Merge tag 'xfs-4.15-merge-2' of git://git.kernel.org/pub/scm/fs/xfs/xfs-linux
[sfrench/cifs-2.6.git] / arch / arm / plat-samsung / adc.c
1 /* arch/arm/plat-samsung/adc.c
2  *
3  * Copyright (c) 2008 Simtec Electronics
4  *      http://armlinux.simtec.co.uk/
5  *      Ben Dooks <ben@simtec.co.uk>, <ben-linux@fluff.org>
6  *
7  * Samsung ADC device core
8  *
9  * This program is free software; you can redistribute it and/or modify
10  * it under the terms of the GNU General Public License as published by
11  * the Free Software Foundation; either version 2 of the License.
12 */
13
14 #include <linux/module.h>
15 #include <linux/kernel.h>
16 #include <linux/platform_device.h>
17 #include <linux/sched.h>
18 #include <linux/list.h>
19 #include <linux/slab.h>
20 #include <linux/err.h>
21 #include <linux/clk.h>
22 #include <linux/interrupt.h>
23 #include <linux/io.h>
24 #include <linux/regulator/consumer.h>
25
26 #include <plat/regs-adc.h>
27 #include <plat/adc.h>
28
29 /* This driver is designed to control the usage of the ADC block between
30  * the touchscreen and any other drivers that may need to use it, such as
31  * the hwmon driver.
32  *
33  * Priority will be given to the touchscreen driver, but as this itself is
34  * rate limited it should not starve other requests which are processed in
35  * order that they are received.
36  *
37  * Each user registers to get a client block which uniquely identifies it
38  * and stores information such as the necessary functions to callback when
39  * action is required.
40  */
41
42 enum s3c_cpu_type {
43         TYPE_ADCV1, /* S3C24XX */
44         TYPE_ADCV11, /* S3C2443 */
45         TYPE_ADCV12, /* S3C2416, S3C2450 */
46         TYPE_ADCV2, /* S3C64XX */
47         TYPE_ADCV3, /* S5PV210, S5PC110, EXYNOS4210 */
48 };
49
50 struct s3c_adc_client {
51         struct platform_device  *pdev;
52         struct list_head         pend;
53         wait_queue_head_t       *wait;
54
55         unsigned int             nr_samples;
56         int                      result;
57         unsigned char            is_ts;
58         unsigned char            channel;
59
60         void    (*select_cb)(struct s3c_adc_client *c, unsigned selected);
61         void    (*convert_cb)(struct s3c_adc_client *c,
62                               unsigned val1, unsigned val2,
63                               unsigned *samples_left);
64 };
65
66 struct adc_device {
67         struct platform_device  *pdev;
68         struct platform_device  *owner;
69         struct clk              *clk;
70         struct s3c_adc_client   *cur;
71         struct s3c_adc_client   *ts_pend;
72         void __iomem            *regs;
73         spinlock_t               lock;
74
75         unsigned int             prescale;
76
77         int                      irq;
78         struct regulator        *vdd;
79 };
80
81 static struct adc_device *adc_dev;
82
83 static LIST_HEAD(adc_pending);  /* protected by adc_device.lock */
84
85 #define adc_dbg(_adc, msg...) dev_dbg(&(_adc)->pdev->dev, msg)
86
87 static inline void s3c_adc_convert(struct adc_device *adc)
88 {
89         unsigned con = readl(adc->regs + S3C2410_ADCCON);
90
91         con |= S3C2410_ADCCON_ENABLE_START;
92         writel(con, adc->regs + S3C2410_ADCCON);
93 }
94
95 static inline void s3c_adc_select(struct adc_device *adc,
96                                   struct s3c_adc_client *client)
97 {
98         unsigned con = readl(adc->regs + S3C2410_ADCCON);
99         enum s3c_cpu_type cpu = platform_get_device_id(adc->pdev)->driver_data;
100
101         client->select_cb(client, 1);
102
103         if (cpu == TYPE_ADCV1 || cpu == TYPE_ADCV2)
104                 con &= ~S3C2410_ADCCON_MUXMASK;
105         con &= ~S3C2410_ADCCON_STDBM;
106         con &= ~S3C2410_ADCCON_STARTMASK;
107
108         if (!client->is_ts) {
109                 if (cpu == TYPE_ADCV3)
110                         writel(client->channel & 0xf, adc->regs + S5P_ADCMUX);
111                 else if (cpu == TYPE_ADCV11 || cpu == TYPE_ADCV12)
112                         writel(client->channel & 0xf,
113                                                 adc->regs + S3C2443_ADCMUX);
114                 else
115                         con |= S3C2410_ADCCON_SELMUX(client->channel);
116         }
117
