be2net: Add MCC queue mechanism for BE cmds
[safe/jmp/linux-2.6] / drivers / net / benet / be_main.c
1 /*
2  * Copyright (C) 2005 - 2009 ServerEngines
3  * All rights reserved.
4  *
5  * This program is free software; you can redistribute it and/or
6  * modify it under the terms of the GNU General Public License version 2
7  * as published by the Free Software Foundation.  The full GNU General
8  * Public License is included in this distribution in the file called COPYING.
9  *
10  * Contact Information:
11  * linux-drivers@serverengines.com
12  *
13  * ServerEngines
14  * 209 N. Fair Oaks Ave
15  * Sunnyvale, CA 94085
16  */
17
18 #include "be.h"
19 #include <asm/div64.h>
20
21 MODULE_VERSION(DRV_VER);
22 MODULE_DEVICE_TABLE(pci, be_dev_ids);
23 MODULE_DESCRIPTION(DRV_DESC " " DRV_VER);
24 MODULE_AUTHOR("ServerEngines Corporation");
25 MODULE_LICENSE("GPL");
26
27 static unsigned int rx_frag_size = 2048;
28 module_param(rx_frag_size, uint, S_IRUGO);
29 MODULE_PARM_DESC(rx_frag_size, "Size of a fragment that holds rcvd data.");
30
31 static DEFINE_PCI_DEVICE_TABLE(be_dev_ids) = {
32         { PCI_DEVICE(BE_VENDOR_ID, BE_DEVICE_ID1) },
33         { PCI_DEVICE(BE_VENDOR_ID, OC_DEVICE_ID1) },
34         { PCI_DEVICE(BE_VENDOR_ID, OC_DEVICE_ID2) },
35         { 0 }
36 };
37 MODULE_DEVICE_TABLE(pci, be_dev_ids);
38
39 static void be_queue_free(struct be_adapter *adapter, struct be_queue_info *q)
40 {
41         struct be_dma_mem *mem = &q->dma_mem;
42         if (mem->va)
43                 pci_free_consistent(adapter->pdev, mem->size,
44                         mem->va, mem->dma);
45 }
46
47 static int be_queue_alloc(struct be_adapter *adapter, struct be_queue_info *q,
48                 u16 len, u16 entry_size)
49 {
50         struct be_dma_mem *mem = &q->dma_mem;
51
52         memset(q, 0, sizeof(*q));
53         q->len = len;
54         q->entry_size = entry_size;
55         mem->size = len * entry_size;
56         mem->va = pci_alloc_consistent(adapter->pdev, mem->size, &mem->dma);
57         if (!mem->va)
58                 return -1;
59         memset(mem->va, 0, mem->size);
60         return 0;
61 }
62
63 static void be_intr_set(struct be_ctrl_info *ctrl, bool enable)
64 {
65         u8 __iomem *addr = ctrl->pcicfg + PCICFG_MEMBAR_CTRL_INT_CTRL_OFFSET;
66         u32 reg = ioread32(addr);
67         u32 enabled = reg & MEMBAR_CTRL_INT_CTRL_HOSTINTR_MASK;
68         if (!enabled && enable) {
69                 reg |= MEMBAR_CTRL_INT_CTRL_HOSTINTR_MASK;
70         } else if (enabled && !enable) {
71                 reg &= ~MEMBAR_CTRL_INT_CTRL_HOSTINTR_MASK;
72         } else {
73                 printk(KERN_WARNING DRV_NAME
74                         ": bad value in membar_int_ctrl reg=0x%x\n", reg);
75                 return;
76         }
77         iowrite32(reg, addr);
78 }
79
80 static void be_rxq_notify(struct be_ctrl_info *ctrl, u16 qid, u16 posted)
81 {
82         u32 val = 0;
83         val |= qid & DB_RQ_RING_ID_MASK;
84         val |= posted << DB_RQ_NUM_POSTED_SHIFT;
85         iowrite32(val, ctrl->db + DB_RQ_OFFSET);
86 }
87
88 static void be_txq_notify(struct be_ctrl_info *ctrl, u16 qid, u16 posted)
89 {
90         u32 val = 0;
91         val |= qid & DB_TXULP_RING_ID_MASK;
92         val |= (posted & DB_TXULP_NUM_POSTED_MASK) << DB_TXULP_NUM_POSTED_SHIFT;
93         iowrite32(val, ctrl->db + DB_TXULP1_OFFSET);
94 }
95
96 static void be_eq_notify(struct be_ctrl_info *ctrl, u16 qid,
97                 bool arm, bool clear_int, u16 num_popped)
98 {
99         u32 val = 0;
100         val |= qid & DB_EQ_RING_ID_MASK;
101         if (arm)
102                 val |= 1 << DB_EQ_REARM_SHIFT;
103         if (clear_int)
104                 val |= 1 << DB_EQ_CLR_SHIFT;
105         val |= 1 << DB_EQ_EVNT_SHIFT;
106         val |= num_popped << DB_EQ_NUM_POPPED_SHIFT;
107         iowrite32(val, ctrl->db + DB_EQ_OFFSET);
108 }
109
110 void be_cq_notify(struct be_ctrl_info *ctrl, u16 qid,
111                 bool arm, u16 num_popped)
112 {
113         u32 val = 0;
114         val |= qid & DB_CQ_RING_ID_MASK;
115         if (arm)
116                 val |= 1 << DB_CQ_REARM_SHIFT;
117         val |= num_popped << DB_CQ_NUM_POPPED_SHIFT;
118         iowrite32(val, ctrl->db + DB_CQ_OFFSET);
119 }
120
121
122 static int be_mac_addr_set(struct net_device *netdev, void *p)
123 {
124         struct be_adapter *adapter = netdev_priv(netdev);
125         struct sockaddr *addr = p;
126         int status = 0;
127
128         if (netif_running(netdev)) {
129                 status = be_cmd_pmac_del(&adapter->ctrl, adapter->if_handle,
130                                 adapter->pmac_id);
131                 if (status)
132                         return status;
133
134                 status = be_cmd_pmac_add(&adapter->ctrl, (u8 *)addr->sa_data,
135                                 adapter->if_handle, &adapter->pmac_id);
136         }
137
138         if (!status)
139                 memcpy(netdev->dev_addr, addr->sa_data, netdev->addr_len);
140
141         return status;
142 }
143
144 static void netdev_stats_update(struct be_adapter *adapter)
145 {
146         struct be_hw_stats *hw_stats = hw_stats_from_cmd(adapter->stats.cmd.va);
147         struct be_rxf_stats *rxf_stats = &hw_stats->rxf;
148         struct be_port_rxf_stats *port_stats =
149                         &rxf_stats->port[adapter->port_num];
150         struct net_device_stats *dev_stats = &adapter->stats.net_stats;
151         struct be_erx_stats *erx_stats = &hw_stats->erx;
152
153         dev_stats->rx_packets = port_stats->rx_total_frames;
154         dev_stats->tx_packets = port_stats->tx_unicastframes +
155                 port_stats->tx_multicastframes + port_stats->tx_broadcastframes;
156         dev_stats->rx_bytes = (u64) port_stats->rx_bytes_msd << 32 |
157                                 (u64) port_stats->rx_bytes_lsd;
158         dev_stats->tx_bytes = (u64) port_stats->tx_bytes_msd << 32 |
159                                 (u64) port_stats->tx_bytes_lsd;
160
161         /* bad pkts received */
162         dev_stats->rx_errors = port_stats->rx_crc_errors +
163                 port_stats->rx_alignment_symbol_errors +
164                 port_stats->rx_in_range_errors +
165                 port_stats->rx_out_range_errors +
166                 port_stats->rx_frame_too_long +
167                 port_stats->rx_dropped_too_small +
168                 port_stats->rx_dropped_too_short +
169                 port_stats->rx_dropped_header_too_small +
170                 port_stats->rx_dropped_tcp_length +
171                 port_stats->rx_dropped_runt +
172                 port_stats->rx_tcp_checksum_errs +
173                 port_stats->rx_ip_checksum_errs +
174                 port_stats->rx_udp_checksum_errs;
175
176         /*  no space in linux buffers: best possible approximation */
177         dev_stats->rx_dropped = erx_stats->rx_drops_no_fragments[0];
178
179         /* detailed rx errors */
180         dev_stats->rx_length_errors = port_stats->rx_in_range_errors +
181                 port_stats->rx_out_range_errors +
182                 port_stats->rx_frame_too_long;
183
184         /* receive ring buffer overflow */
185         dev_stats->rx_over_errors = 0;
186
187         dev_stats->rx_crc_errors = port_stats->rx_crc_errors;
188
189         /* frame alignment errors */
190         dev_stats->rx_frame_errors = port_stats->rx_alignment_symbol_errors;
191
192         /* receiver fifo overrun */
193         /* drops_no_pbuf is no per i/f, it's per BE card */
194         dev_stats->rx_fifo_errors = port_stats->rx_fifo_overflow +
195                                         port_stats->rx_input_fifo_overflow +
196                                         rxf_stats->rx_drops_no_pbuf;
197         /* receiver missed packetd */
198         dev_stats->rx_missed_errors = 0;
199
200         /*  packet transmit problems */
201         dev_stats->tx_errors = 0;
202
203         /* no space available in linux */
204         dev_stats->tx_dropped = 0;
205
206         dev_stats->multicast = port_stats->tx_multicastframes;
207         dev_stats->collisions = 0;
208
209         /* detailed tx_errors */
210         dev_stats->tx_aborted_errors = 0;
211         dev_stats->tx_carrier_errors = 0;
212         dev_stats->tx_fifo_errors = 0;
213         dev_stats->tx_heartbeat_errors = 0;
214         dev_stats->tx_window_errors = 0;
215 }
216
217 static void be_link_status_update(struct be_adapter *adapter)
218 {
219         struct be_link_info *prev = &adapter->link;
220         struct be_link_info now = { 0 };
221         struct net_device *netdev = adapter->netdev;
222
223         be_cmd_link_status_query(&adapter->ctrl, &now);
224
225         /* If link came up or went down */
226         if (now.speed != prev->speed && (now.speed == PHY_LINK_SPEED_ZERO ||
227                         prev->speed == PHY_LINK_SPEED_ZERO)) {
228                 if (now.speed == PHY_LINK_SPEED_ZERO) {
229                         netif_stop_queue(netdev);
230                         netif_carrier_off(netdev);
231                         printk(KERN_INFO "%s: Link down\n", netdev->name);
232                 } else {
233                         netif_start_queue(netdev);
234                         netif_carrier_on(netdev);
235                         printk(KERN_INFO "%s: Link up\n", netdev->name);
236                 }
237         }
238         *prev = now;
239 }
240
241 /* Update the EQ delay n BE based on the RX frags consumed / sec */
242 static void be_rx_eqd_update(struct be_adapter *adapter)
