linux/drivers/extcon/extcon.c
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   1/*
   2 * drivers/extcon/extcon.c - External Connector (extcon) framework.
   3 *
   4 * Copyright (C) 2015 Samsung Electronics
   5 * Author: Chanwoo Choi <cw00.choi@samsung.com>
   6 *
   7 * Copyright (C) 2012 Samsung Electronics
   8 * Author: Donggeun Kim <dg77.kim@samsung.com>
   9 * Author: MyungJoo Ham <myungjoo.ham@samsung.com>
  10 *
  11 * based on android/drivers/switch/switch_class.c
  12 * Copyright (C) 2008 Google, Inc.
  13 * Author: Mike Lockwood <lockwood@android.com>
  14 *
  15 * This software is licensed under the terms of the GNU General Public
  16 * License version 2, as published by the Free Software Foundation, and
  17 * may be copied, distributed, and modified under those terms.
  18 *
  19 * This program is distributed in the hope that it will be useful,
  20 * but WITHOUT ANY WARRANTY; without even the implied warranty of
  21 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
  22 * GNU General Public License for more details.
  23 */
  24
  25#include <linux/module.h>
  26#include <linux/types.h>
  27#include <linux/init.h>
  28#include <linux/device.h>
  29#include <linux/fs.h>
  30#include <linux/err.h>
  31#include <linux/of.h>
  32#include <linux/slab.h>
  33#include <linux/sysfs.h>
  34
  35#include "extcon.h"
  36
  37#define SUPPORTED_CABLE_MAX     32
  38
  39static const struct __extcon_info {
  40        unsigned int type;
  41        unsigned int id;
  42        const char *name;
  43
  44} extcon_info[] = {
  45        [EXTCON_NONE] = {
  46                .type = EXTCON_TYPE_MISC,
  47                .id = EXTCON_NONE,
  48                .name = "NONE",
  49        },
  50
  51        /* USB external connector */
  52        [EXTCON_USB] = {
  53                .type = EXTCON_TYPE_USB,
  54                .id = EXTCON_USB,
  55                .name = "USB",
  56        },
  57        [EXTCON_USB_HOST] = {
  58                .type = EXTCON_TYPE_USB,
  59                .id = EXTCON_USB_HOST,
  60                .name = "USB-HOST",
  61        },
  62
  63        /* Charging external connector */
  64        [EXTCON_CHG_USB_SDP] = {
  65                .type = EXTCON_TYPE_CHG | EXTCON_TYPE_USB,
  66                .id = EXTCON_CHG_USB_SDP,
  67                .name = "SDP",
  68        },
  69        [EXTCON_CHG_USB_DCP] = {
  70                .type = EXTCON_TYPE_CHG | EXTCON_TYPE_USB,
  71                .id = EXTCON_CHG_USB_DCP,
  72                .name = "DCP",
  73        },
  74        [EXTCON_CHG_USB_CDP] = {
  75                .type = EXTCON_TYPE_CHG | EXTCON_TYPE_USB,
  76                .id = EXTCON_CHG_USB_CDP,
  77                .name = "CDP",
  78        },
  79        [EXTCON_CHG_USB_ACA] = {
  80                .type = EXTCON_TYPE_CHG | EXTCON_TYPE_USB,
  81                .id = EXTCON_CHG_USB_ACA,
  82                .name = "ACA",
  83        },
  84        [EXTCON_CHG_USB_FAST] = {
  85                .type = EXTCON_TYPE_CHG | EXTCON_TYPE_USB,
  86                .id = EXTCON_CHG_USB_FAST,
  87                .name = "FAST-CHARGER",
  88        },
  89        [EXTCON_CHG_USB_SLOW] = {
  90                .type = EXTCON_TYPE_CHG | EXTCON_TYPE_USB,
  91                .id = EXTCON_CHG_USB_SLOW,
  92                .name = "SLOW-CHARGER",
  93        },
  94        [EXTCON_CHG_WPT] = {
  95                .type = EXTCON_TYPE_CHG,
  96                .id = EXTCON_CHG_WPT,
  97                .name = "WPT",
  98        },
  99        [EXTCON_CHG_USB_PD] = {
 100                .type = EXTCON_TYPE_CHG | EXTCON_TYPE_USB,
 101                .id = EXTCON_CHG_USB_PD,
 102                .name = "PD",
 103        },
 104
 105        /* Jack external connector */
 106        [EXTCON_JACK_MICROPHONE] = {
 107                .type = EXTCON_TYPE_JACK,
 108                .id = EXTCON_JACK_MICROPHONE,
 109                .name = "MICROPHONE",
 110        },
 111        [EXTCON_JACK_HEADPHONE] = {
 112                .type = EXTCON_TYPE_JACK,
 113                .id = EXTCON_JACK_HEADPHONE,
 114                .name = "HEADPHONE",
 115        },
 116        [EXTCON_JACK_LINE_IN] = {
 117                .type = EXTCON_TYPE_JACK,
 118                .id = EXTCON_JACK_LINE_IN,
 119                .name = "LINE-IN",
 120        },
 121        [EXTCON_JACK_LINE_OUT] = {
 122                .type = EXTCON_TYPE_JACK,
 123                .id = EXTCON_JACK_LINE_OUT,
 124                .name = "LINE-OUT",
 125        },
 126        [EXTCON_JACK_VIDEO_IN] = {
 127                .type = EXTCON_TYPE_JACK,
 128                .id = EXTCON_JACK_VIDEO_IN,
 129                .name = "VIDEO-IN",
 130        },
 131        [EXTCON_JACK_VIDEO_OUT] = {
 132                .type = EXTCON_TYPE_JACK,
 133                .id = EXTCON_JACK_VIDEO_OUT,
 134                .name = "VIDEO-OUT",
 135        },
 136        [EXTCON_JACK_SPDIF_IN] = {
 137                .type = EXTCON_TYPE_JACK,
 138                .id = EXTCON_JACK_SPDIF_IN,
 139                .name = "SPDIF-IN",
 140        },
 141        [EXTCON_JACK_SPDIF_OUT] = {
 142                .type = EXTCON_TYPE_JACK,
 143                .id = EXTCON_JACK_SPDIF_OUT,
 144                .name = "SPDIF-OUT",
 145        },
 146
 147        /* Display external connector */
 148        [EXTCON_DISP_HDMI] = {
 149                .type = EXTCON_TYPE_DISP,
 150                .id = EXTCON_DISP_HDMI,
 151                .name = "HDMI",
 152        },
 153        [EXTCON_DISP_MHL] = {
 154                .type = EXTCON_TYPE_DISP,
 155                .id = EXTCON_DISP_MHL,
 156                .name = "MHL",
 157        },
 158        [EXTCON_DISP_DVI] = {
 159                .type = EXTCON_TYPE_DISP,
 160                .id = EXTCON_DISP_DVI,
 161                .name = "DVI",
 162        },
 163        [EXTCON_DISP_VGA] = {
 164                .type = EXTCON_TYPE_DISP,
 165                .id = EXTCON_DISP_VGA,
 166                .name = "VGA",
 167        },
 168        [EXTCON_DISP_DP] = {
 169                .type = EXTCON_TYPE_DISP | EXTCON_TYPE_USB,
 170                .id = EXTCON_DISP_DP,
 171                .name = "DP",
 172        },
 173        [EXTCON_DISP_HMD] = {
 174                .type = EXTCON_TYPE_DISP | EXTCON_TYPE_USB,
 175                .id = EXTCON_DISP_HMD,
 176                .name = "HMD",
 177        },
 178
 179        /* Miscellaneous external connector */
 180        [EXTCON_DOCK] = {
 181                .type = EXTCON_TYPE_MISC,
 182                .id = EXTCON_DOCK,
 183                .name = "DOCK",
 184        },
 185        [EXTCON_JIG] = {
 186                .type = EXTCON_TYPE_MISC,
 187                .id = EXTCON_JIG,
 188                .name = "JIG",
 189        },
 190        [EXTCON_MECHANICAL] = {
 191                .type = EXTCON_TYPE_MISC,
 192                .id = EXTCON_MECHANICAL,
 193                .name = "MECHANICAL",
 194        },
 195
 196        { /* sentinel */ }
 197};
 198
 199/**
 200 * struct extcon_cable - An internal data for an external connector.
