Files
AdGuardHome/internal/filtering/rewrites.go
Eugene Burkov 94cf50a53d Pull request 1955: Upd libraries
Merge in DNS/adguard-home from upd-libs to master

Squashed commit of the following:

commit 72f4fb7d5ab8eaecb917a843dec56e3fa38b725c
Merge: 8defe106f 111005b8d
Author: Eugene Burkov <E.Burkov@AdGuard.COM>
Date:   Thu Aug 10 19:50:33 2023 +0300

    Merge branch 'master' into upd-libs

commit 8defe106fc982ba916f42d5722f1cc0152042d04
Author: Eugene Burkov <E.Burkov@AdGuard.COM>
Date:   Thu Aug 10 19:38:01 2023 +0300

    dnsforward: revert behavior

commit 8ccb2f675373772f8a6f829b80b317fda0c5f730
Author: Eugene Burkov <E.Burkov@AdGuard.COM>
Date:   Wed Aug 9 18:35:12 2023 +0300

    all: imp code

commit a3112d3438a466bae515e56a6ee97394066ba481
Author: Eugene Burkov <E.Burkov@AdGuard.COM>
Date:   Wed Aug 9 17:26:52 2023 +0300

    filtering: revert type

commit 56d2528fb4c8ee5504de0c6ec24050d63c8e6330
Author: Eugene Burkov <E.Burkov@AdGuard.COM>
Date:   Wed Aug 9 14:57:04 2023 +0300

    stats: fix sort

commit 0dbb446602b7536df508a8e53c4a532455c9d064
Author: Eugene Burkov <E.Burkov@AdGuard.COM>
Date:   Wed Aug 9 14:52:28 2023 +0300

    all: upd golibs & dnsproxy
2023-08-10 20:00:17 +03:00

203 lines
4.8 KiB
Go

package filtering
import (
"fmt"
"net"
"strings"
"github.com/AdguardTeam/golibs/errors"
"github.com/AdguardTeam/golibs/mathutil"
"github.com/miekg/dns"
"golang.org/x/exp/slices"
)
// Legacy DNS rewrites
// LegacyRewrite is a single legacy DNS rewrite record.
//
// Instances of *LegacyRewrite must never be nil.
type LegacyRewrite struct {
// Domain is the domain pattern for which this rewrite should work.
Domain string `yaml:"domain"`
// Answer is the IP address, canonical name, or one of the special
// values: "A" or "AAAA".
Answer string `yaml:"answer"`
// IP is the IP address that should be used in the response if Type is
// dns.TypeA or dns.TypeAAAA.
IP net.IP `yaml:"-"`
// Type is the DNS record type: A, AAAA, or CNAME.
Type uint16 `yaml:"-"`
}
// clone returns a deep clone of rw.
func (rw *LegacyRewrite) clone() (cloneRW *LegacyRewrite) {
return &LegacyRewrite{
Domain: rw.Domain,
Answer: rw.Answer,
IP: slices.Clone(rw.IP),
Type: rw.Type,
}
}
// equal returns true if the rw is equal to the other.
func (rw *LegacyRewrite) equal(other *LegacyRewrite) (ok bool) {
return rw.Domain == other.Domain && rw.Answer == other.Answer
}
// matchesQType returns true if the entry matches the question type qt.
func (rw *LegacyRewrite) matchesQType(qt uint16) (ok bool) {
// Add CNAMEs, since they match for all types requests.
if rw.Type == dns.TypeCNAME {
return true
}
// Reject types other than A and AAAA.
if qt != dns.TypeA && qt != dns.TypeAAAA {
return false
}
// If the types match or the entry is set to allow only the other type,
// include them.
return rw.Type == qt || rw.IP == nil
}
// normalize makes sure that the a new or decoded entry is normalized with
// regards to domain name case, IP length, and so on.
//
// If rw is nil, it returns an errors.
func (rw *LegacyRewrite) normalize() (err error) {
if rw == nil {
return errors.Error("nil rewrite entry")
}
// TODO(a.garipov): Write a case-agnostic version of strings.HasSuffix and
// use it in matchDomainWildcard instead of using strings.ToLower
// everywhere.
rw.Domain = strings.ToLower(rw.Domain)
switch rw.Answer {
case "AAAA":
rw.IP = nil
rw.Type = dns.TypeAAAA
return nil
case "A":
rw.IP = nil
rw.Type = dns.TypeA
return nil
default:
// Go on.
}
ip := net.ParseIP(rw.Answer)
if ip == nil {
rw.Type = dns.TypeCNAME
return nil
}
ip4 := ip.To4()
if ip4 != nil {
rw.IP = ip4
rw.Type = dns.TypeA
} else {
rw.IP = ip
rw.Type = dns.TypeAAAA
}
return nil
}
// isWildcard returns true if pat is a wildcard domain pattern.
func isWildcard(pat string) bool {
return len(pat) > 1 && pat[0] == '*' && pat[1] == '.'
}
// matchDomainWildcard returns true if host matches the wildcard pattern.
func matchDomainWildcard(host, wildcard string) (ok bool) {
return isWildcard(wildcard) && strings.HasSuffix(host, wildcard[1:])
}
// Compare is used to sort rewrites according to the following priority:
//
// 1. A and AAAA > CNAME;
// 2. wildcard > exact;
// 3. lower level wildcard > higher level wildcard;
func (rw *LegacyRewrite) Compare(b *LegacyRewrite) (res int) {
if rw.Type == dns.TypeCNAME && b.Type != dns.TypeCNAME {
return -1
} else if rw.Type != dns.TypeCNAME && b.Type == dns.TypeCNAME {
return 1
}
aIsWld, bIsWld := isWildcard(rw.Domain), isWildcard(b.Domain)
if aIsWld == bIsWld {
// Both are either wildcards or both aren't.
return len(rw.Domain) - len(b.Domain)
}
if aIsWld {
return 1
}
return -1
}
// prepareRewrites normalizes and validates all legacy DNS rewrites.
func (d *DNSFilter) prepareRewrites() (err error) {
for i, r := range d.Rewrites {
err = r.normalize()
if err != nil {
return fmt.Errorf("at index %d: %w", i, err)
}
}
return nil
}
// findRewrites returns the list of matched rewrite entries. If rewrites are
// empty, but matched is true, the domain is found among the rewrite rules but
// not for this question type.
//
// The result priority is: CNAME, then A and AAAA; exact, then wildcard. If the
// host is matched exactly, wildcard entries aren't returned. If the host
// matched by wildcards, return the most specific for the question type.
func findRewrites(
entries []*LegacyRewrite,
host string,
qtype uint16,
) (rewrites []*LegacyRewrite, matched bool) {
for _, e := range entries {
if e.Domain != host && !matchDomainWildcard(host, e.Domain) {
continue
}
matched = true
if e.matchesQType(qtype) {
rewrites = append(rewrites, e)
}
}
if len(rewrites) == 0 {
return nil, matched
}
slices.SortFunc(rewrites, (*LegacyRewrite).Compare)
for i, r := range rewrites {
if isWildcard(r.Domain) {
// Don't use rewrites[:0], because we need to return at least one
// item here.
rewrites = rewrites[:mathutil.Max(1, i)]
break
}
}
return rewrites, matched
}