xref: /f-stack/dpdk/drivers/net/mlx5/mlx5_txq.c (revision 031be553)
1 /*-
2  *   BSD LICENSE
3  *
4  *   Copyright 2015 6WIND S.A.
5  *   Copyright 2015 Mellanox.
6  *
7  *   Redistribution and use in source and binary forms, with or without
8  *   modification, are permitted provided that the following conditions
9  *   are met:
10  *
11  *     * Redistributions of source code must retain the above copyright
12  *       notice, this list of conditions and the following disclaimer.
13  *     * Redistributions in binary form must reproduce the above copyright
14  *       notice, this list of conditions and the following disclaimer in
15  *       the documentation and/or other materials provided with the
16  *       distribution.
17  *     * Neither the name of 6WIND S.A. nor the names of its
18  *       contributors may be used to endorse or promote products derived
19  *       from this software without specific prior written permission.
20  *
21  *   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
22  *   "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
23  *   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
24  *   A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
25  *   OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
26  *   SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
27  *   LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
28  *   DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
29  *   THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
30  *   (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
31  *   OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
32  */
33 
34 #include <stddef.h>
35 #include <assert.h>
36 #include <errno.h>
37 #include <string.h>
38 #include <stdint.h>
39 #include <unistd.h>
40 #include <sys/mman.h>
41 
42 /* Verbs header. */
43 /* ISO C doesn't support unnamed structs/unions, disabling -pedantic. */
44 #ifdef PEDANTIC
45 #pragma GCC diagnostic ignored "-Wpedantic"
46 #endif
47 #include <infiniband/verbs.h>
48 #ifdef PEDANTIC
49 #pragma GCC diagnostic error "-Wpedantic"
50 #endif
51 
52 #include <rte_mbuf.h>
53 #include <rte_malloc.h>
54 #include <rte_ethdev.h>
55 #include <rte_common.h>
56 
57 #include "mlx5_utils.h"
58 #include "mlx5_defs.h"
59 #include "mlx5.h"
60 #include "mlx5_rxtx.h"
61 #include "mlx5_autoconf.h"
62 
63 /**
64  * Allocate TX queue elements.
65  *
66  * @param txq_ctrl
67  *   Pointer to TX queue structure.
68  */
69 void
70 txq_alloc_elts(struct mlx5_txq_ctrl *txq_ctrl)
71 {
72 	const unsigned int elts_n = 1 << txq_ctrl->txq.elts_n;
73 	unsigned int i;
74 
75 	for (i = 0; (i != elts_n); ++i)
76 		(*txq_ctrl->txq.elts)[i] = NULL;
77 	DRV_LOG(DEBUG, "port %u Tx queue %u allocated and configured %u WRs",
78 		PORT_ID(txq_ctrl->priv), txq_ctrl->idx, elts_n);
79 	txq_ctrl->txq.elts_head = 0;
80 	txq_ctrl->txq.elts_tail = 0;
81 	txq_ctrl->txq.elts_comp = 0;
82 }
83 
84 /**
85  * Free TX queue elements.
86  *
87  * @param txq_ctrl
88  *   Pointer to TX queue structure.
89  */
90 static void
91 txq_free_elts(struct mlx5_txq_ctrl *txq_ctrl)
92 {
93 	const uint16_t elts_n = 1 << txq_ctrl->txq.elts_n;
94 	const uint16_t elts_m = elts_n - 1;
95 	uint16_t elts_head = txq_ctrl->txq.elts_head;
96 	uint16_t elts_tail = txq_ctrl->txq.elts_tail;
97 	struct rte_mbuf *(*elts)[elts_n] = txq_ctrl->txq.elts;
98 
99 	DRV_LOG(DEBUG, "port %u Tx queue %u freeing WRs",
100 		PORT_ID(txq_ctrl->priv), txq_ctrl->idx);
101 	txq_ctrl->txq.elts_head = 0;
102 	txq_ctrl->txq.elts_tail = 0;
103 	txq_ctrl->txq.elts_comp = 0;
104 
105 	while (elts_tail != elts_head) {
106 		struct rte_mbuf *elt = (*elts)[elts_tail & elts_m];
107 
108 		assert(elt != NULL);
109 		rte_pktmbuf_free_seg(elt);
110 #ifndef NDEBUG
111 		/* Poisoning. */
112 		memset(&(*elts)[elts_tail & elts_m],
113 		       0x77,
114 		       sizeof((*elts)[elts_tail & elts_m]));
115 #endif
116 		++elts_tail;
117 	}
118 }
119 
120 /**
121  * DPDK callback to configure a TX queue.
