hostap_pci.c 11 KB

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  1. #define PRISM2_PCI
  2. /* Host AP driver's support for Intersil Prism2.5 PCI cards is based on
  3. * driver patches from Reyk Floeter <reyk@vantronix.net> and
  4. * Andy Warner <andyw@pobox.com> */
  5. #include <linux/config.h>
  6. #include <linux/module.h>
  7. #include <linux/init.h>
  8. #include <linux/if.h>
  9. #include <linux/skbuff.h>
  10. #include <linux/netdevice.h>
  11. #include <linux/workqueue.h>
  12. #include <linux/wireless.h>
  13. #include <net/iw_handler.h>
  14. #include <linux/ioport.h>
  15. #include <linux/pci.h>
  16. #include <asm/io.h>
  17. #include "hostap_wlan.h"
  18. static char *version = PRISM2_VERSION " (Jouni Malinen <jkmaline@cc.hut.fi>)";
  19. static char *dev_info = "hostap_pci";
  20. MODULE_AUTHOR("Jouni Malinen");
  21. MODULE_DESCRIPTION("Support for Intersil Prism2.5-based 802.11 wireless LAN "
  22. "PCI cards.");
  23. MODULE_SUPPORTED_DEVICE("Intersil Prism2.5-based WLAN PCI cards");
  24. MODULE_LICENSE("GPL");
  25. MODULE_VERSION(PRISM2_VERSION);
  26. /* struct local_info::hw_priv */
  27. struct hostap_pci_priv {
  28. void __iomem *mem_start;
  29. };
  30. /* FIX: do we need mb/wmb/rmb with memory operations? */
  31. static struct pci_device_id prism2_pci_id_table[] __devinitdata = {
  32. /* Intersil Prism3 ISL3872 11Mb/s WLAN Controller */
  33. { 0x1260, 0x3872, PCI_ANY_ID, PCI_ANY_ID },
  34. /* Intersil Prism2.5 ISL3874 11Mb/s WLAN Controller */
  35. { 0x1260, 0x3873, PCI_ANY_ID, PCI_ANY_ID },
  36. /* Samsung MagicLAN SWL-2210P */
  37. { 0x167d, 0xa000, PCI_ANY_ID, PCI_ANY_ID },
  38. { 0 }
  39. };
  40. #ifdef PRISM2_IO_DEBUG
  41. static inline void hfa384x_outb_debug(struct net_device *dev, int a, u8 v)
  42. {
  43. struct hostap_interface *iface;
  44. struct hostap_pci_priv *hw_priv;
  45. local_info_t *local;
  46. unsigned long flags;
  47. iface = netdev_priv(dev);
  48. local = iface->local;
  49. hw_priv = local->hw_priv;
  50. spin_lock_irqsave(&local->lock, flags);
  51. prism2_io_debug_add(dev, PRISM2_IO_DEBUG_CMD_OUTB, a, v);
  52. writeb(v, hw_priv->mem_start + a);
  53. spin_unlock_irqrestore(&local->lock, flags);
  54. }
  55. static inline u8 hfa384x_inb_debug(struct net_device *dev, int a)
  56. {
  57. struct hostap_interface *iface;
  58. struct hostap_pci_priv *hw_priv;
  59. local_info_t *local;
  60. unsigned long flags;
  61. u8 v;
  62. iface = netdev_priv(dev);
  63. local = iface->local;
  64. hw_priv = local->hw_priv;
  65. spin_lock_irqsave(&local->lock, flags);
  66. v = readb(hw_priv->mem_start + a);
  67. prism2_io_debug_add(dev, PRISM2_IO_DEBUG_CMD_INB, a, v);
  68. spin_unlock_irqrestore(&local->lock, flags);
  69. return v;
  70. }
  71. static inline void hfa384x_outw_debug(struct net_device *dev, int a, u16 v)
  72. {
  73. struct hostap_interface *iface;
  74. struct hostap_pci_priv *hw_priv;
  75. local_info_t *local;
  76. unsigned long flags;
  77. iface = netdev_priv(dev);
  78. local = iface->local;
  79. hw_priv = local->hw_priv;
  80. spin_lock_irqsave(&local->lock, flags);
  81. prism2_io_debug_add(dev, PRISM2_IO_DEBUG_CMD_OUTW, a, v);
  82. writew(v, hw_priv->mem_start + a);
  83. spin_unlock_irqrestore(&local->lock, flags);
  84. }
  85. static inline u16 hfa384x_inw_debug(struct net_device *dev, int a)
  86. {
  87. struct hostap_interface *iface;
  88. struct hostap_pci_priv *hw_priv;
  89. local_info_t *local;
  90. unsigned long flags;
  91. u16 v;
  92. iface = netdev_priv(dev);
  93. local = iface->local;
  94. hw_priv = local->hw_priv;
