1 /* 2 * Synaptics TouchPad PS/2 mouse driver 3 * 4 * 2003 Dmitry Torokhov <dtor@mail.ru> 5 * Added support for pass-through port. Special thanks to Peter Berg Larsen 6 * for explaining various Synaptics quirks. 7 * 8 * 2003 Peter Osterlund <petero2@telia.com> 9 * Ported to 2.5 input device infrastructure. 10 * 11 * Copyright (C) 2001 Stefan Gmeiner <riddlebox@freesurf.ch> 12 * start merging tpconfig and gpm code to a xfree-input module 13 * adding some changes and extensions (ex. 3rd and 4th button) 14 * 15 * Copyright (c) 1997 C. Scott Ananian <cananian@alumni.priceton.edu> 16 * Copyright (c) 1998-2000 Bruce Kalk <kall@compass.com> 17 * code for the special synaptics commands (from the tpconfig-source) 18 * 19 * This program is free software; you can redistribute it and/or modify it 20 * under the terms of the GNU General Public License version 2 as published by 21 * the Free Software Foundation. 22 * 23 * Trademarks are the property of their respective owners. 24 */ 25 26 #include <linux/module.h> 27 #include <linux/delay.h> 28 #include <linux/dmi.h> 29 #include <linux/input/mt.h> 30 #include <linux/serio.h> 31 #include <linux/libps2.h> 32 #include <linux/slab.h> 33 #include "psmouse.h" 34 #include "synaptics.h" 35 36 /* 37 * The x/y limits are taken from the Synaptics TouchPad interfacing Guide, 38 * section 2.3.2, which says that they should be valid regardless of the 39 * actual size of the sensor. 40 * Note that newer firmware allows querying device for maximum useable 41 * coordinates. 42 */ 43 #define XMIN 0 44 #define XMAX 6143 45 #define YMIN 0 46 #define YMAX 6143 47 #define XMIN_NOMINAL 1472 48 #define XMAX_NOMINAL 5472 49 #define YMIN_NOMINAL 1408 50 #define YMAX_NOMINAL 4448 51 52 /* Size in bits of absolute position values reported by the hardware */ 53 #define ABS_POS_BITS 13 54 55 /* 56 * These values should represent the absolute maximum value that will 57 * be reported for a positive position value. Some Synaptics firmware 58 * uses this value to indicate a finger near the edge of the touchpad 59 * whose precise position cannot be determined. 60 * 61 * At least one touchpad is known to report positions in excess of this 62 * value which are actually negative values truncated to the 13-bit 63 * reporting range. These values have never been observed to be lower 64 * than 8184 (i.e. -8), so we treat all values greater than 8176 as 65 * negative and any other value as positive. 66 */ 67 #define X_MAX_POSITIVE 8176 68 #define Y_MAX_POSITIVE 8176 69 70 /***************************************************************************** 71 * Stuff we need even when we do not want native Synaptics support 72 ****************************************************************************/ 73 74 /* 75 * Set the synaptics touchpad mode byte by special commands 76 */ 77 static int synaptics_mode_cmd(struct psmouse *psmouse, unsigned char mode) 78 { 79 unsigned char param[1]; 80 81 if (psmouse_sliced_command(psmouse, mode)) 82 return -1; 83 param[0] = SYN_PS_SET_MODE2; 84 if (ps2_command(&psmouse->ps2dev, param, PSMOUSE_CMD_SETRATE)) 85 return -1; 86 return 0; 87 } 88 89 int synaptics_detect(struct psmouse *psmouse, bool set_properties) 90 { 91 struct ps2dev *ps2dev = &psmouse->ps2dev; 92 unsigned char param[4]; 93 94 param[0] = 0; 95 96 ps2_command(ps2dev, param, PSMOUSE_CMD_SETRES); 97 ps2_command(ps2dev, param, PSMOUSE_CMD_SETRES); 98 ps2_command(ps2dev, param, PSMOUSE_CMD_SETRES); 99 ps2_command(ps2dev, param, PSMOUSE_CMD_SETRES); 100 ps2_command(ps2dev, param, PSMOUSE_CMD_GETINFO); 101 102 if (param[1] != 0x47) 103 return -ENODEV; 104 105 if (set_properties) { 106 psmouse->vendor = "Synaptics"; 107 psmouse->name = "TouchPad"; 108 } 109 110 return 0; 111 } 112 113 void synaptics_reset(struct psmouse *psmouse) 114 { 115 /* reset touchpad back to relative mode, gestures enabled */ 116 synaptics_mode_cmd(psmouse, 0); 117 } 118 119 #ifdef CONFIG_MOUSE_PS2_SYNAPTICS 120 121 /***************************************************************************** 122 * Synaptics communications functions 123 ****************************************************************************/ 124 125 /* 126 * Synaptics touchpads report the y coordinate from bottom to top, which is 127 * opposite from what userspace expects. 128 * This function is used to invert y before reporting. 129 */ 130 static int synaptics_invert_y(int y) 131 { 132 return YMAX_NOMINAL + YMIN_NOMINAL - y; 133 } 134 135 /* 136 * Send a command to the synpatics touchpad by special commands 137 */ 138 static int synaptics_send_cmd(struct psmouse *psmouse, unsigned char c, unsigned char *param) 139 { 140 if (psmouse_sliced_command(psmouse, c)) 141 return -1; 142 if (ps2_command(&psmouse->ps2dev, param, PSMOUSE_CMD_GETINFO)) 143 return -1; 144 return 0; 145 } 146 147 /* 148 * Read the model-id bytes from the touchpad 149 * see also SYN_MODEL_* macros 150 */ 151 static int synaptics_model_id(struct psmouse *psmouse) 152 { 153 struct synaptics_data *priv = psmouse->private; 154 unsigned char mi[3]; 155 156 if (synaptics_send_cmd(psmouse, SYN_QUE_MODEL, mi)) 157 return -1; 158 priv->model_id = (mi[0]<<16) | (mi[1]<<8) | mi[2]; 159 return 0; 160 } 161 162 /* 163 * Read the board id from the touchpad 164 * The board id is encoded in the "QUERY MODES" response 165 */ 166 static int synaptics_board_id(struct psmouse *psmouse) 167 { 168 struct synaptics_data *priv = psmouse->private; 169 unsigned char bid[3]; 170 171 if (synaptics_send_cmd(psmouse, SYN_QUE_MODES, bid)) 172 return -1; 173 priv->board_id = ((bid[0] & 0xfc) << 6) | bid[1]; 174 return 0; 175 } 176 177 /* 178 * Read the firmware id from the touchpad 179 */ 180 static int synaptics_firmware_id(struct psmouse *psmouse) 181 { 182 struct synaptics_data *priv = psmouse->private; 183 unsigned char fwid[3]; 184 185 if (synaptics_send_cmd(psmouse, SYN_QUE_FIRMWARE_ID, fwid)) 186 return -1; 187 priv->firmware_id = (fwid[0] << 16) | (fwid[1] << 8) | fwid[2]; 188 return 0; 189 } 190 191 /* 192 * Read the capability-bits from the touchpad 193 * see also the SYN_CAP_* macros 194 */ 195 static int synaptics_capability(struct psmouse *psmouse) 196 { 197 struct synaptics_data *priv = psmouse->private; 198 unsigned char cap[3]; 199 200 if (synaptics_send_cmd(psmouse, SYN_QUE_CAPABILITIES, cap)) 201 return -1; 202 priv->capabilities = (cap[0] << 16) | (cap[1] << 8) | cap[2]; 203 priv->ext_cap = priv->ext_cap_0c = 0; 204 205 /* 206 * Older firmwares had submodel ID fixed to 0x47 207 */ 208 if (SYN_ID_FULL(priv->identity) < 0x705 && 209 SYN_CAP_SUBMODEL_ID(priv->capabilities) != 0x47) { 210 return -1; 211 } 212 213 /* 214 * Unless capExtended is set the rest of the flags should be ignored 215 */ 216 if (!SYN_CAP_EXTENDED(priv->capabilities)) 217 priv->capabilities = 0; 218 219 if (SYN_EXT_CAP_REQUESTS(priv->capabilities) >= 1) { 220 if (synaptics_send_cmd(psmouse, SYN_QUE_EXT_CAPAB, cap)) { 221 psmouse_warn(psmouse, 222 "device claims to have extended capabilities, but I'm not able to read them.