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ovsdb-server.at
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AT_BANNER([OVSDB -- ovsdb-server transactions (Unix sockets)])
m4_define([OVSDB_SERVER_SHUTDOWN],
[OVS_APP_EXIT_AND_WAIT_BY_TARGET([ovsdb-server], [ovsdb-server.pid])])
m4_define([OVSDB_SERVER_SHUTDOWN_N],
[cp $1.pid savepid$1
AT_CHECK([ovs-appctl -t "`pwd`"/unixctl$1 -e exit], [0], [ignore], [ignore])
OVS_WAIT_WHILE([kill -0 `cat savepid$1`], [kill `cat savepid$1`])])
m4_define([OVSDB_SERVER_SHUTDOWN2],
[OVSDB_SERVER_SHUTDOWN_N([2])])
# OVSDB_CHECK_EXECUTION(TITLE, SCHEMA, TRANSACTIONS, OUTPUT, [KEYWORDS])
#
# Creates a database with the given SCHEMA, starts an ovsdb-server on
# that database, and runs each of the TRANSACTIONS (which should be a
# quoted list of quoted strings) against it with ovsdb-client one at a
# time.
#
# Checks that the overall output is OUTPUT, but UUIDs in the output
# are replaced by markers of the form <N> where N is a number. The
# first unique UUID is replaced by <0>, the next by <1>, and so on.
# If a given UUID appears more than once it is always replaced by the
# same marker.
#
# TITLE is provided to AT_SETUP and KEYWORDS to AT_KEYWORDS.
m4_define([OVSDB_CHECK_EXECUTION],
[AT_SETUP([$1])
AT_KEYWORDS([ovsdb server positive unix $5])
$2 > schema
AT_CHECK([ovsdb-tool create db schema], [0], [stdout], [ignore])
on_exit 'kill `cat *.pid`'
AT_CHECK([ovsdb-server --detach --no-chdir --pidfile --remote=punix:socket db], [0], [ignore], [ignore])
m4_foreach([txn], [$3],
[AT_CHECK([ovsdb-client transact unix:socket 'txn'], [0], [stdout], [ignore])
cat stdout >> output
])
AT_CHECK([uuidfilt output], [0], [$4], [ignore])
OVSDB_SERVER_SHUTDOWN
AT_CLEANUP])
EXECUTION_EXAMPLES
AT_BANNER([ovsdb-server miscellaneous features])
AT_SETUP([truncating corrupted database log])
AT_KEYWORDS([ovsdb server positive unix])
AT_SKIP_IF([test "$IS_WIN32" = "yes"])
ordinal_schema > schema
AT_CHECK([ovsdb-tool create db schema], [0], [stdout], [ignore])
dnl Do one transaction and save the output.
AT_DATA([txnfile], [[ovsdb-client transact unix:socket \
'["ordinals",
{"op": "insert",
"table": "ordinals",
"row": {"number": 0, "name": "zero"}}]'
]])
AT_CHECK([ovsdb-server --remote=punix:socket db --run="sh txnfile"], [0], [stdout], [])
cat stdout >> output
dnl Add some crap to the database log and run another transaction, which should
dnl ignore the crap and truncate it out of the log.
echo 'xxx' >> db
AT_DATA([txnfile], [[ovsdb-client transact unix:socket \
'["ordinals",
{"op": "insert",
"table": "ordinals",
"row": {"number": 1, "name": "one"}}]'
]])
AT_CHECK([ovsdb-server --remote=punix:socket db --run="sh txnfile"], [0], [stdout], [stderr])
AT_CHECK([grep 'syntax error: db: parse error.* in header line "xxx"' stderr],
[0], [ignore])
cat stdout >> output
dnl Run a final transaction to verify that both transactions succeeeded.
dnl The crap that we added should have been truncated by the previous run,
dnl so ovsdb-server shouldn't log a warning this time.
AT_DATA([txnfile], [[ovsdb-client transact unix:socket \
'["ordinals",
{"op": "select",
"table": "ordinals",
"where": [],
"sort": ["number"]}]'
]])
AT_CHECK([ovsdb-server --remote=punix:socket db --run="sh txnfile"], [0], [stdout], [])
cat stdout >> output
AT_CHECK([uuidfilt output], [0],
[[[{"uuid":["uuid","<0>"]}]
[{"uuid":["uuid","<1>"]}]
[{"rows":[{"_uuid":["uuid","<0>"],"_version":["uuid","<2>"],"name":"zero","number":0},{"_uuid":["uuid","<1>"],"_version":["uuid","<3>"],"name":"one","number":1}]}]
]], [])
AT_CLEANUP
AT_SETUP([truncating database log with bad transaction])
AT_KEYWORDS([ovsdb server positive unix])
AT_SKIP_IF([test "$IS_WIN32" = "yes"])
ordinal_schema > schema
AT_CHECK([ovsdb-tool create db schema], [0], [stdout], [ignore])
dnl Do one transaction and save the output.
AT_DATA([txnfile], [[ovsdb-client transact unix:socket \
'["ordinals",
{"op": "insert",
"table": "ordinals",
"row": {"number": 0, "name": "zero"}}]'
]])
AT_CHECK([ovsdb-server --remote=punix:socket db --run="sh txnfile"], [0], [stdout], [])
cat stdout >> output
dnl Add some crap to the database log and run another transaction, which should
dnl ignore the crap and truncate it out of the log.
echo 'OVSDB JSON 15 ffbcdae4b0386265f9ea3280dd7c8f0b72a20e56
{"invalid":{}}' >> db
AT_DATA([txnfile], [[ovsdb-client transact unix:socket \
'["ordinals",
{"op": "insert",
"table": "ordinals",
"row": {"number": 1, "name": "one"}}]'
]])
AT_CHECK([ovsdb-server --remote=punix:socket db --run="sh txnfile"], [0], [stdout], [stderr])
AT_CHECK([grep 'syntax "{"invalid":{}}": unknown table: No table named invalid.' stderr],
[0], [ignore])
cat stdout >> output
dnl Run a final transaction to verify that both transactions succeeeded.
dnl The crap that we added should have been truncated by the previous run,
dnl so ovsdb-server shouldn't log a warning this time.