243 {
244         struct be_ctrl_info *ctrl = &adapter->ctrl;
245         struct be_eq_obj *rx_eq = &adapter->rx_eq;
246         struct be_drvr_stats *stats = &adapter->stats.drvr_stats;
247         ulong now = jiffies;
248         u32 eqd;
249
250         if (!rx_eq->enable_aic)
251                 return;
252
253         /* Wrapped around */
254         if (time_before(now, stats->rx_fps_jiffies)) {
255                 stats->rx_fps_jiffies = now;
256                 return;
257         }
258
259         /* Update once a second */
260         if ((now - stats->rx_fps_jiffies) < HZ)
261                 return;
262
263         stats->be_rx_fps = (stats->be_rx_frags - stats->be_prev_rx_frags) /
264                         ((now - stats->rx_fps_jiffies) / HZ);
265
266         stats->rx_fps_jiffies = now;
267         stats->be_prev_rx_frags = stats->be_rx_frags;
268         eqd = stats->be_rx_fps / 110000;
269         eqd = eqd << 3;
270         if (eqd > rx_eq->max_eqd)
271                 eqd = rx_eq->max_eqd;
272         if (eqd < rx_eq->min_eqd)
273                 eqd = rx_eq->min_eqd;
274         if (eqd < 10)
275                 eqd = 0;
276         if (eqd != rx_eq->cur_eqd)
277                 be_cmd_modify_eqd(ctrl, rx_eq->q.id, eqd);
278
279         rx_eq->cur_eqd = eqd;
280 }
281
282 static struct net_device_stats *be_get_stats(struct net_device *dev)
283 {
284         struct be_adapter *adapter = netdev_priv(dev);
285
286         return &adapter->stats.net_stats;
287 }
288
289 static u32 be_calc_rate(u64 bytes, unsigned long ticks)
290 {
291         u64 rate = bytes;
292
293         do_div(rate, ticks / HZ);
294         rate <<= 3;                     /* bytes/sec -> bits/sec */
295         do_div(rate, 1000000ul);        /* MB/Sec */
296
297         return rate;
298 }
299
300 static void be_tx_rate_update(struct be_adapter *adapter)
301 {
302         struct be_drvr_stats *stats = drvr_stats(adapter);
303         ulong now = jiffies;
304
305         /* Wrapped around? */
306         if (time_before(now, stats->be_tx_jiffies)) {
307                 stats->be_tx_jiffies = now;
308                 return;
309         }
310
311         /* Update tx rate once in two seconds */
312         if ((now - stats->be_tx_jiffies) > 2 * HZ) {
313                 stats->be_tx_rate = be_calc_rate(stats->be_tx_bytes
314                                                   - stats->be_tx_bytes_prev,
315                                                  now - stats->be_tx_jiffies);
316                 stats->be_tx_jiffies = now;
317                 stats->be_tx_bytes_prev = stats->be_tx_bytes;
318         }
319 }
320
321 static void be_tx_stats_update(struct be_adapter *adapter,
322                         u32 wrb_cnt, u32 copied, bool stopped)
323 {
324         struct be_drvr_stats *stats = drvr_stats(adapter);
325         stats->be_tx_reqs++;
326         stats->be_tx_wrbs += wrb_cnt;
327         stats->be_tx_bytes += copied;
328         if (stopped)
329                 stats->be_tx_stops++;
330 }
331
332 /* Determine number of WRB entries needed to xmit data in an skb */
333 static u32 wrb_cnt_for_skb(struct sk_buff *skb, bool *dummy)
334 {
335         int cnt = (skb->len > skb->data_len);
336
337         cnt += skb_shinfo(skb)->nr_frags;
338
339         /* to account for hdr wrb */
340         cnt++;
341         if (cnt & 1) {
342                 /* add a dummy to make it an even num */
343                 cnt++;
344                 *dummy = true;
345         } else
346                 *dummy = false;
347         BUG_ON(cnt > BE_MAX_TX_FRAG_COUNT);
348         return cnt;
349 }
350
351 static inline void wrb_fill(struct be_eth_wrb *wrb, u64 addr, int len)
352 {
353         wrb->frag_pa_hi = upper_32_bits(addr);
354         wrb->frag_pa_lo = addr & 0xFFFFFFFF;
355         wrb->frag_len = len & ETH_WRB_FRAG_LEN_MASK;
356 }
357
358 static void wrb_fill_hdr(struct be_eth_hdr_wrb *hdr, struct sk_buff *skb,
359                 bool vlan, u32 wrb_cnt, u32 len)
360 {
361         memset(hdr, 0, sizeof(*hdr));
362
363         AMAP_SET_BITS(struct amap_eth_hdr_wrb, crc, hdr, 1);
364
365         if (skb_shinfo(skb)->gso_segs > 1 && skb_shinfo(skb)->gso_size) {
366                 AMAP_SET_BITS(struct amap_eth_hdr_wrb, lso, hdr, 1);
367                 AMAP_SET_BITS(struct amap_eth_hdr_wrb, lso_mss,
368                         hdr, skb_shinfo(skb)->gso_size);
369         } else if (skb->ip_summed == CHECKSUM_PARTIAL) {
370                 if (is_tcp_pkt(skb))
371                         AMAP_SET_BITS(struct amap_eth_hdr_wrb, tcpcs, hdr, 1);
372                 else if (is_udp_pkt(skb))
373                         AMAP_SET_BITS(struct amap_eth_hdr_wrb, udpcs, hdr, 1);
374         }
375
376         if (vlan && vlan_tx_tag_present(skb)) {
377                 AMAP_SET_BITS(struct amap_eth_hdr_wrb, vlan, hdr, 1);
378                 AMAP_SET_BITS(struct amap_eth_hdr_wrb, vlan_tag,
379                         hdr, vlan_tx_tag_get(skb));
380         }
381
382         AMAP_SET_BITS(struct amap_eth_hdr_wrb, event, hdr, 1);
383         AMAP_SET_BITS(struct amap_eth_hdr_wrb, complete, hdr, 1);
384         AMAP_SET_BITS(struct amap_eth_hdr_wrb, num_wrb, hdr, wrb_cnt);
385         AMAP_SET_BITS(struct amap_eth_hdr_wrb, len, hdr, len);
386 }
387
388
389 static int make_tx_wrbs(struct be_adapter *adapter,
390                 struct sk_buff *skb, u32 wrb_cnt, bool dummy_wrb)
391 {
392         u64 busaddr;
393         u32 i, copied = 0;
394         struct pci_dev *pdev = adapter->pdev;
395         struct sk_buff *first_skb = skb;
396         struct be_queue_info *txq = &adapter->tx_obj.q;
397         struct be_eth_wrb *wrb;
398         struct be_eth_hdr_wrb *hdr;
399
400         atomic_add(wrb_cnt, &txq->used);
401         hdr = queue_head_node(txq);
402         queue_head_inc(txq);
403
404         if (skb->len > skb->data_len) {
405                 int len = skb->len - skb->data_len;
406                 busaddr = pci_map_single(pdev, skb->data, len,
407                                          PCI_DMA_TODEVICE);
408                 wrb = queue_head_node(txq);
409                 wrb_fill(wrb, busaddr, len);
410                 be_dws_cpu_to_le(wrb, sizeof(*wrb));
411                 queue_head_inc(txq);
412                 copied += len;
413         }
414
415         for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) {
416                 struct skb_frag_struct *frag =
417                         &skb_shinfo(skb)->frags[i];
418                 busaddr = pci_map_page(pdev, frag->page,
419                                        frag->page_offset,
420                                        frag->size, PCI_DMA_TODEVICE);
421                 wrb = queue_head_node(txq);
422                 wrb_fill(wrb, busaddr, frag->size);
423                 be_dws_cpu_to_le(wrb, sizeof(*wrb));
424                 queue_head_inc(txq);
425                 copied += frag->size;
426         }
427
428         if (dummy_wrb) {
429                 wrb = queue_head_node(txq);
430                 wrb_fill(wrb, 0, 0);
431                 be_dws_cpu_to_le(wrb, sizeof(*wrb));
432                 queue_head_inc(txq);
433         }
434
435         wrb_fill_hdr(hdr, first_skb, adapter->vlan_grp ? true : false,
436                 wrb_cnt, copied);
437         be_dws_cpu_to_le(hdr, sizeof(*hdr));
438
439         return copied;
440 }
441
442 static int be_xmit(struct sk_buff *skb, struct net_device *netdev)
443 {
444         struct be_adapter *adapter = netdev_priv(netdev);
445         struct be_tx_obj *tx_obj = &adapter->tx_obj;
446         struct be_queue_info *txq = &tx_obj->q;
447         u32 wrb_cnt = 0, copied = 0;
448         u32 start = txq->head;
449         bool dummy_wrb, stopped = false;
450
451         wrb_cnt = wrb_cnt_for_skb(skb, &dummy_wrb);
452
453         copied = make_tx_wrbs(adapter, skb, wrb_cnt, dummy_wrb);
454
455         /* record the sent skb in the sent_skb table */
456         BUG_ON(tx_obj->sent_skb_list[start]);
457         tx_obj->sent_skb_list[start] = skb;
458
459         /* Ensure that txq has space for the next skb; Else stop the queue
460          * *BEFORE* ringing the tx doorbell, so that we serialze the
461          * tx compls of the current transmit which'll wake up the queue
462          */
463         if ((BE_MAX_TX_FRAG_COUNT + atomic_read(&txq->used)) >= txq->len) {
464                 netif_stop_queue(netdev);
465                 stopped = true;
466         }
467
468         be_txq_notify(&adapter->ctrl, txq->id, wrb_cnt);
469
470         be_tx_stats_update(adapter, wrb_cnt, copied, stopped);
471         return NETDEV_TX_OK;
472 }
473
474 static int be_change_mtu(struct net_device *netdev, int new_mtu)
475 {
476         struct be_adapter *adapter = netdev_priv(netdev);
477         if (new_mtu < BE_MIN_MTU ||
478                         new_mtu > BE_MAX_JUMBO_FRAME_SIZE) {
479                 dev_info(&adapter->pdev->dev,
480                         "MTU must be between %d and %d bytes\n",
481                         BE_MIN_MTU, BE_MAX_JUMBO_FRAME_SIZE);
482                 return -EINVAL;
483         }
484         dev_info(&adapter->pdev->dev, "MTU changed from %d to %d bytes\n",
485                         netdev->mtu, new_mtu);
486         netdev->mtu = new_mtu;
487         return 0;
488 }
489
490 /*
491  * if there are BE_NUM_VLANS_SUPPORTED or lesser number of VLANS configured,
492  * program them in BE.  If more than BE_NUM_VLANS_SUPPORTED are configured,
493  * set the BE in promiscuous VLAN mode.
