xref: /rk3399_rockchip-uboot/include/net.h (revision a1ca92eaaf0cac2a11c16b93f0cd0cd6f6256f02)
12d966958Swdenk /*
22d966958Swdenk  *	LiMon Monitor (LiMon) - Network.
32d966958Swdenk  *
42d966958Swdenk  *	Copyright 1994 - 2000 Neil Russell.
52d966958Swdenk  *	(See License)
62ea91039SWolfgang Denk  *	SPDX-License-Identifier:	GPL-2.0
72d966958Swdenk  *
82d966958Swdenk  * History
92d966958Swdenk  *	9/16/00	  bor  adapted to TQM823L/STK8xxL board, RARP/TFTP boot added
102d966958Swdenk  */
112d966958Swdenk 
122d966958Swdenk #ifndef __NET_H__
132d966958Swdenk #define __NET_H__
142d966958Swdenk 
1571f95118Swdenk #if defined(CONFIG_8xx)
162d966958Swdenk #include <commproc.h>
1771f95118Swdenk #endif	/* CONFIG_8xx */
18aacf9a49Swdenk 
192c4b3c19SEric Nelson #include <asm/cache.h>
202d966958Swdenk #include <asm/byteorder.h>	/* for nton* / ntoh* stuff */
212d966958Swdenk 
224ef8d53cSJoe Hershberger #define DEBUG_LL_STATE 0	/* Link local state machine changes */
234ef8d53cSJoe Hershberger #define DEBUG_DEV_PKT 0		/* Packets or info directed to the device */
244ef8d53cSJoe Hershberger #define DEBUG_NET_PKT 0		/* Packets on info on the network at large */
254ef8d53cSJoe Hershberger #define DEBUG_INT_STATE 0	/* Internal network state changes */
262d966958Swdenk 
272d966958Swdenk /*
282d966958Swdenk  *	The number of receive packet buffers, and the required packet buffer
292d966958Swdenk  *	alignment in memory.
302d966958Swdenk  *
312d966958Swdenk  */
322d966958Swdenk 
336d0f6bcfSJean-Christophe PLAGNIOL-VILLARD #ifdef CONFIG_SYS_RX_ETH_BUFFER
346d0f6bcfSJean-Christophe PLAGNIOL-VILLARD # define PKTBUFSRX	CONFIG_SYS_RX_ETH_BUFFER
351d0350edSwdenk #else
36c6028835Sstroese # define PKTBUFSRX	4
371d0350edSwdenk #endif
381d0350edSwdenk 
392c4b3c19SEric Nelson #define PKTALIGN	ARCH_DMA_MINALIGN
402d966958Swdenk 
41ea45cb0aSMatthias Weisser /* IPv4 addresses are always 32 bits in size */
42049a95a7SJoe Hershberger struct in_addr {
43049a95a7SJoe Hershberger 	__be32 s_addr;
44049a95a7SJoe Hershberger };
452d966958Swdenk 
4603eb129fSLuca Ceresoli /**
4703eb129fSLuca Ceresoli  * An incoming packet handler.
4803eb129fSLuca Ceresoli  * @param pkt    pointer to the application packet
4903eb129fSLuca Ceresoli  * @param dport  destination UDP port
5003eb129fSLuca Ceresoli  * @param sip    source IP address
5103eb129fSLuca Ceresoli  * @param sport  source UDP port
5203eb129fSLuca Ceresoli  * @param len    packet length
532d966958Swdenk  */
5403eb129fSLuca Ceresoli typedef void rxhand_f(uchar *pkt, unsigned dport,
55049a95a7SJoe Hershberger 		      struct in_addr sip, unsigned sport,
5603eb129fSLuca Ceresoli 		      unsigned len);
572d966958Swdenk 
584793ee65SSimon Glass /**
594793ee65SSimon Glass  * An incoming ICMP packet handler.
604793ee65SSimon Glass  * @param type	ICMP type
614793ee65SSimon Glass  * @param code	ICMP code
624793ee65SSimon Glass  * @param dport	destination UDP port
634793ee65SSimon Glass  * @param sip	source IP address
644793ee65SSimon Glass  * @param sport	source UDP port
654793ee65SSimon Glass  * @param pkt	pointer to the ICMP packet data
664793ee65SSimon Glass  * @param len	packet length
674793ee65SSimon Glass  */
684793ee65SSimon Glass typedef void rxhand_icmp_f(unsigned type, unsigned code, unsigned dport,
69049a95a7SJoe Hershberger 		struct in_addr sip, unsigned sport, uchar *pkt, unsigned len);
704793ee65SSimon Glass 
712d966958Swdenk /*
722d966958Swdenk  *	A timeout handler.  Called after time interval has expired.
732d966958Swdenk  */
742d966958Swdenk typedef void	thand_f(void);
752d966958Swdenk 
762d966958Swdenk enum eth_state_t {
772d966958Swdenk 	ETH_STATE_INIT,
782d966958Swdenk 	ETH_STATE_PASSIVE,
792d966958Swdenk 	ETH_STATE_ACTIVE
802d966958Swdenk };
812d966958Swdenk 
8205c3e68fSJoe Hershberger #ifdef CONFIG_DM_ETH
8305c3e68fSJoe Hershberger /**
8405c3e68fSJoe Hershberger  * struct eth_pdata - Platform data for Ethernet MAC controllers
8505c3e68fSJoe Hershberger  *
8605c3e68fSJoe Hershberger  * @iobase: The base address of the hardware registers
8705c3e68fSJoe Hershberger  * @enetaddr: The Ethernet MAC address that is loaded from EEPROM or env
88c74c8e66SSimon Glass  * @phy_interface: PHY interface to use - see PHY_INTERFACE_MODE_...
