This commit is contained in:
asteam
2025-09-23 14:34:24 +03:00
parent b924e85e49
commit f1ffb4c0fd
1108 changed files with 72020 additions and 0 deletions

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package validators
import (
"errors"
"fmt"
"net/url"
"reflect"
"regexp"
"strings"
"github.com/go-playground/validator/v10"
"repository.basistech.ru/BASIS/dynamix-golang-sdk/v9/interfaces"
"repository.basistech.ru/BASIS/dynamix-golang-sdk/v9/internal/multierror"
)
// computeDriverValidator is used to validate Driver field in kvmx86 create.
func computeDriverValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, computeDriverValues)
}
// protoValidator is used to validate Proto fields.
func protoValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, protoValues)
}
// accessTypeValidator is used to validate AccessType fields.
func accessTypeValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, accessTypeValues)
}
// resTypesValidator is used to validate ResTypes fields.
func resTypesValidator(fe validator.FieldLevel) bool {
fieldSlice, ok := fe.Field().Interface().([]string)
if !ok {
return false
}
for _, value := range fieldSlice {
if !IsInSlice(value, resTypesValues) {
return false
}
}
return true
}
// driverValidator is used to validate Driver fields.
func driverValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, driverValues)
}
// accountCUTypeValidator is used to validate CUType field.
func accountCUTypeValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, accountCUTypeValues)
}
// bserviceModeValidator is used to validate Mode field.
func bserviceModeValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, bserviceModeValues)
}
// computeTopologyValidator is used to validate Topology field.
func computeTopologyValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, computeTopologyValues)
}
// computePolicyValidator is used to validate Policy field.
func computePolicyValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, computePolicyValues)
}
// computeModeValidator is used to validate Mode field.
func computeModeValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, computeModeValues)
}
// computeDiskTypeValidator is used to validate DiskType field.
func computeDiskTypeValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, computeDiskTypeValues)
}
// computeNetTypeValidator is used to validate NetType field.
func computeNetTypeValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, computeNetTypeValues)
}
// computex86NetTypeValidator is used to validate NetType field.
func computex86NetTypeValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, computex86NetTypeValues)
}
// computeOrderValidator is used to validate Order field.
func computeOrderValidator(fe validator.FieldLevel) bool {
fieldSlice, ok := fe.Field().Interface().([]string)
if !ok {
return false
}
for _, value := range fieldSlice {
if !IsInSlice(value, computeOrderValues) {
return false
}
}
return true
}
// computeDataDisksValidator is used to validate DataDisks field.
func computeDataDisksValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, computeDataDisksValues)
}
// diskTypeValidator is used to validate Type field.
func diskTypeValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, diskTypeValues)
}
// flipgroupClientTypeValidator is used to validate ClientType field.
func flipgroupClientTypeValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, flipgroupClientTypeValues)
}
// kvmNetTypeValidator is used to validate NetType field.
func kvmNetTypeValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, kvmNetTypeValues)
}
// lbAlgorithmValidator is used to validate Algorithm field.
func lbAlgorithmValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, lbAlgorithmValues)
}
// rgDefNetValidator is used to validate DefNet field.
func rgDefNetValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, rgDefNetValues)
}
// rgNetTypeValidator is used to validate NetType field.
func rgNetTypeValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, rgNetTypeValues)
}
// vinsTypeValidator is used to validate Type field.
func vinsTypeValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, vinsTypeValues)
}
// imageBootTypeValidator is used to validate BootType field.
func imageBootTypeValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, imageBootTypeValues)
}
// imageTypeValidator is used to validate ImageType field.
func imageTypeValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, imageTypeValues)
}
// imageDriversValidator is used to validate Drivers field.
func imageDriversValidator(fe validator.FieldLevel) bool {
fieldSlice, ok := fe.Field().Interface().([]string)
if !ok {
return false
}
for _, item := range fieldSlice {
if !IsInSlice(item, imageDriversValues) {
return false
}
}
return true
}
// imageArchitectureValidator is used to validate Architecture field.
func imageArchitectureValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, imageArchitectureValues)
}
// sepFieldTypeValidator is used to validate FieldType field.
func sepFieldTypeValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, sepFieldTypeValues)
}
// hwPathValidator is used to validate HWPath field.
func hwPathValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
ok, _ := regexp.MatchString(`^\b[0-9a-f]{4}:[0-9a-fA-F]{2}:[0-9a-fA-F]{2}.\d{1}$`, fieldValue)
return ok
}
// networkPluginValidator is used to validate NetworkPlugin field
func networkPluginValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
fieldValue = strings.ToLower(fieldValue)
return IsInSlice(fieldValue, networkPluginValues)
}
// networkPluginsValidator is used to validate NetworkPlugins field
func networkPluginsValidator(fe validator.FieldLevel) bool {
fieldSlice, ok := fe.Field().Interface().([]string)
if !ok {
return false
}
for _, item := range fieldSlice {
item = strings.ToLower(item)
if !IsInSlice(item, networkPluginValues) {
return false
}
}
return true
}
func interfaceStateValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
fieldValue = strings.ToLower(fieldValue)
return IsInSlice(fieldValue, interfaceStateValues)
}
func interfaceTXModelValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
fieldValue = strings.ToLower(fieldValue)
return IsInSlice(fieldValue, txModelValues)
}
func interfaceIOEventFDValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
fieldValue = strings.ToLower(fieldValue)
return IsInSlice(fieldValue, ioEventFDValues)
}
func interfaceEventIDxValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
fieldValue = strings.ToLower(fieldValue)
return IsInSlice(fieldValue, eventIDxValues)
}
func strictLooseValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
fieldValue = strings.ToLower(fieldValue)
return IsInSlice(fieldValue, strictLooseValues)
}
// name workerGroup must be more 3 symbol
func workerGroupNameValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
fieldValue = strings.Trim(fieldValue, " ")
return len(fieldValue) >= 3
}
func sortByValidator(fe validator.FieldLevel) bool {
sortByRegexp := regexp.MustCompile(`^[+-][a-zA-Z_]+`)
return sortByRegexp.MatchString(fe.Field().String())
}
func actionValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, actionValues)
}
func vmActionValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, vmActionValues)
}
func mtuValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().Uint()
return fieldValue >= uint64(mtuMin) && fieldValue <= uint64(mtuMax)
}
func computeFeaturesValidator(fe validator.FieldLevel) bool {
field := fe.Field()
slice, ok := field.Interface().([]string)
if !ok {
return false
}
return IsSubSlice(slice, computeFeaturesValues)
}
func networkInterfaceNamingValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, networkInterfaceNamingValues)
}
func numaAffinityValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, numaAffinityValues)
}
// kvmx86NetTypeValidator is used to validate NetType field for x86 compute.
func kvmx86NetTypeValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
return IsInSlice(fieldValue, kvmx86NetTypeValues)
}
func isBoolTypeValidator(fe validator.FieldLevel) bool {
return fe.Field().CanConvert(reflect.TypeOf(true))
}
func urlValidartor(fl validator.FieldLevel) bool {
fieldValues := fl.Field().String()
_, err := url.ParseRequestURI(fieldValues)
return err == nil
}
func chipsetValidator(fe validator.FieldLevel) bool {
fieldValue := fe.Field().String()
fieldValue = strings.ToLower(fieldValue)
return IsInSlice(fieldValue, chipsetValues)
}
// ValidateRAM checks if request contains RAM value that is positive integer divisible by divisibility passed.
// It is recommended to pass constants.RAM_DIVISIBILITY as divisility arguement
func ValidateRAM(r interfaces.RequestWithRAM, divisibility uint64) error {
if divisibility == 0 {
return errors.New("second argument of ValidateRAM should be greater than 0")
}
mapRAM := r.GetRAM()
errs := make([]error, 0, len(mapRAM))
for k, v := range mapRAM {
if v%divisibility != 0 {
errs = append(errs, fmt.Errorf("expected value of %s: \"%d\" should be divisible by %d", k, v, divisibility))
}
}
return multierror.Join(errs...)
}

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package validators
import (
"errors"
"repository.basistech.ru/BASIS/dynamix-golang-sdk/v9/internal/multierror"
"github.com/go-playground/validator/v10"
)
func ValidateRequest(req interface{}) error {
validate := getDecortValidator()
return validate.Struct(req)
}
func ValidateConfig(cfg interface{}) error {
validate := getDecortValidator()
return validate.Struct(cfg)
}
func ValidationError(fe validator.FieldError) error {
return errors.New(errorMessage(fe))
}
func ValidationErrors(fes []validator.FieldError) error {
errs := make([]error, 0, len(fes))
for _, fe := range fes {
errs = append(errs, ValidationError(fe))
}
return multierror.Join(errs...)
