1 #ifndef __LINUX_PKT_SCHED_H 2 #define __LINUX_PKT_SCHED_H 3 4 #include <linux/types.h> 5 6 /* Logical priority bands not depending on specific packet scheduler. 7 Every scheduler will map them to real traffic classes, if it has 8 no more precise mechanism to classify packets. 9 10 These numbers have no special meaning, though their coincidence 11 with obsolete IPv6 values is not occasional :-). New IPv6 drafts 12 preferred full anarchy inspired by diffserv group. 13 14 Note: TC_PRIO_BESTEFFORT does not mean that it is the most unhappy 15 class, actually, as rule it will be handled with more care than 16 filler or even bulk. 17 */ 18 19 #define TC_PRIO_BESTEFFORT 0 20 #define TC_PRIO_FILLER 1 21 #define TC_PRIO_BULK 2 22 #define TC_PRIO_INTERACTIVE_BULK 4 23 #define TC_PRIO_INTERACTIVE 6 24 #define TC_PRIO_CONTROL 7 25 26 #define TC_PRIO_MAX 15 27 28 /* Generic queue statistics, available for all the elements. 29 Particular schedulers may have also their private records. 30 */ 31 32 struct tc_stats { 33 __u64 bytes; /* Number of enqueued bytes */ 34 __u32 packets; /* Number of enqueued packets */ 35 __u32 drops; /* Packets dropped because of lack of resources */ 36 __u32 overlimits; /* Number of throttle events when this 37 * flow goes out of allocated bandwidth */ 38 __u32 bps; /* Current flow byte rate */ 39 __u32 pps; /* Current flow packet rate */ 40 __u32 qlen; 41 __u32 backlog; 42 }; 43 44 struct tc_estimator { 45 signed char interval; 46 unsigned char ewma_log; 47 }; 48 49 /* "Handles" 50 --------- 51 52 All the traffic control objects have 32bit identifiers, or "handles". 53 54 They can be considered as opaque numbers from user API viewpoint, 55 but actually they always consist of two fields: major and 56 minor numbers, which are interpreted by kernel specially, 57 that may be used by applications, though not recommended. 58 59 F.e. qdisc handles always have minor number equal to zero, 60 classes (or flows) have major equal to parent qdisc major, and 61 minor uniquely identifying class inside qdisc. 62 63 Macros to manipulate handles: 64 */ 65 66 #define TC_H_MAJ_MASK (0xFFFF0000U) 67 #define TC_H_MIN_MASK (0x0000FFFFU) 68 #define TC_H_MAJ(h) ((h)&TC_H_MAJ_MASK) 69 #define TC_H_MIN(h) ((h)&TC_H_MIN_MASK) 70 #define TC_H_MAKE(maj,min) (((maj)&TC_H_MAJ_MASK)|((min)&TC_H_MIN_MASK)) 71 72 #define TC_H_UNSPEC (0U) 73 #define TC_H_ROOT (0xFFFFFFFFU) 74 #define TC_H_INGRESS (0xFFFFFFF1U) 75 76 /* Need to corrospond to iproute2 tc/tc_core.h "enum link_layer" */ 77 enum tc_link_layer { 78 TC_LINKLAYER_UNAWARE, /* Indicate unaware old iproute2 util */ 79 TC_LINKLAYER_ETHERNET, 80 TC_LINKLAYER_ATM, 81 }; 82 #define