spi.c 9.9 KB

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  1. /*
  2. * This file is part of wl1271
  3. *
  4. * Copyright (C) 2008-2009 Nokia Corporation
  5. *
  6. * Contact: Luciano Coelho <luciano.coelho@nokia.com>
  7. *
  8. * This program is free software; you can redistribute it and/or
  9. * modify it under the terms of the GNU General Public License
  10. * version 2 as published by the Free Software Foundation.
  11. *
  12. * This program is distributed in the hope that it will be useful, but
  13. * WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  15. * General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU General Public License
  18. * along with this program; if not, write to the Free Software
  19. * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA
  20. * 02110-1301 USA
  21. *
  22. */
  23. #include <linux/interrupt.h>
  24. #include <linux/irq.h>
  25. #include <linux/module.h>
  26. #include <linux/slab.h>
  27. #include <linux/swab.h>
  28. #include <linux/crc7.h>
  29. #include <linux/spi/spi.h>
  30. #include <linux/wl12xx.h>
  31. #include <linux/platform_device.h>
  32. #include "wlcore.h"
  33. #include "wl12xx_80211.h"
  34. #include "io.h"
  35. #define WSPI_CMD_READ 0x40000000
  36. #define WSPI_CMD_WRITE 0x00000000
  37. #define WSPI_CMD_FIXED 0x20000000
  38. #define WSPI_CMD_BYTE_LENGTH 0x1FFE0000
  39. #define WSPI_CMD_BYTE_LENGTH_OFFSET 17
  40. #define WSPI_CMD_BYTE_ADDR 0x0001FFFF
  41. #define WSPI_INIT_CMD_CRC_LEN 5
  42. #define WSPI_INIT_CMD_START 0x00
  43. #define WSPI_INIT_CMD_TX 0x40
  44. /* the extra bypass bit is sampled by the TNET as '1' */
  45. #define WSPI_INIT_CMD_BYPASS_BIT 0x80
  46. #define WSPI_INIT_CMD_FIXEDBUSY_LEN 0x07
  47. #define WSPI_INIT_CMD_EN_FIXEDBUSY 0x80
  48. #define WSPI_INIT_CMD_DIS_FIXEDBUSY 0x00
  49. #define WSPI_INIT_CMD_IOD 0x40
  50. #define WSPI_INIT_CMD_IP 0x20
  51. #define WSPI_INIT_CMD_CS 0x10
  52. #define WSPI_INIT_CMD_WS 0x08
  53. #define WSPI_INIT_CMD_WSPI 0x01
  54. #define WSPI_INIT_CMD_END 0x01
  55. #define WSPI_INIT_CMD_LEN 8
  56. #define HW_ACCESS_WSPI_FIXED_BUSY_LEN \
  57. ((WL1271_BUSY_WORD_LEN - 4) / sizeof(u32))
  58. #define HW_ACCESS_WSPI_INIT_CMD_MASK 0
  59. /* HW limitation: maximum possible chunk size is 4095 bytes */
  60. #define WSPI_MAX_CHUNK_SIZE 4092
  61. /*
  62. * only support SPI for 12xx - this code should be reworked when 18xx
  63. * support is introduced
  64. */
  65. #define SPI_AGGR_BUFFER_SIZE (4 * PAGE_SIZE)
  66. #define WSPI_MAX_NUM_OF_CHUNKS (SPI_AGGR_BUFFER_SIZE / WSPI_MAX_CHUNK_SIZE)
  67. struct wl12xx_spi_glue {
  68. struct device *dev;
