Bryan Huntsman | 3f2bc4d | 2011-08-16 17:27:22 -0700 | [diff] [blame] | 1 | /* board-mahimahi-microp.c |
| 2 | * Copyright (C) 2009 Google. |
| 3 | * Copyright (C) 2009 HTC Corporation. |
| 4 | * |
| 5 | * The Microp on mahimahi is an i2c device that supports |
| 6 | * the following functions |
| 7 | * - LEDs (Green, Amber, Jogball backlight) |
| 8 | * - Lightsensor |
| 9 | * - Headset remotekeys |
| 10 | * - G-sensor |
| 11 | * - Interrupts |
| 12 | * |
| 13 | * This software is licensed under the terms of the GNU General Public |
| 14 | * License version 2, as published by the Free Software Foundation, and |
| 15 | * may be copied, distributed, and modified under those terms. |
| 16 | * |
| 17 | * This program is distributed in the hope that it will be useful, |
| 18 | * but WITHOUT ANY WARRANTY; without even the implied warranty of |
| 19 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the |
| 20 | * GNU General Public License for more details. |
| 21 | */ |
| 22 | #include <linux/kernel.h> |
| 23 | #include <linux/platform_device.h> |
| 24 | #include <linux/slab.h> |
| 25 | #include <linux/init.h> |
| 26 | #include <linux/leds.h> |
| 27 | #include <linux/workqueue.h> |
| 28 | #include <linux/i2c.h> |
| 29 | #include <linux/delay.h> |
| 30 | #include <linux/gpio.h> |
| 31 | #include <linux/miscdevice.h> |
| 32 | #include <linux/input.h> |
| 33 | #include <asm/uaccess.h> |
| 34 | #include <linux/wakelock.h> |
| 35 | #include <asm/mach-types.h> |
| 36 | #include <mach/htc_pwrsink.h> |
| 37 | #include <linux/earlysuspend.h> |
| 38 | #include <linux/bma150.h> |
| 39 | #include <linux/lightsensor.h> |
| 40 | #include <asm/mach/mmc.h> |
| 41 | #include <mach/htc_35mm_jack.h> |
| 42 | #include <asm/setup.h> |
| 43 | #include <linux/debugfs.h> |
| 44 | #include <linux/seq_file.h> |
| 45 | #include <linux/mutex.h> |
| 46 | #include <linux/jiffies.h> |
| 47 | |
| 48 | #include "board-mahimahi.h" |
| 49 | |
| 50 | |
| 51 | #define MICROP_I2C_NAME "mahimahi-microp" |
| 52 | |
| 53 | #define MICROP_LSENSOR_ADC_CHAN 6 |
| 54 | #define MICROP_REMOTE_KEY_ADC_CHAN 7 |
| 55 | |
| 56 | #define MICROP_I2C_WCMD_MISC 0x20 |
| 57 | #define MICROP_I2C_WCMD_SPI_EN 0x21 |
| 58 | #define MICROP_I2C_WCMD_AUTO_BL_CTL 0x23 |
| 59 | #define MICROP_I2C_RCMD_SPI_BL_STATUS 0x24 |
| 60 | #define MICROP_I2C_WCMD_BUTTONS_LED_CTRL 0x25 |
| 61 | #define MICROP_I2C_RCMD_VERSION 0x30 |
| 62 | #define MICROP_I2C_WCMD_ADC_TABLE 0x42 |
| 63 | #define MICROP_I2C_WCMD_LED_MODE 0x53 |
| 64 | #define MICROP_I2C_RCMD_GREEN_LED_REMAIN_TIME 0x54 |
| 65 | #define MICROP_I2C_RCMD_AMBER_RED_LED_REMAIN_TIME 0x55 |
| 66 | #define MICROP_I2C_RCMD_BLUE_LED_REMAIN_TIME 0x57 |
| 67 | #define MICROP_I2C_WCMD_JOGBALL_LED_MODE 0x5A |
| 68 | #define MICROP_I2C_RCMD_JOGBALL_LED_REMAIN_TIME 0x5B |
| 69 | #define MICROP_I2C_WCMD_JOGBALL_LED_PWM_SET 0x5C |
| 70 | #define MICROP_I2C_WCMD_JOGBALL_LED_PERIOD_SET 0x5D |
| 71 | #define MICROP_I2C_WCMD_READ_ADC_VALUE_REQ 0x60 |
| 72 | #define MICROP_I2C_RCMD_ADC_VALUE 0x62 |
| 73 | #define MICROP_I2C_WCMD_REMOTEKEY_TABLE 0x63 |
| 74 | #define MICROP_I2C_WCMD_LCM_REGISTER 0x70 |
| 75 | #define MICROP_I2C_WCMD_GSENSOR_REG 0x73 |
| 76 | #define MICROP_I2C_WCMD_GSENSOR_REG_DATA_REQ 0x74 |
| 77 | #define MICROP_I2C_RCMD_GSENSOR_REG_DATA 0x75 |
| 78 | #define MICROP_I2C_WCMD_GSENSOR_DATA_REQ 0x76 |
| 79 | #define MICROP_I2C_RCMD_GSENSOR_X_DATA 0x77 |
| 80 | #define MICROP_I2C_RCMD_GSENSOR_Y_DATA 0x78 |
| 81 | #define MICROP_I2C_RCMD_GSENSOR_Z_DATA 0x79 |
| 82 | #define MICROP_I2C_RCMD_GSENSOR_DATA 0x7A |
| 83 | #define MICROP_I2C_WCMD_OJ_REG 0x7B |
| 84 | #define MICROP_I2C_WCMD_OJ_REG_DATA_REQ 0x7C |
| 85 | #define MICROP_I2C_RCMD_OJ_REG_DATA 0x7D |
| 86 | #define MICROP_I2C_WCMD_OJ_POS_DATA_REQ 0x7E |
| 87 | #define MICROP_I2C_RCMD_OJ_POS_DATA 0x7F |
| 88 | #define MICROP_I2C_WCMD_GPI_INT_CTL_EN 0x80 |
| 89 | #define MICROP_I2C_WCMD_GPI_INT_CTL_DIS 0x81 |
| 90 | #define MICROP_I2C_RCMD_GPI_INT_STATUS 0x82 |
| 91 | #define MICROP_I2C_RCMD_GPI_STATUS 0x83 |
| 92 | #define MICROP_I2C_WCMD_GPI_INT_STATUS_CLR 0x84 |
| 93 | #define MICROP_I2C_RCMD_GPI_INT_SETTING 0x85 |
| 94 | #define MICROP_I2C_RCMD_REMOTE_KEYCODE 0x87 |
| 95 | #define MICROP_I2C_WCMD_REMOTE_KEY_DEBN_TIME 0x88 |
| 96 | #define MICROP_I2C_WCMD_REMOTE_PLUG_DEBN_TIME 0x89 |
| 97 | #define MICROP_I2C_WCMD_SIMCARD_DEBN_TIME 0x8A |
| 98 | #define MICROP_I2C_WCMD_GPO_LED_STATUS_EN 0x90 |
| 99 | #define MICROP_I2C_WCMD_GPO_LED_STATUS_DIS 0x91 |
| 100 | |
| 101 | #define IRQ_GSENSOR (1<<10) |
| 102 | #define IRQ_LSENSOR (1<<9) |
| 103 | #define IRQ_REMOTEKEY (1<<7) |
| 104 | #define IRQ_HEADSETIN (1<<2) |
| 105 | #define IRQ_SDCARD (1<<0) |
| 106 | |
| 107 | #define READ_GPI_STATE_HPIN (1<<2) |
| 108 | #define READ_GPI_STATE_SDCARD (1<<0) |
| 109 | |
| 110 | #define ALS_CALIBRATE_MODE 147 |
| 111 | |
| 112 | /* Check pattern, to check if ALS has been calibrated */ |
| 113 | #define ALS_CALIBRATED 0x6DA5 |
| 114 | |
| 115 | /* delay for deferred light sensor read */ |
| 116 | #define LS_READ_DELAY (HZ/2) |
| 117 | |
| 118 | /*#define DEBUG_BMA150 */ |
| 119 | #ifdef DEBUG_BMA150 |
| 120 | /* Debug logging of accelleration data */ |
| 121 | #define GSENSOR_LOG_MAX 2048 /* needs to be power of 2 */ |
| 122 | #define GSENSOR_LOG_MASK (GSENSOR_LOG_MAX - 1) |
| 123 | |
| 124 | struct gsensor_log { |
| 125 | ktime_t timestamp; |
| 126 | short x; |
| 127 | short y; |
| 128 | short z; |
| 129 | }; |
| 130 | |
| 131 | static DEFINE_MUTEX(gsensor_log_lock); |
| 132 | static struct gsensor_log gsensor_log[GSENSOR_LOG_MAX]; |
| 133 | static unsigned gsensor_log_head; |
| 134 | static unsigned gsensor_log_tail; |
| 135 | |
| 136 | void gsensor_log_status(ktime_t time, short x, short y, short z) |
| 137 | { |
| 138 | unsigned n; |
| 139 | mutex_lock(&gsensor_log_lock); |
| 140 | n = gsensor_log_head; |
| 141 | gsensor_log[n].timestamp = time; |
| 142 | gsensor_log[n].x = x; |
| 143 | gsensor_log[n].y = y; |
| 144 | gsensor_log[n].z = z; |
| 145 | n = (n + 1) & GSENSOR_LOG_MASK; |
| 146 | if (n == gsensor_log_tail) |
| 147 | gsensor_log_tail = (gsensor_log_tail + 1) & GSENSOR_LOG_MASK; |
| 148 | gsensor_log_head = n; |
| 149 | mutex_unlock(&gsensor_log_lock); |
| 150 | } |
| 151 | |
| 152 | static int gsensor_log_print(struct seq_file *sf, void *private) |
| 153 | { |
| 154 | unsigned n; |
| 155 | |
| 156 | mutex_lock(&gsensor_log_lock); |
| 157 | seq_printf(sf, "timestamp X Y Z\n"); |
| 158 | for (n = gsensor_log_tail; |
| 159 | n != gsensor_log_head; |
| 160 | n = (n + 1) & GSENSOR_LOG_MASK) { |
| 161 | seq_printf(sf, "%10d.%010d %6d %6d %6d\n", |
| 162 | gsensor_log[n].timestamp.tv.sec, |
| 163 | gsensor_log[n].timestamp.tv.nsec, |
| 164 | gsensor_log[n].x, gsensor_log[n].y, |
| 165 | gsensor_log[n].z); |
| 166 | } |
| 167 | mutex_unlock(&gsensor_log_lock); |
| 168 | return 0; |
| 169 | } |
| 170 | |
| 171 | static int gsensor_log_open(struct inode *inode, struct file *file) |
| 172 | { |
| 173 | return single_open(file, gsensor_log_print, NULL); |
| 174 | } |
| 175 | |
| 176 | static struct file_operations gsensor_log_fops = { |
| 177 | .open = gsensor_log_open, |
| 178 | .read = seq_read, |
| 179 | .llseek = seq_lseek, |
| 180 | .release = single_release, |
| 181 | }; |
| 182 | #endif /* def DEBUG_BMA150 */ |
| 183 | |
| 184 | static int microp_headset_has_mic(void); |
| 185 | static int microp_enable_headset_plug_event(void); |
| 186 | static int microp_enable_key_event(void); |
| 187 | static int microp_disable_key_event(void); |
| 188 | |
| 189 | static struct h35mm_platform_data mahimahi_h35mm_data = { |
| 190 | .plug_event_enable = microp_enable_headset_plug_event, |
| 191 | .headset_has_mic = microp_headset_has_mic, |
| 192 | .key_event_enable = microp_enable_key_event, |
| 193 | .key_event_disable = microp_disable_key_event, |
| 194 | }; |
| 195 | |
| 196 | static struct platform_device mahimahi_h35mm = { |
| 197 | .name = "htc_headset", |
| 198 | .id = -1, |
| 199 | .dev = { |
| 200 | .platform_data = &mahimahi_h35mm_data, |
| 201 | }, |
| 202 | }; |
| 203 | |
| 204 | enum led_type { |
| 205 | GREEN_LED, |
| 206 | AMBER_LED, |
| 207 | RED_LED, |
| 208 | BLUE_LED, |
| 209 | JOGBALL_LED, |
| 210 | BUTTONS_LED, |
| 211 | NUM_LEDS, |
| 212 | }; |
| 213 | |
| 214 | static uint16_t lsensor_adc_table[10] = { |
| 215 | 0x000, 0x001, 0x00F, 0x01E, 0x03C, 0x121, 0x190, 0x2BA, 0x26E, 0x3FF |
| 216 | }; |
| 217 | |
| 218 | static uint16_t remote_key_adc_table[6] = { |
| 219 | 0, 33, 43, 110, 129, 220 |
| 220 | }; |
| 221 | |
| 222 | static uint32_t golden_adc = 0xC0; |
| 223 | static uint32_t als_kadc; |
| 224 | |
| 225 | static struct wake_lock microp_i2c_wakelock; |
| 226 | |
| 227 | static struct i2c_client *private_microp_client; |
| 228 | |
| 229 | struct microp_int_pin { |
| 230 | uint16_t int_gsensor; |
| 231 | uint16_t int_lsensor; |
| 232 | uint16_t int_reset; |
| 233 | uint16_t int_simcard; |
| 234 | uint16_t int_hpin; |
| 235 | uint16_t int_remotekey; |
| 236 | }; |
| 237 | |
| 238 | struct microp_led_data { |
| 239 | int type; |
| 240 | struct led_classdev ldev; |
| 241 | struct mutex led_data_mutex; |
| 242 | struct work_struct brightness_work; |
| 243 | spinlock_t brightness_lock; |
| 244 | enum led_brightness brightness; |
| 245 | uint8_t mode; |
| 246 | uint8_t blink; |
| 247 | }; |
| 248 | |
| 249 | struct microp_i2c_work { |
| 250 | struct work_struct work; |
