GNU Linux-libre 4.19.264-gnu1
[releases.git] / drivers / media / i2c / ov5645.c
1 /*
2  * Driver for the OV5645 camera sensor.
3  *
4  * Copyright (c) 2011-2015, The Linux Foundation. All rights reserved.
5  * Copyright (C) 2015 By Tech Design S.L. All Rights Reserved.
6  * Copyright (C) 2012-2013 Freescale Semiconductor, Inc. All Rights Reserved.
7  *
8  * Based on:
9  * - the OV5645 driver from QC msm-3.10 kernel on codeaurora.org:
10  *   https://us.codeaurora.org/cgit/quic/la/kernel/msm-3.10/tree/drivers/
11  *       media/platform/msm/camera_v2/sensor/ov5645.c?h=LA.BR.1.2.4_rb1.41
12  * - the OV5640 driver posted on linux-media:
13  *   https://www.mail-archive.com/linux-media%40vger.kernel.org/msg92671.html
14  */
15
16 /*
17  * This program is free software; you can redistribute it and/or modify
18  * it under the terms of the GNU General Public License as published by
19  * the Free Software Foundation; either version 2 of the License, or
20  * (at your option) any later version.
21
22  * This program is distributed in the hope that it will be useful,
23  * but WITHOUT ANY WARRANTY; without even the implied warranty of
24  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
25  * GNU General Public License for more details.
26  */
27
28 #include <linux/bitops.h>
29 #include <linux/clk.h>
30 #include <linux/delay.h>
31 #include <linux/device.h>
32 #include <linux/gpio/consumer.h>
33 #include <linux/i2c.h>
34 #include <linux/init.h>
35 #include <linux/module.h>
36 #include <linux/of.h>
37 #include <linux/of_graph.h>
38 #include <linux/regulator/consumer.h>
39 #include <linux/slab.h>
40 #include <linux/types.h>
41 #include <media/v4l2-ctrls.h>
42 #include <media/v4l2-fwnode.h>
43 #include <media/v4l2-subdev.h>
44
45 #define OV5645_VOLTAGE_ANALOG               2800000
46 #define OV5645_VOLTAGE_DIGITAL_CORE         1500000
47 #define OV5645_VOLTAGE_DIGITAL_IO           1800000
48
49 #define OV5645_SYSTEM_CTRL0             0x3008
50 #define         OV5645_SYSTEM_CTRL0_START       0x02
51 #define         OV5645_SYSTEM_CTRL0_STOP        0x42
52 #define OV5645_CHIP_ID_HIGH             0x300a
53 #define         OV5645_CHIP_ID_HIGH_BYTE        0x56
54 #define OV5645_CHIP_ID_LOW              0x300b
55 #define         OV5645_CHIP_ID_LOW_BYTE         0x45
56 #define OV5645_IO_MIPI_CTRL00           0x300e
57 #define OV5645_PAD_OUTPUT00             0x3019
58 #define OV5645_AWB_MANUAL_CONTROL       0x3406
59 #define         OV5645_AWB_MANUAL_ENABLE        BIT(0)
60 #define OV5645_AEC_PK_MANUAL            0x3503
61 #define         OV5645_AEC_MANUAL_ENABLE        BIT(0)
62 #define         OV5645_AGC_MANUAL_ENABLE        BIT(1)
63 #define OV5645_TIMING_TC_REG20          0x3820
64 #define         OV5645_SENSOR_VFLIP             BIT(1)
65 #define         OV5645_ISP_VFLIP                BIT(2)
66 #define OV5645_TIMING_TC_REG21          0x3821
67 #define         OV5645_SENSOR_MIRROR            BIT(1)
68 #define OV5645_MIPI_CTRL00              0x4800
69 #define OV5645_PRE_ISP_TEST_SETTING_1   0x503d
70 #define         OV5645_TEST_PATTERN_MASK        0x3
71 #define         OV5645_SET_TEST_PATTERN(x)      ((x) & OV5645_TEST_PATTERN_MASK)
72 #define         OV5645_TEST_PATTERN_ENABLE      BIT(7)
73 #define OV5645_SDE_SAT_U                0x5583
74 #define OV5645_SDE_SAT_V                0x5584
75
76 struct reg_value {
77         u16 reg;
78         u8 val;
79 };
80
81 struct ov5645_mode_info {
82         u32 width;
83         u32 height;
84         const struct reg_value *data;
85         u32 data_size;
86         u32 pixel_clock;
87         u32 link_freq;
88 };
89
90 struct ov5645 {
91         struct i2c_client *i2c_client;
92         struct device *dev;
93         struct v4l2_subdev sd;
94         struct media_pad pad;
95         struct v4l2_fwnode_endpoint ep;
96         struct v4l2_mbus_framefmt fmt;
97         struct v4l2_rect crop;
98         struct clk *xclk;
99
100         struct regulator *io_regulator;
101         struct regulator *core_regulator;
102         struct regulator *analog_regulator;
103
104         const struct ov5645_mode_info *current_mode;
105
106         struct v4l2_ctrl_handler ctrls;
107         struct v4l2_ctrl *pixel_clock;
108         struct v4l2_ctrl *link_freq;
109
110         /* Cached register values */
111         u8 aec_pk_manual;
112         u8 timing_tc_reg20;
113         u8 timing_tc_reg21;
114
115         struct mutex power_lock; /* lock to protect power state */
116         int power_count;
117
118         struct gpio_desc *enable_gpio;
119         struct gpio_desc *rst_gpio;
120 };
121
122 static inline struct ov5645 *to_ov5645(struct v4l2_subdev *sd)
123 {
124         return container_of(sd, struct ov5645, sd);
125 }
126
127 static const struct reg_value ov5645_global_init_setting[] = {
128         { 0x3103, 0x11 },
129         { 0x3008, 0x82 },
130         { 0x3008, 0x42 },
131         { 0x3103, 0x03 },
132         { 0x3503, 0x07 },
133         { 0x3002, 0x1c },
134         { 0x3006, 0xc3 },
135         { 0x3017, 0x00 },
136         { 0x3018, 0x00 },
137         { 0x302e, 0x0b },
138         { 0x3037, 0x13 },
139         { 0x3108, 0x01 },
140         { 0x3611, 0x06 },
141         { 0x3500, 0x00 },
142         { 0x3501, 0x01 },
143         { 0x3502, 0x00 },
144         { 0x350a, 0x00 },
145         { 0x350b, 0x3f },
146         { 0x3620, 0x33 },
147         { 0x3621, 0xe0 },
148         { 0x3622, 0x01 },
149         { 0x3630, 0x2e },
150         { 0x3631, 0x00 },
151         { 0x3632, 0x32 },
152         { 0x3633, 0x52 },
153         { 0x3634, 0x70 },
154         { 0x3635, 0x13 },
155         { 0x3636, 0x03 },
156         { 0x3703, 0x5a },
157         { 0x3704, 0xa0 },
158         { 0x3705, 0x1a },
159         { 0x3709, 0x12 },
160         { 0x370b, 0x61 },
161         { 0x370f, 0x10 },
