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/prefetch.h>
34 #include <linux/ip.h>
35 #include <linux/ipv6.h>
36 #include <linux/tcp.h>
37 #include <linux/indirect_call_wrapper.h>
38 #include <net/ip6_checksum.h>
39 #include <net/page_pool.h>
40 #include <net/inet_ecn.h>
41 #include "en.h"
42 #include "en_tc.h"
43 #include "eswitch.h"
44 #include "en_rep.h"
45 #include "ipoib/ipoib.h"
46 #include "en_accel/ipsec_rxtx.h"
47 #include "en_accel/tls_rxtx.h"
48 #include "lib/clock.h"
49 #include "en/xdp.h"
50 #include "en/xsk/rx.h"
51 #include "en/health.h"
52 
53 static inline bool mlx5e_rx_hw_stamp(struct hwtstamp_config *config)
54 {
55 	return config->rx_filter == HWTSTAMP_FILTER_ALL;
56 }
57 
58 static inline void mlx5e_read_cqe_slot(struct mlx5_cqwq *wq,
59 				       u32 cqcc, void *data)
60 {
61 	u32 ci = mlx5_cqwq_ctr2ix(wq, cqcc);
62 
63 	memcpy(data, mlx5_cqwq_get_wqe(wq, ci), sizeof(struct mlx5_cqe64));
64 }
65 
66 static inline void mlx5e_read_title_slot(struct mlx5e_rq *rq,
67 					 struct mlx5_cqwq *wq,
68 					 u32 cqcc)
69 {
70 	struct mlx5e_cq_decomp *cqd = &rq->cqd;
71 	struct mlx5_cqe64 *title = &cqd->title;
72 
73 	mlx5e_read_cqe_slot(wq, cqcc, title);
74 	cqd->left        = be32_to_cpu(title->byte_cnt);
75 	cqd->wqe_counter = be16_to_cpu(title->wqe_counter);
76 	rq->stats->cqe_compress_blks++;
77 }
78 
79 static inline void mlx5e_read_mini_arr_slot(struct mlx5_cqwq *wq,
80 					    struct mlx5e_cq_decomp *cqd,
81 					    u32 cqcc)
82 {
83 	mlx5e_read_cqe_slot(wq, cqcc, cqd->mini_arr);
84 	cqd->mini_arr_idx = 0;
85 }
86 
87 static inline void mlx5e_cqes_update_owner(struct mlx5_cqwq *wq, int n)
88 {
89 	u32 cqcc   = wq->cc;
90 	u8  op_own = mlx5_cqwq_get_ctr_wrap_cnt(wq, cqcc) & 1;
91 	u32 ci     = mlx5_cqwq_ctr2ix(wq, cqcc);
92 	u32 wq_sz  = mlx5_cqwq_get_size(wq);
93 	u32 ci_top = min_t(u32, wq_sz, ci + n);
94 
95 	for (; ci < ci_top; ci++, n--) {
96 		struct mlx5_cqe64 *cqe = mlx5_cqwq_get_wqe(wq, ci);
97 
98 		cqe->op_own = op_own;
99 	}
100 
101 	if (unlikely(ci == wq_sz)) {
102 		op_own = !op_own;
103 		for (ci = 0; ci < n; ci++) {
104 			struct mlx5_cqe64 *cqe = mlx5_cqwq_get_wqe(wq, ci);
105 
106 			cqe->op_own = op_own;
107 		}
108 	}
109 }
110 
111 static inline void mlx5e_decompress_cqe(struct mlx5e_rq *rq,
112 					struct mlx5_cqwq *wq,
113 					u32 cqcc)
114 {
115 	struct mlx5e_cq_decomp *cqd = &rq->cqd;
116 	struct mlx5_mini_cqe8 *mini_cqe = &cqd->mini_arr[cqd->mini_arr_idx];
117 	struct mlx5_cqe64 *title = &cqd->title;
118 
119 	title->byte_cnt     = mini_cqe->byte_cnt;
120 	title->check_sum    = mini_cqe->checksum;
121 	title->op_own      &= 0xf0;
122 	title->op_own      |= 0x01 & (cqcc >> wq->fbc.log_sz);
123 	title->wqe_counter  = cpu_to_be16(cqd->wqe_counter);
124 
125 	if (rq->wq_type == MLX5_WQ_TYPE_LINKED_LIST_STRIDING_RQ)
126 		cqd->wqe_counter += mpwrq_get_cqe_consumed_strides(title);
127 	else
128 		cqd->wqe_counter =
129 			mlx5_wq_cyc_ctr2ix(&rq->wqe.wq, cqd->wqe_counter + 1);
130 }
131 
132 static inline void mlx5e_decompress_cqe_no_hash(struct mlx5e_rq *rq,
133 						struct mlx5_cqwq *wq,
134 						u32 cqcc)
135 {
136 	struct mlx5e_cq_decomp *cqd = &rq->cqd;
137 
138 	mlx5e_decompress_cqe(rq, wq, cqcc);
139 	cqd->title.rss_hash_type   = 0;
140 	cqd->title.rss_hash_result = 0;
141 }
142 
143 static inline u32 mlx5e_decompress_cqes_cont(struct mlx5e_rq *rq,
144 					     struct mlx5_cqwq *wq,
145 					     int update_owner_only,
146 					     int budget_rem)
147 {
148 	struct mlx5e_cq_decomp *cqd = &rq->cqd;
149 	u32 cqcc = wq->cc + update_owner_only;
150 	u32 cqe_count;
151 	u32 i;
152 
153 	cqe_count = min_t(u32, cqd->left, budget_rem);
154 
155 	for (i = update_owner_only; i < cqe_count;
156 	     i++, cqd->mini_arr_idx++, cqcc++) {
157 		if (cqd->mini_arr_idx == MLX5_MINI_CQE_ARRAY_SIZE)
158 			mlx5e_read_mini_arr_slot(wq, cqd, cqcc);
159 
160 		mlx5e_decompress_cqe_no_hash(rq, wq, cqcc);
161 		rq->handle_rx_cqe(rq, &cqd->title);
162 	}
163 	mlx5e_cqes_update_owner(wq, cqcc - wq->cc);
164 	wq->cc = cqcc;
165 	cqd->left -= cqe_count;
166 	rq->stats->cqe_compress_pkts += cqe_count;
167 
168 	return cqe_count;
169 }
170 
171 static inline u32 mlx5e_decompress_cqes_start(struct mlx5e_rq *rq,
172 					      struct mlx5_cqwq *wq,
173 					      int budget_rem)
174 {
175 	struct mlx5e_cq_decomp *cqd = &rq->cqd;
176 	u32 cc = wq->cc;
177 
178 	mlx5e_read_title_slot(rq, wq, cc);
179 	mlx5e_read_mini_arr_slot(wq, cqd, cc + 1);
180 	mlx5e_decompress_cqe(rq, wq, cc);
181 	rq->handle_rx_cqe(rq, &cqd->title);
182 	cqd->mini_arr_idx++;
183 
184 	return mlx5e_decompress_cqes_cont(rq, wq, 1, budget_rem) - 1;
185 }
186 
187 static inline bool mlx5e_page_is_reserved(struct page *page)
188 {
189 	return page_is_pfmemalloc(page) || page_to_nid(page) != numa_mem_id();
190 }
191 
192 static inline bool mlx5e_rx_cache_put(struct mlx5e_rq *rq,
193 				      struct mlx5e_dma_info *dma_info)
194 {
195 	struct mlx5e_page_cache *cache = &rq->page_cache;
196 	u32 tail_next = (cache->tail + 1) & (MLX5E_CACHE_SIZE - 1);
197 	struct mlx5e_rq_stats *stats = rq->stats;
198 
199 	if (tail_next == cache->head) {
200 		stats->cache_full++;
201 		return false;
202 	}
203 
204 	if (unlikely(mlx5e_page_is_reserved(dma_info->page))) {
205 		stats->cache_waive++;
206 		return false;
207 	}
208 
209 	cache->page_cache[cache->tail] = *dma_info;
210 	cache->tail = tail_next;
211 	return true;
212 }
213 
214 static inline bool mlx5e_rx_cache_get(struct mlx5e_rq *rq,
215 				      struct mlx5e_dma_info *dma_info)
216 {
217 	struct mlx5e_page_cache *cache = &rq->page_cache;
218 	struct mlx5e_rq_stats *stats = rq->stats;
219 
220 	if (unlikely(cache->head == cache->tail)) {
221 		stats->cache_empty++;
222 		return false;
223 	}
224 
225 	if (page_ref_count(cache->page_cache[cache->head].page) != 1) {
226 		stats->cache_busy++;
227 		return false;
228 	}
229 
230 	*dma_info = cache->page_cache[cache->head];
231 	cache->head = (cache->head + 1) & (MLX5E_CACHE_SIZE - 1);
232 	stats->cache_reuse++;
233 
234 	dma_sync_single_for_device(rq->pdev, dma_info->addr,
235 				   PAGE_SIZE,
236 				   DMA_FROM_DEVICE);
237 	return true;
238 }
239 
240 static inline int mlx5e_page_alloc_pool(struct mlx5e_rq *rq,
241 					struct mlx5e_dma_info *dma_info)
242 {
243 	if (mlx5e_rx_cache_get(rq, dma_info))
244 		return 0;
