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MFC r267667:
[FreeBSD/stable/10.git] / sbin / ipfw / dummynet.c
1 /*
2  * Codel/FQ_Codel and PIE/FQ_PIE Code:
3  * Copyright (C) 2016 Centre for Advanced Internet Architectures,
4  *  Swinburne University of Technology, Melbourne, Australia.
5  * Portions of this code were made possible in part by a gift from 
6  *  The Comcast Innovation Fund.
7  * Implemented by Rasool Al-Saadi <ralsaadi@swin.edu.au>
8  * 
9  * Copyright (c) 2002-2003,2010 Luigi Rizzo
10  *
11  * Redistribution and use in source forms, with and without modification,
12  * are permitted provided that this entire comment appears intact.
13  *
14  * Redistribution in binary form may occur without any restrictions.
15  * Obviously, it would be nice if you gave credit where credit is due
16  * but requiring it would be too onerous.
17  *
18  * This software is provided ``AS IS'' without any warranties of any kind.
19  *
20  * $FreeBSD$
21  *
22  * dummynet support
23  */
24
25 #define NEW_AQM
26 #include <sys/types.h>
27 #include <sys/socket.h>
28 /* XXX there are several sysctl leftover here */
29 #include <sys/sysctl.h>
30
31 #include "ipfw2.h"
32
33 #ifdef NEW_AQM
34 #include <stdint.h>
35 #endif
36
37 #include <ctype.h>
38 #include <err.h>
39 #include <errno.h>
40 #include <libutil.h>
41 #include <netdb.h>
42 #include <stdio.h>
43 #include <stdlib.h>
44 #include <string.h>
45 #include <sysexits.h>
46
47 #include <net/if.h>
48 #include <netinet/in.h>
49 #include <netinet/ip_fw.h>
50 #include <netinet/ip_dummynet.h>
51 #include <arpa/inet.h>  /* inet_ntoa */
52
53
54 static struct _s_x dummynet_params[] = {
55         { "plr",                TOK_PLR },
56         { "noerror",            TOK_NOERROR },
57         { "buckets",            TOK_BUCKETS },
58         { "dst-ip",             TOK_DSTIP },
59         { "src-ip",             TOK_SRCIP },
60         { "dst-port",           TOK_DSTPORT },
61         { "src-port",           TOK_SRCPORT },
62         { "proto",              TOK_PROTO },
63         { "weight",             TOK_WEIGHT },
64         { "lmax",               TOK_LMAX },
65         { "maxlen",             TOK_LMAX },
66         { "all",                TOK_ALL },
67         { "mask",               TOK_MASK }, /* alias for both */
68         { "sched_mask",         TOK_SCHED_MASK },
69         { "flow_mask",          TOK_FLOW_MASK },
70         { "droptail",           TOK_DROPTAIL },
71         { "ecn",                TOK_ECN },
72         { "red",                TOK_RED },
73         { "gred",               TOK_GRED },
74 #ifdef NEW_AQM
75         { "codel",              TOK_CODEL}, /* Codel AQM */
76         { "fq_codel",   TOK_FQ_CODEL}, /* FQ-Codel  */
77         { "pie",                TOK_PIE}, /* PIE AQM */
78         { "fq_pie",             TOK_FQ_PIE}, /* FQ-PIE */
79 #endif
80         { "bw",                 TOK_BW },
81         { "bandwidth",          TOK_BW },
82         { "delay",              TOK_DELAY },
83         { "link",               TOK_LINK },
84         { "pipe",               TOK_PIPE },
85         { "queue",              TOK_QUEUE },
86         { "flowset",            TOK_FLOWSET },
87         { "sched",              TOK_SCHED },
88         { "pri",                TOK_PRI },
89         { "priority",           TOK_PRI },
90         { "type",               TOK_TYPE },
91         { "flow-id",            TOK_FLOWID},
92         { "dst-ipv6",           TOK_DSTIP6},
93         { "dst-ip6",            TOK_DSTIP6},
94         { "src-ipv6",           TOK_SRCIP6},
95         { "src-ip6",            TOK_SRCIP6},
96         { "profile",            TOK_PROFILE},
97         { "burst",              TOK_BURST},
98         { "dummynet-params",    TOK_NULL },
99         { NULL, 0 }     /* terminator */
100 };
101
102 #ifdef NEW_AQM
103 /* AQM/extra sched parameters  tokens*/
104 static struct _s_x aqm_params[] = {
105         { "target",             TOK_TARGET},
106         { "interval",           TOK_INTERVAL},
107         { "limit",              TOK_LIMIT},
108         { "flows",              TOK_FLOWS},
109         { "quantum",            TOK_QUANTUM},
110         { "ecn",                TOK_ECN},
111         { "noecn",              TOK_NO_ECN},
112         { "tupdate",            TOK_TUPDATE},
113         { "max_burst",          TOK_MAX_BURST},
114         { "max_ecnth",  TOK_MAX_ECNTH},
115         { "alpha",              TOK_ALPHA},
116         { "beta",               TOK_BETA},
117         { "capdrop",    TOK_CAPDROP},
118         { "nocapdrop",  TOK_NO_CAPDROP},
119         { "onoff",      TOK_ONOFF},
120         { "dre",        TOK_DRE},
121         { "ts", TOK_TS},
122         { "derand",     TOK_DERAND},
123         { "noderand",   TOK_NO_DERAND},
124         { NULL, 0 }     /* terminator */
125 };
126 #endif
127
128 #define O_NEXT(p, len) ((void *)((char *)p + len))
129
130 static void
131 oid_fill(struct dn_id *oid, int len, int type, uintptr_t id)
132 {
133         oid->len = len;
134         oid->type = type;
135         oid->subtype = 0;
136         oid->id = id;
137 }
138
139 /* make room in the buffer and move the pointer forward */
140 static void *
141 o_next(struct dn_id **o, int len, int type)
142 {
143         struct dn_id *ret = *o;
144         oid_fill(ret, len, type, 0);
145         *o = O_NEXT(*o, len);
146         return ret;
147 }
148
149 #ifdef NEW_AQM
150
151 /* Codel flags */
152 enum {
153         CODEL_ECN_ENABLED = 1
154 };
155
156 /* PIE flags, from PIE kernel module */
157 enum {
158         PIE_ECN_ENABLED = 1,
159         PIE_CAPDROP_ENABLED = 2,
160         PIE_ON_OFF_MODE_ENABLED = 4,
161         PIE_DEPRATEEST_ENABLED = 8,
162         PIE_DERAND_ENABLED = 16
163 };
164
165 #define PIE_FIX_POINT_BITS 13
166 #define PIE_SCALE (1L<<PIE_FIX_POINT_BITS)
167
168 /* integer to time */
169 void 
170 us_to_time(int t,char *strt)
171 {
172         if (t < 0)
173                 strt[0]='\0';
174         else if ( t==0 )
175                 sprintf(strt,"%d", t);
176         else if (t< 1000)
177                 sprintf(strt,"%dus", t);
178         else if (t < 1000000) 
179                 sprintf(strt,"%gms", (float) t / 1000);
180         else
181                 sprintf(strt,"%gfs", (float) t / 1000000);
182 }
183
184 /*
185  * returns -1 if s is not a valid time, otherwise, return time in us
186  */
187 static long
188 time_to_us(const char *s)
189 {
190         int i, dots = 0;
191         int len = strlen(s);
192         char strt[16]="", stru[16]="";
193         
194         if (len>15)
195                 return -1;
196         for (i = 0; i<len && (isdigit(s[i]) || s[i]=='.') ; i++)
197                 if (s[i]=='.') {
198                         if (dots)
199                                 return -1;
200                         else
201                                 dots++;
202                 }
203
204         if (!i)
205                 return -1;
206         strncpy(strt, s, i);
207         if (i<len)
208                 strcpy(stru, s+i);
209         else
210                 strcpy(stru, "ms");
211         
212         if (!strcasecmp(stru, "us"))
213                 return atol(strt);
214         if (!strcasecmp(stru, "ms"))
215                 return (strtod(strt, NULL) * 1000);
216         if (!strcasecmp(stru, "s"))
217                 return (strtod(strt, NULL)*1000000);
218
219         return -1;
220 }
221
222  
223 /* Get AQM or scheduler extra parameters  */
224 void
225 get_extra_parms(uint32_t nr, char *out, int subtype)
226
227         struct dn_extra_parms *ep;
228         int ret;
229         char strt1[15], strt2[15], strt3[15];
230         u_int l;
231
232         /* prepare the request */
233         l = sizeof(struct dn_extra_parms);
234         ep = safe_calloc(1, l);
235         memset(ep, 0, sizeof(*ep));
236         *out = '\0';
237
238         oid_fill(&ep->oid, l, DN_CMD_GET, DN_API_VERSION);
239         ep->oid.len = l;
240         ep->oid.subtype = subtype;
241         ep->nr = nr;
242
243         ret = do_cmd(-IP_DUMMYNET3, ep, (uintptr_t)&l);
244         if (ret) {
245                 free(ep);
246                 errx(EX_DATAERR, "Error getting extra parameters\n");
247         }
248
249         switch (subtype) {
250         case DN_AQM_PARAMS:
251                 if( !strcasecmp(ep->name, "codel")) {
252                         us_to_time(ep->par[0], strt1);
253                         us_to_time(ep->par[1], strt2);
254                         l = sprintf(out, " AQM CoDel target %s interval %s",
255                                 strt1, strt2);
256                         if (ep->par[2] & CODEL_ECN_ENABLED)
257                                 l = sprintf(out + l, " ECN");
258                         else
259                                 l += sprintf(out + l, " NoECN");
260                 } else if( !strcasecmp(ep->name, "pie")) {
261                         us_to_time(ep->par[0], strt1);
262                         us_to_time(ep->par[1], strt2);
263                         us_to_time(ep->par[2], strt3);
264                         l = sprintf(out, " AQM type PIE target %s tupdate %s alpha "
265                                         "%g beta %g max_burst %s max_ecnth %.3g",
266                                         strt1,
267                                         strt2,
268                                         ep->par[4] / (float) PIE_SCALE,
269                                         ep->par[5] / (float) PIE_SCALE,
270                                         strt3,
271                                         ep->par[3] / (float) PIE_SCALE
272                                 );
273                                 
274                         if (ep->par[6] & PIE_ECN_ENABLED)
275                                 l += sprintf(out + l, " ECN");
276                         else
277                                 l += sprintf(out + l, " NoECN");
278                         if (ep->par[6] & PIE_CAPDROP_ENABLED)
279                                 l += sprintf(out + l, " CapDrop");
280                         else
281                                 l += sprintf(out + l, " NoCapDrop");
282                         if (ep->par[6] & PIE_ON_OFF_MODE_ENABLED)
283                                 l += sprintf(out + l, " OnOff");
284                         if (ep->par[6] & PIE_DEPRATEEST_ENABLED)
285                                 l += sprintf(out + l, " DRE");
286                         else
287                                 l += sprintf(out + l, " TS");
