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https://github.com/openvswitch/ovs
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We already have the 'dp_hash' embedded in the metadata. This caused confusion in the code. With this commit it should be clear that 'rss_hash' is the packet hash used for internal purposes, while 'md.dp_hash' is part of the flow, computed during the execution of certain actions. Signed-off-by: Daniele Di Proietto <diproiettod@vmware.com> Acked-by: Ethan Jackson <ethan@nicira.com>
511 lines
18 KiB
C
511 lines
18 KiB
C
/*
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* Copyright (c) 2008, 2009, 2010, 2011, 2012, 2013 Nicira, Inc.
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at:
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#ifndef DPBUF_H
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#define DPBUF_H 1
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#include <stddef.h>
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#include <stdint.h>
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#include "list.h"
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#include "packets.h"
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#include "util.h"
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#include "netdev-dpdk.h"
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#ifdef __cplusplus
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extern "C" {
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#endif
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enum OVS_PACKED_ENUM dp_packet_source {
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DPBUF_MALLOC, /* Obtained via malloc(). */
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DPBUF_STACK, /* Un-movable stack space or static buffer. */
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DPBUF_STUB, /* Starts on stack, may expand into heap. */
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DPBUF_DPDK, /* buffer data is from DPDK allocated memory.
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ref to build_dp_packet() in netdev-dpdk. */
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};
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/* Buffer for holding arbitrary data. An dp_packet is automatically reallocated
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* as necessary if it grows too large for the available memory.
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*
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* 'frame' and offset conventions:
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*
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* Network frames (aka "packets"): 'frame' MUST be set to the start of the
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* packet, layer offsets MAY be set as appropriate for the packet.
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* Additionally, we assume in many places that the 'frame' and 'data' are
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* the same for packets.
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*
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* OpenFlow messages: 'frame' points to the start of the OpenFlow
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* header, while 'l3_ofs' is the length of the OpenFlow header.
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* When parsing, the 'data' will move past these, as data is being
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* pulled from the OpenFlow message.
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*
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* Actions: When encoding OVS action lists, the 'frame' is used
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* as a pointer to the beginning of the current action (see ofpact_put()).
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*
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* rconn: Reuses 'frame' as a private pointer while queuing.
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*/
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struct dp_packet {
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#ifdef DPDK_NETDEV
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struct rte_mbuf mbuf; /* DPDK mbuf */
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#else
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void *base_; /* First byte of allocated space. */
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uint16_t data_ofs; /* First byte actually in use. */
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uint32_t size_; /* Number of bytes in use. */
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uint32_t rss_hash; /* Packet hash. */
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#endif
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uint32_t allocated; /* Number of bytes allocated. */
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void *frame; /* Packet frame start, or NULL. */
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enum dp_packet_source source; /* Source of memory allocated as 'base'. */
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uint8_t l2_pad_size; /* Detected l2 padding size.
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* Padding is non-pullable. */
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uint16_t l2_5_ofs; /* MPLS label stack offset from 'frame', or
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* UINT16_MAX */
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uint16_t l3_ofs; /* Network-level header offset from 'frame',
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or UINT16_MAX. */
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uint16_t l4_ofs; /* Transport-level header offset from 'frame',
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or UINT16_MAX. */
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struct pkt_metadata md;
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struct ovs_list list_node; /* Private list element for use by owner. */
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};
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static inline void * dp_packet_data(const struct dp_packet *);
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static inline void dp_packet_set_data(struct dp_packet *, void *);
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static inline void * dp_packet_base(const struct dp_packet *);
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static inline void dp_packet_set_base(struct dp_packet *, void *);
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static inline uint32_t dp_packet_size(const struct dp_packet *);
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static inline void dp_packet_set_size(struct dp_packet *, uint32_t);
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void * dp_packet_resize_l2(struct dp_packet *, int increment);
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void * dp_packet_resize_l2_5(struct dp_packet *, int increment);
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static inline void * dp_packet_l2(const struct dp_packet *);
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static inline void dp_packet_set_frame(struct dp_packet *, void *);
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static inline uint8_t dp_packet_l2_pad_size(const struct dp_packet *);
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static inline void dp_packet_set_l2_pad_size(struct dp_packet *, uint8_t);
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static inline void * dp_packet_l2_5(const struct dp_packet *);
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static inline void dp_packet_set_l2_5(struct dp_packet *, void *);
