18b9844d7SThomas Gleixner // SPDX-License-Identifier: GPL-2.0-or-later 2594fbe71SArnaud Ebalard /* 3594fbe71SArnaud Ebalard * g762 - Driver for the Global Mixed-mode Technology Inc. fan speed 4594fbe71SArnaud Ebalard * PWM controller chips from G762 family, i.e. G762 and G763 5594fbe71SArnaud Ebalard * 6594fbe71SArnaud Ebalard * Copyright (C) 2013, Arnaud EBALARD <arno@natisbad.org> 7594fbe71SArnaud Ebalard * 8594fbe71SArnaud Ebalard * This work is based on a basic version for 2.6.31 kernel developed 9594fbe71SArnaud Ebalard * by Olivier Mouchet for LaCie. Updates and correction have been 10594fbe71SArnaud Ebalard * performed to run on recent kernels. Additional features, like the 11594fbe71SArnaud Ebalard * ability to configure various characteristics via .dts file or 12594fbe71SArnaud Ebalard * board init file have been added. Detailed datasheet on which this 13594fbe71SArnaud Ebalard * development is based is available here: 14594fbe71SArnaud Ebalard * 15594fbe71SArnaud Ebalard * http://natisbad.org/NAS/refs/GMT_EDS-762_763-080710-0.2.pdf 16594fbe71SArnaud Ebalard * 17594fbe71SArnaud Ebalard * Headers from previous developments have been kept below: 18594fbe71SArnaud Ebalard * 19594fbe71SArnaud Ebalard * Copyright (c) 2009 LaCie 20594fbe71SArnaud Ebalard * 21594fbe71SArnaud Ebalard * Author: Olivier Mouchet <olivier.mouchet@gmail.com> 22594fbe71SArnaud Ebalard * 23594fbe71SArnaud Ebalard * based on g760a code written by Herbert Valerio Riedel <hvr@gnu.org> 24594fbe71SArnaud Ebalard * Copyright (C) 2007 Herbert Valerio Riedel <hvr@gnu.org> 25594fbe71SArnaud Ebalard * 26594fbe71SArnaud Ebalard * g762: minimal datasheet available at: 27594fbe71SArnaud Ebalard * http://www.gmt.com.tw/product/datasheet/EDS-762_3.pdf 28594fbe71SArnaud Ebalard */ 29594fbe71SArnaud Ebalard 30594fbe71SArnaud Ebalard #include <linux/device.h> 31594fbe71SArnaud Ebalard #include <linux/module.h> 32594fbe71SArnaud Ebalard #include <linux/init.h> 33594fbe71SArnaud Ebalard #include <linux/jiffies.h> 34594fbe71SArnaud Ebalard #include <linux/i2c.h> 35594fbe71SArnaud Ebalard #include <linux/hwmon.h> 36594fbe71SArnaud Ebalard #include <linux/hwmon-sysfs.h> 37594fbe71SArnaud Ebalard #include <linux/err.h> 38594fbe71SArnaud Ebalard #include <linux/mutex.h> 39594fbe71SArnaud Ebalard #include <linux/kernel.h> 40594fbe71SArnaud Ebalard #include <linux/clk.h> 41594fbe71SArnaud Ebalard #include <linux/of.h> 42594fbe71SArnaud Ebalard #include <linux/of_device.h> 43594fbe71SArnaud Ebalard #include <linux/platform_data/g762.h> 44594fbe71SArnaud Ebalard 45594fbe71SArnaud Ebalard #define DRVNAME "g762" 46594fbe71SArnaud Ebalard 47594fbe71SArnaud Ebalard static const struct i2c_device_id g762_id[] = { 48594fbe71SArnaud Ebalard { "g762", 0 }, 49594fbe71SArnaud Ebalard { "g763", 0 }, 50594fbe71SArnaud Ebalard { } 51594fbe71SArnaud Ebalard }; 52594fbe71SArnaud Ebalard MODULE_DEVICE_TABLE(i2c, g762_id); 53594fbe71SArnaud Ebalard 54594fbe71SArnaud Ebalard enum g762_regs { 55594fbe71SArnaud Ebalard G762_REG_SET_CNT = 0x00, 56594fbe71SArnaud Ebalard G762_REG_ACT_CNT = 0x01, 57594fbe71SArnaud Ebalard G762_REG_FAN_STA = 0x02, 58594fbe71SArnaud Ebalard G762_REG_SET_OUT = 0x03, 59594fbe71SArnaud Ebalard G762_REG_FAN_CMD1 = 0x04, 60594fbe71SArnaud Ebalard G762_REG_FAN_CMD2 = 0x05, 61594fbe71SArnaud Ebalard }; 62594fbe71SArnaud Ebalard 63594fbe71SArnaud Ebalard /* Config register bits */ 64594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD1_DET_FAN_FAIL 0x80 /* enable fan_fail signal */ 65594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD1_DET_FAN_OOC 0x40 /* enable fan_out_of_control */ 66594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD1_OUT_MODE 0x20 /* out mode: PWM or DC */ 67594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD1_FAN_MODE 0x10 /* fan mode: closed/open-loop */ 68594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD1_CLK_DIV_ID1 0x08 /* clock divisor value */ 69594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD1_CLK_DIV_ID0 0x04 70594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD1_PWM_POLARITY 0x02 /* PWM polarity */ 71594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD1_PULSE_PER_REV 0x01 /* pulse per fan revolution */ 72594fbe71SArnaud Ebalard 73594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD2_GEAR_MODE_1 0x08 /* fan gear mode */ 74594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD2_GEAR_MODE_0 0x04 75594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD2_FAN_STARTV_1 0x02 /* fan startup voltage */ 76594fbe71SArnaud Ebalard #define G762_REG_FAN_CMD2_FAN_STARTV_0 0x01 77594fbe71SArnaud Ebalard 78594fbe71SArnaud Ebalard #define G762_REG_FAN_STA_FAIL 0x02 /* fan fail */ 79594fbe71SArnaud Ebalard #define G762_REG_FAN_STA_OOC 0x01 /* fan out of control */ 80594fbe71SArnaud Ebalard 81594fbe71SArnaud Ebalard /* Config register values */ 82594fbe71SArnaud Ebalard #define G762_OUT_MODE_PWM 1 83594fbe71SArnaud Ebalard #define G762_OUT_MODE_DC 0 84594fbe71SArnaud Ebalard 85594fbe71SArnaud Ebalard #define G762_FAN_MODE_CLOSED_LOOP 2 86594fbe71SArnaud Ebalard #define G762_FAN_MODE_OPEN_LOOP 1 87594fbe71SArnaud Ebalard 88594fbe71SArnaud Ebalard #define G762_PWM_POLARITY_NEGATIVE 1 89594fbe71SArnaud Ebalard #define G762_PWM_POLARITY_POSITIVE 0 90594fbe71SArnaud Ebalard 91594fbe71SArnaud Ebalard /* Register data is read (and cached) at most once per second. */ 92594fbe71SArnaud Ebalard #define G762_UPDATE_INTERVAL HZ 93594fbe71SArnaud Ebalard 94594fbe71SArnaud Ebalard /* 95594fbe71SArnaud Ebalard * Extract pulse count per fan revolution value (2 or 4) from given 96594fbe71SArnaud Ebalard * FAN_CMD1 register value. 97594fbe71SArnaud Ebalard */ 98594fbe71SArnaud Ebalard #define G762_PULSE_FROM_REG(reg) \ 99594fbe71SArnaud Ebalard ((((reg) & G762_REG_FAN_CMD1_PULSE_PER_REV) + 1) << 1) 100594fbe71SArnaud Ebalard 101594fbe71SArnaud Ebalard /* 102594fbe71SArnaud Ebalard * Extract fan clock divisor (1, 2, 4 or 8) from given FAN_CMD1 103594fbe71SArnaud Ebalard * register value. 104594fbe71SArnaud Ebalard */ 105594fbe71SArnaud Ebalard #define G762_CLKDIV_FROM_REG(reg) \ 106594fbe71SArnaud Ebalard (1 << (((reg) & (G762_REG_FAN_CMD1_CLK_DIV_ID0 | \ 107594fbe71SArnaud Ebalard G762_REG_FAN_CMD1_CLK_DIV_ID1)) >> 2)) 108594fbe71SArnaud Ebalard 109594fbe71SArnaud Ebalard /* 110594fbe71SArnaud Ebalard * Extract fan gear mode multiplier value (0, 2 or 4) from given 111594fbe71SArnaud Ebalard * FAN_CMD2 register value. 