This commit is contained in:
awei
2025-03-08 17:21:51 +08:00
parent 9b10835b61
commit 4e51db4edd
13 changed files with 597 additions and 66 deletions

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@@ -32,7 +32,7 @@ services:
dockerfile: Dockerfile
context: ./
volumes:
- /data/docker-active:/data
- /data/bbsfiles/active:/data
environment:
BBSGO_ENV: docker
BBSGO_DB_URL: root:123456@tcp(bbs-go-mysql-active:3306)/bbsgo_db?charset=utf8mb4&parseTime=True&multiStatements=true&loc=Local

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@@ -19,7 +19,7 @@ DB:
# 上传配置
Uploader:
Enable: aliyunOss
Enable: Local
AliyunOss:
Host:
Bucket:
@@ -33,8 +33,8 @@ Uploader:
StyleDetail: detail
# 本地文件上传
Local:
Host: https://st.mlog.club/ # 上传文件域名
Path: /data/www/st.mlog.club # 上传目录
Host: https://image.deepseak.icu/ # 上传文件域名
Path: /data/activefiles # 上传目录
# 邮件服务器配置,用于邮件通知
Smtp:

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@@ -32,7 +32,7 @@ services:
dockerfile: Dockerfile
context: ./
volumes:
- /data/docker:/data
- /data/bbsfiles/bbs:/data
environment:
BBSGO_ENV: docker
BBSGO_DB_URL: root:123456@tcp(bbs-go-mysql:3306)/bbsgo_db?charset=utf8mb4&parseTime=True&multiStatements=true&loc=Local

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@@ -19,7 +19,7 @@ DB:
# 上传配置
Uploader:
Enable: aliyunOss
Enable: Local
AliyunOss:
Host:
Bucket:
@@ -33,8 +33,8 @@ Uploader:
StyleDetail: detail
# 本地文件上传
Local:
Host: https://st.mlog.club/ # 上传文件域名
Path: /data/www/st.mlog.club # 上传目录
Host: https://image.deepseak.icu/ # 上传文件域名
Path: /data/bbsfiles # 上传目录
# 邮件服务器配置,用于邮件通知
Smtp:

23
file-server/Dockerfile Normal file
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@@ -0,0 +1,23 @@
# 构建阶段
FROM swr.cn-north-4.myhuaweicloud.com/ddn-k8s/docker.io/library/golang:1.24 AS builder
WORKDIR /app
COPY . .
# 添加静态编译和优化参数
RUN CGO_ENABLED=0 GOOS=linux GOARCH=amd64 go build \
-ldflags="-w -s -extldflags '-static'" \
-o file-server
RUN ls -alh .
# 使用最小基础镜像
FROM swr.cn-north-4.myhuaweicloud.com/ddn-k8s/docker.io/library/alpine:latest
WORKDIR /app
# 复制二进制文件并设置权限
COPY --from=builder --chmod=0755 /app/file-server .
EXPOSE 8080
CMD ["./file-server"]

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@@ -0,0 +1,12 @@
version: '3.8'
services:
file-server:
build:
context: .
dockerfile: Dockerfile
ports:
- "3004:8080"
volumes:
- /data/bbsfiles:/files
restart: unless-stopped

3
file-server/go.mod Normal file
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@@ -0,0 +1,3 @@
module fileserver
go 1.23.4

62
file-server/main.go Normal file
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@@ -0,0 +1,62 @@
package main
import (
"fmt"
"log"
"net/http"
"os"
"path/filepath"
"strings"
)
func main() {
// 硬编码目录配置
dirs := map[string]string{
"/bbs": "/files/active/www/active", // 修改右侧路径
"/active": "/files/bbs/www/bbs", // 添加新条目
}
port := 8080 // 固定端口
mux := http.NewServeMux()
// 注册所有目录路由
for prefix, path := range dirs {
absPath, err := filepath.Abs(path)
if err != nil {
log.Fatalf("目录[%s]解析失败: %v", path, err)
}
if err := os.MkdirAll(absPath, 0755); err != nil {
log.Fatalf("创建目录[%s]失败: %v", absPath, err)
}
fileServer := secureFileServer(http.Dir(absPath))
mux.Handle(prefix+"/", http.StripPrefix(prefix, fileServer))
log.Printf("已挂载目录: %s => %s", prefix, absPath)
}
// 启动服务器
serverAddr := fmt.Sprintf(":%d", port)
log.Printf("文件服务器启动在 http://localhost%s", serverAddr)
if err := http.ListenAndServe(serverAddr, mux); err != nil {
log.Fatalf("服务器启动失败: %v", err)
}
}
// 安全检查中间件
func secureFileServer(root http.FileSystem) http.Handler {
return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
if strings.Contains(r.URL.Path, "..") {
http.Error(w, "无效的路径", http.StatusBadRequest)
return
}
w.Header().Set("X-Content-Type-Options", "nosniff")
w.Header().Set("X-Frame-Options", "DENY")
w.Header().Set("X-XSS-Protection", "1; mode=block")
http.FileServer(root).ServeHTTP(w, r)
})
}

