uncloud
affaan-m/ECC
Gerencie um cluster do Uncloud — implante serviços, configure o Caddy Ingress, adicione rotas de proxy estáticas para dispositivos que não fazem parte do cluster, publique portas, dimensione, analise logs e gerencie máquinas e volumes com a CLI `uc`.
...Expandir tudoUncloud Gerenciamento de cluster
Referência para a uc CLI — uma plataforma descentralizada de auto-hospedagem que utiliza contêineres Docker, rede em malha WireGuard e proxy reverso Caddy.
Quando ativar
Utilize esta habilidade ao trabalhar com clusters dUncloud, especialmente quando:
- Inicializar ou adicionar máquinas com
uc machine - Implantar serviços a partir de arquivos Compose com
uc deploy - Publicar portas HTTP, HTTPS, TCP ou UDP por meio de umUncloud
- Configurar o Caddy Ingress com
x-caddy,x-ports, ou--caddyfile - Roteamento de dispositivos de LAN externos por meio do proxy do cluster
- Analisando logs, estado dos serviços, volumes, DNS ou localização das máquinas
Como funciona
Uncloud executa serviços do Docker em máquinas pares conectadas por uma malha WireGuard. Cada máquina é um membro igualitário do cluster; os serviços se comunicam na rede overlay e o Caddy é executado globalmente para terminalizar o tráfego HTTP/HTTPS público. Os arquivos Compose podem usar extensões Uncloud para ingress, posicionamento e configuração gerada do Caddy, enquanto a uc CLI lida com a distribuição de imagens, agendamento, dimensionamento, logs e estado do cluster.
Exemplos
uc machine init user@host --name machine-1
uc service run --name web -p app.example.com:8080/https nginx:latest
uc deploy
Conceitos básicos
- Sem plano de controle central — todas as máquinas são pares iguais conectadas pelo WireGuard
- O Caddy é executado como um serviço global em todas as máquinas; obtém TLS automaticamente do Let’s Encrypt
- Rede overlay — os serviços se comunicam via
10.210.0.0/16por padrão; DNS fornecido dentro da malha - O Caddyfile é gerado automaticamente — nunca o edite diretamente; use
x-caddy/--caddyfileem vez disso
Referência rápida da CLI
Máquinas
| Comando | Finalidade |
|---|---|
uc machine init user@host |
Inicializar a primeira máquina / novo cluster |
uc machine add user@host |
Adicionar máquina a um cluster existente |
uc machine ls |
Listar máquinas |
uc machine update NAME --public-ip IP |
Atualizar IP público para tráfego de entrada |
uc machine rm NAME |
Remover máquina |
Chave init sinalizadores: --name, --network 10.210.0.0/16, --no-caddy, --no-dns, --public-ip auto\|IP\|none
Serviços
| Comando | Finalidade |
|---|---|
uc service ls / uc ls |
Listar serviços |
uc service run IMAGE |
Executar um único serviço de contêiner |
uc deploy |
Implantar a partir de compose.yaml |
uc deploy --no-build |
Implantar imagens já enviadas sem recompilar |
uc deploy --recreate |
Forçar a recriação do serviço |
uc scale SERVICE N |
Definir o número de réplicas |
uc service logs SERVICE |
Visualizar logs |
uc service exec SERVICE |
Acessar o shell do contêiner |
uc service inspect SERVICE |
Informações detalhadas |
uc service rm SERVICE |
Remover serviço (mantém volumes nomeados) |
uc ps |
Todos os contêineres do cluster |
Imagens
uc image push myapp:latest # Push local image to all machines
uc image push myapp:latest -m machine1,machine2 # Push to specific machines
uc images # List images in cluster
Volumes
uc volume ls # All volumes
uc volume ls -m machine1 # On specific machine
