blob: 7e20beb8b11f30765e5749a66b861e07f9b06d44 [file] [log] [blame]
b.liue9582032025-04-17 19:18:16 +08001// SPDX-License-Identifier: GPL-2.0-or-later
2/*
3 * ntc_thermistor.c - NTC Thermistors
4 *
5 * Copyright (C) 2010 Samsung Electronics
6 * MyungJoo Ham <myungjoo.ham@samsung.com>
7 */
8
9#include <linux/slab.h>
10#include <linux/module.h>
11#include <linux/pm_runtime.h>
12#include <linux/math64.h>
13#include <linux/platform_device.h>
14#include <linux/err.h>
15#include <linux/of.h>
16#include <linux/of_device.h>
17
18#include <linux/platform_data/ntc_thermistor.h>
19
20#include <linux/iio/iio.h>
21#include <linux/iio/machine.h>
22#include <linux/iio/driver.h>
23#include <linux/iio/consumer.h>
24
25#include <linux/hwmon.h>
26
27struct ntc_compensation {
28 int temp_c;
29 unsigned int ohm;
30};
31
32/*
33 * Used as index in a zero-terminated array, holes not allowed so
34 * that NTC_LAST is the first empty array entry.
35 */
36enum {
37 NTC_B57330V2103,
38 NTC_B57891S0103,
39 NTC_NCP03WB473,
40 NTC_NCP03WF104,
41 NTC_NCP15WB473,
42 NTC_NCP15WL333,
43 NTC_NCP15XH103,
44 NTC_NCP18WB473,
45 NTC_NCP21WB473,
46 NTC_LAST,
47};
48
49static const struct platform_device_id ntc_thermistor_id[] = {
50 [NTC_B57330V2103] = { "b57330v2103", TYPE_B57330V2103 },
51 [NTC_B57891S0103] = { "b57891s0103", TYPE_B57891S0103 },
52 [NTC_NCP03WB473] = { "ncp03wb473", TYPE_NCPXXWB473 },
53 [NTC_NCP03WF104] = { "ncp03wf104", TYPE_NCPXXWF104 },
54 [NTC_NCP15WB473] = { "ncp15wb473", TYPE_NCPXXWB473 },
55 [NTC_NCP15WL333] = { "ncp15wl333", TYPE_NCPXXWL333 },
56 [NTC_NCP15XH103] = { "ncp15xh103", TYPE_NCPXXXH103 },
57 [NTC_NCP18WB473] = { "ncp18wb473", TYPE_NCPXXWB473 },
58 [NTC_NCP21WB473] = { "ncp21wb473", TYPE_NCPXXWB473 },
59 [NTC_LAST] = { },
60};
61MODULE_DEVICE_TABLE(platform, ntc_thermistor_id);
62
63/*
64 * A compensation table should be sorted by the values of .ohm
65 * in descending order.
