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  1. Feb 19, 2014
  2. Feb 13, 2014
  3. Feb 12, 2014
  4. Feb 11, 2014
  5. Feb 07, 2014
  6. Feb 06, 2014
    • Marco Paniconi's avatar
      Layer based rate control for CBR mode. · 4864ab21
      Marco Paniconi authored
      This patch adds a buffer-based rate control for temporal layers,
      under CBR mode.
      
      Added vpx_temporal_scalable_patters.c encoder for testing temporal
      layers, for both vp9 and vp8 (replaces the old vp8_scalable_patterns).
      
      Updated datarate unittest with tests for temporal layer rate-targeting.
      
      Change-Id: I8900a854288b9354d9c697cfeb0243a9fd6790b1
      4864ab21
    • Dmitry Kovalev's avatar
      Adding video reader/writer APIs. · 37e6fd3d
      Dmitry Kovalev authored
      Right now only IVF format is supported which is enough for example code.
      Other formats like y4m, webm, raw yuv will be supported later.
      
      Change-Id: I34c6f20731c1851947587ca5c589d7856b675164
      37e6fd3d
    • James Zern's avatar
      vp8_set_maps.c: silence some type warnings · 7474aebf
      James Zern authored
      Change-Id: I371863fc68f4984a223a684f9e89b25e9991e1e7
      7474aebf
  7. Feb 01, 2014
  8. Jan 29, 2014
  9. Jan 27, 2014
  10. Jan 24, 2014
  11. Jan 18, 2014
  12. Jan 15, 2014
  13. Jan 10, 2014
  14. Jan 07, 2014
  15. Oct 18, 2013
    • Yaowu Xu's avatar
      Added necessary includes · b905dab3
      Yaowu Xu authored
      To avoid the dependency on the order of header files included.
      
      Change-Id: Ic142638d75fe95e6aba41b11664bfa15f076f793
      b905dab3
  16. Dec 26, 2012
  17. Nov 01, 2012
  18. Aug 14, 2012
  19. Jul 14, 2012
  20. Jun 04, 2012
  21. Mar 15, 2012
    • Yaowu Xu's avatar
      WebM Experimental Codec Branch Snapshot · 6035da54
      Yaowu Xu authored
      This is a code snapshot of experimental work currently ongoing for a
      next-generation codec.
      
      The codebase has been cut down considerably from the libvpx baseline.
      For example, we are currently only supporting VBR 2-pass rate control
      and have removed most of the code relating to coding speed, threading,
      error resilience, partitions and various other features.  This is in
      part to make the codebase easier to work on and experiment with, but
      also because we want to have an open discussion about how the bitstream
      will be structured and partitioned and not have that conversation
      constrained by past work.
      
      Our basic working pattern has been to initially encapsulate experiments
      using configure options linked to #IF CONFIG_XXX statements in the
      code. Once experiments have matured and we are reasonably happy that
      they give benefit and can be merged without breaking other experiments,
      we remove the conditional compile statements and merge them in.
      
      Current changes include:
      * Temporal coding experiment for segments (though still only 4 max, it
        will likely be increased).
      * Segment feature experiment - to allow various bits of information to
        be coded at the segment level. Features tested so far include mode
        and reference frame information, limiting end of block offset and
        transform size, alongside Q and loop filter parameters, but this set
        is very fluid.
      * Support for 8x8 transform - 8x8 dct with 2nd order 2x2 haar is used
        in MBs using 16x16 prediction modes within inter frames.
      * Compound prediction (combination of signals from existing predictors
        to create a new predictor).
      * 8 tap interpolation filters and 1/8th pel motion vectors.
      * Loop filter modifications.
      * Various entropy modifications and changes to how entropy contexts and
        updates are handled.
      * Extended quantizer range matched to transform precision improvements.
      
      There are also ongoing further experiments that we hope to merge in the
      near future: For example, coding of motion and other aspects of the
      prediction signal to better support larger image formats, use of larger
      block sizes (e.g. 32x32 and up) and lossless non-transform based coding
      options (especially for key frames). It is our hope that we will be
      able to make regular updates and we will warmly welcome community
      contributions.
      
