1bd9fc3a7SJean Delvare /* 2bd9fc3a7SJean Delvare * hdaps.c - driver for IBM's Hard Drive Active Protection System 3bd9fc3a7SJean Delvare * 4bd9fc3a7SJean Delvare * Copyright (C) 2005 Robert Love <rml@novell.com> 5e4332e8eSJesper Juhl * Copyright (C) 2005 Jesper Juhl <jj@chaosbits.net> 6bd9fc3a7SJean Delvare * 7bd9fc3a7SJean Delvare * The HardDisk Active Protection System (hdaps) is present in IBM ThinkPads 8bd9fc3a7SJean Delvare * starting with the R40, T41, and X40. It provides a basic two-axis 9bd9fc3a7SJean Delvare * accelerometer and other data, such as the device's temperature. 10bd9fc3a7SJean Delvare * 11bd9fc3a7SJean Delvare * This driver is based on the document by Mark A. Smith available at 12bd9fc3a7SJean Delvare * http://www.almaden.ibm.com/cs/people/marksmith/tpaps.html and a lot of trial 13bd9fc3a7SJean Delvare * and error. 14bd9fc3a7SJean Delvare * 15bd9fc3a7SJean Delvare * This program is free software; you can redistribute it and/or modify it 16bd9fc3a7SJean Delvare * under the terms of the GNU General Public License v2 as published by the 17bd9fc3a7SJean Delvare * Free Software Foundation. 18bd9fc3a7SJean Delvare * 19bd9fc3a7SJean Delvare * This program is distributed in the hope that it will be useful, but WITHOUT 20bd9fc3a7SJean Delvare * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or 21bd9fc3a7SJean Delvare * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for 22bd9fc3a7SJean Delvare * more details. 23bd9fc3a7SJean Delvare * 24bd9fc3a7SJean Delvare * You should have received a copy of the GNU General Public License along with 25bd9fc3a7SJean Delvare * this program; if not, write to the Free Software Foundation, Inc., 26bd9fc3a7SJean Delvare * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA 27bd9fc3a7SJean Delvare */ 28bd9fc3a7SJean Delvare 29611f5763SJoe Perches #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt 30611f5763SJoe Perches 31bd9fc3a7SJean Delvare #include <linux/delay.h> 32bd9fc3a7SJean Delvare #include <linux/platform_device.h> 33bd9fc3a7SJean Delvare #include <linux/input-polldev.h> 34bd9fc3a7SJean Delvare #include <linux/kernel.h> 35bd9fc3a7SJean Delvare #include <linux/mutex.h> 36bd9fc3a7SJean Delvare #include <linux/module.h> 37bd9fc3a7SJean Delvare #include <linux/timer.h> 38bd9fc3a7SJean Delvare #include <linux/dmi.h> 39bd9fc3a7SJean Delvare #include <linux/jiffies.h> 40bd9fc3a7SJean Delvare #include <linux/io.h> 41bd9fc3a7SJean Delvare 42bd9fc3a7SJean Delvare #define HDAPS_LOW_PORT 0x1600 /* first port used by hdaps */ 43bd9fc3a7SJean Delvare #define HDAPS_NR_PORTS 0x30 /* number of ports: 0x1600 - 0x162f */ 44bd9fc3a7SJean Delvare 45bd9fc3a7SJean Delvare #define HDAPS_PORT_STATE 0x1611 /* device state */ 46bd9fc3a7SJean Delvare #define HDAPS_PORT_YPOS 0x1612 /* y-axis position */ 47bd9fc3a7SJean Delvare #define HDAPS_PORT_XPOS 0x1614 /* x-axis position */ 48bd9fc3a7SJean Delvare #define HDAPS_PORT_TEMP1 0x1616 /* device temperature, in Celsius */ 49bd9fc3a7SJean Delvare #define HDAPS_PORT_YVAR 0x1617 /* y-axis variance (what is this?) */ 50bd9fc3a7SJean Delvare #define HDAPS_PORT_XVAR 0x1619 /* x-axis variance (what is this?) */ 51bd9fc3a7SJean Delvare #define HDAPS_PORT_TEMP2 0x161b /* device temperature (again?) */ 52bd9fc3a7SJean Delvare #define HDAPS_PORT_UNKNOWN 0x161c /* what is this? */ 53bd9fc3a7SJean Delvare #define HDAPS_PORT_KMACT 0x161d /* keyboard or mouse activity */ 54bd9fc3a7SJean Delvare 55bd9fc3a7SJean Delvare #define STATE_FRESH 0x50 /* accelerometer data is fresh */ 56bd9fc3a7SJean Delvare 57bd9fc3a7SJean Delvare #define KEYBD_MASK 0x20 /* set if keyboard activity */ 58bd9fc3a7SJean Delvare #define MOUSE_MASK 0x40 /* set if mouse activity */ 59bd9fc3a7SJean Delvare #define KEYBD_ISSET(n) (!! (n & KEYBD_MASK)) /* keyboard used? */ 60bd9fc3a7SJean Delvare #define MOUSE_ISSET(n) (!! (n & MOUSE_MASK)) /* mouse used? */ 61bd9fc3a7SJean Delvare 62bd9fc3a7SJean Delvare #define INIT_TIMEOUT_MSECS 4000 /* wait up to 4s for device init ... */ 63bd9fc3a7SJean Delvare #define INIT_WAIT_MSECS 200 /* ... in 200ms increments */ 64bd9fc3a7SJean Delvare 65bd9fc3a7SJean