66 * The following compensation tables are from the specification of Murata NTC
67 * Thermistors Datasheet
68 */
69static const struct ntc_compensation ncpXXwb473[] = {
70 { .temp_c = -40, .ohm = 1747920 },
71 { .temp_c = -35, .ohm = 1245428 },
72 { .temp_c = -30, .ohm = 898485 },
73 { .temp_c = -25, .ohm = 655802 },
74 { .temp_c = -20, .ohm = 483954 },
75 { .temp_c = -15, .ohm = 360850 },
76 { .temp_c = -10, .ohm = 271697 },
77 { .temp_c = -5, .ohm = 206463 },
78 { .temp_c = 0, .ohm = 158214 },
79 { .temp_c = 5, .ohm = 122259 },
80 { .temp_c = 10, .ohm = 95227 },
81 { .temp_c = 15, .ohm = 74730 },
82 { .temp_c = 20, .ohm = 59065 },
83 { .temp_c = 25, .ohm = 47000 },
84 { .temp_c = 30, .ohm = 37643 },
85 { .temp_c = 35, .ohm = 30334 },
86 { .temp_c = 40, .ohm = 24591 },
87 { .temp_c = 45, .ohm = 20048 },
88 { .temp_c = 50, .ohm = 16433 },
89 { .temp_c = 55, .ohm = 13539 },
90 { .temp_c = 60, .ohm = 11209 },
91 { .temp_c = 65, .ohm = 9328 },
92 { .temp_c = 70, .ohm = 7798 },
93 { .temp_c = 75, .ohm = 6544 },
94 { .temp_c = 80, .ohm = 5518 },
95 { .temp_c = 85, .ohm = 4674 },
96 { .temp_c = 90, .ohm = 3972 },
97 { .temp_c = 95, .ohm = 3388 },
98 { .temp_c = 100, .ohm = 2902 },
99 { .temp_c = 105, .ohm = 2494 },
100 { .temp_c = 110, .ohm = 2150 },
101 { .temp_c = 115, .ohm = 1860 },
102 { .temp_c = 120, .ohm = 1615 },
103 { .temp_c = 125, .ohm = 1406 },
104};
105static const struct ntc_compensation ncpXXwl333[] = {
106 { .temp_c = -40, .ohm = 1610154 },
107 { .temp_c = -35, .ohm = 1130850 },
108 { .temp_c = -30, .ohm = 802609 },
109 { .temp_c = -25, .ohm = 575385 },
110 { .temp_c = -20, .ohm = 416464 },
111 { .temp_c = -15, .ohm = 304219 },
112 { .temp_c = -10, .ohm = 224193 },
113 { .temp_c = -5, .ohm = 166623 },
114 { .temp_c = 0, .ohm = 124850 },
115 { .temp_c = 5, .ohm = 94287 },
116 { .temp_c = 10, .ohm = 71747 },
117 { .temp_c = 15, .ohm = 54996 },
118 { .temp_c = 20, .ohm = 42455 },
119 { .temp_c = 25, .ohm = 33000 },
120 { .temp_c = 30, .ohm = 25822 },
121 { .temp_c = 35, .ohm = 20335 },
122 { .temp_c = 40, .ohm = 16115 },
123 { .temp_c = 45, .ohm = 12849 },
124 { .temp_c = 50, .ohm = 10306 },
125 { .temp_c = 55, .ohm = 8314 },
126 { .temp_c = 60, .ohm = 6746 },
127 { .temp_c = 65, .ohm = 5503 },
128 { .temp_c = 70, .ohm = 4513 },
129 { .temp_c = 75, .ohm = 3721 },
130 { .temp_c = 80, .ohm = 3084 },
131 { .temp_c = 85, .ohm = 2569 },
132 { .temp_c = 90, .ohm = 2151 },
133 { .temp_c = 95, .ohm = 1809 },
134 { .temp_c = 100, .ohm = 1529 },
135 { .temp_c = 105, .ohm = 1299 },
136 { .temp_c = 110, .ohm = 1108 },
137 { .temp_c = 115, .ohm = 949 },
138 { .temp_c = 120, .ohm = 817 },
139 { .temp_c = 125, .ohm = 707 },
140};
141
142static const struct ntc_compensation ncpXXwf104[] = {
143 { .temp_c = -40, .ohm = 4397119 },
144 { .temp_c = -35, .ohm = 3088599 },