      Please be warned that, at this stage, the codebase is currently slower
      than VP8 stable branch as most new code has not been optimized, and
      even the 'C' has been deliberately written to be simple and obvious,
      not fast.
      
      The following graphs have the initial test results, numbers in the
      tables measure the compression improvement in terms of percentage. The
      build has  the following optional experiments configured:
      --enable-experimental --enable-enhanced_interp --enable-uvintra
      --enable-high_precision_mv --enable-sixteenth_subpel_uv
      
      CIF Size clips:
      http://getwebm.org/tmp/cif/
      HD size clips:
      http://getwebm.org/tmp/hd/
      (stable_20120309 represents encoding results of WebM master branch
      build as of commit#7a159071)
      
      They were encoded using the following encode parameters:
      --good --cpu-used=0 -t 0 --lag-in-frames=25 --min-q=0 --max-q=63
      --end-usage=0 --auto-alt-ref=1 -p 2 --pass=2 --kf-max-dist=9999
      --kf-min-dist=0 --drop-frame=0 --static-thresh=0 --bias-pct=50
      --minsection-pct=0 --maxsection-pct=800 --sharpness=0
      --arnr-maxframes=7 --arnr-strength=3(for HD,6 for CIF)
      --arnr-type=3
      
      Change-Id: I5c62ed09cfff5815a2bb34e7820d6a810c23183c
      6035da54
  22. Feb 15, 2012
  23. Jan 05, 2012
    • Deb Mukherjee's avatar
      Multiframe quality enhancement postprocessing · 87aa846b
      Deb Mukherjee authored
      Adds a multiframe postprocessing module to enhance the quality of
      certain frames that are coded at lower quality than preceding frames.
      The module can be invoked from the commandline by use of the --mfqe
      option, and will be most beneficial for enhancing the quality of
      frames decoded using scalable patterns.
      
      Uses the vp8_variance_var16x16 and vp8_variance_sad16x16 function
      pointers to compute SAD and Variance of blocks.
      
      Change-Id: Id73d2a6e3572d07f9f8e36bbce00a4fc5ffd8961
      87aa846b
  24. Oct 11, 2011
    • Adrian Grange's avatar
      Added rate-targeted temporal scalability · 217591fd
      Adrian Grange authored
      Added the ability to create rate-targeted, temporally
      scalable, VP8 compatible bitstreams.
      
      The application vp8_scalable_patterns.c demonstrates how
      to use this capability. Users can create output bitstreams
      containing upto 5 temporally separable streams encoded
      as a single VP8 bitstream.
      (previously abandoned as:
      I92d1483e887adb274d07ce9e567e4d0314881b0a)
      
      Change-Id: I156250a3fe930be57c069d508c41b6a7a4ea8d6a
      217591fd
  25. Sep 14, 2011
  26. Jun 27, 2011
    • Stefan Holmer's avatar
      Adding support for error concealment in multi-threaded decoding · ba0822ba
      Stefan Holmer authored
      Also includes a couple of error concealment bug fixes:
      - the segment_id wasn't properly initialized when missing
      - when interpolating and no neighbors are found, set to zero
      - clear the qcoef buffer when concealing an MB
      
      Change-Id: Id79c876b41d78b559a2241e9cd0fd2cae6198f49
      ba0822ba
  27. May 19, 2011
    • Stefan Holmer's avatar
      Adding error-concealment to the decoder. · d04f8523
      Stefan Holmer authored
      The error-concealer is plugged in after any motion vectors have been
      decoded. It tries to estimate any missing motion vectors from the
      motion vectors of the previous frame. Intra blocks with missing
      residual are replaced with inter blocks with estimated motion vectors.
      
      This feature was developed in a separate sandbox
      (sandbox/holmer/error-concealment).
      
      Change-Id: I5c8917b031078d79dbafd90f6006680e84a23412
      d04f8523
  28. May 09, 2011
  29. Mar 01, 2011
    • John Koleszar's avatar
      examples: use function to get iface pointers · 987ac894
      John Koleszar authored
      MSVC can't pass the address of global variables in a DLL correctly
      across DLL boundaries. This patch allows linking the examples to
      a libvpx dll build. Fixes issue #268.
      
      Change-Id: I1c52d076cfc68efb3efdfba019f12d53c5019f58
      987ac894
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