3ada5c51bc
Prefix the name of threads by "scrcpy-". This improves readability in the output of `top -H` for example. Limit the thread names to 16 bytes, because it is limited on some platforms.
399 lines
11 KiB
C
399 lines
11 KiB
C
#include "recorder.h"
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#include <assert.h>
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#include <libavcodec/avcodec.h>
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#include <libavformat/avformat.h>
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#include <libavutil/time.h>
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#include "util/log.h"
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#include "util/str.h"
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/** Downcast packet_sink to recorder */
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#define DOWNCAST(SINK) container_of(SINK, struct recorder, packet_sink)
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static const AVRational SCRCPY_TIME_BASE = {1, 1000000}; // timestamps in us
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static const AVOutputFormat *
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find_muxer(const char *name) {
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#ifdef SCRCPY_LAVF_HAS_NEW_MUXER_ITERATOR_API
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void *opaque = NULL;
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#endif
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const AVOutputFormat *oformat = NULL;
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do {
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#ifdef SCRCPY_LAVF_HAS_NEW_MUXER_ITERATOR_API
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oformat = av_muxer_iterate(&opaque);
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#else
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oformat = av_oformat_next(oformat);
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#endif
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// until null or containing the requested name
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} while (oformat && !sc_str_list_contains(oformat->name, ',', 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 = malloc(sizeof(*rec));
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if (!rec) {
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LOG_OOM();
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return NULL;
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}
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rec->packet = av_packet_alloc();
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if (!rec->packet) {
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LOG_OOM();
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free(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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av_packet_free(&rec->packet);
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free(rec);
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return NULL;
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}
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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_free(&rec->packet);
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free(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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while (!sc_queue_is_empty(queue)) {
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struct record_packet *rec;
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sc_queue_take(queue, next, &rec);
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record_packet_delete(rec);
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}
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}
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static const char *
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recorder_get_format_name(enum sc_record_format format) {
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switch (format) {
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case SC_RECORD_FORMAT_MP4: return "mp4";
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case SC_RECORD_FORMAT_MKV: return "matroska";
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default: return NULL;
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}
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}
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static bool
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recorder_write_header(struct recorder *recorder, const AVPacket *packet) {
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AVStream *ostream = recorder->ctx->streams[0];
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uint8_t *extradata = av_malloc(packet->size * sizeof(uint8_t));
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if (!extradata) {
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LOG_OOM();
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return false;
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}
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// copy the first packet to the extra data
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memcpy(extradata, packet->data, packet->size);
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ostream->codecpar->extradata = extradata;
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ostream->codecpar->extradata_size = packet->size;
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int ret = avformat_write_header(recorder->ctx, NULL);
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if (ret < 0) {
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LOGE("Failed to write header to %s", recorder->filename);
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return false;
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}
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return true;
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}
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static void
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recorder_rescale_packet(struct recorder *recorder, AVPacket *packet) {
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AVStream *ostream = recorder->ctx->streams[0];
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av_packet_rescale_ts(packet, SCRCPY_TIME_BASE, ostream->time_base);
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}
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static bool
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recorder_write(struct recorder *recorder, AVPacket *packet) {
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if (!recorder->header_written) {
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if (packet->pts != AV_NOPTS_VALUE) {
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LOGE("The first packet is not a config packet");
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return false;
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}
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bool ok = recorder_write_header(recorder, packet);
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if (!ok) {
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return false;
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}
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recorder->header_written = true;
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return true;
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}
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if (packet->pts == AV_NOPTS_VALUE) {
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// ignore config packets
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return true;
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}
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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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sc_mutex_lock(&recorder->mutex);
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while (!recorder->stopped && sc_queue_is_empty(&recorder->queue)) {
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sc_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 && sc_queue_is_empty(&recorder->queue)) {
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sc_mutex_unlock(&recorder->mutex);
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struct record_packet *last = recorder->previous;
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if (last) {
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// assign an arbitrary duration to the last packet
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last->packet->duration = 100000;
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bool ok = recorder_write(recorder, last->packet);
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if (!ok) {
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// failing to write the last frame is not very serious, no
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// future frame may depend on it, so the resulting file
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// will still be valid
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LOGW("Could not record last packet");
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}
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record_packet_delete(last);
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}
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break;
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}
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struct record_packet *rec;
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sc_queue_take(&recorder->queue, next, &rec);
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sc_mutex_unlock(&recorder->mutex);
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// recorder->previous is only written from this thread, no need to lock
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struct record_packet *previous = recorder->previous;
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recorder->previous = rec;
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if (!previous) {
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// we just received the first packet
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continue;
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}
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// config packets have no PTS, we must ignore them
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if (rec->packet->pts != AV_NOPTS_VALUE
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&& previous->packet->pts != AV_NOPTS_VALUE) {
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// we now know the duration of the previous packet
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previous->packet->duration =
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rec->packet->pts - previous->packet->pts;
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}
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bool ok = recorder_write(recorder, previous->packet);
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record_packet_delete(previous);
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if (!ok) {
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LOGE("Could not record packet");
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sc_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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sc_mutex_unlock(&recorder->mutex);
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break;
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}
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}
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if (!recorder->failed) {
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if (recorder->header_written) {
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int ret = av_write_trailer(recorder->ctx);
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if (ret < 0) {
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LOGE("Failed to write trailer to %s", recorder->filename);
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recorder->failed = true;
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}
