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package rings
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import (
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"fmt"
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"net/netip"
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"testing"
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)
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func TestAddrFrom4(t *testing.T) {
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cases := []struct {
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v [4]uint
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s string
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}{
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{[4]uint{0, 0, 0, 0}, "0.0.0.0"},
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{[4]uint{127, 0, 0, 1}, "127.0.0.1"},
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{[4]uint{4096 + 127, 0, 0, 1}, "127.0.0.1"},
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{[4]uint{257, 258, 259, 260}, "1.2.3.4"},
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{[4]uint{255, 255, 255, 255}, "255.255.255.255"},
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}
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for i, tc := range cases {
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fn := fmt.Sprintf("%v.%v.%v.%v", tc.v[0], tc.v[1], tc.v[2], tc.v[3])
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addr := AddrFrom4(tc.v[0], tc.v[1], tc.v[2], tc.v[3])
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s := addr.String()
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if s == tc.s {
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t.Logf("[%v/%v]: %s → %s", i, len(cases), fn, s)
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} else {
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t.Errorf("ERROR: [%v/%v]: %s → %s (expected %s)", i, len(cases), fn, s, tc.s)
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}
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}
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}
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func TestAddrU32Invalid(t *testing.T) {
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cases := []netip.Addr{
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{},
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netip.IPv6Unspecified(),
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netip.IPv6Loopback(),
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}
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for i, tc := range cases {
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v, ok := AddrToU32(tc)
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switch {
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case !ok && v == 0:
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t.Logf("[%v/%v]: %s → %v %v", i, len(cases), tc, 0, false)
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default:
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t.Errorf("ERROR: [%v/%v]: %s → %v %v (expected %v %v)", i, len(cases),
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tc, v, ok, 0, false)
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}
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}
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}
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func TestAddrU32Valid(t *testing.T) {
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cases := []netip.Addr{
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netip.IPv4Unspecified(),
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AddrFrom4(0, 0, 0, 0),
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AddrFrom4(1, 2, 3, 4),
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AddrFrom4(10, 20, 30, 40),
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AddrFrom4(127, 0, 0, 1),
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AddrFrom4(255, 255, 255, 255),
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MustParseAddr("::ffff:1.2.3.4"),
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}
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for i, tc := range cases {
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u32, ok := AddrToU32(tc)
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if !ok {
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t.Errorf("ERROR: [%v/%v]: %s → %v %v", i, len(cases), tc, u32, ok)
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continue
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}
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addr := AddrFromU32(u32)
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if tc.Is4In6() {
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ok = addr.Compare(tc.Unmap()) == 0
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} else {
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ok = addr.Compare(tc) == 0
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}
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if ok {
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t.Logf("[%v/%v]: %s → %v → %s", i, len(cases), tc, u32, addr)
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} else {
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t.Errorf("ERROR: [%v/%v]: %s → %v → %s", i, len(cases), tc, u32, addr)
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}
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}
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}
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func MustParseAddr(s string) netip.Addr {
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addr, err := netip.ParseAddr(s)
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if err != nil {
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panic(err)
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}
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return addr
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}
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func MustParsePrefix(s string) netip.Prefix {
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subnet, err := netip.ParsePrefix(s)
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if err != nil {
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panic(err)
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}
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return subnet
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}
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func TestPrefixToRangeValid(t *testing.T) {
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cases := []struct {
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subnet netip.Prefix
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from netip.Addr
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to netip.Addr
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}{
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{
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MustParsePrefix("127.0.0.1/32"),
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MustParseAddr("127.0.0.1"),
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MustParseAddr("127.0.0.1"),
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},
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{
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MustParsePrefix("127.0.0.1/24"),
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MustParseAddr("127.0.0.0"),
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MustParseAddr("127.0.0.255"),
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},
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{
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MustParsePrefix("127.0.1.2/16"),
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MustParseAddr("127.0.0.0"),
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MustParseAddr("127.0.255.255"),
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},
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{
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MustParsePrefix("127.1.2.3/8"),
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MustParseAddr("127.0.0.0"),
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MustParseAddr("127.255.255.255"),
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},
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{
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MustParsePrefix("10.20.30.40/12"),
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MustParseAddr("10.16.0.0"),
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MustParseAddr("10.31.255.255"),
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},
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{
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MustParsePrefix("10.20.30.40/20"),
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MustParseAddr("10.20.16.0"),
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MustParseAddr("10.20.31.255"),
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},
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{
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MustParsePrefix("10.0.0.0/12"),
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MustParseAddr("10.0.0.0"),
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MustParseAddr("10.15.255.255"),
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},
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{
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MustParsePrefix("10.16.0.0/12"),
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MustParseAddr("10.16.0.0"),
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MustParseAddr("10.31.255.255"),
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},
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{
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MustParsePrefix("10.32.0.0/12"),
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MustParseAddr("10.32.0.0"),
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MustParseAddr("10.47.255.255"),
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},
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{
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MustParsePrefix("10.48.0.0/12"),
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MustParseAddr("10.48.0.0"),
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MustParseAddr("10.63.255.255"),
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},
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}
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for i, tc := range cases {
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from, to, ok := PrefixToRange(tc.subnet)
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if ok && from.IsValid() && to.IsValid() &&
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from.Compare(tc.from) == 0 &&
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to.Compare(tc.to) == 0 {
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//
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t.Logf("[%v/%v]: %s → %s - %s",
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i, len(cases),
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tc.subnet,
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from, to)
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} else {
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t.Errorf("ERROR: [%v/%v]: %q → %s - %s %v (expected %s - %s %v)",
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i, len(cases),
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tc.subnet,
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from, to, ok,
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tc.from, tc.to, true)
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}
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}
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}
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