blob: ed286e3d32605a93144d83c8e1ca962d31b77a25 [file] [log] [blame]
Jerome Forissier64abd782024-10-16 12:04:00 +02001/* SPDX-License-Identifier: GPL-2.0 */
2/*
3 * LiMon Monitor (LiMon) - Network.
4 *
5 * Copyright 1994 - 2000 Neil Russell.
6 * (See License)
7 *
8 * History
9 * 9/16/00 bor adapted to TQM823L/STK8xxL board, RARP/TFTP boot added
10 */
11
12#ifndef __NET_LEGACY_H__
13#define __NET_LEGACY_H__
14
15#include <linux/types.h>
16#include <asm/byteorder.h> /* for nton* / ntoh* stuff */
17#include <log.h>
18#include <time.h>
19#include <linux/if_ether.h>
20
21struct bd_info;
22struct cmd_tbl;
23struct udevice;
24
25#define DEBUG_LL_STATE 0 /* Link local state machine changes */
26#define DEBUG_DEV_PKT 0 /* Packets or info directed to the device */
27#define DEBUG_NET_PKT 0 /* Packets on info on the network at large */
28#define DEBUG_INT_STATE 0 /* Internal network state changes */
29
30/* ARP hardware address length */
31#define ARP_HLEN 6
32/*
33 * The size of a MAC address in string form, each digit requires two chars
34 * and five separator characters to form '00:00:00:00:00:00'.
35 */
36#define ARP_HLEN_ASCII (ARP_HLEN * 2) + (ARP_HLEN - 1)
37
38/**
39 * An incoming packet handler.
40 * @param pkt pointer to the application packet
41 * @param dport destination UDP port
42 * @param sip source IP address
43 * @param sport source UDP port
44 * @param len packet length
45 */
46typedef void rxhand_f(uchar *pkt, unsigned dport,
47 struct in_addr sip, unsigned sport,
48 unsigned len);
49
50/**
51 * An incoming ICMP packet handler.
52 * @param type ICMP type
53 * @param code ICMP code
54 * @param dport destination UDP port
55 * @param sip source IP address
56 * @param sport source UDP port
57 * @param pkt pointer to the ICMP packet data
58 * @param len packet length
59 */
60typedef void rxhand_icmp_f(unsigned type, unsigned code, unsigned dport,
61 struct in_addr sip, unsigned sport, uchar *pkt, unsigned len);
62
63/*
64 * A timeout handler. Called after time interval has expired.
65 */
66typedef void thand_f(void);
67
68/*
69 * The devname can be either an exact name given by the driver or device tree
70 * or it can be an alias of the form "eth%d"
71 */
72struct udevice *eth_get_dev_by_name(const char *devname);
73int eth_init_state_only(void); /* Set active state */
74void eth_halt_state_only(void); /* Set passive state */
75
76/**
77 * eth_env_set_enetaddr_by_index() - set the MAC address environment variable
78 *
79 * This sets up an environment variable with the given MAC address (@enetaddr).
80 * The environment variable to be set is defined by <@base_name><@index>addr.
81 * If @index is 0 it is omitted. For common Ethernet this means ethaddr,
82 * eth1addr, etc.
83 *
84 * @base_name: Base name for variable, typically "eth"
85 * @index: Index of interface being updated (>=0)
86 * @enetaddr: Pointer to MAC address to put into the variable
87 * Return: 0 if OK, other value on error
88 */
89int eth_env_set_enetaddr_by_index(const char *base_name, int index,
90 uchar *enetaddr);
91
92/*
93 * Get the hardware address for an ethernet interface .
94 * Args:
95 * base_name - base name for device (normally "eth")
96 * index - device index number (0 for first)
97 * enetaddr - returns 6 byte hardware address
98 * Returns:
99 * Return true if the address is valid.
100 */
101int eth_env_get_enetaddr_by_index(const char *base_name, int index,
102 uchar *enetaddr);
103
104int eth_send(void *packet, int length); /* Send a packet */
105
106#if defined(CONFIG_API) || defined(CONFIG_EFI_LOADER)
107int eth_receive(void *packet, int length); /* Receive a packet*/
108extern void (*push_packet)(void *packet, int length);
109#endif
110int eth_mcast_join(struct in_addr mcast_addr, int join);
111
112/**********************************************************************/
113/*
114 * Protocol headers.
