usb251xb.c 22 KB

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  1. // SPDX-License-Identifier: GPL-2.0+
  2. /*
  3. * Driver for Microchip USB251xB USB 2.0 Hi-Speed Hub Controller
  4. * Configuration via SMBus.
  5. *
  6. * Copyright (c) 2017 SKIDATA AG
  7. *
  8. * This work is based on the USB3503 driver by Dongjin Kim and
  9. * a not-accepted patch by Fabien Lahoudere, see:
  10. * https://patchwork.kernel.org/patch/9257715/
  11. */
  12. #include <linux/delay.h>
  13. #include <linux/gpio/consumer.h>
  14. #include <linux/gpio/driver.h>
  15. #include <linux/i2c.h>
  16. #include <linux/module.h>
  17. #include <linux/nls.h>
  18. #include <linux/of_device.h>
  19. #include <linux/regulator/consumer.h>
  20. #include <linux/slab.h>
  21. /* Internal Register Set Addresses & Default Values acc. to DS00001692C */
  22. #define USB251XB_ADDR_VENDOR_ID_LSB 0x00
  23. #define USB251XB_ADDR_VENDOR_ID_MSB 0x01
  24. #define USB251XB_DEF_VENDOR_ID 0x0424
  25. #define USB251XB_ADDR_PRODUCT_ID_LSB 0x02
  26. #define USB251XB_ADDR_PRODUCT_ID_MSB 0x03
  27. #define USB251XB_ADDR_DEVICE_ID_LSB 0x04
  28. #define USB251XB_ADDR_DEVICE_ID_MSB 0x05
  29. #define USB251XB_DEF_DEVICE_ID 0x0BB3
  30. #define USB251XB_ADDR_CONFIG_DATA_1 0x06
  31. #define USB251XB_DEF_CONFIG_DATA_1 0x9B
  32. #define USB251XB_ADDR_CONFIG_DATA_2 0x07
  33. #define USB251XB_DEF_CONFIG_DATA_2 0x20
  34. #define USB251XB_ADDR_CONFIG_DATA_3 0x08
  35. #define USB251XB_DEF_CONFIG_DATA_3 0x02
  36. #define USB251XB_ADDR_NON_REMOVABLE_DEVICES 0x09
  37. #define USB251XB_DEF_NON_REMOVABLE_DEVICES 0x00
  38. #define USB251XB_ADDR_PORT_DISABLE_SELF 0x0A
  39. #define USB251XB_DEF_PORT_DISABLE_SELF 0x00
  40. #define USB251XB_ADDR_PORT_DISABLE_BUS 0x0B
  41. #define USB251XB_DEF_PORT_DISABLE_BUS 0x00
  42. #define USB251XB_ADDR_MAX_POWER_SELF 0x0C
  43. #define USB251XB_DEF_MAX_POWER_SELF 0x01
  44. #define USB251XB_ADDR_MAX_POWER_BUS 0x0D
  45. #define USB251XB_DEF_MAX_POWER_BUS 0x32
  46. #define USB251XB_ADDR_MAX_CURRENT_SELF 0x0E
  47. #define USB251XB_DEF_MAX_CURRENT_SELF 0x01
  48. #define USB251XB_ADDR_MAX_CURRENT_BUS 0x0F
  49. #define USB251XB_DEF_MAX_CURRENT_BUS 0x32
  50. #define USB251XB_ADDR_POWER_ON_TIME 0x10
  51. #define USB251XB_DEF_POWER_ON_TIME 0x32
  52. #define USB251XB_ADDR_LANGUAGE_ID_HIGH 0x11
  53. #define USB251XB_ADDR_LANGUAGE_ID_LOW 0x12
  54. #define USB251XB_DEF_LANGUAGE_ID 0x0000
  55. #define USB251XB_STRING_BUFSIZE 62
  56. #define USB251XB_ADDR_MANUFACTURER_STRING_LEN 0x13
  57. #define USB251XB_ADDR_MANUFACTURER_STRING 0x16
  58. #define USB251XB_DEF_MANUFACTURER_STRING "Microchip"
  59. #define USB251XB_ADDR_PRODUCT_STRING_LEN 0x14
  60. #define USB251XB_ADDR_PRODUCT_STRING 0x54
  61. #define USB251XB_ADDR_SERIAL_STRING_LEN 0x15
  62. #define USB251XB_ADDR_SERIAL_STRING 0x92
  63. #define USB251XB_DEF_SERIAL_STRING ""
  64. #define USB251XB_ADDR_BATTERY_CHARGING_ENABLE 0xD0
  65. #define USB251XB_DEF_BATTERY_CHARGING_ENABLE 0x00
  66. #define USB251XB_ADDR_BOOST_UP 0xF6