uc volume create NAME -m MACHINE
uc volume rm NAME
Caddy
uc caddy config # Show current generated Caddyfile (read-only)
uc caddy deploy # Deploy/upgrade Caddy across cluster
DNS e contexto
uc dns show # Show reserved *.uncld.dev domain
uc dns reserve # Reserve a new domain
uc ctx ls # List cluster contexts
uc ctx use prod # Switch context
Publicação de portas
HTTP/HTTPS (por meio do proxy reverso do Caddy)
-p [hostname:]container_port[/protocol]
| Exemplo | Significado |
|---|---|
-p 8080/https |
HTTPS com service-name.cluster-domain nome de host |
-p app.example.com:8080/https |
HTTPS com nome de host personalizado |
-p 8080/http |
Apenas HTTP, sem TLS |
TCP/UDP (vinculado ao host, ignora o Caddy)
-p [host_ip:]host_port:container_port[/protocol]@host
| Exemplo | Significado |
|---|---|
-p 5432:5432@host |
TCP 5432 em todas as interfaces |
-p 127.0.0.1:5432:5432@host |
TCP 5432 apenas em loopback |
-p 53:5353/udp@host |
UDP |
Extensões do arquivo Compose
Uncloud adiciona essas extensões ao Docker Compose:
x-ports — portas de publicação com domínios
services:
app:
image: app:latest
x-ports:
- example.com:8000/https
- www.example.com:8000/https
- api.example.com:9000/https
x-caddy — configuração personalizada do Caddy para o serviço
services:
app:
image: app:latest
x-caddy: |
example.com {
redir https://www.example.com{uri} permanent
}
www.example.com {
reverse_proxy {{upstreams 8000}} {
import common_proxy
}
basic_auth /admin/* {
admin $2a$14$...
}
}
Funções de modelo disponíveis no x-caddy:
{{upstreams [service] [port]}}— IPs de contêineres em bom estado{{.Name}}— nome do serviço{{.Upstreams}}— mapa de todos os serviços → IPs
x-machines — restrições de posicionamento
services:
db:
image: postgres:18
x-machines: db-machine # Single machine name
app:
image: app:latest
x-machines:
- machine-1
- machine-2
Exemplo completo de múltiplos serviços
services:
api:
build: ./api
x-ports:
- api.example.com:3000/https
environment:
DATABASE_URL: postgres://db:5432/mydb
web:
build: ./web
x-ports:
- example.com:8000/https
- www.example.com:8000/https
environment:
API_URL: http://api:3000
db:
image: postgres:18
environment:
POSTGRES_PASSWORD: ${DB_PASSWORD}
volumes:
- db-data:/var/lib/postgresql/data
x-machines: db-machine
volumes:
db-data:
Roteamento para dispositivos externos (fora do cluster)
Para expor um dispositivo externo (por exemplo, BMC, NAS, interface do roteador) via Caddy sem executar um contêiner real:
1. Crie um trecho de Caddyfile (por exemplo, ~/device.caddyfile):
https://device.example.com {
reverse_proxy https://192.168.1.x {
transport http {
tls_insecure_skip_verify # needed for self-signed BMC certs
}
}
log
}
Para upstream em texto simples: reverse_proxy http://192.168.1.x:port
2. Registre-o como um serviço nomeado com um contêiner sem operação (no-op):
uc service run \
--name device-bmc \
--caddyfile ~/device.caddyfile \
registry.k8s.io/pause:3.9
pause é um contêiner no-op mínimo — ele não faz nada, mas fornece ao Uncloud uma entrada de serviço à qual o Caddyfile pode ser vinculado.
3. Verifique:
uc caddy config # device.example.com block should appear
--caddyfilenão pode ser combinado com portas não@hostportas não publicadas.
Dica de DNS: um registro curinga (*.yourdomain.com → cluster-public-ip) significa que qualquer novo subdomínio funciona imediatamente — sem necessidade de alteração no DNS por serviço.
