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Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001/* bnx2x_cmn.c: Broadcom Everest network driver.
2 *
3 * Copyright (c) 2007-2010 Broadcom Corporation
4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation.
8 *
9 * Maintained by: Eilon Greenstein <eilong@broadcom.com>
10 * Written by: Eliezer Tamir
11 * Based on code from Michael Chan's bnx2 driver
12 * UDP CSUM errata workaround by Arik Gendelman
13 * Slowpath and fastpath rework by Vladislav Zolotarov
14 * Statistics and Link management by Yitchak Gertner
15 *
16 */
17
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +000018#include <linux/etherdevice.h>
Hao Zheng9bcc0892010-10-20 13:56:11 +000019#include <linux/if_vlan.h>
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +000020#include <linux/ip.h>
Dmitry Kravkovf2e08992010-10-06 03:28:26 +000021#include <net/ipv6.h>
Stephen Rothwell7f3e01f2010-07-28 22:20:34 -070022#include <net/ip6_checksum.h>
Dmitry Kravkov6891dd22010-08-03 21:49:40 +000023#include <linux/firmware.h>
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +000024#include "bnx2x_cmn.h"
25
Dmitry Kravkov523224a2010-10-06 03:23:26 +000026#include "bnx2x_init.h"
27
stephen hemminger8d962862010-10-21 07:50:56 +000028static int bnx2x_setup_irqs(struct bnx2x *bp);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +000029
30/* free skb in the packet ring at pos idx
31 * return idx of last bd freed
32 */
33static u16 bnx2x_free_tx_pkt(struct bnx2x *bp, struct bnx2x_fastpath *fp,
34 u16 idx)
35{
36 struct sw_tx_bd *tx_buf = &fp->tx_buf_ring[idx];
37 struct eth_tx_start_bd *tx_start_bd;
38 struct eth_tx_bd *tx_data_bd;
39 struct sk_buff *skb = tx_buf->skb;
40 u16 bd_idx = TX_BD(tx_buf->first_bd), new_cons;
41 int nbd;
42
43 /* prefetch skb end pointer to speedup dev_kfree_skb() */
44 prefetch(&skb->end);
45
46 DP(BNX2X_MSG_OFF, "pkt_idx %d buff @(%p)->skb %p\n",
47 idx, tx_buf, skb);
48
49 /* unmap first bd */
50 DP(BNX2X_MSG_OFF, "free bd_idx %d\n", bd_idx);
51 tx_start_bd = &fp->tx_desc_ring[bd_idx].start_bd;
52 dma_unmap_single(&bp->pdev->dev, BD_UNMAP_ADDR(tx_start_bd),
Dmitry Kravkov4bca60f2010-10-06 03:30:27 +000053 BD_UNMAP_LEN(tx_start_bd), DMA_TO_DEVICE);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +000054
55 nbd = le16_to_cpu(tx_start_bd->nbd) - 1;
56#ifdef BNX2X_STOP_ON_ERROR
57 if ((nbd - 1) > (MAX_SKB_FRAGS + 2)) {
58 BNX2X_ERR("BAD nbd!\n");
59 bnx2x_panic();
60 }
61#endif
62 new_cons = nbd + tx_buf->first_bd;
63
64 /* Get the next bd */
65 bd_idx = TX_BD(NEXT_TX_IDX(bd_idx));
66
67 /* Skip a parse bd... */
68 --nbd;
69 bd_idx = TX_BD(NEXT_TX_IDX(bd_idx));
70
71 /* ...and the TSO split header bd since they have no mapping */
72 if (tx_buf->flags & BNX2X_TSO_SPLIT_BD) {
73 --nbd;
74 bd_idx = TX_BD(NEXT_TX_IDX(bd_idx));
75 }
76
77 /* now free frags */
78 while (nbd > 0) {
79
80 DP(BNX2X_MSG_OFF, "free frag bd_idx %d\n", bd_idx);
81 tx_data_bd = &fp->tx_desc_ring[bd_idx].reg_bd;
82 dma_unmap_page(&bp->pdev->dev, BD_UNMAP_ADDR(tx_data_bd),
83 BD_UNMAP_LEN(tx_data_bd), DMA_TO_DEVICE);
84 if (--nbd)
85 bd_idx = TX_BD(NEXT_TX_IDX(bd_idx));
86 }
87
88 /* release skb */
89 WARN_ON(!skb);
90 dev_kfree_skb(skb);
91 tx_buf->first_bd = 0;
92 tx_buf->skb = NULL;
93
94 return new_cons;
95}
96
97int bnx2x_tx_int(struct bnx2x_fastpath *fp)
98{
99 struct bnx2x *bp = fp->bp;
100 struct netdev_queue *txq;
101 u16 hw_cons, sw_cons, bd_cons = fp->tx_bd_cons;
102
103#ifdef BNX2X_STOP_ON_ERROR
104 if (unlikely(bp->panic))
105 return -1;
106#endif
107
108 txq = netdev_get_tx_queue(bp->dev, fp->index);
109 hw_cons = le16_to_cpu(*fp->tx_cons_sb);
110 sw_cons = fp->tx_pkt_cons;
111
112 while (sw_cons != hw_cons) {
113 u16 pkt_cons;
114
115 pkt_cons = TX_BD(sw_cons);
116
Dmitry Kravkovf2e08992010-10-06 03:28:26 +0000117 DP(NETIF_MSG_TX_DONE, "queue[%d]: hw_cons %u sw_cons %u "
118 " pkt_cons %u\n",
119 fp->index, hw_cons, sw_cons, pkt_cons);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000120
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000121 bd_cons = bnx2x_free_tx_pkt(bp, fp, pkt_cons);
122 sw_cons++;
123 }
124
125 fp->tx_pkt_cons = sw_cons;
126 fp->tx_bd_cons = bd_cons;
127
128 /* Need to make the tx_bd_cons update visible to start_xmit()
129 * before checking for netif_tx_queue_stopped(). Without the
130 * memory barrier, there is a small possibility that
131 * start_xmit() will miss it and cause the queue to be stopped
132 * forever.
133 */
134 smp_mb();
135
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000136 if (unlikely(netif_tx_queue_stopped(txq))) {
137 /* Taking tx_lock() is needed to prevent reenabling the queue
138 * while it's empty. This could have happen if rx_action() gets
139 * suspended in bnx2x_tx_int() after the condition before
140 * netif_tx_wake_queue(), while tx_action (bnx2x_start_xmit()):
141 *
142 * stops the queue->sees fresh tx_bd_cons->releases the queue->
143 * sends some packets consuming the whole queue again->
144 * stops the queue
145 */
146
147 __netif_tx_lock(txq, smp_processor_id());
148
149 if ((netif_tx_queue_stopped(txq)) &&
150 (bp->state == BNX2X_STATE_OPEN) &&
151 (bnx2x_tx_avail(fp) >= MAX_SKB_FRAGS + 3))
152 netif_tx_wake_queue(txq);
153
154 __netif_tx_unlock(txq);
155 }
156 return 0;
157}
158
159static inline void bnx2x_update_last_max_sge(struct bnx2x_fastpath *fp,
160 u16 idx)
161{
162 u16 last_max = fp->last_max_sge;
163
164 if (SUB_S16(idx, last_max) > 0)
165 fp->last_max_sge = idx;
166}
167
168static void bnx2x_update_sge_prod(struct bnx2x_fastpath *fp,
169 struct eth_fast_path_rx_cqe *fp_cqe)
170{
171 struct bnx2x *bp = fp->bp;
172 u16 sge_len = SGE_PAGE_ALIGN(le16_to_cpu(fp_cqe->pkt_len) -
173 le16_to_cpu(fp_cqe->len_on_bd)) >>
174 SGE_PAGE_SHIFT;
175 u16 last_max, last_elem, first_elem;
176 u16 delta = 0;
177 u16 i;
178
179 if (!sge_len)
180 return;
181
182 /* First mark all used pages */
183 for (i = 0; i < sge_len; i++)
Dmitry Kravkov523224a2010-10-06 03:23:26 +0000184 SGE_MASK_CLEAR_BIT(fp,
185 RX_SGE(le16_to_cpu(fp_cqe->sgl_or_raw_data.sgl[i])));
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000186
187 DP(NETIF_MSG_RX_STATUS, "fp_cqe->sgl[%d] = %d\n",
Dmitry Kravkov523224a2010-10-06 03:23:26 +0000188 sge_len - 1, le16_to_cpu(fp_cqe->sgl_or_raw_data.sgl[sge_len - 1]));
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000189
190 /* Here we assume that the last SGE index is the biggest */
191 prefetch((void *)(fp->sge_mask));
Dmitry Kravkov523224a2010-10-06 03:23:26 +0000192 bnx2x_update_last_max_sge(fp,
193 le16_to_cpu(fp_cqe->sgl_or_raw_data.sgl[sge_len - 1]));
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000194
195 last_max = RX_SGE(fp->last_max_sge);
196 last_elem = last_max >> RX_SGE_MASK_ELEM_SHIFT;
197 first_elem = RX_SGE(fp->rx_sge_prod) >> RX_SGE_MASK_ELEM_SHIFT;
198
199 /* If ring is not full */
200 if (last_elem + 1 != first_elem)
201 last_elem++;
202
203 /* Now update the prod */
204 for (i = first_elem; i != last_elem; i = NEXT_SGE_MASK_ELEM(i)) {
205 if (likely(fp->sge_mask[i]))
206 break;
207
208 fp->sge_mask[i] = RX_SGE_MASK_ELEM_ONE_MASK;
209 delta += RX_SGE_MASK_ELEM_SZ;
210 }
211
212 if (delta > 0) {
213 fp->rx_sge_prod += delta;
214 /* clear page-end entries */
215 bnx2x_clear_sge_mask_next_elems(fp);
216 }
217
218 DP(NETIF_MSG_RX_STATUS,
219 "fp->last_max_sge = %d fp->rx_sge_prod = %d\n",
220 fp->last_max_sge, fp->rx_sge_prod);
221}
222
223static void bnx2x_tpa_start(struct bnx2x_fastpath *fp, u16 queue,
224 struct sk_buff *skb, u16 cons, u16 prod)
225{
226 struct bnx2x *bp = fp->bp;
227 struct sw_rx_bd *cons_rx_buf = &fp->rx_buf_ring[cons];
228 struct sw_rx_bd *prod_rx_buf = &fp->rx_buf_ring[prod];
229 struct eth_rx_bd *prod_bd = &fp->rx_desc_ring[prod];
230 dma_addr_t mapping;
231
232 /* move empty skb from pool to prod and map it */
233 prod_rx_buf->skb = fp->tpa_pool[queue].skb;
234 mapping = dma_map_single(&bp->pdev->dev, fp->tpa_pool[queue].skb->data,
235 bp->rx_buf_size, DMA_FROM_DEVICE);
236 dma_unmap_addr_set(prod_rx_buf, mapping, mapping);
237
238 /* move partial skb from cons to pool (don't unmap yet) */
239 fp->tpa_pool[queue] = *cons_rx_buf;
240
241 /* mark bin state as start - print error if current state != stop */
242 if (fp->tpa_state[queue] != BNX2X_TPA_STOP)
243 BNX2X_ERR("start of bin not in stop [%d]\n", queue);
244
245 fp->tpa_state[queue] = BNX2X_TPA_START;
246
247 /* point prod_bd to new skb */
248 prod_bd->addr_hi = cpu_to_le32(U64_HI(mapping));
249 prod_bd->addr_lo = cpu_to_le32(U64_LO(mapping));
250
251#ifdef BNX2X_STOP_ON_ERROR
252 fp->tpa_queue_used |= (1 << queue);
253#ifdef _ASM_GENERIC_INT_L64_H
254 DP(NETIF_MSG_RX_STATUS, "fp->tpa_queue_used = 0x%lx\n",
255#else
256 DP(NETIF_MSG_RX_STATUS, "fp->tpa_queue_used = 0x%llx\n",
257#endif
258 fp->tpa_queue_used);
259#endif
260}
261
262static int bnx2x_fill_frag_skb(struct bnx2x *bp, struct bnx2x_fastpath *fp,
263 struct sk_buff *skb,
264 struct eth_fast_path_rx_cqe *fp_cqe,
265 u16 cqe_idx)
266{
267 struct sw_rx_page *rx_pg, old_rx_pg;
268 u16 len_on_bd = le16_to_cpu(fp_cqe->len_on_bd);
269 u32 i, frag_len, frag_size, pages;
270 int err;
271 int j;
272
273 frag_size = le16_to_cpu(fp_cqe->pkt_len) - len_on_bd;
274 pages = SGE_PAGE_ALIGN(frag_size) >> SGE_PAGE_SHIFT;
275
276 /* This is needed in order to enable forwarding support */
277 if (frag_size)
278 skb_shinfo(skb)->gso_size = min((u32)SGE_PAGE_SIZE,
279 max(frag_size, (u32)len_on_bd));
280
281#ifdef BNX2X_STOP_ON_ERROR
282 if (pages > min_t(u32, 8, MAX_SKB_FRAGS)*SGE_PAGE_SIZE*PAGES_PER_SGE) {
283 BNX2X_ERR("SGL length is too long: %d. CQE index is %d\n",
284 pages, cqe_idx);
285 BNX2X_ERR("fp_cqe->pkt_len = %d fp_cqe->len_on_bd = %d\n",
286 fp_cqe->pkt_len, len_on_bd);
287 bnx2x_panic();
288 return -EINVAL;
289 }
290#endif
291
292 /* Run through the SGL and compose the fragmented skb */
293 for (i = 0, j = 0; i < pages; i += PAGES_PER_SGE, j++) {
Dmitry Kravkov523224a2010-10-06 03:23:26 +0000294 u16 sge_idx =
295 RX_SGE(le16_to_cpu(fp_cqe->sgl_or_raw_data.sgl[j]));
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000296
297 /* FW gives the indices of the SGE as if the ring is an array
298 (meaning that "next" element will consume 2 indices) */
299 frag_len = min(frag_size, (u32)(SGE_PAGE_SIZE*PAGES_PER_SGE));
300 rx_pg = &fp->rx_page_ring[sge_idx];
301 old_rx_pg = *rx_pg;
302
303 /* If we fail to allocate a substitute page, we simply stop
304 where we are and drop the whole packet */
305 err = bnx2x_alloc_rx_sge(bp, fp, sge_idx);
306 if (unlikely(err)) {
307 fp->eth_q_stats.rx_skb_alloc_failed++;
308 return err;
309 }
310
311 /* Unmap the page as we r going to pass it to the stack */
312 dma_unmap_page(&bp->pdev->dev,
313 dma_unmap_addr(&old_rx_pg, mapping),
314 SGE_PAGE_SIZE*PAGES_PER_SGE, DMA_FROM_DEVICE);
315
316 /* Add one frag and update the appropriate fields in the skb */
317 skb_fill_page_desc(skb, j, old_rx_pg.page, 0, frag_len);
318
319 skb->data_len += frag_len;
320 skb->truesize += frag_len;
321 skb->len += frag_len;
322
323 frag_size -= frag_len;
324 }
325
326 return 0;
327}
328
329static void bnx2x_tpa_stop(struct bnx2x *bp, struct bnx2x_fastpath *fp,
330 u16 queue, int pad, int len, union eth_rx_cqe *cqe,
331 u16 cqe_idx)
332{
333 struct sw_rx_bd *rx_buf = &fp->tpa_pool[queue];
334 struct sk_buff *skb = rx_buf->skb;
335 /* alloc new skb */
336 struct sk_buff *new_skb = netdev_alloc_skb(bp->dev, bp->rx_buf_size);
337
338 /* Unmap skb in the pool anyway, as we are going to change
339 pool entry status to BNX2X_TPA_STOP even if new skb allocation
340 fails. */
341 dma_unmap_single(&bp->pdev->dev, dma_unmap_addr(rx_buf, mapping),
342 bp->rx_buf_size, DMA_FROM_DEVICE);
343
344 if (likely(new_skb)) {
345 /* fix ip xsum and give it to the stack */
346 /* (no need to map the new skb) */
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000347
348 prefetch(skb);
Dmitry Kravkov217de5a2010-10-06 03:31:20 +0000349 prefetch(((char *)(skb)) + L1_CACHE_BYTES);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000350
351#ifdef BNX2X_STOP_ON_ERROR
352 if (pad + len > bp->rx_buf_size) {
353 BNX2X_ERR("skb_put is about to fail... "
354 "pad %d len %d rx_buf_size %d\n",
355 pad, len, bp->rx_buf_size);
356 bnx2x_panic();
357 return;
358 }
359#endif
360
361 skb_reserve(skb, pad);
362 skb_put(skb, len);
363
364 skb->protocol = eth_type_trans(skb, bp->dev);
365 skb->ip_summed = CHECKSUM_UNNECESSARY;
366
367 {
368 struct iphdr *iph;
369
370 iph = (struct iphdr *)skb->data;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000371 iph->check = 0;
372 iph->check = ip_fast_csum((u8 *)iph, iph->ihl);
373 }
374
375 if (!bnx2x_fill_frag_skb(bp, fp, skb,
376 &cqe->fast_path_cqe, cqe_idx)) {
Hao Zheng9bcc0892010-10-20 13:56:11 +0000377 if ((le16_to_cpu(cqe->fast_path_cqe.
