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1263 lines
35 KiB
1263 lines
35 KiB
/****************************************************************************** |
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* |
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* Copyright (C) 2015 The Android Open Source Project |
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* |
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* Licensed under the Apache License, Version 2.0 (the "License"); |
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* you may not use this file except in compliance with the License. |
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* You may obtain a copy of the License at: |
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* |
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* http://www.apache.org/licenses/LICENSE-2.0 |
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* |
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* Unless required by applicable law or agreed to in writing, software |
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* distributed under the License is distributed on an "AS IS" BASIS, |
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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* See the License for the specific language governing permissions and |
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* limitations under the License. |
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* |
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***************************************************************************** |
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* Originally developed and contributed by Ittiam Systems Pvt. Ltd, Bangalore |
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*/ |
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/** |
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****************************************************************************** |
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* @file ih264e_distortion_metrics.c |
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* |
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* @brief |
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* This file contains definitions of routines that compute distortion |
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* between two macro/sub blocks of identical dimensions |
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* |
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* @author |
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* Ittiam |
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* |
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* @par List of Functions: |
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* - ime_sub_pel_compute_sad_16x16() |
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* - ime_calculate_sad4_prog() |
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* - ime_calculate_sad3_prog() |
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* - ime_calculate_sad2_prog() |
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* - ime_compute_sad_16x16() |
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* - ime_compute_sad_16x16_fast() |
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* - ime_compute_sad_16x16_ea8() |
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* - ime_compute_sad_8x8() |
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* - ime_compute_sad_4x4() |
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* - ime_compute_sad_16x8() |
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* - ime_compute_satqd_16x16_lumainter() |
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* - ime_compute_satqd_8x16_chroma() |
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* - ime_compute_satqd_16x16_lumaintra() |
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* |
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* |
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* @remarks |
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* None |
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* |
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******************************************************************************* |
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*/ |
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/*****************************************************************************/ |
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/* File Includes */ |
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/*****************************************************************************/ |
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/* System include files */ |
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#include <stdio.h> |
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#include <stdlib.h> |
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#include <string.h> |
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/* User include files */ |
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#include "ime_typedefs.h" |
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#include "ime_defs.h" |
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#include "ime_macros.h" |
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#include "ime_statistics.h" |
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#include "ime_platform_macros.h" |
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#include "ime_distortion_metrics.h" |
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/*****************************************************************************/ |
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/* Function Definitions */ |
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/*****************************************************************************/ |
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/** |
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****************************************************************************** |
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* |
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* @brief computes distortion (SAD) at all subpel points about the src location |
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* |
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* @par Description |
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* This functions computes SAD at all points at a subpel distance from the |
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* current source location. |
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* |
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* @param[in] pu1_src |
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* UWORD8 pointer to the source |
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* |
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* @param[out] pu1_ref_half_x |
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* UWORD8 pointer to half pel buffer |
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* |
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* @param[out] pu1_ref_half_y |
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* UWORD8 pointer to half pel buffer |
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* |
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* @param[out] pu1_ref_half_xy |
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* UWORD8 pointer to half pel buffer |
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* |
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* @param[in] src_strd |
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* integer source stride |
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* |
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* @param[in] ref_strd |
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* integer ref stride |
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* |
