mirror of
https://github.com/linka-cloud/d2vm.git
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Adphi
8505dbd02a
refactor: move qemu to its own package tests: implements end to end tests for the convert command with the following images: alpine:3.17, ubuntu:20.04, debian:11, centos:8 Signed-off-by: Adphi <philippe.adrien.nousse@gmail.com>
364 lines
9.0 KiB
Go
364 lines
9.0 KiB
Go
package qemu
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import (
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"context"
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"crypto/rand"
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"fmt"
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"net"
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"os"
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"os/exec"
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"runtime"
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"strconv"
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"strings"
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"github.com/google/uuid"
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log "github.com/sirupsen/logrus"
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)
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const (
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NetworkingNone = "none"
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NetworkingUser = "user"
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NetworkingTap = "tap"
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NetworkingBridge = "bridge"
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NetworkingDefault = NetworkingUser
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)
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var (
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defaultArch string
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defaultAccel string
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)
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func init() {
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switch runtime.GOARCH {
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case "arm64":
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defaultArch = "aarch64"
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case "amd64":
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defaultArch = "x86_64"
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case "s390x":
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defaultArch = "s390x"
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}
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switch {
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case runtime.GOARCH == "s390x":
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defaultAccel = "kvm"
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case haveKVM():
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defaultAccel = "kvm:tcg"
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case runtime.GOOS == "darwin":
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defaultAccel = "hvf:tcg"
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}
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}
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func Run(ctx context.Context, path string, opts ...Option) error {
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config := &config{}
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for _, o := range opts {
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o(config)
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}
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config.path = path
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// Generate UUID, so that /sys/class/dmi/id/product_uuid is populated
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config.uuid = uuid.New()
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// These envvars override the corresponding command line
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// options. So this must remain after the `flags.Parse` above.
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// accel = GetStringValue("LINUXKIT_QEMU_ACCEL", accel, "")
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if config.arch == "" {
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config.arch = defaultArch
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}
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if config.accel == "" {
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config.accel = defaultAccel
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}
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if _, err := os.Stat(config.path); err != nil {
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return err
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}
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if config.cpus == 0 {
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config.cpus = 1
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}
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if config.memory == 0 {
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config.memory = 1024
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}
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for i, d := range config.disks {
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id := ""
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if i != 0 {
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id = strconv.Itoa(i)
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}
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if d.Size != 0 && d.Format == "" {
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d.Format = "qcow2"
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}
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if d.Size != 0 && d.Path == "" {
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d.Path = "disk" + id + ".img"
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}
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if d.Path == "" {
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return fmt.Errorf("disk specified with no size or name")
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}
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config.disks[i] = d
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}
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config.disks = append([]Disk{{Path: config.path}}, config.disks...)
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if config.networking == "" || config.networking == "default" {
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dflt := NetworkingDefault
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config.networking = dflt
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}
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netMode := strings.SplitN(config.networking, ",", 2)
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switch netMode[0] {
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case NetworkingUser:
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config.netdevConfig = "user,id=t0"
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case NetworkingTap:
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if len(netMode) != 2 {
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return fmt.Errorf("Not enough arguments for %q networking mode", NetworkingTap)
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}
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if len(config.publishedPorts) != 0 {
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return fmt.Errorf("Port publishing requires %q networking mode", NetworkingUser)
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}
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config.netdevConfig = fmt.Sprintf("tap,id=t0,ifname=%s,script=no,downscript=no", netMode[1])
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case NetworkingBridge:
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if len(netMode) != 2 {
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return fmt.Errorf("Not enough arguments for %q networking mode", NetworkingBridge)
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}
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if len(config.publishedPorts) != 0 {
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return fmt.Errorf("Port publishing requires %q networking mode", NetworkingUser)
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}
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config.netdevConfig = fmt.Sprintf("bridge,id=t0,br=%s", netMode[1])
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case NetworkingNone:
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if len(config.publishedPorts) != 0 {
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return fmt.Errorf("Port publishing requires %q networking mode", NetworkingUser)
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}
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config.netdevConfig = ""
