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- 2026년 7월 21일 11:53
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설치 방법
기본적으로 소스를 먼저 확인하는 Prompt가 선택됩니다. 직접 명령으로 전환하거나 로컬 사본을 다운로드할 수도 있습니다.
소스 파일 검토
설치 여부를 결정하기 전에 SKILL.md와 SkillsMP에 표시된 보조 파일을 읽어 보세요.
메뉴
기본적으로 소스를 먼저 확인하는 Prompt가 선택됩니다. 직접 명령으로 전환하거나 로컬 사본을 다운로드할 수도 있습니다.
설치 여부를 결정하기 전에 SKILL.md와 SkillsMP에 표시된 보조 파일을 읽어 보세요.
Codex 또는 Claude로 설치 이 Prompt를 복사해 Codex, Claude 또는 다른 어시스턴트에 붙여 넣으면 Skill 페이지를 검토하고 설치를 진행할 수 있습니다.
직접 명령은 검토 Prompt를 거치지 않습니다. 실행하기 전에 소스를 확인하세요.
npx skills add https://github.com/thiagofernandes1987-create/APEX --skill fp-ts-pragmatic명령은 한 줄로 유지됩니다. 복사하기 전에 가로로 스크롤해 전체 내용을 확인하세요.
로컬 사본을 원하시나요? SkillsMP에서 현재 제공할 수 있는 파일을 다운로드하세요.
Token-aware reasoning workflow with real tools: picks an operating mode to control cost, runs a structured pipeline (decompose → validate → verify → snapshot), and gives Claude Program-of-Thought, RK4/Euler, a code gate, and a safe skill router. Use when: multi-step or high-stakes tasks, real math, precise computation, audits, or the user mentions APEX, PoT, pipeline, or scientific mode.
**v00.33.0**: Ingested from antigravity-awesome-skills community repo
run multiple local CLI agents in parallel (separate tmux sessions)
SOC 직업 분류 기준
SKILL.md 표시 중
| name | fp-ts-pragmatic |
| description | "When starting with fp-ts and need practical guidance" |
Read this first. This guide cuts through the academic jargon and shows you what actually matters. No category theory. No abstract nonsense. Just patterns that make your code better.
If functional programming makes your code harder to read, don't use it.
FP is a tool, not a religion. Use it when it helps. Skip it when it doesn't.
These five patterns give you most of the benefits. Master these before exploring anything else.
Instead of nesting function calls or creating intermediate variables, chain operations in reading order.
import { pipe } from 'fp-ts/function'
// Before: Hard to read (inside-out)
const result = format(validate(parse(input)))
// Before: Too many variables
const parsed = parse(input)
const validated = validate(parsed)
const result = format(validated)
// After: Clear, linear flow
const result = pipe(
input,
parse,
validate,
format
)
When to use pipe:
When to skip pipe:
Stop writing if (x !== null && x !== undefined) everywhere.
import * as O from 'fp-ts/Option'
import { pipe } from 'fp-ts/function'
// Before: Defensive null checking
function getUserCity(user: User | null): string {
if (user === null) return 'Unknown'
if (user.address === null) return 'Unknown'
if (user.address.city === null) return 'Unknown'
return user.address.city
}
// After: Chain through potential missing values
const getUserCity = (user: User | null): string =>
pipe(
O.fromNullable(user),
O.flatMap(u => O.fromNullable(u.address)),
O.flatMap(a => O.fromNullable(a.city)),
O.getOrElse( )
)
Plain language translation:
O.fromNullable(x) = "wrap this value, treating null/undefined as 'nothing'"O.flatMap(fn) = "if we have something, apply this function"O.getOrElse(() => default) = "unwrap, or use this default if nothing"Stop throwing exceptions for expected failures. Return errors as values.
import * as E from 'fp-ts/Either'
import { pipe } from 'fp-ts/function'
// Before: Hidden failure mode
function parseAge(input: string): number {
const age = parseInt(input, 10)
if (isNaN(age)) throw new Error('Invalid age')
if (age < 0) throw new Error('Age cannot be negative')
return age
}
// After: Errors are visible in the type
function parseAge(input: string): E.Either<string, number> {
const age = parseInt(input, 10)
if (isNaN(age)) return E.left('Invalid age')
if (age < 0) return E.left('Age cannot be negative')
return E.right(age)
}
result = (userInput)
(E.(result)) {
.()
} {
.()
}
Plain language translation:
E.right(value) = "success with this value"E.left(error) = "failure with this error"E.isRight(x) = "did it succeed?"Transform values inside containers without extracting them first.
