xref: /dpdk/doc/guides/sample_app_ug/l2_forward_crypto.rst (revision daa02b5cddbb8e11b31d41e2bf7bb1ae64dcae2f)
1..  SPDX-License-Identifier: BSD-3-Clause
2    Copyright(c) 2016-2017 Intel Corporation.
3
4.. _l2_fwd_crypto_app:
5
6L2 Forwarding with Crypto Sample Application
7============================================
8
9The L2 Forwarding with Crypto (l2fwd-crypto) sample application is a simple example of packet processing using
10the Data Plane Development Kit (DPDK), in conjunction with the Cryptodev library.
11
12Overview
13--------
14
15The L2 Forwarding with Crypto sample application performs a crypto operation (cipher/hash)
16specified by the user from command line (or using the default values),
17with a crypto device capable of doing that operation,
18for each packet that is received on a RX_PORT and performs L2 forwarding.
19The destination port is the adjacent port from the enabled portmask, that is,
20if the first four ports are enabled (portmask 0xf),
21ports 0 and 1 forward into each other, and ports 2 and 3 forward into each other.
22Also, if MAC addresses updating is enabled, the MAC addresses are affected as follows:
23
24*   The source MAC address is replaced by the TX_PORT MAC address
25
26*   The destination MAC address is replaced by  02:00:00:00:00:TX_PORT_ID
27
28Compiling the Application
29-------------------------
30
31To compile the sample application see :doc:`compiling`.
32
33The application is located in the ``l2fwd-crypt`` sub-directory.
34
35Running the Application
36-----------------------
37
38The application requires a number of command line options:
39
40.. code-block:: console
41
42    ./<build_dir>/examples/dpdk-l2fwd-crypto [EAL options] -- [-p PORTMASK] [-q NQ] [-s] [-T PERIOD] /
43    [--cdev_type HW/SW/ANY] [--chain HASH_CIPHER/CIPHER_HASH/CIPHER_ONLY/HASH_ONLY/AEAD] /
44    [--cipher_algo ALGO] [--cipher_op ENCRYPT/DECRYPT] [--cipher_dataunit_len SIZE] /
45    [--cipher_key KEY] [--cipher_key_random_size SIZE] [--cipher_iv IV] /
46    [--cipher_iv_random_size SIZE] /
47    [--auth_algo ALGO] [--auth_op GENERATE/VERIFY] [--auth_key KEY] /
48    [--auth_key_random_size SIZE] [--auth_iv IV] [--auth_iv_random_size SIZE] /
49    [--aead_algo ALGO] [--aead_op ENCRYPT/DECRYPT] [--aead_key KEY] /
50    [--aead_key_random_size SIZE] [--aead_iv] [--aead_iv_random_size SIZE] /
51    [--aad AAD] [--aad_random_size SIZE] /
52    [--digest size SIZE] [--sessionless] [--cryptodev_mask MASK] /
53    [--mac-updating] [--no-mac-updating]
54
55where,
56
57*   p PORTMASK: A hexadecimal bitmask of the ports to configure (default is all the ports)
58
59*   q NQ: A number of queues (=ports) per lcore (default is 1)
60
61*   s: manage all ports from single core
62
63*   T PERIOD: statistics will be refreshed each PERIOD seconds
64
65    (0 to disable, 10 default, 86400 maximum)
66
67*   cdev_type: select preferred crypto device type: HW, SW or anything (ANY)
68
69    (default is ANY)
70
71*   chain: select the operation chaining to perform: Cipher->Hash (CIPHER_HASH),
72
73    Hash->Cipher (HASH_CIPHER), Cipher (CIPHER_ONLY), Hash (HASH_ONLY)
74
75    or AEAD (AEAD)
76
77    (default is Cipher->Hash)
78
79*   cipher_algo: select the ciphering algorithm (default is aes-cbc)
80
81*   cipher_op: select the ciphering operation to perform: ENCRYPT or DECRYPT
82
83    (default is ENCRYPT)
84
85*   cipher_dataunit_len: set the length of the cipher data-unit.
86
87*   cipher_key: set the ciphering key to be used. Bytes has to be separated with ":"
88
89*   cipher_key_random_size: set the size of the ciphering key,
90
91    which will be generated randomly.
92
93    Note that if --cipher_key is used, this will be ignored.
94
95*   cipher_iv: set the cipher IV to be used. Bytes has to be separated with ":"
96
97*   cipher_iv_random_size: set the size of the cipher IV, which will be generated randomly.
