AVClip recorded in BD-ROM is obtained by multiplexing a graphics stream and a video stream. The graphics stream is a PES packet sequence that includes 1) PES packets storing graphics data (ODS) and 2) PES packets storing control information (PCS). In each ODS, values of DTS and PTS indicate a timing
AVClip recorded in BD-ROM is obtained by multiplexing a graphics stream and a video stream. The graphics stream is a PES packet sequence that includes 1) PES packets storing graphics data (ODS) and 2) PES packets storing control information (PCS). In each ODS, values of DTS and PTS indicate a timing of decoding start for corresponding graphics data, and a timing of decoding end for corresponding graphics data, respectively. In each PCS, a value of PTS indicates a display timing of corresponding decoded graphics data combined with the video stream.
대표청구항▼
1. A reproduction apparatus comprising: an acquire unit operable to acquire, from a recording medium, a video stream and a graphics stream, the video stream including video data, the graphics stream including an object definition segment, a presentation composition segment and a window definition se
1. A reproduction apparatus comprising: an acquire unit operable to acquire, from a recording medium, a video stream and a graphics stream, the video stream including video data, the graphics stream including an object definition segment, a presentation composition segment and a window definition segment, the object definition segment including graphics data, a first decode time stamp, and a first presentation time stamp, the first decode time stamp indicating a start time for decoding the graphics data, the first presentation time stamp indicating an end of decoding, the presentation composition segment including a second decode time stamp, and a second presentation time stamp, the second presentation time stamp indicating a time which is at or after the end of decoding, the window definition segment including a third presentation time stamp;a video decoder operable to decode the video data and to write decoded video data in a video plane;a processor operable to decode the graphics data at the first decode time stamp, and to end decoding by the first presentation time stamp;a controller operable to start clearing a graphics plane at the second decode time stamp, and to start writing decoded graphics data in the graphics plane at the third presentation time stamp, and to end writing by the second presentation time stamp, the graphics plane being an area where the decoded graphics data is rendered; andan adder operable to add the decoded video data from the video plane and the decoded graphics data from the graphics plane, whereinthe window definition segment and the presentation composition segment belong to Display Set (DSn) displayed nth in a time axis of the graphics stream, anda PTS(DSn[WDS]) which is a value of the third presentation time stamp included in the window definition segment, and a DTS(DSn[PCS]) which is a value of the second presentation time stamp included in the presentation composition segment satisfy the following relationship: PTS(DSn[WDS])=PTS(DSn[PCS])−90000×ΣSIZE(WDS.WIN[i])//256,000,000where 256,000,000 denotes a transfer rate to the graphics plane, and ΣSIZE(WDS.WIN[i]) denotes a total size of a window in the graphics plane defined by the window definition segment. 2. A reproduction method reproduced by a reproduction apparatus including a video decoder, a video plane, a processor, a controller, a graphics plane and an adder, the reproduction method comprising: acquiring, from a recording medium, a video stream and a graphics stream, the video stream including video data, the graphics stream including an object definition segment, a presentation composition segment and a window definition segment, the object definition segment including graphics data, a first decode time stamp, and a first presentation time stamp, the first decode time stamp indicating a start time for decoding the graphics data, the first presentation time stamp indicating an end of decoding, the presentation composition segment including a second decode time stamp, and a second presentation time stamp, the second presentation time stamp indicating a time which is at or after the end of decoding, the window definition segment including a third presentation time stamp;the video decoder operable to decode the video data and to write decoded video data in a video plane;the processor operable to decode the graphics data at the first decode time stamp, and to end decoding by the first presentation time stamp;the controller operable to start clearing the graphics plane at the second decode time stamp, and to start writing the decoded graphics data in the graphics plane at the third presentation time stamp, and to end writing by the second presentation time stamp, the graphics plane being an area where the decoded graphics data is rendered; andthe adder operable to add decoded video data from the video plane and the decoded graphics data from the graphics plane, whereinthe window definition segment and the presentation composition segment belong to Display Set (DSn) displayed nth in a time axis of the graphics stream, anda PTS(DSn[WDS]) which is a value of the third presentation time stamp included in the window definition segment, and a DTS(DSn[PCS]) which is a value of the second presentation time stamp included in the presentation composition segment satisfy the following relationship: PTS(DSn[WDS])=PTS(DSn[PCS])−90000×ΣSIZE(WDS.WIN[i])//256,000,000where 256,000,000 denotes a transfer rate to the graphics plane, and ΣSIZE(WDS.WIN[i]) denotes a total size of a window in the graphics plane defined by the window definition segment. 