Files
3x-ui/internal/amneziawg/params.go
T
Sanaei 2d151d7648 Update deps and simplify parsing
Bump frontend and Go dependencies, then modernize a few hot paths with newer Go string/range helpers. Also widen the client form quota/limit fields to improve the layout.
2026-09-08 14:12:13 +02:00

389 lines
13 KiB
Go

package amneziawg
import (
"crypto/rand"
"encoding/base64"
"fmt"
"math"
"math/big"
"net/netip"
"regexp"
"strconv"
"strings"
)
// awgHMax caps generated H values at 2^31-1: the spec allows the full uint32,
// but the amneziawg-windows-client config editor rejects anything above.
const awgHMax = 2147483647
// hMaxValid is the largest value ValidateObfuscation accepts for an H
// parameter: uint32 max, the kernel's own limit.
const hMaxValid int64 = 4294967295
// randInt returns a uniform random int in [min, max] using crypto/rand. Falls
// back to min on the (practically impossible) RNG error.
func randInt(min, max int) int {
if max <= min {
return min
}
n, err := rand.Int(rand.Reader, big.NewInt(int64(max-min)+1))
if err != nil {
return min
}
return min + int(n.Int64())
}
// GenerateObfuscation31 produces a randomized AmneziaWG 3.1 parameter set: a
// static value gets profiled by DPI, defeating the point.
func GenerateObfuscation31() Obfuscation31 {
var o Obfuscation31
o.Jc = randInt(3, 6)
o.Jmin = randInt(40, 89)
o.Jmax = o.Jmin + randInt(50, 250)
o.S1 = randInt(15, 150)
o.S2 = randInt(15, 150)
// Kernel constraint: S1+56 != S2, else init and response handshake
// packets end up the same size after padding.
for o.S1+56 == o.S2 {
o.S2 = randInt(15, 150)
}
// Floored at 12: HeaderProtectionKey is always generated below, and IpcSet
// rejects header protection unless every S1-S4 is >= 12.
o.S3 = randInt(12, 55) // cookie padding (max 64)
o.S4 = randInt(12, 27) // transport padding (max 32)
h := generateHValues()
o.H1, o.H2, o.H3, o.H4 = h[0], h[1], h[2], h[3]
// CPS signature packet, N random bytes before each handshake. I2-I5 stay
// empty, matching Amnezia's own generator.
o.I1 = fmt.Sprintf("<r %d>", randInt(32, 256))
o.HeaderProtectionKey = generateHeaderProtectionKey()
// Total padding stays <= 64: it rides on full-size transport packets, the
// same MTU headroom that caps S4 at 32.
cpLo := randInt(8, 24)
o.ContentPaddingAddition = fmt.Sprintf("%d-%d", cpLo, cpLo+randInt(8, 40))
// Timing windows bracket WireGuard's own constants (rekey 120s, reject
// 180s) so sessions still renew before expiry.
rkLo := randInt(100, 120)
rkHi := rkLo + randInt(10, 40)
o.RekeyAfterTime = fmt.Sprintf("%d-%d", rkLo, rkHi)
// Every reject value exceeds every rekey value by >= 30s by construction.
rjLo := rkHi + randInt(30, 60)
o.RejectAfterTime = fmt.Sprintf("%d-%d", rjLo, rjLo+randInt(30, 90))
rtLo := randInt(3, 6)
o.RekeyTimeout = fmt.Sprintf("%d-%d", rtLo, rtLo+randInt(1, 4))
// Max 20s: under clients' typical 25s PersistentKeepalive and ~30s NAT UDP
// timeouts, or idle links lose their NAT mapping.
kaLo := randInt(8, 12)
o.KeepaliveTimeout = fmt.Sprintf("%d-%d", kaLo, kaLo+randInt(2, 8))
haLo := randInt(15, 25)
o.MaxHandshakeAttempts = fmt.Sprintf("%d-%d", haLo, haLo+randInt(5, 25))
o.RandomTrailers = true
// Cookie replies are DPI-fingerprintable; this stealth default trades away
// WG's handshake-flood mitigation and is toggleable per inbound.
o.DisableCookies = true
return o
}
// generateHeaderProtectionKey returns base64 of 32 crypto/rand bytes, the
// format amneziawg-tools' HeaderProtectionKey parser expects.
func generateHeaderProtectionKey() string {
key := make([]byte, 32)
if _, err := rand.Read(key); err != nil {
return ""
}
return base64.StdEncoding.EncodeToString(key)
}
// generateHValues returns one distinct value per H1-H4 band; low bound >= 5 (1-4 are vanilla WG message types).