98
99    Note that if --cipher_iv is used, this will be ignored.
100
101*   auth_algo: select the authentication algorithm (default is sha1-hmac)
102
103*   auth_op: select the authentication operation to perform: GENERATE or VERIFY
104
105    (default is GENERATE)
106
107*   auth_key: set the authentication key to be used. Bytes has to be separated with ":"
108
109*   auth_key_random_size: set the size of the authentication key,
110
111    which will be generated randomly.
112
113    Note that if --auth_key is used, this will be ignored.
114
115*   auth_iv: set the auth IV to be used. Bytes has to be separated with ":"
116
117*   auth_iv_random_size: set the size of the auth IV, which will be generated randomly.
118
119    Note that if --auth_iv is used, this will be ignored.
120
121*   aead_algo: select the AEAD algorithm (default is aes-gcm)
122
123*   aead_op: select the AEAD operation to perform: ENCRYPT or DECRYPT
124
125    (default is ENCRYPT)
126
127*   aead_key: set the AEAD key to be used. Bytes has to be separated with ":"
128
129*   aead_key_random_size: set the size of the AEAD key,
130
131    which will be generated randomly.
132
133    Note that if --aead_key is used, this will be ignored.
134
135*   aead_iv: set the AEAD IV to be used. Bytes has to be separated with ":"
136
137*   aead_iv_random_size: set the size of the AEAD IV, which will be generated randomly.
138
139    Note that if --aead_iv is used, this will be ignored.
140
141*   aad: set the AAD to be used. Bytes has to be separated with ":"
142
143*   aad_random_size: set the size of the AAD, which will be generated randomly.
144
145    Note that if --aad is used, this will be ignored.
146
147*   digest_size: set the size of the digest to be generated/verified.
148
149*   sessionless: no crypto session will be created.
150
151*   cryptodev_mask: A hexadecimal bitmask of the cryptodevs to be used by the
152    application.
153
154    (default is all cryptodevs).
155
156*   [no-]mac-updating: Enable or disable MAC addresses updating (enabled by default).
157
158
159The application requires that crypto devices capable of performing
160the specified crypto operation are available on application initialization.
161This means that HW crypto device/s must be bound to a DPDK driver or
162a SW crypto device/s (virtual crypto PMD) must be created (using --vdev).
163
164To run the application in linux environment with 2 lcores, 2 ports and 2 crypto devices, issue the command:
165
166.. code-block:: console
167
168    $ ./<build_dir>/examples/dpdk-l2fwd-crypto -l 0-1 -n 4 --vdev "crypto_aesni_mb0" \
169    --vdev "crypto_aesni_mb1" -- -p 0x3 --chain CIPHER_HASH \
170    --cipher_op ENCRYPT --cipher_algo aes-cbc \
171    --cipher_key 00:01:02:03:04:05:06:07:08:09:0a:0b:0c:0d:0e:0f \
172    --auth_op GENERATE --auth_algo aes-xcbc-mac \
173    --auth_key 10:11:12:13:14:15:16:17:18:19:1a:1b:1c:1d:1e:1f
174
175Refer to the *DPDK Getting Started Guide* for general information on running applications
176and the Environment Abstraction Layer (EAL) options.
177
178.. Note::
179
180    * The ``l2fwd-crypto`` sample application requires IPv4 packets for crypto operation.
181
182    * If multiple Ethernet ports is passed, then equal number of crypto devices are to be passed.
183
184    * All crypto devices shall use the same session.
185
186Explanation
187-----------
188
189The L2 forward with Crypto application demonstrates the performance of a crypto operation
190on a packet received on a RX PORT before forwarding it to a TX PORT.
191
192The following figure illustrates a sample flow of a packet in the application,
193from reception until transmission.
194
195.. _figure_l2_fwd_encrypt_flow:
196
197.. figure:: img/l2_fwd_encrypt_flow.*
198
199   Encryption flow Through the L2 Forwarding with Crypto Application
200
201
202The following sections provide some explanation of the application.
203
204Crypto operation specification
205~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
206
207All the packets received in all the ports get transformed by the crypto device/s
208(ciphering and/or authentication).
209The crypto operation to be performed on the packet is parsed from the command line
210(go to "Running the Application" section for all the options).
211
212If no parameter is passed, the default crypto operation is:
213
214* Encryption with AES-CBC with 128 bit key.
215
216* Authentication with SHA1-HMAC (generation).
