rtl8187_dev.c 23 KB

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  1. /*
  2. * Linux device driver for RTL8187
  3. *
  4. * Copyright 2007 Michael Wu <flamingice@sourmilk.net>
  5. * Copyright 2007 Andrea Merello <andreamrl@tiscali.it>
  6. *
  7. * Based on the r8187 driver, which is:
  8. * Copyright 2005 Andrea Merello <andreamrl@tiscali.it>, et al.
  9. *
  10. * Magic delays and register offsets below are taken from the original
  11. * r8187 driver sources. Thanks to Realtek for their support!
  12. *
  13. * This program is free software; you can redistribute it and/or modify
  14. * it under the terms of the GNU General Public License version 2 as
  15. * published by the Free Software Foundation.
  16. */
  17. #include <linux/init.h>
  18. #include <linux/usb.h>
  19. #include <linux/delay.h>
  20. #include <linux/etherdevice.h>
  21. #include <linux/eeprom_93cx6.h>
  22. #include <net/mac80211.h>
  23. #include "rtl8187.h"
  24. #include "rtl8187_rtl8225.h"
  25. MODULE_AUTHOR("Michael Wu <flamingice@sourmilk.net>");
  26. MODULE_AUTHOR("Andrea Merello <andreamrl@tiscali.it>");
  27. MODULE_DESCRIPTION("RTL8187 USB wireless driver");
  28. MODULE_LICENSE("GPL");
  29. static struct usb_device_id rtl8187_table[] __devinitdata = {
  30. /* Realtek */
  31. {USB_DEVICE(0x0bda, 0x8187)},
  32. /* Netgear */
  33. {USB_DEVICE(0x0846, 0x6100)},
  34. {USB_DEVICE(0x0846, 0x6a00)},
  35. /* HP */
  36. {USB_DEVICE(0x03f0, 0xca02)},
  37. {}
  38. };
  39. MODULE_DEVICE_TABLE(usb, rtl8187_table);
  40. static void rtl8187_iowrite_async_cb(struct urb *urb)
  41. {
  42. kfree(urb->context);
  43. usb_free_urb(urb);
  44. }
  45. static void rtl8187_iowrite_async(struct rtl8187_priv *priv, __le16 addr,
  46. void *data, u16 len)
  47. {
  48. struct usb_ctrlrequest *dr;
  49. struct urb *urb;
  50. struct rtl8187_async_write_data {
  51. u8 data[4];
  52. struct usb_ctrlrequest dr;
  53. } *buf;
  54. buf = kmalloc(sizeof(*buf), GFP_ATOMIC);
  55. if (!buf)
  56. return;
  57. urb = usb_alloc_urb(0, GFP_ATOMIC);
  58. if (!urb) {
  59. kfree(buf);
  60. return;
  61. }
  62. dr = &buf->dr;
  63. dr->bRequestType = RTL8187_REQT_WRITE;
  64. dr->bRequest = RTL8187_REQ_SET_REG;
  65. dr->wValue = addr;
  66. dr->wIndex = 0;
  67. dr->wLength = cpu_to_le16(len);
  68. memcpy(buf, data, len);
  69. usb_fill_control_urb(urb, priv->udev, usb_sndctrlpipe(priv->udev, 0),
  70. (unsigned char *)dr, buf, len,
  71. rtl8187_iowrite_async_cb, buf);
  72. usb_submit_urb(urb, GFP_ATOMIC);
  73. }
  74. static inline void rtl818x_iowrite32_async(struct rtl8187_priv *priv,
  75. __le32 *addr, u32 val)
  76. {
  77. __le32 buf = cpu_to_le32(val);
  78. rtl8187_iowrite_async(priv, cpu_to_le16((unsigned long)addr),
  79. &buf, sizeof(buf));
  80. }
  81. void rtl8187_write_phy(struct ieee80211_hw *dev, u8 addr, u32 data)
  82. {
  83. struct rtl8187_priv *priv = dev->priv;
  84. data <<= 8;
  85. data |= addr | 0x80;
  86. rtl818x_iowrite8(priv, &priv->map->PHY[3], (data >> 24) & 0xFF);
  87. rtl818x_iowrite8(priv, &priv->map->PHY[2], (data >> 16) & 0xFF);
  88. rtl818x_iowrite8(priv, &priv->map->PHY[1], (data >> 8) & 0xFF);
  89. rtl818x_iowrite8(priv, &priv->map->PHY[0], data & 0xFF);
  90. msleep(1);
  91. }
  92. static void rtl8187_tx_cb(struct urb *urb)
  93. {
  94. struct ieee80211_tx_status status = { {0} };
  95. struct sk_buff *skb = (struct sk_buff *)urb->context;
