mirror of
https://github.com/morgan9e/UxPlay
synced 2026-04-13 15:54:09 +09:00
raop_rtp fixes/cleanups to remove unneeded ntp use
This commit is contained in:
@@ -15,6 +15,8 @@ until advertisements have finished or been skipped before clicking the
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YouTube airplay icon.) <strong>Please report any issues with this new
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feature of UxPlay</strong>.</li>
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</ul>
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<p><strong><em>NEWS</em></strong>: macOS Sequoia 15.2 has an AirPlay
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bug: update to macOS 15.3 for mirroring screen with UxPlay.</p>
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<h2 id="highlights">Highlights:</h2>
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<ul>
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<li>GPLv3, open source.</li>
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@@ -9,6 +9,9 @@
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YouTube airplay icon.) **Please report any issues with this new
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feature of UxPlay**.
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***NEWS***: macOS Sequoia 15.2 has an AirPlay bug: update to macOS 15.3
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for mirroring screen with UxPlay.
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## Highlights:
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- GPLv3, open source.
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@@ -9,6 +9,9 @@
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YouTube airplay icon.) **Please report any issues with this new
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feature of UxPlay**.
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***NEWS***: macOS Sequoia 15.2 has an AirPlay bug: update to macOS 15.3
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for mirroring screen with UxPlay.
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## Highlights:
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- GPLv3, open source.
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@@ -765,3 +765,7 @@ void raop_destroy_airplay_video(raop_t *raop) {
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raop->airplay_video = NULL;
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}
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}
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uint64_t get_local_time() {
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return raop_ntp_get_local_time();
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}
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@@ -108,7 +108,8 @@ int airplay_video_service_init(raop_t *raop, unsigned short port, const char *se
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bool register_airplay_video(raop_t *raop, airplay_video_t *airplay_video);
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airplay_video_t *get_airplay_video(raop_t *raop);
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airplay_video_t *deregister_airplay_video(raop_t *raop);
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uint64_t get_local_time();
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RAOP_API raop_t *raop_init(raop_callbacks_t *callbacks);
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RAOP_API int raop_init2(raop_t *raop, int nohold, const char *device_id, const char *keyfile);
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RAOP_API void raop_set_log_level(raop_t *raop, int level);
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@@ -39,10 +39,11 @@ typedef struct {
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/* Data available */
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int filled;
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uint64_t packet_arrival_time;
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/* RTP header */
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unsigned short seqnum;
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uint64_t rtp_timestamp;
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uint64_t ntp_timestamp;
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uint32_t rtp_timestamp;
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/* Payload data */
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unsigned int payload_size;
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@@ -165,7 +166,7 @@ raop_buffer_decrypt(raop_buffer_t *raop_buffer, unsigned char *data, unsigned ch
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}
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int
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raop_buffer_enqueue(raop_buffer_t *raop_buffer, unsigned char *data, unsigned short datalen, uint64_t *ntp_timestamp, uint64_t *rtp_timestamp, int use_seqnum) {
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raop_buffer_enqueue(raop_buffer_t *raop_buffer, unsigned char *data, unsigned short datalen, int use_seqnum) {
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unsigned char empty_packet_marker[] = { 0x00, 0x68, 0x34, 0x00 };
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assert(raop_buffer);
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@@ -206,8 +207,7 @@ raop_buffer_enqueue(raop_buffer_t *raop_buffer, unsigned char *data, unsigned sh
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/* Update the raop_buffer entry header */
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entry->seqnum = seqnum;
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entry->rtp_timestamp = *rtp_timestamp;
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entry->ntp_timestamp = *ntp_timestamp;
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entry->rtp_timestamp = byteutils_get_int_be(data, 4);
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entry->filled = 1;
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entry->payload_data = malloc(payload_size);
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@@ -228,7 +228,7 @@ raop_buffer_enqueue(raop_buffer_t *raop_buffer, unsigned char *data, unsigned sh
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}
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void *
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raop_buffer_dequeue(raop_buffer_t *raop_buffer, unsigned int *length, uint64_t *ntp_timestamp, uint64_t *rtp_timestamp, unsigned short *seqnum, int no_resend) {
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raop_buffer_dequeue(raop_buffer_t *raop_buffer, unsigned int *length, uint32_t *rtp_timestamp, unsigned short *seqnum, int no_resend) {
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assert(raop_buffer);
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/* Calculate number of entries in the current buffer */
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@@ -261,7 +261,6 @@ raop_buffer_dequeue(raop_buffer_t *raop_buffer, unsigned int *length, uint64_t *
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/* Return entry payload buffer */
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*rtp_timestamp = entry->rtp_timestamp;
