Commit 511dd943 by Oliver Woodman

Merge branch 'dev' into dev-hls

parents c2d55aca 4efc0abd
Showing with 326 additions and 103 deletions
......@@ -47,7 +47,7 @@ public class DemoUtil {
public static final String CONTENT_TYPE_EXTRA = "content_type";
public static final String CONTENT_ID_EXTRA = "content_id";
public static final int TYPE_DASH_VOD = 0;
public static final int TYPE_DASH = 0;
public static final int TYPE_SS = 1;
public static final int TYPE_OTHER = 2;
public static final int TYPE_DASH_LIVE = 3;
......
......@@ -46,13 +46,13 @@ package com.google.android.exoplayer.demo;
"http://www.youtube.com/api/manifest/dash/id/bf5bb2419360daf1/source/youtube?"
+ "as=fmp4_audio_clear,fmp4_sd_hd_clear&sparams=ip,ipbits,expire,as&ip=0.0.0.0&"
+ "ipbits=0&expire=19000000000&signature=255F6B3C07C753C88708C07EA31B7A1A10703C8D."
+ "2D6A28B21F921D0B245CDCF36F7EB54A2B5ABFC2&key=ik0", DemoUtil.TYPE_DASH_VOD, false,
+ "2D6A28B21F921D0B245CDCF36F7EB54A2B5ABFC2&key=ik0", DemoUtil.TYPE_DASH, false,
false),
new Sample("Google Play (DASH)", "3aa39fa2cc27967f",
"http://www.youtube.com/api/manifest/dash/id/3aa39fa2cc27967f/source/youtube?"
+ "as=fmp4_audio_clear,fmp4_sd_hd_clear&sparams=ip,ipbits,expire,as&ip=0.0.0.0&ipbits=0&"
+ "expire=19000000000&signature=7181C59D0252B285D593E1B61D985D5B7C98DE2A."
+ "5B445837F55A40E0F28AACAA047982E372D177E2&key=ik0", DemoUtil.TYPE_DASH_VOD, false,
+ "5B445837F55A40E0F28AACAA047982E372D177E2&key=ik0", DemoUtil.TYPE_DASH, false,
false),
new Sample("Super speed (SmoothStreaming)", "uid:ss:superspeed",
"http://playready.directtaps.net/smoothstreaming/SSWSS720H264/SuperSpeedway_720.ism",
......@@ -69,13 +69,13 @@ package com.google.android.exoplayer.demo;
"http://www.youtube.com/api/manifest/dash/id/bf5bb2419360daf1/source/youtube?"
+ "as=fmp4_audio_clear,fmp4_sd_hd_clear&sparams=ip,ipbits,expire,as&ip=0.0.0.0&"
+ "ipbits=0&expire=19000000000&signature=255F6B3C07C753C88708C07EA31B7A1A10703C8D."
+ "2D6A28B21F921D0B245CDCF36F7EB54A2B5ABFC2&key=ik0", DemoUtil.TYPE_DASH_VOD, false,
+ "2D6A28B21F921D0B245CDCF36F7EB54A2B5ABFC2&key=ik0", DemoUtil.TYPE_DASH, false,
true),
new Sample("Google Play", "3aa39fa2cc27967f",
"http://www.youtube.com/api/manifest/dash/id/3aa39fa2cc27967f/source/youtube?"
+ "as=fmp4_audio_clear,fmp4_sd_hd_clear&sparams=ip,ipbits,expire,as&ip=0.0.0.0&ipbits=0&"
+ "expire=19000000000&signature=7181C59D0252B285D593E1B61D985D5B7C98DE2A."
+ "5B445837F55A40E0F28AACAA047982E372D177E2&key=ik0", DemoUtil.TYPE_DASH_VOD, false,
+ "5B445837F55A40E0F28AACAA047982E372D177E2&key=ik0", DemoUtil.TYPE_DASH, false,
true),
};
......@@ -84,12 +84,12 @@ package com.google.android.exoplayer.demo;
"http://www.youtube.com/api/manifest/dash/id/bf5bb2419360daf1/source/youtube?"
+ "as=fmp4_audio_clear,webm2_sd_hd_clear&sparams=ip,ipbits,expire,as&ip=0.0.0.0&ipbits=0&"
+ "expire=19000000000&signature=A3EC7EE53ABE601B357F7CAB8B54AD0702CA85A7."
+ "446E9C38E47E3EDAF39E0163C390FF83A7944918&key=ik0", DemoUtil.TYPE_DASH_VOD, false, true),
+ "446E9C38E47E3EDAF39E0163C390FF83A7944918&key=ik0", DemoUtil.TYPE_DASH, false, true),
new Sample("Google Play", "3aa39fa2cc27967f",
"http://www.youtube.com/api/manifest/dash/id/3aa39fa2cc27967f/source/youtube?"
+ "as=fmp4_audio_clear,webm2_sd_hd_clear&sparams=ip,ipbits,expire,as&ip=0.0.0.0&ipbits=0&"
+ "expire=19000000000&signature=B752B262C6D7262EC4E4EB67901E5D8F7058A81D."
+ "C0358CE1E335417D9A8D88FF192F0D5D8F6DA1B6&key=ik0", DemoUtil.TYPE_DASH_VOD, false, true),
+ "C0358CE1E335417D9A8D88FF192F0D5D8F6DA1B6&key=ik0", DemoUtil.TYPE_DASH, false, true),
};
public static final Sample[] SMOOTHSTREAMING = new Sample[] {
......@@ -106,32 +106,32 @@ package com.google.android.exoplayer.demo;
"http://www.youtube.com/api/manifest/dash/id/d286538032258a1c/source/youtube?"
+ "as=fmp4_audio_cenc,fmp4_sd_hd_cenc&sparams=ip,ipbits,expire,as&ip=0.0.0.0&ipbits=0"
+ "&expire=19000000000&signature=41EA40A027A125A16292E0A5E3277A3B5FA9B938."
