regex/mlx5: support timestamp format
[dpdk.git] / drivers / regex / mlx5 / mlx5_regex.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright 2020 Mellanox Technologies, Ltd
3  */
4
5 #include <rte_malloc.h>
6 #include <rte_log.h>
7 #include <rte_errno.h>
8 #include <rte_pci.h>
9 #include <rte_regexdev.h>
10 #include <rte_regexdev_core.h>
11 #include <rte_regexdev_driver.h>
12
13 #include <mlx5_common_pci.h>
14 #include <mlx5_glue.h>
15 #include <mlx5_devx_cmds.h>
16 #include <mlx5_prm.h>
17
18 #include "mlx5_regex.h"
19 #include "mlx5_regex_utils.h"
20 #include "mlx5_rxp_csrs.h"
21
22 #define MLX5_REGEX_DRIVER_NAME regex_mlx5
23 #define MLX5_REGEX_LOG_NAME    pmd.regex.mlx5
24
25 int mlx5_regex_logtype;
26
27 const struct rte_regexdev_ops mlx5_regexdev_ops = {
28         .dev_info_get = mlx5_regex_info_get,
29         .dev_configure = mlx5_regex_configure,
30         .dev_db_import = mlx5_regex_rules_db_import,
31         .dev_qp_setup = mlx5_regex_qp_setup,
32         .dev_start = mlx5_regex_start,
33         .dev_stop = mlx5_regex_stop,
34         .dev_close = mlx5_regex_close,
35 };
36
37 int
38 mlx5_regex_start(struct rte_regexdev *dev __rte_unused)
39 {
40         return 0;
41 }
42
43 int
44 mlx5_regex_stop(struct rte_regexdev *dev __rte_unused)
45 {
46         return 0;
47 }
48
49 int
50 mlx5_regex_close(struct rte_regexdev *dev __rte_unused)
51 {
52         return 0;
53 }
54
55 static struct ibv_device *
56 mlx5_regex_get_ib_device_match(struct rte_pci_addr *addr)
57 {
58         int n;
59         struct ibv_device **ibv_list = mlx5_glue->get_device_list(&n);
60         struct ibv_device *ibv_match = NULL;
61
62         if (!ibv_list) {
63                 rte_errno = ENOSYS;
64                 return NULL;
65         }
66         while (n-- > 0) {
67                 struct rte_pci_addr pci_addr;
68
69                 DRV_LOG(DEBUG, "Checking device \"%s\"..", ibv_list[n]->name);
70                 if (mlx5_dev_to_pci_addr(ibv_list[n]->ibdev_path, &pci_addr))
71                         continue;
72                 if (rte_pci_addr_cmp(addr, &pci_addr))
73                         continue;
74                 ibv_match = ibv_list[n];
75                 break;
76         }
77         if (!ibv_match)
78                 rte_errno = ENOENT;
79         mlx5_glue->free_device_list(ibv_list);
80         return ibv_match;
81 }
82 static int
83 mlx5_regex_engines_status(struct ibv_context *ctx, int num_engines)
84 {
85         uint32_t fpga_ident = 0;
86         int err;
87         int i;
88
89         for (i = 0; i < num_engines; i++) {
90                 err = mlx5_devx_regex_register_read(ctx, i,
91                                                     MLX5_RXP_CSR_IDENTIFIER,
92                                                     &fpga_ident);
93                 fpga_ident = (fpga_ident & (0x0000FFFF));
94                 if (err || fpga_ident != MLX5_RXP_IDENTIFIER) {
95                         DRV_LOG(ERR, "Failed setup RXP %d err %d database "
96                                 "memory 0x%x", i, err, fpga_ident);
97                         if (!err)
98                                 err = EINVAL;
99                         return err;
100                 }
101         }
102         return 0;
103 }
104
105 static void
106 mlx5_regex_get_name(char *name, struct rte_pci_device *pci_dev __rte_unused)
107 {
108         sprintf(name, "mlx5_regex_%02x:%02x.%02x", pci_dev->addr.bus,
