blob: ffccac5c2d759de55fd022be68d2ac8edeae57ad [file] [log] [blame]
Jonathan Corbet111f3352006-11-04 09:26:00 -03001/*
2 * A V4L2 driver for OmniVision OV7670 cameras.
3 *
4 * Copyright 2006 One Laptop Per Child Association, Inc. Written
5 * by Jonathan Corbet with substantial inspiration from Mark
6 * McClelland's ovcamchip code.
7 *
Jonathan Corbet77d51402007-03-22 19:44:17 -03008 * Copyright 2006-7 Jonathan Corbet <corbet@lwn.net>
9 *
Jonathan Corbet111f3352006-11-04 09:26:00 -030010 * This file may be distributed under the terms of the GNU General
11 * Public License, version 2.
12 */
13#include <linux/init.h>
14#include <linux/module.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090015#include <linux/slab.h>
Hans Verkuil14386c22009-03-18 13:01:06 -030016#include <linux/i2c.h>
Jonathan Corbet111f3352006-11-04 09:26:00 -030017#include <linux/delay.h>
Mauro Carvalho Chehab7e0a16f2009-03-10 05:31:34 -030018#include <linux/videodev2.h>
Hans Verkuil14386c22009-03-18 13:01:06 -030019#include <media/v4l2-device.h>
Hans Verkuil3434eb72007-04-27 12:31:08 -030020#include <media/v4l2-chip-ident.h>
Hans Verkuil959f3bd2010-05-08 18:28:41 -030021#include <media/v4l2-mediabus.h>
Jonathan Corbet111f3352006-11-04 09:26:00 -030022
23
Dave Jones5e614472006-12-12 20:15:40 +010024MODULE_AUTHOR("Jonathan Corbet <corbet@lwn.net>");
Jonathan Corbet111f3352006-11-04 09:26:00 -030025MODULE_DESCRIPTION("A low-level driver for OmniVision ov7670 sensors");
26MODULE_LICENSE("GPL");
27
Hans Verkuil14386c22009-03-18 13:01:06 -030028static int debug;
29module_param(debug, bool, 0644);
30MODULE_PARM_DESC(debug, "Debug level (0-1)");
31
Jonathan Corbet111f3352006-11-04 09:26:00 -030032/*
33 * Basic window sizes. These probably belong somewhere more globally
34 * useful.
35 */
36#define VGA_WIDTH 640
37#define VGA_HEIGHT 480
38#define QVGA_WIDTH 320
39#define QVGA_HEIGHT 240
40#define CIF_WIDTH 352
41#define CIF_HEIGHT 288
42#define QCIF_WIDTH 176
43#define QCIF_HEIGHT 144
44
45/*
Jonathan Corbetc8f5b2f52006-12-01 15:50:59 -030046 * Our nominal (default) frame rate.
47 */
48#define OV7670_FRAME_RATE 30
49
50/*
Jonathan Corbet111f3352006-11-04 09:26:00 -030051 * The 7670 sits on i2c with ID 0x42
52 */
53#define OV7670_I2C_ADDR 0x42
54
55/* Registers */
56#define REG_GAIN 0x00 /* Gain lower 8 bits (rest in vref) */
57#define REG_BLUE 0x01 /* blue gain */
58#define REG_RED 0x02 /* red gain */
59#define REG_VREF 0x03 /* Pieces of GAIN, VSTART, VSTOP */
60#define REG_COM1 0x04 /* Control 1 */
61#define COM1_CCIR656 0x40 /* CCIR656 enable */
62#define REG_BAVE 0x05 /* U/B Average level */
63#define REG_GbAVE 0x06 /* Y/Gb Average level */
64#define REG_AECHH 0x07 /* AEC MS 5 bits */
65#define REG_RAVE 0x08 /* V/R Average level */
66#define REG_COM2 0x09 /* Control 2 */
67#define COM2_SSLEEP 0x10 /* Soft sleep mode */
68#define REG_PID 0x0a /* Product ID MSB */
69#define REG_VER 0x0b /* Product ID LSB */
70#define REG_COM3 0x0c /* Control 3 */
71#define COM3_SWAP 0x40 /* Byte swap */
72#define COM3_SCALEEN 0x08 /* Enable scaling */
73#define COM3_DCWEN 0x04 /* Enable downsamp/crop/window */
74#define REG_COM4 0x0d /* Control 4 */
75#define REG_COM5 0x0e /* All "reserved" */
76#define REG_COM6 0x0f /* Control 6 */
77#define REG_AECH 0x10 /* More bits of AEC value */
78#define REG_CLKRC 0x11 /* Clocl control */
79#define CLK_EXT 0x40 /* Use external clock directly */
80#define CLK_SCALE 0x3f /* Mask for internal clock scale */
81#define REG_COM7 0x12 /* Control 7 */
82#define COM7_RESET 0x80 /* Register reset */
83#define COM7_FMT_MASK 0x38
84#define COM7_FMT_VGA 0x00
85#define COM7_FMT_CIF 0x20 /* CIF format */
86#define COM7_FMT_QVGA 0x10 /* QVGA format */
87#define COM7_FMT_QCIF 0x08 /* QCIF format */
88#define COM7_RGB 0x04 /* bits 0 and 2 - RGB format */
89#define COM7_YUV 0x00 /* YUV */
90#define COM7_BAYER 0x01 /* Bayer format */
91#define COM7_PBAYER 0x05 /* "Processed bayer" */
92#define REG_COM8 0x13 /* Control 8 */
93#define COM8_FASTAEC 0x80 /* Enable fast AGC/AEC */
94#define COM8_AECSTEP 0x40 /* Unlimited AEC step size */
95#define COM8_BFILT 0x20 /* Band filter enable */
96#define COM8_AGC 0x04 /* Auto gain enable */
97#define COM8_AWB 0x02 /* White balance enable */
98#define COM8_AEC 0x01 /* Auto exposure enable */
99#define REG_COM9 0x14 /* Control 9 - gain ceiling */
100#define REG_COM10 0x15 /* Control 10 */
101#define COM10_HSYNC 0x40 /* HSYNC instead of HREF */
102#define COM10_PCLK_HB 0x20 /* Suppress PCLK on horiz blank */
103#define COM10_HREF_REV 0x08 /* Reverse HREF */
104#define COM10_VS_LEAD 0x04 /* VSYNC on clock leading edge */
105#define COM10_VS_NEG 0x02 /* VSYNC negative */
106#define COM10_HS_NEG 0x01 /* HSYNC negative */
107#define REG_HSTART 0x17 /* Horiz start high bits */
108#define REG_HSTOP 0x18 /* Horiz stop high bits */
109#define REG_VSTART 0x19 /* Vert start high bits */
110#define REG_VSTOP 0x1a /* Vert stop high bits */
111#define REG_PSHFT 0x1b /* Pixel delay after HREF */
112#define REG_MIDH 0x1c /* Manuf. ID high */
113#define REG_MIDL 0x1d /* Manuf. ID low */
114#define REG_MVFP 0x1e /* Mirror / vflip */
115#define MVFP_MIRROR 0x20 /* Mirror image */
116#define MVFP_FLIP 0x10 /* Vertical flip */
117
118#define REG_AEW 0x24 /* AGC upper limit */
119#define REG_AEB 0x25 /* AGC lower limit */
120#define REG_VPT 0x26 /* AGC/AEC fast mode op region */
121#define REG_HSYST 0x30 /* HSYNC rising edge delay */
122#define REG_HSYEN 0x31 /* HSYNC falling edge delay */
123#define REG_HREF 0x32 /* HREF pieces */
124#define REG_TSLB 0x3a /* lots of stuff */
125#define TSLB_YLAST 0x04 /* UYVY or VYUY - see com13 */
126#define REG_COM11 0x3b /* Control 11 */
127#define COM11_NIGHT 0x80 /* NIght mode enable */
128#define COM11_NMFR 0x60 /* Two bit NM frame rate */
129#define COM11_HZAUTO 0x10 /* Auto detect 50/60 Hz */
130#define COM11_50HZ 0x08 /* Manual 50Hz select */
131#define COM11_EXP 0x02
132#define REG_COM12 0x3c /* Control 12 */
133#define COM12_HREF 0x80 /* HREF always */
134#define REG_COM13 0x3d /* Control 13 */
135#define COM13_GAMMA 0x80 /* Gamma enable */
136#define COM13_UVSAT 0x40 /* UV saturation auto adjustment */
137#define COM13_UVSWAP 0x01 /* V before U - w/TSLB */
138#define REG_COM14 0x3e /* Control 14 */
139#define COM14_DCWEN 0x10 /* DCW/PCLK-scale enable */
140#define REG_EDGE 0x3f /* Edge enhancement factor */
141#define REG_COM15 0x40 /* Control 15 */
142#define COM15_R10F0 0x00 /* Data range 10 to F0 */
143#define COM15_R01FE 0x80 /* 01 to FE */
144#define COM15_R00FF 0xc0 /* 00 to FF */
145#define COM15_RGB565 0x10 /* RGB565 output */
146#define COM15_RGB555 0x30 /* RGB555 output */
147#define REG_COM16 0x41 /* Control 16 */
148#define COM16_AWBGAIN 0x08 /* AWB gain enable */
149#define REG_COM17 0x42 /* Control 17 */
150#define COM17_AECWIN 0xc0 /* AEC window - must match COM4 */
151#define COM17_CBAR 0x08 /* DSP Color bar */
152
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300153/*
154 * This matrix defines how the colors are generated, must be
155 * tweaked to adjust hue and saturation.
156 *
157 * Order: v-red, v-green, v-blue, u-red, u-green, u-blue
158 *
159 * They are nine-bit signed quantities, with the sign bit
160 * stored in 0x58. Sign for v-red is bit 0, and up from there.
161 */
162#define REG_CMATRIX_BASE 0x4f
163#define CMATRIX_LEN 6
164#define REG_CMATRIX_SIGN 0x58
165
166
Jonathan Corbet111f3352006-11-04 09:26:00 -0300167#define REG_BRIGHT 0x55 /* Brightness */
168#define REG_CONTRAS 0x56 /* Contrast control */
169
170#define REG_GFIX 0x69 /* Fix gain control */
171
Jonathan Corbet585553e2007-03-25 11:38:21 -0300172#define REG_REG76 0x76 /* OV's name */
173#define R76_BLKPCOR 0x80 /* Black pixel correction enable */
174#define R76_WHTPCOR 0x40 /* White pixel correction enable */
175
Jonathan Corbet111f3352006-11-04 09:26:00 -0300176#define REG_RGB444 0x8c /* RGB 444 control */
177#define R444_ENABLE 0x02 /* Turn on RGB444, overrides 5x5 */
178#define R444_RGBX 0x01 /* Empty nibble at end */
179
180#define REG_HAECC1 0x9f /* Hist AEC/AGC control 1 */
181#define REG_HAECC2 0xa0 /* Hist AEC/AGC control 2 */
182
183#define REG_BD50MAX 0xa5 /* 50hz banding step limit */
184#define REG_HAECC3 0xa6 /* Hist AEC/AGC control 3 */
185#define REG_HAECC4 0xa7 /* Hist AEC/AGC control 4 */
186#define REG_HAECC5 0xa8 /* Hist AEC/AGC control 5 */
187#define REG_HAECC6 0xa9 /* Hist AEC/AGC control 6 */
188#define REG_HAECC7 0xaa /* Hist AEC/AGC control 7 */
189#define REG_BD60MAX 0xab /* 60hz banding step limit */
190
191
192/*
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300193 * Information we maintain about a known sensor.
