net/mlx4_en: Fix mixed PFC and Global pause user control requests
[pandora-kernel.git] / drivers / net / ethernet / mellanox / mlx4 / en_rx.c
1 /*
2  * Copyright (c) 2007 Mellanox Technologies. All rights reserved.
3  *
4  * This software is available to you under a choice of one of two
5  * licenses.  You may choose to be licensed under the terms of the GNU
6  * General Public License (GPL) Version 2, available from the file
7  * COPYING in the main directory of this source tree, or the
8  * OpenIB.org BSD license below:
9  *
10  *     Redistribution and use in source and binary forms, with or
11  *     without modification, are permitted provided that the following
12  *     conditions are met:
13  *
14  *      - Redistributions of source code must retain the above
15  *        copyright notice, this list of conditions and the following
16  *        disclaimer.
17  *
18  *      - Redistributions in binary form must reproduce the above
19  *        copyright notice, this list of conditions and the following
20  *        disclaimer in the documentation and/or other materials
21  *        provided with the distribution.
22  *
23  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
24  * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
25  * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
26  * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS
27  * BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
28  * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
29  * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
30  * SOFTWARE.
31  *
32  */
33
34 #include <linux/mlx4/cq.h>
35 #include <linux/slab.h>
36 #include <linux/mlx4/qp.h>
37 #include <linux/skbuff.h>
38 #include <linux/if_ether.h>
39 #include <linux/if_vlan.h>
40 #include <linux/vmalloc.h>
41
42 #include "mlx4_en.h"
43
44
45 static int mlx4_en_alloc_frag(struct mlx4_en_priv *priv,
46                               struct mlx4_en_rx_desc *rx_desc,
47                               struct page_frag *skb_frags,
48                               struct mlx4_en_rx_alloc *ring_alloc,
49                               int i)
50 {
51         struct mlx4_en_dev *mdev = priv->mdev;
52         struct mlx4_en_frag_info *frag_info = &priv->frag_info[i];
53         struct mlx4_en_rx_alloc *page_alloc = &ring_alloc[i];
54         struct page *page;
55         dma_addr_t dma;
56
57         if (page_alloc->offset == frag_info->last_offset) {
58                 /* Allocate new page */
59                 page = alloc_pages(GFP_ATOMIC | __GFP_COMP, MLX4_EN_ALLOC_ORDER);
60                 if (!page)
61                         return -ENOMEM;
62
63                 skb_frags[i].page = page_alloc->page;
64                 skb_frags[i].offset = page_alloc->offset;
65                 page_alloc->page = page;
66                 page_alloc->offset = frag_info->frag_align;
67         } else {
68                 page = page_alloc->page;
69                 get_page(page);
70
71                 skb_frags[i].page = page;
72                 skb_frags[i].offset = page_alloc->offset;
73                 page_alloc->offset += frag_info->frag_stride;
74         }
75         dma = pci_map_single(mdev->pdev, page_address(skb_frags[i].page) +
76                              skb_frags[i].offset, frag_info->frag_size,
77                              PCI_DMA_FROMDEVICE);
78         rx_desc->data[i].addr = cpu_to_be64(dma);
79         return 0;
80 }
81
82 static int mlx4_en_init_allocator(struct mlx4_en_priv *priv,
83                                   struct mlx4_en_rx_ring *ring)
84 {
85         struct mlx4_en_rx_alloc *page_alloc;
86         int i;
87
88         for (i = 0; i < priv->num_frags; i++) {
89                 page_alloc = &ring->page_alloc[i];
90                 page_alloc->page = alloc_pages(GFP_ATOMIC | __GFP_COMP,
91                                                MLX4_EN_ALLOC_ORDER);
92                 if (!page_alloc->page)
93                         goto out;
94
95                 page_alloc->offset = priv->frag_info[i].frag_align;
96                 en_dbg(DRV, priv, "Initialized allocator:%d with page:%p\n",
97                        i, page_alloc->page);
98         }
99         return 0;
100
101 out:
102         while (i--) {
103                 page_alloc = &ring->page_alloc[i];
104                 put_page(page_alloc->page);
105                 page_alloc->page = NULL;
106         }
107         return -ENOMEM;
108 }
109
110 static void mlx4_en_destroy_allocator(struct mlx4_en_priv *priv,
111                                       struct mlx4_en_rx_ring *ring)
112 {
113         struct mlx4_en_rx_alloc *page_alloc;
114         int i;
115
116         for (i = 0; i < priv->num_frags; i++) {
117                 page_alloc = &ring->page_alloc[i];
118                 en_dbg(DRV, priv, "Freeing allocator:%d count:%d\n",
