394 lines
12 KiB
Go
394 lines
12 KiB
Go
package qemu
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import (
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"context"
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"fmt"
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"log"
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"path/filepath"
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"strings"
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"github.com/hashicorp/go-version"
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"github.com/hashicorp/packer/helper/multistep"
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"github.com/hashicorp/packer/packer"
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"github.com/hashicorp/packer/packer-plugin-sdk/template/interpolate"
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)
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// stepRun runs the virtual machine
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type stepRun struct {
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DiskImage bool
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atLeastVersion2 bool
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ui packer.Ui
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}
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func (s *stepRun) Run(ctx context.Context, state multistep.StateBag) multistep.StepAction {
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config := state.Get("config").(*Config)
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driver := state.Get("driver").(Driver)
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s.ui = state.Get("ui").(packer.Ui)
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// Figure out version of qemu; store on step for later use
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rawVersion, err := driver.Version()
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if err != nil {
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err := fmt.Errorf("Error determining qemu version: %s", err)
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s.ui.Error(err.Error())
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return multistep.ActionHalt
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}
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qemuVersion, err := version.NewVersion(rawVersion)
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if err != nil {
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err := fmt.Errorf("Error parsing qemu version: %s", err)
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s.ui.Error(err.Error())
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return multistep.ActionHalt
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}
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v2 := version.Must(version.NewVersion("2.0"))
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s.atLeastVersion2 = qemuVersion.GreaterThanOrEqual(v2)
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// Generate the qemu command
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command, err := s.getCommandArgs(config, state)
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if err != nil {
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err := fmt.Errorf("Error processing QemuArgs: %s", err)
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s.ui.Error(err.Error())
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return multistep.ActionHalt
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}
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// run the qemu command
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if err := driver.Qemu(command...); err != nil {
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err := fmt.Errorf("Error launching VM: %s", err)
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s.ui.Error(err.Error())
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return multistep.ActionHalt
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}
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return multistep.ActionContinue
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}
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func (s *stepRun) Cleanup(state multistep.StateBag) {
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driver := state.Get("driver").(Driver)
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ui := state.Get("ui").(packer.Ui)
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if err := driver.Stop(); err != nil {
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ui.Error(fmt.Sprintf("Error shutting down VM: %s", err))
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}
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}
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func (s *stepRun) getDefaultArgs(config *Config, state multistep.StateBag) map[string]interface{} {
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defaultArgs := make(map[string]interface{})
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// Configure "boot" arguement
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// Run command is different depending whether we're booting from an
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// installation CD or a pre-baked image
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bootDrive := "once=d"
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message := "Starting VM, booting from CD-ROM"
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if s.DiskImage {
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bootDrive = "c"
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message = "Starting VM, booting disk image"
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}
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s.ui.Say(message)
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defaultArgs["-boot"] = bootDrive
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// configure "-qmp" arguments
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if config.QMPEnable {
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defaultArgs["-qmp"] = fmt.Sprintf("unix:%s,server,nowait", config.QMPSocketPath)
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}
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// configure "-name" arguments
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defaultArgs["-name"] = config.VMName
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// Configure "-machine" arguments
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if config.Accelerator == "none" {
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defaultArgs["-machine"] = fmt.Sprintf("type=%s", config.MachineType)
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s.ui.Message("WARNING: The VM will be started with no hardware acceleration.\n" +
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"The installation may take considerably longer to finish.\n")
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} else {
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defaultArgs["-machine"] = fmt.Sprintf("type=%s,accel=%s",
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config.MachineType, config.Accelerator)
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}
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// Configure "-netdev" arguments
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defaultArgs["-netdev"] = fmt.Sprintf("bridge,id=user.0,br=%s", config.NetBridge)
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if config.NetBridge == "" {
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defaultArgs["-netdev"] = fmt.Sprintf("user,id=user.0")
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if config.CommConfig.Comm.Type != "none" {
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commHostPort := state.Get("commHostPort").(int)
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defaultArgs["-netdev"] = fmt.Sprintf("user,id=user.0,hostfwd=tcp::%v-:%d", commHostPort, config.CommConfig.Comm.Port())
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}
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}
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// Configure "-vnc" arguments
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// vncPort is always set in stepConfigureVNC, so we don't need to
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// defensively assert
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vncPort := state.Get("vnc_port").(int)
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vncIP := config.VNCBindAddress
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vncPort = vncPort - config.VNCPortMin
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vnc := fmt.Sprintf("%s:%d", vncIP, vncPort)
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if config.VNCUsePassword {
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vnc = fmt.Sprintf("%s:%d,password", vncIP, vncPort)
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}
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defaultArgs["-vnc"] = vnc
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// Track the connection for the user
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vncPass, _ := state.Get("vnc_password").(string)
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message = getVncConnectionMessage(config.Headless, vnc, vncPass)
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if message != "" {
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s.ui.Message(message)
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}
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// Configure "-m" memory argument
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defaultArgs["-m"] = fmt.Sprintf("%dM", config.MemorySize)
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// Configure "-smp" processor hardware arguments
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if config.CpuCount > 1 {
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defaultArgs["-smp"] = fmt.Sprintf("cpus=%d,sockets=%d", config.CpuCount, config.CpuCount)
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}
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// Configure "-fda" floppy disk attachment
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if floppyPathRaw, ok := state.GetOk("floppy_path"); ok {
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defaultArgs["-fda"] = floppyPathRaw.(string)
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} else {
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log.Println("Qemu Builder has no floppy files, not attaching a floppy.")
