linux/drivers/staging/media/ipu3/include/intel-ipu3.h
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   1/* SPDX-License-Identifier: GPL-2.0 */
   2/* Copyright (C) 2017 - 2018 Intel Corporation */
   3
   4#ifndef __IPU3_UAPI_H
   5#define __IPU3_UAPI_H
   6
   7#include <linux/types.h>
   8
   9/* from /drivers/staging/media/ipu3/include/videodev2.h */
  10
  11/* Vendor specific - used for IPU3 camera sub-system */
  12#define V4L2_META_FMT_IPU3_PARAMS       v4l2_fourcc('i', 'p', '3', 'p') /* IPU3 processing parameters */
  13#define V4L2_META_FMT_IPU3_STAT_3A      v4l2_fourcc('i', 'p', '3', 's') /* IPU3 3A statistics */
  14
  15/* from include/uapi/linux/v4l2-controls.h */
  16#define V4L2_CID_INTEL_IPU3_BASE        (V4L2_CID_USER_BASE + 0x10c0)
  17#define V4L2_CID_INTEL_IPU3_MODE        (V4L2_CID_INTEL_IPU3_BASE + 1)
  18
  19/******************* ipu3_uapi_stats_3a *******************/
  20
  21#define IPU3_UAPI_MAX_STRIPES                           2
  22#define IPU3_UAPI_MAX_BUBBLE_SIZE                       10
  23
  24#define IPU3_UAPI_GRID_START_MASK                       ((1 << 12) - 1)
  25#define IPU3_UAPI_GRID_Y_START_EN                       (1 << 15)
  26
  27/* controls generation of meta_data (like FF enable/disable) */
  28#define IPU3_UAPI_AWB_RGBS_THR_B_EN                     (1 << 14)
  29#define IPU3_UAPI_AWB_RGBS_THR_B_INCL_SAT               (1 << 15)
  30
  31/**
  32 * struct ipu3_uapi_grid_config - Grid plane config
  33 *
  34 * @width:      Grid horizontal dimensions, in number of grid blocks(cells).
  35 * @height:     Grid vertical dimensions, in number of grid cells.
  36 * @block_width_log2:   Log2 of the width of each cell in pixels.
  37 *                      for (2^3, 2^4, 2^5, 2^6, 2^7), values [3, 7].
  38 * @block_height_log2:  Log2 of the height of each cell in pixels.
  39 *                      for (2^3, 2^4, 2^5, 2^6, 2^7), values [3, 7].
  40 * @height_per_slice:   The number of blocks in vertical axis per slice.
  41 *                      Default 2.
  42 * @x_start: X value of top left corner of Region of Interest(ROI).
  43 * @y_start: Y value of top left corner of ROI
  44 * @x_end: X value of bottom right corner of ROI
  45 * @y_end: Y value of bottom right corner of ROI
  46 *
  47 * Due to the size of total amount of collected data, most statistics
  48 * create a grid-based output, and the data is then divided into "slices".
  49 */
  50struct ipu3_uapi_grid_config {
  51        __u8 width;
  52        __u8 height;
  53        __u16 block_width_log2:3;
  54        __u16 block_height_log2:3;
  55        __u16 height_per_slice:8;
  56        __u16 x_start;
  57        __u16 y_start;
  58        __u16 x_end;
  59        __u16 y_end;
  60} __packed;
  61
  62/*
  63 * The grid based data is divided into "slices" called set, each slice of setX
  64 * refers to ipu3_uapi_grid_config width * height_per_slice.
  65 */
  66#define IPU3_UAPI_AWB_MAX_SETS                          60
  67/* Based on grid size 80 * 60 and cell size 16 x 16 */
  68#define IPU3_UAPI_AWB_SET_SIZE                          1280
  69#define IPU3_UAPI_AWB_MD_ITEM_SIZE                      8
  70#define IPU3_UAPI_AWB_SPARE_FOR_BUBBLES \
  71        (IPU3_UAPI_MAX_BUBBLE_SIZE * IPU3_UAPI_MAX_STRIPES * \
  72         IPU3_UAPI_AWB_MD_ITEM_SIZE)
  73#define IPU3_UAPI_AWB_MAX_BUFFER_SIZE \
  74        (IPU3_UAPI_AWB_MAX_SETS * \
  75         (IPU3_UAPI_AWB_SET_SIZE + IPU3_UAPI_AWB_SPARE_FOR_BUBBLES))
  76
  77
  78/**
  79 * struct ipu3_uapi_awb_raw_buffer - AWB raw buffer
  80 *
  81 * @meta_data: buffer to hold auto white balance meta data which is
  82 *              the average values for each color channel.
  83 */
  84struct ipu3_uapi_awb_raw_buffer {
  85        __u8 meta_data[IPU3_UAPI_AWB_MAX_BUFFER_SIZE]
  86                __attribute__((aligned(32)));
  87} __packed;
  88
  89/**
  90 * struct ipu3_uapi_awb_config_s - AWB config
  91 *
  92 * @rgbs_thr_gr: gr threshold value.
  93 * @rgbs_thr_r: Red threshold value.
  94 * @rgbs_thr_gb: gb threshold value.
  95 * @rgbs_thr_b: Blue threshold value.
  96 * @grid: &ipu3_uapi_grid_config, the default grid resolution is 16x16 cells.
  97 *
  98 * The threshold is a saturation measure range [0, 8191], 8191 is default.
  99 * Values over threshold may be optionally rejected for averaging.
 100 */
 101struct ipu3_uapi_awb_config_s {
 102        __u16 rgbs_thr_gr;
 103        __u16 rgbs_thr_r;
 104        __u16 rgbs_thr_gb;
 105        __u16 rgbs_thr_b;
 106        struct ipu3_uapi_grid_config grid;
 107} __attribute__((aligned(32))) __packed;
 108
 109/**
 110 * struct ipu3_uapi_awb_config - AWB config wrapper
 111 *
 112 * @config: config for auto white balance as defined by &ipu3_uapi_awb_config_s
 113 */
 114struct ipu3_uapi_awb_config {
 115        struct ipu3_uapi_awb_config_s config __attribute__((aligned(32)));
 116} __packed;
 117
 118#define IPU3_UAPI_AE_COLORS                             4       /* R, G, B, Y */
 119#define IPU3_UAPI_AE_BINS                               256
 120#define IPU3_UAPI_AE_WEIGHTS                            96
 121
 122/**
 123 + * struct ipu3_uapi_ae_raw_buffer - AE global weighted histogram
 124 + *
 125 + * @vals: Sum of IPU3_UAPI_AE_COLORS in cell
 126 + *
 127 + * Each histogram contains IPU3_UAPI_AE_BINS bins. Each bin has 24 bit unsigned
 128 + * for counting the number of the pixel.
 129 + */
 130struct ipu3_uapi_ae_raw_buffer {
 131        __u32 vals[IPU3_UAPI_AE_BINS * IPU3_UAPI_AE_COLORS];
 132} __packed;
 133
 134/**
 135 * struct ipu3_uapi_ae_raw_buffer_aligned - AE raw buffer
 136 *
 137 * @buff: &ipu3_uapi_ae_raw_buffer to hold full frame meta data.
 138 */
 139struct ipu3_uapi_ae_raw_buffer_aligned {
 140        struct ipu3_uapi_ae_raw_buffer buff __attribute__((aligned(32)));
 141} __packed;
 142
 143/**
 144 * struct ipu3_uapi_ae_grid_config - AE weight grid
 145 *
 146 * @width: Grid horizontal dimensions. Value: [16, 32], default 16.
 147 * @height: Grid vertical dimensions. Value: [16, 24], default 16.
 148 * @block_width_log2: Log2 of the width of the grid cell, value: [3, 7].
 149 * @block_height_log2: Log2 of the height of the grid cell, value: [3, 7].
 150 *                      default is 3 (cell size 8x8), 4 cell per grid.
 151 * @reserved0: reserved
 152 * @ae_en: 0: does not write to &ipu3_uapi_ae_raw_buffer_aligned array,
 153 *              1: write normally.
 154 * @rst_hist_array: write 1 to trigger histogram array reset.
 155 * @done_rst_hist_array: flag for histogram array reset done.
 156 * @x_start: X value of top left corner of ROI, default 0.
 157 * @y_start: Y value of top left corner of ROI, default 0.
 158 * @x_end: X value of bottom right corner of ROI
 159 * @y_end: Y value of bottom right corner of ROI
 160 *
 161 * The AE block accumulates 4 global weighted histograms(R, G, B, Y) over
 162 * a defined ROI within the frame. The contribution of each pixel into the
 163 * histogram, defined by &ipu3_uapi_ae_weight_elem LUT, is indexed by a grid.
 164 */
 165struct ipu3_uapi_ae_grid_config {
 166        __u8 width;
 167        __u8 height;
 168        __u8 block_width_log2:4;
 169        __u8 block_height_log2:4;
 170        __u8 reserved0:5;
 171        __u8 ae_en:1;
 172        __u8 rst_hist_array:1;
 173        __u8 done_rst_hist_array:1;
 174        __u16 x_start;
 175        __u16 y_start;
 176        __u16 x_end;
 177        __u16 y_end;
 178} __packed;
 179
 180/**
 181 * struct ipu3_uapi_ae_weight_elem - AE weights LUT
 182 *
 183 * @cell0: weighted histogram grid value.
 184 * @cell1: weighted histogram grid value.
 185 * @cell2: weighted histogram grid value.
 186 * @cell3: weighted histogram grid value.
 187 * @cell4: weighted histogram grid value.
 188 * @cell5: weighted histogram grid value.
 189 * @cell6: weighted histogram grid value.
 190 * @cell7: weighted histogram grid value.
 191 *
 192 * Use weighted grid value to give a different contribution factor to each cell.
 193 * Precision u4, range [0, 15].
 194 */
 195struct ipu3_uapi_ae_weight_elem {
 196        __u32 cell0:4;
 197        __u32 cell1:4;
 198        __u32 cell2:4;
 199        __u32 cell3:4;
 200        __u32 cell4:4;
 201        __u32 cell5:4;
 202        __u32 cell6:4;
 203        __u32 cell7:4;
 204} __packed;
 205
 206/**
 207 * struct ipu3_uapi_ae_ccm - AE coefficients for WB and CCM
 208 *
 209 * @gain_gr: WB gain factor for the gr channels. Default 256.
 210 * @gain_r: WB gain factor for the r channel. Default 256.
 211 * @gain_b: WB gain factor for the b channel. Default 256.
 212 * @gain_gb: WB gain factor for the gb channels. Default 256.
 213 * @mat: 4x4 matrix that transforms Bayer quad output from WB to RGB+Y.
 214 *
 215 * Default:
 216 *      128, 0, 0, 0,
 217 *      0, 128, 0, 0,
 218 *      0, 0, 128, 0,
 219 *      0, 0, 0, 128,
 220 *
 221 * As part of the raw frame pre-process stage, the WB and color conversion need
 222 * to be applied to expose the impact of these gain operations.
 223 */
 224struct ipu3_uapi_ae_ccm {
 225        __u16 gain_gr;
 226        __u16 gain_r;
 227        __u16 gain_b;
 228        __u16 gain_gb;
 229        __s16 mat[16];
 230} __packed;
 231
 232/**
 233 * struct ipu3_uapi_ae_config - AE config
 234 *
 235 * @grid_cfg:   config for auto exposure statistics grid. See struct
 236 *              &ipu3_uapi_ae_grid_config
 237 * @weights:    &IPU3_UAPI_AE_WEIGHTS is based on 32x24 blocks in the grid.
 238 *              Each grid cell has a corresponding value in weights LUT called
 239 *              grid value, global histogram is updated based on grid value and
 240 *              pixel value.
 241 * @ae_ccm:     Color convert matrix pre-processing block.
 242 *
 243 * Calculate AE grid from image resolution, resample ae weights.
 244 */
 245struct ipu3_uapi_ae_config {
 246        struct ipu3_uapi_ae_grid_config grid_cfg __attribute__((aligned(32)));
 247        struct ipu3_uapi_ae_weight_elem weights[
 248                        IPU3_UAPI_AE_WEIGHTS] __attribute__((aligned(32)));
 249        struct ipu3_uapi_ae_ccm ae_ccm __attribute__((aligned(32)));
 250} __packed;
 251
 252/**
 253 * struct ipu3_uapi_af_filter_config - AF 2D filter for contrast measurements
 254 *
 255 * @y1_coeff_0: filter Y1, structure: 3x11, support both symmetry and
 256 *              anti-symmetry type. A12 is center, A1-A11 are neighbours.
 257 *              for analyzing low frequency content, used to calculate sum
 258 *              of gradients in x direction.
 259 * @y1_coeff_0.a1:      filter1 coefficients A1, u8, default 0.
 260 * @y1_coeff_0.a2:      filter1 coefficients A2, u8, default 0.
 261 * @y1_coeff_0.a3:      filter1 coefficients A3, u8, default 0.
 262 * @y1_coeff_0.a4:      filter1 coefficients A4, u8, default 0.
 263 * @y1_coeff_1:         Struct
 264 * @y1_coeff_1.a5:      filter1 coefficients A5, u8, default 0.
 265 * @y1_coeff_1.a6:      filter1 coefficients A6, u8, default 0.
 266 * @y1_coeff_1.a7:      filter1 coefficients A7, u8, default 0.
 267 * @y1_coeff_1.a8:      filter1 coefficients A8, u8, default 0.
 268 * @y1_coeff_2:         Struct
 269 * @y1_coeff_2.a9:      filter1 coefficients A9, u8, default 0.
 270 * @y1_coeff_2.a10:     filter1 coefficients A10, u8, default 0.
 271 * @y1_coeff_2.a11:     filter1 coefficients A11, u8, default 0.
 272 * @y1_coeff_2.a12:     filter1 coefficients A12, u8, default 128.
 273 * @y1_sign_vec:        Each bit corresponds to one coefficient sign bit,
 274 *                      0: positive, 1: negative, default 0.
 275 * @y2_coeff_0: Y2, same structure as Y1. For analyzing high frequency content.
 276 * @y2_coeff_0.a1:      filter2 coefficients A1, u8, default 0.
 277 * @y2_coeff_0.a2:      filter2 coefficients A2, u8, default 0.
 278 * @y2_coeff_0.a3:      filter2 coefficients A3, u8, default 0.
 279 * @y2_coeff_0.a4:      filter2 coefficients A4, u8, default 0.
 280 * @y2_coeff_1: Struct
 281 * @y2_coeff_1.a5:      filter2 coefficients A5, u8, default 0.
 282 * @y2_coeff_1.a6:      filter2 coefficients A6, u8, default 0.
 283 * @y2_coeff_1.a7:      filter2 coefficients A7, u8, default 0.
 284 * @y2_coeff_1.a8:      filter2 coefficients A8, u8, default 0.
 285 * @y2_coeff_2: Struct
 286 * @y2_coeff_2.a9:      filter1 coefficients A9, u8, default 0.
 287 * @y2_coeff_2.a10:     filter1 coefficients A10, u8, default 0.
 288 * @y2_coeff_2.a11:     filter1 coefficients A11, u8, default 0.
 289 * @y2_coeff_2.a12:     filter1 coefficients A12, u8, default 128.
 290 * @y2_sign_vec:        Each bit corresponds to one coefficient sign bit,
 291 *                      0: positive, 1: negative, default 0.
 292 * @y_calc:     Pre-processing that converts Bayer quad to RGB+Y values to be
 293 *              used for building histogram. Range [0, 32], default 8.
 294 * Rule:
 295 *              y_gen_rate_gr + y_gen_rate_r + y_gen_rate_b + y_gen_rate_gb = 32
 296 *              A single Y is calculated based on sum of Gr/R/B/Gb based on
 297 *              their contribution ratio.
 298 * @y_calc.y_gen_rate_gr:       Contribution ratio Gr for Y
 299 * @y_calc.y_gen_rate_r:        Contribution ratio R for Y
 300 * @y_calc.y_gen_rate_b:        Contribution ratio B for Y
 301 * @y_calc.y_gen_rate_gb:       Contribution ratio Gb for Y
 302 * @nf: The shift right value that should be applied during the Y1/Y2 filter to
 303 *      make sure the total memory needed is 2 bytes per grid cell.
 304 * @nf.reserved0:       reserved
 305 * @nf.y1_nf:   Normalization factor for the convolution coeffs of y1,
 306 *              should be log2 of the sum of the abs values of the filter
 307 *              coeffs, default 7 (2^7 = 128).
 308 * @nf.reserved1:       reserved
 309 * @nf.y2_nf:   Normalization factor for y2, should be log2 of the sum of the
 310 *              abs values of the filter coeffs.
