mirror of
https://github.com/woodpecker-ci/woodpecker.git
synced 2024-12-26 18:30:30 +00:00
550 lines
15 KiB
Go
550 lines
15 KiB
Go
package build
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import (
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"fmt"
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"io"
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"io/ioutil"
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"os"
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"os/exec"
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"path/filepath"
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"strings"
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"time"
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"github.com/drone/drone/shared/build/buildfile"
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"github.com/drone/drone/shared/build/docker"
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"github.com/drone/drone/shared/build/dockerfile"
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"github.com/drone/drone/shared/build/log"
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"github.com/drone/drone/shared/build/proxy"
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"github.com/drone/drone/shared/build/repo"
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"github.com/drone/drone/shared/build/script"
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)
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// BuildState stores information about a build
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// process including the Exit status and various
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// Runtime statistics (coming soon).
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type BuildState struct {
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Started int64
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Finished int64
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ExitCode int
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// we may eventually include detailed resource
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// usage statistics, including including CPU time,
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// Max RAM, Max Swap, Disk space, and more.
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}
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func New(dockerClient *docker.Client) *Builder {
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return &Builder{
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dockerClient: dockerClient,
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}
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}
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// Builder represents a build process being prepared
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// to run.
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type Builder struct {
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// Image specifies the Docker Image that will be
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// used to virtualize the Build process.
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Build *script.Build
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// Source specifies the Repository path of the code
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// that we are testing.
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//
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// The source repository may be a local repository
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// on the current filesystem, or a remote repository
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// on GitHub, Bitbucket, etc.
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Repo *repo.Repo
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// Key is an identify file, such as an RSA private key, that
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// will be copied into the environments ~/.ssh/id_rsa file.
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Key []byte
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// Timeout is the maximum amount of to will wait for a process
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// to exit. The default is no timeout.
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Timeout time.Duration
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// Privileged indicates the build should be executed in privileged
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// mode. The default is false.
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Privileged bool
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// Stdout specifies the builds's standard output.
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//
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// If stdout is nil, Run connects the corresponding file descriptor
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// to the null device (os.DevNull).
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Stdout io.Writer
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// BuildState contains information about an exited build,
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// available after a call to Run.
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BuildState *BuildState
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// Docker image that was created for
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// this build.
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image *docker.Image
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// Docker container was that created
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// for this build.
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container *docker.Run
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// Docker containers created for the
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// specified services and linked to
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// this build.
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services []*docker.Container
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dockerClient *docker.Client
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}
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func (b *Builder) Run() error {
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// teardown will remove the Image and stop and
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// remove the service containers after the
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// build is done running.
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defer b.teardown()
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// setup will create the Image and supporting
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// service containers.
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if err := b.setup(); err != nil {
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return err
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}
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// make sure build state is not nil
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b.BuildState = &BuildState{}
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b.BuildState.ExitCode = 0
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b.BuildState.Started = time.Now().UTC().Unix()
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c := make(chan error, 1)
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go func() {
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c <- b.run()
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}()
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// wait for either a) the job to complete or b) the job to timeout
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select {
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case err := <-c:
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return err
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case <-time.After(b.Timeout):
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log.Errf("time limit exceeded for build %s", b.Build.Name)
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b.BuildState.ExitCode = 124
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b.BuildState.Finished = time.Now().UTC().Unix()
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return nil
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}
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}
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func (b *Builder) setup() error {
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// temp directory to store all files required
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// to generate the Docker image.
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dir, err := ioutil.TempDir("", "drone-")
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if err != nil {
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return err
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}
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// clean up after our mess.
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defer os.RemoveAll(dir)
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// make sure the image isn't empty. this would be bad
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if len(b.Build.Image) == 0 {
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log.Err("Fatal Error, No Docker Image specified")
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return fmt.Errorf("Error: missing Docker image")
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}
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// if we're using an alias for the build name we
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// should substitute it now
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if alias, ok := builders[b.Build.Image]; ok {
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b.Build.Image = alias.Tag
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}
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// if this is a local repository we should symlink
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// to the source code in our temp directory
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if b.Repo.IsLocal() {
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// this is where we used to use symlinks. We should
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// talk to the docker team about this, since copying
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// the entire repository is slow :(
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//
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// see https://github.com/dotcloud/docker/pull/3567
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//src := filepath.Join(dir, "src")
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//err = os.Symlink(b.Repo.Path, src)
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//if err != nil {
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// return err
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//}
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src := filepath.Join(dir, "src")
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cmd := exec.Command("cp", "-a", b.Repo.Path, src)
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if err := cmd.Run(); err != nil {
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return fmt.Errorf("Error: Unable to copy repository. %s", err)
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}
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}
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// start all services required for the build
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// that will get linked to the container.
