# endif
#endif /* CONFIG_8xx */
-#if defined(CONFIG_MPC5XXX)
+#if defined(CONFIG_MPC5xxx)
# if !defined(CONFIG_NET_MULTI)
-# if defined(CONFIG_MPC5XXX_FEC)
+# if defined(CONFIG_MPC5xxx_FEC)
# define CONFIG_NET_MULTI
# endif
# endif
-#endif /* CONFIG_MPC5XXX */
+#endif /* CONFIG_MPC5xxx */
-#if !defined(CONFIG_NET_MULTI) && (defined(CONFIG_8260) || defined(CONFIG_MPC8560))
+#if !defined(CONFIG_NET_MULTI) && defined(CONFIG_CPM2)
#include <config.h>
#if defined(CONFIG_ETHER_ON_FCC)
#if defined(CONFIG_ETHER_ON_SCC)
int state;
int (*init) (struct eth_device*, bd_t*);
- int (*send) (struct eth_device*, volatile void* pachet, int length);
+ int (*send) (struct eth_device*, volatile void* packet, int length);
int (*recv) (struct eth_device*);
void (*halt) (struct eth_device*);
-
+#ifdef CONFIG_MCAST_TFTP
+ int (*mcast) (struct eth_device*, u32 ip, u8 set);
+#endif
struct eth_device *next;
void *priv;
};
extern int eth_initialize(bd_t *bis); /* Initialize network subsystem */
extern int eth_register(struct eth_device* dev);/* Register network device */
extern void eth_try_another(int first_restart); /* Change the device */
+#ifdef CONFIG_NET_MULTI
+extern void eth_set_current(void); /* set nterface to ethcur var. */
+#endif
extern struct eth_device *eth_get_dev(void); /* get the current device MAC */
+extern struct eth_device *eth_get_dev_by_name(char *devname); /* get device */
+extern int eth_get_dev_index (void); /* get the device index */
extern void eth_set_enetaddr(int num, char* a); /* Set new MAC address */
extern int eth_init(bd_t *bis); /* Initialize the device */
extern int eth_send(volatile void *packet, int length); /* Send a packet */
+#ifdef CONFIG_API
+extern int eth_receive(volatile void *packet, int length); /* Receive a packet */
+#endif
extern int eth_rx(void); /* Check for received packets */
extern void eth_halt(void); /* stop SCC */
+extern char *eth_get_name(void); /* get name of current device */
+
+#ifdef CONFIG_MCAST_TFTP
+int eth_mcast_join( IPaddr_t mcast_addr, u8 join);
+u32 ether_crc (size_t len, unsigned char const *p);
+#endif
/**********************************************************************/
#define ETHER_HDR_SIZE 14 /* Ethernet header size */
#define E802_HDR_SIZE 22 /* 802 ethernet header size */
+
+/*
+ * Ethernet header
+ */
+typedef struct {
+ uchar vet_dest[6]; /* Destination node */
+ uchar vet_src[6]; /* Source node */
+ ushort vet_vlan_type; /* PROT_VLAN */
+ ushort vet_tag; /* TAG of VLAN */
+ ushort vet_type; /* protocol type */
+} VLAN_Ethernet_t;
+
+#define VLAN_ETHER_HDR_SIZE 18 /* VLAN Ethernet header size */
+
#define PROT_IP 0x0800 /* IP protocol */
#define PROT_ARP 0x0806 /* IP ARP protocol */
#define PROT_RARP 0x8035 /* IP ARP protocol */
+#define PROT_VLAN 0x8100 /* IEEE 802.1q protocol */
#define IPPROTO_ICMP 1 /* Internet Control Message Protocol */
#define IPPROTO_UDP 17 /* User Datagram Protocol */
/*
* ICMP stuff (just enough to handle (host) redirect messages)
*/
-#define ICMP_ECHO_REPLY 0 /* Echo reply */
+#define ICMP_ECHO_REPLY 0 /* Echo reply */
#define ICMP_REDIRECT 5 /* Redirect (change route) */
#define ICMP_ECHO_REQUEST 8 /* Echo request */
extern IPaddr_t NetOurGatewayIP; /* Our gateway IP addresse */
extern IPaddr_t NetOurSubnetMask; /* Our subnet mask (0 = unknown)*/
extern IPaddr_t NetOurDNSIP; /* Our Domain Name Server (0 = unknown)*/
-#if (CONFIG_BOOTP_MASK & CONFIG_BOOTP_DNS2)
+#if defined(CONFIG_BOOTP_DNS2)
extern IPaddr_t NetOurDNS2IP; /* Our 2nd Domain Name Server (0 = unknown)*/
#endif
extern char NetOurNISDomain[32]; /* Our NIS domain */
extern int NetRxPktLen; /* Current rx packet length */
extern unsigned NetIPID; /* IP ID (counting) */
extern uchar NetBcastAddr[6]; /* Ethernet boardcast address */
+extern uchar NetEtherNullAddr[6];
+
+#define VLAN_NONE 4095 /* untagged */
+#define VLAN_IDMASK 0x0fff /* mask of valid vlan id */
+extern ushort NetOurVLAN; /* Our VLAN */
