compat.sh 40 KB

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  1. #!/bin/sh
  2. # compat.sh
  3. #
  4. # Copyright The Mbed TLS Contributors
  5. # SPDX-License-Identifier: Apache-2.0
  6. #
  7. # Licensed under the Apache License, Version 2.0 (the "License"); you may
  8. # not use this file except in compliance with the License.
  9. # You may obtain a copy of the License at
  10. #
  11. # http://www.apache.org/licenses/LICENSE-2.0
  12. #
  13. # Unless required by applicable law or agreed to in writing, software
  14. # distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
  15. # WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  16. # See the License for the specific language governing permissions and
  17. # limitations under the License.
  18. #
  19. # Purpose
  20. #
  21. # Test interoperbility with OpenSSL, GnuTLS as well as itself.
  22. #
  23. # Check each common ciphersuite, with each version, both ways (client/server),
  24. # with and without client authentication.
  25. set -u
  26. # Limit the size of each log to 10 GiB, in case of failures with this script
  27. # where it may output seemingly unlimited length error logs.
  28. ulimit -f 20971520
  29. # initialise counters
  30. TESTS=0
  31. FAILED=0
  32. SKIPPED=0
  33. SRVMEM=0
  34. # default commands, can be overridden by the environment
  35. : ${M_SRV:=../programs/ssl/ssl_server2}
  36. : ${M_CLI:=../programs/ssl/ssl_client2}
  37. : ${OPENSSL:=openssl}
  38. : ${GNUTLS_CLI:=gnutls-cli}
  39. : ${GNUTLS_SERV:=gnutls-serv}
  40. # The OPENSSL variable used to be OPENSSL_CMD for historical reasons.
  41. # To help the migration, error out if the old variable is set,
  42. # but only if it has a different value than the new one.
  43. if [ "${OPENSSL_CMD+set}" = set ]; then
  44. # the variable is set, we can now check its value
  45. if [ "$OPENSSL_CMD" != "$OPENSSL" ]; then
  46. echo "Please use OPENSSL instead of OPENSSL_CMD." >&2
  47. exit 125
  48. fi
  49. fi
  50. # do we have a recent enough GnuTLS?
  51. if ( which $GNUTLS_CLI && which $GNUTLS_SERV ) >/dev/null 2>&1; then
  52. G_VER="$( $GNUTLS_CLI --version | head -n1 )"
  53. if echo "$G_VER" | grep '@VERSION@' > /dev/null; then # git version
  54. PEER_GNUTLS=" GnuTLS"
  55. else
  56. eval $( echo $G_VER | sed 's/.* \([0-9]*\)\.\([0-9]\)*\.\([0-9]*\)$/MAJOR="\1" MINOR="\2" PATCH="\3"/' )
  57. if [ $MAJOR -lt 3 -o \
  58. \( $MAJOR -eq 3 -a $MINOR -lt 2 \) -o \
  59. \( $MAJOR -eq 3 -a $MINOR -eq 2 -a $PATCH -lt 15 \) ]
  60. then
  61. PEER_GNUTLS=""
  62. else
  63. PEER_GNUTLS=" GnuTLS"
  64. if [ $MINOR -lt 4 ]; then
  65. GNUTLS_MINOR_LT_FOUR='x'
  66. fi
  67. fi
  68. fi
  69. else
  70. PEER_GNUTLS=""
  71. fi
  72. # default values for options
  73. # /!\ keep this synchronised with:
  74. # - basic-build-test.sh
  75. # - all.sh (multiple components)
  76. MODES="tls12 dtls12"
  77. VERIFIES="NO YES"
  78. TYPES="ECDSA RSA PSK"
  79. FILTER=""
  80. # By default, exclude:
  81. # - NULL: excluded from our default config + requires OpenSSL legacy
  82. # - ARIA: requires OpenSSL >= 1.1.1
  83. # - ChachaPoly: requires OpenSSL >= 1.1.0
  84. EXCLUDE='NULL\|ARIA\|CHACHA20_POLY1305'
  85. VERBOSE=""
  86. MEMCHECK=0
  87. PEERS="OpenSSL$PEER_GNUTLS mbedTLS"
  88. # hidden option: skip DTLS with OpenSSL
  89. # (travis CI has a version that doesn't work for us)
  90. : ${OSSL_NO_DTLS:=0}
  91. print_usage() {
  92. echo "Usage: $0"
  93. printf " -h|--help\tPrint this help.\n"
  94. printf " -f|--filter\tOnly matching ciphersuites are tested (Default: '%s')\n" "$FILTER"
  95. printf " -e|--exclude\tMatching ciphersuites are excluded (Default: '%s')\n" "$EXCLUDE"
  96. printf " -m|--modes\tWhich modes to perform (Default: '%s')\n" "$MODES"
  97. printf " -t|--types\tWhich key exchange type to perform (Default: '%s')\n" "$TYPES"
  98. printf " -V|--verify\tWhich verification modes to perform (Default: '%s')\n" "$VERIFIES"
  99. printf " -p|--peers\tWhich peers to use (Default: '%s')\n" "$PEERS"
  100. printf " \tAlso available: GnuTLS (needs v3.2.15 or higher)\n"
  101. printf " -M|--memcheck\tCheck memory leaks and errors.\n"
  102. printf " -v|--verbose\tSet verbose output.\n"
  103. }
  104. get_options() {
  105. while [ $# -gt 0 ]; do
  106. case "$1" in
  107. -f|--filter)
  108. shift; FILTER=$1
  109. ;;
  110. -e|--exclude)
  111. shift; EXCLUDE=$1
  112. ;;
  113. -m|--modes)
  114. shift; MODES=$1
  115. ;;
  116. -t|--types)
  117. shift; TYPES=$1
  118. ;;
  119. -V|--verify)
  120. shift; VERIFIES=$1
  121. ;;
  122. -p|--peers)
  123. shift; PEERS=$1
  124. ;;
  125. -v|--verbose)
  126. VERBOSE=1
  127. ;;
  128. -M|--memcheck)
  129. MEMCHECK=1
  130. ;;
  131. -h|--help)
  132. print_usage
  133. exit 0
  134. ;;
  135. *)
  136. echo "Unknown argument: '$1'"