TC_LINKLAYER_MASK 0x0F /* limit use to lower 4 bits */ 83 84 struct tc_ratespec { 85 unsigned char cell_log; 86 __u8 linklayer; /* lower 4 bits */ 87 unsigned short overhead; 88 short cell_align; 89 unsigned short mpu; 90 __u32 rate; 91 }; 92 93 #define TC_RTAB_SIZE 1024 94 95 struct tc_sizespec { 96 unsigned char cell_log; 97 unsigned char size_log; 98 short cell_align; 99 int overhead; 100 unsigned int linklayer; 101 unsigned int mpu; 102 unsigned int mtu; 103 unsigned int tsize; 104 }; 105 106 enum { 107 TCA_STAB_UNSPEC, 108 TCA_STAB_BASE, 109 TCA_STAB_DATA, 110 __TCA_STAB_MAX 111 }; 112 113 #define TCA_STAB_MAX (__TCA_STAB_MAX - 1) 114 115 /* FIFO section */ 116 117 struct tc_fifo_qopt { 118 __u32 limit; /* Queue length: bytes for bfifo, packets for pfifo */ 119 }; 120 121 /* PRIO section */ 122 123 #define TCQ_PRIO_BANDS 16 124 #define TCQ_MIN_PRIO_BANDS 2 125 126 struct tc_prio_qopt { 127 int bands; /* Number of bands */ 128 __u8 priomap[TC_PRIO_MAX+1]; /* Map: logical priority -> PRIO band */ 129 }; 130 131 /* MULTIQ section */ 132 133 struct tc_multiq_qopt { 134 __u16 bands; /* Number of bands */ 135 __u16 max_bands; /* Maximum number of queues */ 136 }; 137 138 /* PLUG section */ 139 140 #define TCQ_PLUG_BUFFER 0 141 #define TCQ_PLUG_RELEASE_ONE 1 142 #define TCQ_PLUG_RELEASE_INDEFINITE 2 143 #define TCQ_PLUG_LIMIT 3 144 145 struct tc_plug_qopt { 146 /* TCQ_PLUG_BUFFER: Inset a plug into the queue and 147 * buffer any incoming packets 148 * TCQ_PLUG_RELEASE_ONE: Dequeue packets from queue head 149 * to beginning of the next plug. 150 * TCQ_PLUG_RELEASE_INDEFINITE: Dequeue all packets from queue. 151 * Stop buffering packets until the next TCQ_PLUG_BUFFER 152 * command is received (just act as a pass-thru queue). 153 * TCQ_PLUG_LIMIT: Increase/decrease queue size 154 */ 155 int action; 156 __u32 limit; 157 }; 158 159 /* TBF section */ 160 161 struct tc_tbf_qopt { 162 struct tc_ratespec rate; 163 struct tc_ratespec peakrate; 164 __u32 limit; 165 __u32 buffer; 166 __u32 mtu; 167 }; 168 169 enum { 170 TCA_TBF_UNSPEC, 171 TCA_TBF_PARMS, 172 TCA_TBF_RTAB, 173 TCA_TBF_PTAB, 174 TCA_TBF_RATE64, 175 TCA_TBF_PRATE64, 176 TCA_TBF_BURST, 177 TCA_TBF_PBURST, 178 __TCA_TBF_MAX, 179 }; 180 181 #define TCA_TBF_MAX (__TCA_TBF_MAX - 1) 182 183 184 /* TEQL section */ 185 186 /* TEQL does not require any parameters */ 187 188 /* SFQ section */ 189 190 struct tc_sfq_qopt { 191 unsigned quantum; /* Bytes per round allocated to flow */ 192 int perturb_period; /* Period of hash perturbation */ 193 __u32 limit; /* Maximal packets in queue */ 194 unsigned divisor; /* Hash divisor */ 195 unsigned flows; /* Maximal number of flows */ 196 }; 