Files
act_runner/act/runner/run_context_test.go
Lunny Xiao 573e811492 refactor: move act/model and act/exprparser to actionslib
Gitea needs the workflow model and the expression evaluator to parse
workflows and to build the task payload this runner consumes, so it had
to depend on gitea.com/gitea/runner for it. Both packages now live in
gitea.dev/actionslib, the module both sides already share, and this
repository consumes them from there.

The GithubContext helpers that need a git checkout on disk (SetRef,
SetSha and SetRepositoryAndOwner) are not moved: they are runner only and
would drag a git client and the act context logger into the shared
module. They become functions of the new act/ghcontext package, together
with their tests.

act/common.CartesianProduct moved to the shared model package as well,
act/model was its only user. act/model/testdata/container-volumes is now
act/runner/testdata/container-volumes, its only user is runner_test.go.

The x-runner-uuid and x-runner-token header names come from
actionslib too, so the runner and Gitea cannot drift apart.

The generated runner API code moved along with the repository, from
gitea.dev/actions-proto-go to gitea.dev/actionslib, so the imports of
ping/v1 and runner/v1 follow the new module path. Both cannot be used at
once: the generated types would no longer be the same types.

Signed-off-by: Lunny Xiao <xiaolunwen@gmail.com>
2026-08-06 15:14:18 -07:00

1362 lines
46 KiB
Go

// Copyright 2022 The Gitea Authors. All rights reserved.
// Copyright 2020 The nektos/act Authors. All rights reserved.
// SPDX-License-Identifier: MIT
package runner
import (
"bytes"
"context"
"errors"
"fmt"
"os"
"runtime"
"strings"
"testing"
"time"
"gitea.com/gitea/runner/act/common"
"gitea.com/gitea/runner/act/container"
"gitea.dev/actionslib/pkg/exprparser"
"gitea.dev/actionslib/pkg/model"
"github.com/docker/cli/cli/compose/loader"
log "github.com/sirupsen/logrus"
assert "github.com/stretchr/testify/assert"
"github.com/stretchr/testify/mock"
require "github.com/stretchr/testify/require"
yaml "go.yaml.in/yaml/v4"
)
func TestRunContext_EvalBool(t *testing.T) {
var yml yaml.Node
err := yml.Encode(map[string][]any{
"os": {"Linux", "Windows"},
"foo": {"bar", "baz"},
})
assert.NoError(t, err) //nolint:testifylint // pre-existing issue from nektos/act
rc := &RunContext{
Config: &Config{
Workdir: ".",
},
Env: map[string]string{
"SOMETHING_TRUE": "true",
"SOMETHING_FALSE": "false",
"SOME_TEXT": "text",
},
Run: &model.Run{
JobID: "job1",
Workflow: &model.Workflow{
Name: "test-workflow",
Jobs: map[string]*model.Job{
"job1": {
Strategy: &model.Strategy{
RawMatrix: yml,
},
},
},
},
},
Matrix: map[string]any{
"os": "Linux",
"foo": "bar",
},
StepResults: map[string]*model.StepResult{
"id1": {
Conclusion: model.StepStatusSuccess,
Outcome: model.StepStatusFailure,
Outputs: map[string]string{
"foo": "bar",
},
},
},
}
rc.ExprEval = rc.NewExpressionEvaluator(context.Background())
tables := []struct {
in string
out bool
wantErr bool
}{
// The basic ones
{in: "failure()", out: false},
{in: "success()", out: true},
{in: "cancelled()", out: false},
{in: "always()", out: true},
// TODO: move to sc.NewExpressionEvaluator(), because "steps" context is not available here
// {in: "steps.id1.conclusion == 'success'", out: true},
// {in: "steps.id1.conclusion != 'success'", out: false},
// {in: "steps.id1.outcome == 'failure'", out: true},
// {in: "steps.id1.outcome != 'failure'", out: false},
{in: "true", out: true},
{in: "false", out: false},
// TODO: This does not throw an error, because the evaluator does not know if the expression is inside ${{ }} or not
// {in: "!true", wantErr: true},
// {in: "!false", wantErr: true},
{in: "1 != 0", out: true},
{in: "1 != 1", out: false},
{in: "${{ 1 != 0 }}", out: true},
{in: "${{ 1 != 1 }}", out: false},
{in: "1 == 0", out: false},
{in: "1 == 1", out: true},
{in: "1 > 2", out: false},
{in: "1 < 2", out: true},
// And or
{in: "true && false", out: false},
{in: "true && 1 < 2", out: true},
{in: "false || 1 < 2", out: true},
{in: "false || false", out: false},
// None boolable
{in: "env.UNKNOWN == 'true'", out: false},
{in: "env.UNKNOWN", out: false},
// Inline expressions
{in: "env.SOME_TEXT", out: true},
{in: "env.SOME_TEXT == 'text'", out: true},
{in: "env.SOMETHING_TRUE == 'true'", out: true},
{in: "env.SOMETHING_FALSE == 'true'", out: false},
{in: "env.SOMETHING_TRUE", out: true},
{in: "env.SOMETHING_FALSE", out: true},
// TODO: This does not throw an error, because the evaluator does not know if the expression is inside ${{ }} or not
// {in: "!env.SOMETHING_TRUE", wantErr: true},
// {in: "!env.SOMETHING_FALSE", wantErr: true},
{in: "${{ !env.SOMETHING_TRUE }}", out: false},
{in: "${{ !env.SOMETHING_FALSE }}", out: false},
{in: "${{ ! env.SOMETHING_TRUE }}", out: false},
{in: "${{ ! env.SOMETHING_FALSE }}", out: false},
{in: "${{ env.SOMETHING_TRUE }}", out: true},
{in: "${{ env.SOMETHING_FALSE }}", out: true},
{in: "${{ !env.SOMETHING_TRUE }}", out: false},
{in: "${{ !env.SOMETHING_FALSE }}", out: false},
{in: "${{ !env.SOMETHING_TRUE && true }}", out: false},
{in: "${{ !env.SOMETHING_FALSE && true }}", out: false},
{in: "${{ !env.SOMETHING_TRUE || true }}", out: true},
{in: "${{ !env.SOMETHING_FALSE || false }}", out: false},
{in: "${{ env.SOMETHING_TRUE && true }}", out: true},
{in: "${{ env.SOMETHING_FALSE || true }}", out: true},
{in: "${{ env.SOMETHING_FALSE || false }}", out: true},
// TODO: This does not throw an error, because the evaluator does not know if the expression is inside ${{ }} or not
// {in: "!env.SOMETHING_TRUE || true", wantErr: true},
