xref: /dpdk/doc/guides/prog_guide/cryptodev_lib.rst (revision 3d4b2afb73f7f0988f8e66ba1b37f2a446e33868)
15630257fSFerruh Yigit..  SPDX-License-Identifier: BSD-3-Clause
27adf992fSMarcin Smoczynski    Copyright(c) 2016-2020 Intel Corporation.
30318c02bSDeclan Doherty
40318c02bSDeclan DohertyCryptography Device Library
50318c02bSDeclan Doherty===========================
60318c02bSDeclan Doherty
70318c02bSDeclan DohertyThe cryptodev library provides a Crypto device framework for management and
80318c02bSDeclan Dohertyprovisioning of hardware and software Crypto poll mode drivers, defining generic
90318c02bSDeclan DohertyAPIs which support a number of different Crypto operations. The framework
100318c02bSDeclan Dohertycurrently only supports cipher, authentication, chained cipher/authentication
11b9209dc2SShally Vermaand AEAD symmetric and asymmetric Crypto operations.
120318c02bSDeclan Doherty
130318c02bSDeclan Doherty
140318c02bSDeclan DohertyDesign Principles
150318c02bSDeclan Doherty-----------------
160318c02bSDeclan Doherty
17d629b7b5SJohn McNamaraThe cryptodev library follows the same basic principles as those used in DPDK's
180318c02bSDeclan DohertyEthernet Device framework. The Crypto framework provides a generic Crypto device
190318c02bSDeclan Dohertyframework which supports both physical (hardware) and virtual (software) Crypto
200318c02bSDeclan Dohertydevices as well as a generic Crypto API which allows Crypto devices to be
210318c02bSDeclan Dohertymanaged and configured and supports Crypto operations to be provisioned on
220318c02bSDeclan DohertyCrypto poll mode driver.
230318c02bSDeclan Doherty
240318c02bSDeclan Doherty
250318c02bSDeclan DohertyDevice Management
260318c02bSDeclan Doherty-----------------
270318c02bSDeclan Doherty
280318c02bSDeclan DohertyDevice Creation
290318c02bSDeclan Doherty~~~~~~~~~~~~~~~
300318c02bSDeclan Doherty
310318c02bSDeclan DohertyPhysical Crypto devices are discovered during the PCI probe/enumeration of the
320318c02bSDeclan DohertyEAL function which is executed at DPDK initialization, based on
330318c02bSDeclan Dohertytheir PCI device identifier, each unique PCI BDF (bus/bridge, device,
340318c02bSDeclan Dohertyfunction). Specific physical Crypto devices, like other physical devices in DPDK
350318c02bSDeclan Dohertycan be white-listed or black-listed using the EAL command line options.
360318c02bSDeclan Doherty
370318c02bSDeclan DohertyVirtual devices can be created by two mechanisms, either using the EAL command
380318c02bSDeclan Dohertyline options or from within the application using an EAL API directly.
390318c02bSDeclan Doherty
400318c02bSDeclan DohertyFrom the command line using the --vdev EAL option
410318c02bSDeclan Doherty
420318c02bSDeclan Doherty.. code-block:: console
430318c02bSDeclan Doherty
44e1fc5b76SPablo de Lara   --vdev  'crypto_aesni_mb0,max_nb_queue_pairs=2,socket_id=0'
450318c02bSDeclan Doherty
46c149818bSVipin Varghese.. Note::
47c149818bSVipin Varghese
48c149818bSVipin Varghese   * If DPDK application requires multiple software crypto PMD devices then required
49c149818bSVipin Varghese     number of ``--vdev`` with appropriate libraries are to be added.
50c149818bSVipin Varghese
51d629b7b5SJohn McNamara   * An Application with crypto PMD instances sharing the same library requires unique ID.
52c149818bSVipin Varghese
53c149818bSVipin Varghese   Example: ``--vdev  'crypto_aesni_mb0' --vdev  'crypto_aesni_mb1'``
54c149818bSVipin Varghese
558b283e90SThierry HerbelotOr using the rte_vdev_init API within the application code.
560318c02bSDeclan Doherty
570318c02bSDeclan Doherty.. code-block:: c
580318c02bSDeclan Doherty
5930883f3eSPablo de Lara   rte_vdev_init("crypto_aesni_mb",
60e1fc5b76SPablo de Lara                     "max_nb_queue_pairs=2,socket_id=0")
610318c02bSDeclan Doherty
620318c02bSDeclan DohertyAll virtual Crypto devices support the following initialization parameters:
630318c02bSDeclan Doherty
640318c02bSDeclan Doherty* ``max_nb_queue_pairs`` - maximum number of queue pairs supported by the device.
650318c02bSDeclan Doherty* ``socket_id`` - socket on which to allocate the device resources on.
660318c02bSDeclan Doherty
670318c02bSDeclan Doherty
680318c02bSDeclan DohertyDevice Identification
690318c02bSDeclan Doherty~~~~~~~~~~~~~~~~~~~~~
700318c02bSDeclan Doherty
710318c02bSDeclan DohertyEach device, whether virtual or physical is uniquely designated by two
720318c02bSDeclan Dohertyidentifiers:
730318c02bSDeclan Doherty
740318c02bSDeclan Doherty- A unique device index used to designate the Crypto device in all functions
750318c02bSDeclan Doherty  exported by the cryptodev API.
760318c02bSDeclan Doherty
770318c02bSDeclan Doherty- A device name used to designate the Crypto device in console messages, for
780318c02bSDeclan Doherty  administration or debugging purposes. For ease of use, the port name includes
790318c02bSDeclan Doherty  the port index.
800318c02bSDeclan Doherty
810318c02bSDeclan Doherty
820318c02bSDeclan DohertyDevice Configuration
830318c02bSDeclan Doherty~~~~~~~~~~~~~~~~~~~~
840318c02bSDeclan Doherty
850318c02bSDeclan DohertyThe configuration of each Crypto device includes the following operations:
860318c02bSDeclan Doherty
870318c02bSDeclan Doherty- Allocation of resources, including hardware resources if a physical device.
880318c02bSDeclan Doherty- Resetting the device into a well-known default state.
890318c02bSDeclan Doherty- Initialization of statistics counters.
900318c02bSDeclan Doherty
910318c02bSDeclan DohertyThe rte_cryptodev_configure API is used to configure a Crypto device.
920318c02bSDeclan Doherty
930318c02bSDeclan Doherty.. code-block:: c
940318c02bSDeclan Doherty
950318c02bSDeclan Doherty   int rte_cryptodev_configure(uint8_t dev_id,
960318c02bSDeclan Doherty                               struct rte_cryptodev_config *config)
970318c02bSDeclan Doherty
98bb59dac7SPablo de LaraThe ``rte_cryptodev_config`` structure is used to pass the configuration
99bb59dac7SPablo de Laraparameters for socket selection and number of queue pairs.
1000318c02bSDeclan Doherty
1010318c02bSDeclan Doherty.. code-block:: c
1020318c02bSDeclan Doherty
1030318c02bSDeclan Doherty    struct rte_cryptodev_config {
1040318c02bSDeclan Doherty        int socket_id;
1050318c02bSDeclan Doherty        /**< Socket to allocate resources on */
1060318c02bSDeclan Doherty        uint16_t nb_queue_pairs;
1070318c02bSDeclan Doherty        /**< Number of queue pairs to configure on device */
1080318c02bSDeclan Doherty    };
1090318c02bSDeclan Doherty
1100318c02bSDeclan Doherty
1110318c02bSDeclan DohertyConfiguration of Queue Pairs
1120318c02bSDeclan Doherty~~~~~~~~~~~~~~~~~~~~~~~~~~~~
1130318c02bSDeclan Doherty
1140318c02bSDeclan DohertyEach Crypto devices queue pair is individually configured through the
1150318c02bSDeclan Doherty``rte_cryptodev_queue_pair_setup`` API.
1160318c02bSDeclan DohertyEach queue pairs resources may be allocated on a specified socket.
1170318c02bSDeclan Doherty
1180318c02bSDeclan Doherty.. code-block:: c
1190318c02bSDeclan Doherty
1200318c02bSDeclan Doherty    int rte_cryptodev_queue_pair_setup(uint8_t dev_id, uint16_t queue_pair_id,
1210318c02bSDeclan Doherty                const struct rte_cryptodev_qp_conf *qp_conf,
1220318c02bSDeclan Doherty                int socket_id)
1230318c02bSDeclan Doherty
1240318c02bSDeclan Doherty   struct rte_cryptodev_qp_conf {
1250318c02bSDeclan Doherty        uint32_t nb_descriptors; /**< Number of descriptors per queue pair */
126725d2a7fSFan Zhang        struct rte_mempool *mp_session;
127725d2a7fSFan Zhang        /**< The mempool for creating session in sessionless mode */
128725d2a7fSFan Zhang        struct rte_mempool *mp_session_private;
129725d2a7fSFan Zhang        /**< The mempool for creating sess private data in sessionless mode */
1300318c02bSDeclan Doherty    };
1310318c02bSDeclan Doherty
1320318c02bSDeclan Doherty
133725d2a7fSFan ZhangThe fields ``mp_session`` and ``mp_session_private`` are used for creating
134725d2a7fSFan Zhangtemporary session to process the crypto operations in the session-less mode.
135725d2a7fSFan ZhangThey can be the same other different mempools. Please note not all Cryptodev
136725d2a7fSFan ZhangPMDs supports session-less mode.
137725d2a7fSFan Zhang
138725d2a7fSFan Zhang
1390318c02bSDeclan DohertyLogical Cores, Memory and Queues Pair Relationships
1400318c02bSDeclan Doherty~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
1410318c02bSDeclan Doherty
1420318c02bSDeclan DohertyThe Crypto device Library as the Poll Mode Driver library support NUMA for when
1430318c02bSDeclan Dohertya processor’s logical cores and interfaces utilize its local memory. Therefore
1440318c02bSDeclan DohertyCrypto operations, and in the case of symmetric Crypto operations, the session
1450318c02bSDeclan Dohertyand the mbuf being operated on, should be allocated from memory pools created
1460318c02bSDeclan Dohertyin the local memory. The buffers should, if possible, remain on the local
1470318c02bSDeclan Dohertyprocessor to obtain the best performance results and buffer descriptors should
1480318c02bSDeclan Dohertybe populated with mbufs allocated from a mempool allocated from local memory.