197 198 struct tc_sfqred_stats { 199 __u32 prob_drop; /* Early drops, below max threshold */ 200 __u32 forced_drop; /* Early drops, after max threshold */ 201 __u32 prob_mark; /* Marked packets, below max threshold */ 202 __u32 forced_mark; /* Marked packets, after max threshold */ 203 __u32 prob_mark_head; /* Marked packets, below max threshold */ 204 __u32 forced_mark_head;/* Marked packets, after max threshold */ 205 }; 206 207 struct tc_sfq_qopt_v1 { 208 struct tc_sfq_qopt v0; 209 unsigned int depth; /* max number of packets per flow */ 210 unsigned int headdrop; 211 /* SFQRED parameters */ 212 __u32 limit; /* HARD maximal flow queue length (bytes) */ 213 __u32 qth_min; /* Min average length threshold (bytes) */ 214 __u32 qth_max; /* Max average length threshold (bytes) */ 215 unsigned char Wlog; /* log(W) */ 216 unsigned char Plog; /* log(P_max/(qth_max-qth_min)) */ 217 unsigned char Scell_log; /* cell size for idle damping */ 218 unsigned char flags; 219 __u32 max_P; /* probability, high resolution */ 220 /* SFQRED stats */ 221 struct tc_sfqred_stats stats; 222 }; 223 224 225 struct tc_sfq_xstats { 226 __s32 allot; 227 }; 228 229 /* RED section */ 230 231 enum { 232 TCA_RED_UNSPEC, 233 TCA_RED_PARMS, 234 TCA_RED_STAB, 235 TCA_RED_MAX_P, 236 __TCA_RED_MAX, 237 }; 238 239 #define TCA_RED_MAX (__TCA_RED_MAX - 1) 240 241 struct tc_red_qopt { 242 __u32 limit; /* HARD maximal queue length (bytes) */ 243 __u32 qth_min; /* Min average length threshold (bytes) */ 244 __u32 qth_max; /* Max average length threshold (bytes) */ 245 unsigned char Wlog; /* log(W) */ 246 unsigned char Plog; /* log(P_max/(qth_max-qth_min)) */ 247 unsigned char Scell_log; /* cell size for idle damping */ 248 unsigned char flags; 249 #define TC_RED_ECN 1 250 #define TC_RED_HARDDROP 2 251 #define TC_RED_ADAPTATIVE 4 252 }; 253 254 struct tc_red_xstats { 255 __u32 early; /* Early drops */ 256 __u32 pdrop; /* Drops due to queue limits */ 257 __u32 other; /* Drops due to drop() calls */ 258 __u32 marked; /* Marked packets */ 259 }; 260 261 /* GRED section */ 262 263 #define MAX_DPs 16 264 265 enum { 266 TCA_GRED_UNSPEC, 267 TCA_GRED_PARMS, 268 TCA_GRED_STAB, 269 TCA_GRED_DPS, 270 TCA_GRED_MAX_P, 271 __TCA_GRED_MAX, 272 }; 273 274 #define TCA_GRED_MAX (__TCA_GRED_MAX - 1) 275 276 struct tc_gred_qopt { 277 __u32 limit; /* HARD maximal queue length (bytes) */ 278 __u32 qth_min; /* Min average length threshold (bytes) */ 279 __u32 qth_max; /* Max average length threshold (bytes) */ 280 __u32 DP; /* up to 2^32 DPs */ 281 __u32 backlog; 282 __u32 qave; 283 __u32 forced; 284 __u32 early; 285 __u32 other; 286 __u32 pdrop; 287 __u8 Wlog; /* log(W) */ 288 __u8 