194 */
195struct ov7670_format_struct; /* coming later */
196struct ov7670_info {
Hans Verkuil14386c22009-03-18 13:01:06 -0300197 struct v4l2_subdev sd;
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300198 struct ov7670_format_struct *fmt; /* Current format */
199 unsigned char sat; /* Saturation value */
200 int hue; /* Hue value */
Jonathan Corbetd8d20152009-12-20 11:39:47 -0300201 u8 clkrc; /* Clock divider value */
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300202};
203
Hans Verkuil14386c22009-03-18 13:01:06 -0300204static inline struct ov7670_info *to_state(struct v4l2_subdev *sd)
205{
206 return container_of(sd, struct ov7670_info, sd);
207}
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300208
209
210
211/*
Jonathan Corbet111f3352006-11-04 09:26:00 -0300212 * The default register settings, as obtained from OmniVision. There
213 * is really no making sense of most of these - lots of "reserved" values
214 * and such.
215 *
216 * These settings give VGA YUYV.
217 */
218
219struct regval_list {
220 unsigned char reg_num;
221 unsigned char value;
222};
223
224static struct regval_list ov7670_default_regs[] = {
225 { REG_COM7, COM7_RESET },
226/*
227 * Clock scale: 3 = 15fps
228 * 2 = 20fps
229 * 1 = 30fps
230 */
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300231 { REG_CLKRC, 0x1 }, /* OV: clock scale (30 fps) */
Jonathan Corbet111f3352006-11-04 09:26:00 -0300232 { REG_TSLB, 0x04 }, /* OV */
233 { REG_COM7, 0 }, /* VGA */
234 /*
235 * Set the hardware window. These values from OV don't entirely
236 * make sense - hstop is less than hstart. But they work...
237 */
238 { REG_HSTART, 0x13 }, { REG_HSTOP, 0x01 },
239 { REG_HREF, 0xb6 }, { REG_VSTART, 0x02 },
240 { REG_VSTOP, 0x7a }, { REG_VREF, 0x0a },
241
242 { REG_COM3, 0 }, { REG_COM14, 0 },
243 /* Mystery scaling numbers */
244 { 0x70, 0x3a }, { 0x71, 0x35 },
245 { 0x72, 0x11 }, { 0x73, 0xf0 },
246 { 0xa2, 0x02 }, { REG_COM10, 0x0 },
247
248 /* Gamma curve values */
249 { 0x7a, 0x20 }, { 0x7b, 0x10 },
250 { 0x7c, 0x1e }, { 0x7d, 0x35 },
251 { 0x7e, 0x5a }, { 0x7f, 0x69 },
252 { 0x80, 0x76 }, { 0x81, 0x80 },
253 { 0x82, 0x88 }, { 0x83, 0x8f },
254 { 0x84, 0x96 }, { 0x85, 0xa3 },
255 { 0x86, 0xaf }, { 0x87, 0xc4 },
256 { 0x88, 0xd7 }, { 0x89, 0xe8 },
257
258 /* AGC and AEC parameters. Note we start by disabling those features,
259 then turn them only after tweaking the values. */
260 { REG_COM8, COM8_FASTAEC | COM8_AECSTEP | COM8_BFILT },
261 { REG_GAIN, 0 }, { REG_AECH, 0 },
262 { REG_COM4, 0x40 }, /* magic reserved bit */
263 { REG_COM9, 0x18 }, /* 4x gain + magic rsvd bit */
264 { REG_BD50MAX, 0x05 }, { REG_BD60MAX, 0x07 },
265 { REG_AEW, 0x95 }, { REG_AEB, 0x33 },
266 { REG_VPT, 0xe3 }, { REG_HAECC1, 0x78 },
267 { REG_HAECC2, 0x68 }, { 0xa1, 0x03 }, /* magic */
268 { REG_HAECC3, 0xd8 }, { REG_HAECC4, 0xd8 },
269 { REG_HAECC5, 0xf0 }, { REG_HAECC6, 0x90 },
270 { REG_HAECC7, 0x94 },
271 { REG_COM8, COM8_FASTAEC|COM8_AECSTEP|COM8_BFILT|COM8_AGC|COM8_AEC },
272
273 /* Almost all of these are magic "reserved" values. */
274 { REG_COM5, 0x61 }, { REG_COM6, 0x4b },
Jonathan Corbet7f7b12f2007-03-25 11:36:42 -0300275 { 0x16, 0x02 }, { REG_MVFP, 0x07 },
Jonathan Corbet111f3352006-11-04 09:26:00 -0300276 { 0x21, 0x02 }, { 0x22, 0x91 },
277 { 0x29, 0x07 }, { 0x33, 0x0b },
278 { 0x35, 0x0b }, { 0x37, 0x1d },
279 { 0x38, 0x71 }, { 0x39, 0x2a },
280 { REG_COM12, 0x78 }, { 0x4d, 0x40 },
281 { 0x4e, 0x20 }, { REG_GFIX, 0 },
282 { 0x6b, 0x4a }, { 0x74, 0x10 },
283 { 0x8d, 0x4f }, { 0x8e, 0 },
284 { 0x8f, 0 }, { 0x90, 0 },
285 { 0x91, 0 }, { 0x96, 0 },
286 { 0x9a, 0 }, { 0xb0, 0x84 },
287 { 0xb1, 0x0c }, { 0xb2, 0x0e },
288 { 0xb3, 0x82 }, { 0xb8, 0x0a },
289
290 /* More reserved magic, some of which tweaks white balance */
291 { 0x43, 0x0a }, { 0x44, 0xf0 },
292 { 0x45, 0x34 }, { 0x46, 0x58 },
293 { 0x47, 0x28 }, { 0x48, 0x3a },
294 { 0x59, 0x88 }, { 0x5a, 0x88 },
295 { 0x5b, 0x44 }, { 0x5c, 0x67 },
296 { 0x5d, 0x49 }, { 0x5e, 0x0e },
297 { 0x6c, 0x0a }, { 0x6d, 0x55 },
298 { 0x6e, 0x11 }, { 0x6f, 0x9f }, /* "9e for advance AWB" */
299 { 0x6a, 0x40 }, { REG_BLUE, 0x40 },
300 { REG_RED, 0x60 },
301 { REG_COM8, COM8_FASTAEC|COM8_AECSTEP|COM8_BFILT|COM8_AGC|COM8_AEC|COM8_AWB },
302
303 /* Matrix coefficients */
304 { 0x4f, 0x80 }, { 0x50, 0x80 },
305 { 0x51, 0 }, { 0x52, 0x22 },
306 { 0x53, 0x5e }, { 0x54, 0x80 },
307 { 0x58, 0x9e },
308
309 { REG_COM16, COM16_AWBGAIN }, { REG_EDGE, 0 },
310 { 0x75, 0x05 }, { 0x76, 0xe1 },
311 { 0x4c, 0 }, { 0x77, 0x01 },
312 { REG_COM13, 0xc3 }, { 0x4b, 0x09 },
313 { 0xc9, 0x60 }, { REG_COM16, 0x38 },
314 { 0x56, 0x40 },
315
Jonathan Corbetc8f5b2f52006-12-01 15:50:59 -0300316 { 0x34, 0x11 }, { REG_COM11, COM11_EXP|COM11_HZAUTO },
Jonathan Corbet111f3352006-11-04 09:26:00 -0300317 { 0xa4, 0x88 }, { 0x96, 0 },
318 { 0x97, 0x30 }, { 0x98, 0x20 },
319 { 0x99, 0x30 }, { 0x9a, 0x84 },
320 { 0x9b, 0x29 }, { 0x9c, 0x03 },
321 { 0x9d, 0x4c }, { 0x9e, 0x3f },
322 { 0x78, 0x04 },
323
324 /* Extra-weird stuff. Some sort of multiplexor register */
325 { 0x79, 0x01 }, { 0xc8, 0xf0 },
326 { 0x79, 0x0f }, { 0xc8, 0x00 },
327 { 0x79, 0x10 }, { 0xc8, 0x7e },
328 { 0x79, 0x0a }, { 0xc8, 0x80 },
329 { 0x79, 0x0b }, { 0xc8, 0x01 },
330 { 0x79, 0x0c }, { 0xc8, 0x0f },
331 { 0x79, 0x0d }, { 0xc8, 0x20 },
332 { 0x79, 0x09 }, { 0xc8, 0x80 },
333 { 0x79, 0x02 }, { 0xc8, 0xc0 },
334 { 0x79, 0x03 }, { 0xc8, 0x40 },
335 { 0x79, 0x05 }, { 0xc8, 0x30 },
336 { 0x79, 0x26 },
337
Jonathan Corbet111f3352006-11-04 09:26:00 -0300338 { 0xff, 0xff }, /* END MARKER */
339};
340
341
342/*
343 * Here we'll try to encapsulate the changes for just the output
344 * video format.
345 *
346 * RGB656 and YUV422 come from OV; RGB444 is homebrewed.
347 *
348 * IMPORTANT RULE: the first entry must be for COM7, see ov7670_s_fmt for why.