AT_DATA([txnfile], [[ovsdb-client transact unix:socket \
'["ordinals",
{"op": "select",
"table": "ordinals",
"where": [],
"sort": ["number"]}]'
]])
AT_CHECK([ovsdb-server --remote=punix:socket db --run="sh txnfile"], [0], [stdout], [])
cat stdout >> output
AT_CHECK([uuidfilt output], [0],
[[[{"uuid":["uuid","<0>"]}]
[{"uuid":["uuid","<1>"]}]
[{"rows":[{"_uuid":["uuid","<0>"],"_version":["uuid","<2>"],"name":"zero","number":0},{"_uuid":["uuid","<1>"],"_version":["uuid","<3>"],"name":"one","number":1}]}]
]], [])
AT_CLEANUP
dnl CHECK_DBS([databases])
dnl
dnl Checks that ovsdb-server hosts the given 'databases', each of which
dnl needs to be followed by a newline.
m4_define([CHECK_DBS],
[AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/list-dbs],
[0], [_Server
$1])
AT_CHECK([ovsdb-client --no-headings dump _Server Database name | sort], [0], [dnl
Database table
_Server
$1])])
AT_SETUP([database multiplexing implementation])
AT_KEYWORDS([ovsdb server positive])
ordinal_schema > schema1
constraint_schema > schema2
AT_CHECK([ovsdb-tool create db1 schema1], [0], [ignore], [ignore])
AT_CHECK([ovsdb-tool create db2 schema2], [0], [ignore], [ignore])
on_exit 'kill `cat *.pid`'
AT_CHECK([ovsdb-server --detach --no-chdir --pidfile --remote=punix:db.sock db1 db2], [0], [ignore], [ignore])
CHECK_DBS([constraints
ordinals
])
AT_CHECK(
[[ovstest test-jsonrpc request unix:db.sock get_schema [\"nonexistent\"]]], [0],
[[{"error":{"details":"get_schema request specifies unknown database nonexistent","error":"unknown database","syntax":"[\"nonexistent\"]"},"id":0,"result":null}
]], [])
OVSDB_SERVER_SHUTDOWN
AT_CLEANUP
AT_SETUP([ovsdb-server/add-db and remove-db])
AT_KEYWORDS([ovsdb server positive])
on_exit 'kill `cat *.pid`'
ordinal_schema > schema1
constraint_schema > schema2
AT_CHECK([ovsdb-tool create db1 schema1], [0], [ignore], [ignore])
AT_CHECK([ovsdb-tool create db2 schema2], [0], [ignore], [ignore])
# Start ovsdb-server with just a single database - db1.
AT_CHECK([ovsdb-server -vfile -vvlog:off --log-file --detach --no-chdir --pidfile --remote=punix:db.sock db1], [0])
CHECK_DBS([ordinals
])
# Remove the database.
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/remove-db ordinals], [0])
CHECK_DBS([])
# Start monitoring processes.
AT_CHECK([ovsdb-client --detach --no-chdir --pidfile=ovsdb-client-1.pid --no-db-change-aware --no-headings monitor _Server Database name > db-change-unaware.stdout 2> db-change-unaware.stderr])
AT_CHECK([ovsdb-client --detach --no-chdir --pidfile=ovsdb-client-2.pid --db-change-aware --no-headings monitor _Server Database name > db-change-aware.stdout 2> db-change-aware.stderr])
AT_CAPTURE_FILE([db-change-unaware.stdout])
AT_CAPTURE_FILE([db-change-unaware.stderr])
AT_CAPTURE_FILE([db-change-aware.stdout])
AT_CAPTURE_FILE([db-change-aware.stderr])
# Add the first database back.
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/add-db db1], [0])
CHECK_DBS([ordinals
])
# Add the second database.
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/add-db db2], [0])
CHECK_DBS([constraints
ordinals
])
# The databases are responsive.
AT_CHECK([ovsdb-client list-tables unix:db.sock constraints], [0], [ignore], [ignore])
AT_CHECK([ovsdb-client list-tables unix:db.sock ordinals], [0], [ignore], [ignore])
# Add an already added database.
if test $IS_WIN32 = "yes"; then
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/add-db db2], 2, [],
[I/O error: db2: failed to lock lockfile (Resource deadlock avoided)
ovs-appctl: ovsdb-server: server returned an error
])
else
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/add-db db2], 2, [],
[ovsdb error: db2: already open
ovs-appctl: ovsdb-server: server returned an error
])
fi
# Add a non-existing database.
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/add-db db3], 2, [], [stderr])
AT_CHECK([sed 's/(.*)/(...)/' stderr], [0],
[I/O error: db3: open failed (...)
ovs-appctl: ovsdb-server: server returned an error
])
# Add a remote through a db path in db1.
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/add-remote db:ordinals,ordinals,name], [0])
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/list-remotes],
[0], [db:ordinals,ordinals,name
punix:db.sock
])
# Removing db1 has no effect on its remote.
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/remove-db ordinals], [0])
CHECK_DBS([constraints
])
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/list-remotes],
[0], [db:ordinals,ordinals,name
punix:db.sock
])
AT_CHECK([ovsdb-client list-tables unix:db.sock ordinals], [1], [ignore], [ignore])
# Remove db2.
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/remove-db constraints], [0])
CHECK_DBS()
AT_CHECK([ovsdb-client list-tables unix:db.sock constraints], [1], [ignore], [ignore])
# Remove a non-existent database.
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/remove-db ordinals], [2],
[], [Failed to find the database.
