mirror of
https://github.com/ceph/ceph-csi.git
synced 2024-12-29 08:20:20 +00:00
e727bd351e
updating kubernetes to 1.30 release Signed-off-by: Madhu Rajanna <madhupr007@gmail.com>
559 lines
20 KiB
Go
559 lines
20 KiB
Go
/*
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Copyright 2017 The Kubernetes Authors.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package proxy
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import (
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"bufio"
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"bytes"
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"fmt"
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"io"
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"log"
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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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"os"
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"strings"
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"time"
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"k8s.io/apimachinery/pkg/api/errors"
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"k8s.io/apimachinery/pkg/util/httpstream"
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utilnet "k8s.io/apimachinery/pkg/util/net"
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utilruntime "k8s.io/apimachinery/pkg/util/runtime"
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"github.com/mxk/go-flowrate/flowrate"
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"k8s.io/klog/v2"
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)
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// UpgradeRequestRoundTripper provides an additional method to decorate a request
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// with any authentication or other protocol level information prior to performing
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// an upgrade on the server. Any response will be handled by the intercepting
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// proxy.
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type UpgradeRequestRoundTripper interface {
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http.RoundTripper
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// WrapRequest takes a valid HTTP request and returns a suitably altered version
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// of request with any HTTP level values required to complete the request half of
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// an upgrade on the server. It does not get a chance to see the response and
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// should bypass any request side logic that expects to see the response.
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WrapRequest(*http.Request) (*http.Request, error)
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}
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// UpgradeAwareHandler is a handler for proxy requests that may require an upgrade
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type UpgradeAwareHandler struct {
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// UpgradeRequired will reject non-upgrade connections if true.
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UpgradeRequired bool
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// Location is the location of the upstream proxy. It is used as the location to Dial on the upstream server
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// for upgrade requests unless UseRequestLocationOnUpgrade is true.
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Location *url.URL
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// AppendLocationPath determines if the original path of the Location should be appended to the upstream proxy request path
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AppendLocationPath bool
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// Transport provides an optional round tripper to use to proxy. If nil, the default proxy transport is used
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Transport http.RoundTripper
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// UpgradeTransport, if specified, will be used as the backend transport when upgrade requests are provided.
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// This allows clients to disable HTTP/2.
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UpgradeTransport UpgradeRequestRoundTripper
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// WrapTransport indicates whether the provided Transport should be wrapped with default proxy transport behavior (URL rewriting, X-Forwarded-* header setting)
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WrapTransport bool
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// UseRequestLocation will use the incoming request URL when talking to the backend server.
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UseRequestLocation bool
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// UseLocationHost overrides the HTTP host header in requests to the backend server to use the Host from Location.
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// This will override the req.Host field of a request, while UseRequestLocation will override the req.URL field
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// of a request. The req.URL.Host specifies the server to connect to, while the req.Host field
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// specifies the Host header value to send in the HTTP request. If this is false, the incoming req.Host header will
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// just be forwarded to the backend server.
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UseLocationHost bool
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// FlushInterval controls how often the standard HTTP proxy will flush content from the upstream.
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FlushInterval time.Duration
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// MaxBytesPerSec controls the maximum rate for an upstream connection. No rate is imposed if the value is zero.
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MaxBytesPerSec int64
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// Responder is passed errors that occur while setting up proxying.
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Responder ErrorResponder
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// Reject to forward redirect response
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RejectForwardingRedirects bool
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}
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const defaultFlushInterval = 200 * time.Millisecond
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// ErrorResponder abstracts error reporting to the proxy handler to remove the need to hardcode a particular
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// error format.
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type ErrorResponder interface {
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Error(w http.ResponseWriter, req *http.Request, err error)
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}
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// SimpleErrorResponder is the legacy implementation of ErrorResponder for callers that only
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// service a single request/response per proxy.
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type SimpleErrorResponder interface {
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Error(err error)
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}
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func NewErrorResponder(r SimpleErrorResponder) ErrorResponder {
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return simpleResponder{r}
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}
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type simpleResponder struct {
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responder SimpleErrorResponder
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}
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func (r simpleResponder) Error(w http.ResponseWriter, req *http.Request, err error) {
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r.responder.Error(err)
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}
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// upgradeRequestRoundTripper implements proxy.UpgradeRequestRoundTripper.