378 pars_flags.flags) & PARSING_FLAGS_VLAN))
379 __vlan_hwaccel_put_tag(skb,
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000380 le16_to_cpu(cqe->fast_path_cqe.
Hao Zheng9bcc0892010-10-20 13:56:11 +0000381 vlan_tag));
382 napi_gro_receive(&fp->napi, skb);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000383 } else {
384 DP(NETIF_MSG_RX_STATUS, "Failed to allocate new pages"
385 " - dropping packet!\n");
386 dev_kfree_skb(skb);
387 }
388
389
390 /* put new skb in bin */
391 fp->tpa_pool[queue].skb = new_skb;
392
393 } else {
394 /* else drop the packet and keep the buffer in the bin */
395 DP(NETIF_MSG_RX_STATUS,
396 "Failed to allocate new skb - dropping packet!\n");
397 fp->eth_q_stats.rx_skb_alloc_failed++;
398 }
399
400 fp->tpa_state[queue] = BNX2X_TPA_STOP;
401}
402
403/* Set Toeplitz hash value in the skb using the value from the
404 * CQE (calculated by HW).
405 */
406static inline void bnx2x_set_skb_rxhash(struct bnx2x *bp, union eth_rx_cqe *cqe,
407 struct sk_buff *skb)
408{
409 /* Set Toeplitz hash from CQE */
410 if ((bp->dev->features & NETIF_F_RXHASH) &&
411 (cqe->fast_path_cqe.status_flags &
412 ETH_FAST_PATH_RX_CQE_RSS_HASH_FLG))
413 skb->rxhash =
414 le32_to_cpu(cqe->fast_path_cqe.rss_hash_result);
415}
416
417int bnx2x_rx_int(struct bnx2x_fastpath *fp, int budget)
418{
419 struct bnx2x *bp = fp->bp;
420 u16 bd_cons, bd_prod, bd_prod_fw, comp_ring_cons;
421 u16 hw_comp_cons, sw_comp_cons, sw_comp_prod;
422 int rx_pkt = 0;
423
424#ifdef BNX2X_STOP_ON_ERROR
425 if (unlikely(bp->panic))
426 return 0;
427#endif
428
429 /* CQ "next element" is of the size of the regular element,
430 that's why it's ok here */
431 hw_comp_cons = le16_to_cpu(*fp->rx_cons_sb);
432 if ((hw_comp_cons & MAX_RCQ_DESC_CNT) == MAX_RCQ_DESC_CNT)
433 hw_comp_cons++;
434
435 bd_cons = fp->rx_bd_cons;
436 bd_prod = fp->rx_bd_prod;
437 bd_prod_fw = bd_prod;
438 sw_comp_cons = fp->rx_comp_cons;
439 sw_comp_prod = fp->rx_comp_prod;
440
441 /* Memory barrier necessary as speculative reads of the rx
442 * buffer can be ahead of the index in the status block
443 */
444 rmb();
445
446 DP(NETIF_MSG_RX_STATUS,
447 "queue[%d]: hw_comp_cons %u sw_comp_cons %u\n",
448 fp->index, hw_comp_cons, sw_comp_cons);
449
450 while (sw_comp_cons != hw_comp_cons) {
451 struct sw_rx_bd *rx_buf = NULL;
452 struct sk_buff *skb;
453 union eth_rx_cqe *cqe;
454 u8 cqe_fp_flags;
455 u16 len, pad;
456
457 comp_ring_cons = RCQ_BD(sw_comp_cons);
458 bd_prod = RX_BD(bd_prod);
459 bd_cons = RX_BD(bd_cons);
460
461 /* Prefetch the page containing the BD descriptor
462 at producer's index. It will be needed when new skb is
463 allocated */
464 prefetch((void *)(PAGE_ALIGN((unsigned long)
465 (&fp->rx_desc_ring[bd_prod])) -
466 PAGE_SIZE + 1));
467
468 cqe = &fp->rx_comp_ring[comp_ring_cons];
469 cqe_fp_flags = cqe->fast_path_cqe.type_error_flags;
470
471 DP(NETIF_MSG_RX_STATUS, "CQE type %x err %x status %x"
472 " queue %x vlan %x len %u\n", CQE_TYPE(cqe_fp_flags),
473 cqe_fp_flags, cqe->fast_path_cqe.status_flags,
474 le32_to_cpu(cqe->fast_path_cqe.rss_hash_result),
475 le16_to_cpu(cqe->fast_path_cqe.vlan_tag),
476 le16_to_cpu(cqe->fast_path_cqe.pkt_len));
477
478 /* is this a slowpath msg? */
479 if (unlikely(CQE_TYPE(cqe_fp_flags))) {
480 bnx2x_sp_event(fp, cqe);
481 goto next_cqe;
482
483 /* this is an rx packet */
484 } else {
485 rx_buf = &fp->rx_buf_ring[bd_cons];
486 skb = rx_buf->skb;
487 prefetch(skb);
488 len = le16_to_cpu(cqe->fast_path_cqe.pkt_len);
489 pad = cqe->fast_path_cqe.placement_offset;
490
Vladislav Zolotarovfe78d262010-10-17 23:02:20 +0000491 /* - If CQE is marked both TPA_START and TPA_END it is
492 * a non-TPA CQE.
493 * - FP CQE will always have either TPA_START or/and
494 * TPA_STOP flags set.
495 */
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000496 if ((!fp->disable_tpa) &&
497 (TPA_TYPE(cqe_fp_flags) !=
498 (TPA_TYPE_START | TPA_TYPE_END))) {
499 u16 queue = cqe->fast_path_cqe.queue_index;
500
501 if (TPA_TYPE(cqe_fp_flags) == TPA_TYPE_START) {
502 DP(NETIF_MSG_RX_STATUS,
503 "calling tpa_start on queue %d\n",
504 queue);
505
506 bnx2x_tpa_start(fp, queue, skb,
507 bd_cons, bd_prod);
508
509 /* Set Toeplitz hash for an LRO skb */
510 bnx2x_set_skb_rxhash(bp, cqe, skb);
511
512 goto next_rx;
Vladislav Zolotarovfe78d262010-10-17 23:02:20 +0000513 } else { /* TPA_STOP */
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000514 DP(NETIF_MSG_RX_STATUS,
515 "calling tpa_stop on queue %d\n",
516 queue);
517
518 if (!BNX2X_RX_SUM_FIX(cqe))
519 BNX2X_ERR("STOP on none TCP "
520 "data\n");
521
522 /* This is a size of the linear data
523 on this skb */
524 len = le16_to_cpu(cqe->fast_path_cqe.