115 */
116
117#define ETH_FCS_LEN 4 /* Octets in the FCS */
118
119struct e802_hdr {
120 u8 et_dest[ARP_HLEN]; /* Destination node */
121 u8 et_src[ARP_HLEN]; /* Source node */
122 u16 et_protlen; /* Protocol or length */
123 u8 et_dsap; /* 802 DSAP */
124 u8 et_ssap; /* 802 SSAP */
125 u8 et_ctl; /* 802 control */
126 u8 et_snap1; /* SNAP */
127 u8 et_snap2;
128 u8 et_snap3;
129 u16 et_prot; /* 802 protocol */
130} __attribute__((packed));
131
132/* 802 + SNAP + ethernet header size */
133#define E802_HDR_SIZE (sizeof(struct e802_hdr))
134
135/*
136 * Virtual LAN Ethernet header
137 */
138struct vlan_ethernet_hdr {
139 u8 vet_dest[ARP_HLEN]; /* Destination node */
140 u8 vet_src[ARP_HLEN]; /* Source node */
141 u16 vet_vlan_type; /* PROT_VLAN */
142 u16 vet_tag; /* TAG of VLAN */
143 u16 vet_type; /* protocol type */
144} __attribute__((packed));
145
146/* VLAN Ethernet header size */
147#define VLAN_ETHER_HDR_SIZE (sizeof(struct vlan_ethernet_hdr))
148
149/*
150 * Internet Protocol (IP) header.
151 */
152struct ip_hdr {
153 u8 ip_hl_v; /* header length and version */
154 u8 ip_tos; /* type of service */
155 u16 ip_len; /* total length */
156 u16 ip_id; /* identification */
157 u16 ip_off; /* fragment offset field */
158 u8 ip_ttl; /* time to live */
159 u8 ip_p; /* protocol */
160 u16 ip_sum; /* checksum */
161 struct in_addr ip_src; /* Source IP address */
162 struct in_addr ip_dst; /* Destination IP address */
163} __attribute__((packed));
164
165#define IP_OFFS 0x1fff /* ip offset *= 8 */
166#define IP_FLAGS 0xe000 /* first 3 bits */
167#define IP_FLAGS_RES 0x8000 /* reserved */
168#define IP_FLAGS_DFRAG 0x4000 /* don't fragments */
169#define IP_FLAGS_MFRAG 0x2000 /* more fragments */
170
171#define IP_HDR_SIZE (sizeof(struct ip_hdr))
172
173#define IP_MIN_FRAG_DATAGRAM_SIZE (IP_HDR_SIZE + 8)
174
175/*
176 * Address Resolution Protocol (ARP) header.
177 */
178struct arp_hdr {
179 u16 ar_hrd; /* Format of hardware address */
180# define ARP_ETHER 1 /* Ethernet hardware address */
181 u16 ar_pro; /* Format of protocol address */
182 u8 ar_hln; /* Length of hardware address */
183 u8 ar_pln; /* Length of protocol address */
184# define ARP_PLEN 4
185 u16 ar_op; /* Operation */
186# define ARPOP_REQUEST 1 /* Request to resolve address */
187# define ARPOP_REPLY 2 /* Response to previous request */
188
189# define RARPOP_REQUEST 3 /* Request to resolve address */
190# define RARPOP_REPLY 4 /* Response to previous request */
191
192 /*
193 * The remaining fields are variable in size, according to
194 * the sizes above, and are defined as appropriate for
195 * specific hardware/protocol combinations.
