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2d966958
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1/*
2 * LiMon Monitor (LiMon) - Network.
3 *
4 * Copyright 1994 - 2000 Neil Russell.
5 * (See License)
2ea91039 6 * SPDX-License-Identifier: GPL-2.0
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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
71f95118 15#if defined(CONFIG_8xx)
2d966958 16#include <commproc.h>
71f95118 17#endif /* CONFIG_8xx */
aacf9a49 18
2c4b3c19 19#include <asm/cache.h>
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20#include <asm/byteorder.h> /* for nton* / ntoh* stuff */
21
4ef8d53c
JH
22#define DEBUG_LL_STATE 0 /* Link local state machine changes */
23#define DEBUG_DEV_PKT 0 /* Packets or info directed to the device */
24#define DEBUG_NET_PKT 0 /* Packets on info on the network at large */
25#define DEBUG_INT_STATE 0 /* Internal network state changes */
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26
27/*
28 * The number of receive packet buffers, and the required packet buffer
29 * alignment in memory.
30 *
31 */
32
6d0f6bcf
JCPV
33#ifdef CONFIG_SYS_RX_ETH_BUFFER
34# define PKTBUFSRX CONFIG_SYS_RX_ETH_BUFFER
1d0350ed 35#else
c6028835 36# define PKTBUFSRX 4
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37#endif
38
2c4b3c19 39#define PKTALIGN ARCH_DMA_MINALIGN
2d966958 40
ea45cb0a 41/* IPv4 addresses are always 32 bits in size */
049a95a7
JH
42struct in_addr {
43 __be32 s_addr;
44};
2d966958 45
03eb129f
LC
46/**
47 * An incoming packet handler.
48 * @param pkt pointer to the application packet
49 * @param dport destination UDP port
50 * @param sip source IP address
51 * @param sport source UDP port
52 * @param len packet length
2d966958 53 */
03eb129f 54typedef void rxhand_f(uchar *pkt, unsigned dport,
049a95a7 55 struct in_addr sip, unsigned sport,
03eb129f 56 unsigned len);
2d966958 57
4793ee65
SG
58/**
59 * An incoming ICMP packet handler.
60 * @param type ICMP type
61 * @param code ICMP code
62 * @param dport destination UDP port
63 * @param sip source IP address
64 * @param sport source UDP port
65 * @param pkt pointer to the ICMP packet data
66 * @param len packet length
67 */
68typedef void rxhand_icmp_f(unsigned type, unsigned code, unsigned dport,
049a95a7 69 struct in_addr sip, unsigned sport, uchar *pkt, unsigned len);
4793ee65 70
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71/*
72 * A timeout handler. Called after time interval has expired.
73 */
74typedef void thand_f(void);
75
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76enum eth_state_t {
77 ETH_STATE_INIT,
78 ETH_STATE_PASSIVE,
79 ETH_STATE_ACTIVE
80};
81
05c3e68f
JH
82#ifdef CONFIG_DM_ETH
83/**
84 * struct eth_pdata - Platform data for Ethernet MAC controllers
85 *
86 * @iobase: The base address of the hardware registers
87 * @enetaddr: The Ethernet MAC address that is loaded from EEPROM or env
c74c8e66 88 * @phy_interface: PHY interface to use - see PHY_INTERFACE_MODE_...
f74264d6 89 * @max_speed: Maximum speed of Ethernet connection supported by MAC
05c3e68f
JH
90 */
91struct eth_pdata {
92 phys_addr_t iobase;
93 unsigned char enetaddr[6];
c74c8e66 94 int phy_interface;
f74264d6 95 int max_speed;
05c3e68f
JH
96};
97
a1ca92ea
SG
98enum eth_recv_flags {
99 /*
100 * Check hardware device for new packets (otherwise only return those
101 * which are already in the memory buffer ready to process)
102 */
103 ETH_RECV_CHECK_DEVICE = 1 << 0,
104};
105
05c3e68f
JH
106/**
107 * struct eth_ops - functions of Ethernet MAC controllers
108 *
109 * start: Prepare the hardware to send and receive packets
110 * send: Send the bytes passed in "packet" as a packet on the wire
17591405
JH
111 * recv: Check if the hardware received a packet. If so, set the pointer to the
112 * packet buffer in the packetp parameter. If not, return an error or 0 to
63c9729a
JH
113 * indicate that the hardware receive FIFO is empty. If 0 is returned, the
114 * network stack will not process the empty packet, but free_pkt() will be
115 * called if supplied
116 * free_pkt: Give the driver an opportunity to manage its packet buffer memory
117 * when the network stack is finished processing it. This will only be
118 * called when no error was returned from recv - optional
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119 * stop: Stop the hardware from looking for packets - may be called even if
120 * state == PASSIVE
121 * mcast: Join or leave a multicast group (for TFTP) - optional
122 * write_hwaddr: Write a MAC address to the hardware (used to pass it to Linux
123 * on some platforms like ARM). This function expects the
b86f795a
SG
124 * eth_pdata::enetaddr field to be populated. The method can
125 * return -ENOSYS to indicate that this is not implemented for
126 this hardware - optional.
