xref: /dpdk/drivers/compress/mlx5/mlx5_compress.c (revision 5208d68d30cbc36dc453703e58084f33af0320ef)
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright 2021 Mellanox Technologies, Ltd
3  */
4 
5 #include <rte_malloc.h>
6 #include <rte_log.h>
7 #include <rte_errno.h>
8 #include <rte_bus_pci.h>
9 #include <rte_spinlock.h>
10 #include <rte_comp.h>
11 #include <rte_compressdev.h>
12 #include <rte_compressdev_pmd.h>
13 
14 #include <mlx5_glue.h>
15 #include <mlx5_common.h>
16 #include <mlx5_devx_cmds.h>
17 #include <mlx5_common_os.h>
18 #include <mlx5_common_devx.h>
19 #include <mlx5_common_mr.h>
20 #include <mlx5_prm.h>
21 
22 #include "mlx5_compress_utils.h"
23 
24 #define MLX5_COMPRESS_DRIVER_NAME mlx5_compress
25 #define MLX5_COMPRESS_MAX_QPS 1024
26 #define MLX5_COMP_MAX_WIN_SIZE_CONF 6u
27 
28 struct mlx5_compress_xform {
29 	LIST_ENTRY(mlx5_compress_xform) next;
30 	enum rte_comp_xform_type type;
31 	enum rte_comp_checksum_type csum_type;
32 	uint32_t opcode;
33 	uint32_t gga_ctrl1; /* BE. */
34 };
35 
36 struct mlx5_compress_priv {
37 	TAILQ_ENTRY(mlx5_compress_priv) next;
38 	struct rte_compressdev *compressdev;
39 	struct mlx5_common_device *cdev; /* Backend mlx5 device. */
40 	void *uar;
41 	uint8_t min_block_size;
42 	/* Minimum huffman block size supported by the device. */
43 	struct rte_compressdev_config dev_config;
44 	LIST_HEAD(xform_list, mlx5_compress_xform) xform_list;
45 	rte_spinlock_t xform_sl;
46 	volatile uint64_t *uar_addr;
47 	/* HCA caps*/
48 	uint32_t mmo_decomp_sq:1;
49 	uint32_t mmo_decomp_qp:1;
50 	uint32_t mmo_comp_sq:1;
51 	uint32_t mmo_comp_qp:1;
52 	uint32_t mmo_dma_sq:1;
53 	uint32_t mmo_dma_qp:1;
54 #ifndef RTE_ARCH_64
55 	rte_spinlock_t uar32_sl;
56 #endif /* RTE_ARCH_64 */
57 };
58 
59 struct mlx5_compress_qp {
60 	uint16_t qp_id;
61 	uint16_t entries_n;
62 	uint16_t pi;
63 	uint16_t ci;
64 	struct mlx5_mr_ctrl mr_ctrl;
65 	int socket_id;
66 	struct mlx5_devx_cq cq;
67 	struct mlx5_devx_qp qp;
68 	struct mlx5_pmd_mr opaque_mr;
69 	struct rte_comp_op **ops;
70 	struct mlx5_compress_priv *priv;
71 	struct rte_compressdev_stats stats;
72 };
73 
74 TAILQ_HEAD(mlx5_compress_privs, mlx5_compress_priv) mlx5_compress_priv_list =
75 				TAILQ_HEAD_INITIALIZER(mlx5_compress_priv_list);
76 static pthread_mutex_t priv_list_lock = PTHREAD_MUTEX_INITIALIZER;
77 
78 int mlx5_compress_logtype;
79 
80 static const struct rte_compressdev_capabilities mlx5_caps[] = {
81 	{
82 		.algo = RTE_COMP_ALGO_NULL,
83 		.comp_feature_flags = RTE_COMP_FF_ADLER32_CHECKSUM |
84 				      RTE_COMP_FF_CRC32_CHECKSUM |
85 				      RTE_COMP_FF_CRC32_ADLER32_CHECKSUM |
86 				      RTE_COMP_FF_SHAREABLE_PRIV_XFORM,
87 	},
88 	{
89 		.algo = RTE_COMP_ALGO_DEFLATE,
90 		.comp_feature_flags = RTE_COMP_FF_ADLER32_CHECKSUM |
91 				      RTE_COMP_FF_CRC32_CHECKSUM |
92 				      RTE_COMP_FF_CRC32_ADLER32_CHECKSUM |
93 				      RTE_COMP_FF_SHAREABLE_PRIV_XFORM |
94 				      RTE_COMP_FF_HUFFMAN_FIXED |
95 				      RTE_COMP_FF_HUFFMAN_DYNAMIC,
96 		.window_size = {.min = 10, .max = 15, .increment = 1},
97 	},
98 	{
99 		.algo = RTE_COMP_ALGO_LIST_END,
100 	}
101 };
102 
103 static void
104 mlx5_compress_dev_info_get(struct rte_compressdev *dev,
105 			   struct rte_compressdev_info *info)
