1 /*
2 * Copyright (c) 2015, 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 #include <linux/ip.h>
34 #include <linux/ipv6.h>
35 #include <linux/tcp.h>
36 #include <linux/bitmap.h>
37 #include <linux/filter.h>
38 #include <net/ip6_checksum.h>
39 #include <net/page_pool/helpers.h>
40 #include <net/inet_ecn.h>
41 #include <net/gro.h>
42 #include <net/udp.h>
43 #include <net/tcp.h>
44 #include <net/xdp_sock_drv.h>
45 #include "en.h"
46 #include "en/txrx.h"
47 #include "en_tc.h"
48 #include "eswitch.h"
49 #include "en_rep.h"
50 #include "en/rep/tc.h"
51 #include "ipoib/ipoib.h"
52 #include "en_accel/ipsec.h"
53 #include "en_accel/macsec.h"
54 #include "en_accel/psp_rxtx.h"
55 #include "en_accel/ipsec_rxtx.h"
56 #include "en_accel/ktls_txrx.h"
57 #include "en/xdp.h"
58 #include "en/xsk/rx.h"
59 #include "en/health.h"
60 #include "en/params.h"
61 #include "devlink.h"
62 #include "en/devlink.h"
63
64 static struct sk_buff *
65 mlx5e_skb_from_cqe_mpwrq_linear(struct mlx5e_rq *rq, struct mlx5e_mpw_info *wi,
66 struct mlx5_cqe64 *cqe, u16 cqe_bcnt, u32 head_offset,
67 u32 page_idx);
68 static struct sk_buff *
69 mlx5e_skb_from_cqe_mpwrq_nonlinear(struct mlx5e_rq *rq, struct mlx5e_mpw_info *wi,
70 struct mlx5_cqe64 *cqe, u16 cqe_bcnt, u32 head_offset,
71 u32 page_idx);
72 static void mlx5e_handle_rx_cqe(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe);
73 static void mlx5e_handle_rx_cqe_mpwrq(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe);
74 static void mlx5e_handle_rx_cqe_mpwrq_shampo(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe);
75
76 const struct mlx5e_rx_handlers mlx5e_rx_handlers_nic = {
77 .handle_rx_cqe = mlx5e_handle_rx_cqe,
78 .handle_rx_cqe_mpwqe = mlx5e_handle_rx_cqe_mpwrq,
79 .handle_rx_cqe_mpwqe_shampo = mlx5e_handle_rx_cqe_mpwrq_shampo,
80 };
81
mlx5e_read_cqe_slot(struct mlx5_cqwq * wq,u32 cqcc,void * data)82 static inline void mlx5e_read_cqe_slot(struct mlx5_cqwq *wq,
83 u32 cqcc, void *data)
84 {
85 u32 ci = mlx5_cqwq_ctr2ix(wq, cqcc);
86
87 memcpy(data, mlx5_cqwq_get_wqe(wq, ci), sizeof(struct mlx5_cqe64));
88 }
89
mlx5e_read_enhanced_title_slot(struct mlx5e_rq * rq,struct mlx5_cqe64 * cqe)90 static void mlx5e_read_enhanced_title_slot(struct mlx5e_rq *rq,
91 struct mlx5_cqe64 *cqe)
92 {
93 struct mlx5e_cq_decomp *cqd = &rq->cqd;
94 struct mlx5_cqe64 *title = &cqd->title;
95
96 memcpy(title, cqe, sizeof(struct mlx5_cqe64));
97
98 if (likely(test_bit(MLX5E_RQ_STATE_MINI_CQE_HW_STRIDX, &rq->state)))
99 return;
100
101 if (rq->wq_type == MLX5_WQ_TYPE_LINKED_LIST_STRIDING_RQ)
102 cqd->wqe_counter = mpwrq_get_cqe_stride_index(title) +
103 mpwrq_get_cqe_consumed_strides(title);
104 else
105 cqd->wqe_counter =
106 mlx5_wq_cyc_ctr2ix(&rq->wqe.wq, be16_to_cpu(title->wqe_counter) + 1);
107 }
108
mlx5e_read_title_slot(struct mlx5e_rq * rq,struct mlx5_cqwq * wq,u32 cqcc)109 static inline void mlx5e_read_title_slot(struct mlx5e_rq *rq,
110 struct mlx5_cqwq *wq,
111 u32 cqcc)
112 {
113 struct mlx5e_cq_decomp *cqd = &rq->cqd;
114 struct mlx5_cqe64 *title = &cqd->title;
115
116 mlx5e_read_cqe_slot(wq, cqcc, title);
117 cqd->left = be32_to_cpu(title->byte_cnt);
118 cqd->wqe_counter = be16_to_cpu(title->wqe_counter);
119 rq->stats->cqe_compress_blks++;
120 }
121
mlx5e_read_mini_arr_slot(struct mlx5_cqwq * wq,struct mlx5e_cq_decomp * cqd,u32 cqcc)122 static inline void mlx5e_read_mini_arr_slot(struct mlx5_cqwq *wq,
123 struct mlx5e_cq_decomp *cqd,
124 u32 cqcc)
125 {
126 mlx5e_read_cqe_slot(wq, cqcc, cqd->mini_arr);
127 cqd->mini_arr_idx = 0;
128 }
129
mlx5e_cqes_update_owner(struct mlx5_cqwq * wq,int n)130 static inline void mlx5e_cqes_update_owner(struct mlx5_cqwq *wq, int n)
131 {
132 u32 cqcc = wq->cc;
133 u8 op_own = mlx5_cqwq_get_ctr_wrap_cnt(wq, cqcc) & 1;
134 u32 ci = mlx5_cqwq_ctr2ix(wq, cqcc);
135 u32 wq_sz = mlx5_cqwq_get_size(wq);
136 u32 ci_top = min_t(u32, wq_sz, ci + n);
137
138 for (; ci < ci_top; ci++, n--) {
139 struct mlx5_cqe64 *cqe = mlx5_cqwq_get_wqe(wq, ci);
140
141 cqe->op_own = op_own;
142 }
143
144 if (unlikely(ci == wq_sz)) {
145 op_own = !op_own;
146 for (ci = 0; ci < n; ci++) {
147 struct mlx5_cqe64 *cqe = mlx5_cqwq_get_wqe(wq, ci);
148
149 cqe->op_own = op_own;
150 }
151 }
152 }
153
mlx5e_decompress_cqe(struct mlx5e_rq * rq,struct mlx5_cqwq * wq,u32 cqcc)154 static inline void mlx5e_decompress_cqe(struct mlx5e_rq *rq,
155 struct mlx5_cqwq *wq,
156 u32 cqcc)
157 {
158 struct mlx5e_cq_decomp *cqd = &rq->cqd;
159 struct mlx5_mini_cqe8 *mini_cqe = &cqd->mini_arr[cqd->mini_arr_idx];
160 struct mlx5_cqe64 *title = &cqd->title;
161
162 title->byte_cnt = mini_cqe->byte_cnt;
163 title->check_sum = mini_cqe->checksum;
164 title->op_own &= 0xf0;
165 title->op_own |= 0x01 & (cqcc >> wq->fbc.log_sz);
166
167 /* state bit set implies linked-list striding RQ wq type and
168 * HW stride index capability supported
169 */
170 if (test_bit(MLX5E_RQ_STATE_MINI_CQE_HW_STRIDX, &rq->state)) {
171 title->wqe_counter = mini_cqe->stridx;
172 return;
173 }
174
175 /* HW stride index capability not supported */
176 title->wqe_counter = cpu_to_be16(cqd->wqe_counter);
177 if (rq->wq_type == MLX5_WQ_TYPE_LINKED_LIST_STRIDING_RQ)
178 cqd->wqe_counter += mpwrq_get_cqe_consumed_strides(title);
179 else
180 cqd->wqe_counter =
181 mlx5_wq_cyc_ctr2ix(&rq->wqe.wq, cqd->wqe_counter + 1);
182 }
183
mlx5e_decompress_cqe_no_hash(struct mlx5e_rq * rq,struct mlx5_cqwq * wq,u32 cqcc)184 static inline void mlx5e_decompress_cqe_no_hash(struct mlx5e_rq *rq,
185 struct mlx5_cqwq *wq,
186 u32 cqcc)
187 {
188 struct mlx5e_cq_decomp *cqd = &rq->cqd;
189
190 mlx5e_decompress_cqe(rq, wq, cqcc);
191 cqd->title.rss_hash_type = 0;
192 cqd->title.rss_hash_result = 0;
193 }
194
mlx5e_decompress_enhanced_cqe(struct mlx5e_rq * rq,struct mlx5_cqwq * wq,struct mlx5_cqe64 * cqe,int budget_rem)195 static u32 mlx5e_decompress_enhanced_cqe(struct mlx5e_rq *rq,
196 struct mlx5_cqwq *wq,
197 struct mlx5_cqe64 *cqe,
198 int budget_rem)
199 {
200 struct mlx5e_cq_decomp *cqd = &rq->cqd;
201 u32 cqcc, left;
202 u32 i;
203
204 left = get_cqe_enhanced_num_mini_cqes(cqe);
205 /* Here we avoid breaking the cqe compression session in the middle
206 * in case budget is not sufficient to handle all of it. In this case
207 * we return work_done == budget_rem to give 'busy' napi indication.
208 */
209 if (unlikely(left > budget_rem))
210 return budget_rem;
211
212 cqcc = wq->cc;
213 cqd->mini_arr_idx = 0;
214 memcpy(cqd->mini_arr, cqe, sizeof(struct mlx5_cqe64));
215 for (i = 0; i < left; i++, cqd->mini_arr_idx++, cqcc++) {
216 mlx5e_decompress_cqe_no_hash(rq, wq, cqcc);
217 INDIRECT_CALL_3(rq->handle_rx_cqe, mlx5e_handle_rx_cqe_mpwrq,
218 mlx5e_handle_rx_cqe, mlx5e_handle_rx_cqe_mpwrq_shampo,
219 rq, &cqd->title);
220 }
221 wq->cc = cqcc;
222 rq->stats->cqe_compress_pkts += left;
223
224 return left;
225 }
226
mlx5e_decompress_cqes_cont(struct mlx5e_rq * rq,struct mlx5_cqwq * wq,int update_owner_only,int budget_rem)227 static inline u32 mlx5e_decompress_cqes_cont(struct mlx5e_rq *rq,
228 struct mlx5_cqwq *wq,
229 int update_owner_only,
230 int budget_rem)
231 {
232 struct mlx5e_cq_decomp *cqd = &rq->cqd;
233 u32 cqcc = wq->cc + update_owner_only;
234 u32 cqe_count;
235 u32 i;
236
237 cqe_count = min_t(u32, cqd->left, budget_rem);
238
239 for (i = update_owner_only; i < cqe_count;
240 i++, cqd->mini_arr_idx++, cqcc++) {
241 if (cqd->mini_arr_idx == MLX5_MINI_CQE_ARRAY_SIZE)
242 mlx5e_read_mini_arr_slot(wq, cqd, cqcc);
243
244 mlx5e_decompress_cqe_no_hash(rq, wq, cqcc);
245 INDIRECT_CALL_3(rq->handle_rx_cqe, mlx5e_handle_rx_cqe_mpwrq,
246 mlx5e_handle_rx_cqe_mpwrq_shampo, mlx5e_handle_rx_cqe,
247 rq, &cqd->title);
248 }
249 mlx5e_cqes_update_owner(wq, cqcc - wq->cc);
250 wq->cc = cqcc;
251 cqd->left -= cqe_count;
252 rq->stats->cqe_compress_pkts += cqe_count;
253
254 return cqe_count;
255 }
256
mlx5e_decompress_cqes_start(struct mlx5e_rq * rq,struct mlx5_cqwq * wq,int budget_rem)257 static inline u32 mlx5e_decompress_cqes_start(struct mlx5e_rq *rq,
258 struct mlx5_cqwq *wq,
259 int budget_rem)
260 {
261 struct mlx5e_cq_decomp *cqd = &rq->cqd;
262 u32 cc = wq->cc;
263
264 mlx5e_read_title_slot(rq, wq, cc);
265 mlx5e_read_mini_arr_slot(wq, cqd, cc + 1);
266 mlx5e_decompress_cqe(rq, wq, cc);
267 INDIRECT_CALL_3(rq->handle_rx_cqe, mlx5e_handle_rx_cqe_mpwrq,
268 mlx5e_handle_rx_cqe_mpwrq_shampo, mlx5e_handle_rx_cqe,
269 rq, &cqd->title);
270 cqd->mini_arr_idx++;
271
272 return mlx5e_decompress_cqes_cont(rq, wq, 1, budget_rem);
273 }
274
mlx5e_page_alloc_fragmented(struct page_pool * pp,struct mlx5e_frag_page * frag_page)275 static int mlx5e_page_alloc_fragmented(struct page_pool *pp,
276 struct mlx5e_frag_page *frag_page)
277 {
278 netmem_ref netmem = page_pool_dev_alloc_netmems(pp);
279
280 if (unlikely(!netmem))
281 return -ENOMEM;
282
283 page_pool_fragment_netmem(netmem, MLX5E_PAGECNT_BIAS_MAX);
284
285 *frag_page = (struct mlx5e_frag_page) {
286 .netmem = netmem,
287 .frags = 0,
288 };
289
290 return 0;
291 }
292
mlx5e_page_release_fragmented(struct page_pool * pp,struct mlx5e_frag_page * frag_page)293 static void mlx5e_page_release_fragmented(struct page_pool *pp,
294 struct mlx5e_frag_page *frag_page)
295 {
296 u16 drain_count = MLX5E_PAGECNT_BIAS_MAX - frag_page->frags;
297 netmem_ref netmem = frag_page->netmem;
298
299 if (page_pool_unref_netmem(netmem, drain_count) == 0)
300 page_pool_put_unrefed_netmem(pp, netmem, -1, true);
301 }
302
mlx5e_mpwqe_linear_page_refill(struct mlx5e_rq * rq)303 static int mlx5e_mpwqe_linear_page_refill(struct mlx5e_rq *rq)
304 {
305 struct mlx5e_mpw_linear_info *li = rq->mpwqe.linear_info;
306
307 if (likely(li->frag_page.frags < li->max_frags))
308 return 0;
309
310 if (likely(li->frag_page.netmem)) {
311 mlx5e_page_release_fragmented(rq->page_pool, &li->frag_page);
312 li->frag_page.netmem = 0;
313 }
314
315 return mlx5e_page_alloc_fragmented(rq->page_pool, &li->frag_page);
316 }
317
mlx5e_mpwqe_get_linear_page_frag(struct mlx5e_rq * rq)318 static void *mlx5e_mpwqe_get_linear_page_frag(struct mlx5e_rq *rq)
319 {
320 struct mlx5e_mpw_linear_info *li = rq->mpwqe.linear_info;
321 u32 frag_offset;
322
323 if (unlikely(mlx5e_mpwqe_linear_page_refill(rq)))
324 return NULL;
325
326 frag_offset = li->frag_page.frags << MLX5E_XDP_LOG_MAX_LINEAR_SZ;
327 WARN_ON(frag_offset >= BIT(rq->mpwqe.page_shift));
328
329 return netmem_address(li->frag_page.netmem) + frag_offset;
330 }
331
mlx5e_get_rx_frag(struct mlx5e_rq * rq,struct mlx5e_wqe_frag_info * frag)332 static inline int mlx5e_get_rx_frag(struct mlx5e_rq *rq,
333 struct mlx5e_wqe_frag_info *frag)
334 {
335 int err = 0;
336
337 if (!frag->offset)
338 /* On first frag (offset == 0), replenish page.
339 * Other frags that point to the same page (with a different
340 * offset) should just use the new one without replenishing again
341 * by themselves.
