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1/* 2 * hp_accel.c - Interface between LIS3LV02DL driver and HP ACPI BIOS 3 * 4 * Copyright (C) 2007-2008 Yan Burman 5 * Copyright (C) 2008 Eric Piel 6 * Copyright (C) 2008-2009 Pavel Machek 7 * 8 * This program is free software; you can redistribute it and/or modify 9 * it under the terms of the GNU General Public License as published by 10 * the Free Software Foundation; either version 2 of the License, or 11 * (at your option) any later version. 12 * 13 * This program is distributed in the hope that it will be useful, 14 * but WITHOUT ANY WARRANTY; without even the implied warranty of 15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 16 * GNU General Public License for more details. 17 * 18 * You should have received a copy of the GNU General Public License 19 * along with this program; if not, write to the Free Software 20 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA 21 */ 22 23#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt 24 25#include <linux/kernel.h> 26#include <linux/init.h> 27#include <linux/dmi.h> 28#include <linux/module.h> 29#include <linux/types.h> 30#include <linux/platform_device.h> 31#include <linux/interrupt.h> 32#include <linux/delay.h> 33#include <linux/wait.h> 34#include <linux/poll.h> 35#include <linux/freezer.h> 36#include <linux/uaccess.h> 37#include <linux/leds.h> 38#include <linux/atomic.h> 39#include <linux/acpi.h> 40#include <linux/i8042.h> 41#include <linux/serio.h> 42#include "../../misc/lis3lv02d/lis3lv02d.h" 43 44#define DRIVER_NAME "hp_accel" 45#define ACPI_MDPS_CLASS "accelerometer" 46 47/* Delayed LEDs infrastructure ------------------------------------ */ 48 49/* Special LED class that can defer work */ 50struct delayed_led_classdev { 51 struct led_classdev led_classdev; 52 struct work_struct work; 53 enum led_brightness new_brightness; 54 55 unsigned int led; /* For driver */ 56 void (*set_brightness)(struct delayed_led_classdev *data, enum led_brightness value); 57}; 58 59static inline void delayed_set_status_worker(struct work_struct *work) 60{ 61 struct delayed_led_classdev *data = 62 container_of(work, struct delayed_led_classdev, work); 63 64 data->set_brightness(data, data->new_brightness); 65} 66 67static inline void delayed_sysfs_set(struct led_classdev *led_cdev, 68 enum led_brightness brightness) 69{ 70 struct delayed_led_classdev *data = container_of(led_cdev, 71 struct delayed_led_classdev, led_classdev); 72 data->new_brightness = brightness; 73 schedule_work(&data->work); 74} 75 76/* HP-specific accelerometer driver ------------------------------------ */ 77 78/* e0 25, e0 26, e0 27, e0 28 are scan codes that the accelerometer with acpi id 79 * HPQ6000 sends through the keyboard bus */ 80#define ACCEL_1 0x25 81#define ACCEL_2 0x26 82#define ACCEL_3 0x27 83#define ACCEL_4 0x28 84 85/* For