106 {
107 	RTE_SET_USED(dev);
108 	if (info != NULL) {
109 		info->max_nb_queue_pairs = MLX5_COMPRESS_MAX_QPS;
110 		info->feature_flags = RTE_COMPDEV_FF_HW_ACCELERATED;
111 		info->capabilities = mlx5_caps;
112 	}
113 }
114 
115 static int
116 mlx5_compress_dev_configure(struct rte_compressdev *dev,
117 			    struct rte_compressdev_config *config)
118 {
119 	struct mlx5_compress_priv *priv;
120 
121 	if (dev == NULL || config == NULL)
122 		return -EINVAL;
123 	priv = dev->data->dev_private;
124 	priv->dev_config = *config;
125 	return 0;
126 }
127 
128 static int
129 mlx5_compress_dev_close(struct rte_compressdev *dev)
130 {
131 	RTE_SET_USED(dev);
132 	return 0;
133 }
134 
135 static int
136 mlx5_compress_qp_release(struct rte_compressdev *dev, uint16_t qp_id)
137 {
138 	struct mlx5_compress_qp *qp = dev->data->queue_pairs[qp_id];
139 
140 	if (qp->qp.qp != NULL)
141 		mlx5_devx_qp_destroy(&qp->qp);
142 	if (qp->cq.cq != NULL)
143 		mlx5_devx_cq_destroy(&qp->cq);
144 	if (qp->opaque_mr.obj != NULL) {
145 		void *opaq = qp->opaque_mr.addr;
146 
147 		mlx5_common_verbs_dereg_mr(&qp->opaque_mr);
148 		if (opaq != NULL)
149 			rte_free(opaq);
150 	}
151 	mlx5_mr_btree_free(&qp->mr_ctrl.cache_bh);
152 	rte_free(qp);
153 	dev->data->queue_pairs[qp_id] = NULL;
154 	return 0;
155 }
156 
157 static void
158 mlx5_compress_init_qp(struct mlx5_compress_qp *qp)
159 {
160 	volatile struct mlx5_gga_wqe *restrict wqe =
161 				    (volatile struct mlx5_gga_wqe *)qp->qp.wqes;
162 	volatile struct mlx5_gga_compress_opaque *opaq = qp->opaque_mr.addr;
163 	const uint32_t sq_ds = rte_cpu_to_be_32((qp->qp.qp->id << 8) | 4u);
164 	const uint32_t flags = RTE_BE32(MLX5_COMP_ALWAYS <<
165 					MLX5_COMP_MODE_OFFSET);
166 	const uint32_t opaq_lkey = rte_cpu_to_be_32(qp->opaque_mr.lkey);
167 	int i;
168 
169 	/* All the next fields state should stay constant. */
170 	for (i = 0; i < qp->entries_n; ++i, ++wqe) {
171 		wqe->sq_ds = sq_ds;
172 		wqe->flags = flags;
173 		wqe->opaque_lkey = opaq_lkey;
174 		wqe->opaque_vaddr = rte_cpu_to_be_64
175 						((uint64_t)(uintptr_t)&opaq[i]);
176 	}
177 }
178 
179 static int
180 mlx5_compress_qp_setup(struct rte_compressdev *dev, uint16_t qp_id,
181 		       uint32_t max_inflight_ops, int socket_id)
182 {
183 	struct mlx5_compress_priv *priv = dev->data->dev_private;
184 	struct mlx5_compress_qp *qp;
185 	struct mlx5_devx_cq_attr cq_attr = {
186 		.uar_page_id = mlx5_os_get_devx_uar_page_id(priv->uar),
187 	};
188 	struct mlx5_devx_qp_attr qp_attr = {
189 		.pd = priv->cdev->pdn,
190 		.uar_index = mlx5_os_get_devx_uar_page_id(priv->uar),
191 		.user_index = qp_id,
192 	};
193 	uint32_t log_ops_n = rte_log2_u32(max_inflight_ops);
194 	uint32_t alloc_size = sizeof(*qp);
195 	void *opaq_buf;
196 	int ret;
197 
198 	alloc_size = RTE_ALIGN(alloc_size, RTE_CACHE_LINE_SIZE);
199 	alloc_size += sizeof(struct rte_comp_op *) * (1u << log_ops_n);
200 	qp = rte_zmalloc_socket(__func__, alloc_size, RTE_CACHE_LINE_SIZE,
201 				socket_id);
202 	if (qp == NULL) {
203 		DRV_LOG(ERR, "Failed to allocate qp memory.");
204 		rte_errno = ENOMEM;
205 		return -rte_errno;
206 	}
207 	dev->data->queue_pairs[qp_id] = qp;
208 	if (mlx5_mr_ctrl_init(&qp->mr_ctrl, &priv->cdev->mr_scache.dev_gen,