\n"); 223 } else { 224 priv->ext_cap = (cap[0] << 16) | (cap[1] << 8) | cap[2]; 225 226 /* 227 * if nExtBtn is greater than 8 it should be considered 228 * invalid and treated as 0 229 */ 230 if (SYN_CAP_MULTI_BUTTON_NO(priv->ext_cap) > 8) 231 priv->ext_cap &= 0xff0fff; 232 } 233 } 234 235 if (SYN_EXT_CAP_REQUESTS(priv->capabilities) >= 4) { 236 if (synaptics_send_cmd(psmouse, SYN_QUE_EXT_CAPAB_0C, cap)) { 237 psmouse_warn(psmouse, 238 "device claims to have extended capability 0x0c, but I'm not able to read it.\n"); 239 } else { 240 priv->ext_cap_0c = (cap[0] << 16) | (cap[1] << 8) | cap[2]; 241 } 242 } 243 244 return 0; 245 } 246 247 /* 248 * Identify Touchpad 249 * See also the SYN_ID_* macros 250 */ 251 static int synaptics_identify(struct psmouse *psmouse) 252 { 253 struct synaptics_data *priv = psmouse->private; 254 unsigned char id[3]; 255 256 if (synaptics_send_cmd(psmouse, SYN_QUE_IDENTIFY, id)) 257 return -1; 258 priv->identity = (id[0]<<16) | (id[1]<<8) | id[2]; 259 if (SYN_ID_IS_SYNAPTICS(priv->identity)) 260 return 0; 261 return -1; 262 } 263 264 /* 265 * Read touchpad resolution and maximum reported coordinates 266 * Resolution is left zero if touchpad does not support the query 267 */ 268 static int synaptics_resolution(struct psmouse *psmouse) 269 { 270 struct synaptics_data *priv = psmouse->private; 271 unsigned char resp[3]; 272 273 if (SYN_ID_MAJOR(priv->identity) < 4) 274 return 0; 275 276 if (synaptics_send_cmd(psmouse, SYN_QUE_RESOLUTION, resp) == 0) { 277 if (resp[0] != 0 && (resp[1] & 0x80) && resp[2] != 0) { 278 priv->x_res = resp[0]; /* x resolution in units/mm */ 279 priv->y_res = resp[2]; /* y resolution in units/mm */ 280 } 281 } 282 283 if (SYN_EXT_CAP_REQUESTS(priv->capabilities) >= 5 && 284 SYN_CAP_MAX_DIMENSIONS(priv->ext_cap_0c)) { 285 if (synaptics_send_cmd(psmouse, SYN_QUE_EXT_MAX_COORDS, resp)) { 286 psmouse_warn(psmouse, 287 "device claims to have max coordinates query, but I'm not able to read it.\n"); 288 } else { 289 priv->x_max = (resp[0] << 5) | ((resp[1] & 0x0f) << 1); 290 priv->y_max = (resp[2] << 5) | ((resp[1] & 0xf0) >> 3); 291 } 292 } 293 294 if (SYN_EXT_CAP_REQUESTS(priv->capabilities) >= 7 && 295 SYN_CAP_MIN_DIMENSIONS(priv->ext_cap_0c)) { 296 if (synaptics_send_cmd(psmouse, SYN_QUE_EXT_MIN_COORDS, resp)) { 297 psmouse_warn(psmouse, 298 "device claims to have min coordinates query, but I'm not able to read it.\n"); 299 } else { 300 priv->x_min = (resp[0] << 5) | ((resp[1] & 0x0f) << 1); 301 priv->y_min = (resp[2] << 5) | ((resp[1] & 0xf0) >> 3); 302 } 303 } 304 305 return 0; 306 } 307 308 static int synaptics_query_hardware(struct psmouse *psmouse) 309 { 310 if (synaptics_identify(psmouse)) 311 return -1; 312 if (synaptics_model_id(psmouse)) 313 return -1; 314 if (synaptics_firmware_id(psmouse)) 315 return -1; 316 if (synaptics_board_id(psmouse)) 317 return -1; 318 if (synaptics_capability(psmouse)) 319 return -1; 320 if (synaptics_resolution(psmouse)) 321 return -1; 322 323 return 0; 324 } 325 326 static int synaptics_set_advanced_gesture_mode(struct psmouse *psmouse) 327 { 328 static unsigned char param = 0xc8; 329 struct synaptics_data *priv = psmouse->private; 330 331 if (!(SYN_CAP_ADV_GESTURE(priv->ext_cap_0c) || 332 SYN_CAP_IMAGE_SENSOR(priv->ext_cap_0c))) 333 return 0; 334 335 if (psmouse_sliced_command(psmouse, SYN_QUE_MODEL)) 336 return -1; 337 338 if (ps2_command(&psmouse->ps2dev, ¶m, PSMOUSE_CMD_SETRATE)) 339 return -1; 340 341 /* Advanced gesture mode also sends multi finger data */ 342 priv->capabilities |= BIT(1); 343 344 return 0; 345 } 346 347 static int synaptics_set_mode(struct psmouse *psmouse) 348 { 349 struct synaptics_data *priv = psmouse->private; 350 351 priv->mode = 0; 352 if (priv->absolute_mode) 353 priv->mode |= SYN_BIT_ABSOLUTE_MODE; 354 if (priv->disable_gesture) 355 priv->mode |= SYN_BIT_DISABLE_GESTURE; 356 if (psmouse->rate >= 80) 357 priv->mode |= SYN_BIT_HIGH_RATE; 358 if (SYN_CAP_EXTENDED(priv->capabilities)) 359 priv->mode |= SYN_BIT_W_MODE; 360 361 if (synaptics_mode_cmd(psmouse, priv->mode)) 362 return -1; 363 364 if (priv->absolute_mode && 365 synaptics_set_advanced_gesture_mode(psmouse)) { 366 psmouse_err(psmouse, "Advanced gesture mode init failed.\n"); 367 return -1; 368 } 369 370 return 0; 371 } 372 373 static void synaptics_set_rate(struct psmouse *psmouse, unsigned int rate) 374 { 375 struct synaptics_data *priv = psmouse->private; 376 377 if (rate >= 80) { 378 priv->mode |= SYN_BIT_HIGH_RATE; 379 psmouse->rate = 80; 380 } else { 381 priv->mode &= ~SYN_BIT_HIGH_RATE; 382 psmouse->rate = 40; 383 } 384 385 synaptics_mode_cmd(psmouse, priv->mode); 386 } 387 388 /***************************************************************************** 389 * Synaptics pass-through PS/2 port support 390 ****************************************************************************/ 391 static int synaptics_pt_write(struct serio *serio, unsigned char c) 392 { 393 struct psmouse *parent = serio_get_drvdata(serio->parent); 394 char rate_param = SYN_PS_CLIENT_CMD; /* indicates that we want pass-through port */ 395 396 if (psmouse_sliced_command(parent, c)) 397 return -1; 398 if (ps2_command(&parent->ps2dev, &rate_param, PSMOUSE_CMD_SETRATE)) 399 return -1; 