118         writel(con, adc->regs + S3C2410_ADCCON);
119 }
120
121 static void s3c_adc_dbgshow(struct adc_device *adc)
122 {
123         adc_dbg(adc, "CON=%08x, TSC=%08x, DLY=%08x\n",
124                 readl(adc->regs + S3C2410_ADCCON),
125                 readl(adc->regs + S3C2410_ADCTSC),
126                 readl(adc->regs + S3C2410_ADCDLY));
127 }
128
129 static void s3c_adc_try(struct adc_device *adc)
130 {
131         struct s3c_adc_client *next = adc->ts_pend;
132
133         if (!next && !list_empty(&adc_pending)) {
134                 next = list_first_entry(&adc_pending,
135                                         struct s3c_adc_client, pend);
136                 list_del(&next->pend);
137         } else
138                 adc->ts_pend = NULL;
139
140         if (next) {
141                 adc_dbg(adc, "new client is %p\n", next);
142                 adc->cur = next;
143                 s3c_adc_select(adc, next);
144                 s3c_adc_convert(adc);
145                 s3c_adc_dbgshow(adc);
146         }
147 }
148
149 int s3c_adc_start(struct s3c_adc_client *client,
150                   unsigned int channel, unsigned int nr_samples)
151 {
152         struct adc_device *adc = adc_dev;
153         unsigned long flags;
154
155         if (!adc) {
156                 printk(KERN_ERR "%s: failed to find adc\n", __func__);
157                 return -EINVAL;
158         }
159
160         spin_lock_irqsave(&adc->lock, flags);
161
162         if (client->is_ts && adc->ts_pend) {
163                 spin_unlock_irqrestore(&adc->lock, flags);
164                 return -EAGAIN;
165         }
166
167         client->channel = channel;
168         client->nr_samples = nr_samples;
169
170         if (client->is_ts)
171                 adc->ts_pend = client;
172         else
173                 list_add_tail(&client->pend, &adc_pending);
174
175         if (!adc->cur)
176                 s3c_adc_try(adc);
177
178         spin_unlock_irqrestore(&adc->lock, flags);
179
180         return 0;
181 }
182 EXPORT_SYMBOL_GPL(s3c_adc_start);
183
184 static void s3c_convert_done(struct s3c_adc_client *client,
185                              unsigned v, unsigned u, unsigned *left)
186 {
187         client->result = v;
188         wake_up(client->wait);
189 }
190
191 int s3c_adc_read(struct s3c_adc_client *client, unsigned int ch)
192 {
193         DECLARE_WAIT_QUEUE_HEAD_ONSTACK(wake);
194         int ret;
195
196         client->convert_cb = s3c_convert_done;
197         client->wait = &wake;
198         client->result = -1;
199
200         ret = s3c_adc_start(client, ch, 1);
201         if (ret < 0)
202                 goto err;
203
204         ret = wait_event_timeout(wake, client->result >= 0, HZ / 2);
205         if (client->result < 0) {
206                 ret = -ETIMEDOUT;
207                 goto err;
208         }
209
210         client->convert_cb = NULL;
211         return client->result;
212
213 err:
214         return ret;
215 }
216 EXPORT_SYMBOL_GPL(s3c_adc_read);
217
218 static void s3c_adc_default_select(struct s3c_adc_client *client,
219                                    unsigned select)
220 {
221 }
222
223 struct s3c_adc_client *s3c_adc_register(struct platform_device *pdev,
224                                         void (*select)(struct s3c_adc_client *client,
225                                                        unsigned int selected),
226                                         void (*conv)(struct s3c_adc_client *client,
227                                                      unsigned d0, unsigned d1,
228                                                      unsigned *samples_left),
229                                         unsigned int is_ts)
230 {
231         struct s3c_adc_client *client;
232
233         WARN_ON(!pdev);
234
235         if (!select)
236                 select = s3c_adc_default_select;
237
238         if (!pdev)
239                 return ERR_PTR(-EINVAL);
240
241         client = kzalloc(sizeof(*client), GFP_KERNEL);
242         if (!client)
243                 return ERR_PTR(-ENOMEM);
244
245         client->pdev = pdev;
246         client->is_ts = is_ts;
247         client->select_cb = select;
248         client->convert_cb = conv;
249
250         return client;
251 }
252 EXPORT_SYMBOL_GPL(s3c_adc_register);
253
