fec_mpc52xx.c 28 KB

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  1. /*
  2. * Driver for the MPC5200 Fast Ethernet Controller
  3. *
  4. * Originally written by Dale Farnsworth <dfarnsworth@mvista.com> and
  5. * now maintained by Sylvain Munaut <tnt@246tNt.com>
  6. *
  7. * Copyright (C) 2007 Domen Puncer, Telargo, Inc.
  8. * Copyright (C) 2007 Sylvain Munaut <tnt@246tNt.com>
  9. * Copyright (C) 2003-2004 MontaVista, Software, Inc.
  10. *
  11. * This file is licensed under the terms of the GNU General Public License
  12. * version 2. This program is licensed "as is" without any warranty of any
  13. * kind, whether express or implied.
  14. *
  15. */
  16. #include <linux/module.h>
  17. #include <linux/kernel.h>
  18. #include <linux/types.h>
  19. #include <linux/spinlock.h>
  20. #include <linux/errno.h>
  21. #include <linux/init.h>
  22. #include <linux/crc32.h>
  23. #include <linux/hardirq.h>
  24. #include <linux/delay.h>
  25. #include <linux/of_device.h>
  26. #include <linux/of_mdio.h>
  27. #include <linux/of_platform.h>
  28. #include <linux/netdevice.h>
  29. #include <linux/etherdevice.h>
  30. #include <linux/ethtool.h>
  31. #include <linux/skbuff.h>
  32. #include <asm/io.h>
  33. #include <asm/delay.h>
  34. #include <asm/mpc52xx.h>
  35. #include <sysdev/bestcomm/bestcomm.h>
  36. #include <sysdev/bestcomm/fec.h>
  37. #include "fec_mpc52xx.h"
  38. #define DRIVER_NAME "mpc52xx-fec"
  39. /* Private driver data structure */
  40. struct mpc52xx_fec_priv {
  41. struct net_device *ndev;
  42. int duplex;
  43. int speed;
  44. int r_irq;
  45. int t_irq;
  46. struct mpc52xx_fec __iomem *fec;
  47. struct bcom_task *rx_dmatsk;
  48. struct bcom_task *tx_dmatsk;
  49. spinlock_t lock;
  50. int msg_enable;
  51. /* MDIO link details */
  52. unsigned int mdio_speed;
  53. struct device_node *phy_node;
  54. struct phy_device *phydev;
  55. enum phy_state link;
  56. int seven_wire_mode;
  57. };
  58. static irqreturn_t mpc52xx_fec_interrupt(int, void *);
  59. static irqreturn_t mpc52xx_fec_rx_interrupt(int, void *);
  60. static irqreturn_t mpc52xx_fec_tx_interrupt(int, void *);
  61. static void mpc52xx_fec_stop(struct net_device *dev);
  62. static void mpc52xx_fec_start(struct net_device *dev);
  63. static void mpc52xx_fec_reset(struct net_device *dev);
  64. static u8 mpc52xx_fec_mac_addr[6];
  65. module_param_array_named(mac, mpc52xx_fec_mac_addr, byte, NULL, 0);
  66. MODULE_PARM_DESC(mac, "six hex digits, ie. 0x1,0x2,0xc0,0x01,0xba,0xbe");
  67. #define MPC52xx_MESSAGES_DEFAULT ( NETIF_MSG_DRV | NETIF_MSG_PROBE | \
  68. NETIF_MSG_LINK | NETIF_MSG_IFDOWN | NETIF_MSG_IFUP)
  69. static int debug = -1; /* the above default */
  70. module_param(debug, int, 0);
  71. MODULE_PARM_DESC(debug, "debugging messages level");
  72. static void mpc52xx_fec_tx_timeout(struct net_device *dev)
  73. {
  74. dev_warn(&dev->dev, "transmit timed out\n");
  75. mpc52xx_fec_reset(dev);
  76. dev->stats.tx_errors++;
  77. netif_wake_queue(dev);
  78. }
  79. static void mpc52xx_fec_set_paddr(struct net_device *dev, u8 *mac)
  80. {
  81. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  82. struct mpc52xx_fec __iomem *fec = priv->fec;
  83. out_be32(&fec->paddr1, *(u32 *)(&mac[0]));
  84. out_be32(&fec->paddr2, (*(u16 *)(&mac[4]) << 16) | FEC_PADDR2_TYPE);
  85. }
  86. static void mpc52xx_fec_get_paddr(struct net_device *dev, u8 *mac)
  87. {
  88. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  89. struct mpc52xx_fec __iomem *fec = priv->fec;
  90. *(u32 *)(&mac[0]) = in_be32(&fec->paddr1);
  91. *(u16 *)(&mac[4]) = in_be32(&fec->paddr2) >> 16;
  92. }
  93. static int mpc52xx_fec_set_mac_address(struct net_device *dev, void *addr)
  94. {
  95. struct sockaddr *sock = addr;
  96. memcpy(dev->dev_addr, sock->sa_data, dev->addr_len);
  97. mpc52xx_fec_set_paddr(dev, sock->sa_data);
  98. return 0;
  99. }
  100. static void mpc52xx_fec_free_rx_buffers(struct net_device *dev, struct bcom_task *s)
  101. {
  102. while (!bcom_queue_empty(s)) {
  103. struct bcom_fec_bd *bd;
  104. struct sk_buff *skb;
  105. skb = bcom_retrieve_buffer(s, NULL, (struct bcom_bd **)&bd);
  106. dma_unmap_single(dev->dev.parent, bd->skb_pa, skb->len,
  107. DMA_FROM_DEVICE);
  108. kfree_skb(skb);
  109. }
  110. }
  111. static int mpc52xx_fec_alloc_rx_buffers(struct net_device *dev, struct bcom_task *rxtsk)
