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Este artigo descreve como criar rapidamente um cluster Azure Red Hat OpenShift com planos de controlo alojados (HCP) com definições predefinidas, utilizando a CLI do Azure ou um modelo Bicep.
Note
Este quickstart cria um cluster com definições predefinidas. Para personalizar opções como visibilidade da API, tipo de entrada ou um Key Vault privado, veja Criar um cluster Azure Red Hat OpenShift com planos de controlo alojados.
O ficheiro Bicep define todos os recursos Azure necessários para o cluster, incluindo a infraestrutura de rede, identidades geridas, atribuições de funções, configuração do cluster e pool de nós.
O template implementa um cluster com os seguintes predefinidos:
- Visibilidade do servidor API: Público (acessível à internet)
- Tipo de entrada: Público (rotas de aplicação acessíveis pela internet)
- Rede: OVN-Kubernetes com intervalos CIDR predefinidos
- Encriptação Etcd: Chaves geridas pelo cliente (Azure Key Vault)
- Conectividade de saída: Balanceador de carga
- FIPS: Desativado
-
Conjunto de nós: Dois
Standard_D8s_v3nós de trabalho com discos do SO de 64 GiBPremium_LRS
Os comandos CLI criam todos os recursos Azure necessários para o cluster, incluindo a infraestrutura de rede, identidades geridas, atribuições de papéis, configuração do cluster e pool de nós.
Os comandos implantam um cluster com os seguintes valores predefinidos:
- Visibilidade do servidor API: Público (acessível à internet)
- Tipo de entrada: Público (rotas de aplicação acessíveis pela internet)
- Rede: OVN-Kubernetes com intervalos CIDR predefinidos
- Encriptação Etcd: Chaves geridas pelo cliente (Azure Key Vault)
- Conectividade de saída: Balanceador de carga
- FIPS: Desativado
-
Conjunto de nós: Dois
Standard_D8s_v3nós de trabalho com discos do SO de 64 GiBPremium_LRS
Prepare seu ambiente
Antes de criar o cluster, verifique se o seu ambiente Azure cumpre os seguintes requisitos.
CLI do Azure (Interface de Linha de Comando da Azure)
Verifique se você está usando a CLI do Azure versão 2.67.0 ou superior.
Usa az --version para verificar a versão instalada.
Para instalar ou atualizar, consulte Install CLI do Azure.
Extensão do CLI ARO HCP
Instale a extensão.
az extension add --name aroVerifique se a extensão está instalada:
az aro hcp -h
Quota de recursos
O Azure Red Hat OpenShift com planos de controlo alojados requer pelo menos 20 núcleos para criar e executar um cluster. A quota de recursos predefinida de uma nova subscrição do Azure não cumpre este requisito. Para solicitar um aumento do seu limite de recursos, consulte a quota Padrão: Aumentar os limites por série de VMs. Verifica se tens quota suficiente para a família de VMs que escolheres entre os tamanhos de VM dos nós de trabalho suportados.
Para verificar a quota atual da família de máquinas virtuais predefinida:
LOCATION=eastus
az vm list-usage -l $LOCATION \
--query "[?contains(name.value, 'standardDSv5Family')]" -o table
Permissões
Precisa de permissões de Colaborador e de Administrador de Acesso de Utilizador, ou permissões de Proprietário, no grupo de recursos ou na subscrição onde cria o cluster. Estas permissões são necessárias para criar o grupo de recursos, a rede virtual, as identidades geridas e as atribuições de funções.
Para mais informações, consulte Verificar as suas permissões.
Registrar provedores de recursos
Registe os seguintes fornecedores de recursos na sua subscrição do Azure:
Microsoft.RedHatOpenShiftMicrosoft.ComputeMicrosoft.StorageMicrosoft.Authorization
Para verificar se um fornecedor de recursos está registado:
az provider list --query "[?namespace=='Microsoft.RedHatOpenShift'].registrationState" \
--output table
Se encontrar algum prestador de recursos que não esteja registado, inscreva-os.
az provider register --namespace Microsoft.RedHatOpenShift --wait
az provider register --namespace Microsoft.Compute --wait
az provider register --namespace Microsoft.Storage --wait
az provider register --namespace Microsoft.Authorization --wait
Para mais informações sobre como registar fornecedores de recursos, consulte Registar os fornecedores de recursos.
Definir variáveis de ambiente
Defina as seguintes variáveis de ambiente para definir os nomes dos recursos que cria. Substitui os valores provisórios pelos teus próprios.
# Azure resource location and subscription
LOCATION="<location>"
SUBSCRIPTION_ID="$(az account show --query id --output tsv)"
CUSTOMER_RG_NAME="<resource-group-name>"
# Network resources
CUSTOMER_NSG="<nsg-name>"
CUSTOMER_VNET_NAME="<vnet-name>"
CUSTOMER_VNET_SUBNET1="<worker-subnet-name>"
CUSTOMER_VNET_INTEGRATION_SUBNET_NAME="<vnet-integration-subnet-name>"
# Cluster and node pool
CLUSTER_NAME="<cluster-name>"
NP_NAME="<node-pool-name>"
CLUSTER_VERSION="<major.minor>" # Example: 4.22
NP_VERSION="<major.minor.patch>" # Example: 4.22.1
# Key Vault and KMS key
KEYVAULT_NAME="<key-vault-name>"
KMS_KEY_NAME="etcd-kms-key"
Criar um grupo de recursos
Crie um grupo de recursos para armazenar o recurso do cluster, a rede virtual e as identidades geridas.
az group create \
--name "${CUSTOMER_RG_NAME}" \
--subscription "${SUBSCRIPTION_ID}" \
--location "${LOCATION}"
Criar o arquivo Bicep
Crie um arquivo nomeado azuredeploy.bicep com o seguinte conteúdo.
Este modelo Bicep define todos os recursos necessários para implementar um cluster Azure Red Hat OpenShift com planos de controlo alojados com definições predefinidas, incluindo o grupo de segurança de rede, rede virtual, identidades geridas, atribuições de papéis, cluster e pool de nós.