Plog; /* log(P_max/(qth_max-qth_min)) */ 289 __u8 Scell_log; /* cell size for idle damping */ 290 __u8 prio; /* prio of this VQ */ 291 __u32 packets; 292 __u32 bytesin; 293 }; 294 295 /* gred setup */ 296 struct tc_gred_sopt { 297 __u32 DPs; 298 __u32 def_DP; 299 __u8 grio; 300 __u8 flags; 301 __u16 pad1; 302 }; 303 304 /* CHOKe section */ 305 306 enum { 307 TCA_CHOKE_UNSPEC, 308 TCA_CHOKE_PARMS, 309 TCA_CHOKE_STAB, 310 TCA_CHOKE_MAX_P, 311 __TCA_CHOKE_MAX, 312 }; 313 314 #define TCA_CHOKE_MAX (__TCA_CHOKE_MAX - 1) 315 316 struct tc_choke_qopt { 317 __u32 limit; /* Hard queue length (packets) */ 318 __u32 qth_min; /* Min average threshold (packets) */ 319 __u32 qth_max; /* Max average threshold (packets) */ 320 unsigned char Wlog; /* log(W) */ 321 unsigned char Plog; /* log(P_max/(qth_max-qth_min)) */ 322 unsigned char Scell_log; /* cell size for idle damping */ 323 unsigned char flags; /* see RED flags */ 324 }; 325 326 struct tc_choke_xstats { 327 __u32 early; /* Early drops */ 328 __u32 pdrop; /* Drops due to queue limits */ 329 __u32 other; /* Drops due to drop() calls */ 330 __u32 marked; /* Marked packets */ 331 __u32 matched; /* Drops due to flow match */ 332 }; 333 334 /* HTB section */ 335 #define TC_HTB_NUMPRIO 8 336 #define TC_HTB_MAXDEPTH 8 337 #define TC_HTB_PROTOVER 3 /* the same as HTB and TC's major */ 338 339 struct tc_htb_opt { 340 struct tc_ratespec rate; 341 struct tc_ratespec ceil; 342 __u32 buffer; 343 __u32 cbuffer; 344 __u32 quantum; 345 __u32 level; /* out only */ 346 __u32 prio; 347 }; 348 struct tc_htb_glob { 349 __u32 version; /* to match HTB/TC */ 350 __u32 rate2quantum; /* bps->quantum divisor */ 351 __u32 defcls; /* default class number */ 352 __u32 debug; /* debug flags */ 353 354 /* stats */ 355 __u32 direct_pkts; /* count of non shaped packets */ 356 }; 357 enum { 358 TCA_HTB_UNSPEC, 359 TCA_HTB_PARMS, 360 TCA_HTB_INIT, 361 TCA_HTB_CTAB, 362 TCA_HTB_RTAB, 363 TCA_HTB_DIRECT_QLEN, 364 TCA_HTB_RATE64, 365 TCA_HTB_CEIL64, 366 __TCA_HTB_MAX, 367 }; 368 369 #define TCA_HTB_MAX (__TCA_HTB_MAX - 1) 370 371 struct tc_htb_xstats { 372 __u32 lends; 373 __u32 borrows; 374 __u32 giants; /* too big packets (rate will not be accurate) */ 375 __u32 tokens; 376 __u32 ctokens; 377 }; 378 379 /* HFSC section */ 380 381 struct tc_hfsc_qopt { 382 __u16 defcls; /* default class */ 383 }; 384 385 struct tc_service_curve { 386 __u32 m1; /* slope of the first segment in bps */ 387 __u32 d; /* x-projection of the first segment in us */ 388 __u32 m2; /* slope of the second segment in bps */ 389 }; 390 391 struct tc_hfsc_stats { 392 __u64 work; /* total work done */ 393 __u64 rtwork; /* work done by real-time