  95. spin_lock_irqsave(&local->lock, flags);
  96. v = readw(hw_priv->mem_start + a);
  97. prism2_io_debug_add(dev, PRISM2_IO_DEBUG_CMD_INW, a, v);
  98. spin_unlock_irqrestore(&local->lock, flags);
  99. return v;
  100. }
  101. #define HFA384X_OUTB(v,a) hfa384x_outb_debug(dev, (a), (v))
  102. #define HFA384X_INB(a) hfa384x_inb_debug(dev, (a))
  103. #define HFA384X_OUTW(v,a) hfa384x_outw_debug(dev, (a), (v))
  104. #define HFA384X_INW(a) hfa384x_inw_debug(dev, (a))
  105. #define HFA384X_OUTW_DATA(v,a) hfa384x_outw_debug(dev, (a), cpu_to_le16((v)))
  106. #define HFA384X_INW_DATA(a) (u16) le16_to_cpu(hfa384x_inw_debug(dev, (a)))
  107. #else /* PRISM2_IO_DEBUG */
  108. static inline void hfa384x_outb(struct net_device *dev, int a, u8 v)
  109. {
  110. struct hostap_interface *iface;
  111. struct hostap_pci_priv *hw_priv;
  112. iface = netdev_priv(dev);
  113. hw_priv = iface->local->hw_priv;
  114. writeb(v, hw_priv->mem_start + a);
  115. }
  116. static inline u8 hfa384x_inb(struct net_device *dev, int a)
  117. {
  118. struct hostap_interface *iface;
  119. struct hostap_pci_priv *hw_priv;
  120. iface = netdev_priv(dev);
  121. hw_priv = iface->local->hw_priv;
  122. return readb(hw_priv->mem_start + a);
  123. }
  124. static inline void hfa384x_outw(struct net_device *dev, int a, u16 v)
  125. {
  126. struct hostap_interface *iface;
  127. struct hostap_pci_priv *hw_priv;
  128. iface = netdev_priv(dev);
  129. hw_priv = iface->local->hw_priv;
  130. writew(v, hw_priv->mem_start + a);
  131. }
  132. static inline u16 hfa384x_inw(struct net_device *dev, int a)
  133. {
  134. struct hostap_interface *iface;
  135. struct hostap_pci_priv *hw_priv;
  136. iface = netdev_priv(dev);
  137. hw_priv = iface->local->hw_priv;
  138. return readw(hw_priv->mem_start + a);
  139. }
  140. #define HFA384X_OUTB(v,a) hfa384x_outb(dev, (a), (v))
  141. #define HFA384X_INB(a) hfa384x_inb(dev, (a))
  142. #define HFA384X_OUTW(v,a) hfa384x_outw(dev, (a), (v))
  143. #define HFA384X_INW(a) hfa384x_inw(dev, (a))
  144. #define HFA384X_OUTW_DATA(v,a) hfa384x_outw(dev, (a), cpu_to_le16((v)))
  145. #define HFA384X_INW_DATA(a) (u16) le16_to_cpu(hfa384x_inw(dev, (a)))
  146. #endif /* PRISM2_IO_DEBUG */
  147. static int hfa384x_from_bap(struct net_device *dev, u16 bap, void *buf,
  148. int len)
  149. {
  150. u16 d_off;
  151. u16 *pos;
  152. d_off = (bap == 1) ? HFA384X_DATA1_OFF : HFA384X_DATA0_OFF;
  153. pos = (u16 *) buf;
  154. for ( ; len > 1; len -= 2)
  155. *pos++ = HFA384X_INW_DATA(d_off);
  156. if (len & 1)
  157. *((char *) pos) = HFA384X_INB(d_off);
  158. return 0;
  159. }
  160. static int hfa384x_to_bap(struct net_device *dev, u16 bap, void *buf, int len)
  161. {
  162. u16 d_off;
  163. u16 *pos;
  164. d_off = (bap == 1) ? HFA384X_DATA1_OFF : HFA384X_DATA0_OFF;
  165. pos = (u16 *) buf;
  166. for ( ; len > 1; len -= 2)
  167. HFA384X_OUTW_DATA(*pos++, d_off);
  168. if (len & 1)
  169. HFA384X_OUTB(*((char *) pos), d_off);
  170. return 0;
  171. }
  172. /* FIX: This might change at some point.. */
  173. #include "hostap_hw.c"
  174. static void prism2_pci_cor_sreset(local_info_t *local)
  175. {
  176. struct net_device *dev = local->dev;
  177. u16 reg;
  178. reg = HFA384X_INB(HFA384X_PCICOR_OFF);
  179. printk(KERN_DEBUG "%s: Original COR value: 0x%0x\n", dev->name, reg);
  180. /* linux-wlan-ng uses extremely long hold and settle times for
  181. * COR sreset. A comment in the driver code mentions that the long
  182. * delays appear to be necessary. However, at least IBM 22P6901 seems
  183. * to work fine with shorter delays.
