zorro8390.c 14 KB

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  1. /*
  2. * Amiga Linux/m68k and Linux/PPC Zorro NS8390 Ethernet Driver
  3. *
  4. * (C) Copyright 1998-2000 by some Elitist 680x0 Users(TM)
  5. *
  6. * ---------------------------------------------------------------------------
  7. *
  8. * This program is based on all the other NE2000 drivers for Linux
  9. *
  10. * ---------------------------------------------------------------------------
  11. *
  12. * This file is subject to the terms and conditions of the GNU General Public
  13. * License. See the file COPYING in the main directory of the Linux
  14. * distribution for more details.
  15. *
  16. * ---------------------------------------------------------------------------
  17. *
  18. * The Ariadne II and X-Surf are Zorro-II boards containing Realtek RTL8019AS
  19. * Ethernet Controllers.
  20. */
  21. #include <linux/module.h>
  22. #include <linux/kernel.h>
  23. #include <linux/errno.h>
  24. #include <linux/init.h>
  25. #include <linux/delay.h>
  26. #include <linux/netdevice.h>
  27. #include <linux/etherdevice.h>
  28. #include <linux/zorro.h>
  29. #include <linux/jiffies.h>
  30. #include <asm/system.h>
  31. #include <asm/irq.h>
  32. #include <asm/amigaints.h>
  33. #include <asm/amigahw.h>
  34. #define EI_SHIFT(x) (ei_local->reg_offset[x])
  35. #define ei_inb(port) in_8(port)
  36. #define ei_outb(val,port) out_8(port,val)
  37. #define ei_inb_p(port) in_8(port)
  38. #define ei_outb_p(val,port) out_8(port,val)
  39. static const char version[] =
  40. "8390.c:v1.10cvs 9/23/94 Donald Becker (becker@cesdis.gsfc.nasa.gov)\n";
  41. #include "lib8390.c"
  42. #define DRV_NAME "zorro8390"
  43. #define NE_BASE (dev->base_addr)
  44. #define NE_CMD (0x00*2)
  45. #define NE_DATAPORT (0x10*2) /* NatSemi-defined port window offset. */
  46. #define NE_RESET (0x1f*2) /* Issue a read to reset, a write to clear. */
  47. #define NE_IO_EXTENT (0x20*2)
  48. #define NE_EN0_ISR (0x07*2)
  49. #define NE_EN0_DCFG (0x0e*2)
  50. #define NE_EN0_RSARLO (0x08*2)
  51. #define NE_EN0_RSARHI (0x09*2)
  52. #define NE_EN0_RCNTLO (0x0a*2)
  53. #define NE_EN0_RXCR (0x0c*2)
  54. #define NE_EN0_TXCR (0x0d*2)
  55. #define NE_EN0_RCNTHI (0x0b*2)
  56. #define NE_EN0_IMR (0x0f*2)
  57. #define NESM_START_PG 0x40 /* First page of TX buffer */
  58. #define NESM_STOP_PG 0x80 /* Last page +1 of RX ring */
  59. #define WORDSWAP(a) ((((a)>>8)&0xff) | ((a)<<8))
  60. static struct card_info {
  61. zorro_id id;
  62. const char *name;
  63. unsigned int offset;
  64. } cards[] __devinitdata = {
  65. { ZORRO_PROD_VILLAGE_TRONIC_ARIADNE2, "Ariadne II", 0x0600 },
  66. { ZORRO_PROD_INDIVIDUAL_COMPUTERS_X_SURF, "X-Surf", 0x8600 },
  67. };
  68. static int __devinit zorro8390_init_one(struct zorro_dev *z,
  69. const struct zorro_device_id *ent);
  70. static int __devinit zorro8390_init(struct net_device *dev,
  71. unsigned long board, const char *name,
  72. unsigned long ioaddr);
  73. static int zorro8390_open(struct net_device *dev);
  74. static int zorro8390_close(struct net_device *dev);
  75. static void zorro8390_reset_8390(struct net_device *dev);
  76. static void zorro8390_get_8390_hdr(struct net_device *dev,