400 return 0; 401 } 402 403 static int synaptics_pt_start(struct serio *serio) 404 { 405 struct psmouse *parent = serio_get_drvdata(serio->parent); 406 struct synaptics_data *priv = parent->private; 407 408 serio_pause_rx(parent->ps2dev.serio); 409 priv->pt_port = serio; 410 serio_continue_rx(parent->ps2dev.serio); 411 412 return 0; 413 } 414 415 static void synaptics_pt_stop(struct serio *serio) 416 { 417 struct psmouse *parent = serio_get_drvdata(serio->parent); 418 struct synaptics_data *priv = parent->private; 419 420 serio_pause_rx(parent->ps2dev.serio); 421 priv->pt_port = NULL; 422 serio_continue_rx(parent->ps2dev.serio); 423 } 424 425 static int synaptics_is_pt_packet(unsigned char *buf) 426 { 427 return (buf[0] & 0xFC) == 0x84 && (buf[3] & 0xCC) == 0xC4; 428 } 429 430 static void synaptics_pass_pt_packet(struct serio *ptport, unsigned char *packet) 431 { 432 struct psmouse *child = serio_get_drvdata(ptport); 433 434 if (child && child->state == PSMOUSE_ACTIVATED) { 435 serio_interrupt(ptport, packet[1], 0); 436 serio_interrupt(ptport, packet[4], 0); 437 serio_interrupt(ptport, packet[5], 0); 438 if (child->pktsize == 4) 439 serio_interrupt(ptport, packet[2], 0); 440 } else 441 serio_interrupt(ptport, packet[1], 0); 442 } 443 444 static void synaptics_pt_activate(struct psmouse *psmouse) 445 { 446 struct synaptics_data *priv = psmouse->private; 447 struct psmouse *child = serio_get_drvdata(priv->pt_port); 448 449 /* adjust the touchpad to child's choice of protocol */ 450 if (child) { 451 if (child->pktsize == 4) 452 priv->mode |= SYN_BIT_FOUR_BYTE_CLIENT; 453 else 454 priv->mode &= ~SYN_BIT_FOUR_BYTE_CLIENT; 455 456 if (synaptics_mode_cmd(psmouse, priv->mode)) 457 psmouse_warn(psmouse, 458 "failed to switch guest protocol\n"); 459 } 460 } 461 462 static void synaptics_pt_create(struct psmouse *psmouse) 463 { 464 struct serio *serio; 465 466 serio = kzalloc(sizeof(struct serio), GFP_KERNEL); 467 if (!serio) { 468 psmouse_err(psmouse, 469 "not enough memory for pass-through port\n"); 470 return; 471 } 472 473 serio->id.type = SERIO_PS_PSTHRU; 474 strlcpy(serio->name, "Synaptics pass-through", sizeof(serio->name)); 475 strlcpy(serio->phys, "synaptics-pt/serio0", sizeof(serio->name)); 476 serio->write = synaptics_pt_write; 477 serio->start = synaptics_pt_start; 478 serio->stop = synaptics_pt_stop; 479 serio->parent = psmouse->ps2dev.serio; 480 481 psmouse->pt_activate = synaptics_pt_activate; 482 483 psmouse_info(psmouse, "serio: %s port at %s\n", 484 serio->name, psmouse->phys); 485 serio_register_port(serio); 486 } 487 488 /***************************************************************************** 489 * Functions to interpret the absolute mode packets 490 ****************************************************************************/ 491 492 static void synaptics_mt_state_set(struct synaptics_mt_state *state, int count, 493 int sgm, int agm) 494 { 495 state->count = count; 496 state->sgm = sgm; 497 state->agm = agm; 498 } 499 500 static void synaptics_parse_agm(const unsigned char buf[], 501 struct synaptics_data *priv, 502 struct synaptics_hw_state *hw) 503 { 504 struct synaptics_hw_state *agm = &priv->agm; 505 int agm_packet_type; 506 507 agm_packet_type = (buf[5] & 0x30) >> 4; 508 switch (agm_packet_type) { 509 case 1: 510 /* Gesture packet: (x, y, z) half resolution */ 511 agm->w = hw->w; 512 agm->x = (((buf[4] & 0x0f) << 8) | buf[1]) << 1; 513 agm->y = (((buf[4] & 0xf0) << 4) | buf[2]) << 1; 514 agm->z = ((buf[3] & 0x30) | (buf[5] & 0x0f)) << 1; 515 break; 516 517 case 2: 518 /* AGM-CONTACT packet: (count, sgm, agm) */ 519 synaptics_mt_state_set(&agm->mt_state, buf[1], buf[2], buf[4]); 520 break; 521 522 default: 523 break; 524 } 525 526 /* Record that at least one AGM has been received since last SGM */ 527 priv->agm_pending = true; 528 } 529 530 static int synaptics_parse_hw_state(const unsigned char buf[], 531 struct synaptics_data *priv, 532 struct synaptics_hw_state *hw) 533 { 534 memset(hw, 0, sizeof(struct synaptics_hw_state)); 535 536 if (SYN_MODEL_NEWABS(priv->model_id)) { 537 hw->w = (((buf[0] & 0x30) >> 2) | 538 ((buf[0] & 0x04) >> 1) | 539 ((buf[3] & 0x04) >> 2)); 540 541 hw->left = (buf[0] & 0x01) ? 1 : 0; 542 hw->right = (buf[0] & 0x02) ? 1 : 0; 543 544 if (SYN_CAP_CLICKPAD(priv->ext_cap_0c)) { 545 /* 546 * Clickpad's button is transmitted as middle button, 547 * however, since it is primary button, we will report 548 * it as BTN_LEFT. 549 */ 550 hw->left = ((buf[0] ^ buf[3]) & 0x01) ? 1 : 0; 551 552 } else if (SYN_CAP_MIDDLE_BUTTON(priv->capabilities)) { 553 hw->middle = ((buf[0] ^ buf[3]) & 0x01) ? 1 : 0; 554 if (hw->w == 2) 555 hw->scroll = (signed char)(buf[1]); 556 } 557 558 if (SYN_CAP_FOUR_BUTTON(priv->capabilities)) { 559 hw->up = ((buf[0] ^ buf[3]) & 0x01) ? 1 : 0; 560 hw->down = ((buf[0] ^ buf[3]) & 0x02) ? 1 : 0; 561 } 562 563 if ((SYN_CAP_ADV_GESTURE(priv->ext_cap_0c) || 564 SYN_CAP_IMAGE_SENSOR(priv->ext_cap_0c)) && 565 hw->w == 2) { 566 synaptics_parse_agm(buf, priv, hw); 567 return 1; 568 } 569 570 hw->x = (((buf[3] & 0x10) << 8) | 571 ((buf[1] & 0x0f) << 8) | 572 buf[4]); 573 hw->y = (((buf[3] & 0x20) << 7) | 574 ((buf[1] & 0xf0) << 4) | 575 buf[5]); 576 hw->z = buf[2]; 577 578 if (SYN_CAP_MULTI_BUTTON_NO(priv->ext_cap) && 579 ((buf[0] ^ buf[3]) & 0x02)) { 580 switch (SYN_CAP_MULTI_BUTTON_NO(priv->ext_cap) & ~0x01) { 581 default: 582 /* 583 * if nExtBtn is greater than 8 it should be 584 * considered invalid and treated as 0 585 */ 586 break; 587 case 8: 588 hw->ext_buttons |= ((buf[5] & 0x08)) ? 0x80 : 0; 589 hw->ext_buttons |= ((buf[4] & 0x08)) ? 0x40 : 0; 590 case 6: 591 hw->ext_buttons |= ((buf[5] & 0x04)) ? 0x20 : 0; 592 hw->ext_buttons |= ((buf[4] & 0x04)) ? 0x10 : 0; 593 case 4: 594 hw->ext_buttons |= ((buf[5] & 0x02)) ? 0x08 : 0; 595 hw->ext_buttons |= ((buf[4] & 0x02)) ? 0x04 : 0; 596 case 2: 597 hw->ext_buttons |= ((buf[5] & 0x01)) ? 0x02 : 0; 598 hw->ext_buttons |= ((buf[4] & 0x01)) ? 0x01 : 0; 599 } 600 } 601 } else { 602 hw->x = (((buf[1] & 0x1f) << 8) | buf[2]); 603 hw->y = (((buf[4] & 0x1f) << 8) | buf[5]); 604 605 hw->z = (((buf[0] & 0x30) << 2) | (buf[3] & 0x3F)); 606 hw->w = (((buf[1] & 0x80) >> 4) | ((buf[0] & 0x04) >> 1)); 607 608 hw->left = (buf[0] & 0x01) ? 