1 /* Copyright (c) 2012-2013, The Linux Foundation. All rights reserved. 2 * 3 * Redistribution and use in source and binary forms, with or without 4 * modification, are permitted provided that the following conditions are 5 * met: 6 * * Redistributions of source code must retain the above copyright 7 * notice, this list of conditions and the following disclaimer. 8 * * Redistributions in binary form must reproduce the above 9 * copyright notice, this list of conditions and the following 10 * disclaimer in the documentation and/or other materials provided 11 * with the distribution. 12 * * Neither the name of The Linux Foundation nor the names of its 13 * contributors may be used to endorse or promote products derived 14 * from this software without specific prior written permission. 15 * 16 * THIS SOFTWARE IS PROVIDED "AS IS" AND ANY EXPRESS OR IMPLIED 17 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF 18 * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT 19 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS 20 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR 21 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF 22 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR 23 * BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, 24 * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE 25 * OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN 26 * IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 27 * 28 */ 29 30 #ifndef __QCAMERA_TYPES_H__ 31 #define __QCAMERA_TYPES_H__ 32 33 #include <stdint.h> 34 #include <pthread.h> 35 #include <inttypes.h> 36 #include <media/msmb_camera.h> 37 38 #define CAM_MAX_NUM_BUFS_PER_STREAM 24 39 #define MAX_METADATA_PAYLOAD_SIZE 1024 40 41 #define CEILING32(X) (((X) + 0x0001F) & 0xFFFFFFE0) 42 #define CEILING16(X) (((X) + 0x000F) & 0xFFF0) 43 #define CEILING4(X) (((X) + 0x0003) & 0xFFFC) 44 #define CEILING2(X) (((X) + 0x0001) & 0xFFFE) 45 46 #define MAX_ZOOMS_CNT 64 47 #define MAX_SIZES_CNT 24 48 #define MAX_EXP_BRACKETING_LENGTH 32 49 #define MAX_ROI 5 50 #define MAX_STREAM_NUM_IN_BUNDLE 4 51 #define MAX_NUM_STREAMS 8 52 53 typedef enum { 54 CAM_HAL_V1 = 1, 55 CAM_HAL_V3 = 3 56 } cam_hal_version_t; 57 58 typedef enum { 59 CAM_STATUS_SUCCESS, /* Operation Succeded */ 60 CAM_STATUS_FAILED, /* Failure in doing operation */ 61 CAM_STATUS_INVALID_PARM, /* Inavlid parameter provided */ 62 CAM_STATUS_NOT_SUPPORTED, /* Parameter/operation not supported */ 63 CAM_STATUS_ACCEPTED, /* Parameter accepted */ 64 CAM_STATUS_MAX, 65 } cam_status_t; 66 67 typedef enum { 68 CAM_POSITION_BACK, 69 CAM_POSITION_FRONT 70 } cam_position_t; 71 72 typedef enum { 73 CAM_FLICKER_NONE, 74 CAM_FLICKER_50_HZ, 75 CAM_FLICKER_60_HZ 76 } cam_flicker_t; 77 78 typedef enum { 79 CAM_FORMAT_JPEG = 0, 80 CAM_FORMAT_YUV_420_NV12 = 1, 81 CAM_FORMAT_YUV_420_NV21, 82 CAM_FORMAT_YUV_420_NV21_ADRENO, 83 CAM_FORMAT_YUV_420_YV12, 84 CAM_FORMAT_YUV_422_NV16, 85 CAM_FORMAT_YUV_422_NV61, 86 CAM_FORMAT_YUV_420_NV12_VENUS, 87 88 /* Please note below are the defintions for raw image. 89 * Any format other than raw image format should be declared 90 * before this line!!!!!!!!!!!!! */ 91 92 /* Note: For all raw formats, each scanline needs to be 16 bytes aligned */ 93 94 /* Packed YUV/YVU raw format, 16 bpp: 8 bits Y and 8 bits UV. 95 * U and V are interleaved with Y: YUYV or YVYV */ 96 CAM_FORMAT_YUV_RAW_8BIT_YUYV, 97 CAM_FORMAT_YUV_RAW_8BIT_YVYU, 98 CAM_FORMAT_YUV_RAW_8BIT_UYVY, 99 CAM_FORMAT_YUV_RAW_8BIT_VYUY, 100 101 /* QCOM RAW formats where data is packed into 64bit word. 102 * 8BPP: 1 64-bit word contains 8 pixels p0 - p7, where p0 is 103 * stored at LSB. 104 * 10BPP: 1 64-bit word contains 6 pixels p0 - p5, where most 105 * significant 4 bits are set to 0. P0 is stored at LSB. 106 * 12BPP: 1 64-bit word contains 5 pixels p0 - p4, where most 107 * significant 4 bits are set to 0. P0 is stored at LSB. */ 108 CAM_FORMAT_BAYER_QCOM_RAW_8BPP_GBRG, 109 CAM_FORMAT_BAYER_QCOM_RAW_8BPP_GRBG, 110 CAM_FORMAT_BAYER_QCOM_RAW_8BPP_RGGB, 111 CAM_FORMAT_BAYER_QCOM_RAW_8BPP_BGGR, 112 CAM_FORMAT_BAYER_QCOM_RAW_10BPP_GBRG, 113 CAM_FORMAT_BAYER_QCOM_RAW_10BPP_GRBG, 114 CAM_FORMAT_BAYER_QCOM_RAW_10BPP_RGGB, 115 CAM_FORMAT_BAYER_QCOM_RAW_10BPP_BGGR, 116 CAM_FORMAT_BAYER_QCOM_RAW_12BPP_GBRG, 117 CAM_FORMAT_BAYER_QCOM_RAW_12BPP_GRBG, 118 CAM_FORMAT_BAYER_QCOM_RAW_12BPP_RGGB, 119 CAM_FORMAT_BAYER_QCOM_RAW_12BPP_BGGR, 120 /* MIPI RAW formats based on MIPI CSI-2 specifiction. 121 * 8BPP: Each pixel occupies one bytes, starting at LSB. 122 * Output with of image has no restrictons. 123 * 10BPP: Four pixels are held in every 5 bytes. The output 124 * with of image must be a multiple of 4 pixels. 