blob: 4d5b7d4b68a78c97a836c2d55996fb13f6096ffb [file] [log] [blame]
Caesar Wangcbac8f632014-11-24 12:58:59 +08001/*
2 * Copyright (c) 2014, Fuzhou Rockchip Electronics Co., Ltd
3 *
4 * This program is free software; you can redistribute it and/or modify it
5 * under the terms and conditions of the GNU General Public License,
6 * version 2, as published by the Free Software Foundation.
7 *
8 * This program is distributed in the hope it will be useful, but WITHOUT
9 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
10 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
11 * more details.
12 */
13
14#include <linux/clk.h>
15#include <linux/delay.h>
16#include <linux/interrupt.h>
17#include <linux/io.h>
18#include <linux/module.h>
19#include <linux/of.h>
20#include <linux/of_address.h>
21#include <linux/of_irq.h>
22#include <linux/platform_device.h>
23#include <linux/reset.h>
24#include <linux/thermal.h>
25
26/**
27 * If the temperature over a period of time High,
28 * the resulting TSHUT gave CRU module,let it reset the entire chip,
29 * or via GPIO give PMIC.
30 */
31enum tshut_mode {
32 TSHUT_MODE_CRU = 0,
33 TSHUT_MODE_GPIO,
34};
35
36/**
37 * the system Temperature Sensors tshut(tshut) polarity
38 * the bit 8 is tshut polarity.
39 * 0: low active, 1: high active
40 */
41enum tshut_polarity {
42 TSHUT_LOW_ACTIVE = 0,
43 TSHUT_HIGH_ACTIVE,
44};
45
46/**
47 * The system has three Temperature Sensors. channel 0 is reserved,
48 * channel 1 is for CPU, and channel 2 is for GPU.
49 */
50enum sensor_id {
51 SENSOR_CPU = 1,
52 SENSOR_GPU,
53};
54
55struct rockchip_tsadc_chip {
56 /* The hardware-controlled tshut property */
57 long tshut_temp;
58 enum tshut_mode tshut_mode;
59 enum tshut_polarity tshut_polarity;
60
61 /* Chip-wide methods */
62 void (*initialize)(void __iomem *reg, enum tshut_polarity p);
63 void (*irq_ack)(void __iomem *reg);
64 void (*control)(void __iomem *reg, bool on);
65
66 /* Per-sensor methods */
Sascha Hauer17e83512015-07-24 08:12:54 +020067 int (*get_temp)(int chn, void __iomem *reg, int *temp);
Caesar Wangcbac8f632014-11-24 12:58:59 +080068 void (*set_tshut_temp)(int chn, void __iomem *reg, long temp);
69 void (*set_tshut_mode)(int chn, void __iomem *reg, enum tshut_mode m);
70};
71
72struct rockchip_thermal_sensor {
73 struct rockchip_thermal_data *thermal;
74 struct thermal_zone_device *tzd;
75 enum sensor_id id;
76};
77
78#define NUM_SENSORS 2 /* Ignore unused sensor 0 */
79
80struct rockchip_thermal_data {
81 const struct rockchip_tsadc_chip *chip;
82 struct platform_device *pdev;
83 struct reset_control *reset;
84
85 struct rockchip_thermal_sensor sensors[NUM_SENSORS];
86
87 struct clk *clk;
88 struct clk *pclk;
89
90 void __iomem *regs;
91
92 long tshut_temp;
93 enum tshut_mode tshut_mode;
94 enum tshut_polarity tshut_polarity;
95};
96
97/* TSADC V2 Sensor info define: */
98#define TSADCV2_AUTO_CON 0x04
99#define TSADCV2_INT_EN 0x08
100#define TSADCV2_INT_PD 0x0c
101#define TSADCV2_DATA(chn) (0x20 + (chn) * 0x04)
102#define TSADCV2_COMP_SHUT(chn) (0x40 + (chn) * 0x04)
103#define TSADCV2_HIGHT_INT_DEBOUNCE 0x60
104#define TSADCV2_HIGHT_TSHUT_DEBOUNCE 0x64
105#define TSADCV2_AUTO_PERIOD 0x68
106#define TSADCV2_AUTO_PERIOD_HT 0x6c
107
108#define TSADCV2_AUTO_EN BIT(0)
Caesar Wangcbac8f632014-11-24 12:58:59 +0800109#define TSADCV2_AUTO_SRC_EN(chn) BIT(4 + (chn))
110#define TSADCV2_AUTO_TSHUT_POLARITY_HIGH BIT(8)
Caesar Wangcbac8f632014-11-24 12:58:59 +0800111