@description('Network Security Group Name')
param customerNsgName string
@description('Virtual Network Name')
param customerVnetName string
@description('Subnet Name')
param customerVnetSubnetName string
@description('Virtual Network Integration Subnet Name')
param customerVirtualNetworkIntegrationSubnetName string
@description('Name of the cluster')
param clusterName string
@description('The name of the node pool')
param nodePoolName string
@description('The OpenShift version for the cluster (X.Y format, e.g. 4.22)')
param clusterVersion string
@description('The OpenShift version for the node pool (X.Y.Z format, e.g. 4.22.1)')
param nodePoolVersion string
var randomSuffix = toLower(uniqueString(clusterName))
var etcdEncryptionKeyName = 'etcd-data-kms-encryption-key'
var randomKeyVaultSuffix = toLower(uniqueString(resourceGroup().id))
var customerKeyVaultName string = 'cust-kv-${randomKeyVaultSuffix}'
var addressPrefix = '10.0.0.0/16'
var subnetPrefix = '10.0.0.0/24'
var virtualNetworkIntegrationSubnetPrefix = '10.0.1.0/24'
// Network Security Group
resource customerNsg 'Microsoft.Network/networkSecurityGroups@2023-05-01' = {
name: customerNsgName
location: resourceGroup().location
}
// Virtual network with worker subnet and VNet integration subnet
resource customerVnet 'Microsoft.Network/virtualNetworks@2023-05-01' = {
name: customerVnetName
location: resourceGroup().location
properties: {
addressSpace: {
addressPrefixes: [
addressPrefix
]
}
subnets: [
{
name: customerVnetSubnetName
properties: {
addressPrefix: subnetPrefix
networkSecurityGroup: {
id: customerNsg.id
}
}
}
{
name: customerVirtualNetworkIntegrationSubnetName
properties: {
addressPrefix: virtualNetworkIntegrationSubnetPrefix
networkSecurityGroup: {
id: customerNsg.id
}
delegations: [
{
name: 'aro-hcp-delegation'
properties: {
serviceName: 'Microsoft.RedHatOpenShift/hcpOpenShiftClusters'
}
}
]
}
}
]
}
}
resource subnet 'Microsoft.Network/virtualNetworks/subnets@2022-07-01' existing = {
name: customerVnetSubnetName
parent: customerVnet
}
resource vnetIntegrationSubnet 'Microsoft.Network/virtualNetworks/subnets@2022-07-01' existing = {
name: customerVirtualNetworkIntegrationSubnetName
parent: customerVnet
}
// Key Vault for etcd encryption
resource customerKeyVault 'Microsoft.KeyVault/vaults@2024-12-01-preview' = {
name: customerKeyVaultName
location: resourceGroup().location
properties: {
sku: {
family: 'A'
name: 'standard'
}
tenantId: subscription().tenantId
publicNetworkAccess: 'Enabled'
enableRbacAuthorization: true
}
}
resource etcdEncryptionKey 'Microsoft.KeyVault/vaults/keys@2024-12-01-preview' = {
parent: customerKeyVault
name: etcdEncryptionKeyName
properties: {
kty: 'RSA'
keySize: 2048
}
}
//
// Control plane identities
//
// Reader
var readerRoleId = subscriptionResourceId(
'Microsoft.Authorization/roleDefinitions',
'acdd72a7-3385-48ef-bd42-f606fba81ae7'
)
//
// Cluster API Azure managed identity
//
resource clusterApiAzureMi 'Microsoft.ManagedIdentity/userAssignedIdentities@2023-01-31' = {
name: '${clusterName}-cp-cluster-api-azure-${randomSuffix}'
location: resourceGroup().location
}
// Azure Red Hat OpenShift with hosted control planes Cluster API Provider
var hcpClusterApiProviderRoleId = subscriptionResourceId(
'Microsoft.Authorization/roleDefinitions',
'88366f10-ed47-4cc0-9fab-c8a06148393e'
)
resource hcpClusterApiProviderRoleSubnetAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, clusterApiAzureMi.id, hcpClusterApiProviderRoleId, subnet.id)
scope: subnet
properties: {
principalId: clusterApiAzureMi.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: hcpClusterApiProviderRoleId
}
}
resource hcpClusterApiProviderRoleVnetAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, clusterApiAzureMi.id, hcpClusterApiProviderRoleId, customerVnet.id)
scope: customerVnet
properties: {
principalId: clusterApiAzureMi.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: hcpClusterApiProviderRoleId
}
}
resource serviceManagedIdentityReaderOnClusterApiAzureMi 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, serviceManagedIdentity.id, readerRoleId, clusterApiAzureMi.id)
scope: clusterApiAzureMi
properties: {
principalId: serviceManagedIdentity.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: readerRoleId
}
}
//
// Control plane operator managed identity
//
resource controlPlaneMi 'Microsoft.ManagedIdentity/userAssignedIdentities@2023-01-31' = {
name: '${clusterName}-cp-control-plane-${randomSuffix}'
location: resourceGroup().location
}
// Azure Red Hat OpenShift with hosted control planes Control Plane Operator
var hcpControlPlaneOperatorRoleId = subscriptionResourceId(
'Microsoft.Authorization/roleDefinitions',
'fc0c873f-45e9-4d0d-a7d1-585aab30c6ed'
)
resource hcpControlPlaneOperatorVnetRoleAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, controlPlaneMi.id, hcpControlPlaneOperatorRoleId, customerVnet.id)
scope: customerVnet
properties: {
principalId: controlPlaneMi.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: hcpControlPlaneOperatorRoleId
}
}
resource hcpControlPlaneOperatorNsgRoleAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, controlPlaneMi.id, hcpControlPlaneOperatorRoleId, customerNsg.id)
scope: customerNsg
properties: {
principalId: controlPlaneMi.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: hcpControlPlaneOperatorRoleId
}
}
resource serviceManagedIdentityReaderOnControlPlaneMi 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, serviceManagedIdentity.id, readerRoleId, controlPlaneMi.id)
scope: controlPlaneMi
properties: {
principalId: serviceManagedIdentity.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: readerRoleId
}
}
//
// Cloud controller manager managed identity
//
resource cloudControllerManagerMi 'Microsoft.ManagedIdentity/userAssignedIdentities@2023-01-31' = {
name: '${clusterName}-cp-cloud-controller-manager-${randomSuffix}'
location: resourceGroup().location
}
// Azure Red Hat OpenShift Cloud Controller Manager
var cloudControllerManagerRoleId = subscriptionResourceId(
'Microsoft.Authorization/roleDefinitions',
'a1f96423-95ce-4224-ab27-4e3dc72facd4'
)
resource cloudControllerManagerRoleSubnetAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, cloudControllerManagerMi.id, cloudControllerManagerRoleId, subnet.id)
scope: subnet
properties: {
principalId: cloudControllerManagerMi.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: cloudControllerManagerRoleId
}
}
resource cloudControllerManagerRoleNsgAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, cloudControllerManagerMi.id, cloudControllerManagerRoleId, customerNsg.id)
scope: customerNsg
properties: {
principalId: cloudControllerManagerMi.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: cloudControllerManagerRoleId
}
}
resource cloudControllerManagerRoleVnetAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, cloudControllerManagerMi.id, cloudControllerManagerRoleId, customerVnet.id)
scope: customerVnet
properties: {
principalId: cloudControllerManagerMi.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: cloudControllerManagerRoleId
}
}
resource serviceManagedIdentityReaderOnCloudControllerManagerMi 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, serviceManagedIdentity.id, readerRoleId, cloudControllerManagerMi.id)