1 : 0; 609 hw->right = (buf[0] & 0x02) ? 1 : 0; 610 } 611 612 /* 613 * Convert wrap-around values to negative. (X|Y)_MAX_POSITIVE 614 * is used by some firmware to indicate a finger at the edge of 615 * the touchpad whose precise position cannot be determined, so 616 * convert these values to the maximum axis value. 617 */ 618 if (hw->x > X_MAX_POSITIVE) 619 hw->x -= 1 << ABS_POS_BITS; 620 else if (hw->x == X_MAX_POSITIVE) 621 hw->x = XMAX; 622 623 if (hw->y > Y_MAX_POSITIVE) 624 hw->y -= 1 << ABS_POS_BITS; 625 else if (hw->y == Y_MAX_POSITIVE) 626 hw->y = YMAX; 627 628 return 0; 629 } 630 631 static void synaptics_report_semi_mt_slot(struct input_dev *dev, int slot, 632 bool active, int x, int y) 633 { 634 input_mt_slot(dev, slot); 635 input_mt_report_slot_state(dev, MT_TOOL_FINGER, active); 636 if (active) { 637 input_report_abs(dev, ABS_MT_POSITION_X, x); 638 input_report_abs(dev, ABS_MT_POSITION_Y, synaptics_invert_y(y)); 639 } 640 } 641 642 static void synaptics_report_semi_mt_data(struct input_dev *dev, 643 const struct synaptics_hw_state *a, 644 const struct synaptics_hw_state *b, 645 int num_fingers) 646 { 647 if (num_fingers >= 2) { 648 synaptics_report_semi_mt_slot(dev, 0, true, min(a->x, b->x), 649 min(a->y, b->y)); 650 synaptics_report_semi_mt_slot(dev, 1, true, max(a->x, b->x), 651 max(a->y, b->y)); 652 } else if (num_fingers == 1) { 653 synaptics_report_semi_mt_slot(dev, 0, true, a->x, a->y); 654 synaptics_report_semi_mt_slot(dev, 1, false, 0, 0); 655 } else { 656 synaptics_report_semi_mt_slot(dev, 0, false, 0, 0); 657 synaptics_report_semi_mt_slot(dev, 1, false, 0, 0); 658 } 659 } 660 661 static void synaptics_report_buttons(struct psmouse *psmouse, 662 const struct synaptics_hw_state *hw) 663 { 664 struct input_dev *dev = psmouse->dev; 665 struct synaptics_data *priv = psmouse->private; 666 int i; 667 668 input_report_key(dev, BTN_LEFT, hw->left); 669 input_report_key(dev, BTN_RIGHT, hw->right); 670 671 if (SYN_CAP_MIDDLE_BUTTON(priv->capabilities)) 672 input_report_key(dev, BTN_MIDDLE, hw->middle); 673 674 if (SYN_CAP_FOUR_BUTTON(priv->capabilities)) { 675 input_report_key(dev, BTN_FORWARD, hw->up); 676 input_report_key(dev, BTN_BACK, hw->down); 677 } 678 679 for (i = 0; i < SYN_CAP_MULTI_BUTTON_NO(priv->ext_cap); i++) 680 input_report_key(dev, BTN_0 + i, hw->ext_buttons & (1 << i)); 681 } 682 683 static void synaptics_report_slot(struct input_dev *dev, int slot, 684 const struct synaptics_hw_state *hw) 685 { 686 input_mt_slot(dev, slot); 687 input_mt_report_slot_state(dev, MT_TOOL_FINGER, (hw != NULL)); 688 if (!hw) 689 return; 690 691 input_report_abs(dev, ABS_MT_POSITION_X, hw->x); 692 input_report_abs(dev, ABS_MT_POSITION_Y, synaptics_invert_y(hw->y)); 693 input_report_abs(dev, ABS_MT_PRESSURE, hw->z); 694 } 695 696 static void synaptics_report_mt_data(struct psmouse *psmouse, 697 struct synaptics_mt_state *mt_state, 698 const struct synaptics_hw_state *sgm) 699 { 700 struct input_dev *dev = psmouse->dev; 701 struct synaptics_data *priv = psmouse->private; 702 struct synaptics_hw_state *agm = &priv->agm; 703 struct synaptics_mt_state *old = &priv->mt_state; 704 705 switch (mt_state->count) { 706 case 0: 707 synaptics_report_slot(dev, 0, NULL); 708 synaptics_report_slot(dev, 1, NULL); 709 break; 710 case 1: 711 if (mt_state->sgm == -1) { 712 synaptics_report_slot(dev, 0, NULL); 713 synaptics_report_slot(dev, 1, NULL); 714 } else if (mt_state->sgm == 0) { 715 synaptics_report_slot(dev, 0, sgm); 716 synaptics_report_slot(dev, 1, NULL); 717 } else { 718 synaptics_report_slot(dev, 0, NULL); 719 synaptics_report_slot(dev, 1, sgm); 720 } 721 break; 722 default: 723 /* 724 * If the finger slot contained in SGM is valid, and either 725 * hasn't changed, or is new, then report SGM in MTB slot 0. 726 * Otherwise, empty MTB slot 0. 727 */ 728 if (mt_state->sgm != -1 && 729 (mt_state->sgm == old->sgm || old->sgm == -1)) 730 synaptics_report_slot(dev, 0, sgm); 731 else 732 synaptics_report_slot(dev, 0, NULL); 733 734 /* 735 * If the finger slot contained in AGM is valid, and either 736 * hasn't changed, or is new, then report AGM in MTB slot 1. 737 * Otherwise, empty MTB slot 1. 738 */ 739 if (mt_state->agm != -1 && 740 (mt_state->agm == old->agm || old->agm == -1)) 741 synaptics_report_slot(dev, 1, agm); 742 else 743 synaptics_report_slot(dev, 1, NULL); 744 break; 745 } 746 747 /* Don't use active slot count to generate BTN_TOOL events. */ 748 input_mt_report_pointer_emulation(dev, false); 749 750 /* Send the number of fingers reported by touchpad itself. */ 751 input_mt_report_finger_count(dev, mt_state->count); 752 753 synaptics_report_buttons(psmouse, sgm); 754 755 input_sync(dev); 756 } 757 758 /* Handle case where mt_state->count = 0 */ 759 static void synaptics_image_sensor_0f(struct synaptics_data *priv, 760 struct synaptics_mt_state *mt_state) 761 { 762 synaptics_mt_state_set(mt_state, 0, -1, -1); 763 priv->mt_state_lost = false; 764 } 765 766 /* Handle case where mt_state->count = 1 */ 767 static void synaptics_image_sensor_1f(struct synaptics_data *priv, 768 struct synaptics_mt_state *mt_state) 769 { 770 struct synaptics_hw_state *agm = &priv->agm; 771 struct synaptics_mt_state *old = &priv->mt_state; 772 773 /* 774 * If the last AGM was (0,0,0), and there is only one finger left, 775 * then we absolutely know that SGM contains slot 0, and all other 776 * fingers have been removed. 777 */ 778 if (priv->agm_pending && agm->z == 0) { 779 synaptics_mt_state_set(mt_state, 1, 0, -1); 780 priv->mt_state_lost = false; 781 return; 782 } 783 784 switch (old->count) { 785 case 0: 786 synaptics_mt_state_set(mt_state, 1, 0, -1); 787 break; 788 case 1: 789 /* 790 * If mt_state_lost, then the previous transition was 3->1, 791 * and SGM now contains either slot 0 or 1, but we don't know 792 * which. So, we just assume that the SGM now contains slot 1. 