iproute2/tc/q_cake.c
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   1// SPDX-License-Identifier: GPL-2.0 OR BSD-3-Clause
   2
   3/*
   4 * Common Applications Kept Enhanced  --  CAKE
   5 *
   6 *  Copyright (C) 2014-2018 Jonathan Morton <chromatix99@gmail.com>
   7 *  Copyright (C) 2017-2018 Toke Høiland-Jørgensen <toke@toke.dk>
   8 */
   9
  10#include <stddef.h>
  11#include <stdio.h>
  12#include <stdlib.h>
  13#include <unistd.h>
  14#include <syslog.h>
  15#include <fcntl.h>
  16#include <sys/socket.h>
  17#include <netinet/in.h>
  18#include <arpa/inet.h>
  19#include <string.h>
  20#include <inttypes.h>
  21
  22#include "utils.h"
  23#include "tc_util.h"
  24
  25struct cake_preset {
  26        char *name;
  27        unsigned int target;
  28        unsigned int interval;
  29};
  30
  31static struct cake_preset presets[] = {
  32        {"datacentre",          5,              100},
  33        {"lan",                 50,             1000},
  34        {"metro",               500,            10000},
  35        {"regional",            1500,           30000},
  36        {"internet",            5000,           100000},
  37        {"oceanic",             15000,          300000},
  38        {"satellite",           50000,          1000000},
  39        {"interplanetary",      50000000,       1000000000},
  40};
  41
  42static const char * diffserv_names[CAKE_DIFFSERV_MAX] = {
  43        [CAKE_DIFFSERV_DIFFSERV3] = "diffserv3",
  44        [CAKE_DIFFSERV_DIFFSERV4] = "diffserv4",
  45        [CAKE_DIFFSERV_DIFFSERV8] = "diffserv8",
  46        [CAKE_DIFFSERV_BESTEFFORT] = "besteffort",
  47        [CAKE_DIFFSERV_PRECEDENCE] = "precedence",
  48};
  49
  50static const char * flowmode_names[CAKE_FLOW_MAX] = {
  51        [CAKE_FLOW_NONE] = "flowblind",
  52        [CAKE_FLOW_SRC_IP] = "srchost",
  53        [CAKE_FLOW_DST_IP] = "dsthost",
  54        [CAKE_FLOW_HOSTS] = "hosts",
  55        [CAKE_FLOW_FLOWS] = "flows",
  56        [CAKE_FLOW_DUAL_SRC] = "dual-srchost",
  57        [CAKE_FLOW_DUAL_DST] = "dual-dsthost",
  58        [CAKE_FLOW_TRIPLE] = "triple-isolate",
  59};
  60
  61static struct cake_preset *find_preset(char *argv)
  62{
  63        int i;
  64
  65        for (i = 0; i < ARRAY_SIZE(presets); i++)
  66                if (!strcmp(argv, presets[i].name))
  67                        return &presets[i];
  68        return NULL;
  69}
  70
  71static void explain(void)
  72{
  73        fprintf(stderr,
  74                "Usage: ... cake [ bandwidth RATE | unlimited* | autorate-ingress ]\n"
  75                "                [ rtt TIME | datacentre | lan | metro | regional |\n"
  76                "                  internet* | oceanic | satellite | interplanetary ]\n"
  77                "                [ besteffort | diffserv8 | diffserv4 | diffserv3* ]\n"
  78                "                [ flowblind | srchost | dsthost | hosts | flows |\n"
  79                "                  dual-srchost | dual-dsthost | triple-isolate* ]\n"
  80                "                [ nat | nonat* ]\n"
  81                "                [ wash | nowash* ]\n"
  82                "                [ split-gso* | no-split-gso ]\n"
  83                "                [ ack-filter | ack-filter-aggressive | no-ack-filter* ]\n"
  84                "                [ memlimit LIMIT ]\n"
  85                "                [ fwmark MASK ]\n"
  86                "                [ ptm | atm | noatm* ] [ overhead N | conservative | raw* ]\n"
  87                "                [ mpu N ] [ ingress | egress* ]\n"
  88                "                (* marks defaults)\n");
  89}
  90
  91static int cake_parse_opt(struct qdisc_util *qu, int argc, char **argv,
  92                          struct nlmsghdr *n, const char *dev)
  93{
  94        struct cake_preset *preset, *preset_set = NULL;
  95        bool overhead_override = false;
  96        bool overhead_set = false;
  97        unsigned int interval = 0;
  98        unsigned int diffserv = 0;
  99        unsigned int memlimit = 0;
 100        unsigned int fwmark = 0;
 101        unsigned int target = 0;
 102        __u64 bandwidth = 0;
 103        int ack_filter = -1;
 104        struct rtattr *tail;
 105        int split_gso = -1;
 106        int unlimited = 0;
 107        int flowmode = -1;
 108        int autorate = -1;
 109        int ingress = -1;
 110        int overhead = 0;
 111        int wash = -1;
 112        int nat = -1;
 113        int atm = -1;
 114        int mpu = 0;
 115
 116        while (argc > 0) {
 117                if (strcmp(*argv, "bandwidth") == 0) {
 118                        NEXT_ARG();