scope: cloudControllerManagerMi
properties: {
principalId: serviceManagedIdentity.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: readerRoleId
}
}
//
// Ingress managed identity
//
resource ingressMi 'Microsoft.ManagedIdentity/userAssignedIdentities@2023-01-31' = {
name: '${clusterName}-cp-ingress-${randomSuffix}'
location: resourceGroup().location
}
// Azure Red Hat OpenShift Cluster Ingress Operator
var ingressOperatorRoleId = subscriptionResourceId(
'Microsoft.Authorization/roleDefinitions',
'0336e1d3-7a87-462b-b6db-342b63f7802c'
)
// Azure Red Hat OpenShift Image Registry Operator
var imageRegistryOperatorRoleId = subscriptionResourceId(
'Microsoft.Authorization/roleDefinitions',
'8b32b316-c2f5-4ddf-b05b-83dacd2d08b5'
)
resource ingressOperatorRoleSubnetAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, ingressMi.id, ingressOperatorRoleId, subnet.id)
scope: subnet
properties: {
principalId: ingressMi.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: ingressOperatorRoleId
}
}
resource ingressOperatorRoleVnetAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, ingressMi.id, ingressOperatorRoleId, customerVnet.id)
scope: customerVnet
properties: {
principalId: ingressMi.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: ingressOperatorRoleId
}
}
resource serviceManagedIdentityReaderOnIngressMi 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, serviceManagedIdentity.id, readerRoleId, ingressMi.id)
scope: ingressMi
properties: {
principalId: serviceManagedIdentity.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: readerRoleId
}
}
//
// Disk CSI driver managed identity
//
resource diskCsiDriverMi 'Microsoft.ManagedIdentity/userAssignedIdentities@2023-01-31' = {
name: '${clusterName}-cp-disk-csi-driver-${randomSuffix}'
location: resourceGroup().location
}
resource serviceManagedIdentityReaderOnDiskCsiDriverMi 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, serviceManagedIdentity.id, readerRoleId, diskCsiDriverMi.id)
scope: diskCsiDriverMi
properties: {
principalId: serviceManagedIdentity.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: readerRoleId
}
}
//
// File CSI driver managed identity
//
resource fileCsiDriverMi 'Microsoft.ManagedIdentity/userAssignedIdentities@2023-01-31' = {
name: '${clusterName}-cp-file-csi-driver-${randomSuffix}'
location: resourceGroup().location
}
// Azure Red Hat OpenShift File Storage Operator
var fileStorageOperatorRoleId = subscriptionResourceId(
'Microsoft.Authorization/roleDefinitions',
'0d7aedc0-15fd-4a67-a412-efad370c947e'
)
resource fileStorageOperatorRoleSubnetAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, fileCsiDriverMi.id, fileStorageOperatorRoleId, subnet.id)
scope: subnet
properties: {
principalId: fileCsiDriverMi.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: fileStorageOperatorRoleId
}
}
resource fileStorageOperatorRoleNsgAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, fileCsiDriverMi.id, fileStorageOperatorRoleId, customerNsg.id)
scope: customerNsg
properties: {
principalId: fileCsiDriverMi.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: fileStorageOperatorRoleId
}
}
resource fileStorageOperatorRoleVnetAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, fileCsiDriverMi.id, fileStorageOperatorRoleId, customerVnet.id)
scope: customerVnet
properties: {
principalId: fileCsiDriverMi.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: fileStorageOperatorRoleId
}
}
resource serviceManagedIdentityReaderOnFileCsiDriverMi 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, serviceManagedIdentity.id, readerRoleId, fileCsiDriverMi.id)
scope: fileCsiDriverMi
properties: {
principalId: serviceManagedIdentity.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: readerRoleId
}
}
//
// Image registry managed identity
//
resource imageRegistryMi 'Microsoft.ManagedIdentity/userAssignedIdentities@2023-01-31' = {
name: '${clusterName}-cp-image-registry-${randomSuffix}'
location: resourceGroup().location
}
resource imageRegistryOperatorRoleVnetAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, imageRegistryMi.id, imageRegistryOperatorRoleId, customerVnet.id)
scope: customerVnet
properties: {
principalId: imageRegistryMi.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: imageRegistryOperatorRoleId
}
}
resource serviceManagedIdentityReaderOnImageRegistryMi 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, serviceManagedIdentity.id, readerRoleId, imageRegistryMi.id)
scope: imageRegistryMi
properties: {
principalId: serviceManagedIdentity.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: readerRoleId
}
}
//
// Cloud network config managed identity
//
resource cloudNetworkConfigMi 'Microsoft.ManagedIdentity/userAssignedIdentities@2023-01-31' = {
name: '${clusterName}-cp-cloud-network-config-${randomSuffix}'
location: resourceGroup().location
}
// Azure Red Hat OpenShift Network Operator
var networkOperatorRoleId = subscriptionResourceId(
'Microsoft.Authorization/roleDefinitions',
'be7a6435-15ae-4171-8f30-4a343eff9e8f'
)
resource networkOperatorRoleSubnetAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, cloudNetworkConfigMi.id, networkOperatorRoleId, subnet.id)
scope: subnet
properties: {
principalId: cloudNetworkConfigMi.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: networkOperatorRoleId
}
}
resource networkOperatorRoleVnetAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, cloudNetworkConfigMi.id, networkOperatorRoleId, customerVnet.id)
scope: customerVnet
properties: {
principalId: cloudNetworkConfigMi.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: networkOperatorRoleId
}
}
resource serviceManagedIdentityReaderOnCloudNetworkMi 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, serviceManagedIdentity.id, readerRoleId, cloudNetworkConfigMi.id)
scope: cloudNetworkConfigMi
properties: {
principalId: serviceManagedIdentity.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: readerRoleId
}
}
//
// KMS managed identity
//
resource kmsMi 'Microsoft.ManagedIdentity/userAssignedIdentities@2023-01-31' = {
name: '${clusterName}-cp-kms-${randomSuffix}'
location: resourceGroup().location
}
// Key Vault Crypto User
var keyVaultCryptoUserRoleId = subscriptionResourceId(
'Microsoft.Authorization/roleDefinitions',
'12338af0-0e69-4776-bea7-57ae8d297424'
)
resource keyVaultCryptoUserToKeyVaultRoleAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, kmsMi.id, keyVaultCryptoUserRoleId, customerKeyVault.id)
scope: customerKeyVault
properties: {
principalId: kmsMi.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: keyVaultCryptoUserRoleId
}
}
resource serviceManagedIdentityReaderOnKmsMi 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, serviceManagedIdentity.id, readerRoleId, kmsMi.id)
scope: kmsMi
properties: {
principalId: serviceManagedIdentity.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: readerRoleId
}
}
//
// Data plane identities
//
// Azure Red Hat OpenShift Federated Credential
var federatedCredentialsRoleId = subscriptionResourceId(
'Microsoft.Authorization/roleDefinitions',
'ef318e2a-8334-4a05-9e4a-295a196c6a6e'
)
resource dpDiskCsiDriverMi 'Microsoft.ManagedIdentity/userAssignedIdentities@2023-01-31' = {
name: '${clusterName}-dp-disk-csi-driver-${randomSuffix}'
location: resourceGroup().location
}
