cam_types.h revision 34a6e88cee59495adcf1437d027c105171738a07
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
53typedef enum {
54    CAM_HAL_V1 = 1,
55    CAM_HAL_V3 = 3
56} cam_hal_version_t;
57
58typedef 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
67typedef enum {
68    CAM_POSITION_BACK,
69    CAM_POSITION_FRONT
70} cam_position_t;
71
72typedef enum {
73    CAM_FLICKER_NONE,
74    CAM_FLICKER_50_HZ,
75    CAM_FLICKER_60_HZ
76} cam_flicker_t;
77
78typedef 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
193typedef 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
213typedef 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
228typedef 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
240typedef 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
252typedef 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
262typedef enum {
263    CAM_MAPPING_TYPE_FD_MAPPING,
264    CAM_MAPPING_TYPE_FD_UNMAPPING,
265    CAM_MAPPING_TYPE_MAX
266} cam_mapping_type;
267
268typedef 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
276typedef enum {
277    CAM_MODE_2D = (1<<0),
278    CAM_MODE_3D = (1<<1)
279} cam_mode_t;
280
281typedef struct {
282    uint32_t len;
283    uint32_t y_offset;
284    uint32_t cbcr_offset;
285} cam_sp_len_offset_t;
286
287typedef 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
296typedef struct {
297    uint32_t width_padding;
298    uint32_t height_padding;
299    uint32_t plane_padding;
300} cam_padding_info_t;
301
302typedef 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
311typedef struct {
312    int32_t width;
313    int32_t height;
314} cam_dimension_t;
315
316typedef struct {
317    cam_frame_len_offset_t plane_info;
318} cam_stream_buf_plane_info_t;
319
320typedef struct {
321    float min_fps;
322    float max_fps;
323} cam_fps_range_t;
324
325typedef struct {
326    int32_t min_sensitivity;
327    int32_t max_sensitivity;
328} cam_sensitivity_range_t;
329
330typedef 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
339typedef 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
347typedef 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
361typedef 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 */
372typedef 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
383typedef 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
394typedef enum {
395    CAM_AE_MODE_OFF,
396    CAM_AE_MODE_ON,
397    CAM_AE_MODE_MAX
398} cam_ae_mode_type;
399
400typedef 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 */
409typedef 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
420typedef 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
445typedef 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
461typedef 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
470typedef enum {
471    CAM_FLASH_FIRING_LEVEL_0,
472    CAM_FLASH_FIRING_LEVEL_1,
473    CAM_FLASH_FIRING_LEVEL_2,
474    CAM_FLASH_FIRING_LEVEL_3,
475    CAM_FLASH_FIRING_LEVEL_4,
476    CAM_FLASH_FIRING_LEVEL_5,
477    CAM_FLASH_FIRING_LEVEL_6,
478    CAM_FLASH_FIRING_LEVEL_7,
479    CAM_FLASH_FIRING_LEVEL_8,
480    CAM_FLASH_FIRING_LEVEL_9,
481    CAM_FLASH_FIRING_LEVEL_10,
482    CAM_FLASH_FIRING_LEVEL_MAX
483} cam_flash_firing_level_t;
484
485
486typedef enum {
487    CAM_AEC_TRIGGER_IDLE,
488    CAM_AEC_TRIGGER_START
489} cam_aec_trigger_type_t;
490
491typedef enum {
492    CAM_AF_TRIGGER_IDLE,
493    CAM_AF_TRIGGER_START,
494    CAM_AF_TRIGGER_CANCEL
495} cam_af_trigger_type_t;
496
497typedef enum {
498    CAM_AE_STATE_INACTIVE,
499    CAM_AE_STATE_SEARCHING,
500    CAM_AE_STATE_CONVERGED,
501    CAM_AE_STATE_LOCKED,
502    CAM_AE_STATE_FLASH_REQUIRED,
503    CAM_AE_STATE_PRECAPTURE
504} cam_ae_state_t;
505
506typedef enum {
507    CAM_NOISE_REDUCTION_MODE_OFF,
508    CAM_NOISE_REDUCTION_MODE_FAST,
509    CAM_NOISE_REDUCTION_MODE_HIGH_QUALITY
