Files
smallwebwaf/internal/reputation/reputation_test.go
T
clawbot 2b8c98ba1f
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Blocklists and an AS percentage file fetched by URL (closes #29)
SWWAF_BLOCKLIST_URLS names lists of addresses and netblocks, fetched every
SWWAF_BLOCKLIST_REFRESH (24h, never under 1h); an IPv4-mapped line stands
for its IPv4 address or netblock. reputation.json keeps each list's last
try, failed or not, even one cut off by a stop, which a restart waits on
as a running instance does, and its last good copy, whole, used while a
fetch fails. SWWAF_BLOCKLIST_ACTION denies, limits or only logs a listed
client; the log line names the lists, each raises reputation_hit, and a
failed fetch raises source_failure. SWWAF_ASN_LIMIT_PERCENT_URL is fetched
the same way and counts as SWWAF_ASN_LIMIT_PERCENT does, the lower winning.

Judgement call: a failed fetch is retried after the refresh, not sooner.
Not done: ban notes do not name the lists yet.

Model: opus-5-5
2026-10-07 19:09:41 +02:00

611 lines
16 KiB
Go

package reputation_test
import (
"bytes"
"context"
"fmt"
"io"
"log/slog"
"net/http"
"net/netip"
"net/url"
"reflect"
"slices"
"strings"
"sync"
"testing"
"testing/synctest"
"time"
"sneak.berlin/go/smallwebwaf/internal/alerts"
"sneak.berlin/go/smallwebwaf/internal/reputation"
)
// The tests run in a synctest bubble, where the time package runs on a
// clock of the test's own: time.Sleep moves it on at once, and
// synctest.Wait returns once Run waits for the next list to be due, so
// that every fetch due by then has been made. The stand-in for the
// servers the lists are fetched from answers without the network, since a
// fetch waiting on the network would keep that clock from moving on.
const (
// dropURL and torURL are the blocklists, and asnURL the file of
// AS:percent lines.
dropURL = "https://lists.example/drop.txt"
torURL = "https://lists.example/tor.txt"
asnURL = "https://lists.example/asn.txt"
// refresh is the tests' SWWAF_BLOCKLIST_REFRESH, and cooldown their
// SWWAF_ALERT_COOLDOWN, longer than it.
refresh = 24 * time.Hour
cooldown = 48 * time.Hour
// drop is a blocklist as the Spamhaus DROP list is written, with an
// address and a netblock in each of its comments, which list nothing.
drop = "; Spamhaus DROP List 2026/10/07 - (c) 2026 The Spamhaus Project SLL\n" +
"; Last-Modified: Wed, 07 Oct 2026 00:00:00 GMT ; 192.0.2.1\n" +
"# 198.51.100.0/24\n" +
"\n" +
"203.0.113.0/24 ; SBL1\n" +
" 192.0.2.9 # one address\n" +
"2001:db8:1::/48 ; SBL2\n"
)
func TestListedAddressesAndNetblocksWithTheCommentsLeftOut(t *testing.T) {
t.Parallel()
synctest.Test(t, func(t *testing.T) {
servers := &standIn{lists: map[string]string{dropURL: drop}}
lists := start(t, servers, params(dropURL))
for addr, want := range map[string][]string{
"203.0.113.0": {dropURL},
"203.0.113.255": {dropURL},
"192.0.2.9": {dropURL},
"2001:db8:1::7": {dropURL},
"203.0.114.0": nil,
"192.0.2.8": nil,
"192.0.2.1": nil,
"198.51.100.7": nil,
"2001:db8:2::7": nil,
} {
wantListedBy(t, lists, addr, want...)
}
})
}
func TestIPv4MappedLineListsTheIPv4AddressOrNetblockItStandsFor(t *testing.T) {
t.Parallel()
now := time.Now()
lists := reputation.New(params(dropURL))
err := lists.Load([]reputation.List{{
URL: dropURL, Tried: now, Fetched: now,
Lines: []string{"::ffff:192.0.2.9", "::ffff:203.0.113.0/120"},
}})
if err != nil {
t.Fatalf("load: %v", err)
}
for addr, want := range map[string][]string{
"192.0.2.9": {dropURL},
"203.0.113.255": {dropURL},
"192.0.2.8": nil,
"203.0.114.0": nil,
} {
wantListedBy(t, lists, addr, want...)