122  *
123  * @param dev
124  *   Pointer to Ethernet device structure.
125  * @param idx
126  *   TX queue index.
127  * @param desc
128  *   Number of descriptors to configure in queue.
129  * @param socket
130  *   NUMA socket on which memory must be allocated.
131  * @param[in] conf
132  *   Thresholds parameters.
133  *
134  * @return
135  *   0 on success, a negative errno value otherwise and rte_errno is set.
136  */
137 int
138 mlx5_tx_queue_setup(struct rte_eth_dev *dev, uint16_t idx, uint16_t desc,
139 		    unsigned int socket, const struct rte_eth_txconf *conf)
140 {
141 	struct priv *priv = dev->data->dev_private;
142 	struct mlx5_txq_data *txq = (*priv->txqs)[idx];
143 	struct mlx5_txq_ctrl *txq_ctrl =
144 		container_of(txq, struct mlx5_txq_ctrl, txq);
145 
146 	if (desc <= MLX5_TX_COMP_THRESH) {
147 		DRV_LOG(WARNING,
148 			"port %u number of descriptors requested for Tx queue"
149 			" %u must be higher than MLX5_TX_COMP_THRESH, using %u"
150 			" instead of %u",
151 			dev->data->port_id, idx, MLX5_TX_COMP_THRESH + 1, desc);
152 		desc = MLX5_TX_COMP_THRESH + 1;
153 	}
154 	if (!rte_is_power_of_2(desc)) {
155 		desc = 1 << log2above(desc);
156 		DRV_LOG(WARNING,
157 			"port %u increased number of descriptors in Tx queue"
158 			" %u to the next power of two (%d)",
159 			dev->data->port_id, idx, desc);
160 	}
161 	DRV_LOG(DEBUG, "port %u configuring queue %u for %u descriptors",
162 		dev->data->port_id, idx, desc);
163 	if (idx >= priv->txqs_n) {
164 		DRV_LOG(ERR, "port %u Tx queue index out of range (%u >= %u)",
165 			dev->data->port_id, idx, priv->txqs_n);
166 		rte_errno = EOVERFLOW;
167 		return -rte_errno;
168 	}
169 	if (!mlx5_txq_releasable(dev, idx)) {
170 		rte_errno = EBUSY;
171 		DRV_LOG(ERR, "port %u unable to release queue index %u",
172 			dev->data->port_id, idx);
173 		return -rte_errno;
174 	}
175 	mlx5_txq_release(dev, idx);
176 	txq_ctrl = mlx5_txq_new(dev, idx, desc, socket, conf);
177 	if (!txq_ctrl) {
178 		DRV_LOG(ERR, "port %u unable to allocate queue index %u",
179 			dev->data->port_id, idx);
180 		return -rte_errno;
181 	}
182 	DRV_LOG(DEBUG, "port %u adding Tx queue %u to list",
183 		dev->data->port_id, idx);
184 	(*priv->txqs)[idx] = &txq_ctrl->txq;
185 	return 0;
186 }
187 
188 /**
189  * DPDK callback to release a TX queue.
190  *
191  * @param dpdk_txq
192  *   Generic TX queue pointer.
193  */
194 void
195 mlx5_tx_queue_release(void *dpdk_txq)
196 {
197 	struct mlx5_txq_data *txq = (struct mlx5_txq_data *)dpdk_txq;
198 	struct mlx5_txq_ctrl *txq_ctrl;
199 	struct priv *priv;
200 	unsigned int i;
201 
202 	if (txq == NULL)
203 		return;
204 	txq_ctrl = container_of(txq, struct mlx5_txq_ctrl, txq);
205 	priv = txq_ctrl->priv;
206 	for (i = 0; (i != priv->txqs_n); ++i)
207 		if ((*priv->txqs)[i] == txq) {
208 			mlx5_txq_release(ETH_DEV(priv), i);
209 			DRV_LOG(DEBUG, "port %u removing Tx queue %u from list",
210 				PORT_ID(priv), txq_ctrl->idx);
211 			break;
212 		}
213 }
214 
215 
216 /**
217  * Mmap TX UAR(HW doorbell) pages into reserved UAR address space.
218  * Both primary and secondary process do mmap to make UAR address
219  * aligned.
220  *
221  * @param[in] dev
222  *   Pointer to Ethernet device.
223  * @param fd
224  *   Verbs file descriptor to map UAR pages.
225  *
226  * @return
227  *   0 on success, a negative errno value otherwise and rte_errno is set.