{in: "${{ env.SOMETHING_TRUE == 'true'}}", out: true},
{in: "${{ env.SOMETHING_FALSE == 'true'}}", out: false},
{in: "${{ env.SOMETHING_FALSE == 'false'}}", out: true},
{in: "${{ env.SOMETHING_FALSE }} && ${{ env.SOMETHING_TRUE }}", out: true},
// All together now
{in: "false || env.SOMETHING_TRUE == 'true'", out: true},
{in: "true || env.SOMETHING_FALSE == 'true'", out: true},
{in: "true && env.SOMETHING_TRUE == 'true'", out: true},
{in: "false && env.SOMETHING_TRUE == 'true'", out: false},
{in: "env.SOMETHING_FALSE == 'true' && env.SOMETHING_TRUE == 'true'", out: false},
{in: "env.SOMETHING_FALSE == 'true' && true", out: false},
{in: "${{ env.SOMETHING_FALSE == 'true' }} && true", out: true},
{in: "true && ${{ env.SOMETHING_FALSE == 'true' }}", out: true},
// Check github context
{in: "github.actor == 'nektos/act'", out: true},
{in: "github.actor == 'unknown'", out: false},
{in: "github.job == 'job1'", out: true},
// The special ACT flag
{in: "${{ env.ACT }}", out: true},
{in: "${{ !env.ACT }}", out: false},
// Invalid expressions should be reported
{in: "INVALID_EXPRESSION", wantErr: true},
}
for _, table := range tables {
t.Run(table.in, func(t *testing.T) {
assertObject := assert.New(t)
b, err := EvalBool(context.Background(), rc.ExprEval, table.in, exprparser.DefaultStatusCheckSuccess)
if table.wantErr {
assertObject.Error(err) //nolint:testifylint // pre-existing issue from nektos/act
}
assertObject.Equal(table.out, b, fmt.Sprintf("Expected %s to be %v, was %v", table.in, table.out, b)) //nolint:testifylint // pre-existing issue from nektos/act
})
}
}
func TestRunContextHandleCredentialsDoesNotUseDockerSecrets(t *testing.T) {
workflow, err := model.ReadWorkflow(strings.NewReader(`
name: test
on: push
jobs:
job:
runs-on: ubuntu-latest
steps: []
`))
require.NoError(t, err)
rc := &RunContext{
Config: &Config{
Secrets: map[string]string{
"DOCKER_USERNAME": "docker-user",
"DOCKER_PASSWORD": "docker-password",
},
Env: map[string]string{},
},
Run: &model.Run{
JobID: "job",
Workflow: workflow,
},
}
// DOCKER_USERNAME/DOCKER_PASSWORD secrets should not be used as implicit job container pull credentials.
username, password, err := rc.handleCredentials(t.Context())
require.NoError(t, err)
assert.Empty(t, username)
assert.Empty(t, password)
}
// fakeContainer turns every container operation into a no-op, so startJobContainer
// runs without a Docker daemon. The embedded interface is nil, so any method the
// test does not exercise panics rather than silently doing the wrong thing.
type fakeContainer struct {
container.ExecutionsEnvironment
}
func (fakeContainer) Pull(bool) common.Executor { return func(context.Context) error { return nil } }
func (fakeContainer) Start(bool) common.Executor { return func(context.Context) error { return nil } }
func (fakeContainer) Remove() common.Executor { return func(context.Context) error { return nil } }
func (fakeContainer) Close() common.Executor { return func(context.Context) error { return nil } }
func (fakeContainer) GetActPath() string { return "/var/run/act" }
func (fakeContainer) Create([]string, []string) common.Executor {
return func(context.Context) error { return nil }
}
func (fakeContainer) Copy(string, ...*container.FileEntry) common.Executor {
return func(context.Context) error { return nil }
}
func (fakeContainer) Inspect(context.Context) (*container.Info, error) {
return &container.Info{ID: "fake", State: "running", Health: container.HealthNone}, nil
}
func (fakeContainer) DumpLogs(context.Context) error { return nil }
// Regression test: a service without a `credentials:` block resolves to empty
// credentials, which used to overwrite the job container's own credentials.
func TestStartJobContainerKeepsJobCredentialsWithServices(t *testing.T) {
workflow, err := model.ReadWorkflow(strings.NewReader(`
name: test
on: push
jobs:
job:
runs-on: ubuntu-latest
container:
image: registry.example/private:latest
credentials:
username: job-user
password: job-password
services:
redis:
image: redis:latest
db:
image: postgres:latest
credentials:
username: db-user
password: db-password
steps: []
`))
require.NoError(t, err)
var inputs []*container.NewContainerInput
origNewContainer := newContainer
newContainer = func(input *container.NewContainerInput) container.ExecutionsEnvironment {
inputs = append(inputs, input)
return fakeContainer{}
}
t.Cleanup(func() { newContainer = origNewContainer })
rc := &RunContext{
Name: "test",
Config: &Config{
Workdir: "/tmp",
// no daemon: an explicit network mode creates no network, and
// reusing containers short-circuits the volume cleanup executors
ContainerNetworkMode: "host",
ReuseContainers: true,
Env: map[string]string{},
Secrets: map[string]string{},
},
Env: map[string]string{},
Run: &model.Run{
JobID: "job",
Workflow: workflow,
},
}
rc.ExprEval = rc.NewExpressionEvaluator(t.Context())
require.NoError(t, rc.startJobContainer()(t.Context()))
credentials := map[string][2]string{}
for _, in := range inputs {
credentials[in.Image] = [2]string{in.Username, in.Password}
}
// the job container keeps its own credentials, whichever services exist
require.Equal(t, [2]string{"job-user", "job-password"}, credentials["registry.example/private:latest"])
// each service keeps its own, and a service without credentials gets none
require.Equal(t, [2]string{"db-user", "db-password"}, credentials["postgres:latest"])
require.Equal(t, [2]string{"", ""}, credentials["redis:latest"])
}
// A service container reaches the internet the same way the job does, so it inherits the
// job's proxy; a service that sets the variable itself keeps its own value.
