Files
mailgo/main.go
T
kevin 551ed981de fix(security): 会话密钥改为随机生成,修复硬编码密钥可伪造管理员会话
安全审计 P0 修复:旧版会话签名密钥硬编码在源码中(源码公开即泄露),
任何人可据此伪造 isAdmin 会话接管后台。

- config: 新增 [web].secret_key,首启/升级时用 crypto/rand 自动生成
  32 字节随机密钥并持久化;旧硬编码值自动替换
- config: 支持 MAILGO_SECRET_KEY 环境变量覆盖(覆盖值不落盘)
- config: 配置文件权限收紧为 0600(同时保护 relay_password 等敏感字段)
- web: NewWebServer 校验密钥(空/旧默认值/短于16字节拒绝启动)
- test: 伪造会话拒绝、密钥生命周期(生成/持久化/重启稳定/env不落盘)等
  9 个测试
- docs: README 配置参考、security_todo.md 安全修复清单

部署注意:升级重启后所有用户需重新登录。
2026-08-19 16:21:28 +08:00

362 lines
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package main
import (
"crypto/rand"
"crypto/rsa"
"crypto/x509"
"crypto/x509/pkix"
"encoding/pem"
"fmt"
"log"
"math/big"
"net"
"os"
"path/filepath"
"sync"
"time"
"mail_go/config"
"mail_go/internal/db"
"mail_go/internal/imap_server"
"mail_go/internal/outbound"
"mail_go/internal/pop3_server"
"mail_go/internal/smtp_server"
"mail_go/internal/storage"
"mail_go/internal/store"
"mail_go/internal/tlsutil"
"mail_go/internal/web"
"golang.org/x/crypto/bcrypt"
)
func applyDomainTLSConfig(stores *store.Stores, cfg *config.Config) {
domain, err := stores.Domains.GetFirstTLSEnabledWithCert()
if err != nil {
return
}
applied := applyTLSCertPaths(cfg, domain.TlsCertPath, domain.TlsKeyPath)
if applied {
log.Printf("使用域名 %s 的 TLS 证书;证书更新后自动热加载,无需重启服务", domain.Name)
}
}
func applyTLSCertPaths(cfg *config.Config, certPath, keyPath string) bool {
applied := false
if cfg.SMTP.TLSCert == "" && cfg.SMTP.TLSKey == "" {
cfg.SMTP.TLSCert = certPath
cfg.SMTP.TLSKey = keyPath
applied = true
}
if cfg.IMAP.TLSCert == "" && cfg.IMAP.TLSKey == "" {
cfg.IMAP.TLSCert = certPath
cfg.IMAP.TLSKey = keyPath
applied = true
}
if cfg.POP3.TLSCert == "" && cfg.POP3.TLSKey == "" {
cfg.POP3.TLSCert = certPath
cfg.POP3.TLSKey = keyPath
applied = true
}
return applied
}
// tlsSource 返回证书路径来源:协议在 toml 中显式配置的证书优先;
// 否则取第一个启用 TLS 且有证书的域名(管理后台一键导入证书后自动
// 切换,无需重启)。结果缓存 10 秒,避免每次握手都查询数据库。
func tlsSource(explicitCert, explicitKey string, stores *store.Stores) tlsutil.Source {
var (
mu sync.Mutex
lastCheck time.Time
cachedCert string
cachedKey string
)
return func() (string, string) {
mu.Lock()
defer mu.Unlock()
if time.Since(lastCheck) < 10*time.Second {
return cachedCert, cachedKey
}
lastCheck = time.Now()
if explicitCert != "" && explicitKey != "" {
cachedCert, cachedKey = explicitCert, explicitKey
} else if d, err := stores.Domains.GetFirstTLSEnabledWithCert(); err == nil {
cachedCert, cachedKey = d.TlsCertPath, d.TlsKeyPath
} else {
cachedCert, cachedKey = "", ""
}
return cachedCert, cachedKey
}
}
// newTLSCertLoader 创建带热加载的 TLS 证书加载器(每次握手自动重载)。
// 初始路径取显式配置或启动时填充的路径;source 允许后续动态切换
// 证书来源。加载失败返回 nil,对应协议将不启用 TLS。
func newTLSCertLoader(explicitCert, explicitKey, initCert, initKey string, stores *store.Stores, proto string) *tlsutil.Loader {
if initCert == "" || initKey == "" {
initCert, initKey = explicitCert, explicitKey
}
loader, err := tlsutil.NewLoader(initCert, initKey, tlsSource(explicitCert, explicitKey, stores), log.Printf)
if err != nil {
log.Printf("%s TLS 证书初始化失败: %v(该协议将不启用 TLS)", proto, err)
return nil
}
return loader
}
func ensureSelfSignedTLSConfig(cfg *config.Config) {
if cfg.SMTP.TLSCert != "" && cfg.SMTP.TLSKey != "" && cfg.IMAP.TLSCert != "" && cfg.IMAP.TLSKey != "" && cfg.POP3.TLSCert != "" && cfg.POP3.TLSKey != "" {
return
}