 311 * @nf.reserved2:       reserved
 312 */
 313struct ipu3_uapi_af_filter_config {
 314        struct {
 315                __u8 a1;
 316                __u8 a2;
 317                __u8 a3;
 318                __u8 a4;
 319        } y1_coeff_0;
 320        struct {
 321                __u8 a5;
 322                __u8 a6;
 323                __u8 a7;
 324                __u8 a8;
 325        } y1_coeff_1;
 326        struct {
 327                __u8 a9;
 328                __u8 a10;
 329                __u8 a11;
 330                __u8 a12;
 331        } y1_coeff_2;
 332
 333        __u32 y1_sign_vec;
 334
 335        struct {
 336                __u8 a1;
 337                __u8 a2;
 338                __u8 a3;
 339                __u8 a4;
 340        } y2_coeff_0;
 341        struct {
 342                __u8 a5;
 343                __u8 a6;
 344                __u8 a7;
 345                __u8 a8;
 346        } y2_coeff_1;
 347        struct {
 348                __u8 a9;
 349                __u8 a10;
 350                __u8 a11;
 351                __u8 a12;
 352        } y2_coeff_2;
 353
 354        __u32 y2_sign_vec;
 355
 356        struct {
 357                __u8 y_gen_rate_gr;
 358                __u8 y_gen_rate_r;
 359                __u8 y_gen_rate_b;
 360                __u8 y_gen_rate_gb;
 361        } y_calc;
 362
 363        struct {
 364                __u32 reserved0:8;
 365                __u32 y1_nf:4;
 366                __u32 reserved1:4;
 367                __u32 y2_nf:4;
 368                __u32 reserved2:12;
 369        } nf;
 370} __packed;
 371
 372#define IPU3_UAPI_AF_MAX_SETS                           24
 373#define IPU3_UAPI_AF_MD_ITEM_SIZE                       4
 374#define IPU3_UAPI_AF_SPARE_FOR_BUBBLES \
 375        (IPU3_UAPI_MAX_BUBBLE_SIZE * IPU3_UAPI_MAX_STRIPES * \
 376         IPU3_UAPI_AF_MD_ITEM_SIZE)
 377#define IPU3_UAPI_AF_Y_TABLE_SET_SIZE                   128
 378#define IPU3_UAPI_AF_Y_TABLE_MAX_SIZE \
 379        (IPU3_UAPI_AF_MAX_SETS * \
 380         (IPU3_UAPI_AF_Y_TABLE_SET_SIZE + IPU3_UAPI_AF_SPARE_FOR_BUBBLES) * \
 381         IPU3_UAPI_MAX_STRIPES)
 382
 383/**
 384 * struct ipu3_uapi_af_raw_buffer - AF meta data
 385 *
 386 * @y_table:    Each color component will be convolved separately with filter1
 387 *              and filter2 and the result will be summed out and averaged for
 388 *              each cell.
 389 */
 390struct ipu3_uapi_af_raw_buffer {
 391        __u8 y_table[IPU3_UAPI_AF_Y_TABLE_MAX_SIZE] __attribute__((aligned(32)));
 392} __packed;
 393
 394/**
 395 * struct ipu3_uapi_af_config_s - AF config
 396 *
 397 * @filter_config: AF uses Y1 and Y2 filters as configured in
 398 *                 &ipu3_uapi_af_filter_config
 399 * @padding: paddings
 400 * @grid_cfg: See &ipu3_uapi_grid_config, default resolution 16x16. Use large
 401 *            grid size for large image and vice versa.
 402 */
 403struct ipu3_uapi_af_config_s {
 404        struct ipu3_uapi_af_filter_config filter_config __attribute__((aligned(32)));
 405        __u8 padding[4];
 406        struct ipu3_uapi_grid_config grid_cfg __attribute__((aligned(32)));
 407} __packed;
 408
 409#define IPU3_UAPI_AWB_FR_MAX_SETS                       24
 410#define IPU3_UAPI_AWB_FR_MD_ITEM_SIZE                   8
 411#define IPU3_UAPI_AWB_FR_BAYER_TBL_SIZE                 256
 412#define IPU3_UAPI_AWB_FR_SPARE_FOR_BUBBLES \
 413        (IPU3_UAPI_MAX_BUBBLE_SIZE * IPU3_UAPI_MAX_STRIPES * \
 414         IPU3_UAPI_AWB_FR_MD_ITEM_SIZE)
 415#define IPU3_UAPI_AWB_FR_BAYER_TABLE_MAX_SIZE \
 416        (IPU3_UAPI_AWB_FR_MAX_SETS * \
 417        (IPU3_UAPI_AWB_FR_BAYER_TBL_SIZE + \
 418         IPU3_UAPI_AWB_FR_SPARE_FOR_BUBBLES) * IPU3_UAPI_MAX_STRIPES)
 419
 420/**
 421 * struct ipu3_uapi_awb_fr_meta_data - AWB filter response meta data
 422 *
 423 * @meta_data: Statistics output on the grid after convolving with 1D filter.
 424 */
 425struct ipu3_uapi_awb_fr_raw_buffer {
 426        __u8 meta_data[IPU3_UAPI_AWB_FR_BAYER_TABLE_MAX_SIZE]
 427                __attribute__((aligned(32)));
 428} __packed;
 429
 430/**
 431 * struct ipu3_uapi_awb_fr_config_s - AWB filter response config
 432 *
 433 * @grid_cfg:   grid config, default 16x16.
 434 * @bayer_coeff:        1D Filter 1x11 center symmetry/anti-symmetry.
 435 *                      coefficients defaults { 0, 0, 0, 0, 0, 128 }.
 436 *                      Applied on whole image for each Bayer channel separately
 437 *                      by a weighted sum of its 11x1 neighbors.
 438 * @reserved1:  reserved
 439 * @bayer_sign: sign of filter coefficients, default 0.
 440 * @bayer_nf:   normalization factor for the convolution coeffs, to make sure
 441 *              total memory needed is within pre-determined range.
 442 *              NF should be the log2 of the sum of the abs values of the
 443 *              filter coeffs, range [7, 14], default 7.
 444 * @reserved2:  reserved
 445 */
 446struct ipu3_uapi_awb_fr_config_s {
 447        struct ipu3_uapi_grid_config grid_cfg;
 448        __u8 bayer_coeff[6];
 449        __u16 reserved1;
 450        __u32 bayer_sign;
 451        __u8 bayer_nf;
 452        __u8 reserved2[7];
 453} __attribute__((aligned(32))) __packed;
 454
 455/**
 456 * struct ipu3_uapi_4a_config - 4A config
 457 *
 458 * @awb_config: &ipu3_uapi_awb_config_s, default resolution 16x16
 459 * @ae_grd_config: auto exposure statistics &ipu3_uapi_ae_grid_config
 460 * @padding: paddings
 461 * @af_config: auto focus config &ipu3_uapi_af_config_s
 462 * @awb_fr_config: &ipu3_uapi_awb_fr_config_s, default resolution 16x16
 463 */
 464struct ipu3_uapi_4a_config {
 465        struct ipu3_uapi_awb_config_s awb_config __attribute__((aligned(32)));
 466        struct ipu3_uapi_ae_grid_config ae_grd_config;
 467        __u8 padding[20];
 468        struct ipu3_uapi_af_config_s af_config;
 469        struct ipu3_uapi_awb_fr_config_s awb_fr_config;
 470} __packed;
 471
 472/**
 473 * struct ipu3_uapi_bubble_info - Bubble info for host side debugging
 474 *
 475 * @num_of_stripes: A single frame is divided into several parts called stripes
 476 *                  due to limitation on line buffer memory.
 477 *                  The separation between the stripes is vertical. Each such
 478 *                  stripe is processed as a single frame by the ISP pipe.
 479 * @padding: padding bytes.
 480 * @num_sets: number of sets.
 481 * @padding1: padding bytes.
 482 * @size_of_set: set size.
 483 * @padding2: padding bytes.
 484 * @bubble_size: is the amount of padding in the bubble expressed in "sets".
 485 * @padding3: padding bytes.
 486 */
 487struct ipu3_uapi_bubble_info {
 488        __u32 num_of_stripes __attribute__((aligned(32)));
 489        __u8 padding[28];
 490        __u32 num_sets;
 491        __u8 padding1[28];
 492        __u32 size_of_set;
 493        __u8 padding2[28];
 494        __u32 bubble_size;
 495        __u8 padding3[28];
 496} __packed;
 497
 498/*
 499 * struct ipu3_uapi_stats_3a_bubble_info_per_stripe
 500 */
 501struct ipu3_uapi_stats_3a_bubble_info_per_stripe {
 502        struct ipu3_uapi_bubble_info awb[IPU3_UAPI_MAX_STRIPES];
 503        struct ipu3_uapi_bubble_info af[IPU3_UAPI_MAX_STRIPES];
 504        struct ipu3_uapi_bubble_info awb_fr[IPU3_UAPI_MAX_STRIPES];
 505} __packed;
 506
 507/**
 508 * struct ipu3_uapi_ff_status - Enable bits for each 3A fixed function
 509 *
 510 * @awb_en: auto white balance enable
 511 * @padding: padding config
 512 * @ae_en: auto exposure enable
 513 * @padding1: padding config
 514 * @af_en: auto focus enable
 515 * @padding2: padding config
 516 * @awb_fr_en: awb filter response enable bit
 517 * @padding3: padding config
 518 */
 519struct ipu3_uapi_ff_status {
 520        __u32 awb_en __attribute__((aligned(32)));
 521        __u8 padding[28];
 522        __u32 ae_en;
 523        __u8 padding1[28];
 524        __u32 af_en;
 525        __u8 padding2[28];
 526        __u32 awb_fr_en;
 527        __u8 padding3[28];
 528} __packed;
 529
 530/**
 531 * struct ipu3_uapi_stats_3a - 3A statistics
 532 *
 533 * @awb_raw_buffer: auto white balance meta data &ipu3_uapi_awb_raw_buffer
 534 * @ae_raw_buffer: auto exposure raw data &ipu3_uapi_ae_raw_buffer_aligned
 535 * @af_raw_buffer: &ipu3_uapi_af_raw_buffer for auto focus meta data
 536 * @awb_fr_raw_buffer: value as specified by &ipu3_uapi_awb_fr_raw_buffer
 537 * @stats_4a_config: 4a statistics config as defined by &ipu3_uapi_4a_config.
 538 * @ae_join_buffers: 1 to use ae_raw_buffer.
 539 * @padding: padding config
 540 * @stats_3a_bubble_per_stripe: a &ipu3_uapi_stats_3a_bubble_info_per_stripe
 541 * @stats_3a_status: 3a statistics status set in &ipu3_uapi_ff_status
 542 */
 543struct ipu3_uapi_stats_3a {
 544        struct ipu3_uapi_awb_raw_buffer awb_raw_buffer;
 545        struct ipu3_uapi_ae_raw_buffer_aligned
 546                        ae_raw_buffer[IPU3_UAPI_MAX_STRIPES];
 547        struct ipu3_uapi_af_raw_buffer af_raw_buffer;
 548        struct ipu3_uapi_awb_fr_raw_buffer awb_fr_raw_buffer;
 549        struct ipu3_uapi_4a_config stats_4a_config;
 550        __u32 ae_join_buffers;
 551        __u8 padding[28];
 552        struct ipu3_uapi_stats_3a_bubble_info_per_stripe
 553                        stats_3a_bubble_per_stripe;
 554        struct ipu3_uapi_ff_status stats_3a_status;
 555} __packed;
 556
 557/******************* ipu3_uapi_acc_param *******************/
 558
 559#define IPU3_UAPI_ISP_VEC_ELEMS                         64
 560#define IPU3_UAPI_ISP_TNR3_VMEM_LEN                     9
 561
 562#define IPU3_UAPI_BNR_LUT_SIZE                          32
 563
 564/* number of elements in gamma correction LUT */
 565#define IPU3_UAPI_GAMMA_CORR_LUT_ENTRIES                256
 566
 567/* largest grid is 73x56, for grid_height_per_slice of 2, 73x2 = 146 */
 568#define IPU3_UAPI_SHD_MAX_CELLS_PER_SET                 146
 569#define IPU3_UAPI_SHD_MAX_CFG_SETS                      28
 570/* Normalization shift aka nf */
 571#define IPU3_UAPI_SHD_BLGR_NF_SHIFT                     13
 572#define IPU3_UAPI_SHD_BLGR_NF_MASK                      7
 573
 574#define IPU3_UAPI_YUVP2_TCC_MACC_TABLE_ELEMENTS         16
 575#define IPU3_UAPI_YUVP2_TCC_INV_Y_LUT_ELEMENTS          14
 576#define IPU3_UAPI_YUVP2_TCC_GAIN_PCWL_LUT_ELEMENTS      258
 577#define IPU3_UAPI_YUVP2_TCC_R_SQR_LUT_ELEMENTS          24
 578
 579#define IPU3_UAPI_ANR_LUT_SIZE                          26
 580#define IPU3_UAPI_ANR_PYRAMID_SIZE                      22
 581
 582#define IPU3_UAPI_LIN_LUT_SIZE                          64
 583
 584/* Bayer Noise Reduction related structs */
 585
 586/**
 587 * struct ipu3_uapi_bnr_static_config_wb_gains_config - White balance gains
 588 *
 589 * @gr: white balance gain for Gr channel.
 590 * @r:  white balance gain for R channel.
 591 * @b:  white balance gain for B channel.
 592 * @gb: white balance gain for Gb channel.
 593 *
 594 * Precision u3.13, range [0, 8). White balance correction is done by applying
 595 * a multiplicative gain to each color channels prior to BNR.
 596 */
 597struct ipu3_uapi_bnr_static_config_wb_gains_config {
 598        __u16 gr;
 599        __u16 r;
 600        __u16 b;
 601        __u16 gb;
 602} __packed;
 603
 604/**
 605 * struct ipu3_uapi_bnr_static_config_wb_gains_thr_config - Threshold config
 606 *
 607 * @gr: white balance threshold gain for Gr channel.
 608 * @r:  white balance threshold gain for R channel.
 609 * @b:  white balance threshold gain for B channel.
 610 * @gb: white balance threshold gain for Gb channel.
 611 *
 612 * Defines the threshold that specifies how different a defect pixel can be from
 613 * its neighbors.(used by dynamic defect pixel correction sub block)
 614 * Precision u4.4 range [0, 8].
 615 */
 616struct ipu3_uapi_bnr_static_config_wb_gains_thr_config {
 617        __u8 gr;
 618        __u8 r;
 619        __u8 b;
 620        __u8 gb;
 621} __packed;
 622
 623/**
 624 * struct ipu3_uapi_bnr_static_config_thr_coeffs_config - Noise model
 625 *                              coefficients that controls noise threshold
 626 *
 627 * @cf: Free coefficient for threshold calculation, range [0, 8191], default 0.
 628 * @reserved0:  reserved
 629 * @cg: Gain coefficient for threshold calculation, [0, 31], default 8.
 630 * @ci: Intensity coefficient for threshold calculation. range [0, 0x1f]
 631 *      default 6.
 632 *      format: u3.2 (3 most significant bits represent whole number,
 633 *      2 least significant bits represent the fractional part
 634 *      with each count representing 0.25)
 635 *      e.g. 6 in binary format is 00110, that translates to 1.5
 636 * @reserved1:  reserved
 637 * @r_nf:       Normalization shift value for r^2 calculation, range [12, 20]
 638 *              where r is a radius of pixel [row, col] from centor of sensor.
 639 *              default 14.
 640 *
 641 * Threshold used to distinguish between noise and details.
 642 */
 643struct ipu3_uapi_bnr_static_config_thr_coeffs_config {
 644        __u32 cf:13;
 645        __u32 reserved0:3;
 646        __u32 cg:5;
 647        __u32 ci:5;
 648        __u32 reserved1:1;
 649        __u32 r_nf:5;
 650} __packed;
 651
 652/**
 653 * struct ipu3_uapi_bnr_static_config_thr_ctrl_shd_config - Shading config
 654 *
 655 * @gr: Coefficient defines lens shading gain approximation for gr channel
 656 * @r:  Coefficient defines lens shading gain approximation for r channel
 657 * @b:  Coefficient defines lens shading gain approximation for b channel
 658 * @gb: Coefficient defines lens shading gain approximation for gb channel
 659 *
 660 * Parameters for noise model (NM) adaptation of BNR due to shading correction.
 661 * All above have precision of u3.3, default to 0.
 662 */
 663struct ipu3_uapi_bnr_static_config_thr_ctrl_shd_config {
 664        __u8 gr;
 665        __u8 r;
 666        __u8 b;
 667        __u8 gb;
 668} __packed;
 669
 670/**
 671 * struct ipu3_uapi_bnr_static_config_opt_center_config - Optical center config
 672 *
 673 * @x_reset:    Reset value of X (col start - X center). Precision s12.0.
 674 * @reserved0:  reserved
 675 * @y_reset:    Reset value of Y (row start - Y center). Precision s12.0.
