1 /*
2 * lib/route/sch/htb.c HTB Qdisc
3 *
4 * This library is free software; you can redistribute it and/or
5 * modify it under the terms of the GNU Lesser General Public
6 * License as published by the Free Software Foundation version 2.1
7 * of the License.
8 *
9 * Copyright (c) 2003-2008 Thomas Graf <tgraf@suug.ch>
10 * Copyright (c) 2005-2006 Petr Gotthard <petr.gotthard@siemens.com>
11 * Copyright (c) 2005-2006 Siemens AG Oesterreich
12 */
13
14 /**
15 * @ingroup qdisc_api
16 * @ingroup class_api
17 * @defgroup htb Hierachical Token Bucket (HTB)
18 * @{
19 */
20
21 #include <netlink-local.h>
22 #include <netlink-tc.h>
23 #include <netlink/netlink.h>
24 #include <netlink/cache.h>
25 #include <netlink/utils.h>
26 #include <netlink/route/tc.h>
27 #include <netlink/route/qdisc.h>
28 #include <netlink/route/qdisc-modules.h>
29 #include <netlink/route/class.h>
30 #include <netlink/route/class-modules.h>
31 #include <netlink/route/link.h>
32 #include <netlink/route/sch/htb.h>
33
34 /** @cond SKIP */
35 #define SCH_HTB_HAS_RATE2QUANTUM 0x01
36 #define SCH_HTB_HAS_DEFCLS 0x02
37
38 #define SCH_HTB_HAS_PRIO 0x001
39 #define SCH_HTB_HAS_MTU 0x002
40 #define SCH_HTB_HAS_RATE 0x004
41 #define SCH_HTB_HAS_CEIL 0x008
42 #define SCH_HTB_HAS_RBUFFER 0x010
43 #define SCH_HTB_HAS_CBUFFER 0x020
44 #define SCH_HTB_HAS_QUANTUM 0x040
45 #define SCH_HTB_HAS_OVERHEAD 0x080
46 #define SCH_HTB_HAS_MPU 0x100
47 /** @endcond */
48
htb_qdisc(struct rtnl_qdisc * qdisc)49 static inline struct rtnl_htb_qdisc *htb_qdisc(struct rtnl_qdisc *qdisc)
50 {
51 if (qdisc->q_subdata == NULL)
52 qdisc->q_subdata = calloc(1, sizeof(struct rtnl_htb_qdisc));
53
54 return (struct rtnl_htb_qdisc *) qdisc->q_subdata;
55 }
56
57 static struct nla_policy htb_policy[TCA_HTB_MAX+1] = {
58 [TCA_HTB_INIT] = { .minlen = sizeof(struct tc_htb_glob) },
59 [TCA_HTB_PARMS] = { .minlen = sizeof(struct tc_htb_opt) },
60 };
61
htb_qdisc_msg_parser(struct rtnl_qdisc * qdisc)62 static int htb_qdisc_msg_parser(struct rtnl_qdisc *qdisc)
63 {
64 int err;
65 struct nlattr *tb[TCA_HTB_MAX + 1];
66 struct rtnl_htb_qdisc *d;
67
68 err = tca_parse(tb, TCA_HTB_MAX, (struct rtnl_tca *) qdisc, htb_policy);
69 if (err < 0)
70 return err;
71
72 d = htb_qdisc(qdisc);
73
74 if (tb[TCA_HTB_INIT]) {
75 struct tc_htb_glob opts;
76
77 nla_memcpy(&opts, tb[TCA_HTB_INIT], sizeof(opts));
78 d->qh_rate2quantum = opts.rate2quantum;
79 d->qh_defcls = opts.defcls;
80
81 d->qh_mask = (SCH_HTB_HAS_RATE2QUANTUM | SCH_HTB_HAS_DEFCLS);
82 }
83
84 return 0;
85 }
86
htb_qdisc_free_data(struct rtnl_qdisc * qdisc)87 static void htb_qdisc_free_data(struct rtnl_qdisc *qdisc)
88 {
89 free(qdisc->q_subdata);
90 }
91
