1 // SPDX-License-Identifier: GPL-2.0+ 2 /* 3 * Azoteq IQS269A Capacitive Touch Controller 4 * 5 * Copyright (C) 2020 Jeff LaBundy <jeff@labundy.com> 6 * 7 * This driver registers up to 3 input devices: one representing capacitive or 8 * inductive keys as well as Hall-effect switches, and one for each of the two 9 * axial sliders presented by the device. 10 */ 11 12 #include <linux/bits.h> 13 #include <linux/completion.h> 14 #include <linux/delay.h> 15 #include <linux/device.h> 16 #include <linux/err.h> 17 #include <linux/i2c.h> 18 #include <linux/input.h> 19 #include <linux/interrupt.h> 20 #include <linux/kernel.h> 21 #include <linux/mod_devicetable.h> 22 #include <linux/module.h> 23 #include <linux/mutex.h> 24 #include <linux/property.h> 25 #include <linux/regmap.h> 26 #include <linux/slab.h> 27 28 #define IQS269_VER_INFO 0x00 29 #define IQS269_VER_INFO_PROD_NUM 0x4F 30 #define IQS269_VER_INFO_FW_NUM_2 0x03 31 #define IQS269_VER_INFO_FW_NUM_3 0x10 32 33 #define IQS269_SYS_FLAGS 0x02 34 #define IQS269_SYS_FLAGS_SHOW_RESET BIT(15) 35 #define IQS269_SYS_FLAGS_PWR_MODE_MASK GENMASK(12, 11) 36 #define IQS269_SYS_FLAGS_PWR_MODE_SHIFT 11 37 #define IQS269_SYS_FLAGS_IN_ATI BIT(10) 38 39 #define IQS269_CHx_COUNTS 0x08 40 41 #define IQS269_SLIDER_X 0x30 42 43 #define IQS269_CAL_DATA_A 0x35 44 #define IQS269_CAL_DATA_A_HALL_BIN_L_MASK GENMASK(15, 12) 45 #define IQS269_CAL_DATA_A_HALL_BIN_L_SHIFT 12 46 #define IQS269_CAL_DATA_A_HALL_BIN_R_MASK GENMASK(11, 8) 47 #define IQS269_CAL_DATA_A_HALL_BIN_R_SHIFT 8 48 49 #define IQS269_SYS_SETTINGS 0x80 50 #define IQS269_SYS_SETTINGS_CLK_DIV BIT(15) 51 #define IQS269_SYS_SETTINGS_ULP_AUTO BIT(14) 52 #define IQS269_SYS_SETTINGS_DIS_AUTO BIT(13) 53 #define IQS269_SYS_SETTINGS_PWR_MODE_MASK GENMASK(12, 11) 54 #define IQS269_SYS_SETTINGS_PWR_MODE_SHIFT 11 55 #define IQS269_SYS_SETTINGS_PWR_MODE_MAX 3 56 #define IQS269_SYS_SETTINGS_ULP_UPDATE_MASK GENMASK(10, 8) 57 #define IQS269_SYS_SETTINGS_ULP_UPDATE_SHIFT 8 58 #define IQS269_SYS_SETTINGS_ULP_UPDATE_MAX 7 59 #define IQS269_SYS_SETTINGS_SLIDER_SWIPE BIT(7) 60 #define IQS269_SYS_SETTINGS_RESEED_OFFSET BIT(6) 61 #define IQS269_SYS_SETTINGS_EVENT_MODE BIT(5) 62 #define IQS269_SYS_SETTINGS_EVENT_MODE_LP BIT(4) 63 #define IQS269_SYS_SETTINGS_REDO_ATI BIT(2) 64 #define IQS269_SYS_SETTINGS_ACK_RESET BIT(0) 65 66 #define IQS269_FILT_STR_LP_LTA_MASK GENMASK(7, 6) 67 #define IQS269_FILT_STR_LP_LTA_SHIFT 6 68 #define IQS269_FILT_STR_LP_CNT_MASK GENMASK(5, 4) 69 #define IQS269_FILT_STR_LP_CNT_SHIFT 4 70 #define IQS269_FILT_STR_NP_LTA_MASK GENMASK(3, 2) 71 #define IQS269_FILT_STR_NP_LTA_SHIFT 2 72 #define IQS269_FILT_STR_NP_CNT_MASK GENMASK(1, 0) 73 #define IQS269_FILT_STR_MAX 3 74 75 #define IQS269_EVENT_MASK_SYS BIT(6) 76 #define IQS269_EVENT_MASK_GESTURE BIT(3) 77 #define IQS269_EVENT_MASK_DEEP BIT(2) 78 #define IQS269_EVENT_MASK_TOUCH BIT(1) 79 #define IQS269_EVENT_MASK_PROX BIT(0) 80 81 #define IQS269_RATE_NP_MS_MAX 255 82 #define IQS269_RATE_LP_MS_MAX 255 83 #define IQS269_RATE_ULP_MS_MAX 4080 84 #define IQS269_TIMEOUT_PWR_MS_MAX 130560 85 #define IQS269_TIMEOUT_LTA_MS_MAX 130560 86 87 #define IQS269_MISC_A_ATI_BAND_DISABLE BIT(15) 88 #define IQS269_MISC_A_ATI_LP_ONLY BIT(14) 89 #define IQS269_MISC_A_ATI_BAND_TIGHTEN BIT(13) 90 #define IQS269_MISC_A_FILT_DISABLE BIT(12) 91 #define IQS269_MISC_A_GPIO3_SELECT_MASK GENMASK(10, 8) 92 #define IQS269_MISC_A_GPIO3_SELECT_SHIFT 8 93 #define IQS269_MISC_A_DUAL_DIR BIT(6) 94 #define IQS269_MISC_A_TX_FREQ_MASK GENMASK(5, 4) 95 #define IQS269_MISC_A_TX_FREQ_SHIFT 4 96 #define IQS269_MISC_A_TX_FREQ_MAX 3 97 #define IQS269_MISC_A_GLOBAL_CAP_SIZE BIT(0) 98 99 #define IQS269_MISC_B_RESEED_UI_SEL_MASK GENMASK(7, 6) 100 #define IQS269_MISC_B_RESEED_UI_SEL_SHIFT 6 101 #define IQS269_MISC_B_RESEED_UI_SEL_MAX 3 102 #define IQS269_MISC_B_TRACKING_UI_ENABLE BIT(4) 103 #define IQS269_MISC_B_FILT_STR_SLIDER GENMASK(1, 0) 104 105 #define IQS269_TOUCH_HOLD_SLIDER_SEL 0x89 106 #define IQS269_TOUCH_HOLD_DEFAULT 0x14 107 #define IQS269_TOUCH_HOLD_MS_MIN 256 108 #define IQS269_TOUCH_HOLD_MS_MAX 65280 109 110 #define IQS269_TIMEOUT_TAP_MS_MAX 4080 111 #define IQS269_TIMEOUT_SWIPE_MS_MAX 4080 112 #define IQS269_THRESH_SWIPE_MAX 255 113 114 #define IQS269_CHx_ENG_A_MEAS_CAP_SIZE BIT(15) 115 #define IQS269_CHx_ENG_A_RX_GND_INACTIVE BIT(13) 116 #define IQS269_CHx_ENG_A_LOCAL_CAP_SIZE BIT(12) 117 #define IQS269_CHx_ENG_A_ATI_MODE_MASK GENMASK(9, 8) 118 #define IQS269_CHx_ENG_A_ATI_MODE_SHIFT 8 119 #define IQS269_CHx_ENG_A_ATI_MODE_MAX 3 120 #define IQS269_CHx_ENG_A_INV_LOGIC BIT(7) 121 #define IQS269_CHx_ENG_A_PROJ_BIAS_MASK GENMASK(6, 5) 122 #define IQS269_CHx_ENG_A_PROJ_BIAS_SHIFT 5 123 #define IQS269_CHx_ENG_A_PROJ_BIAS_MAX 3 124 #define IQS269_CHx_ENG_A_SENSE_MODE_MASK GENMASK(3, 0) 125 #define IQS269_CHx_ENG_A_SENSE_MODE_MAX 15 126 127 #define IQS269_CHx_ENG_B_LOCAL_CAP_ENABLE BIT(13) 128 #define IQS269_CHx_ENG_B_SENSE_FREQ_MASK GENMASK(10, 9) 129 #define IQS269_CHx_ENG_B_SENSE_FREQ_SHIFT 9 130 #define IQS269_CHx_ENG_B_SENSE_FREQ_MAX 3 131 #define IQS269_CHx_ENG_B_STATIC_ENABLE BIT(8) 132 #define IQS269_CHx_ENG_B_ATI_BASE_MASK GENMASK(7, 6) 133 #define IQS269_CHx_ENG_B_ATI_BASE_75 0x00 134 #define IQS269_CHx_ENG_B_ATI_BASE_100 0x40 135 #define IQS269_CHx_ENG_B_ATI_BASE_150 0x80 136 #define IQS269_CHx_ENG_B_ATI_BASE_200 0xC0 137 #define IQS269_CHx_ENG_B_ATI_TARGET_MASK GENMASK(5, 0) 138 #define IQS269_CHx_ENG_B_ATI_TARGET_MAX 2016 139 140 #define IQS269_CHx_WEIGHT_MAX 255 141 #define IQS269_CHx_THRESH_MAX 255 142 #define IQS269_CHx_HYST_DEEP_MASK GENMASK(7, 4) 143 #define IQS269_CHx_HYST_DEEP_SHIFT 4 144 #define IQS269_CHx_HYST_TOUCH_MASK GENMASK(3, 0) 145 #define IQS269_CHx_HYST_MAX 15 146 147 #define IQS269_CHx_HALL_INACTIVE 6 148 #define IQS269_CHx_HALL_ACTIVE 7 149 150 #define IQS269_HALL_PAD_R BIT(0) 151 #define IQS269_HALL_PAD_L BIT(1) 152 #define IQS269_HALL_PAD_INV BIT(6) 153 154 #define IQS269_HALL_UI 0xF5 155 #define IQS269_HALL_UI_ENABLE BIT(15) 156 157 #define IQS269_MAX_REG 0xFF 158 159 #define IQS269_OTP_OPTION_DEFAULT 0x00 160 #define IQS269_OTP_OPTION_TWS 0xD0 161 #define IQS269_OTP_OPTION_HOLD BIT(7) 162 163 #define IQS269_NUM_CH 8 164 #define IQS269_NUM_SL 2 165 166 #define iqs269_irq_wait() usleep_range(200, 250) 167 168 enum iqs269_local_cap_size { 169 IQS269_LOCAL_CAP_SIZE_0, 170 IQS269_LOCAL_CAP_SIZE_GLOBAL_ONLY, 171 IQS269_LOCAL_CAP_SIZE_GLOBAL_0pF5, 172 }; 173 174 enum iqs269_st_offs { 175 IQS269_ST_OFFS_PROX, 176 IQS269_ST_OFFS_DIR, 177 IQS269_ST_OFFS_TOUCH, 178 IQS269_ST_OFFS_DEEP, 179 }; 180 181 enum iqs269_th_offs { 182 IQS269_TH_OFFS_PROX, 183 IQS269_TH_OFFS_TOUCH, 184 IQS269_TH_OFFS_DEEP, 185 }; 186 187 enum iqs269_event_id { 188 IQS269_EVENT_PROX_DN, 189 IQS269_EVENT_PROX_UP, 190 IQS269_EVENT_TOUCH_DN, 191 IQS269_EVENT_TOUCH_UP, 192 IQS269_EVENT_DEEP_DN, 193 IQS269_EVENT_DEEP_UP, 194 }; 195 196 enum iqs269_slider_id { 197 IQS269_SLIDER_NONE, 198 IQS269_SLIDER_KEY, 199 IQS269_SLIDER_RAW, 200 }; 201 202 enum iqs269_gesture_id { 203 IQS269_GESTURE_TAP, 204 