DPDK  25.11.0
rte_mbuf_core.h
Go to the documentation of this file.
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(c) 2010-2014 Intel Corporation.
3  * Copyright 2014 6WIND S.A.
4  */
5 
6 #ifndef _RTE_MBUF_CORE_H_
7 #define _RTE_MBUF_CORE_H_
8 
19 #include <stdalign.h>
20 #include <stdint.h>
21 
22 #include <rte_byteorder.h>
23 #include <rte_stdatomic.h>
24 
25 #ifdef __cplusplus
26 extern "C" {
27 #endif
28 
29 /*
30  * Packet Offload Features Flags. It also carry packet type information.
31  * Critical resources. Both rx/tx shared these bits. Be cautious on any change
32  *
33  * - RX flags start at bit position zero, and get added to the left of previous
34  * flags.
35  * - The most-significant 3 bits are reserved for generic mbuf flags
36  * - TX flags therefore start at bit position 60 (i.e. 63-3), and new flags get
37  * added to the right of the previously defined flags i.e. they should count
38  * downwards, not upwards.
39  *
40  * Keep these flags synchronized with rte_get_rx_ol_flag_name(), rte_get_rx_ol_flag_list(),
41  * rte_get_tx_ol_flag_name(), and rte_get_tx_ol_flag_list().
42  */
43 
51 #define RTE_MBUF_F_RX_VLAN (1ULL << 0)
52 
54 #define RTE_MBUF_F_RX_RSS_HASH (1ULL << 1)
55 
57 #define RTE_MBUF_F_RX_FDIR (1ULL << 2)
58 
63 #define RTE_MBUF_F_RX_OUTER_IP_CKSUM_BAD (1ULL << 5)
64 
71 #define RTE_MBUF_F_RX_VLAN_STRIPPED (1ULL << 6)
72 
81 #define RTE_MBUF_F_RX_IP_CKSUM_MASK ((1ULL << 4) | (1ULL << 7))
82 
83 #define RTE_MBUF_F_RX_IP_CKSUM_UNKNOWN 0
84 #define RTE_MBUF_F_RX_IP_CKSUM_BAD (1ULL << 4)
85 #define RTE_MBUF_F_RX_IP_CKSUM_GOOD (1ULL << 7)
86 #define RTE_MBUF_F_RX_IP_CKSUM_NONE ((1ULL << 4) | (1ULL << 7))
87 
96 #define RTE_MBUF_F_RX_L4_CKSUM_MASK ((1ULL << 3) | (1ULL << 8))
97 
98 #define RTE_MBUF_F_RX_L4_CKSUM_UNKNOWN 0
99 #define RTE_MBUF_F_RX_L4_CKSUM_BAD (1ULL << 3)
100 #define RTE_MBUF_F_RX_L4_CKSUM_GOOD (1ULL << 8)
101 #define RTE_MBUF_F_RX_L4_CKSUM_NONE ((1ULL << 3) | (1ULL << 8))
102 
104 #define RTE_MBUF_F_RX_IEEE1588_PTP (1ULL << 9)
105 
107 #define RTE_MBUF_F_RX_IEEE1588_TMST (1ULL << 10)
108 
110 #define RTE_MBUF_F_RX_FDIR_ID (1ULL << 13)
111 
113 #define RTE_MBUF_F_RX_FDIR_FLX (1ULL << 14)
114 
130 #define RTE_MBUF_F_RX_QINQ_STRIPPED (1ULL << 15)
131 
137 #define RTE_MBUF_F_RX_LRO (1ULL << 16)
138 
139 /* There is no flag defined at offset 17. It is free for any future use. */
140 
144 #define RTE_MBUF_F_RX_SEC_OFFLOAD (1ULL << 18)
145 
149 #define RTE_MBUF_F_RX_SEC_OFFLOAD_FAILED (1ULL << 19)
150 
159 #define RTE_MBUF_F_RX_QINQ (1ULL << 20)
160 
176 #define RTE_MBUF_F_RX_OUTER_L4_CKSUM_MASK ((1ULL << 21) | (1ULL << 22))
177 
178 #define RTE_MBUF_F_RX_OUTER_L4_CKSUM_UNKNOWN 0
179 #define RTE_MBUF_F_RX_OUTER_L4_CKSUM_BAD (1ULL << 21)
180 #define RTE_MBUF_F_RX_OUTER_L4_CKSUM_GOOD (1ULL << 22)
181 #define RTE_MBUF_F_RX_OUTER_L4_CKSUM_INVALID ((1ULL << 21) | (1ULL << 22))
182 
183 /*
184  * Add new Rx flags here.