 201 * @edev:               the extcon device
 202 * @cable_index:        the index of this cable in the edev
 203 * @attr_g:             the attribute group for the cable
 204 * @attr_name:          "name" sysfs entry
 205 * @attr_state:         "state" sysfs entry
 206 * @attrs:              the array pointing to attr_name and attr_state for attr_g
 207 */
 208struct extcon_cable {
 209        struct extcon_dev *edev;
 210        int cable_index;
 211
 212        struct attribute_group attr_g;
 213        struct device_attribute attr_name;
 214        struct device_attribute attr_state;
 215
 216        struct attribute *attrs[3]; /* to be fed to attr_g.attrs */
 217
 218        union extcon_property_value usb_propval[EXTCON_PROP_USB_CNT];
 219        union extcon_property_value chg_propval[EXTCON_PROP_CHG_CNT];
 220        union extcon_property_value jack_propval[EXTCON_PROP_JACK_CNT];
 221        union extcon_property_value disp_propval[EXTCON_PROP_DISP_CNT];
 222
 223        unsigned long usb_bits[BITS_TO_LONGS(EXTCON_PROP_USB_CNT)];
 224        unsigned long chg_bits[BITS_TO_LONGS(EXTCON_PROP_CHG_CNT)];
 225        unsigned long jack_bits[BITS_TO_LONGS(EXTCON_PROP_JACK_CNT)];
 226        unsigned long disp_bits[BITS_TO_LONGS(EXTCON_PROP_DISP_CNT)];
 227};
 228
 229static struct class *extcon_class;
 230
 231static LIST_HEAD(extcon_dev_list);
 232static DEFINE_MUTEX(extcon_dev_list_lock);
 233
 234static int check_mutually_exclusive(struct extcon_dev *edev, u32 new_state)
 235{
 236        int i = 0;
 237
 238        if (!edev->mutually_exclusive)
 239                return 0;
 240
 241        for (i = 0; edev->mutually_exclusive[i]; i++) {
 242                int weight;
 243                u32 correspondants = new_state & edev->mutually_exclusive[i];
 244
 245                /* calculate the total number of bits set */
 246                weight = hweight32(correspondants);
 247                if (weight > 1)
 248                        return i + 1;
 249        }
 250
 251        return 0;
 252}
 253
 254static int find_cable_index_by_id(struct extcon_dev *edev, const unsigned int id)
 255{
 256        int i;
 257
 258        /* Find the the index of extcon cable in edev->supported_cable */
 259        for (i = 0; i < edev->max_supported; i++) {
 260                if (edev->supported_cable[i] == id)
 261                        return i;
 262        }
 263
 264        return -EINVAL;
 265}
 266
 267static int get_extcon_type(unsigned int prop)
 268{
 269        switch (prop) {
 270        case EXTCON_PROP_USB_MIN ... EXTCON_PROP_USB_MAX:
 271                return EXTCON_TYPE_USB;
 272        case EXTCON_PROP_CHG_MIN ... EXTCON_PROP_CHG_MAX:
 273                return EXTCON_TYPE_CHG;
 274        case EXTCON_PROP_JACK_MIN ... EXTCON_PROP_JACK_MAX:
 275                return EXTCON_TYPE_JACK;
 276        case EXTCON_PROP_DISP_MIN ... EXTCON_PROP_DISP_MAX:
 277                return EXTCON_TYPE_DISP;
 278        default:
 279                return -EINVAL;
 280        }
 281}
 282
 283static bool is_extcon_attached(struct extcon_dev *edev, unsigned int index)
 284{
 285        return !!(edev->state & BIT(index));
 286}
 287
 288static bool is_extcon_changed(struct extcon_dev *edev, int index,
 289                                bool new_state)
 290{
 291        int state = !!(edev->state & BIT(index));
 292        return (state != new_state);
 293}
 294
 295static bool is_extcon_property_supported(unsigned int id, unsigned int prop)
 296{
 297        int type;
 298
 299        /* Check whether the property is supported or not. */
 300        type = get_extcon_type(prop);
 301        if (type < 0)
 302                return false;
 303
 304        /* Check whether a specific extcon id supports the property or not. */
 305        return !!(extcon_info[id].type & type);
 306}
 307
 308static int is_extcon_property_capability(struct extcon_dev *edev,
 309                                unsigned int id, int index,unsigned int prop)
 310{
 311        struct extcon_cable *cable;
 312        int type, ret;
 313
 314        /* Check whether the property is supported or not. */
 315        type = get_extcon_type(prop);
 316        if (type < 0)
 317                return type;
 318
 319        cable = &edev->cables[index];
 320
 321        switch (type) {
 322        case EXTCON_TYPE_USB:
 323                ret = test_bit(prop - EXTCON_PROP_USB_MIN, cable->usb_bits);
 324                break;
 325        case EXTCON_TYPE_CHG:
 326                ret = test_bit(prop - EXTCON_PROP_CHG_MIN, cable->chg_bits);
 327                break;
 328        case EXTCON_TYPE_JACK:
 329                ret = test_bit(prop - EXTCON_PROP_JACK_MIN, cable->jack_bits);
 330                break;
 331        case EXTCON_TYPE_DISP:
 332                ret = test_bit(prop - EXTCON_PROP_DISP_MIN, cable->disp_bits);
 333                break;
 334        default:
 335                ret = -EINVAL;
 336        }
 337
 338        return ret;
 339}
 340
 341static void init_property(struct extcon_dev *edev, unsigned int id, int index)
 342{
 343        unsigned int type = extcon_info[id].type;
 344        struct extcon_cable *cable = &edev->cables[index];
 345
 346        if (EXTCON_TYPE_USB & type)
 347                memset(cable->usb_propval, 0, sizeof(cable->usb_propval));
 348        if (EXTCON_TYPE_CHG & type)
 349                memset(cable->chg_propval, 0, sizeof(cable->chg_propval));
 350        if (EXTCON_TYPE_JACK & type)
 351                memset(cable->jack_propval, 0, sizeof(cable->jack_propval));
 352        if (EXTCON_TYPE_DISP & type)
 353                memset(cable->disp_propval, 0, sizeof(cable->disp_propval));