145 { .temp_c = -30, .ohm = 2197225 },
146 { .temp_c = -25, .ohm = 1581881 },
147 { .temp_c = -20, .ohm = 1151037 },
148 { .temp_c = -15, .ohm = 846579 },
149 { .temp_c = -10, .ohm = 628988 },
150 { .temp_c = -5, .ohm = 471632 },
151 { .temp_c = 0, .ohm = 357012 },
152 { .temp_c = 5, .ohm = 272500 },
153 { .temp_c = 10, .ohm = 209710 },
154 { .temp_c = 15, .ohm = 162651 },
155 { .temp_c = 20, .ohm = 127080 },
156 { .temp_c = 25, .ohm = 100000 },
157 { .temp_c = 30, .ohm = 79222 },
158 { .temp_c = 35, .ohm = 63167 },
159 { .temp_c = 40, .ohm = 50677 },
160 { .temp_c = 45, .ohm = 40904 },
161 { .temp_c = 50, .ohm = 33195 },
162 { .temp_c = 55, .ohm = 27091 },
163 { .temp_c = 60, .ohm = 22224 },
164 { .temp_c = 65, .ohm = 18323 },
165 { .temp_c = 70, .ohm = 15184 },
166 { .temp_c = 75, .ohm = 12635 },
167 { .temp_c = 80, .ohm = 10566 },
168 { .temp_c = 85, .ohm = 8873 },
169 { .temp_c = 90, .ohm = 7481 },
170 { .temp_c = 95, .ohm = 6337 },
171 { .temp_c = 100, .ohm = 5384 },
172 { .temp_c = 105, .ohm = 4594 },
173 { .temp_c = 110, .ohm = 3934 },
174 { .temp_c = 115, .ohm = 3380 },
175 { .temp_c = 120, .ohm = 2916 },
176 { .temp_c = 125, .ohm = 2522 },
177};
178
179static const struct ntc_compensation ncpXXxh103[] = {
180 { .temp_c = -40, .ohm = 247565 },
181 { .temp_c = -35, .ohm = 181742 },
182 { .temp_c = -30, .ohm = 135128 },
183 { .temp_c = -25, .ohm = 101678 },
184 { .temp_c = -20, .ohm = 77373 },
185 { .temp_c = -15, .ohm = 59504 },
186 { .temp_c = -10, .ohm = 46222 },
187 { .temp_c = -5, .ohm = 36244 },
188 { .temp_c = 0, .ohm = 28674 },
189 { .temp_c = 5, .ohm = 22878 },
190 { .temp_c = 10, .ohm = 18399 },
191 { .temp_c = 15, .ohm = 14910 },
192 { .temp_c = 20, .ohm = 12169 },
193 { .temp_c = 25, .ohm = 10000 },
194 { .temp_c = 30, .ohm = 8271 },
195 { .temp_c = 35, .ohm = 6883 },
196 { .temp_c = 40, .ohm = 5762 },
197 { .temp_c = 45, .ohm = 4851 },
198 { .temp_c = 50, .ohm = 4105 },
199 { .temp_c = 55, .ohm = 3492 },
200 { .temp_c = 60, .ohm = 2985 },
201 { .temp_c = 65, .ohm = 2563 },
202 { .temp_c = 70, .ohm = 2211 },
203 { .temp_c = 75, .ohm = 1915 },
204 { .temp_c = 80, .ohm = 1666 },
205 { .temp_c = 85, .ohm = 1454 },
206 { .temp_c = 90, .ohm = 1275 },
207 { .temp_c = 95, .ohm = 1121 },
208 { .temp_c = 100, .ohm = 990 },
209 { .temp_c = 105, .ohm = 876 },
210 { .temp_c = 110, .ohm = 779 },
211 { .temp_c = 115, .ohm = 694 },
212 { .temp_c = 120, .ohm = 620 },
213 { .temp_c = 125, .ohm = 556 },
214};
215
216/*
217 * The following compensation tables are from the specifications in EPCOS NTC
218 * Thermistors Datasheets
219 */
220static const struct ntc_compensation b57330v2103[] = {
221 { .temp_c = -40, .ohm = 190030 },
222 { .temp_c = -35, .ohm = 145360 },
223 { .temp_c = -30, .ohm = 112060 },
224 { .temp_c = -25, .ohm = 87041 },
225 { .temp_c = -20, .ohm = 68104 },