}
// A mapped netblock shorter than /96 stands for no IPv4 one.
err = lists.Load([]reputation.List{{
URL: dropURL, Tried: now, Fetched: now, Lines: []string{"::ffff:198.51.100.0/88"},
}})
const want = "the copy of " + dropURL +
": line 1 is not an address or a netblock, such as 192.0.2.0/24"
if err == nil || err.Error() != want {
t.Errorf("error %v, want %s", err, want)
}
}
func TestClientIsListedByEachBlocklistThatListsIt(t *testing.T) {
t.Parallel()
synctest.Test(t, func(t *testing.T) {
servers := &standIn{lists: map[string]string{
dropURL: "203.0.113.0/24\n", torURL: "203.0.113.9\n",
}}
lists := start(t, servers, params(torURL, dropURL))
// In the order SWWAF_BLOCKLIST_URLS names them.
wantListedBy(t, lists, "203.0.113.9", torURL, dropURL)
wantListedBy(t, lists, "203.0.113.8", dropURL)
})
}
func TestListFetchedAgainOnceRefreshHasPassed(t *testing.T) {
t.Parallel()
synctest.Test(t, func(t *testing.T) {
servers := &standIn{lists: map[string]string{dropURL: "203.0.113.9\n"}}
lists := start(t, servers, params(dropURL))
began := time.Now()
wantFetches(t, servers, 1)
servers.set(dropURL, "203.0.113.10\n")
time.Sleep(refresh - time.Nanosecond)
wantFetches(t, servers, 1)
wantListedBy(t, lists, "203.0.113.9", dropURL)
time.Sleep(time.Nanosecond)
wantFetches(t, servers, 2)
wantListedBy(t, lists, "203.0.113.9")
wantListedBy(t, lists, "203.0.113.10", dropURL)
if fetched := lists.Fetched(dropURL); !fetched.Equal(began.Add(refresh)) {
t.Errorf("the copy in use was fetched at %s, want %s", fetched,
began.Add(refresh))
}
})
}
func TestFailedFetchKeepsTheLastGoodCopyAndAlertsOncePerCooldown(t *testing.T) {
t.Parallel()
for _, tc := range []struct {
name string
// fail has the stand-in answer the fetches after the first so that
// they fail with error.
fail func(servers *standIn)
error string
}{
{
"an answer other than 200",
func(servers *standIn) { servers.set(dropURL, "") },
"the server answered 503 Service Unavailable",
},
{
"a line that does not read",
func(servers *standIn) { servers.set(dropURL, "203.0.113.10\n<html>\n") },
"line 2 is not an address or a netblock, such as 192.0.2.0/24",
},
{
"a list longer than 16 MiB",
func(servers *standIn) {
servers.set(dropURL, strings.Repeat("#\n", 8<<20+1))
},
"the list is longer than 16 MiB",
},
} {
t.Run(tc.name, func(t *testing.T) {
t.Parallel()
synctest.Test(t, func(t *testing.T) {
var log bytes.Buffer
servers := &standIn{lists: map[string]string{dropURL: drop}}
queue := newQueue()
p := params(dropURL)
p.ProcessLog = slog.New(slog.NewJSONHandler(&log, nil))
p.Alerts = queue
lists := start(t, servers, p)
kept := lists.Snapshot()
tc.fail(servers)
// Each failure is tried again once refresh has passed since it.
for range 2 {
time.Sleep(refresh)
synctest.Wait()
}
wantFetches(t, servers, 3)
wantListedBy(t, lists, "203.0.113.9", dropURL)
want := kept[0]
want.Tried = time.Now()
if got := lists.Snapshot(); !reflect.DeepEqual(got, []reputation.List{want}) {
t.Errorf("lists %+v, want the first copy, last tried now, %+v", got, want)
}
if lists.Failures(dropURL) != 2 {
t.Errorf("%d failures, want 2", lists.Failures(dropURL))
}
// One alert for the first failure; the cooldown holds back the
// second.