1490318c02bSDeclan Doherty
1500318c02bSDeclan DohertyThe run-to-completion model also performs better, especially in the case of
1510318c02bSDeclan Dohertyvirtual Crypto devices, if the Crypto operation and session and data buffer is
1520318c02bSDeclan Dohertyin local memory instead of a remote processor's memory. This is also true for
1530318c02bSDeclan Dohertythe pipe-line model provided all logical cores used are located on the same
1540318c02bSDeclan Dohertyprocessor.
1550318c02bSDeclan Doherty
1560318c02bSDeclan DohertyMultiple logical cores should never share the same queue pair for enqueuing
1570318c02bSDeclan Dohertyoperations or dequeuing operations on the same Crypto device since this would
1580318c02bSDeclan Dohertyrequire global locks and hinder performance. It is however possible to use a
1590318c02bSDeclan Dohertydifferent logical core to dequeue an operation on a queue pair from the logical
1600318c02bSDeclan Dohertycore which it was enqueued on. This means that a crypto burst enqueue/dequeue
1610318c02bSDeclan DohertyAPIs are a logical place to transition from one logical core to another in a
1620318c02bSDeclan Dohertypacket processing pipeline.
1630318c02bSDeclan Doherty
1640318c02bSDeclan Doherty
1650318c02bSDeclan DohertyDevice Features and Capabilities
1660318c02bSDeclan Doherty---------------------------------
1670318c02bSDeclan Doherty
1680318c02bSDeclan DohertyCrypto devices define their functionality through two mechanisms, global device
1690318c02bSDeclan Dohertyfeatures and algorithm capabilities. Global devices features identify device
1700318c02bSDeclan Dohertywide level features which are applicable to the whole device such as
171b9209dc2SShally Vermathe device having hardware acceleration or supporting symmetric and/or asymmetric
172b9209dc2SShally VermaCrypto operations.
1730318c02bSDeclan Doherty
1740318c02bSDeclan DohertyThe capabilities mechanism defines the individual algorithms/functions which
17583984b7fSPablo de Larathe device supports, such as a specific symmetric Crypto cipher,
17683984b7fSPablo de Laraauthentication operation or Authenticated Encryption with Associated Data
17783984b7fSPablo de Lara(AEAD) operation.
1780318c02bSDeclan Doherty
1790318c02bSDeclan Doherty
1800318c02bSDeclan DohertyDevice Features
1810318c02bSDeclan Doherty~~~~~~~~~~~~~~~
1820318c02bSDeclan Doherty
1830318c02bSDeclan DohertyCurrently the following Crypto device features are defined:
1840318c02bSDeclan Doherty
1850318c02bSDeclan Doherty* Symmetric Crypto operations
1860318c02bSDeclan Doherty* Asymmetric Crypto operations
1870318c02bSDeclan Doherty* Chaining of symmetric Crypto operations
1880318c02bSDeclan Doherty* SSE accelerated SIMD vector operations
1890318c02bSDeclan Doherty* AVX accelerated SIMD vector operations
1900318c02bSDeclan Doherty* AVX2 accelerated SIMD vector operations
1910318c02bSDeclan Doherty* AESNI accelerated instructions
1920318c02bSDeclan Doherty* Hardware off-load processing
1930318c02bSDeclan Doherty
1940318c02bSDeclan Doherty
1950318c02bSDeclan DohertyDevice Operation Capabilities
1960318c02bSDeclan Doherty~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
1970318c02bSDeclan Doherty
1980318c02bSDeclan DohertyCrypto capabilities which identify particular algorithm which the Crypto PMD
1990318c02bSDeclan Dohertysupports are  defined by the operation type, the operation transform, the
2000318c02bSDeclan Dohertytransform identifier and then the particulars of the transform. For the full
2010318c02bSDeclan Dohertyscope of the Crypto capability see the definition of the structure in the
2020318c02bSDeclan Doherty*DPDK API Reference*.
2030318c02bSDeclan Doherty
2040318c02bSDeclan Doherty.. code-block:: c
2050318c02bSDeclan Doherty
2060318c02bSDeclan Doherty   struct rte_cryptodev_capabilities;
2070318c02bSDeclan Doherty
2080318c02bSDeclan DohertyEach Crypto poll mode driver defines its own private array of capabilities
2090318c02bSDeclan Dohertyfor the operations it supports. Below is an example of the capabilities for a
2100318c02bSDeclan DohertyPMD which supports the authentication algorithm SHA1_HMAC and the cipher
2110318c02bSDeclan Dohertyalgorithm AES_CBC.
2120318c02bSDeclan Doherty
2130318c02bSDeclan Doherty.. code-block:: c
2140318c02bSDeclan Doherty
2150318c02bSDeclan Doherty    static const struct rte_cryptodev_capabilities pmd_capabilities[] = {
2160318c02bSDeclan Doherty        {    /* SHA1 HMAC */
2170318c02bSDeclan Doherty            .op = RTE_CRYPTO_OP_TYPE_SYMMETRIC,
2180318c02bSDeclan Doherty            .sym = {
2190318c02bSDeclan Doherty                .xform_type = RTE_CRYPTO_SYM_XFORM_AUTH,
2200318c02bSDeclan Doherty                .auth = {
2210318c02bSDeclan Doherty                    .algo = RTE_CRYPTO_AUTH_SHA1_HMAC,
2220318c02bSDeclan Doherty                    .block_size = 64,
2230318c02bSDeclan Doherty                    .key_size = {
2240318c02bSDeclan Doherty                        .min = 64,
2250318c02bSDeclan Doherty                        .max = 64,
2260318c02bSDeclan Doherty                        .increment = 0
2270318c02bSDeclan Doherty                    },
2280318c02bSDeclan Doherty                    .digest_size = {
2290318c02bSDeclan Doherty                        .min = 12,
2300318c02bSDeclan Doherty                        .max = 12,
2310318c02bSDeclan Doherty                        .increment = 0
2320318c02bSDeclan Doherty                    },
233acf86169SPablo de Lara                    .aad_size = { 0 },
234acf86169SPablo de Lara                    .iv_size = { 0 }
2350318c02bSDeclan Doherty                }
2360318c02bSDeclan Doherty            }
2370318c02bSDeclan Doherty        },
2380318c02bSDeclan Doherty        {    /* AES CBC */
2390318c02bSDeclan Doherty            .op = RTE_CRYPTO_OP_TYPE_SYMMETRIC,
2400318c02bSDeclan Doherty            .sym = {
2410318c02bSDeclan Doherty                .xform_type = RTE_CRYPTO_SYM_XFORM_CIPHER,
2420318c02bSDeclan Doherty                .cipher = {
2430318c02bSDeclan Doherty                    .algo = RTE_CRYPTO_CIPHER_AES_CBC,
2440318c02bSDeclan Doherty                    .block_size = 16,
2450318c02bSDeclan Doherty                    .key_size = {
2460318c02bSDeclan Doherty                        .min = 16,
2470318c02bSDeclan Doherty                        .max = 32,
2480318c02bSDeclan Doherty                        .increment = 8
2490318c02bSDeclan Doherty                    },
2500318c02bSDeclan Doherty                    .iv_size = {
2510318c02bSDeclan Doherty                        .min = 16,
2520318c02bSDeclan Doherty                        .max = 16,
2530318c02bSDeclan Doherty                        .increment = 0
2540318c02bSDeclan Doherty                    }
2550318c02bSDeclan Doherty                }
2560318c02bSDeclan Doherty            }
2570318c02bSDeclan Doherty        }
2580318c02bSDeclan Doherty    }
2590318c02bSDeclan Doherty
2600318c02bSDeclan Doherty
2610318c02bSDeclan DohertyCapabilities Discovery
2620318c02bSDeclan Doherty~~~~~~~~~~~~~~~~~~~~~~
2630318c02bSDeclan Doherty
2640318c02bSDeclan DohertyDiscovering the features and capabilities of a Crypto device poll mode driver
2650318c02bSDeclan Dohertyis achieved through the ``rte_cryptodev_info_get`` function.
2660318c02bSDeclan Doherty
2670318c02bSDeclan Doherty.. code-block:: c
2680318c02bSDeclan Doherty
2690318c02bSDeclan Doherty   void rte_cryptodev_info_get(uint8_t dev_id,
2700318c02bSDeclan Doherty                               struct rte_cryptodev_info *dev_info);
2710318c02bSDeclan Doherty
2720318c02bSDeclan DohertyThis allows the user to query a specific Crypto PMD and get all the device
2730318c02bSDeclan Dohertyfeatures and capabilities. The ``rte_cryptodev_info`` structure contains all the
2740318c02bSDeclan Dohertyrelevant information for the device.
2750318c02bSDeclan Doherty
2760318c02bSDeclan Doherty.. code-block:: c
2770318c02bSDeclan Doherty
2780318c02bSDeclan Doherty    struct rte_cryptodev_info {
2790318c02bSDeclan Doherty        const char *driver_name;
2807a364faeSSlawomir Mrozowicz        uint8_t driver_id;
281a4493be5SPablo de Lara        struct rte_device *device;
2820318c02bSDeclan Doherty
2830318c02bSDeclan Doherty        uint64_t feature_flags;
2840318c02bSDeclan Doherty
2850318c02bSDeclan Doherty        const struct rte_cryptodev_capabilities *capabilities;
2860318c02bSDeclan Doherty
2870318c02bSDeclan Doherty        unsigned max_nb_queue_pairs;
2880318c02bSDeclan Doherty
2890318c02bSDeclan Doherty        struct {
2900318c02bSDeclan Doherty            unsigned max_nb_sessions;
2910318c02bSDeclan Doherty        } sym;
2920318c02bSDeclan Doherty    };
2930318c02bSDeclan Doherty
2940318c02bSDeclan Doherty
2950318c02bSDeclan DohertyOperation Processing
2960318c02bSDeclan Doherty--------------------
2970318c02bSDeclan Doherty
2980318c02bSDeclan DohertyScheduling of Crypto operations on DPDK's application data path is
2990318c02bSDeclan Dohertyperformed using a burst oriented asynchronous API set. A queue pair on a Crypto
3000318c02bSDeclan Dohertydevice accepts a burst of Crypto operations using enqueue burst API. On physical
3010318c02bSDeclan DohertyCrypto devices the enqueue burst API will place the operations to be processed
3020318c02bSDeclan Dohertyon the devices hardware input queue, for virtual devices the processing of the
3030318c02bSDeclan DohertyCrypto operations is usually completed during the enqueue call to the Crypto
3040318c02bSDeclan Dohertydevice. The dequeue burst API will retrieve any processed operations available
3050318c02bSDeclan Dohertyfrom the queue pair on the Crypto device, from physical devices this is usually
3060318c02bSDeclan Dohertydirectly from the devices processed queue, and for virtual device's from a
3076b1a74efSThierry Herbelot``rte_ring`` where processed operations are placed after being processed on the
3080318c02bSDeclan Dohertyenqueue call.