 119                        if (get_rate64(&bandwidth, *argv)) {
 120                                fprintf(stderr, "Illegal \"bandwidth\"\n");
 121                                return -1;
 122                        }
 123                        unlimited = 0;
 124                        autorate = 0;
 125                } else if (strcmp(*argv, "unlimited") == 0) {
 126                        bandwidth = 0;
 127                        unlimited = 1;
 128                        autorate = 0;
 129                } else if (strcmp(*argv, "autorate-ingress") == 0) {
 130                        autorate = 1;
 131                } else if (strcmp(*argv, "rtt") == 0) {
 132                        NEXT_ARG();
 133                        if (get_time(&interval, *argv)) {
 134                                fprintf(stderr, "Illegal \"rtt\"\n");
 135                                return -1;
 136                        }
 137                        target = interval / 20;
 138                        if (!target)
 139                                target = 1;
 140                } else if ((preset = find_preset(*argv))) {
 141                        if (preset_set)
 142                                duparg(*argv, preset_set->name);
 143                        preset_set = preset;
 144                        target = preset->target;
 145                        interval = preset->interval;
 146                } else if (strcmp(*argv, "besteffort") == 0) {
 147                        diffserv = CAKE_DIFFSERV_BESTEFFORT;
 148                } else if (strcmp(*argv, "precedence") == 0) {
 149                        diffserv = CAKE_DIFFSERV_PRECEDENCE;
 150                } else if (strcmp(*argv, "diffserv8") == 0) {
 151                        diffserv = CAKE_DIFFSERV_DIFFSERV8;
 152                } else if (strcmp(*argv, "diffserv4") == 0) {
 153                        diffserv = CAKE_DIFFSERV_DIFFSERV4;
 154                } else if (strcmp(*argv, "diffserv") == 0) {
 155                        diffserv = CAKE_DIFFSERV_DIFFSERV4;
 156                } else if (strcmp(*argv, "diffserv3") == 0) {
 157                        diffserv = CAKE_DIFFSERV_DIFFSERV3;
 158                } else if (strcmp(*argv, "nowash") == 0) {
 159                        wash = 0;
 160                } else if (strcmp(*argv, "wash") == 0) {
 161                        wash = 1;
 162                } else if (strcmp(*argv, "split-gso") == 0) {
 163                        split_gso = 1;
 164                } else if (strcmp(*argv, "no-split-gso") == 0) {
 165                        split_gso = 0;
 166                } else if (strcmp(*argv, "flowblind") == 0) {
 167                        flowmode = CAKE_FLOW_NONE;
 168                } else if (strcmp(*argv, "srchost") == 0) {
 169                        flowmode = CAKE_FLOW_SRC_IP;
 170                } else if (strcmp(*argv, "dsthost") == 0) {
 171                        flowmode = CAKE_FLOW_DST_IP;
 172                } else if (strcmp(*argv, "hosts") == 0) {
 173                        flowmode = CAKE_FLOW_HOSTS;
 174                } else if (strcmp(*argv, "flows") == 0) {
 175                        flowmode = CAKE_FLOW_FLOWS;
 176                } else if (strcmp(*argv, "dual-srchost") == 0) {
 177                        flowmode = CAKE_FLOW_DUAL_SRC;
 178                } else if (strcmp(*argv, "dual-dsthost") == 0) {
 179                        flowmode = CAKE_FLOW_DUAL_DST;
 180                } else if (strcmp(*argv, "triple-isolate") == 0) {
 181                        flowmode = CAKE_FLOW_TRIPLE;
 182                } else if (strcmp(*argv, "nat") == 0) {
 183                        nat = 1;
 184                } else if (strcmp(*argv, "nonat") == 0) {
 185                        nat = 0;
 186                } else if (strcmp(*argv, "ptm") == 0) {
 187                        atm = CAKE_ATM_PTM;
 188                } else if (strcmp(*argv, "atm") == 0) {
 189                        atm = CAKE_ATM_ATM;
 190                } else if (strcmp(*argv, "noatm") == 0) {
 191                        atm = CAKE_ATM_NONE;
 192                } else if (strcmp(*argv, "raw") == 0) {
 193                        atm = CAKE_ATM_NONE;
 194                        overhead = 0;
 195                        overhead_set = true;
 196                        overhead_override = true;
 197                } else if (strcmp(*argv, "conservative") == 0) {
 198                        /*
 199                         * Deliberately over-estimate overhead:
 200                         * one whole ATM cell plus ATM framing.
 201                         * A safe choice if the actual overhead is unknown.