288                         if (ep->par[6] & PIE_DERAND_ENABLED)
289                                 l += sprintf(out + l, " Derand");
290                         else
291                                 l += sprintf(out + l, " NoDerand");
292                 }
293                 break;
294
295         case    DN_SCH_PARAMS:
296                 if (!strcasecmp(ep->name,"FQ_CODEL")) {
297                         us_to_time(ep->par[0], strt1);
298                         us_to_time(ep->par[1], strt2);
299                         l = sprintf(out," FQ_CODEL target %s interval %s"
300                                 " quantum %jd limit %jd flows %jd",
301                                 strt1, strt2,
302                                 (intmax_t) ep->par[3],
303                                 (intmax_t) ep->par[4],
304                                 (intmax_t) ep->par[5]
305                                 );
306                         if (ep->par[2] & CODEL_ECN_ENABLED)
307                                 l += sprintf(out + l, " ECN");
308                         else
309                                 l += sprintf(out + l, " NoECN");
310                         l += sprintf(out + l, "\n");
311                 } else  if (!strcasecmp(ep->name,"FQ_PIE")) {
312                         us_to_time(ep->par[0], strt1);
313                         us_to_time(ep->par[1], strt2);
314                         us_to_time(ep->par[2], strt3);
315                         l = sprintf(out, "  FQ_PIE target %s tupdate %s alpha "
316                                 "%g beta %g max_burst %s max_ecnth %.3g"
317                                 " quantum %jd limit %jd flows %jd",
318                                 strt1,
319                                 strt2,
320                                 ep->par[4] / (float) PIE_SCALE,
321                                 ep->par[5] / (float) PIE_SCALE,
322                                 strt3,
323                                 ep->par[3] / (float) PIE_SCALE,
324                                 (intmax_t) ep->par[7],
325                                 (intmax_t) ep->par[8],
326                                 (intmax_t) ep->par[9]
327                         );
328                         
329                         if (ep->par[6] & PIE_ECN_ENABLED)
330                                 l += sprintf(out + l, " ECN");
331                         else
332                                 l += sprintf(out + l, " NoECN");
333                         if (ep->par[6] & PIE_CAPDROP_ENABLED)
334                                 l += sprintf(out + l, " CapDrop");
335                         else
336                                 l += sprintf(out + l, " NoCapDrop");
337                         if (ep->par[6] & PIE_ON_OFF_MODE_ENABLED)
338                                 l += sprintf(out + l, " OnOff");
339                         if (ep->par[6] & PIE_DEPRATEEST_ENABLED)
340                                 l += sprintf(out + l, " DRE");
341                         else
342                                 l += sprintf(out + l, " TS");
343                         if (ep->par[6] & PIE_DERAND_ENABLED)
344                                 l += sprintf(out + l, " Derand");
345                         else
346                                 l += sprintf(out + l, " NoDerand");
347                         l += sprintf(out + l, "\n");
348                 }
349                 break;
350         }
351
352         free(ep);
353 }
354 #endif
355
356
357 #if 0
358 static int
359 sort_q(void *arg, const void *pa, const void *pb)
360 {
361         int rev = (co.do_sort < 0);
362         int field = rev ? -co.do_sort : co.do_sort;
363         long long res = 0;
364         const struct dn_flow_queue *a = pa;
365         const struct dn_flow_queue *b = pb;
366
367         switch (field) {
368         case 1: /* pkts */
369                 res = a->len - b->len;
370                 break;
371         case 2: /* bytes */
372                 res = a->len_bytes - b->len_bytes;
373                 break;
374
375         case 3: /* tot pkts */
376                 res = a->tot_pkts - b->tot_pkts;
377                 break;
378
379         case 4: /* tot bytes */
380                 res = a->tot_bytes - b->tot_bytes;
381                 break;
382         }
383         if (res < 0)
384                 res = -1;
385         if (res > 0)
386                 res = 1;
387         return (int)(rev ? res : -res);
388 }
389 #endif
390
391 /* print a mask and header for the subsequent list of flows */
392 static void
393 print_mask(struct ipfw_flow_id *id)
394 {
395         if (!IS_IP6_FLOW_ID(id)) {
396                 printf("    "
397                     "mask: %s 0x%02x 0x%08x/0x%04x -> 0x%08x/0x%04x\n",
398                     id->extra ? "queue," : "",
399                     id->proto,
400                     id->src_ip, id->src_port,
401                     id->dst_ip, id->dst_port);
402         } else {
403                 char buf[255];
404                 printf("\n        mask: %sproto: 0x%02x, flow_id: 0x%08x,  ",
405                     id->extra ? "queue," : "",
406                     id->proto, id->flow_id6);
407                 inet_ntop(AF_INET6, &(id->src_ip6), buf, sizeof(buf));
408                 printf("%s/0x%04x -> ", buf, id->src_port);
409                 inet_ntop(AF_INET6, &(id->dst_ip6), buf, sizeof(buf));
410                 printf("%s/0x%04x\n", buf, id->dst_port);
411         }
412 }
413
414 static void
415 print_header(struct ipfw_flow_id *id)
416 {
417         if (!IS_IP6_FLOW_ID(id))
418                 printf("BKT Prot ___Source IP/port____ "
419                     "____Dest. IP/port____ "
420                     "Tot_pkt/bytes Pkt/Byte Drp\n");
421         else
422                 printf("BKT ___Prot___ _flow-id_ "
423                     "______________Source IPv6/port_______________ "
424                     "_______________Dest. IPv6/port_______________ "
425                     "Tot_pkt/bytes Pkt/Byte Drp\n");
426 }
427
428 static void
429 list_flow(struct dn_flow *ni, int *print)
430 {
431         char buff[255];
432         struct protoent *pe = NULL;
433         struct in_addr ina;
434         struct ipfw_flow_id *id = &ni->fid;
435
436         if (*print) {
437                 print_header(&ni->fid);
438                 *print = 0;
439         }
440         pe = getprotobynumber(id->proto);
441                 /* XXX: Should check for IPv4 flows */
442         printf("%3u%c", (ni->oid.id) & 0xff,
443                 id->extra ? '*' : ' ');
444         if (!IS_IP6_FLOW_ID(id)) {
445                 if (pe)
446                         printf("%-4s ", pe->p_name);
447                 else
448                         printf("%4u ", id->proto);
449                 ina.s_addr = htonl(id->src_ip);
450                 printf("%15s/%-5d ",
451                     inet_ntoa(ina), id->src_port);
452                 ina.s_addr = htonl(id->dst_ip);
453                 printf("%15s/%-5d ",
454                     inet_ntoa(ina), id->dst_port);
455         } else {
456                 /* Print IPv6 flows */
457                 if (pe != NULL)
458                         printf("%9s ", pe->p_name);
459                 else
460                         printf("%9u ", id->proto);
461                 printf("%7d  %39s/%-5d ", id->flow_id6,
462                     inet_ntop(AF_INET6, &(id->src_ip6), buff, sizeof(buff)),
463                     id->src_port);
464                 printf(" %39s/%-5d ",
465                     inet_ntop(AF_INET6, &(id->dst_ip6), buff, sizeof(buff)),
466                     id->dst_port);
467         }
468         pr_u64(&ni->tot_pkts, 4);
469         pr_u64(&ni->tot_bytes, 8);
470         printf("%2u %4u %3u\n",
471             ni->length, ni->len_bytes, ni->drops);
472 }
473
474 static void
475 print_flowset_parms(struct dn_fs *fs, char *prefix)
476 {
477         int l;
478         char qs[30];
479         char plr[30];
480         char red[200];  /* Display RED parameters */
481
482         l = fs->qsize;
483         if (fs->flags & DN_QSIZE_BYTES) {
484                 if (l >= 8192)
485                         sprintf(qs, "%d KB", l / 1024);
486                 else
487                         sprintf(qs, "%d B", l);
488         } else
489                 sprintf(qs, "%3d sl.", l);
490         if (fs->plr)
491                 sprintf(plr, "plr %f", 1.0 * fs->plr / (double)(0x7fffffff));
492         else
493                 plr[0] = '\0';
494
495         if (fs->flags & DN_IS_RED) {    /* RED parameters */
496                 sprintf(red,
497                     "\n\t %cRED w_q %f min_th %d max_th %d max_p %f",
498                     (fs->flags & DN_IS_GENTLE_RED) ? 'G' : ' ',
499                     1.0 * fs->w_q / (double)(1 << SCALE_RED),
500                     fs->min_th,
501                     fs->max_th,
502                     1.0 * fs->max_p / (double)(1 << SCALE_RED));
503                 if (fs->flags & DN_IS_ECN)
504                         strncat(red, " (ecn)", 6);
505 #ifdef NEW_AQM
506         /* get AQM parameters */
507         } else if (fs->flags & DN_IS_AQM) {
508                         get_extra_parms(fs->fs_nr, red, DN_AQM_PARAMS);
509 #endif
510         } else
511                 sprintf(red, "droptail");
512
513         if (prefix[0]) {
514             printf("%s %s%s %d queues (%d buckets) %s\n",
515                 prefix, qs, plr, fs->oid.id, fs->buckets, red);
516             prefix[0] = '\0';
517         } else {
518             printf("q%05d %s%s %d flows (%d buckets) sched %d "
519                         "weight %d lmax %d pri %d %s\n",
520                 fs->fs_nr, qs, plr, fs->oid.id, fs->buckets,
521                 fs->sched_nr, fs->par[0], fs->par[1], fs->par[2], red);
522             if (fs->flags & DN_HAVE_MASK)
523                 print_mask(&fs->flow_mask);
524         }
525 }
526
527 static void
528 print_extra_delay_parms(struct dn_profile *p)
529 {
530         double loss;
531         if (p->samples_no <= 0)
532                 return;
533
534         loss = p->loss_level;
535         loss /= p->samples_no;
536         printf("\t profile: name \"%s\" loss %f samples %d\n",
537                 p->name, loss, p->samples_no);
538 }
539
540 static void
541 flush_buf(char *buf)
542 {
543         if (buf[0])
544                 printf("%s\n", buf);
545         buf[0] = '\0';
546 }
547
548 /*
549  * generic list routine. We expect objects in a specific order, i.e.