3. A non-transitory recording medium having recorded thereon a video stream and a graphics stream, the video stream and the graphics stream being reproducible from the recording medium by a reproduction apparatus including a video decoder, a video plane, a processor, a controller, a graphics plane and an adder, the video stream including video data, the video data being decoded and written in the video plane, by the video decoder, and the graphics stream including an object definition segment, a presentation composition segment and a window definition segment, the object definition segment including graphics data, a first decode time stamp, and a first presentation time stamp, the first decode time stamp indicating a start time for decoding the graphics data, the first presentation time stamp indicating an end of decoding, the presentation composition segment including a second decode time stamp, and a second presentation time stamp, the second presentation time stamp indicating a time which is at or after the end of decoding, the window definition segment including a third presentation time stamp;the video decoder operable to decode the video data and to write the decoded video data in a video plane;the processor operable to decode the graphics data at the first decode time stamp, and to end decoding by the first presentation time stamp;a controller operable to start clearing the graphics plane at the second decode time stamp, and to start writing the decoded graphics data in the graphics plane at the third presentation time stamp, and to end writing by the second presentation time stamp, the graphics plane being an area where the decoded graphics data is rendered; andthe adder operable to add decoded video data from the video plane and the decoded graphics data from the graphics plane, whereinthe window definition segment and the presentation composition segment belong to Display Set (DSn) displayed nth in a time axis of the graphics stream, anda PTS(DSn[WDS]) which is a value of the third presentation time stamp included in the window definition segment, and a DTS(DSn[PCS]) which is a value of the second presentation time stamp included in the presentation composition segment satisfy the following relationship: PTS(DSn[WDS])=PTS(DSn[PCS])−90000×ΣSIZE(WDS.WIN[i])//256,000,000where 256,000,000 denotes a transfer rate to the graphics plane, and ΣSIZE(WDS.WIN[i]) denotes a total size of a window in the graphics plane defined by the window definition segment. 4. A recording method for recording a video stream and a graphics stream on a recording medium, the video stream and the graphics stream being reproducible by a reproduction apparatus including a video decoder, a video plane, a processor, a controller, a graphics plane and an adder, the video stream including video data, the video data being decoded and written in the video plane, by the video decoder,the graphics stream including an object definition segment, a presentation composition segment and a window definition segment, the object definition segment including graphics data, a first decode time stamp, and a first presentation time stamp, the first decode time stamp indicating a start time for decoding the graphics data, the first presentation time stamp indicating an end of decoding, the presentation composition segment including a second decode time stamp, and a second presentation time stamp, the second presentation time stamp indicating a time which is at or after the end of decoding, the window definition segment including a third presentation time stamp;the video decoder operable to decode the video data and to write the decoded video data in a video plane;the processor operable to decode the graphics data at the first decode time stamp, and to end decoding by the first presentation time stamp;a controller operable to start clearing the graphics plane at the second decode time stamp, and to start writing the decoded graphics data in the graphics plane at the third presentation time stamp, and to end writing by the second presentation time stamp, the graphics plane being an area where the decoded graphics data is rendered; andthe adder operable to add decoded video data from the video plane and the decoded graphics data from the graphics plane, whereinthe window definition segment and the presentation composition segment belong to Display Set (DSn) displayed nth in a time axis of the graphics stream, anda PTS(DSn[WDS]) which is a value of the third presentation time stamp included in the window definition segment, and a DTS(DSn[PCS]) which is a value of the second presentation time stamp included in the presentation composition segment satisfy the following relationship: PTS(DSn[WDS])=PTS(DSn[PCS])−90000×ΣSIZE(WDS.WIN[i])//256,000,000where 256,000,000 denotes a transfer rate to the graphics plane, and ΣSIZE(WDS.WIN[i]) denotes a total size of a window in the graphics plane defined by the window definition segment.
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