178e52bfac041d71ce53b5b13c2abf78af742b09dLajos Molnar/*
278e52bfac041d71ce53b5b13c2abf78af742b09dLajos Molnar * Copyright (C) 2007-2008 ARM Limited
378e52bfac041d71ce53b5b13c2abf78af742b09dLajos Molnar *
478e52bfac041d71ce53b5b13c2abf78af742b09dLajos Molnar * Licensed under the Apache License, Version 2.0 (the "License");
578e52bfac041d71ce53b5b13c2abf78af742b09dLajos Molnar * you may not use this file except in compliance with the License.
678e52bfac041d71ce53b5b13c2abf78af742b09dLajos Molnar * You may obtain a copy of the License at
778e52bfac041d71ce53b5b13c2abf78af742b09dLajos Molnar *
878e52bfac041d71ce53b5b13c2abf78af742b09dLajos Molnar *      http://www.apache.org/licenses/LICENSE-2.0
978e52bfac041d71ce53b5b13c2abf78af742b09dLajos Molnar *
1078e52bfac041d71ce53b5b13c2abf78af742b09dLajos Molnar * Unless required by applicable law or agreed to in writing, software
1178e52bfac041d71ce53b5b13c2abf78af742b09dLajos Molnar * distributed under the License is distributed on an "AS IS" BASIS,
1278e52bfac041d71ce53b5b13c2abf78af742b09dLajos Molnar * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
1378e52bfac041d71ce53b5b13c2abf78af742b09dLajos Molnar * See the License for the specific language governing permissions and
1478e52bfac041d71ce53b5b13c2abf78af742b09dLajos Molnar * limitations under the License.
1578e52bfac041d71ce53b5b13c2abf78af742b09dLajos Molnar *
1678e52bfac041d71ce53b5b13c2abf78af742b09dLajos Molnar */
170c1bc742181ded4930842b46e9507372f0b1b963James Dong/**
180c1bc742181ded4930842b46e9507372f0b1b963James Dong *
190c1bc742181ded4930842b46e9507372f0b1b963James Dong * File Name:  omxVCM4P2_QuantInvIntra_I.c
200c1bc742181ded4930842b46e9507372f0b1b963James Dong * OpenMAX DL: v1.0.2
210c1bc742181ded4930842b46e9507372f0b1b963James Dong * Revision:   9641
220c1bc742181ded4930842b46e9507372f0b1b963James Dong * Date:       Thursday, February 7, 2008
230c1bc742181ded4930842b46e9507372f0b1b963James Dong *
240c1bc742181ded4930842b46e9507372f0b1b963James Dong *
250c1bc742181ded4930842b46e9507372f0b1b963James Dong *
260c1bc742181ded4930842b46e9507372f0b1b963James Dong *
270c1bc742181ded4930842b46e9507372f0b1b963James Dong * Description:
280c1bc742181ded4930842b46e9507372f0b1b963James Dong * Contains modules for intra inverse Quantization
290c1bc742181ded4930842b46e9507372f0b1b963James Dong *
300c1bc742181ded4930842b46e9507372f0b1b963James Dong */
310c1bc742181ded4930842b46e9507372f0b1b963James Dong
320c1bc742181ded4930842b46e9507372f0b1b963James Dong#include "omxtypes.h"
330c1bc742181ded4930842b46e9507372f0b1b963James Dong#include "armOMX.h"
340c1bc742181ded4930842b46e9507372f0b1b963James Dong#include "omxVC.h"
350c1bc742181ded4930842b46e9507372f0b1b963James Dong
360c1bc742181ded4930842b46e9507372f0b1b963James Dong#include "armCOMM.h"
370c1bc742181ded4930842b46e9507372f0b1b963James Dong
380c1bc742181ded4930842b46e9507372f0b1b963James Dong/**
390c1bc742181ded4930842b46e9507372f0b1b963James Dong * Function:  omxVCM4P2_QuantInvIntra_I   (6.2.5.3.2)
400c1bc742181ded4930842b46e9507372f0b1b963James Dong *
410c1bc742181ded4930842b46e9507372f0b1b963James Dong * Description:
420c1bc742181ded4930842b46e9507372f0b1b963James Dong * Performs the second inverse quantization mode on an intra/inter coded
430c1bc742181ded4930842b46e9507372f0b1b963James Dong * block. Supports bits_per_pixel = 8. The output coefficients are clipped to
440c1bc742181ded4930842b46e9507372f0b1b963James Dong * the range [-2048, 2047].