+ "0BB075C396FFDDC97E526E8F77DC26FF9667D0D6&key=ik0", DemoUtil.TYPE_DASH_VOD, true, true),
+ "0BB075C396FFDDC97E526E8F77DC26FF9667D0D6&key=ik0", DemoUtil.TYPE_DASH, true, true),
new Sample("WV: HDCP not required", "48fcc369939ac96c",
"http://www.youtube.com/api/manifest/dash/id/48fcc369939ac96c/source/youtube?"
+ "as=fmp4_audio_cenc,fmp4_sd_hd_cenc&sparams=ip,ipbits,expire,as&ip=0.0.0.0&ipbits=0"
+ "&expire=19000000000&signature=315911BDCEED0FB0C763455BDCC97449DAAFA9E8."
+ "5B41E2EB411F797097A359D6671D2CDE26272373&key=ik0", DemoUtil.TYPE_DASH_VOD, true, true),
+ "5B41E2EB411F797097A359D6671D2CDE26272373&key=ik0", DemoUtil.TYPE_DASH, true, true),
new Sample("WV: HDCP required", "e06c39f1151da3df",
"http://www.youtube.com/api/manifest/dash/id/e06c39f1151da3df/source/youtube?"
+ "as=fmp4_audio_cenc,fmp4_sd_hd_cenc&sparams=ip,ipbits,expire,as&ip=0.0.0.0&ipbits=0"
+ "&expire=19000000000&signature=A47A1E13E7243BD567601A75F79B34644D0DC592."
+ "B09589A34FA23527EFC1552907754BB8033870BD&key=ik0", DemoUtil.TYPE_DASH_VOD, true, true),
+ "B09589A34FA23527EFC1552907754BB8033870BD&key=ik0", DemoUtil.TYPE_DASH, true, true),
new Sample("WV: Secure video path required", "0894c7c8719b28a0",
"http://www.youtube.com/api/manifest/dash/id/0894c7c8719b28a0/source/youtube?"
+ "as=fmp4_audio_cenc,fmp4_sd_hd_cenc&sparams=ip,ipbits,expire,as&ip=0.0.0.0&ipbits=0"
+ "&expire=19000000000&signature=2847EE498970F6B45176766CD2802FEB4D4CB7B2."
+ "A1CA51EC40A1C1039BA800C41500DD448C03EEDA&key=ik0", DemoUtil.TYPE_DASH_VOD, true, true),
+ "A1CA51EC40A1C1039BA800C41500DD448C03EEDA&key=ik0", DemoUtil.TYPE_DASH, true, true),
new Sample("WV: HDCP + secure video path required", "efd045b1eb61888a",
"http://www.youtube.com/api/manifest/dash/id/efd045b1eb61888a/source/youtube?"
+ "as=fmp4_audio_cenc,fmp4_sd_hd_cenc&sparams=ip,ipbits,expire,as&ip=0.0.0.0&ipbits=0"
+ "&expire=19000000000&signature=61611F115EEEC7BADE5536827343FFFE2D83D14F."
+ "2FDF4BFA502FB5865C5C86401314BDDEA4799BD0&key=ik0", DemoUtil.TYPE_DASH_VOD, true, true),
+ "2FDF4BFA502FB5865C5C86401314BDDEA4799BD0&key=ik0", DemoUtil.TYPE_DASH, true, true),
new Sample("WV: 30s license duration", "f9a34cab7b05881a",
"http://www.youtube.com/api/manifest/dash/id/f9a34cab7b05881a/source/youtube?"
+ "as=fmp4_audio_cenc,fmp4_sd_hd_cenc&sparams=ip,ipbits,expire,as&ip=0.0.0.0&ipbits=0"
+ "&expire=19000000000&signature=88DC53943385CED8CF9F37ADD9E9843E3BF621E6."
+ "22727BB612D24AA4FACE4EF62726F9461A9BF57A&key=ik0", DemoUtil.TYPE_DASH_VOD, true, true),
+ "22727BB612D24AA4FACE4EF62726F9461A9BF57A&key=ik0", DemoUtil.TYPE_DASH, true, true),
};
public static final Sample[] HLS = new Sample[] {
......
......@@ -19,7 +19,7 @@ import com.google.android.exoplayer.ExoPlayer;
import com.google.android.exoplayer.VideoSurfaceView;
import com.google.android.exoplayer.demo.DemoUtil;
import com.google.android.exoplayer.demo.R;
import com.google.android.exoplayer.demo.full.player.DashVodRendererBuilder;
import com.google.android.exoplayer.demo.full.player.DashRendererBuilder;
import com.google.android.exoplayer.demo.full.player.DefaultRendererBuilder;
import com.google.android.exoplayer.demo.full.player.DemoPlayer;
import com.google.android.exoplayer.demo.full.player.DemoPlayer.RendererBuilder;
......@@ -179,8 +179,8 @@ public class FullPlayerActivity extends Activity implements SurfaceHolder.Callba
case DemoUtil.TYPE_SS:
return new SmoothStreamingRendererBuilder(userAgent, contentUri.toString(), contentId,
new SmoothStreamingTestMediaDrmCallback(), debugTextView);
case DemoUtil.TYPE_DASH_VOD:
return new DashVodRendererBuilder(userAgent, contentUri.toString(), contentId,
case DemoUtil.TYPE_DASH:
return new DashRendererBuilder(userAgent, contentUri.toString(), contentId,
new WidevineTestMediaDrmCallback(contentId), debugTextView);
case DemoUtil.TYPE_HLS:
return new HlsRendererBuilder(userAgent, contentUri.toString(), contentId);
......