119                        i, page_count(page_alloc->page));
120
121                 put_page(page_alloc->page);
122                 page_alloc->page = NULL;
123         }
124 }
125
126
127 static void mlx4_en_init_rx_desc(struct mlx4_en_priv *priv,
128                                  struct mlx4_en_rx_ring *ring, int index)
129 {
130         struct mlx4_en_rx_desc *rx_desc = ring->buf + ring->stride * index;
131         struct skb_frag_struct *skb_frags = ring->rx_info +
132                                             (index << priv->log_rx_info);
133         int possible_frags;
134         int i;
135
136         /* Set size and memtype fields */
137         for (i = 0; i < priv->num_frags; i++) {
138                 skb_frag_size_set(&skb_frags[i], priv->frag_info[i].frag_size);
139                 rx_desc->data[i].byte_count =
140                         cpu_to_be32(priv->frag_info[i].frag_size);
141                 rx_desc->data[i].lkey = cpu_to_be32(priv->mdev->mr.key);
142         }
143
144         /* If the number of used fragments does not fill up the ring stride,
145          * remaining (unused) fragments must be padded with null address/size
146          * and a special memory key */
147         possible_frags = (ring->stride - sizeof(struct mlx4_en_rx_desc)) / DS_SIZE;
148         for (i = priv->num_frags; i < possible_frags; i++) {
149                 rx_desc->data[i].byte_count = 0;
150                 rx_desc->data[i].lkey = cpu_to_be32(MLX4_EN_MEMTYPE_PAD);
151                 rx_desc->data[i].addr = 0;
152         }
153 }
154
155
156 static int mlx4_en_prepare_rx_desc(struct mlx4_en_priv *priv,
157                                    struct mlx4_en_rx_ring *ring, int index)
158 {
159         struct mlx4_en_rx_desc *rx_desc = ring->buf + (index * ring->stride);
160         struct page_frag *skb_frags = ring->rx_info +
161                                       (index << priv->log_rx_info);
162         int i;
163
164         for (i = 0; i < priv->num_frags; i++)
165                 if (mlx4_en_alloc_frag(priv, rx_desc, skb_frags, ring->page_alloc, i))
166                         goto err;
167
168         return 0;
169
170 err:
171         while (i--)
172                 put_page(skb_frags[i].page);
173         return -ENOMEM;
174 }
175
176 static inline void mlx4_en_update_rx_prod_db(struct mlx4_en_rx_ring *ring)
177 {
178         *ring->wqres.db.db = cpu_to_be32(ring->prod & 0xffff);
179 }
180
181 static void mlx4_en_free_rx_desc(struct mlx4_en_priv *priv,
182                                  struct mlx4_en_rx_ring *ring,
183                                  int index)
184 {
185         struct mlx4_en_dev *mdev = priv->mdev;
186         struct page_frag *skb_frags;
187         struct mlx4_en_rx_desc *rx_desc = ring->buf + (index << ring->log_stride);
188         dma_addr_t dma;
189         int nr;
190
191         skb_frags = ring->rx_info + (index << priv->log_rx_info);
192         for (nr = 0; nr < priv->num_frags; nr++) {
193                 en_dbg(DRV, priv, "Freeing fragment:%d\n", nr);
194                 dma = be64_to_cpu(rx_desc->data[nr].addr);
195
196                 en_dbg(DRV, priv, "Unmapping buffer at dma:0x%llx\n", (u64) dma);
197                 pci_unmap_single(mdev->pdev, dma, skb_frags[nr].size,
198                                  PCI_DMA_FROMDEVICE);
199                 put_page(skb_frags[nr].page);
200         }
201 }
202
203 static int mlx4_en_fill_rx_buffers(struct mlx4_en_priv *priv)
204 {
205         struct mlx4_en_rx_ring *ring;
206         int ring_ind;
207         int buf_ind;
208         int new_size;
209
210         for (buf_ind = 0; buf_ind < priv->prof->rx_ring_size; buf_ind++) {
211                 for (ring_ind = 0; ring_ind < priv->rx_ring_num; ring_ind++) {
212                         ring = &priv->rx_ring[ring_ind];
213
214                         if (mlx4_en_prepare_rx_desc(priv, ring,
215                                                     ring->actual_size)) {
216                                 if (ring->actual_size < MLX4_EN_MIN_RX_SIZE) {
217                                         en_err(priv, "Failed to allocate "
218                                                      "enough rx buffers\n");
219                                         return -ENOMEM;
220                                 } else {
221                                         new_size = rounddown_pow_of_two(ring->actual_size);
222                                         en_warn(priv, "Only %d buffers allocated "
223                                                       "reducing ring size to %d",
224                                                 ring->actual_size, new_size);
225                                         goto reduce_rings;
226                                 }
227                         }
