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1 /*
2 * LiMon Monitor (LiMon) - Network.
3 *
4 * Copyright 1994 - 2000 Neil Russell.
5 * (See License)
6 *
7 *
8 * History
9 * 9/16/00 bor adapted to TQM823L/STK8xxL board, RARP/TFTP boot added
10 */
11
12 #ifndef __NET_H__
13 #define __NET_H__
14
15 #if defined(CONFIG_8xx)
16 #include <commproc.h>
17 # if !defined(CONFIG_NET_MULTI)
18 # if defined(FEC_ENET) || defined(SCC_ENET)
19 # define CONFIG_NET_MULTI
20 # endif
21 # endif
22 #endif /* CONFIG_8xx */
23
24 #if defined(CONFIG_MPC5xxx)
25 # if !defined(CONFIG_NET_MULTI)
26 # if defined(CONFIG_MPC5xxx_FEC)
27 # define CONFIG_NET_MULTI
28 # endif
29 # endif
30 #endif /* CONFIG_MPC5xxx */
31
32 #if !defined(CONFIG_NET_MULTI) && defined(CONFIG_CPM2)
33 #include <config.h>
34 #if defined(CONFIG_ETHER_ON_FCC)
35 #if defined(CONFIG_ETHER_ON_SCC)
36 #error "Ethernet not correctly defined"
37 #endif /* CONFIG_ETHER_ON_SCC */
38 #define CONFIG_NET_MULTI
39 #if (CONFIG_ETHER_INDEX == 1)
40 #define CONFIG_ETHER_ON_FCC1
41 # define CONFIG_SYS_CMXFCR_MASK1 CONFIG_SYS_CMXFCR_MASK
42 # define CONFIG_SYS_CMXFCR_VALUE1 CONFIG_SYS_CMXFCR_VALUE
43 #elif (CONFIG_ETHER_INDEX == 2)
44 #define CONFIG_ETHER_ON_FCC2
45 # define CONFIG_SYS_CMXFCR_MASK2 CONFIG_SYS_CMXFCR_MASK
46 # define CONFIG_SYS_CMXFCR_VALUE2 CONFIG_SYS_CMXFCR_VALUE
47 #elif (CONFIG_ETHER_INDEX == 3)
48 #define CONFIG_ETHER_ON_FCC3
49 # define CONFIG_SYS_CMXFCR_MASK3 CONFIG_SYS_CMXFCR_MASK
50 # define CONFIG_SYS_CMXFCR_VALUE3 CONFIG_SYS_CMXFCR_VALUE
51 #endif /* CONFIG_ETHER_INDEX */
52 #endif /* CONFIG_ETHER_ON_FCC */
53 #endif /* !CONFIG_NET_MULTI && CONFIG_8260 */
54
55 #include <asm/byteorder.h> /* for nton* / ntoh* stuff */
56
57
58 /*
59 * The number of receive packet buffers, and the required packet buffer
60 * alignment in memory.
61 *
62 */
63
64 #ifdef CONFIG_SYS_RX_ETH_BUFFER
65 # define PKTBUFSRX CONFIG_SYS_RX_ETH_BUFFER
66 #else
67 # define PKTBUFSRX 4
68 #endif
69
70 #define PKTALIGN 32
71
72 typedef ulong IPaddr_t;
73
74
75 /*
76 * The current receive packet handler. Called with a pointer to the
77 * application packet, and a protocol type (PORT_BOOTPC or PORT_TFTP).
78 * All other packets are dealt with without calling the handler.
79 */
80 typedef void rxhand_f(uchar *, unsigned, unsigned, unsigned);
81
82 /*
83 * A timeout handler. Called after time interval has expired.