510} cam_noise_reduction_mode_t;
511
512typedef enum {
513    CAM_EDGE_MODE_OFF,
514    CAM_EDGE_MODE_FAST,
515    CAM_EDGE_MODE_HIGH_QUALITY,
516} cam_edge_mode_t;
517
518typedef enum {
519    CAM_BLACK_LEVEL_LOCK_OFF,
520    CAM_BLACK_LEVEL_LOCK_ON,
521} cam_black_level_lock_t;
522
523typedef enum {
524    CAM_LENS_SHADING_MAP_MODE_OFF,
525    CAM_LENS_SHADING_MAP_MODE_ON,
526} cam_lens_shading_map_mode_t;
527
528typedef enum {
529    CAM_FACE_DETECT_MODE_OFF,
530    CAM_FACE_DETECT_MODE_SIMPLE,
531    CAM_FACE_DETECT_MODE_FULL,
532} cam_face_detect_mode_t;
533
534typedef enum {
535    CAM_TONEMAP_MODE_CONTRAST_CURVE,
536    CAM_TONEMAP_MODE_FAST,
537    CAM_TONEMAP_MODE_HIGH_QUALITY,
538} cam_tonemap_mode_t;
539
540typedef struct  {
541    int32_t left;
542    int32_t top;
543    int32_t width;
544    int32_t height;
545} cam_rect_t;
546
547typedef struct  {
548    cam_rect_t rect;
549    int32_t weight; /* weight of the area, valid for focusing/metering areas */
550} cam_area_t;
551
552typedef enum {
553    CAM_STREAMING_MODE_CONTINUOUS, /* continous streaming */
554    CAM_STREAMING_MODE_BURST,      /* burst streaming */
555    CAM_STREAMING_MODE_MAX
556} cam_streaming_mode_t;
557
558#define CAM_REPROCESS_MASK_TYPE_WNR (1<<0)
559
560/* event from server */
561typedef enum {
562    CAM_EVENT_TYPE_MAP_UNMAP_DONE  = (1<<0),
563    CAM_EVENT_TYPE_AUTO_FOCUS_DONE = (1<<1),
564    CAM_EVENT_TYPE_ZOOM_DONE       = (1<<2),
565    CAM_EVENT_TYPE_DAEMON_DIED     = (1<<3),
566    CAM_EVENT_TYPE_MAX
567} cam_event_type_t;
568
569typedef enum {
570    CAM_EXP_BRACKETING_OFF,
571    CAM_EXP_BRACKETING_ON
572} cam_bracket_mode;
573
574typedef struct {
575    cam_bracket_mode mode;
576    char values[MAX_EXP_BRACKETING_LENGTH];  /* user defined values */
577} cam_exp_bracketing_t;
578
579typedef enum {
580    CAM_AEC_ROI_OFF,
581    CAM_AEC_ROI_ON
582} cam_aec_roi_ctrl_t;
583
584typedef enum {
585    CAM_AEC_ROI_BY_INDEX,
586    CAM_AEC_ROI_BY_COORDINATE,
587} cam_aec_roi_type_t;
588
589typedef struct {
590    uint32_t x;
591    uint32_t y;
592} cam_coordinate_type_t;
593
594typedef struct {
595    int32_t numerator;
596    int32_t denominator;
597} cam_rational_type_t;
598
599typedef struct {
600    cam_aec_roi_ctrl_t aec_roi_enable;
601    cam_aec_roi_type_t aec_roi_type;
602    union {
603        cam_coordinate_type_t coordinate[MAX_ROI];
604        uint32_t aec_roi_idx[MAX_ROI];
605    } cam_aec_roi_position;
606} cam_set_aec_roi_t;
607
608typedef struct {
609    uint32_t frm_id;
610    uint8_t num_roi;
611    cam_rect_t roi[MAX_ROI];
612    int32_t weight[MAX_ROI];
613    uint8_t is_multiwindow;
614} cam_roi_info_t;
615
616typedef enum {
617    CAM_WAVELET_DENOISE_YCBCR_PLANE,
618    CAM_WAVELET_DENOISE_CBCR_ONLY,
619    CAM_WAVELET_DENOISE_STREAMLINE_YCBCR,
620    CAM_WAVELET_DENOISE_STREAMLINED_CBCR
621} cam_denoise_process_type_t;
622
623typedef struct {
624    int denoise_enable;
625    cam_denoise_process_type_t process_plates;
626} cam_denoise_param_t;
627
628#define CAM_FACE_PROCESS_MASK_DETECTION    (1<<0)
629#define CAM_FACE_PROCESS_MASK_RECOGNITION  (1<<1)
630typedef struct {
631    int fd_mode;               /* mask of face process */
632    int num_fd;
633} cam_fd_set_parm_t;
634
635typedef struct {
636    int8_t face_id;            /* unique id for face tracking within view unless view changes */
637    int8_t score;              /* score of confidence (0, -100) */
638    cam_rect_t face_boundary;  /* boundary of face detected */
639    cam_coordinate_type_t left_eye_center;  /* coordinate of center of left eye */
640    cam_coordinate_type_t right_eye_center; /* coordinate of center of right eye */
641    cam_coordinate_type_t mouth_center;     /* coordinate of center of mouth */
642    uint8_t smile_degree;      /* smile degree (0, -100) */
643    uint8_t smile_confidence;  /* smile confidence (0, 100) */