  67. #define USB251XB_DEF_BOOST_UP 0x00
  68. #define USB251XB_ADDR_BOOST_57 0xF7
  69. #define USB251XB_DEF_BOOST_57 0x00
  70. #define USB251XB_ADDR_BOOST_14 0xF8
  71. #define USB251XB_DEF_BOOST_14 0x00
  72. #define USB251XB_ADDR_PORT_SWAP 0xFA
  73. #define USB251XB_DEF_PORT_SWAP 0x00
  74. #define USB251XB_ADDR_PORT_MAP_12 0xFB
  75. #define USB251XB_DEF_PORT_MAP_12 0x00
  76. #define USB251XB_ADDR_PORT_MAP_34 0xFC
  77. #define USB251XB_DEF_PORT_MAP_34 0x00 /* USB251{3B/i,4B/i,7/i} only */
  78. #define USB251XB_ADDR_PORT_MAP_56 0xFD
  79. #define USB251XB_DEF_PORT_MAP_56 0x00 /* USB2517/i only */
  80. #define USB251XB_ADDR_PORT_MAP_7 0xFE
  81. #define USB251XB_DEF_PORT_MAP_7 0x00 /* USB2517/i only */
  82. #define USB251XB_ADDR_STATUS_COMMAND 0xFF
  83. #define USB251XB_STATUS_COMMAND_SMBUS_DOWN 0x04
  84. #define USB251XB_STATUS_COMMAND_RESET 0x02
  85. #define USB251XB_STATUS_COMMAND_ATTACH 0x01
  86. #define USB251XB_I2C_REG_SZ 0x100
  87. #define USB251XB_I2C_WRITE_SZ 0x10
  88. #define DRIVER_NAME "usb251xb"
  89. #define DRIVER_DESC "Microchip USB 2.0 Hi-Speed Hub Controller"
  90. struct usb251xb {
  91. struct device *dev;
  92. struct i2c_client *i2c;
  93. struct regulator *vdd;
  94. u8 skip_config;
  95. struct gpio_desc *gpio_reset;
  96. u16 vendor_id;
  97. u16 product_id;
  98. u16 device_id;
  99. u8 conf_data1;
  100. u8 conf_data2;
  101. u8 conf_data3;
  102. u8 non_rem_dev;
  103. u8 port_disable_sp;
  104. u8 port_disable_bp;
  105. u8 max_power_sp;
  106. u8 max_power_bp;
  107. u8 max_current_sp;
  108. u8 max_current_bp;
  109. u8 power_on_time;
  110. u16 lang_id;
  111. u8 manufacturer_len;
  112. u8 product_len;
  113. u8 serial_len;
  114. char manufacturer[USB251XB_STRING_BUFSIZE];
  115. char product[USB251XB_STRING_BUFSIZE];
  116. char serial[USB251XB_STRING_BUFSIZE];
  117. u8 bat_charge_en;
  118. u8 boost_up;
  119. u8 boost_57;
  120. u8 boost_14;
  121. u8 port_swap;
  122. u8 port_map12;
  123. u8 port_map34;
  124. u8 port_map56;
  125. u8 port_map7;
  126. u8 status;
  127. };
  128. struct usb251xb_data {
  129. u16 product_id;
  130. u8 port_cnt;
  131. bool led_support;
  132. bool bat_support;
  133. char product_str[USB251XB_STRING_BUFSIZE / 2]; /* ASCII string */
  134. };
  135. static const struct usb251xb_data usb2422_data = {
  136. .product_id = 0x2422,
  137. .port_cnt = 2,
  138. .led_support = false,
  139. .bat_support = true,
  140. .product_str = "USB2422",
  141. };
  142. static const struct usb251xb_data usb2512b_data = {
  143. .product_id = 0x2512,
  144. .port_cnt = 2,
  145. .led_support = false,
  146. .bat_support = true,
  147. .product_str = "USB2512B",
  148. };
  149. static const struct usb251xb_data usb2512bi_data = {
  150. .product_id = 0x2512,
  151. .port_cnt = 2,
  152. .led_support = false,
  153. .bat_support = true,
  154. .product_str = "USB2512Bi",
  155. };
  156. static const struct usb251xb_data usb2513b_data = {
  157. .product_id = 0x2513,