ovs-appctl: ovsdb-server: server returned an error
])
# Add a removed database.
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/add-db db2], [0])
CHECK_DBS([constraints
])
AT_CHECK([ovsdb-client list-tables unix:db.sock constraints], [0], [ignore], [ignore])
# Check the monitoring results.
AT_CHECK([uuidfilt db-change-aware.stdout], [0], [dnl
<0> initial _Server
<1> insert ordinals
<2> insert constraints
<1> delete ordinals
<2> delete constraints
<3> insert constraints
])
AT_CHECK([uuidfilt db-change-unaware.stdout], [0], [dnl
<0> initial _Server
])
OVS_APP_EXIT_AND_WAIT([ovsdb-server])
AT_CLEANUP
AT_SETUP([ovsdb-server/add-db with --monitor])
AT_KEYWORDS([ovsdb server positive])
AT_SKIP_IF([test "$IS_WIN32" = "yes"])
# This test intentionally causes SIGSEGV, so make Address Sanitizer ignore it.
ASAN_OPTIONS=$ASAN_OPTIONS:handle_segv=0; export ASAN_OPTIONS
# Skip it if UB Sanitizer is being used. There's no way to disable the
# SEGV check at runtime.
AT_SKIP_IF([test $TESTS_WITH_UBSAN = yes])
# Start ovsdb-server, initially with one db.
ordinal_schema > schema
AT_CHECK([ovsdb-tool create db1 schema], [0], [ignore], [ignore])
on_exit 'kill `cat *.pid`'
AT_CHECK([ovsdb-server -vfile -vvlog:off --monitor --detach --no-chdir --pidfile --log-file --remote=punix:db.sock db1])
# Add the second database.
constraint_schema > schema2
AT_CHECK([ovsdb-tool create db2 schema2], [0], [ignore], [ignore])
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/add-db db2], [0])
CHECK_DBS([constraints
ordinals
])
# Kill the daemon process, making it look like a segfault,
# and wait for a new daemon process to get spawned.
cp ovsdb-server.pid old.pid
AT_CHECK([kill -SEGV `cat ovsdb-server.pid`])
OVS_WAIT_WHILE([kill -0 `cat old.pid`])
OVS_WAIT_UNTIL(
[test -s ovsdb-server.pid && test `cat ovsdb-server.pid` != `cat old.pid`])
OVS_WAIT_UNTIL([ovs-appctl -t ovsdb-server version])
CHECK_DBS([constraints
ordinals
])
OVS_APP_EXIT_AND_WAIT([ovsdb-server])
AT_CLEANUP
AT_SETUP([ovsdb-server/add-db and remove-db with --monitor])
AT_KEYWORDS([ovsdb server positive])
AT_SKIP_IF([test "$IS_WIN32" = "yes"])
# This test intentionally causes SIGSEGV, so make Address Sanitizer ignore it.
ASAN_OPTIONS=$ASAN_OPTIONS:handle_segv=0; export ASAN_OPTIONS
# Skip it if UB Sanitizer is being used. There's no way to disable the
# SEGV check at runtime.
AT_SKIP_IF([test $TESTS_WITH_UBSAN = yes])
# Start ovsdb-server, initially with one db.
ordinal_schema > schema
AT_CHECK([ovsdb-tool create db1 schema], [0], [ignore], [ignore])
constraint_schema > schema2
AT_CHECK([ovsdb-tool create db2 schema2], [0], [ignore], [ignore])
on_exit 'kill `cat *.pid`'
AT_CHECK([ovsdb-server -vfile -vvlog:off --monitor --detach --no-chdir --pidfile --log-file --remote=punix:db.sock db1 db2])
# Remove the second database.
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/remove-db constraints])
CHECK_DBS([ordinals
])