 202                         */
 203                        atm = CAKE_ATM_ATM;
 204                        overhead = 48;
 205                        overhead_set = true;
 206
 207                /* Various ADSL framing schemes, all over ATM cells */
 208                } else if (strcmp(*argv, "ipoa-vcmux") == 0) {
 209                        atm = CAKE_ATM_ATM;
 210                        overhead += 8;
 211                        overhead_set = true;
 212                } else if (strcmp(*argv, "ipoa-llcsnap") == 0) {
 213                        atm = CAKE_ATM_ATM;
 214                        overhead += 16;
 215                        overhead_set = true;
 216                } else if (strcmp(*argv, "bridged-vcmux") == 0) {
 217                        atm = CAKE_ATM_ATM;
 218                        overhead += 24;
 219                        overhead_set = true;
 220                } else if (strcmp(*argv, "bridged-llcsnap") == 0) {
 221                        atm = CAKE_ATM_ATM;
 222                        overhead += 32;
 223                        overhead_set = true;
 224                } else if (strcmp(*argv, "pppoa-vcmux") == 0) {
 225                        atm = CAKE_ATM_ATM;
 226                        overhead += 10;
 227                        overhead_set = true;
 228                } else if (strcmp(*argv, "pppoa-llc") == 0) {
 229                        atm = CAKE_ATM_ATM;
 230                        overhead += 14;
 231                        overhead_set = true;
 232                } else if (strcmp(*argv, "pppoe-vcmux") == 0) {
 233                        atm = CAKE_ATM_ATM;
 234                        overhead += 32;
 235                        overhead_set = true;
 236                } else if (strcmp(*argv, "pppoe-llcsnap") == 0) {
 237                        atm = CAKE_ATM_ATM;
 238                        overhead += 40;
 239                        overhead_set = true;
 240
 241                /* Typical VDSL2 framing schemes, both over PTM */
 242                /* PTM has 64b/65b coding which absorbs some bandwidth */
 243                } else if (strcmp(*argv, "pppoe-ptm") == 0) {
 244                        /* 2B PPP + 6B PPPoE + 6B dest MAC + 6B src MAC
 245                         * + 2B ethertype + 4B Frame Check Sequence
 246                         * + 1B Start of Frame (S) + 1B End of Frame (Ck)
 247                         * + 2B TC-CRC (PTM-FCS) = 30B
 248                         */
 249                        atm = CAKE_ATM_PTM;
 250                        overhead += 30;
 251                        overhead_set = true;
 252                } else if (strcmp(*argv, "bridged-ptm") == 0) {
 253                        /* 6B dest MAC + 6B src MAC + 2B ethertype
 254                         * + 4B Frame Check Sequence
 255                         * + 1B Start of Frame (S) + 1B End of Frame (Ck)
 256                         * + 2B TC-CRC (PTM-FCS) = 22B
 257                         */
 258                        atm = CAKE_ATM_PTM;
 259                        overhead += 22;
 260                        overhead_set = true;
 261                } else if (strcmp(*argv, "via-ethernet") == 0) {
 262                        /*
 263                         * We used to use this flag to manually compensate for
 264                         * Linux including the Ethernet header on Ethernet-type
 265                         * interfaces, but not on IP-type interfaces.
 266                         *
 267                         * It is no longer needed, because Cake now adjusts for
 268                         * that automatically, and is thus ignored.
 269                         *
 270                         * It would be deleted entirely, but it appears in the
 271                         * stats output when the automatic compensation is
 272                         * active.
 273                         */
 274                } else if (strcmp(*argv, "ethernet") == 0) {
 275                        /* ethernet pre-amble & interframe gap & FCS
 276                         * you may need to add vlan tag
 277                         */
 278                        overhead += 38;
 279                        overhead_set = true;
 280                        mpu = 84;
 281
 282                /* Additional Ethernet-related overhead used by some ISPs */
 283                } else if (strcmp(*argv, "ether-vlan") == 0) {
 284                        /* 802.1q VLAN tag - may be repeated */
 285                        overhead += 4;
 286                        overhead_set = true;
 287
 288                /*
 289                 * DOCSIS cable shapers account for Ethernet frame with FCS,
 290                 * but not interframe gap or preamble.
 291                 */
 292                } else if (strcmp(*argv, "docsis") == 0) {
 293                        atm = CAKE_ATM_NONE;
 294                        overhead += 18;