228                         ring->actual_size++;
229                         ring->prod++;
230                 }
231         }
232         return 0;
233
234 reduce_rings:
235         for (ring_ind = 0; ring_ind < priv->rx_ring_num; ring_ind++) {
236                 ring = &priv->rx_ring[ring_ind];
237                 while (ring->actual_size > new_size) {
238                         ring->actual_size--;
239                         ring->prod--;
240                         mlx4_en_free_rx_desc(priv, ring, ring->actual_size);
241                 }
242         }
243
244         return 0;
245 }
246
247 static void mlx4_en_free_rx_buf(struct mlx4_en_priv *priv,
248                                 struct mlx4_en_rx_ring *ring)
249 {
250         int index;
251
252         en_dbg(DRV, priv, "Freeing Rx buf - cons:%d prod:%d\n",
253                ring->cons, ring->prod);
254
255         /* Unmap and free Rx buffers */
256         BUG_ON((u32) (ring->prod - ring->cons) > ring->actual_size);
257         while (ring->cons != ring->prod) {
258                 index = ring->cons & ring->size_mask;
259                 en_dbg(DRV, priv, "Processing descriptor:%d\n", index);
260                 mlx4_en_free_rx_desc(priv, ring, index);
261                 ++ring->cons;
262         }
263 }
264
265 int mlx4_en_create_rx_ring(struct mlx4_en_priv *priv,
266                            struct mlx4_en_rx_ring *ring, u32 size, u16 stride)
267 {
268         struct mlx4_en_dev *mdev = priv->mdev;
269         int err;
270         int tmp;
271
272
273         ring->prod = 0;
274         ring->cons = 0;
275         ring->size = size;
276         ring->size_mask = size - 1;
277         ring->stride = stride;
278         ring->log_stride = ffs(ring->stride) - 1;
279         ring->buf_size = ring->size * ring->stride + TXBB_SIZE;
280
281         tmp = size * roundup_pow_of_two(MLX4_EN_MAX_RX_FRAGS *
282                                         sizeof(struct skb_frag_struct));
283         ring->rx_info = vmalloc(tmp);
284         if (!ring->rx_info) {
285                 en_err(priv, "Failed allocating rx_info ring\n");
286                 return -ENOMEM;
287         }
288         en_dbg(DRV, priv, "Allocated rx_info ring at addr:%p size:%d\n",
289                  ring->rx_info, tmp);
290
291         err = mlx4_alloc_hwq_res(mdev->dev, &ring->wqres,
292                                  ring->buf_size, 2 * PAGE_SIZE);
293         if (err)
294                 goto err_ring;
295
296         err = mlx4_en_map_buffer(&ring->wqres.buf);
297         if (err) {
298                 en_err(priv, "Failed to map RX buffer\n");
299                 goto err_hwq;
300         }
301         ring->buf = ring->wqres.buf.direct.buf;
302
303         return 0;
304
305 err_hwq:
306         mlx4_free_hwq_res(mdev->dev, &ring->wqres, ring->buf_size);
307 err_ring:
308         vfree(ring->rx_info);
309         ring->rx_info = NULL;
310         return err;
311 }
312
313 int mlx4_en_activate_rx_rings(struct mlx4_en_priv *priv)
314 {
315         struct mlx4_en_rx_ring *ring;
316         int i;
317         int ring_ind;
318         int err;
319         int stride = roundup_pow_of_two(sizeof(struct mlx4_en_rx_desc) +
320                                         DS_SIZE * priv->num_frags);
321
322         for (ring_ind = 0; ring_ind < priv->rx_ring_num; ring_ind++) {
323                 ring = &priv->rx_ring[ring_ind];
324
325                 ring->prod = 0;
326                 ring->cons = 0;
327                 ring->actual_size = 0;
328                 ring->cqn = priv->rx_cq[ring_ind].mcq.cqn;
329
330                 ring->stride = stride;
331                 if (ring->stride <= TXBB_SIZE) {
332                         /* Stamp first unused send wqe */
333                         __be32 *ptr = (__be32 *)ring->buf;
334                         __be32 stamp = cpu_to_be32(1 << STAMP_SHIFT);
335                         *ptr = stamp;
336                         /* Move pointer to start of rx section */
337                         ring->buf += TXBB_SIZE;
338                 }
339
340                 ring->log_stride = ffs(ring->stride) - 1;
341                 ring->buf_size = ring->size * ring->stride;
342
343                 memset(ring->buf, 0, ring->buf_size);
344                 mlx4_en_update_rx_prod_db(ring);
345
346                 /* Initailize all descriptors */
347                 for (i = 0; i < ring->size; i++)
348                         mlx4_en_init_rx_desc(priv, ring, i);
349
350                 /* Initialize page allocators */
351                 err = mlx4_en_init_allocator(priv, ring);
352                 if (err) {
353                         en_err(priv, "Failed initializing ring allocator\n");
354                         if (ring->stride <= TXBB_SIZE)
355                                 ring->buf -= TXBB_SIZE;