  69. struct platform_device *core;
  70. };
  71. static void wl12xx_spi_reset(struct device *child)
  72. {
  73. struct wl12xx_spi_glue *glue = dev_get_drvdata(child->parent);
  74. u8 *cmd;
  75. struct spi_transfer t;
  76. struct spi_message m;
  77. cmd = kzalloc(WSPI_INIT_CMD_LEN, GFP_KERNEL);
  78. if (!cmd) {
  79. dev_err(child->parent,
  80. "could not allocate cmd for spi reset\n");
  81. return;
  82. }
  83. memset(&t, 0, sizeof(t));
  84. spi_message_init(&m);
  85. memset(cmd, 0xff, WSPI_INIT_CMD_LEN);
  86. t.tx_buf = cmd;
  87. t.len = WSPI_INIT_CMD_LEN;
  88. spi_message_add_tail(&t, &m);
  89. spi_sync(to_spi_device(glue->dev), &m);
  90. kfree(cmd);
  91. }
  92. static void wl12xx_spi_init(struct device *child)
  93. {
  94. struct wl12xx_spi_glue *glue = dev_get_drvdata(child->parent);
  95. struct spi_transfer t;
  96. struct spi_message m;
  97. u8 *cmd = kzalloc(WSPI_INIT_CMD_LEN, GFP_KERNEL);
  98. if (!cmd) {
  99. dev_err(child->parent,
  100. "could not allocate cmd for spi init\n");
  101. return;
  102. }
  103. memset(&t, 0, sizeof(t));
  104. spi_message_init(&m);
  105. /*
  106. * Set WSPI_INIT_COMMAND
  107. * the data is being send from the MSB to LSB
  108. */
  109. cmd[0] = 0xff;
  110. cmd[1] = 0xff;
  111. cmd[2] = WSPI_INIT_CMD_START | WSPI_INIT_CMD_TX;
  112. cmd[3] = 0;
  113. cmd[4] = 0;
  114. cmd[5] = HW_ACCESS_WSPI_INIT_CMD_MASK << 3;
  115. cmd[5] |= HW_ACCESS_WSPI_FIXED_BUSY_LEN & WSPI_INIT_CMD_FIXEDBUSY_LEN;
  116. cmd[6] = WSPI_INIT_CMD_IOD | WSPI_INIT_CMD_IP | WSPI_INIT_CMD_CS
  117. | WSPI_INIT_CMD_WSPI | WSPI_INIT_CMD_WS;
  118. if (HW_ACCESS_WSPI_FIXED_BUSY_LEN == 0)
  119. cmd[6] |= WSPI_INIT_CMD_DIS_FIXEDBUSY;
  120. else
  121. cmd[6] |= WSPI_INIT_CMD_EN_FIXEDBUSY;
  122. cmd[7] = crc7_be(0, cmd+2, WSPI_INIT_CMD_CRC_LEN) | WSPI_INIT_CMD_END;
  123. /*
  124. * The above is the logical order; it must actually be stored
  125. * in the buffer byte-swapped.
  126. */
  127. __swab32s((u32 *)cmd);
  128. __swab32s((u32 *)cmd+1);
  129. t.tx_buf = cmd;
  130. t.len = WSPI_INIT_CMD_LEN;
  131. spi_message_add_tail(&t, &m);
  132. spi_sync(to_spi_device(glue->dev), &m);
  133. kfree(cmd);
  134. }
  135. #define WL1271_BUSY_WORD_TIMEOUT 1000
  136. static int wl12xx_spi_read_busy(struct device *child)
  137. {
  138. struct wl12xx_spi_glue *glue = dev_get_drvdata(child->parent);
  139. struct wl1271 *wl = dev_get_drvdata(child);
  140. struct spi_transfer t[1];
  141. struct spi_message m;
  142. u32 *busy_buf;
  143. int num_busy_bytes = 0;
  144. /*
  145. * Read further busy words from SPI until a non-busy word is
  146. * encountered, then read the data itself into the buffer.
