mirror of
https://github.com/edgelesssys/constellation.git
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422 lines
19 KiB
Go
422 lines
19 KiB
Go
/*
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Copyright (c) Edgeless Systems GmbH
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SPDX-License-Identifier: AGPL-3.0-only
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*/
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package terraform
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import (
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"fmt"
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"github.com/edgelesssys/constellation/v2/internal/cloud/cloudprovider"
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"github.com/hashicorp/hcl/v2"
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"github.com/hashicorp/hcl/v2/gohcl"
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"github.com/hashicorp/hcl/v2/hclsyntax"
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"github.com/hashicorp/hcl/v2/hclwrite"
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)
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// Variables is a struct that holds all variables that are passed to Terraform.
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type Variables interface {
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fmt.Stringer
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}
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// ClusterVariables should be used in places where a cluster is created.
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type ClusterVariables interface {
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Variables
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// TODO(derpsteb): Rename this function once we have introduced an interface for config.Config.
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// GetCreateMAA does not follow Go's naming convention because we need to keep the CreateMAA property public for now.
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// There are functions creating Variables objects outside of this package.
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// These functions can only be moved into this package once we have introduced an interface for config.Config,
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// since we do not want to introduce a dependency on config.Config in this package.
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GetCreateMAA() bool
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}
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// VariablesFromBytes parses the given bytes into the given variables struct.
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func VariablesFromBytes[T any](b []byte, vars *T) error {
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file, err := hclsyntax.ParseConfig(b, "", hcl.Pos{Line: 1, Column: 1})
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if err != nil {
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return fmt.Errorf("parsing variables: %w", err)
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}
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diags := gohcl.DecodeBody(file.Body, nil, vars)
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if diags.HasErrors() {
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return fmt.Errorf("decoding variables: %w", diags)
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}
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return nil
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}
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// AWSClusterVariables is user configuration for creating a cluster with Terraform on AWS.
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type AWSClusterVariables struct {
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// Name of the cluster.
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Name string `hcl:"name" cty:"name"`
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// Region is the AWS region to use.
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Region string `hcl:"region" cty:"region"`
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// Zone is the AWS zone to use in the given region.
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Zone string `hcl:"zone" cty:"zone"`
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// ImageID is the ID of the AMI to use.
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ImageID string `hcl:"image_id" cty:"image_id"`
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// IAMProfileControlPlane is the IAM group to use for the control-plane nodes.
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IAMProfileControlPlane string `hcl:"iam_instance_profile_name_control_plane" cty:"iam_instance_profile_name_control_plane"`
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// IAMProfileWorkerNodes is the IAM group to use for the worker nodes.
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IAMProfileWorkerNodes string `hcl:"iam_instance_profile_name_worker_nodes" cty:"iam_instance_profile_name_worker_nodes"`
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// Debug is true if debug mode is enabled.
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Debug bool `hcl:"debug" cty:"debug"`
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// EnableSNP controls enablement of the EC2 cpu-option "AmdSevSnp".
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EnableSNP bool `hcl:"enable_snp" cty:"enable_snp"`
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// NodeGroups is a map of node groups to create.
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NodeGroups map[string]AWSNodeGroup `hcl:"node_groups" cty:"node_groups"`
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// CustomEndpoint is the (optional) custom dns hostname for the kubernetes api server.
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CustomEndpoint string `hcl:"custom_endpoint" cty:"custom_endpoint"`
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// InternalLoadBalancer is true if an internal load balancer should be created.
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InternalLoadBalancer bool `hcl:"internal_load_balancer" cty:"internal_load_balancer"`
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// AdditionalTags describes (optional) additional tags that should be applied to created resources.
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AdditionalTags cloudprovider.Tags `hcl:"additional_tags" cty:"additional_tags"`
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}
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// GetCreateMAA gets the CreateMAA variable.
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// TODO(derpsteb): Rename this function once we have introduced an interface for config.Config.
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func (a *AWSClusterVariables) GetCreateMAA() bool {
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return false
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}
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// String returns a string representation of the variables, formatted as Terraform variables.
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func (a *AWSClusterVariables) String() string {
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f := hclwrite.NewEmptyFile()
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gohcl.EncodeIntoBody(a, f.Body())
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return string(f.Bytes())
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}
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// AWSNodeGroup is a node group to create on AWS.
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type AWSNodeGroup struct {
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// Role is the role of the node group.
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Role string `hcl:"role" cty:"role"`
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// StateDiskSizeGB is the size of the state disk to allocate to each node, in GB.
