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CommitLineData
aba5acdf
SH
1/*
2 * utils.c
3 *
4 * This program is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU General Public License
6 * as published by the Free Software Foundation; either version
7 * 2 of the License, or (at your option) any later version.
8 *
9 * Authors: Alexey Kuznetsov, <kuznet@ms2.inr.ac.ru>
10 *
aba5acdf
SH
11 */
12
13#include <stdio.h>
14#include <stdlib.h>
697ac639 15#include <math.h>
aba5acdf 16#include <unistd.h>
aba5acdf 17#include <fcntl.h>
5bd9dd49 18#include <limits.h>
aba5acdf
SH
19#include <sys/socket.h>
20#include <netinet/in.h>
21#include <string.h>
625df645 22#include <ctype.h>
aba5acdf
SH
23#include <netdb.h>
24#include <arpa/inet.h>
5dfe5561 25#include <asm/types.h>
aba5acdf 26#include <linux/pkt_sched.h>
5bd9dd49 27#include <linux/param.h>
0b218ab1 28#include <linux/if_arp.h>
dacc5d41 29#include <linux/mpls.h>
c7a3b229 30#include <linux/snmp.h>
90f93024
SH
31#include <time.h>
32#include <sys/time.h>
30d10db5 33#include <errno.h>
ba2fc55b
LB
34#ifdef HAVE_LIBCAP
35#include <sys/capability.h>
36#endif
90f93024 37
0b218ab1 38#include "rt_names.h"
aba5acdf 39#include "utils.h"
f5b50a18 40#include "ll_map.h"
e998e118 41#include "namespace.h"
aba5acdf 42
66488539 43int resolve_hosts;
e1933b92 44int timestamp_short;
54336567 45int pretty;
b85076cd 46const char *_SL_ = "\n";
79aa79d0 47
927e3cfb
ND
48int read_prop(const char *dev, char *prop, long *value)
49{
50 char fname[128], buf[80], *endp, *nl;
51 FILE *fp;
52 long result;
53 int ret;
54
55 ret = snprintf(fname, sizeof(fname), "/sys/class/net/%s/%s",
56 dev, prop);
57
58 if (ret <= 0 || ret >= sizeof(fname)) {
59 fprintf(stderr, "could not build pathname for property\n");
60 return -1;
61 }
62
63 fp = fopen(fname, "r");
64 if (fp == NULL) {
65 fprintf(stderr, "fopen %s: %s\n", fname, strerror(errno));
66 return -1;
67 }
68
69 if (!fgets(buf, sizeof(buf), fp)) {
70 fprintf(stderr, "property \"%s\" in file %s is currently unknown\n", prop, fname);
71 fclose(fp);
72 goto out;
73 }
74
75 nl = strchr(buf, '\n');
76 if (nl)
77 *nl = '\0';
78
79 fclose(fp);
80 result = strtol(buf, &endp, 0);
81
82 if (*endp || buf == endp) {
83 fprintf(stderr, "value \"%s\" in file %s is not a number\n",
84 buf, fname);
85 goto out;
86 }
87
88 if ((result == LONG_MAX || result == LONG_MIN) && errno == ERANGE) {
89 fprintf(stderr, "strtol %s: %s", fname, strerror(errno));
90 goto out;
91 }
92
93 *value = result;
94 return 0;
95out:
96 fprintf(stderr, "Failed to parse %s\n", fname);
97 return -1;
98}
99
100/* Parse a percent e.g: '30%'
101 * return: 0 = ok, -1 = error, 1 = out of range
102 */
103int parse_percent(double *val, const char *str)
104{
105 char *p;
106
107 *val = strtod(str, &p) / 100.;
108 if (*val == HUGE_VALF || *val == HUGE_VALL)
109 return 1;
405e0c4f 110 if (*p && strcmp(p, "%"))
927e3cfb
ND
111 return -1;
112
113 return 0;
114}
115
609640f5
SD
116int get_hex(char c)
117{
118 if (c >= 'A' && c <= 'F')
119 return c - 'A' + 10;
120 if (c >= 'a' && c <= 'f')
121 return c - 'a' + 10;
122 if (c >= '0' && c <= '9')
123 return c - '0';
124
125 return -1;
126}
127
4094db72 128int get_integer(int *val, const char *arg, int base)
aba5acdf
SH
129{
130 long res;
131 char *ptr;
132
133 if (!arg || !*arg)
134 return -1;
697ac639 135
aba5acdf 136 res = strtol(arg, &ptr, base);
697ac639
SH
137
138 /* If there were no digits at all, strtol() stores
e1933b92 139 * the original value of nptr in *endptr (and returns 0).
697ac639
SH
140 * In particular, if *nptr is not '\0' but **endptr is '\0' on return,
141 * the entire string is valid.
142 */
143 if (!ptr || ptr == arg || *ptr)
144 return -1;
145
146 /* If an underflow occurs, strtol() returns LONG_MIN.
147 * If an overflow occurs, strtol() returns LONG_MAX.
148 * In both cases, errno is set to ERANGE.
149 */
150 if ((res == LONG_MAX || res == LONG_MIN) && errno == ERANGE)
aba5acdf 151 return -1;
697ac639
SH
152
153 /* Outside range of int */
154 if (res < INT_MIN || res > INT_MAX)
155 return -1;
156
aba5acdf
SH
157 *val = res;
158 return 0;
159}
160
6b1ac654 161int mask2bits(__u32 netmask)
4b270b17 162{
e1933b92 163 unsigned int bits = 0;
6b1ac654
SH
164 __u32 mask = ntohl(netmask);
165 __u32 host = ~mask;
4b270b17 166
6b1ac654
SH
167 /* a valid netmask must be 2^n - 1 */
168 if ((host & (host + 1)) != 0)
169 return -1;
4b270b17 170
6b1ac654
SH
171 for (; mask; mask <<= 1)
172 ++bits;
4b270b17
SH
173 return bits;
174}
175
e1933b92 176static int get_netmask(unsigned int *val, const char *arg, int base)
5a0d1cbf
AH
177{
178 inet_prefix addr;
179
180 if (!get_unsigned(val, arg, base))
181 return 0;
182
183 /* try coverting dotted quad to CIDR */
6b1ac654
SH
184 if (!get_addr_1(&addr, arg, AF_INET) && addr.family == AF_INET) {
185 int b = mask2bits(addr.data[0]);
e9e9365b 186
6b1ac654
SH
187 if (b >= 0) {
188 *val = b;
5a0d1cbf 189 return 0;
6b1ac654 190 }
5a0d1cbf
AH
191 }
192
193 return -1;
194}
195
e1933b92 196int get_unsigned(unsigned int *val, const char *arg, int base)
aba5acdf
SH
197{
198 unsigned long res;
199 char *ptr;
200
201 if (!arg || !*arg)
202 return -1;
697ac639 203
aba5acdf 204 res = strtoul(arg, &ptr, base);
697ac639
SH
205
206 /* empty string or trailing non-digits */
207 if (!ptr || ptr == arg || *ptr)
208 return -1;
209
210 /* overflow */
211 if (res == ULONG_MAX && errno == ERANGE)
aba5acdf 212 return -1;
697ac639
SH
213
214 /* out side range of unsigned */
215 if (res > UINT_MAX)
216 return -1;
217
aba5acdf
SH
218 *val = res;
219 return 0;
220}
221
54e0b2e7 222/*
db6b0cfa
GR
223 * get_time_rtt is "translated" from a similar routine "get_time" in
224 * tc_util.c. We don't use the exact same routine because tc passes
225 * microseconds to the kernel and the callers of get_time_rtt want to
226 * pass milliseconds (standard unit for rtt values since 2.6.27), and
227 * have a different assumption for the units of a "raw" number.
