2 * meth.c -- O2 Builtin 10/100 Ethernet driver
4 * Copyright (C) 2001-2003 Ilya Volynets
6 * This program is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU General Public License
8 * as published by the Free Software Foundation; either version
9 * 2 of the License, or (at your option) any later version.
11 #include <linux/delay.h>
12 #include <linux/dma-mapping.h>
13 #include <linux/init.h>
14 #include <linux/kernel.h>
15 #include <linux/module.h>
16 #include <linux/platform_device.h>
17 #include <linux/slab.h>
18 #include <linux/errno.h>
19 #include <linux/types.h>
20 #include <linux/interrupt.h>
23 #include <linux/in6.h>
24 #include <linux/device.h> /* struct device, et al */
25 #include <linux/netdevice.h> /* struct device, and other headers */
26 #include <linux/etherdevice.h> /* eth_type_trans */
27 #include <linux/ip.h> /* struct iphdr */
28 #include <linux/tcp.h> /* struct tcphdr */
29 #include <linux/skbuff.h>
30 #include <linux/mii.h> /* MII definitions */
32 #include <asm/ip32/mace.h>
33 #include <asm/ip32/ip32_ints.h>
44 #define DPRINTK(str,args...) printk(KERN_DEBUG "meth: %s: " str, __FUNCTION__ , ## args)
45 #define MFE_RX_DEBUG 2
47 #define DPRINTK(str,args...)
48 #define MFE_RX_DEBUG 0
52 static const char *meth_str="SGI O2 Fast Ethernet";
54 #define HAVE_TX_TIMEOUT
55 /* The maximum time waited (in jiffies) before assuming a Tx failed. (400ms) */
56 #define TX_TIMEOUT (400*HZ/1000)
58 #ifdef HAVE_TX_TIMEOUT
59 static int timeout = TX_TIMEOUT;
60 module_param(timeout, int, 0);
64 * This structure is private to each device. It is used to pass
65 * packets in and out, so there is place for a packet
68 /* in-memory copy of MAC Control register */
69 unsigned long mac_ctrl;
70 /* in-memory copy of DMA Control register */
71 unsigned long dma_ctrl;
72 /* address of PHY, used by mdio_* functions, initialized in mdio_probe */
73 unsigned long phy_addr;
75 dma_addr_t tx_ring_dma;
76 struct sk_buff *tx_skbs[TX_RING_ENTRIES];
77 dma_addr_t tx_skb_dmas[TX_RING_ENTRIES];
78 unsigned long tx_read, tx_write, tx_count;
80 rx_packet *rx_ring[RX_RING_ENTRIES];
81 dma_addr_t rx_ring_dmas[RX_RING_ENTRIES];
82 struct sk_buff *rx_skbs[RX_RING_ENTRIES];
83 unsigned long rx_write;
88 static void meth_tx_timeout(struct net_device *dev);
89 static irqreturn_t meth_interrupt(int irq, void *dev_id);
91 /* global, initialized in ip32-setup.c */
92 char o2meth_eaddr[8]={0,0,0,0,0,0,0,0};
94 static inline void load_eaddr(struct net_device *dev)
99 for (i = 0; i < 6; i++)
100 dev->dev_addr[i] = o2meth_eaddr[i];
101 DPRINTK("Loading MAC Address: %s\n", print_mac(mac, dev->dev_addr));
102 mace->eth.mac_addr = (*(unsigned long*)o2meth_eaddr) >> 16;
106 * Waits for BUSY status of mdio bus to clear
108 #define WAIT_FOR_PHY(___rval) \
109 while ((___rval = mace->eth.phy_data) & MDIO_BUSY) { \
112 /*read phy register, return value read */
113 static unsigned long mdio_read(struct meth_private *priv, unsigned long phyreg)
117 mace->eth.phy_regs = (priv->phy_addr << 5) | (phyreg & 0x1f);
119 mace->eth.phy_trans_go = 1;
122 return rval & MDIO_DATA_MASK;
125 static int mdio_probe(struct meth_private *priv)
128 unsigned long p2, p3;
129 /* check if phy is detected already */
130 if(priv->phy_addr>=0&&priv->phy_addr<32)
132 spin_lock(&priv->meth_lock);
135 p2=mdio_read(priv,2);
136 p3=mdio_read(priv,3);
138 switch ((p2<<12)|(p3>>4)){
140 DPRINTK("PHY is QS6612X\n");
143 DPRINTK("PHY is ICS1889\n");
146 DPRINTK("PHY is ICS1890\n");
149 DPRINTK("PHY is DP83840\n");
153 if(p2!=0xffff&&p2!=0x0000){
154 DPRINTK("PHY code: %x\n",(p2<<12)|(p3>>4));
158 spin_unlock(&priv->meth_lock);
159 if(priv->phy_addr<32) {
162 DPRINTK("Oopsie! PHY is not known!\n");
167 static void meth_check_link(struct net_device *dev)
169 struct meth_private *priv = netdev_priv(dev);
170 unsigned long mii_advertising = mdio_read(priv, 4);
171 unsigned long mii_partner = mdio_read(priv, 5);
172 unsigned long negotiated = mii_advertising & mii_partner;
173 unsigned long duplex, speed;
175 if (mii_partner == 0xffff)
178 speed = (negotiated & 0x0380) ? METH_100MBIT : 0;
179 duplex = ((negotiated & 0x0100) || (negotiated & 0x01C0) == 0x0040) ?