84 */
85 typedef void thand_f(void);
86
87 #define NAMESIZE 16
88
89 enum eth_state_t {
90 ETH_STATE_INIT,
91 ETH_STATE_PASSIVE,
92 ETH_STATE_ACTIVE
93 };
94
95 struct eth_device {
96 char name[NAMESIZE];
97 unsigned char enetaddr[6];
98 int iobase;
99 int state;
100
101 int (*init) (struct eth_device*, bd_t*);
102 int (*send) (struct eth_device*, volatile void* packet, int length);
103 int (*recv) (struct eth_device*);
104 void (*halt) (struct eth_device*);
105 #ifdef CONFIG_MCAST_TFTP
106 int (*mcast) (struct eth_device*, u32 ip, u8 set);
107 #endif
108 struct eth_device *next;
109 void *priv;
110 };
111
112 extern int eth_initialize(bd_t *bis); /* Initialize network subsystem */
113 extern int eth_register(struct eth_device* dev);/* Register network device */
114 extern void eth_try_another(int first_restart); /* Change the device */
115 #ifdef CONFIG_NET_MULTI
116 extern void eth_set_current(void); /* set nterface to ethcur var. */
117 #endif
118 extern struct eth_device *eth_get_dev(void); /* get the current device MAC */
119 extern struct eth_device *eth_get_dev_by_name(char *devname); /* get device */
120 extern int eth_get_dev_index (void); /* get the device index */
121 extern void eth_set_enetaddr(int num, char* a); /* Set new MAC address */
122
123 extern int eth_init(bd_t *bis); /* Initialize the device */
124 extern int eth_send(volatile void *packet, int length); /* Send a packet */
125 #ifdef CONFIG_API
126 extern int eth_receive(volatile void *packet, int length); /* Receive a packet */
127 #endif
128 extern int eth_rx(void); /* Check for received packets */
129 extern void eth_halt(void); /* stop SCC */
130 extern char *eth_get_name(void); /* get name of current device */
131
132 #ifdef CONFIG_MCAST_TFTP
133 int eth_mcast_join( IPaddr_t mcast_addr, u8 join);
134 u32 ether_crc (size_t len, unsigned char const *p);
135 #endif
136
137
138 /**********************************************************************/
139 /*
140 * Protocol headers.
141 */
142
143 /*
144 * Ethernet header
145 */
146 typedef struct {
147 uchar et_dest[6]; /* Destination node */
148 uchar et_src[6]; /* Source node */
149 ushort et_protlen; /* Protocol or length */
150 uchar et_dsap; /* 802 DSAP */
151 uchar et_ssap; /* 802 SSAP */
152 uchar et_ctl; /* 802 control */
153 uchar et_snap1; /* SNAP */
154 uchar et_snap2;
155 uchar et_snap3;
156 ushort et_prot; /* 802 protocol */
157 } Ethernet_t;
158
159 #define ETHER_HDR_SIZE 14 /* Ethernet header size */
160 #define E802_HDR_SIZE 22 /* 802 ethernet header size */
161
162 /*
163 * Ethernet header
164 */
165 typedef struct {
166 uchar vet_dest[6]; /* Destination node */
167 uchar vet_src[6]; /* Source node */
168 ushort vet_vlan_type; /* PROT_VLAN */
169 ushort vet_tag; /* TAG of VLAN */
170 ushort vet_type; /* protocol type */
171 } VLAN_Ethernet_t;
172
173 #define VLAN_ETHER_HDR_SIZE 18 /* VLAN Ethernet header size */
174
175 #define PROT_IP 0x0800 /* IP protocol */
176 #define PROT_ARP 0x0806 /* IP ARP protocol */
177 #define PROT_RARP 0x8035 /* IP ARP protocol */
178 #define PROT_VLAN 0x8100 /* IEEE 802.1q protocol */
179
180 #define IPPROTO_ICMP 1 /* Internet Control Message Protocol */
181 #define IPPROTO_UDP 17 /* User Datagram Protocol */
182
183 /*
184 * Internet Protocol (IP) header.
185 */
186 typedef struct {
187 uchar ip_hl_v; /* header length and version */
188 uchar ip_tos; /* type of service */
189 ushort ip_len; /* total length */
190 ushort ip_id; /* identification */
191 ushort ip_off; /* fragment offset field */
192 uchar ip_ttl; /* time to live */
193 uchar ip_p; /* protocol */
194 ushort ip_sum; /* checksum */
195 IPaddr_t ip_src; /* Source IP address */
196 IPaddr_t ip_dst; /* Destination IP address */
197 ushort udp_src; /* UDP source port */
198 ushort udp_dst; /* UDP destination port */
199 ushort udp_len; /* Length of UDP packet */
200 ushort udp_xsum; /* Checksum */
201 } IP_t;
202
203 #define IP_OFFS 0x1fff /* ip offset *= 8 */
204 #define IP_FLAGS 0xe000 /* first 3 bits */
205 #define IP_FLAGS_RES 0x8000 /* reserved */
206 #define IP_FLAGS_DFRAG 0x4000 /* don't fragments */
207 #define IP_FLAGS_MFRAG 0x2000 /* more fragments */
208
209 #define IP_HDR_SIZE_NO_UDP (sizeof (IP_t) - 8)
210 #define IP_HDR_SIZE (sizeof (IP_t))
211
212
213 /*
214 * Address Resolution Protocol (ARP) header.