8905c3e68fSJoe Hershberger  */
9005c3e68fSJoe Hershberger struct eth_pdata {
9105c3e68fSJoe Hershberger 	phys_addr_t iobase;
9205c3e68fSJoe Hershberger 	unsigned char enetaddr[6];
93c74c8e66SSimon Glass 	int phy_interface;
9405c3e68fSJoe Hershberger };
9505c3e68fSJoe Hershberger 
96*a1ca92eaSSimon Glass enum eth_recv_flags {
97*a1ca92eaSSimon Glass 	/*
98*a1ca92eaSSimon Glass 	 * Check hardware device for new packets (otherwise only return those
99*a1ca92eaSSimon Glass 	 * which are already in the memory buffer ready to process)
100*a1ca92eaSSimon Glass 	 */
101*a1ca92eaSSimon Glass 	ETH_RECV_CHECK_DEVICE		= 1 << 0,
102*a1ca92eaSSimon Glass };
103*a1ca92eaSSimon Glass 
10405c3e68fSJoe Hershberger /**
10505c3e68fSJoe Hershberger  * struct eth_ops - functions of Ethernet MAC controllers
10605c3e68fSJoe Hershberger  *
10705c3e68fSJoe Hershberger  * start: Prepare the hardware to send and receive packets
10805c3e68fSJoe Hershberger  * send: Send the bytes passed in "packet" as a packet on the wire
10917591405SJoe Hershberger  * recv: Check if the hardware received a packet. If so, set the pointer to the
11017591405SJoe Hershberger  *	 packet buffer in the packetp parameter. If not, return an error or 0 to
11163c9729aSJoe Hershberger  *	 indicate that the hardware receive FIFO is empty. If 0 is returned, the
11263c9729aSJoe Hershberger  *	 network stack will not process the empty packet, but free_pkt() will be
11363c9729aSJoe Hershberger  *	 called if supplied
11463c9729aSJoe Hershberger  * free_pkt: Give the driver an opportunity to manage its packet buffer memory
11563c9729aSJoe Hershberger  *	     when the network stack is finished processing it. This will only be
11663c9729aSJoe Hershberger  *	     called when no error was returned from recv - optional
11705c3e68fSJoe Hershberger  * stop: Stop the hardware from looking for packets - may be called even if
11805c3e68fSJoe Hershberger  *	 state == PASSIVE
11905c3e68fSJoe Hershberger  * mcast: Join or leave a multicast group (for TFTP) - optional
12005c3e68fSJoe Hershberger  * write_hwaddr: Write a MAC address to the hardware (used to pass it to Linux
12105c3e68fSJoe Hershberger  *		 on some platforms like ARM). This function expects the
12205c3e68fSJoe Hershberger  *		 eth_pdata::enetaddr field to be populated - optional
12305c3e68fSJoe Hershberger  * read_rom_hwaddr: Some devices have a backup of the MAC address stored in a
12405c3e68fSJoe Hershberger  *		    ROM on the board. This is how the driver should expose it
12505c3e68fSJoe Hershberger  *		    to the network stack. This function should fill in the
12605c3e68fSJoe Hershberger  *		    eth_pdata::enetaddr field - optional
12705c3e68fSJoe Hershberger  */
12805c3e68fSJoe Hershberger struct eth_ops {
12905c3e68fSJoe Hershberger 	int (*start)(struct udevice *dev);
13005c3e68fSJoe Hershberger 	int (*send)(struct udevice *dev, void *packet, int length);
131*a1ca92eaSSimon Glass 	int (*recv)(struct udevice *dev, int flags, uchar **packetp);
13263c9729aSJoe Hershberger 	int (*free_pkt)(struct udevice *dev, uchar *packet, int length);
13305c3e68fSJoe Hershberger 	void (*stop)(struct udevice *dev);
13405c3e68fSJoe Hershberger #ifdef CONFIG_MCAST_TFTP
13505c3e68fSJoe Hershberger 	int (*mcast)(struct udevice *dev, const u8 *enetaddr, int join);
13605c3e68fSJoe Hershberger #endif
13705c3e68fSJoe Hershberger 	int (*write_hwaddr)(struct udevice *dev);
13805c3e68fSJoe Hershberger 	int (*read_rom_hwaddr)(struct udevice *dev);
13905c3e68fSJoe Hershberger };
14005c3e68fSJoe Hershberger 
14105c3e68fSJoe Hershberger #define eth_get_ops(dev) ((struct eth_ops *)(dev)->driver->ops)
14205c3e68fSJoe Hershberger 
14305c3e68fSJoe Hershberger struct udevice *eth_get_dev(void); /* get the current device */
144e58780dcSJoe Hershberger /*
145e58780dcSJoe Hershberger  * The devname can be either an exact name given by the driver or device tree
146e58780dcSJoe Hershberger  * or it can be an alias of the form "eth%d"
147e58780dcSJoe Hershberger  */
148e58780dcSJoe Hershberger struct udevice *eth_get_dev_by_name(const char *devname);
14905c3e68fSJoe Hershberger unsigned char *eth_get_ethaddr(void); /* get the current device MAC */
15005c3e68fSJoe Hershberger /* Used only when NetConsole is enabled */
15105c3e68fSJoe Hershberger int eth_init_state_only(void); /* Set active state */
15205c3e68fSJoe Hershberger void eth_halt_state_only(void); /* Set passive state */
15305c3e68fSJoe Hershberger #endif
15405c3e68fSJoe Hershberger 
15505c3e68fSJoe Hershberger #ifndef CONFIG_DM_ETH
1562d966958Swdenk struct eth_device {
157f6add132SMike Frysinger 	char name[16];
1582d966958Swdenk 	unsigned char enetaddr[6];
15916ae7827SMichal Simek 	phys_addr_t iobase;
1602d966958Swdenk 	int state;
1612d966958Swdenk 
1622d966958Swdenk 	int (*init)(struct eth_device *, bd_t *);
163db288a96SJoe Hershberger 	int (*send)(struct eth_device *, void *packet, int length);
1642d966958Swdenk 	int (*recv)(struct eth_device *);
1652d966958Swdenk 	void (*halt)(struct eth_device *);
16653a5c424SDavid Updegraff #ifdef CONFIG_MCAST_TFTP
1679c4cffacSClaudiu Manoil 	int (*mcast)(struct eth_device *, const u8 *enetaddr, u8 set);
16853a5c424SDavid Updegraff #endif
169ecee9324SBen Warren 	int (*write_hwaddr)(struct eth_device *);
1702d966958Swdenk 	struct eth_device *next;
171fea7dcaeSMichael Walle 	int index;
1722d966958Swdenk 	void *priv;
1732d966958Swdenk };
1742d966958Swdenk 
175ff997432SJoe Hershberger int eth_register(struct eth_device *dev);/* Register network device */
176ff997432SJoe Hershberger int eth_unregister(struct eth_device *dev);/* Remove network device */
17706370590SKim Phillips 
17806370590SKim Phillips extern struct eth_device *eth_current;
17906370590SKim Phillips 
180f8be7d65SJoe Hershberger static inline __attribute__((always_inline))
181f8be7d65SJoe Hershberger struct eth_device *eth_get_dev(void)
182f8be7d65SJoe Hershberger {
183f8be7d65SJoe Hershberger 	return eth_current;
184f8be7d65SJoe Hershberger }
18584eb1fbaSJoe Hershberger struct eth_device *eth_get_dev_by_name(const char *devname);
18684eb1fbaSJoe Hershberger struct eth_device *eth_get_dev_by_index(int index); /* get dev @ index */
1878b2c9a71SJoe Hershberger 
18884eb1fbaSJoe Hershberger /* get the current device MAC */
1898b2c9a71SJoe Hershberger static inline unsigned char *eth_get_ethaddr(void)
1908b2c9a71SJoe Hershberger {
1918b2c9a71SJoe Hershberger 	if (eth_current)
1928b2c9a71SJoe Hershberger 		return eth_current->enetaddr;
1938b2c9a71SJoe Hershberger 	return NULL;
1948b2c9a71SJoe Hershberger }
1958b2c9a71SJoe Hershberger 
196f8be7d65SJoe Hershberger /* Set active state */
197d2eaec60SJoe Hershberger static inline __attribute__((always_inline)) int eth_init_state_only(void)
198f8be7d65SJoe Hershberger {
199f8be7d65SJoe Hershberger 	eth_get_dev()->state = ETH_STATE_ACTIVE;
200f8be7d65SJoe Hershberger 
201f8be7d65SJoe Hershberger 	return 0;
202f8be7d65SJoe Hershberger }
203f8be7d65SJoe Hershberger /* Set passive state */
204f8be7d65SJoe Hershberger static inline __attribute__((always_inline)) void eth_halt_state_only(void)
205f8be7d65SJoe Hershberger {
206f8be7d65SJoe Hershberger 	eth_get_dev()->state = ETH_STATE_PASSIVE;
207f8be7d65SJoe Hershberger }
208f8be7d65SJoe Hershberger 
2097616e785SSimon Glass /*
2107616e785SSimon Glass  * Set the hardware address for an ethernet interface based on 'eth%daddr'
2117616e785SSimon Glass  * environment variable (or just 'ethaddr' if eth_number is 0).
