cryptodev: set PCI info only when device is PCI
[dpdk.git] / lib / librte_cryptodev / rte_cryptodev.c
1 /*-
2  *   BSD LICENSE
3  *
4  *   Copyright(c) 2015-2017 Intel Corporation. All rights reserved.
5  *
6  *   Redistribution and use in source and binary forms, with or without
7  *   modification, are permitted provided that the following conditions
8  *   are met:
9  *
10  *     * Redistributions of source code must retain the above copyright
11  *       notice, this list of conditions and the following disclaimer.
12  *     * Redistributions in binary form must reproduce the above copyright
13  *       notice, this list of conditions and the following disclaimer in
14  *       the documentation and/or other materials provided with the
15  *       distribution.
16  *     * Neither the name of Intel Corporation nor the names of its
17  *       contributors may be used to endorse or promote products derived
18  *       from this software without specific prior written permission.
19  *
20  *   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
21  *   "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
22  *   LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
23  *   A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
24  *   OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
25  *   SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
26  *   LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
27  *   DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
28  *   THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
29  *   (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
30  *   OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
31  */
32
33 #include <sys/types.h>
34 #include <sys/queue.h>
35 #include <ctype.h>
36 #include <stdio.h>
37 #include <stdlib.h>
38 #include <string.h>
39 #include <stdarg.h>
40 #include <errno.h>
41 #include <stdint.h>
42 #include <inttypes.h>
43 #include <netinet/in.h>
44
45 #include <rte_byteorder.h>
46 #include <rte_log.h>
47 #include <rte_debug.h>
48 #include <rte_dev.h>
49 #include <rte_interrupts.h>
50 #include <rte_pci.h>
51 #include <rte_memory.h>
52 #include <rte_memcpy.h>
53 #include <rte_memzone.h>
54 #include <rte_launch.h>
55 #include <rte_tailq.h>
56 #include <rte_eal.h>
57 #include <rte_per_lcore.h>
58 #include <rte_lcore.h>
59 #include <rte_atomic.h>
60 #include <rte_branch_prediction.h>
61 #include <rte_common.h>
62 #include <rte_mempool.h>
63 #include <rte_malloc.h>
64 #include <rte_mbuf.h>
65 #include <rte_errno.h>
66 #include <rte_spinlock.h>
67 #include <rte_string_fns.h>
68
69 #include "rte_crypto.h"
70 #include "rte_cryptodev.h"
71 #include "rte_cryptodev_pmd.h"
72
73 struct rte_cryptodev rte_crypto_devices[RTE_CRYPTO_MAX_DEVS];
74
75 struct rte_cryptodev *rte_cryptodevs = &rte_crypto_devices[0];
76
77 static struct rte_cryptodev_global cryptodev_globals = {
78                 .devs                   = &rte_crypto_devices[0],
79                 .data                   = { NULL },
80                 .nb_devs                = 0,
81                 .max_devs               = RTE_CRYPTO_MAX_DEVS
82 };
83
84 struct rte_cryptodev_global *rte_cryptodev_globals = &cryptodev_globals;
85
86 /* spinlock for crypto device callbacks */
87 static rte_spinlock_t rte_cryptodev_cb_lock = RTE_SPINLOCK_INITIALIZER;
88
89
90 /**
91  * The user application callback description.
92  *
93  * It contains callback address to be registered by user application,
94  * the pointer to the parameters for callback, and the event type.
95  */
96 struct rte_cryptodev_callback {
97         TAILQ_ENTRY(rte_cryptodev_callback) next; /**< Callbacks list */
98         rte_cryptodev_cb_fn cb_fn;              /**< Callback address */
99         void *cb_arg;                           /**< Parameter for callback */
100         enum rte_cryptodev_event_type event;    /**< Interrupt event type */
101         uint32_t active;                        /**< Callback is executing */
102 };
103
104 #define RTE_CRYPTODEV_VDEV_NAME                         ("name")
105 #define RTE_CRYPTODEV_VDEV_MAX_NB_QP_ARG                ("max_nb_queue_pairs")
106 #define RTE_CRYPTODEV_VDEV_MAX_NB_SESS_ARG              ("max_nb_sessions")
107 #define RTE_CRYPTODEV_VDEV_SOCKET_ID                    ("socket_id")
108
109 static const char *cryptodev_vdev_valid_params[] = {
110         RTE_CRYPTODEV_VDEV_NAME,
111         RTE_CRYPTODEV_VDEV_MAX_NB_QP_ARG,
112         RTE_CRYPTODEV_VDEV_MAX_NB_SESS_ARG,
113         RTE_CRYPTODEV_VDEV_SOCKET_ID
114 };
115
116 /**
117  * The crypto cipher algorithm strings identifiers.
118  * It could be used in application command line.
119  */
120 const char *
121 rte_crypto_cipher_algorithm_strings[] = {
122         [RTE_CRYPTO_CIPHER_3DES_CBC]    = "3des-cbc",
123         [RTE_CRYPTO_CIPHER_3DES_ECB]    = "3des-ecb",
124         [RTE_CRYPTO_CIPHER_3DES_CTR]    = "3des-ctr",
125
126         [RTE_CRYPTO_CIPHER_AES_CBC]     = "aes-cbc",
127         [RTE_CRYPTO_CIPHER_AES_CCM]     = "aes-ccm",
128         [RTE_CRYPTO_CIPHER_AES_CTR]     = "aes-ctr",
129         [RTE_CRYPTO_CIPHER_AES_DOCSISBPI]       = "aes-docsisbpi",
130         [RTE_CRYPTO_CIPHER_AES_ECB]     = "aes-ecb",
131         [RTE_CRYPTO_CIPHER_AES_GCM]     = "aes-gcm",
132         [RTE_CRYPTO_CIPHER_AES_F8]      = "aes-f8",
133         [RTE_CRYPTO_CIPHER_AES_XTS]     = "aes-xts",
134
135         [RTE_CRYPTO_CIPHER_ARC4]        = "arc4",
136
137         [RTE_CRYPTO_CIPHER_DES_CBC]     = "des-cbc",
138         [RTE_CRYPTO_CIPHER_DES_DOCSISBPI]       = "des-docsisbpi",
139
140         [RTE_CRYPTO_CIPHER_NULL]        = "null",
141
142         [RTE_CRYPTO_CIPHER_KASUMI_F8]   = "kasumi-f8",
143         [RTE_CRYPTO_CIPHER_SNOW3G_UEA2] = "snow3g-uea2",
144         [RTE_CRYPTO_CIPHER_ZUC_EEA3]    = "zuc-eea3"
145 };
146
147 /**
148  * The crypto cipher operation strings identifiers.
149  * It could be used in application command line.
150  */
151 const char *
152 rte_crypto_cipher_operation_strings[] = {
153                 [RTE_CRYPTO_CIPHER_OP_ENCRYPT]  = "encrypt",
154                 [RTE_CRYPTO_CIPHER_OP_DECRYPT]  = "decrypt"
155 };
156
157 /**
158  * The crypto auth algorithm strings identifiers.
159  * It could be used in application command line.
