1 #!/bin/bash 2 # SPDX-License-Identifier: GPL-2.0 3 # 4 # author: Andrea Mayer <andrea.mayer@uniroma2.it> 5 # author: Paolo Lungaroni <paolo.lungaroni@uniroma2.it> 6 7 # This test is designed for evaluating the new SRv6 End.DT46 Behavior used for 8 # implementing IPv4/IPv6 L3 VPN use cases. 9 # 10 # The current SRv6 code in the Linux kernel only implements SRv6 End.DT4 and 11 # End.DT6 Behaviors which can be used respectively to support IPv4-in-IPv6 and 12 # IPv6-in-IPv6 VPNs. With End.DT4 and End.DT6 it is not possible to create a 13 # single SRv6 VPN tunnel to carry both IPv4 and IPv6 traffic. 14 # The SRv6 End.DT46 Behavior implementation is meant to support the 15 # decapsulation of IPv4 and IPv6 traffic coming from a single SRv6 tunnel. 16 # Therefore, the SRv6 End.DT46 Behavior in the Linux kernel greatly simplifies 17 # the setup and operations of SRv6 VPNs. 18 # 19 # Hereafter a network diagram is shown, where two different tenants (named 100 20 # and 200) offer IPv4/IPv6 L3 VPN services allowing hosts to communicate with 21 # each other across an IPv6 network. 22 # 23 # Only hosts belonging to the same tenant (and to the same VPN) can communicate 24 # with each other. Instead, the communication among hosts of different tenants 25 # is forbidden. 26 # In other words, hosts hs-t100-1 and hs-t100-2 are connected through the 27 # IPv4/IPv6 L3 VPN of tenant 100 while hs-t200-3 and hs-t200-4 are connected 28 # using the IPv4/IPv6 L3 VPN of tenant 200. Cross connection between tenant 100 29 # and tenant 200 is forbidden and thus, for example, hs-t100-1 cannot reach 30 # hs-t200-3 and vice versa. 31 # 32 # Routers rt-1 and rt-2 implement IPv4/IPv6 L3 VPN services leveraging the SRv6 33 # architecture. The key components for such VPNs are: a) SRv6 Encap behavior, 34 # b) SRv6 End.DT46 Behavior and c) VRF. 35 # 36 # To explain how an IPv4/IPv6 L3 VPN based on SRv6 works, let us briefly 37 # consider an example where, within the same domain of tenant 100, the host 38 # hs-t100-1 pings the host hs-t100-2. 39 # 40 # First of all, L2 reachability of the host hs-t100-2 is taken into account by 41 # the router rt-1 which acts as a arp/ndp proxy. 42 # 43 # When the host hs-t100-1 sends an IPv6 or IPv4 packet destined to hs-t100-2, 44 # the router rt-1 receives the packet on the internal veth-t100 interface. Such 45 # interface is enslaved to the VRF vrf-100 whose associated table contains the 46 # SRv6 Encap route for encapsulating any IPv6 or IPv4 packet in a IPv6 plus the 47 # Segment Routing Header (SRH) packet. This packet is sent through the (IPv6) 48 # core network up to the router rt-2 that receives it on veth0 interface. 49 # 50 # The rt-2 router uses the 'localsid' routing table to process incoming 51 # IPv6+SRH packets which belong to the VPN of the tenant 100. For each of these 52 # packets, the SRv6 End.DT46 Behavior removes the outer IPv6+SRH headers and 53 # performs the lookup on the vrf-100 table using the destination address of 54 # the decapsulated IPv6 or IPv4 packet. Afterwards, the packet is sent to the 55 # host hs-t100-2 through the veth-t100 interface. 56 # 57 # The ping response follows the same processing but this time the roles of rt-1 58 # and rt-2 are swapped. 59 # 60 # Of course, the IPv4/IPv6 L3 VPN for tenant 200 works exactly as the IPv4/IPv6 61 # L3 VPN for tenant 100. In this case, only hosts hs-t200-3 and hs-t200-4 are 62 # able to connect with each other. 