mirror of
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- cp: the twelve copy directions become one scenario; Dir() joins the Scenario API for actions that exchange files with the host, and FileContains observes what landed there. The files copied in and out live in the txtar archive instead of writing into the fixture tree. - environment: TestEnvPriority splits into three scenarios, one per compose model (environment section, bare, env_file section), each declaring its .env variants inline; StdoutContains joins the vocabulary so container output cannot collide with progress noise (the unused framework predicate of the same name is removed). The fixed 'env-compose-priority' image name becomes project-scoped. - config: rendering assertions move to scenario steps; the config output is the observable here by definition. TestConfigHashMatchesContainerLabel stays legacy: it cross-references hashes captured at runtime, which checks cannot hold. - Fixtures cp-test/, environment/ and config/ are removed. Signed-off-by: Nicolas De Loof <nicolas.deloof@gmail.com>
512 lines
15 KiB
Go
512 lines
15 KiB
Go
/*
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Copyright 2020 Docker Compose CLI authors
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package e2e
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import (
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"encoding/json"
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"errors"
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"fmt"
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"io"
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"io/fs"
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"net/http"
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"os"
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"path/filepath"
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"runtime"
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"strings"
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"testing"
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"time"
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cp "github.com/otiai10/copy"
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"gotest.tools/v3/assert"
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"gotest.tools/v3/icmd"
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"gotest.tools/v3/poll"
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"github.com/docker/compose/v5/cmd/compose"
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)
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var (
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// DockerExecutableName is the OS dependent Docker CLI binary name
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DockerExecutableName = "docker"
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// DockerComposeExecutableName is the OS dependent Docker CLI binary name
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DockerComposeExecutableName = "docker-" + compose.PluginName
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// DockerScanExecutableName is the OS dependent Docker Scan plugin binary name
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DockerScanExecutableName = "docker-scan"
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// DockerBuildxExecutableName is the Os dependent Buildx plugin binary name
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DockerBuildxExecutableName = "docker-buildx"
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// DockerModelExecutableName is the Os dependent Docker-Model plugin binary name
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DockerModelExecutableName = "docker-model"
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// WindowsExecutableSuffix is the Windows executable suffix
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WindowsExecutableSuffix = ".exe"
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)
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func init() {
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if runtime.GOOS == "windows" {
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DockerExecutableName += WindowsExecutableSuffix
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DockerComposeExecutableName += WindowsExecutableSuffix
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DockerScanExecutableName += WindowsExecutableSuffix
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DockerBuildxExecutableName += WindowsExecutableSuffix
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}
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}
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// CLI is used to wrap the CLI for end to end testing
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type CLI struct {
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// ConfigDir for Docker configuration (set as DOCKER_CONFIG)
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ConfigDir string
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// HomeDir for tools that look for user files (set as HOME)
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HomeDir string
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// env overrides to apply to every invoked command
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//
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// To populate, use WithEnv when creating a CLI instance.
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env []string
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}
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// CLIOption to customize behavior for all commands for a CLI instance.
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type CLIOption func(c *CLI)
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// NewParallelCLI marks the parent test as parallel and returns a CLI instance
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// suitable for usage across child tests.
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func NewParallelCLI(t *testing.T, opts ...CLIOption) *CLI {
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t.Helper()
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t.Parallel()
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return NewCLI(t, opts...)
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}
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// NewCLI creates a CLI instance for running E2E tests.
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func NewCLI(t testing.TB, opts ...CLIOption) *CLI {
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t.Helper()
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configDir := t.TempDir()
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copyLocalConfig(t, configDir)
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initializePlugins(t, configDir)
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initializeContextDir(t, configDir)
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c := &CLI{
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ConfigDir: configDir,
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HomeDir: t.TempDir(),
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}
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for _, opt := range opts {
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opt(c)
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}
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c.RunDockerComposeCmdNoCheck(t, "version")
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return c
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}
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// WithEnv sets environment variables that will be passed to commands.
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func WithEnv(env ...string) CLIOption {
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return func(c *CLI) {
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c.env = append(c.env, env...)
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}
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}
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func copyLocalConfig(t testing.TB, configDir string) {
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t.Helper()
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// copy local config.json if exists
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localConfig := filepath.Join(os.Getenv("HOME"), ".docker", "config.json")
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// if no config present just continue
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if _, err := os.Stat(localConfig); err != nil {
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// copy the local config.json to the test config dir
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CopyFile(t, localConfig, filepath.Join(configDir, "config.json"))
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}
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}
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// initializePlugins copies the necessary plugin files to the temporary config
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// directory for the test.
