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docs(refactor): Restructure document hierarchy
Additionally rename `installation-examples.md` and split
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16 changed files with 123 additions and 123 deletions
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---
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title: 'Kubernetes'
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---
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## Deployment Example
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There is nothing much in deploying mailserver to Kubernetes itself. The things are pretty same as in [`docker-compose.yml`][github-file-compose], but with Kubernetes syntax.
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```yaml
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apiVersion: v1
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kind: Namespace
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metadata:
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name: mailserver
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---
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kind: ConfigMap
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apiVersion: v1
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metadata:
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name: mailserver.env.config
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namespace: mailserver
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labels:
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app: mailserver
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data:
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OVERRIDE_HOSTNAME: example.com
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ENABLE_FETCHMAIL: "0"
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FETCHMAIL_POLL: "120"
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ENABLE_SPAMASSASSIN: "0"
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ENABLE_CLAMAV: "0"
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ENABLE_FAIL2BAN: "0"
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ENABLE_POSTGREY: "0"
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ONE_DIR: "1"
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DMS_DEBUG: "0"
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---
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kind: ConfigMap
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apiVersion: v1
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metadata:
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name: mailserver.config
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namespace: mailserver
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labels:
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app: mailserver
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data:
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postfix-accounts.cf: |
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user1@example.com|{SHA512-CRYPT}$6$2YpW1nYtPBs2yLYS$z.5PGH1OEzsHHNhl3gJrc3D.YMZkvKw/vp.r5WIiwya6z7P/CQ9GDEJDr2G2V0cAfjDFeAQPUoopsuWPXLk3u1
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postfix-virtual.cf: |
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alias1@example.com user1@dexample.com
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#dovecot.cf: |
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# service stats {
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# unix_listener stats-reader {
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# group = docker
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# mode = 0666
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# }
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# unix_listener stats-writer {
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# group = docker
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# mode = 0666
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# }
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# }
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SigningTable: |
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*@example.com mail._domainkey.example.com
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KeyTable: |
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mail._domainkey.example.com example.com:mail:/etc/opendkim/keys/example.com-mail.key
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TrustedHosts: |
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127.0.0.1
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localhost
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#user-patches.sh: |
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# #!/bin/bash
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#fetchmail.cf: |
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---
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kind: Secret
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apiVersion: v1
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metadata:
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name: mailserver.opendkim.keys
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namespace: mailserver
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labels:
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app: mailserver
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type: Opaque
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data:
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example.com-mail.key: 'base64-encoded-DKIM-key'
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---
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kind: Service
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apiVersion: v1
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metadata:
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name: mailserver
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namespace: mailserver
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labels:
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app: mailserver
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spec:
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selector:
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app: mailserver
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ports:
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- name: smtp
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port: 25
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targetPort: smtp
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- name: smtp-secure
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port: 465
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targetPort: smtp-secure
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- name: smtp-auth
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port: 587
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targetPort: smtp-auth
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- name: imap
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port: 143
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targetPort: imap
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- name: imap-secure
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port: 993
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targetPort: imap-secure
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---
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apiVersion: apps/v1
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kind: Deployment
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metadata:
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name: mailserver
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namespace: mailserver
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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: mailserver
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template:
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metadata:
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labels:
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app: mailserver
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role: mail
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tier: backend
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spec:
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#nodeSelector:
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# kubernetes.io/hostname: local.k8s
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#initContainers:
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#- name: init-myservice
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# image: busybox
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# command: ["/bin/sh", "-c", "cp /tmp/user-patches.sh /tmp/files"]
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# volumeMounts:
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# - name: config
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# subPath: user-patches.sh
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# mountPath: /tmp/user-patches.sh
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# readOnly: true
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# - name: tmp-files
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# mountPath: /tmp/files