185  * Don't forget to update RTE_MBUF_F_FIRST_FREE,
186  * rte_get_rx_ol_flag_name(), and rte_get_rx_ol_flag_list().
187  */
188 
189 #define RTE_MBUF_F_FIRST_FREE (1ULL << 23)
190 #define RTE_MBUF_F_LAST_FREE (1ULL << 40)
191 
192 /*
193  * Add new Tx flags here.
194  * Don't forget to update RTE_MBUF_F_LAST_FREE, RTE_MBUF_F_TX_OFFLOAD_MASK,
195  * rte_get_tx_ol_flag_name(), and rte_get_tx_ol_flag_list().
196  */
197 
207 #define RTE_MBUF_F_TX_OUTER_UDP_CKSUM (1ULL << 41)
208 
214 #define RTE_MBUF_F_TX_UDP_SEG (1ULL << 42)
215 
222 #define RTE_MBUF_F_TX_SEC_OFFLOAD (1ULL << 43)
223 
228 #define RTE_MBUF_F_TX_MACSEC (1ULL << 44)
229 
239 #define RTE_MBUF_F_TX_TUNNEL_VXLAN (0x1ULL << 45)
240 #define RTE_MBUF_F_TX_TUNNEL_GRE (0x2ULL << 45)
241 #define RTE_MBUF_F_TX_TUNNEL_IPIP (0x3ULL << 45)
242 #define RTE_MBUF_F_TX_TUNNEL_GENEVE (0x4ULL << 45)
244 #define RTE_MBUF_F_TX_TUNNEL_MPLSINUDP (0x5ULL << 45)
245 #define RTE_MBUF_F_TX_TUNNEL_VXLAN_GPE (0x6ULL << 45)
246 #define RTE_MBUF_F_TX_TUNNEL_GTP (0x7ULL << 45)
247 #define RTE_MBUF_F_TX_TUNNEL_ESP (0x8ULL << 45)
259 #define RTE_MBUF_F_TX_TUNNEL_IP (0xDULL << 45)
272 #define RTE_MBUF_F_TX_TUNNEL_UDP (0xEULL << 45)
273 /* add new TX TUNNEL type here */
274 #define RTE_MBUF_F_TX_TUNNEL_MASK (0xFULL << 45)
275 
281 #define RTE_MBUF_F_TX_QINQ (1ULL << 49)
282 
292 #define RTE_MBUF_F_TX_TCP_SEG (1ULL << 50)
293 
295 #define RTE_MBUF_F_TX_IEEE1588_TMST (1ULL << 51)
296 
297 /*
298  * Bits 52+53 used for L4 packet type with checksum enabled: 00: Reserved,
299  * 01: TCP checksum, 10: SCTP checksum, 11: UDP checksum. To use hardware
300  * L4 checksum offload, the user needs to:
301  * - fill l2_len and l3_len in mbuf
302  * - set the flags RTE_MBUF_F_TX_TCP_CKSUM, RTE_MBUF_F_TX_SCTP_CKSUM or
303  * RTE_MBUF_F_TX_UDP_CKSUM
304  * - set the flag RTE_MBUF_F_TX_IPV4 or RTE_MBUF_F_TX_IPV6
305  */
306 
308 #define RTE_MBUF_F_TX_L4_NO_CKSUM (0ULL << 52)
309 
311 #define RTE_MBUF_F_TX_TCP_CKSUM (1ULL << 52)
312 
314 #define RTE_MBUF_F_TX_SCTP_CKSUM (2ULL << 52)
315 
317 #define RTE_MBUF_F_TX_UDP_CKSUM (3ULL << 52)