+extern ushort NetOurNativeVLAN; /* Our Native VLAN */
+
+extern uchar NetCDPAddr[6]; /* Ethernet CDP address */
+extern ushort CDPNativeVLAN; /* CDP returned native VLAN */
+extern ushort CDPApplianceVLAN; /* CDP returned appliance VLAN */
extern int NetState; /* Network loop state */
#define NETLOOP_CONTINUE 1
extern int NetRestartWrap; /* Tried all network devices */
#endif
-typedef enum { BOOTP, RARP, ARP, TFTP, DHCP, PING, DNS } proto_t;
+typedef enum { BOOTP, RARP, ARP, TFTP, DHCP, PING, DNS, NFS, CDP, NETCONS, SNTP } proto_t;
/* from net/net.c */
extern char BootFile[128]; /* Boot File name */
-#if (CONFIG_COMMANDS & CFG_CMD_PING)
-extern IPaddr_t NetPingIP; /* the ip address to ping */
+#if defined(CONFIG_CMD_PING)
+extern IPaddr_t NetPingIP; /* the ip address to ping */
+#endif
+
+#if defined(CONFIG_CMD_CDP)
+/* when CDP completes these hold the return values */
+extern ushort CDPNativeVLAN;
+extern ushort CDPApplianceVLAN;
+#endif
+
+#if defined(CONFIG_CMD_SNTP)
+extern IPaddr_t NetNtpServerIP; /* the ip address to NTP */
+extern int NetTimeOffset; /* offset time from UTC */
#endif
/* Initialize the network adapter */
/* Load failed. Start again. */
extern void NetStartAgain(void);
-/* Set ethernet header */
-extern void NetSetEther(volatile uchar *, uchar *, uint);
+/* Get size of the ethernet header when we send */
+extern int NetEthHdrSize(void);
+
+/* Set ethernet header; returns the size of the header */
+extern int NetSetEther(volatile uchar *, uchar *, uint);
/* Set IP header */
extern void NetSetIP(volatile uchar *, IPaddr_t, int, int, int);
/* Set callbacks */
extern void NetSetHandler(rxhand_f *); /* Set RX packet handler */
-extern void NetSetTimeout(int, thand_f *); /* Set timeout handler */
+extern void NetSetTimeout(ulong, thand_f *);/* Set timeout handler */
/* Transmit "NetTxPacket" */
extern void NetSendPacket(volatile uchar *, int);
* footprint in our tests.
*/
/* return IP *in network byteorder* */
-static inline IPaddr_t NetReadIP(void *from)
+static inline IPaddr_t NetReadIP(volatile void *from)
{
IPaddr_t ip;
- memcpy((void*)&ip, from, sizeof(ip));
+ memcpy((void*)&ip, (void*)from, sizeof(ip));
return ip;
}
}
/* copy IP */
-static inline void NetCopyIP(void *to, void *from)
+static inline void NetCopyIP(volatile void *to, void *from)
{
- memcpy(to, from, sizeof(IPaddr_t));
+ memcpy((void*)to, from, sizeof(IPaddr_t));
}
/* copy ulong */
memcpy((void*)to, (void*)from, sizeof(ulong));
}
+/**
+ * is_zero_ether_addr - Determine if give Ethernet address is all zeros.
+ * @addr: Pointer to a six-byte array containing the Ethernet address
+ *
+ * Return true if the address is all zeroes.
+ */
+static inline int is_zero_ether_addr(const u8 *addr)
+{
+ return !(addr[0] | addr[1] | addr[2] | addr[3] | addr[4] | addr[5]);
+}
+
+/**
+ * is_multicast_ether_addr - Determine if the Ethernet address is a multicast.
+ * @addr: Pointer to a six-byte array containing the Ethernet address
+ *
+ * Return true if the address is a multicast address.
+ * By definition the broadcast address is also a multicast address.
+ */
+static inline int is_multicast_ether_addr(const u8 *addr)
+{
+ return (0x01 & addr[0]);
+}
+
/* Convert an IP address to a string */
extern void ip_to_string (IPaddr_t x, char *s);
/* Convert a string to ip address */
extern IPaddr_t string_to_ip(char *s);
+/* Convert a VLAN id to a string */
+extern void VLAN_to_string (ushort x, char *s);
+
+/* Convert a string to a vlan id */
+extern ushort string_to_VLAN(char *s);
+
/* read an IP address from a environment variable */
extern IPaddr_t getenv_IPaddr (char *);
+/* read a VLAN id from an environment variable */
+extern ushort getenv_VLAN(char *);
+
/* copy a filename (allow for "..." notation, limit length) */
-extern void copy_filename (uchar *dst, uchar *src, int size);
+extern void copy_filename (char *dst, char *src, int size);
/**********************************************************************/