160  */
161 const char *
162 rte_crypto_auth_algorithm_strings[] = {
163         [RTE_CRYPTO_AUTH_AES_CBC_MAC]   = "aes-cbc-mac",
164         [RTE_CRYPTO_AUTH_AES_CCM]       = "aes-ccm",
165         [RTE_CRYPTO_AUTH_AES_CMAC]      = "aes-cmac",
166         [RTE_CRYPTO_AUTH_AES_GCM]       = "aes-gcm",
167         [RTE_CRYPTO_AUTH_AES_GMAC]      = "aes-gmac",
168         [RTE_CRYPTO_AUTH_AES_XCBC_MAC]  = "aes-xcbc-mac",
169
170         [RTE_CRYPTO_AUTH_MD5]           = "md5",
171         [RTE_CRYPTO_AUTH_MD5_HMAC]      = "md5-hmac",
172
173         [RTE_CRYPTO_AUTH_NULL]          = "null",
174
175         [RTE_CRYPTO_AUTH_SHA1]          = "sha1",
176         [RTE_CRYPTO_AUTH_SHA1_HMAC]     = "sha1-hmac",
177
178         [RTE_CRYPTO_AUTH_SHA224]        = "sha2-224",
179         [RTE_CRYPTO_AUTH_SHA224_HMAC]   = "sha2-224-hmac",
180         [RTE_CRYPTO_AUTH_SHA256]        = "sha2-256",
181         [RTE_CRYPTO_AUTH_SHA256_HMAC]   = "sha2-256-hmac",
182         [RTE_CRYPTO_AUTH_SHA384]        = "sha2-384",
183         [RTE_CRYPTO_AUTH_SHA384_HMAC]   = "sha2-384-hmac",
184         [RTE_CRYPTO_AUTH_SHA512]        = "sha2-512",
185         [RTE_CRYPTO_AUTH_SHA512_HMAC]   = "sha2-512-hmac",
186
187         [RTE_CRYPTO_AUTH_KASUMI_F9]     = "kasumi-f9",
188         [RTE_CRYPTO_AUTH_SNOW3G_UIA2]   = "snow3g-uia2",
189         [RTE_CRYPTO_AUTH_ZUC_EIA3]      = "zuc-eia3"
190 };
191
192 int
193 rte_cryptodev_get_cipher_algo_enum(enum rte_crypto_cipher_algorithm *algo_enum,
194                 const char *algo_string)
195 {
196         unsigned int i;
197
198         for (i = 1; i < RTE_DIM(rte_crypto_cipher_algorithm_strings); i++) {
199                 if (strcmp(algo_string, rte_crypto_cipher_algorithm_strings[i]) == 0) {
200                         *algo_enum = (enum rte_crypto_cipher_algorithm) i;
201                         return 0;
202                 }
203         }
204
205         /* Invalid string */
206         return -1;
207 }
208
209 int
210 rte_cryptodev_get_auth_algo_enum(enum rte_crypto_auth_algorithm *algo_enum,
211                 const char *algo_string)
212 {
213         unsigned int i;
214
215         for (i = 1; i < RTE_DIM(rte_crypto_auth_algorithm_strings); i++) {
216                 if (strcmp(algo_string, rte_crypto_auth_algorithm_strings[i]) == 0) {
217                         *algo_enum = (enum rte_crypto_auth_algorithm) i;
218                         return 0;
219                 }
220         }
221
222         /* Invalid string */
223         return -1;
224 }
225
226 /**
227  * The crypto auth operation strings identifiers.
228  * It could be used in application command line.
229  */
230 const char *
231 rte_crypto_auth_operation_strings[] = {
232                 [RTE_CRYPTO_AUTH_OP_VERIFY]     = "verify",
233                 [RTE_CRYPTO_AUTH_OP_GENERATE]   = "generate"
234 };
235
236 /** Parse integer from integer argument */
237 static int
238 parse_integer_arg(const char *key __rte_unused,
239                 const char *value, void *extra_args)
240 {
241         int *i = extra_args;
242
243         *i = atoi(value);
244         if (*i < 0) {
245                 CDEV_LOG_ERR("Argument has to be positive.");
246                 return -1;
247         }
248
249         return 0;
250 }
251
252 /** Parse name */
253 static int
254 parse_name_arg(const char *key __rte_unused,
255                 const char *value, void *extra_args)
256 {
257         struct rte_crypto_vdev_init_params *params = extra_args;
258
259         if (strlen(value) >= RTE_CRYPTODEV_NAME_MAX_LEN - 1) {
260                 CDEV_LOG_ERR("Invalid name %s, should be less than "
261                                 "%u bytes", value,
262                                 RTE_CRYPTODEV_NAME_MAX_LEN - 1);
263                 return -1;
264         }
265
266         strncpy(params->name, value, RTE_CRYPTODEV_NAME_MAX_LEN);
267
268         return 0;
269 }
270
271 int
272 rte_cryptodev_parse_vdev_init_params(struct rte_crypto_vdev_init_params *params,
273                 const char *input_args)
274 {
275         struct rte_kvargs *kvlist = NULL;
276         int ret = 0;
277
278         if (params == NULL)
279                 return -EINVAL;
280
281         if (input_args) {
282                 kvlist = rte_kvargs_parse(input_args,
283                                 cryptodev_vdev_valid_params);
284                 if (kvlist == NULL)
285                         return -1;
286
287                 ret = rte_kvargs_process(kvlist,
288                                         RTE_CRYPTODEV_VDEV_MAX_NB_QP_ARG,
289                                         &parse_integer_arg,
290                                         &params->max_nb_queue_pairs);
291                 if (ret < 0)
292                         goto free_kvlist;
293
294                 ret = rte_kvargs_process(kvlist,
295                                         RTE_CRYPTODEV_VDEV_MAX_NB_SESS_ARG,
296                                         &parse_integer_arg,
297                                         &params->max_nb_sessions);
298                 if (ret < 0)
299                         goto free_kvlist;
300
301                 ret = rte_kvargs_process(kvlist, RTE_CRYPTODEV_VDEV_SOCKET_ID,
302                                         &parse_integer_arg,
303                                         &params->socket_id);
304                 if (ret < 0)
305                         goto free_kvlist;
306
307                 ret = rte_kvargs_process(kvlist, RTE_CRYPTODEV_VDEV_NAME,
308                                         &parse_name_arg,
309                                         params);
310                 if (ret < 0)
311                         goto free_kvlist;
312         }
313
314 free_kvlist:
315         rte_kvargs_free(kvlist);
316         return ret;
317 }
318
319 const struct rte_cryptodev_symmetric_capability *
320 rte_cryptodev_sym_capability_get(uint8_t dev_id,
321                 const struct rte_cryptodev_sym_capability_idx *idx)
322 {
323         const struct rte_cryptodev_capabilities *capability;
324         struct rte_cryptodev_info dev_info;
325         int i = 0;
326
327         rte_cryptodev_info_get(dev_id, &dev_info);
328
329         while ((capability = &dev_info.capabilities[i++])->op !=
330                         RTE_CRYPTO_OP_TYPE_UNDEFINED) {
331                 if (capability->op != RTE_CRYPTO_OP_TYPE_SYMMETRIC)
332                         continue;
333
334                 if (capability->sym.xform_type != idx->type)
335                         continue;
336
337                 if (idx->type == RTE_CRYPTO_SYM_XFORM_AUTH &&
338                         capability->sym.auth.algo == idx->algo.auth)
339                         return &capability->sym;
340
341                 if (idx->type == RTE_CRYPTO_SYM_XFORM_CIPHER &&
342                         capability->sym.cipher.algo == idx->algo.cipher)
343                         return &capability->sym;
344         }
345
346         return NULL;
347
348 }
349
350 #define param_range_check(x, y) \
351         (((x < y.min) || (x > y.max)) || \
352         (y.increment != 0 && (x % y.increment) != 0))
353
354 int
355 rte_cryptodev_sym_capability_check_cipher(
356                 const struct rte_cryptodev_symmetric_capability *capability,
357                 uint16_t key_size, uint16_t iv_size)
358 {
359         if (param_range_check(key_size, capability->cipher.key_size))
360                 return -1;
361