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default:
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return fmt.Errorf("Invalid networking mode: %s", netMode[0])
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}
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if err := config.discoverBinaries(); err != nil {
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log.Fatal(err)
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}
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return config.runQemuLocal(ctx)
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}
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func (c *config) runQemuLocal(ctx context.Context) (err error) {
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var args []string
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args, err = c.buildQemuCmdline()
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if err != nil {
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return err
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}
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for _, d := range c.disks {
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// If disk doesn't exist then create one
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if _, err := os.Stat(d.Path); err != nil {
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if os.IsNotExist(err) {
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log.Debugf("Creating new qemu disk [%s] format %s", d.Path, d.Format)
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qemuImgCmd := exec.Command(c.qemuImgPath, "create", "-f", d.Format, d.Path, fmt.Sprintf("%dM", d.Size))
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log.Debugf("%v", qemuImgCmd.Args)
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if err := qemuImgCmd.Run(); err != nil {
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return fmt.Errorf("Error creating disk [%s] format %s: %s", d.Path, d.Format, err.Error())
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}
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} else {
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return err
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}
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} else {
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log.Infof("Using existing disk [%s] format %s", d.Path, d.Format)
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}
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}
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// Detached mode is only supported in a container.
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if c.detached == true {
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return fmt.Errorf("Detached mode is only supported when running in a container, not locally")
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}
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qemuCmd := exec.CommandContext(ctx, c.qemuBinPath, args...)
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// If verbosity is enabled print out the full path/arguments
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log.Debugf("%v", qemuCmd.Args)
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// If we're not using a separate window then link the execution to stdin/out
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if c.gui == true {
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qemuCmd.Stdin = nil
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qemuCmd.Stdout = nil
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qemuCmd.Stderr = nil
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} else {
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qemuCmd.Stdin = c.stdin
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qemuCmd.Stdout = c.stdout
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qemuCmd.Stderr = c.stderr
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}
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return qemuCmd.Run()
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}
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func (c *config) buildQemuCmdline() ([]string, error) {
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// Iterate through the flags and build arguments
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var qemuArgs []string
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qemuArgs = append(qemuArgs, "-smp", fmt.Sprintf("%d", c.cpus))
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qemuArgs = append(qemuArgs, "-m", fmt.Sprintf("%d", c.memory))
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qemuArgs = append(qemuArgs, "-uuid", c.uuid.String())
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// Need to specify the vcpu type when running qemu on arm64 platform, for security reason,
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// the vcpu should be "host" instead of other names such as "cortex-a53"...
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if c.arch == "aarch64" {
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if runtime.GOARCH == "arm64" {
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qemuArgs = append(qemuArgs, "-cpu", "host")
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} else {
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qemuArgs = append(qemuArgs, "-cpu", "cortex-a57")
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}
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}
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// goArch is the GOARCH equivalent of config.Arch
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var goArch string
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switch c.arch {
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case "s390x":
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goArch = "s390x"
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case "aarch64":
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goArch = "arm64"
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case "x86_64":
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goArch = "amd64"
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default:
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return nil, fmt.Errorf("%s is an unsupported architecture.", c.arch)
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}
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if goArch != runtime.GOARCH {
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log.Infof("Disable acceleration as %s != %s", c.arch, runtime.GOARCH)
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c.accel = ""
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}
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if c.accel != "" {
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switch c.arch {
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case "s390x":
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qemuArgs = append(qemuArgs, "-machine", fmt.Sprintf("s390-ccw-virtio,accel=%s", c.accel))
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case "aarch64":
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gic := ""
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// VCPU supports less PA bits (36) than requested by the memory map (40)
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highmem := "highmem=off,"
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if runtime.GOOS == "linux" {
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// gic-version=host requires KVM, which implies Linux
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gic = "gic_version=host,"
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highmem = ""
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}
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qemuArgs = append(qemuArgs, "-machine", fmt.Sprintf("virt,%s%saccel=%s", gic, highmem, c.accel))
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default:
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qemuArgs = append(qemuArgs, "-machine", fmt.Sprintf("q35,accel=%s", c.accel))
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}
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} else {
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switch c.arch {
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case "s390x":
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qemuArgs = append(qemuArgs, "-machine", "s390-ccw-virtio")
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case "aarch64":
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qemuArgs = append(qemuArgs, "-machine", "virt")
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default:
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qemuArgs = append(qemuArgs, "-machine", "q35")
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}
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}
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// rng-random does not work on macOS
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// Temporarily disable it until fixed upstream.