  158. .port_cnt = 3,
  159. .led_support = false,
  160. .bat_support = true,
  161. .product_str = "USB2513B",
  162. };
  163. static const struct usb251xb_data usb2513bi_data = {
  164. .product_id = 0x2513,
  165. .port_cnt = 3,
  166. .led_support = false,
  167. .bat_support = true,
  168. .product_str = "USB2513Bi",
  169. };
  170. static const struct usb251xb_data usb2514b_data = {
  171. .product_id = 0x2514,
  172. .port_cnt = 4,
  173. .led_support = false,
  174. .bat_support = true,
  175. .product_str = "USB2514B",
  176. };
  177. static const struct usb251xb_data usb2514bi_data = {
  178. .product_id = 0x2514,
  179. .port_cnt = 4,
  180. .led_support = false,
  181. .bat_support = true,
  182. .product_str = "USB2514Bi",
  183. };
  184. static const struct usb251xb_data usb2517_data = {
  185. .product_id = 0x2517,
  186. .port_cnt = 7,
  187. .led_support = true,
  188. .bat_support = false,
  189. .product_str = "USB2517",
  190. };
  191. static const struct usb251xb_data usb2517i_data = {
  192. .product_id = 0x2517,
  193. .port_cnt = 7,
  194. .led_support = true,
  195. .bat_support = false,
  196. .product_str = "USB2517i",
  197. };
  198. #ifdef CONFIG_GPIOLIB
  199. static int usb251xb_check_dev_children(struct device *dev, void *child)
  200. {
  201. if (dev->type == &i2c_adapter_type) {
  202. return device_for_each_child(dev, child,
  203. usb251xb_check_dev_children);
  204. }
  205. return (dev == child);
  206. }
  207. static int usb251x_check_gpio_chip(struct usb251xb *hub)
  208. {
  209. struct gpio_chip *gc = gpiod_to_chip(hub->gpio_reset);
  210. struct i2c_adapter *adap = hub->i2c->adapter;
  211. int ret;
  212. if (!hub->gpio_reset)
  213. return 0;
  214. if (!gc)
  215. return -EINVAL;
  216. ret = usb251xb_check_dev_children(&adap->dev, gc->parent);
  217. if (ret) {
  218. dev_err(hub->dev, "Reset GPIO chip is at the same i2c-bus\n");
  219. return -EINVAL;
  220. }
  221. return 0;
  222. }
  223. #else
  224. static int usb251x_check_gpio_chip(struct usb251xb *hub)
  225. {
  226. return 0;
  227. }
  228. #endif
  229. static void usb251xb_reset(struct usb251xb *hub)
  230. {
  231. if (!hub->gpio_reset)
  232. return;
  233. i2c_lock_bus(hub->i2c->adapter, I2C_LOCK_SEGMENT);
  234. gpiod_set_value_cansleep(hub->gpio_reset, 1);
  235. usleep_range(1, 10); /* >=1us RESET_N asserted */
  236. gpiod_set_value_cansleep(hub->gpio_reset, 0);
  237. /* wait for hub recovery/stabilization */
  238. usleep_range(500, 750); /* >=500us after RESET_N deasserted */
  239. i2c_unlock_bus(hub->i2c->adapter, I2C_LOCK_SEGMENT);
  240. }
  241. static int usb251xb_connect(struct usb251xb *hub)
  242. {
  243. struct device *dev = hub->dev;
  244. int err, i;
  245. char i2c_wb[USB251XB_I2C_REG_SZ];
  246. memset(i2c_wb, 0, USB251XB_I2C_REG_SZ);
  247. if (hub->skip_config) {
  248. dev_info(dev, "Skip hub configuration, only attach.\n");
  249. i2c_wb[0] = 0x01;
  250. i2c_wb[1] = USB251XB_STATUS_COMMAND_ATTACH;
  251. usb251xb_reset(hub);
