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259
vendor/k8s.io/apimachinery/pkg/util/validation/field/errors.go
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vendored
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259
vendor/k8s.io/apimachinery/pkg/util/validation/field/errors.go
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/*
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Copyright 2014 The Kubernetes Authors.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package field
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import (
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"fmt"
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"reflect"
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"strconv"
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"strings"
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utilerrors "k8s.io/apimachinery/pkg/util/errors"
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"k8s.io/apimachinery/pkg/util/sets"
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)
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// Error is an implementation of the 'error' interface, which represents a
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// field-level validation error.
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type Error struct {
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Type ErrorType
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Field string
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BadValue interface{}
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Detail string
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}
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var _ error = &Error{}
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// Error implements the error interface.
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func (v *Error) Error() string {
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return fmt.Sprintf("%s: %s", v.Field, v.ErrorBody())
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}
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// ErrorBody returns the error message without the field name. This is useful
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// for building nice-looking higher-level error reporting.
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func (v *Error) ErrorBody() string {
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var s string
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switch v.Type {
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case ErrorTypeRequired, ErrorTypeForbidden, ErrorTypeTooLong, ErrorTypeInternal:
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s = v.Type.String()
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default:
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value := v.BadValue
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valueType := reflect.TypeOf(value)
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if value == nil || valueType == nil {
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value = "null"
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} else if valueType.Kind() == reflect.Ptr {
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if reflectValue := reflect.ValueOf(value); reflectValue.IsNil() {
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value = "null"
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} else {
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value = reflectValue.Elem().Interface()
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}
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}
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switch t := value.(type) {
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case int64, int32, float64, float32, bool:
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// use simple printer for simple types
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s = fmt.Sprintf("%s: %v", v.Type, value)
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case string:
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s = fmt.Sprintf("%s: %q", v.Type, t)
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case fmt.Stringer:
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// anything that defines String() is better than raw struct
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s = fmt.Sprintf("%s: %s", v.Type, t.String())
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default:
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// fallback to raw struct
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// TODO: internal types have panic guards against json.Marshalling to prevent
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// accidental use of internal types in external serialized form. For now, use
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// %#v, although it would be better to show a more expressive output in the future
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s = fmt.Sprintf("%s: %#v", v.Type, value)
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}
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}
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if len(v.Detail) != 0 {
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s += fmt.Sprintf(": %s", v.Detail)
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}
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return s
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}
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// ErrorType is a machine readable value providing more detail about why
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// a field is invalid. These values are expected to match 1-1 with
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// CauseType in api/types.go.
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type ErrorType string
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// TODO: These values are duplicated in api/types.go, but there's a circular dep. Fix it.
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const (
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// ErrorTypeNotFound is used to report failure to find a requested value
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// (e.g. looking up an ID). See NotFound().
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ErrorTypeNotFound ErrorType = "FieldValueNotFound"
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// ErrorTypeRequired is used to report required values that are not
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// provided (e.g. empty strings, null values, or empty arrays). See
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// Required().
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ErrorTypeRequired ErrorType = "FieldValueRequired"
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// ErrorTypeDuplicate is used to report collisions of values that must be
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// unique (e.g. unique IDs). See Duplicate().
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ErrorTypeDuplicate ErrorType = "FieldValueDuplicate"
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// ErrorTypeInvalid is used to report malformed values (e.g. failed regex
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// match, too long, out of bounds). See Invalid().
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ErrorTypeInvalid ErrorType = "FieldValueInvalid"
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// ErrorTypeNotSupported is used to report unknown values for enumerated
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// fields (e.g. a list of valid values). See NotSupported().
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ErrorTypeNotSupported ErrorType = "FieldValueNotSupported"
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// ErrorTypeForbidden is used to report valid (as per formatting rules)
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// values which would be accepted under some conditions, but which are not
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// permitted by the current conditions (such as security policy). See
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// Forbidden().