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containers:
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- name: docker-mailserver
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image: tvial/docker-mailserver:latest
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imagePullPolicy: Always
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volumeMounts:
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- name: config
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subPath: postfix-accounts.cf
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mountPath: /tmp/docker-mailserver/postfix-accounts.cf
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readOnly: true
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#- name: config
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# subPath: postfix-main.cf
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# mountPath: /tmp/docker-mailserver/postfix-main.cf
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# readOnly: true
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- name: config
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subPath: postfix-virtual.cf
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mountPath: /tmp/docker-mailserver/postfix-virtual.cf
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readOnly: true
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- name: config
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subPath: fetchmail.cf
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mountPath: /tmp/docker-mailserver/fetchmail.cf
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readOnly: true
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- name: config
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subPath: dovecot.cf
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mountPath: /tmp/docker-mailserver/dovecot.cf
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readOnly: true
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#- name: config
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# subPath: user1.example.com.dovecot.sieve
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# mountPath: /tmp/docker-mailserver/user1@example.com.dovecot.sieve
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# readOnly: true
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#- name: tmp-files
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# subPath: user-patches.sh
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# mountPath: /tmp/docker-mailserver/user-patches.sh
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- name: config
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subPath: SigningTable
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mountPath: /tmp/docker-mailserver/opendkim/SigningTable
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readOnly: true
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- name: config
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subPath: KeyTable
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mountPath: /tmp/docker-mailserver/opendkim/KeyTable
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readOnly: true
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- name: config
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subPath: TrustedHosts
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mountPath: /tmp/docker-mailserver/opendkim/TrustedHosts
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readOnly: true
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- name: opendkim-keys
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mountPath: /tmp/docker-mailserver/opendkim/keys
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readOnly: true
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- name: data
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mountPath: /var/mail
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subPath: data
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- name: data
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mountPath: /var/mail-state
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subPath: state
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- name: data
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mountPath: /var/log/mail
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subPath: log
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ports:
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- name: smtp
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containerPort: 25
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protocol: TCP
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- name: smtp-secure
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containerPort: 465
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protocol: TCP
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- name: smtp-auth
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containerPort: 587
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- name: imap
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containerPort: 143
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protocol: TCP
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- name: imap-secure
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containerPort: 993
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protocol: TCP
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envFrom:
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- configMapRef:
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name: mailserver.env.config
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volumes:
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- name: config
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configMap:
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name: mailserver.config
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- name: opendkim-keys
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secret:
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secretName: mailserver.opendkim.keys
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- name: data
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persistentVolumeClaim:
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claimName: mail-storage
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- name: tmp-files
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emptyDir: {}
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```
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!!! note
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Any sensitive data (keys, etc) should be deployed via [Secrets][k8s-config-secret]. Other configuration just fits well into [ConfigMaps][k8s-config-pod].
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!!! note
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Make sure that [Pod][k8s-workload-pod] is [assigned][k8s-assign-pod-node] to specific [Node][k8s-nodes] in case you're using volume for data directly with `hostPath`. Otherwise Pod can be rescheduled on a different Node and previous data won't be found. Except the case when you're using some shared filesystem on your Nodes.
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## Exposing to the Outside World
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The hard part with Kubernetes is to expose deployed mailserver to outside world. Kubernetes provides multiple ways for doing that. Each has its downsides and complexity.
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The major problem with exposing mailserver to outside world in Kubernetes is to [preserve real client IP][k8s-service-source-ip]. Real client IP is required by mailserver for performing IP-based SPF checks and spam checks.
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Preserving real client IP is relatively [non-trivial in Kubernetes][k8s-service-source-ip] and most exposing ways do not provide it. So, it's up to you to decide which exposing way suits better your needs in a price of complexity.
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If you do not require SPF checks for incoming mails you may disable them in [Postfix configuration][docs-postfix] by dropping following line (which removes `check_policy_service unix:private/policyd-spf` option):
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```yaml
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kind: ConfigMap
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apiVersion: v1
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metadata:
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name: mailserver.config
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labels:
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app: mailserver
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data:
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postfix-main.cf: |
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smtpd_recipient_restrictions = permit_sasl_authenticated, permit_mynetworks, reject_unauth_destination, reject_unauth_pipelining, reject_invalid_helo_hostname, reject_non_fqdn_helo_hostname, reject_unknown_recipient_domain, reject_rbl_client zen.spamhaus.org, reject_rbl_client bl.spamcop.net
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# ...