certPath := filepath.Join(cfg.Storage.BaseDir, "tls", "self-signed", "cert.pem")
keyPath := filepath.Join(cfg.Storage.BaseDir, "tls", "self-signed", "key.pem")
if err := ensureSelfSignedCert(certPath, keyPath, cfg.SMTP.Domain); err != nil {
log.Printf("生成自签名 TLS 证书失败: %v", err)
return
}
if applyTLSCertPaths(cfg, certPath, keyPath) {
log.Printf("未配置 TLS 证书,已使用自签名证书启动 TLS 端口;正式使用请在后台上传受信任证书")
}
}
func ensureSelfSignedCert(certPath, keyPath, domain string) error {
if _, certErr := os.Stat(certPath); certErr == nil {
if _, keyErr := os.Stat(keyPath); keyErr == nil {
return nil
}
}
if err := os.MkdirAll(filepath.Dir(certPath), 0700); err != nil {
return err
}
privateKey, err := rsa.GenerateKey(rand.Reader, 2048)
if err != nil {
return err
}
notBefore := time.Now()
serialLimit := new(big.Int).Lsh(big.NewInt(1), 128)
serialNumber, err := rand.Int(rand.Reader, serialLimit)
if err != nil {
return err
}
if domain == "" {
domain = "localhost"
}
template := x509.Certificate{
SerialNumber: serialNumber,
Subject: pkix.Name{
Organization: []string{"MailGo Self-Signed"},
CommonName: domain,
},
NotBefore: notBefore,
NotAfter: notBefore.AddDate(10, 0, 0),
KeyUsage: x509.KeyUsageKeyEncipherment | x509.KeyUsageDigitalSignature,
ExtKeyUsage: []x509.ExtKeyUsage{x509.ExtKeyUsageServerAuth},
BasicConstraintsValid: true,
DNSNames: []string{domain, "localhost"},
IPAddresses: []net.IP{net.ParseIP("127.0.0.1"), net.ParseIP("::1")},
}
certDER, err := x509.CreateCertificate(rand.Reader, &template, &template, &privateKey.PublicKey, privateKey)
if err != nil {
return err
}
certFile, err := os.OpenFile(certPath, os.O_WRONLY|os.O_CREATE|os.O_TRUNC, 0644)
if err != nil {
return err
}
if err := pem.Encode(certFile, &pem.Block{Type: "CERTIFICATE", Bytes: certDER}); err != nil {
certFile.Close()
return err
}
if err := certFile.Close(); err != nil {
return err
}
keyFile, err := os.OpenFile(keyPath, os.O_WRONLY|os.O_CREATE|os.O_TRUNC, 0600)
if err != nil {
return err
}
if err := pem.Encode(keyFile, &pem.Block{Type: "RSA PRIVATE KEY", Bytes: x509.MarshalPKCS1PrivateKey(privateKey)}); err != nil {
keyFile.Close()
return err
}
return keyFile.Close()
}
func main() {
// 1. Load configuration
cfg, err := config.LoadConfig()
if err != nil {
log.Fatalf("加载配置失败: %v", err)
}
fmt.Println("配置加载成功")
// 2. Initialize database
database, err := db.InitDB(cfg.Database, cfg.Storage)
if err != nil {
log.Fatalf("数据库初始化失败: %v", err)
}
fmt.Println("数据库初始化成功")
// 3. Create Store layer
stores := store.NewStores(database)
// 4. Ensure default admin user exists
ensureAdminUser(stores, cfg)
// 5. Initialize attachment storage
attStorage := storage.NewAttachmentStorage(cfg.Storage.AttachDir)
// 记录 toml 中显式配置的证书路径;此后 applyDomainTLSConfig 会用
// 域名证书填充空值,需要原始值来判断“显式配置优先”。
explicitSMTPCert, explicitSMTPKey := cfg.SMTP.TLSCert, cfg.SMTP.TLSKey
explicitIMAPCert, explicitIMAPKey := cfg.IMAP.TLSCert, cfg.IMAP.TLSKey
explicitPOP3Cert, explicitPOP3Key := cfg.POP3.TLSCert, cfg.POP3.TLSKey
applyDomainTLSConfig(stores, cfg)
ensureSelfSignedTLSConfig(cfg)
// 证书热加载器:每次 TLS 握手自动重载证书文件,证书更新后无需重启
smtpTLS := newTLSCertLoader(explicitSMTPCert, explicitSMTPKey, cfg.SMTP.TLSCert, cfg.SMTP.TLSKey, stores, "SMTP")
imapTLS := newTLSCertLoader(explicitIMAPCert, explicitIMAPKey, cfg.IMAP.TLSCert, cfg.IMAP.TLSKey, stores, "IMAP")
