0d80b9d48c266ac3d83e77f98cb98f46045a8378
[safe/jmp/linux-2.6] / drivers / net / pasemi_mac.c
1 /*
2  * Copyright (C) 2006-2007 PA Semi, Inc
3  *
4  * Driver for the PA Semi PWRficient onchip 1G/10G Ethernet MACs
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 version 2 as
8  * published by the Free Software Foundation.
9  *
10  * This program is distributed in the hope that it will be useful,
11  * but WITHOUT ANY WARRANTY; without even the implied warranty of
12  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
13  * GNU General Public License for more details.
14  *
15  * You should have received a copy of the GNU General Public License
16  * along with this program; if not, write to the Free Software
17  * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307 USA
18  */
19
20 #include <linux/init.h>
21 #include <linux/module.h>
22 #include <linux/pci.h>
23 #include <linux/interrupt.h>
24 #include <linux/dmaengine.h>
25 #include <linux/delay.h>
26 #include <linux/netdevice.h>
27 #include <linux/etherdevice.h>
28 #include <asm/dma-mapping.h>
29 #include <linux/in.h>
30 #include <linux/skbuff.h>
31
32 #include <linux/ip.h>
33 #include <linux/tcp.h>
34 #include <net/checksum.h>
35
36 #include <asm/irq.h>
37
38 #include "pasemi_mac.h"
39
40
41 /* TODO list
42  *
43  * - Get rid of pci_{read,write}_config(), map registers with ioremap
44  *   for performance
45  * - PHY support
46  * - Multicast support
47  * - Large MTU support
48  * - Other performance improvements
49  */
50
51
52 /* Must be a power of two */
53 #define RX_RING_SIZE 512
54 #define TX_RING_SIZE 512
55
56 #define DEFAULT_MSG_ENABLE        \
57         (NETIF_MSG_DRV          | \
58          NETIF_MSG_PROBE        | \
59          NETIF_MSG_LINK         | \
60          NETIF_MSG_TIMER        | \
61          NETIF_MSG_IFDOWN       | \
62          NETIF_MSG_IFUP         | \
63          NETIF_MSG_RX_ERR       | \
64          NETIF_MSG_TX_ERR)
65
66 #define TX_DESC(mac, num)       ((mac)->tx->desc[(num) & (TX_RING_SIZE-1)])
67 #define TX_DESC_INFO(mac, num)  ((mac)->tx->desc_info[(num) & (TX_RING_SIZE-1)])
68 #define RX_DESC(mac, num)       ((mac)->rx->desc[(num) & (RX_RING_SIZE-1)])
69 #define RX_DESC_INFO(mac, num)  ((mac)->rx->desc_info[(num) & (RX_RING_SIZE-1)])
70 #define RX_BUFF(mac, num)       ((mac)->rx->buffers[(num) & (RX_RING_SIZE-1)])
71
72 #define BUF_SIZE 1646 /* 1500 MTU + ETH_HLEN + VLAN_HLEN + 2 64B cachelines */
73
74 MODULE_LICENSE("GPL");
75 MODULE_AUTHOR ("Olof Johansson <olof@lixom.net>");
76 MODULE_DESCRIPTION("PA Semi PWRficient Ethernet driver");
77
78 static int debug = -1;  /* -1 == use DEFAULT_MSG_ENABLE as value */
79 module_param(debug, int, 0);
80 MODULE_PARM_DESC(debug, "PA Semi MAC bitmapped debugging message enable value");
81
82 static struct pasdma_status *dma_status;
83
84 static unsigned int read_iob_reg(struct pasemi_mac *mac, unsigned int reg)
85 {
86         return in_le32(mac->iob_regs+reg);
87 }
88
89 static void write_iob_reg(struct pasemi_mac *mac, unsigned int reg,
90                           unsigned int val)
91 {
92         out_le32(mac->iob_regs+reg, val);
93 }
94
95 static unsigned int read_mac_reg(struct pasemi_mac *mac, unsigned int reg)
96 {
97         return in_le32(mac->regs+reg);
98 }
99
100 static void write_mac_reg(struct pasemi_mac *mac, unsigned int reg,
101                           unsigned int val)
102 {
103         out_le32(mac->regs+reg, val);
104 }
105
106 static unsigned int read_dma_reg(struct pasemi_mac *mac, unsigned int reg)
107 {
108         return in_le32(mac->dma_regs+reg);
109 }
110
111 static void write_dma_reg(struct pasemi_mac *mac, unsigned int reg,
112                           unsigned int val)
113 {
114         out_le32(mac->dma_regs+reg, val);
115 }
116
117 static int pasemi_get_mac_addr(struct pasemi_mac *mac)
118 {
119         struct pci_dev *pdev = mac->pdev;
120         struct device_node *dn = pci_device_to_OF_node(pdev);
121         int len;
122         const u8 *maddr;
123         u8 addr[6];
124
125         if (!dn) {
126                 dev_dbg(&pdev->dev,
127                           "No device node for mac, not configuring\n");
128                 return -ENOENT;
129         }
130
131         maddr = of_get_property(dn, "local-mac-address", &len);
132
133         if (maddr && len == 6) {
134                 memcpy(mac->mac_addr, maddr, 6);
135                 return 0;
136         }
137
138         /* Some old versions of firmware mistakenly uses mac-address
139          * (and as a string) instead of a byte array in local-mac-address.