349 */
350
351
352static struct regval_list ov7670_fmt_yuv422[] = {
353 { REG_COM7, 0x0 }, /* Selects YUV mode */
354 { REG_RGB444, 0 }, /* No RGB444 please */
Jonathan Corbet97693f92010-03-21 17:33:50 -0300355 { REG_COM1, 0 }, /* CCIR601 */
Jonathan Corbet111f3352006-11-04 09:26:00 -0300356 { REG_COM15, COM15_R00FF },
357 { REG_COM9, 0x18 }, /* 4x gain ceiling; 0x8 is reserved bit */
358 { 0x4f, 0x80 }, /* "matrix coefficient 1" */
359 { 0x50, 0x80 }, /* "matrix coefficient 2" */
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300360 { 0x51, 0 }, /* vb */
Jonathan Corbet111f3352006-11-04 09:26:00 -0300361 { 0x52, 0x22 }, /* "matrix coefficient 4" */
362 { 0x53, 0x5e }, /* "matrix coefficient 5" */
363 { 0x54, 0x80 }, /* "matrix coefficient 6" */
364 { REG_COM13, COM13_GAMMA|COM13_UVSAT },
365 { 0xff, 0xff },
366};
367
368static struct regval_list ov7670_fmt_rgb565[] = {
369 { REG_COM7, COM7_RGB }, /* Selects RGB mode */
370 { REG_RGB444, 0 }, /* No RGB444 please */
Jonathan Corbet97693f92010-03-21 17:33:50 -0300371 { REG_COM1, 0x0 }, /* CCIR601 */
Jonathan Corbet111f3352006-11-04 09:26:00 -0300372 { REG_COM15, COM15_RGB565 },
373 { REG_COM9, 0x38 }, /* 16x gain ceiling; 0x8 is reserved bit */
374 { 0x4f, 0xb3 }, /* "matrix coefficient 1" */
375 { 0x50, 0xb3 }, /* "matrix coefficient 2" */
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300376 { 0x51, 0 }, /* vb */
Jonathan Corbet111f3352006-11-04 09:26:00 -0300377 { 0x52, 0x3d }, /* "matrix coefficient 4" */
378 { 0x53, 0xa7 }, /* "matrix coefficient 5" */
379 { 0x54, 0xe4 }, /* "matrix coefficient 6" */
380 { REG_COM13, COM13_GAMMA|COM13_UVSAT },
381 { 0xff, 0xff },
382};
383
384static struct regval_list ov7670_fmt_rgb444[] = {
385 { REG_COM7, COM7_RGB }, /* Selects RGB mode */
386 { REG_RGB444, R444_ENABLE }, /* Enable xxxxrrrr ggggbbbb */
Jonathan Corbet97693f92010-03-21 17:33:50 -0300387 { REG_COM1, 0x0 }, /* CCIR601 */
Jonathan Corbet111f3352006-11-04 09:26:00 -0300388 { REG_COM15, COM15_R01FE|COM15_RGB565 }, /* Data range needed? */
389 { REG_COM9, 0x38 }, /* 16x gain ceiling; 0x8 is reserved bit */
390 { 0x4f, 0xb3 }, /* "matrix coefficient 1" */
391 { 0x50, 0xb3 }, /* "matrix coefficient 2" */
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300392 { 0x51, 0 }, /* vb */
Jonathan Corbet111f3352006-11-04 09:26:00 -0300393 { 0x52, 0x3d }, /* "matrix coefficient 4" */
394 { 0x53, 0xa7 }, /* "matrix coefficient 5" */
395 { 0x54, 0xe4 }, /* "matrix coefficient 6" */
396 { REG_COM13, COM13_GAMMA|COM13_UVSAT|0x2 }, /* Magic rsvd bit */
397 { 0xff, 0xff },
398};
399
Jonathan Corbet585553e2007-03-25 11:38:21 -0300400static struct regval_list ov7670_fmt_raw[] = {
401 { REG_COM7, COM7_BAYER },
402 { REG_COM13, 0x08 }, /* No gamma, magic rsvd bit */
403 { REG_COM16, 0x3d }, /* Edge enhancement, denoise */
404 { REG_REG76, 0xe1 }, /* Pix correction, magic rsvd */
405 { 0xff, 0xff },
406};
Jonathan Corbet111f3352006-11-04 09:26:00 -0300407
408
409
410/*
411 * Low-level register I/O.
Jonathan Corbet46714202010-03-19 13:16:28 -0300412 *
413 * Note that there are two versions of these. On the XO 1, the
414 * i2c controller only does SMBUS, so that's what we use. The
415 * ov7670 is not really an SMBUS device, though, so the communication
416 * is not always entirely reliable.
417 */
418#ifdef CONFIG_OLPC_XO_1
419static int ov7670_read(struct v4l2_subdev *sd, unsigned char reg,
420 unsigned char *value)
421{
422 struct i2c_client *client = v4l2_get_subdevdata(sd);
423 int ret;
424
425 ret = i2c_smbus_read_byte_data(client, reg);
426 if (ret >= 0) {
427 *value = (unsigned char)ret;
428 ret = 0;
429 }
430 return ret;
431}
432
433
434static int ov7670_write(struct v4l2_subdev *sd, unsigned char reg,
435 unsigned char value)
436{
437 struct i2c_client *client = v4l2_get_subdevdata(sd);
438 int ret = i2c_smbus_write_byte_data(client, reg, value);
439
440 if (reg == REG_COM7 && (value & COM7_RESET))
441 msleep(5); /* Wait for reset to run */
442 return ret;
443}
444
445#else /* ! CONFIG_OLPC_XO_1 */
446/*
447 * On most platforms, we'd rather do straight i2c I/O.
Jonathan Corbet111f3352006-11-04 09:26:00 -0300448 */
Hans Verkuil14386c22009-03-18 13:01:06 -0300449static int ov7670_read(struct v4l2_subdev *sd, unsigned char reg,
Jonathan Corbet111f3352006-11-04 09:26:00 -0300450 unsigned char *value)
451{
Hans Verkuil14386c22009-03-18 13:01:06 -0300452 struct i2c_client *client = v4l2_get_subdevdata(sd);
Jonathan Corbet2bf7de42010-02-28 21:02:55 -0300453 u8 data = reg;
454 struct i2c_msg msg;
Jonathan Corbet111f3352006-11-04 09:26:00 -0300455 int ret;
456
Jonathan Corbet2bf7de42010-02-28 21:02:55 -0300457 /*
458 * Send out the register address...
459 */
460 msg.addr = client->addr;
461 msg.flags = 0;
462 msg.len = 1;
463 msg.buf = &data;
464 ret = i2c_transfer(client->adapter, &msg, 1);
465 if (ret < 0) {
466 printk(KERN_ERR "Error %d on register write\n", ret);
467 return ret;
468 }
469 /*
470 * ...then read back the result.
471 */
472 msg.flags = I2C_M_RD;
473 ret = i2c_transfer(client->adapter, &msg, 1);
Andres Salomonbca5c2c2008-07-12 13:47:54 -0700474 if (ret >= 0) {
Jonathan Corbet2bf7de42010-02-28 21:02:55 -0300475 *value = data;
Andres Salomonbca5c2c2008-07-12 13:47:54 -0700476 ret = 0;
477 }
Jonathan Corbet111f3352006-11-04 09:26:00 -0300478 return ret;
479}
480
481
Hans Verkuil14386c22009-03-18 13:01:06 -0300482static int ov7670_write(struct v4l2_subdev *sd, unsigned char reg,
Jonathan Corbet111f3352006-11-04 09:26:00 -0300483 unsigned char value)
484{
Hans Verkuil14386c22009-03-18 13:01:06 -0300485 struct i2c_client *client = v4l2_get_subdevdata(sd);
Jonathan Corbet2bf7de42010-02-28 21:02:55 -0300486 struct i2c_msg msg;
487 unsigned char data[2] = { reg, value };
488 int ret;
Hans Verkuil14386c22009-03-18 13:01:06 -0300489
Jonathan Corbet2bf7de42010-02-28 21:02:55 -0300490 msg.addr = client->addr;
491 msg.flags = 0;
492 msg.len = 2;
493 msg.buf = data;
494 ret = i2c_transfer(client->adapter, &msg, 1);
495 if (ret > 0)
496 ret = 0;
Jonathan Corbet6d774442007-08-17 01:02:33 -0300497 if (reg == REG_COM7 && (value & COM7_RESET))
Jonathan Corbet97693f92010-03-21 17:33:50 -0300498 msleep(5); /* Wait for reset to run */
Jonathan Corbet6d774442007-08-17 01:02:33 -0300499 return ret;
Jonathan Corbet111f3352006-11-04 09:26:00 -0300500}
Jonathan Corbet46714202010-03-19 13:16:28 -0300501#endif /* CONFIG_OLPC_XO_1 */
Jonathan Corbet111f3352006-11-04 09:26:00 -0300502
503
504/*
505 * Write a list of register settings; ff/ff stops the process.
506 */
Hans Verkuil14386c22009-03-18 13:01:06 -0300507static int ov7670_write_array(struct v4l2_subdev *sd, struct regval_list *vals)
Jonathan Corbet111f3352006-11-04 09:26:00 -0300508{
509 while (vals->reg_num != 0xff || vals->value != 0xff) {
Hans Verkuil14386c22009-03-18 13:01:06 -0300510 int ret = ov7670_write(sd, vals->reg_num, vals->value);
Jonathan Corbet111f3352006-11-04 09:26:00 -0300511 if (ret < 0)
512 return ret;
513 vals++;
514 }
515 return 0;
516}
517
518
519/*
520 * Stuff that knows about the sensor.
521 */
Hans Verkuil14386c22009-03-18 13:01:06 -0300522static int ov7670_reset(struct v4l2_subdev *sd, u32 val)
Jonathan Corbet111f3352006-11-04 09:26:00 -0300523{
Hans Verkuil14386c22009-03-18 13:01:06 -0300524 ov7670_write(sd, REG_COM7, COM7_RESET);
Jonathan Corbet111f3352006-11-04 09:26:00 -0300525 msleep(1);
Hans Verkuil14386c22009-03-18 13:01:06 -0300526 return 0;
Jonathan Corbet111f3352006-11-04 09:26:00 -0300527}
528
529
Hans Verkuil14386c22009-03-18 13:01:06 -0300530static int ov7670_init(struct v4l2_subdev *sd, u32 val)
Jonathan Corbet111f3352006-11-04 09:26:00 -0300531{
Hans Verkuil14386c22009-03-18 13:01:06 -0300532 return ov7670_write_array(sd, ov7670_default_regs);
Jonathan Corbet111f3352006-11-04 09:26:00 -0300533}
534
535
536
Hans Verkuil14386c22009-03-18 13:01:06 -0300537static int ov7670_detect(struct v4l2_subdev *sd)
Jonathan Corbet111f3352006-11-04 09:26:00 -0300538{
539 unsigned char v;
540 int ret;
541
Hans Verkuil14386c22009-03-18 13:01:06 -0300542 ret = ov7670_init(sd, 0);
Jonathan Corbet111f3352006-11-04 09:26:00 -0300543 if (ret < 0)
544 return ret;
Hans Verkuil14386c22009-03-18 13:01:06 -0300545 ret = ov7670_read(sd, REG_MIDH, &v);
Jonathan Corbet111f3352006-11-04 09:26:00 -0300546 if (ret < 0)
547 return ret;
548 if (v != 0x7f) /* OV manuf. id. */
549 return -ENODEV;
Hans Verkuil14386c22009-03-18 13:01:06 -0300550 ret = ov7670_read(sd, REG_MIDL, &v);
Jonathan Corbet111f3352006-11-04 09:26:00 -0300551 if (ret < 0)
552 return ret;
553 if (v != 0xa2)
554 return -ENODEV;
555 /*
556 * OK, we know we have an OmniVision chip...but which one?