2127616e785SSimon Glass  * Args:
2137616e785SSimon Glass  *	base_name - base name for device (normally "eth")
2147616e785SSimon Glass  *	eth_number - value of %d (0 for first device of this type)
2157616e785SSimon Glass  * Returns:
2167616e785SSimon Glass  *	0 is success, non-zero is error status from driver.
2177616e785SSimon Glass  */
2187616e785SSimon Glass int eth_write_hwaddr(struct eth_device *dev, const char *base_name,
2197616e785SSimon Glass 		     int eth_number);
2207616e785SSimon Glass 
22184eb1fbaSJoe Hershberger int usb_eth_initialize(bd_t *bi);
22205c3e68fSJoe Hershberger #endif
22384eb1fbaSJoe Hershberger 
224d2eaec60SJoe Hershberger int eth_initialize(void);		/* Initialize network subsystem */
22584eb1fbaSJoe Hershberger void eth_try_another(int first_restart);	/* Change the device */
22684eb1fbaSJoe Hershberger void eth_set_current(void);		/* set nterface to ethcur var */
22784eb1fbaSJoe Hershberger 
22884eb1fbaSJoe Hershberger int eth_get_dev_index(void);		/* get the device index */
22984eb1fbaSJoe Hershberger void eth_parse_enetaddr(const char *addr, uchar *enetaddr);
23084eb1fbaSJoe Hershberger int eth_getenv_enetaddr(char *name, uchar *enetaddr);
23184eb1fbaSJoe Hershberger int eth_setenv_enetaddr(char *name, const uchar *enetaddr);
23284eb1fbaSJoe Hershberger 
23384eb1fbaSJoe Hershberger /*
23484eb1fbaSJoe Hershberger  * Get the hardware address for an ethernet interface .
23584eb1fbaSJoe Hershberger  * Args:
23684eb1fbaSJoe Hershberger  *	base_name - base name for device (normally "eth")
23784eb1fbaSJoe Hershberger  *	index - device index number (0 for first)
23884eb1fbaSJoe Hershberger  *	enetaddr - returns 6 byte hardware address
23984eb1fbaSJoe Hershberger  * Returns:
24084eb1fbaSJoe Hershberger  *	Return true if the address is valid.
24184eb1fbaSJoe Hershberger  */
24284eb1fbaSJoe Hershberger int eth_getenv_enetaddr_by_index(const char *base_name, int index,
24384eb1fbaSJoe Hershberger 				 uchar *enetaddr);
24484eb1fbaSJoe Hershberger 
245d2eaec60SJoe Hershberger int eth_init(void);			/* Initialize the device */
24684eb1fbaSJoe Hershberger int eth_send(void *packet, int length);	   /* Send a packet */
24784eb1fbaSJoe Hershberger 
24884eb1fbaSJoe Hershberger #ifdef CONFIG_API
24984eb1fbaSJoe Hershberger int eth_receive(void *packet, int length); /* Receive a packet*/
25084eb1fbaSJoe Hershberger extern void (*push_packet)(void *packet, int length);
25184eb1fbaSJoe Hershberger #endif
25284eb1fbaSJoe Hershberger int eth_rx(void);			/* Check for received packets */
25384eb1fbaSJoe Hershberger void eth_halt(void);			/* stop SCC */
25484eb1fbaSJoe Hershberger const char *eth_get_name(void);		/* get name of current device */
25584eb1fbaSJoe Hershberger 
25653a5c424SDavid Updegraff #ifdef CONFIG_MCAST_TFTP
257049a95a7SJoe Hershberger int eth_mcast_join(struct in_addr mcast_addr, int join);
25853a5c424SDavid Updegraff u32 ether_crc(size_t len, unsigned char const *p);
25953a5c424SDavid Updegraff #endif
26053a5c424SDavid Updegraff 
2612d966958Swdenk 
2622d966958Swdenk /**********************************************************************/
2632d966958Swdenk /*
2642d966958Swdenk  *	Protocol headers.
2652d966958Swdenk  */
2662d966958Swdenk 
2672d966958Swdenk /*
2682d966958Swdenk  *	Ethernet header
2692d966958Swdenk  */
270cb487f56SJoe Hershberger 
271cb487f56SJoe Hershberger struct ethernet_hdr {
272717234e0SSergey Temerkhanov 	u8		et_dest[6];	/* Destination node		*/
273717234e0SSergey Temerkhanov 	u8		et_src[6];	/* Source node			*/
274717234e0SSergey Temerkhanov 	u16		et_protlen;	/* Protocol or length		*/
275cb487f56SJoe Hershberger };
276cb487f56SJoe Hershberger 
277cb487f56SJoe Hershberger /* Ethernet header size */
278cb487f56SJoe Hershberger #define ETHER_HDR_SIZE	(sizeof(struct ethernet_hdr))
279cb487f56SJoe Hershberger 
280a7c3d5e2SBin Meng #define ETH_FCS_LEN	4		/* Octets in the FCS		*/
281a7c3d5e2SBin Meng 
282cb487f56SJoe Hershberger struct e802_hdr {
283717234e0SSergey Temerkhanov 	u8		et_dest[6];	/* Destination node		*/
284717234e0SSergey Temerkhanov 	u8		et_src[6];	/* Source node			*/
285717234e0SSergey Temerkhanov 	u16		et_protlen;	/* Protocol or length		*/
286717234e0SSergey Temerkhanov 	u8		et_dsap;	/* 802 DSAP			*/
287717234e0SSergey Temerkhanov 	u8		et_ssap;	/* 802 SSAP			*/
288717234e0SSergey Temerkhanov 	u8		et_ctl;		/* 802 control			*/
289717234e0SSergey Temerkhanov 	u8		et_snap1;	/* SNAP				*/
290717234e0SSergey Temerkhanov 	u8		et_snap2;
291717234e0SSergey Temerkhanov 	u8		et_snap3;
292717234e0SSergey Temerkhanov 	u16		et_prot;	/* 802 protocol			*/
293cb487f56SJoe Hershberger };
2942d966958Swdenk 
295da5ebe2cSJoe Hershberger /* 802 + SNAP + ethernet header size */
296cb487f56SJoe Hershberger #define E802_HDR_SIZE	(sizeof(struct e802_hdr))
297a3d991bdSwdenk 
298a3d991bdSwdenk /*
299da5ebe2cSJoe Hershberger  *	Virtual LAN Ethernet header
300a3d991bdSwdenk  */
301c68cca35SJoe Hershberger struct vlan_ethernet_hdr {
302717234e0SSergey Temerkhanov 	u8		vet_dest[6];	/* Destination node		*/
303717234e0SSergey Temerkhanov 	u8		vet_src[6];	/* Source node			*/
304717234e0SSergey Temerkhanov 	u16		vet_vlan_type;	/* PROT_VLAN			*/
305717234e0SSergey Temerkhanov 	u16		vet_tag;	/* TAG of VLAN			*/
306717234e0SSergey Temerkhanov 	u16		vet_type;	/* protocol type		*/
307c68cca35SJoe Hershberger };
308a3d991bdSwdenk 
309c68cca35SJoe Hershberger /* VLAN Ethernet header size */
310c68cca35SJoe Hershberger #define VLAN_ETHER_HDR_SIZE	(sizeof(struct vlan_ethernet_hdr))
311a3d991bdSwdenk 
3122d966958Swdenk #define PROT_IP		0x0800		/* IP protocol			*/
3132d966958Swdenk #define PROT_ARP	0x0806		/* IP ARP protocol		*/
3142d966958Swdenk #define PROT_RARP	0x8035		/* IP ARP protocol		*/
315a3d991bdSwdenk #define PROT_VLAN	0x8100		/* IEEE 802.1q protocol		*/
3162d966958Swdenk 
3172d966958Swdenk #define IPPROTO_ICMP	 1	/* Internet Control Message Protocol	*/
3182d966958Swdenk #define IPPROTO_UDP	17	/* User Datagram Protocol		*/
3192d966958Swdenk 
3202d966958Swdenk /*
321c5c59df0SJoe Hershberger  *	Internet Protocol (IP) header.