 676 * @reserved2:  reserved
 677 *
 678 * Distance from corner to optical center for NM adaptation due to shading
 679 * correction (should be calculated based on shading tables)
 680 */
 681struct ipu3_uapi_bnr_static_config_opt_center_config {
 682        __s32 x_reset:13;
 683        __u32 reserved0:3;
 684        __s32 y_reset:13;
 685        __u32 reserved2:3;
 686} __packed;
 687
 688/**
 689 * struct ipu3_uapi_bnr_static_config_lut_config - BNR square root lookup table
 690 *
 691 * @values: pre-calculated values of square root function.
 692 *
 693 * LUT implementation of square root operation.
 694 */
 695struct ipu3_uapi_bnr_static_config_lut_config {
 696        __u8 values[IPU3_UAPI_BNR_LUT_SIZE];
 697} __packed;
 698
 699/**
 700 * struct ipu3_uapi_bnr_static_config_bp_ctrl_config - Detect bad pixels (bp)
 701 *
 702 * @bp_thr_gain:        Defines the threshold that specifies how different a
 703 *                      defect pixel can be from its neighbors. Threshold is
 704 *                      dependent on de-noise threshold calculated by algorithm.
 705 *                      Range [4, 31], default 4.
 706 * @reserved0:  reserved
 707 * @defect_mode:        Mode of addressed defect pixels,
 708 *                      0 - single defect pixel is expected,
 709 *                      1 - 2 adjacent defect pixels are expected, default 1.
 710 * @bp_gain:    Defines how 2nd derivation that passes through a defect pixel
 711 *              is different from 2nd derivations that pass through
 712 *              neighbor pixels. u4.2, range [0, 256], default 8.
 713 * @reserved1:  reserved
 714 * @w0_coeff:   Blending coefficient of defect pixel correction.
 715 *              Precision u4, range [0, 8], default 8.
 716 * @reserved2:  reserved
 717 * @w1_coeff:   Enable influence of incorrect defect pixel correction to be
 718 *              avoided. Precision u4, range [1, 8], default 8.
 719 * @reserved3:  reserved
 720 */
 721struct ipu3_uapi_bnr_static_config_bp_ctrl_config {
 722        __u32 bp_thr_gain:5;
 723        __u32 reserved0:2;
 724        __u32 defect_mode:1;
 725        __u32 bp_gain:6;
 726        __u32 reserved1:18;
 727        __u32 w0_coeff:4;
 728        __u32 reserved2:4;
 729        __u32 w1_coeff:4;
 730        __u32 reserved3:20;
 731} __packed;
 732
 733/**
 734 * struct ipu3_uapi_bnr_static_config_dn_detect_ctrl_config - Denoising config
 735 *
 736 * @alpha:      Weight of central element of smoothing filter.
 737 * @beta:       Weight of peripheral elements of smoothing filter, default 4.
 738 * @gamma:      Weight of diagonal elements of smoothing filter, default 4.
 739 *
 740 * beta and gamma parameter define the strength of the noise removal filter.
 741 *              All above has precision u0.4, range [0, 0xf]
 742 *              format: u0.4 (no / zero bits represent whole number,
 743 *              4 bits represent the fractional part
 744 *              with each count representing 0.0625)
 745 *              e.g. 0xf translates to 0.0625x15 = 0.9375
 746 *
 747 * @reserved0:  reserved
 748 * @max_inf:    Maximum increase of peripheral or diagonal element influence
 749 *              relative to the pre-defined value range: [0x5, 0xa]
 750 * @reserved1:  reserved
 751 * @gd_enable:  Green disparity enable control, 0 - disable, 1 - enable.
 752 * @bpc_enable: Bad pixel correction enable control, 0 - disable, 1 - enable.
 753 * @bnr_enable: Bayer noise removal enable control, 0 - disable, 1 - enable.
 754 * @ff_enable:  Fixed function enable, 0 - disable, 1 - enable.
 755 * @reserved2:  reserved
 756 */
 757struct ipu3_uapi_bnr_static_config_dn_detect_ctrl_config {
 758        __u32 alpha:4;
 759        __u32 beta:4;
 760        __u32 gamma:4;
 761        __u32 reserved0:4;
 762        __u32 max_inf:4;
 763        __u32 reserved1:7;
 764        __u32 gd_enable:1;
 765        __u32 bpc_enable:1;
 766        __u32 bnr_enable:1;
 767        __u32 ff_enable:1;
 768        __u32 reserved2:1;
 769} __packed;
 770
 771/**
 772 * struct ipu3_uapi_bnr_static_config_opt_center_sqr_config - BNR optical square
 773 *
 774 * @x_sqr_reset: Reset value of X^2.
 775 * @y_sqr_reset: Reset value of Y^2.
 776 *
 777 * Please note:
 778 *
 779 *    #. X and Y ref to
 780 *       &ipu3_uapi_bnr_static_config_opt_center_config
 781 *    #. Both structs are used in threshold formula to calculate r^2, where r
 782 *       is a radius of pixel [row, col] from centor of sensor.
 783 */
 784struct ipu3_uapi_bnr_static_config_opt_center_sqr_config {
 785        __u32 x_sqr_reset;
 786        __u32 y_sqr_reset;
 787} __packed;
 788
 789/**
 790 * struct ipu3_uapi_bnr_static_config - BNR static config
 791 *
 792 * @wb_gains:   white balance gains &ipu3_uapi_bnr_static_config_wb_gains_config
 793 * @wb_gains_thr:       white balance gains threshold as defined by
 794 *                      &ipu3_uapi_bnr_static_config_wb_gains_thr_config
 795 * @thr_coeffs: coefficients of threshold
 796 *              &ipu3_uapi_bnr_static_config_thr_coeffs_config
 797 * @thr_ctrl_shd:       control of shading threshold
 798 *                      &ipu3_uapi_bnr_static_config_thr_ctrl_shd_config
 799 * @opt_center: optical center &ipu3_uapi_bnr_static_config_opt_center_config
 800 *
 801 * Above parameters and opt_center_sqr are used for white balance and shading.
 802 *
 803 * @lut:        lookup table &ipu3_uapi_bnr_static_config_lut_config
 804 * @bp_ctrl:    detect and remove bad pixels as defined in struct
 805 *              &ipu3_uapi_bnr_static_config_bp_ctrl_config
 806 * @dn_detect_ctrl:     detect and remove noise.
 807 *                      &ipu3_uapi_bnr_static_config_dn_detect_ctrl_config
 808 * @column_size:        The number of pixels in column.
 809 * @opt_center_sqr:     Reset value of r^2 to optical center, see
 810 *                      &ipu3_uapi_bnr_static_config_opt_center_sqr_config.
 811 */
 812struct ipu3_uapi_bnr_static_config {
 813        struct ipu3_uapi_bnr_static_config_wb_gains_config wb_gains;
 814        struct ipu3_uapi_bnr_static_config_wb_gains_thr_config wb_gains_thr;
 815        struct ipu3_uapi_bnr_static_config_thr_coeffs_config thr_coeffs;
 816        struct ipu3_uapi_bnr_static_config_thr_ctrl_shd_config thr_ctrl_shd;
 817        struct ipu3_uapi_bnr_static_config_opt_center_config opt_center;
 818        struct ipu3_uapi_bnr_static_config_lut_config lut;
 819        struct ipu3_uapi_bnr_static_config_bp_ctrl_config bp_ctrl;
 820        struct ipu3_uapi_bnr_static_config_dn_detect_ctrl_config dn_detect_ctrl;
 821        __u32 column_size;
 822        struct ipu3_uapi_bnr_static_config_opt_center_sqr_config opt_center_sqr;
 823} __packed;
 824
 825/**
 826 * struct ipu3_uapi_bnr_static_config_green_disparity - Correct green disparity
 827 *
 828 * @gd_red:     Shading gain coeff for gr disparity level in bright red region.
 829 *              Precision u0.6, default 4(0.0625).
 830 * @reserved0:  reserved
 831 * @gd_green:   Shading gain coeff for gr disparity level in bright green
 832 *              region. Precision u0.6, default 4(0.0625).
 833 * @reserved1:  reserved
 834 * @gd_blue:    Shading gain coeff for gr disparity level in bright blue region.
 835 *              Precision u0.6, default 4(0.0625).
 836 * @reserved2:  reserved
 837 * @gd_black:   Maximal green disparity level in dark region (stronger disparity
 838 *              assumed to be image detail). Precision u14, default 80.
 839 * @reserved3:  reserved
 840 * @gd_shading: Change maximal green disparity level according to square
 841 *              distance from image center.
 842 * @reserved4:  reserved
 843 * @gd_support: Lower bound for the number of second green color pixels in
 844 *              current pixel neighborhood with less than threshold difference
 845 *              from it.
 846 *
 847 * The shading gain coeff of red, green, blue and black are used to calculate
 848 * threshold given a pixel's color value and its coordinates in the image.
 849 *
 850 * @reserved5:  reserved
 851 * @gd_clip:    Turn green disparity clip on/off, [0, 1], default 1.
 852 * @gd_central_weight:  Central pixel weight in 9 pixels weighted sum.
 853 */
 854struct ipu3_uapi_bnr_static_config_green_disparity {
 855        __u32 gd_red:6;
 856        __u32 reserved0:2;
 857        __u32 gd_green:6;
 858        __u32 reserved1:2;
 859        __u32 gd_blue:6;
 860        __u32 reserved2:10;
 861        __u32 gd_black:14;
 862        __u32 reserved3:2;
 863        __u32 gd_shading:7;
 864        __u32 reserved4:1;
 865        __u32 gd_support:2;
 866        __u32 reserved5:1;
 867        __u32 gd_clip:1;
 868        __u32 gd_central_weight:4;
 869} __packed;
 870
 871/**
 872 * struct ipu3_uapi_dm_config - De-mosaic parameters
 873 *
 874 * @dm_en:      de-mosaic enable.
 875 * @ch_ar_en:   Checker artifacts removal enable flag. Default 0.
 876 * @fcc_en:     False color correction (FCC) enable flag. Default 0.
 877 * @reserved0:  reserved
 878 * @frame_width:        do not care
 879 * @gamma_sc:   Sharpening coefficient (coefficient of 2-d derivation of
 880 *              complementary color in Hamilton-Adams interpolation).
 881 *              u5, range [0, 31], default 8.
 882 * @reserved1:  reserved
 883 * @lc_ctrl:    Parameter that controls weights of Chroma Homogeneity metric
 884 *              in calculation of final homogeneity metric.
 885 *              u5, range [0, 31], default 7.
 886 * @reserved2:  reserved
 887 * @cr_param1:  First parameter that defines Checker artifact removal
 888 *              feature gain. Precision u5, range [0, 31], default 8.
 889 * @reserved3:  reserved
 890 * @cr_param2:  Second parameter that defines Checker artifact removal
 891 *              feature gain. Precision u5, range [0, 31], default 8.
 892 * @reserved4:  reserved
 893 * @coring_param:       Defines power of false color correction operation.
 894 *                      low for preserving edge colors, high for preserving gray
 895 *                      edge artifacts.
 896 *                      Precision u1.4, range [0, 1.9375], default 4 (0.25).
 897 * @reserved5:  reserved
 898 *
 899 * The demosaic fixed function block is responsible to covert Bayer(mosaiced)
 900 * images into color images based on demosaicing algorithm.
 901 */
 902struct ipu3_uapi_dm_config {
 903        __u32 dm_en:1;
 904        __u32 ch_ar_en:1;
 905        __u32 fcc_en:1;
 906        __u32 reserved0:13;
 907        __u32 frame_width:16;
 908
 909        __u32 gamma_sc:5;
 910        __u32 reserved1:3;
 911        __u32 lc_ctrl:5;
 912        __u32 reserved2:3;
 913        __u32 cr_param1:5;
 914        __u32 reserved3:3;
 915        __u32 cr_param2:5;
 916        __u32 reserved4:3;
 917
 918        __u32 coring_param:5;
 919        __u32 reserved5:27;
 920} __packed;
 921
 922/**
 923 * struct ipu3_uapi_ccm_mat_config - Color correction matrix
 924 *
 925 * @coeff_m11: CCM 3x3 coefficient, range [-65536, 65535]
 926 * @coeff_m12: CCM 3x3 coefficient, range [-8192, 8191]
 927 * @coeff_m13: CCM 3x3 coefficient, range [-32768, 32767]
 928 * @coeff_o_r: Bias 3x1 coefficient, range [-8191, 8181]
 929 * @coeff_m21: CCM 3x3 coefficient, range [-32767, 32767]
 930 * @coeff_m22: CCM 3x3 coefficient, range [-8192, 8191]
 931 * @coeff_m23: CCM 3x3 coefficient, range [-32768, 32767]
 932 * @coeff_o_g: Bias 3x1 coefficient, range [-8191, 8181]
 933 * @coeff_m31: CCM 3x3 coefficient, range [-32768, 32767]
 934 * @coeff_m32: CCM 3x3 coefficient, range [-8192, 8191]
 935 * @coeff_m33: CCM 3x3 coefficient, range [-32768, 32767]
 936 * @coeff_o_b: Bias 3x1 coefficient, range [-8191, 8181]
 937 *
 938 * Transform sensor specific color space to standard sRGB by applying 3x3 matrix
 939 * and adding a bias vector O. The transformation is basically a rotation and
 940 * translation in the 3-dimensional color spaces. Here are the defaults:
 941 *
 942 *      9775,   -2671,  1087,   0
 943 *      -1071,  8303,   815,    0
 944 *      -23,    -7887,  16103,  0
 945 */
 946struct ipu3_uapi_ccm_mat_config {
 947        __s16 coeff_m11;
 948        __s16 coeff_m12;
 949        __s16 coeff_m13;
 950        __s16 coeff_o_r;
 951        __s16 coeff_m21;
 952        __s16 coeff_m22;
 953        __s16 coeff_m23;
 954        __s16 coeff_o_g;
 955        __s16 coeff_m31;
 956        __s16 coeff_m32;
 957        __s16 coeff_m33;
 958        __s16 coeff_o_b;
 959} __packed;
 960
 961/**
 962 * struct ipu3_uapi_gamma_corr_ctrl - Gamma correction
 963 *
 964 * @enable: gamma correction enable.
 965 * @reserved: reserved
 966 */
 967struct ipu3_uapi_gamma_corr_ctrl {
 968        __u32 enable:1;
 969        __u32 reserved:31;
 970} __packed;
 971
 972/**
 973 * struct ipu3_uapi_gamma_corr_lut - Per-pixel tone mapping implemented as LUT.
 974 *
 975 * @lut:        256 tabulated values of the gamma function. LUT[1].. LUT[256]
 976 *              format u13.0, range [0, 8191].
 977 *
 978 * The tone mapping operation is done by a Piece wise linear graph
 979 * that is implemented as a lookup table(LUT). The pixel component input
 980 * intensity is the X-axis of the graph which is the table entry.
 981 */
 982struct ipu3_uapi_gamma_corr_lut {
 983        __u16 lut[IPU3_UAPI_GAMMA_CORR_LUT_ENTRIES];
 984} __packed;
 985
 986/**
 987 * struct ipu3_uapi_gamma_config - Gamma config
 988 *
 989 * @gc_ctrl: control of gamma correction &ipu3_uapi_gamma_corr_ctrl
 990 * @gc_lut: lookup table of gamma correction &ipu3_uapi_gamma_corr_lut
 991 */
 992struct ipu3_uapi_gamma_config {
 993        struct ipu3_uapi_gamma_corr_ctrl gc_ctrl __attribute__((aligned(32)));
 994        struct ipu3_uapi_gamma_corr_lut gc_lut __attribute__((aligned(32)));
 995} __packed;
 996
 997/**
 998 * struct ipu3_uapi_csc_mat_config - Color space conversion matrix config
 999 *
1000 * @coeff_c11:  Conversion matrix value, format s0.14, range [-16384, 16383].
1001 * @coeff_c12:  Conversion matrix value, format s0.14, range [-8192, 8191].
1002 * @coeff_c13:  Conversion matrix value, format s0.14, range [-16384, 16383].
1003 * @coeff_b1:   Bias 3x1 coefficient, s13.0 range [-8192, 8191].
1004 * @coeff_c21:  Conversion matrix value, format s0.14, range [-16384, 16383].
1005 * @coeff_c22:  Conversion matrix value, format s0.14, range [-8192, 8191].
1006 * @coeff_c23:  Conversion matrix value, format s0.14, range [-16384, 16383].
1007 * @coeff_b2:   Bias 3x1 coefficient, s13.0 range [-8192, 8191].
1008 * @coeff_c31:  Conversion matrix value, format s0.14, range [-16384, 16383].
1009 * @coeff_c32:  Conversion matrix value, format s0.14, range [-8192, 8191].
1010 * @coeff_c33:  Conversion matrix value, format s0.14, range [-16384, 16383].
1011 * @coeff_b3:   Bias 3x1 coefficient, s13.0 range [-8192, 8191].