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ErrorTypeForbidden ErrorType = "FieldValueForbidden"
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// ErrorTypeTooLong is used to report that the given value is too long.
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// This is similar to ErrorTypeInvalid, but the error will not include the
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// too-long value. See TooLong().
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ErrorTypeTooLong ErrorType = "FieldValueTooLong"
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// ErrorTypeInternal is used to report other errors that are not related
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// to user input. See InternalError().
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ErrorTypeInternal ErrorType = "InternalError"
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)
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// String converts a ErrorType into its corresponding canonical error message.
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func (t ErrorType) String() string {
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switch t {
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case ErrorTypeNotFound:
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return "Not found"
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case ErrorTypeRequired:
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return "Required value"
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case ErrorTypeDuplicate:
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return "Duplicate value"
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case ErrorTypeInvalid:
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return "Invalid value"
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case ErrorTypeNotSupported:
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return "Unsupported value"
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case ErrorTypeForbidden:
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return "Forbidden"
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case ErrorTypeTooLong:
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return "Too long"
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case ErrorTypeInternal:
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return "Internal error"
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default:
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panic(fmt.Sprintf("unrecognized validation error: %q", string(t)))
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}
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}
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// NotFound returns a *Error indicating "value not found". This is
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// used to report failure to find a requested value (e.g. looking up an ID).
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func NotFound(field *Path, value interface{}) *Error {
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return &Error{ErrorTypeNotFound, field.String(), value, ""}
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}
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// Required returns a *Error indicating "value required". This is used
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// to report required values that are not provided (e.g. empty strings, null
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// values, or empty arrays).
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func Required(field *Path, detail string) *Error {
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return &Error{ErrorTypeRequired, field.String(), "", detail}
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}
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// Duplicate returns a *Error indicating "duplicate value". This is
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// used to report collisions of values that must be unique (e.g. names or IDs).
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func Duplicate(field *Path, value interface{}) *Error {
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return &Error{ErrorTypeDuplicate, field.String(), value, ""}
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}
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// Invalid returns a *Error indicating "invalid value". This is used
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// to report malformed values (e.g. failed regex match, too long, out of bounds).
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func Invalid(field *Path, value interface{}, detail string) *Error {
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return &Error{ErrorTypeInvalid, field.String(), value, detail}
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}
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// NotSupported returns a *Error indicating "unsupported value".
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// This is used to report unknown values for enumerated fields (e.g. a list of
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// valid values).
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func NotSupported(field *Path, value interface{}, validValues []string) *Error {
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detail := ""
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if validValues != nil && len(validValues) > 0 {
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quotedValues := make([]string, len(validValues))
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for i, v := range validValues {
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quotedValues[i] = strconv.Quote(v)
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}
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detail = "supported values: " + strings.Join(quotedValues, ", ")
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}
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return &Error{ErrorTypeNotSupported, field.String(), value, detail}
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}
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// Forbidden returns a *Error indicating "forbidden". This is used to
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// report valid (as per formatting rules) values which would be accepted under
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// some conditions, but which are not permitted by current conditions (e.g.
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// security policy).
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func Forbidden(field *Path, detail string) *Error {
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return &Error{ErrorTypeForbidden, field.String(), "", detail}
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}
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// TooLong returns a *Error indicating "too long". This is used to
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// report that the given value is too long. This is similar to
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// Invalid, but the returned error will not include the too-long
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// value.
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func TooLong(field *Path, value interface{}, maxLength int) *Error {
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return &Error{ErrorTypeTooLong, field.String(), value, fmt.Sprintf("must have at most %d characters", maxLength)}
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}
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// InternalError returns a *Error indicating "internal error". This is used
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// to signal that an error was found that was not directly related to user
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// input. The err argument must be non-nil.
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func InternalError(field *Path, err error) *Error {
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return &Error{ErrorTypeInternal, field.String(), nil, err.Error()}
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}
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// ErrorList holds a set of Errors. It is plausible that we might one day have
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// non-field errors in this same umbrella package, but for now we don't, so
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// we can keep it simple and leave ErrorList here.