550  * PIPES AND SCHEDULERS:
551  *      link; scheduler; internal flowset if any; instances
552  * we can tell a pipe from the number.
553  *
554  * FLOWSETS:
555  *      flowset; queues;
556  * link i (int queue); scheduler i; si(i) { flowsets() : queues }
557  */
558 static void
559 list_pipes(struct dn_id *oid, struct dn_id *end)
560 {
561     char buf[160];      /* pending buffer */
562     int toPrint = 1;    /* print header */
563
564     buf[0] = '\0';
565     for (; oid != end; oid = O_NEXT(oid, oid->len)) {
566         if (oid->len < sizeof(*oid))
567                 errx(1, "invalid oid len %d\n", oid->len);
568
569         switch (oid->type) {
570         default:
571             flush_buf(buf);
572             printf("unrecognized object %d size %d\n", oid->type, oid->len);
573             break;
574         case DN_TEXT: /* list of attached flowsets */
575             {
576                 int i, l;
577                 struct {
578                         struct dn_id id;
579                         uint32_t p[0];
580                 } *d = (void *)oid;
581                 l = (oid->len - sizeof(*oid))/sizeof(d->p[0]);
582                 if (l == 0)
583                     break;
584                 printf("   Children flowsets: ");
585                 for (i = 0; i < l; i++)
586                         printf("%u ", d->p[i]);
587                 printf("\n");
588                 break;
589             }
590         case DN_CMD_GET:
591             if (co.verbose)
592                 printf("answer for cmd %d, len %d\n", oid->type, oid->id);
593             break;
594         case DN_SCH: {
595             struct dn_sch *s = (struct dn_sch *)oid;
596             flush_buf(buf);
597             printf(" sched %d type %s flags 0x%x %d buckets %d active\n",
598                         s->sched_nr,
599                         s->name, s->flags, s->buckets, s->oid.id);
600 #ifdef NEW_AQM
601                 char parms[200];
602                 get_extra_parms(s->sched_nr, parms, DN_SCH_PARAMS);
603                 printf("%s",parms);
604 #endif
605             if (s->flags & DN_HAVE_MASK)
606                 print_mask(&s->sched_mask);
607             }
608             break;
609
610         case DN_FLOW:
611             list_flow((struct dn_flow *)oid, &toPrint);
612             break;
613
614         case DN_LINK: {
615             struct dn_link *p = (struct dn_link *)oid;
616             double b = p->bandwidth;
617             char bwbuf[30];
618             char burst[5 + 7];
619
620             /* This starts a new object so flush buffer */
621             flush_buf(buf);
622             /* data rate */
623             if (b == 0)
624                 sprintf(bwbuf, "unlimited     ");
625             else if (b >= 1000000)
626                 sprintf(bwbuf, "%7.3f Mbit/s", b/1000000);
627             else if (b >= 1000)
628                 sprintf(bwbuf, "%7.3f Kbit/s", b/1000);
629             else
630                 sprintf(bwbuf, "%7.3f bit/s ", b);
631
632             if (humanize_number(burst, sizeof(burst), p->burst,
633                     "", HN_AUTOSCALE, 0) < 0 || co.verbose)
634                 sprintf(burst, "%d", (int)p->burst);
635             sprintf(buf, "%05d: %s %4d ms burst %s",
636                 p->link_nr % DN_MAX_ID, bwbuf, p->delay, burst);
637             }
638             break;
639
640         case DN_FS:
641             print_flowset_parms((struct dn_fs *)oid, buf);
642             break;
643         case DN_PROFILE:
644             flush_buf(buf);
645             print_extra_delay_parms((struct dn_profile *)oid);
646         }
647         flush_buf(buf); // XXX does it really go here ?
648     }
649 }
650
651 /*
652  * Delete pipe, queue or scheduler i
653  */
654 int
655 ipfw_delete_pipe(int do_pipe, int i)
656 {
657         struct {
658                 struct dn_id oid;
659                 uintptr_t a[1]; /* add more if we want a list */
660         } cmd;
661         oid_fill((void *)&cmd, sizeof(cmd), DN_CMD_DELETE, DN_API_VERSION);
662         cmd.oid.subtype = (do_pipe == 1) ? DN_LINK :
663                 ( (do_pipe == 2) ? DN_FS : DN_SCH);
664         cmd.a[0] = i;
665         i = do_cmd(IP_DUMMYNET3, &cmd, cmd.oid.len);
666         if (i) {
667                 i = 1;
668                 warn("rule %u: setsockopt(IP_DUMMYNET_DEL)", i);
669         }
670         return i;
671 }
672
673 /*
674  * Code to parse delay profiles.
675  *
676  * Some link types introduce extra delays in the transmission
677  * of a packet, e.g. because of MAC level framing, contention on
678  * the use of the channel, MAC level retransmissions and so on.
679  * From our point of view, the channel is effectively unavailable
680  * for this extra time, which is constant or variable depending
681  * on the link type. Additionally, packets may be dropped after this
682  * time (e.g. on a wireless link after too many retransmissions).
683  * We can model the additional delay with an empirical curve
684  * that represents its distribution.
685  *
686  *      cumulative probability
687  *      1.0 ^
688  *          |
689  *      L   +-- loss-level          x
690  *          |                 ******
691  *          |                *
692  *          |           *****
693  *          |          *
694  *          |        **
695  *          |       *
696  *          +-------*------------------->
697  *                      delay
698  *
699  * The empirical curve may have both vertical and horizontal lines.
700  * Vertical lines represent constant delay for a range of
701  * probabilities; horizontal lines correspond to a discontinuty
702  * in the delay distribution: the link will use the largest delay
703  * for a given probability.
704  *
705  * To pass the curve to dummynet, we must store the parameters
706  * in a file as described below, and issue the command
707  *
708  *      ipfw pipe <n> config ... bw XXX profile <filename> ...
709  *
710  * The file format is the following, with whitespace acting as
711  * a separator and '#' indicating the beginning a comment:
712  *
713  *      samples N
714  *              the number of samples used in the internal
715  *              representation (2..1024; default 100);
716  *
717  *      loss-level L
718  *              The probability above which packets are lost.
719  *             (0.0 <= L <= 1.0, default 1.0 i.e. no loss);
720  *
721  *      name identifier
722  *              Optional a name (listed by "ipfw pipe show")
723  *              to identify the distribution;
724  *
725  *      "delay prob" | "prob delay"
726  *              One of these two lines is mandatory and defines
727  *              the format of the following lines with data points.
728  *
729  *      XXX YYY
730  *              2 or more lines representing points in the curve,
731  *              with either delay or probability first, according
732  *              to the chosen format.
733  *              The unit for delay is milliseconds.
734  *
735  * Data points does not need to be ordered or equal to the number
736  * specified in the "samples" line. ipfw will sort and interpolate
737  * the curve as needed.
738  *
739  * Example of a profile file:
740
741         name    bla_bla_bla
742         samples 100
743         loss-level    0.86
744         prob    delay
745         0       200     # minimum overhead is 200ms
746         0.5     200
747         0.5     300
748         0.8     1000
749         0.9     1300
750         1       1300
751
752  * Internally, we will convert the curve to a fixed number of
753  * samples, and when it is time to transmit a packet we will
754  * model the extra delay as extra bits in the packet.
755  *
756  */
757
758 #define ED_MAX_LINE_LEN 256+ED_MAX_NAME_LEN
759 #define ED_TOK_SAMPLES  "samples"
760 #define ED_TOK_LOSS     "loss-level"
761 #define ED_TOK_NAME     "name"
762 #define ED_TOK_DELAY    "delay"
763 #define ED_TOK_PROB     "prob"
764 #define ED_TOK_BW       "bw"
765 #define ED_SEPARATORS   " \t\n"
766 #define ED_MIN_SAMPLES_NO       2
767
768 /*
769  * returns 1 if s is a non-negative number, with at least one '.'