162         { 0x3715, 0x78 },
163         { 0x3717, 0x01 },
164         { 0x371b, 0x20 },
165         { 0x3731, 0x12 },
166         { 0x3901, 0x0a },
167         { 0x3905, 0x02 },
168         { 0x3906, 0x10 },
169         { 0x3719, 0x86 },
170         { 0x3810, 0x00 },
171         { 0x3811, 0x10 },
172         { 0x3812, 0x00 },
173         { 0x3821, 0x01 },
174         { 0x3824, 0x01 },
175         { 0x3826, 0x03 },
176         { 0x3828, 0x08 },
177         { 0x3a19, 0xf8 },
178         { 0x3c01, 0x34 },
179         { 0x3c04, 0x28 },
180         { 0x3c05, 0x98 },
181         { 0x3c07, 0x07 },
182         { 0x3c09, 0xc2 },
183         { 0x3c0a, 0x9c },
184         { 0x3c0b, 0x40 },
185         { 0x3c01, 0x34 },
186         { 0x4001, 0x02 },
187         { 0x4514, 0x00 },
188         { 0x4520, 0xb0 },
189         { 0x460b, 0x37 },
190         { 0x460c, 0x20 },
191         { 0x4818, 0x01 },
192         { 0x481d, 0xf0 },
193         { 0x481f, 0x50 },
194         { 0x4823, 0x70 },
195         { 0x4831, 0x14 },
196         { 0x5000, 0xa7 },
197         { 0x5001, 0x83 },
198         { 0x501d, 0x00 },
199         { 0x501f, 0x00 },
200         { 0x503d, 0x00 },
201         { 0x505c, 0x30 },
202         { 0x5181, 0x59 },
203         { 0x5183, 0x00 },
204         { 0x5191, 0xf0 },
205         { 0x5192, 0x03 },
206         { 0x5684, 0x10 },
207         { 0x5685, 0xa0 },
208         { 0x5686, 0x0c },
209         { 0x5687, 0x78 },
210         { 0x5a00, 0x08 },
211         { 0x5a21, 0x00 },
212         { 0x5a24, 0x00 },
213         { 0x3008, 0x02 },
214         { 0x3503, 0x00 },
215         { 0x5180, 0xff },
216         { 0x5181, 0xf2 },
217         { 0x5182, 0x00 },
218         { 0x5183, 0x14 },
219         { 0x5184, 0x25 },
220         { 0x5185, 0x24 },
221         { 0x5186, 0x09 },
222         { 0x5187, 0x09 },
223         { 0x5188, 0x0a },
224         { 0x5189, 0x75 },
225         { 0x518a, 0x52 },
226         { 0x518b, 0xea },
227         { 0x518c, 0xa8 },
228         { 0x518d, 0x42 },
229         { 0x518e, 0x38 },
230         { 0x518f, 0x56 },
231         { 0x5190, 0x42 },
232         { 0x5191, 0xf8 },
233         { 0x5192, 0x04 },
234         { 0x5193, 0x70 },
235         { 0x5194, 0xf0 },
236         { 0x5195, 0xf0 },
237         { 0x5196, 0x03 },
238         { 0x5197, 0x01 },
239         { 0x5198, 0x04 },
240         { 0x5199, 0x12 },
241         { 0x519a, 0x04 },
242         { 0x519b, 0x00 },
243         { 0x519c, 0x06 },
244         { 0x519d, 0x82 },
245         { 0x519e, 0x38 },
246         { 0x5381, 0x1e },
247         { 0x5382, 0x5b },
248         { 0x5383, 0x08 },
249         { 0x5384, 0x0a },
250         { 0x5385, 0x7e },
251         { 0x5386, 0x88 },
252         { 0x5387, 0x7c },
253         { 0x5388, 0x6c },
254         { 0x5389, 0x10 },
255         { 0x538a, 0x01 },
256         { 0x538b, 0x98 },
257         { 0x5300, 0x08 },
258         { 0x5301, 0x30 },
259         { 0x5302, 0x10 },
260         { 0x5303, 0x00 },
261         { 0x5304, 0x08 },
262         { 0x5305, 0x30 },
263         { 0x5306, 0x08 },
264         { 0x5307, 0x16 },
265         { 0x5309, 0x08 },
266         { 0x530a, 0x30 },
267         { 0x530b, 0x04 },
268         { 0x530c, 0x06 },
269         { 0x5480, 0x01 },
270         { 0x5481, 0x08 },
271         { 0x5482, 0x14 },
272         { 0x5483, 0x28 },
273         { 0x5484, 0x51 },
274         { 0x5485, 0x65 },
275         { 0x5486, 0x71 },
276         { 0x5487, 0x7d },
277         { 0x5488, 0x87 },
278         { 0x5489, 0x91 },
279         { 0x548a, 0x9a },
280         { 0x548b, 0xaa },
281         { 0x548c, 0xb8 },
282         { 0x548d, 0xcd },
283         { 0x548e, 0xdd },
284         { 0x548f, 0xea },
285         { 0x5490, 0x1d },
286         { 0x5580, 0x02 },
287         { 0x5583, 0x40 },
288         { 0x5584, 0x10 },
289         { 0x5589, 0x10 },
290         { 0x558a, 0x00 },
291         { 0x558b, 0xf8 },
292         { 0x5800, 0x3f },
293         { 0x5801, 0x16 },
294         { 0x5802, 0x0e },
295         { 0x5803, 0x0d },
296         { 0x5804, 0x17 },
297         { 0x5805, 0x3f },
298         { 0x5806, 0x0b },
299         { 0x5807, 0x06 },
300         { 0x5808, 0x04 },
301         { 0x5809, 0x04 },
302         { 0x580a, 0x06 },
303         { 0x580b, 0x0b },
304         { 0x580c, 0x09 },
305         { 0x580d, 0x03 },
306         { 0x580e, 0x00 },
307         { 0x580f, 0x00 },
308         { 0x5810, 0x03 },
309         { 0x5811, 0x08 },
310         { 0x5812, 0x0a },
311         { 0x5813, 0x03 },
312         { 0x5814, 0x00 },
313         { 0x5815, 0x00 },
314         { 0x5816, 0x04 },
315         { 0x5817, 0x09 },
316         { 0x5818, 0x0f },
317         { 0x5819, 0x08 },
318         { 0x581a, 0x06 },
319         { 0x581b, 0x06 },
320         { 0x581c, 0x08 },
321         { 0x581d, 0x0c },
322         { 0x581e, 0x3f },
323         { 0x581f, 0x1e },
324         { 0x5820, 0x12 },
325         { 0x5821, 0x13 },
326         { 0x5822, 0x21 },
327         { 0x5823, 0x3f },
328         { 0x5824, 0x68 },
329         { 0x5825, 0x28 },
330         { 0x5826, 0x2c },
331         { 0x5827, 0x28 },
332         { 0x5828, 0x08 },
333         { 0x5829, 0x48 },
334         { 0x582a, 0x64 },
335         { 0x582b, 0x62 },
336         { 0x582c, 0x64 },
337         { 0x582d, 0x28 },
338         { 0x582e, 0x46 },
339         { 0x582f, 0x62 },
340         { 0x5830, 0x60 },
341         { 0x5831, 0x62 },
342         { 0x5832, 0x26 },
343         { 0x5833, 0x48 },
344         { 0x5834, 0x66 },
345         { 0x5835, 0x44 },
346         { 0x5836, 0x64 },
347         { 0x5837, 0x28 },
348         { 0x5838, 0x66 },
349         { 0x5839, 0x48 },
350         { 0x583a, 0x2c },
351         { 0x583b, 0x28 },
352         { 0x583c, 0x26 },
353         { 0x583d, 0xae },
354         { 0x5025, 0x00 },
355         { 0x3a0f, 0x30 },