182 if ((priv->mac_ctrl & METH_PHY_FDX) ^ duplex) {
183 DPRINTK("Setting %s-duplex\n", duplex ? "full" : "half");
185 priv->mac_ctrl |= METH_PHY_FDX;
187 priv->mac_ctrl &= ~METH_PHY_FDX;
188 mace->eth.mac_ctrl = priv->mac_ctrl;
191 if ((priv->mac_ctrl & METH_100MBIT) ^ speed) {
192 DPRINTK("Setting %dMbs mode\n", speed ? 100 : 10);
194 priv->mac_ctrl |= METH_100MBIT;
196 priv->mac_ctrl &= ~METH_100MBIT;
197 mace->eth.mac_ctrl = priv->mac_ctrl;
202 static int meth_init_tx_ring(struct meth_private *priv)
205 priv->tx_ring = dma_alloc_coherent(NULL, TX_RING_BUFFER_SIZE,
206 &priv->tx_ring_dma, GFP_ATOMIC);
209 memset(priv->tx_ring, 0, TX_RING_BUFFER_SIZE);
210 priv->tx_count = priv->tx_read = priv->tx_write = 0;
211 mace->eth.tx_ring_base = priv->tx_ring_dma;
212 /* Now init skb save area */
213 memset(priv->tx_skbs, 0, sizeof(priv->tx_skbs));
214 memset(priv->tx_skb_dmas, 0, sizeof(priv->tx_skb_dmas));
218 static int meth_init_rx_ring(struct meth_private *priv)
222 for (i = 0; i < RX_RING_ENTRIES; i++) {
223 priv->rx_skbs[i] = alloc_skb(METH_RX_BUFF_SIZE, 0);
224 /* 8byte status vector + 3quad padding + 2byte padding,
225 * to put data on 64bit aligned boundary */
226 skb_reserve(priv->rx_skbs[i],METH_RX_HEAD);
227 priv->rx_ring[i]=(rx_packet*)(priv->rx_skbs[i]->head);
228 /* I'll need to re-sync it after each RX */
229 priv->rx_ring_dmas[i] =
230 dma_map_single(NULL, priv->rx_ring[i],
231 METH_RX_BUFF_SIZE, DMA_FROM_DEVICE);
232 mace->eth.rx_fifo = priv->rx_ring_dmas[i];
237 static void meth_free_tx_ring(struct meth_private *priv)
241 /* Remove any pending skb */
242 for (i = 0; i < TX_RING_ENTRIES; i++) {
243 if (priv->tx_skbs[i])
244 dev_kfree_skb(priv->tx_skbs[i]);
245 priv->tx_skbs[i] = NULL;
247 dma_free_coherent(NULL, TX_RING_BUFFER_SIZE, priv->tx_ring,
251 /* Presumes RX DMA engine is stopped, and RX fifo ring is reset */
252 static void meth_free_rx_ring(struct meth_private *priv)
256 for (i = 0; i < RX_RING_ENTRIES; i++) {
257 dma_unmap_single(NULL, priv->rx_ring_dmas[i],
258 METH_RX_BUFF_SIZE, DMA_FROM_DEVICE);
259 priv->rx_ring[i] = 0;
260 priv->rx_ring_dmas[i] = 0;
261 kfree_skb(priv->rx_skbs[i]);
265 int meth_reset(struct net_device *dev)
267 struct meth_private *priv = netdev_priv(dev);
270 mace->eth.mac_ctrl = SGI_MAC_RESET;
272 mace->eth.mac_ctrl = 0;
275 /* Load ethernet address */
277 /* Should load some "errata", but later */
279 /* Check for device */
280 if (mdio_probe(priv) < 0) {
281 DPRINTK("Unable to find PHY\n");
285 /* Initial mode: 10 | Half-duplex | Accept normal packets */
286 priv->mac_ctrl = METH_ACCEPT_MCAST | METH_DEFAULT_IPG;
287 if (dev->flags | IFF_PROMISC)
288 priv->mac_ctrl |= METH_PROMISC;
289 mace->eth.mac_ctrl = priv->mac_ctrl;
291 /* Autonegotiate speed and duplex mode */
292 meth_check_link(dev);
294 /* Now set dma control, but don't enable DMA, yet */
295 priv->dma_ctrl = (4 << METH_RX_OFFSET_SHIFT) |
296 (RX_RING_ENTRIES << METH_RX_DEPTH_SHIFT);
297 mace->eth.dma_ctrl = priv->dma_ctrl;
302 /*============End Helper Routines=====================*/
307 static int meth_open(struct net_device *dev)
309 struct meth_private *priv = netdev_priv(dev);
312 priv->phy_addr = -1; /* No PHY is known yet... */
314 /* Initialize the hardware */
315 ret = meth_reset(dev);
319 /* Allocate the ring buffers */
320 ret = meth_init_tx_ring(priv);
323 ret = meth_init_rx_ring(priv);