3090318c02bSDeclan Doherty
3100318c02bSDeclan Doherty
311fe84aaeeSAbhinandan GujjarPrivate data
312fe84aaeeSAbhinandan Gujjar~~~~~~~~~~~~
313fe84aaeeSAbhinandan GujjarFor session-based operations, the set and get API provides a mechanism for an
3142d349f60SFiona Traheapplication to store and retrieve the private user data information stored along
3152d349f60SFiona Trahewith the crypto session.
316fe84aaeeSAbhinandan Gujjar
317fe84aaeeSAbhinandan GujjarFor example, suppose an application is submitting a crypto operation with a session
3182d349f60SFiona Traheassociated and wants to indicate private user data information which is required to be
319fe84aaeeSAbhinandan Gujjarused after completion of the crypto operation. In this case, the application can use
3202d349f60SFiona Trahethe set API to set the user data and retrieve it using get API.
321fe84aaeeSAbhinandan Gujjar
322fe84aaeeSAbhinandan Gujjar.. code-block:: c
323fe84aaeeSAbhinandan Gujjar
3242d349f60SFiona Trahe	int rte_cryptodev_sym_session_set_user_data(
325fe84aaeeSAbhinandan Gujjar		struct rte_cryptodev_sym_session *sess,	void *data, uint16_t size);
326fe84aaeeSAbhinandan Gujjar
3272d349f60SFiona Trahe	void * rte_cryptodev_sym_session_get_user_data(
328fe84aaeeSAbhinandan Gujjar		struct rte_cryptodev_sym_session *sess);
329fe84aaeeSAbhinandan Gujjar
3309e5f5ecbSFan ZhangPlease note the ``size`` passed to set API cannot be bigger than the predefined
3319e5f5ecbSFan Zhang``user_data_sz`` when creating the session header mempool, otherwise the
3329e5f5ecbSFan Zhangfunction will return error. Also when ``user_data_sz`` was defined as ``0`` when
3339e5f5ecbSFan Zhangcreating the session header mempool, the get API will always return ``NULL``.
334fe84aaeeSAbhinandan Gujjar
3352d349f60SFiona TraheFor session-less mode, the private user data information can be placed along with the
336fe84aaeeSAbhinandan Gujjar``struct rte_crypto_op``. The ``rte_crypto_op::private_data_offset`` indicates the
337fe84aaeeSAbhinandan Gujjarstart of private data information. The offset is counted from the start of the
338fe84aaeeSAbhinandan Gujjarrte_crypto_op including other crypto information such as the IVs (since there can
339fe84aaeeSAbhinandan Gujjarbe an IV also for authentication).
340fe84aaeeSAbhinandan Gujjar
341fe84aaeeSAbhinandan Gujjar
3420318c02bSDeclan DohertyEnqueue / Dequeue Burst APIs
3430318c02bSDeclan Doherty~~~~~~~~~~~~~~~~~~~~~~~~~~~~
3440318c02bSDeclan Doherty
3450318c02bSDeclan DohertyThe burst enqueue API uses a Crypto device identifier and a queue pair
3460318c02bSDeclan Dohertyidentifier to specify the Crypto device queue pair to schedule the processing on.
3470318c02bSDeclan DohertyThe ``nb_ops`` parameter is the number of operations to process which are
3480318c02bSDeclan Dohertysupplied in the ``ops`` array of ``rte_crypto_op`` structures.
3490318c02bSDeclan DohertyThe enqueue function returns the number of operations it actually enqueued for
3500318c02bSDeclan Dohertyprocessing, a return value equal to ``nb_ops`` means that all packets have been
3510318c02bSDeclan Dohertyenqueued.
3520318c02bSDeclan Doherty
3530318c02bSDeclan Doherty.. code-block:: c
3540318c02bSDeclan Doherty
3550318c02bSDeclan Doherty   uint16_t rte_cryptodev_enqueue_burst(uint8_t dev_id, uint16_t qp_id,
3560318c02bSDeclan Doherty                                        struct rte_crypto_op **ops, uint16_t nb_ops)
3570318c02bSDeclan Doherty
3580318c02bSDeclan DohertyThe dequeue API uses the same format as the enqueue API of processed but
3590318c02bSDeclan Dohertythe ``nb_ops`` and ``ops`` parameters are now used to specify the max processed
3600318c02bSDeclan Dohertyoperations the user wishes to retrieve and the location in which to store them.
3610318c02bSDeclan DohertyThe API call returns the actual number of processed operations returned, this
3620318c02bSDeclan Dohertycan never be larger than ``nb_ops``.
3630318c02bSDeclan Doherty
3640318c02bSDeclan Doherty.. code-block:: c
3650318c02bSDeclan Doherty
3660318c02bSDeclan Doherty   uint16_t rte_cryptodev_dequeue_burst(uint8_t dev_id, uint16_t qp_id,
3670318c02bSDeclan Doherty                                        struct rte_crypto_op **ops, uint16_t nb_ops)
3680318c02bSDeclan Doherty
3690318c02bSDeclan Doherty
3700318c02bSDeclan DohertyOperation Representation
3710318c02bSDeclan Doherty~~~~~~~~~~~~~~~~~~~~~~~~
3720318c02bSDeclan Doherty
3730318c02bSDeclan DohertyAn Crypto operation is represented by an rte_crypto_op structure, which is a
3740318c02bSDeclan Dohertygeneric metadata container for all necessary information required for the
3750318c02bSDeclan DohertyCrypto operation to be processed on a particular Crypto device poll mode driver.
3760318c02bSDeclan Doherty
3770318c02bSDeclan Doherty.. figure:: img/crypto_op.*
3780318c02bSDeclan Doherty
3795209df0dSPablo de LaraThe operation structure includes the operation type, the operation status
3805209df0dSPablo de Laraand the session type (session-based/less), a reference to the operation
3815209df0dSPablo de Laraspecific data, which can vary in size and content depending on the operation
3825209df0dSPablo de Larabeing provisioned. It also contains the source mempool for the operation,
383b1f6192bSPablo de Laraif it allocated from a mempool.
3840318c02bSDeclan Doherty
3850318c02bSDeclan DohertyIf Crypto operations are allocated from a Crypto operation mempool, see next
3860318c02bSDeclan Dohertysection, there is also the ability to allocate private memory with the
3870318c02bSDeclan Dohertyoperation for applications purposes.
3880318c02bSDeclan Doherty
3890318c02bSDeclan DohertyApplication software is responsible for specifying all the operation specific
3900318c02bSDeclan Dohertyfields in the ``rte_crypto_op`` structure which are then used by the Crypto PMD
3910318c02bSDeclan Dohertyto process the requested operation.
3920318c02bSDeclan Doherty
3930318c02bSDeclan Doherty
3940318c02bSDeclan DohertyOperation Management and Allocation
3950318c02bSDeclan Doherty~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
3960318c02bSDeclan Doherty
3970318c02bSDeclan DohertyThe cryptodev library provides an API set for managing Crypto operations which
3980318c02bSDeclan Dohertyutilize the Mempool Library to allocate operation buffers. Therefore, it ensures
399d629b7b5SJohn McNamarathat the crypto operation is interleaved optimally across the channels and
4000318c02bSDeclan Dohertyranks for optimal processing.
4010318c02bSDeclan DohertyA ``rte_crypto_op`` contains a field indicating the pool that it originated from.
4020318c02bSDeclan DohertyWhen calling ``rte_crypto_op_free(op)``, the operation returns to its original pool.
4030318c02bSDeclan Doherty
4040318c02bSDeclan Doherty.. code-block:: c
4050318c02bSDeclan Doherty
4060318c02bSDeclan Doherty   extern struct rte_mempool *
4070318c02bSDeclan Doherty   rte_crypto_op_pool_create(const char *name, enum rte_crypto_op_type type,
4080318c02bSDeclan Doherty                             unsigned nb_elts, unsigned cache_size, uint16_t priv_size,
4090318c02bSDeclan Doherty                             int socket_id);
4100318c02bSDeclan Doherty
4110318c02bSDeclan DohertyDuring pool creation ``rte_crypto_op_init()`` is called as a constructor to
4120318c02bSDeclan Dohertyinitialize each Crypto operation which subsequently calls
4130318c02bSDeclan Doherty``__rte_crypto_op_reset()`` to configure any operation type specific fields based
4140318c02bSDeclan Dohertyon the type parameter.
4150318c02bSDeclan Doherty
4160318c02bSDeclan Doherty
4170318c02bSDeclan Doherty``rte_crypto_op_alloc()`` and ``rte_crypto_op_bulk_alloc()`` are used to allocate
4180318c02bSDeclan DohertyCrypto operations of a specific type from a given Crypto operation mempool.
4190318c02bSDeclan Doherty``__rte_crypto_op_reset()`` is called on each operation before being returned to
4200318c02bSDeclan Dohertyallocate to a user so the operation is always in a good known state before use
4210318c02bSDeclan Dohertyby the application.
4220318c02bSDeclan Doherty
4230318c02bSDeclan Doherty.. code-block:: c
4240318c02bSDeclan Doherty
4250318c02bSDeclan Doherty   struct rte_crypto_op *rte_crypto_op_alloc(struct rte_mempool *mempool,
4260318c02bSDeclan Doherty                                             enum rte_crypto_op_type type)
4270318c02bSDeclan Doherty
4280318c02bSDeclan Doherty   unsigned rte_crypto_op_bulk_alloc(struct rte_mempool *mempool,
4290318c02bSDeclan Doherty                                     enum rte_crypto_op_type type,
4300318c02bSDeclan Doherty                                     struct rte_crypto_op **ops, uint16_t nb_ops)
4310318c02bSDeclan Doherty
4320318c02bSDeclan Doherty``rte_crypto_op_free()`` is called by the application to return an operation to
4330318c02bSDeclan Dohertyits allocating pool.