356         { 0x3a10, 0x28 },
357         { 0x3a1b, 0x30 },
358         { 0x3a1e, 0x26 },
359         { 0x3a11, 0x60 },
360         { 0x3a1f, 0x14 },
361         { 0x0601, 0x02 },
362         { 0x3008, 0x42 },
363         { 0x3008, 0x02 },
364         { OV5645_IO_MIPI_CTRL00, 0x40 },
365         { OV5645_MIPI_CTRL00, 0x24 },
366         { OV5645_PAD_OUTPUT00, 0x70 }
367 };
368
369 static const struct reg_value ov5645_setting_sxga[] = {
370         { 0x3612, 0xa9 },
371         { 0x3614, 0x50 },
372         { 0x3618, 0x00 },
373         { 0x3034, 0x18 },
374         { 0x3035, 0x21 },
375         { 0x3036, 0x70 },
376         { 0x3600, 0x09 },
377         { 0x3601, 0x43 },
378         { 0x3708, 0x66 },
379         { 0x370c, 0xc3 },
380         { 0x3800, 0x00 },
381         { 0x3801, 0x00 },
382         { 0x3802, 0x00 },
383         { 0x3803, 0x06 },
384         { 0x3804, 0x0a },
385         { 0x3805, 0x3f },
386         { 0x3806, 0x07 },
387         { 0x3807, 0x9d },
388         { 0x3808, 0x05 },
389         { 0x3809, 0x00 },
390         { 0x380a, 0x03 },
391         { 0x380b, 0xc0 },
392         { 0x380c, 0x07 },
393         { 0x380d, 0x68 },
394         { 0x380e, 0x03 },
395         { 0x380f, 0xd8 },
396         { 0x3813, 0x06 },
397         { 0x3814, 0x31 },
398         { 0x3815, 0x31 },
399         { 0x3820, 0x47 },
400         { 0x3a02, 0x03 },
401         { 0x3a03, 0xd8 },
402         { 0x3a08, 0x01 },
403         { 0x3a09, 0xf8 },
404         { 0x3a0a, 0x01 },
405         { 0x3a0b, 0xa4 },
406         { 0x3a0e, 0x02 },
407         { 0x3a0d, 0x02 },
408         { 0x3a14, 0x03 },
409         { 0x3a15, 0xd8 },
410         { 0x3a18, 0x00 },
411         { 0x4004, 0x02 },
412         { 0x4005, 0x18 },
413         { 0x4300, 0x32 },
414         { 0x4202, 0x00 }
415 };
416
417 static const struct reg_value ov5645_setting_1080p[] = {
418         { 0x3612, 0xab },
419         { 0x3614, 0x50 },
420         { 0x3618, 0x04 },
421         { 0x3034, 0x18 },
422         { 0x3035, 0x11 },
423         { 0x3036, 0x54 },
424         { 0x3600, 0x08 },
425         { 0x3601, 0x33 },
426         { 0x3708, 0x63 },
427         { 0x370c, 0xc0 },
428         { 0x3800, 0x01 },
429         { 0x3801, 0x50 },
430         { 0x3802, 0x01 },
431         { 0x3803, 0xb2 },
432         { 0x3804, 0x08 },
433         { 0x3805, 0xef },
434         { 0x3806, 0x05 },
435         { 0x3807, 0xf1 },
436         { 0x3808, 0x07 },
437         { 0x3809, 0x80 },
438         { 0x380a, 0x04 },
439         { 0x380b, 0x38 },
440         { 0x380c, 0x09 },
441         { 0x380d, 0xc4 },
442         { 0x380e, 0x04 },
443         { 0x380f, 0x60 },
444         { 0x3813, 0x04 },
445         { 0x3814, 0x11 },
446         { 0x3815, 0x11 },
447         { 0x3820, 0x47 },
448         { 0x4514, 0x88 },
449         { 0x3a02, 0x04 },
450         { 0x3a03, 0x60 },
451         { 0x3a08, 0x01 },
452         { 0x3a09, 0x50 },
453         { 0x3a0a, 0x01 },
454         { 0x3a0b, 0x18 },
455         { 0x3a0e, 0x03 },
456         { 0x3a0d, 0x04 },
457         { 0x3a14, 0x04 },
458         { 0x3a15, 0x60 },
459         { 0x3a18, 0x00 },
460         { 0x4004, 0x06 },
461         { 0x4005, 0x18 },
462         { 0x4300, 0x32 },
463         { 0x4202, 0x00 },
464         { 0x4837, 0x0b }
465 };
466
467 static const struct reg_value ov5645_setting_full[] = {
468         { 0x3612, 0xab },
469         { 0x3614, 0x50 },
470         { 0x3618, 0x04 },
471         { 0x3034, 0x18 },
472         { 0x3035, 0x11 },
473         { 0x3036, 0x54 },
474         { 0x3600, 0x08 },
475         { 0x3601, 0x33 },
476         { 0x3708, 0x63 },
477         { 0x370c, 0xc0 },
478         { 0x3800, 0x00 },
479         { 0x3801, 0x00 },
480         { 0x3802, 0x00 },
481         { 0x3803, 0x00 },
482         { 0x3804, 0x0a },
483         { 0x3805, 0x3f },
484         { 0x3806, 0x07 },
485         { 0x3807, 0x9f },
486         { 0x3808, 0x0a },
487         { 0x3809, 0x20 },
488         { 0x380a, 0x07 },
489         { 0x380b, 0x98 },
490         { 0x380c, 0x0b },
491         { 0x380d, 0x1c },
492         { 0x380e, 0x07 },
493         { 0x380f, 0xb0 },
494         { 0x3813, 0x06 },
495         { 0x3814, 0x11 },
496         { 0x3815, 0x11 },
497         { 0x3820, 0x47 },
498         { 0x4514, 0x88 },
499         { 0x3a02, 0x07 },
500         { 0x3a03, 0xb0 },
501         { 0x3a08, 0x01 },
502         { 0x3a09, 0x27 },
503         { 0x3a0a, 0x00 },
504         { 0x3a0b, 0xf6 },
505         { 0x3a0e, 0x06 },
506         { 0x3a0d, 0x08 },
507         { 0x3a14, 0x07 },
508         { 0x3a15, 0xb0 },
509         { 0x3a18, 0x01 },
510         { 0x4004, 0x06 },
511         { 0x4005, 0x18 },
512         { 0x4300, 0x32 },
513         { 0x4837, 0x0b },
514         { 0x4202, 0x00 }
515 };
516
517 static const s64 link_freq[] = {
518         224000000,
519         336000000
520 };
521
522 static const struct ov5645_mode_info ov5645_mode_info_data[] = {
523         {
524                 .width = 1280,
525                 .height = 960,
526                 .data = ov5645_setting_sxga,
527                 .data_size = ARRAY_SIZE(ov5645_setting_sxga),
528                 .pixel_clock = 112000000,
529                 .link_freq = 0 /* an index in link_freq[] */
530         },
531         {
532                 .width = 1920,
533                 .height = 1080,
534                 .data = ov5645_setting_1080p,
535                 .data_size = ARRAY_SIZE(ov5645_setting_1080p),
536                 .pixel_clock = 168000000,
537                 .link_freq = 1 /* an index in link_freq[] */
538         },
539         {
540                 .width = 2592,
541                 .height = 1944,
542                 .data = ov5645_setting_full,
543                 .data_size = ARRAY_SIZE(ov5645_setting_full),
544                 .pixel_clock = 168000000,