557 */
Hans Verkuil14386c22009-03-18 13:01:06 -0300558 ret = ov7670_read(sd, REG_PID, &v);
Jonathan Corbet111f3352006-11-04 09:26:00 -0300559 if (ret < 0)
560 return ret;
561 if (v != 0x76) /* PID + VER = 0x76 / 0x73 */
562 return -ENODEV;
Hans Verkuil14386c22009-03-18 13:01:06 -0300563 ret = ov7670_read(sd, REG_VER, &v);
Jonathan Corbet111f3352006-11-04 09:26:00 -0300564 if (ret < 0)
565 return ret;
566 if (v != 0x73) /* PID + VER = 0x76 / 0x73 */
567 return -ENODEV;
568 return 0;
569}
570
571
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300572/*
573 * Store information about the video data format. The color matrix
574 * is deeply tied into the format, so keep the relevant values here.
Hans Verkuil959f3bd2010-05-08 18:28:41 -0300575 * The magic matrix numbers come from OmniVision.
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300576 */
Jonathan Corbet111f3352006-11-04 09:26:00 -0300577static struct ov7670_format_struct {
Hans Verkuil959f3bd2010-05-08 18:28:41 -0300578 enum v4l2_mbus_pixelcode mbus_code;
579 enum v4l2_colorspace colorspace;
Jonathan Corbet111f3352006-11-04 09:26:00 -0300580 struct regval_list *regs;
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300581 int cmatrix[CMATRIX_LEN];
Jonathan Corbet111f3352006-11-04 09:26:00 -0300582} ov7670_formats[] = {
583 {
Hans Verkuil959f3bd2010-05-08 18:28:41 -0300584 .mbus_code = V4L2_MBUS_FMT_YUYV8_2X8,
585 .colorspace = V4L2_COLORSPACE_JPEG,
Jonathan Corbet111f3352006-11-04 09:26:00 -0300586 .regs = ov7670_fmt_yuv422,
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300587 .cmatrix = { 128, -128, 0, -34, -94, 128 },
Jonathan Corbet111f3352006-11-04 09:26:00 -0300588 },
589 {
Hans Verkuil959f3bd2010-05-08 18:28:41 -0300590 .mbus_code = V4L2_MBUS_FMT_RGB444_2X8_PADHI_LE,
591 .colorspace = V4L2_COLORSPACE_SRGB,
Jonathan Corbet111f3352006-11-04 09:26:00 -0300592 .regs = ov7670_fmt_rgb444,
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300593 .cmatrix = { 179, -179, 0, -61, -176, 228 },
Jonathan Corbet111f3352006-11-04 09:26:00 -0300594 },
595 {
Hans Verkuil959f3bd2010-05-08 18:28:41 -0300596 .mbus_code = V4L2_MBUS_FMT_RGB565_2X8_LE,
597 .colorspace = V4L2_COLORSPACE_SRGB,
Jonathan Corbet111f3352006-11-04 09:26:00 -0300598 .regs = ov7670_fmt_rgb565,
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300599 .cmatrix = { 179, -179, 0, -61, -176, 228 },
Jonathan Corbet585553e2007-03-25 11:38:21 -0300600 },
601 {
Hans Verkuil959f3bd2010-05-08 18:28:41 -0300602 .mbus_code = V4L2_MBUS_FMT_SBGGR8_1X8,
603 .colorspace = V4L2_COLORSPACE_SRGB,
Jonathan Corbet585553e2007-03-25 11:38:21 -0300604 .regs = ov7670_fmt_raw,
605 .cmatrix = { 0, 0, 0, 0, 0, 0 },
Jonathan Corbet111f3352006-11-04 09:26:00 -0300606 },
Jonathan Corbet111f3352006-11-04 09:26:00 -0300607};
Jonathan Corbet585553e2007-03-25 11:38:21 -0300608#define N_OV7670_FMTS ARRAY_SIZE(ov7670_formats)
Jonathan Corbet111f3352006-11-04 09:26:00 -0300609
Jonathan Corbet111f3352006-11-04 09:26:00 -0300610
611/*
612 * Then there is the issue of window sizes. Try to capture the info here.
613 */
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300614
615/*
616 * QCIF mode is done (by OV) in a very strange way - it actually looks like
617 * VGA with weird scaling options - they do *not* use the canned QCIF mode
618 * which is allegedly provided by the sensor. So here's the weird register
619 * settings.
620 */
621static struct regval_list ov7670_qcif_regs[] = {
622 { REG_COM3, COM3_SCALEEN|COM3_DCWEN },
623 { REG_COM3, COM3_DCWEN },
624 { REG_COM14, COM14_DCWEN | 0x01},
625 { 0x73, 0xf1 },
626 { 0xa2, 0x52 },
627 { 0x7b, 0x1c },
628 { 0x7c, 0x28 },
629 { 0x7d, 0x3c },
630 { 0x7f, 0x69 },
631 { REG_COM9, 0x38 },
632 { 0xa1, 0x0b },
633 { 0x74, 0x19 },
634 { 0x9a, 0x80 },
635 { 0x43, 0x14 },
636 { REG_COM13, 0xc0 },
637 { 0xff, 0xff },
638};
639
Jonathan Corbet111f3352006-11-04 09:26:00 -0300640static struct ov7670_win_size {
641 int width;
642 int height;
643 unsigned char com7_bit;
644 int hstart; /* Start/stop values for the camera. Note */
645 int hstop; /* that they do not always make complete */
646 int vstart; /* sense to humans, but evidently the sensor */
647 int vstop; /* will do the right thing... */
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300648 struct regval_list *regs; /* Regs to tweak */
Jonathan Corbet111f3352006-11-04 09:26:00 -0300649/* h/vref stuff */
650} ov7670_win_sizes[] = {
651 /* VGA */
652 {
653 .width = VGA_WIDTH,
654 .height = VGA_HEIGHT,
655 .com7_bit = COM7_FMT_VGA,
656 .hstart = 158, /* These values from */
657 .hstop = 14, /* Omnivision */
658 .vstart = 10,
659 .vstop = 490,
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300660 .regs = NULL,
Jonathan Corbet111f3352006-11-04 09:26:00 -0300661 },
662 /* CIF */
663 {
664 .width = CIF_WIDTH,
665 .height = CIF_HEIGHT,
666 .com7_bit = COM7_FMT_CIF,
667 .hstart = 170, /* Empirically determined */
668 .hstop = 90,
669 .vstart = 14,
670 .vstop = 494,
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300671 .regs = NULL,
Jonathan Corbet111f3352006-11-04 09:26:00 -0300672 },
673 /* QVGA */
674 {
675 .width = QVGA_WIDTH,
676 .height = QVGA_HEIGHT,
677 .com7_bit = COM7_FMT_QVGA,
678 .hstart = 164, /* Empirically determined */
679 .hstop = 20,
680 .vstart = 14,
681 .vstop = 494,
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300682 .regs = NULL,
683 },
684 /* QCIF */
685 {
686 .width = QCIF_WIDTH,
687 .height = QCIF_HEIGHT,
688 .com7_bit = COM7_FMT_VGA, /* see comment above */
689 .hstart = 456, /* Empirically determined */
690 .hstop = 24,
691 .vstart = 14,
692 .vstop = 494,
693 .regs = ov7670_qcif_regs,
Jonathan Corbet111f3352006-11-04 09:26:00 -0300694 },
695};
696
Robert P. J. Day0c71bf12007-06-05 05:20:56 -0300697#define N_WIN_SIZES (ARRAY_SIZE(ov7670_win_sizes))
Jonathan Corbet111f3352006-11-04 09:26:00 -0300698
699
700/*
701 * Store a set of start/stop values into the camera.
702 */
Hans Verkuil14386c22009-03-18 13:01:06 -0300703static int ov7670_set_hw(struct v4l2_subdev *sd, int hstart, int hstop,
Jonathan Corbet111f3352006-11-04 09:26:00 -0300704 int vstart, int vstop)
705{
706 int ret;
707 unsigned char v;
708/*
709 * Horizontal: 11 bits, top 8 live in hstart and hstop. Bottom 3 of
710 * hstart are in href[2:0], bottom 3 of hstop in href[5:3]. There is
711 * a mystery "edge offset" value in the top two bits of href.
712 */
Hans Verkuil14386c22009-03-18 13:01:06 -0300713 ret = ov7670_write(sd, REG_HSTART, (hstart >> 3) & 0xff);
714 ret += ov7670_write(sd, REG_HSTOP, (hstop >> 3) & 0xff);
715 ret += ov7670_read(sd, REG_HREF, &v);
Jonathan Corbet111f3352006-11-04 09:26:00 -0300716 v = (v & 0xc0) | ((hstop & 0x7) << 3) | (hstart & 0x7);
717 msleep(10);
Hans Verkuil14386c22009-03-18 13:01:06 -0300718 ret += ov7670_write(sd, REG_HREF, v);
Jonathan Corbet111f3352006-11-04 09:26:00 -0300719/*
720 * Vertical: similar arrangement, but only 10 bits.
721 */
Hans Verkuil14386c22009-03-18 13:01:06 -0300722 ret += ov7670_write(sd, REG_VSTART, (vstart >> 2) & 0xff);
723 ret += ov7670_write(sd, REG_VSTOP, (vstop >> 2) & 0xff);
724 ret += ov7670_read(sd, REG_VREF, &v);
Jonathan Corbet111f3352006-11-04 09:26:00 -0300725 v = (v & 0xf0) | ((vstop & 0x3) << 2) | (vstart & 0x3);
726 msleep(10);
Hans Verkuil14386c22009-03-18 13:01:06 -0300727 ret += ov7670_write(sd, REG_VREF, v);
Jonathan Corbet111f3352006-11-04 09:26:00 -0300728 return ret;
729}
730
731
Hans Verkuil959f3bd2010-05-08 18:28:41 -0300732static int ov7670_enum_mbus_fmt(struct v4l2_subdev *sd, unsigned index,
733 enum v4l2_mbus_pixelcode *code)
734{
735 if (index >= N_OV7670_FMTS)
736 return -EINVAL;
737
738 *code = ov7670_formats[index].mbus_code;
739 return 0;
740}
Jonathan Corbet111f3352006-11-04 09:26:00 -0300741
Hans Verkuil14386c22009-03-18 13:01:06 -0300742static int ov7670_try_fmt_internal(struct v4l2_subdev *sd,
Hans Verkuil959f3bd2010-05-08 18:28:41 -0300743 struct v4l2_mbus_framefmt *fmt,
Jonathan Corbet111f3352006-11-04 09:26:00 -0300744 struct ov7670_format_struct **ret_fmt,
745 struct ov7670_win_size **ret_wsize)
746{
747 int index;
748 struct ov7670_win_size *wsize;
Jonathan Corbet111f3352006-11-04 09:26:00 -0300749
750 for (index = 0; index < N_OV7670_FMTS; index++)
Hans Verkuil959f3bd2010-05-08 18:28:41 -0300751 if (ov7670_formats[index].mbus_code == fmt->code)
Jonathan Corbet111f3352006-11-04 09:26:00 -0300752 break;
Daniel Drakecd257a62008-06-30 20:57:39 -0300753 if (index >= N_OV7670_FMTS) {
754 /* default to first format */
755 index = 0;
Hans Verkuil959f3bd2010-05-08 18:28:41 -0300756 fmt->code = ov7670_formats[0].mbus_code;
Daniel Drakecd257a62008-06-30 20:57:39 -0300757 }
Jonathan Corbet111f3352006-11-04 09:26:00 -0300758 if (ret_fmt != NULL)
759 *ret_fmt = ov7670_formats + index;
760 /*
761 * Fields: the OV devices claim to be progressive.