322c5c59df0SJoe Hershberger  */
323c5c59df0SJoe Hershberger struct ip_hdr {
324717234e0SSergey Temerkhanov 	u8		ip_hl_v;	/* header length and version	*/
325717234e0SSergey Temerkhanov 	u8		ip_tos;		/* type of service		*/
326717234e0SSergey Temerkhanov 	u16		ip_len;		/* total length			*/
327717234e0SSergey Temerkhanov 	u16		ip_id;		/* identification		*/
328717234e0SSergey Temerkhanov 	u16		ip_off;		/* fragment offset field	*/
329717234e0SSergey Temerkhanov 	u8		ip_ttl;		/* time to live			*/
330717234e0SSergey Temerkhanov 	u8		ip_p;		/* protocol			*/
331717234e0SSergey Temerkhanov 	u16		ip_sum;		/* checksum			*/
332049a95a7SJoe Hershberger 	struct in_addr	ip_src;		/* Source IP address		*/
333049a95a7SJoe Hershberger 	struct in_addr	ip_dst;		/* Destination IP address	*/
334c5c59df0SJoe Hershberger };
335c5c59df0SJoe Hershberger 
336c5c59df0SJoe Hershberger #define IP_OFFS		0x1fff /* ip offset *= 8 */
337c5c59df0SJoe Hershberger #define IP_FLAGS	0xe000 /* first 3 bits */
338c5c59df0SJoe Hershberger #define IP_FLAGS_RES	0x8000 /* reserved */
339c5c59df0SJoe Hershberger #define IP_FLAGS_DFRAG	0x4000 /* don't fragments */
340c5c59df0SJoe Hershberger #define IP_FLAGS_MFRAG	0x2000 /* more fragments */
341c5c59df0SJoe Hershberger 
342c5c59df0SJoe Hershberger #define IP_HDR_SIZE		(sizeof(struct ip_hdr))
343c5c59df0SJoe Hershberger 
344c5c59df0SJoe Hershberger /*
345594c26f8SJoe Hershberger  *	Internet Protocol (IP) + UDP header.
3462d966958Swdenk  */
347594c26f8SJoe Hershberger struct ip_udp_hdr {
348717234e0SSergey Temerkhanov 	u8		ip_hl_v;	/* header length and version	*/
349717234e0SSergey Temerkhanov 	u8		ip_tos;		/* type of service		*/
350717234e0SSergey Temerkhanov 	u16		ip_len;		/* total length			*/
351717234e0SSergey Temerkhanov 	u16		ip_id;		/* identification		*/
352717234e0SSergey Temerkhanov 	u16		ip_off;		/* fragment offset field	*/
353717234e0SSergey Temerkhanov 	u8		ip_ttl;		/* time to live			*/
354717234e0SSergey Temerkhanov 	u8		ip_p;		/* protocol			*/
355717234e0SSergey Temerkhanov 	u16		ip_sum;		/* checksum			*/
356049a95a7SJoe Hershberger 	struct in_addr	ip_src;		/* Source IP address		*/
357049a95a7SJoe Hershberger 	struct in_addr	ip_dst;		/* Destination IP address	*/
358717234e0SSergey Temerkhanov 	u16		udp_src;	/* UDP source port		*/
359717234e0SSergey Temerkhanov 	u16		udp_dst;	/* UDP destination port		*/
360717234e0SSergey Temerkhanov 	u16		udp_len;	/* Length of UDP packet		*/
361717234e0SSergey Temerkhanov 	u16		udp_xsum;	/* Checksum			*/
362594c26f8SJoe Hershberger };
3632d966958Swdenk 
364594c26f8SJoe Hershberger #define IP_UDP_HDR_SIZE		(sizeof(struct ip_udp_hdr))
365c5c59df0SJoe Hershberger #define UDP_HDR_SIZE		(IP_UDP_HDR_SIZE - IP_HDR_SIZE)
3662d966958Swdenk 
3672d966958Swdenk /*
3682d966958Swdenk  *	Address Resolution Protocol (ARP) header.
3692d966958Swdenk  */
370738853bbSJoe Hershberger struct arp_hdr {
371717234e0SSergey Temerkhanov 	u16		ar_hrd;		/* Format of hardware address	*/
3722d966958Swdenk #   define ARP_ETHER	    1		/* Ethernet  hardware address	*/
373717234e0SSergey Temerkhanov 	u16		ar_pro;		/* Format of protocol address	*/
374717234e0SSergey Temerkhanov 	u8		ar_hln;		/* Length of hardware address	*/
375674bb249SJoe Hershberger #   define ARP_HLEN	6
376717234e0SSergey Temerkhanov 	u8		ar_pln;		/* Length of protocol address	*/
377674bb249SJoe Hershberger #   define ARP_PLEN	4
378717234e0SSergey Temerkhanov 	u16		ar_op;		/* Operation			*/
3792d966958Swdenk #   define ARPOP_REQUEST    1		/* Request  to resolve  address	*/
3802d966958Swdenk #   define ARPOP_REPLY	    2		/* Response to previous request	*/
3812d966958Swdenk 
3822d966958Swdenk #   define RARPOP_REQUEST   3		/* Request  to resolve  address	*/
3832d966958Swdenk #   define RARPOP_REPLY	    4		/* Response to previous request */
3842d966958Swdenk 
3852d966958Swdenk 	/*
3862d966958Swdenk 	 * The remaining fields are variable in size, according to
3872d966958Swdenk 	 * the sizes above, and are defined as appropriate for
3882d966958Swdenk 	 * specific hardware/protocol combinations.