245 
246 	dma_info->page = page_pool_dev_alloc_pages(rq->page_pool);
247 	if (unlikely(!dma_info->page))
248 		return -ENOMEM;
249 
250 	dma_info->addr = dma_map_page(rq->pdev, dma_info->page, 0,
251 				      PAGE_SIZE, rq->buff.map_dir);
252 	if (unlikely(dma_mapping_error(rq->pdev, dma_info->addr))) {
253 		page_pool_recycle_direct(rq->page_pool, dma_info->page);
254 		dma_info->page = NULL;
255 		return -ENOMEM;
256 	}
257 
258 	return 0;
259 }
260 
261 static inline int mlx5e_page_alloc(struct mlx5e_rq *rq,
262 				   struct mlx5e_dma_info *dma_info)
263 {
264 	if (rq->umem)
265 		return mlx5e_xsk_page_alloc_umem(rq, dma_info);
266 	else
267 		return mlx5e_page_alloc_pool(rq, dma_info);
268 }
269 
270 void mlx5e_page_dma_unmap(struct mlx5e_rq *rq, struct mlx5e_dma_info *dma_info)
271 {
272 	dma_unmap_page(rq->pdev, dma_info->addr, PAGE_SIZE, rq->buff.map_dir);
273 }
274 
275 void mlx5e_page_release_dynamic(struct mlx5e_rq *rq,
276 				struct mlx5e_dma_info *dma_info,
277 				bool recycle)
278 {
279 	if (likely(recycle)) {
280 		if (mlx5e_rx_cache_put(rq, dma_info))
281 			return;
282 
283 		mlx5e_page_dma_unmap(rq, dma_info);
284 		page_pool_recycle_direct(rq->page_pool, dma_info->page);
285 	} else {
286 		mlx5e_page_dma_unmap(rq, dma_info);
287 		page_pool_release_page(rq->page_pool, dma_info->page);
288 		put_page(dma_info->page);
289 	}
290 }
291 
292 static inline void mlx5e_page_release(struct mlx5e_rq *rq,
293 				      struct mlx5e_dma_info *dma_info,
294 				      bool recycle)
295 {
296 	if (rq->umem)
297 		/* The `recycle` parameter is ignored, and the page is always
298 		 * put into the Reuse Ring, because there is no way to return
299 		 * the page to the userspace when the interface goes down.
300 		 */
301 		mlx5e_xsk_page_release(rq, dma_info);
302 	else
303 		mlx5e_page_release_dynamic(rq, dma_info, recycle);
304 }
305 
306 static inline int mlx5e_get_rx_frag(struct mlx5e_rq *rq,
307 				    struct mlx5e_wqe_frag_info *frag)
308 {
309 	int err = 0;
310 
311 	if (!frag->offset)
312 		/* On first frag (offset == 0), replenish page (dma_info actually).
313 		 * Other frags that point to the same dma_info (with a different
314 		 * offset) should just use the new one without replenishing again
315 		 * by themselves.
316 		 */
317 		err = mlx5e_page_alloc(rq, frag->di);
318 
319 	return err;
320 }
321 
322 static inline void mlx5e_put_rx_frag(struct mlx5e_rq *rq,
323 				     struct mlx5e_wqe_frag_info *frag,
324 				     bool recycle)
325 {
326 	if (frag->last_in_page)
327 		mlx5e_page_release(rq, frag->di, recycle);
328 }
329 
330 static inline struct mlx5e_wqe_frag_info *get_frag(struct mlx5e_rq *rq, u16 ix)
331 {
332 	return &rq->wqe.frags[ix << rq->wqe.info.log_num_frags];
333 }
334 
335 static int mlx5e_alloc_rx_wqe(struct mlx5e_rq *rq, struct mlx5e_rx_wqe_cyc *wqe,
336 			      u16 ix)
337 {
338 	struct mlx5e_wqe_frag_info *frag = get_frag(rq, ix);
339 	int err;
340 	int i;
341 
342 	for (i = 0; i < rq->wqe.info.num_frags; i++, frag++) {
343 		err = mlx5e_get_rx_frag(rq, frag);
344 		if (unlikely(err))
345 			goto free_frags;
346 
347 		wqe->data[i].addr = cpu_to_be64(frag->di->addr +
348 						frag->offset + rq->buff.headroom);
349 	}
350 
351 	return 0;
352 
353 free_frags:
354 	while (--i >= 0)
355 		mlx5e_put_rx_frag(rq, --frag, true);
356 
357 	return err;
358 }
359 
360 static inline void mlx5e_free_rx_wqe(struct mlx5e_rq *rq,
361 				     struct mlx5e_wqe_frag_info *wi,
362 				     bool recycle)
363 {
364 	int i;
365 
366 	for (i = 0; i < rq->wqe.info.num_frags; i++, wi++)
367 		mlx5e_put_rx_frag(rq, wi, recycle);
368 }
369 
370 void mlx5e_dealloc_rx_wqe(struct mlx5e_rq *rq, u16 ix)
371 {
372 	struct mlx5e_wqe_frag_info *wi = get_frag(rq, ix);
373 
374 	mlx5e_free_rx_wqe(rq, wi, false);
375 }
376 
377 static int mlx5e_alloc_rx_wqes(struct mlx5e_rq *rq, u16 ix, u8 wqe_bulk)
378 {
379 	struct mlx5_wq_cyc *wq = &rq->wqe.wq;
380 	int err;
381 	int i;
382 
383 	if (rq->umem) {
384 		int pages_desired = wqe_bulk << rq->wqe.info.log_num_frags;
385 
386 		if (unlikely(!mlx5e_xsk_pages_enough_umem(rq, pages_desired)))
387 			return -ENOMEM;
388 	}
389 
390 	for (i = 0; i < wqe_bulk; i++) {
391 		struct mlx5e_rx_wqe_cyc *wqe = mlx5_wq_cyc_get_wqe(wq, ix + i);
392 
393 		err = mlx5e_alloc_rx_wqe(rq, wqe, ix + i);
394 		if (unlikely(err))
395 			goto free_wqes;
396 	}
397 
398 	return 0;
399 
400 free_wqes:
401 	while (--i >= 0)
402 		mlx5e_dealloc_rx_wqe(rq, ix + i);
403 
404 	return err;
405 }
406 
407 static inline void
408 mlx5e_add_skb_frag(struct mlx5e_rq *rq, struct sk_buff *skb,
409 		   struct mlx5e_dma_info *di, u32 frag_offset, u32 len,
410 		   unsigned int truesize)
411 {
412 	dma_sync_single_for_cpu(rq->pdev,
413 				di->addr + frag_offset,
414 				len, DMA_FROM_DEVICE);
415 	page_ref_inc(di->page);
416 	skb_add_rx_frag(skb, skb_shinfo(skb)->nr_frags,
417 			di->page, frag_offset, len, truesize);
418 }
419 
420 static inline void
421 mlx5e_copy_skb_header(struct device *pdev, struct sk_buff *skb,
422 		      struct mlx5e_dma_info *dma_info,
423 		      int offset_from, u32 headlen)
424 {
425 	const void *from = page_address(dma_info->page) + offset_from;
426 	/* Aligning len to sizeof(long) optimizes memcpy performance */
427 	unsigned int len = ALIGN(headlen, sizeof(long));
428 
429 	dma_sync_single_for_cpu(pdev, dma_info->addr + offset_from, len,
430 				DMA_FROM_DEVICE);
431 	skb_copy_to_linear_data(skb, from, len);
432 }
433 
434 static void
435 mlx5e_free_rx_mpwqe(struct mlx5e_rq *rq, struct mlx5e_mpw_info *wi, bool recycle)
436 {
437 	bool no_xdp_xmit;
438 	struct mlx5e_dma_info *dma_info = wi->umr.dma_info;
439 	int i;
440 
441 	/* A common case for AF_XDP. */
442 	if (bitmap_full(wi->xdp_xmit_bitmap, MLX5_MPWRQ_PAGES_PER_WQE))
443 		return;
444 
445 	no_xdp_xmit = bitmap_empty(wi->xdp_xmit_bitmap,
446 				   MLX5_MPWRQ_PAGES_PER_WQE);
447 
448 	for (i = 0; i < MLX5_MPWRQ_PAGES_PER_WQE; i++)
449 		if (no_xdp_xmit || !test_bit(i, wi->xdp_xmit_bitmap))
450 			mlx5e_page_release(rq, &dma_info[i], recycle);
451 }
452 
453 static void mlx5e_post_rx_mpwqe(struct mlx5e_rq *rq, u8 n)
454 {
455 	struct mlx5_wq_ll *wq = &rq->mpwqe.wq;
456 
457 	do {
458 		u16 next_wqe_index = mlx5_wq_ll_get_wqe_next_ix(wq, wq->head);
459 
460 		mlx5_wq_ll_push(wq, next_wqe_index);
461 	} while (--n);