762 */
Hans Verkuil959f3bd2010-05-08 18:28:41 -0300763 fmt->field = V4L2_FIELD_NONE;
Jonathan Corbet111f3352006-11-04 09:26:00 -0300764 /*
765 * Round requested image size down to the nearest
766 * we support, but not below the smallest.
767 */
768 for (wsize = ov7670_win_sizes; wsize < ov7670_win_sizes + N_WIN_SIZES;
769 wsize++)
Hans Verkuil959f3bd2010-05-08 18:28:41 -0300770 if (fmt->width >= wsize->width && fmt->height >= wsize->height)
Jonathan Corbet111f3352006-11-04 09:26:00 -0300771 break;
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300772 if (wsize >= ov7670_win_sizes + N_WIN_SIZES)
Jonathan Corbet111f3352006-11-04 09:26:00 -0300773 wsize--; /* Take the smallest one */
774 if (ret_wsize != NULL)
775 *ret_wsize = wsize;
776 /*
777 * Note the size we'll actually handle.
778 */
Hans Verkuil959f3bd2010-05-08 18:28:41 -0300779 fmt->width = wsize->width;
780 fmt->height = wsize->height;
781 fmt->colorspace = ov7670_formats[index].colorspace;
Jonathan Corbet111f3352006-11-04 09:26:00 -0300782 return 0;
Jonathan Corbet111f3352006-11-04 09:26:00 -0300783}
784
Hans Verkuil959f3bd2010-05-08 18:28:41 -0300785static int ov7670_try_mbus_fmt(struct v4l2_subdev *sd,
786 struct v4l2_mbus_framefmt *fmt)
787{
788 return ov7670_try_fmt_internal(sd, fmt, NULL, NULL);
789}
790
Jonathan Corbet111f3352006-11-04 09:26:00 -0300791/*
792 * Set a format.
793 */
Hans Verkuil959f3bd2010-05-08 18:28:41 -0300794static int ov7670_s_mbus_fmt(struct v4l2_subdev *sd,
795 struct v4l2_mbus_framefmt *fmt)
Jonathan Corbet111f3352006-11-04 09:26:00 -0300796{
Jonathan Corbet111f3352006-11-04 09:26:00 -0300797 struct ov7670_format_struct *ovfmt;
798 struct ov7670_win_size *wsize;
Hans Verkuil14386c22009-03-18 13:01:06 -0300799 struct ov7670_info *info = to_state(sd);
Jonathan Corbetd8d20152009-12-20 11:39:47 -0300800 unsigned char com7;
Hans Verkuil959f3bd2010-05-08 18:28:41 -0300801 int ret;
Jonathan Corbet111f3352006-11-04 09:26:00 -0300802
Hans Verkuil14386c22009-03-18 13:01:06 -0300803 ret = ov7670_try_fmt_internal(sd, fmt, &ovfmt, &wsize);
Hans Verkuil959f3bd2010-05-08 18:28:41 -0300804
Jonathan Corbet111f3352006-11-04 09:26:00 -0300805 if (ret)
806 return ret;
807 /*
808 * COM7 is a pain in the ass, it doesn't like to be read then
809 * quickly written afterward. But we have everything we need
810 * to set it absolutely here, as long as the format-specific
811 * register sets list it first.
812 */
813 com7 = ovfmt->regs[0].value;
814 com7 |= wsize->com7_bit;
Hans Verkuil14386c22009-03-18 13:01:06 -0300815 ov7670_write(sd, REG_COM7, com7);
Jonathan Corbet111f3352006-11-04 09:26:00 -0300816 /*
817 * Now write the rest of the array. Also store start/stops
818 */
Hans Verkuil14386c22009-03-18 13:01:06 -0300819 ov7670_write_array(sd, ovfmt->regs + 1);
820 ov7670_set_hw(sd, wsize->hstart, wsize->hstop, wsize->vstart,
Jonathan Corbet111f3352006-11-04 09:26:00 -0300821 wsize->vstop);
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300822 ret = 0;
823 if (wsize->regs)
Hans Verkuil14386c22009-03-18 13:01:06 -0300824 ret = ov7670_write_array(sd, wsize->regs);
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300825 info->fmt = ovfmt;
Jonathan Corbetedd75ed2007-05-22 00:39:00 -0300826
Jonathan Corbetd8d20152009-12-20 11:39:47 -0300827 /*
828 * If we're running RGB565, we must rewrite clkrc after setting
829 * the other parameters or the image looks poor. If we're *not*
830 * doing RGB565, we must not rewrite clkrc or the image looks
831 * *really* poor.
Jonathan Corbeta8e68c32010-03-18 19:10:18 -0300832 *
833 * (Update) Now that we retain clkrc state, we should be able
834 * to write it unconditionally, and that will make the frame
835 * rate persistent too.
Jonathan Corbetd8d20152009-12-20 11:39:47 -0300836 */
Jonathan Corbeta8e68c32010-03-18 19:10:18 -0300837 if (ret == 0)
Jonathan Corbetd8d20152009-12-20 11:39:47 -0300838 ret = ov7670_write(sd, REG_CLKRC, info->clkrc);
Hans Verkuil959f3bd2010-05-08 18:28:41 -0300839 return 0;
840}
841
Jonathan Corbet111f3352006-11-04 09:26:00 -0300842/*
Jonathan Corbetc8f5b2f52006-12-01 15:50:59 -0300843 * Implement G/S_PARM. There is a "high quality" mode we could try
844 * to do someday; for now, we just do the frame rate tweak.
845 */
Hans Verkuil14386c22009-03-18 13:01:06 -0300846static int ov7670_g_parm(struct v4l2_subdev *sd, struct v4l2_streamparm *parms)
Jonathan Corbetc8f5b2f52006-12-01 15:50:59 -0300847{
848 struct v4l2_captureparm *cp = &parms->parm.capture;
Jonathan Corbetd8d20152009-12-20 11:39:47 -0300849 struct ov7670_info *info = to_state(sd);
Jonathan Corbetc8f5b2f52006-12-01 15:50:59 -0300850
851 if (parms->type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
852 return -EINVAL;
Jonathan Corbetd8d20152009-12-20 11:39:47 -0300853
Jonathan Corbetc8f5b2f52006-12-01 15:50:59 -0300854 memset(cp, 0, sizeof(struct v4l2_captureparm));
855 cp->capability = V4L2_CAP_TIMEPERFRAME;
856 cp->timeperframe.numerator = 1;
857 cp->timeperframe.denominator = OV7670_FRAME_RATE;
Jonathan Corbetd8d20152009-12-20 11:39:47 -0300858 if ((info->clkrc & CLK_EXT) == 0 && (info->clkrc & CLK_SCALE) > 1)
859 cp->timeperframe.denominator /= (info->clkrc & CLK_SCALE);
Jonathan Corbetc8f5b2f52006-12-01 15:50:59 -0300860 return 0;
861}
862
Hans Verkuil14386c22009-03-18 13:01:06 -0300863static int ov7670_s_parm(struct v4l2_subdev *sd, struct v4l2_streamparm *parms)
Jonathan Corbetc8f5b2f52006-12-01 15:50:59 -0300864{
865 struct v4l2_captureparm *cp = &parms->parm.capture;
866 struct v4l2_fract *tpf = &cp->timeperframe;
Jonathan Corbetd8d20152009-12-20 11:39:47 -0300867 struct ov7670_info *info = to_state(sd);
Jonathan Corbet380de492010-03-26 13:09:34 -0300868 int div;
Jonathan Corbetc8f5b2f52006-12-01 15:50:59 -0300869
870 if (parms->type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
871 return -EINVAL;
872 if (cp->extendedmode != 0)
873 return -EINVAL;
Jonathan Corbetd8d20152009-12-20 11:39:47 -0300874
Jonathan Corbetc8f5b2f52006-12-01 15:50:59 -0300875 if (tpf->numerator == 0 || tpf->denominator == 0)
876 div = 1; /* Reset to full rate */
877 else
878 div = (tpf->numerator*OV7670_FRAME_RATE)/tpf->denominator;
879 if (div == 0)
880 div = 1;
881 else if (div > CLK_SCALE)
882 div = CLK_SCALE;
Jonathan Corbetd8d20152009-12-20 11:39:47 -0300883 info->clkrc = (info->clkrc & 0x80) | div;
Jonathan Corbetc8f5b2f52006-12-01 15:50:59 -0300884 tpf->numerator = 1;
885 tpf->denominator = OV7670_FRAME_RATE/div;
Jonathan Corbetd8d20152009-12-20 11:39:47 -0300886 return ov7670_write(sd, REG_CLKRC, info->clkrc);
Jonathan Corbetc8f5b2f52006-12-01 15:50:59 -0300887}
888
889
Jonathan Corbete99dfcf2010-09-24 14:17:29 -0300890/*
891 * Frame intervals. Since frame rates are controlled with the clock
892 * divider, we can only do 30/n for integer n values. So no continuous
893 * or stepwise options. Here we just pick a handful of logical values.
894 */
895
896static int ov7670_frame_rates[] = { 30, 15, 10, 5, 1 };
897
898static int ov7670_enum_frameintervals(struct v4l2_subdev *sd,
899 struct v4l2_frmivalenum *interval)
900{
901 if (interval->index >= ARRAY_SIZE(ov7670_frame_rates))
902 return -EINVAL;
903 interval->type = V4L2_FRMIVAL_TYPE_DISCRETE;
904 interval->discrete.numerator = 1;
905 interval->discrete.denominator = ov7670_frame_rates[interval->index];
906 return 0;
907}
Jonathan Corbetc8f5b2f52006-12-01 15:50:59 -0300908
909/*
Jonathan Corbet111f3352006-11-04 09:26:00 -0300910 * Code for dealing with controls.
911 */
912
Hans Verkuil14386c22009-03-18 13:01:06 -0300913static int ov7670_store_cmatrix(struct v4l2_subdev *sd,
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300914 int matrix[CMATRIX_LEN])
915{
916 int i, ret;
Hans Verkuile3bf20d2008-07-17 13:29:49 -0300917 unsigned char signbits = 0;
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300918
919 /*
920 * Weird crap seems to exist in the upper part of
921 * the sign bits register, so let's preserve it.
