2006-06-28 15:43:08 +00:00
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#include <stdint.h>
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#include <string.h>
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#include <errno.h>
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#include <malloc.h>
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#include <byteswap.h>
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#include <gpxe/in.h>
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#include <gpxe/ip.h>
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#include <gpxe/pkbuff.h>
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#include <gpxe/tables.h>
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#include <gpxe/netdevice.h>
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2006-08-01 14:18:09 +00:00
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#include <gpxe/tcpip.h>
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2006-06-28 15:43:08 +00:00
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/** @file
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*
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* Transport-network layer interface
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*
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* This file contains functions and utilities for the transport-network layer interface
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*/
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/** Registered network-layer protocols that support TCPIP */
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static struct tcpip_net_protocol tcpip_net_protocols[0] __table_start ( tcpip_net_protocols );
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static struct tcpip_net_protocol tcpip_net_protocols_end[0] __table_end ( tcpip_net_protocols );
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/** Registered transport-layer protocols that support TCPIP */
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static struct tcpip_protocol tcpip_protocols[0] __table_start ( tcpip_protocols );
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static struct tcpip_protocol tcpip_protocols_end[0] __table_end ( tcpip_protocols );
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/** Process a received packet
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*
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* @v pkb Packet buffer
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* @v trans_proto Transport-layer protocol number
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* @v src Source network-layer address
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* @v dest Destination network-layer address
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*
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* This function expects a transport-layer segment from the network-layer
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*/
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2006-08-01 14:22:04 +00:00
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void tcpip_rx ( struct pk_buff *pkb, uint8_t trans_proto, struct in_addr *src,
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2006-06-28 15:43:08 +00:00
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struct in_addr *dest ) {
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struct tcpip_protocol *tcpip;
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/* Identify the transport layer protocol */
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for ( tcpip = tcpip_protocols; tcpip <= tcpip_protocols_end; ++tcpip ) {
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if ( tcpip->trans_proto == trans_proto ) {
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DBG ( "Packet sent to %s module", tcpip->name );
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tcpip->rx ( pkb, src, dest );
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}
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}
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}
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/** Transmit a transport-layer segment
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*
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* @v pkb Packet buffer
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* @v trans_proto Transport-layer protocol
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* @v sock Destination socket address
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* @ret Status
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*/
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2006-08-01 14:22:04 +00:00
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int tcpip_tx ( struct pk_buff *pkb, struct tcpip_protocol *tcpip,
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2006-06-28 15:43:08 +00:00
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struct sockaddr *sock ) {
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/* Identify the network layer protocol and send it using xxx_tx() */
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switch ( sock->sa_family ) {
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case AF_INET: /* IPv4 network family */
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return ipv4_tx ( pkb, tcpip, &sock->sin.sin_addr );
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case AF_INET6: /* IPv6 network family */
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return ipv6_tx ( pkb, tcpip, &sock->sin6.sin6_addr );
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}
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DBG ( "Network family %d not supported", sock->sa_family );
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return -EAFNOSUPPORT;
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}
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/**
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2006-07-19 23:38:05 +00:00
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* Calculate continued TCP/IP checkum
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2006-06-28 15:43:08 +00:00
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*
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2006-07-19 23:38:05 +00:00
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* @v partial Checksum of already-summed data, in network byte order
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* @v data Data buffer
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* @v len Length of data buffer
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* @ret cksum Updated checksum, in network byte order
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*
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* Calculates a TCP/IP-style 16-bit checksum over the data block. The
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* checksum is returned in network byte order.
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*
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* This function may be used to add new data to an existing checksum.
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* The function assumes that both the old data and the new data start
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* on even byte offsets; if this is not the case then you will need to
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* byte-swap either the input partial checksum, the output checksum,
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* or both. Deciding which to swap is left as an exercise for the
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* interested reader.
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*/
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unsigned int tcpip_continue_chksum ( unsigned int partial, const void *data,
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size_t len ) {
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unsigned int cksum = ( ( ~partial ) & 0xffff );
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unsigned int value;
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unsigned int i;
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for ( i = 0 ; i < len ; i++ ) {
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value = * ( ( uint8_t * ) data + i );
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if ( i & 1 ) {
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/* Odd bytes: swap on little-endian systems */
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value = be16_to_cpu ( value );
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} else {
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/* Even bytes: swap on big-endian systems */
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value = le16_to_cpu ( value );
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}
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cksum += value;
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if ( cksum > 0xffff )
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cksum -= 0xffff;
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}
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return ( ( ~cksum ) & 0xffff );
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}
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/**
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* Calculate TCP/IP checkum
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*
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* @v data Data buffer
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* @v len Length of data buffer
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* @ret cksum Checksum, in network byte order
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*
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* Calculates a TCP/IP-style 16-bit checksum over the data block. The
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* checksum is returned in network byte order.
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2006-06-28 15:43:08 +00:00
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*/
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2006-07-19 23:38:05 +00:00
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unsigned int tcpip_chksum ( const void *data, size_t len ) {
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return tcpip_continue_chksum ( 0xffff, data, len );
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2006-06-28 15:43:08 +00:00
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}
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