109                 pci_dev->addr.devid, pci_dev->addr.function);
110 }
111
112 static int
113 mlx5_regex_pci_probe(struct rte_pci_driver *pci_drv __rte_unused,
114                      struct rte_pci_device *pci_dev)
115 {
116         struct ibv_device *ibv;
117         struct mlx5_regex_priv *priv = NULL;
118         struct ibv_context *ctx = NULL;
119         struct mlx5_hca_attr attr;
120         char name[RTE_REGEXDEV_NAME_MAX_LEN];
121         int ret;
122         uint32_t val;
123
124         ibv = mlx5_regex_get_ib_device_match(&pci_dev->addr);
125         if (!ibv) {
126                 DRV_LOG(ERR, "No matching IB device for PCI slot "
127                         PCI_PRI_FMT ".", pci_dev->addr.domain,
128                         pci_dev->addr.bus, pci_dev->addr.devid,
129                         pci_dev->addr.function);
130                 return -rte_errno;
131         }
132         DRV_LOG(INFO, "PCI information matches for device \"%s\".",
133                 ibv->name);
134         ctx = mlx5_glue->dv_open_device(ibv);
135         if (!ctx) {
136                 DRV_LOG(ERR, "Failed to open IB device \"%s\".", ibv->name);
137                 rte_errno = ENODEV;
138                 return -rte_errno;
139         }
140         ret = mlx5_devx_cmd_query_hca_attr(ctx, &attr);
141         if (ret) {
142                 DRV_LOG(ERR, "Unable to read HCA capabilities.");
143                 rte_errno = ENOTSUP;
144                 goto dev_error;
145         } else if (!attr.regex || attr.regexp_num_of_engines == 0) {
146                 DRV_LOG(ERR, "Not enough capabilities to support RegEx, maybe "
147                         "old FW/OFED version?");
148                 rte_errno = ENOTSUP;
149                 goto dev_error;
150         }
151         if (mlx5_regex_engines_status(ctx, 2)) {
152                 DRV_LOG(ERR, "RegEx engine error.");
153                 rte_errno = ENOMEM;
154                 goto dev_error;
155         }
156         priv = rte_zmalloc("mlx5 regex device private", sizeof(*priv),
157                            RTE_CACHE_LINE_SIZE);
158         if (!priv) {
159                 DRV_LOG(ERR, "Failed to allocate private memory.");
160                 rte_errno = ENOMEM;
161                 goto dev_error;
162         }
163         priv->sq_ts_format = attr.sq_ts_format;
164         priv->ctx = ctx;
165         priv->nb_engines = 2; /* attr.regexp_num_of_engines */
166         ret = mlx5_devx_regex_register_read(priv->ctx, 0,
167                                             MLX5_RXP_CSR_IDENTIFIER, &val);
168         if (ret) {
169                 DRV_LOG(ERR, "CSR read failed!");
170                 return -1;
171         }
172         if (val == MLX5_RXP_BF2_IDENTIFIER)
173                 priv->is_bf2 = 1;
174         /* Default RXP programming mode to Shared. */
175         priv->prog_mode = MLX5_RXP_SHARED_PROG_MODE;
176         mlx5_regex_get_name(name, pci_dev);
177         priv->regexdev = rte_regexdev_register(name);
178         if (priv->regexdev == NULL) {
179                 DRV_LOG(ERR, "Failed to register RegEx device.");
180                 rte_errno = rte_errno ? rte_errno : EINVAL;
181                 goto error;
182         }
183         /*
184          * This PMD always claims the write memory barrier on UAR
185          * registers writings, it is safe to allocate UAR with any
186          * memory mapping type.