wantAlert(t, queue, alerts.Alert{
Time: time.Now().Add(-refresh),
Event: alerts.EventSourceFailure,
Reason: "fetching a list failed",
Detail: map[string]any{"source": dropURL, "error": tc.error},
})
if !strings.Contains(log.String(), `"msg":"fetching a list failed",`+
`"url":"`+dropURL+`","error":"`+tc.error) {
t.Errorf("logged\n%s\nwant the failures", log.String())
}
})
})
}
}
func TestFetchNotDoneWithinAMinuteFails(t *testing.T) {
t.Parallel()
synctest.Test(t, func(t *testing.T) {
servers := &standIn{lists: map[string]string{}, hanging: true}
lists := start(t, servers, params(dropURL))
time.Sleep(time.Minute - time.Nanosecond)
synctest.Wait()
if lists.Failures(dropURL) != 0 {
t.Errorf("%d failures before a minute, want none", lists.Failures(dropURL))
}
time.Sleep(time.Nanosecond)
synctest.Wait()
if lists.Failures(dropURL) != 1 {
t.Errorf("%d failures after a minute, want 1", lists.Failures(dropURL))
}
})
}
func TestKeptCopyIsFetchedAgainOnceRefreshHasPassedSinceItWasFetched(t *testing.T) {
t.Parallel()
synctest.Test(t, func(t *testing.T) {
servers := &standIn{lists: map[string]string{
dropURL: "203.0.113.10\n", torURL: "198.51.100.10\n",
}}
lists := reputation.New(params(dropURL, torURL))
lists.SetTransport(servers)
// drop.txt was fetched an hour ago, and tor.txt a refresh ago, as
// reputation.json says at start.
err := lists.Load([]reputation.List{
{URL: dropURL, Fetched: time.Now().Add(-time.Hour), Lines: []string{"203.0.113.9"}},
{URL: torURL, Fetched: time.Now().Add(-refresh), Lines: []string{"198.51.100.9"}},
})
if err != nil {
t.Fatalf("load: %v", err)
}
run(t, lists)
wantFetches(t, servers, 1)
wantListedBy(t, lists, "203.0.113.9", dropURL)
wantListedBy(t, lists, "198.51.100.10", torURL)
time.Sleep(refresh - time.Hour - time.Nanosecond)
wantFetches(t, servers, 1)
time.Sleep(time.Nanosecond)
wantFetches(t, servers, 2)
wantListedBy(t, lists, "203.0.113.10", dropURL)
})
}
func TestRestartWaitsRefreshAfterTheLastTryEvenOneThatFailed(t *testing.T) {
t.Parallel()
synctest.Test(t, func(t *testing.T) {
// drop.txt is fetched, and a refresh later the fetch downloads it
// whole but fails on a line that does not read.
servers := &standIn{lists: map[string]string{dropURL: "198.51.100.1\n"}}
lists := start(t, servers, params(dropURL))
servers.set(dropURL, "198.51.100.2\n<html>\n")
time.Sleep(refresh)
wantFetches(t, servers, 2)
// Restarted with what reputation.json keeps, it waits a refresh
// after the failed try, as it does while it runs.
restarted := &standIn{lists: map[string]string{dropURL: "198.51.100.2\n"}}
again := reputation.New(params(dropURL))
again.SetTransport(restarted)
err := again.Load(lists.Snapshot())
if err != nil {
t.Fatalf("load: %v", err)
}
run(t, again)
wantFetches(t, restarted, 0)
wantListedBy(t, again, "198.51.100.1", dropURL)
time.Sleep(refresh - time.Nanosecond)
wantFetches(t, restarted, 0)
time.Sleep(time.Nanosecond)
wantFetches(t, restarted, 1)
wantListedBy(t, again, "198.51.100.2", dropURL)
})
}
func TestFetchCutOffAsItStopsIsNoFailureButARestartWaitsForIt(t *testing.T) {
t.Parallel()
synctest.Test(t, func(t *testing.T) {
// Stopped 30 seconds into the fetch of drop.txt, before tor.txt's.
