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v3.1
  1/*
  2 * ntc_thermistor.c - NTC Thermistors
  3 *
  4 *  Copyright (C) 2010 Samsung Electronics
  5 *  MyungJoo Ham <myungjoo.ham@samsung.com>
  6 *
  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.
 11 *
 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.
 16 *
 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
 20 *
 21 */
 22
 23#include <linux/slab.h>
 24#include <linux/module.h>
 25#include <linux/pm_runtime.h>
 26#include <linux/math64.h>
 27#include <linux/platform_device.h>
 28#include <linux/err.h>
 
 
 29
 30#include <linux/platform_data/ntc_thermistor.h>
 31
 
 
 
 
 
 32#include <linux/hwmon.h>
 33#include <linux/hwmon-sysfs.h>
 
 34
 35struct ntc_compensation {
 36	int		temp_C;
 37	unsigned int	ohm;
 38};
 39
 
 
 
 
 
 
 
 
 
 
 
 
 
 40/*
 41 * A compensation table should be sorted by the values of .ohm
 42 * in descending order.
 43 * The following compensation tables are from the specification of Murata NTC
 44 * Thermistors Datasheet
 45 */
 46const struct ntc_compensation ncpXXwb473[] = {
 47	{ .temp_C	= -40, .ohm	= 1747920 },
 48	{ .temp_C	= -35, .ohm	= 1245428 },
 49	{ .temp_C	= -30, .ohm	= 898485 },
 50	{ .temp_C	= -25, .ohm	= 655802 },
 51	{ .temp_C	= -20, .ohm	= 483954 },
 52	{ .temp_C	= -15, .ohm	= 360850 },
 53	{ .temp_C	= -10, .ohm	= 271697 },
 54	{ .temp_C	= -5, .ohm	= 206463 },
 55	{ .temp_C	= 0, .ohm	= 158214 },
 56	{ .temp_C	= 5, .ohm	= 122259 },
 57	{ .temp_C	= 10, .ohm	= 95227 },
 58	{ .temp_C	= 15, .ohm	= 74730 },
 59	{ .temp_C	= 20, .ohm	= 59065 },
 60	{ .temp_C	= 25, .ohm	= 47000 },
 61	{ .temp_C	= 30, .ohm	= 37643 },
 62	{ .temp_C	= 35, .ohm	= 30334 },
 63	{ .temp_C	= 40, .ohm	= 24591 },
 64	{ .temp_C	= 45, .ohm	= 20048 },
 65	{ .temp_C	= 50, .ohm	= 16433 },
 66	{ .temp_C	= 55, .ohm	= 13539 },
 67	{ .temp_C	= 60, .ohm	= 11209 },
 68	{ .temp_C	= 65, .ohm	= 9328 },
 69	{ .temp_C	= 70, .ohm	= 7798 },
 70	{ .temp_C	= 75, .ohm	= 6544 },
 71	{ .temp_C	= 80, .ohm	= 5518 },
 72	{ .temp_C	= 85, .ohm	= 4674 },
 73	{ .temp_C	= 90, .ohm	= 3972 },
 74	{ .temp_C	= 95, .ohm	= 3388 },
 75	{ .temp_C	= 100, .ohm	= 2902 },
 76	{ .temp_C	= 105, .ohm	= 2494 },
 77	{ .temp_C	= 110, .ohm	= 2150 },
 78	{ .temp_C	= 115, .ohm	= 1860 },
 79	{ .temp_C	= 120, .ohm	= 1615 },
 80	{ .temp_C	= 125, .ohm	= 1406 },
 81};
 82const struct ntc_compensation ncpXXwl333[] = {
 83	{ .temp_C	= -40, .ohm	= 1610154 },
 84	{ .temp_C	= -35, .ohm	= 1130850 },
 85	{ .temp_C	= -30, .ohm	= 802609 },
 86	{ .temp_C	= -25, .ohm	= 575385 },
 87	{ .temp_C	= -20, .ohm	= 416464 },
 88	{ .temp_C	= -15, .ohm	= 304219 },
 89	{ .temp_C	= -10, .ohm	= 224193 },
 90	{ .temp_C	= -5, .ohm	= 166623 },
 91	{ .temp_C	= 0, .ohm	= 124850 },
 92	{ .temp_C	= 5, .ohm	= 94287 },
 93	{ .temp_C	= 10, .ohm	= 71747 },
 94	{ .temp_C	= 15, .ohm	= 54996 },
 95	{ .temp_C	= 20, .ohm	= 42455 },
 96	{ .temp_C	= 25, .ohm	= 33000 },
 97	{ .temp_C	= 30, .ohm	= 25822 },
 98	{ .temp_C	= 35, .ohm	= 20335 },
 99	{ .temp_C	= 40, .ohm	= 16115 },
100	{ .temp_C	= 45, .ohm	= 12849 },
101	{ .temp_C	= 50, .ohm	= 10306 },
102	{ .temp_C	= 55, .ohm	= 8314 },
103	{ .temp_C	= 60, .ohm	= 6746 },
104	{ .temp_C	= 65, .ohm	= 5503 },
105	{ .temp_C	= 70, .ohm	= 4513 },
106	{ .temp_C	= 75, .ohm	= 3721 },
107	{ .temp_C	= 80, .ohm	= 3084 },
108	{ .temp_C	= 85, .ohm	= 2569 },
109	{ .temp_C	= 90, .ohm	= 2151 },
110	{ .temp_C	= 95, .ohm	= 1809 },
111	{ .temp_C	= 100, .ohm	= 1529 },
112	{ .temp_C	= 105, .ohm	= 1299 },
113	{ .temp_C	= 110, .ohm	= 1108 },
114	{ .temp_C	= 115, .ohm	= 949 },
115	{ .temp_C	= 120, .ohm	= 817 },
116	{ .temp_C	= 125, .ohm	= 707 },
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
117};
118
119struct ntc_data {
120	struct device *hwmon_dev;
121	struct ntc_thermistor_platform_data *pdata;
122	const struct ntc_compensation *comp;
123	struct device *dev;
124	int n_comp;
125	char name[PLATFORM_NAME_SIZE];
 