  137. print_usage
  138. exit 1
  139. ;;
  140. esac
  141. shift
  142. done
  143. # sanitize some options (modes checked later)
  144. VERIFIES="$( echo $VERIFIES | tr [a-z] [A-Z] )"
  145. TYPES="$( echo $TYPES | tr [a-z] [A-Z] )"
  146. }
  147. log() {
  148. if [ "X" != "X$VERBOSE" ]; then
  149. echo ""
  150. echo "$@"
  151. fi
  152. }
  153. # is_dtls <mode>
  154. is_dtls()
  155. {
  156. test "$1" = "dtls12"
  157. }
  158. # minor_ver <mode>
  159. minor_ver()
  160. {
  161. case "$1" in
  162. tls12|dtls12)
  163. echo 3
  164. ;;
  165. *)
  166. echo "error: invalid mode: $MODE" >&2
  167. # exiting is no good here, typically called in a subshell
  168. echo -1
  169. esac
  170. }
  171. filter()
  172. {
  173. LIST="$1"
  174. NEW_LIST=""
  175. EXCLMODE="$EXCLUDE"
  176. for i in $LIST;
  177. do
  178. NEW_LIST="$NEW_LIST $( echo "$i" | grep "$FILTER" | grep -v "$EXCLMODE" )"
  179. done
  180. # normalize whitespace
  181. echo "$NEW_LIST" | sed -e 's/[[:space:]][[:space:]]*/ /g' -e 's/^ //' -e 's/ $//'
  182. }
  183. filter_ciphersuites()
  184. {
  185. if [ "X" != "X$FILTER" -o "X" != "X$EXCLUDE" ];
  186. then
  187. # Ciphersuite for mbed TLS
  188. M_CIPHERS=$( filter "$M_CIPHERS" )
  189. # Ciphersuite for OpenSSL
  190. O_CIPHERS=$( filter "$O_CIPHERS" )
  191. # Ciphersuite for GnuTLS
  192. G_CIPHERS=$( filter "$G_CIPHERS" )
  193. fi
  194. # For GnuTLS client -> mbed TLS server,
  195. # we need to force IPv4 by connecting to 127.0.0.1 but then auth fails
  196. if is_dtls "$MODE" && [ "X$VERIFY" = "XYES" ]; then
  197. G_CIPHERS=""
  198. fi
  199. }
  200. reset_ciphersuites()
  201. {
  202. M_CIPHERS=""
  203. O_CIPHERS=""
  204. G_CIPHERS=""
  205. }
  206. # translate_ciphers {g|m|o} {STANDARD_CIPHER_SUITE_NAME...}
  207. # Set $ciphers to the cipher suite name translations for the specified
  208. # program (gnutls, mbedtls or openssl). $ciphers is a space-separated
  209. # list of entries of the form "STANDARD_NAME=PROGRAM_NAME".
  210. translate_ciphers()
  211. {
  212. ciphers=$(scripts/translate_ciphers.py "$@")
  213. if [ $? -ne 0 ]; then
  214. echo "translate_ciphers.py failed with exit code $1" >&2
  215. echo "$2" >&2
  216. exit 1
  217. fi
  218. }
  219. # Ciphersuites that can be used with all peers.
  220. # Since we currently have three possible peers, each ciphersuite should appear
  221. # three times: in each peer's list (with the name that this peer uses).
  222. add_common_ciphersuites()
  223. {
  224. CIPHERS=""
  225. case $TYPE in
  226. "ECDSA")
  227. CIPHERS="$CIPHERS \
  228. TLS_ECDHE_ECDSA_WITH_AES_128_CBC_SHA \
  229. TLS_ECDHE_ECDSA_WITH_AES_128_CBC_SHA256 \
  230. TLS_ECDHE_ECDSA_WITH_AES_128_GCM_SHA256 \
  231. TLS_ECDHE_ECDSA_WITH_AES_256_CBC_SHA \
  232. TLS_ECDHE_ECDSA_WITH_AES_256_CBC_SHA384 \
  233. TLS_ECDHE_ECDSA_WITH_AES_256_GCM_SHA384 \
  234. TLS_ECDHE_ECDSA_WITH_NULL_SHA \
  235. "
  236. ;;
  237. "RSA")
  238. CIPHERS="$CIPHERS \
  239. TLS_DHE_RSA_WITH_AES_128_CBC_SHA \
  240. TLS_DHE_RSA_WITH_AES_128_CBC_SHA256 \
  241. TLS_DHE_RSA_WITH_AES_128_GCM_SHA256 \
  242. TLS_DHE_RSA_WITH_AES_256_CBC_SHA \
  243. TLS_DHE_RSA_WITH_AES_256_CBC_SHA256 \
  244. TLS_DHE_RSA_WITH_AES_256_GCM_SHA384 \
  245. TLS_DHE_RSA_WITH_CAMELLIA_128_CBC_SHA \
  246. TLS_DHE_RSA_WITH_CAMELLIA_256_CBC_SHA \
  247. TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA \
  248. TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA256 \
  249. TLS_ECDHE_RSA_WITH_AES_128_GCM_SHA256 \
  250. TLS_ECDHE_RSA_WITH_AES_256_CBC_SHA \
  251. TLS_ECDHE_RSA_WITH_AES_256_CBC_SHA384 \
  252. TLS_ECDHE_RSA_WITH_AES_256_GCM_SHA384 \
  253. TLS_ECDHE_RSA_WITH_NULL_SHA \
  254. TLS_RSA_WITH_AES_128_CBC_SHA \
  255. TLS_RSA_WITH_AES_128_CBC_SHA256 \
  256. TLS_RSA_WITH_AES_128_GCM_SHA256 \
  257. TLS_RSA_WITH_AES_256_CBC_SHA \
  258. TLS_RSA_WITH_AES_256_CBC_SHA256 \
  259. TLS_RSA_WITH_AES_256_GCM_SHA384 \
  260. TLS_RSA_WITH_CAMELLIA_128_CBC_SHA \
  261. TLS_RSA_WITH_CAMELLIA_256_CBC_SHA \
  262. TLS_RSA_WITH_NULL_MD5 \
  263. TLS_RSA_WITH_NULL_SHA \
  264. TLS_RSA_WITH_NULL_SHA256 \
  265. "
  266. ;;
  267. "PSK")
  268. CIPHERS="$CIPHERS \
  269. TLS_PSK_WITH_AES_128_CBC_SHA \
  270. TLS_PSK_WITH_AES_256_CBC_SHA \
  271. "
  272. ;;
  273. esac
  274. O_CIPHERS="$O_CIPHERS $CIPHERS"
  275. G_CIPHERS="$G_CIPHERS $CIPHERS"
  276. M_CIPHERS="$M_CIPHERS $CIPHERS"
  277. }
  278. # Ciphersuites usable only with Mbed TLS and OpenSSL
  279. # A list of ciphersuites in the standard naming convention is appended
  280. # to the list of Mbed TLS ciphersuites $M_CIPHERS and
  281. # to the list of OpenSSL ciphersuites $O_CIPHERS respectively.
  282. # Based on client's naming convention, all ciphersuite names will be
  283. # translated into another naming format before sent to the client.