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static inline void * dp_packet_l3(const struct dp_packet *);
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static inline void dp_packet_set_l3(struct dp_packet *, void *);
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static inline void * dp_packet_l4(const struct dp_packet *);
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static inline void dp_packet_set_l4(struct dp_packet *, void *);
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static inline size_t dp_packet_l4_size(const struct dp_packet *);
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static inline const void *dp_packet_get_tcp_payload(const struct dp_packet *);
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static inline const void *dp_packet_get_udp_payload(const struct dp_packet *);
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static inline const void *dp_packet_get_sctp_payload(const struct dp_packet *);
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static inline const void *dp_packet_get_icmp_payload(const struct dp_packet *);
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static inline const void *dp_packet_get_nd_payload(const struct dp_packet *);
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void dp_packet_use(struct dp_packet *, void *, size_t);
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void dp_packet_use_stub(struct dp_packet *, void *, size_t);
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void dp_packet_use_const(struct dp_packet *, const void *, size_t);
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void dp_packet_init_dpdk(struct dp_packet *b, size_t allocated);
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void dp_packet_init(struct dp_packet *, size_t);
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void dp_packet_uninit(struct dp_packet *);
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static inline void *dp_packet_get_uninit_pointer(struct dp_packet *);
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struct dp_packet *dp_packet_new(size_t);
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struct dp_packet *dp_packet_new_with_headroom(size_t, size_t headroom);
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struct dp_packet *dp_packet_clone(const struct dp_packet *);
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struct dp_packet *dp_packet_clone_with_headroom(const struct dp_packet *,
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size_t headroom);
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struct dp_packet *dp_packet_clone_data(const void *, size_t);
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struct dp_packet *dp_packet_clone_data_with_headroom(const void *, size_t,
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size_t headroom);
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static inline void dp_packet_delete(struct dp_packet *);
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static inline void *dp_packet_at(const struct dp_packet *, size_t offset,
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size_t size);
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static inline void *dp_packet_at_assert(const struct dp_packet *, size_t offset,
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size_t size);
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static inline void *dp_packet_tail(const struct dp_packet *);
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static inline void *dp_packet_end(const struct dp_packet *);
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void *dp_packet_put_uninit(struct dp_packet *, size_t);
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void *dp_packet_put_zeros(struct dp_packet *, size_t);
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void *dp_packet_put(struct dp_packet *, const void *, size_t);
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char *dp_packet_put_hex(struct dp_packet *, const char *s, size_t *n);
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void dp_packet_reserve(struct dp_packet *, size_t);
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void dp_packet_reserve_with_tailroom(struct dp_packet *b, size_t headroom,
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size_t tailroom);
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void *dp_packet_push_uninit(struct dp_packet *b, size_t);
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void *dp_packet_push_zeros(struct dp_packet *, size_t);
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void *dp_packet_push(struct dp_packet *b, const void *, size_t);
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static inline size_t dp_packet_headroom(const struct dp_packet *);
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static inline size_t dp_packet_tailroom(const struct dp_packet *);
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void dp_packet_prealloc_headroom(struct dp_packet *, size_t);
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void dp_packet_prealloc_tailroom(struct dp_packet *, size_t);
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void dp_packet_shift(struct dp_packet *, int);
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static inline void dp_packet_clear(struct dp_packet *);
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static inline void *dp_packet_pull(struct dp_packet *, size_t);
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static inline void *dp_packet_try_pull(struct dp_packet *, size_t);
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void *dp_packet_steal_data(struct dp_packet *);
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char *dp_packet_to_string(const struct dp_packet *, size_t maxbytes);
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static inline struct dp_packet *dp_packet_from_list(const struct ovs_list *);
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void dp_packet_list_delete(struct ovs_list *);
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static inline bool dp_packet_equal(const struct dp_packet *, const struct dp_packet *);
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/* Returns a pointer that may be passed to free() to accomplish the same thing
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* as dp_packet_uninit(b). The return value is a null pointer if dp_packet_uninit()
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* would not free any memory. */
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static inline void *dp_packet_get_uninit_pointer(struct dp_packet *b)
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{
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/* XXX: If 'source' is DPBUF_DPDK memory gets leaked! */
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return b && b->source == DPBUF_MALLOC ? dp_packet_base(b) : NULL;
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}
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/* Frees memory that 'b' points to, as well as 'b' itself. */
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static inline void dp_packet_delete(struct dp_packet *b)
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{
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if (b) {
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if (b->source == DPBUF_DPDK) {
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/* If this dp_packet was allocated by DPDK it must have been
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* created as a dp_packet */
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free_dpdk_buf((struct dp_packet*) b);
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return;
