| /*********************************************************************** |
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| modification, (subject to the limitations in the disclaimer below) |
| are permitted provided that the following conditions are met: |
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| contributors, may be used to endorse or promote products derived from |
| this software without specific prior written permission. |
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| BY THIS LICENSE. THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND |
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| BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND |
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| ***********************************************************************/ |
| |
| #ifdef HAVE_CONFIG_H |
| #include "config.h" |
| #endif |
| |
| #include "silk_SigProc_FIX.h" |
| #include "silk_resampler_private.h" |
| |
| #define ORDER_FIR 4 |
| |
| /* Downsample by a factor 2/3, low quality */ |
| void silk_resampler_down2_3( |
| opus_int32 *S, /* I/O: State vector [ 6 ] */ |
| opus_int16 *out, /* O: Output signal [ floor(2*inLen/3) ] */ |
| const opus_int16 *in, /* I: Input signal [ inLen ] */ |
| opus_int32 inLen /* I: Number of input samples */ |
| ) |
| { |
| opus_int32 nSamplesIn, counter, res_Q6; |
| opus_int32 buf[ RESAMPLER_MAX_BATCH_SIZE_IN + ORDER_FIR ]; |
| opus_int32 *buf_ptr; |
| |
| /* Copy buffered samples to start of buffer */ |
| SKP_memcpy( buf, S, ORDER_FIR * sizeof( opus_int32 ) ); |
| |
| /* Iterate over blocks of frameSizeIn input samples */ |
| while( 1 ) { |
| nSamplesIn = SKP_min( inLen, RESAMPLER_MAX_BATCH_SIZE_IN ); |
| |
| /* Second-order AR filter (output in Q8) */ |
| silk_resampler_private_AR2( &S[ ORDER_FIR ], &buf[ ORDER_FIR ], in, |
| silk_Resampler_2_3_COEFS_LQ, nSamplesIn ); |
| |
| /* Interpolate filtered signal */ |
| buf_ptr = buf; |
| counter = nSamplesIn; |
| while( counter > 2 ) { |
| /* Inner product */ |
| res_Q6 = SKP_SMULWB( buf_ptr[ 0 ], silk_Resampler_2_3_COEFS_LQ[ 2 ] ); |
| res_Q6 = SKP_SMLAWB( res_Q6, buf_ptr[ 1 ], silk_Resampler_2_3_COEFS_LQ[ 3 ] ); |
| res_Q6 = SKP_SMLAWB( res_Q6, buf_ptr[ 2 ], silk_Resampler_2_3_COEFS_LQ[ 5 ] ); |
| res_Q6 = SKP_SMLAWB( res_Q6, buf_ptr[ 3 ], silk_Resampler_2_3_COEFS_LQ[ 4 ] ); |
| |
| /* Scale down, saturate and store in output array */ |
| *out++ = (opus_int16)SKP_SAT16( SKP_RSHIFT_ROUND( res_Q6, 6 ) ); |
| |
| res_Q6 = SKP_SMULWB( buf_ptr[ 1 ], silk_Resampler_2_3_COEFS_LQ[ 4 ] ); |
| res_Q6 = SKP_SMLAWB( res_Q6, buf_ptr[ 2 ], silk_Resampler_2_3_COEFS_LQ[ 5 ] ); |
| res_Q6 = SKP_SMLAWB( res_Q6, buf_ptr[ 3 ], silk_Resampler_2_3_COEFS_LQ[ 3 ] ); |
| res_Q6 = SKP_SMLAWB( res_Q6, buf_ptr[ 4 ], silk_Resampler_2_3_COEFS_LQ[ 2 ] ); |
| |
| /* Scale down, saturate and store in output array */ |
| *out++ = (opus_int16)SKP_SAT16( SKP_RSHIFT_ROUND( res_Q6, 6 ) ); |
| |
| buf_ptr += 3; |
| counter -= 3; |
| } |
| |
| in += nSamplesIn; |
| inLen -= nSamplesIn; |
| |
| if( inLen > 0 ) { |
| /* More iterations to do; copy last part of filtered signal to beginning of buffer */ |
| SKP_memcpy( buf, &buf[ nSamplesIn ], ORDER_FIR * sizeof( opus_int32 ) ); |
| } else { |
| break; |
| } |
| } |
| |
| /* Copy last part of filtered signal to the state for the next call */ |
| SKP_memcpy( S, &buf[ nSamplesIn ], ORDER_FIR * sizeof( opus_int32 ) ); |
| } |