}
//nolint:errorlint
func GetErrors(err error) validator.ValidationErrors {
return err.(validator.ValidationErrors)
}
func IsInSlice(str string, target []string) bool {
for _, v := range target {
if v == str {
return true
}
}
return false
}
func IsSubSlice(source []string, target []string) bool {
for _, s := range source {
if !IsInSlice(s, target) {
return false
}
}
return true
}

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package validators
import (
"fmt"
"strings"
"github.com/go-playground/validator/v10"
)
func errorMessage(fe validator.FieldError) string {
prefix := "validation-error:"
switch fe.Tag() {
// Common Validators
case "required":
return fmt.Sprintf("%s %s is required", prefix, fe.Field())
case "gt":
return fmt.Sprintf("%s %s can't be less or equal to zero", prefix, fe.Field())
case "min":
return fmt.Sprintf("%s %s: not enough elements", prefix, fe.Field())
case "max":
return fmt.Sprintf("%s %s: too many elements", prefix, fe.Field())
case "url":
return fmt.Sprintf("%s %s: unexpected URL format", prefix, fe.Field())
case "email":
return fmt.Sprintf("%s %s: unexpected E-Mail format", prefix, fe.Field())
case "isBool":
return fmt.Sprintf("%s %s: must be bool type", prefix, fe.Field())
case "driver":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(driverValues))
case "accessType":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(accessTypeValues))
case "resTypes":
return fmt.Sprintf("%s %s can contain only the following values: %s",
prefix,
fe.Field(),
joinValues(resTypesValues))
case "proto":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(protoValues))
// Account Validators
case "accountCUType":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(accountCUTypeValues))
// BService Validators
case "bserviceMode":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(bserviceModeValues))
// Compute Validators
case "computeTopology":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(computeTopologyValues))
case "computePolicy":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(computePolicyValues))
case "computeMode":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(computeModeValues))
case "computeDiskType":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(computeDiskTypeValues))
case "mtu":
return fmt.Sprint(prefix, fe.Field(), "must be ", mtuMin, "-", mtuMax)
case "computex86NetType":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(computex86NetTypeValues))
case "computeNetType":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(computeNetTypeValues))
case "computeOrder":
return fmt.Sprintf("%s %s can contain only the following values: %s",
prefix,
fe.Field(),
joinValues(computeOrderValues))
case "computeDataDisks":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(computeDataDisksValues))
case "computeDriver":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(computeDriverValues))
// Disk Validators
case "diskType":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(diskTypeValues))
// Flipgroup Validators
case "flipgroupClientType":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(flipgroupClientTypeValues))
// k8s Validators
case "workerGroupName":
return fmt.Sprintf("%s %s must be more 3 symbol",
prefix,
fe.Field())
// KVM_X86 Validators
case "kvmNetType":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(kvmNetTypeValues))
// LB Validators
case "lbAlgorithm":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(lbAlgorithmValues))
// RG Validators
case "rgDefNet":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(rgDefNetValues))
case "rgNetType":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(rgNetTypeValues))
// ViNS Validators
case "vinsType":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(vinsTypeValues))
// Image Validators
case "imageBootType":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(imageBootTypeValues))
case "imageType":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(imageTypeValues))
case "imageDrivers":
return fmt.Sprintf("%s %s must contain only the following: %s",
prefix,
fe.Field(),
joinValues(imageDriversValues))
case "imageArchitecture":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(imageArchitectureValues))
// SEP Validators
case "sepFieldType":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(sepFieldTypeValues))
// HWPath Validators
case "hwPath":
return fmt.Sprintf("%s %s must be in format 0000:1f:2b.0",
prefix,
fe.Field())
// Network plugin Validators
case "networkPlugin":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(networkPluginValues))
case "networkPlugins":
return fmt.Sprintf("%s %s must contain only the following: %s",
prefix,
fe.Field(),
joinValues(networkPluginValues))
case "strict_loose":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(strictLooseValues))
case "interfaceState":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(interfaceStateValues))
case "interfaceTXModel":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(txModelValues))
case "interfaceIOEventFD":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(ioEventFDValues))
case "interfaceEventIDx":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(eventIDxValues))
case "sortBy":
return fmt.Sprintf("%s %s must be in format +|-(field)",
prefix,
fe.Field())
case "action":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(actionValues))
case "vmaction":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(vmActionValues))
case "computeFeatures":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(computeFeaturesValues))
case "networkInterfaceNaming":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(networkInterfaceNamingValues))
case "numaAffinity":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(numaAffinityValues))
case "kvmx86NetType":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(kvmx86NetTypeValues))
case "chipset":
return fmt.Sprintf("%s %s must be one of the following: %s",
prefix,
fe.Field(),
joinValues(chipsetValues))
}
return fe.Error()
}
func joinValues(values []string) string {
return strings.Join(values, ", ")
}

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package validators
import (
"sync"
"github.com/go-playground/validator/v10"
)
var (
once sync.Once
decortValidator = validator.New()
)
// getDecortValidator returns singleton instance of DecortValidator.
func getDecortValidator() *validator.Validate {
once.Do(func() {
err := registerAllValidators(decortValidator)
if err != nil {
panic(err)
}
})
return decortValidator
}
// registerAllValidators registers all custom validators in DecortValidator.