Delvare #define HDAPS_POLL_INTERVAL 50 /* poll for input every 1/20s (50 ms)*/ 66bd9fc3a7SJean Delvare #define HDAPS_INPUT_FUZZ 4 /* input event threshold */ 67bd9fc3a7SJean Delvare #define HDAPS_INPUT_FLAT 4 68bd9fc3a7SJean Delvare 69bd9fc3a7SJean Delvare #define HDAPS_X_AXIS (1 << 0) 70bd9fc3a7SJean Delvare #define HDAPS_Y_AXIS (1 << 1) 71bd9fc3a7SJean Delvare #define HDAPS_BOTH_AXES (HDAPS_X_AXIS | HDAPS_Y_AXIS) 72bd9fc3a7SJean Delvare 73bd9fc3a7SJean Delvare static struct platform_device *pdev; 74bd9fc3a7SJean Delvare static struct input_polled_dev *hdaps_idev; 75bd9fc3a7SJean Delvare static unsigned int hdaps_invert; 76bd9fc3a7SJean Delvare static u8 km_activity; 77bd9fc3a7SJean Delvare static int rest_x; 78bd9fc3a7SJean Delvare static int rest_y; 79bd9fc3a7SJean Delvare 80bd9fc3a7SJean Delvare static DEFINE_MUTEX(hdaps_mtx); 81bd9fc3a7SJean Delvare 82bd9fc3a7SJean Delvare /* 83bd9fc3a7SJean Delvare * __get_latch - Get the value from a given port. Callers must hold hdaps_mtx. 84bd9fc3a7SJean Delvare */ 85bd9fc3a7SJean Delvare static inline u8 __get_latch(u16 port) 86bd9fc3a7SJean Delvare { 87bd9fc3a7SJean Delvare return inb(port) & 0xff; 88bd9fc3a7SJean Delvare } 89bd9fc3a7SJean Delvare 90bd9fc3a7SJean Delvare /* 91bd9fc3a7SJean Delvare * __check_latch - Check a port latch for a given value. Returns zero if the 92bd9fc3a7SJean Delvare * port contains the given value. Callers must hold hdaps_mtx. 93bd9fc3a7SJean Delvare */ 94bd9fc3a7SJean Delvare static inline int __check_latch(u16 port, u8 val) 95bd9fc3a7SJean Delvare { 96bd9fc3a7SJean Delvare if (__get_latch(port) == val) 97bd9fc3a7SJean Delvare return 0; 98bd9fc3a7SJean Delvare return -EINVAL; 99bd9fc3a7SJean Delvare } 100bd9fc3a7SJean Delvare 101bd9fc3a7SJean Delvare /* 102bd9fc3a7SJean Delvare * __wait_latch - Wait up to 100us for a port latch to get a certain value, 103bd9fc3a7SJean Delvare * returning zero if the value is obtained. Callers must hold hdaps_mtx. 104bd9fc3a7SJean Delvare */ 105bd9fc3a7SJean Delvare static int __wait_latch(u16 port, u8 val) 106bd9fc3a7SJean Delvare { 107bd9fc3a7SJean Delvare unsigned int i; 108bd9fc3a7SJean Delvare 109bd9fc3a7SJean Delvare for (i = 0; i < 20; i++) { 110bd9fc3a7SJean Delvare if (!__check_latch(port, val)) 111bd9fc3a7SJean Delvare return 0; 112bd9fc3a7SJean Delvare udelay(5); 113bd9fc3a7SJean Delvare } 114bd9fc3a7SJean Delvare 115bd9fc3a7SJean Delvare return -EIO; 116bd9fc3a7SJean Delvare } 117bd9fc3a7SJean Delvare 118bd9fc3a7SJean Delvare /* 119bd9fc3a7SJean Delvare * __device_refresh - request a refresh from the accelerometer. Does not wait 120bd9fc3a7SJean Delvare * for refresh to complete. Callers must hold hdaps_mtx. 121bd9fc3a7SJean Delvare */ 122bd9fc3a7SJean Delvare static void __device_refresh(void) 123bd9fc3a7SJean Delvare { 124bd9fc3a7SJean Delvare udelay(200); 125bd9fc3a7SJean Delvare if (inb(0x1604) != STATE_FRESH) { 126bd9fc3a7SJean Delvare outb(0x11, 0x1610); 127bd9fc3a7SJean Delvare outb(0x01, 0x161f); 128bd9fc3a7SJean Delvare } 129bd9fc3a7SJean Delvare } 130bd9fc3a7SJean Delvare 131bd9fc3a7SJean Delvare /* 132bd9fc3a7SJean Delvare * __device_refresh_sync - request a synchronous refresh from the 133bd9fc3a7SJean Delvare * accelerometer. We wait for the refresh to complete. Returns zero if 134bd9fc3a7SJean Delvare * successful and nonzero on error. Callers must hold hdaps_mtx. 135bd9fc3a7SJean Delvare */ 136bd9fc3a7SJean Delvare static int __device_refresh_sync(void) 137bd9fc3a7SJean Delvare { 138bd9fc3a7SJean Delvare __device_refresh(); 139bd9fc3a7SJean Delvare return __wait_latch(0x1604, STATE_FRESH); 140bd9fc3a7SJean Delvare } 141bd9fc3a7SJean Delvare 142bd9fc3a7SJean Delvare /* 143bd9fc3a7SJean Delvare * __device_complete - indicate to the accelerometer that we are done reading 144bd9fc3a7SJean Delvare * data, and then initiate an async refresh. Callers must hold hdaps_mtx. 145bd9fc3a7SJean Delvare */ 146bd9fc3a7SJean Delvare static inline void __device_complete(void) 147bd9fc3a7SJean Delvare { 148bd9fc3a7SJean Delvare inb(0x161f); 149bd9fc3a7SJean Delvare inb(0x1604); 150bd9fc3a7SJean Delvare __device_refresh(); 151bd9fc3a7SJean Delvare } 152bd9fc3a7SJean Delvare 153bd9fc3a7SJean Delvare /* 154bd9fc3a7SJean Delvare * hdaps_readb_one - reads a byte from a single I/O port, placing the value in 155bd9fc3a7SJean Delvare * the given pointer. Returns zero on success or a negative error on failure. 