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Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03001/**
2 * OV519 driver
3 *
4 * Copyright (C) 2008 Jean-Francois Moine (http://moinejf.free.fr)
Hans de Goedeb46aaa02009-10-12 10:07:57 -03005 * Copyright (C) 2009 Hans de Goede <hdegoede@redhat.com>
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03006 *
Romain Beauxis2961e8752008-12-05 06:25:26 -03007 * This module is adapted from the ov51x-jpeg package, which itself
8 * was adapted from the ov511 driver.
9 *
10 * Original copyright for the ov511 driver is:
11 *
Hans de Goedeb46aaa02009-10-12 10:07:57 -030012 * Copyright (c) 1999-2006 Mark W. McClelland
Romain Beauxis2961e8752008-12-05 06:25:26 -030013 * Support for OV519, OV8610 Copyright (c) 2003 Joerg Heckenbach
Hans de Goedeb46aaa02009-10-12 10:07:57 -030014 * Many improvements by Bret Wallach <bwallac1@san.rr.com>
15 * Color fixes by by Orion Sky Lawlor <olawlor@acm.org> (2/26/2000)
16 * OV7620 fixes by Charl P. Botha <cpbotha@ieee.org>
17 * Changes by Claudio Matsuoka <claudio@conectiva.com>
Romain Beauxis2961e8752008-12-05 06:25:26 -030018 *
19 * ov51x-jpeg original copyright is:
20 *
21 * Copyright (c) 2004-2007 Romain Beauxis <toots@rastageeks.org>
22 * Support for OV7670 sensors was contributed by Sam Skipsey <aoanla@yahoo.com>
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -030023 *
24 * This program is free software; you can redistribute it and/or modify
25 * it under the terms of the GNU General Public License as published by
26 * the Free Software Foundation; either version 2 of the License, or
27 * any later version.
28 *
29 * This program is distributed in the hope that it will be useful,
30 * but WITHOUT ANY WARRANTY; without even the implied warranty of
31 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
32 * GNU General Public License for more details.
33 *
34 * You should have received a copy of the GNU General Public License
35 * along with this program; if not, write to the Free Software
36 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
37 *
38 */
39#define MODULE_NAME "ov519"
40
Hans de Goede417a4d22010-02-19 07:37:08 -030041#include <linux/input.h>
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -030042#include "gspca.h"
43
Jean-François Moine9a731a32010-06-04 05:26:42 -030044/* The jpeg_hdr is used by w996Xcf only */
45/* The CONEX_CAM define for jpeg.h needs renaming, now its used here too */
46#define CONEX_CAM
47#include "jpeg.h"
48
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -030049MODULE_AUTHOR("Jean-Francois Moine <http://moinejf.free.fr>");
50MODULE_DESCRIPTION("OV519 USB Camera Driver");
51MODULE_LICENSE("GPL");
52
53/* global parameters */
54static int frame_rate;
55
56/* Number of times to retry a failed I2C transaction. Increase this if you
57 * are getting "Failed to read sensor ID..." */
58static int i2c_detect_tries = 10;
59
Jean-François Moine62833ac2010-10-02 04:27:02 -030060/* controls */
61enum e_ctrl {
62 BRIGHTNESS,
63 CONTRAST,
64 COLORS,
65 HFLIP,
66 VFLIP,
67 AUTOBRIGHT,
68 FREQ,
69 NCTRL /* number of controls */
70};
71
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -030072/* ov519 device descriptor */
73struct sd {
74 struct gspca_dev gspca_dev; /* !! must be the first item */
75
Jean-François Moine62833ac2010-10-02 04:27:02 -030076 struct gspca_ctrl ctrls[NCTRL];
77
Jean-François Moine9d1593a2010-11-11 08:04:06 -030078 u8 packet_nr;
Hans de Goede92918a52009-06-14 06:21:35 -030079
Hans de Goede49809d62009-06-07 12:10:39 -030080 char bridge;
81#define BRIDGE_OV511 0
82#define BRIDGE_OV511PLUS 1
83#define BRIDGE_OV518 2
84#define BRIDGE_OV518PLUS 3
85#define BRIDGE_OV519 4
Hans de Goede635118d2009-10-11 09:49:03 -030086#define BRIDGE_OVFX2 5
Hans de Goedea511ba92009-10-16 07:13:07 -030087#define BRIDGE_W9968CF 6
Hans de Goede9e4d8252009-06-14 06:25:06 -030088#define BRIDGE_MASK 7
89
90 char invert_led;
91#define BRIDGE_INVERT_LED 8
Hans de Goede49809d62009-06-07 12:10:39 -030092
Hans de Goede417a4d22010-02-19 07:37:08 -030093 char snapshot_pressed;
94 char snapshot_needs_reset;
95
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -030096 /* Determined by sensor type */
Jean-François Moine9d1593a2010-11-11 08:04:06 -030097 u8 sif;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -030098
Jean-François Moine9d1593a2010-11-11 08:04:06 -030099 u8 quality;
Hans de Goede79b35902009-10-19 06:08:01 -0300100#define QUALITY_MIN 50
101#define QUALITY_MAX 70
102#define QUALITY_DEF 50
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300103
Jean-François Moine9d1593a2010-11-11 08:04:06 -0300104 u8 stopped; /* Streaming is temporarily paused */
105 u8 first_frame;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300106
Jean-François Moine9d1593a2010-11-11 08:04:06 -0300107 u8 frame_rate; /* current Framerate */
108 u8 clockdiv; /* clockdiv override */
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300109
Jean-François Moine7bbe6b82010-11-11 08:27:24 -0300110 s8 sensor; /* Type of image sensor chip (SEN_*) */
Hans de Goedea511ba92009-10-16 07:13:07 -0300111
112 u8 sensor_addr;
Jean-François Moined6fa6632010-11-11 08:05:50 -0300113 u16 sensor_width;
114 u16 sensor_height;
115 s16 sensor_reg_cache[256];
Hans de Goede79b35902009-10-19 06:08:01 -0300116
Jean-François Moine9a731a32010-06-04 05:26:42 -0300117 u8 jpeg_hdr[JPEG_HDR_SZ];
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300118};
Jean-François Moine7bbe6b82010-11-11 08:27:24 -0300119enum sensors {
120 SEN_OV2610,
121 SEN_OV3610,
122 SEN_OV6620,
123 SEN_OV6630,
124 SEN_OV66308AF,
125 SEN_OV7610,
126 SEN_OV7620,
127 SEN_OV7620AE,
128 SEN_OV7640,
129 SEN_OV7648,
130 SEN_OV7670,
131 SEN_OV76BE,
132 SEN_OV8610,
133};
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300134
Hans de Goedea511ba92009-10-16 07:13:07 -0300135/* Note this is a bit of a hack, but the w9968cf driver needs the code for all
136 the ov sensors which is already present here. When we have the time we
137 really should move the sensor drivers to v4l2 sub drivers. */
138#include "w996Xcf.c"
139
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300140/* V4L2 controls supported by the driver */
Hans de Goede49809d62009-06-07 12:10:39 -0300141static void setbrightness(struct gspca_dev *gspca_dev);
142static void setcontrast(struct gspca_dev *gspca_dev);
143static void setcolors(struct gspca_dev *gspca_dev);
Jean-François Moine62833ac2010-10-02 04:27:02 -0300144static void sethvflip(struct gspca_dev *gspca_dev);
145static void setautobright(struct gspca_dev *gspca_dev);
146static void setfreq(struct gspca_dev *gspca_dev);
147static void setfreq_i(struct sd *sd);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300148
Hans de Goede02ab18b2009-06-14 04:32:04 -0300149static const struct ctrl sd_ctrls[] = {
Jean-François Moine62833ac2010-10-02 04:27:02 -0300150[BRIGHTNESS] = {
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300151 {
152 .id = V4L2_CID_BRIGHTNESS,
153 .type = V4L2_CTRL_TYPE_INTEGER,
154 .name = "Brightness",
155 .minimum = 0,
156 .maximum = 255,
157 .step = 1,
Jean-François Moine62833ac2010-10-02 04:27:02 -0300158 .default_value = 127,
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300159 },
Jean-François Moine62833ac2010-10-02 04:27:02 -0300160 .set_control = setbrightness,
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300161 },
Jean-François Moine62833ac2010-10-02 04:27:02 -0300162[CONTRAST] = {
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300163 {
164 .id = V4L2_CID_CONTRAST,
165 .type = V4L2_CTRL_TYPE_INTEGER,
166 .name = "Contrast",
167 .minimum = 0,
168 .maximum = 255,
169 .step = 1,
Jean-François Moine62833ac2010-10-02 04:27:02 -0300170 .default_value = 127,
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300171 },
Jean-François Moine62833ac2010-10-02 04:27:02 -0300172 .set_control = setcontrast,
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300173 },
Jean-François Moine62833ac2010-10-02 04:27:02 -0300174[COLORS] = {
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300175 {
176 .id = V4L2_CID_SATURATION,
177 .type = V4L2_CTRL_TYPE_INTEGER,
Jean-Francois Moine594f5b82008-08-01 06:37:51 -0300178 .name = "Color",
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300179 .minimum = 0,
180 .maximum = 255,
181 .step = 1,
Jean-François Moine62833ac2010-10-02 04:27:02 -0300182 .default_value = 127,
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300183 },
Jean-François Moine62833ac2010-10-02 04:27:02 -0300184 .set_control = setcolors,
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300185 },
Hans de Goede02ab18b2009-06-14 04:32:04 -0300186/* The flip controls work with ov7670 only */
Jean-François Moine62833ac2010-10-02 04:27:02 -0300187[HFLIP] = {
Jean-Francois Moine0cd67592008-07-29 05:25:28 -0300188 {
189 .id = V4L2_CID_HFLIP,
190 .type = V4L2_CTRL_TYPE_BOOLEAN,
191 .name = "Mirror",
192 .minimum = 0,
193 .maximum = 1,
194 .step = 1,
Jean-François Moine62833ac2010-10-02 04:27:02 -0300195 .default_value = 0,
Jean-Francois Moine0cd67592008-07-29 05:25:28 -0300196 },
Jean-François Moine62833ac2010-10-02 04:27:02 -0300197 .set_control = sethvflip,
Jean-Francois Moine0cd67592008-07-29 05:25:28 -0300198 },
Jean-François Moine62833ac2010-10-02 04:27:02 -0300199[VFLIP] = {
Jean-Francois Moine0cd67592008-07-29 05:25:28 -0300200 {
201 .id = V4L2_CID_VFLIP,
202 .type = V4L2_CTRL_TYPE_BOOLEAN,
203 .name = "Vflip",
204 .minimum = 0,
205 .maximum = 1,
206 .step = 1,
Jean-François Moine62833ac2010-10-02 04:27:02 -0300207 .default_value = 0,
Jean-Francois Moine0cd67592008-07-29 05:25:28 -0300208 },
Jean-François Moine62833ac2010-10-02 04:27:02 -0300209 .set_control = sethvflip,
Jean-Francois Moine0cd67592008-07-29 05:25:28 -0300210 },
Jean-François Moine62833ac2010-10-02 04:27:02 -0300211[AUTOBRIGHT] = {
Hans de Goede02ab18b2009-06-14 04:32:04 -0300212 {
213 .id = V4L2_CID_AUTOBRIGHTNESS,
214 .type = V4L2_CTRL_TYPE_BOOLEAN,
215 .name = "Auto Brightness",
216 .minimum = 0,
217 .maximum = 1,
218 .step = 1,
Jean-François Moine62833ac2010-10-02 04:27:02 -0300219 .default_value = 1,
Hans de Goede02ab18b2009-06-14 04:32:04 -0300220 },
Jean-François Moine62833ac2010-10-02 04:27:02 -0300221 .set_control = setautobright,
Hans de Goede02ab18b2009-06-14 04:32:04 -0300222 },
Jean-François Moine62833ac2010-10-02 04:27:02 -0300223[FREQ] = {
Hans de Goede02ab18b2009-06-14 04:32:04 -0300224 {
225 .id = V4L2_CID_POWER_LINE_FREQUENCY,
226 .type = V4L2_CTRL_TYPE_MENU,
227 .name = "Light frequency filter",
228 .minimum = 0,
Jean-François Moine87bae742010-11-12 05:31:34 -0300229 .maximum = 2, /* 0: no flicker, 1: 50Hz, 2:60Hz, 3: auto */
Hans de Goede02ab18b2009-06-14 04:32:04 -0300230 .step = 1,
Jean-François Moine62833ac2010-10-02 04:27:02 -0300231 .default_value = 0,
Hans de Goede02ab18b2009-06-14 04:32:04 -0300232 },
Jean-François Moine62833ac2010-10-02 04:27:02 -0300233 .set_control = setfreq,
Hans de Goede02ab18b2009-06-14 04:32:04 -0300234 },
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300235};
236
Jean-François Moine83db7682010-11-12 07:14:08 -0300237/* table of the disabled controls */
238static const unsigned ctrl_dis[] = {
239[SEN_OV2610] = (1 << NCTRL) - 1, /* no control */
240
241[SEN_OV3610] = (1 << NCTRL) - 1, /* no control */
242
243[SEN_OV6620] = (1 << HFLIP) |
244 (1 << VFLIP),
245
246[SEN_OV6630] = (1 << HFLIP) |
247 (1 << VFLIP),
248
249[SEN_OV66308AF] = (1 << HFLIP) |
250 (1 << VFLIP),
251
252[SEN_OV7610] = (1 << HFLIP) |
253 (1 << VFLIP),
254
255[SEN_OV7620] = (1 << HFLIP) |
256 (1 << VFLIP),
257
258[SEN_OV7620AE] = (1 << HFLIP) |
259 (1 << VFLIP),
260
261[SEN_OV7640] = (1 << HFLIP) |
262 (1 << VFLIP) |
263 (1 << AUTOBRIGHT) |
264 (1 << CONTRAST),
265
266[SEN_OV7648] = (1 << HFLIP) |
267 (1 << VFLIP) |
268 (1 << AUTOBRIGHT) |
269 (1 << CONTRAST),
270
271[SEN_OV7670] = (1 << COLORS) |
272 (1 << AUTOBRIGHT),
273
274[SEN_OV76BE] = (1 << HFLIP) |
275 (1 << VFLIP),
276
277[SEN_OV8610] = (1 << HFLIP) |
278 (1 << VFLIP) |
279 (1 << FREQ),
280};
281
Hans de Goede49809d62009-06-07 12:10:39 -0300282static const struct v4l2_pix_format ov519_vga_mode[] = {
Jean-Francois Moinec2446b32008-07-05 11:49:20 -0300283 {320, 240, V4L2_PIX_FMT_JPEG, V4L2_FIELD_NONE,
284 .bytesperline = 320,
Jean-Francois Moine594f5b82008-08-01 06:37:51 -0300285 .sizeimage = 320 * 240 * 3 / 8 + 590,
Jean-Francois Moinec2446b32008-07-05 11:49:20 -0300286 .colorspace = V4L2_COLORSPACE_JPEG,
287 .priv = 1},
288 {640, 480, V4L2_PIX_FMT_JPEG, V4L2_FIELD_NONE,
289 .bytesperline = 640,
290 .sizeimage = 640 * 480 * 3 / 8 + 590,
291 .colorspace = V4L2_COLORSPACE_JPEG,
292 .priv = 0},
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300293};
Hans de Goede49809d62009-06-07 12:10:39 -0300294static const struct v4l2_pix_format ov519_sif_mode[] = {
Hans de Goede124cc9c2009-06-14 05:48:00 -0300295 {160, 120, V4L2_PIX_FMT_JPEG, V4L2_FIELD_NONE,
296 .bytesperline = 160,
297 .sizeimage = 160 * 120 * 3 / 8 + 590,
298 .colorspace = V4L2_COLORSPACE_JPEG,
299 .priv = 3},
Jean-Francois Moinec2446b32008-07-05 11:49:20 -0300300 {176, 144, V4L2_PIX_FMT_JPEG, V4L2_FIELD_NONE,
301 .bytesperline = 176,
Jean-Francois Moine594f5b82008-08-01 06:37:51 -0300302 .sizeimage = 176 * 144 * 3 / 8 + 590,
Jean-Francois Moinec2446b32008-07-05 11:49:20 -0300303 .colorspace = V4L2_COLORSPACE_JPEG,
304 .priv = 1},
Hans de Goede124cc9c2009-06-14 05:48:00 -0300305 {320, 240, V4L2_PIX_FMT_JPEG, V4L2_FIELD_NONE,
306 .bytesperline = 320,
307 .sizeimage = 320 * 240 * 3 / 8 + 590,
308 .colorspace = V4L2_COLORSPACE_JPEG,
309 .priv = 2},
Jean-Francois Moinec2446b32008-07-05 11:49:20 -0300310 {352, 288, V4L2_PIX_FMT_JPEG, V4L2_FIELD_NONE,
311 .bytesperline = 352,
Jean-Francois Moine594f5b82008-08-01 06:37:51 -0300312 .sizeimage = 352 * 288 * 3 / 8 + 590,
Jean-Francois Moinec2446b32008-07-05 11:49:20 -0300313 .colorspace = V4L2_COLORSPACE_JPEG,
314 .priv = 0},
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300315};
316
Hans de Goedeb282d872009-06-14 19:10:40 -0300317/* Note some of the sizeimage values for the ov511 / ov518 may seem
318 larger then necessary, however they need to be this big as the ov511 /
319 ov518 always fills the entire isoc frame, using 0 padding bytes when
320 it doesn't have any data. So with low framerates the amount of data
321 transfered can become quite large (libv4l will remove all the 0 padding
322 in userspace). */
Hans de Goede49809d62009-06-07 12:10:39 -0300323static const struct v4l2_pix_format ov518_vga_mode[] = {
324 {320, 240, V4L2_PIX_FMT_OV518, V4L2_FIELD_NONE,
325 .bytesperline = 320,
Hans de Goedeb282d872009-06-14 19:10:40 -0300326 .sizeimage = 320 * 240 * 3,
Hans de Goede49809d62009-06-07 12:10:39 -0300327 .colorspace = V4L2_COLORSPACE_JPEG,
328 .priv = 1},
329 {640, 480, V4L2_PIX_FMT_OV518, V4L2_FIELD_NONE,
330 .bytesperline = 640,
Hans de Goedeb282d872009-06-14 19:10:40 -0300331 .sizeimage = 640 * 480 * 2,
Hans de Goede49809d62009-06-07 12:10:39 -0300332 .colorspace = V4L2_COLORSPACE_JPEG,
333 .priv = 0},
334};
335static const struct v4l2_pix_format ov518_sif_mode[] = {
Hans de Goede124cc9c2009-06-14 05:48:00 -0300336 {160, 120, V4L2_PIX_FMT_OV518, V4L2_FIELD_NONE,
337 .bytesperline = 160,
Hans de Goedeb282d872009-06-14 19:10:40 -0300338 .sizeimage = 70000,
Hans de Goede124cc9c2009-06-14 05:48:00 -0300339 .colorspace = V4L2_COLORSPACE_JPEG,
340 .priv = 3},
Hans de Goede49809d62009-06-07 12:10:39 -0300341 {176, 144, V4L2_PIX_FMT_OV518, V4L2_FIELD_NONE,
342 .bytesperline = 176,
Hans de Goedeb282d872009-06-14 19:10:40 -0300343 .sizeimage = 70000,
Hans de Goede49809d62009-06-07 12:10:39 -0300344 .colorspace = V4L2_COLORSPACE_JPEG,
345 .priv = 1},
Hans de Goede124cc9c2009-06-14 05:48:00 -0300346 {320, 240, V4L2_PIX_FMT_OV518, V4L2_FIELD_NONE,
347 .bytesperline = 320,
Hans de Goedeb282d872009-06-14 19:10:40 -0300348 .sizeimage = 320 * 240 * 3,
Hans de Goede124cc9c2009-06-14 05:48:00 -0300349 .colorspace = V4L2_COLORSPACE_JPEG,
350 .priv = 2},
Hans de Goede49809d62009-06-07 12:10:39 -0300351 {352, 288, V4L2_PIX_FMT_OV518, V4L2_FIELD_NONE,
352 .bytesperline = 352,
Hans de Goedeb282d872009-06-14 19:10:40 -0300353 .sizeimage = 352 * 288 * 3,
Hans de Goede49809d62009-06-07 12:10:39 -0300354 .colorspace = V4L2_COLORSPACE_JPEG,
355 .priv = 0},
356};
357
Hans de Goede1876bb92009-06-14 06:45:50 -0300358static const struct v4l2_pix_format ov511_vga_mode[] = {
359 {320, 240, V4L2_PIX_FMT_OV511, V4L2_FIELD_NONE,
360 .bytesperline = 320,
361 .sizeimage = 320 * 240 * 3,
362 .colorspace = V4L2_COLORSPACE_JPEG,
363 .priv = 1},
364 {640, 480, V4L2_PIX_FMT_OV511, V4L2_FIELD_NONE,
365 .bytesperline = 640,
366 .sizeimage = 640 * 480 * 2,
367 .colorspace = V4L2_COLORSPACE_JPEG,
368 .priv = 0},
369};
370static const struct v4l2_pix_format ov511_sif_mode[] = {
371 {160, 120, V4L2_PIX_FMT_OV511, V4L2_FIELD_NONE,
372 .bytesperline = 160,
Hans de Goedeb282d872009-06-14 19:10:40 -0300373 .sizeimage = 70000,
Hans de Goede1876bb92009-06-14 06:45:50 -0300374 .colorspace = V4L2_COLORSPACE_JPEG,
375 .priv = 3},
376 {176, 144, V4L2_PIX_FMT_OV511, V4L2_FIELD_NONE,
377 .bytesperline = 176,
Hans de Goedeb282d872009-06-14 19:10:40 -0300378 .sizeimage = 70000,
Hans de Goede1876bb92009-06-14 06:45:50 -0300379 .colorspace = V4L2_COLORSPACE_JPEG,
380 .priv = 1},
381 {320, 240, V4L2_PIX_FMT_OV511, V4L2_FIELD_NONE,
382 .bytesperline = 320,
383 .sizeimage = 320 * 240 * 3,
384 .colorspace = V4L2_COLORSPACE_JPEG,
385 .priv = 2},
386 {352, 288, V4L2_PIX_FMT_OV511, V4L2_FIELD_NONE,
387 .bytesperline = 352,
388 .sizeimage = 352 * 288 * 3,
389 .colorspace = V4L2_COLORSPACE_JPEG,
390 .priv = 0},
391};
Hans de Goede49809d62009-06-07 12:10:39 -0300392
Hans de Goede635118d2009-10-11 09:49:03 -0300393static const struct v4l2_pix_format ovfx2_vga_mode[] = {
394 {320, 240, V4L2_PIX_FMT_SBGGR8, V4L2_FIELD_NONE,
395 .bytesperline = 320,
396 .sizeimage = 320 * 240,
397 .colorspace = V4L2_COLORSPACE_SRGB,
398 .priv = 1},
399 {640, 480, V4L2_PIX_FMT_SBGGR8, V4L2_FIELD_NONE,
400 .bytesperline = 640,
401 .sizeimage = 640 * 480,
402 .colorspace = V4L2_COLORSPACE_SRGB,
403 .priv = 0},
404};
405static const struct v4l2_pix_format ovfx2_cif_mode[] = {
406 {160, 120, V4L2_PIX_FMT_SBGGR8, V4L2_FIELD_NONE,
407 .bytesperline = 160,
408 .sizeimage = 160 * 120,
409 .colorspace = V4L2_COLORSPACE_SRGB,
410 .priv = 3},
411 {176, 144, V4L2_PIX_FMT_SBGGR8, V4L2_FIELD_NONE,
412 .bytesperline = 176,
413 .sizeimage = 176 * 144,
414 .colorspace = V4L2_COLORSPACE_SRGB,
415 .priv = 1},
416 {320, 240, V4L2_PIX_FMT_SBGGR8, V4L2_FIELD_NONE,
417 .bytesperline = 320,
418 .sizeimage = 320 * 240,
419 .colorspace = V4L2_COLORSPACE_SRGB,
420 .priv = 2},
421 {352, 288, V4L2_PIX_FMT_SBGGR8, V4L2_FIELD_NONE,
422 .bytesperline = 352,
423 .sizeimage = 352 * 288,
424 .colorspace = V4L2_COLORSPACE_SRGB,
425 .priv = 0},
426};
427static const struct v4l2_pix_format ovfx2_ov2610_mode[] = {
428 {1600, 1200, V4L2_PIX_FMT_SBGGR8, V4L2_FIELD_NONE,
429 .bytesperline = 1600,
430 .sizeimage = 1600 * 1200,
431 .colorspace = V4L2_COLORSPACE_SRGB},
432};
433static const struct v4l2_pix_format ovfx2_ov3610_mode[] = {
Hans de Goede635118d2009-10-11 09:49:03 -0300434 {640, 480, V4L2_PIX_FMT_SBGGR8, V4L2_FIELD_NONE,
435 .bytesperline = 640,
436 .sizeimage = 640 * 480,
Hans de Goedeb46aaa02009-10-12 10:07:57 -0300437 .colorspace = V4L2_COLORSPACE_SRGB,
438 .priv = 1},
439 {800, 600, V4L2_PIX_FMT_SBGGR8, V4L2_FIELD_NONE,
440 .bytesperline = 800,
441 .sizeimage = 800 * 600,
442 .colorspace = V4L2_COLORSPACE_SRGB,
443 .priv = 1},
444 {1024, 768, V4L2_PIX_FMT_SBGGR8, V4L2_FIELD_NONE,
445 .bytesperline = 1024,
446 .sizeimage = 1024 * 768,
447 .colorspace = V4L2_COLORSPACE_SRGB,
448 .priv = 1},
449 {1600, 1200, V4L2_PIX_FMT_SBGGR8, V4L2_FIELD_NONE,
450 .bytesperline = 1600,
451 .sizeimage = 1600 * 1200,
452 .colorspace = V4L2_COLORSPACE_SRGB,
453 .priv = 0},
454 {2048, 1536, V4L2_PIX_FMT_SBGGR8, V4L2_FIELD_NONE,
455 .bytesperline = 2048,
456 .sizeimage = 2048 * 1536,
457 .colorspace = V4L2_COLORSPACE_SRGB,
458 .priv = 0},
Hans de Goede635118d2009-10-11 09:49:03 -0300459};
460
Hans de Goede49809d62009-06-07 12:10:39 -0300461/* Registers common to OV511 / OV518 */
Hans de Goede1876bb92009-06-14 06:45:50 -0300462#define R51x_FIFO_PSIZE 0x30 /* 2 bytes wide w/ OV518(+) */
Jean-François Moine780e3122010-10-19 04:29:10 -0300463#define R51x_SYS_RESET 0x50
Hans de Goede1876bb92009-06-14 06:45:50 -0300464 /* Reset type flags */
465 #define OV511_RESET_OMNICE 0x08
Jean-François Moine780e3122010-10-19 04:29:10 -0300466#define R51x_SYS_INIT 0x53
Hans de Goede49809d62009-06-07 12:10:39 -0300467#define R51x_SYS_SNAP 0x52
Jean-François Moine87bae742010-11-12 05:31:34 -0300468#define R51x_SYS_CUST_ID 0x5f
Hans de Goede49809d62009-06-07 12:10:39 -0300469#define R51x_COMP_LUT_BEGIN 0x80
470
471/* OV511 Camera interface register numbers */
Hans de Goede1876bb92009-06-14 06:45:50 -0300472#define R511_CAM_DELAY 0x10
473#define R511_CAM_EDGE 0x11
474#define R511_CAM_PXCNT 0x12
475#define R511_CAM_LNCNT 0x13
476#define R511_CAM_PXDIV 0x14
477#define R511_CAM_LNDIV 0x15
478#define R511_CAM_UV_EN 0x16
479#define R511_CAM_LINE_MODE 0x17
480#define R511_CAM_OPTS 0x18
481
482#define R511_SNAP_FRAME 0x19
Jean-François Moine87bae742010-11-12 05:31:34 -0300483#define R511_SNAP_PXCNT 0x1a
484#define R511_SNAP_LNCNT 0x1b
485#define R511_SNAP_PXDIV 0x1c
486#define R511_SNAP_LNDIV 0x1d
487#define R511_SNAP_UV_EN 0x1e
488#define R511_SNAP_UV_EN 0x1e
489#define R511_SNAP_OPTS 0x1f
Hans de Goede1876bb92009-06-14 06:45:50 -0300490
491#define R511_DRAM_FLOW_CTL 0x20
492#define R511_FIFO_OPTS 0x31
493#define R511_I2C_CTL 0x40
Hans de Goede49809d62009-06-07 12:10:39 -0300494#define R511_SYS_LED_CTL 0x55 /* OV511+ only */
Hans de Goede1876bb92009-06-14 06:45:50 -0300495#define R511_COMP_EN 0x78
496#define R511_COMP_LUT_EN 0x79
Hans de Goede49809d62009-06-07 12:10:39 -0300497
498/* OV518 Camera interface register numbers */
499#define R518_GPIO_OUT 0x56 /* OV518(+) only */
500#define R518_GPIO_CTL 0x57 /* OV518(+) only */
501
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300502/* OV519 Camera interface register numbers */
Jean-Francois Moineac40b1f2008-11-08 06:03:37 -0300503#define OV519_R10_H_SIZE 0x10
504#define OV519_R11_V_SIZE 0x11
505#define OV519_R12_X_OFFSETL 0x12
506#define OV519_R13_X_OFFSETH 0x13
507#define OV519_R14_Y_OFFSETL 0x14
508#define OV519_R15_Y_OFFSETH 0x15
509#define OV519_R16_DIVIDER 0x16
510#define OV519_R20_DFR 0x20
511#define OV519_R25_FORMAT 0x25
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300512
513/* OV519 System Controller register numbers */
Jean-François Moine21867802010-11-12 06:12:09 -0300514#define OV519_R51_RESET1 0x51
515#define OV519_R54_EN_CLK1 0x54
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300516
517#define OV519_GPIO_DATA_OUT0 0x71
518#define OV519_GPIO_IO_CTRL0 0x72
519
Jean-François Moine87bae742010-11-12 05:31:34 -0300520/*#define OV511_ENDPOINT_ADDRESS 1 * Isoc endpoint number */
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300521
Hans de Goedeb46aaa02009-10-12 10:07:57 -0300522/*
523 * The FX2 chip does not give us a zero length read at end of frame.
524 * It does, however, give a short read at the end of a frame, if
Daniel Mack3ad2f3f2010-02-03 08:01:28 +0800525 * necessary, rather than run two frames together.
Hans de Goedeb46aaa02009-10-12 10:07:57 -0300526 *
527 * By choosing the right bulk transfer size, we are guaranteed to always
528 * get a short read for the last read of each frame. Frame sizes are
529 * always a composite number (width * height, or a multiple) so if we
530 * choose a prime number, we are guaranteed that the last read of a
531 * frame will be short.