63 # 64 # 65 # +-------------------+ +-------------------+ 66 # | | | | 67 # | hs-t100-1 netns | | hs-t100-2 netns | 68 # | | | | 69 # | +-------------+ | | +-------------+ | 70 # | | veth0 | | | | veth0 | | 71 # | | cafe::1/64 | | | | cafe::2/64 | | 72 # | | 10.0.0.1/24 | | | | 10.0.0.2/24 | | 73 # | +-------------+ | | +-------------+ | 74 # | . | | . | 75 # +-------------------+ +-------------------+ 76 # . . 77 # . . 78 # . . 79 # +-----------------------------------+ +-----------------------------------+ 80 # | . | | . | 81 # | +---------------+ | | +---------------- | 82 # | | veth-t100 | | | | veth-t100 | | 83 # | | cafe::254/64 | | | | cafe::254/64 | | 84 # | | 10.0.0.254/24 | +----------+ | | +----------+ | 10.0.0.254/24 | | 85 # | +-------+-------+ | localsid | | | | localsid | +-------+-------- | 86 # | | | table | | | | table | | | 87 # | +----+----+ +----------+ | | +----------+ +----+----+ | 88 # | | vrf-100 | | | | vrf-100 | | 89 # | +---------+ +------------+ | | +------------+ +---------+ | 90 # | | veth0 | | | | veth0 | | 91 # | | fd00::1/64 |.|...|.| fd00::2/64 | | 92 # | +---------+ +------------+ | | +------------+ +---------+ | 93 # | | vrf-200 | | | | vrf-200 | | 94 # | +----+----+ | | +----+----+ | 95 # | | | | | | 96 # | +-------+-------+ | | +-------+-------- | 97 # | | veth-t200 | | | | veth-t200 | | 98 # | | cafe::254/64 | | | | cafe::254/64 | | 99 # | | 10.0.0.254/24 | | | | 10.0.0.254/24 | | 100 # | +---------------+ rt-1 netns | | rt-2 netns +---------------- | 101 # | . | | . | 102 # +-----------------------------------+ +-----------------------------------+ 103 # . . 104 # . . 105 # . . 106 # . . 107 # +-------------------+ +-------------------+ 108 # | . | | . | 109 # | +-------------+ | | +-------------+ | 110 # | | veth0 | | | | veth0 | | 111 # | | cafe::3/64 | | | | cafe::4/64 | | 112 # | | 10.0.0.3/24 | | | | 10.0.0.4/24 | | 113 # | +-------------+ | | +-------------+ | 114 # | | | | 115 # | hs-t200-3 netns | | hs-t200-4 netns | 116 # | | | | 117 # +-------------------+ +-------------------+ 118 # 119 # 120 # ~~~~~~~~~~~~~~~~~~~~~~~~~ 121 # | Network configuration | 122 # ~~~~~~~~~~~~~~~~~~~~~~~~~ 123 # 124 # rt-1: localsid table (table 90) 125 # +--------------------------------------------------+ 126 # |SID |Action | 127 # +--------------------------------------------------+ 128 # |fc00:21:100::6046|apply SRv6 End.DT46 vrftable 100| 129 # +--------------------------------------------------+ 130 # |fc00:21:200::6046|apply SRv6 End.DT46 vrftable 200| 131 # +--------------------------------------------------+ 132 # 133 # rt-1: VRF tenant 100 (table 100) 134 # +---------------------------------------------------+ 135 # |host |Action | 136 # +---------------------------------------------------+ 137 # |cafe::2 |apply seg6 encap segs fc00:12:100::6046| 138 # +---------------------------------------------------+ 139 # |cafe::/64 |forward to dev veth-t100 | 140 # +---------------------------------------------------+ 141 # |10.0.0.2 |apply seg6 encap segs fc00:12:100::6046| 142 # +---------------------------------------------------+ 143 # |10.0.0.0/24|forward to dev veth-t100 | 144 # +---------------------------------------------------+ 145 # 146 # rt-1: VRF tenant 200 (table 200) 147 # +---------------------------------------------------+ 148 # |host |Action | 149 # +---------------------------------------------------+ 150 # |cafe::4 |apply seg6 encap segs fc00:12:200::6046| 151 # +---------------------------------------------------+ 152 # |cafe::/64 |forward to dev veth-t200 | 153 # +---------------------------------------------------+ 154 # |10.0.0.4 |apply seg6 encap segs fc00:12:200::6046| 155 # +---------------------------------------------------+ 156 # |10.0.0.0/24|forward to dev veth-t200 | 157 # +---------------------------------------------------+ 158 # 159 # 160 # rt-2: localsid table (table 90) 161 # +--------------------------------------------------+ 162 # |SID |Action | 163 # +--------------------------------------------------+ 164 # |fc00:12:100::6046|apply SRv6 End.DT46 vrftable 100| 165 # +--------------------------------------------------+ 166 # |fc00:12:200::6046|apply SRv6 End.DT46 vrftable 200| 167 # +--------------------------------------------------+ 168 # 169 # rt-2: VRF tenant 100 (table 100) 170 # +---------------------------------------------------+ 171 # |host |Action | 172 # +---------------------------------------------------+ 173 # |cafe::1 |apply seg6 encap segs fc00:21:100::6046| 174 # +---------------------------------------------------+ 175 # |cafe::/64 |forward to dev veth-t100 | 176 # +---------------------------------------------------+ 177 # |10.0.0.1 |apply seg6 encap segs fc00:21:100::6046| 178 # +---------------------------------------------------+ 179 # |10.0.0.0/24|forward to dev veth-t100 | 180 # +---------------------------------------------------+ 181 # 182 # rt-2: VRF tenant 200 (table 200) 183 # +---------------------------------------------------+ 184 # |host |Action | 185 # +---------------------------------------------------+ 186 # |cafe::3 |apply seg6 encap segs fc00:21:200::6046| 187 # +---------------------------------------------------+ 188 # |cafe::/64 |forward to dev veth-t200 | 189 # +---------------------------------------------------+ 190 # |10.0.0.3 |apply seg6 encap segs fc00:21:200::6046| 191 # +---------------------------------------------------+ 192 # |10.0.0.0/24|forward to dev veth-t200 | 193 # +---------------------------------------------------+ 194 # 195 196 source lib.sh 197 198 readonly LOCALSID_TABLE_ID=90 199 readonly IPv6_RT_NETWORK=fd00 200 readonly IPv6_HS_NETWORK=cafe 201 readonly IPv4_HS_NETWORK=10.0.0 202 readonly VPN_LOCATOR_SERVICE=fc00 203 PING_TIMEOUT_SEC=4 204 205 ret=0 206 207 PAUSE_ON_FAIL=${PAUSE_ON_FAIL:=no} 208 209 log_test() 210 { 211 local rc=$1 212 local expected=$2 213 local msg="$3" 214 215 if [ ${rc} -eq ${expected} ]; then 216 nsuccess=$((nsuccess+1)) 217 printf "\n TEST: %-60s [ OK ]\n" "${msg}" 218 else 219 ret=1 220 nfail=$((nfail+1)) 221 printf "\n TEST: %-60s [FAIL]\n" "${msg}" 222 if [ "${PAUSE_ON_FAIL}" = "yes" ]; then 223 echo 224 echo "hit enter to continue, 'q' to quit" 225 read a 226 [ "$a" = "q" ] && exit 1 227 fi 228 fi 229 } 230 231 print_log_test_results() 232 { 233 if [ "$TESTS" != "none" ]; then 234 printf "\nTests passed: %3d\n" ${nsuccess} 235 printf "Tests failed: %3d\n" ${nfail} 236 fi 237 } 238 239 log_section() 240 { 241 echo 242 echo "################################################################################" 243 echo "TEST SECTION: $*" 244 echo "################################################################################" 245 } 246 247 cleanup() 