ipa: ipu3: Replace ipa::ipu3::algorithms::Ipu3AwbCell
The intel-ipu3.h public interface from the kernel does not define how to parse the statistics for a cell. This had to be identified by a process of reverse engineering, and later identifying the structures from [0] leading to our custom definition of struct Ipu3AwbCell. [0] https://chromium.googlesource.com/chromiumos/platform/arc-camera/+/refs/heads/master/hal/intel/include/ia_imaging/awb_public.h To improve the kernel interface, a proposal has been made to the linux-kernel [1] to incorporate the memory layout for each cell into the intel-ipu3 header directly. [1] https://lore.kernel.org/linux-media/20211005202019.253353-1-jeanmichel.hautbois@ideasonboard.com/ Update our local copy of the intel-ipu3.h to match the proposal and change the AGC and AWB algorithms to reference that structure directly, allowing us to remove the deprecated custom Ipu3AwbCell definition. Signed-off-by: Jean-Michel Hautbois <jeanmichel.hautbois@ideasonboard.com> Reviewed-by: Kieran Bingham <kieran.bingham@ideasonboard.com> Reviewed-by: Laurent Pinchart <laurent.pinchart@ideasonboard.com>
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4 changed files with 40 additions and 57 deletions
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@ -59,17 +59,39 @@ struct ipu3_uapi_grid_config {
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__u16 y_end;
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__u16 y_end;
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} __attribute__((packed));
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} __attribute__((packed));
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/**
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* struct ipu3_uapi_awb_set_item - Memory layout for each cell in AWB
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*
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* @Gr_avg: Green average for red lines in the cell.
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* @R_avg: Red average in the cell.
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* @B_avg: Blue average in the cell.
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* @Gb_avg: Green average for blue lines in the cell.
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* @sat_ratio: Percentage of pixels over a given threshold set in
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* ipu3_uapi_awb_config_s, coded from 0 to 255.
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* @padding0: Unused byte for padding.
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* @padding1: Unused byte for padding.
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* @padding2: Unused byte for padding.
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*/
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struct ipu3_uapi_awb_set_item {
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unsigned char Gr_avg;
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unsigned char R_avg;
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unsigned char B_avg;
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unsigned char Gb_avg;
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unsigned char sat_ratio;
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unsigned char padding0;
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unsigned char padding1;
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unsigned char padding2;
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} __attribute__((packed));
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/*
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/*
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* The grid based data is divided into "slices" called set, each slice of setX
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* The grid based data is divided into "slices" called set, each slice of setX
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* refers to ipu3_uapi_grid_config width * height_per_slice.
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* refers to ipu3_uapi_grid_config width * height_per_slice.
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*/
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*/
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#define IPU3_UAPI_AWB_MAX_SETS 60
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#define IPU3_UAPI_AWB_MAX_SETS 60
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/* Based on grid size 80 * 60 and cell size 16 x 16 */
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/* Based on grid size 80 * 60 and cell size 16 x 16 */
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#define IPU3_UAPI_AWB_SET_SIZE 1280
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#define IPU3_UAPI_AWB_SET_SIZE 160
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#define IPU3_UAPI_AWB_MD_ITEM_SIZE 8
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#define IPU3_UAPI_AWB_SPARE_FOR_BUBBLES \
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#define IPU3_UAPI_AWB_SPARE_FOR_BUBBLES \
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(IPU3_UAPI_MAX_BUBBLE_SIZE * IPU3_UAPI_MAX_STRIPES * \
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(IPU3_UAPI_MAX_BUBBLE_SIZE * IPU3_UAPI_MAX_STRIPES)
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IPU3_UAPI_AWB_MD_ITEM_SIZE)
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#define IPU3_UAPI_AWB_MAX_BUFFER_SIZE \
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#define IPU3_UAPI_AWB_MAX_BUFFER_SIZE \
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(IPU3_UAPI_AWB_MAX_SETS * \
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(IPU3_UAPI_AWB_MAX_SETS * \
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(IPU3_UAPI_AWB_SET_SIZE + IPU3_UAPI_AWB_SPARE_FOR_BUBBLES))
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(IPU3_UAPI_AWB_SET_SIZE + IPU3_UAPI_AWB_SPARE_FOR_BUBBLES))
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@ -82,7 +104,7 @@ struct ipu3_uapi_grid_config {
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* the average values for each color channel.