532 *
533 * But it isn't that easy: the 2.6 kernel requires a multiple of 4KB,
534 * otherwise EOVERFLOW "babbling" errors occur. I have not been able
535 * to figure out why. [PMiller]
536 *
537 * The constant (13 * 4096) is the largest "prime enough" number less than 64KB.
538 *
539 * It isn't enough to know the number of bytes per frame, in case we
540 * have data dropouts or buffer overruns (even though the FX2 double
541 * buffers, there are some pretty strict real time constraints for
542 * isochronous transfer for larger frame sizes).
543 */
544#define OVFX2_BULK_SIZE (13 * 4096)
545
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300546/* I2C registers */
547#define R51x_I2C_W_SID 0x41
548#define R51x_I2C_SADDR_3 0x42
549#define R51x_I2C_SADDR_2 0x43
550#define R51x_I2C_R_SID 0x44
551#define R51x_I2C_DATA 0x45
552#define R518_I2C_CTL 0x47 /* OV518(+) only */
Hans de Goedeb46aaa02009-10-12 10:07:57 -0300553#define OVFX2_I2C_ADDR 0x00
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300554
555/* I2C ADDRESSES */
556#define OV7xx0_SID 0x42
Hans de Goede229bb7d2009-10-11 07:41:46 -0300557#define OV_HIRES_SID 0x60 /* OV9xxx / OV2xxx / OV3xxx */
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300558#define OV8xx0_SID 0xa0
559#define OV6xx0_SID 0xc0
560
561/* OV7610 registers */
562#define OV7610_REG_GAIN 0x00 /* gain setting (5:0) */
Hans de Goede49809d62009-06-07 12:10:39 -0300563#define OV7610_REG_BLUE 0x01 /* blue channel balance */
564#define OV7610_REG_RED 0x02 /* red channel balance */
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300565#define OV7610_REG_SAT 0x03 /* saturation */
566#define OV8610_REG_HUE 0x04 /* 04 reserved */
567#define OV7610_REG_CNT 0x05 /* Y contrast */
568#define OV7610_REG_BRT 0x06 /* Y brightness */
569#define OV7610_REG_COM_C 0x14 /* misc common regs */
570#define OV7610_REG_ID_HIGH 0x1c /* manufacturer ID MSB */
571#define OV7610_REG_ID_LOW 0x1d /* manufacturer ID LSB */
572#define OV7610_REG_COM_I 0x29 /* misc settings */
573
574/* OV7670 registers */
Jean-François Moine21867802010-11-12 06:12:09 -0300575#define OV7670_R00_GAIN 0x00 /* Gain lower 8 bits (rest in vref) */
576#define OV7670_R01_BLUE 0x01 /* blue gain */
577#define OV7670_R02_RED 0x02 /* red gain */
578#define OV7670_R03_VREF 0x03 /* Pieces of GAIN, VSTART, VSTOP */
579#define OV7670_R04_COM1 0x04 /* Control 1 */
580/*#define OV7670_R07_AECHH 0x07 * AEC MS 5 bits */
581#define OV7670_R0C_COM3 0x0c /* Control 3 */
582#define OV7670_R0D_COM4 0x0d /* Control 4 */
583#define OV7670_R0E_COM5 0x0e /* All "reserved" */
584#define OV7670_R0F_COM6 0x0f /* Control 6 */
585#define OV7670_R10_AECH 0x10 /* More bits of AEC value */
586#define OV7670_R11_CLKRC 0x11 /* Clock control */
587#define OV7670_R12_COM7 0x12 /* Control 7 */
Jean-François Moine87bae742010-11-12 05:31:34 -0300588#define OV7670_COM7_FMT_VGA 0x00
589/*#define OV7670_COM7_YUV 0x00 * YUV */
590#define OV7670_COM7_FMT_QVGA 0x10 /* QVGA format */
591#define OV7670_COM7_FMT_MASK 0x38
592#define OV7670_COM7_RESET 0x80 /* Register reset */
Jean-François Moine21867802010-11-12 06:12:09 -0300593#define OV7670_R13_COM8 0x13 /* Control 8 */
Jean-François Moine87bae742010-11-12 05:31:34 -0300594#define OV7670_COM8_AEC 0x01 /* Auto exposure enable */
595#define OV7670_COM8_AWB 0x02 /* White balance enable */
596#define OV7670_COM8_AGC 0x04 /* Auto gain enable */
597#define OV7670_COM8_BFILT 0x20 /* Band filter enable */
598#define OV7670_COM8_AECSTEP 0x40 /* Unlimited AEC step size */
599#define OV7670_COM8_FASTAEC 0x80 /* Enable fast AGC/AEC */
Jean-François Moine21867802010-11-12 06:12:09 -0300600#define OV7670_R14_COM9 0x14 /* Control 9 - gain ceiling */
601#define OV7670_R15_COM10 0x15 /* Control 10 */
602#define OV7670_R17_HSTART 0x17 /* Horiz start high bits */
603#define OV7670_R18_HSTOP 0x18 /* Horiz stop high bits */
604#define OV7670_R19_VSTART 0x19 /* Vert start high bits */
605#define OV7670_R1A_VSTOP 0x1a /* Vert stop high bits */
606#define OV7670_R1E_MVFP 0x1e /* Mirror / vflip */
Jean-François Moine87bae742010-11-12 05:31:34 -0300607#define OV7670_MVFP_VFLIP 0x10 /* vertical flip */
608#define OV7670_MVFP_MIRROR 0x20 /* Mirror image */
Jean-François Moine21867802010-11-12 06:12:09 -0300609#define OV7670_R24_AEW 0x24 /* AGC upper limit */
610#define OV7670_R25_AEB 0x25 /* AGC lower limit */
611#define OV7670_R26_VPT 0x26 /* AGC/AEC fast mode op region */
612#define OV7670_R32_HREF 0x32 /* HREF pieces */
613#define OV7670_R3A_TSLB 0x3a /* lots of stuff */
614#define OV7670_R3B_COM11 0x3b /* Control 11 */
Jean-François Moine87bae742010-11-12 05:31:34 -0300615#define OV7670_COM11_EXP 0x02
616#define OV7670_COM11_HZAUTO 0x10 /* Auto detect 50/60 Hz */
Jean-François Moine21867802010-11-12 06:12:09 -0300617#define OV7670_R3C_COM12 0x3c /* Control 12 */
618#define OV7670_R3D_COM13 0x3d /* Control 13 */
Jean-François Moine87bae742010-11-12 05:31:34 -0300619#define OV7670_COM13_GAMMA 0x80 /* Gamma enable */
620#define OV7670_COM13_UVSAT 0x40 /* UV saturation auto adjustment */
Jean-François Moine21867802010-11-12 06:12:09 -0300621#define OV7670_R3E_COM14 0x3e /* Control 14 */
622#define OV7670_R3F_EDGE 0x3f /* Edge enhancement factor */
623#define OV7670_R40_COM15 0x40 /* Control 15 */
Jean-François Moine87bae742010-11-12 05:31:34 -0300624/*#define OV7670_COM15_R00FF 0xc0 * 00 to FF */
Jean-François Moine21867802010-11-12 06:12:09 -0300625#define OV7670_R41_COM16 0x41 /* Control 16 */
Jean-François Moine87bae742010-11-12 05:31:34 -0300626#define OV7670_COM16_AWBGAIN 0x08 /* AWB gain enable */
Jean-François Moine21867802010-11-12 06:12:09 -0300627#define OV7670_R55_BRIGHT 0x55 /* Brightness */
628#define OV7670_R56_CONTRAS 0x56 /* Contrast control */
629#define OV7670_R69_GFIX 0x69 /* Fix gain control */
630/*#define OV7670_R8C_RGB444 0x8c * RGB 444 control */
631#define OV7670_R9F_HAECC1 0x9f /* Hist AEC/AGC control 1 */
632#define OV7670_RA0_HAECC2 0xa0 /* Hist AEC/AGC control 2 */
633#define OV7670_RA5_BD50MAX 0xa5 /* 50hz banding step limit */
634#define OV7670_RA6_HAECC3 0xa6 /* Hist AEC/AGC control 3 */
635#define OV7670_RA7_HAECC4 0xa7 /* Hist AEC/AGC control 4 */
636#define OV7670_RA8_HAECC5 0xa8 /* Hist AEC/AGC control 5 */
637#define OV7670_RA9_HAECC6 0xa9 /* Hist AEC/AGC control 6 */
638#define OV7670_RAA_HAECC7 0xaa /* Hist AEC/AGC control 7 */
639#define OV7670_RAB_BD60MAX 0xab /* 60hz banding step limit */
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -0300640
Jean-Francois Moine4202f712008-09-03 17:12:15 -0300641struct ov_regvals {
Jean-François Moine9d1593a2010-11-11 08:04:06 -0300642 u8 reg;
643 u8 val;
Jean-Francois Moine4202f712008-09-03 17:12:15 -0300644};
645struct ov_i2c_regvals {
Jean-François Moine9d1593a2010-11-11 08:04:06 -0300646 u8 reg;
647 u8 val;
Jean-Francois Moine4202f712008-09-03 17:12:15 -0300648};
649
Hans de Goede635118d2009-10-11 09:49:03 -0300650/* Settings for OV2610 camera chip */
Jean-François Moine780e3122010-10-19 04:29:10 -0300651static const struct ov_i2c_regvals norm_2610[] = {
Hans de Goedeb46aaa02009-10-12 10:07:57 -0300652 { 0x12, 0x80 }, /* reset */
Hans de Goede635118d2009-10-11 09:49:03 -0300653};
654
Jean-François Moine780e3122010-10-19 04:29:10 -0300655static const struct ov_i2c_regvals norm_3620b[] = {
Hans de Goede635118d2009-10-11 09:49:03 -0300656 /*
657 * From the datasheet: "Note that after writing to register COMH
658 * (0x12) to change the sensor mode, registers related to the
659 * sensor’s cropping window will be reset back to their default
660 * values."
661 *
662 * "wait 4096 external clock ... to make sure the sensor is
663 * stable and ready to access registers" i.e. 160us at 24MHz
664 */
Hans de Goede635118d2009-10-11 09:49:03 -0300665 { 0x12, 0x80 }, /* COMH reset */
666 { 0x12, 0x00 }, /* QXGA, master */
667
668 /*
669 * 11 CLKRC "Clock Rate Control"
670 * [7] internal frequency doublers: on
671 * [6] video port mode: master
672 * [5:0] clock divider: 1
673 */
674 { 0x11, 0x80 },
675
676 /*
677 * 13 COMI "Common Control I"
678 * = 192 (0xC0) 11000000
679 * COMI[7] "AEC speed selection"
680 * = 1 (0x01) 1....... "Faster AEC correction"
681 * COMI[6] "AEC speed step selection"
682 * = 1 (0x01) .1...... "Big steps, fast"
683 * COMI[5] "Banding filter on off"
684 * = 0 (0x00) ..0..... "Off"
685 * COMI[4] "Banding filter option"
686 * = 0 (0x00) ...0.... "Main clock is 48 MHz and
687 * the PLL is ON"
688 * COMI[3] "Reserved"
689 * = 0 (0x00) ....0...
690 * COMI[2] "AGC auto manual control selection"
691 * = 0 (0x00) .....0.. "Manual"
692 * COMI[1] "AWB auto manual control selection"
693 * = 0 (0x00) ......0. "Manual"
694 * COMI[0] "Exposure control"
695 * = 0 (0x00) .......0 "Manual"
696 */
Jean-François Moine87bae742010-11-12 05:31:34 -0300697 { 0x13, 0xc0 },
Hans de Goede635118d2009-10-11 09:49:03 -0300698
699 /*
700 * 09 COMC "Common Control C"
701 * = 8 (0x08) 00001000
702 * COMC[7:5] "Reserved"
703 * = 0 (0x00) 000.....
704 * COMC[4] "Sleep Mode Enable"
705 * = 0 (0x00) ...0.... "Normal mode"
706 * COMC[3:2] "Sensor sampling reset timing selection"
707 * = 2 (0x02) ....10.. "Longer reset time"
708 * COMC[1:0] "Output drive current select"
709 * = 0 (0x00) ......00 "Weakest"
710 */
711 { 0x09, 0x08 },
712
713 /*
714 * 0C COMD "Common Control D"
715 * = 8 (0x08) 00001000
716 * COMD[7] "Reserved"
717 * = 0 (0x00) 0.......
718 * COMD[6] "Swap MSB and LSB at the output port"
719 * = 0 (0x00) .0...... "False"
720 * COMD[5:3] "Reserved"
721 * = 1 (0x01) ..001...
722 * COMD[2] "Output Average On Off"
723 * = 0 (0x00) .....0.. "Output Normal"
724 * COMD[1] "Sensor precharge voltage selection"
725 * = 0 (0x00) ......0. "Selects internal
726 * reference precharge
727 * voltage"
728 * COMD[0] "Snapshot option"
729 * = 0 (0x00) .......0 "Enable live video output
730 * after snapshot sequence"
731 */
732 { 0x0c, 0x08 },
733
734 /*
735 * 0D COME "Common Control E"
736 * = 161 (0xA1) 10100001
737 * COME[7] "Output average option"
738 * = 1 (0x01) 1....... "Output average of 4 pixels"
739 * COME[6] "Anti-blooming control"
740 * = 0 (0x00) .0...... "Off"
741 * COME[5:3] "Reserved"
742 * = 4 (0x04) ..100...
743 * COME[2] "Clock output power down pin status"
744 * = 0 (0x00) .....0.. "Tri-state data output pin
745 * on power down"
746 * COME[1] "Data output pin status selection at power down"
747 * = 0 (0x00) ......0. "Tri-state VSYNC, PCLK,
748 * HREF, and CHSYNC pins on
749 * power down"
750 * COME[0] "Auto zero circuit select"
751 * = 1 (0x01) .......1 "On"
752 */
Jean-François Moine87bae742010-11-12 05:31:34 -0300753 { 0x0d, 0xa1 },
Hans de Goede635118d2009-10-11 09:49:03 -0300754
755 /*
756 * 0E COMF "Common Control F"
757 * = 112 (0x70) 01110000
758 * COMF[7] "System clock selection"
759 * = 0 (0x00) 0....... "Use 24 MHz system clock"
760 * COMF[6:4] "Reserved"
761 * = 7 (0x07) .111....
762 * COMF[3] "Manual auto negative offset canceling selection"
763 * = 0 (0x00) ....0... "Auto detect negative
764 * offset and cancel it"
765 * COMF[2:0] "Reserved"
766 * = 0 (0x00) .....000
767 */
768 { 0x0e, 0x70 },
769
770 /*
771 * 0F COMG "Common Control G"
772 * = 66 (0x42) 01000010
773 * COMG[7] "Optical black output selection"
774 * = 0 (0x00) 0....... "Disable"
775 * COMG[6] "Black level calibrate selection"
776 * = 1 (0x01) .1...... "Use optical black pixels
777 * to calibrate"
778 * COMG[5:4] "Reserved"
779 * = 0 (0x00) ..00....
780 * COMG[3] "Channel offset adjustment"
781 * = 0 (0x00) ....0... "Disable offset adjustment"
782 * COMG[2] "ADC black level calibration option"
783 * = 0 (0x00) .....0.. "Use B/G line and G/R
784 * line to calibrate each
785 * channel's black level"
786 * COMG[1] "Reserved"
787 * = 1 (0x01) ......1.
788 * COMG[0] "ADC black level calibration enable"
789 * = 0 (0x00) .......0 "Disable"
790 */
791 { 0x0f, 0x42 },
792
793 /*
794 * 14 COMJ "Common Control J"
795 * = 198 (0xC6) 11000110
796 * COMJ[7:6] "AGC gain ceiling"
797 * = 3 (0x03) 11...... "8x"
798 * COMJ[5:4] "Reserved"
799 * = 0 (0x00) ..00....
800 * COMJ[3] "Auto banding filter"
801 * = 0 (0x00) ....0... "Banding filter is always
802 * on off depending on
803 * COMI[5] setting"
804 * COMJ[2] "VSYNC drop option"
805 * = 1 (0x01) .....1.. "SYNC is dropped if frame
806 * data is dropped"
807 * COMJ[1] "Frame data drop"
808 * = 1 (0x01) ......1. "Drop frame data if
809 * exposure is not within
810 * tolerance. In AEC mode,
811 * data is normally dropped
812 * when data is out of
813 * range."
814 * COMJ[0] "Reserved"
815 * = 0 (0x00) .......0
816 */
Jean-François Moine87bae742010-11-12 05:31:34 -0300817 { 0x14, 0xc6 },
Hans de Goede635118d2009-10-11 09:49:03 -0300818
819 /*
820 * 15 COMK "Common Control K"
821 * = 2 (0x02) 00000010
822 * COMK[7] "CHSYNC pin output swap"
823 * = 0 (0x00) 0....... "CHSYNC"
824 * COMK[6] "HREF pin output swap"
825 * = 0 (0x00) .0...... "HREF"
826 * COMK[5] "PCLK output selection"
827 * = 0 (0x00) ..0..... "PCLK always output"
828 * COMK[4] "PCLK edge selection"
829 * = 0 (0x00) ...0.... "Data valid on falling edge"
830 * COMK[3] "HREF output polarity"
831 * = 0 (0x00) ....0... "positive"
832 * COMK[2] "Reserved"
833 * = 0 (0x00) .....0..
834 * COMK[1] "VSYNC polarity"
835 * = 1 (0x01) ......1. "negative"
836 * COMK[0] "HSYNC polarity"
837 * = 0 (0x00) .......0 "positive"
838 */
839 { 0x15, 0x02 },
840
841 /*
842 * 33 CHLF "Current Control"
843 * = 9 (0x09) 00001001
844 * CHLF[7:6] "Sensor current control"
845 * = 0 (0x00) 00......
846 * CHLF[5] "Sensor current range control"
847 * = 0 (0x00) ..0..... "normal range"
848 * CHLF[4] "Sensor current"
849 * = 0 (0x00) ...0.... "normal current"
850 * CHLF[3] "Sensor buffer current control"
851 * = 1 (0x01) ....1... "half current"
852 * CHLF[2] "Column buffer current control"
853 * = 0 (0x00) .....0.. "normal current"
854 * CHLF[1] "Analog DSP current control"
855 * = 0 (0x00) ......0. "normal current"
856 * CHLF[1] "ADC current control"
857 * = 0 (0x00) ......0. "normal current"
858 */
859 { 0x33, 0x09 },
860
861 /*
862 * 34 VBLM "Blooming Control"
863 * = 80 (0x50) 01010000
864 * VBLM[7] "Hard soft reset switch"
865 * = 0 (0x00) 0....... "Hard reset"
866 * VBLM[6:4] "Blooming voltage selection"
867 * = 5 (0x05) .101....
868 * VBLM[3:0] "Sensor current control"
869 * = 0 (0x00) ....0000
870 */
871 { 0x34, 0x50 },
872
873 /*
874 * 36 VCHG "Sensor Precharge Voltage Control"
875 * = 0 (0x00) 00000000
876 * VCHG[7] "Reserved"
877 * = 0 (0x00) 0.......
878 * VCHG[6:4] "Sensor precharge voltage control"
879 * = 0 (0x00) .000....
880 * VCHG[3:0] "Sensor array common reference"
881 * = 0 (0x00) ....0000
882 */
883 { 0x36, 0x00 },
884
885 /*
886 * 37 ADC "ADC Reference Control"
887 * = 4 (0x04) 00000100
888 * ADC[7:4] "Reserved"
889 * = 0 (0x00) 0000....
890 * ADC[3] "ADC input signal range"
891 * = 0 (0x00) ....0... "Input signal 1.0x"
892 * ADC[2:0] "ADC range control"
893 * = 4 (0x04) .....100
894 */
895 { 0x37, 0x04 },
896
897 /*
898 * 38 ACOM "Analog Common Ground"
899 * = 82 (0x52) 01010010
900 * ACOM[7] "Analog gain control"
901 * = 0 (0x00) 0....... "Gain 1x"
902 * ACOM[6] "Analog black level calibration"
903 * = 1 (0x01) .1...... "On"
904 * ACOM[5:0] "Reserved"
905 * = 18 (0x12) ..010010
906 */
907 { 0x38, 0x52 },
908
909 /*
910 * 3A FREFA "Internal Reference Adjustment"
911 * = 0 (0x00) 00000000
912 * FREFA[7:0] "Range"
913 * = 0 (0x00) 00000000
914 */
915 { 0x3a, 0x00 },
916
917 /*
918 * 3C FVOPT "Internal Reference Adjustment"
919 * = 31 (0x1F) 00011111
920 * FVOPT[7:0] "Range"
921 * = 31 (0x1F) 00011111
922 */
Jean-François Moine87bae742010-11-12 05:31:34 -0300923 { 0x3c, 0x1f },
Hans de Goede635118d2009-10-11 09:49:03 -0300924
925 /*
926 * 44 Undocumented = 0 (0x00) 00000000
927 * 44[7:0] "It's a secret"
928 * = 0 (0x00) 00000000
929 */
930 { 0x44, 0x00 },
931
932 /*
933 * 40 Undocumented = 0 (0x00) 00000000
934 * 40[7:0] "It's a secret"
935 * = 0 (0x00) 00000000
936 */
937 { 0x40, 0x00 },
938
939 /*
940 * 41 Undocumented = 0 (0x00) 00000000
941 * 41[7:0] "It's a secret"
942 * = 0 (0x00) 00000000
943 */
944 { 0x41, 0x00 },
945
946 /*
947 * 42 Undocumented = 0 (0x00) 00000000
948 * 42[7:0] "It's a secret"
949 * = 0 (0x00) 00000000
950 */
951 { 0x42, 0x00 },
952
953 /*
954 * 43 Undocumented = 0 (0x00) 00000000
955 * 43[7:0] "It's a secret"
956 * = 0 (0x00) 00000000
957 */
958 { 0x43, 0x00 },
959
960 /*
961 * 45 Undocumented = 128 (0x80) 10000000
962 * 45[7:0] "It's a secret"
963 * = 128 (0x80) 10000000
964 */
965 { 0x45, 0x80 },
966
967 /*
968 * 48 Undocumented = 192 (0xC0) 11000000
969 * 48[7:0] "It's a secret"
970 * = 192 (0xC0) 11000000
971 */
Jean-François Moine87bae742010-11-12 05:31:34 -0300972 { 0x48, 0xc0 },
Hans de Goede635118d2009-10-11 09:49:03 -0300973
974 /*
975 * 49 Undocumented = 25 (0x19) 00011001
976 * 49[7:0] "It's a secret"
977 * = 25 (0x19) 00011001
978 */
979 { 0x49, 0x19 },
980
981 /*
982 * 4B Undocumented = 128 (0x80) 10000000
983 * 4B[7:0] "It's a secret"
984 * = 128 (0x80) 10000000
985 */
Jean-François Moine87bae742010-11-12 05:31:34 -0300986 { 0x4b, 0x80 },
Hans de Goede635118d2009-10-11 09:49:03 -0300987
988 /*
989 * 4D Undocumented = 196 (0xC4) 11000100
990 * 4D[7:0] "It's a secret"
991 * = 196 (0xC4) 11000100
992 */
Jean-François Moine87bae742010-11-12 05:31:34 -0300993 { 0x4d, 0xc4 },
Hans de Goede635118d2009-10-11 09:49:03 -0300994
995 /*
996 * 35 VREF "Reference Voltage Control"
Jean-François Moine87bae742010-11-12 05:31:34 -0300997 * = 76 (0x4c) 01001100
Hans de Goede635118d2009-10-11 09:49:03 -0300998 * VREF[7:5] "Column high reference control"
999 * = 2 (0x02) 010..... "higher voltage"
1000 * VREF[4:2] "Column low reference control"
1001 * = 3 (0x03) ...011.. "Highest voltage"
1002 * VREF[1:0] "Reserved"
1003 * = 0 (0x00) ......00
1004 */
Jean-François Moine87bae742010-11-12 05:31:34 -03001005 { 0x35, 0x4c },
Hans de Goede635118d2009-10-11 09:49:03 -03001006
1007 /*
1008 * 3D Undocumented = 0 (0x00) 00000000
1009 * 3D[7:0] "It's a secret"
1010 * = 0 (0x00) 00000000
1011 */
Jean-François Moine87bae742010-11-12 05:31:34 -03001012 { 0x3d, 0x00 },
Hans de Goede635118d2009-10-11 09:49:03 -03001013
1014 /*
1015 * 3E Undocumented = 0 (0x00) 00000000
1016 * 3E[7:0] "It's a secret"
1017 * = 0 (0x00) 00000000
1018 */
Jean-François Moine87bae742010-11-12 05:31:34 -03001019 { 0x3e, 0x00 },
Hans de Goede635118d2009-10-11 09:49:03 -03001020
1021 /*
1022 * 3B FREFB "Internal Reference Adjustment"
1023 * = 24 (0x18) 00011000
1024 * FREFB[7:0] "Range"
1025 * = 24 (0x18) 00011000
1026 */
1027 { 0x3b, 0x18 },
1028
1029 /*
1030 * 33 CHLF "Current Control"
1031 * = 25 (0x19) 00011001
1032 * CHLF[7:6] "Sensor current control"
1033 * = 0 (0x00) 00......
1034 * CHLF[5] "Sensor current range control"
1035 * = 0 (0x00) ..0..... "normal range"
1036 * CHLF[4] "Sensor current"
1037 * = 1 (0x01) ...1.... "double current"
1038 * CHLF[3] "Sensor buffer current control"
1039 * = 1 (0x01) ....1... "half current"
1040 * CHLF[2] "Column buffer current control"
1041 * = 0 (0x00) .....0.. "normal current"
1042 * CHLF[1] "Analog DSP current control"
1043 * = 0 (0x00) ......0. "normal current"
1044 * CHLF[1] "ADC current control"
1045 * = 0 (0x00) ......0. "normal current"
1046 */
1047 { 0x33, 0x19 },
1048
1049 /*
1050 * 34 VBLM "Blooming Control"
1051 * = 90 (0x5A) 01011010
1052 * VBLM[7] "Hard soft reset switch"
1053 * = 0 (0x00) 0....... "Hard reset"
1054 * VBLM[6:4] "Blooming voltage selection"
1055 * = 5 (0x05) .101....
1056 * VBLM[3:0] "Sensor current control"
1057 * = 10 (0x0A) ....1010
1058 */
Jean-François Moine87bae742010-11-12 05:31:34 -03001059 { 0x34, 0x5a },
Hans de Goede635118d2009-10-11 09:49:03 -03001060
1061 /*
1062 * 3B FREFB "Internal Reference Adjustment"
1063 * = 0 (0x00) 00000000
1064 * FREFB[7:0] "Range"
1065 * = 0 (0x00) 00000000
1066 */
1067 { 0x3b, 0x00 },
1068
1069 /*
1070 * 33 CHLF "Current Control"
1071 * = 9 (0x09) 00001001
1072 * CHLF[7:6] "Sensor current control"
1073 * = 0 (0x00) 00......
1074 * CHLF[5] "Sensor current range control"
1075 * = 0 (0x00) ..0..... "normal range"
1076 * CHLF[4] "Sensor current"
1077 * = 0 (0x00) ...0.... "normal current"
1078 * CHLF[3] "Sensor buffer current control"
1079 * = 1 (0x01) ....1... "half current"
1080 * CHLF[2] "Column buffer current control"
1081 * = 0 (0x00) .....0.. "normal current"
1082 * CHLF[1] "Analog DSP current control"
1083 * = 0 (0x00) ......0. "normal current"
1084 * CHLF[1] "ADC current control"
1085 * = 0 (0x00) ......0. "normal current"
1086 */
1087 { 0x33, 0x09 },
1088
1089 /*
1090 * 34 VBLM "Blooming Control"
1091 * = 80 (0x50) 01010000
1092 * VBLM[7] "Hard soft reset switch"
1093 * = 0 (0x00) 0....... "Hard reset"
1094 * VBLM[6:4] "Blooming voltage selection"
1095 * = 5 (0x05) .101....
1096 * VBLM[3:0] "Sensor current control"
1097 * = 0 (0x00) ....0000
1098 */
1099 { 0x34, 0x50 },
1100
1101 /*
1102 * 12 COMH "Common Control H"
1103 * = 64 (0x40) 01000000
1104 * COMH[7] "SRST"
1105 * = 0 (0x00) 0....... "No-op"
1106 * COMH[6:4] "Resolution selection"
1107 * = 4 (0x04) .100.... "XGA"
1108 * COMH[3] "Master slave selection"
1109 * = 0 (0x00) ....0... "Master mode"
1110 * COMH[2] "Internal B/R channel option"
1111 * = 0 (0x00) .....0.. "B/R use same channel"
1112 * COMH[1] "Color bar test pattern"
1113 * = 0 (0x00) ......0. "Off"
1114 * COMH[0] "Reserved"
1115 * = 0 (0x00) .......0
1116 */
1117 { 0x12, 0x40 },
1118
1119 /*
1120 * 17 HREFST "Horizontal window start"
1121 * = 31 (0x1F) 00011111
1122 * HREFST[7:0] "Horizontal window start, 8 MSBs"
1123 * = 31 (0x1F) 00011111
1124 */
Jean-François Moine87bae742010-11-12 05:31:34 -03001125 { 0x17, 0x1f },
Hans de Goede635118d2009-10-11 09:49:03 -03001126
1127 /*
1128 * 18 HREFEND "Horizontal window end"
1129 * = 95 (0x5F) 01011111
1130 * HREFEND[7:0] "Horizontal Window End, 8 MSBs"
1131 * = 95 (0x5F) 01011111
1132 */
Jean-François Moine87bae742010-11-12 05:31:34 -03001133 { 0x18, 0x5f },
Hans de Goede635118d2009-10-11 09:49:03 -03001134
1135 /*
1136 * 19 VSTRT "Vertical window start"
1137 * = 0 (0x00) 00000000
1138 * VSTRT[7:0] "Vertical Window Start, 8 MSBs"
1139 * = 0 (0x00) 00000000
1140 */
1141 { 0x19, 0x00 },
1142
1143 /*
1144 * 1A VEND "Vertical window end"
1145 * = 96 (0x60) 01100000
1146 * VEND[7:0] "Vertical Window End, 8 MSBs"
1147 * = 96 (0x60) 01100000
1148 */
1149 { 0x1a, 0x60 },
1150
1151 /*
1152 * 32 COMM "Common Control M"
1153 * = 18 (0x12) 00010010
1154 * COMM[7:6] "Pixel clock divide option"
1155 * = 0 (0x00) 00...... "/1"
1156 * COMM[5:3] "Horizontal window end position, 3 LSBs"
1157 * = 2 (0x02) ..010...
1158 * COMM[2:0] "Horizontal window start position, 3 LSBs"
1159 * = 2 (0x02) .....010
1160 */
1161 { 0x32, 0x12 },
1162
1163 /*
1164 * 03 COMA "Common Control A"
1165 * = 74 (0x4A) 01001010
1166 * COMA[7:4] "AWB Update Threshold"
1167 * = 4 (0x04) 0100....
