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index.ts
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index.ts
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export interface Spec< C, T extends C | unknown > {
isSatisfiedBy( candidate: C | T ): boolean;
and( other: Spec< C, T > ): Spec< C, T >;
andNot( other: Spec< C, T > ): Spec< C, T >;
or( other: Spec< C, T > ): Spec< C, T >;
orNot( other: Spec< C, T > ): Spec< C, T >;
xor( other: Spec< C, T > ): Spec< C, T >;
xorNot( other: Spec< C, T > ): Spec< C, T >;
not(): Spec< C, T >;
}
export abstract class Composite< C, T > implements Spec< C, T > {
abstract isSatisfiedBy( candidate: C | T ): boolean;
and( other: Spec< C, T > ): Spec< C, T > {
return new And< C, T >( this, other );
}
andNot( other: Spec< C, T > ): Spec< C, T > {
return new AndNot< C, T >( this, other );
}
or( other: Spec< C, T > ): Spec< C, T > {
return new Or< C, T >( this, other );
}
orNot( other: Spec< C, T > ): Spec< C, T > {
return new OrNot< C, T >( this, other );
}
xor( other: Spec< C, T > ): Spec< C, T > {
return new Xor< C, T >( this, other );
}
xorNot( other: Spec< C, T > ): Spec< C, T > {
return new XorNot< C, T >( this, other );
}
not(): Spec< C, T > {
return new Not< C, T >( this );
}
}
// ---------------------------------------------------------------------------
export class And< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _left: Spec< C, T >, protected _right: Spec< C, T > ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
return this._left.isSatisfiedBy( candidate ) && this._right.isSatisfiedBy( candidate );
}
toString(): string {
return '(' + this._left.toString() + ' and ' + this._right.toString() + ')';
}
}
// Syntax sugar
export function and< C, T extends C | unknown >( left: Spec< C, T >, right: Spec< C, T > ) {
return new And< C, T >( left, right );
}
// ---------------------------------------------------------------------------
export class AndNot< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _left: Spec< C, T >, protected _right: Spec< C, T > ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
return this._left.isSatisfiedBy( candidate ) && ! this._right.isSatisfiedBy( candidate );
}
toString(): string {
return '(' + this._left.toString() + ' and not ' + this._right.toString() + ')';
}
}
// Syntax sugar
export function andNot< C, T extends C | unknown >( left: Spec< C, T >, right: Spec< C, T > ) {
return new AndNot< C, T >( left, right );
}
// ---------------------------------------------------------------------------
export class Or< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _left: Spec< C, T >, protected _right: Spec< C, T > ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
return this._left.isSatisfiedBy( candidate ) || this._right.isSatisfiedBy( candidate );
}
toString(): string {
return '(' + this._left.toString() + ' or ' + this._right.toString() + ')';
}
}
// Syntax sugar
export function or< C, T extends C | unknown >( left: Spec< C, T >, right: Spec< C, T > ) {
return new Or< C, T >( left, right );
}
// ---------------------------------------------------------------------------
export class OrNot< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _left: Spec< C, T >, protected _right: Spec< C, T > ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
return this._left.isSatisfiedBy( candidate ) || ! this._right.isSatisfiedBy( candidate );
}
toString(): string {
return '(' + this._left.toString() + ' or not ' + this._right.toString() + ')';
}
}
// Syntax sugar
export function orNot< C, T extends C | unknown >( left: Spec< C, T >, right: Spec< C, T > ) {
return new OrNot< C, T >( left, right );
}
// ---------------------------------------------------------------------------
// XOR comparison hack
function _xor( a: any, b: any ): boolean {
return !a != !b;
}
export class Xor< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _left: Spec< C, T >, protected _right: Spec< C, T > ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
return _xor( this._left.isSatisfiedBy( candidate ), this._right.isSatisfiedBy( candidate ) );
}
toString(): string {
return '(' + this._left.toString() + ' xor ' + this._right.toString() + ')';
}
}
// Syntax sugar
export function xor< C, T extends C | unknown >( left: Spec< C, T >, right: Spec< C, T > ) {
return new Xor< C, T >( left, right );
}
// ---------------------------------------------------------------------------
export class XorNot< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _left: Spec< C, T >, protected _right: Spec< C, T > ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
return _xor( this._left.isSatisfiedBy( candidate ), ! this._right.isSatisfiedBy( candidate ) );
}
toString(): string {
return '(' + this._left.toString() + ' xor not ' + this._right.toString() + ')';
}
}
// Syntax sugar
export function xorNot< C, T extends C | unknown >( left: Spec< C, T >, right: Spec< C, T > ) {
return new XorNot< C, T >( left, right );
}
// ---------------------------------------------------------------------------
export class Not< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _other: Spec< C, T > ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