  77. struct e8390_pkt_hdr *hdr, int ring_page);
  78. static void zorro8390_block_input(struct net_device *dev, int count,
  79. struct sk_buff *skb, int ring_offset);
  80. static void zorro8390_block_output(struct net_device *dev, const int count,
  81. const unsigned char *buf,
  82. const int start_page);
  83. static void __devexit zorro8390_remove_one(struct zorro_dev *z);
  84. static struct zorro_device_id zorro8390_zorro_tbl[] __devinitdata = {
  85. { ZORRO_PROD_VILLAGE_TRONIC_ARIADNE2, },
  86. { ZORRO_PROD_INDIVIDUAL_COMPUTERS_X_SURF, },
  87. { 0 }
  88. };
  89. MODULE_DEVICE_TABLE(zorro, zorro8390_zorro_tbl);
  90. static struct zorro_driver zorro8390_driver = {
  91. .name = "zorro8390",
  92. .id_table = zorro8390_zorro_tbl,
  93. .probe = zorro8390_init_one,
  94. .remove = __devexit_p(zorro8390_remove_one),
  95. };
  96. static int __devinit zorro8390_init_one(struct zorro_dev *z,
  97. const struct zorro_device_id *ent)
  98. {
  99. struct net_device *dev;
  100. unsigned long board, ioaddr;
  101. int err, i;
  102. for (i = ARRAY_SIZE(cards)-1; i >= 0; i--)
  103. if (z->id == cards[i].id)
  104. break;
  105. if (i < 0)
  106. return -ENODEV;
  107. board = z->resource.start;
  108. ioaddr = board+cards[i].offset;
  109. dev = ____alloc_ei_netdev(0);
  110. if (!dev)
  111. return -ENOMEM;
  112. if (!request_mem_region(ioaddr, NE_IO_EXTENT*2, DRV_NAME)) {
  113. free_netdev(dev);
  114. return -EBUSY;
  115. }
  116. if ((err = zorro8390_init(dev, board, cards[i].name,
  117. ZTWO_VADDR(ioaddr)))) {
  118. release_mem_region(ioaddr, NE_IO_EXTENT*2);
  119. free_netdev(dev);
  120. return err;
  121. }
  122. zorro_set_drvdata(z, dev);
  123. return 0;
  124. }
  125. static const struct net_device_ops zorro8390_netdev_ops = {
  126. .ndo_open = zorro8390_open,
  127. .ndo_stop = zorro8390_close,
  128. .ndo_start_xmit = __ei_start_xmit,
  129. .ndo_tx_timeout = __ei_tx_timeout,
  130. .ndo_get_stats = __ei_get_stats,
  131. .ndo_set_multicast_list = __ei_set_multicast_list,
  132. .ndo_validate_addr = eth_validate_addr,
  133. .ndo_set_mac_address = eth_mac_addr,
  134. .ndo_change_mtu = eth_change_mtu,
  135. #ifdef CONFIG_NET_POLL_CONTROLLER
  136. .ndo_poll_controller = __ei_poll,
  137. #endif
  138. };
  139. static int __devinit zorro8390_init(struct net_device *dev,
  140. unsigned long board, const char *name,
  141. unsigned long ioaddr)
  142. {
  143. int i;
  144. int err;
  145. unsigned char SA_prom[32];
  146. int start_page, stop_page;
  147. static u32 zorro8390_offsets[16] = {
  148. 0x00, 0x02, 0x04, 0x06, 0x08, 0x0a, 0x0c, 0x0e,
  149. 0x10, 0x12, 0x14, 0x16, 0x18, 0x1a, 0x1c, 0x1e,
  150. };
  151. /* Reset card. Who knows what dain-bramaged state it was left in. */
  152. {
  153. unsigned long reset_start_time = jiffies;
  154. z_writeb(z_readb(ioaddr + NE_RESET), ioaddr + NE_RESET);
  155. while ((z_readb(ioaddr + NE_EN0_ISR) & ENISR_RESET) == 0)
  156. if (time_after(jiffies, reset_start_time + 2*HZ/100)) {
  157. printk(KERN_WARNING " not found (no reset ack).\n");
  158. return -ENODEV;
  159. }
  160. z_writeb(0xff, ioaddr + NE_EN0_ISR); /* Ack all intr. */
  161. }
  162. /* Read the 16 bytes of station address PROM.