  112. {
  113. while (!bcom_queue_full(rxtsk)) {
  114. struct sk_buff *skb;
  115. struct bcom_fec_bd *bd;
  116. skb = dev_alloc_skb(FEC_RX_BUFFER_SIZE);
  117. if (skb == NULL)
  118. return -EAGAIN;
  119. /* zero out the initial receive buffers to aid debugging */
  120. memset(skb->data, 0, FEC_RX_BUFFER_SIZE);
  121. bd = (struct bcom_fec_bd *)bcom_prepare_next_buffer(rxtsk);
  122. bd->status = FEC_RX_BUFFER_SIZE;
  123. bd->skb_pa = dma_map_single(dev->dev.parent, skb->data,
  124. FEC_RX_BUFFER_SIZE, DMA_FROM_DEVICE);
  125. bcom_submit_next_buffer(rxtsk, skb);
  126. }
  127. return 0;
  128. }
  129. /* based on generic_adjust_link from fs_enet-main.c */
  130. static void mpc52xx_fec_adjust_link(struct net_device *dev)
  131. {
  132. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  133. struct phy_device *phydev = priv->phydev;
  134. int new_state = 0;
  135. if (phydev->link != PHY_DOWN) {
  136. if (phydev->duplex != priv->duplex) {
  137. struct mpc52xx_fec __iomem *fec = priv->fec;
  138. u32 rcntrl;
  139. u32 tcntrl;
  140. new_state = 1;
  141. priv->duplex = phydev->duplex;
  142. rcntrl = in_be32(&fec->r_cntrl);
  143. tcntrl = in_be32(&fec->x_cntrl);
  144. rcntrl &= ~FEC_RCNTRL_DRT;
  145. tcntrl &= ~FEC_TCNTRL_FDEN;
  146. if (phydev->duplex == DUPLEX_FULL)
  147. tcntrl |= FEC_TCNTRL_FDEN; /* FD enable */
  148. else
  149. rcntrl |= FEC_RCNTRL_DRT; /* disable Rx on Tx (HD) */
  150. out_be32(&fec->r_cntrl, rcntrl);
  151. out_be32(&fec->x_cntrl, tcntrl);
  152. }
  153. if (phydev->speed != priv->speed) {
  154. new_state = 1;
  155. priv->speed = phydev->speed;
  156. }
  157. if (priv->link == PHY_DOWN) {
  158. new_state = 1;
  159. priv->link = phydev->link;
  160. }
  161. } else if (priv->link) {
  162. new_state = 1;
  163. priv->link = PHY_DOWN;
  164. priv->speed = 0;
  165. priv->duplex = -1;
  166. }
  167. if (new_state && netif_msg_link(priv))
  168. phy_print_status(phydev);
  169. }
  170. static int mpc52xx_fec_open(struct net_device *dev)
  171. {
  172. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  173. int err = -EBUSY;
  174. if (priv->phy_node) {
  175. priv->phydev = of_phy_connect(priv->ndev, priv->phy_node,
  176. mpc52xx_fec_adjust_link, 0, 0);
  177. if (!priv->phydev) {
  178. dev_err(&dev->dev, "of_phy_connect failed\n");
  179. return -ENODEV;
  180. }
  181. phy_start(priv->phydev);
  182. }
  183. if (request_irq(dev->irq, &mpc52xx_fec_interrupt, IRQF_SHARED,
  184. DRIVER_NAME "_ctrl", dev)) {
  185. dev_err(&dev->dev, "ctrl interrupt request failed\n");
  186. goto free_phy;
  187. }
  188. if (request_irq(priv->r_irq, &mpc52xx_fec_rx_interrupt, 0,
  189. DRIVER_NAME "_rx", dev)) {
  190. dev_err(&dev->dev, "rx interrupt request failed\n");
  191. goto free_ctrl_irq;
  192. }
  193. if (request_irq(priv->t_irq, &mpc52xx_fec_tx_interrupt, 0,
  194. DRIVER_NAME "_tx", dev)) {
  195. dev_err(&dev->dev, "tx interrupt request failed\n");
  196. goto free_2irqs;
  197. }
  198. bcom_fec_rx_reset(priv->rx_dmatsk);
  199. bcom_fec_tx_reset(priv->tx_dmatsk);
  200. err = mpc52xx_fec_alloc_rx_buffers(dev, priv->rx_dmatsk);
  201. if (err) {
  202. dev_err(&dev->dev, "mpc52xx_fec_alloc_rx_buffers failed\n");
  203. goto free_irqs;
  204. }
  205. bcom_enable(priv->rx_dmatsk);
  206. bcom_enable(priv->tx_dmatsk);
  207. mpc52xx_fec_start(dev);
  208. netif_start_queue(dev);
  209. return 0;
  210. free_irqs:
  211. free_irq(priv->t_irq, dev);
  212. free_2irqs:
  213. free_irq(priv->r_irq, dev);
  214. free_ctrl_irq:
  215. free_irq(dev->irq, dev);
  216. free_phy:
  217. if (priv->phydev) {
  218. phy_stop(priv->phydev);
  219. phy_disconnect(priv->phydev);
  220. priv->phydev = NULL;
  221. }
  222. return err;
  223. }
  224. static int mpc52xx_fec_close(struct net_device *dev)
  225. {
  226. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  227. netif_stop_queue(dev);
  228. mpc52xx_fec_stop(dev);
  229. mpc52xx_fec_free_rx_buffers(dev, priv->rx_dmatsk);
  230. free_irq(dev->irq, dev);
  231. free_irq(priv->r_irq, dev);
  232. free_irq(priv->t_irq, dev);
  233. if (priv->phydev) {
  234. /* power down phy */
  235. phy_stop(priv->phydev);
  236. phy_disconnect(priv->phydev);
  237. priv->phydev = NULL;
  238. }
  239. return 0;
  240. }
  241. /* This will only be invoked if your driver is _not_ in XOFF state.