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*ntp_timestamp = entry->ntp_timestamp;
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*seqnum = entry->seqnum;
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*length = entry->payload_size;
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entry->payload_size = 0;
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@@ -28,8 +28,8 @@ typedef int (*raop_resend_cb_t)(void *opaque, unsigned short seqno, unsigned sho
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raop_buffer_t *raop_buffer_init(logger_t *logger,
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const unsigned char *aeskey,
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const unsigned char *aesiv);
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int raop_buffer_enqueue(raop_buffer_t *raop_buffer, unsigned char *data, unsigned short datalen, uint64_t *ntp_timestamp, uint64_t *rtp_timestamp, int use_seqnum);
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void *raop_buffer_dequeue(raop_buffer_t *raop_buffer, unsigned int *length, uint64_t *ntp_timestamp, uint64_t *rtp_timestamp, unsigned short *seqnum, int no_resend);
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int raop_buffer_enqueue(raop_buffer_t *raop_buffer, unsigned char *data, unsigned short datalen, int use_seqnum);
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void *raop_buffer_dequeue(raop_buffer_t *raop_buffer, unsigned int *length, uint32_t *rtp_timestamp, unsigned short *seqnum, int no_resend);
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void raop_buffer_handle_resends(raop_buffer_t *raop_buffer, raop_resend_cb_t resend_cb, void *opaque);
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void raop_buffer_flush(raop_buffer_t *raop_buffer, int next_seq);
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@@ -94,8 +94,17 @@ struct raop_ntp_s {
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timing_protocol_t time_protocol;
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bool client_time_received;
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uint64_t video_arrival_offset;
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};
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/* for use in syncing audio before a first rtp_sync */
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void raop_ntp_set_video_arrival_offset(raop_ntp_t* raop_ntp, const uint64_t *offset) {
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raop_ntp->video_arrival_offset = *offset;
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}
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uint64_t raop_ntp_get_video_arrival_offset(raop_ntp_t* raop_ntp) {
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return raop_ntp->video_arrival_offset;
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}
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/*
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* Used for sorting the data array by delay
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@@ -155,6 +164,8 @@ raop_ntp_t *raop_ntp_init(logger_t *logger, raop_callbacks_t *callbacks, const c
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raop_ntp->timing_rport = timing_rport;
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raop_ntp->client_time_received = false;
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raop_ntp->video_arrival_offset = 0;
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if (raop_ntp_parse_remote(raop_ntp, remote, remote_addr_len) < 0) {
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free(raop_ntp);
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return NULL;
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@@ -166,7 +177,7 @@ raop_ntp_t *raop_ntp_init(logger_t *logger, raop_callbacks_t *callbacks, const c
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raop_ntp->running = 0;
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raop_ntp->joined = 1;
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uint64_t time = raop_ntp_get_local_time(raop_ntp);
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uint64_t time = raop_ntp_get_local_time();
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for (int i = 0; i < RAOP_NTP_DATA_COUNT; ++i) {
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raop_ntp->data[i].offset = 0ll;
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@@ -289,7 +300,7 @@ raop_ntp_thread(void *arg)
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raop_ntp_flush_socket(raop_ntp->tsock);
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// Send request
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uint64_t send_time = raop_ntp_get_local_time(raop_ntp);
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uint64_t send_time = raop_ntp_get_local_time();
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byteutils_put_ntp_timestamp(request, 24, send_time);
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int send_len = sendto(raop_ntp->tsock, (char *)request, sizeof(request), 0,
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(struct sockaddr *) &raop_ntp->remote_saddr, raop_ntp->remote_saddr_len);
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@@ -315,7 +326,7 @@ raop_ntp_thread(void *arg)
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raop_ntp->client_time_received = true;
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}
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//local time of the server when the NTP response packet returns
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int64_t t3 = (int64_t) raop_ntp_get_local_time(raop_ntp);
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int64_t t3 = (int64_t) raop_ntp_get_local_time();
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// Local time of the server when the NTP request packet leaves the server
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int64_t t0 = (int64_t) byteutils_get_ntp_timestamp(response, 8);
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@@ -484,7 +495,7 @@ uint64_t raop_remote_timestamp_to_nano_seconds(raop_ntp_t *raop_ntp, uint64_t ti
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* Returns the current time in nano seconds according to the local wall clock.
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* The system Unix time is used as the local wall clock.
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*/
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uint64_t raop_ntp_get_local_time(raop_ntp_t *raop_ntp) {
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uint64_t raop_ntp_get_local_time() {
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struct timespec time;
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clock_gettime(CLOCK_REALTIME, &time);
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return ((uint64_t) time.tv_nsec) + (uint64_t) time.tv_sec * SECOND_IN_NSECS;
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@@ -494,16 +505,22 @@ uint64_t raop_ntp_get_local_time(raop_ntp_t *raop_ntp) {
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* Returns the current time in nano seconds according to the remote wall clock.