228  */
229 int
230 mlx5_tx_uar_remap(struct rte_eth_dev *dev, int fd)
231 {
232 	struct priv *priv = dev->data->dev_private;
233 	unsigned int i, j;
234 	uintptr_t pages[priv->txqs_n];
235 	unsigned int pages_n = 0;
236 	uintptr_t uar_va;
237 	uintptr_t off;
238 	void *addr;
239 	void *ret;
240 	struct mlx5_txq_data *txq;
241 	struct mlx5_txq_ctrl *txq_ctrl;
242 	int already_mapped;
243 	size_t page_size = sysconf(_SC_PAGESIZE);
244 
245 	memset(pages, 0, priv->txqs_n * sizeof(uintptr_t));
246 	/*
247 	 * As rdma-core, UARs are mapped in size of OS page size.
248 	 * Use aligned address to avoid duplicate mmap.
249 	 * Ref to libmlx5 function: mlx5_init_context()
250 	 */
251 	for (i = 0; i != priv->txqs_n; ++i) {
252 		if (!(*priv->txqs)[i])
253 			continue;
254 		txq = (*priv->txqs)[i];
255 		txq_ctrl = container_of(txq, struct mlx5_txq_ctrl, txq);
256 		assert(txq_ctrl->idx == (uint16_t)i);
257 		/* UAR addr form verbs used to find dup and offset in page. */
258 		uar_va = (uintptr_t)txq_ctrl->bf_reg_orig;
259 		off = uar_va & (page_size - 1); /* offset in page. */
260 		uar_va = RTE_ALIGN_FLOOR(uar_va, page_size); /* page addr. */
261 		already_mapped = 0;
262 		for (j = 0; j != pages_n; ++j) {
263 			if (pages[j] == uar_va) {
264 				already_mapped = 1;
265 				break;
266 			}
267 		}
268 		/* new address in reserved UAR address space. */
269 		addr = RTE_PTR_ADD(priv->uar_base,
270 				   uar_va & (MLX5_UAR_SIZE - 1));
271 		if (!already_mapped) {
272 			pages[pages_n++] = uar_va;
273 			/* fixed mmap to specified address in reserved
274 			 * address space.
275 			 */
276 			ret = mmap(addr, page_size,
277 				   PROT_WRITE, MAP_FIXED | MAP_SHARED, fd,
278 				   txq_ctrl->uar_mmap_offset);
279 			if (ret != addr) {
280 				/* fixed mmap have to return same address */
281 				DRV_LOG(ERR,
282 					"port %u call to mmap failed on UAR"
283 					" for txq %u",
284 					dev->data->port_id, txq_ctrl->idx);
285 				rte_errno = ENXIO;
286 				return -rte_errno;
287 			}
288 		}
289 		if (rte_eal_process_type() == RTE_PROC_PRIMARY) /* save once */
290 			txq_ctrl->txq.bf_reg = RTE_PTR_ADD((void *)addr, off);
291 		else
292 			assert(txq_ctrl->txq.bf_reg ==
293 			       RTE_PTR_ADD((void *)addr, off));
294 	}
295 	return 0;
296 }
297 
298 /**
299  * Create the Tx queue Verbs object.
300  *
301  * @param dev
302  *   Pointer to Ethernet device.
303  * @param idx
304  *   Queue index in DPDK Rx queue array
305  *
306  * @return
307  *   The Verbs object initialised, NULL otherwise and rte_errno is set.
308  */
309 struct mlx5_txq_ibv *
310 mlx5_txq_ibv_new(struct rte_eth_dev *dev, uint16_t idx)
311 {
312 	struct priv *priv = dev->data->dev_private;
313 	struct mlx5_txq_data *txq_data = (*priv->txqs)[idx];
314 	struct mlx5_txq_ctrl *txq_ctrl =
315 		container_of(txq_data, struct mlx5_txq_ctrl, txq);
316 	struct mlx5_txq_ibv tmpl;
317 	struct mlx5_txq_ibv *txq_ibv;
318 	union {
319 		struct ibv_qp_init_attr_ex init;
320 		struct ibv_cq_init_attr_ex cq;
321 		struct ibv_qp_attr mod;
322 		struct ibv_cq_ex cq_attr;
323 	} attr;
324 	unsigned int cqe_n;
325 	struct mlx5dv_qp qp = { .comp_mask = MLX5DV_QP_MASK_UAR_MMAP_OFFSET };
326 	struct mlx5dv_cq cq_info;
327 	struct mlx5dv_obj obj;
328 	const int desc = 1 << txq_data->elts_n;
329 	int ret = 0;
330 
331 	assert(txq_data);
332 	priv->verbs_alloc_ctx.type = MLX5_VERBS_ALLOC_TYPE_TX_QUEUE;
333 	priv->verbs_alloc_ctx.obj = txq_ctrl;
334 	if (mlx5_getenv_int("MLX5_ENABLE_CQE_COMPRESSION")) {
335 		DRV_LOG(ERR,
336 			"port %u MLX5_ENABLE_CQE_COMPRESSION must never be set",
337 			dev->data->port_id);
338 		rte_errno = EINVAL;
339 		return NULL;
340 	}
341 	memset(&tmpl, 0, sizeof(struct mlx5_txq_ibv));
342 	/* MRs will be registered in mp2mr[] later. */
343 	attr.cq = (struct ibv_cq_init_attr_ex){
344 		.comp_mask = 0,
345 	};
346 	cqe_n = ((desc / MLX5_TX_COMP_THRESH) - 1) ?