112594fbe71SArnaud Ebalard */ 113594fbe71SArnaud Ebalard #define G762_GEARMULT_FROM_REG(reg) \ 114594fbe71SArnaud Ebalard (1 << (((reg) & (G762_REG_FAN_CMD2_GEAR_MODE_0 | \ 115594fbe71SArnaud Ebalard G762_REG_FAN_CMD2_GEAR_MODE_1)) >> 2)) 116594fbe71SArnaud Ebalard 117594fbe71SArnaud Ebalard struct g762_data { 118398e16dbSAxel Lin struct i2c_client *client; 119594fbe71SArnaud Ebalard struct clk *clk; 120594fbe71SArnaud Ebalard 121594fbe71SArnaud Ebalard /* update mutex */ 122594fbe71SArnaud Ebalard struct mutex update_lock; 123594fbe71SArnaud Ebalard 124594fbe71SArnaud Ebalard /* board specific parameters. */ 125594fbe71SArnaud Ebalard u32 clk_freq; 126594fbe71SArnaud Ebalard 127594fbe71SArnaud Ebalard /* g762 register cache */ 128594fbe71SArnaud Ebalard bool valid; 129594fbe71SArnaud Ebalard unsigned long last_updated; /* in jiffies */ 130594fbe71SArnaud Ebalard 131594fbe71SArnaud Ebalard u8 set_cnt; /* controls fan rotation speed in closed-loop mode */ 132594fbe71SArnaud Ebalard u8 act_cnt; /* provides access to current fan RPM value */ 133594fbe71SArnaud Ebalard u8 fan_sta; /* bit 0: set when actual fan speed is more than 134594fbe71SArnaud Ebalard * 25% outside requested fan speed 135594fbe71SArnaud Ebalard * bit 1: set when no transition occurs on fan 136594fbe71SArnaud Ebalard * pin for 0.7s 137594fbe71SArnaud Ebalard */ 138594fbe71SArnaud Ebalard u8 set_out; /* controls fan rotation speed in open-loop mode */ 139594fbe71SArnaud Ebalard u8 fan_cmd1; /* 0: FG_PLS_ID0 FG pulses count per revolution 140594fbe71SArnaud Ebalard * 0: 2 counts per revolution 141594fbe71SArnaud Ebalard * 1: 4 counts per revolution 142594fbe71SArnaud Ebalard * 1: PWM_POLARITY 1: negative_duty 143594fbe71SArnaud Ebalard * 0: positive_duty 144594fbe71SArnaud Ebalard * 2,3: [FG_CLOCK_ID0, FG_CLK_ID1] 145594fbe71SArnaud Ebalard * 00: Divide fan clock by 1 146594fbe71SArnaud Ebalard * 01: Divide fan clock by 2 147594fbe71SArnaud Ebalard * 10: Divide fan clock by 4 148594fbe71SArnaud Ebalard * 11: Divide fan clock by 8 149594fbe71SArnaud Ebalard * 4: FAN_MODE 1:closed-loop, 0:open-loop 150594fbe71SArnaud Ebalard * 5: OUT_MODE 1:PWM, 0:DC 151594fbe71SArnaud Ebalard * 6: DET_FAN_OOC enable "fan ooc" status 152594fbe71SArnaud Ebalard * 7: DET_FAN_FAIL enable "fan fail" status 153594fbe71SArnaud Ebalard */ 154594fbe71SArnaud Ebalard u8 fan_cmd2; /* 0,1: FAN_STARTV 0,1,2,3 -> 0,32,64,96 dac_code 155594fbe71SArnaud Ebalard * 2,3: FG_GEAR_MODE 156594fbe71SArnaud Ebalard * 00: multiplier = 1 157594fbe71SArnaud Ebalard * 01: multiplier = 2 158594fbe71SArnaud Ebalard * 10: multiplier = 4 159594fbe71SArnaud Ebalard * 4: Mask ALERT# (g763 only) 160594fbe71SArnaud Ebalard */ 161594fbe71SArnaud Ebalard }; 162594fbe71SArnaud Ebalard 163594fbe71SArnaud Ebalard /* 164594fbe71SArnaud Ebalard * Convert count value from fan controller register (FAN_SET_CNT) into fan 165594fbe71SArnaud Ebalard * speed RPM value. Note that the datasheet documents a basic formula; 166594fbe71SArnaud Ebalard * influence of additional parameters (fan clock divisor, fan gear mode) 167594fbe71SArnaud Ebalard * have been infered from examples in the datasheet and tests. 168594fbe71SArnaud Ebalard */ 169594fbe71SArnaud Ebalard static inline unsigned int rpm_from_cnt(u8 cnt, u32 clk_freq, u16 p, 170594fbe71SArnaud Ebalard u8 clk_div, u8 gear_mult) 171594fbe71SArnaud Ebalard { 172594fbe71SArnaud Ebalard if (cnt == 0xff) /* setting cnt to 255 stops the fan */ 173594fbe71SArnaud Ebalard return 0; 174594fbe71SArnaud Ebalard 175594fbe71SArnaud Ebalard return (clk_freq * 30 * gear_mult) / ((cnt ? cnt : 1) * p * clk_div); 176594fbe71SArnaud Ebalard } 177594fbe71SArnaud Ebalard 178594fbe71SArnaud Ebalard /* 179594fbe71SArnaud Ebalard * Convert fan RPM value from sysfs into count value for fan controller 180594fbe71SArnaud Ebalard * register (FAN_SET_CNT). 181594fbe71SArnaud Ebalard */ 1824fccd4a1SGuenter Roeck static inline unsigned char cnt_from_rpm(unsigned long rpm, u32 clk_freq, u16 p, 183594fbe71SArnaud Ebalard u8 clk_div, u8 gear_mult) 184594fbe71SArnaud Ebalard { 1854fccd4a1SGuenter Roeck unsigned long f1 = clk_freq * 30 * gear_mult; 1864fccd4a1SGuenter Roeck unsigned long f2 = p * clk_div; 1874fccd4a1SGuenter Roeck 188594fbe71SArnaud Ebalard if (!rpm) /* to stop the fan, set cnt to 255 */ 189594fbe71SArnaud Ebalard return 0xff; 190594fbe71SArnaud Ebalard 1914fccd4a1SGuenter Roeck rpm = clamp_val(rpm, f1 / (255 * f2), ULONG_MAX / f2); 1924fccd4a1SGuenter Roeck return DIV_ROUND_CLOSEST(f1, rpm * f2); 193594fbe71SArnaud Ebalard } 194594fbe71SArnaud Ebalard 195594fbe71SArnaud Ebalard /* helper to grab and cache data, at most one time per second */ 196594fbe71SArnaud Ebalard static struct g762_data *g762_update_client(struct device *dev) 197594fbe71SArnaud Ebalard { 198398e16dbSAxel Lin struct g762_data *data = dev_get_drvdata(dev); 199398e16dbSAxel Lin struct i2c_client *client = data->client; 200594fbe71SArnaud Ebalard int ret = 0; 201594fbe71SArnaud Ebalard 202594fbe71SArnaud Ebalard mutex_lock(&data->update_lock); 203594fbe71SArnaud Ebalard if (time_before(jiffies, data->last_updated + G762_UPDATE_INTERVAL) && 204594fbe71SArnaud Ebalard likely(data->valid)) 205594fbe71SArnaud Ebalard goto out; 206594fbe71SArnaud Ebalard 207594fbe71SArnaud Ebalard ret = i2c_smbus_read_byte_data(client, G762_REG_SET_CNT); 208594fbe71SArnaud Ebalard if (ret < 0) 209594fbe71SArnaud Ebalard goto out; 210594fbe71SArnaud Ebalard data->set_cnt = ret; 211594fbe71SArnaud Ebalard 212594fbe71SArnaud Ebalard ret = i2c_smbus_read_byte_data(client, G762_REG_ACT_CNT); 213594fbe71SArnaud Ebalard if (ret < 0) 214594fbe71SArnaud Ebalard goto out; 215594fbe71SArnaud Ebalard data->act_cnt = ret; 216594fbe71SArnaud Ebalard 217594fbe71SArnaud Ebalard ret = i2c_smbus_read_byte_data(client, G762_REG_FAN_STA); 218594fbe71SArnaud Ebalard if (ret < 0) 219594fbe71SArnaud Ebalard goto out; 220594fbe71SArnaud Ebalard data->fan_sta = ret; 221594fbe71SArnaud Ebalard 222594fbe71SArnaud Ebalard ret = i2c_smbus_read_byte_data(client, G762_REG_SET_OUT); 223594fbe71SArnaud Ebalard if (ret < 0) 224594fbe71SArnaud Ebalard goto out; 225594fbe71SArnaud Ebalard data->set_out = ret; 226594fbe71SArnaud Ebalard 227594fbe71SArnaud Ebalard ret = i2c_smbus_read_byte_data(client, G762_REG_FAN_CMD1); 228594fbe71SArnaud Ebalard if (ret < 0) 229594fbe71SArnaud Ebalard goto out; 230594fbe71SArnaud Ebalard data->fan_cmd1 = ret; 231594fbe71SArnaud Ebalard 232594fbe71SArnaud Ebalard ret = i2c_smbus_read_byte_data(client, G762_REG_FAN_CMD2); 233594fbe71SArnaud Ebalard if (ret < 0) 234594fbe71SArnaud Ebalard goto out; 235594fbe71SArnaud Ebalard data->fan_cmd2 = ret; 236594fbe71SArnaud Ebalard 237594fbe71SArnaud Ebalard data->last_updated = jiffies; 238594fbe71SArnaud Ebalard data->valid = true; 239594fbe71SArnaud Ebalard out: 240594fbe71SArnaud Ebalard mutex_unlock(&data->update_lock); 241594fbe71SArnaud Ebalard 242594fbe71SArnaud Ebalard if (ret < 0) /* upon error, encode it in return value */ 243594fbe71SArnaud Ebalard data = ERR_PTR(ret); 244594fbe71SArnaud Ebalard 245594fbe71SArnaud Ebalard return data; 246594fbe71SArnaud Ebalard } 247594fbe71SArnaud Ebalard 248594fbe71SArnaud Ebalard /* helpers for writing hardware parameters */ 249594fbe71SArnaud Ebalard 250594fbe71SArnaud Ebalard /* 251594fbe71SArnaud Ebalard * Set input clock frequency received on CLK pin of the chip. Accepted values 252594fbe71SArnaud Ebalard * are between 0 and 0xffffff. If zero is given, then default frequency 253594fbe71SArnaud Ebalard * (32,768Hz) is used. Note that clock frequency is a characteristic of the 254594fbe71SArnaud Ebalard * system but an internal parameter, i.e. value is not passed to the device. 