  96. struct rtl8187_tx_info *info = (struct rtl8187_tx_info *)skb->cb;
  97. usb_free_urb(info->urb);
  98. if (info->control)
  99. memcpy(&status.control, info->control, sizeof(status.control));
  100. kfree(info->control);
  101. skb_pull(skb, sizeof(struct rtl8187_tx_hdr));
  102. status.flags |= IEEE80211_TX_STATUS_ACK;
  103. ieee80211_tx_status_irqsafe(info->dev, skb, &status);
  104. }
  105. static int rtl8187_tx(struct ieee80211_hw *dev, struct sk_buff *skb,
  106. struct ieee80211_tx_control *control)
  107. {
  108. struct rtl8187_priv *priv = dev->priv;
  109. struct rtl8187_tx_hdr *hdr;
  110. struct rtl8187_tx_info *info;
  111. struct urb *urb;
  112. u32 tmp;
  113. urb = usb_alloc_urb(0, GFP_ATOMIC);
  114. if (!urb) {
  115. kfree_skb(skb);
  116. return 0;
  117. }
  118. hdr = (struct rtl8187_tx_hdr *)skb_push(skb, sizeof(*hdr));
  119. tmp = skb->len - sizeof(*hdr);
  120. tmp |= RTL8187_TX_FLAG_NO_ENCRYPT;
  121. tmp |= control->rts_cts_rate << 19;
  122. tmp |= control->tx_rate << 24;
  123. if (ieee80211_get_morefrag((struct ieee80211_hdr *)skb))
  124. tmp |= RTL8187_TX_FLAG_MORE_FRAG;
  125. if (control->flags & IEEE80211_TXCTL_USE_RTS_CTS) {
  126. tmp |= RTL8187_TX_FLAG_RTS;
  127. hdr->rts_duration =
  128. ieee80211_rts_duration(dev, priv->if_id, skb->len, control);
  129. }
  130. if (control->flags & IEEE80211_TXCTL_USE_CTS_PROTECT)
  131. tmp |= RTL8187_TX_FLAG_CTS;
  132. hdr->flags = cpu_to_le32(tmp);
  133. hdr->len = 0;
  134. tmp = control->retry_limit << 8;
  135. hdr->retry = cpu_to_le32(tmp);
  136. info = (struct rtl8187_tx_info *)skb->cb;
  137. info->control = kmemdup(control, sizeof(*control), GFP_ATOMIC);
  138. info->urb = urb;
  139. info->dev = dev;
  140. usb_fill_bulk_urb(urb, priv->udev, usb_sndbulkpipe(priv->udev, 2),
  141. hdr, skb->len, rtl8187_tx_cb, skb);
  142. usb_submit_urb(urb, GFP_ATOMIC);
  143. return 0;
  144. }
  145. static void rtl8187_rx_cb(struct urb *urb)
  146. {
  147. struct sk_buff *skb = (struct sk_buff *)urb->context;
  148. struct rtl8187_rx_info *info = (struct rtl8187_rx_info *)skb->cb;
  149. struct ieee80211_hw *dev = info->dev;
  150. struct rtl8187_priv *priv = dev->priv;
  151. struct rtl8187_rx_hdr *hdr;
  152. struct ieee80211_rx_status rx_status = { 0 };
  153. int rate, signal;
  154. u32 flags;
  155. spin_lock(&priv->rx_queue.lock);
  156. if (skb->next)
  157. __skb_unlink(skb, &priv->rx_queue);
  158. else {
  159. spin_unlock(&priv->rx_queue.lock);
  160. return;
  161. }
  162. spin_unlock(&priv->rx_queue.lock);
  163. if (unlikely(urb->status)) {
  164. usb_free_urb(urb);
  165. dev_kfree_skb_irq(skb);
  166. return;
  167. }
  168. skb_put(skb, urb->actual_length);
  169. hdr = (struct rtl8187_rx_hdr *)(skb_tail_pointer(skb) - sizeof(*hdr));
  170. flags = le32_to_cpu(hdr->flags);
  171. skb_trim(skb, flags & 0x0FFF);
  172. signal = hdr->agc >> 1;
  173. rate = (flags >> 20) & 0xF;
  174. if (rate > 3) { /* OFDM rate */
  175. if (signal > 90)
  176. signal = 90;
  177. else if (signal < 25)
  178. signal = 25;
  179. signal = 90 - signal;
  180. } else { /* CCK rate */
  181. if (signal > 95)
  182. signal = 95;
  183. else if (signal < 30)
  184. signal = 30;
  185. signal = 95 - signal;
  186. }
  187. rx_status.antenna = (hdr->signal >> 7) & 1;
  188. rx_status.signal = 64 - min(hdr->noise, (u8)64);
  189. rx_status.ssi = signal;
  190. rx_status.rate = rate;
  191. rx_status.freq = dev->conf.freq;