 354}
 355
 356static ssize_t state_show(struct device *dev, struct device_attribute *attr,
 357                          char *buf)
 358{
 359        int i, count = 0;
 360        struct extcon_dev *edev = dev_get_drvdata(dev);
 361
 362        if (edev->max_supported == 0)
 363                return sprintf(buf, "%u\n", edev->state);
 364
 365        for (i = 0; i < edev->max_supported; i++) {
 366                count += sprintf(buf + count, "%s=%d\n",
 367                                extcon_info[edev->supported_cable[i]].name,
 368                                 !!(edev->state & BIT(i)));
 369        }
 370
 371        return count;
 372}
 373static DEVICE_ATTR_RO(state);
 374
 375static ssize_t name_show(struct device *dev, struct device_attribute *attr,
 376                char *buf)
 377{
 378        struct extcon_dev *edev = dev_get_drvdata(dev);
 379
 380        return sprintf(buf, "%s\n", edev->name);
 381}
 382static DEVICE_ATTR_RO(name);
 383
 384static ssize_t cable_name_show(struct device *dev,
 385                               struct device_attribute *attr, char *buf)
 386{
 387        struct extcon_cable *cable = container_of(attr, struct extcon_cable,
 388                                                  attr_name);
 389        int i = cable->cable_index;
 390
 391        return sprintf(buf, "%s\n",
 392                        extcon_info[cable->edev->supported_cable[i]].name);
 393}
 394
 395static ssize_t cable_state_show(struct device *dev,
 396                                struct device_attribute *attr, char *buf)
 397{
 398        struct extcon_cable *cable = container_of(attr, struct extcon_cable,
 399                                                  attr_state);
 400
 401        int i = cable->cable_index;
 402
 403        return sprintf(buf, "%d\n",
 404                extcon_get_state(cable->edev, cable->edev->supported_cable[i]));
 405}
 406
 407/**
 408 * extcon_sync() - Synchronize the state for an external connector.
 409 * @edev:       the extcon device
 410 *
 411 * Note that this function send a notification in order to synchronize
 412 * the state and property of an external connector.
 413 *
 414 * Returns 0 if success or error number if fail.
 415 */
 416int extcon_sync(struct extcon_dev *edev, unsigned int id)
 417{
 418        char name_buf[120];
 419        char state_buf[120];
 420        char *prop_buf;
 421        char *envp[3];
 422        int env_offset = 0;
 423        int length;
 424        int index;
 425        int state;
 426        unsigned long flags;
 427
 428        if (!edev)
 429                return -EINVAL;
 430
 431        index = find_cable_index_by_id(edev, id);
 432        if (index < 0)
 433                return index;
 434
 435        spin_lock_irqsave(&edev->lock, flags);
 436
 437        state = !!(edev->state & BIT(index));
 438
 439        /*
 440         * Call functions in a raw notifier chain for the specific one
 441         * external connector.
 442         */
 443        raw_notifier_call_chain(&edev->nh[index], state, edev);
 444
 445        /*
 446         * Call functions in a raw notifier chain for the all supported
 447         * external connectors.
 448         */
 449        raw_notifier_call_chain(&edev->nh_all, state, edev);
 450
 451        /* This could be in interrupt handler */
 452        prop_buf = (char *)get_zeroed_page(GFP_ATOMIC);
 453        if (!prop_buf) {
 454                /* Unlock early before uevent */
 455                spin_unlock_irqrestore(&edev->lock, flags);
 456
 457                dev_err(&edev->dev, "out of memory in extcon_set_state\n");
 458                kobject_uevent(&edev->dev.kobj, KOBJ_CHANGE);
 459
 460                return -ENOMEM;
 461        }
 462
 463        length = name_show(&edev->dev, NULL, prop_buf);
 464        if (length > 0) {
 465                if (prop_buf[length - 1] == '\n')
 466                        prop_buf[length - 1] = 0;
 467                snprintf(name_buf, sizeof(name_buf), "NAME=%s", prop_buf);
 468                envp[env_offset++] = name_buf;
 469        }
 470
 471        length = state_show(&edev->dev, NULL, prop_buf);
 472        if (length > 0) {
 473                if (prop_buf[length - 1] == '\n')
 474                        prop_buf[length - 1] = 0;
 475                snprintf(state_buf, sizeof(state_buf), "STATE=%s", prop_buf);
 476                envp[env_offset++] = state_buf;
 477        }
 478        envp[env_offset] = NULL;
 479
 480        /* Unlock early before uevent */
 481        spin_unlock_irqrestore(&edev->lock, flags);
 482        kobject_uevent_env(&edev->dev.kobj, KOBJ_CHANGE, envp);
 483        free_page((unsigned long)prop_buf);
 484
 485        return 0;
 486}
 487EXPORT_SYMBOL_GPL(extcon_sync);
 488
 489/**
 490 * extcon_get_state() - Get the state of an external connector.
 491 * @edev:       the extcon device
 492 * @id:         the unique id indicating an external connector
 493 *
 494 * Returns 0 if success or error number if fail.
 495 */
 496int extcon_get_state(struct extcon_dev *edev, const unsigned int id)
 497{
 498        int index, state;
 499        unsigned long flags;
 500
 501        if (!edev)
 502                return -EINVAL;
 503
 504        index = find_cable_index_by_id(edev, id);
 505        if (index < 0)
 506                return index;
 507
 508        spin_lock_irqsave(&edev->lock, flags);
 509        state = is_extcon_attached(edev, index);
 510        spin_unlock_irqrestore(&edev->lock, flags);
 511
 512        return state;
 513}
 514EXPORT_SYMBOL_GPL(extcon_get_state);
 515
 516/**
 517 * extcon_set_state() - Set the state of an external connector.
