1 // SPDX-License-Identifier: GPL-2.0+ 2 /* MDIO Bus interface 3 * 4 * Author: Andy Fleming 5 * 6 * Copyright (c) 2004 Freescale Semiconductor, Inc. 7 */ 8 9 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt 10 11 #include <linux/delay.h> 12 #include <linux/device.h> 13 #include <linux/errno.h> 14 #include <linux/etherdevice.h> 15 #include <linux/ethtool.h> 16 #include <linux/gpio.h> 17 #include <linux/gpio/consumer.h> 18 #include <linux/init.h> 19 #include <linux/interrupt.h> 20 #include <linux/io.h> 21 #include <linux/kernel.h> 22 #include <linux/mii.h> 23 #include <linux/mm.h> 24 #include <linux/module.h> 25 #include <linux/netdevice.h> 26 #include <linux/of_device.h> 27 #include <linux/of_gpio.h> 28 #include <linux/of_mdio.h> 29 #include <linux/phy.h> 30 #include <linux/reset.h> 31 #include <linux/skbuff.h> 32 #include <linux/slab.h> 33 #include <linux/spinlock.h> 34 #include <linux/string.h> 35 #include <linux/uaccess.h> 36 #include <linux/unistd.h> 37 38 #define CREATE_TRACE_POINTS 39 #include <trace/events/mdio.h> 40 41 #include "mdio-boardinfo.h" 42 43 static int mdiobus_register_gpiod(struct mdio_device *mdiodev) 44 { 45 /* Deassert the optional reset signal */ 46 mdiodev->reset_gpio = gpiod_get_optional(&mdiodev->dev, 47 "reset", GPIOD_OUT_LOW); 48 if (IS_ERR(mdiodev->reset_gpio)) 49 return PTR_ERR(mdiodev->reset_gpio); 50 51 if (mdiodev->reset_gpio) 52 gpiod_set_consumer_name(mdiodev->reset_gpio, "PHY reset"); 53 54 return 0; 55 } 56 57 static int mdiobus_register_reset(struct mdio_device *mdiodev) 58 { 59 struct reset_control *reset; 60 61 reset = reset_control_get_optional_exclusive(&mdiodev->dev, "phy"); 62 if (IS_ERR(reset)) 63 return PTR_ERR(reset); 64 65 mdiodev->reset_ctrl = reset; 66 67 return 0; 68 } 69 70 int mdiobus_register_device(struct mdio_device *mdiodev) 71 { 72 int err; 73 74 if (mdiodev->bus->mdio_map[mdiodev->addr]) 75 return -EBUSY; 76 77 if (mdiodev->flags & MDIO_DEVICE_FLAG_PHY) { 78 err = mdiobus_register_gpiod(mdiodev); 79 if (err) 80 return err; 81 82 err = mdiobus_register_reset(mdiodev); 83 if (err) 84 return err; 85 86 /* Assert the reset signal */ 87 mdio_device_reset(mdiodev, 1); 88 } 89 90 mdiodev->bus->mdio_map[mdiodev->addr] = mdiodev; 91 92 return 0; 93 } 94 EXPORT_SYMBOL(mdiobus_register_device); 95 96 int mdiobus_unregister_device(struct mdio_device *mdiodev) 97 { 98 if (mdiodev->bus->mdio_map[mdiodev->addr] != mdiodev) 99 return -EINVAL; 100 101 reset_control_put(mdiodev->reset_ctrl); 102 103 mdiodev->bus->mdio_map[mdiodev->addr] = NULL; 104 105 return 0; 106 } 107 EXPORT_SYMBOL(mdiobus_unregister_device); 108 109 struct phy_device *mdiobus_get_phy(struct mii_bus *bus, int addr) 110 { 111 struct mdio_device *mdiodev = bus->mdio_map[addr]; 112 113 if (!mdiodev) 114 return NULL; 115 116 if (!(mdiodev->flags & MDIO_DEVICE_FLAG_PHY)) 117 return NULL; 118 119 return container_of(mdiodev, struct phy_device, mdio); 120 } 121 EXPORT_SYMBOL(mdiobus_get_phy); 122 123 bool mdiobus_is_registered_device(struct mii_bus *bus, int addr) 124 { 125 return bus->mdio_map[addr]; 126 } 127 EXPORT_SYMBOL(mdiobus_is_registered_device); 128 129 /** 130 * mdiobus_alloc_size - allocate a mii_bus structure 131 * @size: extra amount of memory to allocate for private storage. 132 * If non-zero, then bus->priv is points to that memory. 133 * 134 * Description: called by a bus driver to allocate an mii_bus 135 * structure to fill in. 136 */ 137 struct mii_bus *mdiobus_alloc_size(size_t size) 138 { 139 struct mii_bus *bus; 140 size_t aligned_size = ALIGN(sizeof(*bus), NETDEV_ALIGN); 141 size_t alloc_size; 142 int i; 143 144 /* If we alloc extra space, it should be aligned */ 145 if (size) 146 alloc_size = aligned_size + size; 147 else 148 alloc_size = sizeof(*bus); 149 150 bus = kzalloc(alloc_size, GFP_KERNEL); 151 if (!bus) 152 return NULL; 153 154 bus->state = MDIOBUS_ALLOCATED; 155 if (size) 156 bus->priv = (void *)bus + aligned_size; 157 158 /* Initialise the interrupts to polling and 64-bit seqcounts */ 159 for (i = 0; i < PHY_MAX_ADDR; i++) { 160 bus->irq[i] = PHY_POLL; 161 u64_stats_init(&bus->stats[i].syncp); 162 } 163 164 return bus; 165 } 166 EXPORT_SYMBOL(mdiobus_alloc_size); 167 168 /** 169 * mdiobus_release - mii_bus device release callback 170 * @d: the target struct device that contains the mii_bus 171 * 172 * Description: called when the last reference to an mii_bus is 173 * dropped, to free the underlying memory. 