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type upgradeRequestRoundTripper struct {
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http.RoundTripper
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upgrader http.RoundTripper
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}
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var (
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_ UpgradeRequestRoundTripper = &upgradeRequestRoundTripper{}
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_ utilnet.RoundTripperWrapper = &upgradeRequestRoundTripper{}
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)
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// WrappedRoundTripper returns the round tripper that a caller would use.
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func (rt *upgradeRequestRoundTripper) WrappedRoundTripper() http.RoundTripper {
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return rt.RoundTripper
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}
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// WriteToRequest calls the nested upgrader and then copies the returned request
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// fields onto the passed request.
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func (rt *upgradeRequestRoundTripper) WrapRequest(req *http.Request) (*http.Request, error) {
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resp, err := rt.upgrader.RoundTrip(req)
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if err != nil {
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return nil, err
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}
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return resp.Request, nil
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}
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// onewayRoundTripper captures the provided request - which is assumed to have
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// been modified by other round trippers - and then returns a fake response.
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type onewayRoundTripper struct{}
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// RoundTrip returns a simple 200 OK response that captures the provided request.
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func (onewayRoundTripper) RoundTrip(req *http.Request) (*http.Response, error) {
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return &http.Response{
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Status: "200 OK",
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StatusCode: http.StatusOK,
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Body: io.NopCloser(&bytes.Buffer{}),
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Request: req,
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}, nil
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}
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// MirrorRequest is a round tripper that can be called to get back the calling request as
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// the core round tripper in a chain.
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var MirrorRequest http.RoundTripper = onewayRoundTripper{}
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// NewUpgradeRequestRoundTripper takes two round trippers - one for the underlying TCP connection, and
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// one that is able to write headers to an HTTP request. The request rt is used to set the request headers
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// and that is written to the underlying connection rt.
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func NewUpgradeRequestRoundTripper(connection, request http.RoundTripper) UpgradeRequestRoundTripper {
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return &upgradeRequestRoundTripper{
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RoundTripper: connection,
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upgrader: request,
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}
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}
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// normalizeLocation returns the result of parsing the full URL, with scheme set to http if missing
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func normalizeLocation(location *url.URL) *url.URL {
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normalized, _ := url.Parse(location.String())
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if len(normalized.Scheme) == 0 {
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normalized.Scheme = "http"
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}
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return normalized
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}
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// NewUpgradeAwareHandler creates a new proxy handler with a default flush interval. Responder is required for returning
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// errors to the caller.
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func NewUpgradeAwareHandler(location *url.URL, transport http.RoundTripper, wrapTransport, upgradeRequired bool, responder ErrorResponder) *UpgradeAwareHandler {
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return &UpgradeAwareHandler{
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Location: normalizeLocation(location),
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Transport: transport,
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WrapTransport: wrapTransport,
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UpgradeRequired: upgradeRequired,
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FlushInterval: defaultFlushInterval,
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Responder: responder,
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}
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}
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func proxyRedirectsforRootPath(path string, w http.ResponseWriter, req *http.Request) bool {
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redirect := false
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method := req.Method
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// From pkg/genericapiserver/endpoints/handlers/proxy.go#ServeHTTP:
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// Redirect requests with an empty path to a location that ends with a '/'
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// This is essentially a hack for https://issue.k8s.io/4958.
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// Note: Keep this code after tryUpgrade to not break that flow.
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if len(path) == 0 && (method == http.MethodGet || method == http.MethodHead) {
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var queryPart string
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if len(req.URL.RawQuery) > 0 {
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queryPart = "?" + req.URL.RawQuery
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}
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w.Header().Set("Location", req.URL.Path+"/"+queryPart)
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w.WriteHeader(http.StatusMovedPermanently)
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redirect = true
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}
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return redirect
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}
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// ServeHTTP handles the proxy request
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func (h *UpgradeAwareHandler) ServeHTTP(w http.ResponseWriter, req *http.Request) {
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if h.tryUpgrade(w, req) {
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return
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}
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if h.UpgradeRequired {
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h.Responder.Error(w, req, errors.NewBadRequest("Upgrade request required"))
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return
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}
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loc := *h.Location
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loc.RawQuery = req.URL.RawQuery
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// If original request URL ended in '/', append a '/' at the end of the
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// of the proxy URL
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if !strings.HasSuffix(loc.Path, "/") && strings.HasSuffix(req.URL.Path, "/") {
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loc.Path += "/"
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}
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proxyRedirect := proxyRedirectsforRootPath(loc.Path, w, req)
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if proxyRedirect {
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return
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}
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if h.Transport == nil || h.WrapTransport {
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h.Transport = h.defaultProxyTransport(req.URL, h.Transport)
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}
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// WithContext creates a shallow clone of the request with the same context.