362         if (param_range_check(iv_size, capability->cipher.iv_size))
363                 return -1;
364
365         return 0;
366 }
367
368 int
369 rte_cryptodev_sym_capability_check_auth(
370                 const struct rte_cryptodev_symmetric_capability *capability,
371                 uint16_t key_size, uint16_t digest_size, uint16_t aad_size)
372 {
373         if (param_range_check(key_size, capability->auth.key_size))
374                 return -1;
375
376         if (param_range_check(digest_size, capability->auth.digest_size))
377                 return -1;
378
379         if (param_range_check(aad_size, capability->auth.aad_size))
380                 return -1;
381
382         return 0;
383 }
384
385
386 const char *
387 rte_cryptodev_get_feature_name(uint64_t flag)
388 {
389         switch (flag) {
390         case RTE_CRYPTODEV_FF_SYMMETRIC_CRYPTO:
391                 return "SYMMETRIC_CRYPTO";
392         case RTE_CRYPTODEV_FF_ASYMMETRIC_CRYPTO:
393                 return "ASYMMETRIC_CRYPTO";
394         case RTE_CRYPTODEV_FF_SYM_OPERATION_CHAINING:
395                 return "SYM_OPERATION_CHAINING";
396         case RTE_CRYPTODEV_FF_CPU_SSE:
397                 return "CPU_SSE";
398         case RTE_CRYPTODEV_FF_CPU_AVX:
399                 return "CPU_AVX";
400         case RTE_CRYPTODEV_FF_CPU_AVX2:
401                 return "CPU_AVX2";
402         case RTE_CRYPTODEV_FF_CPU_AESNI:
403                 return "CPU_AESNI";
404         case RTE_CRYPTODEV_FF_HW_ACCELERATED:
405                 return "HW_ACCELERATED";
406         case RTE_CRYPTODEV_FF_MBUF_SCATTER_GATHER:
407                 return "MBUF_SCATTER_GATHER";
408         case RTE_CRYPTODEV_FF_CPU_NEON:
409                 return "CPU_NEON";
410         case RTE_CRYPTODEV_FF_CPU_ARM_CE:
411                 return "CPU_ARM_CE";
412         default:
413                 return NULL;
414         }
415 }
416
417 int
418 rte_cryptodev_create_vdev(const char *name, const char *args)
419 {
420         return rte_vdev_init(name, args);
421 }
422
423 struct rte_cryptodev *
424 rte_cryptodev_pmd_get_dev(uint8_t dev_id)
425 {
426         return &rte_cryptodev_globals->devs[dev_id];
427 }
428
429 struct rte_cryptodev *
430 rte_cryptodev_pmd_get_named_dev(const char *name)
431 {
432         struct rte_cryptodev *dev;
433         unsigned int i;
434
435         if (name == NULL)
436                 return NULL;
437
438         for (i = 0; i < rte_cryptodev_globals->max_devs; i++) {
439                 dev = &rte_cryptodev_globals->devs[i];
440
441                 if ((dev->attached == RTE_CRYPTODEV_ATTACHED) &&
442                                 (strcmp(dev->data->name, name) == 0))
443                         return dev;
444         }
445
446         return NULL;
447 }
448
449 unsigned int
450 rte_cryptodev_pmd_is_valid_dev(uint8_t dev_id)
451 {
452         struct rte_cryptodev *dev = NULL;
453
454         if (dev_id >= rte_cryptodev_globals->nb_devs)
455                 return 0;
456
457         dev = rte_cryptodev_pmd_get_dev(dev_id);
458         if (dev->attached != RTE_CRYPTODEV_ATTACHED)
459                 return 0;
460         else
461                 return 1;
462 }
463
464
465 int
466 rte_cryptodev_get_dev_id(const char *name)
467 {
468         unsigned i;
469
470         if (name == NULL)
471                 return -1;
472
473         for (i = 0; i < rte_cryptodev_globals->nb_devs; i++)
474                 if ((strcmp(rte_cryptodev_globals->devs[i].data->name, name)
475                                 == 0) &&
476                                 (rte_cryptodev_globals->devs[i].attached ==
477                                                 RTE_CRYPTODEV_ATTACHED))
478                         return i;
479
480         return -1;
481 }
482
483 uint8_t
484 rte_cryptodev_count(void)
485 {
486         return rte_cryptodev_globals->nb_devs;
487 }
488
489 uint8_t
490 rte_cryptodev_count_devtype(enum rte_cryptodev_type type)
491 {
492         uint8_t i, dev_count = 0;
493
494         for (i = 0; i < rte_cryptodev_globals->max_devs; i++)
495                 if (rte_cryptodev_globals->devs[i].dev_type == type &&
496                         rte_cryptodev_globals->devs[i].attached ==
497                                         RTE_CRYPTODEV_ATTACHED)
498                         dev_count++;
499
500         return dev_count;
501 }
502
503 uint8_t
504 rte_cryptodev_devices_get(const char *driver_name, uint8_t *devices,
505         uint8_t nb_devices)
506 {
507         uint8_t i, count = 0;
508         struct rte_cryptodev *devs = rte_cryptodev_globals->devs;
509         uint8_t max_devs = rte_cryptodev_globals->max_devs;
510
511         for (i = 0; i < max_devs && count < nb_devices; i++) {
512
513                 if (devs[i].attached == RTE_CRYPTODEV_ATTACHED) {
514                         int cmp;
515
516                         cmp = strncmp(devs[i].device->driver->name,
517                                         driver_name,
518                                         strlen(driver_name));
519
520                         if (cmp == 0)
521                                 devices[count++] = devs[i].data->dev_id;
522                 }
523         }
524
525         return count;
526 }
527
528 int
529 rte_cryptodev_socket_id(uint8_t dev_id)
530 {
531         struct rte_cryptodev *dev;
532
533         if (!rte_cryptodev_pmd_is_valid_dev(dev_id))
534                 return -1;
535
536         dev = rte_cryptodev_pmd_get_dev(dev_id);
537
538         return dev->data->socket_id;
539 }
540
541 static inline int
542 rte_cryptodev_data_alloc(uint8_t dev_id, struct rte_cryptodev_data **data,
543                 int socket_id)
544 {
545         char mz_name[RTE_CRYPTODEV_NAME_MAX_LEN];
546         const struct rte_memzone *mz;
547         int n;
548
549         /* generate memzone name */
550         n = snprintf(mz_name, sizeof(mz_name), "rte_cryptodev_data_%u", dev_id);
551         if (n >= (int)sizeof(mz_name))
552                 return -EINVAL;
553
554         if (rte_eal_process_type() == RTE_PROC_PRIMARY) {
555                 mz = rte_memzone_reserve(mz_name,
556                                 sizeof(struct rte_cryptodev_data),
557                                 socket_id, 0);
558         } else
559                 mz = rte_memzone_lookup(mz_name);
560
561         if (mz == NULL)
562                 return -ENOMEM;
563
564         *data = mz->addr;
565         if (rte_eal_process_type() == RTE_PROC_PRIMARY)
566                 memset(*data, 0, sizeof(struct rte_cryptodev_data));
567
568         return 0;
569 }
570
571 static uint8_t
572 rte_cryptodev_find_free_device_index(void)
573 {
574         uint8_t dev_id;
575
576         for (dev_id = 0; dev_id < RTE_CRYPTO_MAX_DEVS; dev_id++) {
577                 if (rte_crypto_devices[dev_id].attached ==
578                                 RTE_CRYPTODEV_DETACHED)
579                         return dev_id;
580         }
581         return RTE_CRYPTO_MAX_DEVS;
582 }
583
584 struct rte_cryptodev *
585 rte_cryptodev_pmd_allocate(const char *name, int socket_id)
586 {
587         struct rte_cryptodev *cryptodev;
588         uint8_t dev_id;
589
590         if (rte_cryptodev_pmd_get_named_dev(name) != NULL) {
591                 CDEV_LOG_ERR("Crypto device with name %s already "
592                                 "allocated!", name);
593                 return NULL;
594         }
595
596         dev_id = rte_cryptodev_find_free_device_index();
