net.c 44.9 KB
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/*
 *	Copied from Linux Monitor (LiMon) - Networking.
 *
 *	Copyright 1994 - 2000 Neil Russell.
 *	(See License)
 *	Copyright 2000 Roland Borde
 *	Copyright 2000 Paolo Scaffardi
 *	Copyright 2000-2002 Wolfgang Denk, wd@denx.de
 */

/*
 * General Desription:
 *
 * The user interface supports commands for BOOTP, RARP, and TFTP.
 * Also, we support ARP internally. Depending on available data,
 * these interact as follows:
 *
 * BOOTP:
 *
 *	Prerequisites:	- own ethernet address
 *	We want:	- own IP address
 *			- TFTP server IP address
 *			- name of bootfile
 *	Next step:	ARP
 *
 * RARP:
 *
 *	Prerequisites:	- own ethernet address
 *	We want:	- own IP address
 *			- TFTP server IP address
 *	Next step:	ARP
 *
 * ARP:
 *
 *	Prerequisites:	- own ethernet address
 *			- own IP address
 *			- TFTP server IP address
 *	We want:	- TFTP server ethernet address
 *	Next step:	TFTP
 *
 * DHCP:
 *
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 *     Prerequisites:	- own ethernet address
 *     We want:		- IP, Netmask, ServerIP, Gateway IP
 *			- bootfilename, lease time
 *     Next step:	- TFTP
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 *
 * TFTP:
 *
 *	Prerequisites:	- own ethernet address
 *			- own IP address
 *			- TFTP server IP address
 *			- TFTP server ethernet address
 *			- name of bootfile (if unknown, we use a default name
 *			  derived from our own IP address)
 *	We want:	- load the boot file
 *	Next step:	none
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 *
 * NFS:
 *
 *	Prerequisites:	- own ethernet address
 *			- own IP address
 *			- name of bootfile (if unknown, we use a default name
 *			  derived from our own IP address)
 *	We want:	- load the boot file
 *	Next step:	none
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 *
 * SNTP:
 *
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 *	Prerequisites:	- own ethernet address
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 *			- own IP address
 *	We want:	- network time
 *	Next step:	none
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 */


#include <common.h>
#include <watchdog.h>
#include <command.h>
#include <net.h>
#include "bootp.h"
#include "tftp.h"
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#ifdef CONFIG_CMD_RARP
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#include "rarp.h"
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#endif
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#include "nfs.h"
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#ifdef CONFIG_STATUS_LED
#include <status_led.h>
#include <miiphy.h>
#endif
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#if defined(CONFIG_CMD_SNTP)
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#include "sntp.h"
#endif
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#if defined(CONFIG_CDP_VERSION)
#include <timestamp.h>
#endif
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#if defined(CONFIG_CMD_DNS)
#include "dns.h"
#endif
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DECLARE_GLOBAL_DATA_PTR;

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#ifndef	CONFIG_ARP_TIMEOUT
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/* Milliseconds before trying ARP again */
# define ARP_TIMEOUT		5000UL
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#else
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# define ARP_TIMEOUT		CONFIG_ARP_TIMEOUT
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#endif


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#ifndef	CONFIG_NET_RETRY_COUNT
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# define ARP_TIMEOUT_COUNT	5	/* # of timeouts before giving up  */
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#else
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# define ARP_TIMEOUT_COUNT	CONFIG_NET_RETRY_COUNT
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#endif

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/** BOOTP EXTENTIONS **/

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/* Our subnet mask (0=unknown) */
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IPaddr_t	NetOurSubnetMask;
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/* Our gateways IP address */
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IPaddr_t	NetOurGatewayIP;
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/* Our DNS IP address */
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IPaddr_t	NetOurDNSIP;
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#if defined(CONFIG_BOOTP_DNS2)
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/* Our 2nd DNS IP address */
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IPaddr_t	NetOurDNS2IP;
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#endif
/* Our NIS domain */
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char		NetOurNISDomain[32] = {0,};
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/* Our hostname */
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char		NetOurHostName[32] = {0,};
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/* Our bootpath */
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char		NetOurRootPath[64] = {0,};
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/* Our bootfile size in blocks */
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ushort		NetBootFileSize;
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#ifdef CONFIG_MCAST_TFTP	/* Multicast TFTP */
IPaddr_t Mcast_addr;
#endif

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/** END OF BOOTP EXTENTIONS **/

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/* The actual transferred size of the bootfile (in bytes) */
ulong		NetBootFileXferSize;
/* Our ethernet address */
uchar		NetOurEther[6];
/* Boot server enet address */
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uchar		NetServerEther[6];
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/* Our IP addr (0 = unknown) */
IPaddr_t	NetOurIP;
/* Server IP addr (0 = unknown) */
IPaddr_t	NetServerIP;
/* Current receive packet */
volatile uchar *NetRxPacket;
/* Current rx packet length */
int		NetRxPacketLen;
/* IP packet ID */
unsigned	NetIPID;
/* Ethernet bcast address */
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uchar		NetBcastAddr[6] = { 0xff, 0xff, 0xff, 0xff, 0xff, 0xff };
uchar		NetEtherNullAddr[6];
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#ifdef CONFIG_API
void		(*push_packet)(volatile void *, int len) = 0;
#endif
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#if defined(CONFIG_CMD_CDP)
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/* Ethernet bcast address */
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uchar		NetCDPAddr[6] = { 0x01, 0x00, 0x0c, 0xcc, 0xcc, 0xcc };
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#endif
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/* Network loop state */
int		NetState;
/* Tried all network devices */
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int		NetRestartWrap;
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/* Network loop restarted */
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static int	NetRestarted;
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/* At least one device configured */
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static int	NetDevExists;
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/* XXX in both little & big endian machines 0xFFFF == ntohs(-1) */
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/* default is without VLAN */
ushort		NetOurVLAN = 0xFFFF;
/* ditto */
ushort		NetOurNativeVLAN = 0xFFFF;
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/* Boot File name */
char		BootFile[128];
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#if defined(CONFIG_CMD_PING)
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/* the ip address to ping */
IPaddr_t	NetPingIP;
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static void PingStart(void);
#endif

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#if defined(CONFIG_CMD_CDP)
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static void CDPStart(void);
#endif

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#if defined(CONFIG_CMD_SNTP)
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/* NTP server IP address */
IPaddr_t	NetNtpServerIP;
/* offset time from UTC */
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int		NetTimeOffset;
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#endif

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#ifdef CONFIG_NETCONSOLE
void NcStart(void);
int nc_input_packet(uchar *pkt, unsigned dest, unsigned src, unsigned len);
#endif

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volatile uchar	PktBuf[(PKTBUFSRX+1) * PKTSIZE_ALIGN + PKTALIGN];

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/* Receive packet */
volatile uchar *NetRxPackets[PKTBUFSRX];
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/* Current RX packet handler */
static rxhand_f *packetHandler;
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#ifdef CONFIG_CMD_TFTPPUT
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static rxhand_icmp_f *packet_icmp_handler;	/* Current ICMP rx handler */
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#endif
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/* Current timeout handler */
static thand_f *timeHandler;
/* Time base value */
static ulong	timeStart;
/* Current timeout value */
static ulong	timeDelta;
/* THE transmit packet */
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volatile uchar *NetTxPacket;
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static int net_check_prereq(enum proto_t protocol);
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static int NetTryCount;

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/**********************************************************************/

IPaddr_t	NetArpWaitPacketIP;
IPaddr_t	NetArpWaitReplyIP;
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/* MAC address of waiting packet's destination */
uchar	       *NetArpWaitPacketMAC;
/* THE transmit packet */
uchar	       *NetArpWaitTxPacket;
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int		NetArpWaitTxPacketSize;
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uchar		NetArpWaitPacketBuf[PKTSIZE_ALIGN + PKTALIGN];
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ulong		NetArpWaitTimerStart;
int		NetArpWaitTry;

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void ArpRequest(void)
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{
	volatile uchar *pkt;
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	ARP_t *arp;
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	debug("ARP broadcast %d\n", NetArpWaitTry);

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	pkt = NetTxPacket;

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	pkt += NetSetEther(pkt, NetBcastAddr, PROT_ARP);
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	arp = (ARP_t *) pkt;
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	arp->ar_hrd = htons(ARP_ETHER);
	arp->ar_pro = htons(PROT_IP);
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	arp->ar_hln = 6;
	arp->ar_pln = 4;
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	arp->ar_op = htons(ARPOP_REQUEST);
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	/* source ET addr */
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	memcpy(&arp->ar_data[0], NetOurEther, 6);
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	/* source IP addr */
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	NetWriteIP((uchar *) &arp->ar_data[6], NetOurIP);
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	/* dest ET addr = 0 */
	memset(&arp->ar_data[10], '\0', 6);
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	if ((NetArpWaitPacketIP & NetOurSubnetMask) !=
	    (NetOurIP & NetOurSubnetMask)) {
		if (NetOurGatewayIP == 0) {
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			puts("## Warning: gatewayip needed but not set\n");
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			NetArpWaitReplyIP = NetArpWaitPacketIP;
		} else {
			NetArpWaitReplyIP = NetOurGatewayIP;
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		}
	} else {
		NetArpWaitReplyIP = NetArpWaitPacketIP;
	}
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	NetWriteIP((uchar *) &arp->ar_data[16], NetArpWaitReplyIP);
	(void) eth_send(NetTxPacket, (pkt - NetTxPacket) + ARP_HDR_SIZE);
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}

void ArpTimeoutCheck(void)
{
	ulong t;

	if (!NetArpWaitPacketIP)
		return;

	t = get_timer(0);