342 */
343 err = mlx5e_page_alloc_fragmented(rq->page_pool,
344 frag->frag_page);
345
346 return err;
347 }
348
mlx5e_frag_can_release(struct mlx5e_wqe_frag_info * frag)349 static bool mlx5e_frag_can_release(struct mlx5e_wqe_frag_info *frag)
350 {
351 #define CAN_RELEASE_MASK \
352 (BIT(MLX5E_WQE_FRAG_LAST_IN_PAGE) | BIT(MLX5E_WQE_FRAG_SKIP_RELEASE))
353
354 #define CAN_RELEASE_VALUE BIT(MLX5E_WQE_FRAG_LAST_IN_PAGE)
355
356 return (frag->flags & CAN_RELEASE_MASK) == CAN_RELEASE_VALUE;
357 }
358
mlx5e_put_rx_frag(struct mlx5e_rq * rq,struct mlx5e_wqe_frag_info * frag)359 static inline void mlx5e_put_rx_frag(struct mlx5e_rq *rq,
360 struct mlx5e_wqe_frag_info *frag)
361 {
362 if (mlx5e_frag_can_release(frag))
363 mlx5e_page_release_fragmented(rq->page_pool, frag->frag_page);
364 }
365
get_frag(struct mlx5e_rq * rq,u16 ix)366 static inline struct mlx5e_wqe_frag_info *get_frag(struct mlx5e_rq *rq, u16 ix)
367 {
368 return &rq->wqe.frags[ix << rq->wqe.info.log_num_frags];
369 }
370
mlx5e_alloc_rx_wqe(struct mlx5e_rq * rq,struct mlx5e_rx_wqe_cyc * wqe,u16 ix)371 static int mlx5e_alloc_rx_wqe(struct mlx5e_rq *rq, struct mlx5e_rx_wqe_cyc *wqe,
372 u16 ix)
373 {
374 struct mlx5e_wqe_frag_info *frag = get_frag(rq, ix);
375 int err;
376 int i;
377
378 for (i = 0; i < rq->wqe.info.num_frags; i++, frag++) {
379 dma_addr_t addr;
380 u16 headroom;
381
382 err = mlx5e_get_rx_frag(rq, frag);
383 if (unlikely(err))
384 goto free_frags;
385
386 frag->flags &= ~BIT(MLX5E_WQE_FRAG_SKIP_RELEASE);
387
388 headroom = i == 0 ? rq->buff.headroom : 0;
389 addr = page_pool_get_dma_addr_netmem(frag->frag_page->netmem);
390 wqe->data[i].addr = cpu_to_be64(addr + frag->offset + headroom);
391 }
392
393 return 0;
394
395 free_frags:
396 while (--i >= 0)
397 mlx5e_put_rx_frag(rq, --frag);
398
399 return err;
400 }
401
mlx5e_free_rx_wqe(struct mlx5e_rq * rq,struct mlx5e_wqe_frag_info * wi)402 static inline void mlx5e_free_rx_wqe(struct mlx5e_rq *rq,
403 struct mlx5e_wqe_frag_info *wi)
404 {
405 int i;
406
407 for (i = 0; i < rq->wqe.info.num_frags; i++, wi++)
408 mlx5e_put_rx_frag(rq, wi);
409 }
410
mlx5e_xsk_free_rx_wqe(struct mlx5e_wqe_frag_info * wi)411 static void mlx5e_xsk_free_rx_wqe(struct mlx5e_wqe_frag_info *wi)
412 {
413 if (wi->flags & BIT(MLX5E_WQE_FRAG_SKIP_RELEASE))
414 return;
415
416 xsk_buff_free(*wi->xskp);
417 wi->flags |= BIT(MLX5E_WQE_FRAG_SKIP_RELEASE);
418 }
419
mlx5e_dealloc_rx_wqe(struct mlx5e_rq * rq,u16 ix)420 static void mlx5e_dealloc_rx_wqe(struct mlx5e_rq *rq, u16 ix)
421 {
422 struct mlx5e_wqe_frag_info *wi = get_frag(rq, ix);
423
424 if (rq->xsk_pool) {
425 mlx5e_xsk_free_rx_wqe(wi);
426 } else {
427 mlx5e_free_rx_wqe(rq, wi);
428
429 /* Avoid a second release of the wqe pages: dealloc is called
430 * for the same missing wqes on regular RQ flush and on regular
431 * RQ close. This happens when XSK RQs come into play.
432 */
433 for (int i = 0; i < rq->wqe.info.num_frags; i++, wi++)
434 wi->flags |= BIT(MLX5E_WQE_FRAG_SKIP_RELEASE);
435 }
436 }
437
mlx5e_xsk_free_rx_wqes(struct mlx5e_rq * rq,u16 ix,int wqe_bulk)438 static void mlx5e_xsk_free_rx_wqes(struct mlx5e_rq *rq, u16 ix, int wqe_bulk)
439 {
440 struct mlx5_wq_cyc *wq = &rq->wqe.wq;
441 int i;
442
443 for (i = 0; i < wqe_bulk; i++) {
444 int j = mlx5_wq_cyc_ctr2ix(wq, ix + i);
445 struct mlx5e_wqe_frag_info *wi;
446
447 wi = get_frag(rq, j);
448 /* The page is always put into the Reuse Ring, because there
449 * is no way to return the page to the userspace when the
450 * interface goes down.
451 */
452 mlx5e_xsk_free_rx_wqe(wi);
453 }
454 }
455
mlx5e_free_rx_wqes(struct mlx5e_rq * rq,u16 ix,int wqe_bulk)456 static void mlx5e_free_rx_wqes(struct mlx5e_rq *rq, u16 ix, int wqe_bulk)
457 {
458 struct mlx5_wq_cyc *wq = &rq->wqe.wq;
459 int i;
460
461 for (i = 0; i < wqe_bulk; i++) {
462 int j = mlx5_wq_cyc_ctr2ix(wq, ix + i);
463 struct mlx5e_wqe_frag_info *wi;
464
465 wi = get_frag(rq, j);
466 mlx5e_free_rx_wqe(rq, wi);
467 }
468 }
469
mlx5e_alloc_rx_wqes(struct mlx5e_rq * rq,u16 ix,int wqe_bulk)470 static int mlx5e_alloc_rx_wqes(struct mlx5e_rq *rq, u16 ix, int wqe_bulk)
471 {
472 struct mlx5_wq_cyc *wq = &rq->wqe.wq;
473 int i;
474
475 for (i = 0; i < wqe_bulk; i++) {
476 int j = mlx5_wq_cyc_ctr2ix(wq, ix + i);
477 struct mlx5e_rx_wqe_cyc *wqe;
478
479 wqe = mlx5_wq_cyc_get_wqe(wq, j);
480
481 if (unlikely(mlx5e_alloc_rx_wqe(rq, wqe, j)))
482 break;
483 }
484
485 return i;
486 }
487
mlx5e_refill_rx_wqes(struct mlx5e_rq * rq,u16 ix,int wqe_bulk)488 static int mlx5e_refill_rx_wqes(struct mlx5e_rq *rq, u16 ix, int wqe_bulk)
489 {
490 int remaining = wqe_bulk;
491 int total_alloc = 0;
492 int refill_alloc;
493 int refill;
494
495 /* The WQE bulk is split into smaller bulks that are sized
496 * according to the page pool cache refill size to avoid overflowing
497 * the page pool cache due to too many page releases at once.
498 */
499 do {
500 refill = min_t(u16, rq->wqe.info.refill_unit, remaining);
501
502 mlx5e_free_rx_wqes(rq, ix + total_alloc, refill);
503 refill_alloc = mlx5e_alloc_rx_wqes(rq, ix + total_alloc, refill);
504 if (unlikely(refill_alloc != refill))
505 goto err_free;
506
507 total_alloc += refill_alloc;
508 remaining -= refill;
509 } while (remaining);
510
511 return total_alloc;
512
513 err_free:
514 mlx5e_free_rx_wqes(rq, ix, total_alloc + refill_alloc);
515
516 for (int i = 0; i < total_alloc + refill; i++) {
517 int j = mlx5_wq_cyc_ctr2ix(&rq->wqe.wq, ix + i);
518 struct mlx5e_wqe_frag_info *frag;
519
520 frag = get_frag(rq, j);
521 for (int k = 0; k < rq->wqe.info.num_frags; k++, frag++)
522 frag->flags |= BIT(MLX5E_WQE_FRAG_SKIP_RELEASE);
523 }
524
525 return 0;
526 }
527
528 static void
mlx5e_add_skb_shared_info_frag(struct mlx5e_rq * rq,struct skb_shared_info * sinfo,struct xdp_buff * xdp,struct mlx5e_frag_page * frag_page,u32 frag_offset,u32 len)529 mlx5e_add_skb_shared_info_frag(struct mlx5e_rq *rq, struct skb_shared_info *sinfo,
530 struct xdp_buff *xdp, struct mlx5e_frag_page *frag_page,
531 u32 frag_offset, u32 len)
532 {
533 netmem_ref netmem = frag_page->netmem;
534 skb_frag_t *frag;
535
536 dma_addr_t addr = page_pool_get_dma_addr_netmem(netmem);
537
538 dma_sync_single_for_cpu(rq->pdev, addr + frag_offset, len, rq->buff.map_dir);
539 if (!xdp_buff_has_frags(xdp)) {
540 /* Init on the first fragment to avoid cold cache access
541 * when possible.
542 */
543 sinfo->nr_frags = 0;
544 sinfo->xdp_frags_size = 0;
545 xdp_buff_set_frags_flag(xdp);
546 }
547
548 frag = &sinfo->frags[sinfo->nr_frags++];
549 skb_frag_fill_netmem_desc(frag, netmem, frag_offset, len);
550
551 if (netmem_is_pfmemalloc(netmem))
552 xdp_buff_set_frag_pfmemalloc(xdp);
553 sinfo->xdp_frags_size += len;
554 }
555
556 static inline void
mlx5e_add_skb_frag(struct mlx5e_rq * rq,struct sk_buff * skb,struct mlx5e_frag_page * frag_page,u32 frag_offset,u32 len,unsigned int truesize)557 mlx5e_add_skb_frag(struct mlx5e_rq *rq, struct sk_buff *skb,
558 struct mlx5e_frag_page *frag_page,
559 u32 frag_offset, u32 len,
560 unsigned int truesize)
561 {
562 dma_addr_t addr = page_pool_get_dma_addr_netmem(frag_page->netmem);
563 u8 next_frag = skb_shinfo(skb)->nr_frags;
564 netmem_ref netmem = frag_page->netmem;
565
566 dma_sync_single_for_cpu(rq->pdev, addr + frag_offset, len,
567 rq->buff.map_dir);
568
569 if (skb_can_coalesce_netmem(skb, next_frag, netmem, frag_offset)) {
570 skb_coalesce_rx_frag(skb, next_frag - 1, len, truesize);
571 return;
572 }
573
574 frag_page->frags++;
575 skb_add_rx_frag_netmem(skb, next_frag, netmem,
576 frag_offset, len, truesize);
577 }
578
579 static inline void
mlx5e_copy_skb_header(struct mlx5e_rq * rq,struct sk_buff * skb,netmem_ref netmem,dma_addr_t addr,int offset_from,int dma_offset,u32 headlen)580 mlx5e_copy_skb_header(struct mlx5e_rq *rq, struct sk_buff *skb,
581 netmem_ref netmem, dma_addr_t addr,
582 int offset_from, int dma_offset, u32 headlen)
583 {
584 const void *from = netmem_address(netmem) + offset_from;
585 /* Aligning len to sizeof(long) optimizes memcpy performance */
586 unsigned int len = ALIGN(headlen, sizeof(long));
587
588 dma_sync_single_for_cpu(rq->pdev, addr + dma_offset, len,
589 rq->buff.map_dir);
590 skb_copy_to_linear_data(skb, from, len);
591 }
592
593 static void
mlx5e_free_rx_mpwqe(struct mlx5e_rq * rq,struct mlx5e_mpw_info * wi)594 mlx5e_free_rx_mpwqe(struct mlx5e_rq *rq, struct mlx5e_mpw_info *wi)
595 {
596 bool no_xdp_xmit;
597 int i;
598
599 /* A common case for AF_XDP. */
600 if (bitmap_full(wi->skip_release_bitmap, rq->mpwqe.pages_per_wqe))
601 return;
602
603 no_xdp_xmit = bitmap_empty(wi->skip_release_bitmap, rq->mpwqe.pages_per_wqe);
604
605 if (rq->xsk_pool) {
606 struct xdp_buff **xsk_buffs = wi->alloc_units.xsk_buffs;
607
608 /* The page is always put into the Reuse Ring, because there
609 * is no way to return the page to userspace when the interface
610 * goes down.
611 */
612 for (i = 0; i < rq->mpwqe.pages_per_wqe; i++)
613 if (no_xdp_xmit || !test_bit(i, wi->skip_release_bitmap))
614 xsk_buff_free(xsk_buffs[i]);
615 } else {
616 for (i = 0; i < rq->mpwqe.pages_per_wqe; i++) {
617 if (no_xdp_xmit || !test_bit(i, wi->skip_release_bitmap)) {
618 struct mlx5e_frag_page *frag_page;
619
620 frag_page = &wi->alloc_units.frag_pages[i];
621 mlx5e_page_release_fragmented(rq->page_pool,
622 frag_page);
623 }
624 }
625 }
626 }
627
mlx5e_post_rx_mpwqe(struct mlx5e_rq * rq,u8 n)628 static void mlx5e_post_rx_mpwqe(struct mlx5e_rq *rq, u8 n)
629 {
630 struct mlx5_wq_ll *wq = &rq->mpwqe.wq;
631
632 do {
633 u16 next_wqe_index = mlx5_wq_ll_get_wqe_next_ix(wq, wq->head);
634
635 mlx5_wq_ll_push(wq, next_wqe_index);
636 } while (--n);
637
638 /* ensure wqes are visible to device before updating doorbell record */
639 dma_wmb();
640
641 mlx5_wq_ll_update_db_record(wq);
642 }
643
mlx5e_alloc_rx_mpwqe(struct mlx5e_rq * rq,u16 ix)644 static int mlx5e_alloc_rx_mpwqe(struct mlx5e_rq *rq, u16 ix)
645 {
646 struct mlx5e_mpw_info *wi = mlx5e_get_mpw_info(rq, ix);
647 struct mlx5e_icosq *sq = rq->icosq;
648 struct mlx5e_frag_page *frag_page;
649 struct mlx5_wq_cyc *wq = &sq->wq;
650 struct mlx5e_umr_wqe *umr_wqe;
651 u32 offset; /* 17-bit value with MTT. */
652 bool sync_locked;
653 u16 pi;
654 int err;
655 int i;
656
657 sync_locked = mlx5e_icosq_sync_lock(sq);
658 pi = mlx5e_icosq_get_next_pi(sq, rq->mpwqe.umr_wqebbs);
659 umr_wqe = mlx5_wq_cyc_get_wqe(wq, pi);
660 memcpy(umr_wqe, &rq->mpwqe.umr_wqe, sizeof(struct mlx5e_umr_wqe));
661
662 frag_page = &wi->alloc_units.frag_pages[0];
663
664 for (i = 0; i < rq->mpwqe.pages_per_wqe; i++, frag_page++) {
665 dma_addr_t addr;
666
667 err = mlx5e_page_alloc_fragmented(rq->page_pool, frag_page);
668 if (unlikely(err))
669 goto err_unmap;
670
671 addr = page_pool_get_dma_addr_netmem(frag_page->netmem);
672 umr_wqe->inline_mtts[i] = (struct mlx5_mtt) {
673 .ptag = cpu_to_be64(addr | MLX5_EN_WR),
674 };
675 }
676
677 /* Pad if needed, in case the value set to ucseg->xlt_octowords
678 * in mlx5e_build_umr_wqe() needed alignment.
679 */
680 if (rq->mpwqe.pages_per_wqe & (MLX5_UMR_MTT_NUM_ENTRIES_ALIGNMENT - 1)) {
681 int pad = ALIGN(rq->mpwqe.pages_per_wqe, MLX5_UMR_MTT_NUM_ENTRIES_ALIGNMENT) -
682 rq->mpwqe.pages_per_wqe;
683
684 memset(&umr_wqe->inline_mtts[rq->mpwqe.pages_per_wqe], 0,
685 sizeof(*umr_wqe->inline_mtts) * pad);
686 }
687
688 bitmap_zero(wi->skip_release_bitmap, rq->mpwqe.pages_per_wqe);
689 wi->consumed_strides = 0;
690
691 umr_wqe->hdr.ctrl.opmod_idx_opcode =
692 cpu_to_be32((sq->pc << MLX5_WQE_CTRL_WQE_INDEX_SHIFT) |
693 MLX5_OPCODE_UMR);
694
695 offset = (ix * rq->mpwqe.mtts_per_wqe) * sizeof(struct mlx5_mtt) / MLX5_OCTWORD;
696 umr_wqe->hdr.uctrl.xlt_offset = cpu_to_be16(offset);
697
698 sq->db.wqe_info[pi] = (struct mlx5e_icosq_wqe_info) {
699 .wqe_type = MLX5E_ICOSQ_WQE_UMR_RX,
700 .num_wqebbs = rq->mpwqe.umr_wqebbs,
701 .umr.rq = rq,
702 };
703
704 sq->pc += rq->mpwqe.umr_wqebbs;
705 mlx5e_icosq_sync_unlock(sq, sync_locked);
706
707 sq->doorbell_cseg = &umr_wqe->hdr.ctrl;
708
709 return 0;
710
711 err_unmap:
712 mlx5e_icosq_sync_unlock(sq, sync_locked);
713 while (--i >= 0) {
714 frag_page--;
715 mlx5e_page_release_fragmented(rq->page_pool, frag_page);
716 }
717
718 bitmap_fill(wi->skip_release_bitmap, rq->mpwqe.pages_per_wqe);
719
720 rq->stats->buff_alloc_err++;
721
722 return err;
723 }
724
mlx5e_dealloc_rx_mpwqe(struct mlx5e_rq * rq,u16 ix)725 static void mlx5e_dealloc_rx_mpwqe(struct mlx5e_rq *rq, u16 ix)
726 {
727 struct mlx5e_mpw_info *wi = mlx5e_get_mpw_info(rq, ix);
728 /* This function is called on rq/netdev close. */
729 mlx5e_free_rx_mpwqe(rq, wi);
730
731 /* Avoid a second release of the wqe pages: dealloc is called also
732 * for missing wqes on an already flushed RQ.