 518 * @edev:       the extcon device
 519 * @id:         the unique id indicating an external connector
 520 * @state:      the new state of an external connector.
 521 *              the default semantics is true: attached / false: detached.
 522 *
 523 * Note that this function set the state of an external connector without
 524 * a notification. To synchronize the state of an external connector,
 525 * have to use extcon_set_state_sync() and extcon_sync().
 526 *
 527 * Returns 0 if success or error number if fail.
 528 */
 529int extcon_set_state(struct extcon_dev *edev, unsigned int id, bool state)
 530{
 531        unsigned long flags;
 532        int index, ret = 0;
 533
 534        if (!edev)
 535                return -EINVAL;
 536
 537        index = find_cable_index_by_id(edev, id);
 538        if (index < 0)
 539                return index;
 540
 541        spin_lock_irqsave(&edev->lock, flags);
 542
 543        /* Check whether the external connector's state is changed. */
 544        if (!is_extcon_changed(edev, index, state))
 545                goto out;
 546
 547        if (check_mutually_exclusive(edev,
 548                (edev->state & ~BIT(index)) | (state & BIT(index)))) {
 549                ret = -EPERM;
 550                goto out;
 551        }
 552
 553        /*
 554         * Initialize the value of extcon property before setting
 555         * the detached state for an external connector.
 556         */
 557        if (!state)
 558                init_property(edev, id, index);
 559
 560        /* Update the state for an external connector. */
 561        if (state)
 562                edev->state |= BIT(index);
 563        else
 564                edev->state &= ~(BIT(index));
 565out:
 566        spin_unlock_irqrestore(&edev->lock, flags);
 567
 568        return ret;
 569}
 570EXPORT_SYMBOL_GPL(extcon_set_state);
 571
 572/**
 573 * extcon_set_state_sync() - Set the state of an external connector with sync.
 574 * @edev:       the extcon device
 575 * @id:         the unique id indicating an external connector
 576 * @state:      the new state of external connector.
 577 *              the default semantics is true: attached / false: detached.
 578 *
 579 * Note that this function set the state of external connector
 580 * and synchronize the state by sending a notification.
 581 *
 582 * Returns 0 if success or error number if fail.
 583 */
 584int extcon_set_state_sync(struct extcon_dev *edev, unsigned int id, bool state)
 585{
 586        int ret, index;
 587        unsigned long flags;
 588
 589        index = find_cable_index_by_id(edev, id);
 590        if (index < 0)
 591                return index;
 592
 593        /* Check whether the external connector's state is changed. */
 594        spin_lock_irqsave(&edev->lock, flags);
 595        ret = is_extcon_changed(edev, index, state);
 596        spin_unlock_irqrestore(&edev->lock, flags);
 597        if (!ret)
 598                return 0;
 599
 600        ret = extcon_set_state(edev, id, state);
 601        if (ret < 0)
 602                return ret;
 603
 604        return extcon_sync(edev, id);
 605}
 606EXPORT_SYMBOL_GPL(extcon_set_state_sync);
 607
 608/**
 609 * extcon_get_property() - Get the property value of an external connector.
 610 * @edev:       the extcon device
 611 * @id:         the unique id indicating an external connector
 612 * @prop:       the property id indicating an extcon property
 613 * @prop_val:   the pointer which store the value of extcon property
 614 *
 615 * Note that when getting the property value of external connector,
 616 * the external connector should be attached. If detached state, function
 617 * return 0 without property value. Also, the each property should be
 618 * included in the list of supported properties according to extcon type.
 619 *
 620 * Returns 0 if success or error number if fail.
 621 */
 622int extcon_get_property(struct extcon_dev *edev, unsigned int id,
 623                                unsigned int prop,
 624                                union extcon_property_value *prop_val)
 625{
 626        struct extcon_cable *cable;
 627        unsigned long flags;
 628        int index, ret = 0;
 629
 630        *prop_val = (union extcon_property_value)(0);
 631
 632        if (!edev)
 633                return -EINVAL;
 634
 635        /* Check whether the property is supported or not */
 636        if (!is_extcon_property_supported(id, prop))
 637                return -EINVAL;
 638
 639        /* Find the cable index of external connector by using id */
 640        index = find_cable_index_by_id(edev, id);
 641        if (index < 0)
 642                return index;
 643
 644        spin_lock_irqsave(&edev->lock, flags);
 645
 646        /* Check whether the property is available or not. */
 647        if (!is_extcon_property_capability(edev, id, index, prop)) {
 648                spin_unlock_irqrestore(&edev->lock, flags);
 649                return -EPERM;
 650        }
 651
 652        /*
 653         * Check whether the external connector is attached.
 654         * If external connector is detached, the user can not
 655         * get the property value.
 656         */
 657        if (!is_extcon_attached(edev, index)) {
 658                spin_unlock_irqrestore(&edev->lock, flags);
 659                return 0;
 660        }
 661
 662        cable = &edev->cables[index];
 663
 664        /* Get the property value according to extcon type */
 665        switch (prop) {
 666        case EXTCON_PROP_USB_MIN ... EXTCON_PROP_USB_MAX:
 667                *prop_val = cable->usb_propval[prop - EXTCON_PROP_USB_MIN];
 668                break;
 669        case EXTCON_PROP_CHG_MIN ... EXTCON_PROP_CHG_MAX:
 670                *prop_val = cable->chg_propval[prop - EXTCON_PROP_CHG_MIN];
 671                break;
 672        case EXTCON_PROP_JACK_MIN ... EXTCON_PROP_JACK_MAX:
 673                *prop_val = cable->jack_propval[prop - EXTCON_PROP_JACK_MIN];
 674                break;
 675        case EXTCON_PROP_DISP_MIN ... EXTCON_PROP_DISP_MAX:
 676                *prop_val = cable->disp_propval[prop - EXTCON_PROP_DISP_MIN];
 677                break;
 678        default:
 679                ret = -EINVAL;
 680                break;
 681        }
 682
 683        spin_unlock_irqrestore(&edev->lock, flags);
 684
 685        return ret;
 686}
 687EXPORT_SYMBOL_GPL(extcon_get_property);
 688
 689/**
 690 * extcon_set_property() - Set the property value of an external connector.
 691 * @edev:       the extcon device
 692 * @id:         the unique id indicating an external connector
 693 * @prop:       the property id indicating an extcon property
 694 * @prop_val:   the pointer including the new value of extcon property
 695 *
 696 * Note that each property should be included in the list of supported
 697 * properties according to the extcon type.
 698 *
 699 * Returns 0 if success or error number if fail.