func TestStartJobContainerGivesServicesTheJobProxy(t *testing.T) {
workflow, err := model.ReadWorkflow(strings.NewReader(`
name: test
on: push
jobs:
job:
runs-on: ubuntu-latest
container:
image: registry.example/job:latest
services:
redis:
image: redis:latest
db:
image: postgres:latest
env:
no_proxy: db-only.example
steps: []
`))
require.NoError(t, err)
var inputs []*container.NewContainerInput
origNewContainer := newContainer
newContainer = func(input *container.NewContainerInput) container.ExecutionsEnvironment {
inputs = append(inputs, input)
return fakeContainer{}
}
t.Cleanup(func() { newContainer = origNewContainer })
rc := &RunContext{
Name: "test",
Config: &Config{
Workdir: "/tmp",
ContainerNetworkMode: "host",
ReuseContainers: true,
Env: map[string]string{},
ProxyEnv: map[string]string{"http_proxy": "http://proxy:3128", "no_proxy": "internal.example"},
Secrets: map[string]string{},
},
Env: map[string]string{},
Run: &model.Run{
JobID: "job",
Workflow: workflow,
},
}
rc.ExprEval = rc.NewExpressionEvaluator(t.Context())
require.NoError(t, rc.startJobContainer()(t.Context()))
env := map[string][]string{}
for _, in := range inputs {
env[in.Image] = in.Env
}
require.Contains(t, env["redis:latest"], "http_proxy=http://proxy:3128")
require.Contains(t, env["redis:latest"], "no_proxy=internal.example")
// the service's own env wins over what the runner injected, without dropping the rest
require.Contains(t, env["postgres:latest"], "no_proxy=db-only.example")
require.NotContains(t, env["postgres:latest"], "no_proxy=internal.example")
require.Contains(t, env["postgres:latest"], "http_proxy=http://proxy:3128")
}
// act builds Dockerfile actions through the API, which does not pre-populate the proxy
// build args the docker CLI would, so the RUN steps would have no network behind a proxy.
func TestProxyBuildArgs(t *testing.T) {
rc := &RunContext{Config: &Config{ProxyEnv: map[string]string{"http_proxy": "http://proxy:3128"}}}
args := rc.proxyBuildArgs()
require.Len(t, args, 1)
require.Equal(t, "http://proxy:3128", *args["http_proxy"])
// a job without a proxy builds exactly as it does today
require.Nil(t, (&RunContext{Config: &Config{}}).proxyBuildArgs())
}
func TestRunContext_GetBindsAndMounts(t *testing.T) {
rctemplate := &RunContext{
Name: "TestRCName",
Run: &model.Run{
Workflow: &model.Workflow{
Name: "TestWorkflowName",
},
},
Config: &Config{
BindWorkdir: false,
},
}
tests := []struct {
windowsPath bool
name string
rc *RunContext
wantbind string
wantmount string
}{
{false, "/mnt/linux", rctemplate, "/mnt/linux", "/mnt/linux"},
{false, "/mnt/path with spaces/linux", rctemplate, "/mnt/path with spaces/linux", "/mnt/path with spaces/linux"},
{true, "C:\\Users\\TestPath\\MyTestPath", rctemplate, "/mnt/c/Users/TestPath/MyTestPath", "/mnt/c/Users/TestPath/MyTestPath"},
{true, "C:\\Users\\Test Path with Spaces\\MyTestPath", rctemplate, "/mnt/c/Users/Test Path with Spaces/MyTestPath", "/mnt/c/Users/Test Path with Spaces/MyTestPath"},
{true, "/LinuxPathOnWindowsShouldFail", rctemplate, "", ""},
}
isWindows := runtime.GOOS == "windows"
for _, testcase := range tests {
// pin for scopelint
for _, bindWorkDir := range []bool{true, false} {
// pin for scopelint
testBindSuffix := ""
if bindWorkDir {
testBindSuffix = "Bind"
}
// Only run windows path tests on windows and non-windows on non-windows
if (isWindows && testcase.windowsPath) || (!isWindows && !testcase.windowsPath) {
t.Run((testcase.name + testBindSuffix), func(t *testing.T) {
config := testcase.rc.Config
config.Workdir = testcase.name
config.BindWorkdir = bindWorkDir
gotbind, gotmount := rctemplate.GetBindsAndMounts()
// Name binds/mounts are either/or
if config.BindWorkdir {
fullBind := testcase.name + ":" + testcase.wantbind
if runtime.GOOS == "darwin" {
fullBind += ":delegated"
}
assert.Contains(t, gotbind, fullBind)
} else {
mountkey := testcase.rc.jobContainerName()
assert.EqualValues(t, testcase.wantmount, gotmount[mountkey]) //nolint:testifylint // pre-existing issue from nektos/act
}
})
}
}
}
t.Run("ContainerVolumeMountTest", func(t *testing.T) {
tests := []struct {
name string
volumes []string
wantbind string
wantmount map[string]string
}{
{"BindAnonymousVolume", []string{"/volume"}, "/volume", map[string]string{}},
{"BindHostFile", []string{"/path/to/file/on/host:/volume"}, "/path/to/file/on/host:/volume", map[string]string{}},
{"MountExistingVolume", []string{"volume-id:/volume"}, "", map[string]string{"volume-id": "/volume"}},
{"MountExistingVolumeReadOnly", []string{"volume-id:/volume:ro"}, "volume-id:/volume:ro", map[string]string{}},
{"BindRelativeHostPath", []string{"./relative:/volume"}, "./relative:/volume", map[string]string{}},
{"OverridesToolCache", []string{"/host/tools:/opt/hostedtoolcache"}, "/host/tools:/opt/hostedtoolcache", map[string]string{}},
{"OverridesDockerSocket", []string{"/host/docker.sock:/var/run/docker.sock"}, "/host/docker.sock:/var/run/docker.sock", map[string]string{}},
}
t.Run("InterpolatedContainerVolumes", func(t *testing.T) {
job := &model.Job{}
err := job.RawContainer.Encode(map[string][]string{
"volumes": {"${{ secrets.MAME }}:/root/.mame/roms:ro"},
})
require.NoError(t, err)
rc := &RunContext{
Name: "TestRCName",
Run: &model.Run{
Workflow: &model.Workflow{
Name: "TestWorkflowName",
},
},
Config: &Config{
BindWorkdir: false,
Secrets: map[string]string{
"MAME": "/host/mame/roms",
},
},
}
rc.Run.JobID = "job1"
rc.Run.Workflow.Jobs = map[string]*model.Job{"job1": job}
rc.ExprEval = rc.NewExpressionEvaluator(context.Background())
gotbind, gotmount := rc.GetBindsAndMounts()
assert.Contains(t, gotbind, "/host/mame/roms:/root/.mame/roms:ro")
assert.NotContains(t, gotbind, "${{ secrets.MAME }}")
assert.NotContains(t, gotmount, "${{ secrets.MAME }}")
})
for _, testcase := range tests {
t.Run(testcase.name, func(t *testing.T) {
job := &model.Job{}
err := job.RawContainer.Encode(map[string][]string{
"volumes": testcase.volumes,
})
assert.NoError(t, err) //nolint:testifylint // pre-existing issue from nektos/act
rc := &RunContext{
Name: "TestRCName",
Run: &model.Run{
Workflow: &model.Workflow{
Name: "TestWorkflowName",
},
},
Config: &Config{
BindWorkdir: false,
},
}
rc.Run.JobID = "job1"
rc.Run.Workflow.Jobs = map[string]*model.Job{"job1": job}
jobBinds, jobMounts := rc.GetBindsAndMounts()
svcBinds, svcMounts := rc.GetServiceBindsAndMounts(testcase.volumes)
// job and service containers classify volumes alike, only their own mounts differ
for _, got := range []struct {
binds []string
mounts map[string]string
}{{jobBinds, jobMounts}, {svcBinds, svcMounts}} {
gotbind, gotmount := got.binds, got.mounts
if len(testcase.wantbind) > 0 {
assert.Contains(t, gotbind, testcase.wantbind)
}
for k, v := range testcase.wantmount {
assert.Contains(t, gotmount, k)
assert.Equal(t, gotmount[k], v)
}
// Docker rejects a container with two mounts on one target, so the job's own
// volumes must displace the runner's rather than pile up next to them.