525 len_on_bd);
526 bnx2x_tpa_stop(bp, fp, queue, pad,
527 len, cqe, comp_ring_cons);
528#ifdef BNX2X_STOP_ON_ERROR
529 if (bp->panic)
530 return 0;
531#endif
532
533 bnx2x_update_sge_prod(fp,
534 &cqe->fast_path_cqe);
535 goto next_cqe;
536 }
537 }
538
539 dma_sync_single_for_device(&bp->pdev->dev,
540 dma_unmap_addr(rx_buf, mapping),
541 pad + RX_COPY_THRESH,
542 DMA_FROM_DEVICE);
Dmitry Kravkov217de5a2010-10-06 03:31:20 +0000543 prefetch(((char *)(skb)) + L1_CACHE_BYTES);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000544
545 /* is this an error packet? */
546 if (unlikely(cqe_fp_flags & ETH_RX_ERROR_FALGS)) {
547 DP(NETIF_MSG_RX_ERR,
548 "ERROR flags %x rx packet %u\n",
549 cqe_fp_flags, sw_comp_cons);
550 fp->eth_q_stats.rx_err_discard_pkt++;
551 goto reuse_rx;
552 }
553
554 /* Since we don't have a jumbo ring
555 * copy small packets if mtu > 1500
556 */
557 if ((bp->dev->mtu > ETH_MAX_PACKET_SIZE) &&
558 (len <= RX_COPY_THRESH)) {
559 struct sk_buff *new_skb;
560
561 new_skb = netdev_alloc_skb(bp->dev,
562 len + pad);
563 if (new_skb == NULL) {
564 DP(NETIF_MSG_RX_ERR,
565 "ERROR packet dropped "
566 "because of alloc failure\n");
567 fp->eth_q_stats.rx_skb_alloc_failed++;
568 goto reuse_rx;
569 }
570
571 /* aligned copy */
572 skb_copy_from_linear_data_offset(skb, pad,
573 new_skb->data + pad, len);
574 skb_reserve(new_skb, pad);
575 skb_put(new_skb, len);
576
Dmitry Kravkov749a8502010-10-06 03:29:05 +0000577 bnx2x_reuse_rx_skb(fp, bd_cons, bd_prod);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000578
579 skb = new_skb;
580
581 } else
582 if (likely(bnx2x_alloc_rx_skb(bp, fp, bd_prod) == 0)) {
583 dma_unmap_single(&bp->pdev->dev,
584 dma_unmap_addr(rx_buf, mapping),
585 bp->rx_buf_size,
586 DMA_FROM_DEVICE);
587 skb_reserve(skb, pad);
588 skb_put(skb, len);
589
590 } else {
591 DP(NETIF_MSG_RX_ERR,
592 "ERROR packet dropped because "
593 "of alloc failure\n");
594 fp->eth_q_stats.rx_skb_alloc_failed++;
595reuse_rx:
Dmitry Kravkov749a8502010-10-06 03:29:05 +0000596 bnx2x_reuse_rx_skb(fp, bd_cons, bd_prod);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000597 goto next_rx;
598 }
599
600 skb->protocol = eth_type_trans(skb, bp->dev);
601
602 /* Set Toeplitz hash for a none-LRO skb */
603 bnx2x_set_skb_rxhash(bp, cqe, skb);
604
Eric Dumazetbc8acf22010-09-02 13:07:41 -0700605 skb_checksum_none_assert(skb);
Dmitry Kravkovf85582f2010-10-06 03:34:21 +0000606
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000607 if (bp->rx_csum) {
608 if (likely(BNX2X_RX_CSUM_OK(cqe)))
609 skb->ip_summed = CHECKSUM_UNNECESSARY;
610 else
611 fp->eth_q_stats.hw_csum_err++;
612 }
613 }
614
615 skb_record_rx_queue(skb, fp->index);
616
Hao Zheng9bcc0892010-10-20 13:56:11 +0000617 if (le16_to_cpu(cqe->fast_path_cqe.pars_flags.flags) &
618 PARSING_FLAGS_VLAN)
619 __vlan_hwaccel_put_tag(skb,
620 le16_to_cpu(cqe->fast_path_cqe.vlan_tag));
621 napi_gro_receive(&fp->napi, skb);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000622
623
624next_rx:
625 rx_buf->skb = NULL;
626
627 bd_cons = NEXT_RX_IDX(bd_cons);
628 bd_prod = NEXT_RX_IDX(bd_prod);
629 bd_prod_fw = NEXT_RX_IDX(bd_prod_fw);
630 rx_pkt++;
631next_cqe:
632 sw_comp_prod = NEXT_RCQ_IDX(sw_comp_prod);
633 sw_comp_cons = NEXT_RCQ_IDX(sw_comp_cons);
634
635 if (rx_pkt == budget)
636 break;
637 } /* while */
638
639 fp->rx_bd_cons = bd_cons;
640 fp->rx_bd_prod = bd_prod_fw;
641 fp->rx_comp_cons = sw_comp_cons;
642 fp->rx_comp_prod = sw_comp_prod;
643
644 /* Update producers */
645 bnx2x_update_rx_prod(bp, fp, bd_prod_fw, sw_comp_prod,
646 fp->rx_sge_prod);
647
648 fp->rx_pkt += rx_pkt;
649 fp->rx_calls++;
650
651 return rx_pkt;
652}
653
654static irqreturn_t bnx2x_msix_fp_int(int irq, void *fp_cookie)
655{
656 struct bnx2x_fastpath *fp = fp_cookie;
657 struct bnx2x *bp = fp->bp;
658
659 /* Return here if interrupt is disabled */
660 if (unlikely(atomic_read(&bp->intr_sem) != 0)) {
661 DP(NETIF_MSG_INTR, "called but intr_sem not 0, returning\n");
662 return IRQ_HANDLED;
663 }
664
Dmitry Kravkov523224a2010-10-06 03:23:26 +0000665 DP(BNX2X_MSG_FP, "got an MSI-X interrupt on IDX:SB "
666 "[fp %d fw_sd %d igusb %d]\n",
667 fp->index, fp->fw_sb_id, fp->igu_sb_id);
668 bnx2x_ack_sb(bp, fp->igu_sb_id, USTORM_ID, 0, IGU_INT_DISABLE, 0);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000669
670#ifdef BNX2X_STOP_ON_ERROR
671 if (unlikely(bp->panic))
672 return IRQ_HANDLED;
673#endif
674
675 /* Handle Rx and Tx according to MSI-X vector */
676 prefetch(fp->rx_cons_sb);
677 prefetch(fp->tx_cons_sb);
Dmitry Kravkov523224a2010-10-06 03:23:26 +0000678 prefetch(&fp->sb_running_index[SM_RX_ID]);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000679 napi_schedule(&bnx2x_fp(bp, fp->index, napi));
680
681 return IRQ_HANDLED;
682}
683
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000684/* HW Lock for shared dual port PHYs */
685void bnx2x_acquire_phy_lock(struct bnx2x *bp)
686{
687 mutex_lock(&bp->port.phy_mutex);
688
689 if (bp->port.need_hw_lock)
690 bnx2x_acquire_hw_lock(bp, HW_LOCK_RESOURCE_MDIO);
691}
692
693void bnx2x_release_phy_lock(struct bnx2x *bp)
694{
695 if (bp->port.need_hw_lock)
696 bnx2x_release_hw_lock(bp, HW_LOCK_RESOURCE_MDIO);
697
698 mutex_unlock(&bp->port.phy_mutex);
699}
700
Dmitry Kravkov0793f83f2010-12-01 12:39:28 -0800701/* calculates MF speed according to current linespeed and MF configuration */
702u16 bnx2x_get_mf_speed(struct bnx2x *bp)
703{
704 u16 line_speed = bp->link_vars.line_speed;
705 if (IS_MF(bp)) {
706 u16 maxCfg = (bp->mf_config[BP_VN(bp)] &
707 FUNC_MF_CFG_MAX_BW_MASK) >>
708 FUNC_MF_CFG_MAX_BW_SHIFT;
709 /* Calculate the current MAX line speed limit for the DCC
710 * capable devices
711 */
712 if (IS_MF_SD(bp)) {
713 u16 vn_max_rate = maxCfg * 100;
714
715 if (vn_max_rate < line_speed)
716 line_speed = vn_max_rate;
717 } else /* IS_MF_SI(bp)) */
718 line_speed = (line_speed * maxCfg) / 100;
719 }
720
721 return line_speed;
722}
723
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000724void bnx2x_link_report(struct bnx2x *bp)
725{
726 if (bp->flags & MF_FUNC_DIS) {
727 netif_carrier_off(bp->dev);
728 netdev_err(bp->dev, "NIC Link is Down\n");
729 return;
730 }
731
732 if (bp->link_vars.link_up) {
733 u16 line_speed;
734
735 if (bp->state == BNX2X_STATE_OPEN)
736 netif_carrier_on(bp->dev);
737 netdev_info(bp->dev, "NIC Link is Up, ");
738
Dmitry Kravkov0793f83f2010-12-01 12:39:28 -0800739 line_speed = bnx2x_get_mf_speed(bp);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000740
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000741 pr_cont("%d Mbps ", line_speed);
742
743 if (bp->link_vars.duplex == DUPLEX_FULL)
744 pr_cont("full duplex");
745 else
746 pr_cont("half duplex");
747
748 if (bp->link_vars.flow_ctrl != BNX2X_FLOW_CTRL_NONE) {
749 if (bp->link_vars.flow_ctrl & BNX2X_FLOW_CTRL_RX) {
750 pr_cont(", receive ");
751 if (bp->link_vars.flow_ctrl &
752 BNX2X_FLOW_CTRL_TX)
753 pr_cont("& transmit ");
754 } else {
755 pr_cont(", transmit ");
756 }
757 pr_cont("flow control ON");
758 }
759 pr_cont("\n");
760
761 } else { /* link_down */
762 netif_carrier_off(bp->dev);
763 netdev_err(bp->dev, "NIC Link is Down\n");
764 }
765}
766
Dmitry Kravkov523224a2010-10-06 03:23:26 +0000767/* Returns the number of actually allocated BDs */
768static inline int bnx2x_alloc_rx_bds(struct bnx2x_fastpath *fp,
769 int rx_ring_size)
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000770{
Dmitry Kravkov523224a2010-10-06 03:23:26 +0000771 struct bnx2x *bp = fp->bp;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000772 u16 ring_prod, cqe_ring_prod;
Dmitry Kravkov523224a2010-10-06 03:23:26 +0000773 int i;
774
775 fp->rx_comp_cons = 0;
776 cqe_ring_prod = ring_prod = 0;
777 for (i = 0; i < rx_ring_size; i++) {
778 if (bnx2x_alloc_rx_skb(bp, fp, ring_prod) < 0) {
779 BNX2X_ERR("was only able to allocate "
780 "%d rx skbs on queue[%d]\n", i, fp->index);
781 fp->eth_q_stats.rx_skb_alloc_failed++;
782 break;
783 }
784 ring_prod = NEXT_RX_IDX(ring_prod);
785 cqe_ring_prod = NEXT_RCQ_IDX(cqe_ring_prod);
786 WARN_ON(ring_prod <= i);
787 }
788
789 fp->rx_bd_prod = ring_prod;
790 /* Limit the CQE producer by the CQE ring size */
791 fp->rx_comp_prod = min_t(u16, NUM_RCQ_RINGS*RCQ_DESC_CNT,
792 cqe_ring_prod);
793 fp->rx_pkt = fp->rx_calls = 0;
794
795 return i;
796}
797
798static inline void bnx2x_alloc_rx_bd_ring(struct bnx2x_fastpath *fp)
799{
800 struct bnx2x *bp = fp->bp;
Dmitry Kravkov25141582010-09-12 05:48:28 +0000801 int rx_ring_size = bp->rx_ring_size ? bp->rx_ring_size :
802 MAX_RX_AVAIL/bp->num_queues;
803
804 rx_ring_size = max_t(int, MIN_RX_AVAIL, rx_ring_size);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000805
Dmitry Kravkov523224a2010-10-06 03:23:26 +0000806 bnx2x_alloc_rx_bds(fp, rx_ring_size);
807
808 /* Warning!
809 * this will generate an interrupt (to the TSTORM)
810 * must only be done after chip is initialized
811 */
812 bnx2x_update_rx_prod(bp, fp, fp->rx_bd_prod, fp->rx_comp_prod,
813 fp->rx_sge_prod);
814}
815
816void bnx2x_init_rx_rings(struct bnx2x *bp)
817{
818 int func = BP_FUNC(bp);
819 int max_agg_queues = CHIP_IS_E1(bp) ? ETH_MAX_AGGREGATION_QUEUES_E1 :
820 ETH_MAX_AGGREGATION_QUEUES_E1H;
821 u16 ring_prod;
822 int i, j;
823
824 bp->rx_buf_size = bp->dev->mtu + ETH_OVREHEAD + BNX2X_RX_ALIGN +
Dmitry Kravkovc8e4f482010-10-17 23:09:30 +0000825 IP_HEADER_ALIGNMENT_PADDING;
Dmitry Kravkov523224a2010-10-06 03:23:26 +0000826
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000827 DP(NETIF_MSG_IFUP,
828 "mtu %d rx_buf_size %d\n", bp->dev->mtu, bp->rx_buf_size);
829
Dmitry Kravkov523224a2010-10-06 03:23:26 +0000830 for_each_queue(bp, j) {
831 struct bnx2x_fastpath *fp = &bp->fp[j];
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000832
Dmitry Kravkov523224a2010-10-06 03:23:26 +0000833 if (!fp->disable_tpa) {
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000834 for (i = 0; i < max_agg_queues; i++) {
835 fp->tpa_pool[i].skb =
836 netdev_alloc_skb(bp->dev, bp->rx_buf_size);
837 if (!fp->tpa_pool[i].skb) {
838 BNX2X_ERR("Failed to allocate TPA "
839 "skb pool for queue[%d] - "
840 "disabling TPA on this "
841 "queue!\n", j);
842 bnx2x_free_tpa_pool(bp, fp, i);
843 fp->disable_tpa = 1;
844 break;
845 }
846 dma_unmap_addr_set((struct sw_rx_bd *)
847 &bp->fp->tpa_pool[i],
848 mapping, 0);
849 fp->tpa_state[i] = BNX2X_TPA_STOP;
850 }
Dmitry Kravkov523224a2010-10-06 03:23:26 +0000851
852 /* "next page" elements initialization */
853 bnx2x_set_next_page_sgl(fp);
854
855 /* set SGEs bit mask */
856 bnx2x_init_sge_ring_bit_mask(fp);
857
858 /* Allocate SGEs and initialize the ring elements */
859 for (i = 0, ring_prod = 0;
860 i < MAX_RX_SGE_CNT*NUM_RX_SGE_PAGES; i++) {
861
862 if (bnx2x_alloc_rx_sge(bp, fp, ring_prod) < 0) {
863 BNX2X_ERR("was only able to allocate "
864 "%d rx sges\n", i);
865 BNX2X_ERR("disabling TPA for"
866 " queue[%d]\n", j);
867 /* Cleanup already allocated elements */
868 bnx2x_free_rx_sge_range(bp,
869 fp, ring_prod);
870 bnx2x_free_tpa_pool(bp,
871 fp, max_agg_queues);
872 fp->disable_tpa = 1;
873 ring_prod = 0;
874 break;
875 }
876 ring_prod = NEXT_SGE_IDX(ring_prod);
877 }
878
879 fp->rx_sge_prod = ring_prod;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000880 }
881 }
882
883 for_each_queue(bp, j) {
884 struct bnx2x_fastpath *fp = &bp->fp[j];
885
886 fp->rx_bd_cons = 0;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000887
Dmitry Kravkov523224a2010-10-06 03:23:26 +0000888 bnx2x_set_next_page_rx_bd(fp);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000889
890 /* CQ ring */
Dmitry Kravkov523224a2010-10-06 03:23:26 +0000891 bnx2x_set_next_page_rx_cq(fp);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000892
893 /* Allocate BDs and initialize BD ring */
Dmitry Kravkov523224a2010-10-06 03:23:26 +0000894 bnx2x_alloc_rx_bd_ring(fp);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000895
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000896 if (j != 0)
897 continue;
898
Dmitry Kravkovf2e08992010-10-06 03:28:26 +0000899 if (!CHIP_IS_E2(bp)) {
900 REG_WR(bp, BAR_USTRORM_INTMEM +
901 USTORM_MEM_WORKAROUND_ADDRESS_OFFSET(func),
902 U64_LO(fp->rx_comp_mapping));
903 REG_WR(bp, BAR_USTRORM_INTMEM +
904 USTORM_MEM_WORKAROUND_ADDRESS_OFFSET(func) + 4,
905 U64_HI(fp->rx_comp_mapping));
906 }
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000907 }
908}
Dmitry Kravkovf85582f2010-10-06 03:34:21 +0000909
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000910static void bnx2x_free_tx_skbs(struct bnx2x *bp)
911{
912 int i;
913
914 for_each_queue(bp, i) {
915 struct bnx2x_fastpath *fp = &bp->fp[i];
916
917 u16 bd_cons = fp->tx_bd_cons;
918 u16 sw_prod = fp->tx_pkt_prod;
919 u16 sw_cons = fp->tx_pkt_cons;
920
921 while (sw_cons != sw_prod) {
922 bd_cons = bnx2x_free_tx_pkt(bp, fp, TX_BD(sw_cons));
923 sw_cons++;
924 }
925 }
926}
927
928static void bnx2x_free_rx_skbs(struct bnx2x *bp)
929{
930 int i, j;
931
932 for_each_queue(bp, j) {
933 struct bnx2x_fastpath *fp = &bp->fp[j];
934
935 for (i = 0; i < NUM_RX_BD; i++) {
936 struct sw_rx_bd *rx_buf = &fp->rx_buf_ring[i];
937 struct sk_buff *skb = rx_buf->skb;
938
939 if (skb == NULL)
940 continue;
941
942 dma_unmap_single(&bp->pdev->dev,
943 dma_unmap_addr(rx_buf, mapping),
944 bp->rx_buf_size, DMA_FROM_DEVICE);
945
946 rx_buf->skb = NULL;
947 dev_kfree_skb(skb);
948 }
949 if (!fp->disable_tpa)
950 bnx2x_free_tpa_pool(bp, fp, CHIP_IS_E1(bp) ?