| 251 | struct i2c_client *client; |
| 252 | int (*intr_debounce)(uint8_t *pin_status); |
| 253 | void (*intr_function)(uint8_t *pin_status); |
| 254 | }; |
| 255 | |
| 256 | struct microp_i2c_client_data { |
| 257 | struct microp_led_data leds[NUM_LEDS]; |
| 258 | uint16_t version; |
| 259 | struct microp_i2c_work work; |
| 260 | struct delayed_work hpin_debounce_work; |
| 261 | struct delayed_work ls_read_work; |
| 262 | struct early_suspend early_suspend; |
| 263 | uint8_t enable_early_suspend; |
| 264 | uint8_t enable_reset_button; |
| 265 | int microp_is_suspend; |
| 266 | int auto_backlight_enabled; |
| 267 | uint8_t light_sensor_enabled; |
| 268 | uint8_t force_light_sensor_read; |
| 269 | uint8_t button_led_value; |
| 270 | int headset_is_in; |
| 271 | int is_hpin_pin_stable; |
| 272 | struct input_dev *ls_input_dev; |
| 273 | uint32_t als_kadc; |
| 274 | uint32_t als_gadc; |
| 275 | uint8_t als_calibrating; |
| 276 | }; |
| 277 | |
| 278 | static char *hex2string(uint8_t *data, int len) |
| 279 | { |
| 280 | static char buf[101]; |
| 281 | int i; |
| 282 | |
| 283 | i = (sizeof(buf) - 1) / 4; |
| 284 | if (len > i) |
| 285 | len = i; |
| 286 | |
| 287 | for (i = 0; i < len; i++) |
| 288 | sprintf(buf + i * 4, "[%02X]", data[i]); |
| 289 | |
| 290 | return buf; |
| 291 | } |
| 292 | |
| 293 | #define I2C_READ_RETRY_TIMES 10 |
| 294 | #define I2C_WRITE_RETRY_TIMES 10 |
| 295 | |
| 296 | static int i2c_read_block(struct i2c_client *client, uint8_t addr, |
| 297 | uint8_t *data, int length) |
| 298 | { |
| 299 | int retry; |
| 300 | int ret; |
| 301 | struct i2c_msg msgs[] = { |
| 302 | { |
| 303 | .addr = client->addr, |
| 304 | .flags = 0, |
| 305 | .len = 1, |
| 306 | .buf = &addr, |
| 307 | }, |
| 308 | { |
| 309 | .addr = client->addr, |
| 310 | .flags = I2C_M_RD, |
| 311 | .len = length, |
| 312 | .buf = data, |
| 313 | } |
| 314 | }; |
| 315 | |
| 316 | mdelay(1); |
| 317 | for (retry = 0; retry <= I2C_READ_RETRY_TIMES; retry++) { |
| 318 | ret = i2c_transfer(client->adapter, msgs, 2); |
| 319 | if (ret == 2) { |
| 320 | dev_dbg(&client->dev, "R [%02X] = %s\n", addr, |
| 321 | hex2string(data, length)); |
| 322 | return 0; |
| 323 | } |
| 324 | msleep(10); |
| 325 | } |
| 326 | |
| 327 | dev_err(&client->dev, "i2c_read_block retry over %d\n", |
| 328 | I2C_READ_RETRY_TIMES); |
| 329 | return -EIO; |
| 330 | } |
| 331 | |
| 332 | #define MICROP_I2C_WRITE_BLOCK_SIZE 21 |
| 333 | static int i2c_write_block(struct i2c_client *client, uint8_t addr, |
| 334 | uint8_t *data, int length) |
| 335 | { |
| 336 | int retry; |
| 337 | uint8_t buf[MICROP_I2C_WRITE_BLOCK_SIZE]; |
| 338 | int ret; |
| 339 | |
| 340 | struct i2c_msg msg[] = { |
| 341 | { |
| 342 | .addr = client->addr, |
| 343 | .flags = 0, |
| 344 | .len = length + 1, |
| 345 | .buf = buf, |
| 346 | } |
| 347 | }; |
| 348 | |
| 349 | dev_dbg(&client->dev, "W [%02X] = %s\n", addr, |
| 350 | hex2string(data, length)); |
| 351 | |
| 352 | if (length + 1 > MICROP_I2C_WRITE_BLOCK_SIZE) { |
| 353 | dev_err(&client->dev, "i2c_write_block length too long\n"); |
| 354 | return -E2BIG; |
| 355 | } |
| 356 | |
| 357 | buf[0] = addr; |
| 358 | memcpy((void *)&buf[1], (void *)data, length); |
| 359 | |
| 360 | mdelay(1); |
| 361 | for (retry = 0; retry <= I2C_WRITE_RETRY_TIMES; retry++) { |
| 362 | ret = i2c_transfer(client->adapter, msg, 1); |
| 363 | if (ret == 1) |
| 364 | return 0; |
| 365 | msleep(10); |
| 366 | } |
| 367 | dev_err(&client->dev, "i2c_write_block retry over %d\n", |
| 368 | I2C_WRITE_RETRY_TIMES); |
| 369 | return -EIO; |
| 370 | } |
| 371 | |
| 372 | static int microp_read_adc(uint8_t channel, uint16_t *value) |
| 373 | { |
| 374 | struct i2c_client *client; |
| 375 | int ret; |
| 376 | uint8_t cmd[2], data[2]; |
| 377 | |
| 378 | client = private_microp_client; |
| 379 | cmd[0] = 0; |
| 380 | cmd[1] = channel; |
| 381 | ret = i2c_write_block(client, MICROP_I2C_WCMD_READ_ADC_VALUE_REQ, |
| 382 | cmd, 2); |
| 383 | if (ret < 0) { |
| 384 | dev_err(&client->dev, "%s: request adc fail\n", __func__); |
| 385 | return -EIO; |
| 386 | } |
| 387 | |
| 388 | ret = i2c_read_block(client, MICROP_I2C_RCMD_ADC_VALUE, data, 2); |
| 389 | if (ret < 0) { |
| 390 | dev_err(&client->dev, "%s: read adc fail\n", __func__); |
| 391 | return -EIO; |
| 392 | } |
| 393 | *value = data[0] << 8 | data[1]; |
| 394 | return 0; |
| 395 | } |
| 396 | |
| 397 | static int microp_read_gpi_status(struct i2c_client *client, uint16_t *status) |
| 398 | { |
| 399 | uint8_t data[2]; |
| 400 | int ret; |
| 401 | |
| 402 | ret = i2c_read_block(client, MICROP_I2C_RCMD_GPI_STATUS, data, 2); |
| 403 | if (ret < 0) { |
| 404 | dev_err(&client->dev, "%s: read failed\n", __func__); |
| 405 | return -EIO; |
| 406 | } |
| 407 | *status = (data[0] << 8) | data[1]; |
| 408 | return 0; |
| 409 | } |
| 410 | |
| 411 | static int microp_interrupt_enable(struct i2c_client *client, |
| 412 | uint16_t interrupt_mask) |
| 413 | { |
| 414 | uint8_t data[2]; |
| 415 | int ret = -1; |
| 416 | |
| 417 | data[0] = interrupt_mask >> 8; |
| 418 | data[1] = interrupt_mask & 0xFF; |
| 419 | ret = i2c_write_block(client, MICROP_I2C_WCMD_GPI_INT_CTL_EN, data, 2); |
| 420 | |
| 421 | if (ret < 0) |
| 422 | dev_err(&client->dev, "%s: enable 0x%x interrupt failed\n", |
| 423 | __func__, interrupt_mask); |
| 424 | return ret; |
| 425 | } |
| 426 | |
| 427 | static int microp_interrupt_disable(struct i2c_client *client, |
| 428 | uint16_t interrupt_mask) |
| 429 | { |
| 430 | uint8_t data[2]; |
| 431 | int ret = -1; |
| 432 | |
| 433 | data[0] = interrupt_mask >> 8; |
| 434 | data[1] = interrupt_mask & 0xFF; |
| 435 | ret = i2c_write_block(client, MICROP_I2C_WCMD_GPI_INT_CTL_DIS, data, 2); |
| 436 | |
| 437 | if (ret < 0) |
| 438 | dev_err(&client->dev, "%s: disable 0x%x interrupt failed\n", |
| 439 | __func__, interrupt_mask); |
| 440 | return ret; |
| 441 | } |
| 442 | |
| 443 | |
| 444 | /* |
| 445 | * SD slot card-detect support |
| 446 | */ |
| 447 | static unsigned int sdslot_cd = 0; |
| 448 | static void (*sdslot_status_cb)(int card_present, void *dev_id); |
| 449 | static void *sdslot_mmc_dev; |
| 450 | |
| 451 | int mahimahi_microp_sdslot_status_register( |
| 452 | void (*cb)(int card_present, void *dev_id), |
| 453 | void *dev_id) |
| 454 | { |
| 455 | if (sdslot_status_cb) |
| 456 | return -EBUSY; |
| 457 | sdslot_status_cb = cb; |
| 458 | sdslot_mmc_dev = dev_id; |
| 459 | return 0; |
| 460 | } |
| 461 | |
| 462 | unsigned int mahimahi_microp_sdslot_status(struct device *dev) |
| 463 | { |
| 464 | return sdslot_cd; |
| 465 | } |
| 466 | |
| 467 | static void mahimahi_microp_sdslot_update_status(int status) |
| 468 | { |
| 469 | sdslot_cd = !(status & READ_GPI_STATE_SDCARD); |
| 470 | if (sdslot_status_cb) |
| 471 | sdslot_status_cb(sdslot_cd, sdslot_mmc_dev); |
| 472 | } |
| 473 | |
| 474 | /* |
| 475 | *Headset Support |
| 476 | */ |
| 477 | static void hpin_debounce_do_work(struct work_struct *work) |
| 478 | { |
| 479 | uint16_t gpi_status = 0; |
| 480 | struct microp_i2c_client_data *cdata; |
| 481 | int insert = 0; |
| 482 | struct i2c_client *client; |
| 483 | |
| 484 | client = private_microp_client; |
| 485 | cdata = i2c_get_clientdata(client); |
| 486 | |
| 487 | microp_read_gpi_status(client, &gpi_status); |
| 488 | insert = (gpi_status & READ_GPI_STATE_HPIN) ? 0 : 1; |
| 489 | if (insert != cdata->headset_is_in) { |
| 490 | cdata->headset_is_in = insert; |
| 491 | pr_debug("headset %s\n", insert ? "inserted" : "removed"); |
| 492 | htc_35mm_jack_plug_event(cdata->headset_is_in, |
| 493 | &cdata->is_hpin_pin_stable); |
| 494 | } |
| 495 | } |
| 496 | |
| 497 | static int microp_enable_headset_plug_event(void) |
| 498 | { |
| 499 | int ret; |
| 500 | struct i2c_client *client; |
| 501 | struct microp_i2c_client_data *cdata; |
| 502 | uint16_t stat; |
| 503 | |
| 504 | client = private_microp_client; |
| 505 | cdata = i2c_get_clientdata(client); |
| 506 | |
| 507 | /* enable microp interrupt to detect changes */ |
| 508 | ret = microp_interrupt_enable(client, IRQ_HEADSETIN); |
| 509 | if (ret < 0) { |
| 510 | dev_err(&client->dev, "%s: failed to enable irqs\n", |
| 511 | __func__); |
| 512 | return 0; |
| 513 | } |
| 514 | /* see if headset state has changed */ |
| 515 | microp_read_gpi_status(client, &stat); |
| 516 | stat = !(stat & READ_GPI_STATE_HPIN); |
| 517 | if(cdata->headset_is_in != stat) { |
| 518 | cdata->headset_is_in = stat; |
| 519 | pr_debug("Headset state changed\n"); |
| 520 | htc_35mm_jack_plug_event(stat, &cdata->is_hpin_pin_stable); |
| 521 | } |
| 522 | |
| 523 | return 1; |
| 524 | } |
| 525 | |
| 526 | static int microp_headset_detect_mic(void) |
| 527 | { |
| 528 | uint16_t data; |
| 529 | |
| 530 | microp_read_adc(MICROP_REMOTE_KEY_ADC_CHAN, &data); |
| 531 | if (data >= 200) |
| 532 | return 1; |
| 533 | else |
| 534 | return 0; |
| 535 | } |
| 536 | |
| 537 | static int microp_headset_has_mic(void) |
| 538 | { |
| 539 | int mic1 = -1; |
| 540 | int mic2 = -1; |
| 541 | int count = 0; |
| 542 | |
| 543 | mic2 = microp_headset_detect_mic(); |
| 544 | |
| 545 | /* debounce the detection wait until 2 consecutive read are equal */ |
| 546 | while ((mic1 != mic2) && (count < 10)) { |
| 547 | mic1 = mic2; |
| 548 | msleep(600); |
| 549 | mic2 = microp_headset_detect_mic(); |
| 550 | count++; |
| 551 | } |
| 552 | |