156bd9fc3a7SJean Delvare * Can sleep. 157bd9fc3a7SJean Delvare */ 158bd9fc3a7SJean Delvare static int hdaps_readb_one(unsigned int port, u8 *val) 159bd9fc3a7SJean Delvare { 160bd9fc3a7SJean Delvare int ret; 161bd9fc3a7SJean Delvare 162bd9fc3a7SJean Delvare mutex_lock(&hdaps_mtx); 163bd9fc3a7SJean Delvare 164bd9fc3a7SJean Delvare /* do a sync refresh -- we need to be sure that we read fresh data */ 165bd9fc3a7SJean Delvare ret = __device_refresh_sync(); 166bd9fc3a7SJean Delvare if (ret) 167bd9fc3a7SJean Delvare goto out; 168bd9fc3a7SJean Delvare 169bd9fc3a7SJean Delvare *val = inb(port); 170bd9fc3a7SJean Delvare __device_complete(); 171bd9fc3a7SJean Delvare 172bd9fc3a7SJean Delvare out: 173bd9fc3a7SJean Delvare mutex_unlock(&hdaps_mtx); 174bd9fc3a7SJean Delvare return ret; 175bd9fc3a7SJean Delvare } 176bd9fc3a7SJean Delvare 177bd9fc3a7SJean Delvare /* __hdaps_read_pair - internal lockless helper for hdaps_read_pair(). */ 178bd9fc3a7SJean Delvare static int __hdaps_read_pair(unsigned int port1, unsigned int port2, 179bd9fc3a7SJean Delvare int *x, int *y) 180bd9fc3a7SJean Delvare { 181bd9fc3a7SJean Delvare /* do a sync refresh -- we need to be sure that we read fresh data */ 182bd9fc3a7SJean Delvare if (__device_refresh_sync()) 183bd9fc3a7SJean Delvare return -EIO; 184bd9fc3a7SJean Delvare 185bd9fc3a7SJean Delvare *y = inw(port2); 186bd9fc3a7SJean Delvare *x = inw(port1); 187bd9fc3a7SJean Delvare km_activity = inb(HDAPS_PORT_KMACT); 188bd9fc3a7SJean Delvare __device_complete(); 189bd9fc3a7SJean Delvare 190bd9fc3a7SJean Delvare /* hdaps_invert is a bitvector to negate the axes */ 191bd9fc3a7SJean Delvare if (hdaps_invert & HDAPS_X_AXIS) 192bd9fc3a7SJean Delvare *x = -*x; 193bd9fc3a7SJean Delvare if (hdaps_invert & HDAPS_Y_AXIS) 194bd9fc3a7SJean Delvare *y = -*y; 195bd9fc3a7SJean Delvare 196bd9fc3a7SJean Delvare return 0; 197bd9fc3a7SJean Delvare } 198bd9fc3a7SJean Delvare 199bd9fc3a7SJean Delvare /* 200bd9fc3a7SJean Delvare * hdaps_read_pair - reads the values from a pair of ports, placing the values 201bd9fc3a7SJean Delvare * in the given pointers. Returns zero on success. Can sleep. 202bd9fc3a7SJean Delvare */ 203bd9fc3a7SJean Delvare static int hdaps_read_pair(unsigned int port1, unsigned int port2, 204bd9fc3a7SJean Delvare int *val1, int *val2) 205bd9fc3a7SJean Delvare { 206bd9fc3a7SJean Delvare int ret; 207bd9fc3a7SJean Delvare 208bd9fc3a7SJean Delvare mutex_lock(&hdaps_mtx); 209bd9fc3a7SJean Delvare ret = __hdaps_read_pair(port1, port2, val1, val2); 210bd9fc3a7SJean Delvare mutex_unlock(&hdaps_mtx); 211bd9fc3a7SJean Delvare 212bd9fc3a7SJean Delvare return ret; 213bd9fc3a7SJean Delvare } 214bd9fc3a7SJean Delvare 215bd9fc3a7SJean Delvare /* 216bd9fc3a7SJean Delvare * hdaps_device_init - initialize the accelerometer. Returns zero on success 217bd9fc3a7SJean Delvare * and negative error code on failure. Can sleep. 218bd9fc3a7SJean Delvare */ 219bd9fc3a7SJean Delvare static int hdaps_device_init(void) 220bd9fc3a7SJean Delvare { 221bd9fc3a7SJean Delvare int total, ret = -ENXIO; 222bd9fc3a7SJean Delvare 223bd9fc3a7SJean Delvare mutex_lock(&hdaps_mtx); 224bd9fc3a7SJean Delvare 225bd9fc3a7SJean Delvare outb(0x13, 0x1610); 226bd9fc3a7SJean Delvare outb(0x01, 0x161f); 227bd9fc3a7SJean Delvare if (__wait_latch(0x161f, 0x00)) 228bd9fc3a7SJean Delvare goto out; 229bd9fc3a7SJean Delvare 230bd9fc3a7SJean Delvare /* 231bd9fc3a7SJean Delvare * Most ThinkPads return 0x01. 232bd9fc3a7SJean Delvare * 233bd9fc3a7SJean Delvare * Others--namely the R50p, T41p, and T42p--return 0x03. These laptops 234bd9fc3a7SJean Delvare * have "inverted" axises. 235bd9fc3a7SJean Delvare * 236bd9fc3a7SJean Delvare * The 0x02 value occurs when the chip has been previously initialized. 