462 
463 	/* ensure wqes are visible to device before updating doorbell record */
464 	dma_wmb();
465 
466 	mlx5_wq_ll_update_db_record(wq);
467 }
468 
469 static inline void mlx5e_fill_icosq_frag_edge(struct mlx5e_icosq *sq,
470 					      struct mlx5_wq_cyc *wq,
471 					      u16 pi, u16 nnops)
472 {
473 	struct mlx5e_sq_wqe_info *edge_wi, *wi = &sq->db.ico_wqe[pi];
474 
475 	edge_wi = wi + nnops;
476 
477 	/* fill sq frag edge with nops to avoid wqe wrapping two pages */
478 	for (; wi < edge_wi; wi++) {
479 		wi->opcode = MLX5_OPCODE_NOP;
480 		mlx5e_post_nop(wq, sq->sqn, &sq->pc);
481 	}
482 }
483 
484 static int mlx5e_alloc_rx_mpwqe(struct mlx5e_rq *rq, u16 ix)
485 {
486 	struct mlx5e_mpw_info *wi = &rq->mpwqe.info[ix];
487 	struct mlx5e_dma_info *dma_info = &wi->umr.dma_info[0];
488 	struct mlx5e_icosq *sq = &rq->channel->icosq;
489 	struct mlx5_wq_cyc *wq = &sq->wq;
490 	struct mlx5e_umr_wqe *umr_wqe;
491 	u16 xlt_offset = ix << (MLX5E_LOG_ALIGNED_MPWQE_PPW - 1);
492 	u16 pi, contig_wqebbs_room;
493 	int err;
494 	int i;
495 
496 	if (rq->umem &&
497 	    unlikely(!mlx5e_xsk_pages_enough_umem(rq, MLX5_MPWRQ_PAGES_PER_WQE))) {
498 		err = -ENOMEM;
499 		goto err;
500 	}
501 
502 	pi = mlx5_wq_cyc_ctr2ix(wq, sq->pc);
503 	contig_wqebbs_room = mlx5_wq_cyc_get_contig_wqebbs(wq, pi);
504 	if (unlikely(contig_wqebbs_room < MLX5E_UMR_WQEBBS)) {
505 		mlx5e_fill_icosq_frag_edge(sq, wq, pi, contig_wqebbs_room);
506 		pi = mlx5_wq_cyc_ctr2ix(wq, sq->pc);
507 	}
508 
509 	umr_wqe = mlx5_wq_cyc_get_wqe(wq, pi);
510 	memcpy(umr_wqe, &rq->mpwqe.umr_wqe, offsetof(struct mlx5e_umr_wqe, inline_mtts));
511 
512 	for (i = 0; i < MLX5_MPWRQ_PAGES_PER_WQE; i++, dma_info++) {
513 		err = mlx5e_page_alloc(rq, dma_info);
514 		if (unlikely(err))
515 			goto err_unmap;
516 		umr_wqe->inline_mtts[i].ptag = cpu_to_be64(dma_info->addr | MLX5_EN_WR);
517 	}
518 
519 	bitmap_zero(wi->xdp_xmit_bitmap, MLX5_MPWRQ_PAGES_PER_WQE);
520 	wi->consumed_strides = 0;
521 
522 	umr_wqe->ctrl.opmod_idx_opcode =
523 		cpu_to_be32((sq->pc << MLX5_WQE_CTRL_WQE_INDEX_SHIFT) |
524 			    MLX5_OPCODE_UMR);
525 	umr_wqe->uctrl.xlt_offset = cpu_to_be16(xlt_offset);
526 
527 	sq->db.ico_wqe[pi].opcode = MLX5_OPCODE_UMR;
528 	sq->db.ico_wqe[pi].umr.rq = rq;
529 	sq->pc += MLX5E_UMR_WQEBBS;
530 
531 	sq->doorbell_cseg = &umr_wqe->ctrl;
532 
533 	return 0;
534 
535 err_unmap:
536 	while (--i >= 0) {
537 		dma_info--;
538 		mlx5e_page_release(rq, dma_info, true);
539 	}
540 
541 err:
542 	rq->stats->buff_alloc_err++;
543 
544 	return err;
545 }
546 
547 void mlx5e_dealloc_rx_mpwqe(struct mlx5e_rq *rq, u16 ix)
548 {
549 	struct mlx5e_mpw_info *wi = &rq->mpwqe.info[ix];
550 	/* Don't recycle, this function is called on rq/netdev close */
551 	mlx5e_free_rx_mpwqe(rq, wi, false);
552 }
553 
554 bool mlx5e_post_rx_wqes(struct mlx5e_rq *rq)
555 {
556 	struct mlx5_wq_cyc *wq = &rq->wqe.wq;
557 	u8 wqe_bulk;
558 	int err;
559 
560 	if (unlikely(!test_bit(MLX5E_RQ_STATE_ENABLED, &rq->state)))
561 		return false;
562 
563 	wqe_bulk = rq->wqe.info.wqe_bulk;
564 
565 	if (mlx5_wq_cyc_missing(wq) < wqe_bulk)
566 		return false;
567 
568 	do {
569 		u16 head = mlx5_wq_cyc_get_head(wq);
570 
571 		err = mlx5e_alloc_rx_wqes(rq, head, wqe_bulk);
572 		if (unlikely(err)) {
573 			rq->stats->buff_alloc_err++;
574 			break;
575 		}
576 
577 		mlx5_wq_cyc_push_n(wq, wqe_bulk);
578 	} while (mlx5_wq_cyc_missing(wq) >= wqe_bulk);
579 
580 	/* ensure wqes are visible to device before updating doorbell record */
581 	dma_wmb();
582 
583 	mlx5_wq_cyc_update_db_record(wq);
584 
585 	return !!err;
586 }
587 
588 void mlx5e_poll_ico_cq(struct mlx5e_cq *cq)
589 {
590 	struct mlx5e_icosq *sq = container_of(cq, struct mlx5e_icosq, cq);
591 	struct mlx5_cqe64 *cqe;
592 	u16 sqcc;
593 	int i;
594 
595 	if (unlikely(!test_bit(MLX5E_SQ_STATE_ENABLED, &sq->state)))
596 		return;
597 
598 	cqe = mlx5_cqwq_get_cqe(&cq->wq);
599 	if (likely(!cqe))
600 		return;
601 
602 	/* sq->cc must be updated only after mlx5_cqwq_update_db_record(),
603 	 * otherwise a cq overrun may occur
604 	 */
605 	sqcc = sq->cc;
606 
607 	i = 0;
608 	do {
609 		u16 wqe_counter;
610 		bool last_wqe;
611 
612 		mlx5_cqwq_pop(&cq->wq);
613 
614 		wqe_counter = be16_to_cpu(cqe->wqe_counter);
615 
616 		do {
617 			struct mlx5e_sq_wqe_info *wi;
618 			u16 ci;
619 
620 			last_wqe = (sqcc == wqe_counter);
621 
622 			ci = mlx5_wq_cyc_ctr2ix(&sq->wq, sqcc);
623 			wi = &sq->db.ico_wqe[ci];
624 
625 			if (last_wqe && unlikely(get_cqe_opcode(cqe) != MLX5_CQE_REQ)) {
626 				netdev_WARN_ONCE(cq->channel->netdev,
627 						 "Bad OP in ICOSQ CQE: 0x%x\n",
628 						 get_cqe_opcode(cqe));
629 				if (!test_and_set_bit(MLX5E_SQ_STATE_RECOVERING, &sq->state))
630 					queue_work(cq->channel->priv->wq, &sq->recover_work);
631 				break;
632 			}
633 
634 			if (likely(wi->opcode == MLX5_OPCODE_UMR)) {
635 				sqcc += MLX5E_UMR_WQEBBS;
636 				wi->umr.rq->mpwqe.umr_completed++;
637 			} else if (likely(wi->opcode == MLX5_OPCODE_NOP)) {
638 				sqcc++;
639 			} else {
640 				netdev_WARN_ONCE(cq->channel->netdev,
641 						 "Bad OPCODE in ICOSQ WQE info: 0x%x\n",
642 						 wi->opcode);
643 			}
644 
645 		} while (!last_wqe);
646 
647 	} while ((++i < MLX5E_TX_CQ_POLL_BUDGET) && (cqe = mlx5_cqwq_get_cqe(&cq->wq)));
648 
649 	sq->cc = sqcc;
650 
651 	mlx5_cqwq_update_db_record(&cq->wq);
652 }
653 
654 bool mlx5e_post_rx_mpwqes(struct mlx5e_rq *rq)
655 {
656 	struct mlx5e_icosq *sq = &rq->channel->icosq;
657 	struct mlx5_wq_ll *wq = &rq->mpwqe.wq;
658 	u8  umr_completed = rq->mpwqe.umr_completed;
659 	int alloc_err = 0;
660 	u8  missing, i;
661 	u16 head;
662 
663 	if (unlikely(!test_bit(MLX5E_RQ_STATE_ENABLED, &rq->state)))
664 		return false;
665 
666 	if (umr_completed) {
667 		mlx5e_post_rx_mpwqe(rq, umr_completed);
668 		rq->mpwqe.umr_in_progress -= umr_completed;
669 		rq->mpwqe.umr_completed = 0;
670 	}
671 
672 	missing = mlx5_wq_ll_missing(wq) - rq->mpwqe.umr_in_progress;
673 
674 	if (unlikely(rq->mpwqe.umr_in_progress > rq->mpwqe.umr_last_bulk))
675 		rq->stats->congst_umr++;
676 
677 #define UMR_WQE_BULK (2)
678 	if (likely(missing < UMR_WQE_BULK))
679 		return false;
680 
681 	head = rq->mpwqe.actual_wq_head;
682 	i = missing;
683 	do {
684 		alloc_err = mlx5e_alloc_rx_mpwqe(rq, head);
685 
686 		if (unlikely(alloc_err))