| 553 | pr_info("%s: microphone (%d) %s\n", __func__, count, |
| 554 | mic1 ? "present" : "not present"); |
| 555 | |
| 556 | return mic1; |
| 557 | } |
| 558 | |
| 559 | static int microp_enable_key_event(void) |
| 560 | { |
| 561 | int ret; |
| 562 | struct i2c_client *client; |
| 563 | |
| 564 | client = private_microp_client; |
| 565 | |
| 566 | if (!is_cdma_version(system_rev)) |
| 567 | gpio_set_value(MAHIMAHI_GPIO_35MM_KEY_INT_SHUTDOWN, 1); |
| 568 | |
| 569 | /* turn on key interrupt */ |
| 570 | /* enable microp interrupt to detect changes */ |
| 571 | ret = microp_interrupt_enable(client, IRQ_REMOTEKEY); |
| 572 | if (ret < 0) { |
| 573 | dev_err(&client->dev, "%s: failed to enable irqs\n", |
| 574 | __func__); |
| 575 | return ret; |
| 576 | } |
| 577 | return 0; |
| 578 | } |
| 579 | |
| 580 | static int microp_disable_key_event(void) |
| 581 | { |
| 582 | int ret; |
| 583 | struct i2c_client *client; |
| 584 | |
| 585 | client = private_microp_client; |
| 586 | |
| 587 | /* shutdown key interrupt */ |
| 588 | if (!is_cdma_version(system_rev)) |
| 589 | gpio_set_value(MAHIMAHI_GPIO_35MM_KEY_INT_SHUTDOWN, 0); |
| 590 | |
| 591 | /* disable microp interrupt to detect changes */ |
| 592 | ret = microp_interrupt_disable(client, IRQ_REMOTEKEY); |
| 593 | if (ret < 0) { |
| 594 | dev_err(&client->dev, "%s: failed to disable irqs\n", |
| 595 | __func__); |
| 596 | return ret; |
| 597 | } |
| 598 | return 0; |
| 599 | } |
| 600 | |
| 601 | static int get_remote_keycode(int *keycode) |
| 602 | { |
| 603 | struct i2c_client *client = private_microp_client; |
| 604 | int ret; |
| 605 | uint8_t data[2]; |
| 606 | |
| 607 | ret = i2c_read_block(client, MICROP_I2C_RCMD_REMOTE_KEYCODE, data, 2); |
| 608 | if (ret < 0) { |
| 609 | dev_err(&client->dev, "%s: read remote keycode fail\n", |
| 610 | __func__); |
| 611 | return -EIO; |
| 612 | } |
| 613 | pr_debug("%s: key = 0x%x\n", __func__, data[1]); |
| 614 | if (!data[1]) { |
| 615 | *keycode = 0; |
| 616 | return 1; /* no keycode */ |
| 617 | } else { |
| 618 | *keycode = data[1]; |
| 619 | } |
| 620 | return 0; |
| 621 | } |
| 622 | |
| 623 | static ssize_t microp_i2c_remotekey_adc_show(struct device *dev, |
| 624 | struct device_attribute *attr, char *buf) |
| 625 | { |
| 626 | struct i2c_client *client; |
| 627 | uint16_t value; |
| 628 | int i, button = 0; |
| 629 | int ret; |
| 630 | |
| 631 | client = to_i2c_client(dev); |
| 632 | |
| 633 | microp_read_adc(MICROP_REMOTE_KEY_ADC_CHAN, &value); |
| 634 | |
| 635 | for (i = 0; i < 3; i++) { |
| 636 | if ((value >= remote_key_adc_table[2 * i]) && |
| 637 | (value <= remote_key_adc_table[2 * i + 1])) { |
| 638 | button = i + 1; |
| 639 | } |
| 640 | |
| 641 | } |
| 642 | |
| 643 | ret = sprintf(buf, "Remote Key[0x%03X] => button %d\n", |
| 644 | value, button); |
| 645 | |
| 646 | return ret; |
| 647 | } |
| 648 | |
| 649 | static DEVICE_ATTR(key_adc, 0644, microp_i2c_remotekey_adc_show, NULL); |
| 650 | |
| 651 | /* |
| 652 | * LED support |
| 653 | */ |
| 654 | static int microp_i2c_write_led_mode(struct i2c_client *client, |
| 655 | struct led_classdev *led_cdev, |
| 656 | uint8_t mode, uint16_t off_timer) |
| 657 | { |
| 658 | struct microp_i2c_client_data *cdata; |
| 659 | struct microp_led_data *ldata; |
| 660 | uint8_t data[7]; |
| 661 | int ret; |
| 662 | |
| 663 | cdata = i2c_get_clientdata(client); |
| 664 | ldata = container_of(led_cdev, struct microp_led_data, ldev); |
| 665 | |
| 666 | |
| 667 | if (ldata->type == GREEN_LED) { |
| 668 | data[0] = 0x01; |
| 669 | data[1] = mode; |
| 670 | data[2] = off_timer >> 8; |
| 671 | data[3] = off_timer & 0xFF; |
| 672 | data[4] = 0x00; |
| 673 | data[5] = 0x00; |
| 674 | data[6] = 0x00; |
| 675 | } else if (ldata->type == AMBER_LED) { |
| 676 | data[0] = 0x02; |
| 677 | data[1] = 0x00; |
| 678 | data[2] = 0x00; |
| 679 | data[3] = 0x00; |
| 680 | data[4] = mode; |
| 681 | data[5] = off_timer >> 8; |
| 682 | data[6] = off_timer & 0xFF; |
| 683 | } else if (ldata->type == RED_LED) { |
| 684 | data[0] = 0x02; |
| 685 | data[1] = 0x00; |
| 686 | data[2] = 0x00; |
| 687 | data[3] = 0x00; |
| 688 | data[4] = mode? 5: 0; |
| 689 | data[5] = off_timer >> 8; |
| 690 | data[6] = off_timer & 0xFF; |
| 691 | } else if (ldata->type == BLUE_LED) { |
| 692 | data[0] = 0x04; |
| 693 | data[1] = mode; |
| 694 | data[2] = off_timer >> 8; |
| 695 | data[3] = off_timer & 0xFF; |
| 696 | data[4] = 0x00; |
| 697 | data[5] = 0x00; |
| 698 | data[6] = 0x00; |
| 699 | } |
| 700 | |
| 701 | ret = i2c_write_block(client, MICROP_I2C_WCMD_LED_MODE, data, 7); |
| 702 | if (ret == 0) { |
| 703 | mutex_lock(&ldata->led_data_mutex); |
| 704 | if (mode > 1) |
| 705 | ldata->blink = mode; |
| 706 | else |
| 707 | ldata->mode = mode; |
| 708 | mutex_unlock(&ldata->led_data_mutex); |
| 709 | } |
| 710 | return ret; |
| 711 | } |
| 712 | |
| 713 | static ssize_t microp_i2c_led_blink_show(struct device *dev, |
| 714 | struct device_attribute *attr, char *buf) |
| 715 | { |
| 716 | struct led_classdev *led_cdev; |
| 717 | struct microp_led_data *ldata; |
| 718 | int ret; |
| 719 | |
| 720 | led_cdev = (struct led_classdev *)dev_get_drvdata(dev); |
| 721 | ldata = container_of(led_cdev, struct microp_led_data, ldev); |
| 722 | |
| 723 | mutex_lock(&ldata->led_data_mutex); |
| 724 | ret = sprintf(buf, "%d\n", ldata->blink ? ldata->blink - 1 : 0); |
| 725 | mutex_unlock(&ldata->led_data_mutex); |
| 726 | |
| 727 | return ret; |
| 728 | } |
| 729 | |
| 730 | static ssize_t microp_i2c_led_blink_store(struct device *dev, |
| 731 | struct device_attribute *attr, |
| 732 | const char *buf, size_t count) |
| 733 | { |
| 734 | struct led_classdev *led_cdev; |
| 735 | struct microp_led_data *ldata; |
| 736 | struct i2c_client *client; |
| 737 | int val, ret; |
| 738 | uint8_t mode; |
| 739 | |
| 740 | val = -1; |
| 741 | sscanf(buf, "%u", &val); |
| 742 | |
| 743 | led_cdev = (struct led_classdev *)dev_get_drvdata(dev); |
| 744 | ldata = container_of(led_cdev, struct microp_led_data, ldev); |
| 745 | client = to_i2c_client(dev->parent); |
| 746 | |
| 747 | mutex_lock(&ldata->led_data_mutex); |
| 748 | switch (val) { |
| 749 | case 0: /* stop flashing */ |
| 750 | mode = ldata->mode; |
| 751 | ldata->blink = 0; |
| 752 | break; |
| 753 | case 1: |
| 754 | case 2: |
| 755 | case 3: |
| 756 | mode = val + 1; |
| 757 | break; |
| 758 | |
| 759 | default: |
| 760 | mutex_unlock(&ldata->led_data_mutex); |
| 761 | return -EINVAL; |
| 762 | } |
| 763 | mutex_unlock(&ldata->led_data_mutex); |
| 764 | |
| 765 | ret = microp_i2c_write_led_mode(client, led_cdev, mode, 0xffff); |
| 766 | if (ret) |
| 767 | dev_err(&client->dev, "%s set blink failed\n", led_cdev->name); |
| 768 | |
| 769 | return count; |
| 770 | } |
| 771 | |
| 772 | static DEVICE_ATTR(blink, 0644, microp_i2c_led_blink_show, |
| 773 | microp_i2c_led_blink_store); |
| 774 | |
| 775 | static ssize_t microp_i2c_led_off_timer_show(struct device *dev, |
| 776 | struct device_attribute *attr, char *buf) |
| 777 | { |
| 778 | struct microp_i2c_client_data *cdata; |
| 779 | struct led_classdev *led_cdev; |
| 780 | struct microp_led_data *ldata; |
| 781 | struct i2c_client *client; |
| 782 | uint8_t data[2]; |
| 783 | int ret, offtime; |
| 784 | |
| 785 | |
| 786 | led_cdev = (struct led_classdev *)dev_get_drvdata(dev); |
| 787 | ldata = container_of(led_cdev, struct microp_led_data, ldev); |
| 788 | client = to_i2c_client(dev->parent); |
| 789 | cdata = i2c_get_clientdata(client); |
| 790 | |
| 791 | dev_dbg(&client->dev, "Getting %s remaining time\n", led_cdev->name); |
| 792 | |
| 793 | if (ldata->type == GREEN_LED) { |
| 794 | ret = i2c_read_block(client, |
| 795 | MICROP_I2C_RCMD_GREEN_LED_REMAIN_TIME, data, 2); |
| 796 | } else if (ldata->type == AMBER_LED) { |
| 797 | ret = i2c_read_block(client, |
| 798 | MICROP_I2C_RCMD_AMBER_RED_LED_REMAIN_TIME, |
| 799 | data, 2); |
| 800 | } else if (ldata->type == RED_LED) { |
| 801 | ret = i2c_read_block(client, |
| 802 | MICROP_I2C_RCMD_AMBER_RED_LED_REMAIN_TIME, |
| 803 | data, 2); |
| 804 | } else if (ldata->type == BLUE_LED) { |
| 805 | ret = i2c_read_block(client, |
| 806 | MICROP_I2C_RCMD_BLUE_LED_REMAIN_TIME, data, 2); |
| 807 | } else { |
| 808 | dev_err(&client->dev, "Unknown led %s\n", ldata->ldev.name); |
| 809 | return -EINVAL; |
| 810 | } |
| 811 | |
| 812 | if (ret) { |
| 813 | dev_err(&client->dev, |
| 814 | "%s get off_timer failed\n", led_cdev->name); |
| 815 | } |
| 816 | offtime = (int)((data[1] | data[0] << 8) * 2); |
| 817 | |
| 818 | ret = sprintf(buf, "Time remains %d:%d\n", offtime / 60, offtime % 60); |
| 819 | return ret; |
| 820 | } |
| 821 | |
| 822 | static ssize_t microp_i2c_led_off_timer_store(struct device *dev, |
| 823 | struct device_attribute *attr, |
| 824 | const char *buf, size_t count) |
| 825 | { |
| 826 | struct led_classdev *led_cdev; |
| 827 | struct microp_led_data *ldata; |
| 828 | struct i2c_client *client; |
| 829 | int min, sec, ret; |
| 830 | uint16_t off_timer; |
| 831 | |
| 832 | min = -1; |
| 833 | sec = -1; |
| 834 | sscanf(buf, "%d %d", &min, &sec); |
| 835 | |
| 836 | if (min < 0 || min > 255) |
| 837 | return -EINVAL; |
| 838 | if (sec < 0 || sec > 255) |
| 839 | return -EINVAL; |
| 840 | |
| 841 | led_cdev = (struct led_classdev *)dev_get_drvdata(dev); |
| 842 | ldata = container_of(led_cdev, struct microp_led_data, ldev); |
| 843 | client = to_i2c_client(dev->parent); |