125 * 12BPP: Two pixels are held in every 3 bytes. The output 126 * width of image must be a multiple of 2 pixels. */ 127 CAM_FORMAT_BAYER_MIPI_RAW_8BPP_GBRG, 128 CAM_FORMAT_BAYER_MIPI_RAW_8BPP_GRBG, 129 CAM_FORMAT_BAYER_MIPI_RAW_8BPP_RGGB, 130 CAM_FORMAT_BAYER_MIPI_RAW_8BPP_BGGR, 131 CAM_FORMAT_BAYER_MIPI_RAW_10BPP_GBRG, 132 CAM_FORMAT_BAYER_MIPI_RAW_10BPP_GRBG, 133 CAM_FORMAT_BAYER_MIPI_RAW_10BPP_RGGB, 134 CAM_FORMAT_BAYER_MIPI_RAW_10BPP_BGGR, 135 CAM_FORMAT_BAYER_MIPI_RAW_12BPP_GBRG, 136 CAM_FORMAT_BAYER_MIPI_RAW_12BPP_GRBG, 137 CAM_FORMAT_BAYER_MIPI_RAW_12BPP_RGGB, 138 CAM_FORMAT_BAYER_MIPI_RAW_12BPP_BGGR, 139 /* Ideal raw formats where image data has gone through black 140 * correction, lens rolloff, demux/channel gain, bad pixel 141 * correction, and ABF. 142 * Ideal raw formats could output any of QCOM_RAW and MIPI_RAW 143 * formats, plus plain8 8bbp, plain16 800, plain16 10bpp, and 144 * plain 16 12bpp */ 145 CAM_FORMAT_BAYER_IDEAL_RAW_QCOM_8BPP_GBRG, 146 CAM_FORMAT_BAYER_IDEAL_RAW_QCOM_8BPP_GRBG, 147 CAM_FORMAT_BAYER_IDEAL_RAW_QCOM_8BPP_RGGB, 148 CAM_FORMAT_BAYER_IDEAL_RAW_QCOM_8BPP_BGGR, 149 CAM_FORMAT_BAYER_IDEAL_RAW_QCOM_10BPP_GBRG, 150 CAM_FORMAT_BAYER_IDEAL_RAW_QCOM_10BPP_GRBG, 151 CAM_FORMAT_BAYER_IDEAL_RAW_QCOM_10BPP_RGGB, 152 CAM_FORMAT_BAYER_IDEAL_RAW_QCOM_10BPP_BGGR, 153 CAM_FORMAT_BAYER_IDEAL_RAW_QCOM_12BPP_GBRG, 154 CAM_FORMAT_BAYER_IDEAL_RAW_QCOM_12BPP_GRBG, 155 CAM_FORMAT_BAYER_IDEAL_RAW_QCOM_12BPP_RGGB, 156 CAM_FORMAT_BAYER_IDEAL_RAW_QCOM_12BPP_BGGR, 157 CAM_FORMAT_BAYER_IDEAL_RAW_MIPI_8BPP_GBRG, 158 CAM_FORMAT_BAYER_IDEAL_RAW_MIPI_8BPP_GRBG, 159 CAM_FORMAT_BAYER_IDEAL_RAW_MIPI_8BPP_RGGB, 160 CAM_FORMAT_BAYER_IDEAL_RAW_MIPI_8BPP_BGGR, 161 CAM_FORMAT_BAYER_IDEAL_RAW_MIPI_10BPP_GBRG, 162 CAM_FORMAT_BAYER_IDEAL_RAW_MIPI_10BPP_GRBG, 163 CAM_FORMAT_BAYER_IDEAL_RAW_MIPI_10BPP_RGGB, 164 CAM_FORMAT_BAYER_IDEAL_RAW_MIPI_10BPP_BGGR, 165 CAM_FORMAT_BAYER_IDEAL_RAW_MIPI_12BPP_GBRG, 166 CAM_FORMAT_BAYER_IDEAL_RAW_MIPI_12BPP_GRBG, 167 CAM_FORMAT_BAYER_IDEAL_RAW_MIPI_12BPP_RGGB, 168 CAM_FORMAT_BAYER_IDEAL_RAW_MIPI_12BPP_BGGR, 169 CAM_FORMAT_BAYER_IDEAL_RAW_PLAIN8_8BPP_GBRG, 170 CAM_FORMAT_BAYER_IDEAL_RAW_PLAIN8_8BPP_GRBG, 171 CAM_FORMAT_BAYER_IDEAL_RAW_PLAIN8_8BPP_RGGB, 172 CAM_FORMAT_BAYER_IDEAL_RAW_PLAIN8_8BPP_BGGR, 173 CAM_FORMAT_BAYER_IDEAL_RAW_PLAIN16_8BPP_GBRG, 174 CAM_FORMAT_BAYER_IDEAL_RAW_PLAIN16_8BPP_GRBG, 175 CAM_FORMAT_BAYER_IDEAL_RAW_PLAIN16_8BPP_RGGB, 176 CAM_FORMAT_BAYER_IDEAL_RAW_PLAIN16_8BPP_BGGR, 177 CAM_FORMAT_BAYER_IDEAL_RAW_PLAIN16_10BPP_GBRG, 178 CAM_FORMAT_BAYER_IDEAL_RAW_PLAIN16_10BPP_GRBG, 179 CAM_FORMAT_BAYER_IDEAL_RAW_PLAIN16_10BPP_RGGB, 180 CAM_FORMAT_BAYER_IDEAL_RAW_PLAIN16_10BPP_BGGR, 181 CAM_FORMAT_BAYER_IDEAL_RAW_PLAIN16_12BPP_GBRG, 182 CAM_FORMAT_BAYER_IDEAL_RAW_PLAIN16_12BPP_GRBG, 183 CAM_FORMAT_BAYER_IDEAL_RAW_PLAIN16_12BPP_RGGB, 184 CAM_FORMAT_BAYER_IDEAL_RAW_PLAIN16_12BPP_BGGR, 185 186 /* generic 8-bit raw */ 187 CAM_FORMAT_JPEG_RAW_8BIT, 188 CAM_FORMAT_META_RAW_8BIT, 189 190 CAM_FORMAT_MAX 191 } cam_format_t; 192 193 typedef enum { 194 /* applies to HAL 1 */ 195 CAM_STREAM_TYPE_DEFAULT, /* default stream type */ 196 CAM_STREAM_TYPE_PREVIEW, /* preview */ 197 CAM_STREAM_TYPE_POSTVIEW, /* postview */ 198 CAM_STREAM_TYPE_SNAPSHOT, /* snapshot */ 199 CAM_STREAM_TYPE_VIDEO, /* video */ 200 201 /* applies to HAL 3 */ 202 CAM_STREAM_TYPE_CALLBACK, /* app requested callback */ 203 CAM_STREAM_TYPE_NON_ZSL_SNAPSHOT, /* non zsl snapshot */ 204 CAM_STREAM_TYPE_IMPL_DEFINED, /* opaque format: could be display, video enc, ZSL YUV */ 205 206 /* applies to both HAL 1 and HAL 3 */ 207 CAM_STREAM_TYPE_METADATA, /* meta data */ 208 CAM_STREAM_TYPE_RAW, /* raw dump from camif */ 209 CAM_STREAM_TYPE_OFFLINE_PROC, /* offline process */ 210 CAM_STREAM_TYPE_MAX, 211 } cam_stream_type_t; 212 213 typedef enum { 214 CAM_PAD_NONE = 1, 215 CAM_PAD_TO_2 = 2, 216 CAM_PAD_TO_4 = 4, 217 CAM_PAD_TO_WORD = CAM_PAD_TO_4, 218 CAM_PAD_TO_8 = 8, 219 CAM_PAD_TO_16 = 16, 220 CAM_PAD_TO_32 = 32, 221 CAM_PAD_TO_64 = 64, 222 CAM_PAD_TO_1K = 1024, 223 CAM_PAD_TO_2K = 2048, 224 CAM_PAD_TO_4K = 4096, 225 CAM_PAD_TO_8K = 8192 226 } cam_pad_format_t; 227 228 typedef enum { 229 /* followings are per camera */ 230 CAM_MAPPING_BUF_TYPE_CAPABILITY, /* mapping camera capability buffer */ 231 CAM_MAPPING_BUF_TYPE_PARM_BUF, /* mapping parameters buffer */ 232 233 /* followings are per stream */ 234 CAM_MAPPING_BUF_TYPE_STREAM_BUF, /* mapping stream buffers */ 235 CAM_MAPPING_BUF_TYPE_STREAM_INFO, /* mapping stream information buffer */ 236 CAM_MAPPING_BUF_TYPE_OFFLINE_INPUT_BUF, /* mapping offline process input buffer */ 237 CAM_MAPPING_BUF_TYPE_MAX 238 } cam_mapping_buf_type; 239 240 typedef struct { 241 cam_mapping_buf_type type; 242 uint32_t stream_id; /* stream id: valid if STREAM_BUF */ 243 uint32_t frame_idx; /* frame index: valid if type is STREAM_BUF */ 244 int32_t plane_idx; /* planner index. valid if type is STREAM_BUF. 245 * -1 means all planners shanre the same fd; 246 * otherwise, each planner has its own fd */ 247 unsigned long cookie; /* could be job_id(uint32_t) to identify mapping job */ 248 int fd; /* origin fd */ 249 uint32_t size; /* size of the buffer */ 250 } cam_buf_map_type; 251 252 typedef struct { 253 cam_mapping_buf_type type; 254 uint32_t stream_id; /* stream id: valid if STREAM_BUF */ 255 uint32_t frame_idx; /* frame index: valid if STREAM_BUF or HIST_BUF */ 256 int32_t plane_idx; /* planner index. valid if type is STREAM_BUF. 257 * -1 means all planners shanre the same fd; 258 * otherwise, each planner has its own fd */ 259 unsigned long cookie; /* could be job_id(uint32_t) to identify unmapping job */ 260 } cam_buf_unmap_type; 261 262 typedef enum { 263 CAM_MAPPING_TYPE_FD_MAPPING, 264 CAM_MAPPING_TYPE_FD_UNMAPPING, 265 CAM_MAPPING_TYPE_MAX 266 } cam_mapping_type; 267 268 typedef struct { 269 cam_mapping_type msg_type; 270 union { 271 cam_buf_map_type buf_map; 272 cam_buf_unmap_type buf_unmap; 273 } payload; 274 } cam_sock_packet_t; 275 276 typedef