126};
127
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
128static inline u64 div64_u64_safe(u64 dividend, u64 divisor)
129{
130	if (divisor == 0 && dividend == 0)
131		return 0;
132	if (divisor == 0)
133		return UINT_MAX;
134	return div64_u64(dividend, divisor);
135}
136
137static unsigned int get_ohm_of_thermistor(struct ntc_data *data,
138		unsigned int uV)
139{
140	struct ntc_thermistor_platform_data *pdata = data->pdata;
141	u64 mV = uV / 1000;
142	u64 pmV = pdata->pullup_uV / 1000;
143	u64 N, puO, pdO;
144	puO = pdata->pullup_ohm;
145	pdO = pdata->pulldown_ohm;
146
147	if (mV == 0) {
148		if (pdata->connect == NTC_CONNECTED_POSITIVE)
149			return UINT_MAX;
150		return 0;
151	}
152	if (mV >= pmV)
153		return (pdata->connect == NTC_CONNECTED_POSITIVE) ?
154			0 : UINT_MAX;
155
156	if (pdata->connect == NTC_CONNECTED_POSITIVE && puO == 0)
157		N = div64_u64_safe(pdO * (pmV - mV), mV);
158	else if (pdata->connect == NTC_CONNECTED_GROUND && pdO == 0)
159		N = div64_u64_safe(puO * mV, pmV - mV);
160	else if (pdata->connect == NTC_CONNECTED_POSITIVE)
161		N = div64_u64_safe(pdO * puO * (pmV - mV),
162				puO * mV - pdO * (pmV - mV));
163	else
164		N = div64_u64_safe(pdO * puO * mV, pdO * (pmV - mV) - puO * mV);
165
166	return (unsigned int) N;
167}
168
169static int lookup_comp(struct ntc_data *data,
170		unsigned int ohm, int *i_low, int *i_high)
171{
172	int start, end, mid = -1;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
173
174	/* Do a binary search on compensation table */
175	start = 0;
176	end = data->n_comp;
177
178	while (end > start) {
179		mid = start + (end - start) / 2;
180		if (data->comp[mid].ohm < ohm)
 
 
 
 
 
 
 
 
 
181			end = mid;
182		else if (data->comp[mid].ohm > ohm)
183			start = mid + 1;
184		else
185			break;
186	}
187
188	if (mid == 0) {
189		if (data->comp[mid].ohm > ohm) {
190			*i_high = mid;
191			*i_low = mid + 1;
192			return 0;
193		} else {
194			*i_low = mid;
195			*i_high = -1;
196			return -EINVAL;
197		}
198	}
199	if (mid == (data->n_comp - 1)) {
200		if (data->comp[mid].ohm <= ohm) {
201			*i_low = mid;
202			*i_high = mid - 1;
203			return 0;
204		} else {
205			*i_low = -1;
206			*i_high = mid;
207			return -EINVAL;
 
 
 
 
 
 
208		}
209	}
210
211	if (data->comp[mid].ohm <= ohm) {
212		*i_low = mid;
213		*i_high = mid - 1;
214	} else {
215		*i_low = mid + 1;
216		*i_high = mid;
217	}
218
219	return 0;
 
 
 
220}
221
222static int get_temp_mC(struct ntc_data *data, unsigned int ohm, int *temp)
223{
224	int low, high;
225	int ret;
226
227	ret = lookup_comp(data, ohm, &low, &high);
228	if (ret) {
229		/* Unable to use linear approximation */
230		if (low != -1)
231			*temp = data->comp[low].temp_C * 1000;
232		else if (high != -1)
233			*temp = data->comp[high].temp_C * 1000;
234		else
235			return ret;
236	} else {
237		*temp = data->comp[low].temp_C * 1000 +
238			((data->comp[high].temp_C - data->comp[low].temp_C) *
239			 1000 * ((int)ohm - (int)data->comp[low].ohm)) /
240			((int)data->comp[high].ohm - (int)data->comp[low].ohm);
241	}
242
243	return 0;
244}
245
246static int ntc_thermistor_read(struct ntc_data *data, int *temp)
247{
248	int ret;
249	int read_ohm, read_uV;
250	unsigned int ohm = 0;
251
252	if (data->pdata->read_ohm) {
253		read_ohm = data->pdata->read_ohm();
254		if (read_ohm < 0)
255			return read_ohm;
256		ohm = (unsigned int)read_ohm;
257	}
258
259	if (data->pdata->read_uV) {
260		read_uV = data->pdata->read_uV();
261		if (read_uV < 0)
262			return read_uV;
263		ohm = get_ohm_of_thermistor(data, (unsigned int)read_uV);
264	}
 
 
265
266	ret = get_temp_mC(data, ohm, temp);
267	if (ret) {
268		dev_dbg(data->dev, "Sensor reading function not available.\n");
269		return ret;
270	}
 
 
 
 
 
271
272	return 0;
273}
274
275static ssize_t ntc_show_name(struct device *dev,
276		struct device_attribute *attr, char *buf)
277{
278	struct ntc_data *data = dev_get_drvdata(dev);
279
280	return sprintf(buf, "%s\n", data->name);
281}
282
283static ssize_t ntc_show_type(struct device *dev,
284		struct device_attribute *attr, char *buf)
285{
286	return sprintf(buf, "4\n");
287}
288
289static ssize_t ntc_show_temp(struct device *dev,
290		struct device_attribute *attr, char *buf)
291{
292	struct ntc_data *data = dev_get_drvdata(dev);
293	int temp, ret;
294
295	ret = ntc_thermistor_read(data, &temp);
296	if (ret)
297		return ret;
298	return sprintf(buf, "%d\n", temp);
 
299}
300
301static SENSOR_DEVICE_ATTR(temp1_type, S_IRUGO, ntc_show_type, NULL, 0);
302static SENSOR_DEVICE_ATTR(temp1_input, S_IRUGO, ntc_show_temp, NULL, 0);
303static DEVICE_ATTR(name, S_IRUGO, ntc_show_name, NULL);
304
305static struct attribute *ntc_attributes[] = {
306	&dev_attr_name.attr,
307	&sensor_dev_attr_temp1_type.dev_attr.attr,
308	&sensor_dev_attr_temp1_input.dev_attr.attr,
309	NULL,
310};
311
312static const struct attribute_group ntc_attr_group = {
313	.attrs = ntc_attributes,
314};
315
316static int __devinit ntc_thermistor_probe(struct platform_device *pdev)
 