597         if (dev_id == RTE_CRYPTO_MAX_DEVS) {
598                 CDEV_LOG_ERR("Reached maximum number of crypto devices");
599                 return NULL;
600         }
601
602         cryptodev = rte_cryptodev_pmd_get_dev(dev_id);
603
604         if (cryptodev->data == NULL) {
605                 struct rte_cryptodev_data *cryptodev_data =
606                                 cryptodev_globals.data[dev_id];
607
608                 int retval = rte_cryptodev_data_alloc(dev_id, &cryptodev_data,
609                                 socket_id);
610
611                 if (retval < 0 || cryptodev_data == NULL)
612                         return NULL;
613
614                 cryptodev->data = cryptodev_data;
615
616                 snprintf(cryptodev->data->name, RTE_CRYPTODEV_NAME_MAX_LEN,
617                                 "%s", name);
618
619                 cryptodev->data->dev_id = dev_id;
620                 cryptodev->data->socket_id = socket_id;
621                 cryptodev->data->dev_started = 0;
622
623                 cryptodev->attached = RTE_CRYPTODEV_ATTACHED;
624
625                 cryptodev_globals.nb_devs++;
626         }
627
628         return cryptodev;
629 }
630
631 int
632 rte_cryptodev_pmd_release_device(struct rte_cryptodev *cryptodev)
633 {
634         int ret;
635
636         if (cryptodev == NULL)
637                 return -EINVAL;
638
639         ret = rte_cryptodev_close(cryptodev->data->dev_id);
640         if (ret < 0)
641                 return ret;
642
643         cryptodev->attached = RTE_CRYPTODEV_DETACHED;
644         cryptodev_globals.nb_devs--;
645         return 0;
646 }
647
648 struct rte_cryptodev *
649 rte_cryptodev_pmd_virtual_dev_init(const char *name, size_t dev_private_size,
650                 int socket_id, struct rte_vdev_device *vdev)
651 {
652         struct rte_cryptodev *cryptodev;
653
654         /* allocate device structure */
655         cryptodev = rte_cryptodev_pmd_allocate(name, socket_id);
656         if (cryptodev == NULL)
657                 return NULL;
658
659         /* allocate private device structure */
660         if (rte_eal_process_type() == RTE_PROC_PRIMARY) {
661                 cryptodev->data->dev_private =
662                                 rte_zmalloc_socket("cryptodev device private",
663                                                 dev_private_size,
664                                                 RTE_CACHE_LINE_SIZE,
665                                                 socket_id);
666
667                 if (cryptodev->data->dev_private == NULL)
668                         rte_panic("Cannot allocate memzone for private device"
669                                         " data");
670         }
671
672         cryptodev->device = &vdev->device;
673
674         /* initialise user call-back tail queue */
675         TAILQ_INIT(&(cryptodev->link_intr_cbs));
676
677         return cryptodev;
678 }
679
680 int
681 rte_cryptodev_pci_probe(struct rte_pci_driver *pci_drv,
682                         struct rte_pci_device *pci_dev)
683 {
684         struct rte_cryptodev_driver *cryptodrv;
685         struct rte_cryptodev *cryptodev;
686
687         char cryptodev_name[RTE_CRYPTODEV_NAME_MAX_LEN];
688
689         int retval;
690
691         cryptodrv = (struct rte_cryptodev_driver *)pci_drv;
692         if (cryptodrv == NULL)
693                 return -ENODEV;
694
695         rte_pci_device_name(&pci_dev->addr, cryptodev_name,
696                         sizeof(cryptodev_name));
697
698         cryptodev = rte_cryptodev_pmd_allocate(cryptodev_name, rte_socket_id());
699         if (cryptodev == NULL)
700                 return -ENOMEM;
701
702         if (rte_eal_process_type() == RTE_PROC_PRIMARY) {
703                 cryptodev->data->dev_private =
704                                 rte_zmalloc_socket(
705                                                 "cryptodev private structure",
706                                                 cryptodrv->dev_private_size,
707                                                 RTE_CACHE_LINE_SIZE,
708                                                 rte_socket_id());
709
710                 if (cryptodev->data->dev_private == NULL)
711                         rte_panic("Cannot allocate memzone for private "
712                                         "device data");
713         }
714
715         cryptodev->device = &pci_dev->device;
716         cryptodev->driver = cryptodrv;
717
718         /* init user callbacks */
719         TAILQ_INIT(&(cryptodev->link_intr_cbs));
720
721         /* Invoke PMD device initialization function */
722         retval = (*cryptodrv->cryptodev_init)(cryptodrv, cryptodev);
723         if (retval == 0)
724                 return 0;
725
726         CDEV_LOG_ERR("driver %s: crypto_dev_init(vendor_id=0x%x device_id=0x%x)"
727                         " failed", pci_drv->driver.name,
728                         (unsigned) pci_dev->id.vendor_id,
729                         (unsigned) pci_dev->id.device_id);
730
731         if (rte_eal_process_type() == RTE_PROC_PRIMARY)
732                 rte_free(cryptodev->data->dev_private);
733
734         cryptodev->attached = RTE_CRYPTODEV_DETACHED;
735         cryptodev_globals.nb_devs--;
736
737         return -ENXIO;
738 }
739
740 int
741 rte_cryptodev_pci_remove(struct rte_pci_device *pci_dev)
742 {
743         const struct rte_cryptodev_driver *cryptodrv;
744         struct rte_cryptodev *cryptodev;
745         char cryptodev_name[RTE_CRYPTODEV_NAME_MAX_LEN];
746         int ret;
747
748         if (pci_dev == NULL)
749                 return -EINVAL;
750
751         rte_pci_device_name(&pci_dev->addr, cryptodev_name,
752                         sizeof(cryptodev_name));
753
754         cryptodev = rte_cryptodev_pmd_get_named_dev(cryptodev_name);
755         if (cryptodev == NULL)
756                 return -ENODEV;
757
758         cryptodrv = (const struct rte_cryptodev_driver *)pci_dev->driver;
759         if (cryptodrv == NULL)
760                 return -ENODEV;
761
762         /* Invoke PMD device uninit function */
763         if (*cryptodrv->cryptodev_uninit) {
764                 ret = (*cryptodrv->cryptodev_uninit)(cryptodrv, cryptodev);
765                 if (ret)
766                         return ret;
767         }
768
769         /* free crypto device */
770         rte_cryptodev_pmd_release_device(cryptodev);
771
772         if (rte_eal_process_type() == RTE_PROC_PRIMARY)
773                 rte_free(cryptodev->data->dev_private);
774
775         cryptodev->device = NULL;
776         cryptodev->driver = NULL;
777         cryptodev->data = NULL;
778
779         return 0;
780 }
781
782 uint16_t
783 rte_cryptodev_queue_pair_count(uint8_t dev_id)
784 {
785         struct rte_cryptodev *dev;
786
787         dev = &rte_crypto_devices[dev_id];
788         return dev->data->nb_queue_pairs;
789 }
790
791 static int
792 rte_cryptodev_queue_pairs_config(struct rte_cryptodev *dev, uint16_t nb_qpairs,
793                 int socket_id)
794 {
795         struct rte_cryptodev_info dev_info;
796         void **qp;
797         unsigned i;
798
799         if ((dev == NULL) || (nb_qpairs < 1)) {
800                 CDEV_LOG_ERR("invalid param: dev %p, nb_queues %u",
801                                                         dev, nb_qpairs);
802                 return -EINVAL;
803         }
804
805         CDEV_LOG_DEBUG("Setup %d queues pairs on device %u",