733 */
734 bitmap_fill(wi->skip_release_bitmap, rq->mpwqe.pages_per_wqe);
735 }
736
mlx5e_mpwqe_dealloc_linear_page(struct mlx5e_rq * rq)737 void mlx5e_mpwqe_dealloc_linear_page(struct mlx5e_rq *rq)
738 {
739 struct mlx5e_mpw_linear_info *li = rq->mpwqe.linear_info;
740
741 if (!li || !li->frag_page.netmem)
742 return;
743
744 mlx5e_page_release_fragmented(rq->page_pool, &li->frag_page);
745
746 /* Recovery flow can call this function and then alloc again, so leave
747 * things in a good state for re-allocation.
748 */
749 li->frag_page.netmem = 0;
750 li->frag_page.frags = li->max_frags;
751 }
752
mlx5e_post_rx_wqes(struct mlx5e_rq * rq)753 INDIRECT_CALLABLE_SCOPE bool mlx5e_post_rx_wqes(struct mlx5e_rq *rq)
754 {
755 struct mlx5_wq_cyc *wq = &rq->wqe.wq;
756 int wqe_bulk, count;
757 bool busy = false;
758 u16 head;
759
760 if (unlikely(!test_bit(MLX5E_RQ_STATE_ENABLED, &rq->state)))
761 return false;
762
763 if (mlx5_wq_cyc_missing(wq) < rq->wqe.info.wqe_bulk)
764 return false;
765
766 if (rq->page_pool)
767 page_pool_nid_changed(rq->page_pool, numa_mem_id());
768
769 wqe_bulk = mlx5_wq_cyc_missing(wq);
770 head = mlx5_wq_cyc_get_head(wq);
771
772 /* Don't allow any newly allocated WQEs to share the same page with old
773 * WQEs that aren't completed yet. Stop earlier.
774 */
775 wqe_bulk -= (head + wqe_bulk) & rq->wqe.info.wqe_index_mask;
776
777 if (!rq->xsk_pool) {
778 count = mlx5e_refill_rx_wqes(rq, head, wqe_bulk);
779 } else if (likely(!dma_dev_need_sync(rq->pdev))) {
780 mlx5e_xsk_free_rx_wqes(rq, head, wqe_bulk);
781 count = mlx5e_xsk_alloc_rx_wqes_batched(rq, head, wqe_bulk);
782 } else {
783 mlx5e_xsk_free_rx_wqes(rq, head, wqe_bulk);
784 /* If dma_need_sync is true, it's more efficient to call
785 * xsk_buff_alloc in a loop, rather than xsk_buff_alloc_batch,
786 * because the latter does the same check and returns only one
787 * frame.
788 */
789 count = mlx5e_xsk_alloc_rx_wqes(rq, head, wqe_bulk);
790 }
791
792 mlx5_wq_cyc_push_n(wq, count);
793 if (unlikely(count != wqe_bulk)) {
794 rq->stats->buff_alloc_err++;
795 busy = true;
796 }
797
798 /* ensure wqes are visible to device before updating doorbell record */
799 dma_wmb();
800
801 mlx5_wq_cyc_update_db_record(wq);
802
803 return busy;
804 }
805
mlx5e_free_icosq_descs(struct mlx5e_icosq * sq)806 void mlx5e_free_icosq_descs(struct mlx5e_icosq *sq)
807 {
808 u16 sqcc;
809
810 sqcc = sq->cc;
811
812 while (sqcc != sq->pc) {
813 struct mlx5e_icosq_wqe_info *wi;
814 u16 ci;
815
816 ci = mlx5_wq_cyc_ctr2ix(&sq->wq, sqcc);
817 wi = &sq->db.wqe_info[ci];
818 sqcc += wi->num_wqebbs;
819 #ifdef CONFIG_MLX5_EN_TLS
820 switch (wi->wqe_type) {
821 case MLX5E_ICOSQ_WQE_SET_PSV_TLS:
822 mlx5e_ktls_handle_ctx_completion(wi);
823 break;
824 case MLX5E_ICOSQ_WQE_GET_PSV_TLS:
825 mlx5e_ktls_handle_get_psv_completion(wi, sq);
826 break;
827 }
828 #endif
829 }
830 sq->cc = sqcc;
831 }
832
mlx5e_poll_ico_cq(struct mlx5e_cq * cq)833 int mlx5e_poll_ico_cq(struct mlx5e_cq *cq)
834 {
835 struct mlx5e_icosq *sq = container_of(cq, struct mlx5e_icosq, cq);
836 struct mlx5_cqe64 *cqe;
837 u16 sqcc;
838 int i;
839
840 if (unlikely(!test_bit(MLX5E_SQ_STATE_ENABLED, &sq->state)))
841 return 0;
842
843 cqe = mlx5_cqwq_get_cqe(&cq->wq);
844 if (likely(!cqe))
845 return 0;
846
847 /* sq->cc must be updated only after mlx5_cqwq_update_db_record(),
848 * otherwise a cq overrun may occur
849 */
850 sqcc = sq->cc;
851
852 i = 0;
853 do {
854 u16 wqe_counter;
855 bool last_wqe;
856
857 mlx5_cqwq_pop(&cq->wq);
858
859 wqe_counter = be16_to_cpu(cqe->wqe_counter);
860
861 do {
862 struct mlx5e_icosq_wqe_info *wi;
863 u16 ci;
864
865 last_wqe = (sqcc == wqe_counter);
866
867 ci = mlx5_wq_cyc_ctr2ix(&sq->wq, sqcc);
868 wi = &sq->db.wqe_info[ci];
869 sqcc += wi->num_wqebbs;
870
871 if (last_wqe && unlikely(get_cqe_opcode(cqe) != MLX5_CQE_REQ)) {
872 netdev_WARN_ONCE(cq->netdev,
873 "Bad OP in ICOSQ CQE: 0x%x\n",
874 get_cqe_opcode(cqe));
875 #ifdef CONFIG_MLX5_EN_TLS
876 if (wi->wqe_type == MLX5E_ICOSQ_WQE_GET_PSV_TLS)
877 mlx5e_ktls_rx_resync_async_request_cancel(wi);
878 #endif
879 mlx5e_dump_error_cqe(&sq->cq, sq->sqn,
880 (struct mlx5_err_cqe *)cqe);
881 mlx5_wq_cyc_wqe_dump(&sq->wq, ci, wi->num_wqebbs);
882 if (!test_and_set_bit(MLX5E_SQ_STATE_RECOVERING, &sq->state))
883 queue_work(cq->workqueue, &sq->recover_work);
884 break;
885 }
886
887 switch (wi->wqe_type) {
888 case MLX5E_ICOSQ_WQE_UMR_RX:
889 wi->umr.rq->mpwqe.umr_completed++;
890 break;
891 case MLX5E_ICOSQ_WQE_NOP:
892 break;
893 #ifdef CONFIG_MLX5_EN_TLS
894 case MLX5E_ICOSQ_WQE_UMR_TLS:
895 break;
896 case MLX5E_ICOSQ_WQE_SET_PSV_TLS:
897 mlx5e_ktls_handle_ctx_completion(wi);
898 break;
899 case MLX5E_ICOSQ_WQE_GET_PSV_TLS:
900 mlx5e_ktls_handle_get_psv_completion(wi, sq);
901 break;
902 #endif
903 default:
904 netdev_WARN_ONCE(cq->netdev,
905 "Bad WQE type in ICOSQ WQE info: 0x%x\n",
906 wi->wqe_type);
907 }
908 } while (!last_wqe);
909 } while ((++i < MLX5E_TX_CQ_POLL_BUDGET) && (cqe = mlx5_cqwq_get_cqe(&cq->wq)));
910
911 sq->cc = sqcc;
912
913 mlx5_cqwq_update_db_record(&cq->wq);
914
915 return i;
916 }
917
mlx5e_reclaim_mpwqe_pages(struct mlx5e_rq * rq,int head,int reclaim)918 static void mlx5e_reclaim_mpwqe_pages(struct mlx5e_rq *rq, int head,
919 int reclaim)
920 {
921 struct mlx5_wq_ll *wq = &rq->mpwqe.wq;
922
923 for (int i = 0; i < reclaim; i++) {
924 head = mlx5_wq_ll_get_wqe_next_ix(wq, head);
925
926 mlx5e_dealloc_rx_mpwqe(rq, head);
927 }
928 }
929
mlx5e_post_rx_mpwqes(struct mlx5e_rq * rq)930 INDIRECT_CALLABLE_SCOPE bool mlx5e_post_rx_mpwqes(struct mlx5e_rq *rq)
931 {
932 struct mlx5_wq_ll *wq = &rq->mpwqe.wq;
933 u8 umr_completed = rq->mpwqe.umr_completed;
934 struct mlx5e_icosq *sq = rq->icosq;
935 bool reclaimed = false;
936 int alloc_err = 0;
937 u8 missing, i;
938 u16 head;
939
940 if (unlikely(!test_bit(MLX5E_RQ_STATE_ENABLED, &rq->state)))
941 return false;
942
943 if (umr_completed) {
944 mlx5e_post_rx_mpwqe(rq, umr_completed);
945 rq->mpwqe.umr_in_progress -= umr_completed;
946 rq->mpwqe.umr_completed = 0;
947 }
948
949 missing = mlx5_wq_ll_missing(wq) - rq->mpwqe.umr_in_progress;
950
951 if (unlikely(rq->mpwqe.umr_in_progress > rq->mpwqe.umr_last_bulk))
952 rq->stats->congst_umr++;
953
954 if (likely(missing < rq->mpwqe.min_wqe_bulk))
955 return false;
956
957 if (rq->page_pool)
958 page_pool_nid_changed(rq->page_pool, numa_mem_id());
959 if (rq->hd_page_pool)
960 page_pool_nid_changed(rq->hd_page_pool, numa_mem_id());
961
962 head = rq->mpwqe.actual_wq_head;
963 i = missing;
964 do {
965 struct mlx5e_mpw_info *wi = mlx5e_get_mpw_info(rq, head);
966
967 /* Deferred free for better page pool cache usage. */
968 mlx5e_free_rx_mpwqe(rq, wi);
969
970 retry:
971 alloc_err = rq->xsk_pool ? mlx5e_xsk_alloc_rx_mpwqe(rq, head) :
972 mlx5e_alloc_rx_mpwqe(rq, head);
973 if (unlikely(alloc_err)) {
974 int reclaim = i - 1;
975
976 if (reclaimed || !reclaim)
977 break;
978
979 mlx5e_reclaim_mpwqe_pages(rq, head, reclaim);
980 reclaimed = true;
981
982 goto retry;
983 }
984 head = mlx5_wq_ll_get_wqe_next_ix(wq, head);
985 } while (--i);
986
987 rq->mpwqe.umr_last_bulk = missing - i;
988 if (sq->doorbell_cseg) {
989 mlx5e_notify_hw(&sq->wq, sq->pc, sq->uar_map, sq->doorbell_cseg);
990 sq->doorbell_cseg = NULL;
991 }
992
993 rq->mpwqe.umr_in_progress += rq->mpwqe.umr_last_bulk;
994 rq->mpwqe.actual_wq_head = head;
995
996 /* If XSK Fill Ring doesn't have enough frames, report the error, so
997 * that one of the actions can be performed:
998 * 1. If need_wakeup is used, signal that the application has to kick
999 * the driver when it refills the Fill Ring.
1000 * 2. Otherwise, busy poll by rescheduling the NAPI poll.