  184. *
  185. * Longer delays can be configured by uncommenting following line: */
  186. /* #define PRISM2_PCI_USE_LONG_DELAYS */
  187. #ifdef PRISM2_PCI_USE_LONG_DELAYS
  188. int i;
  189. HFA384X_OUTW(reg | 0x0080, HFA384X_PCICOR_OFF);
  190. mdelay(250);
  191. HFA384X_OUTW(reg & ~0x0080, HFA384X_PCICOR_OFF);
  192. mdelay(500);
  193. /* Wait for f/w to complete initialization (CMD:BUSY == 0) */
  194. i = 2000000 / 10;
  195. while ((HFA384X_INW(HFA384X_CMD_OFF) & HFA384X_CMD_BUSY) && --i)
  196. udelay(10);
  197. #else /* PRISM2_PCI_USE_LONG_DELAYS */
  198. HFA384X_OUTW(reg | 0x0080, HFA384X_PCICOR_OFF);
  199. mdelay(2);
  200. HFA384X_OUTW(reg & ~0x0080, HFA384X_PCICOR_OFF);
  201. mdelay(2);
  202. #endif /* PRISM2_PCI_USE_LONG_DELAYS */
  203. if (HFA384X_INW(HFA384X_CMD_OFF) & HFA384X_CMD_BUSY) {
  204. printk(KERN_DEBUG "%s: COR sreset timeout\n", dev->name);
  205. }
  206. }
  207. static void prism2_pci_genesis_reset(local_info_t *local, int hcr)
  208. {
  209. struct net_device *dev = local->dev;
  210. HFA384X_OUTW(0x00C5, HFA384X_PCICOR_OFF);
  211. mdelay(10);
  212. HFA384X_OUTW(hcr, HFA384X_PCIHCR_OFF);
  213. mdelay(10);
  214. HFA384X_OUTW(0x0045, HFA384X_PCICOR_OFF);
  215. mdelay(10);
  216. }
  217. static struct prism2_helper_functions prism2_pci_funcs =
  218. {
  219. .card_present = NULL,
  220. .cor_sreset = prism2_pci_cor_sreset,
  221. .genesis_reset = prism2_pci_genesis_reset,
  222. .hw_type = HOSTAP_HW_PCI,
  223. };
  224. static int prism2_pci_probe(struct pci_dev *pdev,
  225. const struct pci_device_id *id)
  226. {
  227. unsigned long phymem;
  228. void __iomem *mem = NULL;
  229. local_info_t *local = NULL;
  230. struct net_device *dev = NULL;
  231. static int cards_found /* = 0 */;
  232. int irq_registered = 0;
  233. struct hostap_interface *iface;
  234. struct hostap_pci_priv *hw_priv;
  235. hw_priv = kmalloc(sizeof(*hw_priv), GFP_KERNEL);
  236. if (hw_priv == NULL)
  237. return -ENOMEM;
  238. memset(hw_priv, 0, sizeof(*hw_priv));
  239. if (pci_enable_device(pdev))
  240. goto err_out_free;
  241. phymem = pci_resource_start(pdev, 0);
  242. if (!request_mem_region(phymem, pci_resource_len(pdev, 0), "Prism2")) {
  243. printk(KERN_ERR "prism2: Cannot reserve PCI memory region\n");
  244. goto err_out_disable;
  245. }
  246. mem = ioremap(phymem, pci_resource_len(pdev, 0));
  247. if (mem == NULL) {
  248. printk(KERN_ERR "prism2: Cannot remap PCI memory region\n") ;
  249. goto fail;
  250. }
  251. dev = prism2_init_local_data(&prism2_pci_funcs, cards_found,
  252. &pdev->dev);
  253. if (dev == NULL)
  254. goto fail;
  255. iface = netdev_priv(dev);
  256. local = iface->local;
  257. local->hw_priv = hw_priv;
  258. cards_found++;
  259. dev->irq = pdev->irq;
  260. hw_priv->mem_start = mem;
  261. prism2_pci_cor_sreset(local);
  262. pci_set_drvdata(pdev, dev);
  263. if (request_irq(dev->irq, prism2_interrupt, SA_SHIRQ, dev->name,
  264. dev)) {
  265. printk(KERN_WARNING "%s: request_irq failed\n", dev->name);
  266. goto fail;
  267. } else
  268. irq_registered = 1;
  269. if (!local->pri_only && prism2_hw_config(dev, 1)) {