# Kill the daemon process, making it look like a segfault,
# and wait for a new daemon process to get spawned.
cp ovsdb-server.pid old.pid
AT_CHECK([kill -SEGV `cat ovsdb-server.pid`])
OVS_WAIT_WHILE([kill -0 `cat old.pid`])
OVS_WAIT_UNTIL(
[test -s ovsdb-server.pid && test `cat ovsdb-server.pid` != `cat old.pid`])
OVS_WAIT_UNTIL([ovs-appctl -t ovsdb-server version])
CHECK_DBS([ordinals
])
OVS_APP_EXIT_AND_WAIT([ovsdb-server])
AT_CLEANUP
AT_SETUP([--remote=db: implementation])
AT_KEYWORDS([ovsdb server positive])
AT_DATA([schema],
[[{"name": "mydb",
"tables": {
"Root": {
"columns": {
"managers": {
"type": {
"key": "string",
"min": 0,
"max": "unlimited"}},
"manager_options": {
"type": {
"key": {"type": "uuid", "refTable": "Manager"},
"min": 0,
"max": "unlimited"}}}},
"Manager": {
"columns": {
"target": {
"type": "string"},
"is_connected": {
"type": {
"key": "boolean",
"min": 0,
"max": 1}}}}}}
]])
AT_CHECK([ovsdb-tool create db schema], [0], [ignore], [ignore])
AT_CHECK(
[[ovsdb-tool transact db \
'["mydb",
{"op": "insert",
"table": "Root",
"row": {
"managers": "punix:socket1",
"manager_options": ["set", [["named-uuid", "x"]]]}},
{"op": "insert",
"table": "Manager",
"uuid-name": "x",
"row": {"target": "punix:socket2"}}]']], [0], [ignore], [ignore])
on_exit 'kill `cat *.pid`'
AT_CHECK([ovsdb-server --detach --no-chdir --pidfile --remote=db:mydb,Root,managers --remote=db:mydb,Root,manager_options --log-file db], [0], [ignore], [ignore])
ovs-appctl -t ovsdb-server time/warp 6000 1000
AT_CHECK(
[[ovsdb-client transact unix:socket1 \
'["mydb",
{"op": "select",
"table": "Root",
"where": [],
"columns": ["managers"]},
{"op": "select",
"table": "Manager",
"where": [],
"columns": ["target", "is_connected"]}]']],
[0], [stdout], [ignore])
AT_CHECK(
[uuidfilt stdout],
[0],
[[[{"rows":[{"managers":"punix:socket1"}]},{"rows":[{"is_connected":false,"target":"punix:socket2"}]}]
]],
[ignore])
OVS_APP_EXIT_AND_WAIT([ovsdb-server])
AT_CLEANUP
AT_SETUP([ovsdb-server/add-remote and remove-remote])
AT_KEYWORDS([ovsdb server positive])
ordinal_schema > schema
AT_CHECK([ovsdb-tool create db schema], [0], [ignore], [ignore])
on_exit 'kill `cat *.pid`'
AT_CHECK([ovsdb-server --detach --no-chdir --pidfile db])
AT_CHECK([test ! -e socket1])
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/add-remote punix:socket1])
if test "$IS_WIN32" = "yes"; then
OVS_WAIT_UNTIL([test -e socket1])
else
OVS_WAIT_UNTIL([test -S socket1])
fi
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/list-remotes],
[0], [punix:socket1
])
AT_CHECK([test ! -e socket2])
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/add-remote punix:socket2])
if test "$IS_WIN32" = "yes"; then
OVS_WAIT_UNTIL([test -e socket2])
else
OVS_WAIT_UNTIL([test -S socket2])
fi
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/list-remotes],
[0], [punix:socket1
punix:socket2
])
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/add-remote db:x,y,z], [2],
[], ["db:x,y,z": no database named x
ovs-appctl: ovsdb-server: server returned an error
])
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/remove-remote punix:socket1])
OVS_WAIT_UNTIL([test ! -e socket1])
if test "$IS_WIN32" = "yes"; then
AT_CHECK([test -e socket2])
else
AT_CHECK([test -S socket2])
fi
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/list-remotes],
[0], [punix:socket2
])
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/remove-remote punix:socket2])
OVS_WAIT_UNTIL([test ! -e socket2])
AT_CHECK([test ! -e socket1])
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/list-remotes])
OVS_APP_EXIT_AND_WAIT([ovsdb-server])
AT_CLEANUP
AT_SETUP([ovsdb-server/add-remote with --monitor])
AT_KEYWORDS([ovsdb server positive])
AT_SKIP_IF([test "$IS_WIN32" = "yes"])
# This test intentionally causes SIGSEGV, so make Address Sanitizer ignore it.
ASAN_OPTIONS=$ASAN_OPTIONS:handle_segv=0; export ASAN_OPTIONS
# Skip it if UB Sanitizer is being used. There's no way to disable the
# SEGV check at runtime.
AT_SKIP_IF([test $TESTS_WITH_UBSAN = yes])
# Start ovsdb-server, initially with no remotes.
ordinal_schema > schema
AT_CHECK([ovsdb-tool create db schema], [0], [ignore], [ignore])
on_exit 'kill `cat *.pid`'
AT_CHECK([ovsdb-server -vfile -vvlog:off --monitor --detach --no-chdir --pidfile --log-file db])
# Add a remote.
AT_CHECK([test ! -e socket1])
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/add-remote punix:socket1])
OVS_WAIT_UNTIL([test -S socket1])
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/list-remotes],
[0], [punix:socket1
])
# Kill the daemon process, making it look like a segfault,
# and wait for a new daemon process to get spawned and for it to
# start listening on 'socket1'.
cp ovsdb-server.pid old.pid
rm socket1
AT_CHECK([kill -SEGV `cat ovsdb-server.pid`])
OVS_WAIT_WHILE([kill -0 `cat old.pid`])
OVS_WAIT_UNTIL(
[test -s ovsdb-server.pid && test `cat ovsdb-server.pid` != `cat old.pid`])
OVS_WAIT_UNTIL([ovs-appctl -t ovsdb-server version])
OVS_WAIT_UNTIL([test -S socket1])
OVS_APP_EXIT_AND_WAIT([ovsdb-server])
AT_CLEANUP
AT_SETUP([ovsdb-server/add-remote and remove-remote with --monitor])
AT_KEYWORDS([ovsdb server positive])
AT_SKIP_IF([test "$IS_WIN32" = "yes"])
# This test intentionally causes SIGSEGV, so make Address Sanitizer ignore it.
ASAN_OPTIONS=$ASAN_OPTIONS:handle_segv=0; export ASAN_OPTIONS
# Skip it if UB Sanitizer is being used. There's no way to disable the
# SEGV check at runtime.
AT_SKIP_IF([test $TESTS_WITH_UBSAN = yes])
# Start ovsdb-server, initially with no remotes.
ordinal_schema > schema
AT_CHECK([ovsdb-tool create db schema], [0], [ignore], [ignore])
on_exit 'kill `cat *.pid`'
AT_CHECK([ovsdb-server -vfile -vvlog:off --monitor --detach --no-chdir --pidfile --log-file db])