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newReq := req.WithContext(req.Context())
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newReq.Header = utilnet.CloneHeader(req.Header)
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if !h.UseRequestLocation {
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newReq.URL = &loc
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}
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if h.UseLocationHost {
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// exchanging req.Host with the backend location is necessary for backends that act on the HTTP host header (e.g. API gateways),
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// because req.Host has preference over req.URL.Host in filling this header field
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newReq.Host = h.Location.Host
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}
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// create the target location to use for the reverse proxy
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reverseProxyLocation := &url.URL{Scheme: h.Location.Scheme, Host: h.Location.Host}
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if h.AppendLocationPath {
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reverseProxyLocation.Path = h.Location.Path
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}
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proxy := httputil.NewSingleHostReverseProxy(reverseProxyLocation)
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proxy.Transport = h.Transport
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proxy.FlushInterval = h.FlushInterval
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proxy.ErrorLog = log.New(noSuppressPanicError{}, "", log.LstdFlags)
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if h.RejectForwardingRedirects {
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oldModifyResponse := proxy.ModifyResponse
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proxy.ModifyResponse = func(response *http.Response) error {
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code := response.StatusCode
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if code >= 300 && code <= 399 && len(response.Header.Get("Location")) > 0 {
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// close the original response
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response.Body.Close()
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msg := "the backend attempted to redirect this request, which is not permitted"
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// replace the response
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*response = http.Response{
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StatusCode: http.StatusBadGateway,
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Status: fmt.Sprintf("%d %s", response.StatusCode, http.StatusText(response.StatusCode)),
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Body: io.NopCloser(strings.NewReader(msg)),
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ContentLength: int64(len(msg)),
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}
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} else {
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if oldModifyResponse != nil {
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if err := oldModifyResponse(response); err != nil {
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return err
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}
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}
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}
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return nil
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}
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}
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if h.Responder != nil {
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// if an optional error interceptor/responder was provided wire it
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// the custom responder might be used for providing a unified error reporting
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// or supporting retry mechanisms by not sending non-fatal errors to the clients
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proxy.ErrorHandler = h.Responder.Error
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}
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proxy.ServeHTTP(w, newReq)
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}
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type noSuppressPanicError struct{}
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func (noSuppressPanicError) Write(p []byte) (n int, err error) {
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// skip "suppressing panic for copyResponse error in test; copy error" error message
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// that ends up in CI tests on each kube-apiserver termination as noise and
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// everybody thinks this is fatal.
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if strings.Contains(string(p), "suppressing panic") {
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return len(p), nil
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}
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return os.Stderr.Write(p)
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}
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// tryUpgrade returns true if the request was handled.
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func (h *UpgradeAwareHandler) tryUpgrade(w http.ResponseWriter, req *http.Request) bool {
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if !httpstream.IsUpgradeRequest(req) {
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klog.V(6).Infof("Request was not an upgrade")
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return false
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}
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var (
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backendConn net.Conn
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rawResponse []byte
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err error
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)
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location := *h.Location
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if h.UseRequestLocation {
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location = *req.URL
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location.Scheme = h.Location.Scheme
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location.Host = h.Location.Host
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if h.AppendLocationPath {
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location.Path = singleJoiningSlash(h.Location.Path, location.Path)
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}
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}
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clone := utilnet.CloneRequest(req)
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// Only append X-Forwarded-For in the upgrade path, since httputil.NewSingleHostReverseProxy
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// handles this in the non-upgrade path.