450c1bc742181ded4930842b46e9507372f0b1b963James Dong *
460c1bc742181ded4930842b46e9507372f0b1b963James Dong * Input Arguments:
470c1bc742181ded4930842b46e9507372f0b1b963James Dong *
480c1bc742181ded4930842b46e9507372f0b1b963James Dong *   pSrcDst - pointer to the input (quantized) intra/inter block; must be
490c1bc742181ded4930842b46e9507372f0b1b963James Dong *            aligned on a 16-byte boundary.
500c1bc742181ded4930842b46e9507372f0b1b963James Dong *   QP - quantization parameter (quantizer_scale)
510c1bc742181ded4930842b46e9507372f0b1b963James Dong *   videoComp - video component type of the current block. Takes one of the
520c1bc742181ded4930842b46e9507372f0b1b963James Dong *            following flags: OMX_VC_LUMINANCE, OMX_VC_CHROMINANCE (intra
530c1bc742181ded4930842b46e9507372f0b1b963James Dong *            version only).
540c1bc742181ded4930842b46e9507372f0b1b963James Dong *   shortVideoHeader - binary flag indicating presence of short_video_header
550c1bc742181ded4930842b46e9507372f0b1b963James Dong *            (intra version only).
560c1bc742181ded4930842b46e9507372f0b1b963James Dong *
570c1bc742181ded4930842b46e9507372f0b1b963James Dong * Output Arguments:
580c1bc742181ded4930842b46e9507372f0b1b963James Dong *
590c1bc742181ded4930842b46e9507372f0b1b963James Dong *   pSrcDst - pointer to the output (dequantized) intra/inter block
600c1bc742181ded4930842b46e9507372f0b1b963James Dong *
610c1bc742181ded4930842b46e9507372f0b1b963James Dong * Return Value:
620c1bc742181ded4930842b46e9507372f0b1b963James Dong *
630c1bc742181ded4930842b46e9507372f0b1b963James Dong *    OMX_Sts_NoErr - no error
640c1bc742181ded4930842b46e9507372f0b1b963James Dong *    OMX_Sts_BadArgErr - bad arguments; one or more of the following is
650c1bc742181ded4930842b46e9507372f0b1b963James Dong *              true:
660c1bc742181ded4930842b46e9507372f0b1b963James Dong *    -    pSrcDst is NULL
670c1bc742181ded4930842b46e9507372f0b1b963James Dong *    -    QP <= 0 or QP >=31
680c1bc742181ded4930842b46e9507372f0b1b963James Dong *    -    videoComp is neither OMX_VC_LUMINANCE nor OMX_VC_CHROMINANCE.
690c1bc742181ded4930842b46e9507372f0b1b963James Dong *
700c1bc742181ded4930842b46e9507372f0b1b963James Dong */
710c1bc742181ded4930842b46e9507372f0b1b963James Dong
720c1bc742181ded4930842b46e9507372f0b1b963James DongOMXResult omxVCM4P2_QuantInvIntra_I(
730c1bc742181ded4930842b46e9507372f0b1b963James Dong     OMX_S16 * pSrcDst,
740c1bc742181ded4930842b46e9507372f0b1b963James Dong     OMX_INT QP,
750c1bc742181ded4930842b46e9507372f0b1b963James Dong     OMXVCM4P2VideoComponent videoComp,
760c1bc742181ded4930842b46e9507372f0b1b963James Dong	 OMX_INT shortVideoHeader
770c1bc742181ded4930842b46e9507372f0b1b963James Dong)
780c1bc742181ded4930842b46e9507372f0b1b963James Dong{
790c1bc742181ded4930842b46e9507372f0b1b963James Dong
800c1bc742181ded4930842b46e9507372f0b1b963James Dong    /* Initialized to remove compilation error */
810c1bc742181ded4930842b46e9507372f0b1b963James Dong    OMX_INT dcScaler = 0, coeffCount, Sign;
820c1bc742181ded4930842b46e9507372f0b1b963James Dong
830c1bc742181ded4930842b46e9507372f0b1b963James Dong    /* Argument error checks */
840c1bc742181ded4930842b46e9507372f0b1b963James Dong    armRetArgErrIf(pSrcDst == NULL, OMX_Sts_BadArgErr);