806                         nb_qpairs, dev->data->dev_id);
807
808         memset(&dev_info, 0, sizeof(struct rte_cryptodev_info));
809
810         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->dev_infos_get, -ENOTSUP);
811         (*dev->dev_ops->dev_infos_get)(dev, &dev_info);
812
813         if (nb_qpairs > (dev_info.max_nb_queue_pairs)) {
814                 CDEV_LOG_ERR("Invalid num queue_pairs (%u) for dev %u",
815                                 nb_qpairs, dev->data->dev_id);
816             return -EINVAL;
817         }
818
819         if (dev->data->queue_pairs == NULL) { /* first time configuration */
820                 dev->data->queue_pairs = rte_zmalloc_socket(
821                                 "cryptodev->queue_pairs",
822                                 sizeof(dev->data->queue_pairs[0]) * nb_qpairs,
823                                 RTE_CACHE_LINE_SIZE, socket_id);
824
825                 if (dev->data->queue_pairs == NULL) {
826                         dev->data->nb_queue_pairs = 0;
827                         CDEV_LOG_ERR("failed to get memory for qp meta data, "
828                                                         "nb_queues %u",
829                                                         nb_qpairs);
830                         return -(ENOMEM);
831                 }
832         } else { /* re-configure */
833                 int ret;
834                 uint16_t old_nb_queues = dev->data->nb_queue_pairs;
835
836                 qp = dev->data->queue_pairs;
837
838                 RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->queue_pair_release,
839                                 -ENOTSUP);
840
841                 for (i = nb_qpairs; i < old_nb_queues; i++) {
842                         ret = (*dev->dev_ops->queue_pair_release)(dev, i);
843                         if (ret < 0)
844                                 return ret;
845                 }
846
847                 qp = rte_realloc(qp, sizeof(qp[0]) * nb_qpairs,
848                                 RTE_CACHE_LINE_SIZE);
849                 if (qp == NULL) {
850                         CDEV_LOG_ERR("failed to realloc qp meta data,"
851                                                 " nb_queues %u", nb_qpairs);
852                         return -(ENOMEM);
853                 }
854
855                 if (nb_qpairs > old_nb_queues) {
856                         uint16_t new_qs = nb_qpairs - old_nb_queues;
857
858                         memset(qp + old_nb_queues, 0,
859                                 sizeof(qp[0]) * new_qs);
860                 }
861
862                 dev->data->queue_pairs = qp;
863
864         }
865         dev->data->nb_queue_pairs = nb_qpairs;
866         return 0;
867 }
868
869 int
870 rte_cryptodev_queue_pair_start(uint8_t dev_id, uint16_t queue_pair_id)
871 {
872         struct rte_cryptodev *dev;
873
874         if (!rte_cryptodev_pmd_is_valid_dev(dev_id)) {
875                 CDEV_LOG_ERR("Invalid dev_id=%" PRIu8, dev_id);
876                 return -EINVAL;
877         }
878
879         dev = &rte_crypto_devices[dev_id];
880         if (queue_pair_id >= dev->data->nb_queue_pairs) {
881                 CDEV_LOG_ERR("Invalid queue_pair_id=%d", queue_pair_id);
882                 return -EINVAL;
883         }
884
885         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->queue_pair_start, -ENOTSUP);
886
887         return dev->dev_ops->queue_pair_start(dev, queue_pair_id);
888
889 }
890
891 int
892 rte_cryptodev_queue_pair_stop(uint8_t dev_id, uint16_t queue_pair_id)
893 {
894         struct rte_cryptodev *dev;
895
896         if (!rte_cryptodev_pmd_is_valid_dev(dev_id)) {
897                 CDEV_LOG_ERR("Invalid dev_id=%" PRIu8, dev_id);
898                 return -EINVAL;
899         }
900
901         dev = &rte_crypto_devices[dev_id];
902         if (queue_pair_id >= dev->data->nb_queue_pairs) {
903                 CDEV_LOG_ERR("Invalid queue_pair_id=%d", queue_pair_id);
904                 return -EINVAL;
905         }
906
907         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->queue_pair_stop, -ENOTSUP);
908
909         return dev->dev_ops->queue_pair_stop(dev, queue_pair_id);
910
911 }
912
913 static int
914 rte_cryptodev_sym_session_pool_create(struct rte_cryptodev *dev,
915                 unsigned nb_objs, unsigned obj_cache_size, int socket_id);
916
917 int
918 rte_cryptodev_configure(uint8_t dev_id, struct rte_cryptodev_config *config)
919 {
920         struct rte_cryptodev *dev;
921         int diag;
922
923         if (!rte_cryptodev_pmd_is_valid_dev(dev_id)) {
924                 CDEV_LOG_ERR("Invalid dev_id=%" PRIu8, dev_id);
925                 return -EINVAL;
926         }
927
928         dev = &rte_crypto_devices[dev_id];
929
930         if (dev->data->dev_started) {
931                 CDEV_LOG_ERR(
932                     "device %d must be stopped to allow configuration", dev_id);
933                 return -EBUSY;
934         }
935
936         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->dev_configure, -ENOTSUP);
937
938         /* Setup new number of queue pairs and reconfigure device. */
939         diag = rte_cryptodev_queue_pairs_config(dev, config->nb_queue_pairs,
940                         config->socket_id);
941         if (diag != 0) {
942                 CDEV_LOG_ERR("dev%d rte_crypto_dev_queue_pairs_config = %d",
943                                 dev_id, diag);
944                 return diag;
945         }
946
947         /* Setup Session mempool for device */
948         diag = rte_cryptodev_sym_session_pool_create(dev,
949                         config->session_mp.nb_objs,
950                         config->session_mp.cache_size,
951                         config->socket_id);
952         if (diag != 0)
953                 return diag;
954
955         return (*dev->dev_ops->dev_configure)(dev, config);
956 }
957
958
959 int
960 rte_cryptodev_start(uint8_t dev_id)
961 {
962         struct rte_cryptodev *dev;
963         int diag;
964
965         CDEV_LOG_DEBUG("Start dev_id=%" PRIu8, dev_id);
966
967         if (!rte_cryptodev_pmd_is_valid_dev(dev_id)) {
968                 CDEV_LOG_ERR("Invalid dev_id=%" PRIu8, dev_id);
969                 return -EINVAL;
970         }
971
972         dev = &rte_crypto_devices[dev_id];
973
974         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->dev_start, -ENOTSUP);
975
976         if (dev->data->dev_started != 0) {
977                 CDEV_LOG_ERR("Device with dev_id=%" PRIu8 " already started",
978                         dev_id);
979                 return 0;
980         }
981
982         diag = (*dev->dev_ops->dev_start)(dev);
983         if (diag == 0)
984                 dev->data->dev_started = 1;
985         else
986                 return diag;
987
988         return 0;
989 }
990
991 void
992 rte_cryptodev_stop(uint8_t dev_id)
993 {
994         struct rte_cryptodev *dev;
995
996         if (!rte_cryptodev_pmd_is_valid_dev(dev_id)) {
997                 CDEV_LOG_ERR("Invalid dev_id=%" PRIu8, dev_id);
998                 return;
999         }
1000
1001         dev = &rte_crypto_devices[dev_id];
1002
1003         RTE_FUNC_PTR_OR_RET(*dev->dev_ops->dev_stop);
1004
1005         if (dev->data->dev_started == 0) {
1006                 CDEV_LOG_ERR("Device with dev_id=%" PRIu8 " already stopped",
1007                         dev_id);
1008                 return;
1009         }
1010