  252. err = i2c_smbus_write_i2c_block_data(hub->i2c,
  253. USB251XB_ADDR_STATUS_COMMAND, 2, i2c_wb);
  254. if (err) {
  255. dev_err(dev, "attaching hub failed: %d\n", err);
  256. return err;
  257. }
  258. return 0;
  259. }
  260. i2c_wb[USB251XB_ADDR_VENDOR_ID_MSB] = (hub->vendor_id >> 8) & 0xFF;
  261. i2c_wb[USB251XB_ADDR_VENDOR_ID_LSB] = hub->vendor_id & 0xFF;
  262. i2c_wb[USB251XB_ADDR_PRODUCT_ID_MSB] = (hub->product_id >> 8) & 0xFF;
  263. i2c_wb[USB251XB_ADDR_PRODUCT_ID_LSB] = hub->product_id & 0xFF;
  264. i2c_wb[USB251XB_ADDR_DEVICE_ID_MSB] = (hub->device_id >> 8) & 0xFF;
  265. i2c_wb[USB251XB_ADDR_DEVICE_ID_LSB] = hub->device_id & 0xFF;
  266. i2c_wb[USB251XB_ADDR_CONFIG_DATA_1] = hub->conf_data1;
  267. i2c_wb[USB251XB_ADDR_CONFIG_DATA_2] = hub->conf_data2;
  268. i2c_wb[USB251XB_ADDR_CONFIG_DATA_3] = hub->conf_data3;
  269. i2c_wb[USB251XB_ADDR_NON_REMOVABLE_DEVICES] = hub->non_rem_dev;
  270. i2c_wb[USB251XB_ADDR_PORT_DISABLE_SELF] = hub->port_disable_sp;
  271. i2c_wb[USB251XB_ADDR_PORT_DISABLE_BUS] = hub->port_disable_bp;
  272. i2c_wb[USB251XB_ADDR_MAX_POWER_SELF] = hub->max_power_sp;
  273. i2c_wb[USB251XB_ADDR_MAX_POWER_BUS] = hub->max_power_bp;
  274. i2c_wb[USB251XB_ADDR_MAX_CURRENT_SELF] = hub->max_current_sp;
  275. i2c_wb[USB251XB_ADDR_MAX_CURRENT_BUS] = hub->max_current_bp;
  276. i2c_wb[USB251XB_ADDR_POWER_ON_TIME] = hub->power_on_time;
  277. i2c_wb[USB251XB_ADDR_LANGUAGE_ID_HIGH] = (hub->lang_id >> 8) & 0xFF;
  278. i2c_wb[USB251XB_ADDR_LANGUAGE_ID_LOW] = hub->lang_id & 0xFF;
  279. i2c_wb[USB251XB_ADDR_MANUFACTURER_STRING_LEN] = hub->manufacturer_len;
  280. i2c_wb[USB251XB_ADDR_PRODUCT_STRING_LEN] = hub->product_len;
  281. i2c_wb[USB251XB_ADDR_SERIAL_STRING_LEN] = hub->serial_len;
  282. memcpy(&i2c_wb[USB251XB_ADDR_MANUFACTURER_STRING], hub->manufacturer,
  283. USB251XB_STRING_BUFSIZE);
  284. memcpy(&i2c_wb[USB251XB_ADDR_SERIAL_STRING], hub->serial,
  285. USB251XB_STRING_BUFSIZE);
  286. memcpy(&i2c_wb[USB251XB_ADDR_PRODUCT_STRING], hub->product,
  287. USB251XB_STRING_BUFSIZE);
  288. i2c_wb[USB251XB_ADDR_BATTERY_CHARGING_ENABLE] = hub->bat_charge_en;
  289. i2c_wb[USB251XB_ADDR_BOOST_UP] = hub->boost_up;
  290. i2c_wb[USB251XB_ADDR_BOOST_57] = hub->boost_57;
  291. i2c_wb[USB251XB_ADDR_BOOST_14] = hub->boost_14;
  292. i2c_wb[USB251XB_ADDR_PORT_SWAP] = hub->port_swap;
  293. i2c_wb[USB251XB_ADDR_PORT_MAP_12] = hub->port_map12;
  294. i2c_wb[USB251XB_ADDR_PORT_MAP_34] = hub->port_map34;
  295. i2c_wb[USB251XB_ADDR_PORT_MAP_56] = hub->port_map56;
  296. i2c_wb[USB251XB_ADDR_PORT_MAP_7] = hub->port_map7;
  297. i2c_wb[USB251XB_ADDR_STATUS_COMMAND] = USB251XB_STATUS_COMMAND_ATTACH;
  298. usb251xb_reset(hub);
  299. /* write registers */
  300. for (i = 0; i < (USB251XB_I2C_REG_SZ / USB251XB_I2C_WRITE_SZ); i++) {
  301. int offset = i * USB251XB_I2C_WRITE_SZ;
  302. char wbuf[USB251XB_I2C_WRITE_SZ + 1];
  303. /* The first data byte transferred tells the hub how many data
  304. * bytes will follow (byte count).