  163. We must first initialize registers, similar to NS8390_init(eifdev, 0).
  164. We can't reliably read the SAPROM address without this.
  165. (I learned the hard way!). */
  166. {
  167. struct {
  168. u32 value;
  169. u32 offset;
  170. } program_seq[] = {
  171. {E8390_NODMA+E8390_PAGE0+E8390_STOP, NE_CMD}, /* Select page 0*/
  172. {0x48, NE_EN0_DCFG}, /* Set byte-wide (0x48) access. */
  173. {0x00, NE_EN0_RCNTLO}, /* Clear the count regs. */
  174. {0x00, NE_EN0_RCNTHI},
  175. {0x00, NE_EN0_IMR}, /* Mask completion irq. */
  176. {0xFF, NE_EN0_ISR},
  177. {E8390_RXOFF, NE_EN0_RXCR}, /* 0x20 Set to monitor */
  178. {E8390_TXOFF, NE_EN0_TXCR}, /* 0x02 and loopback mode. */
  179. {32, NE_EN0_RCNTLO},
  180. {0x00, NE_EN0_RCNTHI},
  181. {0x00, NE_EN0_RSARLO}, /* DMA starting at 0x0000. */
  182. {0x00, NE_EN0_RSARHI},
  183. {E8390_RREAD+E8390_START, NE_CMD},
  184. };
  185. for (i = 0; i < ARRAY_SIZE(program_seq); i++) {
  186. z_writeb(program_seq[i].value, ioaddr + program_seq[i].offset);
  187. }
  188. }
  189. for (i = 0; i < 16; i++) {
  190. SA_prom[i] = z_readb(ioaddr + NE_DATAPORT);
  191. (void)z_readb(ioaddr + NE_DATAPORT);
  192. }
  193. /* We must set the 8390 for word mode. */
  194. z_writeb(0x49, ioaddr + NE_EN0_DCFG);
  195. start_page = NESM_START_PG;
  196. stop_page = NESM_STOP_PG;
  197. dev->base_addr = ioaddr;
  198. dev->irq = IRQ_AMIGA_PORTS;
  199. /* Install the Interrupt handler */
  200. i = request_irq(IRQ_AMIGA_PORTS, __ei_interrupt, IRQF_SHARED, DRV_NAME, dev);
  201. if (i) return i;
  202. for(i = 0; i < ETHER_ADDR_LEN; i++)
  203. dev->dev_addr[i] = SA_prom[i];
  204. #ifdef DEBUG
  205. printk("%pM", dev->dev_addr);
  206. #endif
  207. ei_status.name = name;
  208. ei_status.tx_start_page = start_page;
  209. ei_status.stop_page = stop_page;
  210. ei_status.word16 = 1;
  211. ei_status.rx_start_page = start_page + TX_PAGES;
  212. ei_status.reset_8390 = &zorro8390_reset_8390;
  213. ei_status.block_input = &zorro8390_block_input;
  214. ei_status.block_output = &zorro8390_block_output;
  215. ei_status.get_8390_hdr = &zorro8390_get_8390_hdr;
  216. ei_status.reg_offset = zorro8390_offsets;
  217. dev->netdev_ops = &zorro8390_netdev_ops;
  218. __NS8390_init(dev, 0);
  219. err = register_netdev(dev);
  220. if (err) {
  221. free_irq(IRQ_AMIGA_PORTS, dev);
  222. return err;
  223. }
  224. printk(KERN_INFO "%s: %s at 0x%08lx, Ethernet Address %pM\n",
  225. dev->name, name, board, dev->dev_addr);
  226. return 0;
  227. }
  228. static int zorro8390_open(struct net_device *dev)
  229. {
  230. __ei_open(dev);
  231. return 0;
  232. }
  233. static int zorro8390_close(struct net_device *dev)
