blob: f55364ff2582921c9f194959d4a033c078db8f45 [file] [log] [blame]
Richard Röjfors6789cb52009-09-18 21:17:20 -03001/*
2 * adv7180.c Analog Devices ADV7180 video decoder driver
3 * Copyright (c) 2009 Intel Corporation
Vladimir Barinovcccb83f2013-05-29 14:50:57 -03004 * Copyright (C) 2013 Cogent Embedded, Inc.
5 * Copyright (C) 2013 Renesas Solutions Corp.
Richard Röjfors6789cb52009-09-18 21:17:20 -03006 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License version 2 as
9 * published by the Free Software Foundation.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
19 */
20
21#include <linux/module.h>
22#include <linux/init.h>
23#include <linux/errno.h>
24#include <linux/kernel.h>
25#include <linux/interrupt.h>
26#include <linux/i2c.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090027#include <linux/slab.h>
Richard Röjfors6789cb52009-09-18 21:17:20 -030028#include <media/v4l2-ioctl.h>
29#include <linux/videodev2.h>
30#include <media/v4l2-device.h>
Federico Vagac9fbedd2012-07-11 11:29:33 -030031#include <media/v4l2-ctrls.h>
Richard Röjfors42752f72009-09-22 06:07:06 -030032#include <linux/mutex.h>
Lars-Peter Clausenc18818e2015-01-23 12:52:25 -030033#include <linux/delay.h>
Richard Röjfors6789cb52009-09-18 21:17:20 -030034
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -030035#define ADV7180_STD_AD_PAL_BG_NTSC_J_SECAM 0x0
36#define ADV7180_STD_AD_PAL_BG_NTSC_J_SECAM_PED 0x1
37#define ADV7180_STD_AD_PAL_N_NTSC_J_SECAM 0x2
38#define ADV7180_STD_AD_PAL_N_NTSC_M_SECAM 0x3
39#define ADV7180_STD_NTSC_J 0x4
40#define ADV7180_STD_NTSC_M 0x5
41#define ADV7180_STD_PAL60 0x6
42#define ADV7180_STD_NTSC_443 0x7
43#define ADV7180_STD_PAL_BG 0x8
44#define ADV7180_STD_PAL_N 0x9
45#define ADV7180_STD_PAL_M 0xa
46#define ADV7180_STD_PAL_M_PED 0xb
47#define ADV7180_STD_PAL_COMB_N 0xc
48#define ADV7180_STD_PAL_COMB_N_PED 0xd
49#define ADV7180_STD_PAL_SECAM 0xe
50#define ADV7180_STD_PAL_SECAM_PED 0xf
51
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -030052#define ADV7180_REG_INPUT_CONTROL 0x0000
Federico Vagabca7ad12012-04-12 12:39:36 -030053#define ADV7180_INPUT_CONTROL_INSEL_MASK 0x0f
Richard Röjforsd3124292009-09-22 06:05:42 -030054
Lars-Peter Clausenc5ef8f82015-01-23 12:52:29 -030055#define ADV7182_REG_INPUT_VIDSEL 0x0002
56
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -030057#define ADV7180_REG_EXTENDED_OUTPUT_CONTROL 0x0004
Richard Röjfors42752f72009-09-22 06:07:06 -030058#define ADV7180_EXTENDED_OUTPUT_CONTROL_NTSCDIS 0xC5
Richard Röjfors6789cb52009-09-18 21:17:20 -030059
Lars-Peter Clausen029d6172015-01-23 12:52:23 -030060#define ADV7180_REG_AUTODETECT_ENABLE 0x07
Richard Röjfors42752f72009-09-22 06:07:06 -030061#define ADV7180_AUTODETECT_DEFAULT 0x7f
Federico Vagac9fbedd2012-07-11 11:29:33 -030062/* Contrast */
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -030063#define ADV7180_REG_CON 0x0008 /*Unsigned */
Federico Vagac9fbedd2012-07-11 11:29:33 -030064#define ADV7180_CON_MIN 0
65#define ADV7180_CON_DEF 128
66#define ADV7180_CON_MAX 255
67/* Brightness*/
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -030068#define ADV7180_REG_BRI 0x000a /*Signed */
Federico Vagac9fbedd2012-07-11 11:29:33 -030069#define ADV7180_BRI_MIN -128
70#define ADV7180_BRI_DEF 0
71#define ADV7180_BRI_MAX 127
72/* Hue */
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -030073#define ADV7180_REG_HUE 0x000b /*Signed, inverted */
Federico Vagac9fbedd2012-07-11 11:29:33 -030074#define ADV7180_HUE_MIN -127
75#define ADV7180_HUE_DEF 0
76#define ADV7180_HUE_MAX 128
Federico Vagabca7ad12012-04-12 12:39:36 -030077
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -030078#define ADV7180_REG_CTRL 0x000e
Lars-Peter Clausen029d6172015-01-23 12:52:23 -030079#define ADV7180_CTRL_IRQ_SPACE 0x20
Richard Röjfors6789cb52009-09-18 21:17:20 -030080
Lars-Peter Clausen029d6172015-01-23 12:52:23 -030081#define ADV7180_REG_PWR_MAN 0x0f
Federico Vagabca7ad12012-04-12 12:39:36 -030082#define ADV7180_PWR_MAN_ON 0x04
83#define ADV7180_PWR_MAN_OFF 0x24
84#define ADV7180_PWR_MAN_RES 0x80
85
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -030086#define ADV7180_REG_STATUS1 0x0010
Richard Röjforsd3124292009-09-22 06:05:42 -030087#define ADV7180_STATUS1_IN_LOCK 0x01
88#define ADV7180_STATUS1_AUTOD_MASK 0x70
Richard Röjfors6789cb52009-09-18 21:17:20 -030089#define ADV7180_STATUS1_AUTOD_NTSM_M_J 0x00
90#define ADV7180_STATUS1_AUTOD_NTSC_4_43 0x10
91#define ADV7180_STATUS1_AUTOD_PAL_M 0x20
92#define ADV7180_STATUS1_AUTOD_PAL_60 0x30
93#define ADV7180_STATUS1_AUTOD_PAL_B_G 0x40
94#define ADV7180_STATUS1_AUTOD_SECAM 0x50
95#define ADV7180_STATUS1_AUTOD_PAL_COMB 0x60
96#define ADV7180_STATUS1_AUTOD_SECAM_525 0x70
97
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -030098#define ADV7180_REG_IDENT 0x0011
Richard Röjfors6789cb52009-09-18 21:17:20 -030099#define ADV7180_ID_7180 0x18
100
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300101#define ADV7180_REG_ICONF1 0x0040
Richard Röjfors42752f72009-09-22 06:07:06 -0300102#define ADV7180_ICONF1_ACTIVE_LOW 0x01
103#define ADV7180_ICONF1_PSYNC_ONLY 0x10
104#define ADV7180_ICONF1_ACTIVE_TO_CLR 0xC0
Federico Vagac9fbedd2012-07-11 11:29:33 -0300105/* Saturation */
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300106#define ADV7180_REG_SD_SAT_CB 0x00e3 /*Unsigned */
107#define ADV7180_REG_SD_SAT_CR 0x00e4 /*Unsigned */
Federico Vagac9fbedd2012-07-11 11:29:33 -0300108#define ADV7180_SAT_MIN 0
109#define ADV7180_SAT_DEF 128
110#define ADV7180_SAT_MAX 255
Federico Vagabca7ad12012-04-12 12:39:36 -0300111
Richard Röjfors42752f72009-09-22 06:07:06 -0300112#define ADV7180_IRQ1_LOCK 0x01
113#define ADV7180_IRQ1_UNLOCK 0x02
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300114#define ADV7180_REG_ISR1 0x0042
115#define ADV7180_REG_ICR1 0x0043
116#define ADV7180_REG_IMR1 0x0044
117#define ADV7180_REG_IMR2 0x0048
Richard Röjfors42752f72009-09-22 06:07:06 -0300118#define ADV7180_IRQ3_AD_CHANGE 0x08
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300119#define ADV7180_REG_ISR3 0x004A
120#define ADV7180_REG_ICR3 0x004B
121#define ADV7180_REG_IMR3 0x004C
Lars-Peter Clausen029d6172015-01-23 12:52:23 -0300122#define ADV7180_REG_IMR4 0x50