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* @param[out] pi4_sad |
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* integer evaluated sad |
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* pi4_sad[0] - half x |
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* pi4_sad[1] - half x - 1 |
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* pi4_sad[2] - half y |
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* pi4_sad[3] - half y - 1 |
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* pi4_sad[4] - half xy |
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* pi4_sad[5] - half xy - 1 |
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* pi4_sad[6] - half xy - strd |
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* pi4_sad[7] - half xy - 1 - strd |
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* |
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* @remarks |
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* |
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****************************************************************************** |
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*/ |
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void ime_sub_pel_compute_sad_16x16(UWORD8 *pu1_src, |
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UWORD8 *pu1_ref_half_x, |
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UWORD8 *pu1_ref_half_y, |
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UWORD8 *pu1_ref_half_xy, |
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WORD32 src_strd, |
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WORD32 ref_strd, |
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WORD32 *pi4_sad) |
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{ |
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UWORD8 *pu1_ref_half_x_left = pu1_ref_half_x - 1; |
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UWORD8 *pu1_ref_half_y_top = pu1_ref_half_y - ref_strd; |
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UWORD8 *pu1_ref_half_xy_left = pu1_ref_half_xy - 1; |
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UWORD8 *pu1_ref_half_xy_top = pu1_ref_half_xy - ref_strd; |
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UWORD8 *pu1_ref_half_xy_top_left = pu1_ref_half_xy - ref_strd - 1; |
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WORD32 row, col; |
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memset(pi4_sad, 0, 8 * sizeof(WORD32)); |
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for(row = 0; row < MB_SIZE; row++) |
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{ |
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for(col = 0; col < MB_SIZE; col++) |
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{ |
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WORD32 src; |
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WORD32 diff; |
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src = pu1_src[col]; |
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diff = src - pu1_ref_half_x[col]; |
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pi4_sad[0] += ABS(diff); |
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diff = src - pu1_ref_half_x_left[col]; |
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pi4_sad[1] += ABS(diff); |
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diff = src - pu1_ref_half_y[col]; |
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pi4_sad[2] += ABS(diff); |
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diff = src - pu1_ref_half_y_top[col]; |
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pi4_sad[3] += ABS(diff); |
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diff = src - pu1_ref_half_xy[col]; |
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pi4_sad[4] += ABS(diff); |
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diff = src - pu1_ref_half_xy_left[col]; |
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pi4_sad[5] += ABS(diff); |
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diff = src - pu1_ref_half_xy_top[col]; |
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pi4_sad[6] += ABS(diff); |
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diff = src - pu1_ref_half_xy_top_left[col]; |
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pi4_sad[7] += ABS(diff); |
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} |
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pu1_src += src_strd; |
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pu1_ref_half_x += ref_strd; |
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pu1_ref_half_x_left += ref_strd; |
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pu1_ref_half_y += ref_strd; |
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pu1_ref_half_y_top += ref_strd; |
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pu1_ref_half_xy += ref_strd; |
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pu1_ref_half_xy_left += ref_strd; |
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pu1_ref_half_xy_top += ref_strd; |
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pu1_ref_half_xy_top_left += ref_strd; |
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} |
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} |
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/** |
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******************************************************************************* |
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* |
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* @brief compute sad |
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* |
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* @par Description: This function computes the sad at vertices of diamond grid |
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* centered at reference pointer and at unit distance from it. |
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* |
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* @param[in] pu1_ref |
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* UWORD8 pointer to the reference |
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* |
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* @param[out] pu1_src |
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* UWORD8 pointer to the source |
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* |
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* @param[in] ref_strd |
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* integer reference stride |
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* |
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* @param[in] src_strd |
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* integer source stride |
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* |
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* @param[out] pi4_sad |
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* pointer to integer array evaluated sad |
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* |
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* @returns sad at all evaluated vertexes |
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* |
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* @remarks none |
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* |
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******************************************************************************* |
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*/ |
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void ime_calculate_sad4_prog(UWORD8 *pu1_ref, |
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UWORD8 *pu1_src, |
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WORD32 ref_strd, |
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WORD32 src_strd, |
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WORD32 *pi4_sad) |
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{ |
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/* reference ptrs at unit 1 distance in diamond pattern centered at pu1_ref */ |