resource dpDiskCsiDriverMiFederatedCredentialsRoleAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, dpDiskCsiDriverMi.id, federatedCredentialsRoleId)
scope: dpDiskCsiDriverMi
properties: {
principalId: serviceManagedIdentity.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: federatedCredentialsRoleId
}
}
resource dpFileCsiDriverMi 'Microsoft.ManagedIdentity/userAssignedIdentities@2023-01-31' = {
name: '${clusterName}-dp-file-csi-driver-${randomSuffix}'
location: resourceGroup().location
}
resource dpFileCsiDriverMiFederatedCredentialsRoleAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, dpFileCsiDriverMi.id, federatedCredentialsRoleId)
scope: dpFileCsiDriverMi
properties: {
principalId: serviceManagedIdentity.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: federatedCredentialsRoleId
}
}
resource dpFileCsiDriverFileStorageOperatorRoleSubnetAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, dpFileCsiDriverMi.id, fileStorageOperatorRoleId, subnet.id)
scope: subnet
properties: {
principalId: dpFileCsiDriverMi.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: fileStorageOperatorRoleId
}
}
resource dpFileCsiDriverFileStorageOperatorRoleNsgAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, dpFileCsiDriverMi.id, fileStorageOperatorRoleId, customerNsg.id)
scope: customerNsg
properties: {
principalId: dpFileCsiDriverMi.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: fileStorageOperatorRoleId
}
}
resource dpFileCsiDriverFileStorageOperatorRoleVnetAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, dpFileCsiDriverMi.id, fileStorageOperatorRoleId, customerVnet.id)
scope: customerVnet
properties: {
principalId: dpFileCsiDriverMi.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: fileStorageOperatorRoleId
}
}
resource dpImageRegistryMi 'Microsoft.ManagedIdentity/userAssignedIdentities@2023-01-31' = {
name: '${clusterName}-dp-image-registry-${randomSuffix}'
location: resourceGroup().location
}
resource dpImageRegistryMiFederatedCredentialsRoleAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, dpImageRegistryMi.id, federatedCredentialsRoleId)
scope: dpImageRegistryMi
properties: {
principalId: serviceManagedIdentity.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: federatedCredentialsRoleId
}
}
resource dpImageRegistryOperatorRoleVnetAssignment 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, dpImageRegistryMi.id, imageRegistryOperatorRoleId, customerVnet.id)
scope: customerVnet
properties: {
principalId: dpImageRegistryMi.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: imageRegistryOperatorRoleId
}
}
//
// Service managed identity
//
resource serviceManagedIdentity 'Microsoft.ManagedIdentity/userAssignedIdentities@2023-01-31' = {
name: '${clusterName}-service-managed-identity-${randomSuffix}'
location: resourceGroup().location
}
// Azure Red Hat OpenShift with hosted control planes Service Managed Identity
var hcpServiceManagedIdentityRoleId = subscriptionResourceId(
'Microsoft.Authorization/roleDefinitions',
'c0ff367d-66d8-445e-917c-583feb0ef0d4'
)
resource serviceManagedIdentityRoleAssignmentVnet 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, serviceManagedIdentity.id, hcpServiceManagedIdentityRoleId, customerVnet.id)
scope: customerVnet
properties: {
principalId: serviceManagedIdentity.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: hcpServiceManagedIdentityRoleId
}
}
resource serviceManagedIdentityRoleAssignmentNSG 'Microsoft.Authorization/roleAssignments@2022-04-01' = {
name: guid(resourceGroup().id, serviceManagedIdentity.id, hcpServiceManagedIdentityRoleId, customerNsg.id)
scope: customerNsg
properties: {
principalId: serviceManagedIdentity.properties.principalId
principalType: 'ServicePrincipal'
roleDefinitionId: hcpServiceManagedIdentityRoleId
}
}
// Cluster resource
resource hcp 'Microsoft.RedHatOpenShift/hcpOpenShiftClusters@2026-09-01-preview' = {
name: clusterName
location: resourceGroup().location
properties: {
version: {
id: clusterVersion
}
etcd: {
dataEncryption: {
keyManagementMode: 'CustomerManaged'
customerManaged: {
encryptionType: 'KMS'
kms: {
activeKey: {
name: etcdEncryptionKeyName
version: last(split(etcdEncryptionKey.properties.keyUriWithVersion, '/'))
}
vaultName: customerKeyVaultName
visibility: 'Public'
}
}
}
}
platform: {
subnetId: subnet.id
vnetIntegrationSubnetId: vnetIntegrationSubnet.id
networkSecurityGroupId: customerNsg.id
operatorsAuthentication: {
userAssignedIdentities: {
controlPlaneOperators: {
'cluster-api-azure': clusterApiAzureMi.id
'control-plane': controlPlaneMi.id
'cloud-controller-manager': cloudControllerManagerMi.id
ingress: ingressMi.id
'disk-csi-driver': diskCsiDriverMi.id
'file-csi-driver': fileCsiDriverMi.id
'image-registry': imageRegistryMi.id
'cloud-network-config': cloudNetworkConfigMi.id
kms: kmsMi.id
}
dataPlaneOperators: {
'disk-csi-driver': dpDiskCsiDriverMi.id
'file-csi-driver': dpFileCsiDriverMi.id
'image-registry': dpImageRegistryMi.id
}
serviceManagedIdentity: serviceManagedIdentity.id
}
}
}
}
identity: {
type: 'UserAssigned'
userAssignedIdentities: {
'${serviceManagedIdentity.id}': {}
'${clusterApiAzureMi.id}': {}
'${controlPlaneMi.id}': {}
'${cloudControllerManagerMi.id}': {}
'${ingressMi.id}': {}
'${diskCsiDriverMi.id}': {}
'${fileCsiDriverMi.id}': {}
'${imageRegistryMi.id}': {}
'${cloudNetworkConfigMi.id}': {}
'${kmsMi.id}': {}
}
}
dependsOn: [
hcpClusterApiProviderRoleSubnetAssignment
hcpClusterApiProviderRoleVnetAssignment
hcpControlPlaneOperatorVnetRoleAssignment
hcpControlPlaneOperatorNsgRoleAssignment
cloudControllerManagerRoleSubnetAssignment
cloudControllerManagerRoleNsgAssignment
cloudControllerManagerRoleVnetAssignment
ingressOperatorRoleSubnetAssignment
ingressOperatorRoleVnetAssignment
fileStorageOperatorRoleSubnetAssignment
fileStorageOperatorRoleNsgAssignment
fileStorageOperatorRoleVnetAssignment
imageRegistryOperatorRoleVnetAssignment
networkOperatorRoleSubnetAssignment
networkOperatorRoleVnetAssignment
keyVaultCryptoUserToKeyVaultRoleAssignment
dpDiskCsiDriverMiFederatedCredentialsRoleAssignment
dpFileCsiDriverMiFederatedCredentialsRoleAssignment
dpImageRegistryMiFederatedCredentialsRoleAssignment
serviceManagedIdentityRoleAssignmentVnet
serviceManagedIdentityRoleAssignmentNSG
dpFileCsiDriverFileStorageOperatorRoleSubnetAssignment
dpFileCsiDriverFileStorageOperatorRoleNsgAssignment
dpFileCsiDriverFileStorageOperatorRoleVnetAssignment
dpImageRegistryOperatorRoleVnetAssignment
serviceManagedIdentityReaderOnControlPlaneMi
serviceManagedIdentityReaderOnCloudControllerManagerMi
serviceManagedIdentityReaderOnIngressMi
serviceManagedIdentityReaderOnDiskCsiDriverMi
serviceManagedIdentityReaderOnFileCsiDriverMi
serviceManagedIdentityReaderOnImageRegistryMi
serviceManagedIdentityReaderOnCloudNetworkMi
serviceManagedIdentityReaderOnClusterApiAzureMi
serviceManagedIdentityReaderOnKmsMi
]
}
// Node pool resource
resource nodepool 'Microsoft.RedHatOpenShift/hcpOpenShiftClusters/nodePools@2026-09-01-preview' = {
parent: hcp
name: nodePoolName
location: resourceGroup().location
properties: {
version: {
id: nodePoolVersion
}
platform: {
subnetId: hcp.properties.platform.subnetId
vmSize: 'Standard_D8s_v3'
}
replicas: 2
}
}
Desdobrar o arquivo Bicep
Implemente o modelo Bicep para criar o cluster e todos os recursos necessários.