	/* check for arp timeout */
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	if ((t - NetArpWaitTimerStart) > ARP_TIMEOUT) {
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		NetArpWaitTry++;

		if (NetArpWaitTry >= ARP_TIMEOUT_COUNT) {
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			puts("\nARP Retry count exceeded; starting again\n");
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			NetArpWaitTry = 0;
			NetStartAgain();
		} else {
			NetArpWaitTimerStart = t;
			ArpRequest();
		}
	}
}

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/*
 * Check if autoload is enabled. If so, use either NFS or TFTP to download
 * the boot file.
 */
void net_auto_load(void)
{
	const char *s = getenv("autoload");

	if (s != NULL) {
		if (*s == 'n') {
			/*
			 * Just use BOOTP/RARP to configure system;
			 * Do not use TFTP to load the bootfile.
			 */
			NetState = NETLOOP_SUCCESS;
			return;
		}
#if defined(CONFIG_CMD_NFS)
		if (strcmp(s, "NFS") == 0) {
			/*
			 * Use NFS to load the bootfile.
			 */
			NfsStart();
			return;
		}
#endif
	}
	TftpStart(TFTPGET);
}

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static void NetInitLoop(enum proto_t protocol)
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{
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	static int env_changed_id;
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	bd_t *bd = gd->bd;
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	int env_id = get_env_id();
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	/* update only when the environment has changed */
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	if (env_changed_id != env_id) {
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		NetOurIP = getenv_IPaddr("ipaddr");
		NetCopyIP(&bd->bi_ip_addr, &NetOurIP);
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		NetOurGatewayIP = getenv_IPaddr("gatewayip");
		NetOurSubnetMask = getenv_IPaddr("netmask");
		NetServerIP = getenv_IPaddr("serverip");
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		NetOurNativeVLAN = getenv_VLAN("nvlan");
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		NetOurVLAN = getenv_VLAN("vlan");
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#if defined(CONFIG_CMD_DNS)
		NetOurDNSIP = getenv_IPaddr("dnsip");
#endif
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		env_changed_id = env_id;
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	}
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	return;
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}

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/**********************************************************************/
/*
 *	Main network processing loop.
 */

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int NetLoop(enum proto_t protocol)
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{
	bd_t *bd = gd->bd;
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	int ret = -1;
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	NetRestarted = 0;
	NetDevExists = 0;

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	/* XXX problem with bss workaround */
	NetArpWaitPacketMAC = NULL;
	NetArpWaitTxPacket = NULL;
	NetArpWaitPacketIP = 0;
	NetArpWaitReplyIP = 0;
	NetArpWaitTxPacket = NULL;
	NetTxPacket = NULL;
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	NetTryCount = 1;
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	if (!NetTxPacket) {
		int	i;
		/*
		 *	Setup packet buffers, aligned correctly.
		 */
		NetTxPacket = &PktBuf[0] + (PKTALIGN - 1);
		NetTxPacket -= (ulong)NetTxPacket % PKTALIGN;
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		for (i = 0; i < PKTBUFSRX; i++)
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			NetRxPackets[i] = NetTxPacket + (i+1)*PKTSIZE_ALIGN;
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	}

	if (!NetArpWaitTxPacket) {
		NetArpWaitTxPacket = &NetArpWaitPacketBuf[0] + (PKTALIGN - 1);
		NetArpWaitTxPacket -= (ulong)NetArpWaitTxPacket % PKTALIGN;
		NetArpWaitTxPacketSize = 0;
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	}

	eth_halt();
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	eth_set_current();
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	if (eth_init(bd) < 0) {
		eth_halt();
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		return -1;
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	}
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restart:
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	memcpy(NetOurEther, eth_get_dev()->enetaddr, 6);
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	NetState = NETLOOP_CONTINUE;

	/*
	 *	Start the ball rolling with the given start function.  From
	 *	here on, this code is a state machine driven by received
	 *	packets and timer events.
	 */
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	NetInitLoop(protocol);
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	switch (net_check_prereq(protocol)) {
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	case 1:
		/* network not configured */
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		eth_halt();
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		return -1;
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	case 2:
		/* network device not configured */
		break;

	case 0:
		NetDevExists = 1;
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		NetBootFileXferSize = 0;
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		switch (protocol) {
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		case TFTPGET:
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#ifdef CONFIG_CMD_TFTPPUT
		case TFTPPUT:
#endif
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			/* always use ARP to get server ethernet address */
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			TftpStart(protocol);
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			break;
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#ifdef CONFIG_CMD_TFTPSRV
		case TFTPSRV:
			TftpStartServer();
			break;
#endif
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#if defined(CONFIG_CMD_DHCP)
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		case DHCP:
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			BootpTry = 0;
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			NetOurIP = 0;
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			DhcpRequest();		/* Basically same as BOOTP */
			break;
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#endif
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		case BOOTP:
			BootpTry = 0;
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			NetOurIP = 0;
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			BootpRequest();
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			break;

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#if defined(CONFIG_CMD_RARP)
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		case RARP:
			RarpTry = 0;
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			NetOurIP = 0;
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			RarpRequest();
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			break;
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#endif
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#if defined(CONFIG_CMD_PING)
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		case PING:
			PingStart();
			break;
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#endif
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#if defined(CONFIG_CMD_NFS)
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		case NFS:
			NfsStart();
			break;
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#endif
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#if defined(CONFIG_CMD_CDP)
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		case CDP:
			CDPStart();
			break;
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#endif
#ifdef CONFIG_NETCONSOLE
		case NETCONS:
			NcStart();
			break;
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#endif
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#if defined(CONFIG_CMD_SNTP)
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		case SNTP:
			SntpStart();
			break;
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#endif
#if defined(CONFIG_CMD_DNS)
		case DNS:
			DnsStart();
			break;
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#endif
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		default:
			break;
		}

		break;
	}

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#if defined(CONFIG_MII) || defined(CONFIG_CMD_MII)
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#if	defined(CONFIG_SYS_FAULT_ECHO_LINK_DOWN)	&& \
	defined(CONFIG_STATUS_LED)			&& \
	defined(STATUS_LED_RED)
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	/*
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	 * Echo the inverted link state to the fault LED.
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	 */
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	if (miiphy_link(eth_get_dev()->name, CONFIG_SYS_FAULT_MII_ADDR))
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		status_led_set(STATUS_LED_RED, STATUS_LED_OFF);
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	else
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		status_led_set(STATUS_LED_RED, STATUS_LED_ON);
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#endif /* CONFIG_SYS_FAULT_ECHO_LINK_DOWN, ... */
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#endif /* CONFIG_MII, ... */
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	/*
	 *	Main packet reception loop.  Loop receiving packets until
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	 *	someone sets `NetState' to a state that terminates.
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	 */
	for (;;) {
		WATCHDOG_RESET();
#ifdef CONFIG_SHOW_ACTIVITY
		{
			extern void show_activity(int arg);
			show_activity(1);
		}
#endif
		/*
		 *	Check the ethernet for a new packet.  The ethernet
		 *	receive routine will process it.
		 */
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		eth_rx();
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		/*
		 *	Abort if ctrl-c was pressed.
		 */
		if (ctrlc()) {
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			eth_halt();
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			puts("\nAbort\n");
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			goto done;
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		}

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		ArpTimeoutCheck();
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		/*
		 *	Check for a timeout, and run the timeout handler
		 *	if we have one.
		 */
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		if (timeHandler && ((get_timer(0) - timeStart) > timeDelta)) {
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			thand_f *x;