# Add a remote.
AT_CHECK([test ! -e socket1])
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/add-remote punix:socket1])
OVS_WAIT_UNTIL([test -S socket1])
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/list-remotes],
[0], [punix:socket1
])
# Remove the remote.
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/remove-remote punix:socket1])
OVS_WAIT_UNTIL([test ! -e socket1])
AT_CHECK([ovs-appctl -t ovsdb-server ovsdb-server/list-remotes])
# Kill the daemon process, making it look like a segfault,
# and wait for a new daemon process to get spawned and make sure that it
# does not listen on 'socket1'.
cp ovsdb-server.pid old.pid
AT_CHECK([kill -SEGV `cat ovsdb-server.pid`])
OVS_WAIT_WHILE([kill -0 `cat old.pid`])
OVS_WAIT_UNTIL(
[test -s ovsdb-server.pid && test `cat ovsdb-server.pid` != `cat old.pid`])
OVS_WAIT_UNTIL([ovs-appctl -t ovsdb-server version])
AT_CHECK([test ! -e socket1])
OVS_APP_EXIT_AND_WAIT([ovsdb-server])
AT_CLEANUP
AT_SETUP([SSL db: implementation])
AT_KEYWORDS([ovsdb server positive ssl $5])
AT_SKIP_IF([test "$HAVE_OPENSSL" = no])
# For this test, we pass PKIDIR through a ovsdb-tool transact and
# msys on Windows does not convert the path style automatically.
# So, do that forcefully with a 'pwd -W' (called through pwd() function).
PKIDIR="$(cd $abs_top_builddir/tests && pwd)"
AT_SKIP_IF([expr "$PKIDIR" : ".*[[ '\"
\\]]"])
AT_DATA([schema],
[[{"name": "mydb",
"tables": {
"SSL": {
"columns": {
"private_key": {"type": "string"},
"certificate": {"type": "string"},
"ca_cert": {"type": "string"},
"ssl_protocols" : {"type": "string"},
"ssl_ciphers" : {"type" : "string"}}}}}
]])
AT_CHECK([ovsdb-tool create db schema], [0], [stdout], [ignore])
# The !ECDHE-ECDSA-AES256-GCM-SHA384 in the ssl_ciphers is so that
# a cipher negotiation failure can be tested for later.
AT_CHECK(
[[ovsdb-tool transact db \
'["mydb",
{"op": "insert",
"table": "SSL",
"row": {"private_key": "'"$PKIDIR/testpki-privkey2.pem"'",
"certificate": "'"$PKIDIR/testpki-cert2.pem"'",
"ca_cert": "'"$PKIDIR/testpki-cacert.pem"'",
"ssl_protocols": "'"TLSv1.2,TLSv1.1"'",
"ssl_ciphers": "'"HIGH:!aNULL:!MD5:!ECDHE-ECDSA-AES256-GCM-SHA384"'"}}]']],
[0], [ignore], [ignore])
on_exit 'kill `cat *.pid`'
AT_CHECK(
[ovsdb-server --log-file --detach --no-chdir --pidfile \
--private-key=db:mydb,SSL,private_key \
--certificate=db:mydb,SSL,certificate \
--ca-cert=db:mydb,SSL,ca_cert \
--ssl-protocols=db:mydb,SSL,ssl_protocols \
--ssl-ciphers=db:mydb,SSL,ssl_ciphers \
--remote=pssl:0:127.0.0.1 db],
[0], [ignore], [ignore])
PARSE_LISTENING_PORT([ovsdb-server.log], [SSL_PORT])
AT_CHECK(
[[ovsdb-client \
--private-key=$PKIDIR/testpki-privkey.pem \
--certificate=$PKIDIR/testpki-cert.pem \
--ca-cert=$PKIDIR/testpki-cacert.pem \
--ssl-protocols=TLSv1.2,TLSv1.1 \
--ssl-ciphers=HIGH:!aNULL:!MD5 \
transact ssl:127.0.0.1:$SSL_PORT \
'["mydb",
{"op": "select",
"table": "SSL",
"where": [],
"columns": ["private_key"]}]']],
[0], [stdout], [ignore])
cat stdout >> output
AT_CHECK_UNQUOTED(
[cat output], [0],
[[@<:@{"rows":@<:@{"private_key":"$PKIDIR/testpki-privkey2.pem"}@:>@}@:>@
]], [ignore])
# Check that when the server has TLSv1.1+ and the client has
# TLSv1 that the connection fails.
AT_CHECK(
[[ovsdb-client \
--private-key=$PKIDIR/testpki-privkey.pem \
--certificate=$PKIDIR/testpki-cert.pem \
--ca-cert=$PKIDIR/testpki-cacert.pem \
--ssl-protocols=TLSv1 \
--ssl-ciphers=HIGH:!aNULL:!MD5 \
transact ssl:127.0.0.1:$SSL_PORT \
'["mydb",
{"op": "select",
"table": "SSL",
"where": [],
"columns": ["private_key"]}]']],
[1], [stdout],
[stderr])
cat stderr > output
AT_CHECK_UNQUOTED(
[sed -n "/failed to connect/s/ (.*)//p" output], [0],
[ovsdb-client: failed to connect to "ssl:127.0.0.1:$SSL_PORT"
],
[ignore])