54e0b2e7 228 */
e1933b92 229int get_time_rtt(unsigned int *val, const char *arg, int *raw)
54e0b2e7
RJ
230{
231 double t;
232 unsigned long res;
233 char *p;
234
697ac639
SH
235 if (strchr(arg, '.') != NULL) {
236 t = strtod(arg, &p);
54e0b2e7
RJ
237 if (t < 0.0)
238 return -1;
697ac639 239
4d9a264f
FW
240 /* no digits? */
241 if (!p || p == arg)
697ac639
SH
242 return -1;
243
244 /* over/underflow */
245 if ((t == HUGE_VALF || t == HUGE_VALL) && errno == ERANGE)
246 return -1;
247 } else {
897fb84f 248 res = strtoul(arg, &p, 0);
697ac639 249
4d9a264f
FW
250 /* empty string? */
251 if (!p || p == arg)
697ac639
SH
252 return -1;
253
254 /* overflow */
255 if (res == ULONG_MAX && errno == ERANGE)
54e0b2e7 256 return -1;
697ac639 257
54e0b2e7
RJ
258 t = (double)res;
259 }
697ac639 260
54e0b2e7
RJ
261 if (p == arg)
262 return -1;
54e0b2e7
RJ
263 *raw = 1;
264
265 if (*p) {
266 *raw = 0;
e1933b92
SH
267 if (strcasecmp(p, "s") == 0 ||
268 strcasecmp(p, "sec") == 0 ||
269 strcasecmp(p, "secs") == 0)
270 t *= 1000;
271 else if (strcasecmp(p, "ms") == 0 ||
272 strcasecmp(p, "msec") == 0 ||
273 strcasecmp(p, "msecs") == 0)
54e0b2e7 274 t *= 1.0; /* allow suffix, do nothing */
e1933b92
SH
275 else
276 return -1;
277 }
54e0b2e7
RJ
278
279 /* emulate ceil() without having to bring-in -lm and always be >= 1 */
db6b0cfa
GR
280 *val = t;
281 if (*val < t)
282 *val += 1;
e9e9365b 283
e1933b92 284 return 0;
54e0b2e7
RJ
285
286}
287
c7699875 288int get_u64(__u64 *val, const char *arg, int base)
289{
290 unsigned long long res;
291 char *ptr;
292
293 if (!arg || !*arg)
294 return -1;
697ac639 295
c7699875 296 res = strtoull(arg, &ptr, base);
697ac639
SH
297
298 /* empty string or trailing non-digits */
299 if (!ptr || ptr == arg || *ptr)
300 return -1;
301
302 /* overflow */
303 if (res == ULLONG_MAX && errno == ERANGE)
304 return -1;
305
306 /* in case ULL is 128 bits */
307 if (res > 0xFFFFFFFFFFFFFFFFULL)
308 return -1;
309
e1933b92
SH
310 *val = res;
311 return 0;
c7699875 312}
313
4094db72 314int get_u32(__u32 *val, const char *arg, int base)
aba5acdf
SH
315{
316 unsigned long res;
317 char *ptr;
318
319 if (!arg || !*arg)
320 return -1;
321 res = strtoul(arg, &ptr, base);
697ac639
SH
322
323 /* empty string or trailing non-digits */
324 if (!ptr || ptr == arg || *ptr)
325 return -1;
326
327 /* overflow */
328 if (res == ULONG_MAX && errno == ERANGE)
329 return -1;
330
331 /* in case UL > 32 bits */
332 if (res > 0xFFFFFFFFUL)
aba5acdf 333 return -1;
697ac639 334
aba5acdf
SH
335 *val = res;
336 return 0;
337}
338
4094db72 339int get_u16(__u16 *val, const char *arg, int base)
aba5acdf
SH
340{
341 unsigned long res;
342 char *ptr;
343
344 if (!arg || !*arg)
345 return -1;
346 res = strtoul(arg, &ptr, base);
697ac639
SH
347
348 /* empty string or trailing non-digits */
349 if (!ptr || ptr == arg || *ptr)
350 return -1;
351
352 /* overflow */
353 if (res == ULONG_MAX && errno == ERANGE)
aba5acdf 354 return -1;
697ac639
SH
355
356 if (res > 0xFFFFUL)
357 return -1;
358
aba5acdf
SH
359 *val = res;
360 return 0;
361}
362
4094db72 363int get_u8(__u8 *val, const char *arg, int base)
aba5acdf
SH
364{
365 unsigned long res;
366 char *ptr;
367
368 if (!arg || !*arg)
369 return -1;
697ac639 370
aba5acdf 371 res = strtoul(arg, &ptr, base);
697ac639
SH
372 /* empty string or trailing non-digits */
373 if (!ptr || ptr == arg || *ptr)
374 return -1;
375
376 /* overflow */
377 if (res == ULONG_MAX && errno == ERANGE)
aba5acdf 378 return -1;
697ac639
SH
379
380 if (res > 0xFFUL)
381 return -1;
382
aba5acdf
SH
383 *val = res;
384 return 0;
385}
386
a066bac8
VCG
387int get_s64(__s64 *val, const char *arg, int base)
388{
389 long res;
390 char *ptr;
391
392 errno = 0;
393
394 if (!arg || !*arg)
395 return -1;
396 res = strtoll(arg, &ptr, base);
397 if (!ptr || ptr == arg || *ptr)
398 return -1;
399 if ((res == LLONG_MIN || res == LLONG_MAX) && errno == ERANGE)
400 return -1;
401 if (res > INT64_MAX || res < INT64_MIN)
402 return -1;
403
404 *val = res;
405 return 0;
406}
407
30d10db5
HPP
408int get_s32(__s32 *val, const char *arg, int base)
409{
410 long res;
411 char *ptr;
412
413 errno = 0;
414
415 if (!arg || !*arg)
416 return -1;
417 res = strtol(arg, &ptr, base);
697ac639
SH
418 if (!ptr || ptr == arg || *ptr)
419 return -1;
420 if ((res == LONG_MIN || res == LONG_MAX) && errno == ERANGE)
30d10db5 421 return -1;
697ac639
SH
422 if (res > INT32_MAX || res < INT32_MIN)
423 return -1;
424
30d10db5
HPP
425 *val = res;
426 return 0;
427}
428
4094db72 429int get_s16(__s16 *val, const char *arg, int base)
aba5acdf
SH
430{
431 long res;
432 char *ptr;
433
434 if (!arg || !*arg)
435 return -1;
436 res = strtol(arg, &ptr, base);
697ac639
SH
437 if (!ptr || ptr == arg || *ptr)
438 return -1;
439 if ((res == LONG_MIN || res == LONG_MAX) && errno == ERANGE)
440 return -1;
441 if (res > 0x7FFF || res < -0x8000)
aba5acdf 442 return -1;
697ac639 443
aba5acdf
SH
444 *val = res;
445 return 0;
446}
447
4094db72 448int get_s8(__s8 *val, const char *arg, int base)
aba5acdf
SH
449{
450 long res;
451 char *ptr;
452
453 if (!arg || !*arg)
454 return -1;
455 res = strtol(arg, &ptr, base);
697ac639
SH
456 if (!ptr || ptr == arg || *ptr)
457 return -1;
458 if ((res == LONG_MIN || res == LONG_MAX) && errno == ERANGE)
459 return -1;
460 if (res > 0x7F || res < -0x80)
aba5acdf
SH
461 return -1;
462 *val = res;
463 return 0;
464}
465
9f7401fa
SD
466int get_be64(__be64 *val, const char *arg, int base)
467{
468 __u64 v;
469 int ret = get_u64(&v, arg, base);
470
471 if (!ret)
472 *val = htonll(v);
473
474 return ret;
475}
476
477int get_be32(__be32 *val, const char *arg, int base)
478{
479 __u32 v;
480 int ret = get_u32(&v, arg, base);
481
482 if (!ret)
483 *val = htonl(v);
484
485 return ret;
486}
487
488int get_be16(__be16 *val, const char *arg, int base)
489{
490 __u16 v;
491 int ret = get_u16(&v, arg, base);
492
493 if (!ret)
494 *val = htons(v);
495
496 return ret;
497}
498
cafa6c8e
SH
499/* This uses a non-standard parsing (ie not inet_aton, or inet_pton)
500 * because of legacy choice to parse 10.8 as 10.8.0.0 not 10.0.0.8
501 */
502static int get_addr_ipv4(__u8 *ap, const char *cp)
aba5acdf 503{
cafa6c8e
SH
504 int i;
505
506 for (i = 0; i < 4; i++) {
507 unsigned long n;
508 char *endp;
e9e9365b 509
cafa6c8e
SH
510 n = strtoul(cp, &endp, 0);
511 if (n > 255)
512 return -1; /* bogus network value */
513
514 if (endp == cp) /* no digits */
515 return -1;
94afda75 516
cafa6c8e
SH
517 ap[i] = n;
518
519 if (*endp == '\0')
520 break;
521
522 if (i == 3 || *endp != '.')