enum { 277 CAM_MODE_2D = (1<<0), 278 CAM_MODE_3D = (1<<1) 279 } cam_mode_t; 280 281 typedef struct { 282 uint32_t len; 283 uint32_t y_offset; 284 uint32_t cbcr_offset; 285 } cam_sp_len_offset_t; 286 287 typedef struct{ 288 uint32_t len; 289 uint32_t offset; 290 int32_t offset_x; 291 int32_t offset_y; 292 int32_t stride; 293 int32_t scanline; 294 } cam_mp_len_offset_t; 295 296 typedef struct { 297 uint32_t width_padding; 298 uint32_t height_padding; 299 uint32_t plane_padding; 300 } cam_padding_info_t; 301 302 typedef struct { 303 int num_planes; 304 union { 305 cam_sp_len_offset_t sp; 306 cam_mp_len_offset_t mp[VIDEO_MAX_PLANES]; 307 }; 308 uint32_t frame_len; 309 } cam_frame_len_offset_t; 310 311 typedef struct { 312 int32_t width; 313 int32_t height; 314 } cam_dimension_t; 315 316 typedef struct { 317 cam_frame_len_offset_t plane_info; 318 } cam_stream_buf_plane_info_t; 319 320 typedef struct { 321 float min_fps; 322 float max_fps; 323 } cam_fps_range_t; 324 325 typedef struct { 326 int32_t min_sensitivity; 327 int32_t max_sensitivity; 328 } cam_sensitivity_range_t; 329 330 typedef enum { 331 CAM_HFR_MODE_OFF, 332 CAM_HFR_MODE_60FPS, 333 CAM_HFR_MODE_90FPS, 334 CAM_HFR_MODE_120FPS, 335 CAM_HFR_MODE_150FPS, 336 CAM_HFR_MODE_MAX 337 } cam_hfr_mode_t; 338 339 typedef struct { 340 cam_hfr_mode_t mode; 341 cam_dimension_t dim; 342 uint8_t frame_skip; 343 uint8_t livesnapshot_sizes_tbl_cnt; /* livesnapshot sizes table size */ 344 cam_dimension_t livesnapshot_sizes_tbl[MAX_SIZES_CNT]; /* livesnapshot sizes table */ 345 } cam_hfr_info_t; 346 347 typedef enum { 348 CAM_WB_MODE_AUTO, 349 CAM_WB_MODE_CUSTOM, 350 CAM_WB_MODE_INCANDESCENT, 351 CAM_WB_MODE_FLUORESCENT, 352 CAM_WB_MODE_WARM_FLUORESCENT, 353 CAM_WB_MODE_DAYLIGHT, 354 CAM_WB_MODE_CLOUDY_DAYLIGHT, 355 CAM_WB_MODE_TWILIGHT, 356 CAM_WB_MODE_SHADE, 357 CAM_WB_MODE_OFF, 358 CAM_WB_MODE_MAX 359 } cam_wb_mode_type; 360 361 typedef enum { 362 CAM_ANTIBANDING_MODE_OFF, 363 CAM_ANTIBANDING_MODE_60HZ, 364 CAM_ANTIBANDING_MODE_50HZ, 365 CAM_ANTIBANDING_MODE_AUTO, 366 CAM_ANTIBANDING_MODE_AUTO_50HZ, 367 CAM_ANTIBANDING_MODE_AUTO_60HZ, 368 CAM_ANTIBANDING_MODE_MAX, 369 } cam_antibanding_mode_type; 370 371 /* Enum Type for different ISO Mode supported */ 372 typedef enum { 373 CAM_ISO_MODE_AUTO, 374 CAM_ISO_MODE_DEBLUR, 375 CAM_ISO_MODE_100, 376 CAM_ISO_MODE_200, 377 CAM_ISO_MODE_400, 378 CAM_ISO_MODE_800, 379 CAM_ISO_MODE_1600, 380 CAM_ISO_MODE_MAX 381 } cam_iso_mode_type; 382 383 typedef enum { 384 CAM_AEC_MODE_FRAME_AVERAGE, 385 CAM_AEC_MODE_CENTER_WEIGHTED, 386 CAM_AEC_MODE_SPOT_METERING, 387 CAM_AEC_MODE_SMART_METERING, 388 CAM_AEC_MODE_USER_METERING, 389 CAM_AEC_MODE_SPOT_METERING_ADV, 390 CAM_AEC_MODE_CENTER_WEIGHTED_ADV, 391 CAM_AEC_MODE_MAX 392 } cam_auto_exposure_mode_type; 393 394 typedef enum { 395 CAM_AE_MODE_OFF, 396 CAM_AE_MODE_ON, 397 CAM_AE_MODE_MAX 398 } cam_ae_mode_type; 399 400 typedef enum { 401 CAM_FOCUS_ALGO_AUTO, 402 CAM_FOCUS_ALGO_SPOT, 403 CAM_FOCUS_ALGO_CENTER_WEIGHTED, 404 CAM_FOCUS_ALGO_AVERAGE, 405 CAM_FOCUS_ALGO_MAX 406 } cam_focus_algorithm_type; 407 408 /* Auto focus mode */ 409 typedef enum { 410 CAM_FOCUS_MODE_AUTO, 411 CAM_FOCUS_MODE_INFINITY, 412 CAM_FOCUS_MODE_MACRO, 413 CAM_FOCUS_MODE_FIXED, 414 CAM_FOCUS_MODE_EDOF, 415 CAM_FOCUS_MODE_CONTINOUS_VIDEO, 416 CAM_FOCUS_MODE_CONTINOUS_PICTURE, 417 CAM_FOCUS_MODE_MAX 418 } cam_focus_mode_type; 419 420 typedef enum { 421 CAM_SCENE_MODE_OFF, 422 CAM_SCENE_MODE_AUTO, 423 CAM_SCENE_MODE_LANDSCAPE, 424 CAM_SCENE_MODE_SNOW, 425 CAM_SCENE_MODE_BEACH, 426 CAM_SCENE_MODE_SUNSET, 427 CAM_SCENE_MODE_NIGHT, 428 CAM_SCENE_MODE_PORTRAIT, 429 CAM_SCENE_MODE_BACKLIGHT, 430 CAM_SCENE_MODE_SPORTS, 431 CAM_SCENE_MODE_ANTISHAKE, 432 CAM_SCENE_MODE_FLOWERS, 433 CAM_SCENE_MODE_CANDLELIGHT, 434 CAM_SCENE_MODE_FIREWORKS, 435 CAM_SCENE_MODE_PARTY, 436 CAM_SCENE_MODE_NIGHT_PORTRAIT, 437 CAM_SCENE_MODE_THEATRE, 438 CAM_SCENE_MODE_ACTION, 439 CAM_SCENE_MODE_AR, 440 CAM_SCENE_MODE_FACE_PRIORITY, 441 CAM_SCENE_MODE_BARCODE, 442 CAM_SCENE_MODE_MAX 443 } cam_scene_mode_type; 444 445 typedef enum { 446 CAM_EFFECT_MODE_OFF, 447 CAM_EFFECT_MODE_MONO, 448 CAM_EFFECT_MODE_NEGATIVE, 449 CAM_EFFECT_MODE_SOLARIZE, 450 CAM_EFFECT_MODE_SEPIA, 451 CAM_EFFECT_MODE_POSTERIZE, 452 CAM_EFFECT_MODE_WHITEBOARD, 453 CAM_EFFECT_MODE_BLACKBOARD, 454 CAM_EFFECT_MODE_AQUA, 455 CAM_EFFECT_MODE_EMBOSS, 456 CAM_EFFECT_MODE_SKETCH, 457 CAM_EFFECT_MODE_NEON, 458 CAM_EFFECT_MODE_MAX 459 } cam_effect_mode_type; 460 461 typedef enum { 462 CAM_FLASH_MODE_OFF, 463 CAM_FLASH_MODE_AUTO, 464 CAM_FLASH_MODE_ON, 465 CAM_FLASH_MODE_TORCH, 466 CAM_FLASH_MODE_SINGLE, 467 CAM_FLASH_MODE_MAX 468 } cam_flash_mode_t; 469 470 // Flash States 471 typedef enum { 472 CAM_FLASH_STATE_UNAVAILABLE, 473 CAM_FLASH_STATE_CHARGING, 474 CAM_FLASH_STATE_READY, 475 CAM_FLASH_STATE_FIRED, 476 CAM_FLASH_STATE_PARTIAL, 477 CAM_FLASH_STATE_MAX 478 } cam_flash_state_t; 479 480 typedef enum { 481 CAM_FLASH_FIRING_LEVEL_0, 482 CAM_FLASH_FIRING_LEVEL_1, 483 CAM_FLASH_FIRING_LEVEL_2, 484 CAM_FLASH_FIRING_LEVEL_3, 485 CAM_FLASH_FIRING_LEVEL_4, 486 CAM_FLASH_FIRING_LEVEL_5, 487 CAM_FLASH_FIRING_LEVEL_6, 488 CAM_FLASH_FIRING_LEVEL_7, 489 CAM_FLASH_FIRING_LEVEL_8, 490 CAM_FLASH_FIRING_LEVEL_9, 491 CAM_FLASH_FIRING_LEVEL_10, 492 CAM_FLASH_FIRING_LEVEL_MAX 493 } cam_flash_firing_level_t; 494 495 496 typedef