770  */
771 static int
772 is_valid_number(const char *s)
773 {
774         int i, dots_found = 0;
775         int len = strlen(s);
776
777         for (i = 0; i<len; ++i)
778                 if (!isdigit(s[i]) && (s[i] !='.' || ++dots_found > 1))
779                         return 0;
780         return 1;
781 }
782
783 /*
784  * Take as input a string describing a bandwidth value
785  * and return the numeric bandwidth value.
786  * set clocking interface or bandwidth value
787  */
788 static void
789 read_bandwidth(char *arg, int *bandwidth, char *if_name, int namelen)
790 {
791         if (*bandwidth != -1)
792                 warnx("duplicate token, override bandwidth value!");
793
794         if (arg[0] >= 'a' && arg[0] <= 'z') {
795                 if (!if_name) {
796                         errx(1, "no if support");
797                 }
798                 if (namelen >= IFNAMSIZ)
799                         warn("interface name truncated");
800                 namelen--;
801                 /* interface name */
802                 strncpy(if_name, arg, namelen);
803                 if_name[namelen] = '\0';
804                 *bandwidth = 0;
805         } else {        /* read bandwidth value */
806                 int bw;
807                 char *end = NULL;
808
809                 bw = strtoul(arg, &end, 0);
810                 if (*end == 'K' || *end == 'k') {
811                         end++;
812                         bw *= 1000;
813                 } else if (*end == 'M' || *end == 'm') {
814                         end++;
815                         bw *= 1000000;
816                 }
817                 if ((*end == 'B' &&
818                         _substrcmp2(end, "Bi", "Bit/s") != 0) ||
819                     _substrcmp2(end, "by", "bytes") == 0)
820                         bw *= 8;
821
822                 if (bw < 0)
823                         errx(EX_DATAERR, "bandwidth too large");
824
825                 *bandwidth = bw;
826                 if (if_name)
827                         if_name[0] = '\0';
828         }
829 }
830
831 struct point {
832         double prob;
833         double delay;
834 };
835
836 static int
837 compare_points(const void *vp1, const void *vp2)
838 {
839         const struct point *p1 = vp1;
840         const struct point *p2 = vp2;
841         double res = 0;
842
843         res = p1->prob - p2->prob;
844         if (res == 0)
845                 res = p1->delay - p2->delay;
846         if (res < 0)
847                 return -1;
848         else if (res > 0)
849                 return 1;
850         else
851                 return 0;
852 }
853
854 #define ED_EFMT(s) EX_DATAERR,"error in %s at line %d: "#s,filename,lineno
855
856 static void
857 load_extra_delays(const char *filename, struct dn_profile *p,
858         struct dn_link *link)
859 {
860         char    line[ED_MAX_LINE_LEN];
861         FILE    *f;
862         int     lineno = 0;
863         int     i;
864
865         int     samples = -1;
866         double  loss = -1.0;
867         char    profile_name[ED_MAX_NAME_LEN];
868         int     delay_first = -1;
869         int     do_points = 0;
870         struct point    points[ED_MAX_SAMPLES_NO];
871         int     points_no = 0;
872
873         /* XXX link never NULL? */
874         p->link_nr = link->link_nr;
875
876         profile_name[0] = '\0';
877         f = fopen(filename, "r");
878         if (f == NULL)
879                 err(EX_UNAVAILABLE, "fopen: %s", filename);
880
881         while (fgets(line, ED_MAX_LINE_LEN, f)) {        /* read commands */
882                 char *s, *cur = line, *name = NULL, *arg = NULL;
883
884                 ++lineno;
885
886                 /* parse the line */
887                 while (cur) {
888                         s = strsep(&cur, ED_SEPARATORS);
889                         if (s == NULL || *s == '#')
890                                 break;
891                         if (*s == '\0')
892                                 continue;
893                         if (arg)
894                                 errx(ED_EFMT("too many arguments"));
895                         if (name == NULL)
896                                 name = s;
897                         else
898                                 arg = s;
899                 }
900                 if (name == NULL)       /* empty line */
901                         continue;
902                 if (arg == NULL)
903                         errx(ED_EFMT("missing arg for %s"), name);
904
905                 if (!strcasecmp(name, ED_TOK_SAMPLES)) {
906                     if (samples > 0)
907                         errx(ED_EFMT("duplicate ``samples'' line"));
908                     if (atoi(arg) <=0)
909                         errx(ED_EFMT("invalid number of samples"));
910                     samples = atoi(arg);
911                     if (samples>ED_MAX_SAMPLES_NO)
912                             errx(ED_EFMT("too many samples, maximum is %d"),
913                                 ED_MAX_SAMPLES_NO);
914                     do_points = 0;
915                 } else if (!strcasecmp(name, ED_TOK_BW)) {
916                     char buf[IFNAMSIZ];
917                     read_bandwidth(arg, &link->bandwidth, buf, sizeof(buf));
918                 } else if (!strcasecmp(name, ED_TOK_LOSS)) {
919                     if (loss != -1.0)
920                         errx(ED_EFMT("duplicated token: %s"), name);
921                     if (!is_valid_number(arg))
922                         errx(ED_EFMT("invalid %s"), arg);
923                     loss = atof(arg);
924                     if (loss > 1)
925                         errx(ED_EFMT("%s greater than 1.0"), name);
926                     do_points = 0;
927                 } else if (!strcasecmp(name, ED_TOK_NAME)) {
928                     if (profile_name[0] != '\0')
929                         errx(ED_EFMT("duplicated token: %s"), name);
930                     strncpy(profile_name, arg, sizeof(profile_name) - 1);
931                     profile_name[sizeof(profile_name)-1] = '\0';
932                     do_points = 0;
933                 } else if (!strcasecmp(name, ED_TOK_DELAY)) {
934                     if (do_points)
935                         errx(ED_EFMT("duplicated token: %s"), name);
936                     delay_first = 1;
937                     do_points = 1;
938                 } else if (!strcasecmp(name, ED_TOK_PROB)) {
939                     if (do_points)
940                         errx(ED_EFMT("duplicated token: %s"), name);
941                     delay_first = 0;
942                     do_points = 1;
943                 } else if (do_points) {
944                     if (!is_valid_number(name) || !is_valid_number(arg))
945                         errx(ED_EFMT("invalid point found"));
946                     if (delay_first) {
947                         points[points_no].delay = atof(name);
948                         points[points_no].prob = atof(arg);
949                     } else {
950                         points[points_no].delay = atof(arg);
951                         points[points_no].prob = atof(name);
952                     }
953                     if (points[points_no].prob > 1.0)
954                         errx(ED_EFMT("probability greater than 1.0"));
955                     ++points_no;
956                 } else {
957                     errx(ED_EFMT("unrecognised command '%s'"), name);
958                 }
959         }
960
961         fclose (f);
962
963         if (samples == -1) {
964             warnx("'%s' not found, assuming 100", ED_TOK_SAMPLES);
965             samples = 100;
966         }
967
968         if (loss == -1.0) {
969             warnx("'%s' not found, assuming no loss", ED_TOK_LOSS);
970             loss = 1;
971         }
972
973         /* make sure that there are enough points. */
974         if (points_no < ED_MIN_SAMPLES_NO)
975             errx(ED_EFMT("too few samples, need at least %d"),
976                 ED_MIN_SAMPLES_NO);
977
978         qsort(points, points_no, sizeof(struct point), compare_points);
979
980         /* interpolation */
981         for (i = 0; i<points_no-1; ++i) {
982             double y1 = points[i].prob * samples;
983             double x1 = points[i].delay;
984             double y2 = points[i+1].prob * samples;
985             double x2 = points[i+1].delay;
986
987             int ix = y1;
988             int stop = y2;
989
990             if (x1 == x2) {
991                 for (; ix<stop; ++ix)
992                     p->samples[ix] = x1;
993             } else {
994                 double m = (y2-y1)/(x2-x1);
995                 double c = y1 - m*x1;
996                 for (; ix<stop ; ++ix)
997                     p->samples[ix] = (ix - c)/m;
998             }
999         }
1000         p->samples_no = samples;
1001         p->loss_level = loss * samples;
1002         strncpy(p->name, profile_name, sizeof(p->name));
1003 }
1004
1005 #ifdef NEW_AQM
1006
1007 /* Parse AQM/extra scheduler parameters */
1008 static int 
1009 process_extra_parms(int *ac, char **av, struct dn_extra_parms *ep,
1010         uint16_t type)
1011 {
1012         int i;
1013         
1014         /* use kernel defaults */
1015         for (i=0; i<DN_MAX_EXTRA_PARM; i++)
1016                 ep->par[i] = -1;
1017                 
1018         switch(type) {
1019         case TOK_CODEL:
1020         case TOK_FQ_CODEL:
1021         /* Codel
1022          * 0- target, 1- interval, 2- flags,
1023          * FQ_CODEL
1024          * 3- quantum, 4- limit, 5- flows
1025          */
1026                 if (type==TOK_CODEL)
1027                         ep->par[2] = 0;
1028                 else
1029                         ep->par[2] = CODEL_ECN_ENABLED;
1030
1031                 while (*ac > 0) {
1032                         int tok = match_token(aqm_params, *av);
1033                         (*ac)--; av++;
1034                         switch(tok) {
1035                         case TOK_TARGET:
1036                                 if (*ac <= 0 || time_to_us(av[0]) < 0)
1037                                         errx(EX_DATAERR, "target needs time\n");
1038
1039                                 ep->par[0] = time_to_us(av[0]);
1040                                 (*ac)--; av++;
1041                                 break;