112#define TSADCV2_INT_SRC_EN(chn) BIT(chn)
113#define TSADCV2_SHUT_2GPIO_SRC_EN(chn) BIT(4 + (chn))
114#define TSADCV2_SHUT_2CRU_SRC_EN(chn) BIT(8 + (chn))
115
Dmitry Torokhov452e01b2015-08-07 14:00:52 -0700116#define TSADCV2_INT_PD_CLEAR_MASK ~BIT(8)
Caesar Wangcbac8f632014-11-24 12:58:59 +0800117
118#define TSADCV2_DATA_MASK 0xfff
119#define TSADCV2_HIGHT_INT_DEBOUNCE_COUNT 4
120#define TSADCV2_HIGHT_TSHUT_DEBOUNCE_COUNT 4
121#define TSADCV2_AUTO_PERIOD_TIME 250 /* msec */
122#define TSADCV2_AUTO_PERIOD_HT_TIME 50 /* msec */
123
124struct tsadc_table {
Dmitry Torokhovd9a241c2015-08-07 13:59:23 -0700125 u32 code;
Caesar Wangcbac8f632014-11-24 12:58:59 +0800126 long temp;
127};
128
129static const struct tsadc_table v2_code_table[] = {
130 {TSADCV2_DATA_MASK, -40000},
131 {3800, -40000},
132 {3792, -35000},
133 {3783, -30000},
134 {3774, -25000},
135 {3765, -20000},
136 {3756, -15000},
137 {3747, -10000},
138 {3737, -5000},
139 {3728, 0},
140 {3718, 5000},
141 {3708, 10000},
142 {3698, 15000},
143 {3688, 20000},
144 {3678, 25000},
145 {3667, 30000},
146 {3656, 35000},
147 {3645, 40000},
148 {3634, 45000},
149 {3623, 50000},
150 {3611, 55000},
151 {3600, 60000},
152 {3588, 65000},
153 {3575, 70000},
154 {3563, 75000},
155 {3550, 80000},
156 {3537, 85000},
157 {3524, 90000},
158 {3510, 95000},
159 {3496, 100000},
160 {3482, 105000},
161 {3467, 110000},
162 {3452, 115000},
163 {3437, 120000},
164 {3421, 125000},
Caesar Wangcbac8f632014-11-24 12:58:59 +0800165};
166
167static u32 rk_tsadcv2_temp_to_code(long temp)
168{
169 int high, low, mid;
170
171 low = 0;
172 high = ARRAY_SIZE(v2_code_table) - 1;
173 mid = (high + low) / 2;
174
175 if (temp < v2_code_table[low].temp || temp > v2_code_table[high].temp)
176 return 0;
177
178 while (low <= high) {
179 if (temp == v2_code_table[mid].temp)
180 return v2_code_table[mid].code;
181 else if (temp < v2_code_table[mid].temp)
182 high = mid - 1;
183 else
184 low = mid + 1;
185 mid = (low + high) / 2;
186 }
187
188 return 0;
189}
190
Dmitry Torokhovd9a241c2015-08-07 13:59:23 -0700191static int rk_tsadcv2_code_to_temp(u32 code, int *temp)
Caesar Wangcbac8f632014-11-24 12:58:59 +0800192{
Dmitry Torokhovd9a241c2015-08-07 13:59:23 -0700193 unsigned int low = 1;
Caesar Wang1e9a1ae2015-01-25 10:11:11 +0800194 unsigned int high = ARRAY_SIZE(v2_code_table) - 1;
195 unsigned int mid = (low + high) / 2;
196 unsigned int num;
197 unsigned long denom;
Caesar Wangcbac8f632014-11-24 12:58:59 +0800198
Dmitry Torokhovd9a241c2015-08-07 13:59:23 -0700199 BUILD_BUG_ON(ARRAY_SIZE(v2_code_table) < 2);
Caesar Wangcbac8f632014-11-24 12:58:59 +0800200
Dmitry Torokhovd9a241c2015-08-07 13:59:23 -0700201 code &= TSADCV2_DATA_MASK;
202 if (code < v2_code_table[high].code)
203 return -EAGAIN; /* Incorrect reading */
204
205 while (low <= high) {
Caesar Wang1e9a1ae2015-01-25 10:11:11 +0800206 if (code >= v2_code_table[mid].code &&
207 code < v2_code_table[mid - 1].code)
208 break;
Caesar Wangcbac8f632014-11-24 12:58:59 +0800209 else if (code < v2_code_table[mid].code)
210 low = mid + 1;
211 else
212 high = mid - 1;
213 mid = (low + high) / 2;
214 }
215
Caesar Wang1e9a1ae2015-01-25 10:11:11 +0800216 /*
217 * The 5C granularity provided by the table is too much. Let's
218 * assume that the relationship between sensor readings and
219 * temperature between 2 table entries is linear and interpolate
220 * to produce less granular result.