644    uint8_t face_recognised;   /* if face is recognised */
645    int8_t gaze_angle;         /* -90 -45 0 45 90 for head left to rigth tilt */
646    int8_t updown_dir;         /* up down direction (-90, 90) */
647    int8_t leftright_dir;      /* left right direction (-90, 90) */
648    int8_t roll_dir;           /* roll direction (-90, 90) */
649    int8_t left_right_gaze;    /* left right gaze degree (-50, 50) */
650    int8_t top_bottom_gaze;    /* up down gaze degree (-50, 50) */
651    uint8_t blink_detected;    /* if blink is detected */
652    uint8_t left_blink;        /* left eye blink degeree (0, -100) */
653    uint8_t right_blink;       /* right eye blink degree (0, - 100) */
654} cam_face_detection_info_t;
655
656typedef struct {
657    uint32_t frame_id;                         /* frame index of which faces are detected */
658    uint8_t num_faces_detected;                /* number of faces detected */
659    cam_face_detection_info_t faces[MAX_ROI];  /* detailed information of faces detected */
660} cam_face_detection_data_t;
661
662#define CAM_HISTOGRAM_STATS_SIZE 256
663typedef struct {
664    uint32_t max_hist_value;
665    uint32_t hist_buf[CAM_HISTOGRAM_STATS_SIZE]; /* buf holding histogram stats data */
666} cam_histogram_data_t;
667
668typedef struct {
669    cam_histogram_data_t r_stats;
670    cam_histogram_data_t b_stats;
671    cam_histogram_data_t gr_stats;
672    cam_histogram_data_t gb_stats;
673} cam_bayer_hist_stats_t;
674
675typedef enum {
676    CAM_HISTOGRAM_TYPE_BAYER,
677    CAM_HISTOGRAM_TYPE_YUV
678} cam_histogram_type_t;
679
680typedef struct {
681    cam_histogram_type_t type;
682    union {
683        cam_bayer_hist_stats_t bayer_stats;
684        cam_histogram_data_t yuv_stats;
685    };
686} cam_hist_stats_t;
687
688enum cam_focus_distance_index{
689  CAM_FOCUS_DISTANCE_NEAR_INDEX,  /* 0 */
690  CAM_FOCUS_DISTANCE_OPTIMAL_INDEX,
691  CAM_FOCUS_DISTANCE_FAR_INDEX,
692  CAM_FOCUS_DISTANCE_MAX_INDEX
693};
694
695typedef struct {
696  float focus_distance[CAM_FOCUS_DISTANCE_MAX_INDEX];
697} cam_focus_distances_info_t;
698
699/* Different autofocus cycle when calling do_autoFocus
700 * CAM_AF_COMPLETE_EXISTING_SWEEP: Complete existing sweep
701 * if one is ongoing, and lock.
702 * CAM_AF_DO_ONE_FULL_SWEEP: Do one full sweep, regardless
703 * of the current state, and lock.
704 * CAM_AF_START_CONTINUOUS_SWEEP: Start continous sweep.
705 * After do_autoFocus, HAL receives an event: CAM_AF_FOCUSED,
706 * or CAM_AF_NOT_FOCUSED.
707 * cancel_autoFocus stops any lens movement.
708 * Each do_autoFocus call only produces 1 FOCUSED/NOT_FOCUSED
709 * event, not both.
710 */
711typedef enum {
712    CAM_AF_COMPLETE_EXISTING_SWEEP,
713    CAM_AF_DO_ONE_FULL_SWEEP,
714    CAM_AF_START_CONTINUOUS_SWEEP
715} cam_autofocus_cycle_t;
716
717typedef enum {
718    CAM_AF_SCANNING,
719    CAM_AF_FOCUSED,
720    CAM_AF_NOT_FOCUSED
721} cam_autofocus_state_t;
722
723typedef struct {
724    cam_autofocus_state_t focus_state;           /* state of focus */
725    cam_focus_distances_info_t focus_dist;       /* focus distance */
726} cam_auto_focus_data_t;
727
728typedef struct {
729    uint32_t stream_id;
730    cam_rect_t crop;
731} cam_stream_crop_info_t;
732
733typedef struct {
734    uint8_t num_of_streams;
735    cam_stream_crop_info_t crop_info[MAX_NUM_STREAMS];
736} cam_crop_data_t;
737
738typedef enum {
739    DO_NOT_NEED_FUTURE_FRAME,
740    NEED_FUTURE_FRAME,
741} cam_prep_snapshot_state_t;
742
743typedef struct {
744    float gains[4];
745} cam_color_correct_gains_t;
746
747typedef struct {
748    uint32_t min_frame_idx;
749    uint32_t max_frame_idx;
750} cam_frame_idx_range_t;
751
752typedef  struct {
753    uint8_t is_stats_valid;               /* if histgram data is valid */
754    cam_hist_stats_t stats_data;          /* histogram data */