1042
1043                         case TOK_INTERVAL:
1044                                 if (*ac <= 0 || time_to_us(av[0]) < 0)
1045                                         errx(EX_DATAERR, "interval needs time\n");
1046
1047                                 ep->par[1] = time_to_us(av[0]);
1048                                 (*ac)--; av++;
1049                                 break;
1050
1051                         case TOK_ECN:
1052                                 ep->par[2] = CODEL_ECN_ENABLED;
1053                                 break;
1054                         case TOK_NO_ECN:
1055                                 ep->par[2] &= ~CODEL_ECN_ENABLED;
1056                                 break;
1057                         /* Config fq_codel parameters */
1058                         case TOK_QUANTUM:
1059                                 if (type != TOK_FQ_CODEL)
1060                                         errx(EX_DATAERR, "quantum is not for codel\n");
1061                                 if (*ac <= 0 || !is_valid_number(av[0]))
1062                                         errx(EX_DATAERR, "quantum needs number\n");
1063
1064                                 ep->par[3]= atoi(av[0]);
1065                                 (*ac)--; av++;
1066                                 break;
1067
1068                         case TOK_LIMIT:
1069                                 if (type != TOK_FQ_CODEL)
1070                                         errx(EX_DATAERR, "limit is not for codel, use queue instead\n");
1071                                 if (*ac <= 0 || !is_valid_number(av[0]))
1072                                         errx(EX_DATAERR, "limit needs number\n");
1073
1074                                 ep->par[4] = atoi(av[0]);
1075                                 (*ac)--; av++;
1076                                 break;
1077
1078                         case TOK_FLOWS:
1079                                 if (type != TOK_FQ_CODEL)
1080                                         errx(EX_DATAERR, "flows is not for codel\n");
1081                                 if (*ac <= 0 || !is_valid_number(av[0]))
1082                                         errx(EX_DATAERR, "flows needs number\n");
1083
1084                                 ep->par[5] = atoi(av[0]);
1085                                 (*ac)--; av++;
1086                                 break;
1087
1088                         default:
1089                                 printf("%s is Invalid parameter\n", av[-1]);
1090                         }
1091                 }
1092                 break;
1093         case TOK_PIE:
1094         case TOK_FQ_PIE:
1095                 /* PIE
1096                  * 0- target , 1- tupdate, 2- max_burst,
1097                  * 3- max_ecnth, 4- alpha,
1098                  * 5- beta, 6- flags
1099                  * FQ_CODEL
1100                  * 7- quantum, 8- limit, 9- flows
1101                  */
1102
1103                 if ( type == TOK_PIE)
1104                         ep->par[6] = PIE_CAPDROP_ENABLED | PIE_DEPRATEEST_ENABLED
1105                                 | PIE_DERAND_ENABLED;
1106                 else
1107                         /* for FQ-PIE, use TS mode */
1108                         ep->par[6] = PIE_CAPDROP_ENABLED |  PIE_DERAND_ENABLED
1109                                 | PIE_ECN_ENABLED;
1110
1111                 while (*ac > 0) {
1112                         int tok = match_token(aqm_params, *av);
1113                         (*ac)--; av++;
1114                         switch(tok) {
1115                         case TOK_TARGET:
1116                                 if (*ac <= 0 || time_to_us(av[0]) < 0)
1117                                         errx(EX_DATAERR, "target needs time\n");
1118                                         
1119                                 ep->par[0] = time_to_us(av[0]);
1120                                 (*ac)--; av++;
1121                                 break;
1122                                 
1123                         case TOK_TUPDATE:
1124                                 if (*ac <= 0 || time_to_us(av[0]) < 0)
1125                                         errx(EX_DATAERR, "tupdate needs time\n");
1126                                         
1127                                 ep->par[1] = time_to_us(av[0]);
1128                                 (*ac)--; av++;
1129                                 break;
1130                                 
1131                         case TOK_MAX_BURST:
1132                                 if (*ac <= 0 || time_to_us(av[0]) < 0)
1133                                         errx(EX_DATAERR, "max_burst needs time\n");
1134                                         
1135                                 ep->par[2] = time_to_us(av[0]);
1136                                 (*ac)--; av++;
1137                                 break;
1138                                 
1139                         case TOK_MAX_ECNTH:
1140                                 if (*ac <= 0 || !is_valid_number(av[0]))
1141                                         errx(EX_DATAERR, "max_ecnth needs number\n");
1142                                         
1143                                 ep->par[3] = atof(av[0]) * PIE_SCALE;
1144                                 (*ac)--; av++;
1145                                 break;
1146
1147                         case TOK_ALPHA:
1148                                 if (*ac <= 0 || !is_valid_number(av[0]))
1149                                         errx(EX_DATAERR, "alpha needs number\n");
1150                                         
1151                                 ep->par[4] = atof(av[0]) * PIE_SCALE;
1152                                 (*ac)--; av++;
1153                                 break;
1154
1155                         case TOK_BETA:
1156                                 if (*ac <= 0 || !is_valid_number(av[0]))
1157                                         errx(EX_DATAERR, "beta needs number\n");
1158                                         
1159                                 ep->par[5] = atof(av[0]) * PIE_SCALE;
1160                                 (*ac)--; av++;
1161                                 break;
1162
1163                         case TOK_ECN:
1164                                 ep->par[6] |= PIE_ECN_ENABLED;
1165                                 break;
1166                         case TOK_NO_ECN:
1167                                 ep->par[6] &= ~PIE_ECN_ENABLED;
1168                                 break;
1169
1170                         case TOK_CAPDROP:
1171                                 ep->par[6] |= PIE_CAPDROP_ENABLED;
1172                                 break;
1173                         case TOK_NO_CAPDROP:
1174                                 ep->par[6] &= ~PIE_CAPDROP_ENABLED;
1175                                 break;
1176
1177                         case TOK_ONOFF:
1178                                 ep->par[6] |= PIE_ON_OFF_MODE_ENABLED;
1179                                 break;
1180                                 
1181                         case TOK_DRE:
1182                                 ep->par[6] |= PIE_DEPRATEEST_ENABLED;
1183                                 break;
1184
1185                         case TOK_TS:
1186                                 ep->par[6] &= ~PIE_DEPRATEEST_ENABLED;
1187                                 break;
1188
1189                         case TOK_DERAND:
1190                                 ep->par[6] |= PIE_DERAND_ENABLED;
1191                                 break;
1192                         case TOK_NO_DERAND:
1193                                 ep->par[6] &= ~PIE_DERAND_ENABLED;
1194                                 break;
1195
1196                         /* Config fq_pie parameters */
1197                         case TOK_QUANTUM:
1198                                 if (type != TOK_FQ_PIE)
1199                                         errx(EX_DATAERR, "quantum is not for pie\n");
1200                                 if (*ac <= 0 || !is_valid_number(av[0]))
1201                                         errx(EX_DATAERR, "quantum needs number\n");
1202
1203                                 ep->par[7]= atoi(av[0]);
1204                                 (*ac)--; av++;
1205                                 break;
1206
1207                         case TOK_LIMIT:
1208                                 if (type != TOK_FQ_PIE)
1209                                         errx(EX_DATAERR, "limit is not for pie, use queue instead\n");
1210                                 if (*ac <= 0 || !is_valid_number(av[0]))
1211                                         errx(EX_DATAERR, "limit needs number\n");
1212
1213                                 ep->par[8] = atoi(av[0]);
1214                                 (*ac)--; av++;
1215                                 break;
1216
1217                         case TOK_FLOWS:
1218                                 if (type != TOK_FQ_PIE)
1219                                         errx(EX_DATAERR, "flows is not for pie\n");
1220                                 if (*ac <= 0 || !is_valid_number(av[0]))
1221                                         errx(EX_DATAERR, "flows needs number\n");
1222
1223                                 ep->par[9] = atoi(av[0]);
1224                                 (*ac)--; av++;
1225                                 break;
1226
1227
1228                         default:
1229                                 printf("%s is invalid parameter\n", av[-1]);
1230                         }
1231                 }
1232                 break;
1233         }
1234
1235         return 0;
1236 }
1237
1238 #endif
1239
1240
1241 /*
1242  * configuration of pipes, schedulers, flowsets.
1243  * When we configure a new scheduler, an empty pipe is created, so:
1244  *
1245  * do_pipe = 1 -> "pipe N config ..." only for backward compatibility
1246  *      sched N+Delta type fifo sched_mask ...
1247  *      pipe N+Delta <parameters>
1248  *      flowset N+Delta pipe N+Delta (no parameters)
1249  *      sched N type wf2q+ sched_mask ...
1250  *      pipe N <parameters>
1251  *
1252  * do_pipe = 2 -> flowset N config
1253  *      flowset N parameters
1254  *
1255  * do_pipe = 3 -> sched N config
1256  *      sched N parameters (default no pipe)
1257  *      optional Pipe N config ...