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127 * read_rom_hwaddr: Some devices have a backup of the MAC address stored in a
128 * ROM on the board. This is how the driver should expose it
129 * to the network stack. This function should fill in the
130 * eth_pdata::enetaddr field - optional
131 */
132struct eth_ops {
133 int (*start)(struct udevice *dev);
134 int (*send)(struct udevice *dev, void *packet, int length);
a1ca92ea 135 int (*recv)(struct udevice *dev, int flags, uchar **packetp);
63c9729a 136 int (*free_pkt)(struct udevice *dev, uchar *packet, int length);
05c3e68f
JH
137 void (*stop)(struct udevice *dev);
138#ifdef CONFIG_MCAST_TFTP
139 int (*mcast)(struct udevice *dev, const u8 *enetaddr, int join);
140#endif
141 int (*write_hwaddr)(struct udevice *dev);
142 int (*read_rom_hwaddr)(struct udevice *dev);
143};
144
145#define eth_get_ops(dev) ((struct eth_ops *)(dev)->driver->ops)
146
147struct udevice *eth_get_dev(void); /* get the current device */
e58780dc
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148/*
149 * The devname can be either an exact name given by the driver or device tree
150 * or it can be an alias of the form "eth%d"
151 */
152struct udevice *eth_get_dev_by_name(const char *devname);
05c3e68f 153unsigned char *eth_get_ethaddr(void); /* get the current device MAC */
eaa8a195 154
05c3e68f 155/* Used only when NetConsole is enabled */
eaa8a195 156int eth_is_active(struct udevice *dev); /* Test device for active state */
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157int eth_init_state_only(void); /* Set active state */
158void eth_halt_state_only(void); /* Set passive state */
159#endif
160
161#ifndef CONFIG_DM_ETH
2d966958 162struct eth_device {
f6add132 163 char name[16];
2d966958 164 unsigned char enetaddr[6];
16ae7827 165 phys_addr_t iobase;
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166 int state;
167
a34f2075
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168 int (*init)(struct eth_device *, bd_t *);
169 int (*send)(struct eth_device *, void *packet, int length);
170 int (*recv)(struct eth_device *);
171 void (*halt)(struct eth_device *);
53a5c424 172#ifdef CONFIG_MCAST_TFTP
a34f2075 173 int (*mcast)(struct eth_device *, const u8 *enetaddr, u8 set);
53a5c424 174#endif
a34f2075 175 int (*write_hwaddr)(struct eth_device *);
2d966958 176 struct eth_device *next;
fea7dcae 177 int index;
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178 void *priv;
179};
180
ff997432
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181int eth_register(struct eth_device *dev);/* Register network device */
182int eth_unregister(struct eth_device *dev);/* Remove network device */
06370590 183
06370590
KP
184extern struct eth_device *eth_current;
185
92163873 186static __always_inline struct eth_device *eth_get_dev(void)
f8be7d65 187{
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JH
188 return eth_current;
189}
84eb1fba
JH
190struct eth_device *eth_get_dev_by_name(const char *devname);
191struct eth_device *eth_get_dev_by_index(int index); /* get dev @ index */
8b2c9a71 192
84eb1fba 193/* get the current device MAC */
8b2c9a71
JH
194static inline unsigned char *eth_get_ethaddr(void)
195{
196 if (eth_current)
197 return eth_current->enetaddr;
198 return NULL;
199}
200
eaa8a195
BN
201/* Used only when NetConsole is enabled */
202int eth_is_active(struct eth_device *dev); /* Test device for active state */
84eb1fba 203/* Set active state */
92163873 204static __always_inline int eth_init_state_only(void)
84eb1fba
JH
205{
206 eth_get_dev()->state = ETH_STATE_ACTIVE;
207
208 return 0;
209}
210/* Set passive state */
92163873 211static __always_inline void eth_halt_state_only(void)
84eb1fba
JH
212{
213 eth_get_dev()->state = ETH_STATE_PASSIVE;
214}
215
216/*
217 * Set the hardware address for an ethernet interface based on 'eth%daddr'
218 * environment variable (or just 'ethaddr' if eth_number is 0).
219 * Args:
220 * base_name - base name for device (normally "eth")
221 * eth_number - value of %d (0 for first device of this type)
222 * Returns:
223 * 0 is success, non-zero is error status from driver.