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*/
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uint64_t raop_ntp_get_remote_time(raop_ntp_t *raop_ntp) {
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if (!raop_ntp->client_time_received) {
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return 0;
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}
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MUTEX_LOCK(raop_ntp->sync_params_mutex);
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int64_t offset = raop_ntp->sync_offset;
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MUTEX_UNLOCK(raop_ntp->sync_params_mutex);
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return (uint64_t) ((int64_t) raop_ntp_get_local_time(raop_ntp) + offset);
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return (uint64_t) ((int64_t) raop_ntp_get_local_time() + offset);
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}
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/**
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* Returns the local wall clock time in nano seconds for the given point in remote clock time
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*/
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uint64_t raop_ntp_convert_remote_time(raop_ntp_t *raop_ntp, uint64_t remote_time) {
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if (!raop_ntp->client_time_received) {
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return 0;
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}
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MUTEX_LOCK(raop_ntp->sync_params_mutex);
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int64_t offset = raop_ntp->sync_offset;
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MUTEX_UNLOCK(raop_ntp->sync_params_mutex);
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@@ -514,6 +531,9 @@ uint64_t raop_ntp_convert_remote_time(raop_ntp_t *raop_ntp, uint64_t remote_time
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* Returns the remote wall clock time in nano seconds for the given point in local clock time
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*/
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uint64_t raop_ntp_convert_local_time(raop_ntp_t *raop_ntp, uint64_t local_time) {
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if (!raop_ntp->client_time_received) {
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return 0;
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}
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MUTEX_LOCK(raop_ntp->sync_params_mutex);
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int64_t offset = raop_ntp->sync_offset;
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MUTEX_UNLOCK(raop_ntp->sync_params_mutex);
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@@ -38,9 +38,12 @@ void raop_ntp_destroy(raop_ntp_t *raop_rtp);
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uint64_t raop_ntp_timestamp_to_nano_seconds(uint64_t ntp_timestamp, bool account_for_epoch_diff);
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uint64_t raop_remote_timestamp_to_nano_seconds(raop_ntp_t *raop_ntp, uint64_t timestamp);
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uint64_t raop_ntp_get_local_time(raop_ntp_t *raop_ntp);
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uint64_t raop_ntp_get_local_time();
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uint64_t raop_ntp_get_remote_time(raop_ntp_t *raop_ntp);
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uint64_t raop_ntp_convert_remote_time(raop_ntp_t *raop_ntp, uint64_t remote_time);
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uint64_t raop_ntp_convert_local_time(raop_ntp_t *raop_ntp, uint64_t local_time);
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void raop_ntp_set_video_arrival_offset(raop_ntp_t* raop_ntp, const uint64_t *offset);
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uint64_t raop_ntp_get_video_arrival_offset(raop_ntp_t* raop_ntp);
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#endif //RAOP_NTP_H
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225
lib/raop_rtp.c
225
lib/raop_rtp.c
@@ -36,10 +36,9 @@
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#define NO_FLUSH (-42)
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#define SECOND_IN_NSECS 1000000000
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#define RAOP_RTP_SYNC_DATA_COUNT 8
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#define SEC SECOND_IN_NSECS
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#define DELAY_AAC 0.275 //empirical, matches audio latency of about -0.25 sec after first clock sync event
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#define DELAY_AAC 0.20 //empirical, matches audio latency of about -0.25 sec after first clock sync event
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/* note: it is unclear what will happen in the unlikely event that this code is running at the time of the unix-time