1168 * COMA[3:2] "Vertical window end line control 2 LSBs"
1169 * = 2 (0x02) ....10..
1170 * COMA[1:0] "Vertical window start line control 2 LSBs"
1171 * = 2 (0x02) ......10
1172 */
Jean-François Moine87bae742010-11-12 05:31:34 -03001173 { 0x03, 0x4a },
Hans de Goede635118d2009-10-11 09:49:03 -03001174
1175 /*
1176 * 11 CLKRC "Clock Rate Control"
1177 * = 128 (0x80) 10000000
1178 * CLKRC[7] "Internal frequency doublers on off seclection"
1179 * = 1 (0x01) 1....... "On"
1180 * CLKRC[6] "Digital video master slave selection"
1181 * = 0 (0x00) .0...... "Master mode, sensor
1182 * provides PCLK"
1183 * CLKRC[5:0] "Clock divider { CLK = PCLK/(1+CLKRC[5:0]) }"
1184 * = 0 (0x00) ..000000
1185 */
1186 { 0x11, 0x80 },
1187
1188 /*
1189 * 12 COMH "Common Control H"
1190 * = 0 (0x00) 00000000
1191 * COMH[7] "SRST"
1192 * = 0 (0x00) 0....... "No-op"
1193 * COMH[6:4] "Resolution selection"
1194 * = 0 (0x00) .000.... "QXGA"
1195 * COMH[3] "Master slave selection"
1196 * = 0 (0x00) ....0... "Master mode"
1197 * COMH[2] "Internal B/R channel option"
1198 * = 0 (0x00) .....0.. "B/R use same channel"
1199 * COMH[1] "Color bar test pattern"
1200 * = 0 (0x00) ......0. "Off"
1201 * COMH[0] "Reserved"
1202 * = 0 (0x00) .......0
1203 */
1204 { 0x12, 0x00 },
1205
1206 /*
1207 * 12 COMH "Common Control H"
1208 * = 64 (0x40) 01000000
1209 * COMH[7] "SRST"
1210 * = 0 (0x00) 0....... "No-op"
1211 * COMH[6:4] "Resolution selection"
1212 * = 4 (0x04) .100.... "XGA"
1213 * COMH[3] "Master slave selection"
1214 * = 0 (0x00) ....0... "Master mode"
1215 * COMH[2] "Internal B/R channel option"
1216 * = 0 (0x00) .....0.. "B/R use same channel"
1217 * COMH[1] "Color bar test pattern"
1218 * = 0 (0x00) ......0. "Off"
1219 * COMH[0] "Reserved"
1220 * = 0 (0x00) .......0
1221 */
1222 { 0x12, 0x40 },
1223
1224 /*
1225 * 17 HREFST "Horizontal window start"
1226 * = 31 (0x1F) 00011111
1227 * HREFST[7:0] "Horizontal window start, 8 MSBs"
1228 * = 31 (0x1F) 00011111
1229 */
Jean-François Moine87bae742010-11-12 05:31:34 -03001230 { 0x17, 0x1f },
Hans de Goede635118d2009-10-11 09:49:03 -03001231
1232 /*
1233 * 18 HREFEND "Horizontal window end"
1234 * = 95 (0x5F) 01011111
1235 * HREFEND[7:0] "Horizontal Window End, 8 MSBs"
1236 * = 95 (0x5F) 01011111
1237 */
Jean-François Moine87bae742010-11-12 05:31:34 -03001238 { 0x18, 0x5f },
Hans de Goede635118d2009-10-11 09:49:03 -03001239
1240 /*
1241 * 19 VSTRT "Vertical window start"
1242 * = 0 (0x00) 00000000
1243 * VSTRT[7:0] "Vertical Window Start, 8 MSBs"
1244 * = 0 (0x00) 00000000
1245 */
1246 { 0x19, 0x00 },
1247
1248 /*
1249 * 1A VEND "Vertical window end"
1250 * = 96 (0x60) 01100000
1251 * VEND[7:0] "Vertical Window End, 8 MSBs"
1252 * = 96 (0x60) 01100000
1253 */
1254 { 0x1a, 0x60 },
1255
1256 /*
1257 * 32 COMM "Common Control M"
1258 * = 18 (0x12) 00010010
1259 * COMM[7:6] "Pixel clock divide option"
1260 * = 0 (0x00) 00...... "/1"
1261 * COMM[5:3] "Horizontal window end position, 3 LSBs"
1262 * = 2 (0x02) ..010...
1263 * COMM[2:0] "Horizontal window start position, 3 LSBs"
1264 * = 2 (0x02) .....010
1265 */
1266 { 0x32, 0x12 },
1267
1268 /*
1269 * 03 COMA "Common Control A"
1270 * = 74 (0x4A) 01001010
1271 * COMA[7:4] "AWB Update Threshold"
1272 * = 4 (0x04) 0100....
1273 * COMA[3:2] "Vertical window end line control 2 LSBs"
1274 * = 2 (0x02) ....10..
1275 * COMA[1:0] "Vertical window start line control 2 LSBs"
1276 * = 2 (0x02) ......10
1277 */
Jean-François Moine87bae742010-11-12 05:31:34 -03001278 { 0x03, 0x4a },
Hans de Goede635118d2009-10-11 09:49:03 -03001279
1280 /*
1281 * 02 RED "Red Gain Control"
1282 * = 175 (0xAF) 10101111
1283 * RED[7] "Action"
1284 * = 1 (0x01) 1....... "gain = 1/(1+bitrev([6:0]))"
1285 * RED[6:0] "Value"
1286 * = 47 (0x2F) .0101111
1287 */
Jean-François Moine87bae742010-11-12 05:31:34 -03001288 { 0x02, 0xaf },
Hans de Goede635118d2009-10-11 09:49:03 -03001289
1290 /*
1291 * 2D ADDVSL "VSYNC Pulse Width"
1292 * = 210 (0xD2) 11010010
1293 * ADDVSL[7:0] "VSYNC pulse width, LSB"
1294 * = 210 (0xD2) 11010010
1295 */
Jean-François Moine87bae742010-11-12 05:31:34 -03001296 { 0x2d, 0xd2 },
Hans de Goede635118d2009-10-11 09:49:03 -03001297
1298 /*
1299 * 00 GAIN = 24 (0x18) 00011000
1300 * GAIN[7:6] "Reserved"
1301 * = 0 (0x00) 00......
1302 * GAIN[5] "Double"
1303 * = 0 (0x00) ..0..... "False"
1304 * GAIN[4] "Double"
1305 * = 1 (0x01) ...1.... "True"
1306 * GAIN[3:0] "Range"
1307 * = 8 (0x08) ....1000
1308 */
1309 { 0x00, 0x18 },
1310
1311 /*
1312 * 01 BLUE "Blue Gain Control"
1313 * = 240 (0xF0) 11110000
1314 * BLUE[7] "Action"
1315 * = 1 (0x01) 1....... "gain = 1/(1+bitrev([6:0]))"
1316 * BLUE[6:0] "Value"
1317 * = 112 (0x70) .1110000
1318 */
Jean-François Moine87bae742010-11-12 05:31:34 -03001319 { 0x01, 0xf0 },
Hans de Goede635118d2009-10-11 09:49:03 -03001320
1321 /*
1322 * 10 AEC "Automatic Exposure Control"
1323 * = 10 (0x0A) 00001010
1324 * AEC[7:0] "Automatic Exposure Control, 8 MSBs"
1325 * = 10 (0x0A) 00001010
1326 */
Jean-François Moine87bae742010-11-12 05:31:34 -03001327 { 0x10, 0x0a },
Hans de Goede635118d2009-10-11 09:49:03 -03001328
Jean-François Moine87bae742010-11-12 05:31:34 -03001329 { 0xe1, 0x67 },
1330 { 0xe3, 0x03 },
1331 { 0xe4, 0x26 },
1332 { 0xe5, 0x3e },
1333 { 0xf8, 0x01 },
1334 { 0xff, 0x01 },
Hans de Goede635118d2009-10-11 09:49:03 -03001335};
1336
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001337static const struct ov_i2c_regvals norm_6x20[] = {
1338 { 0x12, 0x80 }, /* reset */
1339 { 0x11, 0x01 },
1340 { 0x03, 0x60 },
1341 { 0x05, 0x7f }, /* For when autoadjust is off */
1342 { 0x07, 0xa8 },
Jean-François Moine87bae742010-11-12 05:31:34 -03001343 /* The ratio of 0x0c and 0x0d controls the white point */
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001344 { 0x0c, 0x24 },
1345 { 0x0d, 0x24 },
1346 { 0x0f, 0x15 }, /* COMS */
1347 { 0x10, 0x75 }, /* AEC Exposure time */
1348 { 0x12, 0x24 }, /* Enable AGC */
1349 { 0x14, 0x04 },
1350 /* 0x16: 0x06 helps frame stability with moving objects */
1351 { 0x16, 0x06 },
1352/* { 0x20, 0x30 }, * Aperture correction enable */
1353 { 0x26, 0xb2 }, /* BLC enable */
1354 /* 0x28: 0x05 Selects RGB format if RGB on */
1355 { 0x28, 0x05 },
1356 { 0x2a, 0x04 }, /* Disable framerate adjust */
1357/* { 0x2b, 0xac }, * Framerate; Set 2a[7] first */
Hans de Goedeae49c402009-06-14 19:15:07 -03001358 { 0x2d, 0x85 },
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001359 { 0x33, 0xa0 }, /* Color Processing Parameter */
1360 { 0x34, 0xd2 }, /* Max A/D range */
1361 { 0x38, 0x8b },
1362 { 0x39, 0x40 },
1363
1364 { 0x3c, 0x39 }, /* Enable AEC mode changing */
1365 { 0x3c, 0x3c }, /* Change AEC mode */
1366 { 0x3c, 0x24 }, /* Disable AEC mode changing */
1367
1368 { 0x3d, 0x80 },
1369 /* These next two registers (0x4a, 0x4b) are undocumented.
1370 * They control the color balance */
1371 { 0x4a, 0x80 },
1372 { 0x4b, 0x80 },
1373 { 0x4d, 0xd2 }, /* This reduces noise a bit */
1374 { 0x4e, 0xc1 },
1375 { 0x4f, 0x04 },
1376/* Do 50-53 have any effect? */
1377/* Toggle 0x12[2] off and on here? */
1378};
1379
1380static const struct ov_i2c_regvals norm_6x30[] = {
1381 { 0x12, 0x80 }, /* Reset */
1382 { 0x00, 0x1f }, /* Gain */
1383 { 0x01, 0x99 }, /* Blue gain */
1384 { 0x02, 0x7c }, /* Red gain */
1385 { 0x03, 0xc0 }, /* Saturation */
1386 { 0x05, 0x0a }, /* Contrast */
1387 { 0x06, 0x95 }, /* Brightness */
1388 { 0x07, 0x2d }, /* Sharpness */
1389 { 0x0c, 0x20 },
1390 { 0x0d, 0x20 },
Hans de Goede02ab18b2009-06-14 04:32:04 -03001391 { 0x0e, 0xa0 }, /* Was 0x20, bit7 enables a 2x gain which we need */
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001392 { 0x0f, 0x05 },
1393 { 0x10, 0x9a },
1394 { 0x11, 0x00 }, /* Pixel clock = fastest */
1395 { 0x12, 0x24 }, /* Enable AGC and AWB */
1396 { 0x13, 0x21 },
1397 { 0x14, 0x80 },
1398 { 0x15, 0x01 },
1399 { 0x16, 0x03 },
1400 { 0x17, 0x38 },
1401 { 0x18, 0xea },
1402 { 0x19, 0x04 },
1403 { 0x1a, 0x93 },
1404 { 0x1b, 0x00 },
1405 { 0x1e, 0xc4 },
1406 { 0x1f, 0x04 },
1407 { 0x20, 0x20 },
1408 { 0x21, 0x10 },
1409 { 0x22, 0x88 },
1410 { 0x23, 0xc0 }, /* Crystal circuit power level */
1411 { 0x25, 0x9a }, /* Increase AEC black ratio */
1412 { 0x26, 0xb2 }, /* BLC enable */
1413 { 0x27, 0xa2 },
1414 { 0x28, 0x00 },
1415 { 0x29, 0x00 },
1416 { 0x2a, 0x84 }, /* 60 Hz power */
1417 { 0x2b, 0xa8 }, /* 60 Hz power */
1418 { 0x2c, 0xa0 },
1419 { 0x2d, 0x95 }, /* Enable auto-brightness */
1420 { 0x2e, 0x88 },
1421 { 0x33, 0x26 },
1422 { 0x34, 0x03 },
1423 { 0x36, 0x8f },
1424 { 0x37, 0x80 },
1425 { 0x38, 0x83 },
1426 { 0x39, 0x80 },
1427 { 0x3a, 0x0f },
1428 { 0x3b, 0x3c },
1429 { 0x3c, 0x1a },
1430 { 0x3d, 0x80 },
1431 { 0x3e, 0x80 },
1432 { 0x3f, 0x0e },
1433 { 0x40, 0x00 }, /* White bal */
1434 { 0x41, 0x00 }, /* White bal */
1435 { 0x42, 0x80 },
1436 { 0x43, 0x3f }, /* White bal */
1437 { 0x44, 0x80 },
1438 { 0x45, 0x20 },
1439 { 0x46, 0x20 },
1440 { 0x47, 0x80 },
1441 { 0x48, 0x7f },
1442 { 0x49, 0x00 },
1443 { 0x4a, 0x00 },
1444 { 0x4b, 0x80 },
1445 { 0x4c, 0xd0 },
1446 { 0x4d, 0x10 }, /* U = 0.563u, V = 0.714v */
1447 { 0x4e, 0x40 },
1448 { 0x4f, 0x07 }, /* UV avg., col. killer: max */
1449 { 0x50, 0xff },
1450 { 0x54, 0x23 }, /* Max AGC gain: 18dB */
1451 { 0x55, 0xff },
1452 { 0x56, 0x12 },
1453 { 0x57, 0x81 },
1454 { 0x58, 0x75 },
1455 { 0x59, 0x01 }, /* AGC dark current comp.: +1 */
1456 { 0x5a, 0x2c },
1457 { 0x5b, 0x0f }, /* AWB chrominance levels */
1458 { 0x5c, 0x10 },
1459 { 0x3d, 0x80 },
1460 { 0x27, 0xa6 },
1461 { 0x12, 0x20 }, /* Toggle AWB */
1462 { 0x12, 0x24 },
1463};
1464
1465/* Lawrence Glaister <lg@jfm.bc.ca> reports:
1466 *
1467 * Register 0x0f in the 7610 has the following effects:
1468 *
1469 * 0x85 (AEC method 1): Best overall, good contrast range
1470 * 0x45 (AEC method 2): Very overexposed
1471 * 0xa5 (spec sheet default): Ok, but the black level is
1472 * shifted resulting in loss of contrast
1473 * 0x05 (old driver setting): very overexposed, too much
1474 * contrast
1475 */
1476static const struct ov_i2c_regvals norm_7610[] = {
1477 { 0x10, 0xff },
1478 { 0x16, 0x06 },
1479 { 0x28, 0x24 },
1480 { 0x2b, 0xac },
1481 { 0x12, 0x00 },
1482 { 0x38, 0x81 },
1483 { 0x28, 0x24 }, /* 0c */
1484 { 0x0f, 0x85 }, /* lg's setting */
1485 { 0x15, 0x01 },
1486 { 0x20, 0x1c },
1487 { 0x23, 0x2a },
1488 { 0x24, 0x10 },
1489 { 0x25, 0x8a },
1490 { 0x26, 0xa2 },
1491 { 0x27, 0xc2 },
1492 { 0x2a, 0x04 },
1493 { 0x2c, 0xfe },
1494 { 0x2d, 0x93 },
1495 { 0x30, 0x71 },
1496 { 0x31, 0x60 },
1497 { 0x32, 0x26 },
1498 { 0x33, 0x20 },
1499 { 0x34, 0x48 },
1500 { 0x12, 0x24 },
1501 { 0x11, 0x01 },
1502 { 0x0c, 0x24 },
1503 { 0x0d, 0x24 },
1504};
1505
1506static const struct ov_i2c_regvals norm_7620[] = {
Hans de Goedea511ba92009-10-16 07:13:07 -03001507 { 0x12, 0x80 }, /* reset */
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001508 { 0x00, 0x00 }, /* gain */
1509 { 0x01, 0x80 }, /* blue gain */
1510 { 0x02, 0x80 }, /* red gain */
Jean-François Moine21867802010-11-12 06:12:09 -03001511 { 0x03, 0xc0 }, /* OV7670_R03_VREF */
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001512 { 0x06, 0x60 },
1513 { 0x07, 0x00 },
1514 { 0x0c, 0x24 },
1515 { 0x0c, 0x24 },
1516 { 0x0d, 0x24 },
1517 { 0x11, 0x01 },
1518 { 0x12, 0x24 },
1519 { 0x13, 0x01 },
1520 { 0x14, 0x84 },
1521 { 0x15, 0x01 },
1522 { 0x16, 0x03 },
1523 { 0x17, 0x2f },
1524 { 0x18, 0xcf },
1525 { 0x19, 0x06 },
1526 { 0x1a, 0xf5 },
1527 { 0x1b, 0x00 },
1528 { 0x20, 0x18 },
1529 { 0x21, 0x80 },
1530 { 0x22, 0x80 },
1531 { 0x23, 0x00 },
1532 { 0x26, 0xa2 },
1533 { 0x27, 0xea },
Hans de Goedeb282d872009-06-14 19:10:40 -03001534 { 0x28, 0x22 }, /* Was 0x20, bit1 enables a 2x gain which we need */
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001535 { 0x29, 0x00 },
1536 { 0x2a, 0x10 },
1537 { 0x2b, 0x00 },
1538 { 0x2c, 0x88 },
1539 { 0x2d, 0x91 },
1540 { 0x2e, 0x80 },
1541 { 0x2f, 0x44 },
1542 { 0x60, 0x27 },
1543 { 0x61, 0x02 },
1544 { 0x62, 0x5f },
1545 { 0x63, 0xd5 },
1546 { 0x64, 0x57 },
1547 { 0x65, 0x83 },
1548 { 0x66, 0x55 },
1549 { 0x67, 0x92 },
1550 { 0x68, 0xcf },
1551 { 0x69, 0x76 },
1552 { 0x6a, 0x22 },
1553 { 0x6b, 0x00 },
1554 { 0x6c, 0x02 },
1555 { 0x6d, 0x44 },
1556 { 0x6e, 0x80 },
1557 { 0x6f, 0x1d },
1558 { 0x70, 0x8b },
1559 { 0x71, 0x00 },
1560 { 0x72, 0x14 },
1561 { 0x73, 0x54 },
1562 { 0x74, 0x00 },
1563 { 0x75, 0x8e },
1564 { 0x76, 0x00 },
1565 { 0x77, 0xff },
1566 { 0x78, 0x80 },
1567 { 0x79, 0x80 },
1568 { 0x7a, 0x80 },
1569 { 0x7b, 0xe2 },
1570 { 0x7c, 0x00 },
1571};
1572
1573/* 7640 and 7648. The defaults should be OK for most registers. */
1574static const struct ov_i2c_regvals norm_7640[] = {
1575 { 0x12, 0x80 },
1576 { 0x12, 0x14 },
1577};
1578
1579/* 7670. Defaults taken from OmniVision provided data,
1580* as provided by Jonathan Corbet of OLPC */
1581static const struct ov_i2c_regvals norm_7670[] = {
Jean-François Moine21867802010-11-12 06:12:09 -03001582 { OV7670_R12_COM7, OV7670_COM7_RESET },
1583 { OV7670_R3A_TSLB, 0x04 }, /* OV */
1584 { OV7670_R12_COM7, OV7670_COM7_FMT_VGA }, /* VGA */
1585 { OV7670_R11_CLKRC, 0x01 },
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001586/*
1587 * Set the hardware window. These values from OV don't entirely
1588 * make sense - hstop is less than hstart. But they work...
1589 */
Jean-François Moine21867802010-11-12 06:12:09 -03001590 { OV7670_R17_HSTART, 0x13 },
1591 { OV7670_R18_HSTOP, 0x01 },
1592 { OV7670_R32_HREF, 0xb6 },
1593 { OV7670_R19_VSTART, 0x02 },
1594 { OV7670_R1A_VSTOP, 0x7a },
1595 { OV7670_R03_VREF, 0x0a },
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001596
Jean-François Moine21867802010-11-12 06:12:09 -03001597 { OV7670_R0C_COM3, 0x00 },
1598 { OV7670_R3E_COM14, 0x00 },
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001599/* Mystery scaling numbers */
1600 { 0x70, 0x3a },
1601 { 0x71, 0x35 },
1602 { 0x72, 0x11 },
1603 { 0x73, 0xf0 },
1604 { 0xa2, 0x02 },
Jean-François Moine21867802010-11-12 06:12:09 -03001605/* { OV7670_R15_COM10, 0x0 }, */
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001606
1607/* Gamma curve values */
1608 { 0x7a, 0x20 },
1609 { 0x7b, 0x10 },
1610 { 0x7c, 0x1e },
1611 { 0x7d, 0x35 },
1612 { 0x7e, 0x5a },
1613 { 0x7f, 0x69 },
1614 { 0x80, 0x76 },
1615 { 0x81, 0x80 },
1616 { 0x82, 0x88 },
1617 { 0x83, 0x8f },
1618 { 0x84, 0x96 },
1619 { 0x85, 0xa3 },
1620 { 0x86, 0xaf },
1621 { 0x87, 0xc4 },
1622 { 0x88, 0xd7 },
1623 { 0x89, 0xe8 },
1624
1625/* AGC and AEC parameters. Note we start by disabling those features,
1626 then turn them only after tweaking the values. */
Jean-François Moine21867802010-11-12 06:12:09 -03001627 { OV7670_R13_COM8, OV7670_COM8_FASTAEC
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001628 | OV7670_COM8_AECSTEP
1629 | OV7670_COM8_BFILT },
Jean-François Moine21867802010-11-12 06:12:09 -03001630 { OV7670_R00_GAIN, 0x00 },
1631 { OV7670_R10_AECH, 0x00 },
1632 { OV7670_R0D_COM4, 0x40 }, /* magic reserved bit */
1633 { OV7670_R14_COM9, 0x18 }, /* 4x gain + magic rsvd bit */
1634 { OV7670_RA5_BD50MAX, 0x05 },
1635 { OV7670_RAB_BD60MAX, 0x07 },
1636 { OV7670_R24_AEW, 0x95 },
1637 { OV7670_R25_AEB, 0x33 },
1638 { OV7670_R26_VPT, 0xe3 },
1639 { OV7670_R9F_HAECC1, 0x78 },
1640 { OV7670_RA0_HAECC2, 0x68 },
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001641 { 0xa1, 0x03 }, /* magic */
Jean-François Moine21867802010-11-12 06:12:09 -03001642 { OV7670_RA6_HAECC3, 0xd8 },
1643 { OV7670_RA7_HAECC4, 0xd8 },
1644 { OV7670_RA8_HAECC5, 0xf0 },
1645 { OV7670_RA9_HAECC6, 0x90 },
1646 { OV7670_RAA_HAECC7, 0x94 },
1647 { OV7670_R13_COM8, OV7670_COM8_FASTAEC
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001648 | OV7670_COM8_AECSTEP
1649 | OV7670_COM8_BFILT
1650 | OV7670_COM8_AGC
1651 | OV7670_COM8_AEC },
1652
1653/* Almost all of these are magic "reserved" values. */
Jean-François Moine21867802010-11-12 06:12:09 -03001654 { OV7670_R0E_COM5, 0x61 },
1655 { OV7670_R0F_COM6, 0x4b },
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001656 { 0x16, 0x02 },
Jean-François Moine21867802010-11-12 06:12:09 -03001657 { OV7670_R1E_MVFP, 0x07 },
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001658 { 0x21, 0x02 },
1659 { 0x22, 0x91 },
1660 { 0x29, 0x07 },
1661 { 0x33, 0x0b },
1662 { 0x35, 0x0b },
1663 { 0x37, 0x1d },
1664 { 0x38, 0x71 },
1665 { 0x39, 0x2a },
Jean-François Moine21867802010-11-12 06:12:09 -03001666 { OV7670_R3C_COM12, 0x78 },
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001667 { 0x4d, 0x40 },
1668 { 0x4e, 0x20 },
Jean-François Moine21867802010-11-12 06:12:09 -03001669 { OV7670_R69_GFIX, 0x00 },
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001670 { 0x6b, 0x4a },
1671 { 0x74, 0x10 },
1672 { 0x8d, 0x4f },
Jean-Francois Moineac40b1f2008-11-08 06:03:37 -03001673 { 0x8e, 0x00 },
1674 { 0x8f, 0x00 },
1675 { 0x90, 0x00 },
1676 { 0x91, 0x00 },
1677 { 0x96, 0x00 },
1678 { 0x9a, 0x00 },
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001679 { 0xb0, 0x84 },
1680 { 0xb1, 0x0c },
1681 { 0xb2, 0x0e },
1682 { 0xb3, 0x82 },
1683 { 0xb8, 0x0a },
1684
1685/* More reserved magic, some of which tweaks white balance */
1686 { 0x43, 0x0a },
1687 { 0x44, 0xf0 },
1688 { 0x45, 0x34 },
1689 { 0x46, 0x58 },
1690 { 0x47, 0x28 },
1691 { 0x48, 0x3a },
1692 { 0x59, 0x88 },
1693 { 0x5a, 0x88 },
1694 { 0x5b, 0x44 },
1695 { 0x5c, 0x67 },
1696 { 0x5d, 0x49 },
1697 { 0x5e, 0x0e },
1698 { 0x6c, 0x0a },
1699 { 0x6d, 0x55 },
1700 { 0x6e, 0x11 },
1701 { 0x6f, 0x9f },
1702 /* "9e for advance AWB" */
1703 { 0x6a, 0x40 },
Jean-François Moine21867802010-11-12 06:12:09 -03001704 { OV7670_R01_BLUE, 0x40 },
1705 { OV7670_R02_RED, 0x60 },
1706 { OV7670_R13_COM8, OV7670_COM8_FASTAEC
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001707 | OV7670_COM8_AECSTEP
1708 | OV7670_COM8_BFILT
1709 | OV7670_COM8_AGC
1710 | OV7670_COM8_AEC
1711 | OV7670_COM8_AWB },
1712
1713/* Matrix coefficients */
1714 { 0x4f, 0x80 },
1715 { 0x50, 0x80 },
Jean-Francois Moineac40b1f2008-11-08 06:03:37 -03001716 { 0x51, 0x00 },
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001717 { 0x52, 0x22 },
1718 { 0x53, 0x5e },
1719 { 0x54, 0x80 },
1720 { 0x58, 0x9e },
1721
Jean-François Moine21867802010-11-12 06:12:09 -03001722 { OV7670_R41_COM16, OV7670_COM16_AWBGAIN },
1723 { OV7670_R3F_EDGE, 0x00 },
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001724 { 0x75, 0x05 },
1725 { 0x76, 0xe1 },
Jean-Francois Moineac40b1f2008-11-08 06:03:37 -03001726 { 0x4c, 0x00 },
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001727 { 0x77, 0x01 },
Jean-François Moine21867802010-11-12 06:12:09 -03001728 { OV7670_R3D_COM13, OV7670_COM13_GAMMA
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001729 | OV7670_COM13_UVSAT
1730 | 2}, /* was 3 */
1731 { 0x4b, 0x09 },
1732 { 0xc9, 0x60 },
Jean-François Moine21867802010-11-12 06:12:09 -03001733 { OV7670_R41_COM16, 0x38 },
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001734 { 0x56, 0x40 },
1735
1736 { 0x34, 0x11 },
Jean-François Moine21867802010-11-12 06:12:09 -03001737 { OV7670_R3B_COM11, OV7670_COM11_EXP|OV7670_COM11_HZAUTO },
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001738 { 0xa4, 0x88 },
Jean-Francois Moineac40b1f2008-11-08 06:03:37 -03001739 { 0x96, 0x00 },
Jean-Francois Moine4202f712008-09-03 17:12:15 -03001740 { 0x97, 0x30 },
1741 { 0x98, 0x20 },
1742 { 0x99, 0x30 },
1743 { 0x9a, 0x84 },
1744 { 0x9b, 0x29 },
1745 { 0x9c, 0x03 },
1746 { 0x9d, 0x4c },
1747 { 0x9e, 0x3f },
1748 { 0x78, 0x04 },
1749
1750/* Extra-weird stuff. Some sort of multiplexor register */
1751 { 0x79, 0x01 },
1752 { 0xc8, 0xf0 },
1753 { 0x79, 0x0f },
1754 { 0xc8, 0x00 },
1755 { 0x79, 0x10 },
1756 { 0xc8, 0x7e },
1757 { 0x79, 0x0a },
1758 { 0xc8, 0x80 },
1759 { 0x79, 0x0b },
1760 { 0xc8, 0x01 },
1761 { 0x79, 0x0c },
1762 { 0xc8, 0x0f },
1763 { 0x79, 0x0d },
1764 { 0xc8, 0x20 },
1765 { 0x79, 0x09 },
1766 { 0xc8, 0x80 },
1767 { 0x79, 0x02 },
1768 { 0xc8, 0xc0 },
1769 { 0x79, 0x03 },
1770 { 0xc8, 0x40 },
1771 { 0x79, 0x05 },
1772 { 0xc8, 0x30 },
1773 { 0x79, 0x26 },
1774};
1775
1776static const struct ov_i2c_regvals norm_8610[] = {
1777 { 0x12, 0x80 },
1778 { 0x00, 0x00 },
1779 { 0x01, 0x80 },
1780 { 0x02, 0x80 },
1781 { 0x03, 0xc0 },
1782 { 0x04, 0x30 },
1783 { 0x05, 0x30 }, /* was 0x10, new from windrv 090403 */
1784 { 0x06, 0x70 }, /* was 0x80, new from windrv 090403 */
1785 { 0x0a, 0x86 },
1786 { 0x0b, 0xb0 },
1787 { 0x0c, 0x20 },
1788 { 0x0d, 0x20 },
1789 { 0x11, 0x01 },
1790 { 0x12, 0x25 },
1791 { 0x13, 0x01 },
1792 { 0x14, 0x04 },
1793 { 0x15, 0x01 }, /* Lin and Win think different about UV order */
1794 { 0x16, 0x03 },
1795 { 0x17, 0x38 }, /* was 0x2f, new from windrv 090403 */
1796 { 0x18, 0xea }, /* was 0xcf, new from windrv 090403 */
1797 { 0x19, 0x02 }, /* was 0x06, new from windrv 090403 */
1798 { 0x1a, 0xf5 },
1799 { 0x1b, 0x00 },
1800 { 0x20, 0xd0 }, /* was 0x90, new from windrv 090403 */
1801 { 0x23, 0xc0 }, /* was 0x00, new from windrv 090403 */
1802 { 0x24, 0x30 }, /* was 0x1d, new from windrv 090403 */
1803 { 0x25, 0x50 }, /* was 0x57, new from windrv 090403 */
1804 { 0x26, 0xa2 },
1805 { 0x27, 0xea },
1806 { 0x28, 0x00 },
1807 { 0x29, 0x00 },
1808 { 0x2a, 0x80 },
1809 { 0x2b, 0xc8 }, /* was 0xcc, new from windrv 090403 */
1810 { 0x2c, 0xac },
1811 { 0x2d, 0x45 }, /* was 0xd5, new from windrv 090403 */
1812 { 0x2e, 0x80 },
1813 { 0x2f, 0x14 }, /* was 0x01, new from windrv 090403 */
1814 { 0x4c, 0x00 },
1815 { 0x4d, 0x30 }, /* was 0x10, new from windrv 090403 */
1816 { 0x60, 0x02 }, /* was 0x01, new from windrv 090403 */
1817 { 0x61, 0x00 }, /* was 0x09, new from windrv 090403 */
1818 { 0x62, 0x5f }, /* was 0xd7, new from windrv 090403 */
1819 { 0x63, 0xff },
1820 { 0x64, 0x53 }, /* new windrv 090403 says 0x57,
1821 * maybe thats wrong */
1822 { 0x65, 0x00 },
1823 { 0x66, 0x55 },
1824 { 0x67, 0xb0 },
1825 { 0x68, 0xc0 }, /* was 0xaf, new from windrv 090403 */
1826 { 0x69, 0x02 },
1827 { 0x6a, 0x22 },
1828 { 0x6b, 0x00 },
1829 { 0x6c, 0x99 }, /* was 0x80, old windrv says 0x00, but
1830 * deleting bit7 colors the first images red */
1831 { 0x6d, 0x11 }, /* was 0x00, new from windrv 090403 */
1832 { 0x6e, 0x11 }, /* was 0x00, new from windrv 090403 */
1833 { 0x6f, 0x01 },
1834 { 0x70, 0x8b },
1835 { 0x71, 0x00 },
1836 { 0x72, 0x14 },
1837 { 0x73, 0x54 },
1838 { 0x74, 0x00 },/* 0x60? - was 0x00, new from windrv 090403 */
1839 { 0x75, 0x0e },
1840 { 0x76, 0x02 }, /* was 0x02, new from windrv 090403 */
1841 { 0x77, 0xff },
1842 { 0x78, 0x80 },
1843 { 0x79, 0x80 },
1844 { 0x7a, 0x80 },
1845 { 0x7b, 0x10 }, /* was 0x13, new from windrv 090403 */
1846 { 0x7c, 0x00 },
1847 { 0x7d, 0x08 }, /* was 0x09, new from windrv 090403 */
1848 { 0x7e, 0x08 }, /* was 0xc0, new from windrv 090403 */
1849 { 0x7f, 0xfb },
1850 { 0x80, 0x28 },
1851 { 0x81, 0x00 },
1852 { 0x82, 0x23 },
1853 { 0x83, 0x0b },
1854 { 0x84, 0x00 },
1855 { 0x85, 0x62 }, /* was 0x61, new from windrv 090403 */
1856 { 0x86, 0xc9 },
1857 { 0x87, 0x00 },
1858 { 0x88, 0x00 },
1859 { 0x89, 0x01 },
1860 { 0x12, 0x20 },
1861 { 0x12, 0x25 }, /* was 0x24, new from windrv 090403 */
1862};
1863
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03001864static unsigned char ov7670_abs_to_sm(unsigned char v)
1865{
1866 if (v > 127)
1867 return v & 0x7f;
1868 return (128 - v) | 0x80;
1869}
1870
1871/* Write a OV519 register */
Jean-François Moinef8f20182010-11-12 07:54:02 -03001872static void reg_w(struct sd *sd, u16 index, u16 value)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03001873{
Hans de Goedea511ba92009-10-16 07:13:07 -03001874 int ret, req = 0;
Hans de Goedeb46aaa02009-10-12 10:07:57 -03001875
Jean-François Moinef8f20182010-11-12 07:54:02 -03001876 if (sd->gspca_dev.usb_err < 0)
1877 return;
1878
Hans de Goedeb46aaa02009-10-12 10:07:57 -03001879 switch (sd->bridge) {
1880 case BRIDGE_OV511:
1881 case BRIDGE_OV511PLUS:
1882 req = 2;
1883 break;
1884 case BRIDGE_OVFX2:
Hans de Goedea511ba92009-10-16 07:13:07 -03001885 req = 0x0a;
1886 /* fall through */
1887 case BRIDGE_W9968CF:
Jean-François Moine858ea5e2010-11-12 13:53:10 -03001888 PDEBUG(D_USBO, "SET %02x %04x %04x",
1889 req, value, index);
Hans de Goedeb46aaa02009-10-12 10:07:57 -03001890 ret = usb_control_msg(sd->gspca_dev.dev,
1891 usb_sndctrlpipe(sd->gspca_dev.dev, 0),
Hans de Goedea511ba92009-10-16 07:13:07 -03001892 req,
Hans de Goedeb46aaa02009-10-12 10:07:57 -03001893 USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
Hans de Goedea511ba92009-10-16 07:13:07 -03001894 value, index, NULL, 0, 500);