# Check that when ciphers are not compatible, that a negotiation
# failure occurs.
AT_CHECK(
[[ovsdb-client \
--private-key=$PKIDIR/testpki-privkey.pem \
--certificate=$PKIDIR/testpki-cert.pem \
--ca-cert=$PKIDIR/testpki-cacert.pem \
--ssl-protocols=TLSv1.2,TLSv1.1 \
--ssl-ciphers=ECDHE-ECDSA-AES256-GCM-SHA384 \
transact ssl:127.0.0.1:$SSL_PORT \
'["mydb",
{"op": "select",
"table": "SSL",
"where": [],
"columns": ["private_key"]}]']],
[1], [stdout],
[stderr])
cat stderr > output
AT_CHECK_UNQUOTED(
[sed -n "/failed to connect/s/ (.*)//p" output], [0],
[ovsdb-client: failed to connect to "ssl:127.0.0.1:$SSL_PORT"
],
[ignore])
# The error message for being unable to negotiate a shared ciphersuite
# is 'sslv3 alert handshake failure'. This is not the clearest message.
AT_CHECK_UNQUOTED(
[grep "sslv3 alert handshake failure" output], [0],
[stdout],
[ignore])
OVSDB_SERVER_SHUTDOWN
AT_CLEANUP
OVS_START_SHELL_HELPERS
# ovsdb_check_online_compaction MODEL
#
# where MODEL is "standalone" or "cluster"
ovsdb_check_online_compaction() {
local model=$1
ordinal_schema > schema
dnl Make sure that "ovsdb-tool create" works with a dangling symlink for
dnl the database and the lockfile, creating the target of each symlink rather
dnl than replacing the symlinks with regular files.
mkdir dir
if test "$IS_WIN32" = "no"; then
ln -s dir/db db
ln -s dir/.db.~lock~ .db.~lock~
AT_SKIP_IF([test ! -h db || test ! -h .db.~lock~])
fi
AT_CHECK([if test $model = standalone; then
ovsdb-tool create db schema
else
ovsdb-tool create-cluster db schema unix:s1.raft
fi])
dnl Start ovsdb-server.
on_exit 'kill `cat *.pid`'
AT_CHECK([ovsdb-server -vvlog:off -vconsole:off --detach --no-chdir --pidfile --remote=punix:socket --log-file db], [0])
AT_CHECK([ovsdb_client_wait unix:socket ordinals connected])
AT_CAPTURE_FILE([ovsdb-server.log])
dnl Do a bunch of random transactions that put crap in the database log.
AT_CHECK(
[[for pair in 'zero 0' 'one 1' 'two 2' 'three 3' 'four 4' 'five 5'; do
set -- $pair
ovsdb-client transact unix:socket '
["ordinals",
{"op": "insert",
"table": "ordinals",
"row": {"name": "'$1'", "number": '$2'}},
{"op": "comment",
"comment": "add row for '"$pair"'"}]'
ovsdb-client transact unix:socket '
["ordinals",
{"op": "delete",
"table": "ordinals",
"where": [["number", "==", '$2']]},
{"op": "comment",
"comment": "delete row for '"$2"'"}]'
ovsdb-client transact unix:socket '
["ordinals",
{"op": "insert",
"table": "ordinals",
"row": {"name": "'$1'", "number": '$2'}},
{"op": "comment",
"comment": "add back row for '"$pair"'"}]'
done]],
[0], [stdout])
if test $model = standalone; then
dnl Check that all the crap is in fact in the database log.
AT_CHECK([[uuidfilt db | grep -v ^OVSDB | \
sed 's/"_date":[0-9]*/"_date":0/' | sed 's/"_is_diff":true,//' | \
ovstest test-json --multiple -]], [0],
[[{"cksum":"12345678 9","name":"ordinals","tables":{"ordinals":{"columns":{"name":{"type":"string"},"number":{"type":"integer"}},"indexes":[["number"]]}},"version":"5.1.3"}
{"_comment":"add row for zero 0","_date":0,"ordinals":{"<0>":{"name":"zero"}}}
{"_comment":"delete row for 0","_date":0,"ordinals":{"<0>":null}}
{"_comment":"add back row for zero 0","_date":0,"ordinals":{"<1>":{"name":"zero"}}}
{"_comment":"add row for one 1","_date":0,"ordinals":{"<2>":{"name":"one","number":1}}}
{"_comment":"delete row for 1","_date":0,"ordinals":{"<2>":null}}
{"_comment":"add back row for one 1","_date":0,"ordinals":{"<3>":{"name":"one","number":1}}}
{"_comment":"add row for two 2","_date":0,"ordinals":{"<4>":{"name":"two","number":2}}}
{"_comment":"delete row for 2","_date":0,"ordinals":{"<4>":null}}
{"_comment":"add back row for two 2","_date":0,"ordinals":{"<5>":{"name":"two","number":2}}}
{"_comment":"add row for three 3","_date":0,"ordinals":{"<6>":{"name":"three","number":3}}}
{"_comment":"delete row for 3","_date":0,"ordinals":{"<6>":null}}
{"_comment":"add back row for three 3","_date":0,"ordinals":{"<7>":{"name":"three","number":3}}}
{"_comment":"add row for four 4","_date":0,"ordinals":{"<8>":{"name":"four","number":4}}}
{"_comment":"delete row for 4","_date":0,"ordinals":{"<8>":null}}
{"_comment":"add back row for four 4","_date":0,"ordinals":{"<9>":{"name":"four","number":4}}}
{"_comment":"add row for five 5","_date":0,"ordinals":{"<10>":{"name":"five","number":5}}}
{"_comment":"delete row for 5","_date":0,"ordinals":{"<10>":null}}
{"_comment":"add back row for five 5","_date":0,"ordinals":{"<11>":{"name":"five","number":5}}}
]])
else
dnl Check that at least there's a lot of transactions.
AT_CHECK([test `wc -l < db` -gt 50])
fi
dnl Dump out and check the actual database contents.