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}
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// Configure GUI display
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if !config.Headless {
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if s.atLeastVersion2 {
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// FIXME: "none" is a valid display option in qemu but we have
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// departed from the qemu usage here to instaed mean "let qemu
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// set a reasonable default". We need to deprecate this behavior
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// and let users just set "UseDefaultDisplay" if they want to let
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// qemu do its thing.
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if len(config.Display) > 0 && config.Display != "none" {
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defaultArgs["-display"] = config.Display
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} else if !config.UseDefaultDisplay {
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defaultArgs["-display"] = "gtk"
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}
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} else {
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s.ui.Message("WARNING: The version of qemu on your host doesn't support display mode.\n" +
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"The display parameter will be ignored.")
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}
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}
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deviceArgs, driveArgs := s.getDeviceAndDriveArgs(config, state)
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defaultArgs["-device"] = deviceArgs
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defaultArgs["-drive"] = driveArgs
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return defaultArgs
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}
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func getVncConnectionMessage(headless bool, vnc string, vncPass string) string {
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// Configure GUI display
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if headless {
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if vnc == "" {
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return "The VM will be run headless, without a GUI, as configured.\n" +
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"If the run isn't succeeding as you expect, please enable the GUI\n" +
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"to inspect the progress of the build."
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}
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if vncPass != "" {
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return fmt.Sprintf(
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"The VM will be run headless, without a GUI. If you want to\n"+
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"view the screen of the VM, connect via VNC to vnc://%s\n"+
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"with the password: %s", vnc, vncPass)
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}
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return fmt.Sprintf(
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"The VM will be run headless, without a GUI. If you want to\n"+
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"view the screen of the VM, connect via VNC without a password to\n"+
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"vnc://%s", vnc)
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}
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return ""
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}
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func (s *stepRun) getDeviceAndDriveArgs(config *Config, state multistep.StateBag) ([]string, []string) {
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var deviceArgs []string
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var driveArgs []string
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vmName := config.VMName
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imgPath := filepath.Join(config.OutputDir, vmName)
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// Configure virtual hard drives
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if s.atLeastVersion2 {
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// We have different things to attach based on whether we are booting
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// from an iso or a boot image.
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drivesToAttach := []string{}
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if config.DiskImage {
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drivesToAttach = append(drivesToAttach, imgPath)
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}
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diskFullPaths := state.Get("qemu_disk_paths").([]string)
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drivesToAttach = append(drivesToAttach, diskFullPaths...)
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for i, drivePath := range drivesToAttach {
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driveArgumentString := fmt.Sprintf("file=%s,if=%s,cache=%s,discard=%s,format=%s", drivePath, config.DiskInterface, config.DiskCache, config.DiskDiscard, config.Format)
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if config.DiskInterface == "virtio-scsi" {
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// TODO: Megan: Remove this conditional. This, and the code
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// under the TODO below, reproduce the old behavior. While it
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// may be broken, the goal of this commit is to refactor in a way
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// that creates a result that is testably the same as the old
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// code. A pr will follow fixing this broken behavior.