az deployment group create \
--name 'aro-hcp' \
--subscription "${SUBSCRIPTION_ID}" \
--resource-group "${CUSTOMER_RG_NAME}" \
--template-file azuredeploy.bicep \
--parameters \
customerNsgName="${CUSTOMER_NSG}" \
customerVnetName="${CUSTOMER_VNET_NAME}" \
customerVirtualNetworkIntegrationSubnetName="${CUSTOMER_VNET_INTEGRATION_SUBNET_NAME}" \
customerVnetSubnetName="${CUSTOMER_VNET_SUBNET1}" \
clusterName="${CLUSTER_NAME}" \
nodePoolName="${NP_NAME}" \
clusterVersion="${CLUSTER_VERSION}" \
nodePoolVersion="${NP_VERSION}"
A implementação normalmente demora entre 15 a 20 minutos a ser concluída.
Verificar a implantação
Após o término da implementação, verifique se o cluster e o pool de nós foram criados com sucesso.
Verifique se o cluster foi criado com sucesso.
az aro hcp cluster show \ --name "${CLUSTER_NAME}" \ --resource-group "${CUSTOMER_RG_NAME}" \ --query "properties.provisioningState" \ --output tsvQuando o cluster está pronto, a saída é
Succeeded.Verifique se o pool de nós foi criado com sucesso.
az aro hcp cluster nodepool show \ --cluster-name "${CLUSTER_NAME}" \ --name "${NP_NAME}" \ --resource-group "${CUSTOMER_RG_NAME}" \ --query "properties.provisioningState" \ --output tsvQuando o pool de nós está pronto, a saída é
Succeeded.
Criar a infraestrutura de rede
Crie um grupo de segurança de rede, uma rede virtual com uma sub-rede de trabalho e uma sub-rede de integração da VNet com delegação.
Crie o grupo de segurança de rede.
az network nsg create \ --name "${CUSTOMER_NSG}" \ --resource-group "${CUSTOMER_RG_NAME}" \ --location "${LOCATION}"Crie a rede virtual com a sub-rede de trabalhadores.
az network vnet create \ --name "${CUSTOMER_VNET_NAME}" \ --resource-group "${CUSTOMER_RG_NAME}" \ --location "${LOCATION}" \ --address-prefixes 10.0.0.0/16 \ --subnet-name "${CUSTOMER_VNET_SUBNET1}" \ --subnet-prefixes 10.0.0.0/24 \ --nsg "${CUSTOMER_NSG}"Crie a sub-rede de integração do VNet com a delegação necessária.
az network vnet subnet create \ --name "${CUSTOMER_VNET_INTEGRATION_SUBNET_NAME}" \ --vnet-name "${CUSTOMER_VNET_NAME}" \ --resource-group "${CUSTOMER_RG_NAME}" \ --address-prefixes 10.0.1.0/24 \ --network-security-group "${CUSTOMER_NSG}" \ --delegations Microsoft.RedHatOpenShift/hcpOpenShiftClustersObtenha os IDs dos recursos de rede.
NSG_ID=$(az network nsg show \ --name "${CUSTOMER_NSG}" \ --resource-group "${CUSTOMER_RG_NAME}" \ --query id --output tsv) SUBNET_ID=$(az network vnet subnet show \ --name "${CUSTOMER_VNET_SUBNET1}" \ --vnet-name "${CUSTOMER_VNET_NAME}" \ --resource-group "${CUSTOMER_RG_NAME}" \ --query id --output tsv) VNET_ID=$(az network vnet show \ --name "${CUSTOMER_VNET_NAME}" \ --resource-group "${CUSTOMER_RG_NAME}" \ --query id --output tsv) VNET_INTEGRATION_SUBNET_ID=$(az network vnet subnet show \ --name "${CUSTOMER_VNET_INTEGRATION_SUBNET_NAME}" \ --vnet-name "${CUSTOMER_VNET_NAME}" \ --resource-group "${CUSTOMER_RG_NAME}" \ --query id --output tsv)
Criar as identidades geridas
Crie as identidades geridas atribuídas pelo utilizador para os operadores do cluster e a identidade gerida do serviço. Para uma descrição de cada identidade e do seu propósito, veja Identidades geridas obrigatórias e atribuições de funções.
# Control plane operator identities
az identity create --name "${CLUSTER_NAME}-cp-cluster-api-azure" --resource-group "${CUSTOMER_RG_NAME}"
az identity create --name "${CLUSTER_NAME}-cp-control-plane" --resource-group "${CUSTOMER_RG_NAME}"
az identity create --name "${CLUSTER_NAME}-cp-cloud-controller-manager" --resource-group "${CUSTOMER_RG_NAME}"
az identity create --name "${CLUSTER_NAME}-cp-ingress" --resource-group "${CUSTOMER_RG_NAME}"
az identity create --name "${CLUSTER_NAME}-cp-disk-csi-driver" --resource-group "${CUSTOMER_RG_NAME}"
az identity create --name "${CLUSTER_NAME}-cp-file-csi-driver" --resource-group "${CUSTOMER_RG_NAME}"
az identity create --name "${CLUSTER_NAME}-cp-image-registry" --resource-group "${CUSTOMER_RG_NAME}"
az identity create --name "${CLUSTER_NAME}-cp-cloud-network-config" --resource-group "${CUSTOMER_RG_NAME}"
az identity create --name "${CLUSTER_NAME}-cp-kms" --resource-group "${CUSTOMER_RG_NAME}"
# Data plane operator identities
az identity create --name "${CLUSTER_NAME}-dp-disk-csi-driver" --resource-group "${CUSTOMER_RG_NAME}"
az identity create --name "${CLUSTER_NAME}-dp-file-csi-driver" --resource-group "${CUSTOMER_RG_NAME}"
az identity create --name "${CLUSTER_NAME}-dp-image-registry" --resource-group "${CUSTOMER_RG_NAME}"
# Service managed identity
az identity create --name "${CLUSTER_NAME}-service-managed-identity" --resource-group "${CUSTOMER_RG_NAME}"
Obtenha os IDs de recursos e IDs principais para as identidades geridas.