 
 
 
317{
 
 
 
 
318	struct ntc_data *data;
319	struct ntc_thermistor_platform_data *pdata = pdev->dev.platform_data;
320	int ret = 0;
 
 
 
 
 
321
322	if (!pdata) {
323		dev_err(&pdev->dev, "No platform init data supplied.\n");
324		return -ENODEV;
325	}
326
327	/* Either one of the two is required. */
328	if (!pdata->read_uV && !pdata->read_ohm) {
329		dev_err(&pdev->dev, "Both read_uV and read_ohm missing."
330				"Need either one of the two.\n");
331		return -EINVAL;
332	}
333
334	if (pdata->read_uV && pdata->read_ohm) {
335		dev_warn(&pdev->dev, "Only one of read_uV and read_ohm "
336				"is needed; ignoring read_uV.\n");
337		pdata->read_uV = NULL;
338	}
339
340	if (pdata->read_uV && (pdata->pullup_uV == 0 ||
341				(pdata->pullup_ohm == 0 && pdata->connect ==
342				 NTC_CONNECTED_GROUND) ||
343				(pdata->pulldown_ohm == 0 && pdata->connect ==
344				 NTC_CONNECTED_POSITIVE) ||
345				(pdata->connect != NTC_CONNECTED_POSITIVE &&
346				 pdata->connect != NTC_CONNECTED_GROUND))) {
347		dev_err(&pdev->dev, "Required data to use read_uV not "
348				"supplied.\n");
349		return -EINVAL;
350	}
351
352	data = kzalloc(sizeof(struct ntc_data), GFP_KERNEL);
353	if (!data)
354		return -ENOMEM;
355
 
 
356	data->dev = &pdev->dev;
357	data->pdata = pdata;
358	strncpy(data->name, pdev->id_entry->name, PLATFORM_NAME_SIZE);
359
360	switch (pdev->id_entry->driver_data) {
361	case TYPE_NCPXXWB473:
362		data->comp = ncpXXwb473;
363		data->n_comp = ARRAY_SIZE(ncpXXwb473);
364		break;
365	case TYPE_NCPXXWL333:
366		data->comp = ncpXXwl333;
367		data->n_comp = ARRAY_SIZE(ncpXXwl333);
368		break;
 
 
 
 
 
 
 
 
 
 
 
 
369	default:
370		dev_err(&pdev->dev, "Unknown device type: %lu(%s)\n",
371				pdev->id_entry->driver_data,
372				pdev->id_entry->name);
373		ret = -EINVAL;
374		goto err;
375	}
376
377	platform_set_drvdata(pdev, data);
378
379	ret = sysfs_create_group(&data->dev->kobj, &ntc_attr_group);
380	if (ret) {
381		dev_err(data->dev, "unable to create sysfs files\n");
382		goto err;
383	}
384
385	data->hwmon_dev = hwmon_device_register(data->dev);
386	if (IS_ERR_OR_NULL(data->hwmon_dev)) {
387		dev_err(data->dev, "unable to register as hwmon device.\n");
388		ret = -EINVAL;
389		goto err_after_sysfs;
390	}
391
392	dev_info(&pdev->dev, "Thermistor %s:%d (type: %s/%lu) successfully probed.\n",
393			pdev->name, pdev->id, pdev->id_entry->name,
394			pdev->id_entry->driver_data);
 
 
 
 
 
 
 
395	return 0;
396err_after_sysfs:
397	sysfs_remove_group(&data->dev->kobj, &ntc_attr_group);
398err:
399	kfree(data);
400	return ret;
401}
402
403static int __devexit ntc_thermistor_remove(struct platform_device *pdev)
404{
405	struct ntc_data *data = platform_get_drvdata(pdev);
 
