Merge remote-tracking branch 'origin/upstream/linux-linaro-lsk-v3.10-android+android...
[firefly-linux-kernel-4.4.55.git] / drivers / media / video / generic_sensor.h
1 #ifndef __ASM_ARCH_GENERIC_SENSOR_RK_H_\r
2 #include <linux/videodev2.h>\r
3 #include <linux/slab.h>\r
4 #include <linux/i2c.h>\r
5 #include <linux/stat.h>\r
6 #include <linux/log2.h>\r
7 #include <linux/platform_device.h>\r
8 #include <linux/delay.h>\r
9 #include <linux/circ_buf.h>\r
10 #include <linux/miscdevice.h>\r
11 #include <media/v4l2-common.h>\r
12 #include <media/v4l2-chip-ident.h>\r
13 #include <media/soc_camera.h>\r
14 #include <linux/vmalloc.h>\r
15 #include <plat/rk_camera.h>\r
16 \r
17 /* Camera Sensor driver */\r
18 \r
19 #define MIN(x,y)   ((x<y) ? x: y)\r
20 #define MAX(x,y)        ((x>y) ? x: y)\r
21 \r
22 #define SENSOR_TR(format, ...) printk(KERN_ERR "%s(%d): " format"\n", SENSOR_NAME_STRING(),__LINE__, ## __VA_ARGS__)\r
23 #define SENSOR_DG(format, ...) dprintk(1, "%s(%d): "format"\n", SENSOR_NAME_STRING(),__LINE__,## __VA_ARGS__)\r
24 \r
25 //to generic sensor\r
26 //a represents a i2c_client type point\r
27 #define to_generic_sensor(a) (container_of(i2c_get_clientdata(a), struct generic_sensor, subdev))\r
28 \r
29 //to specific sensor\r
30 //a represents a generic_sensor type point\r
31 #define to_specific_sensor(a) (container_of(a, struct specific_sensor, common_sensor))\r
32 \r
33 #define SENSOR_CROP_PERCENT   0         // Redefine this macro in sensor driver if user want to crop\r
34 \r
35 #define SENSOR_INIT_IS_ERR       (0x00<<28)\r
36 #define SENSOR_INIT_IS_OK        (0x01<<28)\r
37 \r
38 #define SEQCMD_STREAMCHK     0xFA000000\r
39 #define SEQCMD_INVALIDATE    0xFB000000\r
40 #define SEQCMD_INTERPOLATION 0xFC000000\r
41 #define SEQCMD_WAIT_MS   0xFD000000\r
42 #define SEQCMD_WAIT_US   0xFE000000\r
43 #define SEQCMD_END               0xFF000000\r
44 \r
45 #define SensorReg0Val0(a,b)    {SEQCMD_INVALIDATE,0,0,0}\r
46 #define SensorReg1Val1(a,b)    {a,b,0xff,0xff}\r
47 #define SensorReg2Val1(a,b)    {a,b,0xffff,0xff}\r
48 #define SensorReg2Val2(a,b)    {a,b,0xffff,0xffff}\r
49 \r
50 #define SensorStreamChk        {SEQCMD_STREAMCHK,0,0,0}\r
51 #define SensorWaitMs(a)            {SEQCMD_WAIT_MS,a,0x00,0x00}\r
52 #define SensorWaitUs(a)            {SEQCMD_WAIT_US,a,0x00,0x00}\r
53 #define SensorEnd                          {SEQCMD_END,0x00,0x00,0x00}\r
54 \r
55 #define CFG_WhiteBalance                       (1<<0)\r
56 #define CFG_Brightness                     (1<<1)\r
57 #define CFG_Contrast                           (1<<2)\r
58 #define CFG_Saturation                     (1<<3)\r
59 #define CFG_Effect                                 (1<<4)\r
60 #define CFG_Scene                                  (1<<5)\r
61 #define CFG_DigitalZoom                    (1<<6)\r
62 #define CFG_Focus                                  (1<<7)\r
63 #define CFG_FocusContinues                         (1<<8)\r
64 #define CFG_FocusZone                      (1<<9)\r
65 #define CFG_FocusRelative                          (1<<10)\r
66 #define CFG_FocusAbsolute                          (1<<11)\r
67 #define CFG_FACE_DETECT                    (1<<12)\r
68 #define CFG_Exposure                           (1<<13)\r
69 #define CFG_Flash                                  (1<<14)\r
70 #define CFG_Mirror                                 (1<<15)\r
71 #define CFG_Flip                                       (1<<16)\r
72 \r
73 #define CFG_FunChk(a,b)                      ((a&b)==b) \r
74 #define CFG_FunDis(a,b)                      (a &= (~b))\r
75 \r
76 enum rk_sensor_sequence_property {\r
77         SEQUENCE_INIT =1,\r
78         SEQUENCE_PREVIEW,\r
79         SEQUENCE_CAPTURE\r
80 };\r
81 \r
82 struct rk_sensor_reg {\r
83         unsigned int reg;\r
84         unsigned int val;\r
85         unsigned int reg_mask;\r
86         unsigned int val_mask;\r
87 };\r
88 \r
89 struct rk_sensor_seq_info {\r
90         unsigned short w;\r
91         unsigned short h;\r
92         unsigned short fps;\r
93 };\r
94 struct rk_sensor_sequence {\r
95         struct rk_sensor_seq_info gSeq_info;\r
96         enum rk_sensor_sequence_property property;\r
97         struct rk_sensor_reg *data;\r
98 };\r
99 \r
100 /* only one fixed colorspace per pixelcode */\r
101 struct rk_sensor_datafmt {\r
102         enum v4l2_mbus_pixelcode code;\r
103         enum v4l2_colorspace colorspace;\r
104 };\r
105 \r
106 \r
107 //focus work\r
108 enum rk_sensor_focus_wq_cmd\r
109 {\r
110         WqCmd_af_invalid = -1,\r
111         WqCmd_af_init =1,\r
112         WqCmd_af_single,\r
113         WqCmd_af_continues,\r
114         WqCmd_af_continues_pause,     /* ddl@rock-chips.com: v0.1.1 */\r
115         WqCmd_af_update_zone,\r
116         WqCmd_af_close,\r
117         WqCmd_af_special_pos,\r
118         WqCmd_af_near_pos,\r
119         WqCmd_af_far_pos\r
120         \r
121 };\r
122 enum rk_sensor_focus_sensor_wq_result\r
123 {\r
124         WqRet_success = 0,\r
125         WqRet_fail = -1,\r
126         WqRet_inval = -2\r
127 };\r
128 \r
129 enum rk_sensor_focus_state\r
130 {\r
131     FocusState_Inval,\r
132     FocusState_Inited\r
133 };\r
134 \r
135 struct rk_sensor_focus_work\r
136 {\r
137         struct i2c_client *client;\r
138         struct delayed_work dwork;\r
139         enum rk_sensor_focus_wq_cmd cmd;\r
140         wait_queue_head_t done;\r
141         enum rk_sensor_focus_sensor_wq_result result;\r
142         bool wait;\r
143         int var;        \r
144 };\r
145 \r
146 //focus structs\r
147 struct rk_sensor_focus_cb{\r
148         int (*sensor_focus_init_cb)(struct i2c_client *client); \r
149     int (*sensor_af_single_cb)(struct i2c_client *client);\r
150     int (*sensor_af_const_cb)(struct i2c_client *client);\r
151     int (*sensor_af_const_pause_cb)(struct i2c_client *client);\r
152     int (*sensor_af_zoneupdate_cb)(struct i2c_client *client, int *zone_tm_pos);\r
153     int (*sensor_af_close_cb)(struct i2c_client *client);\r
154     int (*sensor_af_near_cb)(struct i2c_client *client);\r
155     int (*sensor_af_far_cb)(struct i2c_client *client);\r
156     int (*sensor_af_specialpos_cb)(struct i2c_client *client,int pos);  \r
157         //\r
158 };\r
159 //zone from hal is [-1000,-1000,1000,1000],must map to sensor's zone.\r
160 struct rk_sensor_focus_zone{\r
161         int lx;\r
162         int ty;\r
163         int rx;\r
164         int dy;\r
165 };\r
166 struct rk_sensor_focus_op_s{\r
167         struct rk_sensor_focus_cb focus_cb;\r
168         struct workqueue_struct *sensor_wq;\r
169         struct mutex focus_lock;\r
170     unsigned int focus_state;\r
171         unsigned int focus_mode;                //show the focus mode\r
172         struct rk_sensor_focus_zone focus_zone;\r
173         enum rk_sensor_focus_wq_cmd focus_delay;\r
174 };\r
175 \r
176 \r
177 typedef struct rk_sensor_priv_s\r
178 {\r
179     int mirror;\r
180         bool snap2preview;\r
181         bool video2preview;\r
182         struct rk_sensor_sequence* winseqe_cur_addr;\r
183         struct rk_sensor_datafmt* datafmt;\r
184         int num_datafmt;\r
185         struct rk_sensor_datafmt curfmt;\r
186         unsigned int funmodule_state;\r
187         //\r
188         struct rk_sensor_sequence* sensor_series;\r
189         int num_series; \r
190 \r
191     struct rk_sensor_reg* sensor_SfRstSeqe;\r
192     struct rk_sensor_reg* sensor_CkIdSeqe;\r
193     \r
194         struct rk_sensor_seq_info max_res;//maybe interploted\r
195         struct rk_sensor_seq_info max_real_res;\r
196         struct rk_sensor_seq_info min_res;\r
197         unsigned long bus_parameter;\r
198     unsigned int  *chip_id;\r
199     unsigned int  chip_id_num;\r
200         int chip_ident;\r
201         unsigned int gReg_mask;\r
202         unsigned int gVal_mask;\r
203         unsigned int gI2c_speed;\r
204 \r
205     bool stream;\r
206         \r
207 } rk_sensor_info_priv_t;\r
208 \r
209 struct sensor_v4l2ctrl_info_s {\r
210     struct v4l2_queryctrl *qctrl;\r
211     int (*cb)(struct soc_camera_device *icd, struct sensor_v4l2ctrl_info_s *ctrl_info, \r
212               struct v4l2_ext_control *ext_ctrl,bool is_set);\r
213     struct rk_sensor_reg **sensor_Seqe;\r
214     int cur_value;\r
215     int num_ctrls;\r
216 };\r
217 \r
218 struct sensor_v4l2ctrl_usr_s {\r
219     struct v4l2_queryctrl qctrl;\r
220     int (*cb)(struct soc_camera_device *icd, struct sensor_v4l2ctrl_info_s *ctrl_info, \r
221               struct v4l2_ext_control *ext_ctrl,bool is_set);\r
