Patchset 1 is a pure
revert of "Revert of "Android MediaCodecVideoDecoder: Manage lifetime of texture frames" https://codereview.webrtc.org/1378033003/ Following patchsets move the responsibility of calculating the decode time to Java. TESTED= Apprtc loopback using H264 and VP8 on N5, N6, N7, S5 Review URL: https://codereview.webrtc.org/1422963003 Cr-Commit-Position: refs/heads/master@{#10597}
This commit is contained in:
@ -33,6 +33,7 @@
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#include "talk/app/webrtc/java/jni/androidmediacodeccommon.h"
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#include "talk/app/webrtc/java/jni/classreferenceholder.h"
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#include "talk/app/webrtc/java/jni/native_handle_impl.h"
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#include "talk/app/webrtc/java/jni/surfacetexturehelper_jni.h"
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#include "webrtc/base/bind.h"
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#include "webrtc/base/checks.h"
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#include "webrtc/base/logging.h"
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@ -112,7 +113,7 @@ class MediaCodecVideoDecoder : public webrtc::VideoDecoder,
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bool use_surface_;
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VideoCodec codec_;
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webrtc::I420BufferPool decoded_frame_pool_;
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NativeHandleImpl native_handle_;
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rtc::scoped_refptr<SurfaceTextureHelper> surface_texture_helper_;
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DecodedImageCallback* callback_;
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int frames_received_; // Number of frames received by decoder.
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int frames_decoded_; // Number of frames decoded by decoder.
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@ -123,8 +124,6 @@ class MediaCodecVideoDecoder : public webrtc::VideoDecoder,
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uint32_t max_pending_frames_; // Maximum number of pending input frames
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std::vector<int32_t> timestamps_;
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std::vector<int64_t> ntp_times_ms_;
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std::vector<int64_t> frame_rtc_times_ms_; // Time when video frame is sent to
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// decoder input.
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// State that is constant for the lifetime of this object once the ctor
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// returns.
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@ -135,7 +134,8 @@ class MediaCodecVideoDecoder : public webrtc::VideoDecoder,
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jmethodID j_release_method_;
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jmethodID j_dequeue_input_buffer_method_;
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jmethodID j_queue_input_buffer_method_;
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jmethodID j_dequeue_output_buffer_method_;
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jmethodID j_dequeue_byte_buffer_method_;
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jmethodID j_dequeue_texture_buffer_method_;
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jmethodID j_return_decoded_byte_buffer_method_;
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// MediaCodecVideoDecoder fields.
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jfieldID j_input_buffers_field_;
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@ -145,20 +145,21 @@ class MediaCodecVideoDecoder : public webrtc::VideoDecoder,
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jfieldID j_height_field_;
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jfieldID j_stride_field_;
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jfieldID j_slice_height_field_;
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jfieldID j_surface_texture_field_;
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// MediaCodecVideoDecoder.DecodedTextureBuffer fields.
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jfieldID j_textureID_field_;
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jfieldID j_texture_id_field_;
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jfieldID j_transform_matrix_field_;
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jfieldID j_texture_presentation_timestamp_us_field_;
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// MediaCodecVideoDecoder.DecodedByteBuffer fields.
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jfieldID j_texture_decode_time_ms_field_;
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jfieldID j_texture_frame_delay_ms_field_;
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// MediaCodecVideoDecoder.DecodedOutputBuffer fields.
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jfieldID j_info_index_field_;
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jfieldID j_info_offset_field_;
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jfieldID j_info_size_field_;
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jfieldID j_info_presentation_timestamp_us_field_;
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jfieldID j_byte_buffer_decode_time_ms_field_;
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// Global references; must be deleted in Release().
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std::vector<jobject> input_buffers_;
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jobject surface_texture_;
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jobject previous_surface_texture_;
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// Render EGL context - owned by factory, should not be allocated/destroyed
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// by VideoDecoder.