  192. rx_status.channel = dev->conf.channel;
  193. rx_status.phymode = dev->conf.phymode;
  194. rx_status.mactime = le64_to_cpu(hdr->mac_time);
  195. if (flags & (1 << 13))
  196. rx_status.flag |= RX_FLAG_FAILED_FCS_CRC;
  197. ieee80211_rx_irqsafe(dev, skb, &rx_status);
  198. skb = dev_alloc_skb(RTL8187_MAX_RX);
  199. if (unlikely(!skb)) {
  200. usb_free_urb(urb);
  201. /* TODO check rx queue length and refill *somewhere* */
  202. return;
  203. }
  204. info = (struct rtl8187_rx_info *)skb->cb;
  205. info->urb = urb;
  206. info->dev = dev;
  207. urb->transfer_buffer = skb_tail_pointer(skb);
  208. urb->context = skb;
  209. skb_queue_tail(&priv->rx_queue, skb);
  210. usb_submit_urb(urb, GFP_ATOMIC);
  211. }
  212. static int rtl8187_init_urbs(struct ieee80211_hw *dev)
  213. {
  214. struct rtl8187_priv *priv = dev->priv;
  215. struct urb *entry;
  216. struct sk_buff *skb;
  217. struct rtl8187_rx_info *info;
  218. while (skb_queue_len(&priv->rx_queue) < 8) {
  219. skb = __dev_alloc_skb(RTL8187_MAX_RX, GFP_KERNEL);
  220. if (!skb)
  221. break;
  222. entry = usb_alloc_urb(0, GFP_KERNEL);
  223. if (!entry) {
  224. kfree_skb(skb);
  225. break;
  226. }
  227. usb_fill_bulk_urb(entry, priv->udev,
  228. usb_rcvbulkpipe(priv->udev, 1),
  229. skb_tail_pointer(skb),
  230. RTL8187_MAX_RX, rtl8187_rx_cb, skb);
  231. info = (struct rtl8187_rx_info *)skb->cb;
  232. info->urb = entry;
  233. info->dev = dev;
  234. skb_queue_tail(&priv->rx_queue, skb);
  235. usb_submit_urb(entry, GFP_KERNEL);
  236. }
  237. return 0;
  238. }
  239. static int rtl8187_init_hw(struct ieee80211_hw *dev)
  240. {
  241. struct rtl8187_priv *priv = dev->priv;
  242. u8 reg;
  243. int i;
  244. /* reset */
  245. rtl818x_iowrite8(priv, &priv->map->EEPROM_CMD, RTL818X_EEPROM_CMD_CONFIG);
  246. reg = rtl818x_ioread8(priv, &priv->map->CONFIG3);
  247. rtl818x_iowrite8(priv, &priv->map->CONFIG3, reg | RTL818X_CONFIG3_ANAPARAM_WRITE);
  248. rtl818x_iowrite32(priv, &priv->map->ANAPARAM, RTL8225_ANAPARAM_ON);
  249. rtl818x_iowrite32(priv, &priv->map->ANAPARAM2, RTL8225_ANAPARAM2_ON);
  250. rtl818x_iowrite8(priv, &priv->map->CONFIG3, reg & ~RTL818X_CONFIG3_ANAPARAM_WRITE);
  251. rtl818x_iowrite8(priv, &priv->map->EEPROM_CMD, RTL818X_EEPROM_CMD_NORMAL);
  252. rtl818x_iowrite16(priv, &priv->map->INT_MASK, 0);
  253. msleep(200);
  254. rtl818x_iowrite8(priv, (u8 *)0xFE18, 0x10);
  255. rtl818x_iowrite8(priv, (u8 *)0xFE18, 0x11);
  256. rtl818x_iowrite8(priv, (u8 *)0xFE18, 0x00);
  257. msleep(200);
  258. reg = rtl818x_ioread8(priv, &priv->map->CMD);
  259. reg &= (1 << 1);
  260. reg |= RTL818X_CMD_RESET;
  261. rtl818x_iowrite8(priv, &priv->map->CMD, reg);
  262. i = 10;
  263. do {
  264. msleep(2);
  265. if (!(rtl818x_ioread8(priv, &priv->map->CMD) &
  266. RTL818X_CMD_RESET))
  267. break;
  268. } while (--i);
  269. if (!i) {
  270. printk(KERN_ERR "%s: Reset timeout!\n", wiphy_name(dev->wiphy));
  271. return -ETIMEDOUT;
  272. }
  273. /* reload registers from eeprom */
  274. rtl818x_iowrite8(priv, &priv->map->EEPROM_CMD, RTL818X_EEPROM_CMD_LOAD);
  275. i = 10;
  276. do {
  277. msleep(4);
  278. if (!(rtl818x_ioread8(priv, &priv->map->EEPROM_CMD) &
  279. RTL818X_EEPROM_CMD_CONFIG))
  280. break;
  281. } while (--i);
  282. if (!i) {
  283. printk(KERN_ERR "%s: eeprom reset timeout!\n",
  284. wiphy_name(dev->wiphy));
  285. return -ETIMEDOUT;
  286. }