Richard Röjfors6789cb52009-09-18 21:17:20 -0300123
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300124#define ADV7180_REG_NTSC_V_BIT_END 0x00E6
Federico Vagabca7ad12012-04-12 12:39:36 -0300125#define ADV7180_NTSC_V_BIT_END_MANUAL_NVEND 0x4F
126
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300127#define ADV7180_INPUT_CVBS_AIN1 0x00
128#define ADV7180_INPUT_CVBS_AIN2 0x01
129#define ADV7180_INPUT_CVBS_AIN3 0x02
130#define ADV7180_INPUT_CVBS_AIN4 0x03
131#define ADV7180_INPUT_CVBS_AIN5 0x04
132#define ADV7180_INPUT_CVBS_AIN6 0x05
133#define ADV7180_INPUT_SVIDEO_AIN1_AIN2 0x06
134#define ADV7180_INPUT_SVIDEO_AIN3_AIN4 0x07
135#define ADV7180_INPUT_SVIDEO_AIN5_AIN6 0x08
136#define ADV7180_INPUT_YPRPB_AIN1_AIN2_AIN3 0x09
137#define ADV7180_INPUT_YPRPB_AIN4_AIN5_AIN6 0x0a
138
Lars-Peter Clausenc5ef8f82015-01-23 12:52:29 -0300139#define ADV7182_INPUT_CVBS_AIN1 0x00
140#define ADV7182_INPUT_CVBS_AIN2 0x01
141#define ADV7182_INPUT_CVBS_AIN3 0x02
142#define ADV7182_INPUT_CVBS_AIN4 0x03
143#define ADV7182_INPUT_CVBS_AIN5 0x04
144#define ADV7182_INPUT_CVBS_AIN6 0x05
145#define ADV7182_INPUT_CVBS_AIN7 0x06
146#define ADV7182_INPUT_CVBS_AIN8 0x07
147#define ADV7182_INPUT_SVIDEO_AIN1_AIN2 0x08
148#define ADV7182_INPUT_SVIDEO_AIN3_AIN4 0x09
149#define ADV7182_INPUT_SVIDEO_AIN5_AIN6 0x0a
150#define ADV7182_INPUT_SVIDEO_AIN7_AIN8 0x0b
151#define ADV7182_INPUT_YPRPB_AIN1_AIN2_AIN3 0x0c
152#define ADV7182_INPUT_YPRPB_AIN4_AIN5_AIN6 0x0d
153#define ADV7182_INPUT_DIFF_CVBS_AIN1_AIN2 0x0e
154#define ADV7182_INPUT_DIFF_CVBS_AIN3_AIN4 0x0f
155#define ADV7182_INPUT_DIFF_CVBS_AIN5_AIN6 0x10
156#define ADV7182_INPUT_DIFF_CVBS_AIN7_AIN8 0x11
157
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300158struct adv7180_state;
159
160#define ADV7180_FLAG_RESET_POWERED BIT(0)
Lars-Peter Clausenbf7dcb82015-01-23 12:52:30 -0300161#define ADV7180_FLAG_V2 BIT(1)
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300162
163struct adv7180_chip_info {
164 unsigned int flags;
165 unsigned int valid_input_mask;
166 int (*set_std)(struct adv7180_state *st, unsigned int std);
167 int (*select_input)(struct adv7180_state *st, unsigned int input);
168 int (*init)(struct adv7180_state *state);
169};
170
Richard Röjfors6789cb52009-09-18 21:17:20 -0300171struct adv7180_state {
Federico Vagac9fbedd2012-07-11 11:29:33 -0300172 struct v4l2_ctrl_handler ctrl_hdl;
Richard Röjforsc277b602009-09-22 06:06:34 -0300173 struct v4l2_subdev sd;
Lars-Peter Clausend5d51a82015-01-23 12:52:26 -0300174 struct media_pad pad;
Richard Röjfors42752f72009-09-22 06:07:06 -0300175 struct mutex mutex; /* mutual excl. when accessing chip */
176 int irq;
Richard Röjforsc277b602009-09-22 06:06:34 -0300177 v4l2_std_id curr_norm;
178 bool autodetect;
Lars-Peter Clausene246c332014-03-10 14:05:39 -0300179 bool powered;
Federico Vagabca7ad12012-04-12 12:39:36 -0300180 u8 input;
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300181
182 struct i2c_client *client;
183 unsigned int register_page;
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300184 const struct adv7180_chip_info *chip_info;
Richard Röjfors6789cb52009-09-18 21:17:20 -0300185};
Federico Vagac9fbedd2012-07-11 11:29:33 -0300186#define to_adv7180_sd(_ctrl) (&container_of(_ctrl->handler, \
187 struct adv7180_state, \
188 ctrl_hdl)->sd)
Richard Röjfors6789cb52009-09-18 21:17:20 -0300189
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300190static int adv7180_select_page(struct adv7180_state *state, unsigned int page)
191{
192 if (state->register_page != page) {
193 i2c_smbus_write_byte_data(state->client, ADV7180_REG_CTRL,
194 page);
195 state->register_page = page;
196 }
197
198 return 0;
199}
200
201static int adv7180_write(struct adv7180_state *state, unsigned int reg,
202 unsigned int value)
203{
204 lockdep_assert_held(&state->mutex);
205 adv7180_select_page(state, reg >> 8);
206 return i2c_smbus_write_byte_data(state->client, reg & 0xff, value);
207}
208
209static int adv7180_read(struct adv7180_state *state, unsigned int reg)
210{
211 lockdep_assert_held(&state->mutex);
212 adv7180_select_page(state, reg >> 8);
213 return i2c_smbus_read_byte_data(state->client, reg & 0xff);
214}
215
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300216static int adv7180_set_video_standard(struct adv7180_state *state,
217 unsigned int std)
218{
219 return state->chip_info->set_std(state, std);
220}
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300221
Richard Röjforsd3124292009-09-22 06:05:42 -0300222static v4l2_std_id adv7180_std_to_v4l2(u8 status1)
Richard Röjfors6789cb52009-09-18 21:17:20 -0300223{
Vladimir Barinovb294a192013-04-11 18:06:46 -0300224 /* in case V4L2_IN_ST_NO_SIGNAL */
225 if (!(status1 & ADV7180_STATUS1_IN_LOCK))
226 return V4L2_STD_UNKNOWN;
227
Richard Röjfors6789cb52009-09-18 21:17:20 -0300228 switch (status1 & ADV7180_STATUS1_AUTOD_MASK) {
229 case ADV7180_STATUS1_AUTOD_NTSM_M_J:
Richard Röjforsd3124292009-09-22 06:05:42 -0300230 return V4L2_STD_NTSC;
Richard Röjfors6789cb52009-09-18 21:17:20 -0300231 case ADV7180_STATUS1_AUTOD_NTSC_4_43:
232 return V4L2_STD_NTSC_443;
233 case ADV7180_STATUS1_AUTOD_PAL_M:
234 return V4L2_STD_PAL_M;
235 case ADV7180_STATUS1_AUTOD_PAL_60:
236 return V4L2_STD_PAL_60;
237 case ADV7180_STATUS1_AUTOD_PAL_B_G:
238 return V4L2_STD_PAL;
239 case ADV7180_STATUS1_AUTOD_SECAM:
240 return V4L2_STD_SECAM;
241 case ADV7180_STATUS1_AUTOD_PAL_COMB:
242 return V4L2_STD_PAL_Nc | V4L2_STD_PAL_N;
243 case ADV7180_STATUS1_AUTOD_SECAM_525:
244 return V4L2_STD_SECAM;
245 default:
246 return V4L2_STD_UNKNOWN;
247 }
248}
249
Richard Röjforsc277b602009-09-22 06:06:34 -0300250static int v4l2_std_to_adv7180(v4l2_std_id std)
251{
252 if (std == V4L2_STD_PAL_60)
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300253 return ADV7180_STD_PAL60;
Richard Röjforsc277b602009-09-22 06:06:34 -0300254 if (std == V4L2_STD_NTSC_443)
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300255 return ADV7180_STD_NTSC_443;
Richard Röjforsc277b602009-09-22 06:06:34 -0300256 if (std == V4L2_STD_PAL_N)
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300257 return ADV7180_STD_PAL_N;
Richard Röjforsc277b602009-09-22 06:06:34 -0300258 if (std == V4L2_STD_PAL_M)