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@ -172,8 +173,6 @@ MediaCodecVideoDecoder::MediaCodecVideoDecoder(
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key_frame_required_(true),
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inited_(false),
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sw_fallback_required_(false),
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surface_texture_(NULL),
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previous_surface_texture_(NULL),
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codec_thread_(new Thread()),
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j_media_codec_video_decoder_class_(
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jni,
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@ -192,19 +191,22 @@ MediaCodecVideoDecoder::MediaCodecVideoDecoder(
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j_init_decode_method_ = GetMethodID(
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jni, *j_media_codec_video_decoder_class_, "initDecode",
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"(Lorg/webrtc/MediaCodecVideoDecoder$VideoCodecType;"
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"IILjavax/microedition/khronos/egl/EGLContext;)Z");
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"IILorg/webrtc/SurfaceTextureHelper;)Z");
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j_release_method_ =
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GetMethodID(jni, *j_media_codec_video_decoder_class_, "release", "()V");
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j_dequeue_input_buffer_method_ = GetMethodID(
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jni, *j_media_codec_video_decoder_class_, "dequeueInputBuffer", "()I");
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j_queue_input_buffer_method_ = GetMethodID(
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jni, *j_media_codec_video_decoder_class_, "queueInputBuffer", "(IIJ)Z");
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j_dequeue_output_buffer_method_ = GetMethodID(
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j_dequeue_byte_buffer_method_ = GetMethodID(
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jni, *j_media_codec_video_decoder_class_, "dequeueOutputBuffer",
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"(I)Ljava/lang/Object;");
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"(I)Lorg/webrtc/MediaCodecVideoDecoder$DecodedOutputBuffer;");
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j_dequeue_texture_buffer_method_ = GetMethodID(
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jni, *j_media_codec_video_decoder_class_, "dequeueTextureBuffer",
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"(I)Lorg/webrtc/MediaCodecVideoDecoder$DecodedTextureBuffer;");
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j_return_decoded_byte_buffer_method_ =
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GetMethodID(jni, *j_media_codec_video_decoder_class_,
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"returnDecodedByteBuffer", "(I)V");
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"returnDecodedOutputBuffer", "(I)V");
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j_input_buffers_field_ = GetFieldID(
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jni, *j_media_codec_video_decoder_class_,
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@ -222,28 +224,32 @@ MediaCodecVideoDecoder::MediaCodecVideoDecoder(
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jni, *j_media_codec_video_decoder_class_, "stride", "I");
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j_slice_height_field_ = GetFieldID(
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jni, *j_media_codec_video_decoder_class_, "sliceHeight", "I");
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j_surface_texture_field_ = GetFieldID(
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jni, *j_media_codec_video_decoder_class_, "surfaceTexture",
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"Landroid/graphics/SurfaceTexture;");
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jclass j_decoder_decoded_texture_buffer_class = FindClass(jni,
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jclass j_decoded_texture_buffer_class = FindClass(jni,
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"org/webrtc/MediaCodecVideoDecoder$DecodedTextureBuffer");
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j_textureID_field_ = GetFieldID(
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jni, j_decoder_decoded_texture_buffer_class, "textureID", "I");
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j_texture_presentation_timestamp_us_field_ =
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GetFieldID(jni, j_decoder_decoded_texture_buffer_class,
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"presentationTimestampUs", "J");
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j_texture_id_field_ = GetFieldID(
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jni, j_decoded_texture_buffer_class, "textureID", "I");
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j_transform_matrix_field_ = GetFieldID(
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jni, j_decoded_texture_buffer_class, "transformMatrix", "[F");
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j_texture_presentation_timestamp_us_field_ = GetFieldID(
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jni, j_decoded_texture_buffer_class, "presentationTimestampUs", "J");
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j_texture_decode_time_ms_field_ = GetFieldID(
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jni, j_decoded_texture_buffer_class, "decodeTimeMs", "J");
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j_texture_frame_delay_ms_field_ = GetFieldID(
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jni, j_decoded_texture_buffer_class, "frameDelayMs", "J");
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jclass j_decoder_decoded_byte_buffer_class = FindClass(jni,
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"org/webrtc/MediaCodecVideoDecoder$DecodedByteBuffer");
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jclass j_decoded_output_buffer_class = FindClass(jni,
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"org/webrtc/MediaCodecVideoDecoder$DecodedOutputBuffer");
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j_info_index_field_ = GetFieldID(
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jni, j_decoder_decoded_byte_buffer_class, "index", "I");
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jni, j_decoded_output_buffer_class, "index", "I");
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j_info_offset_field_ = GetFieldID(
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jni, j_decoder_decoded_byte_buffer_class, "offset", "I");
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jni, j_decoded_output_buffer_class, "offset", "I");
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j_info_size_field_ = GetFieldID(
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jni, j_decoder_decoded_byte_buffer_class, "size", "I");
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jni, j_decoded_output_buffer_class, "size", "I");
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j_info_presentation_timestamp_us_field_ = GetFieldID(
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jni, j_decoder_decoded_byte_buffer_class, "presentationTimestampUs", "J");
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jni, j_decoded_output_buffer_class, "presentationTimestampUs", "J");
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j_byte_buffer_decode_time_ms_field_ = GetFieldID(
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jni, j_decoded_output_buffer_class, "decodeTimeMs", "J");
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CHECK_EXCEPTION(jni) << "MediaCodecVideoDecoder ctor failed";
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use_surface_ = (render_egl_context_ != NULL);
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@ -255,14 +261,6 @@ MediaCodecVideoDecoder::MediaCodecVideoDecoder(
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MediaCodecVideoDecoder::~MediaCodecVideoDecoder() {
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// Call Release() to ensure no more callbacks to us after we are deleted.
