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Merge tag 'percpu-for-6.8' of git://git.kernel.org/pub/scm/linux/kernel/git/dennis...
[linux.git] / drivers / hwmon / aspeed-pwm-tacho.c
1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /*
3  * Copyright (c) 2016 Google, Inc
4  */
5
6 #include <linux/clk.h>
7 #include <linux/delay.h>
8 #include <linux/errno.h>
9 #include <linux/gpio/consumer.h>
10 #include <linux/hwmon.h>
11 #include <linux/hwmon-sysfs.h>
12 #include <linux/io.h>
13 #include <linux/kernel.h>
14 #include <linux/module.h>
15 #include <linux/of.h>
16 #include <linux/platform_device.h>
17 #include <linux/regmap.h>
18 #include <linux/reset.h>
19 #include <linux/sysfs.h>
20 #include <linux/thermal.h>
21
22 /* ASPEED PWM & FAN Tach Register Definition */
23 #define ASPEED_PTCR_CTRL                0x00
24 #define ASPEED_PTCR_CLK_CTRL            0x04
25 #define ASPEED_PTCR_DUTY0_CTRL          0x08
26 #define ASPEED_PTCR_DUTY1_CTRL          0x0c
27 #define ASPEED_PTCR_TYPEM_CTRL          0x10
28 #define ASPEED_PTCR_TYPEM_CTRL1         0x14
29 #define ASPEED_PTCR_TYPEN_CTRL          0x18
30 #define ASPEED_PTCR_TYPEN_CTRL1         0x1c
31 #define ASPEED_PTCR_TACH_SOURCE         0x20
32 #define ASPEED_PTCR_TRIGGER             0x28
33 #define ASPEED_PTCR_RESULT              0x2c
34 #define ASPEED_PTCR_INTR_CTRL           0x30
35 #define ASPEED_PTCR_INTR_STS            0x34
36 #define ASPEED_PTCR_TYPEM_LIMIT         0x38
37 #define ASPEED_PTCR_TYPEN_LIMIT         0x3C
38 #define ASPEED_PTCR_CTRL_EXT            0x40
39 #define ASPEED_PTCR_CLK_CTRL_EXT        0x44
40 #define ASPEED_PTCR_DUTY2_CTRL          0x48
41 #define ASPEED_PTCR_DUTY3_CTRL          0x4c
42 #define ASPEED_PTCR_TYPEO_CTRL          0x50
43 #define ASPEED_PTCR_TYPEO_CTRL1         0x54
44 #define ASPEED_PTCR_TACH_SOURCE_EXT     0x60
45 #define ASPEED_PTCR_TYPEO_LIMIT         0x78
46
47 /* ASPEED_PTCR_CTRL : 0x00 - General Control Register */
48 #define ASPEED_PTCR_CTRL_SET_PWMD_TYPE_PART1    15
49 #define ASPEED_PTCR_CTRL_SET_PWMD_TYPE_PART2    6
50 #define ASPEED_PTCR_CTRL_SET_PWMD_TYPE_MASK     (BIT(7) | BIT(15))
51
52 #define ASPEED_PTCR_CTRL_SET_PWMC_TYPE_PART1    14
53 #define ASPEED_PTCR_CTRL_SET_PWMC_TYPE_PART2    5
54 #define ASPEED_PTCR_CTRL_SET_PWMC_TYPE_MASK     (BIT(6) | BIT(14))
55
56 #define ASPEED_PTCR_CTRL_SET_PWMB_TYPE_PART1    13
57 #define ASPEED_PTCR_CTRL_SET_PWMB_TYPE_PART2    4
58 #define ASPEED_PTCR_CTRL_SET_PWMB_TYPE_MASK     (BIT(5) | BIT(13))
59
60 #define ASPEED_PTCR_CTRL_SET_PWMA_TYPE_PART1    12
61 #define ASPEED_PTCR_CTRL_SET_PWMA_TYPE_PART2    3
62 #define ASPEED_PTCR_CTRL_SET_PWMA_TYPE_MASK     (BIT(4) | BIT(12))
63
64 #define ASPEED_PTCR_CTRL_FAN_NUM_EN(x)  BIT(16 + (x))
65
66 #define ASPEED_PTCR_CTRL_PWMD_EN        BIT(11)
67 #define ASPEED_PTCR_CTRL_PWMC_EN        BIT(10)
68 #define ASPEED_PTCR_CTRL_PWMB_EN        BIT(9)
69 #define ASPEED_PTCR_CTRL_PWMA_EN        BIT(8)
70
71 #define ASPEED_PTCR_CTRL_CLK_SRC        BIT(1)
72 #define ASPEED_PTCR_CTRL_CLK_EN         BIT(0)
73
74 /* ASPEED_PTCR_CLK_CTRL : 0x04 - Clock Control Register */
75 /* TYPE N */
76 #define ASPEED_PTCR_CLK_CTRL_TYPEN_MASK         GENMASK(31, 16)
77 #define ASPEED_PTCR_CLK_CTRL_TYPEN_UNIT         24
78 #define ASPEED_PTCR_CLK_CTRL_TYPEN_H            20
79 #define ASPEED_PTCR_CLK_CTRL_TYPEN_L            16
80 /* TYPE M */
81 #define ASPEED_PTCR_CLK_CTRL_TYPEM_MASK         GENMASK(15, 0)
82 #define ASPEED_PTCR_CLK_CTRL_TYPEM_UNIT         8
83 #define ASPEED_PTCR_CLK_CTRL_TYPEM_H            4
84 #define ASPEED_PTCR_CLK_CTRL_TYPEM_L            0
85
86 /*
87  * ASPEED_PTCR_DUTY_CTRL/1/2/3 : 0x08/0x0C/0x48/0x4C - PWM-FAN duty control
88  * 0/1/2/3 register
89  */
90 #define DUTY_CTRL_PWM2_FALL_POINT       24
91 #define DUTY_CTRL_PWM2_RISE_POINT       16
92 #define DUTY_CTRL_PWM2_RISE_FALL_MASK   GENMASK(31, 16)
93 #define DUTY_CTRL_PWM1_FALL_POINT       8
94 #define DUTY_CTRL_PWM1_RISE_POINT       0
95 #define DUTY_CTRL_PWM1_RISE_FALL_MASK   GENMASK(15, 0)
96
97 /* ASPEED_PTCR_TYPEM_CTRL : 0x10/0x18/0x50 - Type M/N/O Ctrl 0 Register */
98 #define TYPE_CTRL_FAN_MASK              (GENMASK(5, 1) | GENMASK(31, 16))
99 #define TYPE_CTRL_FAN1_MASK             GENMASK(31, 0)
100 #define TYPE_CTRL_FAN_PERIOD            16
101 #define TYPE_CTRL_FAN_MODE              4
102 #define TYPE_CTRL_FAN_DIVISION          1
103 #define TYPE_CTRL_FAN_TYPE_EN           1
104
105 /* ASPEED_PTCR_TACH_SOURCE : 0x20/0x60 - Tach Source Register */
106 /* bit [0,1] at 0x20, bit [2] at 0x60 */
107 #define TACH_PWM_SOURCE_BIT01(x)        ((x) * 2)
108 #define TACH_PWM_SOURCE_BIT2(x)         ((x) * 2)
109 #define TACH_PWM_SOURCE_MASK_BIT01(x)   (0x3 << ((x) * 2))
110 #define TACH_PWM_SOURCE_MASK_BIT2(x)    BIT((x) * 2)
111
112 /* ASPEED_PTCR_RESULT : 0x2c - Result Register */