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---
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kind: Deployment
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apiVersion: extensions/v1beta1
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metadata:
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name: mailserver
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# ...
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volumeMounts:
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- name: config
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subPath: postfix-main.cf
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mountPath: /tmp/docker-mailserver/postfix-main.cf
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readOnly: true
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```
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### External IPs Service
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The simplest way is to expose mailserver as a [Service][k8s-network-service] with [external IPs][k8s-network-external-ip].
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```yaml
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kind: Service
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apiVersion: v1
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metadata:
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name: mailserver
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labels:
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app: mailserver
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spec:
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selector:
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app: mailserver
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ports:
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- name: smtp
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port: 25
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targetPort: smtp
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# ...
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externalIPs:
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- 80.11.12.10
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```
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**Downsides**
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- __Real client IP is not preserved__, so SPF check of incoming mail will fail.
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- Requirement to specify exposed IPs explicitly.
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### Proxy port to Service
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The [Proxy Pod][k8s-proxy-service] helps to avoid necessity of specifying external IPs explicitly. This comes in price of complexity: you must deploy Proxy Pod on each [Node][k8s-nodes] you want to expose mailserver on.
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**Downsides**
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- __Real client IP is not preserved__, so SPF check of incoming mail will fail.
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### Bind to concrete Node and use host network
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The simplest way to preserve real client IP is to use `hostPort` and `hostNetwork: true` in the mailserver [Pod][k8s-workload-pod]. This comes in price of availability: you can talk to mailserver from outside world only via IPs of [Node][k8s-nodes] where mailserver is deployed.
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```yaml
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kind: Deployment
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apiVersion: extensions/v1beta1
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metadata:
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name: mailserver
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# ...
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spec:
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hostNetwork: true
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# ...
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containers:
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# ...
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ports:
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- name: smtp
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containerPort: 25
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hostPort: 25
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- name: smtp-auth
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containerPort: 587
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hostPort: 587
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- name: imap-secure
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containerPort: 993
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hostPort: 993
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# ...
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```
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**Downsides**
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- Not possible to access mailserver via other cluster Nodes, only via the one mailserver deployed at.
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- Every Port within the Container is exposed on the Host side, regardless of what the `ports` section in the Configuration defines.
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### Proxy Port to Service via PROXY Protocol
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This way is ideologically the same as [using Proxy Pod](#proxy-port-to-service), but instead of a separate proxy pod, you configure your ingress to proxy TCP traffic to the mailserver pod using the PROXY protocol, which preserves the real client IP.
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#### Configure your Ingress
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With an [NGINX ingress controller][k8s-nginx], set `externalTrafficPolicy: Local` for its service, and add the following to the TCP services config map (as described [here][k8s-nginx-expose]):
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```yaml
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25: "mailserver/mailserver:25::PROXY"
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465: "mailserver/mailserver:465::PROXY"
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587: "mailserver/mailserver:587::PROXY"
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993: "mailserver/mailserver:993::PROXY"
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```
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With [HAProxy][dockerhub-haproxy], the configuration should look similar to the above. If you know what it actually looks like, add an example here. :smiley:
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#### Configure the Mailserver
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Then, configure both [Postfix][docs-postfix] and [Dovecot][docs-dovecot] to expect the PROXY protocol:
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```yaml
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kind: ConfigMap
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apiVersion: v1
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metadata:
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name: mailserver.config
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labels:
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app: mailserver
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data:
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postfix-main.cf: |
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postscreen_upstream_proxy_protocol = haproxy
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postfix-master.cf: |
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submission/inet/smtpd_upstream_proxy_protocol=haproxy
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smtps/inet/smtpd_upstream_proxy_protocol=haproxy
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dovecot.cf: |
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# Assuming your ingress controller is bound to 10.0.0.0/8
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haproxy_trusted_networks = 10.0.0.0/8, 127.0.0.0/8
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service imap-login {
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inet_listener imaps {
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haproxy = yes
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}
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}
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# ...