255594fbe71SArnaud Ebalard */ 256594fbe71SArnaud Ebalard static int do_set_clk_freq(struct device *dev, unsigned long val) 257594fbe71SArnaud Ebalard { 258398e16dbSAxel Lin struct g762_data *data = dev_get_drvdata(dev); 259594fbe71SArnaud Ebalard 260594fbe71SArnaud Ebalard if (val > 0xffffff) 261594fbe71SArnaud Ebalard return -EINVAL; 262594fbe71SArnaud Ebalard if (!val) 263594fbe71SArnaud Ebalard val = 32768; 264594fbe71SArnaud Ebalard 265594fbe71SArnaud Ebalard data->clk_freq = val; 266594fbe71SArnaud Ebalard 267594fbe71SArnaud Ebalard return 0; 268594fbe71SArnaud Ebalard } 269594fbe71SArnaud Ebalard 270594fbe71SArnaud Ebalard /* Set pwm mode. Accepts either 0 (PWM mode) or 1 (DC mode) */ 271594fbe71SArnaud Ebalard static int do_set_pwm_mode(struct device *dev, unsigned long val) 272594fbe71SArnaud Ebalard { 273594fbe71SArnaud Ebalard struct g762_data *data = g762_update_client(dev); 274594fbe71SArnaud Ebalard int ret; 275594fbe71SArnaud Ebalard 276594fbe71SArnaud Ebalard if (IS_ERR(data)) 277594fbe71SArnaud Ebalard return PTR_ERR(data); 278594fbe71SArnaud Ebalard 279594fbe71SArnaud Ebalard mutex_lock(&data->update_lock); 280594fbe71SArnaud Ebalard switch (val) { 281594fbe71SArnaud Ebalard case G762_OUT_MODE_PWM: 282594fbe71SArnaud Ebalard data->fan_cmd1 |= G762_REG_FAN_CMD1_OUT_MODE; 283594fbe71SArnaud Ebalard break; 284594fbe71SArnaud Ebalard case G762_OUT_MODE_DC: 285594fbe71SArnaud Ebalard data->fan_cmd1 &= ~G762_REG_FAN_CMD1_OUT_MODE; 286594fbe71SArnaud Ebalard break; 287594fbe71SArnaud Ebalard default: 288594fbe71SArnaud Ebalard ret = -EINVAL; 289594fbe71SArnaud Ebalard goto out; 290594fbe71SArnaud Ebalard } 291398e16dbSAxel Lin ret = i2c_smbus_write_byte_data(data->client, G762_REG_FAN_CMD1, 292594fbe71SArnaud Ebalard data->fan_cmd1); 293594fbe71SArnaud Ebalard data->valid = false; 294594fbe71SArnaud Ebalard out: 295594fbe71SArnaud Ebalard mutex_unlock(&data->update_lock); 296594fbe71SArnaud Ebalard 297594fbe71SArnaud Ebalard return ret; 298594fbe71SArnaud Ebalard } 299594fbe71SArnaud Ebalard 300594fbe71SArnaud Ebalard /* Set fan clock divisor. Accepts either 1, 2, 4 or 8. */ 301594fbe71SArnaud Ebalard static int do_set_fan_div(struct device *dev, unsigned long val) 302594fbe71SArnaud Ebalard { 303594fbe71SArnaud Ebalard struct g762_data *data = g762_update_client(dev); 304594fbe71SArnaud Ebalard int ret; 305594fbe71SArnaud Ebalard 306594fbe71SArnaud Ebalard if (IS_ERR(data)) 307594fbe71SArnaud Ebalard return PTR_ERR(data); 308594fbe71SArnaud Ebalard 309594fbe71SArnaud Ebalard mutex_lock(&data->update_lock); 310594fbe71SArnaud Ebalard switch (val) { 311594fbe71SArnaud Ebalard case 1: 312594fbe71SArnaud Ebalard data->fan_cmd1 &= ~G762_REG_FAN_CMD1_CLK_DIV_ID0; 313594fbe71SArnaud Ebalard data->fan_cmd1 &= ~G762_REG_FAN_CMD1_CLK_DIV_ID1; 314594fbe71SArnaud Ebalard break; 315594fbe71SArnaud Ebalard case 2: 316594fbe71SArnaud Ebalard data->fan_cmd1 |= G762_REG_FAN_CMD1_CLK_DIV_ID0; 317594fbe71SArnaud Ebalard data->fan_cmd1 &= ~G762_REG_FAN_CMD1_CLK_DIV_ID1; 318594fbe71SArnaud Ebalard break; 319594fbe71SArnaud Ebalard case 4: 320594fbe71SArnaud Ebalard data->fan_cmd1 &= ~G762_REG_FAN_CMD1_CLK_DIV_ID0; 321594fbe71SArnaud Ebalard data->fan_cmd1 |= G762_REG_FAN_CMD1_CLK_DIV_ID1; 322594fbe71SArnaud Ebalard break; 323594fbe71SArnaud Ebalard case 8: 324594fbe71SArnaud Ebalard data->fan_cmd1 |= G762_REG_FAN_CMD1_CLK_DIV_ID0; 325594fbe71SArnaud Ebalard data->fan_cmd1 |= G762_REG_FAN_CMD1_CLK_DIV_ID1; 326594fbe71SArnaud Ebalard break; 327594fbe71SArnaud Ebalard default: 328594fbe71SArnaud Ebalard ret = -EINVAL; 329594fbe71SArnaud Ebalard goto out; 330594fbe71SArnaud Ebalard } 331398e16dbSAxel Lin ret = i2c_smbus_write_byte_data(data->client, G762_REG_FAN_CMD1, 332594fbe71SArnaud Ebalard data->fan_cmd1); 333594fbe71SArnaud Ebalard data->valid = false; 334594fbe71SArnaud Ebalard out: 335594fbe71SArnaud Ebalard mutex_unlock(&data->update_lock); 336594fbe71SArnaud Ebalard 337594fbe71SArnaud Ebalard return ret; 338594fbe71SArnaud Ebalard } 339594fbe71SArnaud Ebalard 340594fbe71SArnaud Ebalard /* Set fan gear mode. Accepts either 0, 1 or 2. */ 341594fbe71SArnaud Ebalard static int do_set_fan_gear_mode(struct device *dev, unsigned long val) 342594fbe71SArnaud Ebalard { 343594fbe71SArnaud Ebalard struct g762_data *data = g762_update_client(dev); 344594fbe71SArnaud Ebalard int ret; 345594fbe71SArnaud Ebalard 346594fbe71SArnaud Ebalard if (IS_ERR(data)) 347594fbe71SArnaud Ebalard return PTR_ERR(data); 348594fbe71SArnaud Ebalard 349594fbe71SArnaud Ebalard mutex_lock(&data->update_lock); 350594fbe71SArnaud Ebalard switch (val) { 351594fbe71SArnaud Ebalard case 0: 352594fbe71SArnaud Ebalard data->fan_cmd2 &= ~G762_REG_FAN_CMD2_GEAR_MODE_0; 353594fbe71SArnaud Ebalard data->fan_cmd2 &= ~G762_REG_FAN_CMD2_GEAR_MODE_1; 354594fbe71SArnaud Ebalard break; 355594fbe71SArnaud Ebalard case 1: 356594fbe71SArnaud Ebalard data->fan_cmd2 |= G762_REG_FAN_CMD2_GEAR_MODE_0; 357594fbe71SArnaud Ebalard data->fan_cmd2 &= ~G762_REG_FAN_CMD2_GEAR_MODE_1; 358594fbe71SArnaud Ebalard break; 359594fbe71SArnaud Ebalard case 2: 360594fbe71SArnaud Ebalard data->fan_cmd2 &= ~G762_REG_FAN_CMD2_GEAR_MODE_0; 361594fbe71SArnaud Ebalard data->fan_cmd2 |= G762_REG_FAN_CMD2_GEAR_MODE_1; 362594fbe71SArnaud Ebalard break; 363594fbe71SArnaud Ebalard default: 364594fbe71SArnaud Ebalard ret = -EINVAL; 365594fbe71SArnaud Ebalard goto out; 366594fbe71SArnaud Ebalard } 367398e16dbSAxel Lin ret = i2c_smbus_write_byte_data(data->client, G762_REG_FAN_CMD2, 368594fbe71SArnaud Ebalard data->fan_cmd2); 369594fbe71SArnaud Ebalard data->valid = false; 370594fbe71SArnaud Ebalard out: 371594fbe71SArnaud Ebalard mutex_unlock(&data->update_lock); 372594fbe71SArnaud Ebalard 373594fbe71SArnaud Ebalard return ret; 374594fbe71SArnaud Ebalard } 375594fbe71SArnaud Ebalard 376594fbe71SArnaud Ebalard /* Set number of fan pulses per revolution. Accepts either 2 or 4. */ 377594fbe71SArnaud Ebalard static int do_set_fan_pulses(struct device *dev, unsigned long val) 378594fbe71SArnaud Ebalard { 379594fbe71SArnaud Ebalard struct g762_data *data = g762_update_client(dev); 380594fbe71SArnaud Ebalard int ret; 381594fbe71SArnaud Ebalard 382594fbe71SArnaud Ebalard if (IS_ERR(data)) 383594fbe71SArnaud Ebalard return PTR_ERR(data); 384594fbe71SArnaud Ebalard 385594fbe71SArnaud Ebalard mutex_lock(&data->update_lock); 386594fbe71SArnaud Ebalard switch (val) { 387594fbe71SArnaud Ebalard case 2: 388594fbe71SArnaud Ebalard data->fan_cmd1 &= ~G762_REG_FAN_CMD1_PULSE_PER_REV; 389594fbe71SArnaud Ebalard break; 390594fbe71SArnaud Ebalard case 4: 391594fbe71SArnaud Ebalard data->fan_cmd1 |= G762_REG_FAN_CMD1_PULSE_PER_REV; 392594fbe71SArnaud Ebalard break; 393594fbe71SArnaud Ebalard default: 394594fbe71SArnaud Ebalard ret = -EINVAL; 395594fbe71SArnaud Ebalard goto out; 396594fbe71SArnaud Ebalard } 397398e16dbSAxel Lin ret = i2c_smbus_write_byte_data(data->client, G762_REG_FAN_CMD1, 398594fbe71SArnaud Ebalard data->fan_cmd1); 399594fbe71SArnaud Ebalard data->valid = false; 400594fbe71SArnaud Ebalard out: 401594fbe71SArnaud Ebalard mutex_unlock(&data->update_lock); 402594fbe71SArnaud Ebalard 403594fbe71SArnaud Ebalard return ret; 404594fbe71SArnaud Ebalard } 405594fbe71SArnaud Ebalard 406594fbe71SArnaud Ebalard /* Set fan mode. Accepts either 1 (open-loop) or 2 (closed-loop). */ 407594fbe71SArnaud Ebalard static int do_set_pwm_enable(struct device *dev, unsigned long val) 408594fbe71SArnaud Ebalard { 409594fbe71SArnaud Ebalard struct g762_data *data = g762_update_client(dev); 410594fbe71SArnaud Ebalard int ret; 411594fbe71SArnaud Ebalard 412594fbe71SArnaud Ebalard if (IS_ERR(data)) 413594fbe71SArnaud Ebalard return PTR_ERR(data); 414594fbe71SArnaud Ebalard 415594fbe71SArnaud Ebalard mutex_lock(&data->update_lock); 416594fbe71SArnaud Ebalard switch (val) { 417594fbe71SArnaud Ebalard case G762_FAN_MODE_CLOSED_LOOP: 418594fbe71SArnaud Ebalard data->fan_cmd1 |= G762_REG_FAN_CMD1_FAN_MODE; 419594fbe71SArnaud Ebalard break; 420594fbe71SArnaud Ebalard case G762_FAN_MODE_OPEN_LOOP: 421594fbe71SArnaud Ebalard data->fan_cmd1 &= ~G762_REG_FAN_CMD1_FAN_MODE; 422594fbe71SArnaud Ebalard /* 423594fbe71SArnaud Ebalard * BUG FIX: if SET_CNT register value is 255 then, for some 424594fbe71SArnaud Ebalard * unknown reason, fan will not rotate as expected, no matter 425594fbe71SArnaud Ebalard * the value of SET_OUT (to be specific, this seems to happen 426594fbe71SArnaud Ebalard * only in PWM mode). To workaround this bug, we give SET_CNT 427594fbe71SArnaud Ebalard * value of 254 if it is 255 when switching to open-loop. 428594fbe71SArnaud Ebalard */ 429594fbe71SArnaud Ebalard if (data->set_cnt == 0xff) 430398e16dbSAxel Lin i2c_smbus_write_byte_data(data->client, 431398e16dbSAxel Lin G762_REG_SET_CNT, 254); 432594fbe71SArnaud Ebalard break; 433594fbe71SArnaud Ebalard default: 434594fbe71SArnaud Ebalard ret = -EINVAL; 435594fbe71SArnaud Ebalard goto out; 436594fbe71SArnaud Ebalard } 437594fbe71SArnaud Ebalard 438398e16dbSAxel Lin ret = i2c_smbus_write_byte_data(data->client, G762_REG_FAN_CMD1, 439594fbe71SArnaud Ebalard data->fan_cmd1); 440594fbe71SArnaud Ebalard data->valid = false; 441594fbe71SArnaud Ebalard out: 442594fbe71SArnaud Ebalard mutex_unlock(&data->update_lock); 443594fbe71SArnaud Ebalard 444594fbe71SArnaud Ebalard return ret; 445594fbe71SArnaud Ebalard } 446594fbe71SArnaud Ebalard 447594fbe71SArnaud Ebalard /* Set PWM polarity. Accepts either 0 (positive duty) or 1 (negative duty) */ 448594fbe71SArnaud Ebalard static int do_set_pwm_polarity(struct device *dev, unsigned long val) 449594fbe71SArnaud Ebalard { 450594fbe71SArnaud Ebalard struct g762_data *data = g762_update_client(dev); 451594fbe71SArnaud Ebalard int ret; 452594fbe71SArnaud Ebalard 453594fbe71SArnaud Ebalard if (IS_ERR(data)) 454594fbe71SArnaud Ebalard return PTR_ERR(data); 455594fbe71SArnaud Ebalard 456594fbe71SArnaud Ebalard mutex_lock(&data->update_lock); 457594fbe71SArnaud Ebalard switch (val) { 458594fbe71SArnaud Ebalard case G762_PWM_POLARITY_POSITIVE: 459594fbe71SArnaud Ebalard data->fan_cmd1 &= ~G762_REG_FAN_CMD1_PWM_POLARITY; 460594fbe71SArnaud Ebalard break; 461594fbe71SArnaud Ebalard case G762_PWM_POLARITY_NEGATIVE: 462594fbe71SArnaud Ebalard data->fan_cmd1 |= G762_REG_FAN_CMD1_PWM_POLARITY; 463594fbe71SArnaud Ebalard break; 464594fbe71SArnaud Ebalard default: 465594fbe71SArnaud Ebalard ret = -EINVAL; 466594fbe71SArnaud Ebalard goto out; 467594fbe71SArnaud Ebalard } 468398e16dbSAxel Lin ret = i2c_smbus_write_byte_data(data->client, G762_REG_FAN_CMD1, 469594fbe71SArnaud Ebalard data->fan_cmd1); 470594fbe71SArnaud Ebalard data->valid = false; 471594fbe71SArnaud Ebalard out: 472594fbe71SArnaud Ebalard mutex_unlock(&data->update_lock); 473594fbe71SArnaud Ebalard 474594fbe71SArnaud Ebalard return ret; 475594fbe71SArnaud Ebalard } 476594fbe71SArnaud Ebalard 477594fbe71SArnaud Ebalard /* 478594fbe71SArnaud Ebalard * Set pwm value. Accepts values between 0 (stops the fan) and 479594fbe71SArnaud Ebalard * 255 (full speed). This only makes sense in open-loop mode. 480594fbe71SArnaud Ebalard */ 481594fbe71SArnaud Ebalard static int do_set_pwm(struct device *dev, unsigned long val) 482594fbe71SArnaud Ebalard { 483398e16dbSAxel Lin struct g762_data *data = dev_get_drvdata(dev); 484398e16dbSAxel Lin struct i2c_client *client = data->client; 485594fbe71SArnaud Ebalard int ret; 486594fbe71SArnaud Ebalard 487594fbe71SArnaud Ebalard if (val > 255) 488594fbe71SArnaud Ebalard return -EINVAL; 489594fbe71SArnaud Ebalard 490594fbe71SArnaud Ebalard mutex_lock(&data->update_lock); 491594fbe71SArnaud Ebalard ret = i2c_smbus_write_byte_data(client, G762_REG_SET_OUT, val); 492594fbe71SArnaud Ebalard data->valid = false; 493594fbe71SArnaud Ebalard mutex_unlock(&data->update_lock); 494594fbe71SArnaud Ebalard 495594fbe71SArnaud Ebalard return ret; 496594fbe71SArnaud Ebalard } 497594fbe71SArnaud Ebalard 498594fbe71SArnaud Ebalard /* 499594fbe71SArnaud Ebalard * Set fan RPM value. Can be called both in closed and open-loop mode 500594fbe71SArnaud Ebalard * but effect will only be seen after closed-loop mode is configured. 501594fbe71SArnaud Ebalard */ 502594fbe71SArnaud Ebalard static int do_set_fan_target(struct device *dev, unsigned long val) 503594fbe71SArnaud Ebalard { 504594fbe71SArnaud Ebalard struct g762_data *data = g762_update_client(dev); 505594fbe71SArnaud Ebalard int ret; 506594fbe71SArnaud Ebalard 507594fbe71SArnaud Ebalard if (IS_ERR(data)) 508594fbe71SArnaud Ebalard return PTR_ERR(data); 509594fbe71SArnaud Ebalard 510594fbe71SArnaud Ebalard mutex_lock(&data->update_lock); 511594fbe71SArnaud Ebalard data->set_cnt = cnt_from_rpm(val, data->clk_freq, 512594fbe71SArnaud Ebalard G762_PULSE_FROM_REG(data->fan_cmd1), 513594fbe71SArnaud Ebalard G762_CLKDIV_FROM_REG(data->fan_cmd1), 514594fbe71SArnaud Ebalard G762_GEARMULT_FROM_REG(data->fan_cmd2)); 515398e16dbSAxel Lin ret = i2c_smbus_write_byte_data(data->client, G762_REG_SET_CNT, 516594fbe71SArnaud Ebalard data->set_cnt); 517594fbe71SArnaud Ebalard data->valid = false; 518594fbe71SArnaud Ebalard mutex_unlock(&data->update_lock); 519594fbe71SArnaud Ebalard 520594fbe71SArnaud Ebalard return ret; 521594fbe71SArnaud Ebalard } 522594fbe71SArnaud Ebalard 523594fbe71SArnaud Ebalard /* Set fan startup voltage. Accepted values are either 0, 1, 2 or 3. */ 524594fbe71SArnaud Ebalard static int do_set_fan_startv(struct device *dev, unsigned long val) 525594fbe71SArnaud Ebalard { 526594fbe71SArnaud Ebalard struct g762_data *data = g762_update_client(dev); 527594fbe71SArnaud Ebalard int ret; 528594fbe71SArnaud