2 * Generic address resultion entity
6 * net_ratelimit Andi Kleen
7 * in{4,6}_pton YOSHIFUJI Hideaki, Copyright (C)2006 USAGI/WIDE Project
9 * Created by Alexey Kuznetsov <kuznet@ms2.inr.ac.ru>
11 * This program is free software; you can redistribute it and/or
12 * modify it under the terms of the GNU General Public License
13 * as published by the Free Software Foundation; either version
14 * 2 of the License, or (at your option) any later version.
17 #include <linux/module.h>
18 #include <linux/jiffies.h>
19 #include <linux/kernel.h>
20 #include <linux/inet.h>
22 #include <linux/net.h>
23 #include <linux/string.h>
24 #include <linux/types.h>
25 #include <linux/percpu.h>
26 #include <linux/init.h>
27 #include <linux/ratelimit.h>
30 #include <net/net_ratelimit.h>
32 #include <asm/byteorder.h>
33 #include <asm/uaccess.h>
35 int net_msg_warn __read_mostly
= 1;
36 EXPORT_SYMBOL(net_msg_warn
);
38 DEFINE_RATELIMIT_STATE(net_ratelimit_state
, 5 * HZ
, 10);
40 * All net warning printk()s should be guarded by this function.
42 int net_ratelimit(void)
44 return __ratelimit(&net_ratelimit_state
);
46 EXPORT_SYMBOL(net_ratelimit
);
49 * Convert an ASCII string to binary IP.
50 * This is outside of net/ipv4/ because various code that uses IP addresses
51 * is otherwise not dependent on the TCP/IP stack.
54 __be32
in_aton(const char *str
)
61 for (i
= 0; i
< 4; i
++) {
65 while (*str
!= '\0' && *str
!= '.' && *str
!= '\n') {
77 EXPORT_SYMBOL(in_aton
);
79 #define IN6PTON_XDIGIT 0x00010000
80 #define IN6PTON_DIGIT 0x00020000
81 #define IN6PTON_COLON_MASK 0x00700000
82 #define IN6PTON_COLON_1 0x00100000 /* single : requested */
83 #define IN6PTON_COLON_2 0x00200000 /* second : requested */
84 #define IN6PTON_COLON_1_2 0x00400000 /* :: requested */
85 #define IN6PTON_DOT 0x00800000 /* . */
86 #define IN6PTON_DELIM 0x10000000
87 #define IN6PTON_NULL 0x20000000 /* first/tail */
88 #define IN6PTON_UNKNOWN 0x40000000
90 static inline int xdigit2bin(char c
, int delim
)
94 if (c
== delim
|| c
== '\0')
97 return IN6PTON_COLON_MASK
;
103 return val
| IN6PTON_XDIGIT
| (val
< 10 ? IN6PTON_DIGIT
: 0);
106 return IN6PTON_DELIM
;
107 return IN6PTON_UNKNOWN
;
110 int in4_pton(const char *src
, int srclen
,
112 int delim
, const char **end
)
122 srclen
= strlen(src
);
128 c
= xdigit2bin(srclen
> 0 ? *s
: '\0', delim
);
129 if (!(c
& (IN6PTON_DIGIT
| IN6PTON_DOT
| IN6PTON_DELIM
| IN6PTON_COLON_MASK
))) {
132 if (c
& (IN6PTON_DOT
| IN6PTON_DELIM
| IN6PTON_COLON_MASK
)) {
138 if (c
& (IN6PTON_DELIM
| IN6PTON_COLON_MASK
)) {
146 if ((w
& 0xffff) > 255) {
156 memcpy(dst
, dbuf
, sizeof(dbuf
));
162 EXPORT_SYMBOL(in4_pton
);
164 int in6_pton(const char *src
, int srclen