Hans de Goedeb46aaa02009-10-12 10:07:57 -03001895 goto leave;
1896 default:
1897 req = 1;
1898 }
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03001899
Jean-François Moine858ea5e2010-11-12 13:53:10 -03001900 PDEBUG(D_USBO, "SET %02x 0000 %04x %02x",
1901 req, index, value);
Jean-Francois Moine739570b2008-07-14 09:38:29 -03001902 sd->gspca_dev.usb_buf[0] = value;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03001903 ret = usb_control_msg(sd->gspca_dev.dev,
1904 usb_sndctrlpipe(sd->gspca_dev.dev, 0),
Hans de Goede49809d62009-06-07 12:10:39 -03001905 req,
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03001906 USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
1907 0, index,
Jean-Francois Moine739570b2008-07-14 09:38:29 -03001908 sd->gspca_dev.usb_buf, 1, 500);
Hans de Goedeb46aaa02009-10-12 10:07:57 -03001909leave:
Hans de Goedea511ba92009-10-16 07:13:07 -03001910 if (ret < 0) {
Jean-François Moine858ea5e2010-11-12 13:53:10 -03001911 err("reg_w %02x failed %d", index, ret);
Jean-François Moinef8f20182010-11-12 07:54:02 -03001912 sd->gspca_dev.usb_err = ret;
1913 return;
Hans de Goedea511ba92009-10-16 07:13:07 -03001914 }
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03001915}
1916
Hans de Goedea511ba92009-10-16 07:13:07 -03001917/* Read from a OV519 register, note not valid for the w9968cf!! */
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03001918/* returns: negative is error, pos or zero is data */
Jean-François Moine9d1593a2010-11-11 08:04:06 -03001919static int reg_r(struct sd *sd, u16 index)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03001920{
1921 int ret;
Hans de Goedeb46aaa02009-10-12 10:07:57 -03001922 int req;
1923
Jean-François Moinef8f20182010-11-12 07:54:02 -03001924 if (sd->gspca_dev.usb_err < 0)
1925 return -1;
1926
Hans de Goedeb46aaa02009-10-12 10:07:57 -03001927 switch (sd->bridge) {
1928 case BRIDGE_OV511:
1929 case BRIDGE_OV511PLUS:
1930 req = 3;
1931 break;
1932 case BRIDGE_OVFX2:
1933 req = 0x0b;
1934 break;
1935 default:
1936 req = 1;
1937 }
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03001938
1939 ret = usb_control_msg(sd->gspca_dev.dev,
1940 usb_rcvctrlpipe(sd->gspca_dev.dev, 0),
Hans de Goede49809d62009-06-07 12:10:39 -03001941 req,
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03001942 USB_DIR_IN | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
Jean-Francois Moine739570b2008-07-14 09:38:29 -03001943 0, index, sd->gspca_dev.usb_buf, 1, 500);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03001944
Hans de Goedea511ba92009-10-16 07:13:07 -03001945 if (ret >= 0) {
Jean-Francois Moine739570b2008-07-14 09:38:29 -03001946 ret = sd->gspca_dev.usb_buf[0];
Jean-François Moine858ea5e2010-11-12 13:53:10 -03001947 PDEBUG(D_USBI, "GET %02x 0000 %04x %02x",
1948 req, index, ret);
Jean-François Moinef8f20182010-11-12 07:54:02 -03001949 } else {
Jean-François Moine858ea5e2010-11-12 13:53:10 -03001950 err("reg_r %02x failed %d", index, ret);
Jean-François Moinef8f20182010-11-12 07:54:02 -03001951 sd->gspca_dev.usb_err = ret;
1952 }
Hans de Goedea511ba92009-10-16 07:13:07 -03001953
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03001954 return ret;
1955}
1956
1957/* Read 8 values from a OV519 register */
1958static int reg_r8(struct sd *sd,
Jean-François Moine9d1593a2010-11-11 08:04:06 -03001959 u16 index)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03001960{
1961 int ret;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03001962
Jean-François Moinef8f20182010-11-12 07:54:02 -03001963 if (sd->gspca_dev.usb_err < 0)
1964 return -1;
1965
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03001966 ret = usb_control_msg(sd->gspca_dev.dev,
1967 usb_rcvctrlpipe(sd->gspca_dev.dev, 0),
1968 1, /* REQ_IO */
1969 USB_DIR_IN | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
Jean-Francois Moine739570b2008-07-14 09:38:29 -03001970 0, index, sd->gspca_dev.usb_buf, 8, 500);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03001971
Jean-François Moinef8f20182010-11-12 07:54:02 -03001972 if (ret >= 0) {
Jean-Francois Moine739570b2008-07-14 09:38:29 -03001973 ret = sd->gspca_dev.usb_buf[0];
Jean-François Moinef8f20182010-11-12 07:54:02 -03001974 } else {
Jean-François Moine858ea5e2010-11-12 13:53:10 -03001975 err("reg_r8 %02x failed %d", index, ret);
Jean-François Moinef8f20182010-11-12 07:54:02 -03001976 sd->gspca_dev.usb_err = ret;
1977 }
Hans de Goedea511ba92009-10-16 07:13:07 -03001978
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03001979 return ret;
1980}
1981
1982/*
1983 * Writes bits at positions specified by mask to an OV51x reg. Bits that are in
1984 * the same position as 1's in "mask" are cleared and set to "value". Bits
1985 * that are in the same position as 0's in "mask" are preserved, regardless
1986 * of their respective state in "value".
1987 */
Jean-François Moinef8f20182010-11-12 07:54:02 -03001988static void reg_w_mask(struct sd *sd,
Jean-François Moine9d1593a2010-11-11 08:04:06 -03001989 u16 index,
1990 u8 value,
1991 u8 mask)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03001992{
1993 int ret;
Jean-François Moine9d1593a2010-11-11 08:04:06 -03001994 u8 oldval;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03001995
1996 if (mask != 0xff) {
1997 value &= mask; /* Enforce mask on value */
1998 ret = reg_r(sd, index);
1999 if (ret < 0)
Jean-François Moinef8f20182010-11-12 07:54:02 -03002000 return;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002001
2002 oldval = ret & ~mask; /* Clear the masked bits */
2003 value |= oldval; /* Set the desired bits */
2004 }
Jean-François Moinef8f20182010-11-12 07:54:02 -03002005 reg_w(sd, index, value);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002006}
2007
2008/*
Hans de Goede49809d62009-06-07 12:10:39 -03002009 * Writes multiple (n) byte value to a single register. Only valid with certain
2010 * registers (0x30 and 0xc4 - 0xce).
2011 */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002012static void ov518_reg_w32(struct sd *sd, u16 index, u32 value, int n)
Hans de Goede49809d62009-06-07 12:10:39 -03002013{
2014 int ret;
2015
Jean-François Moinef8f20182010-11-12 07:54:02 -03002016 if (sd->gspca_dev.usb_err < 0)
2017 return;
2018
Jean-Francois Moine83955552009-12-12 06:58:01 -03002019 *((__le32 *) sd->gspca_dev.usb_buf) = __cpu_to_le32(value);
Hans de Goede49809d62009-06-07 12:10:39 -03002020
2021 ret = usb_control_msg(sd->gspca_dev.dev,
2022 usb_sndctrlpipe(sd->gspca_dev.dev, 0),
2023 1 /* REG_IO */,
2024 USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
2025 0, index,
2026 sd->gspca_dev.usb_buf, n, 500);
Hans de Goedea511ba92009-10-16 07:13:07 -03002027 if (ret < 0) {
Jean-François Moine858ea5e2010-11-12 13:53:10 -03002028 err("reg_w32 %02x failed %d", index, ret);
Jean-François Moinef8f20182010-11-12 07:54:02 -03002029 sd->gspca_dev.usb_err = ret;
Hans de Goedea511ba92009-10-16 07:13:07 -03002030 }
Hans de Goede49809d62009-06-07 12:10:39 -03002031}
2032
Jean-François Moinef8f20182010-11-12 07:54:02 -03002033static void ov511_i2c_w(struct sd *sd, u8 reg, u8 value)
Hans de Goede1876bb92009-06-14 06:45:50 -03002034{
2035 int rc, retries;
2036
Jean-François Moine858ea5e2010-11-12 13:53:10 -03002037 PDEBUG(D_USBO, "ov511_i2c_w %02x %02x", reg, value);
Hans de Goede1876bb92009-06-14 06:45:50 -03002038
2039 /* Three byte write cycle */
2040 for (retries = 6; ; ) {
2041 /* Select camera register */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002042 reg_w(sd, R51x_I2C_SADDR_3, reg);
Hans de Goede1876bb92009-06-14 06:45:50 -03002043
2044 /* Write "value" to I2C data port of OV511 */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002045 reg_w(sd, R51x_I2C_DATA, value);
Hans de Goede1876bb92009-06-14 06:45:50 -03002046
2047 /* Initiate 3-byte write cycle */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002048 reg_w(sd, R511_I2C_CTL, 0x01);
Hans de Goede1876bb92009-06-14 06:45:50 -03002049
Jean-Francois Moine83955552009-12-12 06:58:01 -03002050 do {
Hans de Goede1876bb92009-06-14 06:45:50 -03002051 rc = reg_r(sd, R511_I2C_CTL);
Jean-Francois Moine83955552009-12-12 06:58:01 -03002052 } while (rc > 0 && ((rc & 1) == 0)); /* Retry until idle */
Hans de Goede1876bb92009-06-14 06:45:50 -03002053
2054 if (rc < 0)
Jean-François Moinef8f20182010-11-12 07:54:02 -03002055 return;
Hans de Goede1876bb92009-06-14 06:45:50 -03002056
2057 if ((rc & 2) == 0) /* Ack? */
2058 break;
2059 if (--retries < 0) {
2060 PDEBUG(D_USBO, "i2c write retries exhausted");
Jean-François Moinef8f20182010-11-12 07:54:02 -03002061 return;
Hans de Goede1876bb92009-06-14 06:45:50 -03002062 }
2063 }
Hans de Goede1876bb92009-06-14 06:45:50 -03002064}
2065
Jean-François Moine9d1593a2010-11-11 08:04:06 -03002066static int ov511_i2c_r(struct sd *sd, u8 reg)
Hans de Goede1876bb92009-06-14 06:45:50 -03002067{
2068 int rc, value, retries;
2069
2070 /* Two byte write cycle */
2071 for (retries = 6; ; ) {
2072 /* Select camera register */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002073 reg_w(sd, R51x_I2C_SADDR_2, reg);
Hans de Goede1876bb92009-06-14 06:45:50 -03002074
2075 /* Initiate 2-byte write cycle */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002076 reg_w(sd, R511_I2C_CTL, 0x03);
Hans de Goede1876bb92009-06-14 06:45:50 -03002077
Jean-Francois Moine83955552009-12-12 06:58:01 -03002078 do {
Hans de Goede1876bb92009-06-14 06:45:50 -03002079 rc = reg_r(sd, R511_I2C_CTL);
Jean-Francois Moine83955552009-12-12 06:58:01 -03002080 } while (rc > 0 && ((rc & 1) == 0)); /* Retry until idle */
Hans de Goede1876bb92009-06-14 06:45:50 -03002081
2082 if (rc < 0)
2083 return rc;
2084
2085 if ((rc & 2) == 0) /* Ack? */
2086 break;
2087
2088 /* I2C abort */
2089 reg_w(sd, R511_I2C_CTL, 0x10);
2090
2091 if (--retries < 0) {
2092 PDEBUG(D_USBI, "i2c write retries exhausted");
2093 return -1;
2094 }
2095 }
2096
2097 /* Two byte read cycle */
2098 for (retries = 6; ; ) {
2099 /* Initiate 2-byte read cycle */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002100 reg_w(sd, R511_I2C_CTL, 0x05);
Hans de Goede1876bb92009-06-14 06:45:50 -03002101
Jean-Francois Moine83955552009-12-12 06:58:01 -03002102 do {
Hans de Goede1876bb92009-06-14 06:45:50 -03002103 rc = reg_r(sd, R511_I2C_CTL);
Jean-Francois Moine83955552009-12-12 06:58:01 -03002104 } while (rc > 0 && ((rc & 1) == 0)); /* Retry until idle */
Hans de Goede1876bb92009-06-14 06:45:50 -03002105
2106 if (rc < 0)
2107 return rc;
2108
2109 if ((rc & 2) == 0) /* Ack? */
2110 break;
2111
2112 /* I2C abort */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002113 reg_w(sd, R511_I2C_CTL, 0x10);
Hans de Goede1876bb92009-06-14 06:45:50 -03002114
2115 if (--retries < 0) {
2116 PDEBUG(D_USBI, "i2c read retries exhausted");
2117 return -1;
2118 }
2119 }
2120
2121 value = reg_r(sd, R51x_I2C_DATA);
2122
Jean-François Moine858ea5e2010-11-12 13:53:10 -03002123 PDEBUG(D_USBI, "ov511_i2c_r %02x %02x", reg, value);
Hans de Goede1876bb92009-06-14 06:45:50 -03002124
2125 /* This is needed to make i2c_w() work */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002126 reg_w(sd, R511_I2C_CTL, 0x05);
Hans de Goede1876bb92009-06-14 06:45:50 -03002127
2128 return value;
2129}
Hans de Goede49809d62009-06-07 12:10:39 -03002130
2131/*
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002132 * The OV518 I2C I/O procedure is different, hence, this function.
2133 * This is normally only called from i2c_w(). Note that this function
2134 * always succeeds regardless of whether the sensor is present and working.
2135 */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002136static void ov518_i2c_w(struct sd *sd,
Jean-François Moine9d1593a2010-11-11 08:04:06 -03002137 u8 reg,
2138 u8 value)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002139{
Jean-François Moine858ea5e2010-11-12 13:53:10 -03002140 PDEBUG(D_USBO, "ov518_i2c_w %02x %02x", reg, value);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002141
2142 /* Select camera register */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002143 reg_w(sd, R51x_I2C_SADDR_3, reg);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002144
2145 /* Write "value" to I2C data port of OV511 */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002146 reg_w(sd, R51x_I2C_DATA, value);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002147
2148 /* Initiate 3-byte write cycle */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002149 reg_w(sd, R518_I2C_CTL, 0x01);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002150
2151 /* wait for write complete */
2152 msleep(4);
Jean-François Moinef8f20182010-11-12 07:54:02 -03002153 reg_r8(sd, R518_I2C_CTL);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002154}
2155
2156/*
2157 * returns: negative is error, pos or zero is data
2158 *
2159 * The OV518 I2C I/O procedure is different, hence, this function.
2160 * This is normally only called from i2c_r(). Note that this function
2161 * always succeeds regardless of whether the sensor is present and working.
2162 */
Jean-François Moine9d1593a2010-11-11 08:04:06 -03002163static int ov518_i2c_r(struct sd *sd, u8 reg)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002164{
Jean-François Moinef8f20182010-11-12 07:54:02 -03002165 int value;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002166
2167 /* Select camera register */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002168 reg_w(sd, R51x_I2C_SADDR_2, reg);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002169
2170 /* Initiate 2-byte write cycle */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002171 reg_w(sd, R518_I2C_CTL, 0x03);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002172
2173 /* Initiate 2-byte read cycle */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002174 reg_w(sd, R518_I2C_CTL, 0x05);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002175 value = reg_r(sd, R51x_I2C_DATA);
Jean-François Moine858ea5e2010-11-12 13:53:10 -03002176 PDEBUG(D_USBI, "ov518_i2c_r %02x %02x", reg, value);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002177 return value;
2178}
2179
Jean-François Moinef8f20182010-11-12 07:54:02 -03002180static void ovfx2_i2c_w(struct sd *sd, u8 reg, u8 value)
Hans de Goedeb46aaa02009-10-12 10:07:57 -03002181{
2182 int ret;
2183
Jean-François Moinef8f20182010-11-12 07:54:02 -03002184 if (sd->gspca_dev.usb_err < 0)
2185 return;
2186
Hans de Goedeb46aaa02009-10-12 10:07:57 -03002187 ret = usb_control_msg(sd->gspca_dev.dev,
2188 usb_sndctrlpipe(sd->gspca_dev.dev, 0),
2189 0x02,
2190 USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
Jean-François Moine9d1593a2010-11-11 08:04:06 -03002191 (u16) value, (u16) reg, NULL, 0, 500);
Hans de Goedeb46aaa02009-10-12 10:07:57 -03002192
Hans de Goedea511ba92009-10-16 07:13:07 -03002193 if (ret < 0) {
Jean-François Moine858ea5e2010-11-12 13:53:10 -03002194 err("ovfx2_i2c_w %02x failed %d", reg, ret);
Jean-François Moinef8f20182010-11-12 07:54:02 -03002195 sd->gspca_dev.usb_err = ret;
Hans de Goedea511ba92009-10-16 07:13:07 -03002196 }
Hans de Goedeb46aaa02009-10-12 10:07:57 -03002197
Jean-François Moine858ea5e2010-11-12 13:53:10 -03002198 PDEBUG(D_USBO, "ovfx2_i2c_w %02x %02x", reg, value);
Hans de Goedeb46aaa02009-10-12 10:07:57 -03002199}
2200
Jean-François Moine9d1593a2010-11-11 08:04:06 -03002201static int ovfx2_i2c_r(struct sd *sd, u8 reg)
Hans de Goedeb46aaa02009-10-12 10:07:57 -03002202{
2203 int ret;
2204
Jean-François Moinef8f20182010-11-12 07:54:02 -03002205 if (sd->gspca_dev.usb_err < 0)
2206 return -1;
2207
Hans de Goedeb46aaa02009-10-12 10:07:57 -03002208 ret = usb_control_msg(sd->gspca_dev.dev,
2209 usb_rcvctrlpipe(sd->gspca_dev.dev, 0),
2210 0x03,
2211 USB_DIR_IN | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
Jean-François Moine9d1593a2010-11-11 08:04:06 -03002212 0, (u16) reg, sd->gspca_dev.usb_buf, 1, 500);
Hans de Goedeb46aaa02009-10-12 10:07:57 -03002213
2214 if (ret >= 0) {
2215 ret = sd->gspca_dev.usb_buf[0];
Jean-François Moine858ea5e2010-11-12 13:53:10 -03002216 PDEBUG(D_USBI, "ovfx2_i2c_r %02x %02x", reg, ret);
Jean-François Moinef8f20182010-11-12 07:54:02 -03002217 } else {
Jean-François Moine858ea5e2010-11-12 13:53:10 -03002218 err("ovfx2_i2c_r %02x failed %d", reg, ret);
Jean-François Moinef8f20182010-11-12 07:54:02 -03002219 sd->gspca_dev.usb_err = ret;
2220 }
Hans de Goedeb46aaa02009-10-12 10:07:57 -03002221
2222 return ret;
2223}
2224
Jean-François Moinef8f20182010-11-12 07:54:02 -03002225static void i2c_w(struct sd *sd, u8 reg, u8 value)
Hans de Goede1876bb92009-06-14 06:45:50 -03002226{
Hans de Goedefb1f9022009-10-16 07:42:53 -03002227 if (sd->sensor_reg_cache[reg] == value)
Jean-François Moinef8f20182010-11-12 07:54:02 -03002228 return;
Hans de Goedefb1f9022009-10-16 07:42:53 -03002229
Hans de Goede1876bb92009-06-14 06:45:50 -03002230 switch (sd->bridge) {
2231 case BRIDGE_OV511:
2232 case BRIDGE_OV511PLUS:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002233 ov511_i2c_w(sd, reg, value);
Hans de Goedefb1f9022009-10-16 07:42:53 -03002234 break;
Hans de Goede1876bb92009-06-14 06:45:50 -03002235 case BRIDGE_OV518:
2236 case BRIDGE_OV518PLUS:
2237 case BRIDGE_OV519:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002238 ov518_i2c_w(sd, reg, value);
Hans de Goedefb1f9022009-10-16 07:42:53 -03002239 break;
Hans de Goedeb46aaa02009-10-12 10:07:57 -03002240 case BRIDGE_OVFX2:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002241 ovfx2_i2c_w(sd, reg, value);
Hans de Goedefb1f9022009-10-16 07:42:53 -03002242 break;
Hans de Goedea511ba92009-10-16 07:13:07 -03002243 case BRIDGE_W9968CF:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002244 w9968cf_i2c_w(sd, reg, value);
Hans de Goedefb1f9022009-10-16 07:42:53 -03002245 break;
Hans de Goede1876bb92009-06-14 06:45:50 -03002246 }
Hans de Goedefb1f9022009-10-16 07:42:53 -03002247
Jean-François Moinef8f20182010-11-12 07:54:02 -03002248 if (sd->gspca_dev.usb_err >= 0) {
Hans de Goedefb1f9022009-10-16 07:42:53 -03002249 /* Up on sensor reset empty the register cache */
2250 if (reg == 0x12 && (value & 0x80))
2251 memset(sd->sensor_reg_cache, -1,
Jean-François Moine87bae742010-11-12 05:31:34 -03002252 sizeof(sd->sensor_reg_cache));
Hans de Goedefb1f9022009-10-16 07:42:53 -03002253 else
2254 sd->sensor_reg_cache[reg] = value;
2255 }
Hans de Goede1876bb92009-06-14 06:45:50 -03002256}
2257
Jean-François Moine9d1593a2010-11-11 08:04:06 -03002258static int i2c_r(struct sd *sd, u8 reg)
Hans de Goede1876bb92009-06-14 06:45:50 -03002259{
Hans de Goede8394bcf2009-10-16 11:26:22 -03002260 int ret = -1;
Hans de Goedefb1f9022009-10-16 07:42:53 -03002261
2262 if (sd->sensor_reg_cache[reg] != -1)
2263 return sd->sensor_reg_cache[reg];
2264
Hans de Goede1876bb92009-06-14 06:45:50 -03002265 switch (sd->bridge) {
2266 case BRIDGE_OV511:
2267 case BRIDGE_OV511PLUS:
Hans de Goedefb1f9022009-10-16 07:42:53 -03002268 ret = ov511_i2c_r(sd, reg);
2269 break;
Hans de Goede1876bb92009-06-14 06:45:50 -03002270 case BRIDGE_OV518:
2271 case BRIDGE_OV518PLUS:
2272 case BRIDGE_OV519:
Hans de Goedefb1f9022009-10-16 07:42:53 -03002273 ret = ov518_i2c_r(sd, reg);
2274 break;
Hans de Goedeb46aaa02009-10-12 10:07:57 -03002275 case BRIDGE_OVFX2:
Hans de Goedefb1f9022009-10-16 07:42:53 -03002276 ret = ovfx2_i2c_r(sd, reg);
2277 break;
Hans de Goedea511ba92009-10-16 07:13:07 -03002278 case BRIDGE_W9968CF:
Hans de Goedefb1f9022009-10-16 07:42:53 -03002279 ret = w9968cf_i2c_r(sd, reg);
2280 break;
Hans de Goede1876bb92009-06-14 06:45:50 -03002281 }
Hans de Goedefb1f9022009-10-16 07:42:53 -03002282
2283 if (ret >= 0)
2284 sd->sensor_reg_cache[reg] = ret;
2285
2286 return ret;
Hans de Goede1876bb92009-06-14 06:45:50 -03002287}
2288
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002289/* Writes bits at positions specified by mask to an I2C reg. Bits that are in
2290 * the same position as 1's in "mask" are cleared and set to "value". Bits
2291 * that are in the same position as 0's in "mask" are preserved, regardless
2292 * of their respective state in "value".
2293 */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002294static void i2c_w_mask(struct sd *sd,
Jean-François Moine9d1593a2010-11-11 08:04:06 -03002295 u8 reg,
2296 u8 value,
2297 u8 mask)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002298{
2299 int rc;
Jean-François Moine9d1593a2010-11-11 08:04:06 -03002300 u8 oldval;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002301
2302 value &= mask; /* Enforce mask on value */
2303 rc = i2c_r(sd, reg);
2304 if (rc < 0)
Jean-François Moinef8f20182010-11-12 07:54:02 -03002305 return;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002306 oldval = rc & ~mask; /* Clear the masked bits */
2307 value |= oldval; /* Set the desired bits */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002308 i2c_w(sd, reg, value);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002309}
2310
2311/* Temporarily stops OV511 from functioning. Must do this before changing
2312 * registers while the camera is streaming */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002313static inline void ov51x_stop(struct sd *sd)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002314{
2315 PDEBUG(D_STREAM, "stopping");
2316 sd->stopped = 1;
Hans de Goede49809d62009-06-07 12:10:39 -03002317 switch (sd->bridge) {
2318 case BRIDGE_OV511:
2319 case BRIDGE_OV511PLUS:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002320 reg_w(sd, R51x_SYS_RESET, 0x3d);
2321 break;
Hans de Goede49809d62009-06-07 12:10:39 -03002322 case BRIDGE_OV518:
2323 case BRIDGE_OV518PLUS:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002324 reg_w_mask(sd, R51x_SYS_RESET, 0x3a, 0x3a);
2325 break;
Hans de Goede49809d62009-06-07 12:10:39 -03002326 case BRIDGE_OV519:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002327 reg_w(sd, OV519_R51_RESET1, 0x0f);
2328 break;
Hans de Goedeb46aaa02009-10-12 10:07:57 -03002329 case BRIDGE_OVFX2:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002330 reg_w_mask(sd, 0x0f, 0x00, 0x02);
2331 break;
Hans de Goedea511ba92009-10-16 07:13:07 -03002332 case BRIDGE_W9968CF:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002333 reg_w(sd, 0x3c, 0x0a05); /* stop USB transfer */
2334 break;
Hans de Goede49809d62009-06-07 12:10:39 -03002335 }
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002336}
2337
2338/* Restarts OV511 after ov511_stop() is called. Has no effect if it is not
2339 * actually stopped (for performance). */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002340static inline void ov51x_restart(struct sd *sd)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002341{
2342 PDEBUG(D_STREAM, "restarting");
2343 if (!sd->stopped)
Jean-François Moinef8f20182010-11-12 07:54:02 -03002344 return;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002345 sd->stopped = 0;
2346
2347 /* Reinitialize the stream */
Hans de Goede49809d62009-06-07 12:10:39 -03002348 switch (sd->bridge) {
2349 case BRIDGE_OV511:
2350 case BRIDGE_OV511PLUS:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002351 reg_w(sd, R51x_SYS_RESET, 0x00);
2352 break;
Hans de Goede49809d62009-06-07 12:10:39 -03002353 case BRIDGE_OV518:
2354 case BRIDGE_OV518PLUS:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002355 reg_w(sd, 0x2f, 0x80);
2356 reg_w(sd, R51x_SYS_RESET, 0x00);
2357 break;
Hans de Goede49809d62009-06-07 12:10:39 -03002358 case BRIDGE_OV519:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002359 reg_w(sd, OV519_R51_RESET1, 0x00);
2360 break;
Hans de Goedeb46aaa02009-10-12 10:07:57 -03002361 case BRIDGE_OVFX2:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002362 reg_w_mask(sd, 0x0f, 0x02, 0x02);
2363 break;
Hans de Goedea511ba92009-10-16 07:13:07 -03002364 case BRIDGE_W9968CF:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002365 reg_w(sd, 0x3c, 0x8a05); /* USB FIFO enable */
2366 break;
Hans de Goede49809d62009-06-07 12:10:39 -03002367 }
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002368}
2369
Jean-François Moinef8f20182010-11-12 07:54:02 -03002370static void ov51x_set_slave_ids(struct sd *sd, u8 slave);
Hans de Goede229bb7d2009-10-11 07:41:46 -03002371
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002372/* This does an initial reset of an OmniVision sensor and ensures that I2C
2373 * is synchronized. Returns <0 on failure.