27
nginx/tailscale.conf Normal file
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@@ -0,0 +1,27 @@
server {
listen 30080;
server_name localhost;
location / {
# 代理配置
proxy_pass http://localhost:3008;
proxy_set_header Host $host;
proxy_set_header X-Real-IP $remote_addr;
proxy_set_header X-Forwarded-For $proxy_add_x_forwarded_for;
proxy_set_header X-Forwarded-Proto $scheme;
# 跨域配置
add_header 'Access-Control-Allow-Origin' '*' always;
add_header 'Access-Control-Allow-Methods' 'GET, POST, PUT, DELETE, OPTIONS' always;
add_header 'Access-Control-Allow-Headers' 'DNT,User-Agent,X-Requested-With,If-Modified-Since,Cache-Control,Content-Type,Range' always;
add_header 'Access-Control-Expose-Headers' 'Content-Length,Content-Range' always;
# 处理 OPTIONS 请求
if ($request_method = 'OPTIONS') {
add_header 'Access-Control-Max-Age' 1728000;
add_header 'Content-Type' 'text/plain; charset=utf-8';
add_header 'Content-Length' 0;
return 204;
}
}
}

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@@ -1,14 +1,18 @@
#!/bin/bash
# 备份并覆盖配置文件
cp /etc/nginx/nginx.conf /etc/nginx/nginx.conf.bak
cp nginx.conf /etc/nginx/
# 备份并覆盖所有.conf配置文件
for conf in *.conf; do
cp "/etc/nginx/$conf" "/etc/nginx/${conf}.bak" 2>/dev/null || true
cp "$conf" /etc/nginx/
done
# 测试并重载配置
if nginx -t; then
systemctl reload nginx
echo "配置已生效HTTPS已启用"
else
echo "配置测试失败,已恢复备份"
cp /etc/nginx/nginx.conf.bak /etc/nginx/nginx.conf
echo "配置测试失败,正在恢复所有备份"
for conf in *.conf; do
mv -f "/etc/nginx/${conf}.bak" "/etc/nginx/$conf" 2>/dev/null || true
done
fi