return ! this._other.isSatisfiedBy( candidate );
}
toString(): string {
return '(not ' + this._other.toString() + ')';
}
}
// Syntax sugar
export function not< C, T extends C | unknown >( other: Spec< C, T > ) {
return new Not< C, T >( other );
}
// ---------------------------------------------------------------------------
export class EqualTo< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _value: T ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
return this._value == candidate;
}
toString(): string {
return 'equal to ' + this._value;
}
}
// Syntax sugar
export function equalTo< C, T extends C | unknown >( value: T ) {
return new EqualTo< C, T >( value );
}
// ---------------------------------------------------------------------------
export class StrictEqualTo< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _value: T ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
return this._value === candidate;
}
toString(): string {
return 'strict equal to ' + this._value;
}
}
// Syntax sugar
export function strictEqualTo< C, T extends C | unknown >( value: T ) {
return new StrictEqualTo< C, T >( value );
}
// ---------------------------------------------------------------------------
export class SameValueAs< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _value: T ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
const hasSimpleType = ( x: unknown ): boolean =>
[ 'string', 'number', 'bigint', 'boolean', 'undefined' ].indexOf( typeof x ) >= 0;
if ( hasSimpleType( candidate ) && hasSimpleType( this._value ) ) {
return candidate == this._value;
}
return JSON.stringify( candidate ) == JSON.stringify( this._value );
}
toString(): string {
return 'has same value as ' + this._value;
}
}
// Syntax sugar
export function sameValueAs< C, T extends C | unknown >( value: T ) {
return new SameValueAs< C, T >( value );
}
// ---------------------------------------------------------------------------
export class SameTypeAs< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _value: T ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
const notAnObject = ( x: unknown ): boolean => typeof x != 'object';
if ( notAnObject( candidate ) && notAnObject( this._value ) ) {
return typeof candidate == typeof this._value;
}
return candidate.constructor.name == this._value.constructor.name;
}
toString(): string {
return 'has same type as ' + this._value;
}
}
// Syntax sugar
export function sameTypeAs< C, T extends C | unknown >( value: T ) {
return new SameTypeAs< C, T >( value );
}
// ---------------------------------------------------------------------------
export class GreaterThan< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _min: T ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
return candidate > this._min;
}
toString(): string {
return 'greater than ' + this._min;
}
}
// Syntax sugar
export function greaterThan< C, T extends C | unknown >( min: T ) {
return new GreaterThan< C, T >( min );
}
// ---------------------------------------------------------------------------
export class GreaterThanOrEqualTo< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _min: T ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
return candidate >= this._min;
}
toString(): string {
return 'greater than or equal to ' + this._min;
}
}
// Syntax sugar
export function greaterThanOrEqualTo< C, T extends C | unknown >( min: T ) {
return new GreaterThanOrEqualTo< C, T >( min );
}
// ---------------------------------------------------------------------------
export class LessThan< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _max: T ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
return candidate < this._max;
}
toString(): string {
return 'less than ' + this._max;
}
}
// Syntax sugar
export function lessThan< C, T extends C | unknown >( max: T ) {
return new LessThan< C, T >( max );
}
// ---------------------------------------------------------------------------
export class LessThanOrEqualTo< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _max: T ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
return candidate <= this._max;
}
toString(): string {
return 'less than or equal to ' + this._max;
}
}
// Syntax sugar
export function lessThanOrEqualTo< C, T extends C | unknown >( max: T ) {
return new LessThanOrEqualTo< C, T >( max );
}
// ---------------------------------------------------------------------------
export class StartsWith< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _value: string, protected _ignoreCase: boolean = false ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
const c = this._ignoreCase ? candidate.toString().toLowerCase() : candidate.toString();
const v = this._ignoreCase ? this._value.toString().toLowerCase() : this._value.toString();
return 0 === c.indexOf( v );
}
toString(): string {
return 'starts with ' + this._value;
}
}
// Syntax sugar
export function startsWith< C, T extends C | unknown >( value: string, ignoreCase: boolean = false ) {
return new StartsWith< C, T >( value, ignoreCase );
}
// ---------------------------------------------------------------------------