209 			      priv->dev_config.socket_id)) {
210 		DRV_LOG(ERR, "Cannot allocate MR Btree for qp %u.",
211 			(uint32_t)qp_id);
212 		rte_errno = ENOMEM;
213 		goto err;
214 	}
215 	opaq_buf = rte_calloc(__func__, (size_t)1 << log_ops_n,
216 			      sizeof(struct mlx5_gga_compress_opaque),
217 			      sizeof(struct mlx5_gga_compress_opaque));
218 	if (opaq_buf == NULL) {
219 		DRV_LOG(ERR, "Failed to allocate opaque memory.");
220 		rte_errno = ENOMEM;
221 		goto err;
222 	}
223 	qp->entries_n = 1 << log_ops_n;
224 	qp->socket_id = socket_id;
225 	qp->qp_id = qp_id;
226 	qp->priv = priv;
227 	qp->ops = (struct rte_comp_op **)RTE_ALIGN((uintptr_t)(qp + 1),
228 						   RTE_CACHE_LINE_SIZE);
229 	if (mlx5_common_verbs_reg_mr(priv->cdev->pd, opaq_buf, qp->entries_n *
230 					sizeof(struct mlx5_gga_compress_opaque),
231 							 &qp->opaque_mr) != 0) {
232 		rte_free(opaq_buf);
233 		DRV_LOG(ERR, "Failed to register opaque MR.");
234 		rte_errno = ENOMEM;
235 		goto err;
236 	}
237 	ret = mlx5_devx_cq_create(priv->cdev->ctx, &qp->cq, log_ops_n, &cq_attr,
238 				  socket_id);
239 	if (ret != 0) {
240 		DRV_LOG(ERR, "Failed to create CQ.");
241 		goto err;
242 	}
243 	qp_attr.cqn = qp->cq.cq->id;
244 	qp_attr.ts_format =
245 		mlx5_ts_format_conv(priv->cdev->config.hca_attr.qp_ts_format);
246 	qp_attr.rq_size = 0;
247 	qp_attr.sq_size = RTE_BIT32(log_ops_n);
248 	qp_attr.mmo = priv->mmo_decomp_qp && priv->mmo_comp_qp
249 			&& priv->mmo_dma_qp;
250 	ret = mlx5_devx_qp_create(priv->cdev->ctx, &qp->qp, log_ops_n, &qp_attr,
251 				  socket_id);
252 	if (ret != 0) {
253 		DRV_LOG(ERR, "Failed to create QP.");
254 		goto err;
255 	}
256 	mlx5_compress_init_qp(qp);
257 	ret = mlx5_devx_qp2rts(&qp->qp, 0);
258 	if (ret)
259 		goto err;
260 	DRV_LOG(INFO, "QP %u: SQN=0x%X CQN=0x%X entries num = %u",
261 		(uint32_t)qp_id, qp->qp.qp->id, qp->cq.cq->id, qp->entries_n);
262 	return 0;
263 err:
264 	mlx5_compress_qp_release(dev, qp_id);
265 	return -1;
266 }
267 
268 static int
269 mlx5_compress_xform_free(struct rte_compressdev *dev, void *xform)
270 {
271 	struct mlx5_compress_priv *priv = dev->data->dev_private;
272 
273 	rte_spinlock_lock(&priv->xform_sl);
274 	LIST_REMOVE((struct mlx5_compress_xform *)xform, next);
275 	rte_spinlock_unlock(&priv->xform_sl);
276 	rte_free(xform);
277 	return 0;
278 }
279 
280 static int
281 mlx5_compress_xform_create(struct rte_compressdev *dev,
282 			   const struct rte_comp_xform *xform,
283 			   void **private_xform)
284 {
285 	struct mlx5_compress_priv *priv = dev->data->dev_private;
286 	struct mlx5_compress_xform *xfrm;
287 	uint32_t size;
288 
289 	if (xform->type == RTE_COMP_COMPRESS && xform->compress.level ==
290 							  RTE_COMP_LEVEL_NONE) {
291 		DRV_LOG(ERR, "Non-compressed block is not supported.");
292 		return -ENOTSUP;
293 	}
294 	if ((xform->type == RTE_COMP_COMPRESS && xform->compress.hash_algo !=
295 	     RTE_COMP_HASH_ALGO_NONE) || (xform->type == RTE_COMP_DECOMPRESS &&
296 		      xform->decompress.hash_algo != RTE_COMP_HASH_ALGO_NONE)) {
297 		DRV_LOG(ERR, "SHA is not supported.");
298 		return -ENOTSUP;
299 	}
300 	xfrm = rte_zmalloc_socket(__func__, sizeof(*xfrm), 0,
301 						    priv->dev_config.socket_id);
302 	if (xfrm == NULL)