196 */
197 u8 ar_data[0];
198#define ar_sha ar_data[0]
199#define ar_spa ar_data[ARP_HLEN]
200#define ar_tha ar_data[ARP_HLEN + ARP_PLEN]
201#define ar_tpa ar_data[ARP_HLEN + ARP_PLEN + ARP_HLEN]
202#if 0
203 u8 ar_sha[]; /* Sender hardware address */
204 u8 ar_spa[]; /* Sender protocol address */
205 u8 ar_tha[]; /* Target hardware address */
206 u8 ar_tpa[]; /* Target protocol address */
207#endif /* 0 */
208} __attribute__((packed));
209
210
211/*
212 * ICMP stuff (just enough to handle (host) redirect messages)
213 */
214#define ICMP_ECHO_REPLY 0 /* Echo reply */
215#define ICMP_NOT_REACH 3 /* Detination unreachable */
216#define ICMP_REDIRECT 5 /* Redirect (change route) */
217#define ICMP_ECHO_REQUEST 8 /* Echo request */
218
219/* Codes for REDIRECT. */
220#define ICMP_REDIR_NET 0 /* Redirect Net */
221#define ICMP_REDIR_HOST 1 /* Redirect Host */
222
223/* Codes for NOT_REACH */
224#define ICMP_NOT_REACH_PORT 3 /* Port unreachable */
225
226struct icmp_hdr {
227 u8 type;
228 u8 code;
229 u16 checksum;
230 union {
231 struct {
232 u16 id;
233 u16 sequence;
234 } echo;
235 u32 gateway;
236 struct {
237 u16 unused;
238 u16 mtu;
239 } frag;
240 u8 data[0];
241 } un;
242} __attribute__((packed));
243
244#define ICMP_HDR_SIZE (sizeof(struct icmp_hdr))
245#define IP_ICMP_HDR_SIZE (IP_HDR_SIZE + ICMP_HDR_SIZE)
246
247/*
248 * Maximum packet size; used to allocate packet storage. Use
249 * the maxium Ethernet frame size as specified by the Ethernet
250 * standard including the 802.1Q tag (VLAN tagging).
251 * maximum packet size = 1522
252 * maximum packet size and multiple of 32 bytes = 1536
253 */
254#define PKTSIZE 1522
255#ifndef CONFIG_DM_DSA
256#define PKTSIZE_ALIGN 1536
257#else
258/* Maximum DSA tagging overhead (headroom and/or tailroom) */
259#define DSA_MAX_OVR 256
260#define PKTSIZE_ALIGN (1536 + DSA_MAX_OVR)
261#endif
262
263/**********************************************************************/
264/*
265 * Globals.
266 *
267 * Note:
268 *
269 * All variables of type struct in_addr are stored in NETWORK byte order
270 * (big endian).
271 */
272
273/* net.c */
274/** BOOTP EXTENTIONS **/
275extern struct in_addr net_gateway; /* Our gateway IP address */
276extern struct in_addr net_netmask; /* Our subnet mask (0 = unknown) */
277/* Our Domain Name Server (0 = unknown) */
278extern struct in_addr net_dns_server;
279#if defined(CONFIG_BOOTP_DNS2)
280/* Our 2nd Domain Name Server (0 = unknown) */
281extern struct in_addr net_dns_server2;
282#endif
283extern char net_nis_domain[32]; /* Our IS domain */
284extern char net_hostname[32]; /* Our hostname */
285#ifdef CONFIG_NET
286extern char net_root_path[CONFIG_BOOTP_MAX_ROOT_PATH_LEN]; /* Our root path */
287#endif
288/* Indicates whether the pxe path prefix / config file was specified in dhcp option */
289extern char *pxelinux_configfile;
290/** END OF BOOTP EXTENTIONS **/
291extern u8 net_ethaddr[ARP_HLEN]; /* Our ethernet address */
292extern u8 net_server_ethaddr[ARP_HLEN]; /* Boot server enet address */
293extern struct in_addr net_ip; /* Our IP addr (0 = unknown) */
294extern struct in_addr net_server_ip; /* Server IP addr (0 = unknown) */
295extern uchar *net_tx_packet; /* THE transmit packet */
296extern uchar *net_rx_packets[PKTBUFSRX]; /* Receive packets */
297extern uchar *net_rx_packet; /* Current receive packet */
298extern int net_rx_packet_len; /* Current rx packet length */
299extern const u8 net_null_ethaddr[ARP_HLEN];
300
301#define VLAN_NONE 4095 /* untagged */
302#define VLAN_IDMASK 0x0fff /* mask of valid vlan id */
303extern ushort net_our_vlan; /* Our VLAN */
304extern ushort net_native_vlan; /* Our Native VLAN */
305
306extern int net_restart_wrap; /* Tried all network devices */
307
308enum proto_t {
309 BOOTP, RARP, ARP, TFTPGET, DHCP, DHCP6, PING, PING6, DNS, NFS, CDP,
310 NETCONS, SNTP, TFTPSRV, TFTPPUT, LINKLOCAL, FASTBOOT_UDP, FASTBOOT_TCP,