1001 */
1002 if (unlikely(alloc_err == -ENOMEM && rq->xsk_pool))
1003 return true;
1004
1005 return false;
1006 }
1007
mlx5e_lro_update_tcp_hdr(struct mlx5_cqe64 * cqe,struct tcphdr * tcp)1008 static void mlx5e_lro_update_tcp_hdr(struct mlx5_cqe64 *cqe, struct tcphdr *tcp)
1009 {
1010 u8 l4_hdr_type = get_cqe_l4_hdr_type(cqe);
1011 u8 tcp_ack = (l4_hdr_type == CQE_L4_HDR_TYPE_TCP_ACK_NO_DATA) ||
1012 (l4_hdr_type == CQE_L4_HDR_TYPE_TCP_ACK_AND_DATA);
1013
1014 tcp->check = 0;
1015 tcp->psh = get_cqe_lro_tcppsh(cqe);
1016
1017 if (tcp_ack) {
1018 tcp->ack = 1;
1019 tcp->ack_seq = cqe->lro.ack_seq_num;
1020 tcp->window = cqe->lro.tcp_win;
1021 }
1022 }
1023
mlx5e_lro_update_hdr(struct sk_buff * skb,struct mlx5_cqe64 * cqe,u32 cqe_bcnt)1024 static unsigned int mlx5e_lro_update_hdr(struct sk_buff *skb,
1025 struct mlx5_cqe64 *cqe,
1026 u32 cqe_bcnt)
1027 {
1028 struct ethhdr *eth = (struct ethhdr *)(skb->data);
1029 struct tcphdr *tcp;
1030 int network_depth = 0;
1031 __wsum check;
1032 __be16 proto;
1033 u16 tot_len;
1034 void *ip_p;
1035
1036 proto = __vlan_get_protocol(skb, eth->h_proto, &network_depth);
1037
1038 tot_len = cqe_bcnt - network_depth;
1039 ip_p = skb->data + network_depth;
1040
1041 if (proto == htons(ETH_P_IP)) {
1042 struct iphdr *ipv4 = ip_p;
1043
1044 tcp = ip_p + sizeof(struct iphdr);
1045 skb_shinfo(skb)->gso_type = SKB_GSO_TCPV4;
1046
1047 ipv4->ttl = cqe->lro.min_ttl;
1048 ipv4->tot_len = cpu_to_be16(tot_len);
1049 ipv4->check = 0;
1050 ipv4->check = ip_fast_csum((unsigned char *)ipv4,
1051 ipv4->ihl);
1052
1053 mlx5e_lro_update_tcp_hdr(cqe, tcp);
1054 check = csum_partial(tcp, tcp->doff * 4,
1055 csum_unfold((__force __sum16)cqe->check_sum));
1056 /* Almost done, don't forget the pseudo header */
1057 tcp->check = tcp_v4_check(tot_len - sizeof(struct iphdr),
1058 ipv4->saddr, ipv4->daddr, check);
1059 } else {
1060 u16 payload_len = tot_len - sizeof(struct ipv6hdr);
1061 struct ipv6hdr *ipv6 = ip_p;
1062
1063 tcp = ip_p + sizeof(struct ipv6hdr);
1064 skb_shinfo(skb)->gso_type = SKB_GSO_TCPV6;
1065
1066 ipv6->hop_limit = cqe->lro.min_ttl;
1067 ipv6->payload_len = cpu_to_be16(payload_len);
1068
1069 mlx5e_lro_update_tcp_hdr(cqe, tcp);
1070 check = csum_partial(tcp, tcp->doff * 4,
1071 csum_unfold((__force __sum16)cqe->check_sum));
1072 /* Almost done, don't forget the pseudo header */
1073 tcp->check = tcp_v6_check(payload_len, &ipv6->saddr,
1074 &ipv6->daddr, check);
1075 }
1076
1077 return (unsigned int)((unsigned char *)tcp + tcp->doff * 4 - skb->data);
1078 }
1079
mlx5e_shampo_update_ipv4_udp_hdr(struct mlx5e_rq * rq,struct iphdr * ipv4)1080 static void mlx5e_shampo_update_ipv4_udp_hdr(struct mlx5e_rq *rq, struct iphdr *ipv4)
1081 {
1082 int udp_off = rq->hw_gro_data->fk.control.thoff;
1083 struct sk_buff *skb = rq->hw_gro_data->skb;
1084 struct udphdr *uh;
1085
1086 uh = (struct udphdr *)(skb->data + udp_off);
1087 udp_set_len_short(uh, skb->len - udp_off);
1088
1089 if (uh->check)
1090 uh->check = ~udp_v4_check(skb->len - udp_off, ipv4->saddr,
1091 ipv4->daddr, 0);
1092
1093 skb->csum_start = (unsigned char *)uh - skb->head;
1094 skb->csum_offset = offsetof(struct udphdr, check);
1095
1096 skb_shinfo(skb)->gso_type |= SKB_GSO_UDP_L4;
1097 }
1098
mlx5e_shampo_update_ipv6_udp_hdr(struct mlx5e_rq * rq,struct ipv6hdr * ipv6)1099 static void mlx5e_shampo_update_ipv6_udp_hdr(struct mlx5e_rq *rq, struct ipv6hdr *ipv6)
1100 {
1101 int udp_off = rq->hw_gro_data->fk.control.thoff;
1102 struct sk_buff *skb = rq->hw_gro_data->skb;
1103 struct udphdr *uh;
1104
1105 uh = (struct udphdr *)(skb->data + udp_off);
1106 udp_set_len_short(uh, skb->len - udp_off);
1107
1108 if (uh->check)
1109 uh->check = ~udp_v6_check(skb->len - udp_off, &ipv6->saddr,
1110 &ipv6->daddr, 0);
1111
1112 skb->csum_start = (unsigned char *)uh - skb->head;
1113 skb->csum_offset = offsetof(struct udphdr, check);
1114
1115 skb_shinfo(skb)->gso_type |= SKB_GSO_UDP_L4;
1116 }
1117
mlx5e_shampo_get_hd_buf_info(struct mlx5e_rq * rq,struct mlx5_cqe64 * cqe,struct mlx5e_dma_info ** di,u32 * head_offset)1118 static void mlx5e_shampo_get_hd_buf_info(struct mlx5e_rq *rq,
1119 struct mlx5_cqe64 *cqe,
1120 struct mlx5e_dma_info **di,
1121 u32 *head_offset)
1122 {
1123 u32 header_index = mlx5e_shampo_get_cqe_header_index(rq, cqe);
1124 struct mlx5e_shampo_hd *shampo = rq->mpwqe.shampo;
1125 u32 di_index;
1126
1127 di_index = header_index >> MLX5E_SHAMPO_LOG_WQ_HEADER_PER_PAGE;
1128 *di = &shampo->hd_buf_pages[di_index];
1129 *head_offset = (header_index & (MLX5E_SHAMPO_WQ_HEADER_PER_PAGE - 1)) *
1130 BIT(MLX5E_SHAMPO_LOG_HEADER_ENTRY_SIZE);
1131 }
1132
mlx5e_shampo_get_hdr(struct mlx5e_rq * rq,struct mlx5_cqe64 * cqe,int len)1133 static void *mlx5e_shampo_get_hdr(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe,
1134 int len)
1135 {
1136 struct mlx5e_dma_info *di;
1137 u32 head_offset;
1138
1139 mlx5e_shampo_get_hd_buf_info(rq, cqe, &di, &head_offset);
1140
1141 dma_sync_single_range_for_cpu(rq->pdev, di->addr, head_offset,
1142 len, rq->buff.map_dir);
1143
1144 return page_address(di->page) + head_offset;
1145 }
1146
mlx5e_shampo_update_fin_psh_flags(struct mlx5e_rq * rq,struct mlx5_cqe64 * cqe,struct tcphdr * skb_tcp_hd)1147 static void mlx5e_shampo_update_fin_psh_flags(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe,
1148 struct tcphdr *skb_tcp_hd)
1149 {
1150 int nhoff = ETH_HLEN + rq->hw_gro_data->fk.control.thoff;
1151 int len = nhoff + sizeof(struct tcphdr);
1152 struct tcphdr *last_tcp_hd;
1153 void *last_hd_addr;
1154
1155 last_hd_addr = mlx5e_shampo_get_hdr(rq, cqe, len);
1156 last_tcp_hd = (struct tcphdr *)(last_hd_addr + nhoff);
1157
1158 tcp_flag_word(skb_tcp_hd) |= tcp_flag_word(last_tcp_hd) & (TCP_FLAG_FIN | TCP_FLAG_PSH);
1159 }
1160
mlx5e_shampo_update_ipv4_tcp_hdr(struct mlx5e_rq * rq,struct iphdr * ipv4,struct mlx5_cqe64 * cqe,bool match)1161 static void mlx5e_shampo_update_ipv4_tcp_hdr(struct mlx5e_rq *rq, struct iphdr *ipv4,
1162 struct mlx5_cqe64 *cqe, bool match)
1163 {
1164 int tcp_off = rq->hw_gro_data->fk.control.thoff;
1165 struct sk_buff *skb = rq->hw_gro_data->skb;
1166 struct tcphdr *tcp;
1167
1168 tcp = (struct tcphdr *)(skb->data + tcp_off);
1169 if (match)
1170 mlx5e_shampo_update_fin_psh_flags(rq, cqe, tcp);
1171
1172 tcp->check = ~tcp_v4_check(skb->len - tcp_off, ipv4->saddr,
1173 ipv4->daddr, 0);
1174 skb_shinfo(skb)->gso_type |= SKB_GSO_TCPV4;
1175 if (ntohs(ipv4->id) == rq->hw_gro_data->second_ip_id) {
1176 bool encap = rq->hw_gro_data->fk.control.flags & FLOW_DIS_ENCAPSULATION;
1177
1178 skb_shinfo(skb)->gso_type |= encap ? SKB_GSO_TCP_FIXEDID_INNER :
1179 SKB_GSO_TCP_FIXEDID;
1180 }
1181
1182 skb->csum_start = (unsigned char *)tcp - skb->head;
1183 skb->csum_offset = offsetof(struct tcphdr, check);
1184 }
1185
mlx5e_shampo_update_ipv6_tcp_hdr(struct mlx5e_rq * rq,struct ipv6hdr * ipv6,struct mlx5_cqe64 * cqe,bool match)1186 static void mlx5e_shampo_update_ipv6_tcp_hdr(struct mlx5e_rq *rq, struct ipv6hdr *ipv6,
1187 struct mlx5_cqe64 *cqe, bool match)
1188 {
1189 int tcp_off = rq->hw_gro_data->fk.control.thoff;
1190 struct sk_buff *skb = rq->hw_gro_data->skb;
1191 struct tcphdr *tcp;
1192
1193 tcp = (struct tcphdr *)(skb->data + tcp_off);
1194 if (match)
1195 mlx5e_shampo_update_fin_psh_flags(rq, cqe, tcp);
1196
1197 tcp->check = ~tcp_v6_check(skb->len - tcp_off, &ipv6->saddr,
1198 &ipv6->daddr, 0);
1199 skb_shinfo(skb)->gso_type |= SKB_GSO_TCPV6;
1200 skb->csum_start = (unsigned char *)tcp - skb->head;
1201 skb->csum_offset = offsetof(struct tcphdr, check);
1202 }
1203
mlx5e_shampo_update_hdr(struct mlx5e_rq * rq,struct mlx5_cqe64 * cqe,bool match)1204 static void mlx5e_shampo_update_hdr(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe, bool match)
1205 {
1206 bool is_ipv4 = (rq->hw_gro_data->fk.basic.n_proto == htons(ETH_P_IP));
1207 struct sk_buff *skb = rq->hw_gro_data->skb;
1208
1209 skb_shinfo(skb)->gso_segs = NAPI_GRO_CB(skb)->count;
1210 skb->ip_summed = CHECKSUM_PARTIAL;
1211
1212 if (is_ipv4) {
1213 int nhoff = rq->hw_gro_data->fk.control.thoff - sizeof(struct iphdr);
1214 struct iphdr *ipv4 = (struct iphdr *)(skb->data + nhoff);
1215 __be16 newlen = htons(skb->len - nhoff);
1216
1217 csum_replace2(&ipv4->check, ipv4->tot_len, newlen);
1218 ipv4->tot_len = newlen;
1219
1220 if (ipv4->protocol == IPPROTO_TCP)
1221 mlx5e_shampo_update_ipv4_tcp_hdr(rq, ipv4, cqe, match);
1222 else
1223 mlx5e_shampo_update_ipv4_udp_hdr(rq, ipv4);
1224 } else {
1225 int nhoff = rq->hw_gro_data->fk.control.thoff - sizeof(struct ipv6hdr);
1226 struct ipv6hdr *ipv6 = (struct ipv6hdr *)(skb->data + nhoff);
1227
1228 ipv6->payload_len = htons(skb->len - nhoff - sizeof(*ipv6));
1229
1230 if (ipv6->nexthdr == IPPROTO_TCP)
1231 mlx5e_shampo_update_ipv6_tcp_hdr(rq, ipv6, cqe, match);
1232 else
1233 mlx5e_shampo_update_ipv6_udp_hdr(rq, ipv6);
1234 }
1235 }
1236
mlx5e_skb_set_hash(struct mlx5_cqe64 * cqe,struct sk_buff * skb)1237 static inline void mlx5e_skb_set_hash(struct mlx5_cqe64 *cqe,
1238 struct sk_buff *skb)
1239 {
1240 u8 cht = cqe->rss_hash_type;
1241 int ht = (cht & CQE_RSS_HTYPE_L4) ? PKT_HASH_TYPE_L4 :
1242 (cht & CQE_RSS_HTYPE_IP) ? PKT_HASH_TYPE_L3 :
1243 PKT_HASH_TYPE_NONE;
1244 skb_set_hash(skb, be32_to_cpu(cqe->rss_hash_result), ht);
1245 }
1246
is_last_ethertype_ip(struct sk_buff * skb,int * network_depth,__be16 * proto)1247 static inline bool is_last_ethertype_ip(struct sk_buff *skb, int *network_depth,
1248 __be16 *proto)
1249 {
1250 *proto = ((struct ethhdr *)skb->data)->h_proto;
1251 *proto = __vlan_get_protocol(skb, *proto, network_depth);
1252
1253 if (*proto == htons(ETH_P_IP))
1254 return pskb_may_pull(skb, *network_depth + sizeof(struct iphdr));
1255
1256 if (*proto == htons(ETH_P_IPV6))
1257 return pskb_may_pull(skb, *network_depth + sizeof(struct ipv6hdr));
1258
1259 return false;
1260 }
1261
mlx5e_enable_ecn(struct mlx5e_rq * rq,struct sk_buff * skb)1262 static inline void mlx5e_enable_ecn(struct mlx5e_rq *rq, struct sk_buff *skb)
1263 {
1264 int network_depth = 0;
1265 __be16 proto;
1266 void *ip;
1267 int rc;
1268
1269 if (unlikely(!is_last_ethertype_ip(skb, &network_depth, &proto)))
1270 return;
1271
1272 ip = skb->data + network_depth;
1273 rc = ((proto == htons(ETH_P_IP)) ? IP_ECN_set_ce((struct iphdr *)ip) :
1274 IP6_ECN_set_ce(skb, (struct ipv6hdr *)ip));
1275
1276 rq->stats->ecn_mark += !!rc;
1277 }
1278
get_ip_proto(struct sk_buff * skb,int network_depth,__be16 proto)1279 static u8 get_ip_proto(struct sk_buff *skb, int network_depth, __be16 proto)
1280 {
1281 void *ip_p = skb->data + network_depth;
1282
1283 return (proto == htons(ETH_P_IP)) ? ((struct iphdr *)ip_p)->protocol :
1284 ((struct ipv6hdr *)ip_p)->nexthdr;
1285 }
1286
1287 #define short_frame(size) ((size) <= ETH_ZLEN + ETH_FCS_LEN)
1288
1289 #define MAX_PADDING 8
1290
1291 static void
tail_padding_csum_slow(struct sk_buff * skb,int offset,int len,struct mlx5e_rq_stats * stats)1292 tail_padding_csum_slow(struct sk_buff *skb, int offset, int len,
1293 struct mlx5e_rq_stats *stats)
1294 {
1295 stats->csum_complete_tail_slow++;
1296 skb->csum = csum_block_add(skb->csum,
1297 skb_checksum(skb, offset, len, 0),
1298 offset);
1299 }
1300
1301 static void
tail_padding_csum(struct sk_buff * skb,int offset,struct mlx5e_rq_stats * stats)1302 tail_padding_csum(struct sk_buff *skb, int offset,
1303 struct mlx5e_rq_stats *stats)
1304 {
1305 u8 tail_padding[MAX_PADDING];
1306 int len = skb->len - offset;
1307 void *tail;
1308
1309 if (unlikely(len > MAX_PADDING)) {
1310 tail_padding_csum_slow(skb, offset, len, stats);
1311 return;
1312 }
1313
1314 tail = skb_header_pointer(skb, offset, len, tail_padding);
1315 if (unlikely(!tail)) {
1316 tail_padding_csum_slow(skb, offset, len, stats);
1317 return;
1318 }
1319
1320 stats->csum_complete_tail++;
1321 skb->csum = csum_block_add(skb->csum, csum_partial(tail, len, 0), offset);
1322 }
1323
1324 static void
mlx5e_skb_csum_fixup(struct sk_buff * skb,int network_depth,__be16 proto,struct mlx5e_rq_stats * stats)1325 mlx5e_skb_csum_fixup(struct sk_buff *skb, int network_depth, __be16 proto,
1326 struct mlx5e_rq_stats *stats)
1327 {
1328 struct ipv6hdr *ip6;
1329 struct iphdr *ip4;
1330 int pkt_len;
1331
1332 /* Fixup vlan headers, if any */
1333 if (network_depth > ETH_HLEN)
1334 /* CQE csum is calculated from the IP header and does
1335 * not cover VLAN headers (if present). This will add
1336 * the checksum manually.
1337 */
1338 skb->csum = csum_partial(skb->data + ETH_HLEN,
1339 network_depth - ETH_HLEN,
1340 skb->csum);
1341
1342 /* Fixup tail padding, if any */
1343 switch (proto) {
1344 case htons(ETH_P_IP):
1345 ip4 = (struct iphdr *)(skb->data + network_depth);
1346 pkt_len = network_depth + ntohs(ip4->tot_len);
1347 break;
1348 case htons(ETH_P_IPV6):
1349 ip6 = (struct ipv6hdr *)(skb->data + network_depth);
1350 pkt_len = network_depth + sizeof(*ip6) + ntohs(ip6->payload_len);
1351 break;
1352 default:
1353 return;
1354 }
1355
1356 if (likely(pkt_len >= skb->len))
1357 return;
1358
1359 tail_padding_csum(skb, pkt_len, stats);
1360 }
1361
mlx5e_handle_csum(struct net_device * netdev,struct mlx5_cqe64 * cqe,struct mlx5e_rq * rq,struct sk_buff * skb,bool lro)1362 static inline void mlx5e_handle_csum(struct net_device *netdev,
1363 struct mlx5_cqe64 *cqe,
1364 struct mlx5e_rq *rq,
1365 struct sk_buff *skb,
1366 bool lro)
1367 {
1368 struct mlx5e_rq_stats *stats = rq->stats;
1369 int network_depth = 0;
1370 __be16 proto;
1371
1372 if (unlikely(!(netdev->features & NETIF_F_RXCSUM)))
1373 goto csum_none;
1374
1375 if (lro) {
1376 skb->ip_summed = CHECKSUM_UNNECESSARY;
1377 stats->csum_unnecessary++;
1378 return;
1379 }
1380
1381 /* True when explicitly set via priv flag, or XDP prog is loaded */
1382 if (test_bit(MLX5E_RQ_STATE_NO_CSUM_COMPLETE, &rq->state) ||
1383 get_cqe_tls_offload(cqe))
1384 goto csum_unnecessary;
1385
1386 /* CQE csum doesn't cover padding octets in short ethernet
1387 * frames. And the pad field is appended prior to calculating
1388 * and appending the FCS field.