......@@ -64,7 +64,7 @@ public class SmoothStreamingRendererBuilder implements RendererBuilder,
private static final int BUFFER_SEGMENT_SIZE = 64 * 1024;
private static final int VIDEO_BUFFER_SEGMENTS = 200;
private static final int AUDIO_BUFFER_SEGMENTS = 60;
private static final int TTML_BUFFER_SEGMENTS = 2;
private static final int TEXT_BUFFER_SEGMENTS = 2;
private static final int LIVE_EDGE_LATENCY_MS = 30000;
private final String userAgent;
......@@ -149,10 +149,7 @@ public class SmoothStreamingRendererBuilder implements RendererBuilder,
}
}
}
int[] videoTrackIndices = new int[videoTrackIndexList.size()];
for (int i = 0; i < videoTrackIndexList.size(); i++) {
videoTrackIndices[i] = videoTrackIndexList.get(i);
}
int[] videoTrackIndices = Util.toArray(videoTrackIndexList);
// Build the video renderer.
DataSource videoDataSource = new UriDataSource(userAgent, bandwidthMeter);
......@@ -221,7 +218,7 @@ public class SmoothStreamingRendererBuilder implements RendererBuilder,
}
textChunkSource = new MultiTrackChunkSource(textChunkSources);
ChunkSampleSource ttmlSampleSource = new ChunkSampleSource(textChunkSource, loadControl,
TTML_BUFFER_SEGMENTS * BUFFER_SEGMENT_SIZE, true, mainHandler, player,
TEXT_BUFFER_SEGMENTS * BUFFER_SEGMENT_SIZE, true, mainHandler, player,
DemoPlayer.TYPE_TEXT);
textRenderer = new TextTrackRenderer(ttmlSampleSource, new TtmlParser(), player,
mainHandler.getLooper());
......
......@@ -40,22 +40,26 @@ import com.google.android.exoplayer.upstream.DefaultBandwidthMeter;
import com.google.android.exoplayer.upstream.UriDataSource;
import com.google.android.exoplayer.util.ManifestFetcher;
import com.google.android.exoplayer.util.ManifestFetcher.ManifestCallback;
import com.google.android.exoplayer.util.MimeTypes;
import com.google.android.exoplayer.util.Util;
import android.media.MediaCodec;
import android.os.Handler;
import java.io.IOException;
import java.util.ArrayList;
import java.util.List;
/**
* A {@link RendererBuilder} for DASH VOD.
* A {@link RendererBuilder} for DASH.
*/
/* package */ class DashVodRendererBuilder implements RendererBuilder,
/* package */ class DashRendererBuilder implements RendererBuilder,
ManifestCallback<MediaPresentationDescription> {
private static final int BUFFER_SEGMENT_SIZE = 64 * 1024;
private static final int VIDEO_BUFFER_SEGMENTS = 200;
private static final int AUDIO_BUFFER_SEGMENTS = 60;
private static final int LIVE_EDGE_LATENCY_MS = 30000;
private final SimplePlayerActivity playerActivity;
private final String userAgent;
......@@ -63,8 +67,9 @@ import java.util.ArrayList;
private final String contentId;
private RendererBuilderCallback callback;
private ManifestFetcher<MediaPresentationDescription> manifestFetcher;
public DashVodRendererBuilder(SimplePlayerActivity playerActivity, String userAgent, String url,
public DashRendererBuilder(SimplePlayerActivity playerActivity, String userAgent, String url,
String contentId) {
this.playerActivity = playerActivity;
this.userAgent = userAgent;
......@@ -76,8 +81,8 @@ import java.util.ArrayList;
public void buildRenderers(RendererBuilderCallback callback) {
this.callback = callback;
MediaPresentationDescriptionParser parser = new MediaPresentationDescriptionParser();
ManifestFetcher<MediaPresentationDescription> manifestFetcher =
new ManifestFetcher<MediaPresentationDescription>(parser, contentId, url, userAgent);
manifestFetcher = new ManifestFetcher<MediaPresentationDescription>(parser, contentId, url,
userAgent);
manifestFetcher.singleLoad(playerActivity.getMainLooper(), this);
}
......@@ -88,48 +93,50 @@ import java.util.ArrayList;
@Override
public void onManifest(String contentId, MediaPresentationDescription manifest) {
Period period = manifest.periods.get(0);
Handler mainHandler = playerActivity.getMainHandler();
LoadControl loadControl = new DefaultLoadControl(new BufferPool(BUFFER_SEGMENT_SIZE));
DefaultBandwidthMeter bandwidthMeter = new DefaultBandwidthMeter();
// Obtain Representations for playback.
// Determine which video representations we should use for playback.
int maxDecodableFrameSize = MediaCodecUtil.maxH264DecodableFrameSize();
Representation audioRepresentation = null;
ArrayList<Representation> videoRepresentationsList = new ArrayList<Representation>();
Period period = manifest.periods.get(0);
for (int i = 0; i < period.adaptationSets.size(); i++) {
AdaptationSet adaptationSet = period.adaptationSets.get(i);
int adaptationSetType = adaptationSet.type;
for (int j = 0; j < adaptationSet.representations.size(); j++) {
Representation representation = adaptationSet.representations.get(j);
if (audioRepresentation == null && adaptationSetType == AdaptationSet.TYPE_AUDIO) {
audioRepresentation = representation;
} else if (adaptationSetType == AdaptationSet.TYPE_VIDEO) {
Format format = representation.format;
if (format.width * format.height <= maxDecodableFrameSize) {
videoRepresentationsList.add(representation);
} else {
// The device isn't capable of playing this stream.