1258  * pipe ==>
1259  */
1260 void
1261 ipfw_config_pipe(int ac, char **av)
1262 {
1263         int i;
1264         u_int j;
1265         char *end;
1266         struct dn_id *buf, *base;
1267         struct dn_sch *sch = NULL;
1268         struct dn_link *p = NULL;
1269         struct dn_fs *fs = NULL;
1270         struct dn_profile *pf = NULL;
1271         struct ipfw_flow_id *mask = NULL;
1272 #ifdef NEW_AQM
1273         struct dn_extra_parms *aqm_extra;
1274         struct dn_extra_parms *sch_extra;
1275         int lmax_extra;
1276 #endif
1277         
1278         int lmax;
1279         uint32_t _foo = 0, *flags = &_foo , *buckets = &_foo;
1280
1281         /*
1282          * allocate space for 1 header,
1283          * 1 scheduler, 1 link, 1 flowset, 1 profile
1284          */
1285         lmax = sizeof(struct dn_id);    /* command header */
1286         lmax += sizeof(struct dn_sch) + sizeof(struct dn_link) +
1287                 sizeof(struct dn_fs) + sizeof(struct dn_profile);
1288
1289 #ifdef NEW_AQM
1290         /* Extra Params */
1291         lmax_extra = sizeof(struct dn_extra_parms);
1292         /* two lmax_extra because one for AQM params and another
1293          * sch params 
1294          */
1295         lmax += lmax_extra*2; 
1296 #endif
1297
1298         av++; ac--;
1299         /* Pipe number */
1300         if (ac && isdigit(**av)) {
1301                 i = atoi(*av); av++; ac--;
1302         } else
1303                 i = -1;
1304         if (i <= 0)
1305                 errx(EX_USAGE, "need a pipe/flowset/sched number");
1306         base = buf = safe_calloc(1, lmax);
1307         /* all commands start with a 'CONFIGURE' and a version */
1308         o_next(&buf, sizeof(struct dn_id), DN_CMD_CONFIG);
1309         base->id = DN_API_VERSION;
1310
1311         switch (co.do_pipe) {
1312         case 1: /* "pipe N config ..." */
1313                 /* Allocate space for the WF2Q+ scheduler, its link
1314                  * and the FIFO flowset. Set the number, but leave
1315                  * the scheduler subtype and other parameters to 0
1316                  * so the kernel will use appropriate defaults.
1317                  * XXX todo: add a flag to record if a parameter
1318                  * is actually configured.
1319                  * If we do a 'pipe config' mask -> sched_mask.
1320                  * The FIFO scheduler and link are derived from the
1321                  * WF2Q+ one in the kernel.
1322                  */
1323 #ifdef NEW_AQM
1324                 sch_extra = o_next(&buf, lmax_extra, DN_TEXT);
1325                 sch_extra ->oid.subtype = 0; /* don't configure scheduler */
1326 #endif
1327                 sch = o_next(&buf, sizeof(*sch), DN_SCH);
1328                 p = o_next(&buf, sizeof(*p), DN_LINK);
1329 #ifdef NEW_AQM
1330                 aqm_extra = o_next(&buf, lmax_extra, DN_TEXT);
1331                 aqm_extra ->oid.subtype = 0; /* don't configure AQM */
1332 #endif
1333                 fs = o_next(&buf, sizeof(*fs), DN_FS);
1334
1335                 sch->sched_nr = i;
1336                 sch->oid.subtype = 0;   /* defaults to WF2Q+ */
1337                 mask = &sch->sched_mask;
1338                 flags = &sch->flags;
1339                 buckets = &sch->buckets;
1340                 *flags |= DN_PIPE_CMD;
1341
1342                 p->link_nr = i;
1343
1344                 /* This flowset is only for the FIFO scheduler */
1345                 fs->fs_nr = i + 2*DN_MAX_ID;
1346                 fs->sched_nr = i + DN_MAX_ID;
1347                 break;
1348
1349         case 2: /* "queue N config ... " */
1350 #ifdef NEW_AQM
1351                 aqm_extra = o_next(&buf, lmax_extra, DN_TEXT);
1352                 aqm_extra ->oid.subtype = 0; 
1353 #endif
1354                 fs = o_next(&buf, sizeof(*fs), DN_FS);
1355                 fs->fs_nr = i;
1356                 mask = &fs->flow_mask;
1357                 flags = &fs->flags;
1358                 buckets = &fs->buckets;
1359                 break;
1360
1361         case 3: /* "sched N config ..." */
1362 #ifdef NEW_AQM
1363                 sch_extra = o_next(&buf, lmax_extra, DN_TEXT);
1364                 sch_extra ->oid.subtype = 0; 
1365 #endif
1366                 sch = o_next(&buf, sizeof(*sch), DN_SCH);
1367 #ifdef NEW_AQM
1368                 aqm_extra = o_next(&buf, lmax_extra, DN_TEXT);
1369                 aqm_extra ->oid.subtype = 0;
1370 #endif
1371                 fs = o_next(&buf, sizeof(*fs), DN_FS);
1372                 sch->sched_nr = i;
1373                 mask = &sch->sched_mask;
1374                 flags = &sch->flags;
1375                 buckets = &sch->buckets;
1376                 /* fs is used only with !MULTIQUEUE schedulers */
1377                 fs->fs_nr = i + DN_MAX_ID;
1378                 fs->sched_nr = i;
1379                 break;
1380         }
1381         /* set to -1 those fields for which we want to reuse existing
1382          * values from the kernel.
1383          * Also, *_nr and subtype = 0 mean reuse the value from the kernel.
1384          * XXX todo: support reuse of the mask.
1385          */
1386         if (p)
1387                 p->bandwidth = -1;
1388         for (j = 0; j < sizeof(fs->par)/sizeof(fs->par[0]); j++)
1389                 fs->par[j] = -1;
1390         while (ac > 0) {
1391                 double d;
1392                 int tok = match_token(dummynet_params, *av);
1393                 ac--; av++;
1394
1395                 switch(tok) {
1396                 case TOK_NOERROR:
1397                         NEED(fs, "noerror is only for pipes");
1398                         fs->flags |= DN_NOERROR;
1399                         break;
1400
1401                 case TOK_PLR:
1402                         NEED(fs, "plr is only for pipes");
1403                         NEED1("plr needs argument 0..1\n");
1404                         d = strtod(av[0], NULL);
1405                         if (d > 1)
1406                                 d = 1;
1407                         else if (d < 0)
1408                                 d = 0;
1409                         fs->plr = (int)(d*0x7fffffff);
1410                         ac--; av++;
1411                         break;
1412
1413                 case TOK_QUEUE:
1414                         NEED(fs, "queue is only for pipes or flowsets");
1415                         NEED1("queue needs queue size\n");
1416                         end = NULL;
1417                         fs->qsize = strtoul(av[0], &end, 0);
1418                         if (*end == 'K' || *end == 'k') {
1419                                 fs->flags |= DN_QSIZE_BYTES;
1420                                 fs->qsize *= 1024;
1421                         } else if (*end == 'B' ||
1422                             _substrcmp2(end, "by", "bytes") == 0) {
1423                                 fs->flags |= DN_QSIZE_BYTES;
1424                         }
1425                         ac--; av++;
1426                         break;
1427
1428                 case TOK_BUCKETS:
1429                         NEED(fs, "buckets is only for pipes or flowsets");
1430                         NEED1("buckets needs argument\n");
1431                         *buckets = strtoul(av[0], NULL, 0);
1432                         ac--; av++;
1433                         break;
1434
1435                 case TOK_FLOW_MASK:
1436                 case TOK_SCHED_MASK:
1437                 case TOK_MASK:
1438                         NEED(mask, "tok_mask");
1439                         NEED1("mask needs mask specifier\n");
1440                         /*
1441                          * per-flow queue, mask is dst_ip, dst_port,
1442                          * src_ip, src_port, proto measured in bits
1443                          */
1444
1445                         bzero(mask, sizeof(*mask));
1446                         end = NULL;
1447
1448                         while (ac >= 1) {
1449                             uint32_t *p32 = NULL;
1450                             uint16_t *p16 = NULL;
1451                             uint32_t *p20 = NULL;
1452                             struct in6_addr *pa6 = NULL;
1453                             uint32_t a;
1454
1455                             tok = match_token(dummynet_params, *av);
1456                             ac--; av++;
1457                             switch(tok) {
1458                             case TOK_ALL:
1459                                     /*
1460                                      * special case, all bits significant
1461                                      * except 'extra' (the queue number)
1462                                      */
1463                                     mask->dst_ip = ~0;
1464                                     mask->src_ip = ~0;
1465                                     mask->dst_port = ~0;
1466                                     mask->src_port = ~0;
1467                                     mask->proto = ~0;
1468                                     n2mask(&mask->dst_ip6, 128);
1469                                     n2mask(&mask->src_ip6, 128);
1470                                     mask->flow_id6 = ~0;
1471                                     *flags |= DN_HAVE_MASK;
1472                                     goto end_mask;
1473
1474                             case TOK_QUEUE:
1475                                     mask->extra = ~0;
1476                                     *flags |= DN_HAVE_MASK;
1477                                     goto end_mask;
1478
1479                             case TOK_DSTIP:
1480                                     mask->addr_type = 4;
1481                                     p32 = &mask->dst_ip;
1482                                     break;
1483
1484                             case TOK_SRCIP:
1485                                     mask->addr_type = 4;
1486                                     p32 = &mask->src_ip;
1487                                     break;
1488
1489                             case TOK_DSTIP6:
1490                                     mask->addr_type = 6;
1491                                     pa6 = &mask->dst_ip6;
1492                                     break;
1493