4340318c02bSDeclan Doherty
4350318c02bSDeclan Doherty.. code-block:: c
4360318c02bSDeclan Doherty
4370318c02bSDeclan Doherty   void rte_crypto_op_free(struct rte_crypto_op *op)
4380318c02bSDeclan Doherty
4390318c02bSDeclan Doherty
4400318c02bSDeclan DohertySymmetric Cryptography Support
4410318c02bSDeclan Doherty------------------------------
4420318c02bSDeclan Doherty
4430318c02bSDeclan DohertyThe cryptodev library currently provides support for the following symmetric
4440318c02bSDeclan DohertyCrypto operations; cipher, authentication, including chaining of these
4450318c02bSDeclan Dohertyoperations, as well as also supporting AEAD operations.
4460318c02bSDeclan Doherty
4470318c02bSDeclan Doherty
4480318c02bSDeclan DohertySession and Session Management
449e3346dfcSPablo de Lara~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
4500318c02bSDeclan Doherty
451bb59dac7SPablo de LaraSessions are used in symmetric cryptographic processing to store the immutable
4520318c02bSDeclan Dohertydata defined in a cryptographic transform which is used in the operation
4530318c02bSDeclan Dohertyprocessing of a packet flow. Sessions are used to manage information such as
4540318c02bSDeclan Dohertyexpand cipher keys and HMAC IPADs and OPADs, which need to be calculated for a
4550318c02bSDeclan Dohertyparticular Crypto operation, but are immutable on a packet to packet basis for
4560318c02bSDeclan Dohertya flow. Crypto sessions cache this immutable data in a optimal way for the
4570318c02bSDeclan Dohertyunderlying PMD and this allows further acceleration of the offload of
4580318c02bSDeclan DohertyCrypto workloads.
4590318c02bSDeclan Doherty
4600318c02bSDeclan Doherty.. figure:: img/cryptodev_sym_sess.*
4610318c02bSDeclan Doherty
4621d6f8988SFan ZhangThe Crypto device framework provides APIs to create session mempool and allocate
4631d6f8988SFan Zhangand initialize sessions for crypto devices, where sessions are mempool objects.
4641d6f8988SFan ZhangThe application has to use ``rte_cryptodev_sym_session_pool_create()`` to
4651d6f8988SFan Zhangcreate the session header mempool that creates a mempool with proper element
4661d6f8988SFan Zhangsize automatically and stores necessary information for safely accessing the
4671d6f8988SFan Zhangsession in the mempool's private data field.
4680318c02bSDeclan Doherty
4691d6f8988SFan ZhangTo create a mempool for storing session private data, the application has two
4701d6f8988SFan Zhangoptions. The first is to create another mempool with elt size equal to or
4711d6f8988SFan Zhangbigger than the maximum session private data size of all crypto devices that
4721d6f8988SFan Zhangwill share the same session header. The creation of the mempool shall use the
4731d6f8988SFan Zhangtraditional ``rte_mempool_create()`` with the correct ``elt_size``. The other
4741d6f8988SFan Zhangoption is to change the ``elt_size`` parameter in
4751d6f8988SFan Zhang``rte_cryptodev_sym_session_pool_create()`` to the correct value. The first
4761d6f8988SFan Zhangoption is more complex to implement but may result in better memory usage as
4771d6f8988SFan Zhanga session header normally takes smaller memory footprint as the session private
4781d6f8988SFan Zhangdata.
4790318c02bSDeclan Doherty
480bb59dac7SPablo de LaraOnce the session mempools have been created, ``rte_cryptodev_sym_session_create()``
481bb59dac7SPablo de Larais used to allocate an uninitialized session from the given mempool.
482bb59dac7SPablo de LaraThe session then must be initialized using ``rte_cryptodev_sym_session_init()``
483bb59dac7SPablo de Larafor each of the required crypto devices. A symmetric transform chain
484bb59dac7SPablo de Larais used to specify the operation and its parameters. See the section below for
485bb59dac7SPablo de Laradetails on transforms.
4860318c02bSDeclan Doherty
487bb59dac7SPablo de LaraWhen a session is no longer used, user must call ``rte_cryptodev_sym_session_clear()``
488bb59dac7SPablo de Larafor each of the crypto devices that are using the session, to free all driver
489bb59dac7SPablo de Laraprivate session data. Once this is done, session should be freed using
490bb59dac7SPablo de Lara``rte_cryptodev_sym_session_free`` which returns them to their mempool.
4910318c02bSDeclan Doherty
4920318c02bSDeclan Doherty
4930318c02bSDeclan DohertyTransforms and Transform Chaining
4940318c02bSDeclan Doherty~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
4950318c02bSDeclan Doherty
4960318c02bSDeclan DohertySymmetric Crypto transforms (``rte_crypto_sym_xform``) are the mechanism used
4970318c02bSDeclan Dohertyto specify the details of the Crypto operation. For chaining of symmetric
4980318c02bSDeclan Dohertyoperations such as cipher encrypt and authentication generate, the next pointer
4990318c02bSDeclan Dohertyallows transform to be chained together. Crypto devices which support chaining
50048903a79SFiona Trahemust publish the chaining of symmetric Crypto operations feature flag. Allocation of the
501f43d3dbbSDavid Marchandxform structure is in the application domain. To allow future API extensions in a
50248903a79SFiona Trahebackwardly compatible manner, e.g. addition of a new parameter, the application should
50348903a79SFiona Trahezero the full xform struct before populating it.
5040318c02bSDeclan Doherty
50583984b7fSPablo de LaraCurrently there are three transforms types cipher, authentication and AEAD.
50683984b7fSPablo de LaraAlso it is important to note that the order in which the
5070318c02bSDeclan Dohertytransforms are passed indicates the order of the chaining.
5080318c02bSDeclan Doherty
5090318c02bSDeclan Doherty.. code-block:: c
5100318c02bSDeclan Doherty
5110318c02bSDeclan Doherty    struct rte_crypto_sym_xform {
5120318c02bSDeclan Doherty        struct rte_crypto_sym_xform *next;
5130318c02bSDeclan Doherty        /**< next xform in chain */
5140318c02bSDeclan Doherty        enum rte_crypto_sym_xform_type type;
5150318c02bSDeclan Doherty        /**< xform type */
5160318c02bSDeclan Doherty        union {
5170318c02bSDeclan Doherty            struct rte_crypto_auth_xform auth;
5180318c02bSDeclan Doherty            /**< Authentication / hash xform */
5190318c02bSDeclan Doherty            struct rte_crypto_cipher_xform cipher;
5200318c02bSDeclan Doherty            /**< Cipher xform */
52183984b7fSPablo de Lara            struct rte_crypto_aead_xform aead;
52283984b7fSPablo de Lara            /**< AEAD xform */
5230318c02bSDeclan Doherty        };
5240318c02bSDeclan Doherty    };
5250318c02bSDeclan Doherty
5260318c02bSDeclan DohertyThe API does not place a limit on the number of transforms that can be chained
5270318c02bSDeclan Dohertytogether but this will be limited by the underlying Crypto device poll mode
5280318c02bSDeclan Dohertydriver which is processing the operation.
5290318c02bSDeclan Doherty
5300318c02bSDeclan Doherty.. figure:: img/crypto_xform_chain.*
5310318c02bSDeclan Doherty
5320318c02bSDeclan Doherty
5330318c02bSDeclan DohertySymmetric Operations
5340318c02bSDeclan Doherty~~~~~~~~~~~~~~~~~~~~
5350318c02bSDeclan Doherty
5360318c02bSDeclan DohertyThe symmetric Crypto operation structure contains all the mutable data relating
5370318c02bSDeclan Dohertyto performing symmetric cryptographic processing on a referenced mbuf data
5380318c02bSDeclan Dohertybuffer. It is used for either cipher, authentication, AEAD and chained
5390318c02bSDeclan Dohertyoperations.
5400318c02bSDeclan Doherty
5410318c02bSDeclan DohertyAs a minimum the symmetric operation must have a source data buffer (``m_src``),
5425209df0dSPablo de Laraa valid session (or transform chain if in session-less mode) and the minimum
54383984b7fSPablo de Laraauthentication/ cipher/ AEAD parameters required depending on the type of operation
5445209df0dSPablo de Laraspecified in the session or the transform
5450318c02bSDeclan Dohertychain.