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utilnet.AppendForwardedForHeader(clone)
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klog.V(6).Infof("Connecting to backend proxy (direct dial) %s\n Headers: %v", &location, clone.Header)
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if h.UseLocationHost {
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clone.Host = h.Location.Host
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}
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clone.URL = &location
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klog.V(6).Infof("UpgradeAwareProxy: dialing for SPDY upgrade with headers: %v", clone.Header)
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backendConn, err = h.DialForUpgrade(clone)
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if err != nil {
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klog.V(6).Infof("Proxy connection error: %v", err)
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h.Responder.Error(w, req, err)
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return true
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}
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defer backendConn.Close()
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// determine the http response code from the backend by reading from rawResponse+backendConn
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backendHTTPResponse, headerBytes, err := getResponse(io.MultiReader(bytes.NewReader(rawResponse), backendConn))
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if err != nil {
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klog.V(6).Infof("Proxy connection error: %v", err)
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h.Responder.Error(w, req, err)
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return true
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}
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if len(headerBytes) > len(rawResponse) {
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// we read beyond the bytes stored in rawResponse, update rawResponse to the full set of bytes read from the backend
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rawResponse = headerBytes
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}
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// If the backend did not upgrade the request, return an error to the client. If the response was
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// an error, the error is forwarded directly after the connection is hijacked. Otherwise, just
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// return a generic error here.
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if backendHTTPResponse.StatusCode != http.StatusSwitchingProtocols && backendHTTPResponse.StatusCode < 400 {
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err := fmt.Errorf("invalid upgrade response: status code %d", backendHTTPResponse.StatusCode)
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klog.Errorf("Proxy upgrade error: %v", err)
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h.Responder.Error(w, req, err)
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return true
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}
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// Once the connection is hijacked, the ErrorResponder will no longer work, so
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// hijacking should be the last step in the upgrade.
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requestHijacker, ok := w.(http.Hijacker)
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if !ok {
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klog.Errorf("Unable to hijack response writer: %T", w)
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h.Responder.Error(w, req, fmt.Errorf("request connection cannot be hijacked: %T", w))
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return true
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}
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requestHijackedConn, _, err := requestHijacker.Hijack()
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if err != nil {
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klog.Errorf("Unable to hijack response: %v", err)
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h.Responder.Error(w, req, fmt.Errorf("error hijacking connection: %v", err))
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return true
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}
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defer requestHijackedConn.Close()
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if backendHTTPResponse.StatusCode != http.StatusSwitchingProtocols {
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// If the backend did not upgrade the request, echo the response from the backend to the client and return, closing the connection.
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klog.V(6).Infof("Proxy upgrade error, status code %d", backendHTTPResponse.StatusCode)
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// set read/write deadlines
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deadline := time.Now().Add(10 * time.Second)
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backendConn.SetReadDeadline(deadline)
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requestHijackedConn.SetWriteDeadline(deadline)
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// write the response to the client
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err := backendHTTPResponse.Write(requestHijackedConn)
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if err != nil && !strings.Contains(err.Error(), "use of closed network connection") {
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klog.Errorf("Error proxying data from backend to client: %v", err)
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}
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// Indicate we handled the request
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return true
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}
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// Forward raw response bytes back to client.
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if len(rawResponse) > 0 {
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klog.V(6).Infof("Writing %d bytes to hijacked connection", len(rawResponse))
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if _, err = requestHijackedConn.Write(rawResponse); err != nil {
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utilruntime.HandleError(fmt.Errorf("Error proxying response from backend to client: %v", err))
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}
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}
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// Proxy the connection. This is bidirectional, so we need a goroutine
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// to copy in each direction. Once one side of the connection exits, we
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// exit the function which performs cleanup and in the process closes
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// the other half of the connection in the defer.
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writerComplete := make(chan struct{})
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readerComplete := make(chan struct{})
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go func() {
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var writer io.WriteCloser
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if h.MaxBytesPerSec > 0 {
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writer = flowrate.NewWriter(backendConn, h.MaxBytesPerSec)
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} else {
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writer = backendConn
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}
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_, err := io.Copy(writer, requestHijackedConn)
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if err != nil && !strings.Contains(err.Error(), "use of closed network connection") {
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klog.Errorf("Error proxying data from client to backend: %v", err)
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}
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close(writerComplete)
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}()
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go func() {
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var reader io.ReadCloser
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if h.MaxBytesPerSec > 0 {
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reader = flowrate.NewReader(backendConn, h.MaxBytesPerSec)
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} else {
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reader = backendConn
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}
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_, err := io.Copy(requestHijackedConn, reader)
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if err != nil && !strings.Contains(err.Error(), "use of closed network connection") {
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klog.Errorf("Error proxying data from backend to client: %v", err)
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}
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close(readerComplete)
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}()
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// Wait for one half the connection to exit. Once it does the defer will
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// clean up the other half of the connection.