DNS do serviço (interno)
Os serviços dentro do cluster se identificam mutuamente pelo nome:
| Nome DNS | Resolve para |
|---|---|
service-name |
Qualquer contêiner em bom estado |
service-name.internal |
O mesmo |
rr.service-name.internal |
Round-robin |
nearest.service-name.internal |
Primeiro o local da máquina |
Escalabilidade e serviços globais
uc scale web 5 # 5 replicas (spread across machines)
uc scale web 1 # Scale down
services:
caddy:
deploy:
mode: global # One container on every machine
Modelos de tags de imagem (em compose.yaml)
image: myapp:{{gitdate "20060102"}}.{{gitsha 7}}
image: myapp:{{gitsha 7}}.${GITHUB_RUN_ID:-local}
| Função | Saída |
|---|---|
{{gitsha N}} |
Primeiros N caracteres do SHA do commit |
{{gitdate "format"}} |
Data do commit do Git no formato Go |
{{date "format"}} |
Data atual |
Fluxos de trabalho comuns
Implantação a partir do código-fonte:
uc deploy # Build + push + deploy
uc build --push && uc deploy --no-build # Separate steps
Inspecionar um serviço:
uc inspect web
uc logs -f web
uc logs --since 1h web
uc exec web # Opens shell
uc exec web /bin/sh -c "env" # Run specific command
As implantações sem tempo de inatividade ocorrem automaticamente; o `Uncloud` aguarda as verificações de integridade antes de encerrar os contêineres antigos.
Forçar recriação:
uc deploy --recreate
Erros comuns
| Erro | Solução |
|---|---|
| Editar o Caddyfile diretamente | Use x-caddy no modo de composição ou --caddyfile no uc service run |
| Proxying um servidor upstream HTTPS com certificado autoassinado | Adicione transport http { tls_insecure_skip_verify } |
uc caddy config não exibe blocos definidos pelo usuário |
Socket de administração do Caddy inacessível — verifique uc inspect caddy e uc logs caddy |
| O serviço não consegue acessar o IP da LAN externa a partir do contêiner | Verifique se o host do contêiner do Caddy consegue rotear para a rede de destino |
Volumes perdidos após uc service rm |
Volumes nomeados persistem; apenas volumes anônimos são removidos automaticamente |
---
name: uncloud
description: Manage an Uncloud cluster — deploy services, configure Caddy ingress, add static proxy routes for non-cluster devices, publish ports, scale, inspect logs, and manage machines and volumes with the `uc` CLI.
---
# Uncloud Cluster Management
Reference for the `uc` CLI — a decentralised self-hosting platform using Docker containers, WireGuard mesh networking, and Caddy reverse proxy.
## When to Activate
Use this skill when working with Uncloud clusters, especially when:
- Bootstrapping or joining machines with `uc machine`
- Deploying services from Compose files with `uc deploy`
- Publishing HTTP, HTTPS, TCP, or UDP ports through Uncloud
- Configuring Caddy ingress with `x-caddy`, `x-ports`, or `--caddyfile`
- Routing external LAN devices through the cluster proxy
- Inspecting logs, service state, volumes, DNS, or machine placement
## How It Works
Uncloud runs Docker services across peer machines connected by a WireGuard mesh. Each machine is an equal cluster member; services communicate on the overlay network and Caddy runs globally to terminate public HTTP/HTTPS traffic. Compose files can use Uncloud extensions for ingress, placement, and generated Caddy configuration, while the `uc` CLI handles image distribution, scheduling, scaling, logs, and cluster state.