755
756    uint8_t is_faces_valid;               /* if face detection data is valid */
757    cam_face_detection_data_t faces_data; /* face detection result */
758
759    uint8_t is_focus_valid;               /* if focus data is valid */
760    cam_auto_focus_data_t focus_data;     /* focus data */
761
762    uint8_t is_crop_valid;                /* if crop data is valid */
763    cam_crop_data_t crop_data;            /* crop data */
764
765    uint8_t is_prep_snapshot_done_valid;  /* if prep snapshot done is valid */
766    cam_prep_snapshot_state_t prep_snapshot_done_state;  /* prepare snapshot done state */
767
768    /* if good frame idx range is valid */
769    uint8_t is_good_frame_idx_range_valid;
770    /* good frame idx range, make sure:
771     * 1. good_frame_idx_range.min_frame_idx > current_frame_idx
772     * 2. good_frame_idx_range.min_frame_idx - current_frame_idx < 100 */
773    cam_frame_idx_range_t good_frame_idx_range;
774
775    char private_metadata[MAX_METADATA_PAYLOAD_SIZE];
776
777} cam_metadata_info_t;
778
779typedef enum {
780    CAM_INTF_PARM_HAL_VERSION,
781    /* common between HAL1 and HAL3 */
782    CAM_INTF_PARM_ANTIBANDING,
783    CAM_INTF_PARM_EXPOSURE_COMPENSATION,
784    CAM_INTF_PARM_AEC_LOCK,
785    CAM_INTF_PARM_FPS_RANGE,
786    CAM_INTF_PARM_AWB_LOCK,
787    CAM_INTF_PARM_WHITE_BALANCE,
788    CAM_INTF_PARM_EFFECT,
789    CAM_INTF_PARM_BESTSHOT_MODE,
790    CAM_INTF_PARM_DIS_ENABLE,
791    CAM_INTF_PARM_LED_MODE,
792    CAM_INTF_META_HISTOGRAM, /* 10 */
793    CAM_INTF_META_FACE_DETECTION,
794    CAM_INTF_META_AUTOFOCUS_DATA,
795
796    /* specific to HAl1 */
797    CAM_INTF_PARM_QUERY_FLASH4SNAP,
798    CAM_INTF_PARM_EXPOSURE,
799    CAM_INTF_PARM_SHARPNESS,
800    CAM_INTF_PARM_CONTRAST,
801    CAM_INTF_PARM_SATURATION,
802    CAM_INTF_PARM_BRIGHTNESS,
803    CAM_INTF_PARM_ISO,
804    CAM_INTF_PARM_ZOOM, /* 20 */
805    CAM_INTF_PARM_ROLLOFF,
806    CAM_INTF_PARM_MODE,             /* camera mode */
807    CAM_INTF_PARM_AEC_ALGO_TYPE,    /* auto exposure algorithm */
808    CAM_INTF_PARM_FOCUS_ALGO_TYPE,  /* focus algorithm */
809    CAM_INTF_PARM_AEC_ROI,
810    CAM_INTF_PARM_AF_ROI,
811    CAM_INTF_PARM_FOCUS_MODE,
812    CAM_INTF_PARM_SCE_FACTOR,
813    CAM_INTF_PARM_FD,
814    CAM_INTF_PARM_MCE, /* 30 */
815    CAM_INTF_PARM_HFR,
816    CAM_INTF_PARM_REDEYE_REDUCTION,
817    CAM_INTF_PARM_WAVELET_DENOISE,
818    CAM_INTF_PARM_HISTOGRAM,
819    CAM_INTF_PARM_ASD_ENABLE,
820    CAM_INTF_PARM_RECORDING_HINT,
821    CAM_INTF_PARM_HDR,
822    CAM_INTF_PARM_FRAMESKIP,
823    CAM_INTF_PARM_ZSL_MODE,  /* indicating if it's running in ZSL mode */
824    CAM_INTF_PARM_HDR_NEED_1X, /* if HDR needs 1x output */ /* 40 */
825    CAM_INTF_PARM_LOCK_CAF,
826    CAM_INTF_PARM_VIDEO_HDR,
827    CAM_INTF_PARM_ROTATION,
828    CAM_INTF_META_CROP_DATA,
829    CAM_INTF_META_PREP_SNAPSHOT_DONE,
830    CAM_INTF_META_GOOD_FRAME_IDX_RANGE,
831
832    /* stream based parameters */
833    CAM_INTF_PARM_DO_REPROCESS,
834    CAM_INTF_PARM_SET_BUNDLE,
835
836    /* specific to HAL3 */
837    /* Whether the metadata maps to a valid frame number */
838    CAM_INTF_META_FRAME_NUMBER_VALID,
839    /* Number of pending requests yet to be processed */
840    CAM_INTF_META_PENDING_REQUESTS,
841    /* COLOR CORRECTION.*/
842    CAM_INTF_META_COLOR_CORRECT_MODE,
843    /* A transform matrix to chromatically adapt pixels in the CIE XYZ (1931)
844     * color space from the scene illuminant to the sRGB-standard D65-illuminant. */
845    CAM_INTF_META_COLOR_CORRECT_TRANSFORM, /* 50 */
846    /*Color channel gains in the Bayer raw domain in the order [RGeGoB]*/
847    CAM_INTF_META_COLOR_CORRECT_GAINS,
848    /*The best fit color transform matrix calculated by the stats*/
849    CAM_INTF_META_PRED_COLOR_CORRECT_TRANSFORM,
850    /*The best fit color channels gains calculated by the stats*/