113 #define RESULT_STATUS_MASK              BIT(31)
114 #define RESULT_VALUE_MASK               0xfffff
115
116 /* ASPEED_PTCR_CTRL_EXT : 0x40 - General Control Extension #1 Register */
117 #define ASPEED_PTCR_CTRL_SET_PWMH_TYPE_PART1    15
118 #define ASPEED_PTCR_CTRL_SET_PWMH_TYPE_PART2    6
119 #define ASPEED_PTCR_CTRL_SET_PWMH_TYPE_MASK     (BIT(7) | BIT(15))
120
121 #define ASPEED_PTCR_CTRL_SET_PWMG_TYPE_PART1    14
122 #define ASPEED_PTCR_CTRL_SET_PWMG_TYPE_PART2    5
123 #define ASPEED_PTCR_CTRL_SET_PWMG_TYPE_MASK     (BIT(6) | BIT(14))
124
125 #define ASPEED_PTCR_CTRL_SET_PWMF_TYPE_PART1    13
126 #define ASPEED_PTCR_CTRL_SET_PWMF_TYPE_PART2    4
127 #define ASPEED_PTCR_CTRL_SET_PWMF_TYPE_MASK     (BIT(5) | BIT(13))
128
129 #define ASPEED_PTCR_CTRL_SET_PWME_TYPE_PART1    12
130 #define ASPEED_PTCR_CTRL_SET_PWME_TYPE_PART2    3
131 #define ASPEED_PTCR_CTRL_SET_PWME_TYPE_MASK     (BIT(4) | BIT(12))
132
133 #define ASPEED_PTCR_CTRL_PWMH_EN        BIT(11)
134 #define ASPEED_PTCR_CTRL_PWMG_EN        BIT(10)
135 #define ASPEED_PTCR_CTRL_PWMF_EN        BIT(9)
136 #define ASPEED_PTCR_CTRL_PWME_EN        BIT(8)
137
138 /* ASPEED_PTCR_CLK_EXT_CTRL : 0x44 - Clock Control Extension #1 Register */
139 /* TYPE O */
140 #define ASPEED_PTCR_CLK_CTRL_TYPEO_MASK         GENMASK(15, 0)
141 #define ASPEED_PTCR_CLK_CTRL_TYPEO_UNIT         8
142 #define ASPEED_PTCR_CLK_CTRL_TYPEO_H            4
143 #define ASPEED_PTCR_CLK_CTRL_TYPEO_L            0
144
145 #define PWM_MAX 255
146
147 #define BOTH_EDGES 0x02 /* 10b */
148
149 #define M_PWM_DIV_H 0x00
150 #define M_PWM_DIV_L 0x05
151 #define M_PWM_PERIOD 0x5F
152 #define M_TACH_CLK_DIV 0x00
153 /*
154  * 5:4 Type N fan tach mode selection bit:
155  * 00: falling
156  * 01: rising
157  * 10: both
158  * 11: reserved.
159  */
160 #define M_TACH_MODE 0x02 /* 10b */
161 #define M_TACH_UNIT 0x0420
162 #define INIT_FAN_CTRL 0xFF
163
164 /* How long we sleep in us while waiting for an RPM result. */
165 #define ASPEED_RPM_STATUS_SLEEP_USEC    500
166
167 #define MAX_CDEV_NAME_LEN 16
168
169 #define MAX_ASPEED_FAN_TACH_CHANNELS 16
170
171 struct aspeed_cooling_device {
172         char name[16];
173         struct aspeed_pwm_tacho_data *priv;
174         struct thermal_cooling_device *tcdev;
175         int pwm_port;
176         u8 *cooling_levels;
177         u8 max_state;
178         u8 cur_state;
179 };
180
181 struct aspeed_pwm_tacho_data {
182         struct regmap *regmap;
183         struct reset_control *rst;
184         unsigned long clk_freq;
185         bool pwm_present[8];
186         bool fan_tach_present[MAX_ASPEED_FAN_TACH_CHANNELS];
187         u8 type_pwm_clock_unit[3];
188         u8 type_pwm_clock_division_h[3];
189         u8 type_pwm_clock_division_l[3];
190         u8 type_fan_tach_clock_division[3];
191         u8 type_fan_tach_mode[3];
192         u16 type_fan_tach_unit[3];
193         u8 pwm_port_type[8];
194         u8 pwm_port_fan_ctrl[8];
195         u8 fan_tach_ch_source[MAX_ASPEED_FAN_TACH_CHANNELS];
196         struct aspeed_cooling_device *cdev[8];
197         const struct attribute_group *groups[3];
198 };
199
200 enum type { TYPEM, TYPEN, TYPEO };
201
202 struct type_params {
203         u32 l_value;
204         u32 h_value;
205         u32 unit_value;
206         u32 clk_ctrl_mask;
207         u32 clk_ctrl_reg;
208         u32 ctrl_reg;
209         u32 ctrl_reg1;
210 };
211
212 static const struct type_params type_params[] = {
213         [TYPEM] = {
214                 .l_value = ASPEED_PTCR_CLK_CTRL_TYPEM_L,
215                 .h_value = ASPEED_PTCR_CLK_CTRL_TYPEM_H,
216                 .unit_value = ASPEED_PTCR_CLK_CTRL_TYPEM_UNIT,
217                 .clk_ctrl_mask = ASPEED_PTCR_CLK_CTRL_TYPEM_MASK,
218                 .clk_ctrl_reg = ASPEED_PTCR_CLK_CTRL,
219                 .ctrl_reg = ASPEED_PTCR_TYPEM_CTRL,
220                 .ctrl_reg1 = ASPEED_PTCR_TYPEM_CTRL1,
221         },
222         [TYPEN] = {
223                 .l_value = ASPEED_PTCR_CLK_CTRL_TYPEN_L,
224                 .h_value = ASPEED_PTCR_CLK_CTRL_TYPEN_H,
225                 .unit_value = ASPEED_PTCR_CLK_CTRL_TYPEN_UNIT,
226                 .clk_ctrl_mask = ASPEED_PTCR_CLK_CTRL_TYPEN_MASK,
227                 .clk_ctrl_reg = ASPEED_PTCR_CLK_CTRL,
228                 .ctrl_reg = ASPEED_PTCR_TYPEN_CTRL,
229                 .ctrl_reg1 = ASPEED_PTCR_TYPEN_CTRL1,
230         },
231         [TYPEO] = {
232                 .l_value = ASPEED_PTCR_CLK_CTRL_TYPEO_L,
233                 .h_value = ASPEED_PTCR_CLK_CTRL_TYPEO_H,
234                 .unit_value = ASPEED_PTCR_CLK_CTRL_TYPEO_UNIT,
235                 .clk_ctrl_mask = ASPEED_PTCR_CLK_CTRL_TYPEO_MASK,
236                 .clk_ctrl_reg = ASPEED_PTCR_CLK_CTRL_EXT,
237                 .ctrl_reg = ASPEED_PTCR_TYPEO_CTRL,
