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335 lines
12 KiB
Markdown
335 lines
12 KiB
Markdown
---
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description: Security hardening guide for SnapOtter. Container security, network isolation, Docker secrets, Kubernetes deployment, and compliance artifacts.
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---
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# Security & Hardening
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SnapOtter processes files entirely on your infrastructure. It sends anonymous, content-free product analytics and crash reports by default to help improve the project. It never sends your files, file names, file contents, OCR output, image metadata, or document text. Optional feedback is sent only after a user submits it, only when analytics is enabled, and contact fields are included only with explicit contact consent. An administrator can turn analytics and feedback capture off in one click under Settings > System > Privacy, no rebuild required. File processing always stays inside your container.
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The container runs as a dedicated non-root user (`snapotter`) with all Linux capabilities dropped except the minimum required set. For the full vulnerability disclosure policy and security architecture, see [SECURITY.md](https://github.com/snapotter-hq/SnapOtter/blob/main/SECURITY.md) on GitHub.
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## Container Hardening
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The [default docker-compose.yml](https://github.com/snapotter-hq/SnapOtter/blob/main/docker/docker-compose.yml) includes production security hardening. Here is a breakdown of each option and why it matters:
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```yaml
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services:
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SnapOtter:
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image: snapotter/snapotter:latest
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ports:
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# Bind to localhost only for internet-facing deployments:
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- "127.0.0.1:1349:1349"
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volumes:
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- SnapOtter-data:/data
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- SnapOtter-workspace:/tmp/workspace
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environment:
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- AUTH_ENABLED=true
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- DEFAULT_PASSWORD=change-me-immediately
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- RATE_LIMIT_PER_MIN=100
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- DATABASE_URL=postgres://snapotter:snapotter@postgres:5432/snapotter
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- REDIS_URL=redis://redis:6379
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depends_on:
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postgres:
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condition: service_healthy
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redis:
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condition: service_healthy
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# --- Resource limits ---
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mem_limit: 6g # Prevents runaway memory from crashing the host
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memswap_limit: 6g # No swap - fail fast instead of degrading the host
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cpus: 4 # Cap CPU usage to 4 cores
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pids_limit: 512 # Prevents fork bombs
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# --- Capability restrictions ---
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cap_drop:
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- ALL # Drop ALL Linux capabilities first
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cap_add:
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- CHOWN # Needed for volume permission setup
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- SETUID # Needed for gosu privilege drop (root -> snapotter)
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- SETGID # Needed for gosu privilege drop
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- DAC_OVERRIDE # Needed for volume permission setup
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- FOWNER # Needed for volume permission setup
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# --- Logging ---
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logging:
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driver: json-file
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options:
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max-size: "50m" # Rotate logs at 50 MB
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max-file: "5" # Keep 5 rotated log files
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# --- Health check ---
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healthcheck:
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test: ["CMD", "curl", "-sf", "--max-time", "5", "http://localhost:1349/api/v1/health"]
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interval: 30s
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timeout: 5s
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start_period: 60s
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retries: 3
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shm_size: "2gb" # Required for Python ML shared memory
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restart: unless-stopped
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postgres:
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image: postgres:17-alpine
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environment:
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POSTGRES_USER: snapotter
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POSTGRES_PASSWORD: snapotter
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POSTGRES_DB: snapotter
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volumes:
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- SnapOtter-pgdata:/var/lib/postgresql/data
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restart: unless-stopped
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healthcheck:
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test: ["CMD-SHELL", "pg_isready -U snapotter"]
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interval: 10s
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timeout: 5s
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retries: 12
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start_period: 15s
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redis:
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image: redis:8-alpine
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command: ["redis-server", "--maxmemory-policy", "noeviction", "--appendonly", "yes"]
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volumes:
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- SnapOtter-redisdata:/data
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restart: unless-stopped
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healthcheck:
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test: ["CMD", "redis-cli", "ping"]
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interval: 10s
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timeout: 5s
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retries: 12
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start_period: 10s
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volumes:
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SnapOtter-data:
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SnapOtter-workspace:
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SnapOtter-pgdata:
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SnapOtter-redisdata:
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```
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### Why `no-new-privileges` Is Not Set
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`security_opt: [no-new-privileges:true]` is intentionally omitted. The entrypoint starts as root to fix volume ownership, then drops to the `snapotter` user via [gosu](https://github.com/tianon/gosu), which requires setuid. Once the privilege drop completes, the process runs as `snapotter` with all capabilities except the five listed above removed.