 700 */
 701int extcon_set_property(struct extcon_dev *edev, unsigned int id,
 702                                unsigned int prop,
 703                                union extcon_property_value prop_val)
 704{
 705        struct extcon_cable *cable;
 706        unsigned long flags;
 707        int index, ret = 0;
 708
 709        if (!edev)
 710                return -EINVAL;
 711
 712        /* Check whether the property is supported or not */
 713        if (!is_extcon_property_supported(id, prop))
 714                return -EINVAL;
 715
 716        /* Find the cable index of external connector by using id */
 717        index = find_cable_index_by_id(edev, id);
 718        if (index < 0)
 719                return index;
 720
 721        spin_lock_irqsave(&edev->lock, flags);
 722
 723        /* Check whether the property is available or not. */
 724        if (!is_extcon_property_capability(edev, id, index, prop)) {
 725                spin_unlock_irqrestore(&edev->lock, flags);
 726                return -EPERM;
 727        }
 728
 729        cable = &edev->cables[index];
 730
 731        /* Set the property value according to extcon type */
 732        switch (prop) {
 733        case EXTCON_PROP_USB_MIN ... EXTCON_PROP_USB_MAX:
 734                cable->usb_propval[prop - EXTCON_PROP_USB_MIN] = prop_val;
 735                break;
 736        case EXTCON_PROP_CHG_MIN ... EXTCON_PROP_CHG_MAX:
 737                cable->chg_propval[prop - EXTCON_PROP_CHG_MIN] = prop_val;
 738                break;
 739        case EXTCON_PROP_JACK_MIN ... EXTCON_PROP_JACK_MAX:
 740                cable->jack_propval[prop - EXTCON_PROP_JACK_MIN] = prop_val;
 741                break;
 742        case EXTCON_PROP_DISP_MIN ... EXTCON_PROP_DISP_MAX:
 743                cable->disp_propval[prop - EXTCON_PROP_DISP_MIN] = prop_val;
 744                break;
 745        default:
 746                ret = -EINVAL;
 747                break;
 748        }
 749
 750        spin_unlock_irqrestore(&edev->lock, flags);
 751
 752        return ret;
 753}
 754EXPORT_SYMBOL_GPL(extcon_set_property);
 755
 756/**
 757 * extcon_set_property_sync() - Set property of an external connector with sync.
 758 * @prop_val:   the pointer including the new value of extcon property
 759 *
 760 * Note that when setting the property value of external connector,
 761 * the external connector should be attached. The each property should
 762 * be included in the list of supported properties according to extcon type.
 763 *
 764 * Returns 0 if success or error number if fail.
 765 */
 766int extcon_set_property_sync(struct extcon_dev *edev, unsigned int id,
 767                                unsigned int prop,
 768                                union extcon_property_value prop_val)
 769{
 770        int ret;
 771
 772        ret = extcon_set_property(edev, id, prop, prop_val);
 773        if (ret < 0)
 774                return ret;
 775
 776        return extcon_sync(edev, id);
 777}
 778EXPORT_SYMBOL_GPL(extcon_set_property_sync);
 779
 780/**
 781 * extcon_get_property_capability() - Get the capability of the property
 782 *                                      for an external connector.
 783 * @edev:       the extcon device
 784 * @id:         the unique id indicating an external connector
 785 * @prop:       the property id indicating an extcon property
 786 *
 787 * Returns 1 if the property is available or 0 if not available.
 788 */
 789int extcon_get_property_capability(struct extcon_dev *edev, unsigned int id,
 790                                        unsigned int prop)
 791{
 792        int index;
 793
 794        if (!edev)
 795                return -EINVAL;
 796
 797        /* Check whether the property is supported or not */
 798        if (!is_extcon_property_supported(id, prop))
 799                return -EINVAL;
 800
 801        /* Find the cable index of external connector by using id */
 802        index = find_cable_index_by_id(edev, id);
 803        if (index < 0)
 804                return index;
 805
 806        return is_extcon_property_capability(edev, id, index, prop);
 807}
 808EXPORT_SYMBOL_GPL(extcon_get_property_capability);
 809
 810/**
 811 * extcon_set_property_capability() - Set the capability of the property
 812 *                                      for an external connector.
 813 * @edev:       the extcon device
 814 * @id:         the unique id indicating an external connector
 815 * @prop:       the property id indicating an extcon property
 816 *
 817 * Note that this function set the capability of the property
 818 * for an external connector in order to mark the bit in capability
 819 * bitmap which mean the available state of the property.
 820 *
 821 * Returns 0 if success or error number if fail.
 822 */
 823int extcon_set_property_capability(struct extcon_dev *edev, unsigned int id,
 824                                        unsigned int prop)
 825{
 826        struct extcon_cable *cable;
 827        int index, type, ret = 0;
 828
 829        if (!edev)
 830                return -EINVAL;
 831
 832        /* Check whether the property is supported or not. */
 833        if (!is_extcon_property_supported(id, prop))
 834                return -EINVAL;
 835
 836        /* Find the cable index of external connector by using id. */
 837        index = find_cable_index_by_id(edev, id);
 838        if (index < 0)
 839                return index;
 840
 841        type = get_extcon_type(prop);
 842        if (type < 0)
 843                return type;
 844
 845        cable = &edev->cables[index];
 846
 847        switch (type) {
 848        case EXTCON_TYPE_USB:
 849                __set_bit(prop - EXTCON_PROP_USB_MIN, cable->usb_bits);
 850                break;
 851        case EXTCON_TYPE_CHG:
 852                __set_bit(prop - EXTCON_PROP_CHG_MIN, cable->chg_bits);
 853                break;
 854        case EXTCON_TYPE_JACK:
 855                __set_bit(prop - EXTCON_PROP_JACK_MIN, cable->jack_bits);
 856                break;
 857        case EXTCON_TYPE_DISP:
 858                __set_bit(prop - EXTCON_PROP_DISP_MIN, cable->disp_bits);
 859                break;
 860        default:
 861                ret = -EINVAL;
 862        }
 863
 864        return ret;
 865}
 866EXPORT_SYMBOL_GPL(extcon_set_property_capability);
 867
 868/**
 869 * extcon_get_extcon_dev() - Get the extcon device instance from the name.
 870 * @extcon_name:        the extcon name provided with extcon_dev_register()
 871 *
 872 * Return the pointer of extcon device if success or ERR_PTR(err) if fail.
 873 */
 874struct extcon_dev *extcon_get_extcon_dev(const char *extcon_name)
 875{
 876        struct extcon_dev *sd;
 877
 878        if (!extcon_name)
 879                return ERR_PTR(-EINVAL);
 880
 881        mutex_lock(&extcon_dev_list_lock);
 882        list_for_each_entry(sd, &extcon_dev_list, entry) {
 883                if (!strcmp(sd->name, extcon_name))
 884                        goto out;
 885        }
 886        sd = NULL;
 887out:
 888        mutex_unlock(&extcon_dev_list_lock);
 889        return sd;
 890}
 891EXPORT_SYMBOL_GPL(extcon_get_extcon_dev);
 892
 893/**
 894 * extcon_register_notifier() - Register a notifier block to get notified by
 895 *                              any state changes from the extcon.