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if i == 0 {
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deviceArgs = append(deviceArgs, fmt.Sprintf("virtio-scsi-pci,id=scsi%d", i))
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}
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// TODO: Megan: When you remove above conditional,
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// set deviceArgs = append(deviceArgs, fmt.Sprintf("scsi-hd,bus=scsi%d.0,drive=drive%d", i, i))
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deviceArgs = append(deviceArgs, fmt.Sprintf("scsi-hd,bus=scsi0.0,drive=drive%d", i))
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driveArgumentString = fmt.Sprintf("if=none,file=%s,id=drive%d,cache=%s,discard=%s,format=%s", drivePath, i, config.DiskCache, config.DiskDiscard, config.Format)
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}
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if config.DetectZeroes != "off" {
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driveArgumentString = fmt.Sprintf("%s,detect-zeroes=%s", driveArgumentString, config.DetectZeroes)
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}
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driveArgs = append(driveArgs, driveArgumentString)
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}
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} else {
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driveArgs = append(driveArgs, fmt.Sprintf("file=%s,if=%s,cache=%s,format=%s", imgPath, config.DiskInterface, config.DiskCache, config.Format))
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}
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deviceArgs = append(deviceArgs, fmt.Sprintf("%s,netdev=user.0", config.NetDevice))
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// Configure virtual CDs
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cdPaths := []string{}
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// Add the installation CD to the run command
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if !config.DiskImage {
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isoPath := state.Get("iso_path").(string)
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cdPaths = append(cdPaths, isoPath)
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}
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// Add our custom CD created from cd_files, if it exists
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cdFilesPath, ok := state.Get("cd_path").(string)
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if ok {
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if cdFilesPath != "" {
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cdPaths = append(cdPaths, cdFilesPath)
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}
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}
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for i, cdPath := range cdPaths {
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if config.CDROMInterface == "" {
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driveArgs = append(driveArgs, fmt.Sprintf("file=%s,index=%d,media=cdrom", cdPath, i))
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} else if config.CDROMInterface == "virtio-scsi" {
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driveArgs = append(driveArgs, fmt.Sprintf("file=%s,if=none,index=%d,id=cdrom%d,media=cdrom", cdPath, i, i))
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deviceArgs = append(deviceArgs, "virtio-scsi-device", fmt.Sprintf("scsi-cd,drive=cdrom%d", i))
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} else {
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driveArgs = append(driveArgs, fmt.Sprintf("file=%s,if=%s,index=%d,id=cdrom%d,media=cdrom", cdPath, config.CDROMInterface, i, i))
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}
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}
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return deviceArgs, driveArgs
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}
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func (s *stepRun) applyUserOverrides(defaultArgs map[string]interface{}, config *Config, state multistep.StateBag) ([]string, error) {
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// Done setting up defaults; time to process user args and defaults together
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// and generate output args
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inArgs := make(map[string][]string)
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if len(config.QemuArgs) > 0 {
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s.ui.Say("Overriding default Qemu arguments with qemuargs template option...")
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commHostPort := 0
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if config.CommConfig.Comm.Type != "none" {
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commHostPort = state.Get("commHostPort").(int)
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}
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httpIp := state.Get("http_ip").(string)
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httpPort := state.Get("http_port").(int)
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type qemuArgsTemplateData struct {
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HTTPIP string
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HTTPPort int
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HTTPDir string
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OutputDir string
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Name string
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SSHHostPort int
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}
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ictx := config.ctx
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ictx.Data = qemuArgsTemplateData{
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HTTPIP: httpIp,
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HTTPPort: httpPort,
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HTTPDir: config.HTTPDir,
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OutputDir: config.OutputDir,
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Name: config.VMName,
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SSHHostPort: commHostPort,
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}
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// Interpolate each string in qemuargs
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newQemuArgs, err := processArgs(config.QemuArgs, &ictx)
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if err != nil {
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return nil, err
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}
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// Qemu supports multiple appearances of the same switch. This means
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// each key in the args hash will have an array of string values
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for _, qemuArgs := range newQemuArgs {
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key := qemuArgs[0]
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val := strings.Join(qemuArgs[1:], "")
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if _, ok := inArgs[key]; !ok {
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inArgs[key] = make([]string, 0)
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}
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if len(val) > 0 {
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inArgs[key] = append(inArgs[key], val)
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}
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}
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}
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// get any remaining missing default args from the default settings
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for key := range defaultArgs {
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if _, ok := inArgs[key]; !ok {
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arg := make([]string, 1)
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switch defaultArgs[key].(type) {
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case string:
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arg[0] = defaultArgs[key].(string)
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case []string:
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arg = defaultArgs[key].([]string)
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}
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inArgs[key] = arg
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}
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}
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// Check if we are missing the netDevice #6804
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if x, ok := inArgs["-device"]; ok {
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if !strings.Contains(strings.Join(x, ""), config.NetDevice) {
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inArgs["-device"] = append(inArgs["-device"], fmt.Sprintf("%s,netdev=user.0", config.NetDevice))
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}
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}
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// Flatten to array of strings
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outArgs := make([]string, 0)
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for key, values := range inArgs {
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if len(values) > 0 {
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for idx := range values {
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outArgs = append(outArgs, key, values[idx])
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}
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} else {
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outArgs = append(outArgs, key)
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}
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}
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return outArgs, nil
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}
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func (s *stepRun) getCommandArgs(config *Config, state multistep.StateBag) ([]string, error) {
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defaultArgs := s.getDefaultArgs(config, state)
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return s.applyUserOverrides(defaultArgs, config, state)
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}
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func processArgs(args [][]string, ctx *interpolate.Context) ([][]string, error) {
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var err error
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if args == nil {
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return make([][]string, 0), err
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}
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newArgs := make([][]string, len(args))
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for argsIdx, rowArgs := range args {
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parms := make([]string, len(rowArgs))
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newArgs[argsIdx] = parms
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for i, parm := range rowArgs {
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parms[i], err = interpolate.Render(parm, ctx)
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if err != nil {
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return nil, err
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}
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}
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}
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return newArgs, err
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}
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