303 		return -ENOMEM;
304 	xfrm->opcode = MLX5_OPCODE_MMO;
305 	xfrm->type = xform->type;
306 	switch (xform->type) {
307 	case RTE_COMP_COMPRESS:
308 		switch (xform->compress.algo) {
309 		case RTE_COMP_ALGO_NULL:
310 			xfrm->opcode += MLX5_OPC_MOD_MMO_DMA <<
311 							WQE_CSEG_OPC_MOD_OFFSET;
312 			break;
313 		case RTE_COMP_ALGO_DEFLATE:
314 			size = 1 << xform->compress.window_size;
315 			size /= MLX5_GGA_COMP_WIN_SIZE_UNITS;
316 			xfrm->gga_ctrl1 += RTE_MIN(rte_log2_u32(size),
317 					 MLX5_COMP_MAX_WIN_SIZE_CONF) <<
318 						WQE_GGA_COMP_WIN_SIZE_OFFSET;
319 			switch (xform->compress.level) {
320 			case RTE_COMP_LEVEL_PMD_DEFAULT:
321 				size = MLX5_GGA_COMP_LOG_BLOCK_SIZE_MAX;
322 				break;
323 			case RTE_COMP_LEVEL_MAX:
324 				size = priv->min_block_size;
325 				break;
326 			default:
327 				size = RTE_MAX(MLX5_GGA_COMP_LOG_BLOCK_SIZE_MAX
328 					+ 1 - xform->compress.level,
329 					priv->min_block_size);
330 			}
331 			xfrm->gga_ctrl1 += RTE_MIN(size,
332 					    MLX5_GGA_COMP_LOG_BLOCK_SIZE_MAX) <<
333 						 WQE_GGA_COMP_BLOCK_SIZE_OFFSET;
334 			xfrm->opcode += MLX5_OPC_MOD_MMO_COMP <<
335 							WQE_CSEG_OPC_MOD_OFFSET;
336 			size = xform->compress.deflate.huffman ==
337 						      RTE_COMP_HUFFMAN_DYNAMIC ?
338 					    MLX5_GGA_COMP_LOG_DYNAMIC_SIZE_MAX :
339 					     MLX5_GGA_COMP_LOG_DYNAMIC_SIZE_MIN;
340 			xfrm->gga_ctrl1 += size <<
341 					       WQE_GGA_COMP_DYNAMIC_SIZE_OFFSET;
342 			break;
343 		default:
344 			goto err;
345 		}
346 		xfrm->csum_type = xform->compress.chksum;
347 		break;
348 	case RTE_COMP_DECOMPRESS:
349 		switch (xform->decompress.algo) {
350 		case RTE_COMP_ALGO_NULL:
351 			xfrm->opcode += MLX5_OPC_MOD_MMO_DMA <<
352 							WQE_CSEG_OPC_MOD_OFFSET;
353 			break;
354 		case RTE_COMP_ALGO_DEFLATE:
355 			xfrm->opcode += MLX5_OPC_MOD_MMO_DECOMP <<
356 							WQE_CSEG_OPC_MOD_OFFSET;
357 			break;
358 		default:
359 			goto err;
360 		}
361 		xfrm->csum_type = xform->decompress.chksum;
362 		break;
363 	default:
364 		DRV_LOG(ERR, "Algorithm %u is not supported.", xform->type);
365 		goto err;
366 	}
367 	DRV_LOG(DEBUG, "New xform: gga ctrl1 = 0x%08X opcode = 0x%08X csum "
368 		"type = %d.", xfrm->gga_ctrl1, xfrm->opcode, xfrm->csum_type);
369 	xfrm->gga_ctrl1 = rte_cpu_to_be_32(xfrm->gga_ctrl1);
370 	rte_spinlock_lock(&priv->xform_sl);
371 	LIST_INSERT_HEAD(&priv->xform_list, xfrm, next);
372 	rte_spinlock_unlock(&priv->xform_sl);
373 	*private_xform = xfrm;
374 	return 0;
375 err:
376 	rte_free(xfrm);
377 	return -ENOTSUP;
378 }
379 
380 static void
381 mlx5_compress_dev_stop(struct rte_compressdev *dev)
382 {
383 	RTE_SET_USED(dev);
384 }
385 
386 static int
387 mlx5_compress_dev_start(struct rte_compressdev *dev)
388 {
389 	struct mlx5_compress_priv *priv = dev->data->dev_private;
390 
391 	return mlx5_dev_mempool_subscribe(priv->cdev);
392 }
393 
394 static void
395 mlx5_compress_stats_get(struct rte_compressdev *dev,
396 		struct rte_compressdev_stats *stats)
397 {
398 	int qp_id;
399 
400 	for (qp_id = 0; qp_id < dev->data->nb_queue_pairs; qp_id++) {
401 		struct mlx5_compress_qp *qp = dev->data->queue_pairs[qp_id];
402 
403 		stats->enqueued_count += qp->stats.enqueued_count;
404 		stats->dequeued_count += qp->stats.dequeued_count;