238                 .ctrl_reg1 = ASPEED_PTCR_TYPEO_CTRL1,
239         }
240 };
241
242 enum pwm_port { PWMA, PWMB, PWMC, PWMD, PWME, PWMF, PWMG, PWMH };
243
244 struct pwm_port_params {
245         u32 pwm_en;
246         u32 ctrl_reg;
247         u32 type_part1;
248         u32 type_part2;
249         u32 type_mask;
250         u32 duty_ctrl_rise_point;
251         u32 duty_ctrl_fall_point;
252         u32 duty_ctrl_reg;
253         u32 duty_ctrl_rise_fall_mask;
254 };
255
256 static const struct pwm_port_params pwm_port_params[] = {
257         [PWMA] = {
258                 .pwm_en = ASPEED_PTCR_CTRL_PWMA_EN,
259                 .ctrl_reg = ASPEED_PTCR_CTRL,
260                 .type_part1 = ASPEED_PTCR_CTRL_SET_PWMA_TYPE_PART1,
261                 .type_part2 = ASPEED_PTCR_CTRL_SET_PWMA_TYPE_PART2,
262                 .type_mask = ASPEED_PTCR_CTRL_SET_PWMA_TYPE_MASK,
263                 .duty_ctrl_rise_point = DUTY_CTRL_PWM1_RISE_POINT,
264                 .duty_ctrl_fall_point = DUTY_CTRL_PWM1_FALL_POINT,
265                 .duty_ctrl_reg = ASPEED_PTCR_DUTY0_CTRL,
266                 .duty_ctrl_rise_fall_mask = DUTY_CTRL_PWM1_RISE_FALL_MASK,
267         },
268         [PWMB] = {
269                 .pwm_en = ASPEED_PTCR_CTRL_PWMB_EN,
270                 .ctrl_reg = ASPEED_PTCR_CTRL,
271                 .type_part1 = ASPEED_PTCR_CTRL_SET_PWMB_TYPE_PART1,
272                 .type_part2 = ASPEED_PTCR_CTRL_SET_PWMB_TYPE_PART2,
273                 .type_mask = ASPEED_PTCR_CTRL_SET_PWMB_TYPE_MASK,
274                 .duty_ctrl_rise_point = DUTY_CTRL_PWM2_RISE_POINT,
275                 .duty_ctrl_fall_point = DUTY_CTRL_PWM2_FALL_POINT,
276                 .duty_ctrl_reg = ASPEED_PTCR_DUTY0_CTRL,
277                 .duty_ctrl_rise_fall_mask = DUTY_CTRL_PWM2_RISE_FALL_MASK,
278         },
279         [PWMC] = {
280                 .pwm_en = ASPEED_PTCR_CTRL_PWMC_EN,
281                 .ctrl_reg = ASPEED_PTCR_CTRL,
282                 .type_part1 = ASPEED_PTCR_CTRL_SET_PWMC_TYPE_PART1,
283                 .type_part2 = ASPEED_PTCR_CTRL_SET_PWMC_TYPE_PART2,
284                 .type_mask = ASPEED_PTCR_CTRL_SET_PWMC_TYPE_MASK,
285                 .duty_ctrl_rise_point = DUTY_CTRL_PWM1_RISE_POINT,
286                 .duty_ctrl_fall_point = DUTY_CTRL_PWM1_FALL_POINT,
287                 .duty_ctrl_reg = ASPEED_PTCR_DUTY1_CTRL,
288                 .duty_ctrl_rise_fall_mask = DUTY_CTRL_PWM1_RISE_FALL_MASK,
289         },
290         [PWMD] = {
291                 .pwm_en = ASPEED_PTCR_CTRL_PWMD_EN,
292                 .ctrl_reg = ASPEED_PTCR_CTRL,
293                 .type_part1 = ASPEED_PTCR_CTRL_SET_PWMD_TYPE_PART1,
294                 .type_part2 = ASPEED_PTCR_CTRL_SET_PWMD_TYPE_PART2,
295                 .type_mask = ASPEED_PTCR_CTRL_SET_PWMD_TYPE_MASK,
296                 .duty_ctrl_rise_point = DUTY_CTRL_PWM2_RISE_POINT,
297                 .duty_ctrl_fall_point = DUTY_CTRL_PWM2_FALL_POINT,
298                 .duty_ctrl_reg = ASPEED_PTCR_DUTY1_CTRL,
299                 .duty_ctrl_rise_fall_mask = DUTY_CTRL_PWM2_RISE_FALL_MASK,
300         },
301         [PWME] = {
302                 .pwm_en = ASPEED_PTCR_CTRL_PWME_EN,
303                 .ctrl_reg = ASPEED_PTCR_CTRL_EXT,
304                 .type_part1 = ASPEED_PTCR_CTRL_SET_PWME_TYPE_PART1,
305                 .type_part2 = ASPEED_PTCR_CTRL_SET_PWME_TYPE_PART2,
306                 .type_mask = ASPEED_PTCR_CTRL_SET_PWME_TYPE_MASK,
307                 .duty_ctrl_rise_point = DUTY_CTRL_PWM1_RISE_POINT,
308                 .duty_ctrl_fall_point = DUTY_CTRL_PWM1_FALL_POINT,
309                 .duty_ctrl_reg = ASPEED_PTCR_DUTY2_CTRL,
310                 .duty_ctrl_rise_fall_mask = DUTY_CTRL_PWM1_RISE_FALL_MASK,
311         },
312         [PWMF] = {
313                 .pwm_en = ASPEED_PTCR_CTRL_PWMF_EN,
314                 .ctrl_reg = ASPEED_PTCR_CTRL_EXT,
315                 .type_part1 = ASPEED_PTCR_CTRL_SET_PWMF_TYPE_PART1,
316                 .type_part2 = ASPEED_PTCR_CTRL_SET_PWMF_TYPE_PART2,
317                 .type_mask = ASPEED_PTCR_CTRL_SET_PWMF_TYPE_MASK,
318                 .duty_ctrl_rise_point = DUTY_CTRL_PWM2_RISE_POINT,
319                 .duty_ctrl_fall_point = DUTY_CTRL_PWM2_FALL_POINT,
320                 .duty_ctrl_reg = ASPEED_PTCR_DUTY2_CTRL,
321                 .duty_ctrl_rise_fall_mask = DUTY_CTRL_PWM2_RISE_FALL_MASK,
322         },
323         [PWMG] = {
324                 .pwm_en = ASPEED_PTCR_CTRL_PWMG_EN,
325                 .ctrl_reg = ASPEED_PTCR_CTRL_EXT,
326                 .type_part1 = ASPEED_PTCR_CTRL_SET_PWMG_TYPE_PART1,
327                 .type_part2 = ASPEED_PTCR_CTRL_SET_PWMG_TYPE_PART2,
328                 .type_mask = ASPEED_PTCR_CTRL_SET_PWMG_TYPE_MASK,
329                 .duty_ctrl_rise_point = DUTY_CTRL_PWM1_RISE_POINT,