850c1bc742181ded4930842b46e9507372f0b1b963James Dong    armRetArgErrIf(((QP <= 0) || (QP >= 32)), OMX_Sts_BadArgErr);
860c1bc742181ded4930842b46e9507372f0b1b963James Dong	armRetArgErrIf(((videoComp != OMX_VC_LUMINANCE) && (videoComp != OMX_VC_CHROMINANCE)), OMX_Sts_BadArgErr);
870c1bc742181ded4930842b46e9507372f0b1b963James Dong
880c1bc742181ded4930842b46e9507372f0b1b963James Dong    /* Calculate the DC scaler value */
890c1bc742181ded4930842b46e9507372f0b1b963James Dong
900c1bc742181ded4930842b46e9507372f0b1b963James Dong    /* linear intra DC mode */
910c1bc742181ded4930842b46e9507372f0b1b963James Dong    if(shortVideoHeader)
920c1bc742181ded4930842b46e9507372f0b1b963James Dong    {
930c1bc742181ded4930842b46e9507372f0b1b963James Dong        dcScaler = 8;
940c1bc742181ded4930842b46e9507372f0b1b963James Dong    }
950c1bc742181ded4930842b46e9507372f0b1b963James Dong    /* nonlinear intra DC mode */
960c1bc742181ded4930842b46e9507372f0b1b963James Dong    else
970c1bc742181ded4930842b46e9507372f0b1b963James Dong    {
980c1bc742181ded4930842b46e9507372f0b1b963James Dong
990c1bc742181ded4930842b46e9507372f0b1b963James Dong        if (videoComp == OMX_VC_LUMINANCE)
1000c1bc742181ded4930842b46e9507372f0b1b963James Dong        {
1010c1bc742181ded4930842b46e9507372f0b1b963James Dong            if (QP >= 1 && QP <= 4)
1020c1bc742181ded4930842b46e9507372f0b1b963James Dong            {
1030c1bc742181ded4930842b46e9507372f0b1b963James Dong                dcScaler = 8;
1040c1bc742181ded4930842b46e9507372f0b1b963James Dong            }
1050c1bc742181ded4930842b46e9507372f0b1b963James Dong            else if (QP >= 5 && QP <= 8)
1060c1bc742181ded4930842b46e9507372f0b1b963James Dong            {
1070c1bc742181ded4930842b46e9507372f0b1b963James Dong                dcScaler = 2 * QP;
1080c1bc742181ded4930842b46e9507372f0b1b963James Dong            }
1090c1bc742181ded4930842b46e9507372f0b1b963James Dong            else if (QP >= 9 && QP <= 24)
1100c1bc742181ded4930842b46e9507372f0b1b963James Dong            {
1110c1bc742181ded4930842b46e9507372f0b1b963James Dong                dcScaler = QP + 8;
1120c1bc742181ded4930842b46e9507372f0b1b963James Dong            }
1130c1bc742181ded4930842b46e9507372f0b1b963James Dong            else
1140c1bc742181ded4930842b46e9507372f0b1b963James Dong            {
1150c1bc742181ded4930842b46e9507372f0b1b963James Dong                dcScaler = (2 * QP) - 16;
1160c1bc742181ded4930842b46e9507372f0b1b963James Dong            }
1170c1bc742181ded4930842b46e9507372f0b1b963James Dong        }
1180c1bc742181ded4930842b46e9507372f0b1b963James Dong
1190c1bc742181ded4930842b46e9507372f0b1b963James Dong        else if (videoComp == OMX_VC_CHROMINANCE)
1200c1bc742181ded4930842b46e9507372f0b1b963James Dong        {
1210c1bc742181ded4930842b46e9507372f0b1b963James Dong            if (QP >= 1 && QP <= 4)
1220c1bc742181ded4930842b46e9507372f0b1b963James Dong            {
1230c1bc742181ded4930842b46e9507372f0b1b963James Dong                dcScaler = 8;
1240c1bc742181ded4930842b46e9507372f0b1b963James Dong            }
1250c1bc742181ded4930842b46e9507372f0b1b963James Dong            else if (QP >= 5 && QP <= 24)
1260c1bc742181ded4930842b46e9507372f0b1b963James Dong            {