targets := map[string]bool{}
for _, bind := range gotbind {
parsed, err := loader.ParseVolume(bind)
require.NoError(t, err)
assert.NotContains(t, targets, parsed.Target, "%s mounts an already mounted target", bind)
targets[parsed.Target] = true
}
for source, target := range gotmount {
assert.NotContains(t, targets, target, "%s mounts an already mounted target", source)
targets[target] = true
}
}
})
}
})
}
func TestRunContextValidVolumes(t *testing.T) {
rc := &RunContext{
Name: "job",
Run: &model.Run{Workflow: &model.Workflow{Name: "wf"}},
Config: &Config{ValidVolumes: []string{"my-vol", "/host/path"}},
}
name := rc.jobContainerName()
got := rc.validVolumes()
// the configured volumes plus the four the runner mounts automatically
assert.Subset(t, got, []string{"my-vol", "/host/path", "act-toolcache", name, name + "-env", "/var/run/docker.sock"})
// deriving the list must never mutate or grow the shared Config slice: parallel matrix
// combinations share one *Config, and the previous in-place append was a data race.
assert.Equal(t, []string{"my-vol", "/host/path"}, rc.Config.ValidVolumes)
assert.Len(t, rc.validVolumes(), len(got), "repeated calls must be stable, not accumulate")
}
func TestCleanupJobResourcesCleansServicesWithoutJobContainer(t *testing.T) {
service := &containerMock{}
service.On("Remove").Return(func(context.Context) error { return nil }).Once()
service.On("Close").Return(func(context.Context) error { return nil }).Once()
rc := &RunContext{
Config: &Config{},
serviceContainers: []*serviceContainer{{name: "svc", container: service}},
}
err := rc.cleanupJobResources("external-network", false)(context.Background())
require.NoError(t, err)
service.AssertExpectations(t)
}
// cleanup used to bail out on a previous step's error and on a cancelled context
func TestCleanupJobResourcesContinuesAfterFailure(t *testing.T) {
t.Setenv("DOCKER_HOST", "unix:///nonexistent.sock")
jobContainer := &containerMock{}
jobContainer.On("Remove").Return(func(context.Context) error { return errors.New("removal failed") }).Once()
service := &containerMock{}
service.On("Remove").Return(func(context.Context) error { return nil }).Once()
service.On("Close").Return(func(context.Context) error { return nil }).Once()
rc := &RunContext{
Name: "job",
Config: &Config{},
Run: &model.Run{Workflow: &model.Workflow{Name: "wf"}, JobID: "job"},
JobContainer: jobContainer,
serviceContainers: []*serviceContainer{{name: "svc", container: service}},
}
ctx, cancel := context.WithCancel(context.Background())
cancel()
require.Error(t, rc.cleanupJobResources("job-network", true)(ctx))
jobContainer.AssertExpectations(t)
service.AssertExpectations(t)
}
// TestInterpolateOutputsIsPerMatrixCombo guards the matrix-output fix: combinations share one
// *model.Job, so each must interpolate from its own pristine snapshot. Otherwise the first
// combo's resolved value freezes the shared template and later combos can't resolve their own.
func TestInterpolateOutputsIsPerMatrixCombo(t *testing.T) {
job := &model.Job{Outputs: map[string]string{"o": "${{ matrix.v }}"}}
run := &model.Run{JobID: "j", Workflow: &model.Workflow{Name: "w", Jobs: map[string]*model.Job{"j": job}}}
r := &runnerImpl{config: &Config{}}
ctx := context.Background()
rcA := r.newRunContext(ctx, run, map[string]any{"v": "a"})
rcB := r.newRunContext(ctx, run, map[string]any{"v": "b"})
require.NoError(t, rcA.interpolateOutputs()(ctx))
require.NoError(t, rcB.interpolateOutputs()(ctx))
// Last combo wins (matching GitHub) instead of being frozen to combo A's "a".