  242. * What this means is that you need not check it, and that this
  243. * invariant will hold if you make sure that the netif_*_queue()
  244. * calls are done at the proper times.
  245. */
  246. static int mpc52xx_fec_start_xmit(struct sk_buff *skb, struct net_device *dev)
  247. {
  248. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  249. struct bcom_fec_bd *bd;
  250. if (bcom_queue_full(priv->tx_dmatsk)) {
  251. if (net_ratelimit())
  252. dev_err(&dev->dev, "transmit queue overrun\n");
  253. return NETDEV_TX_BUSY;
  254. }
  255. spin_lock_irq(&priv->lock);
  256. dev->trans_start = jiffies;
  257. bd = (struct bcom_fec_bd *)
  258. bcom_prepare_next_buffer(priv->tx_dmatsk);
  259. bd->status = skb->len | BCOM_FEC_TX_BD_TFD | BCOM_FEC_TX_BD_TC;
  260. bd->skb_pa = dma_map_single(dev->dev.parent, skb->data, skb->len,
  261. DMA_TO_DEVICE);
  262. bcom_submit_next_buffer(priv->tx_dmatsk, skb);
  263. if (bcom_queue_full(priv->tx_dmatsk)) {
  264. netif_stop_queue(dev);
  265. }
  266. spin_unlock_irq(&priv->lock);
  267. return NETDEV_TX_OK;
  268. }
  269. #ifdef CONFIG_NET_POLL_CONTROLLER
  270. static void mpc52xx_fec_poll_controller(struct net_device *dev)
  271. {
  272. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  273. disable_irq(priv->t_irq);
  274. mpc52xx_fec_tx_interrupt(priv->t_irq, dev);
  275. enable_irq(priv->t_irq);
  276. disable_irq(priv->r_irq);
  277. mpc52xx_fec_rx_interrupt(priv->r_irq, dev);
  278. enable_irq(priv->r_irq);
  279. }
  280. #endif
  281. /* This handles BestComm transmit task interrupts
  282. */
  283. static irqreturn_t mpc52xx_fec_tx_interrupt(int irq, void *dev_id)
  284. {
  285. struct net_device *dev = dev_id;
  286. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  287. spin_lock(&priv->lock);
  288. while (bcom_buffer_done(priv->tx_dmatsk)) {
  289. struct sk_buff *skb;
  290. struct bcom_fec_bd *bd;
  291. skb = bcom_retrieve_buffer(priv->tx_dmatsk, NULL,
  292. (struct bcom_bd **)&bd);
  293. dma_unmap_single(dev->dev.parent, bd->skb_pa, skb->len,
  294. DMA_TO_DEVICE);
  295. dev_kfree_skb_irq(skb);
  296. }
  297. netif_wake_queue(dev);
  298. spin_unlock(&priv->lock);
  299. return IRQ_HANDLED;
  300. }
  301. static irqreturn_t mpc52xx_fec_rx_interrupt(int irq, void *dev_id)
  302. {
  303. struct net_device *dev = dev_id;
  304. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  305. while (bcom_buffer_done(priv->rx_dmatsk)) {
  306. struct sk_buff *skb;
  307. struct sk_buff *rskb;
  308. struct bcom_fec_bd *bd;
  309. u32 status;
  310. rskb = bcom_retrieve_buffer(priv->rx_dmatsk, &status,
  311. (struct bcom_bd **)&bd);
  312. dma_unmap_single(dev->dev.parent, bd->skb_pa, rskb->len,
  313. DMA_FROM_DEVICE);
  314. /* Test for errors in received frame */
  315. if (status & BCOM_FEC_RX_BD_ERRORS) {
  316. /* Drop packet and reuse the buffer */
  317. bd = (struct bcom_fec_bd *)
  318. bcom_prepare_next_buffer(priv->rx_dmatsk);
  319. bd->status = FEC_RX_BUFFER_SIZE;
  320. bd->skb_pa = dma_map_single(dev->dev.parent,
  321. rskb->data,
  322. FEC_RX_BUFFER_SIZE, DMA_FROM_DEVICE);
  323. bcom_submit_next_buffer(priv->rx_dmatsk, rskb);
  324. dev->stats.rx_dropped++;
  325. continue;
  326. }
  327. /* skbs are allocated on open, so now we allocate a new one,
  328. * and remove the old (with the packet) */
  329. skb = dev_alloc_skb(FEC_RX_BUFFER_SIZE);
  330. if (skb) {
  331. /* Process the received skb */
  332. int length = status & BCOM_FEC_RX_BD_LEN_MASK;
  333. skb_put(rskb, length - 4); /* length without CRC32 */
  334. rskb->dev = dev;
  335. rskb->protocol = eth_type_trans(rskb, dev);
  336. netif_rx(rskb);
  337. } else {
  338. /* Can't get a new one : reuse the same & drop pkt */
  339. dev_notice(&dev->dev, "Memory squeeze, dropping packet.\n");
  340. dev->stats.rx_dropped++;
  341. skb = rskb;
  342. }
  343. bd = (struct bcom_fec_bd *)
  344. bcom_prepare_next_buffer(priv->rx_dmatsk);
