Avvio rapido: creare un cluster Azure Red Hat OpenShift predefinito con piani di controllo ospitati (anteprima)

Questo articolo descrive come creare rapidamente un Azure Red Hat OpenShift con cluster HCP (Hosted Control Planes) con impostazioni predefinite usando il interfaccia della riga di comando di Azure o un modello di Bicep.

Note

In questa guida introduttiva viene creato un cluster con le impostazioni predefinite. Per personalizzare opzioni come visibilità API, tipo di ingresso o un Key Vault privato, vedere Creare un Azure Red Hat OpenShift con cluster di piani di controllo ospitati.

Il file Bicep definisce tutte le risorse di Azure necessarie per il cluster, tra cui l'infrastruttura di rete, le identità gestite, le assegnazioni di ruolo, la configurazione del cluster e il pool di nodi.

Il modello distribuisce un cluster con le impostazioni predefinite seguenti:

  • Visibilità del server API: pubblico (accessibile da Internet)
  • Tipo di accesso: Pubblico (percorsi dell'applicazione accessibili tramite Internet)
  • Rete: OVN-Kubernetes con intervalli CIDR predefiniti
  • Crittografia Etcd: chiavi gestite dalla piattaforma
  • Connettività in uscita: bilanciamento del carico
  • FIPS: Disabilitato
  • Pool di nodi: due Standard_D8s_v3 nodi di lavoro con dischi del sistema operativo GiB StandardSSD_LRS 64

I comandi dell'interfaccia della riga di comando creano tutte le risorse Azure necessarie per il cluster, tra cui l'infrastruttura di rete, le identità gestite, le assegnazioni di ruolo, la configurazione del cluster e il pool di nodi.

I comandi distribuiscono un cluster con le impostazioni predefinite seguenti:

  • Visibilità del server API: pubblico (accessibile da Internet)
  • Tipo di accesso: Pubblico (percorsi dell'applicazione accessibili da internet)
  • Rete: OVN-Kubernetes con intervalli CIDR predefiniti
  • Crittografia Etcd: chiavi gestite dalla piattaforma
  • Connettività in uscita: bilanciamento del carico
  • Pool di nodi: due Standard_D8s_v3 nodi di lavoro con dischi del sistema operativo da 64 GiB StandardSSD_LRS

Prepara il tuo ambiente

Prima di creare il cluster, verificare che l'ambiente Azure soddisfi i requisiti seguenti.

Interfaccia CLI di Azure

Assicurarsi di usare l'interfaccia della riga di comando di Azure versione 2.67.0 o successiva. Usare az --version per controllare la versione installata. Per installare o aggiornare, vedere Installare interfaccia della riga di comando di Azure.

Estensione dell'interfaccia della riga di comando di ARO HCP

  1. Scaricare il file wheel per l'estensione dell'interfaccia della riga di comando di ARO HCP.

  2. Installare l'estensione. Sostituire <path-to-downloaded-extension.whl> con il percorso del file scaricato.

    az extension add --source <path-to-downloaded-extension.whl>
    
  3. Verificare che l'estensione sia installata:

    az aro hcp -h
    

Quota di risorse

Azure Red Hat OpenShift con piani di controllo ospitati richiede almeno 20 core per creare ed eseguire un cluster. La quota di risorse di Azure predefinita per una nuova sottoscrizione di Azure non soddisfa questo requisito. Per richiedere un aumento del limite di risorse, vedere Quota standard: aumentare i limiti per serie di macchine virtuali. Verificare di disporre di una quota sufficiente per la famiglia di macchine virtuali scelta tra le dimensioni supportate della macchina virtuale del nodo di lavoro.

Per controllare la quota corrente per la famiglia di macchine virtuali predefinita:

LOCATION=eastus
az vm list-usage -l $LOCATION \
  --query "[?contains(name.value, 'standardDSv5Family')]" -o table

Autorizzazioni

Sono necessarie le autorizzazioni di Collaboratore e Amministratore dell'accesso utente, oppure le autorizzazioni di Proprietario, nel gruppo di risorse o nella sottoscrizione in cui si crea il cluster. Queste autorizzazioni sono necessarie per creare il gruppo di risorse, la rete virtuale, le identità gestite e le assegnazioni di ruolo.

