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update speex resampler with newer snapshot from Speex SVN
git-svn-id: file:///home/lennart/svn/public/pulseaudio/trunk@2073 fefdeb5f-60dc-0310-8127-8f9354f1896f
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3 changed files with 66 additions and 15 deletions
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@ -604,7 +604,7 @@ noinst_LTLIBRARIES = libspeex-resampler-fixed.la libspeex-resampler-float.la lib
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libspeex_resampler_fixed_la_CPPFLAGS = $(AM_CPPFLAGS) -DRANDOM_PREFIX=paspfx -DOUTSIDE_SPEEX -DFIXED_POINT
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libspeex_resampler_fixed_la_SOURCES = pulsecore/speex/resample.c pulsecore/speex/speex_resampler.h pulsecore/speex/arch.h pulsecore/speex/fixed_generic.h pulsecore/speexwrap.h
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libspeex_resampler_float_la_CPPFLAGS = $(AM_CPPFLAGS) -DRANDOM_PREFIX=paspfl -DOUTSIDE_SPEEX
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libspeex_resampler_float_la_CPPFLAGS = $(AM_CPPFLAGS) -DRANDOM_PREFIX=paspfl -DOUTSIDE_SPEEX -DFLOATING_POINT
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libspeex_resampler_float_la_SOURCES = pulsecore/speex/resample.c pulsecore/speex/speex_resampler.h pulsecore/speex/arch.h
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libffmpeg_resampler_la_CPPFLAGS = $(AM_CPPFLAGS)
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@ -35,6 +35,45 @@
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#ifndef ARCH_H
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#define ARCH_H
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#ifndef SPEEX_VERSION
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#define SPEEX_MAJOR_VERSION 1 /**< Major Speex version. */
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#define SPEEX_MINOR_VERSION 1 /**< Minor Speex version. */
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#define SPEEX_MICRO_VERSION 15 /**< Micro Speex version. */
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#define SPEEX_EXTRA_VERSION "" /**< Extra Speex version. */
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#define SPEEX_VERSION "speex-1.2beta3" /**< Speex version string. */
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#endif
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/* A couple test to catch stupid option combinations */
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#ifdef FIXED_POINT
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#ifdef FLOATING_POINT
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#error You cannot compile as floating point and fixed point at the same time
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#endif
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#ifdef _USE_SSE
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#error SSE is only for floating-point
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#endif
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#if ((defined (ARM4_ASM)||defined (ARM4_ASM)) && defined(BFIN_ASM)) || (defined (ARM4_ASM)&&defined(ARM5E_ASM))
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#error Make up your mind. What CPU do you have?
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#endif
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#ifdef VORBIS_PSYCHO
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#error Vorbis-psy model currently not implemented in fixed-point
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#endif
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#else
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#ifndef FLOATING_POINT
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#error You now need to define either FIXED_POINT or FLOATING_POINT
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#endif
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#if defined (ARM4_ASM) || defined(ARM5E_ASM) || defined(BFIN_ASM)
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#error I suppose you can have a [ARM4/ARM5E/Blackfin] that has float instructions?
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#endif
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#ifdef FIXED_POINT_DEBUG
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#error "Don't you think enabling fixed-point is a good thing to do if you want to debug that?"
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#endif
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#endif
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#ifndef OUTSIDE_SPEEX
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#include "speex/speex_types.h"
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#endif
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@ -68,6 +107,7 @@ typedef spx_word32_t spx_sig_t;
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#define LPC_SHIFT 13
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#define LSP_SHIFT 13
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#define SIG_SHIFT 14
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#define GAIN_SHIFT 6
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#define VERY_SMALL 0
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#define VERY_LARGE32 ((spx_word32_t)2147483647)
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@ -111,9 +151,6 @@ typedef float spx_word32_t;
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#define GAIN_SCALING 1.f
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#define GAIN_SCALING_1 1.f
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#define LPC_SHIFT 0
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#define LSP_SHIFT 0
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#define SIG_SHIFT 0
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#define VERY_SMALL 1e-15f
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#define VERY_LARGE32 1e15f
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@ -194,4 +231,11 @@ typedef float spx_word32_t;
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#endif
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#ifdef FIXED_DEBUG
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long long spx_mips=0;
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#endif
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#endif
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@ -37,17 +37,23 @@
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- Low memory requirement
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- Good *perceptual* quality (and not best SNR)
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The code is working, but it's in a very early stage, so it may have
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artifacts, noise or subliminal messages from satan. Also, the API
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isn't stable and I can actually promise that I *will* change the API
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some time in the future.
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Warning: This resampler is relatively new. Although I think I got rid of
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all the major bugs and I don't expect the API to change anymore, there
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may be something I've missed. So use with caution.
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TODO list:
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- Variable calculation resolution depending on quality setting
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- Single vs double in float mode
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- 16-bit vs 32-bit (sinc only) in fixed-point mode
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- Make sure the filter update works even when changing params
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after only a few samples procesed
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This algorithm is based on this original resampling algorithm:
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Smith, Julius O. Digital Audio Resampling Home Page
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Center for Computer Research in Music and Acoustics (CCRMA),
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Stanford University, 2007.
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Web published at http://www-ccrma.stanford.edu/~jos/resample/.
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There is one main difference, though. This resampler uses cubic
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interpolation instead of linear interpolation in the above paper. This
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makes the table much smaller and makes it possible to compute that table
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on a per-stream basis. In turn, being able to tweak the table for each
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stream makes it possible to both reduce complexity on simple ratios
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(e.g. 2/3), and get rid of the rounding operations in the inner loop.
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The latter both reduces CPU time and makes the algorithm more SIMD-friendly.
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*/
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#ifdef HAVE_CONFIG_H
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@ -64,7 +70,8 @@ static void speex_free (void *ptr) {free(ptr);}
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#else /* OUTSIDE_SPEEX */
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#include "speex/speex_resampler.h"
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#include "misc.h"
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#include "arch.h"
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#include "os_support.h"
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#endif /* OUTSIDE_SPEEX */
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#include <math.h>
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