1011         dev->data->dev_started = 0;
1012         (*dev->dev_ops->dev_stop)(dev);
1013 }
1014
1015 int
1016 rte_cryptodev_close(uint8_t dev_id)
1017 {
1018         struct rte_cryptodev *dev;
1019         int retval;
1020
1021         if (!rte_cryptodev_pmd_is_valid_dev(dev_id)) {
1022                 CDEV_LOG_ERR("Invalid dev_id=%" PRIu8, dev_id);
1023                 return -1;
1024         }
1025
1026         dev = &rte_crypto_devices[dev_id];
1027
1028         /* Device must be stopped before it can be closed */
1029         if (dev->data->dev_started == 1) {
1030                 CDEV_LOG_ERR("Device %u must be stopped before closing",
1031                                 dev_id);
1032                 return -EBUSY;
1033         }
1034
1035         /* We can't close the device if there are outstanding sessions in use */
1036         if (dev->data->session_pool != NULL) {
1037                 if (!rte_mempool_full(dev->data->session_pool)) {
1038                         CDEV_LOG_ERR("dev_id=%u close failed, session mempool "
1039                                         "has sessions still in use, free "
1040                                         "all sessions before calling close",
1041                                         (unsigned)dev_id);
1042                         return -EBUSY;
1043                 }
1044         }
1045
1046         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->dev_close, -ENOTSUP);
1047         retval = (*dev->dev_ops->dev_close)(dev);
1048
1049         if (retval < 0)
1050                 return retval;
1051
1052         return 0;
1053 }
1054
1055 int
1056 rte_cryptodev_queue_pair_setup(uint8_t dev_id, uint16_t queue_pair_id,
1057                 const struct rte_cryptodev_qp_conf *qp_conf, int socket_id)
1058 {
1059         struct rte_cryptodev *dev;
1060
1061         if (!rte_cryptodev_pmd_is_valid_dev(dev_id)) {
1062                 CDEV_LOG_ERR("Invalid dev_id=%" PRIu8, dev_id);
1063                 return -EINVAL;
1064         }
1065
1066         dev = &rte_crypto_devices[dev_id];
1067         if (queue_pair_id >= dev->data->nb_queue_pairs) {
1068                 CDEV_LOG_ERR("Invalid queue_pair_id=%d", queue_pair_id);
1069                 return -EINVAL;
1070         }
1071
1072         if (dev->data->dev_started) {
1073                 CDEV_LOG_ERR(
1074                     "device %d must be stopped to allow configuration", dev_id);
1075                 return -EBUSY;
1076         }
1077
1078         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->queue_pair_setup, -ENOTSUP);
1079
1080         return (*dev->dev_ops->queue_pair_setup)(dev, queue_pair_id, qp_conf,
1081                         socket_id);
1082 }
1083
1084
1085 int
1086 rte_cryptodev_stats_get(uint8_t dev_id, struct rte_cryptodev_stats *stats)
1087 {
1088         struct rte_cryptodev *dev;
1089
1090         if (!rte_cryptodev_pmd_is_valid_dev(dev_id)) {
1091                 CDEV_LOG_ERR("Invalid dev_id=%d", dev_id);
1092                 return -ENODEV;
1093         }
1094
1095         if (stats == NULL) {
1096                 CDEV_LOG_ERR("Invalid stats ptr");
1097                 return -EINVAL;
1098         }
1099
1100         dev = &rte_crypto_devices[dev_id];
1101         memset(stats, 0, sizeof(*stats));
1102
1103         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->stats_get, -ENOTSUP);
1104         (*dev->dev_ops->stats_get)(dev, stats);
1105         return 0;
1106 }
1107
1108 void
1109 rte_cryptodev_stats_reset(uint8_t dev_id)
1110 {
1111         struct rte_cryptodev *dev;
1112
1113         if (!rte_cryptodev_pmd_is_valid_dev(dev_id)) {
1114                 CDEV_LOG_ERR("Invalid dev_id=%" PRIu8, dev_id);
1115                 return;
1116         }
1117
1118         dev = &rte_crypto_devices[dev_id];
1119
1120         RTE_FUNC_PTR_OR_RET(*dev->dev_ops->stats_reset);
1121         (*dev->dev_ops->stats_reset)(dev);
1122 }
1123
1124
1125 void
1126 rte_cryptodev_info_get(uint8_t dev_id, struct rte_cryptodev_info *dev_info)
1127 {
1128         struct rte_cryptodev *dev;
1129
1130         if (dev_id >= cryptodev_globals.nb_devs) {
1131                 CDEV_LOG_ERR("Invalid dev_id=%d", dev_id);
1132                 return;
1133         }
1134
1135         dev = &rte_crypto_devices[dev_id];
1136
1137         memset(dev_info, 0, sizeof(struct rte_cryptodev_info));
1138
1139         RTE_FUNC_PTR_OR_RET(*dev->dev_ops->dev_infos_get);
1140         (*dev->dev_ops->dev_infos_get)(dev, dev_info);
1141
1142         dev_info->driver_name = dev->device->driver->name;
1143 }
1144
1145
1146 int
1147 rte_cryptodev_callback_register(uint8_t dev_id,
1148                         enum rte_cryptodev_event_type event,
1149                         rte_cryptodev_cb_fn cb_fn, void *cb_arg)
1150 {
1151         struct rte_cryptodev *dev;
1152         struct rte_cryptodev_callback *user_cb;
1153
1154         if (!cb_fn)
1155                 return -EINVAL;
1156
1157         if (!rte_cryptodev_pmd_is_valid_dev(dev_id)) {
1158                 CDEV_LOG_ERR("Invalid dev_id=%" PRIu8, dev_id);
1159                 return -EINVAL;
1160         }
1161
1162         dev = &rte_crypto_devices[dev_id];
1163         rte_spinlock_lock(&rte_cryptodev_cb_lock);
1164
1165         TAILQ_FOREACH(user_cb, &(dev->link_intr_cbs), next) {
1166                 if (user_cb->cb_fn == cb_fn &&
1167                         user_cb->cb_arg == cb_arg &&
1168                         user_cb->event == event) {
1169                         break;
1170                 }
1171         }
1172
1173         /* create a new callback. */
1174         if (user_cb == NULL) {
1175                 user_cb = rte_zmalloc("INTR_USER_CALLBACK",
1176                                 sizeof(struct rte_cryptodev_callback), 0);
1177                 if (user_cb != NULL) {
1178                         user_cb->cb_fn = cb_fn;
1179                         user_cb->cb_arg = cb_arg;
1180                         user_cb->event = event;
1181                         TAILQ_INSERT_TAIL(&(dev->link_intr_cbs), user_cb, next);
1182                 }
1183         }
1184
1185         rte_spinlock_unlock(&rte_cryptodev_cb_lock);
1186         return (user_cb == NULL) ? -ENOMEM : 0;
1187 }
1188
1189 int
1190 rte_cryptodev_callback_unregister(uint8_t dev_id,
1191                         enum rte_cryptodev_event_type event,
1192                         rte_cryptodev_cb_fn cb_fn, void *cb_arg)
1193 {
1194         int ret;
1195         struct rte_cryptodev *dev;
1196         struct rte_cryptodev_callback *cb, *next;
1197
1198         if (!cb_fn)
1199                 return -EINVAL;
1200
1201         if (!rte_cryptodev_pmd_is_valid_dev(dev_id)) {
1202                 CDEV_LOG_ERR("Invalid dev_id=%" PRIu8, dev_id);
1203                 return -EINVAL;
1204         }
1205
1206         dev = &rte_crypto_devices[dev_id];
1207         rte_spinlock_lock(&rte_cryptodev_cb_lock);
1208
1209         ret = 0;
1210         for (cb = TAILQ_FIRST(&dev->link_intr_cbs); cb != NULL; cb = next) {
1211
1212                 next = TAILQ_NEXT(cb, next);
1213
1214                 if (cb->cb_fn != cb_fn || cb->event != event ||
1215                                 (cb->cb_arg != (void *)-1 &&
1216                                 cb->cb_arg != cb_arg))
1217                         continue;
1218
1219                 /*
1220                  * if this callback is not executing right now,
1221                  * then remove it.