793 * 794 * If pending AGM and either: 795 * (a) the previous SGM slot contains slot 0, or 796 * (b) there was no SGM slot 797 * then, the SGM now contains slot 1 798 * 799 * Case (a) happens with very rapid "drum roll" gestures, where 800 * slot 0 finger is lifted and a new slot 1 finger touches 801 * within one reporting interval. 802 * 803 * Case (b) happens if initially two or more fingers tap 804 * briefly, and all but one lift before the end of the first 805 * reporting interval. 806 * 807 * (In both these cases, slot 0 will becomes empty, so SGM 808 * contains slot 1 with the new finger) 809 * 810 * Else, if there was no previous SGM, it now contains slot 0. 811 * 812 * Otherwise, SGM still contains the same slot. 813 */ 814 if (priv->mt_state_lost || 815 (priv->agm_pending && old->sgm <= 0)) 816 synaptics_mt_state_set(mt_state, 1, 1, -1); 817 else if (old->sgm == -1) 818 synaptics_mt_state_set(mt_state, 1, 0, -1); 819 break; 820 case 2: 821 /* 822 * If mt_state_lost, we don't know which finger SGM contains. 823 * 824 * So, report 1 finger, but with both slots empty. 825 * We will use slot 1 on subsequent 1->1 826 */ 827 if (priv->mt_state_lost) { 828 synaptics_mt_state_set(mt_state, 1, -1, -1); 829 break; 830 } 831 /* 832 * Since the last AGM was NOT (0,0,0), it was the finger in 833 * slot 0 that has been removed. 834 * So, SGM now contains previous AGM's slot, and AGM is now 835 * empty. 836 */ 837 synaptics_mt_state_set(mt_state, 1, old->agm, -1); 838 break; 839 case 3: 840 /* 841 * Since last AGM was not (0,0,0), we don't know which finger 842 * is left. 843 * 844 * So, report 1 finger, but with both slots empty. 845 * We will use slot 1 on subsequent 1->1 846 */ 847 synaptics_mt_state_set(mt_state, 1, -1, -1); 848 priv->mt_state_lost = true; 849 break; 850 case 4: 851 case 5: 852 /* mt_state was updated by AGM-CONTACT packet */ 853 break; 854 } 855 } 856 857 /* Handle case where mt_state->count = 2 */ 858 static void synaptics_image_sensor_2f(struct synaptics_data *priv, 859 struct synaptics_mt_state *mt_state) 860 { 861 struct synaptics_mt_state *old = &priv->mt_state; 862 863 switch (old->count) { 864 case 0: 865 synaptics_mt_state_set(mt_state, 2, 0, 1); 866 break; 867 case 1: 868 /* 869 * If previous SGM contained slot 1 or higher, SGM now contains 870 * slot 0 (the newly touching finger) and AGM contains SGM's 871 * previous slot. 872 * 873 * Otherwise, SGM still contains slot 0 and AGM now contains 874 * slot 1. 875 */ 876 if (old->sgm >= 1) 877 synaptics_mt_state_set(mt_state, 2, 0, old->sgm); 878 else 879 synaptics_mt_state_set(mt_state, 2, 0, 1); 880 break; 881 case 2: 882 /* 883 * If mt_state_lost, SGM now contains either finger 1 or 2, but 884 * we don't know which. 885 * So, we just assume that the SGM contains slot 0 and AGM 1. 886 */ 887 if (priv->mt_state_lost) 888 synaptics_mt_state_set(mt_state, 2, 0, 1); 889 /* 890 * Otherwise, use the same mt_state, since it either hasn't 891 * changed, or was updated by a recently received AGM-CONTACT 892 * packet. 893 */ 894 break; 895 case 3: 896 /* 897 * 3->2 transitions have two unsolvable problems: 898 * 1) no indication is given which finger was removed 899 * 2) no way to tell if agm packet was for finger 3 900 * before 3->2, or finger 2 after 3->2. 901 * 902 * So, report 2 fingers, but empty all slots. 903 * We will guess slots [0,1] on subsequent 2->2. 904 */ 905 synaptics_mt_state_set(mt_state, 2, -1, -1); 906 priv->mt_state_lost = true; 907 break; 908 case 4: 909 case 5: 910 /* mt_state was updated by AGM-CONTACT packet */ 911 break; 912 } 913 } 914 915 /* Handle case where mt_state->count = 3 */ 916 static void synaptics_image_sensor_3f(struct synaptics_data *priv, 917 struct synaptics_mt_state *mt_state) 918 { 919 struct synaptics_mt_state *old = &priv->mt_state; 920 921 switch (old->count) { 922 case 0: 923 synaptics_mt_state_set(mt_state, 3, 0, 2); 924 break; 925 case 1: 926 /* 927 * If previous SGM contained slot 2 or higher, SGM now contains 928 * slot 0 (one of the newly touching fingers) and AGM contains 929 * SGM's previous slot. 930 * 931 * Otherwise, SGM now contains slot 0 and AGM contains slot 2. 932 */ 933 if (old->sgm >= 2) 934 synaptics_mt_state_set(mt_state, 3, 0, old->sgm); 935 else 936 synaptics_mt_state_set(mt_state, 3, 0, 2); 937 break; 938 case 2: 939 /* 940 * If the AGM previously contained slot 3 or higher, then the 941 * newly touching finger is in the lowest available slot. 942 * 943 * If SGM was previously 1 or higher, then the new SGM is 944 * now slot 0 (with a new finger), otherwise, the new finger 945 * is now in a hidden slot between 0 and AGM's slot. 946 * 947 * In all such cases, the SGM now contains slot 0, and the AGM 948 * continues to contain the same slot as before. 949 */ 950 if (old->agm >= 3) { 951 synaptics_mt_state_set(mt_state, 3, 0, old->agm); 952 break; 953 } 954 955 /* 956 * After some 3->1 and all 3->2 transitions, we lose track 957 * of which slot is reported by SGM and AGM. 958 * 959 * For 2->3 in this state, report 3 fingers, but empty all 960 * slots, and we will guess (0,2) on a subsequent 0->3. 961 * 962 * To userspace, the resulting transition will look like: 963 * 2:[0,1] -> 3:[-1,-1] -> 3:[0,2] 964 */ 965 if (priv->mt_state_lost) { 966 synaptics_mt_state_set(mt_state, 3, -1, -1); 967 break; 968 } 969 970 /* 971 * If the (SGM,AGM) really previously contained slots (0, 1), 972 * then we cannot know what slot was just reported by the AGM, 973 * because the 2->3 transition can occur either before or after 974 * the AGM packet. Thus, this most recent AGM could contain 975 * either the same old slot 1 or the new slot 2. 976 * Subsequent AGMs will be reporting slot 2. 977 * 978 * To userspace, the resulting transition will look like: 979 * 2:[0,1] -> 3:[0,-1] -> 3:[0,2] 980 */ 981 synaptics_mt_state_set(mt_state, 3, 0, -1); 982 break; 983 case 3: 984 /* 985 * If, for whatever reason, the previous agm was invalid, 986 * Assume SGM now contains slot 0, AGM now contains slot 2. 987 */ 988 if (old->agm <= 2) 989 synaptics_mt_state_set(mt_state, 3, 0, 2); 990 /* 991 * mt_state either hasn't changed, or was updated by a recently 992 * received AGM-CONTACT packet. 