3892d966958Swdenk 	 */
390717234e0SSergey Temerkhanov 	u8		ar_data[0];
391674bb249SJoe Hershberger #define ar_sha		ar_data[0]
392674bb249SJoe Hershberger #define ar_spa		ar_data[ARP_HLEN]
393674bb249SJoe Hershberger #define ar_tha		ar_data[ARP_HLEN + ARP_PLEN]
394674bb249SJoe Hershberger #define ar_tpa		ar_data[ARP_HLEN + ARP_PLEN + ARP_HLEN]
3952d966958Swdenk #if 0
396717234e0SSergey Temerkhanov 	u8		ar_sha[];	/* Sender hardware address	*/
397717234e0SSergey Temerkhanov 	u8		ar_spa[];	/* Sender protocol address	*/
398717234e0SSergey Temerkhanov 	u8		ar_tha[];	/* Target hardware address	*/
399717234e0SSergey Temerkhanov 	u8		ar_tpa[];	/* Target protocol address	*/
4002d966958Swdenk #endif /* 0 */
401738853bbSJoe Hershberger };
4022d966958Swdenk 
4032d966958Swdenk #define ARP_HDR_SIZE	(8+20)		/* Size assuming ethernet	*/
4042d966958Swdenk 
4052d966958Swdenk /*
4062d966958Swdenk  * ICMP stuff (just enough to handle (host) redirect messages)
4072d966958Swdenk  */
40873a8b27cSwdenk #define ICMP_ECHO_REPLY		0	/* Echo reply			*/
4094793ee65SSimon Glass #define ICMP_NOT_REACH		3	/* Detination unreachable	*/
4102d966958Swdenk #define ICMP_REDIRECT		5	/* Redirect (change route)	*/
41173a8b27cSwdenk #define ICMP_ECHO_REQUEST	8	/* Echo request			*/
4122d966958Swdenk 
4132d966958Swdenk /* Codes for REDIRECT. */
4142d966958Swdenk #define ICMP_REDIR_NET		0	/* Redirect Net			*/
4152d966958Swdenk #define ICMP_REDIR_HOST		1	/* Redirect Host		*/
4162d966958Swdenk 
4174793ee65SSimon Glass /* Codes for NOT_REACH */
4184793ee65SSimon Glass #define ICMP_NOT_REACH_PORT	3	/* Port unreachable		*/
4194793ee65SSimon Glass 
420e0a63079SJoe Hershberger struct icmp_hdr {
421717234e0SSergey Temerkhanov 	u8		type;
422717234e0SSergey Temerkhanov 	u8		code;
423717234e0SSergey Temerkhanov 	u16		checksum;
4242d966958Swdenk 	union {
4252d966958Swdenk 		struct {
426717234e0SSergey Temerkhanov 			u16	id;
427717234e0SSergey Temerkhanov 			u16	sequence;
4282d966958Swdenk 		} echo;
4295917e7d1SSergey Temerkhanov 		u32	gateway;
4302d966958Swdenk 		struct {
431717234e0SSergey Temerkhanov 			u16	unused;
432717234e0SSergey Temerkhanov 			u16	mtu;
4332d966958Swdenk 		} frag;
434717234e0SSergey Temerkhanov 		u8 data[0];
4352d966958Swdenk 	} un;
436e0a63079SJoe Hershberger };
4372d966958Swdenk 
438e0a63079SJoe Hershberger #define ICMP_HDR_SIZE		(sizeof(struct icmp_hdr))
439e0a63079SJoe Hershberger #define IP_ICMP_HDR_SIZE	(IP_HDR_SIZE + ICMP_HDR_SIZE)
4402d966958Swdenk 
4412d966958Swdenk /*
4422d966958Swdenk  * Maximum packet size; used to allocate packet storage.
4432d966958Swdenk  * TFTP packets can be 524 bytes + IP header + ethernet header.
4442d966958Swdenk  * Lets be conservative, and go for 38 * 16.  (Must also be
4452d966958Swdenk  * a multiple of 32 bytes).
4462d966958Swdenk  */
4472d966958Swdenk /*
4482d966958Swdenk  * AS.HARNOIS : Better to set PKTSIZE to maximum size because
4492d966958Swdenk  * traffic type is not always controlled
4502d966958Swdenk  * maximum packet size =  1518
4512d966958Swdenk  * maximum packet size and multiple of 32 bytes =  1536
4522d966958Swdenk  */
4532d966958Swdenk #define PKTSIZE			1518
4542d966958Swdenk #define PKTSIZE_ALIGN		1536
4552d966958Swdenk /*#define PKTSIZE		608*/
4562d966958Swdenk 
4572d966958Swdenk /*
4582d966958Swdenk  * Maximum receive ring size; that is, the number of packets
4592d966958Swdenk  * we can buffer before overflow happens. Basically, this just
4602d966958Swdenk  * needs to be enough to prevent a packet being discarded while
4612d966958Swdenk  * we are processing the previous one.
4622d966958Swdenk  */
4632d966958Swdenk #define RINGSZ		4
4642d966958Swdenk #define RINGSZ_LOG2	2
4652d966958Swdenk 
4662d966958Swdenk /**********************************************************************/
4672d966958Swdenk /*
4682d966958Swdenk  *	Globals.
4692d966958Swdenk  *
4702d966958Swdenk  * Note:
4712d966958Swdenk  *
472049a95a7SJoe Hershberger  * All variables of type struct in_addr are stored in NETWORK byte order
4732d966958Swdenk  * (big endian).
4742d966958Swdenk  */
4752d966958Swdenk 
4762d966958Swdenk /* net.c */
4772d966958Swdenk /** BOOTP EXTENTIONS **/
478049a95a7SJoe Hershberger extern struct in_addr net_gateway;	/* Our gateway IP address */
479049a95a7SJoe Hershberger extern struct in_addr net_netmask;	/* Our subnet mask (0 = unknown) */
480049a95a7SJoe Hershberger /* Our Domain Name Server (0 = unknown) */
481049a95a7SJoe Hershberger extern struct in_addr net_dns_server;
4821fe80d79SJon Loeliger #if defined(CONFIG_BOOTP_DNS2)
483049a95a7SJoe Hershberger /* Our 2nd Domain Name Server (0 = unknown) */
484049a95a7SJoe Hershberger extern struct in_addr net_dns_server2;
485fe389a82Sstroese #endif
486586cbe51SJoe Hershberger extern char	net_nis_domain[32];	/* Our IS domain */
487586cbe51SJoe Hershberger extern char	net_hostname[32];	/* Our hostname */
488586cbe51SJoe Hershberger extern char	net_root_path[64];	/* Our root path */
4892d966958Swdenk /** END OF BOOTP EXTENTIONS **/
4900adb5b76SJoe Hershberger extern u8		net_ethaddr[6];		/* Our ethernet address */
4910adb5b76SJoe Hershberger extern u8		net_server_ethaddr[6];	/* Boot server enet address */
492049a95a7SJoe Hershberger extern struct in_addr	net_ip;		/* Our    IP addr (0 = unknown) */
493049a95a7SJoe Hershberger extern struct in_addr	net_server_ip;	/* Server IP addr (0 = unknown) */
4941203fcceSJoe Hershberger extern uchar		*net_tx_packet;		/* THE transmit packet */
4952a504df0SJoe Hershberger extern uchar		*net_rx_packets[PKTBUFSRX]; /* Receive packets */
4961203fcceSJoe Hershberger extern uchar		*net_rx_packet;		/* Current receive packet */
4971203fcceSJoe Hershberger extern int		net_rx_packet_len;	/* Current rx packet length */
4980adb5b76SJoe Hershberger extern const u8		net_bcast_ethaddr[6];	/* Ethernet broadcast address */
4990adb5b76SJoe Hershberger extern const u8		net_null_ethaddr[6];