174 */ 175 static void mdiobus_release(struct device *d) 176 { 177 struct mii_bus *bus = to_mii_bus(d); 178 179 BUG_ON(bus->state != MDIOBUS_RELEASED && 180 /* for compatibility with error handling in drivers */ 181 bus->state != MDIOBUS_ALLOCATED); 182 kfree(bus); 183 } 184 185 struct mdio_bus_stat_attr { 186 int addr; 187 unsigned int field_offset; 188 }; 189 190 static u64 mdio_bus_get_stat(struct mdio_bus_stats *s, unsigned int offset) 191 { 192 const char *p = (const char *)s + offset; 193 unsigned int start; 194 u64 val = 0; 195 196 do { 197 start = u64_stats_fetch_begin(&s->syncp); 198 val = u64_stats_read((const u64_stats_t *)p); 199 } while (u64_stats_fetch_retry(&s->syncp, start)); 200 201 return val; 202 } 203 204 static u64 mdio_bus_get_global_stat(struct mii_bus *bus, unsigned int offset) 205 { 206 unsigned int i; 207 u64 val = 0; 208 209 for (i = 0; i < PHY_MAX_ADDR; i++) 210 val += mdio_bus_get_stat(&bus->stats[i], offset); 211 212 return val; 213 } 214 215 static ssize_t mdio_bus_stat_field_show(struct device *dev, 216 struct device_attribute *attr, 217 char *buf) 218 { 219 struct mii_bus *bus = to_mii_bus(dev); 220 struct mdio_bus_stat_attr *sattr; 221 struct dev_ext_attribute *eattr; 222 u64 val; 223 224 eattr = container_of(attr, struct dev_ext_attribute, attr); 225 sattr = eattr->var; 226 227 if (sattr->addr < 0) 228 val = mdio_bus_get_global_stat(bus, sattr->field_offset); 229 else 230 val = mdio_bus_get_stat(&bus->stats[sattr->addr], 231 sattr->field_offset); 232 233 return sprintf(buf, "%llu\n", val); 234 } 235 236 static ssize_t mdio_bus_device_stat_field_show(struct device *dev, 237 struct device_attribute *attr, 238 char *buf) 239 { 240 struct mdio_device *mdiodev = to_mdio_device(dev); 241 struct mii_bus *bus = mdiodev->bus; 242 struct mdio_bus_stat_attr *sattr; 243 struct dev_ext_attribute *eattr; 244 int addr = mdiodev->addr; 245 u64 val; 246 247 eattr = container_of(attr, struct dev_ext_attribute, attr); 248 sattr = eattr->var; 249 250 val = mdio_bus_get_stat(&bus->stats[addr], sattr->field_offset); 251 252 return sprintf(buf, "%llu\n", val); 253 } 254 255 #define MDIO_BUS_STATS_ATTR_DECL(field, file) \ 256 static struct dev_ext_attribute dev_attr_mdio_bus_##field = { \ 257 .attr = { .attr = { .name = file, .mode = 0444 }, \ 258 .show = mdio_bus_stat_field_show, \ 259 }, \ 260 .var = &((struct mdio_bus_stat_attr) { \ 261 -1, offsetof(struct mdio_bus_stats, field) \ 262 }), \ 263 }; \ 264 static struct dev_ext_attribute dev_attr_mdio_bus_device_##field = { \ 265 .attr = { .attr = { .name = file, .mode = 0444 }, \ 266 .show = mdio_bus_device_stat_field_show, \ 267 }, \ 268 .var = &((struct mdio_bus_stat_attr) { \ 269 -1, offsetof(struct mdio_bus_stats, field) \ 270 }), \ 271 }; 272 273 #define MDIO_BUS_STATS_ATTR(field) \ 274 MDIO_BUS_STATS_ATTR_DECL(field, __stringify(field)) 275 276 MDIO_BUS_STATS_ATTR(transfers); 277 MDIO_BUS_STATS_ATTR(errors); 278 MDIO_BUS_STATS_ATTR(writes); 279 MDIO_BUS_STATS_ATTR(reads); 280 281 #define MDIO_BUS_STATS_ADDR_ATTR_DECL(field, addr, file) \ 282 static struct dev_ext_attribute dev_attr_mdio_bus_addr_##field##_##addr = { \ 283 .attr = { .attr = { .name = file, .mode = 0444 }, \ 284 .show = mdio_bus_stat_field_show, \ 285 }, \ 286 .var = &((struct mdio_bus_stat_attr) { \ 287 addr, offsetof(struct mdio_bus_stats, field) \ 288 }), \ 289 } 290 291 #define MDIO_BUS_STATS_ADDR_ATTR(field, addr) \ 292 