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select {
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case <-writerComplete:
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case <-readerComplete:
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}
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klog.V(6).Infof("Disconnecting from backend proxy %s\n Headers: %v", &location, clone.Header)
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return true
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}
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// FIXME: Taken from net/http/httputil/reverseproxy.go as singleJoiningSlash is not exported to be re-used.
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// See-also: https://github.com/golang/go/issues/44290
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func singleJoiningSlash(a, b string) string {
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aslash := strings.HasSuffix(a, "/")
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bslash := strings.HasPrefix(b, "/")
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switch {
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case aslash && bslash:
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return a + b[1:]
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case !aslash && !bslash:
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return a + "/" + b
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}
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return a + b
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}
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func (h *UpgradeAwareHandler) DialForUpgrade(req *http.Request) (net.Conn, error) {
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if h.UpgradeTransport == nil {
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return dial(req, h.Transport)
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}
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updatedReq, err := h.UpgradeTransport.WrapRequest(req)
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if err != nil {
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return nil, err
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}
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return dial(updatedReq, h.UpgradeTransport)
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}
|
|
|
|
// getResponseCode reads a http response from the given reader, returns the response,
|
|
// the bytes read from the reader, and any error encountered
|
|
func getResponse(r io.Reader) (*http.Response, []byte, error) {
|
|
rawResponse := bytes.NewBuffer(make([]byte, 0, 256))
|
|
// Save the bytes read while reading the response headers into the rawResponse buffer
|
|
resp, err := http.ReadResponse(bufio.NewReader(io.TeeReader(r, rawResponse)), nil)
|
|
if err != nil {
|
|
return nil, nil, err
|
|
}
|
|
// return the http response and the raw bytes consumed from the reader in the process
|
|
return resp, rawResponse.Bytes(), nil
|
|
}
|
|
|
|
// dial dials the backend at req.URL and writes req to it.
|
|
func dial(req *http.Request, transport http.RoundTripper) (net.Conn, error) {
|
|
conn, err := DialURL(req.Context(), req.URL, transport)
|
|
if err != nil {
|
|
return nil, fmt.Errorf("error dialing backend: %v", err)
|
|
}
|
|
|
|
if err = req.Write(conn); err != nil {
|
|
conn.Close()
|
|
return nil, fmt.Errorf("error sending request: %v", err)
|
|
}
|
|
|
|
return conn, err
|
|
}
|
|
|
|
func (h *UpgradeAwareHandler) defaultProxyTransport(url *url.URL, internalTransport http.RoundTripper) http.RoundTripper {
|
|
scheme := url.Scheme
|
|
host := url.Host
|
|
suffix := h.Location.Path
|
|
if strings.HasSuffix(url.Path, "/") && !strings.HasSuffix(suffix, "/") {
|
|
suffix += "/"
|
|
}
|
|
pathPrepend := strings.TrimSuffix(url.Path, suffix)
|
|
rewritingTransport := &Transport{
|
|
Scheme: scheme,
|
|
Host: host,
|
|
PathPrepend: pathPrepend,
|
|
RoundTripper: internalTransport,
|
|
}
|
|
return &corsRemovingTransport{
|
|
RoundTripper: rewritingTransport,
|
|
}
|
|
}
|
|
|
|
// corsRemovingTransport is a wrapper for an internal transport. It removes CORS headers
|
|
// from the internal response.
|
|
// Implements pkg/util/net.RoundTripperWrapper
|
|
type corsRemovingTransport struct {
|
|
http.RoundTripper
|
|
}
|
|
|
|
var _ = utilnet.RoundTripperWrapper(&corsRemovingTransport{})
|
|
|
|
func (rt *corsRemovingTransport) RoundTrip(req *http.Request) (*http.Response, error) {
|
|
resp, err := rt.RoundTripper.RoundTrip(req)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
removeCORSHeaders(resp)
|
|
return resp, nil
|
|
}
|
|
|
|
func (rt *corsRemovingTransport) WrappedRoundTripper() http.RoundTripper {
|
|
return rt.RoundTripper
|
|
}
|
|
|
|
// removeCORSHeaders strip CORS headers sent from the backend
|
|
// This should be called on all responses before returning
|
|
func removeCORSHeaders(resp *http.Response) {
|
|
resp.Header.Del("Access-Control-Allow-Credentials")
|
|
resp.Header.Del("Access-Control-Allow-Headers")
|
|
resp.Header.Del("Access-Control-Allow-Methods")
|
|
resp.Header.Del("Access-Control-Allow-Origin")
|
|
}
|