packer-cn/builder/osc/bsuvolume/builder.go

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//go:generate mapstructure-to-hcl2 -type Config,BlockDevice
// The ebsvolume package contains a packer.Builder implementation that
// builds EBS volumes for Outscale using an ephemeral instance,
package bsuvolume
import (
"context"
"crypto/tls"
"fmt"
"log"
"net/http"
build using HCL2 (#8423) This follows #8232 which added the code to generate the code required to parse HCL files for each packer component. All old config files of packer will keep on working the same. Packer takes one argument. When a directory is passed, all files in the folder with a name ending with “.pkr.hcl” or “.pkr.json” will be parsed using the HCL2 format. When a file ending with “.pkr.hcl” or “.pkr.json” is passed it will be parsed using the HCL2 format. For every other case; the old packer style will be used. ## 1. the hcl2template pkg can create a packer.Build from a set of HCL (v2) files I had to make the packer.coreBuild (which is our one and only packer.Build ) a public struct with public fields ## 2. Components interfaces get a new ConfigSpec Method to read a file from an HCL file. This is a breaking change for packer plugins. a packer component can be a: builder/provisioner/post-processor each component interface now gets a `ConfigSpec() hcldec.ObjectSpec` which allows packer to tell what is the layout of the hcl2 config meant to configure that specific component. This ObjectSpec is sent through the wire (RPC) and a cty.Value is now sent through the already existing configuration entrypoints: Provisioner.Prepare(raws ...interface{}) error Builder.Prepare(raws ...interface{}) ([]string, error) PostProcessor.Configure(raws ...interface{}) error close #1768 Example hcl files: ```hcl // file amazon-ebs-kms-key/run.pkr.hcl build { sources = [ "source.amazon-ebs.first", ] provisioner "shell" { inline = [ "sleep 5" ] } post-processor "shell-local" { inline = [ "sleep 5" ] } } // amazon-ebs-kms-key/source.pkr.hcl source "amazon-ebs" "first" { ami_name = "hcl2-test" region = "us-east-1" instance_type = "t2.micro" kms_key_id = "c729958f-c6ba-44cd-ab39-35ab68ce0a6c" encrypt_boot = true source_ami_filter { filters { virtualization-type = "hvm" name = "amzn-ami-hvm-????.??.?.????????-x86_64-gp2" root-device-type = "ebs" } most_recent = true owners = ["amazon"] } launch_block_device_mappings { device_name = "/dev/xvda" volume_size = 20 volume_type = "gp2" delete_on_termination = "true" } launch_block_device_mappings { device_name = "/dev/xvdf" volume_size = 500 volume_type = "gp2" delete_on_termination = true encrypted = true } ami_regions = ["eu-central-1"] run_tags { Name = "packer-solr-something" stack-name = "DevOps Tools" } communicator = "ssh" ssh_pty = true ssh_username = "ec2-user" associate_public_ip_address = true } ```
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"github.com/hashicorp/hcl/v2/hcldec"
osccommon "github.com/hashicorp/packer/builder/osc/common"
"github.com/hashicorp/packer/common"
"github.com/hashicorp/packer/helper/communicator"
"github.com/hashicorp/packer/helper/config"
"github.com/hashicorp/packer/helper/multistep"
"github.com/hashicorp/packer/packer"
"github.com/hashicorp/packer/template/interpolate"
"github.com/outscale/osc-go/oapi"
)
const BuilderId = "oapi.outscale.bsuvolume"
type Config struct {
common.PackerConfig `mapstructure:",squash"`
osccommon.AccessConfig `mapstructure:",squash"`
osccommon.RunConfig `mapstructure:",squash"`
VolumeMappings []BlockDevice `mapstructure:"bsu_volumes"`
launchBlockDevices osccommon.BlockDevices