enum { 497 CAM_AEC_TRIGGER_IDLE, 498 CAM_AEC_TRIGGER_START 499 } cam_aec_trigger_type_t; 500 501 typedef enum { 502 CAM_AF_TRIGGER_IDLE, 503 CAM_AF_TRIGGER_START, 504 CAM_AF_TRIGGER_CANCEL 505 } cam_af_trigger_type_t; 506 507 typedef enum { 508 CAM_AE_STATE_INACTIVE, 509 CAM_AE_STATE_SEARCHING, 510 CAM_AE_STATE_CONVERGED, 511 CAM_AE_STATE_LOCKED, 512 CAM_AE_STATE_FLASH_REQUIRED, 513 CAM_AE_STATE_PRECAPTURE 514 } cam_ae_state_t; 515 516 typedef enum { 517 CAM_NOISE_REDUCTION_MODE_OFF, 518 CAM_NOISE_REDUCTION_MODE_FAST, 519 CAM_NOISE_REDUCTION_MODE_HIGH_QUALITY 520 } cam_noise_reduction_mode_t; 521 522 typedef enum { 523 CAM_EDGE_MODE_OFF, 524 CAM_EDGE_MODE_FAST, 525 CAM_EDGE_MODE_HIGH_QUALITY, 526 } cam_edge_mode_t; 527 528 typedef struct { 529 uint8_t edge_mode; 530 int32_t sharpness; 531 } cam_edge_application_t; 532 533 typedef enum { 534 CAM_BLACK_LEVEL_LOCK_OFF, 535 CAM_BLACK_LEVEL_LOCK_ON, 536 } cam_black_level_lock_t; 537 538 typedef enum { 539 CAM_LENS_SHADING_MAP_MODE_OFF, 540 CAM_LENS_SHADING_MAP_MODE_ON, 541 } cam_lens_shading_map_mode_t; 542 543 typedef enum { 544 CAM_FACE_DETECT_MODE_OFF, 545 CAM_FACE_DETECT_MODE_SIMPLE, 546 CAM_FACE_DETECT_MODE_FULL, 547 } cam_face_detect_mode_t; 548 549 typedef enum { 550 CAM_TONEMAP_MODE_CONTRAST_CURVE, 551 CAM_TONEMAP_MODE_FAST, 552 CAM_TONEMAP_MODE_HIGH_QUALITY, 553 } cam_tonemap_mode_t; 554 555 typedef struct { 556 int32_t left; 557 int32_t top; 558 int32_t width; 559 int32_t height; 560 } cam_rect_t; 561 562 typedef struct { 563 cam_rect_t rect; 564 int32_t weight; /* weight of the area, valid for focusing/metering areas */ 565 } cam_area_t; 566 567 typedef enum { 568 CAM_STREAMING_MODE_CONTINUOUS, /* continous streaming */ 569 CAM_STREAMING_MODE_BURST, /* burst streaming */ 570 CAM_STREAMING_MODE_MAX 571 } cam_streaming_mode_t; 572 573 #define CAM_REPROCESS_MASK_TYPE_WNR (1<<0) 574 575 /* event from server */ 576 typedef enum { 577 CAM_EVENT_TYPE_MAP_UNMAP_DONE = (1<<0), 578 CAM_EVENT_TYPE_AUTO_FOCUS_DONE = (1<<1), 579 CAM_EVENT_TYPE_ZOOM_DONE = (1<<2), 580 CAM_EVENT_TYPE_DAEMON_DIED = (1<<3), 581 CAM_EVENT_TYPE_MAX 582 } cam_event_type_t; 583 584 typedef enum { 585 CAM_EXP_BRACKETING_OFF, 586 CAM_EXP_BRACKETING_ON 587 } cam_bracket_mode; 588 589 typedef struct { 590 cam_bracket_mode mode; 591 char values[MAX_EXP_BRACKETING_LENGTH]; /* user defined values */ 592 } cam_exp_bracketing_t; 593 594 typedef enum { 595 CAM_AEC_ROI_OFF, 596 CAM_AEC_ROI_ON 597 } cam_aec_roi_ctrl_t; 598 599 typedef enum { 600 CAM_AEC_ROI_BY_INDEX, 601 CAM_AEC_ROI_BY_COORDINATE, 602 } cam_aec_roi_type_t; 603 604 typedef struct { 605 uint32_t x; 606 uint32_t y; 607 } cam_coordinate_type_t; 608 609 typedef struct { 610 int32_t numerator; 611 int32_t denominator; 612 } cam_rational_type_t; 613 614 typedef struct { 615 cam_aec_roi_ctrl_t aec_roi_enable; 616 cam_aec_roi_type_t aec_roi_type; 617 union { 618 cam_coordinate_type_t coordinate[MAX_ROI]; 619 uint32_t aec_roi_idx[MAX_ROI]; 620 } cam_aec_roi_position; 621 } cam_set_aec_roi_t; 622 623 typedef struct { 624 uint32_t frm_id; 625 uint8_t num_roi; 626 cam_rect_t roi[MAX_ROI]; 627 int32_t weight[MAX_ROI]; 628 uint8_t is_multiwindow; 629 } cam_roi_info_t; 630 631 typedef enum { 632 CAM_WAVELET_DENOISE_YCBCR_PLANE, 633 CAM_WAVELET_DENOISE_CBCR_ONLY, 634 CAM_WAVELET_DENOISE_STREAMLINE_YCBCR, 635 CAM_WAVELET_DENOISE_STREAMLINED_CBCR 636 } cam_denoise_process_type_t; 637 638 typedef struct { 639 int denoise_enable; 640 cam_denoise_process_type_t process_plates; 641 } cam_denoise_param_t; 642 643 #define CAM_FACE_PROCESS_MASK_DETECTION (1<<0) 644 #define CAM_FACE_PROCESS_MASK_RECOGNITION (1<<1) 645 typedef struct { 646 int fd_mode; /* mask of face process */ 647 int num_fd; 648 } cam_fd_set_parm_t; 649 650 typedef struct { 651 int8_t face_id; /* unique id for face tracking within view unless view changes */ 652 int8_t score; /* score of confidence (0, -100) */ 653 cam_rect_t face_boundary; /* boundary of face detected */ 654 cam_coordinate_type_t left_eye_center; /* coordinate of center of left eye */ 655 cam_coordinate_type_t right_eye_center; /* coordinate of center of right eye */ 656 cam_coordinate_type_t mouth_center; /* coordinate of center of mouth */ 657 uint8_t smile_degree; /* smile degree (0, -100) */ 658 uint8_t smile_confidence; /* smile confidence (0, 100) */ 659 uint8_t face_recognised; /* if face is recognised */ 660 int8_t gaze_angle; /* -90 -45 0 45 90 for head left to rigth tilt */ 661 int8_t updown_dir; /* up down direction (-90, 90) */ 662 int8_t leftright_dir; /* left right direction (-90, 90) */ 663 int8_t roll_dir; /* roll direction (-90, 90) */ 664 int8_t left_right_gaze; /* left right gaze degree (-50, 50) */ 665 int8_t top_bottom_gaze; /* up down gaze degree (-50, 50) */ 666 uint8_t blink_detected; /* if blink is detected */ 667 uint8_t left_blink; /* left eye blink degeree (0, -100) */ 668 uint8_t right_blink; /* right eye blink degree (0, - 100) */ 669 } cam_face_detection_info_t; 670 671 typedef struct { 672 uint32_t frame_id; /* frame index of which faces are detected */ 673 uint8_t num_faces_detected; /* number of faces detected */ 674 cam_face_detection_info_t faces[MAX_ROI]; /* detailed information of faces detected */ 675 } cam_face_detection_data_t; 676 677 #define CAM_HISTOGRAM_STATS_SIZE 256 678 typedef struct { 679 uint32_t