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func initializePlugins(t testing.TB, configDir string) {
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t.Cleanup(func() {
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if t.Failed() {
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if conf, err := os.ReadFile(filepath.Join(configDir, "config.json")); err == nil {
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t.Logf("Config: %s\n", string(conf))
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}
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t.Log("Contents of config dir:")
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for _, p := range dirContents(configDir) {
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t.Logf(" - %s", p)
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}
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}
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})
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assert.NilError(t, os.MkdirAll(filepath.Join(configDir, "cli-plugins"), 0o755),
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"Failed to create cli-plugins directory")
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composePlugin, err := findExecutable(DockerComposeExecutableName)
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if errors.Is(err, fs.ErrNotExist) {
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t.Logf("WARNING: docker-compose cli-plugin not found")
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}
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if err == nil {
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CopyFile(t, composePlugin, filepath.Join(configDir, "cli-plugins", DockerComposeExecutableName))
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buildxPlugin, err := findPluginExecutable(DockerBuildxExecutableName)
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if err != nil {
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t.Logf("WARNING: docker-buildx cli-plugin not found, using default buildx installation.")
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} else {
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CopyFile(t, buildxPlugin, filepath.Join(configDir, "cli-plugins", DockerBuildxExecutableName))
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}
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// We don't need a functional scan plugin, but a valid plugin binary
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CopyFile(t, composePlugin, filepath.Join(configDir, "cli-plugins", DockerScanExecutableName))
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modelPlugin, err := findPluginExecutable(DockerModelExecutableName)
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if err != nil {
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t.Logf("WARNING: docker-model cli-plugin not found")
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} else {
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CopyFile(t, modelPlugin, filepath.Join(configDir, "cli-plugins", DockerModelExecutableName))
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}
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}
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}
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func initializeContextDir(t testing.TB, configDir string) {
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dockerUserDir := ".docker/contexts"
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userDir, err := os.UserHomeDir()
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assert.NilError(t, err, "Failed to get user home directory")
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userContextsDir := filepath.Join(userDir, dockerUserDir)
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if checkExists(userContextsDir) {
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dstContexts := filepath.Join(configDir, "contexts")
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assert.NilError(t, cp.Copy(userContextsDir, dstContexts), "Failed to copy contexts directory")
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}
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}
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func checkExists(path string) bool {
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_, err := os.Stat(path)
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return err == nil
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}
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func dirContents(dir string) []string {
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var res []string
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_ = filepath.Walk(dir, func(path string, info os.FileInfo, err error) error {
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res = append(res, path)
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return nil
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})
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return res
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}
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func findExecutable(executableName string) (string, error) {
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bin := os.Getenv("COMPOSE_E2E_BIN_PATH")
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if bin == "" {
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_, filename, _, _ := runtime.Caller(0)
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buildPath := filepath.Join(filepath.Dir(filename), "..", "..", "bin", "build")
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var err error
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bin, err = filepath.Abs(filepath.Join(buildPath, executableName))
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if err != nil {
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return "", err
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}
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}
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if _, err := os.Stat(bin); err == nil {
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return bin, nil
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}
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return "", fmt.Errorf("looking for %q: %w", bin, fs.ErrNotExist)
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}
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func findPluginExecutable(pluginExecutableName string) (string, error) {
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dockerUserDir := ".docker/cli-plugins"
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userDir, err := os.UserHomeDir()
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if err != nil {
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return "", err
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}
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candidates := []string{
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filepath.Join(userDir, dockerUserDir),
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"/usr/local/lib/docker/cli-plugins",
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"/usr/local/libexec/docker/cli-plugins",
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"/usr/lib/docker/cli-plugins",
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"/usr/libexec/docker/cli-plugins",
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}
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for _, path := range candidates {
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bin, err := filepath.Abs(filepath.Join(path, pluginExecutableName))
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if err != nil {
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return "", err
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}
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if _, err := os.Stat(bin); err == nil {
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return bin, nil
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}
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}
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return "", fmt.Errorf("plugin not found %s: %w", pluginExecutableName, os.ErrNotExist)
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}
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// CopyFile copies a file from a sourceFile to a destinationFile setting permissions to 0755
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func CopyFile(t testing.TB, sourceFile string, destinationFile string) {
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t.Helper()
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src, err := os.Open(sourceFile)
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assert.NilError(t, err, "Failed to open source file: %s")
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//nolint:errcheck
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defer src.Close()
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dst, err := os.OpenFile(destinationFile, os.O_RDWR|os.O_CREATE|os.O_TRUNC, 0o755)
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assert.NilError(t, err, "Failed to open destination file: %s", destinationFile)
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//nolint:errcheck
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defer dst.Close()
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_, err = io.Copy(dst, src)
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assert.NilError(t, err, "Failed to copy file: %s", sourceFile)
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}
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// BaseEnvironment provides the minimal environment variables used across all
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// Docker / Compose commands.