// Single values, not ranges: with RandomTrailers on, a wide range misclassifies transport packets as handshakes (amnezia-vpn/amneziawg-go#183).
func generateHValues() [4]string {
const lo = 5
bandSize := (awgHMax - lo + 1) / 4
var out [4]string
for i := range 4 {
bandLo := lo + i*bandSize
bandHi := bandLo + bandSize - 1
out[i] = fmt.Sprintf("%d", randInt(bandLo, bandHi))
}
return out
}
// ValidateObfuscation rejects malformed parameters before they are saved, so
// a bad manual entry can't break the embedded amneziawg-go device's own
// UAPI config apply (internal/amneziawgnet's buildUAPIConfig/IpcSet) or
// produce a client config the official app rejects outright. Blank H values
// are allowed (they fall back to a default); each accepts an integer or a
// "100-800" range.
func ValidateObfuscation(o Obfuscation31) error {
if o.Jmin > o.Jmax {
return fmt.Errorf("invalid Jmin/Jmax: %d must not exceed %d", o.Jmin, o.Jmax)
}
// amneziawg-go parses jc/jmin/jmax as uint32 and s1-s4 as uint16
// (device/uapi.go); a wider value makes IpcSet reject the whole device.
for _, f := range []struct {
name string
v int
max int64
}{
{"Jc", o.Jc, math.MaxUint32},
{"Jmin", o.Jmin, math.MaxUint32},
{"Jmax", o.Jmax, math.MaxUint32},
{"S1", o.S1, math.MaxUint16},
{"S2", o.S2, math.MaxUint16},
} {
if int64(f.v) < 0 || int64(f.v) > f.max {
return fmt.Errorf("invalid %s value %d (must be 0..%d)", f.name, f.v, f.max)
}
}
for i, spec := range []string{o.I1, o.I2, o.I3, o.I4, o.I5} {
if err := validateObfChain(spec); err != nil {
return fmt.Errorf("invalid I%d: %w", i+1, err)
}
}
if o.S3 < 0 || o.S3 > 64 {
return fmt.Errorf("invalid S3 value %d (must be 0..64)", o.S3)
}
if o.S4 < 0 || o.S4 > 32 {
return fmt.Errorf("invalid S4 value %d (must be 0..32)", o.S4)
}
if o.S1+56 == o.S2 {
return fmt.Errorf("invalid S1/S2: S1+56 must not equal S2 (%d+56 == %d)", o.S1, o.S2)
}
for i, h := range []string{o.H1, o.H2, o.H3, o.H4} {
if err := validateUintRange(h, 0); err != nil {
return fmt.Errorf("invalid H%d: %w", i+1, err)
}
}
if err := validateHeaderProtectionKey(o.HeaderProtectionKey); err != nil {
return err
}
if o.HeaderProtectionKey != "" {
for i, s := range []int{o.S1, o.S2, o.S3, o.S4} {
if s < 12 {
return fmt.Errorf("invalid S%d value %d: header protection requires S1-S4 >= 12", i+1, s)
}
}
}
if err := validateUintRange(o.ContentPaddingAddition, 0); err != nil {
return fmt.Errorf("invalid contentPaddingAddition: %w", err)
}
timing := []struct{ field, v string }{
{"rekeyAfterTime", o.RekeyAfterTime},
{"rekeyTimeout", o.RekeyTimeout},
{"rejectAfterTime", o.RejectAfterTime},
{"keepaliveTimeout", o.KeepaliveTimeout},
{"maxHandshakeAttempts", o.MaxHandshakeAttempts},
}
for _, tf := range timing {
// Zero would disable the timer or retry loop outright, so min is 1.