405 		stats->enqueue_err_count += qp->stats.enqueue_err_count;
406 		stats->dequeue_err_count += qp->stats.dequeue_err_count;
407 	}
408 }
409 
410 static void
411 mlx5_compress_stats_reset(struct rte_compressdev *dev)
412 {
413 	int qp_id;
414 
415 	for (qp_id = 0; qp_id < dev->data->nb_queue_pairs; qp_id++) {
416 		struct mlx5_compress_qp *qp = dev->data->queue_pairs[qp_id];
417 
418 		memset(&qp->stats, 0, sizeof(qp->stats));
419 	}
420 }
421 
422 static struct rte_compressdev_ops mlx5_compress_ops = {
423 	.dev_configure		= mlx5_compress_dev_configure,
424 	.dev_start		= mlx5_compress_dev_start,
425 	.dev_stop		= mlx5_compress_dev_stop,
426 	.dev_close		= mlx5_compress_dev_close,
427 	.dev_infos_get		= mlx5_compress_dev_info_get,
428 	.stats_get		= mlx5_compress_stats_get,
429 	.stats_reset		= mlx5_compress_stats_reset,
430 	.queue_pair_setup	= mlx5_compress_qp_setup,
431 	.queue_pair_release	= mlx5_compress_qp_release,
432 	.private_xform_create	= mlx5_compress_xform_create,
433 	.private_xform_free	= mlx5_compress_xform_free,
434 	.stream_create		= NULL,
435 	.stream_free		= NULL,
436 };
437 
438 static __rte_always_inline uint32_t
439 mlx5_compress_dseg_set(struct mlx5_compress_qp *qp,
440 		       volatile struct mlx5_wqe_dseg *restrict dseg,
441 		       struct rte_mbuf *restrict mbuf,
442 		       uint32_t offset, uint32_t len)
443 {
444 	uintptr_t addr = rte_pktmbuf_mtod_offset(mbuf, uintptr_t, offset);
445 
446 	dseg->bcount = rte_cpu_to_be_32(len);
447 	dseg->lkey = mlx5_mr_mb2mr(qp->priv->cdev, 0, &qp->mr_ctrl, mbuf);
448 	dseg->pbuf = rte_cpu_to_be_64(addr);
449 	return dseg->lkey;
450 }
451 
452 /*
453  * Provide safe 64bit store operation to mlx5 UAR region for both 32bit and
454  * 64bit architectures.
455  */
456 static __rte_always_inline void
457 mlx5_compress_uar_write(uint64_t val, struct mlx5_compress_priv *priv)
458 {
459 #ifdef RTE_ARCH_64
460 	*priv->uar_addr = val;
461 #else /* !RTE_ARCH_64 */
462 	rte_spinlock_lock(&priv->uar32_sl);
463 	*(volatile uint32_t *)priv->uar_addr = val;
464 	rte_io_wmb();
465 	*((volatile uint32_t *)priv->uar_addr + 1) = val >> 32;
466 	rte_spinlock_unlock(&priv->uar32_sl);
467 #endif
468 }
469 
470 static uint16_t
471 mlx5_compress_enqueue_burst(void *queue_pair, struct rte_comp_op **ops,
472 			    uint16_t nb_ops)
473 {
474 	struct mlx5_compress_qp *qp = queue_pair;
475 	volatile struct mlx5_gga_wqe *wqes = (volatile struct mlx5_gga_wqe *)
476 							      qp->qp.wqes, *wqe;
477 	struct mlx5_compress_xform *xform;
478 	struct rte_comp_op *op;
479 	uint16_t mask = qp->entries_n - 1;
480 	uint16_t remain = qp->entries_n - (qp->pi - qp->ci);
481 	uint16_t idx;
482 	bool invalid;
483 
484 	if (remain < nb_ops)
485 		nb_ops = remain;
486 	else
487 		remain = nb_ops;
488 	if (unlikely(remain == 0))
489 		return 0;
490 	do {
491 		idx = qp->pi & mask;
492 		wqe = &wqes[idx];
493 		rte_prefetch0(&wqes[(qp->pi + 1) & mask]);
494 		op = *ops++;
495 		xform = op->private_xform;
496 		/*
497 		 * Check operation arguments and error cases:
498 		 *   - Operation type must be state-less.
499 		 *   - Compress operation flush flag must be FULL or FINAL.
500 		 *   - Source and destination buffers must be mapped internally.