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#if defined(CONFIG_MII) || defined(CONFIG_CMD_MII)
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#if	defined(CONFIG_SYS_FAULT_ECHO_LINK_DOWN)	&& \
	defined(CONFIG_STATUS_LED)			&& \
	defined(STATUS_LED_RED)
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			/*
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			 * Echo the inverted link state to the fault LED.
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			 */
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			if (miiphy_link(eth_get_dev()->name,
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				       CONFIG_SYS_FAULT_MII_ADDR)) {
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				status_led_set(STATUS_LED_RED, STATUS_LED_OFF);
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			} else {
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				status_led_set(STATUS_LED_RED, STATUS_LED_ON);
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			}
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#endif /* CONFIG_SYS_FAULT_ECHO_LINK_DOWN, ... */
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#endif /* CONFIG_MII, ... */
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			x = timeHandler;
			timeHandler = (thand_f *)0;
			(*x)();
		}


		switch (NetState) {

		case NETLOOP_RESTART:
			NetRestarted = 1;
			goto restart;

		case NETLOOP_SUCCESS:
			if (NetBootFileXferSize > 0) {
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				char buf[20];
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				printf("Bytes transferred = %ld (%lx hex)\n",
					NetBootFileXferSize,
					NetBootFileXferSize);
591
				sprintf(buf, "%lX", NetBootFileXferSize);
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				setenv("filesize", buf);
593 594 595

				sprintf(buf, "%lX", (unsigned long)load_addr);
				setenv("fileaddr", buf);
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596 597
			}
			eth_halt();
598 599
			ret = NetBootFileXferSize;
			goto done;
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		case NETLOOP_FAIL:
602
			goto done;
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		}
	}
605 606

done:
607
#ifdef CONFIG_CMD_TFTPPUT
608 609 610
	/* Clear out the handlers */
	NetSetHandler(NULL);
	net_set_icmp_handler(NULL);
611
#endif
612
	return ret;
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}

/**********************************************************************/

static void
startAgainTimeout(void)
{
	NetState = NETLOOP_RESTART;
}

static void
624 625
startAgainHandler(uchar *pkt, unsigned dest, IPaddr_t sip,
		  unsigned src, unsigned len)
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{
	/* Totally ignore the packet */
}

630
void NetStartAgain(void)
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{
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632
	char *nretry;
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	int retry_forever = 0;
	unsigned long retrycnt = 0;

	nretry = getenv("netretry");
	if (nretry) {
		if (!strcmp(nretry, "yes"))
			retry_forever = 1;
		else if (!strcmp(nretry, "no"))
			retrycnt = 0;
		else if (!strcmp(nretry, "once"))
			retrycnt = 1;
		else
			retrycnt = simple_strtoul(nretry, NULL, 0);
	} else
		retry_forever = 1;

	if ((!retry_forever) && (NetTryCount >= retrycnt)) {
		eth_halt();
651 652 653
		NetState = NETLOOP_FAIL;
		return;
	}
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	NetTryCount++;

657
	eth_halt();
658
#if !defined(CONFIG_NET_DO_NOT_TRY_ANOTHER)
659
	eth_try_another(!NetRestarted);
660
#endif
661
	eth_init(gd->bd);
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662
	if (NetRestartWrap) {
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663
		NetRestartWrap = 0;
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664
		if (NetDevExists) {
665 666
			NetSetTimeout(10000UL, startAgainTimeout);
			NetSetHandler(startAgainHandler);
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667
		} else {
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			NetState = NETLOOP_FAIL;
		}
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670
	} else {
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		NetState = NETLOOP_RESTART;
	}
}

/**********************************************************************/
/*
 *	Miscelaneous bits.
 */

void
681
NetSetHandler(rxhand_f *f)
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{
	packetHandler = f;
}

686
#ifdef CONFIG_CMD_TFTPPUT
687 688 689 690
void net_set_icmp_handler(rxhand_icmp_f *f)
{
	packet_icmp_handler = f;
}
691
#endif
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692 693

void
694
NetSetTimeout(ulong iv, thand_f *f)
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695 696 697 698 699
{
	if (iv == 0) {
		timeHandler = (thand_f *)0;
	} else {
		timeHandler = f;
700 701
		timeStart = get_timer(0);
		timeDelta = iv;
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702 703 704 705 706
	}
}


void
707
NetSendPacket(volatile uchar *pkt, int len)
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708 709 710 711
{
	(void) eth_send(pkt, len);
}

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int
NetSendUDPPacket(uchar *ether, IPaddr_t dest, int dport, int sport, int len)
{
715 716
	uchar *pkt;

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717 718 719 720 721 722 723 724
	/* convert to new style broadcast */
	if (dest == 0)
		dest = 0xFFFFFFFF;

	/* if broadcast, make the ether address a broadcast and don't do ARP */
	if (dest == 0xFFFFFFFF)
		ether = NetBcastAddr;

725 726 727 728
	/*
	 * if MAC address was not discovered yet, save the packet and do
	 * an ARP request
	 */
W
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	if (memcmp(ether, NetEtherNullAddr, 6) == 0) {

731
		debug("sending ARP for %08x\n", dest);
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732

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733 734
		NetArpWaitPacketIP = dest;
		NetArpWaitPacketMAC = ether;
735 736

		pkt = NetArpWaitTxPacket;
737
		pkt += NetSetEther(pkt, NetArpWaitPacketMAC, PROT_IP);
738

739
		NetSetIP(pkt, dest, dport, sport, len);
740 741
		memcpy(pkt + IP_HDR_SIZE, (uchar *)NetTxPacket +
		       (pkt - (uchar *)NetArpWaitTxPacket) + IP_HDR_SIZE, len);
W
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742 743

		/* size of the waiting packet */
744 745
		NetArpWaitTxPacketSize = (pkt - NetArpWaitTxPacket) +
			IP_HDR_SIZE + len;
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		/* and do the ARP request */
		NetArpWaitTry = 1;
		NetArpWaitTimerStart = get_timer(0);
		ArpRequest();
		return 1;	/* waiting */
	}

754
	debug("sending UDP to %08x/%pM\n", dest, ether);
W
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756
	pkt = (uchar *)NetTxPacket;
757 758
	pkt += NetSetEther(pkt, ether, PROT_IP);
	NetSetIP(pkt, dest, dport, sport, len);
759
	(void) eth_send(NetTxPacket, (pkt - NetTxPacket) + IP_HDR_SIZE + len);
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760

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761
	return 0;	/* transmitted */
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762 763
}

764
#if defined(CONFIG_CMD_PING)
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static ushort PingSeqNo;

int PingSend(void)
{
	static uchar mac[6];
	volatile IP_t *ip;
	volatile ushort *s;
772
	uchar *pkt;
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	/* XXX always send arp request */

	memcpy(mac, NetEtherNullAddr, 6);

778
	debug("sending ARP for %08x\n", NetPingIP);
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779 780 781 782

	NetArpWaitPacketIP = NetPingIP;
	NetArpWaitPacketMAC = mac;

783 784
	pkt = NetArpWaitTxPacket;
	pkt += NetSetEther(pkt, mac, PROT_IP);
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786
	ip = (volatile IP_t *)pkt;
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787 788

	/*
789 790
	 * Construct an IP and ICMP header.
	 * (need to set no fragment bit - XXX)
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791
	 */
792 793
	/* IP_HDR_SIZE / 4 (not including UDP) */
	ip->ip_hl_v  = 0x45;
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794 795 796
	ip->ip_tos   = 0;
	ip->ip_len   = htons(IP_HDR_SIZE_NO_UDP + 8);
	ip->ip_id    = htons(NetIPID++);
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797
	ip->ip_off   = htons(IP_FLAGS_DFRAG);	/* Don't fragment */
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798 799 800
	ip->ip_ttl   = 255;
	ip->ip_p     = 0x01;		/* ICMP */
	ip->ip_sum   = 0;
801
	/* already in network byte order */
802
	NetCopyIP((void *)&ip->ip_src, &NetOurIP);
803
	/* - "" - */
804
	NetCopyIP((void *)&ip->ip_dst, &NetPingIP);
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805 806 807 808 809
	ip->ip_sum   = ~NetCksum((uchar *)ip, IP_HDR_SIZE_NO_UDP / 2);

	s = &ip->udp_src;		/* XXX ICMP starts here */
	s[0] = htons(0x0800);		/* echo-request, code */
	s[1] = 0;			/* checksum */
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	s[2] = 0;			/* identifier */
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811 812 813 814
	s[3] = htons(PingSeqNo++);	/* sequence number */
	s[1] = ~NetCksum((uchar *)s, 8/2);

	/* size of the waiting packet */
815 816
	NetArpWaitTxPacketSize =
		(pkt - NetArpWaitTxPacket) + IP_HDR_SIZE_NO_UDP + 8;
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817 818 819 820 821 822 823 824 825

	/* and do the ARP request */
	NetArpWaitTry = 1;
	NetArpWaitTimerStart = get_timer(0);
	ArpRequest();
	return 1;	/* waiting */
}

static void
826
PingTimeout(void)
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827 828 829 830
{
	eth_halt();
	NetState = NETLOOP_FAIL;	/* we did not get the reply */
}
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832
static void
833 834
PingHandler(uchar *pkt, unsigned dest, IPaddr_t sip, unsigned src,
	    unsigned len)
W
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835
{
836
	if (sip != NetPingIP)
W
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837 838 839 840 841 842 843
		return;

	NetState = NETLOOP_SUCCESS;
}

static void PingStart(void)
{
844 845 846
	printf("Using %s device\n", eth_get_name());
	NetSetTimeout(10000UL, PingTimeout);
	NetSetHandler(PingHandler);
W
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847 848 849

	PingSend();
}
850
#endif
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851

852
#if defined(CONFIG_CMD_CDP)
853 854 855 856 857 858 859 860 861 862 863 864 865 866 867