248 { 249 ip link del veth-rt-1 2>/dev/null || true 250 ip link del veth-rt-2 2>/dev/null || true 251 252 cleanup_all_ns 253 } 254 255 # Setup the basic networking for the routers 256 setup_rt_networking() 257 { 258 local id=$1 259 eval local nsname=\${rt_${id}} 260 261 ip link set veth-rt-${id} netns ${nsname} 262 ip -netns ${nsname} link set veth-rt-${id} name veth0 263 264 ip netns exec ${nsname} sysctl -wq net.ipv6.conf.all.accept_dad=0 265 ip netns exec ${nsname} sysctl -wq net.ipv6.conf.default.accept_dad=0 266 267 ip -netns ${nsname} addr add ${IPv6_RT_NETWORK}::${id}/64 dev veth0 nodad 268 ip -netns ${nsname} link set veth0 up 269 ip -netns ${nsname} link set lo up 270 271 ip netns exec ${nsname} sysctl -wq net.ipv4.ip_forward=1 272 ip netns exec ${nsname} sysctl -wq net.ipv6.conf.all.forwarding=1 273 } 274 275 setup_hs() 276 { 277 local hid=$1 278 local rid=$2 279 local tid=$3 280 eval local hsname=\${hs_t${tid}_${hid}} 281 eval local rtname=\${rt_${rid}} 282 local rtveth=veth-t${tid} 283 284 # set the networking for the host 285 ip netns exec ${hsname} sysctl -wq net.ipv6.conf.all.accept_dad=0 286 ip netns exec ${hsname} sysctl -wq net.ipv6.conf.default.accept_dad=0 287 288 # disable the rp_filter otherwise the kernel gets confused about how 289 # to route decap ipv4 packets. 290 ip netns exec ${rtname} sysctl -wq net.ipv4.conf.all.rp_filter=0 291 ip netns exec ${rtname} sysctl -wq net.ipv4.conf.default.rp_filter=0 292 293 ip -netns ${hsname} link add veth0 type veth peer name ${rtveth} 294 ip -netns ${hsname} link set ${rtveth} netns ${rtname} 295 ip -netns ${hsname} addr add ${IPv6_HS_NETWORK}::${hid}/64 dev veth0 nodad 296 ip -netns ${hsname} addr add ${IPv4_HS_NETWORK}.${hid}/24 dev veth0 297 ip -netns ${hsname} link set veth0 up 298 ip -netns ${hsname} link set lo up 299 300 # configure the VRF for the tenant X on the router which is directly 301 # connected to the source host. 302 ip -netns ${rtname} link add vrf-${tid} type vrf table ${tid} 303 ip -netns ${rtname} link set vrf-${tid} up 304 305 ip netns exec ${rtname} sysctl -wq net.ipv6.conf.all.accept_dad=0 306 ip netns exec ${rtname} sysctl -wq net.ipv6.conf.default.accept_dad=0 307 308 # enslave the veth-tX interface to the vrf-X in the access router 309 ip -netns ${rtname} link set ${rtveth} master vrf-${tid} 310 ip -netns ${rtname} addr add ${IPv6_HS_NETWORK}::254/64 dev ${rtveth} nodad 311 ip -netns ${rtname} addr add ${IPv4_HS_NETWORK}.254/24 dev ${rtveth} 312 ip -netns ${rtname} link set ${rtveth} up 313 314 ip netns exec ${rtname} sysctl -wq net.ipv6.conf.${rtveth}.proxy_ndp=1 315 ip netns exec ${rtname} sysctl -wq net.ipv4.conf.${rtveth}.proxy_arp=1 316 317 ip netns exec ${rtname} sh -c "echo 1 > /proc/sys/net/vrf/strict_mode" 318 } 319 320 setup_vpn_config() 321 { 322 local hssrc=$1 323 local rtsrc=$2 324 local hsdst=$3 325 local rtdst=$4 326 local tid=$5 327 328 eval local rtsrc_name=\${rt_${rtsrc}} 329 eval local rtdst_name=\${rt_${rtdst}} 330 local rtveth=veth-t${tid} 331 local vpn_sid=${VPN_LOCATOR_SERVICE}:${hssrc}${hsdst}:${tid}::6046 332 333 ip -netns ${rtsrc_name} -6 neigh add proxy ${IPv6_HS_NETWORK}::${hsdst} dev ${rtveth} 334 335 # set the encap route for encapsulating packets which arrive from the 336 # host hssrc and destined to the access router rtsrc. 