require.Equal(t, "b", job.Outputs["o"])
}
func TestGetGitHubContext(t *testing.T) {
log.SetLevel(log.DebugLevel)
cwd, err := os.Getwd()
assert.NoError(t, err) //nolint:testifylint // pre-existing issue from nektos/act
rc := &RunContext{
Config: &Config{
EventName: "push",
Workdir: cwd,
Env: map[string]string{
"GITHUB_REPOSITORY": "nektos/act",
},
},
Run: &model.Run{
Workflow: &model.Workflow{
Name: "GitHubContextTest",
},
},
Name: "GitHubContextTest",
CurrentStep: "step",
Matrix: map[string]any{},
Env: map[string]string{},
ExtraPath: []string{},
StepResults: map[string]*model.StepResult{},
OutputMappings: map[MappableOutput]MappableOutput{},
}
rc.Run.JobID = "job1"
ghc := rc.getGithubContext(context.Background())
log.Debugf("%v", ghc)
actor := "nektos/act"
if a := os.Getenv("ACT_ACTOR"); a != "" {
actor = a
}
repo := "nektos/act"
if r := os.Getenv("ACT_REPOSITORY"); r != "" {
repo = r
}
owner := "nektos"
if o := os.Getenv("ACT_OWNER"); o != "" {
owner = o
}
assert.Equal(t, ghc.RunID, "1") //nolint:testifylint // pre-existing issue from nektos/act
assert.Equal(t, ghc.RunNumber, "1") //nolint:testifylint // pre-existing issue from nektos/act
assert.Equal(t, ghc.RetentionDays, "0") //nolint:testifylint // pre-existing issue from nektos/act
assert.Equal(t, ghc.Actor, actor)
assert.Equal(t, ghc.Repository, repo)
assert.Equal(t, ghc.RepositoryOwner, owner)
assert.Equal(t, ghc.RunnerPerflog, "/dev/null") //nolint:testifylint // pre-existing issue from nektos/act
assert.Equal(t, ghc.Token, rc.Config.Secrets["GITHUB_TOKEN"])
assert.Equal(t, ghc.Job, "job1") //nolint:testifylint // pre-existing issue from nektos/act
}
func TestGetGithubContextRef(t *testing.T) {
table := []struct {
event string
json string
ref string
}{
{event: "push", json: `{"ref":"0000000000000000000000000000000000000000"}`, ref: "0000000000000000000000000000000000000000"},
{event: "create", json: `{"ref":"0000000000000000000000000000000000000000"}`, ref: "0000000000000000000000000000000000000000"},
{event: "workflow_dispatch", json: `{"ref":"0000000000000000000000000000000000000000"}`, ref: "0000000000000000000000000000000000000000"},
{event: "delete", json: `{"repository":{"default_branch": "main"}}`, ref: "refs/heads/main"},
{event: "pull_request", json: `{"number":123}`, ref: "refs/pull/123/merge"},
{event: "pull_request_review", json: `{"number":123}`, ref: "refs/pull/123/merge"},
{event: "pull_request_review_comment", json: `{"number":123}`, ref: "refs/pull/123/merge"},
{event: "pull_request_target", json: `{"pull_request":{"base":{"ref": "main"}}}`, ref: "refs/heads/main"},
{event: "deployment", json: `{"deployment": {"ref": "tag-name"}}`, ref: "tag-name"},
{event: "deployment_status", json: `{"deployment": {"ref": "tag-name"}}`, ref: "tag-name"},
{event: "release", json: `{"release": {"tag_name": "tag-name"}}`, ref: "refs/tags/tag-name"},
}
for _, data := range table {
t.Run(data.event, func(t *testing.T) {
rc := &RunContext{
EventJSON: data.json,
Config: &Config{
EventName: data.event,
Workdir: "",
},
Run: &model.Run{
Workflow: &model.Workflow{
Name: "GitHubContextTest",
},
},
}
ghc := rc.getGithubContext(context.Background())
assert.Equal(t, data.ref, ghc.Ref)
})
}
}
func createIfTestRunContext(jobs map[string]*model.Job) *RunContext {
rc := &RunContext{
Config: &Config{
Workdir: ".",
Platforms: map[string]string{
"ubuntu-latest": "ubuntu-latest",
},
},
Env: map[string]string{},
Run: &model.Run{
JobID: "job1",
Workflow: &model.Workflow{
Name: "test-workflow",
Jobs: jobs,
},
},
}
rc.ExprEval = rc.NewExpressionEvaluator(context.Background())
return rc
}
func createJob(t *testing.T, input, result string) *model.Job {
var job *model.Job
err := yaml.Unmarshal([]byte(input), &job)
assert.NoError(t, err)
job.Result = result
return job
}
func TestRunContextRunsOnPlatformNames(t *testing.T) {
log.SetLevel(log.DebugLevel)
assertObject := assert.New(t)
rc := createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `runs-on: ubuntu-latest`, ""),
})
assertObject.Equal([]string{"ubuntu-latest"}, rc.runsOnPlatformNames(context.Background()))
rc = createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `runs-on: ${{ 'ubuntu-latest' }}`, ""),
})
assertObject.Equal([]string{"ubuntu-latest"}, rc.runsOnPlatformNames(context.Background()))
rc = createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `runs-on: [self-hosted, my-runner]`, ""),
})
assertObject.Equal([]string{"self-hosted", "my-runner"}, rc.runsOnPlatformNames(context.Background()))
rc = createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `runs-on: [self-hosted, "${{ 'my-runner' }}"]`, ""),
})
assertObject.Equal([]string{"self-hosted", "my-runner"}, rc.runsOnPlatformNames(context.Background()))
rc = createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `runs-on: ${{ fromJSON('["ubuntu-latest"]') }}`, ""),
})
assertObject.Equal([]string{"ubuntu-latest"}, rc.runsOnPlatformNames(context.Background()))
// test missing / invalid runs-on
rc = createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `name: something`, ""),
})
assertObject.Equal([]string{}, rc.runsOnPlatformNames(context.Background()))
rc = createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `runs-on:
mapping: value`, ""),
})
assertObject.Equal([]string{}, rc.runsOnPlatformNames(context.Background()))
rc = createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `runs-on: ${{ invalid expression }}`, ""),
})
assertObject.Equal([]string{}, rc.runsOnPlatformNames(context.Background()))
}
func TestRunContextIsEnabled(t *testing.T) {
log.SetLevel(log.DebugLevel)
assertObject := assert.New(t)
// success()
rc := createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `runs-on: ubuntu-latest
if: success()`, ""),
})
assertObject.True(rc.isEnabled(context.Background()))
rc = createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `runs-on: ubuntu-latest`, "failure"),
"job2": createJob(t, `runs-on: ubuntu-latest
needs: [job1]
if: success()`, ""),
})
rc.Run.JobID = "job2"
assertObject.False(rc.isEnabled(context.Background()))
rc = createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `runs-on: ubuntu-latest`, "success"),
"job2": createJob(t, `runs-on: ubuntu-latest
needs: [job1]
if: success()`, ""),
})
rc.Run.JobID = "job2"
assertObject.True(rc.isEnabled(context.Background()))