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type ErrorList []*Error
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// NewErrorTypeMatcher returns an errors.Matcher that returns true
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// if the provided error is a Error and has the provided ErrorType.
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func NewErrorTypeMatcher(t ErrorType) utilerrors.Matcher {
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return func(err error) bool {
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if e, ok := err.(*Error); ok {
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return e.Type == t
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}
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return false
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}
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}
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// ToAggregate converts the ErrorList into an errors.Aggregate.
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func (list ErrorList) ToAggregate() utilerrors.Aggregate {
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errs := make([]error, 0, len(list))
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errorMsgs := sets.NewString()
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for _, err := range list {
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msg := fmt.Sprintf("%v", err)
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if errorMsgs.Has(msg) {
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continue
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}
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errorMsgs.Insert(msg)
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errs = append(errs, err)
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}
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return utilerrors.NewAggregate(errs)
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}
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func fromAggregate(agg utilerrors.Aggregate) ErrorList {
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errs := agg.Errors()
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list := make(ErrorList, len(errs))
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for i := range errs {
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list[i] = errs[i].(*Error)
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}
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return list
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}
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// Filter removes items from the ErrorList that match the provided fns.
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func (list ErrorList) Filter(fns ...utilerrors.Matcher) ErrorList {
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err := utilerrors.FilterOut(list.ToAggregate(), fns...)
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if err == nil {
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return nil
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}
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// FilterOut takes an Aggregate and returns an Aggregate
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return fromAggregate(err.(utilerrors.Aggregate))
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}
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91
vendor/k8s.io/apimachinery/pkg/util/validation/field/path.go
generated
vendored
Normal file
91
vendor/k8s.io/apimachinery/pkg/util/validation/field/path.go
generated
vendored
Normal file
@ -0,0 +1,91 @@
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/*
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Copyright 2015 The Kubernetes Authors.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package field
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import (
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"bytes"
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"fmt"
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"strconv"
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)
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// Path represents the path from some root to a particular field.
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type Path struct {
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name string // the name of this field or "" if this is an index
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index string // if name == "", this is a subscript (index or map key) of the previous element
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parent *Path // nil if this is the root element
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}
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// NewPath creates a root Path object.
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func NewPath(name string, moreNames ...string) *Path {
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r := &Path{name: name, parent: nil}
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for _, anotherName := range moreNames {
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r = &Path{name: anotherName, parent: r}
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}
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return r
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}
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// Root returns the root element of this Path.
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func (p *Path) Root() *Path {
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for ; p.parent != nil; p = p.parent {
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// Do nothing.
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}
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return p
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}
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// Child creates a new Path that is a child of the method receiver.
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func (p *Path) Child(name string, moreNames ...string) *Path {
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r := NewPath(name, moreNames...)
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r.Root().parent = p
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return r
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}
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// Index indicates that the previous Path is to be subscripted by an int.
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// This sets the same underlying value as Key.
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func (p *Path) Index(index int) *Path {
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return &Path{index: strconv.Itoa(index), parent: p}
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}
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// Key indicates that the previous Path is to be subscripted by a string.
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// This sets the same underlying value as Index.
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func (p *Path) Key(key string) *Path {
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return &Path{index: key, parent: p}
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}
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// String produces a string representation of the Path.
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func (p *Path) String() string {
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// make a slice to iterate
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elems := []*Path{}
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for ; p != nil; p = p.parent {
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elems = append(elems, p)
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}
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// iterate, but it has to be backwards
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buf := bytes.NewBuffer(nil)
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for i := range elems {
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p := elems[len(elems)-1-i]
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if p.parent != nil && len(p.name) > 0 {
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// This is either the root or it is a subscript.
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buf.WriteString(".")
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}
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if len(p.name) > 0 {
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buf.WriteString(p.name)
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} else {
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fmt.Fprintf(buf, "[%s]", p.index)
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}
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}
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return buf.String()
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}
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