e1933b92 523 return -1; /* extra characters */
cafa6c8e
SH
524 cp = endp + 1;
525 }
526
527 return 1;
528}
529
5866bddd
TH
530int get_addr64(__u64 *ap, const char *cp)
531{
532 int i;
533
534 union {
535 __u16 v16[4];
536 __u64 v64;
537 } val;
538
539 for (i = 0; i < 4; i++) {
540 unsigned long n;
541 char *endp;
542
543 n = strtoul(cp, &endp, 16);
544 if (n > 0xffff)
545 return -1; /* bogus network value */
546
547 if (endp == cp) /* no digits */
548 return -1;
549
550 val.v16[i] = htons(n);
551
552 if (*endp == '\0')
553 break;
554
555 if (i == 3 || *endp != ':')
556 return -1; /* extra characters */
557 cp = endp + 1;
558 }
559
560 *ap = val.v64;
561
562 return 1;
563}
564
27c523e2
SP
565static void set_address_type(inet_prefix *addr)
566{
567 switch (addr->family) {
568 case AF_INET:
569 if (!addr->data[0])
570 addr->flags |= ADDRTYPE_INET_UNSPEC;
571 else if (IN_MULTICAST(ntohl(addr->data[0])))
572 addr->flags |= ADDRTYPE_INET_MULTI;
573 else
574 addr->flags |= ADDRTYPE_INET;
575 break;
576 case AF_INET6:
577 if (IN6_IS_ADDR_UNSPECIFIED(addr->data))
578 addr->flags |= ADDRTYPE_INET_UNSPEC;
579 else if (IN6_IS_ADDR_MULTICAST(addr->data))
580 addr->flags |= ADDRTYPE_INET_MULTI;
581 else
582 addr->flags |= ADDRTYPE_INET;
583 break;
584 }
585}
586
7bf5e876 587static int __get_addr_1(inet_prefix *addr, const char *name, int family)
cafa6c8e 588{
aba5acdf
SH
589 memset(addr, 0, sizeof(*addr));
590
7696f109 591 if (strcmp(name, "default") == 0) {
dacc5d41 592 if ((family == AF_DECnet) || (family == AF_MPLS))
aba5acdf 593 return -1;
d42c7891 594 addr->family = family;
f2522007 595 addr->bytelen = af_byte_len(addr->family);
93fa1241 596 addr->bitlen = -2;
7696f109
AZ
597 addr->flags |= PREFIXLEN_SPECIFIED;
598 return 0;
599 }
600
601 if (strcmp(name, "all") == 0 ||
602 strcmp(name, "any") == 0) {
603 if ((family == AF_DECnet) || (family == AF_MPLS))
604 return -1;
d42c7891 605 addr->family = family;
7696f109
AZ
606 addr->bytelen = 0;
607 addr->bitlen = -2;
aba5acdf
SH
608 return 0;
609 }
610
0b218ab1
EB
611 if (family == AF_PACKET) {
612 int len;
e1933b92 613
8b59612f
DA
614 len = ll_addr_a2n((char *) &addr->data, sizeof(addr->data),
615 name);
0b218ab1
EB
616 if (len < 0)
617 return -1;
618
619 addr->family = AF_PACKET;
620 addr->bytelen = len;
621 addr->bitlen = len * 8;
622 return 0;
623 }
624
aba5acdf
SH
625 if (strchr(name, ':')) {
626 addr->family = AF_INET6;
627 if (family != AF_UNSPEC && family != AF_INET6)
628 return -1;
629 if (inet_pton(AF_INET6, name, addr->data) <= 0)
630 return -1;
631 addr->bytelen = 16;
632 addr->bitlen = -1;
633 return 0;
634 }
635
636 if (family == AF_DECnet) {
637 struct dn_naddr dna;
e1933b92 638
aba5acdf
SH
639 addr->family = AF_DECnet;
640 if (dnet_pton(AF_DECnet, name, &dna) <= 0)
641 return -1;
642 memcpy(addr->data, dna.a_addr, 2);
643 addr->bytelen = 2;
644 addr->bitlen = -1;
645 return 0;
646 }
647
dacc5d41 648 if (family == AF_MPLS) {
4af44716 649 unsigned int maxlabels;
dacc5d41 650 int i;
e1933b92 651
dacc5d41 652 addr->family = AF_MPLS;
4af44716
DA
653 if (mpls_pton(AF_MPLS, name, addr->data,
654 sizeof(addr->data)) <= 0)
dacc5d41
EB
655 return -1;
656 addr->bytelen = 4;
657 addr->bitlen = 20;
658 /* How many bytes do I need? */
4af44716
DA
659 maxlabels = sizeof(addr->data) / sizeof(struct mpls_label);
660 for (i = 0; i < maxlabels; i++) {
dacc5d41
EB
661 if (ntohl(addr->data[i]) & MPLS_LS_S_MASK) {
662 addr->bytelen = (i + 1)*4;
663 break;
664 }
665 }
666 return 0;
667 }
668
aba5acdf
SH
669 addr->family = AF_INET;
670 if (family != AF_UNSPEC && family != AF_INET)
671 return -1;
94afda75 672
cafa6c8e 673 if (get_addr_ipv4((__u8 *)addr->data, name) <= 0)
516ffb6b 674 return -1;
94afda75 675
aba5acdf
SH
676 addr->bytelen = 4;
677 addr->bitlen = -1;
aba5acdf
SH
678 return 0;
679}
680
7bf5e876
SP
681int get_addr_1(inet_prefix *addr, const char *name, int family)
682{
683 int ret;
684
685 ret = __get_addr_1(addr, name, family);
686 if (ret)
687 return ret;
688
27c523e2 689 set_address_type(addr);
7bf5e876
SP
690 return 0;
691}
692
f3a2ddc1
VK
693int af_bit_len(int af)
694{
695 switch (af) {
696 case AF_INET6:
697 return 128;
698 case AF_INET:
699 return 32;
700 case AF_DECnet:
701 return 16;
702 case AF_IPX:
703 return 80;
dacc5d41
EB
704 case AF_MPLS:
705 return 20;
f3a2ddc1
VK
706 }
707
708 return 0;
709}
710
711int af_byte_len(int af)
712{
713 return af_bit_len(af) / 8;
714}
715
fb9b1d0f 716int get_prefix_1(inet_prefix *dst, char *arg, int family)
aba5acdf 717{
aba5acdf 718 char *slash;
93fa1241 719 int err, bitlen, flags;
aba5acdf
SH
720
721 slash = strchr(arg, '/');
722 if (slash)
723 *slash = 0;
fb9b1d0f 724
aba5acdf 725 err = get_addr_1(dst, arg, family);
93fa1241 726
aba5acdf
SH
727 if (slash)
728 *slash = '/';
93fa1241
SP
729
730 if (err)
731 return err;
732
733 bitlen = af_bit_len(dst->family);
734
7696f109 735 flags = 0;
93fa1241
SP
736 if (slash) {
737 unsigned int plen;
738
739 if (dst->bitlen == -2)
740 return -1;
741 if (get_netmask(&plen, slash + 1, 0))
742 return -1;
743 if (plen > bitlen)
744 return -1;
745
7696f109 746 flags |= PREFIXLEN_SPECIFIED;
93fa1241
SP
747 bitlen = plen;
748 } else {
