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273 lines
7.8 KiB
Go
273 lines
7.8 KiB
Go
// Package proxy is middleware that proxies HTTP requests.
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package proxy
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import (
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"errors"
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"net"
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"net/http"
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"net/url"
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"strings"
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"sync/atomic"
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"time"
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"github.com/mholt/caddy/caddyhttp/httpserver"
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)
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var errUnreachable = errors.New("unreachable backend")
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// Proxy represents a middleware instance that can proxy requests.
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type Proxy struct {
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Next httpserver.Handler
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Upstreams []Upstream
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}
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// Upstream manages a pool of proxy upstream hosts. Select should return a
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// suitable upstream host, or nil if no such hosts are available.
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type Upstream interface {
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// The path this upstream host should be routed on
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From() string
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// Selects an upstream host to be routed to.
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Select() *UpstreamHost
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// Checks if subpath is not an ignored path
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AllowedPath(string) bool
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// Is Upstream in transparent mode?
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Transparent() bool
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}
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// UpstreamHostDownFunc can be used to customize how Down behaves.
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type UpstreamHostDownFunc func(*UpstreamHost) bool
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// UpstreamHost represents a single proxy upstream
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type UpstreamHost struct {
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Conns int64 // must be first field to be 64-bit aligned on 32-bit systems
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Name string // hostname of this upstream host
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ReverseProxy *ReverseProxy
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Fails int32
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FailTimeout time.Duration
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Unhealthy bool
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UpstreamHeaders http.Header
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DownstreamHeaders http.Header
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CheckDown UpstreamHostDownFunc
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WithoutPathPrefix string
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MaxConns int64
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}
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// Down checks whether the upstream host is down or not.
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// Down will try to use uh.CheckDown first, and will fall
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// back to some default criteria if necessary.
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func (uh *UpstreamHost) Down() bool {
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if uh.CheckDown == nil {
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// Default settings
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return uh.Unhealthy || uh.Fails > 0
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}
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return uh.CheckDown(uh)
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}
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// Full checks whether the upstream host has reached its maximum connections
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func (uh *UpstreamHost) Full() bool {
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return uh.MaxConns > 0 && uh.Conns >= uh.MaxConns
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}
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// Available checks whether the upstream host is available for proxying to
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func (uh *UpstreamHost) Available() bool {
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return !uh.Down() && !uh.Full()
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}
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// tryDuration is how long to try upstream hosts; failures result in
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// immediate retries until this duration ends or we get a nil host.
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var tryDuration = 60 * time.Second
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// ServeHTTP satisfies the httpserver.Handler interface.
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func (p Proxy) ServeHTTP(w http.ResponseWriter, r *http.Request) (int, error) {
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// start by selecting most specific matching upstream config
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upstream := p.match(r)
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if upstream == nil {
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return p.Next.ServeHTTP(w, r)
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}
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// this replacer is used to fill in header field values
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var replacer httpserver.Replacer
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// outreq is the request that makes a roundtrip to the backend
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outreq := createUpstreamRequest(r)
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// since Select() should give us "up" hosts, keep retrying
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// hosts until timeout (or until we get a nil host).
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start := time.Now()
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for time.Now().Sub(start) < tryDuration {
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host := upstream.Select()
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if host == nil {
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return http.StatusBadGateway, errUnreachable
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}
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if rr, ok := w.(*httpserver.ResponseRecorder); ok && rr.Replacer != nil {
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rr.Replacer.Set("upstream", host.Name)
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}
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proxy := host.ReverseProxy
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// a backend's name may contain more than just the host,
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// so we parse it as a URL to try to isolate the host.