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UWORD8 *left_ptr = pu1_ref - 1; |
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UWORD8 *right_ptr = pu1_ref + 1; |
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UWORD8 *top_ptr = pu1_ref - ref_strd; |
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UWORD8 *bot_ptr = pu1_ref + ref_strd; |
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/* temp var */ |
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WORD32 count2, count3; |
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UWORD32 u4_ref_buf_offset = ref_strd - MB_SIZE; |
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UWORD32 u4_cur_buf_offset = src_strd - MB_SIZE; |
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memset(pi4_sad, 0, 4 * sizeof(WORD32)); |
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for(count2 = MB_SIZE; count2 > 0; count2--) |
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{ |
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for(count3 = MB_SIZE; count3 > 0 ; count3--) |
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{ |
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WORD32 src; |
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WORD32 diff; |
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src = *pu1_src++; |
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diff = src - *left_ptr++; |
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pi4_sad[0] += ABS(diff); |
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diff = src - *right_ptr++; |
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pi4_sad[1] += ABS(diff); |
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diff = src - *top_ptr++; |
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pi4_sad[2] += ABS(diff); |
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diff = src - *bot_ptr++; |
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pi4_sad[3] += ABS(diff); |
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} |
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bot_ptr += u4_ref_buf_offset; |
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left_ptr += u4_ref_buf_offset; |
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right_ptr += u4_ref_buf_offset; |
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top_ptr += u4_ref_buf_offset; |
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pu1_src += u4_cur_buf_offset; |
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} |
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} |
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/** |
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******************************************************************************* |
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* |
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* @brief compute sad |
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* |
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* @par Description: This function computes the sad at vertices of diamond grid |
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* centered at reference pointer and at unit distance from it. |
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* |
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* @param[in] pu1_ref1, pu1_ref2, pu1_ref3 |
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* UWORD8 pointer to the reference |
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* |
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* @param[out] pu1_src |
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* UWORD8 pointer to the source |
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* |
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* @param[in] ref_strd |
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* integer reference stride |
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* |
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* @param[in] src_strd |
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* integer source stride |
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* |
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* @param[out] pi4_sad |
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* pointer to integer array evaluated sad |
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* |
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* @returns sad at all evaluated vertexes |
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* |
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* @remarks none |
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* |
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******************************************************************************* |
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*/ |
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void ime_calculate_sad3_prog(UWORD8 *pu1_ref1, |
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UWORD8 *pu1_ref2, |
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UWORD8 *pu1_ref3, |
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UWORD8 *pu1_src, |
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WORD32 ref_strd, |
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WORD32 src_strd, |
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WORD32 *pi4_sad) |
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{ |
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/* temp var */ |
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WORD32 i; |
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UWORD32 u4_ref_buf_offset = ref_strd - MB_SIZE; |
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UWORD32 u4_cur_buf_offset = src_strd - MB_SIZE; |
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for(i = 16; i > 0; i--) |
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{ |
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USADA8(pu1_src, pu1_ref1, pi4_sad[0]); |
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USADA8(pu1_src, pu1_ref2, pi4_sad[1]); |
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USADA8(pu1_src, pu1_ref3, pi4_sad[2]); |
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pu1_src += 4; |
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pu1_ref1 += 4; |
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pu1_ref2 += 4; |
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pu1_ref3 += 4; |
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USADA8(pu1_src, pu1_ref1, pi4_sad[0]); |
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USADA8(pu1_src, pu1_ref2, pi4_sad[1]); |
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USADA8(pu1_src, pu1_ref3, pi4_sad[2]); |
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pu1_src += 4; |
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pu1_ref1 += 4; |
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pu1_ref2 += 4; |
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pu1_ref3 += 4; |
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USADA8(pu1_src, pu1_ref1, pi4_sad[0]); |
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USADA8(pu1_src, pu1_ref2, pi4_sad[1]); |
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USADA8(pu1_src, pu1_ref3, pi4_sad[2]); |
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pu1_src += 4; |
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pu1_ref1 += 4; |
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pu1_ref2 += 4; |
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pu1_ref3 += 4; |
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USADA8(pu1_src, pu1_ref1, pi4_sad[0]); |
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USADA8(pu1_src, pu1_ref2, pi4_sad[1]); |
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USADA8(pu1_src, pu1_ref3, pi4_sad[2]); |
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pu1_src += 4; |
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pu1_ref1 += 4; |
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pu1_ref2 += 4; |