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func (c *CLI) BaseEnvironment() []string {
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env := []string{
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"HOME=" + c.HomeDir,
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"USER=" + os.Getenv("USER"),
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"DOCKER_CONFIG=" + c.ConfigDir,
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"KUBECONFIG=invalid",
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"PATH=" + os.Getenv("PATH"),
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}
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dockerContextEnv, ok := os.LookupEnv("DOCKER_CONTEXT")
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if ok {
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env = append(env, "DOCKER_CONTEXT="+dockerContextEnv)
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}
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if coverdir, ok := os.LookupEnv("GOCOVERDIR"); ok {
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_, filename, _, _ := runtime.Caller(0)
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root := filepath.Join(filepath.Dir(filename), "..", "..")
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coverdir = filepath.Join(root, coverdir)
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env = append(env, fmt.Sprintf("GOCOVERDIR=%s", coverdir))
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}
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return env
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}
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// NewCmd creates a cmd object configured with the test environment set
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func (c *CLI) NewCmd(command string, args ...string) icmd.Cmd {
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return icmd.Cmd{
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Command: append([]string{command}, args...),
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Env: append(c.BaseEnvironment(), c.env...),
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}
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}
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// NewCmdWithEnv creates a cmd object configured with the test environment set with additional env vars
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func (c *CLI) NewCmdWithEnv(envvars []string, command string, args ...string) icmd.Cmd {
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// base env -> CLI overrides -> cmd overrides
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cmdEnv := append(c.BaseEnvironment(), c.env...)
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cmdEnv = append(cmdEnv, envvars...)
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return icmd.Cmd{
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Command: append([]string{command}, args...),
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Env: cmdEnv,
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}
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}
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// MetricsSocket get the path where test metrics will be sent
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func (c *CLI) MetricsSocket() string {
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return filepath.Join(c.ConfigDir, "docker-cli.sock")
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}
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// NewDockerCmd creates a docker cmd without running it
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func (c *CLI) NewDockerCmd(t testing.TB, args ...string) icmd.Cmd {
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t.Helper()
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for _, arg := range args {
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if arg == compose.PluginName {
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t.Fatal("This test called 'RunDockerCmd' for 'compose'. Please prefer 'RunDockerComposeCmd' to be able to test as a plugin and standalone")
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}
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}
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return c.NewCmd(DockerExecutableName, args...)
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}
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// RunDockerOrExitError runs a docker command and returns a result
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func (c *CLI) RunDockerOrExitError(t testing.TB, args ...string) *icmd.Result {
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t.Helper()
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t.Logf("\t[%s] docker %s\n", t.Name(), strings.Join(args, " "))
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return icmd.RunCmd(c.NewDockerCmd(t, args...))
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}
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// RunCmd runs a command, expects no error and returns a result
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func (c *CLI) RunCmd(t testing.TB, args ...string) *icmd.Result {
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t.Helper()
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t.Logf("\t[%s] %s\n", t.Name(), strings.Join(args, " "))
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assert.Assert(t, len(args) >= 1, "require at least one command in parameters")
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res := icmd.RunCmd(c.NewCmd(args[0], args[1:]...))
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res.Assert(t, icmd.Success)
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return res
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}
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// RunCmdInDir runs a command in a given dir, expects no error and returns a result
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func (c *CLI) RunCmdInDir(t testing.TB, dir string, args ...string) *icmd.Result {
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t.Helper()
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t.Logf("\t[%s] %s\n", t.Name(), strings.Join(args, " "))
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assert.Assert(t, len(args) >= 1, "require at least one command in parameters")
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cmd := c.NewCmd(args[0], args[1:]...)
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cmd.Dir = dir
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res := icmd.RunCmd(cmd)
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res.Assert(t, icmd.Success)
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return res
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}
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// RunDockerCmd runs a docker command, expects no error and returns a result
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func (c *CLI) RunDockerCmd(t testing.TB, args ...string) *icmd.Result {
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t.Helper()
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res := c.RunDockerOrExitError(t, args...)
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res.Assert(t, icmd.Success)
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return res
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}
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// RunDockerComposeCmd runs a docker compose command, expects no error and returns a result
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func (c *CLI) RunDockerComposeCmd(t testing.TB, args ...string) *icmd.Result {
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t.Helper()
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res := c.RunDockerComposeCmdNoCheck(t, args...)
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res.Assert(t, icmd.Success)
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return res
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}
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// RunDockerComposeCmdNoCheck runs a docker compose command, don't presume of any expectation and returns a result
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func (c *CLI) RunDockerComposeCmdNoCheck(t testing.TB, args ...string) *icmd.Result {
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t.Helper()
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cmd := c.NewDockerComposeCmd(t, args...)
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cmd.Stdout = os.Stdout
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t.Logf("Running command: %s", strings.Join(cmd.Command, " "))
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return icmd.RunCmd(cmd)
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}
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// NewDockerComposeCmd creates a command object for Compose, either in plugin
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// or standalone mode (based on build tags).