993 */ 994 break; 995 996 case 4: 997 case 5: 998 /* mt_state was updated by AGM-CONTACT packet */ 999 break; 1000 } 1001 } 1002 1003 /* Handle case where mt_state->count = 4, or = 5 */ 1004 static void synaptics_image_sensor_45f(struct synaptics_data *priv, 1005 struct synaptics_mt_state *mt_state) 1006 { 1007 /* mt_state was updated correctly by AGM-CONTACT packet */ 1008 priv->mt_state_lost = false; 1009 } 1010 1011 static void synaptics_image_sensor_process(struct psmouse *psmouse, 1012 struct synaptics_hw_state *sgm) 1013 { 1014 struct synaptics_data *priv = psmouse->private; 1015 struct synaptics_hw_state *agm = &priv->agm; 1016 struct synaptics_mt_state mt_state; 1017 1018 /* Initialize using current mt_state (as updated by last agm) */ 1019 mt_state = agm->mt_state; 1020 1021 /* 1022 * Update mt_state using the new finger count and current mt_state. 1023 */ 1024 if (sgm->z == 0) 1025 synaptics_image_sensor_0f(priv, &mt_state); 1026 else if (sgm->w >= 4) 1027 synaptics_image_sensor_1f(priv, &mt_state); 1028 else if (sgm->w == 0) 1029 synaptics_image_sensor_2f(priv, &mt_state); 1030 else if (sgm->w == 1 && mt_state.count <= 3) 1031 synaptics_image_sensor_3f(priv, &mt_state); 1032 else 1033 synaptics_image_sensor_45f(priv, &mt_state); 1034 1035 /* Send resulting input events to user space */ 1036 synaptics_report_mt_data(psmouse, &mt_state, sgm); 1037 1038 /* Store updated mt_state */ 1039 priv->mt_state = agm->mt_state = mt_state; 1040 priv->agm_pending = false; 1041 } 1042 1043 /* 1044 * called for each full received packet from the touchpad 1045 */ 1046 static void synaptics_process_packet(struct psmouse *psmouse) 1047 { 1048 struct input_dev *dev = psmouse->dev; 1049 struct synaptics_data *priv = psmouse->private; 1050 struct synaptics_hw_state hw; 1051 int num_fingers; 1052 int finger_width; 1053 1054 if (synaptics_parse_hw_state(psmouse->packet, priv, &hw)) 1055 return; 1056 1057 if (SYN_CAP_IMAGE_SENSOR(priv->ext_cap_0c)) { 1058 synaptics_image_sensor_process(psmouse, &hw); 1059 return; 1060 } 1061 1062 if (hw.scroll) { 1063 priv->scroll += hw.scroll; 1064 1065 while (priv->scroll >= 4) { 1066 input_report_key(dev, BTN_BACK, !hw.down); 1067 input_sync(dev); 1068 input_report_key(dev, BTN_BACK, hw.down); 1069 input_sync(dev); 1070 priv->scroll -= 4; 1071 } 1072 while (priv->scroll <= -4) { 1073 input_report_key(dev, BTN_FORWARD, !hw.up); 1074 input_sync(dev); 1075 input_report_key(dev, BTN_FORWARD, hw.up); 1076 input_sync(dev); 1077 priv->scroll += 4; 1078 } 1079 return; 1080 } 1081 1082 if (hw.z > 0 && hw.x > 1) { 1083 num_fingers = 1; 1084 finger_width = 5; 1085 if (SYN_CAP_EXTENDED(priv->capabilities)) { 1086 switch (hw.w) { 1087 case 0 ... 1: 1088 if (SYN_CAP_MULTIFINGER(priv->capabilities)) 1089 num_fingers = hw.w + 2; 1090 break; 1091 case 2: 1092 if (SYN_MODEL_PEN(priv->model_id)) 1093 ; /* Nothing, treat a pen as a single finger */ 1094 break; 1095 case 4 ... 15: 1096 if (SYN_CAP_PALMDETECT(priv->capabilities)) 1097 finger_width = hw.w; 1098 break; 1099 } 1100 } 1101 } else { 1102 num_fingers = 0; 1103 finger_width = 0; 1104 } 1105 1106 if (SYN_CAP_ADV_GESTURE(priv->ext_cap_0c)) 1107 synaptics_report_semi_mt_data(dev, &hw, &priv->agm, 1108 num_fingers); 1109 1110 /* Post events 1111 * BTN_TOUCH has to be first as mousedev relies on it when doing 1112 * absolute -> relative conversion 1113 */ 1114 if (hw.z > 30) input_report_key(dev, BTN_TOUCH, 1); 1115 if (hw.z < 25) input_report_key(dev, BTN_TOUCH, 0); 1116 1117 if (num_fingers > 0) { 1118 input_report_abs(dev, ABS_X, hw.x); 1119 input_report_abs(dev, ABS_Y, synaptics_invert_y(hw.y)); 1120 } 1121 input_report_abs(dev, ABS_PRESSURE, hw.z); 1122 1123 if (SYN_CAP_PALMDETECT(priv->capabilities)) 1124 input_report_abs(dev, ABS_TOOL_WIDTH, finger_width); 1125 1126 input_report_key(dev, BTN_TOOL_FINGER, num_fingers == 1); 1127 if (SYN_CAP_MULTIFINGER(priv->capabilities)) { 1128 input_report_key(dev, BTN_TOOL_DOUBLETAP, num_fingers == 2); 1129 input_report_key(dev, BTN_TOOL_TRIPLETAP, num_fingers == 3); 1130 } 1131 1132 synaptics_report_buttons(psmouse, &hw); 1133 1134 input_sync(dev); 1135 } 1136 1137 static int synaptics_validate_byte(struct psmouse *psmouse, 1138 int idx, unsigned char pkt_type) 1139 { 1140 static const unsigned char newabs_mask[] = { 0xC8, 0x00, 0x00, 0xC8, 0x00 }; 1141 static const unsigned char newabs_rel_mask[] = { 0xC0, 0x00, 0x00, 0xC0, 0x00 }; 1142 static const unsigned char newabs_rslt[] = { 0x80, 0x00, 0x00, 0xC0, 0x00 }; 1143 static const unsigned char oldabs_mask[] = { 0xC0, 0x60, 0x00, 0xC0, 0x60 }; 1144 static const unsigned char oldabs_rslt[] = { 0xC0, 0x00, 0x00, 0x80, 0x00 }; 1145 const char *packet = psmouse->packet; 1146 1147 if (idx < 0 || idx > 4) 1148 return 0; 1149 1150 switch (pkt_type) { 1151 1152 case SYN_NEWABS: 1153 case SYN_NEWABS_RELAXED: 1154 return (packet[idx] & newabs_rel_mask[idx]) == newabs_rslt[idx]; 1155 1156 case SYN_NEWABS_STRICT: 1157 return (packet[idx] & newabs_mask[idx]) == newabs_rslt[idx]; 1158 1159 case SYN_OLDABS: 1160 return (packet[idx] & oldabs_mask[idx]) == oldabs_rslt[idx]; 1161 1162 default: 1163 psmouse_err(psmouse, "unknown packet type %d\n", pkt_type); 1164 return 0; 1165 } 1166 } 1167 1168 static unsigned char synaptics_detect_pkt_type(struct psmouse *psmouse) 1169 { 1170 int i; 1171 1172 for (i = 0; i < 5; i++) 1173 if (!synaptics_validate_byte(psmouse, i, SYN_NEWABS_STRICT)) { 1174 psmouse_info(psmouse, "using relaxed packet validation\n"); 1175 return SYN_NEWABS_RELAXED; 1176 } 1177 1178 return SYN_NEWABS_STRICT; 1179 } 1180 1181 static psmouse_ret_t synaptics_process_byte(struct psmouse *psmouse) 1182 { 1183 struct synaptics_data *priv = psmouse->private; 1184 1185 if (psmouse->pktcnt >= 6) { /* Full packet received */ 1186 if (unlikely(priv->pkt_type == SYN_NEWABS)) 1187 priv->pkt_type = synaptics_detect_pkt_type(psmouse); 1188 1189 if (SYN_CAP_PASS_THROUGH(priv->capabilities) && 1190 synaptics_is_pt_packet(psmouse->packet)) { 1191 if (priv->pt_port) 1192 synaptics_pass_pt_packet(priv->pt_port, psmouse->packet); 1193 } else 1194 synaptics_process_packet(psmouse); 1195 1196 return PSMOUSE_FULL_PACKET; 1197 } 1198 1199 return synaptics_validate_byte(psmouse, psmouse->pktcnt - 1, priv->pkt_type) ? 