406
407	hwmon_device_unregister(data->hwmon_dev);
408	sysfs_remove_group(&data->dev->kobj, &ntc_attr_group);
409	platform_set_drvdata(pdev, NULL);
410
411	kfree(data);
412
413	return 0;
414}
415
416static const struct platform_device_id ntc_thermistor_id[] = {
417	{ "ncp15wb473", TYPE_NCPXXWB473 },
418	{ "ncp18wb473", TYPE_NCPXXWB473 },
419	{ "ncp21wb473", TYPE_NCPXXWB473 },
420	{ "ncp03wb473", TYPE_NCPXXWB473 },
421	{ "ncp15wl333", TYPE_NCPXXWL333 },
422	{ },
423};
424
425static struct platform_driver ntc_thermistor_driver = {
426	.driver = {
427		.name = "ntc-thermistor",
428		.owner = THIS_MODULE,
429	},
430	.probe = ntc_thermistor_probe,
431	.remove = __devexit_p(ntc_thermistor_remove),
432	.id_table = ntc_thermistor_id,
433};
434
435static int __init ntc_thermistor_init(void)
436{
437	return platform_driver_register(&ntc_thermistor_driver);
438}
439
440module_init(ntc_thermistor_init);
441
442static void __exit ntc_thermistor_cleanup(void)
443{
444	platform_driver_unregister(&ntc_thermistor_driver);
445}
446
447module_exit(ntc_thermistor_cleanup);
448
449MODULE_DESCRIPTION("NTC Thermistor Driver");
450MODULE_AUTHOR("MyungJoo Ham <myungjoo.ham@samsung.com>");
451MODULE_LICENSE("GPL");
452MODULE_ALIAS("platform:ntc-thermistor");
v4.6
  1/*
  2 * ntc_thermistor.c - NTC Thermistors
  3 *
  4 *  Copyright (C) 2010 Samsung Electronics
  5 *  MyungJoo Ham <myungjoo.ham@samsung.com>
  6 *
  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.
 11 *
 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.
 16 *
 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
 20 *
 21 */
 22
 23#include <linux/slab.h>
 24#include <linux/module.h>
 25#include <linux/pm_runtime.h>
 26#include <linux/math64.h>
 27#include <linux/platform_device.h>
 28#include <linux/err.h>
 29#include <linux/of.h>
 30#include <linux/of_device.h>
 31
 32#include <linux/platform_data/ntc_thermistor.h>
 33
 34#include <linux/iio/iio.h>
 35#include <linux/iio/machine.h>
 36#include <linux/iio/driver.h>
 37#include <linux/iio/consumer.h>
 38
 39#include <linux/hwmon.h>
 40#include <linux/hwmon-sysfs.h>
 41#include <linux/thermal.h>
 42
 43struct ntc_compensation {
 44	int		temp_c;
 45	unsigned int	ohm;
 46};
 47
 48/* Order matters, ntc_match references the entries by index */
 49static const struct platform_device_id ntc_thermistor_id[] = {
 50	{ "ncp15wb473", TYPE_NCPXXWB473 },
 51	{ "ncp18wb473", TYPE_NCPXXWB473 },
 52	{ "ncp21wb473", TYPE_NCPXXWB473 },
 53	{ "ncp03wb473", TYPE_NCPXXWB473 },
 54	{ "ncp15wl333", TYPE_NCPXXWL333 },
 55	{ "b57330v2103", TYPE_B57330V2103},
 56	{ "ncp03wf104", TYPE_NCPXXWF104 },
 57	{ "ncp15xh103", TYPE_NCPXXXH103 },
 58	{ },
 59};
 60
 61/*
 62 * A compensation table should be sorted by the values of .ohm
 63 * in descending order.
 64 * The following compensation tables are from the specification of Murata NTC
 65 * Thermistors Datasheet
 66 */
 67static const struct ntc_compensation ncpXXwb473[] = {
 68	{ .temp_c	= -40, .ohm	= 1747920 },
 69	{ .temp_c	= -35, .ohm	= 1245428 },
 70	{ .temp_c	= -30, .ohm	= 898485 },
 71	{ .temp_c	= -25, .ohm	= 655802 },
 72	{ .temp_c	= -20, .ohm	= 483954 },
 73	{ .temp_c	= -15, .ohm	= 360850 },
 74	{ .temp_c	= -10, .ohm	= 271697 },
 75	{ .temp_c	= -5, .ohm	= 206463 },
 76	{ .temp_c	= 0, .ohm	= 158214 },
 77	{ .temp_c	= 5, .ohm	= 122259 },
 78	{ .temp_c	= 10, .ohm	= 95227 },
 79	{ .temp_c	= 15, .ohm	= 74730 },
 80	{ .temp_c	= 20, .ohm	= 59065 },
 81	{ .temp_c	= 25, .ohm	= 47000 },
 82	{ .temp_c	= 30, .ohm	= 37643 },
 83	{ .temp_c	= 35, .ohm	= 30334 },
 84	{ .temp_c	= 40, .ohm	= 24591 },
 85	{ .temp_c	= 45, .ohm	= 20048 },
 86	{ .temp_c	= 50, .ohm	= 16433 },
 87	{ .temp_c	= 55, .ohm	= 13539 },
 88	{ .temp_c	= 60, .ohm	= 11209 },
 89	{ .temp_c	= 65, .ohm	= 9328 },
 90	{ .temp_c	= 70, .ohm	= 7798 },
 91	{ .temp_c	= 75, .ohm	= 6544 },
 92	{ .temp_c	= 80, .ohm	= 5518 },
 93	{ .temp_c	= 85, .ohm	= 4674 },
 94	{ .temp_c	= 90, .ohm	= 3972 },
 95	{ .temp_c	= 95, .ohm	= 3388 },
 96	{ .temp_c	= 100, .ohm	= 2902 },
 97	{ .temp_c	= 105, .ohm	= 2494 },
 98	{ .temp_c	= 110, .ohm	= 2150 },
 99	{ .temp_c	= 115, .ohm	= 1860 },
100	{ .temp_c	= 120, .ohm	= 1615 },
101	{ .temp_c	= 125, .ohm	= 1406 },
102};
103static const struct ntc_compensation ncpXXwl333[] = {
104	{ .temp_c	= -40, .ohm	= 1610154 },
105	{ .temp_c	= -35, .ohm	= 1130850 },
106	{ .temp_c	= -30, .ohm	= 802609 },
107	{ .temp_c	= -25, .ohm	= 575385 },
108	{ .temp_c	= -20, .ohm	= 416464 },
109	{ .temp_c	= -15, .ohm	= 304219 },
110	{ .temp_c	= -10, .ohm	= 224193 },
