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📄 dec_lag3.cpp

📁 实现3GPP的GSM中AMR语音的CODECS。
💻 CPP
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/* ------------------------------------------------------------------ * Copyright (C) 2008 PacketVideo * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * *      http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either * express or implied. * See the License for the specific language governing permissions * and limitations under the License. * ------------------------------------------------------------------- *//****************************************************************************************Portions of this file are derived from the following 3GPP standard:    3GPP TS 26.073    ANSI-C code for the Adaptive Multi-Rate (AMR) speech codec    Available from http://www.3gpp.org(C) 2004, 3GPP Organizational Partners (ARIB, ATIS, CCSA, ETSI, TTA, TTC)Permission to distribute, modify and use this file under the standard licenseterms listed above has been obtained from the copyright holder.****************************************************************************************//*------------------------------------------------------------------------------ Pathname: ./audio/gsm-amr/c/src/dec_lag3.c Functions: Dec_lag3     Date: 01/31/2002------------------------------------------------------------------------------ REVISION HISTORY Description: (1) Updated to accept new parameter, Flag *pOverflow. (2) Placed file in the proper PV Software template. Description: (1) Removed "count.h" and "basic_op.h" and replaced with individual include     files (add.h, sub.h, etc.) Description: (1) Removed optimization -- mult(i, 3, pOverflow) is NOT the same as adding     i to itself 3 times.  The reason is because the mult function does a     right shift by 15, which will obliterate smaller numbers. Description:  Replaced "int" and/or "char" with OSCL defined types. Description: ------------------------------------------------------------------------------ INPUT AND OUTPUT DEFINITIONS Inputs:    index   -- Word16 -- received pitch index    t0_min  -- Word16 -- minimum of search range    t0_max  -- Word16 -- maximum of search range    i_subfr -- Word16 -- subframe flag    T0_prev -- Word16 -- integer pitch delay of last subframe                         used in 2nd and 4th subframes    flag4   -- Word16 -- flag for encoding with 4 bits Outputs:    T0 -- Pointer to type Word16 -- integer part of pitch lag    T0_frac -- Pointer to type Word16 -- fractional part of pitch lag    pOverflow -- Pointer to type Flag -- Flag set when overflow occurs Returns:    None. Global Variables Used:    None Local Variables Needed:    None              )------------------------------------------------------------------------------ FUNCTION DESCRIPTION PURPOSE:  Decoding of fractional pitch lag with 1/3 resolution.           Extract the integer and fraction parts of the pitch lag from           the received adaptive codebook index.  See "Enc_lag3.c" for more details about the encoding procedure.  The fractional lag in 1st and 3rd subframes is encoded with 8 bits  while that in 2nd and 4th subframes is relatively encoded with 4, 5  and 6 bits depending on the mode.------------------------------------------------------------------------------ REQUIREMENTS------------------------------------------------------------------------------ REFERENCES dec_lag3.c, UMTS GSM AMR speech codec, R99 - Version 3.2.0, March 2, 2001------------------------------------------------------------------------------ PSEUDO-CODE------------------------------------------------------------------------------ RESOURCES USED   When the code is written for a specific target processor the     the resources used should be documented below. STACK USAGE: [stack count for this module] + [variable to represent          stack usage for each subroutine called]     where: [stack usage variable] = stack usage for [subroutine         name] (see [filename].ext) DATA MEMORY USED: x words PROGRAM MEMORY USED: x words CLOCK CYCLES: [cycle count equation for this module] + [variable           used to represent cycle count for each subroutine           called]     where: [cycle count variable] = cycle count for [subroutine        name] (see [filename].ext)------------------------------------------------------------------------------*//*----------------------------------------------------------------------------; INCLUDES----------------------------------------------------------------------------*/#include "dec_lag3.h"#include "typedef.h"#include "basic_op.h"/*----------------------------------------------------------------------------; MACROS; Define module specific macros here----------------------------------------------------------------------------*//*----------------------------------------------------------------------------; DEFINES; Include all pre-processor statements here. Include conditional; compile variables also.