  305. */
  306. wbuf[0] = USB251XB_I2C_WRITE_SZ;
  307. memcpy(&wbuf[1], &i2c_wb[offset], USB251XB_I2C_WRITE_SZ);
  308. dev_dbg(dev, "writing %d byte block %d to 0x%02X\n",
  309. USB251XB_I2C_WRITE_SZ, i, offset);
  310. err = i2c_smbus_write_i2c_block_data(hub->i2c, offset,
  311. USB251XB_I2C_WRITE_SZ + 1,
  312. wbuf);
  313. if (err)
  314. goto out_err;
  315. }
  316. dev_info(dev, "Hub configuration was successful.\n");
  317. return 0;
  318. out_err:
  319. dev_err(dev, "configuring block %d failed: %d\n", i, err);
  320. return err;
  321. }
  322. #ifdef CONFIG_OF
  323. static void usb251xb_get_ports_field(struct usb251xb *hub,
  324. const char *prop_name, u8 port_cnt,
  325. bool ds_only, u8 *fld)
  326. {
  327. struct device *dev = hub->dev;
  328. struct property *prop;
  329. const __be32 *p;
  330. u32 port;
  331. of_property_for_each_u32(dev->of_node, prop_name, prop, p, port) {
  332. if ((port >= ds_only ? 1 : 0) && (port <= port_cnt))
  333. *fld |= BIT(port);
  334. else
  335. dev_warn(dev, "port %u doesn't exist\n", port);
  336. }
  337. }
  338. static int usb251xb_get_ofdata(struct usb251xb *hub,
  339. const struct usb251xb_data *data)
  340. {
  341. struct device *dev = hub->dev;
  342. struct device_node *np = dev->of_node;
  343. int len;
  344. u32 property_u32 = 0;
  345. const char *cproperty_char;
  346. char str[USB251XB_STRING_BUFSIZE / 2];
  347. if (!np) {
  348. dev_err(dev, "failed to get ofdata\n");
  349. return -ENODEV;
  350. }
  351. if (of_get_property(np, "skip-config", NULL))
  352. hub->skip_config = 1;
  353. else
  354. hub->skip_config = 0;
  355. hub->gpio_reset = devm_gpiod_get_optional(dev, "reset", GPIOD_OUT_HIGH);
  356. if (IS_ERR(hub->gpio_reset))
  357. return dev_err_probe(dev, PTR_ERR(hub->gpio_reset),
  358. "unable to request GPIO reset pin\n");
  359. if (of_property_read_u16_array(np, "vendor-id", &hub->vendor_id, 1))
  360. hub->vendor_id = USB251XB_DEF_VENDOR_ID;
  361. if (of_property_read_u16_array(np, "product-id",
  362. &hub->product_id, 1))
  363. hub->product_id = data->product_id;
  364. if (of_property_read_u16_array(np, "device-id", &hub->device_id, 1))
  365. hub->device_id = USB251XB_DEF_DEVICE_ID;
  366. hub->conf_data1 = USB251XB_DEF_CONFIG_DATA_1;
  367. if (of_get_property(np, "self-powered", NULL)) {
  368. hub->conf_data1 |= BIT(7);
  369. /* Configure Over-Current sens when self-powered */
  370. hub->conf_data1 &= ~BIT(2);
  371. if (of_get_property(np, "ganged-sensing", NULL))
  372. hub->conf_data1 &= ~BIT(1);
  373. else if (of_get_property(np, "individual-sensing", NULL))
  374. hub->conf_data1 |= BIT(1);
  375. } else if (of_get_property(np, "bus-powered", NULL)) {
  376. hub->conf_data1 &= ~BIT(7);
  377. /* Disable Over-Current sense when bus-powered */
  378. hub->conf_data1 |= BIT(2);
  379. }
  380. if (of_get_property(np, "disable-hi-speed", NULL))
  381. hub->conf_data1 |= BIT(5);
  382. if (of_get_property(np, "multi-tt", NULL))
  383. hub->conf_data1 |= BIT(4);
  384. else if (of_get_property(np, "single-tt", NULL))
  385. hub->conf_data1 &= ~BIT(4);
  386. if (of_get_property(np, "disable-eop", NULL))
  387. hub->conf_data1 |= BIT(3);
  388. if (of_get_property(np, "individual-port-switching", NULL))
  389. hub->conf_data1 |= BIT(0);
  390. else if (of_get_property(np, "ganged-port-switching", NULL))
  391. hub->conf_data1 &= ~BIT(0);
  392. hub->conf_data2 = USB251XB_DEF_CONFIG_DATA_2;
  393. if (of_get_property(np, "dynamic-power-switching", NULL))
  394. hub->conf_data2 |= BIT(7);
  395. if (!of_property_read_u32(np, "oc-delay-us", &property_u32)) {
  396. if (property_u32 == 100) {
  397. /* 100 us*/
  398. hub->conf_data2 &= ~BIT(5);
  399. hub->conf_data2 &= ~BIT(4);