226 { .temp_c = -15, .ohm = 53665 },
227 { .temp_c = -10, .ohm = 42576 },
228 { .temp_c = -5, .ohm = 34001 },
229 { .temp_c = 0, .ohm = 27326 },
230 { .temp_c = 5, .ohm = 22096 },
231 { .temp_c = 10, .ohm = 17973 },
232 { .temp_c = 15, .ohm = 14703 },
233 { .temp_c = 20, .ohm = 12090 },
234 { .temp_c = 25, .ohm = 10000 },
235 { .temp_c = 30, .ohm = 8311 },
236 { .temp_c = 35, .ohm = 6941 },
237 { .temp_c = 40, .ohm = 5825 },
238 { .temp_c = 45, .ohm = 4911 },
239 { .temp_c = 50, .ohm = 4158 },
240 { .temp_c = 55, .ohm = 3536 },
241 { .temp_c = 60, .ohm = 3019 },
242 { .temp_c = 65, .ohm = 2588 },
243 { .temp_c = 70, .ohm = 2227 },
244 { .temp_c = 75, .ohm = 1924 },
245 { .temp_c = 80, .ohm = 1668 },
246 { .temp_c = 85, .ohm = 1451 },
247 { .temp_c = 90, .ohm = 1266 },
248 { .temp_c = 95, .ohm = 1108 },
249 { .temp_c = 100, .ohm = 973 },
250 { .temp_c = 105, .ohm = 857 },
251 { .temp_c = 110, .ohm = 757 },
252 { .temp_c = 115, .ohm = 671 },
253 { .temp_c = 120, .ohm = 596 },
254 { .temp_c = 125, .ohm = 531 },
255};
256
257static const struct ntc_compensation b57891s0103[] = {
258 { .temp_c = -55.0, .ohm = 878900 },
259 { .temp_c = -50.0, .ohm = 617590 },
260 { .temp_c = -45.0, .ohm = 439340 },
261 { .temp_c = -40.0, .ohm = 316180 },
262 { .temp_c = -35.0, .ohm = 230060 },
263 { .temp_c = -30.0, .ohm = 169150 },
264 { .temp_c = -25.0, .ohm = 125550 },
265 { .temp_c = -20.0, .ohm = 94143 },
266 { .temp_c = -15.0, .ohm = 71172 },
267 { .temp_c = -10.0, .ohm = 54308 },
268 { .temp_c = -5.0, .ohm = 41505 },
269 { .temp_c = 0.0, .ohm = 32014 },
270 { .temp_c = 5.0, .ohm = 25011 },
271 { .temp_c = 10.0, .ohm = 19691 },
272 { .temp_c = 15.0, .ohm = 15618 },
273 { .temp_c = 20.0, .ohm = 12474 },
274 { .temp_c = 25.0, .ohm = 10000 },
275 { .temp_c = 30.0, .ohm = 8080 },
276 { .temp_c = 35.0, .ohm = 6569 },
277 { .temp_c = 40.0, .ohm = 5372 },
278 { .temp_c = 45.0, .ohm = 4424 },
279 { .temp_c = 50.0, .ohm = 3661 },
280 { .temp_c = 55.0, .ohm = 3039 },
281 { .temp_c = 60.0, .ohm = 2536 },
282 { .temp_c = 65.0, .ohm = 2128 },
283 { .temp_c = 70.0, .ohm = 1794 },
284 { .temp_c = 75.0, .ohm = 1518 },
285 { .temp_c = 80.0, .ohm = 1290 },
286 { .temp_c = 85.0, .ohm = 1100 },
287 { .temp_c = 90.0, .ohm = 942 },
288 { .temp_c = 95.0, .ohm = 809 },
289 { .temp_c = 100.0, .ohm = 697 },
290 { .temp_c = 105.0, .ohm = 604 },
291 { .temp_c = 110.0, .ohm = 525 },
292 { .temp_c = 115.0, .ohm = 457 },
293 { .temp_c = 120.0, .ohm = 400 },
294 { .temp_c = 125.0, .ohm = 351 },
295 { .temp_c = 130.0, .ohm = 308 },
296 { .temp_c = 135.0, .ohm = 272 },
297 { .temp_c = 140.0, .ohm = 240 },
298 { .temp_c = 145.0, .ohm = 213 },
299 { .temp_c = 150.0, .ohm = 189 },
300 { .temp_c = 155.0, .ohm = 168 },
301};
302
303struct ntc_type {
304 const struct ntc_compensation *comp;