rc = createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `runs-on: ubuntu-latest`, "failure"),
"job2": createJob(t, `runs-on: ubuntu-latest
if: success()`, ""),
})
rc.Run.JobID = "job2"
assertObject.True(rc.isEnabled(context.Background()))
// failure()
rc = createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `runs-on: ubuntu-latest
if: failure()`, ""),
})
assertObject.False(rc.isEnabled(context.Background()))
rc = createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `runs-on: ubuntu-latest`, "failure"),
"job2": createJob(t, `runs-on: ubuntu-latest
needs: [job1]
if: failure()`, ""),
})
rc.Run.JobID = "job2"
assertObject.True(rc.isEnabled(context.Background()))
rc = createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `runs-on: ubuntu-latest`, "success"),
"job2": createJob(t, `runs-on: ubuntu-latest
needs: [job1]
if: failure()`, ""),
})
rc.Run.JobID = "job2"
assertObject.False(rc.isEnabled(context.Background()))
rc = createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `runs-on: ubuntu-latest`, "failure"),
"job2": createJob(t, `runs-on: ubuntu-latest
if: failure()`, ""),
})
rc.Run.JobID = "job2"
assertObject.False(rc.isEnabled(context.Background()))
// always()
rc = createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `runs-on: ubuntu-latest
if: always()`, ""),
})
assertObject.True(rc.isEnabled(context.Background()))
rc = createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `runs-on: ubuntu-latest`, "failure"),
"job2": createJob(t, `runs-on: ubuntu-latest
needs: [job1]
if: always()`, ""),
})
rc.Run.JobID = "job2"
assertObject.True(rc.isEnabled(context.Background()))
rc = createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `runs-on: ubuntu-latest`, "success"),
"job2": createJob(t, `runs-on: ubuntu-latest
needs: [job1]
if: always()`, ""),
})
rc.Run.JobID = "job2"
assertObject.True(rc.isEnabled(context.Background()))
rc = createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `runs-on: ubuntu-latest`, "success"),
"job2": createJob(t, `runs-on: ubuntu-latest
if: always()`, ""),
})
rc.Run.JobID = "job2"
assertObject.True(rc.isEnabled(context.Background()))
rc = createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `uses: ./.github/workflows/reusable.yml`, ""),
})
assertObject.True(rc.isEnabled(context.Background()))
rc = createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, `uses: ./.github/workflows/reusable.yml
if: false`, ""),
})
assertObject.False(rc.isEnabled(context.Background()))
}
func TestRunContextGetEnv(t *testing.T) {
tests := []struct {
description string
rc *RunContext
targetEnv string
want string
}{
{
description: "Env from Config should overwrite",
rc: &RunContext{
Config: &Config{
Env: map[string]string{"OVERWRITTEN": "true"},
},
Run: &model.Run{
Workflow: &model.Workflow{
Jobs: map[string]*model.Job{"test": {Name: "test"}},
Env: map[string]string{"OVERWRITTEN": "false"},
},
JobID: "test",
},
},
targetEnv: "OVERWRITTEN",
want: "true",
},
{
description: "No overwrite occurs",
rc: &RunContext{
Config: &Config{
Env: map[string]string{"SOME_OTHER_VAR": "true"},
},
Run: &model.Run{
Workflow: &model.Workflow{
Jobs: map[string]*model.Job{"test": {Name: "test"}},
Env: map[string]string{"OVERWRITTEN": "false"},
},
JobID: "test",
},
},
targetEnv: "OVERWRITTEN",
want: "false",
},
}
for _, test := range tests {
t.Run(test.description, func(t *testing.T) {
envMap := test.rc.GetEnv()
assert.EqualValues(t, test.want, envMap[test.targetEnv]) //nolint:testifylint // pre-existing issue from nektos/act
})
}
}
func TestCreateContainerNameBoundedForLongMatrixInput(t *testing.T) {
longMatrixValue := strings.Repeat("os=ubuntu-latest-go=1.24-node=22-", 20)
name := createContainerName(
"gitea",
"WORKFLOW-super-long-workflow-name",
"JOB-build-matrix-"+longMatrixValue,
)
assert.LessOrEqual(t, len(name), 128)
assert.LessOrEqual(t, len(name+"-env"), 255)
assert.LessOrEqual(t, len(name+"-network"), 255)
assert.LessOrEqual(t, len(name+"-job1234567890"), 255)
}
func TestPrintStartJobContainerGroupGolden(t *testing.T) {
buf := &bytes.Buffer{}
logger := log.New()
logger.SetOutput(buf)
logger.SetLevel(log.InfoLevel)
logger.SetFormatter(&jobLogFormatter{color: cyan})
entry := logger.WithFields(log.Fields{"job": "j1"})
ctx := common.WithLogger(context.Background(), entry)
printStartJobContainerGroup(ctx, "node:20", "GITEA-WORKFLOW-build-JOB-test", "gitea-runner-network")()
want := strings.Join([]string{
"[j1] | ::group::Starting job container",
"[j1] | image: node:20",
"[j1] | name: GITEA-WORKFLOW-build-JOB-test",
"[j1] | network: gitea-runner-network",
"[j1] | ::endgroup::",
"",
}, "\n")
assert.Equal(t, want, buf.String())
}
func TestRunContext_cleanupFailedStart(t *testing.T) {
type ctxKey string
const sentinel = ctxKey("sentinel")
// the fresh context is cancelled via defer on return, so capture state inside the stub
type capture struct {
calls int
err error
sentinel any
}
newRC := func(c *capture) *RunContext {
return &RunContext{
JobName: "job",
cleanUpJobContainer: func(ctx context.Context) error {
c.calls++
c.err = ctx.Err()
c.sentinel = ctx.Value(sentinel)
return nil
},
}
}
t.Run("runs teardown on the live context", func(t *testing.T) {
var c capture
ctx := context.WithValue(context.Background(), sentinel, "v")
newRC(&c).cleanupFailedStart(ctx)
assert.Equal(t, 1, c.calls)
require.NoError(t, c.err)
assert.Equal(t, "v", c.sentinel)
})
t.Run("falls back to a fresh context when the input is done", func(t *testing.T) {
var c capture
ctx, cancel := context.WithCancel(context.WithValue(context.Background(), sentinel, "v"))
cancel()
newRC(&c).cleanupFailedStart(ctx)
assert.Equal(t, 1, c.calls)
require.NoError(t, c.err)
assert.Nil(t, c.sentinel)
})
t.Run("no-op when there is nothing to clean up", func(t *testing.T) {
assert.NotPanics(t, func() { (&RunContext{}).cleanupFailedStart(context.Background()) })
})
}
func TestWaitForServiceContainers(t *testing.T) {
origInterval := serviceReadyPollInterval
serviceReadyPollInterval = time.Millisecond
defer func() { serviceReadyPollInterval = origInterval }()
newRunContext := func(timeout time.Duration, services ...*serviceContainer) *RunContext {
return &RunContext{
Config: &Config{ServiceReadyTimeout: timeout},
serviceContainers: services,
}
}
t.Run("returns as soon as a service without a healthcheck runs", func(t *testing.T) {
service := &containerMock{}
service.On("Inspect", mock.Anything).