221 */
222 num = v2_code_table[mid].temp - v2_code_table[mid - 1].temp;
223 num *= v2_code_table[mid - 1].code - code;
224 denom = v2_code_table[mid - 1].code - v2_code_table[mid].code;
Dmitry Torokhovd9a241c2015-08-07 13:59:23 -0700225 *temp = v2_code_table[mid - 1].temp + (num / denom);
226
227 return 0;
Caesar Wangcbac8f632014-11-24 12:58:59 +0800228}
229
230/**
231 * rk_tsadcv2_initialize - initialize TASDC Controller
232 * (1) Set TSADCV2_AUTO_PERIOD, configure the interleave between
233 * every two accessing of TSADC in normal operation.
234 * (2) Set TSADCV2_AUTO_PERIOD_HT, configure the interleave between
235 * every two accessing of TSADC after the temperature is higher
236 * than COM_SHUT or COM_INT.
237 * (3) Set TSADCV2_HIGH_INT_DEBOUNCE and TSADC_HIGHT_TSHUT_DEBOUNCE,
238 * if the temperature is higher than COMP_INT or COMP_SHUT for
239 * "debounce" times, TSADC controller will generate interrupt or TSHUT.
240 */
241static void rk_tsadcv2_initialize(void __iomem *regs,
242 enum tshut_polarity tshut_polarity)
243{
244 if (tshut_polarity == TSHUT_HIGH_ACTIVE)
Dmitry Torokhov452e01b2015-08-07 14:00:52 -0700245 writel_relaxed(0U | TSADCV2_AUTO_TSHUT_POLARITY_HIGH,
Caesar Wangcbac8f632014-11-24 12:58:59 +0800246 regs + TSADCV2_AUTO_CON);
247 else
Dmitry Torokhov452e01b2015-08-07 14:00:52 -0700248 writel_relaxed(0U & ~TSADCV2_AUTO_TSHUT_POLARITY_HIGH,
Caesar Wangcbac8f632014-11-24 12:58:59 +0800249 regs + TSADCV2_AUTO_CON);
250
251 writel_relaxed(TSADCV2_AUTO_PERIOD_TIME, regs + TSADCV2_AUTO_PERIOD);
252 writel_relaxed(TSADCV2_HIGHT_INT_DEBOUNCE_COUNT,
253 regs + TSADCV2_HIGHT_INT_DEBOUNCE);
254 writel_relaxed(TSADCV2_AUTO_PERIOD_HT_TIME,
255 regs + TSADCV2_AUTO_PERIOD_HT);
256 writel_relaxed(TSADCV2_HIGHT_TSHUT_DEBOUNCE_COUNT,
257 regs + TSADCV2_HIGHT_TSHUT_DEBOUNCE);
258}
259
260static void rk_tsadcv2_irq_ack(void __iomem *regs)
261{
262 u32 val;
263
264 val = readl_relaxed(regs + TSADCV2_INT_PD);
Dmitry Torokhov452e01b2015-08-07 14:00:52 -0700265 writel_relaxed(val & TSADCV2_INT_PD_CLEAR_MASK, regs + TSADCV2_INT_PD);
Caesar Wangcbac8f632014-11-24 12:58:59 +0800266}
267
268static void rk_tsadcv2_control(void __iomem *regs, bool enable)
269{
270 u32 val;
271
272 val = readl_relaxed(regs + TSADCV2_AUTO_CON);
273 if (enable)
274 val |= TSADCV2_AUTO_EN;
275 else
276 val &= ~TSADCV2_AUTO_EN;
277
278 writel_relaxed(val, regs + TSADCV2_AUTO_CON);
279}
280
Sascha Hauer17e83512015-07-24 08:12:54 +0200281static int rk_tsadcv2_get_temp(int chn, void __iomem *regs, int *temp)
Caesar Wangcbac8f632014-11-24 12:58:59 +0800282{
283 u32 val;
284
Caesar Wangcbac8f632014-11-24 12:58:59 +0800285 val = readl_relaxed(regs + TSADCV2_DATA(chn));
Caesar Wangcbac8f632014-11-24 12:58:59 +0800286
Dmitry Torokhovd9a241c2015-08-07 13:59:23 -0700287 return rk_tsadcv2_code_to_temp(val, temp);