330                 .duty_ctrl_fall_point = DUTY_CTRL_PWM1_FALL_POINT,
331                 .duty_ctrl_reg = ASPEED_PTCR_DUTY3_CTRL,
332                 .duty_ctrl_rise_fall_mask = DUTY_CTRL_PWM1_RISE_FALL_MASK,
333         },
334         [PWMH] = {
335                 .pwm_en = ASPEED_PTCR_CTRL_PWMH_EN,
336                 .ctrl_reg = ASPEED_PTCR_CTRL_EXT,
337                 .type_part1 = ASPEED_PTCR_CTRL_SET_PWMH_TYPE_PART1,
338                 .type_part2 = ASPEED_PTCR_CTRL_SET_PWMH_TYPE_PART2,
339                 .type_mask = ASPEED_PTCR_CTRL_SET_PWMH_TYPE_MASK,
340                 .duty_ctrl_rise_point = DUTY_CTRL_PWM2_RISE_POINT,
341                 .duty_ctrl_fall_point = DUTY_CTRL_PWM2_FALL_POINT,
342                 .duty_ctrl_reg = ASPEED_PTCR_DUTY3_CTRL,
343                 .duty_ctrl_rise_fall_mask = DUTY_CTRL_PWM2_RISE_FALL_MASK,
344         }
345 };
346
347 static int regmap_aspeed_pwm_tacho_reg_write(void *context, unsigned int reg,
348                                              unsigned int val)
349 {
350         void __iomem *regs = (void __iomem *)context;
351
352         writel(val, regs + reg);
353         return 0;
354 }
355
356 static int regmap_aspeed_pwm_tacho_reg_read(void *context, unsigned int reg,
357                                             unsigned int *val)
358 {
359         void __iomem *regs = (void __iomem *)context;
360
361         *val = readl(regs + reg);
362         return 0;
363 }
364
365 static const struct regmap_config aspeed_pwm_tacho_regmap_config = {
366         .reg_bits = 32,
367         .val_bits = 32,
368         .reg_stride = 4,
369         .max_register = ASPEED_PTCR_TYPEO_LIMIT,
370         .reg_write = regmap_aspeed_pwm_tacho_reg_write,
371         .reg_read = regmap_aspeed_pwm_tacho_reg_read,
372         .fast_io = true,
373 };
374
375 static void aspeed_set_clock_enable(struct regmap *regmap, bool val)
376 {
377         regmap_update_bits(regmap, ASPEED_PTCR_CTRL,
378                            ASPEED_PTCR_CTRL_CLK_EN,
379                            val ? ASPEED_PTCR_CTRL_CLK_EN : 0);
380 }
381
382 static void aspeed_set_clock_source(struct regmap *regmap, int val)
383 {
384         regmap_update_bits(regmap, ASPEED_PTCR_CTRL,
385                            ASPEED_PTCR_CTRL_CLK_SRC,
386                            val ? ASPEED_PTCR_CTRL_CLK_SRC : 0);
387 }
388
389 static void aspeed_set_pwm_clock_values(struct regmap *regmap, u8 type,
390                                         u8 div_high, u8 div_low, u8 unit)
391 {
392         u32 reg_value = ((div_high << type_params[type].h_value) |
393                          (div_low << type_params[type].l_value) |
394                          (unit << type_params[type].unit_value));
395
396         regmap_update_bits(regmap, type_params[type].clk_ctrl_reg,
397                            type_params[type].clk_ctrl_mask, reg_value);
398 }
399
400 static void aspeed_set_pwm_port_enable(struct regmap *regmap, u8 pwm_port,
401                                        bool enable)
402 {
403         regmap_update_bits(regmap, pwm_port_params[pwm_port].ctrl_reg,
404                            pwm_port_params[pwm_port].pwm_en,
405                            enable ? pwm_port_params[pwm_port].pwm_en : 0);
406 }
407
408 static void aspeed_set_pwm_port_type(struct regmap *regmap,
409                                      u8 pwm_port, u8 type)
410 {
411         u32 reg_value = (type & 0x1) << pwm_port_params[pwm_port].type_part1;
412
413         reg_value |= (type & 0x2) << pwm_port_params[pwm_port].type_part2;
414
415         regmap_update_bits(regmap, pwm_port_params[pwm_port].ctrl_reg,
416                            pwm_port_params[pwm_port].type_mask, reg_value);
417 }
418
419 static void aspeed_set_pwm_port_duty_rising_falling(struct regmap *regmap,
420                                                     u8 pwm_port, u8 rising,
421                                                     u8 falling)
422 {
423         u32 reg_value = (rising <<
424                          pwm_port_params[pwm_port].duty_ctrl_rise_point);
425         reg_value |= (falling <<
426                       pwm_port_params[pwm_port].duty_ctrl_fall_point);
427
428         regmap_update_bits(regmap, pwm_port_params[pwm_port].duty_ctrl_reg,
429                            pwm_port_params[pwm_port].duty_ctrl_rise_fall_mask,
430                            reg_value);
431 }
432
433 static void aspeed_set_tacho_type_enable(struct regmap *regmap, u8 type,
434                                          bool enable)
435 {
436         regmap_update_bits(regmap, type_params[type].ctrl_reg,
437                            TYPE_CTRL_FAN_TYPE_EN,
438                            enable ? TYPE_CTRL_FAN_TYPE_EN : 0);
439 }
440
441 static void aspeed_set_tacho_type_values(struct regmap *regmap, u8 type,