  234. {
  235. if (ei_debug > 1)
  236. printk(KERN_DEBUG "%s: Shutting down ethercard.\n", dev->name);
  237. __ei_close(dev);
  238. return 0;
  239. }
  240. /* Hard reset the card. This used to pause for the same period that a
  241. 8390 reset command required, but that shouldn't be necessary. */
  242. static void zorro8390_reset_8390(struct net_device *dev)
  243. {
  244. unsigned long reset_start_time = jiffies;
  245. if (ei_debug > 1)
  246. printk(KERN_DEBUG "resetting the 8390 t=%ld...\n", jiffies);
  247. z_writeb(z_readb(NE_BASE + NE_RESET), NE_BASE + NE_RESET);
  248. ei_status.txing = 0;
  249. ei_status.dmaing = 0;
  250. /* This check _should_not_ be necessary, omit eventually. */
  251. while ((z_readb(NE_BASE+NE_EN0_ISR) & ENISR_RESET) == 0)
  252. if (time_after(jiffies, reset_start_time + 2*HZ/100)) {
  253. printk(KERN_WARNING "%s: ne_reset_8390() did not complete.\n",
  254. dev->name);
  255. break;
  256. }
  257. z_writeb(ENISR_RESET, NE_BASE + NE_EN0_ISR); /* Ack intr. */
  258. }
  259. /* Grab the 8390 specific header. Similar to the block_input routine, but
  260. we don't need to be concerned with ring wrap as the header will be at
  261. the start of a page, so we optimize accordingly. */
  262. static void zorro8390_get_8390_hdr(struct net_device *dev,
  263. struct e8390_pkt_hdr *hdr, int ring_page)
  264. {
  265. int nic_base = dev->base_addr;
  266. int cnt;
  267. short *ptrs;
  268. /* This *shouldn't* happen. If it does, it's the last thing you'll see */
  269. if (ei_status.dmaing) {
  270. printk(KERN_ERR "%s: DMAing conflict in ne_get_8390_hdr "
  271. "[DMAstat:%d][irqlock:%d].\n", dev->name, ei_status.dmaing,
  272. ei_status.irqlock);
  273. return;
  274. }
  275. ei_status.dmaing |= 0x01;
  276. z_writeb(E8390_NODMA+E8390_PAGE0+E8390_START, nic_base+ NE_CMD);
  277. z_writeb(ENISR_RDC, nic_base + NE_EN0_ISR);
  278. z_writeb(sizeof(struct e8390_pkt_hdr), nic_base + NE_EN0_RCNTLO);
  279. z_writeb(0, nic_base + NE_EN0_RCNTHI);
  280. z_writeb(0, nic_base + NE_EN0_RSARLO); /* On page boundary */
  281. z_writeb(ring_page, nic_base + NE_EN0_RSARHI);
  282. z_writeb(E8390_RREAD+E8390_START, nic_base + NE_CMD);
  283. ptrs = (short*)hdr;
  284. for (cnt = 0; cnt < (sizeof(struct e8390_pkt_hdr)>>1); cnt++)
  285. *ptrs++ = z_readw(NE_BASE + NE_DATAPORT);
  286. z_writeb(ENISR_RDC, nic_base + NE_EN0_ISR); /* Ack intr. */
  287. hdr->count = WORDSWAP(hdr->count);
  288. ei_status.dmaing &= ~0x01;
  289. }
  290. /* Block input and output, similar to the Crynwr packet driver. If you
  291. are porting to a new ethercard, look at the packet driver source for hints.