545                 .link_freq = 1 /* an index in link_freq[] */
546         },
547 };
548
549 static int ov5645_regulators_enable(struct ov5645 *ov5645)
550 {
551         int ret;
552
553         ret = regulator_enable(ov5645->io_regulator);
554         if (ret < 0) {
555                 dev_err(ov5645->dev, "set io voltage failed\n");
556                 return ret;
557         }
558
559         ret = regulator_enable(ov5645->analog_regulator);
560         if (ret) {
561                 dev_err(ov5645->dev, "set analog voltage failed\n");
562                 goto err_disable_io;
563         }
564
565         ret = regulator_enable(ov5645->core_regulator);
566         if (ret) {
567                 dev_err(ov5645->dev, "set core voltage failed\n");
568                 goto err_disable_analog;
569         }
570
571         return 0;
572
573 err_disable_analog:
574         regulator_disable(ov5645->analog_regulator);
575 err_disable_io:
576         regulator_disable(ov5645->io_regulator);
577
578         return ret;
579 }
580
581 static void ov5645_regulators_disable(struct ov5645 *ov5645)
582 {
583         int ret;
584
585         ret = regulator_disable(ov5645->core_regulator);
586         if (ret < 0)
587                 dev_err(ov5645->dev, "core regulator disable failed\n");
588
589         ret = regulator_disable(ov5645->analog_regulator);
590         if (ret < 0)
591                 dev_err(ov5645->dev, "analog regulator disable failed\n");
592
593         ret = regulator_disable(ov5645->io_regulator);
594         if (ret < 0)
595                 dev_err(ov5645->dev, "io regulator disable failed\n");
596 }
597
598 static int ov5645_write_reg(struct ov5645 *ov5645, u16 reg, u8 val)
599 {
600         u8 regbuf[3];
601         int ret;
602
603         regbuf[0] = reg >> 8;
604         regbuf[1] = reg & 0xff;
605         regbuf[2] = val;
606
607         ret = i2c_master_send(ov5645->i2c_client, regbuf, 3);
608         if (ret < 0) {
609                 dev_err(ov5645->dev, "%s: write reg error %d: reg=%x, val=%x\n",
610                         __func__, ret, reg, val);
611                 return ret;
612         }
613
614         return 0;
615 }
616
617 static int ov5645_read_reg(struct ov5645 *ov5645, u16 reg, u8 *val)
618 {
619         u8 regbuf[2];
620         int ret;
621
622         regbuf[0] = reg >> 8;
623         regbuf[1] = reg & 0xff;
624
625         ret = i2c_master_send(ov5645->i2c_client, regbuf, 2);
626         if (ret < 0) {
627                 dev_err(ov5645->dev, "%s: write reg error %d: reg=%x\n",
628                         __func__, ret, reg);
629                 return ret;
630         }
631
632         ret = i2c_master_recv(ov5645->i2c_client, val, 1);
633         if (ret < 0) {
634                 dev_err(ov5645->dev, "%s: read reg error %d: reg=%x\n",
635                         __func__, ret, reg);
636                 return ret;
637         }
638
639         return 0;
640 }
641
642 static int ov5645_set_aec_mode(struct ov5645 *ov5645, u32 mode)
643 {
644         u8 val = ov5645->aec_pk_manual;
645         int ret;
646
647         if (mode == V4L2_EXPOSURE_AUTO)
648                 val &= ~OV5645_AEC_MANUAL_ENABLE;
649         else /* V4L2_EXPOSURE_MANUAL */
650                 val |= OV5645_AEC_MANUAL_ENABLE;
651
652         ret = ov5645_write_reg(ov5645, OV5645_AEC_PK_MANUAL, val);
653         if (!ret)
654                 ov5645->aec_pk_manual = val;
655
656         return ret;
657 }
658
659 static int ov5645_set_agc_mode(struct ov5645 *ov5645, u32 enable)
660 {
661         u8 val = ov5645->aec_pk_manual;
662         int ret;
663
664         if (enable)
665                 val &= ~OV5645_AGC_MANUAL_ENABLE;
666         else
667                 val |= OV5645_AGC_MANUAL_ENABLE;
668
669         ret = ov5645_write_reg(ov5645, OV5645_AEC_PK_MANUAL, val);
670         if (!ret)
671                 ov5645->aec_pk_manual = val;
672
673         return ret;
674 }
675
676 static int ov5645_set_register_array(struct ov5645 *ov5645,
677                                      const struct reg_value *settings,
678                                      unsigned int num_settings)
679 {
680         unsigned int i;
681         int ret;
682
683         for (i = 0; i < num_settings; ++i, ++settings) {
684                 ret = ov5645_write_reg(ov5645, settings->reg, settings->val);
685                 if (ret < 0)
686                         return ret;
687         }
688
689         return 0;
690 }
691
692 static int ov5645_set_power_on(struct ov5645 *ov5645)
693 {
694         int ret;
695
696         ret = ov5645_regulators_enable(ov5645);
697         if (ret < 0) {
698                 return ret;
699         }
700
701         ret = clk_prepare_enable(ov5645->xclk);
702         if (ret < 0) {
703                 dev_err(ov5645->dev, "clk prepare enable failed\n");
704                 ov5645_regulators_disable(ov5645);
705                 return ret;
706         }
707
708         usleep_range(5000, 15000);
709         gpiod_set_value_cansleep(ov5645->enable_gpio, 1);
710
711         usleep_range(1000, 2000);
712         gpiod_set_value_cansleep(ov5645->rst_gpio, 0);
713
714         msleep(20);
715
716         return 0;
717 }
718
719 static void ov5645_set_power_off(struct ov5645 *ov5645)
720 {
721         gpiod_set_value_cansleep(ov5645->rst_gpio, 1);
722         gpiod_set_value_cansleep(ov5645->enable_gpio, 0);
723         clk_disable_unprepare(ov5645->xclk);
724         ov5645_regulators_disable(ov5645);
725 }
726
727 static int ov5645_s_power(struct v4l2_subdev *sd, int on)
728 {
729         struct ov5645 *ov5645 = to_ov5645(sd);
730         int ret = 0;
731
732         mutex_lock(&ov5645->power_lock);
733
734         /* If the power count is modified from 0 to != 0 or from != 0 to 0,
735          * update the power state.