442                                          u8 mode, u16 unit, u8 division)
443 {
444         u32 reg_value = ((mode << TYPE_CTRL_FAN_MODE) |
445                          (unit << TYPE_CTRL_FAN_PERIOD) |
446                          (division << TYPE_CTRL_FAN_DIVISION));
447
448         regmap_update_bits(regmap, type_params[type].ctrl_reg,
449                            TYPE_CTRL_FAN_MASK, reg_value);
450         regmap_update_bits(regmap, type_params[type].ctrl_reg1,
451                            TYPE_CTRL_FAN1_MASK, unit << 16);
452 }
453
454 static void aspeed_set_fan_tach_ch_enable(struct regmap *regmap, u8 fan_tach_ch,
455                                           bool enable)
456 {
457         regmap_update_bits(regmap, ASPEED_PTCR_CTRL,
458                            ASPEED_PTCR_CTRL_FAN_NUM_EN(fan_tach_ch),
459                            enable ?
460                            ASPEED_PTCR_CTRL_FAN_NUM_EN(fan_tach_ch) : 0);
461 }
462
463 static void aspeed_set_fan_tach_ch_source(struct regmap *regmap, u8 fan_tach_ch,
464                                           u8 fan_tach_ch_source)
465 {
466         u32 reg_value1 = ((fan_tach_ch_source & 0x3) <<
467                           TACH_PWM_SOURCE_BIT01(fan_tach_ch));
468         u32 reg_value2 = (((fan_tach_ch_source & 0x4) >> 2) <<
469                           TACH_PWM_SOURCE_BIT2(fan_tach_ch));
470
471         regmap_update_bits(regmap, ASPEED_PTCR_TACH_SOURCE,
472                            TACH_PWM_SOURCE_MASK_BIT01(fan_tach_ch),
473                            reg_value1);
474
475         regmap_update_bits(regmap, ASPEED_PTCR_TACH_SOURCE_EXT,
476                            TACH_PWM_SOURCE_MASK_BIT2(fan_tach_ch),
477                            reg_value2);
478 }
479
480 static void aspeed_set_pwm_port_fan_ctrl(struct aspeed_pwm_tacho_data *priv,
481                                          u8 index, u8 fan_ctrl)
482 {
483         u16 period, dc_time_on;
484
485         period = priv->type_pwm_clock_unit[priv->pwm_port_type[index]];
486         period += 1;
487         dc_time_on = (fan_ctrl * period) / PWM_MAX;
488
489         if (dc_time_on == 0) {
490                 aspeed_set_pwm_port_enable(priv->regmap, index, false);
491         } else {
492                 if (dc_time_on == period)
493                         dc_time_on = 0;
494
495                 aspeed_set_pwm_port_duty_rising_falling(priv->regmap, index, 0,
496                                                         dc_time_on);
497                 aspeed_set_pwm_port_enable(priv->regmap, index, true);
498         }
499 }
500
501 static u32 aspeed_get_fan_tach_ch_measure_period(struct aspeed_pwm_tacho_data
502                                                  *priv, u8 type)
503 {
504         u32 clk;
505         u16 tacho_unit;
506         u8 clk_unit, div_h, div_l, tacho_div;
507
508         clk = priv->clk_freq;
509         clk_unit = priv->type_pwm_clock_unit[type];
510         div_h = priv->type_pwm_clock_division_h[type];
511         div_h = 0x1 << div_h;
512         div_l = priv->type_pwm_clock_division_l[type];
513         if (div_l == 0)
514                 div_l = 1;
515         else
516                 div_l = div_l * 2;
517
518         tacho_unit = priv->type_fan_tach_unit[type];
519         tacho_div = priv->type_fan_tach_clock_division[type];
520
521         tacho_div = 0x4 << (tacho_div * 2);
522         return clk / (clk_unit * div_h * div_l * tacho_div * tacho_unit);
523 }
524
525 static int aspeed_get_fan_tach_ch_rpm(struct aspeed_pwm_tacho_data *priv,
526                                       u8 fan_tach_ch)
527 {
528         u32 raw_data, tach_div, clk_source, msec, usec, val;
529         u8 fan_tach_ch_source, type, mode, both;
530         int ret;
531
532         regmap_write(priv->regmap, ASPEED_PTCR_TRIGGER, 0);
533         regmap_write(priv->regmap, ASPEED_PTCR_TRIGGER, 0x1 << fan_tach_ch);
534
535         fan_tach_ch_source = priv->fan_tach_ch_source[fan_tach_ch];
536         type = priv->pwm_port_type[fan_tach_ch_source];
537
538         msec = (1000 / aspeed_get_fan_tach_ch_measure_period(priv, type));
539         usec = msec * 1000;
540
541         ret = regmap_read_poll_timeout(
542                 priv->regmap,
543                 ASPEED_PTCR_RESULT,
544                 val,
545                 (val & RESULT_STATUS_MASK),
546                 ASPEED_RPM_STATUS_SLEEP_USEC,
547                 usec);
548
549         /* return -ETIMEDOUT if we didn't get an answer. */
550         if (ret)
551                 return ret;
552
553         raw_data = val & RESULT_VALUE_MASK;
554         tach_div = priv->type_fan_tach_clock_division[type];
555         /*
556          * We need the mode to determine if the raw_data is double (from
557          * counting both edges).
