9bf37cc971
License boilerplate update to follow. Change-Id: I2810460c11a58b6d148d84673cc031f3685e79b5
192 lines
5.4 KiB
C
192 lines
5.4 KiB
C
/*************************** Fraunhofer IIS FDK Tools **********************
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(C) Copyright Fraunhofer IIS (2001)
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All Rights Reserved
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Please be advised that this software and/or program delivery is
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Confidential Information of Fraunhofer and subject to and covered by the
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Fraunhofer IIS Software Evaluation Agreement
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between Google Inc. and Fraunhofer
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effective and in full force since March 1, 2012.
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You may use this software and/or program only under the terms and
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conditions described in the above mentioned Fraunhofer IIS Software
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Evaluation Agreement. Any other and/or further use requires a separate agreement.
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$Id$
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Author(s): Josef Hoepfl, DSP Solutions
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Description: Fix point FFT
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This software and/or program is protected by copyright law and international
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treaties. Any reproduction or distribution of this software and/or program,
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or any portion of it, may result in severe civil and criminal penalties, and
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will be prosecuted to the maximum extent possible under law.
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******************************************************************************/
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#ifndef __FFT_H__
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#define __FFT_H__
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#include "common_fix.h"
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/**
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* \brief Perform an inplace complex valued FFT of length 2^n
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*
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* \param length Length of the FFT to be calculated.
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* \param pInput Input/Output data buffer. The input data must have at least 1 bit scale headroom.
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* The values are interleaved, real/imag pairs.
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* \param scalefactor Pointer to an INT, which contains the current scale of the input data,
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* which is updated according to the FFT scale.
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*/
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void fft(int length, FIXP_DBL *pInput, INT *scalefactor);
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/**
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* \brief Perform an inplace complex valued IFFT of length 2^n
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*
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* \param length Length of the FFT to be calculated.
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* \param pInput Input/Output data buffer. The input data must have at least 1 bit scale headroom.
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* The values are interleaved, real/imag pairs.
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* \param scalefactor Pointer to an INT, which contains the current scale of the input data,
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* which is updated according to the IFFT scale.
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*/
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void ifft(int length, FIXP_DBL *pInput, INT *scalefactor);
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/*
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* Frequently used and fixed short length FFTs.
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*/
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LNK_SECTION_CODE_L1
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static void FORCEINLINE fft_4(FIXP_DBL *x)
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{
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FIXP_DBL a00, a10, a20, a30, tmp0, tmp1;
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a00 = (x[0] + x[4])>>1; /* Re A + Re B */
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a10 = (x[2] + x[6])>>1; /* Re C + Re D */
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a20 = (x[1] + x[5])>>1; /* Im A + Im B */
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a30 = (x[3] + x[7])>>1; /* Im C + Im D */
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x[0] = a00 + a10; /* Re A' = Re A + Re B + Re C + Re D */
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x[1] = a20 + a30; /* Im A' = Im A + Im B + Im C + Im D */
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tmp0 = a00 - x[4]; /* Re A - Re B */
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tmp1 = a20 - x[5]; /* Im A - Im B */
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x[4] = a00 - a10; /* Re C' = Re A + Re B - Re C - Re D */
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x[5] = a20 - a30; /* Im C' = Im A + Im B - Im C - Im D */
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a10 = a10 - x[6]; /* Re C - Re D */
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a30 = a30 - x[7]; /* Im C - Im D */
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x[2] = tmp0 + a30; /* Re B' = Re A - Re B + Im C - Im D */
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x[6] = tmp0 - a30; /* Re D' = Re A - Re B - Im C + Im D */
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x[3] = tmp1 - a10; /* Im B' = Im A - Im B - Re C + Re D */
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x[7] = tmp1 + a10; /* Im D' = Im A - Im B + Re C - Re D */
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}
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LNK_SECTION_CODE_L1
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static void FORCEINLINE fft_8(FIXP_DBL *x)
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{
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#define W_PiFOURTH STC(0x5a82799a)
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FIXP_DBL a00, a10, a20, a30;
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FIXP_DBL y[16];
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a00 = (x[0] + x[8])>>1;
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a10 = x[4] + x[12];
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a20 = (x[1] + x[9])>>1;
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a30 = x[5] + x[13];
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y[0] = a00 + (a10>>1);
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y[4] = a00 - (a10>>1);
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y[1] = a20 + (a30>>1);
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y[5] = a20 - (a30>>1);
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a00 = a00 - x[8];
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a10 = (a10>>1) - x[12];
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a20 = a20 - x[9];
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a30 = (a30>>1) - x[13];
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y[2] = a00 + a30;
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y[6] = a00 - a30;
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y[3] = a20 - a10;
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y[7] = a20 + a10;
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a00 = (x[2] + x[10])>>1;
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a10 = x[6] + x[14];
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a20 = (x[3] + x[11])>>1;
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a30 = x[7] + x[15];
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y[8] = a00 + (a10>>1);
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y[12] = a00 - (a10>>1);
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y[9] = a20 + (a30>>1);
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y[13] = a20 - (a30>>1);
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a00 = a00 - x[10];
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a10 = (a10>>1) - x[14];
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a20 = a20 - x[11];
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a30 = (a30>>1) - x[15];
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y[10] = a00 + a30;
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y[14] = a00 - a30;
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y[11] = a20 - a10;
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y[15] = a20 + a10;
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FIXP_DBL vr, vi, ur, ui;
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ur = y[0]>>1;
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ui = y[1]>>1;
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vr = y[8];
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vi = y[9];
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x[0] = ur + (vr>>1);
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x[1] = ui + (vi>>1);
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x[8] = ur - (vr>>1);
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x[9] = ui - (vi>>1);
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ur = y[4]>>1;
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ui = y[5]>>1;
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vi = y[12];
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vr = y[13];
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x[4] = ur + (vr>>1);
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x[5] = ui - (vi>>1);
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x[12] = ur - (vr>>1);
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x[13] = ui + (vi>>1);
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ur = y[10];
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ui = y[11];
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vr = fMultDiv2(ui+ur,W_PiFOURTH);
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vi = fMultDiv2(ui-ur,W_PiFOURTH);
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ur = y[2];
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ui = y[3];
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x[2] = (ur>>1) + vr;
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x[3] = (ui>>1) + vi;
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x[10] = (ur>>1) - vr;
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x[11] = (ui>>1) - vi;
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ur = y[14];
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ui = y[15];
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vr = fMultDiv2(ui-ur,W_PiFOURTH);
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vi = fMultDiv2(ui+ur,W_PiFOURTH);
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ur = y[6];
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ui = y[7];
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x[6] = (ur>>1) + vr;
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x[7] = (ui>>1) - vi;
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x[14] = (ur>>1) - vr;
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x[15] = (ui>>1) + vi;
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}
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/**
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* \brief FFT of fixed length 16
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*/
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inline void fft_16(FIXP_DBL *x);
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/**
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* \brief FFT of fixed length 32
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*/
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inline void fft_32(FIXP_DBL *x);
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#endif
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