ctx interpolate.Context
}
type Builder struct {
config Config
runner multistep.Runner
}
type EngineVarsTemplate struct {
BuildRegion string
SourceOMI string
}
build using HCL2 (#8423) This follows #8232 which added the code to generate the code required to parse HCL files for each packer component. All old config files of packer will keep on working the same. Packer takes one argument. When a directory is passed, all files in the folder with a name ending with “.pkr.hcl” or “.pkr.json” will be parsed using the HCL2 format. When a file ending with “.pkr.hcl” or “.pkr.json” is passed it will be parsed using the HCL2 format. For every other case; the old packer style will be used. ## 1. the hcl2template pkg can create a packer.Build from a set of HCL (v2) files I had to make the packer.coreBuild (which is our one and only packer.Build ) a public struct with public fields ## 2. Components interfaces get a new ConfigSpec Method to read a file from an HCL file. This is a breaking change for packer plugins. a packer component can be a: builder/provisioner/post-processor each component interface now gets a `ConfigSpec() hcldec.ObjectSpec` which allows packer to tell what is the layout of the hcl2 config meant to configure that specific component. This ObjectSpec is sent through the wire (RPC) and a cty.Value is now sent through the already existing configuration entrypoints: Provisioner.Prepare(raws ...interface{}) error Builder.Prepare(raws ...interface{}) ([]string, error) PostProcessor.Configure(raws ...interface{}) error close #1768 Example hcl files: ```hcl // file amazon-ebs-kms-key/run.pkr.hcl build { sources = [ "source.amazon-ebs.first", ] provisioner "shell" { inline = [ "sleep 5" ] } post-processor "shell-local" { inline = [ "sleep 5" ] } } // amazon-ebs-kms-key/source.pkr.hcl source "amazon-ebs" "first" { ami_name = "hcl2-test" region = "us-east-1" instance_type = "t2.micro" kms_key_id = "c729958f-c6ba-44cd-ab39-35ab68ce0a6c" encrypt_boot = true source_ami_filter { filters { virtualization-type = "hvm" name = "amzn-ami-hvm-????.??.?.????????-x86_64-gp2" root-device-type = "ebs" } most_recent = true owners = ["amazon"] } launch_block_device_mappings { device_name = "/dev/xvda" volume_size = 20 volume_type = "gp2" delete_on_termination = "true" } launch_block_device_mappings { device_name = "/dev/xvdf" volume_size = 500 volume_type = "gp2" delete_on_termination = true encrypted = true } ami_regions = ["eu-central-1"] run_tags { Name = "packer-solr-something" stack-name = "DevOps Tools" } communicator = "ssh" ssh_pty = true ssh_username = "ec2-user" associate_public_ip_address = true } ```
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func (b *Builder) ConfigSpec() hcldec.ObjectSpec { return b.config.FlatMapstructure().HCL2Spec() }
func (b *Builder) Prepare(raws ...interface{}) ([]string, []string, error) {
b.config.ctx.Funcs = osccommon.TemplateFuncs
// Create passthrough for {{ .BuildRegion }} and {{ .SourceOMI }} variables
// so we can fill them in later
b.config.ctx.Data = &EngineVarsTemplate{
BuildRegion: `{{ .BuildRegion }}`,
SourceOMI: `{{ .SourceOMI }} `,
}
err := config.Decode(&b.config, &config.DecodeOpts{
Interpolate: true,
InterpolateContext: &b.config.ctx,
}, raws...)
if err != nil {
return nil, nil, err
}
// Accumulate any errors
var errs *packer.MultiError
errs = packer.MultiErrorAppend(errs, b.config.AccessConfig.Prepare(&b.config.ctx)...)
errs = packer.MultiErrorAppend(errs, b.config.RunConfig.Prepare(&b.config.ctx)...)
errs = packer.MultiErrorAppend(errs, b.config.launchBlockDevices.Prepare(&b.config.ctx)...)