#define CDP_DEVICE_ID_TLV		0x0001
#define CDP_ADDRESS_TLV			0x0002
#define CDP_PORT_ID_TLV			0x0003
#define CDP_CAPABILITIES_TLV		0x0004
#define CDP_VERSION_TLV			0x0005
#define CDP_PLATFORM_TLV		0x0006
#define CDP_NATIVE_VLAN_TLV		0x000a
#define CDP_APPLIANCE_VLAN_TLV		0x000e
#define CDP_TRIGGER_TLV			0x000f
#define CDP_POWER_CONSUMPTION_TLV	0x0010
#define CDP_SYSNAME_TLV			0x0014
#define CDP_SYSOBJECT_TLV		0x0015
#define CDP_MANAGEMENT_ADDRESS_TLV	0x0016

868
#define CDP_TIMEOUT			250UL	/* one packet every 250ms */
869 870 871 872 873 874 875

static int CDPSeq;
static int CDPOK;

ushort CDPNativeVLAN;
ushort CDPApplianceVLAN;

876 877
static const uchar CDP_SNAP_hdr[8] = { 0xAA, 0xAA, 0x03, 0x00, 0x00, 0x0C, 0x20,
				       0x00 };
878 879 880 881 882 883 884

static ushort CDP_compute_csum(const uchar *buff, ushort len)
{
	ushort csum;
	int     odd;
	ulong   result = 0;
	ushort  leftover;
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Wolfgang Denk 已提交
885
	ushort *p;
886 887 888 889 890 891 892 893 894

	if (len > 0) {
		odd = 1 & (ulong)buff;
		if (odd) {
			result = *buff << 8;
			len--;
			buff++;
		}
		while (len > 1) {
W
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895 896 897
			p = (ushort *)buff;
			result += *p++;
			buff = (uchar *)p;
898 899 900 901 902 903
			if (result & 0x80000000)
				result = (result & 0xFFFF) + (result >> 16);
			len -= 2;
		}
		if (len) {
			leftover = (signed short)(*(const signed char *)buff);
904 905 906 907
			/* CISCO SUCKS big time! (and blows too):
			 * CDP uses the IP checksum algorithm with a twist;
			 * for the last byte it *sign* extends and sums.
			 */
908 909
			result = (result & 0xffff0000) |
				 ((result + leftover) & 0x0000ffff);
910 911 912 913 914
		}
		while (result >> 16)
			result = (result & 0xFFFF) + (result >> 16);

		if (odd)
915 916
			result = ((result >> 8) & 0xff) |
				 ((result & 0xff) << 8);
917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943
	}

	/* add up 16-bit and 17-bit words for 17+c bits */
	result = (result & 0xffff) + (result >> 16);
	/* add up 16-bit and 2-bit for 16+c bit */
	result = (result & 0xffff) + (result >> 16);
	/* add up carry.. */
	result = (result & 0xffff) + (result >> 16);

	/* negate */
	csum = ~(ushort)result;

	/* run time endian detection */
	if (csum != htons(csum))	/* little endian */
		csum = htons(csum);

	return csum;
}

int CDPSendTrigger(void)
{
	volatile uchar *pkt;
	volatile ushort *s;
	volatile ushort *cp;
	Ethernet_t *et;
	int len;
	ushort chksum;
944 945
#if	defined(CONFIG_CDP_DEVICE_ID) || defined(CONFIG_CDP_PORT_ID)   || \
	defined(CONFIG_CDP_VERSION)   || defined(CONFIG_CDP_PLATFORM)
W
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946 947
	char buf[32];
#endif
948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968

	pkt = NetTxPacket;
	et = (Ethernet_t *)pkt;

	/* NOTE: trigger sent not on any VLAN */

	/* form ethernet header */
	memcpy(et->et_dest, NetCDPAddr, 6);
	memcpy(et->et_src, NetOurEther, 6);

	pkt += ETHER_HDR_SIZE;

	/* SNAP header */
	memcpy((uchar *)pkt, CDP_SNAP_hdr, sizeof(CDP_SNAP_hdr));
	pkt += sizeof(CDP_SNAP_hdr);

	/* CDP header */
	*pkt++ = 0x02;				/* CDP version 2 */
	*pkt++ = 180;				/* TTL */
	s = (volatile ushort *)pkt;
	cp = s;
969 970
	/* checksum (0 for later calculation) */
	*s++ = htons(0);
971 972 973 974 975

	/* CDP fields */
#ifdef CONFIG_CDP_DEVICE_ID
	*s++ = htons(CDP_DEVICE_ID_TLV);
	*s++ = htons(CONFIG_CDP_DEVICE_ID);
976
	sprintf(buf, CONFIG_CDP_DEVICE_ID_PREFIX "%pm", NetOurEther);
977 978 979 980 981 982 983 984 985 986 987 988 989 990 991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041
	memcpy((uchar *)s, buf, 16);
	s += 16 / 2;
#endif

#ifdef CONFIG_CDP_PORT_ID
	*s++ = htons(CDP_PORT_ID_TLV);
	memset(buf, 0, sizeof(buf));
	sprintf(buf, CONFIG_CDP_PORT_ID, eth_get_dev_index());
	len = strlen(buf);
	if (len & 1)	/* make it even */
		len++;
	*s++ = htons(len + 4);
	memcpy((uchar *)s, buf, len);
	s += len / 2;
#endif

#ifdef CONFIG_CDP_CAPABILITIES
	*s++ = htons(CDP_CAPABILITIES_TLV);
	*s++ = htons(8);
	*(ulong *)s = htonl(CONFIG_CDP_CAPABILITIES);
	s += 2;
#endif

#ifdef CONFIG_CDP_VERSION
	*s++ = htons(CDP_VERSION_TLV);
	memset(buf, 0, sizeof(buf));
	strcpy(buf, CONFIG_CDP_VERSION);
	len = strlen(buf);
	if (len & 1)	/* make it even */
		len++;
	*s++ = htons(len + 4);
	memcpy((uchar *)s, buf, len);
	s += len / 2;
#endif

#ifdef CONFIG_CDP_PLATFORM
	*s++ = htons(CDP_PLATFORM_TLV);
	memset(buf, 0, sizeof(buf));
	strcpy(buf, CONFIG_CDP_PLATFORM);
	len = strlen(buf);
	if (len & 1)	/* make it even */
		len++;
	*s++ = htons(len + 4);
	memcpy((uchar *)s, buf, len);
	s += len / 2;
#endif

#ifdef CONFIG_CDP_TRIGGER
	*s++ = htons(CDP_TRIGGER_TLV);
	*s++ = htons(8);
	*(ulong *)s = htonl(CONFIG_CDP_TRIGGER);
	s += 2;
#endif

#ifdef CONFIG_CDP_POWER_CONSUMPTION
	*s++ = htons(CDP_POWER_CONSUMPTION_TLV);
	*s++ = htons(6);
	*s++ = htons(CONFIG_CDP_POWER_CONSUMPTION);
#endif

	/* length of ethernet packet */
	len = (uchar *)s - ((uchar *)NetTxPacket + ETHER_HDR_SIZE);
	et->et_protlen = htons(len);

	len = ETHER_HDR_SIZE + sizeof(CDP_SNAP_hdr);
1042 1043
	chksum = CDP_compute_csum((uchar *)NetTxPacket + len,
				  (uchar *)s - (NetTxPacket + len));
1044 1045 1046 1047 1048 1049 1050 1051 1052
	if (chksum == 0)
		chksum = 0xFFFF;
	*cp = htons(chksum);

	(void) eth_send(NetTxPacket, (uchar *)s - NetTxPacket);
	return 0;
}

static void
1053
CDPTimeout(void)
1054 1055 1056 1057
{
	CDPSeq++;

	if (CDPSeq < 3) {
1058
		NetSetTimeout(CDP_TIMEOUT, CDPTimeout);
1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070
		CDPSendTrigger();
		return;
	}

	/* if not OK try again */
	if (!CDPOK)
		NetStartAgain();
	else
		NetState = NETLOOP_SUCCESS;
}

static void
1071 1072
CDPDummyHandler(uchar *pkt, unsigned dest, IPaddr_t sip, unsigned src,
		unsigned len)
1073 1074 1075 1076 1077
{
	/* nothing */
}

static void
1078
CDPHandler(const uchar *pkt, unsigned len)
1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099
{
	const uchar *t;
	const ushort *ss;
	ushort type, tlen;
	ushort vlan, nvlan;

	/* minimum size? */
	if (len < sizeof(CDP_SNAP_hdr) + 4)
		goto pkt_short;

	/* check for valid CDP SNAP header */
	if (memcmp(pkt, CDP_SNAP_hdr, sizeof(CDP_SNAP_hdr)) != 0)
		return;

	pkt += sizeof(CDP_SNAP_hdr);
	len -= sizeof(CDP_SNAP_hdr);

	/* Version of CDP protocol must be >= 2 and TTL != 0 */
	if (pkt[0] < 0x02 || pkt[1] == 0)
		return;