749 if (dst->bitlen == -2)
750 bitlen = 0;
93fa1241
SP
751 }
752
753 dst->flags |= flags;
754 dst->bitlen = bitlen;
755
756 return 0;
aba5acdf
SH
757}
758
34705c80
PS
759static const char *family_name_verbose(int family)
760{
761 if (family == AF_UNSPEC)
762 return "any valid";
763 return family_name(family);
764}
765
c7699875 766int get_addr(inet_prefix *dst, const char *arg, int family)
aba5acdf 767{
aba5acdf 768 if (get_addr_1(dst, arg, family)) {
e1933b92
SH
769 fprintf(stderr,
770 "Error: %s address is expected rather than \"%s\".\n",
34705c80 771 family_name_verbose(family), arg);
aba5acdf
SH
772 exit(1);
773 }
774 return 0;
775}
776
27c523e2
SP
777int get_addr_rta(inet_prefix *dst, const struct rtattr *rta, int family)
778{
779 const int len = RTA_PAYLOAD(rta);
780 const void *data = RTA_DATA(rta);
781
782 switch (len) {
783 case 4:
784 dst->family = AF_INET;
785 dst->bytelen = 4;
786 memcpy(dst->data, data, 4);
787 break;
788 case 16:
789 dst->family = AF_INET6;
790 dst->bytelen = 16;
791 memcpy(dst->data, data, 16);
792 break;
793 case 2:
794 dst->family = AF_DECnet;
795 dst->bytelen = 2;
796 memcpy(dst->data, data, 2);
797 break;
798 case 10:
799 dst->family = AF_IPX;
800 dst->bytelen = 10;
801 memcpy(dst->data, data, 10);
802 break;
803 default:
804 return -1;
805 }
806
807 if (family != AF_UNSPEC && family != dst->family)
808 return -2;
809
810 dst->bitlen = -1;
811 dst->flags = 0;
812
813 set_address_type(dst);
814 return 0;
815}
816
fb9b1d0f 817int get_prefix(inet_prefix *dst, char *arg, int family)
aba5acdf
SH
818{
819 if (family == AF_PACKET) {
e1933b92
SH
820 fprintf(stderr,
821 "Error: \"%s\" may be inet prefix, but it is not allowed in this context.\n",
822 arg);
aba5acdf
SH
823 exit(1);
824 }
334af761 825
aba5acdf 826 if (get_prefix_1(dst, arg, family)) {
e1933b92
SH
827 fprintf(stderr,
828 "Error: %s prefix is expected rather than \"%s\".\n",
34705c80 829 family_name_verbose(family), arg);
aba5acdf
SH
830 exit(1);
831 }
832 return 0;
833}
834
c7699875 835__u32 get_addr32(const char *name)
aba5acdf
SH
836{
837 inet_prefix addr;
e1933b92 838
aba5acdf 839 if (get_addr_1(&addr, name, AF_INET)) {
e1933b92
SH
840 fprintf(stderr,
841 "Error: an IP address is expected rather than \"%s\"\n",
842 name);
aba5acdf
SH
843 exit(1);
844 }
845 return addr.data[0];
846}
847
4094db72 848void incomplete_command(void)
aba5acdf
SH
849{
850 fprintf(stderr, "Command line is not complete. Try option \"help\"\n");
851 exit(-1);
852}
853
c7699875 854void missarg(const char *key)
855{
856 fprintf(stderr, "Error: argument \"%s\" is required\n", key);
857 exit(-1);
858}
859
4094db72 860void invarg(const char *msg, const char *arg)
aba5acdf
SH
861{
862 fprintf(stderr, "Error: argument \"%s\" is wrong: %s\n", arg, msg);
863 exit(-1);
864}
865
4094db72 866void duparg(const char *key, const char *arg)
aba5acdf 867{
e1933b92
SH
868 fprintf(stderr,
869 "Error: duplicate \"%s\": \"%s\" is the second value.\n",
870 key, arg);
aba5acdf
SH
871 exit(-1);
872}
873
4094db72 874void duparg2(const char *key, const char *arg)
aba5acdf 875{
e1933b92
SH
876 fprintf(stderr,
877 "Error: either \"%s\" is duplicate, or \"%s\" is a garbage.\n",
878 key, arg);
aba5acdf
SH
879 exit(-1);
880}
881
fe99adbc
SP
882int nodev(const char *dev)
883{
884 fprintf(stderr, "Cannot find device \"%s\"\n", dev);
885 return -1;
886}
887
625df645
PS
888int check_ifname(const char *name)
889{
890 /* These checks mimic kernel checks in dev_valid_name */
891 if (*name == '\0')
892 return -1;
893 if (strlen(name) >= IFNAMSIZ)
894 return -1;
895
896 while (*name) {
897 if (*name == '/' || isspace(*name))
898 return -1;
899 ++name;
900 }
901 return 0;
902}
903
904/* buf is assumed to be IFNAMSIZ */
905int get_ifname(char *buf, const char *name)
906{
907 int ret;
908
909 ret = check_ifname(name);
910 if (ret == 0)
911 strncpy(buf, name, IFNAMSIZ);
912
913 return ret;
914}
915
fcac9665
SP
916const char *get_ifname_rta(int ifindex, const struct rtattr *rta)
917{
918 const char *name;
919
920 if (rta) {
921 name = rta_getattr_str(rta);
922 } else {
923 fprintf(stderr,
924 "BUG: device with ifindex %d has nil ifname\n",
925 ifindex);
926 name = ll_idx_n2a(ifindex);
927 }
928
929 if (check_ifname(name))
930 return NULL;
931
932 return name;
933}
934
4094db72 935int matches(const char *cmd, const char *pattern)
aba5acdf
SH
936{
937 int len = strlen(cmd);
e1933b92 938
aba5acdf
SH
939 if (len > strlen(pattern))
940 return -1;
941 return memcmp(pattern, cmd, len);
942}
943
4094db72 944int inet_addr_match(const inet_prefix *a, const inet_prefix *b, int bits)
aba5acdf 945{
9626dfd5
SH
946 const __u32 *a1 = a->data;
947 const __u32 *a2 = b->data;
aba5acdf
SH
948 int words = bits >> 0x05;
949
950 bits &= 0x1f;
951
952 if (words)
953 if (memcmp(a1, a2, words << 2))
954 return -1;
955
956 if (bits) {
957 __u32 w1, w2;
958 __u32 mask;
959
960 w1 = a1[words];
961 w2 = a2[words];
962
963 mask = htonl((0xffffffff) << (0x20 - bits));
964
965 if ((w1 ^ w2) & mask)
966 return 1;
967 }
968
969 return 0;
970}
971
27c523e2
SP
972int inet_addr_match_rta(const inet_prefix *m, const struct rtattr *rta)
973{
974 inet_prefix dst;
975