for _, d := range b.config.VolumeMappings {
if err := d.Prepare(&b.config.ctx); err != nil {
errs = packer.MultiErrorAppend(errs, fmt.Errorf("OMIMapping: %s", err.Error()))
}
}
b.config.launchBlockDevices, err = commonBlockDevices(b.config.VolumeMappings, &b.config.ctx)
if err != nil {
errs = packer.MultiErrorAppend(errs, err)
}
if errs != nil && len(errs.Errors) > 0 {
return nil, nil, errs
}
packer.LogSecretFilter.Set(b.config.AccessKey, b.config.SecretKey, b.config.Token)
return nil, nil, nil
}
func (b *Builder) Run(ctx context.Context, ui packer.Ui, hook packer.Hook) (packer.Artifact, error) {
clientConfig, err := b.config.Config()
if err != nil {
return nil, err
}
skipClient := &http.Client{
Transport: &http.Transport{
TLSClientConfig: &tls.Config{InsecureSkipVerify: true},
},
}
oapiconn := oapi.NewClient(clientConfig, skipClient)
// Setup the state bag and initial state for the steps
state := new(multistep.BasicStateBag)
state.Put("oapi", oapiconn)
state.Put("hook", hook)
state.Put("ui", ui)
log.Printf("[DEBUG] launch block devices %#v", b.config.launchBlockDevices)
instanceStep := &osccommon.StepRunSourceVm{
AssociatePublicIpAddress: b.config.AssociatePublicIpAddress,
BlockDevices: b.config.launchBlockDevices,
Comm: &b.config.RunConfig.Comm,
Ctx: b.config.ctx,
Debug: b.config.PackerDebug,
BsuOptimized: b.config.BsuOptimized,
EnableT2Unlimited: b.config.EnableT2Unlimited,
ExpectedRootDevice: "ebs",
IamVmProfile: b.config.IamVmProfile,
VmInitiatedShutdownBehavior: b.config.VmInitiatedShutdownBehavior,
VmType: b.config.VmType,
SourceOMI: b.config.SourceOmi,
Tags: b.config.RunTags,
UserData: b.config.UserData,
UserDataFile: b.config.UserDataFile,
}
// Build the steps
steps := []multistep.Step{
&osccommon.StepSourceOMIInfo{
SourceOmi: b.config.SourceOmi,
OmiFilters: b.config.SourceOmiFilter,
},
&osccommon.StepNetworkInfo{
NetId: b.config.NetId,
NetFilter: b.config.NetFilter,
SecurityGroupIds: b.config.SecurityGroupIds,
SecurityGroupFilter: b.config.SecurityGroupFilter,
SubnetId: b.config.SubnetId,
SubnetFilter: b.config.SubnetFilter,
SubregionName: b.config.Subregion,
},
&osccommon.StepKeyPair{
Debug: b.config.PackerDebug,
Comm: &b.config.RunConfig.Comm,
DebugKeyPath: fmt.Sprintf("oapi_%s.pem", b.config.PackerBuildName),
},
&osccommon.StepSecurityGroup{
SecurityGroupFilter: b.config.SecurityGroupFilter,
SecurityGroupIds: b.config.SecurityGroupIds,
CommConfig: &b.config.RunConfig.Comm,
TemporarySGSourceCidr: b.config.TemporarySGSourceCidr,
},
instanceStep,
&stepTagBSUVolumes{
VolumeMapping: b.config.VolumeMappings,
Ctx: b.config.ctx,
},
&osccommon.StepGetPassword{
Debug: b.config.PackerDebug,
Comm: &b.config.RunConfig.Comm,
Timeout: b.config.WindowsPasswordTimeout,
BuildName: b.config.PackerBuildName,
},
&communicator.StepConnect{
Config: &b.config.RunConfig.Comm,
Host: osccommon.SSHHost(
oapiconn,
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b.config.SSHInterface),
SSHConfig: b.config.RunConfig.Comm.SSHConfigFunc(),
},
&common.StepProvision{},
&common.StepCleanupTempKeys{
Comm: &b.config.RunConfig.Comm,
},
&osccommon.StepStopBSUBackedVm{
Skip: b.config.IsSpotVm(),
DisableStopVm: b.config.DisableStopVm,
},
}
// Run!
b.runner = common.NewRunner(steps, b.config.PackerConfig, ui)
b.runner.Run(ctx, state)
// If there was an error, return that
if rawErr, ok := state.GetOk("error"); ok {
return nil, rawErr.(error)
}
// Build the artifact and return it
artifact := &Artifact{
Volumes: state.Get("bsuvolumes").(BsuVolumes),
BuilderIdValue: BuilderId,
Conn: oapiconn,
}
ui.Say(fmt.Sprintf("Created Volumes: %s", artifact))
return artifact, nil
}