1012 *
1013 * To transform each pixel from RGB to YUV (Y - brightness/luminance,
1014 * UV -chroma) by applying the pixel's values by a 3x3 matrix and adding an
1015 * optional bias 3x1 vector. Here are the default values for the matrix:
1016 *
1017 *      4898,   9617,  1867, 0,
1018 *      -2410, -4732,  7143, 0,
1019 *      10076, -8437, -1638, 0,
1020 *
1021 *      (i.e. for real number 0.299, 0.299 * 2^14 becomes 4898.)
1022 */
1023struct ipu3_uapi_csc_mat_config {
1024        __s16 coeff_c11;
1025        __s16 coeff_c12;
1026        __s16 coeff_c13;
1027        __s16 coeff_b1;
1028        __s16 coeff_c21;
1029        __s16 coeff_c22;
1030        __s16 coeff_c23;
1031        __s16 coeff_b2;
1032        __s16 coeff_c31;
1033        __s16 coeff_c32;
1034        __s16 coeff_c33;
1035        __s16 coeff_b3;
1036} __packed;
1037
1038/**
1039 * struct ipu3_uapi_cds_params - Chroma down-scaling
1040 *
1041 * @ds_c00:     range [0, 3]
1042 * @ds_c01:     range [0, 3]
1043 * @ds_c02:     range [0, 3]
1044 * @ds_c03:     range [0, 3]
1045 * @ds_c10:     range [0, 3]
1046 * @ds_c11:     range [0, 3]
1047 * @ds_c12:     range [0, 3]
1048 * @ds_c13:     range [0, 3]
1049 *
1050 * In case user does not provide, above 4x2 filter will use following defaults:
1051 *      1, 3, 3, 1,
1052 *      1, 3, 3, 1,
1053 *
1054 * @ds_nf:      Normalization factor for Chroma output downscaling filter,
1055 *              range 0,4, default 2.
1056 * @reserved0:  reserved
1057 * @csc_en:     Color space conversion enable
1058 * @uv_bin_output:      0: output YUV 4.2.0, 1: output YUV 4.2.2(default).
1059 * @reserved1:  reserved
1060 */
1061struct ipu3_uapi_cds_params {
1062        __u32 ds_c00:2;
1063        __u32 ds_c01:2;
1064        __u32 ds_c02:2;
1065        __u32 ds_c03:2;
1066        __u32 ds_c10:2;
1067        __u32 ds_c11:2;
1068        __u32 ds_c12:2;
1069        __u32 ds_c13:2;
1070        __u32 ds_nf:5;
1071        __u32 reserved0:3;
1072        __u32 csc_en:1;
1073        __u32 uv_bin_output:1;
1074        __u32 reserved1:6;
1075} __packed;
1076
1077/**
1078 * struct ipu3_uapi_shd_grid_config - Bayer shading(darkening) correction
1079 *
1080 * @width:      Grid horizontal dimensions, u8, [8, 128], default 73
1081 * @height:     Grid vertical dimensions, u8, [8, 128], default 56
1082 * @block_width_log2:   Log2 of the width of the grid cell in pixel count
1083 *                      u4, [0, 15], default value 5.
1084 * @reserved0:  reserved
1085 * @block_height_log2:  Log2 of the height of the grid cell in pixel count
1086 *                      u4, [0, 15], default value 6.
1087 * @reserved1:  reserved
1088 * @grid_height_per_slice:      SHD_MAX_CELLS_PER_SET/width.
1089 *                              (with SHD_MAX_CELLS_PER_SET = 146).
1090 * @x_start:    X value of top left corner of sensor relative to ROI
1091 *              s13, [-4096, 0], default 0, only negative values.
1092 * @y_start:    Y value of top left corner of sensor relative to ROI
1093 *              s13, [-4096, 0], default 0, only negative values.
1094 */
1095struct ipu3_uapi_shd_grid_config {
1096        /* reg 0 */
1097        __u8 width;
1098        __u8 height;
1099        __u8 block_width_log2:3;
1100        __u8 reserved0:1;
1101        __u8 block_height_log2:3;
1102        __u8 reserved1:1;
1103        __u8 grid_height_per_slice;
1104        /* reg 1 */
1105        __s16 x_start;
1106        __s16 y_start;
1107} __packed;
1108
1109/**
1110 * struct ipu3_uapi_shd_general_config - Shading general config
1111 *
1112 * @init_set_vrt_offst_ul: set vertical offset,
1113 *                      y_start >> block_height_log2 % grid_height_per_slice.
1114 * @shd_enable: shading enable.
1115 * @gain_factor: Gain factor. Shift calculated anti shading value. Precision u2.
1116 *              0x0 - gain factor [1, 5], means no shift interpolated value.
1117 *              0x1 - gain factor [1, 9], means shift interpolated by 1.
1118 *              0x2 - gain factor [1, 17], means shift interpolated by 2.
1119 * @reserved: reserved
1120 *
1121 * Correction is performed by multiplying a gain factor for each of the 4 Bayer
1122 * channels as a function of the pixel location in the sensor.
1123 */
1124struct ipu3_uapi_shd_general_config {
1125        __u32 init_set_vrt_offst_ul:8;
1126        __u32 shd_enable:1;
1127        __u32 gain_factor:2;
1128        __u32 reserved:21;
1129} __packed;
1130
1131/**
1132 * struct ipu3_uapi_shd_black_level_config - Black level correction
1133 *
1134 * @bl_r:       Bios values for green red. s11 range [-2048, 2047].
1135 * @bl_gr:      Bios values for green blue. s11 range [-2048, 2047].
1136 * @bl_gb:      Bios values for red. s11 range [-2048, 2047].
1137 * @bl_b:       Bios values for blue. s11 range [-2048, 2047].
1138 */
1139struct ipu3_uapi_shd_black_level_config {
1140        __s16 bl_r;
1141        __s16 bl_gr;
1142        __s16 bl_gb;
1143        __s16 bl_b;
1144} __packed;
1145
1146/**
1147 * struct ipu3_uapi_shd_config_static - Shading config static
1148 *
1149 * @grid:       shading grid config &ipu3_uapi_shd_grid_config
1150 * @general:    shading general config &ipu3_uapi_shd_general_config
1151 * @black_level:        black level config for shading correction as defined by
1152 *                      &ipu3_uapi_shd_black_level_config
1153 */
1154struct ipu3_uapi_shd_config_static {
1155        struct ipu3_uapi_shd_grid_config grid;
1156        struct ipu3_uapi_shd_general_config general;
1157        struct ipu3_uapi_shd_black_level_config black_level;
1158} __packed;
1159
1160/**
1161 * struct ipu3_uapi_shd_lut - Shading gain factor lookup table.
1162 *
1163 * @sets: array
1164 * @sets.r_and_gr: Red and GreenR Lookup table.
1165 * @sets.r_and_gr.r: Red shading factor.
1166 * @sets.r_and_gr.gr: GreenR shading factor.
1167 * @sets.reserved1: reserved
1168 * @sets.gb_and_b: GreenB and Blue Lookup table.
1169 * @sets.gb_and_b.gb: GreenB shading factor.
1170 * @sets.gb_and_b.b: Blue shading factor.
1171 * @sets.reserved2: reserved
1172 *
1173 * Map to shading correction LUT register set.
1174 */
1175struct ipu3_uapi_shd_lut {
1176        struct {
1177                struct {
1178                        __u16 r;
1179                        __u16 gr;
1180                } r_and_gr[IPU3_UAPI_SHD_MAX_CELLS_PER_SET];
1181                __u8 reserved1[24];
1182                struct {
1183                        __u16 gb;
1184                        __u16 b;
1185                } gb_and_b[IPU3_UAPI_SHD_MAX_CELLS_PER_SET];
1186                __u8 reserved2[24];
1187        } sets[IPU3_UAPI_SHD_MAX_CFG_SETS];
1188} __packed;
1189
1190/**
1191 * struct ipu3_uapi_shd_config - Shading config
1192 *
1193 * @shd:        shading static config, see &ipu3_uapi_shd_config_static
1194 * @shd_lut:    shading lookup table &ipu3_uapi_shd_lut
1195 */
1196struct ipu3_uapi_shd_config {
1197        struct ipu3_uapi_shd_config_static shd __attribute__((aligned(32)));
1198        struct ipu3_uapi_shd_lut shd_lut __attribute__((aligned(32)));
1199} __packed;
1200
1201/* Image Enhancement Filter directed */
1202
1203/**
1204 * struct ipu3_uapi_iefd_cux2 - IEFd Config Unit 2 parameters
1205 *
1206 * @x0:         X0 point of Config Unit, u9.0, default 0.
1207 * @x1:         X1 point of Config Unit, u9.0, default 0.
1208 * @a01:        Slope A of Config Unit, s4.4, default 0.
1209 * @b01:        Slope B, always 0.
1210 *
1211 * Calculate weight for blending directed and non-directed denoise elements
1212 *
1213 * Note:
1214 * Each instance of Config Unit needs X coordinate of n points and
1215 * slope A factor between points calculated by driver based on calibration
1216 * parameters.
1217 *
1218 * All CU inputs are unsigned, they will be converted to signed when written
1219 * to register, i.e. a01 will be written to 9 bit register in s4.4 format.
1220 * The data precision s4.4 means 4 bits for integer parts and 4 bits for the
1221 * fractional part, the first bit indicates positive or negative value.
1222 * For userspace software (commonly the imaging library), the computation for
1223 * the CU slope values should be based on the slope resolution 1/16 (binary
1224 * 0.0001 - the minimal interval value), the slope value range is [-256, +255].
1225 * This applies to &ipu3_uapi_iefd_cux6_ed, &ipu3_uapi_iefd_cux2_1,
1226 * &ipu3_uapi_iefd_cux2_1, &ipu3_uapi_iefd_cux4 and &ipu3_uapi_iefd_cux6_rad.
1227 */
1228struct ipu3_uapi_iefd_cux2 {
1229        __u32 x0:9;
1230        __u32 x1:9;
1231        __u32 a01:9;
1232        __u32 b01:5;
1233} __packed;
1234
1235/**
1236 * struct ipu3_uapi_iefd_cux6_ed - Calculate power of non-directed sharpening
1237 *                                 element, Config Unit 6 for edge detail (ED).
1238 *
1239 * @x0: X coordinate of point 0, u9.0, default 0.
1240 * @x1: X coordinate of point 1, u9.0, default 0.
1241 * @x2: X coordinate of point 2, u9.0, default 0.
1242 * @reserved0:  reserved
1243 * @x3: X coordinate of point 3, u9.0, default 0.
1244 * @x4: X coordinate of point 4, u9.0, default 0.
1245 * @x5: X coordinate of point 5, u9.0, default 0.
1246 * @reserved1:  reserved
1247 * @a01:        slope A points 01, s4.4, default 0.
1248 * @a12:        slope A points 12, s4.4, default 0.
1249 * @a23:        slope A points 23, s4.4, default 0.
1250 * @reserved2:  reserved
1251 * @a34:        slope A points 34, s4.4, default 0.
1252 * @a45:        slope A points 45, s4.4, default 0.
1253 * @reserved3:  reserved
1254 * @b01:        slope B points 01, s4.4, default 0.
1255 * @b12:        slope B points 12, s4.4, default 0.
1256 * @b23:        slope B points 23, s4.4, default 0.
1257 * @reserved4:  reserved
1258 * @b34:        slope B points 34, s4.4, default 0.
1259 * @b45:        slope B points 45, s4.4, default 0.
1260 * @reserved5:  reserved.
1261 */
1262struct ipu3_uapi_iefd_cux6_ed {
1263        __u32 x0:9;
1264        __u32 x1:9;
1265        __u32 x2:9;
1266        __u32 reserved0:5;
1267
1268        __u32 x3:9;
1269        __u32 x4:9;
1270        __u32 x5:9;
1271        __u32 reserved1:5;
1272
1273        __u32 a01:9;
1274        __u32 a12:9;
1275        __u32 a23:9;
1276        __u32 reserved2:5;
1277
1278        __u32 a34:9;
1279        __u32 a45:9;
1280        __u32 reserved3:14;
1281
1282        __u32 b01:9;
1283        __u32 b12:9;
1284        __u32 b23:9;
1285        __u32 reserved4:5;
1286
1287        __u32 b34:9;
1288        __u32 b45:9;
1289        __u32 reserved5:14;
1290} __packed;
1291
1292/**
1293 * struct ipu3_uapi_iefd_cux2_1 - Calculate power of non-directed denoise
1294 *                                element apply.
1295 * @x0: X0 point of Config Unit, u9.0, default 0.
1296 * @x1: X1 point of Config Unit, u9.0, default 0.
1297 * @a01: Slope A of Config Unit, s4.4, default 0.
1298 * @reserved1: reserved
1299 * @b01: offset B0 of Config Unit, u7.0, default 0.
1300 * @reserved2: reserved
1301 */
1302struct ipu3_uapi_iefd_cux2_1 {
1303        __u32 x0:9;
1304        __u32 x1:9;
1305        __u32 a01:9;
1306        __u32 reserved1:5;
1307
1308        __u32 b01:8;
1309        __u32 reserved2:24;
1310} __packed;
1311
1312/**
1313 * struct ipu3_uapi_iefd_cux4 - Calculate power of non-directed sharpening
1314 *                              element.
1315 *
1316 * @x0: X0 point of Config Unit, u9.0, default 0.
1317 * @x1: X1 point of Config Unit, u9.0, default 0.
1318 * @x2: X2 point of Config Unit, u9.0, default 0.
1319 * @reserved0:  reserved
1320 * @x3: X3 point of Config Unit, u9.0, default 0.
1321 * @a01:        Slope A0 of Config Unit, s4.4, default 0.
1322 * @a12:        Slope A1 of Config Unit, s4.4, default 0.
1323 * @reserved1:  reserved
1324 * @a23:        Slope A2 of Config Unit, s4.4, default 0.
1325 * @b01:        Offset B0 of Config Unit, s7.0, default 0.
1326 * @b12:        Offset B1 of Config Unit, s7.0, default 0.
1327 * @reserved2:  reserved
1328 * @b23:        Offset B2 of Config Unit, s7.0, default 0.
1329 * @reserved3: reserved
1330 */
1331struct ipu3_uapi_iefd_cux4 {
1332        __u32 x0:9;
1333        __u32 x1:9;
1334        __u32 x2:9;
1335        __u32 reserved0:5;
1336
1337        __u32 x3:9;
1338        __u32 a01:9;
1339        __u32 a12:9;
1340        __u32 reserved1:5;
1341
1342        __u32 a23:9;
1343        __u32 b01:8;
1344        __u32 b12:8;
1345        __u32 reserved2:7;
1346
1347        __u32 b23:8;
1348        __u32 reserved3:24;
1349} __packed;
1350
1351/**
1352 * struct ipu3_uapi_iefd_cux6_rad - Radial Config Unit (CU)
1353 *
1354 * @x0: x0 points of Config Unit radial, u8.0
1355 * @x1: x1 points of Config Unit radial, u8.0
1356 * @x2: x2 points of Config Unit radial, u8.0
1357 * @x3: x3 points of Config Unit radial, u8.0
1358 * @x4: x4 points of Config Unit radial, u8.0
1359 * @x5: x5 points of Config Unit radial, u8.0
1360 * @reserved1: reserved
1361 * @a01:        Slope A of Config Unit radial, s7.8
1362 * @a12:        Slope A of Config Unit radial, s7.8
1363 * @a23:        Slope A of Config Unit radial, s7.8
1364 * @a34:        Slope A of Config Unit radial, s7.8
1365 * @a45:        Slope A of Config Unit radial, s7.8
1366 * @reserved2: reserved
1367 * @b01:        Slope B of Config Unit radial, s9.0
1368 * @b12:        Slope B of Config Unit radial, s9.0
1369 * @b23:        Slope B of Config Unit radial, s9.0
1370 * @reserved4: reserved
1371 * @b34:        Slope B of Config Unit radial, s9.0
1372 * @b45:        Slope B of Config Unit radial, s9.0
1373 * @reserved5: reserved
1374 */
1375struct ipu3_uapi_iefd_cux6_rad {
1376        __u32 x0:8;
1377        __u32 x1:8;
1378        __u32 x2:8;
1379        __u32 x3:8;
1380
1381        __u32 x4:8;
1382        __u32 x5:8;
1383        __u32 reserved1:16;
1384
1385        __u32 a01:16;
1386        __u32 a12:16;
1387
1388        __u32 a23:16;
1389        __u32 a34:16;
1390
1391        __u32 a45:16;
1392        __u32 reserved2:16;
1393
1394        __u32 b01:10;
1395        __u32 b12:10;
1396        __u32 b23:10;
1397        __u32 reserved4:2;
1398
1399        __u32 b34:10;
1400        __u32 b45:10;
1401        __u32 reserved5:12;
1402} __packed;
1403
1404/**
1405 * struct ipu3_uapi_yuvp1_iefd_cfg_units - IEFd Config Units parameters
1406 *
1407 * @cu_1: calculate weight for blending directed and
1408 *        non-directed denoise elements. See &ipu3_uapi_iefd_cux2
1409 * @cu_ed: calculate power of non-directed sharpening element, see
1410 *         &ipu3_uapi_iefd_cux6_ed
1411 * @cu_3: calculate weight for blending directed and
1412 *        non-directed denoise elements. A &ipu3_uapi_iefd_cux2
1413 * @cu_5: calculate power of non-directed denoise element apply, use
1414 *        &ipu3_uapi_iefd_cux2_1
1415 * @cu_6: calculate power of non-directed sharpening element. See
1416 *        &ipu3_uapi_iefd_cux4
1417 * @cu_7: calculate weight for blending directed and
1418 *        non-directed denoise elements. Use &ipu3_uapi_iefd_cux2
1419 * @cu_unsharp: Config Unit of unsharp &ipu3_uapi_iefd_cux4
1420 * @cu_radial: Config Unit of radial &ipu3_uapi_iefd_cux6_rad
1421 * @cu_vssnlm: Config Unit of vssnlm &ipu3_uapi_iefd_cux2
1422 */
1423struct ipu3_uapi_yuvp1_iefd_cfg_units {
1424        struct ipu3_uapi_iefd_cux2 cu_1;
1425        struct ipu3_uapi_iefd_cux6_ed cu_ed;
1426        struct ipu3_uapi_iefd_cux2 cu_3;
1427        struct ipu3_uapi_iefd_cux2_1 cu_5;
1428        struct ipu3_uapi_iefd_cux4 cu_6;
1429        struct ipu3_uapi_iefd_cux2 cu_7;
1430        struct ipu3_uapi_iefd_cux4 cu_unsharp;
1431        struct ipu3_uapi_iefd_cux6_rad cu_radial;
1432        struct ipu3_uapi_iefd_cux2 cu_vssnlm;
1433} __packed;
1434
1435/**
1436 * struct ipu3_uapi_yuvp1_iefd_config_s - IEFd config
1437 *
1438 * @horver_diag_coeff: Gradient compensation. Compared with vertical /
1439 *                     horizontal (0 / 90 degree), coefficient of diagonal (45 /
1440 *                     135 degree) direction should be corrected by approx.