2374 */
Jean-François Moine9d1593a2010-11-11 08:04:06 -03002375static int init_ov_sensor(struct sd *sd, u8 slave)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002376{
Jean-Francois Moineac40b1f2008-11-08 06:03:37 -03002377 int i;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002378
Jean-François Moinef8f20182010-11-12 07:54:02 -03002379 ov51x_set_slave_ids(sd, slave);
Hans de Goede229bb7d2009-10-11 07:41:46 -03002380
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002381 /* Reset the sensor */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002382 i2c_w(sd, 0x12, 0x80);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002383
2384 /* Wait for it to initialize */
2385 msleep(150);
2386
Jean-Francois Moineac40b1f2008-11-08 06:03:37 -03002387 for (i = 0; i < i2c_detect_tries; i++) {
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002388 if (i2c_r(sd, OV7610_REG_ID_HIGH) == 0x7f &&
2389 i2c_r(sd, OV7610_REG_ID_LOW) == 0xa2) {
Jean-Francois Moineac40b1f2008-11-08 06:03:37 -03002390 PDEBUG(D_PROBE, "I2C synced in %d attempt(s)", i);
2391 return 0;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002392 }
2393
2394 /* Reset the sensor */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002395 i2c_w(sd, 0x12, 0x80);
2396
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002397 /* Wait for it to initialize */
2398 msleep(150);
Jean-François Moine87bae742010-11-12 05:31:34 -03002399
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002400 /* Dummy read to sync I2C */
2401 if (i2c_r(sd, 0x00) < 0)
Jean-François Moinef8f20182010-11-12 07:54:02 -03002402 return -1;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002403 }
Jean-François Moinef8f20182010-11-12 07:54:02 -03002404 return -1;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002405}
2406
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002407/* Set the read and write slave IDs. The "slave" argument is the write slave,
2408 * and the read slave will be set to (slave + 1).
2409 * This should not be called from outside the i2c I/O functions.
2410 * Sets I2C read and write slave IDs. Returns <0 for error
2411 */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002412static void ov51x_set_slave_ids(struct sd *sd,
Jean-François Moine9d1593a2010-11-11 08:04:06 -03002413 u8 slave)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002414{
Hans de Goedea511ba92009-10-16 07:13:07 -03002415 switch (sd->bridge) {
2416 case BRIDGE_OVFX2:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002417 reg_w(sd, OVFX2_I2C_ADDR, slave);
2418 return;
Hans de Goedea511ba92009-10-16 07:13:07 -03002419 case BRIDGE_W9968CF:
2420 sd->sensor_addr = slave;
Jean-François Moinef8f20182010-11-12 07:54:02 -03002421 return;
Hans de Goedea511ba92009-10-16 07:13:07 -03002422 }
Hans de Goedeb46aaa02009-10-12 10:07:57 -03002423
Jean-François Moinef8f20182010-11-12 07:54:02 -03002424 reg_w(sd, R51x_I2C_W_SID, slave);
2425 reg_w(sd, R51x_I2C_R_SID, slave + 1);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002426}
2427
Jean-François Moinef8f20182010-11-12 07:54:02 -03002428static void write_regvals(struct sd *sd,
Jean-Francois Moinea5ae2062008-07-04 11:16:16 -03002429 const struct ov_regvals *regvals,
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002430 int n)
2431{
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002432 while (--n >= 0) {
Jean-François Moinef8f20182010-11-12 07:54:02 -03002433 reg_w(sd, regvals->reg, regvals->val);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002434 regvals++;
2435 }
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002436}
2437
Jean-François Moinef8f20182010-11-12 07:54:02 -03002438static void write_i2c_regvals(struct sd *sd,
2439 const struct ov_i2c_regvals *regvals,
2440 int n)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002441{
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002442 while (--n >= 0) {
Jean-François Moinef8f20182010-11-12 07:54:02 -03002443 i2c_w(sd, regvals->reg, regvals->val);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002444 regvals++;
2445 }
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002446}
2447
2448/****************************************************************************
2449 *
2450 * OV511 and sensor configuration
2451 *
2452 ***************************************************************************/
2453
Hans de Goede635118d2009-10-11 09:49:03 -03002454/* This initializes the OV2x10 / OV3610 / OV3620 */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002455static void ov_hires_configure(struct sd *sd)
Hans de Goede635118d2009-10-11 09:49:03 -03002456{
2457 int high, low;
2458
2459 if (sd->bridge != BRIDGE_OVFX2) {
Jean-François Moine0b656322010-09-13 05:19:58 -03002460 err("error hires sensors only supported with ovfx2");
Jean-François Moinef8f20182010-11-12 07:54:02 -03002461 return;
Hans de Goede635118d2009-10-11 09:49:03 -03002462 }
2463
2464 PDEBUG(D_PROBE, "starting ov hires configuration");
2465
2466 /* Detect sensor (sub)type */
2467 high = i2c_r(sd, 0x0a);
2468 low = i2c_r(sd, 0x0b);
2469 /* info("%x, %x", high, low); */
2470 if (high == 0x96 && low == 0x40) {
2471 PDEBUG(D_PROBE, "Sensor is an OV2610");
2472 sd->sensor = SEN_OV2610;
2473 } else if (high == 0x36 && (low & 0x0f) == 0x00) {
2474 PDEBUG(D_PROBE, "Sensor is an OV3610");
2475 sd->sensor = SEN_OV3610;
2476 } else {
Jean-François Moine858ea5e2010-11-12 13:53:10 -03002477 err("Error unknown sensor type: %02x%02x",
Jean-François Moine87bae742010-11-12 05:31:34 -03002478 high, low);
Hans de Goede635118d2009-10-11 09:49:03 -03002479 }
Hans de Goede635118d2009-10-11 09:49:03 -03002480}
2481
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002482/* This initializes the OV8110, OV8610 sensor. The OV8110 uses
2483 * the same register settings as the OV8610, since they are very similar.
2484 */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002485static void ov8xx0_configure(struct sd *sd)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002486{
2487 int rc;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002488
2489 PDEBUG(D_PROBE, "starting ov8xx0 configuration");
2490
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002491 /* Detect sensor (sub)type */
2492 rc = i2c_r(sd, OV7610_REG_COM_I);
2493 if (rc < 0) {
2494 PDEBUG(D_ERR, "Error detecting sensor type");
Jean-François Moinef8f20182010-11-12 07:54:02 -03002495 return;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002496 }
Jean-François Moinef8f20182010-11-12 07:54:02 -03002497 if ((rc & 3) == 1)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002498 sd->sensor = SEN_OV8610;
Jean-François Moinef8f20182010-11-12 07:54:02 -03002499 else
Jean-François Moine0b656322010-09-13 05:19:58 -03002500 err("Unknown image sensor version: %d", rc & 3);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002501}
2502
2503/* This initializes the OV7610, OV7620, or OV76BE sensor. The OV76BE uses
2504 * the same register settings as the OV7610, since they are very similar.
2505 */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002506static void ov7xx0_configure(struct sd *sd)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002507{
2508 int rc, high, low;
2509
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002510 PDEBUG(D_PROBE, "starting OV7xx0 configuration");
2511
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002512 /* Detect sensor (sub)type */
2513 rc = i2c_r(sd, OV7610_REG_COM_I);
2514
2515 /* add OV7670 here
2516 * it appears to be wrongly detected as a 7610 by default */
2517 if (rc < 0) {
2518 PDEBUG(D_ERR, "Error detecting sensor type");
Jean-François Moinef8f20182010-11-12 07:54:02 -03002519 return;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002520 }
2521 if ((rc & 3) == 3) {
2522 /* quick hack to make OV7670s work */
2523 high = i2c_r(sd, 0x0a);
2524 low = i2c_r(sd, 0x0b);
2525 /* info("%x, %x", high, low); */
2526 if (high == 0x76 && low == 0x73) {
2527 PDEBUG(D_PROBE, "Sensor is an OV7670");
2528 sd->sensor = SEN_OV7670;
2529 } else {
2530 PDEBUG(D_PROBE, "Sensor is an OV7610");
2531 sd->sensor = SEN_OV7610;
2532 }
2533 } else if ((rc & 3) == 1) {
2534 /* I don't know what's different about the 76BE yet. */
Hans de Goedeb282d872009-06-14 19:10:40 -03002535 if (i2c_r(sd, 0x15) & 1) {
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002536 PDEBUG(D_PROBE, "Sensor is an OV7620AE");
Hans de Goede859cc472010-01-07 15:42:35 -03002537 sd->sensor = SEN_OV7620AE;
Hans de Goedeb282d872009-06-14 19:10:40 -03002538 } else {
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002539 PDEBUG(D_PROBE, "Sensor is an OV76BE");
Hans de Goedeb282d872009-06-14 19:10:40 -03002540 sd->sensor = SEN_OV76BE;
2541 }
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002542 } else if ((rc & 3) == 0) {
2543 /* try to read product id registers */
2544 high = i2c_r(sd, 0x0a);
2545 if (high < 0) {
2546 PDEBUG(D_ERR, "Error detecting camera chip PID");
Jean-François Moinef8f20182010-11-12 07:54:02 -03002547 return;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002548 }
2549 low = i2c_r(sd, 0x0b);
2550 if (low < 0) {
2551 PDEBUG(D_ERR, "Error detecting camera chip VER");
Jean-François Moinef8f20182010-11-12 07:54:02 -03002552 return;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002553 }
2554 if (high == 0x76) {
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03002555 switch (low) {
2556 case 0x30:
Jean-François Moine0b656322010-09-13 05:19:58 -03002557 err("Sensor is an OV7630/OV7635");
2558 err("7630 is not supported by this driver");
Jean-François Moinef8f20182010-11-12 07:54:02 -03002559 return;
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03002560 case 0x40:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002561 PDEBUG(D_PROBE, "Sensor is an OV7645");
2562 sd->sensor = SEN_OV7640; /* FIXME */
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03002563 break;
2564 case 0x45:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002565 PDEBUG(D_PROBE, "Sensor is an OV7645B");
2566 sd->sensor = SEN_OV7640; /* FIXME */
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03002567 break;
2568 case 0x48:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002569 PDEBUG(D_PROBE, "Sensor is an OV7648");
Hans de Goede035d3a32010-01-09 08:14:43 -03002570 sd->sensor = SEN_OV7648;
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03002571 break;
2572 default:
2573 PDEBUG(D_PROBE, "Unknown sensor: 0x76%x", low);
Jean-François Moinef8f20182010-11-12 07:54:02 -03002574 return;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002575 }
2576 } else {
2577 PDEBUG(D_PROBE, "Sensor is an OV7620");
2578 sd->sensor = SEN_OV7620;
2579 }
2580 } else {
Jean-François Moine0b656322010-09-13 05:19:58 -03002581 err("Unknown image sensor version: %d", rc & 3);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002582 }
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002583}
2584
2585/* This initializes the OV6620, OV6630, OV6630AE, or OV6630AF sensor. */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002586static void ov6xx0_configure(struct sd *sd)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002587{
2588 int rc;
Jean-Francois Moine4202f712008-09-03 17:12:15 -03002589 PDEBUG(D_PROBE, "starting OV6xx0 configuration");
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002590
2591 /* Detect sensor (sub)type */
2592 rc = i2c_r(sd, OV7610_REG_COM_I);
2593 if (rc < 0) {
2594 PDEBUG(D_ERR, "Error detecting sensor type");
Jean-François Moinef8f20182010-11-12 07:54:02 -03002595 return;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002596 }
2597
2598 /* Ugh. The first two bits are the version bits, but
2599 * the entire register value must be used. I guess OVT
2600 * underestimated how many variants they would make. */
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03002601 switch (rc) {
2602 case 0x00:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002603 sd->sensor = SEN_OV6630;
Jean-François Moine0b656322010-09-13 05:19:58 -03002604 warn("WARNING: Sensor is an OV66308. Your camera may have");
2605 warn("been misdetected in previous driver versions.");
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03002606 break;
2607 case 0x01:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002608 sd->sensor = SEN_OV6620;
Hans de Goede7d971372009-06-14 05:28:17 -03002609 PDEBUG(D_PROBE, "Sensor is an OV6620");
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03002610 break;
2611 case 0x02:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002612 sd->sensor = SEN_OV6630;
2613 PDEBUG(D_PROBE, "Sensor is an OV66308AE");
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03002614 break;
2615 case 0x03:
Hans de Goede7d971372009-06-14 05:28:17 -03002616 sd->sensor = SEN_OV66308AF;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002617 PDEBUG(D_PROBE, "Sensor is an OV66308AF");
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03002618 break;
2619 case 0x90:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002620 sd->sensor = SEN_OV6630;
Jean-François Moine0b656322010-09-13 05:19:58 -03002621 warn("WARNING: Sensor is an OV66307. Your camera may have");
2622 warn("been misdetected in previous driver versions.");
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03002623 break;
2624 default:
Jean-François Moine0b656322010-09-13 05:19:58 -03002625 err("FATAL: Unknown sensor version: 0x%02x", rc);
Jean-François Moinef8f20182010-11-12 07:54:02 -03002626 return;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002627 }
2628
2629 /* Set sensor-specific vars */
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03002630 sd->sif = 1;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002631}
2632
2633/* Turns on or off the LED. Only has an effect with OV511+/OV518(+)/OV519 */
2634static void ov51x_led_control(struct sd *sd, int on)
2635{
Hans de Goede9e4d8252009-06-14 06:25:06 -03002636 if (sd->invert_led)
2637 on = !on;
2638
Hans de Goede49809d62009-06-07 12:10:39 -03002639 switch (sd->bridge) {
2640 /* OV511 has no LED control */
2641 case BRIDGE_OV511PLUS:
2642 reg_w(sd, R511_SYS_LED_CTL, on ? 1 : 0);
2643 break;
2644 case BRIDGE_OV518:
2645 case BRIDGE_OV518PLUS:
2646 reg_w_mask(sd, R518_GPIO_OUT, on ? 0x02 : 0x00, 0x02);
2647 break;
2648 case BRIDGE_OV519:
2649 reg_w_mask(sd, OV519_GPIO_DATA_OUT0, !on, 1); /* 0 / 1 */
2650 break;
2651 }
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002652}
2653
Hans de Goede417a4d22010-02-19 07:37:08 -03002654static void sd_reset_snapshot(struct gspca_dev *gspca_dev)
2655{
2656 struct sd *sd = (struct sd *) gspca_dev;
2657
2658 if (!sd->snapshot_needs_reset)
2659 return;
2660
2661 /* Note it is important that we clear sd->snapshot_needs_reset,
2662 before actually clearing the snapshot state in the bridge
2663 otherwise we might race with the pkt_scan interrupt handler */
2664 sd->snapshot_needs_reset = 0;
2665
2666 switch (sd->bridge) {
Hans de Goede88e8d202010-02-20 04:45:49 -03002667 case BRIDGE_OV511:
2668 case BRIDGE_OV511PLUS:
2669 reg_w(sd, R51x_SYS_SNAP, 0x02);
2670 reg_w(sd, R51x_SYS_SNAP, 0x00);
2671 break;
Hans de Goede92e232a2010-02-20 04:30:45 -03002672 case BRIDGE_OV518:
2673 case BRIDGE_OV518PLUS:
2674 reg_w(sd, R51x_SYS_SNAP, 0x02); /* Reset */
2675 reg_w(sd, R51x_SYS_SNAP, 0x01); /* Enable */
2676 break;
Hans de Goede417a4d22010-02-19 07:37:08 -03002677 case BRIDGE_OV519:
2678 reg_w(sd, R51x_SYS_RESET, 0x40);
2679 reg_w(sd, R51x_SYS_RESET, 0x00);
2680 break;
2681 }
2682}
2683
Jean-François Moinef8f20182010-11-12 07:54:02 -03002684static void ov51x_upload_quan_tables(struct sd *sd)
Hans de Goede49809d62009-06-07 12:10:39 -03002685{
Hans de Goede1876bb92009-06-14 06:45:50 -03002686 const unsigned char yQuanTable511[] = {
2687 0, 1, 1, 2, 2, 3, 3, 4,
2688 1, 1, 1, 2, 2, 3, 4, 4,
2689 1, 1, 2, 2, 3, 4, 4, 4,
2690 2, 2, 2, 3, 4, 4, 4, 4,
2691 2, 2, 3, 4, 4, 5, 5, 5,
2692 3, 3, 4, 4, 5, 5, 5, 5,
2693 3, 4, 4, 4, 5, 5, 5, 5,
2694 4, 4, 4, 4, 5, 5, 5, 5
2695 };
2696
2697 const unsigned char uvQuanTable511[] = {
2698 0, 2, 2, 3, 4, 4, 4, 4,
2699 2, 2, 2, 4, 4, 4, 4, 4,
2700 2, 2, 3, 4, 4, 4, 4, 4,
2701 3, 4, 4, 4, 4, 4, 4, 4,
2702 4, 4, 4, 4, 4, 4, 4, 4,
2703 4, 4, 4, 4, 4, 4, 4, 4,
2704 4, 4, 4, 4, 4, 4, 4, 4,
2705 4, 4, 4, 4, 4, 4, 4, 4
2706 };
2707
2708 /* OV518 quantization tables are 8x4 (instead of 8x8) */
Hans de Goede49809d62009-06-07 12:10:39 -03002709 const unsigned char yQuanTable518[] = {
2710 5, 4, 5, 6, 6, 7, 7, 7,
2711 5, 5, 5, 5, 6, 7, 7, 7,
2712 6, 6, 6, 6, 7, 7, 7, 8,
2713 7, 7, 6, 7, 7, 7, 8, 8
2714 };
Hans de Goede49809d62009-06-07 12:10:39 -03002715 const unsigned char uvQuanTable518[] = {
2716 6, 6, 6, 7, 7, 7, 7, 7,
2717 6, 6, 6, 7, 7, 7, 7, 7,
2718 6, 6, 6, 7, 7, 7, 7, 8,
2719 7, 7, 7, 7, 7, 7, 8, 8
2720 };
2721
Hans de Goede1876bb92009-06-14 06:45:50 -03002722 const unsigned char *pYTable, *pUVTable;
Hans de Goede49809d62009-06-07 12:10:39 -03002723 unsigned char val0, val1;
Jean-François Moinef8f20182010-11-12 07:54:02 -03002724 int i, size, reg = R51x_COMP_LUT_BEGIN;
Hans de Goede49809d62009-06-07 12:10:39 -03002725
2726 PDEBUG(D_PROBE, "Uploading quantization tables");
2727
Hans de Goede1876bb92009-06-14 06:45:50 -03002728 if (sd->bridge == BRIDGE_OV511 || sd->bridge == BRIDGE_OV511PLUS) {
2729 pYTable = yQuanTable511;
2730 pUVTable = uvQuanTable511;
Jean-François Moine87bae742010-11-12 05:31:34 -03002731 size = 32;
Hans de Goede1876bb92009-06-14 06:45:50 -03002732 } else {
2733 pYTable = yQuanTable518;
2734 pUVTable = uvQuanTable518;
Jean-François Moine87bae742010-11-12 05:31:34 -03002735 size = 16;
Hans de Goede1876bb92009-06-14 06:45:50 -03002736 }
2737
2738 for (i = 0; i < size; i++) {
Hans de Goede49809d62009-06-07 12:10:39 -03002739 val0 = *pYTable++;
2740 val1 = *pYTable++;
2741 val0 &= 0x0f;
2742 val1 &= 0x0f;
2743 val0 |= val1 << 4;
Jean-François Moinef8f20182010-11-12 07:54:02 -03002744 reg_w(sd, reg, val0);
Hans de Goede49809d62009-06-07 12:10:39 -03002745
2746 val0 = *pUVTable++;
2747 val1 = *pUVTable++;
2748 val0 &= 0x0f;
2749 val1 &= 0x0f;
2750 val0 |= val1 << 4;
Jean-François Moinef8f20182010-11-12 07:54:02 -03002751 reg_w(sd, reg + size, val0);
Hans de Goede49809d62009-06-07 12:10:39 -03002752
2753 reg++;
2754 }
Hans de Goede49809d62009-06-07 12:10:39 -03002755}
2756
Hans de Goede1876bb92009-06-14 06:45:50 -03002757/* This initializes the OV511/OV511+ and the sensor */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002758static void ov511_configure(struct gspca_dev *gspca_dev)
Hans de Goede1876bb92009-06-14 06:45:50 -03002759{
2760 struct sd *sd = (struct sd *) gspca_dev;
Hans de Goede1876bb92009-06-14 06:45:50 -03002761
2762 /* For 511 and 511+ */
2763 const struct ov_regvals init_511[] = {
2764 { R51x_SYS_RESET, 0x7f },
2765 { R51x_SYS_INIT, 0x01 },
2766 { R51x_SYS_RESET, 0x7f },
2767 { R51x_SYS_INIT, 0x01 },
2768 { R51x_SYS_RESET, 0x3f },
2769 { R51x_SYS_INIT, 0x01 },
2770 { R51x_SYS_RESET, 0x3d },
2771 };
2772
2773 const struct ov_regvals norm_511[] = {
Jean-François Moine780e3122010-10-19 04:29:10 -03002774 { R511_DRAM_FLOW_CTL, 0x01 },
Hans de Goede1876bb92009-06-14 06:45:50 -03002775 { R51x_SYS_SNAP, 0x00 },
2776 { R51x_SYS_SNAP, 0x02 },
2777 { R51x_SYS_SNAP, 0x00 },
2778 { R511_FIFO_OPTS, 0x1f },
2779 { R511_COMP_EN, 0x00 },
2780 { R511_COMP_LUT_EN, 0x03 },
2781 };
2782
2783 const struct ov_regvals norm_511_p[] = {
2784 { R511_DRAM_FLOW_CTL, 0xff },
2785 { R51x_SYS_SNAP, 0x00 },
2786 { R51x_SYS_SNAP, 0x02 },
2787 { R51x_SYS_SNAP, 0x00 },
2788 { R511_FIFO_OPTS, 0xff },
2789 { R511_COMP_EN, 0x00 },
2790 { R511_COMP_LUT_EN, 0x03 },
2791 };
2792
2793 const struct ov_regvals compress_511[] = {
2794 { 0x70, 0x1f },
2795 { 0x71, 0x05 },
2796 { 0x72, 0x06 },
2797 { 0x73, 0x06 },
2798 { 0x74, 0x14 },
2799 { 0x75, 0x03 },
2800 { 0x76, 0x04 },
2801 { 0x77, 0x04 },
2802 };
2803
2804 PDEBUG(D_PROBE, "Device custom id %x", reg_r(sd, R51x_SYS_CUST_ID));
2805
Jean-François Moinef8f20182010-11-12 07:54:02 -03002806 write_regvals(sd, init_511, ARRAY_SIZE(init_511));
Hans de Goede1876bb92009-06-14 06:45:50 -03002807
2808 switch (sd->bridge) {
2809 case BRIDGE_OV511:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002810 write_regvals(sd, norm_511, ARRAY_SIZE(norm_511));
Hans de Goede1876bb92009-06-14 06:45:50 -03002811 break;
2812 case BRIDGE_OV511PLUS:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002813 write_regvals(sd, norm_511_p, ARRAY_SIZE(norm_511_p));
Hans de Goede1876bb92009-06-14 06:45:50 -03002814 break;
2815 }
2816
2817 /* Init compression */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002818 write_regvals(sd, compress_511, ARRAY_SIZE(compress_511));
Hans de Goede1876bb92009-06-14 06:45:50 -03002819
Jean-François Moinef8f20182010-11-12 07:54:02 -03002820 ov51x_upload_quan_tables(sd);
Hans de Goede1876bb92009-06-14 06:45:50 -03002821}
2822
Hans de Goede49809d62009-06-07 12:10:39 -03002823/* This initializes the OV518/OV518+ and the sensor */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002824static void ov518_configure(struct gspca_dev *gspca_dev)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002825{
2826 struct sd *sd = (struct sd *) gspca_dev;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002827
Hans de Goede49809d62009-06-07 12:10:39 -03002828 /* For 518 and 518+ */
Hans de Goedee080fcd2009-06-18 05:03:16 -03002829 const struct ov_regvals init_518[] = {
Hans de Goede49809d62009-06-07 12:10:39 -03002830 { R51x_SYS_RESET, 0x40 },
2831 { R51x_SYS_INIT, 0xe1 },
2832 { R51x_SYS_RESET, 0x3e },
2833 { R51x_SYS_INIT, 0xe1 },
2834 { R51x_SYS_RESET, 0x00 },
2835 { R51x_SYS_INIT, 0xe1 },
2836 { 0x46, 0x00 },
2837 { 0x5d, 0x03 },
2838 };
2839
Hans de Goedee080fcd2009-06-18 05:03:16 -03002840 const struct ov_regvals norm_518[] = {
Hans de Goede49809d62009-06-07 12:10:39 -03002841 { R51x_SYS_SNAP, 0x02 }, /* Reset */
2842 { R51x_SYS_SNAP, 0x01 }, /* Enable */
Jean-François Moine780e3122010-10-19 04:29:10 -03002843 { 0x31, 0x0f },
Hans de Goede49809d62009-06-07 12:10:39 -03002844 { 0x5d, 0x03 },
2845 { 0x24, 0x9f },
2846 { 0x25, 0x90 },
2847 { 0x20, 0x00 },
2848 { 0x51, 0x04 },
2849 { 0x71, 0x19 },
2850 { 0x2f, 0x80 },
2851 };
2852
Hans de Goedee080fcd2009-06-18 05:03:16 -03002853 const struct ov_regvals norm_518_p[] = {
Hans de Goede49809d62009-06-07 12:10:39 -03002854 { R51x_SYS_SNAP, 0x02 }, /* Reset */
