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			543 lines
		
	
	
		
			17 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			543 lines
		
	
	
		
			17 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
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   /******************************************************************
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       iLBC Speech Coder ANSI-C Source Code
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       iLBC_encode.c
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       Copyright (C) The Internet Society (2004).
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       All Rights Reserved.
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   ******************************************************************/
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   #include <math.h>
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   #include <stdlib.h>
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   #include <string.h>
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   #include "iLBC_define.h"
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   #include "LPCencode.h"
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   #include "FrameClassify.h"
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   #include "StateSearchW.h"
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   #include "StateConstructW.h"
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   #include "helpfun.h"
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   #include "constants.h"
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   #include "packing.h"
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   #include "iCBSearch.h"
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   #include "iCBConstruct.h"
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   #include "hpInput.h"
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   #include "anaFilter.h"
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   #include "syntFilter.h"
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   /*----------------------------------------------------------------*
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    *  Initiation of encoder instance.
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    *---------------------------------------------------------------*/
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   short initEncode(                   /* (o) Number of bytes
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                                              encoded */
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       iLBC_Enc_Inst_t *iLBCenc_inst,  /* (i/o) Encoder instance */
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       int mode                    /* (i) frame size mode */
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   ){
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       iLBCenc_inst->mode = mode;
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       if (mode==30) {
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           iLBCenc_inst->blockl = BLOCKL_30MS;
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           iLBCenc_inst->nsub = NSUB_30MS;
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           iLBCenc_inst->nasub = NASUB_30MS;
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           iLBCenc_inst->lpc_n = LPC_N_30MS;
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           iLBCenc_inst->no_of_bytes = NO_OF_BYTES_30MS;
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           iLBCenc_inst->no_of_words = NO_OF_WORDS_30MS;
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           iLBCenc_inst->state_short_len=STATE_SHORT_LEN_30MS;
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           /* ULP init */
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           iLBCenc_inst->ULP_inst=&ULP_30msTbl;
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       }
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       else if (mode==20) {
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           iLBCenc_inst->blockl = BLOCKL_20MS;
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           iLBCenc_inst->nsub = NSUB_20MS;
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           iLBCenc_inst->nasub = NASUB_20MS;
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           iLBCenc_inst->lpc_n = LPC_N_20MS;
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           iLBCenc_inst->no_of_bytes = NO_OF_BYTES_20MS;
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           iLBCenc_inst->no_of_words = NO_OF_WORDS_20MS;
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           iLBCenc_inst->state_short_len=STATE_SHORT_LEN_20MS;
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           /* ULP init */
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           iLBCenc_inst->ULP_inst=&ULP_20msTbl;
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       }
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       else {
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           exit(2);
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       }
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       memset((*iLBCenc_inst).anaMem, 0,
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           LPC_FILTERORDER*sizeof(float));
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       memcpy((*iLBCenc_inst).lsfold, lsfmeanTbl,
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           LPC_FILTERORDER*sizeof(float));
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       memcpy((*iLBCenc_inst).lsfdeqold, lsfmeanTbl,
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           LPC_FILTERORDER*sizeof(float));
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       memset((*iLBCenc_inst).lpc_buffer, 0,
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           (LPC_LOOKBACK+BLOCKL_MAX)*sizeof(float));
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       memset((*iLBCenc_inst).hpimem, 0, 4*sizeof(float));
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       return (iLBCenc_inst->no_of_bytes);
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   }
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   /*----------------------------------------------------------------*
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    *  main encoder function
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    *---------------------------------------------------------------*/
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   void iLBC_encode(
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       unsigned char *bytes,           /* (o) encoded data bits iLBC */
