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Extensible kernel-mode audio processing architecture 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • G06F-017/00
출원번호 US-0015070 (2004-12-17)
등록번호 US-7283881 (2007-10-16)
발명자 / 주소
  • Puryear,Martin G.
출원인 / 주소
  • Microsoft Corporation
인용정보 피인용 횟수 : 17  인용 특허 : 23

초록

An extensible kernel-mode audio (e.g., MIDI) processing architecture is implemented using multiple modules that together comprise a module graph. The module graph is implemented in kernel-mode, reducing latency and jitter when handling audio data by avoiding transfers of the audio data to user-mode

대표청구항

The invention claimed is: 1. A method comprising: maintaining a pool of memory available for allocation to a plurality of transform filters executing at a privileged level; allocating a portion of the pool of memory to one of the plurality of transform filters to use to store audio data, wherein th

이 특허에 인용된 특허 (23)

  1. Schneck, Phyllis A.; Schwan, Karsten; Chokhani, Santosh, Adaptive data security systems and methods.
  2. Mirashrafi Mojtaba ; Rajamani Krishnan ; Bielaszewski John, Communications subsystem for computer-based conferencing system using both ISDN B channels for transmission.
  3. Tang Jun ; So John Ling Wing, Computer operating process allocating tasks between first and second processors at run time based upon current processor load.
  4. Negishi, Shinji; Tahara, Katsumi; Yasuda, Mikita, Digital signal multiplexing method and apparatus, digital signal transmission method and apparatus, digital signal recording method apparatus and recording medium.
  5. Yamauchi Akira (Hamamatsu JPX) Umeyama Yasuyuki (Hamamatsu JPX) Ohno Kyoko (Hamamatsu JPX), Electronic musical instrument system formed of dynamic network of processing units.
  6. Puryear, Martin G., Extensible kernel-mode audio processing architecture.
  7. Jones Adrian,GBX ; Moore Alan,GBX, Method and apparatus for content processing and routing.
  8. Fuller, John Nels; Chrysanthakopoulos, Georgios, Method and apparatus for direct buffering of a stream of variable-length data.
  9. Leung, Nikolai K. N.; Hsu, Raymond T., Method and apparatus for out-of-band transmission of broadcast service option in a wireless communication system.
  10. Shaw George H. J. ; Woodruff Bryan A. ; O'Rourke Thomas J.,FIX, Method and computer program product for synchronizing the processing of multiple data streams and matching disparate pro.
  11. Machin Richard C. ; Hyder Jameel, Method, system, and computer program product for creating a raw data channel form an integrating component to a series of kernel mode filters.
  12. Benjamin H. Stoltz ; Michael J. Bundschuh ; Yan J. Yu, Mixing and splitting multiple independent audio data streams in kernel space.
  13. Dwek Norman Scott, Multimedia content delivery system and method.
  14. Fujii Shigeki,JPX, Music system of transmitting performance information with state information.
  15. Kikuchi Takeshi,JPX, Process techniques for plurality kind of musical tone information.
  16. Kumar Ramaswamy ; Cher-Wen Lin ; Randall David Rettberg ; Mizanur Mohammed Rahman, Software interface between switching module and operating system of a data packet switching and load balancing system.
  17. Van Buskirk James E. ; Bibbo Joseph A., Synthesizer system utilizing mass storage devices for real time, low latency access of musical instrument digital sample.
  18. Griffiths Laurence Kelvin,GBX, System and method for processing multimedia data streams using filter graphs.
  19. Tamura Motoichi,JPX, Tone generating method and device.
  20. Fung Anthony ; Groz Peter ; Hsu Jim C. ; Hui Danny K. ; Hvostov Harry S., Transaction interface for a data communication system.
  21. Kikuchi, Takeshi; Koike, Yuji, Transmission of musical tone information.
  22. Kato Hirokazu,JPX ; Sone Takuro,JPX, Transporting method of karaoke data by packets.
  23. O'Rourke Thomas J.,FIX ; Shaw George H. J. ; Woodruff Bryan A., User mode proxy of kernel mode operations in a computer operating system.

이 특허를 인용한 특허 (17)

  1. Van Wie, David; Altmaier, Joseph, Client application integrating web browsing and network data stream processing for realtime communications.
  2. Holcomb, Thomas W.; Mehrotra, Sanjeev; Smirnov, Serge; Siravara, Bharath, Encoding streaming media as a high bit rate layer, a low bit rate layer, and one or more intermediate bit rate layers.
  3. Puryear, Martin G., Extensible kernel-mode audio processing architecture.
  4. Puryear,Martin G., Extensible kernel-mode audio processing architecture.
  5. Mehrotra, Sanjeev, Fine-grained client-side control of scalable media delivery.
  6. Puryear, Martin G., Kernel-mode audio processing modules.
  7. Puryear, Martin G., Kernel-mode audio processing modules.
  8. Puryear, Martin G., Kernel-mode audio processing modules.
  9. Puryear, Martin G., Kernel-mode audio processing modules.
  10. Puryear, Martin G., Kernel-mode audio processing modules.
  11. Altmaier, Joseph; Butler, Robert J.; Van Wie, David, Managing network communications between network nodes and stream transport protocol.
  12. Virdi, Gurpratap; Musayev, Eldar; Zhang, Wenbo; Vega-Garcia, Andres, Media streaming with enhanced seek operation.
  13. Virdi, Gurpratap; Vega-Garcia, Andres; Zhang, Wenbo; Musayev, Eldar, Media streaming with enhanced seek operation.
  14. Mehrotra, Sanjeev; Kotteri, Kishore; Siravara, Bharath; Holcomb, Thomas W.; Gao, Hui; Smirnov, Serge, Optimized client side rate control and indexed file layout for streaming media.
  15. Mehrotra, Sanjeev; Kotteri, Kishore; Siravara, Bharath; Holcomb, Thomas W.; Gao, Hui; Smirnov, Serge, Optimized client side rate control and indexed file layout for streaming media.
  16. Van Wie, David; Altmaier, Joseph, Realtime kernel.
  17. Uehara,Haruki, Simple music performance system, music data supplier and computer program installed in the music data supplier.
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