spi_ks8995.c 14 KB

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  1. /*
  2. * SPI driver for Micrel/Kendin KS8995M and KSZ8864RMN ethernet switches
  3. *
  4. * Copyright (C) 2008 Gabor Juhos <juhosg at openwrt.org>
  5. *
  6. * This file was based on: drivers/spi/at25.c
  7. * Copyright (C) 2006 David Brownell
  8. *
  9. * This program is free software; you can redistribute it and/or modify it
  10. * under the terms of the GNU General Public License version 2 as published
  11. * by the Free Software Foundation.
  12. */
  13. #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
  14. #include <linux/types.h>
  15. #include <linux/kernel.h>
  16. #include <linux/module.h>
  17. #include <linux/delay.h>
  18. #include <linux/device.h>
  19. #include <linux/gpio/consumer.h>
  20. #include <linux/of.h>
  21. #include <linux/of_gpio.h>
  22. #include <linux/spi/spi.h>
  23. #define DRV_VERSION "0.1.1"
  24. #define DRV_DESC "Micrel KS8995 Ethernet switch SPI driver"
  25. /* ------------------------------------------------------------------------ */
  26. #define KS8995_REG_ID0 0x00 /* Chip ID0 */
  27. #define KS8995_REG_ID1 0x01 /* Chip ID1 */
  28. #define KS8995_REG_GC0 0x02 /* Global Control 0 */
  29. #define KS8995_REG_GC1 0x03 /* Global Control 1 */
  30. #define KS8995_REG_GC2 0x04 /* Global Control 2 */
  31. #define KS8995_REG_GC3 0x05 /* Global Control 3 */
  32. #define KS8995_REG_GC4 0x06 /* Global Control 4 */
  33. #define KS8995_REG_GC5 0x07 /* Global Control 5 */
  34. #define KS8995_REG_GC6 0x08 /* Global Control 6 */
  35. #define KS8995_REG_GC7 0x09 /* Global Control 7 */
  36. #define KS8995_REG_GC8 0x0a /* Global Control 8 */
  37. #define KS8995_REG_GC9 0x0b /* Global Control 9 */
  38. #define KS8995_REG_PC(p, r) ((0x10 * p) + r) /* Port Control */
  39. #define KS8995_REG_PS(p, r) ((0x10 * p) + r + 0xe) /* Port Status */
  40. #define KS8995_REG_TPC0 0x60 /* TOS Priority Control 0 */
  41. #define KS8995_REG_TPC1 0x61 /* TOS Priority Control 1 */
  42. #define KS8995_REG_TPC2 0x62 /* TOS Priority Control 2 */
  43. #define KS8995_REG_TPC3 0x63 /* TOS Priority Control 3 */
  44. #define KS8995_REG_TPC4 0x64 /* TOS Priority Control 4 */
  45. #define KS8995_REG_TPC5 0x65 /* TOS Priority Control 5 */
  46. #define KS8995_REG_TPC6 0x66 /* TOS Priority Control 6 */
  47. #define KS8995_REG_TPC7 0x67 /* TOS Priority Control 7 */
  48. #define KS8995_REG_MAC0 0x68 /* MAC address 0 */
  49. #define KS8995_REG_MAC1 0x69 /* MAC address 1 */
  50. #define KS8995_REG_MAC2 0x6a /* MAC address 2 */
  51. #define KS8995_REG_MAC3 0x6b /* MAC address 3 */
  52. #define KS8995_REG_MAC4 0x6c /* MAC address 4 */
  53. #define KS8995_REG_MAC5 0x6d /* MAC address 5 */
  54. #define KS8995_REG_IAC0 0x6e /* Indirect Access Control 0 */
  55. #define KS8995_REG_IAC1 0x6f /* Indirect Access Control 0 */
  56. #define KS8995_REG_IAD7 0x70 /* Indirect Access Data 7 */
  57. #define KS8995_REG_IAD6 0x71 /* Indirect Access Data 6 */
  58. #define KS8995_REG_IAD5 0x72 /* Indirect Access Data 5 */
  59. #define KS8995_REG_IAD4 0x73 /* Indirect Access Data 4 */
  60. #define KS8995_REG_IAD3 0x74 /* Indirect Access Data 3 */
  61. #define KS8995_REG_IAD2 0x75 /* Indirect Access Data 2 */
