Files
act_runner/act/common/executor_test.go
silverwind 61f0cfa951 test: speed up (#1121)
Full suite 178s → 96s, and a run's log 12MB → 2KB. `act/runner` was 177s of the 178s, serialised behind one docker daemon.

- Its fixtures now run in parallel, bounded by a slot count instead of `go test -parallel`, with a per-test container name prefix and a pinned `MaxParallel`.
- Fixtures asserting a job failure leaked their container and network (`AutoRemove` was at the act-CLI default), filling the daemon's address pool over time.
- Replaced sleeps used as synchronisation in the parallel-executor and cache-handler tests.
- Dropped duplicate coverage: two files re-testing `NewParallelExecutor`, a test asserting on its own semaphore, and `TestDockerActionForcePullForceRebuild`, whose config `runTest` discarded.
- `fmt-check`/`security-check` move from `make test` to a `checks` target; `security-check` no longer installs `xgo` and `gxz`.
- Test flags follow gitea: `GOTEST_FLAGS ?= -race -timeout 20m -parallel 8`, with `-cover`/`-coverprofile` left in the target. Dropped `-v`, since a failing package still prints its full output without it.

Coverage unchanged at 73.4%.

Reviewed-on: https://gitea.com/gitea/runner/pulls/1121
Reviewed-by: bircni <bircni@icloud.com>
Co-authored-by: silverwind <me@silverwind.io>
2026-07-28 14:34:04 +00:00