1200 PSMOUSE_GOOD_DATA : PSMOUSE_BAD_DATA; 1201 } 1202 1203 /***************************************************************************** 1204 * Driver initialization/cleanup functions 1205 ****************************************************************************/ 1206 static void set_abs_position_params(struct input_dev *dev, 1207 struct synaptics_data *priv, int x_code, 1208 int y_code) 1209 { 1210 int x_min = priv->x_min ?: XMIN_NOMINAL; 1211 int x_max = priv->x_max ?: XMAX_NOMINAL; 1212 int y_min = priv->y_min ?: YMIN_NOMINAL; 1213 int y_max = priv->y_max ?: YMAX_NOMINAL; 1214 int fuzz = SYN_CAP_REDUCED_FILTERING(priv->ext_cap_0c) ? 1215 SYN_REDUCED_FILTER_FUZZ : 0; 1216 1217 input_set_abs_params(dev, x_code, x_min, x_max, fuzz, 0); 1218 input_set_abs_params(dev, y_code, y_min, y_max, fuzz, 0); 1219 input_abs_set_res(dev, x_code, priv->x_res); 1220 input_abs_set_res(dev, y_code, priv->y_res); 1221 } 1222 1223 static void set_input_params(struct input_dev *dev, struct synaptics_data *priv) 1224 { 1225 int i; 1226 1227 /* Things that apply to both modes */ 1228 __set_bit(INPUT_PROP_POINTER, dev->propbit); 1229 __set_bit(EV_KEY, dev->evbit); 1230 __set_bit(BTN_LEFT, dev->keybit); 1231 __set_bit(BTN_RIGHT, dev->keybit); 1232 1233 if (SYN_CAP_MIDDLE_BUTTON(priv->capabilities)) 1234 __set_bit(BTN_MIDDLE, dev->keybit); 1235 1236 if (!priv->absolute_mode) { 1237 /* Relative mode */ 1238 __set_bit(EV_REL, dev->evbit); 1239 __set_bit(REL_X, dev->relbit); 1240 __set_bit(REL_Y, dev->relbit); 1241 return; 1242 } 1243 1244 /* Absolute mode */ 1245 __set_bit(EV_ABS, dev->evbit); 1246 set_abs_position_params(dev, priv, ABS_X, ABS_Y); 1247 input_set_abs_params(dev, ABS_PRESSURE, 0, 255, 0, 0); 1248 1249 if (SYN_CAP_IMAGE_SENSOR(priv->ext_cap_0c)) { 1250 input_mt_init_slots(dev, 2, 0); 1251 set_abs_position_params(dev, priv, ABS_MT_POSITION_X, 1252 ABS_MT_POSITION_Y); 1253 /* Image sensors can report per-contact pressure */ 1254 input_set_abs_params(dev, ABS_MT_PRESSURE, 0, 255, 0, 0); 1255 1256 /* Image sensors can signal 4 and 5 finger clicks */ 1257 __set_bit(BTN_TOOL_QUADTAP, dev->keybit); 1258 __set_bit(BTN_TOOL_QUINTTAP, dev->keybit); 1259 } else if (SYN_CAP_ADV_GESTURE(priv->ext_cap_0c)) { 1260 /* Non-image sensors with AGM use semi-mt */ 1261 __set_bit(INPUT_PROP_SEMI_MT, dev->propbit); 1262 input_mt_init_slots(dev, 2, 0); 1263 set_abs_position_params(dev, priv, ABS_MT_POSITION_X, 1264 ABS_MT_POSITION_Y); 1265 } 1266 1267 if (SYN_CAP_PALMDETECT(priv->capabilities)) 1268 input_set_abs_params(dev, ABS_TOOL_WIDTH, 0, 15, 0, 0); 1269 1270 __set_bit(BTN_TOUCH, dev->keybit); 1271 __set_bit(BTN_TOOL_FINGER, dev->keybit); 1272 1273 if (SYN_CAP_MULTIFINGER(priv->capabilities)) { 1274 __set_bit(BTN_TOOL_DOUBLETAP, dev->keybit); 1275 __set_bit(BTN_TOOL_TRIPLETAP, dev->keybit); 1276 } 1277 1278 if (SYN_CAP_FOUR_BUTTON(priv->capabilities) || 1279 SYN_CAP_MIDDLE_BUTTON(priv->capabilities)) { 1280 __set_bit(BTN_FORWARD, dev->keybit); 1281 __set_bit(BTN_BACK, dev->keybit); 1282 } 1283 1284 for (i = 0; i < SYN_CAP_MULTI_BUTTON_NO(priv->ext_cap); i++) 1285 __set_bit(BTN_0 + i, dev->keybit); 1286 1287 __clear_bit(EV_REL, dev->evbit); 1288 __clear_bit(REL_X, dev->relbit); 1289 __clear_bit(REL_Y, dev->relbit); 1290 1291 if (SYN_CAP_CLICKPAD(priv->ext_cap_0c)) { 1292 __set_bit(INPUT_PROP_BUTTONPAD, dev->propbit); 1293 /* Clickpads report only left button */ 1294 __clear_bit(BTN_RIGHT, dev->keybit); 1295 __clear_bit(BTN_MIDDLE, dev->keybit); 1296 } 1297 } 1298 1299 static ssize_t synaptics_show_disable_gesture(struct psmouse *psmouse, 1300 void *data, char *buf) 1301 { 1302 struct synaptics_data *priv = psmouse->private; 1303 1304 return sprintf(buf, "%c\n", priv->disable_gesture ? '1' : '0'); 1305 } 1306 1307 static ssize_t synaptics_set_disable_gesture(struct psmouse *psmouse, 1308 void *data, const char *buf, 1309 size_t len) 1310 { 1311 struct synaptics_data *priv = psmouse->private; 1312 unsigned int value; 1313 int err; 1314 1315 err = kstrtouint(buf, 10, &value); 1316 if (err) 1317 return err; 1318 1319 if (value > 1) 1320 return -EINVAL; 1321 1322 if (value == priv->disable_gesture) 1323 return len; 1324 1325 priv->disable_gesture = value; 1326 if (value) 1327 priv->mode |= SYN_BIT_DISABLE_GESTURE; 1328 else 1329 priv->mode &= ~SYN_BIT_DISABLE_GESTURE; 1330 1331 if (synaptics_mode_cmd(psmouse, priv->mode)) 1332 return -EIO; 1333 1334 return len; 1335 } 1336 1337 PSMOUSE_DEFINE_ATTR(disable_gesture, S_IWUSR | S_IRUGO, NULL, 1338 synaptics_show_disable_gesture, 1339 synaptics_set_disable_gesture); 1340 1341 static void synaptics_disconnect(struct psmouse *psmouse) 1342 { 1343 struct synaptics_data *priv = psmouse->private; 1344 1345 if (!priv->absolute_mode && SYN_ID_DISGEST_SUPPORTED(priv->identity)) 1346 device_remove_file(&psmouse->ps2dev.serio->dev, 1347 &psmouse_attr_disable_gesture.dattr); 1348 1349 synaptics_reset(psmouse); 1350 kfree(priv); 1351 psmouse->private = NULL; 1352 } 1353 1354 static int synaptics_reconnect(struct psmouse *psmouse) 1355 { 1356 struct synaptics_data *priv = psmouse->private; 1357 struct synaptics_data old_priv = *priv; 1358 int retry = 0; 1359 int error; 1360 1361 do { 1362 psmouse_reset(psmouse); 1363 if (retry) { 1364 /* 1365 * On some boxes, right after resuming, the touchpad 1366 * needs some time to finish initializing (I assume 1367 * it needs time to calibrate) and start responding 1368 * to Synaptics-specific queries, so let's wait a 1369 * bit. 1370 */ 1371 ssleep(1); 1372 } 1373 error = synaptics_detect(psmouse, 0); 1374 } while (error && ++retry < 3); 1375 1376 if (error) 1377 return -1; 1378 1379 if (retry > 1) 1380 psmouse_dbg(psmouse, "reconnected after %d tries\n", retry); 1381 1382 if (synaptics_query_hardware(psmouse)) { 1383 psmouse_err(psmouse, "Unable to query device.\n"); 1384 return -1; 1385 } 1386 1387 if (synaptics_set_mode(psmouse)) { 1388 psmouse_err(psmouse, "Unable to initialize device.