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849abaf25e
Squashed commit of the following:
commit 5a9e8c0c2e4b68c0ff6508c47fbd8abde0d05e95
Merge: 85820c173 c4e69cd96
Author: Eugene Burkov <E.Burkov@AdGuard.COM>
Date: Tue Nov 28 16:09:53 2023 +0300
Merge branch 'master' into AG-27539-imp-upstream-test
commit 85820c173dddb6391dabe9615b821b585b1ecdef
Author: Eugene Burkov <E.Burkov@AdGuard.COM>
Date: Tue Nov 28 15:48:53 2023 +0300
dnsforward: split code
commit dac0148a4d4780bea19fb7622b46ac08fbf1ee74
Author: Eugene Burkov <E.Burkov@AdGuard.COM>
Date: Fri Nov 24 15:47:05 2023 +0300
dnsforward: fix docs
commit 9f0015b255d547f31d34513aa6bb2faf65a39e0e
Author: Eugene Burkov <E.Burkov@AdGuard.COM>
Date: Fri Nov 24 14:45:43 2023 +0300
dnsforward: imp code
commit 49fefc373972b7c8991abcb46d7730288b92c24c
Author: Eugene Burkov <E.Burkov@AdGuard.COM>
Date: Thu Nov 23 14:12:02 2023 +0300
dnsforward: imp code
commit 120ba4b1f727bba537471c4a8aa4b412eac30f85
Author: Eugene Burkov <E.Burkov@AdGuard.COM>
Date: Wed Nov 22 17:02:01 2023 +0300
dnsforward: add tests
commit 70775975ced46191a6ba64504c7bac0e3d1eed7f
Author: Eugene Burkov <E.Burkov@AdGuard.COM>
Date: Wed Nov 22 15:48:05 2023 +0300
dnsforward: imp code
commit 9487f1fd62b821efb242267d9972f3ae3785ad19
Author: Eugene Burkov <E.Burkov@AdGuard.COM>
Date: Tue Nov 21 18:06:00 2023 +0300
dnsforward: imp code
commit e2612e0e6fd1c9116872939edd0e86f2e9af07d7
Author: Eugene Burkov <E.Burkov@AdGuard.COM>
Date: Tue Nov 21 16:12:20 2023 +0300
dnsforward: add ups checker
commit 09db7d2a604809669affbeef2f0536fa6605a39b
Author: Eugene Burkov <E.Burkov@AdGuard.COM>
Date: Tue Nov 14 17:31:04 2023 +0300
dnsforward: separate upstream code
349 lines
9.3 KiB
Go
349 lines
9.3 KiB
Go
package dnsforward
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import (
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"fmt"
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"strings"
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"sync"
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"github.com/AdguardTeam/dnsproxy/upstream"
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"github.com/AdguardTeam/golibs/errors"
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"github.com/AdguardTeam/golibs/log"
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"github.com/miekg/dns"
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"golang.org/x/exp/slices"
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)
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// upstreamConfigValidator parses the [*proxy.UpstreamConfig] and checks the
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// actual DNS availability of each upstream.
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type upstreamConfigValidator struct {
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// general is the general upstream configuration.
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general []*upstreamResult
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// fallback is the fallback upstream configuration.
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fallback []*upstreamResult
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// private is the private upstream configuration.
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private []*upstreamResult
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}
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// upstreamResult is a result of validation of an [upstream.Upstream] within an
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// [proxy.UpstreamConfig].
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type upstreamResult struct {
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// server is the parsed upstream. It is nil when there was an error during
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// parsing.
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server upstream.Upstream
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// err is the error either from parsing or from checking the upstream.
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err error
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// original is the piece of configuration that have either been turned to an
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// upstream or caused an error.
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original string
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// isSpecific is true if the upstream is domain-specific.
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isSpecific bool
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}
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// compare compares two [upstreamResult]s. It returns 0 if they are equal, -1
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// if ur should be sorted before other, and 1 otherwise.
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//
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// TODO(e.burkov): Perhaps it makes sense to sort the results with errors near
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// the end.
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func (ur *upstreamResult) compare(other *upstreamResult) (res int) {
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return strings.Compare(ur.original, other.original)
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}
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// newUpstreamConfigValidator parses the upstream configuration and returns a
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// validator for it. cv already contains the parsed upstreams along with errors
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// related.