951 ETH_MAX_AGGREGATION_QUEUES_E1 :
952 ETH_MAX_AGGREGATION_QUEUES_E1H);
953 }
954}
955
956void bnx2x_free_skbs(struct bnx2x *bp)
957{
958 bnx2x_free_tx_skbs(bp);
959 bnx2x_free_rx_skbs(bp);
960}
961
962static void bnx2x_free_msix_irqs(struct bnx2x *bp)
963{
964 int i, offset = 1;
965
966 free_irq(bp->msix_table[0].vector, bp->dev);
967 DP(NETIF_MSG_IFDOWN, "released sp irq (%d)\n",
968 bp->msix_table[0].vector);
969
970#ifdef BCM_CNIC
971 offset++;
972#endif
973 for_each_queue(bp, i) {
974 DP(NETIF_MSG_IFDOWN, "about to release fp #%d->%d irq "
975 "state %x\n", i, bp->msix_table[i + offset].vector,
976 bnx2x_fp(bp, i, state));
977
978 free_irq(bp->msix_table[i + offset].vector, &bp->fp[i]);
979 }
980}
981
Dmitry Kravkovd6214d72010-10-06 03:32:10 +0000982void bnx2x_free_irq(struct bnx2x *bp)
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000983{
Dmitry Kravkovd6214d72010-10-06 03:32:10 +0000984 if (bp->flags & USING_MSIX_FLAG)
985 bnx2x_free_msix_irqs(bp);
986 else if (bp->flags & USING_MSI_FLAG)
987 free_irq(bp->pdev->irq, bp->dev);
988 else
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000989 free_irq(bp->pdev->irq, bp->dev);
990}
991
Dmitry Kravkovd6214d72010-10-06 03:32:10 +0000992int bnx2x_enable_msix(struct bnx2x *bp)
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000993{
Dmitry Kravkovd6214d72010-10-06 03:32:10 +0000994 int msix_vec = 0, i, rc, req_cnt;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +0000995
Dmitry Kravkovd6214d72010-10-06 03:32:10 +0000996 bp->msix_table[msix_vec].entry = msix_vec;
997 DP(NETIF_MSG_IFUP, "msix_table[0].entry = %d (slowpath)\n",
998 bp->msix_table[0].entry);
999 msix_vec++;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001000
1001#ifdef BCM_CNIC
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001002 bp->msix_table[msix_vec].entry = msix_vec;
1003 DP(NETIF_MSG_IFUP, "msix_table[%d].entry = %d (CNIC)\n",
1004 bp->msix_table[msix_vec].entry, bp->msix_table[msix_vec].entry);
1005 msix_vec++;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001006#endif
1007 for_each_queue(bp, i) {
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001008 bp->msix_table[msix_vec].entry = msix_vec;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001009 DP(NETIF_MSG_IFUP, "msix_table[%d].entry = %d "
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001010 "(fastpath #%u)\n", msix_vec, msix_vec, i);
1011 msix_vec++;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001012 }
1013
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001014 req_cnt = BNX2X_NUM_QUEUES(bp) + CNIC_CONTEXT_USE + 1;
1015
1016 rc = pci_enable_msix(bp->pdev, &bp->msix_table[0], req_cnt);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001017
1018 /*
1019 * reconfigure number of tx/rx queues according to available
1020 * MSI-X vectors
1021 */
1022 if (rc >= BNX2X_MIN_MSIX_VEC_CNT) {
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001023 /* how less vectors we will have? */
1024 int diff = req_cnt - rc;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001025
1026 DP(NETIF_MSG_IFUP,
1027 "Trying to use less MSI-X vectors: %d\n", rc);
1028
1029 rc = pci_enable_msix(bp->pdev, &bp->msix_table[0], rc);
1030
1031 if (rc) {
1032 DP(NETIF_MSG_IFUP,
1033 "MSI-X is not attainable rc %d\n", rc);
1034 return rc;
1035 }
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001036 /*
1037 * decrease number of queues by number of unallocated entries
1038 */
1039 bp->num_queues -= diff;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001040
1041 DP(NETIF_MSG_IFUP, "New queue configuration set: %d\n",
1042 bp->num_queues);
1043 } else if (rc) {
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001044 /* fall to INTx if not enough memory */
1045 if (rc == -ENOMEM)
1046 bp->flags |= DISABLE_MSI_FLAG;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001047 DP(NETIF_MSG_IFUP, "MSI-X is not attainable rc %d\n", rc);
1048 return rc;
1049 }
1050
1051 bp->flags |= USING_MSIX_FLAG;
1052
1053 return 0;
1054}
1055
1056static int bnx2x_req_msix_irqs(struct bnx2x *bp)
1057{
1058 int i, rc, offset = 1;
1059
1060 rc = request_irq(bp->msix_table[0].vector, bnx2x_msix_sp_int, 0,
1061 bp->dev->name, bp->dev);
1062 if (rc) {
1063 BNX2X_ERR("request sp irq failed\n");
1064 return -EBUSY;
1065 }
1066
1067#ifdef BCM_CNIC
1068 offset++;
1069#endif
1070 for_each_queue(bp, i) {
1071 struct bnx2x_fastpath *fp = &bp->fp[i];
1072 snprintf(fp->name, sizeof(fp->name), "%s-fp-%d",
1073 bp->dev->name, i);
1074
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001075 rc = request_irq(bp->msix_table[offset].vector,
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001076 bnx2x_msix_fp_int, 0, fp->name, fp);
1077 if (rc) {
1078 BNX2X_ERR("request fp #%d irq failed rc %d\n", i, rc);
1079 bnx2x_free_msix_irqs(bp);
1080 return -EBUSY;
1081 }
1082
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001083 offset++;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001084 fp->state = BNX2X_FP_STATE_IRQ;
1085 }
1086
1087 i = BNX2X_NUM_QUEUES(bp);
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001088 offset = 1 + CNIC_CONTEXT_USE;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001089 netdev_info(bp->dev, "using MSI-X IRQs: sp %d fp[%d] %d"
1090 " ... fp[%d] %d\n",
1091 bp->msix_table[0].vector,
1092 0, bp->msix_table[offset].vector,
1093 i - 1, bp->msix_table[offset + i - 1].vector);
1094
1095 return 0;
1096}
1097
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001098int bnx2x_enable_msi(struct bnx2x *bp)
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001099{
1100 int rc;
1101
1102 rc = pci_enable_msi(bp->pdev);
1103 if (rc) {
1104 DP(NETIF_MSG_IFUP, "MSI is not attainable\n");
1105 return -1;
1106 }
1107 bp->flags |= USING_MSI_FLAG;
1108
1109 return 0;
1110}
1111
1112static int bnx2x_req_irq(struct bnx2x *bp)
1113{
1114 unsigned long flags;
1115 int rc;
1116
1117 if (bp->flags & USING_MSI_FLAG)
1118 flags = 0;
1119 else
1120 flags = IRQF_SHARED;
1121
1122 rc = request_irq(bp->pdev->irq, bnx2x_interrupt, flags,
1123 bp->dev->name, bp->dev);
1124 if (!rc)
1125 bnx2x_fp(bp, 0, state) = BNX2X_FP_STATE_IRQ;
1126
1127 return rc;
1128}
1129
1130static void bnx2x_napi_enable(struct bnx2x *bp)
1131{
1132 int i;
1133
1134 for_each_queue(bp, i)
1135 napi_enable(&bnx2x_fp(bp, i, napi));
1136}
1137
1138static void bnx2x_napi_disable(struct bnx2x *bp)
1139{
1140 int i;
1141
1142 for_each_queue(bp, i)
1143 napi_disable(&bnx2x_fp(bp, i, napi));
1144}
1145
1146void bnx2x_netif_start(struct bnx2x *bp)
1147{
1148 int intr_sem;
1149
1150 intr_sem = atomic_dec_and_test(&bp->intr_sem);
1151 smp_wmb(); /* Ensure that bp->intr_sem update is SMP-safe */
1152
1153 if (intr_sem) {
1154 if (netif_running(bp->dev)) {
1155 bnx2x_napi_enable(bp);
1156 bnx2x_int_enable(bp);
1157 if (bp->state == BNX2X_STATE_OPEN)
1158 netif_tx_wake_all_queues(bp->dev);
1159 }
1160 }
1161}
1162
1163void bnx2x_netif_stop(struct bnx2x *bp, int disable_hw)
1164{
1165 bnx2x_int_disable_sync(bp, disable_hw);
1166 bnx2x_napi_disable(bp);
1167 netif_tx_disable(bp->dev);
1168}
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001169
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001170void bnx2x_set_num_queues(struct bnx2x *bp)
1171{
1172 switch (bp->multi_mode) {
1173 case ETH_RSS_MODE_DISABLED:
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001174 bp->num_queues = 1;
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001175 break;
1176 case ETH_RSS_MODE_REGULAR:
1177 bp->num_queues = bnx2x_calc_num_queues(bp);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001178 break;
Dmitry Kravkovf85582f2010-10-06 03:34:21 +00001179
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001180 default:
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001181 bp->num_queues = 1;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001182 break;
1183 }
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001184}
1185
Dmitry Kravkov6891dd22010-08-03 21:49:40 +00001186static void bnx2x_release_firmware(struct bnx2x *bp)
1187{
1188 kfree(bp->init_ops_offsets);
1189 kfree(bp->init_ops);
1190 kfree(bp->init_data);
1191 release_firmware(bp->firmware);
1192}
1193
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001194/* must be called with rtnl_lock */
1195int bnx2x_nic_load(struct bnx2x *bp, int load_mode)
1196{
1197 u32 load_code;
1198 int i, rc;
1199
Dmitry Kravkov6891dd22010-08-03 21:49:40 +00001200 /* Set init arrays */
1201 rc = bnx2x_init_firmware(bp);
1202 if (rc) {
1203 BNX2X_ERR("Error loading firmware\n");
1204 return rc;
1205 }
1206
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001207#ifdef BNX2X_STOP_ON_ERROR
1208 if (unlikely(bp->panic))
1209 return -EPERM;
1210#endif
1211
1212 bp->state = BNX2X_STATE_OPENING_WAIT4_LOAD;
1213
Dmitry Kravkov523224a2010-10-06 03:23:26 +00001214 /* must be called before memory allocation and HW init */
1215 bnx2x_ilt_set_info(bp);
1216
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001217 if (bnx2x_alloc_mem(bp))
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001218 return -ENOMEM;
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001219
1220 netif_set_real_num_tx_queues(bp->dev, bp->num_queues);
1221 rc = netif_set_real_num_rx_queues(bp->dev, bp->num_queues);
1222 if (rc) {
1223 BNX2X_ERR("Unable to update real_num_rx_queues\n");
1224 goto load_error0;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001225 }
1226
1227 for_each_queue(bp, i)
1228 bnx2x_fp(bp, i, disable_tpa) =
1229 ((bp->flags & TPA_ENABLE_FLAG) == 0);
1230
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001231 bnx2x_napi_enable(bp);
1232
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001233 /* Send LOAD_REQUEST command to MCP
1234 Returns the type of LOAD command:
1235 if it is the first port to be initialized
1236 common blocks should be initialized, otherwise - not
1237 */
1238 if (!BP_NOMCP(bp)) {
Yaniv Rosnera22f0782010-09-07 11:41:20 +00001239 load_code = bnx2x_fw_command(bp, DRV_MSG_CODE_LOAD_REQ, 0);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001240 if (!load_code) {
1241 BNX2X_ERR("MCP response failure, aborting\n");
1242 rc = -EBUSY;
