Files
rippled/docker/telemetry/TESTING.md
Pratik Mankawde 8c695b69a5 fix(telemetry): follow the traces_endpoint rename in the node configs
The rename arrived from phase-1b by merge. Four files still wrote the old
key, which the parser no longer reads, so each would have silently
fallen back to the default collector URL.

integration-test.sh is the load-bearing one: it generates the node config
the test harness starts, so the stale key would have pointed the node at
localhost regardless of the compose network. xrpld-telemetry.cfg is the
standalone node config; the other two document the key.

Note this cfg has a second, divergent variant on the devnet branches that
needs the same fix there.
2026-09-03 15:21:01 +01:00

16 KiB

OpenTelemetry Integration Testing Guide

This document describes how to verify the xrpld OpenTelemetry telemetry pipeline end-to-end, from span generation through the observability stack (otel-collector, Tempo, Prometheus, Grafana).


Prerequisites

Build xrpld with telemetry

conan install . --build=missing -o telemetry=True
cmake --preset default -Dtelemetry=ON
cmake --build --preset default --target xrpld

The binary is at .build/xrpld.

Required tools

  • Docker with docker compose (v2)
  • curl
  • jq (JSON processor)

Verify binary

.build/xrpld --version

Test 1: Single-Node Standalone (Quick Verification)

This test verifies RPC and transaction spans in standalone mode, plus the consensus spans that a simulated round still produces. The proposal, voting and peer-facing consensus spans do not fire — see the expected-spans table at the end of this test for which do and which do not.

Step 1: Start the observability stack

docker compose -f docker/telemetry/docker-compose.yml up -d

Wait for services to be ready:

# otel-collector health
curl -sf http://localhost:13133/ && echo "collector ready"

# Tempo readiness
curl -sf http://localhost:3200/ready >/dev/null && echo "tempo ready"

Step 2: Start xrpld in standalone mode

.build/xrpld --conf docker/telemetry/xrpld-telemetry.cfg -a --start

Wait a few seconds for the node to initialize.

Step 3: Exercise RPC spans

# server_info
curl -s http://localhost:5005 \
    -d '{"method":"server_info"}' | jq .result.info.server_state

# server_state
curl -s http://localhost:5005 \
    -d '{"method":"server_state"}' | jq .result.state.server_state

# ledger
curl -s http://localhost:5005 \
    -d '{"method":"ledger","params":[{"ledger_index":"current"}]}' |
    jq .result.ledger_current_index

Step 4: Submit a transaction

Close the ledger first (required in standalone mode):

curl -s http://localhost:5005 -d '{"method":"ledger_accept"}'

Submit a Payment from the genesis account:

curl -s http://localhost:5005 -d '{
  "method": "submit",
  "params": [{
    "secret": "snoPBrXtMeMyMHUVTgbuqAfg1SUTb",
    "tx_json": {
      "TransactionType": "Payment",
      "Account": "rHb9CJAWyB4rj91VRWn96DkukG4bwdtyTh",
      "Destination": "rPMh7Pi9ct699iZUTWzJaUMR1o42VEfGqF",
      "Amount": "10000000"
    }
  }]
}' | jq .result.engine_result

Expected result: "tesSUCCESS".

Close the ledger again to finalize:

curl -s http://localhost:5005 -d '{"method":"ledger_accept"}'

Step 5: Verify traces in Tempo

Wait 5 seconds for the batch export, then see the "Verification Queries" section below. Its span loop is a superset of what standalone mode produces, so compare its output against the "Expected spans (standalone mode)" table above rather than running a second, narrower set of queries here.