htb_class(struct rtnl_class * class)92 static inline struct rtnl_htb_class *htb_class(struct rtnl_class *class)
93 {
94 if (class->c_subdata == NULL)
95 class->c_subdata = calloc(1, sizeof(struct rtnl_htb_class));
96
97 return (struct rtnl_htb_class *) class->c_subdata;
98 }
99
htb_class_msg_parser(struct rtnl_class * class)100 static int htb_class_msg_parser(struct rtnl_class *class)
101 {
102 int err;
103 struct nlattr *tb[TCA_HTB_MAX + 1];
104 struct rtnl_htb_class *d;
105
106 err = tca_parse(tb, TCA_HTB_MAX, (struct rtnl_tca *) class, htb_policy);
107 if (err < 0)
108 return err;
109
110 d = htb_class(class);
111
112 if (tb[TCA_HTB_PARMS]) {
113 struct tc_htb_opt opts;
114
115 nla_memcpy(&opts, tb[TCA_HTB_PARMS], sizeof(opts));
116 d->ch_prio = opts.prio;
117 rtnl_copy_ratespec(&d->ch_rate, &opts.rate);
118 rtnl_copy_ratespec(&d->ch_ceil, &opts.ceil);
119 d->ch_rbuffer = rtnl_tc_calc_bufsize(opts.buffer, opts.rate.rate);
120 d->ch_cbuffer = rtnl_tc_calc_bufsize(opts.cbuffer, opts.ceil.rate);
121 d->ch_quantum = opts.quantum;
122 d->ch_overhead = (opts.rate.mpu >> 8) & 0xff;
123 d->ch_mpu = opts.rate.mpu & 0xff;
124
125 d->ch_mask = (SCH_HTB_HAS_PRIO | SCH_HTB_HAS_RATE |
126 SCH_HTB_HAS_CEIL | SCH_HTB_HAS_RBUFFER |
127 SCH_HTB_HAS_CBUFFER | SCH_HTB_HAS_QUANTUM |
128 SCH_HTB_HAS_OVERHEAD | SCH_HTB_HAS_MPU);
129 }
130
131 return 0;
132 }
133
htb_class_free_data(struct rtnl_class * class)134 static void htb_class_free_data(struct rtnl_class *class)
135 {
136 free(class->c_subdata);
137 }
138
htb_qdisc_dump_line(struct rtnl_qdisc * qdisc,struct nl_dump_params * p)139 static void htb_qdisc_dump_line(struct rtnl_qdisc *qdisc,
140 struct nl_dump_params *p)
141 {
142 struct rtnl_htb_qdisc *d = (struct rtnl_htb_qdisc *) qdisc->q_subdata;
143
144 if (d == NULL)
145 return;
146
147 if (d->qh_mask & SCH_HTB_HAS_RATE2QUANTUM)
148 nl_dump(p, " r2q %u", d->qh_rate2quantum);
149
150 if (d->qh_mask & SCH_HTB_HAS_DEFCLS) {
151 char buf[32];
152 nl_dump(p, " default %s",
153 rtnl_tc_handle2str(d->qh_defcls, buf, sizeof(buf)));
154 }
155 }
156
htb_class_dump_line(struct rtnl_class * class,struct nl_dump_params * p)157 static void htb_class_dump_line(struct rtnl_class *class,
158 struct nl_dump_params *p)
159 {
160 struct rtnl_htb_class *d = (struct rtnl_htb_class *) class->c_subdata;
161
162 if (d == NULL)
163 return;
164
165 if (d->ch_mask & SCH_HTB_HAS_RATE) {
166 double r, rbit;
167 char *ru, *rubit;
168
169 r = nl_cancel_down_bytes(d->ch_rate.rs_rate, &ru);
170 rbit = nl_cancel_down_bits(d->ch_rate.rs_rate*8, &rubit);
171
172 nl_dump(p, " rate %.2f%s/s (%.0f%s) log %u",
173 r, ru, rbit, rubit, 1<<d->ch_rate.rs_cell_log);
174 }
175 }