5460318c02bSDeclan Doherty
5470318c02bSDeclan Doherty.. code-block:: c
5480318c02bSDeclan Doherty
5490318c02bSDeclan Doherty    struct rte_crypto_sym_op {
5500318c02bSDeclan Doherty        struct rte_mbuf *m_src;
5510318c02bSDeclan Doherty        struct rte_mbuf *m_dst;
5520318c02bSDeclan Doherty
5530318c02bSDeclan Doherty        union {
5540318c02bSDeclan Doherty            struct rte_cryptodev_sym_session *session;
5550318c02bSDeclan Doherty            /**< Handle for the initialised session context */
5560318c02bSDeclan Doherty            struct rte_crypto_sym_xform *xform;
5570318c02bSDeclan Doherty            /**< Session-less API Crypto operation parameters */
5580318c02bSDeclan Doherty        };
5590318c02bSDeclan Doherty
560b59502a5SPablo de Lara        union {
561b59502a5SPablo de Lara            struct {
562b59502a5SPablo de Lara                struct {
563b59502a5SPablo de Lara                    uint32_t offset;
564b59502a5SPablo de Lara                    uint32_t length;
565b59502a5SPablo de Lara                } data; /**< Data offsets and length for AEAD */
566b59502a5SPablo de Lara
567b59502a5SPablo de Lara                struct {
568b59502a5SPablo de Lara                    uint8_t *data;
569c4509373SSantosh Shukla                    rte_iova_t phys_addr;
570b59502a5SPablo de Lara                } digest; /**< Digest parameters */
571b59502a5SPablo de Lara
572b59502a5SPablo de Lara                struct {
573b59502a5SPablo de Lara                    uint8_t *data;
574c4509373SSantosh Shukla                    rte_iova_t phys_addr;
575b59502a5SPablo de Lara                } aad;
576b59502a5SPablo de Lara                /**< Additional authentication parameters */
577b59502a5SPablo de Lara            } aead;
578b59502a5SPablo de Lara
579b59502a5SPablo de Lara            struct {
5800318c02bSDeclan Doherty                struct {
5810318c02bSDeclan Doherty                    struct {
5820318c02bSDeclan Doherty                        uint32_t offset;
5830318c02bSDeclan Doherty                        uint32_t length;
5840318c02bSDeclan Doherty                    } data; /**< Data offsets and length for ciphering */
5850318c02bSDeclan Doherty                } cipher;
5860318c02bSDeclan Doherty
5870318c02bSDeclan Doherty                struct {
5880318c02bSDeclan Doherty                    struct {
5890318c02bSDeclan Doherty                        uint32_t offset;
5900318c02bSDeclan Doherty                        uint32_t length;
591b59502a5SPablo de Lara                    } data;
592b59502a5SPablo de Lara                    /**< Data offsets and length for authentication */
5930318c02bSDeclan Doherty
5940318c02bSDeclan Doherty                    struct {
5950318c02bSDeclan Doherty                        uint8_t *data;
596c4509373SSantosh Shukla                        rte_iova_t phys_addr;
5970318c02bSDeclan Doherty                    } digest; /**< Digest parameters */
5980318c02bSDeclan Doherty                } auth;
599b59502a5SPablo de Lara            };
600b59502a5SPablo de Lara        };
601b59502a5SPablo de Lara    };
6020318c02bSDeclan Doherty
6037adf992fSMarcin SmoczynskiSynchronous mode
6047adf992fSMarcin Smoczynski----------------
6057adf992fSMarcin Smoczynski
6067adf992fSMarcin SmoczynskiSome cryptodevs support synchronous mode alongside with a standard asynchronous
6077adf992fSMarcin Smoczynskimode. In that case operations are performed directly when calling
6087adf992fSMarcin Smoczynski``rte_cryptodev_sym_cpu_crypto_process`` method instead of enqueuing and
6097adf992fSMarcin Smoczynskidequeuing an operation before. This mode of operation allows cryptodevs which
6107adf992fSMarcin Smoczynskiutilize CPU cryptographic acceleration to have significant performance boost
6117adf992fSMarcin Smoczynskicomparing to standard asynchronous approach. Cryptodevs supporting synchronous
6127adf992fSMarcin Smoczynskimode have ``RTE_CRYPTODEV_FF_SYM_CPU_CRYPTO`` feature flag set.
6137adf992fSMarcin Smoczynski
6147adf992fSMarcin SmoczynskiTo perform a synchronous operation a call to
6157adf992fSMarcin Smoczynski``rte_cryptodev_sym_cpu_crypto_process`` has to be made with vectorized
6167adf992fSMarcin Smoczynskioperation descriptor (``struct rte_crypto_sym_vec``) containing:
6177adf992fSMarcin Smoczynski
6187adf992fSMarcin Smoczynski- ``num`` - number of operations to perform,
6197adf992fSMarcin Smoczynski- pointer to an array of size ``num`` containing a scatter-gather list
6207adf992fSMarcin Smoczynski  descriptors of performed operations (``struct rte_crypto_sgl``). Each instance
6217adf992fSMarcin Smoczynski  of ``struct rte_crypto_sgl`` consists of a number of segments and a pointer to
6227adf992fSMarcin Smoczynski  an array of segment descriptors ``struct rte_crypto_vec``;
6237adf992fSMarcin Smoczynski- pointers to arrays of size ``num`` containing IV, AAD and digest information,
6247adf992fSMarcin Smoczynski- pointer to an array of size ``num`` where status information will be stored
6257adf992fSMarcin Smoczynski  for each operation.
6267adf992fSMarcin Smoczynski
6277adf992fSMarcin SmoczynskiFunction returns a number of successfully completed operations and sets
6287adf992fSMarcin Smoczynskiappropriate status number for each operation in the status array provided as
6297adf992fSMarcin Smoczynskia call argument. Status different than zero must be treated as error.
6307adf992fSMarcin Smoczynski
6317adf992fSMarcin SmoczynskiFor more details, e.g. how to convert an mbuf to an SGL, please refer to an
6327adf992fSMarcin Smoczynskiexample usage in the IPsec library implementation.
6337adf992fSMarcin Smoczynski
63431850d26SPablo de LaraSample code
63531850d26SPablo de Lara-----------
63631850d26SPablo de Lara
63731850d26SPablo de LaraThere are various sample applications that show how to use the cryptodev library,
63831850d26SPablo de Larasuch as the L2fwd with Crypto sample application (L2fwd-crypto) and
639d629b7b5SJohn McNamarathe IPsec Security Gateway application (ipsec-secgw).
64031850d26SPablo de Lara
64131850d26SPablo de LaraWhile these applications demonstrate how an application can be created to perform
64231850d26SPablo de Larageneric crypto operation, the required complexity hides the basic steps of
64331850d26SPablo de Larahow to use the cryptodev APIs.
64431850d26SPablo de Lara
64531850d26SPablo de LaraThe following sample code shows the basic steps to encrypt several buffers
64631850d26SPablo de Larawith AES-CBC (although performing other crypto operations is similar),
64731850d26SPablo de Larausing one of the crypto PMDs available in DPDK.
64831850d26SPablo de Lara
64931850d26SPablo de Lara.. code-block:: c
65031850d26SPablo de Lara
65131850d26SPablo de Lara    /*
65231850d26SPablo de Lara     * Simple example to encrypt several buffers with AES-CBC using
65331850d26SPablo de Lara     * the Cryptodev APIs.
65431850d26SPablo de Lara     */
65531850d26SPablo de Lara
65631850d26SPablo de Lara    #define MAX_SESSIONS         1024
65731850d26SPablo de Lara    #define NUM_MBUFS            1024
65831850d26SPablo de Lara    #define POOL_CACHE_SIZE      128
65931850d26SPablo de Lara    #define BURST_SIZE           32
66031850d26SPablo de Lara    #define BUFFER_SIZE          1024
66131850d26SPablo de Lara    #define AES_CBC_IV_LENGTH    16
66231850d26SPablo de Lara    #define AES_CBC_KEY_LENGTH   16
66331850d26SPablo de Lara    #define IV_OFFSET            (sizeof(struct rte_crypto_op) + \
66431850d26SPablo de Lara                                 sizeof(struct rte_crypto_sym_op))
66531850d26SPablo de Lara
6661d6f8988SFan Zhang    struct rte_mempool *mbuf_pool, *crypto_op_pool;
6671d6f8988SFan Zhang    struct rte_mempool *session_pool, *session_priv_pool;
66831850d26SPablo de Lara    unsigned int session_size;
66931850d26SPablo de Lara    int ret;
67031850d26SPablo de Lara
67131850d26SPablo de Lara    /* Initialize EAL. */
67231850d26SPablo de Lara    ret = rte_eal_init(argc, argv);
67331850d26SPablo de Lara    if (ret < 0)
67431850d26SPablo de Lara        rte_exit(EXIT_FAILURE, "Invalid EAL arguments\n");
67531850d26SPablo de Lara
67631850d26SPablo de Lara    uint8_t socket_id = rte_socket_id();
67731850d26SPablo de Lara
67831850d26SPablo de Lara    /* Create the mbuf pool. */
67931850d26SPablo de Lara    mbuf_pool = rte_pktmbuf_pool_create("mbuf_pool",
68031850d26SPablo de Lara                                    NUM_MBUFS,
68131850d26SPablo de Lara                                    POOL_CACHE_SIZE,
68231850d26SPablo de Lara                                    0,
68331850d26SPablo de Lara                                    RTE_MBUF_DEFAULT_BUF_SIZE,
68431850d26SPablo de Lara                                    socket_id);
68531850d26SPablo de Lara    if (mbuf_pool == NULL)
68631850d26SPablo de Lara        rte_exit(EXIT_FAILURE, "Cannot create mbuf pool\n");
68731850d26SPablo de Lara
68831850d26SPablo de Lara    /*
68931850d26SPablo de Lara     * The IV is always placed after the crypto operation,
69031850d26SPablo de Lara     * so some private data is required to be reserved.
69131850d26SPablo de Lara     */
69231850d26SPablo de Lara    unsigned int crypto_op_private_data = AES_CBC_IV_LENGTH;
69331850d26SPablo de Lara
69431850d26SPablo de Lara    /* Create crypto operation pool. */
69531850d26SPablo de Lara    crypto_op_pool = rte_crypto_op_pool_create("crypto_op_pool",
69631850d26SPablo de Lara                                            RTE_CRYPTO_OP_TYPE_SYMMETRIC,
69731850d26SPablo de Lara                                            NUM_MBUFS,
69831850d26SPablo de Lara                                            POOL_CACHE_SIZE,
69931850d26SPablo de Lara                                            crypto_op_private_data,
70031850d26SPablo de Lara                                            socket_id);
70131850d26SPablo de Lara    if (crypto_op_pool == NULL)
70231850d26SPablo de Lara        rte_exit(EXIT_FAILURE, "Cannot create crypto op pool\n");
70331850d26SPablo de Lara
70431850d26SPablo de Lara    /* Create the virtual crypto device. */
70531850d26SPablo de Lara    char args[128];
70631850d26SPablo de Lara    const char *crypto_name = "crypto_aesni_mb0";
70731850d26SPablo de Lara    snprintf(args, sizeof(args), "socket_id=%d", socket_id);
70831850d26SPablo de Lara    ret = rte_vdev_init(crypto_name, args);
70931850d26SPablo de Lara    if (ret != 0)
71031850d26SPablo de Lara        rte_exit(EXIT_FAILURE, "Cannot create virtual device");
71131850d26SPablo de Lara
71231850d26SPablo de Lara    uint8_t cdev_id = rte_cryptodev_get_dev_id(crypto_name);
71331850d26SPablo de Lara
71431850d26SPablo de Lara    /* Get private session data size. */
715a106fcceSPablo de Lara    session_size = rte_cryptodev_sym_get_private_session_size(cdev_id);
71631850d26SPablo de Lara
7171d6f8988SFan Zhang    #ifdef USE_TWO_MEMPOOLS
7181d6f8988SFan Zhang    /* Create session mempool for the session header. */
7191d6f8988SFan Zhang    session_pool = rte_cryptodev_sym_session_pool_create("session_pool",
7201d6f8988SFan Zhang                                    MAX_SESSIONS,
7211d6f8988SFan Zhang                                    0,
7221d6f8988SFan Zhang                                    POOL_CACHE_SIZE,
7231d6f8988SFan Zhang                                    0,
7241d6f8988SFan Zhang                                    socket_id);
7251d6f8988SFan Zhang
72631850d26SPablo de Lara    /*
7271d6f8988SFan Zhang     * Create session private data mempool for the
72831850d26SPablo de Lara     * private session data for the crypto device.