222     struct rk_sensor_reg **sensor_Seqe;\r
223 };\r
224 \r
225 struct sensor_ops_cb_s{\r
226         int (*sensor_softreset_cb)(struct i2c_client *client,struct rk_sensor_reg *series);\r
227         int (*sensor_check_id_cb)(struct i2c_client *client,struct rk_sensor_reg *series);\r
228         int (*sensor_activate_cb)(struct i2c_client *client);\r
229         int (*sensor_deactivate_cb)(struct i2c_client *client);\r
230         int (*sensor_mirror_cb)(struct i2c_client *client, int mirror);\r
231         int (*sensor_flip_cb)(struct i2c_client *client, int flip);\r
232         int (*sensor_face_detect_cb)(struct i2c_client *client, int on);\r
233 \r
234         int (*sensor_s_fmt_cb_th)(struct i2c_client *client,struct v4l2_mbus_framefmt *mf, bool capture);\r
235         int (*sensor_s_fmt_cb_bh)(struct i2c_client *client,struct v4l2_mbus_framefmt *mf, bool capture);\r
236         int (*sensor_try_fmt_cb_th)(struct i2c_client *client,struct v4l2_mbus_framefmt *mf);\r
237         int (*sensor_s_stream_cb)(struct v4l2_subdev *sd, int enable);\r
238     int (*sensor_enum_framesizes)(struct v4l2_subdev *sd, struct v4l2_frmsizeenum *fsize);\r
239 \r
240 };\r
241 //flash off in fixed time to prevent from too hot , zyc\r
242 struct  rk_flash_timer{\r
243         struct soc_camera_device *icd;\r
244         struct hrtimer timer;\r
245 };\r
246 \r
247 struct generic_sensor\r
248 {\r
249     char dev_name[32];\r
250     struct v4l2_subdev subdev;\r
251     struct i2c_client *client;\r
252     rk_sensor_info_priv_t info_priv;\r
253     int model;  /* V4L2_IDENT_OV* codes from v4l2-chip-ident.h */\r
254 \r
255     int crop_percent;\r
256 \r
257     bool is_need_tasklock;\r
258     atomic_t tasklock_cnt;\r
259     struct soc_camera_ops *sensor_ops; \r
260     struct v4l2_queryctrl* sensor_controls;  \r
261     struct sensor_v4l2ctrl_info_s *ctrls;\r
262     struct rk_flash_timer flash_off_timer;\r
263     struct sensor_ops_cb_s sensor_cb;\r
264     struct rk_sensor_focus_op_s sensor_focus;\r
265     struct rk29camera_platform_data *sensor_io_request;\r
266     struct rk29camera_gpio_res *sensor_gpio_res;\r
267         \r
268 };\r
269 \r
270 extern int generic_sensor_softreset(struct i2c_client *client, struct rk_sensor_reg *series);\r
271 extern int generic_sensor_check_id(struct i2c_client *client, struct rk_sensor_reg *series);\r
272 extern int sensor_write_reg2val1(struct i2c_client *client, u16 reg,u8 val);\r
273 extern int sensor_write_reg2val2(struct i2c_client *client, u16 reg,u16 val);\r
274 extern int sensor_write_reg1val1(struct i2c_client *client, u8 reg,u8 val);\r
275 extern int sensor_write_reg1val2(struct i2c_client *client, u8 reg,u16 val);\r
276 extern int sensor_read_reg1val1(struct i2c_client *client, u8 reg,u8* val);\r
277 extern int sensor_read_reg2val1(struct i2c_client *client, u16 reg,u8* val);\r
278 extern int sensor_read_reg1val2(struct i2c_client *client, u8 reg,u16* val);\r
279 extern int sensor_read_reg2val2(struct i2c_client *client, u16 reg,u16* val);\r
280 extern int generic_sensor_write(struct i2c_client *client,struct rk_sensor_reg* sensor_reg);\r
281 extern int generic_sensor_read(struct i2c_client *client, struct rk_sensor_reg* sensor_reg);\r
282 extern int generic_sensor_write_array(struct i2c_client *client, struct rk_sensor_reg *regarray);\r
283 extern int generic_sensor_get_max_min_res(struct rk_sensor_sequence* res_array,int num,struct rk_sensor_seq_info * max_real_res\r
284                                                                                 ,struct rk_sensor_seq_info * max_res,struct rk_sensor_seq_info *min_res);\r
285 extern int generic_sensor_init(struct v4l2_subdev *sd, u32 val);\r
286 extern int generic_sensor_enum_frameintervals(struct v4l2_subdev *sd, struct v4l2_frmivalenum *fival);\r
287 extern int generic_sensor_try_fmt(struct v4l2_subdev *sd, struct v4l2_mbus_framefmt *mf);\r
288 extern int generic_sensor_ioctrl(struct soc_camera_device *icd,enum rk29sensor_power_cmd cmd, int on);\r
289 extern unsigned long generic_sensor_query_bus_param(struct soc_camera_device *icd);\r
290 extern int generic_sensor_g_fmt(struct v4l2_subdev *sd, struct v4l2_mbus_framefmt *mf);\r
291 extern int generic_sensor_set_bus_param(struct soc_camera_device *icd,unsigned long flags);\r
292 extern int generic_sensor_g_control(struct v4l2_subdev *sd, struct v4l2_control *ctrl);\r
293 extern int generic_sensor_s_control(struct v4l2_subdev *sd, struct v4l2_control *ctrl);\r
294 extern int generic_sensor_g_ext_control(struct soc_camera_device *icd , struct v4l2_ext_control *ext_ctrl);\r
295 extern int generic_sensor_s_ext_control(struct soc_camera_device *icd, struct v4l2_ext_control *ext_ctrl);\r
296 extern int generic_sensor_g_ext_controls(struct v4l2_subdev *sd, struct v4l2_ext_controls *ext_ctrl);\r
297 extern int generic_sensor_s_ext_controls(struct v4l2_subdev *sd, struct v4l2_ext_controls *ext_ctrl);\r
298 extern long generic_sensor_ioctl(struct v4l2_subdev *sd, unsigned int cmd, void *arg);\r
299 extern int generic_sensor_enum_fmt(struct v4l2_subdev *sd, unsigned int index,enum v4l2_mbus_pixelcode *code);\r
300 extern int generic_sensor_s_fmt(struct v4l2_subdev *sd, struct v4l2_mbus_framefmt *mf);\r
301 extern int generic_sensor_g_chip_ident(struct v4l2_subdev *sd, struct v4l2_dbg_chip_ident *id);\r
302 extern int generic_sensor_af_workqueue_set(struct soc_camera_device *icd, enum rk_sensor_focus_wq_cmd cmd, int var, bool wait);\r
303 extern int generic_sensor_s_stream(struct v4l2_subdev *sd, int enable);\r
304 extern int generic_sensor_writebuf(struct i2c_client *client, char *buf, int buf_size);\r
305 extern int generic_sensor_cropcap(struct v4l2_subdev *sd, struct v4l2_cropcap *cc);\r
306 extern int generic_sensor_enum_framesizes(struct v4l2_subdev *sd, struct v4l2_frmsizeenum *fsize);\r
307 \r
308 static inline int sensor_get_full_width_height(int full_resolution, unsigned short *w, unsigned short *h)\r
309 {\r
310     switch (full_resolution) \r
311     {\r
312         case 0x30000:\r
313         {\r
314             *w = 640;\r
315             *h = 480;\r
316             break;\r
317         } \r
318 \r
319         case 0x100000:\r
320         {\r
321             *w = 1024;\r
322             *h = 768;\r
323             break;\r
324         }   \r
325         \r
326         case 0x130000:\r
327         {\r
328             *w = 1280;\r
329             *h = 1024;\r
330             break;\r
331         }\r
332 \r
333         case 0x200000:\r
334         {\r
335             *w = 1600;\r
336             *h = 1200;\r
337             break;\r
338         }\r
339         case 0x210000:\r
340         {\r
341             *w = 1920;\r
342             *h = 1080;\r
343             break;\r
344         }\r
345 \r
346         case 0x300000:\r
347         {\r
348             *w = 2048;\r
349             *h = 1536;\r
350             break;\r
351         }\r
352 \r
353         case 0x500000:\r
354         {\r
355             *w = 2592;\r
356             *h = 1944;\r
357             break;\r
358         }\r
359 \r
360         case 0x800000:\r
361         {\r
362             *w = 3264;\r
363             *h = 2448;\r
364             break;\r
365         }\r
366         \r
367         default:\r
368             return -1;\r
369     }\r
370 \r
371     return 0;\r
372 }\r
373 static inline int sensor_video_probe(struct soc_camera_device *icd,\r
374                                    struct i2c_client *client)\r
375 {\r
376         int ret;\r
377         struct generic_sensor *sensor = to_generic_sensor(client);\r
378 \r
379         /* We must have a parent by now. And it cannot be a wrong one.\r
380          * So this entire test is completely redundant. */\r
381         if (!icd->dev.parent ||\r
382                 to_soc_camera_host(icd->dev.parent)->nr != icd->iface) {\r
383                 ret = -ENODEV;\r
384                 goto sensor_video_probe_end;\r
385         }\r
386 \r
387         generic_sensor_softreset(client,sensor->info_priv.sensor_SfRstSeqe);\r
388     ret = generic_sensor_check_id(client,sensor->info_priv.sensor_CkIdSeqe);\r
389 \r
390 sensor_video_probe_end: \r
391         return ret;\r
392 }\r
393 \r
394 static inline int sensor_regarray_check(struct rk_sensor_reg *data, int reg_num)\r
395 {\r
396     struct rk_sensor_reg *data_ptr;\r
397 \r
398     data_ptr = data+reg_num-1;\r
399     if (data_ptr->reg == SEQCMD_END) {\r
400         return 0;\r
401     } else { \r
402         printk(KERN_ERR "%s(%d): data[%d].reg = 0x%x\n",__FUNCTION__,__LINE__,reg_num-1,data_ptr->reg);\r