558          */
559         mode = priv->type_fan_tach_mode[type];
560         both = (mode & BOTH_EDGES) ? 1 : 0;
561
562         tach_div = (0x4 << both) << (tach_div * 2);
563         clk_source = priv->clk_freq;
564
565         if (raw_data == 0)
566                 return 0;
567
568         return (clk_source * 60) / (2 * raw_data * tach_div);
569 }
570
571 static ssize_t pwm_store(struct device *dev, struct device_attribute *attr,
572                          const char *buf, size_t count)
573 {
574         struct sensor_device_attribute *sensor_attr = to_sensor_dev_attr(attr);
575         int index = sensor_attr->index;
576         int ret;
577         struct aspeed_pwm_tacho_data *priv = dev_get_drvdata(dev);
578         long fan_ctrl;
579
580         ret = kstrtol(buf, 10, &fan_ctrl);
581         if (ret != 0)
582                 return ret;
583
584         if (fan_ctrl < 0 || fan_ctrl > PWM_MAX)
585                 return -EINVAL;
586
587         if (priv->pwm_port_fan_ctrl[index] == fan_ctrl)
588                 return count;
589
590         priv->pwm_port_fan_ctrl[index] = fan_ctrl;
591         aspeed_set_pwm_port_fan_ctrl(priv, index, fan_ctrl);
592
593         return count;
594 }
595
596 static ssize_t pwm_show(struct device *dev, struct device_attribute *attr,
597                         char *buf)
598 {
599         struct sensor_device_attribute *sensor_attr = to_sensor_dev_attr(attr);
600         int index = sensor_attr->index;
601         struct aspeed_pwm_tacho_data *priv = dev_get_drvdata(dev);
602
603         return sprintf(buf, "%u\n", priv->pwm_port_fan_ctrl[index]);
604 }
605
606 static ssize_t rpm_show(struct device *dev, struct device_attribute *attr,
607                         char *buf)
608 {
609         struct sensor_device_attribute *sensor_attr = to_sensor_dev_attr(attr);
610         int index = sensor_attr->index;
611         int rpm;
612         struct aspeed_pwm_tacho_data *priv = dev_get_drvdata(dev);
613
614         rpm = aspeed_get_fan_tach_ch_rpm(priv, index);
615         if (rpm < 0)
616                 return rpm;
617
618         return sprintf(buf, "%d\n", rpm);
619 }
620
621 static umode_t pwm_is_visible(struct kobject *kobj,
622                               struct attribute *a, int index)
623 {
624         struct device *dev = kobj_to_dev(kobj);
625         struct aspeed_pwm_tacho_data *priv = dev_get_drvdata(dev);
626
627         if (!priv->pwm_present[index])
628                 return 0;
629         return a->mode;
630 }
631
632 static umode_t fan_dev_is_visible(struct kobject *kobj,
633                                   struct attribute *a, int index)
634 {
635         struct device *dev = kobj_to_dev(kobj);
636         struct aspeed_pwm_tacho_data *priv = dev_get_drvdata(dev);
637
638         if (!priv->fan_tach_present[index])
639                 return 0;
640         return a->mode;
641 }
642
643 static SENSOR_DEVICE_ATTR_RW(pwm1, pwm, 0);
644 static SENSOR_DEVICE_ATTR_RW(pwm2, pwm, 1);
645 static SENSOR_DEVICE_ATTR_RW(pwm3, pwm, 2);
646 static SENSOR_DEVICE_ATTR_RW(pwm4, pwm, 3);
647 static SENSOR_DEVICE_ATTR_RW(pwm5, pwm, 4);
648 static SENSOR_DEVICE_ATTR_RW(pwm6, pwm, 5);
649 static SENSOR_DEVICE_ATTR_RW(pwm7, pwm, 6);
650 static SENSOR_DEVICE_ATTR_RW(pwm8, pwm, 7);
651 static struct attribute *pwm_dev_attrs[] = {
652         &sensor_dev_attr_pwm1.dev_attr.attr,
653         &sensor_dev_attr_pwm2.dev_attr.attr,
654         &sensor_dev_attr_pwm3.dev_attr.attr,
655         &sensor_dev_attr_pwm4.dev_attr.attr,
656         &sensor_dev_attr_pwm5.dev_attr.attr,
657         &sensor_dev_attr_pwm6.dev_attr.attr,
658         &sensor_dev_attr_pwm7.dev_attr.attr,
659         &sensor_dev_attr_pwm8.dev_attr.attr,
660         NULL,
661 };
662
663 static const struct attribute_group pwm_dev_group = {
664         .attrs = pwm_dev_attrs,
665         .is_visible = pwm_is_visible,
666 };
667
668 static SENSOR_DEVICE_ATTR_RO(fan1_input, rpm, 0);
669 static SENSOR_DEVICE_ATTR_RO(fan2_input, rpm, 1);
670 static SENSOR_DEVICE_ATTR_RO(fan3_input, rpm, 2);
671 static SENSOR_DEVICE_ATTR_RO(fan4_input, rpm, 3);
672 static SENSOR_DEVICE_ATTR_RO(fan5_input, rpm, 4);
673 static SENSOR_DEVICE_ATTR_RO(fan6_input, rpm, 5);
674 static SENSOR_DEVICE_ATTR_RO(fan7_input, rpm, 6);
675 static SENSOR_DEVICE_ATTR_RO(fan8_input, rpm, 7);
676 static SENSOR_DEVICE_ATTR_RO(fan9_input, rpm, 8);
677 static SENSOR_DEVICE_ATTR_RO(fan10_input, rpm, 9);
678 static SENSOR_DEVICE_ATTR_RO(fan11_input, rpm, 10);
679 static SENSOR_DEVICE_ATTR_RO(fan12_input, rpm, 11);
680 static SENSOR_DEVICE_ATTR_RO(fan13_input, rpm, 12);
681 static SENSOR_DEVICE_ATTR_RO(fan14_input, rpm, 13);
682 static SENSOR_DEVICE_ATTR_RO(fan15_input, rpm, 14);
683 static SENSOR_DEVICE_ATTR_RO(fan16_input, rpm, 15);
684 static struct attribute *fan_dev_attrs[] = {
685         &sensor_dev_attr_fan1_input.dev_attr.attr,
686         &sensor_dev_attr_fan2_input.dev_attr.attr,
687         &sensor_dev_attr_fan3_input.dev_attr.attr,
688         &sensor_dev_attr_fan4_input.dev_attr.attr,
689         &sensor_dev_attr_fan5_input.dev_attr.attr,
690         &sensor_dev_attr_fan6_input.dev_attr.attr,
691         &sensor_dev_attr_fan7_input.dev_attr.attr,
692         &sensor_dev_attr_fan8_input.dev_attr.attr,
693         &sensor_dev_attr_fan9_input.dev_attr.attr,
694         &sensor_dev_attr_fan10_input.dev_attr.attr,
695         &sensor_dev_attr_fan11_input.dev_attr.attr,
696         &sensor_dev_attr_fan12_input.dev_attr.attr,