 896 * @edev:       the extcon device
 897 * @id:         the unique id indicating an external connector
 898 * @nb:         a notifier block to be registered
 899 *
 900 * Note that the second parameter given to the callback of nb (val) is
 901 * the current state of an external connector and the third pameter
 902 * is the pointer of extcon device.
 903 *
 904 * Returns 0 if success or error number if fail.
 905 */
 906int extcon_register_notifier(struct extcon_dev *edev, unsigned int id,
 907                             struct notifier_block *nb)
 908{
 909        unsigned long flags;
 910        int ret, idx = -EINVAL;
 911
 912        if (!edev || !nb)
 913                return -EINVAL;
 914
 915        idx = find_cable_index_by_id(edev, id);
 916        if (idx < 0)
 917                return idx;
 918
 919        spin_lock_irqsave(&edev->lock, flags);
 920        ret = raw_notifier_chain_register(&edev->nh[idx], nb);
 921        spin_unlock_irqrestore(&edev->lock, flags);
 922
 923        return ret;
 924}
 925EXPORT_SYMBOL_GPL(extcon_register_notifier);
 926
 927/**
 928 * extcon_unregister_notifier() - Unregister a notifier block from the extcon.
 929 * @edev:       the extcon device
 930 * @id:         the unique id indicating an external connector
 931 * @nb:         a notifier block to be registered
 932 *
 933 * Returns 0 if success or error number if fail.
 934 */
 935int extcon_unregister_notifier(struct extcon_dev *edev, unsigned int id,
 936                                struct notifier_block *nb)
 937{
 938        unsigned long flags;
 939        int ret, idx;
 940
 941        if (!edev || !nb)
 942                return -EINVAL;
 943
 944        idx = find_cable_index_by_id(edev, id);
 945        if (idx < 0)
 946                return idx;
 947
 948        spin_lock_irqsave(&edev->lock, flags);
 949        ret = raw_notifier_chain_unregister(&edev->nh[idx], nb);
 950        spin_unlock_irqrestore(&edev->lock, flags);
 951
 952        return ret;
 953}
 954EXPORT_SYMBOL_GPL(extcon_unregister_notifier);
 955
 956/**
 957 * extcon_register_notifier_all() - Register a notifier block for all connectors.
 958 * @edev:       the extcon device
 959 * @nb:         a notifier block to be registered
 960 *
 961 * Note that this function registers a notifier block in order to receive
 962 * the state change of all supported external connectors from extcon device.
 963 * And the second parameter given to the callback of nb (val) is
 964 * the current state and the third pameter is the pointer of extcon device.
 965 *
 966 * Returns 0 if success or error number if fail.
 967 */
 968int extcon_register_notifier_all(struct extcon_dev *edev,
 969                                struct notifier_block *nb)
 970{
 971        unsigned long flags;
 972        int ret;
 973
 974        if (!edev || !nb)
 975                return -EINVAL;
 976
 977        spin_lock_irqsave(&edev->lock, flags);
 978        ret = raw_notifier_chain_register(&edev->nh_all, nb);
 979        spin_unlock_irqrestore(&edev->lock, flags);
 980
 981        return ret;
 982}
 983EXPORT_SYMBOL_GPL(extcon_register_notifier_all);
 984
 985/**
 986 * extcon_unregister_notifier_all() - Unregister a notifier block from extcon.
 987 * @edev:       the extcon device
 988 * @nb:         a notifier block to be registered
 989 *
 990 * Returns 0 if success or error number if fail.
 991 */
 992int extcon_unregister_notifier_all(struct extcon_dev *edev,
 993                                struct notifier_block *nb)
 994{
 995        unsigned long flags;
 996        int ret;
 997
 998        if (!edev || !nb)
 999                return -EINVAL;
1000
1001        spin_lock_irqsave(&edev->lock, flags);
1002        ret = raw_notifier_chain_unregister(&edev->nh_all, nb);
1003        spin_unlock_irqrestore(&edev->lock, flags);
1004
1005        return ret;
1006}
1007EXPORT_SYMBOL_GPL(extcon_unregister_notifier_all);
1008
1009static struct attribute *extcon_attrs[] = {
1010        &dev_attr_state.attr,
1011        &dev_attr_name.attr,
1012        NULL,
1013};
1014ATTRIBUTE_GROUPS(extcon);
1015
1016static int create_extcon_class(void)
1017{
1018        if (!extcon_class) {
1019                extcon_class = class_create(THIS_MODULE, "extcon");
1020                if (IS_ERR(extcon_class))
1021                        return PTR_ERR(extcon_class);
1022                extcon_class->dev_groups = extcon_groups;
1023        }
1024
1025        return 0;
1026}
1027
1028static void extcon_dev_release(struct device *dev)
1029{
1030}
1031
1032static const char *muex_name = "mutually_exclusive";
1033static void dummy_sysfs_dev_release(struct device *dev)
1034{
1035}
1036
1037/*
1038 * extcon_dev_allocate() - Allocate the memory of extcon device.
1039 * @supported_cable:    the array of the supported external connectors
1040 *                      ending with EXTCON_NONE.
1041 *
1042 * Note that this function allocates the memory for extcon device 
1043 * and initialize default setting for the extcon device.
1044 *
1045 * Returns the pointer memory of allocated extcon_dev if success
1046 * or ERR_PTR(err) if fail.
1047 */
1048struct extcon_dev *extcon_dev_allocate(const unsigned int *supported_cable)
1049{
1050        struct extcon_dev *edev;
1051
1052        if (!supported_cable)
1053                return ERR_PTR(-EINVAL);
1054
1055        edev = kzalloc(sizeof(*edev), GFP_KERNEL);
1056        if (!edev)
1057                return ERR_PTR(-ENOMEM);
1058
1059        edev->max_supported = 0;
1060        edev->supported_cable = supported_cable;
1061
1062        return edev;
1063}
1064
1065/*
1066 * extcon_dev_free() - Free the memory of extcon device.
1067 * @edev:       the extcon device
1068 */
1069void extcon_dev_free(struct extcon_dev *edev)
1070{
1071        kfree(edev);
1072}
1073EXPORT_SYMBOL_GPL(extcon_dev_free);
1074
1075/**
1076 * extcon_dev_register() - Register an new extcon device
1077 * @edev:       the extcon device to be registered
1078 *
1079 * Among the members of edev struct, please set the "user initializing data"
1080 * do not set the values of "internal data", which are initialized by
1081 * this function.