Caesar Wangcbac8f632014-11-24 12:58:59 +0800288}
289
290static void rk_tsadcv2_tshut_temp(int chn, void __iomem *regs, long temp)
291{
292 u32 tshut_value, val;
293
294 tshut_value = rk_tsadcv2_temp_to_code(temp);
295 writel_relaxed(tshut_value, regs + TSADCV2_COMP_SHUT(chn));
296
297 /* TSHUT will be valid */
298 val = readl_relaxed(regs + TSADCV2_AUTO_CON);
299 writel_relaxed(val | TSADCV2_AUTO_SRC_EN(chn), regs + TSADCV2_AUTO_CON);
300}
301
302static void rk_tsadcv2_tshut_mode(int chn, void __iomem *regs,
303 enum tshut_mode mode)
304{
305 u32 val;
306
307 val = readl_relaxed(regs + TSADCV2_INT_EN);
308 if (mode == TSHUT_MODE_GPIO) {
309 val &= ~TSADCV2_SHUT_2CRU_SRC_EN(chn);
310 val |= TSADCV2_SHUT_2GPIO_SRC_EN(chn);
311 } else {
312 val &= ~TSADCV2_SHUT_2GPIO_SRC_EN(chn);
313 val |= TSADCV2_SHUT_2CRU_SRC_EN(chn);
314 }
315
316 writel_relaxed(val, regs + TSADCV2_INT_EN);
317}
318
319static const struct rockchip_tsadc_chip rk3288_tsadc_data = {
320 .tshut_mode = TSHUT_MODE_GPIO, /* default TSHUT via GPIO give PMIC */
321 .tshut_polarity = TSHUT_LOW_ACTIVE, /* default TSHUT LOW ACTIVE */
322 .tshut_temp = 95000,
323
324 .initialize = rk_tsadcv2_initialize,
325 .irq_ack = rk_tsadcv2_irq_ack,
326 .control = rk_tsadcv2_control,
327 .get_temp = rk_tsadcv2_get_temp,
328 .set_tshut_temp = rk_tsadcv2_tshut_temp,
329 .set_tshut_mode = rk_tsadcv2_tshut_mode,
330};
331
332static const struct of_device_id of_rockchip_thermal_match[] = {
333 {
334 .compatible = "rockchip,rk3288-tsadc",
335 .data = (void *)&rk3288_tsadc_data,
336 },
337 { /* end */ },
338};
339MODULE_DEVICE_TABLE(of, of_rockchip_thermal_match);
340
341static void
342rockchip_thermal_toggle_sensor(struct rockchip_thermal_sensor *sensor, bool on)
343{
344 struct thermal_zone_device *tzd = sensor->tzd;
345
346 tzd->ops->set_mode(tzd,
347 on ? THERMAL_DEVICE_ENABLED : THERMAL_DEVICE_DISABLED);
348}
349
350static irqreturn_t rockchip_thermal_alarm_irq_thread(int irq, void *dev)
351{
352 struct rockchip_thermal_data *thermal = dev;
353 int i;
354
355 dev_dbg(&thermal->pdev->dev, "thermal alarm\n");
356
357 thermal->chip->irq_ack(thermal->regs);
358
359 for (i = 0; i < ARRAY_SIZE(thermal->sensors); i++)
360 thermal_zone_device_update(thermal->sensors[i].tzd);
361
362 return IRQ_HANDLED;
363}
364
Sascha Hauer17e83512015-07-24 08:12:54 +0200365static int rockchip_thermal_get_temp(void *_sensor, int *out_temp)
Caesar Wangcbac8f632014-11-24 12:58:59 +0800366{
367 struct rockchip_thermal_sensor *sensor = _sensor;
368 struct rockchip_thermal_data *thermal = sensor->thermal;
369 const struct rockchip_tsadc_chip *tsadc = sensor->thermal->chip;
370 int retval;
371
372 retval = tsadc->get_temp(sensor->id, thermal->regs, out_temp);
Sascha Hauer17e83512015-07-24 08:12:54 +0200373 dev_dbg(&thermal->pdev->dev, "sensor %d - temp: %d, retval: %d\n",