224 */
225int eth_write_hwaddr(struct eth_device *dev, const char *base_name,
226 int eth_number);
227
228int usb_eth_initialize(bd_t *bi);
05c3e68f 229#endif
84eb1fba 230
d2eaec60 231int eth_initialize(void); /* Initialize network subsystem */
84eb1fba
JH
232void eth_try_another(int first_restart); /* Change the device */
233void eth_set_current(void); /* set nterface to ethcur var */
234
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235int eth_get_dev_index(void); /* get the device index */
236void eth_parse_enetaddr(const char *addr, uchar *enetaddr);
219cc94a
JW
237int eth_getenv_enetaddr(const char *name, uchar *enetaddr);
238int eth_setenv_enetaddr(const char *name, const uchar *enetaddr);
7616e785 239
5350bc8f
RQ
240/**
241 * eth_setenv_enetaddr_by_index() - set the MAC address envrionment variable
242 *
243 * This sets up an environment variable with the given MAC address (@enetaddr).
244 * The environment variable to be set is defined by <@base_name><@index>addr.
245 * If @index is 0 it is omitted. For common Ethernet this means ethaddr,
246 * eth1addr, etc.
247 *
248 * @base_name: Base name for variable, typically "eth"
249 * @index: Index of interface being updated (>=0)
250 * @enetaddr: Pointer to MAC address to put into the variable
251 * @return 0 if OK, other value on error
252 */
253int eth_setenv_enetaddr_by_index(const char *base_name, int index,
254 uchar *enetaddr);
255
256
7616e785
SG
257/*
258 * Get the hardware address for an ethernet interface .
259 * Args:
260 * base_name - base name for device (normally "eth")
261 * index - device index number (0 for first)
262 * enetaddr - returns 6 byte hardware address
263 * Returns:
264 * Return true if the address is valid.
265 */
ff997432
JH
266int eth_getenv_enetaddr_by_index(const char *base_name, int index,
267 uchar *enetaddr);
5dc0cf68 268
d2eaec60 269int eth_init(void); /* Initialize the device */
ff997432 270int eth_send(void *packet, int length); /* Send a packet */
23cd1385 271
f85b6071 272#ifdef CONFIG_API
ff997432 273int eth_receive(void *packet, int length); /* Receive a packet*/
db288a96 274extern void (*push_packet)(void *packet, int length);
f85b6071 275#endif
ff997432
JH
276int eth_rx(void); /* Check for received packets */
277void eth_halt(void); /* stop SCC */
84eb1fba 278const char *eth_get_name(void); /* get name of current device */
7616e785 279
53a5c424 280#ifdef CONFIG_MCAST_TFTP
049a95a7 281int eth_mcast_join(struct in_addr mcast_addr, int join);
b28e28bb 282u32 ether_crc(size_t len, unsigned char const *p);
53a5c424
DU
283#endif
284
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285
286/**********************************************************************/
287/*
288 * Protocol headers.
289 */
290
291/*
292 * Ethernet header
293 */
cb487f56
JH
294
295struct ethernet_hdr {
717234e0
ST
296 u8 et_dest[6]; /* Destination node */
297 u8 et_src[6]; /* Source node */
298 u16 et_protlen; /* Protocol or length */
cb487f56
JH
299};
300
301/* Ethernet header size */
302#define ETHER_HDR_SIZE (sizeof(struct ethernet_hdr))
303
a7c3d5e2
BM
304#define ETH_FCS_LEN 4 /* Octets in the FCS */
305
cb487f56 306struct e802_hdr {
717234e0
ST
307 u8 et_dest[6]; /* Destination node */
308 u8 et_src[6]; /* Source node */
309 u16 et_protlen; /* Protocol or length */
310 u8 et_dsap; /* 802 DSAP */
311 u8 et_ssap; /* 802 SSAP */
312 u8 et_ctl; /* 802 control */
313 u8 et_snap1; /* SNAP */
314 u8 et_snap2;
315 u8 et_snap3;
316 u16 et_prot; /* 802 protocol */
cb487f56 317};
2d966958 318
da5ebe2c 319/* 802 + SNAP + ethernet header size */
cb487f56 320#define E802_HDR_SIZE (sizeof(struct e802_hdr))
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WD
321
322/*
da5ebe2c 323 * Virtual LAN Ethernet header
a3d991bd 324 */
c68cca35 325struct vlan_ethernet_hdr {
717234e0
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326 u8 vet_dest[6]; /* Destination node */
327 u8 vet_src[6]; /* Source node */
328 u16 vet_vlan_type; /* PROT_VLAN */
329 u16 vet_tag; /* TAG of VLAN */
330 u16 vet_type; /* protocol type */
c68cca35 331};
a3d991bd 332
c68cca35
JH
333/* VLAN Ethernet header size */
334#define VLAN_ETHER_HDR_SIZE (sizeof(struct vlan_ethernet_hdr))
a3d991bd 335
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336#define PROT_IP 0x0800 /* IP protocol */
337#define PROT_ARP 0x0806 /* IP ARP protocol */
338#define PROT_RARP 0x8035 /* IP ARP protocol */
a3d991bd 339#define PROT_VLAN 0x8100 /* IEEE 802.1q protocol */
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340
341#define IPPROTO_ICMP 1 /* Internet Control Message Protocol */
342#define IPPROTO_UDP 17 /* User Datagram Protocol */
343
344/*
c5c59df0 345 * Internet Protocol (IP) header.