5002d966958Swdenk 
501a3d991bdSwdenk #define VLAN_NONE	4095			/* untagged */
502a3d991bdSwdenk #define VLAN_IDMASK	0x0fff			/* mask of valid vlan id */
5034fd5055fSJoe Hershberger extern ushort		net_our_vlan;		/* Our VLAN */
5044fd5055fSJoe Hershberger extern ushort		net_native_vlan;	/* Our Native VLAN */
505a3d991bdSwdenk 
506bc0571fcSJoe Hershberger extern int		net_restart_wrap;	/* Tried all network devices */
5072d966958Swdenk 
508e4bf0c5cSSimon Glass enum proto_t {
509e4bf0c5cSSimon Glass 	BOOTP, RARP, ARP, TFTPGET, DHCP, PING, DNS, NFS, CDP, NETCONS, SNTP,
510d22c338eSJoe Hershberger 	TFTPSRV, TFTPPUT, LINKLOCAL
511e4bf0c5cSSimon Glass };
5122d966958Swdenk 
5131411157dSJoe Hershberger extern char	net_boot_file_name[128];/* Boot File name */
5141411157dSJoe Hershberger /* The actual transferred size of the bootfile (in bytes) */
5151411157dSJoe Hershberger extern u32	net_boot_file_size;
5161411157dSJoe Hershberger /* Boot file size in blocks as reported by the DHCP server */
5171411157dSJoe Hershberger extern u32	net_boot_file_expected_size_in_blocks;
5182d966958Swdenk 
5191a32bf41SRobin Getz #if defined(CONFIG_CMD_DNS)
520786eac5fSJoe Hershberger extern char *net_dns_resolve;		/* The host to resolve  */
521786eac5fSJoe Hershberger extern char *net_dns_env_var;		/* the env var to put the ip into */
5221a32bf41SRobin Getz #endif
5231a32bf41SRobin Getz 
524639221c7SJon Loeliger #if defined(CONFIG_CMD_PING)
525049a95a7SJoe Hershberger extern struct in_addr net_ping_ip;	/* the ip address to ping */
52673a8b27cSwdenk #endif
52773a8b27cSwdenk 
528639221c7SJon Loeliger #if defined(CONFIG_CMD_CDP)
529a3d991bdSwdenk /* when CDP completes these hold the return values */
5306aede5b7SJoe Hershberger extern ushort cdp_native_vlan;		/* CDP returned native VLAN */
5316aede5b7SJoe Hershberger extern ushort cdp_appliance_vlan;	/* CDP returned appliance VLAN */
53217351883SJoe Hershberger 
53317351883SJoe Hershberger /*
53417351883SJoe Hershberger  * Check for a CDP packet by examining the received MAC address field
53517351883SJoe Hershberger  */
5360adb5b76SJoe Hershberger static inline int is_cdp_packet(const uchar *ethaddr)
53717351883SJoe Hershberger {
5380adb5b76SJoe Hershberger 	extern const u8 net_cdp_ethaddr[6];
53917351883SJoe Hershberger 
5400adb5b76SJoe Hershberger 	return memcmp(ethaddr, net_cdp_ethaddr, 6) == 0;
54117351883SJoe Hershberger }
542a3d991bdSwdenk #endif
543a3d991bdSwdenk 
544639221c7SJon Loeliger #if defined(CONFIG_CMD_SNTP)
545049a95a7SJoe Hershberger extern struct in_addr	net_ntp_server;		/* the ip address to NTP */
546bc0571fcSJoe Hershberger extern int net_ntp_time_offset;			/* offset time from UTC */
547ea287debSwdenk #endif
548ea287debSwdenk 
54913dfe943SJoe Hershberger #if defined(CONFIG_MCAST_TFTP)
550049a95a7SJoe Hershberger extern struct in_addr net_mcast_addr;
55113dfe943SJoe Hershberger #endif
55213dfe943SJoe Hershberger 
5532d966958Swdenk /* Initialize the network adapter */
554ff997432SJoe Hershberger void net_init(void);
555bc0571fcSJoe Hershberger int net_loop(enum proto_t);
5562d966958Swdenk 
5572d966958Swdenk /* Load failed.	 Start again. */
558bc0571fcSJoe Hershberger int net_start_again(void);
5592d966958Swdenk 
560a3d991bdSwdenk /* Get size of the ethernet header when we send */
5611203fcceSJoe Hershberger int net_eth_hdr_size(void);
562a3d991bdSwdenk 
563a3d991bdSwdenk /* Set ethernet header; returns the size of the header */
5641203fcceSJoe Hershberger int net_set_ether(uchar *xet, const uchar *dest_ethaddr, uint prot);
565ff997432SJoe Hershberger int net_update_ether(struct ethernet_hdr *et, uchar *addr, uint prot);
5662d966958Swdenk 
5672d966958Swdenk /* Set IP header */
568049a95a7SJoe Hershberger void net_set_ip_header(uchar *pkt, struct in_addr dest, struct in_addr source);
569049a95a7SJoe Hershberger void net_set_udp_header(uchar *pkt, struct in_addr dest, int dport,
5704b11c916SJoe Hershberger 				int sport, int len);
5712d966958Swdenk 
5729b0e35cbSSimon Glass /**
5739b0e35cbSSimon Glass  * compute_ip_checksum() - Compute IP checksum
5749b0e35cbSSimon Glass  *
5759b0e35cbSSimon Glass  * @addr:	Address to check (must be 16-bit aligned)
5769b0e35cbSSimon Glass  * @nbytes:	Number of bytes to check (normally a multiple of 2)
5779b0e35cbSSimon Glass  * @return 16-bit IP checksum
5789b0e35cbSSimon Glass  */
5799b0e35cbSSimon Glass unsigned compute_ip_checksum(const void *addr, unsigned nbytes);
5809b0e35cbSSimon Glass 
5819b0e35cbSSimon Glass /**
5829b0e35cbSSimon Glass  * add_ip_checksums() - add two IP checksums
5839b0e35cbSSimon Glass  *
5849b0e35cbSSimon Glass  * @offset:	Offset of first sum (if odd we do a byte-swap)
5859b0e35cbSSimon Glass  * @sum:	First checksum
5869b0e35cbSSimon Glass  * @new_sum:	New checksum to add
5879b0e35cbSSimon Glass  * @return updated 16-bit IP checksum
5889b0e35cbSSimon Glass  */
5899b0e35cbSSimon Glass unsigned add_ip_checksums(unsigned offset, unsigned sum, unsigned new_sum);
5909b0e35cbSSimon Glass 
5919b0e35cbSSimon Glass /**
5929b0e35cbSSimon Glass  * ip_checksum_ok() - check if a checksum is correct
5939b0e35cbSSimon Glass  *
5949b0e35cbSSimon Glass  * This works by making sure the checksum sums to 0
5959b0e35cbSSimon Glass  *
5969b0e35cbSSimon Glass  * @addr:	Address to check (must be 16-bit aligned)
5979b0e35cbSSimon Glass  * @nbytes:	Number of bytes to check (normally a multiple of 2)
5989b0e35cbSSimon Glass  * @return true if the checksum matches, false if not
5999b0e35cbSSimon Glass  */
6009b0e35cbSSimon Glass int ip_checksum_ok(const void *addr, unsigned nbytes);
6019b0e35cbSSimon Glass 
602d280d3f4SJoe Hershberger /* Callbacks */
603ff997432SJoe Hershberger rxhand_f *net_get_udp_handler(void);	/* Get UDP RX packet handler */
604ff997432SJoe Hershberger void net_set_udp_handler(rxhand_f *);	/* Set UDP RX packet handler */
605ff997432SJoe Hershberger rxhand_f *net_get_arp_handler(void);	/* Get ARP RX packet handler */