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StateDiskSizeGB int `hcl:"disk_size" cty:"disk_size"`
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// InitialCount is the initial number of nodes to create in the node group.
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// During upgrades this value ignored.
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InitialCount int `hcl:"initial_count" cty:"initial_count"`
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// Zone is the AWS availability-zone to use in the given region.
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Zone string `hcl:"zone" cty:"zone"`
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// InstanceType is the type of the EC2 instance to use.
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InstanceType string `hcl:"instance_type" cty:"instance_type"`
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// DiskType is the EBS disk type to use for the state disk.
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DiskType string `hcl:"disk_type" cty:"disk_type"`
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}
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// AWSIAMVariables is user configuration for creating the IAM configuration with Terraform on Microsoft Azure.
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type AWSIAMVariables struct {
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// Region is the AWS location to use. (e.g. us-east-2)
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Region string `hcl:"region" cty:"region"`
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// Prefix is the name prefix of the resources to use.
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Prefix string `hcl:"name_prefix" cty:"name_prefix"`
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}
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// String returns a string representation of the IAM-specific variables, formatted as Terraform variables.
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func (v *AWSIAMVariables) String() string {
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f := hclwrite.NewEmptyFile()
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gohcl.EncodeIntoBody(v, f.Body())
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return string(f.Bytes())
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}
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// GCPClusterVariables is user configuration for creating resources with Terraform on GCP.
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type GCPClusterVariables struct {
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// Name of the cluster.
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Name string `hcl:"name" cty:"name"`
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// Project is the ID of the GCP project to use.
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Project string `hcl:"project" cty:"project"`
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// Region is the GCP region to use.
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Region string `hcl:"region" cty:"region"`
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// Zone is the GCP zone to use.
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Zone string `hcl:"zone" cty:"zone"`
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// ImageID is the ID of the GCP image to use.
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ImageID string `hcl:"image_id" cty:"image_id"`
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// Debug is true if debug mode is enabled.
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Debug bool `hcl:"debug" cty:"debug"`
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// NodeGroups is a map of node groups to create.
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NodeGroups map[string]GCPNodeGroup `hcl:"node_groups" cty:"node_groups"`
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// CustomEndpoint is the (optional) custom dns hostname for the kubernetes api server.
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CustomEndpoint string `hcl:"custom_endpoint" cty:"custom_endpoint"`
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// InternalLoadBalancer is true if an internal load balancer should be created.
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InternalLoadBalancer bool `hcl:"internal_load_balancer" cty:"internal_load_balancer"`
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// CCTechnology is the confidential computing technology to use on the VMs. (`SEV` or `SEV_SNP`)
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CCTechnology string `hcl:"cc_technology" cty:"cc_technology"`
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// AdditionalLables are (optional) additional labels that should be applied to created resources.
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AdditionalLabels cloudprovider.Tags `hcl:"additional_labels" cty:"additional_labels"`
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}
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// GetCreateMAA gets the CreateMAA variable.
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// TODO(derpsteb): Rename this function once we have introduced an interface for config.Config.
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func (g *GCPClusterVariables) GetCreateMAA() bool {
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return false
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}
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// String returns a string representation of the variables, formatted as Terraform variables.
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func (g *GCPClusterVariables) String() string {
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f := hclwrite.NewEmptyFile()
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gohcl.EncodeIntoBody(g, f.Body())
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return string(f.Bytes())
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}
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// GCPNodeGroup is a node group to create on GCP.
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type GCPNodeGroup struct {
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// Role is the role of the node group.
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Role string `hcl:"role" cty:"role"`
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// StateDiskSizeGB is the size of the state disk to allocate to each node, in GB.
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StateDiskSizeGB int `hcl:"disk_size" cty:"disk_size"`
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// InitialCount is the initial number of nodes to create in the node group.
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// During upgrades this value ignored.
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InitialCount int `hcl:"initial_count" cty:"initial_count"`
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Zone string `hcl:"zone" cty:"zone"`
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InstanceType string `hcl:"instance_type" cty:"instance_type"`
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DiskType string `hcl:"disk_type" cty:"disk_type"`
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}
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// GCPIAMVariables is user configuration for creating the IAM confioguration with Terraform on GCP.
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type GCPIAMVariables struct {
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// Project is the ID of the GCP project to use.
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Project string `hcl:"project_id" cty:"project_id"`
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// Region is the GCP region to use.