| 844 | |
| 845 | dev_dbg(&client->dev, "Setting %s off_timer to %d min %d sec\n", |
| 846 | led_cdev->name, min, sec); |
| 847 | |
| 848 | if (!min && !sec) |
| 849 | off_timer = 0xFFFF; |
| 850 | else |
| 851 | off_timer = (min * 60 + sec) / 2; |
| 852 | |
| 853 | ret = microp_i2c_write_led_mode(client, led_cdev, |
| 854 | ldata->mode, off_timer); |
| 855 | if (ret) { |
| 856 | dev_err(&client->dev, |
| 857 | "%s set off_timer %d min %d sec failed\n", |
| 858 | led_cdev->name, min, sec); |
| 859 | } |
| 860 | return count; |
| 861 | } |
| 862 | |
| 863 | static DEVICE_ATTR(off_timer, 0644, microp_i2c_led_off_timer_show, |
| 864 | microp_i2c_led_off_timer_store); |
| 865 | |
| 866 | static ssize_t microp_i2c_jogball_color_store(struct device *dev, |
| 867 | struct device_attribute *attr, |
| 868 | const char *buf, size_t count) |
| 869 | { |
| 870 | struct led_classdev *led_cdev; |
| 871 | struct microp_led_data *ldata; |
| 872 | struct i2c_client *client; |
| 873 | int rpwm, gpwm, bpwm, ret; |
| 874 | uint8_t data[4]; |
| 875 | |
| 876 | rpwm = -1; |
| 877 | gpwm = -1; |
| 878 | bpwm = -1; |
| 879 | sscanf(buf, "%d %d %d", &rpwm, &gpwm, &bpwm); |
| 880 | |
| 881 | if (rpwm < 0 || rpwm > 255) |
| 882 | return -EINVAL; |
| 883 | if (gpwm < 0 || gpwm > 255) |
| 884 | return -EINVAL; |
| 885 | if (bpwm < 0 || bpwm > 255) |
| 886 | return -EINVAL; |
| 887 | |
| 888 | led_cdev = (struct led_classdev *)dev_get_drvdata(dev); |
| 889 | ldata = container_of(led_cdev, struct microp_led_data, ldev); |
| 890 | client = to_i2c_client(dev->parent); |
| 891 | |
| 892 | dev_dbg(&client->dev, "Setting %s color to R=%d, G=%d, B=%d\n", |
| 893 | led_cdev->name, rpwm, gpwm, bpwm); |
| 894 | |
| 895 | data[0] = rpwm; |
| 896 | data[1] = gpwm; |
| 897 | data[2] = bpwm; |
| 898 | data[3] = 0x00; |
| 899 | |
| 900 | ret = i2c_write_block(client, MICROP_I2C_WCMD_JOGBALL_LED_PWM_SET, |
| 901 | data, 4); |
| 902 | if (ret) { |
| 903 | dev_err(&client->dev, |
| 904 | "%s set color R=%d G=%d B=%d failed\n", |
| 905 | led_cdev->name, rpwm, gpwm, bpwm); |
| 906 | } |
| 907 | return count; |
| 908 | } |
| 909 | |
| 910 | static DEVICE_ATTR(color, 0644, NULL, microp_i2c_jogball_color_store); |
| 911 | |
| 912 | static ssize_t microp_i2c_jogball_period_store(struct device *dev, |
| 913 | struct device_attribute *attr, |
| 914 | const char *buf, size_t count) |
| 915 | { |
| 916 | struct led_classdev *led_cdev; |
| 917 | struct microp_led_data *ldata; |
| 918 | struct i2c_client *client; |
| 919 | int period = -1; |
| 920 | int ret; |
| 921 | uint8_t data[4]; |
| 922 | |
| 923 | sscanf(buf, "%d", &period); |
| 924 | |
| 925 | if (period < 2 || period > 12) |
| 926 | return -EINVAL; |
| 927 | |
| 928 | led_cdev = (struct led_classdev *)dev_get_drvdata(dev); |
| 929 | ldata = container_of(led_cdev, struct microp_led_data, ldev); |
| 930 | client = to_i2c_client(dev->parent); |
| 931 | |
| 932 | dev_info(&client->dev, "Setting Jogball flash period to %d\n", period); |
| 933 | |
| 934 | data[0] = 0x00; |
| 935 | data[1] = period; |
| 936 | |
| 937 | ret = i2c_write_block(client, MICROP_I2C_WCMD_JOGBALL_LED_PERIOD_SET, |
| 938 | data, 2); |
| 939 | if (ret) { |
| 940 | dev_err(&client->dev, "%s set period=%d failed\n", |
| 941 | led_cdev->name, period); |
| 942 | } |
| 943 | return count; |
| 944 | } |
| 945 | |
| 946 | static DEVICE_ATTR(period, 0644, NULL, microp_i2c_jogball_period_store); |
| 947 | |
| 948 | static void microp_brightness_set(struct led_classdev *led_cdev, |
| 949 | enum led_brightness brightness) |
| 950 | { |
| 951 | unsigned long flags; |
| 952 | struct i2c_client *client = to_i2c_client(led_cdev->dev->parent); |
| 953 | struct microp_led_data *ldata = |
| 954 | container_of(led_cdev, struct microp_led_data, ldev); |
| 955 | |
| 956 | dev_dbg(&client->dev, "Setting %s brightness current %d new %d\n", |
| 957 | led_cdev->name, led_cdev->brightness, brightness); |
| 958 | |
| 959 | if (brightness > 255) |
| 960 | brightness = 255; |
| 961 | led_cdev->brightness = brightness; |
| 962 | |
| 963 | spin_lock_irqsave(&ldata->brightness_lock, flags); |
| 964 | ldata->brightness = brightness; |
| 965 | spin_unlock_irqrestore(&ldata->brightness_lock, flags); |
| 966 | |
| 967 | schedule_work(&ldata->brightness_work); |
| 968 | } |
| 969 | |
| 970 | static void microp_led_brightness_set_work(struct work_struct *work) |
| 971 | { |
| 972 | unsigned long flags; |
| 973 | struct microp_led_data *ldata = |
| 974 | container_of(work, struct microp_led_data, brightness_work); |
| 975 | struct led_classdev *led_cdev = &ldata->ldev; |
| 976 | |
| 977 | struct i2c_client *client = to_i2c_client(led_cdev->dev->parent); |
| 978 | |
| 979 | enum led_brightness brightness; |
| 980 | int ret; |
| 981 | uint8_t mode; |
| 982 | |
| 983 | spin_lock_irqsave(&ldata->brightness_lock, flags); |
| 984 | brightness = ldata->brightness; |
| 985 | spin_unlock_irqrestore(&ldata->brightness_lock, flags); |
| 986 | |
| 987 | if (brightness) |
| 988 | mode = 1; |
| 989 | else |
| 990 | mode = 0; |
| 991 | |
| 992 | ret = microp_i2c_write_led_mode(client, led_cdev, mode, 0xffff); |
| 993 | if (ret) { |
| 994 | dev_err(&client->dev, |
| 995 | "led_brightness_set failed to set mode\n"); |
| 996 | } |
| 997 | } |
| 998 | |
| 999 | struct device_attribute *green_amber_attrs[] = { |
| 1000 | &dev_attr_blink, |
| 1001 | &dev_attr_off_timer, |
| 1002 | }; |
| 1003 | |
| 1004 | struct device_attribute *jogball_attrs[] = { |
| 1005 | &dev_attr_color, |
| 1006 | &dev_attr_period, |
| 1007 | }; |
| 1008 | |
| 1009 | static void microp_led_buttons_brightness_set_work(struct work_struct *work) |
| 1010 | { |
| 1011 | |
| 1012 | unsigned long flags; |
| 1013 | struct microp_led_data *ldata = |
| 1014 | container_of(work, struct microp_led_data, brightness_work); |
| 1015 | struct led_classdev *led_cdev = &ldata->ldev; |
| 1016 | |
| 1017 | struct i2c_client *client = to_i2c_client(led_cdev->dev->parent); |
| 1018 | struct microp_i2c_client_data *cdata = i2c_get_clientdata(client); |
| 1019 | |
| 1020 | |
| 1021 | uint8_t data[4] = {0, 0, 0}; |
| 1022 | int ret = 0; |
| 1023 | enum led_brightness brightness; |
| 1024 | uint8_t value; |
| 1025 | |
| 1026 | |
| 1027 | spin_lock_irqsave(&ldata->brightness_lock, flags); |
| 1028 | brightness = ldata->brightness; |
| 1029 | spin_unlock_irqrestore(&ldata->brightness_lock, flags); |
| 1030 | |
| 1031 | value = brightness >= 255 ? 0x20 : 0; |
| 1032 | |
| 1033 | /* avoid a flicker that can occur when writing the same value */ |
| 1034 | if (cdata->button_led_value == value) |
| 1035 | return; |
| 1036 | cdata->button_led_value = value; |
| 1037 | |
| 1038 | /* in 40ms */ |
| 1039 | data[0] = 0x05; |
| 1040 | /* duty cycle 0-255 */ |
| 1041 | data[1] = value; |
| 1042 | /* bit2 == change brightness */ |
| 1043 | data[3] = 0x04; |
| 1044 | |
| 1045 | ret = i2c_write_block(client, MICROP_I2C_WCMD_BUTTONS_LED_CTRL, |
| 1046 | data, 4); |
| 1047 | if (ret < 0) |
| 1048 | dev_err(&client->dev, "%s failed on set buttons\n", __func__); |
| 1049 | } |
| 1050 | |
| 1051 | static void microp_led_jogball_brightness_set_work(struct work_struct *work) |
| 1052 | { |
| 1053 | unsigned long flags; |
| 1054 | struct microp_led_data *ldata = |
| 1055 | container_of(work, struct microp_led_data, brightness_work); |
| 1056 | struct led_classdev *led_cdev = &ldata->ldev; |
| 1057 | |
| 1058 | struct i2c_client *client = to_i2c_client(led_cdev->dev->parent); |
| 1059 | uint8_t data[3] = {0, 0, 0}; |
| 1060 | int ret = 0; |
| 1061 | enum led_brightness brightness; |
| 1062 | |
| 1063 | spin_lock_irqsave(&ldata->brightness_lock, flags); |
| 1064 | brightness = ldata->brightness; |
| 1065 | spin_unlock_irqrestore(&ldata->brightness_lock, flags); |
| 1066 | |
| 1067 | switch (brightness) { |
| 1068 | case 0: |
| 1069 | data[0] = 0; |
| 1070 | break; |
| 1071 | case 3: |
| 1072 | data[0] = 1; |
| 1073 | data[1] = data[2] = 0xFF; |
| 1074 | break; |
| 1075 | case 7: |
| 1076 | data[0] = 2; |
| 1077 | data[1] = 0; |
| 1078 | data[2] = 60; |
| 1079 | break; |
| 1080 | default: |
| 1081 | dev_warn(&client->dev, "%s: unknown value: %d\n", |
| 1082 | __func__, brightness); |
| 1083 | break; |
| 1084 | } |
| 1085 | ret = i2c_write_block(client, MICROP_I2C_WCMD_JOGBALL_LED_MODE, |
| 1086 | data, 3); |
| 1087 | if (ret < 0) |
| 1088 | dev_err(&client->dev, "%s failed on set jogball mode:0x%2.2X\n", |
| 1089 | __func__, data[0]); |
| 1090 | } |
| 1091 | |
| 1092 | /* |
| 1093 | * Light Sensor Support |
| 1094 | */ |
| 1095 | static int microp_i2c_auto_backlight_mode(struct i2c_client *client, |
| 1096 | uint8_t enabled) |
| 1097 | { |
| 1098 | uint8_t data[2]; |
| 1099 | int ret = 0; |
| 1100 | |
| 1101 | data[0] = 0; |
| 1102 | if (enabled) |
| 1103 | data[1] = 1; |
| 1104 | else |
| 1105 | data[1] = 0; |
| 1106 | |
| 1107 | ret = i2c_write_block(client, MICROP_I2C_WCMD_AUTO_BL_CTL, data, 2); |
| 1108 | if (ret != 0) |
| 1109 | pr_err("%s: set auto light sensor fail\n", __func__); |
| 1110 | |
| 1111 | return ret; |
| 1112 | } |
| 1113 | |
| 1114 | static int lightsensor_enable(void) |
| 1115 | { |
| 1116 | struct i2c_client *client; |
| 1117 | struct microp_i2c_client_data *cdata; |
| 1118 | int ret; |
| 1119 | |
| 1120 | client = private_microp_client; |
| 1121 | cdata = i2c_get_clientdata(client); |
| 1122 | |
| 1123 | if (cdata->microp_is_suspend) { |