1222                  */
1223                 if (cb->active == 0) {
1224                         TAILQ_REMOVE(&(dev->link_intr_cbs), cb, next);
1225                         rte_free(cb);
1226                 } else {
1227                         ret = -EAGAIN;
1228                 }
1229         }
1230
1231         rte_spinlock_unlock(&rte_cryptodev_cb_lock);
1232         return ret;
1233 }
1234
1235 void
1236 rte_cryptodev_pmd_callback_process(struct rte_cryptodev *dev,
1237         enum rte_cryptodev_event_type event)
1238 {
1239         struct rte_cryptodev_callback *cb_lst;
1240         struct rte_cryptodev_callback dev_cb;
1241
1242         rte_spinlock_lock(&rte_cryptodev_cb_lock);
1243         TAILQ_FOREACH(cb_lst, &(dev->link_intr_cbs), next) {
1244                 if (cb_lst->cb_fn == NULL || cb_lst->event != event)
1245                         continue;
1246                 dev_cb = *cb_lst;
1247                 cb_lst->active = 1;
1248                 rte_spinlock_unlock(&rte_cryptodev_cb_lock);
1249                 dev_cb.cb_fn(dev->data->dev_id, dev_cb.event,
1250                                                 dev_cb.cb_arg);
1251                 rte_spinlock_lock(&rte_cryptodev_cb_lock);
1252                 cb_lst->active = 0;
1253         }
1254         rte_spinlock_unlock(&rte_cryptodev_cb_lock);
1255 }
1256
1257
1258 static void
1259 rte_cryptodev_sym_session_init(struct rte_mempool *mp,
1260                 void *opaque_arg,
1261                 void *_sess,
1262                 __rte_unused unsigned i)
1263 {
1264         struct rte_cryptodev_sym_session *sess = _sess;
1265         struct rte_cryptodev *dev = opaque_arg;
1266
1267         memset(sess, 0, mp->elt_size);
1268
1269         sess->dev_id = dev->data->dev_id;
1270         sess->dev_type = dev->dev_type;
1271         sess->mp = mp;
1272
1273         if (dev->dev_ops->session_initialize)
1274                 (*dev->dev_ops->session_initialize)(mp, sess);
1275 }
1276
1277 static int
1278 rte_cryptodev_sym_session_pool_create(struct rte_cryptodev *dev,
1279                 unsigned nb_objs, unsigned obj_cache_size, int socket_id)
1280 {
1281         char mp_name[RTE_CRYPTODEV_NAME_MAX_LEN];
1282         unsigned priv_sess_size;
1283
1284         unsigned n = snprintf(mp_name, sizeof(mp_name), "cdev_%d_sess_mp",
1285                         dev->data->dev_id);
1286         if (n > sizeof(mp_name)) {
1287                 CDEV_LOG_ERR("Unable to create unique name for session mempool");
1288                 return -ENOMEM;
1289         }
1290
1291         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->session_get_size, -ENOTSUP);
1292         priv_sess_size = (*dev->dev_ops->session_get_size)(dev);
1293         if (priv_sess_size == 0) {
1294                 CDEV_LOG_ERR("%s returned and invalid private session size ",
1295                                                 dev->data->name);
1296                 return -ENOMEM;
1297         }
1298
1299         unsigned elt_size = sizeof(struct rte_cryptodev_sym_session) +
1300                         priv_sess_size;
1301
1302         dev->data->session_pool = rte_mempool_lookup(mp_name);
1303         if (dev->data->session_pool != NULL) {
1304                 if ((dev->data->session_pool->elt_size != elt_size) ||
1305                                 (dev->data->session_pool->cache_size <
1306                                 obj_cache_size) ||
1307                                 (dev->data->session_pool->size < nb_objs)) {
1308
1309                         CDEV_LOG_ERR("%s mempool already exists with different"
1310                                         " initialization parameters", mp_name);
1311                         dev->data->session_pool = NULL;
1312                         return -ENOMEM;
1313                 }
1314         } else {
1315                 dev->data->session_pool = rte_mempool_create(
1316                                 mp_name, /* mempool name */
1317                                 nb_objs, /* number of elements*/
1318                                 elt_size, /* element size*/
1319                                 obj_cache_size, /* Cache size*/
1320                                 0, /* private data size */
1321                                 NULL, /* obj initialization constructor */
1322                                 NULL, /* obj initialization constructor arg */
1323                                 rte_cryptodev_sym_session_init,
1324                                 /**< obj constructor*/
1325                                 dev, /* obj constructor arg */
1326                                 socket_id, /* socket id */
1327                                 0); /* flags */
1328
1329                 if (dev->data->session_pool == NULL) {
1330                         CDEV_LOG_ERR("%s mempool allocation failed", mp_name);
1331                         return -ENOMEM;
1332                 }
1333         }
1334
1335         CDEV_LOG_DEBUG("%s mempool created!", mp_name);
1336         return 0;
1337 }
1338
1339 struct rte_cryptodev_sym_session *
1340 rte_cryptodev_sym_session_create(uint8_t dev_id,
1341                 struct rte_crypto_sym_xform *xform)
1342 {
1343         struct rte_cryptodev *dev;
1344         struct rte_cryptodev_sym_session *sess;
1345         void *_sess;
1346
1347         if (!rte_cryptodev_pmd_is_valid_dev(dev_id)) {
1348                 CDEV_LOG_ERR("Invalid dev_id=%d", dev_id);
1349                 return NULL;
1350         }
1351
1352         dev = &rte_crypto_devices[dev_id];
1353
1354         /* Allocate a session structure from the session pool */
1355         if (rte_mempool_get(dev->data->session_pool, &_sess)) {
1356                 CDEV_LOG_ERR("Couldn't get object from session mempool");
1357                 return NULL;
1358         }
1359
1360         sess = _sess;
1361
1362         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->session_configure, NULL);
1363         if (dev->dev_ops->session_configure(dev, xform, sess->_private) ==
1364                         NULL) {
1365                 CDEV_LOG_ERR("dev_id %d failed to configure session details",
1366                                 dev_id);
1367
1368                 /* Return session to mempool */
1369                 rte_mempool_put(sess->mp, _sess);
1370                 return NULL;
1371         }
1372