max_hist_value; 680 uint32_t hist_buf[CAM_HISTOGRAM_STATS_SIZE]; /* buf holding histogram stats data */ 681 } cam_histogram_data_t; 682 683 typedef struct { 684 cam_histogram_data_t r_stats; 685 cam_histogram_data_t b_stats; 686 cam_histogram_data_t gr_stats; 687 cam_histogram_data_t gb_stats; 688 } cam_bayer_hist_stats_t; 689 690 typedef enum { 691 CAM_HISTOGRAM_TYPE_BAYER, 692 CAM_HISTOGRAM_TYPE_YUV 693 } cam_histogram_type_t; 694 695 typedef struct { 696 cam_histogram_type_t type; 697 union { 698 cam_bayer_hist_stats_t bayer_stats; 699 cam_histogram_data_t yuv_stats; 700 }; 701 } cam_hist_stats_t; 702 703 enum cam_focus_distance_index{ 704 CAM_FOCUS_DISTANCE_NEAR_INDEX, /* 0 */ 705 CAM_FOCUS_DISTANCE_OPTIMAL_INDEX, 706 CAM_FOCUS_DISTANCE_FAR_INDEX, 707 CAM_FOCUS_DISTANCE_MAX_INDEX 708 }; 709 710 typedef struct { 711 float focus_distance[CAM_FOCUS_DISTANCE_MAX_INDEX]; 712 } cam_focus_distances_info_t; 713 714 /* Different autofocus cycle when calling do_autoFocus 715 * CAM_AF_COMPLETE_EXISTING_SWEEP: Complete existing sweep 716 * if one is ongoing, and lock. 717 * CAM_AF_DO_ONE_FULL_SWEEP: Do one full sweep, regardless 718 * of the current state, and lock. 719 * CAM_AF_START_CONTINUOUS_SWEEP: Start continous sweep. 720 * After do_autoFocus, HAL receives an event: CAM_AF_FOCUSED, 721 * or CAM_AF_NOT_FOCUSED. 722 * cancel_autoFocus stops any lens movement. 723 * Each do_autoFocus call only produces 1 FOCUSED/NOT_FOCUSED 724 * event, not both. 725 */ 726 typedef enum { 727 CAM_AF_COMPLETE_EXISTING_SWEEP, 728 CAM_AF_DO_ONE_FULL_SWEEP, 729 CAM_AF_START_CONTINUOUS_SWEEP 730 } cam_autofocus_cycle_t; 731 732 typedef enum { 733 CAM_AF_SCANNING, 734 CAM_AF_FOCUSED, 735 CAM_AF_NOT_FOCUSED 736 } cam_autofocus_state_t; 737 738 typedef struct { 739 cam_autofocus_state_t focus_state; /* state of focus */ 740 cam_focus_distances_info_t focus_dist; /* focus distance */ 741 } cam_auto_focus_data_t; 742 743 typedef struct { 744 uint32_t stream_id; 745 cam_rect_t crop; 746 } cam_stream_crop_info_t; 747 748 typedef struct { 749 uint8_t num_of_streams; 750 cam_stream_crop_info_t crop_info[MAX_NUM_STREAMS]; 751 } cam_crop_data_t; 752 753 typedef enum { 754 DO_NOT_NEED_FUTURE_FRAME, 755 NEED_FUTURE_FRAME, 756 } cam_prep_snapshot_state_t; 757 758 typedef struct { 759 float gains[4]; 760 } cam_color_correct_gains_t; 761 762 typedef struct { 763 uint32_t min_frame_idx; 764 uint32_t max_frame_idx; 765 } cam_frame_idx_range_t; 766 767 768 typedef struct { 769 float aperture_value; 770 /* Store current LED flash state */ 771 cam_flash_mode_t flash_mode; 772 cam_flash_state_t flash_state; 773 } cam_sensor_params_t; 774 775 typedef struct { 776 float exp_time; 777 int iso_value; 778 } cam_ae_params_t; 779 780 typedef struct { 781 cam_dimension_t stream_sizes[MAX_NUM_STREAMS]; 782 uint32_t num_streams; 783 uint32_t type[MAX_NUM_STREAMS]; 784 } cam_stream_size_info_t; 785 786 typedef struct { 787 uint8_t is_stats_valid; /* if histgram data is valid */ 788 cam_hist_stats_t stats_data; /* histogram data */ 789 790 uint8_t is_faces_valid; /* if face detection data is valid */ 791 cam_face_detection_data_t faces_data; /* face detection result */ 792 793 uint8_t is_focus_valid; /* if focus data is valid */ 794 cam_auto_focus_data_t focus_data; /* focus data */ 795 796 uint8_t is_crop_valid; /* if crop data is valid */ 797 cam_crop_data_t crop_data; /* crop data */ 798 799 uint8_t is_prep_snapshot_done_valid; /* if prep snapshot done is valid */ 800 cam_prep_snapshot_state_t prep_snapshot_done_state; /* prepare snapshot done state */ 801 802 /* if good frame idx range is valid */ 803 uint8_t is_good_frame_idx_range_valid; 804 /* good frame idx range, make sure: 805 * 1. good_frame_idx_range.min_frame_idx > current_frame_idx 806 * 2. good_frame_idx_range.min_frame_idx - current_frame_idx < 100 */ 807 cam_frame_idx_range_t good_frame_idx_range; 808 809 char private_metadata[MAX_METADATA_PAYLOAD_SIZE]; 810 811 /* AE parameters */ 812 uint8_t is_ae_params_valid; 813 cam_ae_params_t ae_params; 814 /* sensor parameters */ 815 uint8_t is_sensor_params_valid; 816 cam_sensor_params_t sensor_params; 817 } cam_metadata_info_t; 818 819 typedef enum { 820 CAM_INTF_PARM_HAL_VERSION, 821 822 /* Overall mode of 3A control routines. We need to have this parameter 823 * because not all android.control.* have an OFF option, for example, 824 * AE_FPS_Range, aePrecaptureTrigger */ 825 CAM_INTF_META_MODE, 826 /* Whether AE is currently updating the sensor exposure and sensitivity 827 * fields */ 828 CAM_INTF_META_AEC_MODE, 829 CAM_INTF_PARM_WHITE_BALANCE, 830 CAM_INTF_PARM_FOCUS_MODE, 831 832 /* common between HAL1 and HAL3 */ 833 CAM_INTF_PARM_ANTIBANDING, 834 CAM_INTF_PARM_EXPOSURE_COMPENSATION, 835 CAM_INTF_PARM_AEC_LOCK, 836 CAM_INTF_PARM_FPS_RANGE, 837 CAM_INTF_PARM_AWB_LOCK, 838 CAM_INTF_PARM_EFFECT, 839 CAM_INTF_PARM_BESTSHOT_MODE, 840 CAM_INTF_PARM_DIS_ENABLE, 841 CAM_INTF_PARM_LED_MODE, 842 CAM_INTF_META_HISTOGRAM, /* 10 */ 843 CAM_INTF_META_FACE_DETECTION, 844 CAM_INTF_META_AUTOFOCUS_DATA, 845 846 /* specific to HAl1 */ 847 CAM_INTF_PARM_QUERY_FLASH4SNAP, 848 CAM_INTF_PARM_EXPOSURE, 849 CAM_INTF_PARM_SHARPNESS, 850 CAM_INTF_PARM_CONTRAST, 851 CAM_INTF_PARM_SATURATION, 852 CAM_INTF_PARM_BRIGHTNESS, 853 CAM_INTF_PARM_ISO, 854 CAM_INTF_PARM_ZOOM, /* 20 */ 855 CAM_INTF_PARM_ROLLOFF, 