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Release();
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// Delete global references.
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JNIEnv* jni = AttachCurrentThreadIfNeeded();
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if (previous_surface_texture_ != NULL) {
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jni->DeleteGlobalRef(previous_surface_texture_);
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}
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if (surface_texture_ != NULL) {
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jni->DeleteGlobalRef(surface_texture_);
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}
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}
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int32_t MediaCodecVideoDecoder::InitDecode(const VideoCodec* inst,
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@ -313,6 +311,11 @@ int32_t MediaCodecVideoDecoder::InitDecodeOnCodecThread() {
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frames_received_ = 0;
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frames_decoded_ = 0;
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if (use_surface_) {
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surface_texture_helper_ = new rtc::RefCountedObject<SurfaceTextureHelper>(
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jni, render_egl_context_);
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}
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jobject j_video_codec_enum = JavaEnumFromIndex(
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jni, "MediaCodecVideoDecoder$VideoCodecType", codecType_);
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bool success = jni->CallBooleanMethod(
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@ -321,7 +324,8 @@ int32_t MediaCodecVideoDecoder::InitDecodeOnCodecThread() {
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j_video_codec_enum,
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codec_.width,
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codec_.height,
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use_surface_ ? render_egl_context_ : nullptr);
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use_surface_ ? surface_texture_helper_->GetJavaSurfaceTextureHelper()
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: nullptr);
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if (CheckException(jni) || !success) {
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ALOGE << "Codec initialization error - fallback to SW codec.";
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sw_fallback_required_ = true;
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@ -348,7 +352,6 @@ int32_t MediaCodecVideoDecoder::InitDecodeOnCodecThread() {
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current_decoding_time_ms_ = 0;
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timestamps_.clear();
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ntp_times_ms_.clear();
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frame_rtc_times_ms_.clear();
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jobjectArray input_buffers = (jobjectArray)GetObjectField(
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jni, *j_media_codec_video_decoder_, j_input_buffers_field_);
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@ -365,15 +368,6 @@ int32_t MediaCodecVideoDecoder::InitDecodeOnCodecThread() {
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}
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}
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if (use_surface_) {
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jobject surface_texture = GetObjectField(
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jni, *j_media_codec_video_decoder_, j_surface_texture_field_);
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if (previous_surface_texture_ != NULL) {
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jni->DeleteGlobalRef(previous_surface_texture_);
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}
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previous_surface_texture_ = surface_texture_;
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surface_texture_ = jni->NewGlobalRef(surface_texture);
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}
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codec_thread_->PostDelayed(kMediaCodecPollMs, this);
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return WEBRTC_VIDEO_CODEC_OK;
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@ -399,6 +393,7 @@ int32_t MediaCodecVideoDecoder::ReleaseOnCodecThread() {
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}
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input_buffers_.clear();
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jni->CallVoidMethod(*j_media_codec_video_decoder_, j_release_method_);
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surface_texture_helper_ = nullptr;
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inited_ = false;
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rtc::MessageQueueManager::Clear(this);
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if (CheckException(jni)) {
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@ -508,7 +503,7 @@ int32_t MediaCodecVideoDecoder::DecodeOnCodecThread(
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if (frames_received_ > frames_decoded_ + max_pending_frames_) {
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ALOGV("Received: %d. Decoded: %d. Wait for output...",
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frames_received_, frames_decoded_);
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if (!DeliverPendingOutputs(jni, kMediaCodecTimeoutMs * 1000)) {
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if (!DeliverPendingOutputs(jni, kMediaCodecTimeoutMs)) {
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ALOGE << "DeliverPendingOutputs error. Frames received: " <<
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frames_received_ << ". Frames decoded: " << frames_decoded_;
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return ProcessHWErrorOnCodecThread();
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@ -553,7 +548,6 @@ int32_t MediaCodecVideoDecoder::DecodeOnCodecThread(
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current_bytes_ += inputImage._length;
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timestamps_.push_back(inputImage._timeStamp);
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ntp_times_ms_.push_back(inputImage.ntp_time_ms_);
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frame_rtc_times_ms_.push_back(GetCurrentTimeMs());
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// Feed input to decoder.