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}
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dp_packet_uninit(b);
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free(b);
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}
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}
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/* If 'b' contains at least 'offset + size' bytes of data, returns a pointer to
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* byte 'offset'. Otherwise, returns a null pointer. */
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static inline void *dp_packet_at(const struct dp_packet *b, size_t offset,
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size_t size)
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{
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return offset + size <= dp_packet_size(b) ? (char *) dp_packet_data(b) + offset : NULL;
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}
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/* Returns a pointer to byte 'offset' in 'b', which must contain at least
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* 'offset + size' bytes of data. */
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static inline void *dp_packet_at_assert(const struct dp_packet *b, size_t offset,
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size_t size)
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{
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ovs_assert(offset + size <= dp_packet_size(b));
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return ((char *) dp_packet_data(b)) + offset;
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}
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/* Returns a pointer to byte following the last byte of data in use in 'b'. */
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static inline void *dp_packet_tail(const struct dp_packet *b)
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{
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return (char *) dp_packet_data(b) + dp_packet_size(b);
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}
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/* Returns a pointer to byte following the last byte allocated for use (but
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* not necessarily in use) in 'b'. */
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static inline void *dp_packet_end(const struct dp_packet *b)
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{
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return (char *) dp_packet_base(b) + b->allocated;
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}
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/* Returns the number of bytes of headroom in 'b', that is, the number of bytes
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* of unused space in dp_packet 'b' before the data that is in use. (Most
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* commonly, the data in a dp_packet is at its beginning, and thus the dp_packet's
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* headroom is 0.) */
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static inline size_t dp_packet_headroom(const struct dp_packet *b)
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{
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return (char*)dp_packet_data(b) - (char*)dp_packet_base(b);
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}
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/* Returns the number of bytes that may be appended to the tail end of dp_packet
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* 'b' before the dp_packet must be reallocated. */
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static inline size_t dp_packet_tailroom(const struct dp_packet *b)
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{
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return (char*)dp_packet_end(b) - (char*)dp_packet_tail(b);
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}
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/* Clears any data from 'b'. */
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static inline void dp_packet_clear(struct dp_packet *b)
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{
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dp_packet_set_data(b, dp_packet_base(b));
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dp_packet_set_size(b, 0);
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}
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/* Removes 'size' bytes from the head end of 'b', which must contain at least
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* 'size' bytes of data. Returns the first byte of data removed. */
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static inline void *dp_packet_pull(struct dp_packet *b, size_t size)
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{
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void *data = dp_packet_data(b);
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ovs_assert(dp_packet_size(b) - dp_packet_l2_pad_size(b) >= size);
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dp_packet_set_data(b, (char*)dp_packet_data(b) + size);
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dp_packet_set_size(b, dp_packet_size(b) - size);
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return data;
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}
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/* If 'b' has at least 'size' bytes of data, removes that many bytes from the
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* head end of 'b' and returns the first byte removed. Otherwise, returns a
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* null pointer without modifying 'b'. */
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static inline void *dp_packet_try_pull(struct dp_packet *b, size_t size)
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{
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return dp_packet_size(b) - dp_packet_l2_pad_size(b) >= size
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? dp_packet_pull(b, size) : NULL;
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}
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static inline struct dp_packet *dp_packet_from_list(const struct ovs_list *list)
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{
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return CONTAINER_OF(list, struct dp_packet, list_node);
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}
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static inline bool dp_packet_equal(const struct dp_packet *a, const struct dp_packet *b)
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{
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return dp_packet_size(a) == dp_packet_size(b) &&
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memcmp(dp_packet_data(a), dp_packet_data(b), dp_packet_size(a)) == 0;
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}
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/* Get the start if the Ethernet frame. 'l3_ofs' marks the end of the l2
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* headers, so return NULL if it is not set. */
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static inline void * dp_packet_l2(const struct dp_packet *b)
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{
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return (b->l3_ofs != UINT16_MAX) ? b->frame : NULL;
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}
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/* Sets the packet frame start pointer and resets all layer offsets.