  62. #define KS8995_REG_IAD1 0x76 /* Indirect Access Data 1 */
  63. #define KS8995_REG_IAD0 0x77 /* Indirect Access Data 0 */
  64. #define KSZ8864_REG_ID1 0xfe /* Chip ID in bit 7 */
  65. #define KS8995_REGS_SIZE 0x80
  66. #define KSZ8864_REGS_SIZE 0x100
  67. #define KSZ8795_REGS_SIZE 0x100
  68. #define ID1_CHIPID_M 0xf
  69. #define ID1_CHIPID_S 4
  70. #define ID1_REVISION_M 0x7
  71. #define ID1_REVISION_S 1
  72. #define ID1_START_SW 1 /* start the switch */
  73. #define FAMILY_KS8995 0x95
  74. #define FAMILY_KSZ8795 0x87
  75. #define CHIPID_M 0
  76. #define KS8995_CHIP_ID 0x00
  77. #define KSZ8864_CHIP_ID 0x01
  78. #define KSZ8795_CHIP_ID 0x09
  79. #define KS8995_CMD_WRITE 0x02U
  80. #define KS8995_CMD_READ 0x03U
  81. #define KS8995_RESET_DELAY 10 /* usec */
  82. enum ks8995_chip_variant {
  83. ks8995,
  84. ksz8864,
  85. ksz8795,
  86. max_variant
  87. };
  88. struct ks8995_chip_params {
  89. char *name;
  90. int family_id;
  91. int chip_id;
  92. int regs_size;
  93. int addr_width;
  94. int addr_shift;
  95. };
  96. static const struct ks8995_chip_params ks8995_chip[] = {
  97. [ks8995] = {
  98. .name = "KS8995MA",
  99. .family_id = FAMILY_KS8995,
  100. .chip_id = KS8995_CHIP_ID,
  101. .regs_size = KS8995_REGS_SIZE,
  102. .addr_width = 8,
  103. .addr_shift = 0,
  104. },
  105. [ksz8864] = {
  106. .name = "KSZ8864RMN",
  107. .family_id = FAMILY_KS8995,
  108. .chip_id = KSZ8864_CHIP_ID,
  109. .regs_size = KSZ8864_REGS_SIZE,
  110. .addr_width = 8,
  111. .addr_shift = 0,
  112. },
  113. [ksz8795] = {
  114. .name = "KSZ8795CLX",
  115. .family_id = FAMILY_KSZ8795,
  116. .chip_id = KSZ8795_CHIP_ID,
  117. .regs_size = KSZ8795_REGS_SIZE,
  118. .addr_width = 12,
  119. .addr_shift = 1,
  120. },
  121. };
  122. struct ks8995_pdata {
  123. int reset_gpio;
  124. enum of_gpio_flags reset_gpio_flags;
  125. };
  126. struct ks8995_switch {
  127. struct spi_device *spi;
  128. struct mutex lock;
  129. struct ks8995_pdata *pdata;
  130. struct bin_attribute regs_attr;
  131. const struct ks8995_chip_params *chip;
  132. int revision_id;
  133. };
  134. static const struct spi_device_id ks8995_id[] = {
  135. {"ks8995", ks8995},
  136. {"ksz8864", ksz8864},
  137. {"ksz8795", ksz8795},
  138. { }
  139. };
  140. MODULE_DEVICE_TABLE(spi, ks8995_id);
  141. static const struct of_device_id ks8895_spi_of_match[] = {
  142. { .compatible = "micrel,ks8995" },
  143. { .compatible = "micrel,ksz8864" },
  144. { .compatible = "micrel,ksz8795" },
  145. { },
  146. };
  147. MODULE_DEVICE_TABLE(of, ks8895_spi_of_match);
  148. static inline u8 get_chip_id(u8 val)
  149. {
  150. return (val >> ID1_CHIPID_S) & ID1_CHIPID_M;
  151. }
  152. static inline u8 get_chip_rev(u8 val)
  153. {
  154. return (val >> ID1_REVISION_S) & ID1_REVISION_M;
  155. }
  156. /* create_spi_cmd - create a chip specific SPI command header
  157. * @ks: pointer to switch instance
  158. * @cmd: SPI command for switch
  159. * @address: register address for command
  160. *
  161. * Different chip families use different bit pattern to address the switches
  162. * registers:
  163. *
  164. * KS8995: 8bit command + 8bit address
  165. * KSZ8795: 3bit command + 12bit address + 1bit TR (?)