305 int n_comp;
306};
307
308#define NTC_TYPE(ntc, compensation) \
309[(ntc)] = { .comp = (compensation), .n_comp = ARRAY_SIZE(compensation) }
310
311static const struct ntc_type ntc_type[] = {
312 NTC_TYPE(TYPE_B57330V2103, b57330v2103),
313 NTC_TYPE(TYPE_B57891S0103, b57891s0103),
314 NTC_TYPE(TYPE_NCPXXWB473, ncpXXwb473),
315 NTC_TYPE(TYPE_NCPXXWF104, ncpXXwf104),
316 NTC_TYPE(TYPE_NCPXXWL333, ncpXXwl333),
317 NTC_TYPE(TYPE_NCPXXXH103, ncpXXxh103),
318};
319
320struct ntc_data {
321 struct ntc_thermistor_platform_data *pdata;
322 const struct ntc_compensation *comp;
323 int n_comp;
324};
325
326#if defined(CONFIG_OF) && IS_ENABLED(CONFIG_IIO)
327static int ntc_adc_iio_read(struct ntc_thermistor_platform_data *pdata)
328{
329 struct iio_channel *channel = pdata->chan;
330 int raw, uv, ret;
331
332 ret = iio_read_channel_raw(channel, &raw);
333 if (ret < 0) {
334 pr_err("read channel() error: %d\n", ret);
335 return ret;
336 }
337
338 ret = iio_convert_raw_to_processed(channel, raw, &uv, 1000);
339 if (ret < 0) {
340 /* Assume 12 bit ADC with vref at pullup_uv */
341 uv = (pdata->pullup_uv * (s64)raw) >> 12;
342 }
343
344 return uv;
345}
346
347static const struct of_device_id ntc_match[] = {
348 { .compatible = "epcos,b57330v2103",
349 .data = &ntc_thermistor_id[NTC_B57330V2103]},
350 { .compatible = "epcos,b57891s0103",
351 .data = &ntc_thermistor_id[NTC_B57891S0103] },
352 { .compatible = "murata,ncp03wb473",
353 .data = &ntc_thermistor_id[NTC_NCP03WB473] },
354 { .compatible = "murata,ncp03wf104",
355 .data = &ntc_thermistor_id[NTC_NCP03WF104] },
356 { .compatible = "murata,ncp15wb473",
357 .data = &ntc_thermistor_id[NTC_NCP15WB473] },
358 { .compatible = "murata,ncp15wl333",
359 .data = &ntc_thermistor_id[NTC_NCP15WL333] },
360 { .compatible = "murata,ncp15xh103",
361 .data = &ntc_thermistor_id[NTC_NCP15XH103] },
362 { .compatible = "murata,ncp18wb473",
363 .data = &ntc_thermistor_id[NTC_NCP18WB473] },
364 { .compatible = "murata,ncp21wb473",
365 .data = &ntc_thermistor_id[NTC_NCP21WB473] },
366
367 /* Usage of vendor name "ntc" is deprecated */
368 { .compatible = "ntc,ncp03wb473",
369 .data = &ntc_thermistor_id[NTC_NCP03WB473] },
370 { .compatible = "ntc,ncp15wb473",
371 .data = &ntc_thermistor_id[NTC_NCP15WB473] },
372 { .compatible = "ntc,ncp15wl333",
373 .data = &ntc_thermistor_id[NTC_NCP15WL333] },
374 { .compatible = "ntc,ncp18wb473",
375 .data = &ntc_thermistor_id[NTC_NCP18WB473] },
376 { .compatible = "ntc,ncp21wb473",
377 .data = &ntc_thermistor_id[NTC_NCP21WB473] },
378 { },
379};
380MODULE_DEVICE_TABLE(of, ntc_match);
381
382static struct ntc_thermistor_platform_data *
383ntc_thermistor_parse_dt(struct device *dev)
384{
385 struct iio_channel *chan;
386 enum iio_chan_type type;
387 struct device_node *np = dev->of_node;
388 struct ntc_thermistor_platform_data *pdata;
