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constants.go
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constants.go
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package incrementalrestorepoints
import (
"encoding/json"
"fmt"
"strings"
)
// Copyright (c) Microsoft Corporation. All rights reserved.
// Licensed under the MIT License. See NOTICE.txt in the project root for license information.
type AccessLevel string
const (
AccessLevelNone AccessLevel = "None"
AccessLevelRead AccessLevel = "Read"
AccessLevelWrite AccessLevel = "Write"
)
func PossibleValuesForAccessLevel() []string {
return []string{
string(AccessLevelNone),
string(AccessLevelRead),
string(AccessLevelWrite),
}
}
func (s *AccessLevel) UnmarshalJSON(bytes []byte) error {
var decoded string
if err := json.Unmarshal(bytes, &decoded); err != nil {
return fmt.Errorf("unmarshaling: %+v", err)
}
out, err := parseAccessLevel(decoded)
if err != nil {
return fmt.Errorf("parsing %q: %+v", decoded, err)
}
*s = *out
return nil
}
func parseAccessLevel(input string) (*AccessLevel, error) {
vals := map[string]AccessLevel{
"none": AccessLevelNone,
"read": AccessLevelRead,
"write": AccessLevelWrite,
}
if v, ok := vals[strings.ToLower(input)]; ok {
return &v, nil
}
// otherwise presume it's an undefined value and best-effort it
out := AccessLevel(input)
return &out, nil
}
type Architecture string
const (
ArchitectureArmSixFour Architecture = "Arm64"
ArchitectureXSixFour Architecture = "x64"
)
func PossibleValuesForArchitecture() []string {
return []string{
string(ArchitectureArmSixFour),
string(ArchitectureXSixFour),
}
}
func (s *Architecture) UnmarshalJSON(bytes []byte) error {
var decoded string
if err := json.Unmarshal(bytes, &decoded); err != nil {
return fmt.Errorf("unmarshaling: %+v", err)
}
out, err := parseArchitecture(decoded)
if err != nil {
return fmt.Errorf("parsing %q: %+v", decoded, err)
}
*s = *out
return nil
}
func parseArchitecture(input string) (*Architecture, error) {
vals := map[string]Architecture{
"arm64": ArchitectureArmSixFour,
"x64": ArchitectureXSixFour,
}
if v, ok := vals[strings.ToLower(input)]; ok {
return &v, nil
}
// otherwise presume it's an undefined value and best-effort it
out := Architecture(input)
return &out, nil
}
type DiskSecurityTypes string
const (
DiskSecurityTypesConfidentialVMDiskEncryptedWithCustomerKey DiskSecurityTypes = "ConfidentialVM_DiskEncryptedWithCustomerKey"
DiskSecurityTypesConfidentialVMDiskEncryptedWithPlatformKey DiskSecurityTypes = "ConfidentialVM_DiskEncryptedWithPlatformKey"
DiskSecurityTypesConfidentialVMVMGuestStateOnlyEncryptedWithPlatformKey DiskSecurityTypes = "ConfidentialVM_VMGuestStateOnlyEncryptedWithPlatformKey"
DiskSecurityTypesTrustedLaunch DiskSecurityTypes = "TrustedLaunch"
)
func PossibleValuesForDiskSecurityTypes() []string {
return []string{
string(DiskSecurityTypesConfidentialVMDiskEncryptedWithCustomerKey),
string(DiskSecurityTypesConfidentialVMDiskEncryptedWithPlatformKey),
string(DiskSecurityTypesConfidentialVMVMGuestStateOnlyEncryptedWithPlatformKey),
string(DiskSecurityTypesTrustedLaunch),
}
}
func (s *DiskSecurityTypes) UnmarshalJSON(bytes []byte) error {
var decoded string
if err := json.Unmarshal(bytes, &decoded); err != nil {