| 1124 | pr_err("%s: abort, uP is going to suspend after #\n", |
| 1125 | __func__); |
| 1126 | return -EIO; |
| 1127 | } |
| 1128 | |
| 1129 | disable_irq(client->irq); |
| 1130 | ret = microp_i2c_auto_backlight_mode(client, 1); |
| 1131 | if (ret < 0) { |
| 1132 | pr_err("%s: set auto light sensor fail\n", __func__); |
| 1133 | enable_irq(client->irq); |
| 1134 | return ret; |
| 1135 | } |
| 1136 | |
| 1137 | cdata->auto_backlight_enabled = 1; |
| 1138 | /* TEMPORARY HACK: schedule a deferred light sensor read |
| 1139 | * to work around sensor manager race condition |
| 1140 | */ |
| 1141 | schedule_delayed_work(&cdata->ls_read_work, LS_READ_DELAY); |
| 1142 | schedule_work(&cdata->work.work); |
| 1143 | |
| 1144 | return 0; |
| 1145 | } |
| 1146 | |
| 1147 | static int lightsensor_disable(void) |
| 1148 | { |
| 1149 | /* update trigger data when done */ |
| 1150 | struct i2c_client *client; |
| 1151 | struct microp_i2c_client_data *cdata; |
| 1152 | int ret; |
| 1153 | |
| 1154 | client = private_microp_client; |
| 1155 | cdata = i2c_get_clientdata(client); |
| 1156 | |
| 1157 | if (cdata->microp_is_suspend) { |
| 1158 | pr_err("%s: abort, uP is going to suspend after #\n", |
| 1159 | __func__); |
| 1160 | return -EIO; |
| 1161 | } |
| 1162 | |
| 1163 | cancel_delayed_work(&cdata->ls_read_work); |
| 1164 | |
| 1165 | ret = microp_i2c_auto_backlight_mode(client, 0); |
| 1166 | if (ret < 0) |
| 1167 | pr_err("%s: disable auto light sensor fail\n", |
| 1168 | __func__); |
| 1169 | else |
| 1170 | cdata->auto_backlight_enabled = 0; |
| 1171 | return 0; |
| 1172 | } |
| 1173 | |
| 1174 | static int microp_lightsensor_read(uint16_t *adc_value, |
| 1175 | uint8_t *adc_level) |
| 1176 | { |
| 1177 | struct i2c_client *client; |
| 1178 | struct microp_i2c_client_data *cdata; |
| 1179 | uint8_t i; |
| 1180 | int ret; |
| 1181 | |
| 1182 | client = private_microp_client; |
| 1183 | cdata = i2c_get_clientdata(client); |
| 1184 | |
| 1185 | ret = microp_read_adc(MICROP_LSENSOR_ADC_CHAN, adc_value); |
| 1186 | if (ret != 0) |
| 1187 | return -1; |
| 1188 | |
| 1189 | if (*adc_value > 0x3FF) { |
| 1190 | pr_warning("%s: get wrong value: 0x%X\n", |
| 1191 | __func__, *adc_value); |
| 1192 | return -1; |
| 1193 | } else { |
| 1194 | if (!cdata->als_calibrating) { |
| 1195 | *adc_value = *adc_value |
| 1196 | * cdata->als_gadc / cdata->als_kadc; |
| 1197 | if (*adc_value > 0x3FF) |
| 1198 | *adc_value = 0x3FF; |
| 1199 | } |
| 1200 | |
| 1201 | *adc_level = ARRAY_SIZE(lsensor_adc_table) - 1; |
| 1202 | for (i = 0; i < ARRAY_SIZE(lsensor_adc_table); i++) { |
| 1203 | if (*adc_value <= lsensor_adc_table[i]) { |
| 1204 | *adc_level = i; |
| 1205 | break; |
| 1206 | } |
| 1207 | } |
| 1208 | pr_debug("%s: ADC value: 0x%X, level: %d #\n", |
| 1209 | __func__, *adc_value, *adc_level); |
| 1210 | } |
| 1211 | |
| 1212 | return 0; |
| 1213 | } |
| 1214 | |
| 1215 | static ssize_t microp_i2c_lightsensor_adc_show(struct device *dev, |
| 1216 | struct device_attribute *attr, char *buf) |
| 1217 | { |
| 1218 | uint8_t adc_level = 0; |
| 1219 | uint16_t adc_value = 0; |
| 1220 | int ret; |
| 1221 | |
| 1222 | ret = microp_lightsensor_read(&adc_value, &adc_level); |
| 1223 | |
| 1224 | ret = sprintf(buf, "ADC[0x%03X] => level %d\n", adc_value, adc_level); |
| 1225 | |
| 1226 | return ret; |
| 1227 | } |
| 1228 | |
| 1229 | static DEVICE_ATTR(ls_adc, 0644, microp_i2c_lightsensor_adc_show, NULL); |
| 1230 | |
| 1231 | static ssize_t microp_i2c_ls_auto_show(struct device *dev, |
| 1232 | struct device_attribute *attr, char *buf) |
| 1233 | { |
| 1234 | struct i2c_client *client; |
| 1235 | uint8_t data[2] = {0, 0}; |
| 1236 | int ret; |
| 1237 | |
| 1238 | client = to_i2c_client(dev); |
| 1239 | |
| 1240 | i2c_read_block(client, MICROP_I2C_RCMD_SPI_BL_STATUS, data, 2); |
| 1241 | ret = sprintf(buf, "Light sensor Auto = %d, SPI enable = %d\n", |
| 1242 | data[0], data[1]); |
| 1243 | |
| 1244 | return ret; |
| 1245 | } |
| 1246 | |
| 1247 | static ssize_t microp_i2c_ls_auto_store(struct device *dev, |
| 1248 | struct device_attribute *attr, |
| 1249 | const char *buf, size_t count) |
| 1250 | { |
| 1251 | struct i2c_client *client; |
| 1252 | struct microp_i2c_client_data *cdata; |
| 1253 | uint8_t enable = 0; |
| 1254 | int ls_auto; |
| 1255 | |
| 1256 | ls_auto = -1; |
| 1257 | sscanf(buf, "%d", &ls_auto); |
| 1258 | |
| 1259 | if (ls_auto != 0 && ls_auto != 1 && ls_auto != ALS_CALIBRATE_MODE) |
| 1260 | return -EINVAL; |
| 1261 | |
| 1262 | client = to_i2c_client(dev); |
| 1263 | cdata = i2c_get_clientdata(client); |
| 1264 | |
| 1265 | if (ls_auto) { |
| 1266 | enable = 1; |
| 1267 | cdata->als_calibrating = (ls_auto == ALS_CALIBRATE_MODE) ? 1 : 0; |
| 1268 | cdata->auto_backlight_enabled = 1; |
| 1269 | } else { |
| 1270 | enable = 0; |
| 1271 | cdata->als_calibrating = 0; |
| 1272 | cdata->auto_backlight_enabled = 0; |
| 1273 | } |
| 1274 | |
| 1275 | microp_i2c_auto_backlight_mode(client, enable); |
| 1276 | |
| 1277 | return count; |
| 1278 | } |
| 1279 | |
| 1280 | static DEVICE_ATTR(ls_auto, 0644, microp_i2c_ls_auto_show, |
| 1281 | microp_i2c_ls_auto_store); |
| 1282 | |
| 1283 | DEFINE_MUTEX(api_lock); |
| 1284 | static int lightsensor_opened; |
| 1285 | |
| 1286 | static int lightsensor_open(struct inode *inode, struct file *file) |
| 1287 | { |
| 1288 | int rc = 0; |
| 1289 | pr_debug("%s\n", __func__); |
| 1290 | mutex_lock(&api_lock); |
| 1291 | if (lightsensor_opened) { |
| 1292 | pr_err("%s: already opened\n", __func__); |
| 1293 | rc = -EBUSY; |
| 1294 | } |
| 1295 | lightsensor_opened = 1; |
| 1296 | mutex_unlock(&api_lock); |
| 1297 | return rc; |
| 1298 | } |
| 1299 | |
| 1300 | static int lightsensor_release(struct inode *inode, struct file *file) |
| 1301 | { |
| 1302 | pr_debug("%s\n", __func__); |
| 1303 | mutex_lock(&api_lock); |
| 1304 | lightsensor_opened = 0; |
| 1305 | mutex_unlock(&api_lock); |
| 1306 | return 0; |
| 1307 | } |
| 1308 | |
| 1309 | static long lightsensor_ioctl(struct file *file, unsigned int cmd, |
| 1310 | unsigned long arg) |
| 1311 | { |
| 1312 | int rc, val; |
| 1313 | struct i2c_client *client; |
| 1314 | struct microp_i2c_client_data *cdata; |
| 1315 | |
| 1316 | mutex_lock(&api_lock); |
| 1317 | |
| 1318 | client = private_microp_client; |
| 1319 | cdata = i2c_get_clientdata(client); |
| 1320 | |
| 1321 | pr_debug("%s cmd %d\n", __func__, _IOC_NR(cmd)); |
| 1322 | |
| 1323 | switch (cmd) { |
| 1324 | case LIGHTSENSOR_IOCTL_ENABLE: |
| 1325 | if (get_user(val, (unsigned long __user *)arg)) { |
| 1326 | rc = -EFAULT; |
| 1327 | break; |
| 1328 | } |
| 1329 | rc = val ? lightsensor_enable() : lightsensor_disable(); |
| 1330 | break; |
| 1331 | case LIGHTSENSOR_IOCTL_GET_ENABLED: |
| 1332 | val = cdata->auto_backlight_enabled; |
| 1333 | pr_debug("%s enabled %d\n", __func__, val); |
| 1334 | rc = put_user(val, (unsigned long __user *)arg); |
| 1335 | break; |
| 1336 | default: |
| 1337 | pr_err("%s: invalid cmd %d\n", __func__, _IOC_NR(cmd)); |
| 1338 | rc = -EINVAL; |
| 1339 | } |
| 1340 | |
| 1341 | mutex_unlock(&api_lock); |
| 1342 | return rc; |
| 1343 | } |
| 1344 | |
| 1345 | static struct file_operations lightsensor_fops = { |
| 1346 | .owner = THIS_MODULE, |
| 1347 | .open = lightsensor_open, |
| 1348 | .release = lightsensor_release, |
| 1349 | .unlocked_ioctl = lightsensor_ioctl |
| 1350 | }; |
| 1351 | |
| 1352 | struct miscdevice lightsensor_misc = { |
| 1353 | .minor = MISC_DYNAMIC_MINOR, |
| 1354 | .name = "lightsensor", |
| 1355 | .fops = &lightsensor_fops |
| 1356 | }; |
| 1357 | |
| 1358 | /* |
| 1359 | * G-sensor |
| 1360 | */ |
| 1361 | static int microp_spi_enable(uint8_t on) |
| 1362 | { |
| 1363 | struct i2c_client *client; |
| 1364 | int ret; |
| 1365 | |
| 1366 | client = private_microp_client; |
| 1367 | ret = i2c_write_block(client, MICROP_I2C_WCMD_SPI_EN, &on, 1); |
| 1368 | if (ret < 0) { |
| 1369 | dev_err(&client->dev,"%s: i2c_write_block fail\n", __func__); |
| 1370 | return ret; |
| 1371 | } |
| 1372 | msleep(10); |
| 1373 | return ret; |
| 1374 | } |
| 1375 | |
| 1376 | static int gsensor_read_reg(uint8_t reg, uint8_t *data) |
| 1377 | { |
| 1378 | struct i2c_client *client; |
| 1379 | int ret; |
| 1380 | uint8_t tmp[2]; |
| 1381 | |
| 1382 | client = private_microp_client; |
| 1383 | ret = i2c_write_block(client, MICROP_I2C_WCMD_GSENSOR_REG_DATA_REQ, |
| 1384 | ®, 1); |
| 1385 | if (ret < 0) { |
| 1386 | dev_err(&client->dev,"%s: i2c_write_block fail\n", __func__); |
| 1387 | return ret; |
| 1388 | } |
| 1389 | msleep(10); |
| 1390 | |
| 1391 | ret = i2c_read_block(client, MICROP_I2C_RCMD_GSENSOR_REG_DATA, tmp, 2); |
| 1392 | if (ret < 0) { |
| 1393 | dev_err(&client->dev,"%s: i2c_read_block fail\n", __func__); |
| 1394 | return ret; |
| 1395 | } |
| 1396 | *data = tmp[1]; |
| 1397 | return ret; |
| 1398 | } |
| 1399 | |
| 1400 | static int gsensor_write_reg(uint8_t reg, uint8_t data) |
| 1401 | { |
| 1402 | struct i2c_client *client; |
| 1403 | int ret; |
| 1404 | uint8_t tmp[2]; |
| 1405 | |
| 1406 | client = private_microp_client; |
| 1407 | |
| 1408 | tmp[0] = reg; |
| 1409 | tmp[1] = data; |
| 1410 | ret = i2c_write_block(client, MICROP_I2C_WCMD_GSENSOR_REG, tmp, 2); |
| 1411 | if (ret < 0) { |
| 1412 | dev_err(&client->dev,"%s: i2c_write_block fail\n", __func__); |
| 1413 | return ret; |
| 1414 | } |
| 1415 | |