697         &sensor_dev_attr_fan13_input.dev_attr.attr,
698         &sensor_dev_attr_fan14_input.dev_attr.attr,
699         &sensor_dev_attr_fan15_input.dev_attr.attr,
700         &sensor_dev_attr_fan16_input.dev_attr.attr,
701         NULL
702 };
703
704 static const struct attribute_group fan_dev_group = {
705         .attrs = fan_dev_attrs,
706         .is_visible = fan_dev_is_visible,
707 };
708
709 /*
710  * The clock type is type M :
711  * The PWM frequency = 24MHz / (type M clock division L bit *
712  * type M clock division H bit * (type M PWM period bit + 1))
713  */
714 static void aspeed_create_type(struct aspeed_pwm_tacho_data *priv)
715 {
716         priv->type_pwm_clock_division_h[TYPEM] = M_PWM_DIV_H;
717         priv->type_pwm_clock_division_l[TYPEM] = M_PWM_DIV_L;
718         priv->type_pwm_clock_unit[TYPEM] = M_PWM_PERIOD;
719         aspeed_set_pwm_clock_values(priv->regmap, TYPEM, M_PWM_DIV_H,
720                                     M_PWM_DIV_L, M_PWM_PERIOD);
721         aspeed_set_tacho_type_enable(priv->regmap, TYPEM, true);
722         priv->type_fan_tach_clock_division[TYPEM] = M_TACH_CLK_DIV;
723         priv->type_fan_tach_unit[TYPEM] = M_TACH_UNIT;
724         priv->type_fan_tach_mode[TYPEM] = M_TACH_MODE;
725         aspeed_set_tacho_type_values(priv->regmap, TYPEM, M_TACH_MODE,
726                                      M_TACH_UNIT, M_TACH_CLK_DIV);
727 }
728
729 static void aspeed_create_pwm_port(struct aspeed_pwm_tacho_data *priv,
730                                    u8 pwm_port)
731 {
732         aspeed_set_pwm_port_enable(priv->regmap, pwm_port, true);
733         priv->pwm_present[pwm_port] = true;
734
735         priv->pwm_port_type[pwm_port] = TYPEM;
736         aspeed_set_pwm_port_type(priv->regmap, pwm_port, TYPEM);
737
738         priv->pwm_port_fan_ctrl[pwm_port] = INIT_FAN_CTRL;
739         aspeed_set_pwm_port_fan_ctrl(priv, pwm_port, INIT_FAN_CTRL);
740 }
741
742 static int aspeed_create_fan_tach_channel(struct device *dev,
743                                           struct aspeed_pwm_tacho_data *priv,
744                                           u8 *fan_tach_ch,
745                                           int count,
746                                           u8 pwm_source)
747 {
748         u8 val, index;
749
750         for (val = 0; val < count; val++) {
751                 index = fan_tach_ch[val];
752                 if (index >= MAX_ASPEED_FAN_TACH_CHANNELS) {
753                         dev_err(dev, "Invalid Fan Tach input channel %u\n.", index);
754                         return -EINVAL;
755                 }
756                 aspeed_set_fan_tach_ch_enable(priv->regmap, index, true);
757                 priv->fan_tach_present[index] = true;
758                 priv->fan_tach_ch_source[index] = pwm_source;
759                 aspeed_set_fan_tach_ch_source(priv->regmap, index, pwm_source);
760         }
761
762         return 0;
763 }
764
765 static int
766 aspeed_pwm_cz_get_max_state(struct thermal_cooling_device *tcdev,
767                             unsigned long *state)
768 {
769         struct aspeed_cooling_device *cdev = tcdev->devdata;
770
771         *state = cdev->max_state;
772
773         return 0;
774 }
775
776 static int
777 aspeed_pwm_cz_get_cur_state(struct thermal_cooling_device *tcdev,
778                             unsigned long *state)
779 {
780         struct aspeed_cooling_device *cdev = tcdev->devdata;
781
782         *state = cdev->cur_state;
783
784         return 0;
785 }
786
787 static int
788 aspeed_pwm_cz_set_cur_state(struct thermal_cooling_device *tcdev,
789                             unsigned long state)
790 {
791         struct aspeed_cooling_device *cdev = tcdev->devdata;
792
793         if (state > cdev->max_state)
794                 return -EINVAL;
795
796         cdev->cur_state = state;
797         cdev->priv->pwm_port_fan_ctrl[cdev->pwm_port] =
798                                         cdev->cooling_levels[cdev->cur_state];
799         aspeed_set_pwm_port_fan_ctrl(cdev->priv, cdev->pwm_port,
800                                      cdev->cooling_levels[cdev->cur_state]);
801
802         return 0;
803 }
804
805 static const struct thermal_cooling_device_ops aspeed_pwm_cool_ops = {
806         .get_max_state = aspeed_pwm_cz_get_max_state,
807         .get_cur_state = aspeed_pwm_cz_get_cur_state,
808         .set_cur_state = aspeed_pwm_cz_set_cur_state,
809 };
810
811 static int aspeed_create_pwm_cooling(struct device *dev,
812                                      struct device_node *child,
813                                      struct aspeed_pwm_tacho_data *priv,
814                                      u32 pwm_port, u8 num_levels)
815 {
816         int ret;
817         struct aspeed_cooling_device *cdev;
818
819         cdev = devm_kzalloc(dev, sizeof(*cdev), GFP_KERNEL);
820
821         if (!cdev)
822                 return -ENOMEM;
823
824         cdev->cooling_levels = devm_kzalloc(dev, num_levels, GFP_KERNEL);
825         if (!cdev->cooling_levels)
826                 return -ENOMEM;
827
828         cdev->max_state = num_levels - 1;
829         ret = of_property_read_u8_array(child, "cooling-levels",
830                                         cdev->cooling_levels,
831                                         num_levels);
832         if (ret) {
833                 dev_err(dev, "Property 'cooling-levels' cannot be read.\n");
834                 return ret;
835         }