Ebalard 529594fbe71SArnaud Ebalard if (IS_ERR(data)) 530594fbe71SArnaud Ebalard return PTR_ERR(data); 531594fbe71SArnaud Ebalard 532594fbe71SArnaud Ebalard mutex_lock(&data->update_lock); 533594fbe71SArnaud Ebalard switch (val) { 534594fbe71SArnaud Ebalard case 0: 535594fbe71SArnaud Ebalard data->fan_cmd2 &= ~G762_REG_FAN_CMD2_FAN_STARTV_0; 536594fbe71SArnaud Ebalard data->fan_cmd2 &= ~G762_REG_FAN_CMD2_FAN_STARTV_1; 537594fbe71SArnaud Ebalard break; 538594fbe71SArnaud Ebalard case 1: 539594fbe71SArnaud Ebalard data->fan_cmd2 |= G762_REG_FAN_CMD2_FAN_STARTV_0; 540594fbe71SArnaud Ebalard data->fan_cmd2 &= ~G762_REG_FAN_CMD2_FAN_STARTV_1; 541594fbe71SArnaud Ebalard break; 542594fbe71SArnaud Ebalard case 2: 543594fbe71SArnaud Ebalard data->fan_cmd2 &= ~G762_REG_FAN_CMD2_FAN_STARTV_0; 544594fbe71SArnaud Ebalard data->fan_cmd2 |= G762_REG_FAN_CMD2_FAN_STARTV_1; 545594fbe71SArnaud Ebalard break; 546594fbe71SArnaud Ebalard case 3: 547594fbe71SArnaud Ebalard data->fan_cmd2 |= G762_REG_FAN_CMD2_FAN_STARTV_0; 548594fbe71SArnaud Ebalard data->fan_cmd2 |= G762_REG_FAN_CMD2_FAN_STARTV_1; 549594fbe71SArnaud Ebalard break; 550594fbe71SArnaud Ebalard default: 551594fbe71SArnaud Ebalard ret = -EINVAL; 552594fbe71SArnaud Ebalard goto out; 553594fbe71SArnaud Ebalard } 554398e16dbSAxel Lin ret = i2c_smbus_write_byte_data(data->client, G762_REG_FAN_CMD2, 555594fbe71SArnaud Ebalard data->fan_cmd2); 556594fbe71SArnaud Ebalard data->valid = false; 557594fbe71SArnaud Ebalard out: 558594fbe71SArnaud Ebalard mutex_unlock(&data->update_lock); 559594fbe71SArnaud Ebalard 560594fbe71SArnaud Ebalard return ret; 561594fbe71SArnaud Ebalard } 562594fbe71SArnaud Ebalard 563594fbe71SArnaud Ebalard /* 564594fbe71SArnaud Ebalard * Helper to import hardware characteristics from .dts file and push 565594fbe71SArnaud Ebalard * those to the chip. 566594fbe71SArnaud Ebalard */ 567594fbe71SArnaud Ebalard 568594fbe71SArnaud Ebalard #ifdef CONFIG_OF 569adaa50b0SJingoo Han static const struct of_device_id g762_dt_match[] = { 570594fbe71SArnaud Ebalard { .compatible = "gmt,g762" }, 571594fbe71SArnaud Ebalard { .compatible = "gmt,g763" }, 572594fbe71SArnaud Ebalard { }, 573594fbe71SArnaud Ebalard }; 574de66b380SJavier Martinez Canillas MODULE_DEVICE_TABLE(of, g762_dt_match); 575594fbe71SArnaud Ebalard 576594fbe71SArnaud Ebalard /* 577594fbe71SArnaud Ebalard * Grab clock (a required property), enable it, get (fixed) clock frequency 578594fbe71SArnaud Ebalard * and store it. Note: upon success, clock has been prepared and enabled; it 579594fbe71SArnaud Ebalard * must later be unprepared and disabled (e.g. during module unloading) by a 580594fbe71SArnaud Ebalard * call to g762_of_clock_disable(). Note that a reference to clock is kept 581594fbe71SArnaud Ebalard * in our private data structure to be used in this function. 582594fbe71SArnaud Ebalard */ 58347591baaSHao Peng static void g762_of_clock_disable(void *data) 58447591baaSHao Peng { 58547591baaSHao Peng struct g762_data *g762 = data; 58647591baaSHao Peng 58747591baaSHao Peng clk_disable_unprepare(g762->clk); 58847591baaSHao Peng clk_put(g762->clk); 58947591baaSHao Peng } 59047591baaSHao Peng 591594fbe71SArnaud Ebalard static int g762_of_clock_enable(struct i2c_client *client) 592594fbe71SArnaud Ebalard { 593594fbe71SArnaud Ebalard struct g762_data *data; 594594fbe71SArnaud Ebalard unsigned long clk_freq; 595594fbe71SArnaud Ebalard struct clk *clk; 596594fbe71SArnaud Ebalard int ret; 597594fbe71SArnaud Ebalard 598594fbe71SArnaud Ebalard if (!client->dev.of_node) 599594fbe71SArnaud Ebalard return 0; 600594fbe71SArnaud Ebalard 601594fbe71SArnaud Ebalard clk = of_clk_get(client->dev.of_node, 0); 602594fbe71SArnaud Ebalard if (IS_ERR(clk)) { 603594fbe71SArnaud Ebalard dev_err(&client->dev, "failed to get clock\n"); 604594fbe71SArnaud Ebalard return PTR_ERR(clk); 605594fbe71SArnaud Ebalard } 606594fbe71SArnaud Ebalard 607594fbe71SArnaud Ebalard ret = clk_prepare_enable(clk); 608594fbe71SArnaud Ebalard if (ret) { 609594fbe71SArnaud Ebalard dev_err(&client->dev, "failed to enable clock\n"); 610594fbe71SArnaud Ebalard goto clk_put; 611594fbe71SArnaud Ebalard } 612594fbe71SArnaud Ebalard 613594fbe71SArnaud Ebalard clk_freq = clk_get_rate(clk); 614594fbe71SArnaud Ebalard ret = do_set_clk_freq(&client->dev, clk_freq); 615594fbe71SArnaud Ebalard if (ret) { 616594fbe71SArnaud Ebalard dev_err(&client->dev, "invalid clock freq %lu\n", clk_freq); 617594fbe71SArnaud Ebalard goto clk_unprep; 618594fbe71SArnaud Ebalard } 619594fbe71SArnaud Ebalard 620594fbe71SArnaud Ebalard data = i2c_get_clientdata(client); 621594fbe71SArnaud Ebalard data->clk = clk; 622594fbe71SArnaud Ebalard 623*92e58a87SKang Chen ret = devm_add_action(&client->dev, g762_of_clock_disable, data); 624*92e58a87SKang Chen if (ret) { 625*92e58a87SKang Chen dev_err(&client->dev, "failed to add disable clock action\n"); 626*92e58a87SKang Chen goto clk_unprep; 627*92e58a87SKang Chen } 628*92e58a87SKang Chen 629594fbe71SArnaud Ebalard return 0; 630594fbe71SArnaud Ebalard 631594fbe71SArnaud Ebalard clk_unprep: 632594fbe71SArnaud Ebalard clk_disable_unprepare(clk); 633594fbe71SArnaud Ebalard 634594fbe71SArnaud Ebalard clk_put: 635594fbe71SArnaud Ebalard clk_put(clk); 636594fbe71SArnaud Ebalard 637594fbe71SArnaud Ebalard return ret; 638594fbe71SArnaud Ebalard } 639594fbe71SArnaud Ebalard 640594fbe71SArnaud Ebalard static int g762_of_prop_import_one(struct i2c_client *client, 641594fbe71SArnaud Ebalard const char *pname, 642594fbe71SArnaud Ebalard int (*psetter)(struct device *dev, 643594fbe71SArnaud Ebalard unsigned long val)) 644594fbe71SArnaud Ebalard { 645fce9626cSAxel Lin int ret; 646594fbe71SArnaud Ebalard u32 pval; 647594fbe71SArnaud Ebalard 648fce9626cSAxel Lin if (of_property_read_u32(client->dev.of_node, pname, &pval)) 649594fbe71SArnaud Ebalard return 0; 650594fbe71SArnaud Ebalard 651594fbe71SArnaud Ebalard dev_dbg(&client->dev, "found %s (%d)\n", pname, pval); 652594fbe71SArnaud Ebalard ret = (*psetter)(&client->dev, pval); 653594fbe71SArnaud Ebalard if (ret) 654594fbe71SArnaud Ebalard dev_err(&client->dev, "unable to set %s (%d)\n", pname, pval); 655594fbe71SArnaud Ebalard 656594fbe71SArnaud Ebalard return ret; 657594fbe71SArnaud Ebalard } 658594fbe71SArnaud Ebalard 659594fbe71SArnaud Ebalard static int g762_of_prop_import(struct i2c_client *client) 660594fbe71SArnaud Ebalard { 661594fbe71SArnaud Ebalard int ret; 662594fbe71SArnaud Ebalard 663594fbe71SArnaud Ebalard if (!client->dev.of_node) 664594fbe71SArnaud Ebalard return 0; 665594fbe71SArnaud Ebalard 666594fbe71SArnaud Ebalard ret = g762_of_prop_import_one(client, "fan_gear_mode", 667594fbe71SArnaud Ebalard do_set_fan_gear_mode); 668594fbe71SArnaud Ebalard if (ret) 669594fbe71SArnaud Ebalard return ret; 670594fbe71SArnaud Ebalard 671594fbe71SArnaud Ebalard ret = g762_of_prop_import_one(client, "pwm_polarity", 672594fbe71SArnaud Ebalard do_set_pwm_polarity); 673594fbe71SArnaud