389 int ret;
390
391 if (!np)
392 return NULL;
393
394 pdata = devm_kzalloc(dev, sizeof(*pdata), GFP_KERNEL);
395 if (!pdata)
396 return ERR_PTR(-ENOMEM);
397
398 chan = devm_iio_channel_get(dev, NULL);
399 if (IS_ERR(chan))
400 return ERR_CAST(chan);
401
402 ret = iio_get_channel_type(chan, &type);
403 if (ret < 0)
404 return ERR_PTR(ret);
405
406 if (type != IIO_VOLTAGE)
407 return ERR_PTR(-EINVAL);
408
409 if (of_property_read_u32(np, "pullup-uv", &pdata->pullup_uv))
410 return ERR_PTR(-ENODEV);
411 if (of_property_read_u32(np, "pullup-ohm", &pdata->pullup_ohm))
412 return ERR_PTR(-ENODEV);
413 if (of_property_read_u32(np, "pulldown-ohm", &pdata->pulldown_ohm))
414 return ERR_PTR(-ENODEV);
415
416 if (of_find_property(np, "connected-positive", NULL))
417 pdata->connect = NTC_CONNECTED_POSITIVE;
418 else /* status change should be possible if not always on. */
419 pdata->connect = NTC_CONNECTED_GROUND;
420
421 pdata->chan = chan;
422 pdata->read_uv = ntc_adc_iio_read;
423
424 return pdata;
425}
426#else
427static struct ntc_thermistor_platform_data *
428ntc_thermistor_parse_dt(struct device *dev)
429{
430 return NULL;
431}
432
433#define ntc_match NULL
434
435#endif
436
437static inline u64 div64_u64_safe(u64 dividend, u64 divisor)
438{
439 if (divisor == 0 && dividend == 0)
440 return 0;
441 if (divisor == 0)
442 return UINT_MAX;
443 return div64_u64(dividend, divisor);
444}
445
446static int get_ohm_of_thermistor(struct ntc_data *data, unsigned int uv)
447{
448 struct ntc_thermistor_platform_data *pdata = data->pdata;
449 u32 puv = pdata->pullup_uv;
450 u64 n, puo, pdo;
451 puo = pdata->pullup_ohm;
452 pdo = pdata->pulldown_ohm;
453
454 if (uv == 0)
455 return (pdata->connect == NTC_CONNECTED_POSITIVE) ?
456 INT_MAX : 0;
457 if (uv >= puv)
458 return (pdata->connect == NTC_CONNECTED_POSITIVE) ?
459 0 : INT_MAX;
460
461 if (pdata->connect == NTC_CONNECTED_POSITIVE && puo == 0)
462 n = div_u64(pdo * (puv - uv), uv);
463 else if (pdata->connect == NTC_CONNECTED_GROUND && pdo == 0)
464 n = div_u64(puo * uv, puv - uv);
465 else if (pdata->connect == NTC_CONNECTED_POSITIVE)
466 n = div64_u64_safe(pdo * puo * (puv - uv),
467 puo * uv - pdo * (puv - uv));
468 else
469 n = div64_u64_safe(pdo * puo * uv, pdo * (puv - uv) - puo * uv);
470
471 if (n > INT_MAX)
472 n = INT_MAX;
473 return n;
474}
475
476static void lookup_comp(struct ntc_data *data, unsigned int ohm,
477 int *i_low, int *i_high)
478{
479 int start, end, mid;
480
481 /*
482 * Handle special cases: Resistance is higher than or equal to
483 * resistance in first table entry, or resistance is lower or equal
484 * to resistance in last table entry.
485 * In these cases, return i_low == i_high, either pointing to the
486 * beginning or to the end of the table depending on the condition.