  345. bd->status = FEC_RX_BUFFER_SIZE;
  346. bd->skb_pa = dma_map_single(dev->dev.parent, skb->data,
  347. FEC_RX_BUFFER_SIZE, DMA_FROM_DEVICE);
  348. bcom_submit_next_buffer(priv->rx_dmatsk, skb);
  349. }
  350. return IRQ_HANDLED;
  351. }
  352. static irqreturn_t mpc52xx_fec_interrupt(int irq, void *dev_id)
  353. {
  354. struct net_device *dev = dev_id;
  355. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  356. struct mpc52xx_fec __iomem *fec = priv->fec;
  357. u32 ievent;
  358. ievent = in_be32(&fec->ievent);
  359. ievent &= ~FEC_IEVENT_MII; /* mii is handled separately */
  360. if (!ievent)
  361. return IRQ_NONE;
  362. out_be32(&fec->ievent, ievent); /* clear pending events */
  363. /* on fifo error, soft-reset fec */
  364. if (ievent & (FEC_IEVENT_RFIFO_ERROR | FEC_IEVENT_XFIFO_ERROR)) {
  365. if (net_ratelimit() && (ievent & FEC_IEVENT_RFIFO_ERROR))
  366. dev_warn(&dev->dev, "FEC_IEVENT_RFIFO_ERROR\n");
  367. if (net_ratelimit() && (ievent & FEC_IEVENT_XFIFO_ERROR))
  368. dev_warn(&dev->dev, "FEC_IEVENT_XFIFO_ERROR\n");
  369. mpc52xx_fec_reset(dev);
  370. netif_wake_queue(dev);
  371. return IRQ_HANDLED;
  372. }
  373. if (ievent & ~FEC_IEVENT_TFINT)
  374. dev_dbg(&dev->dev, "ievent: %08x\n", ievent);
  375. return IRQ_HANDLED;
  376. }
  377. /*
  378. * Get the current statistics.
  379. * This may be called with the card open or closed.
  380. */
  381. static struct net_device_stats *mpc52xx_fec_get_stats(struct net_device *dev)
  382. {
  383. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  384. struct net_device_stats *stats = &dev->stats;
  385. struct mpc52xx_fec __iomem *fec = priv->fec;
  386. stats->rx_bytes = in_be32(&fec->rmon_r_octets);
  387. stats->rx_packets = in_be32(&fec->rmon_r_packets);
  388. stats->rx_errors = in_be32(&fec->rmon_r_crc_align) +
  389. in_be32(&fec->rmon_r_undersize) +
  390. in_be32(&fec->rmon_r_oversize) +
  391. in_be32(&fec->rmon_r_frag) +
  392. in_be32(&fec->rmon_r_jab);
  393. stats->tx_bytes = in_be32(&fec->rmon_t_octets);
  394. stats->tx_packets = in_be32(&fec->rmon_t_packets);
  395. stats->tx_errors = in_be32(&fec->rmon_t_crc_align) +
  396. in_be32(&fec->rmon_t_undersize) +
  397. in_be32(&fec->rmon_t_oversize) +
  398. in_be32(&fec->rmon_t_frag) +
  399. in_be32(&fec->rmon_t_jab);
  400. stats->multicast = in_be32(&fec->rmon_r_mc_pkt);
  401. stats->collisions = in_be32(&fec->rmon_t_col);
  402. /* detailed rx_errors: */
  403. stats->rx_length_errors = in_be32(&fec->rmon_r_undersize)
  404. + in_be32(&fec->rmon_r_oversize)
  405. + in_be32(&fec->rmon_r_frag)
  406. + in_be32(&fec->rmon_r_jab);
  407. stats->rx_over_errors = in_be32(&fec->r_macerr);
  408. stats->rx_crc_errors = in_be32(&fec->ieee_r_crc);
  409. stats->rx_frame_errors = in_be32(&fec->ieee_r_align);
  410. stats->rx_fifo_errors = in_be32(&fec->rmon_r_drop);
  411. stats->rx_missed_errors = in_be32(&fec->rmon_r_drop);
  412. /* detailed tx_errors: */
  413. stats->tx_aborted_errors = 0;
  414. stats->tx_carrier_errors = in_be32(&fec->ieee_t_cserr);
  415. stats->tx_fifo_errors = in_be32(&fec->rmon_t_drop);
  416. stats->tx_heartbeat_errors = in_be32(&fec->ieee_t_sqe);
  417. stats->tx_window_errors = in_be32(&fec->ieee_t_lcol);
  418. return stats;
  419. }
  420. /*
  421. * Read MIB counters in order to reset them,
  422. * then zero all the stats fields in memory
  423. */
  424. static void mpc52xx_fec_reset_stats(struct net_device *dev)
  425. {
  426. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  427. struct mpc52xx_fec __iomem *fec = priv->fec;
  428. out_be32(&fec->mib_control, FEC_MIB_DISABLE);
  429. memset_io(&fec->rmon_t_drop, 0,
  430. offsetof(struct mpc52xx_fec, reserved10) -
  431. offsetof(struct mpc52xx_fec, rmon_t_drop));
  432. out_be32(&fec->mib_control, 0);
  433. memset(&dev->stats, 0, sizeof(dev->stats));
  434. }
  435. /*
  436. * Set or clear the multicast filter for this adaptor.
