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All 33 container-security skills now carry what it does, an explicit "Use when" trigger, keywords, and a negative trigger naming the nearest neighbour. Six collision clusters resolved by differentiating scope rather than merging, so no skill is removed: - kube-bench: running the tool vs interpreting findings into an audit - Calico: portable upstream NetworkPolicy vs Calico-as-CNI vs Calico-only CRDs (GlobalNetworkPolicy, HostEndpoint, DNS egress) - Falco: deploying and operating it vs authoring escape rules - container escape: tool-agnostic runtime signals vs Falco rule syntax vs static posture audit vs offensive breakout - Trivy: all-target platform and operator vs single-image scan - Docker: images and Dockerfiles vs daemon.json vs the CIS audit script Also replaces the templated "When to Use" boilerplate in these files, including bullets that only restated the skill's own name. Worst pair (Pod Security Standards vs Pod Security Admission) drops from 0.77 cosine to below the 0.45 threshold. Repo-wide: colliding pairs 60 -> 56, skills involved 105 -> 94.
338 lines
8.4 KiB
Markdown
338 lines
8.4 KiB
Markdown
---
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name: hardening-docker-daemon-configuration
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description: >-
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Hardens the Docker daemon (dockerd) through /etc/docker/daemon.json with user namespace
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remapping, TLS client authentication, seccomp profiles, and CIS Docker Benchmark controls
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such as icc, no-new-privileges, and live-restore. Use when securing a Docker host's daemon
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to prevent privilege escalation, breakout, or lateral movement, or when auditing daemon
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settings against CIS requirements. Keywords: dockerd, daemon.json, userns-remap,
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no-new-privileges, icc, live-restore, TLS socket. Do not use for hardening images and
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per-container runtime flags - use hardening-docker-containers-for-production.
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domain: cybersecurity
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subdomain: container-security
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tags:
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- docker
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- daemon-hardening
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- container-security
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- cis-benchmark
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- rootless
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- userns-remap
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version: '1.0'
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author: mahipal
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license: Apache-2.0
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nist_csf:
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- PR.PS-01
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- PR.IR-01
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- ID.AM-08
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- DE.CM-01
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mitre_attack:
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- T1610
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- T1611
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- T1609
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- T1525
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- T1553
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---
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# Hardening Docker Daemon Configuration
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## Overview
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The Docker daemon (`dockerd`) runs with root privileges and controls all container operations. Hardening its configuration through `/etc/docker/daemon.json`, TLS certificates, user namespace remapping, and network restrictions is essential to prevent privilege escalation, lateral movement, and container breakout attacks.
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## When to Use
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- When deploying or configuring hardening docker daemon configuration capabilities in your environment
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- When establishing security controls aligned to compliance requirements
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- When building or improving security architecture for this domain
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- When conducting security assessments that require this implementation
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## Prerequisites
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- Docker Engine 24.0+ installed
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- Root or sudo access to the Docker host
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- OpenSSL for TLS certificate generation
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- Understanding of Linux namespaces and cgroups
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## Core Hardened daemon.json
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```json
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{
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"icc": false,
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"userns-remap": "default",
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"no-new-privileges": true,
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"log-driver": "json-file",
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"log-opts": {
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"max-size": "10m",
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"max-file": "5"
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},
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"storage-driver": "overlay2",
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"live-restore": true,
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"userland-proxy": false,
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"default-ulimits": {
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"nofile": {
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"Name": "nofile",
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"Hard": 65536,
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"Soft": 32768
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},
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"nproc": {
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"Name": "nproc",
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"Hard": 4096,
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"Soft": 2048
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}
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},
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"seccomp-profile": "/etc/docker/seccomp/default.json",
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"default-address-pools": [
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{
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"base": "172.17.0.0/16",
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"size": 24
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}
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],
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"iptables": true,
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"ip-forward": true,
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"ip-masq": true,
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"experimental": false,
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"metrics-addr": "127.0.0.1:9323",
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"max-concurrent-downloads": 3,
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"max-concurrent-uploads": 5,
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"default-runtime": "runc",
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"runtimes": {
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"runsc": {
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"path": "/usr/local/bin/runsc",
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"runtimeArgs": ["--platform=ptrace"]
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}
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}
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}
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```
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## Setting-by-Setting Explanation
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### Disable Inter-Container Communication (ICC)
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```json
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{
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"icc": false
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}
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```
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Prevents containers on the default bridge network from communicating. Each container must use explicit `--link` or user-defined networks with published ports.
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### Enable User Namespace Remapping
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```json
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{
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"userns-remap": "default"
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}
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```
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Maps container root (UID 0) to a high unprivileged UID on the host. This prevents a container breakout from gaining root on the host.
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```bash
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# Verify userns-remap is active
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cat /etc/subuid
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# Output: dockremap:100000:65536
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cat /etc/subgid
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# Output: dockremap:100000:65536
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# Verify container UID mapping
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docker run --rm alpine id
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# uid=0(root) gid=0(root) -- but host UID is 100000+
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```
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### Disable New Privilege Escalation
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```json
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{
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"no-new-privileges": true
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}
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```
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Prevents container processes from gaining additional privileges via setuid/setgid binaries or capability escalation.
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### Enable Live Restore
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```json
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{
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"live-restore": true
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}
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```
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Keeps containers running during daemon downtime, enabling daemon upgrades without container restart.