487 */
488 if (ohm >= data->comp[0].ohm) {
489 *i_low = 0;
490 *i_high = 0;
491 return;
492 }
493 if (ohm <= data->comp[data->n_comp - 1].ohm) {
494 *i_low = data->n_comp - 1;
495 *i_high = data->n_comp - 1;
496 return;
497 }
498
499 /* Do a binary search on compensation table */
500 start = 0;
501 end = data->n_comp;
502 while (start < end) {
503 mid = start + (end - start) / 2;
504 /*
505 * start <= mid < end
506 * data->comp[start].ohm > ohm >= data->comp[end].ohm
507 *
508 * We could check for "ohm == data->comp[mid].ohm" here, but
509 * that is a quite unlikely condition, and we would have to
510 * check again after updating start. Check it at the end instead
511 * for simplicity.
512 */
513 if (ohm >= data->comp[mid].ohm) {
514 end = mid;
515 } else {
516 start = mid + 1;
517 /*
518 * ohm >= data->comp[start].ohm might be true here,
519 * since we set start to mid + 1. In that case, we are
520 * done. We could keep going, but the condition is quite
521 * likely to occur, so it is worth checking for it.
522 */
523 if (ohm >= data->comp[start].ohm)
524 end = start;
525 }
526 /*
527 * start <= end
528 * data->comp[start].ohm >= ohm >= data->comp[end].ohm
529 */
530 }
531 /*
532 * start == end
533 * ohm >= data->comp[end].ohm
534 */
535 *i_low = end;
536 if (ohm == data->comp[end].ohm)
537 *i_high = end;
538 else
539 *i_high = end - 1;
540}
541
542static int get_temp_mc(struct ntc_data *data, unsigned int ohm)
543{
544 int low, high;
545 int temp;
546
547 lookup_comp(data, ohm, &low, &high);
548 if (low == high) {
549 /* Unable to use linear approximation */
550 temp = data->comp[low].temp_c * 1000;
551 } else {
552 temp = data->comp[low].temp_c * 1000 +
553 ((data->comp[high].temp_c - data->comp[low].temp_c) *
554 1000 * ((int)ohm - (int)data->comp[low].ohm)) /
555 ((int)data->comp[high].ohm - (int)data->comp[low].ohm);
556 }
557 return temp;
558}
559
560static int ntc_thermistor_get_ohm(struct ntc_data *data)
561{
562 int read_uv;
563
564 if (data->pdata->read_ohm)
565 return data->pdata->read_ohm();
566
567 if (data->pdata->read_uv) {
568 read_uv = data->pdata->read_uv(data->pdata);
569 if (read_uv < 0)
570 return read_uv;
571 return get_ohm_of_thermistor(data, read_uv);
572 }
573 return -EINVAL;
574}
575
576static int ntc_read(struct device *dev, enum hwmon_sensor_types type,
577 u32 attr, int channel, long *val)
578{
579 struct ntc_data *data = dev_get_drvdata(dev);
580 int ohm;
581
582 switch (type) {
583 case hwmon_temp:
584 switch (attr) {
585 case hwmon_temp_input:
586 ohm = ntc_thermistor_get_ohm(data);
587 if (ohm < 0)
588 return ohm;
589 *val = get_temp_mc(data, ohm);
590 return 0;
591 case hwmon_temp_type:
592 *val = 4;
593 return 0;
594 default:
595 break;
596 }
597 break;
598 default:
599 break;
600 }
601 return -EINVAL;
602}
603
604static umode_t ntc_is_visible(const void *data, enum hwmon_sensor_types type,
605 u32 attr, int channel)
606{
607 if (type == hwmon_temp) {
608 switch (attr) {
609 case hwmon_temp_input:
610 case hwmon_temp_type:
611 return 0444;
612 default:
613 break;
614 }
615 }
616 return 0;
617}
618