}
}
int videoAdaptationSetIndex = period.getAdaptationSetIndex(AdaptationSet.TYPE_VIDEO);
List<Representation> videoRepresentations =
period.adaptationSets.get(videoAdaptationSetIndex).representations;
ArrayList<Integer> videoRepresentationIndexList = new ArrayList<Integer>();
for (int i = 0; i < videoRepresentations.size(); i++) {
Format format = videoRepresentations.get(i).format;
if (format.width * format.height > maxDecodableFrameSize) {
// Filtering stream that device cannot play
} else if (!format.mimeType.equals(MimeTypes.VIDEO_MP4)
&& !format.mimeType.equals(MimeTypes.VIDEO_WEBM)) {
// Filtering unsupported mime type
} else {
videoRepresentationIndexList.add(i);
}
}
Representation[] videoRepresentations = new Representation[videoRepresentationsList.size()];
videoRepresentationsList.toArray(videoRepresentations);
// Build the video renderer.
DataSource videoDataSource = new UriDataSource(userAgent, bandwidthMeter);
ChunkSource videoChunkSource = new DashChunkSource(videoDataSource,
new AdaptiveEvaluator(bandwidthMeter), videoRepresentations);
ChunkSampleSource videoSampleSource = new ChunkSampleSource(videoChunkSource, loadControl,
VIDEO_BUFFER_SEGMENTS * BUFFER_SEGMENT_SIZE, true);
MediaCodecVideoTrackRenderer videoRenderer = new MediaCodecVideoTrackRenderer(videoSampleSource,
MediaCodec.VIDEO_SCALING_MODE_SCALE_TO_FIT, 0, mainHandler, playerActivity, 50);
final MediaCodecVideoTrackRenderer videoRenderer;
if (videoRepresentationIndexList.isEmpty()) {
videoRenderer = null;
} else {
int[] videoRepresentationIndices = Util.toArray(videoRepresentationIndexList);
DataSource videoDataSource = new UriDataSource(userAgent, bandwidthMeter);
ChunkSource videoChunkSource = new DashChunkSource(manifestFetcher, videoAdaptationSetIndex,
videoRepresentationIndices, videoDataSource, new AdaptiveEvaluator(bandwidthMeter),
LIVE_EDGE_LATENCY_MS);
ChunkSampleSource videoSampleSource = new ChunkSampleSource(videoChunkSource, loadControl,
VIDEO_BUFFER_SEGMENTS * BUFFER_SEGMENT_SIZE, true);
videoRenderer = new MediaCodecVideoTrackRenderer(videoSampleSource,
MediaCodec.VIDEO_SCALING_MODE_SCALE_TO_FIT, 0, mainHandler, playerActivity, 50);
}
// Build the audio renderer.
int audioAdaptationSetIndex = period.getAdaptationSetIndex(AdaptationSet.TYPE_AUDIO);
DataSource audioDataSource = new UriDataSource(userAgent, bandwidthMeter);
ChunkSource audioChunkSource = new DashChunkSource(audioDataSource,
new FormatEvaluator.FixedEvaluator(), audioRepresentation);
ChunkSource audioChunkSource = new DashChunkSource(manifestFetcher, audioAdaptationSetIndex,
new int[] {0}, audioDataSource, new FormatEvaluator.FixedEvaluator(), LIVE_EDGE_LATENCY_MS);
SampleSource audioSampleSource = new ChunkSampleSource(audioChunkSource, loadControl,
AUDIO_BUFFER_SEGMENTS * BUFFER_SEGMENT_SIZE, true);
MediaCodecAudioTrackRenderer audioRenderer = new MediaCodecAudioTrackRenderer(
......
......@@ -164,8 +164,8 @@ public class SimplePlayerActivity extends Activity implements SurfaceHolder.Call
case DemoUtil.TYPE_SS:
return new SmoothStreamingRendererBuilder(this, userAgent, contentUri.toString(),
contentId);
case DemoUtil.TYPE_DASH_VOD:
return new DashVodRendererBuilder(this, userAgent, contentUri.toString(), contentId);
case DemoUtil.TYPE_DASH:
return new DashRendererBuilder(this, userAgent, contentUri.toString(), contentId);
case DemoUtil.TYPE_HLS:
return new HlsRendererBuilder(this, userAgent, contentUri.toString(), contentId);
default:
......
......@@ -38,6 +38,7 @@ import com.google.android.exoplayer.upstream.DefaultBandwidthMeter;
import com.google.android.exoplayer.upstream.UriDataSource;
import com.google.android.exoplayer.util.ManifestFetcher;
import com.google.android.exoplayer.util.ManifestFetcher.ManifestCallback;
import com.google.android.exoplayer.util.Util;
import android.media.MediaCodec;
import android.os.Handler;
......@@ -115,10 +116,7 @@ import java.util.ArrayList;
}
}
}
int[] videoTrackIndices = new int[videoTrackIndexList.size()];
for (int i = 0; i < videoTrackIndexList.size(); i++) {
videoTrackIndices[i] = videoTrackIndexList.get(i);
}
int[] videoTrackIndices = Util.toArray(videoTrackIndexList);
// Build the video renderer.
DataSource videoDataSource = new UriDataSource(userAgent, bandwidthMeter);
......
......@@ -21,6 +21,16 @@ package com.google.android.exoplayer;
public final class C {
/**
* Represents an unknown microsecond time or duration.
*/
public static final long UNKNOWN_TIME_US = -1L;
/**
* The number of microseconds in one second.
*/
public static final long MICROS_PER_SECOND = 1000000L;
/**
* Represents an unbounded length of data.
*/
public static final int LENGTH_UNBOUNDED = -1;
......
......@@ -71,10 +71,10 @@ public final class FrameworkSampleSource implements SampleSource {
trackInfos = new TrackInfo[trackStates.length];
for (int i = 0; i < trackStates.length; i++) {
android.media.MediaFormat format = extractor.getTrackFormat(i);
long duration = format.containsKey(android.media.MediaFormat.KEY_DURATION) ?
format.getLong(android.media.MediaFormat.KEY_DURATION) : TrackRenderer.UNKNOWN_TIME_US;
long durationUs = format.containsKey(android.media.MediaFormat.KEY_DURATION) ?
format.getLong(android.media.MediaFormat.KEY_DURATION) : C.UNKNOWN_TIME_US;
String mime = format.getString(android.media.MediaFormat.KEY_MIME);
trackInfos[i] = new TrackInfo(mime, duration);
trackInfos[i] = new TrackInfo(mime, durationUs);
}
prepared = true;
}
......