1100 1101 1102 1103
	/*
	 * if version is greater than 0x02 maybe we'll have a problem;
	 * output a warning
	 */
1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122
	if (pkt[0] != 0x02)
		printf("** WARNING: CDP packet received with a protocol version %d > 2\n",
				pkt[0] & 0xff);

	if (CDP_compute_csum(pkt, len) != 0)
		return;

	pkt += 4;
	len -= 4;

	vlan = htons(-1);
	nvlan = htons(-1);
	while (len > 0) {
		if (len < 4)
			goto pkt_short;

		ss = (const ushort *)pkt;
		type = ntohs(ss[0]);
		tlen = ntohs(ss[1]);
1123
		if (tlen > len)
1124 1125 1126 1127 1128 1129 1130 1131 1132
			goto pkt_short;

		pkt += tlen;
		len -= tlen;

		ss += 2;	/* point ss to the data of the TLV */
		tlen -= 4;

		switch (type) {
1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152
		case CDP_DEVICE_ID_TLV:
			break;
		case CDP_ADDRESS_TLV:
			break;
		case CDP_PORT_ID_TLV:
			break;
		case CDP_CAPABILITIES_TLV:
			break;
		case CDP_VERSION_TLV:
			break;
		case CDP_PLATFORM_TLV:
			break;
		case CDP_NATIVE_VLAN_TLV:
			nvlan = *ss;
			break;
		case CDP_APPLIANCE_VLAN_TLV:
			t = (const uchar *)ss;
			while (tlen > 0) {
				if (tlen < 3)
					goto pkt_short;
1153

1154
				ss = (const ushort *)(t + 1);
1155 1156

#ifdef CONFIG_CDP_APPLIANCE_VLAN_TYPE
1157
				if (t[0] == CONFIG_CDP_APPLIANCE_VLAN_TYPE)
1158
					vlan = *ss;
1159
#else
1160 1161
				/* XXX will this work; dunno */
				vlan = ntohs(*ss);
1162
#endif
1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175
				t += 3; tlen -= 3;
			}
			break;
		case CDP_TRIGGER_TLV:
			break;
		case CDP_POWER_CONSUMPTION_TLV:
			break;
		case CDP_SYSNAME_TLV:
			break;
		case CDP_SYSOBJECT_TLV:
			break;
		case CDP_MANAGEMENT_ADDRESS_TLV:
			break;
1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191
		}
	}

	CDPApplianceVLAN = vlan;
	CDPNativeVLAN = nvlan;

	CDPOK = 1;
	return;

 pkt_short:
	printf("** CDP packet is too short\n");
	return;
}

static void CDPStart(void)
{
1192
	printf("Using %s device\n", eth_get_name());
1193 1194 1195 1196 1197 1198
	CDPSeq = 0;
	CDPOK = 0;

	CDPNativeVLAN = htons(-1);
	CDPApplianceVLAN = htons(-1);

1199 1200
	NetSetTimeout(CDP_TIMEOUT, CDPTimeout);
	NetSetHandler(CDPDummyHandler);
1201 1202 1203

	CDPSendTrigger();
}
1204
#endif
1205

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#ifdef CONFIG_IP_DEFRAG
/*
 * This function collects fragments in a single packet, according
 * to the algorithm in RFC815. It returns NULL or the pointer to
 * a complete packet, in static storage
 */
#ifndef CONFIG_NET_MAXDEFRAG
#define CONFIG_NET_MAXDEFRAG 16384
#endif
/*
 * MAXDEFRAG, above, is chosen in the config file and  is real data
 * so we need to add the NFS overhead, which is more than TFTP.
 * To use sizeof in the internal unnamed structures, we need a real
 * instance (can't do "sizeof(struct rpc_t.u.reply))", unfortunately).
 * The compiler doesn't complain nor allocates the actual structure
 */
static struct rpc_t rpc_specimen;
#define IP_PKTSIZE (CONFIG_NET_MAXDEFRAG + sizeof(rpc_specimen.u.reply))

#define IP_MAXUDP (IP_PKTSIZE - IP_HDR_SIZE_NO_UDP)

/*
 * this is the packet being assembled, either data or frag control.
 * Fragments go by 8 bytes, so this union must be 8 bytes long
 */
struct hole {
	/* first_byte is address of this structure */
	u16 last_byte;	/* last byte in this hole + 1 (begin of next hole) */
	u16 next_hole;	/* index of next (in 8-b blocks), 0 == none */
	u16 prev_hole;	/* index of prev, 0 == none */
	u16 unused;
};

static IP_t *__NetDefragment(IP_t *ip, int *lenp)
{
	static uchar pkt_buff[IP_PKTSIZE] __attribute__((aligned(PKTALIGN)));
	static u16 first_hole, total_len;
	struct hole *payload, *thisfrag, *h, *newh;
	IP_t *localip = (IP_t *)pkt_buff;
	uchar *indata = (uchar *)ip;
	int offset8, start, len, done = 0;
	u16 ip_off = ntohs(ip->ip_off);

	/* payload starts after IP header, this fragment is in there */
	payload = (struct hole *)(pkt_buff + IP_HDR_SIZE_NO_UDP);
	offset8 =  (ip_off & IP_OFFS);
	thisfrag = payload + offset8;
	start = offset8 * 8;
	len = ntohs(ip->ip_len) - IP_HDR_SIZE_NO_UDP;

	if (start + len > IP_MAXUDP) /* fragment extends too far */
		return NULL;

	if (!total_len || localip->ip_id != ip->ip_id) {
		/* new (or different) packet, reset structs */
		total_len = 0xffff;
		payload[0].last_byte = ~0;
		payload[0].next_hole = 0;
		payload[0].prev_hole = 0;
		first_hole = 0;
		/* any IP header will work, copy the first we received */
		memcpy(localip, ip, IP_HDR_SIZE_NO_UDP);
	}

	/*
	 * What follows is the reassembly algorithm. We use the payload
	 * array as a linked list of hole descriptors, as each hole starts
	 * at a multiple of 8 bytes. However, last byte can be whatever value,
	 * so it is represented as byte count, not as 8-byte blocks.
	 */

	h = payload + first_hole;
	while (h->last_byte < start) {
		if (!h->next_hole) {
			/* no hole that far away */
			return NULL;
		}
		h = payload + h->next_hole;
	}

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	/* last fragment may be 1..7 bytes, the "+7" forces acceptance */
	if (offset8 + ((len + 7) / 8) <= h - payload) {
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		/* no overlap with holes (dup fragment?) */
		return NULL;
	}

	if (!(ip_off & IP_FLAGS_MFRAG)) {
		/* no more fragmentss: truncate this (last) hole */
		total_len = start + len;
		h->last_byte = start + len;
	}

	/*
	 * There is some overlap: fix the hole list. This code doesn't
	 * deal with a fragment that overlaps with two different holes
	 * (thus being a superset of a previously-received fragment).
	 */

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	if ((h >= thisfrag) && (h->last_byte <= start + len)) {
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		/* complete overlap with hole: remove hole */
		if (!h->prev_hole && !h->next_hole) {
			/* last remaining hole */
			done = 1;
		} else if (!h->prev_hole) {
			/* first hole */
			first_hole = h->next_hole;
			payload[h->next_hole].prev_hole = 0;
		} else if (!h->next_hole) {
			/* last hole */
			payload[h->prev_hole].next_hole = 0;
		} else {
			/* in the middle of the list */
			payload[h->next_hole].prev_hole = h->prev_hole;
			payload[h->prev_hole].next_hole = h->next_hole;
		}

	} else if (h->last_byte <= start + len) {
		/* overlaps with final part of the hole: shorten this hole */
		h->last_byte = start;

	} else if (h >= thisfrag) {
		/* overlaps with initial part of the hole: move this hole */
		newh = thisfrag + (len / 8);
		*newh = *h;
		h = newh;
		if (h->next_hole)
			payload[h->next_hole].prev_hole = (h - payload);
		if (h->prev_hole)
			payload[h->prev_hole].next_hole = (h - payload);
		else
			first_hole = (h - payload);

	} else {
		/* fragment sits in the middle: split the hole */
		newh = thisfrag + (len / 8);
		*newh = *h;
		h->last_byte = start;
		h->next_hole = (newh - payload);
		newh->prev_hole = (h - payload);
		if (newh->next_hole)
			payload[newh->next_hole].prev_hole = (newh - payload);
	}

	/* finally copy this fragment and possibly return whole packet */
	memcpy((uchar *)thisfrag, indata + IP_HDR_SIZE_NO_UDP, len);
	if (!done)
		return NULL;

	localip->ip_len = htons(total_len);
	*lenp = total_len + IP_HDR_SIZE_NO_UDP;
	return localip;
}

static inline IP_t *NetDefragment(IP_t *ip, int *lenp)
{
	u16 ip_off = ntohs(ip->ip_off);
	if (!(ip_off & (IP_OFFS | IP_FLAGS_MFRAG)))
		return ip; /* not a fragment */
	return __NetDefragment(ip, lenp);
}