if err := validateUintRange(tf.v, 1); err != nil {
return fmt.Errorf("invalid %s: %w", tf.field, err)
}
}
// Sessions must renew before hard expiry, so every possible rekey fires
// before the earliest reject. A blank side means WireGuard's own default.
if o.RekeyAfterTime != "" || o.RejectAfterTime != "" {
rekeyHi, rejectLo := int64(120), int64(180)
if o.RekeyAfterTime != "" {
_, rekeyHi, _ = parseUintRange(o.RekeyAfterTime)
}
if o.RejectAfterTime != "" {
rejectLo, _, _ = parseUintRange(o.RejectAfterTime)
}
if rekeyHi >= rejectLo {
return fmt.Errorf("invalid rekeyAfterTime/rejectAfterTime: max rekey %d must be below min reject %d", rekeyHi, rejectLo)
}
}
return nil
}
// obfChainTags mirrors amneziawg-go's own obfBuilders map (device/obf.go): an
// unknown tag makes newObfChain fail, and IpcSet then rejects the whole device.
var obfChainTags = map[string]bool{
"b": true, "t": true, "r": true, "rc": true,
"rd": true, "d": true, "ds": true, "dz": true,
}
// validateObfChain checks an I1-I5 signature-packet spec's "<tag value>"
// structure. Each tag's own value grammar stays amneziawg-go's to enforce.
func validateObfChain(spec string) error {
if strings.TrimSpace(spec) == "" {
return nil
}
remaining := spec
for {
start := strings.IndexByte(remaining, '<')
if start == -1 {
return nil
}
end := strings.IndexByte(remaining[start:], '>')
if end == -1 {
return fmt.Errorf("spec %q is missing an enclosing '>'", spec)
}
fields := strings.Fields(remaining[start+1 : start+end])
if len(fields) == 0 {
return fmt.Errorf("spec %q has an empty <> tag", spec)
}
if !obfChainTags[fields[0]] {
return fmt.Errorf("spec %q uses unknown tag <%s>", spec, fields[0])
}
remaining = remaining[start+end+1:]
}
}
// CanonicalizeUintRange stores a pasted "110 - 140" as "110-140", and
// collapses a whitespace-only value back to "feature off".
func CanonicalizeUintRange(v string) string {
return strings.ReplaceAll(strings.TrimSpace(v), " ", "")
}
// validateHeaderProtectionKey accepts blank (feature off) or a base64 32-byte
// key. Control chars are rejected up front: DecodeString silently ignores
// \r\n, so a line-wrapped pasted key would pass and then split client configs.
func validateHeaderProtectionKey(v string) error {
if v == "" {
return nil
}
if err := ValidateConfigValue("headerProtectionKey", v); err != nil {
return err
}
key, err := base64.StdEncoding.DecodeString(v)
if err != nil {
return fmt.Errorf("invalid headerProtectionKey: not base64: %w", err)
}
if len(key) != 32 {
return fmt.Errorf("invalid headerProtectionKey: got %d bytes, want 32", len(key))
}
return nil
}
// ValidateIPv6Subnet rejects a malformed subnet before it's saved. A blank
// value is only valid when IPv6 itself is disabled.
func ValidateIPv6Subnet(enabled bool, subnet string) error {
if !enabled {
return nil
}
if strings.TrimSpace(subnet) == "" {
return fmt.Errorf("ipv6Subnet is required when IPv6 is enabled")
}
prefix, err := netip.ParsePrefix(subnet)
if err != nil {
return fmt.Errorf("invalid ipv6Subnet %q: %w", subnet, err)
}
if !prefix.Addr().Is6() {
return fmt.Errorf("invalid ipv6Subnet %q: not an IPv6 prefix", subnet)
}
return nil
}
// interfaceNamePattern matches a plausible Linux device name (eth0, br-lan,
// eno1.100, eth0:0), capped at 15 bytes (IFNAMSIZ-1).