356                         ring_ind--;
357                         goto err_allocator;
358                 }
359         }
360         err = mlx4_en_fill_rx_buffers(priv);
361         if (err)
362                 goto err_buffers;
363
364         for (ring_ind = 0; ring_ind < priv->rx_ring_num; ring_ind++) {
365                 ring = &priv->rx_ring[ring_ind];
366
367                 ring->size_mask = ring->actual_size - 1;
368                 mlx4_en_update_rx_prod_db(ring);
369         }
370
371         return 0;
372
373 err_buffers:
374         for (ring_ind = 0; ring_ind < priv->rx_ring_num; ring_ind++)
375                 mlx4_en_free_rx_buf(priv, &priv->rx_ring[ring_ind]);
376
377         ring_ind = priv->rx_ring_num - 1;
378 err_allocator:
379         while (ring_ind >= 0) {
380                 if (priv->rx_ring[ring_ind].stride <= TXBB_SIZE)
381                         priv->rx_ring[ring_ind].buf -= TXBB_SIZE;
382                 mlx4_en_destroy_allocator(priv, &priv->rx_ring[ring_ind]);
383                 ring_ind--;
384         }
385         return err;
386 }
387
388 void mlx4_en_destroy_rx_ring(struct mlx4_en_priv *priv,
389                              struct mlx4_en_rx_ring *ring)
390 {
391         struct mlx4_en_dev *mdev = priv->mdev;
392
393         mlx4_en_unmap_buffer(&ring->wqres.buf);
394         mlx4_free_hwq_res(mdev->dev, &ring->wqres, ring->buf_size + TXBB_SIZE);
395         vfree(ring->rx_info);
396         ring->rx_info = NULL;
397 }
398
399 void mlx4_en_deactivate_rx_ring(struct mlx4_en_priv *priv,
400                                 struct mlx4_en_rx_ring *ring)
401 {
402         mlx4_en_free_rx_buf(priv, ring);
403         if (ring->stride <= TXBB_SIZE)
404                 ring->buf -= TXBB_SIZE;
405         mlx4_en_destroy_allocator(priv, ring);
406 }
407
408
409 /* Unmap a completed descriptor and free unused pages */
410 static int mlx4_en_complete_rx_desc(struct mlx4_en_priv *priv,
411                                     struct mlx4_en_rx_desc *rx_desc,
412                                     struct page_frag *skb_frags,
413                                     struct sk_buff *skb,
414                                     struct mlx4_en_rx_alloc *page_alloc,
415                                     int length)
416 {
417         struct skb_frag_struct *skb_frags_rx = skb_shinfo(skb)->frags;
418         struct mlx4_en_dev *mdev = priv->mdev;
419         struct mlx4_en_frag_info *frag_info;
420         int nr;
421         dma_addr_t dma;
422
423         /* Collect used fragments while replacing them in the HW descirptors */
424         for (nr = 0; nr < priv->num_frags; nr++) {
425                 frag_info = &priv->frag_info[nr];
426                 if (length <= frag_info->frag_prefix_size)
427                         break;
428
429                 /* Save page reference in skb */
430                 __skb_frag_set_page(&skb_frags_rx[nr], skb_frags[nr].page);
431                 skb_frag_size_set(&skb_frags_rx[nr], skb_frags[nr].size);
432                 skb_frags_rx[nr].page_offset = skb_frags[nr].offset;
433                 skb->truesize += frag_info->frag_stride;
434                 dma = be64_to_cpu(rx_desc->data[nr].addr);
435
436                 /* Allocate a replacement page */
437                 if (mlx4_en_alloc_frag(priv, rx_desc, skb_frags, page_alloc, nr))
438                         goto fail;
439
440                 /* Unmap buffer */
441                 pci_unmap_single(mdev->pdev, dma, skb_frag_size(&skb_frags_rx[nr]),
442                                  PCI_DMA_FROMDEVICE);
443         }
444         /* Adjust size of last fragment to match actual length */
445         if (nr > 0)
446                 skb_frag_size_set(&skb_frags_rx[nr - 1],
447                         length - priv->frag_info[nr - 1].frag_prefix_size);
448         return nr;
449
450 fail:
451         /* Drop all accumulated fragments (which have already been replaced in
452          * the descriptor) of this packet; remaining fragments are reused... */
453         while (nr > 0) {
454                 nr--;
455                 __skb_frag_unref(&skb_frags_rx[nr]);
456         }
457         return 0;
458 }
459
460
461 static struct sk_buff *mlx4_en_rx_skb(struct mlx4_en_priv *priv,
462                                       struct mlx4_en_rx_desc *rx_desc,
463                                       struct page_frag *skb_frags,
464                                       struct mlx4_en_rx_alloc *page_alloc,
465                                       unsigned int length)
466 {
467         struct mlx4_en_dev *mdev = priv->mdev;
468         struct sk_buff *skb;
469         void *va;
470         int used_frags;
471         dma_addr_t dma;
472
473         skb = dev_alloc_skb(SMALL_PACKET_SIZE + NET_IP_ALIGN);
474         if (!skb) {
