2 * Copyright (c) 2001 Jean-Fredric Clere, Nikolas Zimmermann, Georg Acher
3 * Mark Cave-Ayland, Carlo E Prelz, Dick Streefland
4 * Copyright (c) 2002, 2003 Tuukka Toivonen
5 * Copyright (c) 2008 Erik Andrén
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation; either version 2 of the License, or
10 * (at your option) any later version.
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
17 * You should have received a copy of the GNU General Public License
18 * along with this program; if not, write to the Free Software
19 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
21 * P/N 861037: Sensor HDCS1000 ASIC STV0600
22 * P/N 861050-0010: Sensor HDCS1000 ASIC STV0600
23 * P/N 861050-0020: Sensor Photobit PB100 ASIC STV0600-1 - QuickCam Express
24 * P/N 861055: Sensor ST VV6410 ASIC STV0610 - LEGO cam
25 * P/N 861075-0040: Sensor HDCS1000 ASIC
26 * P/N 961179-0700: Sensor ST VV6410 ASIC STV0602 - Dexxa WebCam USB
27 * P/N 861040-0000: Sensor ST VV6410 ASIC STV0610 - QuickCam Web
30 #include "stv06xx_vv6410.h"
32 static int vv6410_probe(struct sd
*sd
)
37 err
= stv06xx_read_sensor(sd
, VV6410_DEVICEH
, &data
);
43 info("vv6410 sensor detected");
45 sd
->gspca_dev
.cam
.cam_mode
= stv06xx_sensor_vv6410
.modes
;
46 sd
->gspca_dev
.cam
.nmodes
= stv06xx_sensor_vv6410
.nmodes
;
47 sd
->desc
.ctrls
= stv06xx_sensor_vv6410
.ctrls
;
48 sd
->desc
.nctrls
= stv06xx_sensor_vv6410
.nctrls
;
55 static int vv6410_init(struct sd
*sd
)
59 for (i
= 0; i
< ARRAY_SIZE(stv_bridge_init
); i
++) {
60 /* if NULL then len contains single value */
61 if (stv_bridge_init
[i
].data
== NULL
) {
62 err
= stv06xx_write_bridge(sd
,
63 stv_bridge_init
[i
].start
,
64 stv_bridge_init
[i
].len
);
67 for (j
= 0; j
< stv_bridge_init
[i
].len
; j
++)
68 err
= stv06xx_write_bridge(sd
,
69 stv_bridge_init
[i
].start
+ j
,
70 stv_bridge_init
[i
].data
[j
]);
77 err
= stv06xx_write_sensor_bytes(sd
, (u8
*) vv6410_sensor_init
,
78 ARRAY_SIZE(vv6410_sensor_init
));
80 return (err
< 0) ? err
: 0;
83 static int vv6410_start(struct sd
*sd
)
86 struct cam
*cam
= &sd
->gspca_dev
.cam
;
87 u32 priv
= cam
->cam_mode
[sd
->gspca_dev
.curr_mode
].priv
;
89 if (priv
& VV6410_CROP_TO_QVGA
) {
90 PDEBUG(D_CONF
, "Cropping to QVGA");
91 stv06xx_write_sensor(sd
, VV6410_XENDH
, 320 - 1);
92 stv06xx_write_sensor(sd
, VV6410_YENDH
, 240 - 1);
94 stv06xx_write_sensor(sd
, VV6410_XENDH
, 360 - 1);
95 stv06xx_write_sensor(sd
, VV6410_YENDH
, 294 - 1);
98 if (priv
& VV6410_SUBSAMPLE
) {
99 PDEBUG(D_CONF
, "Enabling subsampling");
100 stv06xx_write_bridge(sd
, STV_Y_CTRL
, 0x02);
101 stv06xx_write_bridge(sd
, STV_X_CTRL
, 0x06);
103 stv06xx_write_bridge(sd
, STV_SCAN_RATE
, 0x10);
105 stv06xx_write_bridge(sd
, STV_Y_CTRL
, 0x01);
106 stv06xx_write_bridge(sd
, STV_X_CTRL
, 0x0a);