criteria */ 394 __u32 period; /* current period */ 395 __u32 level; /* class level in hierarchy */ 396 }; 397 398 enum { 399 TCA_HFSC_UNSPEC, 400 TCA_HFSC_RSC, 401 TCA_HFSC_FSC, 402 TCA_HFSC_USC, 403 __TCA_HFSC_MAX, 404 }; 405 406 #define TCA_HFSC_MAX (__TCA_HFSC_MAX - 1) 407 408 409 /* CBQ section */ 410 411 #define TC_CBQ_MAXPRIO 8 412 #define TC_CBQ_MAXLEVEL 8 413 #define TC_CBQ_DEF_EWMA 5 414 415 struct tc_cbq_lssopt { 416 unsigned char change; 417 unsigned char flags; 418 #define TCF_CBQ_LSS_BOUNDED 1 419 #define TCF_CBQ_LSS_ISOLATED 2 420 unsigned char ewma_log; 421 unsigned char level; 422 #define TCF_CBQ_LSS_FLAGS 1 423 #define TCF_CBQ_LSS_EWMA 2 424 #define TCF_CBQ_LSS_MAXIDLE 4 425 #define TCF_CBQ_LSS_MINIDLE 8 426 #define TCF_CBQ_LSS_OFFTIME 0x10 427 #define TCF_CBQ_LSS_AVPKT 0x20 428 __u32 maxidle; 429 __u32 minidle; 430 __u32 offtime; 431 __u32 avpkt; 432 }; 433 434 struct tc_cbq_wrropt { 435 unsigned char flags; 436 unsigned char priority; 437 unsigned char cpriority; 438 unsigned char __reserved; 439 __u32 allot; 440 __u32 weight; 441 }; 442 443 struct tc_cbq_ovl { 444 unsigned char strategy; 445 #define TC_CBQ_OVL_CLASSIC 0 446 #define TC_CBQ_OVL_DELAY 1 447 #define TC_CBQ_OVL_LOWPRIO 2 448 #define TC_CBQ_OVL_DROP 3 449 #define TC_CBQ_OVL_RCLASSIC 4 450 unsigned char priority2; 451 __u16 pad; 452 __u32 penalty; 453 }; 454 455 struct tc_cbq_police { 456 unsigned char police; 457 unsigned char __res1; 458 unsigned short __res2; 459 }; 460 461 struct tc_cbq_fopt { 462 __u32 split; 463 __u32 defmap; 464 __u32 defchange; 465 }; 466 467 struct tc_cbq_xstats { 468 __u32 borrows; 469 __u32 overactions; 470 __s32 avgidle; 471 __s32 undertime; 472 }; 473 474 enum { 475 TCA_CBQ_UNSPEC, 476 TCA_CBQ_LSSOPT, 477 TCA_CBQ_WRROPT, 478 TCA_CBQ_FOPT, 479 TCA_CBQ_OVL_STRATEGY, 480 TCA_CBQ_RATE, 481 TCA_CBQ_RTAB, 482 TCA_CBQ_POLICE, 483 __TCA_CBQ_MAX, 484 }; 485 486 #define TCA_CBQ_MAX (__TCA_CBQ_MAX - 1) 487 488 /* dsmark section */ 489 490 enum { 491 TCA_DSMARK_UNSPEC, 492 TCA_DSMARK_INDICES, 493 TCA_DSMARK_DEFAULT_INDEX, 494 TCA_DSMARK_SET_TC_INDEX, 495 TCA_DSMARK_MASK, 496 TCA_DSMARK_VALUE, 497 __TCA_DSMARK_MAX, 498 }; 499 500 #define TCA_DSMARK_MAX (__TCA_DSMARK_MAX - 1) 501 502 /* ATM section */ 503 504 enum { 505 TCA_ATM_UNSPEC, 506 TCA_ATM_FD, /* file/socket descriptor */ 507 TCA_ATM_PTR, /* pointer to descriptor - later */ 508 TCA_ATM_HDR, /* LL header */ 509 TCA_ATM_EXCESS, /* excess traffic class (0 for CLP) */ 510 TCA_ATM_ADDR, /* PVC address (for output only) */ 511 TCA_ATM_STATE, /* VC state (ATM_VS_*; for output only) */ 512 __TCA_ATM_MAX, 513 }; 514 515 #define TCA_ATM_MAX (__TCA_ATM_MAX - 1) 516 517 /* Network