 295                        overhead_set = true;
 296                        mpu = 64;
 297                } else if (strcmp(*argv, "overhead") == 0) {
 298                        char *p = NULL;
 299
 300                        NEXT_ARG();
 301                        overhead = strtol(*argv, &p, 10);
 302                        if (!p || *p || !*argv ||
 303                            overhead < -64 || overhead > 256) {
 304                                fprintf(stderr,
 305                                        "Illegal \"overhead\", valid range is -64 to 256\\n");
 306                                return -1;
 307                        }
 308                        overhead_set = true;
 309
 310                } else if (strcmp(*argv, "mpu") == 0) {
 311                        char *p = NULL;
 312
 313                        NEXT_ARG();
 314                        mpu = strtol(*argv, &p, 10);
 315                        if (!p || *p || !*argv || mpu < 0 || mpu > 256) {
 316                                fprintf(stderr,
 317                                        "Illegal \"mpu\", valid range is 0 to 256\\n");
 318                                return -1;
 319                        }
 320                } else if (strcmp(*argv, "ingress") == 0) {
 321                        ingress = 1;
 322                } else if (strcmp(*argv, "egress") == 0) {
 323                        ingress = 0;
 324                } else if (strcmp(*argv, "no-ack-filter") == 0) {
 325                        ack_filter = CAKE_ACK_NONE;
 326                } else if (strcmp(*argv, "ack-filter") == 0) {
 327                        ack_filter = CAKE_ACK_FILTER;
 328                } else if (strcmp(*argv, "ack-filter-aggressive") == 0) {
 329                        ack_filter = CAKE_ACK_AGGRESSIVE;
 330                } else if (strcmp(*argv, "memlimit") == 0) {
 331                        NEXT_ARG();
 332                        if (get_size(&memlimit, *argv)) {
 333                                fprintf(stderr,
 334                                        "Illegal value for \"memlimit\": \"%s\"\n", *argv);
 335                                return -1;
 336                        }
 337                } else if (strcmp(*argv, "fwmark") == 0) {
 338                        NEXT_ARG();
 339                        if (get_u32(&fwmark, *argv, 0)) {
 340                                fprintf(stderr,
 341                                        "Illegal value for \"fwmark\": \"%s\"\n", *argv);
 342                                return -1;
 343                        }
 344                } else if (strcmp(*argv, "help") == 0) {
 345                        explain();
 346                        return -1;
 347                } else {
 348                        fprintf(stderr, "What is \"%s\"?\n", *argv);
 349                        explain();
 350                        return -1;
 351                }
 352                argc--; argv++;
 353        }
 354
 355        tail = NLMSG_TAIL(n);
 356        addattr_l(n, 1024, TCA_OPTIONS, NULL, 0);
 357        if (bandwidth || unlimited)
 358                addattr_l(n, 1024, TCA_CAKE_BASE_RATE64, &bandwidth,
 359                          sizeof(bandwidth));
 360        if (diffserv)
 361                addattr_l(n, 1024, TCA_CAKE_DIFFSERV_MODE, &diffserv,
 362                          sizeof(diffserv));
 363        if (atm != -1)
 364                addattr_l(n, 1024, TCA_CAKE_ATM, &atm, sizeof(atm));
 365        if (flowmode != -1)
 366                addattr_l(n, 1024, TCA_CAKE_FLOW_MODE, &flowmode,
 367                          sizeof(flowmode));
 368        if (overhead_set)
 369                addattr_l(n, 1024, TCA_CAKE_OVERHEAD, &overhead,
 370                          sizeof(overhead));
 371        if (overhead_override) {
 372                unsigned int zero = 0;
 373
 374                addattr_l(n, 1024, TCA_CAKE_RAW, &zero, sizeof(zero));
 375        }
 376        if (mpu > 0)
 377                addattr_l(n, 1024, TCA_CAKE_MPU, &mpu, sizeof(mpu));
 378        if (interval)
 379                addattr_l(n, 1024, TCA_CAKE_RTT, &interval, sizeof(interval));
 380        if (target)
 381                addattr_l(n, 1024, TCA_CAKE_TARGET, &target, sizeof(target));
 382        if (autorate != -1)
 383                addattr_l(n, 1024, TCA_CAKE_AUTORATE, &autorate,
 384                          sizeof(autorate));
 385        if (memlimit)
 386                addattr_l(n, 1024, TCA_CAKE_MEMORY, &memlimit,
 387                          sizeof(memlimit));
 388        if (fwmark)
 389                addattr_l(n, 1024, TCA_CAKE_FWMARK, &fwmark,
 390                          sizeof(fwmark));
 391        if (nat != -1)
 392                addattr_l(n, 1024, TCA_CAKE_NAT, &nat, sizeof(nat));
 393        if (wash != -1)
 394                addattr_l(n, 1024, TCA_CAKE_WASH, &wash, sizeof(wash));
 395        if (split_gso != -1)