MDIO_BUS_STATS_ADDR_ATTR_DECL(field, addr, \ 293 __stringify(field) "_" __stringify(addr)) 294 295 #define MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(addr) \ 296 MDIO_BUS_STATS_ADDR_ATTR(transfers, addr); \ 297 MDIO_BUS_STATS_ADDR_ATTR(errors, addr); \ 298 MDIO_BUS_STATS_ADDR_ATTR(writes, addr); \ 299 MDIO_BUS_STATS_ADDR_ATTR(reads, addr) \ 300 301 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(0); 302 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(1); 303 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(2); 304 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(3); 305 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(4); 306 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(5); 307 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(6); 308 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(7); 309 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(8); 310 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(9); 311 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(10); 312 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(11); 313 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(12); 314 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(13); 315 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(14); 316 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(15); 317 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(16); 318 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(17); 319 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(18); 320 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(19); 321 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(20); 322 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(21); 323 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(22); 324 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(23); 325 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(24); 326 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(25); 327 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(26); 328 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(27); 329 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(28); 330 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(29); 331 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(30); 332 MDIO_BUS_STATS_ADDR_ATTR_GROUP_DECL(31); 333 334 #define MDIO_BUS_STATS_ADDR_ATTR_GROUP(addr) \ 335 &dev_attr_mdio_bus_addr_transfers_##addr.attr.attr, \ 336 &dev_attr_mdio_bus_addr_errors_##addr.attr.attr, \ 337 &dev_attr_mdio_bus_addr_writes_##addr.attr.attr, \ 338 &dev_attr_mdio_bus_addr_reads_##addr.attr.attr \ 339 340 static struct attribute *mdio_bus_statistics_attrs[] = { 341 &dev_attr_mdio_bus_transfers.attr.attr, 342 &dev_attr_mdio_bus_errors.attr.attr, 343 &dev_attr_mdio_bus_writes.attr.attr, 344 &dev_attr_mdio_bus_reads.attr.attr, 345 MDIO_BUS_STATS_ADDR_ATTR_GROUP(0), 346 MDIO_BUS_STATS_ADDR_ATTR_GROUP(1), 347 MDIO_BUS_STATS_ADDR_ATTR_GROUP(2), 348 MDIO_BUS_STATS_ADDR_ATTR_GROUP(3), 349 MDIO_BUS_STATS_ADDR_ATTR_GROUP(4), 350 MDIO_BUS_STATS_ADDR_ATTR_GROUP(5), 351 MDIO_BUS_STATS_ADDR_ATTR_GROUP(6), 352 MDIO_BUS_STATS_ADDR_ATTR_GROUP(7), 353 MDIO_BUS_STATS_ADDR_ATTR_GROUP(8), 354 MDIO_BUS_STATS_ADDR_ATTR_GROUP(9), 355 MDIO_BUS_STATS_ADDR_ATTR_GROUP(10), 356 MDIO_BUS_STATS_ADDR_ATTR_GROUP(11), 357 MDIO_BUS_STATS_ADDR_ATTR_GROUP(12), 358 MDIO_BUS_STATS_ADDR_ATTR_GROUP(13), 359 MDIO_BUS_STATS_ADDR_ATTR_GROUP(14), 360 MDIO_BUS_STATS_ADDR_ATTR_GROUP(15), 361 MDIO_BUS_STATS_ADDR_ATTR_GROUP(16), 362 MDIO_BUS_STATS_ADDR_ATTR_GROUP(17), 363 MDIO_BUS_STATS_ADDR_ATTR_GROUP(18), 364 MDIO_BUS_STATS_ADDR_ATTR_GROUP(19), 365 MDIO_BUS_STATS_ADDR_ATTR_GROUP(20), 366 MDIO_BUS_STATS_ADDR_ATTR_GROUP(21), 367 MDIO_BUS_STATS_ADDR_ATTR_GROUP(22), 368 MDIO_BUS_STATS_ADDR_ATTR_GROUP(23), 369 MDIO_BUS_STATS_ADDR_ATTR_GROUP(24), 370 MDIO_BUS_STATS_ADDR_ATTR_GROUP(25), 371 MDIO_BUS_STATS_ADDR_ATTR_GROUP(26), 372 