475                 en_dbg(RX_ERR, priv, "Failed allocating skb\n");
476                 return NULL;
477         }
478         skb->dev = priv->dev;
479         skb_reserve(skb, NET_IP_ALIGN);
480         skb->len = length;
481
482         /* Get pointer to first fragment so we could copy the headers into the
483          * (linear part of the) skb */
484         va = page_address(skb_frags[0].page) + skb_frags[0].offset;
485
486         if (length <= SMALL_PACKET_SIZE) {
487                 /* We are copying all relevant data to the skb - temporarily
488                  * synch buffers for the copy */
489                 dma = be64_to_cpu(rx_desc->data[0].addr);
490                 dma_sync_single_for_cpu(&mdev->pdev->dev, dma, length,
491                                         DMA_FROM_DEVICE);
492                 skb_copy_to_linear_data(skb, va, length);
493                 dma_sync_single_for_device(&mdev->pdev->dev, dma, length,
494                                            DMA_FROM_DEVICE);
495                 skb->tail += length;
496         } else {
497
498                 /* Move relevant fragments to skb */
499                 used_frags = mlx4_en_complete_rx_desc(priv, rx_desc, skb_frags,
500                                                       skb, page_alloc, length);
501                 if (unlikely(!used_frags)) {
502                         kfree_skb(skb);
503                         return NULL;
504                 }
505                 skb_shinfo(skb)->nr_frags = used_frags;
506
507                 /* Copy headers into the skb linear buffer */
508                 memcpy(skb->data, va, HEADER_COPY_SIZE);
509                 skb->tail += HEADER_COPY_SIZE;
510
511                 /* Skip headers in first fragment */
512                 skb_shinfo(skb)->frags[0].page_offset += HEADER_COPY_SIZE;
513
514                 /* Adjust size of first fragment */
515                 skb_frag_size_sub(&skb_shinfo(skb)->frags[0], HEADER_COPY_SIZE);
516                 skb->data_len = length - HEADER_COPY_SIZE;
517         }
518         return skb;
519 }
520
521 static void validate_loopback(struct mlx4_en_priv *priv, struct sk_buff *skb)
522 {
523         int i;
524         int offset = ETH_HLEN;
525
526         for (i = 0; i < MLX4_LOOPBACK_TEST_PAYLOAD; i++, offset++) {
527                 if (*(skb->data + offset) != (unsigned char) (i & 0xff))
528                         goto out_loopback;
529         }
530         /* Loopback found */
531         priv->loopback_ok = 1;
532
533 out_loopback:
534         dev_kfree_skb_any(skb);
535 }
536
537 int mlx4_en_process_rx_cq(struct net_device *dev, struct mlx4_en_cq *cq, int budget)
538 {
539         struct mlx4_en_priv *priv = netdev_priv(dev);
540         struct mlx4_cqe *cqe;
541         struct mlx4_en_rx_ring *ring = &priv->rx_ring[cq->ring];
542         struct page_frag *skb_frags;
543         struct mlx4_en_rx_desc *rx_desc;
544         struct sk_buff *skb;
545         int index;
546         int nr;
547         unsigned int length;
548         int polled = 0;
549         int ip_summed;
550
551         if (!priv->port_up)
552                 return 0;
553
554         /* We assume a 1:1 mapping between CQEs and Rx descriptors, so Rx
555          * descriptor offset can be deduced from the CQE index instead of
556          * reading 'cqe->index' */
557         index = cq->mcq.cons_index & ring->size_mask;
558         cqe = &cq->buf[index];
559
560         /* Process all completed CQEs */
561         while (XNOR(cqe->owner_sr_opcode & MLX4_CQE_OWNER_MASK,
562                     cq->mcq.cons_index & cq->size)) {
563
564                 skb_frags = ring->rx_info + (index << priv->log_rx_info);
565                 rx_desc = ring->buf + (index << ring->log_stride);
566
567                 /*
568                  * make sure we read the CQE after we read the ownership bit
569                  */
570                 rmb();
571
572                 /* Drop packet on bad receive or bad checksum */
573                 if (unlikely((cqe->owner_sr_opcode & MLX4_CQE_OPCODE_MASK) ==
574                                                 MLX4_CQE_OPCODE_ERROR)) {
575                         en_err(priv, "CQE completed in error - vendor "
576                                   "syndrom:%d syndrom:%d\n",
577                                   ((struct mlx4_err_cqe *) cqe)->vendor_err_syndrome,
578                                   ((struct mlx4_err_cqe *) cqe)->syndrome);
579                         goto next;
580                 }
581                 if (unlikely(cqe->badfcs_enc & MLX4_CQE_BAD_FCS)) {
582                         en_dbg(RX_ERR, priv, "Accepted frame with bad FCS\n");
583                         goto next;
584                 }
585
586                 /*
587                  * Packet is OK - process it.