2d966958 346 */
c5c59df0 347struct ip_hdr {
717234e0
ST
348 u8 ip_hl_v; /* header length and version */
349 u8 ip_tos; /* type of service */
350 u16 ip_len; /* total length */
351 u16 ip_id; /* identification */
352 u16 ip_off; /* fragment offset field */
353 u8 ip_ttl; /* time to live */
354 u8 ip_p; /* protocol */
355 u16 ip_sum; /* checksum */
049a95a7
JH
356 struct in_addr ip_src; /* Source IP address */
357 struct in_addr ip_dst; /* Destination IP address */
594c26f8 358};
2d966958 359
e0c07b86
PT
360#define IP_OFFS 0x1fff /* ip offset *= 8 */
361#define IP_FLAGS 0xe000 /* first 3 bits */
362#define IP_FLAGS_RES 0x8000 /* reserved */
363#define IP_FLAGS_DFRAG 0x4000 /* don't fragments */
364#define IP_FLAGS_MFRAG 0x2000 /* more fragments */
365
c5c59df0
JH
366#define IP_HDR_SIZE (sizeof(struct ip_hdr))
367
368/*
369 * Internet Protocol (IP) + UDP header.
370 */
371struct ip_udp_hdr {
717234e0
ST
372 u8 ip_hl_v; /* header length and version */
373 u8 ip_tos; /* type of service */
374 u16 ip_len; /* total length */
375 u16 ip_id; /* identification */
376 u16 ip_off; /* fragment offset field */
377 u8 ip_ttl; /* time to live */
378 u8 ip_p; /* protocol */
379 u16 ip_sum; /* checksum */
049a95a7
JH
380 struct in_addr ip_src; /* Source IP address */
381 struct in_addr ip_dst; /* Destination IP address */
717234e0
ST
382 u16 udp_src; /* UDP source port */
383 u16 udp_dst; /* UDP destination port */
384 u16 udp_len; /* Length of UDP packet */
385 u16 udp_xsum; /* Checksum */
c5c59df0 386};
2d966958 387
594c26f8 388#define IP_UDP_HDR_SIZE (sizeof(struct ip_udp_hdr))
c5c59df0 389#define UDP_HDR_SIZE (IP_UDP_HDR_SIZE - IP_HDR_SIZE)
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390
391/*
392 * Address Resolution Protocol (ARP) header.
393 */
738853bb 394struct arp_hdr {
717234e0 395 u16 ar_hrd; /* Format of hardware address */
2d966958 396# define ARP_ETHER 1 /* Ethernet hardware address */
717234e0
ST
397 u16 ar_pro; /* Format of protocol address */
398 u8 ar_hln; /* Length of hardware address */
674bb249 399# define ARP_HLEN 6
717234e0 400 u8 ar_pln; /* Length of protocol address */
674bb249 401# define ARP_PLEN 4
717234e0 402 u16 ar_op; /* Operation */
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403# define ARPOP_REQUEST 1 /* Request to resolve address */
404# define ARPOP_REPLY 2 /* Response to previous request */
405
406# define RARPOP_REQUEST 3 /* Request to resolve address */
407# define RARPOP_REPLY 4 /* Response to previous request */
408
409 /*
8bde7f77
WD
410 * The remaining fields are variable in size, according to
411 * the sizes above, and are defined as appropriate for
412 * specific hardware/protocol combinations.