108 stv06xx_write_bridge(sd
, STV_SCAN_RATE
, 0x20);
112 err
= stv06xx_write_bridge(sd
, STV_LED_CTRL
, LED_ON
);
116 err
= stv06xx_write_sensor(sd
, VV6410_SETUP0
, 0);
120 PDEBUG(D_STREAM
, "Starting stream");
125 static int vv6410_stop(struct sd
*sd
)
130 err
= stv06xx_write_bridge(sd
, STV_LED_CTRL
, LED_OFF
);
134 err
= stv06xx_write_sensor(sd
, VV6410_SETUP0
, VV6410_LOW_POWER_MODE
);
138 PDEBUG(D_STREAM
, "Halting stream");
140 return (err
< 0) ? err
: 0;
143 static int vv6410_dump(struct sd
*sd
)
148 info("Dumping all vv6410 sensor registers");
149 for (i
= 0; i
< 0xff && !err
; i
++) {
151 err
= stv06xx_read_sensor(sd
, i
, &data
);
152 info("Register 0x%x contained 0x%x", i
, data
);
154 return (err
< 0) ? err
: 0;
157 static int vv6410_get_hflip(struct gspca_dev
*gspca_dev
, __s32
*val
)
161 struct sd
*sd
= (struct sd
*) gspca_dev
;
163 err
= stv06xx_read_sensor(sd
, VV6410_DATAFORMAT
, &i2c_data
);
165 *val
= (i2c_data
& VV6410_HFLIP
) ? 1 : 0;
167 PDEBUG(D_V4L2
, "Read horizontal flip %d", *val
);
169 return (err
< 0) ? err
: 0;
172 static int vv6410_set_hflip(struct gspca_dev
*gspca_dev
, __s32 val
)
176 struct sd
*sd
= (struct sd
*) gspca_dev
;
177 err
= stv06xx_read_sensor(sd
, VV6410_DATAFORMAT
, &i2c_data
);
182 i2c_data
|= VV6410_HFLIP
;
184 i2c_data
&= ~VV6410_HFLIP
;
186 PDEBUG(D_V4L2
, "Set horizontal flip to %d", val
);
187 err
= stv06xx_write_sensor(sd
, VV6410_DATAFORMAT
, i2c_data
);
189 return (err
< 0) ? err
: 0;
192 static int vv6410_get_vflip(struct gspca_dev
*gspca_dev
, __s32
*val
)
196 struct sd
*sd
= (struct sd
*) gspca_dev
;
198 err
= stv06xx_read_sensor(sd
, VV6410_DATAFORMAT
, &i2c_data
);
200 *val
= (i2c_data
& VV6410_VFLIP
) ? 1 : 0;
202 PDEBUG(D_V4L2
, "Read vertical flip %d", *val
);
204 return (err
< 0) ? err
: 0;
207 static int vv6410_set_vflip(struct gspca_dev
*gspca_dev
, __s32 val
)
211 struct sd
*sd
= (struct sd
*) gspca_dev
;
212 err
= stv06xx_read_sensor(sd
, VV6410_DATAFORMAT
, &i2c_data
);
217 i2c_data
|= VV6410_VFLIP
;
219 i2c_data
&= ~VV6410_VFLIP
;
221 PDEBUG(D_V4L2
, "Set vertical flip to %d", val
);
222 err
= stv06xx_write_sensor(sd
, VV6410_DATAFORMAT
, i2c_data
);
224 return (err
< 0) ? err
: 0;
227 static int vv6410_get_analog_gain(struct gspca_dev
*gspca_dev
, __s32
*val
)
231 struct sd
*sd
= (struct sd
*) gspca_dev
;
233 err
= stv06xx_read_sensor(sd
, VV6410_ANALOGGAIN
, &i2c_data
);
235 *val
= i2c_data
& 0xf;
237 PDEBUG(D_V4L2
, "Read analog gain %d", *val
);
239 return (err
< 0) ? err
: 0;
242 static int vv6410_set_analog_gain(struct gspca_dev
*gspca_dev
, __s32 val
)
245 struct sd
*sd
= (struct sd
*) gspca_dev
;
247 PDEBUG(D_V4L2
, "Set analog gain to %d", val
);
248 err
= stv06xx_write_sensor(sd
, VV6410_ANALOGGAIN
, 0xf0 | (val
& 0xf));
250 return (err
< 0) ? err
: 0;