851    CAM_INTF_META_PRED_COLOR_CORRECT_GAINS,
852    /* CONTROL */
853//    CAM_INTF_META_REQUEST_ID,
854    /* A frame counter set by the framework. Must be maintained unchanged in
855     * output frame. */
856    CAM_INTF_META_FRAME_NUMBER,
857    /* Whether AE is currently updating the sensor exposure and sensitivity
858     * fields */
859    CAM_INTF_META_AEC_MODE,
860    /* List of areas to use for metering */
861    CAM_INTF_META_AEC_ROI,
862    /* Whether the HAL must trigger precapture metering.*/
863    CAM_INTF_META_AEC_PRECAPTURE_TRIGGER,
864    /* The ID sent with the latest CAMERA2_TRIGGER_PRECAPTURE_METERING call */
865    CAM_INTF_META_AEC_PRECAPTURE_ID,
866    /* Current state of AE algorithm */
867    CAM_INTF_META_AEC_STATE,
868    /* List of areas to use for focus estimation */
869    CAM_INTF_META_AF_ROI,
870    /* Whether the HAL must trigger autofocus. */
871    CAM_INTF_META_AF_TRIGGER,
872    /* Current state of AF algorithm */
873    CAM_INTF_META_AF_STATE,
874    /* The ID sent with the latest CAMERA2_TRIGGER_AUTOFOCUS call */
875    CAM_INTF_META_AF_TRIGGER_ID,
876    /* List of areas to use for illuminant estimation */
877    CAM_INTF_META_AWB_REGIONS,
878    /* Current state of AWB algorithm */
879    CAM_INTF_META_AWB_STATE,
880    /*Whether black level compensation is frozen or free to vary*/
881    CAM_INTF_META_BLACK_LEVEL_LOCK,
882    /* Information to 3A routines about the purpose of this capture, to help
883     * decide optimal 3A strategy */
884    CAM_INTF_META_CAPTURE_INTENT,
885    /* Overall mode of 3A control routines. We need to have this parameter
886     * because not all android.control.* have an OFF option, for example,
887     * AE_FPS_Range, aePrecaptureTrigger */
888    CAM_INTF_META_MODE,
889    /* DEMOSAIC */
890    /* Controls the quality of the demosaicing processing */
891    CAM_INTF_META_DEMOSAIC,
892    /* EDGE */
893    /* Operation mode for edge enhancement */
894    CAM_INTF_META_EDGE_MODE,
895    /* Control the amount of edge enhancement applied to the images.*/
896    /* 1-10; 10 is maximum sharpening */
897    CAM_INTF_META_SHARPNESS_STRENGTH,
898    /* FLASH */
899    /* Power for flash firing/torch, 10 is max power; 0 is no flash. Linear */
900    CAM_INTF_META_FLASH_POWER,
901    /* Firing time of flash relative to start of exposure, in nanoseconds*/
902    CAM_INTF_META_FLASH_FIRING_TIME,
903    /* Current state of the flash unit */
904    CAM_INTF_META_FLASH_STATE,
905    /* GEOMETRIC */
906    /* Operating mode of geometric correction */
907    CAM_INTF_META_GEOMETRIC_MODE,
908    /* Control the amount of shading correction applied to the images */
909    CAM_INTF_META_GEOMETRIC_STRENGTH,
910    /* HOT PIXEL */
911    /* Set operational mode for hot pixel correction */
912    CAM_INTF_META_HOTPIXEL_MODE,
913    /* LENS */
914    /* Size of the lens aperture */
915    CAM_INTF_META_LENS_APERTURE,
916    /* State of lens neutral density filter(s) */
917    CAM_INTF_META_LENS_FILTERDENSITY,
918    /* Lens optical zoom setting */
919    CAM_INTF_META_LENS_FOCAL_LENGTH,
920    /* Distance to plane of sharpest focus, measured from frontmost surface
921     * of the lens */
922    CAM_INTF_META_LENS_FOCUS_DISTANCE,
923    /* The range of scene distances that are in sharp focus (depth of field) */
924    CAM_INTF_META_LENS_FOCUS_RANGE,
925    /* Whether optical image stabilization is enabled. */
926    CAM_INTF_META_LENS_OPT_STAB_MODE,
927    /*Whether the hal needs to output the lens shading map*/
928    CAM_INTF_META_LENS_SHADING_MAP_MODE,
929    /* Current lens status */
930    CAM_INTF_META_LENS_STATE,
931    /* NOISE REDUCTION */
932    /* Mode of operation for the noise reduction algorithm */
933    CAM_INTF_META_NOISE_REDUCTION_MODE,
934   /* Control the amount of noise reduction applied to the images.