  287. rtl818x_iowrite8(priv, &priv->map->EEPROM_CMD, RTL818X_EEPROM_CMD_CONFIG);
  288. reg = rtl818x_ioread8(priv, &priv->map->CONFIG3);
  289. rtl818x_iowrite8(priv, &priv->map->CONFIG3, reg | RTL818X_CONFIG3_ANAPARAM_WRITE);
  290. rtl818x_iowrite32(priv, &priv->map->ANAPARAM, RTL8225_ANAPARAM_ON);
  291. rtl818x_iowrite32(priv, &priv->map->ANAPARAM2, RTL8225_ANAPARAM2_ON);
  292. rtl818x_iowrite8(priv, &priv->map->CONFIG3, reg & ~RTL818X_CONFIG3_ANAPARAM_WRITE);
  293. rtl818x_iowrite8(priv, &priv->map->EEPROM_CMD, RTL818X_EEPROM_CMD_NORMAL);
  294. /* setup card */
  295. rtl818x_iowrite16(priv, &priv->map->RFPinsSelect, 0);
  296. rtl818x_iowrite8(priv, &priv->map->GPIO, 0);
  297. rtl818x_iowrite16(priv, &priv->map->RFPinsSelect, (4 << 8));
  298. rtl818x_iowrite8(priv, &priv->map->GPIO, 1);
  299. rtl818x_iowrite8(priv, &priv->map->GP_ENABLE, 0);
  300. rtl818x_iowrite8(priv, &priv->map->EEPROM_CMD, RTL818X_EEPROM_CMD_CONFIG);
  301. rtl818x_iowrite16(priv, (__le16 *)0xFFF4, 0xFFFF);
  302. reg = rtl818x_ioread8(priv, &priv->map->CONFIG1);
  303. reg &= 0x3F;
  304. reg |= 0x80;
  305. rtl818x_iowrite8(priv, &priv->map->CONFIG1, reg);
  306. rtl818x_iowrite8(priv, &priv->map->EEPROM_CMD, RTL818X_EEPROM_CMD_NORMAL);
  307. rtl818x_iowrite32(priv, &priv->map->INT_TIMEOUT, 0);
  308. rtl818x_iowrite8(priv, &priv->map->WPA_CONF, 0);
  309. rtl818x_iowrite8(priv, &priv->map->RATE_FALLBACK, 0x81);
  310. // TODO: set RESP_RATE and BRSR properly
  311. rtl818x_iowrite8(priv, &priv->map->RESP_RATE, (8 << 4) | 0);
  312. rtl818x_iowrite16(priv, &priv->map->BRSR, 0x01F3);
  313. /* host_usb_init */
  314. rtl818x_iowrite16(priv, &priv->map->RFPinsSelect, 0);
  315. rtl818x_iowrite8(priv, &priv->map->GPIO, 0);
  316. reg = rtl818x_ioread8(priv, (u8 *)0xFE53);
  317. rtl818x_iowrite8(priv, (u8 *)0xFE53, reg | (1 << 7));
  318. rtl818x_iowrite16(priv, &priv->map->RFPinsSelect, (4 << 8));
  319. rtl818x_iowrite8(priv, &priv->map->GPIO, 0x20);
  320. rtl818x_iowrite8(priv, &priv->map->GP_ENABLE, 0);
  321. rtl818x_iowrite16(priv, &priv->map->RFPinsOutput, 0x80);
  322. rtl818x_iowrite16(priv, &priv->map->RFPinsSelect, 0x80);
  323. rtl818x_iowrite16(priv, &priv->map->RFPinsEnable, 0x80);
  324. msleep(100);
  325. rtl818x_iowrite32(priv, &priv->map->RF_TIMING, 0x000a8008);
  326. rtl818x_iowrite16(priv, &priv->map->BRSR, 0xFFFF);
  327. rtl818x_iowrite32(priv, &priv->map->RF_PARA, 0x00100044);
  328. rtl818x_iowrite8(priv, &priv->map->EEPROM_CMD, RTL818X_EEPROM_CMD_CONFIG);
  329. rtl818x_iowrite8(priv, &priv->map->CONFIG3, 0x44);
  330. rtl818x_iowrite8(priv, &priv->map->EEPROM_CMD, RTL818X_EEPROM_CMD_NORMAL);
  331. rtl818x_iowrite16(priv, &priv->map->RFPinsEnable, 0x1FF7);
  332. msleep(100);
  333. priv->rf_init(dev);
  334. rtl818x_iowrite16(priv, &priv->map->BRSR, 0x01F3);
  335. reg = rtl818x_ioread16(priv, &priv->map->PGSELECT) & 0xfffe;
  336. rtl818x_iowrite16(priv, &priv->map->PGSELECT, reg | 0x1);
  337. rtl818x_iowrite16(priv, (__le16 *)0xFFFE, 0x10);
  338. rtl818x_iowrite8(priv, &priv->map->TALLY_SEL, 0x80);
  339. rtl818x_iowrite8(priv, (u8 *)0xFFFF, 0x60);
  340. rtl818x_iowrite16(priv, &priv->map->PGSELECT, reg);
  341. return 0;
  342. }
  343. static void rtl8187_set_channel(struct ieee80211_hw *dev, int channel)
  344. {
  345. u32 reg;
  346. struct rtl8187_priv *priv = dev->priv;
  347. reg = rtl818x_ioread32(priv, &priv->map->TX_CONF);
  348. /* Enable TX loopback on MAC level to avoid TX during channel
