rebase: update kubernetes to 1.30

updating kubernetes to 1.30 release

Signed-off-by: Madhu Rajanna <madhupr007@gmail.com>
This commit is contained in:
Madhu Rajanna
2024-05-15 08:54:18 +02:00
committed by mergify[bot]
parent 62ddcf715b
commit e727bd351e
747 changed files with 73809 additions and 10436 deletions

View File

@ -15,7 +15,7 @@ limitations under the License.
*/
// Code generated by protoc-gen-gogo. DO NOT EDIT.
// source: k8s.io/kubernetes/vendor/k8s.io/api/batch/v1/generated.proto
// source: k8s.io/api/batch/v1/generated.proto
package v1
@ -51,7 +51,7 @@ const _ = proto.GoGoProtoPackageIsVersion3 // please upgrade the proto package
func (m *CronJob) Reset() { *m = CronJob{} }
func (*CronJob) ProtoMessage() {}
func (*CronJob) Descriptor() ([]byte, []int) {
return fileDescriptor_3b52da57c93de713, []int{0}
return fileDescriptor_79228dc2c4001a22, []int{0}
}
func (m *CronJob) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
@ -79,7 +79,7 @@ var xxx_messageInfo_CronJob proto.InternalMessageInfo
func (m *CronJobList) Reset() { *m = CronJobList{} }
func (*CronJobList) ProtoMessage() {}
func (*CronJobList) Descriptor() ([]byte, []int) {
return fileDescriptor_3b52da57c93de713, []int{1}
return fileDescriptor_79228dc2c4001a22, []int{1}
}
func (m *CronJobList) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
@ -107,7 +107,7 @@ var xxx_messageInfo_CronJobList proto.InternalMessageInfo
func (m *CronJobSpec) Reset() { *m = CronJobSpec{} }
func (*CronJobSpec) ProtoMessage() {}
func (*CronJobSpec) Descriptor() ([]byte, []int) {
return fileDescriptor_3b52da57c93de713, []int{2}
return fileDescriptor_79228dc2c4001a22, []int{2}
}
func (m *CronJobSpec) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
@ -135,7 +135,7 @@ var xxx_messageInfo_CronJobSpec proto.InternalMessageInfo
func (m *CronJobStatus) Reset() { *m = CronJobStatus{} }
func (*CronJobStatus) ProtoMessage() {}
func (*CronJobStatus) Descriptor() ([]byte, []int) {
return fileDescriptor_3b52da57c93de713, []int{3}
return fileDescriptor_79228dc2c4001a22, []int{3}
}
func (m *CronJobStatus) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
@ -163,7 +163,7 @@ var xxx_messageInfo_CronJobStatus proto.InternalMessageInfo
func (m *Job) Reset() { *m = Job{} }
func (*Job) ProtoMessage() {}
func (*Job) Descriptor() ([]byte, []int) {
return fileDescriptor_3b52da57c93de713, []int{4}
return fileDescriptor_79228dc2c4001a22, []int{4}
}
func (m *Job) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
@ -191,7 +191,7 @@ var xxx_messageInfo_Job proto.InternalMessageInfo
func (m *JobCondition) Reset() { *m = JobCondition{} }
func (*JobCondition) ProtoMessage() {}
func (*JobCondition) Descriptor() ([]byte, []int) {
return fileDescriptor_3b52da57c93de713, []int{5}
return fileDescriptor_79228dc2c4001a22, []int{5}
}
func (m *JobCondition) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
@ -219,7 +219,7 @@ var xxx_messageInfo_JobCondition proto.InternalMessageInfo
func (m *JobList) Reset() { *m = JobList{} }
func (*JobList) ProtoMessage() {}
func (*JobList) Descriptor() ([]byte, []int) {
return fileDescriptor_3b52da57c93de713, []int{6}
return fileDescriptor_79228dc2c4001a22, []int{6}
}
func (m *JobList) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
@ -247,7 +247,7 @@ var xxx_messageInfo_JobList proto.InternalMessageInfo
func (m *JobSpec) Reset() { *m = JobSpec{} }
func (*JobSpec) ProtoMessage() {}
func (*JobSpec) Descriptor() ([]byte, []int) {
return fileDescriptor_3b52da57c93de713, []int{7}
return fileDescriptor_79228dc2c4001a22, []int{7}
}
func (m *JobSpec) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
@ -275,7 +275,7 @@ var xxx_messageInfo_JobSpec proto.InternalMessageInfo
func (m *JobStatus) Reset() { *m = JobStatus{} }
func (*JobStatus) ProtoMessage() {}
func (*JobStatus) Descriptor() ([]byte, []int) {
return fileDescriptor_3b52da57c93de713, []int{8}
return fileDescriptor_79228dc2c4001a22, []int{8}
}
func (m *JobStatus) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
@ -303,7 +303,7 @@ var xxx_messageInfo_JobStatus proto.InternalMessageInfo
func (m *JobTemplateSpec) Reset() { *m = JobTemplateSpec{} }
func (*JobTemplateSpec) ProtoMessage() {}
func (*JobTemplateSpec) Descriptor() ([]byte, []int) {
return fileDescriptor_3b52da57c93de713, []int{9}
return fileDescriptor_79228dc2c4001a22, []int{9}
}
func (m *JobTemplateSpec) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
@ -331,7 +331,7 @@ var xxx_messageInfo_JobTemplateSpec proto.InternalMessageInfo
func (m *PodFailurePolicy) Reset() { *m = PodFailurePolicy{} }
func (*PodFailurePolicy) ProtoMessage() {}
func (*PodFailurePolicy) Descriptor() ([]byte, []int) {
return fileDescriptor_3b52da57c93de713, []int{10}
return fileDescriptor_79228dc2c4001a22, []int{10}
}
func (m *PodFailurePolicy) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
@ -361,7 +361,7 @@ func (m *PodFailurePolicyOnExitCodesRequirement) Reset() {
}
func (*PodFailurePolicyOnExitCodesRequirement) ProtoMessage() {}