\n"); 1389 return -1; 1390 } 1391 1392 if (old_priv.identity != priv->identity || 1393 old_priv.model_id != priv->model_id || 1394 old_priv.capabilities != priv->capabilities || 1395 old_priv.ext_cap != priv->ext_cap) { 1396 psmouse_err(psmouse, 1397 "hardware appears to be different: id(%ld-%ld), model(%ld-%ld), caps(%lx-%lx), ext(%lx-%lx).\n", 1398 old_priv.identity, priv->identity, 1399 old_priv.model_id, priv->model_id, 1400 old_priv.capabilities, priv->capabilities, 1401 old_priv.ext_cap, priv->ext_cap); 1402 return -1; 1403 } 1404 1405 return 0; 1406 } 1407 1408 static bool impaired_toshiba_kbc; 1409 1410 static const struct dmi_system_id __initconst toshiba_dmi_table[] = { 1411 #if defined(CONFIG_DMI) && defined(CONFIG_X86) 1412 { 1413 /* Toshiba Satellite */ 1414 .matches = { 1415 DMI_MATCH(DMI_SYS_VENDOR, "TOSHIBA"), 1416 DMI_MATCH(DMI_PRODUCT_NAME, "Satellite"), 1417 }, 1418 }, 1419 { 1420 /* Toshiba Dynabook */ 1421 .matches = { 1422 DMI_MATCH(DMI_SYS_VENDOR, "TOSHIBA"), 1423 DMI_MATCH(DMI_PRODUCT_NAME, "dynabook"), 1424 }, 1425 }, 1426 { 1427 /* Toshiba Portege M300 */ 1428 .matches = { 1429 DMI_MATCH(DMI_SYS_VENDOR, "TOSHIBA"), 1430 DMI_MATCH(DMI_PRODUCT_NAME, "PORTEGE M300"), 1431 }, 1432 1433 }, 1434 { 1435 /* Toshiba Portege M300 */ 1436 .matches = { 1437 DMI_MATCH(DMI_SYS_VENDOR, "TOSHIBA"), 1438 DMI_MATCH(DMI_PRODUCT_NAME, "Portable PC"), 1439 DMI_MATCH(DMI_PRODUCT_VERSION, "Version 1.0"), 1440 }, 1441 1442 }, 1443 #endif 1444 { } 1445 }; 1446 1447 static bool broken_olpc_ec; 1448 1449 static const struct dmi_system_id __initconst olpc_dmi_table[] = { 1450 #if defined(CONFIG_DMI) && defined(CONFIG_OLPC) 1451 { 1452 /* OLPC XO-1 or XO-1.5 */ 1453 .matches = { 1454 DMI_MATCH(DMI_SYS_VENDOR, "OLPC"), 1455 DMI_MATCH(DMI_PRODUCT_NAME, "XO"), 1456 }, 1457 }, 1458 #endif 1459 { } 1460 }; 1461 1462 void __init synaptics_module_init(void) 1463 { 1464 impaired_toshiba_kbc = dmi_check_system(toshiba_dmi_table); 1465 broken_olpc_ec = dmi_check_system(olpc_dmi_table); 1466 } 1467 1468 static int __synaptics_init(struct psmouse *psmouse, bool absolute_mode) 1469 { 1470 struct synaptics_data *priv; 1471 int err = -1; 1472 1473 /* 1474 * The OLPC XO has issues with Synaptics' absolute mode; the constant 1475 * packet spew overloads the EC such that key presses on the keyboard 1476 * are missed. Given that, don't even attempt to use Absolute mode. 1477 * Relative mode seems to work just fine. 1478 */ 1479 if (absolute_mode && broken_olpc_ec) { 1480 psmouse_info(psmouse, 1481 "OLPC XO detected, not enabling Synaptics protocol.\n"); 1482 return -ENODEV; 1483 } 1484 1485 psmouse->private = priv = kzalloc(sizeof(struct synaptics_data), GFP_KERNEL); 1486 if (!priv) 1487 return -ENOMEM; 1488 1489 psmouse_reset(psmouse); 1490 1491 if (synaptics_query_hardware(psmouse)) { 1492 psmouse_err(psmouse, "Unable to query device.\n"); 1493 goto init_fail; 1494 } 1495 1496 priv->absolute_mode = absolute_mode; 1497 if (SYN_ID_DISGEST_SUPPORTED(priv->identity)) 1498 priv->disable_gesture = true; 1499 1500 if (synaptics_set_mode(psmouse)) { 1501 psmouse_err(psmouse, "Unable to initialize device.\n"); 1502 goto init_fail; 1503 } 1504 1505 priv->pkt_type = SYN_MODEL_NEWABS(priv->model_id) ? SYN_NEWABS : SYN_OLDABS; 1506 1507 psmouse_info(psmouse, 1508 "Touchpad model: %ld, fw: %ld.%ld, id: %#lx, caps: %#lx/%#lx/%#lx, board id: %lu, fw id: %lu\n", 1509 SYN_ID_MODEL(priv->identity), 1510 SYN_ID_MAJOR(priv->identity), SYN_ID_MINOR(priv->identity), 1511 priv->model_id, 1512 priv->capabilities, priv->ext_cap, priv->ext_cap_0c, 1513 priv->board_id, priv->firmware_id); 1514 1515 set_input_params(psmouse->dev, priv); 1516 1517 /* 1518 * Encode touchpad model so that it can be used to set 1519 * input device->id.version and be visible to userspace. 1520 * Because version is __u16 we have to drop something. 1521 * Hardware info bits seem to be good candidates as they 1522 * are documented to be for Synaptics corp. internal use. 1523 */ 1524 psmouse->model = ((priv->model_id & 0x00ff0000) >> 8) | 1525 (priv->model_id & 0x000000ff); 1526 1527 if (absolute_mode) { 1528 psmouse->protocol_handler = synaptics_process_byte; 1529 psmouse->pktsize = 6; 1530 } else { 1531 /* Relative mode follows standard PS/2 mouse protocol */ 1532 psmouse->protocol_handler = psmouse_process_byte; 1533 psmouse->pktsize = 3; 1534 } 1535 1536 psmouse->set_rate = synaptics_set_rate; 1537 psmouse->disconnect = synaptics_disconnect; 1538 psmouse->reconnect = synaptics_reconnect; 1539 psmouse->cleanup = synaptics_reset; 1540 /* Synaptics can usually stay in sync without extra help */ 1541 psmouse->resync_time = 0; 1542 1543 if (SYN_CAP_PASS_THROUGH(priv->capabilities)) 1544 synaptics_pt_create(psmouse); 1545 1546 /* 1547 * Toshiba's KBC seems to have trouble handling data from 1548 * Synaptics at full rate. Switch to a lower rate (roughly 1549 * the same rate as a standard PS/2 mouse). 1550 */ 1551 if (psmouse->rate >= 80 && impaired_toshiba_kbc) { 1552 psmouse_info(psmouse, 1553 "Toshiba %s detected, limiting rate to 40pps.\n", 1554 dmi_get_system_info(DMI_PRODUCT_NAME)); 1555 psmouse->rate = 40; 1556 } 1557 1558 if (!priv->absolute_mode && SYN_ID_DISGEST_SUPPORTED(priv->identity)) { 1559 err = device_create_file(&psmouse->ps2dev.serio->dev, 1560 &psmouse_attr_disable_gesture.dattr); 1561 if (err) { 1562 psmouse_err(psmouse, 1563 "Failed to create disable_gesture attribute (%d)", 1564 err); 1565 goto init_fail; 1566 } 1567 } 1568 1569 return 0; 1570 1571 init_fail: 1572 kfree(priv); 1573 return err; 1574 } 1575 1576 int synaptics_init(struct psmouse *psmouse) 1577 { 1578 return __synaptics_init(psmouse, true); 1579 } 1580 1581 int synaptics_init_relative(struct psmouse *psmouse) 1582 { 1583 return __synaptics_init(psmouse, false); 1584 } 1585 1586 bool synaptics_supported(void) 1587 { 1588 return true; 1589 } 1590 1591 #else /* CONFIG_MOUSE_PS2_SYNAPTICS */ 1592 1593 void __init synaptics_module_init(void) 1594 { 1595 } 1596 1597 int synaptics_init(struct psmouse *psmouse) 1598 { 1599 return -ENOSYS; 1600 } 1601 1602 bool synaptics_supported(void) 1603 { 1604 return false; 1605 } 1606 1607 #endif /* CONFIG_MOUSE_PS2_SYNAPTICS */ 1608