1441 *                     1/sqrt(2).
1442 * @reserved0: reserved
1443 * @clamp_stitch: Slope to stitch between clamped and unclamped edge values
1444 * @reserved1: reserved
1445 * @direct_metric_update: Update coeff for direction metric
1446 * @reserved2: reserved
1447 * @ed_horver_diag_coeff: Radial Coefficient that compensates for
1448 *                        different distance for vertical/horizontal and
1449 *                        diagonal gradient calculation (approx. 1/sqrt(2))
1450 * @reserved3: reserved
1451 */
1452struct ipu3_uapi_yuvp1_iefd_config_s {
1453        __u32 horver_diag_coeff:7;
1454        __u32 reserved0:1;
1455        __u32 clamp_stitch:6;
1456        __u32 reserved1:2;
1457        __u32 direct_metric_update:5;
1458        __u32 reserved2:3;
1459        __u32 ed_horver_diag_coeff:7;
1460        __u32 reserved3:1;
1461} __packed;
1462
1463/**
1464 * struct ipu3_uapi_yuvp1_iefd_control - IEFd control
1465 *
1466 * @iefd_en:    Enable IEFd
1467 * @denoise_en: Enable denoise
1468 * @direct_smooth_en:   Enable directional smooth
1469 * @rad_en:     Enable radial update
1470 * @vssnlm_en:  Enable VSSNLM output filter
1471 * @reserved:   reserved
1472 */
1473struct ipu3_uapi_yuvp1_iefd_control {
1474        __u32 iefd_en:1;
1475        __u32 denoise_en:1;
1476        __u32 direct_smooth_en:1;
1477        __u32 rad_en:1;
1478        __u32 vssnlm_en:1;
1479        __u32 reserved:27;
1480} __packed;
1481
1482/**
1483 * struct ipu3_uapi_sharp_cfg - Sharpening config
1484 *
1485 * @nega_lmt_txt: Sharpening limit for negative overshoots for texture.
1486 * @reserved0: reserved
1487 * @posi_lmt_txt: Sharpening limit for positive overshoots for texture.
1488 * @reserved1: reserved
1489 * @nega_lmt_dir: Sharpening limit for negative overshoots for direction (edge).
1490 * @reserved2: reserved
1491 * @posi_lmt_dir: Sharpening limit for positive overshoots for direction (edge).
1492 * @reserved3: reserved
1493 *
1494 * Fixed point type u13.0, range [0, 8191].
1495 */
1496struct ipu3_uapi_sharp_cfg {
1497        __u32 nega_lmt_txt:13;
1498        __u32 reserved0:19;
1499        __u32 posi_lmt_txt:13;
1500        __u32 reserved1:19;
1501        __u32 nega_lmt_dir:13;
1502        __u32 reserved2:19;
1503        __u32 posi_lmt_dir:13;
1504        __u32 reserved3:19;
1505} __packed;
1506
1507/**
1508 * struct struct ipu3_uapi_far_w - Sharpening config for far sub-group
1509 *
1510 * @dir_shrp:   Weight of wide direct sharpening, u1.6, range [0, 64], default 64.
1511 * @reserved0:  reserved
1512 * @dir_dns:    Weight of wide direct denoising, u1.6, range [0, 64], default 0.
1513 * @reserved1:  reserved
1514 * @ndir_dns_powr:      Power of non-direct denoising,
1515 *                      Precision u1.6, range [0, 64], default 64.
1516 * @reserved2:  reserved
1517 */
1518struct ipu3_uapi_far_w {
1519        __u32 dir_shrp:7;
1520        __u32 reserved0:1;
1521        __u32 dir_dns:7;
1522        __u32 reserved1:1;
1523        __u32 ndir_dns_powr:7;
1524        __u32 reserved2:9;
1525} __packed;
1526
1527/**
1528 * struct struct ipu3_uapi_unsharp_cfg - Unsharp config
1529 *
1530 * @unsharp_weight: Unsharp mask blending weight.
1531 *                  u1.6, range [0, 64], default 16.
1532 *                  0 - disabled, 64 - use only unsharp.
1533 * @reserved0: reserved
1534 * @unsharp_amount: Unsharp mask amount, u4.5, range [0, 511], default 0.
1535 * @reserved1: reserved
1536 */
1537struct ipu3_uapi_unsharp_cfg {
1538        __u32 unsharp_weight:7;
1539        __u32 reserved0:1;
1540        __u32 unsharp_amount:9;
1541        __u32 reserved1:15;
1542} __packed;
1543
1544/**
1545 * struct ipu3_uapi_yuvp1_iefd_shrp_cfg - IEFd sharpness config
1546 *
1547 * @cfg: sharpness config &ipu3_uapi_sharp_cfg
1548 * @far_w: wide range config, value as specified by &ipu3_uapi_far_w:
1549 *      The 5x5 environment is separated into 2 sub-groups, the 3x3 nearest
1550 *      neighbors (8 pixels called Near), and the second order neighborhood
1551 *      around them (16 pixels called Far).
1552 * @unshrp_cfg: unsharpness config. &ipu3_uapi_unsharp_cfg
1553 */
1554struct ipu3_uapi_yuvp1_iefd_shrp_cfg {
1555        struct ipu3_uapi_sharp_cfg cfg;
1556        struct ipu3_uapi_far_w far_w;
1557        struct ipu3_uapi_unsharp_cfg unshrp_cfg;
1558} __packed;
1559
1560/**
1561 * struct ipu3_uapi_unsharp_coef0 - Unsharp mask coefficients
1562 *
1563 * @c00: Coeff11, s0.8, range [-255, 255], default 1.
1564 * @c01: Coeff12, s0.8, range [-255, 255], default 5.
1565 * @c02: Coeff13, s0.8, range [-255, 255], default 9.
1566 * @reserved: reserved
1567 *
1568 * Configurable registers for common sharpening support.
1569 */
1570struct ipu3_uapi_unsharp_coef0 {
1571        __u32 c00:9;
1572        __u32 c01:9;
1573        __u32 c02:9;
1574        __u32 reserved:5;
1575} __packed;
1576
1577/**
1578 * struct ipu3_uapi_unsharp_coef1 - Unsharp mask coefficients
1579 *
1580 * @c11: Coeff22, s0.8, range [-255, 255], default 29.
1581 * @c12: Coeff23, s0.8, range [-255, 255], default 55.
1582 * @c22: Coeff33, s0.8, range [-255, 255], default 96.
1583 * @reserved: reserved
1584 */
1585struct ipu3_uapi_unsharp_coef1 {
1586        __u32 c11:9;
1587        __u32 c12:9;
1588        __u32 c22:9;
1589        __u32 reserved:5;
1590} __packed;
1591
1592/**
1593 * struct ipu3_uapi_yuvp1_iefd_unshrp_cfg - Unsharp mask config
1594 *
1595 * @unsharp_coef0: unsharp coefficient 0 config. See &ipu3_uapi_unsharp_coef0
1596 * @unsharp_coef1: unsharp coefficient 1 config. See &ipu3_uapi_unsharp_coef1
1597 */
1598struct ipu3_uapi_yuvp1_iefd_unshrp_cfg {
1599        struct ipu3_uapi_unsharp_coef0 unsharp_coef0;
1600        struct ipu3_uapi_unsharp_coef1 unsharp_coef1;
1601} __packed;
1602
1603/**
1604 * struct ipu3_uapi_radial_reset_xy - Radial coordinate reset
1605 *
1606 * @x:  Radial reset of x coordinate. Precision s12, [-4095, 4095], default 0.
1607 * @reserved0:  reserved
1608 * @y:  Radial center y coordinate. Precision s12, [-4095, 4095], default 0.
1609 * @reserved1:  reserved
1610 */
1611struct ipu3_uapi_radial_reset_xy {
1612        __s32 x:13;
1613        __u32 reserved0:3;
1614        __s32 y:13;
1615        __u32 reserved1:3;
1616} __packed;
1617
1618/**
1619 * struct ipu3_uapi_radial_reset_x2 - Radial X^2 reset
1620 *
1621 * @x2: Radial reset of x^2 coordinate. Precision u24, default 0.
1622 * @reserved:   reserved
1623 */
1624struct ipu3_uapi_radial_reset_x2 {
1625        __u32 x2:24;
1626        __u32 reserved:8;
1627} __packed;
1628
1629/**
1630 * struct ipu3_uapi_radial_reset_y2 - Radial Y^2 reset
1631 *
1632 * @y2: Radial reset of y^2 coordinate. Precision u24, default 0.
1633 * @reserved:   reserved
1634 */
1635struct ipu3_uapi_radial_reset_y2 {
1636        __u32 y2:24;
1637        __u32 reserved:8;
1638} __packed;
1639
1640/**
1641 * struct ipu3_uapi_radial_cfg - Radial config
1642 *
1643 * @rad_nf: Radial. R^2 normalization factor is scale down by 2^ - (15 + scale)
1644 * @reserved0: reserved
1645 * @rad_inv_r2: Radial R^-2 normelized to (0.5..1).
1646 *              Precision u7, range [0, 127].
1647 * @reserved1: reserved
1648 */
1649struct ipu3_uapi_radial_cfg {
1650        __u32 rad_nf:4;
1651        __u32 reserved0:4;
1652        __u32 rad_inv_r2:7;
1653        __u32 reserved1:17;
1654} __packed;
1655
1656/**
1657 * struct ipu3_uapi_rad_far_w - Radial FAR sub-group
1658 *
1659 * @rad_dir_far_sharp_w: Weight of wide direct sharpening, u1.6, range [0, 64],
1660 *                       default 64.
1661 * @rad_dir_far_dns_w: Weight of wide direct denoising, u1.6, range [0, 64],
1662 *                       default 0.
1663 * @rad_ndir_far_dns_power: power of non-direct sharpening, u1.6, range [0, 64],
1664 *                       default 0.
1665 * @reserved: reserved
1666 */
1667struct ipu3_uapi_rad_far_w {
1668        __u32 rad_dir_far_sharp_w:8;
1669        __u32 rad_dir_far_dns_w:8;
1670        __u32 rad_ndir_far_dns_power:8;
1671        __u32 reserved:8;
1672} __packed;
1673
1674/**
1675 * struct ipu3_uapi_cu_cfg0 - Radius Config Unit cfg0 register
1676 *
1677 * @cu6_pow: Power of CU6. Power of non-direct sharpening, u3.4.
1678 * @reserved0: reserved
1679 * @cu_unsharp_pow: Power of unsharp mask, u2.4.
1680 * @reserved1: reserved
1681 * @rad_cu6_pow: Radial/corner CU6. Directed sharpening power, u3.4.
1682 * @reserved2: reserved
1683 * @rad_cu_unsharp_pow: Radial power of unsharp mask, u2.4.
1684 * @reserved3: reserved
1685 */
1686struct ipu3_uapi_cu_cfg0 {
1687        __u32 cu6_pow:7;
1688        __u32 reserved0:1;
1689        __u32 cu_unsharp_pow:7;
1690        __u32 reserved1:1;
1691        __u32 rad_cu6_pow:7;
1692        __u32 reserved2:1;
1693        __u32 rad_cu_unsharp_pow:6;
1694        __u32 reserved3:2;
1695} __packed;
1696
1697/**
1698 * struct ipu3_uapi_cu_cfg1 - Radius Config Unit cfg1 register
1699 *
1700 * @rad_cu6_x1: X1 point of Config Unit 6, precision u9.0.
1701 * @reserved0: reserved
1702 * @rad_cu_unsharp_x1: X1 point for Config Unit unsharp for radial/corner point
1703 *                      precision u9.0.
1704 * @reserved1: reserved
1705 */
1706struct ipu3_uapi_cu_cfg1 {
1707        __u32 rad_cu6_x1:9;
1708        __u32 reserved0:1;
1709        __u32 rad_cu_unsharp_x1:9;
1710        __u32 reserved1:13;
1711} __packed;
1712
1713/**
1714 * struct ipu3_uapi_yuvp1_iefd_rad_cfg - IEFd parameters changed radially over
1715 *                                       the picture plane.
1716 *
1717 * @reset_xy: reset xy value in radial calculation. &ipu3_uapi_radial_reset_xy
1718 * @reset_x2: reset x square value in radial calculation. See struct
1719 *            &ipu3_uapi_radial_reset_x2
1720 * @reset_y2: reset y square value in radial calculation. See struct
1721 *            &ipu3_uapi_radial_reset_y2
1722 * @cfg: radial config defined in &ipu3_uapi_radial_cfg
1723 * @rad_far_w: weight for wide range radial. &ipu3_uapi_rad_far_w
1724 * @cu_cfg0: configuration unit 0. See &ipu3_uapi_cu_cfg0
1725 * @cu_cfg1: configuration unit 1. See &ipu3_uapi_cu_cfg1
1726 */
1727struct ipu3_uapi_yuvp1_iefd_rad_cfg {
1728        struct ipu3_uapi_radial_reset_xy reset_xy;
1729        struct ipu3_uapi_radial_reset_x2 reset_x2;
1730        struct ipu3_uapi_radial_reset_y2 reset_y2;
1731        struct ipu3_uapi_radial_cfg cfg;
1732        struct ipu3_uapi_rad_far_w rad_far_w;
1733        struct ipu3_uapi_cu_cfg0 cu_cfg0;
1734        struct ipu3_uapi_cu_cfg1 cu_cfg1;
1735} __packed;
1736
1737/* Vssnlm - Very small scale non-local mean algorithm */
1738
1739/**
1740 * struct ipu3_uapi_vss_lut_x - Vssnlm LUT x0/x1/x2
1741 *
1742 * @vs_x0: Vssnlm LUT x0, precision u8, range [0, 255], default 16.
1743 * @vs_x1: Vssnlm LUT x1, precision u8, range [0, 255], default 32.
1744 * @vs_x2: Vssnlm LUT x2, precision u8, range [0, 255], default 64.
1745 * @reserved2: reserved
1746 */
1747struct ipu3_uapi_vss_lut_x {
1748        __u32 vs_x0:8;
1749        __u32 vs_x1:8;
1750        __u32 vs_x2:8;
1751        __u32 reserved2:8;
1752} __packed;
1753
1754/**
1755 * struct ipu3_uapi_vss_lut_y - Vssnlm LUT y0/y1/y2
1756 *
1757 * @vs_y1: Vssnlm LUT y1, precision u4, range [0, 8], default 1.
1758 * @reserved0: reserved
1759 * @vs_y2: Vssnlm LUT y2, precision u4, range [0, 8], default 3.
1760 * @reserved1: reserved
1761 * @vs_y3: Vssnlm LUT y3, precision u4, range [0, 8], default 8.