automatic insertion of the module */ 86static const struct acpi_device_id lis3lv02d_device_ids[] = { 87 {"HPQ0004", 0}, /* HP Mobile Data Protection System PNP */ 88 {"HPQ6000", 0}, /* HP Mobile Data Protection System PNP */ 89 {"HPQ6007", 0}, /* HP Mobile Data Protection System PNP */ 90 {"", 0}, 91}; 92MODULE_DEVICE_TABLE(acpi, lis3lv02d_device_ids); 93 94 95/** 96 * lis3lv02d_acpi_init - ACPI _INI method: initialize the device. 97 * @lis3: pointer to the device struct 98 * 99 * Returns 0 on success. 100 */ 101static int lis3lv02d_acpi_init(struct lis3lv02d *lis3) 102{ 103 struct acpi_device *dev = lis3->bus_priv; 104 if (acpi_evaluate_object(dev->handle, METHOD_NAME__INI, 105 NULL, NULL) != AE_OK) 106 return -EINVAL; 107 108 return 0; 109} 110 111/** 112 * lis3lv02d_acpi_read - ACPI ALRD method: read a register 113 * @lis3: pointer to the device struct 114 * @reg: the register to read 115 * @ret: result of the operation 116 * 117 * Returns 0 on success. 118 */ 119static int lis3lv02d_acpi_read(struct lis3lv02d *lis3, int reg, u8 *ret) 120{ 121 struct acpi_device *dev = lis3->bus_priv; 122 union acpi_object arg0 = { ACPI_TYPE_INTEGER }; 123 struct acpi_object_list args = { 1, &arg0 }; 124 unsigned long long lret; 125 acpi_status status; 126 127 arg0.integer.value = reg; 128 129 status = acpi_evaluate_integer(dev->handle, "ALRD", &args, &lret); 130 if (ACPI_FAILURE(status)) 131 return -EINVAL; 132 *ret = lret; 133 return 0; 134} 135 136/** 137 * lis3lv02d_acpi_write - ACPI ALWR method: write to a register 138 * @lis3: pointer to the device struct 139 * @reg: the register to write to 140 * @val: the value to write 141 * 142 * Returns 0 on success. 143 */ 144static int lis3lv02d_acpi_write(struct lis3lv02d *lis3, int reg, u8 val) 145{ 146 struct acpi_device *dev = lis3->bus_priv; 147 unsigned long long ret; /* Not used when writting */ 148 union acpi_object in_obj[2]; 149 struct acpi_object_list args = { 2, in_obj }; 150 151 in_obj[0].type = ACPI_TYPE_INTEGER; 152 in_obj[0].integer.value = reg; 153 in_obj[1].type = ACPI_TYPE_INTEGER; 154 in_obj[1].integer.value = val; 155 156 if (acpi_evaluate_integer(dev->handle, "ALWR", &args, &ret) != AE_OK) 157 return -EINVAL; 158 159 return 0; 160} 161 162static int lis3lv02d_dmi_matched(const struct dmi_system_id *dmi) 163{ 164 lis3_dev.ac = *((union axis_conversion *)dmi->driver_data); 165 pr_info("hardware type %s found\n", dmi->ident); 166 167 return 1; 168} 169 170/* Represents, for each axis seen by userspace, the corresponding hw axis (+1). 