403         return -1;\r
404     }\r
405     \r
406 }\r
407 \r
408 static inline void sensor_v4l2ctrl_info_init (struct sensor_v4l2ctrl_info_s *ptr,\r
409                                         unsigned int id,\r
410                                         enum v4l2_ctrl_type type,\r
411                                         char *name,\r
412                                         int min,\r
413                                         int max,\r
414                                         int step,\r
415                                         int default_val,\r
416                                         int(*cb)(struct soc_camera_device *icd, struct sensor_v4l2ctrl_info_s *ctrl_info, \r
417                                                  struct v4l2_ext_control *ext_ctrl,bool is_set),\r
418                                         struct rk_sensor_reg ** sensor_seqe\r
419                                         )\r
420 {\r
421     ptr->qctrl->id = id;\r
422         ptr->qctrl->type = type;\r
423         strcat(ptr->qctrl->name,name);\r
424         ptr->qctrl->minimum = min;\r
425         ptr->qctrl->maximum = max;\r
426     ptr->qctrl->step = step;\r
427         ptr->qctrl->default_value = default_val;\r
428     ptr->cur_value = default_val;\r
429     ptr->cb = cb;\r
430     ptr->sensor_Seqe = sensor_seqe;\r
431     return;\r
432 }\r
433 \r
434 static inline struct sensor_v4l2ctrl_info_s* sensor_find_ctrl(\r
435         struct sensor_v4l2ctrl_info_s *ops, int id)\r
436 {\r
437         int i;\r
438 \r
439         for (i = 0; i < ops[0].num_ctrls; i++)\r
440                 if (ops[i].qctrl->id == id)\r
441                         return &ops[i];\r
442 \r
443         return NULL;\r
444 }\r
445 \r
446 static inline void v4l2_querymenu_init (struct v4l2_querymenu *ptr,\r
447                                         unsigned int id,\r
448                                         unsigned int index,\r
449                                         char *name,\r
450                                         unsigned int reserved)\r
451 {\r
452     ptr->id = id;\r
453         ptr->index = index;\r
454         strcat(ptr->name,name);\r
455         ptr->reserved = reserved;\r
456 \r
457     return;\r
458 }\r
459 \r
460 static inline int sensor_v4l2ctrl_replace_cb(struct generic_sensor *sensor, int id, void *cb)\r
461 {\r
462     int i,num;\r
463     struct sensor_v4l2ctrl_info_s* ctrls;\r
464 \r
465     ctrls = sensor->ctrls;\r
466     num = ctrls->num_ctrls;\r
467     for (i=0; i<num; i++,ctrls++) {\r
468         if (ctrls->qctrl->id == id) {\r
469             ctrls->cb = cb;\r
470             break;\r
471         }\r
472     }\r
473 \r
474     if (i>=num) {\r
475         printk(KERN_ERR "%s(%d): v4l2_control id(0x%x) isn't exist\n",__FUNCTION__,__LINE__,id);\r
476     } else {\r
477         return 0;\r
478     }\r
479 }\r
480 \r
481 static inline int sensor_v4l2ctrl_default_cb(struct soc_camera_device *icd, struct sensor_v4l2ctrl_info_s *ctrl_info, \r
482                                                      struct v4l2_ext_control *ext_ctrl,bool is_set)\r
483 {\r
484     struct i2c_client *client = to_i2c_client(to_soc_camera_control(icd));    \r
485     int value = ext_ctrl->value;\r
486     int index;\r
487     \r
488     if(!is_set){\r
489         return 0;\r
490     }\r
491 \r
492     if ((value < ctrl_info->qctrl->minimum) || (value > ctrl_info->qctrl->maximum)) {\r
493         printk(KERN_ERR "%s(%d): value(0x%x) isn't between in (0x%x,0x%x)\n",__FUNCTION__,__LINE__,value,\r
494             ctrl_info->qctrl->minimum,ctrl_info->qctrl->maximum);\r
495         return -EINVAL;\r
496     }\r
497 \r
498     index = value - ctrl_info->qctrl->minimum;\r
499     if (ctrl_info->sensor_Seqe && (ctrl_info->sensor_Seqe[index] != NULL)) {\r
500         if (generic_sensor_write_array(client, ctrl_info->sensor_Seqe[index]) != 0) {\r
501             printk(KERN_ERR "%s(%d):  sensor write array sensor_Seqe failed\n",__FUNCTION__,__LINE__);\r
502             return -EINVAL;\r
503         }\r
504 \r
505         ctrl_info->cur_value = value;\r
506         return 0;\r
507     } else {\r
508         printk(KERN_ERR "%s(%d): ctrl_info(id=0x%x)'s sensor_Seqe is invalidate\n",__FUNCTION__,__LINE__,ctrl_info->qctrl->id);\r
509         return -EINVAL;\r
510     }\r
511 }\r
512 static inline int sensor_v4l2ctrl_flash_cb(struct soc_camera_device *icd, struct sensor_v4l2ctrl_info_s *ctrl_info, \r
513                                                      struct v4l2_ext_control *ext_ctrl,bool is_set)\r
514 {\r
515     //struct i2c_client *client = to_i2c_client(to_soc_camera_control(icd));\r
516     int value = ext_ctrl->value;\r
517 \r
518     if ((value < ctrl_info->qctrl->minimum) || (value > ctrl_info->qctrl->maximum)) {\r
519         printk(KERN_ERR "%s(%d): value(0x%x) isn't between in (0x%x,0x%x)\n",__FUNCTION__,__LINE__,value,\r
520             ctrl_info->qctrl->minimum,ctrl_info->qctrl->maximum);\r
521         return -EINVAL;\r
522     }\r
523 \r
524     if (value == 3) {            /* ddl@rock-chips.com: torch */\r
525         generic_sensor_ioctrl(icd, Sensor_Flash, Flash_Torch);   /* Flash On */\r
526     } else {\r
527         generic_sensor_ioctrl(icd, Sensor_Flash, Flash_Off);\r
528     }\r
529     \r
530     ctrl_info->cur_value = value;  /* ddl@rock-chips.com : v0.1.3 */\r
531     \r
532     return 0;\r
533 }\r
534 static inline int sensor_focus_default_cb(struct soc_camera_device *icd, struct sensor_v4l2ctrl_info_s *ctrl_info, \r
535                                                                                                          struct v4l2_ext_control *ext_ctrl,bool is_set)\r
536 {\r
537         struct i2c_client *client = to_i2c_client(to_soc_camera_control(icd));    \r
538         int value = ext_ctrl->value;\r
539         int ret = 0;\r
540         struct generic_sensor* sensor = to_generic_sensor(client);\r
541     \r
542         if ((value < ctrl_info->qctrl->minimum) || (value > ctrl_info->qctrl->maximum)) {\r
543                 printk(KERN_ERR "%s(%d): value(0x%x) isn't between in (0x%x,0x%x)\n",__FUNCTION__,__LINE__,value,\r
544                         ctrl_info->qctrl->minimum,ctrl_info->qctrl->maximum);\r
545                 return -EINVAL;\r
546         }\r
547 \r
548         if(sensor->sensor_focus.focus_state == FocusState_Inval){\r
549                 printk(KERN_ERR "%s(%d): focus have not been init success yet\n",__FUNCTION__,__LINE__);\r
550                 //set focus delay\r
551                 \r
552                 switch (ext_ctrl->id)\r
553                 {\r
554                         case V4L2_CID_FOCUS_ABSOLUTE:\r
555                                 sensor->sensor_focus.focus_delay = WqCmd_af_special_pos;\r
556                                 break;\r
557                         case V4L2_CID_FOCUS_RELATIVE:\r
558                                 if (ext_ctrl->value == ctrl_info->qctrl->minimum)\r
559                                         sensor->sensor_focus.focus_delay = WqCmd_af_near_pos;\r
560                                 else\r
561                                         sensor->sensor_focus.focus_delay = WqCmd_af_far_pos;\r
562                                 break;\r
563                         \r
564                         case V4L2_CID_FOCUS_AUTO:\r
565                                 sensor->sensor_focus.focus_delay = WqCmd_af_single;\r
566                                 break;\r
567                         case V4L2_CID_FOCUS_CONTINUOUS:\r
568                                 sensor->sensor_focus.focus_delay = WqCmd_af_continues;\r
569                                 break;\r
570                         default:\r
571                                 printk(KERN_ERR "%s(%d):not support this focus mode",__FUNCTION__,__LINE__ );\r
572                 }\r
573                 return -EINVAL;\r
574         }\r
575         switch (ext_ctrl->id)\r
576         {\r
577                 case V4L2_CID_FOCUS_ABSOLUTE:\r
578                         {\r
579                                 if(sensor->sensor_focus.focus_mode ==V4L2_CID_FOCUS_CONTINUOUS){\r
580                                         //need do something?\r
581 \r
582                                 }\r
583                                 if (ctrl_info->cur_value != value) {\r
584                                         if (ext_ctrl->value == ctrl_info->qctrl->minimum)\r