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bool success = jni->CallBooleanMethod(*j_media_codec_video_decoder_,
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@ -576,16 +570,18 @@ int32_t MediaCodecVideoDecoder::DecodeOnCodecThread(
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}
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bool MediaCodecVideoDecoder::DeliverPendingOutputs(
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JNIEnv* jni, int dequeue_timeout_us) {
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JNIEnv* jni, int dequeue_timeout_ms) {
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if (frames_received_ <= frames_decoded_) {
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// No need to query for output buffers - decoder is drained.
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return true;
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}
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// Get decoder output.
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jobject j_decoder_output_buffer = jni->CallObjectMethod(
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*j_media_codec_video_decoder_,
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j_dequeue_output_buffer_method_,
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dequeue_timeout_us);
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jobject j_decoder_output_buffer =
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jni->CallObjectMethod(*j_media_codec_video_decoder_,
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use_surface_ ? j_dequeue_texture_buffer_method_
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: j_dequeue_byte_buffer_method_,
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dequeue_timeout_ms);
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if (CheckException(jni)) {
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ALOGE << "dequeueOutputBuffer() error";
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return false;
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@ -605,19 +601,30 @@ bool MediaCodecVideoDecoder::DeliverPendingOutputs(
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j_slice_height_field_);
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rtc::scoped_refptr<webrtc::VideoFrameBuffer> frame_buffer;
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long output_timestamps_ms = 0;
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int64_t output_timestamps_ms = 0;
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int decode_time_ms = 0;
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int64_t frame_delayed_ms = 0;
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if (use_surface_) {
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// Extract data from Java DecodedTextureBuffer.
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const int texture_id =
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GetIntField(jni, j_decoder_output_buffer, j_textureID_field_);
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const int64_t timestamp_us =
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GetLongField(jni, j_decoder_output_buffer,
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j_texture_presentation_timestamp_us_field_);
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output_timestamps_ms = timestamp_us / rtc::kNumMicrosecsPerMillisec;
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// Create webrtc::VideoFrameBuffer with native texture handle.
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native_handle_.SetTextureObject(surface_texture_, texture_id);
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frame_buffer = new rtc::RefCountedObject<JniNativeHandleBuffer>(
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&native_handle_, width, height);
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GetIntField(jni, j_decoder_output_buffer, j_texture_id_field_);
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if (texture_id != 0) { // |texture_id| == 0 represents a dropped frame.
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const jfloatArray j_transform_matrix =
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reinterpret_cast<jfloatArray>(GetObjectField(
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jni, j_decoder_output_buffer, j_transform_matrix_field_));
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const int64_t timestamp_us =
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GetLongField(jni, j_decoder_output_buffer,
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j_texture_presentation_timestamp_us_field_);
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output_timestamps_ms = timestamp_us / rtc::kNumMicrosecsPerMillisec;
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decode_time_ms = GetLongField(jni, j_decoder_output_buffer,
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j_texture_decode_time_ms_field_);
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frame_delayed_ms = GetLongField(jni, j_decoder_output_buffer,
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j_texture_frame_delay_ms_field_);
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// Create webrtc::VideoFrameBuffer with native texture handle.