318 
320 #define RTE_MBUF_F_TX_L4_MASK (3ULL << 52)
321 
328 #define RTE_MBUF_F_TX_IP_CKSUM (1ULL << 54)
329 
336 #define RTE_MBUF_F_TX_IPV4 (1ULL << 55)
337 
344 #define RTE_MBUF_F_TX_IPV6 (1ULL << 56)
345 
351 #define RTE_MBUF_F_TX_VLAN (1ULL << 57)
352 
359 #define RTE_MBUF_F_TX_OUTER_IP_CKSUM (1ULL << 58)
360 
366 #define RTE_MBUF_F_TX_OUTER_IPV4 (1ULL << 59)
367 
373 #define RTE_MBUF_F_TX_OUTER_IPV6 (1ULL << 60)
374 
379 #define RTE_MBUF_F_TX_OFFLOAD_MASK ( \
380  RTE_MBUF_F_TX_OUTER_IPV6 | \
381  RTE_MBUF_F_TX_OUTER_IPV4 | \
382  RTE_MBUF_F_TX_OUTER_IP_CKSUM | \
383  RTE_MBUF_F_TX_VLAN | \
384  RTE_MBUF_F_TX_IPV6 | \
385  RTE_MBUF_F_TX_IPV4 | \
386  RTE_MBUF_F_TX_IP_CKSUM | \
387  RTE_MBUF_F_TX_L4_MASK | \
388  RTE_MBUF_F_TX_IEEE1588_TMST | \
389  RTE_MBUF_F_TX_TCP_SEG | \
390  RTE_MBUF_F_TX_QINQ | \
391  RTE_MBUF_F_TX_TUNNEL_MASK | \
392  RTE_MBUF_F_TX_MACSEC | \
393  RTE_MBUF_F_TX_SEC_OFFLOAD | \
394  RTE_MBUF_F_TX_UDP_SEG | \
395  RTE_MBUF_F_TX_OUTER_UDP_CKSUM)
396 
400 #define RTE_MBUF_F_EXTERNAL (1ULL << 61)
401 
402 #define RTE_MBUF_F_INDIRECT (1ULL << 62)
405 #define RTE_MBUF_PRIV_ALIGN 8
406 
413 #define RTE_MBUF_DEFAULT_DATAROOM 2048
414 #define RTE_MBUF_DEFAULT_BUF_SIZE \
415  (RTE_MBUF_DEFAULT_DATAROOM + RTE_PKTMBUF_HEADROOM)
416 
418  uint32_t queue_id;
419  uint8_t traffic_class;
423  uint8_t color;
425  uint16_t reserved;
426 };
432 enum {
433  RTE_MBUF_L2_LEN_BITS = 7,
434  RTE_MBUF_L3_LEN_BITS = 9,
435  RTE_MBUF_L4_LEN_BITS = 8,
436  RTE_MBUF_TSO_SEGSZ_BITS = 16,
437  RTE_MBUF_OUTL3_LEN_BITS = 9,
438  RTE_MBUF_OUTL2_LEN_BITS = 7,
439  RTE_MBUF_TXOFLD_UNUSED_BITS = sizeof(uint64_t) * CHAR_BIT -
440  RTE_MBUF_L2_LEN_BITS -
441  RTE_MBUF_L3_LEN_BITS -
442  RTE_MBUF_L4_LEN_BITS -
443  RTE_MBUF_TSO_SEGSZ_BITS -
444  RTE_MBUF_OUTL3_LEN_BITS -
445  RTE_MBUF_OUTL2_LEN_BITS,
446 #if RTE_BYTE_ORDER == RTE_BIG_ENDIAN
447  RTE_MBUF_L2_LEN_OFS =
448  sizeof(uint64_t) * CHAR_BIT - RTE_MBUF_L2_LEN_BITS,
449  RTE_MBUF_L3_LEN_OFS = RTE_MBUF_L2_LEN_OFS - RTE_MBUF_L3_LEN_BITS,