  292. The NEx000 doesn't share the on-board packet memory -- you have to put
  293. the packet out through the "remote DMA" dataport using z_writeb. */
  294. static void zorro8390_block_input(struct net_device *dev, int count,
  295. struct sk_buff *skb, int ring_offset)
  296. {
  297. int nic_base = dev->base_addr;
  298. char *buf = skb->data;
  299. short *ptrs;
  300. int cnt;
  301. /* This *shouldn't* happen. If it does, it's the last thing you'll see */
  302. if (ei_status.dmaing) {
  303. printk(KERN_ERR "%s: DMAing conflict in ne_block_input "
  304. "[DMAstat:%d][irqlock:%d].\n",
  305. dev->name, ei_status.dmaing, ei_status.irqlock);
  306. return;
  307. }
  308. ei_status.dmaing |= 0x01;
  309. z_writeb(E8390_NODMA+E8390_PAGE0+E8390_START, nic_base+ NE_CMD);
  310. z_writeb(ENISR_RDC, nic_base + NE_EN0_ISR);
  311. z_writeb(count & 0xff, nic_base + NE_EN0_RCNTLO);
  312. z_writeb(count >> 8, nic_base + NE_EN0_RCNTHI);
  313. z_writeb(ring_offset & 0xff, nic_base + NE_EN0_RSARLO);
  314. z_writeb(ring_offset >> 8, nic_base + NE_EN0_RSARHI);
  315. z_writeb(E8390_RREAD+E8390_START, nic_base + NE_CMD);
  316. ptrs = (short*)buf;
  317. for (cnt = 0; cnt < (count>>1); cnt++)
  318. *ptrs++ = z_readw(NE_BASE + NE_DATAPORT);
  319. if (count & 0x01)
  320. buf[count-1] = z_readb(NE_BASE + NE_DATAPORT);
  321. z_writeb(ENISR_RDC, nic_base + NE_EN0_ISR); /* Ack intr. */
  322. ei_status.dmaing &= ~0x01;
  323. }
  324. static void zorro8390_block_output(struct net_device *dev, int count,
  325. const unsigned char *buf,
  326. const int start_page)
  327. {
  328. int nic_base = NE_BASE;
  329. unsigned long dma_start;
  330. short *ptrs;
  331. int cnt;
  332. /* Round the count up for word writes. Do we need to do this?
  333. What effect will an odd byte count have on the 8390?
  334. I should check someday. */
  335. if (count & 0x01)
  336. count++;
  337. /* This *shouldn't* happen. If it does, it's the last thing you'll see */
  338. if (ei_status.dmaing) {
  339. printk(KERN_ERR "%s: DMAing conflict in ne_block_output."
  340. "[DMAstat:%d][irqlock:%d]\n", dev->name, ei_status.dmaing,
  341. ei_status.irqlock);
  342. return;
  343. }
  344. ei_status.dmaing |= 0x01;
  345. /* We should already be in page 0, but to be safe... */
  346. z_writeb(E8390_PAGE0+E8390_START+E8390_NODMA, nic_base + NE_CMD);
  347. z_writeb(ENISR_RDC, nic_base + NE_EN0_ISR);
  348. /* Now the normal output. */
  349. z_writeb(count & 0xff, nic_base + NE_EN0_RCNTLO);
  350. z_writeb(count >> 8, nic_base + NE_EN0_RCNTHI);
  351. z_writeb(0x00, nic_base + NE_EN0_RSARLO);
  352. z_writeb(start_page, nic_base + NE_EN0_RSARHI);
  353. z_writeb(E8390_RWRITE+E8390_START, nic_base + NE_CMD);
  354. ptrs = (short*)buf;
  355. for (cnt = 0; cnt < count>>1; cnt++)
  356. z_writew(*ptrs++, NE_BASE+NE_DATAPORT);
  357. dma_start = jiffies;
  358. while ((z_readb(NE_BASE + NE_EN0_ISR) & ENISR_RDC) == 0)
  359. if (time_after(jiffies, dma_start + 2*HZ/100)) { /* 20ms */
  360. printk(KERN_ERR "%s: timeout waiting for Tx RDC.\n",
  361. dev->name);
  362. zorro8390_reset_8390(dev);
  363. __NS8390_init(dev,1);
  364. break;
  365. }
  366. z_writeb(ENISR_RDC, nic_base + NE_EN0_ISR); /* Ack intr. */
  367. ei_status.dmaing &= ~0x01;
  368. }
  369. static void __devexit zorro8390_remove_one(struct zorro_dev *z)
  370. {
  371. struct net_device *dev = zorro_get_drvdata(z);
  372. unregister_netdev(dev);
  373. free_irq(IRQ_AMIGA_PORTS, dev);
  374. release_mem_region(ZTWO_PADDR(dev->base_addr), NE_IO_EXTENT*2);
  375. free_netdev(dev);
  376. }
  377. static int __init zorro8390_init_module(void)
  378. {
  379. return zorro_register_driver(&zorro8390_driver);
  380. }
  381. static void __exit zorro8390_cleanup_module(void)
  382. {
  383. zorro_unregister_driver(&zorro8390_driver);
  384. }
  385. module_init(zorro8390_init_module);
  386. module_exit(zorro8390_cleanup_module);
  387. MODULE_LICENSE("GPL");