347 		((desc / MLX5_TX_COMP_THRESH) - 1) : 1;
348 	if (priv->mps == MLX5_MPW_ENHANCED)
349 		cqe_n += MLX5_TX_COMP_THRESH_INLINE_DIV;
350 	tmpl.cq = ibv_create_cq(priv->ctx, cqe_n, NULL, NULL, 0);
351 	if (tmpl.cq == NULL) {
352 		DRV_LOG(ERR, "port %u Tx queue %u CQ creation failure",
353 			dev->data->port_id, idx);
354 		rte_errno = errno;
355 		goto error;
356 	}
357 	attr.init = (struct ibv_qp_init_attr_ex){
358 		/* CQ to be associated with the send queue. */
359 		.send_cq = tmpl.cq,
360 		/* CQ to be associated with the receive queue. */
361 		.recv_cq = tmpl.cq,
362 		.cap = {
363 			/* Max number of outstanding WRs. */
364 			.max_send_wr =
365 				((priv->device_attr.orig_attr.max_qp_wr <
366 				  desc) ?
367 				 priv->device_attr.orig_attr.max_qp_wr :
368 				 desc),
369 			/*
370 			 * Max number of scatter/gather elements in a WR,
371 			 * must be 1 to prevent libmlx5 from trying to affect
372 			 * too much memory. TX gather is not impacted by the
373 			 * priv->device_attr.max_sge limit and will still work
374 			 * properly.
375 			 */
376 			.max_send_sge = 1,
377 		},
378 		.qp_type = IBV_QPT_RAW_PACKET,
379 		/*
380 		 * Do *NOT* enable this, completions events are managed per
381 		 * Tx burst.
382 		 */
383 		.sq_sig_all = 0,
384 		.pd = priv->pd,
385 		.comp_mask = IBV_QP_INIT_ATTR_PD,
386 	};
387 	if (txq_data->inline_en)
388 		attr.init.cap.max_inline_data = txq_ctrl->max_inline_data;
389 	if (txq_data->tso_en) {
390 		attr.init.max_tso_header = txq_ctrl->max_tso_header;
391 		attr.init.comp_mask |= IBV_QP_INIT_ATTR_MAX_TSO_HEADER;
392 	}
393 	tmpl.qp = ibv_create_qp_ex(priv->ctx, &attr.init);
394 	if (tmpl.qp == NULL) {
395 		DRV_LOG(ERR, "port %u Tx queue %u QP creation failure",
396 			dev->data->port_id, idx);
397 		rte_errno = errno;
398 		goto error;
399 	}
400 	attr.mod = (struct ibv_qp_attr){
401 		/* Move the QP to this state. */
402 		.qp_state = IBV_QPS_INIT,
403 		/* Primary port number. */
404 		.port_num = priv->port
405 	};
406 	ret = ibv_modify_qp(tmpl.qp, &attr.mod, (IBV_QP_STATE | IBV_QP_PORT));
407 	if (ret) {
408 		DRV_LOG(ERR,
409 			"port %u Tx queue %u QP state to IBV_QPS_INIT failed",
410 			dev->data->port_id, idx);
411 		rte_errno = errno;
412 		goto error;
413 	}
414 	attr.mod = (struct ibv_qp_attr){
415 		.qp_state = IBV_QPS_RTR
416 	};
417 	ret = ibv_modify_qp(tmpl.qp, &attr.mod, IBV_QP_STATE);
418 	if (ret) {
419 		DRV_LOG(ERR,
420 			"port %u Tx queue %u QP state to IBV_QPS_RTR failed",
421 			dev->data->port_id, idx);
422 		rte_errno = errno;
423 		goto error;
424 	}
425 	attr.mod.qp_state = IBV_QPS_RTS;
426 	ret = ibv_modify_qp(tmpl.qp, &attr.mod, IBV_QP_STATE);
427 	if (ret) {
428 		DRV_LOG(ERR,