585                                                 ret = generic_sensor_af_workqueue_set(icd, WqCmd_af_near_pos, value, true);\r
586                                         else if(ext_ctrl->value == ctrl_info->qctrl->maximum)\r
587                                                 ret = generic_sensor_af_workqueue_set(icd, WqCmd_af_far_pos, value, true);\r
588                                         else\r
589                                                 ret = generic_sensor_af_workqueue_set(icd, WqCmd_af_special_pos, value, true);\r
590                                         if(ret == 0){\r
591                                                 ctrl_info->cur_value = value;\r
592                                         } else {\r
593                                                 ret = -EINVAL;\r
594                                                 printk(KERN_ERR"\n %s valure = %d is invalidate..       \n",__FUNCTION__,value);\r
595                                         }\r
596                                 }\r
597                                 break;\r
598                         }\r
599                 case V4L2_CID_FOCUS_RELATIVE:\r
600                         {\r
601                                 if(sensor->sensor_focus.focus_mode ==V4L2_CID_FOCUS_CONTINUOUS){\r
602                                         //need do something?\r
603                                 \r
604                                 }\r
605                                 if (ctrl_info->cur_value != value) {\r
606                                         if (ext_ctrl->value == ctrl_info->qctrl->minimum)\r
607                                                 ret = generic_sensor_af_workqueue_set(icd, WqCmd_af_near_pos, value, true);\r
608                                         else if(ext_ctrl->value == ctrl_info->qctrl->maximum)\r
609                                                 ret = generic_sensor_af_workqueue_set(icd, WqCmd_af_far_pos, value, true);\r
610                                         if(ret == 0){\r
611                                                 ctrl_info->cur_value = value;\r
612                                         } else {\r
613                                                 ret = -EINVAL;\r
614                                                 printk(KERN_ERR"\n %s valure = %d is invalidate..       \n",__FUNCTION__,value);\r
615                                         }\r
616                                 }\r
617                                 break;\r
618                         }\r
619                 case V4L2_CID_FOCUS_AUTO:\r
620                         {\r
621                 mutex_lock(&sensor->sensor_focus.focus_lock);\r
622                 //get focuszone\r
623                 sensor->sensor_focus.focus_zone.lx = ext_ctrl->rect[0];\r
624                 sensor->sensor_focus.focus_zone.ty = ext_ctrl->rect[1];\r
625                 sensor->sensor_focus.focus_zone.rx = ext_ctrl->rect[2];\r
626                 sensor->sensor_focus.focus_zone.dy = ext_ctrl->rect[3];\r
627                 mutex_unlock(&sensor->sensor_focus.focus_lock);\r
628               \r
629                                 if(sensor->sensor_focus.focus_mode ==V4L2_CID_FOCUS_CONTINUOUS){\r
630                                         //need do something?\r
631                                         //generic_sensor_af_workqueue_set(icd, WqCmd_af_close, value, true);\r
632                                 }\r
633                                 if((value==1) || (sensor->sensor_focus.focus_mode==V4L2_CID_FOCUS_AUTO)){\r
634                                         ret = generic_sensor_af_workqueue_set(icd, WqCmd_af_update_zone, value, true);\r
635                                         ret = generic_sensor_af_workqueue_set(icd, WqCmd_af_single, value, true);\r
636                     sensor->sensor_focus.focus_mode = V4L2_CID_FOCUS_AUTO;\r
637                                 }else if(value == 0){\r
638                                         ret = generic_sensor_af_workqueue_set(icd, WqCmd_af_close, value, true);\r
639                                 }\r
640                                 if(ret != 0){\r
641                                         ret = -EINVAL;\r
642                                         printk(KERN_ERR"\n %s valure = %d is invalidate..       \n",__FUNCTION__,value);\r
643                                 }\r
644                                 break;\r
645                                 \r
646                         }\r
647                 case V4L2_CID_FOCUS_CONTINUOUS:\r
648                         {\r
649                                 if((value==1) && (sensor->sensor_focus.focus_mode!=V4L2_CID_FOCUS_CONTINUOUS)){\r
650                                         //have to close focus firstly?\r
651                                         //generic_sensor_af_workqueue_set(icd, WqCmd_af_close, value, true);\r
652                                         ret = generic_sensor_af_workqueue_set(icd, WqCmd_af_continues, value, true);\r
653 \r
654                     sensor->sensor_focus.focus_mode = V4L2_CID_FOCUS_CONTINUOUS;\r
655                                 }else if(value ==0){\r
656                                         ret = generic_sensor_af_workqueue_set(icd, WqCmd_af_close, value, true);\r
657                                 }\r
658                                 if(ret != 0){\r
659                                         ret = -EINVAL;\r
660                                         printk(KERN_ERR"\n %s valure = %d is invalidate..       \n",__FUNCTION__,value);\r
661                                 }\r
662                                 break;\r
663                         }\r
664                 \r
665         }\r
666         return ret;\r
667 \r
668 }\r
669 static inline int sensor_face_detect_default_cb(struct soc_camera_device *icd, struct sensor_v4l2ctrl_info_s *ctrl_info, \r
670                                                                                                          struct v4l2_ext_control *ext_ctrl,bool is_set)\r
671 {\r
672         struct i2c_client *client = to_i2c_client(to_soc_camera_control(icd));    \r
673         int value = ext_ctrl->value;\r
674         int ret = 0;\r
675         struct generic_sensor* sensor = to_generic_sensor(client);\r
676         if ((value < ctrl_info->qctrl->minimum) || (value > ctrl_info->qctrl->maximum)) {\r
677                 printk(KERN_ERR "%s(%d): value(0x%x) isn't between in (0x%x,0x%x)\n",__FUNCTION__,__LINE__,value,\r
678                         ctrl_info->qctrl->minimum,ctrl_info->qctrl->maximum);\r
679                 return -EINVAL;\r
680         }\r
681         if(ctrl_info->cur_value != value){\r
682                 if(sensor->sensor_cb.sensor_face_detect_cb)\r
683                         ret = (sensor->sensor_cb.sensor_face_detect_cb)(client,value);\r
684                 if(ret ==0)\r
685                         ctrl_info->cur_value = value;\r
686         }\r
687         return ret;\r
688 }\r
689 static int sensor_v4l2ctrl_mirror_cb(struct soc_camera_device *icd, struct sensor_v4l2ctrl_info_s *ctrl_info, \r
690                                                                                                          struct v4l2_ext_control *ext_ctrl);\r
691 static int sensor_v4l2ctrl_flip_cb(struct soc_camera_device *icd, struct sensor_v4l2ctrl_info_s *ctrl_info, \r
692                                                                                                          struct v4l2_ext_control *ext_ctrl);\r
693                                                                                                          \r
694 static inline int sensor_v4l2ctrl_mirror_default_cb(struct soc_camera_device *icd, struct sensor_v4l2ctrl_info_s *ctrl_info, \r
695                                                                                                          struct v4l2_ext_control *ext_ctrl,bool is_set){\r
696         return sensor_v4l2ctrl_mirror_cb(icd,ctrl_info, ext_ctrl);\r
697                                                                                          \r
698 \r
699 }\r
700 static inline int sensor_v4l2ctrl_flip_default_cb(struct soc_camera_device *icd, struct sensor_v4l2ctrl_info_s *ctrl_info, \r
701                                                                                                          struct v4l2_ext_control *ext_ctrl,bool is_set){\r
702         return sensor_v4l2ctrl_flip_cb(icd,ctrl_info, ext_ctrl);\r
703                                                                                          \r
