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7d6744c739
Following #9483 the daily CI exposed a few problems. * The cluster creation code (uses redis-cli) is complicated to test with TLS enabled. for now i'm just skipping them since the tests we run there don't really need that kind of coverage * cluster port binding failures note that `find_available_port` already looks for a free cluster port but the code in `wait_server_started` couldn't detect the failure of binding (the text it greps for wasn't found in the log)
205 lines
6.1 KiB
Tcl
205 lines
6.1 KiB
Tcl
# Primitive tests on cluster-enabled redis with modules using redis-cli
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source tests/support/cli.tcl
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proc cluster_info {r field} {
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if {[regexp "^$field:(.*?)\r\n" [$r cluster info] _ value]} {
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set _ $value
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}
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}
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# Provide easy access to CLUSTER INFO properties. Same semantic as "proc s".
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proc csi {args} {
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set level 0
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if {[string is integer [lindex $args 0]]} {
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set level [lindex $args 0]
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set args [lrange $args 1 end]
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}
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cluster_info [srv $level "client"] [lindex $args 0]
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}
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set testmodule [file normalize tests/modules/blockonkeys.so]
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set testmodule_nokey [file normalize tests/modules/blockonbackground.so]
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# make sure the test infra won't use SELECT
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set ::singledb 1
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# cluster creation is complicated with TLS, and the current tests don't really need that coverage
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tags {tls:skip external:skip cluster modules} {
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# start three servers
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set base_conf [list cluster-enabled yes cluster-node-timeout 1 loadmodule $testmodule]
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start_server [list overrides $base_conf] {
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start_server [list overrides $base_conf] {
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start_server [list overrides $base_conf] {
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set node1 [srv 0 client]
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set node2 [srv -1 client]
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set node3 [srv -2 client]
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set node3_pid [srv -2 pid]
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# the "overrides" mechanism can only support one "loadmodule" directive
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$node1 module load $testmodule_nokey
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$node2 module load $testmodule_nokey
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$node3 module load $testmodule_nokey
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test {Create 3 node cluster} {
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exec src/redis-cli --cluster-yes --cluster create \
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127.0.0.1:[srv 0 port] \
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127.0.0.1:[srv -1 port] \
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127.0.0.1:[srv -2 port]
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wait_for_condition 1000 50 {
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[csi 0 cluster_state] eq {ok} &&
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[csi -1 cluster_state] eq {ok} &&
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[csi -2 cluster_state] eq {ok}
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} else {
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fail "Cluster doesn't stabilize"
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}
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}
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test "Run blocking command (blocked on key) on cluster node3" {
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# key9184688 is mapped to slot 10923 (first slot of node 3)
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set node3_rd [redis_deferring_client -2]
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$node3_rd fsl.bpop key9184688 0
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$node3_rd flush
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wait_for_condition 50 100 {
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[s -2 blocked_clients] eq {1}
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} else {
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fail "Client executing blocking command (blocked on key) not blocked"
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}
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}
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test "Run blocking command (no keys) on cluster node2" {
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set node2_rd [redis_deferring_client -1]
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$node2_rd block.block 0
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$node2_rd flush
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wait_for_condition 50 100 {
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[s -1 blocked_clients] eq {1}
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} else {
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fail "Client executing blocking command (no keys) not blocked"
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}
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}
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test "Perform a Resharding" {
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exec src/redis-cli --cluster-yes --cluster reshard 127.0.0.1:[srv -2 port] \
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--cluster-to [$node1 cluster myid] \
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--cluster-from [$node3 cluster myid] \
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--cluster-slots 1
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}
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test "Verify command (no keys) is unaffected after resharding" {
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# verify there are blocked clients on node2
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assert_equal [s -1 blocked_clients] {1}
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#release client
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$node2 block.release 0
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}
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test "Verify command (blocked on key) got unblocked after resharding" {
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# this (read) will wait for the node3 to realize the new topology
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assert_error {*MOVED*} {$node3_rd read}
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# verify there are no blocked clients
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assert_equal [s 0 blocked_clients] {0}
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assert_equal [s -1 blocked_clients] {0}
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assert_equal [s -2 blocked_clients] {0}
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}
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test "Wait for cluster to be stable" {
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wait_for_condition 1000 50 {
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[catch {exec src/redis-cli --cluster \
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check 127.0.0.1:[srv 0 port] \
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}] == 0
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} else {
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fail "Cluster doesn't stabilize"
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}
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}
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test "Sanity test push cmd after resharding" {
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assert_error {*MOVED*} {$node3 fsl.push key9184688 1}
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set node1_rd [redis_deferring_client 0]
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$node1_rd fsl.bpop key9184688 0
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$node1_rd flush
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wait_for_condition 50 100 {
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[s 0 blocked_clients] eq {1}
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} else {
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puts "Client not blocked"
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puts "read from blocked client: [$node1_rd read]"
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fail "Client not blocked"
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}
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$node1 fsl.push key9184688 2
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assert_equal {2} [$node1_rd read]
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}
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$node1_rd close
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$node2_rd close
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$node3_rd close
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test "Run blocking command (blocked on key) again on cluster node1" {
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$node1 del key9184688
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# key9184688 is mapped to slot 10923 which has been moved to node1
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set node1_rd [redis_deferring_client 0]
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$node1_rd fsl.bpop key9184688 0
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$node1_rd flush
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wait_for_condition 50 100 {
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[s 0 blocked_clients] eq {1}
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} else {
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fail "Client executing blocking command (blocked on key) again not blocked"
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}
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}
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test "Run blocking command (no keys) again on cluster node2" {
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set node2_rd [redis_deferring_client -1]
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$node2_rd block.block 0
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$node2_rd flush
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wait_for_condition 50 100 {
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[s -1 blocked_clients] eq {1}
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} else {
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fail "Client executing blocking command (no keys) again not blocked"
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}
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}
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test "Kill a cluster node and wait for fail state" {
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# kill node3 in cluster
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exec kill -SIGSTOP $node3_pid
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wait_for_condition 1000 50 {
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[csi 0 cluster_state] eq {fail} &&
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[csi -1 cluster_state] eq {fail}
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} else {
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fail "Cluster doesn't fail"
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}
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}
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test "Verify command (blocked on key) got unblocked after cluster failure" {
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assert_error {*CLUSTERDOWN*} {$node1_rd read}
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}
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test "Verify command (no keys) got unblocked after cluster failure" {
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assert_error {*CLUSTERDOWN*} {$node2_rd read}
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# verify there are no blocked clients
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assert_equal [s 0 blocked_clients] {0}
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assert_equal [s -1 blocked_clients] {0}
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}
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exec kill -SIGCONT $node3_pid
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$node1_rd close
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$node2_rd close
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# stop three servers
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}
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}
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}
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} ;# tags |