AT_CHECK([ovsdb-client dump unix:socket ordinals], [0], [stdout])
AT_CHECK([uuidfilt stdout], [0], [dnl
ordinals table
_uuid name number
------------------------------------ ----- ------
<0> five 5
<1> four 4
<2> one 1
<3> three 3
<4> two 2
<5> zero 0
])
cp db db.pre-compaction
dnl Now compact the database in-place.
AT_CHECK([[ovs-appctl -t ovsdb-server ovsdb-server/compact]],
[0], [], [ignore])
dnl Negative test.
AT_CHECK([[ovs-appctl -t ovsdb-server ovsdb-server/compact _Server]],
[2], [], [cannot compact built-in databases
ovs-appctl: ovsdb-server: server returned an error
])
dnl Make sure that "db" is still a symlink to dir/db instead of getting
dnl replaced by a regular file, ditto for .db.~lock~.
if test "$IS_WIN32" = "no"; then
AT_CHECK([test -h db])
AT_CHECK([test -h .db.~lock~])
AT_CHECK([test -f dir/db])
AT_CHECK([test -f dir/.db.~lock~])
fi
# We can't fully re-check the contents of the database log, because the
# order of the records is not predictable, but there should only be 4 lines
# in it now in the standalone case
AT_CAPTURE_FILE([db])
compacted_lines=`wc -l < db`
echo compacted_lines=$compacted_lines
if test $model = standalone; then
AT_CHECK([test $compacted_lines -eq 4])
fi
dnl And check that the dumped data is the same too:
AT_CHECK([ovsdb-client dump unix:socket ordinals], [0], [stdout])
AT_CHECK([uuidfilt stdout], [0], [dnl
ordinals table
_uuid name number
------------------------------------ ----- ------
<0> five 5
<1> four 4
<2> one 1
<3> three 3
<4> two 2
<5> zero 0
])
dnl Now do some more transactions.
AT_CHECK(
[[ovsdb-client transact unix:socket '
["ordinals",
{"op": "delete",
"table": "ordinals",
"where": [["number", "<", 3]]}]']],
[0], [[[{"count":3}]
]], [ignore])
dnl There should be 6 lines in the log now, for the standalone case,
dnl and for the clustered case the file should at least have grown.
updated_lines=`wc -l < db`
echo compacted_lines=$compacted_lines updated_lines=$updated_lines
if test $model = standalone; then
AT_CHECK([test $updated_lines -eq 6])
else
AT_CHECK([test $updated_lines -gt $compacted_lines])
fi
dnl Then check that the dumped data is correct. This time first kill
dnl and restart the database server to ensure that the data is correct on
dnl disk as well as in memory.
OVS_APP_EXIT_AND_WAIT([ovsdb-server])
AT_CHECK([ovsdb-server -vvlog:off -vconsole:off --detach --no-chdir --pidfile --remote=punix:socket --log-file db])
AT_CHECK([ovsdb-client dump unix:socket ordinals], [0], [stdout])
AT_CHECK([uuidfilt stdout], [0], [dnl
ordinals table
_uuid name number
------------------------------------ ----- ------
<0> five 5
<1> four 4
<2> three 3
], [])
OVSDB_SERVER_SHUTDOWN
}
OVS_END_SHELL_HELPERS
AT_SETUP([compacting online - standalone])
AT_KEYWORDS([ovsdb server compact])
ovsdb_check_online_compaction standalone
AT_CLEANUP
AT_SETUP([compacting online - cluster])
AT_KEYWORDS([ovsdb server compact])
ovsdb_check_online_compaction cluster
AT_CLEANUP
OVS_START_SHELL_HELPERS
# ovsdb_check_online_conversion MODEL
#
# where MODEL is "standalone" or "cluster"
ovsdb_check_online_conversion() {
local model=$1
on_exit 'kill `cat *.pid`'
ordinal_schema > schema
AT_DATA([new-schema],
[[{"name": "ordinals",
"tables": {
"ordinals": {
"columns": {
"number": {"type": "integer"}}}}}
]])
dnl Make sure that "ovsdb-tool create" works with a dangling symlink for
dnl the database and the lockfile, creating the target of each symlink
dnl rather than replacing the symlinks with regular files.
mkdir dir
if test "$IS_WIN32" = "no"; then
ln -s dir/db db
ln -s dir/.db.~lock~ .db.~lock~
AT_SKIP_IF([test ! -h db || test ! -h .db.~lock~])
fi
AT_CHECK([if test $model = standalone; then
ovsdb-tool create db schema
else
ovsdb-tool create-cluster db schema unix:s1.raft
fi])
dnl Start the database server.
AT_CHECK([ovsdb-server -vfile -vvlog:off -vconsole:off --detach --no-chdir --pidfile --log-file --remote=punix:db.sock db], [0])
AT_CAPTURE_FILE([ovsdb-server.log])
dnl Put some data in the database.
AT_CHECK(
[[for pair in 'zero 0' 'one 1' 'two 2' 'three 3' 'four 4' 'five 5'; do
set -- $pair
ovsdb-client transact '
["ordinals",
{"op": "insert",
"table": "ordinals",
"row": {"name": "'$1'", "number": '$2'}},
{"op": "comment",
"comment": "add row for '"$pair"'"}]'
done | uuidfilt]], [0],
[[[{"uuid":["uuid","<0>"]},{}]
[{"uuid":["uuid","<1>"]},{}]
[{"uuid":["uuid","<2>"]},{}]
[{"uuid":["uuid","<3>"]},{}]
[{"uuid":["uuid","<4>"]},{}]
[{"uuid":["uuid","<5>"]},{}]
]], [ignore])
dnl Try "needs-conversion".
