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39ebc637a1
Apparently, our NixOS tests need more RAM now. This was needed for e.g.
the `gitea`-test as well[1].
[1] affb72eccd
250 lines
7.3 KiB
Nix
250 lines
7.3 KiB
Nix
let
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grpcPort = 19090;
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queryPort = 9090;
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minioPort = 9000;
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pushgwPort = 9091;
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s3 = {
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accessKey = "BKIKJAA5BMMU2RHO6IBB";
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secretKey = "V7f1CwQqAcwo80UEIJEjc5gVQUSSx5ohQ9GSrr12";
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};
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objstore.config = {
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type = "S3";
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config = {
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bucket = "thanos-bucket";
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endpoint = "s3:${toString minioPort}";
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region = "us-east-1";
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access_key = s3.accessKey;
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secret_key = s3.secretKey;
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insecure = true;
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signature_version2 = false;
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put_user_metadata = {};
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http_config = {
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idle_conn_timeout = "0s";
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insecure_skip_verify = false;
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};
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trace = {
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enable = false;
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};
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};
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};
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in import ./make-test-python.nix {
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name = "prometheus";
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nodes = {
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prometheus = { pkgs, ... }: {
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virtualisation.diskSize = 2 * 1024;
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virtualisation.memorySize = 2048;
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environment.systemPackages = [ pkgs.jq ];
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networking.firewall.allowedTCPPorts = [ grpcPort ];
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services.prometheus = {
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enable = true;
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scrapeConfigs = [
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{
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job_name = "prometheus";
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static_configs = [
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{
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targets = [ "127.0.0.1:${toString queryPort}" ];
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labels = { instance = "localhost"; };
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}
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];
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}
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{
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job_name = "pushgateway";
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scrape_interval = "1s";
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static_configs = [
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{
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targets = [ "127.0.0.1:${toString pushgwPort}" ];
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}
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];
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}
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];
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rules = [
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''
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groups:
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- name: test
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rules:
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- record: testrule
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expr: count(up{job="prometheus"})
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''
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];
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globalConfig = {
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external_labels = {
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some_label = "required by thanos";
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};
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};
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extraFlags = [
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# Required by thanos
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"--storage.tsdb.min-block-duration=5s"
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"--storage.tsdb.max-block-duration=5s"
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];
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};
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services.prometheus.pushgateway = {
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enable = true;
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web.listen-address = ":${toString pushgwPort}";
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persistMetrics = true;
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persistence.interval = "1s";
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stateDir = "prometheus-pushgateway";
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};
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services.thanos = {
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sidecar = {
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enable = true;
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grpc-address = "0.0.0.0:${toString grpcPort}";
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inherit objstore;
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};
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# TODO: Add some tests for these services:
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#rule = {
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# enable = true;
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# http-address = "0.0.0.0:19194";
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# grpc-address = "0.0.0.0:19193";
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# query.addresses = [
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# "localhost:19191"
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# ];
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# labels = {
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# just = "some";
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# nice = "labels";
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# };
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#};
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#
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#receive = {
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# http-address = "0.0.0.0:19195";
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# enable = true;
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# labels = {
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# just = "some";
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# nice = "labels";
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# };
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#};
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};
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};
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query = { pkgs, ... }: {
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environment.systemPackages = [ pkgs.jq ];
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services.thanos.query = {
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enable = true;
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http-address = "0.0.0.0:${toString queryPort}";
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store.addresses = [
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"prometheus:${toString grpcPort}"
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];
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};
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};
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store = { pkgs, ... }: {
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virtualisation.diskSize = 2 * 1024;
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virtualisation.memorySize = 2048;
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environment.systemPackages = with pkgs; [ jq thanos ];
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services.thanos.store = {
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enable = true;
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http-address = "0.0.0.0:10902";
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grpc-address = "0.0.0.0:${toString grpcPort}";
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inherit objstore;
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sync-block-duration = "1s";
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};
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services.thanos.compact = {
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enable = true;
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http-address = "0.0.0.0:10903";
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inherit objstore;
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consistency-delay = "5s";
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};
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services.thanos.query = {
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enable = true;
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http-address = "0.0.0.0:${toString queryPort}";
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store.addresses = [
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"localhost:${toString grpcPort}"
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];
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};
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};
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s3 = { pkgs, ... } : {
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# Minio requires at least 1GiB of free disk space to run.
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virtualisation = {
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diskSize = 2 * 1024;
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memorySize = 1024;
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};
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networking.firewall.allowedTCPPorts = [ minioPort ];
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services.minio = {
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enable = true;
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inherit (s3) accessKey secretKey;
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};
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environment.systemPackages = [ pkgs.minio-client ];
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};
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};
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testScript = { nodes, ... } : ''
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# Before starting the other machines we first make sure that our S3 service is online
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# and has a bucket added for thanos:
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s3.start()
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s3.wait_for_unit("minio.service")
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s3.wait_for_open_port(${toString minioPort})
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s3.succeed(
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"mc config host add minio "
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+ "http://localhost:${toString minioPort} "
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+ "${s3.accessKey} ${s3.secretKey} --api s3v4",
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"mc mb minio/thanos-bucket",
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)
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# Now that s3 has started we can start the other machines:
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for machine in prometheus, query, store:
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machine.start()
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# Check if prometheus responds to requests:
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prometheus.wait_for_unit("prometheus.service")
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prometheus.wait_for_open_port(${toString queryPort})
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prometheus.succeed("curl -sf http://127.0.0.1:${toString queryPort}/metrics")
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# Let's test if pushing a metric to the pushgateway succeeds:
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prometheus.wait_for_unit("pushgateway.service")
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prometheus.succeed(
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"echo 'some_metric 3.14' | "
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+ "curl -f --data-binary \@- "
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+ "http://127.0.0.1:${toString pushgwPort}/metrics/job/some_job"
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)
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# Now check whether that metric gets ingested by prometheus.
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# Since we'll check for the metric several times on different machines
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# we abstract the test using the following function:
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# Function to check if the metric "some_metric" has been received and returns the correct value.
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def wait_for_metric(machine):
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return machine.wait_until_succeeds(
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"curl -sf 'http://127.0.0.1:${toString queryPort}/api/v1/query?query=some_metric' | "
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+ "jq '.data.result[0].value[1]' | grep '\"3.14\"'"
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)
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wait_for_metric(prometheus)
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# Let's test if the pushgateway persists metrics to the configured location.
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prometheus.wait_until_succeeds("test -e /var/lib/prometheus-pushgateway/metrics")
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# Test thanos
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prometheus.wait_for_unit("thanos-sidecar.service")
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# Test if the Thanos query service can correctly retrieve the metric that was send above.
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query.wait_for_unit("thanos-query.service")
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wait_for_metric(query)
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# Test if the Thanos sidecar has correctly uploaded its TSDB to S3, if the
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# Thanos storage service has correctly downloaded it from S3 and if the Thanos
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# query service running on $store can correctly retrieve the metric:
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store.wait_for_unit("thanos-store.service")
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wait_for_metric(store)
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store.wait_for_unit("thanos-compact.service")
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# Test if the Thanos bucket command is able to retrieve blocks from the S3 bucket
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# and check if the blocks have the correct labels:
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store.succeed(
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"thanos tools bucket ls "
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+ "--objstore.config-file=${nodes.store.config.services.thanos.store.objstore.config-file} "
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+ "--output=json | "
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+ "jq .thanos.labels.some_label | "
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+ "grep 'required by thanos'"
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)
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'';
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}
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