254 void s3c_adc_release(struct s3c_adc_client *client)
255 {
256         unsigned long flags;
257
258         spin_lock_irqsave(&adc_dev->lock, flags);
259
260         /* We should really check that nothing is in progress. */
261         if (adc_dev->cur == client)
262                 adc_dev->cur = NULL;
263         if (adc_dev->ts_pend == client)
264                 adc_dev->ts_pend = NULL;
265         else {
266                 struct list_head *p, *n;
267                 struct s3c_adc_client *tmp;
268
269                 list_for_each_safe(p, n, &adc_pending) {
270                         tmp = list_entry(p, struct s3c_adc_client, pend);
271                         if (tmp == client)
272                                 list_del(&tmp->pend);
273                 }
274         }
275
276         if (adc_dev->cur == NULL)
277                 s3c_adc_try(adc_dev);
278
279         spin_unlock_irqrestore(&adc_dev->lock, flags);
280         kfree(client);
281 }
282 EXPORT_SYMBOL_GPL(s3c_adc_release);
283
284 static irqreturn_t s3c_adc_irq(int irq, void *pw)
285 {
286         struct adc_device *adc = pw;
287         struct s3c_adc_client *client = adc->cur;
288         enum s3c_cpu_type cpu = platform_get_device_id(adc->pdev)->driver_data;
289         unsigned data0, data1;
290
291         if (!client) {
292                 dev_warn(&adc->pdev->dev, "%s: no adc pending\n", __func__);
293                 goto exit;
294         }
295
296         data0 = readl(adc->regs + S3C2410_ADCDAT0);
297         data1 = readl(adc->regs + S3C2410_ADCDAT1);
298         adc_dbg(adc, "read %d: 0x%04x, 0x%04x\n", client->nr_samples, data0, data1);
299
300         client->nr_samples--;
301
302         if (cpu == TYPE_ADCV1 || cpu == TYPE_ADCV11) {
303                 data0 &= 0x3ff;
304                 data1 &= 0x3ff;
305         } else {
306                 /* S3C2416/S3C64XX/S5P ADC resolution is 12-bit */
307                 data0 &= 0xfff;
308                 data1 &= 0xfff;
309         }
310
311         if (client->convert_cb)
312                 (client->convert_cb)(client, data0, data1, &client->nr_samples);
313
314         if (client->nr_samples > 0) {
315                 /* fire another conversion for this */
316
317                 client->select_cb(client, 1);
318                 s3c_adc_convert(adc);
319         } else {
320                 spin_lock(&adc->lock);
321                 (client->select_cb)(client, 0);
322                 adc->cur = NULL;
323
324                 s3c_adc_try(adc);
325                 spin_unlock(&adc->lock);
326         }
327
328 exit:
329         if (cpu == TYPE_ADCV2 || cpu == TYPE_ADCV3) {
330                 /* Clear ADC interrupt */
331                 writel(0, adc->regs + S3C64XX_ADCCLRINT);
332         }
333         return IRQ_HANDLED;
334 }
335
336 static int s3c_adc_probe(struct platform_device *pdev)
337 {
338         struct device *dev = &pdev->dev;
339         struct adc_device *adc;
340         struct resource *regs;
341         enum s3c_cpu_type cpu = platform_get_device_id(pdev)->driver_data;
342         int ret;
343         unsigned tmp;
344
345         adc = devm_kzalloc(dev, sizeof(*adc), GFP_KERNEL);
346         if (!adc)
347                 return -ENOMEM;
348
349         spin_lock_init(&adc->lock);
350
351         adc->pdev = pdev;
352         adc->prescale = S3C2410_ADCCON_PRSCVL(49);
353
354         adc->vdd = devm_regulator_get(dev, "vdd");
355         if (IS_ERR(adc->vdd)) {
356                 dev_err(dev, "operating without regulator \"vdd\" .\n");
357                 return PTR_ERR(adc->vdd);
358         }
359
360         adc->irq = platform_get_irq(pdev, 1);
361         if (adc->irq <= 0) {
362                 dev_err(dev, "failed to get adc irq\n");
363                 return -ENOENT;
364         }
365
366         ret = devm_request_irq(dev, adc->irq, s3c_adc_irq, 0, dev_name(dev),
367                                 adc);
368         if (ret < 0) {
369                 dev_err(dev, "failed to attach adc irq\n");
370                 return ret;
371         }
372
373         adc->clk = devm_clk_get(dev, "adc");
374         if (IS_ERR(adc->clk)) {
375                 dev_err(dev, "failed to get adc clock\n");
376                 return PTR_ERR(adc->clk);
377         }
378