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if runtime.GOOS != "darwin" {
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rng := "rng-random,id=rng0"
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if runtime.GOOS == "linux" {
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rng = rng + ",filename=/dev/urandom"
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}
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if c.arch == "s390x" {
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qemuArgs = append(qemuArgs, "-object", rng, "-device", "virtio-rng-ccw,rng=rng0")
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} else {
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qemuArgs = append(qemuArgs, "-object", rng, "-device", "virtio-rng-pci,rng=rng0")
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}
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}
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var lastDisk int
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for i, d := range c.disks {
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index := i
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if d.Format != "" {
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qemuArgs = append(qemuArgs, "-drive", "file="+d.Path+",format="+d.Format+",index="+strconv.Itoa(index)+",media=disk")
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} else {
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qemuArgs = append(qemuArgs, "-drive", "file="+d.Path+",index="+strconv.Itoa(index)+",media=disk")
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}
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lastDisk = index
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}
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// Ensure CDROMs start from at least hdc
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if lastDisk < 2 {
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lastDisk = 2
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}
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if c.netdevConfig != "" {
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mac := generateMAC()
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if c.arch == "s390x" {
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qemuArgs = append(qemuArgs, "-device", "virtio-net-ccw,netdev=t0,mac="+mac.String())
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} else {
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qemuArgs = append(qemuArgs, "-device", "virtio-net-pci,netdev=t0,mac="+mac.String())
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}
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forwardings, err := buildQemuForwardings(c.publishedPorts)
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if err != nil {
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log.Error(err)
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}
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qemuArgs = append(qemuArgs, "-netdev", c.netdevConfig+forwardings)
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} else {
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qemuArgs = append(qemuArgs, "-net", "none")
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}
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if c.gui != true {
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qemuArgs = append(qemuArgs, "-nographic")
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}
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return qemuArgs, nil
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}
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func (c *config) discoverBinaries() error {
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if c.qemuImgPath != "" {
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return nil
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}
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qemuBinPath := "qemu-system-" + c.arch
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qemuImgPath := "qemu-img"
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var err error
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c.qemuBinPath, err = exec.LookPath(qemuBinPath)
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if err != nil {
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return fmt.Errorf("Unable to find %s within the $PATH", qemuBinPath)
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}
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c.qemuImgPath, err = exec.LookPath(qemuImgPath)
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if err != nil {
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return fmt.Errorf("Unable to find %s within the $PATH", qemuImgPath)
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}
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return nil
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}
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func buildQemuForwardings(publishedPorts []PublishedPort) (string, error) {
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if len(publishedPorts) == 0 {
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return "", nil
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}
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var forwardings string
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for _, p := range publishedPorts {
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hostPort := p.Host
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guestPort := p.Guest
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forwardings = fmt.Sprintf("%s,hostfwd=%s::%d-:%d", forwardings, p.Protocol, hostPort, guestPort)
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}
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return forwardings, nil
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}
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func haveKVM() bool {
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_, err := os.Stat("/dev/kvm")
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return !os.IsNotExist(err)
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}
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func generateMAC() net.HardwareAddr {
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mac := make([]byte, 6)
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n, err := rand.Read(mac)
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if err != nil {
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log.WithError(err).Fatal("failed to generate random mac address")
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}
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if n != 6 {
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log.WithError(err).Fatalf("generated %d bytes for random mac address", n)
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}
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mac[0] &^= 0x01 // Clear multicast bit
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mac[0] |= 0x2 // Set locally administered bit
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return mac
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}
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