1082 *
1083 * Note that before calling this funciton, have to allocate the memory
1084 * of an extcon device by using the extcon_dev_allocate(). And the extcon
1085 * dev should include the supported_cable information.
1086 *
1087 * Returns 0 if success or error number if fail.
1088 */
1089int extcon_dev_register(struct extcon_dev *edev)
1090{
1091        int ret, index = 0;
1092        static atomic_t edev_no = ATOMIC_INIT(-1);
1093
1094        if (!extcon_class) {
1095                ret = create_extcon_class();
1096                if (ret < 0)
1097                        return ret;
1098        }
1099
1100        if (!edev || !edev->supported_cable)
1101                return -EINVAL;
1102
1103        for (; edev->supported_cable[index] != EXTCON_NONE; index++);
1104
1105        edev->max_supported = index;
1106        if (index > SUPPORTED_CABLE_MAX) {
1107                dev_err(&edev->dev,
1108                        "exceed the maximum number of supported cables\n");
1109                return -EINVAL;
1110        }
1111
1112        edev->dev.class = extcon_class;
1113        edev->dev.release = extcon_dev_release;
1114
1115        edev->name = dev_name(edev->dev.parent);
1116        if (IS_ERR_OR_NULL(edev->name)) {
1117                dev_err(&edev->dev,
1118                        "extcon device name is null\n");
1119                return -EINVAL;
1120        }
1121        dev_set_name(&edev->dev, "extcon%lu",
1122                        (unsigned long)atomic_inc_return(&edev_no));
1123
1124        if (edev->max_supported) {
1125                char buf[10];
1126                char *str;
1127                struct extcon_cable *cable;
1128
1129                edev->cables = kcalloc(edev->max_supported,
1130                                       sizeof(struct extcon_cable),
1131                                       GFP_KERNEL);
1132                if (!edev->cables) {
1133                        ret = -ENOMEM;
1134                        goto err_sysfs_alloc;
1135                }
1136                for (index = 0; index < edev->max_supported; index++) {
1137                        cable = &edev->cables[index];
1138
1139                        snprintf(buf, 10, "cable.%d", index);
1140                        str = kzalloc(strlen(buf) + 1,
1141                                      GFP_KERNEL);
1142                        if (!str) {
1143                                for (index--; index >= 0; index--) {
1144                                        cable = &edev->cables[index];
1145                                        kfree(cable->attr_g.name);
1146                                }
1147                                ret = -ENOMEM;
1148
1149                                goto err_alloc_cables;
1150                        }
1151                        strcpy(str, buf);
1152
1153                        cable->edev = edev;
1154                        cable->cable_index = index;
1155                        cable->attrs[0] = &cable->attr_name.attr;
1156                        cable->attrs[1] = &cable->attr_state.attr;
1157                        cable->attrs[2] = NULL;
1158                        cable->attr_g.name = str;
1159                        cable->attr_g.attrs = cable->attrs;
1160
1161                        sysfs_attr_init(&cable->attr_name.attr);
1162                        cable->attr_name.attr.name = "name";
1163                        cable->attr_name.attr.mode = 0444;
1164                        cable->attr_name.show = cable_name_show;
1165
1166                        sysfs_attr_init(&cable->attr_state.attr);
1167                        cable->attr_state.attr.name = "state";
1168                        cable->attr_state.attr.mode = 0444;
1169                        cable->attr_state.show = cable_state_show;
1170                }
1171        }
1172
1173        if (edev->max_supported && edev->mutually_exclusive) {
1174                char buf[80];
1175                char *name;
1176
1177                /* Count the size of mutually_exclusive array */
1178                for (index = 0; edev->mutually_exclusive[index]; index++)
1179                        ;
1180
1181                edev->attrs_muex = kcalloc(index + 1,
1182                                           sizeof(struct attribute *),
1183                                           GFP_KERNEL);
1184                if (!edev->attrs_muex) {
1185                        ret = -ENOMEM;
1186                        goto err_muex;
1187                }
1188
1189                edev->d_attrs_muex = kcalloc(index,
1190                                             sizeof(struct device_attribute),
1191                                             GFP_KERNEL);
1192                if (!edev->d_attrs_muex) {
1193                        ret = -ENOMEM;
1194                        kfree(edev->attrs_muex);
1195                        goto err_muex;
1196                }
1197
1198                for (index = 0; edev->mutually_exclusive[index]; index++) {
1199                        sprintf(buf, "0x%x", edev->mutually_exclusive[index]);
1200                        name = kzalloc(strlen(buf) + 1,
1201                                       GFP_KERNEL);
1202                        if (!name) {
1203                                for (index--; index >= 0; index--) {
1204                                        kfree(edev->d_attrs_muex[index].attr.
1205                                              name);
1206                                }
1207                                kfree(edev->d_attrs_muex);
1208                                kfree(edev->attrs_muex);
1209                                ret = -ENOMEM;
1210                                goto err_muex;
1211                        }
1212                        strcpy(name, buf);
1213                        sysfs_attr_init(&edev->d_attrs_muex[index].attr);
1214                        edev->d_attrs_muex[index].attr.name = name;
1215                        edev->d_attrs_muex[index].attr.mode = 0000;
1216                        edev->attrs_muex[index] = &edev->d_attrs_muex[index]
1217                                                        .attr;
1218                }
1219                edev->attr_g_muex.name = muex_name;
1220                edev->attr_g_muex.attrs = edev->attrs_muex;
1221
1222        }
1223
1224        if (edev->max_supported) {
1225                edev->extcon_dev_type.groups =
1226                        kcalloc(edev->max_supported + 2,
1227                                sizeof(struct attribute_group *),
1228                                GFP_KERNEL);
1229                if (!edev->extcon_dev_type.groups) {
1230                        ret = -ENOMEM;
1231                        goto err_alloc_groups;
1232                }
1233
1234                edev->extcon_dev_type.name = dev_name(&edev->dev);
1235                edev->extcon_dev_type.release = dummy_sysfs_dev_release;
1236
1237                for (index = 0; index < edev->max_supported; index++)
1238                        edev->extcon_dev_type.groups[index] =
1239                                &edev->cables[index].attr_g;
1240                if (edev->mutually_exclusive)
1241                        edev->extcon_dev_type.groups[index] =
1242                                &edev->attr_g_muex;
1243
1244                edev->dev.type = &edev->extcon_dev_type;
1245        }
1246
1247        ret = device_register(&edev->dev);
1248        if (ret) {
1249                put_device(&edev->dev);
1250                goto err_dev;
1251        }
1252
1253        spin_lock_init(&edev->lock);
1254        edev->nh = devm_kcalloc(&edev->dev, edev->max_supported,
1255                                sizeof(*edev->nh), GFP_KERNEL);
1256        if (!edev->nh) {
1257                ret = -ENOMEM;
1258                goto err_dev;
1259        }
1260
1261        for (index = 0; index < edev->max_supported; index++)
1262                RAW_INIT_NOTIFIER_HEAD(&edev->nh[index]);
1263
1264        RAW_INIT_NOTIFIER_HEAD(&edev->nh_all);
1265
1266        dev_set_drvdata(&edev->dev, edev);
1267        edev->state = 0;
1268
1269        mutex_lock(&extcon_dev_list_lock);
1270        list_add(&edev->entry, &extcon_dev_list);
1271        mutex_unlock(&extcon_dev_list_lock);
1272
1273        return 0;
1274
1275err_dev:
1276        if (edev->max_supported)
1277                kfree(edev->extcon_dev_type.groups);
1278err_alloc_groups:
1279        if (edev->max_supported && edev->mutually_exclusive) {
1280                for (index = 0; edev->mutually_exclusive[index]; index++)
1281                        kfree(edev->d_attrs_muex[index].attr.name);
1282                kfree(edev->d_attrs_muex);
1283                kfree(edev->attrs_muex);
1284        }
1285err_muex:
1286        for (index = 0; index < edev->max_supported; index++)
1287                kfree(edev->cables[index].attr_g.name);
1288err_alloc_cables:
1289        if (edev->max_supported)
1290                kfree(edev->cables);
1291err_sysfs_alloc:
1292        return ret;
1293}
1294EXPORT_SYMBOL_GPL(extcon_dev_register);
1295
1296/**
1297 * extcon_dev_unregister() - Unregister the extcon device.