IQS269_GESTURE_HOLD, 205 IQS269_GESTURE_FLICK_POS, 206 IQS269_GESTURE_FLICK_NEG, 207 IQS269_NUM_GESTURES, 208 }; 209 210 struct iqs269_switch_desc { 211 unsigned int code; 212 bool enabled; 213 }; 214 215 struct iqs269_event_desc { 216 const char *name; 217 enum iqs269_st_offs st_offs; 218 enum iqs269_th_offs th_offs; 219 bool dir_up; 220 u8 mask; 221 }; 222 223 static const struct iqs269_event_desc iqs269_events[] = { 224 [IQS269_EVENT_PROX_DN] = { 225 .name = "event-prox", 226 .st_offs = IQS269_ST_OFFS_PROX, 227 .th_offs = IQS269_TH_OFFS_PROX, 228 .mask = IQS269_EVENT_MASK_PROX, 229 }, 230 [IQS269_EVENT_PROX_UP] = { 231 .name = "event-prox-alt", 232 .st_offs = IQS269_ST_OFFS_PROX, 233 .th_offs = IQS269_TH_OFFS_PROX, 234 .dir_up = true, 235 .mask = IQS269_EVENT_MASK_PROX, 236 }, 237 [IQS269_EVENT_TOUCH_DN] = { 238 .name = "event-touch", 239 .st_offs = IQS269_ST_OFFS_TOUCH, 240 .th_offs = IQS269_TH_OFFS_TOUCH, 241 .mask = IQS269_EVENT_MASK_TOUCH, 242 }, 243 [IQS269_EVENT_TOUCH_UP] = { 244 .name = "event-touch-alt", 245 .st_offs = IQS269_ST_OFFS_TOUCH, 246 .th_offs = IQS269_TH_OFFS_TOUCH, 247 .dir_up = true, 248 .mask = IQS269_EVENT_MASK_TOUCH, 249 }, 250 [IQS269_EVENT_DEEP_DN] = { 251 .name = "event-deep", 252 .st_offs = IQS269_ST_OFFS_DEEP, 253 .th_offs = IQS269_TH_OFFS_DEEP, 254 .mask = IQS269_EVENT_MASK_DEEP, 255 }, 256 [IQS269_EVENT_DEEP_UP] = { 257 .name = "event-deep-alt", 258 .st_offs = IQS269_ST_OFFS_DEEP, 259 .th_offs = IQS269_TH_OFFS_DEEP, 260 .dir_up = true, 261 .mask = IQS269_EVENT_MASK_DEEP, 262 }, 263 }; 264 265 struct iqs269_ver_info { 266 u8 prod_num; 267 u8 sw_num; 268 u8 hw_num; 269 u8 fw_num; 270 } __packed; 271 272 struct iqs269_ch_reg { 273 u8 rx_enable; 274 u8 tx_enable; 275 __be16 engine_a; 276 __be16 engine_b; 277 __be16 ati_comp; 278 u8 thresh[3]; 279 u8 hyst; 280 u8 assoc_select; 281 u8 assoc_weight; 282 } __packed; 283 284 struct iqs269_sys_reg { 285 __be16 general; 286 u8 active; 287 u8 filter; 288 u8 reseed; 289 u8 event_mask; 290 u8 rate_np; 291 u8 rate_lp; 292 u8 rate_ulp; 293 u8 timeout_pwr; 294 u8 timeout_rdy; 295 u8 timeout_lta; 296 __be16 misc_a; 297 __be16 misc_b; 298 u8 blocking; 299 u8 padding; 300 u8 slider_select[IQS269_NUM_SL]; 301 u8 timeout_tap; 302 u8 timeout_swipe; 303 u8 thresh_swipe; 304 u8 redo_ati; 305 struct iqs269_ch_reg ch_reg[IQS269_NUM_CH]; 306 } __packed; 307 308 struct iqs269_flags { 309 __be16 system; 310 u8 gesture; 311 u8 padding; 312 u8 states[4]; 313 } __packed; 314 315 struct iqs269_private { 316 struct i2c_client *client; 317 struct regmap *regmap; 318 struct mutex lock; 319 struct iqs269_switch_desc switches[ARRAY_SIZE(iqs269_events)]; 320 struct iqs269_ver_info ver_info; 321 struct iqs269_sys_reg sys_reg; 322 struct completion ati_done; 323 struct input_dev *keypad; 324 struct input_dev *slider[IQS269_NUM_SL]; 325 unsigned int keycode[ARRAY_SIZE(iqs269_events) * IQS269_NUM_CH]; 326 unsigned int sl_code[IQS269_NUM_SL][IQS269_NUM_GESTURES]; 327 unsigned int otp_option; 328 unsigned int ch_num; 329 bool hall_enable; 330 bool ati_current; 331 }; 332 333 static enum iqs269_slider_id iqs269_slider_type(struct iqs269_private *iqs269, 334 int slider_num) 335 { 336 int i; 337 338 /* 339 * Slider 1 is unavailable if the touch-and-hold option is enabled via 340 * OTP. In that case, the channel selection register is repurposed for 341 * the touch-and-hold timer ceiling. 342 */ 343 if (slider_num && (iqs269->otp_option & IQS269_OTP_OPTION_HOLD)) 344 return IQS269_SLIDER_NONE; 345 346 if (!iqs269->sys_reg.slider_select[slider_num]) 347 return IQS269_SLIDER_NONE; 348 349 for (i = 0; i < IQS269_NUM_GESTURES; i++) 350 if (iqs269->sl_code[slider_num][i] != KEY_RESERVED) 351 return IQS269_SLIDER_KEY; 352 353 return IQS269_SLIDER_RAW; 354 } 355 356 static int iqs269_ati_mode_set(struct iqs269_private *iqs269, 357 unsigned int ch_num, unsigned int mode) 358 { 359 struct iqs269_ch_reg *ch_reg = iqs269->sys_reg.ch_reg; 360 u16 engine_a; 361 362 if (ch_num >= IQS269_NUM_CH) 363 return -EINVAL; 364 365 if (mode > IQS269_CHx_ENG_A_ATI_MODE_MAX) 366 return -EINVAL; 367 368 mutex_lock(&iqs269->lock); 369 370 engine_a = be16_to_cpu(ch_reg[ch_num].engine_a); 371 372 engine_a &= ~IQS269_CHx_ENG_A_ATI_MODE_MASK; 373 engine_a |= (mode << IQS269_CHx_ENG_A_ATI_MODE_SHIFT); 374 375 ch_reg[ch_num].engine_a = cpu_to_be16(engine_a); 376 iqs269->ati_current = false; 377 378 mutex_unlock(&iqs269->lock); 379 380 return 0; 381 } 382 383 static int iqs269_ati_mode_get(struct iqs269_private *iqs269, 384 unsigned int ch_num, unsigned int *mode) 385 { 386 struct iqs269_ch_reg *ch_reg = iqs269->sys_reg.ch_reg; 387 u16 engine_a; 388 389 if (ch_num >= IQS269_NUM_CH) 390 return -EINVAL; 391 392 mutex_lock(&iqs269->lock); 393 engine_a = be16_to_cpu(ch_reg[ch_num].engine_a); 394 mutex_unlock(&iqs269->lock); 395 396 engine_a &= IQS269_CHx_ENG_A_ATI_MODE_MASK; 397 *mode = (engine_a >> IQS269_CHx_ENG_A_ATI_MODE_SHIFT); 398 399 return 0; 400 } 401 402 static int iqs269_ati_base_set(struct iqs269_private *iqs269, 403 unsigned int ch_num, unsigned int base) 404 { 405 struct iqs269_ch_reg *ch_reg = iqs269->sys_reg.ch_reg; 406 u16 engine_b; 407 408 if (ch_num >= IQS269_NUM_CH) 409 return -EINVAL; 410 411 switch (base) { 412 case 75: 413 base = IQS269_CHx_ENG_B_ATI_BASE_75; 414 break; 415 416 case 100: 417 base = IQS269_CHx_ENG_B_ATI_BASE_100; 418 break; 419 420 case 150: 421 base = IQS269_CHx_ENG_B_ATI_BASE_150; 422 break; 423 424 case 200: 425 base = IQS269_CHx_ENG_B_ATI_BASE_200; 426 break; 427 428 default: 429 return -EINVAL; 430 } 431 432 mutex_lock(&iqs269->lock); 433 434 engine_b = be16_to_cpu(ch_reg[ch_num].engine_b); 435 436 engine_b &= ~IQS269_CHx_ENG_B_ATI_BASE_MASK; 437 engine_b |= base; 438 439 ch_reg[ch_num].engine_b = cpu_to_be16(engine_b); 440 iqs269->ati_current = false; 441 442 mutex_unlock(&iqs269->lock); 443 444 return 0; 445 } 446 447 static int iqs269_ati_base_get(struct iqs269_private *iqs269, 448 unsigned int ch_num, unsigned int *base) 449 { 450 struct iqs269_ch_reg *ch_reg = iqs269->sys_reg.ch_reg; 451 u16 engine_b; 452 453 if (ch_num >= IQS269_NUM_CH) 454 return -EINVAL; 455 456 mutex_lock(&iqs269->lock); 457 engine_b = be16_to_cpu(ch_reg[ch_num].engine_b); 458 mutex_unlock(&iqs269->lock); 459 460 switch (engine_b & IQS269_CHx_ENG_B_ATI_BASE_MASK) { 461 case IQS269_CHx_ENG_B_ATI_BASE_75: 462 *base = 75; 463 return 0; 464 465 case IQS269_CHx_ENG_B_ATI_BASE_100: 466 *base = 100; 467 return 0; 468 469 case IQS269_CHx_ENG_B_ATI_BASE_150: 470 *base = 150; 471 return 0; 472 473 case IQS269_CHx_ENG_B_ATI_BASE_200: 474 *base = 200; 475 return 0; 476 477 default: 478 return -EINVAL; 479 } 480 } 481 482 static int iqs269_ati_target_set(struct iqs269_private *iqs269, 483 unsigned int ch_num, unsigned int target) 484 { 485 struct iqs269_ch_reg *ch_reg = iqs269->sys_reg.ch_reg; 486 u16 engine_b; 487 488 if (ch_num >= IQS269_NUM_CH) 489 return -EINVAL; 490 491 if (target > IQS269_CHx_ENG_B_ATI_TARGET_MAX) 492 return -EINVAL; 493 494 mutex_lock(&iqs269->lock); 495 496 engine_b = be16_to_cpu(ch_reg[ch_num].engine_b); 497 498 engine_b &= ~IQS269_CHx_ENG_B_ATI_TARGET_MASK; 499 engine_b |= target / 32; 500 501 ch_reg[ch_num].engine_b = cpu_to_be16(engine_b); 502 iqs269->ati_current = false; 503 504 mutex_unlock(&iqs269->lock); 505 506 return 0; 507 } 508 509 static int iqs269_ati_target_get(struct iqs269_private *iqs269, 510 unsigned int ch_num, unsigned int *target) 511 { 512 struct iqs269_ch_reg *ch_reg = iqs269->sys_reg.ch_reg; 513 u16 engine_b; 514 515 if (ch_num >= IQS269_NUM_CH) 516 return -EINVAL; 517 518 mutex_lock(&iqs269->lock); 519 engine_b = be16_to_cpu(ch_reg[ch_num].engine_b); 520 mutex_unlock(&iqs269->lock); 521 522 *target = (engine_b & IQS269_CHx_ENG_B_ATI_TARGET_MASK) * 32; 523 524 return 0; 525 } 526 527 static int iqs269_parse_mask(const struct fwnode_handle *fwnode, 528 const char *propname, u8 *mask) 529 { 530 unsigned int val[IQS269_NUM_CH]; 531 int count, error, i; 532 533 count = fwnode_property_count_u32(fwnode, propname); 534 if (count < 0) 535 return 0; 536 537 if (count > IQS269_NUM_CH) 538 return -EINVAL; 539 540 error = fwnode_property_read_u32_array(fwnode, propname, val, count); 541 if (error) 542 return error; 543 544 *mask = 0; 545 546 for (i = 0; i < count; i++) { 547 if (val[i] >= IQS269_NUM_CH) 548 return -EINVAL; 549 550 *mask |= BIT(val[i]); 551 } 552 553 return 0; 554 } 555 556 static int iqs269_parse_chan(struct iqs269_private *iqs269, 557 const struct fwnode_handle *ch_node) 558 { 559 struct i2c_client *client = iqs269->client; 560 struct fwnode_handle *ev_node; 561 struct iqs269_ch_reg *ch_reg; 562 u16 engine_a, engine_b; 563 unsigned int reg, val; 564 int error, i; 565 566 error = fwnode_property_read_u32(ch_node, "reg", ®); 567 if (error) { 568 dev_err(&client->dev, "Failed to read channel number: %d\n", 569 error); 570 return error; 571 } else if (reg >= IQS269_NUM_CH) { 572 dev_err(&client->dev, "Invalid channel number: %u\n", reg); 573 return -EINVAL; 574 } 575 576 iqs269->sys_reg.active |= BIT(reg); 577 if (!fwnode_property_present(ch_node, "azoteq,reseed-disable")) 578 iqs269->sys_reg.reseed |= BIT(reg); 579 580 if (fwnode_property_present(ch_node, "azoteq,blocking-enable")) 581 iqs269->sys_reg.blocking |= BIT(reg); 582 583 if (fwnode_property_present(ch_node, "azoteq,slider0-select")) 584 iqs269->sys_reg.slider_select[0] |= BIT(reg); 585 586 if (fwnode_property_present(ch_node, "azoteq,slider1-select") && 587 !(iqs269->otp_option & IQS269_OTP_OPTION_HOLD)) 588 iqs269->sys_reg.slider_select[1] |= BIT(reg); 589 590 ch_reg = &iqs269->sys_reg.ch_reg[reg]; 591 592 error = iqs269_parse_mask(ch_node, "azoteq,rx-enable", 593 &ch_reg->rx_enable); 594 if (error) { 595 dev_err(&client->dev, "Invalid channel %u RX enable mask: %d\n", 596 reg, error); 597 return error; 598 } 599 600 error = iqs269_parse_mask(ch_node, "azoteq,tx-enable", 601 &ch_reg->tx_enable); 602 if (error) { 603 dev_err(&client->dev, "Invalid channel %u TX enable mask: %d\n", 604 reg, error); 605 return error; 606 } 607 608 engine_a = be16_to_cpu(ch_reg->engine_a); 609 engine_b = be16_to_cpu(ch_reg->engine_b); 610 611 engine_a |= IQS269_CHx_ENG_A_MEAS_CAP_SIZE; 612 if (fwnode_property_present(ch_node, "azoteq,meas-cap-decrease")) 613 engine_a &= ~IQS269_CHx_ENG_A_MEAS_CAP_SIZE; 614 615 engine_a |= IQS269_CHx_ENG_A_RX_GND_INACTIVE; 616 if (fwnode_property_present(ch_node, "azoteq,rx-float-inactive")) 617 engine_a &= ~IQS269_CHx_ENG_A_RX_GND_INACTIVE; 618 619 engine_a &= ~IQS269_CHx_ENG_A_LOCAL_CAP_SIZE; 620 engine_b &= ~IQS269_CHx_ENG_B_LOCAL_CAP_ENABLE; 621 if (!fwnode_property_read_u32(ch_node, "azoteq,local-cap-size", &val)) { 622 switch (val) { 623 case IQS269_LOCAL_CAP_SIZE_0: 624 break; 625 626 case IQS269_LOCAL_CAP_SIZE_GLOBAL_0pF5: 627 engine_a |= IQS269_CHx_ENG_A_LOCAL_CAP_SIZE; 628 fallthrough; 629 630 case IQS269_LOCAL_CAP_SIZE_GLOBAL_ONLY: 631 engine_b |= IQS269_CHx_ENG_B_LOCAL_CAP_ENABLE; 632 break; 633 634 default: 635 dev_err(&client->dev, 636 "Invalid channel %u local cap. size: %u\n", reg, 637 val); 638 return -EINVAL; 639 } 640 } 641 642 engine_a &= ~IQS269_CHx_ENG_A_INV_LOGIC; 643 if (fwnode_property_present(ch_node, "azoteq,invert-enable")) 644 engine_a |= IQS269_CHx_ENG_A_INV_LOGIC; 645 646 if (!fwnode_property_read_u32(ch_node, "azoteq,proj-bias", &val)) { 647 if (val > IQS269_CHx_ENG_A_PROJ_BIAS_MAX) { 648 dev_err(&client->dev, 649 "Invalid channel %u bias current: %u\n", reg, 650 val); 651 return -EINVAL; 652 } 653 654 engine_a &= ~IQS269_CHx_ENG_A_PROJ_BIAS_MASK; 655 engine_a |= (val << IQS269_CHx_ENG_A_PROJ_BIAS_SHIFT); 656 } 657 658 if (!fwnode_property_read_u32(ch_node, "azoteq,sense-mode", &val)) { 659 if (val > IQS269_CHx_ENG_A_SENSE_MODE_MAX) { 660 dev_err(&client->dev, 661 "Invalid channel %u sensing mode: %u\n", reg, 662 val); 663 return -EINVAL; 664 } 665 666 engine_a &= ~IQS269_CHx_ENG_A_SENSE_MODE_MASK; 667 engine_a |= val; 668 } 669 670 if (!fwnode_property_read_u32(ch_node, "azoteq,sense-freq", &val)) { 671 if (val > IQS269_CHx_ENG_B_SENSE_FREQ_MAX) { 672 dev_err(&client->dev, 673 "Invalid channel %u sensing frequency: %u\n", 674 reg, val); 675 return -EINVAL; 676 } 677 678 engine_b &= ~IQS269_CHx_ENG_B_SENSE_FREQ_MASK; 679 engine_b |= (val << IQS269_CHx_ENG_B_SENSE_FREQ_SHIFT); 680 } 681 682 engine_b &= ~IQS269_CHx_ENG_B_STATIC_ENABLE; 683 if (fwnode_property_present(ch_node, "azoteq,static-enable")) 684 engine_b |= IQS269_CHx_ENG_B_STATIC_ENABLE; 685 686 ch_reg->engine_a = cpu_to_be16(engine_a); 687 ch_reg->engine_b = cpu_to_be16(engine_b); 688 689 if (!fwnode_property_read_u32(ch_node, "azoteq,ati-mode", &val)) { 690 error = iqs269_ati_mode_set(iqs269, reg, val); 691 if (error) { 692 dev_err(&client->dev, 693 "Invalid channel %u ATI mode: %u\n", reg, val); 694 return error; 695 } 696 } 697 698 if (!fwnode_property_read_u32(ch_node, "azoteq,ati-base", &val)) { 699 error = iqs269_ati_base_set(iqs269, reg, val); 700 if (error) { 701 dev_err(&client->dev, 702 "Invalid channel %u ATI base: %u\n", reg, val); 703 return error; 704 } 705 } 706 707 if (!fwnode_property_read_u32(ch_node, "azoteq,ati-target", &val)) { 708 error = iqs269_ati_target_set(iqs269, reg, val); 709 if (error) { 710 dev_err(&client->dev, 711 "Invalid channel %u ATI target: %u\n", reg, 712 val); 713 return error; 714 } 715 } 716 717 error = iqs269_parse_mask(ch_node, "azoteq,assoc-select", 718 &ch_reg->assoc_select); 719 if (error) { 720 dev_err(&client->dev, "Invalid channel %u association: %d\n", 721 reg, error); 722 return error; 723 } 724 725 if (!fwnode_property_read_u32(ch_node, "azoteq,assoc-weight", &val)) { 726 if (val > IQS269_CHx_WEIGHT_MAX) { 727 dev_err(&client->dev, 728 "Invalid channel %u associated weight: %u\n", 729 reg, val); 730 return -EINVAL; 731 } 732 733 ch_reg->assoc_weight = val; 734 } 735 736 for (i = 0; i < ARRAY_SIZE(iqs269_events); i++) { 737 ev_node = fwnode_get_named_child_node(ch_node, 738 iqs269_events[i].name); 739 if (!ev_node) 740 continue; 741 742 if (!fwnode_property_read_u32(ev_node, "azoteq,thresh", &val)) { 