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---
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kind: Deployment
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apiVersion: extensions/v1beta1
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metadata:
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name: mailserver
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spec:
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template:
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spec:
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containers:
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- name: docker-mailserver
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volumeMounts:
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- name: config
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subPath: postfix-main.cf
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mountPath: /tmp/docker-mailserver/postfix-main.cf
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readOnly: true
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- name: config
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subPath: postfix-master.cf
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mountPath: /tmp/docker-mailserver/postfix-master.cf
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readOnly: true
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- name: config
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subPath: dovecot.cf
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mountPath: /tmp/docker-mailserver/dovecot.cf
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readOnly: true
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```
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**Downsides**
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- Not possible to access mailserver via inner cluster Kubernetes DNS, as PROXY protocol is required for incoming connections.
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## Let's Encrypt Certificates
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[Kube-Lego][kube-lego] may be used for a role of Let's Encrypt client. It works with Kubernetes [Ingress Resources][k8s-network-ingress] and automatically issues/manages certificates/keys for exposed services via Ingresses.
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```yaml
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kind: Ingress
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apiVersion: extensions/v1beta1
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metadata:
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name: mailserver
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labels:
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app: mailserver
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annotations:
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kubernetes.io/tls-acme: 'true'
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spec:
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rules:
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- host: example.com
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http:
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paths:
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- path: /
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backend:
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serviceName: default-backend
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servicePort: 80
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tls:
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- secretName: mailserver.tls
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hosts:
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- example.com
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```
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Now, you can use Let's Encrypt cert and key from `mailserver.tls` [Secret][k8s-config-secret] in your [Pod][k8s-workload-pod] spec:
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```yaml
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# ...
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env:
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- name: SSL_TYPE
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value: 'manual'
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- name: SSL_CERT_PATH
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value: '/etc/ssl/mailserver/tls.crt'
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- name: SSL_KEY_PATH
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value: '/etc/ssl/mailserver/tls.key'
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# ...
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volumeMounts:
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- name: tls
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mountPath: /etc/ssl/mailserver
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readOnly: true
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# ...
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volumes:
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- name: tls
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secret:
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secretName: mailserver.tls
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```
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[docs-dovecot]: ./override-defaults/dovecot.md
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[docs-postfix]: ./override-defaults/postfix.md
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[github-file-compose]: https://github.com/docker-mailserver/docker-mailserver/blob/master/docker-compose.yml
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[dockerhub-haproxy]: https://hub.docker.com/_/haproxy
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[kube-lego]: https://github.com/jetstack/kube-lego
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[k8s-assign-pod-node]: https://kubernetes.io/docs/concepts/configuration/assign-pod-node
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[k8s-config-pod]: https://kubernetes.io/docs/tasks/configure-pod-container/configmap
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[k8s-config-secret]: https://kubernetes.io/docs/concepts/configuration/secret
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[k8s-nginx]: https://kubernetes.github.io/ingress-nginx
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[k8s-nginx-expose]: https://kubernetes.github.io/ingress-nginx/user-guide/exposing-tcp-udp-services
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[k8s-network-ingress]: https://kubernetes.io/docs/concepts/services-networking/ingress
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[k8s-network-service]: https://kubernetes.io/docs/concepts/services-networking/service
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[k8s-network-external-ip]: https://kubernetes.io/docs/concepts/services-networking/service/#external-ips
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[k8s-nodes]: https://kubernetes.io/docs/concepts/architecture/nodes
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[k8s-proxy-service]: https://github.com/kubernetes/contrib/tree/master/for-demos/proxy-to-service
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[k8s-service-source-ip]: https://kubernetes.io/docs/tutorials/services/source-ip
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[k8s-workload-pod]: https://kubernetes.io/docs/concepts/workloads/pods/pod
|
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