856 CAM_INTF_PARM_MODE, /* camera mode */ 857 CAM_INTF_PARM_AEC_ALGO_TYPE, /* auto exposure algorithm */ 858 CAM_INTF_PARM_FOCUS_ALGO_TYPE, /* focus algorithm */ 859 CAM_INTF_PARM_AEC_ROI, 860 CAM_INTF_PARM_AF_ROI, 861 CAM_INTF_PARM_SCE_FACTOR, 862 CAM_INTF_PARM_FD, 863 CAM_INTF_PARM_MCE, /* 30 */ 864 CAM_INTF_PARM_HFR, 865 CAM_INTF_PARM_REDEYE_REDUCTION, 866 CAM_INTF_PARM_WAVELET_DENOISE, 867 CAM_INTF_PARM_HISTOGRAM, 868 CAM_INTF_PARM_ASD_ENABLE, 869 CAM_INTF_PARM_RECORDING_HINT, 870 CAM_INTF_PARM_HDR, 871 CAM_INTF_PARM_FRAMESKIP, 872 CAM_INTF_PARM_ZSL_MODE, /* indicating if it's running in ZSL mode */ 873 CAM_INTF_PARM_HDR_NEED_1X, /* if HDR needs 1x output */ /* 40 */ 874 CAM_INTF_PARM_LOCK_CAF, 875 CAM_INTF_PARM_VIDEO_HDR, 876 CAM_INTF_PARM_ROTATION, 877 CAM_INTF_META_CROP_DATA, 878 CAM_INTF_META_PREP_SNAPSHOT_DONE, 879 CAM_INTF_META_GOOD_FRAME_IDX_RANGE, 880 881 /* stream based parameters */ 882 CAM_INTF_PARM_DO_REPROCESS, 883 CAM_INTF_PARM_SET_BUNDLE, 884 885 /* specific to HAL3 */ 886 /* Whether the metadata maps to a valid frame number */ 887 CAM_INTF_META_FRAME_NUMBER_VALID, 888 /* Whether the stream buffer corresponding this frame is dropped or not */ 889 CAM_INTF_META_FRAME_DROPPED, 890 /* Number of pending requests yet to be processed */ 891 CAM_INTF_META_PENDING_REQUESTS, 892 /* COLOR CORRECTION.*/ 893 CAM_INTF_META_COLOR_CORRECT_MODE, 894 /* A transform matrix to chromatically adapt pixels in the CIE XYZ (1931) 895 * color space from the scene illuminant to the sRGB-standard D65-illuminant. */ 896 CAM_INTF_META_COLOR_CORRECT_TRANSFORM, /* 50 */ 897 /*Color channel gains in the Bayer raw domain in the order [RGeGoB]*/ 898 CAM_INTF_META_COLOR_CORRECT_GAINS, 899 /*The best fit color transform matrix calculated by the stats*/ 900 CAM_INTF_META_PRED_COLOR_CORRECT_TRANSFORM, 901 /*The best fit color channels gains calculated by the stats*/ 902 CAM_INTF_META_PRED_COLOR_CORRECT_GAINS, 903 /* CONTROL */ 904 // CAM_INTF_META_REQUEST_ID, 905 /* A frame counter set by the framework. Must be maintained unchanged in 906 * output frame. */ 907 CAM_INTF_META_FRAME_NUMBER, 908 /*Number of streams and size of streams in current configuration*/ 909 CAM_INTF_META_STREAM_INFO, 910 /* List of areas to use for metering */ 911 CAM_INTF_META_AEC_ROI, 912 /* Whether the HAL must trigger precapture metering.*/ 913 CAM_INTF_META_AEC_PRECAPTURE_TRIGGER, 914 /* The ID sent with the latest CAMERA2_TRIGGER_PRECAPTURE_METERING call */ 915 CAM_INTF_META_AEC_PRECAPTURE_ID, 916 /* Current state of AE algorithm */ 917 CAM_INTF_META_AEC_STATE, 918 /* List of areas to use for focus estimation */ 919 CAM_INTF_META_AF_ROI, 920 /* Whether the HAL must trigger autofocus. */ 921 CAM_INTF_META_AF_TRIGGER, 922 /* Current state of AF algorithm */ 923 CAM_INTF_META_AF_STATE, 924 /* The ID sent with the latest CAMERA2_TRIGGER_AUTOFOCUS call */ 925 CAM_INTF_META_AF_TRIGGER_ID, 926 /* List of areas to use for illuminant estimation */ 927 CAM_INTF_META_AWB_REGIONS, 928 /* Current state of AWB algorithm */ 929 CAM_INTF_META_AWB_STATE, 930 /*Whether black level compensation is frozen or free to vary*/ 931 CAM_INTF_META_BLACK_LEVEL_LOCK, 932 /* Information to 3A routines about the purpose of this capture, to help 933 * decide optimal 3A strategy */ 934 CAM_INTF_META_CAPTURE_INTENT, 935 /* DEMOSAIC */ 936 /* Controls the quality of the demosaicing processing */ 937 CAM_INTF_META_DEMOSAIC, 938 /* EDGE */ 939 /* Operation mode for edge enhancement */ 940 CAM_INTF_META_EDGE_MODE, 941 /* Control the amount of edge enhancement applied to the images.*/ 942 /* 1-10; 10 is maximum sharpening */ 943 CAM_INTF_META_SHARPNESS_STRENGTH, 944 /* FLASH */ 945 /* Power for flash firing/torch, 10 is max power; 0 is no flash. Linear */ 946 CAM_INTF_META_FLASH_POWER, 947 /* Firing time of flash relative to start of exposure, in nanoseconds*/ 948 CAM_INTF_META_FLASH_FIRING_TIME, 949 /* Current state of the flash unit */ 950 CAM_INTF_META_FLASH_STATE, 951 /* GEOMETRIC */ 952 /* Operating mode of geometric correction */ 953 CAM_INTF_META_GEOMETRIC_MODE, 954 /* Control the amount of shading correction applied to the images */ 955 CAM_INTF_META_GEOMETRIC_STRENGTH, 956 /* HOT PIXEL */ 957 /* Set operational mode for hot pixel correction */ 958 CAM_INTF_META_HOTPIXEL_MODE, 959 /* LENS */ 960 /* Size of the lens aperture */ 961 CAM_INTF_META_LENS_APERTURE, 962 /* State of lens neutral density filter(s) */ 963 CAM_INTF_META_LENS_FILTERDENSITY, 964 /* Lens optical zoom setting */ 965 CAM_INTF_META_LENS_FOCAL_LENGTH, 966 /* Distance to plane of sharpest focus, measured from frontmost surface 967 * of the lens */ 968 CAM_INTF_META_LENS_FOCUS_DISTANCE, 969 /* The range of scene distances that are in sharp focus (depth of field) */ 970 CAM_INTF_META_LENS_FOCUS_RANGE, 971 /* Whether optical image stabilization is enabled. */ 972 CAM_INTF_META_LENS_OPT_STAB_MODE, 973 /*Whether the hal needs to output the lens shading map*/ 974 CAM_INTF_META_LENS_SHADING_MAP_MODE, 975 /* Current lens status */ 976 CAM_INTF_META_LENS_STATE, 977 /* NOISE REDUCTION */ 978 /* Mode of operation for the noise reduction algorithm */ 979 CAM_INTF_META_NOISE_REDUCTION_MODE, 980 /* Control the amount of noise reduction applied to the images. 