2855 { R51x_SYS_SNAP, 0x01 }, /* Enable */
Jean-François Moine780e3122010-10-19 04:29:10 -03002856 { 0x31, 0x0f },
Hans de Goede49809d62009-06-07 12:10:39 -03002857 { 0x5d, 0x03 },
2858 { 0x24, 0x9f },
2859 { 0x25, 0x90 },
2860 { 0x20, 0x60 },
2861 { 0x51, 0x02 },
2862 { 0x71, 0x19 },
2863 { 0x40, 0xff },
2864 { 0x41, 0x42 },
2865 { 0x46, 0x00 },
2866 { 0x33, 0x04 },
2867 { 0x21, 0x19 },
2868 { 0x3f, 0x10 },
2869 { 0x2f, 0x80 },
2870 };
2871
2872 /* First 5 bits of custom ID reg are a revision ID on OV518 */
2873 PDEBUG(D_PROBE, "Device revision %d",
Jean-François Moine87bae742010-11-12 05:31:34 -03002874 0x1f & reg_r(sd, R51x_SYS_CUST_ID));
Hans de Goede49809d62009-06-07 12:10:39 -03002875
Jean-François Moinef8f20182010-11-12 07:54:02 -03002876 write_regvals(sd, init_518, ARRAY_SIZE(init_518));
Hans de Goede49809d62009-06-07 12:10:39 -03002877
2878 /* Set LED GPIO pin to output mode */
Jean-François Moinef8f20182010-11-12 07:54:02 -03002879 reg_w_mask(sd, R518_GPIO_CTL, 0x00, 0x02);
Hans de Goede49809d62009-06-07 12:10:39 -03002880
2881 switch (sd->bridge) {
2882 case BRIDGE_OV518:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002883 write_regvals(sd, norm_518, ARRAY_SIZE(norm_518));
Hans de Goede49809d62009-06-07 12:10:39 -03002884 break;
2885 case BRIDGE_OV518PLUS:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002886 write_regvals(sd, norm_518_p, ARRAY_SIZE(norm_518_p));
Hans de Goede49809d62009-06-07 12:10:39 -03002887 break;
2888 }
2889
Jean-François Moinef8f20182010-11-12 07:54:02 -03002890 ov51x_upload_quan_tables(sd);
Hans de Goede49809d62009-06-07 12:10:39 -03002891
Jean-François Moinef8f20182010-11-12 07:54:02 -03002892 reg_w(sd, 0x2f, 0x80);
Hans de Goede49809d62009-06-07 12:10:39 -03002893}
2894
Jean-François Moinef8f20182010-11-12 07:54:02 -03002895static void ov519_configure(struct sd *sd)
Hans de Goede49809d62009-06-07 12:10:39 -03002896{
Jean-Francois Moinea5ae2062008-07-04 11:16:16 -03002897 static const struct ov_regvals init_519[] = {
Jean-François Moine87bae742010-11-12 05:31:34 -03002898 { 0x5a, 0x6d }, /* EnableSystem */
2899 { 0x53, 0x9b },
Jean-François Moine21867802010-11-12 06:12:09 -03002900 { OV519_R54_EN_CLK1, 0xff }, /* set bit2 to enable jpeg */
Jean-François Moine87bae742010-11-12 05:31:34 -03002901 { 0x5d, 0x03 },
2902 { 0x49, 0x01 },
2903 { 0x48, 0x00 },
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002904 /* Set LED pin to output mode. Bit 4 must be cleared or sensor
2905 * detection will fail. This deserves further investigation. */
2906 { OV519_GPIO_IO_CTRL0, 0xee },
Jean-François Moine21867802010-11-12 06:12:09 -03002907 { OV519_R51_RESET1, 0x0f },
2908 { OV519_R51_RESET1, 0x00 },
Jean-François Moine87bae742010-11-12 05:31:34 -03002909 { 0x22, 0x00 },
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002910 /* windows reads 0x55 at this point*/
2911 };
2912
Jean-François Moinef8f20182010-11-12 07:54:02 -03002913 write_regvals(sd, init_519, ARRAY_SIZE(init_519));
Hans de Goede49809d62009-06-07 12:10:39 -03002914}
2915
Jean-François Moinef8f20182010-11-12 07:54:02 -03002916static void ovfx2_configure(struct sd *sd)
Hans de Goedeb46aaa02009-10-12 10:07:57 -03002917{
2918 static const struct ov_regvals init_fx2[] = {
2919 { 0x00, 0x60 },
2920 { 0x02, 0x01 },
2921 { 0x0f, 0x1d },
2922 { 0xe9, 0x82 },
2923 { 0xea, 0xc7 },
2924 { 0xeb, 0x10 },
2925 { 0xec, 0xf6 },
2926 };
2927
2928 sd->stopped = 1;
2929
Jean-François Moinef8f20182010-11-12 07:54:02 -03002930 write_regvals(sd, init_fx2, ARRAY_SIZE(init_fx2));
Hans de Goedeb46aaa02009-10-12 10:07:57 -03002931}
2932
Hans de Goede49809d62009-06-07 12:10:39 -03002933/* this function is called at probe time */
2934static int sd_config(struct gspca_dev *gspca_dev,
2935 const struct usb_device_id *id)
2936{
2937 struct sd *sd = (struct sd *) gspca_dev;
Hans de Goedeb46aaa02009-10-12 10:07:57 -03002938 struct cam *cam = &gspca_dev->cam;
Hans de Goede49809d62009-06-07 12:10:39 -03002939
Hans de Goede9e4d8252009-06-14 06:25:06 -03002940 sd->bridge = id->driver_info & BRIDGE_MASK;
2941 sd->invert_led = id->driver_info & BRIDGE_INVERT_LED;
Hans de Goede49809d62009-06-07 12:10:39 -03002942
2943 switch (sd->bridge) {
Hans de Goede1876bb92009-06-14 06:45:50 -03002944 case BRIDGE_OV511:
2945 case BRIDGE_OV511PLUS:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002946 ov511_configure(gspca_dev);
Hans de Goede1876bb92009-06-14 06:45:50 -03002947 break;
Hans de Goede49809d62009-06-07 12:10:39 -03002948 case BRIDGE_OV518:
2949 case BRIDGE_OV518PLUS:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002950 ov518_configure(gspca_dev);
Hans de Goede49809d62009-06-07 12:10:39 -03002951 break;
2952 case BRIDGE_OV519:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002953 ov519_configure(sd);
Hans de Goede49809d62009-06-07 12:10:39 -03002954 break;
Hans de Goedeb46aaa02009-10-12 10:07:57 -03002955 case BRIDGE_OVFX2:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002956 ovfx2_configure(sd);
Hans de Goedeb46aaa02009-10-12 10:07:57 -03002957 cam->bulk_size = OVFX2_BULK_SIZE;
2958 cam->bulk_nurbs = MAX_NURBS;
2959 cam->bulk = 1;
2960 break;
Hans de Goedea511ba92009-10-16 07:13:07 -03002961 case BRIDGE_W9968CF:
Jean-François Moinef8f20182010-11-12 07:54:02 -03002962 w9968cf_configure(sd);
Hans de Goedea511ba92009-10-16 07:13:07 -03002963 cam->reverse_alts = 1;
2964 break;
Hans de Goede49809d62009-06-07 12:10:39 -03002965 }
2966
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002967 ov51x_led_control(sd, 0); /* turn LED off */
2968
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002969 /* The OV519 must be more aggressive about sensor detection since
2970 * I2C write will never fail if the sensor is not present. We have
2971 * to try to initialize the sensor to detect its presence */
Jean-François Moine7bbe6b82010-11-11 08:27:24 -03002972 sd->sensor = -1;
Hans de Goede229bb7d2009-10-11 07:41:46 -03002973
2974 /* Test for 76xx */
2975 if (init_ov_sensor(sd, OV7xx0_SID) >= 0) {
Jean-François Moinef8f20182010-11-12 07:54:02 -03002976 ov7xx0_configure(sd);
2977
Hans de Goede229bb7d2009-10-11 07:41:46 -03002978 /* Test for 6xx0 */
2979 } else if (init_ov_sensor(sd, OV6xx0_SID) >= 0) {
Jean-François Moinef8f20182010-11-12 07:54:02 -03002980 ov6xx0_configure(sd);
2981
Hans de Goede229bb7d2009-10-11 07:41:46 -03002982 /* Test for 8xx0 */
2983 } else if (init_ov_sensor(sd, OV8xx0_SID) >= 0) {
Jean-François Moinef8f20182010-11-12 07:54:02 -03002984 ov8xx0_configure(sd);
2985
Hans de Goede635118d2009-10-11 09:49:03 -03002986 /* Test for 3xxx / 2xxx */
2987 } else if (init_ov_sensor(sd, OV_HIRES_SID) >= 0) {
Jean-François Moinef8f20182010-11-12 07:54:02 -03002988 ov_hires_configure(sd);
Hans de Goede229bb7d2009-10-11 07:41:46 -03002989 } else {
Jean-François Moine0b656322010-09-13 05:19:58 -03002990 err("Can't determine sensor slave IDs");
Hans de Goede229bb7d2009-10-11 07:41:46 -03002991 goto error;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03002992 }
2993
Jean-François Moine7bbe6b82010-11-11 08:27:24 -03002994 if (sd->sensor < 0)
2995 goto error;
2996
Hans de Goede49809d62009-06-07 12:10:39 -03002997 switch (sd->bridge) {
Hans de Goede1876bb92009-06-14 06:45:50 -03002998 case BRIDGE_OV511:
2999 case BRIDGE_OV511PLUS:
3000 if (!sd->sif) {
3001 cam->cam_mode = ov511_vga_mode;
3002 cam->nmodes = ARRAY_SIZE(ov511_vga_mode);
3003 } else {
3004 cam->cam_mode = ov511_sif_mode;
3005 cam->nmodes = ARRAY_SIZE(ov511_sif_mode);
3006 }
3007 break;
Hans de Goede49809d62009-06-07 12:10:39 -03003008 case BRIDGE_OV518:
3009 case BRIDGE_OV518PLUS:
3010 if (!sd->sif) {
3011 cam->cam_mode = ov518_vga_mode;
3012 cam->nmodes = ARRAY_SIZE(ov518_vga_mode);
3013 } else {
3014 cam->cam_mode = ov518_sif_mode;
3015 cam->nmodes = ARRAY_SIZE(ov518_sif_mode);
3016 }
3017 break;
3018 case BRIDGE_OV519:
3019 if (!sd->sif) {
3020 cam->cam_mode = ov519_vga_mode;
3021 cam->nmodes = ARRAY_SIZE(ov519_vga_mode);
3022 } else {
3023 cam->cam_mode = ov519_sif_mode;
3024 cam->nmodes = ARRAY_SIZE(ov519_sif_mode);
3025 }
3026 break;
Hans de Goede635118d2009-10-11 09:49:03 -03003027 case BRIDGE_OVFX2:
3028 if (sd->sensor == SEN_OV2610) {
3029 cam->cam_mode = ovfx2_ov2610_mode;
3030 cam->nmodes = ARRAY_SIZE(ovfx2_ov2610_mode);
3031 } else if (sd->sensor == SEN_OV3610) {
3032 cam->cam_mode = ovfx2_ov3610_mode;
3033 cam->nmodes = ARRAY_SIZE(ovfx2_ov3610_mode);
3034 } else if (!sd->sif) {
3035 cam->cam_mode = ov519_vga_mode;
3036 cam->nmodes = ARRAY_SIZE(ov519_vga_mode);
3037 } else {
3038 cam->cam_mode = ov519_sif_mode;
3039 cam->nmodes = ARRAY_SIZE(ov519_sif_mode);
3040 }
3041 break;
Hans de Goedea511ba92009-10-16 07:13:07 -03003042 case BRIDGE_W9968CF:
3043 cam->cam_mode = w9968cf_vga_mode;
3044 cam->nmodes = ARRAY_SIZE(w9968cf_vga_mode);
Hans de Goede79b35902009-10-19 06:08:01 -03003045 if (sd->sif)
3046 cam->nmodes--;
Hans de Goedea511ba92009-10-16 07:13:07 -03003047
3048 /* w9968cf needs initialisation once the sensor is known */
Jean-François Moinef8f20182010-11-12 07:54:02 -03003049 w9968cf_init(sd);
Hans de Goedea511ba92009-10-16 07:13:07 -03003050 break;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003051 }
Jean-François Moine62833ac2010-10-02 04:27:02 -03003052 gspca_dev->cam.ctrls = sd->ctrls;
Hans de Goede79b35902009-10-19 06:08:01 -03003053 sd->quality = QUALITY_DEF;
Jean-François Moine83db7682010-11-12 07:14:08 -03003054
3055 gspca_dev->ctrl_dis = ctrl_dis[sd->sensor];
Hans de Goede02ab18b2009-06-14 04:32:04 -03003056
Jean-François Moinef8f20182010-11-12 07:54:02 -03003057 return gspca_dev->usb_err;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003058error:
3059 PDEBUG(D_ERR, "OV519 Config failed");
Jean-François Moine7bbe6b82010-11-11 08:27:24 -03003060 return -EINVAL;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003061}
3062
Jean-Francois Moine012d6b02008-09-03 17:12:16 -03003063/* this function is called at probe and resume time */
3064static int sd_init(struct gspca_dev *gspca_dev)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003065{
Jean-Francois Moine4202f712008-09-03 17:12:15 -03003066 struct sd *sd = (struct sd *) gspca_dev;
3067
3068 /* initialize the sensor */
3069 switch (sd->sensor) {
Hans de Goede635118d2009-10-11 09:49:03 -03003070 case SEN_OV2610:
Jean-François Moinef8f20182010-11-12 07:54:02 -03003071 write_i2c_regvals(sd, norm_2610, ARRAY_SIZE(norm_2610));
3072
Hans de Goede635118d2009-10-11 09:49:03 -03003073 /* Enable autogain, autoexpo, awb, bandfilter */
Jean-François Moinef8f20182010-11-12 07:54:02 -03003074 i2c_w_mask(sd, 0x13, 0x27, 0x27);
Hans de Goede635118d2009-10-11 09:49:03 -03003075 break;
3076 case SEN_OV3610:
Jean-François Moinef8f20182010-11-12 07:54:02 -03003077 write_i2c_regvals(sd, norm_3620b, ARRAY_SIZE(norm_3620b));
3078
Hans de Goede635118d2009-10-11 09:49:03 -03003079 /* Enable autogain, autoexpo, awb, bandfilter */
Jean-François Moinef8f20182010-11-12 07:54:02 -03003080 i2c_w_mask(sd, 0x13, 0x27, 0x27);
Hans de Goede635118d2009-10-11 09:49:03 -03003081 break;
Jean-Francois Moine4202f712008-09-03 17:12:15 -03003082 case SEN_OV6620:
Jean-François Moinef8f20182010-11-12 07:54:02 -03003083 write_i2c_regvals(sd, norm_6x20, ARRAY_SIZE(norm_6x20));
Jean-Francois Moine4202f712008-09-03 17:12:15 -03003084 break;
3085 case SEN_OV6630:
Hans de Goede7d971372009-06-14 05:28:17 -03003086 case SEN_OV66308AF:
Jean-François Moine62833ac2010-10-02 04:27:02 -03003087 sd->ctrls[CONTRAST].def = 200;
3088 /* The default is too low for the ov6630 */
Jean-François Moinef8f20182010-11-12 07:54:02 -03003089 write_i2c_regvals(sd, norm_6x30, ARRAY_SIZE(norm_6x30));
Jean-Francois Moine4202f712008-09-03 17:12:15 -03003090 break;
3091 default:
3092/* case SEN_OV7610: */
3093/* case SEN_OV76BE: */
Jean-François Moinef8f20182010-11-12 07:54:02 -03003094 write_i2c_regvals(sd, norm_7610, ARRAY_SIZE(norm_7610));
3095 i2c_w_mask(sd, 0x0e, 0x00, 0x40);
Jean-Francois Moine4202f712008-09-03 17:12:15 -03003096 break;
3097 case SEN_OV7620:
Hans de Goede859cc472010-01-07 15:42:35 -03003098 case SEN_OV7620AE:
Jean-François Moinef8f20182010-11-12 07:54:02 -03003099 write_i2c_regvals(sd, norm_7620, ARRAY_SIZE(norm_7620));
Jean-Francois Moine4202f712008-09-03 17:12:15 -03003100 break;
3101 case SEN_OV7640:
Hans de Goede035d3a32010-01-09 08:14:43 -03003102 case SEN_OV7648:
Jean-François Moinef8f20182010-11-12 07:54:02 -03003103 write_i2c_regvals(sd, norm_7640, ARRAY_SIZE(norm_7640));
Jean-Francois Moine4202f712008-09-03 17:12:15 -03003104 break;
3105 case SEN_OV7670:
Jean-François Moine62833ac2010-10-02 04:27:02 -03003106 sd->ctrls[FREQ].max = 3; /* auto */
3107 sd->ctrls[FREQ].def = 3;
Jean-François Moinef8f20182010-11-12 07:54:02 -03003108 write_i2c_regvals(sd, norm_7670, ARRAY_SIZE(norm_7670));
Jean-Francois Moine4202f712008-09-03 17:12:15 -03003109 break;
3110 case SEN_OV8610:
Jean-François Moinef8f20182010-11-12 07:54:02 -03003111 write_i2c_regvals(sd, norm_8610, ARRAY_SIZE(norm_8610));
Jean-Francois Moine4202f712008-09-03 17:12:15 -03003112 break;
3113 }
Jean-François Moinef8f20182010-11-12 07:54:02 -03003114 return gspca_dev->usb_err;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003115}
3116
Hans de Goede1876bb92009-06-14 06:45:50 -03003117/* Set up the OV511/OV511+ with the given image parameters.
3118 *
3119 * Do not put any sensor-specific code in here (including I2C I/O functions)
3120 */
Jean-François Moinef8f20182010-11-12 07:54:02 -03003121static void ov511_mode_init_regs(struct sd *sd)
Hans de Goede1876bb92009-06-14 06:45:50 -03003122{
3123 int hsegs, vsegs, packet_size, fps, needed;
3124 int interlaced = 0;
3125 struct usb_host_interface *alt;
3126 struct usb_interface *intf;
3127
3128 intf = usb_ifnum_to_if(sd->gspca_dev.dev, sd->gspca_dev.iface);
3129 alt = usb_altnum_to_altsetting(intf, sd->gspca_dev.alt);
3130 if (!alt) {
Jean-François Moine0b656322010-09-13 05:19:58 -03003131 err("Couldn't get altsetting");
Jean-François Moinef8f20182010-11-12 07:54:02 -03003132 sd->gspca_dev.usb_err = -EIO;
3133 return;
Hans de Goede1876bb92009-06-14 06:45:50 -03003134 }
3135
3136 packet_size = le16_to_cpu(alt->endpoint[0].desc.wMaxPacketSize);
3137 reg_w(sd, R51x_FIFO_PSIZE, packet_size >> 5);
3138
3139 reg_w(sd, R511_CAM_UV_EN, 0x01);
3140 reg_w(sd, R511_SNAP_UV_EN, 0x01);
3141 reg_w(sd, R511_SNAP_OPTS, 0x03);
3142
3143 /* Here I'm assuming that snapshot size == image size.
3144 * I hope that's always true. --claudio
3145 */
3146 hsegs = (sd->gspca_dev.width >> 3) - 1;
3147 vsegs = (sd->gspca_dev.height >> 3) - 1;
3148
3149 reg_w(sd, R511_CAM_PXCNT, hsegs);
3150 reg_w(sd, R511_CAM_LNCNT, vsegs);
3151 reg_w(sd, R511_CAM_PXDIV, 0x00);
3152 reg_w(sd, R511_CAM_LNDIV, 0x00);
3153
3154 /* YUV420, low pass filter on */
3155 reg_w(sd, R511_CAM_OPTS, 0x03);
3156
3157 /* Snapshot additions */
3158 reg_w(sd, R511_SNAP_PXCNT, hsegs);
3159 reg_w(sd, R511_SNAP_LNCNT, vsegs);
3160 reg_w(sd, R511_SNAP_PXDIV, 0x00);
3161 reg_w(sd, R511_SNAP_LNDIV, 0x00);
3162
3163 /******** Set the framerate ********/
3164 if (frame_rate > 0)
3165 sd->frame_rate = frame_rate;
3166
3167 switch (sd->sensor) {
3168 case SEN_OV6620:
3169 /* No framerate control, doesn't like higher rates yet */
3170 sd->clockdiv = 3;
3171 break;
3172
3173 /* Note once the FIXME's in mode_init_ov_sensor_regs() are fixed
3174 for more sensors we need to do this for them too */
3175 case SEN_OV7620:
Hans de Goede859cc472010-01-07 15:42:35 -03003176 case SEN_OV7620AE:
Hans de Goede1876bb92009-06-14 06:45:50 -03003177 case SEN_OV7640:
Hans de Goede035d3a32010-01-09 08:14:43 -03003178 case SEN_OV7648:
Hans de Goedeb282d872009-06-14 19:10:40 -03003179 case SEN_OV76BE:
Hans de Goede1876bb92009-06-14 06:45:50 -03003180 if (sd->gspca_dev.width == 320)
3181 interlaced = 1;
3182 /* Fall through */
3183 case SEN_OV6630:
Hans de Goede1876bb92009-06-14 06:45:50 -03003184 case SEN_OV7610:
3185 case SEN_OV7670:
3186 switch (sd->frame_rate) {
3187 case 30:
3188 case 25:
3189 /* Not enough bandwidth to do 640x480 @ 30 fps */
3190 if (sd->gspca_dev.width != 640) {
3191 sd->clockdiv = 0;
3192 break;
3193 }
3194 /* Fall through for 640x480 case */
3195 default:
3196/* case 20: */
3197/* case 15: */
3198 sd->clockdiv = 1;
3199 break;
3200 case 10:
3201 sd->clockdiv = 2;
3202 break;
3203 case 5:
3204 sd->clockdiv = 5;
3205 break;
3206 }
3207 if (interlaced) {
3208 sd->clockdiv = (sd->clockdiv + 1) * 2 - 1;
3209 /* Higher then 10 does not work */
3210 if (sd->clockdiv > 10)
3211 sd->clockdiv = 10;
3212 }
3213 break;
3214
3215 case SEN_OV8610:
3216 /* No framerate control ?? */
3217 sd->clockdiv = 0;
3218 break;
3219 }
3220
3221 /* Check if we have enough bandwidth to disable compression */
3222 fps = (interlaced ? 60 : 30) / (sd->clockdiv + 1) + 1;
3223 needed = fps * sd->gspca_dev.width * sd->gspca_dev.height * 3 / 2;
3224 /* 1400 is a conservative estimate of the max nr of isoc packets/sec */
3225 if (needed > 1400 * packet_size) {
3226 /* Enable Y and UV quantization and compression */
3227 reg_w(sd, R511_COMP_EN, 0x07);
3228 reg_w(sd, R511_COMP_LUT_EN, 0x03);
3229 } else {
3230 reg_w(sd, R511_COMP_EN, 0x06);
3231 reg_w(sd, R511_COMP_LUT_EN, 0x00);
3232 }
3233
3234 reg_w(sd, R51x_SYS_RESET, OV511_RESET_OMNICE);
3235 reg_w(sd, R51x_SYS_RESET, 0);
Hans de Goede1876bb92009-06-14 06:45:50 -03003236}
3237
Hans de Goede49809d62009-06-07 12:10:39 -03003238/* Sets up the OV518/OV518+ with the given image parameters
3239 *
3240 * OV518 needs a completely different approach, until we can figure out what
3241 * the individual registers do. Also, only 15 FPS is supported now.
3242 *
3243 * Do not put any sensor-specific code in here (including I2C I/O functions)
3244 */
Jean-François Moinef8f20182010-11-12 07:54:02 -03003245static void ov518_mode_init_regs(struct sd *sd)
Hans de Goede49809d62009-06-07 12:10:39 -03003246{
Hans de Goedeb282d872009-06-14 19:10:40 -03003247 int hsegs, vsegs, packet_size;
3248 struct usb_host_interface *alt;
3249 struct usb_interface *intf;
3250
3251 intf = usb_ifnum_to_if(sd->gspca_dev.dev, sd->gspca_dev.iface);
3252 alt = usb_altnum_to_altsetting(intf, sd->gspca_dev.alt);
3253 if (!alt) {
Jean-François Moine0b656322010-09-13 05:19:58 -03003254 err("Couldn't get altsetting");
Jean-François Moinef8f20182010-11-12 07:54:02 -03003255 sd->gspca_dev.usb_err = -EIO;
3256 return;
Hans de Goedeb282d872009-06-14 19:10:40 -03003257 }
3258
3259 packet_size = le16_to_cpu(alt->endpoint[0].desc.wMaxPacketSize);
3260 ov518_reg_w32(sd, R51x_FIFO_PSIZE, packet_size & ~7, 2);
Hans de Goede49809d62009-06-07 12:10:39 -03003261
3262 /******** Set the mode ********/
Hans de Goede49809d62009-06-07 12:10:39 -03003263 reg_w(sd, 0x2b, 0);
3264 reg_w(sd, 0x2c, 0);
3265 reg_w(sd, 0x2d, 0);
3266 reg_w(sd, 0x2e, 0);
3267 reg_w(sd, 0x3b, 0);
3268 reg_w(sd, 0x3c, 0);
3269 reg_w(sd, 0x3d, 0);
3270 reg_w(sd, 0x3e, 0);
3271
3272 if (sd->bridge == BRIDGE_OV518) {
3273 /* Set 8-bit (YVYU) input format */
3274 reg_w_mask(sd, 0x20, 0x08, 0x08);
3275
3276 /* Set 12-bit (4:2:0) output format */
3277 reg_w_mask(sd, 0x28, 0x80, 0xf0);
3278 reg_w_mask(sd, 0x38, 0x80, 0xf0);
3279 } else {
3280 reg_w(sd, 0x28, 0x80);
3281 reg_w(sd, 0x38, 0x80);
3282 }
3283
3284 hsegs = sd->gspca_dev.width / 16;
3285 vsegs = sd->gspca_dev.height / 4;
3286
3287 reg_w(sd, 0x29, hsegs);
3288 reg_w(sd, 0x2a, vsegs);
3289
3290 reg_w(sd, 0x39, hsegs);
3291 reg_w(sd, 0x3a, vsegs);
3292
3293 /* Windows driver does this here; who knows why */
3294 reg_w(sd, 0x2f, 0x80);
3295
Jean-François Moine87bae742010-11-12 05:31:34 -03003296 /******** Set the framerate ********/
Hans de Goedeb282d872009-06-14 19:10:40 -03003297 sd->clockdiv = 1;
Hans de Goede49809d62009-06-07 12:10:39 -03003298
3299 /* Mode independent, but framerate dependent, regs */
Hans de Goedeb282d872009-06-14 19:10:40 -03003300 /* 0x51: Clock divider; Only works on some cams which use 2 crystals */
3301 reg_w(sd, 0x51, 0x04);
Hans de Goede49809d62009-06-07 12:10:39 -03003302 reg_w(sd, 0x22, 0x18);
3303 reg_w(sd, 0x23, 0xff);
3304
Hans de Goedeb282d872009-06-14 19:10:40 -03003305 if (sd->bridge == BRIDGE_OV518PLUS) {
3306 switch (sd->sensor) {
Hans de Goede859cc472010-01-07 15:42:35 -03003307 case SEN_OV7620AE:
Hans de Goedeb282d872009-06-14 19:10:40 -03003308 if (sd->gspca_dev.width == 320) {
3309 reg_w(sd, 0x20, 0x00);
3310 reg_w(sd, 0x21, 0x19);
3311 } else {
3312 reg_w(sd, 0x20, 0x60);
3313 reg_w(sd, 0x21, 0x1f);
3314 }
3315 break;
Hans de Goede859cc472010-01-07 15:42:35 -03003316 case SEN_OV7620:
3317 reg_w(sd, 0x20, 0x00);
3318 reg_w(sd, 0x21, 0x19);
3319 break;
Hans de Goedeb282d872009-06-14 19:10:40 -03003320 default:
3321 reg_w(sd, 0x21, 0x19);
3322 }
3323 } else
Hans de Goede49809d62009-06-07 12:10:39 -03003324 reg_w(sd, 0x71, 0x17); /* Compression-related? */
3325
3326 /* FIXME: Sensor-specific */
3327 /* Bit 5 is what matters here. Of course, it is "reserved" */
3328 i2c_w(sd, 0x54, 0x23);
3329
3330 reg_w(sd, 0x2f, 0x80);
3331
3332 if (sd->bridge == BRIDGE_OV518PLUS) {
3333 reg_w(sd, 0x24, 0x94);
3334 reg_w(sd, 0x25, 0x90);
3335 ov518_reg_w32(sd, 0xc4, 400, 2); /* 190h */
3336 ov518_reg_w32(sd, 0xc6, 540, 2); /* 21ch */
3337 ov518_reg_w32(sd, 0xc7, 540, 2); /* 21ch */
3338 ov518_reg_w32(sd, 0xc8, 108, 2); /* 6ch */
3339 ov518_reg_w32(sd, 0xca, 131098, 3); /* 2001ah */
3340 ov518_reg_w32(sd, 0xcb, 532, 2); /* 214h */
3341 ov518_reg_w32(sd, 0xcc, 2400, 2); /* 960h */
3342 ov518_reg_w32(sd, 0xcd, 32, 2); /* 20h */
3343 ov518_reg_w32(sd, 0xce, 608, 2); /* 260h */
3344 } else {
3345 reg_w(sd, 0x24, 0x9f);
3346 reg_w(sd, 0x25, 0x90);
3347 ov518_reg_w32(sd, 0xc4, 400, 2); /* 190h */
3348 ov518_reg_w32(sd, 0xc6, 381, 2); /* 17dh */
3349 ov518_reg_w32(sd, 0xc7, 381, 2); /* 17dh */
3350 ov518_reg_w32(sd, 0xc8, 128, 2); /* 80h */
3351 ov518_reg_w32(sd, 0xca, 183331, 3); /* 2cc23h */
3352 ov518_reg_w32(sd, 0xcb, 746, 2); /* 2eah */
3353 ov518_reg_w32(sd, 0xcc, 1750, 2); /* 6d6h */
3354 ov518_reg_w32(sd, 0xcd, 45, 2); /* 2dh */
3355 ov518_reg_w32(sd, 0xce, 851, 2); /* 353h */
3356 }
3357
3358 reg_w(sd, 0x2f, 0x80);
Hans de Goede49809d62009-06-07 12:10:39 -03003359}
3360
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003361/* Sets up the OV519 with the given image parameters
3362 *
3363 * OV519 needs a completely different approach, until we can figure out what
3364 * the individual registers do.