976 if (!rta || m->family == AF_UNSPEC || m->bitlen <= 0)
977 return 0;
978
979 if (get_addr_rta(&dst, rta, m->family))
980 return -1;
981
982 return inet_addr_match(&dst, m, m->bitlen);
983}
984
aba5acdf
SH
985int __iproute2_hz_internal;
986
987int __get_hz(void)
988{
989 char name[1024];
990 int hz = 0;
991 FILE *fp;
992
993 if (getenv("HZ"))
994 return atoi(getenv("HZ")) ? : HZ;
995
e1933b92
SH
996 if (getenv("PROC_NET_PSCHED"))
997 snprintf(name, sizeof(name)-1,
998 "%s", getenv("PROC_NET_PSCHED"));
999 else if (getenv("PROC_ROOT"))
1000 snprintf(name, sizeof(name)-1,
1001 "%s/net/psched", getenv("PROC_ROOT"));
1002 else
aba5acdf 1003 strcpy(name, "/proc/net/psched");
e1933b92 1004
aba5acdf
SH
1005 fp = fopen(name, "r");
1006
1007 if (fp) {
e1933b92
SH
1008 unsigned int nom, denom;
1009
aba5acdf
SH
1010 if (fscanf(fp, "%*08x%*08x%08x%08x", &nom, &denom) == 2)
1011 if (nom == 1000000)
1012 hz = denom;
1013 fclose(fp);
1014 }
1015 if (hz)
1016 return hz;
1017 return HZ;
1018}
1019
5e8bc631 1020int __iproute2_user_hz_internal;
1021
1022int __get_user_hz(void)
1023{
1024 return sysconf(_SC_CLK_TCK);
1025}
1026
e1933b92
SH
1027const char *rt_addr_n2a_r(int af, int len,
1028 const void *addr, char *buf, int buflen)
aba5acdf
SH
1029{
1030 switch (af) {
1031 case AF_INET:
1032 case AF_INET6:
1033 return inet_ntop(af, addr, buf, buflen);
dacc5d41
EB
1034 case AF_MPLS:
1035 return mpls_ntop(af, addr, buf, buflen);
aba5acdf
SH
1036 case AF_IPX:
1037 return ipx_ntop(af, addr, buf, buflen);
1038 case AF_DECnet:
1039 {
e1933b92
SH
1040 struct dn_naddr dna = { 2, { 0, 0, } };
1041
aba5acdf
SH
1042 memcpy(dna.a_addr, addr, 2);
1043 return dnet_ntop(af, &dna, buf, buflen);
1044 }
0b218ab1
EB
1045 case AF_PACKET:
1046 return ll_addr_n2a(addr, len, ARPHRD_VOID, buf, buflen);
728eb8d0
DS
1047 case AF_BRIDGE:
1048 {
1049 const union {
1050 struct sockaddr sa;
1051 struct sockaddr_in sin;
1052 struct sockaddr_in6 sin6;
1053 } *sa = addr;
1054
1055 switch (sa->sa.sa_family) {
1056 case AF_INET:
1057 return inet_ntop(AF_INET, &sa->sin.sin_addr,
1058 buf, buflen);
1059 case AF_INET6:
1060 return inet_ntop(AF_INET6, &sa->sin6.sin6_addr,
1061 buf, buflen);
1062 }
1063
1064 /* fallthrough */
1065 }
aba5acdf
SH
1066 default:
1067 return "???";
1068 }
1069}
1070
2e96d2cc
PS
1071const char *rt_addr_n2a(int af, int len, const void *addr)
1072{
1073 static char buf[256];
1074
1075 return rt_addr_n2a_r(af, len, addr, buf, 256);
1076}
1077
45c90d19
EB
1078int read_family(const char *name)
1079{
1080 int family = AF_UNSPEC;
e1933b92 1081
45c90d19
EB
1082 if (strcmp(name, "inet") == 0)
1083 family = AF_INET;
1084 else if (strcmp(name, "inet6") == 0)
1085 family = AF_INET6;
1086 else if (strcmp(name, "dnet") == 0)
1087 family = AF_DECnet;
1088 else if (strcmp(name, "link") == 0)
1089 family = AF_PACKET;
1090 else if (strcmp(name, "ipx") == 0)
1091 family = AF_IPX;
dacc5d41
EB
1092 else if (strcmp(name, "mpls") == 0)
1093 family = AF_MPLS;
45c90d19
EB
1094 else if (strcmp(name, "bridge") == 0)
1095 family = AF_BRIDGE;
1096 return family;
1097}
1098
1099const char *family_name(int family)
1100{
1101 if (family == AF_INET)
1102 return "inet";
1103 if (family == AF_INET6)
1104 return "inet6";
1105 if (family == AF_DECnet)
1106 return "dnet";
1107 if (family == AF_PACKET)
1108 return "link";
1109 if (family == AF_IPX)
1110 return "ipx";
dacc5d41
EB
1111 if (family == AF_MPLS)
1112 return "mpls";
45c90d19
EB
1113 if (family == AF_BRIDGE)
1114 return "bridge";
1115 return "???";
1116}
1117
aba5acdf 1118#ifdef RESOLVE_HOSTNAMES
e1933b92 1119struct namerec {
aba5acdf 1120 struct namerec *next;
7dec1bf8 1121 const char *name;
aba5acdf 1122 inet_prefix addr;
aba5acdf
SH
1123};
1124
7dec1bf8
SH
1125#define NHASH 257
1126static struct namerec *nht[NHASH];
aba5acdf 1127
7dec1bf8 1128static const char *resolve_address(const void *addr, int len, int af)
aba5acdf
SH
1129{
1130 struct namerec *n;
1131 struct hostent *h_ent;
e1933b92 1132 unsigned int hash;
aba5acdf
SH
1133 static int notfirst;
1134
1135
e1933b92
SH
1136 if (af == AF_INET6 && ((__u32 *)addr)[0] == 0 &&
1137 ((__u32 *)addr)[1] == 0 && ((__u32 *)addr)[2] == htonl(0xffff)) {
aba5acdf
SH
1138 af = AF_INET;
1139 addr += 12;
1140 len = 4;
1141 }
1142
7dec1bf8 1143 hash = *(__u32 *)(addr + len - 4) % NHASH;
aba5acdf
SH
1144
1145 for (n = nht[hash]; n; n = n->next) {
1146 if (n->addr.family == af &&
1147 n->addr.bytelen == len &&
1148 memcmp(n->addr.data, addr, len) == 0)
1149 return n->name;
1150 }
e1933b92
SH
1151 n = malloc(sizeof(*n));
1152 if (n == NULL)
aba5acdf
SH
1153 return NULL;
1154 n->addr.family = af;
1155 n->addr.bytelen = len;
1156 n->name = NULL;
1157 memcpy(n->addr.data, addr, len);
1158 n->next = nht[hash];
1159 nht[hash] = n;
1160 if (++notfirst == 1)
1161 sethostent(1);
1162 fflush(stdout);
1163
e1933b92
SH
1164 h_ent = gethostbyaddr(addr, len, af);
1165 if (h_ent != NULL)
aba5acdf
SH
1166 n->name = strdup(h_ent->h_name);
1167
1168 /* Even if we fail, "negative" entry is remembered. */
1169 return n->name;
1170}
1171#endif
1172
a418e451 1173const char *format_host_r(int af, int len, const void *addr,
4094db72 1174 char *buf, int buflen)
aba5acdf