704 \r
705 }\r
706 \r
707 #define new_user_v4l2ctrl(ctl_id,ctl_type,ctl_name,ctl_min,ctl_max,ctl_step,default_val,callback,seqe)\\r
708 {\\r
709     .qctrl = {\\r
710                 .id     = ctl_id,\\r
711                 .type           = ctl_type,\\r
712                 .name           = ctl_name,\\r
713                 .minimum        = ctl_min,\\r
714                 .maximum        = ctl_max,\\r
715                 .step           = ctl_step,\\r
716                 .default_value = default_val,\\r
717         },\\r
718         .cb = callback,\\r
719         .sensor_Seqe = seqe,\\r
720 }\r
721     \r
722 \r
723 #define new_usr_v4l2menu(menu_id,menu_idx,menu_name,menu_rev)\\r
724     {\\r
725         .id = menu_id,\\r
726         .index = menu_idx,\\r
727         .name = menu_name,\\r
728         .reserved = menu_rev,\\r
729     }\r
730 \r
731 #define sensor_init_parameters_default_code() static void sensor_init_parameters(struct specific_sensor* spsensor,struct soc_camera_device *icd)\\r
732 { \\r
733     int num,i; \\r
734     struct rk_sensor_sequence *sensor_series; \\r
735     struct v4l2_queryctrl *controls, *control; \\r
736     struct sensor_v4l2ctrl_info_s *ctrls; \\r
737     struct v4l2_querymenu *menus,*menu; \\r
738     struct soc_camera_link *icl = to_soc_camera_link(icd); \\r
739     struct rk29camera_platform_data *pdata = icl->priv_usr; \\r
740     struct rkcamera_platform_data *sensor_device=NULL,*new_camera; \\r
741     struct rk_sensor_reg *reg_data; \\r
742     int config_flash = 0;\\r
743     int sensor_config;\\r
744         struct soc_camera_ops* sensor_ops_p = NULL;\\r
745  \\r
746     if (pdata == NULL) {\\r
747         printk("WARNING: Camera sensor device is registered in board by CONFIG_SENSOR_XX,\n"\\r
748                "Please register camera sesnor deivce in struct rkcamera_platform_data new_camera[]\n");\\r
749         BUG();\\r
750     }\\r
751     sensor_config = SensorConfiguration;\\r
752     new_camera = pdata->register_dev_new; \\r
753     while (strstr(new_camera->dev_name,"end")==NULL) { \\r
754         if (strcmp(dev_name(icd->pdev), new_camera->dev_name) == 0) { \\r
755             sensor_device = new_camera; \\r
756             break; \\r
757         } \\r
758         new_camera++; \\r
759     } \\r
760  \\r
761     if(sensor_device && sensor_device->flash)\\r
762             config_flash = 1;\\r
763     spsensor->common_sensor.info_priv.gReg_mask = 0x00; \\r
764     spsensor->common_sensor.info_priv.gVal_mask = 0x00; \\r
765     for (i=0; i<SENSOR_REGISTER_LEN; i++) \\r
766             spsensor->common_sensor.info_priv.gReg_mask |= (0xff<<(i*8));  \\r
767     for (i=0; i<SENSOR_VALUE_LEN; i++) \\r
768             spsensor->common_sensor.info_priv.gVal_mask |= (0xff<<(i*8));  \\r
769         spsensor->common_sensor.info_priv.gI2c_speed = 100000;  \\r
770     if (sensor_regarray_check(sensor_softreset_data, sizeof(sensor_softreset_data)/sizeof(struct rk_sensor_reg))==0) { \\r
771         spsensor->common_sensor.info_priv.sensor_SfRstSeqe = sensor_softreset_data; \\r
772     } else { \\r
773         SENSOR_TR("sensor_softreset_data haven't SensorEnd flag! Please fill SensorEnd in the last of sensor_softreset_data"); \\r
774         BUG(); \\r
775     } \\r
776     if (sensor_regarray_check(sensor_check_id_data, sizeof(sensor_check_id_data)/sizeof(struct rk_sensor_reg))==0) { \\r
777         spsensor->common_sensor.info_priv.sensor_CkIdSeqe= sensor_check_id_data; \\r
778     } else { \\r
779         SENSOR_TR("sensor_check_id_data haven't SensorEnd flag! Please fill SensorEnd in the last of sensor_check_id_data"); \\r
780         BUG(); \\r
781     } \\r
782     spsensor->common_sensor.sensor_cb.sensor_activate_cb = sensor_activate_cb;  \\r
783         spsensor->common_sensor.sensor_cb.sensor_deactivate_cb = sensor_deactivate_cb; \\r
784         spsensor->common_sensor.sensor_cb.sensor_mirror_cb = sensor_mirror_cb; \\r
785         spsensor->common_sensor.sensor_cb.sensor_flip_cb = sensor_flip_cb; \\r
786     spsensor->common_sensor.sensor_cb.sensor_s_fmt_cb_th = sensor_s_fmt_cb_th; \\r
787     spsensor->common_sensor.sensor_cb.sensor_s_fmt_cb_bh = sensor_s_fmt_cb_bh; \\r
788         spsensor->common_sensor.sensor_cb.sensor_try_fmt_cb_th = sensor_try_fmt_cb_th;\\r
789     spsensor->common_sensor.sensor_cb.sensor_softreset_cb = sensor_softrest_usr_cb;\\r
790         spsensor->common_sensor.sensor_cb.sensor_check_id_cb = sensor_check_id_usr_cb;\\r
791     if (CFG_FunChk(sensor_config,CFG_FACE_DETECT)) \\r
792         spsensor->common_sensor.sensor_cb.sensor_face_detect_cb = sensor_face_detect_usr_cb; \\r
793     else \\r
794         spsensor->common_sensor.sensor_cb.sensor_face_detect_cb = NULL; \\r
795  \\r
796     num = 4;  \\r
797     if (sensor_720p[0].reg != SEQCMD_END) {  \\r
798         num++;  \\r
799     }  \\r
800     if (sensor_1080p[0].reg != SEQCMD_END) {  \\r
801         num++;  \\r
802     } \\r
803  \\r
804     if (sensor_device && (sensor_device->resolution > CONS(SENSOR_NAME,_FULL_RESOLUTION))) \\r
805         num++; \\r
806  \\r
807     sensor_series = (struct rk_sensor_sequence*)kzalloc(sizeof(struct rk_sensor_sequence)*num,GFP_KERNEL);  \\r
808     if (sensor_series == NULL) {  \\r
809         SENSOR_TR("malloc sensor_series failed! n");  \\r
810         BUG();  \\r
811     } else {  \\r
812         spsensor->common_sensor.info_priv.sensor_series = sensor_series;  \\r
813         spsensor->common_sensor.info_priv.num_series = num;  \\r
814         spsensor->common_sensor.crop_percent = SENSOR_CROP_PERCENT;\\r
815  \\r
816         sensor_series->gSeq_info.w = SENSOR_PREVIEW_W;  \\r
817         sensor_series->gSeq_info.h = SENSOR_PREVIEW_H;  \\r
818         sensor_series->gSeq_info.fps = SENSOR_PREVIEW_FPS;  \\r
819         sensor_series->property = SEQUENCE_INIT;  \\r
820         if (sensor_regarray_check(sensor_init_data, sizeof(sensor_init_data)/sizeof(struct rk_sensor_reg))==0) { \\r
821             sensor_series->data = sensor_init_data; \\r
822         } else { \\r
823             SENSOR_TR("sensor_init_data haven't SensorEnd flag! Please fill SensorEnd in the last of sensor_int_data"); \\r
824             BUG(); \\r
825         } \\r
826  \\r
827         sensor_series++;  \\r
828         sensor_series->gSeq_info.w = SENSOR_PREVIEW_W;  \\r
829         sensor_series->gSeq_info.h = SENSOR_PREVIEW_H;  \\r
830         sensor_series->gSeq_info.fps = SENSOR_PREVIEW_FPS;  \\r
831         sensor_series->property = SEQUENCE_PREVIEW;  \\r
832         if (sensor_regarray_check(sensor_preview_data, sizeof(sensor_preview_data)/sizeof(struct rk_sensor_reg))==0) { \\r
833             sensor_series->data = sensor_preview_data; \\r
834         } else { \\r
835             SENSOR_TR("sensor_preview_data haven't SensorEnd flag! Please fill SensorEnd in the last of sensor_preview_data"); \\r
836             BUG(); \\r
837         } \\r
838  \\r
839         sensor_series++;  \\r
840         if (sensor_get_full_width_height(CONS(SENSOR_NAME,_FULL_RESOLUTION),&sensor_series->gSeq_info.w,&sensor_series->gSeq_info.h) == 0) {  \\r
841             sensor_series->gSeq_info.fps = SENSOR_FULLRES_L_FPS; \\r
842             sensor_series->property = SEQUENCE_CAPTURE; \\r
843             if (sensor_regarray_check(sensor_fullres_lowfps_data, sizeof(sensor_fullres_lowfps_data)/sizeof(struct rk_sensor_reg))==0) { \\r
844                 sensor_series->data = sensor_fullres_lowfps_data; \\r
845             } else { \\r
846                 SENSOR_TR("sensor_fullres_lowfps_data haven't SensorEnd flag! Please fill SensorEnd in the last of sensor_fullres_lowfps_data"); \\r
847                 BUG(); \\r
848             } \\r
849         } else {  \\r
850             SENSOR_TR("generic_sensor_get_width_height failed!");  \\r
851             BUG();  \\r
852         }  \\r
853  \\r
854         sensor_series++;  \\r
855         sensor_series->gSeq_info.w = (sensor_series-1)->gSeq_info.w; \\r
856         sensor_series->gSeq_info.h = (sensor_series-1)->gSeq_info.h; \\r
857         sensor_series->gSeq_info.fps = SENSOR_FULLRES_H_FPS;  \\r
858         sensor_series->property = SEQUENCE_PREVIEW; \\r
859         if (sensor_regarray_check(sensor_fullres_highfps_data, sizeof(sensor_fullres_highfps_data)/sizeof(struct rk_sensor_reg))==0) { \\r
860             sensor_series->data = sensor_fullres_highfps_data; \\r
861         } else { \\r
862             SENSOR_TR("sensor_fullres_highfps_data haven't SensorEnd flag! Please fill SensorEnd in the last of sensor_fullres_highfps_data"); \\r
