInstance {
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while (nextSuper) {
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this._typed.addConversion(
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{from: type, to: nextSuper, convert: x => x})
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this._invalidateDependents(':' + nextSuper)
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this._priorTypes[nextSuper].add(type)
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this._subtypes[nextSuper].add(type)
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nextSuper = this.Types[nextSuper].refines
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}
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// rebundle anything that uses the new type:
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this._invalidateDependents(':' + type)
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// update the typeOf function
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const imp = {}
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imp[type] = {uses: new Set(), does: () => () => type}
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@ -436,13 +452,30 @@ export default class PocomathInstance {
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continue
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}
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/* It's a template, have to instantiate */
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/* First, add the known instantiations */
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/* First, add the known instantiations, gathering all types needed */
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if (!('instantiations' in behavior)) {
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behavior.instantiations = new Set()
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}
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for (const instType of behavior.instantiations) {
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let instantiationSet = new Set()
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let trimSignature = rawSignature
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if (rawSignature.charAt(0) === '!') {
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trimSignature = trimSignature.slice(1)
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instantiationSet = this._usedTypes
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} else {
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for (const instType of behavior.instantiations) {
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instantiationSet.add(instType)
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for (const other of this._priorTypes[instType]) {
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instantiationSet.add(other)
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}
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}
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}
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for (const instType of instantiationSet) {
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if (this.Types[instType] === anySpec) continue
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const signature =
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substituteInSig(rawSignature, theTemplateParam, instType)
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substituteInSig(trimSignature, theTemplateParam, instType)
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/* Don't override an explicit implementation: */
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if (signature in imps) continue
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const uses = new Set()
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for (const dep of behavior.uses) {
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if (this._templateParam(dep)) continue
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@ -465,11 +498,12 @@ export default class PocomathInstance {
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this._addTFimplementation(tf_imps, signature, {uses, does: patch})
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}
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/* Now add the catchall signature */
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const signature = substituteInSig(rawSignature, theTemplateParam, 'any')
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const signature = substituteInSig(
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trimSignature, theTemplateParam, 'any')
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/* The catchall signature has to detect the actual type of the call
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* and add the new instantiations
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*/
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const argTypes = rawSignature.split(',')
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const argTypes = trimSignature.split(',')
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let exemplar = -1
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for (let i = 0; i < argTypes.length; ++i) {
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const argType = argTypes[i].trim()
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@ -487,14 +521,8 @@ export default class PocomathInstance {
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const example = args[exemplar]
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const instantiateFor = self.typeOf(example)
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refs[theTemplateParam] = instantiateFor
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const instCount = behavior.instantiations.size
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for (const earlier of self._priorTypes[instantiateFor]) {
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behavior.instantiations.add(earlier)
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}
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behavior.instantiations.add(instantiateFor)
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if (behavior.instantiations.size > instCount) {
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self._invalidate(name)
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}
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self._invalidate(name)
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// And for now, we have to rely on the "any" implementation. Hope
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// it matches the instantiated one!
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return behavior.does(refs)(...args)
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|
@ -1 +1,2 @@
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export * from './arithmetic.mjs'
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export * from './relational.mjs'
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@ -1,4 +1,7 @@
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export const divide = {
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'any,any': ({multiply, invert}) => (x, y) => multiply(x, invert(y))
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'T,T': ({
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'multiply(T,T)': multT,
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'invert(T)': invT
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}) => (x, y) => multT(x, invT(y))
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}
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|
@ -1,3 +1,7 @@
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/* Note we do not use a template here so that we can explicitly control
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* which types this is instantiated for, namely the "integer" types, and
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* not simply allow Pocomath to generate instances for any type it encounters.