## Examples
```bash
uc machine init user@host --name machine-1
uc service run --name web -p app.example.com:8080/https nginx:latest
uc deploy
```
## Core Concepts
- **No central control plane** — all machines are equal peers connected by WireGuard
- **Caddy** runs as a global service on every machine; auto-obtains TLS from Let's Encrypt
- **Overlay network** — services communicate via `10.210.0.0/16` by default; DNS provided inside the mesh
- **Caddyfile is autogenerated** — never edit it directly; use `x-caddy` / `--caddyfile` instead
---
## CLI Quick Reference
### Machines
| Command | Purpose |
|---------|---------|
| `uc machine init user@host` | Bootstrap first machine / new cluster |
| `uc machine add user@host` | Join machine to existing cluster |
| `uc machine ls` | List machines |
| `uc machine update NAME --public-ip IP` | Update public IP for ingress |
| `uc machine rm NAME` | Remove machine |
Key `init` flags: `--name`, `--network 10.210.0.0/16`, `--no-caddy`, `--no-dns`, `--public-ip auto\|IP\|none`
### Services
| Command | Purpose |
|---------|---------|
| `uc service ls` / `uc ls` | List services |
| `uc service run IMAGE` | Run a single container service |
| `uc deploy` | Deploy from `compose.yaml` |
| `uc deploy --no-build` | Deploy already-pushed images without rebuilding |
| `uc deploy --recreate` | Force service recreation |
| `uc scale SERVICE N` | Set replica count |
| `uc service logs SERVICE` | View logs |
| `uc service exec SERVICE` | Shell into container |
| `uc service inspect SERVICE` | Detailed info |
| `uc service rm SERVICE` | Remove service (keeps named volumes) |
| `uc ps` | All containers across cluster |
### Images
```bash
uc image push myapp:latest # Push local image to all machines
uc image push myapp:latest -m machine1,machine2 # Push to specific machines
uc images # List images in cluster
```
### Volumes
```bash
uc volume ls # All volumes
uc volume ls -m machine1 # On specific machine
uc volume create NAME -m MACHINE
uc volume rm NAME
```
### Caddy
```bash
uc caddy config # Show current generated Caddyfile (read-only)
uc caddy deploy # Deploy/upgrade Caddy across cluster
```
### DNS & Context
```bash
uc dns show # Show reserved *.uncld.dev domain
uc dns reserve # Reserve a new domain
uc ctx ls # List cluster contexts
uc ctx use prod # Switch context
```
---
## Port Publishing
### HTTP/HTTPS (via Caddy reverse proxy)
```
-p [hostname:]container_port[/protocol]
```
| Example | Meaning |
|---------|---------|
| `-p 8080/https` | HTTPS with auto `service-name.cluster-domain` hostname |
| `-p app.example.com:8080/https` | HTTPS with custom hostname |
| `-p 8080/http` | HTTP only, no TLS |
### TCP/UDP (host-bound, bypasses Caddy)
```
-p [host_ip:]host_port:container_port[/protocol]@host
```
| Example | Meaning |
|---------|---------|
| `-p 5432:5432@host` | TCP 5432 on all interfaces |
| `-p 127.0.0.1:5432:5432@host` | TCP 5432 loopback only |
| `-p 53:5353/udp@host` | UDP |
---
## Compose File Extensions
Uncloud adds these extensions on top of Docker Compose:
### `x-ports` — publish ports with domains
```yaml
services:
app:
image: app:latest
x-ports:
- example.com:8000/https
- www.example.com:8000/https
- api.example.com:9000/https
```
### `x-caddy` — custom Caddy config for service
```yaml
services:
app:
image: app:latest
x-caddy: |
example.com {
redir https://www.example.com{uri} permanent
}
www.example.com {
reverse_proxy {{upstreams 8000}} {
import common_proxy
}
basic_auth /admin/* {
admin $2a$14$...