pop3TLS := newTLSCertLoader(explicitPOP3Cert, explicitPOP3Key, cfg.POP3.TLSCert, cfg.POP3.TLSKey, stores, "POP3")
// 6. Outbound delivery manager (external mail queue + worker)
outboundMgr := outbound.NewManager(cfg.Outbound, cfg.SMTP.Domain, stores)
if outboundMgr.Enabled() {
outboundMgr.Start()
fmt.Println("外发邮件投递服务已启动")
} else {
fmt.Println("外发邮件投递未启用(outbound.max_per_day = 0")
}
// 7. Start SMTP server
smtpSrv := smtp_server.NewSMTPServer(cfg.SMTP, stores, attStorage, outboundMgr, smtpTLS)
go func() {
if err := smtpSrv.Start(); err != nil {
log.Printf("SMTP 服务启动失败: %v", err)
}
}()
// Start SMTPS and submission if TLS is configured
if cfg.SMTP.TLSCert != "" && cfg.SMTP.TLSKey != "" {
go func() {
if err := smtpSrv.StartTLS(); err != nil {
log.Printf("SMTPS 服务启动失败: %v", err)
}
}()
go func() {
if err := smtpSrv.StartSubmission(); err != nil {
log.Printf("SMTP Submission 服务启动失败: %v", err)
}
}()
}
// 7. Start IMAP server
imapSrv := imap_server.NewIMAPServer(cfg.IMAP, stores, imapTLS)
go func() {
if err := imapSrv.Start(); err != nil {
log.Printf("IMAP 服务启动失败: %v", err)
}
}()
// Start IMAPS if TLS is configured
if cfg.IMAP.TLSCert != "" && cfg.IMAP.TLSKey != "" {
go func() {
if err := imapSrv.StartTLS(); err != nil {
log.Printf("IMAPS 服务启动失败: %v", err)
}
}()
}
// 8. Start POP3 server
pop3Srv := pop3_server.NewPOP3Server(cfg.POP3, stores, pop3TLS)
go func() {
if err := pop3Srv.Start(); err != nil {
log.Printf("POP3 服务启动失败: %v", err)
}
}()
// Start POP3S if TLS is configured
if cfg.POP3.TLSCert != "" && cfg.POP3.TLSKey != "" {
go func() {
if err := pop3Srv.StartTLS(); err != nil {
log.Printf("POP3S 服务启动失败: %v", err)
}
}()
}
// 10. Start Web server
webServer, err := web.NewWebServer(cfg.Web, stores, attStorage, cfg.Storage, cfg.Auth, cfg.Ban, cfg.Caddy, outboundMgr)
if err != nil {
log.Fatalf("Web 服务初始化失败: %v", err)
}
fmt.Printf("Web 服务启动在 %s\n", cfg.Web.Addr)
go func() {
if err := webServer.Start(); err != nil {
log.Fatalf("Web 服务启动失败: %v", err)
}
}()
fmt.Println("MailGo 邮件系统启动完成")
select {} // Block main goroutine
}
// ensureAdminUser checks if an admin user exists and creates one if not.
// It also ensures the default domain "example.com" exists.
func ensureAdminUser(stores *store.Stores, cfg *config.Config) {
// Check if admin user exists by trying to authenticate
_, err := stores.Users.GetByEmail("admin@example.com")
if err == nil {
fmt.Println("管理员账户已存在,跳过创建")
return
}
// Ensure the default domain exists
domain, err := stores.Domains.GetByName("example.com")
if err != nil {
// Domain doesn't exist, create it
domain = &db.Domain{
Name: "example.com",
SmtpPort: 25,
ImapPort: 143,
Pop3Port: 110,
TlsEnabled: false,
}
if createErr := stores.Domains.Create(domain); createErr != nil {
log.Printf("创建默认域名失败: %v", createErr)
return
}
fmt.Println("默认域名 example.com 创建成功")
}
// Hash the default admin password
hashedPassword, err := bcrypt.GenerateFromPassword([]byte("admin"), bcrypt.DefaultCost)
if err != nil {
log.Printf("密码哈希失败: %v", err)
return
}
// Create the admin user
adminUser := &db.User{
Username: "admin",
PasswordHash: string(hashedPassword),
DomainID: domain.ID,
QuotaBytes: 5 * 1024 * 1024 * 1024, // 5GB
UsedBytes: 0,
IsActive: true,
IsAdmin: true,
}
if createErr := stores.Users.Create(adminUser); createErr != nil {
log.Printf("创建管理员账户失败: %v", createErr)
return
}
fmt.Println("管理员账户 admin@example.com 创建成功(密码: admin")
}