emulator */ 518 519 enum { 520 TCA_NETEM_UNSPEC, 521 TCA_NETEM_CORR, 522 TCA_NETEM_DELAY_DIST, 523 TCA_NETEM_REORDER, 524 TCA_NETEM_CORRUPT, 525 TCA_NETEM_LOSS, 526 TCA_NETEM_RATE, 527 TCA_NETEM_ECN, 528 TCA_NETEM_RATE64, 529 __TCA_NETEM_MAX, 530 }; 531 532 #define TCA_NETEM_MAX (__TCA_NETEM_MAX - 1) 533 534 struct tc_netem_qopt { 535 __u32 latency; /* added delay (us) */ 536 __u32 limit; /* fifo limit (packets) */ 537 __u32 loss; /* random packet loss (0=none ~0=100%) */ 538 __u32 gap; /* re-ordering gap (0 for none) */ 539 __u32 duplicate; /* random packet dup (0=none ~0=100%) */ 540 __u32 jitter; /* random jitter in latency (us) */ 541 }; 542 543 struct tc_netem_corr { 544 __u32 delay_corr; /* delay correlation */ 545 __u32 loss_corr; /* packet loss correlation */ 546 __u32 dup_corr; /* duplicate correlation */ 547 }; 548 549 struct tc_netem_reorder { 550 __u32 probability; 551 __u32 correlation; 552 }; 553 554 struct tc_netem_corrupt { 555 __u32 probability; 556 __u32 correlation; 557 }; 558 559 struct tc_netem_rate { 560 __u32 rate; /* byte/s */ 561 __s32 packet_overhead; 562 __u32 cell_size; 563 __s32 cell_overhead; 564 }; 565 566 enum { 567 NETEM_LOSS_UNSPEC, 568 NETEM_LOSS_GI, /* General Intuitive - 4 state model */ 569 NETEM_LOSS_GE, /* Gilbert Elliot models */ 570 __NETEM_LOSS_MAX 571 }; 572 #define NETEM_LOSS_MAX (__NETEM_LOSS_MAX - 1) 573 574 /* State transition probabilities for 4 state model */ 575 struct tc_netem_gimodel { 576 __u32 p13; 577 __u32 p31; 578 __u32 p32; 579 __u32 p14; 580 __u32 p23; 581 }; 582 583 /* Gilbert-Elliot models */ 584 struct tc_netem_gemodel { 585 __u32 p; 586 __u32 r; 587 __u32 h; 588 __u32 k1; 589 }; 590 591 #define NETEM_DIST_SCALE 8192 592 #define NETEM_DIST_MAX 16384 593 594 /* DRR */ 595 596 enum { 597 TCA_DRR_UNSPEC, 598 TCA_DRR_QUANTUM, 599 __TCA_DRR_MAX 600 }; 601 602 #define TCA_DRR_MAX (__TCA_DRR_MAX - 1) 603 604 struct tc_drr_stats { 605 __u32 deficit; 606 }; 607 608 /* MQPRIO */ 609 #define TC_QOPT_BITMASK 15 610 #define TC_QOPT_MAX_QUEUE 16 611 612 struct tc_mqprio_qopt { 613 __u8 num_tc; 614 __u8 prio_tc_map[TC_QOPT_BITMASK + 1]; 615 __u8 hw; 616 __u16 count[TC_QOPT_MAX_QUEUE]; 617 __u16 offset[TC_QOPT_MAX_QUEUE]; 618 }; 619 620 /* SFB */ 621 622 enum { 623 TCA_SFB_UNSPEC, 624 TCA_SFB_PARMS, 625 __TCA_SFB_MAX, 626 }; 627 628 #define TCA_SFB_MAX (__TCA_SFB_MAX - 1) 629 630 /* 631 * Note: increment, decrement are Q0.16 fixed-point values. 