404
tailscale/config.yaml Normal file
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@@ -0,0 +1,404 @@
---
# headscale will look for a configuration file named `config.yaml` (or `config.json`) in the following order:
#
# - `/etc/headscale`
# - `~/.headscale`
# - current working directory
# The url clients will connect to.
# Typically this will be a domain like:
#
# https://myheadscale.example.com:443
#
server_url: http://0.0.0.0:8080
# Address to listen to / bind to on the server
#
# For production:
listen_addr: 0.0.0.0:8080
#isten_addr: 127.0.0.1:8080
# Address to listen to /metrics, you may want
# to keep this endpoint private to your internal
# network
#
metrics_listen_addr: 127.0.0.1:9090
# Address to listen for gRPC.
# gRPC is used for controlling a headscale server
# remotely with the CLI
# Note: Remote access _only_ works if you have
# valid certificates.
#
# For production:
grpc_listen_addr: 0.0.0.0:50443
#rpc_listen_addr: 127.0.0.1:50443
# Allow the gRPC admin interface to run in INSECURE
# mode. This is not recommended as the traffic will
# be unencrypted. Only enable if you know what you
# are doing.
grpc_allow_insecure: false
# The Noise section includes specific configuration for the
# TS2021 Noise protocol
noise:
# The Noise private key is used to encrypt the
# traffic between headscale and Tailscale clients when
# using the new Noise-based protocol.
private_key_path: /var/lib/headscale/noise_private.key
# List of IP prefixes to allocate tailaddresses from.
# Each prefix consists of either an IPv4 or IPv6 address,
# and the associated prefix length, delimited by a slash.
# It must be within IP ranges supported by the Tailscale
# client - i.e., subnets of 100.64.0.0/10 and fd7a:115c:a1e0::/48.
# See below:
# IPv6: https://github.com/tailscale/tailscale/blob/22ebb25e833264f58d7c3f534a8b166894a89536/net/tsaddr/tsaddr.go#LL81C52-L81C71
# IPv4: https://github.com/tailscale/tailscale/blob/22ebb25e833264f58d7c3f534a8b166894a89536/net/tsaddr/tsaddr.go#L33
# Any other range is NOT supported, and it will cause unexpected issues.
prefixes:
v4: 100.64.0.0/10
v6: fd7a:115c:a1e0::/48
# Strategy used for allocation of IPs to nodes, available options:
# - sequential (default): assigns the next free IP from the previous given IP.
# - random: assigns the next free IP from a pseudo-random IP generator (crypto/rand).
allocation: sequential
# DERP is a relay system that Tailscale uses when a direct
# connection cannot be established.
# https://tailscale.com/blog/how-tailscale-works/#encrypted-tcp-relays-derp
#
# headscale needs a list of DERP servers that can be presented
# to the clients.
derp:
server:
# If enabled, runs the embedded DERP server and merges it into the rest of the DERP config
# The Headscale server_url defined above MUST be using https, DERP requires TLS to be in place
enabled: true
# Region ID to use for the embedded DERP server.
# The local DERP prevails if the region ID collides with other region ID coming from
# the regular DERP config.
region_id: 999
# Region code and name are displayed in the Tailscale UI to identify a DERP region
region_code: "headscale"
region_name: "Headscale Embedded DERP"
# Listens over UDP at the configured address for STUN connections - to help with NAT traversal.
# When the embedded DERP server is enabled stun_listen_addr MUST be defined.
#
# For more details on how this works, check this great article: https://tailscale.com/blog/how-tailscale-works/
stun_listen_addr: "0.0.0.0:3478"
# Private key used to encrypt the traffic between headscale DERP
# and Tailscale clients.
# The private key file will be autogenerated if it's missing.
#
private_key_path: /var/lib/headscale/derp_server_private.key
# This flag can be used, so the DERP map entry for the embedded DERP server is not written automatically,
# it enables the creation of your very own DERP map entry using a locally available file with the parameter DERP.paths
# If you enable the DERP server and set this to false, it is required to add the DERP server to the DERP map using DERP.paths
automatically_add_embedded_derp_region: true
# For better connection stability (especially when using an Exit-Node and DNS is not working),
# it is possible to optionally add the public IPv4 and IPv6 address to the Derp-Map using:
ipv4: 1.2.3.4
ipv6: 2001:db8::1
# List of externally available DERP maps encoded in JSON
urls:
- https://controlplane.tailscale.com/derpmap/default
# Locally available DERP map files encoded in YAML
#
# This option is mostly interesting for people hosting
# their own DERP servers:
# https://tailscale.com/kb/1118/custom-derp-servers/
#
# paths:
# - /etc/headscale/derp-example.yaml
paths: []
# If enabled, a worker will be set up to periodically
# refresh the given sources and update the derpmap
# will be set up.
auto_update_enabled: true
# How often should we check for DERP updates?
update_frequency: 24h
# Disables the automatic check for headscale updates on startup
disable_check_updates: false
# Time before an inactive ephemeral node is deleted?
ephemeral_node_inactivity_timeout: 30m
database:
# Database type. Available options: sqlite, postgres
# Please note that using Postgres is highly discouraged as it is only supported for legacy reasons.
# All new development, testing and optimisations are done with SQLite in mind.
type: sqlite
# Enable debug mode. This setting requires the log.level to be set to "debug" or "trace".
debug: false
# GORM configuration settings.
gorm:
# Enable prepared statements.
prepare_stmt: true
# Enable parameterized queries.
parameterized_queries: true
# Skip logging "record not found" errors.
skip_err_record_not_found: true
# Threshold for slow queries in milliseconds.
slow_threshold: 1000
# SQLite config
sqlite:
path: /var/lib/headscale/db.sqlite
# Enable WAL mode for SQLite. This is recommended for production environments.
# https://www.sqlite.org/wal.html
write_ahead_log: true
# Maximum number of WAL file frames before the WAL file is automatically checkpointed.
# https://www.sqlite.org/c3ref/wal_autocheckpoint.html
# Set to 0 to disable automatic checkpointing.
wal_autocheckpoint: 1000
# # Postgres config
# Please note that using Postgres is highly discouraged as it is only supported for legacy reasons.
# See database.type for more information.
# postgres:
# # If using a Unix socket to connect to Postgres, set the socket path in the 'host' field and leave 'port' blank.
# host: localhost
# port: 5432
# name: headscale
# user: foo
# pass: bar
# max_open_conns: 10
# max_idle_conns: 10
# conn_max_idle_time_secs: 3600
# # If other 'sslmode' is required instead of 'require(true)' and 'disabled(false)', set the 'sslmode' you need
# # in the 'ssl' field. Refers to https://www.postgresql.org/docs/current/libpq-ssl.html Table 34.1.
# ssl: false
### TLS configuration
#
## Let's encrypt / ACME
#
# headscale supports automatically requesting and setting up
# TLS for a domain with Let's Encrypt.
#
# URL to ACME directory
acme_url: https://acme-v02.api.letsencrypt.org/directory
# Email to register with ACME provider
acme_email: ""
# Domain name to request a TLS certificate for:
tls_letsencrypt_hostname: ""
# Path to store certificates and metadata needed by
# letsencrypt
# For production:
tls_letsencrypt_cache_dir: /var/lib/headscale/cache
