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1/** 2 * drivers/gpio/max7301.c 3 * 4 * Copyright (C) 2006 Juergen Beisert, Pengutronix 5 * Copyright (C) 2008 Guennadi Liakhovetski, Pengutronix 6 * 7 * This program is free software; you can redistribute it and/or modify 8 * it under the terms of the GNU General Public License version 2 as 9 * published by the Free Software Foundation. 10 * 11 * The Maxim's MAX7301 device is an SPI driven GPIO expander. There are 12 * 28 GPIOs. 8 of them can trigger an interrupt. See datasheet for more 13 * details 14 * Note: 15 * - DIN must be stable at the rising edge of clock. 16 * - when writing: 17 * - always clock in 16 clocks at once 18 * - at DIN: D15 first, D0 last 19 * - D0..D7 = databyte, D8..D14 = commandbyte 20 * - D15 = low -> write command 21 * - when reading 22 * - always clock in 16 clocks at once 23 * - at DIN: D15 first, D0 last 24 * - D0..D7 = dummy, D8..D14 = register address 25 * - D15 = high -> read command 26 * - raise CS and assert it again 27 * - always clock in 16 clocks at once 28 * - at DOUT: D15 first, D0 last 29 * - D0..D7 contains the data from the first cycle 30 * 31 * The driver exports a standard gpiochip interface 32 */ 33 34#include <linux/init.h> 35#include <linux/platform_device.h> 36#include <linux/mutex.h> 37#include <linux/spi/spi.h> 38#include <linux/spi/max7301.h> 39#include <linux/gpio.h> 40 41#define DRIVER_NAME "max7301" 42 43/* 44 * Pin configurations, see MAX7301 datasheet page 6 45 */ 46#define PIN_CONFIG_MASK 0x03 47#define PIN_CONFIG_IN_PULLUP 0x03 48#define PIN_CONFIG_IN_WO_PULLUP 0x02 49#define PIN_CONFIG_OUT 0x01 50 51#define PIN_NUMBER 28 52 53 54/* 55 * Some registers must be read back to modify. 56 * To save time we cache them here in memory 57 */ 58struct max7301 { 59 struct mutex lock; 60 u8 port_config[8]; /* field 0 is unused */ 61 u32 out_level; /* cached output levels */ 62 struct gpio_chip chip; 63 struct spi_device *spi; 64}; 65 66/** 67 * max7301_write - Write a new register content 68 * @spi: The SPI device 69 * @reg: Register offset 70 * @val: Value to write 71 * 72 * A write to the MAX7301 means one message with one transfer 73 * 74 * Returns 0 if successful or a negative value on error 75 */ 76static int max7301_write(struct spi_device *spi, unsigned int reg, unsigned int val) 77{ 78 u16 word = ((reg & 0x7F) << 8) | (val & 0xFF); 79 return spi_write(spi, (const u8 *)&word, sizeof(word)); 80} 81 82/** 83 * max7301_read - Read back register content 84 * @spi: The SPI device 85 * @reg: Register offset 86 * 87 * A read from the MAX7301 means two transfers; here, one message each 88 * 89 * Returns positive 8 bit value from device if successful or a 90 * negative value on error 91 */ 92static int max7301_read(struct spi_device *spi, unsigned int reg) 93{ 94 int ret; 95 u16 word; 96 97 word = 0x8000 | (reg << 8); 98 ret = spi_write(spi, (const u8 *)&word, sizeof(word)); 99 if (ret) 100 return ret; 101 /* 102 * This relies on the fact, that a transfer with NULL tx_buf shifts out 103 * zero bytes (=NOOP for MAX7301) 104 */ 105 ret = spi_read(spi, (u8 *)&word, sizeof(word)); 106 if (ret) 107 return ret; 108 return word & 0xff; 109} 110 111static int max7301_direction_input(struct gpio_chip *chip, unsigned offset) 112{ 113 struct max7301 *ts = container_of(chip, struct max7301, chip); 114 u8 *config; 115 int ret; 116 117 /* First 4 pins are unused in the controller */ 118 offset += 4; 119 120 config = &ts->port_config[offset >> 2]; 121 122 mutex_lock(&ts->lock); 123 124 /* Standard GPIO API doesn't support pull-ups, has to be extended. 125 * Hard-coding no pollup for now. */ 126 *config = (*config & ~(3 << (offset & 3))) | (1 << (offset & 3)); 127 128 ret = max7301_write(ts->spi, 0x08 + (offset >> 2), *config); 129 130 mutex_unlock(&ts->lock); 131 132 return ret; 133} 134 135static int __max7301_set(struct max7301 *ts, unsigned offset, int value) 136{ 137 if (value) { 138 ts->out_level |= 1 << offset; 139 return max7301_write(ts->spi, 0x20 + offset, 0x01); 140 } else { 141 ts->out_level &= ~(1 << offset); 142 return max7301_write(ts->spi, 0x20 + offset, 0x00); 143 } 144} 145 146static int max7301_direction_output(struct gpio_chip *chip, unsigned offset, 147 int value) 148{ 149 struct max7301 *ts = container_of(chip, struct max7301, chip); 150 u8 *config; 151 int ret; 152 153 /* First 4 