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add IPv6 support to CreateICMPEchoResponse (#1767)
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The function previously only handled IPv4 ICMP Echo Request packets. This adds handling for IPv6 ICMPv6 Echo Request (type 128) by generating a proper Echo Reply (type 129) with correct pseudo-header checksum.
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@@ -378,6 +378,21 @@ func ipv6FindUpperProtocolOffset(packet []byte) int {
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}
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func CreateICMPEchoResponse(packet, out []byte) []byte {
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if len(packet) < 1 {
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return nil
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}
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switch packet[0] >> 4 {
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case 4:
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return createICMPv4EchoResponse(packet, out)
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case 6:
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return createICMPv6EchoResponse(packet, out)
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default:
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return nil
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}
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}
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func createICMPv4EchoResponse(packet, out []byte) []byte {
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// Return early if this is not a simple ICMP Echo Request
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//TODO: make constants out of these
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if !(len(packet) >= 28 && len(packet) <= 9001 && packet[0] == 0x45 && packet[9] == 0x01 && packet[20] == 0x08) {
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@@ -411,6 +426,43 @@ func CreateICMPEchoResponse(packet, out []byte) []byte {
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return out
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}
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func createICMPv6EchoResponse(packet, out []byte) []byte {
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// IPv6 header (40 bytes) + ICMPv6 header (8 bytes minimum)
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if len(packet) < ipv6.HeaderLen+8 || len(packet) > 9001 {
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return nil
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}
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// Next Header must be ICMPv6 (58)
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if packet[6] != 58 {
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return nil
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}
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// ICMPv6 type must be Echo Request (128)
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if packet[ipv6.HeaderLen] != 128 {
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return nil
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}
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out = out[:len(packet)]
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copy(out, packet)
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// Swap src/dst addresses (bytes 8-23 and 24-39)
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copy(out[8:24], packet[24:40])
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copy(out[24:40], packet[8:24])
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// Change ICMPv6 type to Echo Reply (129)
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icmp := out[ipv6.HeaderLen:]
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icmp[0] = 129
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icmp[2] = 0
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icmp[3] = 0
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// ICMPv6 checksum uses a pseudo-header with src, dst, length, and next header
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payloadLen := uint32(len(icmp))
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csum := ipv6PseudoheaderChecksum(out[8:24], out[24:40], 58, payloadLen)
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binary.BigEndian.PutUint16(icmp[2:], tcpipChecksum(icmp, csum))
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return out
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}
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// calculates the TCP/IP checksum defined in rfc1071. The passed-in
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// csum is any initial checksum data that's already been computed.
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//
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@@ -239,3 +239,106 @@ func Test_CreateRejectPacketIPv6_ExtensionHeaders(t *testing.T) {
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tcpOut := rejectPacket[ipv6.HeaderLen:]
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assert.Equal(t, byte(0b00000100), tcpOut[13]) // RST only
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}
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func TestCreateICMPEchoResponse_IPv4(t *testing.T) {
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// Build a simple IPv4 ICMP Echo Request
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packet := make([]byte, 28)
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packet[0] = 0x45 // version 4, IHL 5
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binary.BigEndian.PutUint16(packet[2:], uint16(28)) // total length
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packet[8] = 64 // TTL
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packet[9] = 1 // protocol ICMP
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copy(packet[12:16], net.IPv4(10, 0, 0, 1).To4()) // src
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copy(packet[16:20], net.IPv4(10, 0, 0, 2).To4()) // dst
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packet[20] = 8 // ICMP Echo Request
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out := make([]byte, len(packet))
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result := CreateICMPEchoResponse(packet, out)
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assert.NotNil(t, result)
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assert.Equal(t, byte(0x45), result[0])
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// src/dst swapped
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assert.Equal(t, net.IPv4(10, 0, 0, 2).To4(), net.IP(result[12:16]))
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assert.Equal(t, net.IPv4(10, 0, 0, 1).To4(), net.IP(result[16:20]))
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// ICMP Echo Reply
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assert.Equal(t, byte(0), result[20])
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}
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func TestCreateICMPEchoResponse_IPv6(t *testing.T) {
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src := net.ParseIP("fd00::1").To16()
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dst := net.ParseIP("fd00::2").To16()
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// Build an IPv6 ICMPv6 Echo Request packet
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// IPv6 header (40 bytes) + ICMPv6 (8 bytes)
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packet := make([]byte, 48)
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packet[0] = 0x60 // version 6
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payloadLen := uint16(8) // ICMPv6 header only
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binary.BigEndian.PutUint16(packet[4:], payloadLen)
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packet[6] = 58 // Next Header: ICMPv6
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packet[7] = 64 // Hop Limit
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copy(packet[8:24], src) // src address
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copy(packet[24:40], dst) // dst address
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// ICMPv6 Echo Request
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icmp := packet[40:]
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icmp[0] = 128 // type: Echo Request
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icmp[1] = 0 // code
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binary.BigEndian.PutUint16(icmp[4:], 1) // identifier
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binary.BigEndian.PutUint16(icmp[6:], 1) // sequence number
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// Compute correct checksum for the request
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csum := ipv6PseudoheaderChecksum(src, dst, 58, uint32(payloadLen))
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binary.BigEndian.PutUint16(icmp[2:], tcpipChecksum(icmp, csum))
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out := make([]byte, len(packet))
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result := CreateICMPEchoResponse(packet, out)
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assert.NotNil(t, result)
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// Version should still be 6
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assert.Equal(t, byte(6), result[0]>>4)
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// src/dst swapped
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assert.Equal(t, dst, net.IP(result[8:24]))
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assert.Equal(t, src, net.IP(result[24:40]))
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// ICMPv6 Echo Reply type
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assert.Equal(t, byte(129), result[40])
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// Verify checksum is valid (tcpipChecksum returns 0 when data+checksum is correct)
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respIcmp := result[40:]
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verifyCsum := ipv6PseudoheaderChecksum(result[8:24], result[24:40], 58, uint32(payloadLen))
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assert.Equal(t, uint16(0), tcpipChecksum(respIcmp, verifyCsum))
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}
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func TestCreateICMPEchoResponse_IPv6_NotEchoRequest(t *testing.T) {
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src := net.ParseIP("fd00::1").To16()
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dst := net.ParseIP("fd00::2").To16()
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packet := make([]byte, 48)
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packet[0] = 0x60
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binary.BigEndian.PutUint16(packet[4:], 8)
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packet[6] = 58
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packet[7] = 64
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copy(packet[8:24], src)
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copy(packet[24:40], dst)
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// ICMPv6 type 1 (Destination Unreachable) - not Echo Request
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packet[40] = 1
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out := make([]byte, len(packet))
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result := CreateICMPEchoResponse(packet, out)
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assert.Nil(t, result)
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}
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func TestCreateICMPEchoResponse_IPv6_NotICMPv6(t *testing.T) {
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src := net.ParseIP("fd00::1").To16()
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dst := net.ParseIP("fd00::2").To16()
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packet := make([]byte, 48)
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packet[0] = 0x60
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binary.BigEndian.PutUint16(packet[4:], 8)
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packet[6] = 6 // TCP, not ICMPv6
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packet[7] = 64
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copy(packet[8:24], src)
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copy(packet[24:40], dst)
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out := make([]byte, len(packet))
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result := CreateICMPEchoResponse(packet, out)
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assert.Nil(t, result)
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}
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