📄 omxvcm4p10_interpolateluma.c
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/** * * File Name: omxVCM4P10_InterpolateLuma.c * OpenMAX DL: v1.0.2 * Revision: 10586 * Date: Wednesday, March 5, 2008 * * (c) Copyright 2007-2008 ARM Limited. All Rights Reserved. * * * Description: * This function will calculate Performs quarter-pixel interpolation * */#include "omxtypes.h"#include "armOMX.h"#include "omxVC.h"#include "armVC.h"#include "armCOMM.h"/** * Function: omxVCM4P10_InterpolateLuma (6.3.3.2.1) * * Description: * Performs quarter-pixel interpolation for inter luma MB. It is assumed that * the frame is already padded when calling this function. * * Input Arguments: * * pSrc -Pointer to the source reference frame buffer * srcStep -reference frame step, in bytes; must be a multiple of roi.width * dstStep -destination frame step, in bytes; must be a multiple of * roi.width * dx -Fractional part of horizontal motion vector component in 1/4 pixel * unit; valid in the range [0,3] * dy -Fractional part of vertical motion vector y component in 1/4 pixel * unit; valid in the range [0,3] * roi -Dimension of the interpolation region; the parameters roi.width and * roi.height must be equal to either 4, 8, or 16. * * Output Arguments: * * pDst -Pointer to the destination frame buffer if roi.width==4, 4-byte * alignment required if roi.width==8, 8-byte alignment required * if roi.width==16, 16-byte alignment required * * Return Value: * If the function runs without error, it returns OMX_Sts_NoErr. * If one of the following cases occurs, the function returns * OMX_Sts_BadArgErr: * pSrc or pDst is NULL. * srcStep or dstStep < roi.width. * dx or dy is out of range [0,3]. * roi.width or roi.height is out of range {4, 8, 16}. * roi.width is equal to 4, but pDst is not 4 byte aligned. * roi.width is equal to 8 or 16, but pDst is not 8 byte aligned. * srcStep or dstStep is not a multiple of 8. * */OMXResult omxVCM4P10_InterpolateLuma ( const OMX_U8* pSrc, OMX_S32 srcStep, OMX_U8* pDst, OMX_S32 dstStep, OMX_S32 dx, OMX_S32 dy, OMXSize roi ){ /* check for argument error */ armRetArgErrIf(pSrc == NULL, OMX_Sts_BadArgErr) armRetArgErrIf(pDst == NULL, OMX_Sts_BadArgErr) armRetArgErrIf(srcStep < roi.width, OMX_Sts_BadArgErr) armRetArgErrIf(dstStep < roi.width, OMX_Sts_BadArgErr) armRetArgErrIf(dx < 0, OMX_Sts_BadArgErr) armRetArgErrIf(dx > 3, OMX_Sts_BadArgErr) armRetArgErrIf(dy < 0, OMX_Sts_BadArgErr) armRetArgErrIf(dy > 3, OMX_Sts_BadArgErr) armRetArgErrIf((roi.width != 4) && (roi.width != 8) && (roi.width != 16), OMX_Sts_BadArgErr) armRetArgErrIf((roi.height != 4) && (roi.height != 8) && (roi.height != 16), OMX_Sts_BadArgErr) armRetArgErrIf((roi.width == 4) && armNot4ByteAligned(pDst), OMX_Sts_BadArgErr) armRetArgErrIf((roi.width == 8) && armNot8ByteAligned(pDst), OMX_Sts_BadArgErr) armRetArgErrIf((roi.width == 16) && armNot16ByteAligned(pDst), OMX_Sts_BadArgErr) armRetArgErrIf(srcStep & 7, OMX_Sts_BadArgErr) armRetArgErrIf(dstStep & 7, OMX_Sts_BadArgErr) return armVCM4P10_Interpolate_Luma (pSrc, srcStep, pDst, dstStep, roi.width, roi.height, dx, dy);}/***************************************************************************** * END OF FILE *****************************************************************************/
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