func registerAllValidators(validate *validator.Validate) error {
err := validate.RegisterValidation("proto", protoValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("computeDriver", computeDriverValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("accessType", accessTypeValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("resTypes", resTypesValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("driver", driverValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("imageBootType", imageBootTypeValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("imageType", imageTypeValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("imageDrivers", imageDriversValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("imageArchitecture", imageArchitectureValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("accountCUType", accountCUTypeValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("bserviceMode", bserviceModeValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("computeTopology", computeTopologyValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("computePolicy", computePolicyValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("computeMode", computeModeValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("computeDiskType", computeDiskTypeValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("computeNetType", computeNetTypeValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("computex86NetType", computex86NetTypeValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("computeOrder", computeOrderValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("computeDataDisks", computeDataDisksValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("diskType", diskTypeValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("flipgroupClientType", flipgroupClientTypeValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("kvmNetType", kvmNetTypeValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("lbAlgorithm", lbAlgorithmValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("rgDefNet", rgDefNetValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("rgNetType", rgNetTypeValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("vinsType", vinsTypeValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("sepFieldType", sepFieldTypeValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("hwPath", hwPathValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("networkPlugin", networkPluginValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("networkPlugins", networkPluginsValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("strict_loose", strictLooseValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("interfaceState", interfaceStateValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("interfaceTXModel", interfaceTXModelValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("interfaceIOEventFD", interfaceIOEventFDValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("interfaceEventIDx", interfaceEventIDxValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("workerGroupName", workerGroupNameValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("sortBy", sortByValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("action", actionValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("vmaction", vmActionValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("mtu", mtuValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("computeFeatures", computeFeaturesValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("networkInterfaceNaming", networkInterfaceNamingValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("numaAffinity", numaAffinityValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("kvmx86NetType", kvmx86NetTypeValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("isBool", isBoolTypeValidator)
if err != nil {
return err
}
err = validate.RegisterValidation("url", urlValidartor)
if err != nil {
return err
}
err = validate.RegisterValidation("chipset", chipsetValidator)
if err != nil {
return err
}
return nil
}

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package validators
var (
driverValues = []string{"KVM_X86"}
accessTypeValues = []string{"R", "RCX", "ARCXDU"}
resTypesValues = []string{"compute", "vins", "k8s", "openshift", "lb", "flipgroup"}
protoValues = []string{"tcp", "udp"}
accountCUTypeValues = []string{"CU_M", "CU_C", "CU_D", "CU_DM", "CU_S", "CU_A", "CU_NO", "CU_I", "CU_NP"}
bserviceModeValues = []string{"ABSOLUTE", "RELATIVE"}
computeTopologyValues = []string{"compute", "node"}
computePolicyValues = []string{"RECOMMENDED", "REQUIRED"}
computeModeValues = []string{"EQ", "EN", "ANY"}
computeDiskTypeValues = []string{"D", "B"}
computeNetTypeValues = []string{"EXTNET", "VINS"}
computex86NetTypeValues = []string{"EXTNET", "VINS", "VFNIC", "DPDK"}
computeOrderValues = []string{"cdrom", "network", "hd"}
computeDataDisksValues = []string{"KEEP", "DETACH", "DESTROY"}
computeDriverValues = []string{"KVM_X86", "SVA_KVM_X86"}
diskTypeValues = []string{"B", "T", "D"}
flipgroupClientTypeValues = []string{"compute", "vins"}
kvmNetTypeValues = []string{"EXTNET", "VINS", "NONE"}
kvmx86NetTypeValues = []string{"EXTNET", "VINS", "NONE", "VFNIC", "DPDK"}
lbAlgorithmValues = []string{"roundrobin", "static-rr", "leastconn"}
rgDefNetValues = []string{"PRIVATE", "PUBLIC", "NONE"}
rgNetTypeValues = []string{"PUBLIC", "PRIVATE"}
vinsTypeValues = []string{"DHCP", "VIP", "EXCLUDED"}
imageBootTypeValues = []string{"uefi", "bios"}
imageTypeValues = []string{"windows", "linux", "other"}
imageDriversValues = []string{"KVM_X86"}
imageArchitectureValues = []string{"X86_64"}
sepFieldTypeValues = []string{"int", "str", "bool", "list", "dict"}
networkPluginValues = []string{"flannel", "weavenet", "calico"}
strictLooseValues = []string{"strict", "loose"}
interfaceStateValues = []string{"on", "off"}
actionValues = []string{"power_on", "shutdown", "force_shutdown", "reboot"}
vmActionValues = []string{"stop", "move"}
computeFeaturesValues = []string{"hugepages", "numa", "cpupin", "vfnic"}
networkInterfaceNamingValues = []string{"eth", "ens"}
numaAffinityValues = []string{"none", "strict", "loose"}
txModelValues = []string{"iothread", "timer", "selected by hypervisor"}
ioEventFDValues = []string{"on", "off", "selected by hypervisor"}
eventIDxValues = []string{"on", "off", "selected by hypervisor"}
chipsetValues = []string{"i440fx", "Q35"}
)
const (
mtuMin = 1
mtuMax = 9216
)