736          */
737         if (ov5645->power_count == !on) {
738                 if (on) {
739                         ret = ov5645_set_power_on(ov5645);
740                         if (ret < 0)
741                                 goto exit;
742
743                         ret = ov5645_set_register_array(ov5645,
744                                         ov5645_global_init_setting,
745                                         ARRAY_SIZE(ov5645_global_init_setting));
746                         if (ret < 0) {
747                                 dev_err(ov5645->dev,
748                                         "could not set init registers\n");
749                                 ov5645_set_power_off(ov5645);
750                                 goto exit;
751                         }
752
753                         usleep_range(500, 1000);
754                 } else {
755                         ov5645_write_reg(ov5645, OV5645_IO_MIPI_CTRL00, 0x58);
756                         ov5645_set_power_off(ov5645);
757                 }
758         }
759
760         /* Update the power count. */
761         ov5645->power_count += on ? 1 : -1;
762         WARN_ON(ov5645->power_count < 0);
763
764 exit:
765         mutex_unlock(&ov5645->power_lock);
766
767         return ret;
768 }
769
770 static int ov5645_set_saturation(struct ov5645 *ov5645, s32 value)
771 {
772         u32 reg_value = (value * 0x10) + 0x40;
773         int ret;
774
775         ret = ov5645_write_reg(ov5645, OV5645_SDE_SAT_U, reg_value);
776         if (ret < 0)
777                 return ret;
778
779         return ov5645_write_reg(ov5645, OV5645_SDE_SAT_V, reg_value);
780 }
781
782 static int ov5645_set_hflip(struct ov5645 *ov5645, s32 value)
783 {
784         u8 val = ov5645->timing_tc_reg21;
785         int ret;
786
787         if (value == 0)
788                 val &= ~(OV5645_SENSOR_MIRROR);
789         else
790                 val |= (OV5645_SENSOR_MIRROR);
791
792         ret = ov5645_write_reg(ov5645, OV5645_TIMING_TC_REG21, val);
793         if (!ret)
794                 ov5645->timing_tc_reg21 = val;
795
796         return ret;
797 }
798
799 static int ov5645_set_vflip(struct ov5645 *ov5645, s32 value)
800 {
801         u8 val = ov5645->timing_tc_reg20;
802         int ret;
803
804         if (value == 0)
805                 val |= (OV5645_SENSOR_VFLIP | OV5645_ISP_VFLIP);
806         else
807                 val &= ~(OV5645_SENSOR_VFLIP | OV5645_ISP_VFLIP);
808
809         ret = ov5645_write_reg(ov5645, OV5645_TIMING_TC_REG20, val);
810         if (!ret)
811                 ov5645->timing_tc_reg20 = val;
812
813         return ret;
814 }
815
816 static int ov5645_set_test_pattern(struct ov5645 *ov5645, s32 value)
817 {
818         u8 val = 0;
819
820         if (value) {
821                 val = OV5645_SET_TEST_PATTERN(value - 1);
822                 val |= OV5645_TEST_PATTERN_ENABLE;
823         }
824
825         return ov5645_write_reg(ov5645, OV5645_PRE_ISP_TEST_SETTING_1, val);
826 }
827
828 static const char * const ov5645_test_pattern_menu[] = {
829         "Disabled",
830         "Vertical Color Bars",
831         "Pseudo-Random Data",
832         "Color Square",
833         "Black Image",
834 };
835
836 static int ov5645_set_awb(struct ov5645 *ov5645, s32 enable_auto)
837 {
838         u8 val = 0;
839
840         if (!enable_auto)
841                 val = OV5645_AWB_MANUAL_ENABLE;
842
843         return ov5645_write_reg(ov5645, OV5645_AWB_MANUAL_CONTROL, val);
844 }
845
846 static int ov5645_s_ctrl(struct v4l2_ctrl *ctrl)
847 {
848         struct ov5645 *ov5645 = container_of(ctrl->handler,
849                                              struct ov5645, ctrls);
850         int ret;
851
852         mutex_lock(&ov5645->power_lock);
853         if (!ov5645->power_count) {
854                 mutex_unlock(&ov5645->power_lock);
855                 return 0;
856         }
857
858         switch (ctrl->id) {
859         case V4L2_CID_SATURATION:
860                 ret = ov5645_set_saturation(ov5645, ctrl->val);
861                 break;
862         case V4L2_CID_AUTO_WHITE_BALANCE:
863                 ret = ov5645_set_awb(ov5645, ctrl->val);
864                 break;
865         case V4L2_CID_AUTOGAIN:
866                 ret = ov5645_set_agc_mode(ov5645, ctrl->val);
867                 break;
868         case V4L2_CID_EXPOSURE_AUTO:
869                 ret = ov5645_set_aec_mode(ov5645, ctrl->val);
870                 break;
871         case V4L2_CID_TEST_PATTERN:
872                 ret = ov5645_set_test_pattern(ov5645, ctrl->val);
873                 break;
874         case V4L2_CID_HFLIP:
875                 ret = ov5645_set_hflip(ov5645, ctrl->val);
876                 break;
877         case V4L2_CID_VFLIP:
878                 ret = ov5645_set_vflip(ov5645, ctrl->val);
879                 break;
880         default:
881                 ret = -EINVAL;
882                 break;
883         }
884
885         mutex_unlock(&ov5645->power_lock);
886
887         return ret;
888 }
889
890 static struct v4l2_ctrl_ops ov5645_ctrl_ops = {
891         .s_ctrl = ov5645_s_ctrl,
892 };
893
894 static int ov5645_enum_mbus_code(struct v4l2_subdev *sd,
895                                  struct v4l2_subdev_pad_config *cfg,
896                                  struct v4l2_subdev_mbus_code_enum *code)
897 {
898         if (code->index > 0)
899                 return -EINVAL;
900
901         code->code = MEDIA_BUS_FMT_UYVY8_2X8;
902
903         return 0;
904 }
905
906 static int ov5645_enum_frame_size(struct v4l2_subdev *subdev,
907                                   struct v4l2_subdev_pad_config *cfg,
908                                   struct v4l2_subdev_frame_size_enum *fse)
909 {
910         if (fse->code != MEDIA_BUS_FMT_UYVY8_2X8)
911                 return -EINVAL;
912
913         if (fse->index >= ARRAY_SIZE(ov5645_mode_info_data))
914                 return -EINVAL;
915
916         fse->min_width = ov5645_mode_info_data[fse->index].width;
917         fse->max_width = ov5645_mode_info_data[fse->index].width;
918         fse->min_height = ov5645_mode_info_data[fse->index].height;