SH
1175{
1176#ifdef RESOLVE_HOSTNAMES
1177 if (resolve_hosts) {
7dec1bf8
SH
1178 const char *n;
1179
f3a2ddc1
VK
1180 len = len <= 0 ? af_byte_len(af) : len;
1181
aba5acdf
SH
1182 if (len > 0 &&
1183 (n = resolve_address(addr, len, af)) != NULL)
1184 return n;
1185 }
1186#endif
2e96d2cc 1187 return rt_addr_n2a_r(af, len, addr, buf, buflen);
aba5acdf
SH
1188}
1189
a418e451
PS
1190const char *format_host(int af, int len, const void *addr)
1191{
1192 static char buf[256];
1193
1194 return format_host_r(af, len, addr, buf, 256);
1195}
1196
aba5acdf 1197
f332d169 1198char *hexstring_n2a(const __u8 *str, int len, char *buf, int blen)
aba5acdf 1199{
f332d169 1200 char *ptr = buf;
aba5acdf
SH
1201 int i;
1202
e1933b92 1203 for (i = 0; i < len; i++) {
aba5acdf
SH
1204 if (blen < 3)
1205 break;
1206 sprintf(ptr, "%02x", str[i]);
1207 ptr += 2;
1208 blen -= 2;
aba5acdf
SH
1209 }
1210 return buf;
1211}
1212
89ae5020 1213__u8 *hexstring_a2n(const char *str, __u8 *buf, int blen, unsigned int *len)
aba5acdf 1214{
89ae5020 1215 unsigned int cnt = 0;
316c2346 1216 char *endptr;
aba5acdf 1217
316c2346
JP
1218 if (strlen(str) % 2)
1219 return NULL;
1220 while (cnt < blen && strlen(str) > 1) {
1221 unsigned int tmp;
1222 char tmpstr[3];
1223
1224 strncpy(tmpstr, str, 2);
1225 tmpstr[2] = '\0';
9ba4126d 1226 errno = 0;
316c2346
JP
1227 tmp = strtoul(tmpstr, &endptr, 16);
1228 if (errno != 0 || tmp > 0xFF || *endptr != '\0')
aba5acdf 1229 return NULL;
316c2346
JP
1230 buf[cnt++] = tmp;
1231 str += 2;
aba5acdf 1232 }
89ae5020
SD
1233
1234 if (len)
1235 *len = cnt;
1236
aba5acdf
SH
1237 return buf;
1238}
90f93024 1239
1c570c50
JHS
1240int hex2mem(const char *buf, uint8_t *mem, int count)
1241{
1242 int i, j;
1243 int c;
1244
1245 for (i = 0, j = 0; i < count; i++, j += 2) {
1246 c = get_hex(buf[j]);
1247 if (c < 0)
2bf1a81a 1248 return -1;
1c570c50
JHS
1249
1250 mem[i] = c << 4;
1251
1252 c = get_hex(buf[j + 1]);
1253 if (c < 0)
2bf1a81a 1254 return -1;
1c570c50
JHS
1255
1256 mem[i] |= c;
1257 }
1258
1259 return 0;
1c570c50
JHS
1260}
1261
5866bddd
TH
1262int addr64_n2a(__u64 addr, char *buff, size_t len)
1263{
1264 __u16 *words = (__u16 *)&addr;
1265 __u16 v;
1266 int i, ret;
1267 size_t written = 0;
1268 char *sep = ":";
1269
1270 for (i = 0; i < 4; i++) {
1271 v = ntohs(words[i]);
1272
1273 if (i == 3)
1274 sep = "";
1275
1276 ret = snprintf(&buff[written], len - written, "%x%s", v, sep);
1277 if (ret < 0)
1278 return ret;
1279
1280 written += ret;
1281 }
1282
1283 return written;
1284}
1285
7c72df5a
ID
1286/* Print buffer and escape bytes that are !isprint or among 'escape' */
1287void print_escape_buf(const __u8 *buf, size_t len, const char *escape)
1288{
1289 size_t i;
1290
1291 for (i = 0; i < len; ++i) {
1292 if (isprint(buf[i]) && buf[i] != '\\' &&
1293 !strchr(escape, buf[i]))
1294 printf("%c", buf[i]);
1295 else
1296 printf("\\%03o", buf[i]);
1297 }
1298}
1299
90f93024
SH
1300int print_timestamp(FILE *fp)
1301{
1302 struct timeval tv;
79aa79d0 1303 struct tm *tm;
90f93024 1304
90f93024 1305 gettimeofday(&tv, NULL);
79aa79d0
VK
1306 tm = localtime(&tv.tv_sec);
1307
1308 if (timestamp_short) {
1309 char tshort[40];
1310
1311 strftime(tshort, sizeof(tshort), "%Y-%m-%dT%H:%M:%S", tm);
1312 fprintf(fp, "[%s.%06ld] ", tshort, tv.tv_usec);
1313 } else {
1314 char *tstr = asctime(tm);
1315
1316 tstr[strlen(tstr)-1] = 0;
1317 fprintf(fp, "Timestamp: %s %ld usec\n",
1318 tstr, tv.tv_usec);
1319 }
90f93024 1320
90f93024
SH
1321 return 0;
1322}
351efcde 1323
4328b687 1324unsigned int print_name_and_link(const char *fmt,
f5b50a18
SP
1325 const char *name, struct rtattr *tb[])
1326{
1327 const char *link = NULL;
1328 unsigned int m_flag = 0;
1329 SPRINT_BUF(b1);
1330
1331 if (tb[IFLA_LINK]) {
1332 int iflink = rta_getattr_u32(tb[IFLA_LINK]);
1333
1334 if (iflink) {
1335 if (tb[IFLA_LINK_NETNSID]) {
1336 if (is_json_context()) {
1337 print_int(PRINT_JSON,
1338 "link_index", NULL, iflink);
1339 } else {
1340 link = ll_idx_n2a(iflink);
1341 }
1342 } else {
1343 link = ll_index_to_name(iflink);
1344
1345 if (is_json_context()) {
1346 print_string(PRINT_JSON,
1347 "link", NULL, link);
1348 link = NULL;
1349 }
1350
1351 m_flag = ll_index_to_flags(iflink);
1352 m_flag = !(m_flag & IFF_UP);
1353 }
1354 } else {
1355 if (is_json_context())
1356 print_null(PRINT_JSON, "link", NULL, NULL);
1357 else
1358 link = "NONE";
1359 }
1360
1361 if (link) {
1362 snprintf(b1, sizeof(b1), "%s@%s", name, link);
1363 name = b1;
1364 }
1365 }
1366
4328b687 1367 print_color_string(PRINT_ANY, COLOR_IFNAME, "ifname", fmt, name);
f5b50a18
SP
1368
1369 return m_flag;
1370}
1371
351efcde
SH
1372int cmdlineno;
1373
1374/* Like glibc getline but handle continuation lines and comments */
d21e8835 1375ssize_t getcmdline(char **linep, size_t *lenp, FILE *in)
351efcde 1376{
d21e8835 1377 ssize_t cc;
351efcde 1378 char *cp;
ae665a52 1379
e1933b92
SH
1380 cc = getline(linep, lenp, in);
1381 if (cc < 0)
351efcde
SH
1382 return cc; /* eof or error */
1383 ++cmdlineno;
1384
1385 cp = strchr(*linep, '#');
ae665a52 1386 if (cp)
351efcde 1387 *cp = '\0';
ae665a52 1388
351efcde
SH
1389 while ((cp = strstr(*linep, "\\\n")) != NULL) {