1494                             case TOK_SRCIP6:
1495                                     mask->addr_type = 6;
1496                                     pa6 = &mask->src_ip6;
1497                                     break;
1498
1499                             case TOK_FLOWID:
1500                                     mask->addr_type = 6;
1501                                     p20 = &mask->flow_id6;
1502                                     break;
1503
1504                             case TOK_DSTPORT:
1505                                     p16 = &mask->dst_port;
1506                                     break;
1507
1508                             case TOK_SRCPORT:
1509                                     p16 = &mask->src_port;
1510                                     break;
1511
1512                             case TOK_PROTO:
1513                                     break;
1514
1515                             default:
1516                                     ac++; av--; /* backtrack */
1517                                     goto end_mask;
1518                             }
1519                             if (ac < 1)
1520                                     errx(EX_USAGE, "mask: value missing");
1521                             if (*av[0] == '/') {
1522                                     a = strtoul(av[0]+1, &end, 0);
1523                                     if (pa6 == NULL)
1524                                             a = (a == 32) ? ~0 : (1 << a) - 1;
1525                             } else
1526                                     a = strtoul(av[0], &end, 0);
1527                             if (p32 != NULL)
1528                                     *p32 = a;
1529                             else if (p16 != NULL) {
1530                                     if (a > 0xFFFF)
1531                                             errx(EX_DATAERR,
1532                                                 "port mask must be 16 bit");
1533                                     *p16 = (uint16_t)a;
1534                             } else if (p20 != NULL) {
1535                                     if (a > 0xfffff)
1536                                         errx(EX_DATAERR,
1537                                             "flow_id mask must be 20 bit");
1538                                     *p20 = (uint32_t)a;
1539                             } else if (pa6 != NULL) {
1540                                     if (a > 128)
1541                                         errx(EX_DATAERR,
1542                                             "in6addr invalid mask len");
1543                                     else
1544                                         n2mask(pa6, a);
1545                             } else {
1546                                     if (a > 0xFF)
1547                                             errx(EX_DATAERR,
1548                                                 "proto mask must be 8 bit");
1549                                     mask->proto = (uint8_t)a;
1550                             }
1551                             if (a != 0)
1552                                     *flags |= DN_HAVE_MASK;
1553                             ac--; av++;
1554                         } /* end while, config masks */
1555 end_mask:
1556                         break;
1557 #ifdef NEW_AQM
1558                 case TOK_CODEL:
1559                 case TOK_PIE:
1560                         NEED(fs, "codel/pie is only for flowsets");
1561
1562                         fs->flags &= ~(DN_IS_RED|DN_IS_GENTLE_RED);
1563                         fs->flags |= DN_IS_AQM;
1564
1565                         strcpy(aqm_extra->name,av[-1]);
1566                         aqm_extra->oid.subtype = DN_AQM_PARAMS;
1567
1568                         process_extra_parms(&ac, av, aqm_extra, tok);
1569                         break;
1570
1571                 case TOK_FQ_CODEL:
1572                 case TOK_FQ_PIE:
1573                         if (!strcmp(av[-1],"type"))
1574                                 errx(EX_DATAERR, "use type before fq_codel/fq_pie");
1575
1576                         NEED(sch, "fq_codel/fq_pie is only for schd");
1577                         strcpy(sch_extra->name,av[-1]);
1578                         sch_extra->oid.subtype = DN_SCH_PARAMS;
1579                         process_extra_parms(&ac, av, sch_extra, tok);
1580                         break;
1581 #endif
1582                 case TOK_RED:
1583                 case TOK_GRED:
1584                         NEED1("red/gred needs w_q/min_th/max_th/max_p\n");
1585                         fs->flags |= DN_IS_RED;
1586                         if (tok == TOK_GRED)
1587                                 fs->flags |= DN_IS_GENTLE_RED;
1588                         /*
1589                          * the format for parameters is w_q/min_th/max_th/max_p
1590                          */
1591                         if ((end = strsep(&av[0], "/"))) {
1592                             double w_q = strtod(end, NULL);
1593                             if (w_q > 1 || w_q <= 0)
1594                                 errx(EX_DATAERR, "0 < w_q <= 1");
1595                             fs->w_q = (int) (w_q * (1 << SCALE_RED));
1596                         }
1597                         if ((end = strsep(&av[0], "/"))) {
1598                             fs->min_th = strtoul(end, &end, 0);
1599                             if (*end == 'K' || *end == 'k')
1600                                 fs->min_th *= 1024;
1601                         }
1602                         if ((end = strsep(&av[0], "/"))) {
1603                             fs->max_th = strtoul(end, &end, 0);
1604                             if (*end == 'K' || *end == 'k')
1605                                 fs->max_th *= 1024;
1606                         }
1607                         if ((end = strsep(&av[0], "/"))) {
1608                             double max_p = strtod(end, NULL);
1609                             if (max_p > 1 || max_p < 0)
1610                                 errx(EX_DATAERR, "0 <= max_p <= 1");
1611                             fs->max_p = (int)(max_p * (1 << SCALE_RED));
1612                         }
1613                         ac--; av++;
1614                         break;
1615
1616                 case TOK_ECN:
1617                         fs->flags |= DN_IS_ECN;
1618                         break;
1619
1620                 case TOK_DROPTAIL:
1621                         NEED(fs, "droptail is only for flowsets");
1622                         fs->flags &= ~(DN_IS_RED|DN_IS_GENTLE_RED);
1623                         break;
1624
1625                 case TOK_BW:
1626                         NEED(p, "bw is only for links");
1627                         NEED1("bw needs bandwidth or interface\n");
1628                         read_bandwidth(av[0], &p->bandwidth, NULL, 0);
1629                         ac--; av++;
1630                         break;
1631
1632                 case TOK_DELAY:
1633                         NEED(p, "delay is only for links");
1634                         NEED1("delay needs argument 0..10000ms\n");
1635                         p->delay = strtoul(av[0], NULL, 0);
1636                         ac--; av++;
1637                         break;
1638
1639                 case TOK_TYPE: {
1640                         int l;
1641                         NEED(sch, "type is only for schedulers");
1642                         NEED1("type needs a string");
1643                         l = strlen(av[0]);
1644                         if (l == 0 || l > 15)
1645                                 errx(1, "type %s too long\n", av[0]);
1646                         strcpy(sch->name, av[0]);
1647                         sch->oid.subtype = 0; /* use string */
1648 #ifdef NEW_AQM
1649                         /* if fq_codel is selected, consider all tokens after it
1650                          * as parameters
1651                          */
1652                         if (!strcasecmp(av[0],"fq_codel") || !strcasecmp(av[0],"fq_pie")){
1653                                 strcpy(sch_extra->name,av[0]);
1654                                 sch_extra->oid.subtype = DN_SCH_PARAMS;
1655                                 process_extra_parms(&ac, av, sch_extra, tok);
1656                         } else {
1657                                 ac--;av++;
1658                         }
1659 #else
1660                         ac--;av++;
1661 #endif
1662                         break;
1663                     }
1664
1665                 case TOK_WEIGHT:
1666                         NEED(fs, "weight is only for flowsets");
1667                         NEED1("weight needs argument\n");
1668                         fs->par[0] = strtol(av[0], &end, 0);
1669                         ac--; av++;
1670                         break;
1671
1672                 case TOK_LMAX:
1673                         NEED(fs, "lmax is only for flowsets");
1674                         NEED1("lmax needs argument\n");
1675                         fs->par[1] = strtol(av[0], &end, 0);
1676                         ac--; av++;
1677                         break;
1678
1679                 case TOK_PRI:
1680                         NEED(fs, "priority is only for flowsets");
1681                         NEED1("priority needs argument\n");
1682                         fs->par[2] = strtol(av[0], &end, 0);
1683                         ac--; av++;
1684                         break;
1685
1686                 case TOK_SCHED:
1687                 case TOK_PIPE:
1688                         NEED(fs, "pipe/sched");
1689                         NEED1("pipe/link/sched needs number\n");
1690                         fs->sched_nr = strtoul(av[0], &end, 0);
1691                         ac--; av++;
1692                         break;
1693
1694                 case TOK_PROFILE:
1695                         NEED((!pf), "profile already set");
1696                         NEED(p, "profile");
1697                     {
1698                         NEED1("extra delay needs the file name\n");
1699                         pf = o_next(&buf, sizeof(*pf), DN_PROFILE);
1700                         load_extra_delays(av[0], pf, p); //XXX can't fail?