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for _, service := range b.Build.Services {
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// Parse the name of the Docker image
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// And then construct a fully qualified image name
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owner, name, tag := parseImageName(service)
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cname := fmt.Sprintf("%s/%s:%s", owner, name, tag)
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// Get the image info
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img, err := b.dockerClient.Images.Inspect(cname)
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if err != nil {
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// Get the image if it doesn't exist
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if err := b.dockerClient.Images.Pull(cname); err != nil {
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return fmt.Errorf("Error: Unable to pull image %s", cname)
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}
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img, err = b.dockerClient.Images.Inspect(cname)
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if err != nil {
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return fmt.Errorf("Error: Invalid or unknown image %s", cname)
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}
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}
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// debugging
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log.Infof("starting service container %s", cname)
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// Run the contianer
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run, err := b.dockerClient.Containers.RunDaemonPorts(cname, img.Config.ExposedPorts)
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if err != nil {
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return err
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}
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// Get the container info
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info, err := b.dockerClient.Containers.Inspect(run.ID)
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if err != nil {
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// on error kill the container since it hasn't yet been
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// added to the array and would therefore not get
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// removed in the defer statement.
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b.dockerClient.Containers.Stop(run.ID, 10)
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b.dockerClient.Containers.Remove(run.ID)
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return err
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}
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// Add the running service to the list
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b.services = append(b.services, info)
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}
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if err := b.writeBuildScript(dir); err != nil {
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return err
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}
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if err := b.writeProxyScript(dir); err != nil {
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return err
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}
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if err := b.writeDockerfile(dir); err != nil {
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return err
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}
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// debugging
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log.Info("creating build image")
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// check for build container (ie bradrydzewski/go:1.2)
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// and download if it doesn't already exist
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if _, err := b.dockerClient.Images.Inspect(b.Build.Image); err == docker.ErrNotFound {
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// download the image if it doesn't exist
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if err := b.dockerClient.Images.Pull(b.Build.Image); err != nil {
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return fmt.Errorf("Error: Unable to pull image %s. %s", b.Build.Image, err)
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}
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} else if err != nil {
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log.Errf("failed to inspect image %s", b.Build.Image)
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}
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// create the Docker image
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id := createUID()
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if err := b.dockerClient.Images.Build(id, dir); err != nil {
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return err
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}
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// debugging
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log.Infof("copying repository to %s", b.Repo.Dir)
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// get the image details
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b.image, err = b.dockerClient.Images.Inspect(id)
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if err != nil {
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// if we have problems with the image make sure
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// we remove it before we exit
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log.Errf("failed to verify build image %s", id)
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return err
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}
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return nil
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}
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// teardown is a helper function that we can use to
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// stop and remove the build container, its supporting image,
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// and the supporting service containers.
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func (b *Builder) teardown() error {
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defer b.dockerClient.CloseIdleConnections()
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// stop and destroy the container
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if b.container != nil {
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// debugging
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log.Info("removing build container")
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// stop the container, ignore error message
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b.dockerClient.Containers.Stop(b.container.ID, 15)
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// remove the container, ignore error message
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if err := b.dockerClient.Containers.Remove(b.container.ID); err != nil {
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log.Errf("failed to delete build container %s", b.container.ID)
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}
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}
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// stop and destroy the container services
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for i, container := range b.services {
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// debugging
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log.Infof("removing service container %s", b.Build.Services[i])
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// stop the service container, ignore the error
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b.dockerClient.Containers.Stop(container.ID, 15)
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// remove the service container, ignore the error
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if err := b.dockerClient.Containers.Remove(container.ID); err != nil {
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log.Errf("failed to delete service container %s", container.ID)
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}
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}
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// destroy the underlying image
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if b.image != nil {
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// debugging
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log.Info("removing build image")
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if _, err := b.dockerClient.Images.Remove(b.image.ID); err != nil {
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log.Errf("failed to completely delete build image %s. %s", b.image.ID, err.Error())
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}
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}
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return nil
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}
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func (b *Builder) run() error {
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// create and run the container
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conf := docker.Config{
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Hostname: script.DockerHostname(b.Build.Docker),
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Image: b.image.ID,
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AttachStdin: false,
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AttachStdout: true,
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AttachStderr: true,
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}
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// configure if Docker should run in privileged mode
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host := docker.HostConfig{
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Privileged: (b.Privileged && len(b.Repo.PR) == 0),
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}
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if host.Privileged {
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host.NetworkMode = script.DockerNetworkMode(b.Build.Docker)
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}
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// debugging
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log.Noticef("starting build %s", b.Build.Name)
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// link service containers
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for i, service := range b.services {
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// convert name of the image to a slug
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_, name, _ := parseImageName(b.Build.Services[i])
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// link the service container to our
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// build container.
