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102 lines
4.5 KiB
TypeScript
102 lines
4.5 KiB
TypeScript
// Sim server-side copilot metrics (U17). Sim's MeterProvider is wired in
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// instrumentation-node.ts (OTLP → Mimir, 60s) but had no copilot instruments;
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// this module is its first consumer. We emit the SAME metric names + label keys
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// + histogram bucket boundaries as the Go side (copilot internal/telemetry +
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// contracts/metrics_v1.go) so the Go∪Sim union is queryable as one series set
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// — e.g. `copilot.tool.duration` split by `tool.executor` (go|client|sim).
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//
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// Bounded cardinality only: tool.name is capped to the shared tool catalog
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// (else "other"); vfs phase / file-read outcome are bounded sets. NEVER a
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// user/chat/request id (those explode Prometheus series).
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import { type Counter, type Histogram, metrics } from '@opentelemetry/api'
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import { Metric } from '@/lib/copilot/generated/metrics-v1'
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import { TOOL_CATALOG } from '@/lib/copilot/generated/tool-catalog-v1'
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import { TraceAttr } from '@/lib/copilot/generated/trace-attributes-v1'
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// MUST match Go's copilot/internal/telemetry/metrics.go LatencyBucketsMs
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// exactly — a histogram_quantile(sum by (le) …) over the Go∪Sim union is only
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// valid with identical boundaries. If you change one side, change the other.
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const LATENCY_BUCKETS_MS = [
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50, 100, 250, 500, 1000, 2000, 5000, 10000, 20000, 30000, 60000, 120000, 300000,
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]
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// File sizes span KB→tens of MB; a bytes-appropriate bucket set (not latency).
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const BYTE_BUCKETS = [1024, 8192, 65536, 262144, 1048576, 4194304, 16777216, 67108864, 268435456]
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interface CopilotMeterInstruments {
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toolDuration: Histogram
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toolCalls: Counter
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vfsMaterializeDuration: Histogram
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fileReadDuration: Histogram
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fileReadBytes: Histogram
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}
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let cached: CopilotMeterInstruments | undefined
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// Lazy init: Turbopack/Next can evaluate this module before the NodeSDK
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// installs the real MeterProvider, so resolve instruments on first use (a
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// no-op meter before then simply drops records — same pattern as getCopilotTracer).
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function instruments(): CopilotMeterInstruments {
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if (cached) return cached
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const meter = metrics.getMeter('sim-copilot')
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cached = {
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toolDuration: meter.createHistogram(Metric.CopilotToolDuration, {
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unit: 'ms',
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advice: { explicitBucketBoundaries: LATENCY_BUCKETS_MS },
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}),
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toolCalls: meter.createCounter(Metric.CopilotToolCalls),
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vfsMaterializeDuration: meter.createHistogram(Metric.CopilotVfsMaterializeDuration, {
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unit: 'ms',
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advice: { explicitBucketBoundaries: LATENCY_BUCKETS_MS },
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}),
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fileReadDuration: meter.createHistogram(Metric.CopilotFileReadDuration, {
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unit: 'ms',
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advice: { explicitBucketBoundaries: LATENCY_BUCKETS_MS },
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}),
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fileReadBytes: meter.createHistogram(Metric.CopilotFileReadSize, {
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unit: 'By',
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advice: { explicitBucketBoundaries: BYTE_BUCKETS },
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}),
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}
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return cached
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}
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// Caps tool.name to the shared catalog (matches Go's cappedToolName): a
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// catalog tool keeps its name, everything else (user MCP/custom/unknown)
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// collapses to "other" so series count stays finite.
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function cappedToolName(name: string): string {
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return TOOL_CATALOG[name] ? name : 'other'
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}
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// recordSimToolMetric emits copilot.tool.calls (+1) and copilot.tool.duration
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// for one server-side Sim tool dispatch (executor=sim). outcome is the bounded
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// tool outcome (success/error/…). Pure telemetry.
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export function recordSimToolMetric(name: string, outcome: string, durationMs: number): void {
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const { toolDuration, toolCalls } = instruments()
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const attrs = {
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[TraceAttr.ToolName]: cappedToolName(name),
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[TraceAttr.ToolExecutor]: 'sim',
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[TraceAttr.ToolOutcome]: outcome,
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}
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toolCalls.add(1, attrs)
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if (durationMs >= 0) toolDuration.record(durationMs, attrs)
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}
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// recordVfsMaterialize records VFS materialization time. Call once per phase
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// with that phase's duration and once with phase="total" for the whole op, so
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// the dashboard can show total + per-phase. phase must be a bounded value.
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export function recordVfsMaterialize(phase: string, durationMs: number): void {
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if (durationMs < 0) return
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instruments().vfsMaterializeDuration.record(durationMs, {
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[TraceAttr.CopilotVfsPhase]: phase,
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})
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}
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// recordFileRead records server-side file-read duration + size by outcome.
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export function recordFileRead(outcome: string, durationMs: number, bytes: number): void {
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const { fileReadDuration, fileReadBytes } = instruments()
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const attrs = { [TraceAttr.CopilotVfsReadOutcome]: outcome }
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if (durationMs >= 0) fileReadDuration.record(durationMs, attrs)
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if (bytes >= 0) fileReadBytes.record(bytes, attrs)
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}
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