  437. */
  438. static void mpc52xx_fec_set_multicast_list(struct net_device *dev)
  439. {
  440. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  441. struct mpc52xx_fec __iomem *fec = priv->fec;
  442. u32 rx_control;
  443. rx_control = in_be32(&fec->r_cntrl);
  444. if (dev->flags & IFF_PROMISC) {
  445. rx_control |= FEC_RCNTRL_PROM;
  446. out_be32(&fec->r_cntrl, rx_control);
  447. } else {
  448. rx_control &= ~FEC_RCNTRL_PROM;
  449. out_be32(&fec->r_cntrl, rx_control);
  450. if (dev->flags & IFF_ALLMULTI) {
  451. out_be32(&fec->gaddr1, 0xffffffff);
  452. out_be32(&fec->gaddr2, 0xffffffff);
  453. } else {
  454. u32 crc;
  455. int i;
  456. struct dev_mc_list *dmi;
  457. u32 gaddr1 = 0x00000000;
  458. u32 gaddr2 = 0x00000000;
  459. dmi = dev->mc_list;
  460. for (i=0; i<dev->mc_count; i++) {
  461. crc = ether_crc_le(6, dmi->dmi_addr) >> 26;
  462. if (crc >= 32)
  463. gaddr1 |= 1 << (crc-32);
  464. else
  465. gaddr2 |= 1 << crc;
  466. dmi = dmi->next;
  467. }
  468. out_be32(&fec->gaddr1, gaddr1);
  469. out_be32(&fec->gaddr2, gaddr2);
  470. }
  471. }
  472. }
  473. /**
  474. * mpc52xx_fec_hw_init
  475. * @dev: network device
  476. *
  477. * Setup various hardware setting, only needed once on start
  478. */
  479. static void mpc52xx_fec_hw_init(struct net_device *dev)
  480. {
  481. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  482. struct mpc52xx_fec __iomem *fec = priv->fec;
  483. int i;
  484. /* Whack a reset. We should wait for this. */
  485. out_be32(&fec->ecntrl, FEC_ECNTRL_RESET);
  486. for (i = 0; i < FEC_RESET_DELAY; ++i) {
  487. if ((in_be32(&fec->ecntrl) & FEC_ECNTRL_RESET) == 0)
  488. break;
  489. udelay(1);
  490. }
  491. if (i == FEC_RESET_DELAY)
  492. dev_err(&dev->dev, "FEC Reset timeout!\n");
  493. /* set pause to 0x20 frames */
  494. out_be32(&fec->op_pause, FEC_OP_PAUSE_OPCODE | 0x20);
  495. /* high service request will be deasserted when there's < 7 bytes in fifo
  496. * low service request will be deasserted when there's < 4*7 bytes in fifo
  497. */
  498. out_be32(&fec->rfifo_cntrl, FEC_FIFO_CNTRL_FRAME | FEC_FIFO_CNTRL_LTG_7);
  499. out_be32(&fec->tfifo_cntrl, FEC_FIFO_CNTRL_FRAME | FEC_FIFO_CNTRL_LTG_7);
  500. /* alarm when <= x bytes in FIFO */
  501. out_be32(&fec->rfifo_alarm, 0x0000030c);
  502. out_be32(&fec->tfifo_alarm, 0x00000100);
  503. /* begin transmittion when 256 bytes are in FIFO (or EOF or FIFO full) */
  504. out_be32(&fec->x_wmrk, FEC_FIFO_WMRK_256B);
  505. /* enable crc generation */
  506. out_be32(&fec->xmit_fsm, FEC_XMIT_FSM_APPEND_CRC | FEC_XMIT_FSM_ENABLE_CRC);
  507. out_be32(&fec->iaddr1, 0x00000000); /* No individual filter */
  508. out_be32(&fec->iaddr2, 0x00000000); /* No individual filter */
  509. /* set phy speed.
  510. * this can't be done in phy driver, since it needs to be called
  511. * before fec stuff (even on resume) */
  512. out_be32(&fec->mii_speed, priv->mdio_speed);
  513. }
  514. /**
  515. * mpc52xx_fec_start
  516. * @dev: network device
  517. *
  518. * This function is called to start or restart the FEC during a link
  519. * change. This happens on fifo errors or when switching between half
  520. * and full duplex.