Caesar Wangcbac8f632014-11-24 12:58:59 +0800374 sensor->id, *out_temp, retval);
375
376 return retval;
377}
378
379static const struct thermal_zone_of_device_ops rockchip_of_thermal_ops = {
380 .get_temp = rockchip_thermal_get_temp,
381};
382
383static int rockchip_configure_from_dt(struct device *dev,
384 struct device_node *np,
385 struct rockchip_thermal_data *thermal)
386{
387 u32 shut_temp, tshut_mode, tshut_polarity;
388
389 if (of_property_read_u32(np, "rockchip,hw-tshut-temp", &shut_temp)) {
390 dev_warn(dev,
391 "Missing tshut temp property, using default %ld\n",
392 thermal->chip->tshut_temp);
393 thermal->tshut_temp = thermal->chip->tshut_temp;
394 } else {
395 thermal->tshut_temp = shut_temp;
396 }
397
398 if (thermal->tshut_temp > INT_MAX) {
399 dev_err(dev, "Invalid tshut temperature specified: %ld\n",
400 thermal->tshut_temp);
401 return -ERANGE;
402 }
403
404 if (of_property_read_u32(np, "rockchip,hw-tshut-mode", &tshut_mode)) {
405 dev_warn(dev,
406 "Missing tshut mode property, using default (%s)\n",
407 thermal->chip->tshut_mode == TSHUT_MODE_GPIO ?
408 "gpio" : "cru");
409 thermal->tshut_mode = thermal->chip->tshut_mode;
410 } else {
411 thermal->tshut_mode = tshut_mode;
412 }
413
414 if (thermal->tshut_mode > 1) {
415 dev_err(dev, "Invalid tshut mode specified: %d\n",
416 thermal->tshut_mode);
417 return -EINVAL;
418 }
419
420 if (of_property_read_u32(np, "rockchip,hw-tshut-polarity",
421 &tshut_polarity)) {
422 dev_warn(dev,
423 "Missing tshut-polarity property, using default (%s)\n",
424 thermal->chip->tshut_polarity == TSHUT_LOW_ACTIVE ?
425 "low" : "high");
426 thermal->tshut_polarity = thermal->chip->tshut_polarity;
427 } else {
428 thermal->tshut_polarity = tshut_polarity;
429 }
430
431 if (thermal->tshut_polarity > 1) {
432 dev_err(dev, "Invalid tshut-polarity specified: %d\n",
433 thermal->tshut_polarity);
434 return -EINVAL;
435 }
436
437 return 0;
438}
439
440static int
441rockchip_thermal_register_sensor(struct platform_device *pdev,
442 struct rockchip_thermal_data *thermal,
443 struct rockchip_thermal_sensor *sensor,
444 enum sensor_id id)
445{
446 const struct rockchip_tsadc_chip *tsadc = thermal->chip;
447 int error;
448
449 tsadc->set_tshut_mode(id, thermal->regs, thermal->tshut_mode);
450 tsadc->set_tshut_temp(id, thermal->regs, thermal->tshut_temp);
451
452 sensor->thermal = thermal;
453 sensor->id = id;
454 sensor->tzd = thermal_zone_of_sensor_register(&pdev->dev, id, sensor,
455 &rockchip_of_thermal_ops);
456 if (IS_ERR(sensor->tzd)) {
457 error = PTR_ERR(sensor->tzd);
458 dev_err(&pdev->dev, "failed to register sensor %d: %d\n",
459 id, error);
460 return error;
461 }
462
463 return 0;
464}
465
466/*
467 * Reset TSADC Controller, reset all tsadc registers.