919         fse->max_height = ov5645_mode_info_data[fse->index].height;
920
921         return 0;
922 }
923
924 static struct v4l2_mbus_framefmt *
925 __ov5645_get_pad_format(struct ov5645 *ov5645,
926                         struct v4l2_subdev_pad_config *cfg,
927                         unsigned int pad,
928                         enum v4l2_subdev_format_whence which)
929 {
930         switch (which) {
931         case V4L2_SUBDEV_FORMAT_TRY:
932                 return v4l2_subdev_get_try_format(&ov5645->sd, cfg, pad);
933         case V4L2_SUBDEV_FORMAT_ACTIVE:
934                 return &ov5645->fmt;
935         default:
936                 return NULL;
937         }
938 }
939
940 static int ov5645_get_format(struct v4l2_subdev *sd,
941                              struct v4l2_subdev_pad_config *cfg,
942                              struct v4l2_subdev_format *format)
943 {
944         struct ov5645 *ov5645 = to_ov5645(sd);
945
946         format->format = *__ov5645_get_pad_format(ov5645, cfg, format->pad,
947                                                   format->which);
948         return 0;
949 }
950
951 static struct v4l2_rect *
952 __ov5645_get_pad_crop(struct ov5645 *ov5645, struct v4l2_subdev_pad_config *cfg,
953                       unsigned int pad, enum v4l2_subdev_format_whence which)
954 {
955         switch (which) {
956         case V4L2_SUBDEV_FORMAT_TRY:
957                 return v4l2_subdev_get_try_crop(&ov5645->sd, cfg, pad);
958         case V4L2_SUBDEV_FORMAT_ACTIVE:
959                 return &ov5645->crop;
960         default:
961                 return NULL;
962         }
963 }
964
965 static int ov5645_set_format(struct v4l2_subdev *sd,
966                              struct v4l2_subdev_pad_config *cfg,
967                              struct v4l2_subdev_format *format)
968 {
969         struct ov5645 *ov5645 = to_ov5645(sd);
970         struct v4l2_mbus_framefmt *__format;
971         struct v4l2_rect *__crop;
972         const struct ov5645_mode_info *new_mode;
973         int ret;
974
975         __crop = __ov5645_get_pad_crop(ov5645, cfg, format->pad,
976                         format->which);
977
978         new_mode = v4l2_find_nearest_size(ov5645_mode_info_data,
979                                ARRAY_SIZE(ov5645_mode_info_data),
980                                width, height,
981                                format->format.width, format->format.height);
982
983         __crop->width = new_mode->width;
984         __crop->height = new_mode->height;
985
986         if (format->which == V4L2_SUBDEV_FORMAT_ACTIVE) {
987                 ret = v4l2_ctrl_s_ctrl_int64(ov5645->pixel_clock,
988                                              new_mode->pixel_clock);
989                 if (ret < 0)
990                         return ret;
991
992                 ret = v4l2_ctrl_s_ctrl(ov5645->link_freq,
993                                        new_mode->link_freq);
994                 if (ret < 0)
995                         return ret;
996
997                 ov5645->current_mode = new_mode;
998         }
999
1000         __format = __ov5645_get_pad_format(ov5645, cfg, format->pad,
1001                         format->which);
1002         __format->width = __crop->width;
1003         __format->height = __crop->height;
1004         __format->code = MEDIA_BUS_FMT_UYVY8_2X8;
1005         __format->field = V4L2_FIELD_NONE;
1006         __format->colorspace = V4L2_COLORSPACE_SRGB;
1007
1008         format->format = *__format;
1009
1010         return 0;
1011 }
1012
1013 static int ov5645_entity_init_cfg(struct v4l2_subdev *subdev,
1014                                   struct v4l2_subdev_pad_config *cfg)
1015 {
1016         struct v4l2_subdev_format fmt = { 0 };
1017
1018         fmt.which = cfg ? V4L2_SUBDEV_FORMAT_TRY : V4L2_SUBDEV_FORMAT_ACTIVE;
1019         fmt.format.width = 1920;
1020         fmt.format.height = 1080;
1021
1022         ov5645_set_format(subdev, cfg, &fmt);
1023
1024         return 0;
1025 }
1026
1027 static int ov5645_get_selection(struct v4l2_subdev *sd,
1028                            struct v4l2_subdev_pad_config *cfg,
1029                            struct v4l2_subdev_selection *sel)
1030 {
1031         struct ov5645 *ov5645 = to_ov5645(sd);
1032
1033         if (sel->target != V4L2_SEL_TGT_CROP)
1034                 return -EINVAL;
1035
1036         sel->r = *__ov5645_get_pad_crop(ov5645, cfg, sel->pad,
1037                                         sel->which);
1038         return 0;
1039 }
1040
1041 static int ov5645_s_stream(struct v4l2_subdev *subdev, int enable)
1042 {
1043         struct ov5645 *ov5645 = to_ov5645(subdev);
1044         int ret;
1045
1046         if (enable) {
1047                 ret = ov5645_set_register_array(ov5645,
1048                                         ov5645->current_mode->data,
1049                                         ov5645->current_mode->data_size);
1050                 if (ret < 0) {
1051                         dev_err(ov5645->dev, "could not set mode %dx%d\n",
1052                                 ov5645->current_mode->width,
1053                                 ov5645->current_mode->height);
1054                         return ret;
1055                 }
1056                 ret = v4l2_ctrl_handler_setup(&ov5645->ctrls);
1057                 if (ret < 0) {
1058                         dev_err(ov5645->dev, "could not sync v4l2 controls\n");
1059                         return ret;
1060                 }
1061
1062                 ret = ov5645_write_reg(ov5645, OV5645_IO_MIPI_CTRL00, 0x45);
1063                 if (ret < 0)
1064                         return ret;
1065
1066                 ret = ov5645_write_reg(ov5645, OV5645_SYSTEM_CTRL0,
1067                                        OV5645_SYSTEM_CTRL0_START);
1068                 if (ret < 0)
1069                         return ret;
1070         } else {
1071                 ret = ov5645_write_reg(ov5645, OV5645_IO_MIPI_CTRL00, 0x40);
1072                 if (ret < 0)
1073                         return ret;
1074
1075                 ret = ov5645_write_reg(ov5645, OV5645_SYSTEM_CTRL0,
1076                                        OV5645_SYSTEM_CTRL0_STOP);