1270c1bc742181ded4930842b46e9507372f0b1b963James Dong                dcScaler = (QP + 13)/2;
1280c1bc742181ded4930842b46e9507372f0b1b963James Dong            }
1290c1bc742181ded4930842b46e9507372f0b1b963James Dong            else
1300c1bc742181ded4930842b46e9507372f0b1b963James Dong            {
1310c1bc742181ded4930842b46e9507372f0b1b963James Dong                dcScaler = QP - 6;
1320c1bc742181ded4930842b46e9507372f0b1b963James Dong            }
1330c1bc742181ded4930842b46e9507372f0b1b963James Dong        }
1340c1bc742181ded4930842b46e9507372f0b1b963James Dong    }
1350c1bc742181ded4930842b46e9507372f0b1b963James Dong    /* Dequant the DC value, this applies to both the methods */
1360c1bc742181ded4930842b46e9507372f0b1b963James Dong    pSrcDst[0] = pSrcDst[0] * dcScaler;
1370c1bc742181ded4930842b46e9507372f0b1b963James Dong
1380c1bc742181ded4930842b46e9507372f0b1b963James Dong    /* Saturate */
1390c1bc742181ded4930842b46e9507372f0b1b963James Dong    pSrcDst[0] = armClip (-2048, 2047, pSrcDst[0]);
1400c1bc742181ded4930842b46e9507372f0b1b963James Dong
1410c1bc742181ded4930842b46e9507372f0b1b963James Dong    /* Second Inverse quantisation method */
1420c1bc742181ded4930842b46e9507372f0b1b963James Dong    for (coeffCount = 1; coeffCount < 64; coeffCount++)
1430c1bc742181ded4930842b46e9507372f0b1b963James Dong    {
1440c1bc742181ded4930842b46e9507372f0b1b963James Dong        /* check sign */
1450c1bc742181ded4930842b46e9507372f0b1b963James Dong        Sign =  armSignCheck (pSrcDst[coeffCount]);
1460c1bc742181ded4930842b46e9507372f0b1b963James Dong
1470c1bc742181ded4930842b46e9507372f0b1b963James Dong        if (QP & 0x1)
1480c1bc742181ded4930842b46e9507372f0b1b963James Dong        {
1490c1bc742181ded4930842b46e9507372f0b1b963James Dong            pSrcDst[coeffCount] = (2* armAbs(pSrcDst[coeffCount]) + 1) * QP;
1500c1bc742181ded4930842b46e9507372f0b1b963James Dong            pSrcDst[coeffCount] *= Sign;
1510c1bc742181ded4930842b46e9507372f0b1b963James Dong        }
1520c1bc742181ded4930842b46e9507372f0b1b963James Dong        else
1530c1bc742181ded4930842b46e9507372f0b1b963James Dong        {
1540c1bc742181ded4930842b46e9507372f0b1b963James Dong            pSrcDst[coeffCount] =
1550c1bc742181ded4930842b46e9507372f0b1b963James Dong                                (2* armAbs(pSrcDst[coeffCount]) + 1) * QP - 1;
1560c1bc742181ded4930842b46e9507372f0b1b963James Dong            pSrcDst[coeffCount] *= Sign;
1570c1bc742181ded4930842b46e9507372f0b1b963James Dong        }
1580c1bc742181ded4930842b46e9507372f0b1b963James Dong
1590c1bc742181ded4930842b46e9507372f0b1b963James Dong        /* Saturate */
1600c1bc742181ded4930842b46e9507372f0b1b963James Dong        pSrcDst[coeffCount] = armClip (-2048, 2047, pSrcDst[coeffCount]);
1610c1bc742181ded4930842b46e9507372f0b1b963James Dong    }
1620c1bc742181ded4930842b46e9507372f0b1b963James Dong    return OMX_Sts_NoErr;
1630c1bc742181ded4930842b46e9507372f0b1b963James Dong
1640c1bc742181ded4930842b46e9507372f0b1b963James Dong}
1650c1bc742181ded4930842b46e9507372f0b1b963James Dong
1660c1bc742181ded4930842b46e9507372f0b1b963James Dong/* End of file */
1670c1bc742181ded4930842b46e9507372f0b1b963James Dong
1680c1bc742181ded4930842b46e9507372f0b1b963James Dong
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