743 if (val > IQS269_CHx_THRESH_MAX) { 744 dev_err(&client->dev, 745 "Invalid channel %u threshold: %u\n", 746 reg, val); 747 fwnode_handle_put(ev_node); 748 return -EINVAL; 749 } 750 751 ch_reg->thresh[iqs269_events[i].th_offs] = val; 752 } 753 754 if (!fwnode_property_read_u32(ev_node, "azoteq,hyst", &val)) { 755 u8 *hyst = &ch_reg->hyst; 756 757 if (val > IQS269_CHx_HYST_MAX) { 758 dev_err(&client->dev, 759 "Invalid channel %u hysteresis: %u\n", 760 reg, val); 761 fwnode_handle_put(ev_node); 762 return -EINVAL; 763 } 764 765 if (i == IQS269_EVENT_DEEP_DN || 766 i == IQS269_EVENT_DEEP_UP) { 767 *hyst &= ~IQS269_CHx_HYST_DEEP_MASK; 768 *hyst |= (val << IQS269_CHx_HYST_DEEP_SHIFT); 769 } else if (i == IQS269_EVENT_TOUCH_DN || 770 i == IQS269_EVENT_TOUCH_UP) { 771 *hyst &= ~IQS269_CHx_HYST_TOUCH_MASK; 772 *hyst |= val; 773 } 774 } 775 776 error = fwnode_property_read_u32(ev_node, "linux,code", &val); 777 fwnode_handle_put(ev_node); 778 if (error == -EINVAL) { 779 continue; 780 } else if (error) { 781 dev_err(&client->dev, 782 "Failed to read channel %u code: %d\n", reg, 783 error); 784 return error; 785 } 786 787 switch (reg) { 788 case IQS269_CHx_HALL_ACTIVE: 789 if (iqs269->hall_enable) { 790 iqs269->switches[i].code = val; 791 iqs269->switches[i].enabled = true; 792 } 793 fallthrough; 794 795 case IQS269_CHx_HALL_INACTIVE: 796 if (iqs269->hall_enable) 797 break; 798 fallthrough; 799 800 default: 801 iqs269->keycode[i * IQS269_NUM_CH + reg] = val; 802 } 803 804 iqs269->sys_reg.event_mask &= ~iqs269_events[i].mask; 805 } 806 807 return 0; 808 } 809 810 static int iqs269_parse_prop(struct iqs269_private *iqs269) 811 { 812 struct iqs269_sys_reg *sys_reg = &iqs269->sys_reg; 813 struct i2c_client *client = iqs269->client; 814 u16 general, misc_a, misc_b; 815 unsigned int val; 816 int error; 817 818 iqs269->hall_enable = device_property_present(&client->dev, 819 "azoteq,hall-enable"); 820 821 error = regmap_raw_read(iqs269->regmap, IQS269_SYS_SETTINGS, sys_reg, 822 sizeof(*sys_reg)); 823 if (error) 824 return error; 825 826 if (!device_property_read_u32(&client->dev, "azoteq,filt-str-lp-lta", 827 &val)) { 828 if (val > IQS269_FILT_STR_MAX) { 829 dev_err(&client->dev, "Invalid filter strength: %u\n", 830 val); 831 return -EINVAL; 832 } 833 834 sys_reg->filter &= ~IQS269_FILT_STR_LP_LTA_MASK; 835 sys_reg->filter |= (val << IQS269_FILT_STR_LP_LTA_SHIFT); 836 } 837 838 if (!device_property_read_u32(&client->dev, "azoteq,filt-str-lp-cnt", 839 &val)) { 840 if (val > IQS269_FILT_STR_MAX) { 841 dev_err(&client->dev, "Invalid filter strength: %u\n", 842 val); 843 return -EINVAL; 844 } 845 846 sys_reg->filter &= ~IQS269_FILT_STR_LP_CNT_MASK; 847 sys_reg->filter |= (val << IQS269_FILT_STR_LP_CNT_SHIFT); 848 } 849 850 if (!device_property_read_u32(&client->dev, "azoteq,filt-str-np-lta", 851 &val)) { 852 if (val > IQS269_FILT_STR_MAX) { 853 dev_err(&client->dev, "Invalid filter strength: %u\n", 854 val); 855 return -EINVAL; 856 } 857 858 sys_reg->filter &= ~IQS269_FILT_STR_NP_LTA_MASK; 859 sys_reg->filter |= (val << IQS269_FILT_STR_NP_LTA_SHIFT); 860 } 861 862 if (!device_property_read_u32(&client->dev, "azoteq,filt-str-np-cnt", 863 &val)) { 864 if (val > IQS269_FILT_STR_MAX) { 865 dev_err(&client->dev, "Invalid filter strength: %u\n", 866 val); 867 return -EINVAL; 868 } 869 870 sys_reg->filter &= ~IQS269_FILT_STR_NP_CNT_MASK; 871 sys_reg->filter |= val; 872 } 873 874 if (!device_property_read_u32(&client->dev, "azoteq,rate-np-ms", 875 &val)) { 876 if (val > IQS269_RATE_NP_MS_MAX) { 877 dev_err(&client->dev, "Invalid report rate: %u\n", val); 878 return -EINVAL; 879 } 880 881 sys_reg->rate_np = val; 882 } 883 884 if (!device_property_read_u32(&client->dev, "azoteq,rate-lp-ms", 885 &val)) { 886 if (val > IQS269_RATE_LP_MS_MAX) { 887 dev_err(&client->dev, "Invalid report rate: %u\n", val); 888 return -EINVAL; 889 } 890 891 sys_reg->rate_lp = val; 892 } 893 894 if (!device_property_read_u32(&client->dev, "azoteq,rate-ulp-ms", 895 &val)) { 896 if (val > IQS269_RATE_ULP_MS_MAX) { 897 dev_err(&client->dev, "Invalid report rate: %u\n", val); 898 return -EINVAL; 899 } 900 901 sys_reg->rate_ulp = val / 16; 902 } 903 904 if (!device_property_read_u32(&client->dev, "azoteq,timeout-pwr-ms", 905 &val)) { 906 if (val > IQS269_TIMEOUT_PWR_MS_MAX) { 907 dev_err(&client->dev, "Invalid timeout: %u\n", val); 908 return -EINVAL; 909 } 910 911 sys_reg->timeout_pwr = val / 512; 912 } 913 914 if (!device_property_read_u32(&client->dev, "azoteq,timeout-lta-ms", 915 &val)) { 916 if (val > IQS269_TIMEOUT_LTA_MS_MAX) { 917 dev_err(&client->dev, "Invalid timeout: %u\n", val); 918 return -EINVAL; 919 } 920 921 sys_reg->timeout_lta = val / 512; 922 } 923 924 misc_a = be16_to_cpu(sys_reg->misc_a); 925 misc_b = be16_to_cpu(sys_reg->misc_b); 926 927 misc_a &= ~IQS269_MISC_A_ATI_BAND_DISABLE; 928 if (device_property_present(&client->dev, "azoteq,ati-band-disable")) 929 misc_a |= IQS269_MISC_A_ATI_BAND_DISABLE; 930 931 misc_a &= ~IQS269_MISC_A_ATI_LP_ONLY; 932 if (device_property_present(&client->dev, "azoteq,ati-lp-only")) 933 misc_a |= IQS269_MISC_A_ATI_LP_ONLY; 934 935 misc_a &= ~IQS269_MISC_A_ATI_BAND_TIGHTEN; 936 if (device_property_present(&client->dev, "azoteq,ati-band-tighten")) 937 misc_a |= IQS269_MISC_A_ATI_BAND_TIGHTEN; 938 939 misc_a &= ~IQS269_MISC_A_FILT_DISABLE; 940 if (device_property_present(&client->dev, "azoteq,filt-disable")) 941 misc_a |= IQS269_MISC_A_FILT_DISABLE; 942 943 if (!device_property_read_u32(&client->dev, "azoteq,gpio3-select", 944 &val)) { 945 if (val >= IQS269_NUM_CH) { 946 dev_err(&client->dev, "Invalid GPIO3 selection: %u\n", 947 val); 948 return -EINVAL; 949 } 950 951 misc_a &= ~IQS269_MISC_A_GPIO3_SELECT_MASK; 952 misc_a |= (val << IQS269_MISC_A_GPIO3_SELECT_SHIFT); 953 } 954 955 misc_a &= ~IQS269_MISC_A_DUAL_DIR; 956 if (device_property_present(&client->dev, "azoteq,dual-direction")) 957 misc_a |= IQS269_MISC_A_DUAL_DIR; 958 959 if (!device_property_read_u32(&client->dev, "azoteq,tx-freq", &val)) { 960 if (val > IQS269_MISC_A_TX_FREQ_MAX) { 961 dev_err(&client->dev, 962 "Invalid excitation frequency: %u\n", val); 963 return -EINVAL; 964 } 965 966 misc_a &= ~IQS269_MISC_A_TX_FREQ_MASK; 967 misc_a |= (val << IQS269_MISC_A_TX_FREQ_SHIFT); 968 } 969 970 misc_a &= ~IQS269_MISC_A_GLOBAL_CAP_SIZE; 971 if (device_property_present(&client->dev, "azoteq,global-cap-increase")) 972 misc_a |= IQS269_MISC_A_GLOBAL_CAP_SIZE; 973 974 if (!device_property_read_u32(&client->dev, "azoteq,reseed-select", 975 &val)) { 976 if (val > IQS269_MISC_B_RESEED_UI_SEL_MAX) { 977 dev_err(&client->dev, "Invalid reseed selection: %u\n", 978 val); 979 return -EINVAL; 980 } 981 982 misc_b &= ~IQS269_MISC_B_RESEED_UI_SEL_MASK; 983 misc_b |= (val << IQS269_MISC_B_RESEED_UI_SEL_SHIFT); 984 } 985 986 misc_b &= ~IQS269_MISC_B_TRACKING_UI_ENABLE; 987 if (device_property_present(&client->dev, "azoteq,tracking-enable")) 988 misc_b |= IQS269_MISC_B_TRACKING_UI_ENABLE; 989 990 if (!device_property_read_u32(&client->dev, "azoteq,filt-str-slider", 991 &val)) { 992 if (val > IQS269_FILT_STR_MAX) { 993 dev_err(&client->dev, "Invalid filter strength: %u\n", 994 val); 995 return -EINVAL; 996 } 997 998 misc_b &= ~IQS269_MISC_B_FILT_STR_SLIDER; 999 misc_b |= val; 1000 } 1001 1002 sys_reg->misc_a = cpu_to_be16(misc_a); 1003 sys_reg->misc_b = cpu_to_be16(misc_b); 1004 1005 sys_reg->active = 0; 1006 sys_reg->reseed = 0; 1007 1008 sys_reg->blocking = 0; 1009 1010 sys_reg->slider_select[0] = 0; 1011 1012 /* 1013 * If configured via OTP to do so, the device asserts a pulse on the 1014 * GPIO4 pin for approximately 60 ms once a selected channel is held 1015 * in a state of touch for a configurable length of time. 1016 * 1017 * In that case, the register used for slider 1 channel selection is 1018 * repurposed for the touch-and-hold timer ceiling. 