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* epoch event on 2038-01-19 at 3:14:08 UTC ! (but Apple will surely have removed AirPlay "legacy pairing" by then!) */
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@@ -56,14 +55,16 @@ struct raop_rtp_s {
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// Time and sync
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raop_ntp_t *ntp;
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double rtp_clock_rate;
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int64_t rtp_sync_offset;
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raop_rtp_sync_data_t sync_data[RAOP_RTP_SYNC_DATA_COUNT];
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int sync_data_index;
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uint64_t ntp_start_time;
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uint64_t rtp_start_time;
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uint64_t rtp_time;
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bool rtp_clock_started;
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uint32_t rtp_sync;
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uint64_t client_ntp_sync;
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bool initial_sync;
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// Transmission Stats, could be used if a playout buffer is needed
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// float interarrival_jitter; // As defined by RTP RFC 3550, Section 6.4.1
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// unsigned int last_packet_transit_time;
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@@ -161,12 +162,10 @@ raop_rtp_init(logger_t *logger, raop_callbacks_t *callbacks, raop_ntp_t *ntp, co
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raop_rtp->logger = logger;
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raop_rtp->ntp = ntp;
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raop_rtp->rtp_sync_offset = 0;
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raop_rtp->sync_data_index = 0;
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for (int i = 0; i < RAOP_RTP_SYNC_DATA_COUNT; ++i) {
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raop_rtp->sync_data[i].ntp_time = 0;
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raop_rtp->sync_data[i].rtp_time = 0;
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}
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raop_rtp->rtp_sync = 0;
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raop_rtp->client_ntp_sync = 0;
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raop_rtp->initial_sync = false;
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raop_rtp->ntp_start_time = 0;
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raop_rtp->rtp_start_time = 0;
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raop_rtp->rtp_clock_started = false;
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@@ -386,59 +385,22 @@ raop_rtp_process_events(raop_rtp_t *raop_rtp, void *cb_data)
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return 0;
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}
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void raop_rtp_sync_clock(raop_rtp_t *raop_rtp, uint64_t *ntp_time, uint64_t *rtp_time) {
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/* ntp_time = (uint64_t)(((int64_t)(raop_rtp->rtp_clock_rate * rtp_time)) + raop_rtp->rtp_sync_offset) */
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int latest, valid_data_count = 0;
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uint64_t ntp_sum = 0, rtp_sum = 0;
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double offset = ((double) *ntp_time) - raop_rtp->rtp_clock_rate * *rtp_time;
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int64_t correction = 0;
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raop_rtp->sync_data_index = (raop_rtp->sync_data_index + 1) % RAOP_RTP_SYNC_DATA_COUNT;
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latest = raop_rtp->sync_data_index;
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raop_rtp->sync_data[latest].rtp_time = *rtp_time;
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raop_rtp->sync_data[latest].ntp_time = *ntp_time;
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for (int i = 0; i < RAOP_RTP_SYNC_DATA_COUNT; i++) {
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if (raop_rtp->sync_data[i].ntp_time == 0) continue;
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valid_data_count++;
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if (i == latest) continue;
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ntp_sum += *ntp_time - raop_rtp->sync_data[i].ntp_time;
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rtp_sum += *rtp_time - raop_rtp->sync_data[i].rtp_time;
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static uint64_t rtp_time_to_client_ntp(raop_rtp_t *raop_rtp, uint32_t *rtp32) {
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if (!raop_rtp->initial_sync) {