325 goto out_free_tx_ring;
327 ret = request_irq(dev->irq, meth_interrupt, 0, meth_str, dev);
329 printk(KERN_ERR "%s: Can't get irq %d\n", dev->name, dev->irq);
330 goto out_free_rx_ring;
334 priv->dma_ctrl |= METH_DMA_TX_EN | /*METH_DMA_TX_INT_EN |*/
335 METH_DMA_RX_EN | METH_DMA_RX_INT_EN;
336 mace->eth.dma_ctrl = priv->dma_ctrl;
338 DPRINTK("About to start queue\n");
339 netif_start_queue(dev);
344 meth_free_rx_ring(priv);
346 meth_free_tx_ring(priv);
351 static int meth_release(struct net_device *dev)
353 struct meth_private *priv = netdev_priv(dev);
355 DPRINTK("Stopping queue\n");
356 netif_stop_queue(dev); /* can't transmit any more */
358 priv->dma_ctrl &= ~(METH_DMA_TX_EN | METH_DMA_TX_INT_EN |
359 METH_DMA_RX_EN | METH_DMA_RX_INT_EN);
360 mace->eth.dma_ctrl = priv->dma_ctrl;
361 free_irq(dev->irq, dev);
362 meth_free_tx_ring(priv);
363 meth_free_rx_ring(priv);
369 * Receive a packet: retrieve, encapsulate and pass over to upper levels
371 static void meth_rx(struct net_device* dev, unsigned long int_status)
374 unsigned long status;
375 struct meth_private *priv = netdev_priv(dev);
376 unsigned long fifo_rptr = (int_status & METH_INT_RX_RPTR_MASK) >> 8;
378 spin_lock(&priv->meth_lock);
379 priv->dma_ctrl &= ~METH_DMA_RX_INT_EN;
380 mace->eth.dma_ctrl = priv->dma_ctrl;
381 spin_unlock(&priv->meth_lock);
383 if (int_status & METH_INT_RX_UNDERFLOW) {
384 fifo_rptr = (fifo_rptr - 1) & 0x0f;
386 while (priv->rx_write != fifo_rptr) {
387 dma_unmap_single(NULL, priv->rx_ring_dmas[priv->rx_write],
388 METH_RX_BUFF_SIZE, DMA_FROM_DEVICE);
389 status = priv->rx_ring[priv->rx_write]->status.raw;
391 if (!(status & METH_RX_ST_VALID)) {
392 DPRINTK("Not received? status=%016lx\n",status);
395 if ((!(status & METH_RX_STATUS_ERRORS)) && (status & METH_RX_ST_VALID)) {
396 int len = (status & 0xffff) - 4; /* omit CRC */
397 /* length sanity check */
398 if (len < 60 || len > 1518) {
399 printk(KERN_DEBUG "%s: bogus packet size: %ld, status=%#2lx.\n",
400 dev->name, priv->rx_write,
401 priv->rx_ring[priv->rx_write]->status.raw);
402 dev->stats.rx_errors++;
403 dev->stats.rx_length_errors++;
404 skb = priv->rx_skbs[priv->rx_write];
406 skb = alloc_skb(METH_RX_BUFF_SIZE, GFP_ATOMIC);
408 /* Ouch! No memory! Drop packet on the floor */
409 DPRINTK("No mem: dropping packet\n");
410 dev->stats.rx_dropped++;
411 skb = priv->rx_skbs[priv->rx_write];
413 struct sk_buff *skb_c = priv->rx_skbs[priv->rx_write];
414 /* 8byte status vector + 3quad padding + 2byte padding,
415 * to put data on 64bit aligned boundary */
416 skb_reserve(skb, METH_RX_HEAD);
417 /* Write metadata, and then pass to the receive level */
419 priv->rx_skbs[priv->rx_write] = skb;
420 skb_c->protocol = eth_type_trans(skb_c, dev);
421 dev->last_rx = jiffies;
422 dev->stats.rx_packets++;
423 dev->stats.rx_bytes += len;
428 dev->stats.rx_errors++;
429 skb=priv->rx_skbs[priv->rx_write];
431 printk(KERN_WARNING "meth: RX error: status=0x%016lx\n",status);
432 if(status&METH_RX_ST_RCV_CODE_VIOLATION)
433 printk(KERN_WARNING "Receive Code Violation\n");
434 if(status&METH_RX_ST_CRC_ERR)
435 printk(KERN_WARNING "CRC error\n");
436 if(status&METH_RX_ST_INV_PREAMBLE_CTX)
437 printk(KERN_WARNING "Invalid Preamble Context\n");
438 if(status&METH_RX_ST_LONG_EVT_SEEN)
439 printk(KERN_WARNING "Long Event Seen...\n");