1389 *
1390 * Detecting these padded frames requires to verify and parse
1391 * IP headers, so we simply force all those small frames to be
1392 * CHECKSUM_UNNECESSARY even if they are not padded.
1393 */
1394 if (short_frame(skb->len))
1395 goto csum_unnecessary;
1396
1397 if (likely(is_last_ethertype_ip(skb, &network_depth, &proto))) {
1398 if (unlikely(get_ip_proto(skb, network_depth, proto) == IPPROTO_SCTP))
1399 goto csum_unnecessary;
1400
1401 stats->csum_complete++;
1402 skb->ip_summed = CHECKSUM_COMPLETE;
1403 skb->csum = csum_unfold((__force __sum16)cqe->check_sum);
1404
1405 if (unlikely(mlx5e_psp_is_rx_flow(cqe))) {
1406 /* TBD: PSP csum complete corrections for now chose csum_unnecessary path */
1407 goto csum_unnecessary;
1408 }
1409
1410 if (test_bit(MLX5E_RQ_STATE_CSUM_FULL, &rq->state))
1411 return; /* CQE csum covers all received bytes */
1412
1413 /* csum might need some fixups ...*/
1414 mlx5e_skb_csum_fixup(skb, network_depth, proto, stats);
1415 return;
1416 }
1417
1418 csum_unnecessary:
1419 if (likely((cqe->hds_ip_ext & CQE_L3_OK) &&
1420 (cqe->hds_ip_ext & CQE_L4_OK))) {
1421 skb->ip_summed = CHECKSUM_UNNECESSARY;
1422 if (cqe_is_tunneled(cqe)) {
1423 skb->csum_level = 1;
1424 skb->encapsulation = 1;
1425 stats->csum_unnecessary_inner++;
1426 return;
1427 }
1428 stats->csum_unnecessary++;
1429 return;
1430 }
1431 csum_none:
1432 skb->ip_summed = CHECKSUM_NONE;
1433 stats->csum_none++;
1434 }
1435
1436 #define MLX5E_CE_BIT_MASK 0x80
1437
mlx5e_build_rx_skb(struct mlx5_cqe64 * cqe,u32 cqe_bcnt,struct mlx5e_rq * rq,struct sk_buff * skb)1438 static inline bool mlx5e_build_rx_skb(struct mlx5_cqe64 *cqe,
1439 u32 cqe_bcnt,
1440 struct mlx5e_rq *rq,
1441 struct sk_buff *skb)
1442 {
1443 u8 lro_num_seg = get_cqe_lro_num_seg(cqe);
1444 struct mlx5e_rq_stats *stats = rq->stats;
1445 struct net_device *netdev = rq->netdev;
1446
1447 skb->mac_len = ETH_HLEN;
1448
1449 if (unlikely(get_cqe_tls_offload(cqe)))
1450 mlx5e_ktls_handle_rx_skb(rq, skb, cqe, &cqe_bcnt);
1451
1452 if (unlikely(mlx5e_psp_is_rx_flow(cqe))) {
1453 if (mlx5e_psp_offload_handle_rx_skb(netdev, skb, cqe))
1454 return true;
1455 }
1456
1457 if (unlikely(mlx5_ipsec_is_rx_flow(cqe)))
1458 mlx5e_ipsec_offload_handle_rx_skb(netdev, skb,
1459 be32_to_cpu(cqe->ft_metadata));
1460
1461 if (unlikely(mlx5e_macsec_is_rx_flow(cqe)))
1462 mlx5e_macsec_offload_handle_rx_skb(netdev, skb, cqe);
1463
1464 if (lro_num_seg > 1) {
1465 unsigned int hdrlen = mlx5e_lro_update_hdr(skb, cqe, cqe_bcnt);
1466
1467 skb_shinfo(skb)->gso_size = DIV_ROUND_UP(cqe_bcnt - hdrlen, lro_num_seg);
1468 skb_shinfo(skb)->gso_segs = lro_num_seg;
1469 /* Subtract one since we already counted this as one
1470 * "regular" packet in mlx5e_complete_rx_cqe()
1471 */
1472 stats->packets += lro_num_seg - 1;
1473 stats->lro_packets++;
1474 stats->lro_bytes += cqe_bcnt;
1475 }
1476
1477 if (unlikely(mlx5e_rx_hw_stamp(rq->hwtstamp_config)))
1478 skb_hwtstamps(skb)->hwtstamp = mlx5e_cqe_ts_to_ns(rq->ptp_cyc2time,
1479 rq->clock, get_cqe_ts(cqe));
1480 skb_record_rx_queue(skb, rq->ix);
1481
1482 if (likely(netdev->features & NETIF_F_RXHASH))
1483 mlx5e_skb_set_hash(cqe, skb);
1484
1485 if (cqe_has_vlan(cqe)) {
1486 __vlan_hwaccel_put_tag(skb, htons(ETH_P_8021Q),
1487 be16_to_cpu(cqe->vlan_info));
1488 stats->removed_vlan_packets++;
1489 }
1490
1491 skb->mark = be32_to_cpu(cqe->sop_drop_qpn) & MLX5E_TC_FLOW_ID_MASK;
1492
1493 mlx5e_handle_csum(netdev, cqe, rq, skb, !!lro_num_seg);
1494 /* checking CE bit in cqe - MSB in ml_path field */
1495 if (unlikely(cqe->ml_path & MLX5E_CE_BIT_MASK))
1496 mlx5e_enable_ecn(rq, skb);
1497
1498 skb->protocol = eth_type_trans(skb, netdev);
1499
1500 if (unlikely(mlx5e_skb_is_multicast(skb)))
1501 stats->mcast_packets++;
1502
1503 return false;
1504 }
1505
mlx5e_shampo_complete_rx_cqe(struct mlx5e_rq * rq,struct mlx5_cqe64 * cqe,u32 cqe_bcnt,struct sk_buff * skb)1506 static bool mlx5e_shampo_complete_rx_cqe(struct mlx5e_rq *rq,
1507 struct mlx5_cqe64 *cqe,
1508 u32 cqe_bcnt,
1509 struct sk_buff *skb)
1510 {
1511 struct mlx5e_rq_stats *stats = rq->stats;
1512
1513 stats->packets++;
1514 stats->bytes += cqe_bcnt;
1515 if (NAPI_GRO_CB(skb)->count != 1)
1516 return false;
1517
1518 if (mlx5e_build_rx_skb(cqe, cqe_bcnt, rq, skb))
1519 return true;
1520
1521 skb_reset_network_header(skb);
1522 if (!skb_flow_dissect_flow_keys(skb, &rq->hw_gro_data->fk, 0)) {
1523 napi_gro_receive(rq->cq.napi, skb);
1524 rq->hw_gro_data->skb = NULL;
1525 }
1526 return false;
1527 }
1528
mlx5e_complete_rx_cqe(struct mlx5e_rq * rq,struct mlx5_cqe64 * cqe,u32 cqe_bcnt,struct sk_buff * skb)1529 static inline bool mlx5e_complete_rx_cqe(struct mlx5e_rq *rq,
1530 struct mlx5_cqe64 *cqe,
1531 u32 cqe_bcnt,
1532 struct sk_buff *skb)
1533 {
1534 struct mlx5e_rq_stats *stats = rq->stats;
1535
1536 stats->packets++;
1537 stats->bytes += cqe_bcnt;
1538 return mlx5e_build_rx_skb(cqe, cqe_bcnt, rq, skb);
1539 }
1540
1541 static inline
mlx5e_build_linear_skb(struct mlx5e_rq * rq,void * va,u32 frag_size,u16 headroom,u32 cqe_bcnt,u32 metasize)1542 struct sk_buff *mlx5e_build_linear_skb(struct mlx5e_rq *rq, void *va,
1543 u32 frag_size, u16 headroom,
1544 u32 cqe_bcnt, u32 metasize)
1545 {
1546 struct sk_buff *skb = napi_build_skb(va, frag_size);
1547
1548 if (unlikely(!skb)) {
1549 rq->stats->buff_alloc_err++;
1550 return NULL;
1551 }
1552
1553 skb_reserve(skb, headroom);
1554 skb_put(skb, cqe_bcnt);
1555
1556 if (metasize)
1557 skb_metadata_set(skb, metasize);
1558
1559 return skb;
1560 }
1561
mlx5e_fill_mxbuf(struct mlx5e_rq * rq,struct mlx5_cqe64 * cqe,void * va,u16 headroom,u32 frame_sz,u32 len,struct mlx5e_xdp_buff * mxbuf)1562 static void mlx5e_fill_mxbuf(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe,
1563 void *va, u16 headroom, u32 frame_sz, u32 len,
1564 struct mlx5e_xdp_buff *mxbuf)
1565 {
1566 xdp_init_buff(&mxbuf->xdp, frame_sz, &rq->xdp_rxq);
1567 xdp_prepare_buff(&mxbuf->xdp, va, headroom, len, true);
1568 mxbuf->cqe = cqe;
1569 mxbuf->rq = rq;
1570 }
1571
1572 static struct sk_buff *
mlx5e_skb_from_cqe_linear(struct mlx5e_rq * rq,struct mlx5e_wqe_frag_info * wi,struct mlx5_cqe64 * cqe,u32 cqe_bcnt)1573 mlx5e_skb_from_cqe_linear(struct mlx5e_rq *rq, struct mlx5e_wqe_frag_info *wi,
1574 struct mlx5_cqe64 *cqe, u32 cqe_bcnt)
1575 {
1576 struct mlx5e_frag_page *frag_page = wi->frag_page;
1577 u16 rx_headroom = rq->buff.headroom;
1578 struct bpf_prog *prog;
1579 struct sk_buff *skb;
1580 u32 metasize = 0;
1581 void *va, *data;
1582 dma_addr_t addr;
1583 u32 frag_size;
1584
1585 va = netmem_address(frag_page->netmem) + wi->offset;
1586 data = va + rx_headroom;
1587 frag_size = MLX5_SKB_FRAG_SZ(rx_headroom + cqe_bcnt);
1588
1589 addr = page_pool_get_dma_addr_netmem(frag_page->netmem);
1590 dma_sync_single_range_for_cpu(rq->pdev, addr, wi->offset,
1591 frag_size, rq->buff.map_dir);
1592 net_prefetch(data);
1593
1594 prog = rcu_dereference(rq->xdp_prog);
1595 if (prog) {
1596 struct mlx5e_xdp_buff *mxbuf = &rq->mxbuf;
1597
1598 net_prefetchw(va); /* xdp_frame data area */
1599 mlx5e_fill_mxbuf(rq, cqe, va, rx_headroom, rq->buff.frame0_sz,
1600 cqe_bcnt, mxbuf);
1601 if (mlx5e_xdp_handle(rq, prog, mxbuf))
1602 return NULL; /* page/packet was consumed by XDP */
1603
1604 rx_headroom = mxbuf->xdp.data - mxbuf->xdp.data_hard_start;
1605 metasize = mxbuf->xdp.data - mxbuf->xdp.data_meta;
1606 cqe_bcnt = mxbuf->xdp.data_end - mxbuf->xdp.data;
1607 }
1608 frag_size = MLX5_SKB_FRAG_SZ(rx_headroom + cqe_bcnt);
1609 skb = mlx5e_build_linear_skb(rq, va, frag_size, rx_headroom, cqe_bcnt, metasize);
1610 if (unlikely(!skb))
1611 return NULL;
1612
1613 /* queue up for recycling/reuse */
1614 skb_mark_for_recycle(skb);
1615 frag_page->frags++;
1616
1617 return skb;
1618 }
1619
1620 static struct sk_buff *
mlx5e_skb_from_cqe_nonlinear(struct mlx5e_rq * rq,struct mlx5e_wqe_frag_info * wi,struct mlx5_cqe64 * cqe,u32 cqe_bcnt)1621 mlx5e_skb_from_cqe_nonlinear(struct mlx5e_rq *rq, struct mlx5e_wqe_frag_info *wi,
1622 struct mlx5_cqe64 *cqe, u32 cqe_bcnt)
1623 {
1624 struct mlx5e_rq_frag_info *frag_info = &rq->wqe.info.arr[0];
1625 struct mlx5e_xdp_buff *mxbuf = &rq->mxbuf;
1626 struct mlx5e_wqe_frag_info *head_wi = wi;
1627 u16 rx_headroom = rq->buff.headroom;
1628 struct mlx5e_frag_page *frag_page;
1629 struct skb_shared_info *sinfo;
1630 u32 frag_consumed_bytes;
1631 struct bpf_prog *prog;
1632 u8 nr_frags_free = 0;
1633 struct sk_buff *skb;
1634 dma_addr_t addr;
1635 u32 truesize;
1636 void *va;
1637
1638 frag_page = wi->frag_page;
1639
1640 va = netmem_address(frag_page->netmem) + wi->offset;
1641 frag_consumed_bytes = min_t(u32, frag_info->frag_size, cqe_bcnt);
1642
1643 addr = page_pool_get_dma_addr_netmem(frag_page->netmem);
1644 dma_sync_single_range_for_cpu(rq->pdev, addr, wi->offset,
1645 rq->buff.frame0_sz, rq->buff.map_dir);
1646 net_prefetchw(va); /* xdp_frame data area */
1647 net_prefetch(va + rx_headroom);
1648
1649 mlx5e_fill_mxbuf(rq, cqe, va, rx_headroom, rq->buff.frame0_sz,
1650 frag_consumed_bytes, mxbuf);
1651 sinfo = xdp_get_shared_info_from_buff(&mxbuf->xdp);
1652 truesize = 0;
1653
1654 cqe_bcnt -= frag_consumed_bytes;
1655 frag_info++;
1656 wi++;
1657
1658 while (cqe_bcnt) {
1659 frag_page = wi->frag_page;
1660
1661 frag_consumed_bytes = min_t(u32, frag_info->frag_size, cqe_bcnt);
1662
1663 mlx5e_add_skb_shared_info_frag(rq, sinfo, &mxbuf->xdp,
1664 frag_page, wi->offset,
1665 frag_consumed_bytes);
1666 truesize += frag_info->frag_stride;
1667
1668 cqe_bcnt -= frag_consumed_bytes;
1669 frag_info++;
1670 wi++;
1671 }
1672
1673 prog = rcu_dereference(rq->xdp_prog);
1674 if (prog) {
1675 u8 old_nr_frags = sinfo->nr_frags;
1676
1677 if (mlx5e_xdp_handle(rq, prog, mxbuf)) {
1678 if (__test_and_clear_bit(MLX5E_RQ_FLAG_XDP_XMIT,
1679 rq->flags)) {
1680 struct mlx5e_wqe_frag_info *pwi;
1681
1682 for (pwi = head_wi; pwi < wi; pwi++)
1683 pwi->frag_page->frags++;
1684 }
1685 return NULL; /* page/packet was consumed by XDP */
1686 }
1687
1688 nr_frags_free = old_nr_frags - sinfo->nr_frags;
1689 if (unlikely(nr_frags_free))
1690 truesize -= nr_frags_free * frag_info->frag_stride;
1691 }
1692
1693 skb = mlx5e_build_linear_skb(
1694 rq, mxbuf->xdp.data_hard_start, rq->buff.frame0_sz,
1695 mxbuf->xdp.data - mxbuf->xdp.data_hard_start,
1696 mxbuf->xdp.data_end - mxbuf->xdp.data,
1697 mxbuf->xdp.data - mxbuf->xdp.data_meta);
1698 if (unlikely(!skb))
1699 return NULL;
1700
1701 skb_mark_for_recycle(skb);
1702 head_wi->frag_page->frags++;
1703
1704 if (xdp_buff_has_frags(&mxbuf->xdp)) {
1705 /* sinfo->nr_frags is reset by build_skb, calculate again. */
1706 xdp_update_skb_frags_info(skb, wi - head_wi - nr_frags_free - 1,
1707 sinfo->xdp_frags_size, truesize,
1708 xdp_buff_get_skb_flags(&mxbuf->xdp));
1709
1710 for (struct mlx5e_wqe_frag_info *pwi = head_wi + 1; pwi < wi; pwi++)
1711 pwi->frag_page->frags++;
1712 }
1713
1714 return skb;
1715 }
1716