140          */
141
142         if (maddr == NULL)
143                 maddr = of_get_property(dn, "mac-address", NULL);
144
145         if (maddr == NULL) {
146                 dev_warn(&pdev->dev,
147                          "no mac address in device tree, not configuring\n");
148                 return -ENOENT;
149         }
150
151
152         if (sscanf(maddr, "%hhx:%hhx:%hhx:%hhx:%hhx:%hhx", &addr[0],
153                    &addr[1], &addr[2], &addr[3], &addr[4], &addr[5]) != 6) {
154                 dev_warn(&pdev->dev,
155                          "can't parse mac address, not configuring\n");
156                 return -EINVAL;
157         }
158
159         memcpy(mac->mac_addr, addr, 6);
160
161         return 0;
162 }
163
164 static int pasemi_mac_setup_rx_resources(struct net_device *dev)
165 {
166         struct pasemi_mac_rxring *ring;
167         struct pasemi_mac *mac = netdev_priv(dev);
168         int chan_id = mac->dma_rxch;
169
170         ring = kzalloc(sizeof(*ring), GFP_KERNEL);
171
172         if (!ring)
173                 goto out_ring;
174
175         spin_lock_init(&ring->lock);
176
177         ring->desc_info = kzalloc(sizeof(struct pasemi_mac_buffer) *
178                                   RX_RING_SIZE, GFP_KERNEL);
179
180         if (!ring->desc_info)
181                 goto out_desc_info;
182
183         /* Allocate descriptors */
184         ring->desc = dma_alloc_coherent(&mac->dma_pdev->dev,
185                                         RX_RING_SIZE *
186                                         sizeof(struct pas_dma_xct_descr),
187                                         &ring->dma, GFP_KERNEL);
188
189         if (!ring->desc)
190                 goto out_desc;
191
192         memset(ring->desc, 0, RX_RING_SIZE * sizeof(struct pas_dma_xct_descr));
193
194         ring->buffers = dma_alloc_coherent(&mac->dma_pdev->dev,
195                                            RX_RING_SIZE * sizeof(u64),
196                                            &ring->buf_dma, GFP_KERNEL);
197         if (!ring->buffers)
198                 goto out_buffers;
199
200         memset(ring->buffers, 0, RX_RING_SIZE * sizeof(u64));
201
202         write_dma_reg(mac, PAS_DMA_RXCHAN_BASEL(chan_id), PAS_DMA_RXCHAN_BASEL_BRBL(ring->dma));
203
204         write_dma_reg(mac, PAS_DMA_RXCHAN_BASEU(chan_id),
205                            PAS_DMA_RXCHAN_BASEU_BRBH(ring->dma >> 32) |
206                            PAS_DMA_RXCHAN_BASEU_SIZ(RX_RING_SIZE >> 2));
207
208         write_dma_reg(mac, PAS_DMA_RXCHAN_CFG(chan_id),
209                            PAS_DMA_RXCHAN_CFG_HBU(2));
210
211         write_dma_reg(mac, PAS_DMA_RXINT_BASEL(mac->dma_if),
212                            PAS_DMA_RXINT_BASEL_BRBL(__pa(ring->buffers)));
213
214         write_dma_reg(mac, PAS_DMA_RXINT_BASEU(mac->dma_if),
215                            PAS_DMA_RXINT_BASEU_BRBH(__pa(ring->buffers) >> 32) |
216                            PAS_DMA_RXINT_BASEU_SIZ(RX_RING_SIZE >> 3));
217
218         write_dma_reg(mac, PAS_DMA_RXINT_CFG(mac->dma_if),
219                            PAS_DMA_RXINT_CFG_DHL(2));
220
221         ring->next_to_fill = 0;
222         ring->next_to_clean = 0;
223
224         snprintf(ring->irq_name, sizeof(ring->irq_name),
225                  "%s rx", dev->name);
226         mac->rx = ring;
227
228         return 0;
229
230 out_buffers:
231         dma_free_coherent(&mac->dma_pdev->dev,
232                           RX_RING_SIZE * sizeof(struct pas_dma_xct_descr),
233                           mac->rx->desc, mac->rx->dma);
234 out_desc:
235         kfree(ring->desc_info);
236 out_desc_info:
237         kfree(ring);
238 out_ring:
239         return -ENOMEM;
240 }
241
242
243 static int pasemi_mac_setup_tx_resources(struct net_device *dev)
244 {
245         struct pasemi_mac *mac = netdev_priv(dev);
246         u32 val;
247         int chan_id = mac->dma_txch;
248         struct pasemi_mac_txring *ring;
249
250         ring = kzalloc(sizeof(*ring), GFP_KERNEL);
251         if (!ring)
252                 goto out_ring;
253
254         spin_lock_init(&ring->lock);
255
256         ring->desc_info = kzalloc(sizeof(struct pasemi_mac_buffer) *
257                                   TX_RING_SIZE, GFP_KERNEL);
258         if (!ring->desc_info)
259                 goto out_desc_info;
260
261         /* Allocate descriptors */
262         ring->desc = dma_alloc_coherent(&mac->dma_pdev->dev,
263                                         TX_RING_SIZE *
264                                         sizeof(struct pas_dma_xct_descr),
265                                         &ring->dma, GFP_KERNEL);
266         if (!ring->desc)
267                 goto out_desc;
268
269         memset(ring->desc, 0, TX_RING_SIZE * sizeof(struct pas_dma_xct_descr));
270
271         write_dma_reg(mac, PAS_DMA_TXCHAN_BASEL(chan_id),
272                            PAS_DMA_TXCHAN_BASEL_BRBL(ring->dma));
273         val = PAS_DMA_TXCHAN_BASEU_BRBH(ring->dma >> 32);
274         val |= PAS_DMA_TXCHAN_BASEU_SIZ(TX_RING_SIZE >> 2);
275
276         write_dma_reg(mac, PAS_DMA_TXCHAN_BASEU(chan_id), val);
277
278         write_dma_reg(mac, PAS_DMA_TXCHAN_CFG(chan_id),
279                            PAS_DMA_TXCHAN_CFG_TY_IFACE |
280                            PAS_DMA_TXCHAN_CFG_TATTR(mac->dma_if) |
281                            PAS_DMA_TXCHAN_CFG_UP |
282                            PAS_DMA_TXCHAN_CFG_WT(2));
283
284         ring->next_to_use = 0;
285         ring->next_to_clean = 0;
286
287         snprintf(ring->irq_name, sizeof(ring->irq_name),
288                  "%s tx", dev->name);
289         mac->tx = ring;
290
291         return 0;
292
293 out_desc:
294         kfree(ring->desc_info);
295 out_desc_info:
296         kfree(ring);
297 out_ring:
298         return -ENOMEM;
299 }
300
301 static void pasemi_mac_free_tx_resources(struct net_device *dev)
302 {
303         struct pasemi_mac *mac = netdev_priv(dev);
304         unsigned int i;
305         struct pasemi_mac_buffer *info;
306         struct pas_dma_xct_descr *dp;
307
308         for (i = 0; i < TX_RING_SIZE; i++) {
309                 info = &TX_DESC_INFO(mac, i);
310                 dp = &TX_DESC(mac, i);
311                 if (info->dma) {
312                         if (info->skb) {
