mirror of
https://github.com/tailscale/tailscale.git
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179 lines
6.7 KiB
Go
179 lines
6.7 KiB
Go
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// Copyright (c) Tailscale Inc & AUTHORS
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// SPDX-License-Identifier: BSD-3-Clause
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package captivedetection
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import (
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"cmp"
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"fmt"
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"io"
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"net/http"
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"net/url"
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"slices"
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"go4.org/mem"
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"tailscale.com/net/dnsfallback"
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"tailscale.com/tailcfg"
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"tailscale.com/types/logger"
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)
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// EndpointProvider is an enum that represents the source of an Endpoint.
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type EndpointProvider int
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const (
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// DERPMapPreferred is used for an endpoint that is a DERP node contained in the current preferred DERP region,
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// as provided by the DERPMap.
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DERPMapPreferred EndpointProvider = iota
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// DERPMapOther is used for an endpoint that is a DERP node, but not contained in the current preferred DERP region.
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DERPMapOther
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// Tailscale is used for endpoints that are the Tailscale coordination server or admin console.
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Tailscale
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)
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func (p EndpointProvider) String() string {
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switch p {
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case DERPMapPreferred:
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return "DERPMapPreferred"
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case Tailscale:
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return "Tailscale"
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case DERPMapOther:
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return "DERPMapOther"
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default:
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return fmt.Sprintf("EndpointProvider(%d)", p)
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}
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}
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// Endpoint represents a URL that can be used to detect a captive portal, along with the expected
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// result of the HTTP request.
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type Endpoint struct {
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// URL is the URL that we make an HTTP request to as part of the captive portal detection process.
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URL *url.URL
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// StatusCode is the expected HTTP status code that we expect to see in the response.
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StatusCode int
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// ExpectedContent is a string that we expect to see contained in the response body. If this is non-empty,
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// we will check that the response body contains this string. If it is empty, we will not check the response body
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// and only check the status code.
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ExpectedContent string
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// SupportsTailscaleChallenge is true if the endpoint will return the sent value of the X-Tailscale-Challenge
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// HTTP header in its HTTP response.
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SupportsTailscaleChallenge bool
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// Provider is the source of the endpoint. This is used to prioritize certain endpoints over others
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// (for example, a DERP node in the preferred region should always be used first).
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Provider EndpointProvider
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}
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func (e Endpoint) String() string {
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return fmt.Sprintf("Endpoint{URL=%q, StatusCode=%d, ExpectedContent=%q, SupportsTailscaleChallenge=%v, Provider=%s}", e.URL, e.StatusCode, e.ExpectedContent, e.SupportsTailscaleChallenge, e.Provider.String())
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}
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func (e Endpoint) Equal(other Endpoint) bool {
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return e.URL.String() == other.URL.String() &&
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e.StatusCode == other.StatusCode &&
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e.ExpectedContent == other.ExpectedContent &&
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e.SupportsTailscaleChallenge == other.SupportsTailscaleChallenge &&
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e.Provider == other.Provider
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}
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// availableEndpoints returns a set of Endpoints which can be used for captive portal detection by performing
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// one or more HTTP requests and looking at the response. The returned Endpoints are ordered by preference,
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// with the most preferred Endpoint being the first in the slice.
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func availableEndpoints(derpMap *tailcfg.DERPMap, preferredDERPRegionID int, logf logger.Logf, goos string) []Endpoint {
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endpoints := []Endpoint{}
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if derpMap == nil || len(derpMap.Regions) == 0 {
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// When the client first starts, we don't have a DERPMap in LocalBackend yet. In this case,
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// we use the static DERPMap from dnsfallback.
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logf("captivedetection: current DERPMap is empty, using map from dnsfallback")
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derpMap = dnsfallback.GetDERPMap()
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}
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// Use the DERP IPs as captive portal detection endpoints. Using IPs is better than hostnames
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// because they do not depend on DNS resolution.
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for _, region := range derpMap.Regions {
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if region.Avoid {
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continue
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}
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for _, node := range region.Nodes {
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if node.IPv4 == "" || !node.CanPort80 {
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continue
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}
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str := "http://" + node.IPv4 + "/generate_204"
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u, err := url.Parse(str)
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if err != nil {
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logf("captivedetection: failed to parse DERP node URL %q: %v", str, err)
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continue
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}
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p := DERPMapOther
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if region.RegionID == preferredDERPRegionID {
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p = DERPMapPreferred
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}
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e := Endpoint{u, http.StatusNoContent, "", true, p}
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endpoints = append(endpoints, e)
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}
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}
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// Let's also try the default Tailscale coordination server and admin console.
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// These are likely to be blocked on some networks.
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appendTailscaleEndpoint := func(urlString string) {
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u, err := url.Parse(urlString)
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if err != nil {
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logf("captivedetection: failed to parse Tailscale URL %q: %v", urlString, err)
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return
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}
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endpoints = append(endpoints, Endpoint{u, http.StatusNoContent, "", false, Tailscale})
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}
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appendTailscaleEndpoint("http://controlplane.tailscale.com/generate_204")
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appendTailscaleEndpoint("http://login.tailscale.com/generate_204")
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// Sort the endpoints by provider so that we can prioritize DERP nodes in the preferred region, followed by
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// any other DERP server elsewhere, then followed by Tailscale endpoints.
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slices.SortFunc(endpoints, func(x, y Endpoint) int {
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return cmp.Compare(x.Provider, y.Provider)
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})
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return endpoints
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}
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// responseLooksLikeCaptive checks if the given HTTP response matches the expected response for the Endpoint.
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func (e Endpoint) responseLooksLikeCaptive(r *http.Response, logf logger.Logf) bool {
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defer r.Body.Close()
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// Check the status code first.
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if r.StatusCode != e.StatusCode {
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logf("[v1] unexpected status code in captive portal response: want=%d, got=%d", e.StatusCode, r.StatusCode)
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return true
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}
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// If the endpoint supports the Tailscale challenge header, check that the response contains the expected header.
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if e.SupportsTailscaleChallenge {
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expectedResponse := "response ts_" + e.URL.Host
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hasResponse := r.Header.Get("X-Tailscale-Response") == expectedResponse
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if !hasResponse {
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// The response did not contain the expected X-Tailscale-Response header, which means we are most likely
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// behind a captive portal (somebody is tampering with the response headers).
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logf("captive portal check response did not contain expected X-Tailscale-Response header: want=%q, got=%q", expectedResponse, r.Header.Get("X-Tailscale-Response"))
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return true
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}
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}
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// If we don't have an expected content string, we don't need to check the response body.
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if e.ExpectedContent == "" {
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return false
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}
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// Read the response body and check if it contains the expected content.
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b, err := io.ReadAll(io.LimitReader(r.Body, 4096))
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if err != nil {
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logf("reading captive portal check response body failed: %v", err)
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return false
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}
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hasExpectedContent := mem.Contains(mem.B(b), mem.S(e.ExpectedContent))
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if !hasExpectedContent {
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// The response body did not contain the expected content, that means we are most likely behind a captive portal.
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logf("[v1] captive portal check response body did not contain expected content: want=%q", e.ExpectedContent)
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return true
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}
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// If we got here, the response looks good.
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return false
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}
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