588                  */
589                 length = be32_to_cpu(cqe->byte_cnt);
590                 length -= ring->fcs_del;
591                 ring->bytes += length;
592                 ring->packets++;
593
594                 if (likely(dev->features & NETIF_F_RXCSUM)) {
595                         if ((cqe->status & cpu_to_be16(MLX4_CQE_STATUS_IPOK)) &&
596                             (cqe->checksum == cpu_to_be16(0xffff))) {
597                                 ring->csum_ok++;
598                                 /* This packet is eligible for LRO if it is:
599                                  * - DIX Ethernet (type interpretation)
600                                  * - TCP/IP (v4)
601                                  * - without IP options
602                                  * - not an IP fragment */
603                                 if (dev->features & NETIF_F_GRO) {
604                                         struct sk_buff *gro_skb = napi_get_frags(&cq->napi);
605                                         if (!gro_skb)
606                                                 goto next;
607
608                                         nr = mlx4_en_complete_rx_desc(
609                                                 priv, rx_desc,
610                                                 skb_frags, gro_skb,
611                                                 ring->page_alloc, length);
612                                         if (!nr)
613                                                 goto next;
614
615                                         skb_shinfo(gro_skb)->nr_frags = nr;
616                                         gro_skb->len = length;
617                                         gro_skb->data_len = length;
618                                         gro_skb->ip_summed = CHECKSUM_UNNECESSARY;
619
620                                         if (cqe->vlan_my_qpn &
621                                             cpu_to_be32(MLX4_CQE_VLAN_PRESENT_MASK)) {
622                                                 u16 vid = be16_to_cpu(cqe->sl_vid);
623
624                                                 __vlan_hwaccel_put_tag(gro_skb, vid);
625                                         }
626
627                                         if (dev->features & NETIF_F_RXHASH)
628                                                 gro_skb->rxhash = be32_to_cpu(cqe->immed_rss_invalid);
629
630                                         skb_record_rx_queue(gro_skb, cq->ring);
631                                         napi_gro_frags(&cq->napi);
632
633                                         goto next;
634                                 }
635
636                                 /* LRO not possible, complete processing here */
637                                 ip_summed = CHECKSUM_UNNECESSARY;
638                         } else {
639                                 ip_summed = CHECKSUM_NONE;
640                                 ring->csum_none++;
641                         }
642                 } else {
643                         ip_summed = CHECKSUM_NONE;
644                         ring->csum_none++;
645                 }
646
647                 skb = mlx4_en_rx_skb(priv, rx_desc, skb_frags,
648                                      ring->page_alloc, length);
649                 if (!skb) {
650                         priv->stats.rx_dropped++;
651                         goto next;
652                 }
653
654                 if (unlikely(priv->validate_loopback)) {
655                         validate_loopback(priv, skb);
656                         goto next;
657                 }
658
659                 skb->ip_summed = ip_summed;
660                 skb->protocol = eth_type_trans(skb, dev);
661                 skb_record_rx_queue(skb, cq->ring);
662
663                 if (dev->features & NETIF_F_RXHASH)
664                         skb->rxhash = be32_to_cpu(cqe->immed_rss_invalid);
665
666                 if (be32_to_cpu(cqe->vlan_my_qpn) &
667                     MLX4_CQE_VLAN_PRESENT_MASK)
668                         __vlan_hwaccel_put_tag(skb, be16_to_cpu(cqe->sl_vid));
669
670                 /* Push it up the stack */
671                 netif_receive_skb(skb);
672
673 next:
674                 ++cq->mcq.cons_index;
675                 index = (cq->mcq.cons_index) & ring->size_mask;
676                 cqe = &cq->buf[index];
677                 if (++polled == budget) {
678                         /* We are here because we reached the NAPI budget -
679                          * flush only pending LRO sessions */
680                         goto out;
681                 }
682         }
683
684 out:
685         AVG_PERF_COUNTER(priv->pstats.rx_coal_avg, polled);
686         mlx4_cq_set_ci(&cq->mcq);
687         wmb(); /* ensure HW sees CQ consumer before we post new buffers */
688         ring->cons = cq->mcq.cons_index;
689         ring->prod += polled; /* Polled descriptors were realocated in place */
690         mlx4_en_update_rx_prod_db(ring);
691         return polled;
692 }
693
694
695 void mlx4_en_rx_irq(struct mlx4_cq *mcq)
696 {
697         struct mlx4_en_cq *cq = container_of(mcq, struct mlx4_en_cq, mcq);
698         struct mlx4_en_priv *priv = netdev_priv(cq->dev);
699
700         if (priv->port_up)
701                 napi_schedule(&cq->napi);
702         else
703                 mlx4_en_arm_cq(priv, cq);
704 }
705
706 /* Rx CQ polling - called by NAPI */
707 int mlx4_en_poll_rx_cq(struct napi_struct *napi, int budget)
708 {
709         struct mlx4_en_cq *cq = container_of(napi, struct mlx4_en_cq, napi);
710         struct net_device *dev = cq->dev;
711         struct mlx4_en_priv *priv = netdev_priv(dev);
712         int done;
713
714         done = mlx4_en_process_rx_cq(dev, cq, budget);
715
716         /* If we used up all the quota - we're probably not done yet... */
717         if (done == budget)
718                 INC_PERF_COUNTER(priv->pstats.napi_quota);
719         else {
720                 /* Done for now */
721                 napi_complete(napi);
722                 mlx4_en_arm_cq(priv, cq);
723         }
724         return done;
725 }
726
727
728 /* Calculate the last offset position that accommodates a full fragment
729  * (assuming fagment size = stride-align) */
730 static int mlx4_en_last_alloc_offset(struct mlx4_en_priv *priv, u16 stride, u16 align)
731 {
732         u16 res = MLX4_EN_ALLOC_SIZE % stride;
733         u16 offset = MLX4_EN_ALLOC_SIZE - stride - res + align;
734
735         en_dbg(DRV, priv, "Calculated last offset for stride:%d align:%d "
736                             "res:%d offset:%d\n", stride, align, res, offset);
737         return offset;
738 }
739
740
741 static int frag_sizes[] = {
742         FRAG_SZ0,
743         FRAG_SZ1,
744         FRAG_SZ2,
745         FRAG_SZ3
746 };
747
748 void mlx4_en_calc_rx_buf(struct net_device *dev)
749 {
750         struct mlx4_en_priv *priv = netdev_priv(dev);
751         int eff_mtu = dev->mtu + ETH_HLEN + VLAN_HLEN + ETH_LLC_SNAP_SIZE;
752         int buf_size = 0;
753         int i = 0;
754
755         while (buf_size < eff_mtu) {
756                 priv->frag_info[i].frag_size =
757                         (eff_mtu > buf_size + frag_sizes[i]) ?
