mirror of
https://github.com/42wim/matterbridge.git
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253 lines
6.0 KiB
Go
253 lines
6.0 KiB
Go
package middleware
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import (
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"fmt"
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"io"
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"math/rand"
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"net"
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"net/http"
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"net/http/httputil"
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"net/url"
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"regexp"
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"strings"
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"sync"
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"sync/atomic"
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"time"
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"github.com/labstack/echo"
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)
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// TODO: Handle TLS proxy
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type (
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// ProxyConfig defines the config for Proxy middleware.
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ProxyConfig struct {
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// Skipper defines a function to skip middleware.
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Skipper Skipper
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// Balancer defines a load balancing technique.
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// Required.
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Balancer ProxyBalancer
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// Rewrite defines URL path rewrite rules. The values captured in asterisk can be
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// retrieved by index e.g. $1, $2 and so on.
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// Examples:
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// "/old": "/new",
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// "/api/*": "/$1",
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// "/js/*": "/public/javascripts/$1",
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// "/users/*/orders/*": "/user/$1/order/$2",
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Rewrite map[string]string
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rewriteRegex map[*regexp.Regexp]string
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}
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// ProxyTarget defines the upstream target.
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ProxyTarget struct {
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Name string
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URL *url.URL
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}
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// ProxyBalancer defines an interface to implement a load balancing technique.
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ProxyBalancer interface {
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AddTarget(*ProxyTarget) bool
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RemoveTarget(string) bool
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Next() *ProxyTarget
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}
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commonBalancer struct {
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targets []*ProxyTarget
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mutex sync.RWMutex
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}
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// RandomBalancer implements a random load balancing technique.
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randomBalancer struct {
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*commonBalancer
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random *rand.Rand
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}
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// RoundRobinBalancer implements a round-robin load balancing technique.
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roundRobinBalancer struct {
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*commonBalancer
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i uint32
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}
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)
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var (
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// DefaultProxyConfig is the default Proxy middleware config.
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DefaultProxyConfig = ProxyConfig{
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Skipper: DefaultSkipper,
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}
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)
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func proxyHTTP(t *ProxyTarget) http.Handler {
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return httputil.NewSingleHostReverseProxy(t.URL)
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}
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func proxyRaw(t *ProxyTarget, c echo.Context) http.Handler {
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return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
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in, _, err := c.Response().Hijack()
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if err != nil {
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c.Error(fmt.Errorf("proxy raw, hijack error=%v, url=%s", t.URL, err))
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return
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}
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defer in.Close()
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out, err := net.Dial("tcp", t.URL.Host)
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if err != nil {
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he := echo.NewHTTPError(http.StatusBadGateway, fmt.Sprintf("proxy raw, dial error=%v, url=%s", t.URL, err))
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c.Error(he)
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return
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}
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defer out.Close()
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// Write header
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err = r.Write(out)
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if err != nil {
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he := echo.NewHTTPError(http.StatusBadGateway, fmt.Sprintf("proxy raw, request header copy error=%v, url=%s", t.URL, err))
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c.Error(he)
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return
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}
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errCh := make(chan error, 2)
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cp := func(dst io.Writer, src io.Reader) {
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_, err = io.Copy(dst, src)
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errCh <- err
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}
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go cp(out, in)
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go cp(in, out)
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err = <-errCh
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if err != nil && err != io.EOF {
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c.Logger().Errorf("proxy raw, copy body error=%v, url=%s", t.URL, err)
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}
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})
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}
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// NewRandomBalancer returns a random proxy balancer.
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func NewRandomBalancer(targets []*ProxyTarget) ProxyBalancer {
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b := &randomBalancer{commonBalancer: new(commonBalancer)}
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b.targets = targets
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return b
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}
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// NewRoundRobinBalancer returns a round-robin proxy balancer.
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func NewRoundRobinBalancer(targets []*ProxyTarget) ProxyBalancer {
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b := &roundRobinBalancer{commonBalancer: new(commonBalancer)}
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b.targets = targets
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return b
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}
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// AddTarget adds an upstream target to the list.
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func (b *commonBalancer) AddTarget(target *ProxyTarget) bool {
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for _, t := range b.targets {
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if t.Name == target.Name {
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return false
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}
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}
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b.mutex.Lock()
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defer b.mutex.Unlock()
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b.targets = append(b.targets, target)
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return true
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}
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// RemoveTarget removes an upstream target from the list.
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func (b *commonBalancer) RemoveTarget(name string) bool {
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b.mutex.Lock()
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defer b.mutex.Unlock()
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for i, t := range b.targets {
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if t.Name == name {
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b.targets = append(b.targets[:i], b.targets[i+1:]...)
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return true
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}
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}
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return false
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}
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// Next randomly returns an upstream target.
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func (b *randomBalancer) Next() *ProxyTarget {
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if b.random == nil {
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b.random = rand.New(rand.NewSource(int64(time.Now().Nanosecond())))
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}
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b.mutex.RLock()
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defer b.mutex.RUnlock()
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return b.targets[b.random.Intn(len(b.targets))]
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}
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// Next returns an upstream target using round-robin technique.
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func (b *roundRobinBalancer) Next() *ProxyTarget {
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b.i = b.i % uint32(len(b.targets))
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t := b.targets[b.i]
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atomic.AddUint32(&b.i, 1)
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return t
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}
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// Proxy returns a Proxy middleware.
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//
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// Proxy middleware forwards the request to upstream server using a configured load balancing technique.
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func Proxy(balancer ProxyBalancer) echo.MiddlewareFunc {
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c := DefaultProxyConfig
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c.Balancer = balancer
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return ProxyWithConfig(c)
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}
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// ProxyWithConfig returns a Proxy middleware with config.
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// See: `Proxy()`
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func ProxyWithConfig(config ProxyConfig) echo.MiddlewareFunc {
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// Defaults
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if config.Skipper == nil {
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config.Skipper = DefaultLoggerConfig.Skipper
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}
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if config.Balancer == nil {
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panic("echo: proxy middleware requires balancer")
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}
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config.rewriteRegex = map[*regexp.Regexp]string{}
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// Initialize
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for k, v := range config.Rewrite {
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k = strings.Replace(k, "*", "(\\S*)", -1)
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config.rewriteRegex[regexp.MustCompile(k)] = v
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}
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return func(next echo.HandlerFunc) echo.HandlerFunc {
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return func(c echo.Context) (err error) {
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if config.Skipper(c) {
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return next(c)
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}
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req := c.Request()
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res := c.Response()
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tgt := config.Balancer.Next()
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// Rewrite
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for k, v := range config.rewriteRegex {
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replacer := captureTokens(k, req.URL.Path)
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if replacer != nil {
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req.URL.Path = replacer.Replace(v)
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}
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}
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// Fix header
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if req.Header.Get(echo.HeaderXRealIP) == "" {
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req.Header.Set(echo.HeaderXRealIP, c.RealIP())
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}
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if req.Header.Get(echo.HeaderXForwardedProto) == "" {
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req.Header.Set(echo.HeaderXForwardedProto, c.Scheme())
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}
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if c.IsWebSocket() && req.Header.Get(echo.HeaderXForwardedFor) == "" { // For HTTP, it is automatically set by Go HTTP reverse proxy.
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req.Header.Set(echo.HeaderXForwardedFor, c.RealIP())
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}
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// Proxy
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switch {
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case c.IsWebSocket():
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proxyRaw(tgt, c).ServeHTTP(res, req)
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case req.Header.Get(echo.HeaderAccept) == "text/event-stream":
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default:
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proxyHTTP(tgt).ServeHTTP(res, req)
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}
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return
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}
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}
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}
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