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flow.spec.ts
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flow.spec.ts
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import {gt, includedIn, lt} from '../../src/comparator'
import {flow} from '../../src/composition'
import {isNot} from '../../src/predicate'
import {filter, map} from '../../src/associative'
import {Associative} from '../../src/type'
import {dropRight, dropWhile, takeWhile} from '../../src/array'
import {reverse} from '../../src/array'
/**
* tsfun | flow
*
* with type inference for up to 10 function args
*
*
*
* A `flow` is a series of transformations of some
* instance of type `A` to another instance
* of type `A`.
*
* The design goal of a flow was to provide a way to mix
* javascript functional style
* methods like `map` and `filter`, with other functional
* style methods like `takeWhile`
* in a way which feels as natural as possible,
* given that we do not want to mix in new methods
* into the Array prototype. See intented use cases.
*
* A flow has not necessarily to be of type `Array`,
* it works on any
* type `A`. It is just that `tsfun` itself
* provides many array manipulating functions which
* are designed with flow in mind.
*/
describe('flow', () => {
it('flow', () =>
expect(
flow([5,4],
takeWhile(gt(4))))
.toEqual([5]))
it('flow - no steps', () =>
expect(
flow(
[5,6]))
.toEqual([5,6]))
it('reverse ', () =>
expect(
reverse([1, 3]))
.toEqual(([3, 1])))
it('dropWhile', () =>
expect(
flow(
[7, 9, 10, 13, 21, 20],
dropWhile(lt(20)),
reverse))
.toEqual([20, 21]))
it('generic default type param', () =>
expect(
flow<string>(
'a'))
.toEqual('a'))
// intended use case
// In the example above we feed the flow with an array, and then transform this array step
// by step, first within the flow, using `takeWhile` and `dropRight`. The result is an array,
// which then is beeing transformed again with the native `map` function. Finally `includes`
// is called on it to obtain a `boolean` result. As we see, it lets us seemingly 'pipe'
// things across the borders of the flow.
it('intended use case', () =>
expect(
(flow(
[1, 2, 3, 1],
takeWhile(isNot(includedIn([3, 4]))),
dropRight(1)) as number[])
.map(x => x * 2)
.includes(2))
.toEqual(true))
it('tying', () => {
const result1: number = flow('1',
parseInt)
// const result: string = flow('1', // WRONG
// parseInt)
const result2: string = flow('1',
parseInt,
_ => _.toString())
// const result: number = flow('1', // WRONG
// parseInt,
// _ => _.toString())
const result3: number = flow('1',
parseInt,
_ => _.toString(),
parseInt)
// const result: string = flow('1', // WRONG
// parseInt,
// _ => _.toString(),
// parseInt)
const result4: string = flow('1',
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString())
// const result: number = flow('1', // WRONG
// parseInt,
// _ => _.toString(),
// parseInt,
// _ => _.toString())
const result5: number = flow('1',
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString(),
parseInt)
// const result: string = flow('1', // WRONG
// parseInt,
// _ => _.toString(),
// parseInt,
// _ => _.toString(),
// parseInt)
const result6: string = flow('1',
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString())
// const result: number = flow('1', // WRONG
// parseInt,
// _ => _.toString(),
// parseInt,
// _ => _.toString(),
// parseInt,
// _ => _.toString())
const result7: number = flow('1',
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString(),
parseInt)
// const result: string = flow('1', WRONG
// parseInt,
// _ => _.toString(),
// parseInt,
// _ => _.toString(),
// parseInt,
// _ => _.toString(),
// parseInt)
const result8: string = flow('1',
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString())
// const result: number = flow('1', // WRONG
// parseInt,
// _ => _.toString(),
// parseInt,
// _ => _.toString(),
// parseInt,
// _ => _.toString(),
// parseInt,
// _ => _.toString())
const result9: number = flow('1',
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString(),
parseInt)
// const result: string = flow('1',
// parseInt,
// _ => _.toString(),
// parseInt,
// _ => _.toString(),
// parseInt,
// _ => _.toString(),
// parseInt,
// _ => _.toString(),
// parseInt)
const result10: string = flow('1',
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString())
// const result: number = flow('1', // WRONG
// parseInt,
// _ => _.toString(),
// parseInt,
// _ => _.toString(),
// parseInt,
// _ => _.toString(),
// parseInt,
// _ => _.toString(),
// parseInt,
// _ => _.toString())
const result11: number = flow('1',
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString(),
parseInt)
// const result: string = flow('1', // WRONG
// parseInt,
// _ => _.toString(),
// parseInt,
// _ => _.toString(),
// parseInt,
// _ => _.toString(),
// parseInt,
// _ => _.toString(),
// parseInt,
// _ => _.toString(),
// parseInt)
const result12: string = flow('1',
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString(),
parseInt,
_ => _.toString(),
parseInt,
(_: any) => _.toString()) // <- not inferred anymore
/////////////////////////////////
const result20: Associative<string> = flow([3],
filter((_: number) => _ > 2),
map(_ => _.toString()))
const result21: Associative<string> = flow([3],
filter((_: number) => _ > 2),
map(_ => _.toString())) as Array<string>
// const result = flow([3], // WRONG
// filter(_ => _ > 2),
// map(_ => _.toString())) as Array<number>
const result22 = flow([''],
filter(_ => true),
map(_ => _.toLowerCase()))
// const result = flow([3], // WRONG
// filter(_ => true),
// map(_ => _.toLowerCase()))
})
})