  400. } else if (property_u32 == 4000) {
  401. /* 4 ms */
  402. hub->conf_data2 &= ~BIT(5);
  403. hub->conf_data2 |= BIT(4);
  404. } else if (property_u32 == 16000) {
  405. /* 16 ms */
  406. hub->conf_data2 |= BIT(5);
  407. hub->conf_data2 |= BIT(4);
  408. } else {
  409. /* 8 ms (DEFAULT) */
  410. hub->conf_data2 |= BIT(5);
  411. hub->conf_data2 &= ~BIT(4);
  412. }
  413. }
  414. if (of_get_property(np, "compound-device", NULL))
  415. hub->conf_data2 |= BIT(3);
  416. hub->conf_data3 = USB251XB_DEF_CONFIG_DATA_3;
  417. if (of_get_property(np, "port-mapping-mode", NULL))
  418. hub->conf_data3 |= BIT(3);
  419. if (data->led_support && of_get_property(np, "led-usb-mode", NULL))
  420. hub->conf_data3 &= ~BIT(1);
  421. if (of_get_property(np, "string-support", NULL))
  422. hub->conf_data3 |= BIT(0);
  423. hub->non_rem_dev = USB251XB_DEF_NON_REMOVABLE_DEVICES;
  424. usb251xb_get_ports_field(hub, "non-removable-ports", data->port_cnt,
  425. true, &hub->non_rem_dev);
  426. hub->port_disable_sp = USB251XB_DEF_PORT_DISABLE_SELF;
  427. usb251xb_get_ports_field(hub, "sp-disabled-ports", data->port_cnt,
  428. true, &hub->port_disable_sp);
  429. hub->port_disable_bp = USB251XB_DEF_PORT_DISABLE_BUS;
  430. usb251xb_get_ports_field(hub, "bp-disabled-ports", data->port_cnt,
  431. true, &hub->port_disable_bp);
  432. hub->max_power_sp = USB251XB_DEF_MAX_POWER_SELF;
  433. if (!of_property_read_u32(np, "sp-max-total-current-microamp",
  434. &property_u32))
  435. hub->max_power_sp = min_t(u8, property_u32 / 2000, 50);
  436. hub->max_power_bp = USB251XB_DEF_MAX_POWER_BUS;
  437. if (!of_property_read_u32(np, "bp-max-total-current-microamp",
  438. &property_u32))
  439. hub->max_power_bp = min_t(u8, property_u32 / 2000, 255);
  440. hub->max_current_sp = USB251XB_DEF_MAX_CURRENT_SELF;
  441. if (!of_property_read_u32(np, "sp-max-removable-current-microamp",
  442. &property_u32))
  443. hub->max_current_sp = min_t(u8, property_u32 / 2000, 50);
  444. hub->max_current_bp = USB251XB_DEF_MAX_CURRENT_BUS;
  445. if (!of_property_read_u32(np, "bp-max-removable-current-microamp",
  446. &property_u32))
  447. hub->max_current_bp = min_t(u8, property_u32 / 2000, 255);
  448. hub->power_on_time = USB251XB_DEF_POWER_ON_TIME;
  449. if (!of_property_read_u32(np, "power-on-time-ms", &property_u32))
  450. hub->power_on_time = min_t(u8, property_u32 / 2, 255);
  451. if (of_property_read_u16_array(np, "language-id", &hub->lang_id, 1))
  452. hub->lang_id = USB251XB_DEF_LANGUAGE_ID;
  453. if (of_property_read_u8(np, "boost-up", &hub->boost_up))
  454. hub->boost_up = USB251XB_DEF_BOOST_UP;
  455. cproperty_char = of_get_property(np, "manufacturer", NULL);
  456. strscpy(str, cproperty_char ? : USB251XB_DEF_MANUFACTURER_STRING,
  457. sizeof(str));
  458. hub->manufacturer_len = strlen(str) & 0xFF;
  459. memset(hub->manufacturer, 0, USB251XB_STRING_BUFSIZE);
  460. len = min_t(size_t, USB251XB_STRING_BUFSIZE / 2, strlen(str));
  461. len = utf8s_to_utf16s(str, len, UTF16_LITTLE_ENDIAN,
  462. (wchar_t *)hub->manufacturer,
  463. USB251XB_STRING_BUFSIZE);
  464. cproperty_char = of_get_property(np, "product", NULL);
  465. strscpy(str, cproperty_char ? : data->product_str, sizeof(str));
  466. hub->product_len = strlen(str) & 0xFF;
  467. memset(hub->product, 0, USB251XB_STRING_BUFSIZE);
  468. len = min_t(size_t, USB251XB_STRING_BUFSIZE / 2, strlen(str));
  469. len = utf8s_to_utf16s(str, len, UTF16_LITTLE_ENDIAN,
  470. (wchar_t *)hub->product,
  471. USB251XB_STRING_BUFSIZE);
  472. cproperty_char = of_get_property(np, "serial", NULL);
  473. strscpy(str, cproperty_char ? : USB251XB_DEF_SERIAL_STRING,
  474. sizeof(str));
  475. hub->serial_len = strlen(str) & 0xFF;