  349. * changes, as this has be seen to causes problems and the
  350. * card will stop work until next reset
  351. */
  352. rtl818x_iowrite32(priv, &priv->map->TX_CONF,
  353. reg | RTL818X_TX_CONF_LOOPBACK_MAC);
  354. msleep(10);
  355. rtl8225_rf_set_channel(dev, channel);
  356. msleep(10);
  357. rtl818x_iowrite32(priv, &priv->map->TX_CONF, reg);
  358. }
  359. static int rtl8187_start(struct ieee80211_hw *dev)
  360. {
  361. struct rtl8187_priv *priv = dev->priv;
  362. u32 reg;
  363. int ret;
  364. ret = rtl8187_init_hw(dev);
  365. if (ret)
  366. return ret;
  367. rtl818x_iowrite16(priv, &priv->map->INT_MASK, 0xFFFF);
  368. rtl8187_init_urbs(dev);
  369. reg = RTL818X_RX_CONF_ONLYERLPKT |
  370. RTL818X_RX_CONF_RX_AUTORESETPHY |
  371. RTL818X_RX_CONF_BSSID |
  372. RTL818X_RX_CONF_MGMT |
  373. RTL818X_RX_CONF_DATA |
  374. (7 << 13 /* RX FIFO threshold NONE */) |
  375. (7 << 10 /* MAX RX DMA */) |
  376. RTL818X_RX_CONF_BROADCAST |
  377. RTL818X_RX_CONF_NICMAC;
  378. priv->rx_conf = reg;
  379. rtl818x_iowrite32(priv, &priv->map->RX_CONF, reg);
  380. reg = rtl818x_ioread8(priv, &priv->map->CW_CONF);
  381. reg &= ~RTL818X_CW_CONF_PERPACKET_CW_SHIFT;
  382. reg |= RTL818X_CW_CONF_PERPACKET_RETRY_SHIFT;
  383. rtl818x_iowrite8(priv, &priv->map->CW_CONF, reg);
  384. reg = rtl818x_ioread8(priv, &priv->map->TX_AGC_CTL);
  385. reg &= ~RTL818X_TX_AGC_CTL_PERPACKET_GAIN_SHIFT;
  386. reg &= ~RTL818X_TX_AGC_CTL_PERPACKET_ANTSEL_SHIFT;
  387. reg &= ~RTL818X_TX_AGC_CTL_FEEDBACK_ANT;
  388. rtl818x_iowrite8(priv, &priv->map->TX_AGC_CTL, reg);
  389. reg = RTL818X_TX_CONF_CW_MIN |
  390. (7 << 21 /* MAX TX DMA */) |
  391. RTL818X_TX_CONF_NO_ICV;
  392. rtl818x_iowrite32(priv, &priv->map->TX_CONF, reg);
  393. reg = rtl818x_ioread8(priv, &priv->map->CMD);
  394. reg |= RTL818X_CMD_TX_ENABLE;
  395. reg |= RTL818X_CMD_RX_ENABLE;
  396. rtl818x_iowrite8(priv, &priv->map->CMD, reg);
  397. return 0;
  398. }
  399. static void rtl8187_stop(struct ieee80211_hw *dev)
  400. {
  401. struct rtl8187_priv *priv = dev->priv;
  402. struct rtl8187_rx_info *info;
  403. struct sk_buff *skb;
  404. u32 reg;
  405. rtl818x_iowrite16(priv, &priv->map->INT_MASK, 0);
  406. reg = rtl818x_ioread8(priv, &priv->map->CMD);
  407. reg &= ~RTL818X_CMD_TX_ENABLE;
  408. reg &= ~RTL818X_CMD_RX_ENABLE;
  409. rtl818x_iowrite8(priv, &priv->map->CMD, reg);
  410. rtl8225_rf_stop(dev);
  411. rtl818x_iowrite8(priv, &priv->map->EEPROM_CMD, RTL818X_EEPROM_CMD_CONFIG);
  412. reg = rtl818x_ioread8(priv, &priv->map->CONFIG4);
  413. rtl818x_iowrite8(priv, &priv->map->CONFIG4, reg | RTL818X_CONFIG4_VCOOFF);
  414. rtl818x_iowrite8(priv, &priv->map->EEPROM_CMD, RTL818X_EEPROM_CMD_NORMAL);
  415. while ((skb = skb_dequeue(&priv->rx_queue))) {
  416. info = (struct rtl8187_rx_info *)skb->cb;
  417. usb_kill_urb(info->urb);
  418. kfree_skb(skb);
  419. }
  420. return;
  421. }
  422. static int rtl8187_add_interface(struct ieee80211_hw *dev,
  423. struct ieee80211_if_init_conf *conf)
  424. {
  425. struct rtl8187_priv *priv = dev->priv;
  426. int i;
  427. if (priv->mode != IEEE80211_IF_TYPE_MNTR)
  428. return -EOPNOTSUPP;
  429. switch (conf->type) {
  430. case IEEE80211_IF_TYPE_STA:
  431. priv->mode = conf->type;
  432. break;
  433. default:
  434. return -EOPNOTSUPP;
  435. }
  436. rtl818x_iowrite8(priv, &priv->map->EEPROM_CMD, RTL818X_EEPROM_CMD_CONFIG);
  437. for (i = 0; i < ETH_ALEN; i++)