2d966958 413 */
717234e0 414 u8 ar_data[0];
674bb249
JH
415#define ar_sha ar_data[0]
416#define ar_spa ar_data[ARP_HLEN]
417#define ar_tha ar_data[ARP_HLEN + ARP_PLEN]
418#define ar_tpa ar_data[ARP_HLEN + ARP_PLEN + ARP_HLEN]
2d966958 419#if 0
717234e0
ST
420 u8 ar_sha[]; /* Sender hardware address */
421 u8 ar_spa[]; /* Sender protocol address */
422 u8 ar_tha[]; /* Target hardware address */
423 u8 ar_tpa[]; /* Target protocol address */
2d966958 424#endif /* 0 */
738853bb 425};
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426
427#define ARP_HDR_SIZE (8+20) /* Size assuming ethernet */
428
429/*
430 * ICMP stuff (just enough to handle (host) redirect messages)
431 */
53677ef1 432#define ICMP_ECHO_REPLY 0 /* Echo reply */
4793ee65 433#define ICMP_NOT_REACH 3 /* Detination unreachable */
2d966958 434#define ICMP_REDIRECT 5 /* Redirect (change route) */
73a8b27c 435#define ICMP_ECHO_REQUEST 8 /* Echo request */
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436
437/* Codes for REDIRECT. */
438#define ICMP_REDIR_NET 0 /* Redirect Net */
439#define ICMP_REDIR_HOST 1 /* Redirect Host */
440
4793ee65
SG
441/* Codes for NOT_REACH */
442#define ICMP_NOT_REACH_PORT 3 /* Port unreachable */
443
e0a63079 444struct icmp_hdr {
717234e0
ST
445 u8 type;
446 u8 code;
447 u16 checksum;
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448 union {
449 struct {
717234e0
ST
450 u16 id;
451 u16 sequence;
2d966958 452 } echo;
5917e7d1 453 u32 gateway;
2d966958 454 struct {
717234e0
ST
455 u16 unused;
456 u16 mtu;
2d966958 457 } frag;
717234e0 458 u8 data[0];
2d966958 459 } un;
e0a63079 460};
2d966958 461
e0a63079
JH
462#define ICMP_HDR_SIZE (sizeof(struct icmp_hdr))
463#define IP_ICMP_HDR_SIZE (IP_HDR_SIZE + ICMP_HDR_SIZE)
2d966958 464
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465/*
466 * Maximum packet size; used to allocate packet storage.
467 * TFTP packets can be 524 bytes + IP header + ethernet header.
468 * Lets be conservative, and go for 38 * 16. (Must also be
469 * a multiple of 32 bytes).
470 */
471/*
472 * AS.HARNOIS : Better to set PKTSIZE to maximum size because
473 * traffic type is not always controlled
474 * maximum packet size = 1518
475 * maximum packet size and multiple of 32 bytes = 1536
476 */
477#define PKTSIZE 1518
478#define PKTSIZE_ALIGN 1536
479/*#define PKTSIZE 608*/
480
481/*
482 * Maximum receive ring size; that is, the number of packets
483 * we can buffer before overflow happens. Basically, this just
484 * needs to be enough to prevent a packet being discarded while
485 * we are processing the previous one.
486 */
487#define RINGSZ 4
488#define RINGSZ_LOG2 2
489
490/**********************************************************************/
491/*
492 * Globals.
493 *
494 * Note:
495 *
049a95a7 496 * All variables of type struct in_addr are stored in NETWORK byte order
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497 * (big endian).
498 */
499
500/* net.c */
501/** BOOTP EXTENTIONS **/
049a95a7
JH
502extern struct in_addr net_gateway; /* Our gateway IP address */
503extern struct in_addr net_netmask; /* Our subnet mask (0 = unknown) */
504/* Our Domain Name Server (0 = unknown) */
505extern struct in_addr net_dns_server;
1fe80d79 506#if defined(CONFIG_BOOTP_DNS2)
049a95a7
JH
507/* Our 2nd Domain Name Server (0 = unknown) */
508extern struct in_addr net_dns_server2;
fe389a82 509#endif
586cbe51
JH
510extern char net_nis_domain[32]; /* Our IS domain */
511extern char net_hostname[32]; /* Our hostname */
512extern char net_root_path[64]; /* Our root path */
2d966958 513/** END OF BOOTP EXTENTIONS **/
0adb5b76
JH
514extern u8 net_ethaddr[6]; /* Our ethernet address */
515extern u8 net_server_ethaddr[6]; /* Boot server enet address */
049a95a7
JH
516extern struct in_addr net_ip; /* Our IP addr (0 = unknown) */
517extern struct in_addr net_server_ip; /* Server IP addr (0 = unknown) */
1203fcce 518extern uchar *net_tx_packet; /* THE transmit packet */
2a504df0 519extern uchar *net_rx_packets[PKTBUFSRX]; /* Receive packets */
1203fcce
JH
520extern uchar *net_rx_packet; /* Current receive packet */
521extern int net_rx_packet_len; /* Current rx packet length */
0adb5b76
JH
522extern const u8 net_bcast_ethaddr[6]; /* Ethernet broadcast address */