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300259 return ADV7180_STD_PAL_M;
Richard Röjforsc277b602009-09-22 06:06:34 -0300260 if (std == V4L2_STD_PAL_Nc)
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300261 return ADV7180_STD_PAL_COMB_N;
Richard Röjforsc277b602009-09-22 06:06:34 -0300262
263 if (std & V4L2_STD_PAL)
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300264 return ADV7180_STD_PAL_BG;
Richard Röjforsc277b602009-09-22 06:06:34 -0300265 if (std & V4L2_STD_NTSC)
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300266 return ADV7180_STD_NTSC_M;
Richard Röjforsc277b602009-09-22 06:06:34 -0300267 if (std & V4L2_STD_SECAM)
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300268 return ADV7180_STD_PAL_SECAM;
Richard Röjforsc277b602009-09-22 06:06:34 -0300269
270 return -EINVAL;
271}
272
Richard Röjforsd3124292009-09-22 06:05:42 -0300273static u32 adv7180_status_to_v4l2(u8 status1)
274{
275 if (!(status1 & ADV7180_STATUS1_IN_LOCK))
276 return V4L2_IN_ST_NO_SIGNAL;
277
278 return 0;
279}
280
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300281static int __adv7180_status(struct adv7180_state *state, u32 *status,
Federico Vagabca7ad12012-04-12 12:39:36 -0300282 v4l2_std_id *std)
Richard Röjforsd3124292009-09-22 06:05:42 -0300283{
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300284 int status1 = adv7180_read(state, ADV7180_REG_STATUS1);
Richard Röjforsd3124292009-09-22 06:05:42 -0300285
286 if (status1 < 0)
287 return status1;
288
289 if (status)
290 *status = adv7180_status_to_v4l2(status1);
291 if (std)
292 *std = adv7180_std_to_v4l2(status1);
293
294 return 0;
295}
296
Richard Röjfors6789cb52009-09-18 21:17:20 -0300297static inline struct adv7180_state *to_state(struct v4l2_subdev *sd)
298{
299 return container_of(sd, struct adv7180_state, sd);
300}
301
302static int adv7180_querystd(struct v4l2_subdev *sd, v4l2_std_id *std)
303{
Richard Röjforsc277b602009-09-22 06:06:34 -0300304 struct adv7180_state *state = to_state(sd);
Richard Röjfors42752f72009-09-22 06:07:06 -0300305 int err = mutex_lock_interruptible(&state->mutex);
306 if (err)
307 return err;
Richard Röjforsc277b602009-09-22 06:06:34 -0300308
Richard Röjfors42752f72009-09-22 06:07:06 -0300309 /* when we are interrupt driven we know the state */
310 if (!state->autodetect || state->irq > 0)
Richard Röjforsc277b602009-09-22 06:06:34 -0300311 *std = state->curr_norm;
312 else
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300313 err = __adv7180_status(state, NULL, std);
Richard Röjforsc277b602009-09-22 06:06:34 -0300314
Richard Röjfors42752f72009-09-22 06:07:06 -0300315 mutex_unlock(&state->mutex);
Richard Röjforsc277b602009-09-22 06:06:34 -0300316 return err;
Richard Röjforsd3124292009-09-22 06:05:42 -0300317}
Richard Röjfors6789cb52009-09-18 21:17:20 -0300318
Federico Vagabca7ad12012-04-12 12:39:36 -0300319static int adv7180_s_routing(struct v4l2_subdev *sd, u32 input,
320 u32 output, u32 config)
321{
322 struct adv7180_state *state = to_state(sd);
323 int ret = mutex_lock_interruptible(&state->mutex);
Federico Vagabca7ad12012-04-12 12:39:36 -0300324
325 if (ret)
326 return ret;
327
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300328 if (input > 31 || !(BIT(input) & state->chip_info->valid_input_mask)) {
329 ret = -EINVAL;
Federico Vagabca7ad12012-04-12 12:39:36 -0300330 goto out;
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300331 }
Federico Vagabca7ad12012-04-12 12:39:36 -0300332
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300333 ret = state->chip_info->select_input(state, input);
Federico Vagabca7ad12012-04-12 12:39:36 -0300334
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300335 if (ret == 0)
336 state->input = input;
Federico Vagabca7ad12012-04-12 12:39:36 -0300337out:
338 mutex_unlock(&state->mutex);
339 return ret;
340}
341
Richard Röjforsd3124292009-09-22 06:05:42 -0300342static int adv7180_g_input_status(struct v4l2_subdev *sd, u32 *status)
343{
Richard Röjfors42752f72009-09-22 06:07:06 -0300344 struct adv7180_state *state = to_state(sd);
345 int ret = mutex_lock_interruptible(&state->mutex);
346 if (ret)
347 return ret;
348
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300349 ret = __adv7180_status(state, status, NULL);
Richard Röjfors42752f72009-09-22 06:07:06 -0300350 mutex_unlock(&state->mutex);
351 return ret;
Richard Röjfors6789cb52009-09-18 21:17:20 -0300352}
353
Lars-Peter Clausen3e35e332015-01-23 12:52:27 -0300354static int adv7180_program_std(struct adv7180_state *state)
355{
356 int ret;
357
358 if (state->autodetect) {
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300359 ret = adv7180_set_video_standard(state,
360 ADV7180_STD_AD_PAL_BG_NTSC_J_SECAM);
Lars-Peter Clausen3e35e332015-01-23 12:52:27 -0300361 if (ret < 0)
362 return ret;
363
364 __adv7180_status(state, NULL, &state->curr_norm);
365 } else {
366 ret = v4l2_std_to_adv7180(state->curr_norm);
367 if (ret < 0)
368 return ret;
369
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300370 ret = adv7180_set_video_standard(state, ret);
Lars-Peter Clausen3e35e332015-01-23 12:52:27 -0300371 if (ret < 0)
372 return ret;
373 }
374
375 return 0;
376}
377
Richard Röjforsc277b602009-09-22 06:06:34 -0300378static int adv7180_s_std(struct v4l2_subdev *sd, v4l2_std_id std)
379{
380 struct adv7180_state *state = to_state(sd);
Richard Röjfors42752f72009-09-22 06:07:06 -0300381 int ret = mutex_lock_interruptible(&state->mutex);
Lars-Peter Clausen3e35e332015-01-23 12:52:27 -0300382
Richard Röjfors42752f72009-09-22 06:07:06 -0300383 if (ret)
384 return ret;
Richard Röjforsc277b602009-09-22 06:06:34 -0300385
386 /* all standards -> autodetect */
387 if (std == V4L2_STD_ALL) {
Richard Röjforsc277b602009-09-22 06:06:34 -0300388 state->autodetect = true;
389 } else {
Lars-Peter Clausen3e35e332015-01-23 12:52:27 -0300390 /* Make sure we can support this std */
Richard Röjforsc277b602009-09-22 06:06:34 -0300391 ret = v4l2_std_to_adv7180(std);
392 if (ret < 0)
393 goto out;
394
Richard Röjforsc277b602009-09-22 06:06:34 -0300395 state->curr_norm = std;
396 state->autodetect = false;
397 }
Lars-Peter Clausen3e35e332015-01-23 12:52:27 -0300398
