Files
OpenGFW/web/devserver/main.go
T
meiandClaude Opus 5 f7ad3aac95 feat(web): visual rule builder with geo, CIDR and wildcard pickers
The rule editor no longer requires writing expr by hand. Conditions are rows of
field + operator + values joined with AND or OR, each row negatable, and the
generated expression is shown live and validated by the engine before a rule is
accepted. Raw expression and YAML editing are still available.

Fields cover the connection (protocol, source/destination IP and port), domains
(TLS SNI, QUIC SNI, DNS query name), HTTP (host, path, method, User-Agent) and
protocol detection. Operators cover CIDR membership, GeoIP countries, GeoSite
categories, port ranges, wildcards, substrings and regular expressions.
Multiple values in a row are OR-ed, so one row holds a whole domain or country
list.

Wildcards compile to the cheapest expression that matches them: *.x.com
becomes endsWith, x.* startsWith, *ad* contains, and only a star in the
middle falls back to a regular expression. Values are validated as they are
typed, including a hint when a star is used with an operator that would match
it literally.

Country and category pickers are backed by the databases the engine actually
loaded, via a new GET /api/v1/geo endpoint (cached, loaded on demand) built on
new listing methods in the geo package. Country names and flags come from
Intl.DisplayNames, so no name table is shipped. Note that the v2geo format has
no AS numbers; the provider groups it does contain (cloudflare, google,
telegram, ...) are listed alongside the countries.

Opening an existing rule parses its expression back into conditions. Anything
the builder cannot represent opens in the expression editor with a warning
rather than being rewritten. ruleset/expr_test.go pins the canonical
expressions the builder generates and compiles them with the real engine, and
the devserver now uses the real ruleset compiler so the same errors show up
during frontend work.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-07-27 08:48:56 +08:00

