mirror of
https://github.com/SAP/jenkins-library.git
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324f854814
This commit adapts nexus 3 integration tests to our new docker-based framework of writing IT. It makes individual tests easier to read and debug. One significant change is that each test now spawns a separate Nexus instance, which requires more memory, but also isolates the tests better.
185 lines
7.2 KiB
Go
185 lines
7.2 KiB
Go
// +build integration
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package main
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import (
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"bytes"
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"fmt"
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"github.com/SAP/jenkins-library/pkg/command"
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"github.com/SAP/jenkins-library/pkg/log"
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"io/ioutil"
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"math/rand"
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"os"
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"path"
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"strconv"
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"strings"
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"testing"
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"time"
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)
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// The functions in this file provide a convenient way to integration test the piper binary in docker containers.
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// It follows the "given, when, then" approach for structuring tests.
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// The general concept is that per test one container is started, one piper command is run and outcomes are asserted.
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// Please note that so far this was only tested with debian/ubuntu based containers.
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//
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// Non-exhaustive list of assumptions those functions make:
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// - Bash is available in the container
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// - If the option TestDir is not provided, the test project must be in the container image in the directory /project
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// IntegrationTestDockerExecRunnerBundle is used to construct an instance of IntegrationTestDockerExecRunner
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// This is what a test uses to specify the container it requires
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type IntegrationTestDockerExecRunnerBundle struct {
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Image string
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User string
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TestDir []string
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Mounts map[string]string
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Environment map[string]string
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Setup []string
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}
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// IntegrationTestDockerExecRunner keeps the state of an instance of a docker runner
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type IntegrationTestDockerExecRunner struct {
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// Runner is the ExecRunner to which all executions are forwarded in the end.
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Runner command.Command
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Image string
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User string
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TestDir []string
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Mounts map[string]string
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Environment map[string]string
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Setup []string
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ContainerName string
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}
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func givenThisContainer(t *testing.T, bundle IntegrationTestDockerExecRunnerBundle) IntegrationTestDockerExecRunner {
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runner := command.Command{}
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containerName := generateContainerName()
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testRunner := IntegrationTestDockerExecRunner{
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Runner: runner,
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Image: bundle.Image,
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User: bundle.User,
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Mounts: bundle.Mounts,
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Environment: bundle.Environment,
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Setup: bundle.Setup,
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ContainerName: containerName,
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}
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wd, _ := os.Getwd()
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localPiper := path.Join(wd, "..", "piper")
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if localPiper == "" {
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t.Fatal("Could not locate piper binary to test")
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}
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params := []string{"run", "--detach", "-v", localPiper + ":/piper", "--name=" + testRunner.ContainerName}
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if testRunner.User != "" {
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params = append(params, fmt.Sprintf("--user=%s", testRunner.User))
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}
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if len(bundle.TestDir) > 0 {
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projectDir := path.Join(wd, path.Join(bundle.TestDir...))
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// 1. Copy test files to a temp dir in order to avoid non-repeatable test executions because of changed state
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// 2. Don't remove the temp dir to allow investigation of failed tests. Maybe add an option for cleaning it later?
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tempDir, err := ioutil.TempDir("", "piper-integration-test")
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if err != nil {
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t.Fatal(err)
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}
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err = copyDir(projectDir, tempDir)
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if err != nil {
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t.Fatalf("Failed to copy files from %s into %s", projectDir, tempDir)
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}
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params = append(params, "-v", fmt.Sprintf("%s:/project", tempDir))
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}
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if len(testRunner.Environment) > 0 {
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for envVarName, envVarValue := range testRunner.Environment {
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params = append(params, "--env", fmt.Sprintf("%s=%s", envVarName, envVarValue))
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}
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}
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params = append(params, testRunner.Image, "sleep", "2000")
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//todo mounts
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err := testRunner.Runner.RunExecutable("docker", params...)