687 			break;
688 		head = mlx5_wq_ll_get_wqe_next_ix(wq, head);
689 	} while (--i);
690 
691 	rq->mpwqe.umr_last_bulk    = missing - i;
692 	if (sq->doorbell_cseg) {
693 		mlx5e_notify_hw(&sq->wq, sq->pc, sq->uar_map, sq->doorbell_cseg);
694 		sq->doorbell_cseg = NULL;
695 	}
696 
697 	rq->mpwqe.umr_in_progress += rq->mpwqe.umr_last_bulk;
698 	rq->mpwqe.actual_wq_head   = head;
699 
700 	/* If XSK Fill Ring doesn't have enough frames, report the error, so
701 	 * that one of the actions can be performed:
702 	 * 1. If need_wakeup is used, signal that the application has to kick
703 	 * the driver when it refills the Fill Ring.
704 	 * 2. Otherwise, busy poll by rescheduling the NAPI poll.
705 	 */
706 	if (unlikely(alloc_err == -ENOMEM && rq->umem))
707 		return true;
708 
709 	return false;
710 }
711 
712 static void mlx5e_lro_update_tcp_hdr(struct mlx5_cqe64 *cqe, struct tcphdr *tcp)
713 {
714 	u8 l4_hdr_type = get_cqe_l4_hdr_type(cqe);
715 	u8 tcp_ack     = (l4_hdr_type == CQE_L4_HDR_TYPE_TCP_ACK_NO_DATA) ||
716 			 (l4_hdr_type == CQE_L4_HDR_TYPE_TCP_ACK_AND_DATA);
717 
718 	tcp->check                      = 0;
719 	tcp->psh                        = get_cqe_lro_tcppsh(cqe);
720 
721 	if (tcp_ack) {
722 		tcp->ack                = 1;
723 		tcp->ack_seq            = cqe->lro_ack_seq_num;
724 		tcp->window             = cqe->lro_tcp_win;
725 	}
726 }
727 
728 static void mlx5e_lro_update_hdr(struct sk_buff *skb, struct mlx5_cqe64 *cqe,
729 				 u32 cqe_bcnt)
730 {
731 	struct ethhdr	*eth = (struct ethhdr *)(skb->data);
732 	struct tcphdr	*tcp;
733 	int network_depth = 0;
734 	__wsum check;
735 	__be16 proto;
736 	u16 tot_len;
737 	void *ip_p;
738 
739 	proto = __vlan_get_protocol(skb, eth->h_proto, &network_depth);
740 
741 	tot_len = cqe_bcnt - network_depth;
742 	ip_p = skb->data + network_depth;
743 
744 	if (proto == htons(ETH_P_IP)) {
745 		struct iphdr *ipv4 = ip_p;
746 
747 		tcp = ip_p + sizeof(struct iphdr);
748 		skb_shinfo(skb)->gso_type = SKB_GSO_TCPV4;
749 
750 		ipv4->ttl               = cqe->lro_min_ttl;
751 		ipv4->tot_len           = cpu_to_be16(tot_len);
752 		ipv4->check             = 0;
753 		ipv4->check             = ip_fast_csum((unsigned char *)ipv4,
754 						       ipv4->ihl);
755 
756 		mlx5e_lro_update_tcp_hdr(cqe, tcp);
757 		check = csum_partial(tcp, tcp->doff * 4,
758 				     csum_unfold((__force __sum16)cqe->check_sum));
759 		/* Almost done, don't forget the pseudo header */
760 		tcp->check = csum_tcpudp_magic(ipv4->saddr, ipv4->daddr,
761 					       tot_len - sizeof(struct iphdr),
762 					       IPPROTO_TCP, check);
763 	} else {
764 		u16 payload_len = tot_len - sizeof(struct ipv6hdr);
765 		struct ipv6hdr *ipv6 = ip_p;
766 
767 		tcp = ip_p + sizeof(struct ipv6hdr);
768 		skb_shinfo(skb)->gso_type = SKB_GSO_TCPV6;
769 
770 		ipv6->hop_limit         = cqe->lro_min_ttl;
771 		ipv6->payload_len       = cpu_to_be16(payload_len);
772 
773 		mlx5e_lro_update_tcp_hdr(cqe, tcp);
774 		check = csum_partial(tcp, tcp->doff * 4,
775 				     csum_unfold((__force __sum16)cqe->check_sum));
776 		/* Almost done, don't forget the pseudo header */
777 		tcp->check = csum_ipv6_magic(&ipv6->saddr, &ipv6->daddr, payload_len,
778 					     IPPROTO_TCP, check);
779 	}
780 }
781 
782 static inline void mlx5e_skb_set_hash(struct mlx5_cqe64 *cqe,
783 				      struct sk_buff *skb)
784 {
785 	u8 cht = cqe->rss_hash_type;
786 	int ht = (cht & CQE_RSS_HTYPE_L4) ? PKT_HASH_TYPE_L4 :
787 		 (cht & CQE_RSS_HTYPE_IP) ? PKT_HASH_TYPE_L3 :
788 					    PKT_HASH_TYPE_NONE;
789 	skb_set_hash(skb, be32_to_cpu(cqe->rss_hash_result), ht);
790 }
791 
792 static inline bool is_last_ethertype_ip(struct sk_buff *skb, int *network_depth,
793 					__be16 *proto)
794 {
795 	*proto = ((struct ethhdr *)skb->data)->h_proto;
796 	*proto = __vlan_get_protocol(skb, *proto, network_depth);
797 
798 	if (*proto == htons(ETH_P_IP))
799 		return pskb_may_pull(skb, *network_depth + sizeof(struct iphdr));
800 
801 	if (*proto == htons(ETH_P_IPV6))
802 		return pskb_may_pull(skb, *network_depth + sizeof(struct ipv6hdr));
803 
804 	return false;
805 }
806 
807 static inline void mlx5e_enable_ecn(struct mlx5e_rq *rq, struct sk_buff *skb)
808 {
809 	int network_depth = 0;
810 	__be16 proto;
811 	void *ip;
812 	int rc;
813 
814 	if (unlikely(!is_last_ethertype_ip(skb, &network_depth, &proto)))
815 		return;
816 
817 	ip = skb->data + network_depth;
818 	rc = ((proto == htons(ETH_P_IP)) ? IP_ECN_set_ce((struct iphdr *)ip) :
819 					 IP6_ECN_set_ce(skb, (struct ipv6hdr *)ip));
820 
821 	rq->stats->ecn_mark += !!rc;
822 }
823 
824 static u8 get_ip_proto(struct sk_buff *skb, int network_depth, __be16 proto)
825 {
826 	void *ip_p = skb->data + network_depth;
827 
828 	return (proto == htons(ETH_P_IP)) ? ((struct iphdr *)ip_p)->protocol :
829 					    ((struct ipv6hdr *)ip_p)->nexthdr;
830 }
831 
832 #define short_frame(size) ((size) <= ETH_ZLEN + ETH_FCS_LEN)
833 
834 #define MAX_PADDING 8
835 
836 static void
837 tail_padding_csum_slow(struct sk_buff *skb, int offset, int len,
838 		       struct mlx5e_rq_stats *stats)
839 {
840 	stats->csum_complete_tail_slow++;
841 	skb->csum = csum_block_add(skb->csum,
842 				   skb_checksum(skb, offset, len, 0),
843 				   offset);
844 }
845 
846 static void
847 tail_padding_csum(struct sk_buff *skb, int offset,
848 		  struct mlx5e_rq_stats *stats)
849 {
850 	u8 tail_padding[MAX_PADDING];
851 	int len = skb->len - offset;
852 	void *tail;
853 
854 	if (unlikely(len > MAX_PADDING)) {
855 		tail_padding_csum_slow(skb, offset, len, stats);
856 		return;
857 	}
858 
859 	tail = skb_header_pointer(skb, offset, len, tail_padding);
860 	if (unlikely(!tail)) {
861 		tail_padding_csum_slow(skb, offset, len, stats);
862 		return;
863 	}
864 
865 	stats->csum_complete_tail++;
866 	skb->csum = csum_block_add(skb->csum, csum_partial(tail, len, 0), offset);
867 }
868 
869 static void
870 mlx5e_skb_csum_fixup(struct sk_buff *skb, int network_depth, __be16 proto,
871 		     struct mlx5e_rq_stats *stats)
872 {
873 	struct ipv6hdr *ip6;
874 	struct iphdr   *ip4;
875 	int pkt_len;
876 
877 	/* Fixup vlan headers, if any */
878 	if (network_depth > ETH_HLEN)
879 		/* CQE csum is calculated from the IP header and does
880 		 * not cover VLAN headers (if present). This will add
881 		 * the checksum manually.