1373         return sess;
1374 }
1375
1376 int
1377 rte_cryptodev_queue_pair_attach_sym_session(uint16_t qp_id,
1378                 struct rte_cryptodev_sym_session *sess)
1379 {
1380         struct rte_cryptodev *dev;
1381
1382         if (!rte_cryptodev_pmd_is_valid_dev(sess->dev_id)) {
1383                 CDEV_LOG_ERR("Invalid dev_id=%d", sess->dev_id);
1384                 return -EINVAL;
1385         }
1386
1387         dev = &rte_crypto_devices[sess->dev_id];
1388
1389         /* The API is optional, not returning error if driver do not suuport */
1390         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->qp_attach_session, 0);
1391         if (dev->dev_ops->qp_attach_session(dev, qp_id, sess->_private)) {
1392                 CDEV_LOG_ERR("dev_id %d failed to attach qp: %d with session",
1393                                 sess->dev_id, qp_id);
1394                 return -EPERM;
1395         }
1396
1397         return 0;
1398 }
1399
1400 int
1401 rte_cryptodev_queue_pair_detach_sym_session(uint16_t qp_id,
1402                 struct rte_cryptodev_sym_session *sess)
1403 {
1404         struct rte_cryptodev *dev;
1405
1406         if (!rte_cryptodev_pmd_is_valid_dev(sess->dev_id)) {
1407                 CDEV_LOG_ERR("Invalid dev_id=%d", sess->dev_id);
1408                 return -EINVAL;
1409         }
1410
1411         dev = &rte_crypto_devices[sess->dev_id];
1412
1413         /* The API is optional, not returning error if driver do not suuport */
1414         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->qp_detach_session, 0);
1415         if (dev->dev_ops->qp_detach_session(dev, qp_id, sess->_private)) {
1416                 CDEV_LOG_ERR("dev_id %d failed to detach qp: %d from session",
1417                                 sess->dev_id, qp_id);
1418                 return -EPERM;
1419         }
1420
1421         return 0;
1422 }
1423 struct rte_cryptodev_sym_session *
1424 rte_cryptodev_sym_session_free(uint8_t dev_id,
1425                 struct rte_cryptodev_sym_session *sess)
1426 {
1427         struct rte_cryptodev *dev;
1428
1429         if (!rte_cryptodev_pmd_is_valid_dev(dev_id)) {
1430                 CDEV_LOG_ERR("Invalid dev_id=%d", dev_id);
1431                 return sess;
1432         }
1433
1434         dev = &rte_crypto_devices[dev_id];
1435
1436         /* Check the session belongs to this device type */
1437         if (sess->dev_type != dev->dev_type)
1438                 return sess;
1439
1440         /* Let device implementation clear session material */
1441         RTE_FUNC_PTR_OR_ERR_RET(*dev->dev_ops->session_clear, sess);
1442         dev->dev_ops->session_clear(dev, (void *)sess->_private);
1443
1444         /* Return session to mempool */
1445         rte_mempool_put(sess->mp, (void *)sess);
1446
1447         return NULL;
1448 }
1449
1450 /** Initialise rte_crypto_op mempool element */
1451 static void
1452 rte_crypto_op_init(struct rte_mempool *mempool,
1453                 void *opaque_arg,
1454                 void *_op_data,
1455                 __rte_unused unsigned i)
1456 {
1457         struct rte_crypto_op *op = _op_data;
1458         enum rte_crypto_op_type type = *(enum rte_crypto_op_type *)opaque_arg;
1459
1460         memset(_op_data, 0, mempool->elt_size);
1461
1462         __rte_crypto_op_reset(op, type);
1463
1464         op->phys_addr = rte_mem_virt2phy(_op_data);
1465         op->mempool = mempool;
1466 }
1467
1468
1469 struct rte_mempool *
1470 rte_crypto_op_pool_create(const char *name, enum rte_crypto_op_type type,
1471                 unsigned nb_elts, unsigned cache_size, uint16_t priv_size,
1472                 int socket_id)
1473 {
1474         struct rte_crypto_op_pool_private *priv;
1475
1476         unsigned elt_size = sizeof(struct rte_crypto_op) +
1477                         sizeof(struct rte_crypto_sym_op) +
1478                         priv_size;
1479
1480         /* lookup mempool in case already allocated */
1481         struct rte_mempool *mp = rte_mempool_lookup(name);
1482
1483         if (mp != NULL) {
1484                 priv = (struct rte_crypto_op_pool_private *)
1485                                 rte_mempool_get_priv(mp);
1486
1487                 if (mp->elt_size != elt_size ||
1488                                 mp->cache_size < cache_size ||
1489                                 mp->size < nb_elts ||
1490                                 priv->priv_size <  priv_size) {
1491                         mp = NULL;
1492                         CDEV_LOG_ERR("Mempool %s already exists but with "
1493                                         "incompatible parameters", name);
1494                         return NULL;
1495                 }
1496                 return mp;
1497         }
1498
1499         mp = rte_mempool_create(
1500                         name,
1501                         nb_elts,
1502                         elt_size,
1503                         cache_size,
1504                         sizeof(struct rte_crypto_op_pool_private),
1505                         NULL,
1506                         NULL,
1507                         rte_crypto_op_init,
1508                         &type,
1509                         socket_id,
1510                         0);
1511
1512         if (mp == NULL) {
1513                 CDEV_LOG_ERR("Failed to create mempool %s", name);
1514                 return NULL;
1515         }
1516
1517         priv = (struct rte_crypto_op_pool_private *)
1518                         rte_mempool_get_priv(mp);
1519
1520         priv->priv_size = priv_size;
1521         priv->type = type;
1522
1523         return mp;
1524 }
1525
1526 int
1527 rte_cryptodev_pmd_create_dev_name(char *name, const char *dev_name_prefix)
1528 {
1529         struct rte_cryptodev *dev = NULL;
1530         uint32_t i = 0;
1531
1532         if (name == NULL)
1533                 return -EINVAL;
1534
1535         for (i = 0; i < RTE_CRYPTO_MAX_DEVS; i++) {
1536                 int ret = snprintf(name, RTE_CRYPTODEV_NAME_MAX_LEN,
1537                                 "%s_%u", dev_name_prefix, i);
1538
1539                 if (ret < 0)
1540                         return ret;
1541
1542                 dev = rte_cryptodev_pmd_get_named_dev(name);
1543                 if (!dev)
1544                         return 0;
1545         }
1546
1547         return -1;
1548 }