Or open Grafana Explore with Tempo datasource: http://localhost:3000

Step 6: Teardown

# Kill xrpld (Ctrl+C or)
kill $(pgrep -f 'xrpld.*xrpld-telemetry')

# Stop observability stack
docker compose -f docker/telemetry/docker-compose.yml down

# Clean xrpld data
rm -rf docker/telemetry/data/

Expected spans (standalone mode)

Span Name Expected Notes
rpc.http_request Yes Every HTTP RPC call
rpc.process Yes Every RPC processing
rpc.command.server_info Yes server_info RPC
rpc.command.server_state Yes server_state RPC
rpc.command.ledger Yes ledger RPC
rpc.command.submit Yes submit RPC
rpc.command.ledger_accept Yes ledger_accept RPC
tx.process Yes Transaction submission
tx.receive No No peers in standalone
consensus.round, .phase.open, .ledger_close, .accept, .accept.apply Yes ledger_accept drives a simulated round
consensus.establish, .update_positions, .check, .proposal.*, .validation.receive, .mode_change No simulate jumps straight to Accepted; no peers

Test 2: 6-Node Consensus Network (Full Verification)

This test verifies ALL span categories including consensus and peer transaction relay, using a 6-node validator network.

Automated

Run the integration test script:

bash docker/telemetry/integration-test.sh

It checks prerequisites, clears the previous run, brings up the observability stack, generates six validator key pairs and their node configs, starts the nodes, waits for consensus and then for a validated ledger, exercises RPC and submits a transaction, verifies traces in Tempo and both the spanmetrics and the StatsD-derived metrics in Prometheus, then prints a summary and leaves the stack running.

The script announces each step as it runs, so read its Step N: headers for the authoritative sequence — they are not restated here, because a numbered copy of them drifts as soon as a step is added.

Its Tempo checks cover the RPC, transaction, consensus, ledger and peer span categories from a fixed list, which is narrower than the loop in the "Verification Queries" section below.

Manual

If you prefer to run the steps manually:

Step 1: Start observability stack

docker compose -f docker/telemetry/docker-compose.yml up -d

Step 2: Generate validator keys

Start a temporary standalone xrpld:

.build/xrpld --conf docker/telemetry/xrpld-telemetry.cfg -a --start &
TEMP_PID=$!
sleep 5

Generate 6 key pairs:

for i in $(seq 1 6); do
    curl -s http://localhost:5005 \
        -d '{"method":"validation_create"}' | jq '.result'
done

Record the validation_seed and validation_public_key for each. Kill the temporary node:

kill $TEMP_PID
rm -rf docker/telemetry/data/

Step 3: Create node configs

For each node (1-6), create a config file. Template:

[server]
port_rpc
port_peer

[port_rpc]
port = {5004 + node_number}
ip = 127.0.0.1
admin = 127.0.0.1
protocol = http

[port_peer]
port = {51234 + node_number}
ip = 0.0.0.0
protocol = peer

[node_db]
type=NuDB
path=/tmp/xrpld-integration/node{N}/nudb
online_delete=256

[database_path]
/tmp/xrpld-integration/node{N}/db

[debug_logfile]
/tmp/xrpld-integration/node{N}/debug.log

[validation_seed]
{seed from step 2}

[validators_file]
/tmp/xrpld-integration/validators.txt

[ips_fixed]
127.0.0.1 51235
127.0.0.1 51236
127.0.0.1 51237
127.0.0.1 51238
127.0.0.1 51239
127.0.0.1 51240

[peer_private]
1

[telemetry]
enabled=1
traces_endpoint=http://localhost:4318/v1/traces
batch_size=512
batch_delay_ms=2000
max_queue_size=2048
trace_rpc=1
trace_transactions=1
trace_consensus=1
trace_peer=1
trace_ledger=1

[rpc_startup]
{ "command": "log_level", "severity": "warning" }

[ssl_verify]
0

Step 4: Create validators.txt

[validators]
{public_key_1}
{public_key_2}
{public_key_3}
{public_key_4}
{public_key_5}
{public_key_6}