215 */
216 typedef struct
217 {
218 ushort ar_hrd; /* Format of hardware address */
219 # define ARP_ETHER 1 /* Ethernet hardware address */
220 ushort ar_pro; /* Format of protocol address */
221 uchar ar_hln; /* Length of hardware address */
222 uchar ar_pln; /* Length of protocol address */
223 ushort ar_op; /* Operation */
224 # define ARPOP_REQUEST 1 /* Request to resolve address */
225 # define ARPOP_REPLY 2 /* Response to previous request */
226
227 # define RARPOP_REQUEST 3 /* Request to resolve address */
228 # define RARPOP_REPLY 4 /* Response to previous request */
229
230 /*
231 * The remaining fields are variable in size, according to
232 * the sizes above, and are defined as appropriate for
233 * specific hardware/protocol combinations.
234 */
235 uchar ar_data[0];
236 #if 0
237 uchar ar_sha[]; /* Sender hardware address */
238 uchar ar_spa[]; /* Sender protocol address */
239 uchar ar_tha[]; /* Target hardware address */
240 uchar ar_tpa[]; /* Target protocol address */
241 #endif /* 0 */
242 } ARP_t;
243
244 #define ARP_HDR_SIZE (8+20) /* Size assuming ethernet */
245
246 /*
247 * ICMP stuff (just enough to handle (host) redirect messages)
248 */
249 #define ICMP_ECHO_REPLY 0 /* Echo reply */
250 #define ICMP_REDIRECT 5 /* Redirect (change route) */
251 #define ICMP_ECHO_REQUEST 8 /* Echo request */
252
253 /* Codes for REDIRECT. */
254 #define ICMP_REDIR_NET 0 /* Redirect Net */
255 #define ICMP_REDIR_HOST 1 /* Redirect Host */
256
257 typedef struct icmphdr {
258 uchar type;
259 uchar code;
260 ushort checksum;
261 union {
262 struct {
263 ushort id;
264 ushort sequence;
265 } echo;
266 ulong gateway;
267 struct {
268 ushort __unused;
269 ushort mtu;
270 } frag;
271 } un;
272 } ICMP_t;
273
274
275 /*
276 * Maximum packet size; used to allocate packet storage.
277 * TFTP packets can be 524 bytes + IP header + ethernet header.
278 * Lets be conservative, and go for 38 * 16. (Must also be
279 * a multiple of 32 bytes).
280 */
281 /*
282 * AS.HARNOIS : Better to set PKTSIZE to maximum size because
283 * traffic type is not always controlled
284 * maximum packet size = 1518
285 * maximum packet size and multiple of 32 bytes = 1536
286 */
287 #define PKTSIZE 1518
288 #define PKTSIZE_ALIGN 1536
289 /*#define PKTSIZE 608*/
290
291 /*
292 * Maximum receive ring size; that is, the number of packets
293 * we can buffer before overflow happens. Basically, this just
294 * needs to be enough to prevent a packet being discarded while
295 * we are processing the previous one.
296 */
297 #define RINGSZ 4
298 #define RINGSZ_LOG2 2
299
300 /**********************************************************************/
301 /*
302 * Globals.
303 *
304 * Note:
305 *
306 * All variables of type IPaddr_t are stored in NETWORK byte order
307 * (big endian).