981 * 1-10; 10 is max noise reduction */ 982 CAM_INTF_META_NOISE_REDUCTION_STRENGTH, 983 /* SCALER */ 984 /* Top-left corner and width of the output region to select from the active 985 * pixel array */ 986 CAM_INTF_META_SCALER_CROP_REGION, 987 /* The estimated scene illumination lighting frequency */ 988 CAM_INTF_META_SCENE_FLICKER, 989 /* SENSOR */ 990 /* Duration each pixel is exposed to light, in nanoseconds */ 991 CAM_INTF_META_SENSOR_EXPOSURE_TIME, 992 /* Duration from start of frame exposure to start of next frame exposure, 993 * in nanoseconds */ 994 CAM_INTF_META_SENSOR_FRAME_DURATION, 995 /* Gain applied to image data. Must be implemented through analog gain only 996 * if set to values below 'maximum analog sensitivity'. */ 997 CAM_INTF_META_SENSOR_SENSITIVITY, 998 /* Time at start of exposure of first row */ 999 CAM_INTF_META_SENSOR_TIMESTAMP, 1000 /* SHADING */ 1001 /* Quality of lens shading correction applied to the image data */ 1002 CAM_INTF_META_SHADING_MODE, 1003 /* Control the amount of shading correction applied to the images. 1004 * unitless: 1-10; 10 is full shading compensation */ 1005 CAM_INTF_META_SHADING_STRENGTH, 1006 /* STATISTICS */ 1007 /* State of the face detector unit */ 1008 CAM_INTF_META_STATS_FACEDETECT_MODE, 1009 /* Operating mode for histogram generation */ 1010 CAM_INTF_META_STATS_HISTOGRAM_MODE, 1011 /* Operating mode for sharpness map generation */ 1012 CAM_INTF_META_STATS_SHARPNESS_MAP_MODE, 1013 /* A 3-channel sharpness map, based on the raw sensor data, 1014 * If only a monochrome sharpness map is supported, all channels 1015 * should have the same data 1016 */ 1017 CAM_INTF_META_STATS_SHARPNESS_MAP, 1018 1019 /* TONEMAP */ 1020 /* Tone map mode */ 1021 CAM_INTF_META_TONEMAP_MODE, 1022 /* Table mapping RGB input values to output values */ 1023 CAM_INTF_META_TONEMAP_CURVES, 1024 1025 CAM_INTF_META_FLASH_MODE, 1026 /* 2D array of gain factors for each color channel that was used to 1027 * compensate for lens shading for this frame */ 1028 CAM_INTF_META_LENS_SHADING_MAP, 1029 CAM_INTF_META_PRIVATE_DATA, 1030 /* Indicates streams this request needs buffers on */ 1031 CAM_INTF_META_STREAM_TYPE_MASK, 1032 /*AEC info for Exif*/ 1033 CAM_INTF_META_AEC_INFO, 1034 CAM_INTF_PARM_MAX 1035 } cam_intf_parm_type_t; 1036 1037 /***************************************************************************** 1038 * Code for HAL3 data types * 1039 ****************************************************************************/ 1040 typedef enum { 1041 CAM_INTF_METADATA_MAX 1042 } cam_intf_metadata_type_t; 1043 1044 typedef enum { 1045 CAM_INTENT_CUSTOM, 1046 CAM_INTENT_PREVIEW, 1047 CAM_INTENT_STILL_CAPTURE, 1048 CAM_INTENT_VIDEO_RECORD, 1049 CAM_INTENT_VIDEO_SNAPSHOT, 1050 CAM_INTENT_ZERO_SHUTTER_LAG, 1051 CAM_INTENT_MAX, 1052 } cam_intent_t; 1053 1054 typedef enum { 1055 /* Full application control of pipeline. All 3A routines are disabled, 1056 * no other settings in android.control.* have any effect */ 1057 CAM_CONTROL_OFF, 1058 /* Use settings for each individual 3A routine. Manual control of capture 1059 * parameters is disabled. All controls in android.control.* besides sceneMode 1060 * take effect */ 1061 CAM_CONTROL_AUTO, 1062 /* Use specific scene mode. Enabling this disables control.aeMode, 1063 * control.awbMode and control.afMode controls; the HAL must ignore those 1064 * settings while USE_SCENE_MODE is active (except for FACE_PRIORITY scene mode). 1065 * Other control entries are still active. This setting can only be used if 1066 * availableSceneModes != UNSUPPORTED. TODO: Should we remove this and handle this 1067 * in HAL ?*/ 1068 CAM_CONTROL_USE_SCENE_MODE, 1069 CAM_CONTROL_MAX 1070 } cam_control_mode_t; 1071 1072 typedef enum { 1073 /* Use the android.colorCorrection.transform matrix to do color conversion */ 1074 CAM_COLOR_CORRECTION_TRANSFORM_MATRIX, 1075 /* Must not slow down frame rate relative to raw bayer output */ 1076 CAM_COLOR_CORRECTION_FAST, 1077 /* Frame rate may be reduced by high quality */ 1078 CAM_COLOR_CORRECTION_HIGH_QUALITY, 1079 } cam_color_correct_mode_t; 1080 1081 typedef struct { 1082 /* 3x3 float matrix in row-major order. each element is in range of (0, 1) */ 1083 cam_rational_type_t transform_matrix[3][3]; 1084 } cam_color_correct_matrix_t; 1085 1086 #define CAM_FOCAL_LENGTHS_MAX 1 1087 #define CAM_APERTURES_MAX 1 1088 #define CAM_FILTER_DENSITIES_MAX 1 1089 #define CAM_MAX_MAP_HEIGHT 6 1090 #define CAM_MAX_MAP_WIDTH 6 1091 #define CAM_MAX_SHADING_MAP_WIDTH 17 1092 #define CAM_MAX_SHADING_MAP_HEIGHT 13 1093 #define CAM_MAX_TONEMAP_CURVE_SIZE 128 1094 1095 typedef struct { 1096 /* A 1D array of pairs of floats. 1097 * Mapping a 0-1 input range to a 0-1 output range. 1098 * The input range must be monotonically increasing with N, 1099 * and values between entries should be linearly interpolated. 