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       float *block,                   /* (o) speech vector to
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                                              encode */
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       iLBC_Enc_Inst_t *iLBCenc_inst   /* (i/o) the general encoder
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                                              state */
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   ){
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       float data[BLOCKL_MAX];
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       float residual[BLOCKL_MAX], reverseResidual[BLOCKL_MAX];
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       int start, idxForMax, idxVec[STATE_LEN];
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       float reverseDecresidual[BLOCKL_MAX], mem[CB_MEML];
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       int n, k, meml_gotten, Nfor, Nback, i, pos;
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       int gain_index[CB_NSTAGES*NASUB_MAX],
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           extra_gain_index[CB_NSTAGES];
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       int cb_index[CB_NSTAGES*NASUB_MAX],extra_cb_index[CB_NSTAGES];
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       int lsf_i[LSF_NSPLIT*LPC_N_MAX];
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       unsigned char *pbytes;
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       int diff, start_pos, state_first;
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       float en1, en2;
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       int index, ulp, firstpart;
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       int subcount, subframe;
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       float weightState[LPC_FILTERORDER];
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       float syntdenum[NSUB_MAX*(LPC_FILTERORDER+1)];
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       float weightdenum[NSUB_MAX*(LPC_FILTERORDER+1)];
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       float decresidual[BLOCKL_MAX];
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       /* high pass filtering of input signal if such is not done
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              prior to calling this function */
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       hpInput(block, iLBCenc_inst->blockl,
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                   data, (*iLBCenc_inst).hpimem);
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       /* otherwise simply copy */
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       /*memcpy(data,block,iLBCenc_inst->blockl*sizeof(float));*/
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       /* LPC of hp filtered input data */
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       LPCencode(syntdenum, weightdenum, lsf_i, data, iLBCenc_inst);
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       /* inverse filter to get residual */
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       for (n=0; n<iLBCenc_inst->nsub; n++) {
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           anaFilter(&data[n*SUBL], &syntdenum[n*(LPC_FILTERORDER+1)],
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               SUBL, &residual[n*SUBL], iLBCenc_inst->anaMem);
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       }
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       /* find state location */
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       start = FrameClassify(iLBCenc_inst, residual);
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       /* check if state should be in first or last part of the
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       two subframes */
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       diff = STATE_LEN - iLBCenc_inst->state_short_len;
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       en1 = 0;
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       index = (start-1)*SUBL;
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       for (i = 0; i < iLBCenc_inst->state_short_len; i++) {
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           en1 += residual[index+i]*residual[index+i];
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       }
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       en2 = 0;
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       index = (start-1)*SUBL+diff;
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       for (i = 0; i < iLBCenc_inst->state_short_len; i++) {
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           en2 += residual[index+i]*residual[index+i];
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       }
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       if (en1 > en2) {
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           state_first = 1;
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           start_pos = (start-1)*SUBL;
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       } else {
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           state_first = 0;
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           start_pos = (start-1)*SUBL + diff;
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       }
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       /* scalar quantization of state */
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       StateSearchW(iLBCenc_inst, &residual[start_pos],
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           &syntdenum[(start-1)*(LPC_FILTERORDER+1)],
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           &weightdenum[(start-1)*(LPC_FILTERORDER+1)], &idxForMax,
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           idxVec, iLBCenc_inst->state_short_len, state_first);
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       StateConstructW(idxForMax, idxVec,
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           &syntdenum[(start-1)*(LPC_FILTERORDER+1)],
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           &decresidual[start_pos], iLBCenc_inst->state_short_len);
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       /* predictive quantization in state */
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       if (state_first) { /* put adaptive part in the end */
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           /* setup memory */
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           memset(mem, 0,
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               (CB_MEML-iLBCenc_inst->state_short_len)*sizeof(float));
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           memcpy(mem+CB_MEML-iLBCenc_inst->state_short_len,