882 		 */
883 		skb->csum = csum_partial(skb->data + ETH_HLEN,
884 					 network_depth - ETH_HLEN,
885 					 skb->csum);
886 
887 	/* Fixup tail padding, if any */
888 	switch (proto) {
889 	case htons(ETH_P_IP):
890 		ip4 = (struct iphdr *)(skb->data + network_depth);
891 		pkt_len = network_depth + ntohs(ip4->tot_len);
892 		break;
893 	case htons(ETH_P_IPV6):
894 		ip6 = (struct ipv6hdr *)(skb->data + network_depth);
895 		pkt_len = network_depth + sizeof(*ip6) + ntohs(ip6->payload_len);
896 		break;
897 	default:
898 		return;
899 	}
900 
901 	if (likely(pkt_len >= skb->len))
902 		return;
903 
904 	tail_padding_csum(skb, pkt_len, stats);
905 }
906 
907 static inline void mlx5e_handle_csum(struct net_device *netdev,
908 				     struct mlx5_cqe64 *cqe,
909 				     struct mlx5e_rq *rq,
910 				     struct sk_buff *skb,
911 				     bool   lro)
912 {
913 	struct mlx5e_rq_stats *stats = rq->stats;
914 	int network_depth = 0;
915 	__be16 proto;
916 
917 	if (unlikely(!(netdev->features & NETIF_F_RXCSUM)))
918 		goto csum_none;
919 
920 	if (lro) {
921 		skb->ip_summed = CHECKSUM_UNNECESSARY;
922 		stats->csum_unnecessary++;
923 		return;
924 	}
925 
926 	/* True when explicitly set via priv flag, or XDP prog is loaded */
927 	if (test_bit(MLX5E_RQ_STATE_NO_CSUM_COMPLETE, &rq->state))
928 		goto csum_unnecessary;
929 
930 	/* CQE csum doesn't cover padding octets in short ethernet
931 	 * frames. And the pad field is appended prior to calculating
932 	 * and appending the FCS field.
933 	 *
934 	 * Detecting these padded frames requires to verify and parse
935 	 * IP headers, so we simply force all those small frames to be
936 	 * CHECKSUM_UNNECESSARY even if they are not padded.
937 	 */
938 	if (short_frame(skb->len))
939 		goto csum_unnecessary;
940 
941 	if (likely(is_last_ethertype_ip(skb, &network_depth, &proto))) {
942 		if (unlikely(get_ip_proto(skb, network_depth, proto) == IPPROTO_SCTP))
943 			goto csum_unnecessary;
944 
945 		stats->csum_complete++;
946 		skb->ip_summed = CHECKSUM_COMPLETE;
947 		skb->csum = csum_unfold((__force __sum16)cqe->check_sum);
948 
949 		if (test_bit(MLX5E_RQ_STATE_CSUM_FULL, &rq->state))
950 			return; /* CQE csum covers all received bytes */
951 
952 		/* csum might need some fixups ...*/
953 		mlx5e_skb_csum_fixup(skb, network_depth, proto, stats);
954 		return;
955 	}
956 
957 csum_unnecessary:
958 	if (likely((cqe->hds_ip_ext & CQE_L3_OK) &&
959 		   (cqe->hds_ip_ext & CQE_L4_OK))) {
960 		skb->ip_summed = CHECKSUM_UNNECESSARY;
961 		if (cqe_is_tunneled(cqe)) {
962 			skb->csum_level = 1;
963 			skb->encapsulation = 1;
964 			stats->csum_unnecessary_inner++;
965 			return;
966 		}
967 		stats->csum_unnecessary++;
968 		return;
969 	}
970 csum_none:
971 	skb->ip_summed = CHECKSUM_NONE;
972 	stats->csum_none++;
973 }
974 
975 #define MLX5E_CE_BIT_MASK 0x80
976 
977 static inline void mlx5e_build_rx_skb(struct mlx5_cqe64 *cqe,
978 				      u32 cqe_bcnt,
979 				      struct mlx5e_rq *rq,
980 				      struct sk_buff *skb)
981 {
982 	u8 lro_num_seg = be32_to_cpu(cqe->srqn) >> 24;
983 	struct mlx5e_rq_stats *stats = rq->stats;
984 	struct net_device *netdev = rq->netdev;
985 
986 	skb->mac_len = ETH_HLEN;
987 
988 #ifdef CONFIG_MLX5_EN_TLS
989 	mlx5e_tls_handle_rx_skb(netdev, skb, &cqe_bcnt);
990 #endif
991 
992 	if (lro_num_seg > 1) {
993 		mlx5e_lro_update_hdr(skb, cqe, cqe_bcnt);
994 		skb_shinfo(skb)->gso_size = DIV_ROUND_UP(cqe_bcnt, lro_num_seg);
995 		/* Subtract one since we already counted this as one
996 		 * "regular" packet in mlx5e_complete_rx_cqe()
997 		 */
998 		stats->packets += lro_num_seg - 1;
999 		stats->lro_packets++;
1000 		stats->lro_bytes += cqe_bcnt;
1001 	}
1002 
1003 	if (unlikely(mlx5e_rx_hw_stamp(rq->tstamp)))
1004 		skb_hwtstamps(skb)->hwtstamp =
1005 				mlx5_timecounter_cyc2time(rq->clock, get_cqe_ts(cqe));
1006 
1007 	skb_record_rx_queue(skb, rq->ix);
1008 
1009 	if (likely(netdev->features & NETIF_F_RXHASH))
1010 		mlx5e_skb_set_hash(cqe, skb);
1011 
1012 	if (cqe_has_vlan(cqe)) {
1013 		__vlan_hwaccel_put_tag(skb, htons(ETH_P_8021Q),
1014 				       be16_to_cpu(cqe->vlan_info));
1015 		stats->removed_vlan_packets++;
1016 	}
1017 
1018 	skb->mark = be32_to_cpu(cqe->sop_drop_qpn) & MLX5E_TC_FLOW_ID_MASK;
1019 
1020 	mlx5e_handle_csum(netdev, cqe, rq, skb, !!lro_num_seg);
1021 	/* checking CE bit in cqe - MSB in ml_path field */
1022 	if (unlikely(cqe->ml_path & MLX5E_CE_BIT_MASK))
1023 		mlx5e_enable_ecn(rq, skb);
1024 
1025 	skb->protocol = eth_type_trans(skb, netdev);
1026 }
1027 
1028 static inline void mlx5e_complete_rx_cqe(struct mlx5e_rq *rq,
1029 					 struct mlx5_cqe64 *cqe,
1030 					 u32 cqe_bcnt,
1031 					 struct sk_buff *skb)
1032 {
1033 	struct mlx5e_rq_stats *stats = rq->stats;
1034 
1035 	stats->packets++;
1036 	stats->bytes += cqe_bcnt;
1037 	mlx5e_build_rx_skb(cqe, cqe_bcnt, rq, skb);
1038 }
1039 
1040 static inline
1041 struct sk_buff *mlx5e_build_linear_skb(struct mlx5e_rq *rq, void *va,
1042 				       u32 frag_size, u16 headroom,
1043 				       u32 cqe_bcnt)
1044 {
1045 	struct sk_buff *skb = build_skb(va, frag_size);
1046 
1047 	if (unlikely(!skb)) {
1048 		rq->stats->buff_alloc_err++;
1049 		return NULL;
1050 	}
1051 
1052 	skb_reserve(skb, headroom);
1053 	skb_put(skb, cqe_bcnt);