313                                 pci_unmap_single(mac->dma_pdev,
314                                                  info->dma,
315                                                  info->skb->len,
316                                                  PCI_DMA_TODEVICE);
317                                 dev_kfree_skb_any(info->skb);
318                         }
319                         info->dma = 0;
320                         info->skb = NULL;
321                         dp->mactx = 0;
322                         dp->ptr = 0;
323                 }
324         }
325
326         dma_free_coherent(&mac->dma_pdev->dev,
327                           TX_RING_SIZE * sizeof(struct pas_dma_xct_descr),
328                           mac->tx->desc, mac->tx->dma);
329
330         kfree(mac->tx->desc_info);
331         kfree(mac->tx);
332         mac->tx = NULL;
333 }
334
335 static void pasemi_mac_free_rx_resources(struct net_device *dev)
336 {
337         struct pasemi_mac *mac = netdev_priv(dev);
338         unsigned int i;
339         struct pasemi_mac_buffer *info;
340         struct pas_dma_xct_descr *dp;
341
342         for (i = 0; i < RX_RING_SIZE; i++) {
343                 info = &RX_DESC_INFO(mac, i);
344                 dp = &RX_DESC(mac, i);
345                 if (info->skb) {
346                         if (info->dma) {
347                                 pci_unmap_single(mac->dma_pdev,
348                                                  info->dma,
349                                                  info->skb->len,
350                                                  PCI_DMA_FROMDEVICE);
351                                 dev_kfree_skb_any(info->skb);
352                         }
353                         info->dma = 0;
354                         info->skb = NULL;
355                         dp->macrx = 0;
356                         dp->ptr = 0;
357                 }
358         }
359
360         dma_free_coherent(&mac->dma_pdev->dev,
361                           RX_RING_SIZE * sizeof(struct pas_dma_xct_descr),
362                           mac->rx->desc, mac->rx->dma);
363
364         dma_free_coherent(&mac->dma_pdev->dev, RX_RING_SIZE * sizeof(u64),
365                           mac->rx->buffers, mac->rx->buf_dma);
366
367         kfree(mac->rx->desc_info);
368         kfree(mac->rx);
369         mac->rx = NULL;
370 }
371
372 static void pasemi_mac_replenish_rx_ring(struct net_device *dev)
373 {
374         struct pasemi_mac *mac = netdev_priv(dev);
375         unsigned int i;
376         int start = mac->rx->next_to_fill;
377         unsigned int limit, count;
378
379         limit = (mac->rx->next_to_clean + RX_RING_SIZE -
380                  mac->rx->next_to_fill) & (RX_RING_SIZE - 1);
381
382         /* Check to see if we're doing first-time setup */
383         if (unlikely(mac->rx->next_to_clean == 0 && mac->rx->next_to_fill == 0))
384                 limit = RX_RING_SIZE;
385
386         if (limit <= 0)
387                 return;
388
389         i = start;
390         for (count = limit; count; count--) {
391                 struct pasemi_mac_buffer *info = &RX_DESC_INFO(mac, i);
392                 u64 *buff = &RX_BUFF(mac, i);
393                 struct sk_buff *skb;
394                 dma_addr_t dma;
395
396                 /* skb might still be in there for recycle on short receives */
397                 if (info->skb)
398                         skb = info->skb;
399                 else
400                         skb = dev_alloc_skb(BUF_SIZE);
401
402                 if (unlikely(!skb))
403                         break;
404
405                 dma = pci_map_single(mac->dma_pdev, skb->data, skb->len,
406                                      PCI_DMA_FROMDEVICE);
407
408                 if (unlikely(dma_mapping_error(dma))) {
409                         dev_kfree_skb_irq(info->skb);
410                         break;
411                 }
412
413                 info->skb = skb;
414                 info->dma = dma;
415                 *buff = XCT_RXB_LEN(BUF_SIZE) | XCT_RXB_ADDR(dma);
416                 i++;
417         }
418
419         wmb();
420
421         write_dma_reg(mac, PAS_DMA_RXCHAN_INCR(mac->dma_rxch), limit - count);
422         write_dma_reg(mac, PAS_DMA_RXINT_INCR(mac->dma_if), limit - count);
423
424         mac->rx->next_to_fill += limit - count;
425 }
426
427 static void pasemi_mac_restart_rx_intr(struct pasemi_mac *mac)
428 {
429         unsigned int reg, pcnt;
430         /* Re-enable packet count interrupts: finally
431          * ack the packet count interrupt we got in rx_intr.
432          */
433
434         pcnt = *mac->rx_status & PAS_STATUS_PCNT_M;
435
436         reg = PAS_IOB_DMA_RXCH_RESET_PCNT(pcnt) | PAS_IOB_DMA_RXCH_RESET_PINTC;
437
438         write_iob_reg(mac, PAS_IOB_DMA_RXCH_RESET(mac->dma_rxch), reg);
439 }
440
441 static void pasemi_mac_restart_tx_intr(struct pasemi_mac *mac)
442 {
443         unsigned int reg, pcnt;
444
445         /* Re-enable packet count interrupts */
446         pcnt = *mac->tx_status & PAS_STATUS_PCNT_M;
447
448         reg = PAS_IOB_DMA_TXCH_RESET_PCNT(pcnt) | PAS_IOB_DMA_TXCH_RESET_PINTC;
449
450         write_iob_reg(mac, PAS_IOB_DMA_TXCH_RESET(mac->dma_txch), reg);
451 }
452
453
454 static int pasemi_mac_clean_rx(struct pasemi_mac *mac, int limit)
455 {
456         unsigned int n;
457         int count;
458         struct pas_dma_xct_descr *dp;
459         struct pasemi_mac_buffer *info;
460         struct sk_buff *skb;
461         unsigned int i, len;
462         u64 macrx;
463         dma_addr_t dma;
464
465         spin_lock(&mac->rx->lock);
466
467         n = mac->rx->next_to_clean;
468
469         for (count = limit; count; count--) {
470
471                 rmb();
472
473                 dp = &RX_DESC(mac, n);
474                 macrx = dp->macrx;
475
476                 if (!(macrx & XCT_MACRX_O))
477                         break;
478
479
480                 info = NULL;
481
482                 /* We have to scan for our skb since there's no way
483                  * to back-map them from the descriptor, and if we
484                  * have several receive channels then they might not
485                  * show up in the same order as they were put on the
486                  * interface ring.