  438. rtl818x_iowrite8(priv, &priv->map->MAC[i],
  439. ((u8 *)conf->mac_addr)[i]);
  440. rtl818x_iowrite8(priv, &priv->map->EEPROM_CMD, RTL818X_EEPROM_CMD_NORMAL);
  441. return 0;
  442. }
  443. static void rtl8187_remove_interface(struct ieee80211_hw *dev,
  444. struct ieee80211_if_init_conf *conf)
  445. {
  446. struct rtl8187_priv *priv = dev->priv;
  447. priv->mode = IEEE80211_IF_TYPE_MNTR;
  448. }
  449. static int rtl8187_config(struct ieee80211_hw *dev, struct ieee80211_conf *conf)
  450. {
  451. struct rtl8187_priv *priv = dev->priv;
  452. rtl8187_set_channel(dev, conf->channel);
  453. rtl818x_iowrite8(priv, &priv->map->SIFS, 0x22);
  454. if (conf->flags & IEEE80211_CONF_SHORT_SLOT_TIME) {
  455. rtl818x_iowrite8(priv, &priv->map->SLOT, 0x9);
  456. rtl818x_iowrite8(priv, &priv->map->DIFS, 0x14);
  457. rtl818x_iowrite8(priv, &priv->map->EIFS, 91 - 0x14);
  458. rtl818x_iowrite8(priv, &priv->map->CW_VAL, 0x73);
  459. } else {
  460. rtl818x_iowrite8(priv, &priv->map->SLOT, 0x14);
  461. rtl818x_iowrite8(priv, &priv->map->DIFS, 0x24);
  462. rtl818x_iowrite8(priv, &priv->map->EIFS, 91 - 0x24);
  463. rtl818x_iowrite8(priv, &priv->map->CW_VAL, 0xa5);
  464. }
  465. rtl818x_iowrite16(priv, &priv->map->ATIM_WND, 2);
  466. rtl818x_iowrite16(priv, &priv->map->ATIMTR_INTERVAL, 100);
  467. rtl818x_iowrite16(priv, &priv->map->BEACON_INTERVAL, 100);
  468. rtl818x_iowrite16(priv, &priv->map->BEACON_INTERVAL_TIME, 100);
  469. return 0;
  470. }
  471. static int rtl8187_config_interface(struct ieee80211_hw *dev, int if_id,
  472. struct ieee80211_if_conf *conf)
  473. {
  474. struct rtl8187_priv *priv = dev->priv;
  475. int i;
  476. priv->if_id = if_id;
  477. for (i = 0; i < ETH_ALEN; i++)
  478. rtl818x_iowrite8(priv, &priv->map->BSSID[i], conf->bssid[i]);
  479. if (is_valid_ether_addr(conf->bssid))
  480. rtl818x_iowrite8(priv, &priv->map->MSR, RTL818X_MSR_INFRA);
  481. else
  482. rtl818x_iowrite8(priv, &priv->map->MSR, RTL818X_MSR_NO_LINK);
  483. return 0;
  484. }
  485. static void rtl8187_configure_filter(struct ieee80211_hw *dev,
  486. unsigned int changed_flags,
  487. unsigned int *total_flags,
  488. int mc_count, struct dev_addr_list *mc_list)
  489. {
  490. struct rtl8187_priv *priv = dev->priv;
  491. *total_flags = 0;
  492. if (changed_flags & FIF_PROMISC_IN_BSS)
  493. priv->rx_conf ^= RTL818X_RX_CONF_NICMAC;
  494. if (changed_flags & FIF_ALLMULTI)
  495. priv->rx_conf ^= RTL818X_RX_CONF_MULTICAST;
  496. if (changed_flags & FIF_FCSFAIL)
  497. priv->rx_conf ^= RTL818X_RX_CONF_FCS;
  498. if (changed_flags & FIF_CONTROL)
  499. priv->rx_conf ^= RTL818X_RX_CONF_CTRL;
  500. if (changed_flags & FIF_OTHER_BSS)
  501. priv->rx_conf ^= RTL818X_RX_CONF_MONITOR;
  502. if (mc_count > 0)
  503. priv->rx_conf |= RTL818X_RX_CONF_MULTICAST;
  504. if (priv->rx_conf & RTL818X_RX_CONF_NICMAC)
  505. *total_flags |= FIF_PROMISC_IN_BSS;
  506. if (priv->rx_conf & RTL818X_RX_CONF_MULTICAST)
  507. *total_flags |= FIF_ALLMULTI;
  508. if (priv->rx_conf & RTL818X_RX_CONF_FCS)
  509. *total_flags |= FIF_FCSFAIL;
  510. if (priv->rx_conf & RTL818X_RX_CONF_CTRL)
  511. *total_flags |= FIF_CONTROL;
  512. if (priv->rx_conf & RTL818X_RX_CONF_MONITOR)
  513. *total_flags |= FIF_OTHER_BSS;
  514. rtl818x_iowrite32_async(priv, &priv->map->RX_CONF, priv->rx_conf);
  515. }
  516. static const struct ieee80211_ops rtl8187_ops = {
  517. .tx = rtl8187_tx,