trigger_report(struct mlx5e_rq * rq,struct mlx5_cqe64 * cqe)1717 static void trigger_report(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe)
1718 {
1719 struct mlx5_err_cqe *err_cqe = (struct mlx5_err_cqe *)cqe;
1720 struct mlx5e_priv *priv = rq->priv;
1721
1722 if (cqe_syndrome_needs_recover(err_cqe->syndrome) &&
1723 !test_and_set_bit(MLX5E_RQ_STATE_RECOVERING, &rq->state)) {
1724 mlx5e_dump_error_cqe(&rq->cq, rq->rqn, err_cqe);
1725 queue_work(priv->wq, &rq->recover_work);
1726 }
1727 }
1728
mlx5e_handle_rx_err_cqe(struct mlx5e_rq * rq,struct mlx5_cqe64 * cqe)1729 static void mlx5e_handle_rx_err_cqe(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe)
1730 {
1731 trigger_report(rq, cqe);
1732 rq->stats->wqe_err++;
1733 }
1734
mlx5e_handle_rx_cqe(struct mlx5e_rq * rq,struct mlx5_cqe64 * cqe)1735 static void mlx5e_handle_rx_cqe(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe)
1736 {
1737 struct mlx5_wq_cyc *wq = &rq->wqe.wq;
1738 struct mlx5e_wqe_frag_info *wi;
1739 struct sk_buff *skb;
1740 u32 cqe_bcnt;
1741 u16 ci;
1742
1743 ci = mlx5_wq_cyc_ctr2ix(wq, be16_to_cpu(cqe->wqe_counter));
1744 wi = get_frag(rq, ci);
1745 cqe_bcnt = be32_to_cpu(cqe->byte_cnt);
1746
1747 if (unlikely(MLX5E_RX_ERR_CQE(cqe))) {
1748 mlx5e_handle_rx_err_cqe(rq, cqe);
1749 goto wq_cyc_pop;
1750 }
1751
1752 skb = INDIRECT_CALL_3(rq->wqe.skb_from_cqe,
1753 mlx5e_skb_from_cqe_linear,
1754 mlx5e_skb_from_cqe_nonlinear,
1755 mlx5e_xsk_skb_from_cqe_linear,
1756 rq, wi, cqe, cqe_bcnt);
1757 if (!skb) {
1758 /* probably for XDP */
1759 if (__test_and_clear_bit(MLX5E_RQ_FLAG_XDP_XMIT, rq->flags))
1760 wi->frag_page->frags++;
1761 goto wq_cyc_pop;
1762 }
1763
1764 if (mlx5e_complete_rx_cqe(rq, cqe, cqe_bcnt, skb))
1765 goto wq_cyc_pop;
1766
1767 if (mlx5e_cqe_regb_chain(cqe))
1768 if (!mlx5e_tc_update_skb_nic(cqe, skb)) {
1769 dev_kfree_skb_any(skb);
1770 goto wq_cyc_pop;
1771 }
1772
1773 napi_gro_receive(rq->cq.napi, skb);
1774
1775 wq_cyc_pop:
1776 mlx5_wq_cyc_pop(wq);
1777 }
1778
1779 #ifdef CONFIG_MLX5_ESWITCH
mlx5e_handle_rx_cqe_rep(struct mlx5e_rq * rq,struct mlx5_cqe64 * cqe)1780 static void mlx5e_handle_rx_cqe_rep(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe)
1781 {
1782 struct net_device *netdev = rq->netdev;
1783 struct mlx5e_priv *priv = netdev_priv(netdev);
1784 struct mlx5e_rep_priv *rpriv = priv->ppriv;
1785 struct mlx5_eswitch_rep *rep = rpriv->rep;
1786 struct mlx5_wq_cyc *wq = &rq->wqe.wq;
1787 struct mlx5e_wqe_frag_info *wi;
1788 struct sk_buff *skb;
1789 u32 cqe_bcnt;
1790 u16 ci;
1791
1792 ci = mlx5_wq_cyc_ctr2ix(wq, be16_to_cpu(cqe->wqe_counter));
1793 wi = get_frag(rq, ci);
1794 cqe_bcnt = be32_to_cpu(cqe->byte_cnt);
1795
1796 if (unlikely(MLX5E_RX_ERR_CQE(cqe))) {
1797 mlx5e_handle_rx_err_cqe(rq, cqe);
1798 goto wq_cyc_pop;
1799 }
1800
1801 skb = INDIRECT_CALL_2(rq->wqe.skb_from_cqe,
1802 mlx5e_skb_from_cqe_linear,
1803 mlx5e_skb_from_cqe_nonlinear,
1804 rq, wi, cqe, cqe_bcnt);
1805 if (!skb) {
1806 /* probably for XDP */
1807 if (__test_and_clear_bit(MLX5E_RQ_FLAG_XDP_XMIT, rq->flags))
1808 wi->frag_page->frags++;
1809 goto wq_cyc_pop;
1810 }
1811
1812 if (mlx5e_complete_rx_cqe(rq, cqe, cqe_bcnt, skb))
1813 goto wq_cyc_pop;
1814
1815 if (rep->vlan && skb_vlan_tag_present(skb))
1816 skb_vlan_pop(skb);
1817
1818 mlx5e_rep_tc_receive(cqe, rq, skb);
1819
1820 wq_cyc_pop:
1821 mlx5_wq_cyc_pop(wq);
1822 }
1823
mlx5e_handle_rx_cqe_mpwrq_rep(struct mlx5e_rq * rq,struct mlx5_cqe64 * cqe)1824 static void mlx5e_handle_rx_cqe_mpwrq_rep(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe)
1825 {
1826 u16 cstrides = mpwrq_get_cqe_consumed_strides(cqe);
1827 u16 wqe_id = be16_to_cpu(cqe->wqe_id);
1828 struct mlx5e_mpw_info *wi = mlx5e_get_mpw_info(rq, wqe_id);
1829 u16 stride_ix = mpwrq_get_cqe_stride_index(cqe);
1830 u32 wqe_offset = stride_ix << rq->mpwqe.log_stride_sz;
1831 u32 head_offset = wqe_offset & ((1 << rq->mpwqe.page_shift) - 1);
1832 u32 page_idx = wqe_offset >> rq->mpwqe.page_shift;
1833 struct mlx5e_rx_wqe_ll *wqe;
1834 struct mlx5_wq_ll *wq;
1835 struct sk_buff *skb;
1836 u16 cqe_bcnt;
1837
1838 wi->consumed_strides += cstrides;
1839
1840 if (unlikely(MLX5E_RX_ERR_CQE(cqe))) {
1841 mlx5e_handle_rx_err_cqe(rq, cqe);
1842 goto mpwrq_cqe_out;
1843 }
1844
1845 if (unlikely(mpwrq_is_filler_cqe(cqe))) {
1846 struct mlx5e_rq_stats *stats = rq->stats;
1847
1848 stats->mpwqe_filler_cqes++;
1849 stats->mpwqe_filler_strides += cstrides;
1850 goto mpwrq_cqe_out;
1851 }
1852
1853 cqe_bcnt = mpwrq_get_cqe_byte_cnt(cqe);
1854
1855 skb = INDIRECT_CALL_2(rq->mpwqe.skb_from_cqe_mpwrq,
1856 mlx5e_skb_from_cqe_mpwrq_linear,
1857 mlx5e_skb_from_cqe_mpwrq_nonlinear,
1858 rq, wi, cqe, cqe_bcnt, head_offset, page_idx);
1859 if (!skb)
1860 goto mpwrq_cqe_out;
1861
1862 if (mlx5e_complete_rx_cqe(rq, cqe, cqe_bcnt, skb))
1863 goto mpwrq_cqe_out;
1864
1865 mlx5e_rep_tc_receive(cqe, rq, skb);
1866
1867 mpwrq_cqe_out:
1868 if (likely(wi->consumed_strides < rq->mpwqe.num_strides))
1869 return;
1870
1871 wq = &rq->mpwqe.wq;
1872 wqe = mlx5_wq_ll_get_wqe(wq, wqe_id);
1873 mlx5_wq_ll_pop(wq, cqe->wqe_id, &wqe->next.next_wqe_index);
1874 }
1875
1876 const struct mlx5e_rx_handlers mlx5e_rx_handlers_rep = {
1877 .handle_rx_cqe = mlx5e_handle_rx_cqe_rep,
1878 .handle_rx_cqe_mpwqe = mlx5e_handle_rx_cqe_mpwrq_rep,
1879 };
1880 #endif
1881
1882 static void
mlx5e_shampo_fill_skb_data(struct sk_buff * skb,struct mlx5e_rq * rq,struct mlx5e_frag_page * frag_page,u32 data_bcnt,u32 data_offset)1883 mlx5e_shampo_fill_skb_data(struct sk_buff *skb, struct mlx5e_rq *rq,
1884 struct mlx5e_frag_page *frag_page,
1885 u32 data_bcnt, u32 data_offset)
1886 {
1887 u32 page_size = BIT(rq->mpwqe.page_shift);
1888
1889 net_prefetchw(skb->data);
1890
1891 do {
1892 /* Non-linear mode, hence non-XSK, which always uses PAGE_SIZE. */
1893 u32 pg_consumed_bytes = min_t(u32, page_size - data_offset,
1894 data_bcnt);
1895 unsigned int truesize = pg_consumed_bytes;
1896
1897 mlx5e_add_skb_frag(rq, skb, frag_page, data_offset,
1898 pg_consumed_bytes, truesize);
1899
1900 data_bcnt -= pg_consumed_bytes;
1901 data_offset = 0;
1902 frag_page++;
1903 } while (data_bcnt);
1904 }
1905
1906 static struct sk_buff *
mlx5e_skb_from_cqe_mpwrq_nonlinear(struct mlx5e_rq * rq,struct mlx5e_mpw_info * wi,struct mlx5_cqe64 * cqe,u16 cqe_bcnt,u32 head_offset,u32 page_idx)1907 mlx5e_skb_from_cqe_mpwrq_nonlinear(struct mlx5e_rq *rq, struct mlx5e_mpw_info *wi,
1908 struct mlx5_cqe64 *cqe, u16 cqe_bcnt, u32 head_offset,
1909 u32 page_idx)
1910 {
1911 struct mlx5e_frag_page *frag_page = &wi->alloc_units.frag_pages[page_idx];
1912 struct mlx5e_frag_page *head_page = frag_page;
1913 struct mlx5e_frag_page *linear_page = NULL;
1914 struct mlx5e_xdp_buff *mxbuf = &rq->mxbuf;
1915 u32 page_size = BIT(rq->mpwqe.page_shift);
1916 u32 frag_offset = head_offset;
1917 u32 byte_cnt = cqe_bcnt;
1918 struct skb_shared_info *sinfo;
1919 unsigned int truesize = 0;
1920 u32 pg_consumed_bytes;
1921 struct bpf_prog *prog;
1922 void *va, *head_addr;
1923 struct sk_buff *skb;
1924 u32 linear_frame_sz;
1925 u16 linear_data_len;
1926 u16 linear_hr;
1927 u16 headlen;
1928
1929 if (unlikely(cqe_bcnt > rq->hw_mtu)) {
1930 u8 lro_num_seg = get_cqe_lro_num_seg(cqe);
1931
1932 if (lro_num_seg <= 1) {
1933 rq->stats->oversize_pkts_sw_drop++;
1934 return NULL;
1935 }
1936 }
1937
1938 prog = rcu_dereference(rq->xdp_prog);
1939
1940 head_addr = netmem_address(head_page->netmem) + head_offset;
1941
1942 if (prog) {
1943 /* area for bpf_xdp_[store|load]_bytes */
1944 net_prefetchw(head_addr);
1945
1946 va = mlx5e_mpwqe_get_linear_page_frag(rq);
1947 if (!va) {
1948 rq->stats->buff_alloc_err++;
1949 return NULL;
1950 }
1951
1952 net_prefetchw(va); /* xdp_frame data area */
1953 linear_hr = XDP_PACKET_HEADROOM;
1954 linear_data_len = 0;
1955 linear_frame_sz = MLX5_SKB_FRAG_SZ(linear_hr + MLX5E_RX_MAX_HEAD);
1956 linear_page = &rq->mpwqe.linear_info->frag_page;
1957 } else {
1958 dma_addr_t addr;
1959
1960 skb = napi_alloc_skb(rq->cq.napi,
1961 ALIGN(MLX5E_RX_MAX_HEAD, sizeof(long)));
1962 if (unlikely(!skb)) {
1963 rq->stats->buff_alloc_err++;
1964 return NULL;
1965 }
1966 skb_mark_for_recycle(skb);
1967 va = skb->head;
1968 net_prefetchw(va); /* xdp_frame data area */
1969 net_prefetchw(skb->data);
1970
1971 headlen = min(MLX5E_RX_MAX_HEAD, cqe_bcnt);
1972 addr = page_pool_get_dma_addr_netmem(head_page->netmem);
1973 dma_sync_single_for_cpu(rq->pdev, addr + head_offset,
1974 ALIGN(headlen, sizeof(long)),
1975 rq->buff.map_dir);
1976
1977 headlen = eth_get_headlen(rq->netdev, head_addr, headlen);
1978
1979 frag_offset += headlen;
1980 byte_cnt -= headlen;
1981 linear_hr = skb_headroom(skb);
1982 linear_data_len = headlen;
1983 linear_frame_sz = MLX5_SKB_FRAG_SZ(skb_end_offset(skb));
1984 if (unlikely(frag_offset >= page_size)) {
1985 frag_page++;
1986 frag_offset -= page_size;
1987 }
1988 }
1989
1990 mlx5e_fill_mxbuf(rq, cqe, va, linear_hr, linear_frame_sz,
1991 linear_data_len, mxbuf);
1992
1993 sinfo = xdp_get_shared_info_from_buff(&mxbuf->xdp);
1994
1995 while (byte_cnt) {
1996 /* Non-linear mode, hence non-XSK, which always uses PAGE_SIZE. */
1997 pg_consumed_bytes =
1998 min_t(u32, page_size - frag_offset, byte_cnt);
1999
2000 if (test_bit(MLX5E_RQ_STATE_SHAMPO, &rq->state))
2001 truesize += pg_consumed_bytes;
2002 else
2003 truesize += ALIGN(pg_consumed_bytes, BIT(rq->mpwqe.log_stride_sz));
2004
2005 mlx5e_add_skb_shared_info_frag(rq, sinfo, &mxbuf->xdp,
2006 frag_page, frag_offset,
2007 pg_consumed_bytes);
2008 byte_cnt -= pg_consumed_bytes;
2009 frag_offset = 0;
2010 frag_page++;
2011 }
2012
2013 if (prog) {
2014 u8 nr_frags_free, old_nr_frags = sinfo->nr_frags;
2015 u8 new_nr_frags;
2016 u32 len;
2017
2018 if (mlx5e_xdp_handle(rq, prog, mxbuf)) {
2019 if (__test_and_clear_bit(MLX5E_RQ_FLAG_XDP_XMIT, rq->flags)) {
2020 struct mlx5e_frag_page *pfp;
2021
2022 for (pfp = head_page; pfp < frag_page; pfp++)
2023 pfp->frags++;
2024
2025 linear_page->frags++;
2026 }
2027 return NULL; /* page/packet was consumed by XDP */
2028 }
2029
2030 new_nr_frags = sinfo->nr_frags;
2031 nr_frags_free = old_nr_frags - new_nr_frags;
2032 if (unlikely(nr_frags_free))
2033 truesize -= (nr_frags_free - 1) * page_size +
2034 ALIGN(pg_consumed_bytes,
2035 BIT(rq->mpwqe.log_stride_sz));
2036
2037 len = mxbuf->xdp.data_end - mxbuf->xdp.data;
2038
2039 skb = mlx5e_build_linear_skb(
2040 rq, mxbuf->xdp.data_hard_start, linear_frame_sz,
2041 mxbuf->xdp.data - mxbuf->xdp.data_hard_start, len,
2042 mxbuf->xdp.data - mxbuf->xdp.data_meta);
2043 if (unlikely(!skb))
2044 return NULL;
2045
2046 skb_mark_for_recycle(skb);
2047 linear_page->frags++;
2048
2049 if (xdp_buff_has_frags(&mxbuf->xdp)) {
2050 struct mlx5e_frag_page *pagep;
2051
2052 /* sinfo->nr_frags is reset by build_skb, calculate again. */
2053 xdp_update_skb_frags_info(skb, new_nr_frags,
2054 sinfo->xdp_frags_size,
2055 truesize,
2056 xdp_buff_get_skb_flags(&mxbuf->xdp));
2057
2058 pagep = head_page;
2059 do
2060 pagep->frags++;