Ebalard if (ret) 674594fbe71SArnaud Ebalard return ret; 675594fbe71SArnaud Ebalard 676594fbe71SArnaud Ebalard return g762_of_prop_import_one(client, "fan_startv", 677594fbe71SArnaud Ebalard do_set_fan_startv); 678594fbe71SArnaud Ebalard } 679594fbe71SArnaud Ebalard 680594fbe71SArnaud Ebalard #else 681594fbe71SArnaud Ebalard static int g762_of_prop_import(struct i2c_client *client) 682594fbe71SArnaud Ebalard { 683594fbe71SArnaud Ebalard return 0; 684594fbe71SArnaud Ebalard } 685594fbe71SArnaud Ebalard 686594fbe71SArnaud Ebalard static int g762_of_clock_enable(struct i2c_client *client) 687594fbe71SArnaud Ebalard { 688594fbe71SArnaud Ebalard return 0; 689594fbe71SArnaud Ebalard } 690594fbe71SArnaud Ebalard #endif 691594fbe71SArnaud Ebalard 692594fbe71SArnaud Ebalard /* 693594fbe71SArnaud Ebalard * Helper to import hardware characteristics from .dts file and push 694594fbe71SArnaud Ebalard * those to the chip. 695594fbe71SArnaud Ebalard */ 696594fbe71SArnaud Ebalard 697594fbe71SArnaud Ebalard static int g762_pdata_prop_import(struct i2c_client *client) 698594fbe71SArnaud Ebalard { 699a8b3a3a5SJingoo Han struct g762_platform_data *pdata = dev_get_platdata(&client->dev); 700594fbe71SArnaud Ebalard int ret; 701594fbe71SArnaud Ebalard 702594fbe71SArnaud Ebalard if (!pdata) 703594fbe71SArnaud Ebalard return 0; 704594fbe71SArnaud Ebalard 705594fbe71SArnaud Ebalard ret = do_set_fan_gear_mode(&client->dev, pdata->fan_gear_mode); 706594fbe71SArnaud Ebalard if (ret) 707594fbe71SArnaud Ebalard return ret; 708594fbe71SArnaud Ebalard 709594fbe71SArnaud Ebalard ret = do_set_pwm_polarity(&client->dev, pdata->pwm_polarity); 710594fbe71SArnaud Ebalard if (ret) 711594fbe71SArnaud Ebalard return ret; 712594fbe71SArnaud Ebalard 713594fbe71SArnaud Ebalard ret = do_set_fan_startv(&client->dev, pdata->fan_startv); 714594fbe71SArnaud Ebalard if (ret) 715594fbe71SArnaud Ebalard return ret; 716594fbe71SArnaud Ebalard 717594fbe71SArnaud Ebalard return do_set_clk_freq(&client->dev, pdata->clk_freq); 718594fbe71SArnaud Ebalard } 719594fbe71SArnaud Ebalard 720594fbe71SArnaud Ebalard /* 721594fbe71SArnaud Ebalard * sysfs attributes 722594fbe71SArnaud Ebalard */ 723594fbe71SArnaud Ebalard 724594fbe71SArnaud Ebalard /* 725594fbe71SArnaud Ebalard * Read function for fan1_input sysfs file. Return current fan RPM value, or 726594fbe71SArnaud Ebalard * 0 if fan is out of control. 727594fbe71SArnaud Ebalard */ 728251f65cdSJulia Lawall static ssize_t fan1_input_show(struct device *dev, 729251f65cdSJulia Lawall struct device_attribute *da, char *buf) 730594fbe71SArnaud Ebalard { 731594fbe71SArnaud Ebalard struct g762_data *data = g762_update_client(dev); 732594fbe71SArnaud Ebalard unsigned int rpm = 0; 733594fbe71SArnaud Ebalard 734594fbe71SArnaud Ebalard if (IS_ERR(data)) 735594fbe71SArnaud Ebalard return PTR_ERR(data); 736594fbe71SArnaud Ebalard 737594fbe71SArnaud Ebalard mutex_lock(&data->update_lock); 738594fbe71SArnaud Ebalard /* reverse logic: fan out of control reporting is enabled low */ 739594fbe71SArnaud Ebalard if (data->fan_sta & G762_REG_FAN_STA_OOC) { 740594fbe71SArnaud Ebalard rpm = rpm_from_cnt(data->act_cnt, data->clk_freq, 741594fbe71SArnaud Ebalard G762_PULSE_FROM_REG(data->fan_cmd1), 742594fbe71SArnaud Ebalard G762_CLKDIV_FROM_REG(data->fan_cmd1), 743594fbe71SArnaud Ebalard G762_GEARMULT_FROM_REG(data->fan_cmd2)); 744594fbe71SArnaud Ebalard } 745594fbe71SArnaud Ebalard mutex_unlock(&data->update_lock); 746594fbe71SArnaud Ebalard 747594fbe71SArnaud Ebalard return sprintf(buf, "%u\n", rpm); 748594fbe71SArnaud Ebalard } 749594fbe71SArnaud Ebalard 750594fbe71SArnaud Ebalard /* 751594fbe71SArnaud Ebalard * Read and write functions for pwm1_mode sysfs file. Get and set fan speed 752594fbe71SArnaud Ebalard * control mode i.e. PWM (1) or DC (0). 753594fbe71SArnaud Ebalard */ 754251f65cdSJulia Lawall static ssize_t pwm1_mode_show(struct device *dev, struct device_attribute *da, 755594fbe71SArnaud Ebalard char *buf) 756594fbe71SArnaud Ebalard { 757594fbe71SArnaud Ebalard struct g762_data *data = g762_update_client(dev); 758594fbe71SArnaud Ebalard 759594fbe71SArnaud Ebalard if (IS_ERR(data)) 760594fbe71SArnaud Ebalard return PTR_ERR(data); 761594fbe71SArnaud Ebalard 762594fbe71SArnaud Ebalard return sprintf(buf, "%d\n", 763594fbe71SArnaud Ebalard !!(data->fan_cmd1 & G762_REG_FAN_CMD1_OUT_MODE)); 764594fbe71SArnaud Ebalard } 765594fbe71SArnaud Ebalard 766251f65cdSJulia Lawall static ssize_t pwm1_mode_store(struct device *dev, 767251f65cdSJulia Lawall struct device_attribute *da, const char *buf, 768251f65cdSJulia Lawall size_t count) 769594fbe71SArnaud Ebalard { 770594fbe71SArnaud Ebalard unsigned long val; 771594fbe71SArnaud Ebalard int ret; 772594fbe71SArnaud Ebalard 773594fbe71SArnaud Ebalard if (kstrtoul(buf, 10, &val)) 774594fbe71SArnaud Ebalard return -EINVAL; 775594fbe71SArnaud Ebalard 776594fbe71SArnaud Ebalard ret = do_set_pwm_mode(dev, val); 777594fbe71SArnaud Ebalard if (ret < 0) 778594fbe71SArnaud Ebalard return ret; 779594fbe71SArnaud Ebalard 780594fbe71SArnaud Ebalard return count; 781594fbe71SArnaud Ebalard } 782594fbe71SArnaud Ebalard 783594fbe71SArnaud Ebalard /* 784594fbe71SArnaud Ebalard * Read and write functions for fan1_div sysfs file. Get and set fan 785594fbe71SArnaud Ebalard * controller prescaler value 786594fbe71SArnaud Ebalard */ 787251f65cdSJulia Lawall static ssize_t fan1_div_show(struct device *dev, struct device_attribute *da, 788251f65cdSJulia Lawall char *buf) 789594fbe71SArnaud Ebalard { 790594fbe71SArnaud Ebalard struct g762_data *data = g762_update_client(dev); 791594fbe71SArnaud Ebalard 792594fbe71SArnaud Ebalard if (IS_ERR(data)) 793594fbe71SArnaud Ebalard return PTR_ERR(data); 794594fbe71SArnaud Ebalard 795594fbe71SArnaud Ebalard return sprintf(buf, "%d\n", G762_CLKDIV_FROM_REG(data->fan_cmd1)); 796594fbe71SArnaud Ebalard } 797594fbe71SArnaud Ebalard 798251f65cdSJulia Lawall static ssize_t fan1_div_store(struct device *dev, struct device_attribute *da, 799594fbe71SArnaud Ebalard const char *buf, size_t count) 800594fbe71SArnaud Ebalard { 801594fbe71SArnaud Ebalard unsigned long val; 802594fbe71SArnaud Ebalard int ret; 803594fbe71SArnaud Ebalard 804594fbe71SArnaud Ebalard if (kstrtoul(buf, 10, &val)) 805594fbe71SArnaud Ebalard return -EINVAL; 806594fbe71SArnaud Ebalard 807594fbe71SArnaud Ebalard ret = do_set_fan_div(dev, val); 808594fbe71SArnaud Ebalard if (ret < 0) 809594fbe71SArnaud Ebalard return ret; 810594fbe71SArnaud Ebalard 811594fbe71SArnaud Ebalard return count; 812594fbe71SArnaud Ebalard } 813594fbe71SArnaud Ebalard 814594fbe71SArnaud Ebalard /* 815594fbe71SArnaud Ebalard * Read and write functions for fan1_pulses sysfs file. Get and set number 816594fbe71SArnaud Ebalard * of tachometer pulses per fan revolution. 