606ff997432SJoe Hershberger void net_set_arp_handler(rxhand_f *);	/* Set ARP RX packet handler */
607ff997432SJoe Hershberger void net_set_icmp_handler(rxhand_icmp_f *f); /* Set ICMP RX handler */
608bc0571fcSJoe Hershberger void net_set_timeout_handler(ulong, thand_f *);/* Set timeout handler */
6092d966958Swdenk 
61022f6e99dSJoe Hershberger /* Network loop state */
61122f6e99dSJoe Hershberger enum net_loop_state {
61222f6e99dSJoe Hershberger 	NETLOOP_CONTINUE,
61322f6e99dSJoe Hershberger 	NETLOOP_RESTART,
61422f6e99dSJoe Hershberger 	NETLOOP_SUCCESS,
61522f6e99dSJoe Hershberger 	NETLOOP_FAIL
61622f6e99dSJoe Hershberger };
61722f6e99dSJoe Hershberger extern enum net_loop_state net_state;
61822f6e99dSJoe Hershberger 
61906370590SKim Phillips static inline void net_set_state(enum net_loop_state state)
62006370590SKim Phillips {
6214ef8d53cSJoe Hershberger 	debug_cond(DEBUG_INT_STATE, "--- NetState set to %d\n", state);
62222f6e99dSJoe Hershberger 	net_state = state;
62322f6e99dSJoe Hershberger }
62422f6e99dSJoe Hershberger 
625e94070c4SJoe Hershberger /* Transmit a packet */
6261203fcceSJoe Hershberger static inline void net_send_packet(uchar *pkt, int len)
627adf5d93eSJoe Hershberger {
62860304592SJoe Hershberger 	/* Currently no way to return errors from eth_send() */
629adf5d93eSJoe Hershberger 	(void) eth_send(pkt, len);
630adf5d93eSJoe Hershberger }
6312d966958Swdenk 
632206d07fdSJoe Hershberger /*
6331203fcceSJoe Hershberger  * Transmit "net_tx_packet" as UDP packet, performing ARP request if needed
634ece223b5SJoe Hershberger  *  (ether will be populated)
635206d07fdSJoe Hershberger  *
636206d07fdSJoe Hershberger  * @param ether Raw packet buffer
637206d07fdSJoe Hershberger  * @param dest IP address to send the datagram to
638206d07fdSJoe Hershberger  * @param dport Destination UDP port
639206d07fdSJoe Hershberger  * @param sport Source UDP port
640206d07fdSJoe Hershberger  * @param payload_len Length of data after the UDP header
641206d07fdSJoe Hershberger  */
6421203fcceSJoe Hershberger int net_send_udp_packet(uchar *ether, struct in_addr dest, int dport,
643206d07fdSJoe Hershberger 			int sport, int payload_len);
64473a8b27cSwdenk 
6452d966958Swdenk /* Processes a received packet */
6462a504df0SJoe Hershberger void net_process_received_packet(uchar *in_packet, int len);
6472d966958Swdenk 
64848522bb5SJoe Hershberger #ifdef CONFIG_NETCONSOLE
6496a38a5f3SJoe Hershberger void nc_start(void);
650049a95a7SJoe Hershberger int nc_input_packet(uchar *pkt, struct in_addr src_ip, unsigned dest_port,
6518a0eccb1SJoe Hershberger 	unsigned src_port, unsigned len);
65248522bb5SJoe Hershberger #endif
65348522bb5SJoe Hershberger 
654f8be7d65SJoe Hershberger static inline __attribute__((always_inline)) int eth_is_on_demand_init(void)
655f8be7d65SJoe Hershberger {
656f8be7d65SJoe Hershberger #ifdef CONFIG_NETCONSOLE
657f8be7d65SJoe Hershberger 	extern enum proto_t net_loop_last_protocol;
658f8be7d65SJoe Hershberger 
659f8be7d65SJoe Hershberger 	return net_loop_last_protocol != NETCONS;
660f8be7d65SJoe Hershberger #else
661f8be7d65SJoe Hershberger 	return 1;
662f8be7d65SJoe Hershberger #endif
663f8be7d65SJoe Hershberger }
664f8be7d65SJoe Hershberger 
665f8be7d65SJoe Hershberger static inline void eth_set_last_protocol(int protocol)
666f8be7d65SJoe Hershberger {
667f8be7d65SJoe Hershberger #ifdef CONFIG_NETCONSOLE
668f8be7d65SJoe Hershberger 	extern enum proto_t net_loop_last_protocol;
669f8be7d65SJoe Hershberger 
670f8be7d65SJoe Hershberger 	net_loop_last_protocol = protocol;
671f8be7d65SJoe Hershberger #endif
672f8be7d65SJoe Hershberger }
673f8be7d65SJoe Hershberger 
6742d966958Swdenk /*
675e4a3d57dSSimon Glass  * Check if autoload is enabled. If so, use either NFS or TFTP to download
676e4a3d57dSSimon Glass  * the boot file.
677e4a3d57dSSimon Glass  */
678e4a3d57dSSimon Glass void net_auto_load(void);
679e4a3d57dSSimon Glass 
680e4a3d57dSSimon Glass /*
6812d966958Swdenk  * The following functions are a bit ugly, but necessary to deal with
6822d966958Swdenk  * alignment restrictions on ARM.
6832d966958Swdenk  *
6842d966958Swdenk  * We're using inline functions, which had the smallest memory
6852d966958Swdenk  * footprint in our tests.
6862d966958Swdenk  */
6872d966958Swdenk /* return IP *in network byteorder* */
688049a95a7SJoe Hershberger static inline struct in_addr net_read_ip(void *from)
6892d966958Swdenk {
690049a95a7SJoe Hershberger 	struct in_addr ip;
691b28e28bbSJoe Hershberger 
69233a4a70dSAnatolij Gustschin 	memcpy((void *)&ip, (void *)from, sizeof(ip));
6932d966958Swdenk 	return ip;
6942d966958Swdenk }
6952d966958Swdenk 
6962d966958Swdenk /* return ulong *in network byteorder* */
6975917e7d1SSergey Temerkhanov static inline u32 net_read_u32(u32 *from)
6982d966958Swdenk {
6995917e7d1SSergey Temerkhanov 	u32 l;
700b28e28bbSJoe Hershberger 
7012d966958Swdenk 	memcpy((void *)&l, (void *)from, sizeof(l));
7022d966958Swdenk 	return l;
7032d966958Swdenk }
7042d966958Swdenk 
7052d966958Swdenk /* write IP *in network byteorder* */
706049a95a7SJoe Hershberger static inline void net_write_ip(void *to, struct in_addr ip)
7072d966958Swdenk {
7082d966958Swdenk 	memcpy(to, (void *)&ip, sizeof(ip));
7092d966958Swdenk }
7102d966958Swdenk 
7112d966958Swdenk /* copy IP */
712049a95a7SJoe Hershberger static inline void net_copy_ip(void *to, void *from)
7132d966958Swdenk {
714049a95a7SJoe Hershberger 	memcpy((void *)to, from, sizeof(struct in_addr));
7152d966958Swdenk }
7162d966958Swdenk 
7172d966958Swdenk /* copy ulong */
7185917e7d1SSergey Temerkhanov static inline void net_copy_u32(u32 *to, u32 *from)
7192d966958Swdenk {
7205917e7d1SSergey Temerkhanov 	memcpy((void *)to, (void *)from, sizeof(u32));
7212d966958Swdenk }
7222d966958Swdenk 
72350cca8b9SMike Rapoport /**
7240adb5b76SJoe Hershberger  * is_zero_ethaddr - Determine if give Ethernet address is all zeros.