Step 5: Start all 6 nodes

for i in $(seq 1 6); do
    .build/xrpld --conf /tmp/xrpld-integration/node$i/xrpld.cfg --start &
    echo $! >/tmp/xrpld-integration/node$i/xrpld.pid
done

Step 6: Wait for consensus

Poll each node until server_state = "proposing":

for port in 5005 5006 5007 5008 5009 5010; do
    while true; do
        state=$(curl -s http://localhost:$port \
            -d '{"method":"server_info"}' |
            jq -r '.result.info.server_state')
        echo "Port $port: $state"
        [ "$state" = "proposing" ] && break
        sleep 5
    done
done

Step 7: Exercise RPC and submit transaction

# RPC calls
curl -s http://localhost:5005 -d '{"method":"server_info"}'
curl -s http://localhost:5005 -d '{"method":"server_state"}'
curl -s http://localhost:5005 -d '{"method":"ledger","params":[{"ledger_index":"current"}]}'

# Submit transaction
curl -s http://localhost:5005 -d '{
  "method": "submit",
  "params": [{
    "secret": "snoPBrXtMeMyMHUVTgbuqAfg1SUTb",
    "tx_json": {
      "TransactionType": "Payment",
      "Account": "rHb9CJAWyB4rj91VRWn96DkukG4bwdtyTh",
      "Destination": "rPMh7Pi9ct699iZUTWzJaUMR1o42VEfGqF",
      "Amount": "10000000"
    }
  }]
}' | jq .result.engine_result

Expected result: "tesSUCCESS", the same as Test 1 Step 4.

Wait 15 seconds for consensus and batch export.

Step 8: Verify in Tempo

See the "Verification Queries" section below.


Expected Span Catalog

A smoke-test subset: the spans a short local run reliably produces, and how to trigger each. This is not the full catalog — the authoritative span list, with the attributes each span carries, is docs/telemetry-runbook.md § Span Reference.

Attributes are deliberately not repeated here. Keeping a second copy is how this table came to list attribute keys that no longer exist anywhere in the code.

Span Name Source File How to Trigger
rpc.http_request ServerHandler.cpp Any HTTP RPC call
rpc.ws_upgrade ServerHandler.cpp WebSocket upgrade
rpc.ws_message ServerHandler.cpp WebSocket RPC message
rpc.process ServerHandler.cpp RPC processing
rpc.command.<name> RPCHandler.cpp Any RPC command
tx.process NetworkOPs.cpp Submit transaction
tx.receive PeerImp.cpp Peer relays transaction
consensus.proposal.send RCLConsensus.cpp Consensus proposing phase
consensus.ledger_close RCLConsensus.cpp Ledger close event
consensus.accept RCLConsensus.cpp Ledger accepted
consensus.validation.send RCLConsensus.cpp Validation sent
consensus.accept.apply RCLConsensus.cpp Ledger apply + close time
tx.apply BuildLedger.cpp Ledger close (tx set)
ledger.build BuildLedger.cpp Ledger build
ledger.validate LedgerMaster.cpp Ledger validated
ledger.store LedgerMaster.cpp Ledger stored
peer.proposal.receive PeerImp.cpp Peer sends proposal
peer.validation.receive PeerImp.cpp Peer sends validation

Verification Queries

Tempo API

Base URL: http://localhost:3200

TEMPO="http://localhost:3200"

# List all services
curl -s "$TEMPO/api/v2/search/tag/resource.service.name/values" | jq '.tagValues[].value'

# Query traces by operation
for op in "rpc.http_request" "rpc.ws_upgrade" "rpc.ws_message" "rpc.process" \
    "rpc.command.server_info" "rpc.command.server_state" "rpc.command.ledger" \
    "tx.process" "tx.receive" "tx.apply" \
    "consensus.proposal.send" "consensus.ledger_close" \
    "consensus.accept" "consensus.accept.apply" \
    "consensus.validation.send" \
    "ledger.build" "ledger.validate" "ledger.store" \
    "peer.proposal.receive" "peer.validation.receive"; do
    count=$(curl -s "$TEMPO/api/search" \
        --data-urlencode "q={resource.service.name=\"xrpld\" && name=\"$op\"}" \
        --data-urlencode "limit=5" |
        jq '.traces | length')
    printf "%-35s %s traces\n" "$op" "$count"
done