487                  */
488
489                 dma = (dp->ptr & XCT_PTR_ADDR_M);
490                 for (i = n; i < (n + RX_RING_SIZE); i++) {
491                         info = &RX_DESC_INFO(mac, i);
492                         if (info->dma == dma)
493                                 break;
494                 }
495
496                 skb = info->skb;
497                 info->dma = 0;
498
499                 pci_unmap_single(mac->dma_pdev, dma, skb->len,
500                                  PCI_DMA_FROMDEVICE);
501
502                 len = (macrx & XCT_MACRX_LLEN_M) >> XCT_MACRX_LLEN_S;
503
504                 if (len < 256) {
505                         struct sk_buff *new_skb =
506                             netdev_alloc_skb(mac->netdev, len + NET_IP_ALIGN);
507                         if (new_skb) {
508                                 skb_reserve(new_skb, NET_IP_ALIGN);
509                                 memcpy(new_skb->data, skb->data, len);
510                                 /* save the skb in buffer_info as good */
511                                 skb = new_skb;
512                         }
513                         /* else just continue with the old one */
514                 } else
515                         info->skb = NULL;
516
517                 skb_put(skb, len);
518
519                 skb->protocol = eth_type_trans(skb, mac->netdev);
520
521                 if ((macrx & XCT_MACRX_HTY_M) == XCT_MACRX_HTY_IPV4_OK) {
522                         skb->ip_summed = CHECKSUM_COMPLETE;
523                         skb->csum = (macrx & XCT_MACRX_CSUM_M) >>
524                                            XCT_MACRX_CSUM_S;
525                 } else
526                         skb->ip_summed = CHECKSUM_NONE;
527
528                 mac->stats.rx_bytes += len;
529                 mac->stats.rx_packets++;
530
531                 netif_receive_skb(skb);
532
533                 dp->ptr = 0;
534                 dp->macrx = 0;
535
536                 n++;
537         }
538
539         mac->rx->next_to_clean += limit - count;
540         pasemi_mac_replenish_rx_ring(mac->netdev);
541
542         spin_unlock(&mac->rx->lock);
543
544         return count;
545 }
546
547 static int pasemi_mac_clean_tx(struct pasemi_mac *mac)
548 {
549         int i;
550         struct pasemi_mac_buffer *info;
551         struct pas_dma_xct_descr *dp;
552         int start, count;
553         int flags;
554
555         spin_lock_irqsave(&mac->tx->lock, flags);
556
557         start = mac->tx->next_to_clean;
558         count = 0;
559
560         for (i = start; i < mac->tx->next_to_use; i++) {
561                 dp = &TX_DESC(mac, i);
562                 if (!dp || (dp->mactx & XCT_MACTX_O))
563                         break;
564
565                 count++;
566
567                 info = &TX_DESC_INFO(mac, i);
568
569                 pci_unmap_single(mac->dma_pdev, info->dma,
570                                  info->skb->len, PCI_DMA_TODEVICE);
571                 dev_kfree_skb_irq(info->skb);
572
573                 info->skb = NULL;
574                 info->dma = 0;
575                 dp->mactx = 0;
576                 dp->ptr = 0;
577         }
578         mac->tx->next_to_clean += count;
579         spin_unlock_irqrestore(&mac->tx->lock, flags);
580         netif_wake_queue(mac->netdev);
581
582         return count;
583 }
584
585
586 static irqreturn_t pasemi_mac_rx_intr(int irq, void *data)
587 {
588         struct net_device *dev = data;
589         struct pasemi_mac *mac = netdev_priv(dev);
590         unsigned int reg;
591
592         if (!(*mac->rx_status & PAS_STATUS_CAUSE_M))
593                 return IRQ_NONE;
594
595         if (*mac->rx_status & PAS_STATUS_ERROR)
596                 printk("rx_status reported error\n");
597
598         /* Don't reset packet count so it won't fire again but clear
599          * all others.
600          */
601
602         reg = 0;
603         if (*mac->rx_status & PAS_STATUS_SOFT)
604                 reg |= PAS_IOB_DMA_RXCH_RESET_SINTC;
605         if (*mac->rx_status & PAS_STATUS_ERROR)
606                 reg |= PAS_IOB_DMA_RXCH_RESET_DINTC;
607         if (*mac->rx_status & PAS_STATUS_TIMER)
608                 reg |= PAS_IOB_DMA_RXCH_RESET_TINTC;
609
610         netif_rx_schedule(dev, &mac->napi);
611
612         write_iob_reg(mac, PAS_IOB_DMA_RXCH_RESET(mac->dma_rxch), reg);
613
614         return IRQ_HANDLED;
615 }
616
617 static irqreturn_t pasemi_mac_tx_intr(int irq, void *data)
618 {
619         struct net_device *dev = data;
620         struct pasemi_mac *mac = netdev_priv(dev);
621         unsigned int reg, pcnt;
622
623         if (!(*mac->tx_status & PAS_STATUS_CAUSE_M))
624                 return IRQ_NONE;
625
626         pasemi_mac_clean_tx(mac);
627
628         pcnt = *mac->tx_status & PAS_STATUS_PCNT_M;
629
630         reg = PAS_IOB_DMA_TXCH_RESET_PCNT(pcnt) | PAS_IOB_DMA_TXCH_RESET_PINTC;
631
632         if (*mac->tx_status & PAS_STATUS_SOFT)
633                 reg |= PAS_IOB_DMA_TXCH_RESET_SINTC;
634         if (*mac->tx_status & PAS_STATUS_ERROR)
635                 reg |= PAS_IOB_DMA_TXCH_RESET_DINTC;
636
637         write_iob_reg(mac, PAS_IOB_DMA_TXCH_RESET(mac->dma_txch), reg);
638
639         return IRQ_HANDLED;
640 }
641
642 static void pasemi_adjust_link(struct net_device *dev)
643 {
644         struct pasemi_mac *mac = netdev_priv(dev);
645         int msg;
646         unsigned int flags;
647         unsigned int new_flags;
648
649         if (!mac->phydev->link) {
650                 /* If no link, MAC speed settings don't matter. Just report
651                  * link down and return.