237bd9fc3a7SJean Delvare */ 238bd9fc3a7SJean Delvare if (__check_latch(0x1611, 0x03) && 239bd9fc3a7SJean Delvare __check_latch(0x1611, 0x02) && 240bd9fc3a7SJean Delvare __check_latch(0x1611, 0x01)) 241bd9fc3a7SJean Delvare goto out; 242bd9fc3a7SJean Delvare 243611f5763SJoe Perches printk(KERN_DEBUG "hdaps: initial latch check good (0x%02x)\n", 244bd9fc3a7SJean Delvare __get_latch(0x1611)); 245bd9fc3a7SJean Delvare 246bd9fc3a7SJean Delvare outb(0x17, 0x1610); 247bd9fc3a7SJean Delvare outb(0x81, 0x1611); 248bd9fc3a7SJean Delvare outb(0x01, 0x161f); 249bd9fc3a7SJean Delvare if (__wait_latch(0x161f, 0x00)) 250bd9fc3a7SJean Delvare goto out; 251bd9fc3a7SJean Delvare if (__wait_latch(0x1611, 0x00)) 252bd9fc3a7SJean Delvare goto out; 253bd9fc3a7SJean Delvare if (__wait_latch(0x1612, 0x60)) 254bd9fc3a7SJean Delvare goto out; 255bd9fc3a7SJean Delvare if (__wait_latch(0x1613, 0x00)) 256bd9fc3a7SJean Delvare goto out; 257bd9fc3a7SJean Delvare outb(0x14, 0x1610); 258bd9fc3a7SJean Delvare outb(0x01, 0x1611); 259bd9fc3a7SJean Delvare outb(0x01, 0x161f); 260bd9fc3a7SJean Delvare if (__wait_latch(0x161f, 0x00)) 261bd9fc3a7SJean Delvare goto out; 262bd9fc3a7SJean Delvare outb(0x10, 0x1610); 263bd9fc3a7SJean Delvare outb(0xc8, 0x1611); 264bd9fc3a7SJean Delvare outb(0x00, 0x1612); 265bd9fc3a7SJean Delvare outb(0x02, 0x1613); 266bd9fc3a7SJean Delvare outb(0x01, 0x161f); 267bd9fc3a7SJean Delvare if (__wait_latch(0x161f, 0x00)) 268bd9fc3a7SJean Delvare goto out; 269bd9fc3a7SJean Delvare if (__device_refresh_sync()) 270bd9fc3a7SJean Delvare goto out; 271bd9fc3a7SJean Delvare if (__wait_latch(0x1611, 0x00)) 272bd9fc3a7SJean Delvare goto out; 273bd9fc3a7SJean Delvare 274bd9fc3a7SJean Delvare /* we have done our dance, now let's wait for the applause */ 275bd9fc3a7SJean Delvare for (total = INIT_TIMEOUT_MSECS; total > 0; total -= INIT_WAIT_MSECS) { 276bd9fc3a7SJean Delvare int x, y; 277bd9fc3a7SJean Delvare 278bd9fc3a7SJean Delvare /* a read of the device helps push it into action */ 279bd9fc3a7SJean Delvare __hdaps_read_pair(HDAPS_PORT_XPOS, HDAPS_PORT_YPOS, &x, &y); 280bd9fc3a7SJean Delvare if (!__wait_latch(0x1611, 0x02)) { 281bd9fc3a7SJean Delvare ret = 0; 282bd9fc3a7SJean Delvare break; 283bd9fc3a7SJean Delvare } 284bd9fc3a7SJean Delvare 285bd9fc3a7SJean Delvare msleep(INIT_WAIT_MSECS); 286bd9fc3a7SJean Delvare } 287bd9fc3a7SJean Delvare 288bd9fc3a7SJean Delvare out: 289bd9fc3a7SJean Delvare mutex_unlock(&hdaps_mtx); 290bd9fc3a7SJean Delvare return ret; 291bd9fc3a7SJean Delvare } 292bd9fc3a7SJean Delvare 293bd9fc3a7SJean Delvare 294bd9fc3a7SJean Delvare /* Device model stuff */ 295bd9fc3a7SJean Delvare 296bd9fc3a7SJean Delvare static int hdaps_probe(struct platform_device *dev) 297bd9fc3a7SJean Delvare { 298bd9fc3a7SJean Delvare int ret; 299bd9fc3a7SJean Delvare 300bd9fc3a7SJean Delvare ret = hdaps_device_init(); 301bd9fc3a7SJean Delvare if (ret) 302bd9fc3a7SJean Delvare return ret; 303bd9fc3a7SJean Delvare 304611f5763SJoe Perches pr_info("device successfully initialized\n"); 305bd9fc3a7SJean Delvare return 0; 306bd9fc3a7SJean Delvare } 307bd9fc3a7SJean Delvare 308*3567a4e2SRafael J. Wysocki #ifdef CONFIG_PM_SLEEP 309e25d5c11SRafael J. Wysocki static int hdaps_resume(struct device *dev) 310bd9fc3a7SJean Delvare { 311bd9fc3a7SJean Delvare return hdaps_device_init(); 312bd9fc3a7SJean Delvare } 313*3567a4e2SRafael J. Wysocki #endif 314bd9fc3a7SJean Delvare 315e25d5c11SRafael J. Wysocki static SIMPLE_DEV_PM_OPS(hdaps_pm, NULL, hdaps_resume); 316e25d5c11SRafael J. Wysocki 317bd9fc3a7SJean Delvare static struct platform_driver hdaps_driver = { 318bd9fc3a7SJean Delvare .probe = hdaps_probe, 319bd9fc3a7SJean Delvare .driver = { 320bd9fc3a7SJean Delvare .name = "hdaps", 321bd9fc3a7SJean Delvare .owner = THIS_MODULE, 322e25d5c11SRafael J. Wysocki .pm = &hdaps_pm, 323bd9fc3a7SJean Delvare }, 324bd9fc3a7SJean Delvare }; 325bd9fc3a7SJean Delvare 326bd9fc3a7SJean Delvare /* 327bd9fc3a7SJean Delvare * hdaps_calibrate - Set our "resting" values. Callers must hold hdaps_mtx. 328bd9fc3a7SJean Delvare */ 329bd9fc3a7SJean Delvare static void hdaps_calibrate(void) 330bd9fc3a7SJean Delvare { 331bd9fc3a7SJean Delvare __hdaps_read_pair(HDAPS_PORT_XPOS, HDAPS_PORT_YPOS, &rest_x, &rest_y); 