Per altre informazioni, vedere Verificare le autorizzazioni.

Registrare i fornitori di risorse

Registrare i provider di risorse seguenti nella sottoscrizione Azure:

  • Microsoft.RedHatOpenShift
  • Microsoft.Compute
  • Microsoft.Storage
  • Microsoft.Authorization

Per verificare se un provider di risorse è registrato:

az provider list --query "[?namespace=='Microsoft.RedHatOpenShift'].registrationState" \
  --output table

Se si trovano provider di risorse non registrati, registrarli.

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

Per altre informazioni su come registrare i provider di risorse, vedere Registrare i provider di risorse.

Impostare le variabili di ambiente

Impostare le variabili di ambiente seguenti per definire i nomi delle risorse create. Sostituire i valori segnaposto con i propri.

# 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>"
MANAGED_RESOURCE_GROUP="${CLUSTER_NAME}-managed-rg"
NP_NAME="<node-pool-name>"
CLUSTER_VERSION="<major.minor>"    # Example: 4.22
NP_VERSION="<major.minor.patch>"   # Example: 4.22.1

Creare un gruppo di risorse

Creare un gruppo di risorse per contenere la risorsa cluster, la rete virtuale e le identità gestite.

az group create \
  --name "${CUSTOMER_RG_NAME}" \
  --subscription "${SUBSCRIPTION_ID}" \
  --location "${LOCATION}"

Creare il file Bicep

Creare un file denominato azuredeploy.bicep con il contenuto seguente. Questo modello di Bicep definisce tutte le risorse necessarie per distribuire un Azure Red Hat OpenShift con cluster di piani di controllo ospitati con impostazioni predefinite, tra cui il gruppo di sicurezza di rete, la rete virtuale, le identità gestite, le assegnazioni di ruolo, il cluster e il pool di nodi.

@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 cluster managed resource group name')
param managedResourceGroupName 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 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
}

//
// 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 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 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'
)

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 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 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 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
  }
}

//
// 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 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
  }
}

//
// 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
      channelGroup: 'stable'
    }
    dns: {}
    network: {
      networkType: 'OVNKubernetes'
      podCidr: '10.128.0.0/14'
      serviceCidr: '172.30.0.0/16'
      machineCidr: '10.0.0.0/16'
      hostPrefix: 23
    }
    api: {
      visibility: 'Public'
    }
    ingress: {
      type: 'Public'
    }
    cryptoRestrictions: 'None'
    clusterImageRegistry: {
      state: 'Enabled'
    }
    platform: {
      managedResourceGroup: managedResourceGroupName
      subnetId: subnet.id
      vnetIntegrationSubnetId: vnetIntegrationSubnet.id
      outboundType: 'LoadBalancer'
      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
          }
          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}': {}
    }
  }
  dependsOn: [
    hcpClusterApiProviderRoleSubnetAssignment
    hcpControlPlaneOperatorVnetRoleAssignment
    hcpControlPlaneOperatorNsgRoleAssignment
    cloudControllerManagerRoleSubnetAssignment
    cloudControllerManagerRoleNsgAssignment
    ingressOperatorRoleSubnetAssignment
    fileStorageOperatorRoleSubnetAssignment
    fileStorageOperatorRoleNsgAssignment
    networkOperatorRoleSubnetAssignment
    networkOperatorRoleVnetAssignment
    dpDiskCsiDriverMiFederatedCredentialsRoleAssignment
    dpFileCsiDriverMiFederatedCredentialsRoleAssignment
    dpImageRegistryMiFederatedCredentialsRoleAssignment
    serviceManagedIdentityRoleAssignmentVnet
    serviceManagedIdentityRoleAssignmentNSG
    dpFileCsiDriverFileStorageOperatorRoleSubnetAssignment
    dpFileCsiDriverFileStorageOperatorRoleNsgAssignment
    serviceManagedIdentityReaderOnControlPlaneMi
    serviceManagedIdentityReaderOnCloudControllerManagerMi
    serviceManagedIdentityReaderOnIngressMi
    serviceManagedIdentityReaderOnDiskCsiDriverMi
    serviceManagedIdentityReaderOnFileCsiDriverMi
    serviceManagedIdentityReaderOnImageRegistryMi
    serviceManagedIdentityReaderOnCloudNetworkMi
    serviceManagedIdentityReaderOnClusterApiAzureMi
  ]
}