652                  */
653                 if (mac->link && netif_msg_link(mac))
654                         printk(KERN_INFO "%s: Link is down.\n", dev->name);
655
656                 netif_carrier_off(dev);
657                 mac->link = 0;
658
659                 return;
660         } else
661                 netif_carrier_on(dev);
662
663         flags = read_mac_reg(mac, PAS_MAC_CFG_PCFG);
664         new_flags = flags & ~(PAS_MAC_CFG_PCFG_HD | PAS_MAC_CFG_PCFG_SPD_M |
665                               PAS_MAC_CFG_PCFG_TSR_M);
666
667         if (!mac->phydev->duplex)
668                 new_flags |= PAS_MAC_CFG_PCFG_HD;
669
670         switch (mac->phydev->speed) {
671         case 1000:
672                 new_flags |= PAS_MAC_CFG_PCFG_SPD_1G |
673                              PAS_MAC_CFG_PCFG_TSR_1G;
674                 break;
675         case 100:
676                 new_flags |= PAS_MAC_CFG_PCFG_SPD_100M |
677                              PAS_MAC_CFG_PCFG_TSR_100M;
678                 break;
679         case 10:
680                 new_flags |= PAS_MAC_CFG_PCFG_SPD_10M |
681                              PAS_MAC_CFG_PCFG_TSR_10M;
682                 break;
683         default:
684                 printk("Unsupported speed %d\n", mac->phydev->speed);
685         }
686
687         /* Print on link or speed/duplex change */
688         msg = mac->link != mac->phydev->link || flags != new_flags;
689
690         mac->duplex = mac->phydev->duplex;
691         mac->speed = mac->phydev->speed;
692         mac->link = mac->phydev->link;
693
694         if (new_flags != flags)
695                 write_mac_reg(mac, PAS_MAC_CFG_PCFG, new_flags);
696
697         if (msg && netif_msg_link(mac))
698                 printk(KERN_INFO "%s: Link is up at %d Mbps, %s duplex.\n",
699                        dev->name, mac->speed, mac->duplex ? "full" : "half");
700 }
701
702 static int pasemi_mac_phy_init(struct net_device *dev)
703 {
704         struct pasemi_mac *mac = netdev_priv(dev);
705         struct device_node *dn, *phy_dn;
706         struct phy_device *phydev;
707         unsigned int phy_id;
708         const phandle *ph;
709         const unsigned int *prop;
710         struct resource r;
711         int ret;
712
713         dn = pci_device_to_OF_node(mac->pdev);
714         ph = of_get_property(dn, "phy-handle", NULL);
715         if (!ph)
716                 return -ENODEV;
717         phy_dn = of_find_node_by_phandle(*ph);
718
719         prop = of_get_property(phy_dn, "reg", NULL);
720         ret = of_address_to_resource(phy_dn->parent, 0, &r);
721         if (ret)
722                 goto err;
723
724         phy_id = *prop;
725         snprintf(mac->phy_id, BUS_ID_SIZE, PHY_ID_FMT, (int)r.start, phy_id);
726
727         of_node_put(phy_dn);
728
729         mac->link = 0;
730         mac->speed = 0;
731         mac->duplex = -1;
732
733         phydev = phy_connect(dev, mac->phy_id, &pasemi_adjust_link, 0, PHY_INTERFACE_MODE_SGMII);
734
735         if (IS_ERR(phydev)) {
736                 printk(KERN_ERR "%s: Could not attach to phy\n", dev->name);
737                 return PTR_ERR(phydev);
738         }
739
740         mac->phydev = phydev;
741
742         return 0;
743
744 err:
745         of_node_put(phy_dn);
746         return -ENODEV;
747 }
748
749
750 static int pasemi_mac_open(struct net_device *dev)
751 {
752         struct pasemi_mac *mac = netdev_priv(dev);
753         int base_irq;
754         unsigned int flags;
755         int ret;
756
757         /* enable rx section */
758         write_dma_reg(mac, PAS_DMA_COM_RXCMD, PAS_DMA_COM_RXCMD_EN);
759
760         /* enable tx section */
761         write_dma_reg(mac, PAS_DMA_COM_TXCMD, PAS_DMA_COM_TXCMD_EN);
762
763         flags = PAS_MAC_CFG_TXP_FCE | PAS_MAC_CFG_TXP_FPC(3) |
764                 PAS_MAC_CFG_TXP_SL(3) | PAS_MAC_CFG_TXP_COB(0xf) |
765                 PAS_MAC_CFG_TXP_TIFT(8) | PAS_MAC_CFG_TXP_TIFG(12);
766
767         write_mac_reg(mac, PAS_MAC_CFG_TXP, flags);
768
769         flags = PAS_MAC_CFG_PCFG_S1 | PAS_MAC_CFG_PCFG_PE |
770                 PAS_MAC_CFG_PCFG_PR | PAS_MAC_CFG_PCFG_CE;
771
772         flags |= PAS_MAC_CFG_PCFG_TSR_1G | PAS_MAC_CFG_PCFG_SPD_1G;
773
774         write_iob_reg(mac, PAS_IOB_DMA_RXCH_CFG(mac->dma_rxch),
775                            PAS_IOB_DMA_RXCH_CFG_CNTTH(0));
776
777         write_iob_reg(mac, PAS_IOB_DMA_TXCH_CFG(mac->dma_txch),
778                            PAS_IOB_DMA_TXCH_CFG_CNTTH(32));
779
780         /* Clear out any residual packet count state from firmware */
781         pasemi_mac_restart_rx_intr(mac);
782         pasemi_mac_restart_tx_intr(mac);
783
784         /* 0xffffff is max value, about 16ms */
785         write_iob_reg(mac, PAS_IOB_DMA_COM_TIMEOUTCFG,
786                            PAS_IOB_DMA_COM_TIMEOUTCFG_TCNT(0xffffff));
787
788         write_mac_reg(mac, PAS_MAC_CFG_PCFG, flags);
789
790         ret = pasemi_mac_setup_rx_resources(dev);
791         if (ret)
792                 goto out_rx_resources;
793
794         ret = pasemi_mac_setup_tx_resources(dev);
795         if (ret)
796                 goto out_tx_resources;
797
798         write_mac_reg(mac, PAS_MAC_IPC_CHNL,
799                            PAS_MAC_IPC_CHNL_DCHNO(mac->dma_rxch) |
800                            PAS_MAC_IPC_CHNL_BCH(mac->dma_rxch));
801
802         /* enable rx if */
803         write_dma_reg(mac, PAS_DMA_RXINT_RCMDSTA(mac->dma_if),
804                            PAS_DMA_RXINT_RCMDSTA_EN);
805
806         /* enable rx channel */
807         write_dma_reg(mac, PAS_DMA_RXCHAN_CCMDSTA(mac->dma_rxch),
808                            PAS_DMA_RXCHAN_CCMDSTA_EN |
809                            PAS_DMA_RXCHAN_CCMDSTA_DU);
810
811         /* enable tx channel */
812         write_dma_reg(mac, PAS_DMA_TXCHAN_TCMDSTA(mac->dma_txch),
813                            PAS_DMA_TXCHAN_TCMDSTA_EN);
814
815         pasemi_mac_replenish_rx_ring(dev);
816
817         ret = pasemi_mac_phy_init(dev);
818         /* Some configs don't have PHYs (XAUI etc), so don't complain about
819          * failed init due to -ENODEV.