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} else {
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// the recorded file is empty
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recorder->failed = true;
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}
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}
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if (recorder->failed) {
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LOGE("Recording failed to %s", recorder->filename);
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} else {
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const char *format_name = recorder_get_format_name(recorder->format);
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LOGI("Recording complete to %s file: %s", format_name,
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recorder->filename);
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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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static bool
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recorder_open(struct recorder *recorder, const AVCodec *input_codec) {
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bool ok = sc_mutex_init(&recorder->mutex);
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if (!ok) {
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return false;
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}
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ok = sc_cond_init(&recorder->queue_cond);
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if (!ok) {
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goto error_mutex_destroy;
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}
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sc_queue_init(&recorder->queue);
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recorder->stopped = false;
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recorder->failed = false;
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recorder->header_written = false;
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recorder->previous = NULL;
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const char *format_name = recorder_get_format_name(recorder->format);
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assert(format_name);
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const AVOutputFormat *format = find_muxer(format_name);
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if (!format) {
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LOGE("Could not find muxer");
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goto error_cond_destroy;
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}
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recorder->ctx = avformat_alloc_context();
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if (!recorder->ctx) {
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LOG_OOM();
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goto error_cond_destroy;
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}
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// contrary to the deprecated API (av_oformat_next()), av_muxer_iterate()
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// returns (on purpose) a pointer-to-const, but AVFormatContext.oformat
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// still expects a pointer-to-non-const (it has not be updated accordingly)
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// <https://github.com/FFmpeg/FFmpeg/commit/0694d8702421e7aff1340038559c438b61bb30dd>
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recorder->ctx->oformat = (AVOutputFormat *) format;
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av_dict_set(&recorder->ctx->metadata, "comment",
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"Recorded by scrcpy " SCRCPY_VERSION, 0);
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AVStream *ostream = avformat_new_stream(recorder->ctx, input_codec);
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if (!ostream) {
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goto error_avformat_free_context;
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}
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ostream->codecpar->codec_type = AVMEDIA_TYPE_VIDEO;
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ostream->codecpar->codec_id = input_codec->id;
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ostream->codecpar->format = AV_PIX_FMT_YUV420P;
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ostream->codecpar->width = recorder->declared_frame_size.width;
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ostream->codecpar->height = recorder->declared_frame_size.height;
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int ret = avio_open(&recorder->ctx->pb, recorder->filename,
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AVIO_FLAG_WRITE);
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if (ret < 0) {
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LOGE("Failed to open output file: %s", recorder->filename);
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// ostream will be cleaned up during context cleaning
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goto error_avformat_free_context;
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}
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LOGD("Starting recorder thread");
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ok = sc_thread_create(&recorder->thread, run_recorder, "scrcpy-recorder",
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recorder);
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if (!ok) {
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LOGC("Could not start recorder thread");
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goto error_avio_close;
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}
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LOGI("Recording started to %s file: %s", format_name, recorder->filename);
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return true;
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error_avio_close:
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avio_close(recorder->ctx->pb);
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error_avformat_free_context:
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avformat_free_context(recorder->ctx);
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error_cond_destroy:
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sc_cond_destroy(&recorder->queue_cond);
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error_mutex_destroy:
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sc_mutex_destroy(&recorder->mutex);
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return false;
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}
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static void
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recorder_close(struct recorder *recorder) {
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sc_mutex_lock(&recorder->mutex);
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recorder->stopped = true;
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sc_cond_signal(&recorder->queue_cond);
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sc_mutex_unlock(&recorder->mutex);
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sc_thread_join(&recorder->thread, NULL);
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avio_close(recorder->ctx->pb);
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avformat_free_context(recorder->ctx);
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sc_cond_destroy(&recorder->queue_cond);
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sc_mutex_destroy(&recorder->mutex);
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}
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static bool
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recorder_push(struct recorder *recorder, const AVPacket *packet) {
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sc_mutex_lock(&recorder->mutex);
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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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sc_mutex_unlock(&recorder->mutex);
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return false;
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}
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struct record_packet *rec = record_packet_new(packet);
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if (!rec) {
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LOG_OOM();
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sc_mutex_unlock(&recorder->mutex);
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return false;
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}
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sc_queue_push(&recorder->queue, next, rec);
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sc_cond_signal(&recorder->queue_cond);
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sc_mutex_unlock(&recorder->mutex);
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return true;
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}
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static bool
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recorder_packet_sink_open(struct sc_packet_sink *sink, const AVCodec *codec) {
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struct recorder *recorder = DOWNCAST(sink);
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return recorder_open(recorder, codec);
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}
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static void
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recorder_packet_sink_close(struct sc_packet_sink *sink) {
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struct recorder *recorder = DOWNCAST(sink);
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recorder_close(recorder);
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}
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static bool
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recorder_packet_sink_push(struct sc_packet_sink *sink, const AVPacket *packet) {
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struct recorder *recorder = DOWNCAST(sink);
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return recorder_push(recorder, packet);
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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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enum sc_record_format format,
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struct sc_size declared_frame_size) {
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recorder->filename = strdup(filename);
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if (!recorder->filename) {
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LOG_OOM();
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return false;
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}
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recorder->format = format;
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recorder->declared_frame_size = declared_frame_size;
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static const struct sc_packet_sink_ops ops = {
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.open = recorder_packet_sink_open,
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.close = recorder_packet_sink_close,
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.push = recorder_packet_sink_push,
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};
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recorder->packet_sink.ops = &ops;
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return true;
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}
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void
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recorder_destroy(struct recorder *recorder) {
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free(recorder->filename);
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}
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