337 ip -netns ${rtsrc_name} -6 route add ${IPv6_HS_NETWORK}::${hsdst}/128 vrf vrf-${tid} \ 338 encap seg6 mode encap segs ${vpn_sid} dev veth0 339 ip -netns ${rtsrc_name} -4 route add ${IPv4_HS_NETWORK}.${hsdst}/32 vrf vrf-${tid} \ 340 encap seg6 mode encap segs ${vpn_sid} dev veth0 341 ip -netns ${rtsrc_name} -6 route add ${vpn_sid}/128 vrf vrf-${tid} \ 342 via fd00::${rtdst} dev veth0 343 344 # set the decap route for decapsulating packets which arrive from 345 # the rtdst router and destined to the hsdst host. 346 ip -netns ${rtdst_name} -6 route add ${vpn_sid}/128 table ${LOCALSID_TABLE_ID} \ 347 encap seg6local action End.DT46 vrftable ${tid} dev vrf-${tid} 348 349 # all sids for VPNs start with a common locator which is fc00::/16. 350 # Routes for handling the SRv6 End.DT46 behavior instances are grouped 351 # together in the 'localsid' table. 352 # 353 # NOTE: added only once 354 if [ -z "$(ip -netns ${rtdst_name} -6 rule show | \ 355 grep "to ${VPN_LOCATOR_SERVICE}::/16 lookup ${LOCALSID_TABLE_ID}")" ]; then 356 ip -netns ${rtdst_name} -6 rule add \ 357 to ${VPN_LOCATOR_SERVICE}::/16 \ 358 lookup ${LOCALSID_TABLE_ID} prio 999 359 fi 360 361 # set default routes to unreachable for both ipv4 and ipv6 362 ip -netns ${rtsrc_name} -6 route add unreachable default metric 4278198272 \ 363 vrf vrf-${tid} 364 365 ip -netns ${rtsrc_name} -4 route add unreachable default metric 4278198272 \ 366 vrf vrf-${tid} 367 } 368 369 setup() 370 { 371 ip link add veth-rt-1 type veth peer name veth-rt-2 372 # setup the networking for router rt-1 and router rt-2 373 setup_ns rt_1 rt_2 374 setup_rt_networking 1 375 setup_rt_networking 2 376 377 # setup two hosts for the tenant 100. 378 # - host hs-1 is directly connected to the router rt-1; 379 # - host hs-2 is directly connected to the router rt-2. 380 setup_ns hs_t100_1 hs_t100_2 381 setup_hs 1 1 100 #args: host router tenant 382 setup_hs 2 2 100 383 384 # setup two hosts for the tenant 200 385 # - host hs-3 is directly connected to the router rt-1; 386 # - host hs-4 is directly connected to the router rt-2. 387 setup_ns hs_t200_3 hs_t200_4 388 setup_hs 3 1 200 389 setup_hs 4 2 200 390 391 # setup the IPv4/IPv6 L3 VPN which connects the host hs-t100-1 and host 392 # hs-t100-2 within the same tenant 100. 393 setup_vpn_config 1 1 2 2 100 #args: src_host src_router dst_host dst_router tenant 394 setup_vpn_config 2 2 1 1 100 395 396 # setup the IPv4/IPv6 L3 VPN which connects the host hs-t200-3 and host 397 # hs-t200-4 within the same tenant 200. 398 setup_vpn_config 3 1 4 2 200 399 setup_vpn_config 4 2 3 1 200 400 } 401 402 check_rt_connectivity() 403 { 404 local rtsrc=$1 405 local rtdst=$2 406 eval local nsname=\${rt_${rtsrc}} 407 408 ip netns exec ${nsname} ping -c 1 -W 1 ${IPv6_RT_NETWORK}::${rtdst} \ 409 >/dev/null 2>&1 410 } 411 412 check_and_log_rt_connectivity() 413 { 414 local rtsrc=$1 415 local rtdst=$2 416 417 check_rt_connectivity ${rtsrc} ${rtdst} 418 log_test $? 0 "Routers connectivity: rt-${rtsrc} -> rt-${rtdst}" 419 } 420 421 check_hs_ipv6_connectivity() 422 { 423 local hssrc=$1 424 local hsdst=$2 425 local tid=$3 426 eval local nsname=\${hs_t${tid}_${hssrc}} 427 428 ip netns exec ${nsname} ping -c 1 -W ${PING_TIMEOUT_SEC} \ 429 ${IPv6_HS_NETWORK}::${hsdst} >/dev/null 2>&1 430 } 431 432 check_hs_ipv4_connectivity() 433 { 434 local hssrc=$1 435 local hsdst=$2 436 local tid=$3 437 eval local nsname=\${hs_t${tid}_${hssrc}} 438 439 ip netns exec ${nsname} ping -c 1 -W ${PING_TIMEOUT_SEC} \ 440 ${IPv4_HS_NETWORK}.