| 1416 | return ret; |
| 1417 | } |
| 1418 | |
| 1419 | static int gsensor_read_acceleration(short *buf) |
| 1420 | { |
| 1421 | struct i2c_client *client; |
| 1422 | int ret; |
| 1423 | uint8_t tmp[6]; |
| 1424 | struct microp_i2c_client_data *cdata; |
| 1425 | |
| 1426 | client = private_microp_client; |
| 1427 | |
| 1428 | cdata = i2c_get_clientdata(client); |
| 1429 | |
| 1430 | tmp[0] = 1; |
| 1431 | ret = i2c_write_block(client, MICROP_I2C_WCMD_GSENSOR_DATA_REQ, |
| 1432 | tmp, 1); |
| 1433 | if (ret < 0) { |
| 1434 | dev_err(&client->dev,"%s: i2c_write_block fail\n", __func__); |
| 1435 | return ret; |
| 1436 | } |
| 1437 | |
| 1438 | msleep(10); |
| 1439 | |
| 1440 | if (cdata->version <= 0x615) { |
| 1441 | /* |
| 1442 | * Note the data is a 10bit signed value from the chip. |
| 1443 | */ |
| 1444 | ret = i2c_read_block(client, MICROP_I2C_RCMD_GSENSOR_X_DATA, |
| 1445 | tmp, 2); |
| 1446 | if (ret < 0) { |
| 1447 | dev_err(&client->dev, "%s: i2c_read_block fail\n", |
| 1448 | __func__); |
| 1449 | return ret; |
| 1450 | } |
| 1451 | buf[0] = (short)(tmp[0] << 8 | tmp[1]); |
| 1452 | buf[0] >>= 6; |
| 1453 | |
| 1454 | ret = i2c_read_block(client, MICROP_I2C_RCMD_GSENSOR_Y_DATA, |
| 1455 | tmp, 2); |
| 1456 | if (ret < 0) { |
| 1457 | dev_err(&client->dev, "%s: i2c_read_block fail\n", |
| 1458 | __func__); |
| 1459 | return ret; |
| 1460 | } |
| 1461 | buf[1] = (short)(tmp[0] << 8 | tmp[1]); |
| 1462 | buf[1] >>= 6; |
| 1463 | |
| 1464 | ret = i2c_read_block(client, MICROP_I2C_RCMD_GSENSOR_Z_DATA, |
| 1465 | tmp, 2); |
| 1466 | if (ret < 0) { |
| 1467 | dev_err(&client->dev, "%s: i2c_read_block fail\n", |
| 1468 | __func__); |
| 1469 | return ret; |
| 1470 | } |
| 1471 | buf[2] = (short)(tmp[0] << 8 | tmp[1]); |
| 1472 | buf[2] >>= 6; |
| 1473 | } else { |
| 1474 | ret = i2c_read_block(client, MICROP_I2C_RCMD_GSENSOR_DATA, |
| 1475 | tmp, 6); |
| 1476 | if (ret < 0) { |
| 1477 | dev_err(&client->dev, "%s: i2c_read_block fail\n", |
| 1478 | __func__); |
| 1479 | return ret; |
| 1480 | } |
| 1481 | buf[0] = (short)(tmp[0] << 8 | tmp[1]); |
| 1482 | buf[0] >>= 6; |
| 1483 | buf[1] = (short)(tmp[2] << 8 | tmp[3]); |
| 1484 | buf[1] >>= 6; |
| 1485 | buf[2] = (short)(tmp[4] << 8 | tmp[5]); |
| 1486 | buf[2] >>= 6; |
| 1487 | } |
| 1488 | |
| 1489 | #ifdef DEBUG_BMA150 |
| 1490 | /* Log this to debugfs */ |
| 1491 | gsensor_log_status(ktime_get(), buf[0], buf[1], buf[2]); |
| 1492 | #endif |
| 1493 | return 1; |
| 1494 | } |
| 1495 | |
| 1496 | static int gsensor_init_hw(void) |
| 1497 | { |
| 1498 | uint8_t reg; |
| 1499 | int ret; |
| 1500 | |
| 1501 | pr_debug("%s\n", __func__); |
| 1502 | |
| 1503 | microp_spi_enable(1); |
| 1504 | |
| 1505 | ret = gsensor_read_reg(RANGE_BWIDTH_REG, ®); |
| 1506 | if (ret < 0 ) |
| 1507 | return -EIO; |
| 1508 | reg &= 0xe0; |
| 1509 | ret = gsensor_write_reg(RANGE_BWIDTH_REG, reg); |
| 1510 | if (ret < 0 ) |
| 1511 | return -EIO; |
| 1512 | |
| 1513 | ret = gsensor_read_reg(SMB150_CONF2_REG, ®); |
| 1514 | if (ret < 0 ) |
| 1515 | return -EIO; |
| 1516 | reg |= (1 << 3); |
| 1517 | ret = gsensor_write_reg(SMB150_CONF2_REG, reg); |
| 1518 | |
| 1519 | return ret; |
| 1520 | } |
| 1521 | |
| 1522 | static int bma150_set_mode(char mode) |
| 1523 | { |
| 1524 | uint8_t reg; |
| 1525 | int ret; |
| 1526 | |
| 1527 | pr_debug("%s mode = %d\n", __func__, mode); |
| 1528 | if (mode == BMA_MODE_NORMAL) |
| 1529 | microp_spi_enable(1); |
| 1530 | |
| 1531 | |
| 1532 | ret = gsensor_read_reg(SMB150_CTRL_REG, ®); |
| 1533 | if (ret < 0 ) |
| 1534 | return -EIO; |
| 1535 | reg = (reg & 0xfe) | mode; |
| 1536 | ret = gsensor_write_reg(SMB150_CTRL_REG, reg); |
| 1537 | |
| 1538 | if (mode == BMA_MODE_SLEEP) |
| 1539 | microp_spi_enable(0); |
| 1540 | |
| 1541 | return ret; |
| 1542 | } |
| 1543 | static int gsensor_read(uint8_t *data) |
| 1544 | { |
| 1545 | int ret; |
| 1546 | uint8_t reg = data[0]; |
| 1547 | |
| 1548 | ret = gsensor_read_reg(reg, &data[1]); |
| 1549 | pr_debug("%s reg = %x data = %x\n", __func__, reg, data[1]); |
| 1550 | return ret; |
| 1551 | } |
| 1552 | |
| 1553 | static int gsensor_write(uint8_t *data) |
| 1554 | { |
| 1555 | int ret; |
| 1556 | uint8_t reg = data[0]; |
| 1557 | |
| 1558 | pr_debug("%s reg = %x data = %x\n", __func__, reg, data[1]); |
| 1559 | ret = gsensor_write_reg(reg, data[1]); |
| 1560 | return ret; |
| 1561 | } |
| 1562 | |
| 1563 | static int bma150_open(struct inode *inode, struct file *file) |
| 1564 | { |
| 1565 | pr_debug("%s\n", __func__); |
| 1566 | return nonseekable_open(inode, file); |
| 1567 | } |
| 1568 | |
| 1569 | static int bma150_release(struct inode *inode, struct file *file) |
| 1570 | { |
| 1571 | return 0; |
| 1572 | } |
| 1573 | |
| 1574 | static int bma150_ioctl(struct inode *inode, struct file *file, |
| 1575 | unsigned int cmd, unsigned long arg) |
| 1576 | { |
| 1577 | void __user *argp = (void __user *)arg; |
| 1578 | char rwbuf[8]; |
| 1579 | int ret = -1; |
| 1580 | short buf[8], temp; |
| 1581 | |
| 1582 | switch (cmd) { |
| 1583 | case BMA_IOCTL_READ: |
| 1584 | case BMA_IOCTL_WRITE: |
| 1585 | case BMA_IOCTL_SET_MODE: |
| 1586 | if (copy_from_user(&rwbuf, argp, sizeof(rwbuf))) |
| 1587 | return -EFAULT; |
| 1588 | break; |
| 1589 | case BMA_IOCTL_READ_ACCELERATION: |
| 1590 | if (copy_from_user(&buf, argp, sizeof(buf))) |
| 1591 | return -EFAULT; |
| 1592 | break; |
| 1593 | default: |
| 1594 | break; |
| 1595 | } |
| 1596 | |
| 1597 | switch (cmd) { |
| 1598 | case BMA_IOCTL_INIT: |
| 1599 | ret = gsensor_init_hw(); |
| 1600 | if (ret < 0) |
| 1601 | return ret; |
| 1602 | break; |
| 1603 | |
| 1604 | case BMA_IOCTL_READ: |
| 1605 | if (rwbuf[0] < 1) |
| 1606 | return -EINVAL; |
| 1607 | ret = gsensor_read(rwbuf); |
| 1608 | if (ret < 0) |
| 1609 | return ret; |
| 1610 | break; |
| 1611 | case BMA_IOCTL_WRITE: |
| 1612 | if (rwbuf[0] < 2) |
| 1613 | return -EINVAL; |
| 1614 | ret = gsensor_write(rwbuf); |
| 1615 | if (ret < 0) |
| 1616 | return ret; |
| 1617 | break; |
| 1618 | case BMA_IOCTL_READ_ACCELERATION: |
| 1619 | ret = gsensor_read_acceleration(&buf[0]); |
| 1620 | if (ret < 0) |
| 1621 | return ret; |
| 1622 | break; |
| 1623 | case BMA_IOCTL_SET_MODE: |
| 1624 | bma150_set_mode(rwbuf[0]); |
| 1625 | break; |
| 1626 | case BMA_IOCTL_GET_INT: |
| 1627 | temp = 0; |
| 1628 | break; |
| 1629 | default: |
| 1630 | return -ENOTTY; |
| 1631 | } |
| 1632 | |
| 1633 | switch (cmd) { |
| 1634 | case BMA_IOCTL_READ: |
| 1635 | if (copy_to_user(argp, &rwbuf, sizeof(rwbuf))) |
| 1636 | return -EFAULT; |
| 1637 | break; |
| 1638 | case BMA_IOCTL_READ_ACCELERATION: |
| 1639 | if (copy_to_user(argp, &buf, sizeof(buf))) |
| 1640 | return -EFAULT; |
| 1641 | break; |
| 1642 | case BMA_IOCTL_GET_INT: |
| 1643 | if (copy_to_user(argp, &temp, sizeof(temp))) |
| 1644 | return -EFAULT; |
| 1645 | break; |
| 1646 | default: |
| 1647 | break; |
| 1648 | } |
| 1649 | |
| 1650 | return 0; |
| 1651 | } |
| 1652 | |
| 1653 | static struct file_operations bma_fops = { |
| 1654 | .owner = THIS_MODULE, |
| 1655 | .open = bma150_open, |
| 1656 | .release = bma150_release, |
| 1657 | .ioctl = bma150_ioctl, |
| 1658 | }; |
| 1659 | |
| 1660 | static struct miscdevice spi_bma_device = { |
| 1661 | .minor = MISC_DYNAMIC_MINOR, |
| 1662 | .name = BMA150_G_SENSOR_NAME, |
| 1663 | .fops = &bma_fops, |
| 1664 | }; |
| 1665 | |
| 1666 | /* |
| 1667 | * Interrupt |
| 1668 | */ |
| 1669 | static irqreturn_t microp_i2c_intr_irq_handler(int irq, void *dev_id) |
| 1670 | { |
| 1671 | struct i2c_client *client; |
| 1672 | struct microp_i2c_client_data *cdata; |
| 1673 | |
| 1674 | client = to_i2c_client(dev_id); |
| 1675 | cdata = i2c_get_clientdata(client); |
| 1676 | |
| 1677 | dev_dbg(&client->dev, "intr_irq_handler\n"); |
| 1678 | |
| 1679 | disable_irq_nosync(client->irq); |
| 1680 | schedule_work(&cdata->work.work); |
| 1681 | return IRQ_HANDLED; |
| 1682 | } |
| 1683 | |
| 1684 | static void microp_i2c_intr_work_func(struct work_struct *work) |
| 1685 | { |
| 1686 | struct microp_i2c_work *up_work; |
| 1687 | struct i2c_client *client; |
| 1688 | struct microp_i2c_client_data *cdata; |
| 1689 | uint8_t data[3], adc_level; |
| 1690 | uint16_t intr_status = 0, adc_value, gpi_status = 0; |
| 1691 | int keycode = 0, ret = 0; |
| 1692 | |
| 1693 | up_work = container_of(work, struct microp_i2c_work, work); |
| 1694 | client = up_work->client; |
| 1695 | cdata = i2c_get_clientdata(client); |
| 1696 | |
| 1697 | ret = i2c_read_block(client, MICROP_I2C_RCMD_GPI_INT_STATUS, data, 2); |
| 1698 | if (ret < 0) { |
| 1699 | dev_err(&client->dev, "%s: read interrupt status fail\n", |
| 1700 | __func__); |
| 1701 | } |
| 1702 | |
| 1703 | intr_status = data[0]<<8 | data[1]; |
| 1704 | ret = i2c_write_block(client, MICROP_I2C_WCMD_GPI_INT_STATUS_CLR, |
| 1705 | data, 2); |
| 1706 | if (ret < 0) { |
| 1707 | dev_err(&client->dev, "%s: clear interrupt status fail\n", |
| 1708 | __func__); |
| 1709 | } |
| 1710 | pr_debug("intr_status=0x%02x\n", intr_status); |
| 1711 | |
| 1712 | if ((intr_status & IRQ_LSENSOR) || cdata->force_light_sensor_read) { |
| 1713 | ret = microp_lightsensor_read(&adc_value, &adc_level); |
| 1714 | if (cdata->force_light_sensor_read) { |
| 1715 | /* report an invalid value first to ensure we trigger an event |
| 1716 | * when adc_level is zero. |
| 1717 | */ |
| 1718 | input_report_abs(cdata->ls_input_dev, ABS_MISC, -1); |