servers := &standIn{lists: map[string]string{}, hanging: true}
queue := newQueue()
p := params(dropURL, torURL)
p.Alerts = queue
lists := reputation.New(p)
lists.SetTransport(servers)
ctx, stop := context.WithCancel(t.Context())
stopped := make(chan struct{})
go func() {
lists.Run(ctx)
close(stopped)
}()
time.Sleep(30 * time.Second)
stop()
<-stopped
wantFetches(t, servers, 1)
if lists.Failures(dropURL) != 0 || len(waiting(queue)) != 0 {
t.Errorf("%d failures and alerts %+v, want none", lists.Failures(dropURL),
waiting(queue))
}
// Restarted an hour later with what reputation.json keeps, it fetches
// tor.txt, never tried, at once, and drop.txt a refresh after its
// cut-off try.
time.Sleep(time.Hour)
restarted := &standIn{lists: map[string]string{
dropURL: "203.0.113.7\n", torURL: "198.51.100.7\n",
}}
again := reputation.New(params(dropURL, torURL))
again.SetTransport(restarted)
err := again.Load(lists.Snapshot())
if err != nil {
t.Fatalf("load: %v", err)
}
run(t, again)
wantFetches(t, restarted, 1)
wantListedBy(t, again, "198.51.100.7", torURL)
time.Sleep(refresh - time.Hour - time.Nanosecond)
wantFetches(t, restarted, 1)
time.Sleep(time.Nanosecond)
wantFetches(t, restarted, 2)
wantListedBy(t, again, "203.0.113.7", dropURL)
})
}
func TestASNLimitPercentFileGivesEachASNumberItsLowestPercentage(t *testing.T) {
t.Parallel()
synctest.Test(t, func(t *testing.T) {
servers := &standIn{lists: map[string]string{
asnURL: "# hosting networks\nAS14061:50 ; DigitalOcean\nas16276:25\n\n" +
"AS14061:10\nAS14061:30\n",
}}
p := params()
p.ASNLimitPercentURL = asnURL
lists := start(t, servers, p)
for asn, want := range map[string]int64{"AS14061": 10, "AS16276": 25} {
percent, listed := lists.ASNLimitPercent(asn)
if !listed || percent != want {
t.Errorf("%s has %d (listed %t), want %d", asn, percent, listed, want)
}
}
if _, listed := lists.ASNLimitPercent("AS64496"); listed {
t.Error("AS64496 is listed")
}
// A line that does not read fails the fetch.
servers.set(asnURL, "AS14061:50\nAS16276\n")
time.Sleep(refresh)
synctest.Wait()
if lists.Failures(asnURL) != 1 {
t.Errorf("%d failures, want 1", lists.Failures(asnURL))
}
})
}
func TestLoadDropsCopiesOfListsNotNamedAndRefusesOnesThatDoNotRead(t *testing.T) {
t.Parallel()
fetched := time.Date(2026, 10, 6, 0, 0, 0, 0, time.UTC)
kept := reputation.List{
URL: dropURL, Tried: fetched, Fetched: fetched, Lines: []string{"203.0.113.9"},
}
lists := reputation.New(params(dropURL))
err := lists.Load([]reputation.List{kept, {
URL: torURL, Tried: fetched, Fetched: fetched, Lines: []string{"198.51.100.9"},
}})
if err != nil {
t.Fatalf("load: %v", err)
}
if got := lists.Snapshot(); !reflect.DeepEqual(got, []reputation.List{kept}) {
t.Errorf("copies %+v, want only %+v", got, kept)
}
err = lists.Load([]reputation.List{{URL: dropURL, Fetched: fetched, Lines: []string{
"; DROP", "203.0.113.300",
}}})
const want = "the copy of " + dropURL +
": line 2 is not an address or a netblock, such as 192.0.2.0/24"
if err == nil || err.Error() != want {
t.Errorf("error %v, want %s", err, want)
}
if got := lists.Snapshot(); !reflect.DeepEqual(got, []reputation.List{kept}) {
t.Errorf("copies %+v after the error, want %+v still", got, kept)
}
}
// standIn is a stand-in for the servers the lists are fetched from. It
// notes the URL of each fetch.