922 */
Hans Verkuil14386c22009-03-18 13:01:06 -0300923 ret = ov7670_read(sd, REG_CMATRIX_SIGN, &signbits);
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300924 signbits &= 0xc0;
925
926 for (i = 0; i < CMATRIX_LEN; i++) {
927 unsigned char raw;
928
929 if (matrix[i] < 0) {
930 signbits |= (1 << i);
931 if (matrix[i] < -255)
932 raw = 0xff;
933 else
934 raw = (-1 * matrix[i]) & 0xff;
935 }
936 else {
937 if (matrix[i] > 255)
938 raw = 0xff;
939 else
940 raw = matrix[i] & 0xff;
941 }
Hans Verkuil14386c22009-03-18 13:01:06 -0300942 ret += ov7670_write(sd, REG_CMATRIX_BASE + i, raw);
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300943 }
Hans Verkuil14386c22009-03-18 13:01:06 -0300944 ret += ov7670_write(sd, REG_CMATRIX_SIGN, signbits);
Jonathan Corbetf9a76152006-11-19 19:04:55 -0300945 return ret;
946}
947
948
949/*
950 * Hue also requires messing with the color matrix. It also requires
951 * trig functions, which tend not to be well supported in the kernel.
952 * So here is a simple table of sine values, 0-90 degrees, in steps
953 * of five degrees. Values are multiplied by 1000.
954 *
955 * The following naive approximate trig functions require an argument
956 * carefully limited to -180 <= theta <= 180.
957 */
958#define SIN_STEP 5
959static const int ov7670_sin_table[] = {
960 0, 87, 173, 258, 342, 422,
961 499, 573, 642, 707, 766, 819,
962 866, 906, 939, 965, 984, 996,
963 1000
964};
965
966static int ov7670_sine(int theta)
967{
968 int chs = 1;
969 int sine;
970
971 if (theta < 0) {
972 theta = -theta;
973 chs = -1;
974 }
975 if (theta <= 90)
976 sine = ov7670_sin_table[theta/SIN_STEP];
977 else {
978 theta -= 90;
979 sine = 1000 - ov7670_sin_table[theta/SIN_STEP];
980 }
981 return sine*chs;
982}
983
984static int ov7670_cosine(int theta)
985{
986 theta = 90 - theta;
987 if (theta > 180)
988 theta -= 360;
989 else if (theta < -180)
990 theta += 360;
991 return ov7670_sine(theta);
992}
993
994
995
996
997static void ov7670_calc_cmatrix(struct ov7670_info *info,
998 int matrix[CMATRIX_LEN])
999{
1000 int i;
1001 /*
1002 * Apply the current saturation setting first.
1003 */
1004 for (i = 0; i < CMATRIX_LEN; i++)
1005 matrix[i] = (info->fmt->cmatrix[i]*info->sat) >> 7;
1006 /*
1007 * Then, if need be, rotate the hue value.
1008 */
1009 if (info->hue != 0) {
1010 int sinth, costh, tmpmatrix[CMATRIX_LEN];
1011
1012 memcpy(tmpmatrix, matrix, CMATRIX_LEN*sizeof(int));
1013 sinth = ov7670_sine(info->hue);
1014 costh = ov7670_cosine(info->hue);
1015
1016 matrix[0] = (matrix[3]*sinth + matrix[0]*costh)/1000;
1017 matrix[1] = (matrix[4]*sinth + matrix[1]*costh)/1000;
1018 matrix[2] = (matrix[5]*sinth + matrix[2]*costh)/1000;
1019 matrix[3] = (matrix[3]*costh - matrix[0]*sinth)/1000;
1020 matrix[4] = (matrix[4]*costh - matrix[1]*sinth)/1000;
1021 matrix[5] = (matrix[5]*costh - matrix[2]*sinth)/1000;
1022 }
1023}
1024
1025
1026
Hans Verkuilca075612009-03-18 13:23:13 -03001027static int ov7670_s_sat(struct v4l2_subdev *sd, int value)
Jonathan Corbetf9a76152006-11-19 19:04:55 -03001028{
Hans Verkuil14386c22009-03-18 13:01:06 -03001029 struct ov7670_info *info = to_state(sd);
Jonathan Corbetf9a76152006-11-19 19:04:55 -03001030 int matrix[CMATRIX_LEN];
1031 int ret;
1032
1033 info->sat = value;
1034 ov7670_calc_cmatrix(info, matrix);
Hans Verkuil14386c22009-03-18 13:01:06 -03001035 ret = ov7670_store_cmatrix(sd, matrix);
Jonathan Corbetf9a76152006-11-19 19:04:55 -03001036 return ret;
1037}
1038
Hans Verkuilca075612009-03-18 13:23:13 -03001039static int ov7670_g_sat(struct v4l2_subdev *sd, __s32 *value)
Jonathan Corbetf9a76152006-11-19 19:04:55 -03001040{
Hans Verkuil14386c22009-03-18 13:01:06 -03001041 struct ov7670_info *info = to_state(sd);
Jonathan Corbetf9a76152006-11-19 19:04:55 -03001042
1043 *value = info->sat;
1044 return 0;
1045}
1046
Hans Verkuilca075612009-03-18 13:23:13 -03001047static int ov7670_s_hue(struct v4l2_subdev *sd, int value)
Jonathan Corbetf9a76152006-11-19 19:04:55 -03001048{
Hans Verkuil14386c22009-03-18 13:01:06 -03001049 struct ov7670_info *info = to_state(sd);
Jonathan Corbetf9a76152006-11-19 19:04:55 -03001050 int matrix[CMATRIX_LEN];
1051 int ret;
1052
1053 if (value < -180 || value > 180)
1054 return -EINVAL;
1055 info->hue = value;
1056 ov7670_calc_cmatrix(info, matrix);
Hans Verkuil14386c22009-03-18 13:01:06 -03001057 ret = ov7670_store_cmatrix(sd, matrix);
Jonathan Corbetf9a76152006-11-19 19:04:55 -03001058 return ret;
1059}
1060
1061
Hans Verkuilca075612009-03-18 13:23:13 -03001062static int ov7670_g_hue(struct v4l2_subdev *sd, __s32 *value)
Jonathan Corbetf9a76152006-11-19 19:04:55 -03001063{
Hans Verkuil14386c22009-03-18 13:01:06 -03001064 struct ov7670_info *info = to_state(sd);
Jonathan Corbetf9a76152006-11-19 19:04:55 -03001065
1066 *value = info->hue;
1067 return 0;
1068}
1069
1070
Jonathan Corbet111f3352006-11-04 09:26:00 -03001071/*
1072 * Some weird registers seem to store values in a sign/magnitude format!
1073 */
1074static unsigned char ov7670_sm_to_abs(unsigned char v)
1075{
1076 if ((v & 0x80) == 0)
1077 return v + 128;
Hans Verkuil14386c22009-03-18 13:01:06 -03001078 return 128 - (v & 0x7f);
Jonathan Corbet111f3352006-11-04 09:26:00 -03001079}
1080
1081
1082static unsigned char ov7670_abs_to_sm(unsigned char v)
1083{
1084 if (v > 127)
1085 return v & 0x7f;
Hans Verkuil14386c22009-03-18 13:01:06 -03001086 return (128 - v) | 0x80;
Jonathan Corbet111f3352006-11-04 09:26:00 -03001087}
1088
Hans Verkuilca075612009-03-18 13:23:13 -03001089static int ov7670_s_brightness(struct v4l2_subdev *sd, int value)
Jonathan Corbet111f3352006-11-04 09:26:00 -03001090{
Hans Verkuile3bf20d2008-07-17 13:29:49 -03001091 unsigned char com8 = 0, v;
Jonathan Corbet111f3352006-11-04 09:26:00 -03001092 int ret;
1093
Hans Verkuil14386c22009-03-18 13:01:06 -03001094 ov7670_read(sd, REG_COM8, &com8);
Jonathan Corbet111f3352006-11-04 09:26:00 -03001095 com8 &= ~COM8_AEC;
Hans Verkuil14386c22009-03-18 13:01:06 -03001096 ov7670_write(sd, REG_COM8, com8);
Jonathan Corbetf9a76152006-11-19 19:04:55 -03001097 v = ov7670_abs_to_sm(value);
Hans Verkuil14386c22009-03-18 13:01:06 -03001098 ret = ov7670_write(sd, REG_BRIGHT, v);
Jonathan Corbet111f3352006-11-04 09:26:00 -03001099 return ret;
1100}
1101
Hans Verkuilca075612009-03-18 13:23:13 -03001102static int ov7670_g_brightness(struct v4l2_subdev *sd, __s32 *value)
Jonathan Corbet111f3352006-11-04 09:26:00 -03001103{
Hans Verkuile3bf20d2008-07-17 13:29:49 -03001104 unsigned char v = 0;
Hans Verkuil14386c22009-03-18 13:01:06 -03001105 int ret = ov7670_read(sd, REG_BRIGHT, &v);
Jonathan Corbetf9a76152006-11-19 19:04:55 -03001106
1107 *value = ov7670_sm_to_abs(v);
Jonathan Corbet111f3352006-11-04 09:26:00 -03001108 return ret;
1109}
1110
Hans Verkuilca075612009-03-18 13:23:13 -03001111static int ov7670_s_contrast(struct v4l2_subdev *sd, int value)
Jonathan Corbet111f3352006-11-04 09:26:00 -03001112{
Hans Verkuil14386c22009-03-18 13:01:06 -03001113 return ov7670_write(sd, REG_CONTRAS, (unsigned char) value);
Jonathan Corbet111f3352006-11-04 09:26:00 -03001114}
1115
Hans Verkuilca075612009-03-18 13:23:13 -03001116static int ov7670_g_contrast(struct v4l2_subdev *sd, __s32 *value)
Jonathan Corbet111f3352006-11-04 09:26:00 -03001117{
Hans Verkuile3bf20d2008-07-17 13:29:49 -03001118 unsigned char v = 0;
Hans Verkuil14386c22009-03-18 13:01:06 -03001119 int ret = ov7670_read(sd, REG_CONTRAS, &v);
Jonathan Corbetf9a76152006-11-19 19:04:55 -03001120
1121 *value = v;
1122 return ret;
Jonathan Corbet111f3352006-11-04 09:26:00 -03001123}
1124
Hans Verkuilca075612009-03-18 13:23:13 -03001125static int ov7670_g_hflip(struct v4l2_subdev *sd, __s32 *value)
Jonathan Corbet111f3352006-11-04 09:26:00 -03001126{