72931850d26SPablo de Lara     */
7301d6f8988SFan Zhang    session_priv_pool = rte_mempool_create("session_pool",
7311d6f8988SFan Zhang                                    MAX_SESSIONS,
73231850d26SPablo de Lara                                    session_size,
73331850d26SPablo de Lara                                    POOL_CACHE_SIZE,
73431850d26SPablo de Lara                                    0, NULL, NULL, NULL,
73531850d26SPablo de Lara                                    NULL, socket_id,
73631850d26SPablo de Lara                                    0);
73731850d26SPablo de Lara
7381d6f8988SFan Zhang    #else
7391d6f8988SFan Zhang    /* Use of the same mempool for session header and private data */
7401d6f8988SFan Zhang	session_pool = rte_cryptodev_sym_session_pool_create("session_pool",
7411d6f8988SFan Zhang                                    MAX_SESSIONS * 2,
7421d6f8988SFan Zhang                                    session_size,
7431d6f8988SFan Zhang                                    POOL_CACHE_SIZE,
7441d6f8988SFan Zhang                                    0,
7451d6f8988SFan Zhang                                    socket_id);
7461d6f8988SFan Zhang
7471d6f8988SFan Zhang	session_priv_pool = session_pool;
7481d6f8988SFan Zhang
7491d6f8988SFan Zhang    #endif
7501d6f8988SFan Zhang
75131850d26SPablo de Lara    /* Configure the crypto device. */
75231850d26SPablo de Lara    struct rte_cryptodev_config conf = {
75331850d26SPablo de Lara        .nb_queue_pairs = 1,
75431850d26SPablo de Lara        .socket_id = socket_id
75531850d26SPablo de Lara    };
7561d6f8988SFan Zhang
75731850d26SPablo de Lara    struct rte_cryptodev_qp_conf qp_conf = {
758725d2a7fSFan Zhang        .nb_descriptors = 2048,
759725d2a7fSFan Zhang        .mp_session = session_pool,
7601d6f8988SFan Zhang        .mp_session_private = session_priv_pool
76131850d26SPablo de Lara    };
76231850d26SPablo de Lara
76331850d26SPablo de Lara    if (rte_cryptodev_configure(cdev_id, &conf) < 0)
76431850d26SPablo de Lara        rte_exit(EXIT_FAILURE, "Failed to configure cryptodev %u", cdev_id);
76531850d26SPablo de Lara
766725d2a7fSFan Zhang    if (rte_cryptodev_queue_pair_setup(cdev_id, 0, &qp_conf, socket_id) < 0)
76731850d26SPablo de Lara        rte_exit(EXIT_FAILURE, "Failed to setup queue pair\n");
76831850d26SPablo de Lara
76931850d26SPablo de Lara    if (rte_cryptodev_start(cdev_id) < 0)
77031850d26SPablo de Lara        rte_exit(EXIT_FAILURE, "Failed to start device\n");
77131850d26SPablo de Lara
77231850d26SPablo de Lara    /* Create the crypto transform. */
77331850d26SPablo de Lara    uint8_t cipher_key[16] = {0};
77431850d26SPablo de Lara    struct rte_crypto_sym_xform cipher_xform = {
77531850d26SPablo de Lara        .next = NULL,
77631850d26SPablo de Lara        .type = RTE_CRYPTO_SYM_XFORM_CIPHER,
77731850d26SPablo de Lara        .cipher = {
77831850d26SPablo de Lara            .op = RTE_CRYPTO_CIPHER_OP_ENCRYPT,
77931850d26SPablo de Lara            .algo = RTE_CRYPTO_CIPHER_AES_CBC,
78031850d26SPablo de Lara            .key = {
78131850d26SPablo de Lara                .data = cipher_key,
78231850d26SPablo de Lara                .length = AES_CBC_KEY_LENGTH
78331850d26SPablo de Lara            },
78431850d26SPablo de Lara            .iv = {
78531850d26SPablo de Lara                .offset = IV_OFFSET,
78631850d26SPablo de Lara                .length = AES_CBC_IV_LENGTH
78731850d26SPablo de Lara            }
78831850d26SPablo de Lara        }
78931850d26SPablo de Lara    };
79031850d26SPablo de Lara
79131850d26SPablo de Lara    /* Create crypto session and initialize it for the crypto device. */
79231850d26SPablo de Lara    struct rte_cryptodev_sym_session *session;
79331850d26SPablo de Lara    session = rte_cryptodev_sym_session_create(session_pool);
79431850d26SPablo de Lara    if (session == NULL)
79531850d26SPablo de Lara        rte_exit(EXIT_FAILURE, "Session could not be created\n");
79631850d26SPablo de Lara
79731850d26SPablo de Lara    if (rte_cryptodev_sym_session_init(cdev_id, session,
7981d6f8988SFan Zhang                    &cipher_xform, session_priv_pool) < 0)
79931850d26SPablo de Lara        rte_exit(EXIT_FAILURE, "Session could not be initialized "
80031850d26SPablo de Lara                    "for the crypto device\n");
80131850d26SPablo de Lara
80231850d26SPablo de Lara    /* Get a burst of crypto operations. */
80331850d26SPablo de Lara    struct rte_crypto_op *crypto_ops[BURST_SIZE];
80431850d26SPablo de Lara    if (rte_crypto_op_bulk_alloc(crypto_op_pool,
80531850d26SPablo de Lara                            RTE_CRYPTO_OP_TYPE_SYMMETRIC,
80631850d26SPablo de Lara                            crypto_ops, BURST_SIZE) == 0)
80731850d26SPablo de Lara        rte_exit(EXIT_FAILURE, "Not enough crypto operations available\n");
80831850d26SPablo de Lara
80931850d26SPablo de Lara    /* Get a burst of mbufs. */
81031850d26SPablo de Lara    struct rte_mbuf *mbufs[BURST_SIZE];
81131850d26SPablo de Lara    if (rte_pktmbuf_alloc_bulk(mbuf_pool, mbufs, BURST_SIZE) < 0)
81231850d26SPablo de Lara        rte_exit(EXIT_FAILURE, "Not enough mbufs available");
81331850d26SPablo de Lara
81431850d26SPablo de Lara    /* Initialize the mbufs and append them to the crypto operations. */
81531850d26SPablo de Lara    unsigned int i;
81631850d26SPablo de Lara    for (i = 0; i < BURST_SIZE; i++) {
81731850d26SPablo de Lara        if (rte_pktmbuf_append(mbufs[i], BUFFER_SIZE) == NULL)
81831850d26SPablo de Lara            rte_exit(EXIT_FAILURE, "Not enough room in the mbuf\n");
81931850d26SPablo de Lara        crypto_ops[i]->sym->m_src = mbufs[i];
82031850d26SPablo de Lara    }
82131850d26SPablo de Lara
82231850d26SPablo de Lara    /* Set up the crypto operations. */
82331850d26SPablo de Lara    for (i = 0; i < BURST_SIZE; i++) {
82431850d26SPablo de Lara        struct rte_crypto_op *op = crypto_ops[i];
82531850d26SPablo de Lara        /* Modify bytes of the IV at the end of the crypto operation */
82631850d26SPablo de Lara        uint8_t *iv_ptr = rte_crypto_op_ctod_offset(op, uint8_t *,
82731850d26SPablo de Lara                                                IV_OFFSET);
82831850d26SPablo de Lara
82931850d26SPablo de Lara        generate_random_bytes(iv_ptr, AES_CBC_IV_LENGTH);
83031850d26SPablo de Lara
83131850d26SPablo de Lara        op->sym->cipher.data.offset = 0;
83231850d26SPablo de Lara        op->sym->cipher.data.length = BUFFER_SIZE;
83331850d26SPablo de Lara
83431850d26SPablo de Lara        /* Attach the crypto session to the operation */
83531850d26SPablo de Lara        rte_crypto_op_attach_sym_session(op, session);
83631850d26SPablo de Lara    }
83731850d26SPablo de Lara
83831850d26SPablo de Lara    /* Enqueue the crypto operations in the crypto device. */
83931850d26SPablo de Lara    uint16_t num_enqueued_ops = rte_cryptodev_enqueue_burst(cdev_id, 0,
84031850d26SPablo de Lara                                            crypto_ops, BURST_SIZE);
84131850d26SPablo de Lara
84231850d26SPablo de Lara    /*
84331850d26SPablo de Lara     * Dequeue the crypto operations until all the operations
844d629b7b5SJohn McNamara     * are processed in the crypto device.
84531850d26SPablo de Lara     */
84631850d26SPablo de Lara    uint16_t num_dequeued_ops, total_num_dequeued_ops = 0;
84731850d26SPablo de Lara    do {
84831850d26SPablo de Lara        struct rte_crypto_op *dequeued_ops[BURST_SIZE];
84931850d26SPablo de Lara        num_dequeued_ops = rte_cryptodev_dequeue_burst(cdev_id, 0,
85031850d26SPablo de Lara                                        dequeued_ops, BURST_SIZE);
85131850d26SPablo de Lara        total_num_dequeued_ops += num_dequeued_ops;
85231850d26SPablo de Lara
85331850d26SPablo de Lara        /* Check if operation was processed successfully */
85431850d26SPablo de Lara        for (i = 0; i < num_dequeued_ops; i++) {
85531850d26SPablo de Lara            if (dequeued_ops[i]->status != RTE_CRYPTO_OP_STATUS_SUCCESS)
85631850d26SPablo de Lara                rte_exit(EXIT_FAILURE,
85731850d26SPablo de Lara                        "Some operations were not processed correctly");
85831850d26SPablo de Lara        }
85931850d26SPablo de Lara
86031850d26SPablo de Lara        rte_mempool_put_bulk(crypto_op_pool, (void **)dequeued_ops,
86131850d26SPablo de Lara                                            num_dequeued_ops);
86231850d26SPablo de Lara    } while (total_num_dequeued_ops < num_enqueued_ops);
86331850d26SPablo de Lara
8640318c02bSDeclan DohertyAsymmetric Cryptography
8650318c02bSDeclan Doherty-----------------------
8660318c02bSDeclan Doherty
867b9209dc2SShally VermaThe cryptodev library currently provides support for the following asymmetric
868b9209dc2SShally VermaCrypto operations; RSA, Modular exponentiation and inversion, Diffie-Hellman
869b9209dc2SShally Vermapublic and/or private key generation and shared secret compute, DSA Signature
870b9209dc2SShally Vermageneration and verification.