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### Disable Userland Proxy
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```json
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{
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"userland-proxy": false
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}
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```
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Uses iptables rules instead of docker-proxy for port forwarding, reducing attack surface and improving performance.
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## TLS Configuration for Remote Docker API
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### Generate CA and Server Certificates
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```bash
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# Create CA
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openssl genrsa -aes256 -out ca-key.pem 4096
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openssl req -new -x509 -days 365 -key ca-key.pem -sha256 -out ca.pem \
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-subj "/CN=Docker CA"
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# Create server key and CSR
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openssl genrsa -out server-key.pem 4096
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openssl req -subj "/CN=docker-host" -sha256 -new -key server-key.pem -out server.csr
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# Create extfile with SANs
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echo "subjectAltName = DNS:docker-host,IP:10.0.0.5,IP:127.0.0.1" > extfile.cnf
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echo "extendedKeyUsage = serverAuth" >> extfile.cnf
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# Sign server certificate
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openssl x509 -req -days 365 -sha256 -in server.csr -CA ca.pem -CAkey ca-key.pem \
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-CAcreateserial -out server-cert.pem -extfile extfile.cnf
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# Create client key and certificate
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openssl genrsa -out key.pem 4096
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openssl req -subj "/CN=client" -new -key key.pem -out client.csr
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echo "extendedKeyUsage = clientAuth" > extfile-client.cnf
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openssl x509 -req -days 365 -sha256 -in client.csr -CA ca.pem -CAkey ca-key.pem \
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-CAcreateserial -out cert.pem -extfile extfile-client.cnf
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# Set permissions
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chmod 0400 ca-key.pem key.pem server-key.pem
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chmod 0444 ca.pem server-cert.pem cert.pem
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# Move to Docker TLS directory
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sudo mkdir -p /etc/docker/tls
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sudo cp ca.pem server-cert.pem server-key.pem /etc/docker/tls/
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```
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### Configure daemon.json for TLS
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```json
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{
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"tls": true,
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"tlsverify": true,
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"tlscacert": "/etc/docker/tls/ca.pem",
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"tlscert": "/etc/docker/tls/server-cert.pem",
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"tlskey": "/etc/docker/tls/server-key.pem",
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"hosts": ["unix:///var/run/docker.sock", "tcp://0.0.0.0:2376"]
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}
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```
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### Client Connection
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```bash
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docker --tlsverify \
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--tlscacert=ca.pem \
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--tlscert=cert.pem \
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--tlskey=key.pem \
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-H=tcp://docker-host:2376 version
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```
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## Docker Socket Protection
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```bash
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# Restrict socket ownership
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sudo chown root:docker /var/run/docker.sock
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sudo chmod 660 /var/run/docker.sock
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# Audit Docker socket access
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sudo auditctl -w /var/run/docker.sock -k docker-socket
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# Never mount Docker socket into containers
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# BAD: docker run -v /var/run/docker.sock:/var/run/docker.sock ...
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```
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## Rootless Docker
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```bash
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# Install rootless Docker
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curl -fsSL https://get.docker.com/rootless | sh
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# Configure environment
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export PATH=$HOME/bin:$PATH
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export DOCKER_HOST=unix://$XDG_RUNTIME_DIR/docker.sock
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# Start rootless daemon
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systemctl --user start docker
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systemctl --user enable docker
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# Verify rootless mode
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docker info | grep -i rootless
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# Rootless: true
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```
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## Content Trust (Image Signing)
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```bash
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# Enable Docker Content Trust
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export DOCKER_CONTENT_TRUST=1
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# Pull only signed images
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docker pull library/alpine:3.18
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# Will fail if image is not signed
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# Sign and push image
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docker trust sign myregistry/myapp:1.0
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```
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## Seccomp Profile
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```bash
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# View default seccomp profile
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docker info --format '{{.SecurityOptions}}'
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# Use custom seccomp profile
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docker run --security-opt seccomp=/etc/docker/seccomp/custom.json alpine
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# Verify seccomp is enabled
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docker inspect --format='{{.HostConfig.SecurityOpt}}' container_name
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```
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## AppArmor Profile
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```bash
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# Check AppArmor status
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sudo aa-status
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# Use custom AppArmor profile
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docker run --security-opt apparmor=docker-custom alpine
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# Load custom profile
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sudo apparmor_parser -r /etc/apparmor.d/docker-custom
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```
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## Verification Commands
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```bash
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# Check daemon configuration
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docker info
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# Verify userns-remap
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docker info --format '{{.SecurityOptions}}'
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# Check ICC setting
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docker network inspect bridge --format '{{.Options}}'
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# Audit with Docker Bench
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docker run --rm --net host --pid host \
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-v /var/run/docker.sock:/var/run/docker.sock \
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-v /etc:/etc:ro \
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docker/docker-bench-security
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```
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## Best Practices
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1. **Never expose Docker daemon without TLS** - Always use `--tlsverify` for remote access
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2. **Enable user namespace remapping** - Map container root to unprivileged host UID
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3. **Disable ICC** - Prevent default bridge network container-to-container communication
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4. **Use rootless mode** - Run Docker daemon as non-root where possible
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5. **Enable content trust** - Only pull signed images
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6. **Configure log rotation** - Prevent log files from filling disk
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7. **Use seccomp profiles** - Restrict syscalls available to containers
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8. **Audit Docker socket** - Monitor access to /var/run/docker.sock
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9. **Run Docker Bench regularly** - Automate CIS benchmark checks
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10. **Keep Docker updated** - Apply security patches promptly
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