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* the average values for each color channel.
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*/
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*/
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struct ipu3_uapi_awb_raw_buffer {
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struct ipu3_uapi_awb_raw_buffer {
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__u8 meta_data[IPU3_UAPI_AWB_MAX_BUFFER_SIZE]
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struct ipu3_uapi_awb_set_item meta_data[IPU3_UAPI_AWB_MAX_BUFFER_SIZE]
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__attribute__((aligned(32)));
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__attribute__((aligned(32)));
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} __attribute__((packed));
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} __attribute__((packed));
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@ -6,7 +6,6 @@
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*/
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*/
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#include "agc.h"
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#include "agc.h"
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#include "awb.h"
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#include <algorithm>
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#include <algorithm>
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#include <chrono>
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#include <chrono>
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@ -73,17 +72,16 @@ void Agc::processBrightness(const ipu3_uapi_stats_3a *stats,
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for (unsigned int cellY = 0; cellY < grid.height; cellY++) {
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for (unsigned int cellY = 0; cellY < grid.height; cellY++) {
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for (unsigned int cellX = 0; cellX < grid.width; cellX++) {
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for (unsigned int cellX = 0; cellX < grid.width; cellX++) {
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uint32_t cellPosition = (cellY * stride_ + cellX)
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uint32_t cellPosition = cellY * stride_ + cellX;
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* sizeof(Ipu3AwbCell);
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const Ipu3AwbCell *cell =
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const ipu3_uapi_awb_set_item *cell =
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reinterpret_cast<const Ipu3AwbCell *>(
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reinterpret_cast<const ipu3_uapi_awb_set_item *>(
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&stats->awb_raw_buffer.meta_data[cellPosition]
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&stats->awb_raw_buffer.meta_data[cellPosition]
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);
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);
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if (cell->satRatio == 0) {
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if (cell->sat_ratio == 0) {
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uint8_t gr = cell->greenRedAvg;
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uint8_t gr = cell->Gr_avg;
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uint8_t gb = cell->greenBlueAvg;
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uint8_t gb = cell->Gb_avg;
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hist[(gr + gb) / 2]++;
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hist[(gr + gb) / 2]++;
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}
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}
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}
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}
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@ -108,32 +108,6 @@ static constexpr uint32_t kMinGreenLevelInZone = 32;
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* \brief Gain calculated for the blue channel
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* \brief Gain calculated for the blue channel
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*/
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*/
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/**
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* \struct Ipu3AwbCell
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* \brief Memory layout for each cell in AWB metadata
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*
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* The Ipu3AwbCell structure is used to get individual values
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* such as red average or saturation ratio in a particular cell.