523extern const u8 net_null_ethaddr[6];
2d966958 524
b28e28bb
JH
525#define VLAN_NONE 4095 /* untagged */
526#define VLAN_IDMASK 0x0fff /* mask of valid vlan id */
4fd5055f
JH
527extern ushort net_our_vlan; /* Our VLAN */
528extern ushort net_native_vlan; /* Our Native VLAN */
a3d991bd 529
bc0571fc 530extern int net_restart_wrap; /* Tried all network devices */
2d966958 531
e4bf0c5c
SG
532enum proto_t {
533 BOOTP, RARP, ARP, TFTPGET, DHCP, PING, DNS, NFS, CDP, NETCONS, SNTP,
d22c338e 534 TFTPSRV, TFTPPUT, LINKLOCAL
e4bf0c5c 535};
2d966958 536
11a69ff8 537extern char net_boot_file_name[1024];/* Boot File name */
1411157d
JH
538/* The actual transferred size of the bootfile (in bytes) */
539extern u32 net_boot_file_size;
540/* Boot file size in blocks as reported by the DHCP server */
541extern u32 net_boot_file_expected_size_in_blocks;
2d966958 542
1a32bf41 543#if defined(CONFIG_CMD_DNS)
786eac5f
JH
544extern char *net_dns_resolve; /* The host to resolve */
545extern char *net_dns_env_var; /* the env var to put the ip into */
1a32bf41
RG
546#endif
547
639221c7 548#if defined(CONFIG_CMD_PING)
049a95a7 549extern struct in_addr net_ping_ip; /* the ip address to ping */
73a8b27c
WD
550#endif
551
639221c7 552#if defined(CONFIG_CMD_CDP)
a3d991bd 553/* when CDP completes these hold the return values */
6aede5b7
JH
554extern ushort cdp_native_vlan; /* CDP returned native VLAN */
555extern ushort cdp_appliance_vlan; /* CDP returned appliance VLAN */
17351883
JH
556
557/*
558 * Check for a CDP packet by examining the received MAC address field
559 */
0adb5b76 560static inline int is_cdp_packet(const uchar *ethaddr)
17351883 561{
0adb5b76 562 extern const u8 net_cdp_ethaddr[6];
17351883 563
0adb5b76 564 return memcmp(ethaddr, net_cdp_ethaddr, 6) == 0;
17351883 565}
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566#endif
567
639221c7 568#if defined(CONFIG_CMD_SNTP)
049a95a7 569extern struct in_addr net_ntp_server; /* the ip address to NTP */
bc0571fc 570extern int net_ntp_time_offset; /* offset time from UTC */
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571#endif
572
13dfe943 573#if defined(CONFIG_MCAST_TFTP)
049a95a7 574extern struct in_addr net_mcast_addr;
13dfe943
JH
575#endif
576
2d966958 577/* Initialize the network adapter */
ff997432 578void net_init(void);
bc0571fc 579int net_loop(enum proto_t);
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580
581/* Load failed. Start again. */
bc0571fc 582int net_start_again(void);
2d966958 583
a3d991bd 584/* Get size of the ethernet header when we send */
1203fcce 585int net_eth_hdr_size(void);
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WD
586
587/* Set ethernet header; returns the size of the header */
1203fcce 588int net_set_ether(uchar *xet, const uchar *dest_ethaddr, uint prot);
ff997432 589int net_update_ether(struct ethernet_hdr *et, uchar *addr, uint prot);
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590
591/* Set IP header */
049a95a7
JH
592void net_set_ip_header(uchar *pkt, struct in_addr dest, struct in_addr source);
593void net_set_udp_header(uchar *pkt, struct in_addr dest, int dport,
4b11c916 594 int sport, int len);
2d966958 595
9b0e35cb
SG
596/**
597 * compute_ip_checksum() - Compute IP checksum
598 *
599 * @addr: Address to check (must be 16-bit aligned)
600 * @nbytes: Number of bytes to check (normally a multiple of 2)
601 * @return 16-bit IP checksum
602 */
603unsigned compute_ip_checksum(const void *addr, unsigned nbytes);
604
605/**
606 * add_ip_checksums() - add two IP checksums
607 *
608 * @offset: Offset of first sum (if odd we do a byte-swap)
609 * @sum: First checksum
610 * @new_sum: New checksum to add
611 * @return updated 16-bit IP checksum
612 */
613unsigned add_ip_checksums(unsigned offset, unsigned sum, unsigned new_sum);
614
615/**
616 * ip_checksum_ok() - check if a checksum is correct
617 *
618 * This works by making sure the checksum sums to 0
619 *
620 * @addr: Address to check (must be 16-bit aligned)
621 * @nbytes: Number of bytes to check (normally a multiple of 2)
622 * @return true if the checksum matches, false if not
623 */
624int ip_checksum_ok(const void *addr, unsigned nbytes);
625
d280d3f4 626/* Callbacks */