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               decresidual+start_pos,
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               iLBCenc_inst->state_short_len*sizeof(float));
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           memset(weightState, 0, LPC_FILTERORDER*sizeof(float));
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           /* encode sub-frames */
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           iCBSearch(iLBCenc_inst, extra_cb_index, extra_gain_index,
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               &residual[start_pos+iLBCenc_inst->state_short_len],
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               mem+CB_MEML-stMemLTbl,
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               stMemLTbl, diff, CB_NSTAGES,
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               &weightdenum[start*(LPC_FILTERORDER+1)],
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               weightState, 0);
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           /* construct decoded vector */
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           iCBConstruct(
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               &decresidual[start_pos+iLBCenc_inst->state_short_len],
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               extra_cb_index, extra_gain_index,
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               mem+CB_MEML-stMemLTbl,
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               stMemLTbl, diff, CB_NSTAGES);
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       }
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       else { /* put adaptive part in the beginning */
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           /* create reversed vectors for prediction */
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           for (k=0; k<diff; k++) {
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               reverseResidual[k] = residual[(start+1)*SUBL-1
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                   -(k+iLBCenc_inst->state_short_len)];
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           }
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           /* setup memory */
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           meml_gotten = iLBCenc_inst->state_short_len;
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           for (k=0; k<meml_gotten; k++) {
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               mem[CB_MEML-1-k] = decresidual[start_pos + k];
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           }
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           memset(mem, 0, (CB_MEML-k)*sizeof(float));
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           memset(weightState, 0, LPC_FILTERORDER*sizeof(float));
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           /* encode sub-frames */
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           iCBSearch(iLBCenc_inst, extra_cb_index, extra_gain_index,
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               reverseResidual, mem+CB_MEML-stMemLTbl, stMemLTbl,
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               diff, CB_NSTAGES,
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               &weightdenum[(start-1)*(LPC_FILTERORDER+1)],
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               weightState, 0);
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           /* construct decoded vector */
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           iCBConstruct(reverseDecresidual, extra_cb_index,
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               extra_gain_index, mem+CB_MEML-stMemLTbl, stMemLTbl,
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               diff, CB_NSTAGES);
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           /* get decoded residual from reversed vector */
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           for (k=0; k<diff; k++) {
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               decresidual[start_pos-1-k] = reverseDecresidual[k];
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           }
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       }
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       /* counter for predicted sub-frames */
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       subcount=0;
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       /* forward prediction of sub-frames */
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       Nfor = iLBCenc_inst->nsub-start-1;
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       if ( Nfor > 0 ) {
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           /* setup memory */
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           memset(mem, 0, (CB_MEML-STATE_LEN)*sizeof(float));
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           memcpy(mem+CB_MEML-STATE_LEN, decresidual+(start-1)*SUBL,
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               STATE_LEN*sizeof(float));
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           memset(weightState, 0, LPC_FILTERORDER*sizeof(float));
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           /* loop over sub-frames to encode */
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           for (subframe=0; subframe<Nfor; subframe++) {
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               /* encode sub-frame */
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               iCBSearch(iLBCenc_inst, cb_index+subcount*CB_NSTAGES,
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                   gain_index+subcount*CB_NSTAGES,
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                   &residual[(start+1+subframe)*SUBL],
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                   mem+CB_MEML-memLfTbl[subcount],
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                   memLfTbl[subcount], SUBL, CB_NSTAGES,
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                   &weightdenum[(start+1+subframe)*
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                               (LPC_FILTERORDER+1)],
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                   weightState, subcount+1);
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               /* construct decoded vector */
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               iCBConstruct(&decresidual[(start+1+subframe)*SUBL],
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                   cb_index+subcount*CB_NSTAGES,