1077                 if (ret < 0)
1078                         return ret;
1079         }
1080
1081         return 0;
1082 }
1083
1084 static const struct v4l2_subdev_core_ops ov5645_core_ops = {
1085         .s_power = ov5645_s_power,
1086 };
1087
1088 static const struct v4l2_subdev_video_ops ov5645_video_ops = {
1089         .s_stream = ov5645_s_stream,
1090 };
1091
1092 static const struct v4l2_subdev_pad_ops ov5645_subdev_pad_ops = {
1093         .init_cfg = ov5645_entity_init_cfg,
1094         .enum_mbus_code = ov5645_enum_mbus_code,
1095         .enum_frame_size = ov5645_enum_frame_size,
1096         .get_fmt = ov5645_get_format,
1097         .set_fmt = ov5645_set_format,
1098         .get_selection = ov5645_get_selection,
1099 };
1100
1101 static const struct v4l2_subdev_ops ov5645_subdev_ops = {
1102         .core = &ov5645_core_ops,
1103         .video = &ov5645_video_ops,
1104         .pad = &ov5645_subdev_pad_ops,
1105 };
1106
1107 static int ov5645_probe(struct i2c_client *client,
1108                         const struct i2c_device_id *id)
1109 {
1110         struct device *dev = &client->dev;
1111         struct device_node *endpoint;
1112         struct ov5645 *ov5645;
1113         u8 chip_id_high, chip_id_low;
1114         u32 xclk_freq;
1115         int ret;
1116
1117         ov5645 = devm_kzalloc(dev, sizeof(struct ov5645), GFP_KERNEL);
1118         if (!ov5645)
1119                 return -ENOMEM;
1120
1121         ov5645->i2c_client = client;
1122         ov5645->dev = dev;
1123
1124         endpoint = of_graph_get_next_endpoint(dev->of_node, NULL);
1125         if (!endpoint) {
1126                 dev_err(dev, "endpoint node not found\n");
1127                 return -EINVAL;
1128         }
1129
1130         ret = v4l2_fwnode_endpoint_parse(of_fwnode_handle(endpoint),
1131                                          &ov5645->ep);
1132
1133         of_node_put(endpoint);
1134
1135         if (ret < 0) {
1136                 dev_err(dev, "parsing endpoint node failed\n");
1137                 return ret;
1138         }
1139
1140         if (ov5645->ep.bus_type != V4L2_MBUS_CSI2) {
1141                 dev_err(dev, "invalid bus type, must be CSI2\n");
1142                 return -EINVAL;
1143         }
1144
1145         /* get system clock (xclk) */
1146         ov5645->xclk = devm_clk_get(dev, "xclk");
1147         if (IS_ERR(ov5645->xclk)) {
1148                 dev_err(dev, "could not get xclk");
1149                 return PTR_ERR(ov5645->xclk);
1150         }
1151
1152         ret = of_property_read_u32(dev->of_node, "clock-frequency", &xclk_freq);
1153         if (ret) {
1154                 dev_err(dev, "could not get xclk frequency\n");
1155                 return ret;
1156         }
1157
1158         /* external clock must be 24MHz, allow 1% tolerance */
1159         if (xclk_freq < 23760000 || xclk_freq > 24240000) {
1160                 dev_err(dev, "external clock frequency %u is not supported\n",
1161                         xclk_freq);
1162                 return -EINVAL;
1163         }
1164
1165         ret = clk_set_rate(ov5645->xclk, xclk_freq);
1166         if (ret) {
1167                 dev_err(dev, "could not set xclk frequency\n");
1168                 return ret;
1169         }
1170
1171         ov5645->io_regulator = devm_regulator_get(dev, "vdddo");
1172         if (IS_ERR(ov5645->io_regulator)) {
1173                 dev_err(dev, "cannot get io regulator\n");
1174                 return PTR_ERR(ov5645->io_regulator);
1175         }
1176
1177         ret = regulator_set_voltage(ov5645->io_regulator,
1178                                     OV5645_VOLTAGE_DIGITAL_IO,
1179                                     OV5645_VOLTAGE_DIGITAL_IO);
1180         if (ret < 0) {
1181                 dev_err(dev, "cannot set io voltage\n");
1182                 return ret;
1183         }
1184
1185         ov5645->core_regulator = devm_regulator_get(dev, "vddd");
1186         if (IS_ERR(ov5645->core_regulator)) {
1187                 dev_err(dev, "cannot get core regulator\n");
1188                 return PTR_ERR(ov5645->core_regulator);
1189         }
1190
1191         ret = regulator_set_voltage(ov5645->core_regulator,
1192                                     OV5645_VOLTAGE_DIGITAL_CORE,
1193                                     OV5645_VOLTAGE_DIGITAL_CORE);
1194         if (ret < 0) {
1195                 dev_err(dev, "cannot set core voltage\n");
1196                 return ret;
1197         }
1198
1199         ov5645->analog_regulator = devm_regulator_get(dev, "vdda");
1200         if (IS_ERR(ov5645->analog_regulator)) {
1201                 dev_err(dev, "cannot get analog regulator\n");
1202                 return PTR_ERR(ov5645->analog_regulator);
1203         }
1204
1205         ret = regulator_set_voltage(ov5645->analog_regulator,
1206                                     OV5645_VOLTAGE_ANALOG,
1207                                     OV5645_VOLTAGE_ANALOG);
1208         if (ret < 0) {
1209                 dev_err(dev, "cannot set analog voltage\n");
1210                 return ret;
1211         }
1212
1213         ov5645->enable_gpio = devm_gpiod_get(dev, "enable", GPIOD_OUT_HIGH);
1214         if (IS_ERR(ov5645->enable_gpio)) {
1215                 dev_err(dev, "cannot get enable gpio\n");
1216                 return PTR_ERR(ov5645->enable_gpio);
1217         }
1218
1219         ov5645->rst_gpio = devm_gpiod_get(dev, "reset", GPIOD_OUT_HIGH);
1220         if (IS_ERR(ov5645->rst_gpio)) {
1221                 dev_err(dev, "cannot get reset gpio\n");
1222                 return PTR_ERR(ov5645->rst_gpio);
1223         }
1224
1225         mutex_init(&ov5645->power_lock);
1226
1227         v4l2_ctrl_handler_init(&ov5645->ctrls, 9);
1228         v4l2_ctrl_new_std(&ov5645->ctrls, &ov5645_ctrl_ops,
1229                           V4L2_CID_SATURATION, -4, 4, 1, 0);
1230         v4l2_ctrl_new_std(&ov5645->ctrls, &ov5645_ctrl_ops,
1231                           V4L2_CID_HFLIP, 0, 1, 1, 0);
1232         v4l2_ctrl_new_std(&ov5645->ctrls, &ov5645_ctrl_ops,
1233                           V4L2_CID_VFLIP, 0, 1, 1, 0);
1234         v4l2_ctrl_new_std(&ov5645->ctrls, &ov5645_ctrl_ops,