820          */
821         if (ret && ret != -ENODEV)
822                 dev_warn(&mac->pdev->dev, "phy init failed: %d\n", ret);
823
824         netif_start_queue(dev);
825         napi_enable(&mac->napi);
826
827         /* Interrupts are a bit different for our DMA controller: While
828          * it's got one a regular PCI device header, the interrupt there
829          * is really the base of the range it's using. Each tx and rx
830          * channel has it's own interrupt source.
831          */
832
833         base_irq = virq_to_hw(mac->dma_pdev->irq);
834
835         mac->tx_irq = irq_create_mapping(NULL, base_irq + mac->dma_txch);
836         mac->rx_irq = irq_create_mapping(NULL, base_irq + 20 + mac->dma_txch);
837
838         ret = request_irq(mac->tx_irq, &pasemi_mac_tx_intr, IRQF_DISABLED,
839                           mac->tx->irq_name, dev);
840         if (ret) {
841                 dev_err(&mac->pdev->dev, "request_irq of irq %d failed: %d\n",
842                         base_irq + mac->dma_txch, ret);
843                 goto out_tx_int;
844         }
845
846         ret = request_irq(mac->rx_irq, &pasemi_mac_rx_intr, IRQF_DISABLED,
847                           mac->rx->irq_name, dev);
848         if (ret) {
849                 dev_err(&mac->pdev->dev, "request_irq of irq %d failed: %d\n",
850                         base_irq + 20 + mac->dma_rxch, ret);
851                 goto out_rx_int;
852         }
853
854         if (mac->phydev)
855                 phy_start(mac->phydev);
856
857         return 0;
858
859 out_rx_int:
860         free_irq(mac->tx_irq, dev);
861 out_tx_int:
862         napi_disable(&mac->napi);
863         netif_stop_queue(dev);
864         pasemi_mac_free_tx_resources(dev);
865 out_tx_resources:
866         pasemi_mac_free_rx_resources(dev);
867 out_rx_resources:
868
869         return ret;
870 }
871
872 #define MAX_RETRIES 5000
873
874 static int pasemi_mac_close(struct net_device *dev)
875 {
876         struct pasemi_mac *mac = netdev_priv(dev);
877         unsigned int stat;
878         int retries;
879
880         if (mac->phydev) {
881                 phy_stop(mac->phydev);
882                 phy_disconnect(mac->phydev);
883         }
884
885         netif_stop_queue(dev);
886         napi_disable(&mac->napi);
887
888         /* Clean out any pending buffers */
889         pasemi_mac_clean_tx(mac);
890         pasemi_mac_clean_rx(mac, RX_RING_SIZE);
891
892         /* Disable interface */
893         write_dma_reg(mac, PAS_DMA_TXCHAN_TCMDSTA(mac->dma_txch), PAS_DMA_TXCHAN_TCMDSTA_ST);
894         write_dma_reg(mac, PAS_DMA_RXINT_RCMDSTA(mac->dma_if), PAS_DMA_RXINT_RCMDSTA_ST);
895         write_dma_reg(mac, PAS_DMA_RXCHAN_CCMDSTA(mac->dma_rxch), PAS_DMA_RXCHAN_CCMDSTA_ST);
896
897         for (retries = 0; retries < MAX_RETRIES; retries++) {
898                 stat = read_dma_reg(mac, PAS_DMA_TXCHAN_TCMDSTA(mac->dma_txch));
899                 if (!(stat & PAS_DMA_TXCHAN_TCMDSTA_ACT))
900                         break;
901                 cond_resched();
902         }
903
904         if (stat & PAS_DMA_TXCHAN_TCMDSTA_ACT)
905                 dev_err(&mac->dma_pdev->dev, "Failed to stop tx channel\n");
906
907         for (retries = 0; retries < MAX_RETRIES; retries++) {
908                 stat = read_dma_reg(mac, PAS_DMA_RXCHAN_CCMDSTA(mac->dma_rxch));
909                 if (!(stat & PAS_DMA_RXCHAN_CCMDSTA_ACT))
910                         break;
911                 cond_resched();
912         }
913
914         if (stat & PAS_DMA_RXCHAN_CCMDSTA_ACT)
915                 dev_err(&mac->dma_pdev->dev, "Failed to stop rx channel\n");
916
917         for (retries = 0; retries < MAX_RETRIES; retries++) {
918                 stat = read_dma_reg(mac, PAS_DMA_RXINT_RCMDSTA(mac->dma_if));
919                 if (!(stat & PAS_DMA_RXINT_RCMDSTA_ACT))
920                         break;
921                 cond_resched();
922         }
923
924         if (stat & PAS_DMA_RXINT_RCMDSTA_ACT)
925                 dev_err(&mac->dma_pdev->dev, "Failed to stop rx interface\n");
926
927         /* Then, disable the channel. This must be done separately from
928          * stopping, since you can't disable when active.
929          */
930
931         write_dma_reg(mac, PAS_DMA_TXCHAN_TCMDSTA(mac->dma_txch), 0);
932         write_dma_reg(mac, PAS_DMA_RXCHAN_CCMDSTA(mac->dma_rxch), 0);
933         write_dma_reg(mac, PAS_DMA_RXINT_RCMDSTA(mac->dma_if), 0);
934
935         free_irq(mac->tx_irq, dev);
936         free_irq(mac->rx_irq, dev);
937
938         /* Free resources */
939         pasemi_mac_free_rx_resources(dev);
940         pasemi_mac_free_tx_resources(dev);
941
942         return 0;
943 }
944
945 static int pasemi_mac_start_tx(struct sk_buff *skb, struct net_device *dev)
946 {
947         struct pasemi_mac *mac = netdev_priv(dev);
948         struct pasemi_mac_txring *txring;
949         struct pasemi_mac_buffer *info;
950         struct pas_dma_xct_descr *dp;
951         u64 dflags;
952         dma_addr_t map;
953         int flags;
954
955         dflags = XCT_MACTX_O | XCT_MACTX_ST | XCT_MACTX_SS | XCT_MACTX_CRC_PAD;
956
957         if (skb->ip_summed == CHECKSUM_PARTIAL) {
958                 const unsigned char *nh = skb_network_header(skb);
959
960                 switch (ip_hdr(skb)->protocol) {
961                 case IPPROTO_TCP:
962                         dflags |= XCT_MACTX_CSUM_TCP;
963                         dflags |= XCT_MACTX_IPH(skb_network_header_len(skb) >> 2);
964                         dflags |= XCT_MACTX_IPO(nh - skb->data);
965                         break;
966                 case IPPROTO_UDP:
967                         dflags |= XCT_MACTX_CSUM_UDP;
968                         dflags |= XCT_MACTX_IPH(skb_network_header_len(skb) >> 2);
969                         dflags |= XCT_MACTX_IPO(nh - skb->data);
970                         break;
971                 }
972         }
973
974         map = pci_map_single(mac->dma_pdev, skb->data, skb->len, PCI_DMA_TODEVICE);
975
976         if (dma_mapping_error(map))
977                 return NETDEV_TX_BUSY;
978
979         txring = mac->tx;
980
981         spin_lock_irqsave(&txring->lock, flags);
982
983         if (txring->next_to_clean - txring->next_to_use == TX_RING_SIZE) {
984                 spin_unlock_irqrestore(&txring->lock, flags);
985                 pasemi_mac_clean_tx(mac);
986                 pasemi_mac_restart_tx_intr(mac);
987                 spin_lock_irqsave(&txring->lock, flags);
988
989                 if (txring->next_to_clean - txring->next_to_use ==
990                     TX_RING_SIZE) {
991                         /* Still no room -- stop the queue and wait for tx
992                          * intr when there's room.