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If you use Kubernetes or Docker's `--user` flag to run as non-root directly (bypassing gosu), `no-new-privileges` is safe to enable.
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### Why `read_only` Is Not Set
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`read_only: true` is not set because PUID/PGID remapping writes to `/etc/passwd` and `/etc/group` at startup. If you use Docker's `--user` flag or Kubernetes `runAsUser` instead of PUID/PGID, you can safely enable a read-only root filesystem.
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## Network Isolation
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During normal operation, the container makes **zero outbound network connections**. All file processing happens locally using bundled libraries.
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```
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Browser --> Reverse Proxy (TLS) --> SnapOtter container --> (nothing)
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```
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The only exception is **AI model downloads**: when a user installs an AI feature bundle through the UI, the container downloads model files from GitHub Releases and PyPI. These downloads happen once per bundle and are stored in the `/data` volume.
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**Firewall recommendations:**
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| Scenario | Outbound rule |
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|---|---|
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| Air-gapped (no AI) | Block all outbound traffic from the container |
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| AI bundles needed | Allow HTTPS to `github.com`, `objects.githubusercontent.com`, `pypi.org`, `files.pythonhosted.org` during install, then block |
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| After AI install | Block all outbound traffic - models are cached locally |
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For reverse proxy configuration (Nginx, Traefik, Caddy, Cloudflare Tunnels), see the [Deployment guide](/guide/deployment#reverse-proxy).
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## Docker Secrets
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For production deployments, avoid passing secrets as plain-text environment variables. The entrypoint supports Docker's `_FILE` convention: mount a secret as a file and set the corresponding `_FILE` variable to its path.
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**Supported secrets:**
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| Variable | `_FILE` equivalent |
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|---|---|
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| `DEFAULT_PASSWORD` | `DEFAULT_PASSWORD_FILE` |
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| `COOKIE_SECRET` | `COOKIE_SECRET_FILE` |
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| `OIDC_CLIENT_SECRET` | `OIDC_CLIENT_SECRET_FILE` |
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| `S3_ACCESS_KEY_ID` | `S3_ACCESS_KEY_ID_FILE` |
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| `S3_SECRET_ACCESS_KEY` | `S3_SECRET_ACCESS_KEY_FILE` |
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| `SNAPOTTER_LICENSE_KEY` | `SNAPOTTER_LICENSE_KEY_FILE` |
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**Example with Docker Compose secrets:**
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```yaml
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services:
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SnapOtter:
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image: snapotter/snapotter:latest
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environment:
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- AUTH_ENABLED=true
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- DEFAULT_USERNAME=admin
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- DEFAULT_PASSWORD_FILE=/run/secrets/snapotter_password
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- COOKIE_SECRET_FILE=/run/secrets/cookie_secret
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secrets:
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- snapotter_password
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- cookie_secret
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secrets:
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snapotter_password:
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file: ./secrets/snapotter_password.txt
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cookie_secret:
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file: ./secrets/cookie_secret.txt
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```
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::: tip
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Docker Compose secrets (without Swarm) require Compose v2.23 or later.
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:::
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## Kubernetes Deployment
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The entrypoint detects when the container is already running as non-root (e.g., via Kubernetes `runAsUser`) and skips the gosu privilege drop automatically. In that case it cannot chown the mounted volumes itself, so it verifies they are writable and exits early with actionable guidance if they are not — see [Storage permissions](/guide/deployment#storage-permissions) for `fsGroup` and foreign-UID setups (TrueNAS, OpenShift).
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**Recommended Pod SecurityContext:**
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```yaml
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apiVersion: apps/v1
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kind: Deployment
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metadata:
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name: snapotter
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spec:
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replicas: 1
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selector:
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matchLabels:
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app: snapotter
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template:
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metadata:
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labels:
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app: snapotter
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spec:
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securityContext:
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runAsNonRoot: true
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runAsUser: 999
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runAsGroup: 999
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fsGroup: 999
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containers:
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- name: snapotter
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image: snapotter/snapotter:latest
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ports:
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- containerPort: 1349
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securityContext:
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allowPrivilegeEscalation: false
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capabilities:
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drop: [ALL]
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resources:
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requests:
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cpu: "1"
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memory: 2Gi
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limits:
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cpu: "4"
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memory: 6Gi
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livenessProbe:
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httpGet:
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path: /api/v1/health
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port: 1349
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initialDelaySeconds: 60
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periodSeconds: 30
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timeoutSeconds: 5
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readinessProbe:
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httpGet:
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path: /api/v1/health
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port: 1349
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initialDelaySeconds: 10
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periodSeconds: 10
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timeoutSeconds: 5
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volumeMounts:
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- name: data
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mountPath: /data
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- name: workspace
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mountPath: /tmp/workspace
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volumes:
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- name: data
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persistentVolumeClaim:
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claimName: snapotter-data
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- name: workspace
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emptyDir:
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medium: Memory
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sizeLimit: 2Gi
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```
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Since `runAsUser: 999` is set at the pod level, the entrypoint skips gosu entirely. This allows `allowPrivilegeEscalation: false` and `drop: [ALL]` capabilities without conflict.