871b9209dc2SShally Verma
872b9209dc2SShally VermaSession and Session Management
873b9209dc2SShally Verma~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
874b9209dc2SShally Verma
875b9209dc2SShally VermaSessions are used in asymmetric cryptographic processing to store the immutable
876b9209dc2SShally Vermadata defined in asymmetric cryptographic transform which is further used in the
877b9209dc2SShally Vermaoperation processing. Sessions typically stores information, such as, public
878b9209dc2SShally Vermaand private key information or domain params or prime modulus data i.e. immutable
879b9209dc2SShally Vermaacross data sets. Crypto sessions cache this immutable data in a optimal way for the
880b9209dc2SShally Vermaunderlying PMD and this allows further acceleration of the offload of Crypto workloads.
881b9209dc2SShally Verma
882b9209dc2SShally VermaLike symmetric, the Crypto device framework provides APIs to allocate and initialize
883b9209dc2SShally Vermaasymmetric sessions for crypto devices, where sessions are mempool objects.
884b9209dc2SShally VermaIt is the application's responsibility to create and manage the session mempools.
885b9209dc2SShally VermaApplication using both symmetric and asymmetric sessions should allocate and maintain
886b9209dc2SShally Vermadifferent sessions pools for each type.
887b9209dc2SShally Verma
888b9209dc2SShally VermaAn application can use ``rte_cryptodev_get_asym_session_private_size()`` to
889b9209dc2SShally Vermaget the private size of asymmetric session on a given crypto device. This
890b9209dc2SShally Vermafunction would allow an application to calculate the max device asymmetric
891b9209dc2SShally Vermasession size of all crypto devices to create a single session mempool.
892b9209dc2SShally VermaIf instead an application creates multiple asymmetric session mempools,
893b9209dc2SShally Vermathe Crypto device framework also provides ``rte_cryptodev_asym_get_header_session_size()`` to get
894b9209dc2SShally Vermathe size of an uninitialized session.
895b9209dc2SShally Verma
896b9209dc2SShally VermaOnce the session mempools have been created, ``rte_cryptodev_asym_session_create()``
897b9209dc2SShally Vermais used to allocate an uninitialized asymmetric session from the given mempool.
898b9209dc2SShally VermaThe session then must be initialized using ``rte_cryptodev_asym_session_init()``
899b9209dc2SShally Vermafor each of the required crypto devices. An asymmetric transform chain
900b9209dc2SShally Vermais used to specify the operation and its parameters. See the section below for
901b9209dc2SShally Vermadetails on transforms.
902b9209dc2SShally Verma
903b9209dc2SShally VermaWhen a session is no longer used, user must call ``rte_cryptodev_asym_session_clear()``
904b9209dc2SShally Vermafor each of the crypto devices that are using the session, to free all driver
905b9209dc2SShally Vermaprivate asymmetric session data. Once this is done, session should be freed using
906b9209dc2SShally Verma``rte_cryptodev_asym_session_free()`` which returns them to their mempool.
907b9209dc2SShally Verma
908b9209dc2SShally VermaAsymmetric Sessionless Support
909b9209dc2SShally Verma~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
910f2b2a449SArek Kusztal
911f2b2a449SArek KusztalAsymmetric crypto framework supports session-less operations as well.
912f2b2a449SArek Kusztal
913f2b2a449SArek KusztalFields that should be set by user are:
914f2b2a449SArek Kusztal
915f2b2a449SArek KusztalMember xform of struct rte_crypto_asym_op should point to the user created rte_crypto_asym_xform.
916f2b2a449SArek KusztalNote that rte_crypto_asym_xform should be immutable for the lifetime of associated crypto_op.
917f2b2a449SArek Kusztal
918f2b2a449SArek KusztalMember sess_type of rte_crypto_op should also be set to RTE_CRYPTO_OP_SESSIONLESS.
919b9209dc2SShally Verma
920b9209dc2SShally VermaTransforms and Transform Chaining
921b9209dc2SShally Verma~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
922b9209dc2SShally Verma
923b9209dc2SShally VermaAsymmetric Crypto transforms (``rte_crypto_asym_xform``) are the mechanism used
924b9209dc2SShally Vermato specify the details of the asymmetric Crypto operation. Next pointer within
925b9209dc2SShally Vermaxform allows transform to be chained together. Also it is important to note that
92648903a79SFiona Trahethe order in which the transforms are passed indicates the order of the chaining. Allocation
927f43d3dbbSDavid Marchandof the xform structure is in the application domain. To allow future API extensions in a
92848903a79SFiona Trahebackwardly compatible manner, e.g. addition of a new parameter, the application should
92948903a79SFiona Trahezero the full xform struct before populating it.
930b9209dc2SShally Verma
931b9209dc2SShally VermaNot all asymmetric crypto xforms are supported for chaining. Currently supported
932b9209dc2SShally Vermaasymmetric crypto chaining is Diffie-Hellman private key generation followed by
933b9209dc2SShally Vermapublic generation. Also, currently API does not support chaining of symmetric and
934d629b7b5SJohn McNamaraasymmetric crypto xforms.
935b9209dc2SShally Verma
936b9209dc2SShally VermaEach xform defines specific asymmetric crypto algo. Currently supported are:
937b9209dc2SShally Verma* RSA
938b9209dc2SShally Verma* Modular operations (Exponentiation and Inverse)
939b9209dc2SShally Verma* Diffie-Hellman
940b9209dc2SShally Verma* DSA
941b9209dc2SShally Verma* None - special case where PMD may support a passthrough mode. More for diagnostic purpose
942b9209dc2SShally Verma
943b9209dc2SShally VermaSee *DPDK API Reference* for details on each rte_crypto_xxx_xform struct
944b9209dc2SShally Verma
945b9209dc2SShally VermaAsymmetric Operations
946b9209dc2SShally Verma~~~~~~~~~~~~~~~~~~~~~
947b9209dc2SShally Verma
948b9209dc2SShally VermaThe asymmetric Crypto operation structure contains all the mutable data relating
949b9209dc2SShally Vermato asymmetric cryptographic processing on an input data buffer. It uses either
950b9209dc2SShally VermaRSA, Modular, Diffie-Hellman or DSA operations depending upon session it is attached
951b9209dc2SShally Vermato.
952b9209dc2SShally Verma
953b9209dc2SShally VermaEvery operation must carry a valid session handle which further carries information
954b9209dc2SShally Vermaon xform or xform-chain to be performed on op. Every xform type defines its own set
955b9209dc2SShally Vermaof operational params in their respective rte_crypto_xxx_op_param struct. Depending
956b9209dc2SShally Vermaon xform information within session, PMD picks up and process respective op_param
957b9209dc2SShally Vermastruct.
958b9209dc2SShally VermaUnlike symmetric, asymmetric operations do not use mbufs for input/output.
959b9209dc2SShally VermaThey operate on data buffer of type ``rte_crypto_param``.
960b9209dc2SShally Verma
961b9209dc2SShally VermaSee *DPDK API Reference* for details on each rte_crypto_xxx_op_param struct
962b9209dc2SShally Verma
963b9209dc2SShally VermaAsymmetric crypto Sample code
964b9209dc2SShally Verma-----------------------------
965b9209dc2SShally Verma
966b9209dc2SShally VermaThere's a unit test application test_cryptodev_asym.c inside unit test framework that
967b9209dc2SShally Vermashow how to setup and process asymmetric operations using cryptodev library.
968b9209dc2SShally Verma
969b9209dc2SShally VermaThe following sample code shows the basic steps to compute modular exponentiation
970b9209dc2SShally Vermausing 1024-bit modulus length using openssl PMD available in DPDK (performing other
971b9209dc2SShally Vermacrypto operations is similar except change to respective op and xform setup).
972b9209dc2SShally Verma
973b9209dc2SShally Verma.. code-block:: c
974b9209dc2SShally Verma
975b9209dc2SShally Verma    /*
976b9209dc2SShally Verma     * Simple example to compute modular exponentiation with 1024-bit key
977b9209dc2SShally Verma     *
978b9209dc2SShally Verma     */
979b9209dc2SShally Verma    #define MAX_ASYM_SESSIONS	10
980b9209dc2SShally Verma    #define NUM_ASYM_BUFS	10
981b9209dc2SShally Verma
982b9209dc2SShally Verma    struct rte_mempool *crypto_op_pool, *asym_session_pool;
983b9209dc2SShally Verma    unsigned int asym_session_size;
984b9209dc2SShally Verma    int ret;
985b9209dc2SShally Verma
986b9209dc2SShally Verma    /* Initialize EAL. */
987b9209dc2SShally Verma    ret = rte_eal_init(argc, argv);
988b9209dc2SShally Verma    if (ret < 0)
989b9209dc2SShally Verma        rte_exit(EXIT_FAILURE, "Invalid EAL arguments\n");
990b9209dc2SShally Verma
991b9209dc2SShally Verma    uint8_t socket_id = rte_socket_id();
992b9209dc2SShally Verma
993b9209dc2SShally Verma    /* Create crypto operation pool. */
994b9209dc2SShally Verma    crypto_op_pool = rte_crypto_op_pool_create(
995b9209dc2SShally Verma                                    "crypto_op_pool",
996b9209dc2SShally Verma                                    RTE_CRYPTO_OP_TYPE_ASYMMETRIC,
997b9209dc2SShally Verma                                    NUM_ASYM_BUFS, 0, 0,
998b9209dc2SShally Verma                                    socket_id);
999b9209dc2SShally Verma    if (crypto_op_pool == NULL)
1000b9209dc2SShally Verma        rte_exit(EXIT_FAILURE, "Cannot create crypto op pool\n");
1001b9209dc2SShally Verma
1002b9209dc2SShally Verma    /* Create the virtual crypto device. */
1003b9209dc2SShally Verma    char args[128];
1004b9209dc2SShally Verma    const char *crypto_name = "crypto_openssl";
1005b9209dc2SShally Verma    snprintf(args, sizeof(args), "socket_id=%d", socket_id);
1006b9209dc2SShally Verma    ret = rte_vdev_init(crypto_name, args);
1007b9209dc2SShally Verma    if (ret != 0)
1008b9209dc2SShally Verma        rte_exit(EXIT_FAILURE, "Cannot create virtual device");
1009b9209dc2SShally Verma
1010b9209dc2SShally Verma    uint8_t cdev_id = rte_cryptodev_get_dev_id(crypto_name);
1011b9209dc2SShally Verma
1012b9209dc2SShally Verma    /* Get private asym session data size. */
1013b9209dc2SShally Verma    asym_session_size = rte_cryptodev_get_asym_private_session_size(cdev_id);
1014b9209dc2SShally Verma
1015b9209dc2SShally Verma    /*
1016b9209dc2SShally Verma     * Create session mempool, with two objects per session,
1017b9209dc2SShally Verma     * one for the session header and another one for the
1018b9209dc2SShally Verma     * private asym session data for the crypto device.
