## Raft E2E — real 3-node cluster over the TCP transport. ## Starts three actual build/baradadb processes, waits for one to log ## leadership, kills it, and waits for a survivor to take over. ## Process-management conventions follow tests/nimforum_smoke_test.nim. import std/unittest import std/osproc import std/os import std/strtabs import std/strutils import std/times import std/net import std/posix const BinaryPath = "./build/baradadb" LeaderMarker = "became leader" type NodeProc = object id: string clientPort: int p: Process dataDir: string output: string alive: bool proc drainOutput(n: var NodeProc) = ## Reads whatever the child has written so far. The pipe was set O_NONBLOCK ## at start, so this never blocks — a hung read is impossible here. var tmp: array[8192, char] while true: let count = posix.read(n.p.outputHandle.cint, tmp[0].addr, tmp.len) if count <= 0: break for i in 0 ..< count: n.output.add tmp[i] proc drainAll(nodes: var seq[NodeProc]) = for n in nodes.mitems: if n.p != nil: n.drainOutput() proc dumpAll(nodes: var seq[NodeProc]) = ## Debuggability: on failure, everything the nodes said. nodes.drainAll() for n in nodes: echo "===== output of ", n.id, " (port ", n.clientPort, ") =====" echo n.output proc portOpen(port: int): bool = var s: Socket try: s = newSocket() s.connect("127.0.0.1", Port(port), timeout = 250) s.close() result = true except CatchableError: if s != nil: s.close() result = false proc killNode(n: var NodeProc) = if n.p != nil and n.alive: try: n.p.terminate() discard n.p.waitForExit() except CatchableError: discard n.alive = false proc leaderTerms(output: string): seq[int] = ## All terms this node logged leadership for ("became leader for term T"). var pos = 0 while true: let idx = output.find(LeaderMarker, pos) if idx < 0: break let tIdx = output.find("term ", idx) if tIdx < 0: break let numStart = tIdx + 5 var numEnd = numStart while numEnd < output.len and output[numEnd] in Digits: inc numEnd if numEnd > numStart: result.add(parseInt(output[numStart ..< numEnd])) pos = numEnd proc maxLeader(nodes: seq[NodeProc]): tuple[idx, term: int] = ## Node that logged leadership for the highest term seen so far. result = (-1, 0) for i in 0 ..< nodes.len: for t in leaderTerms(nodes[i].output): if t > result.term: result = (i, t) proc drainFor(nodes: var seq[NodeProc], ms: int) = let start = getTime() while getTime() - start < initDuration(milliseconds = ms): nodes.drainAll() sleep(50) proc runClusterScenario() = ## Fatal phase failures dump all captured node output, record a test ## failure, and return; cleanup happens in the finally below either way. let tstamp = getTime().toUnix.int # Port bases: distinct from nimforum_smoke_test (35000+mod10000) and from # the in-process raft tests in test_all (29011-29025). Client ports are # spaced by 10 because the server derives HTTP (port+440), WS (port+441) # and gossip (raftPort+100) ports — consecutive client ports collide. let cbase = 41000 + (tstamp mod 5000) let rbase = cbase + 100 let peers = "n1@127.0.0.1:" & $(rbase + 1) & ",n2@127.0.0.1:" & $(rbase + 2) & ",n3@127.0.0.1:" & $(rbase + 3) var nodes: seq[NodeProc] for i in 1 .. 3: let id = "n" & $i let dataDir = getTempDir() / "baradb_raft_e2e_" & $tstamp & "_" & id createDir(dataDir) var env = newStringTable() for key, val in envPairs(): env[key] = val env["BARADB_PORT"] = $(cbase + i * 10) env["BARADB_RAFT_ENABLED"] = "true" env["BARADB_RAFT_PORT"] = $(rbase + i) env["BARADB_RAFT_NODE_ID"] = id env["BARADB_RAFT_PEERS"] = peers env["BARADB_DATA_DIR"] = dataDir env["BARADB_LOG_LEVEL"] = "info" let p = startProcess(BinaryPath, env = env, options = {poStdErrToStdOut, poDaemon}) discard fcntl(p.outputHandle.cint, F_SETFL, fcntl(p.outputHandle.cint, F_GETFL) or O_NONBLOCK) nodes.add NodeProc(id: id, clientPort: cbase + i * 10, p: p, dataDir: dataDir, alive: true) try: # Readiness: all three client ports accept TCP connections (10s each). for i in 0 ..< nodes.len: let readyStart = getTime() var ok = false while getTime() - readyStart < initDuration(seconds = 10): if portOpen(nodes[i].clientPort): ok = true break sleep(100) if not ok: echo "node ", nodes[i].id, " never became ready" dumpAll(nodes) fail() return # Election: timeouts are 150-300ms, heartbeat 50ms — a leader should # emerge within ~2s; 10s deadline for margin. var elected = false let electStart = getTime() while getTime() - electStart < initDuration(seconds = 10): nodes.drainAll() if maxLeader(nodes).idx >= 0: elected = true break sleep(50) if not elected: echo "no leader elected within 10s" dumpAll(nodes) fail() return # Simultaneous boot often causes a split first election — a normal Raft # retry, not a bug. Settle, take the highest-term leader, then require # stability: no higher term (i.e. no new election) for another second. nodes.drainFor(2000) let (leaderIdx, leaderTerm) = maxLeader(nodes) nodes.drainFor(1000) let (stableIdx, stableTerm) = maxLeader(nodes) if stableIdx != leaderIdx or stableTerm != leaderTerm: echo "cluster unstable: leadership moved from ", nodes[leaderIdx].id, " (term ", leaderTerm, ") to ", nodes[stableIdx].id, " (term ", stableTerm, ")" dumpAll(nodes) fail() return echo "leader elected: ", nodes[leaderIdx].id, " (term ", leaderTerm, ")" # Failover: kill the leader; a survivor must win a HIGHER term within 10s. killNode(nodes[leaderIdx]) var newLeaderIdx = -1 let foStart = getTime() while getTime() - foStart < initDuration(seconds = 10): for i in 0 ..< nodes.len: if i == leaderIdx: continue nodes[i].drainOutput() for t in leaderTerms(nodes[i].output): if t > leaderTerm: newLeaderIdx = i break if newLeaderIdx >= 0: break if newLeaderIdx >= 0: break sleep(50) if newLeaderIdx < 0: echo "no failover leader within 10s after killing ", nodes[leaderIdx].id dumpAll(nodes) fail() return echo "failover complete: new leader ", nodes[newLeaderIdx].id check leaderIdx != newLeaderIdx finally: for n in nodes.mitems: n.killNode() if n.p != nil: n.p.close() removeDir(n.dataDir) suite "Raft E2E cluster": test "3-node election and failover": if not fileExists(BinaryPath): echo "[SKIP] ", BinaryPath, " missing — run `nimble test` (builds the server first)" skip() else: runClusterScenario()