332bd9fc3a7SJean Delvare } 333bd9fc3a7SJean Delvare 334bd9fc3a7SJean Delvare static void hdaps_mousedev_poll(struct input_polled_dev *dev) 335bd9fc3a7SJean Delvare { 336bd9fc3a7SJean Delvare struct input_dev *input_dev = dev->input; 337bd9fc3a7SJean Delvare int x, y; 338bd9fc3a7SJean Delvare 339bd9fc3a7SJean Delvare mutex_lock(&hdaps_mtx); 340bd9fc3a7SJean Delvare 341bd9fc3a7SJean Delvare if (__hdaps_read_pair(HDAPS_PORT_XPOS, HDAPS_PORT_YPOS, &x, &y)) 342bd9fc3a7SJean Delvare goto out; 343bd9fc3a7SJean Delvare 344bd9fc3a7SJean Delvare input_report_abs(input_dev, ABS_X, x - rest_x); 345bd9fc3a7SJean Delvare input_report_abs(input_dev, ABS_Y, y - rest_y); 346bd9fc3a7SJean Delvare input_sync(input_dev); 347bd9fc3a7SJean Delvare 348bd9fc3a7SJean Delvare out: 349bd9fc3a7SJean Delvare mutex_unlock(&hdaps_mtx); 350bd9fc3a7SJean Delvare } 351bd9fc3a7SJean Delvare 352bd9fc3a7SJean Delvare 353bd9fc3a7SJean Delvare /* Sysfs Files */ 354bd9fc3a7SJean Delvare 355bd9fc3a7SJean Delvare static ssize_t hdaps_position_show(struct device *dev, 356bd9fc3a7SJean Delvare struct device_attribute *attr, char *buf) 357bd9fc3a7SJean Delvare { 358bd9fc3a7SJean Delvare int ret, x, y; 359bd9fc3a7SJean Delvare 360bd9fc3a7SJean Delvare ret = hdaps_read_pair(HDAPS_PORT_XPOS, HDAPS_PORT_YPOS, &x, &y); 361bd9fc3a7SJean Delvare if (ret) 362bd9fc3a7SJean Delvare return ret; 363bd9fc3a7SJean Delvare 364bd9fc3a7SJean Delvare return sprintf(buf, "(%d,%d)\n", x, y); 365bd9fc3a7SJean Delvare } 366bd9fc3a7SJean Delvare 367bd9fc3a7SJean Delvare static ssize_t hdaps_variance_show(struct device *dev, 368bd9fc3a7SJean Delvare struct device_attribute *attr, char *buf) 369bd9fc3a7SJean Delvare { 370bd9fc3a7SJean Delvare int ret, x, y; 371bd9fc3a7SJean Delvare 372bd9fc3a7SJean Delvare ret = hdaps_read_pair(HDAPS_PORT_XVAR, HDAPS_PORT_YVAR, &x, &y); 373bd9fc3a7SJean Delvare if (ret) 374bd9fc3a7SJean Delvare return ret; 375bd9fc3a7SJean Delvare 376bd9fc3a7SJean Delvare return sprintf(buf, "(%d,%d)\n", x, y); 377bd9fc3a7SJean Delvare } 378bd9fc3a7SJean Delvare 379bd9fc3a7SJean Delvare static ssize_t hdaps_temp1_show(struct device *dev, 380bd9fc3a7SJean Delvare struct device_attribute *attr, char *buf) 381bd9fc3a7SJean Delvare { 382b94e88bcSBorislav Petkov u8 uninitialized_var(temp); 383bd9fc3a7SJean Delvare int ret; 384bd9fc3a7SJean Delvare 385bd9fc3a7SJean Delvare ret = hdaps_readb_one(HDAPS_PORT_TEMP1, &temp); 386a938406bSDanny Kukawka if (ret) 387bd9fc3a7SJean Delvare return ret; 388bd9fc3a7SJean Delvare 389bd9fc3a7SJean Delvare return sprintf(buf, "%u\n", temp); 390bd9fc3a7SJean Delvare } 391bd9fc3a7SJean Delvare 392bd9fc3a7SJean Delvare static ssize_t hdaps_temp2_show(struct device *dev, 393bd9fc3a7SJean Delvare struct device_attribute *attr, char *buf) 394bd9fc3a7SJean Delvare { 395b94e88bcSBorislav Petkov u8 uninitialized_var(temp); 396bd9fc3a7SJean Delvare int ret; 397bd9fc3a7SJean Delvare 398bd9fc3a7SJean Delvare ret = hdaps_readb_one(HDAPS_PORT_TEMP2, &temp); 399a938406bSDanny Kukawka if (ret) 400bd9fc3a7SJean Delvare return ret; 401bd9fc3a7SJean Delvare 402bd9fc3a7SJean Delvare return sprintf(buf, "%u\n", temp); 403bd9fc3a7SJean Delvare } 404bd9fc3a7SJean Delvare 405bd9fc3a7SJean Delvare static ssize_t hdaps_keyboard_activity_show(struct device *dev, 406bd9fc3a7SJean Delvare struct device_attribute *attr, 407bd9fc3a7SJean Delvare char *buf) 408bd9fc3a7SJean Delvare { 409bd9fc3a7SJean Delvare return sprintf(buf, "%u\n", KEYBD_ISSET(km_activity)); 410bd9fc3a7SJean Delvare } 411bd9fc3a7SJean Delvare 412bd9fc3a7SJean Delvare static ssize_t hdaps_mouse_activity_show(struct device *dev, 413bd9fc3a7SJean Delvare struct device_attribute *attr, 414bd9fc3a7SJean Delvare char *buf) 415bd9fc3a7SJean Delvare { 416bd9fc3a7SJean Delvare return sprintf(buf, "%u\n", MOUSE_ISSET(km_activity)); 417bd9fc3a7SJean Delvare } 418bd9fc3a7SJean Delvare 419bd9fc3a7SJean Delvare static ssize_t hdaps_calibrate_show(struct device *dev, 420bd9fc3a7SJean Delvare struct device_attribute *attr, char *buf) 421bd9fc3a7SJean Delvare { 422bd9fc3a7SJean Delvare return