// Node pool resource
resource nodepool 'Microsoft.RedHatOpenShift/hcpOpenShiftClusters/nodePools@2026-09-01-preview' = {
  parent: hcp
  name: nodePoolName
  location: resourceGroup().location
  properties: {
    version: {
      id: nodePoolVersion
      channelGroup: 'stable'
    }
    platform: {
      subnetId: hcp.properties.platform.subnetId
      vmSize: 'Standard_D8s_v3'
      osDisk: {
        sizeGiB: 64
        diskStorageAccountType: 'StandardSSD_LRS'
      }
    }
    replicas: 2
  }
}

Implementazione del file Bicep

Distribuire il modello di Bicep per creare il cluster e tutte le risorse necessarie.

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="${CLUSTER_NAME}" \
    managedResourceGroupName="${MANAGED_RESOURCE_GROUP}" \
    nodePoolName="${NP_NAME}" \
    clusterVersion="${CLUSTER_VERSION}" \
    nodePoolVersion="${NP_VERSION}"

Il completamento della distribuzione richiede in genere da 15 a 20 minuti.

Verificare la distribuzione

Al termine della distribuzione, verificare che il cluster e il pool di nodi siano stati creati correttamente.

  1. Verificare che il cluster sia stato creato correttamente.

    az aro hcp cluster show \
      --name "${CLUSTER_NAME}" \
      --resource-group "${CUSTOMER_RG_NAME}" \
      --query "properties.provisioningState" \
      --output tsv
    

    Quando il cluster è pronto, l'output è Succeeded.

  2. Verificare che il pool di nodi sia stato creato correttamente.

    az aro hcp cluster nodepool show \
      --cluster-name "${CLUSTER_NAME}" \
      --name "${NP_NAME}" \
      --resource-group "${CUSTOMER_RG_NAME}" \
      --query "properties.provisioningState" \
      --output tsv
    

    Quando il pool di nodi è pronto, l'output è Succeeded.

Creare l'infrastruttura di rete

Creare un gruppo di sicurezza di rete, una rete virtuale con una subnet di lavoro e una subnet di integrazione della rete virtuale con delega.

  1. Creare il gruppo di sicurezza di rete.

    az network nsg create \
      --name "${CUSTOMER_NSG}" \
      --resource-group "${CUSTOMER_RG_NAME}" \
      --location "${LOCATION}"
    
  2. Creare la rete virtuale con la subnet worker.

    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}"
    
  3. Creare la subnet di integrazione della VNet con la delega necessaria.

    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/hcpOpenShiftClusters
    
  4. Ottieni gli ID delle risorse di rete.

    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)
    

Creare le identità gestite

Creare le identità gestite assegnate dall'utente per gli operatori del cluster e l'identità gestita del servizio. Per una descrizione di ogni identità e del relativo scopo, vedere Identità gestite necessarie e assegnazioni di ruolo.

# 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}"

# 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}"

Ottenere gli ID risorsa e gli ID entità per le identità gestite.

# 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)

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)

# 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)

# 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)

Creare le assegnazioni di ruolo

Assegnare i ruoli di Azure necessari a ogni identità gestita. Per una descrizione dettagliata di ogni identità e delle relative assegnazioni di ruolo necessarie, vedere Identità gestite necessarie e assegnazioni di ruolo.