1762 * @reserved2: reserved
1763 */
1764struct ipu3_uapi_vss_lut_y {
1765        __u32 vs_y1:4;
1766        __u32 reserved0:4;
1767        __u32 vs_y2:4;
1768        __u32 reserved1:4;
1769        __u32 vs_y3:4;
1770        __u32 reserved2:12;
1771} __packed;
1772
1773/**
1774 * struct ipu3_uapi_yuvp1_iefd_vssnlm_cf - IEFd Vssnlm Lookup table
1775 *
1776 * @vss_lut_x: vss lookup table. See &ipu3_uapi_vss_lut_x description
1777 * @vss_lut_y: vss lookup table. See &ipu3_uapi_vss_lut_y description
1778 */
1779struct ipu3_uapi_yuvp1_iefd_vssnlm_cfg {
1780        struct ipu3_uapi_vss_lut_x vss_lut_x;
1781        struct ipu3_uapi_vss_lut_y vss_lut_y;
1782} __packed;
1783
1784/**
1785 * struct ipu3_uapi_yuvp1_iefd_config - IEFd config
1786 *
1787 * @units: configuration unit setting, &ipu3_uapi_yuvp1_iefd_cfg_units
1788 * @config: configuration, as defined by &ipu3_uapi_yuvp1_iefd_config_s
1789 * @control: control setting, as defined by &ipu3_uapi_yuvp1_iefd_control
1790 * @sharp: sharpness setting, as defined by &ipu3_uapi_yuvp1_iefd_shrp_cfg
1791 * @unsharp: unsharpness setting, as defined by &ipu3_uapi_yuvp1_iefd_unshrp_cfg
1792 * @rad: radial setting, as defined by &ipu3_uapi_yuvp1_iefd_rad_cfg
1793 * @vsslnm: vsslnm setting, as defined by &ipu3_uapi_yuvp1_iefd_vssnlm_cfg
1794 */
1795struct ipu3_uapi_yuvp1_iefd_config {
1796        struct ipu3_uapi_yuvp1_iefd_cfg_units units;
1797        struct ipu3_uapi_yuvp1_iefd_config_s config;
1798        struct ipu3_uapi_yuvp1_iefd_control control;
1799        struct ipu3_uapi_yuvp1_iefd_shrp_cfg sharp;
1800        struct ipu3_uapi_yuvp1_iefd_unshrp_cfg unsharp;
1801        struct ipu3_uapi_yuvp1_iefd_rad_cfg rad;
1802        struct ipu3_uapi_yuvp1_iefd_vssnlm_cfg vsslnm;
1803} __packed;
1804
1805/**
1806 * struct ipu3_uapi_yuvp1_yds_config - Y Down-Sampling config
1807 *
1808 * @c00: range [0, 3], default 0x0
1809 * @c01: range [0, 3], default 0x1
1810 * @c02: range [0, 3], default 0x1
1811 * @c03: range [0, 3], default 0x0
1812 * @c10: range [0, 3], default 0x0
1813 * @c11: range [0, 3], default 0x1
1814 * @c12: range [0, 3], default 0x1
1815 * @c13: range [0, 3], default 0x0
1816 *
1817 * Above are 4x2 filter coefficients for chroma output downscaling.
1818 *
1819 * @norm_factor: Normalization factor, range [0, 4], default 2
1820 *              0 - divide by 1
1821 *              1 - divide by 2
1822 *              2 - divide by 4
1823 *              3 - divide by 8
1824 *              4 - divide by 16
1825 * @reserved0: reserved
1826 * @bin_output: Down sampling on Luma channel in two optional modes
1827 *              0 - Bin output 4.2.0 (default), 1 output 4.2.2.
1828 * @reserved1: reserved
1829 */
1830struct ipu3_uapi_yuvp1_yds_config {
1831        __u32 c00:2;
1832        __u32 c01:2;
1833        __u32 c02:2;
1834        __u32 c03:2;
1835        __u32 c10:2;
1836        __u32 c11:2;
1837        __u32 c12:2;
1838        __u32 c13:2;
1839        __u32 norm_factor:5;
1840        __u32 reserved0:4;
1841        __u32 bin_output:1;
1842        __u32 reserved1:6;
1843} __packed;
1844
1845/* Chroma Noise Reduction */
1846
1847/**
1848 * struct ipu3_uapi_yuvp1_chnr_enable_config - Chroma noise reduction enable
1849 *
1850 * @enable: enable/disable chroma noise reduction
1851 * @yuv_mode: 0 - YUV420, 1 - YUV422
1852 * @reserved0: reserved
1853 * @col_size: number of columns in the frame, max width is 2560
1854 * @reserved1: reserved
1855 */
1856struct ipu3_uapi_yuvp1_chnr_enable_config {
1857        __u32 enable:1;
1858        __u32 yuv_mode:1;
1859        __u32 reserved0:14;
1860        __u32 col_size:12;
1861        __u32 reserved1:4;
1862} __packed;
1863
1864/**
1865 * struct ipu3_uapi_yuvp1_chnr_coring_config - Coring thresholds for UV
1866 *
1867 * @u: U coring level, u0.13, range [0.0, 1.0], default 0.0
1868 * @reserved0: reserved
1869 * @v: V coring level, u0.13, range [0.0, 1.0], default 0.0
1870 * @reserved1: reserved
1871 */
1872struct ipu3_uapi_yuvp1_chnr_coring_config {
1873        __u32 u:13;
1874        __u32 reserved0:3;
1875        __u32 v:13;
1876        __u32 reserved1:3;
1877} __packed;
1878
1879/**
1880 * struct ipu3_uapi_yuvp1_chnr_sense_gain_config - Chroma noise reduction gains
1881 *
1882 * All sensitivity gain parameters have precision u13.0, range [0, 8191].
1883 *
1884 * @vy: Sensitivity of horizontal edge of Y, default 100
1885 * @vu: Sensitivity of horizontal edge of U, default 100
1886 * @vv: Sensitivity of horizontal edge of V, default 100
1887 * @reserved0: reserved
1888 * @hy: Sensitivity of vertical edge of Y, default 50
1889 * @hu: Sensitivity of vertical edge of U, default 50
1890 * @hv: Sensitivity of vertical edge of V, default 50
1891 * @reserved1: reserved
1892 */
1893struct ipu3_uapi_yuvp1_chnr_sense_gain_config {
1894        __u32 vy:8;
1895        __u32 vu:8;
1896        __u32 vv:8;
1897        __u32 reserved0:8;
1898
1899        __u32 hy:8;
1900        __u32 hu:8;
1901        __u32 hv:8;
1902        __u32 reserved1:8;
1903} __packed;
1904
1905/**
1906 * struct ipu3_uapi_yuvp1_chnr_iir_fir_config - Chroma IIR/FIR filter config
1907 *
1908 * @fir_0h: Value of center tap in horizontal FIR, range [0, 32], default 8.
1909 * @reserved0: reserved
1910 * @fir_1h: Value of distance 1 in horizontal FIR, range [0, 32], default 12.
1911 * @reserved1: reserved
1912 * @fir_2h: Value of distance 2 tap in horizontal FIR, range [0, 32], default 0.
1913 * @dalpha_clip_val: weight for previous row in IIR, range [1, 256], default 0.
1914 * @reserved2: reserved
1915 */
1916struct ipu3_uapi_yuvp1_chnr_iir_fir_config {
1917        __u32 fir_0h:6;
1918        __u32 reserved0:2;
1919        __u32 fir_1h:6;
1920        __u32 reserved1:2;
1921        __u32 fir_2h:6;
1922        __u32 dalpha_clip_val:9;
1923        __u32 reserved2:1;
1924} __packed;
1925
1926/**
1927 * struct ipu3_uapi_yuvp1_chnr_config - Chroma noise reduction config
1928 *
1929 * @enable: chroma noise reduction enable, see
1930 *          &ipu3_uapi_yuvp1_chnr_enable_config
1931 * @coring: coring config for chroma noise reduction, see
1932 *          &ipu3_uapi_yuvp1_chnr_coring_config
1933 * @sense_gain: sensitivity config for chroma noise reduction, see
1934 *              ipu3_uapi_yuvp1_chnr_sense_gain_config
1935 * @iir_fir: iir and fir config for chroma noise reduction, see
1936 *           ipu3_uapi_yuvp1_chnr_iir_fir_config
1937 */
1938struct ipu3_uapi_yuvp1_chnr_config {
1939        struct ipu3_uapi_yuvp1_chnr_enable_config enable;
1940        struct ipu3_uapi_yuvp1_chnr_coring_config coring;
1941        struct ipu3_uapi_yuvp1_chnr_sense_gain_config sense_gain;
1942        struct ipu3_uapi_yuvp1_chnr_iir_fir_config iir_fir;
1943} __packed;
1944
1945/* Edge Enhancement and Noise Reduction */
1946
1947/**
1948 * struct ipu3_uapi_yuvp1_y_ee_nr_lpf_config - Luma(Y) edge enhancement low-pass
1949 *                                             filter coefficients
1950 *
1951 * @a_diag: Smoothing diagonal coefficient, u5.0.
1952 * @reserved0: reserved
1953 * @a_periph: Image smoothing perpherial, u5.0.
1954 * @reserved1: reserved
1955 * @a_cent: Image Smoothing center coefficient, u5.0.
1956 * @reserved2: reserved
1957 * @enable: 0: Y_EE_NR disabled, output = input; 1: Y_EE_NR enabled.
1958 */
1959struct ipu3_uapi_yuvp1_y_ee_nr_lpf_config {
1960        __u32 a_diag:5;
1961        __u32 reserved0:3;
1962        __u32 a_periph:5;
1963        __u32 reserved1:3;
1964        __u32 a_cent:5;
1965        __u32 reserved2:9;
1966        __u32 enable:1;
1967} __packed;
1968
1969/**
1970 * struct ipu3_uapi_yuvp1_y_ee_nr_sense_config - Luma(Y) edge enhancement
1971 *                                      noise reduction sensitivity gains
1972 *
1973 * @edge_sense_0: Sensitivity of edge in dark area. u13.0, default 8191.
1974 * @reserved0: reserved
1975 * @delta_edge_sense: Difference in the sensitivity of edges between
1976 *                    the bright and dark areas. u13.0, default 0.
1977 * @reserved1: reserved
1978 * @corner_sense_0: Sensitivity of corner in dark area. u13.0, default 0.
1979 * @reserved2: reserved
1980 * @delta_corner_sense: Difference in the sensitivity of corners between
1981 *                      the bright and dark areas. u13.0, default 8191.
1982 * @reserved3: reserved
1983 */
1984struct ipu3_uapi_yuvp1_y_ee_nr_sense_config {
1985        __u32 edge_sense_0:13;
1986        __u32 reserved0:3;
1987        __u32 delta_edge_sense:13;
1988        __u32 reserved1:3;
1989        __u32 corner_sense_0:13;
1990        __u32 reserved2:3;
1991        __u32 delta_corner_sense:13;
1992        __u32 reserved3:3;
1993} __packed;
1994
1995/**
1996 * struct ipu3_uapi_yuvp1_y_ee_nr_gain_config - Luma(Y) edge enhancement
1997 *                                              noise reduction gain config
1998 *
1999 * @gain_pos_0: Gain for positive edge in dark area. u5.0, [0, 16], default 2.
2000 * @reserved0: reserved
2001 * @delta_gain_posi: Difference in the gain of edges between the bright and
2002 *                   dark areas for positive edges. u5.0, [0, 16], default 0.
2003 * @reserved1: reserved
2004 * @gain_neg_0: Gain for negative edge in dark area. u5.0, [0, 16], default 8.
2005 * @reserved2: reserved
2006 * @delta_gain_neg: Difference in the gain of edges between the bright and
2007 *                  dark areas for negative edges. u5.0, [0, 16], default 0.
2008 * @reserved3: reserved
2009 */
2010struct ipu3_uapi_yuvp1_y_ee_nr_gain_config {
2011        __u32 gain_pos_0:5;
2012        __u32 reserved0:3;
2013        __u32 delta_gain_posi:5;
2014        __u32 reserved1:3;
2015        __u32 gain_neg_0:5;
2016        __u32 reserved2:3;
2017        __u32 delta_gain_neg:5;
2018        __u32 reserved3:3;
2019} __packed;
2020
2021/**
2022 * struct ipu3_uapi_yuvp1_y_ee_nr_clip_config - Luma(Y) edge enhancement
2023 *                                      noise reduction clipping config
2024 *
2025 * @clip_pos_0: Limit of positive edge in dark area
2026 *              u5, value [0, 16], default 8.
2027 * @reserved0: reserved
2028 * @delta_clip_posi: Difference in the limit of edges between the bright
2029 *                   and dark areas for positive edges.
2030 *                   u5, value [0, 16], default 8.
2031 * @reserved1: reserved
2032 * @clip_neg_0: Limit of negative edge in dark area
2033 *              u5, value [0, 16], default 8.
2034 * @reserved2: reserved
2035 * @delta_clip_neg: Difference in the limit of edges between the bright
2036 *                  and dark areas for negative edges.
2037 *                  u5, value [0, 16], default 8.
2038 * @reserved3: reserved
2039 */
2040struct ipu3_uapi_yuvp1_y_ee_nr_clip_config {
2041        __u32 clip_pos_0:5;
2042        __u32 reserved0:3;
2043        __u32 delta_clip_posi:5;
2044        __u32 reserved1:3;
2045        __u32 clip_neg_0:5;
2046        __u32 reserved2:3;
2047        __u32 delta_clip_neg:5;
2048        __u32 reserved3:3;
2049} __packed;
2050
2051/**
2052 * struct ipu3_uapi_yuvp1_y_ee_nr_frng_config - Luma(Y) edge enhancement
2053 *                                              noise reduction fringe config
2054 *
2055 * @gain_exp: Common exponent of gains, u4, [0, 8], default 2.
2056 * @reserved0: reserved
2057 * @min_edge: Threshold for edge and smooth stitching, u13.
2058 * @reserved1: reserved
2059 * @lin_seg_param: Power of LinSeg, u4.
2060 * @reserved2: reserved
2061 * @t1: Parameter for enabling/disabling the edge enhancement, u1.0, [0, 1],
2062 *      default 1.
2063 * @t2: Parameter for enabling/disabling the smoothing, u1.0, [0, 1],
2064 *      default 1.
2065 * @reserved3: reserved
2066 */
2067struct ipu3_uapi_yuvp1_y_ee_nr_frng_config {
2068        __u32 gain_exp:4;
2069        __u32 reserved0:28;
2070        __u32 min_edge:13;
2071        __u32 reserved1:3;
2072        __u32 lin_seg_param:4;
2073        __u32 reserved2:4;
2074        __u32 t1:1;
2075        __u32 t2:1;
2076        __u32 reserved3:6;
2077} __packed;
2078
2079/**
2080 * struct ipu3_uapi_yuvp1_y_ee_nr_diag_config - Luma(Y) edge enhancement
2081 *                                      noise reduction diagonal config
2082 *
2083 * @diag_disc_g: Coefficient that prioritize diagonal edge direction on
2084 *               horizontal or vertical for final enhancement.
2085 *               u4.0, [1, 15], default 1.
2086 * @reserved0: reserved
2087 * @hvw_hor: Weight of horizontal/vertical edge enhancement for hv edge.
2088 *              u2.2, [1, 15], default 4.
2089 * @dw_hor: Weight of diagonal edge enhancement for hv edge.
2090 *              u2.2, [1, 15], default 1.
2091 * @hvw_diag: Weight of horizontal/vertical edge enhancement for diagonal edge.
2092 *              u2.2, [1, 15], default 1.
2093 * @dw_diag: Weight of diagonal edge enhancement for diagonal edge.
2094 *              u2.2, [1, 15], default 4.
2095 * @reserved1: reserved
2096 */
2097struct ipu3_uapi_yuvp1_y_ee_nr_diag_config {
2098        __u32 diag_disc_g:4;
2099        __u32 reserved0:4;
2100        __u32 hvw_hor:4;
2101        __u32 dw_hor:4;
2102        __u32 hvw_diag:4;
2103        __u32 dw_diag:4;
2104        __u32 reserved1:8;
2105} __packed;
2106
2107/**
2108 * struct ipu3_uapi_yuvp1_y_ee_nr_fc_coring_config - Luma(Y) edge enhancement
2109 *              noise reduction false color correction (FCC) coring config
2110 *
2111 * @pos_0: Gain for positive edge in dark, u13.0, [0, 16], default 0.
2112 * @reserved0: reserved
2113 * @pos_delta: Gain for positive edge in bright, value: pos_0 + pos_delta <=16
2114 *              u13.0, default 0.
2115 * @reserved1: reserved
2116 * @neg_0: Gain for negative edge in dark area, u13.0, range [0, 16], default 0.
2117 * @reserved2: reserved
2118 * @neg_delta: Gain for negative edge in bright area. neg_0 + neg_delta <=16
2119 *              u13.0, default 0.
2120 * @reserved3: reserved
2121 *
2122 * Coring is a simple soft thresholding technique.