1054 
1055 	return skb;
1056 }
1057 
1058 struct sk_buff *
1059 mlx5e_skb_from_cqe_linear(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe,
1060 			  struct mlx5e_wqe_frag_info *wi, u32 cqe_bcnt)
1061 {
1062 	struct mlx5e_dma_info *di = wi->di;
1063 	u16 rx_headroom = rq->buff.headroom;
1064 	struct sk_buff *skb;
1065 	void *va, *data;
1066 	bool consumed;
1067 	u32 frag_size;
1068 
1069 	va             = page_address(di->page) + wi->offset;
1070 	data           = va + rx_headroom;
1071 	frag_size      = MLX5_SKB_FRAG_SZ(rx_headroom + cqe_bcnt);
1072 
1073 	dma_sync_single_range_for_cpu(rq->pdev, di->addr, wi->offset,
1074 				      frag_size, DMA_FROM_DEVICE);
1075 	prefetchw(va); /* xdp_frame data area */
1076 	prefetch(data);
1077 
1078 	rcu_read_lock();
1079 	consumed = mlx5e_xdp_handle(rq, di, va, &rx_headroom, &cqe_bcnt, false);
1080 	rcu_read_unlock();
1081 	if (consumed)
1082 		return NULL; /* page/packet was consumed by XDP */
1083 
1084 	skb = mlx5e_build_linear_skb(rq, va, frag_size, rx_headroom, cqe_bcnt);
1085 	if (unlikely(!skb))
1086 		return NULL;
1087 
1088 	/* queue up for recycling/reuse */
1089 	page_ref_inc(di->page);
1090 
1091 	return skb;
1092 }
1093 
1094 struct sk_buff *
1095 mlx5e_skb_from_cqe_nonlinear(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe,
1096 			     struct mlx5e_wqe_frag_info *wi, u32 cqe_bcnt)
1097 {
1098 	struct mlx5e_rq_frag_info *frag_info = &rq->wqe.info.arr[0];
1099 	struct mlx5e_wqe_frag_info *head_wi = wi;
1100 	u16 headlen      = min_t(u32, MLX5E_RX_MAX_HEAD, cqe_bcnt);
1101 	u16 frag_headlen = headlen;
1102 	u16 byte_cnt     = cqe_bcnt - headlen;
1103 	struct sk_buff *skb;
1104 
1105 	/* XDP is not supported in this configuration, as incoming packets
1106 	 * might spread among multiple pages.
1107 	 */
1108 	skb = napi_alloc_skb(rq->cq.napi,
1109 			     ALIGN(MLX5E_RX_MAX_HEAD, sizeof(long)));
1110 	if (unlikely(!skb)) {
1111 		rq->stats->buff_alloc_err++;
1112 		return NULL;
1113 	}
1114 
1115 	prefetchw(skb->data);
1116 
1117 	while (byte_cnt) {
1118 		u16 frag_consumed_bytes =
1119 			min_t(u16, frag_info->frag_size - frag_headlen, byte_cnt);
1120 
1121 		mlx5e_add_skb_frag(rq, skb, wi->di, wi->offset + frag_headlen,
1122 				   frag_consumed_bytes, frag_info->frag_stride);
1123 		byte_cnt -= frag_consumed_bytes;
1124 		frag_headlen = 0;
1125 		frag_info++;
1126 		wi++;
1127 	}
1128 
1129 	/* copy header */
1130 	mlx5e_copy_skb_header(rq->pdev, skb, head_wi->di, head_wi->offset, headlen);
1131 	/* skb linear part was allocated with headlen and aligned to long */
1132 	skb->tail += headlen;
1133 	skb->len  += headlen;
1134 
1135 	return skb;
1136 }
1137 
1138 static void trigger_report(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe)
1139 {
1140 	struct mlx5_err_cqe *err_cqe = (struct mlx5_err_cqe *)cqe;
1141 
1142 	if (cqe_syndrome_needs_recover(err_cqe->syndrome) &&
1143 	    !test_and_set_bit(MLX5E_RQ_STATE_RECOVERING, &rq->state))
1144 		queue_work(rq->channel->priv->wq, &rq->recover_work);
1145 }
1146 
1147 void mlx5e_handle_rx_cqe(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe)
1148 {
1149 	struct mlx5_wq_cyc *wq = &rq->wqe.wq;
1150 	struct mlx5e_wqe_frag_info *wi;
1151 	struct sk_buff *skb;
1152 	u32 cqe_bcnt;
1153 	u16 ci;
1154 
1155 	ci       = mlx5_wq_cyc_ctr2ix(wq, be16_to_cpu(cqe->wqe_counter));
1156 	wi       = get_frag(rq, ci);
1157 	cqe_bcnt = be32_to_cpu(cqe->byte_cnt);
1158 
1159 	if (unlikely(MLX5E_RX_ERR_CQE(cqe))) {
1160 		trigger_report(rq, cqe);
1161 		rq->stats->wqe_err++;
1162 		goto free_wqe;
1163 	}
1164 
1165 	skb = INDIRECT_CALL_2(rq->wqe.skb_from_cqe,
1166 			      mlx5e_skb_from_cqe_linear,
1167 			      mlx5e_skb_from_cqe_nonlinear,
1168 			      rq, cqe, wi, cqe_bcnt);
1169 	if (!skb) {
1170 		/* probably for XDP */
1171 		if (__test_and_clear_bit(MLX5E_RQ_FLAG_XDP_XMIT, rq->flags)) {
1172 			/* do not return page to cache,
1173 			 * it will be returned on XDP_TX completion.
1174 			 */
1175 			goto wq_cyc_pop;
1176 		}
1177 		goto free_wqe;
1178 	}
1179 
1180 	mlx5e_complete_rx_cqe(rq, cqe, cqe_bcnt, skb);
1181 	napi_gro_receive(rq->cq.napi, skb);
1182 
1183 free_wqe:
1184 	mlx5e_free_rx_wqe(rq, wi, true);
1185 wq_cyc_pop:
1186 	mlx5_wq_cyc_pop(wq);
1187 }
1188 
1189 #ifdef CONFIG_MLX5_ESWITCH
1190 void mlx5e_handle_rx_cqe_rep(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe)
1191 {
1192 	struct net_device *netdev = rq->netdev;
1193 	struct mlx5e_priv *priv = netdev_priv(netdev);
1194 	struct mlx5e_rep_priv *rpriv  = priv->ppriv;
1195 	struct mlx5_eswitch_rep *rep = rpriv->rep;
1196 	struct mlx5_wq_cyc *wq = &rq->wqe.wq;
1197 	struct mlx5e_wqe_frag_info *wi;
1198 	struct sk_buff *skb;
1199 	u32 cqe_bcnt;
1200 	u16 ci;
1201 
1202 	ci       = mlx5_wq_cyc_ctr2ix(wq, be16_to_cpu(cqe->wqe_counter));
1203 	wi       = get_frag(rq, ci);
1204 	cqe_bcnt = be32_to_cpu(cqe->byte_cnt);
1205 
1206 	if (unlikely(MLX5E_RX_ERR_CQE(cqe))) {
1207 		rq->stats->wqe_err++;
1208 		goto free_wqe;
1209 	}
1210 
1211 	skb = rq->wqe.skb_from_cqe(rq, cqe, wi, cqe_bcnt);
1212 	if (!skb) {
1213 		/* probably for XDP */
1214 		if (__test_and_clear_bit(MLX5E_RQ_FLAG_XDP_XMIT, rq->flags)) {
1215 			/* do not return page to cache,
1216 			 * it will be returned on XDP_TX completion.