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* l3 offset must be set before 'l2' can be retrieved. */
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static inline void dp_packet_set_frame(struct dp_packet *b, void *packet)
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{
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b->frame = packet;
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b->l2_pad_size = 0;
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b->l2_5_ofs = UINT16_MAX;
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b->l3_ofs = UINT16_MAX;
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b->l4_ofs = UINT16_MAX;
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}
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static inline uint8_t dp_packet_l2_pad_size(const struct dp_packet *b)
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{
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return b->l2_pad_size;
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}
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static inline void dp_packet_set_l2_pad_size(struct dp_packet *b, uint8_t pad_size)
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{
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ovs_assert(pad_size <= dp_packet_size(b));
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b->l2_pad_size = pad_size;
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}
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static inline void * dp_packet_l2_5(const struct dp_packet *b)
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{
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return b->l2_5_ofs != UINT16_MAX ? (char *)b->frame + b->l2_5_ofs : NULL;
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}
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static inline void dp_packet_set_l2_5(struct dp_packet *b, void *l2_5)
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{
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b->l2_5_ofs = l2_5 ? (char *)l2_5 - (char *)b->frame : UINT16_MAX;
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}
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static inline void * dp_packet_l3(const struct dp_packet *b)
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{
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return b->l3_ofs != UINT16_MAX ? (char *)b->frame + b->l3_ofs : NULL;
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}
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static inline void dp_packet_set_l3(struct dp_packet *b, void *l3)
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{
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b->l3_ofs = l3 ? (char *)l3 - (char *)b->frame : UINT16_MAX;
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}
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static inline void * dp_packet_l4(const struct dp_packet *b)
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{
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return b->l4_ofs != UINT16_MAX ? (char *)b->frame + b->l4_ofs : NULL;
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}
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static inline void dp_packet_set_l4(struct dp_packet *b, void *l4)
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{
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b->l4_ofs = l4 ? (char *)l4 - (char *)b->frame : UINT16_MAX;
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}
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static inline size_t dp_packet_l4_size(const struct dp_packet *b)
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{
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return b->l4_ofs != UINT16_MAX
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? (const char *)dp_packet_tail(b) - (const char *)dp_packet_l4(b)
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- dp_packet_l2_pad_size(b)
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: 0;
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}
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static inline const void *dp_packet_get_tcp_payload(const struct dp_packet *b)
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{
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size_t l4_size = dp_packet_l4_size(b);
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if (OVS_LIKELY(l4_size >= TCP_HEADER_LEN)) {
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struct tcp_header *tcp = dp_packet_l4(b);
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int tcp_len = TCP_OFFSET(tcp->tcp_ctl) * 4;
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if (OVS_LIKELY(tcp_len >= TCP_HEADER_LEN && tcp_len <= l4_size)) {
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return (const char *)tcp + tcp_len;
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}
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}
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return NULL;
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}
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static inline const void *dp_packet_get_udp_payload(const struct dp_packet *b)
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{
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return OVS_LIKELY(dp_packet_l4_size(b) >= UDP_HEADER_LEN)
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? (const char *)dp_packet_l4(b) + UDP_HEADER_LEN : NULL;
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}
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static inline const void *dp_packet_get_sctp_payload(const struct dp_packet *b)
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{
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return OVS_LIKELY(dp_packet_l4_size(b) >= SCTP_HEADER_LEN)
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? (const char *)dp_packet_l4(b) + SCTP_HEADER_LEN : NULL;
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}
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static inline const void *dp_packet_get_icmp_payload(const struct dp_packet *b)
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{
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return OVS_LIKELY(dp_packet_l4_size(b) >= ICMP_HEADER_LEN)
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? (const char *)dp_packet_l4(b) + ICMP_HEADER_LEN : NULL;
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}
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static inline const void *dp_packet_get_nd_payload(const struct dp_packet *b)
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{
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return OVS_LIKELY(dp_packet_l4_size(b) >= ND_MSG_LEN)
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? (const char *)dp_packet_l4(b) + ND_MSG_LEN : NULL;
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}
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#ifdef DPDK_NETDEV
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BUILD_ASSERT_DECL(offsetof(struct dp_packet, mbuf) == 0);
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static inline void * dp_packet_base(const struct dp_packet *b)
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{
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return b->mbuf.buf_addr;
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}
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static inline void dp_packet_set_base(struct dp_packet *b, void *d)
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{
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b->mbuf.buf_addr = d;
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}
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static inline uint32_t dp_packet_size(const struct dp_packet *b)
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{
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return b->mbuf.pkt_len;
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}
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static inline void dp_packet_set_size(struct dp_packet *b, uint32_t v)
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{
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/* netdev-dpdk does not currently support segmentation; consequently, for
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* all intents and purposes, 'data_len' (16 bit) and 'pkt_len' (32 bit) may
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* be used interchangably.