  284. #
  285. # NOTE: for some reason RSA-PSK doesn't work with OpenSSL,
  286. # so RSA-PSK ciphersuites need to go in other sections, see
  287. # https://github.com/Mbed-TLS/mbedtls/issues/1419
  288. #
  289. # ChachaPoly suites are here rather than in "common", as they were added in
  290. # GnuTLS in 3.5.0 and the CI only has 3.4.x so far.
  291. add_openssl_ciphersuites()
  292. {
  293. CIPHERS=""
  294. case $TYPE in
  295. "ECDSA")
  296. CIPHERS="$CIPHERS \
  297. TLS_ECDH_ECDSA_WITH_AES_128_CBC_SHA \
  298. TLS_ECDH_ECDSA_WITH_AES_128_CBC_SHA256 \
  299. TLS_ECDH_ECDSA_WITH_AES_128_GCM_SHA256 \
  300. TLS_ECDH_ECDSA_WITH_AES_256_CBC_SHA \
  301. TLS_ECDH_ECDSA_WITH_AES_256_CBC_SHA384 \
  302. TLS_ECDH_ECDSA_WITH_AES_256_GCM_SHA384 \
  303. TLS_ECDH_ECDSA_WITH_NULL_SHA \
  304. TLS_ECDHE_ECDSA_WITH_ARIA_128_GCM_SHA256 \
  305. TLS_ECDHE_ECDSA_WITH_ARIA_256_GCM_SHA384 \
  306. TLS_ECDHE_ECDSA_WITH_CHACHA20_POLY1305_SHA256 \
  307. "
  308. ;;
  309. "RSA")
  310. CIPHERS="$CIPHERS \
  311. TLS_DHE_RSA_WITH_ARIA_128_GCM_SHA256 \
  312. TLS_DHE_RSA_WITH_ARIA_256_GCM_SHA384 \
  313. TLS_DHE_RSA_WITH_CHACHA20_POLY1305_SHA256 \
  314. TLS_ECDHE_RSA_WITH_ARIA_128_GCM_SHA256 \
  315. TLS_ECDHE_RSA_WITH_ARIA_256_GCM_SHA384 \
  316. TLS_ECDHE_RSA_WITH_CHACHA20_POLY1305_SHA256 \
  317. TLS_RSA_WITH_ARIA_128_GCM_SHA256 \
  318. TLS_RSA_WITH_ARIA_256_GCM_SHA384 \
  319. "
  320. ;;
  321. "PSK")
  322. CIPHERS="$CIPHERS \
  323. TLS_DHE_PSK_WITH_ARIA_128_GCM_SHA256 \
  324. TLS_DHE_PSK_WITH_ARIA_256_GCM_SHA384 \
  325. TLS_DHE_PSK_WITH_CHACHA20_POLY1305_SHA256 \
  326. TLS_ECDHE_PSK_WITH_CHACHA20_POLY1305_SHA256 \
  327. TLS_PSK_WITH_ARIA_128_GCM_SHA256 \
  328. TLS_PSK_WITH_ARIA_256_GCM_SHA384 \
  329. TLS_PSK_WITH_CHACHA20_POLY1305_SHA256 \
  330. "
  331. ;;
  332. esac
  333. O_CIPHERS="$O_CIPHERS $CIPHERS"
  334. M_CIPHERS="$M_CIPHERS $CIPHERS"
  335. }
  336. # Ciphersuites usable only with Mbed TLS and GnuTLS
  337. # A list of ciphersuites in the standard naming convention is appended
  338. # to the list of Mbed TLS ciphersuites $M_CIPHERS and
  339. # to the list of GnuTLS ciphersuites $G_CIPHERS respectively.
  340. # Based on client's naming convention, all ciphersuite names will be
  341. # translated into another naming format before sent to the client.
  342. add_gnutls_ciphersuites()
  343. {
  344. CIPHERS=""
  345. case $TYPE in
  346. "ECDSA")
  347. CIPHERS="$CIPHERS \
  348. TLS_ECDHE_ECDSA_WITH_AES_128_CCM \
  349. TLS_ECDHE_ECDSA_WITH_AES_128_CCM_8 \
  350. TLS_ECDHE_ECDSA_WITH_AES_256_CCM \
  351. TLS_ECDHE_ECDSA_WITH_AES_256_CCM_8 \
  352. TLS_ECDHE_ECDSA_WITH_CAMELLIA_128_CBC_SHA256 \
  353. TLS_ECDHE_ECDSA_WITH_CAMELLIA_128_GCM_SHA256 \
  354. TLS_ECDHE_ECDSA_WITH_CAMELLIA_256_CBC_SHA384 \
  355. TLS_ECDHE_ECDSA_WITH_CAMELLIA_256_GCM_SHA384 \
  356. "
  357. ;;
  358. "RSA")
  359. CIPHERS="$CIPHERS \
  360. TLS_DHE_RSA_WITH_AES_128_CCM \
  361. TLS_DHE_RSA_WITH_AES_128_CCM_8 \
  362. TLS_DHE_RSA_WITH_AES_256_CCM \
  363. TLS_DHE_RSA_WITH_AES_256_CCM_8 \
  364. TLS_DHE_RSA_WITH_CAMELLIA_128_CBC_SHA256 \
  365. TLS_DHE_RSA_WITH_CAMELLIA_128_GCM_SHA256 \
  366. TLS_DHE_RSA_WITH_CAMELLIA_256_CBC_SHA256 \
  367. TLS_DHE_RSA_WITH_CAMELLIA_256_GCM_SHA384 \
  368. TLS_ECDHE_RSA_WITH_CAMELLIA_128_CBC_SHA256 \
  369. TLS_ECDHE_RSA_WITH_CAMELLIA_128_GCM_SHA256 \
  370. TLS_ECDHE_RSA_WITH_CAMELLIA_256_CBC_SHA384 \
  371. TLS_ECDHE_RSA_WITH_CAMELLIA_256_GCM_SHA384 \
  372. TLS_RSA_WITH_AES_128_CCM \
  373. TLS_RSA_WITH_AES_128_CCM_8 \
  374. TLS_RSA_WITH_AES_256_CCM \