2123 */
2124struct ipu3_uapi_yuvp1_y_ee_nr_fc_coring_config {
2125        __u32 pos_0:13;
2126        __u32 reserved0:3;
2127        __u32 pos_delta:13;
2128        __u32 reserved1:3;
2129        __u32 neg_0:13;
2130        __u32 reserved2:3;
2131        __u32 neg_delta:13;
2132        __u32 reserved3:3;
2133} __packed;
2134
2135/**
2136 * struct ipu3_uapi_yuvp1_y_ee_nr_config - Edge enhancement and noise reduction
2137 *
2138 * @lpf: low-pass filter config. See &ipu3_uapi_yuvp1_y_ee_nr_lpf_config
2139 * @sense: sensitivity config. See &ipu3_uapi_yuvp1_y_ee_nr_sense_config
2140 * @gain: gain config as defined in &ipu3_uapi_yuvp1_y_ee_nr_gain_config
2141 * @clip: clip config as defined in &ipu3_uapi_yuvp1_y_ee_nr_clip_config
2142 * @frng: fringe config as defined in &ipu3_uapi_yuvp1_y_ee_nr_frng_config
2143 * @diag: diagonal edge config. See &ipu3_uapi_yuvp1_y_ee_nr_diag_config
2144 * @fc_coring: coring config for fringe control. See
2145 *             &ipu3_uapi_yuvp1_y_ee_nr_fc_coring_config
2146 */
2147struct ipu3_uapi_yuvp1_y_ee_nr_config {
2148        struct ipu3_uapi_yuvp1_y_ee_nr_lpf_config lpf;
2149        struct ipu3_uapi_yuvp1_y_ee_nr_sense_config sense;
2150        struct ipu3_uapi_yuvp1_y_ee_nr_gain_config gain;
2151        struct ipu3_uapi_yuvp1_y_ee_nr_clip_config clip;
2152        struct ipu3_uapi_yuvp1_y_ee_nr_frng_config frng;
2153        struct ipu3_uapi_yuvp1_y_ee_nr_diag_config diag;
2154        struct ipu3_uapi_yuvp1_y_ee_nr_fc_coring_config fc_coring;
2155} __packed;
2156
2157/* Total Color Correction */
2158
2159/**
2160 * struct ipu3_uapi_yuvp2_tcc_gen_control_static_config - Total color correction
2161 *                              general control config
2162 *
2163 * @en: 0 - TCC disabled. Output = input 1 - TCC enabled.
2164 * @blend_shift:        blend shift, Range[3, 4], default NA.
2165 * @gain_according_to_y_only:   0: Gain is calculated according to YUV,
2166 *                              1: Gain is calculated according to Y only
2167 * @reserved0: reserved
2168 * @gamma:      Final blending coefficients. Values[-16, 16], default NA.
2169 * @reserved1: reserved
2170 * @delta:      Final blending coefficients. Values[-16, 16], default NA.
2171 * @reserved2: reserved
2172 */
2173struct ipu3_uapi_yuvp2_tcc_gen_control_static_config {
2174        __u32 en:1;
2175        __u32 blend_shift:3;
2176        __u32 gain_according_to_y_only:1;
2177        __u32 reserved0:11;
2178        __s32 gamma:5;
2179        __u32 reserved1:3;
2180        __s32 delta:5;
2181        __u32 reserved2:3;
2182} __packed;
2183
2184/**
2185 * struct ipu3_uapi_yuvp2_tcc_macc_elem_static_config - Total color correction
2186 *                              multi-axis color control (MACC) config
2187 *
2188 * @a: a coefficient for 2x2 MACC conversion matrix.
2189 * @reserved0: reserved
2190 * @b: b coefficient  2x2 MACC conversion matrix.
2191 * @reserved1: reserved
2192 * @c: c coefficient for 2x2 MACC conversion matrix.
2193 * @reserved2: reserved
2194 * @d: d coefficient for 2x2 MACC conversion matrix.
2195 * @reserved3: reserved
2196 */
2197struct ipu3_uapi_yuvp2_tcc_macc_elem_static_config {
2198        __s32 a:12;
2199        __u32 reserved0:4;
2200        __s32 b:12;
2201        __u32 reserved1:4;
2202        __s32 c:12;
2203        __u32 reserved2:4;
2204        __s32 d:12;
2205        __u32 reserved3:4;
2206} __packed;
2207
2208/**
2209 * struct ipu3_uapi_yuvp2_tcc_macc_table_static_config - Total color correction
2210 *                              multi-axis color control (MACC) table array
2211 *
2212 * @entries: config for multi axis color correction, as specified by
2213 *           &ipu3_uapi_yuvp2_tcc_macc_elem_static_config
2214 */
2215struct ipu3_uapi_yuvp2_tcc_macc_table_static_config {
2216        struct ipu3_uapi_yuvp2_tcc_macc_elem_static_config
2217                entries[IPU3_UAPI_YUVP2_TCC_MACC_TABLE_ELEMENTS];
2218} __packed;
2219
2220/**
2221 * struct ipu3_uapi_yuvp2_tcc_inv_y_lut_static_config - Total color correction
2222 *                              inverse y lookup table
2223 *
2224 * @entries: lookup table for inverse y estimation, and use it to estimate the
2225 *           ratio between luma and chroma. Chroma by approximate the absolute
2226 *           value of the radius on the chroma plane (R = sqrt(u^2+v^2) ) and
2227 *           luma by approximate by 1/Y.
2228 */
2229struct ipu3_uapi_yuvp2_tcc_inv_y_lut_static_config {
2230        __u16 entries[IPU3_UAPI_YUVP2_TCC_INV_Y_LUT_ELEMENTS];
2231} __packed;
2232
2233/**
2234 * struct ipu3_uapi_yuvp2_tcc_gain_pcwl_lut_static_config - Total color
2235 *                                      correction lookup table for PCWL
2236 *
2237 * @entries: lookup table for gain piece wise linear transformation (PCWL)
2238 */
2239struct ipu3_uapi_yuvp2_tcc_gain_pcwl_lut_static_config {
2240        __u16 entries[IPU3_UAPI_YUVP2_TCC_GAIN_PCWL_LUT_ELEMENTS];
2241} __packed;
2242
2243/**
2244 * struct ipu3_uapi_yuvp2_tcc_r_sqr_lut_static_config - Total color correction
2245 *                              lookup table for r square root
2246 *
2247 * @entries: lookup table for r square root estimation
2248 */
2249struct ipu3_uapi_yuvp2_tcc_r_sqr_lut_static_config {
2250        __s16 entries[IPU3_UAPI_YUVP2_TCC_R_SQR_LUT_ELEMENTS];
2251} __packed;
2252
2253/**
2254 * struct ipu3_uapi_yuvp2_tcc_static_config- Total color correction static
2255 *
2256 * @gen_control: general config for Total Color Correction
2257 * @macc_table: config for multi axis color correction
2258 * @inv_y_lut: lookup table for inverse y estimation
2259 * @gain_pcwl: lookup table for gain PCWL
2260 * @r_sqr_lut: lookup table for r square root estimation.
2261 */
2262struct ipu3_uapi_yuvp2_tcc_static_config {
2263        struct ipu3_uapi_yuvp2_tcc_gen_control_static_config gen_control;
2264        struct ipu3_uapi_yuvp2_tcc_macc_table_static_config macc_table;
2265        struct ipu3_uapi_yuvp2_tcc_inv_y_lut_static_config inv_y_lut;
2266        struct ipu3_uapi_yuvp2_tcc_gain_pcwl_lut_static_config gain_pcwl;
2267        struct ipu3_uapi_yuvp2_tcc_r_sqr_lut_static_config r_sqr_lut;
2268} __packed;
2269
2270/* Advanced Noise Reduction related structs */
2271
2272/*
2273 * struct ipu3_uapi_anr_alpha - Advanced noise reduction alpha
2274 *
2275 * Tunable parameters that are subject to modification according to the
2276 * total gain used.
2277 */
2278struct ipu3_uapi_anr_alpha {
2279        __u16 gr;
2280        __u16 r;
2281        __u16 b;
2282        __u16 gb;
2283        __u16 dc_gr;
2284        __u16 dc_r;
2285        __u16 dc_b;
2286        __u16 dc_gb;
2287} __packed;
2288
2289/*
2290 * struct ipu3_uapi_anr_beta - Advanced noise reduction beta
2291 *
2292 * Tunable parameters that are subject to modification according to the
2293 * total gain used.
2294 */
2295struct ipu3_uapi_anr_beta {
2296        __u16 beta_gr;
2297        __u16 beta_r;
2298        __u16 beta_b;
2299        __u16 beta_gb;
2300} __packed;
2301
2302/*
2303 * struct ipu3_uapi_anr_plane_color - Advanced noise reduction per plane R, Gr,
2304 *                                    Gb and B register settings
2305 *
2306 * Tunable parameters that are subject to modification according to the
2307 * total gain used.
2308 */
2309struct ipu3_uapi_anr_plane_color {
2310        __u16 reg_w_gr[16];
2311        __u16 reg_w_r[16];
2312        __u16 reg_w_b[16];
2313        __u16 reg_w_gb[16];
2314} __packed;
2315
2316/**
2317 * struct ipu3_uapi_anr_transform_config - Advanced noise reduction transform
2318 *
2319 * @enable: advanced noise reduction enabled.
2320 * @adaptive_treshhold_en: On IPU3, adaptive threshold is always enabled.
2321 * @reserved1: reserved
2322 * @reserved2: reserved
2323 * @alpha: using following defaults:
2324 *              13, 13, 13, 13, 0, 0, 0, 0
2325 *              11, 11, 11, 11, 0, 0, 0, 0
2326 *              14,  14, 14, 14, 0, 0, 0, 0
2327 * @beta: use following defaults:
2328 *              24, 24, 24, 24
2329 *              21, 20, 20, 21
2330 *              25, 25, 25, 25
2331 * @color: use defaults defined in driver/media/pci/intel/ipu3-tables.c
2332 * @sqrt_lut: 11 bits per element, values =
2333 *                                      [724 768 810 849 887
2334 *                                      923 958 991 1024 1056
2335 *                                      1116 1145 1173 1201 1086
2336 *                                      1228 1254 1280 1305 1330
2337 *                                      1355 1379 1402 1425 1448]
2338 * @xreset: Reset value of X for r^2 calculation Value: col_start-X_center
2339 *      Constraint: Xreset + FrameWdith=4095 Xreset= -4095, default -1632.
2340 * @reserved3: reserved
2341 * @yreset: Reset value of Y for r^2 calculation Value: row_start-Y_center
2342 *       Constraint: Yreset + FrameHeight=4095 Yreset= -4095, default -1224.
2343 * @reserved4: reserved
2344 * @x_sqr_reset: Reset value of X^2 for r^2 calculation Value = (Xreset)^2
2345 * @r_normfactor: Normalization factor for R. Default 14.
2346 * @reserved5: reserved
2347 * @y_sqr_reset: Reset value of Y^2 for r^2 calculation Value = (Yreset)^2
2348 * @gain_scale: Parameter describing shading gain as a function of distance
2349 *              from the image center.
2350 *              A single value per frame, loaded by the driver. Default 115.
2351 */
2352struct ipu3_uapi_anr_transform_config {
2353        __u32 enable:1;                 /* 0 or 1, disabled or enabled */
2354        __u32 adaptive_treshhold_en:1;  /* On IPU3, always enabled */
2355
2356        __u32 reserved1:30;
2357        __u8 reserved2[44];
2358
2359        struct ipu3_uapi_anr_alpha alpha[3];
2360        struct ipu3_uapi_anr_beta beta[3];
2361        struct ipu3_uapi_anr_plane_color color[3];
2362
2363        __u16 sqrt_lut[IPU3_UAPI_ANR_LUT_SIZE]; /* 11 bits per element */
2364
2365        __s16 xreset:13;
2366        __u16 reserved3:3;
2367        __s16 yreset:13;
2368        __u16 reserved4:3;
2369
2370        __u32 x_sqr_reset:24;
2371        __u32 r_normfactor:5;
2372        __u32 reserved5:3;
2373
2374        __u32 y_sqr_reset:24;
2375        __u32 gain_scale:8;
2376} __packed;
2377
2378/**
2379 * struct ipu3_uapi_anr_stitch_pyramid - ANR stitch pyramid
2380 *
2381 * @entry0: pyramid LUT entry0, range [0x0, 0x3f]
2382 * @entry1: pyramid LUT entry1, range [0x0, 0x3f]
2383 * @entry2: pyramid LUT entry2, range [0x0, 0x3f]
2384 * @reserved: reserved
2385 */
2386struct ipu3_uapi_anr_stitch_pyramid {
2387        __u32 entry0:6;
2388        __u32 entry1:6;
2389        __u32 entry2:6;
2390        __u32 reserved:14;
2391} __packed;
2392
2393/**
2394 * struct ipu3_uapi_anr_stitch_config - ANR stitch config
2395 *
2396 * @anr_stitch_en: enable stitch. Enabled with 1.
2397 * @reserved: reserved
2398 * @pyramid: pyramid table as defined by &ipu3_uapi_anr_stitch_pyramid
2399 *              default values:
2400 *              { 1, 3, 5 }, { 7, 7, 5 }, { 3, 1, 3 },
2401 *              { 9, 15, 21 }, { 21, 15, 9 }, { 3, 5, 15 },
2402 *              { 25, 35, 35 }, { 25, 15, 5 }, { 7, 21, 35 },
2403 *              { 49, 49, 35 }, { 21, 7, 7 }, { 21, 35, 49 },
2404 *              { 49, 35, 21 }, { 7, 5, 15 }, { 25, 35, 35 },
2405 *              { 25, 15, 5 }, { 3, 9, 15 }, { 21, 21, 15 },
2406 *              { 9, 3, 1 }, { 3, 5, 7 }, { 7, 5, 3}, { 1 }
2407 */
2408struct ipu3_uapi_anr_stitch_config {
2409        __u32 anr_stitch_en;
2410        __u8 reserved[44];
2411        struct ipu3_uapi_anr_stitch_pyramid pyramid[IPU3_UAPI_ANR_PYRAMID_SIZE];
2412} __packed;
2413
2414/**
2415 * struct ipu3_uapi_anr_config - ANR config
2416 *
2417 * @transform:  advanced noise reduction transform config as specified by
2418 *              &ipu3_uapi_anr_transform_config
2419 * @stitch: create 4x4 patch from 4 surrounding 8x8 patches.
2420 */
2421struct ipu3_uapi_anr_config {
2422        struct ipu3_uapi_anr_transform_config transform __attribute__((aligned(32)));
2423        struct ipu3_uapi_anr_stitch_config stitch __attribute__((aligned(32)));
2424} __packed;
2425
2426/**
2427 * struct ipu3_uapi_acc_param - Accelerator cluster parameters
2428 *
2429 * ACC refers to the HW cluster containing all Fixed Functions (FFs). Each FF
2430 * implements a specific algorithm.
2431 *
2432 * @bnr:        parameters for bayer noise reduction static config. See
2433 *              &ipu3_uapi_bnr_static_config
2434 * @green_disparity:    disparity static config between gr and gb channel.
2435 *                      See &ipu3_uapi_bnr_static_config_green_disparity
2436 * @dm: de-mosaic config. See &ipu3_uapi_dm_config
2437 * @ccm:        color correction matrix. See &ipu3_uapi_ccm_mat_config
2438 * @gamma:      gamma correction config. See &ipu3_uapi_gamma_config
2439 * @csc:        color space conversion matrix. See &ipu3_uapi_csc_mat_config
2440 * @cds:        color down sample config. See &ipu3_uapi_cds_params
2441 * @shd:        lens shading correction config. See &ipu3_uapi_shd_config
2442 * @iefd:       Image enhancement filter and denoise config.
2443 *              &ipu3_uapi_yuvp1_iefd_config
2444 * @yds_c0:     y down scaler config. &ipu3_uapi_yuvp1_yds_config
2445 * @chnr_c0:    chroma noise reduction config. &ipu3_uapi_yuvp1_chnr_config
2446 * @y_ee_nr:    y edge enhancement and noise reduction config.
