Files
rl544 4e8a65f40d pub
2026-09-15 01:38:15 +09:00

133 lines
3.3 KiB
Go

package proxy
import (
"fmt"
"log"
"net"
"net/http"
"net/http/httputil"
"net/url"
"sync"
"sync/atomic"
"time"
)
// Backend represents a target server with its health state
type Backend struct {
URL *url.URL
Alive bool
mu sync.RWMutex
}
func (b *Backend) SetAlive(alive bool) {
b.mu.Lock()
b.Alive = alive
b.mu.Unlock()
}
func (b *Backend) IsAlive() bool {
b.mu.RLock()
alive := b.Alive
b.mu.RUnlock()
return alive
}
// LoadBalancer holds a slice of backends and a counter for Round-Robin
type LoadBalancer struct {
backends []*Backend
current uint64
}
// Next returns the next healthy backend URL using Round-Robin
func (lb *LoadBalancer) Next() *url.URL {
// Loop at most len(backends) times to find a healthy one
for i := 0; i < len(lb.backends); i++ {
next := atomic.AddUint64(&lb.current, 1)
idx := next % uint64(len(lb.backends))
b := lb.backends[idx]
if b.IsAlive() {
return b.URL
}
}
return nil // No healthy backends available
}
// StartHealthCheck begins a background routine to ping backends
func (lb *LoadBalancer) StartHealthCheck() {
go func() {
for {
for _, b := range lb.backends {
go func(backend *Backend) {
// TCP Dial is a safe, universal health check for HTTP servers
host := backend.URL.Host
if backend.URL.Port() == "" {
if backend.URL.Scheme == "https" {
host += ":443"
} else {
host += ":80"
}
}
conn, err := net.DialTimeout("tcp", host, 2*time.Second)
if err != nil {
if backend.IsAlive() {
log.Printf("[HealthCheck] Backend %s went DOWN: %v", backend.URL.String(), err)
backend.SetAlive(false)
}
} else {
conn.Close()
if !backend.IsAlive() {
log.Printf("[HealthCheck] Backend %s came UP", backend.URL.String())
backend.SetAlive(true)
}
}
}(b)
}
time.Sleep(5 * time.Second) // Check every 5 seconds
}
}()
}
// NewLoadBalancedHTTPProxy creates a ReverseProxy that load balances across multiple backends
func NewLoadBalancedHTTPProxy(backends []string) (*httputil.ReverseProxy, error) {
if len(backends) == 0 {
return nil, fmt.Errorf("no backends provided")
}
lb := &LoadBalancer{}
for _, b := range backends {
u, err := url.Parse(b)
if err != nil {
return nil, fmt.Errorf("invalid backend url %s: %w", b, err)
}
// Initially mark all as alive
lb.backends = append(lb.backends, &Backend{URL: u, Alive: true})
}
// Start health checking in the background
lb.StartHealthCheck()
proxy := &httputil.ReverseProxy{
Director: func(req *http.Request) {
target := lb.Next()
if target == nil {
// We can't return an error directly from Director, but setting Scheme to empty
// will cause the RoundTripper to fail, returning 502 Bad Gateway by default.
return
}
req.URL.Scheme = target.Scheme
req.URL.Host = target.Host
// Note: We don't overwrite req.URL.Path here, as it's modified by the router
req.Header.Set("X-Forwarded-Host", req.Header.Get("Host"))
},
// Optional custom error handler when backends are unreachable
ErrorHandler: func(w http.ResponseWriter, r *http.Request, err error) {
log.Printf("Proxy error: %v", err)
http.Error(w, "502 Bad Gateway - No healthy backends available", http.StatusBadGateway)
},
}
return proxy, nil
}