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001243 goto load_error1;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001244 }
1245 if (load_code == FW_MSG_CODE_DRV_LOAD_REFUSED) {
1246 rc = -EBUSY; /* other port in diagnostic mode */
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001247 goto load_error1;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001248 }
1249
1250 } else {
Dmitry Kravkovf2e08992010-10-06 03:28:26 +00001251 int path = BP_PATH(bp);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001252 int port = BP_PORT(bp);
1253
Dmitry Kravkovf2e08992010-10-06 03:28:26 +00001254 DP(NETIF_MSG_IFUP, "NO MCP - load counts[%d] %d, %d, %d\n",
1255 path, load_count[path][0], load_count[path][1],
1256 load_count[path][2]);
1257 load_count[path][0]++;
1258 load_count[path][1 + port]++;
1259 DP(NETIF_MSG_IFUP, "NO MCP - new load counts[%d] %d, %d, %d\n",
1260 path, load_count[path][0], load_count[path][1],
1261 load_count[path][2]);
1262 if (load_count[path][0] == 1)
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001263 load_code = FW_MSG_CODE_DRV_LOAD_COMMON;
Dmitry Kravkovf2e08992010-10-06 03:28:26 +00001264 else if (load_count[path][1 + port] == 1)
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001265 load_code = FW_MSG_CODE_DRV_LOAD_PORT;
1266 else
1267 load_code = FW_MSG_CODE_DRV_LOAD_FUNCTION;
1268 }
1269
1270 if ((load_code == FW_MSG_CODE_DRV_LOAD_COMMON) ||
Dmitry Kravkovf2e08992010-10-06 03:28:26 +00001271 (load_code == FW_MSG_CODE_DRV_LOAD_COMMON_CHIP) ||
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001272 (load_code == FW_MSG_CODE_DRV_LOAD_PORT))
1273 bp->port.pmf = 1;
1274 else
1275 bp->port.pmf = 0;
1276 DP(NETIF_MSG_LINK, "pmf %d\n", bp->port.pmf);
1277
1278 /* Initialize HW */
1279 rc = bnx2x_init_hw(bp, load_code);
1280 if (rc) {
1281 BNX2X_ERR("HW init failed, aborting\n");
Yaniv Rosnera22f0782010-09-07 11:41:20 +00001282 bnx2x_fw_command(bp, DRV_MSG_CODE_LOAD_DONE, 0);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001283 goto load_error2;
1284 }
1285
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001286 /* Connect to IRQs */
1287 rc = bnx2x_setup_irqs(bp);
Dmitry Kravkov523224a2010-10-06 03:23:26 +00001288 if (rc) {
1289 bnx2x_fw_command(bp, DRV_MSG_CODE_LOAD_DONE, 0);
1290 goto load_error2;
1291 }
1292
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001293 /* Setup NIC internals and enable interrupts */
1294 bnx2x_nic_init(bp, load_code);
1295
Dmitry Kravkovf2e08992010-10-06 03:28:26 +00001296 if (((load_code == FW_MSG_CODE_DRV_LOAD_COMMON) ||
1297 (load_code == FW_MSG_CODE_DRV_LOAD_COMMON_CHIP)) &&
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001298 (bp->common.shmem2_base))
1299 SHMEM2_WR(bp, dcc_support,
1300 (SHMEM_DCC_SUPPORT_DISABLE_ENABLE_PF_TLV |
1301 SHMEM_DCC_SUPPORT_BANDWIDTH_ALLOCATION_TLV));
1302
1303 /* Send LOAD_DONE command to MCP */
1304 if (!BP_NOMCP(bp)) {
Yaniv Rosnera22f0782010-09-07 11:41:20 +00001305 load_code = bnx2x_fw_command(bp, DRV_MSG_CODE_LOAD_DONE, 0);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001306 if (!load_code) {
1307 BNX2X_ERR("MCP response failure, aborting\n");
1308 rc = -EBUSY;
1309 goto load_error3;
1310 }
1311 }
1312
1313 bp->state = BNX2X_STATE_OPENING_WAIT4_PORT;
1314
Dmitry Kravkov523224a2010-10-06 03:23:26 +00001315 rc = bnx2x_func_start(bp);
1316 if (rc) {
1317 BNX2X_ERR("Function start failed!\n");
1318#ifndef BNX2X_STOP_ON_ERROR
1319 goto load_error3;
1320#else
1321 bp->panic = 1;
1322 return -EBUSY;
1323#endif
1324 }
1325
1326 rc = bnx2x_setup_client(bp, &bp->fp[0], 1 /* Leading */);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001327 if (rc) {
1328 BNX2X_ERR("Setup leading failed!\n");
1329#ifndef BNX2X_STOP_ON_ERROR
1330 goto load_error3;
1331#else
1332 bp->panic = 1;
1333 return -EBUSY;
1334#endif
1335 }
1336
Dmitry Kravkovf2e08992010-10-06 03:28:26 +00001337 if (!CHIP_IS_E1(bp) &&
1338 (bp->mf_config[BP_VN(bp)] & FUNC_MF_CFG_FUNC_DISABLED)) {
1339 DP(NETIF_MSG_IFUP, "mf_cfg function disabled\n");
1340 bp->flags |= MF_FUNC_DIS;
1341 }
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001342
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001343#ifdef BCM_CNIC
Dmitry Kravkov523224a2010-10-06 03:23:26 +00001344 /* Enable Timer scan */
1345 REG_WR(bp, TM_REG_EN_LINEAR0_TIMER + BP_PORT(bp)*4, 1);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001346#endif
Dmitry Kravkovf85582f2010-10-06 03:34:21 +00001347
Dmitry Kravkov523224a2010-10-06 03:23:26 +00001348 for_each_nondefault_queue(bp, i) {
1349 rc = bnx2x_setup_client(bp, &bp->fp[i], 0);
1350 if (rc)
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001351#ifdef BCM_CNIC
Dmitry Kravkov523224a2010-10-06 03:23:26 +00001352 goto load_error4;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001353#else
Dmitry Kravkov523224a2010-10-06 03:23:26 +00001354 goto load_error3;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001355#endif
1356 }
1357
Dmitry Kravkov523224a2010-10-06 03:23:26 +00001358 /* Now when Clients are configured we are ready to work */
1359 bp->state = BNX2X_STATE_OPEN;
1360
1361 bnx2x_set_eth_mac(bp, 1);
1362
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001363 if (bp->port.pmf)
1364 bnx2x_initial_phy_init(bp, load_mode);
1365
1366 /* Start fast path */
1367 switch (load_mode) {
1368 case LOAD_NORMAL:
Dmitry Kravkov523224a2010-10-06 03:23:26 +00001369 /* Tx queue should be only reenabled */
1370 netif_tx_wake_all_queues(bp->dev);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001371 /* Initialize the receive filter. */
1372 bnx2x_set_rx_mode(bp->dev);
1373 break;
1374
1375 case LOAD_OPEN:
1376 netif_tx_start_all_queues(bp->dev);
Dmitry Kravkov523224a2010-10-06 03:23:26 +00001377 smp_mb__after_clear_bit();
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001378 /* Initialize the receive filter. */
1379 bnx2x_set_rx_mode(bp->dev);
1380 break;
1381
1382 case LOAD_DIAG:
1383 /* Initialize the receive filter. */
1384 bnx2x_set_rx_mode(bp->dev);
1385 bp->state = BNX2X_STATE_DIAG;
1386 break;
1387
1388 default:
1389 break;
1390 }
1391
1392 if (!bp->port.pmf)
1393 bnx2x__link_status_update(bp);
1394
1395 /* start the timer */
1396 mod_timer(&bp->timer, jiffies + bp->current_interval);
1397
1398#ifdef BCM_CNIC
1399 bnx2x_setup_cnic_irq_info(bp);
1400 if (bp->state == BNX2X_STATE_OPEN)
1401 bnx2x_cnic_notify(bp, CNIC_CTL_START_CMD);
1402#endif
1403 bnx2x_inc_load_cnt(bp);
1404
Dmitry Kravkov6891dd22010-08-03 21:49:40 +00001405 bnx2x_release_firmware(bp);
1406
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001407 return 0;
1408
1409#ifdef BCM_CNIC
1410load_error4:
1411 /* Disable Timer scan */
1412 REG_WR(bp, TM_REG_EN_LINEAR0_TIMER + BP_PORT(bp)*4, 0);
1413#endif
1414load_error3:
1415 bnx2x_int_disable_sync(bp, 1);
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001416
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001417 /* Free SKBs, SGEs, TPA pool and driver internals */
1418 bnx2x_free_skbs(bp);
1419 for_each_queue(bp, i)
1420 bnx2x_free_rx_sge_range(bp, bp->fp + i, NUM_RX_SGE);
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001421
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001422 /* Release IRQs */
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001423 bnx2x_free_irq(bp);
1424load_error2:
1425 if (!BP_NOMCP(bp)) {
1426 bnx2x_fw_command(bp, DRV_MSG_CODE_UNLOAD_REQ_WOL_MCP, 0);
1427 bnx2x_fw_command(bp, DRV_MSG_CODE_UNLOAD_DONE, 0);
1428 }
1429
1430 bp->port.pmf = 0;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001431load_error1:
1432 bnx2x_napi_disable(bp);
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001433load_error0:
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001434 bnx2x_free_mem(bp);
1435
Dmitry Kravkov6891dd22010-08-03 21:49:40 +00001436 bnx2x_release_firmware(bp);
1437
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001438 return rc;
1439}
1440
1441/* must be called with rtnl_lock */
1442int bnx2x_nic_unload(struct bnx2x *bp, int unload_mode)
1443{
1444 int i;
1445
1446 if (bp->state == BNX2X_STATE_CLOSED) {
1447 /* Interface has been removed - nothing to recover */
1448 bp->recovery_state = BNX2X_RECOVERY_DONE;
1449 bp->is_leader = 0;
1450 bnx2x_release_hw_lock(bp, HW_LOCK_RESOURCE_RESERVED_08);
1451 smp_wmb();
1452
1453 return -EINVAL;
1454 }
1455
1456#ifdef BCM_CNIC
1457 bnx2x_cnic_notify(bp, CNIC_CTL_STOP_CMD);
1458#endif
1459 bp->state = BNX2X_STATE_CLOSING_WAIT4_HALT;
1460
1461 /* Set "drop all" */
1462 bp->rx_mode = BNX2X_RX_MODE_NONE;
1463 bnx2x_set_storm_rx_mode(bp);
1464
Dmitry Kravkovf2e08992010-10-06 03:28:26 +00001465 /* Stop Tx */
1466 bnx2x_tx_disable(bp);
Dmitry Kravkovf85582f2010-10-06 03:34:21 +00001467
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001468 del_timer_sync(&bp->timer);
Dmitry Kravkovf85582f2010-10-06 03:34:21 +00001469
Dmitry Kravkovf2e08992010-10-06 03:28:26 +00001470 SHMEM_WR(bp, func_mb[BP_FW_MB_IDX(bp)].drv_pulse_mb,
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001471 (DRV_PULSE_ALWAYS_ALIVE | bp->fw_drv_pulse_wr_seq));
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001472
Dmitry Kravkovf85582f2010-10-06 03:34:21 +00001473 bnx2x_stats_handle(bp, STATS_EVENT_STOP);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001474
1475 /* Cleanup the chip if needed */
1476 if (unload_mode != UNLOAD_RECOVERY)
1477 bnx2x_chip_cleanup(bp, unload_mode);
Dmitry Kravkov523224a2010-10-06 03:23:26 +00001478 else {
1479 /* Disable HW interrupts, NAPI and Tx */
1480 bnx2x_netif_stop(bp, 1);
1481
1482 /* Release IRQs */
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001483 bnx2x_free_irq(bp);
Dmitry Kravkov523224a2010-10-06 03:23:26 +00001484 }
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001485
1486 bp->port.pmf = 0;
1487
1488 /* Free SKBs, SGEs, TPA pool and driver internals */
1489 bnx2x_free_skbs(bp);
1490 for_each_queue(bp, i)
1491 bnx2x_free_rx_sge_range(bp, bp->fp + i, NUM_RX_SGE);
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001492
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001493 bnx2x_free_mem(bp);
1494
1495 bp->state = BNX2X_STATE_CLOSED;
1496
1497 /* The last driver must disable a "close the gate" if there is no
1498 * parity attention or "process kill" pending.