758                                 frag_sizes[i] : eff_mtu - buf_size;
759                 priv->frag_info[i].frag_prefix_size = buf_size;
760                 if (!i) {
761                         priv->frag_info[i].frag_align = NET_IP_ALIGN;
762                         priv->frag_info[i].frag_stride =
763                                 ALIGN(frag_sizes[i] + NET_IP_ALIGN, SMP_CACHE_BYTES);
764                 } else {
765                         priv->frag_info[i].frag_align = 0;
766                         priv->frag_info[i].frag_stride =
767                                 ALIGN(frag_sizes[i], SMP_CACHE_BYTES);
768                 }
769                 priv->frag_info[i].last_offset = mlx4_en_last_alloc_offset(
770                                                 priv, priv->frag_info[i].frag_stride,
771                                                 priv->frag_info[i].frag_align);
772                 buf_size += priv->frag_info[i].frag_size;
773                 i++;
774         }
775
776         priv->num_frags = i;
777         priv->rx_skb_size = eff_mtu;
778         priv->log_rx_info = ROUNDUP_LOG2(i * sizeof(struct skb_frag_struct));
779
780         en_dbg(DRV, priv, "Rx buffer scatter-list (effective-mtu:%d "
781                   "num_frags:%d):\n", eff_mtu, priv->num_frags);
782         for (i = 0; i < priv->num_frags; i++) {
783                 en_dbg(DRV, priv, "  frag:%d - size:%d prefix:%d align:%d "
784                                 "stride:%d last_offset:%d\n", i,
785                                 priv->frag_info[i].frag_size,
786                                 priv->frag_info[i].frag_prefix_size,
787                                 priv->frag_info[i].frag_align,
788                                 priv->frag_info[i].frag_stride,
789                                 priv->frag_info[i].last_offset);
790         }
791 }
792
793 /* RSS related functions */
794
795 static int mlx4_en_config_rss_qp(struct mlx4_en_priv *priv, int qpn,
796                                  struct mlx4_en_rx_ring *ring,
797                                  enum mlx4_qp_state *state,
798                                  struct mlx4_qp *qp)
799 {
800         struct mlx4_en_dev *mdev = priv->mdev;
801         struct mlx4_qp_context *context;
802         int err = 0;
803
804         context = kmalloc(sizeof *context , GFP_KERNEL);
805         if (!context) {
806                 en_err(priv, "Failed to allocate qp context\n");
807                 return -ENOMEM;
808         }
809
810         err = mlx4_qp_alloc(mdev->dev, qpn, qp);
811         if (err) {
812                 en_err(priv, "Failed to allocate qp #%x\n", qpn);
813                 goto out;
814         }
815         qp->event = mlx4_en_sqp_event;
816
817         memset(context, 0, sizeof *context);
818         mlx4_en_fill_qp_context(priv, ring->actual_size, ring->stride, 0, 0,
819                                 qpn, ring->cqn, context);
820         context->db_rec_addr = cpu_to_be64(ring->wqres.db.dma);
821
822         /* Cancel FCS removal if FW allows */
823         if (mdev->dev->caps.flags & MLX4_DEV_CAP_FLAG_FCS_KEEP) {
824                 context->param3 |= cpu_to_be32(1 << 29);
825                 ring->fcs_del = ETH_FCS_LEN;
826         } else
827                 ring->fcs_del = 0;
828
829         err = mlx4_qp_to_ready(mdev->dev, &ring->wqres.mtt, context, qp, state);
830         if (err) {
831                 mlx4_qp_remove(mdev->dev, qp);
832                 mlx4_qp_free(mdev->dev, qp);
833         }
834         mlx4_en_update_rx_prod_db(ring);
835 out:
836         kfree(context);
837         return err;
838 }
839
840 /* Allocate rx qp's and configure them according to rss map */
841 int mlx4_en_config_rss_steer(struct mlx4_en_priv *priv)
842 {
843         struct mlx4_en_dev *mdev = priv->mdev;
844         struct mlx4_en_rss_map *rss_map = &priv->rss_map;
845         struct mlx4_qp_context context;
846         struct mlx4_en_rss_context *rss_context;
847         void *ptr;
848         u8 rss_mask = 0x3f;
849         int i, qpn;
850         int err = 0;