  375. TLS_RSA_WITH_AES_256_CCM_8 \
  376. TLS_RSA_WITH_CAMELLIA_128_CBC_SHA256 \
  377. TLS_RSA_WITH_CAMELLIA_128_GCM_SHA256 \
  378. TLS_RSA_WITH_CAMELLIA_256_CBC_SHA256 \
  379. TLS_RSA_WITH_CAMELLIA_256_GCM_SHA384 \
  380. "
  381. ;;
  382. "PSK")
  383. CIPHERS="$CIPHERS \
  384. TLS_DHE_PSK_WITH_AES_128_CBC_SHA \
  385. TLS_DHE_PSK_WITH_AES_128_CBC_SHA256 \
  386. TLS_DHE_PSK_WITH_AES_128_CCM \
  387. TLS_DHE_PSK_WITH_AES_128_CCM_8 \
  388. TLS_DHE_PSK_WITH_AES_128_GCM_SHA256 \
  389. TLS_DHE_PSK_WITH_AES_256_CBC_SHA \
  390. TLS_DHE_PSK_WITH_AES_256_CBC_SHA384 \
  391. TLS_DHE_PSK_WITH_AES_256_CCM \
  392. TLS_DHE_PSK_WITH_AES_256_CCM_8 \
  393. TLS_DHE_PSK_WITH_AES_256_GCM_SHA384 \
  394. TLS_DHE_PSK_WITH_CAMELLIA_128_CBC_SHA256 \
  395. TLS_DHE_PSK_WITH_CAMELLIA_128_GCM_SHA256 \
  396. TLS_DHE_PSK_WITH_CAMELLIA_256_CBC_SHA384 \
  397. TLS_DHE_PSK_WITH_CAMELLIA_256_GCM_SHA384 \
  398. TLS_DHE_PSK_WITH_NULL_SHA256 \
  399. TLS_DHE_PSK_WITH_NULL_SHA384 \
  400. TLS_ECDHE_PSK_WITH_AES_128_CBC_SHA \
  401. TLS_ECDHE_PSK_WITH_AES_128_CBC_SHA256 \
  402. TLS_ECDHE_PSK_WITH_AES_256_CBC_SHA \
  403. TLS_ECDHE_PSK_WITH_AES_256_CBC_SHA384 \
  404. TLS_ECDHE_PSK_WITH_CAMELLIA_128_CBC_SHA256 \
  405. TLS_ECDHE_PSK_WITH_CAMELLIA_256_CBC_SHA384 \
  406. TLS_ECDHE_PSK_WITH_NULL_SHA256 \
  407. TLS_ECDHE_PSK_WITH_NULL_SHA384 \
  408. TLS_PSK_WITH_AES_128_CBC_SHA256 \
  409. TLS_PSK_WITH_AES_128_CCM \
  410. TLS_PSK_WITH_AES_128_CCM_8 \
  411. TLS_PSK_WITH_AES_128_GCM_SHA256 \
  412. TLS_PSK_WITH_AES_256_CBC_SHA384 \
  413. TLS_PSK_WITH_AES_256_CCM \
  414. TLS_PSK_WITH_AES_256_CCM_8 \
  415. TLS_PSK_WITH_AES_256_GCM_SHA384 \
  416. TLS_PSK_WITH_CAMELLIA_128_CBC_SHA256 \
  417. TLS_PSK_WITH_CAMELLIA_128_GCM_SHA256 \
  418. TLS_PSK_WITH_CAMELLIA_256_CBC_SHA384 \
  419. TLS_PSK_WITH_CAMELLIA_256_GCM_SHA384 \
  420. TLS_PSK_WITH_NULL_SHA256 \
  421. TLS_PSK_WITH_NULL_SHA384 \
  422. TLS_RSA_PSK_WITH_AES_128_CBC_SHA \
  423. TLS_RSA_PSK_WITH_AES_128_CBC_SHA256 \
  424. TLS_RSA_PSK_WITH_AES_128_GCM_SHA256 \
  425. TLS_RSA_PSK_WITH_AES_256_CBC_SHA \
  426. TLS_RSA_PSK_WITH_AES_256_CBC_SHA384 \
  427. TLS_RSA_PSK_WITH_AES_256_GCM_SHA384 \
  428. TLS_RSA_PSK_WITH_CAMELLIA_128_CBC_SHA256 \
  429. TLS_RSA_PSK_WITH_CAMELLIA_128_GCM_SHA256 \
  430. TLS_RSA_PSK_WITH_CAMELLIA_256_CBC_SHA384 \
  431. TLS_RSA_PSK_WITH_CAMELLIA_256_GCM_SHA384 \
  432. TLS_RSA_PSK_WITH_NULL_SHA256 \
  433. TLS_RSA_PSK_WITH_NULL_SHA384 \
  434. "
  435. ;;
  436. esac
  437. G_CIPHERS="$G_CIPHERS $CIPHERS"
  438. M_CIPHERS="$M_CIPHERS $CIPHERS"
  439. }
  440. # Ciphersuites usable only with Mbed TLS (not currently supported by another
  441. # peer usable in this script). This provides only very rudimentaty testing, as
  442. # this is not interop testing, but it's better than nothing.
  443. add_mbedtls_ciphersuites()
  444. {
  445. case $TYPE in
  446. "ECDSA")
  447. M_CIPHERS="$M_CIPHERS \
  448. TLS_ECDH_ECDSA_WITH_ARIA_128_CBC_SHA256 \
  449. TLS_ECDH_ECDSA_WITH_ARIA_128_GCM_SHA256 \
  450. TLS_ECDH_ECDSA_WITH_ARIA_256_CBC_SHA384 \
  451. TLS_ECDH_ECDSA_WITH_ARIA_256_GCM_SHA384 \
  452. TLS_ECDH_ECDSA_WITH_CAMELLIA_128_CBC_SHA256 \
  453. TLS_ECDH_ECDSA_WITH_CAMELLIA_128_GCM_SHA256 \
  454. TLS_ECDH_ECDSA_WITH_CAMELLIA_256_CBC_SHA384 \
  455. TLS_ECDH_ECDSA_WITH_CAMELLIA_256_GCM_SHA384 \
  456. TLS_ECDHE_ECDSA_WITH_ARIA_128_CBC_SHA256 \
  457. TLS_ECDHE_ECDSA_WITH_ARIA_256_CBC_SHA384 \
  458. "
  459. ;;
  460. "RSA")
  461. M_CIPHERS="$M_CIPHERS \
  462. TLS_DHE_RSA_WITH_ARIA_128_CBC_SHA256 \