308 */
309
310 /* net.c */
311 /** BOOTP EXTENTIONS **/
312 extern IPaddr_t NetOurGatewayIP; /* Our gateway IP addresse */
313 extern IPaddr_t NetOurSubnetMask; /* Our subnet mask (0 = unknown)*/
314 extern IPaddr_t NetOurDNSIP; /* Our Domain Name Server (0 = unknown)*/
315 #if defined(CONFIG_BOOTP_DNS2)
316 extern IPaddr_t NetOurDNS2IP; /* Our 2nd Domain Name Server (0 = unknown)*/
317 #endif
318 extern char NetOurNISDomain[32]; /* Our NIS domain */
319 extern char NetOurHostName[32]; /* Our hostname */
320 extern char NetOurRootPath[64]; /* Our root path */
321 extern ushort NetBootFileSize; /* Our boot file size in blocks */
322 /** END OF BOOTP EXTENTIONS **/
323 extern ulong NetBootFileXferSize; /* size of bootfile in bytes */
324 extern uchar NetOurEther[6]; /* Our ethernet address */
325 extern uchar NetServerEther[6]; /* Boot server enet address */
326 extern IPaddr_t NetOurIP; /* Our IP addr (0 = unknown) */
327 extern IPaddr_t NetServerIP; /* Server IP addr (0 = unknown) */
328 extern volatile uchar * NetTxPacket; /* THE transmit packet */
329 extern volatile uchar * NetRxPackets[PKTBUFSRX];/* Receive packets */
330 extern volatile uchar * NetRxPkt; /* Current receive packet */
331 extern int NetRxPktLen; /* Current rx packet length */
332 extern unsigned NetIPID; /* IP ID (counting) */
333 extern uchar NetBcastAddr[6]; /* Ethernet boardcast address */
334 extern uchar NetEtherNullAddr[6];
335
336 #define VLAN_NONE 4095 /* untagged */
337 #define VLAN_IDMASK 0x0fff /* mask of valid vlan id */
338 extern ushort NetOurVLAN; /* Our VLAN */
339 extern ushort NetOurNativeVLAN; /* Our Native VLAN */
340
341 extern uchar NetCDPAddr[6]; /* Ethernet CDP address */
342 extern ushort CDPNativeVLAN; /* CDP returned native VLAN */
343 extern ushort CDPApplianceVLAN; /* CDP returned appliance VLAN */
344
345 extern int NetState; /* Network loop state */
346 #define NETLOOP_CONTINUE 1
347 #define NETLOOP_RESTART 2
348 #define NETLOOP_SUCCESS 3
349 #define NETLOOP_FAIL 4
350
351 #ifdef CONFIG_NET_MULTI
352 extern int NetRestartWrap; /* Tried all network devices */
353 #endif
354
355 typedef enum { BOOTP, RARP, ARP, TFTP, DHCP, PING, DNS, NFS, CDP, NETCONS, SNTP } proto_t;
356
357 /* from net/net.c */
358 extern char BootFile[128]; /* Boot File name */
359
360 #if defined(CONFIG_CMD_PING)
361 extern IPaddr_t NetPingIP; /* the ip address to ping */
362 #endif
363
364 #if defined(CONFIG_CMD_CDP)
365 /* when CDP completes these hold the return values */
366 extern ushort CDPNativeVLAN;
367 extern ushort CDPApplianceVLAN;
368 #endif
369
370 #if defined(CONFIG_CMD_SNTP)
371 extern IPaddr_t NetNtpServerIP; /* the ip address to NTP */
372 extern int NetTimeOffset; /* offset time from UTC */
373 #endif
374
375 /* Initialize the network adapter */
376 extern int NetLoop(proto_t);
377
378 /* Shutdown adapters and cleanup */
379 extern void NetStop(void);
380
381 /* Load failed. Start again. */
382 extern void NetStartAgain(void);
383
384 /* Get size of the ethernet header when we send */
385 extern int NetEthHdrSize(void);
386
387 /* Set ethernet header; returns the size of the header */
388 extern int NetSetEther(volatile uchar *, uchar *, uint);
389
390 /* Set IP header */
391 extern void NetSetIP(volatile uchar *, IPaddr_t, int, int, int);
392
393 /* Checksum */
394 extern int NetCksumOk(uchar *, int); /* Return true if cksum OK */
395 extern uint NetCksum(uchar *, int); /* Calculate the checksum */
396
397 /* Set callbacks */
398 extern void NetSetHandler(rxhand_f *); /* Set RX packet handler */
399 extern void NetSetTimeout(ulong, thand_f *);/* Set timeout handler */
400
401 /* Transmit "NetTxPacket" */
402 extern void NetSendPacket(volatile uchar *, int);
403
404 /* Transmit UDP packet, performing ARP request if needed */
405 extern int NetSendUDPPacket(uchar *ether, IPaddr_t dest, int dport, int sport, int len);
406
407 /* Processes a received packet */
408 extern void NetReceive(volatile uchar *, int);
409
410 /* Print an IP address on the console */
411 extern void print_IPaddr (IPaddr_t);
412
413 /*
414 * The following functions are a bit ugly, but necessary to deal with
415 * alignment restrictions on ARM.