399 ret = adv7180_program_std(state);
Richard Röjforsc277b602009-09-22 06:06:34 -0300400out:
Richard Röjfors42752f72009-09-22 06:07:06 -0300401 mutex_unlock(&state->mutex);
Richard Röjforsc277b602009-09-22 06:06:34 -0300402 return ret;
403}
404
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300405static int adv7180_set_power(struct adv7180_state *state, bool on)
Lars-Peter Clausene246c332014-03-10 14:05:39 -0300406{
407 u8 val;
408
409 if (on)
410 val = ADV7180_PWR_MAN_ON;
411 else
412 val = ADV7180_PWR_MAN_OFF;
413
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300414 return adv7180_write(state, ADV7180_REG_PWR_MAN, val);
Lars-Peter Clausene246c332014-03-10 14:05:39 -0300415}
416
417static int adv7180_s_power(struct v4l2_subdev *sd, int on)
418{
419 struct adv7180_state *state = to_state(sd);
Lars-Peter Clausene246c332014-03-10 14:05:39 -0300420 int ret;
421
422 ret = mutex_lock_interruptible(&state->mutex);
423 if (ret)
424 return ret;
425
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300426 ret = adv7180_set_power(state, on);
Lars-Peter Clausene246c332014-03-10 14:05:39 -0300427 if (ret == 0)
428 state->powered = on;
429
430 mutex_unlock(&state->mutex);
431 return ret;
432}
433
Federico Vagac9fbedd2012-07-11 11:29:33 -0300434static int adv7180_s_ctrl(struct v4l2_ctrl *ctrl)
Federico Vagabca7ad12012-04-12 12:39:36 -0300435{
Federico Vagac9fbedd2012-07-11 11:29:33 -0300436 struct v4l2_subdev *sd = to_adv7180_sd(ctrl);
Federico Vagabca7ad12012-04-12 12:39:36 -0300437 struct adv7180_state *state = to_state(sd);
Federico Vagabca7ad12012-04-12 12:39:36 -0300438 int ret = mutex_lock_interruptible(&state->mutex);
Federico Vagac9fbedd2012-07-11 11:29:33 -0300439 int val;
440
Federico Vagabca7ad12012-04-12 12:39:36 -0300441 if (ret)
442 return ret;
Federico Vagac9fbedd2012-07-11 11:29:33 -0300443 val = ctrl->val;
Federico Vagabca7ad12012-04-12 12:39:36 -0300444 switch (ctrl->id) {
445 case V4L2_CID_BRIGHTNESS:
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300446 ret = adv7180_write(state, ADV7180_REG_BRI, val);
Federico Vagabca7ad12012-04-12 12:39:36 -0300447 break;
448 case V4L2_CID_HUE:
Federico Vagabca7ad12012-04-12 12:39:36 -0300449 /*Hue is inverted according to HSL chart */
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300450 ret = adv7180_write(state, ADV7180_REG_HUE, -val);
Federico Vagabca7ad12012-04-12 12:39:36 -0300451 break;
452 case V4L2_CID_CONTRAST:
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300453 ret = adv7180_write(state, ADV7180_REG_CON, val);
Federico Vagabca7ad12012-04-12 12:39:36 -0300454 break;
455 case V4L2_CID_SATURATION:
Federico Vagabca7ad12012-04-12 12:39:36 -0300456 /*
457 *This could be V4L2_CID_BLUE_BALANCE/V4L2_CID_RED_BALANCE
458 *Let's not confuse the user, everybody understands saturation
459 */
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300460 ret = adv7180_write(state, ADV7180_REG_SD_SAT_CB, val);
Federico Vagabca7ad12012-04-12 12:39:36 -0300461 if (ret < 0)
462 break;
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300463 ret = adv7180_write(state, ADV7180_REG_SD_SAT_CR, val);
Federico Vagabca7ad12012-04-12 12:39:36 -0300464 break;
465 default:
466 ret = -EINVAL;
467 }
468
469 mutex_unlock(&state->mutex);
470 return ret;
471}
472
Federico Vagac9fbedd2012-07-11 11:29:33 -0300473static const struct v4l2_ctrl_ops adv7180_ctrl_ops = {
474 .s_ctrl = adv7180_s_ctrl,
475};
476
477static int adv7180_init_controls(struct adv7180_state *state)
478{
479 v4l2_ctrl_handler_init(&state->ctrl_hdl, 4);
480
481 v4l2_ctrl_new_std(&state->ctrl_hdl, &adv7180_ctrl_ops,
482 V4L2_CID_BRIGHTNESS, ADV7180_BRI_MIN,
483 ADV7180_BRI_MAX, 1, ADV7180_BRI_DEF);
484 v4l2_ctrl_new_std(&state->ctrl_hdl, &adv7180_ctrl_ops,
485 V4L2_CID_CONTRAST, ADV7180_CON_MIN,
486 ADV7180_CON_MAX, 1, ADV7180_CON_DEF);
487 v4l2_ctrl_new_std(&state->ctrl_hdl, &adv7180_ctrl_ops,
488 V4L2_CID_SATURATION, ADV7180_SAT_MIN,
489 ADV7180_SAT_MAX, 1, ADV7180_SAT_DEF);
490 v4l2_ctrl_new_std(&state->ctrl_hdl, &adv7180_ctrl_ops,
491 V4L2_CID_HUE, ADV7180_HUE_MIN,
492 ADV7180_HUE_MAX, 1, ADV7180_HUE_DEF);
493 state->sd.ctrl_handler = &state->ctrl_hdl;
494 if (state->ctrl_hdl.error) {
495 int err = state->ctrl_hdl.error;
496
497 v4l2_ctrl_handler_free(&state->ctrl_hdl);
498 return err;
499 }
500 v4l2_ctrl_handler_setup(&state->ctrl_hdl);
501
502 return 0;
503}
504static void adv7180_exit_controls(struct adv7180_state *state)
505{
506 v4l2_ctrl_handler_free(&state->ctrl_hdl);
507}
508
Lars-Peter Clausend5d51a82015-01-23 12:52:26 -0300509static int adv7180_enum_mbus_code(struct v4l2_subdev *sd,
510 struct v4l2_subdev_fh *fh,
511 struct v4l2_subdev_mbus_code_enum *code)
Vladimir Barinovcccb83f2013-05-29 14:50:57 -0300512{
Lars-Peter Clausend5d51a82015-01-23 12:52:26 -0300513 if (code->index != 0)
Vladimir Barinovcccb83f2013-05-29 14:50:57 -0300514 return -EINVAL;
515
Lars-Peter Clausend5d51a82015-01-23 12:52:26 -0300516 code->code = MEDIA_BUS_FMT_YUYV8_2X8;
Vladimir Barinovcccb83f2013-05-29 14:50:57 -0300517
518 return 0;
519}
520
521static int adv7180_mbus_fmt(struct v4l2_subdev *sd,
522 struct v4l2_mbus_framefmt *fmt)
523{
524 struct adv7180_state *state = to_state(sd);
525
Boris BREZILLONf5fe58f2014-11-10 14:28:29 -0300526 fmt->code = MEDIA_BUS_FMT_YUYV8_2X8;
Vladimir Barinovcccb83f2013-05-29 14:50:57 -0300527 fmt->colorspace = V4L2_COLORSPACE_SMPTE170M;
528 fmt->field = V4L2_FIELD_INTERLACED;
529 fmt->width = 720;
530 fmt->height = state->curr_norm & V4L2_STD_525_60 ? 480 : 576;
531
532 return 0;
533}
534
Lars-Peter Clausend5d51a82015-01-23 12:52:26 -0300535static int adv7180_get_pad_format(struct v4l2_subdev *sd,
536 struct v4l2_subdev_fh *fh,
537 struct v4l2_subdev_format *format)
538{
539 return adv7180_mbus_fmt(sd, &format->format);
540}
541
542static int adv7180_set_pad_format(struct v4l2_subdev *sd,
543 struct v4l2_subdev_fh *fh,
544 struct v4l2_subdev_format *format)
545{
546 return adv7180_mbus_fmt(sd, &format->format);
547}
548
Vladimir Barinovcccb83f2013-05-29 14:50:57 -0300549static int adv7180_g_mbus_config(struct v4l2_subdev *sd,
550 struct v4l2_mbus_config *cfg)
551{
552 /*
553 * The ADV7180 sensor supports BT.601/656 output modes.