935    * 1-10; 10 is max noise reduction */
936    CAM_INTF_META_NOISE_REDUCTION_STRENGTH,
937    /* SCALER */
938    /* Top-left corner and width of the output region to select from the active
939     * pixel array */
940    CAM_INTF_META_SCALER_CROP_REGION,
941    /* The estimated scene illumination lighting frequency */
942    CAM_INTF_META_SCENE_FLICKER,
943    /* SENSOR */
944    /* Duration each pixel is exposed to light, in nanoseconds */
945    CAM_INTF_META_SENSOR_EXPOSURE_TIME,
946    /* Duration from start of frame exposure to start of next frame exposure,
947     * in nanoseconds */
948    CAM_INTF_META_SENSOR_FRAME_DURATION,
949    /* Gain applied to image data. Must be implemented through analog gain only
950     * if set to values below 'maximum analog sensitivity'. */
951    CAM_INTF_META_SENSOR_SENSITIVITY,
952    /* Time at start of exposure of first row */
953    CAM_INTF_META_SENSOR_TIMESTAMP,
954    /* SHADING */
955    /* Quality of lens shading correction applied to the image data */
956    CAM_INTF_META_SHADING_MODE,
957    /* Control the amount of shading correction applied to the images.
958     * unitless: 1-10; 10 is full shading compensation */
959    CAM_INTF_META_SHADING_STRENGTH,
960    /* STATISTICS */
961    /* State of the face detector unit */
962    CAM_INTF_META_STATS_FACEDETECT_MODE,
963    /* Operating mode for histogram generation */
964    CAM_INTF_META_STATS_HISTOGRAM_MODE,
965    /* Operating mode for sharpness map generation */
966    CAM_INTF_META_STATS_SHARPNESS_MAP_MODE,
967    /* A 3-channel sharpness map, based on the raw sensor data,
968     * If only a monochrome sharpness map is supported, all channels
969     * should have the same data
970     */
971    CAM_INTF_META_STATS_SHARPNESS_MAP,
972
973    /* TONEMAP */
974    /* Table mapping blue input values to output values */
975    CAM_INTF_META_TONEMAP_CURVE_BLUE,
976    /* Table mapping green input values to output values */
977    CAM_INTF_META_TONEMAP_CURVE_GREEN,
978    /* Table mapping red input values to output values */
979    CAM_INTF_META_TONEMAP_CURVE_RED,
980    /* Tone map mode */
981    CAM_INTF_META_TONEMAP_MODE,
982    CAM_INTF_META_FLASH_MODE,
983    /* 2D array of gain factors for each color channel that was used to
984     * compensate for lens shading for this frame */
985    CAM_INTF_META_LENS_SHADING_MAP,
986    CAM_INTF_META_PRIVATE_DATA,
987    /* Indicates streams this request needs buffers on */
988    CAM_INTF_META_STREAM_TYPE_MASK,
989    CAM_INTF_PARM_MAX
990} cam_intf_parm_type_t;
991
992/*****************************************************************************
993 *                 Code for HAL3 data types                                  *
994 ****************************************************************************/
995typedef enum {
996    CAM_INTF_METADATA_MAX
997} cam_intf_metadata_type_t;
998
999typedef enum {
1000    CAM_INTENT_CUSTOM,
1001    CAM_INTENT_PREVIEW,
1002    CAM_INTENT_STILL_CAPTURE,
1003    CAM_INTENT_VIDEO_RECORD,
1004    CAM_INTENT_VIDEO_SNAPSHOT,
1005    CAM_INTENT_ZERO_SHUTTER_LAG,
1006    CAM_INTENT_MAX,
1007} cam_intent_t;
1008
1009typedef enum {
1010    /* Full application control of pipeline. All 3A routines are disabled,
1011     * no other settings in android.control.* have any effect */
1012    CAM_CONTROL_OFF,
1013    /* Use settings for each individual 3A routine. Manual control of capture
1014     * parameters is disabled. All controls in android.control.* besides sceneMode
1015     * take effect */
1016    CAM_CONTROL_AUTO,
1017    /* Use specific scene mode. Enabling this disables control.aeMode,
1018     * control.awbMode and control.afMode controls; the HAL must ignore those
1019     * settings while USE_SCENE_MODE is active (except for FACE_PRIORITY scene mode).