440 if(status&METH_RX_ST_BAD_PACKET)
441 printk(KERN_WARNING "Bad Packet\n");
442 if(status&METH_RX_ST_CARRIER_EVT_SEEN)
443 printk(KERN_WARNING "Carrier Event Seen\n");
446 priv->rx_ring[priv->rx_write] = (rx_packet*)skb->head;
447 priv->rx_ring[priv->rx_write]->status.raw = 0;
448 priv->rx_ring_dmas[priv->rx_write] =
449 dma_map_single(NULL, priv->rx_ring[priv->rx_write],
450 METH_RX_BUFF_SIZE, DMA_FROM_DEVICE);
451 mace->eth.rx_fifo = priv->rx_ring_dmas[priv->rx_write];
452 ADVANCE_RX_PTR(priv->rx_write);
454 spin_lock(&priv->meth_lock);
455 /* In case there was underflow, and Rx DMA was disabled */
456 priv->dma_ctrl |= METH_DMA_RX_INT_EN | METH_DMA_RX_EN;
457 mace->eth.dma_ctrl = priv->dma_ctrl;
458 mace->eth.int_stat = METH_INT_RX_THRESHOLD;
459 spin_unlock(&priv->meth_lock);
462 static int meth_tx_full(struct net_device *dev)
464 struct meth_private *priv = netdev_priv(dev);
466 return (priv->tx_count >= TX_RING_ENTRIES - 1);
469 static void meth_tx_cleanup(struct net_device* dev, unsigned long int_status)
471 struct meth_private *priv = netdev_priv(dev);
472 unsigned long status;
474 unsigned long rptr = (int_status&TX_INFO_RPTR) >> 16;
476 spin_lock(&priv->meth_lock);
478 /* Stop DMA notification */
479 priv->dma_ctrl &= ~(METH_DMA_TX_INT_EN);
480 mace->eth.dma_ctrl = priv->dma_ctrl;
482 while (priv->tx_read != rptr) {
483 skb = priv->tx_skbs[priv->tx_read];
484 status = priv->tx_ring[priv->tx_read].header.raw;
486 if (priv->tx_read == priv->tx_write)
487 DPRINTK("Auchi! tx_read=%d,tx_write=%d,rptr=%d?\n", priv->tx_read, priv->tx_write,rptr);
489 if (status & METH_TX_ST_DONE) {
490 if (status & METH_TX_ST_SUCCESS){
491 dev->stats.tx_packets++;
492 dev->stats.tx_bytes += skb->len;
494 dev->stats.tx_errors++;
496 DPRINTK("TX error: status=%016lx <",status);
497 if(status & METH_TX_ST_SUCCESS)
499 if(status & METH_TX_ST_TOOLONG)
501 if(status & METH_TX_ST_UNDERRUN)
503 if(status & METH_TX_ST_EXCCOLL)
505 if(status & METH_TX_ST_DEFER)
507 if(status & METH_TX_ST_LATECOLL)
513 DPRINTK("RPTR points us here, but packet not done?\n");
516 dev_kfree_skb_irq(skb);
517 priv->tx_skbs[priv->tx_read] = NULL;
518 priv->tx_ring[priv->tx_read].header.raw = 0;
519 priv->tx_read = (priv->tx_read+1)&(TX_RING_ENTRIES-1);
523 /* wake up queue if it was stopped */
524 if (netif_queue_stopped(dev) && !meth_tx_full(dev)) {
525 netif_wake_queue(dev);
528 mace->eth.int_stat = METH_INT_TX_EMPTY | METH_INT_TX_PKT;
529 spin_unlock(&priv->meth_lock);
532 static void meth_error(struct net_device* dev, unsigned status)
534 struct meth_private *priv = netdev_priv(dev);
536 printk(KERN_WARNING "meth: error status: 0x%08x\n",status);
537 /* check for errors too... */
538 if (status & (METH_INT_TX_LINK_FAIL))
539 printk(KERN_WARNING "meth: link failure\n");
540 /* Should I do full reset in this case? */
541 if (status & (METH_INT_MEM_ERROR))
542 printk(KERN_WARNING "meth: memory error\n");
543 if (status & (METH_INT_TX_ABORT))
544 printk(KERN_WARNING "meth: aborted\n");
545 if (status & (METH_INT_RX_OVERFLOW))
546 printk(KERN_WARNING "meth: Rx overflow\n");
547 if (status & (METH_INT_RX_UNDERFLOW)) {
548 printk(KERN_WARNING "meth: Rx underflow\n");
549 spin_lock(&priv->meth_lock);
550 mace->eth.int_stat = METH_INT_RX_UNDERFLOW;
551 /* more underflow interrupts will be delivered,
552 * effectively throwing us into an infinite loop.