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func (c *CLI) NewDockerComposeCmd(t testing.TB, args ...string) icmd.Cmd {
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t.Helper()
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if composeStandaloneMode {
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return c.NewCmd(ComposeStandalonePath(t), args...)
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}
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args = append([]string{"compose"}, args...)
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return c.NewCmd(DockerExecutableName, args...)
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}
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// ComposeStandalonePath returns the path to the locally-built Compose
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// standalone binary from the repo.
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//
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// This function will fail the test immediately if invoked when not running
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// in standalone test mode.
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func ComposeStandalonePath(t testing.TB) string {
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t.Helper()
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if !composeStandaloneMode {
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t.Fatal("Not running in standalone mode")
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}
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composeBinary, err := findExecutable(DockerComposeExecutableName)
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assert.NilError(t, err, "Could not find standalone Compose binary (%q)",
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DockerComposeExecutableName)
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return composeBinary
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}
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func IsHealthy(service string) func(res *icmd.Result) bool {
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return func(res *icmd.Result) bool {
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type state struct {
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Name string `json:"name"`
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Health string `json:"health"`
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}
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decoder := json.NewDecoder(strings.NewReader(res.Stdout()))
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for decoder.More() {
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ps := state{}
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err := decoder.Decode(&ps)
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if err != nil {
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return false
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}
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if ps.Name == service && ps.Health == "healthy" {
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return true
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}
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}
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return false
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}
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}
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// WaitForCmdResult try to execute a cmd until resulting output matches given predicate
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func (c *CLI) WaitForCmdResult(
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t testing.TB,
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command icmd.Cmd,
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predicate func(*icmd.Result) bool,
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timeout time.Duration,
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delay time.Duration,
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) {
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t.Helper()
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assert.Assert(t, timeout.Nanoseconds() > delay.Nanoseconds(), "timeout must be greater than delay")
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var res *icmd.Result
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checkStopped := func(logt poll.LogT) poll.Result {
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fmt.Printf("\t[%s] %s\n", t.Name(), strings.Join(command.Command, " "))
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res = icmd.RunCmd(command)
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if !predicate(res) {
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return poll.Continue("Cmd output did not match requirement: %q", res.Combined())
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}
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return poll.Success()
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}
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poll.WaitOn(t, checkStopped, poll.WithDelay(delay), poll.WithTimeout(timeout))
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}
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// WaitForCondition wait for predicate to execute to true
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func (c *CLI) WaitForCondition(
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t testing.TB,
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predicate func() (bool, string),
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timeout time.Duration,
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delay time.Duration,
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) {
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t.Helper()
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checkStopped := func(logt poll.LogT) poll.Result {
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pass, description := predicate()
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if !pass {
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return poll.Continue("Condition not met: %q", description)
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}
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return poll.Success()
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}
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poll.WaitOn(t, checkStopped, poll.WithDelay(delay), poll.WithTimeout(timeout))
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}
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// Lines split output into lines
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func Lines(output string) []string {
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return strings.Split(strings.TrimSpace(output), "\n")
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}
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// HTTPGetWithRetry performs an HTTP GET on an `endpoint`, using retryDelay also as a request timeout.
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// In the case of an error or the response status is not the expected one, it retries the same request,
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// returning the response body as a string (empty if we could not reach it)
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func HTTPGetWithRetry(
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t testing.TB,
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endpoint string,
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expectedStatus int,
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retryDelay time.Duration,
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timeout time.Duration,
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) string {
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t.Helper()
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var (
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r *http.Response
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err error
|
|
)
|
|
client := &http.Client{
|
|
Timeout: retryDelay,
|
|
}
|
|
fmt.Printf("\t[%s] GET %s\n", t.Name(), endpoint)
|
|
checkUp := func(t poll.LogT) poll.Result {
|
|
r, err = client.Get(endpoint)
|
|
if err != nil {
|
|
return poll.Continue("reaching %q: Error %s", endpoint, err.Error())
|
|
}
|
|
if r.StatusCode == expectedStatus {
|
|
return poll.Success()
|
|
}
|
|
return poll.Continue("reaching %q: %d != %d", endpoint, r.StatusCode, expectedStatus)
|
|
}
|
|
poll.WaitOn(t, checkUp, poll.WithDelay(retryDelay), poll.WithTimeout(timeout))
|
|
if r != nil {
|
|
b, err := io.ReadAll(r.Body)
|
|
assert.NilError(t, err)
|
|
return string(b)
|
|
}
|
|
return ""
|
|
}
|
|
|
|
func (c *CLI) cleanupWithDown(t testing.TB, project string, args ...string) {
|
|
t.Helper()
|
|
c.RunDockerComposeCmd(t, append([]string{"-p", project, "down", "-v", "--remove-orphans"}, args...)...)
|
|
}
|