#else /* !CONFIG_IP_DEFRAG */

static inline IP_t *NetDefragment(IP_t *ip, int *lenp)
{
	u16 ip_off = ntohs(ip->ip_off);
	if (!(ip_off & (IP_OFFS | IP_FLAGS_MFRAG)))
		return ip; /* not a fragment */
	return NULL;
}
#endif
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/**
 * Receive an ICMP packet. We deal with REDIRECT and PING here, and silently
 * drop others.
 *
 * @parma ip	IP packet containing the ICMP
 */
static void receive_icmp(IP_t *ip, int len, IPaddr_t src_ip, Ethernet_t *et)
{
	ICMP_t *icmph = (ICMP_t *)&ip->udp_src;

	switch (icmph->type) {
	case ICMP_REDIRECT:
		if (icmph->code != ICMP_REDIR_HOST)
			return;
		printf(" ICMP Host Redirect to %pI4 ",
			&icmph->un.gateway);
		break;
#if defined(CONFIG_CMD_PING)
	case ICMP_ECHO_REPLY:
		/*
			* IP header OK.  Pass the packet to the
			* current handler.
			*/
		/*
		 * XXX point to ip packet - should this use
		 * packet_icmp_handler?
		 */
		(*packetHandler)((uchar *)ip, 0, src_ip, 0, 0);
		break;
	case ICMP_ECHO_REQUEST:
		debug("Got ICMP ECHO REQUEST, return %d bytes\n",
			ETHER_HDR_SIZE + len);

		memcpy(&et->et_dest[0], &et->et_src[0], 6);
		memcpy(&et->et_src[0], NetOurEther, 6);

		ip->ip_sum = 0;
		ip->ip_off = 0;
		NetCopyIP((void *)&ip->ip_dst, &ip->ip_src);
		NetCopyIP((void *)&ip->ip_src, &NetOurIP);
		ip->ip_sum = ~NetCksum((uchar *)ip,
					IP_HDR_SIZE_NO_UDP >> 1);

		icmph->type = ICMP_ECHO_REPLY;
		icmph->checksum = 0;
		icmph->checksum = ~NetCksum((uchar *)icmph,
			(len - IP_HDR_SIZE_NO_UDP) >> 1);
		(void) eth_send((uchar *)et,
				ETHER_HDR_SIZE + len);
		break;
#endif
	default:
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#ifdef CONFIG_CMD_TFTPPUT
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		if (packet_icmp_handler)
			packet_icmp_handler(icmph->type, icmph->code,
				ntohs(ip->udp_dst), src_ip, ntohs(ip->udp_src),
				icmph->un.data, ntohs(ip->udp_len));
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#endif
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		break;
	}
}

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void
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NetReceive(volatile uchar *inpkt, int len)
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{
	Ethernet_t *et;
	IP_t	*ip;
	ARP_t	*arp;
	IPaddr_t tmp;
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	IPaddr_t src_ip;
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	int	x;
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	uchar *pkt;
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#if defined(CONFIG_CMD_CDP)
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	int iscdp;
#endif
	ushort cti = 0, vlanid = VLAN_NONE, myvlanid, mynvlanid;

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	debug("packet received\n");
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	NetRxPacket = inpkt;
	NetRxPacketLen = len;
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	et = (Ethernet_t *)inpkt;

	/* too small packet? */
	if (len < ETHER_HDR_SIZE)
		return;

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#ifdef CONFIG_API
	if (push_packet) {
		(*push_packet)(inpkt, len);
		return;
	}
#endif

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#if defined(CONFIG_CMD_CDP)
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	/* keep track if packet is CDP */
	iscdp = memcmp(et->et_dest, NetCDPAddr, 6) == 0;
#endif

	myvlanid = ntohs(NetOurVLAN);
	if (myvlanid == (ushort)-1)
		myvlanid = VLAN_NONE;
	mynvlanid = ntohs(NetOurNativeVLAN);
	if (mynvlanid == (ushort)-1)
		mynvlanid = VLAN_NONE;
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	x = ntohs(et->et_protlen);

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	debug("packet received\n");
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	if (x < 1514) {
		/*
		 *	Got a 802 packet.  Check the other protocol field.
		 */
		x = ntohs(et->et_prot);
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		ip = (IP_t *)(inpkt + E802_HDR_SIZE);
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		len -= E802_HDR_SIZE;
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	} else if (x != PROT_VLAN) {	/* normal packet */
		ip = (IP_t *)(inpkt + ETHER_HDR_SIZE);
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		len -= ETHER_HDR_SIZE;
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	} else {			/* VLAN packet */
		VLAN_Ethernet_t *vet = (VLAN_Ethernet_t *)et;

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		debug("VLAN packet received\n");

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		/* too small packet? */
		if (len < VLAN_ETHER_HDR_SIZE)
			return;

		/* if no VLAN active */
		if ((ntohs(NetOurVLAN) & VLAN_IDMASK) == VLAN_NONE
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#if defined(CONFIG_CMD_CDP)
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				&& iscdp == 0
#endif
				)
			return;

		cti = ntohs(vet->vet_tag);
		vlanid = cti & VLAN_IDMASK;
		x = ntohs(vet->vet_type);

		ip = (IP_t *)(inpkt + VLAN_ETHER_HDR_SIZE);
		len -= VLAN_ETHER_HDR_SIZE;
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	}

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	debug("Receive from protocol 0x%x\n", x);
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#if defined(CONFIG_CMD_CDP)
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	if (iscdp) {
		CDPHandler((uchar *)ip, len);
		return;
	}
#endif

	if ((myvlanid & VLAN_IDMASK) != VLAN_NONE) {
		if (vlanid == VLAN_NONE)
			vlanid = (mynvlanid & VLAN_IDMASK);
		/* not matched? */
		if (vlanid != (myvlanid & VLAN_IDMASK))
			return;
	}

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	switch (x) {

	case PROT_ARP:
		/*
		 * We have to deal with two types of ARP packets:
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		 * - REQUEST packets will be answered by sending  our
		 *   IP address - if we know it.
		 * - REPLY packates are expected only after we asked
		 *   for the TFTP server's or the gateway's ethernet
		 *   address; so if we receive such a packet, we set
		 *   the server ethernet address
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		 */
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		debug("Got ARP\n");

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		arp = (ARP_t *)ip;
		if (len < ARP_HDR_SIZE) {
			printf("bad length %d < %d\n", len, ARP_HDR_SIZE);
			return;
		}
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		if (ntohs(arp->ar_hrd) != ARP_ETHER)
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			return;
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		if (ntohs(arp->ar_pro) != PROT_IP)
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			return;
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		if (arp->ar_hln != 6)
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			return;
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		if (arp->ar_pln != 4)
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			return;

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		if (NetOurIP == 0)
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			return;

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		if (NetReadIP(&arp->ar_data[16]) != NetOurIP)
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			return;

		switch (ntohs(arp->ar_op)) {
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		case ARPOP_REQUEST:
			/* reply with our IP address */
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			debug("Got ARP REQUEST, return our IP\n");
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			pkt = (uchar *)et;
			pkt += NetSetEther(pkt, et->et_src, PROT_ARP);
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			arp->ar_op = htons(ARPOP_REPLY);
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			memcpy(&arp->ar_data[10], &arp->ar_data[0], 6);
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			NetCopyIP(&arp->ar_data[16], &arp->ar_data[6]);
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			memcpy(&arp->ar_data[0], NetOurEther, 6);
			NetCopyIP(&arp->ar_data[6], &NetOurIP);
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			(void) eth_send((uchar *)et,
					(pkt - (uchar *)et) + ARP_HDR_SIZE);
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			return;
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		case ARPOP_REPLY:		/* arp reply */
			/* are we waiting for a reply */
			if (!NetArpWaitPacketIP || !NetArpWaitPacketMAC)
				break;
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#ifdef CONFIG_KEEP_SERVERADDR
			if (NetServerIP == NetArpWaitPacketIP) {
				char buf[20];
				sprintf(buf, "%pM", arp->ar_data);
				setenv("serveraddr", buf);
			}
#endif

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			debug("Got ARP REPLY, set server/gtwy eth addr (%pM)\n",
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				arp->ar_data);
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			tmp = NetReadIP(&arp->ar_data[6]);

			/* matched waiting packet's address */
			if (tmp == NetArpWaitReplyIP) {
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				debug("Got it\n");
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				/* save address for later use */
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				memcpy(NetArpWaitPacketMAC,
				       &arp->ar_data[0], 6);
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#ifdef CONFIG_NETCONSOLE
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				(*packetHandler)(0, 0, 0, 0, 0);
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#endif
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				/* modify header, and transmit it */
				memcpy(((Ethernet_t *)NetArpWaitTxPacket)->et_dest, NetArpWaitPacketMAC, 6);
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				(void) eth_send(NetArpWaitTxPacket,
						NetArpWaitTxPacketSize);
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				/* no arp request pending now */
				NetArpWaitPacketIP = 0;
				NetArpWaitTxPacketSize = 0;
				NetArpWaitPacketMAC = NULL;