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pu1_ref3 += 4; |
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pu1_src += u4_cur_buf_offset; |
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pu1_ref1 += u4_ref_buf_offset; |
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pu1_ref2 += u4_ref_buf_offset; |
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pu1_ref3 += u4_ref_buf_offset; |
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} |
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} |
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/** |
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******************************************************************************* |
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* |
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* @brief compute sad |
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* |
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* @par Description: This function computes the sad at vertices of diamond grid |
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* centered at reference pointer and at unit distance from it. |
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* |
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* @param[in] pu1_ref1, pu1_ref2 |
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* UWORD8 pointer to the reference |
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* |
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* @param[out] pu1_src |
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* UWORD8 pointer to the source |
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* |
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* @param[in] ref_strd |
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* integer reference stride |
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* |
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* @param[in] src_strd |
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* integer source stride |
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* |
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* @param[out] pi4_sad |
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* pointer to integer array evaluated sad |
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* |
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* @returns sad at all evaluated vertexes |
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* |
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* @remarks none |
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* |
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******************************************************************************* |
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*/ |
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void ime_calculate_sad2_prog(UWORD8 *pu1_ref1, |
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UWORD8 *pu1_ref2, |
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UWORD8 *pu1_src, |
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WORD32 ref_strd, |
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WORD32 src_strd, |
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WORD32 *pi4_sad) |
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{ |
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/* temp var */ |
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WORD32 i; |
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UWORD32 u4_ref_buf_offset = ref_strd - MB_SIZE; |
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UWORD32 u4_cur_buf_offset = src_strd - MB_SIZE; |
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for(i = 16; i > 0; i--) |
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{ |
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USADA8(pu1_src, pu1_ref1, pi4_sad[0]); |
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USADA8(pu1_src, pu1_ref2, pi4_sad[1]); |
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pu1_src += 4; |
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pu1_ref1 += 4; |
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pu1_ref2 += 4; |
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USADA8(pu1_src, pu1_ref1, pi4_sad[0]); |
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USADA8(pu1_src, pu1_ref2, pi4_sad[1]); |
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pu1_src += 4; |
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pu1_ref1 += 4; |
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pu1_ref2 += 4; |
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USADA8(pu1_src, pu1_ref1, pi4_sad[0]); |
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USADA8(pu1_src, pu1_ref2, pi4_sad[1]); |
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pu1_src += 4; |
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pu1_ref1 += 4; |
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pu1_ref2 += 4; |
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USADA8(pu1_src, pu1_ref1, pi4_sad[0]); |
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USADA8(pu1_src, pu1_ref2, pi4_sad[1]); |
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pu1_src += 4; |
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pu1_ref1 += 4; |
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pu1_ref2 += 4; |
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pu1_src += u4_cur_buf_offset; |
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pu1_ref1 += u4_ref_buf_offset; |
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pu1_ref2 += u4_ref_buf_offset; |
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} |
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} |
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/** |
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****************************************************************************** |
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* |
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* @brief computes distortion (SAD) between 2 16x16 blocks |
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* |
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* @par Description |
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* This functions computes SAD between 2 16x16 blocks. There is a provision |
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* for early exit if the up-to computed SAD exceeds maximum allowed SAD. To |
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* compute the distortion of the entire block set u4_max_sad to USHRT_MAX. |
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* |
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* @param[in] pu1_src |
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* UWORD8 pointer to the source |
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* |
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* @param[out] pu1_dst |
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* UWORD8 pointer to the destination |
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* |
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* @param[in] src_strd |
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* integer source stride |
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* |
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* @param[in] dst_strd |
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* integer destination stride |
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* |
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* @param[in] i4_max_sad |
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* integer maximum allowed distortion |
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* |
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* @param[out] pi4_mb_distortion |
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* integer evaluated sad |
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* |
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* @remarks |
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* |