111	{ .temp_c	= -5, .ohm	= 166623 },
112	{ .temp_c	= 0, .ohm	= 124850 },
113	{ .temp_c	= 5, .ohm	= 94287 },
114	{ .temp_c	= 10, .ohm	= 71747 },
115	{ .temp_c	= 15, .ohm	= 54996 },
116	{ .temp_c	= 20, .ohm	= 42455 },
117	{ .temp_c	= 25, .ohm	= 33000 },
118	{ .temp_c	= 30, .ohm	= 25822 },
119	{ .temp_c	= 35, .ohm	= 20335 },
120	{ .temp_c	= 40, .ohm	= 16115 },
121	{ .temp_c	= 45, .ohm	= 12849 },
122	{ .temp_c	= 50, .ohm	= 10306 },
123	{ .temp_c	= 55, .ohm	= 8314 },
124	{ .temp_c	= 60, .ohm	= 6746 },
125	{ .temp_c	= 65, .ohm	= 5503 },
126	{ .temp_c	= 70, .ohm	= 4513 },
127	{ .temp_c	= 75, .ohm	= 3721 },
128	{ .temp_c	= 80, .ohm	= 3084 },
129	{ .temp_c	= 85, .ohm	= 2569 },
130	{ .temp_c	= 90, .ohm	= 2151 },
131	{ .temp_c	= 95, .ohm	= 1809 },
132	{ .temp_c	= 100, .ohm	= 1529 },
133	{ .temp_c	= 105, .ohm	= 1299 },
134	{ .temp_c	= 110, .ohm	= 1108 },
135	{ .temp_c	= 115, .ohm	= 949 },
136	{ .temp_c	= 120, .ohm	= 817 },
137	{ .temp_c	= 125, .ohm	= 707 },
138};
139
140static const struct ntc_compensation ncpXXwf104[] = {
141	{ .temp_c	= -40, .ohm	= 4397119 },
142	{ .temp_c	= -35, .ohm	= 3088599 },
143	{ .temp_c	= -30, .ohm	= 2197225 },
144	{ .temp_c	= -25, .ohm	= 1581881 },
145	{ .temp_c	= -20, .ohm	= 1151037 },
146	{ .temp_c	= -15, .ohm	= 846579 },
147	{ .temp_c	= -10, .ohm	= 628988 },
148	{ .temp_c	= -5, .ohm	= 471632 },
149	{ .temp_c	= 0, .ohm	= 357012 },
150	{ .temp_c	= 5, .ohm	= 272500 },
151	{ .temp_c	= 10, .ohm	= 209710 },
152	{ .temp_c	= 15, .ohm	= 162651 },
153	{ .temp_c	= 20, .ohm	= 127080 },
154	{ .temp_c	= 25, .ohm	= 100000 },
155	{ .temp_c	= 30, .ohm	= 79222 },
156	{ .temp_c	= 35, .ohm	= 63167 },
157	{ .temp_c	= 40, .ohm	= 50677 },
158	{ .temp_c	= 45, .ohm	= 40904 },
159	{ .temp_c	= 50, .ohm	= 33195 },
160	{ .temp_c	= 55, .ohm	= 27091 },
161	{ .temp_c	= 60, .ohm	= 22224 },
162	{ .temp_c	= 65, .ohm	= 18323 },
163	{ .temp_c	= 70, .ohm	= 15184 },
164	{ .temp_c	= 75, .ohm	= 12635 },
165	{ .temp_c	= 80, .ohm	= 10566 },
166	{ .temp_c	= 85, .ohm	= 8873 },
167	{ .temp_c	= 90, .ohm	= 7481 },
168	{ .temp_c	= 95, .ohm	= 6337 },
169	{ .temp_c	= 100, .ohm	= 5384 },
170	{ .temp_c	= 105, .ohm	= 4594 },
171	{ .temp_c	= 110, .ohm	= 3934 },
172	{ .temp_c	= 115, .ohm	= 3380 },
173	{ .temp_c	= 120, .ohm	= 2916 },
174	{ .temp_c	= 125, .ohm	= 2522 },
175};
176
177static const struct ntc_compensation ncpXXxh103[] = {
178	{ .temp_c	= -40, .ohm	= 247565 },
179	{ .temp_c	= -35, .ohm	= 181742 },
180	{ .temp_c	= -30, .ohm	= 135128 },
181	{ .temp_c	= -25, .ohm	= 101678 },
182	{ .temp_c	= -20, .ohm	= 77373 },
183	{ .temp_c	= -15, .ohm	= 59504 },
184	{ .temp_c	= -10, .ohm	= 46222 },
185	{ .temp_c	= -5, .ohm	= 36244 },
186	{ .temp_c	= 0, .ohm	= 28674 },
187	{ .temp_c	= 5, .ohm	= 22878 },
188	{ .temp_c	= 10, .ohm	= 18399 },
189	{ .temp_c	= 15, .ohm	= 14910 },
190	{ .temp_c	= 20, .ohm	= 12169 },
191	{ .temp_c	= 25, .ohm	= 10000 },
192	{ .temp_c	= 30, .ohm	= 8271 },
193	{ .temp_c	= 35, .ohm	= 6883 },
194	{ .temp_c	= 40, .ohm	= 5762 },
195	{ .temp_c	= 45, .ohm	= 4851 },
196	{ .temp_c	= 50, .ohm	= 4105 },
197	{ .temp_c	= 55, .ohm	= 3492 },
198	{ .temp_c	= 60, .ohm	= 2985 },
199	{ .temp_c	= 65, .ohm	= 2563 },
200	{ .temp_c	= 70, .ohm	= 2211 },
201	{ .temp_c	= 75, .ohm	= 1915 },
202	{ .temp_c	= 80, .ohm	= 1666 },
203	{ .temp_c	= 85, .ohm	= 1454 },
204	{ .temp_c	= 90, .ohm	= 1275 },
205	{ .temp_c	= 95, .ohm	= 1121 },
206	{ .temp_c	= 100, .ohm	= 990 },
207	{ .temp_c	= 105, .ohm	= 876 },
208	{ .temp_c	= 110, .ohm	= 779 },
209	{ .temp_c	= 115, .ohm	= 694 },
210	{ .temp_c	= 120, .ohm	= 620 },
211	{ .temp_c	= 125, .ohm	= 556 },
212};
213
214/*
215 * The following compensation table is from the specification of EPCOS NTC
216 * Thermistors Datasheet
217 */
218static const struct ntc_compensation b57330v2103[] = {
219	{ .temp_c	= -40, .ohm	= 190030 },
220	{ .temp_c	= -35, .ohm	= 145360 },
221	{ .temp_c	= -30, .ohm	= 112060 },
222	{ .temp_c	= -25, .ohm	= 87041 },
223	{ .temp_c	= -20, .ohm	= 68104 },
224	{ .temp_c	= -15, .ohm	= 53665 },
225	{ .temp_c	= -10, .ohm	= 42576 },
226	{ .temp_c	= -5, .ohm	= 34001 },
227	{ .temp_c	= 0, .ohm	= 27326 },
228	{ .temp_c	= 5, .ohm	= 22096 },
229	{ .temp_c	= 10, .ohm	= 17973 },
230	{ .temp_c	= 15, .ohm	= 14703 },
231	{ .temp_c	= 20, .ohm	= 12090 },
232	{ .temp_c	= 25, .ohm	= 10000 },
233	{ .temp_c	= 30, .ohm	= 8311 },
234	{ .temp_c	= 35, .ohm	= 6941 },
235	{ .temp_c	= 40, .ohm	= 5825 },
236	{ .temp_c	= 45, .ohm	= 4911 },
237	{ .temp_c	= 50, .ohm	= 4158 },
238	{ .temp_c	= 55, .ohm	= 3536 },
239	{ .temp_c	= 60, .ohm	= 3019 },