72550cca8b9SMike Rapoport  * @addr: Pointer to a six-byte array containing the Ethernet address
72650cca8b9SMike Rapoport  *
72750cca8b9SMike Rapoport  * Return true if the address is all zeroes.
72850cca8b9SMike Rapoport  */
7290adb5b76SJoe Hershberger static inline int is_zero_ethaddr(const u8 *addr)
73050cca8b9SMike Rapoport {
73150cca8b9SMike Rapoport 	return !(addr[0] | addr[1] | addr[2] | addr[3] | addr[4] | addr[5]);
73250cca8b9SMike Rapoport }
73350cca8b9SMike Rapoport 
73450cca8b9SMike Rapoport /**
7350adb5b76SJoe Hershberger  * is_multicast_ethaddr - Determine if the Ethernet address is a multicast.
73650cca8b9SMike Rapoport  * @addr: Pointer to a six-byte array containing the Ethernet address
73750cca8b9SMike Rapoport  *
73850cca8b9SMike Rapoport  * Return true if the address is a multicast address.
73950cca8b9SMike Rapoport  * By definition the broadcast address is also a multicast address.
74050cca8b9SMike Rapoport  */
7410adb5b76SJoe Hershberger static inline int is_multicast_ethaddr(const u8 *addr)
74250cca8b9SMike Rapoport {
743b28e28bbSJoe Hershberger 	return 0x01 & addr[0];
74450cca8b9SMike Rapoport }
74550cca8b9SMike Rapoport 
74623cd1385SRemy Bohmer /*
7470adb5b76SJoe Hershberger  * is_broadcast_ethaddr - Determine if the Ethernet address is broadcast
74823cd1385SRemy Bohmer  * @addr: Pointer to a six-byte array containing the Ethernet address
74923cd1385SRemy Bohmer  *
75023cd1385SRemy Bohmer  * Return true if the address is the broadcast address.
75123cd1385SRemy Bohmer  */
7520adb5b76SJoe Hershberger static inline int is_broadcast_ethaddr(const u8 *addr)
75323cd1385SRemy Bohmer {
754b28e28bbSJoe Hershberger 	return (addr[0] & addr[1] & addr[2] & addr[3] & addr[4] & addr[5]) ==
755b28e28bbSJoe Hershberger 		0xff;
75623cd1385SRemy Bohmer }
75723cd1385SRemy Bohmer 
75823cd1385SRemy Bohmer /*
7590adb5b76SJoe Hershberger  * is_valid_ethaddr - Determine if the given Ethernet address is valid
76075edebe3SMike Frysinger  * @addr: Pointer to a six-byte array containing the Ethernet address
76175edebe3SMike Frysinger  *
76275edebe3SMike Frysinger  * Check that the Ethernet address (MAC) is not 00:00:00:00:00:00, is not
76375edebe3SMike Frysinger  * a multicast address, and is not FF:FF:FF:FF:FF:FF.
76475edebe3SMike Frysinger  *
76575edebe3SMike Frysinger  * Return true if the address is valid.
76675edebe3SMike Frysinger  */
7670adb5b76SJoe Hershberger static inline int is_valid_ethaddr(const u8 *addr)
76875edebe3SMike Frysinger {
76975edebe3SMike Frysinger 	/* FF:FF:FF:FF:FF:FF is a multicast address so we don't need to
77075edebe3SMike Frysinger 	 * explicitly check for it here. */
7710adb5b76SJoe Hershberger 	return !is_multicast_ethaddr(addr) && !is_zero_ethaddr(addr);
77275edebe3SMike Frysinger }
77375edebe3SMike Frysinger 
774da384a9dSMasahiro Yamada /**
7750adb5b76SJoe Hershberger  * net_random_ethaddr - Generate software assigned random Ethernet address
776da384a9dSMasahiro Yamada  * @addr: Pointer to a six-byte array containing the Ethernet address
777da384a9dSMasahiro Yamada  *
778da384a9dSMasahiro Yamada  * Generate a random Ethernet address (MAC) that is not multicast
779da384a9dSMasahiro Yamada  * and has the local assigned bit set.
780da384a9dSMasahiro Yamada  */
7810adb5b76SJoe Hershberger static inline void net_random_ethaddr(uchar *addr)
782da384a9dSMasahiro Yamada {
783da384a9dSMasahiro Yamada 	int i;
784da384a9dSMasahiro Yamada 	unsigned int seed = get_timer(0);
785da384a9dSMasahiro Yamada 
786da384a9dSMasahiro Yamada 	for (i = 0; i < 6; i++)
787da384a9dSMasahiro Yamada 		addr[i] = rand_r(&seed);
788da384a9dSMasahiro Yamada 
789da384a9dSMasahiro Yamada 	addr[0] &= 0xfe;	/* clear multicast bit */
790da384a9dSMasahiro Yamada 	addr[0] |= 0x02;	/* set local assignment bit (IEEE802) */
791da384a9dSMasahiro Yamada }
792da384a9dSMasahiro Yamada 
7932d966958Swdenk /* Convert an IP address to a string */
794049a95a7SJoe Hershberger void ip_to_string(struct in_addr x, char *s);
7952d966958Swdenk 
79673a8b27cSwdenk /* Convert a string to ip address */
797049a95a7SJoe Hershberger struct in_addr string_to_ip(const char *s);
79873a8b27cSwdenk 
799a3d991bdSwdenk /* Convert a VLAN id to a string */
8004fd5055fSJoe Hershberger void vlan_to_string(ushort x, char *s);
801a3d991bdSwdenk 
802a3d991bdSwdenk /* Convert a string to a vlan id */
8034fd5055fSJoe Hershberger ushort string_to_vlan(const char *s);
804a3d991bdSwdenk 
805a3d991bdSwdenk /* read a VLAN id from an environment variable */
8064fd5055fSJoe Hershberger ushort getenv_vlan(char *);
807a3d991bdSwdenk 
8082d966958Swdenk /* copy a filename (allow for "..." notation, limit length) */
809ff997432SJoe Hershberger void copy_filename(char *dst, const char *src, int size);
8102d966958Swdenk 
81191b469c9SMike Frysinger /* get a random source port */
812ff997432SJoe Hershberger unsigned int random_port(void);
81391b469c9SMike Frysinger 
814ea5427e2SSimon Glass /* Update U-Boot over TFTP */
815ff997432SJoe Hershberger int update_tftp(ulong addr);
816ea5427e2SSimon Glass 
8172d966958Swdenk /**********************************************************************/
8182d966958Swdenk 
8192d966958Swdenk #endif /* __NET_H__ */
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