func (*PodFailurePolicyOnExitCodesRequirement) Descriptor() ([]byte, []int) {
return fileDescriptor_3b52da57c93de713, []int{11}
return fileDescriptor_79228dc2c4001a22, []int{11}
}
func (m *PodFailurePolicyOnExitCodesRequirement) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
@ -391,7 +391,7 @@ func (m *PodFailurePolicyOnPodConditionsPattern) Reset() {
}
func (*PodFailurePolicyOnPodConditionsPattern) ProtoMessage() {}
func (*PodFailurePolicyOnPodConditionsPattern) Descriptor() ([]byte, []int) {
return fileDescriptor_3b52da57c93de713, []int{12}
return fileDescriptor_79228dc2c4001a22, []int{12}
}
func (m *PodFailurePolicyOnPodConditionsPattern) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
@ -419,7 +419,7 @@ var xxx_messageInfo_PodFailurePolicyOnPodConditionsPattern proto.InternalMessage
func (m *PodFailurePolicyRule) Reset() { *m = PodFailurePolicyRule{} }
func (*PodFailurePolicyRule) ProtoMessage() {}
func (*PodFailurePolicyRule) Descriptor() ([]byte, []int) {
return fileDescriptor_3b52da57c93de713, []int{13}
return fileDescriptor_79228dc2c4001a22, []int{13}
}
func (m *PodFailurePolicyRule) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
@ -444,10 +444,66 @@ func (m *PodFailurePolicyRule) XXX_DiscardUnknown() {
var xxx_messageInfo_PodFailurePolicyRule proto.InternalMessageInfo
func (m *SuccessPolicy) Reset() { *m = SuccessPolicy{} }
func (*SuccessPolicy) ProtoMessage() {}
func (*SuccessPolicy) Descriptor() ([]byte, []int) {
return fileDescriptor_79228dc2c4001a22, []int{14}
}
func (m *SuccessPolicy) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
}
func (m *SuccessPolicy) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) {
b = b[:cap(b)]
n, err := m.MarshalToSizedBuffer(b)
if err != nil {
return nil, err
}
return b[:n], nil
}
func (m *SuccessPolicy) XXX_Merge(src proto.Message) {
xxx_messageInfo_SuccessPolicy.Merge(m, src)
}
func (m *SuccessPolicy) XXX_Size() int {
return m.Size()
}
func (m *SuccessPolicy) XXX_DiscardUnknown() {
xxx_messageInfo_SuccessPolicy.DiscardUnknown(m)
}
var xxx_messageInfo_SuccessPolicy proto.InternalMessageInfo
func (m *SuccessPolicyRule) Reset() { *m = SuccessPolicyRule{} }
func (*SuccessPolicyRule) ProtoMessage() {}
func (*SuccessPolicyRule) Descriptor() ([]byte, []int) {
return fileDescriptor_79228dc2c4001a22, []int{15}
}
func (m *SuccessPolicyRule) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
}
func (m *SuccessPolicyRule) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) {
b = b[:cap(b)]
n, err := m.MarshalToSizedBuffer(b)
if err != nil {
return nil, err
}
return b[:n], nil
}
func (m *SuccessPolicyRule) XXX_Merge(src proto.Message) {
xxx_messageInfo_SuccessPolicyRule.Merge(m, src)
}
func (m *SuccessPolicyRule) XXX_Size() int {
return m.Size()
}
func (m *SuccessPolicyRule) XXX_DiscardUnknown() {
xxx_messageInfo_SuccessPolicyRule.DiscardUnknown(m)
}
var xxx_messageInfo_SuccessPolicyRule proto.InternalMessageInfo
func (m *UncountedTerminatedPods) Reset() { *m = UncountedTerminatedPods{} }
func (*UncountedTerminatedPods) ProtoMessage() {}
func (*UncountedTerminatedPods) Descriptor() ([]byte, []int) {
return fileDescriptor_3b52da57c93de713, []int{14}
return fileDescriptor_79228dc2c4001a22, []int{16}
}
func (m *UncountedTerminatedPods) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
@ -487,128 +543,135 @@ func init() {
proto.RegisterType((*PodFailurePolicyOnExitCodesRequirement)(nil), "k8s.io.api.batch.v1.PodFailurePolicyOnExitCodesRequirement")
proto.RegisterType((*PodFailurePolicyOnPodConditionsPattern)(nil), "k8s.io.api.batch.v1.PodFailurePolicyOnPodConditionsPattern")
proto.RegisterType((*PodFailurePolicyRule)(nil), "k8s.io.api.batch.v1.PodFailurePolicyRule")
proto.RegisterType((*SuccessPolicy)(nil), "k8s.io.api.batch.v1.SuccessPolicy")
proto.RegisterType((*SuccessPolicyRule)(nil), "k8s.io.api.batch.v1.SuccessPolicyRule")
proto.RegisterType((*UncountedTerminatedPods)(nil), "k8s.io.api.batch.v1.UncountedTerminatedPods")
}
func init() {
proto.RegisterFile("k8s.io/kubernetes/vendor/k8s.io/api/batch/v1/generated.proto", fileDescriptor_3b52da57c93de713)
proto.RegisterFile("k8s.io/api/batch/v1/generated.proto", fileDescriptor_79228dc2c4001a22)
}
var fileDescriptor_3b52da57c93de713 = []byte{
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}
func (m *CronJob) Marshal() (dAtA []byte, err error) {
@ -1030,6 +1093,27 @@ func (m *JobSpec) MarshalToSizedBuffer(dAtA []byte) (int, error) {
_ = i
var l int
_ = l
if m.SuccessPolicy != nil {
{
size, err := m.SuccessPolicy.MarshalToSizedBuffer(dAtA[:i])
if err != nil {
return 0, err
}
i -= size
i = encodeVarintGenerated(dAtA, i, uint64(size))
}
i--
dAtA[i] = 0x1
i--
dAtA[i] = 0x82
}
if m.ManagedBy != nil {
i -= len(*m.ManagedBy)
copy(dAtA[i:], *m.ManagedBy)
i = encodeVarintGenerated(dAtA, i, uint64(len(*m.ManagedBy)))
i--
dAtA[i] = 0x7a
}
if m.PodReplacementPolicy != nil {
i -= len(*m.PodReplacementPolicy)
copy(dAtA[i:], *m.PodReplacementPolicy)
@ -1449,6 +1533,78 @@ func (m *PodFailurePolicyRule) MarshalToSizedBuffer(dAtA []byte) (int, error) {