1100 * For example, if the array is: [0.0, 0.0, 0.3, 0.5, 1.0, 1.0], 1101 * then the input->output mapping for a few sample points would be: 1102 * 0 -> 0, 0.15 -> 0.25, 0.3 -> 0.5, 0.5 -> 0.64 */ 1103 float tonemap_points[CAM_MAX_TONEMAP_CURVE_SIZE][2]; 1104 } cam_tonemap_curve_t; 1105 1106 typedef struct { 1107 int tonemap_points_cnt; 1108 cam_tonemap_curve_t curves[3]; 1109 } cam_rgb_tonemap_curves; 1110 1111 typedef enum { 1112 OFF, 1113 FAST, 1114 QUALITY, 1115 } cam_quality_preference_t; 1116 1117 typedef enum { 1118 CAM_FLASH_CTRL_OFF, 1119 CAM_FLASH_CTRL_SINGLE, 1120 CAM_FLASH_CTRL_TORCH 1121 } cam_flash_ctrl_t; 1122 1123 typedef struct { 1124 uint8_t frame_dropped; /* This flag indicates whether any stream buffer is dropped or not */ 1125 uint32_t stream_type_mask; /* if dropped, Stream type mask of dropped streams */ 1126 } cam_frame_dropped_t; 1127 1128 typedef struct { 1129 uint8_t ae_mode; 1130 uint8_t awb_mode; 1131 uint8_t af_mode; 1132 } cam_scene_mode_overrides_t; 1133 1134 typedef struct { 1135 int32_t left; 1136 int32_t top; 1137 int32_t width; 1138 int32_t height; 1139 } cam_crop_region_t; 1140 1141 typedef struct { 1142 /* Estimated sharpness for each region of the input image. 1143 * Normalized to be between 0 and maxSharpnessMapValue. 1144 * Higher values mean sharper (better focused) */ 1145 int32_t sharpness[CAM_MAX_MAP_WIDTH][CAM_MAX_MAP_HEIGHT]; 1146 } cam_sharpness_map_t; 1147 1148 typedef struct { 1149 float lens_shading[4*CAM_MAX_SHADING_MAP_HEIGHT*CAM_MAX_SHADING_MAP_WIDTH]; 1150 } cam_lens_shading_map_t; 1151 1152 typedef struct { 1153 int32_t min_value; 1154 int32_t max_value; 1155 int32_t def_value; 1156 int32_t step; 1157 } cam_control_range_t; 1158 1159 #define CAM_QCOM_FEATURE_FACE_DETECTION (1<<0) 1160 #define CAM_QCOM_FEATURE_DENOISE2D (1<<1) 1161 #define CAM_QCOM_FEATURE_CROP (1<<2) 1162 #define CAM_QCOM_FEATURE_ROTATION (1<<3) 1163 #define CAM_QCOM_FEATURE_FLIP (1<<4) 1164 #define CAM_QCOM_FEATURE_HDR (1<<5) 1165 #define CAM_QCOM_FEATURE_REGISTER_FACE (1<<6) 1166 #define CAM_QCOM_FEATURE_SHARPNESS (1<<7) 1167 #define CAM_QCOM_FEATURE_VIDEO_HDR (1<<8) 1168 #define CAM_QCOM_FEATURE_CAC (1<<9) 1169 1170 // Counter clock wise 1171 typedef enum { 1172 ROTATE_0 = 1<<0, 1173 ROTATE_90 = 1<<1, 1174 ROTATE_180 = 1<<2, 1175 ROTATE_270 = 1<<3, 1176 } cam_rotation_t; 1177 1178 typedef enum { 1179 FLIP_H = 1<<0, 1180 FLIP_V = 1<<1, 1181 } cam_flip_t; 1182 1183 typedef struct { 1184 uint32_t bundle_id; /* bundle id */ 1185 uint8_t num_of_streams; /* number of streams in the bundle */ 1186 uint32_t stream_ids[MAX_STREAM_NUM_IN_BUNDLE]; /* array of stream ids to be bundled */ 1187 } cam_bundle_config_t; 1188 1189 typedef enum { 1190 CAM_ONLINE_REPROCESS_TYPE, /* online reprocess, frames from running streams */ 1191 CAM_OFFLINE_REPROCESS_TYPE, /* offline reprocess, frames from external source */ 1192 } cam_reprocess_type_enum_t; 1193 1194 typedef struct { 1195 /* reprocess feature mask */ 1196 uint32_t feature_mask; 1197 1198 /* individual setting for features to be reprocessed */ 1199 cam_denoise_param_t denoise2d; 1200 cam_rect_t input_crop; 1201 cam_rotation_t rotation; 1202 uint32_t flip; 1203 int32_t sharpness; 1204 int32_t hdr_need_1x; /* when CAM_QCOM_FEATURE_HDR enabled, indicate if 1x is needed for output */ 1205 } cam_pp_feature_config_t; 1206 1207 typedef struct { 1208 uint32_t input_stream_id; 1209 /* input source stream type */ 1210 cam_stream_type_t input_stream_type; 1211 } cam_pp_online_src_config_t; 1212 1213 typedef struct { 1214 /* image format */ 1215 cam_format_t input_fmt; 1216 1217 /* image dimension */ 1218 cam_dimension_t input_dim; 1219 1220 /* buffer plane information, will be calc based on stream_type, fmt, 1221 dim, and padding_info(from stream config). Info including: 1222 offset_x, offset_y, stride, scanline, plane offset */ 1223 cam_stream_buf_plane_info_t input_buf_planes; 1224 1225 /* number of input reprocess buffers */ 1226 uint8_t num_of_bufs; 1227 } cam_pp_offline_src_config_t; 1228 1229 /* reprocess stream input configuration */ 1230 typedef struct { 1231 /* input source config */ 1232 cam_reprocess_type_enum_t pp_type; 1233 union { 1234 cam_pp_online_src_config_t online; 1235 cam_pp_offline_src_config_t offline; 1236 }; 1237 1238 /* pp feature config */ 1239 cam_pp_feature_config_t pp_feature_config; 1240 } cam_stream_reproc_config_t; 1241 1242 typedef struct { 1243 uint8_t crop_enabled; 1244 cam_rect_t input_crop; 1245 } cam_crop_param_t; 1246 1247 typedef struct { 1248 uint8_t trigger; 1249 int32_t trigger_id; 1250 } cam_trigger_t; 1251 1252 typedef struct { 1253 cam_denoise_param_t denoise; 1254 cam_crop_param_t crop; 1255 uint32_t flip; /* 0 means no flip */ 1256 int32_t sharpness; /* 0 means no sharpness */ 1257 } cam_per_frame_pp_config_t; 1258 1259 typedef enum { 1260 CAM_OPT_STAB_OFF, 1261 CAM_OPT_STAB_ON, 1262 CAM_OPT_STAB_MAX 1263 } cam_optical_stab_modes_t; 1264 1265 typedef enum { 1266 CAM_FILTER_ARRANGEMENT_RGGB, 1267 CAM_FILTER_ARRANGEMENT_GRBG, 1268 CAM_FILTER_ARRANGEMENT_GBRG, 1269 CAM_FILTER_ARRANGEMENT_BGGR, 1270 1271 /* Sensor is not Bayer; output has 3 16-bit values for each pixel, 1272 * instead of just 1 16-bit value per pixel.*/ 1273 CAM_FILTER_ARRANGEMENT_RGB 1274 } cam_color_filter_arrangement_t; 1275 1276 typedef enum { 1277 CAM_AF_STATE_INACTIVE, 1278 CAM_AF_STATE_PASSIVE_SCAN, 1279 CAM_AF_STATE_PASSIVE_FOCUSED, 1280 CAM_AF_STATE_ACTIVE_SCAN, 1281 CAM_AF_STATE_FOCUSED_LOCKED, 1282 CAM_AF_STATE_NOT_FOCUSED_LOCKED, 1283 CAM_AF_STATE_PASSIVE_UNFOCUSED 1284 } cam_af_state_t; 1285 1286 typedef enum { 1287 CAM_AF_LENS_STATE_STATIONARY, 1288 CAM_AF_LENS_STATE_MOVING, 1289 } cam_af_lens_state_t; 1290 1291 typedef enum { 1292 CAM_AWB_STATE_INACTIVE, 1293 CAM_AWB_STATE_SEARCHING, 1294 CAM_AWB_STATE_CONVERGED, 1295 CAM_AWB_STATE_LOCKED 1296 } cam_awb_state_t; 1297 1298 #endif /* __QCAMERA_TYPES_H__ */ 1299