 396                addattr_l(n, 1024, TCA_CAKE_SPLIT_GSO, &split_gso,
 397                          sizeof(split_gso));
 398        if (ingress != -1)
 399                addattr_l(n, 1024, TCA_CAKE_INGRESS, &ingress, sizeof(ingress));
 400        if (ack_filter != -1)
 401                addattr_l(n, 1024, TCA_CAKE_ACK_FILTER, &ack_filter,
 402                          sizeof(ack_filter));
 403
 404        tail->rta_len = (void *) NLMSG_TAIL(n) - (void *) tail;
 405        return 0;
 406}
 407
 408static void cake_print_mode(unsigned int value, unsigned int max,
 409                            const char *key, const char **table)
 410{
 411        if (value < max && table[value]) {
 412                print_string(PRINT_ANY, key, "%s ", table[value]);
 413        } else {
 414                print_string(PRINT_JSON, key, NULL, "unknown");
 415                print_string(PRINT_FP, NULL, "(?%s?)", key);
 416        }
 417}
 418
 419static int cake_print_opt(struct qdisc_util *qu, FILE *f, struct rtattr *opt)
 420{
 421        struct rtattr *tb[TCA_CAKE_MAX + 1];
 422        unsigned int interval = 0;
 423        unsigned int memlimit = 0;
 424        unsigned int fwmark = 0;
 425        __u64 bandwidth = 0;
 426        int ack_filter = 0;
 427        int split_gso = 0;
 428        int overhead = 0;
 429        int autorate = 0;
 430        int ingress = 0;
 431        int wash = 0;
 432        int raw = 0;
 433        int mpu = 0;
 434        int atm = 0;
 435        int nat = 0;
 436
 437        SPRINT_BUF(b2);
 438
 439        if (opt == NULL)
 440                return 0;
 441
 442        parse_rtattr_nested(tb, TCA_CAKE_MAX, opt);
 443
 444        if (tb[TCA_CAKE_BASE_RATE64] &&
 445            RTA_PAYLOAD(tb[TCA_CAKE_BASE_RATE64]) >= sizeof(bandwidth)) {
 446                bandwidth = rta_getattr_u64(tb[TCA_CAKE_BASE_RATE64]);
 447                if (bandwidth)
 448                        tc_print_rate(PRINT_ANY, "bandwidth", "bandwidth %s ",
 449                                      bandwidth);
 450                else
 451                        print_string(PRINT_ANY, "bandwidth", "bandwidth %s ",
 452                                     "unlimited");
 453        }
 454        if (tb[TCA_CAKE_AUTORATE] &&
 455                RTA_PAYLOAD(tb[TCA_CAKE_AUTORATE]) >= sizeof(__u32)) {
 456                autorate = rta_getattr_u32(tb[TCA_CAKE_AUTORATE]);
 457                if (autorate == 1)
 458                        print_string(PRINT_ANY, "autorate", "%s ",
 459                                     "autorate-ingress");
 460                else if (autorate)
 461                        print_string(PRINT_ANY, "autorate", "(?autorate?) ",
 462                                     "unknown");
 463        }
 464        if (tb[TCA_CAKE_DIFFSERV_MODE] &&
 465            RTA_PAYLOAD(tb[TCA_CAKE_DIFFSERV_MODE]) >= sizeof(__u32)) {
 466                cake_print_mode(rta_getattr_u32(tb[TCA_CAKE_DIFFSERV_MODE]),
 467                                CAKE_DIFFSERV_MAX, "diffserv", diffserv_names);
 468        }
 469        if (tb[TCA_CAKE_FLOW_MODE] &&
 470            RTA_PAYLOAD(tb[TCA_CAKE_FLOW_MODE]) >= sizeof(__u32)) {
 471                cake_print_mode(rta_getattr_u32(tb[TCA_CAKE_FLOW_MODE]),
 472                                CAKE_FLOW_MAX, "flowmode", flowmode_names);
 473        }
 474
 475        if (tb[TCA_CAKE_NAT] &&
 476            RTA_PAYLOAD(tb[TCA_CAKE_NAT]) >= sizeof(__u32)) {
 477                nat = rta_getattr_u32(tb[TCA_CAKE_NAT]);
 478        }
 479
 480        if (nat)
 481                print_string(PRINT_FP, NULL, "nat ", NULL);
 482        else
 483                print_string(PRINT_FP, NULL, "nonat ", NULL);
 484        print_bool(PRINT_JSON, "nat", NULL, nat);
 485
 486        if (tb[TCA_CAKE_WASH] &&
 487            RTA_PAYLOAD(tb[TCA_CAKE_WASH]) >= sizeof(__u32)) {
 488                wash = rta_getattr_u32(tb[TCA_CAKE_WASH]);
 489        }
 490        if (tb[TCA_CAKE_ATM] &&
 491            RTA_PAYLOAD(tb[TCA_CAKE_ATM]) >= sizeof(__u32)) {
 492                atm = rta_getattr_u32(tb[TCA_CAKE_ATM]);
 493        }
 494        if (tb[TCA_CAKE_OVERHEAD] &&
 495            RTA_PAYLOAD(tb[TCA_CAKE_OVERHEAD]) >= sizeof(__s32)) {
 496                overhead = *(__s32 *) RTA_DATA(tb[TCA_CAKE_OVERHEAD]);
 497        }
 498        if (tb[TCA_CAKE_MPU] &&
 499            RTA_PAYLOAD(tb[TCA_CAKE_MPU]) >= sizeof(__u32)) {
 500                mpu = rta_getattr_u32(tb[TCA_CAKE_MPU]);
 501        }
 502        if (tb[TCA_CAKE_INGRESS] &&
 503            RTA_PAYLOAD(tb[TCA_CAKE_INGRESS]) >= sizeof(__u32)) {
 504                ingress = rta_getattr_u32(tb[TCA_CAKE_INGRESS]);
 505        }
 506        if (tb[TCA_CAKE_ACK_FILTER] &&
 507            RTA_PAYLOAD(tb[TCA_CAKE_ACK_FILTER]) >= sizeof(__u32)) {
 508                ack_filter = rta_getattr_u32(tb[TCA_CAKE_ACK_FILTER]);
 509        }
 510        if (tb[TCA_CAKE_SPLIT_GSO] &&