AT_CHECK([ovsdb-client needs-conversion schema], [0], [no
])
AT_CHECK([ovsdb-client needs-conversion new-schema], [0], [yes
])
dnl Start two monitors on the 'ordinals' db, one that is database
dnl change aware and one that is not.
AT_CHECK([ovsdb-client -vfile -vvlog:off --detach --no-chdir --pidfile=monitor-ordinals-aware.pid --log-file=monitor-ordinals-aware.log --db-change-aware --no-headings monitor ordinals ordinals number name > monitor-ordinals-aware.stdout 2> monitor-ordinals-aware.stderr])
AT_CAPTURE_FILE([monitor-ordinals-aware.stdout])
AT_CAPTURE_FILE([monitor-ordinals-aware.log])
AT_CAPTURE_FILE([monitor-ordinals-aware.stderr])
AT_CHECK([ovsdb-client -vfile -vvlog:off --detach --no-chdir --pidfile=monitor-ordinals-unaware.pid --log-file=monitor-ordinals-unaware.log --no-db-change-aware --no-headings monitor ordinals ordinals number name > monitor-ordinals-unaware.stdout 2> monitor-ordinals-unaware.stderr])
AT_CAPTURE_FILE([monitor-ordinals-unaware.stdout])
AT_CAPTURE_FILE([monitor-ordinals-unaware.log])
AT_CAPTURE_FILE([monitor-ordinals-unaware.stderr])
dnl Start two monitors on the '_Server' db, one that is database
dnl change aware and one that is not.
AT_CHECK([ovsdb-client -vfile -vvlog:off --detach --no-chdir --pidfile=monitor-server-aware.pid --log-file=monitor-server-aware.log --db-change-aware --no-headings monitor _Server Database name > monitor-server-aware.stdout 2> monitor-server-aware.stderr])
AT_CAPTURE_FILE([monitor-server-aware.stdout])
AT_CAPTURE_FILE([monitor-server-aware.log])
AT_CAPTURE_FILE([monitor-server-aware.stderr])
AT_CHECK([ovsdb-client -vfile -vvlog:off --detach --no-chdir --pidfile=monitor-server-unaware.pid --log-file=monitor-server-unaware.log --no-db-change-aware --no-headings monitor _Server Database name > monitor-server-unaware.stdout 2> monitor-server-unaware.stderr])
AT_CAPTURE_FILE([monitor-server-unaware.stdout])
AT_CAPTURE_FILE([monitor-server-unaware.log])
AT_CAPTURE_FILE([monitor-server-unaware.stderr])
dnl Start two long-running transactions (triggers) on the 'ordinals' db,
dnl one that is database change aware and one that is not.
ordinals_txn='[["ordinals",
{"op": "wait",
"table": "ordinals",
"where": [["name", "==", "seven"]],
"columns": ["name", "number"],
"rows": [],
"until": "!="}]]'
AT_CHECK([ovsdb-client -vfile -vvlog:off --detach --no-chdir --pidfile=trigger-ordinals-aware.pid --log-file=trigger-ordinals-aware.log --db-change-aware transact "$ordinals_txn" > trigger-ordinals-aware.stdout 2> trigger-ordinals-aware.stderr])
AT_CAPTURE_FILE([trigger-ordinals-aware.stdout])
AT_CAPTURE_FILE([trigger-ordinals-aware.log])
AT_CAPTURE_FILE([trigger-ordinals-aware.stderr])
AT_CHECK([ovsdb-client -vfile -vvlog:off --detach --no-chdir --pidfile=trigger-ordinals-unaware.pid --log-file=trigger-ordinals-unaware.log --no-db-change-aware transact "$ordinals_txn" > trigger-ordinals-unaware.stdout 2> trigger-ordinals-unaware.stderr])
AT_CAPTURE_FILE([trigger-ordinals-unaware.stdout])
AT_CAPTURE_FILE([trigger-ordinals-unaware.log])
AT_CAPTURE_FILE([trigger-ordinals-unaware.stderr])
dnl Start two long-running transactions (triggers) on the _Server db,
dnl one that is database change aware and one that is not.
server_txn='[["_Server",
{"op": "wait",
"table": "Database",
"where": [["name", "==", "xyzzy"]],
"columns": ["name"],
"rows": [],
"until": "!="}]]'
AT_CHECK([ovsdb-client -vfile -vvlog:off --detach --no-chdir --pidfile=trigger-server-aware.pid --log-file=trigger-server-aware.log --db-change-aware transact "$server_txn" > trigger-server-aware.stdout 2> trigger-server-aware.stderr])
AT_CAPTURE_FILE([trigger-server-aware.stdout])
AT_CAPTURE_FILE([trigger-server-aware.log])
AT_CAPTURE_FILE([trigger-server-aware.stderr])
AT_CHECK([ovsdb-client -vfile -vvlog:off --detach --no-chdir --pidfile=trigger-server-unaware.pid --log-file=trigger-server-unaware.log --no-db-change-aware transact "$server_txn" > trigger-server-unaware.stdout 2> trigger-server-unaware.stderr])
AT_CAPTURE_FILE([trigger-server-unaware.stdout])
AT_CAPTURE_FILE([trigger-server-unaware.log])
AT_CAPTURE_FILE([trigger-server-unaware.stderr])
dnl Dump out and check the actual database contents.
AT_CHECK([ovsdb-client dump unix:db.sock ordinals], [0], [stdout])
AT_CHECK([uuidfilt stdout], [0], [dnl
ordinals table
_uuid name number
------------------------------------ ----- ------
<0> five 5
<1> four 4
<2> one 1
<3> three 3
<4> two 2
<5> zero 0
])