  270. printk(KERN_DEBUG "%s: hardware initialization failed\n",
  271. dev_info);
  272. goto fail;
  273. }
  274. printk(KERN_INFO "%s: Intersil Prism2.5 PCI: "
  275. "mem=0x%lx, irq=%d\n", dev->name, phymem, dev->irq);
  276. return hostap_hw_ready(dev);
  277. fail:
  278. if (irq_registered && dev)
  279. free_irq(dev->irq, dev);
  280. if (mem)
  281. iounmap(mem);
  282. release_mem_region(phymem, pci_resource_len(pdev, 0));
  283. err_out_disable:
  284. pci_disable_device(pdev);
  285. prism2_free_local_data(dev);
  286. err_out_free:
  287. kfree(hw_priv);
  288. return -ENODEV;
  289. }
  290. static void prism2_pci_remove(struct pci_dev *pdev)
  291. {
  292. struct net_device *dev;
  293. struct hostap_interface *iface;
  294. void __iomem *mem_start;
  295. struct hostap_pci_priv *hw_priv;
  296. dev = pci_get_drvdata(pdev);
  297. iface = netdev_priv(dev);
  298. hw_priv = iface->local->hw_priv;
  299. /* Reset the hardware, and ensure interrupts are disabled. */
  300. prism2_pci_cor_sreset(iface->local);
  301. hfa384x_disable_interrupts(dev);
  302. if (dev->irq)
  303. free_irq(dev->irq, dev);
  304. mem_start = hw_priv->mem_start;
  305. prism2_free_local_data(dev);
  306. kfree(hw_priv);
  307. iounmap(mem_start);
  308. release_mem_region(pci_resource_start(pdev, 0),
  309. pci_resource_len(pdev, 0));
  310. pci_disable_device(pdev);
  311. }
  312. #ifdef CONFIG_PM
  313. static int prism2_pci_suspend(struct pci_dev *pdev, pm_message_t state)
  314. {
  315. struct net_device *dev = pci_get_drvdata(pdev);
  316. if (netif_running(dev)) {
  317. netif_stop_queue(dev);
  318. netif_device_detach(dev);
  319. }
  320. prism2_suspend(dev);
  321. pci_save_state(pdev);
  322. pci_disable_device(pdev);
  323. pci_set_power_state(pdev, PCI_D3hot);
  324. return 0;
  325. }
  326. static int prism2_pci_resume(struct pci_dev *pdev)
  327. {
  328. struct net_device *dev = pci_get_drvdata(pdev);
  329. pci_enable_device(pdev);
  330. pci_restore_state(pdev);
  331. prism2_hw_config(dev, 0);
  332. if (netif_running(dev)) {
  333. netif_device_attach(dev);
  334. netif_start_queue(dev);
  335. }
  336. return 0;
  337. }
  338. #endif /* CONFIG_PM */
  339. MODULE_DEVICE_TABLE(pci, prism2_pci_id_table);
  340. static struct pci_driver prism2_pci_drv_id = {
  341. .name = "hostap_pci",
  342. .id_table = prism2_pci_id_table,
  343. .probe = prism2_pci_probe,
  344. .remove = prism2_pci_remove,
  345. #ifdef CONFIG_PM
  346. .suspend = prism2_pci_suspend,
  347. .resume = prism2_pci_resume,
  348. #endif /* CONFIG_PM */
  349. /* Linux 2.4.6 added save_state and enable_wake that are not used here
  350. */
  351. };
  352. static int __init init_prism2_pci(void)
  353. {
  354. printk(KERN_INFO "%s: %s\n", dev_info, version);
  355. return pci_register_driver(&prism2_pci_drv_id);
  356. }
  357. static void __exit exit_prism2_pci(void)
  358. {
  359. pci_unregister_driver(&prism2_pci_drv_id);
  360. printk(KERN_INFO "%s: Driver unloaded\n", dev_info);
  361. }
  362. module_init(init_prism2_pci);
  363. module_exit(exit_prism2_pci);