sprintf(buf, "(%d,%d)\n", rest_x, rest_y); 423bd9fc3a7SJean Delvare } 424bd9fc3a7SJean Delvare 425bd9fc3a7SJean Delvare static ssize_t hdaps_calibrate_store(struct device *dev, 426bd9fc3a7SJean Delvare struct device_attribute *attr, 427bd9fc3a7SJean Delvare const char *buf, size_t count) 428bd9fc3a7SJean Delvare { 429bd9fc3a7SJean Delvare mutex_lock(&hdaps_mtx); 430bd9fc3a7SJean Delvare hdaps_calibrate(); 431bd9fc3a7SJean Delvare mutex_unlock(&hdaps_mtx); 432bd9fc3a7SJean Delvare 433bd9fc3a7SJean Delvare return count; 434bd9fc3a7SJean Delvare } 435bd9fc3a7SJean Delvare 436bd9fc3a7SJean Delvare static ssize_t hdaps_invert_show(struct device *dev, 437bd9fc3a7SJean Delvare struct device_attribute *attr, char *buf) 438bd9fc3a7SJean Delvare { 439bd9fc3a7SJean Delvare return sprintf(buf, "%u\n", hdaps_invert); 440bd9fc3a7SJean Delvare } 441bd9fc3a7SJean Delvare 442bd9fc3a7SJean Delvare static ssize_t hdaps_invert_store(struct device *dev, 443bd9fc3a7SJean Delvare struct device_attribute *attr, 444bd9fc3a7SJean Delvare const char *buf, size_t count) 445bd9fc3a7SJean Delvare { 446bd9fc3a7SJean Delvare int invert; 447bd9fc3a7SJean Delvare 448bd9fc3a7SJean Delvare if (sscanf(buf, "%d", &invert) != 1 || 449bd9fc3a7SJean Delvare invert < 0 || invert > HDAPS_BOTH_AXES) 450bd9fc3a7SJean Delvare return -EINVAL; 451bd9fc3a7SJean Delvare 452bd9fc3a7SJean Delvare hdaps_invert = invert; 453bd9fc3a7SJean Delvare hdaps_calibrate(); 454bd9fc3a7SJean Delvare 455bd9fc3a7SJean Delvare return count; 456bd9fc3a7SJean Delvare } 457bd9fc3a7SJean Delvare 458bd9fc3a7SJean Delvare static DEVICE_ATTR(position, 0444, hdaps_position_show, NULL); 459bd9fc3a7SJean Delvare static DEVICE_ATTR(variance, 0444, hdaps_variance_show, NULL); 460bd9fc3a7SJean Delvare static DEVICE_ATTR(temp1, 0444, hdaps_temp1_show, NULL); 461bd9fc3a7SJean Delvare static DEVICE_ATTR(temp2, 0444, hdaps_temp2_show, NULL); 462bd9fc3a7SJean Delvare static DEVICE_ATTR(keyboard_activity, 0444, hdaps_keyboard_activity_show, NULL); 463bd9fc3a7SJean Delvare static DEVICE_ATTR(mouse_activity, 0444, hdaps_mouse_activity_show, NULL); 464bd9fc3a7SJean Delvare static DEVICE_ATTR(calibrate, 0644, hdaps_calibrate_show,hdaps_calibrate_store); 465bd9fc3a7SJean Delvare static DEVICE_ATTR(invert, 0644, hdaps_invert_show, hdaps_invert_store); 466bd9fc3a7SJean Delvare 467bd9fc3a7SJean Delvare static struct attribute *hdaps_attributes[] = { 468bd9fc3a7SJean Delvare &dev_attr_position.attr, 469bd9fc3a7SJean Delvare &dev_attr_variance.attr, 470bd9fc3a7SJean Delvare &dev_attr_temp1.attr, 471bd9fc3a7SJean Delvare &dev_attr_temp2.attr, 472bd9fc3a7SJean Delvare &dev_attr_keyboard_activity.attr, 473bd9fc3a7SJean Delvare &dev_attr_mouse_activity.attr, 474bd9fc3a7SJean Delvare &dev_attr_calibrate.attr, 475bd9fc3a7SJean Delvare &dev_attr_invert.attr, 476bd9fc3a7SJean Delvare NULL, 477bd9fc3a7SJean Delvare }; 478bd9fc3a7SJean Delvare 479bd9fc3a7SJean Delvare static struct attribute_group hdaps_attribute_group = { 480bd9fc3a7SJean Delvare .attrs = hdaps_attributes, 481bd9fc3a7SJean Delvare }; 482bd9fc3a7SJean Delvare 483bd9fc3a7SJean Delvare 484bd9fc3a7SJean Delvare /* Module stuff */ 485bd9fc3a7SJean Delvare 486bd9fc3a7SJean Delvare /* hdaps_dmi_match - found a match. return one, short-circuiting the hunt. */ 487bd9fc3a7SJean Delvare static int __init hdaps_dmi_match(const struct dmi_system_id *id) 488bd9fc3a7SJean Delvare { 489611f5763SJoe Perches pr_info("%s detected\n", id->ident); 490bd9fc3a7SJean Delvare return 1; 491bd9fc3a7SJean Delvare } 492bd9fc3a7SJean Delvare 493bd9fc3a7SJean Delvare /* hdaps_dmi_match_invert - found an inverted match. */ 494bd9fc3a7SJean Delvare static int __init hdaps_dmi_match_invert(const struct dmi_system_id *id) 495bd9fc3a7SJean Delvare { 496bd9fc3a7SJean Delvare hdaps_invert = (unsigned long)id->driver_data; 497611f5763SJoe Perches pr_info("inverting axis (%u) readings\n", hdaps_invert); 498bd9fc3a7SJean Delvare return hdaps_dmi_match(id); 499bd9fc3a7SJean Delvare } 500bd9fc3a7SJean Delvare 501bd9fc3a7SJean Delvare #define HDAPS_DMI_MATCH_INVERT(vendor, model, axes) { \ 502bd9fc3a7SJean Delvare .ident = vendor " " model, \ 503bd9fc3a7SJean Delvare .callback = hdaps_dmi_match_invert, \ 504bd9fc3a7SJean Delvare .driver_data = (void *)axes, \ 505bd9fc3a7SJean Delvare .matches = { \ 506bd9fc3a7SJean Delvare DMI_MATCH(DMI_BOARD_VENDOR, vendor), \ 507bd9fc3a7SJean Delvare DMI_MATCH(DMI_PRODUCT_VERSION, model) \ 508bd9fc3a7SJean Delvare } \ 509bd9fc3a7SJean Delvare } 510bd9fc3a7SJean Delvare 511bd9fc3a7SJean Delvare #define HDAPS_DMI_MATCH_NORMAL(vendor, model) \ 512bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_INVERT(vendor, model, 0) 513bd9fc3a7SJean Delvare 514bd9fc3a7SJean Delvare /* Note that HDAPS_DMI_MATCH_NORMAL("ThinkPad T42") would match 515bd9fc3a7SJean Delvare "ThinkPad T42p", so the order of the entries matters. 516bd9fc3a7SJean Delvare If your ThinkPad is not recognized, please update to latest 517bd9fc3a7SJean Delvare BIOS. This is especially the case for some R52 ThinkPads. */ 518bd9fc3a7SJean Delvare static struct dmi_system_id __initdata hdaps_whitelist[] = { 519bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_INVERT("IBM", "ThinkPad R50p", HDAPS_BOTH_AXES), 520bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_NORMAL("IBM", "ThinkPad R50"), 521bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_NORMAL("IBM", "ThinkPad R51"), 522bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_NORMAL("IBM", "ThinkPad R52"), 523bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_INVERT("LENOVO", "ThinkPad R61i", HDAPS_BOTH_AXES), 524bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_INVERT("LENOVO", "ThinkPad R61", HDAPS_BOTH_AXES), 525bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_INVERT("IBM", "ThinkPad T41p", HDAPS_BOTH_AXES), 526bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_NORMAL("IBM", "ThinkPad T41"), 527bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_INVERT("IBM", "ThinkPad T42p", HDAPS_BOTH_AXES), 528bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_NORMAL("IBM", "ThinkPad T42"), 529bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_NORMAL("IBM", "ThinkPad T43"), 530bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_INVERT("LENOVO", "ThinkPad T400", HDAPS_BOTH_AXES), 531bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_INVERT("LENOVO", "ThinkPad T60", HDAPS_BOTH_AXES), 532bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_INVERT("LENOVO", "ThinkPad T61p", HDAPS_BOTH_AXES), 533bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_INVERT("LENOVO", "ThinkPad T61", HDAPS_BOTH_AXES), 534bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_NORMAL("IBM", "ThinkPad X40"), 535bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_INVERT("IBM", "ThinkPad X41", HDAPS_Y_AXIS), 536bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_INVERT("LENOVO", "ThinkPad X60", HDAPS_BOTH_AXES), 537bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_INVERT("LENOVO", "ThinkPad X61s", HDAPS_BOTH_AXES), 538bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_INVERT("LENOVO", "ThinkPad X61", HDAPS_BOTH_AXES), 539bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_NORMAL("IBM", "ThinkPad Z60m"), 540bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_INVERT("LENOVO", "ThinkPad Z61m", HDAPS_BOTH_AXES), 541bd9fc3a7SJean Delvare HDAPS_DMI_MATCH_INVERT("LENOVO", "ThinkPad Z61p", HDAPS_BOTH_AXES), 542bd9fc3a7SJean Delvare { .ident = NULL } 543bd9fc3a7SJean Delvare }; 544bd9fc3a7SJean Delvare 545bd9fc3a7SJean Delvare static int __init hdaps_init(void) 546bd9fc3a7SJean Delvare { 547bd9fc3a7SJean Delvare struct input_dev *idev; 548bd9fc3a7SJean Delvare int ret; 549bd9fc3a7SJean Delvare 550bd9fc3a7SJean Delvare if (!dmi_check_system(hdaps_whitelist)) { 551611f5763SJoe Perches pr_warn("supported laptop not found!