429 			"port %u Tx queue %u QP state to IBV_QPS_RTS failed",
430 			dev->data->port_id, idx);
431 		rte_errno = errno;
432 		goto error;
433 	}
434 	txq_ibv = rte_calloc_socket(__func__, 1, sizeof(struct mlx5_txq_ibv), 0,
435 				    txq_ctrl->socket);
436 	if (!txq_ibv) {
437 		DRV_LOG(ERR, "port %u Tx queue %u cannot allocate memory",
438 			dev->data->port_id, idx);
439 		rte_errno = ENOMEM;
440 		goto error;
441 	}
442 	obj.cq.in = tmpl.cq;
443 	obj.cq.out = &cq_info;
444 	obj.qp.in = tmpl.qp;
445 	obj.qp.out = &qp;
446 	ret = mlx5dv_init_obj(&obj, MLX5DV_OBJ_CQ | MLX5DV_OBJ_QP);
447 	if (ret != 0) {
448 		rte_errno = errno;
449 		goto error;
450 	}
451 	if (cq_info.cqe_size != RTE_CACHE_LINE_SIZE) {
452 		DRV_LOG(ERR,
453 			"port %u wrong MLX5_CQE_SIZE environment variable"
454 			" value: it should be set to %u",
455 			dev->data->port_id, RTE_CACHE_LINE_SIZE);
456 		rte_errno = EINVAL;
457 		goto error;
458 	}
459 	txq_data->cqe_n = log2above(cq_info.cqe_cnt);
460 	txq_data->qp_num_8s = tmpl.qp->qp_num << 8;
461 	txq_data->wqes = qp.sq.buf;
462 	txq_data->wqe_n = log2above(qp.sq.wqe_cnt);
463 	txq_data->qp_db = &qp.dbrec[MLX5_SND_DBR];
464 	txq_ctrl->bf_reg_orig = qp.bf.reg;
465 	txq_data->cq_db = cq_info.dbrec;
466 	txq_data->cqes =
467 		(volatile struct mlx5_cqe (*)[])
468 		(uintptr_t)cq_info.buf;
469 	txq_data->cq_ci = 0;
470 #ifndef NDEBUG
471 	txq_data->cq_pi = 0;
472 #endif
473 	txq_data->wqe_ci = 0;
474 	txq_data->wqe_pi = 0;
475 	txq_ibv->qp = tmpl.qp;
476 	txq_ibv->cq = tmpl.cq;
477 	rte_atomic32_inc(&txq_ibv->refcnt);
478 	if (qp.comp_mask & MLX5DV_QP_MASK_UAR_MMAP_OFFSET) {
479 		txq_ctrl->uar_mmap_offset = qp.uar_mmap_offset;
480 	} else {
481 		DRV_LOG(ERR,
482 			"port %u failed to retrieve UAR info, invalid"
483 			" libmlx5.so",
484 			dev->data->port_id);
485 		rte_errno = EINVAL;
486 		goto error;
487 	}
488 	DRV_LOG(DEBUG, "port %u Verbs Tx queue %u: refcnt %d",
489 		dev->data->port_id, idx, rte_atomic32_read(&txq_ibv->refcnt));
490 	LIST_INSERT_HEAD(&priv->txqsibv, txq_ibv, next);
491 	txq_ibv->txq_ctrl = txq_ctrl;
492 	priv->verbs_alloc_ctx.type = MLX5_VERBS_ALLOC_TYPE_NONE;
493 	return txq_ibv;
494 error:
495 	ret = rte_errno; /* Save rte_errno before cleanup. */
496 	if (tmpl.cq)
497 		claim_zero(ibv_destroy_cq(tmpl.cq));
498 	if (tmpl.qp)
499 		claim_zero(ibv_destroy_qp(tmpl.qp));
500 	priv->verbs_alloc_ctx.type = MLX5_VERBS_ALLOC_TYPE_NONE;
501 	rte_errno = ret; /* Restore rte_errno. */
502 	return NULL;
503 }
504 
505 /**
506  * Get an Tx queue Verbs object.
507  *
508  * @param dev
509  *   Pointer to Ethernet device.
510  * @param idx
511  *   Queue index in DPDK Rx queue array
512  *
513  * @return
514  *   The Verbs object if it exists.
