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seaweedfs/weed/admin/plugin/cluster_rate_limit_test.go
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2026-05-11 19:27:55 -07:00

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package plugin
import (
"testing"
"time"
"github.com/seaweedfs/seaweedfs/weed/pb/plugin_pb"
"github.com/stretchr/testify/assert"
"github.com/stretchr/testify/require"
)
// pluginWithExecutors returns a Plugin whose registry contains n
// non-stale execute-capable workers for jobType. Helper for the
// allocator tests. Bypasses UpsertFromHello so tests don't have to
// build a full Hello message.
func pluginWithExecutors(t *testing.T, jobType string, n int) *Plugin {
t.Helper()
reg := NewRegistry()
now := time.Now()
for i := 0; i < n; i++ {
id := "worker-" + string(rune('a'+i))
reg.sessions[id] = &WorkerSession{
WorkerID: id,
LastSeenAt: now,
ConnectedAt: now,
Capabilities: map[string]*plugin_pb.JobTypeCapability{
jobType: {CanExecute: true},
},
}
}
return &Plugin{registry: reg}
}
// adminConfig builds an int64 admin config map for the given fields.
func adminConfig(pairs ...interface{}) map[string]*plugin_pb.ConfigValue {
if len(pairs)%2 != 0 {
panic("adminConfig expects key/value pairs")
}
out := map[string]*plugin_pb.ConfigValue{}
for i := 0; i < len(pairs); i += 2 {
key := pairs[i].(string)
switch v := pairs[i+1].(type) {
case int:
out[key] = &plugin_pb.ConfigValue{Kind: &plugin_pb.ConfigValue_Int64Value{Int64Value: int64(v)}}
case int64:
out[key] = &plugin_pb.ConfigValue{Kind: &plugin_pb.ConfigValue_Int64Value{Int64Value: v}}
case float64:
out[key] = &plugin_pb.ConfigValue{Kind: &plugin_pb.ConfigValue_DoubleValue{DoubleValue: v}}
default:
panic("adminConfig: unsupported value type")
}
}
return out
}
func TestDecorateClusterContext_NonS3LifecycleIsPassThrough(t *testing.T) {
// Any job type other than s3_lifecycle gets the input cc back
// unchanged. Future allocators add their own branch; the default
// is pass-through.
r := pluginWithExecutors(t, s3LifecycleJobType, 4)
in := &plugin_pb.ClusterContext{Metadata: map[string]string{"unrelated": "v"}}
out := r.decorateClusterContextForJob(in, "some_other_job", adminConfig(s3LifecycleClusterDeletesPerSecondKey, 100), 1)
assert.Same(t, in, out, "non-allocator job type must return the same pointer")
}
func TestDecorateClusterContext_RpsZeroSkipsAllocation(t *testing.T) {
// rps=0 means "operator hasn't configured a cap"; the worker
// treats missing keys as unlimited. We must NOT inject any
// metadata (in particular, not "0") because that would force the
// worker into a no-throughput state on a misconfigured cluster.
r := pluginWithExecutors(t, s3LifecycleJobType, 4)
in := &plugin_pb.ClusterContext{}
out := r.decorateClusterContextForJob(in, s3LifecycleJobType, adminConfig(s3LifecycleClusterDeletesPerSecondKey, 0), 1)
if out.Metadata != nil {
_, hasRps := out.Metadata[s3LifecycleMetadataDeletesPerSecond]
assert.False(t, hasRps, "rps=0 must not write a deletes_per_second key")
}
}
func TestDecorateClusterContext_NoExecutorsSkipsAllocation(t *testing.T) {
r := pluginWithExecutors(t, s3LifecycleJobType, 0)
in := &plugin_pb.ClusterContext{}
out := r.decorateClusterContextForJob(in, s3LifecycleJobType, adminConfig(s3LifecycleClusterDeletesPerSecondKey, 100), 1)
if out.Metadata != nil {
_, hasRps := out.Metadata[s3LifecycleMetadataDeletesPerSecond]
assert.False(t, hasRps, "0 executors must not write share metadata (would divide by zero)")
}
}
func TestDecorateClusterContext_SingletonJobGetsFullBudget(t *testing.T) {
// s3_lifecycle has MaxJobsPerDetection=1: only ONE worker runs the
// job at a time. The cluster budget must go to that worker undivided
// — dividing by N capable executors would starve the active worker
// to 1/N of the configured rps. Pin the singleton behavior.
r := pluginWithExecutors(t, s3LifecycleJobType, 4)
in := &plugin_pb.ClusterContext{}
out := r.decorateClusterContextForJob(in, s3LifecycleJobType,
adminConfig(s3LifecycleClusterDeletesPerSecondKey, 100), 1)
require.NotNil(t, out.Metadata)
assert.Equal(t, "100", out.Metadata[s3LifecycleMetadataDeletesPerSecond], "singleton job: full budget to the single active worker")
}
func TestDecorateClusterContext_SharedEvenlyWhenParallelLimited(t *testing.T) {
// Hypothetical parallel-dispatch job type (maxJobs=4): budget
// divides across the running-set, which equals min(executors,
// maxJobs)=4. 100/4=25.