ff997432
JH
627rxhand_f *net_get_udp_handler(void); /* Get UDP RX packet handler */
628void net_set_udp_handler(rxhand_f *); /* Set UDP RX packet handler */
629rxhand_f *net_get_arp_handler(void); /* Get ARP RX packet handler */
630void net_set_arp_handler(rxhand_f *); /* Set ARP RX packet handler */
631void net_set_icmp_handler(rxhand_icmp_f *f); /* Set ICMP RX handler */
bc0571fc 632void net_set_timeout_handler(ulong, thand_f *);/* Set timeout handler */
2d966958 633
22f6e99d
JH
634/* Network loop state */
635enum net_loop_state {
636 NETLOOP_CONTINUE,
637 NETLOOP_RESTART,
638 NETLOOP_SUCCESS,
639 NETLOOP_FAIL
640};
06370590
KP
641extern enum net_loop_state net_state;
642
22f6e99d
JH
643static inline void net_set_state(enum net_loop_state state)
644{
4ef8d53c 645 debug_cond(DEBUG_INT_STATE, "--- NetState set to %d\n", state);
22f6e99d
JH
646 net_state = state;
647}
648
e94070c4 649/* Transmit a packet */
1203fcce 650static inline void net_send_packet(uchar *pkt, int len)
adf5d93e 651{
60304592 652 /* Currently no way to return errors from eth_send() */
adf5d93e
JH
653 (void) eth_send(pkt, len);
654}
2d966958 655
206d07fd 656/*
1203fcce 657 * Transmit "net_tx_packet" as UDP packet, performing ARP request if needed
ece223b5 658 * (ether will be populated)
206d07fd
JH
659 *
660 * @param ether Raw packet buffer
661 * @param dest IP address to send the datagram to
662 * @param dport Destination UDP port
663 * @param sport Source UDP port
664 * @param payload_len Length of data after the UDP header
665 */
1203fcce 666int net_send_udp_packet(uchar *ether, struct in_addr dest, int dport,
206d07fd 667 int sport, int payload_len);
73a8b27c 668
2d966958 669/* Processes a received packet */
2a504df0 670void net_process_received_packet(uchar *in_packet, int len);
2d966958 671
48522bb5 672#ifdef CONFIG_NETCONSOLE
6a38a5f3 673void nc_start(void);
049a95a7 674int nc_input_packet(uchar *pkt, struct in_addr src_ip, unsigned dest_port,
8a0eccb1 675 unsigned src_port, unsigned len);
48522bb5
JH
676#endif
677
92163873 678static __always_inline int eth_is_on_demand_init(void)
f8be7d65
JH
679{
680#ifdef CONFIG_NETCONSOLE
681 extern enum proto_t net_loop_last_protocol;
682
683 return net_loop_last_protocol != NETCONS;
684#else
685 return 1;
686#endif
687}
688
689static inline void eth_set_last_protocol(int protocol)
690{
691#ifdef CONFIG_NETCONSOLE
692 extern enum proto_t net_loop_last_protocol;
693
694 net_loop_last_protocol = protocol;
695#endif
696}
697
e4a3d57d
SG
698/*
699 * Check if autoload is enabled. If so, use either NFS or TFTP to download
700 * the boot file.
701 */
702void net_auto_load(void);
703
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704/*
705 * The following functions are a bit ugly, but necessary to deal with
706 * alignment restrictions on ARM.
707 *
708 * We're using inline functions, which had the smallest memory
709 * footprint in our tests.
710 */
711/* return IP *in network byteorder* */
049a95a7 712static inline struct in_addr net_read_ip(void *from)
2d966958 713{
049a95a7 714 struct in_addr ip;
b28e28bb
JH
715
716 memcpy((void *)&ip, (void *)from, sizeof(ip));
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717 return ip;
718}
719
720/* return ulong *in network byteorder* */
5917e7d1 721static inline u32 net_read_u32(u32 *from)
2d966958 722{
5917e7d1 723 u32 l;
b28e28bb
JH
724
725 memcpy((void *)&l, (void *)from, sizeof(l));
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726 return l;
727}
728
729/* write IP *in network byteorder* */
049a95a7 730static inline void net_write_ip(void *to, struct in_addr ip)
2d966958 731{
b28e28bb 732 memcpy(to, (void *)&ip, sizeof(ip));
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WD
733}
734
735/* copy IP */
049a95a7 736static inline void net_copy_ip(void *to, void *from)
2d966958 737{
049a95a7 738 memcpy((void *)to, from, sizeof(struct in_addr));
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WD
739}
740
741/* copy ulong */
5917e7d1 742static inline void net_copy_u32(u32 *to, u32 *from)
2d966958 743{
5917e7d1 744 memcpy((void *)to, (void *)from, sizeof(u32));
2d966958
WD
745}
746
50cca8b9 747/**
0adb5b76 748 * is_zero_ethaddr - Determine if give Ethernet address is all zeros.