# Type of ACME challenge to use, currently supported types:
# HTTP-01 or TLS-ALPN-01
# See: docs/ref/tls.md for more information
tls_letsencrypt_challenge_type: HTTP-01
# When HTTP-01 challenge is chosen, letsencrypt must set up a
# verification endpoint, and it will be listening on:
# :http = port 80
tls_letsencrypt_listen: ":http"
## Use already defined certificates:
tls_cert_path: ""
tls_key_path: ""
log:
# Output formatting for logs: text or json
format: text
level: info
## Policy
# headscale supports Tailscale's ACL policies.
# Please have a look to their KB to better
# understand the concepts: https://tailscale.com/kb/1018/acls/
policy:
# The mode can be "file" or "database" that defines
# where the ACL policies are stored and read from.
mode: file
# If the mode is set to "file", the path to a
# HuJSON file containing ACL policies.
path: ""
## DNS
#
# headscale supports Tailscale's DNS configuration and MagicDNS.
# Please have a look to their KB to better understand the concepts:
#
# - https://tailscale.com/kb/1054/dns/
# - https://tailscale.com/kb/1081/magicdns/
# - https://tailscale.com/blog/2021-09-private-dns-with-magicdns/
#
# Please note that for the DNS configuration to have any effect,
# clients must have the `--accept-dns=true` option enabled. This is the
# default for the Tailscale client. This option is enabled by default
# in the Tailscale client.
#
# Setting _any_ of the configuration and `--accept-dns=true` on the
# clients will integrate with the DNS manager on the client or
# overwrite /etc/resolv.conf.
# https://tailscale.com/kb/1235/resolv-conf
#
# If you want stop Headscale from managing the DNS configuration
# all the fields under `dns` should be set to empty values.
dns:
# Whether to use [MagicDNS](https://tailscale.com/kb/1081/magicdns/).
magic_dns: false
# Defines the base domain to create the hostnames for MagicDNS.
# This domain _must_ be different from the server_url domain.
# `base_domain` must be a FQDN, without the trailing dot.
# The FQDN of the hosts will be
# `hostname.base_domain` (e.g., _myhost.example.com_).
base_domain: example.com
# List of DNS servers to expose to clients.
nameservers:
global:
- 1.1.1.1
- 1.0.0.1
- 2606:4700:4700::1111
- 2606:4700:4700::1001
# NextDNS (see https://tailscale.com/kb/1218/nextdns/).
# "abc123" is example NextDNS ID, replace with yours.
# - https://dns.nextdns.io/abc123
# Split DNS (see https://tailscale.com/kb/1054/dns/),
# a map of domains and which DNS server to use for each.
split:
{}
# foo.bar.com:
# - 1.1.1.1
# darp.headscale.net:
# - 1.1.1.1
# - 8.8.8.8
# Set custom DNS search domains. With MagicDNS enabled,
# your tailnet base_domain is always the first search domain.
search_domains: []
# Extra DNS records
# so far only A and AAAA records are supported (on the tailscale side)
# See: docs/ref/dns.md
extra_records: []
# - name: "grafana.myvpn.example.com"
# type: "A"
# value: "100.64.0.3"
#
# # you can also put it in one line
# - { name: "prometheus.myvpn.example.com", type: "A", value: "100.64.0.3" }
#
# Alternatively, extra DNS records can be loaded from a JSON file.
# Headscale processes this file on each change.
# extra_records_path: /var/lib/headscale/extra-records.json
# Unix socket used for the CLI to connect without authentication
# Note: for production you will want to set this to something like:
unix_socket: /var/run/headscale/headscale.sock
unix_socket_permission: "0770"
#
# headscale supports experimental OpenID connect support,
# it is still being tested and might have some bugs, please
# help us test it.
# OpenID Connect
# oidc:
# only_start_if_oidc_is_available: true
# issuer: "https://your-oidc.issuer.com/path"
# client_id: "your-oidc-client-id"
# client_secret: "your-oidc-client-secret"
# # Alternatively, set `client_secret_path` to read the secret from the file.
# # It resolves environment variables, making integration to systemd's
# # `LoadCredential` straightforward:
# client_secret_path: "${CREDENTIALS_DIRECTORY}/oidc_client_secret"
# # client_secret and client_secret_path are mutually exclusive.
#
# # The amount of time from a node is authenticated with OpenID until it
# # expires and needs to reauthenticate.
# # Setting the value to "0" will mean no expiry.
# expiry: 180d
#
# # Use the expiry from the token received from OpenID when the user logged
# # in, this will typically lead to frequent need to reauthenticate and should
# # only been enabled if you know what you are doing.
# # Note: enabling this will cause `oidc.expiry` to be ignored.
# use_expiry_from_token: false
#
# # Customize the scopes used in the OIDC flow, defaults to "openid", "profile" and "email" and add custom query
# # parameters to the Authorize Endpoint request. Scopes default to "openid", "profile" and "email".
#
# scope: ["openid", "profile", "email", "custom"]
# extra_params:
# domain_hint: example.com
#
# # List allowed principal domains and/or users. If an authenticated user's domain is not in this list, the
# # authentication request will be rejected.
#
# allowed_domains:
# - example.com
# # Note: Groups from keycloak have a leading '/'
# allowed_groups:
# - /headscale
# allowed_users:
# - alice@example.com
#
# # Optional: PKCE (Proof Key for Code Exchange) configuration
# # PKCE adds an additional layer of security to the OAuth 2.0 authorization code flow
# # by preventing authorization code interception attacks
# # See https://datatracker.ietf.org/doc/html/rfc7636
# pkce:
# # Enable or disable PKCE support (default: false)
# enabled: false
# # PKCE method to use:
# # - plain: Use plain code verifier
# # - S256: Use SHA256 hashed code verifier (default, recommended)
# method: S256
#
# # Map legacy users from pre-0.24.0 versions of headscale to the new OIDC users
# # by taking the username from the legacy user and matching it with the username
# # provided by the OIDC. This is useful when migrating from legacy users to OIDC
# # to force them using the unique identifier from the OIDC and to give them a
# # proper display name and picture if available.
# # Note that this will only work if the username from the legacy user is the same
# # and there is a possibility for account takeover should a username have changed
# # with the provider.
# # When this feature is disabled, it will cause all new logins to be created as new users.
# # Note this option will be removed in the future and should be set to false
# # on all new installations, or when all users have logged in with OIDC once.
# map_legacy_users: false
# Logtail configuration
# Logtail is Tailscales logging and auditing infrastructure, it allows the control panel
# to instruct tailscale nodes to log their activity to a remote server.
logtail:
# Enable logtail for this headscales clients.
# As there is currently no support for overriding the log server in headscale, this is
# disabled by default. Enabling this will make your clients send logs to Tailscale Inc.
enabled: false
# Enabling this option makes devices prefer a random port for WireGuard traffic over the
# default static port 41641. This option is intended as a workaround for some buggy
# firewall devices. See https://tailscale.com/kb/1181/firewalls/ for more information.
randomize_client_port: false