return len(dAtA) - i, nil
}
func (m *SuccessPolicy) Marshal() (dAtA []byte, err error) {
size := m.Size()
dAtA = make([]byte, size)
n, err := m.MarshalToSizedBuffer(dAtA[:size])
if err != nil {
return nil, err
}
return dAtA[:n], nil
}
func (m *SuccessPolicy) MarshalTo(dAtA []byte) (int, error) {
size := m.Size()
return m.MarshalToSizedBuffer(dAtA[:size])
}
func (m *SuccessPolicy) MarshalToSizedBuffer(dAtA []byte) (int, error) {
i := len(dAtA)
_ = i
var l int
_ = l
if len(m.Rules) > 0 {
for iNdEx := len(m.Rules) - 1; iNdEx >= 0; iNdEx-- {
{
size, err := m.Rules[iNdEx].MarshalToSizedBuffer(dAtA[:i])
if err != nil {
return 0, err
}
i -= size
i = encodeVarintGenerated(dAtA, i, uint64(size))
}
i--
dAtA[i] = 0xa
}
}
return len(dAtA) - i, nil
}
func (m *SuccessPolicyRule) Marshal() (dAtA []byte, err error) {
size := m.Size()
dAtA = make([]byte, size)
n, err := m.MarshalToSizedBuffer(dAtA[:size])
if err != nil {
return nil, err
}
return dAtA[:n], nil
}
func (m *SuccessPolicyRule) MarshalTo(dAtA []byte) (int, error) {
size := m.Size()
return m.MarshalToSizedBuffer(dAtA[:size])
}
func (m *SuccessPolicyRule) MarshalToSizedBuffer(dAtA []byte) (int, error) {
i := len(dAtA)
_ = i
var l int
_ = l
if m.SucceededCount != nil {
i = encodeVarintGenerated(dAtA, i, uint64(*m.SucceededCount))
i--
dAtA[i] = 0x10
}
if m.SucceededIndexes != nil {
i -= len(*m.SucceededIndexes)
copy(dAtA[i:], *m.SucceededIndexes)
i = encodeVarintGenerated(dAtA, i, uint64(len(*m.SucceededIndexes)))
i--
dAtA[i] = 0xa
}
return len(dAtA) - i, nil
}
func (m *UncountedTerminatedPods) Marshal() (dAtA []byte, err error) {
size := m.Size()
dAtA = make([]byte, size)
@ -1691,6 +1847,14 @@ func (m *JobSpec) Size() (n int) {
l = len(*m.PodReplacementPolicy)
n += 1 + l + sovGenerated(uint64(l))
}
if m.ManagedBy != nil {
l = len(*m.ManagedBy)
n += 1 + l + sovGenerated(uint64(l))
}
if m.SuccessPolicy != nil {
l = m.SuccessPolicy.Size()
n += 2 + l + sovGenerated(uint64(l))
}
return n
}
@ -1818,6 +1982,37 @@ func (m *PodFailurePolicyRule) Size() (n int) {
return n
}
func (m *SuccessPolicy) Size() (n int) {
if m == nil {
return 0
}
var l int
_ = l
if len(m.Rules) > 0 {
for _, e := range m.Rules {
l = e.Size()
n += 1 + l + sovGenerated(uint64(l))
}
}
return n
}
func (m *SuccessPolicyRule) Size() (n int) {
if m == nil {
return 0
}
var l int
_ = l
if m.SucceededIndexes != nil {
l = len(*m.SucceededIndexes)
n += 1 + l + sovGenerated(uint64(l))
}
if m.SucceededCount != nil {
n += 1 + sovGenerated(uint64(*m.SucceededCount))
}
return n
}
func (m *UncountedTerminatedPods) Size() (n int) {
if m == nil {
return 0
@ -1969,6 +2164,8 @@ func (this *JobSpec) String() string {
`BackoffLimitPerIndex:` + valueToStringGenerated(this.BackoffLimitPerIndex) + `,`,
`MaxFailedIndexes:` + valueToStringGenerated(this.MaxFailedIndexes) + `,`,
`PodReplacementPolicy:` + valueToStringGenerated(this.PodReplacementPolicy) + `,`,
`ManagedBy:` + valueToStringGenerated(this.ManagedBy) + `,`,
`SuccessPolicy:` + strings.Replace(this.SuccessPolicy.String(), "SuccessPolicy", "SuccessPolicy", 1) + `,`,
`}`,
}, "")
return s
@ -2064,6 +2261,32 @@ func (this *PodFailurePolicyRule) String() string {
}, "")
return s
}
func (this *SuccessPolicy) String() string {
if this == nil {
return "nil"
}
repeatedStringForRules := "[]SuccessPolicyRule{"
for _, f := range this.Rules {
repeatedStringForRules += strings.Replace(strings.Replace(f.String(), "SuccessPolicyRule", "SuccessPolicyRule", 1), `&`, ``, 1) + ","
}
repeatedStringForRules += "}"
s := strings.Join([]string{`&SuccessPolicy{`,
`Rules:` + repeatedStringForRules + `,`,
`}`,
}, "")
return s
}
func (this *SuccessPolicyRule) String() string {
if this == nil {
return "nil"
}
s := strings.Join([]string{`&SuccessPolicyRule{`,
`SucceededIndexes:` + valueToStringGenerated(this.SucceededIndexes) + `,`,
`SucceededCount:` + valueToStringGenerated(this.SucceededCount) + `,`,
`}`,
}, "")
return s
}
func (this *UncountedTerminatedPods) String() string {
if this == nil {
return "nil"
@ -3658,6 +3881,75 @@ func (m *JobSpec) Unmarshal(dAtA []byte) error {
s := PodReplacementPolicy(dAtA[iNdEx:postIndex])
m.PodReplacementPolicy = &s
iNdEx = postIndex
case 15:
if wireType != 2 {
return fmt.Errorf("proto: wrong wireType = %d for field ManagedBy", wireType)
}
var stringLen uint64
for shift := uint(0); ; shift += 7 {
if shift >= 64 {
return ErrIntOverflowGenerated
}
if iNdEx >= l {
return io.ErrUnexpectedEOF
}
b := dAtA[iNdEx]
iNdEx++
stringLen |= uint64(b&0x7F) << shift
if b < 0x80 {
break
}
}
intStringLen := int(stringLen)
if intStringLen < 0 {
return ErrInvalidLengthGenerated
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return ErrInvalidLengthGenerated
}
if postIndex > l {
return io.ErrUnexpectedEOF
}
s := string(dAtA[iNdEx:postIndex])
m.ManagedBy = &s
iNdEx = postIndex
case 16:
if wireType != 2 {
return fmt.Errorf("proto: wrong wireType = %d for field SuccessPolicy", wireType)
}
var msglen int
for shift := uint(0); ; shift += 7 {
if shift >= 64 {
return ErrIntOverflowGenerated
}
if iNdEx >= l {