......@@ -20,9 +20,21 @@ package com.google.android.exoplayer;
*/
public final class TrackInfo {
/**
* The mime type.
*/
public final String mimeType;
/**
* The duration in microseconds, or {@link C#UNKNOWN_TIME_US} if the duration is unknown.
*/
public final long durationUs;
/**
* @param mimeType The mime type.
* @param durationUs The duration in microseconds, or {@link C#UNKNOWN_TIME_US} if the duration
* is unknown.
*/
public TrackInfo(String mimeType, long durationUs) {
this.mimeType = mimeType;
this.durationUs = durationUs;
......
......@@ -67,9 +67,9 @@ public abstract class TrackRenderer implements ExoPlayerComponent {
protected static final int STATE_STARTED = 3;
/**
* Represents an unknown time or duration.
* Represents an unknown time or duration. Equal to {@link C#UNKNOWN_TIME_US}.
*/
public static final long UNKNOWN_TIME_US = -1;
public static final long UNKNOWN_TIME_US = C.UNKNOWN_TIME_US; // -1
/**
* Represents a time or duration that should match the duration of the longest track whose
* duration is known.
......
......@@ -40,7 +40,7 @@ public final class AudioCapabilitiesReceiver {
}
/** Default to stereo PCM on SDK <= 21 and when HDMI is unplugged. */
/** Default to stereo PCM on SDK < 21 and when HDMI is unplugged. */
private static final AudioCapabilities DEFAULT_AUDIO_CAPABILITIES =
new AudioCapabilities(new int[] {AudioFormat.ENCODING_PCM_16BIT}, 2);
......
......@@ -15,9 +15,11 @@
*/
package com.google.android.exoplayer.audio;
import com.google.android.exoplayer.C;
import com.google.android.exoplayer.util.Assertions;
import com.google.android.exoplayer.util.Util;
import android.annotation.SuppressLint;
import android.annotation.TargetApi;
import android.media.AudioFormat;
import android.media.AudioManager;
......@@ -80,22 +82,23 @@ public final class AudioTrack {
private static final String TAG = "AudioTrack";
private static final long MICROS_PER_SECOND = 1000000L;
/**
* AudioTrack timestamps are deemed spurious if they are offset from the system clock by more
* than this amount.
*
* <p>This is a fail safe that should not be required on correctly functioning devices.
*/
private static final long MAX_AUDIO_TIMESTAMP_OFFSET_US = 10 * MICROS_PER_SECOND;
private static final long MAX_AUDIO_TIMESTAMP_OFFSET_US = 10 * C.MICROS_PER_SECOND;
/**
* AudioTrack latencies are deemed impossibly large if they are greater than this amount.
*
* <p>This is a fail safe that should not be required on correctly functioning devices.
*/
private static final long MAX_LATENCY_US = 10 * MICROS_PER_SECOND;
private static final long MAX_LATENCY_US = 10 * C.MICROS_PER_SECOND;
/** Value for ac3Bitrate before the bitrate has been calculated. */
private static final int UNKNOWN_AC3_BITRATE = 0;
private static final int START_NOT_SET = 0;
private static final int START_IN_SYNC = 1;
......@@ -139,6 +142,11 @@ public final class AudioTrack {
private int temporaryBufferOffset;
private int temporaryBufferSize;
private boolean isAc3;
/** Bitrate measured in kilobits per second, if {@link #isAc3} is true. */
private int ac3Bitrate;
/** Constructs an audio track using the default minimum buffer size multiplier. */
public AudioTrack() {
this(DEFAULT_MIN_BUFFER_MULTIPLICATION_FACTOR);
......@@ -277,6 +285,7 @@ public final class AudioTrack {
* @param bufferSize The total size of the playback buffer in bytes. Specify 0 to use a buffer
* size based on the minimum for format.
*/
@SuppressLint("InlinedApi")
public void reconfigure(MediaFormat format, int encoding, int bufferSize) {
int channelCount = format.getInteger(MediaFormat.KEY_CHANNEL_COUNT);
int channelConfig;
......@@ -300,8 +309,9 @@ public final class AudioTrack {
int sampleRate = format.getInteger(MediaFormat.KEY_SAMPLE_RATE);
// TODO: Does channelConfig determine channelCount?
boolean isAc3 = encoding == AudioFormat.ENCODING_AC3 || encoding == AudioFormat.ENCODING_E_AC3;
if (audioTrack != null && this.sampleRate == sampleRate
&& this.channelConfig == channelConfig) {
&& this.channelConfig == channelConfig && !this.isAc3 && !isAc3) {
// We already have an existing audio track with the correct sample rate and channel config.
return;
}
......@@ -315,7 +325,8 @@ public final class AudioTrack {
bufferSize == 0 ? (int) (minBufferMultiplicationFactor * minBufferSize) : bufferSize;
this.sampleRate = sampleRate;
this.channelConfig = channelConfig;
this.isAc3 = isAc3;
ac3Bitrate = UNKNOWN_AC3_BITRATE; // Calculated on receiving the first buffer if isAc3 is true.
frameSize = 2 * channelCount; // 2 bytes per 16 bit sample * number of channels.
}
......@@ -353,6 +364,14 @@ public final class AudioTrack {
int result = 0;
if (temporaryBufferSize == 0 && size != 0) {
if (isAc3 && ac3Bitrate == UNKNOWN_AC3_BITRATE) {
// Each AC-3 buffer contains 1536 frames of audio, so the AudioTrack playback position
// advances by 1536 per buffer (32 ms at 48 kHz). Calculate the bitrate in kbit/s.
int unscaledAc3Bitrate = size * 8 * sampleRate;
int divisor = 1000 * 1536;
ac3Bitrate = (unscaledAc3Bitrate + divisor / 2) / divisor;
}
// This is the first time we've seen this {@code buffer}.