1019 */ 1020 if (iqs269->otp_option & IQS269_OTP_OPTION_HOLD) { 1021 if (!device_property_read_u32(&client->dev, 1022 "azoteq,touch-hold-ms", &val)) { 1023 if (val < IQS269_TOUCH_HOLD_MS_MIN || 1024 val > IQS269_TOUCH_HOLD_MS_MAX) { 1025 dev_err(&client->dev, 1026 "Invalid touch-and-hold ceiling: %u\n", 1027 val); 1028 return -EINVAL; 1029 } 1030 1031 sys_reg->slider_select[1] = val / 256; 1032 } else if (iqs269->ver_info.fw_num < IQS269_VER_INFO_FW_NUM_3) { 1033 /* 1034 * The default touch-and-hold timer ceiling initially 1035 * read from early revisions of silicon is invalid if 1036 * the device experienced a soft reset between power- 1037 * on and the read operation. 1038 * 1039 * To protect against this case, explicitly cache the 1040 * default value so that it is restored each time the 1041 * device is re-initialized. 1042 */ 1043 sys_reg->slider_select[1] = IQS269_TOUCH_HOLD_DEFAULT; 1044 } 1045 } else { 1046 sys_reg->slider_select[1] = 0; 1047 } 1048 1049 sys_reg->event_mask = ~((u8)IQS269_EVENT_MASK_SYS); 1050 1051 device_for_each_child_node_scoped(&client->dev, ch_node) { 1052 error = iqs269_parse_chan(iqs269, ch_node); 1053 if (error) 1054 return error; 1055 } 1056 1057 /* 1058 * Volunteer all active channels to participate in ATI when REDO-ATI is 1059 * manually triggered. 1060 */ 1061 sys_reg->redo_ati = sys_reg->active; 1062 1063 general = be16_to_cpu(sys_reg->general); 1064 1065 if (device_property_present(&client->dev, "azoteq,clk-div")) 1066 general |= IQS269_SYS_SETTINGS_CLK_DIV; 1067 1068 /* 1069 * Configure the device to automatically switch between normal and low- 1070 * power modes as a function of sensing activity. Ultra-low-power mode, 1071 * if enabled, is reserved for suspend. 1072 */ 1073 general &= ~IQS269_SYS_SETTINGS_ULP_AUTO; 1074 general &= ~IQS269_SYS_SETTINGS_DIS_AUTO; 1075 general &= ~IQS269_SYS_SETTINGS_PWR_MODE_MASK; 1076 1077 if (!device_property_read_u32(&client->dev, "azoteq,suspend-mode", 1078 &val)) { 1079 if (val > IQS269_SYS_SETTINGS_PWR_MODE_MAX) { 1080 dev_err(&client->dev, "Invalid suspend mode: %u\n", 1081 val); 1082 return -EINVAL; 1083 } 1084 1085 general |= (val << IQS269_SYS_SETTINGS_PWR_MODE_SHIFT); 1086 } 1087 1088 if (!device_property_read_u32(&client->dev, "azoteq,ulp-update", 1089 &val)) { 1090 if (val > IQS269_SYS_SETTINGS_ULP_UPDATE_MAX) { 1091 dev_err(&client->dev, "Invalid update rate: %u\n", val); 1092 return -EINVAL; 1093 } 1094 1095 general &= ~IQS269_SYS_SETTINGS_ULP_UPDATE_MASK; 1096 general |= (val << IQS269_SYS_SETTINGS_ULP_UPDATE_SHIFT); 1097 } 1098 1099 if (device_property_present(&client->dev, "linux,keycodes")) { 1100 int scale = 1; 1101 int count = device_property_count_u32(&client->dev, 1102 "linux,keycodes"); 1103 if (count > IQS269_NUM_GESTURES * IQS269_NUM_SL) { 1104 dev_err(&client->dev, "Too many keycodes present\n"); 1105 return -EINVAL; 1106 } else if (count < 0) { 1107 dev_err(&client->dev, "Failed to count keycodes: %d\n", 1108 count); 1109 return count; 1110 } 1111 1112 error = device_property_read_u32_array(&client->dev, 1113 "linux,keycodes", 1114 *iqs269->sl_code, count); 1115 if (error) { 1116 dev_err(&client->dev, "Failed to read keycodes: %d\n", 1117 error); 1118 return error; 1119 } 1120 1121 if (device_property_present(&client->dev, 1122 "azoteq,gesture-swipe")) 1123 general |= IQS269_SYS_SETTINGS_SLIDER_SWIPE; 1124 1125 /* 1126 * Early revisions of silicon use a more granular step size for 1127 * tap and swipe gesture timeouts; scale them appropriately. 1128 */ 1129 if (iqs269->ver_info.fw_num < IQS269_VER_INFO_FW_NUM_3) 1130 scale = 4; 1131 1132 if (!device_property_read_u32(&client->dev, 1133 "azoteq,timeout-tap-ms", &val)) { 1134 if (val > IQS269_TIMEOUT_TAP_MS_MAX / scale) { 1135 dev_err(&client->dev, "Invalid timeout: %u\n", 1136 val); 1137 return -EINVAL; 1138 } 1139 1140 sys_reg->timeout_tap = val / (16 / scale); 1141 } 1142 1143 if (!device_property_read_u32(&client->dev, 1144 "azoteq,timeout-swipe-ms", 1145 &val)) { 1146 if (val > IQS269_TIMEOUT_SWIPE_MS_MAX / scale) { 1147 dev_err(&client->dev, "Invalid timeout: %u\n", 1148 val); 1149 return -EINVAL; 1150 } 1151 1152 sys_reg->timeout_swipe = val / (16 / scale); 1153 } 1154 1155 if (!device_property_read_u32(&client->dev, 1156 "azoteq,thresh-swipe", &val)) { 1157 if (val > IQS269_THRESH_SWIPE_MAX) { 1158 dev_err(&client->dev, "Invalid threshold: %u\n", 1159 val); 1160 return -EINVAL; 1161 } 1162 1163 sys_reg->thresh_swipe = val; 1164 } 1165 1166 sys_reg->event_mask &= ~IQS269_EVENT_MASK_GESTURE; 1167 } 1168 1169 general &= ~IQS269_SYS_SETTINGS_RESEED_OFFSET; 1170 if (device_property_present(&client->dev, "azoteq,reseed-offset")) 1171 general |= IQS269_SYS_SETTINGS_RESEED_OFFSET; 1172 1173 general |= IQS269_SYS_SETTINGS_EVENT_MODE; 1174 1175 /* 1176 * As per the datasheet, enable streaming during normal-power mode if 1177 * raw coordinates will be read from either slider. In that case, the 1178 * device returns to event mode during low-power mode. 1179 */ 1180 if (iqs269_slider_type(iqs269, 0) == IQS269_SLIDER_RAW || 1181 iqs269_slider_type(iqs269, 1) == IQS269_SLIDER_RAW) 1182 general |= IQS269_SYS_SETTINGS_EVENT_MODE_LP; 1183 1184 general |= IQS269_SYS_SETTINGS_REDO_ATI; 1185 general |= IQS269_SYS_SETTINGS_ACK_RESET; 1186 1187 sys_reg->general = cpu_to_be16(general); 1188 1189 return 0; 1190 } 1191 1192 static const struct reg_sequence iqs269_tws_init[] = { 1193 { IQS269_TOUCH_HOLD_SLIDER_SEL, IQS269_TOUCH_HOLD_DEFAULT }, 1194 { 0xF0, 0x580F }, 1195 { 0xF0, 0x59EF }, 1196 }; 1197 1198 static int iqs269_dev_init(struct iqs269_private *iqs269) 1199 { 1200 int error; 1201 1202 mutex_lock(&iqs269->lock); 1203 1204 /* 1205 * Early revisions of silicon require the following workaround in order 1206 * to restore any OTP-enabled functionality after a soft reset. 1207 */ 1208 if (iqs269->otp_option == IQS269_OTP_OPTION_TWS && 1209 iqs269->ver_info.fw_num < IQS269_VER_INFO_FW_NUM_3) { 1210 error = regmap_multi_reg_write(iqs269->regmap, iqs269_tws_init, 1211 ARRAY_SIZE(iqs269_tws_init)); 1212 if (error) 1213 goto err_mutex; 1214 } 1215 1216 error = regmap_update_bits(iqs269->regmap, IQS269_HALL_UI, 1217 IQS269_HALL_UI_ENABLE, 1218 iqs269->hall_enable ? ~0 : 0); 1219 if (error) 1220 goto err_mutex; 1221 1222 error = regmap_raw_write(iqs269->regmap, IQS269_SYS_SETTINGS, 1223 &iqs269->sys_reg, sizeof(iqs269->sys_reg)); 1224 if (error) 1225 goto err_mutex; 1226 1227 /* 1228 * The following delay gives the device time to deassert its RDY output 1229 * so as to prevent an interrupt from being serviced prematurely. 