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****************************************************************************** |
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*/ |
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void ime_compute_sad_16x16(UWORD8 *pu1_src, |
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UWORD8 *pu1_est, |
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WORD32 src_strd, |
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WORD32 est_strd, |
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WORD32 i4_max_sad, |
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WORD32 *pi4_mb_distortion) |
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{ |
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WORD32 i4_sad = 0; |
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UWORD32 u4_src_offset = src_strd - 16; |
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UWORD32 u4_est_offset = est_strd - 16; |
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UWORD32 i; |
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GATHER_16x16_SAD_EE_STATS(gu4_16x16_sad_ee_stats, 16); |
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for(i = 16; i > 0; i--) |
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{ |
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USADA8(pu1_src, pu1_est, i4_sad); |
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pu1_src += 4; |
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pu1_est += 4; |
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USADA8(pu1_src, pu1_est, i4_sad); |
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pu1_src += 4; |
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pu1_est += 4; |
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USADA8(pu1_src, pu1_est, i4_sad); |
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pu1_src += 4; |
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pu1_est += 4; |
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USADA8(pu1_src, pu1_est, i4_sad); |
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pu1_src += 4; |
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pu1_est += 4; |
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/* early exit */ |
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if(i4_max_sad < i4_sad) |
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{ |
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GATHER_16x16_SAD_EE_STATS(gu4_16x16_sad_ee_stats, 16-i); |
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*pi4_mb_distortion = i4_sad; |
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return ; |
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} |
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pu1_src += u4_src_offset; |
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pu1_est += u4_est_offset; |
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} |
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*pi4_mb_distortion = i4_sad; |
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return ; |
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} |
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|
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/** |
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****************************************************************************** |
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* |
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* @brief computes distortion (SAD) between 2 16x16 blocks (fast mode) |
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* |
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* @par Description |
|
* This functions computes SAD between 2 16x16 blocks. There is a provision |
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* for early exit if the up-to computed SAD exceeds maximum allowed SAD. To |
|
* compute the distortion of the entire block set u4_max_sad to USHRT_MAX. |
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* |
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* @param[in] pu1_src |
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* UWORD8 pointer to the source |
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* |
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* @param[out] pu1_dst |
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* UWORD8 pointer to the destination |
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* |
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* @param[in] src_strd |
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* integer source stride |
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* |
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* @param[in] dst_strd |
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* integer destination stride |
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* |
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* @param[in] i4_max_sad |
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* integer maximum allowed distortion |
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* |
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* @param[out] pi4_mb_distortion |
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* integer evaluated sad |
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* |
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* @remarks |
|
* |
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****************************************************************************** |
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*/ |
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void ime_compute_sad_16x16_fast(UWORD8 *pu1_src, |
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UWORD8 *pu1_est, |
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WORD32 src_strd, |
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WORD32 est_strd, |
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WORD32 i4_max_sad, |
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WORD32 *pi4_mb_distortion) |
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{ |
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|
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WORD32 i4_sad = 0; |
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UWORD32 u4_src_offset = 2 * src_strd - 16; |
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UWORD32 u4_est_offset = 2 * est_strd - 16; |
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UWORD32 i; |
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UNUSED(i4_max_sad); |
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for(i = 16; i > 0; i-= 2) |
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{ |
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USADA8(pu1_src, pu1_est, i4_sad); |
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pu1_src += 4; |
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pu1_est += 4; |
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USADA8(pu1_src, pu1_est, i4_sad); |
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pu1_src += 4; |
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pu1_est += 4; |
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USADA8(pu1_src, pu1_est, i4_sad); |
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pu1_src += 4; |
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pu1_est += 4; |
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USADA8(pu1_src, pu1_est, i4_sad); |
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pu1_src += 4; |
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pu1_est += 4; |
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pu1_src += u4_src_offset; |
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pu1_est += u4_est_offset; |
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} |
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*pi4_mb_distortion = (i4_sad << 1); |
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return ; |
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} |
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|