1127 int ret;
Hans Verkuile3bf20d2008-07-17 13:29:49 -03001128 unsigned char v = 0;
Jonathan Corbet111f3352006-11-04 09:26:00 -03001129
Hans Verkuil14386c22009-03-18 13:01:06 -03001130 ret = ov7670_read(sd, REG_MVFP, &v);
Jonathan Corbet111f3352006-11-04 09:26:00 -03001131 *value = (v & MVFP_MIRROR) == MVFP_MIRROR;
1132 return ret;
1133}
1134
1135
Hans Verkuilca075612009-03-18 13:23:13 -03001136static int ov7670_s_hflip(struct v4l2_subdev *sd, int value)
Jonathan Corbet111f3352006-11-04 09:26:00 -03001137{
Hans Verkuile3bf20d2008-07-17 13:29:49 -03001138 unsigned char v = 0;
Jonathan Corbet111f3352006-11-04 09:26:00 -03001139 int ret;
1140
Hans Verkuil14386c22009-03-18 13:01:06 -03001141 ret = ov7670_read(sd, REG_MVFP, &v);
Jonathan Corbet111f3352006-11-04 09:26:00 -03001142 if (value)
1143 v |= MVFP_MIRROR;
1144 else
1145 v &= ~MVFP_MIRROR;
1146 msleep(10); /* FIXME */
Hans Verkuil14386c22009-03-18 13:01:06 -03001147 ret += ov7670_write(sd, REG_MVFP, v);
Jonathan Corbet111f3352006-11-04 09:26:00 -03001148 return ret;
1149}
1150
1151
1152
Hans Verkuilca075612009-03-18 13:23:13 -03001153static int ov7670_g_vflip(struct v4l2_subdev *sd, __s32 *value)
Jonathan Corbet111f3352006-11-04 09:26:00 -03001154{
1155 int ret;
Hans Verkuile3bf20d2008-07-17 13:29:49 -03001156 unsigned char v = 0;
Jonathan Corbet111f3352006-11-04 09:26:00 -03001157
Hans Verkuil14386c22009-03-18 13:01:06 -03001158 ret = ov7670_read(sd, REG_MVFP, &v);
Jonathan Corbet111f3352006-11-04 09:26:00 -03001159 *value = (v & MVFP_FLIP) == MVFP_FLIP;
1160 return ret;
1161}
1162
1163
Hans Verkuilca075612009-03-18 13:23:13 -03001164static int ov7670_s_vflip(struct v4l2_subdev *sd, int value)
Jonathan Corbet111f3352006-11-04 09:26:00 -03001165{
Hans Verkuile3bf20d2008-07-17 13:29:49 -03001166 unsigned char v = 0;
Jonathan Corbet111f3352006-11-04 09:26:00 -03001167 int ret;
1168
Hans Verkuil14386c22009-03-18 13:01:06 -03001169 ret = ov7670_read(sd, REG_MVFP, &v);
Jonathan Corbet111f3352006-11-04 09:26:00 -03001170 if (value)
1171 v |= MVFP_FLIP;
1172 else
1173 v &= ~MVFP_FLIP;
1174 msleep(10); /* FIXME */
Hans Verkuil14386c22009-03-18 13:01:06 -03001175 ret += ov7670_write(sd, REG_MVFP, v);
Jonathan Corbet111f3352006-11-04 09:26:00 -03001176 return ret;
1177}
1178
Jonathan Corbet81898672010-03-04 18:50:34 -03001179/*
1180 * GAIN is split between REG_GAIN and REG_VREF[7:6]. If one believes
1181 * the data sheet, the VREF parts should be the most significant, but
1182 * experience shows otherwise. There seems to be little value in
1183 * messing with the VREF bits, so we leave them alone.
1184 */
1185static int ov7670_g_gain(struct v4l2_subdev *sd, __s32 *value)
1186{
1187 int ret;
1188 unsigned char gain;
1189
1190 ret = ov7670_read(sd, REG_GAIN, &gain);
1191 *value = gain;
1192 return ret;
1193}
1194
1195static int ov7670_s_gain(struct v4l2_subdev *sd, int value)
1196{
1197 int ret;
1198 unsigned char com8;
1199
1200 ret = ov7670_write(sd, REG_GAIN, value & 0xff);
1201 /* Have to turn off AGC as well */
1202 if (ret == 0) {
1203 ret = ov7670_read(sd, REG_COM8, &com8);
1204 ret = ov7670_write(sd, REG_COM8, com8 & ~COM8_AGC);
1205 }
1206 return ret;
1207}
1208
1209/*
1210 * Tweak autogain.
1211 */
1212static int ov7670_g_autogain(struct v4l2_subdev *sd, __s32 *value)
1213{
1214 int ret;
1215 unsigned char com8;
1216
1217 ret = ov7670_read(sd, REG_COM8, &com8);
1218 *value = (com8 & COM8_AGC) != 0;
1219 return ret;
1220}
1221
1222static int ov7670_s_autogain(struct v4l2_subdev *sd, int value)
1223{
1224 int ret;
1225 unsigned char com8;
1226
1227 ret = ov7670_read(sd, REG_COM8, &com8);
1228 if (ret == 0) {
1229 if (value)
1230 com8 |= COM8_AGC;
1231 else
1232 com8 &= ~COM8_AGC;
1233 ret = ov7670_write(sd, REG_COM8, com8);
1234 }
1235 return ret;
1236}
1237
Jonathan Corbet364e9332010-03-05 16:48:39 -03001238/*
1239 * Exposure is spread all over the place: top 6 bits in AECHH, middle
1240 * 8 in AECH, and two stashed in COM1 just for the hell of it.
1241 */
1242static int ov7670_g_exp(struct v4l2_subdev *sd, __s32 *value)
1243{
1244 int ret;
1245 unsigned char com1, aech, aechh;
1246
1247 ret = ov7670_read(sd, REG_COM1, &com1) +
1248 ov7670_read(sd, REG_AECH, &aech) +
1249 ov7670_read(sd, REG_AECHH, &aechh);
1250 *value = ((aechh & 0x3f) << 10) | (aech << 2) | (com1 & 0x03);
1251 return ret;
1252}
1253
1254static int ov7670_s_exp(struct v4l2_subdev *sd, int value)
1255{
1256 int ret;
1257 unsigned char com1, com8, aech, aechh;
1258
1259 ret = ov7670_read(sd, REG_COM1, &com1) +
1260 ov7670_read(sd, REG_COM8, &com8);
1261 ov7670_read(sd, REG_AECHH, &aechh);
1262 if (ret)
1263 return ret;
1264
1265 com1 = (com1 & 0xfc) | (value & 0x03);
1266 aech = (value >> 2) & 0xff;
1267 aechh = (aechh & 0xc0) | ((value >> 10) & 0x3f);
1268 ret = ov7670_write(sd, REG_COM1, com1) +
1269 ov7670_write(sd, REG_AECH, aech) +
1270 ov7670_write(sd, REG_AECHH, aechh);
1271 /* Have to turn off AEC as well */
1272 if (ret == 0)
1273 ret = ov7670_write(sd, REG_COM8, com8 & ~COM8_AEC);
1274 return ret;
1275}
1276
1277/*
1278 * Tweak autoexposure.
1279 */
1280static int ov7670_g_autoexp(struct v4l2_subdev *sd, __s32 *value)
1281{
1282 int ret;
1283 unsigned char com8;
1284 enum v4l2_exposure_auto_type *atype = (enum v4l2_exposure_auto_type *) value;
1285
1286 ret = ov7670_read(sd, REG_COM8, &com8);
1287 if (com8 & COM8_AEC)
Jonathan Corbet380de492010-03-26 13:09:34 -03001288 *atype = V4L2_EXPOSURE_AUTO;
Jonathan Corbet364e9332010-03-05 16:48:39 -03001289 else
Jonathan Corbet380de492010-03-26 13:09:34 -03001290 *atype = V4L2_EXPOSURE_MANUAL;
Jonathan Corbet364e9332010-03-05 16:48:39 -03001291 return ret;
1292}
1293
1294static int ov7670_s_autoexp(struct v4l2_subdev *sd,
1295 enum v4l2_exposure_auto_type value)
1296{
1297 int ret;
1298 unsigned char com8;
1299
1300 ret = ov7670_read(sd, REG_COM8, &com8);
1301 if (ret == 0) {
1302 if (value == V4L2_EXPOSURE_AUTO)
1303 com8 |= COM8_AEC;
1304 else
1305 com8 &= ~COM8_AEC;
1306 ret = ov7670_write(sd, REG_COM8, com8);
1307 }
1308 return ret;
1309}
1310
Jonathan Corbet81898672010-03-04 18:50:34 -03001311
1312
Hans Verkuil14386c22009-03-18 13:01:06 -03001313static int ov7670_queryctrl(struct v4l2_subdev *sd,
Jonathan Corbet111f3352006-11-04 09:26:00 -03001314 struct v4l2_queryctrl *qc)
1315{
Hans Verkuilca075612009-03-18 13:23:13 -03001316 /* Fill in min, max, step and default value for these controls. */
1317 switch (qc->id) {
1318 case V4L2_CID_BRIGHTNESS:
1319 return v4l2_ctrl_query_fill(qc, 0, 255, 1, 128);
1320 case V4L2_CID_CONTRAST:
1321 return v4l2_ctrl_query_fill(qc, 0, 127, 1, 64);
1322 case V4L2_CID_VFLIP:
1323 case V4L2_CID_HFLIP:
1324 return v4l2_ctrl_query_fill(qc, 0, 1, 1, 0);
1325 case V4L2_CID_SATURATION:
1326 return v4l2_ctrl_query_fill(qc, 0, 256, 1, 128);
1327 case V4L2_CID_HUE:
1328 return v4l2_ctrl_query_fill(qc, -180, 180, 5, 0);
Jonathan Corbet81898672010-03-04 18:50:34 -03001329 case V4L2_CID_GAIN:
1330 return v4l2_ctrl_query_fill(qc, 0, 255, 1, 128);
1331 case V4L2_CID_AUTOGAIN:
1332 return v4l2_ctrl_query_fill(qc, 0, 1, 1, 1);
Jonathan Corbet364e9332010-03-05 16:48:39 -03001333 case V4L2_CID_EXPOSURE:
1334 return v4l2_ctrl_query_fill(qc, 0, 65535, 1, 500);
1335 case V4L2_CID_EXPOSURE_AUTO:
1336 return v4l2_ctrl_query_fill(qc, 0, 1, 1, 0);
Hans Verkuilca075612009-03-18 13:23:13 -03001337 }
1338 return -EINVAL;
Jonathan Corbet111f3352006-11-04 09:26:00 -03001339}
1340
Hans Verkuil14386c22009-03-18 13:01:06 -03001341static int ov7670_g_ctrl(struct v4l2_subdev *sd, struct v4l2_control *ctrl)
Jonathan Corbet111f3352006-11-04 09:26:00 -03001342{
Hans Verkuilca075612009-03-18 13:23:13 -03001343 switch (ctrl->id) {
1344 case V4L2_CID_BRIGHTNESS:
1345 return ov7670_g_brightness(sd, &ctrl->value);
1346 case V4L2_CID_CONTRAST:
1347 return ov7670_g_contrast(sd, &ctrl->value);
1348 case V4L2_CID_SATURATION:
1349 return ov7670_g_sat(sd, &ctrl->value);
1350 case V4L2_CID_HUE:
1351 return ov7670_g_hue(sd, &ctrl->value);
1352 case V4L2_CID_VFLIP:
1353 return ov7670_g_vflip(sd, &ctrl->value);
1354 case V4L2_CID_HFLIP:
1355 return ov7670_g_hflip(sd, &ctrl->value);
Jonathan Corbet81898672010-03-04 18:50:34 -03001356 case V4L2_CID_GAIN:
1357 return ov7670_g_gain(sd, &ctrl->value);
1358 case V4L2_CID_AUTOGAIN:
1359 return ov7670_g_autogain(sd, &ctrl->value);
Jonathan Corbet364e9332010-03-05 16:48:39 -03001360 case V4L2_CID_EXPOSURE:
1361 return ov7670_g_exp(sd, &ctrl->value);
1362 case V4L2_CID_EXPOSURE_AUTO:
1363 return ov7670_g_autoexp(sd, &ctrl->value);
Hans Verkuilca075612009-03-18 13:23:13 -03001364 }
1365 return -EINVAL;
Jonathan Corbet111f3352006-11-04 09:26:00 -03001366}
1367
Hans Verkuil14386c22009-03-18 13:01:06 -03001368static int ov7670_s_ctrl(struct v4l2_subdev *sd, struct v4l2_control *ctrl)
Jonathan Corbet111f3352006-11-04 09:26:00 -03001369{
Hans Verkuilca075612009-03-18 13:23:13 -03001370 switch (ctrl->id) {
1371 case V4L2_CID_BRIGHTNESS:
1372 return ov7670_s_brightness(sd, ctrl->value);
1373 case V4L2_CID_CONTRAST:
1374 return ov7670_s_contrast(sd, ctrl->value);
1375 case V4L2_CID_SATURATION:
1376 return ov7670_s_sat(sd, ctrl->value);
1377 case V4L2_CID_HUE:
1378 return ov7670_s_hue(sd, ctrl->value);
1379 case V4L2_CID_VFLIP:
1380 return ov7670_s_vflip(sd, ctrl->value);
1381 case V4L2_CID_HFLIP:
1382 return ov7670_s_hflip(sd, ctrl->value);
Jonathan Corbet81898672010-03-04 18:50:34 -03001383 case V4L2_CID_GAIN:
1384 return ov7670_s_gain(sd, ctrl->value);
1385 case V4L2_CID_AUTOGAIN:
1386 return ov7670_s_autogain(sd, ctrl->value);
Jonathan Corbet364e9332010-03-05 16:48:39 -03001387 case V4L2_CID_EXPOSURE:
1388 return ov7670_s_exp(sd, ctrl->value);
1389 case V4L2_CID_EXPOSURE_AUTO:
1390 return ov7670_s_autoexp(sd,
1391 (enum v4l2_exposure_auto_type) ctrl->value);
Hans Verkuilca075612009-03-18 13:23:13 -03001392 }
1393 return -EINVAL;
Jonathan Corbet111f3352006-11-04 09:26:00 -03001394}
1395
Hans Verkuil14386c22009-03-18 13:01:06 -03001396static int ov7670_g_chip_ident(struct v4l2_subdev *sd,
1397 struct v4l2_dbg_chip_ident *chip)
Jonathan Corbet111f3352006-11-04 09:26:00 -03001398{
Hans Verkuil14386c22009-03-18 13:01:06 -03001399 struct i2c_client *client = v4l2_get_subdevdata(sd);
1400
1401 return v4l2_chip_ident_i2c_client(client, chip, V4L2_IDENT_OV7670, 0);
1402}
1403
Hans Verkuilb794aab2009-03-18 13:24:05 -03001404#ifdef CONFIG_VIDEO_ADV_DEBUG
1405static int ov7670_g_register(struct v4l2_subdev *sd, struct v4l2_dbg_register *reg)
1406{
1407 struct i2c_client *client = v4l2_get_subdevdata(sd);
1408 unsigned char val = 0;
1409 int ret;
1410
1411 if (!v4l2_chip_match_i2c_client(client, &reg->match))
1412 return -EINVAL;
1413 if (!capable(CAP_SYS_ADMIN))
1414 return -EPERM;
1415 ret = ov7670_read(sd, reg->reg & 0xff, &val);
1416 reg->val = val;
1417 reg->size = 1;
1418 return ret;
1419}
1420
1421static int ov7670_s_register(struct v4l2_subdev *sd, struct v4l2_dbg_register *reg)
1422{
1423 struct i2c_client *client = v4l2_get_subdevdata(sd);
1424
1425 if (!v4l2_chip_match_i2c_client(client, &reg->match))
1426 return -EINVAL;
1427 if (!capable(CAP_SYS_ADMIN))
1428 return -EPERM;
1429 ov7670_write(sd, reg->reg & 0xff, reg->val & 0xff);
1430 return 0;
1431}
1432#endif
1433
Hans Verkuil14386c22009-03-18 13:01:06 -03001434/* ----------------------------------------------------------------------- */
1435
1436static const struct v4l2_subdev_core_ops ov7670_core_ops = {
1437 .g_chip_ident = ov7670_g_chip_ident,
1438 .g_ctrl = ov7670_g_ctrl,
1439 .s_ctrl = ov7670_s_ctrl,
1440 .queryctrl = ov7670_queryctrl,
1441 .reset = ov7670_reset,
1442 .init = ov7670_init,
Hans Verkuilb794aab2009-03-18 13:24:05 -03001443#ifdef CONFIG_VIDEO_ADV_DEBUG
1444 .g_register = ov7670_g_register,
1445 .s_register = ov7670_s_register,
1446#endif
Hans Verkuil14386c22009-03-18 13:01:06 -03001447};
1448
1449static const struct v4l2_subdev_video_ops ov7670_video_ops = {
Hans Verkuil959f3bd2010-05-08 18:28:41 -03001450 .enum_mbus_fmt = ov7670_enum_mbus_fmt,
1451 .try_mbus_fmt = ov7670_try_mbus_fmt,
1452 .s_mbus_fmt = ov7670_s_mbus_fmt,
Hans Verkuil14386c22009-03-18 13:01:06 -03001453 .s_parm = ov7670_s_parm,
1454 .g_parm = ov7670_g_parm,
Jonathan Corbete99dfcf2010-09-24 14:17:29 -03001455 .enum_frameintervals = ov7670_enum_frameintervals,
Hans Verkuil14386c22009-03-18 13:01:06 -03001456};
1457
1458static const struct v4l2_subdev_ops ov7670_ops = {
1459 .core = &ov7670_core_ops,
1460 .video = &ov7670_video_ops,
1461};
1462
1463/* ----------------------------------------------------------------------- */
1464
1465static int ov7670_probe(struct i2c_client *client,
1466 const struct i2c_device_id *id)
1467{
1468 struct v4l2_subdev *sd;
Jonathan Corbetf9a76152006-11-19 19:04:55 -03001469 struct ov7670_info *info;
Hans Verkuil14386c22009-03-18 13:01:06 -03001470 int ret;
Jonathan Corbet111f3352006-11-04 09:26:00 -03001471
Hans Verkuil14386c22009-03-18 13:01:06 -03001472 info = kzalloc(sizeof(struct ov7670_info), GFP_KERNEL);
1473 if (info == NULL)
Jonathan Corbet111f3352006-11-04 09:26:00 -03001474 return -ENOMEM;
Hans Verkuil14386c22009-03-18 13:01:06 -03001475 sd = &info->sd;
1476 v4l2_i2c_subdev_init(sd, client, &ov7670_ops);
1477
1478 /* Make sure it's an ov7670 */
1479 ret = ov7670_detect(sd);
1480 if (ret) {
1481 v4l_dbg(1, debug, client,
1482 "chip found @ 0x%x (%s) is not an ov7670 chip.\n",
1483 client->addr << 1, client->adapter->name);
1484 kfree(info);
1485 return ret;
Jonathan Corbetf9a76152006-11-19 19:04:55 -03001486 }
Hans Verkuil14386c22009-03-18 13:01:06 -03001487 v4l_info(client, "chip found @ 0x%02x (%s)\n",
1488 client->addr << 1, client->adapter->name);
1489
Jonathan Corbetf9a76152006-11-19 19:04:55 -03001490 info->fmt = &ov7670_formats[0];
1491 info->sat = 128; /* Review this */
Jonathan Corbetd8d20152009-12-20 11:39:47 -03001492 info->clkrc = 1; /* 30fps */
Jonathan Corbet111f3352006-11-04 09:26:00 -03001493
Jonathan Corbet111f3352006-11-04 09:26:00 -03001494 return 0;
1495}
1496
1497
Hans Verkuil14386c22009-03-18 13:01:06 -03001498static int ov7670_remove(struct i2c_client *client)
Jonathan Corbet111f3352006-11-04 09:26:00 -03001499{
Hans Verkuil14386c22009-03-18 13:01:06 -03001500 struct v4l2_subdev *sd = i2c_get_clientdata(client);
Jonathan Corbet111f3352006-11-04 09:26:00 -03001501
Hans Verkuil14386c22009-03-18 13:01:06 -03001502 v4l2_device_unregister_subdev(sd);
1503 kfree(to_state(sd));
1504 return 0;
Jonathan Corbet111f3352006-11-04 09:26:00 -03001505}
1506
Hans Verkuil14386c22009-03-18 13:01:06 -03001507static const struct i2c_device_id ov7670_id[] = {
1508 { "ov7670", 0 },
1509 { }
Jonathan Corbet111f3352006-11-04 09:26:00 -03001510};
Hans Verkuil14386c22009-03-18 13:01:06 -03001511MODULE_DEVICE_TABLE(i2c, ov7670_id);
Jonathan Corbet111f3352006-11-04 09:26:00 -03001512
Hans Verkuilef2ac772010-09-15 15:08:09 -03001513static struct i2c_driver ov7670_driver = {
1514 .driver = {
1515 .owner = THIS_MODULE,
1516 .name = "ov7670",
1517 },
1518 .probe = ov7670_probe,
1519 .remove = ov7670_remove,
1520 .id_table = ov7670_id,
Hans Verkuil14386c22009-03-18 13:01:06 -03001521};
Hans Verkuilef2ac772010-09-15 15:08:09 -03001522
1523static __init int init_ov7670(void)
1524{
1525 return i2c_add_driver(&ov7670_driver);
1526}
1527
1528static __exit void exit_ov7670(void)
1529{
1530 i2c_del_driver(&ov7670_driver);
1531}
1532
1533module_init(init_ov7670);
1534module_exit(exit_ov7670);