171 * If the value is negative, the opposite of the hw value is used. */ 172#define DEFINE_CONV(name, x, y, z) \ 173 static union axis_conversion lis3lv02d_axis_##name = \ 174 { .as_array = { x, y, z } } 175DEFINE_CONV(normal, 1, 2, 3); 176DEFINE_CONV(y_inverted, 1, -2, 3); 177DEFINE_CONV(x_inverted, -1, 2, 3); 178DEFINE_CONV(x_inverted_usd, -1, 2, -3); 179DEFINE_CONV(z_inverted, 1, 2, -3); 180DEFINE_CONV(xy_swap, 2, 1, 3); 181DEFINE_CONV(xy_rotated_left, -2, 1, 3); 182DEFINE_CONV(xy_rotated_left_usd, -2, 1, -3); 183DEFINE_CONV(xy_swap_inverted, -2, -1, 3); 184DEFINE_CONV(xy_rotated_right, 2, -1, 3); 185DEFINE_CONV(xy_swap_yz_inverted, 2, -1, -3); 186 187#define AXIS_DMI_MATCH(_ident, _name, _axis) { \ 188 .ident = _ident, \ 189 .callback = lis3lv02d_dmi_matched, \ 190 .matches = { \ 191 DMI_MATCH(DMI_PRODUCT_NAME, _name) \ 192 }, \ 193 .driver_data = &lis3lv02d_axis_##_axis \ 194} 195 196#define AXIS_DMI_MATCH2(_ident, _class1, _name1, \ 197 _class2, _name2, \ 198 _axis) { \ 199 .ident = _ident, \ 200 .callback = lis3lv02d_dmi_matched, \ 201 .matches = { \ 202 DMI_MATCH(DMI_##_class1, _name1), \ 203 DMI_MATCH(DMI_##_class2, _name2), \ 204 }, \ 205 .driver_data = &lis3lv02d_axis_##_axis \ 206} 207static const struct dmi_system_id lis3lv02d_dmi_ids[] = { 208 /* product names are truncated to match all kinds of a same model */ 209 AXIS_DMI_MATCH("NC64x0", "HP Compaq nc64", x_inverted), 210 AXIS_DMI_MATCH("NC84x0", "HP Compaq nc84", z_inverted), 211 AXIS_DMI_MATCH("NX9420", "HP Compaq nx9420", x_inverted), 212 AXIS_DMI_MATCH("NW9440", "HP Compaq nw9440", x_inverted), 213 AXIS_DMI_MATCH("NC2510", "HP Compaq 2510", y_inverted), 214 AXIS_DMI_MATCH("NC2710", "HP Compaq 2710", xy_swap), 215 AXIS_DMI_MATCH("NC8510", "HP Compaq 8510", xy_swap_inverted), 216 AXIS_DMI_MATCH("HP2133", "HP 2133", xy_rotated_left), 217 AXIS_DMI_MATCH("HP2140", "HP 2140", xy_swap_inverted), 218 AXIS_DMI_MATCH("NC653x", "HP Compaq 653", xy_rotated_left_usd), 219 AXIS_DMI_MATCH("NC6730b", "HP Compaq 6730b", xy_rotated_left_usd), 220 AXIS_DMI_MATCH("NC6730s", "HP Compaq 6730s", xy_swap), 221 AXIS_DMI_MATCH("NC651xx", "HP Compaq 651", xy_rotated_right), 222 AXIS_DMI_MATCH("NC6710x", "HP Compaq 6710", xy_swap_yz_inverted), 223 AXIS_DMI_MATCH("NC6715x", "HP Compaq 6715", y_inverted), 224 AXIS_DMI_MATCH("NC693xx", "HP EliteBook 693", xy_rotated_right), 225 AXIS_DMI_MATCH("NC693xx", "HP EliteBook 853", xy_swap), 226 AXIS_DMI_MATCH("NC854xx", "HP EliteBook 854", y_inverted), 227 AXIS_DMI_MATCH("NC273xx", "HP EliteBook 273", y_inverted), 228 /* Intel-based HP Pavilion dv5 */ 229 AXIS_DMI_MATCH2("HPDV5_I", 230 PRODUCT_NAME, "HP Pavilion dv5", 231 BOARD_NAME, "3603", 232 x_inverted), 233 /* AMD-based HP Pavilion dv5 */ 234 AXIS_DMI_MATCH2("HPDV5_A", 235 PRODUCT_NAME, "HP Pavilion dv5", 236 BOARD_NAME, "3600", 237 y_inverted), 238 AXIS_DMI_MATCH("DV7", "HP Pavilion dv7", x_inverted), 239 AXIS_DMI_MATCH("HP8710", "HP Compaq 8710", y_inverted), 240 AXIS_DMI_MATCH("HDX18", "HP HDX 18", x_inverted), 241 AXIS_DMI_MATCH("HPB432x", "HP ProBook 432", xy_rotated_left), 242 AXIS_DMI_MATCH("HPB440G3", "HP ProBook 440 G3", x_inverted_usd), 243 AXIS_DMI_MATCH("HPB442x", "HP ProBook 442", xy_rotated_left), 