1230 */ 1231 usleep_range(2000, 2100); 1232 1233 iqs269->ati_current = true; 1234 1235 err_mutex: 1236 mutex_unlock(&iqs269->lock); 1237 1238 return error; 1239 } 1240 1241 static int iqs269_input_init(struct iqs269_private *iqs269) 1242 { 1243 struct i2c_client *client = iqs269->client; 1244 unsigned int sw_code, keycode; 1245 int error, i, j; 1246 1247 iqs269->keypad = devm_input_allocate_device(&client->dev); 1248 if (!iqs269->keypad) 1249 return -ENOMEM; 1250 1251 iqs269->keypad->keycodemax = ARRAY_SIZE(iqs269->keycode); 1252 iqs269->keypad->keycode = iqs269->keycode; 1253 iqs269->keypad->keycodesize = sizeof(*iqs269->keycode); 1254 1255 iqs269->keypad->name = "iqs269a_keypad"; 1256 iqs269->keypad->id.bustype = BUS_I2C; 1257 1258 for (i = 0; i < ARRAY_SIZE(iqs269_events); i++) { 1259 sw_code = iqs269->switches[i].code; 1260 1261 for (j = 0; j < IQS269_NUM_CH; j++) { 1262 keycode = iqs269->keycode[i * IQS269_NUM_CH + j]; 1263 1264 /* 1265 * Hall-effect sensing repurposes a pair of dedicated 1266 * channels, only one of which reports events. 1267 */ 1268 switch (j) { 1269 case IQS269_CHx_HALL_ACTIVE: 1270 if (iqs269->hall_enable && 1271 iqs269->switches[i].enabled) 1272 input_set_capability(iqs269->keypad, 1273 EV_SW, sw_code); 1274 fallthrough; 1275 1276 case IQS269_CHx_HALL_INACTIVE: 1277 if (iqs269->hall_enable) 1278 continue; 1279 fallthrough; 1280 1281 default: 1282 if (keycode != KEY_RESERVED) 1283 input_set_capability(iqs269->keypad, 1284 EV_KEY, keycode); 1285 } 1286 } 1287 } 1288 1289 for (i = 0; i < IQS269_NUM_SL; i++) { 1290 if (iqs269_slider_type(iqs269, i) == IQS269_SLIDER_NONE) 1291 continue; 1292 1293 iqs269->slider[i] = devm_input_allocate_device(&client->dev); 1294 if (!iqs269->slider[i]) 1295 return -ENOMEM; 1296 1297 iqs269->slider[i]->keycodemax = ARRAY_SIZE(iqs269->sl_code[i]); 1298 iqs269->slider[i]->keycode = iqs269->sl_code[i]; 1299 iqs269->slider[i]->keycodesize = sizeof(**iqs269->sl_code); 1300 1301 iqs269->slider[i]->name = i ? "iqs269a_slider_1" 1302 : "iqs269a_slider_0"; 1303 iqs269->slider[i]->id.bustype = BUS_I2C; 1304 1305 for (j = 0; j < IQS269_NUM_GESTURES; j++) 1306 if (iqs269->sl_code[i][j] != KEY_RESERVED) 1307 input_set_capability(iqs269->slider[i], EV_KEY, 1308 iqs269->sl_code[i][j]); 1309 1310 /* 1311 * Present the slider as a narrow trackpad if one or more chan- 1312 * nels have been selected to participate, but no gestures have 1313 * been mapped to a keycode. 1314 */ 1315 if (iqs269_slider_type(iqs269, i) == IQS269_SLIDER_RAW) { 1316 input_set_capability(iqs269->slider[i], 1317 EV_KEY, BTN_TOUCH); 1318 input_set_abs_params(iqs269->slider[i], 1319 ABS_X, 0, 255, 0, 0); 1320 } 1321 1322 error = input_register_device(iqs269->slider[i]); 1323 if (error) { 1324 dev_err(&client->dev, 1325 "Failed to register slider %d: %d\n", i, error); 1326 return error; 1327 } 1328 } 1329 1330 return 0; 1331 } 1332 1333 static int iqs269_report(struct iqs269_private *iqs269) 1334 { 1335 struct i2c_client *client = iqs269->client; 1336 struct iqs269_flags flags; 1337 unsigned int sw_code, keycode; 1338 int error, i, j; 1339 u8 slider_x[IQS269_NUM_SL]; 1340 u8 dir_mask, state; 1341 1342 error = regmap_raw_read(iqs269->regmap, IQS269_SYS_FLAGS, &flags, 1343 sizeof(flags)); 1344 if (error) { 1345 dev_err(&client->dev, "Failed to read device status: %d\n", 1346 error); 1347 return error; 1348 } 1349 1350 /* 1351 * The device resets itself if its own watchdog bites, which can happen 1352 * in the event of an I2C communication error. In this case, the device 1353 * asserts a SHOW_RESET interrupt and all registers must be restored. 1354 */ 1355 if (be16_to_cpu(flags.system) & IQS269_SYS_FLAGS_SHOW_RESET) { 1356 dev_err(&client->dev, "Unexpected device reset\n"); 1357 1358 error = iqs269_dev_init(iqs269); 1359 if (error) 1360 dev_err(&client->dev, 1361 "Failed to re-initialize device: %d\n", error); 1362 1363 return error; 1364 } 1365 1366 if (be16_to_cpu(flags.system) & IQS269_SYS_FLAGS_IN_ATI) 1367 return 0; 1368 1369 if (iqs269_slider_type(iqs269, 0) == IQS269_SLIDER_RAW || 1370 iqs269_slider_type(iqs269, 1) == IQS269_SLIDER_RAW) { 1371 error = regmap_raw_read(iqs269->regmap, IQS269_SLIDER_X, 1372 slider_x, sizeof(slider_x)); 1373 if (error) { 1374 dev_err(&client->dev, 1375 "Failed to read slider position: %d\n", error); 1376 return error; 1377 } 1378 } 1379 1380 for (i = 0; i < IQS269_NUM_SL; i++) { 1381 flags.gesture >>= (i * IQS269_NUM_GESTURES); 1382 1383 switch (iqs269_slider_type(iqs269, i)) { 1384 case IQS269_SLIDER_NONE: 1385 continue; 1386 1387 case IQS269_SLIDER_KEY: 1388 for (j = 0; j < IQS269_NUM_GESTURES; j++) 1389 input_report_key(iqs269->slider[i], 1390 iqs269->sl_code[i][j], 1391 flags.gesture & BIT(j)); 1392 1393 if (!(flags.gesture & (BIT(IQS269_GESTURE_FLICK_NEG) | 1394 BIT(IQS269_GESTURE_FLICK_POS) | 1395 BIT(IQS269_GESTURE_TAP)))) 1396 break; 1397 1398 input_sync(iqs269->slider[i]); 1399 1400 /* 1401 * Momentary gestures are followed by a complementary 1402 * release cycle so as to emulate a full keystroke. 1403 */ 1404 for (j = 0; j < IQS269_NUM_GESTURES; j++) 1405 if (j != IQS269_GESTURE_HOLD) 1406 input_report_key(iqs269->slider[i], 1407 iqs269->sl_code[i][j], 1408 0); 1409 break; 1410 1411 case IQS269_SLIDER_RAW: 1412 /* 1413 * The slider is considered to be in a state of touch 1414 * if any selected channels are in a state of touch. 1415 */ 1416 state = flags.states[IQS269_ST_OFFS_TOUCH]; 1417 state &= iqs269->sys_reg.slider_select[i]; 1418 1419 input_report_key(iqs269->slider[i], BTN_TOUCH, state); 1420 1421 if (state) 1422 input_report_abs(iqs269->slider[i], 1423 ABS_X, slider_x[i]); 1424 break; 1425 } 1426 1427 input_sync(iqs269->slider[i]); 1428 } 1429 1430 for (i = 0; i < ARRAY_SIZE(iqs269_events); i++) { 1431 dir_mask = flags.states[IQS269_ST_OFFS_DIR]; 1432 if (!iqs269_events[i].dir_up) 1433 dir_mask = ~dir_mask; 1434 1435 state = flags.states[iqs269_events[i].st_offs] & dir_mask; 1436 1437 sw_code = iqs269->switches[i].code; 1438 1439 for (j = 0; j < IQS269_NUM_CH; j++) { 1440 keycode = iqs269->keycode[i * IQS269_NUM_CH + j]; 1441 1442 switch (j) { 1443 case IQS269_CHx_HALL_ACTIVE: 1444 if (iqs269->hall_enable && 1445 iqs269->switches[i].enabled) 1446 input_report_switch(iqs269->keypad, 1447 sw_code, 1448 state & BIT(j)); 1449 fallthrough; 1450 1451 case IQS269_CHx_HALL_INACTIVE: 1452 if (iqs269->hall_enable) 1453 continue; 1454 fallthrough; 1455 1456 default: 1457 input_report_key(iqs269->keypad, keycode, 1458 state & BIT(j)); 1459 } 1460 } 1461 } 1462 1463 input_sync(iqs269->keypad); 1464 1465 /* 1466 * The following completion signals that ATI has finished, any initial 1467 * switch states have been reported and the keypad can be registered. 