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if err != nil {
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t.Fatalf("Starting test container has failed %s", err)
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}
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if len(bundle.TestDir) > 0 {
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err = testRunner.Runner.RunExecutable("docker", "exec", "-u=root", testRunner.ContainerName, "chown", "-R", testRunner.User, "/project")
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if err != nil {
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t.Fatalf("Chown /project has failed %s", err)
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}
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}
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for _, scriptLine := range testRunner.Setup {
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err := testRunner.Runner.RunExecutable("docker", "exec", testRunner.ContainerName, "/bin/bash", "-c", scriptLine)
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if err != nil {
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t.Fatalf("Running setup script in test container has failed %s", err)
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}
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}
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setupPiperBinary(t, testRunner, localPiper)
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return testRunner
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}
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// generateContainerName creates a name with a common prefix and a random number so we can start a new container for each test method
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// We don't rely on docker's random name generator for two reasons
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// First, it is easier to save the name here compared to getting it from stdout
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// Second, the common prefix allows batch stopping/deleting of containers if so desired
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// The test code will not automatically delete containers as they might be useful for debugging
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func generateContainerName() string {
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var seededRand = rand.New(rand.NewSource(time.Now().UnixNano()))
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return "piper-integration-test-" + strconv.Itoa(seededRand.Int())
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}
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// setupPiperBinary copies a wrapper script for calling the piper binary into the container and verifies that the piper binary is executable inside the container
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// The wrapper script (piper-command-wrapper.sh) only calls the piper binary and redirects its output into a file
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// The purpose of this is to capture piper's stdout/stderr in order to assert on the output
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// This is not possible via "docker logs", cf https://github.com/moby/moby/issues/8662
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func setupPiperBinary(t *testing.T, testRunner IntegrationTestDockerExecRunner, localPiper string) {
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err := testRunner.Runner.RunExecutable("docker", "cp", "piper-command-wrapper.sh", testRunner.ContainerName+":/piper-wrapper")
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if err != nil {
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t.Fatalf("Copying command wrapper to container has failed %s", err)
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}
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err = testRunner.Runner.RunExecutable("docker", "exec", "-u=root", testRunner.ContainerName, "chmod", "+x", "/piper-wrapper")
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if err != nil {
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t.Fatalf("Making command wrapper in container executable has failed %s", err)
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}
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err = testRunner.Runner.RunExecutable("docker", "exec", testRunner.ContainerName, "/bin/bash", "/piper-wrapper", "/piper", "version")
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if err != nil {
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t.Fatalf("Running piper failed. "+
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"Please check that '%s' is the correct binary, and is compiled for this configuration: 'GOOS=linux GOARCH=amd64'. Error text: %s", localPiper, err)
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}
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}
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func (d *IntegrationTestDockerExecRunner) whenRunningPiperCommand(command string, parameters ...string) error {
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args := []string{"exec", "--workdir", "/project", d.ContainerName, "/bin/bash", "--login", "/piper-wrapper", "/piper", command}
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args = append(args, parameters...)
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return d.Runner.RunExecutable("docker", args...)
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}
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func (d *IntegrationTestDockerExecRunner) runScriptInsideContainer(script string) error {
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args := []string{"exec", "--workdir", "/project", d.ContainerName, "/bin/bash", "--login", "-c", script}
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return d.Runner.RunExecutable("docker", args...)
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}
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func (d *IntegrationTestDockerExecRunner) assertHasOutput(t *testing.T, want string) {
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buffer := new(bytes.Buffer)
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d.Runner.Stdout(buffer)
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err := d.Runner.RunExecutable("docker", "exec", d.ContainerName, "cat", "/tmp/test-log.txt")
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d.Runner.Stdout(log.Writer())
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if err != nil {
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t.Fatalf("Failed to get log output of container %s", d.ContainerName)
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}
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if !strings.Contains(buffer.String(), want) {
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t.Fatalf("Assertion has failed. Expected output %s in command output.\n%s", want, buffer.String())
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}
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}
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func (d *IntegrationTestDockerExecRunner) assertHasFile(t *testing.T, want string) {
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err := d.Runner.RunExecutable("docker", "exec", d.ContainerName, "stat", want)
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if err != nil {
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t.Fatalf("Assertion has failed. Expected file %s to exist in container. %s", want, err)
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}
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}
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