554 * The BT.656 is default and not yet configurable by s/w.
555 */
556 cfg->flags = V4L2_MBUS_MASTER | V4L2_MBUS_PCLK_SAMPLE_RISING |
557 V4L2_MBUS_DATA_ACTIVE_HIGH;
558 cfg->type = V4L2_MBUS_BT656;
559
560 return 0;
561}
562
Richard Röjfors6789cb52009-09-18 21:17:20 -0300563static const struct v4l2_subdev_video_ops adv7180_video_ops = {
Laurent Pinchart8774bed2014-04-28 16:53:01 -0300564 .s_std = adv7180_s_std,
Richard Röjfors6789cb52009-09-18 21:17:20 -0300565 .querystd = adv7180_querystd,
Richard Röjforsd3124292009-09-22 06:05:42 -0300566 .g_input_status = adv7180_g_input_status,
Federico Vagabca7ad12012-04-12 12:39:36 -0300567 .s_routing = adv7180_s_routing,
Vladimir Barinovcccb83f2013-05-29 14:50:57 -0300568 .g_mbus_config = adv7180_g_mbus_config,
Richard Röjfors6789cb52009-09-18 21:17:20 -0300569};
570
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300571
Richard Röjfors6789cb52009-09-18 21:17:20 -0300572static const struct v4l2_subdev_core_ops adv7180_core_ops = {
Lars-Peter Clausene246c332014-03-10 14:05:39 -0300573 .s_power = adv7180_s_power,
Richard Röjfors6789cb52009-09-18 21:17:20 -0300574};
575
Lars-Peter Clausend5d51a82015-01-23 12:52:26 -0300576static const struct v4l2_subdev_pad_ops adv7180_pad_ops = {
577 .enum_mbus_code = adv7180_enum_mbus_code,
578 .set_fmt = adv7180_set_pad_format,
579 .get_fmt = adv7180_get_pad_format,
580};
581
Richard Röjfors6789cb52009-09-18 21:17:20 -0300582static const struct v4l2_subdev_ops adv7180_ops = {
583 .core = &adv7180_core_ops,
584 .video = &adv7180_video_ops,
Lars-Peter Clausend5d51a82015-01-23 12:52:26 -0300585 .pad = &adv7180_pad_ops,
Richard Röjfors6789cb52009-09-18 21:17:20 -0300586};
587
Lars-Peter Clausen0c255342014-03-07 13:14:31 -0300588static irqreturn_t adv7180_irq(int irq, void *devid)
Richard Röjfors42752f72009-09-22 06:07:06 -0300589{
Lars-Peter Clausen0c255342014-03-07 13:14:31 -0300590 struct adv7180_state *state = devid;
Richard Röjfors42752f72009-09-22 06:07:06 -0300591 u8 isr3;
592
593 mutex_lock(&state->mutex);
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300594 isr3 = adv7180_read(state, ADV7180_REG_ISR3);
Richard Röjfors42752f72009-09-22 06:07:06 -0300595 /* clear */
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300596 adv7180_write(state, ADV7180_REG_ICR3, isr3);
Richard Röjfors42752f72009-09-22 06:07:06 -0300597
598 if (isr3 & ADV7180_IRQ3_AD_CHANGE && state->autodetect)
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300599 __adv7180_status(state, NULL, &state->curr_norm);
Richard Röjfors42752f72009-09-22 06:07:06 -0300600 mutex_unlock(&state->mutex);
601
Richard Röjfors42752f72009-09-22 06:07:06 -0300602 return IRQ_HANDLED;
603}
604
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300605static int adv7180_init(struct adv7180_state *state)
606{
607 int ret;
608
609 /* ITU-R BT.656-4 compatible */
610 ret = adv7180_write(state, ADV7180_REG_EXTENDED_OUTPUT_CONTROL,
611 ADV7180_EXTENDED_OUTPUT_CONTROL_NTSCDIS);
612 if (ret < 0)
613 return ret;
614
615 /* Manually set V bit end position in NTSC mode */
616 return adv7180_write(state, ADV7180_REG_NTSC_V_BIT_END,
617 ADV7180_NTSC_V_BIT_END_MANUAL_NVEND);
618}
619
620static int adv7180_set_std(struct adv7180_state *state, unsigned int std)
621{
622 return adv7180_write(state, ADV7180_REG_INPUT_CONTROL,
623 (std << 4) | state->input);
624}
625
626static int adv7180_select_input(struct adv7180_state *state, unsigned int input)
627{
628 int ret;
629
630 ret = adv7180_read(state, ADV7180_REG_INPUT_CONTROL);
631 if (ret < 0)
632 return ret;
633
634 ret &= ~ADV7180_INPUT_CONTROL_INSEL_MASK;
635 ret |= input;
636 return adv7180_write(state, ADV7180_REG_INPUT_CONTROL, ret);
637}
638
Lars-Peter Clausenc5ef8f82015-01-23 12:52:29 -0300639static int adv7182_init(struct adv7180_state *state)
640{
Lars-Peter Clausenbf7dcb82015-01-23 12:52:30 -0300641 if (state->chip_info->flags & ADV7180_FLAG_V2) {
642 /* ADI recommended writes for improved video quality */
643 adv7180_write(state, 0x0080, 0x51);
644 adv7180_write(state, 0x0081, 0x51);
645 adv7180_write(state, 0x0082, 0x68);
646 adv7180_write(state, 0x0004, 0x17);
647 } else {
648 adv7180_write(state, 0x0004, 0x07);
649 }
650
Lars-Peter Clausenc5ef8f82015-01-23 12:52:29 -0300651 /* ADI required writes */
652 adv7180_write(state, 0x0003, 0x0c);
Lars-Peter Clausenc5ef8f82015-01-23 12:52:29 -0300653 adv7180_write(state, 0x0013, 0x00);
654 adv7180_write(state, 0x001d, 0x40);
655
656 return 0;
657}
658
659static int adv7182_set_std(struct adv7180_state *state, unsigned int std)
660{
661 return adv7180_write(state, ADV7182_REG_INPUT_VIDSEL, std << 4);
662}
663
664enum adv7182_input_type {
665 ADV7182_INPUT_TYPE_CVBS,
666 ADV7182_INPUT_TYPE_DIFF_CVBS,
667 ADV7182_INPUT_TYPE_SVIDEO,
668 ADV7182_INPUT_TYPE_YPBPR,
669};
670
671static enum adv7182_input_type adv7182_get_input_type(unsigned int input)
672{
673 switch (input) {
674 case ADV7182_INPUT_CVBS_AIN1:
675 case ADV7182_INPUT_CVBS_AIN2:
676 case ADV7182_INPUT_CVBS_AIN3:
677 case ADV7182_INPUT_CVBS_AIN4:
678 case ADV7182_INPUT_CVBS_AIN5:
679 case ADV7182_INPUT_CVBS_AIN6:
680 case ADV7182_INPUT_CVBS_AIN7:
681 case ADV7182_INPUT_CVBS_AIN8:
682 return ADV7182_INPUT_TYPE_CVBS;
683 case ADV7182_INPUT_SVIDEO_AIN1_AIN2:
684 case ADV7182_INPUT_SVIDEO_AIN3_AIN4:
685 case ADV7182_INPUT_SVIDEO_AIN5_AIN6:
686 case ADV7182_INPUT_SVIDEO_AIN7_AIN8:
687 return ADV7182_INPUT_TYPE_SVIDEO;
688 case ADV7182_INPUT_YPRPB_AIN1_AIN2_AIN3:
689 case ADV7182_INPUT_YPRPB_AIN4_AIN5_AIN6:
690 return ADV7182_INPUT_TYPE_YPBPR;
691 case ADV7182_INPUT_DIFF_CVBS_AIN1_AIN2:
692 case ADV7182_INPUT_DIFF_CVBS_AIN3_AIN4:
693 case ADV7182_INPUT_DIFF_CVBS_AIN5_AIN6:
694 case ADV7182_INPUT_DIFF_CVBS_AIN7_AIN8:
695 return ADV7182_INPUT_TYPE_DIFF_CVBS;
696 default: /* Will never happen */
697 return 0;
698 }
699}
700
701/* ADI recommended writes to registers 0x52, 0x53, 0x54 */
702static unsigned int adv7182_lbias_settings[][3] = {
703 [ADV7182_INPUT_TYPE_CVBS] = { 0xCB, 0x4E, 0x80 },
704 [ADV7182_INPUT_TYPE_DIFF_CVBS] = { 0xC0, 0x4E, 0x80 },
705 [ADV7182_INPUT_TYPE_SVIDEO] = { 0x0B, 0xCE, 0x80 },
706 [ADV7182_INPUT_TYPE_YPBPR] = { 0x0B, 0x4E, 0xC0 },
707};
708
Lars-Peter Clausenbf7dcb82015-01-23 12:52:30 -0300709static unsigned int adv7280_lbias_settings[][3] = {
710 [ADV7182_INPUT_TYPE_CVBS] = { 0xCD, 0x4E, 0x80 },
711 [ADV7182_INPUT_TYPE_DIFF_CVBS] = { 0xC0, 0x4E, 0x80 },
712 [ADV7182_INPUT_TYPE_SVIDEO] = { 0x0B, 0xCE, 0x80 },
713 [ADV7182_INPUT_TYPE_YPBPR] = { 0x0B, 0x4E, 0xC0 },
714};
715
Lars-Peter Clausenc5ef8f82015-01-23 12:52:29 -0300716static int adv7182_select_input(struct adv7180_state *state, unsigned int input)
717{
718 enum adv7182_input_type input_type;
719 unsigned int *lbias;
720 unsigned int i;
721 int ret;
722
723 ret = adv7180_write(state, ADV7180_REG_INPUT_CONTROL, input);
724 if (ret)
725 return ret;
726
727 /* Reset clamp circuitry - ADI recommended writes */
728 adv7180_write(state, 0x809c, 0x00);
729 adv7180_write(state, 0x809c, 0xff);
730
731 input_type = adv7182_get_input_type(input);
732
733 switch (input_type) {
734 case ADV7182_INPUT_TYPE_CVBS:
735 case ADV7182_INPUT_TYPE_DIFF_CVBS:
736 /* ADI recommends to use the SH1 filter */
737 adv7180_write(state, 0x0017, 0x41);
738 break;
739 default:
740 adv7180_write(state, 0x0017, 0x01);
741 break;
742 }
743
Lars-Peter Clausenbf7dcb82015-01-23 12:52:30 -0300744 if (state->chip_info->flags & ADV7180_FLAG_V2)
745 lbias = adv7280_lbias_settings[input_type];
746 else
747 lbias = adv7182_lbias_settings[input_type];
Lars-Peter Clausenc5ef8f82015-01-23 12:52:29 -0300748
749 for (i = 0; i < ARRAY_SIZE(adv7182_lbias_settings[0]); i++)
750 adv7180_write(state, 0x0052 + i, lbias[i]);
751
752 if (input_type == ADV7182_INPUT_TYPE_DIFF_CVBS) {
753 /* ADI required writes to make differential CVBS work */
754 adv7180_write(state, 0x005f, 0xa8);
755 adv7180_write(state, 0x005a, 0x90);
756 adv7180_write(state, 0x0060, 0xb0);
757 adv7180_write(state, 0x80b6, 0x08);
758 adv7180_write(state, 0x80c0, 0xa0);
759 } else {
760 adv7180_write(state, 0x005f, 0xf0);
761 adv7180_write(state, 0x005a, 0xd0);
762 adv7180_write(state, 0x0060, 0x10);
763 adv7180_write(state, 0x80b6, 0x9c);
764 adv7180_write(state, 0x80c0, 0x00);
765 }
766
767 return 0;
768}
769
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300770static const struct adv7180_chip_info adv7180_info = {
771 .flags = ADV7180_FLAG_RESET_POWERED,
772 /* We cannot discriminate between LQFP and 40-pin LFCSP, so accept
773 * all inputs and let the card driver take care of validation
774 */
775 .valid_input_mask = BIT(ADV7180_INPUT_CVBS_AIN1) |
776 BIT(ADV7180_INPUT_CVBS_AIN2) |
777 BIT(ADV7180_INPUT_CVBS_AIN3) |
778 BIT(ADV7180_INPUT_CVBS_AIN4) |
779 BIT(ADV7180_INPUT_CVBS_AIN5) |
780 BIT(ADV7180_INPUT_CVBS_AIN6) |
781 BIT(ADV7180_INPUT_SVIDEO_AIN1_AIN2) |
782 BIT(ADV7180_INPUT_SVIDEO_AIN3_AIN4) |
783 BIT(ADV7180_INPUT_SVIDEO_AIN5_AIN6) |
784 BIT(ADV7180_INPUT_YPRPB_AIN1_AIN2_AIN3) |
785 BIT(ADV7180_INPUT_YPRPB_AIN4_AIN5_AIN6),
786 .init = adv7180_init,
787 .set_std = adv7180_set_std,
788 .select_input = adv7180_select_input,
789};
790
Lars-Peter Clausenc5ef8f82015-01-23 12:52:29 -0300791static const struct adv7180_chip_info adv7182_info = {
792 .valid_input_mask = BIT(ADV7182_INPUT_CVBS_AIN1) |
793 BIT(ADV7182_INPUT_CVBS_AIN2) |
794 BIT(ADV7182_INPUT_CVBS_AIN3) |
795 BIT(ADV7182_INPUT_CVBS_AIN4) |
796 BIT(ADV7182_INPUT_SVIDEO_AIN1_AIN2) |
797 BIT(ADV7182_INPUT_SVIDEO_AIN3_AIN4) |
798 BIT(ADV7182_INPUT_YPRPB_AIN1_AIN2_AIN3) |
799 BIT(ADV7182_INPUT_DIFF_CVBS_AIN1_AIN2) |
800 BIT(ADV7182_INPUT_DIFF_CVBS_AIN3_AIN4),
801 .init = adv7182_init,
802 .set_std = adv7182_set_std,
803 .select_input = adv7182_select_input,
804};
805
Lars-Peter Clausenbf7dcb82015-01-23 12:52:30 -0300806static const struct adv7180_chip_info adv7280_info = {
807 .flags = ADV7180_FLAG_V2,
808 .valid_input_mask = BIT(ADV7182_INPUT_CVBS_AIN1) |
809 BIT(ADV7182_INPUT_CVBS_AIN2) |
810 BIT(ADV7182_INPUT_CVBS_AIN3) |
811 BIT(ADV7182_INPUT_CVBS_AIN4) |
812 BIT(ADV7182_INPUT_SVIDEO_AIN1_AIN2) |
813 BIT(ADV7182_INPUT_SVIDEO_AIN3_AIN4) |
814 BIT(ADV7182_INPUT_YPRPB_AIN1_AIN2_AIN3),
815 .init = adv7182_init,
816 .set_std = adv7182_set_std,
817 .select_input = adv7182_select_input,
818};
819
820static const struct adv7180_chip_info adv7281_info = {
821 .flags = ADV7180_FLAG_V2,
822 .valid_input_mask = BIT(ADV7182_INPUT_CVBS_AIN1) |
823 BIT(ADV7182_INPUT_CVBS_AIN2) |
824 BIT(ADV7182_INPUT_CVBS_AIN7) |
825 BIT(ADV7182_INPUT_CVBS_AIN8) |
826 BIT(ADV7182_INPUT_SVIDEO_AIN1_AIN2) |
827 BIT(ADV7182_INPUT_SVIDEO_AIN7_AIN8) |
828 BIT(ADV7182_INPUT_DIFF_CVBS_AIN1_AIN2) |
829 BIT(ADV7182_INPUT_DIFF_CVBS_AIN7_AIN8),
830 .init = adv7182_init,
831 .set_std = adv7182_set_std,
832 .select_input = adv7182_select_input,
833};
834
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300835static int init_device(struct adv7180_state *state)
Federico Vagabca7ad12012-04-12 12:39:36 -0300836{
837 int ret;
838