${hsdst} >/dev/null 2>&1 441 } 442 443 check_and_log_hs_connectivity() 444 { 445 local hssrc=$1 446 local hsdst=$2 447 local tid=$3 448 449 check_hs_ipv6_connectivity ${hssrc} ${hsdst} ${tid} 450 log_test $? 0 "IPv6 Hosts connectivity: hs-t${tid}-${hssrc} -> hs-t${tid}-${hsdst} (tenant ${tid})" 451 452 check_hs_ipv4_connectivity ${hssrc} ${hsdst} ${tid} 453 log_test $? 0 "IPv4 Hosts connectivity: hs-t${tid}-${hssrc} -> hs-t${tid}-${hsdst} (tenant ${tid})" 454 455 } 456 457 check_and_log_hs_isolation() 458 { 459 local hssrc=$1 460 local tidsrc=$2 461 local hsdst=$3 462 local tiddst=$4 463 464 check_hs_ipv6_connectivity ${hssrc} ${hsdst} ${tidsrc} 465 # NOTE: ping should fail 466 log_test $? 1 "IPv6 Hosts isolation: hs-t${tidsrc}-${hssrc} -X-> hs-t${tiddst}-${hsdst}" 467 468 check_hs_ipv4_connectivity ${hssrc} ${hsdst} ${tidsrc} 469 # NOTE: ping should fail 470 log_test $? 1 "IPv4 Hosts isolation: hs-t${tidsrc}-${hssrc} -X-> hs-t${tiddst}-${hsdst}" 471 472 } 473 474 475 check_and_log_hs2gw_connectivity() 476 { 477 local hssrc=$1 478 local tid=$2 479 480 check_hs_ipv6_connectivity ${hssrc} 254 ${tid} 481 log_test $? 0 "IPv6 Hosts connectivity: hs-t${tid}-${hssrc} -> gw (tenant ${tid})" 482 483 check_hs_ipv4_connectivity ${hssrc} 254 ${tid} 484 log_test $? 0 "IPv4 Hosts connectivity: hs-t${tid}-${hssrc} -> gw (tenant ${tid})" 485 486 } 487 488 router_tests() 489 { 490 log_section "IPv6 routers connectivity test" 491 492 check_and_log_rt_connectivity 1 2 493 check_and_log_rt_connectivity 2 1 494 } 495 496 host2gateway_tests() 497 { 498 log_section "IPv4/IPv6 connectivity test among hosts and gateway" 499 500 check_and_log_hs2gw_connectivity 1 100 501 check_and_log_hs2gw_connectivity 2 100 502 503 check_and_log_hs2gw_connectivity 3 200 504 check_and_log_hs2gw_connectivity 4 200 505 } 506 507 host_vpn_tests() 508 { 509 log_section "SRv6 VPN connectivity test among hosts in the same tenant" 510 511 check_and_log_hs_connectivity 1 2 100 512 check_and_log_hs_connectivity 2 1 100 513 514 check_and_log_hs_connectivity 3 4 200 515 check_and_log_hs_connectivity 4 3 200 516 } 517 518 host_vpn_isolation_tests() 519 { 520 local i 521 local j 522 local k 523 local tmp 524 local l1="1 2" 525 local l2="3 4" 526 local t1=100 527 local t2=200 528 529 log_section "SRv6 VPN isolation test among hosts in different tentants" 530 531 for k in 0 1; do 532 for i in ${l1}; do 533 for j in ${l2}; do 534 check_and_log_hs_isolation ${i} ${t1} ${j} ${t2} 535 done 536 done 537 538 # let us test the reverse path 539 tmp="${l1}"; l1="${l2}"; l2="${tmp}" 540 tmp=${t1}; t1=${t2}; t2=${tmp} 541 done 542 } 543 544 if [ "$(id -u)" -ne 0 ];then 545 echo "SKIP: Need root privileges" 546 exit $ksft_skip 547 fi 548 549 if [ ! -x "$(command -v ip)" ]; then 550 echo "SKIP: Could not run test without ip tool" 551 exit $ksft_skip 552 fi 553 554 modprobe vrf &>/dev/null 555 if [ ! -e /proc/sys/net/vrf/strict_mode ]; then 556 echo "SKIP: vrf sysctl does not exist" 557 exit $ksft_skip 558 fi 559 560 cleanup &>/dev/null 561 562 setup 563 564 router_tests 565 host2gateway_tests 566 host_vpn_tests 567 host_vpn_isolation_tests 568 569 print_log_test_results 570 571 cleanup &>/dev/null 572 573 exit ${ret}
Linux® is a registered trademark of Linus Torvalds in the United States and other countries.
TOMOYO® is a registered trademark of NTT DATA CORPORATION.