1298 * @edev:       the extcon device to be unregistered.
1299 *
1300 * Note that this does not call kfree(edev) because edev was not allocated
1301 * by this class.
1302 */
1303void extcon_dev_unregister(struct extcon_dev *edev)
1304{
1305        int index;
1306
1307        if (!edev)
1308                return;
1309
1310        mutex_lock(&extcon_dev_list_lock);
1311        list_del(&edev->entry);
1312        mutex_unlock(&extcon_dev_list_lock);
1313
1314        if (IS_ERR_OR_NULL(get_device(&edev->dev))) {
1315                dev_err(&edev->dev, "Failed to unregister extcon_dev (%s)\n",
1316                                dev_name(&edev->dev));
1317                return;
1318        }
1319
1320        device_unregister(&edev->dev);
1321
1322        if (edev->mutually_exclusive && edev->max_supported) {
1323                for (index = 0; edev->mutually_exclusive[index];
1324                                index++)
1325                        kfree(edev->d_attrs_muex[index].attr.name);
1326                kfree(edev->d_attrs_muex);
1327                kfree(edev->attrs_muex);
1328        }
1329
1330        for (index = 0; index < edev->max_supported; index++)
1331                kfree(edev->cables[index].attr_g.name);
1332
1333        if (edev->max_supported) {
1334                kfree(edev->extcon_dev_type.groups);
1335                kfree(edev->cables);
1336        }
1337
1338        put_device(&edev->dev);
1339}
1340EXPORT_SYMBOL_GPL(extcon_dev_unregister);
1341
1342#ifdef CONFIG_OF
1343
1344/*
1345 * extcon_find_edev_by_node - Find the extcon device from devicetree.
1346 * @node        : OF node identifying edev
1347 *
1348 * Return the pointer of extcon device if success or ERR_PTR(err) if fail.
1349 */
1350struct extcon_dev *extcon_find_edev_by_node(struct device_node *node)
1351{
1352        struct extcon_dev *edev;
1353
1354        mutex_lock(&extcon_dev_list_lock);
1355        list_for_each_entry(edev, &extcon_dev_list, entry)
1356                if (edev->dev.parent && edev->dev.parent->of_node == node)
1357                        goto out;
1358        edev = ERR_PTR(-EPROBE_DEFER);
1359out:
1360        mutex_unlock(&extcon_dev_list_lock);
1361
1362        return edev;
1363}
1364
1365/*
1366 * extcon_get_edev_by_phandle - Get the extcon device from devicetree.
1367 * @dev         : the instance to the given device
1368 * @index       : the index into list of extcon_dev
1369 *
1370 * Return the pointer of extcon device if success or ERR_PTR(err) if fail.
1371 */
1372struct extcon_dev *extcon_get_edev_by_phandle(struct device *dev, int index)
1373{
1374        struct device_node *node;
1375        struct extcon_dev *edev;
1376
1377        if (!dev)
1378                return ERR_PTR(-EINVAL);
1379
1380        if (!dev->of_node) {
1381                dev_dbg(dev, "device does not have a device node entry\n");
1382                return ERR_PTR(-EINVAL);
1383        }
1384
1385        node = of_parse_phandle(dev->of_node, "extcon", index);
1386        if (!node) {
1387                dev_dbg(dev, "failed to get phandle in %pOF node\n",
1388                        dev->of_node);
1389                return ERR_PTR(-ENODEV);
1390        }
1391
1392        edev = extcon_find_edev_by_node(node);
1393        of_node_put(node);
1394
1395        return edev;
1396}
1397
1398#else
1399
1400struct extcon_dev *extcon_find_edev_by_node(struct device_node *node)
1401{
1402        return ERR_PTR(-ENOSYS);
1403}
1404
1405struct extcon_dev *extcon_get_edev_by_phandle(struct device *dev, int index)
1406{
1407        return ERR_PTR(-ENOSYS);
1408}
1409
1410#endif /* CONFIG_OF */
1411
1412EXPORT_SYMBOL_GPL(extcon_find_edev_by_node);
1413EXPORT_SYMBOL_GPL(extcon_get_edev_by_phandle);
1414
1415/**
1416 * extcon_get_edev_name() - Get the name of the extcon device.
1417 * @edev:       the extcon device
1418 */
1419const char *extcon_get_edev_name(struct extcon_dev *edev)
1420{
1421        return !edev ? NULL : edev->name;
1422}
1423
1424static int __init extcon_class_init(void)
1425{
1426        return create_extcon_class();
1427}
1428module_init(extcon_class_init);
1429
1430static void __exit extcon_class_exit(void)
1431{
1432        class_destroy(extcon_class);
1433}
1434module_exit(extcon_class_exit);
1435
1436MODULE_AUTHOR("Chanwoo Choi <cw00.choi@samsung.com>");
1437MODULE_AUTHOR("MyungJoo Ham <myungjoo.ham@samsung.com>");
1438MODULE_DESCRIPTION("External Connector (extcon) framework");
1439MODULE_LICENSE("GPL v2");
1440