  521. */
  522. static void mpc52xx_fec_start(struct net_device *dev)
  523. {
  524. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  525. struct mpc52xx_fec __iomem *fec = priv->fec;
  526. u32 rcntrl;
  527. u32 tcntrl;
  528. u32 tmp;
  529. /* clear sticky error bits */
  530. tmp = FEC_FIFO_STATUS_ERR | FEC_FIFO_STATUS_UF | FEC_FIFO_STATUS_OF;
  531. out_be32(&fec->rfifo_status, in_be32(&fec->rfifo_status) & tmp);
  532. out_be32(&fec->tfifo_status, in_be32(&fec->tfifo_status) & tmp);
  533. /* FIFOs will reset on mpc52xx_fec_enable */
  534. out_be32(&fec->reset_cntrl, FEC_RESET_CNTRL_ENABLE_IS_RESET);
  535. /* Set station address. */
  536. mpc52xx_fec_set_paddr(dev, dev->dev_addr);
  537. mpc52xx_fec_set_multicast_list(dev);
  538. /* set max frame len, enable flow control, select mii mode */
  539. rcntrl = FEC_RX_BUFFER_SIZE << 16; /* max frame length */
  540. rcntrl |= FEC_RCNTRL_FCE;
  541. if (!priv->seven_wire_mode)
  542. rcntrl |= FEC_RCNTRL_MII_MODE;
  543. if (priv->duplex == DUPLEX_FULL)
  544. tcntrl = FEC_TCNTRL_FDEN; /* FD enable */
  545. else {
  546. rcntrl |= FEC_RCNTRL_DRT; /* disable Rx on Tx (HD) */
  547. tcntrl = 0;
  548. }
  549. out_be32(&fec->r_cntrl, rcntrl);
  550. out_be32(&fec->x_cntrl, tcntrl);
  551. /* Clear any outstanding interrupt. */
  552. out_be32(&fec->ievent, 0xffffffff);
  553. /* Enable interrupts we wish to service. */
  554. out_be32(&fec->imask, FEC_IMASK_ENABLE);
  555. /* And last, enable the transmit and receive processing. */
  556. out_be32(&fec->ecntrl, FEC_ECNTRL_ETHER_EN);
  557. out_be32(&fec->r_des_active, 0x01000000);
  558. }
  559. /**
  560. * mpc52xx_fec_stop
  561. * @dev: network device
  562. *
  563. * stop all activity on fec and empty dma buffers
  564. */
  565. static void mpc52xx_fec_stop(struct net_device *dev)
  566. {
  567. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  568. struct mpc52xx_fec __iomem *fec = priv->fec;
  569. unsigned long timeout;
  570. /* disable all interrupts */
  571. out_be32(&fec->imask, 0);
  572. /* Disable the rx task. */
  573. bcom_disable(priv->rx_dmatsk);
  574. /* Wait for tx queue to drain, but only if we're in process context */
  575. if (!in_interrupt()) {
  576. timeout = jiffies + msecs_to_jiffies(2000);
  577. while (time_before(jiffies, timeout) &&
  578. !bcom_queue_empty(priv->tx_dmatsk))
  579. msleep(100);
  580. if (time_after_eq(jiffies, timeout))
  581. dev_err(&dev->dev, "queues didn't drain\n");
  582. #if 1
  583. if (time_after_eq(jiffies, timeout)) {
  584. dev_err(&dev->dev, " tx: index: %i, outdex: %i\n",
  585. priv->tx_dmatsk->index,
  586. priv->tx_dmatsk->outdex);
  587. dev_err(&dev->dev, " rx: index: %i, outdex: %i\n",
  588. priv->rx_dmatsk->index,
  589. priv->rx_dmatsk->outdex);
  590. }
  591. #endif
  592. }
  593. bcom_disable(priv->tx_dmatsk);
  594. /* Stop FEC */
  595. out_be32(&fec->ecntrl, in_be32(&fec->ecntrl) & ~FEC_ECNTRL_ETHER_EN);
  596. }
  597. /* reset fec and bestcomm tasks */
  598. static void mpc52xx_fec_reset(struct net_device *dev)
  599. {
  600. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  601. struct mpc52xx_fec __iomem *fec = priv->fec;
  602. mpc52xx_fec_stop(dev);
  603. out_be32(&fec->rfifo_status, in_be32(&fec->rfifo_status));
  604. out_be32(&fec->reset_cntrl, FEC_RESET_CNTRL_RESET_FIFO);
  605. mpc52xx_fec_free_rx_buffers(dev, priv->rx_dmatsk);
  606. mpc52xx_fec_hw_init(dev);
  607. if (priv->phydev) {
  608. phy_stop(priv->phydev);
  609. phy_write(priv->phydev, MII_BMCR, BMCR_RESET);
  610. phy_start(priv->phydev);
  611. }
  612. bcom_fec_rx_reset(priv->rx_dmatsk);
  613. bcom_fec_tx_reset(priv->tx_dmatsk);
  614. mpc52xx_fec_alloc_rx_buffers(dev, priv->rx_dmatsk);
  615. bcom_enable(priv->rx_dmatsk);
  616. bcom_enable(priv->tx_dmatsk);
  617. mpc52xx_fec_start(dev);
  618. }
  619. /* ethtool interface */
  620. static void mpc52xx_fec_get_drvinfo(struct net_device *dev,
  621. struct ethtool_drvinfo *info)
  622. {
  623. strcpy(info->driver, DRIVER_NAME);
  624. }
  625. static int mpc52xx_fec_get_settings(struct net_device *dev, struct ethtool_cmd *cmd)
  626. {
  627. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  628. if (!priv->phydev)
  629. return -ENODEV;
  630. return phy_ethtool_gset(priv->phydev, cmd);
  631. }
  632. static int mpc52xx_fec_set_settings(struct net_device *dev, struct ethtool_cmd *cmd)
  633. {
  634. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  635. if (!priv->phydev)
  636. return -ENODEV;
  637. return phy_ethtool_sset(priv->phydev, cmd);
  638. }