  463. TLS_DHE_RSA_WITH_ARIA_256_CBC_SHA384 \
  464. TLS_ECDHE_RSA_WITH_ARIA_128_CBC_SHA256 \
  465. TLS_ECDHE_RSA_WITH_ARIA_256_CBC_SHA384 \
  466. TLS_RSA_WITH_ARIA_128_CBC_SHA256 \
  467. TLS_RSA_WITH_ARIA_256_CBC_SHA384 \
  468. "
  469. ;;
  470. "PSK")
  471. # *PSK_NULL_SHA suites supported by GnuTLS 3.3.5 but not 3.2.15
  472. M_CIPHERS="$M_CIPHERS \
  473. TLS_DHE_PSK_WITH_ARIA_128_CBC_SHA256 \
  474. TLS_DHE_PSK_WITH_ARIA_256_CBC_SHA384 \
  475. TLS_DHE_PSK_WITH_NULL_SHA \
  476. TLS_ECDHE_PSK_WITH_ARIA_128_CBC_SHA256 \
  477. TLS_ECDHE_PSK_WITH_ARIA_256_CBC_SHA384 \
  478. TLS_ECDHE_PSK_WITH_NULL_SHA \
  479. TLS_PSK_WITH_ARIA_128_CBC_SHA256 \
  480. TLS_PSK_WITH_ARIA_256_CBC_SHA384 \
  481. TLS_PSK_WITH_NULL_SHA \
  482. TLS_RSA_PSK_WITH_ARIA_128_CBC_SHA256 \
  483. TLS_RSA_PSK_WITH_ARIA_128_GCM_SHA256 \
  484. TLS_RSA_PSK_WITH_ARIA_256_CBC_SHA384 \
  485. TLS_RSA_PSK_WITH_ARIA_256_GCM_SHA384 \
  486. TLS_RSA_PSK_WITH_CHACHA20_POLY1305_SHA256 \
  487. TLS_RSA_PSK_WITH_NULL_SHA \
  488. "
  489. ;;
  490. esac
  491. }
  492. # o_check_ciphersuite STANDARD_CIPHER_SUITE
  493. o_check_ciphersuite()
  494. {
  495. if [ "${O_SUPPORT_ECDH}" = "NO" ]; then
  496. case "$1" in
  497. *ECDH_*) SKIP_NEXT="YES"
  498. esac
  499. fi
  500. }
  501. setup_arguments()
  502. {
  503. O_MODE=""
  504. G_MODE=""
  505. case "$MODE" in
  506. "tls12")
  507. O_MODE="tls1_2"
  508. G_PRIO_MODE="+VERS-TLS1.2"
  509. ;;
  510. "dtls12")
  511. O_MODE="dtls1_2"
  512. G_PRIO_MODE="+VERS-DTLS1.2"
  513. G_MODE="-u"
  514. ;;
  515. *)
  516. echo "error: invalid mode: $MODE" >&2
  517. exit 1;
  518. esac
  519. # GnuTLS < 3.4 will choke if we try to allow CCM-8
  520. if [ -z "${GNUTLS_MINOR_LT_FOUR-}" ]; then
  521. G_PRIO_CCM="+AES-256-CCM-8:+AES-128-CCM-8:"
  522. else
  523. G_PRIO_CCM=""
  524. fi
  525. M_SERVER_ARGS="server_port=$PORT server_addr=0.0.0.0 force_version=$MODE"
  526. O_SERVER_ARGS="-accept $PORT -cipher NULL,ALL -$O_MODE"
  527. G_SERVER_ARGS="-p $PORT --http $G_MODE"
  528. G_SERVER_PRIO="NORMAL:${G_PRIO_CCM}+NULL:+MD5:+PSK:+DHE-PSK:+ECDHE-PSK:+SHA256:+SHA384:+RSA-PSK:-VERS-TLS-ALL:$G_PRIO_MODE"
  529. # The default prime for `openssl s_server` depends on the version:
  530. # * OpenSSL <= 1.0.2a: 512-bit
  531. # * OpenSSL 1.0.2b to 1.1.1b: 1024-bit
  532. # * OpenSSL >= 1.1.1c: 2048-bit
  533. # Mbed TLS wants >=1024, so force that for older versions. Don't force
  534. # it for newer versions, which reject a 1024-bit prime. Indifferently
  535. # force it or not for intermediate versions.
  536. case $($OPENSSL version) in
  537. "OpenSSL 1.0"*)
  538. O_SERVER_ARGS="$O_SERVER_ARGS -dhparam data_files/dhparams.pem"
  539. ;;
  540. esac
  541. # with OpenSSL 1.0.1h, -www, -WWW and -HTTP break DTLS handshakes
  542. if is_dtls "$MODE"; then
  543. O_SERVER_ARGS="$O_SERVER_ARGS"
  544. else
  545. O_SERVER_ARGS="$O_SERVER_ARGS -www"
  546. fi
  547. M_CLIENT_ARGS="server_port=$PORT server_addr=127.0.0.1 force_version=$MODE"
  548. O_CLIENT_ARGS="-connect localhost:$PORT -$O_MODE"
  549. G_CLIENT_ARGS="-p $PORT --debug 3 $G_MODE"
  550. # Newer versions of OpenSSL have a syntax to enable all "ciphers", even
  551. # low-security ones. This covers not just cipher suites but also protocol
  552. # versions. It is necessary, for example, to use (D)TLS 1.0/1.1 on
  553. # OpenSSL 1.1.1f from Ubuntu 20.04. The syntax was only introduced in
  554. # OpenSSL 1.1.0 (21e0c1d23afff48601eb93135defddae51f7e2e3) and I can't find
  555. # a way to discover it from -help, so check the openssl version.