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/** |
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****************************************************************************** |
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* |
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* @brief computes distortion (SAD) between 2 8x8 blocks |
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* |
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* @par Description |
|
* This functions computes SAD between 2 8x8 blocks. There is a provision |
|
* for early exit if the up-to computed SAD exceeds maximum allowed SAD. To |
|
* compute the distortion of the entire block set u4_max_sad to USHRT_MAX. |
|
* |
|
* @param[in] pu1_src |
|
* UWORD8 pointer to the source |
|
* |
|
* @param[out] pu1_dst |
|
* UWORD8 pointer to the destination |
|
* |
|
* @param[in] src_strd |
|
* integer source stride |
|
* |
|
* @param[in] dst_strd |
|
* integer destination stride |
|
* |
|
* @param[in] u4_max_sad |
|
* integer maximum allowed distortion |
|
* |
|
* @param[out] i4_sad |
|
* integer evaluated sad |
|
* |
|
* @remarks |
|
* |
|
****************************************************************************** |
|
*/ |
|
|
|
void ime_compute_sad_8x8(UWORD8 *pu1_src, |
|
UWORD8 *pu1_est, |
|
WORD32 src_strd, |
|
WORD32 est_strd, |
|
WORD32 i4_max_sad, |
|
WORD32 *pi4_mb_distortion) |
|
{ |
|
WORD32 i4_sad = 0; |
|
UWORD32 u4_src_offset = src_strd - 8; |
|
UWORD32 u4_est_offset = est_strd - 8; |
|
UWORD32 i, j; |
|
WORD16 temp; |
|
|
|
for(i = 8; i > 0; i--) |
|
{ |
|
for(j = 8; j > 0; j--) |
|
{ |
|
/* SAD */ |
|
temp = *pu1_src++ - *pu1_est++; |
|
i4_sad += ABS(temp); |
|
} |
|
/* early exit */ |
|
if(i4_max_sad < i4_sad) |
|
{ |
|
*pi4_mb_distortion = i4_sad; |
|
return; |
|
} |
|
pu1_src += u4_src_offset; |
|
pu1_est += u4_est_offset; |
|
} |
|
*pi4_mb_distortion = i4_sad; |
|
} |
|
|
|
/** |
|
****************************************************************************** |
|
* |
|
* @brief computes distortion (SAD) between 2 4x4 blocks |
|
* |
|
* @par Description |
|
* This functions computes SAD between 2 4x4 blocks. There is a provision |
|
* for early exit if the up-to computed SAD exceeds maximum allowed SAD. To |
|
* compute the distortion of the entire block set u4_max_sad to USHRT_MAX. |
|
* |
|
* @param[in] pu1_src |
|
* UWORD8 pointer to the source |
|
* |
|
* @param[out] pu1_dst |
|
* UWORD8 pointer to the destination |
|
* |
|
* @param[in] src_strd |
|
* integer source stride |
|
* |
|
* @param[in] dst_strd |
|
* integer destination stride |
|
* |
|
* @param[in] u4_max_sad |
|
* integer maximum allowed distortion |
|
* |
|
* @param[out] pi4_mb_distortion |
|
* integer evaluated sad |
|
* |
|
* @remarks |
|
* |
|
****************************************************************************** |
|
*/ |
|
void ime_compute_sad_4x4 |
|
( |
|
UWORD8 *pu1_src, |
|
UWORD8 *pu1_est, |
|
WORD32 src_strd, |
|
WORD32 est_strd, |
|
WORD32 i4_max_sad, |
|
WORD32 *pi4_mb_distortion |
|
) |
|
{ |
|
WORD32 i4_sad = 0; |
|
|
|
UNUSED(i4_max_sad); |
|
|
|
USADA8(pu1_src, pu1_est, i4_sad); |
|
pu1_src += src_strd; |
|
pu1_est += est_strd; |
|
|
|
USADA8(pu1_src, pu1_est, i4_sad); |
|
pu1_src += src_strd; |
|
pu1_est += est_strd; |
|
|
|
USADA8(pu1_src, pu1_est, i4_sad); |
|
pu1_src += src_strd; |
|
pu1_est += est_strd; |
|
|
|
USADA8(pu1_src, pu1_est, i4_sad); |
|
*pi4_mb_distortion = i4_sad; |
|
} |
|
|
|
|
|
/** |
|
****************************************************************************** |
|
* |
|
* @brief computes distortion (SAD) between 2 16x8 blocks |
|
* |
|
* |
|
* @par Description |
|
* This functions computes SAD between 2 16x8 blocks. There is a provision |
|
* for early exit if the up-to computed SAD exceeds maximum allowed SAD. To |
|
* compute the distortion of the entire block set u4_max_sad to USHRT_MAX. |
|
* |
|
* @param[in] pu1_src |
|
* UWORD8 pointer to the source |
|
* |
|
* @param[out] pu1_dst |
|
* UWORD8 pointer to the destination |
|
* |
|
* @param[in] src_strd |
|
* integer source stride |
|
* |
|
* @param[in] dst_strd |
|
* integer destination stride |
|
* |
|
* @param[in] u4_max_sad |
|
* integer maximum allowed distortion |
|
* |
|
* @param[out] pi4_mb_distortion |
|
* integer evaluated sad |
|
* |
|
* @remarks |
|
* |
|
****************************************************************************** |
|
*/ |
|
void ime_compute_sad_16x8 |
|
( |
|
UWORD8 *pu1_src, |
|
UWORD8 *pu1_est, |
|
WORD32 src_strd, |
|
WORD32 est_strd, |
|
WORD32 i4_max_sad, |
|
WORD32 *pi4_mb_distortion |
|
) |
|
{ |
|
WORD32 i4_sad = 0; |
|
UWORD32 u4_src_offset = src_strd - 16; |
|
UWORD32 u4_est_offset = est_strd - 16; |
|
UWORD32 i, j; |
|
WORD16 temp; |
|
|
|
GATHER_16x8_SAD_EE_STATS(gu4_16x8_sad_ee_stats, 8); |
|
|
|
for(i = 8; i > 0; i--) |
|
{ |
|
for(j = 16; j > 0; j--) |
|
{ |
|
/* SAD */ |
|
temp = *pu1_src++ - *pu1_est++; |
|
i4_sad += ABS(temp); |
|
} |
|
/* early exit */ |
|
if(i4_max_sad < i4_sad) |
|
{ |
|
|
|
GATHER_16x8_SAD_EE_STATS(gu4_16x8_sad_ee_stats, 8-i); |
|
|
|
*pi4_mb_distortion = i4_sad; |
|
|
|
return; |
|
} |
|
pu1_src += u4_src_offset; |
|
pu1_est += u4_est_offset; |
|
} |
|
|
|
*pi4_mb_distortion = i4_sad; |
|
return; |
|
|
|
} |
|
|
|
/** |
|
****************************************************************************** |
|
* |
|
* @brief computes distortion (SAD) between 2 16x16 blocks |
|
* |
|
* @par Description |
|
* This functions computes SAD between 2 16x16 blocks. There is a provision |
|
* for early exit if the up-to computed SAD exceeds maximum allowed SAD. To |
|
* compute the distortion of the entire block set u4_max_sad to USHRT_MAX. |
|
* |
|
* @param[in] pu1_src |
|
* UWORD8 pointer to the source |
|
* |
|
* @param[out] pu1_dst |
|
* UWORD8 pointer to the destination |
|
* |
|
* @param[in] src_strd |
|
* integer source stride |
|
* |
|
* @param[in] dst_strd |
|
* integer destination stride |
|
* |
|
* @param[in] i4_max_sad |
|
* integer maximum allowed distortion |
|
* |
|
* @param[out] pi4_mb_distortion |
|
* integer evaluated sad |
|
* |
|
* @remarks |
|
* |
|
****************************************************************************** |
|
*/ |
|
void ime_compute_sad_16x16_ea8(UWORD8 *pu1_src, |
|
UWORD8 *pu1_est, |
|
WORD32 src_strd, |
|
WORD32 est_strd, |
|
WORD32 i4_max_sad, |
|
WORD32 *pi4_mb_distortion) |
|
{ |
|
WORD32 i4_sad = 0; |
|
UWORD32 u4_src_offset = src_strd - 16; |
|
UWORD32 u4_est_offset = est_strd - 16; |
|
UWORD32 i, j; |
|
WORD16 temp; |
|
UWORD8 *pu1_src_temp = pu1_src + src_strd; |
|
UWORD8 *pu1_est_temp = pu1_est + est_strd; |
|
|
|
for(i = 16; i > 0; i -= 2) |
|
{ |
|
for(j = 16; j > 0; j--) |
|
{ |
|
/* SAD */ |
|
temp = *pu1_src++ - *pu1_est++; |
|
i4_sad += ABS(temp); |
|
} |
|
|
|
pu1_src += (u4_src_offset + src_strd); |
|
pu1_est += (u4_est_offset + est_strd); |
|
|
|
} |
|
|
|
/* early exit */ |
|
if(i4_max_sad < i4_sad) |
|
{ |
|
*pi4_mb_distortion = i4_sad; |
|
return; |
|
} |
|
|
|
pu1_src = pu1_src_temp; |
|
pu1_est = pu1_est_temp; |
|
|
|
for(i = 16; i > 0; i -= 2) |
|
{ |
|
for(j = 16; j > 0; j--) |
|
{ |
|
/* SAD */ |
|
temp = *pu1_src++ - *pu1_est++; |
|
i4_sad += ABS(temp); |
|
} |
|
|
|
pu1_src += u4_src_offset + src_strd; |
|
pu1_est += u4_est_offset + est_strd; |
|
} |
|
|
|
*pi4_mb_distortion = i4_sad; |
|
return; |
|
} |
|
|
|
|
|
/** |
|
******************************************************************************* |
|
* |
|
* @brief This function computes SAD between two 16x16 blocks |
|
* It also computes if the block will be zero after H264 transform and quant for |
|
* Intra 16x16 blocks |
|
* |
|
* @param[in] pu1_src |
|
* UWORD8 pointer to the source |
|
* |
|
* @param[out] pu1_dst |
|
* UWORD8 pointer to the destination |
|
* |
|
* @param[in] src_strd |
|
* integer source stride |
|
* |
|
* @param[in] dst_strd |
|
* integer destination stride |
|
* |
|
* @param[in] pu2_thrsh |
|
* Threshold for each element of transofrmed quantized block |
|
* |
|
* @param[out] pi4_mb_distortion |
|
* integer evaluated sad |
|
* |
|
* @param[out] pu4_is_zero |
|
* Poitner to store if the block is zero after transform and quantization |