  639. static u32 mpc52xx_fec_get_msglevel(struct net_device *dev)
  640. {
  641. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  642. return priv->msg_enable;
  643. }
  644. static void mpc52xx_fec_set_msglevel(struct net_device *dev, u32 level)
  645. {
  646. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  647. priv->msg_enable = level;
  648. }
  649. static const struct ethtool_ops mpc52xx_fec_ethtool_ops = {
  650. .get_drvinfo = mpc52xx_fec_get_drvinfo,
  651. .get_settings = mpc52xx_fec_get_settings,
  652. .set_settings = mpc52xx_fec_set_settings,
  653. .get_link = ethtool_op_get_link,
  654. .get_msglevel = mpc52xx_fec_get_msglevel,
  655. .set_msglevel = mpc52xx_fec_set_msglevel,
  656. };
  657. static int mpc52xx_fec_ioctl(struct net_device *dev, struct ifreq *rq, int cmd)
  658. {
  659. struct mpc52xx_fec_priv *priv = netdev_priv(dev);
  660. if (!priv->phydev)
  661. return -ENOTSUPP;
  662. return phy_mii_ioctl(priv->phydev, if_mii(rq), cmd);
  663. }
  664. static const struct net_device_ops mpc52xx_fec_netdev_ops = {
  665. .ndo_open = mpc52xx_fec_open,
  666. .ndo_stop = mpc52xx_fec_close,
  667. .ndo_start_xmit = mpc52xx_fec_start_xmit,
  668. .ndo_set_multicast_list = mpc52xx_fec_set_multicast_list,
  669. .ndo_set_mac_address = mpc52xx_fec_set_mac_address,
  670. .ndo_validate_addr = eth_validate_addr,
  671. .ndo_do_ioctl = mpc52xx_fec_ioctl,
  672. .ndo_change_mtu = eth_change_mtu,
  673. .ndo_tx_timeout = mpc52xx_fec_tx_timeout,
  674. .ndo_get_stats = mpc52xx_fec_get_stats,
  675. #ifdef CONFIG_NET_POLL_CONTROLLER
  676. .ndo_poll_controller = mpc52xx_fec_poll_controller,
  677. #endif
  678. };
  679. /* ======================================================================== */
  680. /* OF Driver */
  681. /* ======================================================================== */
  682. static int __devinit
  683. mpc52xx_fec_probe(struct of_device *op, const struct of_device_id *match)
  684. {
  685. int rv;
  686. struct net_device *ndev;
  687. struct mpc52xx_fec_priv *priv = NULL;
  688. struct resource mem;
  689. const u32 *prop;
  690. int prop_size;
  691. phys_addr_t rx_fifo;
  692. phys_addr_t tx_fifo;
  693. /* Get the ether ndev & it's private zone */
  694. ndev = alloc_etherdev(sizeof(struct mpc52xx_fec_priv));
  695. if (!ndev)
  696. return -ENOMEM;
  697. priv = netdev_priv(ndev);
  698. priv->ndev = ndev;
  699. /* Reserve FEC control zone */
  700. rv = of_address_to_resource(op->node, 0, &mem);
  701. if (rv) {
  702. printk(KERN_ERR DRIVER_NAME ": "
  703. "Error while parsing device node resource\n" );
  704. return rv;
  705. }
  706. if ((mem.end - mem.start + 1) < sizeof(struct mpc52xx_fec)) {
  707. printk(KERN_ERR DRIVER_NAME
  708. " - invalid resource size (%lx < %x), check mpc52xx_devices.c\n",
  709. (unsigned long)(mem.end - mem.start + 1), sizeof(struct mpc52xx_fec));
  710. return -EINVAL;
  711. }
  712. if (!request_mem_region(mem.start, sizeof(struct mpc52xx_fec), DRIVER_NAME))
  713. return -EBUSY;
  714. /* Init ether ndev with what we have */
  715. ndev->netdev_ops = &mpc52xx_fec_netdev_ops;
  716. ndev->ethtool_ops = &mpc52xx_fec_ethtool_ops;
  717. ndev->watchdog_timeo = FEC_WATCHDOG_TIMEOUT;
  718. ndev->base_addr = mem.start;
  719. SET_NETDEV_DEV(ndev, &op->dev);
  720. spin_lock_init(&priv->lock);
  721. /* ioremap the zones */
  722. priv->fec = ioremap(mem.start, sizeof(struct mpc52xx_fec));
  723. if (!priv->fec) {
  724. rv = -ENOMEM;
  725. goto probe_error;
  726. }
  727. /* Bestcomm init */
  728. rx_fifo = ndev->base_addr + offsetof(struct mpc52xx_fec, rfifo_data);
  729. tx_fifo = ndev->base_addr + offsetof(struct mpc52xx_fec, tfifo_data);
  730. priv->rx_dmatsk = bcom_fec_rx_init(FEC_RX_NUM_BD, rx_fifo, FEC_RX_BUFFER_SIZE);
  731. priv->tx_dmatsk = bcom_fec_tx_init(FEC_TX_NUM_BD, tx_fifo);
  732. if (!priv->rx_dmatsk || !priv->tx_dmatsk) {
  733. printk(KERN_ERR DRIVER_NAME ": Can not init SDMA tasks\n" );
  734. rv = -ENOMEM;
  735. goto probe_error;
  736. }
  737. /* Get the IRQ we need one by one */
  738. /* Control */
  739. ndev->irq = irq_of_parse_and_map(op->node, 0);
  740. /* RX */
  741. priv->r_irq = bcom_get_task_irq(priv->rx_dmatsk);
  742. /* TX */
  743. priv->t_irq = bcom_get_task_irq(priv->tx_dmatsk);
  744. /* MAC address init */
  745. if (!is_zero_ether_addr(mpc52xx_fec_mac_addr))
  746. memcpy(ndev->dev_addr, mpc52xx_fec_mac_addr, 6);
  747. else
  748. mpc52xx_fec_get_paddr(ndev, ndev->dev_addr);
  749. priv->msg_enable = netif_msg_init(debug, MPC52xx_MESSAGES_DEFAULT);
  750. /*