468 */
469static void rockchip_thermal_reset_controller(struct reset_control *reset)
470{
471 reset_control_assert(reset);
472 usleep_range(10, 20);
473 reset_control_deassert(reset);
474}
475
476static int rockchip_thermal_probe(struct platform_device *pdev)
477{
478 struct device_node *np = pdev->dev.of_node;
479 struct rockchip_thermal_data *thermal;
480 const struct of_device_id *match;
481 struct resource *res;
482 int irq;
483 int i;
484 int error;
485
486 match = of_match_node(of_rockchip_thermal_match, np);
487 if (!match)
488 return -ENXIO;
489
490 irq = platform_get_irq(pdev, 0);
491 if (irq < 0) {
492 dev_err(&pdev->dev, "no irq resource?\n");
493 return -EINVAL;
494 }
495
496 thermal = devm_kzalloc(&pdev->dev, sizeof(struct rockchip_thermal_data),
497 GFP_KERNEL);
498 if (!thermal)
499 return -ENOMEM;
500
501 thermal->pdev = pdev;
502
503 thermal->chip = (const struct rockchip_tsadc_chip *)match->data;
504 if (!thermal->chip)
505 return -EINVAL;
506
507 res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
508 thermal->regs = devm_ioremap_resource(&pdev->dev, res);
509 if (IS_ERR(thermal->regs))
510 return PTR_ERR(thermal->regs);
511
512 thermal->reset = devm_reset_control_get(&pdev->dev, "tsadc-apb");
513 if (IS_ERR(thermal->reset)) {
514 error = PTR_ERR(thermal->reset);
515 dev_err(&pdev->dev, "failed to get tsadc reset: %d\n", error);
516 return error;
517 }
518
519 thermal->clk = devm_clk_get(&pdev->dev, "tsadc");
520 if (IS_ERR(thermal->clk)) {
521 error = PTR_ERR(thermal->clk);
522 dev_err(&pdev->dev, "failed to get tsadc clock: %d\n", error);
523 return error;
524 }
525
526 thermal->pclk = devm_clk_get(&pdev->dev, "apb_pclk");
527 if (IS_ERR(thermal->pclk)) {
Dan Carpenter0d0a2bf2015-04-21 12:34:10 +0300528 error = PTR_ERR(thermal->pclk);
Caesar Wangcbac8f632014-11-24 12:58:59 +0800529 dev_err(&pdev->dev, "failed to get apb_pclk clock: %d\n",
530 error);
531 return error;
532 }
533
534 error = clk_prepare_enable(thermal->clk);
535 if (error) {
536 dev_err(&pdev->dev, "failed to enable converter clock: %d\n",
537 error);
538 return error;
539 }
540
541 error = clk_prepare_enable(thermal->pclk);
542 if (error) {
543 dev_err(&pdev->dev, "failed to enable pclk: %d\n", error);
544 goto err_disable_clk;
545 }
546
547 rockchip_thermal_reset_controller(thermal->reset);
548
549 error = rockchip_configure_from_dt(&pdev->dev, np, thermal);
550 if (error) {
551 dev_err(&pdev->dev, "failed to parse device tree data: %d\n",
552 error);
553 goto err_disable_pclk;
554 }
555
556 thermal->chip->initialize(thermal->regs, thermal->tshut_polarity);
557
558 error = rockchip_thermal_register_sensor(pdev, thermal,
559 &thermal->sensors[0],
560 SENSOR_CPU);
561 if (error) {
562 dev_err(&pdev->dev,
563 "failed to register CPU thermal sensor: %d\n", error);
564 goto err_disable_pclk;
565 }
566
567 error = rockchip_thermal_register_sensor(pdev, thermal,
568 &thermal->sensors[1],
569 SENSOR_GPU);
570 if (error) {
571 dev_err(&pdev->dev,
572 "failed to register GPU thermal sensor: %d\n", error);
573 goto err_unregister_cpu_sensor;
574 }
575
576 error = devm_request_threaded_irq(&pdev->dev, irq, NULL,
577 &rockchip_thermal_alarm_irq_thread,
578 IRQF_ONESHOT,
579 "rockchip_thermal", thermal);
580 if (error) {
581 dev_err(&pdev->dev,
582 "failed to request tsadc irq: %d\n", error);
583 goto err_unregister_gpu_sensor;
