173 lines
5.2 KiB
Go
173 lines
5.2 KiB
Go
package common
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import (
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"context"
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"fmt"
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"log"
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"os"
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"strconv"
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"time"
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"github.com/hashicorp/packer/helper/communicator"
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"github.com/hashicorp/packer/helper/multistep"
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"github.com/hashicorp/packer/packer"
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)
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// StepProvision runs the provisioners.
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//
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// Uses:
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// communicator packer.Communicator
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// hook packer.Hook
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// ui packer.Ui
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//
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// Produces:
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// <nothing>
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const HttpIPNotImplemented = "ERR_HTTP_IP_NOT_IMPLEMENTED_BY_BUILDER"
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const HttpPortNotImplemented = "ERR_HTTP_PORT_NOT_IMPLEMENTED_BY_BUILDER"
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const HttpAddrNotImplemented = "ERR_HTTP_ADDR_NOT_IMPLEMENTED_BY_BUILDER"
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func PopulateProvisionHookData(state multistep.StateBag) map[string]interface{} {
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hookData := make(map[string]interface{})
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// Load Builder hook data from state, if it has been set.
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hd, ok := state.GetOk("generated_data")
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if ok {
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hookData = hd.(map[string]interface{})
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}
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// Warn user that the id isn't implemented
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hookData["ID"] = "ERR_ID_NOT_IMPLEMENTED_BY_BUILDER"
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// instance_id is placed in state by the builders.
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// Not yet implemented in Chroot, lxc/lxd, Azure, Qemu.
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// Implemented in most others including digitalOcean (droplet id),
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// docker (container_id), and clouds which use "server" internally instead
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// of instance.
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id, ok := state.GetOk("instance_id")
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if ok {
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hookData["ID"] = id
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}
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hookData["PackerRunUUID"] = os.Getenv("PACKER_RUN_UUID")
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// Packer HTTP info
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hookData["PackerHTTPIP"] = HttpIPNotImplemented
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hookData["PackerHTTPPort"] = HttpPortNotImplemented
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hookData["PackerHTTPAddr"] = HttpAddrNotImplemented
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httpPort, okPort := state.GetOk("http_port")
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if okPort {
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hookData["PackerHTTPPort"] = strconv.Itoa(httpPort.(int))
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}
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httIP, okIP := state.GetOk("http_ip")
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if okIP {
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hookData["PackerHTTPIP"] = httIP.(string)
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}
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if okPort && okIP {
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hookData["PackerHTTPAddr"] = fmt.Sprintf("%s:%s", hookData["PackerHTTPIP"], hookData["PackerHTTPPort"])
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}
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// Read communicator data into hook data
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comm, ok := state.GetOk("communicator_config")
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if !ok {
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log.Printf("Unable to load communicator config from state to populate provisionHookData")
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return hookData
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}
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commConf := comm.(*communicator.Config)
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// Loop over all field values and retrieve them from the ssh config
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hookData["Host"] = commConf.Host()
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hookData["Port"] = commConf.Port()
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hookData["User"] = commConf.User()
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hookData["Password"] = commConf.Password()
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hookData["ConnType"] = commConf.Type
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hookData["SSHPublicKey"] = string(commConf.SSHPublicKey)
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hookData["SSHPrivateKey"] = string(commConf.SSHPrivateKey)
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hookData["SSHPrivateKeyFile"] = commConf.SSHPrivateKeyFile
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hookData["SSHAgentAuth"] = commConf.SSHAgentAuth
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// Backwards compatibility; in practice, WinRMPassword is fulfilled by
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// Password.
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hookData["WinRMPassword"] = commConf.WinRMPassword
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return hookData
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}
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type StepProvision struct {
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Comm packer.Communicator
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}
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func (s *StepProvision) runWithHook(ctx context.Context, state multistep.StateBag, hooktype string) multistep.StepAction {
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// hooktype will be either packer.HookProvision or packer.HookCleanupProvision
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comm := s.Comm
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if comm == nil {
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raw, ok := state.Get("communicator").(packer.Communicator)
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if ok {
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comm = raw.(packer.Communicator)
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}
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}
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hook := state.Get("hook").(packer.Hook)
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ui := state.Get("ui").(packer.Ui)
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hookData := PopulateProvisionHookData(state)
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// Update state generated_data with complete hookData
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// to make them accessible by post-processors
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state.Put("generated_data", hookData)
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// Run the provisioner in a goroutine so we can continually check
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// for cancellations...
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if hooktype == packer.HookProvision {
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log.Println("Running the provision hook")
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} else if hooktype == packer.HookCleanupProvision {
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ui.Say("Provisioning step had errors: Running the cleanup provisioner, if present...")
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}
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errCh := make(chan error, 1)
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go func() {
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errCh <- hook.Run(ctx, hooktype, ui, comm, hookData)
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}()
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for {
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select {
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case err := <-errCh:
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if err != nil {
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if hooktype == packer.HookProvision {
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// We don't overwrite the error if it's a cleanup
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// provisioner being run.
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state.Put("error", err)
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} else if hooktype == packer.HookCleanupProvision {
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origErr := state.Get("error").(error)
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state.Put("error", fmt.Errorf("Cleanup failed: %s. "+
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"Original Provisioning error: %s", err, origErr))
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}
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return multistep.ActionHalt
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}
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return multistep.ActionContinue
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case <-ctx.Done():
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log.Printf("Cancelling provisioning due to context cancellation: %s", ctx.Err())
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return multistep.ActionHalt
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case <-time.After(1 * time.Second):
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if _, ok := state.GetOk(multistep.StateCancelled); ok {
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log.Println("Cancelling provisioning due to interrupt...")
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return multistep.ActionHalt
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}
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}
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}
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}
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func (s *StepProvision) Run(ctx context.Context, state multistep.StateBag) multistep.StepAction {
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return s.runWithHook(ctx, state, packer.HookProvision)
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}
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func (s *StepProvision) Cleanup(state multistep.StateBag) {
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// We have a "final" provisioner that gets defined by "error-cleanup-provisioner"
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// which we only call if there's an error during the provision run and
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// the "error-cleanup-provisioner" is defined.
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if _, ok := state.GetOk("error"); ok {
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s.runWithHook(context.Background(), state, packer.HookCleanupProvision)
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}
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}
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