176
htb_class_dump_details(struct rtnl_class * class,struct nl_dump_params * p)177 static void htb_class_dump_details(struct rtnl_class *class,
178 struct nl_dump_params *p)
179 {
180 struct rtnl_htb_class *d = (struct rtnl_htb_class *) class->c_subdata;
181
182 if (d == NULL)
183 return;
184
185 /* line 1 */
186 if (d->ch_mask & SCH_HTB_HAS_CEIL) {
187 double r, rbit;
188 char *ru, *rubit;
189
190 r = nl_cancel_down_bytes(d->ch_ceil.rs_rate, &ru);
191 rbit = nl_cancel_down_bits(d->ch_ceil.rs_rate*8, &rubit);
192
193 nl_dump(p, " ceil %.2f%s/s (%.0f%s) log %u",
194 r, ru, rbit, rubit, 1<<d->ch_ceil.rs_cell_log);
195 }
196
197 if (d->ch_mask & SCH_HTB_HAS_PRIO)
198 nl_dump(p, " prio %u", d->ch_prio);
199
200 if (d->ch_mask & SCH_HTB_HAS_MTU)
201 nl_dump(p, " mtu %u", d->ch_mtu);
202
203 if (d->ch_mask & SCH_HTB_HAS_RBUFFER) {
204 double b;
205 char *bu;
206
207 b = nl_cancel_down_bytes(d->ch_rbuffer, &bu);
208 nl_dump(p, " rbuffer %.2f%s", b, bu);
209 }
210
211 if (d->ch_mask & SCH_HTB_HAS_CBUFFER) {
212 double b;
213 char *bu;
214
215 b = nl_cancel_down_bytes(d->ch_cbuffer, &bu);
216 nl_dump(p, " cbuffer %.2f%s", b, bu);
217 }
218
219 if (d->ch_mask & SCH_HTB_HAS_QUANTUM)
220 nl_dump(p, " quantum %u", d->ch_quantum);
221
222 if (d->ch_mask & SCH_HTB_HAS_OVERHEAD)
223 nl_dump(p, " overhead %u", d->ch_overhead);
224
225 if (d->ch_mask & SCH_HTB_HAS_MPU)
226 nl_dump(p, " mpu %u", d->ch_mpu);
227 }
228
htb_qdisc_get_opts(struct rtnl_qdisc * qdisc)229 static struct nl_msg *htb_qdisc_get_opts(struct rtnl_qdisc *qdisc)
230 {
231 struct rtnl_htb_qdisc *d = (struct rtnl_htb_qdisc *) qdisc->q_subdata;
232 struct tc_htb_glob opts;
233 struct nl_msg *msg;
234
235 if (d == NULL)
236 return NULL;
237
238 msg = nlmsg_alloc();
239 if (msg == NULL)
240 return NULL;
241
242 memset(&opts, 0, sizeof(opts));
243 opts.version = TC_HTB_PROTOVER;
244
245 if (d->qh_mask & SCH_HTB_HAS_RATE2QUANTUM)
246 opts.rate2quantum = d->qh_rate2quantum;
247 if (d->qh_mask & SCH_HTB_HAS_DEFCLS)
248 opts.defcls = d->qh_defcls;
249
250 nla_put(msg, TCA_HTB_INIT, sizeof(opts), &opts);
251
252 return msg;
253 }
254
compute_cell(uint32_t rate,uint32_t mtu)255 static uint8_t compute_cell(uint32_t rate, uint32_t mtu)
256 {
257 uint8_t cell_log = 0;
258 while (mtu > 255) {
259 mtu >>= 1;
260 cell_log++;
261 }
262
263 return cell_log;
264 }
265
htb_class_get_opts(struct rtnl_class * class)266 static struct nl_msg *htb_class_get_opts(struct rtnl_class *class)
267 {
268 struct rtnl_htb_class *d = (struct rtnl_htb_class *) class->c_subdata;
269 uint32_t mtu, rtable[RTNL_TC_RTABLE_SIZE], ctable[RTNL_TC_RTABLE_SIZE];
270 struct tc_htb_opt opts;
271 struct nl_msg *msg;