450  RTE_MBUF_L4_LEN_OFS = RTE_MBUF_L3_LEN_OFS - RTE_MBUF_L4_LEN_BITS,
451  RTE_MBUF_TSO_SEGSZ_OFS = RTE_MBUF_L4_LEN_OFS - RTE_MBUF_TSO_SEGSZ_BITS,
452  RTE_MBUF_OUTL3_LEN_OFS =
453  RTE_MBUF_TSO_SEGSZ_OFS - RTE_MBUF_OUTL3_LEN_BITS,
454  RTE_MBUF_OUTL2_LEN_OFS =
455  RTE_MBUF_OUTL3_LEN_OFS - RTE_MBUF_OUTL2_LEN_BITS,
456  RTE_MBUF_TXOFLD_UNUSED_OFS =
457  RTE_MBUF_OUTL2_LEN_OFS - RTE_MBUF_TXOFLD_UNUSED_BITS,
458 #else
459  RTE_MBUF_L2_LEN_OFS = 0,
460  RTE_MBUF_L3_LEN_OFS = RTE_MBUF_L2_LEN_OFS + RTE_MBUF_L2_LEN_BITS,
461  RTE_MBUF_L4_LEN_OFS = RTE_MBUF_L3_LEN_OFS + RTE_MBUF_L3_LEN_BITS,
462  RTE_MBUF_TSO_SEGSZ_OFS = RTE_MBUF_L4_LEN_OFS + RTE_MBUF_L4_LEN_BITS,
463  RTE_MBUF_OUTL3_LEN_OFS =
464  RTE_MBUF_TSO_SEGSZ_OFS + RTE_MBUF_TSO_SEGSZ_BITS,
465  RTE_MBUF_OUTL2_LEN_OFS =
466  RTE_MBUF_OUTL3_LEN_OFS + RTE_MBUF_OUTL3_LEN_BITS,
467  RTE_MBUF_TXOFLD_UNUSED_OFS =
468  RTE_MBUF_OUTL2_LEN_OFS + RTE_MBUF_OUTL2_LEN_BITS,
469 #endif
470 };
471 
476  void *buf_addr;
477 #if RTE_IOVA_IN_MBUF
486  alignas(sizeof(rte_iova_t)) rte_iova_t buf_iova;
487 #else
493  struct rte_mbuf *next;
494 #endif
495 
496  /*
497  * Next 8 bytes are initialised on Rx descriptor rearm,
498  * or on Rx when pulling packet from descriptor.
499  */
500  union {
501  uint64_t rearm_data[1];
502  __extension__
503  struct {
504  uint16_t data_off;
505 
514  RTE_ATOMIC(uint16_t) refcnt;
515 
520  uint16_t nb_segs;
521 
525  uint16_t port;
526  };
527  };
528 
529  uint64_t ol_flags;
531  /* Remaining 24 bytes are set on Rx when pulling packet from descriptor. */
532  union {
533  /* void * type of the array elements is retained for driver compatibility. */
534  void *rx_descriptor_fields1[24 / sizeof(void *)];
535  __extension__
536  struct {
537  /*
538  * The packet type, which is the combination of outer/inner L2, L3, L4
539  * and tunnel types. The packet_type is about data really present in the
540  * mbuf. Example: if vlan stripping is enabled, a received vlan packet
541  * would have RTE_PTYPE_L2_ETHER and not RTE_PTYPE_L2_VLAN because the
542  * vlan is stripped from the data.