|
* |
|
* @remarks |
|
* |
|
****************************************************************************** |
|
*/ |
|
void ime_compute_satqd_16x16_lumainter(UWORD8 *pu1_src, |
|
UWORD8 *pu1_est, |
|
WORD32 src_strd, |
|
WORD32 est_strd, |
|
UWORD16 *pu2_thrsh, |
|
WORD32 *pi4_mb_distortion, |
|
UWORD32 *pu4_is_non_zero) |
|
{ |
|
UWORD32 i,j; |
|
WORD16 s1,s2,s3,s4,sad_1,sad_2,ls1,ls2,ls3,ls4,ls5,ls6,ls7,ls8; |
|
UWORD8 *pu1_src_lp,*pu1_est_lp; |
|
UWORD32 sad = 0; |
|
|
|
(*pi4_mb_distortion) = 0; |
|
for(i=0;i<4;i++) |
|
{ |
|
for(j=0;j<4;j++) |
|
{ |
|
pu1_src_lp = pu1_src + 4*j; |
|
pu1_est_lp = pu1_est + 4*j; |
|
|
|
s1 = ABS((WORD16)pu1_src_lp[0] - (WORD16)pu1_est_lp[0])+ ABS((WORD16)pu1_src_lp[3] - (WORD16)pu1_est_lp[3]); |
|
s4 = ABS((WORD16)pu1_src_lp[1] - (WORD16)pu1_est_lp[1])+ ABS((WORD16)pu1_src_lp[2] - (WORD16)pu1_est_lp[2]); |
|
|
|
pu1_src_lp += src_strd; |
|
pu1_est_lp += est_strd; |
|
|
|
s2 = ABS((WORD16)pu1_src_lp[0] - (WORD16)pu1_est_lp[0])+ ABS((WORD16)pu1_src_lp[3] - (WORD16)pu1_est_lp[3]); |
|
s3 = ABS((WORD16)pu1_src_lp[1] - (WORD16)pu1_est_lp[1])+ ABS((WORD16)pu1_src_lp[2] - (WORD16)pu1_est_lp[2]); |
|
|
|
pu1_src_lp += src_strd; |
|
pu1_est_lp += est_strd; |
|
|
|
s2 += ABS((WORD16)pu1_src_lp[0] - (WORD16)pu1_est_lp[0])+ ABS((WORD16)pu1_src_lp[3] - (WORD16)pu1_est_lp[3]); |
|
s3 += ABS((WORD16)pu1_src_lp[1] - (WORD16)pu1_est_lp[1])+ ABS((WORD16)pu1_src_lp[2] - (WORD16)pu1_est_lp[2]); |
|
|
|
pu1_src_lp += src_strd; |
|
pu1_est_lp += est_strd; |
|
|
|
s1 += ABS((WORD16)pu1_src_lp[0] - (WORD16)pu1_est_lp[0])+ ABS((WORD16)pu1_src_lp[3] - (WORD16)pu1_est_lp[3]); |
|
s4 += ABS((WORD16)pu1_src_lp[1] - (WORD16)pu1_est_lp[1])+ ABS((WORD16)pu1_src_lp[2] - (WORD16)pu1_est_lp[2]); |
|
|
|
sad_1 = s1+s2+s3+s4; |
|
|
|
if(sad == 0) |
|
{ |
|
sad_2 = sad_1<<1; |
|
|
|
ls1 = sad_2 -(s2 + s3); |
|
ls2 = sad_2 -(s1 + s4); |
|
ls3 = sad_2 -(s3 + s4); |
|
ls4 = sad_2 -(s3 - (s1<<1)); |
|
ls5 = sad_2 -(s4 - (s2<<1)); |
|
ls6 = sad_2 -(s1 + s2); |
|
ls7 = sad_2 -(s2 - (s4<<1)); |
|
ls8 = sad_2 -(s1 - (s3<<1)); |
|
|
|
if( |
|
pu2_thrsh[8] <= sad_1 || |
|
pu2_thrsh[0] <= ls2 || |
|
pu2_thrsh[1] <= ls1 || |
|
pu2_thrsh[2] <= ls8 || |
|
pu2_thrsh[3] <= ls5 || |
|
|
|
pu2_thrsh[4] <= ls6 || |
|
pu2_thrsh[5] <= ls3 || |
|
pu2_thrsh[6] <= ls7 || |
|
pu2_thrsh[7] <= ls4 |
|
|
|
)sad = 1; |
|
} |
|
(*pi4_mb_distortion) += sad_1; |
|
} |
|
pu1_src += (src_strd *4); |
|
pu1_est += (est_strd *4); |
|
} |
|
*pu4_is_non_zero = sad; |
|
} |
|
|
|
|
|
/** |
|
****************************************************************************** |
|
* |
|
* @brief computes distortion (SAD and SAQTD) between 2 16x8 (interleaved) chroma blocks |
|
* |
|
* |
|
* @par Description |
|
* This functions computes SAD between2 16x8 chroma blocks(interleaved) |
|
* It also checks if the SATDD(Sum of absolute transformed wuqntized differnce beteern the blocks |
|
* If SAQTD is zero, it gives back zero |
|
* Other wise sad is retrned |
|
* There is no provison for early exit |
|
* |
|
* The transform done here is the transform for chroma blocks in H264 |
|
* |
|
* @param[in] pu1_src |
|
* UWORD8 pointer to the source |
|
* |
|
* @param[out] pu1_dst |
|
* UWORD8 pointer to the destination |
|
* |
|
* @param[in] src_strd |
|
* integer source stride |
|
* |
|
* @param[in] dst_strd |
|
* integer destination stride |
|
* |
|
* @param[in] pu2_thrsh |
|
* Threshold for each element of transofrmed quantized block |
|
* |
|
* @param[out] pi4_mb_distortion |
|
* integer evaluated sad |
|
* |
|
* @remarks |
|
* Fucntion code is nit updated. |
|
* Will require debugging and minor modifications |
|
* |
|
****************************************************************************** |
|
*/ |
|
void ime_compute_satqd_8x16_chroma(UWORD8 *pu1_src, |
|
UWORD8 *pu1_est, |
|
WORD32 src_strd, |
|
WORD32 est_strd, |
|
WORD32 max_sad, |
|
UWORD16 *thrsh) |
|
{ |
|
WORD32 i,j,plane; |
|
WORD16 s1,s2,s3,s4,sad_1,sad_2,ls1,ls2,ls3,ls4,ls5,ls6,ls7,ls8; |
|
UWORD8 *pu1_src_lp,*pu1_est_lp,*pu1_src_plane,*pu1_est_plane; |
|
WORD32 sad =0; |
|
UNUSED(max_sad); |
|
|
|
pu1_src_plane = pu1_src; |
|
pu1_est_plane = pu1_est; |
|
|
|
for(plane =0;plane<2;plane++) |
|
{ |
|
for(i=0;i<4;i++) |
|
{ |
|
for(j=0;j<4;j++) |
|
{ |
|
pu1_src_lp = pu1_src + 8*j; |
|
pu1_est_lp = pu1_est + 8*j; |
|
|
|
s1 = ABS((WORD16)pu1_src_lp[0] - (WORD16)pu1_est_lp[0])+ ABS((WORD16)pu1_src_lp[6] - (WORD16)pu1_est_lp[6]); |
|
s4 = ABS((WORD16)pu1_src_lp[2] - (WORD16)pu1_est_lp[2])+ ABS((WORD16)pu1_src_lp[4] - (WORD16)pu1_est_lp[4]); |
|
|
|
pu1_src_lp += src_strd; |
|
pu1_est_lp += est_strd; |
|
|
|
s2 = ABS((WORD16)pu1_src_lp[0] - (WORD16)pu1_est_lp[0])+ ABS((WORD16)pu1_src_lp[6] - (WORD16)pu1_est_lp[6]); |
|
s3 = ABS((WORD16)pu1_src_lp[2] - (WORD16)pu1_est_lp[2])+ ABS((WORD16)pu1_src_lp[4] - (WORD16)pu1_est_lp[4]); |
|
|
|
pu1_src_lp += src_strd; |
|
pu1_est_lp += est_strd; |
|
|
|
s2 += ABS((WORD16)pu1_src_lp[0] - (WORD16)pu1_est_lp[0])+ ABS((WORD16)pu1_src_lp[6] - (WORD16)pu1_est_lp[6]); |
|
s3 += ABS((WORD16)pu1_src_lp[2] - (WORD16)pu1_est_lp[2])+ ABS((WORD16)pu1_src_lp[4] - (WORD16)pu1_est_lp[4]); |
|
|
|
pu1_src_lp += src_strd; |
|
pu1_est_lp += est_strd; |
|
|
|
s1 += ABS((WORD16)pu1_src_lp[0] - (WORD16)pu1_est_lp[0])+ ABS((WORD16)pu1_src_lp[6] - (WORD16)pu1_est_lp[6]); |
|
s4 += ABS((WORD16)pu1_src_lp[2] - (WORD16)pu1_est_lp[2])+ ABS((WORD16)pu1_src_lp[4] - (WORD16)pu1_est_lp[4]); |
|
|
|
sad_1 = s1+s2+s3+s4; |
|
sad_2 = sad_1<<1; |
|
|
|
ls1 = sad_2 -(s2 + s3); |
|
ls2 = sad_2 -(s1 + s4); |
|
ls3 = sad_2 -(s3 + s4); |
|
ls4 = sad_2 -(s3 - (s1<<1)); |
|
ls5 = sad_2 -(s4 - (s2<<1)); |
|
ls6 = sad_2 -(s1 + s2); |
|
ls7 = sad_2 -(s2 - (s4<<1)); |
|
ls8 = sad_2 -(s1 - (s3<<1)); |
|
|
|
if( |
|
//thrsh[0] > sad_1 && Chroma Dc is checked later |
|
thrsh[1] > ls1 && |
|
thrsh[2] > sad_1 && |
|
thrsh[3] > ls2 && |
|
|
|
thrsh[4] > ls3 && |
|
thrsh[5] > ls4 && |
|
thrsh[6] > ls3 && |
|
thrsh[7] > ls5 && |
|
|
|
thrsh[8] > sad_1 && |
|
thrsh[9] > ls1 && |
|
thrsh[10]> sad_1 && |
|
thrsh[11]> ls2 && |
|
|
|
thrsh[12]> ls6 && |
|
thrsh[13]> ls7 && |
|
thrsh[14]> ls6 && |
|
thrsh[15]> ls8 |
|
) |
|
{ |
|
/*set current sad to be zero*/ |
|
} |
|
else |
|
return ; |
|
|
|
sad += sad_1; |
|
} |
|
pu1_src += (src_strd *4); |
|
pu1_est += (est_strd *4); |
|
} |
|
if(sad < (thrsh[0]<<1))sad = 0; |
|
else return ; |
|
|
|
pu1_src = pu1_src_plane+1; |
|
pu1_est = pu1_est_plane+1; |
|
} |
|
return ; |
|
} |
|
|
|
|
|
/** |
|
****************************************************************************** |
|
* |
|
* @brief computes distortion (SAD and SAQTD) between 2 16x16 blocks |
|
* |
|
* @par Description |
|
* This functions computes SAD between 2 16x16 blocks. |
|
* It also checks if the SATDD(Sum of absolute transformed wuqntized differnce beteern the blocks |
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* If SAQTD is zero, it gives back zero |
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* Other wise sad is retrned |
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* There is no provison for early exit |
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* |
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* The transform done here is the transform for inter 16x16 blocks in H264 |
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* |
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* @param[in] pu1_src |
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* UWORD8 pointer to the source |
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* |
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* @param[out] pu1_dst |
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* UWORD8 pointer to the destination |
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* |
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* @param[in] src_strd |
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* integer source stride |
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* |
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* @param[in] dst_strd |
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* integer destination stride |