1217 			 */
1218 			goto wq_cyc_pop;
1219 		}
1220 		goto free_wqe;
1221 	}
1222 
1223 	mlx5e_complete_rx_cqe(rq, cqe, cqe_bcnt, skb);
1224 
1225 	if (rep->vlan && skb_vlan_tag_present(skb))
1226 		skb_vlan_pop(skb);
1227 
1228 	napi_gro_receive(rq->cq.napi, skb);
1229 
1230 free_wqe:
1231 	mlx5e_free_rx_wqe(rq, wi, true);
1232 wq_cyc_pop:
1233 	mlx5_wq_cyc_pop(wq);
1234 }
1235 #endif
1236 
1237 struct sk_buff *
1238 mlx5e_skb_from_cqe_mpwrq_nonlinear(struct mlx5e_rq *rq, struct mlx5e_mpw_info *wi,
1239 				   u16 cqe_bcnt, u32 head_offset, u32 page_idx)
1240 {
1241 	u16 headlen = min_t(u16, MLX5E_RX_MAX_HEAD, cqe_bcnt);
1242 	struct mlx5e_dma_info *di = &wi->umr.dma_info[page_idx];
1243 	u32 frag_offset    = head_offset + headlen;
1244 	u32 byte_cnt       = cqe_bcnt - headlen;
1245 	struct mlx5e_dma_info *head_di = di;
1246 	struct sk_buff *skb;
1247 
1248 	skb = napi_alloc_skb(rq->cq.napi,
1249 			     ALIGN(MLX5E_RX_MAX_HEAD, sizeof(long)));
1250 	if (unlikely(!skb)) {
1251 		rq->stats->buff_alloc_err++;
1252 		return NULL;
1253 	}
1254 
1255 	prefetchw(skb->data);
1256 
1257 	if (unlikely(frag_offset >= PAGE_SIZE)) {
1258 		di++;
1259 		frag_offset -= PAGE_SIZE;
1260 	}
1261 
1262 	while (byte_cnt) {
1263 		u32 pg_consumed_bytes =
1264 			min_t(u32, PAGE_SIZE - frag_offset, byte_cnt);
1265 		unsigned int truesize =
1266 			ALIGN(pg_consumed_bytes, BIT(rq->mpwqe.log_stride_sz));
1267 
1268 		mlx5e_add_skb_frag(rq, skb, di, frag_offset,
1269 				   pg_consumed_bytes, truesize);
1270 		byte_cnt -= pg_consumed_bytes;
1271 		frag_offset = 0;
1272 		di++;
1273 	}
1274 	/* copy header */
1275 	mlx5e_copy_skb_header(rq->pdev, skb, head_di, head_offset, headlen);
1276 	/* skb linear part was allocated with headlen and aligned to long */
1277 	skb->tail += headlen;
1278 	skb->len  += headlen;
1279 
1280 	return skb;
1281 }
1282 
1283 struct sk_buff *
1284 mlx5e_skb_from_cqe_mpwrq_linear(struct mlx5e_rq *rq, struct mlx5e_mpw_info *wi,
1285 				u16 cqe_bcnt, u32 head_offset, u32 page_idx)
1286 {
1287 	struct mlx5e_dma_info *di = &wi->umr.dma_info[page_idx];
1288 	u16 rx_headroom = rq->buff.headroom;
1289 	u32 cqe_bcnt32 = cqe_bcnt;
1290 	struct sk_buff *skb;
1291 	void *va, *data;
1292 	u32 frag_size;
1293 	bool consumed;
1294 
1295 	/* Check packet size. Note LRO doesn't use linear SKB */
1296 	if (unlikely(cqe_bcnt > rq->hw_mtu)) {
1297 		rq->stats->oversize_pkts_sw_drop++;
1298 		return NULL;
1299 	}
1300 
1301 	va             = page_address(di->page) + head_offset;
1302 	data           = va + rx_headroom;
1303 	frag_size      = MLX5_SKB_FRAG_SZ(rx_headroom + cqe_bcnt32);
1304 
1305 	dma_sync_single_range_for_cpu(rq->pdev, di->addr, head_offset,
1306 				      frag_size, DMA_FROM_DEVICE);
1307 	prefetchw(va); /* xdp_frame data area */
1308 	prefetch(data);
1309 
1310 	rcu_read_lock();
1311 	consumed = mlx5e_xdp_handle(rq, di, va, &rx_headroom, &cqe_bcnt32, false);
1312 	rcu_read_unlock();
1313 	if (consumed) {
1314 		if (__test_and_clear_bit(MLX5E_RQ_FLAG_XDP_XMIT, rq->flags))
1315 			__set_bit(page_idx, wi->xdp_xmit_bitmap); /* non-atomic */
1316 		return NULL; /* page/packet was consumed by XDP */
1317 	}
1318 
1319 	skb = mlx5e_build_linear_skb(rq, va, frag_size, rx_headroom, cqe_bcnt32);
1320 	if (unlikely(!skb))
1321 		return NULL;
1322 
1323 	/* queue up for recycling/reuse */
1324 	page_ref_inc(di->page);
1325 
1326 	return skb;
1327 }
1328 
1329 void mlx5e_handle_rx_cqe_mpwrq(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe)
1330 {
1331 	u16 cstrides       = mpwrq_get_cqe_consumed_strides(cqe);
1332 	u16 wqe_id         = be16_to_cpu(cqe->wqe_id);
1333 	struct mlx5e_mpw_info *wi = &rq->mpwqe.info[wqe_id];
1334 	u16 stride_ix      = mpwrq_get_cqe_stride_index(cqe);
1335 	u32 wqe_offset     = stride_ix << rq->mpwqe.log_stride_sz;
1336 	u32 head_offset    = wqe_offset & (PAGE_SIZE - 1);
1337 	u32 page_idx       = wqe_offset >> PAGE_SHIFT;
1338 	struct mlx5e_rx_wqe_ll *wqe;
1339 	struct mlx5_wq_ll *wq;
1340 	struct sk_buff *skb;
1341 	u16 cqe_bcnt;
1342 
1343 	wi->consumed_strides += cstrides;
1344 
1345 	if (unlikely(MLX5E_RX_ERR_CQE(cqe))) {
1346 		trigger_report(rq, cqe);
1347 		rq->stats->wqe_err++;
1348 		goto mpwrq_cqe_out;
1349 	}
1350 
1351 	if (unlikely(mpwrq_is_filler_cqe(cqe))) {
1352 		struct mlx5e_rq_stats *stats = rq->stats;
1353 
1354 		stats->mpwqe_filler_cqes++;
1355 		stats->mpwqe_filler_strides += cstrides;
1356 		goto mpwrq_cqe_out;
1357 	}
1358 
1359 	cqe_bcnt = mpwrq_get_cqe_byte_cnt(cqe);
1360 
1361 	skb = INDIRECT_CALL_2(rq->mpwqe.skb_from_cqe_mpwrq,
1362 			      mlx5e_skb_from_cqe_mpwrq_linear,
1363 			      mlx5e_skb_from_cqe_mpwrq_nonlinear,
1364 			      rq, wi, cqe_bcnt, head_offset, page_idx);
1365 	if (!skb)
1366 		goto mpwrq_cqe_out;
1367 
1368 	mlx5e_complete_rx_cqe(rq, cqe, cqe_bcnt, skb);
1369 	napi_gro_receive(rq->cq.napi, skb);
1370 
1371 mpwrq_cqe_out:
1372 	if (likely(wi->consumed_strides < rq->mpwqe.num_strides))
1373 		return;
1374 
1375 	wq  = &rq->mpwqe.wq;
1376 	wqe = mlx5_wq_ll_get_wqe(wq, wqe_id);
1377 	mlx5e_free_rx_mpwqe(rq, wi, true);
1378 	mlx5_wq_ll_pop(wq, cqe->wqe_id, &wqe->next.next_wqe_index);
1379 }
1380 
1381 int mlx5e_poll_rx_cq(struct mlx5e_cq *cq, int budget)
1382 {
1383 	struct mlx5e_rq *rq = container_of(cq, struct mlx5e_rq, cq);
1384 	struct mlx5_cqwq *cqwq = &cq->wq;
1385 	struct mlx5_cqe64 *cqe;
1386 	int work_done = 0;
1387 
1388 	if (unlikely(!test_bit(MLX5E_RQ_STATE_ENABLED, &rq->state)))
1389 		return 0;
1390 
1391 	if (rq->page_pool)
1392 		page_pool_nid_changed(rq->page_pool, numa_mem_id());
1393 
1394 	if (rq->cqd.left) {
1395 		work_done += mlx5e_decompress_cqes_cont(rq, cqwq, 0, budget);
1396 		if (rq->cqd.left || work_done >= budget)