return fmt.Errorf("unmarshaling: %+v", err)
}
out, err := parseDiskSecurityTypes(decoded)
if err != nil {
return fmt.Errorf("parsing %q: %+v", decoded, err)
}
*s = *out
return nil
}
func parseDiskSecurityTypes(input string) (*DiskSecurityTypes, error) {
vals := map[string]DiskSecurityTypes{
"confidentialvm_diskencryptedwithcustomerkey": DiskSecurityTypesConfidentialVMDiskEncryptedWithCustomerKey,
"confidentialvm_diskencryptedwithplatformkey": DiskSecurityTypesConfidentialVMDiskEncryptedWithPlatformKey,
"confidentialvm_vmgueststateonlyencryptedwithplatformkey": DiskSecurityTypesConfidentialVMVMGuestStateOnlyEncryptedWithPlatformKey,
"trustedlaunch": DiskSecurityTypesTrustedLaunch,
}
if v, ok := vals[strings.ToLower(input)]; ok {
return &v, nil
}
// otherwise presume it's an undefined value and best-effort it
out := DiskSecurityTypes(input)
return &out, nil
}
type EncryptionType string
const (
EncryptionTypeEncryptionAtRestWithCustomerKey EncryptionType = "EncryptionAtRestWithCustomerKey"
EncryptionTypeEncryptionAtRestWithPlatformAndCustomerKeys EncryptionType = "EncryptionAtRestWithPlatformAndCustomerKeys"
EncryptionTypeEncryptionAtRestWithPlatformKey EncryptionType = "EncryptionAtRestWithPlatformKey"
)
func PossibleValuesForEncryptionType() []string {
return []string{
string(EncryptionTypeEncryptionAtRestWithCustomerKey),
string(EncryptionTypeEncryptionAtRestWithPlatformAndCustomerKeys),
string(EncryptionTypeEncryptionAtRestWithPlatformKey),
}
}
func (s *EncryptionType) UnmarshalJSON(bytes []byte) error {
var decoded string
if err := json.Unmarshal(bytes, &decoded); err != nil {
return fmt.Errorf("unmarshaling: %+v", err)
}
out, err := parseEncryptionType(decoded)
if err != nil {
return fmt.Errorf("parsing %q: %+v", decoded, err)
}
*s = *out
return nil
}
func parseEncryptionType(input string) (*EncryptionType, error) {
vals := map[string]EncryptionType{
"encryptionatrestwithcustomerkey": EncryptionTypeEncryptionAtRestWithCustomerKey,
"encryptionatrestwithplatformandcustomerkeys": EncryptionTypeEncryptionAtRestWithPlatformAndCustomerKeys,
"encryptionatrestwithplatformkey": EncryptionTypeEncryptionAtRestWithPlatformKey,
}
if v, ok := vals[strings.ToLower(input)]; ok {
return &v, nil
}
// otherwise presume it's an undefined value and best-effort it
out := EncryptionType(input)
return &out, nil
}
type HyperVGeneration string
const (
HyperVGenerationVOne HyperVGeneration = "V1"
HyperVGenerationVTwo HyperVGeneration = "V2"
)
func PossibleValuesForHyperVGeneration() []string {
return []string{
string(HyperVGenerationVOne),
string(HyperVGenerationVTwo),
}
}
func (s *HyperVGeneration) UnmarshalJSON(bytes []byte) error {
var decoded string
if err := json.Unmarshal(bytes, &decoded); err != nil {
return fmt.Errorf("unmarshaling: %+v", err)
}
out, err := parseHyperVGeneration(decoded)
if err != nil {
return fmt.Errorf("parsing %q: %+v", decoded, err)
}
*s = *out
return nil
}
func parseHyperVGeneration(input string) (*HyperVGeneration, error) {
vals := map[string]HyperVGeneration{
"v1": HyperVGenerationVOne,
"v2": HyperVGenerationVTwo,
}
if v, ok := vals[strings.ToLower(input)]; ok {
return &v, nil
}
// otherwise presume it's an undefined value and best-effort it
out := HyperVGeneration(input)