 511            RTA_PAYLOAD(tb[TCA_CAKE_SPLIT_GSO]) >= sizeof(__u32)) {
 512                split_gso = rta_getattr_u32(tb[TCA_CAKE_SPLIT_GSO]);
 513        }
 514        if (tb[TCA_CAKE_RAW]) {
 515                raw = 1;
 516        }
 517        if (tb[TCA_CAKE_RTT] &&
 518            RTA_PAYLOAD(tb[TCA_CAKE_RTT]) >= sizeof(__u32)) {
 519                interval = rta_getattr_u32(tb[TCA_CAKE_RTT]);
 520        }
 521        if (tb[TCA_CAKE_MEMORY] &&
 522                RTA_PAYLOAD(tb[TCA_CAKE_MEMORY]) >= sizeof(__u32)) {
 523                memlimit = rta_getattr_u32(tb[TCA_CAKE_MEMORY]);
 524        }
 525        if (tb[TCA_CAKE_FWMARK] &&
 526            RTA_PAYLOAD(tb[TCA_CAKE_FWMARK]) >= sizeof(__u32)) {
 527                fwmark = rta_getattr_u32(tb[TCA_CAKE_FWMARK]);
 528        }
 529
 530        if (wash)
 531                print_string(PRINT_FP, NULL, "wash ", NULL);
 532        else
 533                print_string(PRINT_FP, NULL, "nowash ", NULL);
 534        print_bool(PRINT_JSON, "wash", NULL, wash);
 535
 536        if (ingress)
 537                print_string(PRINT_FP, NULL, "ingress ", NULL);
 538        print_bool(PRINT_JSON, "ingress", NULL, ingress);
 539
 540        if (ack_filter == CAKE_ACK_AGGRESSIVE)
 541                print_string(PRINT_ANY, "ack-filter", "ack-filter-%s ",
 542                             "aggressive");
 543        else if (ack_filter == CAKE_ACK_FILTER)
 544                print_string(PRINT_ANY, "ack-filter", "ack-filter ", "enabled");
 545        else
 546                print_string(PRINT_ANY, "ack-filter", "no-ack-filter ", "disabled");
 547
 548        if (split_gso)
 549                print_string(PRINT_FP, NULL, "split-gso ", NULL);
 550        else
 551                print_string(PRINT_FP, NULL, "no-split-gso ", NULL);
 552        print_bool(PRINT_JSON, "split_gso", NULL, split_gso);
 553
 554        if (interval)
 555                print_string(PRINT_FP, NULL, "rtt %s ",
 556                             sprint_time(interval, b2));
 557        print_uint(PRINT_JSON, "rtt", NULL, interval);
 558
 559        if (raw)
 560                print_string(PRINT_FP, NULL, "raw ", NULL);
 561        print_bool(PRINT_JSON, "raw", NULL, raw);
 562
 563        if (atm == CAKE_ATM_ATM)
 564                print_string(PRINT_ANY, "atm", "%s ", "atm");
 565        else if (atm == CAKE_ATM_PTM)
 566                print_string(PRINT_ANY, "atm", "%s ", "ptm");
 567        else if (!raw)
 568                print_string(PRINT_ANY, "atm", "%s ", "noatm");
 569
 570        print_int(PRINT_ANY, "overhead", "overhead %d ", overhead);
 571
 572        if (mpu)
 573                print_uint(PRINT_ANY, "mpu", "mpu %u ", mpu);
 574
 575        if (memlimit)
 576                print_size(PRINT_ANY, "memlimit", "memlimit %s ", memlimit);
 577
 578        if (fwmark)
 579                print_uint(PRINT_FP, NULL, "fwmark 0x%x ", fwmark);
 580        print_0xhex(PRINT_JSON, "fwmark", NULL, fwmark);
 581
 582        return 0;
 583}
 584
 585static void cake_print_json_tin(struct rtattr **tstat)
 586{
 587#define PRINT_TSTAT_JSON(type, name, attr) if (tstat[TCA_CAKE_TIN_STATS_ ## attr]) \
 588                print_u64(PRINT_JSON, name, NULL,                       \
 589                        rta_getattr_ ## type((struct rtattr *)          \
 590                                             tstat[TCA_CAKE_TIN_STATS_ ## attr]))
 591
 592        open_json_object(NULL);
 593        PRINT_TSTAT_JSON(u64, "threshold_rate", THRESHOLD_RATE64);
 594        PRINT_TSTAT_JSON(u64, "sent_bytes", SENT_BYTES64);
 595        PRINT_TSTAT_JSON(u32, "backlog_bytes", BACKLOG_BYTES);
 596        PRINT_TSTAT_JSON(u32, "target_us", TARGET_US);
 597        PRINT_TSTAT_JSON(u32, "interval_us", INTERVAL_US);
 598        PRINT_TSTAT_JSON(u32, "peak_delay_us", PEAK_DELAY_US);
 599        PRINT_TSTAT_JSON(u32, "avg_delay_us", AVG_DELAY_US);
 600        PRINT_TSTAT_JSON(u32, "base_delay_us", BASE_DELAY_US);
 601        PRINT_TSTAT_JSON(u32, "sent_packets", SENT_PACKETS);
 602        PRINT_TSTAT_JSON(u32, "way_indirect_hits", WAY_INDIRECT_HITS);
 603        PRINT_TSTAT_JSON(u32, "way_misses", WAY_MISSES);
 604        PRINT_TSTAT_JSON(u32, "way_collisions", WAY_COLLISIONS);
 605        PRINT_TSTAT_JSON(u32, "drops", DROPPED_PACKETS);
 606        PRINT_TSTAT_JSON(u32, "ecn_mark", ECN_MARKED_PACKETS);
 607        PRINT_TSTAT_JSON(u32, "ack_drops", ACKS_DROPPED_PACKETS);
 608        PRINT_TSTAT_JSON(u32, "sparse_flows", SPARSE_FLOWS);
 609        PRINT_TSTAT_JSON(u32, "bulk_flows", BULK_FLOWS);
 610        PRINT_TSTAT_JSON(u32, "unresponsive_flows", UNRESPONSIVE_FLOWS);
 611        PRINT_TSTAT_JSON(u32, "max_pkt_len", MAX_SKBLEN);
 612        PRINT_TSTAT_JSON(u32, "flow_quantum", FLOW_QUANTUM);
 613        close_json_object();
 614
 615#undef PRINT_TSTAT_JSON
 616}
 617
 618static int cake_print_xstats(struct qdisc_util *qu, FILE *f,
 619                             struct rtattr *xstats)