3365 *
3366 * Do not put any sensor-specific code in here (including I2C I/O functions)
3367 */
Jean-François Moinef8f20182010-11-12 07:54:02 -03003368static void ov519_mode_init_regs(struct sd *sd)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003369{
Jean-Francois Moinea5ae2062008-07-04 11:16:16 -03003370 static const struct ov_regvals mode_init_519_ov7670[] = {
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003371 { 0x5d, 0x03 }, /* Turn off suspend mode */
3372 { 0x53, 0x9f }, /* was 9b in 1.65-1.08 */
Jean-François Moine21867802010-11-12 06:12:09 -03003373 { OV519_R54_EN_CLK1, 0x0f }, /* bit2 (jpeg enable) */
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003374 { 0xa2, 0x20 }, /* a2-a5 are undocumented */
3375 { 0xa3, 0x18 },
3376 { 0xa4, 0x04 },
3377 { 0xa5, 0x28 },
3378 { 0x37, 0x00 }, /* SetUsbInit */
3379 { 0x55, 0x02 }, /* 4.096 Mhz audio clock */
3380 /* Enable both fields, YUV Input, disable defect comp (why?) */
3381 { 0x20, 0x0c },
3382 { 0x21, 0x38 },
3383 { 0x22, 0x1d },
3384 { 0x17, 0x50 }, /* undocumented */
3385 { 0x37, 0x00 }, /* undocumented */
3386 { 0x40, 0xff }, /* I2C timeout counter */
3387 { 0x46, 0x00 }, /* I2C clock prescaler */
3388 { 0x59, 0x04 }, /* new from windrv 090403 */
3389 { 0xff, 0x00 }, /* undocumented */
3390 /* windows reads 0x55 at this point, why? */
3391 };
3392
Jean-Francois Moinea5ae2062008-07-04 11:16:16 -03003393 static const struct ov_regvals mode_init_519[] = {
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003394 { 0x5d, 0x03 }, /* Turn off suspend mode */
3395 { 0x53, 0x9f }, /* was 9b in 1.65-1.08 */
Jean-François Moine21867802010-11-12 06:12:09 -03003396 { OV519_R54_EN_CLK1, 0x0f }, /* bit2 (jpeg enable) */
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003397 { 0xa2, 0x20 }, /* a2-a5 are undocumented */
3398 { 0xa3, 0x18 },
3399 { 0xa4, 0x04 },
3400 { 0xa5, 0x28 },
3401 { 0x37, 0x00 }, /* SetUsbInit */
3402 { 0x55, 0x02 }, /* 4.096 Mhz audio clock */
3403 /* Enable both fields, YUV Input, disable defect comp (why?) */
3404 { 0x22, 0x1d },
3405 { 0x17, 0x50 }, /* undocumented */
3406 { 0x37, 0x00 }, /* undocumented */
3407 { 0x40, 0xff }, /* I2C timeout counter */
3408 { 0x46, 0x00 }, /* I2C clock prescaler */
3409 { 0x59, 0x04 }, /* new from windrv 090403 */
3410 { 0xff, 0x00 }, /* undocumented */
3411 /* windows reads 0x55 at this point, why? */
3412 };
3413
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003414 /******** Set the mode ********/
3415 if (sd->sensor != SEN_OV7670) {
Jean-François Moinef8f20182010-11-12 07:54:02 -03003416 write_regvals(sd, mode_init_519, ARRAY_SIZE(mode_init_519));
Hans de Goede035d3a32010-01-09 08:14:43 -03003417 if (sd->sensor == SEN_OV7640 ||
3418 sd->sensor == SEN_OV7648) {
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03003419 /* Select 8-bit input mode */
Jean-Francois Moineac40b1f2008-11-08 06:03:37 -03003420 reg_w_mask(sd, OV519_R20_DFR, 0x10, 0x10);
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03003421 }
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003422 } else {
Jean-François Moinef8f20182010-11-12 07:54:02 -03003423 write_regvals(sd, mode_init_519_ov7670,
3424 ARRAY_SIZE(mode_init_519_ov7670));
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003425 }
3426
Jean-Francois Moineac40b1f2008-11-08 06:03:37 -03003427 reg_w(sd, OV519_R10_H_SIZE, sd->gspca_dev.width >> 4);
3428 reg_w(sd, OV519_R11_V_SIZE, sd->gspca_dev.height >> 3);
Hans de Goede80142ef2009-06-14 06:26:49 -03003429 if (sd->sensor == SEN_OV7670 &&
3430 sd->gspca_dev.cam.cam_mode[sd->gspca_dev.curr_mode].priv)
3431 reg_w(sd, OV519_R12_X_OFFSETL, 0x04);
Hans de Goede035d3a32010-01-09 08:14:43 -03003432 else if (sd->sensor == SEN_OV7648 &&
3433 sd->gspca_dev.cam.cam_mode[sd->gspca_dev.curr_mode].priv)
3434 reg_w(sd, OV519_R12_X_OFFSETL, 0x01);
Hans de Goede80142ef2009-06-14 06:26:49 -03003435 else
3436 reg_w(sd, OV519_R12_X_OFFSETL, 0x00);
Jean-Francois Moineac40b1f2008-11-08 06:03:37 -03003437 reg_w(sd, OV519_R13_X_OFFSETH, 0x00);
3438 reg_w(sd, OV519_R14_Y_OFFSETL, 0x00);
3439 reg_w(sd, OV519_R15_Y_OFFSETH, 0x00);
3440 reg_w(sd, OV519_R16_DIVIDER, 0x00);
3441 reg_w(sd, OV519_R25_FORMAT, 0x03); /* YUV422 */
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003442 reg_w(sd, 0x26, 0x00); /* Undocumented */
3443
3444 /******** Set the framerate ********/
3445 if (frame_rate > 0)
3446 sd->frame_rate = frame_rate;
3447
3448/* FIXME: These are only valid at the max resolution. */
3449 sd->clockdiv = 0;
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03003450 switch (sd->sensor) {
3451 case SEN_OV7640:
Hans de Goede035d3a32010-01-09 08:14:43 -03003452 case SEN_OV7648:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003453 switch (sd->frame_rate) {
Jean-Francois Moine53e74512008-11-08 06:10:19 -03003454 default:
3455/* case 30: */
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003456 reg_w(sd, 0xa4, 0x0c);
3457 reg_w(sd, 0x23, 0xff);
3458 break;
3459 case 25:
3460 reg_w(sd, 0xa4, 0x0c);
3461 reg_w(sd, 0x23, 0x1f);
3462 break;
3463 case 20:
3464 reg_w(sd, 0xa4, 0x0c);
3465 reg_w(sd, 0x23, 0x1b);
3466 break;
Jean-Francois Moine53e74512008-11-08 06:10:19 -03003467 case 15:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003468 reg_w(sd, 0xa4, 0x04);
3469 reg_w(sd, 0x23, 0xff);
3470 sd->clockdiv = 1;
3471 break;
3472 case 10:
3473 reg_w(sd, 0xa4, 0x04);
3474 reg_w(sd, 0x23, 0x1f);
3475 sd->clockdiv = 1;
3476 break;
3477 case 5:
3478 reg_w(sd, 0xa4, 0x04);
3479 reg_w(sd, 0x23, 0x1b);
3480 sd->clockdiv = 1;
3481 break;
3482 }
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03003483 break;
3484 case SEN_OV8610:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003485 switch (sd->frame_rate) {
3486 default: /* 15 fps */
3487/* case 15: */
3488 reg_w(sd, 0xa4, 0x06);
3489 reg_w(sd, 0x23, 0xff);
3490 break;
3491 case 10:
3492 reg_w(sd, 0xa4, 0x06);
3493 reg_w(sd, 0x23, 0x1f);
3494 break;
3495 case 5:
3496 reg_w(sd, 0xa4, 0x06);
3497 reg_w(sd, 0x23, 0x1b);
3498 break;
3499 }
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03003500 break;
3501 case SEN_OV7670: /* guesses, based on 7640 */
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003502 PDEBUG(D_STREAM, "Setting framerate to %d fps",
3503 (sd->frame_rate == 0) ? 15 : sd->frame_rate);
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03003504 reg_w(sd, 0xa4, 0x10);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003505 switch (sd->frame_rate) {
3506 case 30:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003507 reg_w(sd, 0x23, 0xff);
3508 break;
3509 case 20:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003510 reg_w(sd, 0x23, 0x1b);
3511 break;
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03003512 default:
3513/* case 15: */
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003514 reg_w(sd, 0x23, 0xff);
3515 sd->clockdiv = 1;
3516 break;
3517 }
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03003518 break;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003519 }
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003520}
3521
Jean-François Moinef8f20182010-11-12 07:54:02 -03003522static void mode_init_ov_sensor_regs(struct sd *sd)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003523{
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03003524 struct gspca_dev *gspca_dev;
Hans de Goedeebbb5c32009-10-12 11:32:44 -03003525 int qvga, xstart, xend, ystart, yend;
Jean-François Moine9d1593a2010-11-11 08:04:06 -03003526 u8 v;
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03003527
3528 gspca_dev = &sd->gspca_dev;
Jean-François Moine87bae742010-11-12 05:31:34 -03003529 qvga = gspca_dev->cam.cam_mode[gspca_dev->curr_mode].priv & 1;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003530
3531 /******** Mode (VGA/QVGA) and sensor specific regs ********/
3532 switch (sd->sensor) {
Hans de Goede635118d2009-10-11 09:49:03 -03003533 case SEN_OV2610:
3534 i2c_w_mask(sd, 0x14, qvga ? 0x20 : 0x00, 0x20);
3535 i2c_w_mask(sd, 0x28, qvga ? 0x00 : 0x20, 0x20);
3536 i2c_w(sd, 0x24, qvga ? 0x20 : 0x3a);
3537 i2c_w(sd, 0x25, qvga ? 0x30 : 0x60);
3538 i2c_w_mask(sd, 0x2d, qvga ? 0x40 : 0x00, 0x40);
3539 i2c_w_mask(sd, 0x67, qvga ? 0xf0 : 0x90, 0xf0);
3540 i2c_w_mask(sd, 0x74, qvga ? 0x20 : 0x00, 0x20);
Jean-François Moinef8f20182010-11-12 07:54:02 -03003541 return;
Hans de Goedeebbb5c32009-10-12 11:32:44 -03003542 case SEN_OV3610:
Hans de Goede635118d2009-10-11 09:49:03 -03003543 if (qvga) {
3544 xstart = (1040 - gspca_dev->width) / 2 + (0x1f << 4);
Hans de Goedeb46aaa02009-10-12 10:07:57 -03003545 ystart = (776 - gspca_dev->height) / 2;
Hans de Goede635118d2009-10-11 09:49:03 -03003546 } else {
Hans de Goedeb46aaa02009-10-12 10:07:57 -03003547 xstart = (2076 - gspca_dev->width) / 2 + (0x10 << 4);
Hans de Goede635118d2009-10-11 09:49:03 -03003548 ystart = (1544 - gspca_dev->height) / 2;
3549 }
3550 xend = xstart + gspca_dev->width;
3551 yend = ystart + gspca_dev->height;
3552 /* Writing to the COMH register resets the other windowing regs
3553 to their default values, so we must do this first. */
3554 i2c_w_mask(sd, 0x12, qvga ? 0x40 : 0x00, 0xf0);
3555 i2c_w_mask(sd, 0x32,
3556 (((xend >> 1) & 7) << 3) | ((xstart >> 1) & 7),
3557 0x3f);
3558 i2c_w_mask(sd, 0x03,
3559 (((yend >> 1) & 3) << 2) | ((ystart >> 1) & 3),
3560 0x0f);
3561 i2c_w(sd, 0x17, xstart >> 4);
3562 i2c_w(sd, 0x18, xend >> 4);
3563 i2c_w(sd, 0x19, ystart >> 3);
3564 i2c_w(sd, 0x1a, yend >> 3);
Jean-François Moinef8f20182010-11-12 07:54:02 -03003565 return;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003566 case SEN_OV8610:
3567 /* For OV8610 qvga means qsvga */
3568 i2c_w_mask(sd, OV7610_REG_COM_C, qvga ? (1 << 5) : 0, 1 << 5);
Hans de Goedeebbb5c32009-10-12 11:32:44 -03003569 i2c_w_mask(sd, 0x13, 0x00, 0x20); /* Select 16 bit data bus */
3570 i2c_w_mask(sd, 0x12, 0x04, 0x06); /* AWB: 1 Test pattern: 0 */
3571 i2c_w_mask(sd, 0x2d, 0x00, 0x40); /* from windrv 090403 */
3572 i2c_w_mask(sd, 0x28, 0x20, 0x20); /* progressive mode on */
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003573 break;
3574 case SEN_OV7610:
3575 i2c_w_mask(sd, 0x14, qvga ? 0x20 : 0x00, 0x20);
Jean-François Moine780e3122010-10-19 04:29:10 -03003576 i2c_w(sd, 0x35, qvga ? 0x1e : 0x9e);
Hans de Goedeebbb5c32009-10-12 11:32:44 -03003577 i2c_w_mask(sd, 0x13, 0x00, 0x20); /* Select 16 bit data bus */
3578 i2c_w_mask(sd, 0x12, 0x04, 0x06); /* AWB: 1 Test pattern: 0 */
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003579 break;
3580 case SEN_OV7620:
Hans de Goede859cc472010-01-07 15:42:35 -03003581 case SEN_OV7620AE:
Hans de Goedeb282d872009-06-14 19:10:40 -03003582 case SEN_OV76BE:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003583 i2c_w_mask(sd, 0x14, qvga ? 0x20 : 0x00, 0x20);
3584 i2c_w_mask(sd, 0x28, qvga ? 0x00 : 0x20, 0x20);
3585 i2c_w(sd, 0x24, qvga ? 0x20 : 0x3a);
3586 i2c_w(sd, 0x25, qvga ? 0x30 : 0x60);
3587 i2c_w_mask(sd, 0x2d, qvga ? 0x40 : 0x00, 0x40);
Hans de Goedeb282d872009-06-14 19:10:40 -03003588 i2c_w_mask(sd, 0x67, qvga ? 0xb0 : 0x90, 0xf0);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003589 i2c_w_mask(sd, 0x74, qvga ? 0x20 : 0x00, 0x20);
Hans de Goedeebbb5c32009-10-12 11:32:44 -03003590 i2c_w_mask(sd, 0x13, 0x00, 0x20); /* Select 16 bit data bus */
3591 i2c_w_mask(sd, 0x12, 0x04, 0x06); /* AWB: 1 Test pattern: 0 */
3592 if (sd->sensor == SEN_OV76BE)
3593 i2c_w(sd, 0x35, qvga ? 0x1e : 0x9e);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003594 break;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003595 case SEN_OV7640:
Hans de Goede035d3a32010-01-09 08:14:43 -03003596 case SEN_OV7648:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003597 i2c_w_mask(sd, 0x14, qvga ? 0x20 : 0x00, 0x20);
3598 i2c_w_mask(sd, 0x28, qvga ? 0x00 : 0x20, 0x20);
Hans de Goede8d0082f2010-01-09 19:45:44 -03003599 /* Setting this undocumented bit in qvga mode removes a very
3600 annoying vertical shaking of the image */
Hans de Goede035d3a32010-01-09 08:14:43 -03003601 i2c_w_mask(sd, 0x2d, qvga ? 0x40 : 0x00, 0x40);
Hans de Goede8d0082f2010-01-09 19:45:44 -03003602 /* Unknown */
Hans de Goede035d3a32010-01-09 08:14:43 -03003603 i2c_w_mask(sd, 0x67, qvga ? 0xf0 : 0x90, 0xf0);
Hans de Goede8d0082f2010-01-09 19:45:44 -03003604 /* Allow higher automatic gain (to allow higher framerates) */
Hans de Goede035d3a32010-01-09 08:14:43 -03003605 i2c_w_mask(sd, 0x74, qvga ? 0x20 : 0x00, 0x20);
Hans de Goedeebbb5c32009-10-12 11:32:44 -03003606 i2c_w_mask(sd, 0x12, 0x04, 0x04); /* AWB: 1 */
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003607 break;
3608 case SEN_OV7670:
3609 /* set COM7_FMT_VGA or COM7_FMT_QVGA
3610 * do we need to set anything else?
3611 * HSTART etc are set in set_ov_sensor_window itself */
Jean-François Moine21867802010-11-12 06:12:09 -03003612 i2c_w_mask(sd, OV7670_R12_COM7,
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003613 qvga ? OV7670_COM7_FMT_QVGA : OV7670_COM7_FMT_VGA,
3614 OV7670_COM7_FMT_MASK);
Hans de Goedeebbb5c32009-10-12 11:32:44 -03003615 i2c_w_mask(sd, 0x13, 0x00, 0x20); /* Select 16 bit data bus */
Jean-François Moine21867802010-11-12 06:12:09 -03003616 i2c_w_mask(sd, OV7670_R13_COM8, OV7670_COM8_AWB,
Hans de Goedeebbb5c32009-10-12 11:32:44 -03003617 OV7670_COM8_AWB);
3618 if (qvga) { /* QVGA from ov7670.c by
3619 * Jonathan Corbet */
3620 xstart = 164;
3621 xend = 28;
3622 ystart = 14;
3623 yend = 494;
3624 } else { /* VGA */
3625 xstart = 158;
3626 xend = 14;
3627 ystart = 10;
3628 yend = 490;
3629 }
3630 /* OV7670 hardware window registers are split across
3631 * multiple locations */
Jean-François Moine21867802010-11-12 06:12:09 -03003632 i2c_w(sd, OV7670_R17_HSTART, xstart >> 3);
3633 i2c_w(sd, OV7670_R18_HSTOP, xend >> 3);
3634 v = i2c_r(sd, OV7670_R32_HREF);
Hans de Goedeebbb5c32009-10-12 11:32:44 -03003635 v = (v & 0xc0) | ((xend & 0x7) << 3) | (xstart & 0x07);
3636 msleep(10); /* need to sleep between read and write to
3637 * same reg! */
Jean-François Moine21867802010-11-12 06:12:09 -03003638 i2c_w(sd, OV7670_R32_HREF, v);
Hans de Goedeebbb5c32009-10-12 11:32:44 -03003639
Jean-François Moine21867802010-11-12 06:12:09 -03003640 i2c_w(sd, OV7670_R19_VSTART, ystart >> 2);
3641 i2c_w(sd, OV7670_R1A_VSTOP, yend >> 2);
3642 v = i2c_r(sd, OV7670_R03_VREF);
Hans de Goedeebbb5c32009-10-12 11:32:44 -03003643 v = (v & 0xc0) | ((yend & 0x3) << 2) | (ystart & 0x03);
3644 msleep(10); /* need to sleep between read and write to
3645 * same reg! */
Jean-François Moine21867802010-11-12 06:12:09 -03003646 i2c_w(sd, OV7670_R03_VREF, v);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003647 break;
3648 case SEN_OV6620:
Hans de Goedeebbb5c32009-10-12 11:32:44 -03003649 i2c_w_mask(sd, 0x14, qvga ? 0x20 : 0x00, 0x20);
3650 i2c_w_mask(sd, 0x13, 0x00, 0x20); /* Select 16 bit data bus */
3651 i2c_w_mask(sd, 0x12, 0x04, 0x06); /* AWB: 1 Test pattern: 0 */
3652 break;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003653 case SEN_OV6630:
Hans de Goede7d971372009-06-14 05:28:17 -03003654 case SEN_OV66308AF:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003655 i2c_w_mask(sd, 0x14, qvga ? 0x20 : 0x00, 0x20);
Hans de Goedeebbb5c32009-10-12 11:32:44 -03003656 i2c_w_mask(sd, 0x12, 0x04, 0x06); /* AWB: 1 Test pattern: 0 */
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003657 break;
3658 default:
Jean-François Moinef8f20182010-11-12 07:54:02 -03003659 return;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003660 }
3661
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003662 /******** Clock programming ********/
Hans de Goedeae49c402009-06-14 19:15:07 -03003663 i2c_w(sd, 0x11, sd->clockdiv);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003664}
3665
Jean-François Moine62833ac2010-10-02 04:27:02 -03003666static void sethvflip(struct gspca_dev *gspca_dev)
Jean-Francois Moine0cd67592008-07-29 05:25:28 -03003667{
Jean-François Moine62833ac2010-10-02 04:27:02 -03003668 struct sd *sd = (struct sd *) gspca_dev;
3669
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03003670 if (sd->sensor != SEN_OV7670)
3671 return;
Jean-Francois Moine0cd67592008-07-29 05:25:28 -03003672 if (sd->gspca_dev.streaming)
3673 ov51x_stop(sd);
Jean-François Moine21867802010-11-12 06:12:09 -03003674 i2c_w_mask(sd, OV7670_R1E_MVFP,
Jean-François Moine62833ac2010-10-02 04:27:02 -03003675 OV7670_MVFP_MIRROR * sd->ctrls[HFLIP].val
3676 | OV7670_MVFP_VFLIP * sd->ctrls[VFLIP].val,
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03003677 OV7670_MVFP_MIRROR | OV7670_MVFP_VFLIP);
Jean-Francois Moine0cd67592008-07-29 05:25:28 -03003678 if (sd->gspca_dev.streaming)
3679 ov51x_restart(sd);
3680}
3681
Jean-François Moinef8f20182010-11-12 07:54:02 -03003682static void set_ov_sensor_window(struct sd *sd)
Jean-Francois Moine0cd67592008-07-29 05:25:28 -03003683{
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03003684 struct gspca_dev *gspca_dev;
Hans de Goede124cc9c2009-06-14 05:48:00 -03003685 int qvga, crop;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003686 int hwsbase, hwebase, vwsbase, vwebase, hwscale, vwscale;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003687
Hans de Goede635118d2009-10-11 09:49:03 -03003688 /* mode setup is fully handled in mode_init_ov_sensor_regs for these */
Hans de Goedeebbb5c32009-10-12 11:32:44 -03003689 if (sd->sensor == SEN_OV2610 || sd->sensor == SEN_OV3610 ||
Jean-François Moinef8f20182010-11-12 07:54:02 -03003690 sd->sensor == SEN_OV7670) {
3691 mode_init_ov_sensor_regs(sd);
3692 return;
3693 }
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03003694 gspca_dev = &sd->gspca_dev;
Jean-François Moine87bae742010-11-12 05:31:34 -03003695 qvga = gspca_dev->cam.cam_mode[gspca_dev->curr_mode].priv & 1;
3696 crop = gspca_dev->cam.cam_mode[gspca_dev->curr_mode].priv & 2;
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03003697
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003698 /* The different sensor ICs handle setting up of window differently.
3699 * IF YOU SET IT WRONG, YOU WILL GET ALL ZERO ISOC DATA FROM OV51x!! */
3700 switch (sd->sensor) {
3701 case SEN_OV8610:
3702 hwsbase = 0x1e;
3703 hwebase = 0x1e;
3704 vwsbase = 0x02;
3705 vwebase = 0x02;
3706 break;
3707 case SEN_OV7610:
3708 case SEN_OV76BE:
3709 hwsbase = 0x38;
3710 hwebase = 0x3a;
3711 vwsbase = vwebase = 0x05;
3712 break;
3713 case SEN_OV6620:
3714 case SEN_OV6630:
Hans de Goede7d971372009-06-14 05:28:17 -03003715 case SEN_OV66308AF:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003716 hwsbase = 0x38;
3717 hwebase = 0x3a;
3718 vwsbase = 0x05;
3719 vwebase = 0x06;
Hans de Goede7d971372009-06-14 05:28:17 -03003720 if (sd->sensor == SEN_OV66308AF && qvga)
Hans de Goede49809d62009-06-07 12:10:39 -03003721 /* HDG: this fixes U and V getting swapped */
Hans de Goede7d971372009-06-14 05:28:17 -03003722 hwsbase++;
Hans de Goede124cc9c2009-06-14 05:48:00 -03003723 if (crop) {
3724 hwsbase += 8;
3725 hwebase += 8;
3726 vwsbase += 11;
3727 vwebase += 11;
3728 }
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003729 break;
3730 case SEN_OV7620:
Hans de Goede859cc472010-01-07 15:42:35 -03003731 case SEN_OV7620AE:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003732 hwsbase = 0x2f; /* From 7620.SET (spec is wrong) */
3733 hwebase = 0x2f;
3734 vwsbase = vwebase = 0x05;
3735 break;
3736 case SEN_OV7640:
Hans de Goede035d3a32010-01-09 08:14:43 -03003737 case SEN_OV7648:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003738 hwsbase = 0x1a;
3739 hwebase = 0x1a;
3740 vwsbase = vwebase = 0x03;
3741 break;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003742 default:
Jean-François Moinef8f20182010-11-12 07:54:02 -03003743 return;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003744 }
3745
3746 switch (sd->sensor) {
3747 case SEN_OV6620:
3748 case SEN_OV6630:
Hans de Goede7d971372009-06-14 05:28:17 -03003749 case SEN_OV66308AF:
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03003750 if (qvga) { /* QCIF */
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003751 hwscale = 0;
3752 vwscale = 0;
3753 } else { /* CIF */
3754 hwscale = 1;
3755 vwscale = 1; /* The datasheet says 0;
3756 * it's wrong */
3757 }
3758 break;
3759 case SEN_OV8610:
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03003760 if (qvga) { /* QSVGA */
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003761 hwscale = 1;
3762 vwscale = 1;
3763 } else { /* SVGA */
3764 hwscale = 2;
3765 vwscale = 2;
3766 }
3767 break;
3768 default: /* SEN_OV7xx0 */
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03003769 if (qvga) { /* QVGA */
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003770 hwscale = 1;
3771 vwscale = 0;
3772 } else { /* VGA */
3773 hwscale = 2;
3774 vwscale = 1;
3775 }
3776 }
3777
Jean-François Moinef8f20182010-11-12 07:54:02 -03003778 mode_init_ov_sensor_regs(sd);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003779
Hans de Goedeebbb5c32009-10-12 11:32:44 -03003780 i2c_w(sd, 0x17, hwsbase);
Hans de Goedea511ba92009-10-16 07:13:07 -03003781 i2c_w(sd, 0x18, hwebase + (sd->sensor_width >> hwscale));
Hans de Goedeebbb5c32009-10-12 11:32:44 -03003782 i2c_w(sd, 0x19, vwsbase);
Hans de Goedea511ba92009-10-16 07:13:07 -03003783 i2c_w(sd, 0x1a, vwebase + (sd->sensor_height >> vwscale));
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003784}
3785
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003786/* -- start the camera -- */
Jean-Francois Moine72ab97c2008-09-20 06:39:08 -03003787static int sd_start(struct gspca_dev *gspca_dev)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003788{
3789 struct sd *sd = (struct sd *) gspca_dev;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003790
Hans de Goedea511ba92009-10-16 07:13:07 -03003791 /* Default for most bridges, allow bridge_mode_init_regs to override */
3792 sd->sensor_width = sd->gspca_dev.width;
3793 sd->sensor_height = sd->gspca_dev.height;
3794
Hans de Goede49809d62009-06-07 12:10:39 -03003795 switch (sd->bridge) {
Hans de Goede1876bb92009-06-14 06:45:50 -03003796 case BRIDGE_OV511:
3797 case BRIDGE_OV511PLUS:
Jean-François Moinef8f20182010-11-12 07:54:02 -03003798 ov511_mode_init_regs(sd);
Hans de Goede1876bb92009-06-14 06:45:50 -03003799 break;
Hans de Goede49809d62009-06-07 12:10:39 -03003800 case BRIDGE_OV518:
3801 case BRIDGE_OV518PLUS:
Jean-François Moinef8f20182010-11-12 07:54:02 -03003802 ov518_mode_init_regs(sd);
Hans de Goede49809d62009-06-07 12:10:39 -03003803 break;
3804 case BRIDGE_OV519:
Jean-François Moinef8f20182010-11-12 07:54:02 -03003805 ov519_mode_init_regs(sd);
Hans de Goede49809d62009-06-07 12:10:39 -03003806 break;
Hans de Goedeb46aaa02009-10-12 10:07:57 -03003807 /* case BRIDGE_OVFX2: nothing to do */
Hans de Goedea511ba92009-10-16 07:13:07 -03003808 case BRIDGE_W9968CF:
Jean-François Moinef8f20182010-11-12 07:54:02 -03003809 w9968cf_mode_init_regs(sd);
Hans de Goedea511ba92009-10-16 07:13:07 -03003810 break;
Hans de Goede49809d62009-06-07 12:10:39 -03003811 }
Hans de Goede49809d62009-06-07 12:10:39 -03003812
Jean-François Moinef8f20182010-11-12 07:54:02 -03003813 set_ov_sensor_window(sd);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003814
Hans de Goede49809d62009-06-07 12:10:39 -03003815 setcontrast(gspca_dev);
3816 setbrightness(gspca_dev);
3817 setcolors(gspca_dev);
Jean-François Moine62833ac2010-10-02 04:27:02 -03003818 sethvflip(gspca_dev);
3819 setautobright(gspca_dev);
3820 setfreq_i(sd);
Hans de Goede49809d62009-06-07 12:10:39 -03003821
Hans de Goede417a4d22010-02-19 07:37:08 -03003822 /* Force clear snapshot state in case the snapshot button was
3823 pressed while we weren't streaming */
3824 sd->snapshot_needs_reset = 1;
3825 sd_reset_snapshot(gspca_dev);
Hans de Goede417a4d22010-02-19 07:37:08 -03003826
Hans de Goeded6b6d7a2010-05-08 08:55:42 -03003827 sd->first_frame = 3;
3828
Jean-François Moinef8f20182010-11-12 07:54:02 -03003829 ov51x_restart(sd);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003830 ov51x_led_control(sd, 1);
Jean-François Moinef8f20182010-11-12 07:54:02 -03003831 return gspca_dev->usb_err;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003832}
3833
3834static void sd_stopN(struct gspca_dev *gspca_dev)
3835{
Jean-Francois Moineac40b1f2008-11-08 06:03:37 -03003836 struct sd *sd = (struct sd *) gspca_dev;
3837
3838 ov51x_stop(sd);
3839 ov51x_led_control(sd, 0);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003840}
3841
Hans de Goede79b35902009-10-19 06:08:01 -03003842static void sd_stop0(struct gspca_dev *gspca_dev)
3843{
3844 struct sd *sd = (struct sd *) gspca_dev;
3845
Jean-François Moined65174c2010-11-11 06:20:42 -03003846 if (!sd->gspca_dev.present)
3847 return;
Hans de Goede79b35902009-10-19 06:08:01 -03003848 if (sd->bridge == BRIDGE_W9968CF)
3849 w9968cf_stop0(sd);
Hans de Goede614d0692010-10-27 07:42:28 -03003850
Jean-François Moine14653e62010-11-11 06:17:01 -03003851#if defined(CONFIG_INPUT) || defined(CONFIG_INPUT_MODULE)
Hans de Goede614d0692010-10-27 07:42:28 -03003852 /* If the last button state is pressed, release it now! */
3853 if (sd->snapshot_pressed) {
3854 input_report_key(gspca_dev->input_dev, KEY_CAMERA, 0);
3855 input_sync(gspca_dev->input_dev);
3856 sd->snapshot_pressed = 0;
3857 }
3858#endif
Hans de Goede79b35902009-10-19 06:08:01 -03003859}
3860
Hans de Goede92e232a2010-02-20 04:30:45 -03003861static void ov51x_handle_button(struct gspca_dev *gspca_dev, u8 state)
3862{
3863 struct sd *sd = (struct sd *) gspca_dev;
3864
3865 if (sd->snapshot_pressed != state) {
Jean-François Moine28566432010-10-01 07:33:26 -03003866#if defined(CONFIG_INPUT) || defined(CONFIG_INPUT_MODULE)
Hans de Goede92e232a2010-02-20 04:30:45 -03003867 input_report_key(gspca_dev->input_dev, KEY_CAMERA, state);
3868 input_sync(gspca_dev->input_dev);