Return(&container.Info{ID: "id", State: "running", Health: container.HealthNone}, nil).Once()
rc := newRunContext(0, &serviceContainer{name: "redis", container: service})
require.NoError(t, rc.waitForServiceContainers()(context.Background()))
service.AssertExpectations(t)
})
t.Run("waits while a service is still starting", func(t *testing.T) {
service := &containerMock{}
service.On("Inspect", mock.Anything).
Return(&container.Info{ID: "id", State: "running", Health: container.HealthStarting}, nil).Twice()
service.On("Inspect", mock.Anything).
Return(&container.Info{ID: "id", State: "running", Health: container.HealthHealthy}, nil).Once()
rc := newRunContext(0, &serviceContainer{name: "postgres", container: service})
require.NoError(t, rc.waitForServiceContainers()(context.Background()))
service.AssertExpectations(t)
})
t.Run("fails with the probe output when a service is unhealthy", func(t *testing.T) {
service := &containerMock{}
service.On("Inspect", mock.Anything).Return(&container.Info{
State: "running",
Health: container.HealthUnhealthy,
HealthOutput: "connection refused",
}, nil).Once()
service.On("DumpLogs", mock.Anything).Return(nil).Once()
rc := newRunContext(0, &serviceContainer{name: "postgres", container: service})
err := rc.waitForServiceContainers()(context.Background())
require.Error(t, err)
assert.Contains(t, err.Error(), "the service 'postgres' is unhealthy: connection refused")
service.AssertExpectations(t)
})
t.Run("lets the steps run when a service exits without a healthcheck", func(t *testing.T) {
service := &containerMock{}
service.On("Inspect", mock.Anything).
Return(&container.Info{State: "exited", ExitCode: 2, Health: container.HealthNone}, nil).Once()
rc := newRunContext(0, &serviceContainer{name: "postgres", container: service})
require.NoError(t, rc.waitForServiceContainers()(context.Background()))
})
t.Run("proceeds when the container is gone", func(t *testing.T) {
service := &containerMock{}
service.On("Inspect", mock.Anything).
Return((*container.Info)(nil), container.ErrContainerNotFound).Once()
rc := newRunContext(0, &serviceContainer{name: "postgres", container: service})
require.NoError(t, rc.waitForServiceContainers()(context.Background()))
})
t.Run("fails right away when one service fails while another is still starting", func(t *testing.T) {
failing := &containerMock{}
failing.On("Inspect", mock.Anything).
Return(&container.Info{State: "running", Health: container.HealthUnhealthy}, nil)
failing.On("DumpLogs", mock.Anything).Return(nil).Once()
starting := &containerMock{}
starting.On("Inspect", mock.Anything).
Return(&container.Info{State: "running", Health: container.HealthStarting}, nil)
rc := newRunContext(10*time.Second,
&serviceContainer{name: "failing", container: failing},
&serviceContainer{name: "starting", container: starting})
done := make(chan error, 1)
go func() { done <- rc.waitForServiceContainers()(context.Background()) }()
select {
case err := <-done:
require.Error(t, err)
assert.Contains(t, err.Error(), "the service 'failing' is unhealthy")
case <-time.After(2 * time.Second):
t.Fatal("waitForServiceContainers did not fail fast; it waited for the starting service")
}
})
t.Run("gives up once the timeout expires", func(t *testing.T) {
service := &containerMock{}
service.On("Inspect", mock.Anything).
Return(&container.Info{State: "running", Health: container.HealthStarting}, nil)
rc := newRunContext(20*time.Millisecond, &serviceContainer{name: "postgres", container: service})
err := rc.waitForServiceContainers()(context.Background())
require.Error(t, err)
assert.Contains(t, err.Error(), "did not become healthy within")
})
t.Run("gives up with the same message when the deadline stops an inspect", func(t *testing.T) {
service := &containerMock{}
service.On("Inspect", mock.Anything).
Run(func(args mock.Arguments) { <-args.Get(0).(context.Context).Done() }).
Return((*container.Info)(nil), errors.New("inspect aborted"))
rc := newRunContext(20*time.Millisecond, &serviceContainer{name: "postgres", container: service})
err := rc.waitForServiceContainers()(context.Background())
require.Error(t, err)
assert.Contains(t, err.Error(), "did not become healthy within")
})
t.Run("does not wait when the timeout is negative", func(t *testing.T) {
service := &containerMock{}
// Still described once, so the `job.services` context is filled either way.
service.On("Inspect", mock.Anything).
Return(&container.Info{ID: "id", State: "running", Health: container.HealthStarting}, nil).Once()
svc := &serviceContainer{name: "postgres", container: service}
rc := newRunContext(-1, svc)
require.NoError(t, rc.waitForServiceContainers()(context.Background()))
service.AssertExpectations(t)
assert.Equal(t, "id", svc.info.ID)
})
t.Run("fails on an inspect error even when the timeout is negative", func(t *testing.T) {
service := &containerMock{}
service.On("Inspect", mock.Anything).Return((*container.Info)(nil), errors.New("daemon is gone")).Once()
rc := newRunContext(-1, &serviceContainer{name: "postgres", container: service})
err := rc.waitForServiceContainers()(context.Background())
require.Error(t, err)
assert.Contains(t, err.Error(), "failed to inspect service 'postgres'")
})
t.Run("is a no-op without services", func(t *testing.T) {
require.NoError(t, newRunContext(0).waitForServiceContainers()(context.Background()))
})
}
func TestReportUnstartedServices(t *testing.T) {
dead := &containerMock{}
dead.On("Inspect", mock.Anything).Return(&container.Info{ID: "dead-id", State: "exited", ExitCode: 1}, nil).Once()
dead.On("DumpLogs", mock.Anything).Return(nil).Once()
running := &containerMock{}
running.On("Inspect", mock.Anything).Return(&container.Info{ID: "run-id", State: "running"}, nil).Once()
rc := &RunContext{serviceContainers: []*serviceContainer{
{name: "postgres", container: dead},
{name: "redis", container: running},
}}
require.NoError(t, rc.reportUnstartedServices()(context.Background()))
dead.AssertExpectations(t)
running.AssertExpectations(t)
}
func TestGetJobContextReportsContainers(t *testing.T) {
rc := &RunContext{
jobNetworkName: "job-network",
jobContainerID: "job-container-id",
serviceContainers: []*serviceContainer{
{name: "postgres", info: &container.Info{ID: "svc-id", Ports: map[string]string{"5432": "49153"}}},
// A service that publishes no port reports an empty map, as GitHub does.