\n"); 552bd9fc3a7SJean Delvare ret = -ENODEV; 553bd9fc3a7SJean Delvare goto out; 554bd9fc3a7SJean Delvare } 555bd9fc3a7SJean Delvare 556bd9fc3a7SJean Delvare if (!request_region(HDAPS_LOW_PORT, HDAPS_NR_PORTS, "hdaps")) { 557bd9fc3a7SJean Delvare ret = -ENXIO; 558bd9fc3a7SJean Delvare goto out; 559bd9fc3a7SJean Delvare } 560bd9fc3a7SJean Delvare 561bd9fc3a7SJean Delvare ret = platform_driver_register(&hdaps_driver); 562bd9fc3a7SJean Delvare if (ret) 563bd9fc3a7SJean Delvare goto out_region; 564bd9fc3a7SJean Delvare 565bd9fc3a7SJean Delvare pdev = platform_device_register_simple("hdaps", -1, NULL, 0); 566bd9fc3a7SJean Delvare if (IS_ERR(pdev)) { 567bd9fc3a7SJean Delvare ret = PTR_ERR(pdev); 568bd9fc3a7SJean Delvare goto out_driver; 569bd9fc3a7SJean Delvare } 570bd9fc3a7SJean Delvare 571bd9fc3a7SJean Delvare ret = sysfs_create_group(&pdev->dev.kobj, &hdaps_attribute_group); 572bd9fc3a7SJean Delvare if (ret) 573bd9fc3a7SJean Delvare goto out_device; 574bd9fc3a7SJean Delvare 575bd9fc3a7SJean Delvare hdaps_idev = input_allocate_polled_device(); 576bd9fc3a7SJean Delvare if (!hdaps_idev) { 577bd9fc3a7SJean Delvare ret = -ENOMEM; 578bd9fc3a7SJean Delvare goto out_group; 579bd9fc3a7SJean Delvare } 580bd9fc3a7SJean Delvare 581bd9fc3a7SJean Delvare hdaps_idev->poll = hdaps_mousedev_poll; 582bd9fc3a7SJean Delvare hdaps_idev->poll_interval = HDAPS_POLL_INTERVAL; 583bd9fc3a7SJean Delvare 584bd9fc3a7SJean Delvare /* initial calibrate for the input device */ 585bd9fc3a7SJean Delvare hdaps_calibrate(); 586bd9fc3a7SJean Delvare 587bd9fc3a7SJean Delvare /* initialize the input class */ 588bd9fc3a7SJean Delvare idev = hdaps_idev->input; 589bd9fc3a7SJean Delvare idev->name = "hdaps"; 590bd9fc3a7SJean Delvare idev->phys = "isa1600/input0"; 591bd9fc3a7SJean Delvare idev->id.bustype = BUS_ISA; 592bd9fc3a7SJean Delvare idev->dev.parent = &pdev->dev; 593bd9fc3a7SJean Delvare idev->evbit[0] = BIT_MASK(EV_ABS); 594bd9fc3a7SJean Delvare input_set_abs_params(idev, ABS_X, 595bd9fc3a7SJean Delvare -256, 256, HDAPS_INPUT_FUZZ, HDAPS_INPUT_FLAT); 596bd9fc3a7SJean Delvare input_set_abs_params(idev, ABS_Y, 597bd9fc3a7SJean Delvare -256, 256, HDAPS_INPUT_FUZZ, HDAPS_INPUT_FLAT); 598bd9fc3a7SJean Delvare 599bd9fc3a7SJean Delvare ret = input_register_polled_device(hdaps_idev); 600bd9fc3a7SJean Delvare if (ret) 601bd9fc3a7SJean Delvare goto out_idev; 602bd9fc3a7SJean Delvare 603611f5763SJoe Perches pr_info("driver successfully loaded\n"); 604bd9fc3a7SJean Delvare return 0; 605bd9fc3a7SJean Delvare 606bd9fc3a7SJean Delvare out_idev: 607bd9fc3a7SJean Delvare input_free_polled_device(hdaps_idev); 608bd9fc3a7SJean Delvare out_group: 609bd9fc3a7SJean Delvare sysfs_remove_group(&pdev->dev.kobj, &hdaps_attribute_group); 610bd9fc3a7SJean Delvare out_device: 611bd9fc3a7SJean Delvare platform_device_unregister(pdev); 612bd9fc3a7SJean Delvare out_driver: 613bd9fc3a7SJean Delvare platform_driver_unregister(&hdaps_driver); 614bd9fc3a7SJean Delvare out_region: 615bd9fc3a7SJean Delvare release_region(HDAPS_LOW_PORT, HDAPS_NR_PORTS); 616bd9fc3a7SJean Delvare out: 617611f5763SJoe Perches pr_warn("driver init failed (ret=%d)!\n", ret); 618bd9fc3a7SJean Delvare return ret; 619bd9fc3a7SJean Delvare } 620bd9fc3a7SJean Delvare 621bd9fc3a7SJean Delvare static void __exit hdaps_exit(void) 622bd9fc3a7SJean Delvare { 623bd9fc3a7SJean Delvare input_unregister_polled_device(hdaps_idev); 624bd9fc3a7SJean Delvare input_free_polled_device(hdaps_idev); 625bd9fc3a7SJean Delvare sysfs_remove_group(&pdev->dev.kobj, &hdaps_attribute_group); 626bd9fc3a7SJean Delvare platform_device_unregister(pdev); 627bd9fc3a7SJean Delvare platform_driver_unregister(&hdaps_driver); 628bd9fc3a7SJean Delvare release_region(HDAPS_LOW_PORT, HDAPS_NR_PORTS); 629bd9fc3a7SJean Delvare 630611f5763SJoe Perches pr_info("driver unloaded\n"); 631bd9fc3a7SJean Delvare } 632bd9fc3a7SJean Delvare 633bd9fc3a7SJean Delvare module_init(hdaps_init); 634bd9fc3a7SJean Delvare module_exit(hdaps_exit); 635bd9fc3a7SJean Delvare 636bd9fc3a7SJean Delvare module_param_named(invert, hdaps_invert, int, 0); 637bd9fc3a7SJean Delvare MODULE_PARM_DESC(invert, "invert data along each axis. 1 invert x-axis, " 638bd9fc3a7SJean Delvare "2 invert y-axis, 3 invert both axes."); 639bd9fc3a7SJean Delvare 640bd9fc3a7SJean Delvare MODULE_AUTHOR("Robert Love"); 641bd9fc3a7SJean Delvare MODULE_DESCRIPTION("IBM Hard Drive Active Protection System (HDAPS) driver"); 642bd9fc3a7SJean Delvare MODULE_LICENSE("GPL v2"); 643