,
166 int delim
, const char **end
)
168 const char *s
, *tok
= NULL
;
173 int state
= IN6PTON_COLON_1_2
| IN6PTON_XDIGIT
| IN6PTON_NULL
;
176 memset(dbuf
, 0, sizeof(dbuf
));
181 srclen
= strlen(src
);
186 c
= xdigit2bin(srclen
> 0 ? *s
: '\0', delim
);
189 if (c
& (IN6PTON_DELIM
| IN6PTON_COLON_MASK
)) {
190 /* process one 16-bit word */
191 if (!(state
& IN6PTON_NULL
)) {
192 *d
++ = (w
>> 8) & 0xff;
196 if (c
& IN6PTON_DELIM
) {
197 /* We've processed last word */
202 * COLON_2 => XDIGIT|DELIM
203 * COLON_1_2 => COLON_2
205 switch (state
& IN6PTON_COLON_MASK
) {
206 case IN6PTON_COLON_2
:
208 state
= IN6PTON_XDIGIT
| IN6PTON_DELIM
;
209 if (dc
- dbuf
>= sizeof(dbuf
))
210 state
|= IN6PTON_NULL
;
212 case IN6PTON_COLON_1
|IN6PTON_COLON_1_2
:
213 state
= IN6PTON_XDIGIT
| IN6PTON_COLON_2
;
215 case IN6PTON_COLON_1
:
216 state
= IN6PTON_XDIGIT
;
218 case IN6PTON_COLON_1_2
:
219 state
= IN6PTON_COLON_2
;
228 if (c
& IN6PTON_DOT
) {
229 ret
= in4_pton(tok
? tok
: s
, srclen
+ (int)(s
- tok
), d
, delim
, &s
);
237 w
= (w
<< 4) | (0xff & c
);
238 state
= IN6PTON_COLON_1
| IN6PTON_DELIM
;
240 state
|= IN6PTON_XDIGIT
;
242 if (!dc
&& d
+ 2 < dbuf
+ sizeof(dbuf
)) {
243 state
|= IN6PTON_COLON_1_2
;
244 state
&= ~IN6PTON_DELIM
;
246 if (d
+ 2 >= dbuf
+ sizeof(dbuf
)) {
247 state
&= ~(IN6PTON_COLON_1
|IN6PTON_COLON_1_2
);
250 if ((dc
&& d
+ 4 < dbuf
+ sizeof(dbuf
)) ||
251 d
+ 4 == dbuf
+ sizeof(dbuf
)) {
252 state
|= IN6PTON_DOT
;
254 if (d
>= dbuf
+ sizeof(dbuf
)) {
255 state
&= ~(IN6PTON_XDIGIT
|IN6PTON_COLON_MASK
);
266 while(i
>= dc
- dbuf
)
271 memcpy(dst
, dbuf
, sizeof(dbuf
));
279 EXPORT_SYMBOL(in6_pton
);
281 void inet_proto_csum_replace4(__sum16
*sum
, struct sk_buff
*skb
,
282 __be32 from
, __be32 to
, int pseudohdr
)
284 __be32 diff
[] = { ~from
, to
};
285 if (skb
->ip_summed
!= CHECKSUM_PARTIAL
) {
286 *sum
= csum_fold(csum_partial(diff
, sizeof(diff
),
287 ~csum_unfold(*sum
)));
288 if (skb
->ip_summed
== CHECKSUM_COMPLETE
&& pseudohdr
)
289 skb
->csum
= ~csum_partial(diff
, sizeof(diff
),
291 } else if (pseudohdr
)
292 *sum
= ~csum_fold(csum_partial(diff
, sizeof(diff
),
295 EXPORT_SYMBOL(inet_proto_csum_replace4
);
297 int mac_pton(const char *s
, u8
*mac
)
301 /* XX:XX:XX:XX:XX:XX */
302 if (strlen(s
) < 3 * ETH_ALEN
- 1)
305 /* Don't dirty result unless string is valid MAC. */
306 for (i
= 0; i
< ETH_ALEN
; i
++) {
307 if (!strchr("0123456789abcdefABCDEF", s
[i
* 3]))
309 if (!strchr("0123456789abcdefABCDEF", s
[i
* 3 + 1]))
311 if (i
!= ETH_ALEN
- 1 && s
[i
* 3 + 2] != ':')
314 for (i
= 0; i
< ETH_ALEN
; i
++) {
315 mac
[i
] = (hex_to_bin(s
[i
* 3]) << 4) | hex_to_bin(s
[i
* 3 + 1]);
319 EXPORT_SYMBOL(mac_pton
);