----------------------------------------------------------------------------*//*----------------------------------------------------------------------------; LOCAL FUNCTION DEFINITIONS; Function Prototype declaration----------------------------------------------------------------------------*//*----------------------------------------------------------------------------; LOCAL STORE/BUFFER/POINTER DEFINITIONS; Variable declaration - defined here and used outside this module----------------------------------------------------------------------------*//*----------------------------------------------------------------------------; EXTERNAL FUNCTION REFERENCES; Declare functions defined elsewhere and referenced in this module----------------------------------------------------------------------------*//*----------------------------------------------------------------------------; EXTERNAL GLOBAL STORE/BUFFER/POINTER REFERENCES; Declare variables used in this module but defined elsewhere----------------------------------------------------------------------------*//*----------------------------------------------------------------------------; FUNCTION CODE----------------------------------------------------------------------------*/void Dec_lag3(Word16 index,     /* i : received pitch index                 */              Word16 t0_min,    /* i : minimum of search range              */              Word16 t0_max,    /* i : maximum of search range              */              Word16 i_subfr,   /* i : subframe flag                        */              Word16 T0_prev,   /* i : integer pitch delay of last subframe                                       used in 2nd and 4th subframes        */              Word16 * T0,      /* o : integer part of pitch lag            */              Word16 * T0_frac, /* o : fractional part of pitch lag         */              Word16 flag4,     /* i : flag for encoding with 4 bits        */              Flag  *pOverflow  /* o : Flag set when overflow occurs        */             ){    Word16 i;    Word16 tmp_lag;    if (i_subfr == 0)    /* if 1st or 3rd subframe */    {        if (index < 197)        {            tmp_lag = index + 2;            tmp_lag =                mult(                    tmp_lag,                    10923,                    pOverflow);            i =                add(                    tmp_lag,                    19,                    pOverflow);            *T0 = i;            /* i = 3 * (*T0) */            i = add(i, i, pOverflow);            i = add(i, *T0, pOverflow);            tmp_lag =                sub(                    index,                    i,                    pOverflow);            *T0_frac =                add(                    tmp_lag,                    58,                    pOverflow);        }        else        {            *T0 = index - 112;            *T0_frac = 0;        }    }    else    {  /* 2nd or 4th subframe */        if (flag4 == 0)        {            /* 'normal' decoding: either with 5 or 6 bit resolution */            i =                add(                    index,                    2,                    pOverflow);            i =                mult(                    i,                    10923,                    pOverflow);            i =                sub(                    i,                    1,                    pOverflow);            *T0 =                add(                    i,                    t0_min,                    pOverflow);            /* i = 3* (*T0) */            i = add(add(i, i, pOverflow), i, pOverflow);            tmp_lag =                sub(                    index,                    2,                    pOverflow);            *T0_frac =                sub(                    tmp_lag,                    i,                    pOverflow);        }        else        {            /* decoding with 4 bit resolution */            tmp_lag = T0_prev;            i =                sub(                    tmp_lag,                    t0_min,                    pOverflow);            if (i > 5)            {                tmp_lag =                    add(                        t0_min,                        5,                        pOverflow);            }            i =                sub(                    t0_max,                    tmp_lag,                    pOverflow);            if (i > 4)            {                tmp_lag =                    sub(                        t0_max,                        4,                        pOverflow);            }            if (index < 4)            {                i =                    sub(                        tmp_lag,                        5,                        pOverflow);                *T0 =                    add(                        i,                        index,                        pOverflow);                *T0_frac = 0;            }            else            {                /* 4 >= index < 12 */                if (index < 12)                {                    i = index - 5;                    i = mult(                            i,                            10923,                            pOverflow);                    i--;                    *T0 = add(                              i,                              tmp_lag,                              pOverflow);                    i = add(                            add(                                i,                                i,                                pOverflow),                            i,                            pOverflow);                    tmp_lag = index - 9;                    *T0_frac =                        sub(                            tmp_lag,                            i,                            pOverflow);                }                else                {                    i = index - 12;                    i =                        add(                            i,                            tmp_lag,                            pOverflow);                    *T0 =                        add(                            i,                            1,                            pOverflow);                    *T0_frac = 0;                }            }        } /* end if (decoding with 4 bit resolution) */    }    return;}

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