ixpdev.c 9.9 KB

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  1. /*
  2. * IXP2000 MSF network device driver
  3. * Copyright (C) 2004, 2005 Lennert Buytenhek <buytenh@wantstofly.org>
  4. * Dedicated to Marija Kulikova.
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation; either version 2 of the License, or
  9. * (at your option) any later version.
  10. */
  11. #include <linux/module.h>
  12. #include <linux/kernel.h>
  13. #include <linux/netdevice.h>
  14. #include <linux/etherdevice.h>
  15. #include <linux/init.h>
  16. #include <linux/moduleparam.h>
  17. #include <asm/hardware/uengine.h>
  18. #include <asm/mach-types.h>
  19. #include <asm/io.h>
  20. #include "ixp2400_rx.ucode"
  21. #include "ixp2400_tx.ucode"
  22. #include "ixpdev_priv.h"
  23. #include "ixpdev.h"
  24. #define DRV_MODULE_VERSION "0.2"
  25. static int nds_count;
  26. static struct net_device **nds;
  27. static int nds_open;
  28. static void (*set_port_admin_status)(int port, int up);
  29. static struct ixpdev_rx_desc * const rx_desc =
  30. (struct ixpdev_rx_desc *)(IXP2000_SRAM0_VIRT_BASE + RX_BUF_DESC_BASE);
  31. static struct ixpdev_tx_desc * const tx_desc =
  32. (struct ixpdev_tx_desc *)(IXP2000_SRAM0_VIRT_BASE + TX_BUF_DESC_BASE);
  33. static int tx_pointer;
  34. static int ixpdev_xmit(struct sk_buff *skb, struct net_device *dev)
  35. {
  36. struct ixpdev_priv *ip = netdev_priv(dev);
  37. struct ixpdev_tx_desc *desc;
  38. int entry;
  39. if (unlikely(skb->len > PAGE_SIZE)) {
  40. /* @@@ Count drops. */
  41. dev_kfree_skb(skb);
  42. return 0;
  43. }
  44. entry = tx_pointer;
  45. tx_pointer = (tx_pointer + 1) % TX_BUF_COUNT;
  46. desc = tx_desc + entry;
  47. desc->pkt_length = skb->len;
  48. desc->channel = ip->channel;
  49. skb_copy_and_csum_dev(skb, phys_to_virt(desc->buf_addr));
  50. dev_kfree_skb(skb);
  51. ixp2000_reg_write(RING_TX_PENDING,
  52. TX_BUF_DESC_BASE + (entry * sizeof(struct ixpdev_tx_desc)));
  53. dev->trans_start = jiffies;
  54. local_irq_disable();
  55. ip->tx_queue_entries++;
  56. if (ip->tx_queue_entries == TX_BUF_COUNT_PER_CHAN)
  57. netif_stop_queue(dev);
  58. local_irq_enable();
  59. return 0;
  60. }
  61. static int ixpdev_rx(struct net_device *dev, int *budget)
  62. {
  63. while (*budget > 0) {
  64. struct ixpdev_rx_desc *desc;
  65. struct sk_buff *skb;
  66. void *buf;
  67. u32 _desc;
  68. _desc = ixp2000_reg_read(RING_RX_DONE);
  69. if (_desc == 0)
  70. return 0;
  71. desc = rx_desc +
  72. ((_desc - RX_BUF_DESC_BASE) / sizeof(struct ixpdev_rx_desc));
  73. buf = phys_to_virt(desc->buf_addr);
  74. if (desc->pkt_length < 4 || desc->pkt_length > PAGE_SIZE) {
  75. printk(KERN_ERR "ixp2000: rx err, length %d\n",
  76. desc->pkt_length);
  77. goto err;
  78. }
  79. if (desc->channel < 0 || desc->channel >= nds_count) {
  80. printk(KERN_ERR "ixp2000: rx err, channel %d\n",