  147. */
  148. num_busy_bytes = WL1271_BUSY_WORD_TIMEOUT;
  149. busy_buf = wl->buffer_busyword;
  150. while (num_busy_bytes) {
  151. num_busy_bytes--;
  152. spi_message_init(&m);
  153. memset(t, 0, sizeof(t));
  154. t[0].rx_buf = busy_buf;
  155. t[0].len = sizeof(u32);
  156. t[0].cs_change = true;
  157. spi_message_add_tail(&t[0], &m);
  158. spi_sync(to_spi_device(glue->dev), &m);
  159. if (*busy_buf & 0x1)
  160. return 0;
  161. }
  162. /* The SPI bus is unresponsive, the read failed. */
  163. dev_err(child->parent, "SPI read busy-word timeout!\n");
  164. return -ETIMEDOUT;
  165. }
  166. static int __must_check wl12xx_spi_raw_read(struct device *child, int addr,
  167. void *buf, size_t len, bool fixed)
  168. {
  169. struct wl12xx_spi_glue *glue = dev_get_drvdata(child->parent);
  170. struct wl1271 *wl = dev_get_drvdata(child);
  171. struct spi_transfer t[2];
  172. struct spi_message m;
  173. u32 *busy_buf;
  174. u32 *cmd;
  175. u32 chunk_len;
  176. while (len > 0) {
  177. chunk_len = min_t(size_t, WSPI_MAX_CHUNK_SIZE, len);
  178. cmd = &wl->buffer_cmd;
  179. busy_buf = wl->buffer_busyword;
  180. *cmd = 0;
  181. *cmd |= WSPI_CMD_READ;
  182. *cmd |= (chunk_len << WSPI_CMD_BYTE_LENGTH_OFFSET) &
  183. WSPI_CMD_BYTE_LENGTH;
  184. *cmd |= addr & WSPI_CMD_BYTE_ADDR;
  185. if (fixed)
  186. *cmd |= WSPI_CMD_FIXED;
  187. spi_message_init(&m);
  188. memset(t, 0, sizeof(t));
  189. t[0].tx_buf = cmd;
  190. t[0].len = 4;
  191. t[0].cs_change = true;
  192. spi_message_add_tail(&t[0], &m);
  193. /* Busy and non busy words read */
  194. t[1].rx_buf = busy_buf;
  195. t[1].len = WL1271_BUSY_WORD_LEN;
  196. t[1].cs_change = true;
  197. spi_message_add_tail(&t[1], &m);
  198. spi_sync(to_spi_device(glue->dev), &m);
  199. if (!(busy_buf[WL1271_BUSY_WORD_CNT - 1] & 0x1) &&
  200. wl12xx_spi_read_busy(child)) {
  201. memset(buf, 0, chunk_len);
  202. return 0;
  203. }
  204. spi_message_init(&m);
  205. memset(t, 0, sizeof(t));
  206. t[0].rx_buf = buf;
  207. t[0].len = chunk_len;
  208. t[0].cs_change = true;
  209. spi_message_add_tail(&t[0], &m);
  210. spi_sync(to_spi_device(glue->dev), &m);
  211. if (!fixed)
  212. addr += chunk_len;
  213. buf += chunk_len;
  214. len -= chunk_len;
  215. }
  216. return 0;
  217. }
  218. static int __must_check wl12xx_spi_raw_write(struct device *child, int addr,
  219. void *buf, size_t len, bool fixed)
  220. {
  221. struct wl12xx_spi_glue *glue = dev_get_drvdata(child->parent);
  222. struct spi_transfer t[2 * (WSPI_MAX_NUM_OF_CHUNKS + 1)];
  223. struct spi_message m;
  224. u32 commands[WSPI_MAX_NUM_OF_CHUNKS];
  225. u32 *cmd;
  226. u32 chunk_len;
  227. int i;
  228. WARN_ON(len > SPI_AGGR_BUFFER_SIZE);
  229. spi_message_init(&m);
  230. memset(t, 0, sizeof(t));
  231. cmd = &commands[0];
  232. i = 0;
  233. while (len > 0) {
  234. chunk_len = min_t(size_t, WSPI_MAX_CHUNK_SIZE, len);
  235. *cmd = 0;
  236. *cmd |= WSPI_CMD_WRITE;
  237. *cmd |= (chunk_len << WSPI_CMD_BYTE_LENGTH_OFFSET) &
  238. WSPI_CMD_BYTE_LENGTH;
  239. *cmd |= addr & WSPI_CMD_BYTE_ADDR;
  240. if (fixed)
  241. *cmd |= WSPI_CMD_FIXED;