50cca8b9
MR
749 * @addr: Pointer to a six-byte array containing the Ethernet address
750 *
751 * Return true if the address is all zeroes.
752 */
0adb5b76 753static inline int is_zero_ethaddr(const u8 *addr)
50cca8b9
MR
754{
755 return !(addr[0] | addr[1] | addr[2] | addr[3] | addr[4] | addr[5]);
756}
757
758/**
0adb5b76 759 * is_multicast_ethaddr - Determine if the Ethernet address is a multicast.
50cca8b9
MR
760 * @addr: Pointer to a six-byte array containing the Ethernet address
761 *
762 * Return true if the address is a multicast address.
763 * By definition the broadcast address is also a multicast address.
764 */
0adb5b76 765static inline int is_multicast_ethaddr(const u8 *addr)
50cca8b9 766{
b28e28bb 767 return 0x01 & addr[0];
50cca8b9
MR
768}
769
23cd1385 770/*
0adb5b76 771 * is_broadcast_ethaddr - Determine if the Ethernet address is broadcast
23cd1385
RB
772 * @addr: Pointer to a six-byte array containing the Ethernet address
773 *
774 * Return true if the address is the broadcast address.
775 */
0adb5b76 776static inline int is_broadcast_ethaddr(const u8 *addr)
23cd1385 777{
b28e28bb
JH
778 return (addr[0] & addr[1] & addr[2] & addr[3] & addr[4] & addr[5]) ==
779 0xff;
23cd1385
RB
780}
781
782/*
0adb5b76 783 * is_valid_ethaddr - Determine if the given Ethernet address is valid
75edebe3
MF
784 * @addr: Pointer to a six-byte array containing the Ethernet address
785 *
786 * Check that the Ethernet address (MAC) is not 00:00:00:00:00:00, is not
787 * a multicast address, and is not FF:FF:FF:FF:FF:FF.
788 *
789 * Return true if the address is valid.
790 */
0adb5b76 791static inline int is_valid_ethaddr(const u8 *addr)
75edebe3
MF
792{
793 /* FF:FF:FF:FF:FF:FF is a multicast address so we don't need to
794 * explicitly check for it here. */
0adb5b76 795 return !is_multicast_ethaddr(addr) && !is_zero_ethaddr(addr);
75edebe3
MF
796}
797
da384a9d 798/**
0adb5b76 799 * net_random_ethaddr - Generate software assigned random Ethernet address
da384a9d
MY
800 * @addr: Pointer to a six-byte array containing the Ethernet address
801 *
802 * Generate a random Ethernet address (MAC) that is not multicast
803 * and has the local assigned bit set.
804 */
0adb5b76 805static inline void net_random_ethaddr(uchar *addr)
da384a9d
MY
806{
807 int i;
808 unsigned int seed = get_timer(0);
809
810 for (i = 0; i < 6; i++)
811 addr[i] = rand_r(&seed);
812
813 addr[0] &= 0xfe; /* clear multicast bit */
814 addr[0] |= 0x02; /* set local assignment bit (IEEE802) */
815}
816
2d966958 817/* Convert an IP address to a string */
049a95a7 818void ip_to_string(struct in_addr x, char *s);
2d966958 819
73a8b27c 820/* Convert a string to ip address */
049a95a7 821struct in_addr string_to_ip(const char *s);
73a8b27c 822
a3d991bd 823/* Convert a VLAN id to a string */
4fd5055f 824void vlan_to_string(ushort x, char *s);
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WD
825
826/* Convert a string to a vlan id */
4fd5055f 827ushort string_to_vlan(const char *s);
a3d991bd 828
a3d991bd 829/* read a VLAN id from an environment variable */
4fd5055f 830ushort getenv_vlan(char *);
a3d991bd 831
2d966958 832/* copy a filename (allow for "..." notation, limit length) */
ff997432 833void copy_filename(char *dst, const char *src, int size);
2d966958 834
91b469c9 835/* get a random source port */
ff997432 836unsigned int random_port(void);
91b469c9 837
c7ff5528
LM
838/**
839 * update_tftp - Update firmware over TFTP (via DFU)
840 *
841 * This function updates board's firmware via TFTP
842 *
843 * @param addr - memory address where data is stored
844 * @param interface - the DFU medium name - e.g. "mmc"
845 * @param devstring - the DFU medium number - e.g. "1"
846 *
847 * @return - 0 on success, other value on failure
848 */
849int update_tftp(ulong addr, char *interface, char *devstring);
ea5427e2 850
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WD
851/**********************************************************************/
852
853#endif /* __NET_H__ */