240	{ .temp_c	= 65, .ohm	= 2588 },
241	{ .temp_c	= 70, .ohm	= 2227 },
242	{ .temp_c	= 75, .ohm	= 1924 },
243	{ .temp_c	= 80, .ohm	= 1668 },
244	{ .temp_c	= 85, .ohm	= 1451 },
245	{ .temp_c	= 90, .ohm	= 1266 },
246	{ .temp_c	= 95, .ohm	= 1108 },
247	{ .temp_c	= 100, .ohm	= 973 },
248	{ .temp_c	= 105, .ohm	= 857 },
249	{ .temp_c	= 110, .ohm	= 757 },
250	{ .temp_c	= 115, .ohm	= 671 },
251	{ .temp_c	= 120, .ohm	= 596 },
252	{ .temp_c	= 125, .ohm	= 531 },
253};
254
255struct ntc_data {
256	struct device *hwmon_dev;
257	struct ntc_thermistor_platform_data *pdata;
258	const struct ntc_compensation *comp;
259	struct device *dev;
260	int n_comp;
261	char name[PLATFORM_NAME_SIZE];
262	struct thermal_zone_device *tz;
263};
264
265#if defined(CONFIG_OF) && IS_ENABLED(CONFIG_IIO)
266static int ntc_adc_iio_read(struct ntc_thermistor_platform_data *pdata)
267{
268	struct iio_channel *channel = pdata->chan;
269	int raw, uv, ret;
270
271	ret = iio_read_channel_raw(channel, &raw);
272	if (ret < 0) {
273		pr_err("read channel() error: %d\n", ret);
274		return ret;
275	}
276
277	ret = iio_convert_raw_to_processed(channel, raw, &uv, 1000);
278	if (ret < 0) {
279		/* Assume 12 bit ADC with vref at pullup_uv */
280		uv = (pdata->pullup_uv * (s64)raw) >> 12;
281	}
282
283	return uv;
284}
285
286static const struct of_device_id ntc_match[] = {
287	{ .compatible = "murata,ncp15wb473",
288		.data = &ntc_thermistor_id[0] },
289	{ .compatible = "murata,ncp18wb473",
290		.data = &ntc_thermistor_id[1] },
291	{ .compatible = "murata,ncp21wb473",
292		.data = &ntc_thermistor_id[2] },
293	{ .compatible = "murata,ncp03wb473",
294		.data = &ntc_thermistor_id[3] },
295	{ .compatible = "murata,ncp15wl333",
296		.data = &ntc_thermistor_id[4] },
297	{ .compatible = "epcos,b57330v2103",
298		.data = &ntc_thermistor_id[5]},
299	{ .compatible = "murata,ncp03wf104",
300		.data = &ntc_thermistor_id[6] },
301	{ .compatible = "murata,ncp15xh103",
302		.data = &ntc_thermistor_id[7] },
303
304	/* Usage of vendor name "ntc" is deprecated */
305	{ .compatible = "ntc,ncp15wb473",
306		.data = &ntc_thermistor_id[0] },
307	{ .compatible = "ntc,ncp18wb473",
308		.data = &ntc_thermistor_id[1] },
309	{ .compatible = "ntc,ncp21wb473",
310		.data = &ntc_thermistor_id[2] },
311	{ .compatible = "ntc,ncp03wb473",
312		.data = &ntc_thermistor_id[3] },
313	{ .compatible = "ntc,ncp15wl333",
314		.data = &ntc_thermistor_id[4] },
315	{ },
316};
317MODULE_DEVICE_TABLE(of, ntc_match);
318
319static struct ntc_thermistor_platform_data *
320ntc_thermistor_parse_dt(struct platform_device *pdev)
321{
322	struct iio_channel *chan;
323	enum iio_chan_type type;
324	struct device_node *np = pdev->dev.of_node;
325	struct ntc_thermistor_platform_data *pdata;
326	int ret;
327
328	if (!np)
329		return NULL;
330
331	pdata = devm_kzalloc(&pdev->dev, sizeof(*pdata), GFP_KERNEL);
332	if (!pdata)
333		return ERR_PTR(-ENOMEM);
334
335	chan = iio_channel_get(&pdev->dev, NULL);
336	if (IS_ERR(chan))
337		return ERR_CAST(chan);
338
339	ret = iio_get_channel_type(chan, &type);
340	if (ret < 0)
341		return ERR_PTR(ret);
342
343	if (type != IIO_VOLTAGE)
344		return ERR_PTR(-EINVAL);
345
346	if (of_property_read_u32(np, "pullup-uv", &pdata->pullup_uv))
347		return ERR_PTR(-ENODEV);
348	if (of_property_read_u32(np, "pullup-ohm", &pdata->pullup_ohm))
349		return ERR_PTR(-ENODEV);
350	if (of_property_read_u32(np, "pulldown-ohm", &pdata->pulldown_ohm))
351		return ERR_PTR(-ENODEV);
352
353	if (of_find_property(np, "connected-positive", NULL))
354		pdata->connect = NTC_CONNECTED_POSITIVE;
355	else /* status change should be possible if not always on. */
356		pdata->connect = NTC_CONNECTED_GROUND;
357
358	pdata->chan = chan;
359	pdata->read_uv = ntc_adc_iio_read;
360
361	return pdata;
362}
363static void ntc_iio_channel_release(struct ntc_thermistor_platform_data *pdata)
364{
365	if (pdata->chan)
366		iio_channel_release(pdata->chan);
367}
368#else
369static struct ntc_thermistor_platform_data *
370ntc_thermistor_parse_dt(struct platform_device *pdev)
371{
372	return NULL;
373}
374
375#define ntc_match	NULL
376
377static void ntc_iio_channel_release(struct ntc_thermistor_platform_data *pdata)
378{ }
379#endif
380
381static inline u64 div64_u64_safe(u64 dividend, u64 divisor)
382{
383	if (divisor == 0 && dividend == 0)
384		return 0;
385	if (divisor == 0)
386		return UINT_MAX;
387	return div64_u64(dividend, divisor);
388}
389
390static int get_ohm_of_thermistor(struct ntc_data *data, unsigned int uv)
 