  518. .start = rtl8187_start,
  519. .stop = rtl8187_stop,
  520. .add_interface = rtl8187_add_interface,
  521. .remove_interface = rtl8187_remove_interface,
  522. .config = rtl8187_config,
  523. .config_interface = rtl8187_config_interface,
  524. .configure_filter = rtl8187_configure_filter,
  525. };
  526. static void rtl8187_eeprom_register_read(struct eeprom_93cx6 *eeprom)
  527. {
  528. struct ieee80211_hw *dev = eeprom->data;
  529. struct rtl8187_priv *priv = dev->priv;
  530. u8 reg = rtl818x_ioread8(priv, &priv->map->EEPROM_CMD);
  531. eeprom->reg_data_in = reg & RTL818X_EEPROM_CMD_WRITE;
  532. eeprom->reg_data_out = reg & RTL818X_EEPROM_CMD_READ;
  533. eeprom->reg_data_clock = reg & RTL818X_EEPROM_CMD_CK;
  534. eeprom->reg_chip_select = reg & RTL818X_EEPROM_CMD_CS;
  535. }
  536. static void rtl8187_eeprom_register_write(struct eeprom_93cx6 *eeprom)
  537. {
  538. struct ieee80211_hw *dev = eeprom->data;
  539. struct rtl8187_priv *priv = dev->priv;
  540. u8 reg = RTL818X_EEPROM_CMD_PROGRAM;
  541. if (eeprom->reg_data_in)
  542. reg |= RTL818X_EEPROM_CMD_WRITE;
  543. if (eeprom->reg_data_out)
  544. reg |= RTL818X_EEPROM_CMD_READ;
  545. if (eeprom->reg_data_clock)
  546. reg |= RTL818X_EEPROM_CMD_CK;
  547. if (eeprom->reg_chip_select)
  548. reg |= RTL818X_EEPROM_CMD_CS;
  549. rtl818x_iowrite8(priv, &priv->map->EEPROM_CMD, reg);
  550. udelay(10);
  551. }
  552. static int __devinit rtl8187_probe(struct usb_interface *intf,
  553. const struct usb_device_id *id)
  554. {
  555. struct usb_device *udev = interface_to_usbdev(intf);
  556. struct ieee80211_hw *dev;
  557. struct rtl8187_priv *priv;
  558. struct eeprom_93cx6 eeprom;
  559. struct ieee80211_channel *channel;
  560. u16 txpwr, reg;
  561. int err, i;
  562. DECLARE_MAC_BUF(mac);
  563. dev = ieee80211_alloc_hw(sizeof(*priv), &rtl8187_ops);
  564. if (!dev) {
  565. printk(KERN_ERR "rtl8187: ieee80211 alloc failed\n");
  566. return -ENOMEM;
  567. }
  568. priv = dev->priv;
  569. SET_IEEE80211_DEV(dev, &intf->dev);
  570. usb_set_intfdata(intf, dev);
  571. priv->udev = udev;
  572. usb_get_dev(udev);
  573. skb_queue_head_init(&priv->rx_queue);
  574. memcpy(priv->channels, rtl818x_channels, sizeof(rtl818x_channels));
  575. memcpy(priv->rates, rtl818x_rates, sizeof(rtl818x_rates));
  576. priv->map = (struct rtl818x_csr *)0xFF00;
  577. priv->modes[0].mode = MODE_IEEE80211G;
  578. priv->modes[0].num_rates = ARRAY_SIZE(rtl818x_rates);
  579. priv->modes[0].rates = priv->rates;
  580. priv->modes[0].num_channels = ARRAY_SIZE(rtl818x_channels);
  581. priv->modes[0].channels = priv->channels;
  582. priv->modes[1].mode = MODE_IEEE80211B;
  583. priv->modes[1].num_rates = 4;
  584. priv->modes[1].rates = priv->rates;
  585. priv->modes[1].num_channels = ARRAY_SIZE(rtl818x_channels);
  586. priv->modes[1].channels = priv->channels;
  587. priv->mode = IEEE80211_IF_TYPE_MNTR;
  588. dev->flags = IEEE80211_HW_HOST_BROADCAST_PS_BUFFERING |
  589. IEEE80211_HW_RX_INCLUDES_FCS;
  590. dev->extra_tx_headroom = sizeof(struct rtl8187_tx_hdr);
  591. dev->queues = 1;
  592. dev->max_rssi = 65;
  593. dev->max_signal = 64;
  594. for (i = 0; i < 2; i++)
  595. if ((err = ieee80211_register_hwmode(dev, &priv->modes[i])))
  596. goto err_free_dev;
  597. eeprom.data = dev;
  598. eeprom.register_read = rtl8187_eeprom_register_read;
  599. eeprom.register_write = rtl8187_eeprom_register_write;