2061 while (++pagep < frag_page);
2062
2063 if (len < ETH_HLEN)
2064 __pskb_pull_tail(skb, min(ETH_HLEN - len,
2065 skb->data_len));
2066 }
2067 } else {
2068 if (xdp_buff_has_frags(&mxbuf->xdp)) {
2069 struct mlx5e_frag_page *pagep;
2070
2071 xdp_update_skb_frags_info(skb, sinfo->nr_frags,
2072 sinfo->xdp_frags_size,
2073 truesize,
2074 xdp_buff_get_skb_flags(&mxbuf->xdp));
2075
2076 pagep = frag_page - sinfo->nr_frags;
2077 do
2078 pagep->frags++;
2079 while (++pagep < frag_page);
2080 }
2081
2082 /* copy header */
2083 skb_copy_to_linear_data(skb, head_addr,
2084 ALIGN(headlen, sizeof(long)));
2085
2086 /* skb linear part was allocated with headlen and aligned to long */
2087 skb->tail += headlen;
2088 skb->len += headlen;
2089 }
2090
2091 return skb;
2092 }
2093
2094 static struct sk_buff *
mlx5e_skb_from_cqe_mpwrq_linear(struct mlx5e_rq * rq,struct mlx5e_mpw_info * wi,struct mlx5_cqe64 * cqe,u16 cqe_bcnt,u32 head_offset,u32 page_idx)2095 mlx5e_skb_from_cqe_mpwrq_linear(struct mlx5e_rq *rq, struct mlx5e_mpw_info *wi,
2096 struct mlx5_cqe64 *cqe, u16 cqe_bcnt, u32 head_offset,
2097 u32 page_idx)
2098 {
2099 struct mlx5e_frag_page *frag_page = &wi->alloc_units.frag_pages[page_idx];
2100 u16 rx_headroom = rq->buff.headroom;
2101 struct bpf_prog *prog;
2102 struct sk_buff *skb;
2103 u32 metasize = 0;
2104 void *va, *data;
2105 dma_addr_t addr;
2106 u32 frag_size;
2107
2108 /* Check packet size. Note LRO doesn't use linear SKB */
2109 if (unlikely(cqe_bcnt > rq->hw_mtu)) {
2110 rq->stats->oversize_pkts_sw_drop++;
2111 return NULL;
2112 }
2113
2114 va = netmem_address(frag_page->netmem) + head_offset;
2115 data = va + rx_headroom;
2116 frag_size = MLX5_SKB_FRAG_SZ(rx_headroom + cqe_bcnt);
2117
2118 addr = page_pool_get_dma_addr_netmem(frag_page->netmem);
2119 dma_sync_single_range_for_cpu(rq->pdev, addr, head_offset,
2120 frag_size, rq->buff.map_dir);
2121 net_prefetch(data);
2122
2123 prog = rcu_dereference(rq->xdp_prog);
2124 if (prog) {
2125 struct mlx5e_xdp_buff *mxbuf = &rq->mxbuf;
2126
2127 net_prefetchw(va); /* xdp_frame data area */
2128 mlx5e_fill_mxbuf(rq, cqe, va, rx_headroom, rq->buff.frame0_sz,
2129 cqe_bcnt, mxbuf);
2130 if (mlx5e_xdp_handle(rq, prog, mxbuf)) {
2131 if (__test_and_clear_bit(MLX5E_RQ_FLAG_XDP_XMIT, rq->flags))
2132 frag_page->frags++;
2133 return NULL; /* page/packet was consumed by XDP */
2134 }
2135
2136 rx_headroom = mxbuf->xdp.data - mxbuf->xdp.data_hard_start;
2137 metasize = mxbuf->xdp.data - mxbuf->xdp.data_meta;
2138 cqe_bcnt = mxbuf->xdp.data_end - mxbuf->xdp.data;
2139 }
2140 frag_size = MLX5_SKB_FRAG_SZ(rx_headroom + cqe_bcnt);
2141 skb = mlx5e_build_linear_skb(rq, va, frag_size, rx_headroom, cqe_bcnt, metasize);
2142 if (unlikely(!skb))
2143 return NULL;
2144
2145 /* queue up for recycling/reuse */
2146 skb_mark_for_recycle(skb);
2147 frag_page->frags++;
2148
2149 return skb;
2150 }
2151
2152 static struct sk_buff *
mlx5e_skb_from_cqe_shampo(struct mlx5e_rq * rq,struct mlx5e_mpw_info * wi,struct mlx5_cqe64 * cqe,u16 header_index)2153 mlx5e_skb_from_cqe_shampo(struct mlx5e_rq *rq, struct mlx5e_mpw_info *wi,
2154 struct mlx5_cqe64 *cqe, u16 header_index)
2155 {
2156 u16 head_size = cqe->shampo.header_size;
2157 struct mlx5e_dma_info *di;
2158 struct sk_buff *skb;
2159 u32 head_offset;
2160 int len;
2161
2162 len = ALIGN(head_size, sizeof(long));
2163 skb = napi_alloc_skb(rq->cq.napi, len);
2164 if (unlikely(!skb)) {
2165 rq->stats->buff_alloc_err++;
2166 return NULL;
2167 }
2168
2169 net_prefetchw(skb->data);
2170
2171 mlx5e_shampo_get_hd_buf_info(rq, cqe, &di, &head_offset);
2172 mlx5e_copy_skb_header(rq, skb, page_to_netmem(di->page), di->addr,
2173 head_offset, head_offset, len);
2174 __skb_put(skb, head_size);
2175
2176 /* queue up for recycling/reuse */
2177 skb_mark_for_recycle(skb);
2178
2179 return skb;
2180 }
2181
2182 static void
mlx5e_shampo_align_fragment(struct sk_buff * skb,u8 log_stride_sz)2183 mlx5e_shampo_align_fragment(struct sk_buff *skb, u8 log_stride_sz)
2184 {
2185 skb_frag_t *last_frag = &skb_shinfo(skb)->frags[skb_shinfo(skb)->nr_frags - 1];
2186 unsigned int frag_size = skb_frag_size(last_frag);
2187 unsigned int frag_truesize;
2188
2189 frag_truesize = ALIGN(frag_size, BIT(log_stride_sz));
2190 skb->truesize += frag_truesize - frag_size;
2191 }
2192
2193 static void
mlx5e_shampo_flush_skb(struct mlx5e_rq * rq,struct mlx5_cqe64 * cqe,bool match)2194 mlx5e_shampo_flush_skb(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe, bool match)
2195 {
2196 struct sk_buff *skb = rq->hw_gro_data->skb;
2197 struct mlx5e_rq_stats *stats = rq->stats;
2198 u16 gro_count = NAPI_GRO_CB(skb)->count;
2199
2200 if (likely(skb_shinfo(skb)->nr_frags))
2201 mlx5e_shampo_align_fragment(skb, rq->mpwqe.log_stride_sz);
2202 if (gro_count > 1) {
2203 stats->gro_skbs++;
2204 stats->gro_packets += gro_count;
2205 stats->gro_bytes += skb->data_len + skb_headlen(skb) * gro_count;
2206
2207 mlx5e_shampo_update_hdr(rq, cqe, match);
2208 } else {
2209 skb_shinfo(skb)->gso_size = 0;
2210 }
2211 napi_gro_receive(rq->cq.napi, skb);
2212 rq->hw_gro_data->skb = NULL;
2213 }
2214
mlx5e_hw_gro_skb_has_enough_space(struct sk_buff * skb,u16 data_bcnt,u32 page_size)2215 static bool mlx5e_hw_gro_skb_has_enough_space(struct sk_buff *skb,
2216 u16 data_bcnt,
2217 u32 page_size)
2218 {
2219 int nr_frags = skb_shinfo(skb)->nr_frags;
2220
2221 if (page_size >= GRO_LEGACY_MAX_SIZE)
2222 return skb->len + data_bcnt <= GRO_LEGACY_MAX_SIZE;
2223 else
2224 return page_size * nr_frags + data_bcnt <= GRO_LEGACY_MAX_SIZE;
2225 }
2226
mlx5e_handle_rx_cqe_mpwrq_shampo(struct mlx5e_rq * rq,struct mlx5_cqe64 * cqe)2227 static void mlx5e_handle_rx_cqe_mpwrq_shampo(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe)
2228 {
2229 u16 data_bcnt = mpwrq_get_cqe_byte_cnt(cqe) - cqe->shampo.header_size;
2230 u16 header_index = mlx5e_shampo_get_cqe_header_index(rq, cqe);
2231 u32 wqe_offset = be32_to_cpu(cqe->shampo.data_offset);
2232 u16 cstrides = mpwrq_get_cqe_consumed_strides(cqe);
2233 u32 cqe_bcnt = mpwrq_get_cqe_byte_cnt(cqe);
2234 u16 wqe_id = be16_to_cpu(cqe->wqe_id);
2235 u16 head_size = cqe->shampo.header_size;
2236 struct sk_buff **skb = &rq->hw_gro_data->skb;
2237 bool flush = cqe->shampo.flush;
2238 bool match = cqe->shampo.match;
2239 u32 page_size = BIT(rq->mpwqe.page_shift);
2240 struct mlx5e_rq_stats *stats = rq->stats;
2241 struct mlx5e_rx_wqe_ll *wqe;
2242 struct mlx5e_mpw_info *wi;
2243 struct mlx5_wq_ll *wq;
2244 u32 data_offset;
2245 u32 page_idx;
2246
2247 wi = mlx5e_get_mpw_info(rq, wqe_id);
2248 wi->consumed_strides += cstrides;
2249
2250 if (unlikely(MLX5E_RX_ERR_CQE(cqe))) {
2251 mlx5e_handle_rx_err_cqe(rq, cqe);
2252 goto mpwrq_cqe_out;
2253 }
2254
2255 if (unlikely(mpwrq_is_filler_cqe(cqe))) {
2256 stats->mpwqe_filler_cqes++;
2257 stats->mpwqe_filler_strides += cstrides;
2258 goto mpwrq_cqe_out;
2259 }
2260
2261 data_offset = wqe_offset & (page_size - 1);
2262 page_idx = wqe_offset >> rq->mpwqe.page_shift;
2263 if (unlikely(cqe_bcnt <= ETH_ZLEN + 2 * VLAN_HLEN)) {
2264 match = false;
2265 flush = true;
2266 }
2267
2268 if (*skb &&
2269 !(match && mlx5e_hw_gro_skb_has_enough_space(*skb, data_bcnt,
2270 page_size))) {
2271 match = false;
2272 mlx5e_shampo_flush_skb(rq, cqe, match);
2273 }
2274
2275 if (!*skb) {
2276 if (likely(head_size)) {
2277 *skb = mlx5e_skb_from_cqe_shampo(rq, wi, cqe, header_index);
2278 } else {
2279 struct mlx5e_frag_page *frag_page;
2280
2281 frag_page = &wi->alloc_units.frag_pages[page_idx];
2282 /* Drop packets with header in unreadable data area to
2283 * prevent the kernel from touching it.
2284 */
2285 if (unlikely(netmem_is_net_iov(frag_page->netmem)))
2286 goto mpwrq_cqe_out;
2287 *skb = mlx5e_skb_from_cqe_mpwrq_nonlinear(rq, wi, cqe,
2288 cqe_bcnt,
2289 data_offset,
2290 page_idx);
2291 }
2292
2293 if (unlikely(!*skb))
2294 goto mpwrq_cqe_out;
2295
2296 NAPI_GRO_CB(*skb)->count = 1;
2297 skb_shinfo(*skb)->gso_size = cqe_bcnt - head_size;
2298 } else {
2299 NAPI_GRO_CB(*skb)->count++;
2300
2301 if (NAPI_GRO_CB(*skb)->count == 2 &&
2302 rq->hw_gro_data->fk.basic.n_proto == htons(ETH_P_IP)) {
2303 int len = ETH_HLEN + rq->hw_gro_data->fk.control.thoff;
2304 int nhoff = len - sizeof(struct iphdr);
2305 void *last_hd_addr;
2306 struct iphdr *iph;
2307
2308 last_hd_addr = mlx5e_shampo_get_hdr(rq, cqe, len);
2309 iph = (struct iphdr *)(last_hd_addr + nhoff);
2310 rq->hw_gro_data->second_ip_id = ntohs(iph->id);
2311 }
2312 }
2313
2314 if (likely(head_size)) {
2315 if (data_bcnt) {
2316 struct mlx5e_frag_page *frag_page;
2317
2318 frag_page = &wi->alloc_units.frag_pages[page_idx];
2319 mlx5e_shampo_fill_skb_data(*skb, rq, frag_page, data_bcnt, data_offset);
2320 } else {
2321 stats->hds_nodata_packets++;
2322 stats->hds_nodata_bytes += head_size;
2323 }
2324 } else {
2325 stats->hds_nosplit_packets++;
2326 stats->hds_nosplit_bytes += data_bcnt;
2327 }
2328
2329 if (mlx5e_shampo_complete_rx_cqe(rq, cqe, cqe_bcnt, *skb)) {
2330 *skb = NULL;
2331 goto mpwrq_cqe_out;
2332 }
2333 if (flush && rq->hw_gro_data->skb)
2334 mlx5e_shampo_flush_skb(rq, cqe, match);
2335 mpwrq_cqe_out:
2336 if (likely(wi->consumed_strides < rq->mpwqe.num_strides))
2337 return;
2338
2339 if (unlikely(!cstrides))
2340 return;
2341
2342 wq = &rq->mpwqe.wq;
2343 wqe = mlx5_wq_ll_get_wqe(wq, wqe_id);
2344 mlx5_wq_ll_pop(wq, cqe->wqe_id, &wqe->next.next_wqe_index);
2345 }
2346
mlx5e_handle_rx_cqe_mpwrq(struct mlx5e_rq * rq,struct mlx5_cqe64 * cqe)2347 static void mlx5e_handle_rx_cqe_mpwrq(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe)
2348 {
2349 u16 cstrides = mpwrq_get_cqe_consumed_strides(cqe);
2350 u16 wqe_id = be16_to_cpu(cqe->wqe_id);
2351 struct mlx5e_mpw_info *wi = mlx5e_get_mpw_info(rq, wqe_id);
2352 u16 stride_ix = mpwrq_get_cqe_stride_index(cqe);
2353 u32 wqe_offset = stride_ix << rq->mpwqe.log_stride_sz;
2354 u32 head_offset = wqe_offset & ((1 << rq->mpwqe.page_shift) - 1);
2355 u32 page_idx = wqe_offset >> rq->mpwqe.page_shift;
2356 struct mlx5e_rx_wqe_ll *wqe;
2357 struct mlx5_wq_ll *wq;
2358 struct sk_buff *skb;
2359 u16 cqe_bcnt;
2360
2361 wi->consumed_strides += cstrides;
2362
2363 if (unlikely(MLX5E_RX_ERR_CQE(cqe))) {
2364 mlx5e_handle_rx_err_cqe(rq, cqe);
2365 goto mpwrq_cqe_out;
2366 }
2367
2368 if (unlikely(mpwrq_is_filler_cqe(cqe))) {
2369 struct mlx5e_rq_stats *stats = rq->stats;
2370
2371 stats->mpwqe_filler_cqes++;
2372 stats->mpwqe_filler_strides += cstrides;
2373 goto mpwrq_cqe_out;
2374 }
2375
2376 cqe_bcnt = mpwrq_get_cqe_byte_cnt(cqe);
2377
2378 skb = INDIRECT_CALL_3(rq->mpwqe.skb_from_cqe_mpwrq,
2379 mlx5e_skb_from_cqe_mpwrq_linear,
2380 mlx5e_skb_from_cqe_mpwrq_nonlinear,
2381 mlx5e_xsk_skb_from_cqe_mpwrq_linear,
2382 rq, wi, cqe, cqe_bcnt, head_offset,
2383 page_idx);
2384 if (!skb)
2385 goto mpwrq_cqe_out;
2386
2387 if (mlx5e_complete_rx_cqe(rq, cqe, cqe_bcnt, skb))
2388 goto mpwrq_cqe_out;
2389
2390 if (mlx5e_cqe_regb_chain(cqe))
2391 if (!mlx5e_tc_update_skb_nic(cqe, skb)) {