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return 0;
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}
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if (valid_data_count > 1) {
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correction -= raop_rtp->rtp_sync_offset;
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offset += (((double) ntp_sum) - raop_rtp->rtp_clock_rate * rtp_sum) / valid_data_count;
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}
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raop_rtp->rtp_sync_offset = (int64_t) offset;
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correction += raop_rtp->rtp_sync_offset;
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logger_log(raop_rtp->logger, LOGGER_DEBUG, "dataset %d raop_rtp sync correction=%lld, rtp_sync_offset = %lld ",
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valid_data_count, correction, raop_rtp->rtp_sync_offset);
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}
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uint64_t rtp64_time (raop_rtp_t *raop_rtp, const uint32_t *rtp32) {
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/* convert from 32-bit to 64-bit rtp time:
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* the rtp_time 32-bit epoch at 44.1kHz has length of about 27 hours
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* using 64-bit rtp time avoids any epoch issues.
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* initial call sets epoch to 1; subsequent calls maintain consistent epoch.
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* (assumes successive calls are close in time) */
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if (raop_rtp->rtp_clock_started) {
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uint32_t diff1 = *rtp32 - ((uint32_t) raop_rtp->rtp_time);
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uint32_t diff2 = ((uint32_t) raop_rtp->rtp_time) - *rtp32;
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if (diff1 <= diff2) {
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raop_rtp->rtp_time += (uint64_t) diff1;
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} else {
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raop_rtp->rtp_time -= (uint64_t) diff2;
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}
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uint64_t client_ntp = raop_rtp->client_ntp_sync;
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if (*rtp32 >= raop_rtp->rtp_sync) {
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client_ntp += (uint64_t) raop_rtp->rtp_clock_rate * (*rtp32 - raop_rtp->rtp_sync);
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} else {
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raop_rtp->rtp_time = (0x01ULL << 32 ) + (uint64_t) *rtp32;
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raop_rtp->rtp_start_time = raop_rtp->rtp_time;
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raop_rtp->rtp_clock_started = true;
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uint64_t ntp_shift = (uint64_t) raop_rtp->rtp_clock_rate * (raop_rtp->rtp_sync - *rtp32);
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if (client_ntp > ntp_shift) {
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client_ntp -= ntp_shift;
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} else {
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client_ntp = 0;
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}
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}
|
||||
//assert(*rtp32 == (uint32_t) raop_rtp->rtp_time);
|
||||
return raop_rtp->rtp_time;
|
||||
return client_ntp;
|
||||
}
|
||||
|
||||
static THREAD_RETVAL
|
||||
@@ -450,22 +412,15 @@ raop_rtp_thread_udp(void *arg)
|
||||
struct sockaddr_storage saddr;
|
||||
socklen_t saddrlen;
|
||||
bool got_remote_control_saddr = false;
|
||||
uint64_t video_arrival_offset = 0;
|
||||
|
||||
/* for initial rtp to ntp conversions */
|
||||
bool have_synced = false;
|
||||
bool no_data_yet = true;
|
||||
/* initial audio stream has no data */
|
||||
unsigned char no_data_marker[] = {0x00, 0x68, 0x34, 0x00 };
|
||||
int rtp_count = 0;
|
||||
double sync_adjustment = 0;
|
||||
unsigned short seqnum1 = 0, seqnum2 = 0;
|
||||
|
||||
assert(raop_rtp);
|
||||
bool logger_debug = (logger_get_level(raop_rtp->logger) >= LOGGER_DEBUG);
|
||||
raop_rtp->ntp_start_time = raop_ntp_get_local_time(raop_rtp->ntp);
|
||||
raop_rtp->ntp_start_time = raop_ntp_get_local_time();
|
||||
raop_rtp->rtp_clock_started = false;
|
||||
for (int i = 0; i < RAOP_RTP_SYNC_DATA_COUNT; i++) {
|
||||
raop_rtp->sync_data[i].ntp_time = 0;
|
||||
}
|
||||
|
||||
int no_resend = (raop_rtp->control_rport == 0); /* true when control_rport is not set */
|
||||
|
||||
@@ -526,14 +481,8 @@ raop_rtp_thread_udp(void *arg)
|
||||
unsigned int resent_packetlen = packetlen - 4;
|
||||
unsigned short seqnum = byteutils_get_short_be(resent_packet, 2);
|
||||
if (resent_packetlen >= 12) {
|
||||
uint32_t timestamp = byteutils_get_int_be(resent_packet, 4);