# Control plane identity resource IDs and principal IDs
CLUSTER_API_AZURE_MI_ID=$(az identity show --name "${CLUSTER_NAME}-cp-cluster-api-azure" --resource-group "${CUSTOMER_RG_NAME}" --query id --output tsv)
CLUSTER_API_AZURE_MI_PID=$(az identity show --name "${CLUSTER_NAME}-cp-cluster-api-azure" --resource-group "${CUSTOMER_RG_NAME}" --query principalId --output tsv)
CONTROL_PLANE_MI_ID=$(az identity show --name "${CLUSTER_NAME}-cp-control-plane" --resource-group "${CUSTOMER_RG_NAME}" --query id --output tsv)
CONTROL_PLANE_MI_PID=$(az identity show --name "${CLUSTER_NAME}-cp-control-plane" --resource-group "${CUSTOMER_RG_NAME}" --query principalId --output tsv)
CLOUD_CONTROLLER_MANAGER_MI_ID=$(az identity show --name "${CLUSTER_NAME}-cp-cloud-controller-manager" --resource-group "${CUSTOMER_RG_NAME}" --query id --output tsv)
CLOUD_CONTROLLER_MANAGER_MI_PID=$(az identity show --name "${CLUSTER_NAME}-cp-cloud-controller-manager" --resource-group "${CUSTOMER_RG_NAME}" --query principalId --output tsv)
INGRESS_MI_ID=$(az identity show --name "${CLUSTER_NAME}-cp-ingress" --resource-group "${CUSTOMER_RG_NAME}" --query id --output tsv)
INGRESS_MI_PID=$(az identity show --name "${CLUSTER_NAME}-cp-ingress" --resource-group "${CUSTOMER_RG_NAME}" --query principalId --output tsv)
DISK_CSI_DRIVER_MI_ID=$(az identity show --name "${CLUSTER_NAME}-cp-disk-csi-driver" --resource-group "${CUSTOMER_RG_NAME}" --query id --output tsv)
FILE_CSI_DRIVER_MI_ID=$(az identity show --name "${CLUSTER_NAME}-cp-file-csi-driver" --resource-group "${CUSTOMER_RG_NAME}" --query id --output tsv)
FILE_CSI_DRIVER_MI_PID=$(az identity show --name "${CLUSTER_NAME}-cp-file-csi-driver" --resource-group "${CUSTOMER_RG_NAME}" --query principalId --output tsv)
IMAGE_REGISTRY_MI_ID=$(az identity show --name "${CLUSTER_NAME}-cp-image-registry" --resource-group "${CUSTOMER_RG_NAME}" --query id --output tsv)
IMAGE_REGISTRY_MI_PID=$(az identity show --name "${CLUSTER_NAME}-cp-image-registry" --resource-group "${CUSTOMER_RG_NAME}" --query principalId --output tsv)
CLOUD_NETWORK_CONFIG_MI_ID=$(az identity show --name "${CLUSTER_NAME}-cp-cloud-network-config" --resource-group "${CUSTOMER_RG_NAME}" --query id --output tsv)
CLOUD_NETWORK_CONFIG_MI_PID=$(az identity show --name "${CLUSTER_NAME}-cp-cloud-network-config" --resource-group "${CUSTOMER_RG_NAME}" --query principalId --output tsv)
KMS_MI_ID=$(az identity show --name "${CLUSTER_NAME}-cp-kms" --resource-group "${CUSTOMER_RG_NAME}" --query id --output tsv)
KMS_MI_PID=$(az identity show --name "${CLUSTER_NAME}-cp-kms" --resource-group "${CUSTOMER_RG_NAME}" --query principalId --output tsv)
# Data plane identity resource IDs and principal IDs
DP_DISK_CSI_DRIVER_MI_ID=$(az identity show --name "${CLUSTER_NAME}-dp-disk-csi-driver" --resource-group "${CUSTOMER_RG_NAME}" --query id --output tsv)
DP_FILE_CSI_DRIVER_MI_ID=$(az identity show --name "${CLUSTER_NAME}-dp-file-csi-driver" --resource-group "${CUSTOMER_RG_NAME}" --query id --output tsv)
DP_FILE_CSI_DRIVER_MI_PID=$(az identity show --name "${CLUSTER_NAME}-dp-file-csi-driver" --resource-group "${CUSTOMER_RG_NAME}" --query principalId --output tsv)
DP_IMAGE_REGISTRY_MI_ID=$(az identity show --name "${CLUSTER_NAME}-dp-image-registry" --resource-group "${CUSTOMER_RG_NAME}" --query id --output tsv)
DP_IMAGE_REGISTRY_MI_PID=$(az identity show --name "${CLUSTER_NAME}-dp-image-registry" --resource-group "${CUSTOMER_RG_NAME}" --query principalId --output tsv)
# Service managed identity resource ID and principal ID
SERVICE_MI_ID=$(az identity show --name "${CLUSTER_NAME}-service-managed-identity" --resource-group "${CUSTOMER_RG_NAME}" --query id --output tsv)
SERVICE_MI_PID=$(az identity show --name "${CLUSTER_NAME}-service-managed-identity" --resource-group "${CUSTOMER_RG_NAME}" --query principalId --output tsv)
Criar as atribuições de funções
Atribuir os papéis Azure necessários a cada identidade gerida. Para uma descrição detalhada de cada identidade e das suas atribuições obrigatórias de funções, veja Identidades geridas e atribuições de funções obrigatórias.
Defina os GUIDs de definição de funções.
READER_ROLE="acdd72a7-3385-48ef-bd42-f606fba81ae7" HCP_CLUSTER_API_PROVIDER_ROLE="88366f10-ed47-4cc0-9fab-c8a06148393e" HCP_CONTROL_PLANE_OPERATOR_ROLE="fc0c873f-45e9-4d0d-a7d1-585aab30c6ed" CLOUD_CONTROLLER_MANAGER_ROLE="a1f96423-95ce-4224-ab27-4e3dc72facd4" INGRESS_OPERATOR_ROLE="0336e1d3-7a87-462b-b6db-342b63f7802c" FILE_STORAGE_OPERATOR_ROLE="0d7aedc0-15fd-4a67-a412-efad370c947e" NETWORK_OPERATOR_ROLE="be7a6435-15ae-4171-8f30-4a343eff9e8f" IMAGE_REGISTRY_OPERATOR_ROLE="8b32b316-c2f5-4ddf-b05b-83dacd2d08b5" FEDERATED_CREDENTIAL_ROLE="ef318e2a-8334-4a05-9e4a-295a196c6a6e" HCP_SERVICE_MI_ROLE="c0ff367d-66d8-445e-917c-583feb0ef0d4"Atribuir funções de operador do plano de controlo.