2392 dev_kfree_skb_any(skb);
2393 goto mpwrq_cqe_out;
2394 }
2395
2396 napi_gro_receive(rq->cq.napi, skb);
2397
2398 mpwrq_cqe_out:
2399 if (likely(wi->consumed_strides < rq->mpwqe.num_strides))
2400 return;
2401
2402 wq = &rq->mpwqe.wq;
2403 wqe = mlx5_wq_ll_get_wqe(wq, wqe_id);
2404 mlx5_wq_ll_pop(wq, cqe->wqe_id, &wqe->next.next_wqe_index);
2405 }
2406
mlx5e_rx_cq_process_enhanced_cqe_comp(struct mlx5e_rq * rq,struct mlx5_cqwq * cqwq,int budget_rem)2407 static int mlx5e_rx_cq_process_enhanced_cqe_comp(struct mlx5e_rq *rq,
2408 struct mlx5_cqwq *cqwq,
2409 int budget_rem)
2410 {
2411 struct mlx5_cqe64 *cqe, *title_cqe = NULL;
2412 struct mlx5e_cq_decomp *cqd = &rq->cqd;
2413 int work_done = 0;
2414
2415 cqe = mlx5_cqwq_get_cqe_enhanced_comp(cqwq);
2416 if (!cqe)
2417 return work_done;
2418
2419 if (cqd->last_cqe_title &&
2420 (mlx5_get_cqe_format(cqe) == MLX5_COMPRESSED)) {
2421 rq->stats->cqe_compress_blks++;
2422 cqd->last_cqe_title = false;
2423 }
2424
2425 do {
2426 if (mlx5_get_cqe_format(cqe) == MLX5_COMPRESSED) {
2427 if (title_cqe) {
2428 mlx5e_read_enhanced_title_slot(rq, title_cqe);
2429 title_cqe = NULL;
2430 rq->stats->cqe_compress_blks++;
2431 }
2432 work_done +=
2433 mlx5e_decompress_enhanced_cqe(rq, cqwq, cqe,
2434 budget_rem - work_done);
2435 continue;
2436 }
2437 title_cqe = cqe;
2438 mlx5_cqwq_pop(cqwq);
2439
2440 INDIRECT_CALL_3(rq->handle_rx_cqe, mlx5e_handle_rx_cqe_mpwrq,
2441 mlx5e_handle_rx_cqe, mlx5e_handle_rx_cqe_mpwrq_shampo,
2442 rq, cqe);
2443 work_done++;
2444 } while (work_done < budget_rem &&
2445 (cqe = mlx5_cqwq_get_cqe_enhanced_comp(cqwq)));
2446
2447 /* last cqe might be title on next poll bulk */
2448 if (title_cqe) {
2449 mlx5e_read_enhanced_title_slot(rq, title_cqe);
2450 cqd->last_cqe_title = true;
2451 }
2452
2453 return work_done;
2454 }
2455
mlx5e_rx_cq_process_basic_cqe_comp(struct mlx5e_rq * rq,struct mlx5_cqwq * cqwq,int budget_rem)2456 static int mlx5e_rx_cq_process_basic_cqe_comp(struct mlx5e_rq *rq,
2457 struct mlx5_cqwq *cqwq,
2458 int budget_rem)
2459 {
2460 struct mlx5_cqe64 *cqe;
2461 int work_done = 0;
2462
2463 if (rq->cqd.left)
2464 work_done += mlx5e_decompress_cqes_cont(rq, cqwq, 0, budget_rem);
2465
2466 while (work_done < budget_rem && (cqe = mlx5_cqwq_get_cqe(cqwq))) {
2467 if (mlx5_get_cqe_format(cqe) == MLX5_COMPRESSED) {
2468 work_done +=
2469 mlx5e_decompress_cqes_start(rq, cqwq,
2470 budget_rem - work_done);
2471 continue;
2472 }
2473
2474 mlx5_cqwq_pop(cqwq);
2475 INDIRECT_CALL_3(rq->handle_rx_cqe, mlx5e_handle_rx_cqe_mpwrq,
2476 mlx5e_handle_rx_cqe, mlx5e_handle_rx_cqe_mpwrq_shampo,
2477 rq, cqe);
2478 work_done++;
2479 }
2480
2481 return work_done;
2482 }
2483
mlx5e_poll_rx_cq(struct mlx5e_cq * cq,int budget)2484 int mlx5e_poll_rx_cq(struct mlx5e_cq *cq, int budget)
2485 {
2486 struct mlx5e_rq *rq = container_of(cq, struct mlx5e_rq, cq);
2487 struct mlx5_cqwq *cqwq = &cq->wq;
2488 int work_done;
2489
2490 if (unlikely(!test_bit(MLX5E_RQ_STATE_ENABLED, &rq->state)))
2491 return 0;
2492
2493 if (test_bit(MLX5E_RQ_STATE_MINI_CQE_ENHANCED, &rq->state))
2494 work_done = mlx5e_rx_cq_process_enhanced_cqe_comp(rq, cqwq,
2495 budget);
2496 else
2497 work_done = mlx5e_rx_cq_process_basic_cqe_comp(rq, cqwq,
2498 budget);
2499
2500 if (work_done == 0)
2501 return 0;
2502
2503 if (test_bit(MLX5E_RQ_STATE_SHAMPO, &rq->state) && rq->hw_gro_data->skb)
2504 mlx5e_shampo_flush_skb(rq, NULL, false);
2505
2506 if (rcu_access_pointer(rq->xdp_prog))
2507 mlx5e_xdp_rx_poll_complete(rq);
2508
2509 mlx5_cqwq_update_db_record(cqwq);
2510
2511 /* ensure cq space is freed before enabling more cqes */
2512 wmb();
2513
2514 return work_done;
2515 }
2516
2517 #ifdef CONFIG_MLX5_CORE_IPOIB
2518
2519 #define MLX5_IB_GRH_SGID_OFFSET 8
2520 #define MLX5_IB_GRH_DGID_OFFSET 24
2521 #define MLX5_GID_SIZE 16
2522
mlx5i_complete_rx_cqe(struct mlx5e_rq * rq,struct mlx5_cqe64 * cqe,u32 cqe_bcnt,struct sk_buff * skb)2523 static inline void mlx5i_complete_rx_cqe(struct mlx5e_rq *rq,
2524 struct mlx5_cqe64 *cqe,
2525 u32 cqe_bcnt,
2526 struct sk_buff *skb)
2527 {
2528 struct mlx5e_rq_stats *stats;
2529 struct net_device *netdev;
2530 struct mlx5e_priv *priv;
2531 char *pseudo_header;
2532 u32 flags_rqpn;
2533 u32 qpn;
2534 u8 *dgid;
2535 u8 g;
2536
2537 qpn = be32_to_cpu(cqe->sop_drop_qpn) & 0xffffff;
2538 netdev = mlx5i_pkey_get_netdev(rq->netdev, qpn);
2539
2540 /* No mapping present, cannot process SKB. This might happen if a child
2541 * interface is going down while having unprocessed CQEs on parent RQ
2542 */
2543 if (unlikely(!netdev)) {
2544 /* TODO: add drop counters support */
2545 skb->dev = NULL;
2546 pr_warn_once("Unable to map QPN %u to dev - dropping skb\n", qpn);
2547 return;
2548 }
2549
2550 priv = mlx5i_epriv(netdev);
2551 stats = &priv->channel_stats[rq->ix]->rq;
2552
2553 flags_rqpn = be32_to_cpu(cqe->flags_rqpn);
2554 g = (flags_rqpn >> 28) & 3;
2555 dgid = skb->data + MLX5_IB_GRH_DGID_OFFSET;
2556 if ((!g) || dgid[0] != 0xff)
2557 skb->pkt_type = PACKET_HOST;
2558 else if (memcmp(dgid, netdev->broadcast + 4, MLX5_GID_SIZE) == 0)
2559 skb->pkt_type = PACKET_BROADCAST;
2560 else
2561 skb->pkt_type = PACKET_MULTICAST;
2562
2563 /* Drop packets that this interface sent, ie multicast packets
2564 * that the HCA has replicated.
2565 */
2566 if (g && (qpn == (flags_rqpn & 0xffffff)) &&
2567 (memcmp(netdev->dev_addr + 4, skb->data + MLX5_IB_GRH_SGID_OFFSET,
2568 MLX5_GID_SIZE) == 0)) {
2569 skb->dev = NULL;
2570 return;
2571 }
2572
2573 skb_pull(skb, MLX5_IB_GRH_BYTES);
2574
2575 skb->protocol = *((__be16 *)(skb->data));
2576
2577 if (netdev->features & NETIF_F_RXCSUM) {
2578 skb->ip_summed = CHECKSUM_COMPLETE;
2579 skb->csum = csum_unfold((__force __sum16)cqe->check_sum);
2580 stats->csum_complete++;
2581 } else {
2582 skb->ip_summed = CHECKSUM_NONE;
2583 stats->csum_none++;
2584 }
2585
2586 if (unlikely(mlx5e_rx_hw_stamp(&priv->hwtstamp_config)))
2587 skb_hwtstamps(skb)->hwtstamp = mlx5e_cqe_ts_to_ns(rq->ptp_cyc2time,
2588 rq->clock, get_cqe_ts(cqe));
2589 skb_record_rx_queue(skb, rq->ix);
2590
2591 if (likely(netdev->features & NETIF_F_RXHASH))
2592 mlx5e_skb_set_hash(cqe, skb);
2593
2594 /* 20 bytes of ipoib header and 4 for encap existing */
2595 pseudo_header = skb_push(skb, MLX5_IPOIB_PSEUDO_LEN);
2596 memset(pseudo_header, 0, MLX5_IPOIB_PSEUDO_LEN);
2597 skb_reset_mac_header(skb);
2598 skb_pull(skb, MLX5_IPOIB_HARD_LEN);
2599
2600 skb->dev = netdev;
2601
2602 stats->packets++;
2603 stats->bytes += cqe_bcnt;
2604 }
2605
mlx5i_handle_rx_cqe(struct mlx5e_rq * rq,struct mlx5_cqe64 * cqe)2606 static void mlx5i_handle_rx_cqe(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe)
2607 {
2608 struct mlx5_wq_cyc *wq = &rq->wqe.wq;
2609 struct mlx5e_wqe_frag_info *wi;
2610 struct sk_buff *skb;
2611 u32 cqe_bcnt;
2612 u16 ci;
2613
2614 ci = mlx5_wq_cyc_ctr2ix(wq, be16_to_cpu(cqe->wqe_counter));
2615 wi = get_frag(rq, ci);
2616 cqe_bcnt = be32_to_cpu(cqe->byte_cnt);
2617
2618 if (unlikely(MLX5E_RX_ERR_CQE(cqe))) {
2619 rq->stats->wqe_err++;
2620 goto wq_cyc_pop;
2621 }
2622
2623 skb = INDIRECT_CALL_2(rq->wqe.skb_from_cqe,
2624 mlx5e_skb_from_cqe_linear,
2625 mlx5e_skb_from_cqe_nonlinear,
2626 rq, wi, cqe, cqe_bcnt);
2627 if (!skb)
2628 goto wq_cyc_pop;
2629
2630 mlx5i_complete_rx_cqe(rq, cqe, cqe_bcnt, skb);
2631 if (unlikely(!skb->dev)) {
2632 dev_kfree_skb_any(skb);
2633 goto wq_cyc_pop;
2634 }
2635 napi_gro_receive(rq->cq.napi, skb);
2636
2637 wq_cyc_pop:
2638 mlx5_wq_cyc_pop(wq);
2639 }
2640
2641 const struct mlx5e_rx_handlers mlx5i_rx_handlers = {
2642 .handle_rx_cqe = mlx5i_handle_rx_cqe,
2643 .handle_rx_cqe_mpwqe = NULL, /* Not supported */
2644 };
2645 #endif /* CONFIG_MLX5_CORE_IPOIB */
2646
mlx5e_rq_set_handlers(struct mlx5e_rq * rq,struct mlx5e_params * params,bool xsk)2647 int mlx5e_rq_set_handlers(struct mlx5e_rq *rq, struct mlx5e_params *params, bool xsk)
2648 {
2649 struct net_device *netdev = rq->netdev;
2650 struct mlx5_core_dev *mdev = rq->mdev;
2651 struct mlx5e_priv *priv = rq->priv;
2652
2653 switch (rq->wq_type) {
2654 case MLX5_WQ_TYPE_LINKED_LIST_STRIDING_RQ:
2655 rq->mpwqe.skb_from_cqe_mpwrq = xsk ?
2656 mlx5e_xsk_skb_from_cqe_mpwrq_linear :
2657 mlx5e_rx_mpwqe_is_linear_skb(mdev, params, NULL) ?
2658 mlx5e_skb_from_cqe_mpwrq_linear :
2659 mlx5e_skb_from_cqe_mpwrq_nonlinear;
2660 rq->post_wqes = mlx5e_post_rx_mpwqes;
2661 rq->dealloc_wqe = mlx5e_dealloc_rx_mpwqe;
2662
2663 if (params->packet_merge.type == MLX5E_PACKET_MERGE_SHAMPO) {
2664 rq->handle_rx_cqe = priv->profile->rx_handlers->handle_rx_cqe_mpwqe_shampo;
2665 if (!rq->handle_rx_cqe) {
2666 netdev_err(netdev, "RX handler of SHAMPO MPWQE RQ is not set\n");
2667 return -EINVAL;
2668 }
2669 } else {
2670 rq->handle_rx_cqe = priv->profile->rx_handlers->handle_rx_cqe_mpwqe;
2671 if (!rq->handle_rx_cqe) {
2672 netdev_err(netdev, "RX handler of MPWQE RQ is not set\n");
2673 return -EINVAL;
2674 }
2675 }
2676
2677 break;
2678 default: /* MLX5_WQ_TYPE_CYCLIC */
2679 rq->wqe.skb_from_cqe = xsk ?
2680 mlx5e_xsk_skb_from_cqe_linear :
2681 mlx5e_rx_is_linear_skb(mdev, params, NULL) ?
2682 mlx5e_skb_from_cqe_linear :
2683 mlx5e_skb_from_cqe_nonlinear;
2684 rq->post_wqes = mlx5e_post_rx_wqes;
2685 rq->dealloc_wqe = mlx5e_dealloc_rx_wqe;
2686 rq->handle_rx_cqe = priv->profile->rx_handlers->handle_rx_cqe;
2687 if (!rq->handle_rx_cqe) {
2688 netdev_err(netdev, "RX handler of RQ is not set\n");
2689 return -EINVAL;
2690 }
2691 }
2692
2693 return 0;
2694 }
2695
mlx5e_trap_handle_rx_cqe(struct mlx5e_rq * rq,struct mlx5_cqe64 * cqe)2696 static void mlx5e_trap_handle_rx_cqe(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe)
2697 {
2698 struct mlx5_wq_cyc *wq = &rq->wqe.wq;
2699 struct mlx5e_wqe_frag_info *wi;
2700 struct sk_buff *skb;
2701 u32 cqe_bcnt;
2702 u16 trap_id;
2703 u16 ci;
2704
2705 trap_id = get_cqe_flow_tag(cqe);
2706 ci = mlx5_wq_cyc_ctr2ix(wq, be16_to_cpu(cqe->wqe_counter));
2707 wi = get_frag(rq, ci);
2708 cqe_bcnt = be32_to_cpu(cqe->byte_cnt);
2709
2710 if (unlikely(MLX5E_RX_ERR_CQE(cqe))) {
2711 rq->stats->wqe_err++;
2712 goto wq_cyc_pop;
2713 }
2714
2715 skb = mlx5e_skb_from_cqe_nonlinear(rq, wi, cqe, cqe_bcnt);
2716 if (!skb)
2717 goto wq_cyc_pop;
2718
2719 if (mlx5e_complete_rx_cqe(rq, cqe, cqe_bcnt, skb))
2720 goto wq_cyc_pop;
2721 skb_push(skb, ETH_HLEN);
2722
2723 mlx5_devlink_trap_report(rq->mdev, trap_id, skb,
2724 rq->netdev->devlink_port);
2725 dev_kfree_skb_any(skb);
2726
2727 wq_cyc_pop:
2728 mlx5_wq_cyc_pop(wq);
2729 }
2730
mlx5e_rq_set_trap_handlers(struct mlx5e_rq * rq,struct mlx5e_params * params)2731 void mlx5e_rq_set_trap_handlers(struct mlx5e_rq *rq, struct mlx5e_params *params)
2732 {
2733 rq->wqe.skb_from_cqe = mlx5e_rx_is_linear_skb(rq->mdev, params, NULL) ?
2734 mlx5e_skb_from_cqe_linear :
2735 mlx5e_skb_from_cqe_nonlinear;
2736 rq->post_wqes = mlx5e_post_rx_wqes;
2737 rq->dealloc_wqe = mlx5e_dealloc_rx_wqe;
2738 rq->handle_rx_cqe = mlx5e_trap_handle_rx_cqe;
2739 }
2740