|
||||
uint64_t rtp_time = rtp64_time(raop_rtp, ×tamp);
|
||||
uint64_t ntp_time = 0;
|
||||
if (have_synced) {
|
||||
ntp_time = (uint64_t) (raop_rtp->rtp_sync_offset + (int64_t) (raop_rtp->rtp_clock_rate * rtp_time));
|
||||
}
|
||||
logger_log(raop_rtp->logger, LOGGER_DEBUG, "raop_rtp resent audio packet: seqnum=%u", seqnum);
|
||||
int result = raop_buffer_enqueue(raop_rtp->buffer, resent_packet, resent_packetlen, &ntp_time, &rtp_time, 1);
|
||||
int result = raop_buffer_enqueue(raop_rtp->buffer, resent_packet, resent_packetlen, 1);
|
||||
assert(result >= 0);
|
||||
} else if (logger_debug) {
|
||||
/* type_c = 0x56 packets with length 8 have been reported */
|
||||
@@ -553,24 +502,30 @@ raop_rtp_thread_udp(void *arg)
|
||||
* next_rtp = sync_rtp + 77175 = 441 * 175 (1.75 sec) for ALAC */
|
||||
|
||||
// The unit for the rtp clock is 1 / sample rate = 1 / 44100
|
||||
uint32_t sync_rtp = byteutils_get_int_be(packet, 4);
|
||||
uint64_t sync_rtp64 = rtp64_time(raop_rtp, &sync_rtp);
|
||||
if (have_synced == false) {
|
||||
uint64_t client_ntp_sync_prev = 0;
|
||||
uint64_t rtp_sync_prev = 0;
|
||||
if (!raop_rtp->initial_sync) {
|
||||
logger_log(raop_rtp->logger, LOGGER_DEBUG, "first audio rtp sync");
|
||||
have_synced = true;
|
||||
}
|
||||
raop_rtp->initial_sync = true;
|
||||
} else {
|
||||
client_ntp_sync_prev = raop_rtp->client_ntp_sync;
|
||||
rtp_sync_prev = raop_rtp->rtp_sync;
|
||||
}
|
||||
raop_rtp->rtp_sync = byteutils_get_int_be(packet, 4);
|
||||
uint64_t sync_ntp_raw = byteutils_get_long_be(packet, 8);
|
||||
uint64_t sync_ntp_remote = raop_remote_timestamp_to_nano_seconds(raop_rtp->ntp, sync_ntp_raw);
|
||||
raop_rtp->client_ntp_sync = raop_remote_timestamp_to_nano_seconds(raop_rtp->ntp, sync_ntp_raw);
|
||||
|
||||
if (logger_debug) {
|
||||
uint64_t sync_ntp_local = raop_ntp_convert_remote_time(raop_rtp->ntp, sync_ntp_remote);
|
||||
double offset_change = ((double) raop_rtp->client_ntp_sync) - raop_rtp->rtp_clock_rate * raop_rtp->rtp_sync;
|
||||
offset_change -= ((double) client_ntp_sync_prev) - raop_rtp->rtp_clock_rate * rtp_sync_prev;
|
||||
uint64_t sync_ntp_local = raop_ntp_convert_remote_time(raop_rtp->ntp, raop_rtp->rtp_sync);
|
||||
char *str = utils_data_to_string(packet, packetlen, 20);
|
||||
logger_log(raop_rtp->logger, LOGGER_DEBUG,
|
||||
"raop_rtp sync: client ntp=%8.6f, ntp = %8.6f, ntp_start_time %8.6f\nts_client = %8.6f sync_rtp=%u\n%s",
|
||||
(double) sync_ntp_remote / SEC, (double) sync_ntp_local / SEC,
|
||||
(double) raop_rtp->ntp_start_time / SEC, (double) sync_ntp_remote / SEC, sync_rtp, str);
|
||||
"raop_rtp sync: ntp = %8.6f, ntp_start_time %8.6f\nts_client = %8.6f sync_rtp=%u offset change = %8.6f\n%s",
|
||||
(double) sync_ntp_local / SEC, (double) raop_rtp->ntp_start_time / SEC,
|
||||
(double) raop_rtp->client_ntp_sync / SEC, raop_rtp->rtp_sync, offset_change / SEC, str);
|
||||
free(str);
|
||||
}
|
||||
raop_rtp_sync_clock(raop_rtp, &sync_ntp_remote, &sync_rtp64);
|
||||
} else if (logger_debug) {
|
||||
char *str = utils_data_to_string(packet, packetlen, 16);
|
||||
logger_log(raop_rtp->logger, LOGGER_DEBUG, "raop_rtp unknown udp control packet\n%s", str);
|
||||
@@ -615,6 +570,9 @@ raop_rtp_thread_udp(void *arg)
|
||||
|
||||
|
||||
if (FD_ISSET(raop_rtp->dsock, &rfds)) {
|
||||
if (!raop_rtp->initial_sync && !video_arrival_offset) {
|
||||
video_arrival_offset = raop_ntp_get_video_arrival_offset(raop_rtp->ntp);
|
||||
}
|
||||
//logger_log(raop_rtp->logger, LOGGER_INFO, "Would have data packet in queue");
|
||||
// Receiving audio data here
|
||||
saddrlen = sizeof(saddr);
|
||||
@@ -633,83 +591,58 @@ raop_rtp_thread_udp(void *arg)
|
||||
continue;
|
||||
}
|
||||
|
||||
uint32_t rtp_timestamp = byteutils_get_int_be(packet, 4);
|
||||
uint64_t rtp_time = rtp64_time(raop_rtp, &rtp_timestamp);
|
||||
uint64_t ntp_time = 0;
|
||||
if (!raop_rtp->initial_sync && raop_rtp->ct == 8 && video_arrival_offset) {
|
||||
/* estimate a fake initial remote timestamp for video synchronization with AAC audio before the first rtp sync */
|
||||
uint64_t ts = raop_ntp_get_local_time() - video_arrival_offset;
|
||||
double delay = DELAY_AAC;
|
||||
ts += (uint64_t) (delay * SEC);
|
||||
raop_rtp->client_ntp_sync = ts;
|
||||
raop_rtp->rtp_sync = byteutils_get_int_be(packet, 4);
|
||||
raop_rtp->initial_sync = true;
|
||||
}
|
||||
|
||||
if (packetlen == 16 && memcmp(packet + 12, no_data_marker, 4) == 0) {
|
||||
/* this is a "no data" packet */
|
||||
/* the first such packet could be used to provide the initial rtptime and seqnum formerly given in the RECORD request */
|
||||
continue;
|
||||
}
|
||||
|
||||
if (raop_rtp->ct == 2 && packetlen == 44) continue; /* ignore the ALAC packets with format information only. */
|
||||
|
||||
if (have_synced) {
|
||||
ntp_time = (uint64_t) (raop_rtp->rtp_sync_offset + (int64_t) (raop_rtp->rtp_clock_rate * rtp_time));
|
||||
} else if (packetlen == 16 && memcmp(packet + 12, no_data_marker, 4) == 0) {
|
||||
/* use the special "no_data" packet to help determine an initial offset before the first rtp sync.