515  */
516 struct mlx5_txq_ibv *
517 mlx5_txq_ibv_get(struct rte_eth_dev *dev, uint16_t idx)
518 {
519 	struct priv *priv = dev->data->dev_private;
520 	struct mlx5_txq_ctrl *txq_ctrl;
521 
522 	if (idx >= priv->txqs_n)
523 		return NULL;
524 	if (!(*priv->txqs)[idx])
525 		return NULL;
526 	txq_ctrl = container_of((*priv->txqs)[idx], struct mlx5_txq_ctrl, txq);
527 	if (txq_ctrl->ibv) {
528 		rte_atomic32_inc(&txq_ctrl->ibv->refcnt);
529 		DRV_LOG(DEBUG, "port %u Verbs Tx queue %u: refcnt %d",
530 			dev->data->port_id, txq_ctrl->idx,
531 		      rte_atomic32_read(&txq_ctrl->ibv->refcnt));
532 	}
533 	return txq_ctrl->ibv;
534 }
535 
536 /**
537  * Release an Tx verbs queue object.
538  *
539  * @param txq_ibv
540  *   Verbs Tx queue object.
541  *
542  * @return
543  *   1 while a reference on it exists, 0 when freed.
544  */
545 int
546 mlx5_txq_ibv_release(struct mlx5_txq_ibv *txq_ibv)
547 {
548 	assert(txq_ibv);
549 	DRV_LOG(DEBUG, "port %u Verbs Tx queue %u: refcnt %d",
550 		PORT_ID(txq_ibv->txq_ctrl->priv),
551 		txq_ibv->txq_ctrl->idx, rte_atomic32_read(&txq_ibv->refcnt));
552 	if (rte_atomic32_dec_and_test(&txq_ibv->refcnt)) {
553 		claim_zero(ibv_destroy_qp(txq_ibv->qp));
554 		claim_zero(ibv_destroy_cq(txq_ibv->cq));
555 		LIST_REMOVE(txq_ibv, next);
556 		rte_free(txq_ibv);
557 		return 0;
558 	}
559 	return 1;
560 }
561 
562 /**
563  * Return true if a single reference exists on the object.
564  *
565  * @param txq_ibv
566  *   Verbs Tx queue object.
567  */
568 int
569 mlx5_txq_ibv_releasable(struct mlx5_txq_ibv *txq_ibv)
570 {
571 	assert(txq_ibv);
572 	return (rte_atomic32_read(&txq_ibv->refcnt) == 1);
573 }
574 
575 /**
576  * Verify the Verbs Tx queue list is empty
577  *
578  * @param dev
579  *   Pointer to Ethernet device.
580  *
581  * @return
582  *   The number of object not released.
583  */
584 int
585 mlx5_txq_ibv_verify(struct rte_eth_dev *dev)
586 {
587 	struct priv *priv = dev->data->dev_private;
588 	int ret = 0;
589 	struct mlx5_txq_ibv *txq_ibv;
590 
591 	LIST_FOREACH(txq_ibv, &priv->txqsibv, next) {
592 		DRV_LOG(DEBUG, "port %u Verbs Tx queue %u still referenced",
593 			dev->data->port_id, txq_ibv->txq_ctrl->idx);
594 		++ret;
595 	}
596 	return ret;
597 }
598 
599 /**
600  * Create a DPDK Tx queue.
601  *
602  * @param dev
603  *   Pointer to Ethernet device.
604  * @param idx
605  *   TX queue index.
606  * @param desc
607  *   Number of descriptors to configure in queue.
608  * @param socket
609  *   NUMA socket on which memory must be allocated.
610  * @param[in] conf
611  *  Thresholds parameters.
612  *
613  * @return
614  *   A DPDK queue object on success, NULL otherwise and rte_errno is set.