  476. memset(hub->serial, 0, USB251XB_STRING_BUFSIZE);
  477. len = min_t(size_t, USB251XB_STRING_BUFSIZE / 2, strlen(str));
  478. len = utf8s_to_utf16s(str, len, UTF16_LITTLE_ENDIAN,
  479. (wchar_t *)hub->serial,
  480. USB251XB_STRING_BUFSIZE);
  481. /*
  482. * The datasheet documents the register as 'Port Swap' but in real the
  483. * register controls the USB DP/DM signal swapping for each port.
  484. */
  485. hub->port_swap = USB251XB_DEF_PORT_SWAP;
  486. usb251xb_get_ports_field(hub, "swap-dx-lanes", data->port_cnt,
  487. false, &hub->port_swap);
  488. /* The following parameters are currently not exposed to devicetree, but
  489. * may be as soon as needed.
  490. */
  491. hub->bat_charge_en = USB251XB_DEF_BATTERY_CHARGING_ENABLE;
  492. hub->boost_57 = USB251XB_DEF_BOOST_57;
  493. hub->boost_14 = USB251XB_DEF_BOOST_14;
  494. hub->port_map12 = USB251XB_DEF_PORT_MAP_12;
  495. hub->port_map34 = USB251XB_DEF_PORT_MAP_34;
  496. hub->port_map56 = USB251XB_DEF_PORT_MAP_56;
  497. hub->port_map7 = USB251XB_DEF_PORT_MAP_7;
  498. return 0;
  499. }
  500. static const struct of_device_id usb251xb_of_match[] = {
  501. {
  502. .compatible = "microchip,usb2422",
  503. .data = &usb2422_data,
  504. }, {
  505. .compatible = "microchip,usb2512b",
  506. .data = &usb2512b_data,
  507. }, {
  508. .compatible = "microchip,usb2512bi",
  509. .data = &usb2512bi_data,
  510. }, {
  511. .compatible = "microchip,usb2513b",
  512. .data = &usb2513b_data,
  513. }, {
  514. .compatible = "microchip,usb2513bi",
  515. .data = &usb2513bi_data,
  516. }, {
  517. .compatible = "microchip,usb2514b",
  518. .data = &usb2514b_data,
  519. }, {
  520. .compatible = "microchip,usb2514bi",
  521. .data = &usb2514bi_data,
  522. }, {
  523. .compatible = "microchip,usb2517",
  524. .data = &usb2517_data,
  525. }, {
  526. .compatible = "microchip,usb2517i",
  527. .data = &usb2517i_data,
  528. }, {
  529. /* sentinel */
  530. }
  531. };
  532. MODULE_DEVICE_TABLE(of, usb251xb_of_match);
  533. #else /* CONFIG_OF */
  534. static int usb251xb_get_ofdata(struct usb251xb *hub,
  535. const struct usb251xb_data *data)
  536. {
  537. return 0;
  538. }
  539. #endif /* CONFIG_OF */
  540. static void usb251xb_regulator_disable_action(void *data)
  541. {
  542. struct usb251xb *hub = data;
  543. regulator_disable(hub->vdd);
  544. }
  545. static int usb251xb_probe(struct usb251xb *hub)
  546. {
  547. struct device *dev = hub->dev;
  548. struct device_node *np = dev->of_node;
  549. const struct usb251xb_data *usb_data = of_device_get_match_data(dev);
  550. int err;
  551. if (np && usb_data) {
  552. err = usb251xb_get_ofdata(hub, usb_data);
  553. if (err) {
  554. dev_err(dev, "failed to get ofdata: %d\n", err);
  555. return err;
  556. }
  557. }
  558. /*
  559. * usb251x SMBus-slave SCL lane is muxed with CFG_SEL0 pin. So if anyone
  560. * tries to work with the bus at the moment the hub reset is released,
  561. * it may cause an invalid config being latched by usb251x. Particularly
  562. * one of the config modes makes the hub loading a default registers
  563. * value without SMBus-slave interface activation. If the hub
  564. * accidentally gets this mode, this will cause the driver SMBus-
  565. * functions failure. Normally we could just lock the SMBus-segment the
  566. * hub i2c-interface resides for the device-specific reset timing. But
  567. * the GPIO controller, which is used to handle the hub reset, might be
  568. * placed at the same i2c-bus segment. In this case an error should be
  569. * returned since we can't safely use the GPIO controller to clear the
  570. * reset state (it may affect the hub configuration) and we can't lock
  571. * the i2c-bus segment (it will cause a deadlock).