187          */
188         priv->uar = mlx5_devx_alloc_uar(ctx, -1);
189         if (!priv->uar) {
190                 DRV_LOG(ERR, "can't allocate uar.");
191                 rte_errno = ENOMEM;
192                 goto error;
193         }
194         priv->pd = mlx5_glue->alloc_pd(ctx);
195         if (!priv->pd) {
196                 DRV_LOG(ERR, "can't allocate pd.");
197                 rte_errno = ENOMEM;
198                 goto error;
199         }
200         priv->regexdev->dev_ops = &mlx5_regexdev_ops;
201         priv->regexdev->enqueue = mlx5_regexdev_enqueue;
202         priv->regexdev->dequeue = mlx5_regexdev_dequeue;
203         priv->regexdev->device = (struct rte_device *)pci_dev;
204         priv->regexdev->data->dev_private = priv;
205         priv->regexdev->state = RTE_REGEXDEV_READY;
206         priv->mr_scache.reg_mr_cb = mlx5_common_verbs_reg_mr;
207         priv->mr_scache.dereg_mr_cb = mlx5_common_verbs_dereg_mr;
208         ret = mlx5_mr_btree_init(&priv->mr_scache.cache,
209                                  MLX5_MR_BTREE_CACHE_N * 2,
210                                  rte_socket_id());
211         if (ret) {
212                 DRV_LOG(ERR, "MR init tree failed.");
213             rte_errno = ENOMEM;
214                 goto error;
215         }
216         return 0;
217
218 error:
219         if (priv->pd)
220                 mlx5_glue->dealloc_pd(priv->pd);
221         if (priv->uar)
222                 mlx5_glue->devx_free_uar(priv->uar);
223         if (priv->regexdev)
224                 rte_regexdev_unregister(priv->regexdev);
225 dev_error:
226         if (ctx)
227                 mlx5_glue->close_device(ctx);
228         if (priv)
229                 rte_free(priv);
230         return -rte_errno;
231 }
232
233 static int
234 mlx5_regex_pci_remove(struct rte_pci_device *pci_dev)
235 {
236         char name[RTE_REGEXDEV_NAME_MAX_LEN];
237         struct rte_regexdev *dev;
238         struct mlx5_regex_priv *priv = NULL;
239
240         mlx5_regex_get_name(name, pci_dev);
241         dev = rte_regexdev_get_device_by_name(name);
242         if (!dev)
243                 return 0;
244         priv = dev->data->dev_private;
245         if (priv) {
246                 if (priv->pd)
247                         mlx5_glue->dealloc_pd(priv->pd);
248                 if (priv->uar)
249                         mlx5_glue->devx_free_uar(priv->uar);
250                 if (priv->regexdev)
251                         rte_regexdev_unregister(priv->regexdev);
252                 if (priv->ctx)
253                         mlx5_glue->close_device(priv->ctx);
254                 if (priv->regexdev)
255                         rte_regexdev_unregister(priv->regexdev);
256                 rte_free(priv);
257         }
258         return 0;
259 }
260
261 static const struct rte_pci_id mlx5_regex_pci_id_map[] = {
262         {
263                 RTE_PCI_DEVICE(PCI_VENDOR_ID_MELLANOX,
264                                 PCI_DEVICE_ID_MELLANOX_CONNECTX6DXBF)
265         },
266         {
267                 RTE_PCI_DEVICE(PCI_VENDOR_ID_MELLANOX,
268                                 PCI_DEVICE_ID_MELLANOX_CONNECTX7BF)
269         },
270         {
271                 .vendor_id = 0
272         }
273 };
274
275 static struct mlx5_pci_driver mlx5_regex_driver = {
276         .driver_class = MLX5_CLASS_REGEX,
277         .pci_driver = {
278                 .driver = {
279                         .name = RTE_STR(MLX5_REGEX_DRIVER_NAME),
280                 },
281                 .id_table = mlx5_regex_pci_id_map,
282                 .probe = mlx5_regex_pci_probe,
283                 .remove = mlx5_regex_pci_remove,
284                 .drv_flags = 0,
285         },
286 };
287
288 RTE_INIT(rte_mlx5_regex_init)
289 {
290         mlx5_common_init();
291         if (mlx5_glue)
292                 mlx5_pci_driver_register(&mlx5_regex_driver);
293 }
294
295 RTE_LOG_REGISTER(mlx5_regex_logtype, MLX5_REGEX_LOG_NAME, NOTICE)
296 RTE_PMD_EXPORT_NAME(MLX5_REGEX_DRIVER_NAME, __COUNTER__);
297 RTE_PMD_REGISTER_PCI_TABLE(MLX5_REGEX_DRIVER_NAME, mlx5_regex_pci_id_map);
298 RTE_PMD_REGISTER_KMOD_DEP(MLX5_REGEX_DRIVER_NAME, "* ib_uverbs & mlx5_core & mlx5_ib");