416 *
417 * We're using inline functions, which had the smallest memory
418 * footprint in our tests.
419 */
420 /* return IP *in network byteorder* */
421 static inline IPaddr_t NetReadIP(volatile void *from)
422 {
423 IPaddr_t ip;
424 memcpy((void*)&ip, (void*)from, sizeof(ip));
425 return ip;
426 }
427
428 /* return ulong *in network byteorder* */
429 static inline ulong NetReadLong(ulong *from)
430 {
431 ulong l;
432 memcpy((void*)&l, (void*)from, sizeof(l));
433 return l;
434 }
435
436 /* write IP *in network byteorder* */
437 static inline void NetWriteIP(void *to, IPaddr_t ip)
438 {
439 memcpy(to, (void*)&ip, sizeof(ip));
440 }
441
442 /* copy IP */
443 static inline void NetCopyIP(volatile void *to, void *from)
444 {
445 memcpy((void*)to, from, sizeof(IPaddr_t));
446 }
447
448 /* copy ulong */
449 static inline void NetCopyLong(ulong *to, ulong *from)
450 {
451 memcpy((void*)to, (void*)from, sizeof(ulong));
452 }
453
454 /**
455 * is_zero_ether_addr - Determine if give Ethernet address is all zeros.
456 * @addr: Pointer to a six-byte array containing the Ethernet address
457 *
458 * Return true if the address is all zeroes.
459 */
460 static inline int is_zero_ether_addr(const u8 *addr)
461 {
462 return !(addr[0] | addr[1] | addr[2] | addr[3] | addr[4] | addr[5]);
463 }
464
465 /**
466 * is_multicast_ether_addr - Determine if the Ethernet address is a multicast.
467 * @addr: Pointer to a six-byte array containing the Ethernet address
468 *
469 * Return true if the address is a multicast address.
470 * By definition the broadcast address is also a multicast address.
471 */
472 static inline int is_multicast_ether_addr(const u8 *addr)
473 {
474 return (0x01 & addr[0]);
475 }
476
477 /**
478 * is_valid_ether_addr - Determine if the given Ethernet address is valid
479 * @addr: Pointer to a six-byte array containing the Ethernet address
480 *
481 * Check that the Ethernet address (MAC) is not 00:00:00:00:00:00, is not
482 * a multicast address, and is not FF:FF:FF:FF:FF:FF.
483 *
484 * Return true if the address is valid.
485 */
486 static inline int is_valid_ether_addr(const u8 * addr)
487 {
488 /* FF:FF:FF:FF:FF:FF is a multicast address so we don't need to
489 * explicitly check for it here. */
490 return !is_multicast_ether_addr(addr) && !is_zero_ether_addr(addr);
491 }
492
493 /* Convert an IP address to a string */
494 extern void ip_to_string (IPaddr_t x, char *s);
495
496 /* Convert a string to ip address */
497 extern IPaddr_t string_to_ip(char *s);
498
499 /* Convert a VLAN id to a string */
500 extern void VLAN_to_string (ushort x, char *s);
501
502 /* Convert a string to a vlan id */
503 extern ushort string_to_VLAN(char *s);
504
505 /* read an IP address from a environment variable */
506 extern IPaddr_t getenv_IPaddr (char *);
507
508 /* read a VLAN id from an environment variable */
509 extern ushort getenv_VLAN(char *);
510
511 /* copy a filename (allow for "..." notation, limit length) */
512 extern void copy_filename (char *dst, char *src, int size);
513
514 /**********************************************************************/
515
516 #endif /* __NET_H__ */