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300839 mutex_lock(&state->mutex);
840
Lars-Peter Clausenc18818e2015-01-23 12:52:25 -0300841 adv7180_write(state, ADV7180_REG_PWR_MAN, ADV7180_PWR_MAN_RES);
842 usleep_range(2000, 10000);
843
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300844 ret = state->chip_info->init(state);
Lars-Peter Clausen3e35e332015-01-23 12:52:27 -0300845 if (ret)
846 goto out_unlock;
Federico Vagabca7ad12012-04-12 12:39:36 -0300847
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300848 ret = adv7180_program_std(state);
849 if (ret)
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300850 goto out_unlock;
Federico Vagabca7ad12012-04-12 12:39:36 -0300851
Federico Vagabca7ad12012-04-12 12:39:36 -0300852 /* register for interrupts */
853 if (state->irq > 0) {
Federico Vagabca7ad12012-04-12 12:39:36 -0300854 /* config the Interrupt pin to be active low */
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300855 ret = adv7180_write(state, ADV7180_REG_ICONF1,
Federico Vagabca7ad12012-04-12 12:39:36 -0300856 ADV7180_ICONF1_ACTIVE_LOW |
857 ADV7180_ICONF1_PSYNC_ONLY);
858 if (ret < 0)
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300859 goto out_unlock;
Federico Vagabca7ad12012-04-12 12:39:36 -0300860
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300861 ret = adv7180_write(state, ADV7180_REG_IMR1, 0);
Federico Vagabca7ad12012-04-12 12:39:36 -0300862 if (ret < 0)
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300863 goto out_unlock;
Federico Vagabca7ad12012-04-12 12:39:36 -0300864
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300865 ret = adv7180_write(state, ADV7180_REG_IMR2, 0);
Federico Vagabca7ad12012-04-12 12:39:36 -0300866 if (ret < 0)
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300867 goto out_unlock;
Federico Vagabca7ad12012-04-12 12:39:36 -0300868
869 /* enable AD change interrupts interrupts */
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300870 ret = adv7180_write(state, ADV7180_REG_IMR3,
Federico Vagabca7ad12012-04-12 12:39:36 -0300871 ADV7180_IRQ3_AD_CHANGE);
872 if (ret < 0)
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300873 goto out_unlock;
Federico Vagabca7ad12012-04-12 12:39:36 -0300874
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300875 ret = adv7180_write(state, ADV7180_REG_IMR4, 0);
Federico Vagabca7ad12012-04-12 12:39:36 -0300876 if (ret < 0)
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300877 goto out_unlock;
Federico Vagabca7ad12012-04-12 12:39:36 -0300878 }
879
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300880out_unlock:
881 mutex_unlock(&state->mutex);
Alexey Khoroshilovdf065b32014-03-14 18:04:03 -0300882
Alexey Khoroshilovdf065b32014-03-14 18:04:03 -0300883 return ret;
Federico Vagabca7ad12012-04-12 12:39:36 -0300884}
Richard Röjfors6789cb52009-09-18 21:17:20 -0300885
Greg Kroah-Hartman4c62e972012-12-21 13:17:53 -0800886static int adv7180_probe(struct i2c_client *client,
887 const struct i2c_device_id *id)
Richard Röjfors6789cb52009-09-18 21:17:20 -0300888{
889 struct adv7180_state *state;
890 struct v4l2_subdev *sd;
891 int ret;
892
893 /* Check if the adapter supports the needed features */
894 if (!i2c_check_functionality(client->adapter, I2C_FUNC_SMBUS_BYTE_DATA))
895 return -EIO;
896
897 v4l_info(client, "chip found @ 0x%02x (%s)\n",
Federico Vagabca7ad12012-04-12 12:39:36 -0300898 client->addr, client->adapter->name);
Richard Röjfors6789cb52009-09-18 21:17:20 -0300899
Laurent Pinchartc02b2112013-05-02 08:29:43 -0300900 state = devm_kzalloc(&client->dev, sizeof(*state), GFP_KERNEL);
Fabio Estevam7657e062014-12-16 13:49:07 -0300901 if (state == NULL)
902 return -ENOMEM;
Richard Röjfors42752f72009-09-22 06:07:06 -0300903
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300904 state->client = client;
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300905 state->chip_info = (struct adv7180_chip_info *)id->driver_data;
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300906
Richard Röjfors42752f72009-09-22 06:07:06 -0300907 state->irq = client->irq;
Richard Röjfors42752f72009-09-22 06:07:06 -0300908 mutex_init(&state->mutex);
Richard Röjforsc277b602009-09-22 06:06:34 -0300909 state->autodetect = true;
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300910 if (state->chip_info->flags & ADV7180_FLAG_RESET_POWERED)
911 state->powered = true;
912 else
913 state->powered = false;
Federico Vagabca7ad12012-04-12 12:39:36 -0300914 state->input = 0;
Richard Röjfors6789cb52009-09-18 21:17:20 -0300915 sd = &state->sd;
916 v4l2_i2c_subdev_init(sd, client, &adv7180_ops);
Lars-Peter Clausend5d51a82015-01-23 12:52:26 -0300917 sd->flags = V4L2_SUBDEV_FL_HAS_DEVNODE;
Richard Röjfors6789cb52009-09-18 21:17:20 -0300918
Federico Vagac9fbedd2012-07-11 11:29:33 -0300919 ret = adv7180_init_controls(state);
920 if (ret)
Richard Röjfors42752f72009-09-22 06:07:06 -0300921 goto err_unreg_subdev;
Lars-Peter Clausend5d51a82015-01-23 12:52:26 -0300922
923 state->pad.flags = MEDIA_PAD_FL_SOURCE;
924 sd->entity.flags |= MEDIA_ENT_T_V4L2_SUBDEV_DECODER;
925 ret = media_entity_init(&sd->entity, 1, &state->pad, 0);
Federico Vagac9fbedd2012-07-11 11:29:33 -0300926 if (ret)
927 goto err_free_ctrl;
Lars-Peter Clausenfa5b7942014-03-07 13:14:32 -0300928
Lars-Peter Clausend5d51a82015-01-23 12:52:26 -0300929 ret = init_device(state);
930 if (ret)
931 goto err_media_entity_cleanup;
932
Lars-Peter Clausenfa5721d2015-01-23 12:52:20 -0300933 if (state->irq) {