244 AXIS_DMI_MATCH("HPB452x", "HP ProBook 452", y_inverted), 245 AXIS_DMI_MATCH("HPB522x", "HP ProBook 522", xy_swap), 246 AXIS_DMI_MATCH("HPB532x", "HP ProBook 532", y_inverted), 247 AXIS_DMI_MATCH("HPB655x", "HP ProBook 655", xy_swap_inverted), 248 AXIS_DMI_MATCH("Mini510x", "HP Mini 510", xy_rotated_left_usd), 249 AXIS_DMI_MATCH("HPB63xx", "HP ProBook 63", xy_swap), 250 AXIS_DMI_MATCH("HPB64xx", "HP ProBook 64", xy_swap), 251 AXIS_DMI_MATCH("HPB64xx", "HP EliteBook 84", xy_swap), 252 AXIS_DMI_MATCH("HPB65xx", "HP ProBook 65", x_inverted), 253 AXIS_DMI_MATCH("HPZBook15", "HP ZBook 15", x_inverted), 254 AXIS_DMI_MATCH("HPZBook17", "HP ZBook 17", xy_swap_yz_inverted), 255 { NULL, } 256/* Laptop models without axis info (yet): 257 * "NC6910" "HP Compaq 6910" 258 * "NC2400" "HP Compaq nc2400" 259 * "NX74x0" "HP Compaq nx74" 260 * "NX6325" "HP Compaq nx6325" 261 * "NC4400" "HP Compaq nc4400" 262 */ 263}; 264 265static void hpled_set(struct delayed_led_classdev *led_cdev, enum led_brightness value) 266{ 267 struct acpi_device *dev = lis3_dev.bus_priv; 268 unsigned long long ret; /* Not used when writing */ 269 union acpi_object in_obj[1]; 270 struct acpi_object_list args = { 1, in_obj }; 271 272 in_obj[0].type = ACPI_TYPE_INTEGER; 273 in_obj[0].integer.value = !!value; 274 275 acpi_evaluate_integer(dev->handle, "ALED", &args, &ret); 276} 277 278static struct delayed_led_classdev hpled_led = { 279 .led_classdev = { 280 .name = "hp::hddprotect", 281 .default_trigger = "none", 282 .brightness_set = delayed_sysfs_set, 283 .flags = LED_CORE_SUSPENDRESUME, 284 }, 285 .set_brightness = hpled_set, 286}; 287 288static acpi_status 289lis3lv02d_get_resource(struct acpi_resource *resource, void *context) 290{ 291 if (resource->type == ACPI_RESOURCE_TYPE_EXTENDED_IRQ) { 292 struct acpi_resource_extended_irq *irq; 293 u32 *device_irq = context; 294 295 irq = &resource->data.extended_irq; 296 *device_irq = irq->interrupts[0]; 297 } 298 299 return AE_OK; 300} 301 302static void lis3lv02d_enum_resources(struct acpi_device *device) 303{ 304 acpi_status status; 305 306 status = acpi_walk_resources(device->handle, METHOD_NAME__CRS, 307 lis3lv02d_get_resource, &lis3_dev.irq); 308 if (ACPI_FAILURE(status)) 309 printk(KERN_DEBUG DRIVER_NAME ": Error getting resources\n"); 310} 311 312static bool hp_accel_i8042_filter(unsigned char data, unsigned char str, 313 struct serio *port) 314{ 315 static bool extended; 316 317 if (str & I8042_STR_AUXDATA) 318 return false; 319 320 if (data == 0xe0) { 321 extended = true; 322 return true; 323 } else if (unlikely(extended)) { 324 extended = false; 325 326 switch (data) { 327 case ACCEL_1: 328 case ACCEL_2: 329 case ACCEL_3: 330 case ACCEL_4: 331 return true; 332 default: 333 serio_interrupt(port, 0xe0, 0); 334 return false; 335 } 336 } 337 338 return false; 339} 340 341static int lis3lv02d_add(struct