 620{
 621        struct rtattr *st[TCA_CAKE_STATS_MAX + 1];
 622        SPRINT_BUF(b1);
 623        int i;
 624
 625        if (xstats == NULL)
 626                return 0;
 627
 628#define GET_STAT_U32(attr) rta_getattr_u32(st[TCA_CAKE_STATS_ ## attr])
 629#define GET_STAT_S32(attr) (*(__s32 *)RTA_DATA(st[TCA_CAKE_STATS_ ## attr]))
 630#define GET_STAT_U64(attr) rta_getattr_u64(st[TCA_CAKE_STATS_ ## attr])
 631
 632        parse_rtattr_nested(st, TCA_CAKE_STATS_MAX, xstats);
 633
 634        if (st[TCA_CAKE_STATS_MEMORY_USED] &&
 635            st[TCA_CAKE_STATS_MEMORY_LIMIT]) {
 636                print_size(PRINT_FP, NULL, " memory used: %s",
 637                           GET_STAT_U32(MEMORY_USED));
 638
 639                print_size(PRINT_FP, NULL, " of %s\n",
 640                           GET_STAT_U32(MEMORY_LIMIT));
 641
 642                print_uint(PRINT_JSON, "memory_used", NULL,
 643                        GET_STAT_U32(MEMORY_USED));
 644                print_uint(PRINT_JSON, "memory_limit", NULL,
 645                        GET_STAT_U32(MEMORY_LIMIT));
 646        }
 647
 648        if (st[TCA_CAKE_STATS_CAPACITY_ESTIMATE64])
 649                tc_print_rate(PRINT_ANY, "capacity_estimate",
 650                              " capacity estimate: %s\n",
 651                              GET_STAT_U64(CAPACITY_ESTIMATE64));
 652
 653        if (st[TCA_CAKE_STATS_MIN_NETLEN] &&
 654            st[TCA_CAKE_STATS_MAX_NETLEN]) {
 655                print_uint(PRINT_ANY, "min_network_size",
 656                           " min/max network layer size: %12u",
 657                           GET_STAT_U32(MIN_NETLEN));
 658                print_uint(PRINT_ANY, "max_network_size",
 659                           " /%8u\n", GET_STAT_U32(MAX_NETLEN));
 660        }
 661
 662        if (st[TCA_CAKE_STATS_MIN_ADJLEN] &&
 663            st[TCA_CAKE_STATS_MAX_ADJLEN]) {
 664                print_uint(PRINT_ANY, "min_adj_size",
 665                           " min/max overhead-adjusted size: %8u",
 666                           GET_STAT_U32(MIN_ADJLEN));
 667                print_uint(PRINT_ANY, "max_adj_size",
 668                           " /%8u\n", GET_STAT_U32(MAX_ADJLEN));
 669        }
 670
 671        if (st[TCA_CAKE_STATS_AVG_NETOFF])
 672                print_uint(PRINT_ANY, "avg_hdr_offset",
 673                           " average network hdr offset: %12u\n\n",
 674                           GET_STAT_U32(AVG_NETOFF));
 675
 676        /* class stats */
 677        if (st[TCA_CAKE_STATS_DEFICIT])
 678                print_int(PRINT_ANY, "deficit", "  deficit %u",
 679                          GET_STAT_S32(DEFICIT));
 680        if (st[TCA_CAKE_STATS_COBALT_COUNT])
 681                print_uint(PRINT_ANY, "count", " count %u",
 682                           GET_STAT_U32(COBALT_COUNT));
 683
 684        if (st[TCA_CAKE_STATS_DROPPING] && GET_STAT_U32(DROPPING)) {
 685                print_bool(PRINT_ANY, "dropping", " dropping", true);
 686                if (st[TCA_CAKE_STATS_DROP_NEXT_US]) {
 687                        int drop_next = GET_STAT_S32(DROP_NEXT_US);
 688
 689                        if (drop_next < 0) {
 690                                print_string(PRINT_FP, NULL, " drop_next -%s",
 691                                        sprint_time(drop_next, b1));
 692                        } else {
 693                                print_uint(PRINT_JSON, "drop_next", NULL,
 694                                        drop_next);
 695                                print_string(PRINT_FP, NULL, " drop_next %s",
 696                                        sprint_time(drop_next, b1));
 697                        }
 698                }
 699        }
 700
 701        if (st[TCA_CAKE_STATS_P_DROP]) {
 702                print_uint(PRINT_ANY, "blue_prob", " blue_prob %u",
 703                           GET_STAT_U32(P_DROP));
 704                if (st[TCA_CAKE_STATS_BLUE_TIMER_US]) {
 705                        int blue_timer = GET_STAT_S32(BLUE_TIMER_US);
 706
 707                        if (blue_timer < 0) {
 708                                print_string(PRINT_FP, NULL, " blue_timer -%s",
 709                                        sprint_time(blue_timer, b1));
 710                        } else {
 711                                print_uint(PRINT_JSON, "blue_timer", NULL,
 712                                        blue_timer);
 713                                print_string(PRINT_FP, NULL, " blue_timer %s",
 714                                        sprint_time(blue_timer, b1));
 715                        }
 716                }
 717        }
 718
 719#undef GET_STAT_U32
 720#undef GET_STAT_S32
 721#undef GET_STAT_U64
 722
 723        if (st[TCA_CAKE_STATS_TIN_STATS]) {
 724                struct rtattr *tstat[TC_CAKE_MAX_TINS][TCA_CAKE_TIN_STATS_MAX + 1];
 725                struct rtattr *tins[TC_CAKE_MAX_TINS + 1];