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func newUpstreamConfigValidator(
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general []string,
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fallback []string,
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private []string,
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opts *upstream.Options,
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) (cv *upstreamConfigValidator) {
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cv = &upstreamConfigValidator{}
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for _, line := range general {
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cv.general = cv.insertLineResults(cv.general, line, opts)
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}
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for _, line := range fallback {
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cv.fallback = cv.insertLineResults(cv.fallback, line, opts)
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}
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for _, line := range private {
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cv.private = cv.insertLineResults(cv.private, line, opts)
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}
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return cv
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}
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// insertLineResults parses line and inserts the result into s. It can insert
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// multiple results as well as none.
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func (cv *upstreamConfigValidator) insertLineResults(
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s []*upstreamResult,
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line string,
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opts *upstream.Options,
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) (result []*upstreamResult) {
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upstreams, isSpecific, err := splitUpstreamLine(line)
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if err != nil {
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return cv.insert(s, &upstreamResult{
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err: err,
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original: line,
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})
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}
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for _, upstreamAddr := range upstreams {
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var res *upstreamResult
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if upstreamAddr != "#" {
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res = cv.parseUpstream(upstreamAddr, opts)
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} else if !isSpecific {
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res = &upstreamResult{
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err: errNotDomainSpecific,
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original: upstreamAddr,
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}
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} else {
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continue
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}
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res.isSpecific = isSpecific
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s = cv.insert(s, res)
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}
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return s
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}
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// insert inserts r into slice in a sorted order, except duplicates. slice must
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// not be nil.
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func (cv *upstreamConfigValidator) insert(
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s []*upstreamResult,
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r *upstreamResult,
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) (result []*upstreamResult) {
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i, has := slices.BinarySearchFunc(s, r, (*upstreamResult).compare)
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if has {
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log.Debug("dnsforward: duplicate configuration %q", r.original)
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return s
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}
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return slices.Insert(s, i, r)
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}
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// parseUpstream parses addr and returns the result of parsing. It returns nil
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// if the specified server points at the default upstream server which is
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// validated separately.
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func (cv *upstreamConfigValidator) parseUpstream(
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addr string,
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opts *upstream.Options,
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) (r *upstreamResult) {
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// Check if the upstream has a valid protocol prefix.
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//
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// TODO(e.burkov): Validate the domain name.
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if proto, _, ok := strings.Cut(addr, "://"); ok {
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if !slices.Contains(protocols, proto) {
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return &upstreamResult{
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err: fmt.Errorf("bad protocol %q", proto),
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original: addr,
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}
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}
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}
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ups, err := upstream.AddressToUpstream(addr, opts)
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return &upstreamResult{
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server: ups,
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err: err,
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original: addr,
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}
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}
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// check tries to exchange with each successfully parsed upstream and enriches
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// the results with the healthcheck errors. It should not be called after the
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// [upsConfValidator.close] method, since it makes no sense to check the closed
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// upstreams.
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func (cv *upstreamConfigValidator) check() {
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const (
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// testTLD is the special-use fully-qualified domain name for testing
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// the DNS server reachability.
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//
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// See https://datatracker.ietf.org/doc/html/rfc6761#section-6.2.
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testTLD = "test."
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// inAddrARPATLD is the special-use fully-qualified domain name for PTR
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// IP address resolution.
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//
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// See https://datatracker.ietf.org/doc/html/rfc1035#section-3.5.
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inAddrARPATLD = "in-addr.arpa."
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)
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commonChecker := &healthchecker{
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hostname: testTLD,
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qtype: dns.TypeA,
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ansEmpty: true,
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}
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arpaChecker := &healthchecker{
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hostname: inAddrARPATLD,
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qtype: dns.TypePTR,
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ansEmpty: false,
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}
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wg := &sync.WaitGroup{}
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wg.Add(len(cv.general) + len(cv.fallback) + len(cv.private))
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for _, res := range cv.general {
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go cv.checkSrv(res, wg, commonChecker)
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}
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for _, res := range cv.fallback {
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go cv.checkSrv(res, wg, commonChecker)
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}
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for _, res := range cv.private {
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go cv.checkSrv(res, wg, arpaChecker)
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}
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wg.Wait()
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}
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// checkSrv runs hc on the server from res, if any, and stores any occurred
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// error in res. wg is always marked done in the end. It used to be called in
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// a separate goroutine.