391{
392	struct ntc_thermistor_platform_data *pdata = data->pdata;
393	u32 puv = pdata->pullup_uv;
394	u64 n, puo, pdo;
395	puo = pdata->pullup_ohm;
396	pdo = pdata->pulldown_ohm;
397
398	if (uv == 0)
399		return (pdata->connect == NTC_CONNECTED_POSITIVE) ?
400			INT_MAX : 0;
401	if (uv >= puv)
 
 
 
402		return (pdata->connect == NTC_CONNECTED_POSITIVE) ?
403			0 : INT_MAX;
404
405	if (pdata->connect == NTC_CONNECTED_POSITIVE && puo == 0)
406		n = div_u64(pdo * (puv - uv), uv);
407	else if (pdata->connect == NTC_CONNECTED_GROUND && pdo == 0)
408		n = div_u64(puo * uv, puv - uv);
409	else if (pdata->connect == NTC_CONNECTED_POSITIVE)
410		n = div64_u64_safe(pdo * puo * (puv - uv),
411				puo * uv - pdo * (puv - uv));
412	else
413		n = div64_u64_safe(pdo * puo * uv, pdo * (puv - uv) - puo * uv);
414
415	if (n > INT_MAX)
416		n = INT_MAX;
417	return n;
418}
419
420static void lookup_comp(struct ntc_data *data, unsigned int ohm,
421			int *i_low, int *i_high)
422{
423	int start, end, mid;
424
425	/*
426	 * Handle special cases: Resistance is higher than or equal to
427	 * resistance in first table entry, or resistance is lower or equal
428	 * to resistance in last table entry.
429	 * In these cases, return i_low == i_high, either pointing to the
430	 * beginning or to the end of the table depending on the condition.
431	 */
432	if (ohm >= data->comp[0].ohm) {
433		*i_low = 0;
434		*i_high = 0;
435		return;
436	}
437	if (ohm <= data->comp[data->n_comp - 1].ohm) {
438		*i_low = data->n_comp - 1;
439		*i_high = data->n_comp - 1;
440		return;
441	}
442
443	/* Do a binary search on compensation table */
444	start = 0;
445	end = data->n_comp;
446	while (start < end) {
 
447		mid = start + (end - start) / 2;
448		/*
449		 * start <= mid < end
450		 * data->comp[start].ohm > ohm >= data->comp[end].ohm
451		 *
452		 * We could check for "ohm == data->comp[mid].ohm" here, but
453		 * that is a quite unlikely condition, and we would have to
454		 * check again after updating start. Check it at the end instead
455		 * for simplicity.
456		 */
457		if (ohm >= data->comp[mid].ohm) {
458			end = mid;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
459		} else {
460			start = mid + 1;
461			/*
462			 * ohm >= data->comp[start].ohm might be true here,
463			 * since we set start to mid + 1. In that case, we are
464			 * done. We could keep going, but the condition is quite
465			 * likely to occur, so it is worth checking for it.
466			 */
467			if (ohm >= data->comp[start].ohm)
468				end = start;
469		}
470		/*
471		 * start <= end
472		 * data->comp[start].ohm >= ohm >= data->comp[end].ohm
473		 */
474	}
475	/*
476	 * start == end
477	 * ohm >= data->comp[end].ohm
478	 */
479	*i_low = end;
480	if (ohm == data->comp[end].ohm)
481		*i_high = end;
482	else
483		*i_high = end - 1;
484}
485
486static int get_temp_mc(struct ntc_data *data, unsigned int ohm)
487{
488	int low, high;
489	int temp;
490
491	lookup_comp(data, ohm, &low, &high);
492	if (low == high) {
493		/* Unable to use linear approximation */
494		temp = data->comp[low].temp_c * 1000;
 
 
 
 
 
495	} else {
496		temp = data->comp[low].temp_c * 1000 +
497			((data->comp[high].temp_c - data->comp[low].temp_c) *
498			 1000 * ((int)ohm - (int)data->comp[low].ohm)) /
499			((int)data->comp[high].ohm - (int)data->comp[low].ohm);
500	}
501	return temp;
 
502}
503
504static int ntc_thermistor_get_ohm(struct ntc_data *data)
505{
506	int read_uv;
 
 
507
508	if (data->pdata->read_ohm)
509		return data->pdata->read_ohm();
 
 
 