MDIO_BUS_STATS_ADDR_ATTR_GROUP(27), 373 MDIO_BUS_STATS_ADDR_ATTR_GROUP(28), 374 MDIO_BUS_STATS_ADDR_ATTR_GROUP(29), 375 MDIO_BUS_STATS_ADDR_ATTR_GROUP(30), 376 MDIO_BUS_STATS_ADDR_ATTR_GROUP(31), 377 NULL, 378 }; 379 380 static const struct attribute_group mdio_bus_statistics_group = { 381 .name = "statistics", 382 .attrs = mdio_bus_statistics_attrs, 383 }; 384 385 static const struct attribute_group *mdio_bus_groups[] = { 386 &mdio_bus_statistics_group, 387 NULL, 388 }; 389 390 static struct class mdio_bus_class = { 391 .name = "mdio_bus", 392 .dev_release = mdiobus_release, 393 .dev_groups = mdio_bus_groups, 394 }; 395 396 /** 397 * mdio_find_bus - Given the name of a mdiobus, find the mii_bus. 398 * @mdio_name: The name of a mdiobus. 399 * 400 * Returns a reference to the mii_bus, or NULL if none found. The 401 * embedded struct device will have its reference count incremented, 402 * and this must be put_deviced'ed once the bus is finished with. 403 */ 404 struct mii_bus *mdio_find_bus(const char *mdio_name) 405 { 406 struct device *d; 407 408 d = class_find_device_by_name(&mdio_bus_class, mdio_name); 409 return d ? to_mii_bus(d) : NULL; 410 } 411 EXPORT_SYMBOL(mdio_find_bus); 412 413 #if IS_ENABLED(CONFIG_OF_MDIO) 414 /** 415 * of_mdio_find_bus - Given an mii_bus node, find the mii_bus. 416 * @mdio_bus_np: Pointer to the mii_bus. 417 * 418 * Returns a reference to the mii_bus, or NULL if none found. The 419 * embedded struct device will have its reference count incremented, 420 * and this must be put once the bus is finished with. 421 * 422 * Because the association of a device_node and mii_bus is made via 423 * of_mdiobus_register(), the mii_bus cannot be found before it is 424 * registered with of_mdiobus_register(). 425 * 426 */ 427 struct mii_bus *of_mdio_find_bus(struct device_node *mdio_bus_np) 428 { 429 struct device *d; 430 431 if (!mdio_bus_np) 432 return NULL; 433 434 d = class_find_device_by_of_node(&mdio_bus_class, mdio_bus_np); 435 return d ? to_mii_bus(d) : NULL; 436 } 437 EXPORT_SYMBOL(of_mdio_find_bus); 438 439 /* Walk the list of subnodes of a mdio bus and look for a node that 440 * matches the mdio device's address with its 'reg' property. If 441 * found, set the of_node pointer for the mdio device. This allows 442 * auto-probed phy devices to be supplied with information passed in 443 * via DT. 444 */ 445 static void of_mdiobus_link_mdiodev(struct mii_bus *bus, 446 struct mdio_device *mdiodev) 447 { 448 struct device *dev = &mdiodev->dev; 449 struct device_node *child; 450 451 if (dev->of_node || !bus->dev.of_node) 452 return; 453 454 for_each_available_child_of_node(bus->dev.of_node, child) { 455 int addr; 456 457 addr = of_mdio_parse_addr(dev, child); 458 if (addr < 0) 459 continue; 460 461 if (addr == mdiodev->addr) { 462 device_set_node(dev, of_fwnode_handle(child)); 463 /* The refcount on "child" is passed to the mdio 464 * device. Do _not_ use of_node_put(child) here. 465 */ 466 return; 467 } 468 } 469 } 470 #else /* !IS_ENABLED(CONFIG_OF_MDIO) */ 471 static inline void of_mdiobus_link_mdiodev(struct mii_bus *mdio, 472 struct mdio_device *mdiodev) 473 { 474 } 475 #endif 476 477 /** 478 * mdiobus_create_device - create a full MDIO device given 479 * a mdio_board_info structure 480 * @bus: MDIO bus to create the devices on 481 * @bi: mdio_board_info structure describing the devices 482 * 483 * Returns 0 on success or < 0 on error. 