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1 /***********************************************************************
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2 Copyright (c) 2006-2011, Skype Limited. All rights reserved.
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3 Redistribution and use in source and binary forms, with or without
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4 modification, are permitted provided that the following conditions
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5 are met:
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6 - Redistributions of source code must retain the above copyright notice,
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7 this list of conditions and the following disclaimer.
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8 - Redistributions in binary form must reproduce the above copyright
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9 notice, this list of conditions and the following disclaimer in the
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10 documentation and/or other materials provided with the distribution.
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11 - Neither the name of Internet Society, IETF or IETF Trust, nor the
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12 names of specific contributors, may be used to endorse or promote
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13 products derived from this software without specific prior written
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14 permission.
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15 THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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16 AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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17 IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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18 ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
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19 LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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20 CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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21 SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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22 INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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23 CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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24 ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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25 POSSIBILITY OF SUCH DAMAGE.
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26 ***********************************************************************/
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27
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28 #ifdef HAVE_CONFIG_H
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29 #include "config.h"
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30 #endif
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31
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32 #include <stdlib.h>
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33 #include "main_FLP.h"
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34 #include "tuning_parameters.h"
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35
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36 void silk_find_pitch_lags_FLP(
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37 silk_encoder_state_FLP *psEnc, /* I/O Encoder state FLP */
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38 silk_encoder_control_FLP *psEncCtrl, /* I/O Encoder control FLP */
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39 silk_float res[], /* O Residual */
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40 const silk_float x[], /* I Speech signal */
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41 int arch /* I Run-time architecture */
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42 )
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43 {
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44 opus_int buf_len;
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45 silk_float thrhld, res_nrg;
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46 const silk_float *x_buf_ptr, *x_buf;
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47 silk_float auto_corr[ MAX_FIND_PITCH_LPC_ORDER + 1 ];
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48 silk_float A[ MAX_FIND_PITCH_LPC_ORDER ];
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49 silk_float refl_coef[ MAX_FIND_PITCH_LPC_ORDER ];
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50 silk_float Wsig[ FIND_PITCH_LPC_WIN_MAX ];
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51 silk_float *Wsig_ptr;
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52
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53 /******************************************/
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54 /* Set up buffer lengths etc based on Fs */
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55 /******************************************/
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56 buf_len = psEnc->sCmn.la_pitch + psEnc->sCmn.frame_length + psEnc->sCmn.ltp_mem_length;
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57
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58 /* Safety check */
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59 celt_assert( buf_len >= psEnc->sCmn.pitch_LPC_win_length );
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60
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61 x_buf = x - psEnc->sCmn.ltp_mem_length;
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62
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63 /******************************************/
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64 /* Estimate LPC AR coeficients */
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65 /******************************************/
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66
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67 /* Calculate windowed signal */
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68
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69 /* First LA_LTP samples */
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70 x_buf_ptr = x_buf + buf_len - psEnc->sCmn.pitch_LPC_win_length;
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71 Wsig_ptr = Wsig;
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72 silk_apply_sine_window_FLP( Wsig_ptr, x_buf_ptr, 1, psEnc->sCmn.la_pitch );
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73
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74 /* Middle non-windowed samples */
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75 Wsig_ptr += psEnc->sCmn.la_pitch;
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76 x_buf_ptr += psEnc->sCmn.la_pitch;
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77 silk_memcpy( Wsig_ptr, x_buf_ptr, ( psEnc->sCmn.pitch_LPC_win_length - ( psEnc->sCmn.la_pitch << 1 ) ) * sizeof( silk_float ) );
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78
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79 /* Last LA_LTP samples */
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80 Wsig_ptr += psEnc->sCmn.pitch_LPC_win_length - ( psEnc->sCmn.la_pitch << 1 );
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81 x_buf_ptr += psEnc->sCmn.pitch_LPC_win_length - ( psEnc->sCmn.la_pitch << 1 );
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82 silk_apply_sine_window_FLP( Wsig_ptr, x_buf_ptr, 2, psEnc->sCmn.la_pitch );
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83
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84 /* Calculate autocorrelation sequence */
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85 silk_autocorrelation_FLP( auto_corr, Wsig, psEnc->sCmn.pitch_LPC_win_length, psEnc->sCmn.pitchEstimationLPCOrder + 1 );
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86
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87 /* Add white noise, as a fraction of the energy */
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88 auto_corr[ 0 ] += auto_corr[ 0 ] * FIND_PITCH_WHITE_NOISE_FRACTION + 1;
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89
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90 /* Calculate the reflection coefficients using Schur */
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91 res_nrg = silk_schur_FLP( refl_coef, auto_corr, psEnc->sCmn.pitchEstimationLPCOrder );
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92
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93 /* Prediction gain */
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94 psEncCtrl->predGain = auto_corr[ 0 ] / silk_max_float( res_nrg, 1.0f );
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95
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96 /* Convert reflection coefficients to prediction coefficients */
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97 silk_k2a_FLP( A, refl_coef, psEnc->sCmn.pitchEstimationLPCOrder );
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98
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99 /* Bandwidth expansion */
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100 silk_bwexpander_FLP( A, psEnc->sCmn.pitchEstimationLPCOrder, FIND_PITCH_BANDWIDTH_EXPANSION );
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101
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102 /*****************************************/
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103 /* LPC analysis filtering */
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104 /*****************************************/
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105 silk_LPC_analysis_filter_FLP( res, A, x_buf, buf_len, psEnc->sCmn.pitchEstimationLPCOrder );
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106
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107 if( psEnc->sCmn.indices.signalType != TYPE_NO_VOICE_ACTIVITY && psEnc->sCmn.first_frame_after_reset == 0 ) {
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108 /* Threshold for pitch estimator */
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109 thrhld = 0.6f;
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110 thrhld -= 0.004f * psEnc->sCmn.pitchEstimationLPCOrder;
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111 thrhld -= 0.1f * psEnc->sCmn.speech_activity_Q8 * ( 1.0f / 256.0f );
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112 thrhld -= 0.15f * (psEnc->sCmn.prevSignalType >> 1);
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113 thrhld -= 0.1f * psEnc->sCmn.input_tilt_Q15 * ( 1.0f / 32768.0f );
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114
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115 /*****************************************/
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116 /* Call Pitch estimator */
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117 /*****************************************/
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118 if( silk_pitch_analysis_core_FLP( res, psEncCtrl->pitchL, &psEnc->sCmn.indices.lagIndex,
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119 &psEnc->sCmn.indices.contourIndex, &psEnc->LTPCorr, psEnc->sCmn.prevLag, psEnc->sCmn.pitchEstimationThreshold_Q16 / 65536.0f,
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120 thrhld, psEnc->sCmn.fs_kHz, psEnc->sCmn.pitchEstimationComplexity, psEnc->sCmn.nb_subfr, arch ) == 0 )
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121 {
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122 psEnc->sCmn.indices.signalType = TYPE_VOICED;
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123 } else {
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124 psEnc->sCmn.indices.signalType = TYPE_UNVOICED;
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125 }
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126 } else {
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127 silk_memset( psEncCtrl->pitchL, 0, sizeof( psEncCtrl->pitchL ) );
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128 psEnc->sCmn.indices.lagIndex = 0;
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129 psEnc->sCmn.indices.contourIndex = 0;
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130 psEnc->LTPCorr = 0;
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131 }
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132 }
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