494  */
495 static void be_vid_config(struct net_device *netdev)
496 {
497         struct be_adapter *adapter = netdev_priv(netdev);
498         u16 vtag[BE_NUM_VLANS_SUPPORTED];
499         u16 ntags = 0, i;
500
501         if (adapter->num_vlans <= BE_NUM_VLANS_SUPPORTED)  {
502                 /* Construct VLAN Table to give to HW */
503                 for (i = 0; i < VLAN_GROUP_ARRAY_LEN; i++) {
504                         if (adapter->vlan_tag[i]) {
505                                 vtag[ntags] = cpu_to_le16(i);
506                                 ntags++;
507                         }
508                 }
509                 be_cmd_vlan_config(&adapter->ctrl, adapter->if_handle,
510                         vtag, ntags, 1, 0);
511         } else {
512                 be_cmd_vlan_config(&adapter->ctrl, adapter->if_handle,
513                         NULL, 0, 1, 1);
514         }
515 }
516
517 static void be_vlan_register(struct net_device *netdev, struct vlan_group *grp)
518 {
519         struct be_adapter *adapter = netdev_priv(netdev);
520         struct be_eq_obj *rx_eq = &adapter->rx_eq;
521         struct be_eq_obj *tx_eq = &adapter->tx_eq;
522         struct be_ctrl_info *ctrl = &adapter->ctrl;
523
524         be_eq_notify(ctrl, rx_eq->q.id, false, false, 0);
525         be_eq_notify(ctrl, tx_eq->q.id, false, false, 0);
526         adapter->vlan_grp = grp;
527         be_eq_notify(ctrl, rx_eq->q.id, true, false, 0);
528         be_eq_notify(ctrl, tx_eq->q.id, true, false, 0);
529 }
530
531 static void be_vlan_add_vid(struct net_device *netdev, u16 vid)
532 {
533         struct be_adapter *adapter = netdev_priv(netdev);
534
535         adapter->num_vlans++;
536         adapter->vlan_tag[vid] = 1;
537
538         be_vid_config(netdev);
539 }
540
541 static void be_vlan_rem_vid(struct net_device *netdev, u16 vid)
542 {
543         struct be_adapter *adapter = netdev_priv(netdev);
544
545         adapter->num_vlans--;
546         adapter->vlan_tag[vid] = 0;
547
548         vlan_group_set_device(adapter->vlan_grp, vid, NULL);
549         be_vid_config(netdev);
550 }
551
552 static void be_set_multicast_filter(struct net_device *netdev)
553 {
554         struct be_adapter *adapter = netdev_priv(netdev);
555         struct dev_mc_list *mc_ptr;
556         u8 mac_addr[32][ETH_ALEN];
557         int i = 0;
558
559         if (netdev->flags & IFF_ALLMULTI) {
560                 /* set BE in Multicast promiscuous */
561                 be_cmd_mcast_mac_set(&adapter->ctrl,
562                                         adapter->if_handle, NULL, 0, true);
563                 return;
564         }
565
566         for (mc_ptr = netdev->mc_list; mc_ptr; mc_ptr = mc_ptr->next) {
567                 memcpy(&mac_addr[i][0], mc_ptr->dmi_addr, ETH_ALEN);
568                 if (++i >= 32) {
569                         be_cmd_mcast_mac_set(&adapter->ctrl,
570                                 adapter->if_handle, &mac_addr[0][0], i, false);
571                         i = 0;
572                 }
573
574         }
575
576         if (i) {
577                 /* reset the promiscuous mode also. */
578                 be_cmd_mcast_mac_set(&adapter->ctrl,
579                         adapter->if_handle, &mac_addr[0][0], i, false);
580         }
581 }
582
583 static void be_set_multicast_list(struct net_device *netdev)
584 {
585         struct be_adapter *adapter = netdev_priv(netdev);
586
587         if (netdev->flags & IFF_PROMISC) {
588                 be_cmd_promiscuous_config(&adapter->ctrl, adapter->port_num, 1);
589         } else {
590                 be_cmd_promiscuous_config(&adapter->ctrl, adapter->port_num, 0);
591                 be_set_multicast_filter(netdev);
592         }
593 }
594
595 static void be_rx_rate_update(struct be_adapter *adapter)
596 {
597         struct be_drvr_stats *stats = drvr_stats(adapter);
598         ulong now = jiffies;
599
600         /* Wrapped around */
601         if (time_before(now, stats->be_rx_jiffies)) {
602                 stats->be_rx_jiffies = now;
603                 return;
604         }
605
606         /* Update the rate once in two seconds */
607         if ((now - stats->be_rx_jiffies) < 2 * HZ)
608                 return;
609
610         stats->be_rx_rate = be_calc_rate(stats->be_rx_bytes
611                                           - stats->be_rx_bytes_prev,
612                                          now - stats->be_rx_jiffies);
613         stats->be_rx_jiffies = now;
614         stats->be_rx_bytes_prev = stats->be_rx_bytes;
615 }
616
617 static void be_rx_stats_update(struct be_adapter *adapter,
618                 u32 pktsize, u16 numfrags)
619 {
620         struct be_drvr_stats *stats = drvr_stats(adapter);
621
622         stats->be_rx_compl++;
623         stats->be_rx_frags += numfrags;
624         stats->be_rx_bytes += pktsize;
625 }
626
627 static inline bool do_pkt_csum(struct be_eth_rx_compl *rxcp, bool cso)
628 {
629         u8 l4_cksm, ip_version, ipcksm, tcpf = 0, udpf = 0, ipv6_chk;
630
631         l4_cksm = AMAP_GET_BITS(struct amap_eth_rx_compl, l4_cksm, rxcp);
632         ipcksm = AMAP_GET_BITS(struct amap_eth_rx_compl, ipcksm, rxcp);
633         ip_version = AMAP_GET_BITS(struct amap_eth_rx_compl, ip_version, rxcp);
634         if (ip_version) {
635                 tcpf = AMAP_GET_BITS(struct amap_eth_rx_compl, tcpf, rxcp);
636                 udpf = AMAP_GET_BITS(struct amap_eth_rx_compl, udpf, rxcp);
637         }
638         ipv6_chk = (ip_version && (tcpf || udpf));
639
640         return ((l4_cksm && ipv6_chk && ipcksm) && cso) ? false : true;
641 }
642
643 static struct be_rx_page_info *
644 get_rx_page_info(struct be_adapter *adapter, u16 frag_idx)
645 {
646         struct be_rx_page_info *rx_page_info;
647         struct be_queue_info *rxq = &adapter->rx_obj.q;
648
649         rx_page_info = &adapter->rx_obj.page_info_tbl[frag_idx];
650         BUG_ON(!rx_page_info->page);
651
652         if (rx_page_info->last_page_user)
653                 pci_unmap_page(adapter->pdev, pci_unmap_addr(rx_page_info, bus),
654                         adapter->big_page_size, PCI_DMA_FROMDEVICE);
655
656         atomic_dec(&rxq->used);
657         return rx_page_info;
658 }
659
660 /* Throwaway the data in the Rx completion */
661 static void be_rx_compl_discard(struct be_adapter *adapter,
662                         struct be_eth_rx_compl *rxcp)
663 {
664         struct be_queue_info *rxq = &adapter->rx_obj.q;
665         struct be_rx_page_info *page_info;
666         u16 rxq_idx, i, num_rcvd;
667
668         rxq_idx = AMAP_GET_BITS(struct amap_eth_rx_compl, fragndx, rxcp);
669         num_rcvd = AMAP_GET_BITS(struct amap_eth_rx_compl, numfrags, rxcp);
670
671         for (i = 0; i < num_rcvd; i++) {
672                 page_info = get_rx_page_info(adapter, rxq_idx);
673                 put_page(page_info->page);
674                 memset(page_info, 0, sizeof(*page_info));
675                 index_inc(&rxq_idx, rxq->len);
676         }
677 }
678
679 /*
680  * skb_fill_rx_data forms a complete skb for an ether frame
681  * indicated by rxcp.