1499 */
1500 if ((!bnx2x_dec_load_cnt(bp)) && (!bnx2x_chk_parity_attn(bp)) &&
1501 bnx2x_reset_is_done(bp))
1502 bnx2x_disable_close_the_gate(bp);
1503
1504 /* Reset MCP mail box sequence if there is on going recovery */
1505 if (unload_mode == UNLOAD_RECOVERY)
1506 bp->fw_seq = 0;
1507
1508 return 0;
1509}
Dmitry Kravkovf85582f2010-10-06 03:34:21 +00001510
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001511int bnx2x_set_power_state(struct bnx2x *bp, pci_power_t state)
1512{
1513 u16 pmcsr;
1514
Dmitry Kravkovadf5f6a2010-10-17 23:10:02 +00001515 /* If there is no power capability, silently succeed */
1516 if (!bp->pm_cap) {
1517 DP(NETIF_MSG_HW, "No power capability. Breaking.\n");
1518 return 0;
1519 }
1520
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001521 pci_read_config_word(bp->pdev, bp->pm_cap + PCI_PM_CTRL, &pmcsr);
1522
1523 switch (state) {
1524 case PCI_D0:
1525 pci_write_config_word(bp->pdev, bp->pm_cap + PCI_PM_CTRL,
1526 ((pmcsr & ~PCI_PM_CTRL_STATE_MASK) |
1527 PCI_PM_CTRL_PME_STATUS));
1528
1529 if (pmcsr & PCI_PM_CTRL_STATE_MASK)
1530 /* delay required during transition out of D3hot */
1531 msleep(20);
1532 break;
1533
1534 case PCI_D3hot:
1535 /* If there are other clients above don't
1536 shut down the power */
1537 if (atomic_read(&bp->pdev->enable_cnt) != 1)
1538 return 0;
1539 /* Don't shut down the power for emulation and FPGA */
1540 if (CHIP_REV_IS_SLOW(bp))
1541 return 0;
1542
1543 pmcsr &= ~PCI_PM_CTRL_STATE_MASK;
1544 pmcsr |= 3;
1545
1546 if (bp->wol)
1547 pmcsr |= PCI_PM_CTRL_PME_ENABLE;
1548
1549 pci_write_config_word(bp->pdev, bp->pm_cap + PCI_PM_CTRL,
1550 pmcsr);
1551
1552 /* No more memory access after this point until
1553 * device is brought back to D0.
1554 */
1555 break;
1556
1557 default:
1558 return -EINVAL;
1559 }
1560 return 0;
1561}
1562
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001563/*
1564 * net_device service functions
1565 */
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00001566int bnx2x_poll(struct napi_struct *napi, int budget)
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001567{
1568 int work_done = 0;
1569 struct bnx2x_fastpath *fp = container_of(napi, struct bnx2x_fastpath,
1570 napi);
1571 struct bnx2x *bp = fp->bp;
1572
1573 while (1) {
1574#ifdef BNX2X_STOP_ON_ERROR
1575 if (unlikely(bp->panic)) {
1576 napi_complete(napi);
1577 return 0;
1578 }
1579#endif
1580
1581 if (bnx2x_has_tx_work(fp))
1582 bnx2x_tx_int(fp);
1583
1584 if (bnx2x_has_rx_work(fp)) {
1585 work_done += bnx2x_rx_int(fp, budget - work_done);
1586
1587 /* must not complete if we consumed full budget */
1588 if (work_done >= budget)
1589 break;
1590 }
1591
1592 /* Fall out from the NAPI loop if needed */
1593 if (!(bnx2x_has_rx_work(fp) || bnx2x_has_tx_work(fp))) {
1594 bnx2x_update_fpsb_idx(fp);
Dmitry Kravkovf85582f2010-10-06 03:34:21 +00001595 /* bnx2x_has_rx_work() reads the status block,
1596 * thus we need to ensure that status block indices
1597 * have been actually read (bnx2x_update_fpsb_idx)
1598 * prior to this check (bnx2x_has_rx_work) so that
1599 * we won't write the "newer" value of the status block
1600 * to IGU (if there was a DMA right after
1601 * bnx2x_has_rx_work and if there is no rmb, the memory
1602 * reading (bnx2x_update_fpsb_idx) may be postponed
1603 * to right before bnx2x_ack_sb). In this case there
1604 * will never be another interrupt until there is
1605 * another update of the status block, while there
1606 * is still unhandled work.
1607 */
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001608 rmb();
1609
1610 if (!(bnx2x_has_rx_work(fp) || bnx2x_has_tx_work(fp))) {
1611 napi_complete(napi);
1612 /* Re-enable interrupts */
Dmitry Kravkov523224a2010-10-06 03:23:26 +00001613 DP(NETIF_MSG_HW,
1614 "Update index to %d\n", fp->fp_hc_idx);
1615 bnx2x_ack_sb(bp, fp->igu_sb_id, USTORM_ID,
1616 le16_to_cpu(fp->fp_hc_idx),
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001617 IGU_INT_ENABLE, 1);
1618 break;
1619 }
1620 }
1621 }
1622
1623 return work_done;
1624}
1625
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001626/* we split the first BD into headers and data BDs
1627 * to ease the pain of our fellow microcode engineers
1628 * we use one mapping for both BDs
1629 * So far this has only been observed to happen
1630 * in Other Operating Systems(TM)
1631 */
1632static noinline u16 bnx2x_tx_split(struct bnx2x *bp,
1633 struct bnx2x_fastpath *fp,
1634 struct sw_tx_bd *tx_buf,
1635 struct eth_tx_start_bd **tx_bd, u16 hlen,
1636 u16 bd_prod, int nbd)
1637{
1638 struct eth_tx_start_bd *h_tx_bd = *tx_bd;
1639 struct eth_tx_bd *d_tx_bd;
1640 dma_addr_t mapping;
1641 int old_len = le16_to_cpu(h_tx_bd->nbytes);
1642
1643 /* first fix first BD */
1644 h_tx_bd->nbd = cpu_to_le16(nbd);
1645 h_tx_bd->nbytes = cpu_to_le16(hlen);
1646
1647 DP(NETIF_MSG_TX_QUEUED, "TSO split header size is %d "
1648 "(%x:%x) nbd %d\n", h_tx_bd->nbytes, h_tx_bd->addr_hi,
1649 h_tx_bd->addr_lo, h_tx_bd->nbd);
1650
1651 /* now get a new data BD
1652 * (after the pbd) and fill it */
1653 bd_prod = TX_BD(NEXT_TX_IDX(bd_prod));
1654 d_tx_bd = &fp->tx_desc_ring[bd_prod].reg_bd;
1655
1656 mapping = HILO_U64(le32_to_cpu(h_tx_bd->addr_hi),
1657 le32_to_cpu(h_tx_bd->addr_lo)) + hlen;
1658
1659 d_tx_bd->addr_hi = cpu_to_le32(U64_HI(mapping));
1660 d_tx_bd->addr_lo = cpu_to_le32(U64_LO(mapping));
1661 d_tx_bd->nbytes = cpu_to_le16(old_len - hlen);
1662
1663 /* this marks the BD as one that has no individual mapping */
1664 tx_buf->flags |= BNX2X_TSO_SPLIT_BD;
1665
1666 DP(NETIF_MSG_TX_QUEUED,
1667 "TSO split data size is %d (%x:%x)\n",
1668 d_tx_bd->nbytes, d_tx_bd->addr_hi, d_tx_bd->addr_lo);
1669
1670 /* update tx_bd */
1671 *tx_bd = (struct eth_tx_start_bd *)d_tx_bd;
1672
1673 return bd_prod;
1674}
1675
1676static inline u16 bnx2x_csum_fix(unsigned char *t_header, u16 csum, s8 fix)
1677{
1678 if (fix > 0)
1679 csum = (u16) ~csum_fold(csum_sub(csum,
1680 csum_partial(t_header - fix, fix, 0)));
1681
1682 else if (fix < 0)
1683 csum = (u16) ~csum_fold(csum_add(csum,
1684 csum_partial(t_header, -fix, 0)));
1685
1686 return swab16(csum);
1687}
1688
1689static inline u32 bnx2x_xmit_type(struct bnx2x *bp, struct sk_buff *skb)
1690{
1691 u32 rc;
1692
1693 if (skb->ip_summed != CHECKSUM_PARTIAL)
1694 rc = XMIT_PLAIN;
1695
1696 else {
Hao Zhengd0d9d8e2010-11-11 13:47:58 +00001697 if (vlan_get_protocol(skb) == htons(ETH_P_IPV6)) {
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001698 rc = XMIT_CSUM_V6;
1699 if (ipv6_hdr(skb)->nexthdr == IPPROTO_TCP)
1700 rc |= XMIT_CSUM_TCP;
1701
1702 } else {
1703 rc = XMIT_CSUM_V4;
1704 if (ip_hdr(skb)->protocol == IPPROTO_TCP)
1705 rc |= XMIT_CSUM_TCP;
1706 }
1707 }
1708
Vladislav Zolotarov5892b9e2010-11-28 00:23:35 +00001709 if (skb_is_gso_v6(skb))
1710 rc |= XMIT_GSO_V6 | XMIT_CSUM_TCP | XMIT_CSUM_V6;
1711 else if (skb_is_gso(skb))
1712 rc |= XMIT_GSO_V4 | XMIT_CSUM_V4 | XMIT_CSUM_TCP;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001713
1714 return rc;
1715}
1716
1717#if (MAX_SKB_FRAGS >= MAX_FETCH_BD - 3)
1718/* check if packet requires linearization (packet is too fragmented)
1719 no need to check fragmentation if page size > 8K (there will be no
1720 violation to FW restrictions) */
1721static int bnx2x_pkt_req_lin(struct bnx2x *bp, struct sk_buff *skb,
1722 u32 xmit_type)
1723{
1724 int to_copy = 0;
1725 int hlen = 0;
1726 int first_bd_sz = 0;
1727
1728 /* 3 = 1 (for linear data BD) + 2 (for PBD and last BD) */
1729 if (skb_shinfo(skb)->nr_frags >= (MAX_FETCH_BD - 3)) {
1730
1731 if (xmit_type & XMIT_GSO) {
1732 unsigned short lso_mss = skb_shinfo(skb)->gso_size;
1733 /* Check if LSO packet needs to be copied:
1734 3 = 1 (for headers BD) + 2 (for PBD and last BD) */
1735 int wnd_size = MAX_FETCH_BD - 3;
1736 /* Number of windows to check */
1737 int num_wnds = skb_shinfo(skb)->nr_frags - wnd_size;
1738 int wnd_idx = 0;
1739 int frag_idx = 0;
1740 u32 wnd_sum = 0;
1741
1742 /* Headers length */
1743 hlen = (int)(skb_transport_header(skb) - skb->data) +
1744 tcp_hdrlen(skb);
1745
1746 /* Amount of data (w/o headers) on linear part of SKB*/
1747 first_bd_sz = skb_headlen(skb) - hlen;
1748
1749 wnd_sum = first_bd_sz;
1750
1751 /* Calculate the first sum - it's special */
1752 for (frag_idx = 0; frag_idx < wnd_size - 1; frag_idx++)
1753 wnd_sum +=
1754 skb_shinfo(skb)->frags[frag_idx].size;
1755
1756 /* If there was data on linear skb data - check it */
1757 if (first_bd_sz > 0) {
1758 if (unlikely(wnd_sum < lso_mss)) {
1759 to_copy = 1;
1760 goto exit_lbl;
1761 }
1762
1763 wnd_sum -= first_bd_sz;
1764 }
1765
1766 /* Others are easier: run through the frag list and
1767 check all windows */
1768 for (wnd_idx = 0; wnd_idx <= num_wnds; wnd_idx++) {
1769 wnd_sum +=
1770 skb_shinfo(skb)->frags[wnd_idx + wnd_size - 1].size;
1771
1772 if (unlikely(wnd_sum < lso_mss)) {
1773 to_copy = 1;
1774 break;
1775 }
1776 wnd_sum -=
1777 skb_shinfo(skb)->frags[wnd_idx].size;
1778 }
1779 } else {
1780 /* in non-LSO too fragmented packet should always
1781 be linearized */
1782 to_copy = 1;
1783 }
1784 }
1785
1786exit_lbl:
1787 if (unlikely(to_copy))
1788 DP(NETIF_MSG_TX_QUEUED,
1789 "Linearization IS REQUIRED for %s packet. "
1790 "num_frags %d hlen %d first_bd_sz %d\n",
1791 (xmit_type & XMIT_GSO) ? "LSO" : "non-LSO",
1792 skb_shinfo(skb)->nr_frags, hlen, first_bd_sz);
1793
1794 return to_copy;
1795}
1796#endif
1797
Dmitry Kravkovf2e08992010-10-06 03:28:26 +00001798static inline void bnx2x_set_pbd_gso_e2(struct sk_buff *skb,
1799 struct eth_tx_parse_bd_e2 *pbd,
1800 u32 xmit_type)
1801{
1802 pbd->parsing_data |= cpu_to_le16(skb_shinfo(skb)->gso_size) <<
1803 ETH_TX_PARSE_BD_E2_LSO_MSS_SHIFT;
1804 if ((xmit_type & XMIT_GSO_V6) &&
1805 (ipv6_hdr(skb)->nexthdr == NEXTHDR_IPV6))
1806 pbd->parsing_data |= ETH_TX_PARSE_BD_E2_IPV6_WITH_EXT_HDR;
1807}
1808
1809/**
1810 * Update PBD in GSO case.