  572. */
  573. err = usb251x_check_gpio_chip(hub);
  574. if (err)
  575. return err;
  576. hub->vdd = devm_regulator_get(dev, "vdd");
  577. if (IS_ERR(hub->vdd))
  578. return PTR_ERR(hub->vdd);
  579. err = regulator_enable(hub->vdd);
  580. if (err)
  581. return err;
  582. err = devm_add_action_or_reset(dev,
  583. usb251xb_regulator_disable_action, hub);
  584. if (err)
  585. return err;
  586. err = usb251xb_connect(hub);
  587. if (err) {
  588. dev_err(dev, "Failed to connect hub (%d)\n", err);
  589. return err;
  590. }
  591. dev_info(dev, "Hub probed successfully\n");
  592. return 0;
  593. }
  594. static int usb251xb_i2c_probe(struct i2c_client *i2c,
  595. const struct i2c_device_id *id)
  596. {
  597. struct usb251xb *hub;
  598. hub = devm_kzalloc(&i2c->dev, sizeof(struct usb251xb), GFP_KERNEL);
  599. if (!hub)
  600. return -ENOMEM;
  601. i2c_set_clientdata(i2c, hub);
  602. hub->dev = &i2c->dev;
  603. hub->i2c = i2c;
  604. return usb251xb_probe(hub);
  605. }
  606. static int __maybe_unused usb251xb_suspend(struct device *dev)
  607. {
  608. struct i2c_client *client = to_i2c_client(dev);
  609. struct usb251xb *hub = i2c_get_clientdata(client);
  610. return regulator_disable(hub->vdd);
  611. }
  612. static int __maybe_unused usb251xb_resume(struct device *dev)
  613. {
  614. struct i2c_client *client = to_i2c_client(dev);
  615. struct usb251xb *hub = i2c_get_clientdata(client);
  616. int err;
  617. err = regulator_enable(hub->vdd);
  618. if (err)
  619. return err;
  620. return usb251xb_connect(hub);
  621. }
  622. static SIMPLE_DEV_PM_OPS(usb251xb_pm_ops, usb251xb_suspend, usb251xb_resume);
  623. static const struct i2c_device_id usb251xb_id[] = {
  624. { "usb2422", 0 },
  625. { "usb2512b", 0 },
  626. { "usb2512bi", 0 },
  627. { "usb2513b", 0 },
  628. { "usb2513bi", 0 },
  629. { "usb2514b", 0 },
  630. { "usb2514bi", 0 },
  631. { "usb2517", 0 },
  632. { "usb2517i", 0 },
  633. { /* sentinel */ }
  634. };
  635. MODULE_DEVICE_TABLE(i2c, usb251xb_id);
  636. static struct i2c_driver usb251xb_i2c_driver = {
  637. .driver = {
  638. .name = DRIVER_NAME,
  639. .of_match_table = of_match_ptr(usb251xb_of_match),
  640. .pm = &usb251xb_pm_ops,
  641. },
  642. .probe = usb251xb_i2c_probe,
  643. .id_table = usb251xb_id,
  644. };
  645. module_i2c_driver(usb251xb_i2c_driver);
  646. MODULE_AUTHOR("Richard Leitner <[email protected]>");
  647. MODULE_DESCRIPTION("USB251x/xBi USB 2.0 Hub Controller Driver");
  648. MODULE_LICENSE("GPL");