311 WOL, UDP, NCSI, WGET, RS
312};
313/* Indicates whether the file name was specified on the command line */
314extern bool net_boot_file_name_explicit;
315/* The actual transferred size of the bootfile (in bytes) */
316extern u32 net_boot_file_size;
317/* Boot file size in blocks as reported by the DHCP server */
318extern u32 net_boot_file_expected_size_in_blocks;
319
320#if defined(CONFIG_CMD_DNS)
321extern char *net_dns_resolve; /* The host to resolve */
322extern char *net_dns_env_var; /* the env var to put the ip into */
323#endif
324
325#if defined(CONFIG_CMD_PING)
326extern struct in_addr net_ping_ip; /* the ip address to ping */
327#endif
328
329#if defined(CONFIG_CMD_CDP)
330/* when CDP completes these hold the return values */
331extern ushort cdp_native_vlan; /* CDP returned native VLAN */
332extern ushort cdp_appliance_vlan; /* CDP returned appliance VLAN */
333
334/*
335 * Check for a CDP packet by examining the received MAC address field
336 */
337static inline int is_cdp_packet(const uchar *ethaddr)
338{
339 extern const u8 net_cdp_ethaddr[ARP_HLEN];
340
341 return memcmp(ethaddr, net_cdp_ethaddr, ARP_HLEN) == 0;
342}
343#endif
344
345#if defined(CONFIG_CMD_SNTP)
346extern struct in_addr net_ntp_server; /* the ip address to NTP */
347extern int net_ntp_time_offset; /* offset time from UTC */
348#endif
349
350int net_loop(enum proto_t);
351
352/* Load failed. Start again. */
353int net_start_again(void);
354
355/* Get size of the ethernet header when we send */
356int net_eth_hdr_size(void);
357
358/* Set ethernet header; returns the size of the header */
359int net_set_ether(uchar *xet, const uchar *dest_ethaddr, uint prot);
360int net_update_ether(struct ethernet_hdr *et, uchar *addr, uint prot);
361
362/* Set IP header */
363void net_set_ip_header(uchar *pkt, struct in_addr dest, struct in_addr source,
364 u16 pkt_len, u8 proto);
365void net_set_udp_header(uchar *pkt, struct in_addr dest, int dport,
366 int sport, int len);
367
368/* Callbacks */
369rxhand_f *net_get_udp_handler(void); /* Get UDP RX packet handler */
370void net_set_udp_handler(rxhand_f *); /* Set UDP RX packet handler */
371rxhand_f *net_get_arp_handler(void); /* Get ARP RX packet handler */
372void net_set_arp_handler(rxhand_f *); /* Set ARP RX packet handler */
373bool arp_is_waiting(void); /* Waiting for ARP reply? */
374void net_set_icmp_handler(rxhand_icmp_f *f); /* Set ICMP RX handler */
375void net_set_timeout_handler(ulong, thand_f *);/* Set timeout handler */
376
377/* Network loop state */
378enum net_loop_state {
379 NETLOOP_CONTINUE,
380 NETLOOP_RESTART,
381 NETLOOP_SUCCESS,
382 NETLOOP_FAIL
383};
384extern enum net_loop_state net_state;
385
386static inline void net_set_state(enum net_loop_state state)
387{
388 debug_cond(DEBUG_INT_STATE, "--- NetState set to %d\n", state);
389 net_state = state;
390}
391
392/*
393 * net_get_async_tx_pkt_buf - Get a packet buffer that is not in use for
394 * sending an asynchronous reply
395 *
396 * returns - ptr to packet buffer
397 */
398uchar * net_get_async_tx_pkt_buf(void);
399
400/**
401 * net_send_ip_packet() - Transmit "net_tx_packet" as UDP or TCP packet,
402 * send ARP request if needed (ether will be populated)
403 * @ether: Raw packet buffer
404 * @dest: IP address to send the datagram to
405 * @dport: Destination UDP port
406 * @sport: Source UDP port
407 * @payload_len: Length of data after the UDP header
408 * @action: TCP action to be performed
409 * @tcp_seq_num: TCP sequence number of this transmission
410 * @tcp_ack_num: TCP stream acknolegement number
411 *
412 * Return: 0 on success, other value on failure
413 */
414int net_send_ip_packet(uchar *ether, struct in_addr dest, int dport, int sport,
415 int payload_len, int proto, u8 action, u32 tcp_seq_num,
416 u32 tcp_ack_num);
417/**
418 * net_send_tcp_packet() - Transmit TCP packet.