615  */
616 struct mlx5_txq_ctrl *
617 mlx5_txq_new(struct rte_eth_dev *dev, uint16_t idx, uint16_t desc,
618 	     unsigned int socket, const struct rte_eth_txconf *conf)
619 {
620 	struct priv *priv = dev->data->dev_private;
621 	const unsigned int max_tso_inline =
622 		((MLX5_MAX_TSO_HEADER + (RTE_CACHE_LINE_SIZE - 1)) /
623 		 RTE_CACHE_LINE_SIZE);
624 	struct mlx5_txq_ctrl *tmpl;
625 
626 	tmpl = rte_calloc_socket("TXQ", 1,
627 				 sizeof(*tmpl) +
628 				 desc * sizeof(struct rte_mbuf *),
629 				 0, socket);
630 	if (!tmpl) {
631 		rte_errno = ENOMEM;
632 		return NULL;
633 	}
634 	assert(desc > MLX5_TX_COMP_THRESH);
635 	tmpl->txq.flags = conf->txq_flags;
636 	tmpl->priv = priv;
637 	tmpl->socket = socket;
638 	tmpl->txq.elts_n = log2above(desc);
639 	tmpl->idx = idx;
640 	if (priv->mps == MLX5_MPW_ENHANCED)
641 		tmpl->txq.mpw_hdr_dseg = priv->mpw_hdr_dseg;
642 	/* MRs will be registered in mp2mr[] later. */
643 	DRV_LOG(DEBUG, "port %u priv->device_attr.max_qp_wr is %d",
644 		dev->data->port_id, priv->device_attr.orig_attr.max_qp_wr);
645 	DRV_LOG(DEBUG, "port %u priv->device_attr.max_sge is %d",
646 		dev->data->port_id, priv->device_attr.orig_attr.max_sge);
647 	if (priv->txq_inline && (priv->txqs_n >= priv->txqs_inline)) {
648 		unsigned int ds_cnt;
649 
650 		tmpl->txq.max_inline =
651 			((priv->txq_inline + (RTE_CACHE_LINE_SIZE - 1)) /
652 			 RTE_CACHE_LINE_SIZE);
653 		tmpl->txq.inline_en = 1;
654 		/* TSO and MPS can't be enabled concurrently. */
655 		assert(!priv->tso || !priv->mps);
656 		if (priv->mps == MLX5_MPW_ENHANCED) {
657 			tmpl->txq.inline_max_packet_sz =
658 				priv->inline_max_packet_sz;
659 			/* To minimize the size of data set, avoid requesting
660 			 * too large WQ.
661 			 */
662 			tmpl->max_inline_data =
663 				((RTE_MIN(priv->txq_inline,
664 					  priv->inline_max_packet_sz) +
665 				  (RTE_CACHE_LINE_SIZE - 1)) /
666 				 RTE_CACHE_LINE_SIZE) * RTE_CACHE_LINE_SIZE;
667 		} else {
668 			tmpl->max_inline_data =
669 				tmpl->txq.max_inline * RTE_CACHE_LINE_SIZE;
670 		}
671 		/*
672 		 * Check if the inline size is too large in a way which
673 		 * can make the WQE DS to overflow.
674 		 * Considering in calculation:
675 		 *      WQE CTRL (1 DS)
676 		 *      WQE ETH  (1 DS)
677 		 *      Inline part (N DS)
678 		 */
679 		ds_cnt = 2 + (tmpl->txq.max_inline / MLX5_WQE_DWORD_SIZE);
680 		if (ds_cnt > MLX5_DSEG_MAX) {
681 			unsigned int max_inline = (MLX5_DSEG_MAX - 2) *
682 						  MLX5_WQE_DWORD_SIZE;
683 
684 			max_inline = max_inline - (max_inline %
685 						   RTE_CACHE_LINE_SIZE);
686 			DRV_LOG(WARNING,
687 				"port %u txq inline is too large (%d) setting it"
688 				" to the maximum possible: %d\n",
689 				PORT_ID(priv), priv->txq_inline, max_inline);
690 			tmpl->txq.max_inline = max_inline / RTE_CACHE_LINE_SIZE;
691 		}
692 	}
693 	if (priv->tso) {
694 		tmpl->max_tso_header = max_tso_inline * RTE_CACHE_LINE_SIZE;
695 		tmpl->txq.max_inline = RTE_MAX(tmpl->txq.max_inline,
696 					       max_tso_inline);
697 		tmpl->txq.tso_en = 1;
698 	}
699 	if (priv->tunnel_en)
700 		tmpl->txq.tunnel_en = 1;
701 	tmpl->txq.elts =
702 		(struct rte_mbuf *(*)[1 << tmpl->txq.elts_n])(tmpl + 1);
703 	tmpl->txq.stats.idx = idx;
704 	rte_atomic32_inc(&tmpl->refcnt);
705 	DRV_LOG(DEBUG, "port %u Tx queue %u: refcnt %d", dev->data->port_id,
706 		idx, rte_atomic32_read(&tmpl->refcnt));
707 	LIST_INSERT_HEAD(&priv->txqsctrl, tmpl, next);
708 	return tmpl;
709 }
710 
711 /**
712  * Get a Tx queue.
713  *
714  * @param dev
715  *   Pointer to Ethernet device.
716  * @param idx
717  *   TX queue index.