993                          */
994                         netif_stop_queue(dev);
995                         goto out_err;
996                 }
997         }
998
999
1000         dp = &TX_DESC(mac, txring->next_to_use);
1001         info = &TX_DESC_INFO(mac, txring->next_to_use);
1002
1003         dp->mactx = dflags | XCT_MACTX_LLEN(skb->len);
1004         dp->ptr   = XCT_PTR_LEN(skb->len) | XCT_PTR_ADDR(map);
1005         info->dma = map;
1006         info->skb = skb;
1007
1008         txring->next_to_use++;
1009         mac->stats.tx_packets++;
1010         mac->stats.tx_bytes += skb->len;
1011
1012         spin_unlock_irqrestore(&txring->lock, flags);
1013
1014         write_dma_reg(mac, PAS_DMA_TXCHAN_INCR(mac->dma_txch), 1);
1015
1016         return NETDEV_TX_OK;
1017
1018 out_err:
1019         spin_unlock_irqrestore(&txring->lock, flags);
1020         pci_unmap_single(mac->dma_pdev, map, skb->len, PCI_DMA_TODEVICE);
1021         return NETDEV_TX_BUSY;
1022 }
1023
1024 static struct net_device_stats *pasemi_mac_get_stats(struct net_device *dev)
1025 {
1026         struct pasemi_mac *mac = netdev_priv(dev);
1027
1028         return &mac->stats;
1029 }
1030
1031
1032 static void pasemi_mac_set_rx_mode(struct net_device *dev)
1033 {
1034         struct pasemi_mac *mac = netdev_priv(dev);
1035         unsigned int flags;
1036
1037         flags = read_mac_reg(mac, PAS_MAC_CFG_PCFG);
1038
1039         /* Set promiscuous */
1040         if (dev->flags & IFF_PROMISC)
1041                 flags |= PAS_MAC_CFG_PCFG_PR;
1042         else
1043                 flags &= ~PAS_MAC_CFG_PCFG_PR;
1044
1045         write_mac_reg(mac, PAS_MAC_CFG_PCFG, flags);
1046 }
1047
1048
1049 static int pasemi_mac_poll(struct napi_struct *napi, int budget)
1050 {
1051         struct pasemi_mac *mac = container_of(napi, struct pasemi_mac, napi);
1052         struct net_device *dev = mac->netdev;
1053         int pkts;
1054
1055         pkts = pasemi_mac_clean_rx(mac, budget);
1056         if (pkts < budget) {
1057                 /* all done, no more packets present */
1058                 netif_rx_complete(dev, napi);
1059
1060                 pasemi_mac_restart_rx_intr(mac);
1061         }
1062         return pkts;
1063 }
1064
1065 static void __iomem * __devinit map_onedev(struct pci_dev *p, int index)
1066 {
1067         struct device_node *dn;
1068         void __iomem *ret;
1069
1070         dn = pci_device_to_OF_node(p);
1071         if (!dn)
1072                 goto fallback;
1073
1074         ret = of_iomap(dn, index);
1075         if (!ret)
1076                 goto fallback;
1077
1078         return ret;
1079 fallback:
1080         /* This is hardcoded and ugly, but we have some firmware versions
1081          * that don't provide the register space in the device tree. Luckily
1082          * they are at well-known locations so we can just do the math here.
1083          */
1084         return ioremap(0xe0000000 + (p->devfn << 12), 0x2000);
1085 }
1086
1087 static int __devinit pasemi_mac_map_regs(struct pasemi_mac *mac)
1088 {
1089         struct resource res;
1090         struct device_node *dn;
1091         int err;
1092
1093         mac->dma_pdev = pci_get_device(PCI_VENDOR_ID_PASEMI, 0xa007, NULL);
1094         if (!mac->dma_pdev) {
1095                 dev_err(&mac->pdev->dev, "Can't find DMA Controller\n");
1096                 return -ENODEV;
1097         }
1098
1099         mac->iob_pdev = pci_get_device(PCI_VENDOR_ID_PASEMI, 0xa001, NULL);
1100         if (!mac->iob_pdev) {
1101                 dev_err(&mac->pdev->dev, "Can't find I/O Bridge\n");
1102                 return -ENODEV;
1103         }
1104
1105         mac->regs = map_onedev(mac->pdev, 0);
1106         mac->dma_regs = map_onedev(mac->dma_pdev, 0);
1107         mac->iob_regs = map_onedev(mac->iob_pdev, 0);
1108
1109         if (!mac->regs || !mac->dma_regs || !mac->iob_regs) {
1110                 dev_err(&mac->pdev->dev, "Can't map registers\n");
1111                 return -ENODEV;
1112         }
1113
1114         /* The dma status structure is located in the I/O bridge, and
1115          * is cache coherent.