619static const struct hwmon_channel_info *ntc_info[] = {
620 HWMON_CHANNEL_INFO(chip, HWMON_C_REGISTER_TZ),
621 HWMON_CHANNEL_INFO(temp, HWMON_T_INPUT | HWMON_T_TYPE),
622 NULL
623};
624
625static const struct hwmon_ops ntc_hwmon_ops = {
626 .is_visible = ntc_is_visible,
627 .read = ntc_read,
628};
629
630static const struct hwmon_chip_info ntc_chip_info = {
631 .ops = &ntc_hwmon_ops,
632 .info = ntc_info,
633};
634
635static int ntc_thermistor_probe(struct platform_device *pdev)
636{
637 struct device *dev = &pdev->dev;
638 const struct of_device_id *of_id =
639 of_match_device(of_match_ptr(ntc_match), dev);
640 const struct platform_device_id *pdev_id;
641 struct ntc_thermistor_platform_data *pdata;
642 struct device *hwmon_dev;
643 struct ntc_data *data;
644
645 pdata = ntc_thermistor_parse_dt(dev);
646 if (IS_ERR(pdata))
647 return PTR_ERR(pdata);
648 else if (pdata == NULL)
649 pdata = dev_get_platdata(dev);
650
651 if (!pdata) {
652 dev_err(dev, "No platform init data supplied.\n");
653 return -ENODEV;
654 }
655
656 /* Either one of the two is required. */
657 if (!pdata->read_uv && !pdata->read_ohm) {
658 dev_err(dev,
659 "Both read_uv and read_ohm missing. Need either one of the two.\n");
660 return -EINVAL;
661 }
662
663 if (pdata->read_uv && pdata->read_ohm) {
664 dev_warn(dev,
665 "Only one of read_uv and read_ohm is needed; ignoring read_uv.\n");
666 pdata->read_uv = NULL;
667 }
668
669 if (pdata->read_uv && (pdata->pullup_uv == 0 ||
670 (pdata->pullup_ohm == 0 && pdata->connect ==
671 NTC_CONNECTED_GROUND) ||
672 (pdata->pulldown_ohm == 0 && pdata->connect ==
673 NTC_CONNECTED_POSITIVE) ||
674 (pdata->connect != NTC_CONNECTED_POSITIVE &&
675 pdata->connect != NTC_CONNECTED_GROUND))) {
676 dev_err(dev, "Required data to use read_uv not supplied.\n");
677 return -EINVAL;
678 }
679
680 data = devm_kzalloc(dev, sizeof(struct ntc_data), GFP_KERNEL);
681 if (!data)
682 return -ENOMEM;
683
684 pdev_id = of_id ? of_id->data : platform_get_device_id(pdev);
685
686 data->pdata = pdata;
687
688 if (pdev_id->driver_data >= ARRAY_SIZE(ntc_type)) {
689 dev_err(dev, "Unknown device type: %lu(%s)\n",
690 pdev_id->driver_data, pdev_id->name);
691 return -EINVAL;
692 }
693
694 data->comp = ntc_type[pdev_id->driver_data].comp;
695 data->n_comp = ntc_type[pdev_id->driver_data].n_comp;
696
697 hwmon_dev = devm_hwmon_device_register_with_info(dev, pdev_id->name,
698 data, &ntc_chip_info,
699 NULL);
700 if (IS_ERR(hwmon_dev)) {
701 dev_err(dev, "unable to register as hwmon device.\n");
702 return PTR_ERR(hwmon_dev);
703 }
704
705 dev_info(dev, "Thermistor type: %s successfully probed.\n",
706 pdev_id->name);
707
708 return 0;
709}
710
711static struct platform_driver ntc_thermistor_driver = {
712 .driver = {
713 .name = "ntc-thermistor",
714 .of_match_table = of_match_ptr(ntc_match),
715 },
716 .probe = ntc_thermistor_probe,
717 .id_table = ntc_thermistor_id,
718};
719
720module_platform_driver(ntc_thermistor_driver);
721
722MODULE_DESCRIPTION("NTC Thermistor Driver");
723MODULE_AUTHOR("MyungJoo Ham <myungjoo.ham@samsung.com>");
724MODULE_LICENSE("GPL");
725MODULE_ALIAS("platform:ntc-thermistor");