543  */
544  union {
545  uint32_t packet_type;
546  __extension__
547  struct {
548  uint8_t l2_type:4;
549  uint8_t l3_type:4;
550  uint8_t l4_type:4;
551  uint8_t tun_type:4;
552  union {
558  __extension__
559  struct {
560  uint8_t inner_l2_type:4;
562  uint8_t inner_l3_type:4;
564  };
565  };
566  uint8_t inner_l4_type:4;
567  };
568  };
569 
570  uint32_t pkt_len;
571  uint16_t data_len;
573  uint16_t vlan_tci;
574 
575  union {
576  union {
577  uint32_t rss;
578  struct {
579  union {
580  struct {
581  uint16_t hash;
582  uint16_t id;
583  };
584  uint32_t lo;
586  };
587  uint32_t hi;
591  } fdir;
592  struct rte_mbuf_sched sched;
594  struct {
595  uint32_t reserved1;
596  uint16_t reserved2;
597  uint16_t txq;
602  } txadapter;
603  uint32_t usr;
605  } hash;
606  };
607 
609  uint16_t vlan_tci_outer;
610 
611  uint16_t buf_len;
612  };
613  };
614 
615  struct rte_mempool *pool;
617  /*
618  * Second cache line - fields only used in slow path or on Tx.
619  * In special cases, some of these fields are also set on Rx,
620  * most notably the 'next' field is set on Rx scattered packets.
621  */
622 #if RTE_IOVA_IN_MBUF
627  alignas(RTE_CACHE_LINE_MIN_SIZE)
628  struct rte_mbuf *next;
629 #else
634  alignas(RTE_CACHE_LINE_MIN_SIZE)
635  uint64_t dynfield2;
636 #endif
637 
638  /* fields to support TX offloads */
639  union {
640  uint64_t tx_offload;
641  __extension__
642  struct {
643  uint64_t l2_len:RTE_MBUF_L2_LEN_BITS;
647  uint64_t l3_len:RTE_MBUF_L3_LEN_BITS;
649  uint64_t l4_len:RTE_MBUF_L4_LEN_BITS;
651  uint64_t tso_segsz:RTE_MBUF_TSO_SEGSZ_BITS;
654  /*
655  * Fields for Tx offloading of tunnels.
656  * These are undefined for packets which don't request
657  * any tunnel offloads (outer IP or UDP checksum,
658  * tunnel TSO).
659  *
660  * PMDs should not use these fields unconditionally
661  * when calculating offsets.
662  *
663  * Applications are expected to set appropriate tunnel
664  * offload flags when they fill in these fields.
665  */
666  uint64_t outer_l3_len:RTE_MBUF_OUTL3_LEN_BITS;
668  uint64_t outer_l2_len:RTE_MBUF_OUTL2_LEN_BITS;
671  /* uint64_t unused:RTE_MBUF_TXOFLD_UNUSED_BITS; */
672  };
673  };
674 
679 
683  uint16_t priv_size;
684 
686  uint16_t timesync;
687 
688  uint32_t dynfield1[9];
689 };
690 
694 typedef void (*rte_mbuf_extbuf_free_callback_t)(void *addr, void *opaque);
695 
701  void *fcb_opaque;
702  RTE_ATOMIC(uint16_t) refcnt;
703 };
704 
706 #define RTE_MBUF_MAX_NB_SEGS UINT16_MAX
707 
715 #define RTE_MBUF_CLONED(mb) ((mb)->ol_flags & RTE_MBUF_F_INDIRECT)
716 
722 #define RTE_MBUF_HAS_EXTBUF(mb) ((mb)->ol_flags & RTE_MBUF_F_EXTERNAL)