863             BUG(); \\r
864         } \\r
865  \\r
866         if (sensor_device && (sensor_device->resolution > CONS(SENSOR_NAME,_FULL_RESOLUTION))) { \\r
867             sensor_series++; \\r
868             if (sensor_get_full_width_height(sensor_device->resolution,&sensor_series->gSeq_info.w,&sensor_series->gSeq_info.h) == 0) { \\r
869                 sensor_series->gSeq_info.fps = SENSOR_FULLRES_L_FPS; \\r
870                 sensor_series->property = SEQUENCE_CAPTURE; \\r
871                 reg_data = kzalloc(sizeof(struct rk_sensor_reg)*2,GFP_KERNEL); \\r
872                 if (reg_data == NULL) { \\r
873                     SENSOR_TR("kzalloc interpolate reg_data failed"); \\r
874                 } else { \\r
875                     sensor_series->data = reg_data; \\r
876                     reg_data->reg = SEQCMD_INTERPOLATION; \\r
877                     reg_data++; \\r
878                     reg_data->reg = SEQCMD_END; \\r
879                 } \\r
880             } else {  \\r
881                 SENSOR_TR("generic_sensor_get_width_height failed!");  \\r
882                 BUG();  \\r
883             } \\r
884         } \\r
885  \\r
886         if (sensor_720p[0].reg != SEQCMD_END) {  \\r
887             sensor_series++;  \\r
888             sensor_series->gSeq_info.w = 1280;  \\r
889             sensor_series->gSeq_info.h = 720;  \\r
890             sensor_series->gSeq_info.fps = SENSOR_720P_FPS;  \\r
891             sensor_series->property = SEQUENCE_PREVIEW;  \\r
892             if (sensor_regarray_check(sensor_720p, sizeof(sensor_720p)/sizeof(struct rk_sensor_reg))==0) { \\r
893                 sensor_series->data = sensor_720p; \\r
894             } else { \\r
895                 SENSOR_TR("sensor_720p haven't SensorEnd flag! Please fill SensorEnd in the last of sensor_720p"); \\r
896                 BUG(); \\r
897             } \\r
898         }  \\r
899  \\r
900         if (sensor_1080p[0].reg != SEQCMD_END) {  \\r
901             sensor_series++;  \\r
902             sensor_series->gSeq_info.w = 1920;  \\r
903             sensor_series->gSeq_info.h = 1080;  \\r
904             sensor_series->gSeq_info.fps = SENSOR_1080P_FPS;  \\r
905             sensor_series->property = SEQUENCE_PREVIEW;  \\r
906             if (sensor_regarray_check(sensor_1080p, sizeof(sensor_1080p)/sizeof(struct rk_sensor_reg))==0) { \\r
907                 sensor_series->data = sensor_1080p; \\r
908             } else { \\r
909                 SENSOR_TR("sensor_1080p haven't SensorEnd flag! Please fill SensorEnd in the last of sensor_1080p"); \\r
910                 BUG(); \\r
911             } \\r
912         }  \\r
913     } \\r
914  \\r
915     if (CFG_FunChk(sensor_config,CFG_Focus)) { \\r
916         spsensor->common_sensor.sensor_focus.sensor_wq = create_workqueue(SENSOR_NAME_STRING(_af_workqueue)); \\r
917         if (spsensor->common_sensor.sensor_focus.sensor_wq == NULL) {\\r
918             SENSOR_TR("%s create fail, so auto focus is disable!", SENSOR_NAME_STRING(_af_workqueue));\\r
919             CFG_FunDis(sensor_config,CFG_Focus);\\r
920             CFG_FunDis(sensor_config,CFG_FocusContinues);\\r
921             CFG_FunDis(sensor_config,CFG_FocusZone);\\r
922             CFG_FunDis(sensor_config,CFG_FocusRelative);\\r
923             CFG_FunDis(sensor_config,CFG_FocusAbsolute);\\r
924         }\\r
925     } else {\\r
926         spsensor->common_sensor.sensor_focus.sensor_wq = NULL;\\r
927         CFG_FunDis(sensor_config,CFG_FocusContinues);\\r
928         CFG_FunDis(sensor_config,CFG_FocusZone);\\r
929         CFG_FunDis(sensor_config,CFG_FocusRelative);\\r
930         CFG_FunDis(sensor_config,CFG_FocusAbsolute);\\r
931     }\\r
932 \\r
933         spsensor->common_sensor.info_priv.bus_parameter = SENSOR_BUS_PARAM; \\r
934         spsensor->common_sensor.info_priv.chip_ident = SENSOR_V4L2_IDENT; \\r
935     spsensor->common_sensor.info_priv.chip_id = SensorChipID;\\r
936     spsensor->common_sensor.info_priv.chip_id_num = sizeof(SensorChipID)/sizeof(SensorChipID[0]);\\r
937 \\r
938     generic_sensor_get_max_min_res(spsensor->common_sensor.info_priv.sensor_series ,  \\r
939                                    spsensor->common_sensor.info_priv.num_series,  \\r
940                                    &(spsensor->common_sensor.info_priv.max_real_res),  \\r
941                                                                    &(spsensor->common_sensor.info_priv.max_res),  \\r
942                                                                    &(spsensor->common_sensor.info_priv.min_res));  \\r
943  \\r
944     num = 0;\\r
945     for (i=0; i<32; i++)\\r
946         if (SensorConfiguration & (1<<i))\\r
947             num++;\\r
948     num += sizeof(sensor_controls)/sizeof(struct sensor_v4l2ctrl_usr_s);  \\r
949     num += config_flash;\\r
950     controls = (struct v4l2_queryctrl*)kzalloc(sizeof(struct v4l2_queryctrl)*num,GFP_KERNEL);  \\r
951     if (controls == NULL) {  \\r
952         SENSOR_TR("kzalloc struct v4l2_queryctrl(%d) failed",num);  \\r
953         BUG();  \\r
954     }  \\r
955     spsensor->common_sensor.sensor_controls = controls;  \\r
956     sensor_ops_p = (struct soc_camera_ops*)kzalloc(sizeof(struct soc_camera_ops),GFP_KERNEL);  \\r
957         if (sensor_ops_p == NULL) {  \\r
958                 SENSOR_TR("kzalloc struct soc_camera_ops failed");      \\r
959                 BUG();  \\r
960         }  \\r
961     sensor_ops_p->controls = controls;  \\r
962     sensor_ops_p->num_controls = num;  \\r
963   \\r
964     ctrls = (struct sensor_v4l2ctrl_info_s*)kzalloc(sizeof(struct sensor_v4l2ctrl_info_s)*num,GFP_KERNEL);  \\r
965     if (ctrls == NULL) {  \\r
966         SENSOR_TR("kzalloc struct sensor_v4l2ctrl_info_s(%d) failed",num);  \\r
967         BUG();  \\r
968     }  \\r
969     spsensor->common_sensor.ctrls = ctrls;  \\r
970     for (i=0; i<num; i++) {  \\r
971         ctrls->qctrl = controls; \\r
972         ctrls->num_ctrls = num;  \\r
973         ctrls++;  \\r
974         controls++; \\r
975     }  \\r
976     controls = spsensor->common_sensor.sensor_controls; \\r
977     ctrls = spsensor->common_sensor.ctrls;  \\r
978  \\r
979     num = 0;  \\r
980     num += (CFG_FunChk(sensor_config,CFG_WhiteBalance)*5 + CFG_FunChk(sensor_config,CFG_Effect)*6 + CFG_FunChk(sensor_config,CFG_Scene)*2 + config_flash*4); \\r
981     num += sizeof(sensor_menus)/sizeof(struct v4l2_querymenu);  \\r
982     menus = (struct v4l2_querymenu*)kzalloc(sizeof(struct v4l2_querymenu)*num,GFP_KERNEL);  \\r
983     if (menus == NULL) {  \\r
984         SENSOR_TR("kzalloc struct v4l2_querymenu(%d) failed",num);  \\r
985         BUG();  \\r
986     }  \\r
987     sensor_ops_p->menus = menus;  \\r
988     sensor_ops_p->num_menus = num;  \\r
989  \\r
990     sensor_ops_p->suspend = sensor_suspend;  \\r
991     sensor_ops_p->resume = sensor_resume;  \\r
992     sensor_ops_p->set_bus_param = generic_sensor_set_bus_param;  \\r
993         sensor_ops_p->query_bus_param = generic_sensor_query_bus_param;  \\r
994  \\r
995     if (sizeof(sensor_ZoomSeqe)/sizeof(struct rk_sensor_reg *))\\r
996         sensor_ZoomSeqe[0] = NULL;\\r
997 \\r
998     if (CFG_FunChk(sensor_config,CFG_WhiteBalance)) { \\r
999         sensor_v4l2ctrl_info_init(ctrls,V4L2_CID_DO_WHITE_BALANCE,V4L2_CTRL_TYPE_MENU,  \\r
1000                             "White Balance Control",0,4,1,0,sensor_v4l2ctrl_default_cb,sensor_WhiteBalanceSeqe);  \\r
1001         controls++; \\r
1002         ctrls++;  \\r
1003  \\r
1004         v4l2_querymenu_init(menus,V4L2_CID_DO_WHITE_BALANCE,0,"auto",0); \\r
1005         menus++;  \\r
1006         v4l2_querymenu_init(menus,V4L2_CID_DO_WHITE_BALANCE,1,"incandescent",0);  \\r
1007         menus++;  \\r
1008         v4l2_querymenu_init(menus,V4L2_CID_DO_WHITE_BALANCE,2,"fluorescent",0);  \\r
1009         menus++;  \\r
1010         v4l2_querymenu_init(menus,V4L2_CID_DO_WHITE_BALANCE,3,"daylight",0);  \\r
1011         menus++;  \\r
1012         v4l2_querymenu_init(menus,V4L2_CID_DO_WHITE_BALANCE,4,"cloudy-daylight",0);  \\r
1013         menus++;  \\r
1014     }  \\r
1015  \\r
1016     if (CFG_FunChk(sensor_config,CFG_Brightness)) { \\r
1017         sensor_v4l2ctrl_info_init(ctrls,V4L2_CID_BRIGHTNESS,V4L2_CTRL_TYPE_INTEGER,  \\r
1018                             "Brightness Control",-3,2,1,0,sensor_v4l2ctrl_default_cb,sensor_BrightnessSeqe);  \\r
1019         controls++;  \\r
1020         ctrls++;  \\r