  556. case $($OPENSSL version) in
  557. "OpenSSL 0"*|"OpenSSL 1.0"*) :;;
  558. *)
  559. O_CLIENT_ARGS="$O_CLIENT_ARGS -cipher ALL@SECLEVEL=0"
  560. O_SERVER_ARGS="$O_SERVER_ARGS -cipher ALL@SECLEVEL=0"
  561. ;;
  562. esac
  563. case $($OPENSSL ciphers ALL) in
  564. *ECDH-ECDSA*|*ECDH-RSA*) O_SUPPORT_ECDH="YES";;
  565. *) O_SUPPORT_ECDH="NO";;
  566. esac
  567. if [ "X$VERIFY" = "XYES" ];
  568. then
  569. M_SERVER_ARGS="$M_SERVER_ARGS ca_file=data_files/test-ca_cat12.crt auth_mode=required"
  570. O_SERVER_ARGS="$O_SERVER_ARGS -CAfile data_files/test-ca_cat12.crt -Verify 10"
  571. G_SERVER_ARGS="$G_SERVER_ARGS --x509cafile data_files/test-ca_cat12.crt --require-client-cert"
  572. M_CLIENT_ARGS="$M_CLIENT_ARGS ca_file=data_files/test-ca_cat12.crt auth_mode=required"
  573. O_CLIENT_ARGS="$O_CLIENT_ARGS -CAfile data_files/test-ca_cat12.crt -verify 10"
  574. G_CLIENT_ARGS="$G_CLIENT_ARGS --x509cafile data_files/test-ca_cat12.crt"
  575. else
  576. # don't request a client cert at all
  577. M_SERVER_ARGS="$M_SERVER_ARGS ca_file=none auth_mode=none"
  578. G_SERVER_ARGS="$G_SERVER_ARGS --disable-client-cert"
  579. M_CLIENT_ARGS="$M_CLIENT_ARGS ca_file=none auth_mode=none"
  580. O_CLIENT_ARGS="$O_CLIENT_ARGS"
  581. G_CLIENT_ARGS="$G_CLIENT_ARGS --insecure"
  582. fi
  583. case $TYPE in
  584. "ECDSA")
  585. M_SERVER_ARGS="$M_SERVER_ARGS crt_file=data_files/server5.crt key_file=data_files/server5.key"
  586. O_SERVER_ARGS="$O_SERVER_ARGS -cert data_files/server5.crt -key data_files/server5.key"
  587. G_SERVER_ARGS="$G_SERVER_ARGS --x509certfile data_files/server5.crt --x509keyfile data_files/server5.key"
  588. if [ "X$VERIFY" = "XYES" ]; then
  589. M_CLIENT_ARGS="$M_CLIENT_ARGS crt_file=data_files/server6.crt key_file=data_files/server6.key"
  590. O_CLIENT_ARGS="$O_CLIENT_ARGS -cert data_files/server6.crt -key data_files/server6.key"
  591. G_CLIENT_ARGS="$G_CLIENT_ARGS --x509certfile data_files/server6.crt --x509keyfile data_files/server6.key"
  592. else
  593. M_CLIENT_ARGS="$M_CLIENT_ARGS crt_file=none key_file=none"
  594. fi
  595. ;;
  596. "RSA")
  597. M_SERVER_ARGS="$M_SERVER_ARGS crt_file=data_files/server2-sha256.crt key_file=data_files/server2.key"
  598. O_SERVER_ARGS="$O_SERVER_ARGS -cert data_files/server2-sha256.crt -key data_files/server2.key"
  599. G_SERVER_ARGS="$G_SERVER_ARGS --x509certfile data_files/server2-sha256.crt --x509keyfile data_files/server2.key"
  600. if [ "X$VERIFY" = "XYES" ]; then
  601. M_CLIENT_ARGS="$M_CLIENT_ARGS crt_file=data_files/cert_sha256.crt key_file=data_files/server1.key"
  602. O_CLIENT_ARGS="$O_CLIENT_ARGS -cert data_files/cert_sha256.crt -key data_files/server1.key"
  603. G_CLIENT_ARGS="$G_CLIENT_ARGS --x509certfile data_files/cert_sha256.crt --x509keyfile data_files/server1.key"
  604. else
  605. M_CLIENT_ARGS="$M_CLIENT_ARGS crt_file=none key_file=none"
  606. fi
  607. ;;
  608. "PSK")
  609. # give RSA-PSK-capable server a RSA cert
  610. # (should be a separate type, but harder to close with openssl)
  611. M_SERVER_ARGS="$M_SERVER_ARGS psk=6162636465666768696a6b6c6d6e6f70 ca_file=none crt_file=data_files/server2-sha256.crt key_file=data_files/server2.key"
  612. O_SERVER_ARGS="$O_SERVER_ARGS -psk 6162636465666768696a6b6c6d6e6f70 -nocert"
  613. G_SERVER_ARGS="$G_SERVER_ARGS --x509certfile data_files/server2-sha256.crt --x509keyfile data_files/server2.key --pskpasswd data_files/passwd.psk"
  614. M_CLIENT_ARGS="$M_CLIENT_ARGS psk=6162636465666768696a6b6c6d6e6f70 crt_file=none key_file=none"
  615. O_CLIENT_ARGS="$O_CLIENT_ARGS -psk 6162636465666768696a6b6c6d6e6f70"
  616. G_CLIENT_ARGS="$G_CLIENT_ARGS --pskusername Client_identity --pskkey=6162636465666768696a6b6c6d6e6f70"
  617. ;;
  618. esac
  619. }
  620. # is_mbedtls <cmd_line>
  621. is_mbedtls() {
  622. case $1 in
  623. *ssl_client2*) true;;
  624. *ssl_server2*) true;;
  625. *) false;;
  626. esac
  627. }
  628. # has_mem_err <log_file_name>
  629. has_mem_err() {
  630. if ( grep -F 'All heap blocks were freed -- no leaks are possible' "$1" &&
  631. grep -F 'ERROR SUMMARY: 0 errors from 0 contexts' "$1" ) > /dev/null
  632. then
  633. return 1 # false: does not have errors
  634. else
  635. return 0 # true: has errors
  636. fi
  637. }
  638. # Wait for process $2 to be listening on port $1
  639. if type lsof >/dev/null 2>/dev/null; then
  640. wait_server_start() {
  641. START_TIME=$(date +%s)
  642. if is_dtls "$MODE"; then
  643. proto=UDP
  644. else
  645. proto=TCP
  646. fi
  647. while ! lsof -a -n -b -i "$proto:$1" -p "$2" >/dev/null 2>/dev/null; do
  648. if [ $(( $(date +%s) - $START_TIME )) -gt $DOG_DELAY ]; then
  649. echo "SERVERSTART TIMEOUT"
  650. echo "SERVERSTART TIMEOUT" >> $SRV_OUT
  651. break
  652. fi
  653. # Linux and *BSD support decimal arguments to sleep. On other
  654. # OSes this may be a tight loop.
  655. sleep 0.1 2>/dev/null || true
  656. done
  657. }
  658. else
  659. echo "Warning: lsof not available, wait_server_start = sleep"
  660. wait_server_start() {
  661. sleep 2
  662. }
  663. fi
  664. # start_server <name>
  665. # also saves name and command
  666. start_server() {
  667. case $1 in
  668. [Oo]pen*)
  669. SERVER_CMD="$OPENSSL s_server $O_SERVER_ARGS"
  670. ;;
  671. [Gg]nu*)
  672. SERVER_CMD="$GNUTLS_SERV $G_SERVER_ARGS --priority $G_SERVER_PRIO"
  673. ;;
  674. mbed*)
  675. SERVER_CMD="$M_SRV $M_SERVER_ARGS"
  676. if [ "$MEMCHECK" -gt 0 ]; then
  677. SERVER_CMD="valgrind --leak-check=full $SERVER_CMD"
  678. fi
  679. ;;
  680. *)
  681. echo "error: invalid server name: $1" >&2
  682. exit 1
  683. ;;
  684. esac
  685. SERVER_NAME=$1
  686. log "$SERVER_CMD"
  687. echo "$SERVER_CMD" > $SRV_OUT
  688. # for servers without -www or equivalent
  689. while :; do echo bla; sleep 1; done | $SERVER_CMD >> $SRV_OUT 2>&1 &
  690. SRV_PID=$!
  691. wait_server_start "$PORT" "$SRV_PID"
  692. }
  693. # terminate the running server
  694. stop_server() {
  695. # For Ubuntu 22.04, `Terminated` message is outputed by wait command.