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* |
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* @param[in] pu2_thrsh |
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* Threshold for each element of transofrmed quantized block |
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* |
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* @param[out] pi4_mb_distortion |
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* integer evaluated sad |
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* |
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* @remarks |
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* |
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****************************************************************************** |
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*/ |
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void ime_compute_satqd_16x16_lumaintra(UWORD8 *pu1_src, |
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UWORD8 *pu1_est, |
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WORD32 src_strd, |
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WORD32 est_strd, |
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WORD32 max_sad, |
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UWORD16 *thrsh, |
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WORD32 *pi4_mb_distortion, |
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UWORD8 *sig_nz_sad) |
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{ |
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UWORD32 i,j; |
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WORD16 s1[4],s2[4],s3[4],s4[4],sad[4]; |
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UWORD8 *pu1_src_lp,*pu1_est_lp; |
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UWORD8 *sig_sad_dc; |
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UWORD32 nz_sad_sig = 0; |
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UNUSED(max_sad); |
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*pi4_mb_distortion =0; |
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sig_sad_dc = sig_nz_sad; |
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sig_nz_sad++; |
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for(i=0;i<4;i++) |
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{ |
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for(j=0;j<4;j++) |
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{ |
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pu1_src_lp = pu1_src + 4*j; |
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pu1_est_lp = pu1_est + 4*j; |
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s1[j] = ABS((WORD16)pu1_src_lp[0] - (WORD16)pu1_est_lp[0])+ ABS((WORD16)pu1_src_lp[3] - (WORD16)pu1_est_lp[3]); |
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s4[j] = ABS((WORD16)pu1_src_lp[1] - (WORD16)pu1_est_lp[1])+ ABS((WORD16)pu1_src_lp[2] - (WORD16)pu1_est_lp[2]); |
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pu1_src_lp += src_strd; |
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pu1_est_lp += est_strd; |
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s2[j] = ABS((WORD16)pu1_src_lp[0] - (WORD16)pu1_est_lp[0])+ ABS((WORD16)pu1_src_lp[3] - (WORD16)pu1_est_lp[3]); |
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s3[j] = ABS((WORD16)pu1_src_lp[1] - (WORD16)pu1_est_lp[1])+ ABS((WORD16)pu1_src_lp[2] - (WORD16)pu1_est_lp[2]); |
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pu1_src_lp += src_strd; |
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pu1_est_lp += est_strd; |
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s2[j] += ABS((WORD16)pu1_src_lp[0] - (WORD16)pu1_est_lp[0])+ ABS((WORD16)pu1_src_lp[3] - (WORD16)pu1_est_lp[3]); |
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s3[j] += ABS((WORD16)pu1_src_lp[1] - (WORD16)pu1_est_lp[1])+ ABS((WORD16)pu1_src_lp[2] - (WORD16)pu1_est_lp[2]); |
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pu1_src_lp += src_strd; |
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pu1_est_lp += est_strd; |
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s1[j] += ABS((WORD16)pu1_src_lp[0] - (WORD16)pu1_est_lp[0])+ ABS((WORD16)pu1_src_lp[3] - (WORD16)pu1_est_lp[3]); |
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s4[j] += ABS((WORD16)pu1_src_lp[1] - (WORD16)pu1_est_lp[1])+ ABS((WORD16)pu1_src_lp[2] - (WORD16)pu1_est_lp[2]); |
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sad[j] = ((s1[j]+s2[j]+s3[j]+s4[j])<<1); |
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} |
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for(j=0;j<4;j++) |
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{ |
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if( |
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//thrsh[0] > (sad[j] >> 1) &&Dc goes in the other part |
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thrsh[1] > (sad[j] -(s2[j] + s3[j])) && |
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thrsh[2] > (sad[j]>>1) && |
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thrsh[3] > (sad[j] -(s1[j] + s4[j])) && |
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thrsh[4] > (sad[j] -(s3[j] + s4[j])) && |
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thrsh[5] > (sad[j] -(s3[j] - (s1[j]<<1))) && |
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thrsh[6] > (sad[j] -(s3[j] + s4[j])) && |
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thrsh[7] > (sad[j] -(s4[j] - (s2[j]<<1))) && |
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thrsh[8] > (sad[j]>>1) && |
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thrsh[9] > (sad[j] -(s2[j] + s3[j])) && |
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thrsh[10]> (sad[j]>>1) && |
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thrsh[11]> (sad[j] -(s1[j] + s4[j])) && |
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thrsh[12]> (sad[j] -(s1[j] + s2[j])) && |
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thrsh[13]> (sad[j] -(s2[j] - (s4[j]<<1))) && |
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thrsh[14]> (sad[j] -(s1[j] + s2[j])) && |
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thrsh[15]> (sad[j] -(s1[j] - (s3[j]<<1))) |
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) |
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{ |
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//sad[j] = 0; /*set current sad to be zero*/ |
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sig_nz_sad[j] = 0;/*Signal that the sad is zero*/ |
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} |
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else |
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{ |
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sig_nz_sad[j] = 1;/*signal that sad is non zero*/ |
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nz_sad_sig = 1; |
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} |
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(*pi4_mb_distortion) += (sad[j]>>1); |
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//if((*pi4_mb_distortion) >= max_sad)return; /*return or some thing*/ |
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} |
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sig_nz_sad += 4; |
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pu1_src += (src_strd *4); |
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pu1_est += (est_strd *4); |
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} |
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if((*pi4_mb_distortion) < thrsh[0]<<2) |
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{ |
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*sig_sad_dc = 0; |
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if(nz_sad_sig == 0)(*pi4_mb_distortion) = 0; |
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} |
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else *sig_sad_dc = 1; |
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} |
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