  166. */
  167. static inline __be16 create_spi_cmd(struct ks8995_switch *ks, int cmd,
  168. unsigned address)
  169. {
  170. u16 result = cmd;
  171. /* make room for address (incl. address shift) */
  172. result <<= ks->chip->addr_width + ks->chip->addr_shift;
  173. /* add address */
  174. result |= address << ks->chip->addr_shift;
  175. /* SPI protocol needs big endian */
  176. return cpu_to_be16(result);
  177. }
  178. /* ------------------------------------------------------------------------ */
  179. static int ks8995_read(struct ks8995_switch *ks, char *buf,
  180. unsigned offset, size_t count)
  181. {
  182. __be16 cmd;
  183. struct spi_transfer t[2];
  184. struct spi_message m;
  185. int err;
  186. cmd = create_spi_cmd(ks, KS8995_CMD_READ, offset);
  187. spi_message_init(&m);
  188. memset(&t, 0, sizeof(t));
  189. t[0].tx_buf = &cmd;
  190. t[0].len = sizeof(cmd);
  191. spi_message_add_tail(&t[0], &m);
  192. t[1].rx_buf = buf;
  193. t[1].len = count;
  194. spi_message_add_tail(&t[1], &m);
  195. mutex_lock(&ks->lock);
  196. err = spi_sync(ks->spi, &m);
  197. mutex_unlock(&ks->lock);
  198. return err ? err : count;
  199. }
  200. static int ks8995_write(struct ks8995_switch *ks, char *buf,
  201. unsigned offset, size_t count)
  202. {
  203. __be16 cmd;
  204. struct spi_transfer t[2];
  205. struct spi_message m;
  206. int err;
  207. cmd = create_spi_cmd(ks, KS8995_CMD_WRITE, offset);
  208. spi_message_init(&m);
  209. memset(&t, 0, sizeof(t));
  210. t[0].tx_buf = &cmd;
  211. t[0].len = sizeof(cmd);
  212. spi_message_add_tail(&t[0], &m);
  213. t[1].tx_buf = buf;
  214. t[1].len = count;
  215. spi_message_add_tail(&t[1], &m);
  216. mutex_lock(&ks->lock);
  217. err = spi_sync(ks->spi, &m);
  218. mutex_unlock(&ks->lock);
  219. return err ? err : count;
  220. }
  221. static inline int ks8995_read_reg(struct ks8995_switch *ks, u8 addr, u8 *buf)
  222. {
  223. return ks8995_read(ks, buf, addr, 1) != 1;
  224. }
  225. static inline int ks8995_write_reg(struct ks8995_switch *ks, u8 addr, u8 val)
  226. {
  227. char buf = val;
  228. return ks8995_write(ks, &buf, addr, 1) != 1;
  229. }
  230. /* ------------------------------------------------------------------------ */
  231. static int ks8995_stop(struct ks8995_switch *ks)
  232. {
  233. return ks8995_write_reg(ks, KS8995_REG_ID1, 0);
  234. }
  235. static int ks8995_start(struct ks8995_switch *ks)
  236. {
  237. return ks8995_write_reg(ks, KS8995_REG_ID1, 1);
  238. }
  239. static int ks8995_reset(struct ks8995_switch *ks)
  240. {
  241. int err;
  242. err = ks8995_stop(ks);
  243. if (err)
  244. return err;
  245. udelay(KS8995_RESET_DELAY);
  246. return ks8995_start(ks);
  247. }
  248. static ssize_t ks8995_registers_read(struct file *filp, struct kobject *kobj,
  249. struct bin_attribute *bin_attr, char *buf, loff_t off, size_t count)
  250. {
  251. struct device *dev;
  252. struct ks8995_switch *ks8995;
  253. dev = container_of(kobj, struct device, kobj);
  254. ks8995 = dev_get_drvdata(dev);
  255. return ks8995_read(ks8995, buf, off, count);
  256. }
  257. static ssize_t ks8995_registers_write(struct file *filp, struct kobject *kobj,
  258. struct bin_attribute *bin_attr, char *buf, loff_t off, size_t count)
  259. {
  260. struct device *dev;
  261. struct ks8995_switch *ks8995;
  262. dev = container_of(kobj, struct device, kobj);
  263. ks8995 = dev_get_drvdata(dev);
  264. return ks8995_write(ks8995, buf, off, count);
  265. }
  266. /* ks8995_get_revision - get chip revision
  267. * @ks: pointer to switch instance
  268. *
  269. * Verify chip family and id and get chip revision.