1390 char *line1 = NULL;
1391 size_t len1 = 0;
21a85d3b 1392 ssize_t cc1;
351efcde 1393
e1933b92
SH
1394 cc1 = getline(&line1, &len1, in);
1395 if (cc1 < 0) {
351efcde
SH
1396 fprintf(stderr, "Missing continuation line\n");
1397 return cc1;
1398 }
1399
1400 ++cmdlineno;
1401 *cp = 0;
1402
1403 cp = strchr(line1, '#');
ae665a52 1404 if (cp)
351efcde
SH
1405 *cp = '\0';
1406
d21e8835
AH
1407 *lenp = strlen(*linep) + strlen(line1) + 1;
1408 *linep = realloc(*linep, *lenp);
351efcde
SH
1409 if (!*linep) {
1410 fprintf(stderr, "Out of memory\n");
d21e8835 1411 *lenp = 0;
351efcde
SH
1412 return -1;
1413 }
1414 cc += cc1 - 2;
1415 strcat(*linep, line1);
1416 free(line1);
1417 }
1418 return cc;
1419}
1420
1421/* split command line into argument vector */
1422int makeargs(char *line, char *argv[], int maxargs)
1423{
1424 static const char ws[] = " \t\r\n";
bd9cea5d 1425 char *cp = line;
351efcde
SH
1426 int argc = 0;
1427
bd9cea5d
SH
1428 while (*cp) {
1429 /* skip leading whitespace */
1430 cp += strspn(cp, ws);
1431
1432 if (*cp == '\0')
1433 break;
1434
351efcde
SH
1435 if (argc >= (maxargs - 1)) {
1436 fprintf(stderr, "Too many arguments to command\n");
1437 exit(1);
1438 }
39e3d383
CG
1439
1440 /* word begins with quote */
1441 if (*cp == '\'' || *cp == '"') {
1442 char quote = *cp++;
1443
1444 argv[argc++] = cp;
1445 /* find ending quote */
1446 cp = strchr(cp, quote);
1447 if (cp == NULL) {
1448 fprintf(stderr, "Unterminated quoted string\n");
1449 exit(1);
1450 }
bd9cea5d
SH
1451 } else {
1452 argv[argc++] = cp;
1453
1454 /* find end of word */
1455 cp += strcspn(cp, ws);
1456 if (*cp == '\0')
1457 break;
39e3d383
CG
1458 }
1459
95debca7 1460 /* separate words */
39e3d383 1461 *cp++ = 0;
351efcde
SH
1462 }
1463 argv[argc] = NULL;
1464
1465 return argc;
1466}
aa574cd6 1467
ddb1129b
VK
1468void print_nlmsg_timestamp(FILE *fp, const struct nlmsghdr *n)
1469{
1470 char *tstr;
e1933b92
SH
1471 time_t secs = ((__u32 *)NLMSG_DATA(n))[0];
1472 long usecs = ((__u32 *)NLMSG_DATA(n))[1];
1473
ddb1129b
VK
1474 tstr = asctime(localtime(&secs));
1475 tstr[strlen(tstr)-1] = 0;
1476 fprintf(fp, "Timestamp: %s %lu us\n", tstr, usecs);
1477}
e998e118
VK
1478
1479static int on_netns(char *nsname, void *arg)
1480{
1481 struct netns_func *f = arg;
1482
1483 if (netns_switch(nsname))
1484 return -1;
1485
1486 return f->func(nsname, f->arg);
1487}
1488
1489static int on_netns_label(char *nsname, void *arg)
1490{
1491 printf("\nnetns: %s\n", nsname);
1492 return on_netns(nsname, arg);
1493}
1494
1495int do_each_netns(int (*func)(char *nsname, void *arg), void *arg,
1496 bool show_label)
1497{
1498 struct netns_func nsf = { .func = func, .arg = arg };
1499
1500 if (show_label)
1501 return netns_foreach(on_netns_label, &nsf);
1502
1503 return netns_foreach(on_netns, &nsf);
1504}
b217df10
VK
1505
1506char *int_to_str(int val, char *buf)
1507{
1508 sprintf(buf, "%d", val);
1509 return buf;
1510}
d91fb3f4
EC
1511
1512int get_guid(__u64 *guid, const char *arg)
1513{
1514 unsigned long int tmp;
1515 char *endptr;
1516 int i;
1517
1518#define GUID_STR_LEN 23
1519 /* Verify strict format: format string must be
1520 * xx:xx:xx:xx:xx:xx:xx:xx where xx can be an arbitrary
1521 * hex digit
1522 */
1523
1524 if (strlen(arg) != GUID_STR_LEN)
1525 return -1;
1526
1527 /* make sure columns are in place */
1528 for (i = 0; i < 7; i++)
1529 if (arg[2 + i * 3] != ':')
1530 return -1;
1531
1532 *guid = 0;
1533 for (i = 0; i < 8; i++) {
1534 tmp = strtoul(arg + i * 3, &endptr, 16);
1535 if (endptr != arg + i * 3 + 2)
1536 return -1;
1537
1538 if (tmp > 255)
1539 return -1;
1540
1541 *guid |= tmp << (56 - 8 * i);
1542 }
1543
1544 return 0;
1545}
56e3eb4c
NA
1546
1547/* This is a necessary workaround for multicast route dumps */
1548int get_real_family(int rtm_type, int rtm_family)
1549{
1550 if (rtm_type != RTN_MULTICAST)
1551 return rtm_family;
1552
5ce897a0
HL
1553 if (rtm_family == RTNL_FAMILY_IPMR)
1554 return AF_INET;
1555
1556 if (rtm_family == RTNL_FAMILY_IP6MR)
1557 return AF_INET6;
1558
1559 return rtm_family;
56e3eb4c 1560}
8d15e012 1561
9a7bd544
SP
1562/* Based on copy_rtnl_link_stats() from kernel at net/core/rtnetlink.c */
1563static void copy_rtnl_link_stats64(struct rtnl_link_stats64 *stats64,
1564 const struct rtnl_link_stats *stats)
1565{
1566 __u64 *a = (__u64 *)stats64;
1567 const __u32 *b = (const __u32 *)stats;
1568 const __u32 *e = b + sizeof(*stats) / sizeof(*b);
1569
1570 while (b < e)
1571 *a++ = *b++;
1572}
1573
c7a3b229
LB
1574#define IPSTATS_MIB_MAX_LEN (__IPSTATS_MIB_MAX * sizeof(__u64))
1575static void get_snmp_counters(struct rtnl_link_stats64 *stats64,
1576 struct rtattr *s)
1577{
1578 __u64 *mib = (__u64 *)RTA_DATA(s);
1579
1580 memset(stats64, 0, sizeof(*stats64));
1581
1582 stats64->rx_packets = mib[IPSTATS_MIB_INPKTS];
1583 stats64->rx_bytes = mib[IPSTATS_MIB_INOCTETS];
1584 stats64->tx_packets = mib[IPSTATS_MIB_OUTPKTS];
1585 stats64->tx_bytes = mib[IPSTATS_MIB_OUTOCTETS];
1586 stats64->rx_errors = mib[IPSTATS_MIB_INDISCARDS];
1587 stats64->tx_errors = mib[IPSTATS_MIB_OUTDISCARDS];
1588 stats64->multicast = mib[IPSTATS_MIB_INMCASTPKTS];