 726                int num_tins = 0;
 727
 728                parse_rtattr_nested(tins, TC_CAKE_MAX_TINS,
 729                                    st[TCA_CAKE_STATS_TIN_STATS]);
 730
 731                for (i = 1; i <= TC_CAKE_MAX_TINS && tins[i]; i++) {
 732                        parse_rtattr_nested(tstat[i-1], TCA_CAKE_TIN_STATS_MAX,
 733                                            tins[i]);
 734                        num_tins++;
 735                }
 736
 737                if (!num_tins)
 738                        return 0;
 739
 740                if (is_json_context()) {
 741                        open_json_array(PRINT_JSON, "tins");
 742                        for (i = 0; i < num_tins; i++)
 743                                cake_print_json_tin(tstat[i]);
 744                        close_json_array(PRINT_JSON, NULL);
 745
 746                        return 0;
 747                }
 748
 749
 750                switch (num_tins) {
 751                case 3:
 752                        fprintf(f, "                   Bulk  Best Effort        Voice\n");
 753                        break;
 754
 755                case 4:
 756                        fprintf(f, "                   Bulk  Best Effort        Video        Voice\n");
 757                        break;
 758
 759                default:
 760                        fprintf(f, "          ");
 761                        for (i = 0; i < num_tins; i++)
 762                                fprintf(f, "        Tin %u", i);
 763                        fprintf(f, "%s", _SL_);
 764                };
 765
 766#define GET_TSTAT(i, attr) (tstat[i][TCA_CAKE_TIN_STATS_ ## attr])
 767#define PRINT_TSTAT(name, attr, fmts, val)      do {            \
 768                        if (GET_TSTAT(0, attr)) {               \
 769                                fprintf(f, name);               \
 770                                for (i = 0; i < num_tins; i++)  \
 771                                        fprintf(f, " %12" fmts, val);   \
 772                                fprintf(f, "%s", _SL_);                 \
 773                        }                                               \
 774                } while (0)
 775
 776#define SPRINT_TSTAT(pfunc, type, name, attr) PRINT_TSTAT(              \
 777                        name, attr, "s", sprint_ ## pfunc(              \
 778                                rta_getattr_ ## type(GET_TSTAT(i, attr)), b1))
 779
 780#define PRINT_TSTAT_U32(name, attr)     PRINT_TSTAT(                    \
 781                        name, attr, "u", rta_getattr_u32(GET_TSTAT(i, attr)))
 782
 783#define PRINT_TSTAT_U64(name, attr)     PRINT_TSTAT(                    \
 784                        name, attr, "llu", rta_getattr_u64(GET_TSTAT(i, attr)))
 785
 786                if (GET_TSTAT(0, THRESHOLD_RATE64)) {
 787                        fprintf(f, "  thresh  ");
 788                        for (i = 0; i < num_tins; i++)
 789                                tc_print_rate(PRINT_FP, NULL, " %12s",
 790                                              rta_getattr_u64(GET_TSTAT(i, THRESHOLD_RATE64)));
 791                        fprintf(f, "%s", _SL_);
 792                }
 793
 794                SPRINT_TSTAT(time, u32, "  target  ", TARGET_US);
 795                SPRINT_TSTAT(time, u32, "  interval", INTERVAL_US);
 796                SPRINT_TSTAT(time, u32, "  pk_delay", PEAK_DELAY_US);
 797                SPRINT_TSTAT(time, u32, "  av_delay", AVG_DELAY_US);
 798                SPRINT_TSTAT(time, u32, "  sp_delay", BASE_DELAY_US);
 799                SPRINT_TSTAT(size, u32, "  backlog ", BACKLOG_BYTES);
 800
 801                PRINT_TSTAT_U32("  pkts    ", SENT_PACKETS);
 802                PRINT_TSTAT_U64("  bytes   ", SENT_BYTES64);
 803
 804                PRINT_TSTAT_U32("  way_inds", WAY_INDIRECT_HITS);
 805                PRINT_TSTAT_U32("  way_miss", WAY_MISSES);
 806                PRINT_TSTAT_U32("  way_cols", WAY_COLLISIONS);
 807                PRINT_TSTAT_U32("  drops   ", DROPPED_PACKETS);
 808                PRINT_TSTAT_U32("  marks   ", ECN_MARKED_PACKETS);
 809                PRINT_TSTAT_U32("  ack_drop", ACKS_DROPPED_PACKETS);
 810                PRINT_TSTAT_U32("  sp_flows", SPARSE_FLOWS);
 811                PRINT_TSTAT_U32("  bk_flows", BULK_FLOWS);
 812                PRINT_TSTAT_U32("  un_flows", UNRESPONSIVE_FLOWS);
 813                PRINT_TSTAT_U32("  max_len ", MAX_SKBLEN);
 814                PRINT_TSTAT_U32("  quantum ", FLOW_QUANTUM);
 815
 816#undef GET_STAT
 817#undef PRINT_TSTAT
 818#undef SPRINT_TSTAT
 819#undef PRINT_TSTAT_U32
 820#undef PRINT_TSTAT_U64
 821        }
 822        return 0;
 823}
 824
 825struct qdisc_util cake_qdisc_util = {
 826        .id             = "cake",
 827        .parse_qopt     = cake_parse_opt,
 828        .print_qopt     = cake_print_opt,
 829        .print_xstats   = cake_print_xstats,
 830};
 831