1020     * Other control entries are still active. This setting can only be used if
1021     * availableSceneModes != UNSUPPORTED. TODO: Should we remove this and handle this
1022     * in HAL ?*/
1023    CAM_CONTROL_USE_SCENE_MODE,
1024    CAM_CONTROL_MAX
1025} cam_control_mode_t;
1026
1027typedef enum {
1028    /* Use the android.colorCorrection.transform matrix to do color conversion */
1029    CAM_COLOR_CORRECTION_TRANSFORM_MATRIX,
1030    /* Must not slow down frame rate relative to raw bayer output */
1031    CAM_COLOR_CORRECTION_FAST,
1032    /* Frame rate may be reduced by high quality */
1033    CAM_COLOR_CORRECTION_HIGH_QUALITY,
1034} cam_color_correct_mode_t;
1035
1036typedef struct {
1037    /* 3x3 float matrix in row-major order. each element is in range of (0, 1) */
1038    cam_rational_type_t transform_matrix[3][3];
1039} cam_color_correct_matrix_t;
1040
1041#define CAM_FOCAL_LENGTHS_MAX     1
1042#define CAM_APERTURES_MAX         1
1043#define CAM_FILTER_DENSITIES_MAX  1
1044#define CAM_MAX_MAP_HEIGHT        6
1045#define CAM_MAX_MAP_WIDTH         6
1046#define CAM_MAX_SHADING_MAP_WIDTH 17
1047#define CAM_MAX_SHADING_MAP_HEIGHT 13
1048#define CAM_MAX_TONEMAP_CURVE_SIZE    128
1049
1050typedef struct {
1051    int tonemap_points_cnt;
1052
1053    /* A 1D array of pairs of floats.
1054     * Mapping a 0-1 input range to a 0-1 output range.
1055     * The input range must be monotonically increasing with N,
1056     * and values between entries should be linearly interpolated.
1057     * For example, if the array is: [0.0, 0.0, 0.3, 0.5, 1.0, 1.0],
1058     * then the input->output mapping for a few sample points would be:
1059     * 0 -> 0, 0.15 -> 0.25, 0.3 -> 0.5, 0.5 -> 0.64 */
1060    float tonemap_points[CAM_MAX_TONEMAP_CURVE_SIZE][2];
1061} cam_tonemap_curve_t;
1062
1063typedef enum {
1064    OFF,
1065    FAST,
1066    QUALITY,
1067} cam_quality_preference_t;
1068
1069typedef enum {
1070    CAM_FLASH_CTRL_OFF,
1071    CAM_FLASH_CTRL_SINGLE,
1072    CAM_FLASH_CTRL_TORCH
1073} cam_flash_ctrl_t;
1074
1075typedef struct {
1076    uint8_t ae_mode;
1077    uint8_t awb_mode;
1078    uint8_t af_mode;
1079} cam_scene_mode_overrides_t;
1080
1081typedef struct {
1082    int32_t left;
1083    int32_t top;
1084    int32_t width;
1085    int32_t height;
1086} cam_crop_region_t;
1087
1088typedef struct {
1089    /* Estimated sharpness for each region of the input image.
1090     * Normalized to be between 0 and maxSharpnessMapValue.
1091     * Higher values mean sharper (better focused) */
1092    int32_t sharpness[CAM_MAX_MAP_WIDTH][CAM_MAX_MAP_HEIGHT];
1093} cam_sharpness_map_t;
1094
1095typedef struct {
1096   float lens_shading[4*CAM_MAX_SHADING_MAP_HEIGHT*CAM_MAX_SHADING_MAP_WIDTH];
1097} cam_lens_shading_map_t;
1098
1099typedef struct {
1100    int32_t min_value;
1101    int32_t max_value;
1102    int32_t def_value;
1103    int32_t step;
1104} cam_control_range_t;
1105
1106#define CAM_QCOM_FEATURE_FACE_DETECTION (1<<0)
1107#define CAM_QCOM_FEATURE_DENOISE2D      (1<<1)
1108#define CAM_QCOM_FEATURE_CROP           (1<<2)
1109#define CAM_QCOM_FEATURE_ROTATION       (1<<3)
1110#define CAM_QCOM_FEATURE_FLIP           (1<<4)
1111#define CAM_QCOM_FEATURE_HDR            (1<<5)
1112#define CAM_QCOM_FEATURE_REGISTER_FACE  (1<<6)
1113#define CAM_QCOM_FEATURE_SHARPNESS      (1<<7)
1114#define CAM_QCOM_FEATURE_VIDEO_HDR      (1<<8)
1115#define CAM_QCOM_FEATURE_CAC            (1<<9)
1116
1117// Counter clock wise
1118typedef enum {
1119    ROTATE_0 = 1<<0,
1120    ROTATE_90 = 1<<1,
1121    ROTATE_180 = 1<<2,
1122    ROTATE_270 = 1<<3,
1123} cam_rotation_t;
1124