			}
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			return;
		default:
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			debug("Unexpected ARP opcode 0x%x\n",
			      ntohs(arp->ar_op));
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			return;
		}
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		break;
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#ifdef CONFIG_CMD_RARP
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	case PROT_RARP:
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		debug("Got RARP\n");
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		arp = (ARP_t *)ip;
		if (len < ARP_HDR_SIZE) {
			printf("bad length %d < %d\n", len, ARP_HDR_SIZE);
			return;
		}

		if ((ntohs(arp->ar_op) != RARPOP_REPLY) ||
			(ntohs(arp->ar_hrd) != ARP_ETHER)   ||
			(ntohs(arp->ar_pro) != PROT_IP)     ||
			(arp->ar_hln != 6) || (arp->ar_pln != 4)) {

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			puts("invalid RARP header\n");
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		} else {
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			NetCopyIP(&NetOurIP, &arp->ar_data[16]);
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			if (NetServerIP == 0)
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				NetCopyIP(&NetServerIP, &arp->ar_data[6]);
			memcpy(NetServerEther, &arp->ar_data[0], 6);
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			(*packetHandler)(0, 0, 0, 0, 0);
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		}
		break;
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#endif
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	case PROT_IP:
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		debug("Got IP\n");
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		/* Before we start poking the header, make sure it is there */
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		if (len < IP_HDR_SIZE) {
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			debug("len bad %d < %lu\n", len, (ulong)IP_HDR_SIZE);
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			return;
		}
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		/* Check the packet length */
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		if (len < ntohs(ip->ip_len)) {
			printf("len bad %d < %d\n", len, ntohs(ip->ip_len));
			return;
		}
		len = ntohs(ip->ip_len);
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		debug("len=%d, v=%02x\n", len, ip->ip_hl_v & 0xff);

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		/* Can't deal with anything except IPv4 */
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		if ((ip->ip_hl_v & 0xf0) != 0x40)
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			return;
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		/* Can't deal with IP options (headers != 20 bytes) */
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		if ((ip->ip_hl_v & 0x0f) > 0x05)
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			return;
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		/* Check the Checksum of the header */
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		if (!NetCksumOk((uchar *)ip, IP_HDR_SIZE_NO_UDP / 2)) {
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			puts("checksum bad\n");
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			return;
		}
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		/* If it is not for us, ignore it */
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		tmp = NetReadIP(&ip->ip_dst);
		if (NetOurIP && tmp != NetOurIP && tmp != 0xFFFFFFFF) {
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#ifdef CONFIG_MCAST_TFTP
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			if (Mcast_addr != tmp)
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#endif
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				return;
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		}
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		/* Read source IP address for later use */
		src_ip = NetReadIP(&ip->ip_src);
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		/*
		 * The function returns the unchanged packet if it's not
		 * a fragment, and either the complete packet or NULL if
		 * it is a fragment (if !CONFIG_IP_DEFRAG, it returns NULL)
		 */
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		ip = NetDefragment(ip, &len);
		if (!ip)
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			return;
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		/*
		 * watch for ICMP host redirects
		 *
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		 * There is no real handler code (yet). We just watch
		 * for ICMP host redirect messages. In case anybody
		 * sees these messages: please contact me
		 * (wd@denx.de), or - even better - send me the
		 * necessary fixes :-)
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		 *
W
wdenk 已提交
1717 1718 1719 1720 1721 1722 1723
		 * Note: in all cases where I have seen this so far
		 * it was a problem with the router configuration,
		 * for instance when a router was configured in the
		 * BOOTP reply, but the TFTP server was on the same
		 * subnet. So this is probably a warning that your
		 * configuration might be wrong. But I'm not really
		 * sure if there aren't any other situations.
1724 1725 1726 1727
		 *
		 * Simon Glass <sjg@chromium.org>: We get an ICMP when
		 * we send a tftp packet to a dead connection, or when
		 * there is no server at the other end.
W
wdenk 已提交
1728 1729
		 */
		if (ip->ip_p == IPPROTO_ICMP) {
1730 1731
			receive_icmp(ip, len, src_ip, et);
			return;
W
wdenk 已提交
1732 1733 1734 1735
		} else if (ip->ip_p != IPPROTO_UDP) {	/* Only UDP packets */
			return;
		}

1736 1737
#ifdef CONFIG_UDP_CHECKSUM
		if (ip->udp_xsum != 0) {
W
Wolfgang Denk 已提交
1738
			ulong   xsum;
1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752
			ushort *sumptr;
			ushort  sumlen;

			xsum  = ip->ip_p;
			xsum += (ntohs(ip->udp_len));
			xsum += (ntohl(ip->ip_src) >> 16) & 0x0000ffff;
			xsum += (ntohl(ip->ip_src) >>  0) & 0x0000ffff;
			xsum += (ntohl(ip->ip_dst) >> 16) & 0x0000ffff;
			xsum += (ntohl(ip->ip_dst) >>  0) & 0x0000ffff;

			sumlen = ntohs(ip->udp_len);
			sumptr = (ushort *) &(ip->udp_src);

			while (sumlen > 1) {
W
Wolfgang Denk 已提交
1753
				ushort sumdata;
1754 1755 1756 1757 1758 1759

				sumdata = *sumptr++;
				xsum += ntohs(sumdata);
				sumlen -= 2;
			}
			if (sumlen > 0) {
W
Wolfgang Denk 已提交
1760
				ushort sumdata;
1761 1762

				sumdata = *(unsigned char *) sumptr;
W
Wolfgang Denk 已提交
1763
				sumdata = (sumdata << 8) & 0xff00;
1764 1765 1766
				xsum += sumdata;
			}
			while ((xsum >> 16) != 0) {
1767 1768
				xsum = (xsum & 0x0000ffff) +
				       ((xsum >> 16) & 0x0000ffff);
1769 1770
			}
			if ((xsum != 0x00000000) && (xsum != 0x0000ffff)) {
1771 1772
				printf(" UDP wrong checksum %08lx %08x\n",
					xsum, ntohs(ip->udp_xsum));
1773 1774 1775 1776 1777
				return;
			}
		}
#endif

D
David Updegraff 已提交
1778

1779
#ifdef CONFIG_NETCONSOLE
1780
		nc_input_packet((uchar *)ip + IP_HDR_SIZE,
1781 1782 1783 1784
						ntohs(ip->udp_dst),
						ntohs(ip->udp_src),
						ntohs(ip->udp_len) - 8);
#endif
W
wdenk 已提交
1785 1786 1787
		/*
		 *	IP header OK.  Pass the packet to the current handler.
		 */
1788
		(*packetHandler)((uchar *)ip + IP_HDR_SIZE,
W
wdenk 已提交
1789
						ntohs(ip->udp_dst),
1790
						src_ip,
W
wdenk 已提交
1791 1792 1793 1794 1795 1796 1797 1798 1799
						ntohs(ip->udp_src),
						ntohs(ip->udp_len) - 8);
		break;
	}
}


/**********************************************************************/

S
Simon Glass 已提交
1800
static int net_check_prereq(enum proto_t protocol)
W
wdenk 已提交
1801 1802
{
	switch (protocol) {
W
wdenk 已提交
1803
		/* Fall through */
1804
#if defined(CONFIG_CMD_PING)
W
wdenk 已提交
1805
	case PING:
W
wdenk 已提交
1806
		if (NetPingIP == 0) {
1807
			puts("*** ERROR: ping address not given\n");
1808
			return 1;
W
wdenk 已提交
1809 1810
		}
		goto common;
W
wdenk 已提交
1811
#endif
1812
#if defined(CONFIG_CMD_SNTP)
W
wdenk 已提交
1813 1814
	case SNTP:
		if (NetNtpServerIP == 0) {
1815
			puts("*** ERROR: NTP server address not given\n");
1816
			return 1;
W
wdenk 已提交
1817 1818 1819
		}
		goto common;
#endif
R
Robin Getz 已提交
1820 1821 1822 1823 1824 1825 1826 1827
#if defined(CONFIG_CMD_DNS)
	case DNS:
		if (NetOurDNSIP == 0) {
			puts("*** ERROR: DNS server address not given\n");
			return 1;
		}
		goto common;
#endif
1828
#if defined(CONFIG_CMD_NFS)
W
wdenk 已提交
1829
	case NFS:
W
wdenk 已提交
1830
#endif
S
Simon Glass 已提交
1831
	case TFTPGET:
S
Simon Glass 已提交
1832
	case TFTPPUT:
W
wdenk 已提交
1833
		if (NetServerIP == 0) {
1834
			puts("*** ERROR: `serverip' not set\n");
1835
			return 1;
W
wdenk 已提交
1836
		}
1837 1838 1839
#if	defined(CONFIG_CMD_PING) || defined(CONFIG_CMD_SNTP) || \
	defined(CONFIG_CMD_DNS)
common:
W
wdenk 已提交
1840
#endif
1841
		/* Fall through */
W
wdenk 已提交
1842