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func (cv *upstreamConfigValidator) checkSrv(
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res *upstreamResult,
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wg *sync.WaitGroup,
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hc *healthchecker,
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) {
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defer wg.Done()
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if res.server == nil {
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return
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}
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res.err = hc.check(res.server)
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if res.err != nil && res.isSpecific {
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res.err = domainSpecificTestError{Err: res.err}
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}
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}
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// close closes all the upstreams that were successfully parsed. It enriches
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// the results with deferred closing errors.
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func (cv *upstreamConfigValidator) close() {
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for _, slice := range [][]*upstreamResult{cv.general, cv.fallback, cv.private} {
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for _, r := range slice {
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if r.server != nil {
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r.err = errors.WithDeferred(r.err, r.server.Close())
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}
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}
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}
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}
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// status returns all the data collected during parsing, healthcheck, and
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// closing of the upstreams. The returned map is keyed by the original upstream
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// configuration piece and contains the corresponding error or "OK" if there was
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// no error.
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func (cv *upstreamConfigValidator) status() (results map[string]string) {
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result := map[string]string{}
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for _, res := range cv.general {
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resultToStatus("general", res, result)
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}
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for _, res := range cv.fallback {
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resultToStatus("fallback", res, result)
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}
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for _, res := range cv.private {
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resultToStatus("private", res, result)
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}
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return result
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}
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// resultToStatus puts "OK" or an error message from res into resMap. section
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// is the name of the upstream configuration section, i.e. "general",
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// "fallback", or "private", and only used for logging.
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//
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// TODO(e.burkov): Currently, the HTTP handler expects that all the results are
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// put together in a single map, which may lead to collisions, see AG-27539.
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// Improve the results compilation.
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func resultToStatus(section string, res *upstreamResult, resMap map[string]string) {
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val := "OK"
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if res.err != nil {
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val = res.err.Error()
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}
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prevVal := resMap[res.original]
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switch prevVal {
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case "":
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resMap[res.original] = val
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case val:
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log.Debug("dnsforward: duplicating %s config line %q", section, res.original)
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default:
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log.Debug(
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"dnsforward: warning: %s config line %q (%v) had different result %v",
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section,
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val,
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res.original,
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prevVal,
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)
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}
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}
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// domainSpecificTestError is a wrapper for errors returned by checkDNS to mark
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// the tested upstream domain-specific and therefore consider its errors
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// non-critical.
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//
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// TODO(a.garipov): Some common mechanism of distinguishing between errors and
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// warnings (non-critical errors) is desired.
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type domainSpecificTestError struct {
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// Err is the actual error occurred during healthcheck test.
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Err error
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}
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// type check
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var _ error = domainSpecificTestError{}
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// Error implements the [error] interface for domainSpecificTestError.
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func (err domainSpecificTestError) Error() (msg string) {
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return fmt.Sprintf("WARNING: %s", err.Err)
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}
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// type check
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var _ errors.Wrapper = domainSpecificTestError{}
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// Unwrap implements the [errors.Wrapper] interface for domainSpecificTestError.
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func (err domainSpecificTestError) Unwrap() (wrapped error) {
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return err.Err
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}
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// healthchecker checks the upstream's status by exchanging with it.
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type healthchecker struct {
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// hostname is the name of the host to put into healthcheck DNS request.
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hostname string
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// qtype is the type of DNS request to use for healthcheck.
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qtype uint16
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// ansEmpty defines if the answer section within the response is expected to
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// be empty.
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ansEmpty bool
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}
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// check exchanges with u and validates the response.
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func (h *healthchecker) check(u upstream.Upstream) (err error) {
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req := &dns.Msg{
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MsgHdr: dns.MsgHdr{
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Id: dns.Id(),
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RecursionDesired: true,
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},
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Question: []dns.Question{{
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Name: h.hostname,
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Qtype: h.qtype,
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Qclass: dns.ClassINET,
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}},
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}
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reply, err := u.Exchange(req)
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if err != nil {
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return fmt.Errorf("couldn't communicate with upstream: %w", err)
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} else if h.ansEmpty && len(reply.Answer) > 0 {
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return errWrongResponse
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}
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return nil
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}
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