mirror of https://github.com/Genymobile/scrcpy
Record asynchronously
The record file was written from the stream thread. As a consequence, any blocking I/O to write the file delayed the decoder. For maximum performance even when recording is enabled, send (refcounted) packets to a separate recording thread.
This commit is contained in:
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63af7fbafe
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@ -5,6 +5,7 @@
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#include "compat.h"
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#include "config.h"
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#include "lock_util.h"
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#include "log.h"
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static const AVRational SCRCPY_TIME_BASE = {1, 1000000}; // timestamps in us
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@ -26,6 +27,82 @@ find_muxer(const char *name) {
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return oformat;
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}
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static struct record_packet *
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record_packet_new(const AVPacket *packet) {
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struct record_packet *rec = SDL_malloc(sizeof(*rec));
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if (!rec) {
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return NULL;
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}
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if (av_packet_ref(&rec->packet, packet)) {
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SDL_free(rec);
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return NULL;
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}
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rec->next = NULL;
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return rec;
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}
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static void
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record_packet_delete(struct record_packet *rec) {
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av_packet_unref(&rec->packet);
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SDL_free(rec);
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}
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static void
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recorder_queue_init(struct recorder_queue *queue) {
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queue->first = NULL;
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// queue->last is undefined if queue->first == NULL
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}
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static inline bool
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recorder_queue_is_empty(struct recorder_queue *queue) {
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return !queue->first;
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}
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static bool
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recorder_queue_push(struct recorder_queue *queue, const AVPacket *packet) {
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struct record_packet *rec = record_packet_new(packet);
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if (!rec) {
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LOGC("Could not allocate record packet");
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return false;
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}
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rec->next = NULL;
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if (recorder_queue_is_empty(queue)) {
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queue->first = queue->last = rec;
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} else {
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// chain rec after the (current) last packet
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queue->last->next = rec;
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// the last packet is now rec
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queue->last = rec;
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}
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return true;
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}
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static inline struct record_packet *
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recorder_queue_take(struct recorder_queue *queue) {
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SDL_assert(!recorder_queue_is_empty(queue));
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struct record_packet *rec = queue->first;
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SDL_assert(rec);
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queue->first = rec->next;
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// no need to update queue->last if the queue is left empty:
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// queue->last is undefined if queue->first == NULL
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return rec;
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}
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static void
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recorder_queue_clear(struct recorder_queue *queue) {
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struct record_packet *rec = queue->first;
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while (rec) {
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struct record_packet *current = rec;
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rec = rec->next;
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record_packet_delete(current);
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}
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queue->first = NULL;
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}
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bool
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recorder_init(struct recorder *recorder,
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const char *filename,
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return false;
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}
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recorder->mutex = SDL_CreateMutex();
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if (!recorder->mutex) {
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LOGC("Could not create mutex");
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SDL_free(recorder->filename);
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return false;
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}
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recorder->queue_cond = SDL_CreateCond();
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if (!recorder->queue_cond) {
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LOGC("Could not create cond");
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SDL_DestroyMutex(recorder->mutex);
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SDL_free(recorder->filename);
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return false;
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}
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recorder_queue_init(&recorder->queue);
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recorder->stopped = false;
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recorder->failed = false;
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recorder->format = format;
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recorder->declared_frame_size = declared_frame_size;
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recorder->header_written = false;
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@ -46,6 +141,8 @@ recorder_init(struct recorder *recorder,
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void
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recorder_destroy(struct recorder *recorder) {
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SDL_DestroyCond(recorder->queue_cond);
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SDL_DestroyMutex(recorder->mutex);
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SDL_free(recorder->filename);
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}
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@ -186,3 +283,90 @@ recorder_write(struct recorder *recorder, AVPacket *packet) {
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recorder_rescale_packet(recorder, packet);
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return av_write_frame(recorder->ctx, packet) >= 0;
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}
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static int
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run_recorder(void *data) {
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struct recorder *recorder = data;
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for (;;) {
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mutex_lock(recorder->mutex);
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while (!recorder->stopped &&
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recorder_queue_is_empty(&recorder->queue)) {
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cond_wait(recorder->queue_cond, recorder->mutex);
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}
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// if stopped is set, continue to process the remaining events (to
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// finish the recording) before actually stopping
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if (recorder->stopped && recorder_queue_is_empty(&recorder->queue)) {
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mutex_unlock(recorder->mutex);
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break;
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}
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struct record_packet *rec = recorder_queue_take(&recorder->queue);
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mutex_unlock(recorder->mutex);
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bool ok = recorder_write(recorder, &rec->packet);
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record_packet_delete(rec);
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if (!ok) {