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*
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* \var Ipu3AwbCell::greenRedAvg
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* \brief Green average for red lines in the cell
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*
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* \var Ipu3AwbCell::redAvg
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* \brief Red average in the cell
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*
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* \var Ipu3AwbCell::blueAvg
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* \brief blue average in the cell
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*
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* \var Ipu3AwbCell::greenBlueAvg
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* \brief Green average for blue lines
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*
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* \var Ipu3AwbCell::satRatio
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* \brief Saturation ratio in the cell
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*
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* \var Ipu3AwbCell::padding
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* \brief array of unused bytes for padding
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*/
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/* Default settings for Bayer noise reduction replicated from the Kernel */
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/* Default settings for Bayer noise reduction replicated from the Kernel */
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static const struct ipu3_uapi_bnr_static_config imguCssBnrDefaults = {
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static const struct ipu3_uapi_bnr_static_config imguCssBnrDefaults = {
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.wb_gains = { 16, 16, 16, 16 },
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.wb_gains = { 16, 16, 16, 16 },
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@ -247,25 +221,24 @@ void Awb::generateAwbStats(const ipu3_uapi_stats_3a *stats)
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*/
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*/
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for (unsigned int cellY = 0; cellY < kAwbStatsSizeY * cellsPerZoneY_; cellY++) {
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for (unsigned int cellY = 0; cellY < kAwbStatsSizeY * cellsPerZoneY_; cellY++) {
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for (unsigned int cellX = 0; cellX < kAwbStatsSizeX * cellsPerZoneX_; cellX++) {
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for (unsigned int cellX = 0; cellX < kAwbStatsSizeX * cellsPerZoneX_; cellX++) {
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uint32_t cellPosition = (cellY * stride_ + cellX)
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uint32_t cellPosition = cellY * stride_ + cellX;
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* sizeof(Ipu3AwbCell);
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uint32_t zoneX = cellX / cellsPerZoneX_;
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uint32_t zoneX = cellX / cellsPerZoneX_;
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uint32_t zoneY = cellY / cellsPerZoneY_;
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uint32_t zoneY = cellY / cellsPerZoneY_;
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uint32_t awbZonePosition = zoneY * kAwbStatsSizeX + zoneX;
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uint32_t awbZonePosition = zoneY * kAwbStatsSizeX + zoneX;
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/* Cast the initial IPU3 structure to simplify the reading */
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/* Cast the initial IPU3 structure to simplify the reading */
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const Ipu3AwbCell *currentCell =
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const ipu3_uapi_awb_set_item *currentCell =
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reinterpret_cast<const Ipu3AwbCell *>(
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reinterpret_cast<const ipu3_uapi_awb_set_item *>(
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&stats->awb_raw_buffer.meta_data[cellPosition]
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&stats->awb_raw_buffer.meta_data[cellPosition]
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);
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);
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if (currentCell->satRatio == 0) {
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if (currentCell->sat_ratio == 0) {
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/* The cell is not saturated, use the current cell */
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/* The cell is not saturated, use the current cell */
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awbStats_[awbZonePosition].counted++;
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awbStats_[awbZonePosition].counted++;
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uint32_t greenValue = currentCell->greenRedAvg + currentCell->greenBlueAvg;
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uint32_t greenValue = currentCell->Gr_avg + currentCell->Gb_avg;
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awbStats_[awbZonePosition].sum.green += greenValue / 2;
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awbStats_[awbZonePosition].sum.green += greenValue / 2;
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awbStats_[awbZonePosition].sum.red += currentCell->redAvg;
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awbStats_[awbZonePosition].sum.red += currentCell->R_avg;
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awbStats_[awbZonePosition].sum.blue += currentCell->blueAvg;
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awbStats_[awbZonePosition].sum.blue += currentCell->B_avg;
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}
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}
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}
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}
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}
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}
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@ -23,16 +23,6 @@ namespace ipa::ipu3::algorithms {
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static constexpr uint32_t kAwbStatsSizeX = 16;
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static constexpr uint32_t kAwbStatsSizeX = 16;
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static constexpr uint32_t kAwbStatsSizeY = 12;
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static constexpr uint32_t kAwbStatsSizeY = 12;
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/* \todo Move the cell layout into intel-ipu3.h kernel header */
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struct Ipu3AwbCell {
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unsigned char greenRedAvg;
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unsigned char redAvg;
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unsigned char blueAvg;
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unsigned char greenBlueAvg;
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unsigned char satRatio;
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unsigned char padding[3];
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} __attribute__((packed));
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struct Accumulator {
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struct Accumulator {
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unsigned int counted;
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unsigned int counted;
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struct {
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struct {
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