1811 *
1812 * @param skb
1813 * @param tx_start_bd
1814 * @param pbd
1815 * @param xmit_type
1816 */
1817static inline void bnx2x_set_pbd_gso(struct sk_buff *skb,
1818 struct eth_tx_parse_bd_e1x *pbd,
1819 u32 xmit_type)
1820{
1821 pbd->lso_mss = cpu_to_le16(skb_shinfo(skb)->gso_size);
1822 pbd->tcp_send_seq = swab32(tcp_hdr(skb)->seq);
1823 pbd->tcp_flags = pbd_tcp_flags(skb);
1824
1825 if (xmit_type & XMIT_GSO_V4) {
1826 pbd->ip_id = swab16(ip_hdr(skb)->id);
1827 pbd->tcp_pseudo_csum =
1828 swab16(~csum_tcpudp_magic(ip_hdr(skb)->saddr,
1829 ip_hdr(skb)->daddr,
1830 0, IPPROTO_TCP, 0));
1831
1832 } else
1833 pbd->tcp_pseudo_csum =
1834 swab16(~csum_ipv6_magic(&ipv6_hdr(skb)->saddr,
1835 &ipv6_hdr(skb)->daddr,
1836 0, IPPROTO_TCP, 0));
1837
1838 pbd->global_data |= ETH_TX_PARSE_BD_E1X_PSEUDO_CS_WITHOUT_LEN;
1839}
Dmitry Kravkovf85582f2010-10-06 03:34:21 +00001840
Dmitry Kravkovf2e08992010-10-06 03:28:26 +00001841/**
1842 *
1843 * @param skb
1844 * @param tx_start_bd
1845 * @param pbd_e2
1846 * @param xmit_type
1847 *
1848 * @return header len
1849 */
1850static inline u8 bnx2x_set_pbd_csum_e2(struct bnx2x *bp, struct sk_buff *skb,
1851 struct eth_tx_parse_bd_e2 *pbd,
1852 u32 xmit_type)
1853{
1854 pbd->parsing_data |= cpu_to_le16(tcp_hdrlen(skb)/4) <<
1855 ETH_TX_PARSE_BD_E2_TCP_HDR_LENGTH_DW_SHIFT;
1856
1857 pbd->parsing_data |= cpu_to_le16(((unsigned char *)tcp_hdr(skb) -
1858 skb->data) / 2) <<
1859 ETH_TX_PARSE_BD_E2_TCP_HDR_START_OFFSET_W_SHIFT;
1860
1861 return skb_transport_header(skb) + tcp_hdrlen(skb) - skb->data;
1862}
1863
1864/**
1865 *
1866 * @param skb
1867 * @param tx_start_bd
1868 * @param pbd
1869 * @param xmit_type
1870 *
1871 * @return Header length
1872 */
1873static inline u8 bnx2x_set_pbd_csum(struct bnx2x *bp, struct sk_buff *skb,
1874 struct eth_tx_parse_bd_e1x *pbd,
1875 u32 xmit_type)
1876{
1877 u8 hlen = (skb_network_header(skb) - skb->data) / 2;
1878
1879 /* for now NS flag is not used in Linux */
1880 pbd->global_data =
1881 (hlen | ((skb->protocol == cpu_to_be16(ETH_P_8021Q)) <<
1882 ETH_TX_PARSE_BD_E1X_LLC_SNAP_EN_SHIFT));
1883
1884 pbd->ip_hlen_w = (skb_transport_header(skb) -
1885 skb_network_header(skb)) / 2;
1886
1887 hlen += pbd->ip_hlen_w + tcp_hdrlen(skb) / 2;
1888
1889 pbd->total_hlen_w = cpu_to_le16(hlen);
1890 hlen = hlen*2;
1891
1892 if (xmit_type & XMIT_CSUM_TCP) {
1893 pbd->tcp_pseudo_csum = swab16(tcp_hdr(skb)->check);
1894
1895 } else {
1896 s8 fix = SKB_CS_OFF(skb); /* signed! */
1897
1898 DP(NETIF_MSG_TX_QUEUED,
1899 "hlen %d fix %d csum before fix %x\n",
1900 le16_to_cpu(pbd->total_hlen_w), fix, SKB_CS(skb));
1901
1902 /* HW bug: fixup the CSUM */
1903 pbd->tcp_pseudo_csum =
1904 bnx2x_csum_fix(skb_transport_header(skb),
1905 SKB_CS(skb), fix);
1906
1907 DP(NETIF_MSG_TX_QUEUED, "csum after fix %x\n",
1908 pbd->tcp_pseudo_csum);
1909 }
1910
1911 return hlen;
1912}
Dmitry Kravkovf85582f2010-10-06 03:34:21 +00001913
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001914/* called with netif_tx_lock
1915 * bnx2x_tx_int() runs without netif_tx_lock unless it needs to call
1916 * netif_wake_queue()
1917 */
1918netdev_tx_t bnx2x_start_xmit(struct sk_buff *skb, struct net_device *dev)
1919{
1920 struct bnx2x *bp = netdev_priv(dev);
1921 struct bnx2x_fastpath *fp;
1922 struct netdev_queue *txq;
1923 struct sw_tx_bd *tx_buf;
1924 struct eth_tx_start_bd *tx_start_bd;
1925 struct eth_tx_bd *tx_data_bd, *total_pkt_bd = NULL;
Dmitry Kravkov523224a2010-10-06 03:23:26 +00001926 struct eth_tx_parse_bd_e1x *pbd_e1x = NULL;
Dmitry Kravkovf2e08992010-10-06 03:28:26 +00001927 struct eth_tx_parse_bd_e2 *pbd_e2 = NULL;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001928 u16 pkt_prod, bd_prod;
1929 int nbd, fp_index;
1930 dma_addr_t mapping;
1931 u32 xmit_type = bnx2x_xmit_type(bp, skb);
1932 int i;
1933 u8 hlen = 0;
1934 __le16 pkt_size = 0;
1935 struct ethhdr *eth;
1936 u8 mac_type = UNICAST_ADDRESS;
1937
1938#ifdef BNX2X_STOP_ON_ERROR
1939 if (unlikely(bp->panic))
1940 return NETDEV_TX_BUSY;
1941#endif
1942
1943 fp_index = skb_get_queue_mapping(skb);
1944 txq = netdev_get_tx_queue(dev, fp_index);
1945
1946 fp = &bp->fp[fp_index];
1947
1948 if (unlikely(bnx2x_tx_avail(fp) < (skb_shinfo(skb)->nr_frags + 3))) {
1949 fp->eth_q_stats.driver_xoff++;
1950 netif_tx_stop_queue(txq);
1951 BNX2X_ERR("BUG! Tx ring full when queue awake!\n");
1952 return NETDEV_TX_BUSY;
1953 }
1954
Dmitry Kravkovf2e08992010-10-06 03:28:26 +00001955 DP(NETIF_MSG_TX_QUEUED, "queue[%d]: SKB: summed %x protocol %x "
1956 "protocol(%x,%x) gso type %x xmit_type %x\n",
1957 fp_index, skb->ip_summed, skb->protocol, ipv6_hdr(skb)->nexthdr,
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00001958 ip_hdr(skb)->protocol, skb_shinfo(skb)->gso_type, xmit_type);
1959
1960 eth = (struct ethhdr *)skb->data;
1961
1962 /* set flag according to packet type (UNICAST_ADDRESS is default)*/
1963 if (unlikely(is_multicast_ether_addr(eth->h_dest))) {
1964 if (is_broadcast_ether_addr(eth->h_dest))
1965 mac_type = BROADCAST_ADDRESS;
1966 else
1967 mac_type = MULTICAST_ADDRESS;
1968 }
1969
1970#if (MAX_SKB_FRAGS >= MAX_FETCH_BD - 3)
1971 /* First, check if we need to linearize the skb (due to FW
1972 restrictions). No need to check fragmentation if page size > 8K
1973 (there will be no violation to FW restrictions) */
1974 if (bnx2x_pkt_req_lin(bp, skb, xmit_type)) {
1975 /* Statistics of linearization */
1976 bp->lin_cnt++;
1977 if (skb_linearize(skb) != 0) {
1978 DP(NETIF_MSG_TX_QUEUED, "SKB linearization failed - "
1979 "silently dropping this SKB\n");
1980 dev_kfree_skb_any(skb);
1981 return NETDEV_TX_OK;
1982 }
1983 }
1984#endif
1985
1986 /*
1987 Please read carefully. First we use one BD which we mark as start,
1988 then we have a parsing info BD (used for TSO or xsum),
1989 and only then we have the rest of the TSO BDs.
1990 (don't forget to mark the last one as last,
1991 and to unmap only AFTER you write to the BD ...)
1992 And above all, all pdb sizes are in words - NOT DWORDS!
1993 */
1994
1995 pkt_prod = fp->tx_pkt_prod++;
1996 bd_prod = TX_BD(fp->tx_bd_prod);
1997
1998 /* get a tx_buf and first BD */
1999 tx_buf = &fp->tx_buf_ring[TX_BD(pkt_prod)];
2000 tx_start_bd = &fp->tx_desc_ring[bd_prod].start_bd;
2001
2002 tx_start_bd->bd_flags.as_bitfield = ETH_TX_BD_FLAGS_START_BD;
Dmitry Kravkovf85582f2010-10-06 03:34:21 +00002003 SET_FLAG(tx_start_bd->general_data, ETH_TX_START_BD_ETH_ADDR_TYPE,
2004 mac_type);
2005
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00002006 /* header nbd */
Dmitry Kravkovf85582f2010-10-06 03:34:21 +00002007 SET_FLAG(tx_start_bd->general_data, ETH_TX_START_BD_HDR_NBDS, 1);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00002008
2009 /* remember the first BD of the packet */
2010 tx_buf->first_bd = fp->tx_bd_prod;
2011 tx_buf->skb = skb;
2012 tx_buf->flags = 0;
2013
2014 DP(NETIF_MSG_TX_QUEUED,
2015 "sending pkt %u @%p next_idx %u bd %u @%p\n",
2016 pkt_prod, tx_buf, fp->tx_pkt_prod, bd_prod, tx_start_bd);
2017
Jesse Grosseab6d182010-10-20 13:56:03 +00002018 if (vlan_tx_tag_present(skb)) {
Dmitry Kravkov523224a2010-10-06 03:23:26 +00002019 tx_start_bd->vlan_or_ethertype =
2020 cpu_to_le16(vlan_tx_tag_get(skb));
2021 tx_start_bd->bd_flags.as_bitfield |=
2022 (X_ETH_OUTBAND_VLAN << ETH_TX_BD_FLAGS_VLAN_MODE_SHIFT);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00002023 } else
Dmitry Kravkov523224a2010-10-06 03:23:26 +00002024 tx_start_bd->vlan_or_ethertype = cpu_to_le16(pkt_prod);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00002025
2026 /* turn on parsing and get a BD */
2027 bd_prod = TX_BD(NEXT_TX_IDX(bd_prod));
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00002028
2029 if (xmit_type & XMIT_CSUM) {
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00002030 tx_start_bd->bd_flags.as_bitfield |= ETH_TX_BD_FLAGS_L4_CSUM;
2031
2032 if (xmit_type & XMIT_CSUM_V4)
2033 tx_start_bd->bd_flags.as_bitfield |=
2034 ETH_TX_BD_FLAGS_IP_CSUM;
2035 else
2036 tx_start_bd->bd_flags.as_bitfield |=
2037 ETH_TX_BD_FLAGS_IPV6;
2038
Dmitry Kravkov523224a2010-10-06 03:23:26 +00002039 if (!(xmit_type & XMIT_CSUM_TCP))
2040 tx_start_bd->bd_flags.as_bitfield |=
2041 ETH_TX_BD_FLAGS_IS_UDP;
2042 }
Dmitry Kravkov523224a2010-10-06 03:23:26 +00002043
Dmitry Kravkovf2e08992010-10-06 03:28:26 +00002044 if (CHIP_IS_E2(bp)) {
2045 pbd_e2 = &fp->tx_desc_ring[bd_prod].parse_bd_e2;
2046 memset(pbd_e2, 0, sizeof(struct eth_tx_parse_bd_e2));
2047 /* Set PBD in checksum offload case */
2048 if (xmit_type & XMIT_CSUM)
2049 hlen = bnx2x_set_pbd_csum_e2(bp,
2050 skb, pbd_e2, xmit_type);
2051 } else {
2052 pbd_e1x = &fp->tx_desc_ring[bd_prod].parse_bd_e1x;
2053 memset(pbd_e1x, 0, sizeof(struct eth_tx_parse_bd_e1x));
2054 /* Set PBD in checksum offload case */
2055 if (xmit_type & XMIT_CSUM)
2056 hlen = bnx2x_set_pbd_csum(bp, skb, pbd_e1x, xmit_type);
Dmitry Kravkov523224a2010-10-06 03:23:26 +00002057
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00002058 }
2059
Dmitry Kravkovf85582f2010-10-06 03:34:21 +00002060 /* Map skb linear data for DMA */
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00002061 mapping = dma_map_single(&bp->pdev->dev, skb->data,
2062 skb_headlen(skb), DMA_TO_DEVICE);
2063
Dmitry Kravkovf85582f2010-10-06 03:34:21 +00002064 /* Setup the data pointer of the first BD of the packet */
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00002065 tx_start_bd->addr_hi = cpu_to_le32(U64_HI(mapping));
2066 tx_start_bd->addr_lo = cpu_to_le32(U64_LO(mapping));
2067 nbd = skb_shinfo(skb)->nr_frags + 2; /* start_bd + pbd + frags */
2068 tx_start_bd->nbd = cpu_to_le16(nbd);
2069 tx_start_bd->nbytes = cpu_to_le16(skb_headlen(skb));