return io.ErrUnexpectedEOF
}
b := dAtA[iNdEx]
iNdEx++
msglen |= int(b&0x7F) << shift
if b < 0x80 {
break
}
}
if msglen < 0 {
return ErrInvalidLengthGenerated
}
postIndex := iNdEx + msglen
if postIndex < 0 {
return ErrInvalidLengthGenerated
}
if postIndex > l {
return io.ErrUnexpectedEOF
}
if m.SuccessPolicy == nil {
m.SuccessPolicy = &SuccessPolicy{}
}
if err := m.SuccessPolicy.Unmarshal(dAtA[iNdEx:postIndex]); err != nil {
return err
}
iNdEx = postIndex
default:
iNdEx = preIndex
skippy, err := skipGenerated(dAtA[iNdEx:])
@ -4690,6 +4982,193 @@ func (m *PodFailurePolicyRule) Unmarshal(dAtA []byte) error {
}
return nil
}
func (m *SuccessPolicy) Unmarshal(dAtA []byte) error {
l := len(dAtA)
iNdEx := 0
for iNdEx < l {
preIndex := iNdEx
var wire uint64
for shift := uint(0); ; shift += 7 {
if shift >= 64 {
return ErrIntOverflowGenerated
}
if iNdEx >= l {
return io.ErrUnexpectedEOF
}
b := dAtA[iNdEx]
iNdEx++
wire |= uint64(b&0x7F) << shift
if b < 0x80 {
break
}
}
fieldNum := int32(wire >> 3)
wireType := int(wire & 0x7)
if wireType == 4 {
return fmt.Errorf("proto: SuccessPolicy: wiretype end group for non-group")
}
if fieldNum <= 0 {
return fmt.Errorf("proto: SuccessPolicy: illegal tag %d (wire type %d)", fieldNum, wire)
}
switch fieldNum {
case 1:
if wireType != 2 {
return fmt.Errorf("proto: wrong wireType = %d for field Rules", wireType)
}
var msglen int
for shift := uint(0); ; shift += 7 {
if shift >= 64 {
return ErrIntOverflowGenerated
}
if iNdEx >= l {
return io.ErrUnexpectedEOF
}
b := dAtA[iNdEx]
iNdEx++
msglen |= int(b&0x7F) << shift
if b < 0x80 {
break
}
}
if msglen < 0 {
return ErrInvalidLengthGenerated
}
postIndex := iNdEx + msglen
if postIndex < 0 {
return ErrInvalidLengthGenerated
}
if postIndex > l {
return io.ErrUnexpectedEOF
}
m.Rules = append(m.Rules, SuccessPolicyRule{})
if err := m.Rules[len(m.Rules)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil {
return err
}
iNdEx = postIndex
default:
iNdEx = preIndex
skippy, err := skipGenerated(dAtA[iNdEx:])
if err != nil {
return err
}
if (skippy < 0) || (iNdEx+skippy) < 0 {
return ErrInvalidLengthGenerated
}
if (iNdEx + skippy) > l {
return io.ErrUnexpectedEOF
}
iNdEx += skippy
}
}
if iNdEx > l {
return io.ErrUnexpectedEOF
}
return nil
}
func (m *SuccessPolicyRule) Unmarshal(dAtA []byte) error {
l := len(dAtA)
iNdEx := 0
for iNdEx < l {
preIndex := iNdEx
var wire uint64
for shift := uint(0); ; shift += 7 {
if shift >= 64 {
return ErrIntOverflowGenerated
}
if iNdEx >= l {
return io.ErrUnexpectedEOF
}
b := dAtA[iNdEx]
iNdEx++
wire |= uint64(b&0x7F) << shift
if b < 0x80 {
break
}
}
fieldNum := int32(wire >> 3)
wireType := int(wire & 0x7)
if wireType == 4 {
return fmt.Errorf("proto: SuccessPolicyRule: wiretype end group for non-group")
}
if fieldNum <= 0 {
return fmt.Errorf("proto: SuccessPolicyRule: illegal tag %d (wire type %d)", fieldNum, wire)
}
switch fieldNum {
case 1:
if wireType != 2 {
return fmt.Errorf("proto: wrong wireType = %d for field SucceededIndexes", wireType)
}
var stringLen uint64
for shift := uint(0); ; shift += 7 {
if shift >= 64 {
return ErrIntOverflowGenerated
}
if iNdEx >= l {
return io.ErrUnexpectedEOF
}
b := dAtA[iNdEx]
iNdEx++
stringLen |= uint64(b&0x7F) << shift
if b < 0x80 {
break
}
}
intStringLen := int(stringLen)
if intStringLen < 0 {
return ErrInvalidLengthGenerated
}
postIndex := iNdEx + intStringLen
if postIndex < 0 {
return ErrInvalidLengthGenerated
}
if postIndex > l {
return io.ErrUnexpectedEOF
}
s := string(dAtA[iNdEx:postIndex])
m.SucceededIndexes = &s
iNdEx = postIndex
case 2:
if wireType != 0 {
return fmt.Errorf("proto: wrong wireType = %d for field SucceededCount", wireType)
}
var v int32
for shift := uint(0); ; shift += 7 {
if shift >= 64 {
return ErrIntOverflowGenerated
}
if iNdEx >= l {
return io.ErrUnexpectedEOF
}
b := dAtA[iNdEx]
iNdEx++
v |= int32(b&0x7F) << shift
if b < 0x80 {
break
}
}
m.SucceededCount = &v
default:
iNdEx = preIndex
skippy, err := skipGenerated(dAtA[iNdEx:])
if err != nil {
return err
}
if (skippy < 0) || (iNdEx+skippy) < 0 {
return ErrInvalidLengthGenerated
}
if (iNdEx + skippy) > l {
return io.ErrUnexpectedEOF
}
iNdEx += skippy
}
}
if iNdEx > l {
return io.ErrUnexpectedEOF
}
return nil
}
func (m *UncountedTerminatedPods) Unmarshal(dAtA []byte) error {
l := len(dAtA)
iNdEx := 0

View File

@ -218,6 +218,17 @@ message JobSpec {
// +optional
optional PodFailurePolicy podFailurePolicy = 11;
// successPolicy specifies the policy when the Job can be declared as succeeded.
// If empty, the default behavior applies - the Job is declared as succeeded
// only when the number of succeeded pods equals to the completions.
// When the field is specified, it must be immutable and works only for the Indexed Jobs.
// Once the Job meets the SuccessPolicy, the lingering pods are terminated.
//
// This field is alpha-level. To use this field, you must enable the
// `JobSuccessPolicy` feature gate (disabled by default).
// +optional
optional SuccessPolicy successPolicy = 16;
// Specifies the number of retries before marking this job failed.