  696. # To remove it from stdout, redirect stdout/stderr to SRV_OUT
  697. kill $SRV_PID >/dev/null 2>&1
  698. wait $SRV_PID >> $SRV_OUT 2>&1
  699. if [ "$MEMCHECK" -gt 0 ]; then
  700. if is_mbedtls "$SERVER_CMD" && has_mem_err $SRV_OUT; then
  701. echo " ! Server had memory errors"
  702. SRVMEM=$(( $SRVMEM + 1 ))
  703. return
  704. fi
  705. fi
  706. rm -f $SRV_OUT
  707. }
  708. # kill the running server (used when killed by signal)
  709. cleanup() {
  710. rm -f $SRV_OUT $CLI_OUT
  711. kill $SRV_PID >/dev/null 2>&1
  712. kill $WATCHDOG_PID >/dev/null 2>&1
  713. exit 1
  714. }
  715. # wait for client to terminate and set EXIT
  716. # must be called right after starting the client
  717. wait_client_done() {
  718. CLI_PID=$!
  719. ( sleep "$DOG_DELAY"; echo "TIMEOUT" >> $CLI_OUT; kill $CLI_PID ) &
  720. WATCHDOG_PID=$!
  721. # For Ubuntu 22.04, `Terminated` message is outputed by wait command.
  722. # To remove it from stdout, redirect stdout/stderr to CLI_OUT
  723. wait $CLI_PID >> $CLI_OUT 2>&1
  724. EXIT=$?
  725. kill $WATCHDOG_PID >/dev/null 2>&1
  726. wait $WATCHDOG_PID >> $CLI_OUT 2>&1
  727. echo "EXIT: $EXIT" >> $CLI_OUT
  728. }
  729. # run_client PROGRAM_NAME STANDARD_CIPHER_SUITE PROGRAM_CIPHER_SUITE
  730. run_client() {
  731. # announce what we're going to do
  732. TESTS=$(( $TESTS + 1 ))
  733. TITLE="${1%"${1#?}"}->${SERVER_NAME%"${SERVER_NAME#?}"}"
  734. TITLE="$TITLE $MODE,$VERIF $2"
  735. DOTS72="........................................................................"
  736. printf "%s %.*s " "$TITLE" "$((71 - ${#TITLE}))" "$DOTS72"
  737. # should we skip?
  738. if [ "X$SKIP_NEXT" = "XYES" ]; then
  739. SKIP_NEXT="NO"
  740. echo "SKIP"
  741. SKIPPED=$(( $SKIPPED + 1 ))
  742. return
  743. fi
  744. # run the command and interpret result
  745. case $1 in
  746. [Oo]pen*)
  747. CLIENT_CMD="$OPENSSL s_client $O_CLIENT_ARGS -cipher $3"
  748. log "$CLIENT_CMD"
  749. echo "$CLIENT_CMD" > $CLI_OUT
  750. printf 'GET HTTP/1.0\r\n\r\n' | $CLIENT_CMD >> $CLI_OUT 2>&1 &
  751. wait_client_done
  752. if [ $EXIT -eq 0 ]; then
  753. RESULT=0
  754. else
  755. # If it is NULL cipher ...
  756. if grep 'Cipher is (NONE)' $CLI_OUT >/dev/null; then
  757. RESULT=1
  758. else
  759. RESULT=2
  760. fi
  761. fi
  762. ;;
  763. [Gg]nu*)
  764. # need to force IPv4 with UDP, but keep localhost for auth
  765. if is_dtls "$MODE"; then
  766. G_HOST="127.0.0.1"
  767. else
  768. G_HOST="localhost"
  769. fi
  770. CLIENT_CMD="$GNUTLS_CLI $G_CLIENT_ARGS --priority $G_PRIO_MODE:$3 $G_HOST"
  771. log "$CLIENT_CMD"
  772. echo "$CLIENT_CMD" > $CLI_OUT
  773. printf 'GET HTTP/1.0\r\n\r\n' | $CLIENT_CMD >> $CLI_OUT 2>&1 &
  774. wait_client_done
  775. if [ $EXIT -eq 0 ]; then
  776. RESULT=0
  777. else
  778. RESULT=2
  779. # interpret early failure, with a handshake_failure alert
  780. # before the server hello, as "no ciphersuite in common"
  781. if grep -F 'Received alert [40]: Handshake failed' $CLI_OUT; then
  782. if grep -i 'SERVER HELLO .* was received' $CLI_OUT; then :
  783. else
  784. RESULT=1
  785. fi
  786. fi >/dev/null
  787. fi
  788. ;;
  789. mbed*)
  790. CLIENT_CMD="$M_CLI $M_CLIENT_ARGS force_ciphersuite=$3"
  791. if [ "$MEMCHECK" -gt 0 ]; then
  792. CLIENT_CMD="valgrind --leak-check=full $CLIENT_CMD"
  793. fi
  794. log "$CLIENT_CMD"
  795. echo "$CLIENT_CMD" > $CLI_OUT
  796. $CLIENT_CMD >> $CLI_OUT 2>&1 &
  797. wait_client_done
  798. case $EXIT in
  799. # Success
  800. "0") RESULT=0 ;;
  801. # Ciphersuite not supported
  802. "2") RESULT=1 ;;
  803. # Error
  804. *) RESULT=2 ;;
  805. esac
  806. if [ "$MEMCHECK" -gt 0 ]; then
  807. if is_mbedtls "$CLIENT_CMD" && has_mem_err $CLI_OUT; then
  808. RESULT=2
  809. fi
  810. fi
  811. ;;
  812. *)
  813. echo "error: invalid client name: $1" >&2
  814. exit 1
  815. ;;
  816. esac
  817. echo "EXIT: $EXIT" >> $CLI_OUT
  818. # report and count result
  819. case $RESULT in
  820. "0")
  821. echo PASS
  822. ;;
  823. "1")
  824. echo SKIP
  825. SKIPPED=$(( $SKIPPED + 1 ))
  826. ;;
  827. "2")
  828. echo FAIL
  829. cp $SRV_OUT c-srv-${TESTS}.log
  830. cp $CLI_OUT c-cli-${TESTS}.log
  831. echo " ! outputs saved to c-srv-${TESTS}.log, c-cli-${TESTS}.log"
  832. if [ "${LOG_FAILURE_ON_STDOUT:-0}" != 0 ]; then
  833. echo " ! server output:"
  834. cat c-srv-${TESTS}.log
  835. echo " ! ==================================================="
  836. echo " ! client output:"
  837. cat c-cli-${TESTS}.log
  838. fi
  839. FAILED=$(( $FAILED + 1 ))
  840. ;;
  841. esac
  842. rm -f $CLI_OUT
  843. }
  844. #
  845. # MAIN
  846. #
  847. if cd $( dirname $0 ); then :; else
  848. echo "cd $( dirname $0 ) failed" >&2
  849. exit 1
  850. fi
  851. get_options "$@"
  852. # sanity checks, avoid an avalanche of errors
  853. if [ ! -x "$M_SRV" ]; then
  854. echo "Command '$M_SRV' is not an executable file" >&2
  855. exit 1
  856. fi
  857. if [ ! -x "$M_CLI" ]; then
  858. echo "Command '$M_CLI' is not an executable file" >&2
  859. exit 1
  860. fi
  861. if echo "$PEERS" | grep -i openssl > /dev/null; then
  862. if which "$OPENSSL" >/dev/null 2>&1; then :; else
  863. echo "Command '$OPENSSL' not found" >&2
  864. exit 1
  865. fi
  866. fi
  867. if echo "$PEERS" | grep -i gnutls > /dev/null; then
  868. for CMD in "$GNUTLS_CLI" "$GNUTLS_SERV"; do
  869. if which "$CMD" >/dev/null 2>&1; then :; else
  870. echo "Command '$CMD' not found" >&2
  871. exit 1
  872. fi
  873. done
  874. fi
  875. for PEER in $PEERS; do
  876. case "$PEER" in
  877. mbed*|[Oo]pen*|[Gg]nu*)
  878. ;;
  879. *)
  880. echo "Unknown peers: $PEER" >&2
  881. exit 1
  882. esac
  883. done
  884. # Pick a "unique" port in the range 10000-19999.