718  *
719  * @return
720  *   A pointer to the queue if it exists.
721  */
722 struct mlx5_txq_ctrl *
723 mlx5_txq_get(struct rte_eth_dev *dev, uint16_t idx)
724 {
725 	struct priv *priv = dev->data->dev_private;
726 	struct mlx5_txq_ctrl *ctrl = NULL;
727 
728 	if ((*priv->txqs)[idx]) {
729 		ctrl = container_of((*priv->txqs)[idx], struct mlx5_txq_ctrl,
730 				    txq);
731 		unsigned int i;
732 
733 		mlx5_txq_ibv_get(dev, idx);
734 		for (i = 0; i != MLX5_PMD_TX_MP_CACHE; ++i) {
735 			if (ctrl->txq.mp2mr[i])
736 				claim_nonzero
737 					(mlx5_mr_get(dev,
738 						     ctrl->txq.mp2mr[i]->mp));
739 		}
740 		rte_atomic32_inc(&ctrl->refcnt);
741 		DRV_LOG(DEBUG, "port %u Tx queue %u refcnt %d",
742 			dev->data->port_id,
743 			ctrl->idx, rte_atomic32_read(&ctrl->refcnt));
744 	}
745 	return ctrl;
746 }
747 
748 /**
749  * Release a Tx queue.
750  *
751  * @param dev
752  *   Pointer to Ethernet device.
753  * @param idx
754  *   TX queue index.
755  *
756  * @return
757  *   1 while a reference on it exists, 0 when freed.
758  */
759 int
760 mlx5_txq_release(struct rte_eth_dev *dev, uint16_t idx)
761 {
762 	struct priv *priv = dev->data->dev_private;
763 	unsigned int i;
764 	struct mlx5_txq_ctrl *txq;
765 	size_t page_size = sysconf(_SC_PAGESIZE);
766 
767 	if (!(*priv->txqs)[idx])
768 		return 0;
769 	txq = container_of((*priv->txqs)[idx], struct mlx5_txq_ctrl, txq);
770 	DRV_LOG(DEBUG, "port %u Tx queue %u: refcnt %d", dev->data->port_id,
771 		txq->idx, rte_atomic32_read(&txq->refcnt));
772 	if (txq->ibv && !mlx5_txq_ibv_release(txq->ibv))
773 		txq->ibv = NULL;
774 	for (i = 0; i != MLX5_PMD_TX_MP_CACHE; ++i) {
775 		if (txq->txq.mp2mr[i]) {
776 			mlx5_mr_release(txq->txq.mp2mr[i]);
777 			txq->txq.mp2mr[i] = NULL;
778 		}
779 	}
780 	if (priv->uar_base)
781 		munmap((void *)RTE_ALIGN_FLOOR((uintptr_t)txq->txq.bf_reg,
782 		       page_size), page_size);
783 	if (rte_atomic32_dec_and_test(&txq->refcnt)) {
784 		txq_free_elts(txq);
785 		LIST_REMOVE(txq, next);
786 		rte_free(txq);
787 		(*priv->txqs)[idx] = NULL;
788 		return 0;
789 	}
790 	return 1;
791 }
792 
793 /**
794  * Verify if the queue can be released.
795  *
796  * @param dev
797  *   Pointer to Ethernet device.
798  * @param idx
799  *   TX queue index.
800  *
801  * @return
802  *   1 if the queue can be released.
803  */
804 int
805 mlx5_txq_releasable(struct rte_eth_dev *dev, uint16_t idx)
806 {
807 	struct priv *priv = dev->data->dev_private;
808 	struct mlx5_txq_ctrl *txq;
809 
810 	if (!(*priv->txqs)[idx])
811 		return -1;
812 	txq = container_of((*priv->txqs)[idx], struct mlx5_txq_ctrl, txq);
813 	return (rte_atomic32_read(&txq->refcnt) == 1);
814 }
815 
816 /**
817  * Verify the Tx Queue list is empty
818  *
819  * @param dev
820  *   Pointer to Ethernet device.
821  *
822  * @return
823  *   The number of object not released.
824  */
825 int
826 mlx5_txq_verify(struct rte_eth_dev *dev)
827 {
828 	struct priv *priv = dev->data->dev_private;
829 	struct mlx5_txq_ctrl *txq;
830 	int ret = 0;
831 
832 	LIST_FOREACH(txq, &priv->txqsctrl, next) {
833 		DRV_LOG(DEBUG, "port %u Tx queue %u still referenced",
834 			dev->data->port_id, txq->idx);
835 		++ret;
836 	}
837 	return ret;
838 }
839