233 lines
6.6 KiB
Go

// Copyright 2023 The Gitea Authors. All rights reserved.
// Copyright 2020 The nektos/act Authors. All rights reserved.
// SPDX-License-Identifier: MIT
package common
import (
"context"
"errors"
"reflect"
"strings"
"sync"
"sync/atomic"
"testing"
"github.com/stretchr/testify/assert"
"github.com/stretchr/testify/require"
)
func TestNewWorkflow(t *testing.T) {
assert := assert.New(t)
ctx := context.Background()
// empty
emptyWorkflow := NewPipelineExecutor()
assert.NoError(emptyWorkflow(ctx)) //nolint:testifylint // pre-existing issue from nektos/act
// error case
errorWorkflow := NewErrorExecutor(errors.New("test error"))
assert.Error(errorWorkflow(ctx)) //nolint:testifylint // pre-existing issue from nektos/act
// multiple success case
runcount := 0
successWorkflow := NewPipelineExecutor(
func(ctx context.Context) error {
runcount++
return nil
},
func(ctx context.Context) error {
runcount++
return nil
})
assert.NoError(successWorkflow(ctx)) //nolint:testifylint // pre-existing issue from nektos/act
assert.Equal(2, runcount)
}
func TestNewConditionalExecutor(t *testing.T) {
assert := assert.New(t)
ctx := context.Background()
trueCount := 0
falseCount := 0
err := NewConditionalExecutor(func(ctx context.Context) bool {
return false
}, func(ctx context.Context) error {
trueCount++
return nil
}, func(ctx context.Context) error {
falseCount++
return nil
})(ctx)
assert.NoError(err) //nolint:testifylint // pre-existing issue from nektos/act
assert.Equal(0, trueCount)
assert.Equal(1, falseCount)
err = NewConditionalExecutor(func(ctx context.Context) bool {
return true
}, func(ctx context.Context) error {
trueCount++
return nil
}, func(ctx context.Context) error {
falseCount++
return nil
})(ctx)
assert.NoError(err) //nolint:testifylint // pre-existing issue from nektos/act
assert.Equal(1, trueCount)
assert.Equal(1, falseCount)
}
// concurrencyProbe returns an executor recording the peak number of concurrent copies. Copies
// block until wantActive are in flight so the peak is exact without sleeping, and later copies
// find the gate already open so the last one still finishes with no partner left.
func concurrencyProbe(wantActive int32) (exec Executor, count, maxActive *atomic.Int32) {
var counted, active, peak atomic.Int32
var once sync.Once
reached := make(chan struct{})
return func(ctx context.Context) error {
counted.Add(1)
running := active.Add(1)
for {
seen := peak.Load()
if running <= seen || peak.CompareAndSwap(seen, running) {
break
}
}
if running >= wantActive {
once.Do(func() { close(reached) })
}
<-reached
active.Add(-1)
return nil
}, &counted, &peak
}
func TestNewParallelExecutor(t *testing.T) {
ctx := context.Background()
exec, count, maxActive := concurrencyProbe(2)
require.NoError(t, NewParallelExecutor(2, exec, exec, exec)(ctx))
assert.Equal(t, int32(3), count.Load(), "should run all 3 executors")
assert.Equal(t, int32(2), maxActive.Load(), "should run at most 2 executors in parallel")
// parallelism below 1 falls back to a single worker
exec, count, maxActive = concurrencyProbe(1)
require.NoError(t, NewParallelExecutor(0, exec, exec, exec)(ctx))
assert.Equal(t, int32(3), count.Load(), "should run all 3 executors")
assert.Equal(t, int32(1), maxActive.Load(), "should run at most 1 executor in parallel")
}
func TestNewParallelExecutorEmpty(t *testing.T) {
assert := assert.New(t)
ctx := context.Background()
require.NoError(t, NewParallelExecutor(2)(ctx))
canceledCtx, cancel := context.WithCancel(context.Background())
cancel()
err := NewParallelExecutor(2)(canceledCtx)
assert.ErrorIs(err, context.Canceled)
}
func TestNewParallelExecutorFailed(t *testing.T) {
assert := assert.New(t)
ctx, cancel := context.WithCancel(context.Background())
cancel()
count := 0
errorWorkflow := NewPipelineExecutor(func(ctx context.Context) error {
count++
return errors.New("fake error")
})
err := NewParallelExecutor(1, errorWorkflow)(ctx)
assert.Equal(1, count)
assert.ErrorIs(context.Canceled, err)
}
func TestNewParallelExecutorCanceled(t *testing.T) {
assert := assert.New(t)
ctx, cancel := context.WithCancel(context.Background())
cancel()
errExpected := errors.New("fake error")
var count atomic.Int32
successWorkflow := NewPipelineExecutor(func(ctx context.Context) error {
count.Add(1)
return nil
})
errorWorkflow := NewPipelineExecutor(func(ctx context.Context) error {
count.Add(1)
return errExpected
})
err := NewParallelExecutor(3, errorWorkflow, successWorkflow, successWorkflow)(ctx)
assert.Equal(int32(3), count.Load())
assert.Error(errExpected, err) //nolint:testifylint // pre-existing issue from nektos/act
}
func TestNewParallelExecutorRunsRemainingAfterFailure(t *testing.T) {
var successCount atomic.Int32
executors := make([]Executor, 5)
for i := range executors {
executors[i] = func(ctx context.Context) error {
if i == 2 {
return errors.New("fake error")
}
successCount.Add(1)
return nil
}
}
require.Error(t, NewParallelExecutor(2, executors...)(context.Background()))
assert.Equal(t, int32(4), successCount.Load(), "a failing executor must not stop the others")
}
func TestExecutorConditionalsAndFinally(t *testing.T) {
ctx := context.Background()
var calls []string
record := func(name string) Executor {
return func(ctx context.Context) error {
calls = append(calls, name)
return nil
}
}
require.NoError(t, record("if-true").If(func(context.Context) bool { return true })(ctx))
require.NoError(t, record("if-false").If(func(context.Context) bool { return false })(ctx))
require.NoError(t, record("if-not").IfNot(func(context.Context) bool { return false })(ctx))
require.NoError(t, record("if-bool").IfBool(true)(ctx))
require.NoError(t, record("main").Finally(record("finally"))(ctx))
want := []string{"if-true", "if-not", "if-bool", "main", "finally"}
if !reflect.DeepEqual(calls, want) {
t.Fatalf("calls = %v, want %v", calls, want)
}
}
func TestExecutorFinallyReturnsFinallyErrorWithOriginal(t *testing.T) {
mainErr := errors.New("main failed")
finalErr := errors.New("cleanup failed")
err := NewErrorExecutor(mainErr).Finally(NewErrorExecutor(finalErr))(context.Background())
require.Error(t, err)
if !strings.Contains(err.Error(), "cleanup failed") || !strings.Contains(err.Error(), "main failed") {
t.Fatalf("finally error = %q, want both cleanup and original error", err)
}
}
func TestConditionalNot(t *testing.T) {
cond := Conditional(func(context.Context) bool { return false })
if !cond.Not()(context.Background()) {
t.Fatal("inverted conditional should be true")
}
}