  270. */
  271. static int ks8995_get_revision(struct ks8995_switch *ks)
  272. {
  273. int err;
  274. u8 id0, id1, ksz8864_id;
  275. /* read family id */
  276. err = ks8995_read_reg(ks, KS8995_REG_ID0, &id0);
  277. if (err) {
  278. err = -EIO;
  279. goto err_out;
  280. }
  281. /* verify family id */
  282. if (id0 != ks->chip->family_id) {
  283. dev_err(&ks->spi->dev, "chip family id mismatch: expected 0x%02x but 0x%02x read\n",
  284. ks->chip->family_id, id0);
  285. err = -ENODEV;
  286. goto err_out;
  287. }
  288. switch (ks->chip->family_id) {
  289. case FAMILY_KS8995:
  290. /* try reading chip id at CHIP ID1 */
  291. err = ks8995_read_reg(ks, KS8995_REG_ID1, &id1);
  292. if (err) {
  293. err = -EIO;
  294. goto err_out;
  295. }
  296. /* verify chip id */
  297. if ((get_chip_id(id1) == CHIPID_M) &&
  298. (get_chip_id(id1) == ks->chip->chip_id)) {
  299. /* KS8995MA */
  300. ks->revision_id = get_chip_rev(id1);
  301. } else if (get_chip_id(id1) != CHIPID_M) {
  302. /* KSZ8864RMN */
  303. err = ks8995_read_reg(ks, KS8995_REG_ID1, &ksz8864_id);
  304. if (err) {
  305. err = -EIO;
  306. goto err_out;
  307. }
  308. if ((ksz8864_id & 0x80) &&
  309. (ks->chip->chip_id == KSZ8864_CHIP_ID)) {
  310. ks->revision_id = get_chip_rev(id1);
  311. }
  312. } else {
  313. dev_err(&ks->spi->dev, "unsupported chip id for KS8995 family: 0x%02x\n",
  314. id1);
  315. err = -ENODEV;
  316. }
  317. break;
  318. case FAMILY_KSZ8795:
  319. /* try reading chip id at CHIP ID1 */
  320. err = ks8995_read_reg(ks, KS8995_REG_ID1, &id1);
  321. if (err) {
  322. err = -EIO;
  323. goto err_out;
  324. }
  325. if (get_chip_id(id1) == ks->chip->chip_id) {
  326. ks->revision_id = get_chip_rev(id1);
  327. } else {
  328. dev_err(&ks->spi->dev, "unsupported chip id for KSZ8795 family: 0x%02x\n",
  329. id1);
  330. err = -ENODEV;
  331. }
  332. break;
  333. default:
  334. dev_err(&ks->spi->dev, "unsupported family id: 0x%02x\n", id0);
  335. err = -ENODEV;
  336. break;
  337. }
  338. err_out:
  339. return err;
  340. }
  341. /* ks8995_parse_dt - setup platform data from devicetree
  342. * @ks: pointer to switch instance
  343. *
  344. * Parses supported DT properties and sets up platform data
  345. * accordingly.