// Defaults to 6
// +optional
@ -330,6 +341,20 @@ message JobSpec {
// This is on by default.
// +optional
optional string podReplacementPolicy = 14;
// ManagedBy field indicates the controller that manages a Job. The k8s Job
// controller reconciles jobs which don't have this field at all or the field
// value is the reserved string `kubernetes.io/job-controller`, but skips
// reconciling Jobs with a custom value for this field.
// The value must be a valid domain-prefixed path (e.g. acme.io/foo) -
// all characters before the first "/" must be a valid subdomain as defined
// by RFC 1123. All characters trailing the first "/" must be valid HTTP Path
// characters as defined by RFC 3986. The value cannot exceed 64 characters.
//
// This field is alpha-level. The job controller accepts setting the field
// when the feature gate JobManagedBy is enabled (disabled by default).
// +optional
optional string managedBy = 15;
}
// JobStatus represents the current state of a Job.
@ -340,6 +365,12 @@ message JobStatus {
// status true; when the Job is resumed, the status of this condition will
// become false. When a Job is completed, one of the conditions will have
// type "Complete" and status true.
//
// A job is considered finished when it is in a terminal condition, either
// "Complete" or "Failed". A Job cannot have both the "Complete" and "Failed" conditions.
// Additionally, it cannot be in the "Complete" and "FailureTarget" conditions.
// The "Complete", "Failed" and "FailureTarget" conditions cannot be disabled.
//
// More info: https://kubernetes.io/docs/concepts/workloads/controllers/jobs-run-to-completion/
// +optional
// +patchMergeKey=type
@ -351,25 +382,36 @@ message JobStatus {
// Job is created in the suspended state, this field is not set until the
// first time it is resumed. This field is reset every time a Job is resumed
// from suspension. It is represented in RFC3339 form and is in UTC.
//
// Once set, the field can only be removed when the job is suspended.
// The field cannot be modified while the job is unsuspended or finished.
//
// +optional
optional k8s.io.apimachinery.pkg.apis.meta.v1.Time startTime = 2;
// Represents time when the job was completed. It is not guaranteed to
// be set in happens-before order across separate operations.
// It is represented in RFC3339 form and is in UTC.
// The completion time is only set when the job finishes successfully.
// The completion time is set when the job finishes successfully, and only then.
// The value cannot be updated or removed. The value indicates the same or
// later point in time as the startTime field.
// +optional
optional k8s.io.apimachinery.pkg.apis.meta.v1.Time completionTime = 3;
// The number of pending and running pods.
// The number of pending and running pods which are not terminating (without
// a deletionTimestamp).
// The value is zero for finished jobs.
// +optional
optional int32 active = 4;
// The number of pods which reached phase Succeeded.
// The value increases monotonically for a given spec. However, it may
// decrease in reaction to scale down of elastic indexed jobs.
// +optional
optional int32 succeeded = 5;
// The number of pods which reached phase Failed.
// The value increases monotonically.
// +optional
optional int32 failed = 6;
@ -391,7 +433,7 @@ message JobStatus {
// +optional
optional string completedIndexes = 7;
// FailedIndexes holds the failed indexes when backoffLimitPerIndex=true.
// FailedIndexes holds the failed indexes when spec.backoffLimitPerIndex is set.
// The indexes are represented in the text format analogous as for the
// `completedIndexes` field, ie. they are kept as decimal integers
// separated by commas. The numbers are listed in increasing order. Three or
@ -399,6 +441,8 @@ message JobStatus {
// last element of the series, separated by a hyphen.
// For example, if the failed indexes are 1, 3, 4, 5 and 7, they are
// represented as "1,3-5,7".
// The set of failed indexes cannot overlap with the set of completed indexes.
//
// This field is beta-level. It can be used when the `JobBackoffLimitPerIndex`
// feature gate is enabled (enabled by default).
// +optional
@ -418,6 +462,7 @@ message JobStatus {
//
// Old jobs might not be tracked using this field, in which case the field
// remains null.
// The structure is empty for finished jobs.
// +optional
optional UncountedTerminatedPods uncountedTerminatedPods = 8;
@ -532,6 +577,51 @@ message PodFailurePolicyRule {
repeated PodFailurePolicyOnPodConditionsPattern onPodConditions = 3;
}
// SuccessPolicy describes when a Job can be declared as succeeded based on the success of some indexes.
message SuccessPolicy {
// rules represents the list of alternative rules for the declaring the Jobs
// as successful before `.status.succeeded >= .spec.completions`. Once any of the rules are met,
// the "SucceededCriteriaMet" condition is added, and the lingering pods are removed.
// The terminal state for such a Job has the "Complete" condition.
// Additionally, these rules are evaluated in order; Once the Job meets one of the rules,
// other rules are ignored. At most 20 elements are allowed.
// +listType=atomic
repeated SuccessPolicyRule rules = 1;
}
// SuccessPolicyRule describes rule for declaring a Job as succeeded.
// Each rule must have at least one of the "succeededIndexes" or "succeededCount" specified.
message SuccessPolicyRule {
// succeededIndexes specifies the set of indexes
// which need to be contained in the actual set of the succeeded indexes for the Job.
// The list of indexes must be within 0 to ".spec.completions-1" and
// must not contain duplicates. At least one element is required.
// The indexes are represented as intervals separated by commas.
// The intervals can be a decimal integer or a pair of decimal integers separated by a hyphen.
// The number are listed in represented by the first and last element of the series,
// separated by a hyphen.
// For example, if the completed indexes are 1, 3, 4, 5 and 7, they are
// represented as "1,3-5,7".
// When this field is null, this field doesn't default to any value
// and is never evaluated at any time.
//
// +optional
optional string succeededIndexes = 1;
// succeededCount specifies the minimal required size of the actual set of the succeeded indexes
// for the Job. When succeededCount is used along with succeededIndexes, the check is
// constrained only to the set of indexes specified by succeededIndexes.
// For example, given that succeededIndexes is "1-4", succeededCount is "3",
// and completed indexes are "1", "3", and "5", the Job isn't declared as succeeded
// because only "1" and "3" indexes are considered in that rules.
// When this field is null, this doesn't default to any value and
// is never evaluated at any time.
// When specified it needs to be a positive integer.
//
// +optional
optional int32 succeededCount = 2;
}
// UncountedTerminatedPods holds UIDs of Pods that have terminated but haven't
// been accounted in Job status counters.
message UncountedTerminatedPods {

106
vendor/k8s.io/api/batch/v1/types.go generated vendored
View File

@ -57,6 +57,9 @@ const (
// to the pod, which don't count towards the backoff limit, according to the
// pod failure policy. When the annotation is absent zero is implied.