484 */ 485 static int mdiobus_create_device(struct mii_bus *bus, 486 struct mdio_board_info *bi) 487 { 488 struct mdio_device *mdiodev; 489 int ret = 0; 490 491 mdiodev = mdio_device_create(bus, bi->mdio_addr); 492 if (IS_ERR(mdiodev)) 493 return -ENODEV; 494 495 strncpy(mdiodev->modalias, bi->modalias, 496 sizeof(mdiodev->modalias)); 497 mdiodev->bus_match = mdio_device_bus_match; 498 mdiodev->dev.platform_data = (void *)bi->platform_data; 499 500 ret = mdio_device_register(mdiodev); 501 if (ret) 502 mdio_device_free(mdiodev); 503 504 return ret; 505 } 506 507 /** 508 * __mdiobus_register - bring up all the PHYs on a given bus and attach them to bus 509 * @bus: target mii_bus 510 * @owner: module containing bus accessor functions 511 * 512 * Description: Called by a bus driver to bring up all the PHYs 513 * on a given bus, and attach them to the bus. Drivers should use 514 * mdiobus_register() rather than __mdiobus_register() unless they 515 * need to pass a specific owner module. MDIO devices which are not 516 * PHYs will not be brought up by this function. They are expected 517 * to be explicitly listed in DT and instantiated by of_mdiobus_register(). 518 * 519 * Returns 0 on success or < 0 on error. 520 */ 521 int __mdiobus_register(struct mii_bus *bus, struct module *owner) 522 { 523 struct mdio_device *mdiodev; 524 int i, err; 525 struct gpio_desc *gpiod; 526 527 if (NULL == bus || NULL == bus->name || 528 NULL == bus->read || NULL == bus->write) 529 return -EINVAL; 530 531 if (bus->parent && bus->parent->of_node) 532 bus->parent->of_node->fwnode.flags |= 533 FWNODE_FLAG_NEEDS_CHILD_BOUND_ON_ADD; 534 535 BUG_ON(bus->state != MDIOBUS_ALLOCATED && 536 bus->state != MDIOBUS_UNREGISTERED); 537 538 bus->owner = owner; 539 bus->dev.parent = bus->parent; 540 bus->dev.class = &mdio_bus_class; 541 bus->dev.groups = NULL; 542 dev_set_name(&bus->dev, "%s", bus->id); 543 544 /* We need to set state to MDIOBUS_UNREGISTERED to correctly release 545 * the device in mdiobus_free() 546 * 547 * State will be updated later in this function in case of success 548 */ 549 bus->state = MDIOBUS_UNREGISTERED; 550 551 err = device_register(&bus->dev); 552 if (err) { 553 pr_err("mii_bus %s failed to register\n", bus->id); 554 return -EINVAL; 555 } 556 557 mutex_init(&bus->mdio_lock); 558 mutex_init(&bus->shared_lock); 559 560 /* assert bus level PHY GPIO reset */ 561 gpiod = devm_gpiod_get_optional(&bus->dev, "reset", GPIOD_OUT_HIGH); 562 if (IS_ERR(gpiod)) { 563 err = dev_err_probe(&bus->dev, PTR_ERR(gpiod), 564 "mii_bus %s couldn't get reset GPIO\n", 565 bus->id); 566 device_del(&bus->dev); 567 return err; 568 } else if (gpiod) { 569 bus->reset_gpiod = gpiod; 570 fsleep(bus->reset_delay_us); 571 gpiod_set_value_cansleep(gpiod, 0); 572 if (bus->reset_post_delay_us > 0) 573 fsleep(bus->reset_post_delay_us); 574 } 575 576 if (bus->reset) { 577 err = bus->reset(bus); 578 if (err) 579 goto error_reset_gpiod; 580 } 581 582 for (i = 0; i < PHY_MAX_ADDR; i++) { 583 if ((bus->phy_mask & (1 << i)) == 0) { 584 struct phy_device *phydev; 585 586 phydev = mdiobus_scan(bus, i); 587 if (IS_ERR(phydev) && (PTR_ERR(phydev) != -ENODEV)) { 588 err = PTR_ERR(phydev); 589 goto error; 590 } 591 } 592 } 593 594 mdiobus_setup_mdiodev_from_board_info(bus, mdiobus_create_device); 595 596 bus->state = MDIOBUS_REGISTERED; 597 pr_info("%s: probed\n", bus->name); 598 return 0; 599 600 error: 601 while (--i >= 0) { 602 mdiodev = bus->mdio_map[i]; 603 if (!mdiodev) 604 continue; 605 606 mdiodev->device_remove(mdiodev); 607 mdiodev->device_free(mdiodev); 608 } 609 error_reset_gpiod: 610 /* Put PHYs in RESET to save power */ 611 if (bus->reset_gpiod) 612 gpiod_set_value_cansleep(bus->reset_gpiod, 1); 613 614 device_del(&bus->dev); 615 return err; 616 } 617 EXPORT_SYMBOL(__mdiobus_register); 618 619 void mdiobus_unregister(struct mii_bus *bus) 620 { 621 struct mdio_device *mdiodev; 622 int i; 623 624 if (WARN_ON_ONCE(bus->state != MDIOBUS_REGISTERED)) 625 return; 626 bus->state = MDIOBUS_UNREGISTERED; 627 628 for (i = 0; i < PHY_MAX_ADDR; i++) { 629 mdiodev = bus->mdio_map[i]; 630 if (!mdiodev) 631 continue; 632 633 if (mdiodev->reset_gpio) 634 gpiod_put(mdiodev->reset_gpio); 635 636 mdiodev->device_remove(mdiodev); 637 mdiodev->device_free(mdiodev); 638 } 639 640 /* Put PHYs in RESET to save power */ 641 if (bus->reset_gpiod) 642 gpiod_set_value_cansleep(bus->reset_gpiod, 1); 643 644 device_del(&bus->dev); 645 } 646 EXPORT_SYMBOL(mdiobus_unregister); 647 648 /** 649 * mdiobus_free - free a struct mii_bus 650 * @bus: mii_bus to free 651 * 652 * This function releases the reference to the underlying device 653 * object in the mii_bus. If this is the last reference, the mii_bus 654 * will be freed. 