3869#endif
3870 if (state)
3871 sd->snapshot_needs_reset = 1;
3872
3873 sd->snapshot_pressed = state;
3874 } else {
Hans de Goede88e8d202010-02-20 04:45:49 -03003875 /* On the ov511 / ov519 we need to reset the button state
3876 multiple times, as resetting does not work as long as the
3877 button stays pressed */
3878 switch (sd->bridge) {
3879 case BRIDGE_OV511:
3880 case BRIDGE_OV511PLUS:
3881 case BRIDGE_OV519:
3882 if (state)
3883 sd->snapshot_needs_reset = 1;
3884 break;
3885 }
Hans de Goede92e232a2010-02-20 04:30:45 -03003886 }
3887}
3888
Hans de Goede1876bb92009-06-14 06:45:50 -03003889static void ov511_pkt_scan(struct gspca_dev *gspca_dev,
Jean-Francois Moine76dd2722009-11-13 09:21:03 -03003890 u8 *in, /* isoc packet */
3891 int len) /* iso packet length */
Hans de Goede1876bb92009-06-14 06:45:50 -03003892{
3893 struct sd *sd = (struct sd *) gspca_dev;
3894
3895 /* SOF/EOF packets have 1st to 8th bytes zeroed and the 9th
3896 * byte non-zero. The EOF packet has image width/height in the
3897 * 10th and 11th bytes. The 9th byte is given as follows:
3898 *
3899 * bit 7: EOF
3900 * 6: compression enabled
3901 * 5: 422/420/400 modes
3902 * 4: 422/420/400 modes
3903 * 3: 1
3904 * 2: snapshot button on
3905 * 1: snapshot frame
3906 * 0: even/odd field
3907 */
3908 if (!(in[0] | in[1] | in[2] | in[3] | in[4] | in[5] | in[6] | in[7]) &&
3909 (in[8] & 0x08)) {
Hans de Goede88e8d202010-02-20 04:45:49 -03003910 ov51x_handle_button(gspca_dev, (in[8] >> 2) & 1);
Hans de Goede1876bb92009-06-14 06:45:50 -03003911 if (in[8] & 0x80) {
3912 /* Frame end */
3913 if ((in[9] + 1) * 8 != gspca_dev->width ||
3914 (in[10] + 1) * 8 != gspca_dev->height) {
3915 PDEBUG(D_ERR, "Invalid frame size, got: %dx%d,"
3916 " requested: %dx%d\n",
3917 (in[9] + 1) * 8, (in[10] + 1) * 8,
3918 gspca_dev->width, gspca_dev->height);
3919 gspca_dev->last_packet_type = DISCARD_PACKET;
3920 return;
3921 }
3922 /* Add 11 byte footer to frame, might be usefull */
Jean-Francois Moine76dd2722009-11-13 09:21:03 -03003923 gspca_frame_add(gspca_dev, LAST_PACKET, in, 11);
Hans de Goede1876bb92009-06-14 06:45:50 -03003924 return;
3925 } else {
3926 /* Frame start */
Jean-Francois Moine76dd2722009-11-13 09:21:03 -03003927 gspca_frame_add(gspca_dev, FIRST_PACKET, in, 0);
Hans de Goede1876bb92009-06-14 06:45:50 -03003928 sd->packet_nr = 0;
3929 }
3930 }
3931
3932 /* Ignore the packet number */
3933 len--;
3934
3935 /* intermediate packet */
Jean-Francois Moine76dd2722009-11-13 09:21:03 -03003936 gspca_frame_add(gspca_dev, INTER_PACKET, in, len);
Hans de Goede1876bb92009-06-14 06:45:50 -03003937}
3938
Hans de Goede49809d62009-06-07 12:10:39 -03003939static void ov518_pkt_scan(struct gspca_dev *gspca_dev,
Jean-Francois Moine76dd2722009-11-13 09:21:03 -03003940 u8 *data, /* isoc packet */
Hans de Goede49809d62009-06-07 12:10:39 -03003941 int len) /* iso packet length */
3942{
Hans de Goede92918a52009-06-14 06:21:35 -03003943 struct sd *sd = (struct sd *) gspca_dev;
Hans de Goede49809d62009-06-07 12:10:39 -03003944
3945 /* A false positive here is likely, until OVT gives me
3946 * the definitive SOF/EOF format */
3947 if ((!(data[0] | data[1] | data[2] | data[3] | data[5])) && data[6]) {
Hans de Goede92e232a2010-02-20 04:30:45 -03003948 ov51x_handle_button(gspca_dev, (data[6] >> 1) & 1);
Jean-Francois Moine76dd2722009-11-13 09:21:03 -03003949 gspca_frame_add(gspca_dev, LAST_PACKET, NULL, 0);
3950 gspca_frame_add(gspca_dev, FIRST_PACKET, NULL, 0);
Hans de Goede92918a52009-06-14 06:21:35 -03003951 sd->packet_nr = 0;
3952 }
3953
3954 if (gspca_dev->last_packet_type == DISCARD_PACKET)
3955 return;
3956
3957 /* Does this device use packet numbers ? */
3958 if (len & 7) {
3959 len--;
3960 if (sd->packet_nr == data[len])
3961 sd->packet_nr++;
3962 /* The last few packets of the frame (which are all 0's
3963 except that they may contain part of the footer), are
3964 numbered 0 */
3965 else if (sd->packet_nr == 0 || data[len]) {
3966 PDEBUG(D_ERR, "Invalid packet nr: %d (expect: %d)",
3967 (int)data[len], (int)sd->packet_nr);
3968 gspca_dev->last_packet_type = DISCARD_PACKET;
3969 return;
3970 }
Hans de Goede49809d62009-06-07 12:10:39 -03003971 }
3972
3973 /* intermediate packet */
Jean-Francois Moine76dd2722009-11-13 09:21:03 -03003974 gspca_frame_add(gspca_dev, INTER_PACKET, data, len);
Hans de Goede49809d62009-06-07 12:10:39 -03003975}
3976
3977static void ov519_pkt_scan(struct gspca_dev *gspca_dev,
Jean-Francois Moine76dd2722009-11-13 09:21:03 -03003978 u8 *data, /* isoc packet */
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003979 int len) /* iso packet length */
3980{
3981 /* Header of ov519 is 16 bytes:
3982 * Byte Value Description
3983 * 0 0xff magic
3984 * 1 0xff magic
3985 * 2 0xff magic
3986 * 3 0xXX 0x50 = SOF, 0x51 = EOF
3987 * 9 0xXX 0x01 initial frame without data,
3988 * 0x00 standard frame with image
3989 * 14 Lo in EOF: length of image data / 8
3990 * 15 Hi
3991 */
3992
3993 if (data[0] == 0xff && data[1] == 0xff && data[2] == 0xff) {
3994 switch (data[3]) {
3995 case 0x50: /* start of frame */
Hans de Goede417a4d22010-02-19 07:37:08 -03003996 /* Don't check the button state here, as the state
3997 usually (always ?) changes at EOF and checking it
3998 here leads to unnecessary snapshot state resets. */
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03003999#define HDRSZ 16
4000 data += HDRSZ;
4001 len -= HDRSZ;
4002#undef HDRSZ
4003 if (data[0] == 0xff || data[1] == 0xd8)
Jean-Francois Moine76dd2722009-11-13 09:21:03 -03004004 gspca_frame_add(gspca_dev, FIRST_PACKET,
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004005 data, len);
4006 else
4007 gspca_dev->last_packet_type = DISCARD_PACKET;
4008 return;
4009 case 0x51: /* end of frame */
Hans de Goede92e232a2010-02-20 04:30:45 -03004010 ov51x_handle_button(gspca_dev, data[11] & 1);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004011 if (data[9] != 0)
4012 gspca_dev->last_packet_type = DISCARD_PACKET;
Jean-Francois Moine76dd2722009-11-13 09:21:03 -03004013 gspca_frame_add(gspca_dev, LAST_PACKET,
4014 NULL, 0);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004015 return;
4016 }
4017 }
4018
4019 /* intermediate packet */
Jean-Francois Moine76dd2722009-11-13 09:21:03 -03004020 gspca_frame_add(gspca_dev, INTER_PACKET, data, len);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004021}
4022
Hans de Goedeb46aaa02009-10-12 10:07:57 -03004023static void ovfx2_pkt_scan(struct gspca_dev *gspca_dev,
Jean-Francois Moine76dd2722009-11-13 09:21:03 -03004024 u8 *data, /* isoc packet */
Hans de Goedeb46aaa02009-10-12 10:07:57 -03004025 int len) /* iso packet length */
4026{
Hans de Goeded6b6d7a2010-05-08 08:55:42 -03004027 struct sd *sd = (struct sd *) gspca_dev;
Hans de Goeded6b6d7a2010-05-08 08:55:42 -03004028
4029 gspca_frame_add(gspca_dev, INTER_PACKET, data, len);
4030
Hans de Goedeb46aaa02009-10-12 10:07:57 -03004031 /* A short read signals EOF */
4032 if (len < OVFX2_BULK_SIZE) {
Hans de Goeded6b6d7a2010-05-08 08:55:42 -03004033 /* If the frame is short, and it is one of the first ones
4034 the sensor and bridge are still syncing, so drop it. */
4035 if (sd->first_frame) {
4036 sd->first_frame--;
Jean-François Moineb192ca92010-06-27 03:08:19 -03004037 if (gspca_dev->image_len <
4038 sd->gspca_dev.width * sd->gspca_dev.height)
Hans de Goeded6b6d7a2010-05-08 08:55:42 -03004039 gspca_dev->last_packet_type = DISCARD_PACKET;
4040 }
4041 gspca_frame_add(gspca_dev, LAST_PACKET, NULL, 0);
Jean-Francois Moine76dd2722009-11-13 09:21:03 -03004042 gspca_frame_add(gspca_dev, FIRST_PACKET, NULL, 0);
Hans de Goedeb46aaa02009-10-12 10:07:57 -03004043 }
Hans de Goedeb46aaa02009-10-12 10:07:57 -03004044}
4045
Hans de Goede49809d62009-06-07 12:10:39 -03004046static void sd_pkt_scan(struct gspca_dev *gspca_dev,
Jean-Francois Moine76dd2722009-11-13 09:21:03 -03004047 u8 *data, /* isoc packet */
Hans de Goede49809d62009-06-07 12:10:39 -03004048 int len) /* iso packet length */
4049{
4050 struct sd *sd = (struct sd *) gspca_dev;
4051
4052 switch (sd->bridge) {
4053 case BRIDGE_OV511:
4054 case BRIDGE_OV511PLUS:
Jean-Francois Moine76dd2722009-11-13 09:21:03 -03004055 ov511_pkt_scan(gspca_dev, data, len);
Hans de Goede49809d62009-06-07 12:10:39 -03004056 break;
4057 case BRIDGE_OV518:
4058 case BRIDGE_OV518PLUS:
Jean-Francois Moine76dd2722009-11-13 09:21:03 -03004059 ov518_pkt_scan(gspca_dev, data, len);
Hans de Goede49809d62009-06-07 12:10:39 -03004060 break;
4061 case BRIDGE_OV519:
Jean-Francois Moine76dd2722009-11-13 09:21:03 -03004062 ov519_pkt_scan(gspca_dev, data, len);
Hans de Goede49809d62009-06-07 12:10:39 -03004063 break;
Hans de Goedeb46aaa02009-10-12 10:07:57 -03004064 case BRIDGE_OVFX2:
Jean-Francois Moine76dd2722009-11-13 09:21:03 -03004065 ovfx2_pkt_scan(gspca_dev, data, len);
Hans de Goedeb46aaa02009-10-12 10:07:57 -03004066 break;
Hans de Goedea511ba92009-10-16 07:13:07 -03004067 case BRIDGE_W9968CF:
Jean-Francois Moine76dd2722009-11-13 09:21:03 -03004068 w9968cf_pkt_scan(gspca_dev, data, len);
Hans de Goedea511ba92009-10-16 07:13:07 -03004069 break;
Hans de Goede49809d62009-06-07 12:10:39 -03004070 }
4071}
4072
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004073/* -- management routines -- */
4074
4075static void setbrightness(struct gspca_dev *gspca_dev)
4076{
4077 struct sd *sd = (struct sd *) gspca_dev;
4078 int val;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004079
Jean-François Moine62833ac2010-10-02 04:27:02 -03004080 val = sd->ctrls[BRIGHTNESS].val;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004081 switch (sd->sensor) {
4082 case SEN_OV8610:
4083 case SEN_OV7610:
4084 case SEN_OV76BE:
4085 case SEN_OV6620:
4086 case SEN_OV6630:
Hans de Goede7d971372009-06-14 05:28:17 -03004087 case SEN_OV66308AF:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004088 case SEN_OV7640:
Hans de Goede035d3a32010-01-09 08:14:43 -03004089 case SEN_OV7648:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004090 i2c_w(sd, OV7610_REG_BRT, val);
4091 break;
4092 case SEN_OV7620:
Hans de Goede859cc472010-01-07 15:42:35 -03004093 case SEN_OV7620AE:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004094 /* 7620 doesn't like manual changes when in auto mode */
Jean-François Moine62833ac2010-10-02 04:27:02 -03004095 if (!sd->ctrls[AUTOBRIGHT].val)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004096 i2c_w(sd, OV7610_REG_BRT, val);
4097 break;
4098 case SEN_OV7670:
Jean-Francois Moine594f5b82008-08-01 06:37:51 -03004099/*win trace
Jean-François Moine21867802010-11-12 06:12:09 -03004100 * i2c_w_mask(sd, OV7670_R13_COM8, 0, OV7670_COM8_AEC); */
4101 i2c_w(sd, OV7670_R55_BRIGHT, ov7670_abs_to_sm(val));
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004102 break;
4103 }
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004104}
4105
4106static void setcontrast(struct gspca_dev *gspca_dev)
4107{
4108 struct sd *sd = (struct sd *) gspca_dev;
4109 int val;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004110
Jean-François Moine62833ac2010-10-02 04:27:02 -03004111 val = sd->ctrls[CONTRAST].val;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004112 switch (sd->sensor) {
4113 case SEN_OV7610:
4114 case SEN_OV6620:
4115 i2c_w(sd, OV7610_REG_CNT, val);
4116 break;
4117 case SEN_OV6630:
Hans de Goede7d971372009-06-14 05:28:17 -03004118 case SEN_OV66308AF:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004119 i2c_w_mask(sd, OV7610_REG_CNT, val >> 4, 0x0f);
Hans de Goede49809d62009-06-07 12:10:39 -03004120 break;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004121 case SEN_OV8610: {
Jean-François Moine9d1593a2010-11-11 08:04:06 -03004122 static const u8 ctab[] = {
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004123 0x03, 0x09, 0x0b, 0x0f, 0x53, 0x6f, 0x35, 0x7f
4124 };
4125
4126 /* Use Y gamma control instead. Bit 0 enables it. */
4127 i2c_w(sd, 0x64, ctab[val >> 5]);
4128 break;
4129 }
Hans de Goede859cc472010-01-07 15:42:35 -03004130 case SEN_OV7620:
4131 case SEN_OV7620AE: {
Jean-François Moine9d1593a2010-11-11 08:04:06 -03004132 static const u8 ctab[] = {
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004133 0x01, 0x05, 0x09, 0x11, 0x15, 0x35, 0x37, 0x57,
4134 0x5b, 0xa5, 0xa7, 0xc7, 0xc9, 0xcf, 0xef, 0xff
4135 };
4136
4137 /* Use Y gamma control instead. Bit 0 enables it. */
4138 i2c_w(sd, 0x64, ctab[val >> 4]);
4139 break;
4140 }
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004141 case SEN_OV7670:
4142 /* check that this isn't just the same as ov7610 */
Jean-François Moine21867802010-11-12 06:12:09 -03004143 i2c_w(sd, OV7670_R56_CONTRAS, val >> 1);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004144 break;
4145 }
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004146}
4147
4148static void setcolors(struct gspca_dev *gspca_dev)
4149{
4150 struct sd *sd = (struct sd *) gspca_dev;
4151 int val;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004152
Jean-François Moine62833ac2010-10-02 04:27:02 -03004153 val = sd->ctrls[COLORS].val;
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004154 switch (sd->sensor) {
4155 case SEN_OV8610:
4156 case SEN_OV7610:
4157 case SEN_OV76BE:
4158 case SEN_OV6620:
4159 case SEN_OV6630:
Hans de Goede7d971372009-06-14 05:28:17 -03004160 case SEN_OV66308AF:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004161 i2c_w(sd, OV7610_REG_SAT, val);
4162 break;
4163 case SEN_OV7620:
Hans de Goede859cc472010-01-07 15:42:35 -03004164 case SEN_OV7620AE:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004165 /* Use UV gamma control instead. Bits 0 & 7 are reserved. */
4166/* rc = ov_i2c_write(sd->dev, 0x62, (val >> 9) & 0x7e);
4167 if (rc < 0)
4168 goto out; */
4169 i2c_w(sd, OV7610_REG_SAT, val);
4170 break;
4171 case SEN_OV7640:
Hans de Goede035d3a32010-01-09 08:14:43 -03004172 case SEN_OV7648:
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004173 i2c_w(sd, OV7610_REG_SAT, val & 0xf0);
4174 break;
4175 case SEN_OV7670:
4176 /* supported later once I work out how to do it
4177 * transparently fail now! */
4178 /* set REG_COM13 values for UV sat auto mode */
4179 break;
4180 }
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004181}
4182
Jean-François Moine62833ac2010-10-02 04:27:02 -03004183static void setautobright(struct gspca_dev *gspca_dev)
Hans de Goede02ab18b2009-06-14 04:32:04 -03004184{
Jean-François Moine62833ac2010-10-02 04:27:02 -03004185 struct sd *sd = (struct sd *) gspca_dev;
4186
Hans de Goede035d3a32010-01-09 08:14:43 -03004187 if (sd->sensor == SEN_OV7640 || sd->sensor == SEN_OV7648 ||
4188 sd->sensor == SEN_OV7670 ||
Hans de Goede635118d2009-10-11 09:49:03 -03004189 sd->sensor == SEN_OV2610 || sd->sensor == SEN_OV3610)
Hans de Goede02ab18b2009-06-14 04:32:04 -03004190 return;
4191
Jean-François Moine62833ac2010-10-02 04:27:02 -03004192 i2c_w_mask(sd, 0x2d, sd->ctrls[AUTOBRIGHT].val ? 0x10 : 0x00, 0x10);
Hans de Goede02ab18b2009-06-14 04:32:04 -03004193}
4194
Jean-François Moine62833ac2010-10-02 04:27:02 -03004195static void setfreq_i(struct sd *sd)
Hans de Goede02ab18b2009-06-14 04:32:04 -03004196{
Hans de Goede635118d2009-10-11 09:49:03 -03004197 if (sd->sensor == SEN_OV2610 || sd->sensor == SEN_OV3610)
4198 return;
4199
Hans de Goede02ab18b2009-06-14 04:32:04 -03004200 if (sd->sensor == SEN_OV7670) {
Jean-François Moine62833ac2010-10-02 04:27:02 -03004201 switch (sd->ctrls[FREQ].val) {
Hans de Goede02ab18b2009-06-14 04:32:04 -03004202 case 0: /* Banding filter disabled */
Jean-François Moine21867802010-11-12 06:12:09 -03004203 i2c_w_mask(sd, OV7670_R13_COM8, 0, OV7670_COM8_BFILT);
Hans de Goede02ab18b2009-06-14 04:32:04 -03004204 break;
4205 case 1: /* 50 hz */
Jean-François Moine21867802010-11-12 06:12:09 -03004206 i2c_w_mask(sd, OV7670_R13_COM8, OV7670_COM8_BFILT,
Hans de Goede02ab18b2009-06-14 04:32:04 -03004207 OV7670_COM8_BFILT);
Jean-François Moine21867802010-11-12 06:12:09 -03004208 i2c_w_mask(sd, OV7670_R3B_COM11, 0x08, 0x18);
Hans de Goede02ab18b2009-06-14 04:32:04 -03004209 break;
4210 case 2: /* 60 hz */
Jean-François Moine21867802010-11-12 06:12:09 -03004211 i2c_w_mask(sd, OV7670_R13_COM8, OV7670_COM8_BFILT,
Hans de Goede02ab18b2009-06-14 04:32:04 -03004212 OV7670_COM8_BFILT);
Jean-François Moine21867802010-11-12 06:12:09 -03004213 i2c_w_mask(sd, OV7670_R3B_COM11, 0x00, 0x18);
Hans de Goede02ab18b2009-06-14 04:32:04 -03004214 break;
Jean-François Moine21867802010-11-12 06:12:09 -03004215 case 3: /* Auto hz - ov7670 only */
4216 i2c_w_mask(sd, OV7670_R13_COM8, OV7670_COM8_BFILT,
Hans de Goede02ab18b2009-06-14 04:32:04 -03004217 OV7670_COM8_BFILT);
Jean-François Moine21867802010-11-12 06:12:09 -03004218 i2c_w_mask(sd, OV7670_R3B_COM11, OV7670_COM11_HZAUTO,
Hans de Goede02ab18b2009-06-14 04:32:04 -03004219 0x18);
4220 break;
4221 }
4222 } else {
Jean-François Moine62833ac2010-10-02 04:27:02 -03004223 switch (sd->ctrls[FREQ].val) {
Hans de Goede02ab18b2009-06-14 04:32:04 -03004224 case 0: /* Banding filter disabled */
4225 i2c_w_mask(sd, 0x2d, 0x00, 0x04);
4226 i2c_w_mask(sd, 0x2a, 0x00, 0x80);
4227 break;
4228 case 1: /* 50 hz (filter on and framerate adj) */
4229 i2c_w_mask(sd, 0x2d, 0x04, 0x04);
4230 i2c_w_mask(sd, 0x2a, 0x80, 0x80);
4231 /* 20 fps -> 16.667 fps */
4232 if (sd->sensor == SEN_OV6620 ||
Hans de Goede7d971372009-06-14 05:28:17 -03004233 sd->sensor == SEN_OV6630 ||
4234 sd->sensor == SEN_OV66308AF)
Hans de Goede02ab18b2009-06-14 04:32:04 -03004235 i2c_w(sd, 0x2b, 0x5e);
4236 else
4237 i2c_w(sd, 0x2b, 0xac);
4238 break;
4239 case 2: /* 60 hz (filter on, ...) */
4240 i2c_w_mask(sd, 0x2d, 0x04, 0x04);
4241 if (sd->sensor == SEN_OV6620 ||
Hans de Goede7d971372009-06-14 05:28:17 -03004242 sd->sensor == SEN_OV6630 ||
4243 sd->sensor == SEN_OV66308AF) {
Hans de Goede02ab18b2009-06-14 04:32:04 -03004244 /* 20 fps -> 15 fps */
4245 i2c_w_mask(sd, 0x2a, 0x80, 0x80);
4246 i2c_w(sd, 0x2b, 0xa8);
4247 } else {
4248 /* no framerate adj. */
4249 i2c_w_mask(sd, 0x2a, 0x00, 0x80);
4250 }
4251 break;
4252 }
4253 }
4254}
Jean-François Moine62833ac2010-10-02 04:27:02 -03004255static void setfreq(struct gspca_dev *gspca_dev)
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004256{
4257 struct sd *sd = (struct sd *) gspca_dev;
4258
Jean-François Moine62833ac2010-10-02 04:27:02 -03004259 setfreq_i(sd);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004260
Jean-François Moine62833ac2010-10-02 04:27:02 -03004261 /* Ugly but necessary */
4262 if (sd->bridge == BRIDGE_W9968CF)
4263 w9968cf_set_crop_window(sd);
Hans de Goede02ab18b2009-06-14 04:32:04 -03004264}
4265
4266static int sd_querymenu(struct gspca_dev *gspca_dev,
4267 struct v4l2_querymenu *menu)
4268{
4269 struct sd *sd = (struct sd *) gspca_dev;
4270
4271 switch (menu->id) {
4272 case V4L2_CID_POWER_LINE_FREQUENCY:
4273 switch (menu->index) {
4274 case 0: /* V4L2_CID_POWER_LINE_FREQUENCY_DISABLED */
4275 strcpy((char *) menu->name, "NoFliker");
4276 return 0;
4277 case 1: /* V4L2_CID_POWER_LINE_FREQUENCY_50HZ */
4278 strcpy((char *) menu->name, "50 Hz");
4279 return 0;
4280 case 2: /* V4L2_CID_POWER_LINE_FREQUENCY_60HZ */
4281 strcpy((char *) menu->name, "60 Hz");
4282 return 0;
4283 case 3:
4284 if (sd->sensor != SEN_OV7670)
4285 return -EINVAL;
4286
4287 strcpy((char *) menu->name, "Automatic");
4288 return 0;
4289 }
4290 break;
4291 }
4292 return -EINVAL;
4293}
4294
Hans de Goede79b35902009-10-19 06:08:01 -03004295static int sd_get_jcomp(struct gspca_dev *gspca_dev,
4296 struct v4l2_jpegcompression *jcomp)
4297{
4298 struct sd *sd = (struct sd *) gspca_dev;
4299
4300 if (sd->bridge != BRIDGE_W9968CF)
4301 return -EINVAL;
4302
4303 memset(jcomp, 0, sizeof *jcomp);
4304 jcomp->quality = sd->quality;
4305 jcomp->jpeg_markers = V4L2_JPEG_MARKER_DHT | V4L2_JPEG_MARKER_DQT |
4306 V4L2_JPEG_MARKER_DRI;
4307 return 0;
4308}
4309
4310static int sd_set_jcomp(struct gspca_dev *gspca_dev,
4311 struct v4l2_jpegcompression *jcomp)
4312{
4313 struct sd *sd = (struct sd *) gspca_dev;
4314
4315 if (sd->bridge != BRIDGE_W9968CF)
4316 return -EINVAL;
4317
4318 if (gspca_dev->streaming)
4319 return -EBUSY;
4320
4321 if (jcomp->quality < QUALITY_MIN)
4322 sd->quality = QUALITY_MIN;
4323 else if (jcomp->quality > QUALITY_MAX)
4324 sd->quality = QUALITY_MAX;
4325 else
4326 sd->quality = jcomp->quality;
4327
4328 /* Return resulting jcomp params to app */
4329 sd_get_jcomp(gspca_dev, jcomp);
4330
4331 return 0;
4332}
4333
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004334/* sub-driver description */
Jean-Francois Moinea5ae2062008-07-04 11:16:16 -03004335static const struct sd_desc sd_desc = {
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004336 .name = MODULE_NAME,
4337 .ctrls = sd_ctrls,
4338 .nctrls = ARRAY_SIZE(sd_ctrls),
4339 .config = sd_config,
Jean-Francois Moine012d6b02008-09-03 17:12:16 -03004340 .init = sd_init,
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004341 .start = sd_start,
4342 .stopN = sd_stopN,
Hans de Goede79b35902009-10-19 06:08:01 -03004343 .stop0 = sd_stop0,
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004344 .pkt_scan = sd_pkt_scan,
Hans de Goede417a4d22010-02-19 07:37:08 -03004345 .dq_callback = sd_reset_snapshot,
Hans de Goede02ab18b2009-06-14 04:32:04 -03004346 .querymenu = sd_querymenu,
Hans de Goede79b35902009-10-19 06:08:01 -03004347 .get_jcomp = sd_get_jcomp,
4348 .set_jcomp = sd_set_jcomp,
Jean-François Moine28566432010-10-01 07:33:26 -03004349#if defined(CONFIG_INPUT) || defined(CONFIG_INPUT_MODULE)
Hans de Goede417a4d22010-02-19 07:37:08 -03004350 .other_input = 1,
4351#endif
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004352};
4353
4354/* -- module initialisation -- */
Jean-Francois Moinea5ae2062008-07-04 11:16:16 -03004355static const __devinitdata struct usb_device_id device_table[] = {
Hans de Goedea511ba92009-10-16 07:13:07 -03004356 {USB_DEVICE(0x041e, 0x4003), .driver_info = BRIDGE_W9968CF },
Hans de Goede49809d62009-06-07 12:10:39 -03004357 {USB_DEVICE(0x041e, 0x4052), .driver_info = BRIDGE_OV519 },
4358 {USB_DEVICE(0x041e, 0x405f), .driver_info = BRIDGE_OV519 },
4359 {USB_DEVICE(0x041e, 0x4060), .driver_info = BRIDGE_OV519 },
4360 {USB_DEVICE(0x041e, 0x4061), .driver_info = BRIDGE_OV519 },
Hans de Goede9e4d8252009-06-14 06:25:06 -03004361 {USB_DEVICE(0x041e, 0x4064),
Jean-François Moine87bae742010-11-12 05:31:34 -03004362 .driver_info = BRIDGE_OV519 | BRIDGE_INVERT_LED },
Rafal Milecki518c8df2009-10-02 03:54:44 -03004363 {USB_DEVICE(0x041e, 0x4067), .driver_info = BRIDGE_OV519 },
Hans de Goede9e4d8252009-06-14 06:25:06 -03004364 {USB_DEVICE(0x041e, 0x4068),
Jean-François Moine87bae742010-11-12 05:31:34 -03004365 .driver_info = BRIDGE_OV519 | BRIDGE_INVERT_LED },
Hans de Goede49809d62009-06-07 12:10:39 -03004366 {USB_DEVICE(0x045e, 0x028c), .driver_info = BRIDGE_OV519 },
4367 {USB_DEVICE(0x054c, 0x0154), .driver_info = BRIDGE_OV519 },
Hans de Goede98184f72010-01-07 12:06:00 -03004368 {USB_DEVICE(0x054c, 0x0155),
Jean-François Moine87bae742010-11-12 05:31:34 -03004369 .driver_info = BRIDGE_OV519 | BRIDGE_INVERT_LED },
Hans de Goede1876bb92009-06-14 06:45:50 -03004370 {USB_DEVICE(0x05a9, 0x0511), .driver_info = BRIDGE_OV511 },
Hans de Goede49809d62009-06-07 12:10:39 -03004371 {USB_DEVICE(0x05a9, 0x0518), .driver_info = BRIDGE_OV518 },
4372 {USB_DEVICE(0x05a9, 0x0519), .driver_info = BRIDGE_OV519 },
4373 {USB_DEVICE(0x05a9, 0x0530), .driver_info = BRIDGE_OV519 },
Hans de Goedeb46aaa02009-10-12 10:07:57 -03004374 {USB_DEVICE(0x05a9, 0x2800), .driver_info = BRIDGE_OVFX2 },
Hans de Goede49809d62009-06-07 12:10:39 -03004375 {USB_DEVICE(0x05a9, 0x4519), .driver_info = BRIDGE_OV519 },
4376 {USB_DEVICE(0x05a9, 0x8519), .driver_info = BRIDGE_OV519 },
Hans de Goede1876bb92009-06-14 06:45:50 -03004377 {USB_DEVICE(0x05a9, 0xa511), .driver_info = BRIDGE_OV511PLUS },
Hans de Goede49809d62009-06-07 12:10:39 -03004378 {USB_DEVICE(0x05a9, 0xa518), .driver_info = BRIDGE_OV518PLUS },
Hans de Goede1876bb92009-06-14 06:45:50 -03004379 {USB_DEVICE(0x0813, 0x0002), .driver_info = BRIDGE_OV511PLUS },
Hans de Goedeb46aaa02009-10-12 10:07:57 -03004380 {USB_DEVICE(0x0b62, 0x0059), .driver_info = BRIDGE_OVFX2 },
4381 {USB_DEVICE(0x0e96, 0xc001), .driver_info = BRIDGE_OVFX2 },
Hans de Goedea511ba92009-10-16 07:13:07 -03004382 {USB_DEVICE(0x1046, 0x9967), .driver_info = BRIDGE_W9968CF },
Jean-François Moine87bae742010-11-12 05:31:34 -03004383 {USB_DEVICE(0x8020, 0xef04), .driver_info = BRIDGE_OVFX2 },
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004384 {}
4385};
Jean-Francois Moineac40b1f2008-11-08 06:03:37 -03004386
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004387MODULE_DEVICE_TABLE(usb, device_table);
4388
4389/* -- device connect -- */
4390static int sd_probe(struct usb_interface *intf,
4391 const struct usb_device_id *id)
4392{
4393 return gspca_dev_probe(intf, id, &sd_desc, sizeof(struct sd),
4394 THIS_MODULE);
4395}
4396
4397static struct usb_driver sd_driver = {
4398 .name = MODULE_NAME,
4399 .id_table = device_table,
4400 .probe = sd_probe,
4401 .disconnect = gspca_disconnect,
Jean-Francois Moine6a709742008-09-03 16:48:10 -03004402#ifdef CONFIG_PM
4403 .suspend = gspca_suspend,
4404 .resume = gspca_resume,
4405#endif
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004406};
4407
4408/* -- module insert / remove -- */
4409static int __init sd_mod_init(void)
4410{
Jean-François Moine54826432010-09-13 04:53:03 -03004411 return usb_register(&sd_driver);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004412}
4413static void __exit sd_mod_exit(void)
4414{
4415 usb_deregister(&sd_driver);
Jean-Francois Moine6a7eba22008-06-30 15:50:11 -03004416}
4417
4418module_init(sd_mod_init);
4419module_exit(sd_mod_exit);
4420
4421module_param(frame_rate, int, 0644);
4422MODULE_PARM_DESC(frame_rate, "Frame rate (5, 10, 15, 20 or 30 fps)");