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frame_buffer = surface_texture_helper_->CreateTextureFrame(
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width, height, NativeHandleImpl(jni, texture_id, j_transform_matrix));
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}
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} else {
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// Extract data from Java ByteBuffer and create output yuv420 frame -
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// for non surface decoding only.
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@ -630,6 +637,8 @@ bool MediaCodecVideoDecoder::DeliverPendingOutputs(
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const int64_t timestamp_us = GetLongField(
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jni, j_decoder_output_buffer, j_info_presentation_timestamp_us_field_);
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output_timestamps_ms = timestamp_us / rtc::kNumMicrosecsPerMillisec;
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decode_time_ms = GetLongField(jni, j_decoder_output_buffer,
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j_byte_buffer_decode_time_ms_field_);
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if (output_buffer_size < width * height * 3 / 2) {
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ALOGE << "Insufficient output buffer size: " << output_buffer_size;
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@ -687,7 +696,7 @@ bool MediaCodecVideoDecoder::DeliverPendingOutputs(
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j_return_decoded_byte_buffer_method_,
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output_buffer_index);
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if (CheckException(jni)) {
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ALOGE << "returnDecodedByteBuffer error";
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ALOGE << "returnDecodedOutputBuffer error";
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return false;
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}
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}
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@ -702,26 +711,24 @@ bool MediaCodecVideoDecoder::DeliverPendingOutputs(
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decoded_frame.set_ntp_time_ms(ntp_times_ms_.front());
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ntp_times_ms_.erase(ntp_times_ms_.begin());
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}
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int64_t frame_decoding_time_ms = 0;
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if (frame_rtc_times_ms_.size() > 0) {
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frame_decoding_time_ms = GetCurrentTimeMs() - frame_rtc_times_ms_.front();
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frame_rtc_times_ms_.erase(frame_rtc_times_ms_.begin());
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}
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if (frames_decoded_ < kMaxDecodedLogFrames) {
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ALOGD << "Decoder frame out # " << frames_decoded_ << ". " << width <<
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" x " << height << ". " << stride << " x " << slice_height <<
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". Color: " << color_format << ". TS:" << (int)output_timestamps_ms <<
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". DecTime: " << (int)frame_decoding_time_ms;
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". DecTime: " << (int)decode_time_ms <<
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". DelayTime: " << (int)frame_delayed_ms;
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}
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// Calculate and print decoding statistics - every 3 seconds.
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frames_decoded_++;
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current_frames_++;
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current_decoding_time_ms_ += frame_decoding_time_ms;
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current_decoding_time_ms_ += decode_time_ms;
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int statistic_time_ms = GetCurrentTimeMs() - start_time_ms_;
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if (statistic_time_ms >= kMediaCodecStatisticsIntervalMs &&
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current_frames_ > 0) {
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ALOGD << "Decoded frames: " << frames_decoded_ << ". Bitrate: " <<
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ALOGD << "Decoded frames: " << frames_decoded_ << ". Received frames: "
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<< frames_received_ << ". Bitrate: " <<
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(current_bytes_ * 8 / statistic_time_ms) << " kbps, fps: " <<
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((current_frames_ * 1000 + statistic_time_ms / 2) / statistic_time_ms)
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<< ". decTime: " << (current_decoding_time_ms_ / current_frames_) <<
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@ -732,12 +739,15 @@ bool MediaCodecVideoDecoder::DeliverPendingOutputs(
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current_decoding_time_ms_ = 0;
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}
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// Callback - output decoded frame.
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const int32_t callback_status = callback_->Decoded(decoded_frame);
|
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if (callback_status > 0) {
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ALOGE << "callback error";
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// |.IsZeroSize())| returns true when a frame has been dropped.
|
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if (!decoded_frame.IsZeroSize()) {
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// Callback - output decoded frame.
|
||||
const int32_t callback_status =
|
||||
callback_->Decoded(decoded_frame, decode_time_ms);
|
||||
if (callback_status > 0) {
|
||||
ALOGE << "callback error";
|
||||
}
|
||||
}
|
||||
|
||||
return true;
|
||||
}
|
||||
|
||||
|
||||
Reference in New Issue
Block a user