// Note: presentationTimeUs corresponds to the end of the sample, not the start.
long bufferStartTime = presentationTimeUs - framesToDurationUs(bytesToFrames(size));
......@@ -616,19 +635,24 @@ public final class AudioTrack {
}
private long framesToBytes(long frameCount) {
// This method is unused on SDK >= 21.
return frameCount * frameSize;
}
private long bytesToFrames(long byteCount) {
return byteCount / frameSize;
if (isAc3) {
return byteCount * 8 * sampleRate / (1000 * ac3Bitrate);
} else {
return byteCount / frameSize;
}
}
private long framesToDurationUs(long frameCount) {
return (frameCount * MICROS_PER_SECOND) / sampleRate;
return (frameCount * C.MICROS_PER_SECOND) / sampleRate;
}
private long durationUsToFrames(long durationUs) {
return (durationUs * sampleRate) / MICROS_PER_SECOND;
return (durationUs * sampleRate) / C.MICROS_PER_SECOND;
}
private void resetSyncParams() {
......
......@@ -46,6 +46,10 @@ public class MultiTrackChunkSource implements ChunkSource, ExoPlayerComponent {
this.selectedSource = sources[0];
}
public MultiTrackChunkSource(List<ChunkSource> sources) {
this(toChunkSourceArray(sources));
}
/**
* Gets the number of tracks that this source can switch between. May be called safely from any
* thread.
......@@ -107,4 +111,10 @@ public class MultiTrackChunkSource implements ChunkSource, ExoPlayerComponent {
selectedSource.onChunkLoadError(chunk, e);
}
private static ChunkSource[] toChunkSourceArray(List<ChunkSource> sources) {
ChunkSource[] chunkSourceArray = new ChunkSource[sources.size()];
sources.toArray(chunkSourceArray);
return chunkSourceArray;
}
}
......@@ -15,6 +15,7 @@
*/
package com.google.android.exoplayer.chunk;
import com.google.android.exoplayer.C;
import com.google.android.exoplayer.MediaFormat;
import com.google.android.exoplayer.TrackInfo;
import com.google.android.exoplayer.upstream.DataSource;
......@@ -42,7 +43,8 @@ public class SingleSampleChunkSource implements ChunkSource {
* @param dataSource A {@link DataSource} suitable for loading the sample data.
* @param dataSpec Defines the location of the sample.
* @param format The format of the sample.
* @param durationUs The duration of the sample in microseconds.
* @param durationUs The duration of the sample in microseconds, or {@link C#UNKNOWN_TIME_US} if
* the duration is unknown.
* @param mediaFormat The sample media format. May be null.
*/
public SingleSampleChunkSource(DataSource dataSource, DataSpec dataSpec, Format format,
......
......@@ -56,4 +56,21 @@ public class Period {
this.adaptationSets = Collections.unmodifiableList(adaptationSets);
}
/**
* Returns the index of the first adaptation set of a given type, or -1 if no adaptation set of
* the specified type exists.
*
* @param type An adaptation set type.
* @return The index of the first adaptation set of the specified type, or -1.
*/
public int getAdaptationSetIndex(int type) {
int adaptationCount = adaptationSets.size();
for (int i = 0; i < adaptationCount; i++) {
if (adaptationSets.get(i).type == type) {
return i;
}
}
return -1;
}
}
......@@ -15,6 +15,7 @@
*/
package com.google.android.exoplayer.dash.mpd;
import com.google.android.exoplayer.C;
import com.google.android.exoplayer.util.Util;
import android.net.Uri;
......@@ -141,11 +142,12 @@ public abstract class SegmentBase {
public final long getSegmentDurationUs(int sequenceNumber) {
if (segmentTimeline != null) {
return (segmentTimeline.get(sequenceNumber - startNumber).duration * 1000000) / timescale;
long duration = segmentTimeline.get(sequenceNumber - startNumber).duration;
return (duration * C.MICROS_PER_SECOND) / timescale;
} else {
return sequenceNumber == getLastSegmentNum()
? (periodDurationMs * 1000) - getSegmentTimeUs(sequenceNumber)
: ((duration * 1000000L) / timescale);
? ((periodDurationMs * 1000) - getSegmentTimeUs(sequenceNumber))
: ((duration * C.MICROS_PER_SECOND) / timescale);
}
}
......@@ -157,7 +159,7 @@ public abstract class SegmentBase {
} else {
unscaledSegmentTime = (sequenceNumber - startNumber) * duration;
}
return Util.scaleLargeTimestamp(unscaledSegmentTime, 1000000, timescale);
return Util.scaleLargeTimestamp(unscaledSegmentTime, C.MICROS_PER_SECOND, timescale);
}
public abstract RangedUri getSegmentUrl(Representation representation, int index);
......