272 int buffer, cbuffer;
273 uint8_t overhead = 0, mpu = 0;
274
275 if (d == NULL)
276 return NULL;
277
278 msg = nlmsg_alloc();
279 memset(&opts, 0, sizeof(opts));
280
281 /* if not set, zero (0) is used as priority */
282 if (d->ch_mask & SCH_HTB_HAS_PRIO)
283 opts.prio = d->ch_prio;
284
285 if (d->ch_mask & SCH_HTB_HAS_MTU)
286 mtu = d->ch_mtu;
287 else
288 mtu = 1600; /* eth packet len */
289
290 if (!(d->ch_mask & SCH_HTB_HAS_RATE))
291 BUG();
292
293 rtnl_rcopy_ratespec(&opts.rate, &d->ch_rate);
294 /* if cell_log not set, compute default value */
295 if (opts.rate.cell_log == UINT8_MAX)
296 opts.rate.cell_log = compute_cell(opts.rate.rate, mtu);
297
298 /* if not set, configured rate is used as ceil, which implies no borrowing */
299 if (d->ch_mask & SCH_HTB_HAS_CEIL)
300 rtnl_rcopy_ratespec(&opts.ceil, &d->ch_ceil);
301 else
302 memcpy(&opts.ceil, &opts.rate, sizeof(struct tc_ratespec));
303 /* if cell_log not set, compute default value */
304 if (opts.ceil.cell_log == UINT8_MAX)
305 opts.ceil.cell_log = compute_cell(opts.ceil.rate, mtu);
306
307 if (d->ch_mask & SCH_HTB_HAS_RBUFFER)
308 buffer = d->ch_rbuffer;
309 else
310 buffer = opts.rate.rate / nl_get_hz() + mtu;
311
312 opts.buffer = rtnl_tc_calc_txtime(buffer, opts.rate.rate);
313
314 if (d->ch_mask & SCH_HTB_HAS_CBUFFER)
315 cbuffer = d->ch_cbuffer;
316 else
317 cbuffer = opts.ceil.rate / nl_get_hz() + mtu;
318
319 opts.cbuffer = rtnl_tc_calc_txtime(cbuffer, opts.ceil.rate);
320
321 if (d->ch_mask & SCH_HTB_HAS_QUANTUM)
322 opts.quantum = d->ch_quantum;
323
324 if (d->ch_mask & SCH_HTB_HAS_OVERHEAD)
325 overhead = d->ch_overhead;
326
327 if (d->ch_mask & SCH_HTB_HAS_MPU)
328 mpu = d->ch_mpu;
329
330 opts.rate.mpu = mpu | (overhead << 8);
331 opts.ceil.mpu = mpu | (overhead << 8);
332
333 nla_put(msg, TCA_HTB_PARMS, sizeof(opts), &opts);
334
335 rtnl_tc_build_rate_table(rtable, mpu, overhead,
336 1 << opts.rate.cell_log,
337 opts.rate.rate);
338 nla_put(msg, TCA_HTB_RTAB, sizeof(rtable), &rtable);
339
340 rtnl_tc_build_rate_table(ctable, mpu, overhead,
341 1 << opts.ceil.cell_log,
342 opts.ceil.rate);
343 nla_put(msg, TCA_HTB_CTAB, sizeof(ctable), &ctable);
344
345 return msg;
346 }
347
348 /**
349 * @name Attribute Modifications
350 * @{
351 */
352
rtnl_htb_set_rate2quantum(struct rtnl_qdisc * qdisc,uint32_t rate2quantum)353 void rtnl_htb_set_rate2quantum(struct rtnl_qdisc *qdisc, uint32_t rate2quantum)
354 {
355 struct rtnl_htb_qdisc *d = htb_qdisc(qdisc);
356 if (d == NULL)
357 return;
358
359 d->qh_rate2quantum = rate2quantum;
360 d->qh_mask |= SCH_HTB_HAS_RATE2QUANTUM;
361 }
362
363 /**
364 * Set default class of the htb qdisc to the specified value