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host.Links = append(host.Links, service.Name[1:]+":"+name)
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}
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// where are temp files going to go?
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tmpPath := "/tmp/drone"
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if len(os.Getenv("DRONE_TMP")) > 0 {
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tmpPath = os.Getenv("DRONE_TMP")
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}
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log.Infof("temp directory is %s", tmpPath)
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if err := os.MkdirAll(tmpPath, 0777); err != nil {
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return fmt.Errorf("Failed to create temp directory at %s: %s", tmpPath, err)
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}
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// link cached volumes
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conf.Volumes = make(map[string]struct{})
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for _, volume := range b.Build.Cache {
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name := filepath.Clean(b.Repo.Name)
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branch := filepath.Clean(b.Repo.Branch)
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volume := filepath.Clean(volume)
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// with Docker, volumes must be an absolute path. If an absolute
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// path is not provided, then assume it is for the repository
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// working directory.
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if strings.HasPrefix(volume, "/") == false {
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volume = filepath.Join(b.Repo.Dir, volume)
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}
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// local cache path on the host machine
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// this path is going to be really long
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hostpath := filepath.Join(tmpPath, name, branch, volume)
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// check if the volume is created
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if _, err := os.Stat(hostpath); err != nil {
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// if does not exist then create
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os.MkdirAll(hostpath, 0777)
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}
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host.Binds = append(host.Binds, hostpath+":"+volume)
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conf.Volumes[volume] = struct{}{}
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// debugging
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log.Infof("mounting volume %s:%s", hostpath, volume)
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}
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// create the container from the image
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run, err := b.dockerClient.Containers.Create(&conf)
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if err != nil {
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return fmt.Errorf("Error: Failed to create build container. %s", err)
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}
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// cache instance of docker.Run
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b.container = run
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// attach to the container
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go func() {
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b.dockerClient.Containers.Attach(run.ID, &writer{b.Stdout, 0})
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}()
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// start the container
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if err := b.dockerClient.Containers.Start(run.ID, &host); err != nil {
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b.BuildState.ExitCode = 1
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b.BuildState.Finished = time.Now().UTC().Unix()
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return fmt.Errorf("Error: Failed to start build container. %s", err)
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}
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// wait for the container to stop
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wait, err := b.dockerClient.Containers.Wait(run.ID)
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if err != nil {
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b.BuildState.ExitCode = 1
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b.BuildState.Finished = time.Now().UTC().Unix()
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return fmt.Errorf("Error: Failed to wait for build container. %s", err)
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}
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// set completion time
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b.BuildState.Finished = time.Now().UTC().Unix()
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// get the exit code if possible
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b.BuildState.ExitCode = wait.StatusCode
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return nil
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}
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// writeDockerfile is a helper function that generates a
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// Dockerfile and writes to the builds temporary directory
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// so that it can be used to create the Image.
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func (b *Builder) writeDockerfile(dir string) error {
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var dockerfile = dockerfile.New(b.Build.Image)
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dockerfile.WriteWorkdir(b.Repo.Dir)
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dockerfile.WriteAdd("drone", "/usr/local/bin/")
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// upload source code if repository is stored
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// on the host machine
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if b.Repo.IsRemote() == false {
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dockerfile.WriteAdd("src", filepath.Join(b.Repo.Dir))
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}
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switch {
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case strings.HasPrefix(b.Build.Image, "bradrydzewski/"),
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strings.HasPrefix(b.Build.Image, "drone/"):
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// the default user for all official Drone image
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// is the "ubuntu" user, since all build images
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// inherit from the ubuntu cloud ISO
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dockerfile.WriteUser("ubuntu")
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dockerfile.WriteEnv("LOGNAME", "ubuntu")
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dockerfile.WriteEnv("HOME", "/home/ubuntu")
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dockerfile.WriteRun("sudo chown -R ubuntu:ubuntu /var/cache/drone")
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dockerfile.WriteRun("sudo chown -R ubuntu:ubuntu /usr/local/bin/drone")
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default:
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// all other images are assumed to use
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// the root user.