419 * @payload_len: length of payload
420 * @dport: Destination TCP port
421 * @sport: Source TCP port
422 * @action: TCP action to be performed
423 * @tcp_seq_num: TCP sequence number of this transmission
424 * @tcp_ack_num: TCP stream acknolegement number
425 *
426 * Return: 0 on success, other value on failure
427 */
428int net_send_tcp_packet(int payload_len, int dport, int sport, u8 action,
429 u32 tcp_seq_num, u32 tcp_ack_num);
430int net_send_udp_packet(uchar *ether, struct in_addr dest, int dport,
431 int sport, int payload_len);
432
433#if defined(CONFIG_NETCONSOLE) && !defined(CONFIG_XPL_BUILD)
434void nc_start(void);
435int nc_input_packet(uchar *pkt, struct in_addr src_ip, unsigned dest_port,
436 unsigned src_port, unsigned len);
437#endif
438
439static __always_inline int eth_is_on_demand_init(void)
440{
441#if defined(CONFIG_NETCONSOLE) && !defined(CONFIG_XPL_BUILD)
442 extern enum proto_t net_loop_last_protocol;
443
444 return net_loop_last_protocol != NETCONS;
445#else
446 return 1;
447#endif
448}
449
450static inline void eth_set_last_protocol(int protocol)
451{
452#if defined(CONFIG_NETCONSOLE) && !defined(CONFIG_XPL_BUILD)
453 extern enum proto_t net_loop_last_protocol;
454
455 net_loop_last_protocol = protocol;
456#endif
457}
458
459/*
460 * Check if autoload is enabled. If so, use either NFS or TFTP to download
461 * the boot file.
462 */
463void net_auto_load(void);
464
465/*
466 * The following functions are a bit ugly, but necessary to deal with
467 * alignment restrictions on ARM.
468 *
469 * We're using inline functions, which had the smallest memory
470 * footprint in our tests.
471 */
472/* return IP *in network byteorder* */
473static inline struct in_addr net_read_ip(void *from)
474{
475 struct in_addr ip;
476
477 memcpy((void *)&ip, (void *)from, sizeof(ip));
478 return ip;
479}
480
481/* return ulong *in network byteorder* */
482static inline u32 net_read_u32(void *from)
483{
484 u32 l;
485
486 memcpy((void *)&l, (void *)from, sizeof(l));
487 return l;
488}
489
490/* write IP *in network byteorder* */
491static inline void net_write_ip(void *to, struct in_addr ip)
492{
493 memcpy(to, (void *)&ip, sizeof(ip));
494}
495
496/* copy IP */
497static inline void net_copy_ip(void *to, void *from)
498{
499 memcpy((void *)to, from, sizeof(struct in_addr));
500}
501
502/* copy ulong */
503static inline void net_copy_u32(void *to, void *from)
504{
505 memcpy((void *)to, (void *)from, sizeof(u32));
506}
507
508/* Convert an IP address to a string */
509void ip_to_string(struct in_addr x, char *s);
510
511/**
512 * string_to_ip() - Convert a string to ip address
513 *
514 * Implemented in lib/net_utils.c (built unconditionally)
515 *
516 * @s: Input string to parse
517 * @return: in_addr struct containing the parsed IP address
518 */
519struct in_addr string_to_ip(const char *s);
520
521/* Convert a VLAN id to a string */
522void vlan_to_string(ushort x, char *s);
523
524/* Convert a string to a vlan id */
525ushort string_to_vlan(const char *s);
526
527/* read a VLAN id from an environment variable */
528ushort env_get_vlan(char *);
529
530/* check if serverip is specified in filename from the command line */
531int is_serverip_in_cmd(void);
532
533/**
534 * net_parse_bootfile - Parse the bootfile env var / cmd line param
535 *
536 * @param ipaddr - a pointer to the ipaddr to populate if included in bootfile
537 * @param filename - a pointer to the string to save the filename part
538 * @param max_len - The longest - 1 that the filename part can be
539 *
540 * return 1 if parsed, 0 if bootfile is empty
541 */
542int net_parse_bootfile(struct in_addr *ipaddr, char *filename, int max_len);
543
544#endif /* __NET_LEGACY_H__ */