682  */
683 static void skb_fill_rx_data(struct be_adapter *adapter,
684                         struct sk_buff *skb, struct be_eth_rx_compl *rxcp)
685 {
686         struct be_queue_info *rxq = &adapter->rx_obj.q;
687         struct be_rx_page_info *page_info;
688         u16 rxq_idx, i, num_rcvd;
689         u32 pktsize, hdr_len, curr_frag_len;
690         u8 *start;
691
692         rxq_idx = AMAP_GET_BITS(struct amap_eth_rx_compl, fragndx, rxcp);
693         pktsize = AMAP_GET_BITS(struct amap_eth_rx_compl, pktsize, rxcp);
694         num_rcvd = AMAP_GET_BITS(struct amap_eth_rx_compl, numfrags, rxcp);
695
696         page_info = get_rx_page_info(adapter, rxq_idx);
697
698         start = page_address(page_info->page) + page_info->page_offset;
699         prefetch(start);
700
701         /* Copy data in the first descriptor of this completion */
702         curr_frag_len = min(pktsize, rx_frag_size);
703
704         /* Copy the header portion into skb_data */
705         hdr_len = min((u32)BE_HDR_LEN, curr_frag_len);
706         memcpy(skb->data, start, hdr_len);
707         skb->len = curr_frag_len;
708         if (curr_frag_len <= BE_HDR_LEN) { /* tiny packet */
709                 /* Complete packet has now been moved to data */
710                 put_page(page_info->page);
711                 skb->data_len = 0;
712                 skb->tail += curr_frag_len;
713         } else {
714                 skb_shinfo(skb)->nr_frags = 1;
715                 skb_shinfo(skb)->frags[0].page = page_info->page;
716                 skb_shinfo(skb)->frags[0].page_offset =
717                                         page_info->page_offset + hdr_len;
718                 skb_shinfo(skb)->frags[0].size = curr_frag_len - hdr_len;
719                 skb->data_len = curr_frag_len - hdr_len;
720                 skb->tail += hdr_len;
721         }
722         memset(page_info, 0, sizeof(*page_info));
723
724         if (pktsize <= rx_frag_size) {
725                 BUG_ON(num_rcvd != 1);
726                 goto done;
727         }
728
729         /* More frags present for this completion */
730         pktsize -= curr_frag_len; /* account for above copied frag */
731         for (i = 1; i < num_rcvd; i++) {
732                 index_inc(&rxq_idx, rxq->len);
733                 page_info = get_rx_page_info(adapter, rxq_idx);
734
735                 curr_frag_len = min(pktsize, rx_frag_size);
736
737                 skb_shinfo(skb)->frags[i].page = page_info->page;
738                 skb_shinfo(skb)->frags[i].page_offset = page_info->page_offset;
739                 skb_shinfo(skb)->frags[i].size = curr_frag_len;
740                 skb->len += curr_frag_len;
741                 skb->data_len += curr_frag_len;
742                 skb_shinfo(skb)->nr_frags++;
743                 pktsize -= curr_frag_len;
744
745                 memset(page_info, 0, sizeof(*page_info));
746         }
747
748 done:
749         be_rx_stats_update(adapter, pktsize, num_rcvd);
750         return;
751 }
752
753 /* Process the RX completion indicated by rxcp when LRO is disabled */
754 static void be_rx_compl_process(struct be_adapter *adapter,
755                         struct be_eth_rx_compl *rxcp)
756 {
757         struct sk_buff *skb;
758         u32 vtp, vid;
759
760         vtp = AMAP_GET_BITS(struct amap_eth_rx_compl, vtp, rxcp);
761
762         skb = netdev_alloc_skb(adapter->netdev, BE_HDR_LEN + NET_IP_ALIGN);
763         if (!skb) {
764                 if (net_ratelimit())
765                         dev_warn(&adapter->pdev->dev, "skb alloc failed\n");
766                 be_rx_compl_discard(adapter, rxcp);
767                 return;
768         }
769
770         skb_reserve(skb, NET_IP_ALIGN);
771
772         skb_fill_rx_data(adapter, skb, rxcp);
773
774         if (do_pkt_csum(rxcp, adapter->rx_csum))
775                 skb->ip_summed = CHECKSUM_NONE;
776         else
777                 skb->ip_summed = CHECKSUM_UNNECESSARY;
778
779         skb->truesize = skb->len + sizeof(struct sk_buff);
780         skb->protocol = eth_type_trans(skb, adapter->netdev);
781         skb->dev = adapter->netdev;
782
783         if (vtp) {
784                 if (!adapter->vlan_grp || adapter->num_vlans == 0) {
785                         kfree_skb(skb);
786                         return;
787                 }
788                 vid = AMAP_GET_BITS(struct amap_eth_rx_compl, vlan_tag, rxcp);
789                 vid = be16_to_cpu(vid);
790                 vlan_hwaccel_receive_skb(skb, adapter->vlan_grp, vid);
791         } else {
792                 netif_receive_skb(skb);
793         }
794
795         adapter->netdev->last_rx = jiffies;
796
797         return;
798 }
799
800 /* Process the RX completion indicated by rxcp when LRO is enabled */
801 static void be_rx_compl_process_lro(struct be_adapter *adapter,
802                         struct be_eth_rx_compl *rxcp)
803 {
804         struct be_rx_page_info *page_info;
805         struct skb_frag_struct rx_frags[BE_MAX_FRAGS_PER_FRAME];
806         struct be_queue_info *rxq = &adapter->rx_obj.q;
807         u32 num_rcvd, pkt_size, remaining, vlanf, curr_frag_len;
808         u16 i, rxq_idx = 0, vid;
809
810         num_rcvd = AMAP_GET_BITS(struct amap_eth_rx_compl, numfrags, rxcp);
811         pkt_size = AMAP_GET_BITS(struct amap_eth_rx_compl, pktsize, rxcp);
812         vlanf = AMAP_GET_BITS(struct amap_eth_rx_compl, vtp, rxcp);
813         rxq_idx = AMAP_GET_BITS(struct amap_eth_rx_compl, fragndx, rxcp);
814
815         remaining = pkt_size;
816         for (i = 0; i < num_rcvd; i++) {
817                 page_info = get_rx_page_info(adapter, rxq_idx);
818
819                 curr_frag_len = min(remaining, rx_frag_size);
820
821                 rx_frags[i].page = page_info->page;
822                 rx_frags[i].page_offset = page_info->page_offset;
823                 rx_frags[i].size = curr_frag_len;
824                 remaining -= curr_frag_len;
825
826                 index_inc(&rxq_idx, rxq->len);
827
828                 memset(page_info, 0, sizeof(*page_info));
829         }
830
831         if (likely(!vlanf)) {
832                 lro_receive_frags(&adapter->rx_obj.lro_mgr, rx_frags, pkt_size,
833                                 pkt_size, NULL, 0);
834         } else {
835                 vid = AMAP_GET_BITS(struct amap_eth_rx_compl, vlan_tag, rxcp);
836                 vid = be16_to_cpu(vid);
837
838                 if (!adapter->vlan_grp || adapter->num_vlans == 0)
839                         return;
840
841                 lro_vlan_hwaccel_receive_frags(&adapter->rx_obj.lro_mgr,
842                         rx_frags, pkt_size, pkt_size, adapter->vlan_grp,
843                         vid, NULL, 0);
844         }
845
846         be_rx_stats_update(adapter, pkt_size, num_rcvd);
847         return;
848 }
849
850 static struct be_eth_rx_compl *be_rx_compl_get(struct be_adapter *adapter)
851 {
852         struct be_eth_rx_compl *rxcp = queue_tail_node(&adapter->rx_obj.cq);
853
854         if (rxcp->dw[offsetof(struct amap_eth_rx_compl, valid) / 32] == 0)
855                 return NULL;
856
857         be_dws_le_to_cpu(rxcp, sizeof(*rxcp));
858
859         queue_tail_inc(&adapter->rx_obj.cq);
860         return rxcp;
861 }
862
863 /* To reset the valid bit, we need to reset the whole word as
864  * when walking the queue the valid entries are little-endian
865  * and invalid entries are host endian
866  */
867 static inline void be_rx_compl_reset(struct be_eth_rx_compl *rxcp)
868 {
869         rxcp->dw[offsetof(struct amap_eth_rx_compl, valid) / 32] = 0;
870 }
871
872 static inline struct page *be_alloc_pages(u32 size)
873 {
874         gfp_t alloc_flags = GFP_ATOMIC;
875         u32 order = get_order(size);
876         if (order > 0)
877                 alloc_flags |= __GFP_COMP;
878         return  alloc_pages(alloc_flags, order);
879 }
880
881 /*
882  * Allocate a page, split it to fragments of size rx_frag_size and post as
883  * receive buffers to BE
884  */
885 static void be_post_rx_frags(struct be_adapter *adapter)
886 {
887         struct be_rx_page_info *page_info_tbl = adapter->rx_obj.page_info_tbl;
888         struct be_rx_page_info *page_info = NULL;
889         struct be_queue_info *rxq = &adapter->rx_obj.q;
890         struct page *pagep = NULL;
891         struct be_eth_rx_d *rxd;
892         u64 page_dmaaddr = 0, frag_dmaaddr;
893         u32 posted, page_offset = 0;
894
895         page_info = &page_info_tbl[rxq->head];
896         for (posted = 0; posted < MAX_RX_POST && !page_info->page; posted++) {
897                 if (!pagep) {
898                         pagep = be_alloc_pages(adapter->big_page_size);
899                         if (unlikely(!pagep)) {
900                                 drvr_stats(adapter)->be_ethrx_post_fail++;
901                                 break;
902                         }
903                         page_dmaaddr = pci_map_page(adapter->pdev, pagep, 0,
904                                                 adapter->big_page_size,
905                                                 PCI_DMA_FROMDEVICE);
906                         page_info->page_offset = 0;
907                 } else {
908                         get_page(pagep);
909                         page_info->page_offset = page_offset + rx_frag_size;
910                 }
911                 page_offset = page_info->page_offset;
912                 page_info->page = pagep;
913                 pci_unmap_addr_set(page_info, bus, page_dmaaddr);
914                 frag_dmaaddr = page_dmaaddr + page_info->page_offset;
915
916                 rxd = queue_head_node(rxq);
917                 rxd->fragpa_lo = cpu_to_le32(frag_dmaaddr & 0xFFFFFFFF);
918                 rxd->fragpa_hi = cpu_to_le32(upper_32_bits(frag_dmaaddr));
919                 queue_head_inc(rxq);
920
921                 /* Any space left in the current big page for another frag? */
922                 if ((page_offset + rx_frag_size + rx_frag_size) >
923                                         adapter->big_page_size) {
924                         pagep = NULL;
925                         page_info->last_page_user = true;
926                 }
927                 page_info = &page_info_tbl[rxq->head];
928         }
929         if (pagep)
930                 page_info->last_page_user = true;
931
932         if (posted) {
933                 atomic_add(posted, &rxq->used);
934                 be_rxq_notify(&adapter->ctrl, rxq->id, posted);
935         } else if (atomic_read(&rxq->used) == 0) {
936                 /* Let be_worker replenish when memory is available */
937                 adapter->rx_post_starved = true;
938         }
939
940         return;
941 }
942
943 static struct be_eth_tx_compl *be_tx_compl_get(struct be_queue_info *tx_cq)
944 {
945         struct be_eth_tx_compl *txcp = queue_tail_node(tx_cq);
946
947         if (txcp->dw[offsetof(struct amap_eth_tx_compl, valid) / 32] == 0)
948                 return NULL;
949
950         be_dws_le_to_cpu(txcp, sizeof(*txcp));
951
952         txcp->dw[offsetof(struct amap_eth_tx_compl, valid) / 32] = 0;
953
954         queue_tail_inc(tx_cq);
955         return txcp;
956 }
957
958 static void be_tx_compl_process(struct be_adapter *adapter, u16 last_index)
959 {
960         struct be_queue_info *txq = &adapter->tx_obj.q;
961         struct be_eth_wrb *wrb;
962         struct sk_buff **sent_skbs = adapter->tx_obj.sent_skb_list;
963         struct sk_buff *sent_skb;
964         u64 busaddr;
965         u16 cur_index, num_wrbs = 0;
966
967         cur_index = txq->tail;
968         sent_skb = sent_skbs[cur_index];
969         BUG_ON(!sent_skb);
970         sent_skbs[cur_index] = NULL;
971
972         do {
973                 cur_index = txq->tail;
974                 wrb = queue_tail_node(txq);
975                 be_dws_le_to_cpu(wrb, sizeof(*wrb));
976                 busaddr = ((u64)wrb->frag_pa_hi << 32) | (u64)wrb->frag_pa_lo;