1021     }  \\r
1022     if (CFG_FunChk(sensor_config,CFG_Effect)) { \\r
1023         sensor_v4l2ctrl_info_init(ctrls,V4L2_CID_EFFECT,V4L2_CTRL_TYPE_MENU, \\r
1024                             "Effect Control",0,5,1,0,sensor_v4l2ctrl_default_cb,sensor_EffectSeqe); \\r
1025         controls++; \\r
1026         ctrls++;  \\r
1027  \\r
1028         v4l2_querymenu_init(menus,V4L2_CID_EFFECT,0,"none",0);  \\r
1029         menus++; \\r
1030         v4l2_querymenu_init(menus,V4L2_CID_EFFECT,1,"mono",0);  \\r
1031         menus++; \\r
1032         v4l2_querymenu_init(menus,V4L2_CID_EFFECT,2,"negative",0); \\r
1033         menus++; \\r
1034         v4l2_querymenu_init(menus,V4L2_CID_EFFECT,3,"sepia",0); \\r
1035         menus++; \\r
1036         v4l2_querymenu_init(menus,V4L2_CID_EFFECT,4,"posterize",0); \\r
1037         menus++; \\r
1038         v4l2_querymenu_init(menus,V4L2_CID_EFFECT,5,"aqua",0); \\r
1039         menus++; \\r
1040     } \\r
1041     if (CFG_FunChk(sensor_config,CFG_Exposure)) { \\r
1042         sensor_v4l2ctrl_info_init(ctrls,V4L2_CID_EXPOSURE,V4L2_CTRL_TYPE_INTEGER, \\r
1043                             "Exposure Control",0,6,1,0,sensor_v4l2ctrl_default_cb,sensor_ExposureSeqe);  \\r
1044         controls++;  \\r
1045         ctrls++;  \\r
1046     }  \\r
1047         if (CFG_FunChk(sensor_config,CFG_Saturation)) { \\r
1048         sensor_v4l2ctrl_info_init(ctrls,V4L2_CID_SATURATION,V4L2_CTRL_TYPE_INTEGER,  \\r
1049                             "Saturation Control",0,2,1,0,sensor_v4l2ctrl_default_cb,sensor_SaturationSeqe);  \\r
1050         controls++;  \\r
1051         ctrls++;  \\r
1052         }  \\r
1053         if (CFG_FunChk(sensor_config,CFG_Contrast)) { \\r
1054         sensor_v4l2ctrl_info_init(ctrls,V4L2_CID_CONTRAST,V4L2_CTRL_TYPE_INTEGER,  \\r
1055                             "Contrast Control",-3,3,1,0,sensor_v4l2ctrl_default_cb,sensor_ContrastSeqe);  \\r
1056         controls++;  \\r
1057         ctrls++;  \\r
1058         }  \\r
1059         if (CFG_FunChk(sensor_config,CFG_Mirror)) {  \\r
1060         sensor_v4l2ctrl_info_init(ctrls,V4L2_CID_HFLIP,V4L2_CTRL_TYPE_BOOLEAN, \\r
1061                             "Mirror Control",0,1,1,0,sensor_v4l2ctrl_mirror_default_cb,NULL); \\r
1062         controls++;  \\r
1063         ctrls++;  \\r
1064         }  \\r
1065         if (CFG_FunChk(sensor_config,CFG_Flip)) {  \\r
1066         ctrls->qctrl = controls; \\r
1067         sensor_v4l2ctrl_info_init(ctrls,V4L2_CID_VFLIP,V4L2_CTRL_TYPE_BOOLEAN,  \\r
1068                             "Flip Control",0,1,1,0,sensor_v4l2ctrl_flip_default_cb,NULL); \\r
1069         controls++;  \\r
1070         ctrls++;  \\r
1071         }  \\r
1072     if (CFG_FunChk(sensor_config,CFG_Scene)) { \\r
1073         sensor_v4l2ctrl_info_init(ctrls,V4L2_CID_SCENE,V4L2_CTRL_TYPE_MENU,  \\r
1074                             "Scene Control",0,1,1,0,sensor_v4l2ctrl_default_cb,sensor_SceneSeqe);  \\r
1075         controls++;  \\r
1076         ctrls++;  \\r
1077   \\r
1078         v4l2_querymenu_init(menus,V4L2_CID_SCENE,0,"auto",0);  \\r
1079         menus++;  \\r
1080         v4l2_querymenu_init(menus,V4L2_CID_SCENE,1,"night",0);  \\r
1081         menus++;  \\r
1082     }  \\r
1083     if (CFG_FunChk(sensor_config,CFG_Focus)) { \\r
1084            sensor_v4l2ctrl_info_init(ctrls,V4L2_CID_FOCUS_AUTO,V4L2_CTRL_TYPE_BOOLEAN,  \\r
1085                                                    "Focus Control",0,2,1,0,sensor_focus_default_cb,NULL);  \\r
1086            controls++;  \\r
1087            ctrls++;  \\r
1088     } \\r
1089  \\r
1090     if (CFG_FunChk(sensor_config,CFG_FocusRelative)) { \\r
1091         sensor_v4l2ctrl_info_init(ctrls,V4L2_CID_FOCUS_RELATIVE,V4L2_CTRL_TYPE_INTEGER,  \\r
1092                             "Focus Control",-1,1,1,0,sensor_focus_default_cb,NULL);  \\r
1093         controls++;  \\r
1094         ctrls++;  \\r
1095         } \\r
1096   \\r
1097    if (CFG_FunChk(sensor_config,CFG_FocusAbsolute)) { \\r
1098         sensor_v4l2ctrl_info_init(ctrls,V4L2_CID_FOCUS_ABSOLUTE,V4L2_CTRL_TYPE_INTEGER,  \\r
1099                             "Focus Control",0,255,1,125,sensor_focus_default_cb,NULL);  \\r
1100         controls++;  \\r
1101         ctrls++;  \\r
1102     }  \\r
1103     if (CFG_FunChk(sensor_config,CFG_FocusZone)) { \\r
1104             sensor_v4l2ctrl_info_init(ctrls,V4L2_CID_FOCUSZONE,V4L2_CTRL_TYPE_BOOLEAN,  \\r
1105                                                 "Focus Control",0,1,1,0,NULL,NULL);  \\r
1106             controls++;  \\r
1107             ctrls++;  \\r
1108     } \\r
1109    if (CFG_FunChk(sensor_config,CFG_FocusContinues)) { \\r
1110            sensor_v4l2ctrl_info_init(ctrls,V4L2_CID_FOCUS_CONTINUOUS,V4L2_CTRL_TYPE_BOOLEAN,  \\r
1111                                                    "Focus Control",0,1,1,0,sensor_focus_default_cb,NULL);  \\r
1112            controls++;  \\r
1113            ctrls++;  \\r
1114     } \\r
1115    if (CFG_FunChk(sensor_config,CFG_FACE_DETECT)) { \\r
1116            sensor_v4l2ctrl_info_init(ctrls,V4L2_CID_FACEDETECT,V4L2_CTRL_TYPE_BOOLEAN,  \\r
1117                                                    "FaceDEt Control",0,1,1,0,sensor_face_detect_default_cb,NULL);  \\r
1118            controls++;  \\r
1119            ctrls++;  \\r
1120         } \\r
1121     if (config_flash) { \\r
1122         sensor_v4l2ctrl_info_init(ctrls,V4L2_CID_FLASH,V4L2_CTRL_TYPE_MENU,  \\r
1123                             "Flash Control",0,3,1,0,sensor_v4l2ctrl_flash_cb,NULL);  \\r
1124         controls++;  \\r
1125         ctrls++;  \\r
1126   \\r
1127         v4l2_querymenu_init(menus,V4L2_CID_FLASH,0,"off",0);  \\r
1128         menus++;  \\r
1129         v4l2_querymenu_init(menus,V4L2_CID_FLASH,1,"auto",0);  \\r
1130         menus++;  \\r
1131         v4l2_querymenu_init(menus,V4L2_CID_FLASH,2,"on",0);  \\r
1132         menus++;  \\r
1133         v4l2_querymenu_init(menus,V4L2_CID_FLASH,3,"torch",0);  \\r
1134         menus++;  \\r
1135     }  \\r
1136   \\r
1137     for (i=0; i<(sizeof(sensor_controls)/sizeof(struct sensor_v4l2ctrl_usr_s)); i++) { \\r
1138  \\r
1139         control = spsensor->common_sensor.sensor_controls; \\r
1140         while (control < controls) \\r
1141         { \\r
1142             if (control->id == sensor_controls[i].qctrl.id) { \\r
1143                 control->id = 0xffffffff; \\r
1144             } \\r
1145             control++; \\r
1146         } \\r
1147  \\r
1148         memcpy(controls, &sensor_controls[i].qctrl,sizeof(struct v4l2_queryctrl));  \\r
1149         controls++;  \\r
1150  \\r
1151         ctrls->sensor_Seqe = sensor_controls[i].sensor_Seqe; \\r
1152         ctrls->cur_value = sensor_controls[i].qctrl.default_value; \\r
1153         ctrls->cb = sensor_controls[i].cb; \\r
1154         ctrls++; \\r
1155     }  \\r
1156  \\r
1157     for (i=0; i<(sizeof(sensor_menus)/sizeof(struct v4l2_querymenu)); i++) { \\r
1158         num = sensor_ops_p->num_menus - sizeof(sensor_menus)/sizeof(struct v4l2_querymenu); \\r
1159         menu = sensor_ops_p->menus; \\r
1160         while (num--) { \\r
1161             if (menu->id == sensor_menus[i].id) { \\r
1162                 menu->id = 0xffffffff; \\r
1163             } \\r
1164             menu++; \\r
1165         } \\r
1166  \\r
1167         memcpy(menus, &sensor_menus[i],sizeof(struct v4l2_querymenu));  \\r
1168         menus++;  \\r
1169     }  \\r
1170  \\r
1171         spsensor->common_sensor.info_priv.datafmt = sensor_colour_fmts;  \\r
1172         spsensor->common_sensor.info_priv.num_datafmt = ARRAY_SIZE(sensor_colour_fmts);  \\r
1173         spsensor->common_sensor.sensor_ops = sensor_ops_p;  \\r
1174         icd->ops                = sensor_ops_p;  \\r
1175         spsensor->common_sensor.info_priv.curfmt= sensor_colour_fmts[0];  \\r
1176  \\r
1177     if (config_flash) { \\r
1178         hrtimer_init(&(spsensor->common_sensor.flash_off_timer.timer), CLOCK_MONOTONIC, HRTIMER_MODE_REL);  \\r
1179         spsensor->common_sensor.flash_off_timer.icd = icd; \\r
1180     } \\r
1181     if(CFG_FunChk(sensor_config,CFG_Focus)) { \\r
1182                 mutex_init(&spsensor->common_sensor.sensor_focus.focus_lock); \\r
1183                 spsensor->common_sensor.sensor_focus.focus_mode = WqCmd_af_invalid; \\r
1184                 spsensor->common_sensor.sensor_focus.focus_state = FocusState_Inval;\\r
1185                 spsensor->common_sensor.sensor_focus.focus_cb.sensor_focus_init_cb = sensor_focus_init_usr_cb; \\r