1235                           V4L2_CID_AUTOGAIN, 0, 1, 1, 1);
1236         v4l2_ctrl_new_std(&ov5645->ctrls, &ov5645_ctrl_ops,
1237                           V4L2_CID_AUTO_WHITE_BALANCE, 0, 1, 1, 1);
1238         v4l2_ctrl_new_std_menu(&ov5645->ctrls, &ov5645_ctrl_ops,
1239                                V4L2_CID_EXPOSURE_AUTO, V4L2_EXPOSURE_MANUAL,
1240                                0, V4L2_EXPOSURE_AUTO);
1241         v4l2_ctrl_new_std_menu_items(&ov5645->ctrls, &ov5645_ctrl_ops,
1242                                      V4L2_CID_TEST_PATTERN,
1243                                      ARRAY_SIZE(ov5645_test_pattern_menu) - 1,
1244                                      0, 0, ov5645_test_pattern_menu);
1245         ov5645->pixel_clock = v4l2_ctrl_new_std(&ov5645->ctrls,
1246                                                 &ov5645_ctrl_ops,
1247                                                 V4L2_CID_PIXEL_RATE,
1248                                                 1, INT_MAX, 1, 1);
1249         ov5645->link_freq = v4l2_ctrl_new_int_menu(&ov5645->ctrls,
1250                                                    &ov5645_ctrl_ops,
1251                                                    V4L2_CID_LINK_FREQ,
1252                                                    ARRAY_SIZE(link_freq) - 1,
1253                                                    0, link_freq);
1254         if (ov5645->link_freq)
1255                 ov5645->link_freq->flags |= V4L2_CTRL_FLAG_READ_ONLY;
1256
1257         ov5645->sd.ctrl_handler = &ov5645->ctrls;
1258
1259         if (ov5645->ctrls.error) {
1260                 dev_err(dev, "%s: control initialization error %d\n",
1261                        __func__, ov5645->ctrls.error);
1262                 ret = ov5645->ctrls.error;
1263                 goto free_ctrl;
1264         }
1265
1266         v4l2_i2c_subdev_init(&ov5645->sd, client, &ov5645_subdev_ops);
1267         ov5645->sd.flags |= V4L2_SUBDEV_FL_HAS_DEVNODE;
1268         ov5645->pad.flags = MEDIA_PAD_FL_SOURCE;
1269         ov5645->sd.dev = &client->dev;
1270         ov5645->sd.entity.function = MEDIA_ENT_F_CAM_SENSOR;
1271
1272         ret = media_entity_pads_init(&ov5645->sd.entity, 1, &ov5645->pad);
1273         if (ret < 0) {
1274                 dev_err(dev, "could not register media entity\n");
1275                 goto free_ctrl;
1276         }
1277
1278         ret = ov5645_s_power(&ov5645->sd, true);
1279         if (ret < 0) {
1280                 dev_err(dev, "could not power up OV5645\n");
1281                 goto free_entity;
1282         }
1283
1284         ret = ov5645_read_reg(ov5645, OV5645_CHIP_ID_HIGH, &chip_id_high);
1285         if (ret < 0 || chip_id_high != OV5645_CHIP_ID_HIGH_BYTE) {
1286                 dev_err(dev, "could not read ID high\n");
1287                 ret = -ENODEV;
1288                 goto power_down;
1289         }
1290         ret = ov5645_read_reg(ov5645, OV5645_CHIP_ID_LOW, &chip_id_low);
1291         if (ret < 0 || chip_id_low != OV5645_CHIP_ID_LOW_BYTE) {
1292                 dev_err(dev, "could not read ID low\n");
1293                 ret = -ENODEV;
1294                 goto power_down;
1295         }
1296
1297         dev_info(dev, "OV5645 detected at address 0x%02x\n", client->addr);
1298
1299         ret = ov5645_read_reg(ov5645, OV5645_AEC_PK_MANUAL,
1300                               &ov5645->aec_pk_manual);
1301         if (ret < 0) {
1302                 dev_err(dev, "could not read AEC/AGC mode\n");
1303                 ret = -ENODEV;
1304                 goto power_down;
1305         }
1306
1307         ret = ov5645_read_reg(ov5645, OV5645_TIMING_TC_REG20,
1308                               &ov5645->timing_tc_reg20);
1309         if (ret < 0) {
1310                 dev_err(dev, "could not read vflip value\n");
1311                 ret = -ENODEV;
1312                 goto power_down;
1313         }
1314
1315         ret = ov5645_read_reg(ov5645, OV5645_TIMING_TC_REG21,
1316                               &ov5645->timing_tc_reg21);
1317         if (ret < 0) {
1318                 dev_err(dev, "could not read hflip value\n");
1319                 ret = -ENODEV;
1320                 goto power_down;
1321         }
1322
1323         ov5645_s_power(&ov5645->sd, false);
1324
1325         ret = v4l2_async_register_subdev(&ov5645->sd);
1326         if (ret < 0) {
1327                 dev_err(dev, "could not register v4l2 device\n");
1328                 goto free_entity;
1329         }
1330
1331         ov5645_entity_init_cfg(&ov5645->sd, NULL);
1332
1333         return 0;
1334
1335 power_down:
1336         ov5645_s_power(&ov5645->sd, false);
1337 free_entity:
1338         media_entity_cleanup(&ov5645->sd.entity);
1339 free_ctrl:
1340         v4l2_ctrl_handler_free(&ov5645->ctrls);
1341         mutex_destroy(&ov5645->power_lock);
1342
1343         return ret;
1344 }
1345
1346 static int ov5645_remove(struct i2c_client *client)
1347 {
1348         struct v4l2_subdev *sd = i2c_get_clientdata(client);
1349         struct ov5645 *ov5645 = to_ov5645(sd);
1350
1351         v4l2_async_unregister_subdev(&ov5645->sd);
1352         media_entity_cleanup(&ov5645->sd.entity);
1353         v4l2_ctrl_handler_free(&ov5645->ctrls);
1354         mutex_destroy(&ov5645->power_lock);
1355
1356         return 0;
1357 }
1358
1359 static const struct i2c_device_id ov5645_id[] = {
1360         { "ov5645", 0 },
1361         {}
1362 };
1363 MODULE_DEVICE_TABLE(i2c, ov5645_id);
1364
1365 static const struct of_device_id ov5645_of_match[] = {
1366         { .compatible = "ovti,ov5645" },
1367         { /* sentinel */ }
1368 };
1369 MODULE_DEVICE_TABLE(of, ov5645_of_match);
1370
1371 static struct i2c_driver ov5645_i2c_driver = {
1372         .driver = {
1373                 .of_match_table = of_match_ptr(ov5645_of_match),
1374                 .name  = "ov5645",
1375         },
1376         .probe  = ov5645_probe,
1377         .remove = ov5645_remove,
1378         .id_table = ov5645_id,
1379 };
1380
1381 module_i2c_driver(ov5645_i2c_driver);
1382
1383 MODULE_DESCRIPTION("Omnivision OV5645 Camera Driver");
1384 MODULE_AUTHOR("Todor Tomov <todor.tomov@linaro.org>");
1385 MODULE_LICENSE("GPL v2");