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if nameURL, err := url.Parse(host.Name); err == nil {
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outreq.Host = nameURL.Host
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if proxy == nil {
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proxy = NewSingleHostReverseProxy(nameURL, host.WithoutPathPrefix)
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}
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} else {
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outreq.Host = host.Name
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}
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if proxy == nil {
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return http.StatusInternalServerError, errors.New("proxy for host '" + host.Name + "' is nil")
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}
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// set headers for request going upstream
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if host.UpstreamHeaders != nil {
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if replacer == nil {
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replacer = httpserver.NewReplacer(r, nil, "")
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}
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if v, ok := host.UpstreamHeaders["Host"]; ok {
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outreq.Host = replacer.Replace(v[len(v)-1])
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}
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if upstream.Transparent() {
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host.UpstreamHeaders.Set("Host", host.Name)
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}
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// modify headers for request that will be sent to the upstream host
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upHeaders := createHeadersByRules(host.UpstreamHeaders, r.Header, replacer)
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for k, v := range upHeaders {
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outreq.Header[k] = v
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}
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}
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// prepare a function that will update response
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// headers coming back downstream
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var downHeaderUpdateFn respUpdateFn
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if host.DownstreamHeaders != nil {
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if replacer == nil {
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replacer = httpserver.NewReplacer(r, nil, "")
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}
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downHeaderUpdateFn = createRespHeaderUpdateFn(host.DownstreamHeaders, replacer)
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}
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// tell the proxy to serve the request
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atomic.AddInt64(&host.Conns, 1)
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backendErr := proxy.ServeHTTP(w, outreq, downHeaderUpdateFn)
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atomic.AddInt64(&host.Conns, -1)
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// if no errors, we're done here; otherwise failover
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if backendErr == nil {
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return 0, nil
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}
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timeout := host.FailTimeout
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if timeout == 0 {
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timeout = 10 * time.Second
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}
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atomic.AddInt32(&host.Fails, 1)
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go func(host *UpstreamHost, timeout time.Duration) {
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time.Sleep(timeout)
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atomic.AddInt32(&host.Fails, -1)
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}(host, timeout)
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}
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return http.StatusBadGateway, errUnreachable
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}
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// match finds the best match for a proxy config based
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// on r.
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func (p Proxy) match(r *http.Request) Upstream {
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var u Upstream
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var longestMatch int
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for _, upstream := range p.Upstreams {
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basePath := upstream.From()
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if !httpserver.Path(r.URL.Path).Matches(basePath) || !upstream.AllowedPath(r.URL.Path) {
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continue
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}
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if len(basePath) > longestMatch {
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longestMatch = len(basePath)
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u = upstream
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}
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}
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return u
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}
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// createUpstremRequest shallow-copies r into a new request
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// that can be sent upstream.
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func createUpstreamRequest(r *http.Request) *http.Request {
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outreq := new(http.Request)
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*outreq = *r // includes shallow copies of maps, but okay
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// Restore URL Path if it has been modified
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if outreq.URL.RawPath != "" {
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outreq.URL.Opaque = outreq.URL.RawPath
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}
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// Remove hop-by-hop headers to the backend. Especially
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// important is "Connection" because we want a persistent
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// connection, regardless of what the client sent to us. This
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// is modifying the same underlying map from r (shallow
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// copied above) so we only copy it if necessary.
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for _, h := range hopHeaders {
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if outreq.Header.Get(h) != "" {
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outreq.Header = make(http.Header)
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copyHeader(outreq.Header, r.Header)
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outreq.Header.Del(h)
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}
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}
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if clientIP, _, err := net.SplitHostPort(r.RemoteAddr); err == nil {
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// If we aren't the first proxy, retain prior
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// X-Forwarded-For information as a comma+space
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// separated list and fold multiple headers into one.
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if prior, ok := outreq.Header["X-Forwarded-For"]; ok {
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clientIP = strings.Join(prior, ", ") + ", " + clientIP
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}
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outreq.Header.Set("X-Forwarded-For", clientIP)
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}
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return outreq
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}
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func createRespHeaderUpdateFn(rules http.Header, replacer httpserver.Replacer) respUpdateFn {
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return func(resp *http.Response) {
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newHeaders := createHeadersByRules(rules, resp.Header, replacer)
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for h, v := range newHeaders {
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resp.Header[h] = v
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}
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}
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}
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func createHeadersByRules(rules http.Header, base http.Header, repl httpserver.Replacer) http.Header {
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newHeaders := make(http.Header)
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for header, values := range rules {
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if strings.HasPrefix(header, "+") {
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header = strings.TrimLeft(header, "+")
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add(newHeaders, header, base[header])
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applyEach(values, repl.Replace)
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add(newHeaders, header, values)
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} else if strings.HasPrefix(header, "-") {
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base.Del(strings.TrimLeft(header, "-"))
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} else if _, ok := base[header]; ok {
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applyEach(values, repl.Replace)
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for _, v := range values {
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newHeaders.Set(header, v)
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}
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} else {
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applyEach(values, repl.Replace)
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add(newHeaders, header, values)
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add(newHeaders, header, base[header])
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}
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}
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return newHeaders
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}
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func applyEach(values []string, mapFn func(string) string) {
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for i, v := range values {
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values[i] = mapFn(v)
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}
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}
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func add(base http.Header, header string, values []string) {
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for _, v := range values {
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base.Add(header, v)
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}
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}
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