817594fbe71SArnaud Ebalard */ 818251f65cdSJulia Lawall static ssize_t fan1_pulses_show(struct device *dev, 819594fbe71SArnaud Ebalard struct device_attribute *da, char *buf) 820594fbe71SArnaud Ebalard { 821594fbe71SArnaud Ebalard struct g762_data *data = g762_update_client(dev); 822594fbe71SArnaud Ebalard 823594fbe71SArnaud Ebalard if (IS_ERR(data)) 824594fbe71SArnaud Ebalard return PTR_ERR(data); 825594fbe71SArnaud Ebalard 826594fbe71SArnaud Ebalard return sprintf(buf, "%d\n", G762_PULSE_FROM_REG(data->fan_cmd1)); 827594fbe71SArnaud Ebalard } 828594fbe71SArnaud Ebalard 829251f65cdSJulia Lawall static ssize_t fan1_pulses_store(struct device *dev, 830251f65cdSJulia Lawall struct device_attribute *da, const char *buf, 831251f65cdSJulia Lawall size_t count) 832594fbe71SArnaud Ebalard { 833594fbe71SArnaud Ebalard unsigned long val; 834594fbe71SArnaud Ebalard int ret; 835594fbe71SArnaud Ebalard 836594fbe71SArnaud Ebalard if (kstrtoul(buf, 10, &val)) 837594fbe71SArnaud Ebalard return -EINVAL; 838594fbe71SArnaud Ebalard 839594fbe71SArnaud Ebalard ret = do_set_fan_pulses(dev, val); 840594fbe71SArnaud Ebalard if (ret < 0) 841594fbe71SArnaud Ebalard return ret; 842594fbe71SArnaud Ebalard 843594fbe71SArnaud Ebalard return count; 844594fbe71SArnaud Ebalard } 845594fbe71SArnaud Ebalard 846594fbe71SArnaud Ebalard /* 847594fbe71SArnaud Ebalard * Read and write functions for pwm1_enable. Get and set fan speed control mode 848594fbe71SArnaud Ebalard * (i.e. closed or open-loop). 849594fbe71SArnaud Ebalard * 850594fbe71SArnaud Ebalard * Following documentation about hwmon's sysfs interface, a pwm1_enable node 8514091fb95SMasahiro Yamada * should accept the following: 852594fbe71SArnaud Ebalard * 853594fbe71SArnaud Ebalard * 0 : no fan speed control (i.e. fan at full speed) 854594fbe71SArnaud Ebalard * 1 : manual fan speed control enabled (use pwm[1-*]) (open-loop) 855594fbe71SArnaud Ebalard * 2+: automatic fan speed control enabled (use fan[1-*]_target) (closed-loop) 856594fbe71SArnaud Ebalard * 857594fbe71SArnaud Ebalard * but we do not accept 0 as this mode is not natively supported by the chip 858594fbe71SArnaud Ebalard * and it is not emulated by g762 driver. -EINVAL is returned in this case. 859594fbe71SArnaud Ebalard */ 860251f65cdSJulia Lawall static ssize_t pwm1_enable_show(struct device *dev, 861594fbe71SArnaud Ebalard struct device_attribute *da, char *buf) 862594fbe71SArnaud Ebalard { 863594fbe71SArnaud Ebalard struct g762_data *data = g762_update_client(dev); 864594fbe71SArnaud Ebalard 865594fbe71SArnaud Ebalard if (IS_ERR(data)) 866594fbe71SArnaud Ebalard return PTR_ERR(data); 867594fbe71SArnaud Ebalard 868594fbe71SArnaud Ebalard return sprintf(buf, "%d\n", 869594fbe71SArnaud Ebalard (!!(data->fan_cmd1 & G762_REG_FAN_CMD1_FAN_MODE)) + 1); 870594fbe71SArnaud Ebalard } 871594fbe71SArnaud Ebalard 872251f65cdSJulia Lawall static ssize_t pwm1_enable_store(struct device *dev, 873251f65cdSJulia Lawall struct device_attribute *da, const char *buf, 874251f65cdSJulia Lawall size_t count) 875594fbe71SArnaud Ebalard { 876594fbe71SArnaud Ebalard unsigned long val; 877594fbe71SArnaud Ebalard int ret; 878594fbe71SArnaud Ebalard 879594fbe71SArnaud Ebalard if (kstrtoul(buf, 10, &val)) 880594fbe71SArnaud Ebalard return -EINVAL; 881594fbe71SArnaud Ebalard 882594fbe71SArnaud Ebalard ret = do_set_pwm_enable(dev, val); 883594fbe71SArnaud Ebalard if (ret < 0) 884594fbe71SArnaud Ebalard return ret; 885594fbe71SArnaud Ebalard 886594fbe71SArnaud Ebalard return count; 887594fbe71SArnaud Ebalard } 888594fbe71SArnaud Ebalard 889594fbe71SArnaud Ebalard /* 890594fbe71SArnaud Ebalard * Read and write functions for pwm1 sysfs file. Get and set pwm value 891594fbe71SArnaud Ebalard * (which affects fan speed) in open-loop mode. 0 stops the fan and 255 892594fbe71SArnaud Ebalard * makes it run at full speed. 893594fbe71SArnaud Ebalard */ 894251f65cdSJulia Lawall static ssize_t pwm1_show(struct device *dev, struct device_attribute *da, 895594fbe71SArnaud Ebalard char *buf) 896594fbe71SArnaud Ebalard { 897594fbe71SArnaud Ebalard struct g762_data *data = g762_update_client(dev); 898594fbe71SArnaud Ebalard 899594fbe71SArnaud Ebalard if (IS_ERR(data)) 900594fbe71SArnaud Ebalard return PTR_ERR(data); 901594fbe71SArnaud Ebalard 902594fbe71SArnaud Ebalard return sprintf(buf, "%d\n", data->set_out); 903594fbe71SArnaud Ebalard } 904594fbe71SArnaud Ebalard 905251f65cdSJulia Lawall static ssize_t pwm1_store(struct device *dev, struct device_attribute *da, 906594fbe71SArnaud Ebalard const char *buf, size_t count) 907594fbe71SArnaud Ebalard { 908594fbe71SArnaud Ebalard unsigned long val; 909594fbe71SArnaud Ebalard int ret; 910594fbe71SArnaud Ebalard 911594fbe71SArnaud Ebalard if (kstrtoul(buf, 10, &val)) 912594fbe71SArnaud Ebalard return -EINVAL; 913594fbe71SArnaud Ebalard 914594fbe71SArnaud Ebalard ret = do_set_pwm(dev, val); 915594fbe71SArnaud Ebalard if (ret < 0) 916594fbe71SArnaud Ebalard return ret; 917594fbe71SArnaud Ebalard 918594fbe71SArnaud Ebalard return count; 919594fbe71SArnaud Ebalard } 920594fbe71SArnaud Ebalard 921594fbe71SArnaud Ebalard /* 922594fbe71SArnaud Ebalard * Read and write function for fan1_target sysfs file. Get/set the fan speed in 923594fbe71SArnaud Ebalard * closed-loop mode. Speed is given as a RPM value; then the chip will regulate 924594fbe71SArnaud Ebalard * the fan speed using pulses from fan tachometer. 925594fbe71SArnaud Ebalard * 926594fbe71SArnaud Ebalard * Refer to rpm_from_cnt() implementation above to get info about count number 927594fbe71SArnaud Ebalard * calculation. 928594fbe71SArnaud Ebalard * 929594fbe71SArnaud Ebalard * Also note that due to rounding errors it is possible that you don't read 930594fbe71SArnaud Ebalard * back exactly the value you have set. 931594fbe71SArnaud Ebalard */ 932251f65cdSJulia Lawall static ssize_t fan1_target_show(struct device *dev, 933251f65cdSJulia Lawall struct device_attribute *da, char *buf) 934594fbe71SArnaud Ebalard { 935594fbe71SArnaud Ebalard struct g762_data *data = g762_update_client(dev); 936594fbe71SArnaud Ebalard unsigned int rpm; 937594fbe71SArnaud Ebalard 938594fbe71SArnaud Ebalard if (IS_ERR(data)) 939594fbe71SArnaud Ebalard return PTR_ERR(data); 940594fbe71SArnaud Ebalard 941594fbe71SArnaud Ebalard mutex_lock(&data->update_lock); 942594fbe71SArnaud Ebalard rpm = rpm_from_cnt(data->set_cnt, data->clk_freq, 943594fbe71SArnaud Ebalard G762_PULSE_FROM_REG(data->fan_cmd1), 944594fbe71SArnaud Ebalard G762_CLKDIV_FROM_REG(data->fan_cmd1), 945594fbe71SArnaud Ebalard G762_GEARMULT_FROM_REG(data->fan_cmd2)); 946594fbe71SArnaud Ebalard mutex_unlock(&data->update_lock); 947594fbe71SArnaud Ebalard 948594fbe71SArnaud Ebalard return sprintf(buf, "%u\n", rpm); 949594fbe71SArnaud Ebalard } 950594fbe71SArnaud Ebalard 951251f65cdSJulia Lawall static ssize_t fan1_target_store(struct device *dev, 952251f65cdSJulia Lawall struct device_attribute *da, const char *buf, 953251f65cdSJulia Lawall size_t count) 954594fbe71SArnaud Ebalard { 955594fbe71SArnaud Ebalard unsigned long val; 956594fbe71SArnaud Ebalard int ret; 957594fbe71SArnaud Ebalard 958594fbe71SArnaud Ebalard if (kstrtoul(buf, 10, &val)) 959594fbe71SArnaud Ebalard return -EINVAL; 960594fbe71SArnaud Ebalard 961594fbe71SArnaud Ebalard ret = do_set_fan_target(dev, val); 962594fbe71SArnaud Ebalard if (ret < 0) 963594fbe71SArnaud Ebalard return ret; 964594fbe71SArnaud Ebalard 965594fbe71SArnaud Ebalard return count; 966594fbe71SArnaud Ebalard } 967594fbe71SArnaud Ebalard 968594fbe71SArnaud Ebalard /* read function for fan1_fault sysfs file. */ 969251f65cdSJulia Lawall static ssize_t fan1_fault_show(struct device *dev, struct device_attribute *da, 970594fbe71SArnaud Ebalard char *buf) 971594fbe71SArnaud Ebalard { 972594fbe71SArnaud Ebalard struct g762_data *data = g762_update_client(dev); 973594fbe71SArnaud Ebalard 974594fbe71SArnaud Ebalard if (IS_ERR(data)) 975594fbe71SArnaud Ebalard return PTR_ERR(data); 976594fbe71SArnaud Ebalard 977594fbe71SArnaud Ebalard return sprintf(buf, "%u\n", !!