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mirror of https://github.com/open-telemetry/opentelemetry-go.git synced 2024-12-04 09:43:23 +02:00
opentelemetry-go/trace/config_test.go
Charlie Le 1b55281859
docs(typos): Run codespell to fix typos (#3980)
* docs(typos): Run codespell to fix typos

There were a lot of typos through the repository, so I ran
[codespell][], a tool for automatically fixing typos, to fix them.

```console
make codespell
```

There's already a tool called [misspell][] that's supposed to take care
of this, but misspell hasn't been updated for 6 years, and it doesn't
seem to be catching any of the typos that codespell can.

[codespell]: https://github.com/codespell-project/codespell
[misspell]: https://github.com/client9/misspell

* Revert and ignore spelling for Consequentially

* Add GH workflow for codespell

* Revert GH Workflow and Makefile for codespell

Per @pellared, since there's no instructions for setting up codespell,
it was suggested that the changes for setting up a workflow and section
in Makefile include instructions for setting up codespell as well.

* Revert spelling on consequently

---------

Co-authored-by: Chester Cheung <cheung.zhy.csu@gmail.com>
Co-authored-by: Tyler Yahn <MrAlias@users.noreply.github.com>
2023-04-11 17:28:13 -07:00

299 lines
6.2 KiB
Go

// Copyright The OpenTelemetry Authors
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package trace
import (
"testing"
"time"
"github.com/stretchr/testify/assert"
"go.opentelemetry.io/otel/attribute"
)
func TestNewSpanConfig(t *testing.T) {
k1v1 := attribute.String("key1", "value1")
k1v2 := attribute.String("key1", "value2")
k2v2 := attribute.String("key2", "value2")
timestamp0 := time.Unix(0, 0)
timestamp1 := time.Unix(0, 0)
link1 := Link{
SpanContext: SpanContext{traceID: TraceID([16]byte{1, 1}), spanID: SpanID{3}},
Attributes: []attribute.KeyValue{k1v1},
}
link2 := Link{
SpanContext: SpanContext{traceID: TraceID([16]byte{1, 1}), spanID: SpanID{3}},
Attributes: []attribute.KeyValue{k1v2, k2v2},
}
tests := []struct {
options []SpanStartOption
expected SpanConfig
}{
{
// No non-zero-values should be set.
[]SpanStartOption{},
SpanConfig{},
},
{
[]SpanStartOption{
WithAttributes(k1v1),
},
SpanConfig{
attributes: []attribute.KeyValue{k1v1},
},
},
{
// Multiple calls should append not overwrite.
[]SpanStartOption{
WithAttributes(k1v1),
WithAttributes(k1v2),
WithAttributes(k2v2),
},
SpanConfig{
// No uniqueness is guaranteed by the API.
attributes: []attribute.KeyValue{k1v1, k1v2, k2v2},
},
},
{
[]SpanStartOption{
WithAttributes(k1v1, k1v2, k2v2),
},
SpanConfig{
// No uniqueness is guaranteed by the API.
attributes: []attribute.KeyValue{k1v1, k1v2, k2v2},
},
},
{
[]SpanStartOption{
WithTimestamp(timestamp0),
},
SpanConfig{
timestamp: timestamp0,
},
},
{
[]SpanStartOption{
// Multiple calls overwrites with last-one-wins.
WithTimestamp(timestamp0),
WithTimestamp(timestamp1),
},
SpanConfig{
timestamp: timestamp1,
},
},
{
[]SpanStartOption{
WithLinks(link1),
},
SpanConfig{
links: []Link{link1},
},
},
{
[]SpanStartOption{
// Multiple calls should append not overwrite.
WithLinks(link1),
WithLinks(link1, link2),
},
SpanConfig{
// No uniqueness is guaranteed by the API.
links: []Link{link1, link1, link2},
},