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                   gain_index+subcount*CB_NSTAGES,
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                   mem+CB_MEML-memLfTbl[subcount],
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                   memLfTbl[subcount], SUBL, CB_NSTAGES);
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               /* update memory */
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               memmove(mem, mem+SUBL, (CB_MEML-SUBL)*sizeof(float));
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               memcpy(mem+CB_MEML-SUBL,
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                   &decresidual[(start+1+subframe)*SUBL],
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                   SUBL*sizeof(float));
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               memset(weightState, 0, LPC_FILTERORDER*sizeof(float));
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               subcount++;
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           }
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       }
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       /* backward prediction of sub-frames */
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       Nback = start-1;
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       if ( Nback > 0 ) {
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           /* create reverse order vectors */
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           for (n=0; n<Nback; n++) {
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               for (k=0; k<SUBL; k++) {
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                   reverseResidual[n*SUBL+k] =
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                       residual[(start-1)*SUBL-1-n*SUBL-k];
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                   reverseDecresidual[n*SUBL+k] =
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                       decresidual[(start-1)*SUBL-1-n*SUBL-k];
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               }
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           }
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           /* setup memory */
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           meml_gotten = SUBL*(iLBCenc_inst->nsub+1-start);
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           if ( meml_gotten > CB_MEML ) {
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               meml_gotten=CB_MEML;
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           }
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           for (k=0; k<meml_gotten; k++) {
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               mem[CB_MEML-1-k] = decresidual[(start-1)*SUBL + k];
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           }
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           memset(mem, 0, (CB_MEML-k)*sizeof(float));
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           memset(weightState, 0, LPC_FILTERORDER*sizeof(float));
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           /* loop over sub-frames to encode */
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           for (subframe=0; subframe<Nback; subframe++) {
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               /* encode sub-frame */
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               iCBSearch(iLBCenc_inst, cb_index+subcount*CB_NSTAGES,
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                   gain_index+subcount*CB_NSTAGES,
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                   &reverseResidual[subframe*SUBL],
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                   mem+CB_MEML-memLfTbl[subcount],
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                   memLfTbl[subcount], SUBL, CB_NSTAGES,
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                   &weightdenum[(start-2-subframe)*
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                               (LPC_FILTERORDER+1)],
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                   weightState, subcount+1);
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               /* construct decoded vector */
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               iCBConstruct(&reverseDecresidual[subframe*SUBL],
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                   cb_index+subcount*CB_NSTAGES,
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                   gain_index+subcount*CB_NSTAGES,
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                   mem+CB_MEML-memLfTbl[subcount],
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                   memLfTbl[subcount], SUBL, CB_NSTAGES);
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               /* update memory */
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               memmove(mem, mem+SUBL, (CB_MEML-SUBL)*sizeof(float));
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               memcpy(mem+CB_MEML-SUBL,
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                   &reverseDecresidual[subframe*SUBL],
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                   SUBL*sizeof(float));
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               memset(weightState, 0, LPC_FILTERORDER*sizeof(float));
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               subcount++;
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           }
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           /* get decoded residual from reversed vector */
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           for (i=0; i<SUBL*Nback; i++) {
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               decresidual[SUBL*Nback - i - 1] =
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                   reverseDecresidual[i];
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           }
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       }
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       /* end encoding part */
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       /* adjust index */
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       index_conv_enc(cb_index);
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       /* pack bytes */
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       pbytes=bytes;
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       pos=0;
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       /* loop over the 3 ULP classes */
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       for (ulp=0; ulp<3; ulp++) {