934 ret = request_threaded_irq(client->irq, NULL, adv7180_irq,
Lars-Peter Clausenf3e991d2015-01-23 12:52:21 -0300935 IRQF_ONESHOT | IRQF_TRIGGER_FALLING,
936 KBUILD_MODNAME, state);
Lars-Peter Clausenfa5721d2015-01-23 12:52:20 -0300937 if (ret)
Lars-Peter Clausend5d51a82015-01-23 12:52:26 -0300938 goto err_media_entity_cleanup;
Lars-Peter Clausenfa5721d2015-01-23 12:52:20 -0300939 }
940
Lars-Peter Clausenfa5b7942014-03-07 13:14:32 -0300941 ret = v4l2_async_register_subdev(sd);
942 if (ret)
943 goto err_free_irq;
944
Richard Röjfors6789cb52009-09-18 21:17:20 -0300945 return 0;
Richard Röjfors42752f72009-09-22 06:07:06 -0300946
Lars-Peter Clausenfa5b7942014-03-07 13:14:32 -0300947err_free_irq:
948 if (state->irq > 0)
949 free_irq(client->irq, state);
Lars-Peter Clausend5d51a82015-01-23 12:52:26 -0300950err_media_entity_cleanup:
951 media_entity_cleanup(&sd->entity);
Federico Vagac9fbedd2012-07-11 11:29:33 -0300952err_free_ctrl:
953 adv7180_exit_controls(state);
Richard Röjfors42752f72009-09-22 06:07:06 -0300954err_unreg_subdev:
Lars-Peter Clausen297a0ae2014-03-07 13:14:27 -0300955 mutex_destroy(&state->mutex);
Richard Röjfors42752f72009-09-22 06:07:06 -0300956 return ret;
Richard Röjfors6789cb52009-09-18 21:17:20 -0300957}
958
Greg Kroah-Hartman4c62e972012-12-21 13:17:53 -0800959static int adv7180_remove(struct i2c_client *client)
Richard Röjfors6789cb52009-09-18 21:17:20 -0300960{
961 struct v4l2_subdev *sd = i2c_get_clientdata(client);
Richard Röjfors42752f72009-09-22 06:07:06 -0300962 struct adv7180_state *state = to_state(sd);
Richard Röjfors6789cb52009-09-18 21:17:20 -0300963
Lars-Peter Clausenfa5b7942014-03-07 13:14:32 -0300964 v4l2_async_unregister_subdev(sd);
965
Lars-Peter Clausen0c255342014-03-07 13:14:31 -0300966 if (state->irq > 0)
Richard Röjfors42752f72009-09-22 06:07:06 -0300967 free_irq(client->irq, state);
Richard Röjfors42752f72009-09-22 06:07:06 -0300968
Lars-Peter Clausend5d51a82015-01-23 12:52:26 -0300969 media_entity_cleanup(&sd->entity);
Lars-Peter Clausenb13f4af2014-03-07 13:14:28 -0300970 adv7180_exit_controls(state);
Lars-Peter Clausen297a0ae2014-03-07 13:14:27 -0300971 mutex_destroy(&state->mutex);
Richard Röjfors6789cb52009-09-18 21:17:20 -0300972 return 0;
973}
974
975static const struct i2c_device_id adv7180_id[] = {
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300976 { "adv7180", (kernel_ulong_t)&adv7180_info },
Lars-Peter Clausenc5ef8f82015-01-23 12:52:29 -0300977 { "adv7182", (kernel_ulong_t)&adv7182_info },
Lars-Peter Clausenbf7dcb82015-01-23 12:52:30 -0300978 { "adv7280", (kernel_ulong_t)&adv7280_info },
979 { "adv7281", (kernel_ulong_t)&adv7281_info },
980 { "adv7282", (kernel_ulong_t)&adv7281_info },
Richard Röjfors6789cb52009-09-18 21:17:20 -0300981 {},
982};
Lars-Peter Clausenf5dde492015-01-23 12:52:28 -0300983MODULE_DEVICE_TABLE(i2c, adv7180_id);
Richard Röjfors6789cb52009-09-18 21:17:20 -0300984
Lars-Peter Clausencc1088d2013-04-13 05:25:59 -0300985#ifdef CONFIG_PM_SLEEP
986static int adv7180_suspend(struct device *dev)
Federico Vagabca7ad12012-04-12 12:39:36 -0300987{
Lars-Peter Clausencc1088d2013-04-13 05:25:59 -0300988 struct i2c_client *client = to_i2c_client(dev);
Lars-Peter Clausene246c332014-03-10 14:05:39 -0300989 struct v4l2_subdev *sd = i2c_get_clientdata(client);
990 struct adv7180_state *state = to_state(sd);
Federico Vagabca7ad12012-04-12 12:39:36 -0300991
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -0300992 return adv7180_set_power(state, false);
Federico Vagabca7ad12012-04-12 12:39:36 -0300993}
994
Lars-Peter Clausencc1088d2013-04-13 05:25:59 -0300995static int adv7180_resume(struct device *dev)
Federico Vagabca7ad12012-04-12 12:39:36 -0300996{
Lars-Peter Clausencc1088d2013-04-13 05:25:59 -0300997 struct i2c_client *client = to_i2c_client(dev);
Federico Vagabca7ad12012-04-12 12:39:36 -0300998 struct v4l2_subdev *sd = i2c_get_clientdata(client);
999 struct adv7180_state *state = to_state(sd);
1000 int ret;
1001
Lars-Peter Clausen3999e5d2015-01-23 12:52:24 -03001002 ret = init_device(state);
Federico Vagabca7ad12012-04-12 12:39:36 -03001003 if (ret < 0)
1004 return ret;
Lars-Peter Clausenc18818e2015-01-23 12:52:25 -03001005
1006 ret = adv7180_set_power(state, state->powered);
1007 if (ret)
1008 return ret;
1009
Federico Vagabca7ad12012-04-12 12:39:36 -03001010 return 0;
1011}
Lars-Peter Clausencc1088d2013-04-13 05:25:59 -03001012
1013static SIMPLE_DEV_PM_OPS(adv7180_pm_ops, adv7180_suspend, adv7180_resume);
1014#define ADV7180_PM_OPS (&adv7180_pm_ops)
1015
1016#else
1017#define ADV7180_PM_OPS NULL
Federico Vagabca7ad12012-04-12 12:39:36 -03001018#endif
1019
Richard Röjfors6789cb52009-09-18 21:17:20 -03001020static struct i2c_driver adv7180_driver = {
1021 .driver = {
Federico Vagabca7ad12012-04-12 12:39:36 -03001022 .owner = THIS_MODULE,
Federico Vagac9fbedd2012-07-11 11:29:33 -03001023 .name = KBUILD_MODNAME,
Lars-Peter Clausencc1088d2013-04-13 05:25:59 -03001024 .pm = ADV7180_PM_OPS,
Federico Vagabca7ad12012-04-12 12:39:36 -03001025 },
1026 .probe = adv7180_probe,
Greg Kroah-Hartman4c62e972012-12-21 13:17:53 -08001027 .remove = adv7180_remove,
Federico Vagabca7ad12012-04-12 12:39:36 -03001028 .id_table = adv7180_id,
Richard Röjfors6789cb52009-09-18 21:17:20 -03001029};
1030
Axel Linc6e8d862012-02-12 06:56:32 -03001031module_i2c_driver(adv7180_driver);
Richard Röjfors6789cb52009-09-18 21:17:20 -03001032
1033MODULE_DESCRIPTION("Analog Devices ADV7180 video decoder driver");
1034MODULE_AUTHOR("Mocean Laboratories");
1035MODULE_LICENSE("GPL v2");