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@@ -0,0 +1,48 @@
version: "3.9"
services:
headscale:
image: swr.cn-north-4.myhuaweicloud.com/ddn-k8s/docker.io/headscale/headscale:v0.23.0-beta2
container_name: headscale
restart: unless-stopped
environment:
- HEADSCALE_API_KEY=QC33VFzaUw.u1qwXFap0QpFAQnwkdGuUyvpspL15185A5JnWeFpt_c # Revert to original variable name
command: serve --config /etc/headscale/config.yaml # 明确指定配置文件路径
volumes:
- ./data/headscale:/var/lib/headscale
# 修正挂载路径冲突问题 ↓
- ./config.yaml:/etc/headscale/config.yaml # 删除这行
ports:
- "3008:8080" # Headscale API端口
- "9090:9090" # Metrics监控端口
- "50443:50443" # DERP中继端口可选若Derper独立部署则无需映射
cap_add:
- NET_ADMIN
sysctls:
- net.ipv4.ip_forward=1
# derper:
# image: swr.cn-north-4.myhuaweicloud.com/ddn-k8s/ghcr.io/yangchuansheng/ip_derper:latest
# container_name: derper
# restart: unless-stopped
# network_mode: host # 绑定宿主机网络
# environment:
# - DERP_ADDR=:12345 # DERP监听地址TCP
# - DERP_STUN_ADDR=:3478 # STUN监听地址UDP
# - DERP_CERTS=/app/certs # 证书路径(自签名需挂载)
# - DERP_VERIFY_CLIENTS=false # 允许匿名中继(生产环境建议启用验证)
# volumes:
# - ./certs/derper:/app/certs # 自签名证书挂载(可选)
headscale-ui:
image: swr.cn-north-4.myhuaweicloud.com/ddn-k8s/ghcr.io/gurucomputing/headscale-ui:2024.02.24-beta1
container_name: headscale-ui
restart: unless-stopped
environment:
- HTTP_PORT=8000
- HEADSCALE_API_URL=http://headscale:8080
- HEADSCALE_API_KEY=QC33VFzaUw.u1qwXFap0QpFAQnwkdGuUyvpspL15185A5JnWeFpt_c # Revert to original variable name
ports:
- "8000:8000" # 访问地址http://<服务器IP>:8000/web