836         snprintf(cdev->name, MAX_CDEV_NAME_LEN, "%pOFn%d", child, pwm_port);
837
838         cdev->tcdev = devm_thermal_of_cooling_device_register(dev, child,
839                                         cdev->name, cdev, &aspeed_pwm_cool_ops);
840         if (IS_ERR(cdev->tcdev))
841                 return PTR_ERR(cdev->tcdev);
842
843         cdev->priv = priv;
844         cdev->pwm_port = pwm_port;
845
846         priv->cdev[pwm_port] = cdev;
847
848         return 0;
849 }
850
851 static int aspeed_create_fan(struct device *dev,
852                              struct device_node *child,
853                              struct aspeed_pwm_tacho_data *priv)
854 {
855         u8 *fan_tach_ch;
856         u32 pwm_port;
857         int ret, count;
858
859         ret = of_property_read_u32(child, "reg", &pwm_port);
860         if (ret)
861                 return ret;
862         if (pwm_port >= ARRAY_SIZE(pwm_port_params))
863                 return -EINVAL;
864         aspeed_create_pwm_port(priv, (u8)pwm_port);
865
866         ret = of_property_count_u8_elems(child, "cooling-levels");
867
868         if (ret > 0) {
869                 ret = aspeed_create_pwm_cooling(dev, child, priv, pwm_port,
870                                                 ret);
871                 if (ret)
872                         return ret;
873         }
874
875         count = of_property_count_u8_elems(child, "aspeed,fan-tach-ch");
876         if (count < 1)
877                 return -EINVAL;
878         fan_tach_ch = devm_kcalloc(dev, count, sizeof(*fan_tach_ch),
879                                    GFP_KERNEL);
880         if (!fan_tach_ch)
881                 return -ENOMEM;
882         ret = of_property_read_u8_array(child, "aspeed,fan-tach-ch",
883                                         fan_tach_ch, count);
884         if (ret)
885                 return ret;
886
887         ret = aspeed_create_fan_tach_channel(dev, priv, fan_tach_ch, count, pwm_port);
888         if (ret)
889                 return ret;
890
891         return 0;
892 }
893
894 static void aspeed_pwm_tacho_remove(void *data)
895 {
896         struct aspeed_pwm_tacho_data *priv = data;
897
898         reset_control_assert(priv->rst);
899 }
900
901 static int aspeed_pwm_tacho_probe(struct platform_device *pdev)
902 {
903         struct device *dev = &pdev->dev;
904         struct device_node *np, *child;
905         struct aspeed_pwm_tacho_data *priv;
906         void __iomem *regs;
907         struct device *hwmon;
908         struct clk *clk;
909         int ret;
910
911         np = dev->of_node;
912         regs = devm_platform_ioremap_resource(pdev, 0);
913         if (IS_ERR(regs))
914                 return PTR_ERR(regs);
915         priv = devm_kzalloc(dev, sizeof(*priv), GFP_KERNEL);
916         if (!priv)
917                 return -ENOMEM;
918         priv->regmap = devm_regmap_init(dev, NULL, (__force void *)regs,
919                         &aspeed_pwm_tacho_regmap_config);
920         if (IS_ERR(priv->regmap))
921                 return PTR_ERR(priv->regmap);
922
923         priv->rst = devm_reset_control_get_exclusive(dev, NULL);
924         if (IS_ERR(priv->rst)) {
925                 dev_err(dev,
926                         "missing or invalid reset controller device tree entry");
927                 return PTR_ERR(priv->rst);
928         }
929         reset_control_deassert(priv->rst);
930
931         ret = devm_add_action_or_reset(dev, aspeed_pwm_tacho_remove, priv);
932         if (ret)
933                 return ret;
934
935         regmap_write(priv->regmap, ASPEED_PTCR_TACH_SOURCE, 0);
936         regmap_write(priv->regmap, ASPEED_PTCR_TACH_SOURCE_EXT, 0);
937
938         clk = devm_clk_get(dev, NULL);
939         if (IS_ERR(clk))
940                 return -ENODEV;
941         priv->clk_freq = clk_get_rate(clk);
942         aspeed_set_clock_enable(priv->regmap, true);
943         aspeed_set_clock_source(priv->regmap, 0);
944
945         aspeed_create_type(priv);
946
947         for_each_child_of_node(np, child) {
948                 ret = aspeed_create_fan(dev, child, priv);
949                 if (ret) {
950                         of_node_put(child);
951                         return ret;
952                 }
953         }
954
955         priv->groups[0] = &pwm_dev_group;
956         priv->groups[1] = &fan_dev_group;
957         priv->groups[2] = NULL;
958         hwmon = devm_hwmon_device_register_with_groups(dev,
959                                                        "aspeed_pwm_tacho",
960                                                        priv, priv->groups);
961         return PTR_ERR_OR_ZERO(hwmon);
962 }
963
964 static const struct of_device_id of_pwm_tacho_match_table[] = {
965         { .compatible = "aspeed,ast2400-pwm-tacho", },
966         { .compatible = "aspeed,ast2500-pwm-tacho", },
967         {},
968 };
969 MODULE_DEVICE_TABLE(of, of_pwm_tacho_match_table);
970
971 static struct platform_driver aspeed_pwm_tacho_driver = {
972         .probe          = aspeed_pwm_tacho_probe,
973         .driver         = {
974                 .name   = "aspeed_pwm_tacho",
975                 .of_match_table = of_pwm_tacho_match_table,
976         },
977 };
978
979 module_platform_driver(aspeed_pwm_tacho_driver);
980
981 MODULE_AUTHOR("Jaghathiswari Rankappagounder Natarajan <[email protected]>");
982 MODULE_DESCRIPTION("ASPEED PWM and Fan Tacho device driver");
983 MODULE_LICENSE("GPL");
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