用 Codex 或 Claude 帮你安装 复制这段 Prompt,粘贴到 Codex、Claude 或其他助手里,让它检查 Skill 页面并帮你完成安装。
直接命令不会经过审查 Prompt;运行前请先检查来源。
npx skills add https://github.com/ffsshhttiikk/opencode-agents-skills --skill hexagonal-architecture命令会保持在同一行。复制前请横向滚动并检查完整内容。
想先保存到本地?可下载 SkillsMP 当前能够提供的文件。
基于 SOC 职业分类
正在显示 SKILL.md
| name | Hexagonal Architecture |
| description | Port and adapter pattern for separating core business logic from external concerns |
| category | software-development |
I provide a layered architecture that separates application core from external dependencies. Hexagonal architecture (Ports and Adapters) puts business logic at the center, with ports defining interfaces for incoming and outgoing interactions. Adapters implement these ports, translating between external formats and internal domain objects. This creates a system that is flexible, testable, and independent of frameworks, databases, or external services.
Use hexagonal architecture for applications that need to be flexible about their dependencies, when you want to isolate business logic from infrastructure, or when different adapters might be needed for different deployment scenarios. It's ideal for long-lived applications where frameworks or databases might change. Perfect for testing scenarios where you want to mock external dependencies completely. Avoid for simple scripts or throwaway prototypes.
from abc import ABC, abstractmethod
from dataclasses import dataclass
from datetime import datetime
from typing import Protocol
from uuid import UUID, uuid4
class User:
def __init__(self, user_id: UUID, email: str, name: str):
self._id = user_id
self._email = email
self._name = name
self._created_at = datetime.utcnow()
self._is_active = True
@property
def id(self) -> UUID:
return self._id
@property
def email(self) -> str:
return self._email
@property
def name(self) -> str:
return self._name
@property
def is_active(self) -> bool:
._is_active
() -> :
._is_active =
() -> :
._is_active =
():
() -> :
() -> User | :
() -> User | :
() -> [User]:
:
():
._repository = user_repository
() -> User:
._repository.find_by_email(email):
ValueError()
user = User(user_id=uuid4(), email=email, name=name)
._repository.save(user)
user
() -> User:
user = ._repository.find_by_id(user_id)
user:
ValueError()
user.activate()
._repository.save(user)
user
() -> [User]:
._repository.find_all_active()
from abc import ABC, abstractmethod
from dataclasses import dataclass
from datetime import datetime
from typing import Protocol
from uuid import UUID
# Inbound Ports (Application Services)
class CreateUserUseCase(Protocol):
def execute(self, command: 'CreateUserCommand') -> 'UserResponse':
pass
class GetUserUseCase(Protocol):
def execute(self, user_id: UUID) -> 'UserResponse | None':
pass
class ListUsersUseCase(Protocol):
def execute(self) -> list['UserResponse']:
pass
# Outbound Ports (Infrastructure Contracts)
class UserPersistencePort(Protocol):
@abstractmethod
def save(self, user: User) -> None:
pass
@abstractmethod
def () -> User | :
() -> User | :
() -> [User]:
():
() -> :
() -> :
:
email:
name:
send_welcome_email: =
:
user_id: UUID
email:
name:
created_at: datetime
is_active:
class UserApplicationService:
def __init__(
self,
user_repository: UserPersistencePort,
email_service: EmailNotificationPort
):
self._repository = user_repository
self._email = email_service
def create_user(self, command: CreateUserCommand) -> UserResponse:
if self._repository.find_by_email(command.email):
raise ValueError(f"Email {command.email} already exists")
user = User(
user_id=uuid4(),
email=command.email,
name=command.name
)
self._repository.save(user)
if command.send_welcome_email:
self._email.send_welcome_email(user)
return self._to_response(user)
def get_user(self, user_id: UUID) -> UserResponse | None:
user = self._repository.find_by_id(user_id)
if not user:
return None
return self._to_response(user)
def list_users(self) -> list[UserResponse]:
users = self._repository.find_all_active()
return [self._to_response(u) for u in users]
() -> UserResponse:
user = ._repository.find_by_id(user_id)
user:
ValueError()
user.activate()
._repository.save(user)
._email.send_activation_email(user)
._to_response(user)
() -> UserResponse:
UserResponse(
user_id=user.,
email=user.email,
name=user.name,
created_at=user._created_at,
is_active=user.is_active
)
from dataclasses import dataclass
from datetime import datetime
from typing import Protocol, Optional
from uuid import UUID, uuid4
# In-Memory Adapter
class InMemoryUserRepository(UserPersistencePort):
def __init__(self):
self._users: dict[UUID, User] = {}
def save(self, user: User) -> None:
self._users[user.id] = user
def find_by_id(self, user_id: UUID) -> Optional[User]:
return self._users.get(user_id)
def find_by_email(self, email: str) -> Optional[User]:
for user in self._users.values():
if user.email == email:
return user
return None
def find_all_active(self) -> list[User]:
return [u for u in ._users.values() u.is_active]
():
() -> :
()
() -> :
()
():
():
._session_factory = session_factory
() -> :
session = ._session_factory()
session.add(._to_orm(user))
session.commit()
() -> [User]:
session = ._session_factory()
orm_user = session.query(UserORM).filter_by(=user_id).first()
._from_orm(orm_user) orm_user
() -> [User]:
session = ._session_factory()
orm_user = session.query(UserORM).filter_by(email=email).first()
._from_orm(orm_user) orm_user
() -> [User]:
session = ._session_factory()
orm_users = session.query(UserORM).filter_by(is_active=).()
[._from_orm(u) u orm_users]
() -> :
UserORM(
=user.,
email=user.email,
name=user.name,
is_active=user.is_active
)
() -> User:
User(
user_id=orm_user.,
email=orm_user.email,
name=orm_user.name
)
:
: UUID
email:
name:
is_active:
from fastapi import FastAPI, HTTPException, Depends
from pydantic import BaseModel, EmailStr
from typing import list
from uuid import UUID
app = FastAPI(title="User Service API")
class CreateUserRequest(BaseModel):
email: EmailStr
name: str
send_welcome_email: bool = True
class UserResponse(BaseModel):
user_id: UUID
email: EmailStr
name: str
is_active: bool
def get_user_service():
from main import container
return container.resolve(UserApplicationService)
@app.post("/users", response_model=UserResponse)
async def create_user(
request: CreateUserRequest,
service=Depends(get_user_service)
):
try:
command = CreateUserCommand(
email=request.email,
name=request.name,
send_welcome_email=request.send_welcome_email
)
return service.create_user(command)
except ValueError as e:
raise HTTPException(status_code=400, detail=str(e))
@app.get("/users/{user_id}", response_model=UserResponse)
():
user = service.get_user(user_id)
user:
HTTPException(status_code=, detail=)
user
():
service.list_users()
():
:
service.activate_user(user_id)
ValueError e:
HTTPException(status_code=, detail=(e))
from typing import Protocol, Type, TypeVar, get_origin, get_args
T = TypeVar("T")
class Container:
def __init__(self):
self._bindings: dict[Type, object] = {}
self._singletons: dict[Type, object] = {}
def bind(self, abstract: Type[T], concrete: Type[T]) -> None:
self._bindings[abstract] = concrete
def singleton(self, abstract: Type[T], concrete: Type[T]) -> None:
self._singletons[abstract] = None
self._bindings[abstract] = concrete
def resolve(self, abstract: Type[T]) -> T:
if abstract in self._singletons:
if self._singletons[abstract] is None:
self._singletons[abstract] = self._build(abstract)
return self._singletons[abstract]
._build(abstract)
() -> T:
abstract ._bindings:
(abstract, ):
abstract
ValueError()
concrete = ._bindings[abstract]
(concrete, ):
params = ._get_init_params(concrete)
deps = {param: .resolve(param_type) param, param_type params.items()}
concrete(**deps)
concrete
() -> [, ]:
inspect
sig = inspect.signature(cls.__init__)
{
name: param.annotation
name, param sig.parameters.items()
name != param.annotation != inspect.Parameter.empty
}
container = Container()
container.singleton(UserPersistencePort, InMemoryUserRepository)
container.singleton(EmailNotificationPort, ConsoleEmailAdapter)
container.singleton(UserApplicationService, UserApplicationService)
():
container
():
container.resolve(UserApplicationService)