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143 lines
4.6 KiB
Go
143 lines
4.6 KiB
Go
// Copyright The OpenTelemetry Authors
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// SPDX-License-Identifier: Apache-2.0
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package metric // import "go.opentelemetry.io/otel/sdk/metric"
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import (
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"context"
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"sync/atomic"
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"go.opentelemetry.io/otel/internal/global"
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"go.opentelemetry.io/otel/metric"
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"go.opentelemetry.io/otel/metric/embedded"
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"go.opentelemetry.io/otel/metric/noop"
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"go.opentelemetry.io/otel/sdk/instrumentation"
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)
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// MeterProvider handles the creation and coordination of Meters. All Meters
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// created by a MeterProvider will be associated with the same Resource, have
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// the same Views applied to them, and have their produced metric telemetry
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// passed to the configured Readers.
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type MeterProvider struct {
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embedded.MeterProvider
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pipes pipelines
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meters cache[instrumentation.Scope, *meter]
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forceFlush, shutdown func(context.Context) error
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stopped atomic.Bool
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}
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// Compile-time check MeterProvider implements metric.MeterProvider.
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var _ metric.MeterProvider = (*MeterProvider)(nil)
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// NewMeterProvider returns a new and configured MeterProvider.
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//
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// By default, the returned MeterProvider is configured with the default
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// Resource and no Readers. Readers cannot be added after a MeterProvider is
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// created. This means the returned MeterProvider, one created with no
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// Readers, will perform no operations.
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func NewMeterProvider(options ...Option) *MeterProvider {
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conf := newConfig(options)
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flush, sdown := conf.readerSignals()
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mp := &MeterProvider{
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pipes: newPipelines(conf.res, conf.readers, conf.views),
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forceFlush: flush,
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shutdown: sdown,
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}
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// Log after creation so all readers show correctly they are registered.
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global.Info("MeterProvider created",
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"Resource", conf.res,
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"Readers", conf.readers,
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"Views", len(conf.views),
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)
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return mp
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}
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// Meter returns a Meter with the given name and configured with options.
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//
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// The name should be the name of the instrumentation scope creating
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// telemetry. This name may be the same as the instrumented code only if that
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// code provides built-in instrumentation.
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//
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// Calls to the Meter method after Shutdown has been called will return Meters
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// that perform no operations.
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//
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// This method is safe to call concurrently.
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func (mp *MeterProvider) Meter(name string, options ...metric.MeterOption) metric.Meter {
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if name == "" {
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global.Warn("Invalid Meter name.", "name", name)
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}
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if mp.stopped.Load() {
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return noop.Meter{}
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}
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c := metric.NewMeterConfig(options...)
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s := instrumentation.Scope{
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Name: name,
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Version: c.InstrumentationVersion(),
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SchemaURL: c.SchemaURL(),
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}
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global.Info("Meter created",
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"Name", s.Name,
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"Version", s.Version,
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"SchemaURL", s.SchemaURL,
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)
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return mp.meters.Lookup(s, func() *meter {
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return newMeter(s, mp.pipes)
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})
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}
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// ForceFlush flushes all pending telemetry.
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//
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// This method honors the deadline or cancellation of ctx. An appropriate
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// error will be returned in these situations. There is no guaranteed that all
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// telemetry be flushed or all resources have been released in these
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// situations.
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//
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// ForceFlush calls ForceFlush(context.Context) error
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// on all Readers that implements this method.
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//
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// This method is safe to call concurrently.
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func (mp *MeterProvider) ForceFlush(ctx context.Context) error {
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if mp.forceFlush != nil {
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return mp.forceFlush(ctx)
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}
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return nil
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}
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// Shutdown shuts down the MeterProvider flushing all pending telemetry and
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// releasing any held computational resources.
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//
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// This call is idempotent. The first call will perform all flush and
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// releasing operations. Subsequent calls will perform no action and will
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// return an error stating this.
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//
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// Measurements made by instruments from meters this MeterProvider created
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// will not be exported after Shutdown is called.
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//
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// This method honors the deadline or cancellation of ctx. An appropriate
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// error will be returned in these situations. There is no guaranteed that all
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// telemetry be flushed or all resources have been released in these
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// situations.
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//
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// This method is safe to call concurrently.
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func (mp *MeterProvider) Shutdown(ctx context.Context) error {
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// Even though it may seem like there is a synchronization issue between the
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// call to `Store` and checking `shutdown`, the Go concurrency model ensures
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// that is not the case, as all the atomic operations executed in a program
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// behave as though executed in some sequentially consistent order. This
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// definition provides the same semantics as C++'s sequentially consistent
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// atomics and Java's volatile variables.
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// See https://go.dev/ref/mem#atomic and https://pkg.go.dev/sync/atomic.
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mp.stopped.Store(true)
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if mp.shutdown != nil {
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return mp.shutdown(ctx)
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}
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return nil
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}
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