......@@ -15,6 +15,7 @@
*/
package com.google.android.exoplayer.parser.mp4;
import com.google.android.exoplayer.C;
import com.google.android.exoplayer.MediaFormat;
import com.google.android.exoplayer.ParserException;
import com.google.android.exoplayer.SampleHolder;
......@@ -26,6 +27,7 @@ import com.google.android.exoplayer.upstream.NonBlockingInputStream;
import com.google.android.exoplayer.util.Assertions;
import com.google.android.exoplayer.util.CodecSpecificDataUtil;
import com.google.android.exoplayer.util.MimeTypes;
import com.google.android.exoplayer.util.Util;
import android.annotation.SuppressLint;
import android.media.MediaCodec;
......@@ -1053,6 +1055,7 @@ public final class FragmentedMp4Extractor implements Extractor {
long offset = firstOffset;
long time = earliestPresentationTime;
long timeUs = Util.scaleLargeTimestamp(time, C.MICROS_PER_SECOND, timescale);
for (int i = 0; i < referenceCount; i++) {
int firstInt = atom.readInt();
......@@ -1067,10 +1070,10 @@ public final class FragmentedMp4Extractor implements Extractor {
// Calculate time and duration values such that any rounding errors are consistent. i.e. That
// timesUs[i] + durationsUs[i] == timesUs[i + 1].
timesUs[i] = (time * 1000000L) / timescale;
long nextTimeUs = ((time + referenceDuration) * 1000000L) / timescale;
durationsUs[i] = nextTimeUs - timesUs[i];
timesUs[i] = timeUs;
time += referenceDuration;
timeUs = Util.scaleLargeTimestamp(time, C.MICROS_PER_SECOND, timescale);
durationsUs[i] = timeUs - timesUs[i];
atom.skip(4);
offset += sizes[i];
......
......@@ -15,6 +15,7 @@
*/
package com.google.android.exoplayer.smoothstreaming;
import com.google.android.exoplayer.C;
import com.google.android.exoplayer.util.Assertions;
import com.google.android.exoplayer.util.Util;
......@@ -31,30 +32,77 @@ import java.util.UUID;
*/
public class SmoothStreamingManifest {
private static final long MICROS_PER_SECOND = 1000000L;
/**
* The client manifest major version.
*/
public final int majorVersion;
/**
* The client manifest minor version.
*/
public final int minorVersion;
public final long timescale;
/**
* The number of fragments in a lookahead, or -1 if the lookahead is unspecified.
*/
public final int lookAheadCount;
/**
* True if the manifest describes a live presentation still in progress. False otherwise.
*/
public final boolean isLive;
/**
* Content protection information, or null if the content is not protected.
*/
public final ProtectionElement protectionElement;
/**
* The contained stream elements.
*/
public final StreamElement[] streamElements;
/**
* The overall presentation duration of the media in microseconds, or {@link C#UNKNOWN_TIME_US}
* if the duration is unknown.
*/
public final long durationUs;
/**
* The length of the trailing window for a live broadcast in microseconds, or
* {@link C#UNKNOWN_TIME_US} if the stream is not live or if the window length is unspecified.
*/
public final long dvrWindowLengthUs;
/**
* @param majorVersion The client manifest major version.
* @param minorVersion The client manifest minor version.
* @param timescale The timescale of the media as the number of units that pass in one second.
* @param duration The overall presentation duration in units of the timescale attribute, or 0
* if the duration is unknown.
* @param dvrWindowLength The length of the trailing window in units of the timescale attribute,
* or 0 if this attribute is unspecified or not applicable.
* @param lookAheadCount The number of fragments in a lookahead, or -1 if this attribute is
* unspecified or not applicable.
* @param isLive True if the manifest describes a live presentation still in progress. False
* otherwise.
* @param protectionElement Content protection information, or null if the content is not
* protected.
* @param streamElements The contained stream elements.
*/
public SmoothStreamingManifest(int majorVersion, int minorVersion, long timescale, long duration,
long dvrWindowLength, int lookAheadCount, boolean isLive, ProtectionElement protectionElement,
StreamElement[] streamElements) {
this.majorVersion = majorVersion;
this.minorVersion = minorVersion;
this.timescale = timescale;
this.lookAheadCount = lookAheadCount;
this.isLive = isLive;
this.protectionElement = protectionElement;
this.streamElements = streamElements;
dvrWindowLengthUs = Util.scaleLargeTimestamp(dvrWindowLength, MICROS_PER_SECOND, timescale);
durationUs = Util.scaleLargeTimestamp(duration, MICROS_PER_SECOND, timescale);
dvrWindowLengthUs = dvrWindowLength == 0 ? C.UNKNOWN_TIME_US
: Util.scaleLargeTimestamp(dvrWindowLength, C.MICROS_PER_SECOND, timescale);
durationUs = duration == 0 ? C.UNKNOWN_TIME_US
: Util.scaleLargeTimestamp(duration, C.MICROS_PER_SECOND, timescale);
}
/**
......@@ -176,9 +224,9 @@ public class SmoothStreamingManifest {
this.chunkCount = chunkStartTimes.size();
this.chunkStartTimes = chunkStartTimes;
lastChunkDurationUs =
Util.scaleLargeTimestamp(lastChunkDuration, MICROS_PER_SECOND, timescale);
Util.scaleLargeTimestamp(lastChunkDuration, C.MICROS_PER_SECOND, timescale);
chunkStartTimesUs =
Util.scaleLargeTimestamps(chunkStartTimes, MICROS_PER_SECOND, timescale);
Util.scaleLargeTimestamps(chunkStartTimes, C.MICROS_PER_SECOND, timescale);
}
/**
......
......@@ -15,6 +15,7 @@
*/
package com.google.android.exoplayer.text.ttml;
import com.google.android.exoplayer.C;
import com.google.android.exoplayer.ParserException;
import com.google.android.exoplayer.text.Subtitle;
import com.google.android.exoplayer.text.SubtitleParser;
......@@ -254,7 +255,7 @@ public class TtmlParser implements SubtitleParser {
String subframes = matcher.group(6);
durationSeconds += (subframes != null) ?
((double) Long.parseLong(subframes)) / subframeRate / frameRate : 0;
return (long) (durationSeconds * 1000000);
return (long) (durationSeconds * C.MICROS_PER_SECOND);
}
matcher = OFFSET_TIME.matcher(time);
if (matcher.matches()) {
......@@ -274,7 +275,7 @@ public class TtmlParser implements SubtitleParser {
} else if (unit.equals("t")) {
offsetSeconds /= tickRate;
}
return (long) (offsetSeconds * 1000000);
return (long) (offsetSeconds * C.MICROS_PER_SECOND);
}
throw new ParserException("Malformed time expression: " + time);
}
......