217
218* Keys, IV and AAD are generated randomly.
219
220There are two methods to pass keys, IV and ADD from the command line:
221
222* Passing the full key, separated bytes by ":"::
223
224   --cipher_key 00:11:22:33:44
225
226* Passing the size, so key is generated randomly::
227
228   --cipher_key_random_size 16
229
230**Note**:
231   If full key is passed (first method) and the size is passed as well (second method),
232   the latter will be ignored.
233
234Size of these keys are checked (regardless the method), before starting the app,
235to make sure that it is supported by the crypto devices.
236
237Crypto device initialization
238~~~~~~~~~~~~~~~~~~~~~~~~~~~~
239
240Once the encryption operation is defined, crypto devices are initialized.
241The crypto devices must be either bound to a DPDK driver (if they are physical devices)
242or created using the EAL option --vdev (if they are virtual devices),
243when running the application.
244
245The initialize_cryptodevs() function performs the device initialization.
246It iterates through the list of the available crypto devices and
247check which ones are capable of performing the operation.
248Each device has a set of capabilities associated with it,
249which are stored in the device info structure, so the function checks if the operation
250is within the structure of each device.
251
252The following code checks if the device supports the specified cipher algorithm
253(similar for the authentication algorithm):
254
255.. literalinclude:: ../../../examples/l2fwd-crypto/main.c
256    :language: c
257    :start-after: Check if device supports cipher algo. 8<
258    :end-before: >8 End of check if device supports cipher algo.
259    :dedent: 2
260
261If a capable crypto device is found, key sizes are checked to see if they are supported
262(cipher key and IV for the ciphering):
263
264.. literalinclude:: ../../../examples/l2fwd-crypto/main.c
265    :language: c
266    :start-after: Check if capable cipher is supported. 8<
267    :end-before: >8 End of checking if cipher is supported.
268    :dedent: 2
269
270After all the checks, the device is configured and it is added to the
271crypto device list.
272
273**Note**:
274   The number of crypto devices that supports the specified crypto operation
275   must be at least the number of ports to be used.
276
277Session creation
278~~~~~~~~~~~~~~~~
279
280The crypto operation has a crypto session associated to it, which contains
281information such as the transform chain to perform (e.g. ciphering then hashing),
282pointers to the keys, lengths... etc.
283
284This session is created and is later attached to the crypto operation:
285
286.. literalinclude:: ../../../examples/l2fwd-crypto/main.c
287    :language: c
288    :start-after: Session is created and is later attached to the crypto operation. 8<
289    :end-before: >8 End of creation of session.
290
291Crypto operation creation
292~~~~~~~~~~~~~~~~~~~~~~~~~
293
294Given N packets received from a RX PORT, N crypto operations are allocated
295and filled:
296
297.. literalinclude:: ../../../examples/l2fwd-crypto/main.c
298    :language: c
299    :start-after: Allocate and fillcrypto operations. 8<
300    :end-before: >8 End of crypto operation allocated and filled.
301    :dedent: 3
302
303After filling the crypto operation (including session attachment),
304the mbuf which will be transformed is attached to it::
305
306   op->sym->m_src = m;
307
308Since no destination mbuf is set, the source mbuf will be overwritten
309after the operation is done (in-place).
310
311Crypto operation enqueuing/dequeuing
312~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
313
314Once the operation has been created, it has to be enqueued in one of the crypto devices.
315Before doing so, for performance reasons, the operation stays in a buffer.
316When the buffer has enough operations (MAX_PKT_BURST), they are enqueued in the device,
317which will perform the operation at that moment:
318
319.. literalinclude:: ../../../examples/l2fwd-crypto/main.c
320    :language: c
321    :start-after: Crypto enqueue. 8<
322    :end-before: >8 End of crypto enqueue.
323
324.. literalinclude:: ../../../examples/l2fwd-crypto/main.c
325    :language: c
326    :start-after: l2fwd_crypto_send_burst 8<
327    :end-before: >8 End of l2fwd_crypto_send_burst.
328
329After this, the operations are dequeued from the device, and the transformed mbuf
330is extracted from the operation. Then, the operation is freed and the mbuf is
331forwarded as it is done in the L2 forwarding application.
332
333.. literalinclude:: ../../../examples/l2fwd-crypto/main.c
334    :language: c
335    :start-after: Dequeue packets from Crypto device. 8<
336    :end-before: >8 End of dequeue packets from crypto device.
337    :dedent: 3
338