JobIndexIgnoredFailureCountAnnotation = labelPrefix + "job-index-ignored-failure-count"
// JobControllerName reserved value for the managedBy field for the built-in
// Job controller.
JobControllerName = "kubernetes.io/job-controller"
)
// +genclient
@ -252,6 +255,51 @@ type PodFailurePolicy struct {
Rules []PodFailurePolicyRule `json:"rules" protobuf:"bytes,1,opt,name=rules"`
}
// SuccessPolicy describes when a Job can be declared as succeeded based on the success of some indexes.
type SuccessPolicy struct {
// rules represents the list of alternative rules for the declaring the Jobs
// as successful before `.status.succeeded >= .spec.completions`. Once any of the rules are met,
// the "SucceededCriteriaMet" condition is added, and the lingering pods are removed.
// The terminal state for such a Job has the "Complete" condition.
// Additionally, these rules are evaluated in order; Once the Job meets one of the rules,
// other rules are ignored. At most 20 elements are allowed.
// +listType=atomic
Rules []SuccessPolicyRule `json:"rules" protobuf:"bytes,1,opt,name=rules"`
}
// SuccessPolicyRule describes rule for declaring a Job as succeeded.
// Each rule must have at least one of the "succeededIndexes" or "succeededCount" specified.
type SuccessPolicyRule struct {
// succeededIndexes specifies the set of indexes
// which need to be contained in the actual set of the succeeded indexes for the Job.
// The list of indexes must be within 0 to ".spec.completions-1" and
// must not contain duplicates. At least one element is required.
// The indexes are represented as intervals separated by commas.
// The intervals can be a decimal integer or a pair of decimal integers separated by a hyphen.
// The number are listed in represented by the first and last element of the series,
// separated by a hyphen.
// For example, if the completed indexes are 1, 3, 4, 5 and 7, they are
// represented as "1,3-5,7".
// When this field is null, this field doesn't default to any value
// and is never evaluated at any time.
//
// +optional
SucceededIndexes *string `json:"succeededIndexes,omitempty" protobuf:"bytes,1,opt,name=succeededIndexes"`
// succeededCount specifies the minimal required size of the actual set of the succeeded indexes
// for the Job. When succeededCount is used along with succeededIndexes, the check is
// constrained only to the set of indexes specified by succeededIndexes.
// For example, given that succeededIndexes is "1-4", succeededCount is "3",
// and completed indexes are "1", "3", and "5", the Job isn't declared as succeeded
// because only "1" and "3" indexes are considered in that rules.
// When this field is null, this doesn't default to any value and
// is never evaluated at any time.
// When specified it needs to be a positive integer.
//
// +optional
SucceededCount *int32 `json:"succeededCount,omitempty" protobuf:"varint,2,opt,name=succeededCount"`
}
// JobSpec describes how the job execution will look like.
type JobSpec struct {
@ -293,6 +341,17 @@ type JobSpec struct {
// +optional
PodFailurePolicy *PodFailurePolicy `json:"podFailurePolicy,omitempty" protobuf:"bytes,11,opt,name=podFailurePolicy"`
// successPolicy specifies the policy when the Job can be declared as succeeded.
// If empty, the default behavior applies - the Job is declared as succeeded
// only when the number of succeeded pods equals to the completions.
// When the field is specified, it must be immutable and works only for the Indexed Jobs.
// Once the Job meets the SuccessPolicy, the lingering pods are terminated.
//
// This field is alpha-level. To use this field, you must enable the
// `JobSuccessPolicy` feature gate (disabled by default).
// +optional
SuccessPolicy *SuccessPolicy `json:"successPolicy,omitempty" protobuf:"bytes,16,opt,name=successPolicy"`
// Specifies the number of retries before marking this job failed.
// Defaults to 6
// +optional
@ -410,6 +469,20 @@ type JobSpec struct {
// This is on by default.
// +optional
PodReplacementPolicy *PodReplacementPolicy `json:"podReplacementPolicy,omitempty" protobuf:"bytes,14,opt,name=podReplacementPolicy,casttype=podReplacementPolicy"`
// ManagedBy field indicates the controller that manages a Job. The k8s Job
// controller reconciles jobs which don't have this field at all or the field
// value is the reserved string `kubernetes.io/job-controller`, but skips
// reconciling Jobs with a custom value for this field.
// The value must be a valid domain-prefixed path (e.g. acme.io/foo) -
// all characters before the first "/" must be a valid subdomain as defined
// by RFC 1123. All characters trailing the first "/" must be valid HTTP Path
// characters as defined by RFC 3986. The value cannot exceed 64 characters.
//
// This field is alpha-level. The job controller accepts setting the field
// when the feature gate JobManagedBy is enabled (disabled by default).
// +optional
ManagedBy *string `json:"managedBy,omitempty" protobuf:"bytes,15,opt,name=managedBy"`
}
// JobStatus represents the current state of a Job.
@ -420,6 +493,12 @@ type JobStatus struct {
// status true; when the Job is resumed, the status of this condition will
// become false. When a Job is completed, one of the conditions will have
// type "Complete" and status true.
//
// A job is considered finished when it is in a terminal condition, either
// "Complete" or "Failed". A Job cannot have both the "Complete" and "Failed" conditions.
// Additionally, it cannot be in the "Complete" and "FailureTarget" conditions.
// The "Complete", "Failed" and "FailureTarget" conditions cannot be disabled.
//
// More info: https://kubernetes.io/docs/concepts/workloads/controllers/jobs-run-to-completion/
// +optional
// +patchMergeKey=type
@ -431,25 +510,36 @@ type JobStatus struct {
// Job is created in the suspended state, this field is not set until the
// first time it is resumed. This field is reset every time a Job is resumed
// from suspension. It is represented in RFC3339 form and is in UTC.
//
// Once set, the field can only be removed when the job is suspended.
// The field cannot be modified while the job is unsuspended or finished.
//
// +optional
StartTime *metav1.Time `json:"startTime,omitempty" protobuf:"bytes,2,opt,name=startTime"`
// Represents time when the job was completed. It is not guaranteed to
// be set in happens-before order across separate operations.
// It is represented in RFC3339 form and is in UTC.
// The completion time is only set when the job finishes successfully.
// The completion time is set when the job finishes successfully, and only then.
// The value cannot be updated or removed. The value indicates the same or
// later point in time as the startTime field.