288 lines
7.7 KiB
Go

// Command devserver runs the OpenGFW web UI against synthetic data.
//
// The engine itself only builds on Linux (it needs NFQueue), so this little
// program exists to let the frontend be developed and reviewed anywhere:
//
// go run ./web/devserver
//
// It serves the embedded UI on :8080 with the password "opengfw".
package main
import (
"context"
"fmt"
"log"
"math/rand"
"net"
"os"
"os/signal"
"runtime"
"syscall"
"time"
"github.com/apernet/OpenGFW/analyzer"
"github.com/apernet/OpenGFW/analyzer/tcp"
"github.com/apernet/OpenGFW/analyzer/udp"
"github.com/apernet/OpenGFW/modifier"
modUDP "github.com/apernet/OpenGFW/modifier/udp"
"github.com/apernet/OpenGFW/ruleset"
"github.com/apernet/OpenGFW/ruleset/builtins/geo"
"github.com/apernet/OpenGFW/web"
"gopkg.in/yaml.v3"
)
const password = "opengfw"
func main() {
hub := web.NewHub()
rm := &memoryRules{}
if err := rm.init(); err != nil {
log.Fatal(err)
}
srv, err := web.NewServer(web.Config{
Listen: ":8080",
Secret: password,
Hub: hub,
Rules: rm,
Meta: web.MetaInfo{
Analyzers: []web.AnalyzerInfo{
{Name: "http", Proto: "tcp"}, {Name: "tls", Proto: "tcp"},
{Name: "ssh", Proto: "tcp"}, {Name: "socks", Proto: "tcp"},
{Name: "trojan", Proto: "tcp"}, {Name: "fet", Proto: "tcp"},
{Name: "dns", Proto: "udp"}, {Name: "quic", Proto: "udp"},
{Name: "openvpn", Proto: "udp"}, {Name: "wireguard", Proto: "udp"},
},
Modifiers: []string{"dns"},
Actions: []string{"allow", "block", "drop", "modify"},
Functions: []string{"geoip", "geosite", "cidr", "lookup"},
},
Info: func() web.Info {
host, _ := os.Hostname()
return web.Info{
Version: "devserver",
Platform: runtime.GOOS + "/" + runtime.GOARCH,
GoVersion: runtime.Version(),
Hostname: host,
RuleFile: "rules.yaml (in memory)",
Config: web.ConfigDigest{
IOQueueSize: 1024, IORST: true, Workers: 4,
WorkerQueue: 64, UDPMaxStreams: 4096,
GeoIP: "geoip.dat", GeoSite: "geosite.dat",
},
}
},
Geo: geoData,
Logf: log.Printf,
})
if err != nil {
log.Fatal(err)
}
ctx, cancel := context.WithCancel(context.Background())
defer cancel()
go func() {
ch := make(chan os.Signal, 1)
signal.Notify(ch, os.Interrupt, syscall.SIGTERM)
<-ch
cancel()
}()
for i := 0; i < 4; i++ {
hub.WorkerStarted()
}
go generate(ctx, hub)
log.Printf("web UI on http://127.0.0.1:8080 (password: %s)", password)
if err := srv.Run(ctx); err != nil {
log.Fatal(err)
}
}
var (
hosts = []string{
"www.google.com", "github.com", "cdn.jsdelivr.net", "telegram.org",
"ads.example.net", "tracker.evil.test", "api.openai.com", "www.wikipedia.org",
"registry.npmjs.org", "malware.bad.test",
}
ips = []string{"1.1.1.1", "8.8.8.8", "93.184.216.34", "104.16.132.229", "2606:4700::6810:84e5"}
)
// generate feeds the hub with plausible looking traffic.
func generate(ctx context.Context, hub *web.Hub) {
rng := rand.New(rand.NewSource(42))
ticker := time.NewTicker(120 * time.Millisecond)
defer ticker.Stop()
var id int64
for {
select {
case <-ctx.Done():
return
case <-ticker.C:
for n := rng.Intn(6); n >= 0; n-- {
id++
udp := rng.Intn(3) == 0
proto := "tcp"
if udp {
proto = "udp"
}
hub.StreamNew(proto)
host := hosts[rng.Intn(len(hosts))]
props := web.Props{}
if udp {
props["dns"] = web.PropMap{
"qr": false,
"questions": []map[string]interface{}{{"name": host, "type": 1}},
}
} else {
props["tls"] = web.PropMap{"req": map[string]interface{}{
"sni": host, "version": 771,
}}
}
hub.PropUpdate(props)
info := web.StreamInfo{
ID: id,
Proto: proto,
SrcIP: fmt.Sprintf("192.168.1.%d", 2+rng.Intn(60)),
SrcPort: uint16(20000 + rng.Intn(40000)),
DstIP: ips[rng.Intn(len(ips))],
DstPort: 443,
Props: props,
}
switch {
case rng.Intn(10) == 0:
hub.RuleLog(info, "log-suspicious")
hub.StreamAction(info, "block")
case rng.Intn(12) == 0:
hub.StreamAction(info, "drop")
case rng.Intn(14) == 0:
hub.StreamAction(info, "modify")
case rng.Intn(30) == 0:
hub.Error(info, "geoip-rule", "lookup timeout")
default:
hub.StreamAction(info, "allow")
}
}
}
}
}
// memoryRules is an in-memory web.RuleManager. Rules are compiled with the real
// ruleset compiler and the real analyzers, so expression errors show up here
// exactly like they would in the engine; only the "apply" step is faked.
type memoryRules struct {
raw string
rules []web.Rule
}
const seedRules = `- name: block-malware
action: block
log: true
expr: 'tls != nil && tls.req != nil && string(tls.req.sni) endsWith ".bad.test"'
- name: block-ads-dns
action: drop
expr: 'dns != nil && any(dns.questions, {.name endsWith "ads.example.net"})'
- name: log-ssh
log: true
expr: 'ssh != nil'
`
func (m *memoryRules) init() error {
rules, err := parse(seedRules)
if err != nil {
return err
}
m.raw, m.rules = seedRules, rules
return nil
}
func (m *memoryRules) Path() string { return "rules.yaml" }
func (m *memoryRules) Load() (string, []web.Rule, error) { return m.raw, m.rules, nil }
func (m *memoryRules) Validate(raw string) ([]web.Rule, error) { return parse(raw) }
func (m *memoryRules) Marshal(rules []web.Rule) (string, error) {
bs, err := yaml.Marshal(rules)
return string(bs), err
}
func (m *memoryRules) Apply(raw string) ([]web.Rule, error) {
rules, err := parse(raw)
if err != nil {
return nil, err
}
m.raw, m.rules = raw, rules
return rules, nil
}
var (
analyzers = []analyzer.Analyzer{
&tcp.FETAnalyzer{}, &tcp.HTTPAnalyzer{}, &tcp.SocksAnalyzer{}, &tcp.SSHAnalyzer{},
&tcp.TLSAnalyzer{}, &tcp.TrojanAnalyzer{}, &udp.DNSAnalyzer{}, &udp.OpenVPNAnalyzer{},
&udp.QUICAnalyzer{}, &udp.WireGuardAnalyzer{},
}
modifiers = []modifier.Modifier{&modUDP.DNSModifier{}}
)
// parse compiles rules the same way the engine does.
func parse(raw string) ([]web.Rule, error) {
exprRules, err := ruleset.ExprRulesFromYAMLBytes([]byte(raw))
if err != nil {
return nil, fmt.Errorf("failed to parse rules: %w", err)
}
_, err = ruleset.CompileExprRules(exprRules, analyzers, modifiers, &ruleset.BuiltinConfig{
Logger: nopRulesetLogger{},
GeoSiteFilename: os.Getenv("OPENGFW_GEOSITE"),
GeoIpFilename: os.Getenv("OPENGFW_GEOIP"),
ProtectedDialContext: func(ctx context.Context, network, address string) (net.Conn, error) {
return (&net.Dialer{}).DialContext(ctx, network, address)
},
})
if err != nil {
return nil, err
}
out := make([]web.Rule, 0, len(exprRules))
for _, r := range exprRules {
wr := web.Rule{Name: r.Name, Action: r.Action, Log: r.Log, Expr: r.Expr}
if r.Modifier.Name != "" {
wr.Modifier = &web.RuleModifier{Name: r.Modifier.Name, Args: r.Modifier.Args}
}
out = append(out, wr)
}
return out, nil
}
type nopRulesetLogger struct{}
func (nopRulesetLogger) Log(ruleset.StreamInfo, string) {}
func (nopRulesetLogger) MatchError(ruleset.StreamInfo, string, error) {}
// geoData lists the geo databases, if they are available in the working
// directory (or wherever OPENGFW_GEOIP / OPENGFW_GEOSITE point).
func geoData() web.GeoData {
matcher := geo.NewGeoMatcher(os.Getenv("OPENGFW_GEOSITE"), os.Getenv("OPENGFW_GEOIP"))
var data web.GeoData
if entries, err := matcher.ListGeoIP(); err != nil {
data.IPError = err.Error()
} else {
for _, e := range entries {
data.IP = append(data.IP, web.GeoEntry{Code: e.Code, Count: e.CIDRs})
}
}
if entries, err := matcher.ListGeoSite(); err != nil {
data.SiteError = err.Error()
} else {
for _, e := range entries {
data.Site = append(data.Site, web.GeoEntry{
Code: e.Code, Count: e.Domains, Attributes: e.Attributes,
})
}
}
return data
}