  81. desc->channel);
  82. goto err;
  83. }
  84. /* @@@ Make FCS stripping configurable. */
  85. desc->pkt_length -= 4;
  86. if (unlikely(!netif_running(nds[desc->channel])))
  87. goto err;
  88. skb = dev_alloc_skb(desc->pkt_length + 2);
  89. if (likely(skb != NULL)) {
  90. skb_reserve(skb, 2);
  91. eth_copy_and_sum(skb, buf, desc->pkt_length, 0);
  92. skb_put(skb, desc->pkt_length);
  93. skb->protocol = eth_type_trans(skb, nds[desc->channel]);
  94. skb->dev->last_rx = jiffies;
  95. netif_receive_skb(skb);
  96. }
  97. err:
  98. ixp2000_reg_write(RING_RX_PENDING, _desc);
  99. dev->quota--;
  100. (*budget)--;
  101. }
  102. return 1;
  103. }
  104. /* dev always points to nds[0]. */
  105. static int ixpdev_poll(struct net_device *dev, int *budget)
  106. {
  107. /* @@@ Have to stop polling when nds[0] is administratively
  108. * downed while we are polling. */
  109. do {
  110. ixp2000_reg_write(IXP2000_IRQ_THD_RAW_STATUS_A_0, 0x00ff);
  111. if (ixpdev_rx(dev, budget))
  112. return 1;
  113. } while (ixp2000_reg_read(IXP2000_IRQ_THD_RAW_STATUS_A_0) & 0x00ff);
  114. netif_rx_complete(dev);
  115. ixp2000_reg_write(IXP2000_IRQ_THD_ENABLE_SET_A_0, 0x00ff);
  116. return 0;
  117. }
  118. static void ixpdev_tx_complete(void)
  119. {
  120. int channel;
  121. u32 wake;
  122. wake = 0;
  123. while (1) {
  124. struct ixpdev_priv *ip;
  125. u32 desc;
  126. int entry;
  127. desc = ixp2000_reg_read(RING_TX_DONE);
  128. if (desc == 0)
  129. break;
  130. /* @@@ Check whether entries come back in order. */
  131. entry = (desc - TX_BUF_DESC_BASE) / sizeof(struct ixpdev_tx_desc);
  132. channel = tx_desc[entry].channel;
  133. if (channel < 0 || channel >= nds_count) {
  134. printk(KERN_ERR "ixp2000: txcomp channel index "
  135. "out of bounds (%d, %.8i, %d)\n",
  136. channel, (unsigned int)desc, entry);
  137. continue;
  138. }
  139. ip = netdev_priv(nds[channel]);
  140. if (ip->tx_queue_entries == TX_BUF_COUNT_PER_CHAN)
  141. wake |= 1 << channel;
  142. ip->tx_queue_entries--;
  143. }
  144. for (channel = 0; wake != 0; channel++) {
  145. if (wake & (1 << channel)) {
  146. netif_wake_queue(nds[channel]);
  147. wake &= ~(1 << channel);
  148. }
  149. }
  150. }
  151. static irqreturn_t ixpdev_interrupt(int irq, void *dev_id)
  152. {
  153. u32 status;
  154. status = ixp2000_reg_read(IXP2000_IRQ_THD_STATUS_A_0);
  155. if (status == 0)
  156. return IRQ_NONE;
  157. /*
  158. * Any of the eight receive units signaled RX?
  159. */
  160. if (status & 0x00ff) {
  161. ixp2000_reg_wrb(IXP2000_IRQ_THD_ENABLE_CLEAR_A_0, 0x00ff);
  162. if (likely(__netif_rx_schedule_prep(nds[0]))) {
  163. __netif_rx_schedule(nds[0]);
  164. } else {
  165. printk(KERN_CRIT "ixp2000: irq while polling!!\n");
  166. }
  167. }
  168. /*
  169. * Any of the eight transmit units signaled TXdone?
