Coverage Report

Created: 2026-05-16 07:49

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/opus/silk/decode_pulses.c
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/***********************************************************************
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Copyright (c) 2006-2011, Skype Limited. All rights reserved.
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Redistribution and use in source and binary forms, with or without
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modification, are permitted provided that the following conditions
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are met:
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- Redistributions of source code must retain the above copyright notice,
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this list of conditions and the following disclaimer.
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- Redistributions in binary form must reproduce the above copyright
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notice, this list of conditions and the following disclaimer in the
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documentation and/or other materials provided with the distribution.
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- Neither the name of Internet Society, IETF or IETF Trust, nor the
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names of specific contributors, may be used to endorse or promote
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products derived from this software without specific prior written
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permission.
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THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
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LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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POSSIBILITY OF SUCH DAMAGE.
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***********************************************************************/
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#ifdef HAVE_CONFIG_H
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#include "config.h"
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#endif
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#include "main.h"
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/*********************************************/
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/* Decode quantization indices of excitation */
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/*********************************************/
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void silk_decode_pulses(
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    ec_dec                      *psRangeDec,                    /* I/O  Compressor data structure                   */
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    opus_int16                  pulses[],                       /* O    Excitation signal                           */
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    const opus_int              signalType,                     /* I    Sigtype                                     */
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    const opus_int              quantOffsetType,                /* I    quantOffsetType                             */
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    const opus_int              frame_length                    /* I    Frame length                                */
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)
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201k
{
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    opus_int   i, j, k, iter, abs_q, nLS, RateLevelIndex;
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    opus_int   sum_pulses[ MAX_NB_SHELL_BLOCKS ], nLshifts[ MAX_NB_SHELL_BLOCKS ];
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    opus_int16 *pulses_ptr;
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201k
    const opus_uint8 *cdf_ptr;
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    /*********************/
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    /* Decode rate level */
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    /*********************/
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    RateLevelIndex = ec_dec_icdf( psRangeDec, silk_rate_levels_iCDF[ signalType >> 1 ], 8 );
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    /* Calculate number of shell blocks */
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201k
    silk_assert( 1 << LOG2_SHELL_CODEC_FRAME_LENGTH == SHELL_CODEC_FRAME_LENGTH );
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201k
    iter = silk_RSHIFT( frame_length, LOG2_SHELL_CODEC_FRAME_LENGTH );
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    if( iter * SHELL_CODEC_FRAME_LENGTH < frame_length ) {
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4.51k
        celt_assert( frame_length == 12 * 10 ); /* Make sure only happens for 10 ms @ 12 kHz */
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4.51k
        iter++;
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    }
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    /***************************************************/
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    /* Sum-Weighted-Pulses Decoding                    */
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    /***************************************************/
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    cdf_ptr = silk_pulses_per_block_iCDF[ RateLevelIndex ];
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2.50M
    for( i = 0; i < iter; i++ ) {
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        nLshifts[ i ] = 0;
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        sum_pulses[ i ] = ec_dec_icdf( psRangeDec, cdf_ptr, 8 );
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        /* LSB indication */
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        while( sum_pulses[ i ] == SILK_MAX_PULSES + 1 ) {
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            nLshifts[ i ]++;
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            /* When we've already got 10 LSBs, we shift the table to not allow (SILK_MAX_PULSES + 1) */
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            sum_pulses[ i ] = ec_dec_icdf( psRangeDec,
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                    silk_pulses_per_block_iCDF[ N_RATE_LEVELS - 1] + ( nLshifts[ i ] == 10 ), 8 );
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        }
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    }
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    /***************************************************/
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    /* Shell decoding                                  */
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    /***************************************************/
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    for( i = 0; i < iter; i++ ) {
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        if( sum_pulses[ i ] > 0 ) {
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1.90M
            silk_shell_decoder( &pulses[ silk_SMULBB( i, SHELL_CODEC_FRAME_LENGTH ) ], psRangeDec, sum_pulses[ i ] );
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1.90M
        } else {
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            silk_memset( &pulses[ silk_SMULBB( i, SHELL_CODEC_FRAME_LENGTH ) ], 0, SHELL_CODEC_FRAME_LENGTH * sizeof( pulses[0] ) );
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        }
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    }
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    /***************************************************/
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    /* LSB Decoding                                    */
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    /***************************************************/
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    for( i = 0; i < iter; i++ ) {
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        if( nLshifts[ i ] > 0 ) {
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            nLS = nLshifts[ i ];
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            pulses_ptr = &pulses[ silk_SMULBB( i, SHELL_CODEC_FRAME_LENGTH ) ];
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            for( k = 0; k < SHELL_CODEC_FRAME_LENGTH; k++ ) {
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                abs_q = pulses_ptr[ k ];
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                for( j = 0; j < nLS; j++ ) {
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                    abs_q = silk_LSHIFT( abs_q, 1 );
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                    abs_q += ec_dec_icdf( psRangeDec, silk_lsb_iCDF, 8 );
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518k
                }
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                pulses_ptr[ k ] = abs_q;
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            }
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            /* Mark the number of pulses non-zero for sign decoding. */
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            sum_pulses[ i ] |= nLS << 5;
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        }
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    }
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    /****************************************/
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    /* Decode and add signs to pulse signal */
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    /****************************************/
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    silk_decode_signs( psRangeDec, pulses, frame_length, signalType, quantOffsetType, sum_pulses );
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}