1589 stats64->rx_frame_errors = mib[IPSTATS_MIB_CSUMERRORS];
1590}
1591
9a7bd544
SP
1592int get_rtnl_link_stats_rta(struct rtnl_link_stats64 *stats64,
1593 struct rtattr *tb[])
1594{
1595 struct rtnl_link_stats stats;
1596 void *s;
1597 struct rtattr *rta;
1598 int size, len;
1599
1600 if (tb[IFLA_STATS64]) {
1601 rta = tb[IFLA_STATS64];
1602 size = sizeof(struct rtnl_link_stats64);
1603 s = stats64;
1604 } else if (tb[IFLA_STATS]) {
1605 rta = tb[IFLA_STATS];
1606 size = sizeof(struct rtnl_link_stats);
1607 s = &stats;
c7a3b229
LB
1608 } else if (tb[IFLA_PROTINFO]) {
1609 struct rtattr *ptb[IPSTATS_MIB_MAX_LEN + 1];
1610
1611 parse_rtattr_nested(ptb, IPSTATS_MIB_MAX_LEN,
1612 tb[IFLA_PROTINFO]);
1613 if (ptb[IFLA_INET6_STATS])
1614 get_snmp_counters(stats64, ptb[IFLA_INET6_STATS]);
1615 return sizeof(*stats64);
9a7bd544
SP
1616 } else {
1617 return -1;
1618 }
1619
1620 len = RTA_PAYLOAD(rta);
1621 if (len < size)
1622 memset(s + len, 0, size - len);
1623 else
1624 len = size;
1625
1626 memcpy(s, RTA_DATA(rta), len);
1627
1628 if (s != stats64)
1629 copy_rtnl_link_stats64(stats64, s);
1630 return size;
1631}
1632
4f6b7338 1633#ifdef NEED_STRLCPY
8d15e012
PS
1634size_t strlcpy(char *dst, const char *src, size_t size)
1635{
50ea3c64
PS
1636 size_t srclen = strlen(src);
1637
8d15e012 1638 if (size) {
50ea3c64
PS
1639 size_t minlen = min(srclen, size - 1);
1640
1641 memcpy(dst, src, minlen);
1642 dst[minlen] = '\0';
8d15e012 1643 }
50ea3c64 1644 return srclen;
8d15e012
PS
1645}
1646
1647size_t strlcat(char *dst, const char *src, size_t size)
1648{
1649 size_t dlen = strlen(dst);
1650
50ea3c64 1651 if (dlen >= size)
8d15e012
PS
1652 return dlen + strlen(src);
1653
1654 return dlen + strlcpy(dst + dlen, src, size - dlen);
1655}
4f6b7338 1656#endif
ba2fc55b
LB
1657
1658void drop_cap(void)
1659{
1660#ifdef HAVE_LIBCAP
1661 /* don't harmstring root/sudo */
1662 if (getuid() != 0 && geteuid() != 0) {
1663 cap_t capabilities;
9b13cc98
LB
1664 cap_value_t net_admin = CAP_NET_ADMIN;
1665 cap_flag_t inheritable = CAP_INHERITABLE;
1666 cap_flag_value_t is_set;
ba2fc55b
LB
1667
1668 capabilities = cap_get_proc();
1669 if (!capabilities)
1670 exit(EXIT_FAILURE);
9b13cc98
LB
1671 if (cap_get_flag(capabilities, net_admin, inheritable,
1672 &is_set) != 0)
ba2fc55b 1673 exit(EXIT_FAILURE);
9b13cc98
LB
1674 /* apps with ambient caps can fork and call ip */
1675 if (is_set == CAP_CLEAR) {
1676 if (cap_clear(capabilities) != 0)
1677 exit(EXIT_FAILURE);
1678 if (cap_set_proc(capabilities) != 0)
1679 exit(EXIT_FAILURE);
1680 }
ba2fc55b
LB
1681 cap_free(capabilities);
1682 }
1683#endif
1684}
abf70ef4
DT
1685
1686int get_time(unsigned int *time, const char *str)
1687{
1688 double t;
1689 char *p;
1690
1691 t = strtod(str, &p);
1692 if (p == str)
1693 return -1;
1694
1695 if (*p) {
1696 if (strcasecmp(p, "s") == 0 || strcasecmp(p, "sec") == 0 ||
1697 strcasecmp(p, "secs") == 0)
1698 t *= TIME_UNITS_PER_SEC;
1699 else if (strcasecmp(p, "ms") == 0 || strcasecmp(p, "msec") == 0 ||
1700 strcasecmp(p, "msecs") == 0)
1701 t *= TIME_UNITS_PER_SEC/1000;
1702 else if (strcasecmp(p, "us") == 0 || strcasecmp(p, "usec") == 0 ||
1703 strcasecmp(p, "usecs") == 0)
1704 t *= TIME_UNITS_PER_SEC/1000000;
1705 else
1706 return -1;
1707 }
1708
1709 *time = t;
1710 return 0;
1711}
1712
1713
1714void print_time(char *buf, int len, __u32 time)
1715{
1716 double tmp = time;
1717
1718 if (tmp >= TIME_UNITS_PER_SEC)
1719 snprintf(buf, len, "%.1fs", tmp/TIME_UNITS_PER_SEC);
1720 else if (tmp >= TIME_UNITS_PER_SEC/1000)
1721 snprintf(buf, len, "%.1fms", tmp/(TIME_UNITS_PER_SEC/1000));
1722 else
1723 snprintf(buf, len, "%uus", time);
1724}
1725
1726char *sprint_time(__u32 time, char *buf)
1727{
1728 print_time(buf, SPRINT_BSIZE-1, time);
1729 return buf;
1730}
1731
1732/* 64 bit times are represented internally in nanoseconds */
1733int get_time64(__s64 *time, const char *str)
1734{
1735 double nsec;
1736 char *p;
1737
1738 nsec = strtod(str, &p);
1739 if (p == str)
1740 return -1;
1741
1742 if (*p) {
1743 if (strcasecmp(p, "s") == 0 ||
1744 strcasecmp(p, "sec") == 0 ||
1745 strcasecmp(p, "secs") == 0)
1746 nsec *= NSEC_PER_SEC;
1747 else if (strcasecmp(p, "ms") == 0 ||
1748 strcasecmp(p, "msec") == 0 ||
1749 strcasecmp(p, "msecs") == 0)
1750 nsec *= NSEC_PER_MSEC;
1751 else if (strcasecmp(p, "us") == 0 ||
1752 strcasecmp(p, "usec") == 0 ||
1753 strcasecmp(p, "usecs") == 0)
1754 nsec *= NSEC_PER_USEC;
1755 else if (strcasecmp(p, "ns") == 0 ||
1756 strcasecmp(p, "nsec") == 0 ||
1757 strcasecmp(p, "nsecs") == 0)
1758 nsec *= 1;
1759 else
1760 return -1;
1761 }
1762
1763 *time = nsec;
1764 return 0;
1765}
1766
1767void print_time64(char *buf, int len, __s64 time)
1768{
1769 double nsec = time;
1770
1771 if (time >= NSEC_PER_SEC)
1772 snprintf(buf, len, "%.3fs", nsec/NSEC_PER_SEC);
1773 else if (time >= NSEC_PER_MSEC)
1774 snprintf(buf, len, "%.3fms", nsec/NSEC_PER_MSEC);
1775 else if (time >= NSEC_PER_USEC)
1776 snprintf(buf, len, "%.3fus", nsec/NSEC_PER_USEC);
1777 else
1778 snprintf(buf, len, "%lldns", time);
1779}
1780
1781char *sprint_time64(__s64 time, char *buf)
1782{
1783 print_time64(buf, SPRINT_BSIZE-1, time);
1784 return buf;
1785}