977                 if (busaddr != 0) {
978                         pci_unmap_single(adapter->pdev, busaddr,
979                                 wrb->frag_len, PCI_DMA_TODEVICE);
980                 }
981                 num_wrbs++;
982                 queue_tail_inc(txq);
983         } while (cur_index != last_index);
984
985         atomic_sub(num_wrbs, &txq->used);
986
987         kfree_skb(sent_skb);
988 }
989
990 static void be_rx_q_clean(struct be_adapter *adapter)
991 {
992         struct be_rx_page_info *page_info;
993         struct be_queue_info *rxq = &adapter->rx_obj.q;
994         struct be_queue_info *rx_cq = &adapter->rx_obj.cq;
995         struct be_eth_rx_compl *rxcp;
996         u16 tail;
997
998         /* First cleanup pending rx completions */
999         while ((rxcp = be_rx_compl_get(adapter)) != NULL) {
1000                 be_rx_compl_discard(adapter, rxcp);
1001                 be_rx_compl_reset(rxcp);
1002                 be_cq_notify(&adapter->ctrl, rx_cq->id, true, 1);
1003         }
1004
1005         /* Then free posted rx buffer that were not used */
1006         tail = (rxq->head + rxq->len - atomic_read(&rxq->used)) % rxq->len;
1007         for (; tail != rxq->head; index_inc(&tail, rxq->len)) {
1008                 page_info = get_rx_page_info(adapter, tail);
1009                 put_page(page_info->page);
1010                 memset(page_info, 0, sizeof(*page_info));
1011         }
1012         BUG_ON(atomic_read(&rxq->used));
1013 }
1014
1015 static void be_tx_q_clean(struct be_adapter *adapter)
1016 {
1017         struct sk_buff **sent_skbs = adapter->tx_obj.sent_skb_list;
1018         struct sk_buff *sent_skb;
1019         struct be_queue_info *txq = &adapter->tx_obj.q;
1020         u16 last_index;
1021         bool dummy_wrb;
1022
1023         while (atomic_read(&txq->used)) {
1024                 sent_skb = sent_skbs[txq->tail];
1025                 last_index = txq->tail;
1026                 index_adv(&last_index,
1027                         wrb_cnt_for_skb(sent_skb, &dummy_wrb) - 1, txq->len);
1028                 be_tx_compl_process(adapter, last_index);
1029         }
1030 }
1031
1032 static void be_mcc_queues_destroy(struct be_adapter *adapter)
1033 {
1034         struct be_queue_info *q;
1035         struct be_ctrl_info *ctrl = &adapter->ctrl;
1036
1037         q = &ctrl->mcc_obj.q;
1038         if (q->created)
1039                 be_cmd_q_destroy(ctrl, q, QTYPE_MCCQ);
1040         be_queue_free(adapter, q);
1041
1042         q = &ctrl->mcc_obj.cq;
1043         if (q->created)
1044                 be_cmd_q_destroy(ctrl, q, QTYPE_CQ);
1045         be_queue_free(adapter, q);
1046 }
1047
1048 /* Must be called only after TX qs are created as MCC shares TX EQ */
1049 static int be_mcc_queues_create(struct be_adapter *adapter)
1050 {
1051         struct be_queue_info *q, *cq;
1052         struct be_ctrl_info *ctrl = &adapter->ctrl;
1053
1054         /* Alloc MCC compl queue */
1055         cq = &ctrl->mcc_obj.cq;
1056         if (be_queue_alloc(adapter, cq, MCC_CQ_LEN,
1057                         sizeof(struct be_mcc_cq_entry)))
1058                 goto err;
1059
1060         /* Ask BE to create MCC compl queue; share TX's eq */
1061         if (be_cmd_cq_create(ctrl, cq, &adapter->tx_eq.q, false, true, 0))
1062                 goto mcc_cq_free;
1063
1064         /* Alloc MCC queue */
1065         q = &ctrl->mcc_obj.q;
1066         if (be_queue_alloc(adapter, q, MCC_Q_LEN, sizeof(struct be_mcc_wrb)))
1067                 goto mcc_cq_destroy;
1068
1069         /* Ask BE to create MCC queue */
1070         if (be_cmd_mccq_create(ctrl, q, cq))
1071                 goto mcc_q_free;
1072
1073         return 0;
1074
1075 mcc_q_free:
1076         be_queue_free(adapter, q);
1077 mcc_cq_destroy:
1078         be_cmd_q_destroy(ctrl, cq, QTYPE_CQ);
1079 mcc_cq_free:
1080         be_queue_free(adapter, cq);
1081 err:
1082         return -1;
1083 }
1084
1085 static void be_tx_queues_destroy(struct be_adapter *adapter)
1086 {
1087         struct be_queue_info *q;
1088
1089         q = &adapter->tx_obj.q;
1090         if (q->created) {
1091                 be_cmd_q_destroy(&adapter->ctrl, q, QTYPE_TXQ);
1092
1093                 /* No more tx completions can be rcvd now; clean up if there
1094                  * are any pending completions or pending tx requests */
1095                 be_tx_q_clean(adapter);
1096         }
1097         be_queue_free(adapter, q);
1098
1099         q = &adapter->tx_obj.cq;
1100         if (q->created)
1101                 be_cmd_q_destroy(&adapter->ctrl, q, QTYPE_CQ);
1102         be_queue_free(adapter, q);
1103
1104         q = &adapter->tx_eq.q;
1105         if (q->created)
1106                 be_cmd_q_destroy(&adapter->ctrl, q, QTYPE_EQ);
1107         be_queue_free(adapter, q);
1108 }
1109
1110 static int be_tx_queues_create(struct be_adapter *adapter)
1111 {
1112         struct be_queue_info *eq, *q, *cq;
1113
1114         adapter->tx_eq.max_eqd = 0;
1115         adapter->tx_eq.min_eqd = 0;
1116         adapter->tx_eq.cur_eqd = 96;
1117         adapter->tx_eq.enable_aic = false;
1118         /* Alloc Tx Event queue */
1119         eq = &adapter->tx_eq.q;
1120         if (be_queue_alloc(adapter, eq, EVNT_Q_LEN, sizeof(struct be_eq_entry)))
1121                 return -1;
1122
1123         /* Ask BE to create Tx Event queue */
1124         if (be_cmd_eq_create(&adapter->ctrl, eq, adapter->tx_eq.cur_eqd))
1125                 goto tx_eq_free;
1126         /* Alloc TX eth compl queue */
1127         cq = &adapter->tx_obj.cq;
1128         if (be_queue_alloc(adapter, cq, TX_CQ_LEN,
1129                         sizeof(struct be_eth_tx_compl)))
1130                 goto tx_eq_destroy;
1131
1132         /* Ask BE to create Tx eth compl queue */
1133         if (be_cmd_cq_create(&adapter->ctrl, cq, eq, false, false, 3))
1134                 goto tx_cq_free;
1135
1136         /* Alloc TX eth queue */
1137         q = &adapter->tx_obj.q;
1138         if (be_queue_alloc(adapter, q, TX_Q_LEN, sizeof(struct be_eth_wrb)))
1139                 goto tx_cq_destroy;
1140
1141         /* Ask BE to create Tx eth queue */
1142         if (be_cmd_txq_create(&adapter->ctrl, q, cq))
1143                 goto tx_q_free;
1144         return 0;
1145
1146 tx_q_free:
1147         be_queue_free(adapter, q);
1148 tx_cq_destroy:
1149         be_cmd_q_destroy(&adapter->ctrl, cq, QTYPE_CQ);
1150 tx_cq_free:
1151         be_queue_free(adapter, cq);
1152 tx_eq_destroy:
1153         be_cmd_q_destroy(&adapter->ctrl, eq, QTYPE_EQ);
1154 tx_eq_free:
1155         be_queue_free(adapter, eq);
1156         return -1;
1157 }
1158
1159 static void be_rx_queues_destroy(struct be_adapter *adapter)
1160 {
1161         struct be_queue_info *q;
1162
1163         q = &adapter->rx_obj.q;
1164         if (q->created) {
1165                 be_cmd_q_destroy(&adapter->ctrl, q, QTYPE_RXQ);
1166                 be_rx_q_clean(adapter);
1167         }
1168         be_queue_free(adapter, q);
1169
1170         q = &adapter->rx_obj.cq;
1171         if (q->created)
1172                 be_cmd_q_destroy(&adapter->ctrl, q, QTYPE_CQ);
1173         be_queue_free(adapter, q);
1174
1175         q = &adapter->rx_eq.q;
1176         if (q->created)
1177                 be_cmd_q_destroy(&adapter->ctrl, q, QTYPE_EQ);
1178         be_queue_free(adapter, q);
1179 }
1180
1181 static int be_rx_queues_create(struct be_adapter *adapter)
1182 {
1183         struct be_queue_info *eq, *q, *cq;
1184         int rc;
1185
1186         adapter->max_rx_coal = BE_MAX_FRAGS_PER_FRAME;
1187         adapter->big_page_size = (1 << get_order(rx_frag_size)) * PAGE_SIZE;
1188         adapter->rx_eq.max_eqd = BE_MAX_EQD;
1189         adapter->rx_eq.min_eqd = 0;
1190         adapter->rx_eq.cur_eqd = 0;
1191         adapter->rx_eq.enable_aic = true;
1192
1193         /* Alloc Rx Event queue */
1194         eq = &adapter->rx_eq.q;
1195         rc = be_queue_alloc(adapter, eq, EVNT_Q_LEN,
1196                                 sizeof(struct be_eq_entry));
1197         if (rc)
1198                 return rc;
1199
1200         /* Ask BE to create Rx Event queue */
1201         rc = be_cmd_eq_create(&adapter->ctrl, eq, adapter->rx_eq.cur_eqd);
1202         if (rc)
1203                 goto rx_eq_free;
1204
1205         /* Alloc RX eth compl queue */
1206         cq = &adapter->rx_obj.cq;
1207         rc = be_queue_alloc(adapter, cq, RX_CQ_LEN,
1208                         sizeof(struct be_eth_rx_compl));
1209         if (rc)
1210                 goto rx_eq_destroy;
1211
1212         /* Ask BE to create Rx eth compl queue */
1213         rc = be_cmd_cq_create(&adapter->ctrl, cq, eq, false, false, 3);
1214         if (rc)
1215                 goto rx_cq_free;
1216
1217         /* Alloc RX eth queue */
1218         q = &adapter->rx_obj.q;
1219         rc = be_queue_alloc(adapter, q, RX_Q_LEN, sizeof(struct be_eth_rx_d));
1220         if (rc)
1221                 goto rx_cq_destroy;
1222
1223         /* Ask BE to create Rx eth queue */
1224         rc = be_cmd_rxq_create(&adapter->ctrl, q, cq->id, rx_frag_size,
1225                 BE_MAX_JUMBO_FRAME_SIZE, adapter->if_handle, false);
1226         if (rc)
1227                 goto rx_q_free;
1228
1229         return 0;
1230 rx_q_free:
1231         be_queue_free(adapter, q);
1232 rx_cq_destroy:
1233         be_cmd_q_destroy(&adapter->ctrl, cq, QTYPE_CQ);
1234 rx_cq_free:
1235         be_queue_free(adapter, cq);
1236 rx_eq_destroy:
1237         be_cmd_q_destroy(&adapter->ctrl, eq, QTYPE_EQ);
1238 rx_eq_free:
1239         be_queue_free(adapter, eq);
1240         return rc;
1241 }
1242 static bool event_get(struct be_eq_obj *eq_obj, u16 *rid)
1243 {
1244         struct be_eq_entry *entry = queue_tail_node(&eq_obj->q);
1245         u32 evt = entry->evt;
1246
1247         if (!evt)
1248                 return false;
1249
1250         evt = le32_to_cpu(evt);
1251         *rid = (evt >> EQ_ENTRY_RES_ID_SHIFT) & EQ_ENTRY_RES_ID_MASK;
1252         entry->evt = 0;
1253         queue_tail_inc(&eq_obj->q);
1254         return true;
1255 }
1256
1257 static int event_handle(struct be_ctrl_info *ctrl,
1258                         struct be_eq_obj *eq_obj)
1259 {
1260         u16 rid = 0, num = 0;
1261
1262         while (event_get(eq_obj, &rid))
1263                 num++;
1264
1265         /* We can see an interrupt and no event */
1266         be_eq_notify(ctrl, eq_obj->q.id, true, true, num);
1267         if (num)
1268                 napi_schedule(&eq_obj->napi);
1269
1270         return num;
1271 }
1272
1273 static irqreturn_t be_intx(int irq, void *dev)
1274 {
1275         struct be_adapter *adapter = dev;
1276         struct be_ctrl_info *ctrl = &adapter->ctrl;
1277         int rx, tx;
1278
1279         tx = event_handle(ctrl, &adapter->tx_eq);
1280         rx = event_handle(ctrl, &adapter->rx_eq);
1281
1282         if (rx || tx)
1283                 return IRQ_HANDLED;
1284         else
1285                 return IRQ_NONE;
1286 }
1287
1288 static irqreturn_t be_msix_rx(int irq, void *dev)
1289 {
1290         struct be_adapter *adapter = dev;
1291
1292         event_handle(&adapter->ctrl, &adapter->rx_eq);
1293
1294         return IRQ_HANDLED;
1295 }
1296
1297 static irqreturn_t be_msix_tx_mcc(int irq, void *dev)
1298 {
1299         struct be_adapter *adapter = dev;
1300
1301         event_handle(&adapter->ctrl, &adapter->tx_eq);
1302
1303         return IRQ_HANDLED;
1304 }
1305
1306 static inline bool do_lro(struct be_adapter *adapter,
1307                         struct be_eth_rx_compl *rxcp)
1308 {
1309         int err = AMAP_GET_BITS(struct amap_eth_rx_compl, err, rxcp);
1310         int tcp_frame = AMAP_GET_BITS(struct amap_eth_rx_compl, tcpf, rxcp);
1311
1312         if (err)
1313                 drvr_stats(adapter)->be_rxcp_err++;
1314
1315         return (!tcp_frame || err || (adapter->max_rx_coal <= 1)) ?