pins are unused in the controller */ 154 offset += 4; 155 156 config = &ts->port_config[offset >> 2]; 157 158 mutex_lock(&ts->lock); 159 160 *config = (*config & ~(3 << (offset & 3))) | (1 << (offset & 3)); 161 162 ret = __max7301_set(ts, offset, value); 163 164 if (!ret) 165 ret = max7301_write(ts->spi, 0x08 + (offset >> 2), *config); 166 167 mutex_unlock(&ts->lock); 168 169 return ret; 170} 171 172static int max7301_get(struct gpio_chip *chip, unsigned offset) 173{ 174 struct max7301 *ts = container_of(chip, struct max7301, chip); 175 int config, level = -EINVAL; 176 177 /* First 4 pins are unused in the controller */ 178 offset += 4; 179 180 mutex_lock(&ts->lock); 181 182 config = (ts->port_config[offset >> 2] >> ((offset & 3) * 2)) & 3; 183 184 switch (config) { 185 case 1: 186 /* Output: return cached level */ 187 level = !!(ts->out_level & (1 << offset)); 188 break; 189 case 2: 190 case 3: 191 /* Input: read out */ 192 level = max7301_read(ts->spi, 0x20 + offset) & 0x01; 193 } 194 mutex_unlock(&ts->lock); 195 196 return level; 197} 198 199static void max7301_set(struct gpio_chip *chip, unsigned offset, int value) 200{ 201 struct max7301 *ts = container_of(chip, struct max7301, chip); 202 203 /* First 4 pins are unused in the controller */ 204 offset += 4; 205 206 mutex_lock(&ts->lock); 207 208 __max7301_set(ts, offset, value); 209 210 mutex_unlock(&ts->lock); 211} 212 213static int __devinit max7301_probe(struct spi_device *spi) 214{ 215 struct max7301 *ts; 216 struct max7301_platform_data *pdata; 217 int i, ret; 218 219 pdata = spi->dev.platform_data; 220 if (!pdata || !pdata->base) 221 return -ENODEV; 222 223 /* 224 * bits_per_word cannot be configured in platform data 225 */ 226 spi->bits_per_word = 16; 227 228 ret = spi_setup(spi); 229 if (ret < 0) 230 return ret; 231 232 ts = kzalloc(sizeof(struct max7301), GFP_KERNEL); 233 if (!ts) 234 return -ENOMEM; 235 236 mutex_init(&ts->lock); 237 238 dev_set_drvdata(&spi->dev, ts); 239 240 /* Power up the chip and disable IRQ output */ 241 max7301_write(spi, 0x04, 0x01); 242 243 ts->spi = spi; 244 245 ts->chip.label = DRIVER_NAME, 246 247 ts->chip.direction_input = max7301_direction_input; 248 ts->chip.get = max7301_get; 249 ts->chip.direction_output = max7301_direction_output; 250 ts->chip.set = max7301_set; 251 252 ts->chip.base = pdata->base; 253 ts->chip.ngpio = PIN_NUMBER; 254 ts->chip.can_sleep = 1; 255 ts->chip.dev = &spi->dev; 256 ts->chip.owner = THIS_MODULE; 257 258 /* 259 * tristate all pins in hardware and cache the 260 * register values for later use. 261 */ 262 for (i = 1; i < 8; i++) { 263 int j; 264 /* 0xAA means input with internal pullup disabled */ 265 max7301_write(spi, 0x08 + i, 0xAA); 266 ts->port_config[i] = 0xAA; 267 for (j = 0; j < 4; j++) { 268 int offset = (i - 1) * 4 + j; 269 ret = max7301_direction_input(&ts->chip, offset); 270 if (ret) 271 goto exit_destroy; 272 } 273 } 274 275 ret = gpiochip_add(&ts->chip); 276 if (ret) 277 goto exit_destroy; 278 279 return ret; 280 281exit_destroy: 282 dev_set_drvdata(&spi->dev, NULL); 283 mutex_destroy(&ts->lock); 284 kfree(ts); 285 return ret; 286} 287 288static int max7301_remove(struct spi_device *spi) 289{ 290 struct max7301 *ts; 291 int ret; 292 293 ts = dev_get_drvdata(&spi->dev); 294 if (ts == NULL) 295 return -ENODEV; 296 297 dev_set_drvdata(&spi->dev, NULL); 298 299 /* Power down the chip and disable IRQ output */ 300 max7301_write(spi, 0x04, 0x00); 301 302 ret = gpiochip_remove(&ts->chip); 303 if (!ret) { 304 mutex_destroy(&ts->lock); 305 kfree(ts); 306 } else 307 dev_err(&spi->dev, "Failed to remove the GPIO controller: %d\n", 308 ret); 309 310 return ret; 311} 312 313static struct spi_driver max7301_driver = { 314 .driver = { 315 .name = DRIVER_NAME, 316 .owner = THIS_MODULE, 317 }, 318 .probe = max7301_probe, 319 .remove = __devexit_p(max7301_remove), 320}; 321 322static int __init max7301_init(void) 323{ 324 return spi_register_driver(&max7301_driver); 325} 326/* register after spi postcore initcall and before 327 * subsys initcalls that may rely on these GPIOs 328 */ 329subsys_initcall(max7301_init); 330 331static void __exit max7301_exit(void) 332{ 333 spi_unregister_driver(&max7301_driver); 334} 335module_exit(max7301_exit); 336 337MODULE_AUTHOR("Juergen Beisert"); 338MODULE_LICENSE("GPL v2"); 339MODULE_DESCRIPTION("MAX7301 SPI based GPIO-Expander");