// +optional
CompletionTime *metav1.Time `json:"completionTime,omitempty" protobuf:"bytes,3,opt,name=completionTime"`
// The number of pending and running pods.
// The number of pending and running pods which are not terminating (without
// a deletionTimestamp).
// The value is zero for finished jobs.
// +optional
Active int32 `json:"active,omitempty" protobuf:"varint,4,opt,name=active"`
// The number of pods which reached phase Succeeded.
// The value increases monotonically for a given spec. However, it may
// decrease in reaction to scale down of elastic indexed jobs.
// +optional
Succeeded int32 `json:"succeeded,omitempty" protobuf:"varint,5,opt,name=succeeded"`
// The number of pods which reached phase Failed.
// The value increases monotonically.
// +optional
Failed int32 `json:"failed,omitempty" protobuf:"varint,6,opt,name=failed"`
@ -471,7 +561,7 @@ type JobStatus struct {
// +optional
CompletedIndexes string `json:"completedIndexes,omitempty" protobuf:"bytes,7,opt,name=completedIndexes"`
// FailedIndexes holds the failed indexes when backoffLimitPerIndex=true.
// FailedIndexes holds the failed indexes when spec.backoffLimitPerIndex is set.
// The indexes are represented in the text format analogous as for the
// `completedIndexes` field, ie. they are kept as decimal integers
// separated by commas. The numbers are listed in increasing order. Three or
@ -479,6 +569,8 @@ type JobStatus struct {
// last element of the series, separated by a hyphen.
// For example, if the failed indexes are 1, 3, 4, 5 and 7, they are
// represented as "1,3-5,7".
// The set of failed indexes cannot overlap with the set of completed indexes.
//
// This field is beta-level. It can be used when the `JobBackoffLimitPerIndex`
// feature gate is enabled (enabled by default).
// +optional
@ -498,6 +590,7 @@ type JobStatus struct {
//
// Old jobs might not be tracked using this field, in which case the field
// remains null.
// The structure is empty for finished jobs.
// +optional
UncountedTerminatedPods *UncountedTerminatedPods `json:"uncountedTerminatedPods,omitempty" protobuf:"bytes,8,opt,name=uncountedTerminatedPods"`
@ -532,6 +625,8 @@ const (
JobFailed JobConditionType = "Failed"
// FailureTarget means the job is about to fail its execution.
JobFailureTarget JobConditionType = "FailureTarget"
// JobSuccessCriteriaMet means the Job has been succeeded.
JobSuccessCriteriaMet JobConditionType = "SuccessCriteriaMet"
)
const (
@ -551,6 +646,11 @@ const (
// JobReasonFailedIndexes means Job has failed indexes.
// This const is used in beta-level feature: https://kep.k8s.io/3850.
JobReasonFailedIndexes string = "FailedIndexes"
// JobReasonSuccessPolicy reason indicates a SuccessCriteriaMet condition is added due to
// a Job met successPolicy.
// https://kep.k8s.io/3998
// This is currently an alpha field.
JobReasonSuccessPolicy string = "SuccessPolicy"
)
// JobCondition describes current state of a job.

View File

@ -116,6 +116,7 @@ var map_JobSpec = map[string]string{
"completions": "Specifies the desired number of successfully finished pods the job should be run with. Setting to null means that the success of any pod signals the success of all pods, and allows parallelism to have any positive value. Setting to 1 means that parallelism is limited to 1 and the success of that pod signals the success of the job. More info: https://kubernetes.io/docs/concepts/workloads/controllers/jobs-run-to-completion/",
"activeDeadlineSeconds": "Specifies the duration in seconds relative to the startTime that the job may be continuously active before the system tries to terminate it; value must be positive integer. If a Job is suspended (at creation or through an update), this timer will effectively be stopped and reset when the Job is resumed again.",
"podFailurePolicy": "Specifies the policy of handling failed pods. In particular, it allows to specify the set of actions and conditions which need to be satisfied to take the associated action. If empty, the default behaviour applies - the counter of failed pods, represented by the jobs's .status.failed field, is incremented and it is checked against the backoffLimit. This field cannot be used in combination with restartPolicy=OnFailure.\n\nThis field is beta-level. It can be used when the `JobPodFailurePolicy` feature gate is enabled (enabled by default).",
"successPolicy": "successPolicy specifies the policy when the Job can be declared as succeeded. If empty, the default behavior applies - the Job is declared as succeeded only when the number of succeeded pods equals to the completions. When the field is specified, it must be immutable and works only for the Indexed Jobs. Once the Job meets the SuccessPolicy, the lingering pods are terminated.\n\nThis field is alpha-level. To use this field, you must enable the `JobSuccessPolicy` feature gate (disabled by default).",
"backoffLimit": "Specifies the number of retries before marking this job failed. Defaults to 6",
"backoffLimitPerIndex": "Specifies the limit for the number of retries within an index before marking this index as failed. When enabled the number of failures per index is kept in the pod's batch.kubernetes.io/job-index-failure-count annotation. It can only be set when Job's completionMode=Indexed, and the Pod's restart policy is Never. The field is immutable. This field is beta-level. It can be used when the `JobBackoffLimitPerIndex` feature gate is enabled (enabled by default).",
"maxFailedIndexes": "Specifies the maximal number of failed indexes before marking the Job as failed, when backoffLimitPerIndex is set. Once the number of failed indexes exceeds this number the entire Job is marked as Failed and its execution is terminated. When left as null the job continues execution of all of its indexes and is marked with the `Complete` Job condition. It can only be specified when backoffLimitPerIndex is set. It can be null or up to completions. It is required and must be less than or equal to 10^4 when is completions greater than 10^5. This field is beta-level. It can be used when the `JobBackoffLimitPerIndex` feature gate is enabled (enabled by default).",
@ -126,6 +127,7 @@ var map_JobSpec = map[string]string{
"completionMode": "completionMode specifies how Pod completions are tracked. It can be `NonIndexed` (default) or `Indexed`.\n\n`NonIndexed` means that the Job is considered complete when there have been .spec.completions successfully completed Pods. Each Pod completion is homologous to each other.\n\n`Indexed` means that the Pods of a Job get an associated completion index from 0 to (.spec.completions - 1), available in the annotation batch.kubernetes.io/job-completion-index. The Job is considered complete when there is one successfully completed Pod for each index. When value is `Indexed`, .spec.completions must be specified and `.spec.parallelism` must be less than or equal to 10^5. In addition, The Pod name takes the form `$(job-name)-$(index)-$(random-string)`, the Pod hostname takes the form `$(job-name)-$(index)`.\n\nMore completion modes can be added in the future. If the Job controller observes a mode that it doesn't recognize, which is possible during upgrades due to version skew, the controller skips updates for the Job.",