501 		 */
502 		invalid = op->op_type != RTE_COMP_OP_STATELESS ||
503 					    (xform->type == RTE_COMP_COMPRESS &&
504 					  op->flush_flag < RTE_COMP_FLUSH_FULL);
505 		if (unlikely(invalid ||
506 			     (mlx5_compress_dseg_set(qp, &wqe->gather,
507 						     op->m_src,
508 						     op->src.offset,
509 						     op->src.length) ==
510 								  UINT32_MAX) ||
511 			     (mlx5_compress_dseg_set(qp, &wqe->scatter,
512 						op->m_dst,
513 						op->dst.offset,
514 						rte_pktmbuf_pkt_len(op->m_dst) -
515 							      op->dst.offset) ==
516 								 UINT32_MAX))) {
517 			op->status = invalid ? RTE_COMP_OP_STATUS_INVALID_ARGS :
518 						       RTE_COMP_OP_STATUS_ERROR;
519 			nb_ops -= remain;
520 			if (unlikely(nb_ops == 0))
521 				return 0;
522 			break;
523 		}
524 		wqe->gga_ctrl1 = xform->gga_ctrl1;
525 		wqe->opcode = rte_cpu_to_be_32(xform->opcode + (qp->pi << 8));
526 		qp->ops[idx] = op;
527 		qp->pi++;
528 	} while (--remain);
529 	qp->stats.enqueued_count += nb_ops;
530 	rte_io_wmb();
531 	qp->qp.db_rec[MLX5_SND_DBR] = rte_cpu_to_be_32(qp->pi);
532 	rte_wmb();
533 	mlx5_compress_uar_write(*(volatile uint64_t *)wqe, qp->priv);
534 	rte_wmb();
535 	return nb_ops;
536 }
537 
538 static void
539 mlx5_compress_dump_err_objs(volatile uint32_t *cqe, volatile uint32_t *wqe,
540 			     volatile uint32_t *opaq)
541 {
542 	size_t i;
543 
544 	DRV_LOG(ERR, "Error cqe:");
545 	for (i = 0; i < sizeof(struct mlx5_err_cqe) >> 2; i += 4)
546 		DRV_LOG(ERR, "%08X %08X %08X %08X", cqe[i], cqe[i + 1],
547 			cqe[i + 2], cqe[i + 3]);
548 	DRV_LOG(ERR, "\nError wqe:");
549 	for (i = 0; i < sizeof(struct mlx5_gga_wqe) >> 2; i += 4)
550 		DRV_LOG(ERR, "%08X %08X %08X %08X", wqe[i], wqe[i + 1],
551 			wqe[i + 2], wqe[i + 3]);
552 	DRV_LOG(ERR, "\nError opaq:");
553 	for (i = 0; i < sizeof(struct mlx5_gga_compress_opaque) >> 2; i += 4)
554 		DRV_LOG(ERR, "%08X %08X %08X %08X", opaq[i], opaq[i + 1],
555 			opaq[i + 2], opaq[i + 3]);
556 }
557 
558 static void
559 mlx5_compress_cqe_err_handle(struct mlx5_compress_qp *qp,
560 			     struct rte_comp_op *op)
561 {
562 	const uint32_t idx = qp->ci & (qp->entries_n - 1);
563 	volatile struct mlx5_err_cqe *cqe = (volatile struct mlx5_err_cqe *)
564 							      &qp->cq.cqes[idx];
565 	volatile struct mlx5_gga_wqe *wqes = (volatile struct mlx5_gga_wqe *)
566 								    qp->qp.wqes;
567 	volatile struct mlx5_gga_compress_opaque *opaq = qp->opaque_mr.addr;
568 
569 	op->status = RTE_COMP_OP_STATUS_ERROR;
570 	op->consumed = 0;
571 	op->produced = 0;
572 	op->output_chksum = 0;
573 	op->debug_status = rte_be_to_cpu_32(opaq[idx].syndrom) |
574 			      ((uint64_t)rte_be_to_cpu_32(cqe->syndrome) << 32);
575 	mlx5_compress_dump_err_objs((volatile uint32_t *)cqe,
576 				 (volatile uint32_t *)&wqes[idx],
577 				 (volatile uint32_t *)&opaq[idx]);
578 	qp->stats.dequeue_err_count++;
579 }
580 
581 static uint16_t
582 mlx5_compress_dequeue_burst(void *queue_pair, struct rte_comp_op **ops,
583 			    uint16_t nb_ops)
584 {
585 	struct mlx5_compress_qp *qp = queue_pair;
586 	volatile struct mlx5_compress_xform *restrict xform;
587 	volatile struct mlx5_cqe *restrict cqe;
588 	volatile struct mlx5_gga_compress_opaque *opaq = qp->opaque_mr.addr;
589 	struct rte_comp_op *restrict op;
590 	const unsigned int cq_size = qp->entries_n;
591 	const unsigned int mask = cq_size - 1;
592 	uint32_t idx;
593 	uint32_t next_idx = qp->ci & mask;
594 	const uint16_t max = RTE_MIN((uint16_t)(qp->pi - qp->ci), nb_ops);
595 	uint16_t i = 0;
596 	int ret;
597 
598 	if (unlikely(max == 0))
599 		return 0;
600 	do {
601 		idx = next_idx;
602 		next_idx = (qp->ci + 1) & mask;
603 		rte_prefetch0(&qp->cq.cqes[next_idx]);
604 		rte_prefetch0(qp->ops[next_idx]);
605 		op = qp->ops[idx];
606 		cqe = &qp->cq.cqes[idx];
607 		ret = check_cqe(cqe, cq_size, qp->ci);
608 		/*
609 		 * Be sure owner read is done before any other cookie field or
610 		 * opaque field.