  242. t[i].tx_buf = cmd;
  243. t[i].len = sizeof(*cmd);
  244. spi_message_add_tail(&t[i++], &m);
  245. t[i].tx_buf = buf;
  246. t[i].len = chunk_len;
  247. spi_message_add_tail(&t[i++], &m);
  248. if (!fixed)
  249. addr += chunk_len;
  250. buf += chunk_len;
  251. len -= chunk_len;
  252. cmd++;
  253. }
  254. spi_sync(to_spi_device(glue->dev), &m);
  255. return 0;
  256. }
  257. static struct wl1271_if_operations spi_ops = {
  258. .read = wl12xx_spi_raw_read,
  259. .write = wl12xx_spi_raw_write,
  260. .reset = wl12xx_spi_reset,
  261. .init = wl12xx_spi_init,
  262. .set_block_size = NULL,
  263. };
  264. static int wl1271_probe(struct spi_device *spi)
  265. {
  266. struct wl12xx_spi_glue *glue;
  267. struct wlcore_platdev_data pdev_data;
  268. struct resource res[1];
  269. int ret;
  270. memset(&pdev_data, 0x00, sizeof(pdev_data));
  271. /* TODO: add DT parsing when needed */
  272. pdev_data.if_ops = &spi_ops;
  273. glue = devm_kzalloc(&spi->dev, sizeof(*glue), GFP_KERNEL);
  274. if (!glue) {
  275. dev_err(&spi->dev, "can't allocate glue\n");
  276. return -ENOMEM;
  277. }
  278. glue->dev = &spi->dev;
  279. spi_set_drvdata(spi, glue);
  280. /* This is the only SPI value that we need to set here, the rest
  281. * comes from the board-peripherals file */
  282. spi->bits_per_word = 32;
  283. ret = spi_setup(spi);
  284. if (ret < 0) {
  285. dev_err(glue->dev, "spi_setup failed\n");
  286. return ret;
  287. }
  288. glue->core = platform_device_alloc("wl12xx", PLATFORM_DEVID_AUTO);
  289. if (!glue->core) {
  290. dev_err(glue->dev, "can't allocate platform_device\n");
  291. return -ENOMEM;
  292. }
  293. glue->core->dev.parent = &spi->dev;
  294. memset(res, 0x00, sizeof(res));
  295. res[0].start = spi->irq;
  296. res[0].flags = IORESOURCE_IRQ;
  297. res[0].name = "irq";
  298. ret = platform_device_add_resources(glue->core, res, ARRAY_SIZE(res));
  299. if (ret) {
  300. dev_err(glue->dev, "can't add resources\n");
  301. goto out_dev_put;
  302. }
  303. ret = platform_device_add_data(glue->core, &pdev_data,
  304. sizeof(pdev_data));
  305. if (ret) {
  306. dev_err(glue->dev, "can't add platform data\n");
  307. goto out_dev_put;
  308. }
  309. ret = platform_device_add(glue->core);
  310. if (ret) {
  311. dev_err(glue->dev, "can't register platform device\n");
  312. goto out_dev_put;
  313. }
  314. return 0;
  315. out_dev_put:
  316. platform_device_put(glue->core);
  317. return ret;
  318. }
  319. static int wl1271_remove(struct spi_device *spi)
  320. {
  321. struct wl12xx_spi_glue *glue = spi_get_drvdata(spi);
  322. platform_device_unregister(glue->core);
  323. return 0;
  324. }
  325. static struct spi_driver wl1271_spi_driver = {
  326. .driver = {
  327. .name = "wl1271_spi",
  328. .owner = THIS_MODULE,
  329. },
  330. .probe = wl1271_probe,
  331. .remove = wl1271_remove,
  332. };
  333. module_spi_driver(wl1271_spi_driver);
  334. MODULE_LICENSE("GPL");
  335. MODULE_AUTHOR("Luciano Coelho <coelho@ti.com>");
  336. MODULE_AUTHOR("Juuso Oikarinen <juuso.oikarinen@nokia.com>");
  337. MODULE_ALIAS("spi:wl1271");