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           /* LSF */
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           for (k=0; k<LSF_NSPLIT*iLBCenc_inst->lpc_n; k++) {
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               packsplit(&lsf_i[k], &firstpart, &lsf_i[k],
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                   iLBCenc_inst->ULP_inst->lsf_bits[k][ulp],
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                   iLBCenc_inst->ULP_inst->lsf_bits[k][ulp]+
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                   iLBCenc_inst->ULP_inst->lsf_bits[k][ulp+1]+
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                   iLBCenc_inst->ULP_inst->lsf_bits[k][ulp+2]);
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               dopack( &pbytes, firstpart,
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                   iLBCenc_inst->ULP_inst->lsf_bits[k][ulp], &pos);
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           }
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           /* Start block info */
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           packsplit(&start, &firstpart, &start,
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               iLBCenc_inst->ULP_inst->start_bits[ulp],
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               iLBCenc_inst->ULP_inst->start_bits[ulp]+
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               iLBCenc_inst->ULP_inst->start_bits[ulp+1]+
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               iLBCenc_inst->ULP_inst->start_bits[ulp+2]);
 | 
						|
           dopack( &pbytes, firstpart,
 | 
						|
               iLBCenc_inst->ULP_inst->start_bits[ulp], &pos);
 | 
						|
 | 
						|
           packsplit(&state_first, &firstpart, &state_first,
 | 
						|
               iLBCenc_inst->ULP_inst->startfirst_bits[ulp],
 | 
						|
               iLBCenc_inst->ULP_inst->startfirst_bits[ulp]+
 | 
						|
               iLBCenc_inst->ULP_inst->startfirst_bits[ulp+1]+
 | 
						|
               iLBCenc_inst->ULP_inst->startfirst_bits[ulp+2]);
 | 
						|
           dopack( &pbytes, firstpart,
 | 
						|
               iLBCenc_inst->ULP_inst->startfirst_bits[ulp], &pos);
 | 
						|
 | 
						|
           packsplit(&idxForMax, &firstpart, &idxForMax,
 | 
						|
               iLBCenc_inst->ULP_inst->scale_bits[ulp],
 | 
						|
               iLBCenc_inst->ULP_inst->scale_bits[ulp]+
 | 
						|
               iLBCenc_inst->ULP_inst->scale_bits[ulp+1]+
 | 
						|
               iLBCenc_inst->ULP_inst->scale_bits[ulp+2]);
 | 
						|
           dopack( &pbytes, firstpart,
 | 
						|
               iLBCenc_inst->ULP_inst->scale_bits[ulp], &pos);
 | 
						|
 | 
						|
           for (k=0; k<iLBCenc_inst->state_short_len; k++) {
 | 
						|
               packsplit(idxVec+k, &firstpart, idxVec+k,
 | 
						|
                   iLBCenc_inst->ULP_inst->state_bits[ulp],
 | 
						|
                   iLBCenc_inst->ULP_inst->state_bits[ulp]+
 | 
						|
                   iLBCenc_inst->ULP_inst->state_bits[ulp+1]+
 | 
						|
                   iLBCenc_inst->ULP_inst->state_bits[ulp+2]);
 | 
						|
               dopack( &pbytes, firstpart,
 | 
						|
                   iLBCenc_inst->ULP_inst->state_bits[ulp], &pos);
 | 
						|
           }
 | 
						|
 | 
						|
 | 
						|
 | 
						|
 | 
						|
 | 
						|
 | 
						|
           /* 23/22 (20ms/30ms) sample block */
 | 
						|
 | 
						|
           for (k=0;k<CB_NSTAGES;k++) {
 | 
						|
               packsplit(extra_cb_index+k, &firstpart,
 | 
						|
                   extra_cb_index+k,
 | 
						|
                   iLBCenc_inst->ULP_inst->extra_cb_index[k][ulp],
 | 
						|
                   iLBCenc_inst->ULP_inst->extra_cb_index[k][ulp]+
 | 
						|
                   iLBCenc_inst->ULP_inst->extra_cb_index[k][ulp+1]+
 | 
						|
                   iLBCenc_inst->ULP_inst->extra_cb_index[k][ulp+2]);
 | 
						|
               dopack( &pbytes, firstpart,
 | 
						|
                   iLBCenc_inst->ULP_inst->extra_cb_index[k][ulp],
 | 
						|
                   &pos);
 | 
						|
           }
 | 
						|
 | 
						|
           for (k=0;k<CB_NSTAGES;k++) {
 | 
						|
               packsplit(extra_gain_index+k, &firstpart,
 | 
						|
                   extra_gain_index+k,
 | 
						|
                   iLBCenc_inst->ULP_inst->extra_cb_gain[k][ulp],
 | 
						|
                   iLBCenc_inst->ULP_inst->extra_cb_gain[k][ulp]+
 | 
						|
                   iLBCenc_inst->ULP_inst->extra_cb_gain[k][ulp+1]+
 | 
						|
                   iLBCenc_inst->ULP_inst->extra_cb_gain[k][ulp+2]);
 | 
						|
               dopack( &pbytes, firstpart,
 | 
						|
                   iLBCenc_inst->ULP_inst->extra_cb_gain[k][ulp],
 | 
						|
                   &pos);
 | 
						|
           }
 | 
						|
 | 
						|
           /* The two/four (20ms/30ms) 40 sample sub-blocks */
 | 
						|
 | 
						|
           for (i=0; i<iLBCenc_inst->nasub; i++) {
 | 
						|
               for (k=0; k<CB_NSTAGES; k++) {
 | 
						|
                   packsplit(cb_index+i*CB_NSTAGES+k, &firstpart,
 | 
						|
                       cb_index+i*CB_NSTAGES+k,
 | 
						|
                       iLBCenc_inst->ULP_inst->cb_index[i][k][ulp],
 | 
						|
                       iLBCenc_inst->ULP_inst->cb_index[i][k][ulp]+
 | 
						|
                       iLBCenc_inst->ULP_inst->cb_index[i][k][ulp+1]+
 | 
						|
                       iLBCenc_inst->ULP_inst->cb_index[i][k][ulp+2]);
 | 
						|
                   dopack( &pbytes, firstpart,
 | 
						|
                       iLBCenc_inst->ULP_inst->cb_index[i][k][ulp],
 | 
						|
                       &pos);
 | 
						|
               }
 | 
						|
           }
 | 
						|
 | 
						|
           for (i=0; i<iLBCenc_inst->nasub; i++) {
 | 
						|
               for (k=0; k<CB_NSTAGES; k++) {
 | 
						|
                   packsplit(gain_index+i*CB_NSTAGES+k, &firstpart,
 | 
						|
                       gain_index+i*CB_NSTAGES+k,
 | 
						|
                       iLBCenc_inst->ULP_inst->cb_gain[i][k][ulp],
 | 
						|
                       iLBCenc_inst->ULP_inst->cb_gain[i][k][ulp]+
 | 
						|
 | 
						|
 | 
						|
 | 
						|
 | 
						|
 | 
						|
                       iLBCenc_inst->ULP_inst->cb_gain[i][k][ulp+1]+
 | 
						|
                       iLBCenc_inst->ULP_inst->cb_gain[i][k][ulp+2]);
 | 
						|
                   dopack( &pbytes, firstpart,
 | 
						|
                       iLBCenc_inst->ULP_inst->cb_gain[i][k][ulp],
 | 
						|
                       &pos);
 | 
						|
               }
 | 
						|
           }
 | 
						|
       }
 | 
						|
 | 
						|
       /* set the last bit to zero (otherwise the decoder
 | 
						|
          will treat it as a lost frame) */
 | 
						|
       dopack( &pbytes, 0, 1, &pos);
 | 
						|
   }
 |