655 */ 656 void mdiobus_free(struct mii_bus *bus) 657 { 658 /* For compatibility with error handling in drivers. */ 659 if (bus->state == MDIOBUS_ALLOCATED) { 660 kfree(bus); 661 return; 662 } 663 664 BUG_ON(bus->state != MDIOBUS_UNREGISTERED); 665 bus->state = MDIOBUS_RELEASED; 666 667 put_device(&bus->dev); 668 } 669 EXPORT_SYMBOL(mdiobus_free); 670 671 /** 672 * mdiobus_scan - scan a bus for MDIO devices. 673 * @bus: mii_bus to scan 674 * @addr: address on bus to scan 675 * 676 * This function scans the MDIO bus, looking for devices which can be 677 * identified using a vendor/product ID in registers 2 and 3. Not all 678 * MDIO devices have such registers, but PHY devices typically 679 * do. Hence this function assumes anything found is a PHY, or can be 680 * treated as a PHY. Other MDIO devices, such as switches, will 681 * probably not be found during the scan. 682 */ 683 struct phy_device *mdiobus_scan(struct mii_bus *bus, int addr) 684 { 685 struct phy_device *phydev = ERR_PTR(-ENODEV); 686 int err; 687 688 switch (bus->probe_capabilities) { 689 case MDIOBUS_NO_CAP: 690 case MDIOBUS_C22: 691 phydev = get_phy_device(bus, addr, false); 692 break; 693 case MDIOBUS_C45: 694 phydev = get_phy_device(bus, addr, true); 695 break; 696 case MDIOBUS_C22_C45: 697 phydev = get_phy_device(bus, addr, false); 698 if (IS_ERR(phydev)) 699 phydev = get_phy_device(bus, addr, true); 700 break; 701 } 702 703 if (IS_ERR(phydev)) 704 return phydev; 705 706 /* 707 * For DT, see if the auto-probed phy has a correspoding child 708 * in the bus node, and set the of_node pointer in this case. 709 */ 710 of_mdiobus_link_mdiodev(bus, &phydev->mdio); 711 712 err = phy_device_register(phydev); 713 if (err) { 714 phy_device_free(phydev); 715 return ERR_PTR(-ENODEV); 716 } 717 718 return phydev; 719 } 720 EXPORT_SYMBOL(mdiobus_scan); 721 722 static void mdiobus_stats_acct(struct mdio_bus_stats *stats, bool op, int ret) 723 { 724 preempt_disable(); 725 u64_stats_update_begin(&stats->syncp); 726 727 u64_stats_inc(&stats->transfers); 728 if (ret < 0) { 729 u64_stats_inc(&stats->errors); 730 goto out; 731 } 732 733 if (op) 734 u64_stats_inc(&stats->reads); 735 else 736 u64_stats_inc(&stats->writes); 737 out: 738 u64_stats_update_end(&stats->syncp); 739 preempt_enable(); 740 } 741 742 /** 743 * __mdiobus_read - Unlocked version of the mdiobus_read function 744 * @bus: the mii_bus struct 745 * @addr: the phy address 746 * @regnum: register number to read 747 * 748 * Read a MDIO bus register. Caller must hold the mdio bus lock. 749 * 750 * NOTE: MUST NOT be called from interrupt context. 751 */ 752 int __mdiobus_read(struct mii_bus *bus, int addr, u32 regnum) 753 { 754 int retval; 755 756 lockdep_assert_held_once(&bus->mdio_lock); 757 758 retval = bus->read(bus, addr, regnum); 759 760 trace_mdio_access(bus, 1, addr, regnum, retval, retval); 761 mdiobus_stats_acct(&bus->stats[addr], true, retval); 762 763 return retval; 764 } 765 EXPORT_SYMBOL(__mdiobus_read); 766 767 /** 768 * __mdiobus_write - Unlocked version of the mdiobus_write function 769 * @bus: the mii_bus struct 770 * @addr: the phy address 771 * @regnum: register number to write 772 * @val: value to write to @regnum 773 * 774 * Write a MDIO bus register. Caller must hold the mdio bus lock. 775 * 776 * NOTE: MUST NOT be called from interrupt context. 