723 
756 #ifdef __DOXYGEN__
757 #define RTE_MBUF_DIRECT(mb) \
758  !(((const char *)(&(mb)->ol_flags))[MSB_OFFSET /* 7 or 0, depending on endianness */] & \
759  (char)((RTE_MBUF_F_INDIRECT | RTE_MBUF_F_EXTERNAL) >> (7 * CHAR_BIT)) /* 0x60 */)
760 #else /* !__DOXYGEN__ */
761 #if RTE_BYTE_ORDER == RTE_LITTLE_ENDIAN
762 /* On little endian architecture, the MSB of a 64-bit integer is at byte offset 7. */
763 #define RTE_MBUF_DIRECT(mb) !(((const char *)(&(mb)->ol_flags))[7] & 0x60)
764 #elif RTE_BYTE_ORDER == RTE_BIG_ENDIAN
765 /* On big endian architecture, the MSB of a 64-bit integer is at byte offset 0. */
766 #define RTE_MBUF_DIRECT(mb) !(((const char *)(&(mb)->ol_flags))[0] & 0x60)
767 #endif /* RTE_BYTE_ORDER */
768 #endif /* !__DOXYGEN__ */
769 /* Verify the optimization above. */
770 static_assert((RTE_MBUF_F_INDIRECT | RTE_MBUF_F_EXTERNAL) == UINT64_C(0x60) << (7 * CHAR_BIT),
771  "(RTE_MBUF_F_INDIRECT | RTE_MBUF_F_EXTERNAL) is not 0x60 at MSB");
772 
774 #define RTE_MBUF_PORT_INVALID UINT16_MAX
776 #define MBUF_INVALID_PORT RTE_MBUF_PORT_INVALID
777 
792 #define rte_pktmbuf_mtod_offset(m, t, o) \
793  ((t)(void *)((char *)(m)->buf_addr + (m)->data_off + (o)))
794 
807 #define rte_pktmbuf_mtod(m, t) rte_pktmbuf_mtod_offset(m, t, 0)
808 
818 #define rte_pktmbuf_iova_offset(m, o) \
819  (rte_iova_t)(rte_mbuf_iova_get(m) + (m)->data_off + (o))
820 
828 #define rte_pktmbuf_iova(m) rte_pktmbuf_iova_offset(m, 0)
829 
830 #ifdef __cplusplus
831 }
832 #endif
833 
834 #endif /* _RTE_MBUF_CORE_H_ */
#define RTE_CACHE_LINE_MIN_SIZE
Definition: rte_common.h:736
uint64_t rte_iova_t
Definition: rte_common.h:770
#define __rte_cache_aligned
Definition: rte_common.h:739
#define RTE_MBUF_F_EXTERNAL
void(* rte_mbuf_extbuf_free_callback_t)(void *addr, void *opaque)
#define RTE_MBUF_F_INDIRECT
rte_mbuf_extbuf_free_callback_t free_cb
uint16_t reserved
uint32_t queue_id
uint8_t traffic_class
uint8_t inner_l2_type
uint64_t ol_flags
uint64_t l4_len
uint16_t nb_segs
uint16_t vlan_tci
uint16_t txq
uint16_t priv_size
uint32_t pkt_len
uint8_t tun_type
uint8_t l3_type
uint16_t timesync
uint32_t usr
uint16_t buf_len
uint64_t l3_len
struct rte_mbuf_ext_shared_info * shinfo
uint8_t inner_l4_type
uint32_t packet_type
uint16_t port
uint8_t inner_l3_type
void * buf_addr
uint64_t l2_len
uint32_t rss
struct rte_mempool * pool
uint32_t hi
uint64_t outer_l3_len
uint8_t l4_type
uint16_t vlan_tci_outer
struct rte_mbuf * next
uint64_t tx_offload
uint16_t data_len
uint64_t tso_segsz
uint8_t inner_esp_next_proto
uint8_t l2_type
uint64_t outer_l2_len
uint16_t refcnt
uint32_t lo