......@@ -18,6 +18,7 @@ package com.google.android.exoplayer.util;
import com.google.android.exoplayer.upstream.Loader;
import com.google.android.exoplayer.upstream.Loader.Loadable;
import android.os.Handler;
import android.os.Looper;
import android.os.SystemClock;
import android.util.Pair;
......@@ -29,13 +30,26 @@ import java.net.URLConnection;
import java.util.concurrent.CancellationException;
/**
* Performs both single and repeated loads of media manfifests.
* Performs both single and repeated loads of media manifests.
*
* @param <T> The type of manifest.
*/
public class ManifestFetcher<T> implements Loader.Callback {
/**
* Interface definition for a callback to be notified of {@link ManifestFetcher} events.
*/
public interface EventListener {
public void onManifestRefreshStarted();
public void onManifestRefreshed();
public void onManifestError(IOException e);
}
/**
* Callback for the result of a single load.
*
* @param <T> The type of manifest.
......@@ -61,9 +75,12 @@ public class ManifestFetcher<T> implements Loader.Callback {
}
/* package */ final ManifestParser<T> parser;
/* package */ final String manifestUrl;
/* package */ final String contentId;
/* package */ final String userAgent;
private final Handler eventHandler;
private final EventListener eventListener;
/* package */ volatile String manifestUrl;
private int enabledCount;
private Loader loader;
......@@ -76,6 +93,11 @@ public class ManifestFetcher<T> implements Loader.Callback {
private volatile T manifest;
private volatile long manifestLoadTimestamp;
public ManifestFetcher(ManifestParser<T> parser, String contentId, String manifestUrl,
String userAgent) {
this(parser, contentId, manifestUrl, userAgent, null, null);
}
/**
* @param parser A parser to parse the loaded manifest data.
* @param contentId The content id of the content being loaded. May be null.
......@@ -83,11 +105,22 @@ public class ManifestFetcher<T> implements Loader.Callback {
* @param userAgent The User-Agent string that should be used.
*/
public ManifestFetcher(ManifestParser<T> parser, String contentId, String manifestUrl,
String userAgent) {
String userAgent, Handler eventHandler, EventListener eventListener) {
this.parser = parser;
this.contentId = contentId;
this.manifestUrl = manifestUrl;
this.userAgent = userAgent;
this.eventHandler = eventHandler;
this.eventListener = eventListener;
}
/**
* Updates the manifest location.
*
* @param manifestUrl The manifest location.
*/
public void updateManifestUrl(String manifestUrl) {
this.manifestUrl = manifestUrl;
}
/**
......@@ -173,6 +206,7 @@ public class ManifestFetcher<T> implements Loader.Callback {
if (!loader.isLoading()) {
currentLoadable = new ManifestLoadable();
loader.startLoading(currentLoadable, this);
notifyManifestRefreshStarted();
}
}
......@@ -187,6 +221,8 @@ public class ManifestFetcher<T> implements Loader.Callback {
manifestLoadTimestamp = SystemClock.elapsedRealtime();
loadExceptionCount = 0;
loadException = null;
notifyManifestRefreshed();
}
@Override
......@@ -204,12 +240,47 @@ public class ManifestFetcher<T> implements Loader.Callback {
loadExceptionCount++;
loadExceptionTimestamp = SystemClock.elapsedRealtime();
loadException = new IOException(exception);
notifyManifestError(loadException);
}
private long getRetryDelayMillis(long errorCount) {
return Math.min((errorCount - 1) * 1000, 5000);
}
private void notifyManifestRefreshStarted() {
if (eventHandler != null && eventListener != null) {
eventHandler.post(new Runnable() {
@Override
public void run() {
eventListener.onManifestRefreshStarted();
}
});
}
}
private void notifyManifestRefreshed() {
if (eventHandler != null && eventListener != null) {
eventHandler.post(new Runnable() {
@Override
public void run() {
eventListener.onManifestRefreshed();
}
});
}
}
private void notifyManifestError(final IOException e) {
if (eventHandler != null && eventListener != null) {
eventHandler.post(new Runnable() {
@Override
public void run() {
eventListener.onManifestError(e);
}
});
}
}
private class SingleFetchHelper implements Loader.Callback {
private final Looper callbackLooper;
......
......@@ -70,12 +70,14 @@ public class PlayerControl implements MediaPlayerControl {
@Override
public int getCurrentPosition() {
return (int) exoPlayer.getCurrentPosition();
return exoPlayer.getDuration() == ExoPlayer.UNKNOWN_TIME ? 0
: (int) exoPlayer.getCurrentPosition();
}
@Override
public int getDuration() {
return (int) exoPlayer.getDuration();
return exoPlayer.getDuration() == ExoPlayer.UNKNOWN_TIME ? 0
: (int) exoPlayer.getDuration();
}
@Override
......@@ -95,8 +97,9 @@ public class PlayerControl implements MediaPlayerControl {
@Override
public void seekTo(int timeMillis) {
// MediaController arrow keys generate unbounded values.
exoPlayer.seekTo(Math.min(Math.max(0, timeMillis), getDuration()));
long seekPosition = exoPlayer.getDuration() == ExoPlayer.UNKNOWN_TIME ? 0
: Math.min(Math.max(0, timeMillis), getDuration());
exoPlayer.seekTo(seekPosition);
}
}
......@@ -399,4 +399,22 @@ public final class Util {
return scaledTimestamps;
}
/**
* Converts a list of integers to a primitive array.
*
* @param list A list of integers.
* @return The list in array form, or null if the input list was null.
*/
public static int[] toArray(List<Integer> list) {
if (list == null) {
return null;
}
int length = list.size();
int[] intArray = new int[length];
for (int i = 0; i < length; i++) {
intArray[i] = list.get(i);
}
return intArray;
}
}
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