2070 pkt_size = tx_start_bd->nbytes;
2071
2072 DP(NETIF_MSG_TX_QUEUED, "first bd @%p addr (%x:%x) nbd %d"
2073 " nbytes %d flags %x vlan %x\n",
2074 tx_start_bd, tx_start_bd->addr_hi, tx_start_bd->addr_lo,
2075 le16_to_cpu(tx_start_bd->nbd), le16_to_cpu(tx_start_bd->nbytes),
Dmitry Kravkov523224a2010-10-06 03:23:26 +00002076 tx_start_bd->bd_flags.as_bitfield,
2077 le16_to_cpu(tx_start_bd->vlan_or_ethertype));
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00002078
2079 if (xmit_type & XMIT_GSO) {
2080
2081 DP(NETIF_MSG_TX_QUEUED,
2082 "TSO packet len %d hlen %d total len %d tso size %d\n",
2083 skb->len, hlen, skb_headlen(skb),
2084 skb_shinfo(skb)->gso_size);
2085
2086 tx_start_bd->bd_flags.as_bitfield |= ETH_TX_BD_FLAGS_SW_LSO;
2087
2088 if (unlikely(skb_headlen(skb) > hlen))
2089 bd_prod = bnx2x_tx_split(bp, fp, tx_buf, &tx_start_bd,
2090 hlen, bd_prod, ++nbd);
Dmitry Kravkovf2e08992010-10-06 03:28:26 +00002091 if (CHIP_IS_E2(bp))
2092 bnx2x_set_pbd_gso_e2(skb, pbd_e2, xmit_type);
2093 else
2094 bnx2x_set_pbd_gso(skb, pbd_e1x, xmit_type);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00002095 }
2096 tx_data_bd = (struct eth_tx_bd *)tx_start_bd;
2097
Dmitry Kravkovf85582f2010-10-06 03:34:21 +00002098 /* Handle fragmented skb */
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00002099 for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) {
2100 skb_frag_t *frag = &skb_shinfo(skb)->frags[i];
2101
2102 bd_prod = TX_BD(NEXT_TX_IDX(bd_prod));
2103 tx_data_bd = &fp->tx_desc_ring[bd_prod].reg_bd;
2104 if (total_pkt_bd == NULL)
2105 total_pkt_bd = &fp->tx_desc_ring[bd_prod].reg_bd;
2106
2107 mapping = dma_map_page(&bp->pdev->dev, frag->page,
2108 frag->page_offset,
2109 frag->size, DMA_TO_DEVICE);
2110
2111 tx_data_bd->addr_hi = cpu_to_le32(U64_HI(mapping));
2112 tx_data_bd->addr_lo = cpu_to_le32(U64_LO(mapping));
2113 tx_data_bd->nbytes = cpu_to_le16(frag->size);
2114 le16_add_cpu(&pkt_size, frag->size);
2115
2116 DP(NETIF_MSG_TX_QUEUED,
2117 "frag %d bd @%p addr (%x:%x) nbytes %d\n",
2118 i, tx_data_bd, tx_data_bd->addr_hi, tx_data_bd->addr_lo,
2119 le16_to_cpu(tx_data_bd->nbytes));
2120 }
2121
2122 DP(NETIF_MSG_TX_QUEUED, "last bd @%p\n", tx_data_bd);
2123
2124 bd_prod = TX_BD(NEXT_TX_IDX(bd_prod));
2125
2126 /* now send a tx doorbell, counting the next BD
2127 * if the packet contains or ends with it
2128 */
2129 if (TX_BD_POFF(bd_prod) < nbd)
2130 nbd++;
2131
2132 if (total_pkt_bd != NULL)
2133 total_pkt_bd->total_pkt_bytes = pkt_size;
2134
Dmitry Kravkov523224a2010-10-06 03:23:26 +00002135 if (pbd_e1x)
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00002136 DP(NETIF_MSG_TX_QUEUED,
Dmitry Kravkov523224a2010-10-06 03:23:26 +00002137 "PBD (E1X) @%p ip_data %x ip_hlen %u ip_id %u lso_mss %u"
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00002138 " tcp_flags %x xsum %x seq %u hlen %u\n",
Dmitry Kravkov523224a2010-10-06 03:23:26 +00002139 pbd_e1x, pbd_e1x->global_data, pbd_e1x->ip_hlen_w,
2140 pbd_e1x->ip_id, pbd_e1x->lso_mss, pbd_e1x->tcp_flags,
2141 pbd_e1x->tcp_pseudo_csum, pbd_e1x->tcp_send_seq,
2142 le16_to_cpu(pbd_e1x->total_hlen_w));
Dmitry Kravkovf2e08992010-10-06 03:28:26 +00002143 if (pbd_e2)
2144 DP(NETIF_MSG_TX_QUEUED,
2145 "PBD (E2) @%p dst %x %x %x src %x %x %x parsing_data %x\n",
2146 pbd_e2, pbd_e2->dst_mac_addr_hi, pbd_e2->dst_mac_addr_mid,
2147 pbd_e2->dst_mac_addr_lo, pbd_e2->src_mac_addr_hi,
2148 pbd_e2->src_mac_addr_mid, pbd_e2->src_mac_addr_lo,
2149 pbd_e2->parsing_data);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00002150 DP(NETIF_MSG_TX_QUEUED, "doorbell: nbd %d bd %u\n", nbd, bd_prod);
2151
2152 /*
2153 * Make sure that the BD data is updated before updating the producer
2154 * since FW might read the BD right after the producer is updated.
2155 * This is only applicable for weak-ordered memory model archs such
2156 * as IA-64. The following barrier is also mandatory since FW will
2157 * assumes packets must have BDs.
2158 */
2159 wmb();
2160
2161 fp->tx_db.data.prod += nbd;
2162 barrier();
Dmitry Kravkovf85582f2010-10-06 03:34:21 +00002163
Dmitry Kravkov523224a2010-10-06 03:23:26 +00002164 DOORBELL(bp, fp->cid, fp->tx_db.raw);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00002165
2166 mmiowb();
2167
2168 fp->tx_bd_prod += nbd;
2169
2170 if (unlikely(bnx2x_tx_avail(fp) < MAX_SKB_FRAGS + 3)) {
2171 netif_tx_stop_queue(txq);
2172
2173 /* paired memory barrier is in bnx2x_tx_int(), we have to keep
2174 * ordering of set_bit() in netif_tx_stop_queue() and read of
2175 * fp->bd_tx_cons */
2176 smp_mb();
2177
2178 fp->eth_q_stats.driver_xoff++;
2179 if (bnx2x_tx_avail(fp) >= MAX_SKB_FRAGS + 3)
2180 netif_tx_wake_queue(txq);
2181 }
2182 fp->tx_pkt++;
2183
2184 return NETDEV_TX_OK;
2185}
Dmitry Kravkovf85582f2010-10-06 03:34:21 +00002186
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00002187/* called with rtnl_lock */
2188int bnx2x_change_mac_addr(struct net_device *dev, void *p)
2189{
2190 struct sockaddr *addr = p;
2191 struct bnx2x *bp = netdev_priv(dev);
2192
2193 if (!is_valid_ether_addr((u8 *)(addr->sa_data)))
2194 return -EINVAL;
2195
2196 memcpy(dev->dev_addr, addr->sa_data, dev->addr_len);
Dmitry Kravkov523224a2010-10-06 03:23:26 +00002197 if (netif_running(dev))
2198 bnx2x_set_eth_mac(bp, 1);
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00002199
2200 return 0;
2201}
2202
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00002203
stephen hemminger8d962862010-10-21 07:50:56 +00002204static int bnx2x_setup_irqs(struct bnx2x *bp)
Dmitry Kravkovd6214d72010-10-06 03:32:10 +00002205{
2206 int rc = 0;
2207 if (bp->flags & USING_MSIX_FLAG) {
2208 rc = bnx2x_req_msix_irqs(bp);
2209 if (rc)
2210 return rc;
2211 } else {
2212 bnx2x_ack_int(bp);
2213 rc = bnx2x_req_irq(bp);
2214 if (rc) {
2215 BNX2X_ERR("IRQ request failed rc %d, aborting\n", rc);
2216 return rc;
2217 }
2218 if (bp->flags & USING_MSI_FLAG) {
2219 bp->dev->irq = bp->pdev->irq;
2220 netdev_info(bp->dev, "using MSI IRQ %d\n",
2221 bp->pdev->irq);
2222 }
2223 }
2224
2225 return 0;
2226}
2227
Dmitry Kravkov523224a2010-10-06 03:23:26 +00002228void bnx2x_free_mem_bp(struct bnx2x *bp)
2229{
2230 kfree(bp->fp);
2231 kfree(bp->msix_table);
2232 kfree(bp->ilt);
2233}
2234
2235int __devinit bnx2x_alloc_mem_bp(struct bnx2x *bp)
2236{
2237 struct bnx2x_fastpath *fp;
2238 struct msix_entry *tbl;
2239 struct bnx2x_ilt *ilt;
2240
2241 /* fp array */
2242 fp = kzalloc(L2_FP_COUNT(bp->l2_cid_count)*sizeof(*fp), GFP_KERNEL);
2243 if (!fp)
2244 goto alloc_err;
2245 bp->fp = fp;
2246
2247 /* msix table */
2248 tbl = kzalloc((bp->l2_cid_count + 1) * sizeof(*tbl),
2249 GFP_KERNEL);
2250 if (!tbl)
2251 goto alloc_err;
2252 bp->msix_table = tbl;
2253
2254 /* ilt */
2255 ilt = kzalloc(sizeof(*ilt), GFP_KERNEL);
2256 if (!ilt)
2257 goto alloc_err;
2258 bp->ilt = ilt;
2259
2260 return 0;
2261alloc_err:
2262 bnx2x_free_mem_bp(bp);
2263 return -ENOMEM;
2264
2265}
2266
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00002267/* called with rtnl_lock */
2268int bnx2x_change_mtu(struct net_device *dev, int new_mtu)
2269{
2270 struct bnx2x *bp = netdev_priv(dev);
2271 int rc = 0;
2272
2273 if (bp->recovery_state != BNX2X_RECOVERY_DONE) {
2274 printk(KERN_ERR "Handling parity error recovery. Try again later\n");
2275 return -EAGAIN;
2276 }
2277
2278 if ((new_mtu > ETH_MAX_JUMBO_PACKET_SIZE) ||
2279 ((new_mtu + ETH_HLEN) < ETH_MIN_PACKET_SIZE))
2280 return -EINVAL;
2281
2282 /* This does not race with packet allocation
2283 * because the actual alloc size is
2284 * only updated as part of load
2285 */
2286 dev->mtu = new_mtu;
2287
2288 if (netif_running(dev)) {
2289 bnx2x_nic_unload(bp, UNLOAD_NORMAL);
2290 rc = bnx2x_nic_load(bp, LOAD_NORMAL);
2291 }
2292
2293 return rc;
2294}
2295
2296void bnx2x_tx_timeout(struct net_device *dev)
2297{
2298 struct bnx2x *bp = netdev_priv(dev);
2299
2300#ifdef BNX2X_STOP_ON_ERROR
2301 if (!bp->panic)
2302 bnx2x_panic();
2303#endif
2304 /* This allows the netif to be shutdown gracefully before resetting */
2305 schedule_delayed_work(&bp->reset_task, 0);
2306}
2307
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00002308int bnx2x_suspend(struct pci_dev *pdev, pm_message_t state)
2309{
2310 struct net_device *dev = pci_get_drvdata(pdev);
2311 struct bnx2x *bp;
2312
2313 if (!dev) {
2314 dev_err(&pdev->dev, "BAD net device from bnx2x_init_one\n");
2315 return -ENODEV;
2316 }
2317 bp = netdev_priv(dev);
2318
2319 rtnl_lock();
2320
2321 pci_save_state(pdev);
2322
2323 if (!netif_running(dev)) {
2324 rtnl_unlock();
2325 return 0;
2326 }
2327
2328 netif_device_detach(dev);
2329
2330 bnx2x_nic_unload(bp, UNLOAD_CLOSE);
2331
2332 bnx2x_set_power_state(bp, pci_choose_state(pdev, state));
2333
2334 rtnl_unlock();
2335
2336 return 0;
2337}
2338
2339int bnx2x_resume(struct pci_dev *pdev)
2340{
2341 struct net_device *dev = pci_get_drvdata(pdev);
2342 struct bnx2x *bp;
2343 int rc;
2344
2345 if (!dev) {
2346 dev_err(&pdev->dev, "BAD net device from bnx2x_init_one\n");
2347 return -ENODEV;
2348 }
2349 bp = netdev_priv(dev);
2350
2351 if (bp->recovery_state != BNX2X_RECOVERY_DONE) {
2352 printk(KERN_ERR "Handling parity error recovery. Try again later\n");
2353 return -EAGAIN;
2354 }
2355
2356 rtnl_lock();
2357
2358 pci_restore_state(pdev);
2359
2360 if (!netif_running(dev)) {
2361 rtnl_unlock();
2362 return 0;
2363 }
2364
2365 bnx2x_set_power_state(bp, PCI_D0);
2366 netif_device_attach(dev);
2367
Dmitry Kravkovf2e08992010-10-06 03:28:26 +00002368 /* Since the chip was reset, clear the FW sequence number */
2369 bp->fw_seq = 0;
Dmitry Kravkov9f6c9252010-07-27 12:34:34 +00002370 rc = bnx2x_nic_load(bp, LOAD_OPEN);
2371
2372 rtnl_unlock();
2373
2374 return rc;
2375}