1397 			goto out;
1398 	}
1399 
1400 	cqe = mlx5_cqwq_get_cqe(cqwq);
1401 	if (!cqe) {
1402 		if (unlikely(work_done))
1403 			goto out;
1404 		return 0;
1405 	}
1406 
1407 	do {
1408 		if (mlx5_get_cqe_format(cqe) == MLX5_COMPRESSED) {
1409 			work_done +=
1410 				mlx5e_decompress_cqes_start(rq, cqwq,
1411 							    budget - work_done);
1412 			continue;
1413 		}
1414 
1415 		mlx5_cqwq_pop(cqwq);
1416 
1417 		INDIRECT_CALL_2(rq->handle_rx_cqe, mlx5e_handle_rx_cqe_mpwrq,
1418 				mlx5e_handle_rx_cqe, rq, cqe);
1419 	} while ((++work_done < budget) && (cqe = mlx5_cqwq_get_cqe(cqwq)));
1420 
1421 out:
1422 	if (rq->xdp_prog)
1423 		mlx5e_xdp_rx_poll_complete(rq);
1424 
1425 	mlx5_cqwq_update_db_record(cqwq);
1426 
1427 	/* ensure cq space is freed before enabling more cqes */
1428 	wmb();
1429 
1430 	return work_done;
1431 }
1432 
1433 #ifdef CONFIG_MLX5_CORE_IPOIB
1434 
1435 #define MLX5_IB_GRH_DGID_OFFSET 24
1436 #define MLX5_GID_SIZE           16
1437 
1438 static inline void mlx5i_complete_rx_cqe(struct mlx5e_rq *rq,
1439 					 struct mlx5_cqe64 *cqe,
1440 					 u32 cqe_bcnt,
1441 					 struct sk_buff *skb)
1442 {
1443 	struct hwtstamp_config *tstamp;
1444 	struct mlx5e_rq_stats *stats;
1445 	struct net_device *netdev;
1446 	struct mlx5e_priv *priv;
1447 	char *pseudo_header;
1448 	u32 qpn;
1449 	u8 *dgid;
1450 	u8 g;
1451 
1452 	qpn = be32_to_cpu(cqe->sop_drop_qpn) & 0xffffff;
1453 	netdev = mlx5i_pkey_get_netdev(rq->netdev, qpn);
1454 
1455 	/* No mapping present, cannot process SKB. This might happen if a child
1456 	 * interface is going down while having unprocessed CQEs on parent RQ
1457 	 */
1458 	if (unlikely(!netdev)) {
1459 		/* TODO: add drop counters support */
1460 		skb->dev = NULL;
1461 		pr_warn_once("Unable to map QPN %u to dev - dropping skb\n", qpn);
1462 		return;
1463 	}
1464 
1465 	priv = mlx5i_epriv(netdev);
1466 	tstamp = &priv->tstamp;
1467 	stats = &priv->channel_stats[rq->ix].rq;
1468 
1469 	g = (be32_to_cpu(cqe->flags_rqpn) >> 28) & 3;
1470 	dgid = skb->data + MLX5_IB_GRH_DGID_OFFSET;
1471 	if ((!g) || dgid[0] != 0xff)
1472 		skb->pkt_type = PACKET_HOST;
1473 	else if (memcmp(dgid, netdev->broadcast + 4, MLX5_GID_SIZE) == 0)
1474 		skb->pkt_type = PACKET_BROADCAST;
1475 	else
1476 		skb->pkt_type = PACKET_MULTICAST;
1477 
1478 	/* TODO: IB/ipoib: Allow mcast packets from other VFs
1479 	 * 68996a6e760e5c74654723eeb57bf65628ae87f4
1480 	 */
1481 
1482 	skb_pull(skb, MLX5_IB_GRH_BYTES);
1483 
1484 	skb->protocol = *((__be16 *)(skb->data));
1485 
1486 	if (netdev->features & NETIF_F_RXCSUM) {
1487 		skb->ip_summed = CHECKSUM_COMPLETE;
1488 		skb->csum = csum_unfold((__force __sum16)cqe->check_sum);
1489 		stats->csum_complete++;
1490 	} else {
1491 		skb->ip_summed = CHECKSUM_NONE;
1492 		stats->csum_none++;
1493 	}
1494 
1495 	if (unlikely(mlx5e_rx_hw_stamp(tstamp)))
1496 		skb_hwtstamps(skb)->hwtstamp =
1497 				mlx5_timecounter_cyc2time(rq->clock, get_cqe_ts(cqe));
1498 
1499 	skb_record_rx_queue(skb, rq->ix);
1500 
1501 	if (likely(netdev->features & NETIF_F_RXHASH))
1502 		mlx5e_skb_set_hash(cqe, skb);
1503 
1504 	/* 20 bytes of ipoib header and 4 for encap existing */
1505 	pseudo_header = skb_push(skb, MLX5_IPOIB_PSEUDO_LEN);
1506 	memset(pseudo_header, 0, MLX5_IPOIB_PSEUDO_LEN);
1507 	skb_reset_mac_header(skb);
1508 	skb_pull(skb, MLX5_IPOIB_HARD_LEN);
1509 
1510 	skb->dev = netdev;
1511 
1512 	stats->packets++;
1513 	stats->bytes += cqe_bcnt;
1514 }
1515 
1516 void mlx5i_handle_rx_cqe(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe)
1517 {
1518 	struct mlx5_wq_cyc *wq = &rq->wqe.wq;
1519 	struct mlx5e_wqe_frag_info *wi;
1520 	struct sk_buff *skb;
1521 	u32 cqe_bcnt;
1522 	u16 ci;
1523 
1524 	ci       = mlx5_wq_cyc_ctr2ix(wq, be16_to_cpu(cqe->wqe_counter));
1525 	wi       = get_frag(rq, ci);
1526 	cqe_bcnt = be32_to_cpu(cqe->byte_cnt);
1527 
1528 	if (unlikely(MLX5E_RX_ERR_CQE(cqe))) {
1529 		rq->stats->wqe_err++;
1530 		goto wq_free_wqe;
1531 	}
1532 
1533 	skb = INDIRECT_CALL_2(rq->wqe.skb_from_cqe,
1534 			      mlx5e_skb_from_cqe_linear,
1535 			      mlx5e_skb_from_cqe_nonlinear,
1536 			      rq, cqe, wi, cqe_bcnt);
1537 	if (!skb)
1538 		goto wq_free_wqe;
1539 
1540 	mlx5i_complete_rx_cqe(rq, cqe, cqe_bcnt, skb);
1541 	if (unlikely(!skb->dev)) {
1542 		dev_kfree_skb_any(skb);
1543 		goto wq_free_wqe;
1544 	}
1545 	napi_gro_receive(rq->cq.napi, skb);
1546 
1547 wq_free_wqe:
1548 	mlx5e_free_rx_wqe(rq, wi, true);
1549 	mlx5_wq_cyc_pop(wq);
1550 }
1551 
1552 #endif /* CONFIG_MLX5_CORE_IPOIB */
1553 
1554 #ifdef CONFIG_MLX5_EN_IPSEC
1555 
1556 void mlx5e_ipsec_handle_rx_cqe(struct mlx5e_rq *rq, struct mlx5_cqe64 *cqe)
1557 {
1558 	struct mlx5_wq_cyc *wq = &rq->wqe.wq;
1559 	struct mlx5e_wqe_frag_info *wi;
1560 	struct sk_buff *skb;
1561 	u32 cqe_bcnt;
1562 	u16 ci;
1563 
1564 	ci       = mlx5_wq_cyc_ctr2ix(wq, be16_to_cpu(cqe->wqe_counter));
1565 	wi       = get_frag(rq, ci);
1566 	cqe_bcnt = be32_to_cpu(cqe->byte_cnt);
1567 
1568 	if (unlikely(MLX5E_RX_ERR_CQE(cqe))) {
1569 		rq->stats->wqe_err++;
1570 		goto wq_free_wqe;
1571 	}
1572 
1573 	skb = INDIRECT_CALL_2(rq->wqe.skb_from_cqe,
1574 			      mlx5e_skb_from_cqe_linear,
1575 			      mlx5e_skb_from_cqe_nonlinear,
1576 			      rq, cqe, wi, cqe_bcnt);
1577 	if (unlikely(!skb)) /* a DROP, save the page-reuse checks */
1578 		goto wq_free_wqe;
1579 
1580 	skb = mlx5e_ipsec_handle_rx_skb(rq->netdev, skb, &cqe_bcnt);
1581 	if (unlikely(!skb))
1582 		goto wq_free_wqe;
1583 
1584 	mlx5e_complete_rx_cqe(rq, cqe, cqe_bcnt, skb);
1585 	napi_gro_receive(rq->cq.napi, skb);
1586 
1587 wq_free_wqe:
1588 	mlx5e_free_rx_wqe(rq, wi, true);
1589 	mlx5_wq_cyc_pop(wq);
1590 }
1591 
1592 #endif /* CONFIG_MLX5_EN_IPSEC */
1593