553 * Thus I stop processing Rx in this case. */
554 priv->dma_ctrl &= ~METH_DMA_RX_EN;
555 mace->eth.dma_ctrl = priv->dma_ctrl;
556 DPRINTK("Disabled meth Rx DMA temporarily\n");
557 spin_unlock(&priv->meth_lock);
559 mace->eth.int_stat = METH_INT_ERROR;
563 * The typical interrupt entry point
565 static irqreturn_t meth_interrupt(int irq, void *dev_id)
567 struct net_device *dev = (struct net_device *)dev_id;
568 struct meth_private *priv = netdev_priv(dev);
569 unsigned long status;
571 status = mace->eth.int_stat;
572 while (status & 0xff) {
573 /* First handle errors - if we get Rx underflow,
574 * Rx DMA will be disabled, and Rx handler will reenable
575 * it. I don't think it's possible to get Rx underflow,
576 * without getting Rx interrupt */
577 if (status & METH_INT_ERROR) {
578 meth_error(dev, status);
580 if (status & (METH_INT_TX_EMPTY | METH_INT_TX_PKT)) {
581 /* a transmission is over: free the skb */
582 meth_tx_cleanup(dev, status);
584 if (status & METH_INT_RX_THRESHOLD) {
585 if (!(priv->dma_ctrl & METH_DMA_RX_INT_EN))
587 /* send it to meth_rx for handling */
588 meth_rx(dev, status);
590 status = mace->eth.int_stat;
597 * Transmits packets that fit into TX descriptor (are <=120B)
599 static void meth_tx_short_prepare(struct meth_private *priv,
602 tx_packet *desc = &priv->tx_ring[priv->tx_write];
603 int len = (skb->len < ETH_ZLEN) ? ETH_ZLEN : skb->len;
605 desc->header.raw = METH_TX_CMD_INT_EN | (len-1) | ((128-len) << 16);
606 /* maybe I should set whole thing to 0 first... */
607 skb_copy_from_linear_data(skb, desc->data.dt + (120 - len), skb->len);
609 memset(desc->data.dt + 120 - len + skb->len, 0, len-skb->len);
611 #define TX_CATBUF1 BIT(25)
612 static void meth_tx_1page_prepare(struct meth_private *priv,
615 tx_packet *desc = &priv->tx_ring[priv->tx_write];
616 void *buffer_data = (void *)(((unsigned long)skb->data + 7) & ~7);
617 int unaligned_len = (int)((unsigned long)buffer_data - (unsigned long)skb->data);
618 int buffer_len = skb->len - unaligned_len;
621 desc->header.raw = METH_TX_CMD_INT_EN | TX_CATBUF1 | (skb->len - 1);
625 skb_copy_from_linear_data(skb, desc->data.dt + (120 - unaligned_len),
627 desc->header.raw |= (128 - unaligned_len) << 16;
631 catbuf = dma_map_single(NULL, buffer_data, buffer_len,
633 desc->data.cat_buf[0].form.start_addr = catbuf >> 3;
634 desc->data.cat_buf[0].form.len = buffer_len - 1;
636 #define TX_CATBUF2 BIT(26)
637 static void meth_tx_2page_prepare(struct meth_private *priv,