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*/
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/* Returns a object that defines the gcd for the given type */
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export default function(type) {
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const producer = refs => {
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|
@ -1,6 +1,7 @@
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export const lcm = {
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'any,any': ({
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multiply,
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quotient,
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gcd}) => (a,b) => multiply(quotient(a, gcd(a,b)), b)
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'T,T': ({
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'multiply(T,T)': multT,
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'quotient(T,T)': quotT,
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'gcd(T,T)': gcdT
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}) => (a,b) => multT(quotT(a, gcdT(a,b)), b)
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}
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|
@ -1,6 +1,7 @@
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export const mod = {
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'any,any': ({
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subtract,
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multiply,
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quotient}) => (a,m) => subtract(a, multiply(m, quotient(a,m)))
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'T,T': ({
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'subtract(T,T)': subT,
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'multiply(T,T)': multT,
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'quotient(T,T)': quotT
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}) => (a,m) => subT(a, multT(m, quotT(a,m)))
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}
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|
@ -3,6 +3,7 @@ export * from './Types/generic.mjs'
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export const multiply = {
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'undefined': () => u => u,
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'undefined,...any': () => (u, rest) => u,
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any: () => x => x,
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'any,undefined': () => (x, u) => u,
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'any,any,...any': ({self}) => (a,b,rest) => {
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const later = [b, ...rest]
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|
54
src/generic/relational.mjs
Normal file
54
src/generic/relational.mjs
Normal file
@ -0,0 +1,54 @@
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export const compare = {
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'undefined,undefined': () => () => 0
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}
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export const isZero = {
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'undefined': () => u => u === 0
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}
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export const equal = {
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'!T,T': ({
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'compare(T,T)': cmp,
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'isZero(T)': isZ
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}) => (x,y) => isZ(cmp(x,y))
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}
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export const unequal = {
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'T,T': ({'equal(T.T)': eq}) => (x,y) => !(eq(x,y))
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}
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export const larger = {
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'T,T': ({
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'compare(T,T)': cmp,
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'one(T)' : uno
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}) => (x,y) => cmp(x,y) === uno(y)
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}
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export const largerEq = {
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'T,T': ({
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'compare(T,T)': cmp,
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'one(T)' : uno,
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'isZero(T)' : isZ
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}) => (x,y) => {
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const c = cmp(x,y)
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return isZ(c) || c === uno(y)
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}
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}
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export const smaller = {
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'T,T': ({
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'compare(T,T)': cmp,
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'one(T)' : uno,
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'isZero(T)' : isZ
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}) => (x,y) => {
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const c = cmp(x,y)
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return !isZ(c) && c !== uno(y)
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}
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}
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export const smallerEq = {
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'T,T': ({
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'compare(T,T)': cmp,
|
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'one(T)' : uno
|
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}) => (x,y) => cmp(x,y) !== uno(y)
|
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}
|
@ -1,6 +1,3 @@
|
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export const sign = {
|
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any: ({negate, divide, abs}) => x => {
|
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if (x === negate(x)) return x // zero
|
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return divide(x, abs(x))
|
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}
|
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T: ({'compare(T,T)': cmp, 'zero(T)': Z}) => x => cmp(x, Z(x))
|
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}
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|
@ -1,3 +1,3 @@
|
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export const square = {
|
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any: ({multiply}) => x => multiply(x,x)
|
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T: ({'multiply(T,T)': multT}) => x => multT(x,x)
|
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}
|
||||
|
@ -1,6 +1,6 @@
|
||||
import PocomathInstance from '../core/PocomathInstance.mjs'
|
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import * as numbers from './native.mjs'
|
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import * as generic from '../generic/arithmetic.mjs'
|
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import * as generic from '../generic/all.mjs'
|
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|
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export default PocomathInstance.merge('number', numbers, generic)
|
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|
||||
|
52
src/number/compare.mjs
Normal file
52
src/number/compare.mjs
Normal file
@ -0,0 +1,52 @@
|
||||
/* Lifted from mathjs/src/utils/number.js */
|
||||
/**
|
||||
* Minimum number added to one that makes the result different than one
|
||||
*/
|
||||
export const DBL_EPSILON = Number.EPSILON || 2.2204460492503130808472633361816E-16
|
||||
|
||||
/**
|
||||
* Compares two floating point numbers.
|
||||
* @param {number} x First value to compare
|
||||
* @param {number} y Second value to compare
|
||||
* @param {number} [epsilon] The maximum relative difference between x and y
|
||||
* If epsilon is undefined or null, the function will
|
||||
* test whether x and y are exactly equal.