 
510
511	if (data->pdata->read_uv) {
512		read_uv = data->pdata->read_uv(data->pdata);
513		if (read_uv < 0)
514			return read_uv;
515		return get_ohm_of_thermistor(data, read_uv);
516	}
517	return -EINVAL;
518}
519
520static int ntc_read_temp(void *dev, int *temp)
521{
522	struct ntc_data *data = dev_get_drvdata(dev);
523	int ohm;
524
525	ohm = ntc_thermistor_get_ohm(data);
526	if (ohm < 0)
527		return ohm;
528
529	*temp = get_temp_mc(data, ohm);
530
531	return 0;
532}
533
534static ssize_t ntc_show_name(struct device *dev,
535		struct device_attribute *attr, char *buf)
536{
537	struct ntc_data *data = dev_get_drvdata(dev);
538
539	return sprintf(buf, "%s\n", data->name);
540}
541
542static ssize_t ntc_show_type(struct device *dev,
543		struct device_attribute *attr, char *buf)
544{
545	return sprintf(buf, "4\n");
546}
547
548static ssize_t ntc_show_temp(struct device *dev,
549		struct device_attribute *attr, char *buf)
550{
551	struct ntc_data *data = dev_get_drvdata(dev);
552	int ohm;
553
554	ohm = ntc_thermistor_get_ohm(data);
555	if (ohm < 0)
556		return ohm;
557
558	return sprintf(buf, "%d\n", get_temp_mc(data, ohm));
559}
560
561static SENSOR_DEVICE_ATTR(temp1_type, S_IRUGO, ntc_show_type, NULL, 0);
562static SENSOR_DEVICE_ATTR(temp1_input, S_IRUGO, ntc_show_temp, NULL, 0);
563static DEVICE_ATTR(name, S_IRUGO, ntc_show_name, NULL);
564
565static struct attribute *ntc_attributes[] = {
566	&dev_attr_name.attr,
567	&sensor_dev_attr_temp1_type.dev_attr.attr,
568	&sensor_dev_attr_temp1_input.dev_attr.attr,
569	NULL,
570};
571
572static const struct attribute_group ntc_attr_group = {
573	.attrs = ntc_attributes,
574};
575
576static const struct thermal_zone_of_device_ops ntc_of_thermal_ops = {
577	.get_temp = ntc_read_temp,
578};
579
580static int ntc_thermistor_probe(struct platform_device *pdev)
581{
582	const struct of_device_id *of_id =
583			of_match_device(of_match_ptr(ntc_match), &pdev->dev);
584	const struct platform_device_id *pdev_id;
585	struct ntc_thermistor_platform_data *pdata;
586	struct ntc_data *data;
587	int ret;
588
589	pdata = ntc_thermistor_parse_dt(pdev);
590	if (IS_ERR(pdata))
591		return PTR_ERR(pdata);
592	else if (pdata == NULL)
593		pdata = dev_get_platdata(&pdev->dev);
594
595	if (!pdata) {
596		dev_err(&pdev->dev, "No platform init data supplied.\n");
597		return -ENODEV;
598	}
599
600	/* Either one of the two is required. */
601	if (!pdata->read_uv && !pdata->read_ohm) {
602		dev_err(&pdev->dev,
603			"Both read_uv and read_ohm missing. Need either one of the two.\n");
604		return -EINVAL;
605	}
606
607	if (pdata->read_uv && pdata->read_ohm) {
608		dev_warn(&pdev->dev,
609			 "Only one of read_uv and read_ohm is needed; ignoring read_uv.\n");
610		pdata->read_uv = NULL;
611	}
612
613	if (pdata->read_uv && (pdata->pullup_uv == 0 ||
614				(pdata->pullup_ohm == 0 && pdata->connect ==
615				 NTC_CONNECTED_GROUND) ||
616				(pdata->pulldown_ohm == 0 && pdata->connect ==
617				 NTC_CONNECTED_POSITIVE) ||
618				(pdata->connect != NTC_CONNECTED_POSITIVE &&
619				 pdata->connect != NTC_CONNECTED_GROUND))) {
620		dev_err(&pdev->dev,
621			"Required data to use read_uv not supplied.\n");
622		return -EINVAL;
623	}
624
625	data = devm_kzalloc(&pdev->dev, sizeof(struct ntc_data), GFP_KERNEL);
626	if (!data)
627		return -ENOMEM;
628
629	pdev_id = of_id ? of_id->data : platform_get_device_id(pdev);
630
631	data->dev = &pdev->dev;
632	data->pdata = pdata;
633	strlcpy(data->name, pdev_id->name, sizeof(data->name));
634
635	switch (pdev_id->driver_data) {
636	case TYPE_NCPXXWB473:
637		data->comp = ncpXXwb473;
638		data->n_comp = ARRAY_SIZE(ncpXXwb473);
639		break;
640	case TYPE_NCPXXWL333:
641		data->comp = ncpXXwl333;
642		data->n_comp = ARRAY_SIZE(ncpXXwl333);
643		break;
644	case TYPE_B57330V2103:
645		data->comp = b57330v2103;
646		data->n_comp = ARRAY_SIZE(b57330v2103);
647		break;
648	case TYPE_NCPXXWF104:
649		data->comp = ncpXXwf104;
650		data->n_comp = ARRAY_SIZE(ncpXXwf104);
651		break;
652	case TYPE_NCPXXXH103:
653		data->comp = ncpXXxh103;
654		data->n_comp = ARRAY_SIZE(ncpXXxh103);
655		break;
656	default:
657		dev_err(&pdev->dev, "Unknown device type: %lu(%s)\n",
658				pdev_id->driver_data, pdev_id->name);
659		return -EINVAL;
 
 
660	}
661
662	platform_set_drvdata(pdev, data);
663
664	ret = sysfs_create_group(&data->dev->kobj, &ntc_attr_group);
665	if (ret) {
666		dev_err(data->dev, "unable to create sysfs files\n");
667		return ret;
668	}
669
670	data->hwmon_dev = hwmon_device_register(data->dev);
671	if (IS_ERR(data->hwmon_dev)) {
672		dev_err(data->dev, "unable to register as hwmon device.\n");
673		ret = PTR_ERR(data->hwmon_dev);
674		goto err_after_sysfs;
675	}
676
677	dev_info(&pdev->dev, "Thermistor type: %s successfully probed.\n",
678								pdev_id->name);
679
680	data->tz = thermal_zone_of_sensor_register(data->dev, 0, data->dev,
681						   &ntc_of_thermal_ops);
682	if (IS_ERR(data->tz)) {
683		dev_dbg(&pdev->dev, "Failed to register to thermal fw.\n");
684		data->tz = NULL;
685	}
686
687	return 0;
688err_after_sysfs:
689	sysfs_remove_group(&data->dev->kobj, &ntc_attr_group);
690	ntc_iio_channel_release(pdata);
 
691	return ret;
692}
693
694static int ntc_thermistor_remove(struct platform_device *pdev)
695{
696	struct ntc_data *data = platform_get_drvdata(pdev);
697	struct ntc_thermistor_platform_data *pdata = data->pdata;
698
699	hwmon_device_unregister(data->hwmon_dev);
700	sysfs_remove_group(&data->dev->kobj, &ntc_attr_group);
701	ntc_iio_channel_release(pdata);
702
703	thermal_zone_of_sensor_unregister(data->dev, data->tz);
704
705	return 0;
706}
707
 
 
 
 
 
 
 
 
 
708static struct platform_driver ntc_thermistor_driver = {
709	.driver = {
710		.name = "ntc-thermistor",
711		.of_match_table = of_match_ptr(ntc_match),
712	},
713	.probe = ntc_thermistor_probe,
714	.remove = ntc_thermistor_remove,
715	.id_table = ntc_thermistor_id,
716};
717
718module_platform_driver(ntc_thermistor_driver);
 
 
 
 
 
 
 
 
 
 
 
 
719
720MODULE_DESCRIPTION("NTC Thermistor Driver");
721MODULE_AUTHOR("MyungJoo Ham <myungjoo.ham@samsung.com>");
722MODULE_LICENSE("GPL");
723MODULE_ALIAS("platform:ntc-thermistor");