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For resource sizing, see [Hardware Requirements](/guide/deployment#hardware-requirements).
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## Backup and Recovery
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Persistent state is split across two volumes:
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| Volume | Contents | Critical? |
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|---|---|---|
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| `SnapOtter-pgdata` | PostgreSQL database (users, settings, pipelines, jobs, audit log) | Yes |
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| `/data` (app volume) | User-uploaded files, AI models, Python venv | Partially (see below) |
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Within the `/data` volume:
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| Path | Contents | Critical? |
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|---|---|---|
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| `/data/uploads/`, `/data/outputs/` | User files and processing results | Yes |
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| `/data/ai/` | Downloaded AI model files | No (re-downloadable) |
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| `/data/venv/` | Python virtual environment | No (rebuilt on start) |
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### Database backup
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Use `pg_dump` to back up the database while the stack is running:
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```bash
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# Dump the database
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docker exec SnapOtter-postgres pg_dump -U snapotter snapotter > backup.sql
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# Restore into a fresh database
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cat backup.sql | docker exec -i SnapOtter-postgres psql -U snapotter snapotter
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```
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Alternatively, stop the stack and snapshot the `SnapOtter-pgdata` volume:
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```bash
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docker compose down
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docker run --rm -v SnapOtter-pgdata:/data -v $(pwd)/backup:/backup \
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alpine tar czf /backup/snapotter-pgdata.tar.gz -C /data .
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```
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### User files backup
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```bash
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# Snapshot the app data volume (excluding re-downloadable AI models)
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docker run --rm -v SnapOtter-data:/data -v $(pwd)/backup:/backup \
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alpine tar czf /backup/snapotter-files.tar.gz \
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--exclude='ai' --exclude='venv' -C /data .
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```
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AI models total up to 14 GB across all bundles. Since they are re-downloadable, exclude `/data/ai/` and `/data/venv/` from backups to save space. Only the database and user files are critical.
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## Compliance Artifacts
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Each SnapOtter release includes the following security artifacts:
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| Artifact | Format | Where to find it |
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| SBOM (CycloneDX) | JSON | [GitHub Release](https://github.com/snapotter-hq/SnapOtter/releases) asset: `snapotter-v{version}-sbom.cdx.json` |
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| SBOM (SPDX) | JSON | [GitHub Release](https://github.com/snapotter-hq/SnapOtter/releases) asset: `snapotter-v{version}-sbom.spdx.json` |
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| Vulnerability scan | Trivy JSON | [GitHub Release](https://github.com/snapotter-hq/SnapOtter/releases) asset: `snapotter-v{version}-trivy.json` |
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| Vulnerability scan | SARIF | [GitHub Security](https://github.com/snapotter-hq/SnapOtter/security) tab |
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| Static analysis | CodeQL (JS/TS + Python) | [GitHub Security](https://github.com/snapotter-hq/SnapOtter/security) tab, runs weekly + per PR |
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| Dependency review | GitHub native | Per-PR check, fails on high-severity additions |
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| Python dependency audit | pip-audit | CI run log on every push |
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| Security policy | Markdown | [SECURITY.md](https://github.com/snapotter-hq/SnapOtter/blob/main/SECURITY.md) in the repository |
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| Dependency updates | Dependabot | Automated weekly PRs for npm, pip, Docker, Actions |
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**Running your own scan:**
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Download the SBOM from the release and scan it with your preferred tool:
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```bash
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# Scan with Grype using the CycloneDX SBOM
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grype sbom:snapotter-v1.17.2-sbom.cdx.json
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# Scan with Trivy using the SPDX SBOM
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trivy sbom snapotter-v1.17.2-sbom.spdx.json
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# Scan the Docker image directly
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trivy image snapotter/snapotter:1.17.2
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```
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::: info
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The SBOM and vulnerability scan reflect the exact image published for that release. AI model bundles installed after deployment are not included in the SBOM since they are downloaded at runtime.
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:::
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