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dockerfile.WriteUser("root")
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dockerfile.WriteEnv("LOGNAME", "root")
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dockerfile.WriteEnv("HOME", "/root")
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}
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dockerfile.WriteAdd("proxy.sh", "/etc/drone.d/")
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dockerfile.WriteEntrypoint("/bin/bash -e /usr/local/bin/drone")
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// write the Dockerfile to the temporary directory
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return ioutil.WriteFile(filepath.Join(dir, "Dockerfile"), dockerfile.Bytes(), 0700)
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}
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// writeBuildScript is a helper function that
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// will generate the build script file in the builder's
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// temp directory to be added to the Image.
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func (b *Builder) writeBuildScript(dir string) error {
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f := buildfile.New()
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// add environment variables for user env
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f.WriteEnv("LANG", "en_US.UTF-8")
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f.WriteEnv("LANGUAGE", "en_US:en")
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f.WriteEnv("TERM", "xterm")
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f.WriteEnv("GOPATH", "/var/cache/drone")
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f.WriteEnv("SHELL", "/bin/bash")
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// add environment variables about the build
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f.WriteEnv("CI", "true")
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f.WriteEnv("DRONE", "true")
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f.WriteEnv("DRONE_REMOTE", b.Repo.Path)
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f.WriteEnv("DRONE_BRANCH", b.Repo.Branch)
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f.WriteEnv("DRONE_COMMIT", b.Repo.Commit)
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f.WriteEnv("DRONE_PR", b.Repo.PR)
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f.WriteEnv("DRONE_BUILD_DIR", b.Repo.Dir)
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// add environment variables for code coverage
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// systems, like coveralls.
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f.WriteEnv("CI_NAME", "DRONE")
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f.WriteEnv("CI_BUILD_URL", "")
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f.WriteEnv("CI_REMOTE", b.Repo.Path)
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f.WriteEnv("CI_BRANCH", b.Repo.Branch)
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f.WriteEnv("CI_PULL_REQUEST", b.Repo.PR)
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// add /etc/hosts entries
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for _, mapping := range b.Build.Hosts {
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f.WriteHost(mapping)
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}
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if len(b.Key) != 0 {
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f.WriteFile("$HOME/.ssh/id_rsa", b.Key, 600)
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}
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// if the repository is remote then we should
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// add the commands to the build script to
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// clone the repository
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if b.Repo.IsRemote() {
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for _, cmd := range b.Repo.Commands() {
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f.WriteCmd(cmd)
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}
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}
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// if the commit is for merging a pull request
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// we should only execute the build commands,
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// and omit the deploy and publish commands.
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if len(b.Repo.PR) == 0 {
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b.Build.Write(f, b.Repo)
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} else {
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// only write the build commands
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b.Build.WriteBuild(f)
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}
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scriptfilePath := filepath.Join(dir, "drone")
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return ioutil.WriteFile(scriptfilePath, f.Bytes(), 0700)
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}
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// writeProxyScript is a helper function that
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// will generate the proxy.sh file in the builder's
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// temp directory to be added to the Image.
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func (b *Builder) writeProxyScript(dir string) error {
|
|
var proxyfile = proxy.Proxy{}
|
|
|
|
// loop through services so that we can
|
|
// map ip address to localhost
|
|
for _, container := range b.services {
|
|
// create an entry for each port
|
|
for port := range container.NetworkSettings.Ports {
|
|
proxyfile.Set(port.Port(), container.NetworkSettings.IPAddress)
|
|
}
|
|
}
|
|
|
|
// write the proxyfile to the temp directory
|
|
proxyfilePath := filepath.Join(dir, "proxy.sh")
|
|
return ioutil.WriteFile(proxyfilePath, proxyfile.Bytes(), 0755)
|
|
}
|