379         regs = platform_get_resource(pdev, IORESOURCE_MEM, 0);
380         adc->regs = devm_ioremap_resource(dev, regs);
381         if (IS_ERR(adc->regs))
382                 return PTR_ERR(adc->regs);
383
384         ret = regulator_enable(adc->vdd);
385         if (ret)
386                 return ret;
387
388         clk_prepare_enable(adc->clk);
389
390         tmp = adc->prescale | S3C2410_ADCCON_PRSCEN;
391
392         /* Enable 12-bit ADC resolution */
393         if (cpu == TYPE_ADCV12)
394                 tmp |= S3C2416_ADCCON_RESSEL;
395         if (cpu == TYPE_ADCV2 || cpu == TYPE_ADCV3)
396                 tmp |= S3C64XX_ADCCON_RESSEL;
397
398         writel(tmp, adc->regs + S3C2410_ADCCON);
399
400         dev_info(dev, "attached adc driver\n");
401
402         platform_set_drvdata(pdev, adc);
403         adc_dev = adc;
404
405         return 0;
406 }
407
408 static int s3c_adc_remove(struct platform_device *pdev)
409 {
410         struct adc_device *adc = platform_get_drvdata(pdev);
411
412         clk_disable_unprepare(adc->clk);
413         regulator_disable(adc->vdd);
414
415         return 0;
416 }
417
418 #ifdef CONFIG_PM
419 static int s3c_adc_suspend(struct device *dev)
420 {
421         struct platform_device *pdev = to_platform_device(dev);
422         struct adc_device *adc = platform_get_drvdata(pdev);
423         unsigned long flags;
424         u32 con;
425
426         spin_lock_irqsave(&adc->lock, flags);
427
428         con = readl(adc->regs + S3C2410_ADCCON);
429         con |= S3C2410_ADCCON_STDBM;
430         writel(con, adc->regs + S3C2410_ADCCON);
431
432         disable_irq(adc->irq);
433         spin_unlock_irqrestore(&adc->lock, flags);
434         clk_disable(adc->clk);
435         regulator_disable(adc->vdd);
436
437         return 0;
438 }
439
440 static int s3c_adc_resume(struct device *dev)
441 {
442         struct platform_device *pdev = to_platform_device(dev);
443         struct adc_device *adc = platform_get_drvdata(pdev);
444         enum s3c_cpu_type cpu = platform_get_device_id(pdev)->driver_data;
445         int ret;
446         unsigned long tmp;
447
448         ret = regulator_enable(adc->vdd);
449         if (ret)
450                 return ret;
451         clk_enable(adc->clk);
452         enable_irq(adc->irq);
453
454         tmp = adc->prescale | S3C2410_ADCCON_PRSCEN;
455
456         /* Enable 12-bit ADC resolution */
457         if (cpu == TYPE_ADCV12)
458                 tmp |= S3C2416_ADCCON_RESSEL;
459         if (cpu == TYPE_ADCV2 || cpu == TYPE_ADCV3)
460                 tmp |= S3C64XX_ADCCON_RESSEL;
461
462         writel(tmp, adc->regs + S3C2410_ADCCON);
463
464         return 0;
465 }
466
467 #else
468 #define s3c_adc_suspend NULL
469 #define s3c_adc_resume NULL
470 #endif
471
472 static const struct platform_device_id s3c_adc_driver_ids[] = {
473         {
474                 .name           = "s3c24xx-adc",
475                 .driver_data    = TYPE_ADCV1,
476         }, {
477                 .name           = "s3c2443-adc",
478                 .driver_data    = TYPE_ADCV11,
479         }, {
480                 .name           = "s3c2416-adc",
481                 .driver_data    = TYPE_ADCV12,
482         }, {
483                 .name           = "s3c64xx-adc",
484                 .driver_data    = TYPE_ADCV2,
485         }, {
486                 .name           = "samsung-adc-v3",
487                 .driver_data    = TYPE_ADCV3,
488         },
489         { }
490 };
491 MODULE_DEVICE_TABLE(platform, s3c_adc_driver_ids);
492
493 static const struct dev_pm_ops adc_pm_ops = {
494         .suspend        = s3c_adc_suspend,
495         .resume         = s3c_adc_resume,
496 };
497
498 static struct platform_driver s3c_adc_driver = {
499         .id_table       = s3c_adc_driver_ids,
500         .driver         = {
501                 .name   = "s3c-adc",
502                 .pm     = &adc_pm_ops,
503         },
504         .probe          = s3c_adc_probe,
505         .remove         = s3c_adc_remove,
506 };
507
508 static int __init adc_init(void)
509 {
510         int ret;
511
512         ret = platform_driver_register(&s3c_adc_driver);
513         if (ret)
514                 printk(KERN_ERR "%s: failed to add adc driver\n", __func__);
515
516         return ret;
517 }
518
519 module_init(adc_init);