611 		 */
612 		rte_io_rmb();
613 		if (unlikely(ret != MLX5_CQE_STATUS_SW_OWN)) {
614 			if (likely(ret == MLX5_CQE_STATUS_HW_OWN))
615 				break;
616 			mlx5_compress_cqe_err_handle(qp, op);
617 		} else {
618 			xform = op->private_xform;
619 			op->status = RTE_COMP_OP_STATUS_SUCCESS;
620 			op->consumed = op->src.length;
621 			op->produced = rte_be_to_cpu_32(cqe->byte_cnt);
622 			MLX5_ASSERT(cqe->byte_cnt ==
623 				    opaq[idx].scattered_length);
624 			switch (xform->csum_type) {
625 			case RTE_COMP_CHECKSUM_CRC32:
626 				op->output_chksum = (uint64_t)rte_be_to_cpu_32
627 						    (opaq[idx].crc32);
628 				break;
629 			case RTE_COMP_CHECKSUM_ADLER32:
630 				op->output_chksum = (uint64_t)rte_be_to_cpu_32
631 					    (opaq[idx].adler32) << 32;
632 				break;
633 			case RTE_COMP_CHECKSUM_CRC32_ADLER32:
634 				op->output_chksum = (uint64_t)rte_be_to_cpu_32
635 							     (opaq[idx].crc32) |
636 						     ((uint64_t)rte_be_to_cpu_32
637 						     (opaq[idx].adler32) << 32);
638 				break;
639 			default:
640 				break;
641 			}
642 		}
643 		ops[i++] = op;
644 		qp->ci++;
645 	} while (i < max);
646 	if (likely(i != 0)) {
647 		rte_io_wmb();
648 		qp->cq.db_rec[0] = rte_cpu_to_be_32(qp->ci);
649 		qp->stats.dequeued_count += i;
650 	}
651 	return i;
652 }
653 
654 static void
655 mlx5_compress_uar_release(struct mlx5_compress_priv *priv)
656 {
657 	if (priv->uar != NULL) {
658 		mlx5_glue->devx_free_uar(priv->uar);
659 		priv->uar = NULL;
660 	}
661 }
662 
663 static int
664 mlx5_compress_uar_prepare(struct mlx5_compress_priv *priv)
665 {
666 	priv->uar = mlx5_devx_alloc_uar(priv->cdev->ctx, -1);
667 	if (priv->uar == NULL || mlx5_os_get_devx_uar_reg_addr(priv->uar) ==
668 	    NULL) {
669 		rte_errno = errno;
670 		DRV_LOG(ERR, "Failed to allocate UAR.");
671 		return -1;
672 	}
673 	priv->uar_addr = mlx5_os_get_devx_uar_reg_addr(priv->uar);
674 	MLX5_ASSERT(priv->uar_addr);
675 #ifndef RTE_ARCH_64
676 	rte_spinlock_init(&priv->uar32_sl);
677 #endif /* RTE_ARCH_64 */
678 	return 0;
679 }
680 
681 static int
682 mlx5_compress_dev_probe(struct mlx5_common_device *cdev)
683 {
684 	struct rte_compressdev *compressdev;
685 	struct mlx5_compress_priv *priv;
686 	struct mlx5_hca_attr *attr = &cdev->config.hca_attr;
687 	struct rte_compressdev_pmd_init_params init_params = {
688 		.name = "",
689 		.socket_id = cdev->dev->numa_node,
690 	};
691 	const char *ibdev_name = mlx5_os_get_ctx_device_name(cdev->ctx);
692 
693 	if (rte_eal_process_type() != RTE_PROC_PRIMARY) {
694 		DRV_LOG(ERR, "Non-primary process type is not supported.");
695 		rte_errno = ENOTSUP;
696 		return -rte_errno;
697 	}
698 	if ((attr->mmo_compress_sq_en == 0 || attr->mmo_decompress_sq_en == 0 ||
699 	    attr->mmo_dma_sq_en == 0) && (attr->mmo_compress_qp_en == 0 ||
700 	    attr->mmo_decompress_qp_en == 0 || attr->mmo_dma_qp_en == 0)) {
701 		DRV_LOG(ERR, "Not enough capabilities to support compress "