import * as O from 'fp-ts/Option'
import * as E from 'fp-ts/Either'
import * as A from 'fp-ts/Array'
import { pipe } from 'fp-ts/function'
// Transform inside Option
const maybeUser: O.Option<User> = O.some({ name: 'Alice', age: 30 })
const maybeName: O.Option<string> = pipe(
maybeUser,
O.map(user => user.name)
)
// Transform inside Either
const result: E.Either<Error, number> = E.right(5)
const doubled: E.Either<Error, number> = pipe(
result,
E.map(n => n * 2)
)
// Transform arrays (same concept!)
const numbers = [, , ]
doubled = (
numbers,
A.( n * )
)
When each step might fail, chain them together.
import * as E from 'fp-ts/Either'
import { pipe } from 'fp-ts/function'
const parseJSON = (s: string): E.Either<string, unknown> =>
E.tryCatch(() => JSON.parse(s), () => 'Invalid JSON')
const extractEmail = (data: unknown): E.Either<string, string> => {
if (typeof data === 'object' && data !== null && 'email' in data) {
return E.right((data as { email: string }).email)
}
return E.left('No email field')
}
const validateEmail = (email: string): E.Either<string, string> =>
email.includes('@') ? E.right(email) : E.left('Invalid email format')
// Chain all steps - if any fails, the whole thing fails
getValidEmail = (: ): E.<, > =>
(
(input),
E.(extractEmail),
E.(validateEmail)
)
Plain language: flatMap means "if this succeeded, try the next thing"
Functional programming is not always the answer. Here's when to keep it simple.
// Just use optional chaining - it's built into the language
const city = user?.address?.city ?? 'Unknown'
// DON'T overcomplicate it
const city = pipe(
O.fromNullable(user),
O.flatMap(u => O.fromNullable(u.address)),
O.flatMap(a => O.fromNullable(a.city)),
O.getOrElse(() => 'Unknown')
)
// A for loop is fine when you need early exit or complex logic
function findFirst(items: Item[], predicate: (i: Item) => boolean): Item | null {
for (const item of items) {
if (predicate(item)) return item
}
return null
}
// DON'T force FP when it doesn't help
const result = pipe(
items,
A.findFirst(predicate),
O.toNullable
)
// For hot paths, imperative is faster (no intermediate arrays)
function sumLarge(numbers: number[]): number {
let sum = 0
for (let i = 0; i < numbers.length; i++) {
sum += numbers[i]
}
return sum
}
// fp-ts creates intermediate structures
const sum = pipe(numbers, A.reduce(0, (acc, n) => acc + n))
If you're the only one who can read the code, it's not good code.
// If your team knows this pattern
async function getUser(id: string): Promise<User | null> {
try {
const response = await fetch(`/api/users/${id}`)
if (!response.ok) return null
return await response.json()
} catch {
return null
}
}
// Don't force this on them
const getUser = (id: string): TE.TaskEither<Error, User> =>
pipe(
TE.tryCatch(() => fetch(`/api/users/${id}`), E.toError),
TE.flatMap(r => r.ok ? TE.right(r) : TE.left(new Error())),
.( .( r.(), E.))
)
// Before: Nested ternary nightmare
const message = user === null
? 'No user'
: user.isAdmin
? `Admin: ${user.name}`
: `User: ${user.name}`
// After: Clear case handling
const message = pipe(
O.fromNullable(user),
O.fold(
() => 'No user',
(u) => u.isAdmin ? `Admin: ${u.name}` : `User: ${u.name}`
)
)
// Before: try-catch everywhere
let config
try {
config = JSON.parse(rawConfig)
} catch {
config = defaultConfig
}
// After: One-liner
const config = pipe(
E.tryCatch(() => JSON.parse(rawConfig), () => 'parse error'),
E.getOrElse(() => defaultConfig)
)
// Before: Caller might forget to check
function findUser(id: string): User | undefined {
return users.find(u => u.id === id)
}
// After: Type forces caller to handle missing case
function findUser(id: string): O.Option<User> {
return O.fromNullable(users.find(u => u.id === id))
}
// Before: Just strings
function validate(data: unknown): E.Either<string, User> {
// ...
return E.left('validation failed')
}
// After: Structured errors
type ValidationError = {
field: string
message: string
}
function validate(data: unknown): E.Either<ValidationError, User> {
// ...