1701                         --ac; ++av;
1702                     }
1703                         break;
1704
1705                 case TOK_BURST:
1706                         NEED(p, "burst");
1707                         NEED1("burst needs argument\n");
1708                         errno = 0;
1709                         if (expand_number(av[0], &p->burst) < 0)
1710                                 if (errno != ERANGE)
1711                                         errx(EX_DATAERR,
1712                                             "burst: invalid argument");
1713                         if (errno || p->burst > (1ULL << 48) - 1)
1714                                 errx(EX_DATAERR,
1715                                     "burst: out of range (0..2^48-1)");
1716                         ac--; av++;
1717                         break;
1718
1719                 default:
1720                         errx(EX_DATAERR, "unrecognised option ``%s''", av[-1]);
1721                 }
1722         }
1723
1724         /* check validity of parameters */
1725         if (p) {
1726                 if (p->delay > 10000)
1727                         errx(EX_DATAERR, "delay must be < 10000");
1728                 if (p->bandwidth == -1)
1729                         p->bandwidth = 0;
1730         }
1731         if (fs) {
1732                 /* XXX accept a 0 scheduler to keep the default */
1733             if (fs->flags & DN_QSIZE_BYTES) {
1734                 size_t len;
1735                 long limit;
1736
1737                 len = sizeof(limit);
1738                 if (sysctlbyname("net.inet.ip.dummynet.pipe_byte_limit",
1739                         &limit, &len, NULL, 0) == -1)
1740                         limit = 1024*1024;
1741                 if (fs->qsize > limit)
1742                         errx(EX_DATAERR, "queue size must be < %ldB", limit);
1743             } else {
1744                 size_t len;
1745                 long limit;
1746
1747                 len = sizeof(limit);
1748                 if (sysctlbyname("net.inet.ip.dummynet.pipe_slot_limit",
1749                         &limit, &len, NULL, 0) == -1)
1750                         limit = 100;
1751                 if (fs->qsize > limit)
1752                         errx(EX_DATAERR, "2 <= queue size <= %ld", limit);
1753             }
1754
1755 #ifdef NEW_AQM
1756                 if ((fs->flags & DN_IS_ECN) && !((fs->flags & DN_IS_RED)|| 
1757                         (fs->flags & DN_IS_AQM)))
1758                         errx(EX_USAGE, "ECN can be used with red/gred/"
1759                                 "codel/fq_codel only!");
1760 #else
1761             if ((fs->flags & DN_IS_ECN) && !(fs->flags & DN_IS_RED))
1762                 errx(EX_USAGE, "enable red/gred for ECN");
1763
1764 #endif
1765
1766             if (fs->flags & DN_IS_RED) {
1767                 size_t len;
1768                 int lookup_depth, avg_pkt_size;
1769
1770                 if (!(fs->flags & DN_IS_ECN) && (fs->min_th >= fs->max_th))
1771                     errx(EX_DATAERR, "min_th %d must be < than max_th %d",
1772                         fs->min_th, fs->max_th);
1773                 else if ((fs->flags & DN_IS_ECN) && (fs->min_th > fs->max_th))
1774                     errx(EX_DATAERR, "min_th %d must be =< than max_th %d",
1775                         fs->min_th, fs->max_th);
1776
1777                 if (fs->max_th == 0)
1778                     errx(EX_DATAERR, "max_th must be > 0");
1779
1780                 len = sizeof(int);
1781                 if (sysctlbyname("net.inet.ip.dummynet.red_lookup_depth",
1782                         &lookup_depth, &len, NULL, 0) == -1)
1783                         lookup_depth = 256;
1784                 if (lookup_depth == 0)
1785                     errx(EX_DATAERR, "net.inet.ip.dummynet.red_lookup_depth"
1786                         " must be greater than zero");
1787
1788                 len = sizeof(int);
1789                 if (sysctlbyname("net.inet.ip.dummynet.red_avg_pkt_size",
1790                         &avg_pkt_size, &len, NULL, 0) == -1)
1791                         avg_pkt_size = 512;
1792
1793                 if (avg_pkt_size == 0)
1794                         errx(EX_DATAERR,
1795                             "net.inet.ip.dummynet.red_avg_pkt_size must"
1796                             " be greater than zero");
1797
1798 #if 0 /* the following computation is now done in the kernel */
1799                 /*
1800                  * Ticks needed for sending a medium-sized packet.
1801                  * Unfortunately, when we are configuring a WF2Q+ queue, we
1802                  * do not have bandwidth information, because that is stored
1803                  * in the parent pipe, and also we have multiple queues
1804                  * competing for it. So we set s=0, which is not very
1805                  * correct. But on the other hand, why do we want RED with
1806                  * WF2Q+ ?
1807                  */
1808                 if (p.bandwidth==0) /* this is a WF2Q+ queue */
1809                         s = 0;
1810                 else
1811                         s = (double)ck.hz * avg_pkt_size * 8 / p.bandwidth;
1812                 /*
1813                  * max idle time (in ticks) before avg queue size becomes 0.
1814                  * NOTA:  (3/w_q) is approx the value x so that
1815                  * (1-w_q)^x < 10^-3.
1816                  */
1817                 w_q = ((double)fs->w_q) / (1 << SCALE_RED);
1818                 idle = s * 3. / w_q;
1819                 fs->lookup_step = (int)idle / lookup_depth;
1820                 if (!fs->lookup_step)
1821                         fs->lookup_step = 1;
1822                 weight = 1 - w_q;
1823                 for (t = fs->lookup_step; t > 1; --t)
1824                         weight *= 1 - w_q;
1825                 fs->lookup_weight = (int)(weight * (1 << SCALE_RED));
1826 #endif /* code moved in the kernel */
1827             }
1828         }
1829
1830         i = do_cmd(IP_DUMMYNET3, base, (char *)buf - (char *)base);
1831
1832         if (i)
1833                 err(1, "setsockopt(%s)", "IP_DUMMYNET_CONFIGURE");
1834 }
1835
1836 void
1837 dummynet_flush(void)
1838 {
1839         struct dn_id oid;
1840         oid_fill(&oid, sizeof(oid), DN_CMD_FLUSH, DN_API_VERSION);
1841         do_cmd(IP_DUMMYNET3, &oid, oid.len);
1842 }
1843
1844 /* Parse input for 'ipfw [pipe|sched|queue] show [range list]'
1845  * Returns the number of ranges, and possibly stores them
1846  * in the array v of size len.
1847  */
1848 static int
1849 parse_range(int ac, char *av[], uint32_t *v, int len)
1850 {
1851         int n = 0;
1852         char *endptr, *s;
1853         uint32_t base[2];
1854
1855         if (v == NULL || len < 2) {
1856                 v = base;
1857                 len = 2;
1858         }
1859
1860         for (s = *av; s != NULL; av++, ac--) {
1861                 v[0] = strtoul(s, &endptr, 10);
1862                 v[1] = (*endptr != '-') ? v[0] :
1863                          strtoul(endptr+1, &endptr, 10);
1864                 if (*endptr == '\0') { /* prepare for next round */
1865                         s = (ac > 0) ? *(av+1) : NULL;
1866                 } else {
1867                         if (*endptr != ',') {
1868                                 warn("invalid number: %s", s);
1869                                 s = ++endptr;
1870                                 continue;
1871                         }
1872                         /* continue processing from here */
1873                         s = ++endptr;
1874                         ac++;
1875                         av--;
1876                 }
1877                 if (v[1] < v[0] ||
1878                         v[1] >= DN_MAX_ID-1 ||
1879                         v[1] >= DN_MAX_ID-1) {
1880                         continue; /* invalid entry */
1881                 }
1882                 n++;
1883                 /* translate if 'pipe list' */
1884                 if (co.do_pipe == 1) {
1885                         v[0] += DN_MAX_ID;
1886                         v[1] += DN_MAX_ID;
1887                 }
1888                 v = (n*2 < len) ? v + 2 : base;
1889         }
1890         return n;
1891 }
1892
1893 /* main entry point for dummynet list functions. co.do_pipe indicates
1894  * which function we want to support.
1895  * av may contain filtering arguments, either individual entries
1896  * or ranges, or lists (space or commas are valid separators).
1897  * Format for a range can be n1-n2 or n3 n4 n5 ...
1898  * In a range n1 must be <= n2, otherwise the range is ignored.
1899  * A number 'n4' is translate in a range 'n4-n4'
1900  * All number must be > 0 and < DN_MAX_ID-1
1901  */
1902 void
1903 dummynet_list(int ac, char *av[], int show_counters)
1904 {
1905         struct dn_id *oid, *x = NULL;
1906         int ret, i;
1907         int n;          /* # of ranges */
1908         u_int buflen, l;
1909         u_int max_size; /* largest obj passed up */
1910
1911         (void)show_counters;    // XXX unused, but we should use it.
1912         ac--;
1913         av++;           /* skip 'list' | 'show' word */
1914
1915         n = parse_range(ac, av, NULL, 0);       /* Count # of ranges. */
1916
1917         /* Allocate space to store ranges */
1918         l = sizeof(*oid) + sizeof(uint32_t) * n * 2;
1919         oid = safe_calloc(1, l);
1920         oid_fill(oid, l, DN_CMD_GET, DN_API_VERSION);
1921
1922         if (n > 0)      /* store ranges in idx */
1923                 parse_range(ac, av, (uint32_t *)(oid + 1), n*2);
1924         /*
1925          * Compute the size of the largest object returned. If the
1926          * response leaves at least this much spare space in the
1927          * buffer, then surely the response is complete; otherwise
1928          * there might be a risk of truncation and we will need to
1929          * retry with a larger buffer.
1930          * XXX don't bother with smaller structs.
1931          */
1932         max_size = sizeof(struct dn_fs);
1933         if (max_size < sizeof(struct dn_sch))
1934                 max_size = sizeof(struct dn_sch);
1935         if (max_size < sizeof(struct dn_flow))
1936                 max_size = sizeof(struct dn_flow);
1937
1938         switch (co.do_pipe) {
1939         case 1:
1940                 oid->subtype = DN_LINK; /* list pipe */
1941                 break;
1942         case 2:
1943                 oid->subtype = DN_FS;   /* list queue */
1944                 break;
1945         case 3:
1946                 oid->subtype = DN_SCH;  /* list sched */
1947                 break;
1948         }
1949
1950         /*
1951          * Ask the kernel an estimate of the required space (result
1952          * in oid.id), unless we are requesting a subset of objects,
1953          * in which case the kernel does not give an exact answer.
1954          * In any case, space might grow in the meantime due to the
1955          * creation of new queues, so we must be prepared to retry.
1956          */
1957         if (n > 0) {
1958                 buflen = 4*1024;
1959         } else {
1960                 ret = do_cmd(-IP_DUMMYNET3, oid, (uintptr_t)&l);
1961                 if (ret != 0 || oid->id <= sizeof(*oid))
1962                         goto done;
1963                 buflen = oid->id + max_size;
1964                 oid->len = sizeof(*oid); /* restore */
1965         }
1966         /* Try a few times, until the buffer fits */
1967         for (i = 0; i < 20; i++) {
1968                 l = buflen;
1969                 x = safe_realloc(x, l);
1970                 bcopy(oid, x, oid->len);
1971                 ret = do_cmd(-IP_DUMMYNET3, x, (uintptr_t)&l);
1972                 if (ret != 0 || x->id <= sizeof(*oid))
1973                         goto done; /* no response */
1974                 if (l + max_size <= buflen)
1975                         break; /* ok */
1976                 buflen *= 2;     /* double for next attempt */
1977         }
1978         list_pipes(x, O_NEXT(x, l));
1979 done:
1980         if (x)
1981                 free(x);
1982         free(oid);
1983 }