  885. PORT="0000$$"
  886. PORT="1$(echo $PORT | tail -c 5)"
  887. # Also pick a unique name for intermediate files
  888. SRV_OUT="srv_out.$$"
  889. CLI_OUT="cli_out.$$"
  890. # client timeout delay: be more patient with valgrind
  891. if [ "$MEMCHECK" -gt 0 ]; then
  892. DOG_DELAY=30
  893. else
  894. DOG_DELAY=10
  895. fi
  896. SKIP_NEXT="NO"
  897. trap cleanup INT TERM HUP
  898. for MODE in $MODES; do
  899. for TYPE in $TYPES; do
  900. # PSK cipher suites do not allow client certificate verification.
  901. # This means PSK test cases with VERIFY=YES should be replaced by
  902. # VERIFY=NO or be ignored. SUB_VERIFIES variable is used to constrain
  903. # verification option for PSK test cases.
  904. SUB_VERIFIES=$VERIFIES
  905. if [ "$TYPE" = "PSK" ]; then
  906. SUB_VERIFIES="NO"
  907. fi
  908. for VERIFY in $SUB_VERIFIES; do
  909. VERIF=$(echo $VERIFY | tr '[:upper:]' '[:lower:]')
  910. for PEER in $PEERS; do
  911. setup_arguments
  912. case "$PEER" in
  913. [Oo]pen*)
  914. if test "$OSSL_NO_DTLS" -gt 0 && is_dtls "$MODE"; then
  915. continue;
  916. fi
  917. # OpenSSL <1.0.2 doesn't support DTLS 1.2. Check if OpenSSL
  918. # supports $O_MODE from the s_server help. (The s_client
  919. # help isn't accurate as of 1.0.2g: it supports DTLS 1.2
  920. # but doesn't list it. But the s_server help seems to be
  921. # accurate.)
  922. if ! $OPENSSL s_server -help 2>&1 | grep -q "^ *-$O_MODE "; then
  923. continue;
  924. fi
  925. reset_ciphersuites
  926. add_common_ciphersuites
  927. add_openssl_ciphersuites
  928. filter_ciphersuites
  929. if [ "X" != "X$M_CIPHERS" ]; then
  930. start_server "OpenSSL"
  931. translate_ciphers m $M_CIPHERS
  932. for i in $ciphers; do
  933. o_check_ciphersuite "${i%%=*}"
  934. run_client mbedTLS ${i%%=*} ${i#*=}
  935. done
  936. stop_server
  937. fi
  938. if [ "X" != "X$O_CIPHERS" ]; then
  939. start_server "mbedTLS"
  940. translate_ciphers o $O_CIPHERS
  941. for i in $ciphers; do
  942. o_check_ciphersuite "${i%%=*}"
  943. run_client OpenSSL ${i%%=*} ${i#*=}
  944. done
  945. stop_server
  946. fi
  947. ;;
  948. [Gg]nu*)
  949. reset_ciphersuites
  950. add_common_ciphersuites
  951. add_gnutls_ciphersuites
  952. filter_ciphersuites
  953. if [ "X" != "X$M_CIPHERS" ]; then
  954. start_server "GnuTLS"
  955. translate_ciphers m $M_CIPHERS
  956. for i in $ciphers; do
  957. run_client mbedTLS ${i%%=*} ${i#*=}
  958. done
  959. stop_server
  960. fi
  961. if [ "X" != "X$G_CIPHERS" ]; then
  962. start_server "mbedTLS"
  963. translate_ciphers g $G_CIPHERS
  964. for i in $ciphers; do
  965. run_client GnuTLS ${i%%=*} ${i#*=}
  966. done
  967. stop_server
  968. fi
  969. ;;
  970. mbed*)
  971. reset_ciphersuites
  972. add_common_ciphersuites
  973. add_openssl_ciphersuites
  974. add_gnutls_ciphersuites
  975. add_mbedtls_ciphersuites
  976. filter_ciphersuites
  977. if [ "X" != "X$M_CIPHERS" ]; then
  978. start_server "mbedTLS"
  979. translate_ciphers m $M_CIPHERS
  980. for i in $ciphers; do
  981. run_client mbedTLS ${i%%=*} ${i#*=}
  982. done
  983. stop_server
  984. fi
  985. ;;
  986. *)
  987. echo "Unknown peer: $PEER" >&2
  988. exit 1
  989. ;;
  990. esac
  991. done
  992. done
  993. done
  994. done
  995. echo "------------------------------------------------------------------------"
  996. if [ $FAILED -ne 0 -o $SRVMEM -ne 0 ]; then
  997. printf "FAILED"
  998. else
  999. printf "PASSED"
  1000. fi
  1001. if [ "$MEMCHECK" -gt 0 ]; then
  1002. MEMREPORT=", $SRVMEM server memory errors"
  1003. else
  1004. MEMREPORT=""
  1005. fi
  1006. PASSED=$(( $TESTS - $FAILED ))
  1007. echo " ($PASSED / $TESTS tests ($SKIPPED skipped$MEMREPORT))"
  1008. FAILED=$(( $FAILED + $SRVMEM ))
  1009. if [ $FAILED -gt 255 ]; then
  1010. # Clamp at 255 as caller gets exit code & 0xFF
  1011. # (so 256 would be 0, or success, etc)
  1012. FAILED=255
  1013. fi
  1014. exit $FAILED