}
}
```
Template functions available inside `x-caddy`:
- `{{upstreams [service] [port]}}` — healthy container IPs
- `{{.Name}}` — service name
- `{{.Upstreams}}` — map of all services → IPs
### `x-machines` — placement constraints
```yaml
services:
db:
image: postgres:18
x-machines: db-machine # Single machine name
app:
image: app:latest
x-machines:
- machine-1
- machine-2
```
### Full multi-service example
```yaml
services:
api:
build: ./api
x-ports:
- api.example.com:3000/https
environment:
DATABASE_URL: postgres://db:5432/mydb
web:
build: ./web
x-ports:
- example.com:8000/https
- www.example.com:8000/https
environment:
API_URL: http://api:3000
db:
image: postgres:18
environment:
POSTGRES_PASSWORD: ${DB_PASSWORD}
volumes:
- db-data:/var/lib/postgresql/data
x-machines: db-machine
volumes:
db-data:
```
---
## Routing to External (Non-Cluster) Devices
To expose an external device (e.g. BMC, NAS, router UI) via Caddy without running a real container:
**1. Create a Caddyfile snippet** (e.g. `~/device.caddyfile`):
```caddyfile
https://device.example.com {
reverse_proxy https://192.168.1.x {
transport http {
tls_insecure_skip_verify # needed for self-signed BMC certs
}
}
log
}
```
For plaintext upstream: `reverse_proxy http://192.168.1.x:port`
**2. Register as a named service with no-op container:**
```bash
uc service run \
--name device-bmc \
--caddyfile ~/device.caddyfile \
registry.k8s.io/pause:3.9
```
`pause` is a minimal no-op container — it does nothing, but gives Uncloud a service entry to attach the Caddyfile to.
**3. Verify:**
```bash
uc caddy config # device.example.com block should appear
```
> `--caddyfile` cannot be combined with non-`@host` published ports.
**DNS tip:** A wildcard record (`*.yourdomain.com → cluster-public-ip`) means any new subdomain works immediately — no DNS change needed per service.
---
## Service DNS (Internal)
Services inside the cluster resolve each other by name:
| DNS name | Resolves to |
|----------|------------|
| `service-name` | Any healthy container |
| `service-name.internal` | Same |
| `rr.service-name.internal` | Round-robin |
| `nearest.service-name.internal` | Machine-local first |
---
## Scaling & Global Services
```bash
uc scale web 5 # 5 replicas (spread across machines)
uc scale web 1 # Scale down
```
```yaml
services:
caddy:
deploy:
mode: global # One container on every machine
```
---
## Image Tag Templates (in compose.yaml)
```yaml
image: myapp:{{gitdate "20060102"}}.{{gitsha 7}}
image: myapp:{{gitsha 7}}.${GITHUB_RUN_ID:-local}
```
| Function | Output |
|----------|--------|
| `{{gitsha N}}` | First N chars of commit SHA |
| `{{gitdate "format"}}` | Git commit date in Go format |
| `{{date "format"}}` | Current date |
---
## Common Workflows
**Deploy from source:**
```bash
uc deploy # Build + push + deploy
uc build --push && uc deploy --no-build # Separate steps
```
**Inspect a service:**
```bash
uc inspect web
uc logs -f web
uc logs --since 1h web
uc exec web # Opens shell
uc exec web /bin/sh -c "env" # Run specific command
```
**Zero-downtime deploys** happen automatically; Uncloud waits for health checks before terminating old containers.
**Force recreate:**
```bash
uc deploy --recreate
```
---
## Common Mistakes
| Mistake | Fix |
|---------|-----|
| Editing the Caddyfile directly | Use `x-caddy` in compose or `--caddyfile` on `uc service run` |
| Proxying an HTTPS upstream with self-signed cert | Add `transport http { tls_insecure_skip_verify }` |
| `uc caddy config` shows no user-defined blocks | Caddy admin socket unreachable — check `uc inspect caddy` and `uc logs caddy` |
| Service can't reach external LAN IP from container | Verify Caddy container's host can route to target network |
| Volumes lost after `uc service rm` | Named volumes persist; only anonymous volumes are auto-removed |
Todos os arquivos
1 arquivosInstalar uncloud
Baixe e descompacte os arquivos de habilidades no diretório .claude/skills/.
Baixar ZIPClone o repositório e copie os arquivos da habilidade para o seu projeto.
git clone https://github.com/affaan-m/ECC/tree/main/skills/uncloud # Copy SKILL.md to your .claude/skills/ directory
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