# Cluster API Azure → ARO HCP Cluster API Provider on worker subnet and VNet az role assignment create --assignee-object-id "${CLUSTER_API_AZURE_MI_PID}" --assignee-principal-type ServicePrincipal --role "${HCP_CLUSTER_API_PROVIDER_ROLE}" --scope "${SUBNET_ID}" az role assignment create --assignee-object-id "${CLUSTER_API_AZURE_MI_PID}" --assignee-principal-type ServicePrincipal --role "${HCP_CLUSTER_API_PROVIDER_ROLE}" --scope "${VNET_ID}" # Control Plane → ARO HCP Control Plane Operator on VNet and NSG az role assignment create --assignee-object-id "${CONTROL_PLANE_MI_PID}" --assignee-principal-type ServicePrincipal --role "${HCP_CONTROL_PLANE_OPERATOR_ROLE}" --scope "${VNET_ID}" az role assignment create --assignee-object-id "${CONTROL_PLANE_MI_PID}" --assignee-principal-type ServicePrincipal --role "${HCP_CONTROL_PLANE_OPERATOR_ROLE}" --scope "${NSG_ID}" # Cloud Controller Manager → ARO Cloud Controller Manager on worker subnet, NSG, and VNet az role assignment create --assignee-object-id "${CLOUD_CONTROLLER_MANAGER_MI_PID}" --assignee-principal-type ServicePrincipal --role "${CLOUD_CONTROLLER_MANAGER_ROLE}" --scope "${SUBNET_ID}" az role assignment create --assignee-object-id "${CLOUD_CONTROLLER_MANAGER_MI_PID}" --assignee-principal-type ServicePrincipal --role "${CLOUD_CONTROLLER_MANAGER_ROLE}" --scope "${NSG_ID}" az role assignment create --assignee-object-id "${CLOUD_CONTROLLER_MANAGER_MI_PID}" --assignee-principal-type ServicePrincipal --role "${CLOUD_CONTROLLER_MANAGER_ROLE}" --scope "${VNET_ID}" # Ingress → ARO Cluster Ingress Operator on worker subnet and VNet az role assignment create --assignee-object-id "${INGRESS_MI_PID}" --assignee-principal-type ServicePrincipal --role "${INGRESS_OPERATOR_ROLE}" --scope "${SUBNET_ID}" az role assignment create --assignee-object-id "${INGRESS_MI_PID}" --assignee-principal-type ServicePrincipal --role "${INGRESS_OPERATOR_ROLE}" --scope "${VNET_ID}" # File CSI Driver → ARO File Storage Operator on worker subnet, NSG, and VNet az role assignment create --assignee-object-id "${FILE_CSI_DRIVER_MI_PID}" --assignee-principal-type ServicePrincipal --role "${FILE_STORAGE_OPERATOR_ROLE}" --scope "${SUBNET_ID}" az role assignment create --assignee-object-id "${FILE_CSI_DRIVER_MI_PID}" --assignee-principal-type ServicePrincipal --role "${FILE_STORAGE_OPERATOR_ROLE}" --scope "${NSG_ID}" az role assignment create --assignee-object-id "${FILE_CSI_DRIVER_MI_PID}" --assignee-principal-type ServicePrincipal --role "${FILE_STORAGE_OPERATOR_ROLE}" --scope "${VNET_ID}" # Image Registry → ARO Image Registry Operator on VNet az role assignment create --assignee-object-id "${IMAGE_REGISTRY_MI_PID}" --assignee-principal-type ServicePrincipal --role "${IMAGE_REGISTRY_OPERATOR_ROLE}" --scope "${VNET_ID}" # Cloud Network Config → ARO Network Operator on worker subnet and VNet az role assignment create --assignee-object-id "${CLOUD_NETWORK_CONFIG_MI_PID}" --assignee-principal-type ServicePrincipal --role "${NETWORK_OPERATOR_ROLE}" --scope "${SUBNET_ID}" az role assignment create --assignee-object-id "${CLOUD_NETWORK_CONFIG_MI_PID}" --assignee-principal-type ServicePrincipal --role "${NETWORK_OPERATOR_ROLE}" --scope "${VNET_ID}"Atribuir funções de identidade gerida por serviço.
# Service MI → ARO HCP Service Managed Identity on VNet and NSG az role assignment create --assignee-object-id "${SERVICE_MI_PID}" --assignee-principal-type ServicePrincipal --role "${HCP_SERVICE_MI_ROLE}" --scope "${VNET_ID}" az role assignment create --assignee-object-id "${SERVICE_MI_PID}" --assignee-principal-type ServicePrincipal --role "${HCP_SERVICE_MI_ROLE}" --scope "${NSG_ID}" # Service MI → Reader on each control plane identity az role assignment create --assignee-object-id "${SERVICE_MI_PID}" --assignee-principal-type ServicePrincipal --role "${READER_ROLE}" --scope "${CLUSTER_API_AZURE_MI_ID}" az role assignment create --assignee-object-id "${SERVICE_MI_PID}" --assignee-principal-type ServicePrincipal --role "${READER_ROLE}" --scope "${CONTROL_PLANE_MI_ID}" az role assignment create --assignee-object-id "${SERVICE_MI_PID}" --assignee-principal-type ServicePrincipal --role "${READER_ROLE}" --scope "${CLOUD_CONTROLLER_MANAGER_MI_ID}" az role assignment create --assignee-object-id "${SERVICE_MI_PID}" --assignee-principal-type ServicePrincipal --role "${READER_ROLE}" --scope "${INGRESS_MI_ID}" az role assignment create --assignee-object-id "${SERVICE_MI_PID}" --assignee-principal-type ServicePrincipal --role "${READER_ROLE}" --scope "${DISK_CSI_DRIVER_MI_ID}" az role assignment create --assignee-object-id "${SERVICE_MI_PID}" --assignee-principal-type ServicePrincipal --role "${READER_ROLE}" --scope "${FILE_CSI_DRIVER_MI_ID}" az role assignment create --assignee-object-id "${SERVICE_MI_PID}" --assignee-principal-type ServicePrincipal --role "${READER_ROLE}" --scope "${IMAGE_REGISTRY_MI_ID}" az role assignment create --assignee-object-id "${SERVICE_MI_PID}" --assignee-principal-type ServicePrincipal --role "${READER_ROLE}" --scope "${CLOUD_NETWORK_CONFIG_MI_ID}" az role assignment create --assignee-object-id "${SERVICE_MI_PID}" --assignee-principal-type ServicePrincipal --role "${READER_ROLE}" --scope "${KMS_MI_ID}"Atribuir funções de operador de plano de dados.