1186                 spsensor->common_sensor.sensor_focus.focus_cb.sensor_af_single_cb = sensor_focus_af_single_usr_cb; \\r
1187                 spsensor->common_sensor.sensor_focus.focus_cb.sensor_af_near_cb = sensor_focus_af_near_usr_cb; \\r
1188                 spsensor->common_sensor.sensor_focus.focus_cb.sensor_af_far_cb = sensor_focus_af_far_usr_cb; \\r
1189                 spsensor->common_sensor.sensor_focus.focus_cb.sensor_af_specialpos_cb = sensor_focus_af_specialpos_usr_cb; \\r
1190                 if(CFG_FunChk(sensor_config,CFG_FocusContinues)) {\\r
1191                         spsensor->common_sensor.sensor_focus.focus_cb.sensor_af_const_cb = sensor_focus_af_const_usr_cb; \\r
1192                         spsensor->common_sensor.sensor_focus.focus_cb.sensor_af_const_pause_cb = sensor_focus_af_const_pause_usr_cb; \\r
1193                 }\\r
1194                 if(CFG_FunChk(sensor_config,CFG_FocusZone)) \\r
1195                         spsensor->common_sensor.sensor_focus.focus_cb.sensor_af_zoneupdate_cb = sensor_focus_af_zoneupdate_usr_cb; \\r
1196                 spsensor->common_sensor.sensor_focus.focus_cb.sensor_af_close_cb = sensor_focus_af_close_usr_cb; \\r
1197         }else{ \\r
1198                 spsensor->common_sensor.sensor_focus.focus_cb.sensor_focus_init_cb = NULL; \\r
1199                 spsensor->common_sensor.sensor_focus.focus_cb.sensor_af_single_cb = NULL; \\r
1200                 spsensor->common_sensor.sensor_focus.focus_cb.sensor_af_near_cb = NULL; \\r
1201                 spsensor->common_sensor.sensor_focus.focus_cb.sensor_af_far_cb =NULL; \\r
1202                 spsensor->common_sensor.sensor_focus.focus_cb.sensor_af_specialpos_cb =NULL; \\r
1203                 spsensor->common_sensor.sensor_focus.focus_cb.sensor_af_const_cb =NULL; \\r
1204                 spsensor->common_sensor.sensor_focus.focus_cb.sensor_af_zoneupdate_cb =NULL; \\r
1205                 spsensor->common_sensor.sensor_focus.focus_cb.sensor_af_close_cb =NULL; \\r
1206         } \\r
1207  \\r
1208     memcpy(spsensor->common_sensor.dev_name,dev_name(icd->pdev), sizeof(spsensor->common_sensor.dev_name)-1); \\r
1209     sensor_init_parameters_user(spsensor,icd);  \\r
1210 }\r
1211 \r
1212 \r
1213 #define sensor_v4l2_struct_initialization()  static struct v4l2_subdev_core_ops sensor_subdev_core_ops = {\\r
1214         .init           = generic_sensor_init,\\r
1215         .g_ctrl         = generic_sensor_g_control,\\r
1216         .s_ctrl         = generic_sensor_s_control,\\r
1217         .g_ext_ctrls              = generic_sensor_g_ext_controls,\\r
1218         .s_ext_ctrls              = generic_sensor_s_ext_controls,\\r
1219         .g_chip_ident   = generic_sensor_g_chip_ident,\\r
1220         .ioctl = generic_sensor_ioctl,\\r
1221 };\\r
1222 \\r
1223 static struct v4l2_subdev_video_ops sensor_subdev_video_ops = {\\r
1224         .s_mbus_fmt = generic_sensor_s_fmt,\\r
1225         .g_mbus_fmt = generic_sensor_g_fmt,\\r
1226     .cropcap = generic_sensor_cropcap,\\r
1227         .try_mbus_fmt   = generic_sensor_try_fmt,\\r
1228         .enum_mbus_fmt  = generic_sensor_enum_fmt,\\r
1229         .enum_frameintervals = generic_sensor_enum_frameintervals,\\r
1230         .s_stream   = generic_sensor_s_stream,\\r
1231         .enum_framesizes = generic_sensor_enum_framesizes,\\r
1232 };\\r
1233 static struct v4l2_subdev_ops sensor_subdev_ops = {\\r
1234         .core   = &sensor_subdev_core_ops,\\r
1235         .video = &sensor_subdev_video_ops,\\r
1236 };\\r
1237 \\r
1238 static const struct i2c_device_id sensor_id[] = {\\r
1239         {SENSOR_NAME_STRING(), 0 },\\r
1240     {"\0",0}\\r
1241 };\\r
1242 \\r
1243 MODULE_DEVICE_TABLE(i2c, sensor_id);\r
1244 \r
1245 \r
1246 #define sensor_probe_default_code() static int sensor_probe(struct i2c_client *client,\\r
1247                          const struct i2c_device_id *did)\\r
1248 {\\r
1249         struct specific_sensor *spsensor=NULL;\\r
1250         struct soc_camera_device *icd = client->dev.platform_data;\\r
1251         struct i2c_adapter *adapter = to_i2c_adapter(client->dev.parent);\\r
1252         struct soc_camera_link *icl;\\r
1253         int ret=0;\\r
1254 \\r
1255         if (!icd) {\\r
1256                 dev_err(&client->dev, "%s: missing soc-camera data!\n",SENSOR_NAME_STRING());\\r
1257                 ret = -EINVAL;\\r
1258         goto sensor_probe_end;\\r
1259         }\\r
1260 \\r
1261         icl = to_soc_camera_link(icd);\\r
1262         if (!icl) {\\r
1263                 SENSOR_TR("driver needs platform data! But it is failed\n");\\r
1264                 ret = -EINVAL;\\r
1265         goto sensor_probe_end;\\r
1266         }\\r
1267 \\r
1268         if (!i2c_check_functionality(adapter, I2C_FUNC_I2C)) {\\r
1269                 SENSOR_TR("I2C-Adapter doesn't support I2C_FUNC_I2C\n");\\r
1270                 ret =  -EIO;\\r
1271         goto sensor_probe_end;\\r
1272         }\\r
1273 \\r
1274         spsensor = kzalloc(sizeof(struct specific_sensor), GFP_KERNEL);\\r
1275         if (!spsensor) {\\r
1276                 ret = -ENOMEM;\\r
1277         SENSOR_TR("kzalloc failed\n");\\r
1278         goto sensor_probe_end;\\r
1279         }\\r
1280 \\r
1281         v4l2_i2c_subdev_init(&spsensor->common_sensor.subdev, client, &sensor_subdev_ops);\\r
1282     sensor_init_parameters(spsensor,icd);\\r
1283 \\r
1284     ret = sensor_video_probe(icd, client);\\r
1285 \\r
1286 sensor_probe_end:\\r
1287     if (ret != 0) {\\r
1288         if (icd->ops) {\\r
1289             if (icd->ops->controls) {\\r
1290                 kfree(icd->ops->controls);\\r
1291                 icd->ops->controls = NULL;\\r
1292             }\\r
1293             if (icd->ops->menus) {\\r
1294                 kfree(icd->ops->menus);\\r
1295                 icd->ops->menus = NULL;\\r
1296             }\\r
1297             kfree(icd->ops);\\r
1298             icd->ops = NULL;\\r
1299         }\\r
1300         i2c_set_clientdata(client, NULL);\\r
1301         client->driver = NULL;\\r
1302         if (spsensor) {\\r
1303             kfree(spsensor);\\r
1304         }\\r
1305         spsensor = NULL;\\r
1306     }\\r
1307         return ret;\\r
1308 }\r
1309 \r
1310 #define sensor_remove_default_code() static int sensor_remove(struct i2c_client *client)\\r
1311 {\\r
1312         struct generic_sensor*sensor = to_generic_sensor(client);\\r
1313         struct soc_camera_device *icd = client->dev.platform_data;\\r
1314         struct specific_sensor *spsensor = to_specific_sensor(sensor);\\r
1315         int sensor_config;\\r
1316 \\r
1317     sensor_config = SensorConfiguration;\\r
1318         if(CFG_FunChk(sensor_config,CFG_Focus)){ \\r
1319                 if (sensor->sensor_focus.sensor_wq) {\\r
1320                         destroy_workqueue(sensor->sensor_focus.sensor_wq);\\r
1321                         sensor->sensor_focus.sensor_wq = NULL;\\r
1322                 }\\r
1323         }\\r
1324     if (icd->ops) {\\r
1325         if (icd->ops->controls) {\\r
1326             kfree(icd->ops->controls);\\r
1327             icd->ops->controls = NULL;\\r
1328         }\\r
1329         if (icd->ops->menus) {\\r
1330             kfree(icd->ops->menus);\\r
1331             icd->ops->menus = NULL;\\r
1332         }\\r
1333             kfree(icd->ops);\\r
1334             icd->ops = NULL;\\r
1335     }\\r
1336         i2c_set_clientdata(client, NULL);\\r
1337         client->driver = NULL;\\r
1338     if (spsensor) {\\r
1339         kfree(spsensor);\\r
1340     }\\r
1341         spsensor = NULL;\\r
1342         return 0;\\r
1343 }\r
1344 \r
1345 \r
1346 #define sensor_driver_default_module_code() static struct i2c_driver sensor_i2c_driver = {\\r
1347         .driver = {\\r
1348                 .name = SENSOR_NAME_STRING(),\\r
1349         },\\r
1350         .probe          = sensor_probe,\\r
1351         .remove         = sensor_remove,\\r
1352         .id_table       = sensor_id,\\r
1353 };\\r
1354 \\r
1355 static int __init sensor_mod_init(void)\\r
1356 {\\r
1357         return i2c_add_driver(&sensor_i2c_driver);\\r
1358 }\\r
1359 \\r
1360 static void __exit sensor_mod_exit(void)\\r
1361 {\\r
1362         i2c_del_driver(&sensor_i2c_driver);\\r
1363 }\\r
1364 \\r
1365 device_initcall_sync(sensor_mod_init);\\r
1366 module_exit(sensor_mod_exit);\\r
1367 \\r
1368 MODULE_DESCRIPTION(SENSOR_NAME_STRING(sensor driver));\\r
1369 MODULE_AUTHOR("<ddl@rock-chips.com,zyc@rock-chips.com>");\\r
1370 MODULE_LICENSE("GPL");\r
1371 #endif\r