  751. * Link mode configuration
  752. */
  753. /* Start with safe defaults for link connection */
  754. priv->speed = 100;
  755. priv->duplex = DUPLEX_HALF;
  756. priv->mdio_speed = ((mpc5xxx_get_bus_frequency(op->node) >> 20) / 5) << 1;
  757. /* The current speed preconfigures the speed of the MII link */
  758. prop = of_get_property(op->node, "current-speed", &prop_size);
  759. if (prop && (prop_size >= sizeof(u32) * 2)) {
  760. priv->speed = prop[0];
  761. priv->duplex = prop[1] ? DUPLEX_FULL : DUPLEX_HALF;
  762. }
  763. /* If there is a phy handle, then get the PHY node */
  764. priv->phy_node = of_parse_phandle(op->node, "phy-handle", 0);
  765. /* the 7-wire property means don't use MII mode */
  766. if (of_find_property(op->node, "fsl,7-wire-mode", NULL)) {
  767. priv->seven_wire_mode = 1;
  768. dev_info(&ndev->dev, "using 7-wire PHY mode\n");
  769. }
  770. /* Hardware init */
  771. mpc52xx_fec_hw_init(ndev);
  772. mpc52xx_fec_reset_stats(ndev);
  773. rv = register_netdev(ndev);
  774. if (rv < 0)
  775. goto probe_error;
  776. /* We're done ! */
  777. dev_set_drvdata(&op->dev, ndev);
  778. return 0;
  779. /* Error handling - free everything that might be allocated */
  780. probe_error:
  781. if (priv->phy_node)
  782. of_node_put(priv->phy_node);
  783. priv->phy_node = NULL;
  784. irq_dispose_mapping(ndev->irq);
  785. if (priv->rx_dmatsk)
  786. bcom_fec_rx_release(priv->rx_dmatsk);
  787. if (priv->tx_dmatsk)
  788. bcom_fec_tx_release(priv->tx_dmatsk);
  789. if (priv->fec)
  790. iounmap(priv->fec);
  791. release_mem_region(mem.start, sizeof(struct mpc52xx_fec));
  792. free_netdev(ndev);
  793. return rv;
  794. }
  795. static int
  796. mpc52xx_fec_remove(struct of_device *op)
  797. {
  798. struct net_device *ndev;
  799. struct mpc52xx_fec_priv *priv;
  800. ndev = dev_get_drvdata(&op->dev);
  801. priv = netdev_priv(ndev);
  802. unregister_netdev(ndev);
  803. if (priv->phy_node)
  804. of_node_put(priv->phy_node);
  805. priv->phy_node = NULL;
  806. irq_dispose_mapping(ndev->irq);
  807. bcom_fec_rx_release(priv->rx_dmatsk);
  808. bcom_fec_tx_release(priv->tx_dmatsk);
  809. iounmap(priv->fec);
  810. release_mem_region(ndev->base_addr, sizeof(struct mpc52xx_fec));
  811. free_netdev(ndev);
  812. dev_set_drvdata(&op->dev, NULL);
  813. return 0;
  814. }
  815. #ifdef CONFIG_PM
  816. static int mpc52xx_fec_of_suspend(struct of_device *op, pm_message_t state)
  817. {
  818. struct net_device *dev = dev_get_drvdata(&op->dev);
  819. if (netif_running(dev))
  820. mpc52xx_fec_close(dev);
  821. return 0;
  822. }
  823. static int mpc52xx_fec_of_resume(struct of_device *op)
  824. {
  825. struct net_device *dev = dev_get_drvdata(&op->dev);
  826. mpc52xx_fec_hw_init(dev);
  827. mpc52xx_fec_reset_stats(dev);
  828. if (netif_running(dev))
  829. mpc52xx_fec_open(dev);
  830. return 0;
  831. }
  832. #endif
  833. static struct of_device_id mpc52xx_fec_match[] = {
  834. { .compatible = "fsl,mpc5200b-fec", },
  835. { .compatible = "fsl,mpc5200-fec", },
  836. { .compatible = "mpc5200-fec", },
  837. { }
  838. };
  839. MODULE_DEVICE_TABLE(of, mpc52xx_fec_match);
  840. static struct of_platform_driver mpc52xx_fec_driver = {
  841. .owner = THIS_MODULE,
  842. .name = DRIVER_NAME,
  843. .match_table = mpc52xx_fec_match,
  844. .probe = mpc52xx_fec_probe,
  845. .remove = mpc52xx_fec_remove,
  846. #ifdef CONFIG_PM
  847. .suspend = mpc52xx_fec_of_suspend,
  848. .resume = mpc52xx_fec_of_resume,
  849. #endif
  850. };
  851. /* ======================================================================== */
  852. /* Module */
  853. /* ======================================================================== */
  854. static int __init
  855. mpc52xx_fec_init(void)
  856. {
  857. #ifdef CONFIG_FEC_MPC52xx_MDIO
  858. int ret;
  859. ret = of_register_platform_driver(&mpc52xx_fec_mdio_driver);
  860. if (ret) {
  861. printk(KERN_ERR DRIVER_NAME ": failed to register mdio driver\n");
  862. return ret;
  863. }
  864. #endif
  865. return of_register_platform_driver(&mpc52xx_fec_driver);
  866. }
  867. static void __exit
  868. mpc52xx_fec_exit(void)
  869. {
  870. of_unregister_platform_driver(&mpc52xx_fec_driver);
  871. #ifdef CONFIG_FEC_MPC52xx_MDIO
  872. of_unregister_platform_driver(&mpc52xx_fec_mdio_driver);
  873. #endif
  874. }
  875. module_init(mpc52xx_fec_init);
  876. module_exit(mpc52xx_fec_exit);
  877. MODULE_LICENSE("GPL");
  878. MODULE_AUTHOR("Dale Farnsworth");
  879. MODULE_DESCRIPTION("Ethernet driver for the Freescale MPC52xx FEC");