|
||||
* until the first rtp sync occurs, we don't know the exact client ntp timestamp that matches the client rtp timestamp */
|
||||
if (no_data_yet) {
|
||||
int64_t sync_ntp = ((int64_t) raop_ntp_get_local_time(raop_rtp->ntp)) - ((int64_t) raop_rtp->ntp_start_time) ;
|
||||
int64_t sync_rtp = ((int64_t) rtp_time) - ((int64_t) raop_rtp->rtp_start_time);
|
||||
unsigned short seqnum = byteutils_get_short_be(packet, 2);
|
||||
if (rtp_count == 0) {
|
||||
sync_adjustment = ((double) sync_ntp);
|
||||
rtp_count = 1;
|
||||
seqnum1 = seqnum;
|
||||
seqnum2 = seqnum;
|
||||
}
|
||||
if (seqnum2 != seqnum) { /* for AAC-ELD only use copy 1 of the 3 copies of each frame */
|
||||
rtp_count++;
|
||||
sync_adjustment += (((double) sync_ntp) - raop_rtp->rtp_clock_rate * sync_rtp - sync_adjustment) / rtp_count;
|
||||
}
|
||||
seqnum2 = seqnum1;
|
||||
seqnum1 = seqnum;
|
||||
}
|
||||
continue;
|
||||
} else {
|
||||
no_data_yet = false;
|
||||
}
|
||||
int result = raop_buffer_enqueue(raop_rtp->buffer, packet, packetlen, &ntp_time, &rtp_time, 1);
|
||||
int result = raop_buffer_enqueue(raop_rtp->buffer, packet, packetlen, 1);
|
||||
assert(result >= 0);
|
||||
|
||||
if (raop_rtp->ct == 2 && !have_synced) {
|
||||
/* in ALAC Audio-only mode wait until the first sync before dequeing */
|
||||
if (!raop_rtp->initial_sync) {
|
||||
/* wait until the first sync before dequeing ALAC */
|
||||
continue;
|
||||
} else {
|
||||
// Render continuous buffer entries
|
||||
void *payload = NULL;
|
||||
unsigned int payload_size;
|
||||
unsigned short seqnum;
|
||||
uint64_t rtp64_timestamp;
|
||||
uint64_t ntp_timestamp;
|
||||
uint32_t rtp_timestamp;
|
||||
|
||||
while ((payload = raop_buffer_dequeue(raop_rtp->buffer, &payload_size, &ntp_timestamp, &rtp64_timestamp, &seqnum, no_resend))) {
|
||||
while ((payload = raop_buffer_dequeue(raop_rtp->buffer, &payload_size, &rtp_timestamp, &seqnum, no_resend))) {
|
||||
audio_decode_struct audio_data;
|
||||
audio_data.rtp_time = rtp64_timestamp;
|
||||
audio_data.rtp_time = rtp_timestamp;
|
||||
audio_data.seqnum = seqnum;
|
||||
audio_data.data_len = payload_size;
|
||||
audio_data.data = payload;
|
||||
audio_data.ct = raop_rtp->ct;
|
||||
if (have_synced) {
|
||||
if (ntp_timestamp == 0) {
|
||||
ntp_timestamp = (uint64_t) (raop_rtp->rtp_sync_offset + (int64_t) (raop_rtp->rtp_clock_rate * rtp64_timestamp));
|
||||
}
|
||||
audio_data.ntp_time_remote = ntp_timestamp;
|
||||
audio_data.ntp_time_local = raop_ntp_convert_remote_time(raop_rtp->ntp, audio_data.ntp_time_remote);
|
||||
audio_data.sync_status = 1;
|
||||
} else {
|
||||
double elapsed_time = raop_rtp->rtp_clock_rate * (rtp64_timestamp - raop_rtp->rtp_start_time) + sync_adjustment
|
||||
+ DELAY_AAC * SECOND_IN_NSECS;
|
||||
audio_data.ntp_time_local = raop_rtp->ntp_start_time + (uint64_t) elapsed_time;
|
||||
audio_data.ntp_time_remote = raop_ntp_convert_local_time(raop_rtp->ntp, audio_data.ntp_time_local);
|
||||
audio_data.sync_status = 0;
|
||||
audio_data.ntp_time_remote = rtp_time_to_client_ntp(raop_rtp, &rtp_timestamp);
|
||||
audio_data.ntp_time_local = raop_ntp_convert_remote_time(raop_rtp->ntp, audio_data.ntp_time_remote);
|
||||
|
||||
if (logger_debug) {
|
||||
uint64_t ntp_now = raop_ntp_get_local_time();
|
||||
int64_t latency = (audio_data.ntp_time_local ? ((int64_t) ntp_now) - ((int64_t) audio_data.ntp_time_local) : 0);
|
||||
logger_log(raop_rtp->logger, LOGGER_DEBUG,
|
||||
"raop_rtp audio: now = %8.6f, ntp = %8.6f, latency = %9.6f, ts = %8.6f, rtp_time=%u seqnum = %u",
|
||||
(double) ntp_now / SEC, (double) audio_data.ntp_time_local / SEC, (double) latency / SEC,
|
||||
(double) audio_data.ntp_time_remote /SEC, rtp_timestamp, seqnum);
