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Add a test suite for the AVB (Audio Video Bridging) protocol stack that runs entirely in software, requiring no hardware, root privileges, or running PipeWire daemon. The loopback transport (avb-transport-loopback.h) replaces raw AF_PACKET sockets with in-memory packet capture, using a synthetic MAC address and eventfd for protocol handlers that need a valid fd. Test utilities (test-avb-utils.h) provide helpers for creating test servers, injecting packets, advancing time, and building ADP packets. Tests cover: - ADP entity available/departing/discover/timeout - MRP attribute lifecycle (create, begin, join) - Milan v1.2 mode server creation Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
230 lines
6.4 KiB
C
230 lines
6.4 KiB
C
/* AVB test utilities */
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/* SPDX-FileCopyrightText: Copyright © 2026 PipeWire contributors */
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/* SPDX-License-Identifier: MIT */
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#ifndef TEST_AVB_UTILS_H
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#define TEST_AVB_UTILS_H
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#include <pipewire/pipewire.h>
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#include "module-avb/internal.h"
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#include "module-avb/packets.h"
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#include "module-avb/adp.h"
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#include "module-avb/acmp.h"
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#include "module-avb/mrp.h"
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#include "module-avb/msrp.h"
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#include "module-avb/mvrp.h"
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#include "module-avb/mmrp.h"
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#include "module-avb/maap.h"
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#include "module-avb/aecp.h"
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#include "module-avb/aecp-aem-descriptors.h"
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#include "module-avb/descriptors.h"
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#include "module-avb/avb-transport-loopback.h"
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#define server_emit_message(s,n,m,l) \
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spa_hook_list_call(&(s)->listener_list, struct server_events, message, 0, n, m, l)
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#define server_emit_periodic(s,n) \
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spa_hook_list_call(&(s)->listener_list, struct server_events, periodic, 0, n)
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/**
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* Create a test AVB server with loopback transport.
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* All protocol handlers are registered. No network access required.
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*/
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static inline struct server *avb_test_server_new(struct impl *impl)
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{
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struct server *server;
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server = calloc(1, sizeof(*server));
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if (server == NULL)
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return NULL;
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server->impl = impl;
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server->ifname = strdup("test0");
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server->avb_mode = AVB_MODE_LEGACY;
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server->transport = &avb_transport_loopback;
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spa_list_append(&impl->servers, &server->link);
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spa_hook_list_init(&server->listener_list);
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spa_list_init(&server->descriptors);
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if (server->transport->setup(server) < 0)
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goto error;
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server->mrp = avb_mrp_new(server);
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if (server->mrp == NULL)
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goto error;
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avb_aecp_register(server);
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server->maap = avb_maap_register(server);
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server->mmrp = avb_mmrp_register(server);
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server->msrp = avb_msrp_register(server);
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server->mvrp = avb_mvrp_register(server);
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avb_adp_register(server);
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avb_acmp_register(server);
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server->domain_attr = avb_msrp_attribute_new(server->msrp,
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AVB_MSRP_ATTRIBUTE_TYPE_DOMAIN);
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server->domain_attr->attr.domain.sr_class_id = AVB_MSRP_CLASS_ID_DEFAULT;
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server->domain_attr->attr.domain.sr_class_priority = AVB_MSRP_PRIORITY_DEFAULT;
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server->domain_attr->attr.domain.sr_class_vid = htons(AVB_DEFAULT_VLAN);
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avb_mrp_attribute_begin(server->domain_attr->mrp, 0);
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avb_mrp_attribute_join(server->domain_attr->mrp, 0, true);
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/* Add a minimal entity descriptor so ADP can advertise.
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* We skip init_descriptors() because it creates streams that
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* need a pw_core connection. */
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{
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struct avb_aem_desc_entity entity;
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memset(&entity, 0, sizeof(entity));
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entity.entity_id = htobe64(server->entity_id);
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entity.entity_model_id = htobe64(0x0001000000000001ULL);
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entity.entity_capabilities = htonl(
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AVB_ADP_ENTITY_CAPABILITY_AEM_SUPPORTED |
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AVB_ADP_ENTITY_CAPABILITY_CLASS_A_SUPPORTED |
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AVB_ADP_ENTITY_CAPABILITY_GPTP_SUPPORTED);
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entity.talker_stream_sources = htons(1);
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entity.talker_capabilities = htons(
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AVB_ADP_TALKER_CAPABILITY_IMPLEMENTED |
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AVB_ADP_TALKER_CAPABILITY_AUDIO_SOURCE);
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entity.listener_stream_sinks = htons(1);
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entity.listener_capabilities = htons(
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AVB_ADP_LISTENER_CAPABILITY_IMPLEMENTED |
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AVB_ADP_LISTENER_CAPABILITY_AUDIO_SINK);
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entity.configurations_count = htons(1);
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server_add_descriptor(server, AVB_AEM_DESC_ENTITY, 0,
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sizeof(entity), &entity);
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}
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return server;
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error:
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free(server->ifname);
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free(server);
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return NULL;
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}
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static inline void avb_test_server_free(struct server *server)
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{
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avdecc_server_free(server);
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}
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/**
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* Inject a raw packet into the server's protocol dispatch.