1468 */ 1469 complete_all(&iqs269->ati_done); 1470 1471 return 0; 1472 } 1473 1474 static irqreturn_t iqs269_irq(int irq, void *context) 1475 { 1476 struct iqs269_private *iqs269 = context; 1477 1478 if (iqs269_report(iqs269)) 1479 return IRQ_NONE; 1480 1481 /* 1482 * The device does not deassert its interrupt (RDY) pin until shortly 1483 * after receiving an I2C stop condition; the following delay ensures 1484 * the interrupt handler does not return before this time. 1485 */ 1486 iqs269_irq_wait(); 1487 1488 return IRQ_HANDLED; 1489 } 1490 1491 static ssize_t counts_show(struct device *dev, 1492 struct device_attribute *attr, char *buf) 1493 { 1494 struct iqs269_private *iqs269 = dev_get_drvdata(dev); 1495 struct i2c_client *client = iqs269->client; 1496 __le16 counts; 1497 int error; 1498 1499 if (!iqs269->ati_current || iqs269->hall_enable) 1500 return -EPERM; 1501 1502 if (!completion_done(&iqs269->ati_done)) 1503 return -EBUSY; 1504 1505 /* 1506 * Unsolicited I2C communication prompts the device to assert its RDY 1507 * pin, so disable the interrupt line until the operation is finished 1508 * and RDY has been deasserted. 1509 */ 1510 disable_irq(client->irq); 1511 1512 error = regmap_raw_read(iqs269->regmap, 1513 IQS269_CHx_COUNTS + iqs269->ch_num * 2, 1514 &counts, sizeof(counts)); 1515 1516 iqs269_irq_wait(); 1517 enable_irq(client->irq); 1518 1519 if (error) 1520 return error; 1521 1522 return sysfs_emit(buf, "%u\n", le16_to_cpu(counts)); 1523 } 1524 1525 static ssize_t hall_bin_show(struct device *dev, 1526 struct device_attribute *attr, char *buf) 1527 { 1528 struct iqs269_private *iqs269 = dev_get_drvdata(dev); 1529 struct iqs269_ch_reg *ch_reg = iqs269->sys_reg.ch_reg; 1530 struct i2c_client *client = iqs269->client; 1531 unsigned int val; 1532 int error; 1533 1534 disable_irq(client->irq); 1535 1536 error = regmap_read(iqs269->regmap, IQS269_CAL_DATA_A, &val); 1537 1538 iqs269_irq_wait(); 1539 enable_irq(client->irq); 1540 1541 if (error) 1542 return error; 1543 1544 switch (ch_reg[IQS269_CHx_HALL_ACTIVE].rx_enable & 1545 ch_reg[IQS269_CHx_HALL_INACTIVE].rx_enable) { 1546 case IQS269_HALL_PAD_R: 1547 val &= IQS269_CAL_DATA_A_HALL_BIN_R_MASK; 1548 val >>= IQS269_CAL_DATA_A_HALL_BIN_R_SHIFT; 1549 break; 1550 1551 case IQS269_HALL_PAD_L: 1552 val &= IQS269_CAL_DATA_A_HALL_BIN_L_MASK; 1553 val >>= IQS269_CAL_DATA_A_HALL_BIN_L_SHIFT; 1554 break; 1555 1556 default: 1557 return -EINVAL; 1558 } 1559 1560 return sysfs_emit(buf, "%u\n", val); 1561 } 1562 1563 static ssize_t hall_enable_show(struct device *dev, 1564 struct device_attribute *attr, char *buf) 1565 { 1566 struct iqs269_private *iqs269 = dev_get_drvdata(dev); 1567 1568 return sysfs_emit(buf, "%u\n", iqs269->hall_enable); 1569 } 1570 1571 static ssize_t hall_enable_store(struct device *dev, 1572 struct device_attribute *attr, const char *buf, 1573 size_t count) 1574 { 1575 struct iqs269_private *iqs269 = dev_get_drvdata(dev); 1576 unsigned int val; 1577 int error; 1578 1579 error = kstrtouint(buf, 10, &val); 1580 if (error) 1581 return error; 1582 1583 mutex_lock(&iqs269->lock); 1584 1585 iqs269->hall_enable = val; 1586 iqs269->ati_current = false; 1587 1588 mutex_unlock(&iqs269->lock); 1589 1590 return count; 1591 } 1592 1593 static ssize_t ch_number_show(struct device *dev, 1594 struct device_attribute *attr, char *buf) 1595 { 1596 struct iqs269_private *iqs269 = dev_get_drvdata(dev); 1597 1598 return sysfs_emit(buf, "%u\n", iqs269->ch_num); 1599 } 1600 1601 static ssize_t ch_number_store(struct device *dev, 1602 struct device_attribute *attr, const char *buf, 1603 size_t count) 1604 { 1605 struct iqs269_private *iqs269 = dev_get_drvdata(dev); 1606 unsigned int val; 1607 int error; 1608 1609 error = kstrtouint(buf, 10, &val); 1610 if (error) 1611 return error; 1612 1613 if (val >= IQS269_NUM_CH) 1614 return -EINVAL; 1615 1616 iqs269->ch_num = val; 1617 1618 return count; 1619 } 1620 1621 static ssize_t rx_enable_show(struct device *dev, 1622 struct device_attribute *attr, char *buf) 1623 { 1624 struct iqs269_private *iqs269 = dev_get_drvdata(dev); 1625 struct iqs269_ch_reg *ch_reg = iqs269->sys_reg.ch_reg; 1626 1627 return sysfs_emit(buf, "%u\n", ch_reg[iqs269->ch_num].rx_enable); 1628 } 1629 1630 static ssize_t rx_enable_store(struct device *dev, 1631 struct device_attribute *attr, const char *buf, 1632 size_t count) 1633 { 1634 struct iqs269_private *iqs269 = dev_get_drvdata(dev); 1635 struct iqs269_ch_reg *ch_reg = iqs269->sys_reg.ch_reg; 1636 unsigned int val; 1637 int error; 1638 1639 error = kstrtouint(buf, 10, &val); 1640 if (error) 1641 return error; 1642 1643 if (val > 0xFF) 1644 return -EINVAL; 1645 1646 mutex_lock(&iqs269->lock); 1647 1648 ch_reg[iqs269->ch_num].rx_enable = val; 1649 iqs269->ati_current = false; 1650 1651 mutex_unlock(&iqs269->lock); 1652 1653 return count; 1654 } 1655 1656 static ssize_t ati_mode_show(struct device *dev, 1657 struct device_attribute *attr, char *buf) 1658 { 1659 struct iqs269_private *iqs269 = dev_get_drvdata(dev); 1660 unsigned int val; 1661 int error; 1662 1663 error = iqs269_ati_mode_get(iqs269, iqs269->ch_num, &val); 1664 if (error) 1665 return error; 1666 1667 return sysfs_emit(buf, "%u\n", val); 1668 } 1669 1670 static ssize_t ati_mode_store(struct device *dev, 1671 struct device_attribute *attr, const char *buf, 1672 size_t count) 1673 { 1674 struct iqs269_private *iqs269 = dev_get_drvdata(dev); 1675 unsigned int val; 1676 int error; 1677 1678 error = kstrtouint(buf, 10, &val); 1679 if (error) 1680 return error; 1681 1682 error = iqs269_ati_mode_set(iqs269, iqs269->ch_num, val); 1683 if (error) 1684 return error; 1685 1686 return count; 1687 } 1688 1689 static ssize_t ati_base_show(struct device *dev, 1690 struct device_attribute *attr, char *buf) 1691 { 1692 struct iqs269_private *iqs269 = dev_get_drvdata(dev); 1693 unsigned int val; 1694 int error; 1695 1696 error = iqs269_ati_base_get(iqs269, iqs269->ch_num, &val); 1697 if (error) 1698 return error; 1699 1700 return sysfs_emit(buf, "%u\n", val); 1701 } 1702 1703 static ssize_t ati_base_store(struct device *dev, 1704 struct device_attribute *attr, const char *buf, 1705 size_t count) 1706 { 1707 struct iqs269_private *iqs269 = dev_get_drvdata(dev); 1708 unsigned int val; 1709 int error; 1710 1711 error = kstrtouint(buf, 10, &val); 1712 if (error) 1713 return error; 1714 1715 error = iqs269_ati_base_set(iqs269, iqs269->ch_num, val); 1716 if (error) 1717 return error; 1718 1719 return count; 1720 } 1721 1722 static ssize_t ati_target_show(struct device *dev, 1723 struct device_attribute *attr, char *buf) 1724 { 1725 struct iqs269_private *iqs269 = dev_get_drvdata(dev); 1726 unsigned int val; 1727 int error; 1728 1729 error = iqs269_ati_target_get(iqs269, iqs269->ch_num, &val); 1730 if (error) 1731 return error; 1732 1733 return sysfs_emit(buf, "%u\n", val); 1734 } 1735 1736 static ssize_t ati_target_store(struct device *dev, 1737 