{name: "redis", info: &container.Info{ID: "redis-id", Ports: map[string]string{}}},
// A service that never reported is left out rather than reported as empty.
{name: "mailhog"},
},
}
jobContext := rc.getJobContext()
assert.Equal(t, "job-container-id", jobContext.Container.ID)
assert.Equal(t, "job-network", jobContext.Container.Network)
assert.Equal(t, map[string]model.JobService{
"postgres": {ID: "svc-id", Network: "job-network", Ports: map[string]string{"5432": "49153"}},
"redis": {ID: "redis-id", Network: "job-network", Ports: map[string]string{}},
}, jobContext.Services)
}
// A job that never started a container reports an empty context, not a placeholder.
func TestGetJobContextWithoutContainer(t *testing.T) {
jobContext := (&RunContext{}).getJobContext()
assert.Empty(t, jobContext.Container.ID)
assert.Empty(t, jobContext.Container.Network)
assert.Empty(t, jobContext.Services)
}
func TestImageOSFromImage(t *testing.T) {
for _, tc := range []struct {
image string
want string
}{
{"", ""},
{"docker.gitea.com/runner-images:ubuntu-24.04", "ubuntu24"},
{"docker.gitea.com/runner-images:ubuntu-latest", ""},
{"runner-images:ubuntu22.04", "ubuntu22"},
{"node:20", ""},
{"ubuntu:22.04", ""},
{"ubuntu", ""},
{"catthehacker/ubuntu:act-22.04", ""},
{"myco/ubuntu:v2.1", ""},
{"myco/ubuntu:v22.04", ""},
{"app:release-1", ""},
{"app:1.2.3", ""},
{"app:build-2.1", ""},
{"registry.example.com:5000/runner-images", ""},
{"registry.example.com:5000/runner-images:ubuntu-24.04", "ubuntu24"},
} {
t.Run(tc.image, func(t *testing.T) {
assert.Equal(t, tc.want, imageOSFromImage(tc.image))
})
}
}
func createRunsOnRunContext(t *testing.T, runsOn string) *RunContext {
return createIfTestRunContext(map[string]*model.Job{
"job1": createJob(t, "runs-on: "+runsOn, ""),
})
}
func TestRunContextImageOS(t *testing.T) {
ctx := context.Background()
t.Run("prefers the release in the resolved image tag", func(t *testing.T) {
rc := createRunsOnRunContext(t, "ubuntu-latest")
rc.Config.Platforms = map[string]string{
"ubuntu-latest": "docker.gitea.com/runner-images:ubuntu-24.04",
}
assert.Equal(t, "ubuntu24", rc.imageOS(ctx))
})
t.Run("falls back to the runs-on label", func(t *testing.T) {
rc := createRunsOnRunContext(t, "ubuntu-22.04")
rc.Config.Platforms = map[string]string{"ubuntu-22.04": "some-image"}
assert.Equal(t, "ubuntu22", rc.imageOS(ctx))
})
t.Run("keeps the historical value for a rolling label with no release", func(t *testing.T) {
assert.Equal(t, "ubuntu20", createRunsOnRunContext(t, "ubuntu-latest").imageOS(ctx))
})
t.Run("is empty for the synthetic job of a composite action", func(t *testing.T) {
rc := createIfTestRunContext(map[string]*model.Job{"job1": {}})
assert.Empty(t, rc.imageOS(ctx))
})
}
func TestRunContextGetRunnerContext(t *testing.T) {
ctx := context.Background()
t.Run("adds the runner values the container cannot know", func(t *testing.T) {
rc := createRunsOnRunContext(t, "ubuntu-latest")
rc.Config.RunnerName = "runner-1"
runnerContext := rc.getRunnerContext(ctx)
assert.Equal(t, "runner-1", runnerContext["name"])
assert.Equal(t, "self-hosted", runnerContext["environment"])
assert.NotContains(t, runnerContext, "debug")
})
t.Run("reports debug when step debugging is on", func(t *testing.T) {
rc := createRunsOnRunContext(t, "ubuntu-latest")
rc.Config.Secrets = map[string]string{"ACTIONS_STEP_DEBUG": "true"}
assert.Equal(t, "1", rc.getRunnerContext(ctx)["debug"])
})
t.Run("keeps the execution environment values", func(t *testing.T) {
rc := createRunsOnRunContext(t, "ubuntu-latest")
rc.JobContainer = &container.HostEnvironment{TmpDir: "/tmp/act", ToolCache: "/tmp/tool_cache"}
runnerContext := rc.getRunnerContext(ctx)
assert.Equal(t, "/tmp/act", runnerContext["temp"])
assert.Equal(t, "/tmp/tool_cache", runnerContext["tool_cache"])
assert.NotEmpty(t, runnerContext["os"])
})
}
func TestParentDir(t *testing.T) {
assert.Empty(t, parentDir(""))
assert.Empty(t, parentDir("repo"))
assert.Empty(t, parentDir("/repo"))
assert.Equal(t, "/workspace/owner", parentDir("/workspace/owner/repo"))
assert.Equal(t, `C:\workspace\owner`, parentDir(`C:\workspace\owner\repo`))
}
func TestRunContextWithGithubEnvRunnerValues(t *testing.T) {
ctx := context.Background()
rc := createRunsOnRunContext(t, "ubuntu-latest")
rc.Config.RunnerName = "runner-1"
rc.Config.Secrets = map[string]string{"ACTIONS_STEP_DEBUG": "true"}
env := map[string]string{}
rc.withGithubEnv(ctx, &model.GithubContext{Workspace: "/workspace/owner/repo"}, env)
assert.Equal(t, "runner-1", env["RUNNER_NAME"])
assert.Equal(t, "self-hosted", env["RUNNER_ENVIRONMENT"])
assert.Equal(t, "/workspace/owner", env["RUNNER_WORKSPACE"])
assert.Equal(t, "1", env["RUNNER_DEBUG"])
}