  170. */
  171. if (status & 0xff00) {
  172. ixp2000_reg_wrb(IXP2000_IRQ_THD_RAW_STATUS_A_0, 0xff00);
  173. ixpdev_tx_complete();
  174. }
  175. return IRQ_HANDLED;
  176. }
  177. #ifdef CONFIG_NET_POLL_CONTROLLER
  178. static void ixpdev_poll_controller(struct net_device *dev)
  179. {
  180. disable_irq(IRQ_IXP2000_THDA0);
  181. ixpdev_interrupt(IRQ_IXP2000_THDA0, dev, NULL);
  182. enable_irq(IRQ_IXP2000_THDA0);
  183. }
  184. #endif
  185. static int ixpdev_open(struct net_device *dev)
  186. {
  187. struct ixpdev_priv *ip = netdev_priv(dev);
  188. int err;
  189. if (!nds_open++) {
  190. err = request_irq(IRQ_IXP2000_THDA0, ixpdev_interrupt,
  191. IRQF_SHARED, "ixp2000_eth", nds);
  192. if (err) {
  193. nds_open--;
  194. return err;
  195. }
  196. ixp2000_reg_write(IXP2000_IRQ_THD_ENABLE_SET_A_0, 0xffff);
  197. }
  198. set_port_admin_status(ip->channel, 1);
  199. netif_start_queue(dev);
  200. return 0;
  201. }
  202. static int ixpdev_close(struct net_device *dev)
  203. {
  204. struct ixpdev_priv *ip = netdev_priv(dev);
  205. netif_stop_queue(dev);
  206. set_port_admin_status(ip->channel, 0);
  207. if (!--nds_open) {
  208. ixp2000_reg_write(IXP2000_IRQ_THD_ENABLE_CLEAR_A_0, 0xffff);
  209. free_irq(IRQ_IXP2000_THDA0, nds);
  210. }
  211. return 0;
  212. }
  213. struct net_device *ixpdev_alloc(int channel, int sizeof_priv)
  214. {
  215. struct net_device *dev;
  216. struct ixpdev_priv *ip;
  217. dev = alloc_etherdev(sizeof_priv);
  218. if (dev == NULL)
  219. return NULL;
  220. dev->hard_start_xmit = ixpdev_xmit;
  221. dev->poll = ixpdev_poll;
  222. dev->open = ixpdev_open;
  223. dev->stop = ixpdev_close;
  224. #ifdef CONFIG_NET_POLL_CONTROLLER
  225. dev->poll_controller = ixpdev_poll_controller;
  226. #endif
  227. dev->features |= NETIF_F_SG | NETIF_F_HW_CSUM;
  228. dev->weight = 64;
  229. ip = netdev_priv(dev);
  230. ip->channel = channel;
  231. ip->tx_queue_entries = 0;
  232. return dev;
  233. }
  234. int ixpdev_init(int __nds_count, struct net_device **__nds,
  235. void (*__set_port_admin_status)(int port, int up))
  236. {
  237. int i;
  238. int err;
  239. BUILD_BUG_ON(RX_BUF_COUNT > 192 || TX_BUF_COUNT > 192);
  240. printk(KERN_INFO "IXP2000 MSF ethernet driver %s\n", DRV_MODULE_VERSION);
  241. nds_count = __nds_count;
  242. nds = __nds;
  243. set_port_admin_status = __set_port_admin_status;
  244. for (i = 0; i < RX_BUF_COUNT; i++) {
  245. void *buf;
  246. buf = (void *)get_zeroed_page(GFP_KERNEL);
  247. if (buf == NULL) {
  248. err = -ENOMEM;
  249. while (--i >= 0)
  250. free_page((unsigned long)phys_to_virt(rx_desc[i].buf_addr));
  251. goto err_out;
  252. }
  253. rx_desc[i].buf_addr = virt_to_phys(buf);
  254. rx_desc[i].buf_length = PAGE_SIZE;
  255. }
  256. /* @@@ Maybe we shouldn't be preallocating TX buffers. */
  257. for (i = 0; i < TX_BUF_COUNT; i++) {
  258. void *buf;
  259. buf = (void *)get_zeroed_page(GFP_KERNEL);