1316                 false : true;
1317 }
1318
1319 int be_poll_rx(struct napi_struct *napi, int budget)
1320 {
1321         struct be_eq_obj *rx_eq = container_of(napi, struct be_eq_obj, napi);
1322         struct be_adapter *adapter =
1323                 container_of(rx_eq, struct be_adapter, rx_eq);
1324         struct be_queue_info *rx_cq = &adapter->rx_obj.cq;
1325         struct be_eth_rx_compl *rxcp;
1326         u32 work_done;
1327
1328         for (work_done = 0; work_done < budget; work_done++) {
1329                 rxcp = be_rx_compl_get(adapter);
1330                 if (!rxcp)
1331                         break;
1332
1333                 if (do_lro(adapter, rxcp))
1334                         be_rx_compl_process_lro(adapter, rxcp);
1335                 else
1336                         be_rx_compl_process(adapter, rxcp);
1337
1338                 be_rx_compl_reset(rxcp);
1339         }
1340
1341         lro_flush_all(&adapter->rx_obj.lro_mgr);
1342
1343         /* Refill the queue */
1344         if (atomic_read(&adapter->rx_obj.q.used) < RX_FRAGS_REFILL_WM)
1345                 be_post_rx_frags(adapter);
1346
1347         /* All consumed */
1348         if (work_done < budget) {
1349                 napi_complete(napi);
1350                 be_cq_notify(&adapter->ctrl, rx_cq->id, true, work_done);
1351         } else {
1352                 /* More to be consumed; continue with interrupts disabled */
1353                 be_cq_notify(&adapter->ctrl, rx_cq->id, false, work_done);
1354         }
1355         return work_done;
1356 }
1357
1358 void be_process_tx(struct be_adapter *adapter)
1359 {
1360         struct be_queue_info *txq = &adapter->tx_obj.q;
1361         struct be_queue_info *tx_cq = &adapter->tx_obj.cq;
1362         struct be_eth_tx_compl *txcp;
1363         u32 num_cmpl = 0;
1364         u16 end_idx;
1365
1366         while ((txcp = be_tx_compl_get(tx_cq))) {
1367                 end_idx = AMAP_GET_BITS(struct amap_eth_tx_compl,
1368                                         wrb_index, txcp);
1369                 be_tx_compl_process(adapter, end_idx);
1370                 num_cmpl++;
1371         }
1372
1373         if (num_cmpl) {
1374                 be_cq_notify(&adapter->ctrl, tx_cq->id, true, num_cmpl);
1375
1376                 /* As Tx wrbs have been freed up, wake up netdev queue if
1377                  * it was stopped due to lack of tx wrbs.
1378                  */
1379                 if (netif_queue_stopped(adapter->netdev) &&
1380                         atomic_read(&txq->used) < txq->len / 2) {
1381                         netif_wake_queue(adapter->netdev);
1382                 }
1383
1384                 drvr_stats(adapter)->be_tx_events++;
1385                 drvr_stats(adapter)->be_tx_compl += num_cmpl;
1386         }
1387 }
1388
1389 /* As TX and MCC share the same EQ check for both TX and MCC completions.
1390  * For TX/MCC we don't honour budget; consume everything
1391  */
1392 static int be_poll_tx_mcc(struct napi_struct *napi, int budget)
1393 {
1394         struct be_eq_obj *tx_eq = container_of(napi, struct be_eq_obj, napi);
1395         struct be_adapter *adapter =
1396                 container_of(tx_eq, struct be_adapter, tx_eq);
1397
1398         napi_complete(napi);
1399
1400         be_process_tx(adapter);
1401
1402         be_process_mcc(&adapter->ctrl);
1403
1404         return 1;
1405 }
1406
1407 static void be_worker(struct work_struct *work)
1408 {
1409         struct be_adapter *adapter =
1410                 container_of(work, struct be_adapter, work.work);
1411         int status;
1412
1413         /* Check link */
1414         be_link_status_update(adapter);
1415
1416         /* Get Stats */
1417         status = be_cmd_get_stats(&adapter->ctrl, &adapter->stats.cmd);
1418         if (!status)
1419                 netdev_stats_update(adapter);
1420
1421         /* Set EQ delay */
1422         be_rx_eqd_update(adapter);
1423
1424         be_tx_rate_update(adapter);
1425         be_rx_rate_update(adapter);
1426
1427         if (adapter->rx_post_starved) {
1428                 adapter->rx_post_starved = false;
1429                 be_post_rx_frags(adapter);
1430         }
1431
1432         schedule_delayed_work(&adapter->work, msecs_to_jiffies(1000));
1433 }
1434
1435 static void be_msix_enable(struct be_adapter *adapter)
1436 {
1437         int i, status;
1438
1439         for (i = 0; i < BE_NUM_MSIX_VECTORS; i++)
1440                 adapter->msix_entries[i].entry = i;
1441
1442         status = pci_enable_msix(adapter->pdev, adapter->msix_entries,
1443                 BE_NUM_MSIX_VECTORS);
1444         if (status == 0)
1445                 adapter->msix_enabled = true;
1446         return;
1447 }
1448
1449 static inline int be_msix_vec_get(struct be_adapter *adapter, u32 eq_id)
1450 {
1451         return adapter->msix_entries[eq_id -
1452                         8 * adapter->ctrl.pci_func].vector;
1453 }
1454
1455 static int be_msix_register(struct be_adapter *adapter)
1456 {
1457         struct net_device *netdev = adapter->netdev;
1458         struct be_eq_obj *tx_eq = &adapter->tx_eq;
1459         struct be_eq_obj *rx_eq = &adapter->rx_eq;
1460         int status, vec;
1461
1462         sprintf(tx_eq->desc, "%s-tx", netdev->name);
1463         vec = be_msix_vec_get(adapter, tx_eq->q.id);
1464         status = request_irq(vec, be_msix_tx_mcc, 0, tx_eq->desc, adapter);
1465         if (status)
1466                 goto err;
1467
1468         sprintf(rx_eq->desc, "%s-rx", netdev->name);
1469         vec = be_msix_vec_get(adapter, rx_eq->q.id);
1470         status = request_irq(vec, be_msix_rx, 0, rx_eq->desc, adapter);
1471         if (status) { /* Free TX IRQ */
1472                 vec = be_msix_vec_get(adapter, tx_eq->q.id);
1473                 free_irq(vec, adapter);
1474                 goto err;
1475         }
1476         return 0;
1477 err:
1478         dev_warn(&adapter->pdev->dev,
1479                 "MSIX Request IRQ failed - err %d\n", status);
1480         pci_disable_msix(adapter->pdev);
1481         adapter->msix_enabled = false;
1482         return status;
1483 }
1484
1485 static int be_irq_register(struct be_adapter *adapter)
1486 {
1487         struct net_device *netdev = adapter->netdev;
1488         int status;
1489
1490         if (adapter->msix_enabled) {
1491                 status = be_msix_register(adapter);
1492                 if (status == 0)
1493                         goto done;
1494         }
1495
1496         /* INTx */
1497         netdev->irq = adapter->pdev->irq;
1498         status = request_irq(netdev->irq, be_intx, IRQF_SHARED, netdev->name,
1499                         adapter);
1500         if (status) {
1501                 dev_err(&adapter->pdev->dev,
1502                         "INTx request IRQ failed - err %d\n", status);
1503                 return status;
1504         }
1505 done:
1506         adapter->isr_registered = true;
1507         return 0;
1508 }
1509
1510 static void be_irq_unregister(struct be_adapter *adapter)
1511 {
1512         struct net_device *netdev = adapter->netdev;
1513         int vec;
1514
1515         if (!adapter->isr_registered)
1516                 return;
1517
1518         /* INTx */
1519         if (!adapter->msix_enabled) {
1520                 free_irq(netdev->irq, adapter);
1521                 goto done;
1522         }
1523
1524         /* MSIx */
1525         vec = be_msix_vec_get(adapter, adapter->tx_eq.q.id);
1526         free_irq(vec, adapter);
1527         vec = be_msix_vec_get(adapter, adapter->rx_eq.q.id);
1528         free_irq(vec, adapter);
1529 done:
1530         adapter->isr_registered = false;
1531         return;
1532 }
1533
1534 static int be_open(struct net_device *netdev)
1535 {
1536         struct be_adapter *adapter = netdev_priv(netdev);
1537         struct be_ctrl_info *ctrl = &adapter->ctrl;
1538         struct be_eq_obj *rx_eq = &adapter->rx_eq;
1539         struct be_eq_obj *tx_eq = &adapter->tx_eq;
1540
1541         /* First time posting */
1542         be_post_rx_frags(adapter);
1543
1544         napi_enable(&rx_eq->napi);
1545         napi_enable(&tx_eq->napi);
1546
1547         be_irq_register(adapter);
1548
1549         be_intr_set(ctrl, true);
1550
1551         /* The evt queues are created in unarmed state; arm them */
1552         be_eq_notify(ctrl, rx_eq->q.id, true, false, 0);
1553         be_eq_notify(ctrl, tx_eq->q.id, true, false, 0);
1554
1555         /* Rx compl queue may be in unarmed state; rearm it */
1556         be_cq_notify(ctrl, adapter->rx_obj.cq.id, true, 0);
1557
1558         be_link_status_update(adapter);
1559
1560         schedule_delayed_work(&adapter->work, msecs_to_jiffies(100));