var interfaceNamePattern = regexp.MustCompile(`^[A-Za-z0-9_.@:-]{1,15}$`)
// ValidateInterfaceName guards the NIC names generateServerConfig interpolates
// unescaped into a root-executed PostUp/PostDown line. Blank is allowed and
// means auto-detect (or, for IPv6ExternalInterface, reuse the IPv4 one).
func ValidateInterfaceName(name string) error {
if name == "" {
return nil
}
if !interfaceNamePattern.MatchString(name) {
return fmt.Errorf("invalid interface name %q: must be 1-15 characters of letters, digits, '.', '_', '@', ':' or '-'", name)
}
return nil
}
// ValidateSubnetIPv4 guards subnetIP, which lands in the MASQUERADE rule the
// same way ExternalInterface does. subnetCIDR <= 0 means unset, mirroring
// serverAddress's own default-to-/24 leniency.
func ValidateSubnetIPv4(subnetIP string, subnetCIDR int) error {
cidr := subnetCIDR
if cidr <= 0 {
cidr = 24
}
if cidr > 32 {
return fmt.Errorf("invalid subnetCidr %d: must be 0..32", subnetCIDR)
}
prefix, err := netip.ParsePrefix(fmt.Sprintf("%s/%d", subnetIP, cidr))
if err != nil {
return fmt.Errorf("invalid subnetIp %q: %w", subnetIP, err)
}
if !prefix.Addr().Is4() {
return fmt.Errorf("invalid subnetIp %q: not an IPv4 address", subnetIP)
}
return nil
}
// ValidateConfigValue rejects control characters in any value interpolated
// verbatim into a rendered .conf: a newline re-opens an [Interface] section
// whose "PostUp = ..." runs as root the moment whoever downloaded that
// config -- the client app, or an admin importing it into the official
// awg-quick CLI directly -- applies it. The panel's own server side never
// runs awg-quick itself (internal/amneziawgnet applies config via
// amneziawg-go's UAPI, not a parsed text file), but this exact value still
// reaches a real text-based config downstream. field names the value.
func ValidateConfigValue(field, v string) error {
for _, r := range v {
if r == '\n' || r == '\r' || r < 0x20 || r == 0x7f {
return fmt.Errorf("invalid %s: control characters are not allowed", field)
}
}
return nil
}
// validateUintRange checks a uint32-range parameter (H1-H4, the 3.x padding
// and timing fields): blank, an integer, or "low-high" within the bounds.
func validateUintRange(v string, minAllowed int64) error {
if strings.TrimSpace(v) == "" {
return nil
}
// parseUintRange trims each half, so "110\n-140" would otherwise pass and
// then split a rendered config line in two.
if err := ValidateConfigValue("range", v); err != nil {
return fmt.Errorf("value %q must not contain control characters", v)
}
lo, hi, ok := parseUintRange(v)
if !ok {
return fmt.Errorf("value %q must be an integer or a low-high range", v)
}
if lo < minAllowed || hi > hMaxValid || lo > hi {
return fmt.Errorf("range %q must satisfy %d <= low <= high <= %d", v, minAllowed, hMaxValid)
}
return nil
}
// parseUintRange parses "N" (lo == hi) or "low-high"; ok is false when blank
// or non-numeric. Bounds are NOT checked here.
func parseUintRange(v string) (lo, hi int64, ok bool) {
v = strings.TrimSpace(v)
if v == "" {
return 0, 0, false
}
if loS, hiS, isRange := strings.Cut(v, "-"); isRange {
l, err1 := strconv.ParseInt(strings.TrimSpace(loS), 10, 64)
h, err2 := strconv.ParseInt(strings.TrimSpace(hiS), 10, 64)
if err1 != nil || err2 != nil {
return 0, 0, false
}
return l, h, true
}
n, err := strconv.ParseInt(v, 10, 64)
if err != nil {
return 0, 0, false
}
return n, n, true
}