365 * @arg qdisc qdisc to change
366 * @arg defcls new default class
367 */
rtnl_htb_set_defcls(struct rtnl_qdisc * qdisc,uint32_t defcls)368 void rtnl_htb_set_defcls(struct rtnl_qdisc *qdisc, uint32_t defcls)
369 {
370 struct rtnl_htb_qdisc *d = htb_qdisc(qdisc);
371 if (d == NULL)
372 return;
373
374 d->qh_defcls = defcls;
375 d->qh_mask |= SCH_HTB_HAS_DEFCLS;
376 }
377
rtnl_htb_set_prio(struct rtnl_class * class,uint32_t prio)378 void rtnl_htb_set_prio(struct rtnl_class *class, uint32_t prio)
379 {
380 struct rtnl_htb_class *d = htb_class(class);
381 if (d == NULL)
382 return;
383
384 d->ch_prio = prio;
385 d->ch_mask |= SCH_HTB_HAS_PRIO;
386 }
387
388 /**
389 * Set MTU of the data link.
390 * @arg class HTB class to be modified.
391 * @arg mtu New MTU in bytes.
392 *
393 * Sets MTU of the data link controlled by the HTB class.
394 * If not set, the Ethernet MTU (1600) is used.
395 */
rtnl_htb_set_mtu(struct rtnl_class * class,uint32_t mtu)396 void rtnl_htb_set_mtu(struct rtnl_class *class, uint32_t mtu)
397 {
398 struct rtnl_htb_class *d = htb_class(class);
399 if (d == NULL)
400 return;
401
402 d->ch_mtu = mtu;
403 d->ch_mask |= SCH_HTB_HAS_MTU;
404 }
405
406 /**
407 * Set rate of HTB class.
408 * @arg class HTB class to be modified.
409 * @arg rate New rate in bytes per second.
410 */
rtnl_htb_set_rate(struct rtnl_class * class,uint32_t rate)411 void rtnl_htb_set_rate(struct rtnl_class *class, uint32_t rate)
412 {
413 struct rtnl_htb_class *d = htb_class(class);
414 if (d == NULL)
415 return;
416
417 d->ch_rate.rs_cell_log = UINT8_MAX; /* use default value */
418 d->ch_rate.rs_rate = rate;
419 d->ch_mask |= SCH_HTB_HAS_RATE;
420 }
421
422 /**
423 * Set ceil of HTB class.
424 * @arg class HTB class to be modified.
425 * @arg ceil New ceil in bytes per second.
426 */
rtnl_htb_set_ceil(struct rtnl_class * class,uint32_t ceil)427 void rtnl_htb_set_ceil(struct rtnl_class *class, uint32_t ceil)
428 {
429 struct rtnl_htb_class *d = htb_class(class);
430 if (d == NULL)
431 return;
432
433 d->ch_ceil.rs_cell_log = UINT8_MAX; /* use default value */
434 d->ch_ceil.rs_rate = ceil;
435 d->ch_mask |= SCH_HTB_HAS_CEIL;
436 }
437
438 /**
439 * Set size of the rate bucket of HTB class.
440 * @arg class HTB class to be modified.
441 * @arg rbuffer New size in bytes.
442 */
rtnl_htb_set_rbuffer(struct rtnl_class * class,uint32_t rbuffer)443 void rtnl_htb_set_rbuffer(struct rtnl_class *class, uint32_t rbuffer)
444 {
445 struct rtnl_htb_class *d = htb_class(class);
446 if (d == NULL)
447 return;
448
449 d->ch_rbuffer = rbuffer;
450 d->ch_mask |= SCH_HTB_HAS_RBUFFER;
451 }
452
453 /**
454 * Set size of the ceil bucket of HTB class.