1561         return 0;
1562 }
1563
1564 static int be_setup(struct be_adapter *adapter)
1565 {
1566         struct be_ctrl_info *ctrl = &adapter->ctrl;
1567         struct net_device *netdev = adapter->netdev;
1568         u32 if_flags;
1569         int status;
1570
1571         if_flags = BE_IF_FLAGS_BROADCAST | BE_IF_FLAGS_PROMISCUOUS |
1572                 BE_IF_FLAGS_MCAST_PROMISCUOUS | BE_IF_FLAGS_UNTAGGED |
1573                 BE_IF_FLAGS_PASS_L3L4_ERRORS;
1574         status = be_cmd_if_create(ctrl, if_flags, netdev->dev_addr,
1575                         false/* pmac_invalid */, &adapter->if_handle,
1576                         &adapter->pmac_id);
1577         if (status != 0)
1578                 goto do_none;
1579
1580         be_vid_config(netdev);
1581
1582         status = be_cmd_set_flow_control(ctrl, true, true);
1583         if (status != 0)
1584                 goto if_destroy;
1585
1586         status = be_tx_queues_create(adapter);
1587         if (status != 0)
1588                 goto if_destroy;
1589
1590         status = be_rx_queues_create(adapter);
1591         if (status != 0)
1592                 goto tx_qs_destroy;
1593
1594         status = be_mcc_queues_create(adapter);
1595         if (status != 0)
1596                 goto rx_qs_destroy;
1597
1598         return 0;
1599
1600 rx_qs_destroy:
1601         be_rx_queues_destroy(adapter);
1602 tx_qs_destroy:
1603         be_tx_queues_destroy(adapter);
1604 if_destroy:
1605         be_cmd_if_destroy(ctrl, adapter->if_handle);
1606 do_none:
1607         return status;
1608 }
1609
1610 static int be_clear(struct be_adapter *adapter)
1611 {
1612         struct be_ctrl_info *ctrl = &adapter->ctrl;
1613
1614         be_rx_queues_destroy(adapter);
1615         be_tx_queues_destroy(adapter);
1616
1617         be_cmd_if_destroy(ctrl, adapter->if_handle);
1618
1619         be_mcc_queues_destroy(adapter);
1620         return 0;
1621 }
1622
1623 static int be_close(struct net_device *netdev)
1624 {
1625         struct be_adapter *adapter = netdev_priv(netdev);
1626         struct be_ctrl_info *ctrl = &adapter->ctrl;
1627         struct be_eq_obj *rx_eq = &adapter->rx_eq;
1628         struct be_eq_obj *tx_eq = &adapter->tx_eq;
1629         int vec;
1630
1631         cancel_delayed_work_sync(&adapter->work);
1632
1633         netif_stop_queue(netdev);
1634         netif_carrier_off(netdev);
1635         adapter->link.speed = PHY_LINK_SPEED_ZERO;
1636
1637         be_intr_set(ctrl, false);
1638
1639         if (adapter->msix_enabled) {
1640                 vec = be_msix_vec_get(adapter, tx_eq->q.id);
1641                 synchronize_irq(vec);
1642                 vec = be_msix_vec_get(adapter, rx_eq->q.id);
1643                 synchronize_irq(vec);
1644         } else {
1645                 synchronize_irq(netdev->irq);
1646         }
1647         be_irq_unregister(adapter);
1648
1649         napi_disable(&rx_eq->napi);
1650         napi_disable(&tx_eq->napi);
1651
1652         return 0;
1653 }
1654
1655 static int be_get_frag_header(struct skb_frag_struct *frag, void **mac_hdr,
1656                                 void **ip_hdr, void **tcpudp_hdr,
1657                                 u64 *hdr_flags, void *priv)
1658 {
1659         struct ethhdr *eh;
1660         struct vlan_ethhdr *veh;
1661         struct iphdr *iph;
1662         u8 *va = page_address(frag->page) + frag->page_offset;
1663         unsigned long ll_hlen;
1664
1665         prefetch(va);
1666         eh = (struct ethhdr *)va;
1667         *mac_hdr = eh;
1668         ll_hlen = ETH_HLEN;
1669         if (eh->h_proto != htons(ETH_P_IP)) {
1670                 if (eh->h_proto == htons(ETH_P_8021Q)) {
1671                         veh = (struct vlan_ethhdr *)va;
1672                         if (veh->h_vlan_encapsulated_proto != htons(ETH_P_IP))
1673                                 return -1;
1674
1675                         ll_hlen += VLAN_HLEN;
1676                 } else {
1677                         return -1;
1678                 }
1679         }
1680         *hdr_flags = LRO_IPV4;
1681         iph = (struct iphdr *)(va + ll_hlen);
1682         *ip_hdr = iph;
1683         if (iph->protocol != IPPROTO_TCP)
1684                 return -1;
1685         *hdr_flags |= LRO_TCP;
1686         *tcpudp_hdr = (u8 *) (*ip_hdr) + (iph->ihl << 2);
1687
1688         return 0;
1689 }
1690
1691 static void be_lro_init(struct be_adapter *adapter, struct net_device *netdev)
1692 {
1693         struct net_lro_mgr *lro_mgr;
1694
1695         lro_mgr = &adapter->rx_obj.lro_mgr;
1696         lro_mgr->dev = netdev;
1697         lro_mgr->features = LRO_F_NAPI;
1698         lro_mgr->ip_summed = CHECKSUM_UNNECESSARY;
1699         lro_mgr->ip_summed_aggr = CHECKSUM_UNNECESSARY;
1700         lro_mgr->max_desc = BE_MAX_LRO_DESCRIPTORS;
1701         lro_mgr->lro_arr = adapter->rx_obj.lro_desc;
1702         lro_mgr->get_frag_header = be_get_frag_header;
1703         lro_mgr->max_aggr = BE_MAX_FRAGS_PER_FRAME;
1704 }
1705
1706 static struct net_device_ops be_netdev_ops = {
1707         .ndo_open               = be_open,
1708         .ndo_stop               = be_close,
1709         .ndo_start_xmit         = be_xmit,
1710         .ndo_get_stats          = be_get_stats,
1711         .ndo_set_rx_mode        = be_set_multicast_list,
1712         .ndo_set_mac_address    = be_mac_addr_set,
1713         .ndo_change_mtu         = be_change_mtu,
1714         .ndo_validate_addr      = eth_validate_addr,
1715         .ndo_vlan_rx_register   = be_vlan_register,
1716         .ndo_vlan_rx_add_vid    = be_vlan_add_vid,
1717         .ndo_vlan_rx_kill_vid   = be_vlan_rem_vid,
1718 };
1719
1720 static void be_netdev_init(struct net_device *netdev)
1721 {
1722         struct be_adapter *adapter = netdev_priv(netdev);
1723
1724         netdev->features |= NETIF_F_SG | NETIF_F_HW_VLAN_RX | NETIF_F_TSO |
1725                 NETIF_F_HW_VLAN_TX | NETIF_F_HW_VLAN_FILTER | NETIF_F_IP_CSUM |
1726                 NETIF_F_IPV6_CSUM;
1727
1728         netdev->flags |= IFF_MULTICAST;
1729
1730         adapter->rx_csum = true;
1731
1732         BE_SET_NETDEV_OPS(netdev, &be_netdev_ops);
1733
1734         SET_ETHTOOL_OPS(netdev, &be_ethtool_ops);
1735
1736         be_lro_init(adapter, netdev);
1737
1738         netif_napi_add(netdev, &adapter->rx_eq.napi, be_poll_rx,
1739                 BE_NAPI_WEIGHT);
1740         netif_napi_add(netdev, &adapter->tx_eq.napi, be_poll_tx_mcc,
1741                 BE_NAPI_WEIGHT);
1742
1743         netif_carrier_off(netdev);
1744         netif_stop_queue(netdev);
1745 }
1746
1747 static void be_unmap_pci_bars(struct be_adapter *adapter)
1748 {
1749         struct be_ctrl_info *ctrl = &adapter->ctrl;
1750         if (ctrl->csr)
1751                 iounmap(ctrl->csr);
1752         if (ctrl->db)
1753                 iounmap(ctrl->db);
1754         if (ctrl->pcicfg)
1755                 iounmap(ctrl->pcicfg);
1756 }
1757
1758 static int be_map_pci_bars(struct be_adapter *adapter)
1759 {
1760         u8 __iomem *addr;
1761
1762         addr = ioremap_nocache(pci_resource_start(adapter->pdev, 2),
1763                         pci_resource_len(adapter->pdev, 2));
1764         if (addr == NULL)
1765                 return -ENOMEM;
1766         adapter->ctrl.csr = addr;
1767
1768         addr = ioremap_nocache(pci_resource_start(adapter->pdev, 4),
1769                         128 * 1024);
1770         if (addr == NULL)
1771                 goto pci_map_err;
1772         adapter->ctrl.db = addr;
1773
1774         addr = ioremap_nocache(pci_resource_start(adapter->pdev, 1),
1775                         pci_resource_len(adapter->pdev, 1));
1776         if (addr == NULL)
1777                 goto pci_map_err;
1778         adapter->ctrl.pcicfg = addr;
1779
1780         return 0;
1781 pci_map_err:
1782         be_unmap_pci_bars(adapter);
1783         return -ENOMEM;
1784 }
1785
1786
1787 static void be_ctrl_cleanup(struct be_adapter *adapter)
1788 {
1789         struct be_dma_mem *mem = &adapter->ctrl.mbox_mem_alloced;
1790
1791         be_unmap_pci_bars(adapter);
1792
1793         if (mem->va)
1794                 pci_free_consistent(adapter->pdev, mem->size,
1795                         mem->va, mem->dma);
1796 }
1797
1798 /* Initialize the mbox required to send cmds to BE */
1799 static int be_ctrl_init(struct be_adapter *adapter)
1800 {
1801         struct be_ctrl_info *ctrl = &adapter->ctrl;
1802         struct be_dma_mem *mbox_mem_alloc = &ctrl->mbox_mem_alloced;
1803         struct be_dma_mem *mbox_mem_align = &ctrl->mbox_mem;
1804         int status;
1805         u32 val;
1806
1807         status = be_map_pci_bars(adapter);
1808         if (status)