  346. */
  347. static void ks8995_parse_dt(struct ks8995_switch *ks)
  348. {
  349. struct device_node *np = ks->spi->dev.of_node;
  350. struct ks8995_pdata *pdata = ks->pdata;
  351. if (!np)
  352. return;
  353. pdata->reset_gpio = of_get_named_gpio_flags(np, "reset-gpios", 0,
  354. &pdata->reset_gpio_flags);
  355. }
  356. static const struct bin_attribute ks8995_registers_attr = {
  357. .attr = {
  358. .name = "registers",
  359. .mode = 0600,
  360. },
  361. .size = KS8995_REGS_SIZE,
  362. .read = ks8995_registers_read,
  363. .write = ks8995_registers_write,
  364. };
  365. /* ------------------------------------------------------------------------ */
  366. static int ks8995_probe(struct spi_device *spi)
  367. {
  368. struct ks8995_switch *ks;
  369. int err;
  370. int variant = spi_get_device_id(spi)->driver_data;
  371. if (variant >= max_variant) {
  372. dev_err(&spi->dev, "bad chip variant %d\n", variant);
  373. return -ENODEV;
  374. }
  375. ks = devm_kzalloc(&spi->dev, sizeof(*ks), GFP_KERNEL);
  376. if (!ks)
  377. return -ENOMEM;
  378. mutex_init(&ks->lock);
  379. ks->spi = spi;
  380. ks->chip = &ks8995_chip[variant];
  381. if (ks->spi->dev.of_node) {
  382. ks->pdata = devm_kzalloc(&spi->dev, sizeof(*ks->pdata),
  383. GFP_KERNEL);
  384. if (!ks->pdata)
  385. return -ENOMEM;
  386. ks->pdata->reset_gpio = -1;
  387. ks8995_parse_dt(ks);
  388. }
  389. if (!ks->pdata)
  390. ks->pdata = spi->dev.platform_data;
  391. /* de-assert switch reset */
  392. if (ks->pdata && gpio_is_valid(ks->pdata->reset_gpio)) {
  393. unsigned long flags;
  394. flags = (ks->pdata->reset_gpio_flags == OF_GPIO_ACTIVE_LOW ?
  395. GPIOF_ACTIVE_LOW : 0);
  396. err = devm_gpio_request_one(&spi->dev,
  397. ks->pdata->reset_gpio,
  398. flags, "switch-reset");
  399. if (err) {
  400. dev_err(&spi->dev,
  401. "failed to get reset-gpios: %d\n", err);
  402. return -EIO;
  403. }
  404. gpiod_set_value(gpio_to_desc(ks->pdata->reset_gpio), 0);
  405. }
  406. spi_set_drvdata(spi, ks);
  407. spi->mode = SPI_MODE_0;
  408. spi->bits_per_word = 8;
  409. err = spi_setup(spi);
  410. if (err) {
  411. dev_err(&spi->dev, "spi_setup failed, err=%d\n", err);
  412. return err;
  413. }
  414. err = ks8995_get_revision(ks);
  415. if (err)
  416. return err;
  417. memcpy(&ks->regs_attr, &ks8995_registers_attr, sizeof(ks->regs_attr));
  418. ks->regs_attr.size = ks->chip->regs_size;
  419. err = ks8995_reset(ks);
  420. if (err)
  421. return err;
  422. sysfs_attr_init(&ks->regs_attr.attr);
  423. err = sysfs_create_bin_file(&spi->dev.kobj, &ks->regs_attr);
  424. if (err) {
  425. dev_err(&spi->dev, "unable to create sysfs file, err=%d\n",
  426. err);
  427. return err;
  428. }
  429. dev_info(&spi->dev, "%s device found, Chip ID:%x, Revision:%x\n",
  430. ks->chip->name, ks->chip->chip_id, ks->revision_id);
  431. return 0;
  432. }
  433. static int ks8995_remove(struct spi_device *spi)
  434. {
  435. struct ks8995_switch *ks = spi_get_drvdata(spi);
  436. sysfs_remove_bin_file(&spi->dev.kobj, &ks->regs_attr);
  437. /* assert reset */
  438. if (ks->pdata && gpio_is_valid(ks->pdata->reset_gpio))
  439. gpiod_set_value(gpio_to_desc(ks->pdata->reset_gpio), 1);
  440. return 0;
  441. }
  442. /* ------------------------------------------------------------------------ */
  443. static struct spi_driver ks8995_driver = {
  444. .driver = {
  445. .name = "spi-ks8995",
  446. .of_match_table = of_match_ptr(ks8895_spi_of_match),
  447. },
  448. .probe = ks8995_probe,
  449. .remove = ks8995_remove,
  450. .id_table = ks8995_id,
  451. };
  452. module_spi_driver(ks8995_driver);
  453. MODULE_DESCRIPTION(DRV_DESC);
  454. MODULE_VERSION(DRV_VERSION);
  455. MODULE_AUTHOR("Gabor Juhos <juhosg at openwrt.org>");
  456. MODULE_LICENSE("GPL v2");