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Region string `hcl:"region" cty:"region"`
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// Zone is the GCP zone to use.
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Zone string `hcl:"zone" cty:"zone"`
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// ServiceAccountID is the ID of the service account to use.
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ServiceAccountID string `hcl:"service_account_id" cty:"service_account_id"`
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}
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// String returns a string representation of the IAM-specific variables, formatted as Terraform variables.
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func (v *GCPIAMVariables) String() string {
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f := hclwrite.NewEmptyFile()
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gohcl.EncodeIntoBody(v, f.Body())
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return string(f.Bytes())
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}
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// AzureClusterVariables is user configuration for creating a cluster with Terraform on Azure.
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type AzureClusterVariables struct {
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// Name of the cluster.
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Name string `hcl:"name" cty:"name"`
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// ImageID is the ID of the Azure image to use.
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ImageID string `hcl:"image_id" cty:"image_id"`
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// CreateMAA sets whether a Microsoft Azure attestation provider should be created.
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CreateMAA *bool `hcl:"create_maa" cty:"create_maa"`
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// Debug is true if debug mode is enabled.
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Debug *bool `hcl:"debug" cty:"debug"`
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// ResourceGroup is the name of the Azure resource group to use.
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ResourceGroup string `hcl:"resource_group" cty:"resource_group"`
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// Location is the Azure location to use.
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Location string `hcl:"location" cty:"location"`
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// UserAssignedIdentity is the name of the Azure user-assigned identity to use.
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UserAssignedIdentity string `hcl:"user_assigned_identity" cty:"user_assigned_identity"`
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// ConfidentialVM sets the VM to be confidential.
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ConfidentialVM *bool `hcl:"confidential_vm" cty:"confidential_vm"`
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// SecureBoot sets the VM to use secure boot.
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SecureBoot *bool `hcl:"secure_boot" cty:"secure_boot"`
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// NodeGroups is a map of node groups to create.
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NodeGroups map[string]AzureNodeGroup `hcl:"node_groups" cty:"node_groups"`
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// CustomEndpoint is the (optional) custom dns hostname for the kubernetes api server.
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CustomEndpoint string `hcl:"custom_endpoint" cty:"custom_endpoint"`
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// InternalLoadBalancer is true if an internal load balancer should be created.
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InternalLoadBalancer bool `hcl:"internal_load_balancer" cty:"internal_load_balancer"`
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// MarketplaceImage is the (optional) Azure Marketplace image to use.
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MarketplaceImage *AzureMarketplaceImageVariables `hcl:"marketplace_image" cty:"marketplace_image"`
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// AdditionalTags are (optional) additional tags that get applied to created resources.
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AdditionalTags cloudprovider.Tags `hcl:"additional_tags" cty:"additional_tags"`
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}
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// GetCreateMAA gets the CreateMAA variable.
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// TODO(derpsteb): Rename this function once we have introduced an interface for config.Config.
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func (a *AzureClusterVariables) GetCreateMAA() bool {
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if a.CreateMAA == nil {
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return false
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}
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return *a.CreateMAA
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}
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// String returns a string representation of the variables, formatted as Terraform variables.
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func (a *AzureClusterVariables) String() string {
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f := hclwrite.NewEmptyFile()
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gohcl.EncodeIntoBody(a, f.Body())
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return string(f.Bytes())
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}
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// AzureNodeGroup is a node group to create on Azure.
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type AzureNodeGroup struct {
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// Role is the role of the node group.
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Role string `hcl:"role" cty:"role"`
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// InitialCount is optional for upgrades.
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InitialCount int `hcl:"initial_count" cty:"initial_count"`
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InstanceType string `hcl:"instance_type" cty:"instance_type"`
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DiskSizeGB int `hcl:"disk_size" cty:"disk_size"`
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DiskType string `hcl:"disk_type" cty:"disk_type"`
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Zones []string `hcl:"zones" cty:"zones"`
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}
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// AzureIAMVariables is user configuration for creating the IAM configuration with Terraform on Microsoft Azure.
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type AzureIAMVariables struct {
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// Location is the Azure location to use. (e.g. westus)
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Location string `hcl:"location" cty:"location"`
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// ServicePrincipal is the name of the service principal to use.
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ServicePrincipal string `hcl:"service_principal_name" cty:"service_principal_name"`
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// ResourceGroup is the name of the resource group to use.
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ResourceGroup string `hcl:"resource_group_name" cty:"resource_group_name"`
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}
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// AzureMarketplaceImageVariables is a configuration for specifying an Azure Marketplace image.