1116          */
1117         if (!dma_status) {
1118                 dn = pci_device_to_OF_node(mac->iob_pdev);
1119                 if (dn)
1120                         err = of_address_to_resource(dn, 1, &res);
1121                 if (!dn || err) {
1122                         /* Fallback for old firmware */
1123                         res.start = 0xfd800000;
1124                         res.end = res.start + 0x1000;
1125                 }
1126                 dma_status = __ioremap(res.start, res.end-res.start, 0);
1127         }
1128
1129         return 0;
1130 }
1131
1132 static int __devinit
1133 pasemi_mac_probe(struct pci_dev *pdev, const struct pci_device_id *ent)
1134 {
1135         static int index = 0;
1136         struct net_device *dev;
1137         struct pasemi_mac *mac;
1138         int err;
1139
1140         err = pci_enable_device(pdev);
1141         if (err)
1142                 return err;
1143
1144         dev = alloc_etherdev(sizeof(struct pasemi_mac));
1145         if (dev == NULL) {
1146                 dev_err(&pdev->dev,
1147                         "pasemi_mac: Could not allocate ethernet device.\n");
1148                 err = -ENOMEM;
1149                 goto out_disable_device;
1150         }
1151
1152         SET_MODULE_OWNER(dev);
1153         pci_set_drvdata(pdev, dev);
1154         SET_NETDEV_DEV(dev, &pdev->dev);
1155
1156         mac = netdev_priv(dev);
1157
1158         mac->pdev = pdev;
1159         mac->netdev = dev;
1160
1161         netif_napi_add(dev, &mac->napi, pasemi_mac_poll, 64);
1162
1163         dev->features = NETIF_F_HW_CSUM;
1164
1165         /* These should come out of the device tree eventually */
1166         mac->dma_txch = index;
1167         mac->dma_rxch = index;
1168
1169         /* We probe GMAC before XAUI, but the DMA interfaces are
1170          * in XAUI, GMAC order.
1171          */
1172         if (index < 4)
1173                 mac->dma_if = index + 2;
1174         else
1175                 mac->dma_if = index - 4;
1176         index++;
1177
1178         switch (pdev->device) {
1179         case 0xa005:
1180                 mac->type = MAC_TYPE_GMAC;
1181                 break;
1182         case 0xa006:
1183                 mac->type = MAC_TYPE_XAUI;
1184                 break;
1185         default:
1186                 err = -ENODEV;
1187                 goto out;
1188         }
1189
1190         /* get mac addr from device tree */
1191         if (pasemi_get_mac_addr(mac) || !is_valid_ether_addr(mac->mac_addr)) {
1192                 err = -ENODEV;
1193                 goto out;
1194         }
1195         memcpy(dev->dev_addr, mac->mac_addr, sizeof(mac->mac_addr));
1196
1197         dev->open = pasemi_mac_open;
1198         dev->stop = pasemi_mac_close;
1199         dev->hard_start_xmit = pasemi_mac_start_tx;
1200         dev->get_stats = pasemi_mac_get_stats;
1201         dev->set_multicast_list = pasemi_mac_set_rx_mode;
1202
1203         err = pasemi_mac_map_regs(mac);
1204         if (err)
1205                 goto out;
1206
1207         mac->rx_status = &dma_status->rx_sta[mac->dma_rxch];
1208         mac->tx_status = &dma_status->tx_sta[mac->dma_txch];
1209
1210         mac->msg_enable = netif_msg_init(debug, DEFAULT_MSG_ENABLE);
1211
1212         /* Enable most messages by default */
1213         mac->msg_enable = (NETIF_MSG_IFUP << 1 ) - 1;
1214
1215         err = register_netdev(dev);
1216
1217         if (err) {
1218                 dev_err(&mac->pdev->dev, "register_netdev failed with error %d\n",
1219                         err);
1220                 goto out;
1221         } else
1222                 printk(KERN_INFO "%s: PA Semi %s: intf %d, txch %d, rxch %d, "
1223                        "hw addr %02x:%02x:%02x:%02x:%02x:%02x\n",
1224                        dev->name, mac->type == MAC_TYPE_GMAC ? "GMAC" : "XAUI",
1225                        mac->dma_if, mac->dma_txch, mac->dma_rxch,
1226                        dev->dev_addr[0], dev->dev_addr[1], dev->dev_addr[2],
1227                        dev->dev_addr[3], dev->dev_addr[4], dev->dev_addr[5]);
1228
1229         return err;
1230
1231 out:
1232         if (mac->iob_pdev)
1233                 pci_dev_put(mac->iob_pdev);
1234         if (mac->dma_pdev)
1235                 pci_dev_put(mac->dma_pdev);
1236         if (mac->dma_regs)
1237                 iounmap(mac->dma_regs);
1238         if (mac->iob_regs)
1239                 iounmap(mac->iob_regs);
1240         if (mac->regs)
1241                 iounmap(mac->regs);
1242
1243         free_netdev(dev);
1244 out_disable_device:
1245         pci_disable_device(pdev);
1246         return err;
1247
1248 }
1249
1250 static void __devexit pasemi_mac_remove(struct pci_dev *pdev)
1251 {
1252         struct net_device *netdev = pci_get_drvdata(pdev);
1253         struct pasemi_mac *mac;
1254
1255         if (!netdev)
1256                 return;
1257
1258         mac = netdev_priv(netdev);
1259
1260         unregister_netdev(netdev);
1261
1262         pci_disable_device(pdev);
1263         pci_dev_put(mac->dma_pdev);
1264         pci_dev_put(mac->iob_pdev);
1265
1266         iounmap(mac->regs);
1267         iounmap(mac->dma_regs);
1268         iounmap(mac->iob_regs);
1269
1270         pci_set_drvdata(pdev, NULL);
1271         free_netdev(netdev);
1272 }
1273
1274 static struct pci_device_id pasemi_mac_pci_tbl[] = {
1275         { PCI_DEVICE(PCI_VENDOR_ID_PASEMI, 0xa005) },
1276         { PCI_DEVICE(PCI_VENDOR_ID_PASEMI, 0xa006) },
1277         { },
1278 };
1279
1280 MODULE_DEVICE_TABLE(pci, pasemi_mac_pci_tbl);
1281
1282 static struct pci_driver pasemi_mac_driver = {
1283         .name           = "pasemi_mac",
1284         .id_table       = pasemi_mac_pci_tbl,
1285         .probe          = pasemi_mac_probe,
1286         .remove         = __devexit_p(pasemi_mac_remove),
1287 };
1288
1289 static void __exit pasemi_mac_cleanup_module(void)
1290 {
1291         pci_unregister_driver(&pasemi_mac_driver);
1292         __iounmap(dma_status);
1293         dma_status = NULL;
1294 }
1295
1296 int pasemi_mac_init_module(void)
1297 {
1298         return pci_register_driver(&pasemi_mac_driver);
1299 }
1300
1301 module_init(pasemi_mac_init_module);
1302 module_exit(pasemi_mac_cleanup_module);