|
||||
}
|
||||
|
||||
raop_rtp->callbacks.audio_process(raop_rtp->callbacks.cls, raop_rtp->ntp, &audio_data);
|
||||
free(payload);
|
||||
if (logger_debug) {
|
||||
uint64_t ntp_now = raop_ntp_get_local_time(raop_rtp->ntp);
|
||||
int64_t latency = ((int64_t) ntp_now) - ((int64_t) audio_data.ntp_time_local);
|
||||
logger_log(raop_rtp->logger, LOGGER_DEBUG,
|
||||
"raop_rtp audio: now = %8.6f, ntp = %8.6f, latency = %8.6f, rtp_time=%u seqnum = %u",
|
||||
(double) ntp_now / SEC, (double) audio_data.ntp_time_local / SEC, (double) latency / SEC,
|
||||
(uint32_t) rtp64_timestamp, seqnum);
|
||||
}
|
||||
}
|
||||
|
||||
/* Handle possible resend requests */
|
||||
|
||||
@@ -201,6 +201,7 @@ raop_rtp_mirror_thread(void *arg)
|
||||
const char h265[] = "h265";
|
||||
bool unsupported_codec = false;
|
||||
bool video_stream_suspended = false;
|
||||
bool first_packet = true;
|
||||
|
||||
while (1) {
|
||||
fd_set rfds;
|
||||
@@ -327,6 +328,11 @@ raop_rtp_mirror_thread(void *arg)
|
||||
}
|
||||
ntp_timestamp_raw = byteutils_get_long(packet, 8);
|
||||
ntp_timestamp_remote = raop_ntp_timestamp_to_nano_seconds(ntp_timestamp_raw, false);
|
||||
if (first_packet) {
|
||||
uint64_t offset = raop_ntp_get_local_time() - ntp_timestamp_remote;
|
||||
raop_ntp_set_video_arrival_offset(raop_rtp_mirror->ntp, &offset);
|
||||
first_packet = false;
|
||||
}
|
||||
|
||||
/* packet[4] + packet[5] identify the payload type: values seen are: *
|
||||
* 0x00 0x00: encrypted packet containing a non-IDR type 1 VCL NAL unit *
|
||||
@@ -389,10 +395,10 @@ raop_rtp_mirror_thread(void *arg)
|
||||
|
||||
ntp_timestamp_local = raop_ntp_convert_remote_time(raop_rtp_mirror->ntp, ntp_timestamp_remote);
|
||||
if (logger_debug) {
|
||||
uint64_t ntp_now = raop_ntp_get_local_time(raop_rtp_mirror->ntp);
|
||||
int64_t latency = ((int64_t) ntp_now) - ((int64_t) ntp_timestamp_local);
|
||||
uint64_t ntp_now = raop_ntp_get_local_time();
|
||||
int64_t latency = (ntp_timestamp_local ? ((int64_t) ntp_now) - ((int64_t) ntp_timestamp_local) : 0);
|
||||
logger_log(raop_rtp_mirror->logger, LOGGER_DEBUG,
|
||||
"raop_rtp video: now = %8.6f, ntp = %8.6f, latency = %8.6f, ts = %8.6f, %s %s",
|
||||
"raop_rtp video: now = %8.6f, ntp = %8.6f, latency = %9.6f, ts = %8.6f, %s %s",
|
||||
(double) ntp_now / SEC, (double) ntp_timestamp_local / SEC, (double) latency / SEC,
|
||||
(double) ntp_timestamp_remote / SEC, packet_description, h265_video ? h265 : h264);
|
||||
}
|
||||
|
||||
@@ -1658,7 +1658,8 @@ extern "C" void audio_process (void *cls, raop_ntp_t *ntp, audio_decode_struct *
|
||||
}
|
||||
if (use_audio) {
|
||||
if (!remote_clock_offset) {
|
||||
remote_clock_offset = data->ntp_time_local - data->ntp_time_remote;
|
||||
uint64_t local_time = (data->ntp_time_local ? data->ntp_time_local : get_local_time());
|
||||
remote_clock_offset = local_time - data->ntp_time_remote;
|
||||
}
|
||||
data->ntp_time_remote = data->ntp_time_remote + remote_clock_offset;
|
||||
switch (data->ct) {
|
||||
@@ -1686,7 +1687,8 @@ extern "C" void video_process (void *cls, raop_ntp_t *ntp, video_decode_struct *
|
||||
}
|
||||
if (use_video) {
|
||||
if (!remote_clock_offset) {
|
||||
remote_clock_offset = data->ntp_time_local - data->ntp_time_remote;
|
||||
uint64_t local_time = (data->ntp_time_local ? data->ntp_time_local : get_local_time());
|
||||
remote_clock_offset = local_time - data->ntp_time_remote;
|
||||
}
|
||||
data->ntp_time_remote = data->ntp_time_remote + remote_clock_offset;
|
||||
video_renderer_render_buffer(data->data, &(data->data_len), &(data->nal_count), &(data->ntp_time_remote));
|
||||
|
||||
Reference in New Issue
Block a user