  1. Impostare i GUID di definizione del ruolo.

    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"
    FEDERATED_CREDENTIAL_ROLE="ef318e2a-8334-4a05-9e4a-295a196c6a6e"
    HCP_SERVICE_MI_ROLE="c0ff367d-66d8-445e-917c-583feb0ef0d4"
    
  2. Assegnare i ruoli dell'operatore del piano di controllo.

    # Cluster API Azure → ARO HCP Cluster API Provider on worker subnet
    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}"
    
    # 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 and NSG
    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}"
    
    # Ingress → ARO Cluster Ingress Operator on worker subnet
    az role assignment create --assignee-object-id "${INGRESS_MI_PID}" --assignee-principal-type ServicePrincipal --role "${INGRESS_OPERATOR_ROLE}" --scope "${SUBNET_ID}"
    
    # File CSI Driver → ARO File Storage Operator on worker subnet and NSG
    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}"
    
    # 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}"
    
  3. Assegnare i ruoli di identità gestita del servizio.

    # 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}"
    
  4. Assegna i ruoli di operatore del piano dati.

    # 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 and NSG
    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}"
    

Creare il cluster

Creare il cluster con le impostazioni predefinite.

az aro hcp cluster create \
  --name "${CLUSTER_NAME}" \
  --resource-group "${CUSTOMER_RG_NAME}" \
  --location "${LOCATION}" \
  --version "${CLUSTER_VERSION}" \
  --channel-group stable \
  --subnet-id "${SUBNET_ID}" \
  --vnet-integration-subnet-id "${VNET_INTEGRATION_SUBNET_ID}" \
  --nsg "${NSG_ID}" \
  --managed-resource-group-name "${MANAGED_RESOURCE_GROUP}" \
  --user-assigned-identities "{${SERVICE_MI_ID}:{},${CLUSTER_API_AZURE_MI_ID}:{},${CONTROL_PLANE_MI_ID}:{},${CLOUD_CONTROLLER_MANAGER_MI_ID}:{},${INGRESS_MI_ID}:{},${DISK_CSI_DRIVER_MI_ID}:{},${FILE_CSI_DRIVER_MI_ID}:{},${IMAGE_REGISTRY_MI_ID}:{},${CLOUD_NETWORK_CONFIG_MI_ID}:{}}" \
  --operators-authentication "{user-assigned-identities:{control-plane-operators:{cluster-api-azure:${CLUSTER_API_AZURE_MI_ID},control-plane:${CONTROL_PLANE_MI_ID},cloud-controller-manager:${CLOUD_CONTROLLER_MANAGER_MI_ID},ingress:${INGRESS_MI_ID},disk-csi-driver:${DISK_CSI_DRIVER_MI_ID},file-csi-driver:${FILE_CSI_DRIVER_MI_ID},image-registry:${IMAGE_REGISTRY_MI_ID},cloud-network-config:${CLOUD_NETWORK_CONFIG_MI_ID}},data-plane-operators:{disk-csi-driver:${DP_DISK_CSI_DRIVER_MI_ID},file-csi-driver:${DP_FILE_CSI_DRIVER_MI_ID},image-registry:${DP_IMAGE_REGISTRY_MI_ID}},service-managed-identity:${SERVICE_MI_ID}}}"

Il completamento della distribuzione richiede in genere da 15 a 20 minuti.

Verificare che il cluster sia stato creato correttamente.

az aro hcp cluster show \
  --name "${CLUSTER_NAME}" \
  --resource-group "${CUSTOMER_RG_NAME}" \
  --query "properties.provisioningState" \
  --output tsv

Quando il cluster è pronto, l'output è Succeeded.

Creare il pool di nodi

Dopo aver creato il cluster, creare un pool di nodi con due Standard_D8s_v3 nodi di lavoro.

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}" \
  --channel-group stable

Verificare che il pool di nodi sia stato creato correttamente.

az aro hcp cluster nodepool show \
  --cluster-name "${CLUSTER_NAME}" \
  --name "${NP_NAME}" \
  --resource-group "${CUSTOMER_RG_NAME}" \
  --query "properties.provisioningState" \
  --output tsv

Quando il pool di nodi è pronto, l'output è Succeeded.

Passaggi successivi