455 * @arg class HTB class to be modified.
456 * @arg cbuffer New size in bytes.
457 */
rtnl_htb_set_cbuffer(struct rtnl_class * class,uint32_t cbuffer)458 void rtnl_htb_set_cbuffer(struct rtnl_class *class, uint32_t cbuffer)
459 {
460 struct rtnl_htb_class *d = htb_class(class);
461 if (d == NULL)
462 return;
463
464 d->ch_cbuffer = cbuffer;
465 d->ch_mask |= SCH_HTB_HAS_CBUFFER;
466 }
467
468 /**
469 * Set how much bytes to serve from leaf at once of HTB class {use r2q}.
470 * @arg class HTB class to be modified.
471 * @arg quantum New size in bytes.
472 */
rtnl_htb_set_quantum(struct rtnl_class * class,uint32_t quantum)473 void rtnl_htb_set_quantum(struct rtnl_class *class, uint32_t quantum)
474 {
475 struct rtnl_htb_class *d = htb_class(class);
476 if (d == NULL)
477 return;
478
479 d->ch_quantum = quantum;
480 d->ch_mask |= SCH_HTB_HAS_QUANTUM;
481 }
482
483 /**
484 * Set per-packet size overhead used in rate computations of HTB class.
485 * @arg class HTB class to be modified.
486 * @arg overhead Size in bytes.
487 */
rtnl_htb_set_overhead(struct rtnl_class * class,uint8_t overhead)488 void rtnl_htb_set_overhead(struct rtnl_class *class, uint8_t overhead)
489 {
490 struct rtnl_htb_class *d = htb_class(class);
491 if (d == NULL)
492 return;
493
494 d->ch_overhead = overhead;
495 d->ch_mask |= SCH_HTB_HAS_OVERHEAD;
496 }
497
498 /**
499 * Set the minimum packet size used in rate computations of HTB class.
500 * @arg class HTB class to be modified.
501 * @arg mpu Size in bytes.
502 */
rtnl_htb_set_mpu(struct rtnl_class * class,uint8_t mpu)503 void rtnl_htb_set_mpu(struct rtnl_class *class, uint8_t mpu)
504 {
505 struct rtnl_htb_class *d = htb_class(class);
506 if (d == NULL)
507 return;
508
509 d->ch_mpu = mpu;
510 d->ch_mask |= SCH_HTB_HAS_MPU;
511 }
512
513 /** @} */
514
515 static struct rtnl_qdisc_ops htb_qdisc_ops = {
516 .qo_kind = "htb",
517 .qo_msg_parser = htb_qdisc_msg_parser,
518 .qo_free_data = htb_qdisc_free_data,
519 .qo_dump[NL_DUMP_LINE] = htb_qdisc_dump_line,
520 .qo_get_opts = htb_qdisc_get_opts,
521 };
522
523 static struct rtnl_class_ops htb_class_ops = {
524 .co_kind = "htb",
525 .co_msg_parser = htb_class_msg_parser,
526 .co_free_data = htb_class_free_data,
527 .co_dump = {
528 [NL_DUMP_LINE] = htb_class_dump_line,
529 [NL_DUMP_DETAILS] = htb_class_dump_details,
530 },
531 .co_get_opts = htb_class_get_opts,
532 };
533
htb_init(void)534 static void __init htb_init(void)
535 {
536 rtnl_qdisc_register(&htb_qdisc_ops);
537 rtnl_class_register(&htb_class_ops);
538 }
539
htb_exit(void)540 static void __exit htb_exit(void)
541 {
542 rtnl_qdisc_unregister(&htb_qdisc_ops);
543 rtnl_class_unregister(&htb_class_ops);
544 }
545
546 /** @} */
547