|
||||
* @return {boolean} whether the two numbers are nearly equal
|
||||
*/
|
||||
function nearlyEqual (x, y, epsilon) {
|
||||
// if epsilon is null or undefined, test whether x and y are exactly equal
|
||||
if (epsilon === null || epsilon === undefined) {
|
||||
return x === y
|
||||
}
|
||||
|
||||
if (x === y) {
|
||||
return true
|
||||
}
|
||||
|
||||
// NaN
|
||||
if (isNaN(x) || isNaN(y)) {
|
||||
return false
|
||||
}
|
||||
|
||||
// at this point x and y should be finite
|
||||
if (isFinite(x) && isFinite(y)) {
|
||||
// check numbers are very close, needed when comparing numbers near zero
|
||||
const diff = Math.abs(x - y)
|
||||
if (diff < DBL_EPSILON) {
|
||||
return true
|
||||
} else {
|
||||
// use relative error
|
||||
return diff <= Math.max(Math.abs(x), Math.abs(y)) * epsilon
|
||||
}
|
||||
}
|
||||
|
||||
// Infinite and Number or negative Infinite and positive Infinite cases
|
||||
return false
|
||||
}
|
||||
/* End of copied section */
|
||||
|
||||
export const compare = {
|
||||
'number,number': ({
|
||||
config
|
||||
}) => (x,y) => nearlyEqual(x, y, config.epsilon) ? 0 : (x > y ? 1 : -1)
|
||||
}
|
@ -4,6 +4,7 @@ export * from './Types/number.mjs'
|
||||
|
||||
export {abs} from './abs.mjs'
|
||||
export {add} from './add.mjs'
|
||||
export {compare} from './compare.mjs'
|
||||
export const gcd = gcdType('NumInt')
|
||||
export {invert} from './invert.mjs'
|
||||
export {isZero} from './isZero.mjs'
|
||||
|
@ -1,4 +1,5 @@
|
||||
import assert from 'assert'
|
||||
import PocomathInstance from '../src/core/PocomathInstance.mjs'
|
||||
import math from '../src/pocomath.mjs'
|
||||
|
||||
describe('The default full pocomath instance "math"', () => {
|
||||
@ -37,16 +38,17 @@ describe('The default full pocomath instance "math"', () => {
|
||||
})
|
||||
|
||||
it('can be extended', () => {
|
||||
math.installType('stringK', {
|
||||
const stretch = PocomathInstance.merge(math) // clone to not pollute math
|
||||
stretch.installType('stringK', {
|
||||
test: s => typeof s === 'string' && s.charAt(0) === 'K',
|
||||
before: ['string']
|
||||
})
|
||||
math.install({
|
||||
stretch.install({
|
||||
add: {
|
||||
'...stringK': () => addends => addends.reduce((x,y) => x+y, '')
|
||||
},
|
||||
})
|
||||
assert.strictEqual(math.add('Kilroy','K is here'), 'KilroyK is here')
|
||||
assert.strictEqual(stretch.add('Kilroy','K is here'), 'KilroyK is here')
|
||||
})
|
||||
|
||||
it('handles complex numbers', () => {
|
||||
|
@ -38,6 +38,13 @@ describe('complex', () => {
|
||||
math.complex(ms.negate(ms.sqrt(0.5)), ms.sqrt(0.5)))
|
||||
})
|
||||
|
||||
it('checks for equality', () => {
|
||||
assert.ok(math.equal(math.complex(3,0), 3))
|
||||
assert.ok(math.equal(math.complex(3,2), math.complex(3, 2)))
|
||||
assert.ok(!(math.equal(math.complex(45n, 3n), math.complex(45n, -3n))))
|
||||
assert.ok(!(math.equal(math.complex(45n, 3n), 45n)))
|
||||
})
|
||||
|
||||
it('computes gcd', () => {
|
||||
assert.deepStrictEqual(
|
||||
math.gcd(math.complex(53n, 56n), math.complex(47n, -13n)),
|
||||
|
@ -30,4 +30,11 @@ describe('number', () => {
|
||||
it('computes gcd', () => {
|
||||
assert.strictEqual(math.gcd(15, 35), 5)
|
||||
})
|
||||
|
||||
it('compares numbers', () => {
|
||||
assert.ok(math.smaller(12,13.5))
|
||||
assert.ok(math.equal(Infinity, Infinity))
|
||||
assert.ok(math.largerEq(12.5, math.divide(25,2)))
|
||||
})
|
||||
|
||||
})
|
||||
|
Loading…
Reference in New Issue
Block a user