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type AzureMarketplaceImageVariables struct {
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// Publisher is the publisher ID of the image.
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Publisher string `hcl:"publisher" cty:"publisher"`
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// Product is the product ID of the image.
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Product string `hcl:"product" cty:"product"`
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// Name is the name of the image.
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Name string `hcl:"name" cty:"name"`
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// Version is the version of the image.
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Version string `hcl:"version" cty:"version"`
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}
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// String returns a string representation of the IAM-specific variables, formatted as Terraform variables.
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func (v *AzureIAMVariables) String() string {
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f := hclwrite.NewEmptyFile()
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gohcl.EncodeIntoBody(v, f.Body())
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return string(f.Bytes())
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}
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// OpenStackClusterVariables is user configuration for creating a cluster with Terraform on OpenStack.
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type OpenStackClusterVariables struct {
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// Name of the cluster.
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Name string `hcl:"name" cty:"name"`
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// NodeGroups is a map of node groups to create.
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NodeGroups map[string]OpenStackNodeGroup `hcl:"node_groups" cty:"node_groups"`
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// Cloud is the name of the OpenStack cloud to use when reading the "clouds.yaml" configuration file. If empty, environment variables are used.
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Cloud *string `hcl:"cloud" cty:"cloud"`
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// OpenStackCloudsYAMLPath is the path to the OpenStack clouds.yaml file
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OpenStackCloudsYAMLPath string `hcl:"openstack_clouds_yaml_path" cty:"openstack_clouds_yaml_path"`
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// (STACKIT only) STACKITProjectID is the ID of the STACKIT project to use.
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STACKITProjectID string `hcl:"stackit_project_id" cty:"stackit_project_id"`
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// FloatingIPPoolID is the ID of the OpenStack floating IP pool to use for public IPs.
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FloatingIPPoolID string `hcl:"floating_ip_pool_id" cty:"floating_ip_pool_id"`
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// ImageID is the ID of the OpenStack image to use.
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ImageID string `hcl:"image_id" cty:"image_id"`
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// Debug is true if debug mode is enabled.
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Debug bool `hcl:"debug" cty:"debug"`
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// CustomEndpoint is the (optional) custom dns hostname for the kubernetes api server.
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CustomEndpoint string `hcl:"custom_endpoint" cty:"custom_endpoint"`
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// InternalLoadBalancer is true if an internal load balancer should be created.
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InternalLoadBalancer bool `hcl:"internal_load_balancer" cty:"internal_load_balancer"`
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AdditionalTags []string `hcl:"additional_tags" cty:"additional_tags"`
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}
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// GetCreateMAA gets the CreateMAA variable.
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// TODO(derpsteb): Rename this function once we have introduced an interface for config.Config.
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func (o *OpenStackClusterVariables) GetCreateMAA() bool {
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return false
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}
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// String returns a string representation of the variables, formatted as Terraform variables.
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func (o *OpenStackClusterVariables) String() string {
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f := hclwrite.NewEmptyFile()
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gohcl.EncodeIntoBody(o, f.Body())
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return string(f.Bytes())
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}
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// OpenStackNodeGroup is a node group to create on OpenStack.
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type OpenStackNodeGroup struct {
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// Role is the role of the node group.
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Role string `hcl:"role" cty:"role"`
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// InitialCount is the number of instances to create.
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// InitialCount is optional for upgrades. OpenStack does not support upgrades yet but might in the future.
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InitialCount int `hcl:"initial_count" cty:"initial_count"`
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// Flavor is the ID of the OpenStack flavor (machine type) to use.
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FlavorID string `hcl:"flavor_id" cty:"flavor_id"`
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// Zone is the OpenStack availability zone to use.
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Zone string `hcl:"zone" cty:"zone"`
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// StateDiskType is the OpenStack disk type to use for the state disk.
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StateDiskType string `hcl:"state_disk_type" cty:"state_disk_type"`
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// StateDiskSizeGB is the size of the state disk to allocate to each node, in GB.
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StateDiskSizeGB int `hcl:"state_disk_size" cty:"state_disk_size"`
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}
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// TODO(malt3): Add support for OpenStack IAM variables.
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// QEMUVariables is user configuration for creating a QEMU cluster with Terraform.
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type QEMUVariables struct {
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// Name is the name to use for the cluster.
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Name string `hcl:"name" cty:"name"`
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// NodeGroups is a map of node groups to create.