777 */ 778 int __mdiobus_write(struct mii_bus *bus, int addr, u32 regnum, u16 val) 779 { 780 int err; 781 782 lockdep_assert_held_once(&bus->mdio_lock); 783 784 err = bus->write(bus, addr, regnum, val); 785 786 trace_mdio_access(bus, 0, addr, regnum, val, err); 787 mdiobus_stats_acct(&bus->stats[addr], false, err); 788 789 return err; 790 } 791 EXPORT_SYMBOL(__mdiobus_write); 792 793 /** 794 * __mdiobus_modify_changed - Unlocked version of the mdiobus_modify function 795 * @bus: the mii_bus struct 796 * @addr: the phy address 797 * @regnum: register number to modify 798 * @mask: bit mask of bits to clear 799 * @set: bit mask of bits to set 800 * 801 * Read, modify, and if any change, write the register value back to the 802 * device. Any error returns a negative number. 803 * 804 * NOTE: MUST NOT be called from interrupt context. 805 */ 806 int __mdiobus_modify_changed(struct mii_bus *bus, int addr, u32 regnum, 807 u16 mask, u16 set) 808 { 809 int new, ret; 810 811 ret = __mdiobus_read(bus, addr, regnum); 812 if (ret < 0) 813 return ret; 814 815 new = (ret & ~mask) | set; 816 if (new == ret) 817 return 0; 818 819 ret = __mdiobus_write(bus, addr, regnum, new); 820 821 return ret < 0 ? ret : 1; 822 } 823 EXPORT_SYMBOL_GPL(__mdiobus_modify_changed); 824 825 /** 826 * mdiobus_read_nested - Nested version of the mdiobus_read function 827 * @bus: the mii_bus struct 828 * @addr: the phy address 829 * @regnum: register number to read 830 * 831 * In case of nested MDIO bus access avoid lockdep false positives by 832 * using mutex_lock_nested(). 833 * 834 * NOTE: MUST NOT be called from interrupt context, 835 * because the bus read/write functions may wait for an interrupt 836 * to conclude the operation. 837 */ 838 int mdiobus_read_nested(struct mii_bus *bus, int addr, u32 regnum) 839 { 840 int retval; 841 842 mutex_lock_nested(&bus->mdio_lock, MDIO_MUTEX_NESTED); 843 retval = __mdiobus_read(bus, addr, regnum); 844 mutex_unlock(&bus->mdio_lock); 845 846 return retval; 847 } 848 EXPORT_SYMBOL(mdiobus_read_nested); 849 850 /** 851 * mdiobus_read - Convenience function for reading a given MII mgmt register 852 * @bus: the mii_bus struct 853 * @addr: the phy address 854 * @regnum: register number to read 855 * 856 * NOTE: MUST NOT be called from interrupt context, 857 * because the bus read/write functions may wait for an interrupt 858 * to conclude the operation. 859 */ 860 int mdiobus_read(struct mii_bus *bus, int addr, u32 regnum) 861 { 862 int retval; 863 864 mutex_lock(&bus->mdio_lock); 865 retval = __mdiobus_read(bus, addr, regnum); 866 mutex_unlock(&bus->mdio_lock); 867 868 return retval; 869 } 870 EXPORT_SYMBOL(mdiobus_read); 871 872 /** 873 * mdiobus_write_nested - Nested version of the mdiobus_write function 874 * @bus: the mii_bus struct 875 * @addr: the phy address 876 * @regnum: register number to write 877 * @val: value to write to @regnum 878 * 879 * In case of nested MDIO bus access avoid lockdep false positives by 880 * using mutex_lock_nested(). 881 * 882 * NOTE: MUST NOT be called from interrupt context, 883 * because the bus read/write functions may wait for an interrupt 884 * to conclude the operation. 885 */ 886 int mdiobus_write_nested(struct mii_bus *bus, int addr, u32 regnum, u16 val) 887 { 888 int err; 889 890 mutex_lock_nested(&bus->mdio_lock, MDIO_MUTEX_NESTED); 891 err = __mdiobus_write(bus, addr, regnum, val); 892 mutex_unlock(&bus->mdio_lock); 893 894 return err; 895 } 896 EXPORT_SYMBOL(mdiobus_write_nested); 897 898 /** 899 * mdiobus_write - Convenience function for writing a given MII mgmt register 900 * @bus: the mii_bus struct 901 * @addr: the phy address 902 * @regnum: register number to write 903 * @val: value to write to @regnum 904 * 905 * NOTE: MUST NOT be called from interrupt context, 906 * because the bus read/write functions may wait for an interrupt 907 * to conclude the operation. 