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*
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* On the datapath, it is expected that the size of packets
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* (and thus 'v') will always be <= UINT16_MAX; this means that there is no
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* loss of accuracy in assigning 'v' to 'data_len'.
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*
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* However, control ofpbufs may well be larger than UINT16_MAX (i.e. 'v' >
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* UINT16_MAX); even though the value is truncated when assigned to
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* 'data_len', loss of accuracy is avoided in this situation by using
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* 'pkt_len' to represent the packet size.
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*/
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b->mbuf.data_len = (uint16_t)v; /* Current seg length. */
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b->mbuf.pkt_len = v; /* Total length of all segments linked to
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* this segment. */
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}
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||
static inline uint16_t __packet_data(const struct dp_packet *b)
|
||
{
|
||
return b->mbuf.data_off;
|
||
}
|
||
|
||
static inline void __packet_set_data(struct dp_packet *b, uint16_t v)
|
||
{
|
||
b->mbuf.data_off = v;
|
||
}
|
||
|
||
#else
|
||
static inline void * dp_packet_base(const struct dp_packet *b)
|
||
{
|
||
return b->base_;
|
||
}
|
||
|
||
static inline void dp_packet_set_base(struct dp_packet *b, void *d)
|
||
{
|
||
b->base_ = d;
|
||
}
|
||
|
||
static inline uint32_t dp_packet_size(const struct dp_packet *b)
|
||
{
|
||
return b->size_;
|
||
}
|
||
|
||
static inline void dp_packet_set_size(struct dp_packet *b, uint32_t v)
|
||
{
|
||
b->size_ = v;
|
||
}
|
||
|
||
static inline uint16_t __packet_data(const struct dp_packet *b)
|
||
{
|
||
return b->data_ofs;
|
||
}
|
||
|
||
static inline void __packet_set_data(struct dp_packet *b, uint16_t v)
|
||
{
|
||
b->data_ofs = v;
|
||
}
|
||
|
||
#endif
|
||
|
||
static inline void * dp_packet_data(const struct dp_packet *b)
|
||
{
|
||
return __packet_data(b) != UINT16_MAX ?
|
||
(char *)dp_packet_base(b) + __packet_data(b) : NULL;
|
||
}
|
||
|
||
static inline void dp_packet_set_data(struct dp_packet *b, void *data)
|
||
{
|
||
if (data) {
|
||
__packet_set_data(b, (char *)data - (char *)dp_packet_base(b));
|
||
} else {
|
||
__packet_set_data(b, UINT16_MAX);
|
||
}
|
||
}
|
||
|
||
static inline void dp_packet_reset_packet(struct dp_packet *b, int off)
|
||
{
|
||
dp_packet_set_size(b, dp_packet_size(b) - off);
|
||
dp_packet_set_data(b, (void *) ((unsigned char *) b->frame + off));
|
||
b->frame = NULL;
|
||
b->l2_5_ofs = b->l3_ofs = b->l4_ofs = UINT16_MAX;
|
||
}
|
||
|
||
static inline uint32_t dp_packet_get_rss_hash(struct dp_packet *p)
|
||
{
|
||
#ifdef DPDK_NETDEV
|
||
return p->mbuf.hash.rss;
|
||
#else
|
||
return p->rss_hash;
|
||
#endif
|
||
}
|
||
|
||
static inline void dp_packet_set_rss_hash(struct dp_packet *p,
|
||
uint32_t hash)
|
||
{
|
||
#ifdef DPDK_NETDEV
|
||
p->mbuf.hash.rss = hash;
|
||
#else
|
||
p->rss_hash = hash;
|
||
#endif
|
||
}
|
||
|
||
#ifdef __cplusplus
|
||
}
|
||
#endif
|
||
|
||
#endif /* dp-packet.h */
|