640 tx_packet *desc = &priv->tx_ring[priv->tx_write];
641 void *buffer1_data = (void *)(((unsigned long)skb->data + 7) & ~7);
642 void *buffer2_data = (void *)PAGE_ALIGN((unsigned long)skb->data);
643 int unaligned_len = (int)((unsigned long)buffer1_data - (unsigned long)skb->data);
644 int buffer1_len = (int)((unsigned long)buffer2_data - (unsigned long)buffer1_data);
645 int buffer2_len = skb->len - buffer1_len - unaligned_len;
646 dma_addr_t catbuf1, catbuf2;
648 desc->header.raw = METH_TX_CMD_INT_EN | TX_CATBUF1 | TX_CATBUF2| (skb->len - 1);
651 skb_copy_from_linear_data(skb, desc->data.dt + (120 - unaligned_len),
653 desc->header.raw |= (128 - unaligned_len) << 16;
657 catbuf1 = dma_map_single(NULL, buffer1_data, buffer1_len,
659 desc->data.cat_buf[0].form.start_addr = catbuf1 >> 3;
660 desc->data.cat_buf[0].form.len = buffer1_len - 1;
662 catbuf2 = dma_map_single(NULL, buffer2_data, buffer2_len,
664 desc->data.cat_buf[1].form.start_addr = catbuf2 >> 3;
665 desc->data.cat_buf[1].form.len = buffer2_len - 1;
668 static void meth_add_to_tx_ring(struct meth_private *priv, struct sk_buff *skb)
670 /* Remember the skb, so we can free it at interrupt time */
671 priv->tx_skbs[priv->tx_write] = skb;
672 if (skb->len <= 120) {
673 /* Whole packet fits into descriptor */
674 meth_tx_short_prepare(priv, skb);
675 } else if (PAGE_ALIGN((unsigned long)skb->data) !=
676 PAGE_ALIGN((unsigned long)skb->data + skb->len - 1)) {
677 /* Packet crosses page boundary */
678 meth_tx_2page_prepare(priv, skb);
680 /* Packet is in one page */
681 meth_tx_1page_prepare(priv, skb);
683 priv->tx_write = (priv->tx_write + 1) & (TX_RING_ENTRIES - 1);
684 mace->eth.tx_info = priv->tx_write;
689 * Transmit a packet (called by the kernel)
691 static int meth_tx(struct sk_buff *skb, struct net_device *dev)
693 struct meth_private *priv = netdev_priv(dev);
696 spin_lock_irqsave(&priv->meth_lock, flags);
697 /* Stop DMA notification */
698 priv->dma_ctrl &= ~(METH_DMA_TX_INT_EN);
699 mace->eth.dma_ctrl = priv->dma_ctrl;
701 meth_add_to_tx_ring(priv, skb);
702 dev->trans_start = jiffies; /* save the timestamp */
704 /* If TX ring is full, tell the upper layer to stop sending packets */
705 if (meth_tx_full(dev)) {
706 printk(KERN_DEBUG "TX full: stopping\n");
707 netif_stop_queue(dev);
710 /* Restart DMA notification */
711 priv->dma_ctrl |= METH_DMA_TX_INT_EN;
712 mace->eth.dma_ctrl = priv->dma_ctrl;
714 spin_unlock_irqrestore(&priv->meth_lock, flags);
720 * Deal with a transmit timeout.