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* This simulates receiving a packet from the network.
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*/
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static inline void avb_test_inject_packet(struct server *server,
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uint64_t now, const void *data, int len)
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{
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server_emit_message(server, now, data, len);
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}
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/**
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* Trigger the periodic callback with a given timestamp.
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* Use this to advance time and test timeout/readvertise logic.
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*/
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static inline void avb_test_tick(struct server *server, uint64_t now)
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{
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server_emit_periodic(server, now);
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}
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/**
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* Build an ADP entity available packet.
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* Returns the packet size, or -1 on error.
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*/
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static inline int avb_test_build_adp_entity_available(
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uint8_t *buf, size_t bufsize,
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const uint8_t src_mac[6],
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uint64_t entity_id,
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int valid_time)
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{
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struct avb_ethernet_header *h;
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struct avb_packet_adp *p;
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size_t len = sizeof(*h) + sizeof(*p);
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static const uint8_t bmac[6] = AVB_BROADCAST_MAC;
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if (bufsize < len)
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return -1;
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memset(buf, 0, len);
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h = (struct avb_ethernet_header *)buf;
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memcpy(h->dest, bmac, 6);
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memcpy(h->src, src_mac, 6);
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h->type = htons(AVB_TSN_ETH);
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p = (struct avb_packet_adp *)(buf + sizeof(*h));
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AVB_PACKET_SET_SUBTYPE(&p->hdr, AVB_SUBTYPE_ADP);
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AVB_PACKET_SET_LENGTH(&p->hdr, AVB_ADP_CONTROL_DATA_LENGTH);
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AVB_PACKET_ADP_SET_MESSAGE_TYPE(p, AVB_ADP_MESSAGE_TYPE_ENTITY_AVAILABLE);
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AVB_PACKET_ADP_SET_VALID_TIME(p, valid_time);
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p->entity_id = htobe64(entity_id);
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return len;
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}
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/**
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* Build an ADP entity departing packet.
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*/
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static inline int avb_test_build_adp_entity_departing(
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uint8_t *buf, size_t bufsize,
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const uint8_t src_mac[6],
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uint64_t entity_id)
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{
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struct avb_ethernet_header *h;
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struct avb_packet_adp *p;
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size_t len = sizeof(*h) + sizeof(*p);
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static const uint8_t bmac[6] = AVB_BROADCAST_MAC;
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if (bufsize < len)
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return -1;
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memset(buf, 0, len);
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h = (struct avb_ethernet_header *)buf;
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memcpy(h->dest, bmac, 6);
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memcpy(h->src, src_mac, 6);
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h->type = htons(AVB_TSN_ETH);
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p = (struct avb_packet_adp *)(buf + sizeof(*h));
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AVB_PACKET_SET_SUBTYPE(&p->hdr, AVB_SUBTYPE_ADP);
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AVB_PACKET_SET_LENGTH(&p->hdr, AVB_ADP_CONTROL_DATA_LENGTH);
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AVB_PACKET_ADP_SET_MESSAGE_TYPE(p, AVB_ADP_MESSAGE_TYPE_ENTITY_DEPARTING);
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p->entity_id = htobe64(entity_id);
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return len;
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}
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/**
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* Build an ADP entity discover packet.
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*/
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static inline int avb_test_build_adp_entity_discover(
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uint8_t *buf, size_t bufsize,
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const uint8_t src_mac[6],
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uint64_t entity_id)
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{
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struct avb_ethernet_header *h;
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struct avb_packet_adp *p;
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size_t len = sizeof(*h) + sizeof(*p);
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static const uint8_t bmac[6] = AVB_BROADCAST_MAC;
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if (bufsize < len)
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return -1;
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memset(buf, 0, len);
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h = (struct avb_ethernet_header *)buf;
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memcpy(h->dest, bmac, 6);
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memcpy(h->src, src_mac, 6);
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h->type = htons(AVB_TSN_ETH);
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p = (struct avb_packet_adp *)(buf + sizeof(*h));
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AVB_PACKET_SET_SUBTYPE(&p->hdr, AVB_SUBTYPE_ADP);
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AVB_PACKET_SET_LENGTH(&p->hdr, AVB_ADP_CONTROL_DATA_LENGTH);
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AVB_PACKET_ADP_SET_MESSAGE_TYPE(p, AVB_ADP_MESSAGE_TYPE_ENTITY_DISCOVER);
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p->entity_id = htobe64(entity_id);
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return len;
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}
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#endif /* TEST_AVB_UTILS_H */
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