632 */ 633 struct tc_sfb_qopt { 634 __u32 rehash_interval; /* delay between hash move, in ms */ 635 __u32 warmup_time; /* double buffering warmup time in ms (warmup_time < rehash_interval) */ 636 __u32 max; /* max len of qlen_min */ 637 __u32 bin_size; /* maximum queue length per bin */ 638 __u32 increment; /* probability increment, (d1 in Blue) */ 639 __u32 decrement; /* probability decrement, (d2 in Blue) */ 640 __u32 limit; /* max SFB queue length */ 641 __u32 penalty_rate; /* inelastic flows are rate limited to 'rate' pps */ 642 __u32 penalty_burst; 643 }; 644 645 struct tc_sfb_xstats { 646 __u32 earlydrop; 647 __u32 penaltydrop; 648 __u32 bucketdrop; 649 __u32 queuedrop; 650 __u32 childdrop; /* drops in child qdisc */ 651 __u32 marked; 652 __u32 maxqlen; 653 __u32 maxprob; 654 __u32 avgprob; 655 }; 656 657 #define SFB_MAX_PROB 0xFFFF 658 659 /* QFQ */ 660 enum { 661 TCA_QFQ_UNSPEC, 662 TCA_QFQ_WEIGHT, 663 TCA_QFQ_LMAX, 664 __TCA_QFQ_MAX 665 }; 666 667 #define TCA_QFQ_MAX (__TCA_QFQ_MAX - 1) 668 669 struct tc_qfq_stats { 670 __u32 weight; 671 __u32 lmax; 672 }; 673 674 /* CODEL */ 675 676 enum { 677 TCA_CODEL_UNSPEC, 678 TCA_CODEL_TARGET, 679 TCA_CODEL_LIMIT, 680 TCA_CODEL_INTERVAL, 681 TCA_CODEL_ECN, 682 __TCA_CODEL_MAX 683 }; 684 685 #define TCA_CODEL_MAX (__TCA_CODEL_MAX - 1) 686 687 struct tc_codel_xstats { 688 __u32 maxpacket; /* largest packet we've seen so far */ 689 __u32 count; /* how many drops we've done since the last time we 690 * entered dropping state 691 */ 692 __u32 lastcount; /* count at entry to dropping state */ 693 __u32 ldelay; /* in-queue delay seen by most recently dequeued packet */ 694 __s32 drop_next; /* time to drop next packet */ 695 __u32 drop_overlimit; /* number of time max qdisc packet limit was hit */ 696 __u32 ecn_mark; /* number of packets we ECN marked instead of dropped */ 697 __u32 dropping; /* are we in dropping state ? */ 698 }; 699 700 /* FQ_CODEL */ 701 702 enum { 703 TCA_FQ_CODEL_UNSPEC, 704 TCA_FQ_CODEL_TARGET, 705 TCA_FQ_CODEL_LIMIT, 706 TCA_FQ_CODEL_INTERVAL, 707 TCA_FQ_CODEL_ECN, 708 TCA_FQ_CODEL_FLOWS, 709 TCA_FQ_CODEL_QUANTUM, 710 __TCA_FQ_CODEL_MAX 711 }; 712 713 #define TCA_FQ_CODEL_MAX (__TCA_FQ_CODEL_MAX - 1) 714 715 enum { 716 TCA_FQ_CODEL_XSTATS_QDISC, 717 TCA_FQ_CODEL_XSTATS_CLASS, 718 }; 719 720 struct tc_fq_codel_qd_stats { 721 __u32 maxpacket; /* largest packet we've seen so far */ 722 __u32 drop_overlimit; /* number of time max qdisc 723 * packet limit was hit 724 */ 725 __u32 ecn_mark; /* number of packets we ECN marked 726 * instead of being dropped 727 */ 728 __u32 new_flow_count; /* number of time packets 729 * created a 'new flow' 730 */ 731 __u32 new_flows_len; /* count of flows in new list */ 732 __u32 old_flows_len; /* count of flows in old list */ 733 }; 734 735 struct tc_fq_codel_cl_stats { 736 __s32 deficit; 737 __u32 ldelay; /* in-queue delay seen by most recently 738 * dequeued packet 739 */ 740 __u32 count; 741 __u32 lastcount; 742 __u32 dropping; 743 __s32 drop_next; 744 }; 745 746 struct tc_fq_codel_xstats { 747 __u32 type; 748 union { 749 struct tc_fq_codel_qd_stats qdisc_stats; 750 struct tc_fq_codel_cl_stats class_stats; 751 }; 752 }; 753 754 /* FQ */ 755 756 enum { 757 TCA_FQ_UNSPEC, 758 759 TCA_FQ_PLIMIT, /* limit of total number of packets in queue */ 760 761 TCA_FQ_FLOW_PLIMIT, /* limit of packets per flow */ 762 763 TCA_FQ_QUANTUM, /* RR quantum */ 764 765 TCA_FQ_INITIAL_QUANTUM, /* RR quantum for new flow */ 766 767 TCA_FQ_RATE_ENABLE, /* enable/disable rate limiting */ 768 769 TCA_FQ_FLOW_DEFAULT_RATE,/* obsolete, do not use */ 770 771 TCA_FQ_FLOW_MAX_RATE, /* per flow max rate */ 772 773 TCA_FQ_BUCKETS_LOG, /* log2(number of buckets) */ 774 775 TCA_FQ_FLOW_REFILL_DELAY, /* flow credit refill delay in usec */ 776 777 __TCA_FQ_MAX 778 }; 779 780 #define TCA_FQ_MAX (__TCA_FQ_MAX - 1) 781 782 struct tc_fq_qd_stats { 783 __u64 gc_flows; 784 __u64 highprio_packets; 785 __u64 tcp_retrans; 786 __u64 throttled; 787 __u64 flows_plimit; 788 __u64 pkts_too_long; 789 __u64 allocation_errors; 790 __s64 time_next_delayed_flow; 791 __u32 flows; 792 __u32 inactive_flows; 793 __u32 throttled_flows; 794 __u32 pad; 795 }; 796 797 /* Heavy-Hitter Filter */ 798 799 enum { 800 TCA_HHF_UNSPEC, 801 TCA_HHF_BACKLOG_LIMIT, 802 TCA_HHF_QUANTUM, 803 TCA_HHF_HH_FLOWS_LIMIT, 804 TCA_HHF_RESET_TIMEOUT, 805 TCA_HHF_ADMIT_BYTES, 806 TCA_HHF_EVICT_TIMEOUT, 807 TCA_HHF_NON_HH_WEIGHT, 808 __TCA_HHF_MAX 809 }; 810 811 #define TCA_HHF_MAX (__TCA_HHF_MAX - 1) 812 813 struct tc_hhf_xstats { 814 __u32 drop_overlimit; /* number of times max qdisc packet limit 815 * was hit 816 */ 817 __u32 hh_overlimit; /* number of times max heavy-hitters was hit */ 818 __u32 hh_tot_count; /* number of captured heavy-hitters so far */ 819 __u32 hh_cur_count; /* number of current heavy-hitters */ 820 }; 821 822 /* PIE */ 823 enum { 824 TCA_PIE_UNSPEC, 825 TCA_PIE_TARGET, 826 TCA_PIE_LIMIT, 827 TCA_PIE_TUPDATE, 828 TCA_PIE_ALPHA, 829 TCA_PIE_BETA, 830 TCA_PIE_ECN, 831 TCA_PIE_BYTEMODE, 832 __TCA_PIE_MAX 833 }; 834 #define TCA_PIE_MAX (__TCA_PIE_MAX - 1) 835 836 struct tc_pie_xstats { 837 __u32 prob; /* current probability */ 838 __u32 delay; /* current delay in ms */ 839 __u32 avg_dq_rate; /* current average dq_rate in bits/pie_time */ 840 __u32 packets_in; /* total number of packets enqueued */ 841 __u32 dropped; /* packets dropped due to pie_action */ 842 __u32 overlimit; /* dropped due to lack of space in queue */ 843 __u32 maxq; /* maximum queue size */ 844 __u32 ecn_mark; /* packets marked with ecn*/ 845 }; 846 #endif 847