export class EndsWith< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _value: string, protected _ignoreCase: boolean = false ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
const c = this._ignoreCase ? candidate.toString().toLowerCase() : candidate.toString();
const v = this._ignoreCase ? this._value.toString().toLowerCase() : this._value.toString();
return c.substr( c.length - v.length, v.length ) === v;
}
toString(): string {
return 'ends with ' + this._value;
}
}
// Syntax sugar
export function endsWith< C, T extends C | unknown >( value: string, ignoreCase: boolean = false ) {
return new EndsWith< C, T >( value, ignoreCase );
}
// ---------------------------------------------------------------------------
export class Contains< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _value: string, protected _ignoreCase: boolean = false ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
const c = this._ignoreCase ? candidate.toString().toLowerCase() : candidate.toString();
const v = this._ignoreCase ? this._value.toString().toLowerCase() : this._value.toString();
return c.indexOf( v ) !== -1;
}
toString(): string {
return 'contains ' + this._value;
}
}
// Syntax sugar
export function contains< C, T extends C | unknown >( value: string, ignoreCase: boolean = false ) {
return new Contains< C, T >( value, ignoreCase );
}
// ---------------------------------------------------------------------------
export class In< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _values: T[] ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
return this._values.indexOf( candidate as T ) >= 0;
}
toString(): string {
return 'in [' + this._values.join( ', ' ) + ']';
}
}
// Syntax sugar
export function isIn< C, T extends C | unknown >( values: T[] ) {
return new In< C, T >( values );
}
// ---------------------------------------------------------------------------
export class Between< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _min: T, protected _max: T ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
return candidate >= this._min && candidate <= this._max;
}
toString(): string {
return 'between (' + this._min + ', ' + this._max + ')';
}
}
// Syntax sugar
export function between< C, T extends C | unknown >( min: T, max: T ) {
return new Between< C, T >( min, max );
}
// ---------------------------------------------------------------------------
export class LengthBetween< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _min: number, protected _max: number ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
const len = candidate.toString().length;
return len >= this._min && len <= this._max;
}
toString(): string {
return 'length between (' + this._min + ', ' + this._max + ')';
}
}
// Syntax sugar
export function lengthBetween< C, T extends C | unknown >( min: number, max: number ) {
return new LengthBetween< C, T >( min, max );
}
// ---------------------------------------------------------------------------
export class Empty< C, T extends C | unknown > extends Composite< C, T > {
constructor() {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
return Array.isArray( candidate )
? 0 === candidate.length
: '' === candidate;
}
toString(): string {
return 'is empty';
}
}
// Syntax sugar
export function empty< C, T extends C | unknown >() {
return new Empty< C, T >();
}
// ---------------------------------------------------------------------------
export class Matches< C, T extends C | unknown > extends Composite< C, T > {
constructor( protected _regex: RegExp ) {
super();
}
isSatisfiedBy( candidate: C | T ): boolean {
return this._regex.test( candidate.toString() );
}
toString(): string {
return 'regex ' + this._regex.source;
}
}
// Syntax sugar
export function matches< C, T extends C | unknown >( regex: RegExp ) {
return new Matches< C, T >( regex );
}
// ---------------------------------------------------------------------------
export class Any< C, T extends C | unknown > extends Composite< C, T > {
protected readonly specs: Spec< C, T >[];
constructor( ...specs: Spec< C, T >[] ) {
super();
this.specs = specs;
}
isSatisfiedBy( candidate: C | T ): boolean {
for ( const currentSpec of this.specs ) {
if ( currentSpec.isSatisfiedBy( candidate ) ) {
return true;
}
}
return 0 == this.specs.length;
}
toString(): string {
return '(' + this.specs.join( ' or ' ) + ')';
}
}
// Syntax sugar
export function any< C, T extends C | unknown >( ...specs: Spec< C, T >[] ) {
return new Any< C, T >( ...specs );
}
// ---------------------------------------------------------------------------
export class All< C, T extends C | unknown > extends Composite< C, T > {
protected readonly specs: Spec< C, T >[];
constructor( ...specs: Spec< C, T >[] ) {
super();
this.specs = specs;
}
isSatisfiedBy( candidate: C | T ): boolean {
for ( const currentSpec of this.specs ) {
if ( ! currentSpec.isSatisfiedBy( candidate ) ) {
return false;
}
}
return true;
}
toString(): string {
return '(' + this.specs.join( ', ' ) + ')';
}
}
// Syntax sugar
export function all< C, T extends C | unknown >( ...specs: Spec< C, T >[] ) {
return new All< C, T >( ...specs );
}