(data->fan_sta & G762_REG_FAN_STA_FAIL)); 978594fbe71SArnaud Ebalard } 979594fbe71SArnaud Ebalard 980594fbe71SArnaud Ebalard /* 981594fbe71SArnaud Ebalard * read function for fan1_alarm sysfs file. Note that OOC condition is 982594fbe71SArnaud Ebalard * enabled low 983594fbe71SArnaud Ebalard */ 984251f65cdSJulia Lawall static ssize_t fan1_alarm_show(struct device *dev, 985251f65cdSJulia Lawall struct device_attribute *da, char *buf) 986594fbe71SArnaud Ebalard { 987594fbe71SArnaud Ebalard struct g762_data *data = g762_update_client(dev); 988594fbe71SArnaud Ebalard 989594fbe71SArnaud Ebalard if (IS_ERR(data)) 990594fbe71SArnaud Ebalard return PTR_ERR(data); 991594fbe71SArnaud Ebalard 992594fbe71SArnaud Ebalard return sprintf(buf, "%u\n", !(data->fan_sta & G762_REG_FAN_STA_OOC)); 993594fbe71SArnaud Ebalard } 994594fbe71SArnaud Ebalard 995251f65cdSJulia Lawall static DEVICE_ATTR_RW(pwm1); 996251f65cdSJulia Lawall static DEVICE_ATTR_RW(pwm1_mode); 997251f65cdSJulia Lawall static DEVICE_ATTR_RW(pwm1_enable); 998251f65cdSJulia Lawall static DEVICE_ATTR_RO(fan1_input); 999251f65cdSJulia Lawall static DEVICE_ATTR_RO(fan1_alarm); 1000251f65cdSJulia Lawall static DEVICE_ATTR_RO(fan1_fault); 1001251f65cdSJulia Lawall static DEVICE_ATTR_RW(fan1_target); 1002251f65cdSJulia Lawall static DEVICE_ATTR_RW(fan1_div); 1003251f65cdSJulia Lawall static DEVICE_ATTR_RW(fan1_pulses); 1004594fbe71SArnaud Ebalard 1005594fbe71SArnaud Ebalard /* Driver data */ 1006398e16dbSAxel Lin static struct attribute *g762_attrs[] = { 1007594fbe71SArnaud Ebalard &dev_attr_fan1_input.attr, 1008594fbe71SArnaud Ebalard &dev_attr_fan1_alarm.attr, 1009594fbe71SArnaud Ebalard &dev_attr_fan1_fault.attr, 1010594fbe71SArnaud Ebalard &dev_attr_fan1_target.attr, 1011594fbe71SArnaud Ebalard &dev_attr_fan1_div.attr, 1012594fbe71SArnaud Ebalard &dev_attr_fan1_pulses.attr, 1013594fbe71SArnaud Ebalard &dev_attr_pwm1.attr, 1014594fbe71SArnaud Ebalard &dev_attr_pwm1_mode.attr, 1015594fbe71SArnaud Ebalard &dev_attr_pwm1_enable.attr, 1016594fbe71SArnaud Ebalard NULL 1017594fbe71SArnaud Ebalard }; 1018594fbe71SArnaud Ebalard 1019398e16dbSAxel Lin ATTRIBUTE_GROUPS(g762); 1020594fbe71SArnaud Ebalard 1021594fbe71SArnaud Ebalard /* 1022594fbe71SArnaud Ebalard * Enable both fan failure detection and fan out of control protection. The 1023594fbe71SArnaud Ebalard * function does not protect change/access to data structure; it must thus 1024594fbe71SArnaud Ebalard * only be called during initialization. 1025594fbe71SArnaud Ebalard */ 1026594fbe71SArnaud Ebalard static inline int g762_fan_init(struct device *dev) 1027594fbe71SArnaud Ebalard { 1028594fbe71SArnaud Ebalard struct g762_data *data = g762_update_client(dev); 1029594fbe71SArnaud Ebalard 1030594fbe71SArnaud Ebalard if (IS_ERR(data)) 1031594fbe71SArnaud Ebalard return PTR_ERR(data); 1032594fbe71SArnaud Ebalard 1033594fbe71SArnaud Ebalard data->fan_cmd1 |= G762_REG_FAN_CMD1_DET_FAN_FAIL; 1034594fbe71SArnaud Ebalard data->fan_cmd1 |= G762_REG_FAN_CMD1_DET_FAN_OOC; 1035594fbe71SArnaud Ebalard data->valid = false; 1036594fbe71SArnaud Ebalard 1037398e16dbSAxel Lin return i2c_smbus_write_byte_data(data->client, G762_REG_FAN_CMD1, 1038594fbe71SArnaud Ebalard data->fan_cmd1); 1039594fbe71SArnaud Ebalard } 1040594fbe71SArnaud Ebalard 104167487038SStephen Kitt static int g762_probe(struct i2c_client *client) 1042594fbe71SArnaud Ebalard { 1043398e16dbSAxel Lin struct device *dev = &client->dev; 104447591baaSHao Peng struct device *hwmon_dev; 1045594fbe71SArnaud Ebalard struct g762_data *data; 1046594fbe71SArnaud Ebalard int ret; 1047594fbe71SArnaud Ebalard 1048594fbe71SArnaud Ebalard if (!i2c_check_functionality(client->adapter, 1049594fbe71SArnaud Ebalard I2C_FUNC_SMBUS_BYTE_DATA)) 1050594fbe71SArnaud Ebalard return -ENODEV; 1051594fbe71SArnaud Ebalard 1052398e16dbSAxel Lin data = devm_kzalloc(dev, sizeof(struct g762_data), GFP_KERNEL); 1053594fbe71SArnaud Ebalard if (!data) 1054594fbe71SArnaud Ebalard return -ENOMEM; 1055594fbe71SArnaud Ebalard 1056594fbe71SArnaud Ebalard i2c_set_clientdata(client, data); 1057594fbe71SArnaud Ebalard data->client = client; 1058594fbe71SArnaud Ebalard mutex_init(&data->update_lock); 1059594fbe71SArnaud Ebalard 1060594fbe71SArnaud Ebalard /* Enable fan failure detection and fan out of control protection */ 1061398e16dbSAxel Lin ret = g762_fan_init(dev); 1062594fbe71SArnaud Ebalard if (ret) 1063594fbe71SArnaud Ebalard return ret; 1064594fbe71SArnaud Ebalard 1065594fbe71SArnaud Ebalard /* Get configuration via DT ... */ 1066594fbe71SArnaud Ebalard ret = g762_of_clock_enable(client); 1067594fbe71SArnaud Ebalard if (ret) 1068594fbe71SArnaud Ebalard return ret; 1069594fbe71SArnaud Ebalard ret = g762_of_prop_import(client); 1070594fbe71SArnaud Ebalard if (ret) 107147591baaSHao Peng return ret; 1072594fbe71SArnaud Ebalard /* ... or platform_data */ 1073594fbe71SArnaud Ebalard ret = g762_pdata_prop_import(client); 1074594fbe71SArnaud Ebalard if (ret) 1075594fbe71SArnaud Ebalard return ret; 1076594fbe71SArnaud Ebalard 107747591baaSHao Peng hwmon_dev = devm_hwmon_device_register_with_groups(dev, client->name, 107847591baaSHao Peng data, g762_groups); 107947591baaSHao Peng return PTR_ERR_OR_ZERO(hwmon_dev); 1080594fbe71SArnaud Ebalard } 1081594fbe71SArnaud Ebalard 1082594fbe71SArnaud Ebalard static struct i2c_driver g762_driver = { 1083594fbe71SArnaud Ebalard .driver = { 1084594fbe71SArnaud Ebalard .name = DRVNAME, 1085594fbe71SArnaud Ebalard .of_match_table = of_match_ptr(g762_dt_match), 1086594fbe71SArnaud Ebalard }, 108767487038SStephen Kitt .probe_new = g762_probe, 1088594fbe71SArnaud Ebalard .id_table = g762_id, 1089594fbe71SArnaud Ebalard }; 1090594fbe71SArnaud Ebalard 1091594fbe71SArnaud Ebalard module_i2c_driver(g762_driver); 1092594fbe71SArnaud Ebalard 1093594fbe71SArnaud Ebalard MODULE_AUTHOR("Arnaud EBALARD <arno@natisbad.org>"); 1094594fbe71SArnaud Ebalard MODULE_DESCRIPTION("GMT G762/G763 driver"); 1095594fbe71SArnaud Ebalard MODULE_LICENSE("GPL"); 1096