r := pluginWithExecutors(t, s3LifecycleJobType, 4)
in := &plugin_pb.ClusterContext{}
out := r.decorateClusterContextForJob(in, s3LifecycleJobType,
adminConfig(s3LifecycleClusterDeletesPerSecondKey, 100), 4)
require.NotNil(t, out.Metadata)
assert.Equal(t, "25", out.Metadata[s3LifecycleMetadataDeletesPerSecond], "maxJobs=4 across 4 executors = 25/worker")
}
func TestDecorateClusterContext_MaxJobsExceedsExecutors(t *testing.T) {
// maxJobs=10 but only 4 executors exist — the divisor is the
// smaller value (executors) since you can't run more jobs in
// parallel than there are workers to run them.
r := pluginWithExecutors(t, s3LifecycleJobType, 4)
in := &plugin_pb.ClusterContext{}
out := r.decorateClusterContextForJob(in, s3LifecycleJobType,
adminConfig(s3LifecycleClusterDeletesPerSecondKey, 100), 10)
require.NotNil(t, out.Metadata)
assert.Equal(t, "25", out.Metadata[s3LifecycleMetadataDeletesPerSecond])
}
func TestDecorateClusterContext_BurstSharedWhenParallel(t *testing.T) {
r := pluginWithExecutors(t, s3LifecycleJobType, 2)
in := &plugin_pb.ClusterContext{}
out := r.decorateClusterContextForJob(in, s3LifecycleJobType,
adminConfig(s3LifecycleClusterDeletesPerSecondKey, 100, s3LifecycleClusterDeletesBurstKey, 20), 2)
require.NotNil(t, out.Metadata)
assert.Equal(t, "50", out.Metadata[s3LifecycleMetadataDeletesPerSecond])
assert.Equal(t, "10", out.Metadata[s3LifecycleMetadataDeletesBurst])
}
func TestDecorateClusterContext_BurstZeroOmitsKey(t *testing.T) {
// burst=0 means "let the worker default it." Don't write the key —
// the worker's parsePositiveInt would then take the unset path
// and compute 2 × rps automatically.
r := pluginWithExecutors(t, s3LifecycleJobType, 4)
in := &plugin_pb.ClusterContext{}
out := r.decorateClusterContextForJob(in, s3LifecycleJobType,
adminConfig(s3LifecycleClusterDeletesPerSecondKey, 100, s3LifecycleClusterDeletesBurstKey, 0), 4)
_, hasBurst := out.Metadata[s3LifecycleMetadataDeletesBurst]
assert.False(t, hasBurst, "burst=0 must NOT write the burst key (worker default kicks in)")
}
func TestDecorateClusterContext_BurstFloorIsOneWhenDividesBelowOne(t *testing.T) {
// burst=1 across 4 active workers would round to 0; clamp to 1 so
// the limiter doesn't become "single-token bucket that never refills."
r := pluginWithExecutors(t, s3LifecycleJobType, 4)
in := &plugin_pb.ClusterContext{}
out := r.decorateClusterContextForJob(in, s3LifecycleJobType,
adminConfig(s3LifecycleClusterDeletesPerSecondKey, 100, s3LifecycleClusterDeletesBurstKey, 1), 4)
assert.Equal(t, "1", out.Metadata[s3LifecycleMetadataDeletesBurst])
}
func TestDecorateClusterContext_DoesNotMutateInput(t *testing.T) {
// The same base ClusterContext is shared across many parallel
// ExecuteJob calls. The decorator must produce a fresh map so it
// can't race / leak per-job metadata into the base.
r := pluginWithExecutors(t, s3LifecycleJobType, 4)
baseMeta := map[string]string{"existing": "value"}
in := &plugin_pb.ClusterContext{Metadata: baseMeta}
_ = r.decorateClusterContextForJob(in, s3LifecycleJobType,
adminConfig(s3LifecycleClusterDeletesPerSecondKey, 100), 1)
_, leaked := baseMeta[s3LifecycleMetadataDeletesPerSecond]
assert.False(t, leaked, "decorator must not mutate the input metadata map")
assert.Equal(t, "value", baseMeta["existing"])
}
func TestDecorateClusterContext_NilInputPassesThrough(t *testing.T) {
r := pluginWithExecutors(t, s3LifecycleJobType, 4)
out := r.decorateClusterContextForJob(nil, s3LifecycleJobType, adminConfig(s3LifecycleClusterDeletesPerSecondKey, 100), 1)
assert.Nil(t, out)
}