908 */ 909 int mdiobus_write(struct mii_bus *bus, int addr, u32 regnum, u16 val) 910 { 911 int err; 912 913 mutex_lock(&bus->mdio_lock); 914 err = __mdiobus_write(bus, addr, regnum, val); 915 mutex_unlock(&bus->mdio_lock); 916 917 return err; 918 } 919 EXPORT_SYMBOL(mdiobus_write); 920 921 /** 922 * mdiobus_modify - Convenience function for modifying a given mdio device 923 * register 924 * @bus: the mii_bus struct 925 * @addr: the phy address 926 * @regnum: register number to write 927 * @mask: bit mask of bits to clear 928 * @set: bit mask of bits to set 929 */ 930 int mdiobus_modify(struct mii_bus *bus, int addr, u32 regnum, u16 mask, u16 set) 931 { 932 int err; 933 934 mutex_lock(&bus->mdio_lock); 935 err = __mdiobus_modify_changed(bus, addr, regnum, mask, set); 936 mutex_unlock(&bus->mdio_lock); 937 938 return err < 0 ? err : 0; 939 } 940 EXPORT_SYMBOL_GPL(mdiobus_modify); 941 942 /** 943 * mdiobus_modify_changed - Convenience function for modifying a given mdio 944 * device register and returning if it changed 945 * @bus: the mii_bus struct 946 * @addr: the phy address 947 * @regnum: register number to write 948 * @mask: bit mask of bits to clear 949 * @set: bit mask of bits to set 950 */ 951 int mdiobus_modify_changed(struct mii_bus *bus, int addr, u32 regnum, 952 u16 mask, u16 set) 953 { 954 int err; 955 956 mutex_lock(&bus->mdio_lock); 957 err = __mdiobus_modify_changed(bus, addr, regnum, mask, set); 958 mutex_unlock(&bus->mdio_lock); 959 960 return err; 961 } 962 EXPORT_SYMBOL_GPL(mdiobus_modify_changed); 963 964 /** 965 * mdio_bus_match - determine if given MDIO driver supports the given 966 * MDIO device 967 * @dev: target MDIO device 968 * @drv: given MDIO driver 969 * 970 * Description: Given a MDIO device, and a MDIO driver, return 1 if 971 * the driver supports the device. Otherwise, return 0. This may 972 * require calling the devices own match function, since different classes 973 * of MDIO devices have different match criteria. 974 */ 975 static int mdio_bus_match(struct device *dev, struct device_driver *drv) 976 { 977 struct mdio_driver *mdiodrv = to_mdio_driver(drv); 978 struct mdio_device *mdio = to_mdio_device(dev); 979 980 /* Both the driver and device must type-match */ 981 if (!(mdiodrv->mdiodrv.flags & MDIO_DEVICE_IS_PHY) != 982 !(mdio->flags & MDIO_DEVICE_FLAG_PHY)) 983 return 0; 984 985 if (of_driver_match_device(dev, drv)) 986 return 1; 987 988 if (mdio->bus_match) 989 return mdio->bus_match(dev, drv); 990 991 return 0; 992 } 993 994 static int mdio_uevent(struct device *dev, struct kobj_uevent_env *env) 995 { 996 int rc; 997 998 /* Some devices have extra OF data and an OF-style MODALIAS */ 999 rc = of_device_uevent_modalias(dev, env); 1000 if (rc != -ENODEV) 1001 return rc; 1002 1003 return 0; 1004 } 1005 1006 static struct attribute *mdio_bus_device_statistics_attrs[] = { 1007 &dev_attr_mdio_bus_device_transfers.attr.attr, 1008 &dev_attr_mdio_bus_device_errors.attr.attr, 1009 &dev_attr_mdio_bus_device_writes.attr.attr, 1010 &dev_attr_mdio_bus_device_reads.attr.attr, 1011 NULL, 1012 }; 1013 1014 static const struct attribute_group mdio_bus_device_statistics_group = { 1015 .name = "statistics", 1016 .attrs = mdio_bus_device_statistics_attrs, 1017 }; 1018 1019 static const struct attribute_group *mdio_bus_dev_groups[] = { 1020 &mdio_bus_device_statistics_group, 1021 NULL, 1022 }; 1023 1024 struct bus_type mdio_bus_type = { 1025 .name = "mdio_bus", 1026 .dev_groups = mdio_bus_dev_groups, 1027 .match = mdio_bus_match, 1028 .uevent = mdio_uevent, 1029 }; 1030 EXPORT_SYMBOL(mdio_bus_type); 1031 1032 int __init mdio_bus_init(void) 1033 { 1034 int ret; 1035 1036 ret = class_register(&mdio_bus_class); 1037 if (!ret) { 1038 ret = bus_register(&mdio_bus_type); 1039 if (ret) 1040 class_unregister(&mdio_bus_class); 1041 } 1042 1043 return ret; 1044 } 1045 EXPORT_SYMBOL_GPL(mdio_bus_init); 1046 1047 #if IS_ENABLED(CONFIG_PHYLIB) 1048 void mdio_bus_exit(void) 1049 { 1050 class_unregister(&mdio_bus_class); 1051 bus_unregister(&mdio_bus_type); 1052 } 1053 EXPORT_SYMBOL_GPL(mdio_bus_exit); 1054 #else 1055 module_init(mdio_bus_init); 1056 /* no module_exit, intentional */ 1057 MODULE_LICENSE("GPL"); 1058 MODULE_DESCRIPTION("MDIO bus/device layer"); 1059 #endif 1060