return E.left({ field: 'email', message: 'Invalid format' })
}
// Create specific error types without classes
const NotFound = (id: string) => ({ _tag: 'NotFound' as const, id })
const Unauthorized = { _tag: 'Unauthorized' as const }
const ValidationFailed = (errors: string[]) =>
({ _tag: 'ValidationFailed' as const, errors })
type AppError =
| ReturnType<typeof NotFound>
| typeof Unauthorized
| ReturnType<typeof ValidationFailed>
// Now you can pattern match
const handleError = (error: AppError): string => {
switch (error._tag) {
case 'NotFound': return `Item ${error.id} not found`
case 'Unauthorized': return 'Please log in'
case : error..()
}
}
// Before
fetchUser(id, (user) => {
if (!user) return handleNoUser()
fetchPosts(user.id, (posts) => {
if (!posts) return handleNoPosts()
fetchComments(posts[0].id, (comments) => {
render(user, posts, comments)
})
})
})
// After (with TaskEither for async)
import * as TE from 'fp-ts/TaskEither'
const loadData = (id: string) =>
pipe(
fetchUser(id),
TE.flatMap(user => pipe(
fetchPosts(user.id),
TE.map(posts => ({ user, posts }))
)),
TE.flatMap(({ user, posts }) => pipe(
fetchComments(posts[0].),
.( ({ user, posts, comments }))
))
)
result = ()()
(
result,
E.(handleError, (user, posts, comments))
)
// Before
function getManagerEmail(employee: Employee): string | null {
if (!employee.department) return null
if (!employee.department.manager) return null
if (!employee.department.manager.email) return null
return employee.department.manager.email
}
// After
const getManagerEmail = (employee: Employee): O.Option<string> =>
pipe(
O.fromNullable(employee.department),
O.flatMap(d => O.fromNullable(d.manager)),
O.flatMap(m => O.fromNullable(m.email))
)
// Use it
pipe(
getManagerEmail(employee),
O.fold(
() => sendToDefault(),
(email)
)
)
// Before: Throws on first error
function validateUser(data: unknown): User {
if (!data || typeof data !== 'object') throw new Error('Must be object')
const obj = data as Record<string, unknown>
if (typeof obj.email !== 'string') throw new Error('Email required')
if (!obj.email.includes('@')) throw new Error('Invalid email')
if (typeof obj.age !== 'number') throw new Error('Age required')
if (obj.age < 0) throw new Error('Age must be positive')
return obj as User
}
// After: Returns first error, type-safe
validateUser = (: ): E.<, > =>
(
E.,
E.(,
data === && data !==
? E.(data <, >)
: E.()
),
E.(,
obj. === && obj..()
? E.(obj.)
: E.()
),
E.(,
obj. === && obj. >=
? E.(obj.)
: E.()
),
E.( ({ email, age }))
)
// Before
async function processOrder(orderId: string): Promise<Receipt> {
const order = await fetchOrder(orderId)
if (!order) throw new Error('Order not found')
const validated = await validateOrder(order)
if (!validated.success) throw new Error(validated.error)
const payment = await processPayment(validated.order)
if (!payment.success) throw new Error('Payment failed')
return generateReceipt(payment)
}
// After
const processOrder = (orderId: string): TE.TaskEither<string, Receipt> =>
pipe(
fetchOrderTE(orderId),
TE.flatMap(order =>
order ? .(order) : .()
),
.(validateOrderTE),
.(processPaymentTE),
.(generateReceipt)
)
Before using any FP pattern, ask: "Would a junior developer understand this?"
const result = pipe(
data,
A.filter(flow(prop('status'), equals('active'))),
A.map(flow(prop('value'), multiply(2))),
A.reduce(monoid.concat, monoid.empty),
O.fromPredicate(gt(threshold))
)
const activeItems = data.filter(item => item.status === 'active')
const doubledValues = activeItems.map(item => item.value * 2)
const total = doubledValues.reduce((sum, val) => sum + val, 0)
const result = total > threshold ? O.some(total) : O.none
const result = pipe(
data,
A.filter(item => item.status === 'active'),
A.map(item => item.value * 2),
A.reduce(0, (sum, val) => sum + val),
total => total > threshold ? O.some(total) : O.none
)
| What you want | Plain language | fp-ts |
|---|---|---|
| Handle null/undefined | "Wrap this nullable" | O.fromNullable(x) |
| Default for missing | "Use this if nothing" | O.getOrElse(() => default) |
| Transform if present | "If something, change it" | O.map(fn) |
| Chain nullable operations | "If something, try this" | O.flatMap(fn) |
| Return success | "Worked, here's the value" | E.right(value) |
| Return failure | "Failed, here's why" | E.left(error) |
| Wrap throwing function | "Try this, catch errors" | E.tryCatch(fn, onError) |
| Handle both cases | "Do this for error, that for success" | E.fold(onLeft, onRight) |
| Chain operations | "Then do this, then that" | pipe(x, fn1, fn2, fn3) |
Once comfortable with these patterns, explore:
But don't rush. The basics here will handle 80% of real-world scenarios. Get comfortable with these before adding more tools to your belt.
Apply —