},
{
[]SpanStartOption{
WithNewRoot(),
},
SpanConfig{
newRoot: true,
},
},
{
[]SpanStartOption{
// Multiple calls should not change NewRoot state.
WithNewRoot(),
WithNewRoot(),
},
SpanConfig{
newRoot: true,
},
},
{
[]SpanStartOption{
WithSpanKind(SpanKindConsumer),
},
SpanConfig{
spanKind: SpanKindConsumer,
},
},
{
[]SpanStartOption{
// Multiple calls overwrites with last-one-wins.
WithSpanKind(SpanKindClient),
WithSpanKind(SpanKindConsumer),
},
SpanConfig{
spanKind: SpanKindConsumer,
},
},
{
// Everything should work together.
[]SpanStartOption{
WithAttributes(k1v1),
WithTimestamp(timestamp0),
WithLinks(link1, link2),
WithNewRoot(),
WithSpanKind(SpanKindConsumer),
},
SpanConfig{
attributes: []attribute.KeyValue{k1v1},
timestamp: timestamp0,
links: []Link{link1, link2},
newRoot: true,
spanKind: SpanKindConsumer,
},
},
}
for _, test := range tests {
assert.Equal(t, test.expected, NewSpanStartConfig(test.options...))
}
}
func TestEndSpanConfig(t *testing.T) {
timestamp := time.Unix(0, 0)
tests := []struct {
options []SpanEndOption
expected SpanConfig
}{
{
[]SpanEndOption{},
SpanConfig{},
},
{
[]SpanEndOption{
WithStackTrace(true),
},
SpanConfig{
stackTrace: true,
},
},
{
[]SpanEndOption{
WithTimestamp(timestamp),
},
SpanConfig{
timestamp: timestamp,
},
},
}
for _, test := range tests {
assert.Equal(t, test.expected, NewSpanEndConfig(test.options...))
}
}
func TestTracerConfig(t *testing.T) {
v1 := "semver:0.0.1"
v2 := "semver:1.0.0"
schemaURL := "https://opentelemetry.io/schemas/1.2.0"
attrs := attribute.NewSet(
attribute.String("user", "alice"),
attribute.Bool("admin", true),
)
c := NewTracerConfig(
// Multiple calls should overwrite.
WithInstrumentationVersion(v1),
WithInstrumentationVersion(v2),
WithSchemaURL(schemaURL),
WithInstrumentationAttributes(attrs.ToSlice()...),
)
assert.Equal(t, v2, c.InstrumentationVersion(), "instrumentation version")
assert.Equal(t, schemaURL, c.SchemaURL(), "schema URL")
assert.Equal(t, attrs, c.InstrumentationAttributes(), "instrumentation attributes")
}
// Save benchmark results to a file level var to avoid the compiler optimizing
// away the actual work.
var (
tracerConfig TracerConfig
spanConfig SpanConfig
eventConfig EventConfig
)
func BenchmarkNewTracerConfig(b *testing.B) {
opts := []TracerOption{
WithInstrumentationVersion("testing version"),
WithSchemaURL("testing URL"),
}
b.ReportAllocs()
b.ResetTimer()
for i := 0; i < b.N; i++ {
tracerConfig = NewTracerConfig(opts...)
}
}
func BenchmarkNewSpanStartConfig(b *testing.B) {
opts := []SpanStartOption{
WithAttributes(attribute.Bool("key", true)),
WithTimestamp(time.Now()),
WithLinks(Link{}),
WithNewRoot(),
WithSpanKind(SpanKindClient),
}
b.ReportAllocs()
b.ResetTimer()
for i := 0; i < b.N; i++ {
spanConfig = NewSpanStartConfig(opts...)
}
}
func BenchmarkNewSpanEndConfig(b *testing.B) {
opts := []SpanEndOption{
WithTimestamp(time.Now()),
WithStackTrace(true),
}
b.ReportAllocs()
b.ResetTimer()
for i := 0; i < b.N; i++ {
spanConfig = NewSpanEndConfig(opts...)
}
}
func BenchmarkNewEventConfig(b *testing.B) {
opts := []EventOption{
WithAttributes(attribute.Bool("key", true)),
WithTimestamp(time.Now()),
WithStackTrace(true),
}
b.ReportAllocs()
b.ResetTimer()
for i := 0; i < b.N; i++ {
eventConfig = NewEventConfig(opts...)
}
}