//Log_Debug("ICMPv4", "Replying");
hdr->Type = ICMP_ECHOREPLY;
hdr->Checksum = 0;
- hdr->Checksum = htons( IPv4_Checksum(hdr, Length) );
+ hdr->Checksum = htons( IPv4_Checksum( (Uint16*)hdr, Length/2 ) );
//Log_Debug("ICMPv4", "Checksum = 0x%04x", hdr->Checksum);
IPv4_SendPacket(Interface, *(tIPv4*)Address, 1, ntohs(hdr->Sequence), Length, hdr);
break;
gICMP_PingSlots[i].bArrived = 0;
hdr->ID = i;
hdr->Sequence = ~i;
- hdr->Checksum = htons( IPv4_Checksum(hdr, sizeof(buf)) );
+ hdr->Checksum = htons( IPv4_Checksum((Uint16*)hdr, sizeof(buf)/2) );
ts = now();
void IPv4_int_GetPacket(tAdapter *Interface, tMacAddr From, int Length, void *Buffer);
tInterface *IPv4_GetInterface(tAdapter *Adapter, tIPv4 Address, int Broadcast);
Uint32 IPv4_Netmask(int FixedBits);
-Uint16 IPv4_Checksum(const void *Buf, int Size);
+Uint16 IPv4_Checksum(const Uint16 *Buf, int WordCount);
int IPv4_Ping(tInterface *Iface, tIPv4 Addr);
// === GLOBALS ===
hdr->HeaderChecksum = 0; // Will be set later
hdr->Source = *(tIPv4*)Iface->Address;
hdr->Destination = Address;
- hdr->HeaderChecksum = htons(IPv4_Checksum(hdr, sizeof(tIPv4Header)));
+ hdr->HeaderChecksum = htons(IPv4_Checksum((Uint16*)hdr, sizeof(tIPv4Header)/2));
Log_Log("IPv4", "Sending packet to %i.%i.%i.%i",
Address.B[0], Address.B[1], Address.B[2], Address.B[3]);
Uint16 hdrVal, compVal;
hdrVal = ntohs(hdr->HeaderChecksum);
hdr->HeaderChecksum = 0;
- compVal = IPv4_Checksum(hdr, hdr->HeaderLength * 4);
+ compVal = IPv4_Checksum((Uint16*)hdr, (hdr->HeaderLength * 4) / 2);
if(hdrVal != compVal) {
Log_Log("IPv4", "Header checksum fails (%04x != %04x)", hdrVal, compVal);
return ;
*
* One's complement sum of all 16-bit words (bitwise inverted)
*/
-Uint16 IPv4_Checksum(const void *Buf, int Size)
+Uint16 IPv4_Checksum(const Uint16 *Buf, int WordCount)
{
Uint32 sum = 0;
- const Uint16 *arr = Buf;
int i;
// Sum all whole words
- for(i = 0; i < Size/2; i++ )
+ for(i = 0; i < WordCount; i++ )
{
- Uint16 val = ntohs(arr[i]);
+ Uint16 val = ntohs(Buf[i]);
sum += val;
}
- // Add the tail word
-// if( i*2 != Size )
-// sum += arr[i]&0xFF;
// Apply one's complement
while (sum >> 16)
// === FUNCTIONS ===
extern int IPv4_RegisterCallback(int ID, tIPCallback Callback);
-extern Uint16 IPv4_Checksum(const void *Buf, int Size);
+extern Uint16 IPv4_Checksum(const Uint16 *Buf, int WordCount);
extern int IPv4_SendPacket(tInterface *Iface, tIPv4 Address, int Protocol, int ID, int Length, const void *Data);
#endif
memcpy( &buf[3], Data, Length );
if(Length & 1)
((Uint8*)buf)[12+Length] = 0;
- Data->Checksum = htons( IPv4_Checksum( buf, buflen ) );
+ Data->Checksum = htons( IPv4_Checksum( (Uint16*)buf, buflen/2 ) );
free(buf);
IPv4_SendPacket(Conn->Interface, Conn->RemoteIP.v4, IP4PROT_TCP, 0, Length, Data);
break;
{
Log_Log("TCP", "TCP_GetPacket: SequenceNumber = 0x%x", ntohl(hdr->SequenceNumber));
Debug_HexDump(
- "[TCP ] Packet Data = ",
+ "TCP_GetPacket: Packet Data = ",
(Uint8*)hdr + (hdr->DataOffset >> 4)*4,
Length - (hdr->DataOffset >> 4)*4
);
memcpy(packet->Options, Data, Length);
Log_Debug("TCP", "Send sequence 0x%08x", Connection->NextSequenceSend);
- Debug_HexDump("[TCP ] TCP_INT_SendDataPacket: Data = ",
- Data, Length);
+ Debug_HexDump("TCP_INT_SendDataPacket: Data = ", Data, Length);
TCP_SendPacket( Connection, sizeof(tTCPHeader)+Length, packet );