702 			"operations, maybe old FW/OFED version?");
703 		rte_errno = ENOTSUP;
704 		return -ENOTSUP;
705 	}
706 	compressdev = rte_compressdev_pmd_create(ibdev_name, cdev->dev,
707 						 sizeof(*priv), &init_params);
708 	if (compressdev == NULL) {
709 		DRV_LOG(ERR, "Failed to create device \"%s\".", ibdev_name);
710 		return -ENODEV;
711 	}
712 	DRV_LOG(INFO,
713 		"Compress device %s was created successfully.", ibdev_name);
714 	compressdev->dev_ops = &mlx5_compress_ops;
715 	compressdev->dequeue_burst = mlx5_compress_dequeue_burst;
716 	compressdev->enqueue_burst = mlx5_compress_enqueue_burst;
717 	compressdev->feature_flags = RTE_COMPDEV_FF_HW_ACCELERATED;
718 	priv = compressdev->data->dev_private;
719 	priv->mmo_decomp_sq = attr->mmo_decompress_sq_en;
720 	priv->mmo_decomp_qp = attr->mmo_decompress_qp_en;
721 	priv->mmo_comp_sq = attr->mmo_compress_sq_en;
722 	priv->mmo_comp_qp = attr->mmo_compress_qp_en;
723 	priv->mmo_dma_sq = attr->mmo_dma_sq_en;
724 	priv->mmo_dma_qp = attr->mmo_dma_qp_en;
725 	priv->cdev = cdev;
726 	priv->compressdev = compressdev;
727 	priv->min_block_size = attr->compress_min_block_size;
728 	if (mlx5_compress_uar_prepare(priv) != 0) {
729 		rte_compressdev_pmd_destroy(priv->compressdev);
730 		return -1;
731 	}
732 	pthread_mutex_lock(&priv_list_lock);
733 	TAILQ_INSERT_TAIL(&mlx5_compress_priv_list, priv, next);
734 	pthread_mutex_unlock(&priv_list_lock);
735 	return 0;
736 }
737 
738 static int
739 mlx5_compress_dev_remove(struct mlx5_common_device *cdev)
740 {
741 	struct mlx5_compress_priv *priv = NULL;
742 
743 	pthread_mutex_lock(&priv_list_lock);
744 	TAILQ_FOREACH(priv, &mlx5_compress_priv_list, next)
745 		if (priv->compressdev->device == cdev->dev)
746 			break;
747 	if (priv)
748 		TAILQ_REMOVE(&mlx5_compress_priv_list, priv, next);
749 	pthread_mutex_unlock(&priv_list_lock);
750 	if (priv) {
751 		mlx5_compress_uar_release(priv);
752 		rte_compressdev_pmd_destroy(priv->compressdev);
753 	}
754 	return 0;
755 }
756 
757 static const struct rte_pci_id mlx5_compress_pci_id_map[] = {
758 	{
759 		RTE_PCI_DEVICE(PCI_VENDOR_ID_MELLANOX,
760 				PCI_DEVICE_ID_MELLANOX_CONNECTX6DXBF)
761 	},
762 	{
763 		.vendor_id = 0
764 	}
765 };
766 
767 static struct mlx5_class_driver mlx5_compress_driver = {
768 	.drv_class = MLX5_CLASS_COMPRESS,
769 	.name = RTE_STR(MLX5_COMPRESS_DRIVER_NAME),
770 	.id_table = mlx5_compress_pci_id_map,
771 	.probe = mlx5_compress_dev_probe,
772 	.remove = mlx5_compress_dev_remove,
773 };
774 
775 RTE_INIT(rte_mlx5_compress_init)
776 {
777 	mlx5_common_init();
778 	if (mlx5_glue != NULL)
779 		mlx5_class_driver_register(&mlx5_compress_driver);
780 }
781 
782 RTE_LOG_REGISTER_DEFAULT(mlx5_compress_logtype, NOTICE)
783 RTE_PMD_EXPORT_NAME(MLX5_COMPRESS_DRIVER_NAME, __COUNTER__);
784 RTE_PMD_REGISTER_PCI_TABLE(MLX5_COMPRESS_DRIVER_NAME, mlx5_compress_pci_id_map);
785 RTE_PMD_REGISTER_KMOD_DEP(MLX5_COMPRESS_DRIVER_NAME, "* ib_uverbs & mlx5_core & mlx5_ib");
786