  260. if (buf == NULL) {
  261. err = -ENOMEM;
  262. while (--i >= 0)
  263. free_page((unsigned long)phys_to_virt(tx_desc[i].buf_addr));
  264. goto err_free_rx;
  265. }
  266. tx_desc[i].buf_addr = virt_to_phys(buf);
  267. }
  268. /* 256 entries, ring status set means 'empty', base address 0x0000. */
  269. ixp2000_reg_write(RING_RX_PENDING_BASE, 0x44000000);
  270. ixp2000_reg_write(RING_RX_PENDING_HEAD, 0x00000000);
  271. ixp2000_reg_write(RING_RX_PENDING_TAIL, 0x00000000);
  272. /* 256 entries, ring status set means 'full', base address 0x0400. */
  273. ixp2000_reg_write(RING_RX_DONE_BASE, 0x40000400);
  274. ixp2000_reg_write(RING_RX_DONE_HEAD, 0x00000000);
  275. ixp2000_reg_write(RING_RX_DONE_TAIL, 0x00000000);
  276. for (i = 0; i < RX_BUF_COUNT; i++) {
  277. ixp2000_reg_write(RING_RX_PENDING,
  278. RX_BUF_DESC_BASE + (i * sizeof(struct ixpdev_rx_desc)));
  279. }
  280. ixp2000_uengine_load(0, &ixp2400_rx);
  281. ixp2000_uengine_start_contexts(0, 0xff);
  282. /* 256 entries, ring status set means 'empty', base address 0x0800. */
  283. ixp2000_reg_write(RING_TX_PENDING_BASE, 0x44000800);
  284. ixp2000_reg_write(RING_TX_PENDING_HEAD, 0x00000000);
  285. ixp2000_reg_write(RING_TX_PENDING_TAIL, 0x00000000);
  286. /* 256 entries, ring status set means 'full', base address 0x0c00. */
  287. ixp2000_reg_write(RING_TX_DONE_BASE, 0x40000c00);
  288. ixp2000_reg_write(RING_TX_DONE_HEAD, 0x00000000);
  289. ixp2000_reg_write(RING_TX_DONE_TAIL, 0x00000000);
  290. ixp2000_uengine_load(1, &ixp2400_tx);
  291. ixp2000_uengine_start_contexts(1, 0xff);
  292. for (i = 0; i < nds_count; i++) {
  293. err = register_netdev(nds[i]);
  294. if (err) {
  295. while (--i >= 0)
  296. unregister_netdev(nds[i]);
  297. goto err_free_tx;
  298. }
  299. }
  300. for (i = 0; i < nds_count; i++) {
  301. printk(KERN_INFO "%s: IXP2000 MSF ethernet (port %d), "
  302. "%.2x:%.2x:%.2x:%.2x:%.2x:%.2x.\n", nds[i]->name, i,
  303. nds[i]->dev_addr[0], nds[i]->dev_addr[1],
  304. nds[i]->dev_addr[2], nds[i]->dev_addr[3],
  305. nds[i]->dev_addr[4], nds[i]->dev_addr[5]);
  306. }
  307. return 0;
  308. err_free_tx:
  309. for (i = 0; i < TX_BUF_COUNT; i++)
  310. free_page((unsigned long)phys_to_virt(tx_desc[i].buf_addr));
  311. err_free_rx:
  312. for (i = 0; i < RX_BUF_COUNT; i++)
  313. free_page((unsigned long)phys_to_virt(rx_desc[i].buf_addr));
  314. err_out:
  315. return err;
  316. }
  317. void ixpdev_deinit(void)
  318. {
  319. int i;
  320. /* @@@ Flush out pending packets. */
  321. for (i = 0; i < nds_count; i++)
  322. unregister_netdev(nds[i]);
  323. ixp2000_uengine_stop_contexts(1, 0xff);
  324. ixp2000_uengine_stop_contexts(0, 0xff);
  325. ixp2000_uengine_reset(0x3);
  326. for (i = 0; i < TX_BUF_COUNT; i++)
  327. free_page((unsigned long)phys_to_virt(tx_desc[i].buf_addr));
  328. for (i = 0; i < RX_BUF_COUNT; i++)
  329. free_page((unsigned long)phys_to_virt(rx_desc[i].buf_addr));
  330. }