1843
	case NETCONS:
L
Luca Ceresoli 已提交
1844
	case TFTPSRV:
W
wdenk 已提交
1845
		if (NetOurIP == 0) {
1846
			puts("*** ERROR: `ipaddr' not set\n");
1847
			return 1;
W
wdenk 已提交
1848 1849
		}
		/* Fall through */
W
wdenk 已提交
1850

1851
#ifdef CONFIG_CMD_RARP
W
wdenk 已提交
1852
	case RARP:
1853
#endif
W
wdenk 已提交
1854
	case BOOTP:
1855
	case CDP:
1856
	case DHCP:
1857 1858 1859
		if (memcmp(NetOurEther, "\0\0\0\0\0\0", 6) == 0) {
			extern int eth_get_dev_index(void);
			int num = eth_get_dev_index();
W
wdenk 已提交
1860

W
wdenk 已提交
1861 1862
			switch (num) {
			case -1:
1863
				puts("*** ERROR: No ethernet found.\n");
1864
				return 1;
W
wdenk 已提交
1865
			case 0:
1866
				puts("*** ERROR: `ethaddr' not set\n");
W
wdenk 已提交
1867
				break;
W
wdenk 已提交
1868
			default:
1869
				printf("*** ERROR: `eth%daddr' not set\n",
W
wdenk 已提交
1870 1871
					num);
				break;
W
wdenk 已提交
1872
			}
W
wdenk 已提交
1873

1874
			NetStartAgain();
1875
			return 2;
W
wdenk 已提交
1876 1877 1878
		}
		/* Fall through */
	default:
1879
		return 0;
W
wdenk 已提交
1880
	}
1881
	return 0;		/* OK */
W
wdenk 已提交
1882 1883 1884 1885
}
/**********************************************************************/

int
1886
NetCksumOk(uchar *ptr, int len)
W
wdenk 已提交
1887 1888 1889 1890 1891 1892
{
	return !((NetCksum(ptr, len) + 1) & 0xfffe);
}


unsigned
1893
NetCksum(uchar *ptr, int len)
W
wdenk 已提交
1894 1895
{
	ulong	xsum;
1896
	ushort *p = (ushort *)ptr;
W
wdenk 已提交
1897 1898 1899

	xsum = 0;
	while (len-- > 0)
W
Wolfgang Denk 已提交
1900
		xsum += *p++;
W
wdenk 已提交
1901 1902
	xsum = (xsum & 0xffff) + (xsum >> 16);
	xsum = (xsum & 0xffff) + (xsum >> 16);
1903
	return xsum & 0xffff;
W
wdenk 已提交
1904 1905
}

1906 1907 1908 1909
int
NetEthHdrSize(void)
{
	ushort myvlanid;
W
wdenk 已提交
1910

1911 1912 1913 1914
	myvlanid = ntohs(NetOurVLAN);
	if (myvlanid == (ushort)-1)
		myvlanid = VLAN_NONE;

1915 1916
	return ((myvlanid & VLAN_IDMASK) == VLAN_NONE) ? ETHER_HDR_SIZE :
		VLAN_ETHER_HDR_SIZE;
1917 1918 1919
}

int
1920
NetSetEther(volatile uchar *xet, uchar * addr, uint prot)
W
wdenk 已提交
1921 1922
{
	Ethernet_t *et = (Ethernet_t *)xet;
1923 1924 1925 1926 1927
	ushort myvlanid;

	myvlanid = ntohs(NetOurVLAN);
	if (myvlanid == (ushort)-1)
		myvlanid = VLAN_NONE;
W
wdenk 已提交
1928

1929 1930
	memcpy(et->et_dest, addr, 6);
	memcpy(et->et_src, NetOurEther, 6);
1931
	if ((myvlanid & VLAN_IDMASK) == VLAN_NONE) {
1932
		et->et_protlen = htons(prot);
1933 1934 1935
		return ETHER_HDR_SIZE;
	} else {
		VLAN_Ethernet_t *vet = (VLAN_Ethernet_t *)xet;
W
wdenk 已提交
1936

1937 1938 1939 1940 1941 1942
		vet->vet_vlan_type = htons(PROT_VLAN);
		vet->vet_tag = htons((0 << 5) | (myvlanid & VLAN_IDMASK));
		vet->vet_type = htons(prot);
		return VLAN_ETHER_HDR_SIZE;
	}
}
W
wdenk 已提交
1943 1944

void
1945
NetSetIP(volatile uchar *xip, IPaddr_t dest, int dport, int sport, int len)
W
wdenk 已提交
1946
{
O
Olav Morken 已提交
1947
	IP_t *ip = (IP_t *)xip;
W
wdenk 已提交
1948 1949 1950 1951 1952 1953 1954 1955 1956 1957 1958

	/*
	 *	If the data is an odd number of bytes, zero the
	 *	byte after the last byte so that the checksum
	 *	will work.
	 */
	if (len & 1)
		xip[IP_HDR_SIZE + len] = 0;

	/*
	 *	Construct an IP and UDP header.
W
wdenk 已提交
1959
	 *	(need to set no fragment bit - XXX)
W
wdenk 已提交
1960
	 */
1961 1962
	/* IP_HDR_SIZE / 4 (not including UDP) */
	ip->ip_hl_v  = 0x45;
W
wdenk 已提交
1963 1964 1965
	ip->ip_tos   = 0;
	ip->ip_len   = htons(IP_HDR_SIZE + len);
	ip->ip_id    = htons(NetIPID++);
P
Peter Tyser 已提交
1966
	ip->ip_off   = htons(IP_FLAGS_DFRAG);	/* Don't fragment */
W
wdenk 已提交
1967 1968 1969
	ip->ip_ttl   = 255;
	ip->ip_p     = 17;		/* UDP */
	ip->ip_sum   = 0;
1970
	/* already in network byte order */
1971
	NetCopyIP((void *)&ip->ip_src, &NetOurIP);
1972
	/* - "" - */
1973
	NetCopyIP((void *)&ip->ip_dst, &dest);
W
wdenk 已提交
1974 1975 1976 1977 1978 1979 1980
	ip->udp_src  = htons(sport);
	ip->udp_dst  = htons(dport);
	ip->udp_len  = htons(8 + len);
	ip->udp_xsum = 0;
	ip->ip_sum   = ~NetCksum((uchar *)ip, IP_HDR_SIZE_NO_UDP / 2);
}

1981
void copy_filename(char *dst, const char *src, int size)
W
wdenk 已提交
1982 1983 1984 1985 1986 1987
{
	if (*src && (*src == '"')) {
		++src;
		--size;
	}

1988
	while ((--size > 0) && *src && (*src != '"'))
W
wdenk 已提交
1989 1990 1991 1992
		*dst++ = *src++;
	*dst = '\0';
}

1993 1994 1995
#if	defined(CONFIG_CMD_NFS)		|| \
	defined(CONFIG_CMD_SNTP)	|| \
	defined(CONFIG_CMD_DNS)
R
Robin Getz 已提交
1996
/*
1997 1998 1999
 * make port a little random (1024-17407)
 * This keeps the math somewhat trivial to compute, and seems to work with
 * all supported protocols/clients/servers
R
Robin Getz 已提交
2000 2001 2002
 */
unsigned int random_port(void)
{
2003
	return 1024 + (get_timer(0) % 0x4000);
R
Robin Getz 已提交
2004 2005 2006
}
#endif

2007
void ip_to_string(IPaddr_t x, char *s)
W
wdenk 已提交
2008
{
2009 2010 2011 2012 2013
	x = ntohl(x);
	sprintf(s, "%d.%d.%d.%d",
		(int) ((x >> 24) & 0xff),
		(int) ((x >> 16) & 0xff),
		(int) ((x >> 8) & 0xff), (int) ((x >> 0) & 0xff)
W
wdenk 已提交
2014
	);
W
wdenk 已提交
2015 2016
}

2017 2018 2019 2020 2021 2022 2023 2024 2025 2026 2027 2028 2029
void VLAN_to_string(ushort x, char *s)
{
	x = ntohs(x);

	if (x == (ushort)-1)
		x = VLAN_NONE;

	if (x == VLAN_NONE)
		strcpy(s, "none");
	else
		sprintf(s, "%d", x & VLAN_IDMASK);
}

2030
ushort string_to_VLAN(const char *s)
2031 2032 2033 2034
{
	ushort id;

	if (s == NULL)
W
wdenk 已提交
2035
		return htons(VLAN_NONE);
2036 2037 2038 2039 2040 2041

	if (*s < '0' || *s > '9')
		id = VLAN_NONE;
	else
		id = (ushort)simple_strtoul(s, NULL, 10);

W
wdenk 已提交
2042
	return htons(id);
2043 2044 2045 2046
}

ushort getenv_VLAN(char *var)
{
2047
	return string_to_VLAN(getenv(var));
2048
}