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LOGE("Could not record packet");
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mutex_lock(recorder->mutex);
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recorder->failed = true;
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// discard pending packets
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recorder_queue_clear(&recorder->queue);
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mutex_unlock(recorder->mutex);
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break;
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}
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}
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LOGD("Recorder thread ended");
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return 0;
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}
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bool
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recorder_start(struct recorder *recorder) {
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LOGD("Starting recorder thread");
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recorder->thread = SDL_CreateThread(run_recorder, "recorder", recorder);
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if (!recorder->thread) {
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LOGC("Could not start recorder thread");
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return false;
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}
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return true;
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}
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void
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recorder_stop(struct recorder *recorder) {
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mutex_lock(recorder->mutex);
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recorder->stopped = true;
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cond_signal(recorder->queue_cond);
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mutex_unlock(recorder->mutex);
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}
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void
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recorder_join(struct recorder *recorder) {
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SDL_WaitThread(recorder->thread, NULL);
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}
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bool
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recorder_push(struct recorder *recorder, const AVPacket *packet) {
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mutex_lock(recorder->mutex);
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SDL_assert(!recorder->stopped);
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if (recorder->failed) {
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// reject any new packet (this will stop the stream)
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return false;
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}
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bool ok = recorder_queue_push(&recorder->queue, packet);
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cond_signal(recorder->queue_cond);
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mutex_unlock(recorder->mutex);
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return ok;
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}
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@ -3,6 +3,8 @@
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#include <stdbool.h>
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#include <libavformat/avformat.h>
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#include <SDL2/SDL_mutex.h>
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#include <SDL2/SDL_thread.h>
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#include "common.h"
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RECORDER_FORMAT_MKV,
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};
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struct record_packet {
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AVPacket packet;
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struct record_packet *next;
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};
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struct recorder_queue {
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struct record_packet *first;
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struct record_packet *last; // undefined if first is NULL
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};
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struct recorder {
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char *filename;
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enum recorder_format format;
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AVFormatContext *ctx;
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struct size declared_frame_size;
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bool header_written;
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SDL_Thread *thread;
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SDL_mutex *mutex;
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SDL_cond *queue_cond;
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bool stopped; // set on recorder_stop() by the stream reader
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bool failed; // set on packet write failure
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struct recorder_queue queue;
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};
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bool
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recorder_close(struct recorder *recorder);
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bool
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recorder_write(struct recorder *recorder, AVPacket *packet);
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recorder_start(struct recorder *recorder);
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void
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recorder_stop(struct recorder *recorder);
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void
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recorder_join(struct recorder *recorder);
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bool
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recorder_push(struct recorder *recorder, const AVPacket *packet);
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#endif
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static bool
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process_config_packet(struct stream *stream, AVPacket *packet) {
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if (stream->recorder && !recorder_write(stream->recorder, packet)) {
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if (stream->recorder && !recorder_push(stream->recorder, packet)) {
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LOGE("Could not send config packet to recorder");
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return false;
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}
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if (stream->recorder) {
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packet->dts = packet->pts;
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if (!recorder_write(stream->recorder, packet)) {
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LOGE("Could not write frame to output file");
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if (!recorder_push(stream->recorder, packet)) {
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LOGE("Could not send packet to recorder");
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return false;
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}
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}
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goto finally_free_codec_ctx;
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}
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if (stream->recorder && !recorder_open(stream->recorder, codec)) {
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LOGE("Could not open recorder");
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goto finally_close_decoder;
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if (stream->recorder) {
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if (!recorder_open(stream->recorder, codec)) {
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LOGE("Could not open recorder");
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goto finally_close_decoder;
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}
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if (!recorder_start(stream->recorder)) {
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LOGE("Could not start recorder");
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goto finally_close_recorder;
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}
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}
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stream->parser = av_parser_init(AV_CODEC_ID_H264);
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if (!stream->parser) {
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LOGE("Could not initialize parser");
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goto finally_close_recorder;
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goto finally_stop_and_join_recorder;
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}
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// We must only pass complete frames to av_parser_parse2()!
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}
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av_parser_close(stream->parser);
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finally_stop_and_join_recorder:
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if (stream->recorder) {
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recorder_stop(stream->recorder);
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LOGI("Finishing recording...");
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recorder_join(stream->recorder);
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}
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finally_close_recorder:
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if (stream->recorder) {
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recorder_close(stream->recorder);
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