1019b9209dc2SShally Verma     */
1020b9209dc2SShally Verma    asym_session_pool = rte_mempool_create("asym_session_pool",
1021b9209dc2SShally Verma                                    MAX_ASYM_SESSIONS * 2,
1022b9209dc2SShally Verma                                    asym_session_size,
1023b9209dc2SShally Verma                                    0,
1024b9209dc2SShally Verma                                    0, NULL, NULL, NULL,
1025b9209dc2SShally Verma                                    NULL, socket_id,
1026b9209dc2SShally Verma                                    0);
1027b9209dc2SShally Verma
1028b9209dc2SShally Verma    /* Configure the crypto device. */
1029b9209dc2SShally Verma    struct rte_cryptodev_config conf = {
1030b9209dc2SShally Verma        .nb_queue_pairs = 1,
1031b9209dc2SShally Verma        .socket_id = socket_id
1032b9209dc2SShally Verma    };
1033b9209dc2SShally Verma    struct rte_cryptodev_qp_conf qp_conf = {
1034b9209dc2SShally Verma        .nb_descriptors = 2048
1035b9209dc2SShally Verma    };
1036b9209dc2SShally Verma
1037b9209dc2SShally Verma    if (rte_cryptodev_configure(cdev_id, &conf) < 0)
1038b9209dc2SShally Verma        rte_exit(EXIT_FAILURE, "Failed to configure cryptodev %u", cdev_id);
1039b9209dc2SShally Verma
1040b9209dc2SShally Verma    if (rte_cryptodev_queue_pair_setup(cdev_id, 0, &qp_conf,
1041b9209dc2SShally Verma                            socket_id, asym_session_pool) < 0)
1042b9209dc2SShally Verma        rte_exit(EXIT_FAILURE, "Failed to setup queue pair\n");
1043b9209dc2SShally Verma
1044b9209dc2SShally Verma    if (rte_cryptodev_start(cdev_id) < 0)
1045b9209dc2SShally Verma        rte_exit(EXIT_FAILURE, "Failed to start device\n");
1046b9209dc2SShally Verma
1047b9209dc2SShally Verma    /* Setup crypto xform to do modular exponentiation with 1024 bit
1048b9209dc2SShally Verma	 * length modulus
1049b9209dc2SShally Verma	 */
1050b9209dc2SShally Verma    struct rte_crypto_asym_xform modex_xform = {
1051b9209dc2SShally Verma		.next = NULL,
1052b9209dc2SShally Verma		.xform_type = RTE_CRYPTO_ASYM_XFORM_MODEX,
1053b9209dc2SShally Verma		.modex = {
1054b9209dc2SShally Verma			.modulus = {
1055b9209dc2SShally Verma				.data =
1056b9209dc2SShally Verma				(uint8_t *)
1057b9209dc2SShally Verma				("\xb3\xa1\xaf\xb7\x13\x08\x00\x0a\x35\xdc\x2b\x20\x8d"
1058b9209dc2SShally Verma				"\xa1\xb5\xce\x47\x8a\xc3\x80\xf4\x7d\x4a\xa2\x62\xfd\x61\x7f"
1059b9209dc2SShally Verma				"\xb5\xa8\xde\x0a\x17\x97\xa0\xbf\xdf\x56\x5a\x3d\x51\x56\x4f"
1060b9209dc2SShally Verma				"\x70\x70\x3f\x63\x6a\x44\x5b\xad\x84\x0d\x3f\x27\x6e\x3b\x34"
1061b9209dc2SShally Verma				"\x91\x60\x14\xb9\xaa\x72\xfd\xa3\x64\xd2\x03\xa7\x53\x87\x9e"
1062b9209dc2SShally Verma				"\x88\x0b\xc1\x14\x93\x1a\x62\xff\xb1\x5d\x74\xcd\x59\x63\x18"
1063b9209dc2SShally Verma				"\x11\x3d\x4f\xba\x75\xd4\x33\x4e\x23\x6b\x7b\x57\x44\xe1\xd3"
1064b9209dc2SShally Verma				"\x03\x13\xa6\xf0\x8b\x60\xb0\x9e\xee\x75\x08\x9d\x71\x63\x13"
1065b9209dc2SShally Verma				"\xcb\xa6\x81\x92\x14\x03\x22\x2d\xde\x55"),
1066b9209dc2SShally Verma				.length = 128
1067b9209dc2SShally Verma			},
1068b9209dc2SShally Verma			.exponent = {
1069b9209dc2SShally Verma				.data = (uint8_t *)("\x01\x00\x01"),
1070b9209dc2SShally Verma				.length = 3
1071b9209dc2SShally Verma			}
1072b9209dc2SShally Verma		}
1073b9209dc2SShally Verma    };
1074b9209dc2SShally Verma    /* Create asym crypto session and initialize it for the crypto device. */
1075b9209dc2SShally Verma    struct rte_cryptodev_asym_session *asym_session;
1076b9209dc2SShally Verma    asym_session = rte_cryptodev_asym_session_create(asym_session_pool);
1077b9209dc2SShally Verma    if (asym_session == NULL)
1078b9209dc2SShally Verma        rte_exit(EXIT_FAILURE, "Session could not be created\n");
1079b9209dc2SShally Verma
1080b9209dc2SShally Verma    if (rte_cryptodev_asym_session_init(cdev_id, asym_session,
1081b9209dc2SShally Verma                    &modex_xform, asym_session_pool) < 0)
1082b9209dc2SShally Verma        rte_exit(EXIT_FAILURE, "Session could not be initialized "
1083b9209dc2SShally Verma                    "for the crypto device\n");
1084b9209dc2SShally Verma
1085b9209dc2SShally Verma    /* Get a burst of crypto operations. */
1086b9209dc2SShally Verma    struct rte_crypto_op *crypto_ops[1];
1087b9209dc2SShally Verma    if (rte_crypto_op_bulk_alloc(crypto_op_pool,
1088b9209dc2SShally Verma                            RTE_CRYPTO_OP_TYPE_ASYMMETRIC,
1089b9209dc2SShally Verma                            crypto_ops, 1) == 0)
1090b9209dc2SShally Verma        rte_exit(EXIT_FAILURE, "Not enough crypto operations available\n");
1091b9209dc2SShally Verma
1092b9209dc2SShally Verma    /* Set up the crypto operations. */
1093b9209dc2SShally Verma    struct rte_crypto_asym_op *asym_op = crypto_ops[0]->asym;
1094b9209dc2SShally Verma
1095b9209dc2SShally Verma	/* calculate mod exp of value 0xf8 */
1096b9209dc2SShally Verma    static unsigned char base[] = {0xF8};
1097b9209dc2SShally Verma    asym_op->modex.base.data = base;
1098b9209dc2SShally Verma    asym_op->modex.base.length = sizeof(base);
1099b9209dc2SShally Verma	asym_op->modex.base.iova = base;
1100b9209dc2SShally Verma
1101b9209dc2SShally Verma    /* Attach the asym crypto session to the operation */
1102b9209dc2SShally Verma    rte_crypto_op_attach_asym_session(op, asym_session);
1103b9209dc2SShally Verma
1104b9209dc2SShally Verma    /* Enqueue the crypto operations in the crypto device. */
1105b9209dc2SShally Verma    uint16_t num_enqueued_ops = rte_cryptodev_enqueue_burst(cdev_id, 0,
1106b9209dc2SShally Verma                                            crypto_ops, 1);
1107b9209dc2SShally Verma
1108b9209dc2SShally Verma    /*
1109b9209dc2SShally Verma     * Dequeue the crypto operations until all the operations
1110b9209dc2SShally Verma     * are processed in the crypto device.
1111b9209dc2SShally Verma     */
1112b9209dc2SShally Verma    uint16_t num_dequeued_ops, total_num_dequeued_ops = 0;
1113b9209dc2SShally Verma    do {
1114b9209dc2SShally Verma        struct rte_crypto_op *dequeued_ops[1];
1115b9209dc2SShally Verma        num_dequeued_ops = rte_cryptodev_dequeue_burst(cdev_id, 0,
1116b9209dc2SShally Verma                                        dequeued_ops, 1);
1117b9209dc2SShally Verma        total_num_dequeued_ops += num_dequeued_ops;
1118b9209dc2SShally Verma
1119b9209dc2SShally Verma        /* Check if operation was processed successfully */
1120b9209dc2SShally Verma        if (dequeued_ops[0]->status != RTE_CRYPTO_OP_STATUS_SUCCESS)
1121b9209dc2SShally Verma                rte_exit(EXIT_FAILURE,
1122b9209dc2SShally Verma                        "Some operations were not processed correctly");
1123b9209dc2SShally Verma
1124b9209dc2SShally Verma    } while (total_num_dequeued_ops < num_enqueued_ops);
11250318c02bSDeclan Doherty
11260318c02bSDeclan Doherty
1127b9209dc2SShally VermaAsymmetric Crypto Device API
1128b9209dc2SShally Verma~~~~~~~~~~~~~~~~~~~~~~~~~~~~
11290318c02bSDeclan Doherty
1130b9209dc2SShally VermaThe cryptodev Library API is described in the
1131*3d4b2afbSDavid Marchand`DPDK API Reference <https://doc.dpdk.org/api/>`_
1132