Files
shairport-sync/ap2_rc_event_receiver.c
T
Mike Brady 07b60e7112 1. Add the ability to work back through queued buffers to find the first buffer that’s older than the given one. This is to enable the replacement of deciphered buffers with buffers that arrive later but are timed earlier.
Added functions that relate to this are: get_revised_seqno() to wind back through the queued buffers and clear_buffers_from() to free buffers that are already occupied.
2. Clean up get_audio_buffer_size_and_occupancy() and replace it with get_audio_buffer_occupancy().
3. Add a new general setting: audio_decoded_buffer_desired_length_in_seconds for managing the size of the player buffer queue when the source is buffered audio. Default is 0.75 seconds so that we can step back up to that time if older buffers appear.
2025-12-14 10:17:38 +00:00

162 lines
6.5 KiB
C

/*
* Apple AirPlay 2 Remote Control (RC) Event Receiver. This file is part of Shairport Sync.
* Copyright (c) Mike Brady 2014--2025
* All rights reserved.
*
* Permission is hereby granted, free of charge, to any person
* obtaining a copy of this software and associated documentation
* files (the "Software"), to deal in the Software without
* restriction, including without limitation the rights to use,
* copy, modify, merge, publish, distribute, sublicense, and/or
* sell copies of the Software, and to permit persons to whom the
* Software is furnished to do so, subject to the following conditions:
*
* The above copyright notice and this permission notice shall be
* included in all copies or substantial portions of the Software.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES
* OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
* NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT
* HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
* WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
* OTHER DEALINGS IN THE SOFTWARE.
*/
#include "ap2_rc_event_receiver.h"
#include "common.h"
#include "player.h"
#include "rtsp.h"
#include "utilities/network_utilities.h"
#include "utilities/structured_buffer.h"
void ap2_rc_event_receiver_cleanup_handler(void *arg) {
rtsp_conn_info *conn = (rtsp_conn_info *)arg;
debug(2, "Connection %d: AP2 Event Receiver Cleanup.", conn->connection_number);
}
void *ap2_rc_event_receiver(void *arg) {
// #include <syscall.h>
// debug(1, "rtp_event_receiver PID %d", syscall(SYS_gettid));
rtsp_conn_info *conn = (rtsp_conn_info *)arg;
if (conn->airplay_stream_category == remote_control_stream)
debug(2, "Connection %d (RC): AP2 RC Event Receiver started", conn->connection_number);
else
debug(2, "Connection %d: AP2 RC Event Receiver started", conn->connection_number);
structured_buffer *sbuf = sbuf_new(4096);
if (sbuf != NULL) {
pthread_cleanup_push(sbuf_cleanup, sbuf);
pthread_cleanup_push(ap2_rc_event_receiver_cleanup_handler, arg);
// listen(conn->event_socket, 5); // this is now done in the handle_setup_2 code
uint8_t packet[4096];
ssize_t nread;
SOCKADDR remote_addr;
memset(&remote_addr, 0, sizeof(remote_addr));
socklen_t addr_size = sizeof(remote_addr);
int fd = eintr_checked_accept(conn->event_socket, (struct sockaddr *)&remote_addr, &addr_size);
debug(2,
"Connection %d: ap2_rc_event_receiver accepted a connection on socket %d and moved to a "
"new "
"socket %d.",
conn->connection_number, conn->event_socket, fd);
intptr_t pfd = fd;
pthread_cleanup_push(socket_cleanup, (void *)pfd);
int finished = 0;
do {
plist_t value_plist = generateInfoPlist(conn);
if (value_plist != NULL) {
void *txtData = NULL;
size_t txtDataLength = 0;
generateTxtDataValueInfo(conn, &txtData, &txtDataLength);
plist_dict_set_item(value_plist, "txtAirPlay", plist_new_data(txtData, txtDataLength));
free(txtData);
plist_t update_info_plist = plist_new_dict();
if (update_info_plist != NULL) {
plist_dict_set_item(update_info_plist, "type", plist_new_string("updateInfo"));
plist_dict_set_item(update_info_plist, "value", value_plist);
char *plistString = NULL;
uint32_t plistStringLength = 0;
plist_to_bin(update_info_plist, &plistString, &plistStringLength);
if (plistString != NULL) {
char *plist_as_string = plist_as_xml_text(update_info_plist);
if (plist_as_string != NULL) {
debug(3, "Plist is: \"%s\".", plist_as_string);
free(plist_as_string);
}
sbuf_printf(sbuf, "POST /command RTSP/1.0\r\nContent-Length: %u\r\n",
plistStringLength);
sbuf_printf(sbuf, "Content-Type: application/x-apple-binary-plist\r\n\r\n");
sbuf_append(sbuf, plistString, plistStringLength);
free(plistString); // should be plist_to_bin_free, but it's not defined in older
// libraries
char *b = 0;
size_t l = 0;
sbuf_buf_and_length(sbuf, &b, &l);
ssize_t wres =
write_encrypted(fd, &conn->ap2_pairing_context.event_cipher_bundle, b, l);
if ((wres == -1) || ((size_t)wres != l))
debug(1, "Encrypted write error");
sbuf_clear(sbuf);
} else {
debug(1, "plist string not created!");
}
plist_free(update_info_plist);
} else {
debug(1, "Could not build an updateInfo plist");
}
// plist_free(value_plist);
} else {
debug(1, "Could not build an value plist");
}
while (finished == 0) {
nread = read_encrypted(fd, &conn->ap2_pairing_context.event_cipher_bundle, packet,
sizeof(packet));
// nread = recv(fd, packet, sizeof(packet), 0);
if (nread < 0) {
char errorstring[1024];
strerror_r(errno, (char *)errorstring, sizeof(errorstring));
debug(
1,
"Connection %d: error in ap2_rc_event_receiver %d: \"%s\". Could not recv a packet.",
conn->connection_number, errno, errorstring);
// if ((config.diagnostic_drop_packet_fraction == 0.0) ||
// (drand48() > config.diagnostic_drop_packet_fraction)) {
} else if (nread > 0) {
// ssize_t plen = nread;
packet[nread] = '\0';
debug(2,
"Connection %d: ap2_rc_event_receiver Packet Received on Event Port with contents: "
"\"%s\".",
conn->connection_number, packet);
} else {
debug(2, "Connection %d: ap2_rc_event_receiver Event Port connection closed by client",
conn->connection_number);
finished = 1;
}
}
} while (finished == 0);
pthread_cleanup_pop(1); // close the socket
pthread_cleanup_pop(1); // do the cleanup
pthread_cleanup_pop(1); // delete the structured buffer
debug(2, "Connection %d: AP2 ap2_rc_event_receiver \"normal\" exit.", conn->connection_number);
} else {
debug(1, "Could not allocate a structured buffer!");
}
conn->ap2_event_receiver_exited = 1;
pthread_exit(NULL);
}