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NodeGroups map[string]QEMUNodeGroup `hcl:"node_groups" cty:"node_groups"`
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// Machine is the type of machine to use. use 'q35' for secure boot and 'pc' for non secure boot. See 'qemu-system-x86_64 -machine help'
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Machine string `hcl:"machine" cty:"machine"`
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// LibvirtURI is the libvirt connection URI.
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LibvirtURI string `hcl:"libvirt_uri" cty:"libvirt_uri"`
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// LibvirtSocketPath is the path to the libvirt socket in case of unix socket.
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LibvirtSocketPath string `hcl:"libvirt_socket_path" cty:"libvirt_socket_path"`
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// BootMode is the boot mode to use.
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// Can be either "uefi" or "direct-linux-boot".
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BootMode string `hcl:"constellation_boot_mode" cty:"constellation_boot_mode"`
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// ImagePath is the path to the image to use for the nodes.
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ImagePath string `hcl:"image_id" cty:"image_id"`
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// ImageFormat is the format of the image from ImagePath.
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ImageFormat string `hcl:"image_format" cty:"image_format"`
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// MetadataAPIImage is the container image to use for the metadata API.
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MetadataAPIImage string `hcl:"metadata_api_image" cty:"metadata_api_image"`
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// MetadataLibvirtURI is the libvirt connection URI used by the metadata container.
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// In case of unix socket, this should be "qemu:///system".
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// Other wise it should be the same as LibvirtURI.
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MetadataLibvirtURI string `hcl:"metadata_libvirt_uri" cty:"metadata_libvirt_uri"`
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// NVRAM is the path to the NVRAM template.
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NVRAM string `hcl:"nvram" cty:"nvram"`
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// Firmware is the path to the firmware.
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Firmware *string `hcl:"firmware" cty:"firmware"`
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// BzImagePath is the path to the bzImage (kernel).
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BzImagePath *string `hcl:"constellation_kernel" cty:"constellation_kernel"`
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// InitrdPath is the path to the initrd.
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InitrdPath *string `hcl:"constellation_initrd" cty:"constellation_initrd"`
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// KernelCmdline is the kernel command line.
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KernelCmdline *string `hcl:"constellation_cmdline" cty:"constellation_cmdline"`
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// CustomEndpoint is the (optional) custom dns hostname for the kubernetes api server.
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CustomEndpoint string `hcl:"custom_endpoint" cty:"custom_endpoint"`
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// InternalLoadBalancer is true if an internal load balancer should be created.
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InternalLoadBalancer bool `hcl:"internal_load_balancer" cty:"internal_load_balancer"`
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}
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// GetCreateMAA gets the CreateMAA variable.
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// TODO(derpsteb): Rename this function once we have introduced an interface for config.Config.
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func (q *QEMUVariables) GetCreateMAA() bool {
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return false
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}
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// String returns a string representation of the variables, formatted as Terraform variables.
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func (q *QEMUVariables) String() string {
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// copy v object
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vCopy := *q
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switch vCopy.NVRAM {
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case "production":
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vCopy.NVRAM = "/usr/share/OVMF/OVMF_VARS.fd"
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case "testing":
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vCopy.NVRAM = "/usr/share/OVMF/OVMF_VARS.fd"
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}
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f := hclwrite.NewEmptyFile()
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|
gohcl.EncodeIntoBody(vCopy, f.Body())
|
|
return string(f.Bytes())
|
|
}
|
|
|
|
// QEMUNodeGroup is a node group for a QEMU cluster.
|
|
type QEMUNodeGroup struct {
|
|
// Role is the role of the node group.
|
|
Role string `hcl:"role" cty:"role"`
|
|
// InitialCount is the number of instances to create.
|
|
// InitialCount is optional for upgrades.
|
|
// Upgrades are not implemented for QEMU. The type is similar to other NodeGroup types for consistency.
|
|
InitialCount int `hcl:"initial_count" cty:"initial_count"`
|
|
// DiskSize is the size of the disk to allocate to each node, in GiB.
|
|
DiskSize int `hcl:"disk_size" cty:"disk_size"`
|
|
// CPUCount is the number of CPUs to allocate to each node.
|
|
CPUCount int `hcl:"vcpus" cty:"vcpus"`
|
|
// MemorySize is the amount of memory to allocate to each node, in MiB.
|
|
MemorySize int `hcl:"memory" cty:"memory"`
|
|
}
|
|
|
|
func toPtr[T any](v T) *T {
|
|
return &v
|
|
}
|