acpi_device *device) 342{ 343 int ret; 344 345 if (!device) 346 return -EINVAL; 347 348 lis3_dev.bus_priv = device; 349 lis3_dev.init = lis3lv02d_acpi_init; 350 lis3_dev.read = lis3lv02d_acpi_read; 351 lis3_dev.write = lis3lv02d_acpi_write; 352 strcpy(acpi_device_name(device), DRIVER_NAME); 353 strcpy(acpi_device_class(device), ACPI_MDPS_CLASS); 354 device->driver_data = &lis3_dev; 355 356 /* obtain IRQ number of our device from ACPI */ 357 lis3lv02d_enum_resources(device); 358 359 /* If possible use a "standard" axes order */ 360 if (lis3_dev.ac.x && lis3_dev.ac.y && lis3_dev.ac.z) { 361 pr_info("Using custom axes %d,%d,%d\n", 362 lis3_dev.ac.x, lis3_dev.ac.y, lis3_dev.ac.z); 363 } else if (dmi_check_system(lis3lv02d_dmi_ids) == 0) { 364 pr_info("laptop model unknown, using default axes configuration\n"); 365 lis3_dev.ac = lis3lv02d_axis_normal; 366 } 367 368 /* call the core layer do its init */ 369 ret = lis3lv02d_init_device(&lis3_dev); 370 if (ret) 371 return ret; 372 373 /* filter to remove HPQ6000 accelerometer data 374 * from keyboard bus stream */ 375 if (strstr(dev_name(&device->dev), "HPQ6000")) 376 i8042_install_filter(hp_accel_i8042_filter); 377 378 INIT_WORK(&hpled_led.work, delayed_set_status_worker); 379 ret = led_classdev_register(NULL, &hpled_led.led_classdev); 380 if (ret) { 381 lis3lv02d_joystick_disable(&lis3_dev); 382 lis3lv02d_poweroff(&lis3_dev); 383 flush_work(&hpled_led.work); 384 return ret; 385 } 386 387 return ret; 388} 389 390static int lis3lv02d_remove(struct acpi_device *device) 391{ 392 if (!device) 393 return -EINVAL; 394 395 i8042_remove_filter(hp_accel_i8042_filter); 396 lis3lv02d_joystick_disable(&lis3_dev); 397 lis3lv02d_poweroff(&lis3_dev); 398 399 led_classdev_unregister(&hpled_led.led_classdev); 400 flush_work(&hpled_led.work); 401 402 return lis3lv02d_remove_fs(&lis3_dev); 403} 404 405 406#ifdef CONFIG_PM_SLEEP 407static int lis3lv02d_suspend(struct device *dev) 408{ 409 /* make sure the device is off when we suspend */ 410 lis3lv02d_poweroff(&lis3_dev); 411 return 0; 412} 413 414static int lis3lv02d_resume(struct device *dev) 415{ 416 lis3lv02d_poweron(&lis3_dev); 417 return 0; 418} 419 420static SIMPLE_DEV_PM_OPS(hp_accel_pm, lis3lv02d_suspend, lis3lv02d_resume); 421#define HP_ACCEL_PM (&hp_accel_pm) 422#else 423#define HP_ACCEL_PM NULL 424#endif 425 426/* For the HP MDPS aka 3D Driveguard */ 427static struct acpi_driver lis3lv02d_driver = { 428 .name = DRIVER_NAME, 429 .class = ACPI_MDPS_CLASS, 430 .ids = lis3lv02d_device_ids, 431 .ops = { 432 .add = lis3lv02d_add, 433 .remove = lis3lv02d_remove, 434 }, 435 .drv.pm = HP_ACCEL_PM, 436}; 437module_acpi_driver(lis3lv02d_driver); 438 439MODULE_DESCRIPTION("Glue between LIS3LV02Dx and HP ACPI BIOS and support for disk protection LED."); 440MODULE_AUTHOR("Yan Burman, Eric Piel, Pavel Machek"); 441MODULE_LICENSE("GPL");