584 }
585
586 thermal->chip->control(thermal->regs, true);
587
588 for (i = 0; i < ARRAY_SIZE(thermal->sensors); i++)
589 rockchip_thermal_toggle_sensor(&thermal->sensors[i], true);
590
591 platform_set_drvdata(pdev, thermal);
592
593 return 0;
594
595err_unregister_gpu_sensor:
596 thermal_zone_of_sensor_unregister(&pdev->dev, thermal->sensors[1].tzd);
597err_unregister_cpu_sensor:
598 thermal_zone_of_sensor_unregister(&pdev->dev, thermal->sensors[0].tzd);
599err_disable_pclk:
600 clk_disable_unprepare(thermal->pclk);
601err_disable_clk:
602 clk_disable_unprepare(thermal->clk);
603
604 return error;
605}
606
607static int rockchip_thermal_remove(struct platform_device *pdev)
608{
609 struct rockchip_thermal_data *thermal = platform_get_drvdata(pdev);
610 int i;
611
612 for (i = 0; i < ARRAY_SIZE(thermal->sensors); i++) {
613 struct rockchip_thermal_sensor *sensor = &thermal->sensors[i];
614
615 rockchip_thermal_toggle_sensor(sensor, false);
616 thermal_zone_of_sensor_unregister(&pdev->dev, sensor->tzd);
617 }
618
619 thermal->chip->control(thermal->regs, false);
620
621 clk_disable_unprepare(thermal->pclk);
622 clk_disable_unprepare(thermal->clk);
623
624 return 0;
625}
626
627static int __maybe_unused rockchip_thermal_suspend(struct device *dev)
628{
629 struct platform_device *pdev = to_platform_device(dev);
630 struct rockchip_thermal_data *thermal = platform_get_drvdata(pdev);
631 int i;
632
633 for (i = 0; i < ARRAY_SIZE(thermal->sensors); i++)
634 rockchip_thermal_toggle_sensor(&thermal->sensors[i], false);
635
636 thermal->chip->control(thermal->regs, false);
637
638 clk_disable(thermal->pclk);
639 clk_disable(thermal->clk);
640
641 return 0;
642}
643
644static int __maybe_unused rockchip_thermal_resume(struct device *dev)
645{
646 struct platform_device *pdev = to_platform_device(dev);
647 struct rockchip_thermal_data *thermal = platform_get_drvdata(pdev);
648 int i;
649 int error;
650
651 error = clk_enable(thermal->clk);
652 if (error)
653 return error;
654
655 error = clk_enable(thermal->pclk);
656 if (error)
657 return error;
658
659 rockchip_thermal_reset_controller(thermal->reset);
660
661 thermal->chip->initialize(thermal->regs, thermal->tshut_polarity);
662
663 for (i = 0; i < ARRAY_SIZE(thermal->sensors); i++) {
664 enum sensor_id id = thermal->sensors[i].id;
665
666 thermal->chip->set_tshut_mode(id, thermal->regs,
667 thermal->tshut_mode);
668 thermal->chip->set_tshut_temp(id, thermal->regs,
669 thermal->tshut_temp);
670 }
671
672 thermal->chip->control(thermal->regs, true);
673
674 for (i = 0; i < ARRAY_SIZE(thermal->sensors); i++)
675 rockchip_thermal_toggle_sensor(&thermal->sensors[i], true);
676
677 return 0;
678}
679
680static SIMPLE_DEV_PM_OPS(rockchip_thermal_pm_ops,
681 rockchip_thermal_suspend, rockchip_thermal_resume);
682
683static struct platform_driver rockchip_thermal_driver = {
684 .driver = {
685 .name = "rockchip-thermal",
Caesar Wangcbac8f632014-11-24 12:58:59 +0800686 .pm = &rockchip_thermal_pm_ops,
687 .of_match_table = of_rockchip_thermal_match,
688 },
689 .probe = rockchip_thermal_probe,
690 .remove = rockchip_thermal_remove,
691};
692
693module_platform_driver(rockchip_thermal_driver);
694
695MODULE_DESCRIPTION("ROCKCHIP THERMAL Driver");
696MODULE_AUTHOR("Rockchip, Inc.");
697MODULE_LICENSE("GPL v2");
698MODULE_ALIAS("platform:rockchip-thermal");