# Service MI → ARO Federated Credential on each data plane identity az role assignment create --assignee-object-id "${SERVICE_MI_PID}" --assignee-principal-type ServicePrincipal --role "${FEDERATED_CREDENTIAL_ROLE}" --scope "${DP_DISK_CSI_DRIVER_MI_ID}" az role assignment create --assignee-object-id "${SERVICE_MI_PID}" --assignee-principal-type ServicePrincipal --role "${FEDERATED_CREDENTIAL_ROLE}" --scope "${DP_FILE_CSI_DRIVER_MI_ID}" az role assignment create --assignee-object-id "${SERVICE_MI_PID}" --assignee-principal-type ServicePrincipal --role "${FEDERATED_CREDENTIAL_ROLE}" --scope "${DP_IMAGE_REGISTRY_MI_ID}" # Data Plane File CSI Driver → ARO File Storage Operator on worker subnet, NSG, and VNet az role assignment create --assignee-object-id "${DP_FILE_CSI_DRIVER_MI_PID}" --assignee-principal-type ServicePrincipal --role "${FILE_STORAGE_OPERATOR_ROLE}" --scope "${SUBNET_ID}" az role assignment create --assignee-object-id "${DP_FILE_CSI_DRIVER_MI_PID}" --assignee-principal-type ServicePrincipal --role "${FILE_STORAGE_OPERATOR_ROLE}" --scope "${NSG_ID}" az role assignment create --assignee-object-id "${DP_FILE_CSI_DRIVER_MI_PID}" --assignee-principal-type ServicePrincipal --role "${FILE_STORAGE_OPERATOR_ROLE}" --scope "${VNET_ID}" # Data Plane Image Registry → ARO Image Registry Operator on VNet az role assignment create --assignee-object-id "${DP_IMAGE_REGISTRY_MI_PID}" --assignee-principal-type ServicePrincipal --role "${IMAGE_REGISTRY_OPERATOR_ROLE}" --scope "${VNET_ID}"
Criar o Key Vault e a chave KMS
Crie um Azure Key Vault com autorização RBAC e uma chave de encriptação RSA de 2048 bits para encriptação etcd gerida pelo cliente.
Cria o Key Vault.
az keyvault create \ --name "${KEYVAULT_NAME}" \ --resource-group "${CUSTOMER_RG_NAME}" \ --location "${LOCATION}" \ --enable-rbac-authorization trueAtribui a ti próprio o cargo de Key Vault Crypto Officer. Esta função concede-lhe permissões para criar a chave de encriptação KMS.
az role assignment create \ --role "Key Vault Crypto Officer" \ --assignee "$(az account show --query user.name -o tsv)" \ --scope "$(az keyvault show --name "${KEYVAULT_NAME}" --resource-group "${CUSTOMER_RG_NAME}" --query id -o tsv)"Crie a chave de encriptação KMS.
az keyvault key create \ --vault-name "${KEYVAULT_NAME}" \ --name "${KMS_KEY_NAME}" \ --kty RSA \ --size 2048Compra a versão chave.
KMS_KEY_VERSION=$(az keyvault key show \ --vault-name "${KEYVAULT_NAME}" \ --name "${KMS_KEY_NAME}" \ --query "key.kid" --output tsv | rev | cut -d'/' -f1 | rev)Atribua a função Utilizador de Criptografia do Key Vault à identidade gerida pelo KMS no Key Vault.
KEY_VAULT_CRYPTO_USER_ROLE="12338af0-0e69-4776-bea7-57ae8d297424" KEYVAULT_ID=$(az keyvault show --name "${KEYVAULT_NAME}" --query id --output tsv) az role assignment create \ --assignee-object-id "${KMS_MI_PID}" \ --assignee-principal-type ServicePrincipal \ --role "${KEY_VAULT_CRYPTO_USER_ROLE}" \ --scope "${KEYVAULT_ID}"
Criar o cluster
Crie o cluster com as definições predefinidas.
az aro hcp cluster create \
--name "${CLUSTER_NAME}" \
--resource-group "${CUSTOMER_RG_NAME}" \
--location "${LOCATION}" \
--version "${CLUSTER_VERSION}" \
--subnet-id "${SUBNET_ID}" \
--vnet-integration-subnet-id "${VNET_INTEGRATION_SUBNET_ID}" \
--nsg "${NSG_ID}" \
--kms-vault-name "${KEYVAULT_NAME}" \
--vault-visibility Public \
--kms-active-key "{name:${KMS_KEY_NAME},version:${KMS_KEY_VERSION}}" \
--assign-service-managed-identity "${SERVICE_MI_ID}" \
--assign-control-plane-operator-identity cluster-api-azure "${CLUSTER_API_AZURE_MI_ID}" \
--assign-control-plane-operator-identity control-plane "${CONTROL_PLANE_MI_ID}" \
--assign-control-plane-operator-identity cloud-controller-manager "${CLOUD_CONTROLLER_MANAGER_MI_ID}" \
--assign-control-plane-operator-identity ingress "${INGRESS_MI_ID}" \
--assign-control-plane-operator-identity disk-csi-driver "${DISK_CSI_DRIVER_MI_ID}" \
--assign-control-plane-operator-identity file-csi-driver "${FILE_CSI_DRIVER_MI_ID}" \
--assign-control-plane-operator-identity image-registry "${IMAGE_REGISTRY_MI_ID}" \
--assign-control-plane-operator-identity cloud-network-config "${CLOUD_NETWORK_CONFIG_MI_ID}" \
--assign-control-plane-operator-identity kms "${KMS_MI_ID}" \
--assign-data-plane-operator-identity disk-csi-driver "${DP_DISK_CSI_DRIVER_MI_ID}" \
--assign-data-plane-operator-identity file-csi-driver "${DP_FILE_CSI_DRIVER_MI_ID}" \
--assign-data-plane-operator-identity image-registry "${DP_IMAGE_REGISTRY_MI_ID}"
A implementação normalmente demora entre 15 a 20 minutos a ser concluída.
Verifique se o cluster foi criado com sucesso.
az aro hcp cluster show \
--name "${CLUSTER_NAME}" \
--resource-group "${CUSTOMER_RG_NAME}" \
--query "properties.provisioningState" \
--output tsv
Quando o cluster está pronto, a saída é Succeeded.
Criar o pool de nós
Depois de criar o cluster, crie um pool de nós com dois nós de trabalho Standard_D8s_v3.
az aro hcp cluster nodepool create \
--cluster-name "${CLUSTER_NAME}" \
--name "${NP_NAME}" \
--resource-group "${CUSTOMER_RG_NAME}" \
--replicas 2 \
--vm-size Standard_D8s_v3 \
--version "${NP_VERSION}"
Verifique se o pool de nós foi criado com sucesso.
az aro hcp cluster nodepool show \
--cluster-name "${CLUSTER_NAME}" \
--name "${NP_NAME}" \
--resource-group "${CUSTOMER_RG_NAME}" \
--query "properties.provisioningState" \
--output tsv
Quando o pool de nós está pronto, a saída é Succeeded.