722 static void meth_tx_timeout(struct net_device *dev)
724 struct meth_private *priv = netdev_priv(dev);
727 printk(KERN_WARNING "%s: transmit timed out\n", dev->name);
729 /* Protect against concurrent rx interrupts */
730 spin_lock_irqsave(&priv->meth_lock,flags);
732 /* Try to reset the interface. */
735 dev->stats.tx_errors++;
737 /* Clear all rings */
738 meth_free_tx_ring(priv);
739 meth_free_rx_ring(priv);
740 meth_init_tx_ring(priv);
741 meth_init_rx_ring(priv);
744 priv->dma_ctrl |= METH_DMA_TX_EN | METH_DMA_RX_EN | METH_DMA_RX_INT_EN;
745 mace->eth.dma_ctrl = priv->dma_ctrl;
747 /* Enable interrupt */
748 spin_unlock_irqrestore(&priv->meth_lock, flags);
750 dev->trans_start = jiffies;
751 netif_wake_queue(dev);
759 static int meth_ioctl(struct net_device *dev, struct ifreq *rq, int cmd)
761 /* XXX Not yet implemented */
772 * Return statistics to the caller
777 static int __init meth_probe(struct platform_device *pdev)
779 struct net_device *dev;
780 struct meth_private *priv;
783 dev = alloc_etherdev(sizeof(struct meth_private));
787 dev->open = meth_open;
788 dev->stop = meth_release;
789 dev->hard_start_xmit = meth_tx;
790 dev->do_ioctl = meth_ioctl;
791 #ifdef HAVE_TX_TIMEOUT
792 dev->tx_timeout = meth_tx_timeout;
793 dev->watchdog_timeo = timeout;
795 dev->irq = MACE_ETHERNET_IRQ;
796 dev->base_addr = (unsigned long)&mace->eth;
798 priv = netdev_priv(dev);
799 spin_lock_init(&priv->meth_lock);
800 SET_NETDEV_DEV(dev, &pdev->dev);
802 err = register_netdev(dev);
808 printk(KERN_INFO "%s: SGI MACE Ethernet rev. %d\n",
809 dev->name, (unsigned int)(mace->eth.mac_ctrl >> 29));
813 static int __exit meth_remove(struct platform_device *pdev)
815 struct net_device *dev = platform_get_drvdata(pdev);
817 unregister_netdev(dev);
819 platform_set_drvdata(pdev, NULL);
824 static struct platform_driver meth_driver = {
826 .remove = __devexit_p(meth_remove),
832 static int __init meth_init_module(void)
836 err = platform_driver_register(&meth_driver);
838 printk(KERN_ERR "Driver registration failed\n");
843 static void __exit meth_exit_module(void)
845 platform_driver_unregister(&meth_driver);
848 module_init(meth_init_module);
849 module_exit(meth_exit_module);
851 MODULE_AUTHOR("Ilya Volynets <ilya@theIlya.com>");
852 MODULE_DESCRIPTION("SGI O2 Builtin Fast Ethernet driver");
853 MODULE_LICENSE("GPL");