851         int good_qps = 0;
852         static const u32 rsskey[10] = { 0xD181C62C, 0xF7F4DB5B, 0x1983A2FC,
853                                 0x943E1ADB, 0xD9389E6B, 0xD1039C2C, 0xA74499AD,
854                                 0x593D56D9, 0xF3253C06, 0x2ADC1FFC};
855
856         en_dbg(DRV, priv, "Configuring rss steering\n");
857         err = mlx4_qp_reserve_range(mdev->dev, priv->rx_ring_num,
858                                     priv->rx_ring_num,
859                                     &rss_map->base_qpn);
860         if (err) {
861                 en_err(priv, "Failed reserving %d qps\n", priv->rx_ring_num);
862                 return err;
863         }
864
865         for (i = 0; i < priv->rx_ring_num; i++) {
866                 qpn = rss_map->base_qpn + i;
867                 err = mlx4_en_config_rss_qp(priv, qpn, &priv->rx_ring[i],
868                                             &rss_map->state[i],
869                                             &rss_map->qps[i]);
870                 if (err)
871                         goto rss_err;
872
873                 ++good_qps;
874         }
875
876         /* Configure RSS indirection qp */
877         err = mlx4_qp_alloc(mdev->dev, priv->base_qpn, &rss_map->indir_qp);
878         if (err) {
879                 en_err(priv, "Failed to allocate RSS indirection QP\n");
880                 goto rss_err;
881         }
882         rss_map->indir_qp.event = mlx4_en_sqp_event;
883         mlx4_en_fill_qp_context(priv, 0, 0, 0, 1, priv->base_qpn,
884                                 priv->rx_ring[0].cqn, &context);
885
886         ptr = ((void *) &context) + 0x3c;
887         rss_context = ptr;
888         rss_context->base_qpn = cpu_to_be32(ilog2(priv->rx_ring_num) << 24 |
889                                             (rss_map->base_qpn));
890         rss_context->default_qpn = cpu_to_be32(rss_map->base_qpn);
891         rss_context->flags = rss_mask;
892         rss_context->hash_fn = 1;
893         for (i = 0; i < 10; i++)
894                 rss_context->rss_key[i] = rsskey[i];
895
896         if (priv->mdev->profile.udp_rss)
897                 rss_context->base_qpn_udp = rss_context->default_qpn;
898         err = mlx4_qp_to_ready(mdev->dev, &priv->res.mtt, &context,
899                                &rss_map->indir_qp, &rss_map->indir_state);
900         if (err)
901                 goto indir_err;
902
903         return 0;
904
905 indir_err:
906         mlx4_qp_modify(mdev->dev, NULL, rss_map->indir_state,
907                        MLX4_QP_STATE_RST, NULL, 0, 0, &rss_map->indir_qp);
908         mlx4_qp_remove(mdev->dev, &rss_map->indir_qp);
909         mlx4_qp_free(mdev->dev, &rss_map->indir_qp);
910 rss_err:
911         for (i = 0; i < good_qps; i++) {
912                 mlx4_qp_modify(mdev->dev, NULL, rss_map->state[i],
913                                MLX4_QP_STATE_RST, NULL, 0, 0, &rss_map->qps[i]);
914                 mlx4_qp_remove(mdev->dev, &rss_map->qps[i]);
915                 mlx4_qp_free(mdev->dev, &rss_map->qps[i]);
916         }
917         mlx4_qp_release_range(mdev->dev, rss_map->base_qpn, priv->rx_ring_num);
918         return err;
919 }
920
921 void mlx4_en_release_rss_steer(struct mlx4_en_priv *priv)
922 {
923         struct mlx4_en_dev *mdev = priv->mdev;
924         struct mlx4_en_rss_map *rss_map = &priv->rss_map;
925         int i;
926
927         mlx4_qp_modify(mdev->dev, NULL, rss_map->indir_state,
928                        MLX4_QP_STATE_RST, NULL, 0, 0, &rss_map->indir_qp);
929         mlx4_qp_remove(mdev->dev, &rss_map->indir_qp);
930         mlx4_qp_free(mdev->dev, &rss_map->indir_qp);
931
932         for (i = 0; i < priv->rx_ring_num; i++) {
933                 mlx4_qp_modify(mdev->dev, NULL, rss_map->state[i],
934                                MLX4_QP_STATE_RST, NULL, 0, 0, &rss_map->qps[i]);
935                 mlx4_qp_remove(mdev->dev, &rss_map->qps[i]);
936                 mlx4_qp_free(mdev->dev, &rss_map->qps[i]);
937         }
938         mlx4_qp_release_range(mdev->dev, rss_map->base_qpn, priv->rx_ring_num);
939 }
940
941
942
943
944