struct device_attribute *attr, const char *buf, 1738 size_t count) 1739 { 1740 struct iqs269_private *iqs269 = dev_get_drvdata(dev); 1741 unsigned int val; 1742 int error; 1743 1744 error = kstrtouint(buf, 10, &val); 1745 if (error) 1746 return error; 1747 1748 error = iqs269_ati_target_set(iqs269, iqs269->ch_num, val); 1749 if (error) 1750 return error; 1751 1752 return count; 1753 } 1754 1755 static ssize_t ati_trigger_show(struct device *dev, 1756 struct device_attribute *attr, char *buf) 1757 { 1758 struct iqs269_private *iqs269 = dev_get_drvdata(dev); 1759 1760 return sysfs_emit(buf, "%u\n", 1761 iqs269->ati_current && 1762 completion_done(&iqs269->ati_done)); 1763 } 1764 1765 static ssize_t ati_trigger_store(struct device *dev, 1766 struct device_attribute *attr, const char *buf, 1767 size_t count) 1768 { 1769 struct iqs269_private *iqs269 = dev_get_drvdata(dev); 1770 struct i2c_client *client = iqs269->client; 1771 unsigned int val; 1772 int error; 1773 1774 error = kstrtouint(buf, 10, &val); 1775 if (error) 1776 return error; 1777 1778 if (!val) 1779 return count; 1780 1781 disable_irq(client->irq); 1782 reinit_completion(&iqs269->ati_done); 1783 1784 error = iqs269_dev_init(iqs269); 1785 1786 iqs269_irq_wait(); 1787 enable_irq(client->irq); 1788 1789 if (error) 1790 return error; 1791 1792 if (!wait_for_completion_timeout(&iqs269->ati_done, 1793 msecs_to_jiffies(2000))) 1794 return -ETIMEDOUT; 1795 1796 return count; 1797 } 1798 1799 static DEVICE_ATTR_RO(counts); 1800 static DEVICE_ATTR_RO(hall_bin); 1801 static DEVICE_ATTR_RW(hall_enable); 1802 static DEVICE_ATTR_RW(ch_number); 1803 static DEVICE_ATTR_RW(rx_enable); 1804 static DEVICE_ATTR_RW(ati_mode); 1805 static DEVICE_ATTR_RW(ati_base); 1806 static DEVICE_ATTR_RW(ati_target); 1807 static DEVICE_ATTR_RW(ati_trigger); 1808 1809 static struct attribute *iqs269_attrs[] = { 1810 &dev_attr_counts.attr, 1811 &dev_attr_hall_bin.attr, 1812 &dev_attr_hall_enable.attr, 1813 &dev_attr_ch_number.attr, 1814 &dev_attr_rx_enable.attr, 1815 &dev_attr_ati_mode.attr, 1816 &dev_attr_ati_base.attr, 1817 &dev_attr_ati_target.attr, 1818 &dev_attr_ati_trigger.attr, 1819 NULL, 1820 }; 1821 ATTRIBUTE_GROUPS(iqs269); 1822 1823 static const struct regmap_config iqs269_regmap_config = { 1824 .reg_bits = 8, 1825 .val_bits = 16, 1826 .max_register = IQS269_MAX_REG, 1827 }; 1828 1829 static int iqs269_probe(struct i2c_client *client) 1830 { 1831 struct iqs269_private *iqs269; 1832 int error; 1833 1834 iqs269 = devm_kzalloc(&client->dev, sizeof(*iqs269), GFP_KERNEL); 1835 if (!iqs269) 1836 return -ENOMEM; 1837 1838 i2c_set_clientdata(client, iqs269); 1839 iqs269->client = client; 1840 1841 iqs269->regmap = devm_regmap_init_i2c(client, &iqs269_regmap_config); 1842 if (IS_ERR(iqs269->regmap)) { 1843 error = PTR_ERR(iqs269->regmap); 1844 dev_err(&client->dev, "Failed to initialize register map: %d\n", 1845 error); 1846 return error; 1847 } 1848 1849 mutex_init(&iqs269->lock); 1850 init_completion(&iqs269->ati_done); 1851 1852 iqs269->otp_option = (uintptr_t)device_get_match_data(&client->dev); 1853 1854 error = regmap_raw_read(iqs269->regmap, IQS269_VER_INFO, 1855 &iqs269->ver_info, sizeof(iqs269->ver_info)); 1856 if (error) 1857 return error; 1858 1859 if (iqs269->ver_info.prod_num != IQS269_VER_INFO_PROD_NUM) { 1860 dev_err(&client->dev, "Unrecognized product number: 0x%02X\n", 1861 iqs269->ver_info.prod_num); 1862 return -EINVAL; 1863 } 1864 1865 error = iqs269_parse_prop(iqs269); 1866 if (error) 1867 return error; 1868 1869 error = iqs269_dev_init(iqs269); 1870 if (error) { 1871 dev_err(&client->dev, "Failed to initialize device: %d\n", 1872 error); 1873 return error; 1874 } 1875 1876 error = iqs269_input_init(iqs269); 1877 if (error) 1878 return error; 1879 1880 error = devm_request_threaded_irq(&client->dev, client->irq, 1881 NULL, iqs269_irq, IRQF_ONESHOT, 1882 client->name, iqs269); 1883 if (error) { 1884 dev_err(&client->dev, "Failed to request IRQ: %d\n", error); 1885 return error; 1886 } 1887 1888 if (!wait_for_completion_timeout(&iqs269->ati_done, 1889 msecs_to_jiffies(2000))) { 1890 dev_err(&client->dev, "Failed to complete ATI\n"); 1891 return -ETIMEDOUT; 1892 } 1893 1894 /* 1895 * The keypad may include one or more switches and is not registered 1896 * until ATI is complete and the initial switch states are read. 1897 */ 1898 error = input_register_device(iqs269->keypad); 1899 if (error) { 1900 dev_err(&client->dev, "Failed to register keypad: %d\n", error); 1901 return error; 1902 } 1903 1904 return error; 1905 } 1906 1907 static u16 iqs269_general_get(struct iqs269_private *iqs269) 1908 { 1909 u16 general = be16_to_cpu(iqs269->sys_reg.general); 1910 1911 general &= ~IQS269_SYS_SETTINGS_REDO_ATI; 1912 general &= ~IQS269_SYS_SETTINGS_ACK_RESET; 1913 1914 return general | IQS269_SYS_SETTINGS_DIS_AUTO; 1915 } 1916 1917 static int iqs269_suspend(struct device *dev) 1918 { 1919 struct iqs269_private *iqs269 = dev_get_drvdata(dev); 1920 struct i2c_client *client = iqs269->client; 1921 int error; 1922 u16 general = iqs269_general_get(iqs269); 1923 1924 if (!(general & IQS269_SYS_SETTINGS_PWR_MODE_MASK)) 1925 return 0; 1926 1927 disable_irq(client->irq); 1928 1929 error = regmap_write(iqs269->regmap, IQS269_SYS_SETTINGS, general); 1930 1931 iqs269_irq_wait(); 1932 enable_irq(client->irq); 1933 1934 return error; 1935 } 1936 1937 static int iqs269_resume(struct device *dev) 1938 { 1939 struct iqs269_private *iqs269 = dev_get_drvdata(dev); 1940 struct i2c_client *client = iqs269->client; 1941 int error; 1942 u16 general = iqs269_general_get(iqs269); 1943 1944 if (!(general & IQS269_SYS_SETTINGS_PWR_MODE_MASK)) 1945 return 0; 1946 1947 disable_irq(client->irq); 1948 1949 error = regmap_write(iqs269->regmap, IQS269_SYS_SETTINGS, 1950 general & ~IQS269_SYS_SETTINGS_PWR_MODE_MASK); 1951 if (!error) 1952 error = regmap_write(iqs269->regmap, IQS269_SYS_SETTINGS, 1953 general & ~IQS269_SYS_SETTINGS_DIS_AUTO); 1954 1955 iqs269_irq_wait(); 1956 enable_irq(client->irq); 1957 1958 return error; 1959 } 1960 1961 static DEFINE_SIMPLE_DEV_PM_OPS(iqs269_pm, iqs269_suspend, iqs269_resume); 1962 1963 static const struct of_device_id iqs269_of_match[] = { 1964 { 1965 .compatible = "azoteq,iqs269a", 1966 .data = (void *)IQS269_OTP_OPTION_DEFAULT, 1967 }, 1968 { 1969 .compatible = "azoteq,iqs269a-00", 1970 .data = (void *)IQS269_OTP_OPTION_DEFAULT, 1971 }, 1972 { 1973 .compatible = "azoteq,iqs269a-d0", 1974 .data = (void *)IQS269_OTP_OPTION_TWS, 1975 }, 1976 { } 1977 }; 1978 MODULE_DEVICE_TABLE(of, iqs269_of_match); 1979 1980 static struct i2c_driver iqs269_i2c_driver = { 1981 .driver = { 1982 .name = "iqs269a", 1983 .dev_groups = iqs269_groups, 1984 .of_match_table = iqs269_of_match, 1985 .pm = pm_sleep_ptr(&iqs269_pm), 1986 }, 1987 .probe = iqs269_probe, 1988 }; 1989 module_i2c_driver(iqs269_i2c_driver); 1990 1991 MODULE_AUTHOR("Jeff LaBundy <jeff@labundy.com>"); 1992 MODULE_DESCRIPTION("Azoteq IQS269A Capacitive Touch Controller"); 1993 MODULE_LICENSE("GPL"); 1994