  600. if (rtl818x_ioread32(priv, &priv->map->RX_CONF) & (1 << 6))
  601. eeprom.width = PCI_EEPROM_WIDTH_93C66;
  602. else
  603. eeprom.width = PCI_EEPROM_WIDTH_93C46;
  604. rtl818x_iowrite8(priv, &priv->map->EEPROM_CMD, RTL818X_EEPROM_CMD_CONFIG);
  605. udelay(10);
  606. eeprom_93cx6_multiread(&eeprom, RTL8187_EEPROM_MAC_ADDR,
  607. (__le16 __force *)dev->wiphy->perm_addr, 3);
  608. if (!is_valid_ether_addr(dev->wiphy->perm_addr)) {
  609. printk(KERN_WARNING "rtl8187: Invalid hwaddr! Using randomly "
  610. "generated MAC address\n");
  611. random_ether_addr(dev->wiphy->perm_addr);
  612. }
  613. channel = priv->channels;
  614. for (i = 0; i < 3; i++) {
  615. eeprom_93cx6_read(&eeprom, RTL8187_EEPROM_TXPWR_CHAN_1 + i,
  616. &txpwr);
  617. (*channel++).val = txpwr & 0xFF;
  618. (*channel++).val = txpwr >> 8;
  619. }
  620. for (i = 0; i < 2; i++) {
  621. eeprom_93cx6_read(&eeprom, RTL8187_EEPROM_TXPWR_CHAN_4 + i,
  622. &txpwr);
  623. (*channel++).val = txpwr & 0xFF;
  624. (*channel++).val = txpwr >> 8;
  625. }
  626. for (i = 0; i < 2; i++) {
  627. eeprom_93cx6_read(&eeprom, RTL8187_EEPROM_TXPWR_CHAN_6 + i,
  628. &txpwr);
  629. (*channel++).val = txpwr & 0xFF;
  630. (*channel++).val = txpwr >> 8;
  631. }
  632. eeprom_93cx6_read(&eeprom, RTL8187_EEPROM_TXPWR_BASE,
  633. &priv->txpwr_base);
  634. reg = rtl818x_ioread16(priv, &priv->map->PGSELECT) & ~1;
  635. rtl818x_iowrite16(priv, &priv->map->PGSELECT, reg | 1);
  636. /* 0 means asic B-cut, we should use SW 3 wire
  637. * bit-by-bit banging for radio. 1 means we can use
  638. * USB specific request to write radio registers */
  639. priv->asic_rev = rtl818x_ioread8(priv, (u8 *)0xFFFE) & 0x3;
  640. rtl818x_iowrite16(priv, &priv->map->PGSELECT, reg);
  641. rtl818x_iowrite8(priv, &priv->map->EEPROM_CMD, RTL818X_EEPROM_CMD_NORMAL);
  642. rtl8225_write(dev, 0, 0x1B7);
  643. if (rtl8225_read(dev, 8) != 0x588 || rtl8225_read(dev, 9) != 0x700)
  644. priv->rf_init = rtl8225_rf_init;
  645. else
  646. priv->rf_init = rtl8225z2_rf_init;
  647. rtl8225_write(dev, 0, 0x0B7);
  648. err = ieee80211_register_hw(dev);
  649. if (err) {
  650. printk(KERN_ERR "rtl8187: Cannot register device\n");
  651. goto err_free_dev;
  652. }
  653. printk(KERN_INFO "%s: hwaddr %s, rtl8187 V%d + %s\n",
  654. wiphy_name(dev->wiphy), print_mac(mac, dev->wiphy->perm_addr),
  655. priv->asic_rev, priv->rf_init == rtl8225_rf_init ?
  656. "rtl8225" : "rtl8225z2");
  657. return 0;
  658. err_free_dev:
  659. ieee80211_free_hw(dev);
  660. usb_set_intfdata(intf, NULL);
  661. usb_put_dev(udev);
  662. return err;
  663. }
  664. static void __devexit rtl8187_disconnect(struct usb_interface *intf)
  665. {
  666. struct ieee80211_hw *dev = usb_get_intfdata(intf);
  667. struct rtl8187_priv *priv;
  668. if (!dev)
  669. return;
  670. ieee80211_unregister_hw(dev);
  671. priv = dev->priv;
  672. usb_put_dev(interface_to_usbdev(intf));
  673. ieee80211_free_hw(dev);
  674. }
  675. static struct usb_driver rtl8187_driver = {
  676. .name = KBUILD_MODNAME,
  677. .id_table = rtl8187_table,
  678. .probe = rtl8187_probe,
  679. .disconnect = rtl8187_disconnect,
  680. };
  681. static int __init rtl8187_init(void)
  682. {
  683. return usb_register(&rtl8187_driver);
  684. }
  685. static void __exit rtl8187_exit(void)
  686. {
  687. usb_deregister(&rtl8187_driver);
  688. }
  689. module_init(rtl8187_init);
  690. module_exit(rtl8187_exit);