type standIn struct {
mu sync.Mutex
// lists are what it answers with, by URL; it answers a URL it has no
// list for with 503, and none at all while hanging.
lists map[string]string
hanging bool
fetches []string
}
// RoundTrip has the stand-in answer req, in place of the network. A fetch
// abandoned before the stand-in answers fails, as over the network.
func (s *standIn) RoundTrip(req *http.Request) (*http.Response, error) {
s.mu.Lock()
s.fetches = append(s.fetches, req.URL.String())
list, found := s.lists[req.URL.String()]
hanging := s.hanging
s.mu.Unlock()
if hanging {
<-req.Context().Done()
return nil, req.Context().Err()
}
status := http.StatusOK
if !found {
status = http.StatusServiceUnavailable
}
return &http.Response{
StatusCode: status,
Status: fmt.Sprintf("%d %s", status, http.StatusText(status)),
Header: http.Header{},
Body: io.NopCloser(strings.NewReader(list)),
Request: req,
}, nil
}
// set has the stand-in answer listURL with list, or with 503 for "".
func (s *standIn) set(listURL, list string) {
s.mu.Lock()
defer s.mu.Unlock()
if list == "" {
delete(s.lists, listURL)
return
}
s.lists[listURL] = list
}
// params returns the Params of the blocklists at urls, refreshed every
// refresh, by the bubble's clock, with alerts to a queue that sends none.
func params(urls ...string) reputation.Params {
return reputation.Params{
BlocklistURLs: urls,
Refresh: refresh,
Now: time.Now,
ProcessLog: slog.New(slog.DiscardHandler),
Alerts: newQueue(),
}
}
// newQueue returns a queue of alerts to a webhook that is never sent
// them, with a cooldown of cooldown.
func newQueue() *alerts.Queue {
return alerts.New(alerts.Params{
WebhookURL: &url.URL{Scheme: "https", Host: "alerts.example"},
Events: alerts.Events(),
Cooldown: cooldown,
Now: time.Now,
})
}
// start returns the lists of p, fetched through servers by Run, which runs
// until the test ends, once Run has fetched those due at start.
func start(t *testing.T, servers *standIn, p reputation.Params) *reputation.Lists {
t.Helper()
lists := reputation.New(p)
lists.SetTransport(servers)
run(t, lists)
return lists
}
// run runs lists' Run until the test ends, and waits until it has fetched
// the lists due.
func run(t *testing.T, lists *reputation.Lists) {
t.Helper()
ctx, stop := context.WithCancel(t.Context())
stopped := make(chan struct{})
go func() {
lists.Run(ctx)
close(stopped)
}()
t.Cleanup(func() {
stop()
<-stopped
})
synctest.Wait()
}
// wantFetches waits until Run has made the fetches due, and checks how
// many the servers have had.
func wantFetches(t *testing.T, servers *standIn, want int) {
t.Helper()
synctest.Wait()
servers.mu.Lock()
got := len(servers.fetches)
servers.mu.Unlock()
if got != want {
t.Errorf("%d fetches, want %d", got, want)
}
}
// wantListedBy checks the URLs of the blocklists lists says list addr.
func wantListedBy(t *testing.T, lists *reputation.Lists, addr string, want ...string) {
t.Helper()
got := lists.ListedBy(netip.MustParseAddr(addr))
if !slices.Equal(got, want) {
t.Errorf("%s is listed by %v, want %v", addr, got, want)
}
}
// waiting returns the alerts waiting in queue.
func waiting(queue *alerts.Queue) []alerts.Alert {
return queue.Snapshot().Waiting[alerts.DestinationWebhook]
}
// wantAlert checks that want is the one alert waiting in queue, and that
// the cooldown has held back one repeat of it.
func wantAlert(t *testing.T, queue *alerts.Queue, want alerts.Alert) {
t.Helper()
got := waiting(queue)
if len(got) != 1 || !reflect.DeepEqual(got[0], want) || queue.Suppressed() != 1 {
t.Errorf("alerts waiting %+v, %d held back, want only %+v and 1", got,
queue.Suppressed(), want)
}
}