Index: silk/float/pitch_analysis_core_FLP.c |
diff --git a/silk/float/pitch_analysis_core_FLP.c b/silk/float/pitch_analysis_core_FLP.c |
index 605ea25fa271affdc204a66f1dc043b26879e6bf..e58f041bd64f3db61ff37fe80b742ebbf5e6360e 100644 |
--- a/silk/float/pitch_analysis_core_FLP.c |
+++ b/silk/float/pitch_analysis_core_FLP.c |
@@ -48,7 +48,8 @@ static void silk_P_Ana_calc_corr_st3( |
opus_int start_lag, /* I start lag */ |
opus_int sf_length, /* I sub frame length */ |
opus_int nb_subfr, /* I number of subframes */ |
- opus_int complexity /* I Complexity setting */ |
+ opus_int complexity, /* I Complexity setting */ |
+ int arch /* I Run-time architecture */ |
); |
static void silk_P_Ana_calc_energy_st3( |
@@ -74,7 +75,8 @@ opus_int silk_pitch_analysis_core_FLP( /* O Voicing estimate: 0 voiced, |
const silk_float search_thres2, /* I Final threshold for lag candidates 0 - 1 */ |
const opus_int Fs_kHz, /* I sample frequency (kHz) */ |
const opus_int complexity, /* I Complexity setting, 0-2, where 2 is highest */ |
- const opus_int nb_subfr /* I Number of 5 ms subframes */ |
+ const opus_int nb_subfr, /* I Number of 5 ms subframes */ |
+ int arch /* I Run-time architecture */ |
) |
{ |
opus_int i, k, d, j; |
@@ -176,7 +178,7 @@ opus_int silk_pitch_analysis_core_FLP( /* O Voicing estimate: 0 voiced, |
silk_assert( basis_ptr >= frame_4kHz ); |
silk_assert( basis_ptr + sf_length_8kHz <= frame_4kHz + frame_length_4kHz ); |
- celt_pitch_xcorr( target_ptr, target_ptr-max_lag_4kHz, xcorr, sf_length_8kHz, max_lag_4kHz - min_lag_4kHz + 1 ); |
+ celt_pitch_xcorr( target_ptr, target_ptr-max_lag_4kHz, xcorr, sf_length_8kHz, max_lag_4kHz - min_lag_4kHz + 1, arch ); |
/* Calculate first vector products before loop */ |
cross_corr = xcorr[ max_lag_4kHz - min_lag_4kHz ]; |
@@ -409,7 +411,7 @@ opus_int silk_pitch_analysis_core_FLP( /* O Voicing estimate: 0 voiced, |
CCmax = -1000.0f; |
/* Calculate the correlations and energies needed in stage 3 */ |
- silk_P_Ana_calc_corr_st3( cross_corr_st3, frame, start_lag, sf_length, nb_subfr, complexity ); |
+ silk_P_Ana_calc_corr_st3( cross_corr_st3, frame, start_lag, sf_length, nb_subfr, complexity, arch ); |
silk_P_Ana_calc_energy_st3( energies_st3, frame, start_lag, sf_length, nb_subfr, complexity ); |
lag_counter = 0; |
@@ -493,10 +495,11 @@ static void silk_P_Ana_calc_corr_st3( |
opus_int start_lag, /* I start lag */ |
opus_int sf_length, /* I sub frame length */ |
opus_int nb_subfr, /* I number of subframes */ |
- opus_int complexity /* I Complexity setting */ |
+ opus_int complexity, /* I Complexity setting */ |
+ int arch /* I Run-time architecture */ |
) |
{ |
- const silk_float *target_ptr, *basis_ptr; |
+ const silk_float *target_ptr; |
opus_int i, j, k, lag_counter, lag_low, lag_high; |
opus_int nb_cbk_search, delta, idx, cbk_size; |
silk_float scratch_mem[ SCRATCH_SIZE ]; |
@@ -527,9 +530,8 @@ static void silk_P_Ana_calc_corr_st3( |
lag_low = matrix_ptr( Lag_range_ptr, k, 0, 2 ); |
lag_high = matrix_ptr( Lag_range_ptr, k, 1, 2 ); |
silk_assert(lag_high-lag_low+1 <= SCRATCH_SIZE); |
- celt_pitch_xcorr( target_ptr, target_ptr - start_lag - lag_high, xcorr, sf_length, lag_high - lag_low + 1 ); |
+ celt_pitch_xcorr( target_ptr, target_ptr - start_lag - lag_high, xcorr, sf_length, lag_high - lag_low + 1, arch ); |
for( j = lag_low; j <= lag_high; j++ ) { |
- basis_ptr = target_ptr - ( start_lag + j ); |
silk_assert( lag_counter < SCRATCH_SIZE ); |
scratch_mem[ lag_counter ] = xcorr[ lag_high - j ]; |
lag_counter++; |