1809                 return status;
1810
1811         mbox_mem_alloc->size = sizeof(struct be_mcc_mailbox) + 16;
1812         mbox_mem_alloc->va = pci_alloc_consistent(adapter->pdev,
1813                                 mbox_mem_alloc->size, &mbox_mem_alloc->dma);
1814         if (!mbox_mem_alloc->va) {
1815                 be_unmap_pci_bars(adapter);
1816                 return -1;
1817         }
1818         mbox_mem_align->size = sizeof(struct be_mcc_mailbox);
1819         mbox_mem_align->va = PTR_ALIGN(mbox_mem_alloc->va, 16);
1820         mbox_mem_align->dma = PTR_ALIGN(mbox_mem_alloc->dma, 16);
1821         memset(mbox_mem_align->va, 0, sizeof(struct be_mcc_mailbox));
1822         spin_lock_init(&ctrl->mbox_lock);
1823         spin_lock_init(&ctrl->mcc_lock);
1824         spin_lock_init(&ctrl->mcc_cq_lock);
1825
1826         val = ioread32(ctrl->pcicfg + PCICFG_MEMBAR_CTRL_INT_CTRL_OFFSET);
1827         ctrl->pci_func = (val >> MEMBAR_CTRL_INT_CTRL_PFUNC_SHIFT) &
1828                                         MEMBAR_CTRL_INT_CTRL_PFUNC_MASK;
1829         return 0;
1830 }
1831
1832 static void be_stats_cleanup(struct be_adapter *adapter)
1833 {
1834         struct be_stats_obj *stats = &adapter->stats;
1835         struct be_dma_mem *cmd = &stats->cmd;
1836
1837         if (cmd->va)
1838                 pci_free_consistent(adapter->pdev, cmd->size,
1839                         cmd->va, cmd->dma);
1840 }
1841
1842 static int be_stats_init(struct be_adapter *adapter)
1843 {
1844         struct be_stats_obj *stats = &adapter->stats;
1845         struct be_dma_mem *cmd = &stats->cmd;
1846
1847         cmd->size = sizeof(struct be_cmd_req_get_stats);
1848         cmd->va = pci_alloc_consistent(adapter->pdev, cmd->size, &cmd->dma);
1849         if (cmd->va == NULL)
1850                 return -1;
1851         return 0;
1852 }
1853
1854 static void __devexit be_remove(struct pci_dev *pdev)
1855 {
1856         struct be_adapter *adapter = pci_get_drvdata(pdev);
1857         if (!adapter)
1858                 return;
1859
1860         unregister_netdev(adapter->netdev);
1861
1862         be_clear(adapter);
1863
1864         be_stats_cleanup(adapter);
1865
1866         be_ctrl_cleanup(adapter);
1867
1868         if (adapter->msix_enabled) {
1869                 pci_disable_msix(adapter->pdev);
1870                 adapter->msix_enabled = false;
1871         }
1872
1873         pci_set_drvdata(pdev, NULL);
1874         pci_release_regions(pdev);
1875         pci_disable_device(pdev);
1876
1877         free_netdev(adapter->netdev);
1878 }
1879
1880 static int be_hw_up(struct be_adapter *adapter)
1881 {
1882         struct be_ctrl_info *ctrl = &adapter->ctrl;
1883         int status;
1884
1885         status = be_cmd_POST(ctrl);
1886         if (status)
1887                 return status;
1888
1889         status = be_cmd_get_fw_ver(ctrl, adapter->fw_ver);
1890         if (status)
1891                 return status;
1892
1893         status = be_cmd_query_fw_cfg(ctrl, &adapter->port_num);
1894         return status;
1895 }
1896
1897 static int __devinit be_probe(struct pci_dev *pdev,
1898                         const struct pci_device_id *pdev_id)
1899 {
1900         int status = 0;
1901         struct be_adapter *adapter;
1902         struct net_device *netdev;
1903         struct be_ctrl_info *ctrl;
1904         u8 mac[ETH_ALEN];
1905
1906         status = pci_enable_device(pdev);
1907         if (status)
1908                 goto do_none;
1909
1910         status = pci_request_regions(pdev, DRV_NAME);
1911         if (status)
1912                 goto disable_dev;
1913         pci_set_master(pdev);
1914
1915         netdev = alloc_etherdev(sizeof(struct be_adapter));
1916         if (netdev == NULL) {
1917                 status = -ENOMEM;
1918                 goto rel_reg;
1919         }
1920         adapter = netdev_priv(netdev);
1921         adapter->pdev = pdev;
1922         pci_set_drvdata(pdev, adapter);
1923         adapter->netdev = netdev;
1924
1925         be_msix_enable(adapter);
1926
1927         status = pci_set_dma_mask(pdev, DMA_BIT_MASK(64));
1928         if (!status) {
1929                 netdev->features |= NETIF_F_HIGHDMA;
1930         } else {
1931                 status = pci_set_dma_mask(pdev, DMA_BIT_MASK(32));
1932                 if (status) {
1933                         dev_err(&pdev->dev, "Could not set PCI DMA Mask\n");
1934                         goto free_netdev;
1935                 }
1936         }
1937
1938         ctrl = &adapter->ctrl;
1939         status = be_ctrl_init(adapter);
1940         if (status)
1941                 goto free_netdev;
1942
1943         status = be_stats_init(adapter);
1944         if (status)
1945                 goto ctrl_clean;
1946
1947         status = be_hw_up(adapter);
1948         if (status)
1949                 goto stats_clean;
1950
1951         status = be_cmd_mac_addr_query(ctrl, mac, MAC_ADDRESS_TYPE_NETWORK,
1952                         true /* permanent */, 0);
1953         if (status)
1954                 goto stats_clean;
1955         memcpy(netdev->dev_addr, mac, ETH_ALEN);
1956
1957         INIT_DELAYED_WORK(&adapter->work, be_worker);
1958         be_netdev_init(netdev);
1959         SET_NETDEV_DEV(netdev, &adapter->pdev->dev);
1960
1961         status = be_setup(adapter);
1962         if (status)
1963                 goto stats_clean;
1964         status = register_netdev(netdev);
1965         if (status != 0)
1966                 goto unsetup;
1967
1968         dev_info(&pdev->dev, "%s port %d\n", nic_name(pdev), adapter->port_num);
1969         return 0;
1970
1971 unsetup:
1972         be_clear(adapter);
1973 stats_clean:
1974         be_stats_cleanup(adapter);
1975 ctrl_clean:
1976         be_ctrl_cleanup(adapter);
1977 free_netdev:
1978         free_netdev(adapter->netdev);
1979 rel_reg:
1980         pci_release_regions(pdev);
1981 disable_dev:
1982         pci_disable_device(pdev);
1983 do_none:
1984         dev_err(&pdev->dev, "%s initialization failed\n", nic_name(pdev));
1985         return status;
1986 }
1987
1988 static int be_suspend(struct pci_dev *pdev, pm_message_t state)
1989 {
1990         struct be_adapter *adapter = pci_get_drvdata(pdev);
1991         struct net_device *netdev =  adapter->netdev;
1992
1993         netif_device_detach(netdev);
1994         if (netif_running(netdev)) {
1995                 rtnl_lock();
1996                 be_close(netdev);
1997                 be_clear(adapter);
1998                 rtnl_unlock();
1999         }
2000
2001         pci_save_state(pdev);
2002         pci_disable_device(pdev);
2003         pci_set_power_state(pdev, pci_choose_state(pdev, state));
2004         return 0;
2005 }
2006
2007 static int be_resume(struct pci_dev *pdev)
2008 {
2009         int status = 0;
2010         struct be_adapter *adapter = pci_get_drvdata(pdev);
2011         struct net_device *netdev =  adapter->netdev;
2012
2013         netif_device_detach(netdev);
2014
2015         status = pci_enable_device(pdev);
2016         if (status)
2017                 return status;
2018
2019         pci_set_power_state(pdev, 0);
2020         pci_restore_state(pdev);
2021
2022         if (netif_running(netdev)) {
2023                 rtnl_lock();
2024                 be_setup(adapter);
2025                 be_open(netdev);
2026                 rtnl_unlock();
2027         }
2028         netif_device_attach(netdev);
2029         return 0;
2030 }
2031
2032 static struct pci_driver be_driver = {
2033         .name = DRV_NAME,
2034         .id_table = be_dev_ids,
2035         .probe = be_probe,
2036         .remove = be_remove,
2037         .suspend = be_suspend,
2038         .resume = be_resume
2039 };
2040
2041 static int __init be_init_module(void)
2042 {
2043         if (rx_frag_size != 8192 && rx_frag_size != 4096
2044                 && rx_frag_size != 2048) {
2045                 printk(KERN_WARNING DRV_NAME
2046                         " : Module param rx_frag_size must be 2048/4096/8192."
2047                         " Using 2048\n");
2048                 rx_frag_size = 2048;
2049         }
2050         /* Ensure rx_frag_size is aligned to chache line */
2051         if (SKB_DATA_ALIGN(rx_frag_size) != rx_frag_size) {
2052                 printk(KERN_WARNING DRV_NAME
2053                         " : Bad module param rx_frag_size. Using 2048\n");
2054                 rx_frag_size = 2048;
2055         }
2056
2057         return pci_register_driver(&be_driver);
2058 }
2059 module_init(be_init_module);
2060
2061 static void __exit be_exit_module(void)
2062 {
2063         pci_unregister_driver(&be_driver);
2064 }
2065 module_exit(be_exit_module);