2447 *              &ipu3_uapi_yuvp1_y_ee_nr_config
2448 * @yds:        y down scaler config. See &ipu3_uapi_yuvp1_yds_config
2449 * @chnr:       chroma noise reduction config. See &ipu3_uapi_yuvp1_chnr_config
2450 * @reserved1: reserved
2451 * @yds2:       y channel down scaler config. See &ipu3_uapi_yuvp1_yds_config
2452 * @tcc:        total color correction config as defined in struct
2453 *              &ipu3_uapi_yuvp2_tcc_static_config
2454 * @reserved2: reserved
2455 * @anr:        advanced noise reduction config.See &ipu3_uapi_anr_config
2456 * @awb_fr:     AWB filter response config. See ipu3_uapi_awb_fr_config
2457 * @ae: auto exposure config  As specified by &ipu3_uapi_ae_config
2458 * @af: auto focus config. As specified by &ipu3_uapi_af_config
2459 * @awb:        auto white balance config. As specified by &ipu3_uapi_awb_config
2460 */
2461struct ipu3_uapi_acc_param {
2462        struct ipu3_uapi_bnr_static_config bnr;
2463        struct ipu3_uapi_bnr_static_config_green_disparity
2464                                green_disparity __attribute__((aligned(32)));
2465        struct ipu3_uapi_dm_config dm __attribute__((aligned(32)));
2466        struct ipu3_uapi_ccm_mat_config ccm __attribute__((aligned(32)));
2467        struct ipu3_uapi_gamma_config gamma __attribute__((aligned(32)));
2468        struct ipu3_uapi_csc_mat_config csc __attribute__((aligned(32)));
2469        struct ipu3_uapi_cds_params cds __attribute__((aligned(32)));
2470        struct ipu3_uapi_shd_config shd __attribute__((aligned(32)));
2471        struct ipu3_uapi_yuvp1_iefd_config iefd __attribute__((aligned(32)));
2472        struct ipu3_uapi_yuvp1_yds_config yds_c0 __attribute__((aligned(32)));
2473        struct ipu3_uapi_yuvp1_chnr_config chnr_c0 __attribute__((aligned(32)));
2474        struct ipu3_uapi_yuvp1_y_ee_nr_config y_ee_nr __attribute__((aligned(32)));
2475        struct ipu3_uapi_yuvp1_yds_config yds __attribute__((aligned(32)));
2476        struct ipu3_uapi_yuvp1_chnr_config chnr __attribute__((aligned(32)));
2477        struct ipu3_uapi_yuvp1_yds_config yds2 __attribute__((aligned(32)));
2478        struct ipu3_uapi_yuvp2_tcc_static_config tcc __attribute__((aligned(32)));
2479        struct ipu3_uapi_anr_config anr;
2480        struct ipu3_uapi_awb_fr_config_s awb_fr __attribute__((aligned(32)));
2481        struct ipu3_uapi_ae_config ae;
2482        struct ipu3_uapi_af_config_s af;
2483        struct ipu3_uapi_awb_config awb;
2484} __packed;
2485
2486/**
2487 * struct ipu3_uapi_isp_lin_vmem_params - Linearization parameters
2488 *
2489 * @lin_lutlow_gr: linearization look-up table for GR channel interpolation.
2490 * @lin_lutlow_r: linearization look-up table for R channel interpolation.
2491 * @lin_lutlow_b: linearization look-up table for B channel interpolation.
2492 * @lin_lutlow_gb: linearization look-up table for GB channel interpolation.
2493 *                      lin_lutlow_gr / lin_lutlow_r / lin_lutlow_b /
2494 *                      lin_lutlow_gb <= LIN_MAX_VALUE - 1.
2495 * @lin_lutdif_gr:      lin_lutlow_gr[i+1] - lin_lutlow_gr[i].
2496 * @lin_lutdif_r:       lin_lutlow_r[i+1] - lin_lutlow_r[i].
2497 * @lin_lutdif_b:       lin_lutlow_b[i+1] - lin_lutlow_b[i].
2498 * @lin_lutdif_gb:      lin_lutlow_gb[i+1] - lin_lutlow_gb[i].
2499 */
2500struct ipu3_uapi_isp_lin_vmem_params {
2501        __s16 lin_lutlow_gr[IPU3_UAPI_LIN_LUT_SIZE];
2502        __s16 lin_lutlow_r[IPU3_UAPI_LIN_LUT_SIZE];
2503        __s16 lin_lutlow_b[IPU3_UAPI_LIN_LUT_SIZE];
2504        __s16 lin_lutlow_gb[IPU3_UAPI_LIN_LUT_SIZE];
2505        __s16 lin_lutdif_gr[IPU3_UAPI_LIN_LUT_SIZE];
2506        __s16 lin_lutdif_r[IPU3_UAPI_LIN_LUT_SIZE];
2507        __s16 lin_lutdif_b[IPU3_UAPI_LIN_LUT_SIZE];
2508        __s16 lin_lutdif_gb[IPU3_UAPI_LIN_LUT_SIZE];
2509} __packed;
2510
2511/* Temporal Noise Reduction */
2512
2513/**
2514 * struct ipu3_uapi_isp_tnr3_vmem_params - Temporal noise reduction vector
2515 *                                         memory parameters
2516 *
2517 * @slope: slope setting in interpolation curve for temporal noise reduction.
2518 * @reserved1: reserved
2519 * @sigma: knee point setting in interpolation curve for temporal
2520 *         noise reduction.
2521 * @reserved2: reserved
2522 */
2523struct ipu3_uapi_isp_tnr3_vmem_params {
2524        __u16 slope[IPU3_UAPI_ISP_TNR3_VMEM_LEN];
2525        __u16 reserved1[IPU3_UAPI_ISP_VEC_ELEMS
2526                                                - IPU3_UAPI_ISP_TNR3_VMEM_LEN];
2527        __u16 sigma[IPU3_UAPI_ISP_TNR3_VMEM_LEN];
2528        __u16 reserved2[IPU3_UAPI_ISP_VEC_ELEMS
2529                                                - IPU3_UAPI_ISP_TNR3_VMEM_LEN];
2530} __packed;
2531
2532/**
2533 * struct ipu3_uapi_isp_tnr3_params - Temporal noise reduction v3 parameters
2534 *
2535 * @knee_y1: Knee point TNR3 assumes standard deviation of Y,U and
2536 *      V at Y1 are TnrY1_Sigma_Y, U and V.
2537 * @knee_y2: Knee point TNR3 assumes standard deviation of Y,U and
2538 *              V at Y2 are TnrY2_Sigma_Y, U and V.
2539 * @maxfb_y: Max feedback gain for Y
2540 * @maxfb_u: Max feedback gain for U
2541 * @maxfb_v: Max feedback gain for V
2542 * @round_adj_y: rounding Adjust for Y
2543 * @round_adj_u: rounding Adjust for U
2544 * @round_adj_v: rounding Adjust for V
2545 * @ref_buf_select: selection of the reference frame buffer to be used.
2546 */
2547struct ipu3_uapi_isp_tnr3_params {
2548        __u32 knee_y1;
2549        __u32 knee_y2;
2550        __u32 maxfb_y;
2551        __u32 maxfb_u;
2552        __u32 maxfb_v;
2553        __u32 round_adj_y;
2554        __u32 round_adj_u;
2555        __u32 round_adj_v;
2556        __u32 ref_buf_select;
2557} __packed;
2558
2559/* Extreme Noise Reduction version 3 */
2560
2561/**
2562 * struct ipu3_uapi_isp_xnr3_vmem_params - Extreme noise reduction v3
2563 *                                         vector memory parameters
2564 *
2565 * @x: xnr3 parameters.
2566 * @a: xnr3 parameters.
2567 * @b: xnr3 parameters.
2568 * @c: xnr3 parameters.
2569 */
2570struct ipu3_uapi_isp_xnr3_vmem_params {
2571        __u16 x[IPU3_UAPI_ISP_VEC_ELEMS];
2572        __u16 a[IPU3_UAPI_ISP_VEC_ELEMS];
2573        __u16 b[IPU3_UAPI_ISP_VEC_ELEMS];
2574        __u16 c[IPU3_UAPI_ISP_VEC_ELEMS];
2575} __packed;
2576
2577/**
2578 * struct ipu3_uapi_xnr3_alpha_params - Extreme noise reduction v3
2579 *                                      alpha tuning parameters
2580 *
2581 * @y0: Sigma for Y range similarity in dark area.
2582 * @u0: Sigma for U range similarity in dark area.
2583 * @v0: Sigma for V range similarity in dark area.
2584 * @ydiff: Sigma difference for Y between bright area and dark area.
2585 * @udiff: Sigma difference for U between bright area and dark area.
2586 * @vdiff: Sigma difference for V between bright area and dark area.
2587 */
2588struct ipu3_uapi_xnr3_alpha_params {
2589        __u32 y0;
2590        __u32 u0;
2591        __u32 v0;
2592        __u32 ydiff;
2593        __u32 udiff;
2594        __u32 vdiff;
2595} __packed;
2596
2597/**
2598 * struct ipu3_uapi_xnr3_coring_params - Extreme noise reduction v3
2599 *                                       coring parameters
2600 *
2601 * @u0: Coring Threshold of U channel in dark area.
2602 * @v0: Coring Threshold of V channel in dark area.
2603 * @udiff: Threshold difference of U channel between bright and dark area.
2604 * @vdiff: Threshold difference of V channel between bright and dark area.
2605 */
2606struct ipu3_uapi_xnr3_coring_params {
2607        __u32 u0;
2608        __u32 v0;
2609        __u32 udiff;
2610        __u32 vdiff;
2611} __packed;
2612
2613/**
2614 * struct ipu3_uapi_xnr3_blending_params - Blending factor
2615 *
2616 * @strength: The factor for blending output with input. This is tuning
2617 *            parameterHigher values lead to more aggressive XNR operation.
2618 */
2619struct ipu3_uapi_xnr3_blending_params {
2620        __u32 strength;
2621} __packed;
2622
2623/**
2624 * struct ipu3_uapi_isp_xnr3_params - Extreme noise reduction v3 parameters
2625 *
2626 * @alpha: parameters for xnr3 alpha. See &ipu3_uapi_xnr3_alpha_params
2627 * @coring: parameters for xnr3 coring. See &ipu3_uapi_xnr3_coring_params
2628 * @blending: parameters for xnr3 blending. See &ipu3_uapi_xnr3_blending_params
2629 */
2630struct ipu3_uapi_isp_xnr3_params {
2631        struct ipu3_uapi_xnr3_alpha_params alpha;
2632        struct ipu3_uapi_xnr3_coring_params coring;
2633        struct ipu3_uapi_xnr3_blending_params blending;
2634} __packed;
2635
2636/***** Obgrid (optical black level compensation) table entry *****/
2637
2638/**
2639 * struct ipu3_uapi_obgrid_param - Optical black level compensation parameters
2640 *
2641 * @gr: Grid table values for color GR
2642 * @r: Grid table values for color R
2643 * @b: Grid table values for color B
2644 * @gb: Grid table values for color GB
2645 *
2646 * Black level is different for red, green, and blue channels. So black level
2647 * compensation is different per channel.
2648 */
2649struct ipu3_uapi_obgrid_param {
2650        __u16 gr;
2651        __u16 r;
2652        __u16 b;
2653        __u16 gb;
2654} __packed;
2655
2656/******************* V4L2_META_FMT_IPU3_PARAMS *******************/
2657
2658/**
2659 * struct ipu3_uapi_flags - bits to indicate which pipeline needs update
2660 *
2661 * @gdc: 0 = no update, 1 = update.
2662 * @obgrid: 0 = no update, 1 = update.
2663 * @reserved1: Not used.
2664 * @acc_bnr: 0 = no update, 1 = update.
2665 * @acc_green_disparity: 0 = no update, 1 = update.
2666 * @acc_dm: 0 = no update, 1 = update.
2667 * @acc_ccm: 0 = no update, 1 = update.
2668 * @acc_gamma: 0 = no update, 1 = update.
2669 * @acc_csc: 0 = no update, 1 = update.
2670 * @acc_cds: 0 = no update, 1 = update.
2671 * @acc_shd: 0 = no update, 1 = update.
2672 * @reserved2: Not used.
2673 * @acc_iefd: 0 = no update, 1 = update.
2674 * @acc_yds_c0: 0 = no update, 1 = update.
2675 * @acc_chnr_c0: 0 = no update, 1 = update.
2676 * @acc_y_ee_nr: 0 = no update, 1 = update.
2677 * @acc_yds: 0 = no update, 1 = update.
2678 * @acc_chnr: 0 = no update, 1 = update.
2679 * @acc_ytm: 0 = no update, 1 = update.
2680 * @acc_yds2: 0 = no update, 1 = update.
2681 * @acc_tcc: 0 = no update, 1 = update.
2682 * @acc_dpc: 0 = no update, 1 = update.
2683 * @acc_bds: 0 = no update, 1 = update.
2684 * @acc_anr: 0 = no update, 1 = update.
2685 * @acc_awb_fr: 0 = no update, 1 = update.
2686 * @acc_ae: 0 = no update, 1 = update.
2687 * @acc_af: 0 = no update, 1 = update.
2688 * @acc_awb: 0 = no update, 1 = update.
2689 * @__acc_osys: 0 = no update, 1 = update.
2690 * @reserved3: Not used.
2691 * @lin_vmem_params: 0 = no update, 1 = update.
2692 * @tnr3_vmem_params: 0 = no update, 1 = update.
2693 * @xnr3_vmem_params: 0 = no update, 1 = update.
2694 * @tnr3_dmem_params: 0 = no update, 1 = update.
2695 * @xnr3_dmem_params: 0 = no update, 1 = update.
2696 * @reserved4: Not used.
2697 * @obgrid_param: 0 = no update, 1 = update.
2698 * @reserved5: Not used.
2699 */
2700struct ipu3_uapi_flags {
2701        __u32 gdc:1;
2702        __u32 obgrid:1;
2703        __u32 reserved1:30;
2704
2705        __u32 acc_bnr:1;
2706        __u32 acc_green_disparity:1;
2707        __u32 acc_dm:1;
2708        __u32 acc_ccm:1;
2709        __u32 acc_gamma:1;
2710        __u32 acc_csc:1;
2711        __u32 acc_cds:1;
2712        __u32 acc_shd:1;
2713        __u32 reserved2:2;
2714        __u32 acc_iefd:1;
2715        __u32 acc_yds_c0:1;
2716        __u32 acc_chnr_c0:1;
2717        __u32 acc_y_ee_nr:1;
2718        __u32 acc_yds:1;
2719        __u32 acc_chnr:1;
2720        __u32 acc_ytm:1;
2721        __u32 acc_yds2:1;
2722        __u32 acc_tcc:1;
2723        __u32 acc_dpc:1;
2724        __u32 acc_bds:1;
2725        __u32 acc_anr:1;
2726        __u32 acc_awb_fr:1;
2727        __u32 acc_ae:1;
2728        __u32 acc_af:1;
2729        __u32 acc_awb:1;
2730        __u32 reserved3:4;
2731
2732        __u32 lin_vmem_params:1;
2733        __u32 tnr3_vmem_params:1;
2734        __u32 xnr3_vmem_params:1;
2735        __u32 tnr3_dmem_params:1;
2736        __u32 xnr3_dmem_params:1;
2737        __u32 reserved4:1;
2738        __u32 obgrid_param:1;
2739        __u32 reserved5:25;
2740} __packed;
2741
2742/**
2743 * struct ipu3_uapi_params - V4L2_META_FMT_IPU3_PARAMS
2744 *
2745 * @use:        select which parameters to apply, see &ipu3_uapi_flags
2746 * @acc_param:  ACC parameters, as specified by &ipu3_uapi_acc_param
2747 * @lin_vmem_params:    linearization VMEM, as specified by
2748 *                      &ipu3_uapi_isp_lin_vmem_params
2749 * @tnr3_vmem_params:   tnr3 VMEM as specified by
2750 *                      &ipu3_uapi_isp_tnr3_vmem_params
2751 * @xnr3_vmem_params:   xnr3 VMEM as specified by
2752 *                      &ipu3_uapi_isp_xnr3_vmem_params
2753 * @tnr3_dmem_params:   tnr3 DMEM as specified by &ipu3_uapi_isp_tnr3_params
2754 * @xnr3_dmem_params:   xnr3 DMEM as specified by &ipu3_uapi_isp_xnr3_params
2755 * @obgrid_param:       obgrid parameters as specified by
2756 *                      &ipu3_uapi_obgrid_param
2757 *
2758 * The video queue "parameters" is of format V4L2_META_FMT_IPU3_PARAMS.
2759 * This is a "single plane" v4l2_meta_format using V4L2_BUF_TYPE_META_OUTPUT.
2760 *
2761 * struct ipu3_uapi_params as defined below contains a lot of parameters and
2762 * ipu3_uapi_flags selects which parameters to apply.
2763 */
2764struct ipu3_uapi_params {
2765        /* Flags which of the settings below are to be applied */
2766        struct ipu3_uapi_flags use __attribute__((aligned(32)));
2767
2768        /* Accelerator cluster parameters */
2769        struct ipu3_uapi_acc_param acc_param;
2770
2771        /* ISP vector address space parameters */
2772        struct ipu3_uapi_isp_lin_vmem_params lin_vmem_params;
2773        struct ipu3_uapi_isp_tnr3_vmem_params tnr3_vmem_params;
2774        struct ipu3_uapi_isp_xnr3_vmem_params xnr3_vmem_params;
2775
2776        /* ISP data memory (DMEM) parameters */
2777        struct ipu3_uapi_isp_tnr3_params tnr3_dmem_params;
2778        struct ipu3_uapi_isp_xnr3_params xnr3_dmem_params;
2779
2780        /* Optical black level compensation */
2781        struct ipu3_uapi_obgrid_param obgrid_param;
2782} __packed;
2783
2784#endif /* __IPU3_UAPI_H */
2785