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206 lines
6.9 KiB
Markdown
206 lines
6.9 KiB
Markdown
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# <a name="windowsSpecificContainerConfiguration" />Windows-specific Container Configuration
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This document describes the schema for the [Windows-specific section](config.md#platform-specific-configuration) of the [container configuration](config.md).
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The Windows container specification uses APIs provided by the Windows Host Compute Service (HCS) to fulfill the spec.
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## <a name="configWindowsLayerFolders" />LayerFolders
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**`layerFolders`** (array of strings, REQUIRED) specifies a list of layer folders the container image relies on. The list is ordered from topmost layer to base layer.
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`layerFolders` MUST contain at least one entry.
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### Example
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```json
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"windows": {
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"layerFolders": [
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"C:\\Layers\\layer1",
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"C:\\Layers\\layer2"
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]
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}
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```
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## <a name="configWindowsDevices" />Devices
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**`devices`** (array of objects, OPTIONAL) lists devices that MUST be available in the container.
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Each entry has the following structure:
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* **`id`** *(string, REQUIRED)* - specifies the device which the runtime MUST make available in the container.
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* **`idType`** *(string, REQUIRED)* - tells the runtime how to interpret `id`. Today, Windows only supports a value of `class`, which identifies `id` as a [device interface class GUID][interfaceGUID].
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[interfaceGUID]: https://docs.microsoft.com/en-us/windows-hardware/drivers/install/overview-of-device-interface-classes
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### Example
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```json
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"windows": {
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"devices": [
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{
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"id": "24E552D7-6523-47F7-A647-D3465BF1F5CA",
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"idType": "class"
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},
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{
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"id": "5175d334-c371-4806-b3ba-71fd53c9258d",
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"idType": "class"
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}
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]
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}
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```
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## <a name="configWindowsResources" />Resources
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You can configure a container's resource limits via the OPTIONAL `resources` field of the Windows configuration.
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### <a name="configWindowsMemory" />Memory
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`memory` is an OPTIONAL configuration for the container's memory usage.
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The following parameters can be specified:
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* **`limit`** *(uint64, OPTIONAL)* - sets limit of memory usage in bytes.
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#### Example
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```json
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"windows": {
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"resources": {
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"memory": {
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"limit": 2097152
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}
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}
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}
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```
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### <a name="configWindowsCpu" />CPU
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`cpu` is an OPTIONAL configuration for the container's CPU usage.
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The following parameters can be specified:
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* **`count`** *(uint64, OPTIONAL)* - specifies the number of CPUs available to the container.
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* **`shares`** *(uint16, OPTIONAL)* - specifies the relative weight to other containers with CPU shares.
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* **`maximum`** *(uint16, OPTIONAL)* - specifies the portion of processor cycles that this container can use as a percentage times 100.
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#### Example
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```json
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"windows": {
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"resources": {
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"cpu": {
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"maximum": 5000
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}
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}
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}
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```
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### <a name="configWindowsStorage" />Storage
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`storage` is an OPTIONAL configuration for the container's storage usage.
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The following parameters can be specified:
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* **`iops`** *(uint64, OPTIONAL)* - specifies the maximum IO operations per second for the system drive of the container.
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* **`bps`** *(uint64, OPTIONAL)* - specifies the maximum bytes per second for the system drive of the container.
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* **`sandboxSize`** *(uint64, OPTIONAL)* - specifies the minimum size of the system drive in bytes.
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#### Example
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```json
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"windows": {
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"resources": {
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"storage": {
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"iops": 50
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}
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}
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}
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```
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## <a name="configWindowsNetwork" />Network
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You can configure a container's networking options via the OPTIONAL `network` field of the Windows configuration.
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The following parameters can be specified:
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* **`endpointList`** *(array of strings, OPTIONAL)* - list of HNS (Host Network Service) endpoints that the container should connect to.
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* **`allowUnqualifiedDNSQuery`** *(bool, OPTIONAL)* - specifies if unqualified DNS name resolution is allowed.
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* **`DNSSearchList`** *(array of strings, OPTIONAL)* - comma separated list of DNS suffixes to use for name resolution.
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* **`networkSharedContainerName`** *(string, OPTIONAL)* - name (ID) of the container that we will share with the network stack.
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* **`networkNamespace`** *(string, OPTIONAL)* - name (ID) of the network namespace that will be used for the container. If a network namespace is specified no other parameter must be specified.
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### Example
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```json
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"windows": {
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"network": {
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"endpointList": [
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"7a010682-17e0-4455-a838-02e5d9655fe6"
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],
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"allowUnqualifiedDNSQuery": true,
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"DNSSearchList": [
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"a.com",
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"b.com"
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],
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"networkSharedContainerName": "containerName",
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"networkNamespace": "168f3daf-efc6-4377-b20a-2c86764ba892"
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}
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}
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```
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## <a name="configWindowsCredentialSpec" />Credential Spec
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You can configure a container's group Managed Service Account (gMSA) via the OPTIONAL `credentialSpec` field of the Windows configuration.
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The `credentialSpec` is a JSON object whose properties are implementation-defined.
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For more information about gMSAs, see [Active Directory Service Accounts for Windows Containers][gMSAOverview].
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For more information about tooling to generate a gMSA, see [Deployment Overview][gMSATooling].
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[gMSAOverview]: https://aka.ms/windowscontainers/manage-serviceaccounts
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[gMSATooling]: https://aka.ms/windowscontainers/credentialspec-tools
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## <a name="configWindowsServicing" />Servicing
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When a container terminates, the Host Compute Service indicates if a Windows update servicing operation is pending.
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You can indicate that a container should be started in a mode to apply pending servicing operations via the OPTIONAL `servicing` field of the Windows configuration.
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### Example
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```json
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"windows": {
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"servicing": true
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}
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```
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## <a name="configWindowsIgnoreFlushesDuringBoot" />IgnoreFlushesDuringBoot
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You can indicate that a container should be started in an a mode where disk flushes are not performed during container boot via the OPTIONAL `ignoreFlushesDuringBoot` field of the Windows configuration.
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### Example
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```json
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"windows": {
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"ignoreFlushesDuringBoot": true
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}
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```
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## <a name="configWindowsHyperV" />HyperV
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`hyperv` is an OPTIONAL field of the Windows configuration.
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If present, the container MUST be run with Hyper-V isolation.
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If omitted, the container MUST be run as a Windows Server container.
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The following parameters can be specified:
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* **`utilityVMPath`** *(string, OPTIONAL)* - specifies the path to the image used for the utility VM.
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This would be specified if using a base image which does not contain a utility VM image.
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If not supplied, the runtime will search the container filesystem layers from the bottom-most layer upwards, until it locates "UtilityVM", and default to that path.
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### Example
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```json
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"windows": {
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"hyperv": {
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"utilityVMPath": "C:\\path\\to\\utilityvm"
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}
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}
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```
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