| 1719 | input_sync(cdata->ls_input_dev); |
| 1720 | cdata->force_light_sensor_read = 0; |
| 1721 | } |
| 1722 | input_report_abs(cdata->ls_input_dev, ABS_MISC, (int)adc_level); |
| 1723 | input_sync(cdata->ls_input_dev); |
| 1724 | } |
| 1725 | |
| 1726 | if (intr_status & IRQ_SDCARD) { |
| 1727 | microp_read_gpi_status(client, &gpi_status); |
| 1728 | mahimahi_microp_sdslot_update_status(gpi_status); |
| 1729 | } |
| 1730 | |
| 1731 | if (intr_status & IRQ_HEADSETIN) { |
| 1732 | cdata->is_hpin_pin_stable = 0; |
| 1733 | wake_lock_timeout(µp_i2c_wakelock, 3*HZ); |
| 1734 | if (!cdata->headset_is_in) |
| 1735 | schedule_delayed_work(&cdata->hpin_debounce_work, |
| 1736 | msecs_to_jiffies(500)); |
| 1737 | else |
| 1738 | schedule_delayed_work(&cdata->hpin_debounce_work, |
| 1739 | msecs_to_jiffies(300)); |
| 1740 | } |
| 1741 | if (intr_status & IRQ_REMOTEKEY) { |
| 1742 | if ((get_remote_keycode(&keycode) == 0) && |
| 1743 | (cdata->is_hpin_pin_stable)) { |
| 1744 | htc_35mm_key_event(keycode, &cdata->is_hpin_pin_stable); |
| 1745 | } |
| 1746 | } |
| 1747 | |
| 1748 | enable_irq(client->irq); |
| 1749 | } |
| 1750 | |
| 1751 | static void ls_read_do_work(struct work_struct *work) |
| 1752 | { |
| 1753 | struct i2c_client *client = private_microp_client; |
| 1754 | struct microp_i2c_client_data *cdata = i2c_get_clientdata(client); |
| 1755 | |
| 1756 | /* force a light sensor reading */ |
| 1757 | disable_irq(client->irq); |
| 1758 | cdata->force_light_sensor_read = 1; |
| 1759 | schedule_work(&cdata->work.work); |
| 1760 | } |
| 1761 | |
| 1762 | static int microp_function_initialize(struct i2c_client *client) |
| 1763 | { |
| 1764 | struct microp_i2c_client_data *cdata; |
| 1765 | uint8_t data[20]; |
| 1766 | uint16_t stat, interrupts = 0; |
| 1767 | int i; |
| 1768 | int ret; |
| 1769 | struct led_classdev *led_cdev; |
| 1770 | |
| 1771 | cdata = i2c_get_clientdata(client); |
| 1772 | |
| 1773 | /* Light Sensor */ |
| 1774 | if (als_kadc >> 16 == ALS_CALIBRATED) |
| 1775 | cdata->als_kadc = als_kadc & 0xFFFF; |
| 1776 | else { |
| 1777 | cdata->als_kadc = 0; |
| 1778 | pr_info("%s: no ALS calibrated\n", __func__); |
| 1779 | } |
| 1780 | |
| 1781 | if (cdata->als_kadc && golden_adc) { |
| 1782 | cdata->als_kadc = |
| 1783 | (cdata->als_kadc > 0 && cdata->als_kadc < 0x400) |
| 1784 | ? cdata->als_kadc : golden_adc; |
| 1785 | cdata->als_gadc = |
| 1786 | (golden_adc > 0) |
| 1787 | ? golden_adc : cdata->als_kadc; |
| 1788 | } else { |
| 1789 | cdata->als_kadc = 1; |
| 1790 | cdata->als_gadc = 1; |
| 1791 | } |
| 1792 | pr_info("%s: als_kadc=0x%x, als_gadc=0x%x\n", |
| 1793 | __func__, cdata->als_kadc, cdata->als_gadc); |
| 1794 | |
| 1795 | for (i = 0; i < 10; i++) { |
| 1796 | data[i] = (uint8_t)(lsensor_adc_table[i] |
| 1797 | * cdata->als_kadc / cdata->als_gadc >> 8); |
| 1798 | data[i + 10] = (uint8_t)(lsensor_adc_table[i] |
| 1799 | * cdata->als_kadc / cdata->als_gadc); |
| 1800 | } |
| 1801 | ret = i2c_write_block(client, MICROP_I2C_WCMD_ADC_TABLE, data, 20); |
| 1802 | if (ret) |
| 1803 | goto exit; |
| 1804 | |
| 1805 | ret = gpio_request(MAHIMAHI_GPIO_LS_EN_N, "microp_i2c"); |
| 1806 | if (ret < 0) { |
| 1807 | dev_err(&client->dev, "failed on request gpio ls_on\n"); |
| 1808 | goto exit; |
| 1809 | } |
| 1810 | ret = gpio_direction_output(MAHIMAHI_GPIO_LS_EN_N, 0); |
| 1811 | if (ret < 0) { |
| 1812 | dev_err(&client->dev, "failed on gpio_direction_output" |
| 1813 | "ls_on\n"); |
| 1814 | goto err_gpio_ls; |
| 1815 | } |
| 1816 | cdata->light_sensor_enabled = 1; |
| 1817 | |
| 1818 | /* Headset */ |
| 1819 | for (i = 0; i < 6; i++) { |
| 1820 | data[i] = (uint8_t)(remote_key_adc_table[i] >> 8); |
| 1821 | data[i + 6] = (uint8_t)(remote_key_adc_table[i]); |
| 1822 | } |
| 1823 | ret = i2c_write_block(client, |
| 1824 | MICROP_I2C_WCMD_REMOTEKEY_TABLE, data, 12); |
| 1825 | if (ret) |
| 1826 | goto exit; |
| 1827 | |
| 1828 | INIT_DELAYED_WORK( |
| 1829 | &cdata->hpin_debounce_work, hpin_debounce_do_work); |
| 1830 | INIT_DELAYED_WORK( |
| 1831 | &cdata->ls_read_work, ls_read_do_work); |
| 1832 | |
| 1833 | /* SD Card */ |
| 1834 | interrupts |= IRQ_SDCARD; |
| 1835 | |
| 1836 | /* set LED initial state */ |
| 1837 | for (i = 0; i < BLUE_LED; i++) { |
| 1838 | led_cdev = &cdata->leds[i].ldev; |
| 1839 | microp_i2c_write_led_mode(client, led_cdev, 0, 0xffff); |
| 1840 | } |
| 1841 | |
| 1842 | /* enable the interrupts */ |
| 1843 | ret = microp_interrupt_enable(client, interrupts); |
| 1844 | if (ret < 0) { |
| 1845 | dev_err(&client->dev, "%s: failed to enable gpi irqs\n", |
| 1846 | __func__); |
| 1847 | goto err_irq_en; |
| 1848 | } |
| 1849 | |
| 1850 | microp_read_gpi_status(client, &stat); |
| 1851 | mahimahi_microp_sdslot_update_status(stat); |
| 1852 | |
| 1853 | return 0; |
| 1854 | |
| 1855 | err_irq_en: |
| 1856 | err_gpio_ls: |
| 1857 | gpio_free(MAHIMAHI_GPIO_LS_EN_N); |
| 1858 | exit: |
| 1859 | return ret; |
| 1860 | } |
| 1861 | |
| 1862 | #ifdef CONFIG_HAS_EARLYSUSPEND |
| 1863 | void microp_early_suspend(struct early_suspend *h) |
| 1864 | { |
| 1865 | struct microp_i2c_client_data *cdata; |
| 1866 | struct i2c_client *client = private_microp_client; |
| 1867 | int ret; |
| 1868 | |
| 1869 | if (!client) { |
| 1870 | pr_err("%s: dataset: client is empty\n", __func__); |
| 1871 | return; |
| 1872 | } |
| 1873 | cdata = i2c_get_clientdata(client); |
| 1874 | |
| 1875 | cdata->microp_is_suspend = 1; |
| 1876 | |
| 1877 | disable_irq(client->irq); |
| 1878 | ret = cancel_work_sync(&cdata->work.work); |
| 1879 | if (ret != 0) { |
| 1880 | enable_irq(client->irq); |
| 1881 | } |
| 1882 | |
| 1883 | if (cdata->auto_backlight_enabled) |
| 1884 | microp_i2c_auto_backlight_mode(client, 0); |
| 1885 | if (cdata->light_sensor_enabled == 1) { |
| 1886 | gpio_set_value(MAHIMAHI_GPIO_LS_EN_N, 1); |
| 1887 | cdata->light_sensor_enabled = 0; |
| 1888 | } |
| 1889 | } |
| 1890 | |
| 1891 | void microp_early_resume(struct early_suspend *h) |
| 1892 | { |
| 1893 | struct i2c_client *client = private_microp_client; |
| 1894 | struct microp_i2c_client_data *cdata; |
| 1895 | |
| 1896 | if (!client) { |
| 1897 | pr_err("%s: dataset: client is empty\n", __func__); |
| 1898 | return; |
| 1899 | } |
| 1900 | cdata = i2c_get_clientdata(client); |
| 1901 | |
| 1902 | gpio_set_value(MAHIMAHI_GPIO_LS_EN_N, 0); |
| 1903 | cdata->light_sensor_enabled = 1; |
| 1904 | |
| 1905 | if (cdata->auto_backlight_enabled) |
| 1906 | microp_i2c_auto_backlight_mode(client, 1); |
| 1907 | |
| 1908 | cdata->microp_is_suspend = 0; |
| 1909 | enable_irq(client->irq); |
| 1910 | } |
| 1911 | #endif |
| 1912 | |
| 1913 | static int microp_i2c_suspend(struct i2c_client *client, |
| 1914 | pm_message_t mesg) |
| 1915 | { |
| 1916 | return 0; |
| 1917 | } |
| 1918 | |
| 1919 | static int microp_i2c_resume(struct i2c_client *client) |
| 1920 | { |
| 1921 | return 0; |
| 1922 | } |
| 1923 | |
| 1924 | static struct { |
| 1925 | const char *name; |
| 1926 | void (*led_set_work)(struct work_struct *); |
| 1927 | struct device_attribute **attrs; |
| 1928 | int attr_cnt; |
| 1929 | } microp_leds[] = { |
| 1930 | [GREEN_LED] = { |
| 1931 | .name = "green", |
| 1932 | .led_set_work = microp_led_brightness_set_work, |
| 1933 | .attrs = green_amber_attrs, |
| 1934 | .attr_cnt = ARRAY_SIZE(green_amber_attrs) |
| 1935 | }, |
| 1936 | [AMBER_LED] = { |
| 1937 | .name = "amber", |
| 1938 | .led_set_work = microp_led_brightness_set_work, |
| 1939 | .attrs = green_amber_attrs, |
| 1940 | .attr_cnt = ARRAY_SIZE(green_amber_attrs) |
| 1941 | }, |
| 1942 | [RED_LED] = { |
| 1943 | .name = "red", |
| 1944 | .led_set_work = microp_led_brightness_set_work, |
| 1945 | .attrs = green_amber_attrs, |
| 1946 | .attr_cnt = ARRAY_SIZE(green_amber_attrs) |
| 1947 | }, |
| 1948 | [BLUE_LED] = { |
| 1949 | .name = "blue", |
| 1950 | .led_set_work = microp_led_brightness_set_work, |
| 1951 | .attrs = green_amber_attrs, |
| 1952 | .attr_cnt = ARRAY_SIZE(green_amber_attrs) |
| 1953 | }, |
| 1954 | [JOGBALL_LED] = { |
| 1955 | .name = "jogball-backlight", |
| 1956 | .led_set_work = microp_led_jogball_brightness_set_work, |
| 1957 | .attrs = jogball_attrs, |
| 1958 | .attr_cnt = ARRAY_SIZE(jogball_attrs) |
| 1959 | }, |
| 1960 | [BUTTONS_LED] = { |
| 1961 | .name = "button-backlight", |
| 1962 | .led_set_work = microp_led_buttons_brightness_set_work |
| 1963 | }, |
| 1964 | }; |
| 1965 | |
| 1966 | static int microp_i2c_probe(struct i2c_client *client, |
| 1967 | const struct i2c_device_id *id) |
| 1968 | { |
| 1969 | struct microp_i2c_client_data *cdata; |
| 1970 | uint8_t data[6]; |
| 1971 | int ret; |
| 1972 | int i; |
| 1973 | int j; |
| 1974 | |
| 1975 | private_microp_client = client; |
| 1976 | ret = i2c_read_block(client, MICROP_I2C_RCMD_VERSION, data, 2); |
| 1977 | if (ret || !(data[0] && data[1])) { |
| 1978 | ret = -ENODEV; |
| 1979 | dev_err(&client->dev, "failed on get microp version\n"); |
| 1980 | goto err_exit; |
| 1981 | } |
| 1982 | dev_info(&client->dev, "microp version [%02X][%02X]\n", |
| 1983 | data[0], data[1]); |
| 1984 | |
| 1985 | ret = gpio_request(MAHIMAHI_GPIO_UP_RESET_N, "microp_i2c_wm"); |
| 1986 | if (ret < 0) { |
| 1987 | dev_err(&client->dev, "failed on request gpio reset\n"); |
| 1988 | goto err_exit; |
| 1989 | } |
| 1990 | ret = gpio_direction_output(MAHIMAHI_GPIO_UP_RESET_N, 1); |