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@@ -1,52 +0,0 @@
version: '3.8'
services:
# ZeroTier 控制面板 (ztncui)
ztncui:
image: keynetworks/ztncui:latest
container_name: ztncui
restart: unless-stopped
ports:
- "3443:3443" # HTTPS 控制面板
- "9995:9993" # Planet 通信
- "9995:9993/udp"
volumes:
- ./zerotier-data:/var/lib/zerotier-one
environment:
- ZT_TOKEN= $ (cat ./zerotier-data/authtoken.secret)
- HTTPS_HOST=0.0.0.0
- HTTPS_PORT=3443
networks:
- zt-network
# 自建 Planet (根服务器)
planet:
image: xubiaolin/zerotier-planet:latest
container_name: zerotier-planet
restart: unless-stopped
ports:
- "9994:9994" # Planet 端口
- "9994:9994/udp"
environment:
- IP_ADDR4= $ (curl -s ifconfig.me) # 自动获取公网IP
- ZT_PORT=9994
networks:
- zt-network
# Moon 中继服务器
moon:
image: jonnyan404/zerotier-moon
container_name: zerotier-moon
restart: unless-stopped
ports:
- "9993:9993/udp" # Moon 端口
volumes:
- ./moon-data:/var/lib/zerotier-one
environment:
- ENDPOINTS= $ (curl -s ifconfig.me)/9993 # 自动设置Moon地址
networks:
- zt-network
networks:
zt-network:
driver: bridge