Prometheus API

Base URL: http://localhost:9090

PROM="http://localhost:9090"

# Span call counts (from spanmetrics connector)
curl -s "$PROM/api/v1/query?query=traces_span_metrics_calls_total" |
    jq '.data.result[] | {span: .metric.span_name, count: .value[1]}'

# Latency histogram
curl -s "$PROM/api/v1/query?query=traces_span_metrics_duration_milliseconds_count" |
    jq '.data.result[] | {span: .metric.span_name, count: .value[1]}'

# RPC calls by command
curl -s "$PROM/api/v1/query?query=traces_span_metrics_calls_total{span_name=~\"rpc.command.*\"}" |
    jq '.data.result[] | {command: .metric.command, count: .value[1]}'

# Deployment-tier labels present on metrics (set by the collector's
# resource/tier processor and promoted via resource_to_telemetry_conversion).
# Expect deployment_environment and xrpl_network_type on each series.
curl -s "$PROM/api/v1/query?query=traces_span_metrics_calls_total" |
    jq '.data.result[0].metric | {deployment_environment, xrpl_network_type, service_name}'

Grafana

Open http://localhost:3000 (anonymous admin access enabled).

Pre-configured dashboards:

  • RPC Performance: Request rates, latency percentiles by command, top commands, WebSocket rate
  • Transaction Overview: Transaction processing rates, apply duration, peer relay, failed tx rate
  • Consensus Health: Consensus round duration, proposer counts, mode tracking, accept heatmap
  • Ledger Operations: Build/validate/store rates and durations, TX apply metrics
  • Peer Network: Proposal/validation receive rates, trusted vs untrusted breakdown (requires trace_peer=1)

Pre-configured datasources:

  • Tempo: Trace data at http://tempo:3200
  • Prometheus: Metrics at http://prometheus:9090

Troubleshooting

No traces in Tempo

  1. Check otel-collector logs:
    docker compose -f docker/telemetry/docker-compose.yml logs otel-collector
    
  2. Verify xrpld telemetry config has enabled=1 and correct endpoint
  3. Check that otel-collector port 4318 is accessible:
    curl -sf http://localhost:4318 && echo "reachable"
    
  4. Increase batch_delay_ms or decrease batch_size in xrpld config

Nodes not reaching "proposing" state

  1. Check that all peer ports (51235-51240) are not in use:
    for p in 51235 51236 51237 51238 51239 51240; do
        ss -tlnp | grep ":$p " && echo "port $p in use"
    done
    
  2. Verify [ips_fixed] lists all 6 peer ports
  3. Verify validators.txt has all 6 public keys
  4. Check node debug logs: tail -50 /tmp/xrpld-integration/node1/debug.log
  5. Ensure [peer_private] is set to 1 (prevents reaching out to public network)

Transaction not processing

  1. Verify genesis account exists:
    curl -s http://localhost:5005 \
        -d '{"method":"account_info","params":[{"account":"rHb9CJAWyB4rj91VRWn96DkukG4bwdtyTh"}]}' |
        jq .result.account_data.Balance
    
  2. Check submit response for error codes
  3. In standalone mode, remember to call ledger_accept after submitting

Spanmetrics not appearing in Prometheus

  1. Verify otel-collector config has spanmetrics connector
  2. Check that the metrics pipeline is configured:
    service:
      pipelines:
        metrics:
          receivers: [spanmetrics]
          exporters: [prometheus]
    
  3. Verify Prometheus can reach collector:
    curl -s http://localhost:9090/api/v1/targets | jq '.data.activeTargets'