return &out, nil
}
type NetworkAccessPolicy string
const (
NetworkAccessPolicyAllowAll NetworkAccessPolicy = "AllowAll"
NetworkAccessPolicyAllowPrivate NetworkAccessPolicy = "AllowPrivate"
NetworkAccessPolicyDenyAll NetworkAccessPolicy = "DenyAll"
)
func PossibleValuesForNetworkAccessPolicy() []string {
return []string{
string(NetworkAccessPolicyAllowAll),
string(NetworkAccessPolicyAllowPrivate),
string(NetworkAccessPolicyDenyAll),
}
}
func (s *NetworkAccessPolicy) UnmarshalJSON(bytes []byte) error {
var decoded string
if err := json.Unmarshal(bytes, &decoded); err != nil {
return fmt.Errorf("unmarshaling: %+v", err)
}
out, err := parseNetworkAccessPolicy(decoded)
if err != nil {
return fmt.Errorf("parsing %q: %+v", decoded, err)
}
*s = *out
return nil
}
func parseNetworkAccessPolicy(input string) (*NetworkAccessPolicy, error) {
vals := map[string]NetworkAccessPolicy{
"allowall": NetworkAccessPolicyAllowAll,
"allowprivate": NetworkAccessPolicyAllowPrivate,
"denyall": NetworkAccessPolicyDenyAll,
}
if v, ok := vals[strings.ToLower(input)]; ok {
return &v, nil
}
// otherwise presume it's an undefined value and best-effort it
out := NetworkAccessPolicy(input)
return &out, nil
}
type OperatingSystemTypes string
const (
OperatingSystemTypesLinux OperatingSystemTypes = "Linux"
OperatingSystemTypesWindows OperatingSystemTypes = "Windows"
)
func PossibleValuesForOperatingSystemTypes() []string {
return []string{
string(OperatingSystemTypesLinux),
string(OperatingSystemTypesWindows),
}
}
func (s *OperatingSystemTypes) UnmarshalJSON(bytes []byte) error {
var decoded string
if err := json.Unmarshal(bytes, &decoded); err != nil {
return fmt.Errorf("unmarshaling: %+v", err)
}
out, err := parseOperatingSystemTypes(decoded)
if err != nil {
return fmt.Errorf("parsing %q: %+v", decoded, err)
}
*s = *out
return nil
}
func parseOperatingSystemTypes(input string) (*OperatingSystemTypes, error) {
vals := map[string]OperatingSystemTypes{
"linux": OperatingSystemTypesLinux,
"windows": OperatingSystemTypesWindows,
}
if v, ok := vals[strings.ToLower(input)]; ok {
return &v, nil
}
// otherwise presume it's an undefined value and best-effort it
out := OperatingSystemTypes(input)
return &out, nil
}
type PublicNetworkAccess string
const (
PublicNetworkAccessDisabled PublicNetworkAccess = "Disabled"
PublicNetworkAccessEnabled PublicNetworkAccess = "Enabled"
)
func PossibleValuesForPublicNetworkAccess() []string {
return []string{
string(PublicNetworkAccessDisabled),
string(PublicNetworkAccessEnabled),
}
}
func (s *PublicNetworkAccess) UnmarshalJSON(bytes []byte) error {
var decoded string
if err := json.Unmarshal(bytes, &decoded); err != nil {
return fmt.Errorf("unmarshaling: %+v", err)
}
out, err := parsePublicNetworkAccess(decoded)
if err != nil {
return fmt.Errorf("parsing %q: %+v", decoded, err)
}
*s = *out
return nil
}
func parsePublicNetworkAccess(input string) (*PublicNetworkAccess, error) {
vals := map[string]PublicNetworkAccess{
"disabled": PublicNetworkAccessDisabled,
"enabled": PublicNetworkAccessEnabled,
}
if v, ok := vals[strings.ToLower(input)]; ok {
return &v, nil
}
// otherwise presume it's an undefined value and best-effort it
out := PublicNetworkAccess(input)
return &out, nil
}