| 1991 | if (ret < 0) { |
| 1992 | dev_err(&client->dev, |
| 1993 | "failed on gpio_direction_output reset\n"); |
| 1994 | goto err_gpio_reset; |
| 1995 | } |
| 1996 | |
| 1997 | cdata = kzalloc(sizeof(struct microp_i2c_client_data), GFP_KERNEL); |
| 1998 | if (!cdata) { |
| 1999 | ret = -ENOMEM; |
| 2000 | dev_err(&client->dev, "failed on allocat cdata\n"); |
| 2001 | goto err_cdata; |
| 2002 | } |
| 2003 | |
| 2004 | i2c_set_clientdata(client, cdata); |
| 2005 | cdata->version = data[0] << 8 | data[1]; |
| 2006 | cdata->microp_is_suspend = 0; |
| 2007 | cdata->auto_backlight_enabled = 0; |
| 2008 | cdata->light_sensor_enabled = 0; |
| 2009 | |
| 2010 | wake_lock_init(µp_i2c_wakelock, WAKE_LOCK_SUSPEND, |
| 2011 | "microp_i2c_present"); |
| 2012 | |
| 2013 | /* Light Sensor */ |
| 2014 | ret = device_create_file(&client->dev, &dev_attr_ls_adc); |
| 2015 | ret = device_create_file(&client->dev, &dev_attr_ls_auto); |
| 2016 | cdata->ls_input_dev = input_allocate_device(); |
| 2017 | if (!cdata->ls_input_dev) { |
| 2018 | pr_err("%s: could not allocate input device\n", __func__); |
| 2019 | ret = -ENOMEM; |
| 2020 | goto err_request_input_dev; |
| 2021 | } |
| 2022 | cdata->ls_input_dev->name = "lightsensor-level"; |
| 2023 | set_bit(EV_ABS, cdata->ls_input_dev->evbit); |
| 2024 | input_set_abs_params(cdata->ls_input_dev, ABS_MISC, 0, 9, 0, 0); |
| 2025 | |
| 2026 | ret = input_register_device(cdata->ls_input_dev); |
| 2027 | if (ret < 0) { |
| 2028 | dev_err(&client->dev, "%s: can not register input device\n", |
| 2029 | __func__); |
| 2030 | goto err_register_input_dev; |
| 2031 | } |
| 2032 | |
| 2033 | ret = misc_register(&lightsensor_misc); |
| 2034 | if (ret < 0) { |
| 2035 | dev_err(&client->dev, "%s: can not register misc device\n", |
| 2036 | __func__); |
| 2037 | goto err_register_misc_register; |
| 2038 | } |
| 2039 | |
| 2040 | /* LEDs */ |
| 2041 | ret = 0; |
| 2042 | for (i = 0; i < ARRAY_SIZE(microp_leds) && !ret; ++i) { |
| 2043 | struct microp_led_data *ldata = &cdata->leds[i]; |
| 2044 | |
| 2045 | ldata->type = i; |
| 2046 | ldata->ldev.name = microp_leds[i].name; |
| 2047 | ldata->ldev.brightness_set = microp_brightness_set; |
| 2048 | mutex_init(&ldata->led_data_mutex); |
| 2049 | INIT_WORK(&ldata->brightness_work, microp_leds[i].led_set_work); |
| 2050 | spin_lock_init(&ldata->brightness_lock); |
| 2051 | ret = led_classdev_register(&client->dev, &ldata->ldev); |
| 2052 | if (ret) { |
| 2053 | ldata->ldev.name = NULL; |
| 2054 | break; |
| 2055 | } |
| 2056 | |
| 2057 | for (j = 0; j < microp_leds[i].attr_cnt && !ret; ++j) |
| 2058 | ret = device_create_file(ldata->ldev.dev, |
| 2059 | microp_leds[i].attrs[j]); |
| 2060 | } |
| 2061 | if (ret) { |
| 2062 | dev_err(&client->dev, "failed to add leds\n"); |
| 2063 | goto err_add_leds; |
| 2064 | } |
| 2065 | |
| 2066 | /* Headset */ |
| 2067 | cdata->headset_is_in = 0; |
| 2068 | cdata->is_hpin_pin_stable = 1; |
| 2069 | platform_device_register(&mahimahi_h35mm); |
| 2070 | |
| 2071 | ret = device_create_file(&client->dev, &dev_attr_key_adc); |
| 2072 | |
| 2073 | /* G-sensor */ |
| 2074 | ret = misc_register(&spi_bma_device); |
| 2075 | if (ret < 0) { |
| 2076 | pr_err("%s: init bma150 misc_register fail\n", |
| 2077 | __func__); |
| 2078 | goto err_register_bma150; |
| 2079 | } |
| 2080 | #ifdef DEBUG_BMA150 |
| 2081 | debugfs_create_file("gsensor_log", 0444, NULL, NULL, &gsensor_log_fops); |
| 2082 | #endif |
| 2083 | /* Setup IRQ handler */ |
| 2084 | INIT_WORK(&cdata->work.work, microp_i2c_intr_work_func); |
| 2085 | cdata->work.client = client; |
| 2086 | |
| 2087 | ret = request_irq(client->irq, |
| 2088 | microp_i2c_intr_irq_handler, |
| 2089 | IRQF_TRIGGER_LOW, |
| 2090 | "microp_interrupt", |
| 2091 | &client->dev); |
| 2092 | if (ret) { |
| 2093 | dev_err(&client->dev, "request_irq failed\n"); |
| 2094 | goto err_intr; |
| 2095 | } |
| 2096 | ret = set_irq_wake(client->irq, 1); |
| 2097 | if (ret) { |
| 2098 | dev_err(&client->dev, "set_irq_wake failed\n"); |
| 2099 | goto err_intr; |
| 2100 | } |
| 2101 | |
| 2102 | #ifdef CONFIG_HAS_EARLYSUSPEND |
| 2103 | if (cdata->enable_early_suspend) { |
| 2104 | cdata->early_suspend.level = |
| 2105 | EARLY_SUSPEND_LEVEL_BLANK_SCREEN + 1; |
| 2106 | cdata->early_suspend.suspend = microp_early_suspend; |
| 2107 | cdata->early_suspend.resume = microp_early_resume; |
| 2108 | register_early_suspend(&cdata->early_suspend); |
| 2109 | } |
| 2110 | #endif |
| 2111 | |
| 2112 | ret = microp_function_initialize(client); |
| 2113 | if (ret) { |
| 2114 | dev_err(&client->dev, "failed on microp function initialize\n"); |
| 2115 | goto err_fun_init; |
| 2116 | } |
| 2117 | |
| 2118 | return 0; |
| 2119 | |
| 2120 | err_fun_init: |
| 2121 | err_intr: |
| 2122 | misc_deregister(&spi_bma_device); |
| 2123 | |
| 2124 | err_register_bma150: |
| 2125 | platform_device_unregister(&mahimahi_h35mm); |
| 2126 | device_remove_file(&client->dev, &dev_attr_key_adc); |
| 2127 | |
| 2128 | err_add_leds: |
| 2129 | for (i = 0; i < ARRAY_SIZE(microp_leds); ++i) { |
| 2130 | if (!cdata->leds[i].ldev.name) |
| 2131 | continue; |
| 2132 | led_classdev_unregister(&cdata->leds[i].ldev); |
| 2133 | for (j = 0; j < microp_leds[i].attr_cnt; ++j) |
| 2134 | device_remove_file(cdata->leds[i].ldev.dev, |
| 2135 | microp_leds[i].attrs[j]); |
| 2136 | } |
| 2137 | |
| 2138 | misc_deregister(&lightsensor_misc); |
| 2139 | |
| 2140 | err_register_misc_register: |
| 2141 | input_unregister_device(cdata->ls_input_dev); |
| 2142 | |
| 2143 | err_register_input_dev: |
| 2144 | input_free_device(cdata->ls_input_dev); |
| 2145 | |
| 2146 | err_request_input_dev: |
| 2147 | wake_lock_destroy(µp_i2c_wakelock); |
| 2148 | device_remove_file(&client->dev, &dev_attr_ls_adc); |
| 2149 | device_remove_file(&client->dev, &dev_attr_ls_auto); |
| 2150 | kfree(cdata); |
| 2151 | i2c_set_clientdata(client, NULL); |
| 2152 | |
| 2153 | err_cdata: |
| 2154 | err_gpio_reset: |
| 2155 | gpio_free(MAHIMAHI_GPIO_UP_RESET_N); |
| 2156 | err_exit: |
| 2157 | return ret; |
| 2158 | } |
| 2159 | |
| 2160 | static int __devexit microp_i2c_remove(struct i2c_client *client) |
| 2161 | { |
| 2162 | struct microp_i2c_client_data *cdata; |
| 2163 | int i; |
| 2164 | int j; |
| 2165 | |
| 2166 | cdata = i2c_get_clientdata(client); |
| 2167 | |
| 2168 | for (i = 0; i < ARRAY_SIZE(microp_leds); ++i) { |
| 2169 | struct microp_led_data *ldata = &cdata->leds[i]; |
| 2170 | cancel_work_sync(&ldata->brightness_work); |
| 2171 | } |
| 2172 | |
| 2173 | #ifdef CONFIG_HAS_EARLYSUSPEND |
| 2174 | if (cdata->enable_early_suspend) { |
| 2175 | unregister_early_suspend(&cdata->early_suspend); |
| 2176 | } |
| 2177 | #endif |
| 2178 | |
| 2179 | for (i = 0; i < ARRAY_SIZE(microp_leds); ++i) { |
| 2180 | if (!cdata->leds[i].ldev.name) |
| 2181 | continue; |
| 2182 | led_classdev_unregister(&cdata->leds[i].ldev); |
| 2183 | for (j = 0; j < microp_leds[i].attr_cnt; ++j) |
| 2184 | device_remove_file(cdata->leds[i].ldev.dev, |
| 2185 | microp_leds[i].attrs[j]); |
| 2186 | } |
| 2187 | |
| 2188 | free_irq(client->irq, &client->dev); |
| 2189 | |
| 2190 | gpio_free(MAHIMAHI_GPIO_UP_RESET_N); |
| 2191 | |
| 2192 | misc_deregister(&lightsensor_misc); |
| 2193 | input_unregister_device(cdata->ls_input_dev); |
| 2194 | input_free_device(cdata->ls_input_dev); |
| 2195 | device_remove_file(&client->dev, &dev_attr_ls_adc); |
| 2196 | device_remove_file(&client->dev, &dev_attr_key_adc); |
| 2197 | device_remove_file(&client->dev, &dev_attr_ls_auto); |
| 2198 | |
| 2199 | platform_device_unregister(&mahimahi_h35mm); |
| 2200 | |
| 2201 | /* G-sensor */ |
| 2202 | misc_deregister(&spi_bma_device); |
| 2203 | |
| 2204 | kfree(cdata); |
| 2205 | |
| 2206 | return 0; |
| 2207 | } |
| 2208 | |
| 2209 | #define ATAG_ALS 0x5441001b |
| 2210 | static int __init parse_tag_als_kadc(const struct tag *tags) |
| 2211 | { |
| 2212 | int found = 0; |
| 2213 | struct tag *t = (struct tag *)tags; |
| 2214 | |
| 2215 | for (; t->hdr.size; t = tag_next(t)) { |
| 2216 | if (t->hdr.tag == ATAG_ALS) { |
| 2217 | found = 1; |
| 2218 | break; |
| 2219 | } |
| 2220 | } |
| 2221 | |
| 2222 | if (found) |
| 2223 | als_kadc = t->u.revision.rev; |
| 2224 | pr_debug("%s: als_kadc = 0x%x\n", __func__, als_kadc); |
| 2225 | return 0; |
| 2226 | } |
| 2227 | __tagtable(ATAG_ALS, parse_tag_als_kadc); |
| 2228 | |
| 2229 | static const struct i2c_device_id microp_i2c_id[] = { |
| 2230 | { MICROP_I2C_NAME, 0 }, |
| 2231 | { } |
| 2232 | }; |
| 2233 | |
| 2234 | static struct i2c_driver microp_i2c_driver = { |
| 2235 | .driver = { |
| 2236 | .name = MICROP_I2C_NAME, |
| 2237 | }, |
| 2238 | .id_table = microp_i2c_id, |
| 2239 | .probe = microp_i2c_probe, |
| 2240 | .suspend = microp_i2c_suspend, |
| 2241 | .resume = microp_i2c_resume, |
| 2242 | .remove = __devexit_p(microp_i2c_remove), |
| 2243 | }; |
| 2244 | |
| 2245 | |
| 2246 | static int __init microp_i2c_init(void) |
| 2247 | { |
| 2248 | return i2c_add_driver(µp_i2c_driver); |
| 2249 | } |
| 2250 | |
| 2251 | static void __exit microp_i2c_exit(void) |
| 2252 | { |
| 2253 | i2c_del_driver(µp_i2c_driver); |
| 2254 | } |
| 2255 | |
| 2256 | module_init(microp_i2c_init); |
| 2257 | module_exit(microp_i2c_exit); |
| 2258 | |
| 2259 | MODULE_AUTHOR("Eric Olsen <eolsen@android.com>"); |
| 2260 | MODULE_DESCRIPTION("MicroP I2C driver"); |
| 2261 | MODULE_LICENSE("GPL"); |