1125typedef enum {
1126    FLIP_H = 1<<0,
1127    FLIP_V = 1<<1,
1128} cam_flip_t;
1129
1130typedef struct {
1131    uint32_t bundle_id;                            /* bundle id */
1132    uint8_t num_of_streams;                        /* number of streams in the bundle */
1133    uint32_t stream_ids[MAX_STREAM_NUM_IN_BUNDLE]; /* array of stream ids to be bundled */
1134} cam_bundle_config_t;
1135
1136typedef enum {
1137    CAM_ONLINE_REPROCESS_TYPE,    /* online reprocess, frames from running streams */
1138    CAM_OFFLINE_REPROCESS_TYPE,   /* offline reprocess, frames from external source */
1139} cam_reprocess_type_enum_t;
1140
1141typedef struct {
1142    /* reprocess feature mask */
1143    uint32_t feature_mask;
1144
1145    /* individual setting for features to be reprocessed */
1146    cam_denoise_param_t denoise2d;
1147    cam_rect_t input_crop;
1148    cam_rotation_t rotation;
1149    uint32_t flip;
1150    int32_t sharpness;
1151    int32_t hdr_need_1x; /* when CAM_QCOM_FEATURE_HDR enabled, indicate if 1x is needed for output */
1152} cam_pp_feature_config_t;
1153
1154typedef struct {
1155    uint32_t input_stream_id;
1156    /* input source stream type */
1157    cam_stream_type_t input_stream_type;
1158} cam_pp_online_src_config_t;
1159
1160typedef struct {
1161    /* image format */
1162    cam_format_t input_fmt;
1163
1164    /* image dimension */
1165    cam_dimension_t input_dim;
1166
1167    /* buffer plane information, will be calc based on stream_type, fmt,
1168       dim, and padding_info(from stream config). Info including:
1169       offset_x, offset_y, stride, scanline, plane offset */
1170    cam_stream_buf_plane_info_t input_buf_planes;
1171
1172    /* number of input reprocess buffers */
1173    uint8_t num_of_bufs;
1174} cam_pp_offline_src_config_t;
1175
1176/* reprocess stream input configuration */
1177typedef struct {
1178    /* input source config */
1179    cam_reprocess_type_enum_t pp_type;
1180    union {
1181        cam_pp_online_src_config_t online;
1182        cam_pp_offline_src_config_t offline;
1183    };
1184
1185    /* pp feature config */
1186    cam_pp_feature_config_t pp_feature_config;
1187} cam_stream_reproc_config_t;
1188
1189typedef struct {
1190    uint8_t crop_enabled;
1191    cam_rect_t input_crop;
1192} cam_crop_param_t;
1193
1194typedef struct {
1195    uint8_t trigger;
1196    int32_t trigger_id;
1197} cam_trigger_t;
1198
1199typedef struct {
1200    cam_denoise_param_t denoise;
1201    cam_crop_param_t crop;
1202    uint32_t flip;     /* 0 means no flip */
1203    int32_t sharpness; /* 0 means no sharpness */
1204} cam_per_frame_pp_config_t;
1205
1206typedef enum {
1207    CAM_OPT_STAB_OFF,
1208    CAM_OPT_STAB_ON,
1209    CAM_OPT_STAB_MAX
1210} cam_optical_stab_modes_t;
1211
1212typedef enum {
1213    CAM_FILTER_ARRANGEMENT_RGGB,
1214    CAM_FILTER_ARRANGEMENT_GRBG,
1215    CAM_FILTER_ARRANGEMENT_GBRG,
1216    CAM_FILTER_ARRANGEMENT_BGGR,
1217
1218    /* Sensor is not Bayer; output has 3 16-bit values for each pixel,
1219     * instead of just 1 16-bit value per pixel.*/
1220    CAM_FILTER_ARRANGEMENT_RGB
1221} cam_color_filter_arrangement_t;
1222
1223typedef enum {
1224    CAM_AF_STATE_INACTIVE,
1225    CAM_AF_STATE_PASSIVE_SCAN,
1226    CAM_AF_STATE_PASSIVE_FOCUSED,
1227    CAM_AF_STATE_ACTIVE_SCAN,
1228    CAM_AF_STATE_FOCUSED_LOCKED,
1229    CAM_AF_STATE_NOT_FOCUSED_LOCKED
1230} cam_af_state_t;
1231
1232typedef enum {
1233    CAM_AWB_STATE_INACTIVE,
1234    CAM_AWB_STATE_SEARCHING,
1235    CAM_AWB_STATE_CONVERGED,
1236    CAM_AWB_STATE_LOCKED
1237} cam_awb_state_t;
1238
1239#endif /* __QCAMERA_TYPES_H__ */
1240