"suspend": "suspend specifies whether the Job controller should create Pods or not. If a Job is created with suspend set to true, no Pods are created by the Job controller. If a Job is suspended after creation (i.e. the flag goes from false to true), the Job controller will delete all active Pods associated with this Job. Users must design their workload to gracefully handle this. Suspending a Job will reset the StartTime field of the Job, effectively resetting the ActiveDeadlineSeconds timer too. Defaults to false.",
"podReplacementPolicy": "podReplacementPolicy specifies when to create replacement Pods. Possible values are: - TerminatingOrFailed means that we recreate pods\n when they are terminating (has a metadata.deletionTimestamp) or failed.\n- Failed means to wait until a previously created Pod is fully terminated (has phase\n Failed or Succeeded) before creating a replacement Pod.\n\nWhen using podFailurePolicy, Failed is the the only allowed value. TerminatingOrFailed and Failed are allowed values when podFailurePolicy is not in use. This is an beta field. To use this, enable the JobPodReplacementPolicy feature toggle. This is on by default.",
"managedBy": "ManagedBy field indicates the controller that manages a Job. The k8s Job controller reconciles jobs which don't have this field at all or the field value is the reserved string `kubernetes.io/job-controller`, but skips reconciling Jobs with a custom value for this field. The value must be a valid domain-prefixed path (e.g. acme.io/foo) - all characters before the first \"/\" must be a valid subdomain as defined by RFC 1123. All characters trailing the first \"/\" must be valid HTTP Path characters as defined by RFC 3986. The value cannot exceed 64 characters.\n\nThis field is alpha-level. The job controller accepts setting the field when the feature gate JobManagedBy is enabled (disabled by default).",
}
func (JobSpec) SwaggerDoc() map[string]string {
@ -134,16 +136,16 @@ func (JobSpec) SwaggerDoc() map[string]string {
var map_JobStatus = map[string]string{
"": "JobStatus represents the current state of a Job.",
"conditions": "The latest available observations of an object's current state. When a Job fails, one of the conditions will have type \"Failed\" and status true. When a Job is suspended, one of the conditions will have type \"Suspended\" and status true; when the Job is resumed, the status of this condition will become false. When a Job is completed, one of the conditions will have type \"Complete\" and status true. More info: https://kubernetes.io/docs/concepts/workloads/controllers/jobs-run-to-completion/",
"startTime": "Represents time when the job controller started processing a job. When a Job is created in the suspended state, this field is not set until the first time it is resumed. This field is reset every time a Job is resumed from suspension. It is represented in RFC3339 form and is in UTC.",
"completionTime": "Represents time when the job was completed. It is not guaranteed to be set in happens-before order across separate operations. It is represented in RFC3339 form and is in UTC. The completion time is only set when the job finishes successfully.",
"active": "The number of pending and running pods.",
"succeeded": "The number of pods which reached phase Succeeded.",
"failed": "The number of pods which reached phase Failed.",
"conditions": "The latest available observations of an object's current state. When a Job fails, one of the conditions will have type \"Failed\" and status true. When a Job is suspended, one of the conditions will have type \"Suspended\" and status true; when the Job is resumed, the status of this condition will become false. When a Job is completed, one of the conditions will have type \"Complete\" and status true.\n\nA job is considered finished when it is in a terminal condition, either \"Complete\" or \"Failed\". A Job cannot have both the \"Complete\" and \"Failed\" conditions. Additionally, it cannot be in the \"Complete\" and \"FailureTarget\" conditions. The \"Complete\", \"Failed\" and \"FailureTarget\" conditions cannot be disabled.\n\nMore info: https://kubernetes.io/docs/concepts/workloads/controllers/jobs-run-to-completion/",
"startTime": "Represents time when the job controller started processing a job. When a Job is created in the suspended state, this field is not set until the first time it is resumed. This field is reset every time a Job is resumed from suspension. It is represented in RFC3339 form and is in UTC.\n\nOnce set, the field can only be removed when the job is suspended. The field cannot be modified while the job is unsuspended or finished.",
"completionTime": "Represents time when the job was completed. It is not guaranteed to be set in happens-before order across separate operations. It is represented in RFC3339 form and is in UTC. The completion time is set when the job finishes successfully, and only then. The value cannot be updated or removed. The value indicates the same or later point in time as the startTime field.",
"active": "The number of pending and running pods which are not terminating (without a deletionTimestamp). The value is zero for finished jobs.",
"succeeded": "The number of pods which reached phase Succeeded. The value increases monotonically for a given spec. However, it may decrease in reaction to scale down of elastic indexed jobs.",
"failed": "The number of pods which reached phase Failed. The value increases monotonically.",
"terminating": "The number of pods which are terminating (in phase Pending or Running and have a deletionTimestamp).\n\nThis field is beta-level. The job controller populates the field when the feature gate JobPodReplacementPolicy is enabled (enabled by default).",
"completedIndexes": "completedIndexes holds the completed indexes when .spec.completionMode = \"Indexed\" in a text format. The indexes are represented as decimal integers separated by commas. The numbers are listed in increasing order. Three or more consecutive numbers are compressed and represented by the first and last element of the series, separated by a hyphen. For example, if the completed indexes are 1, 3, 4, 5 and 7, they are represented as \"1,3-5,7\".",
"failedIndexes": "FailedIndexes holds the failed indexes when backoffLimitPerIndex=true. The indexes are represented in the text format analogous as for the `completedIndexes` field, ie. they are kept as decimal integers separated by commas. The numbers are listed in increasing order. Three or more consecutive numbers are compressed and represented by the first and last element of the series, separated by a hyphen. For example, if the failed indexes are 1, 3, 4, 5 and 7, they are represented as \"1,3-5,7\". This field is beta-level. It can be used when the `JobBackoffLimitPerIndex` feature gate is enabled (enabled by default).",
"uncountedTerminatedPods": "uncountedTerminatedPods holds the UIDs of Pods that have terminated but the job controller hasn't yet accounted for in the status counters.\n\nThe job controller creates pods with a finalizer. When a pod terminates (succeeded or failed), the controller does three steps to account for it in the job status:\n\n1. Add the pod UID to the arrays in this field. 2. Remove the pod finalizer. 3. Remove the pod UID from the arrays while increasing the corresponding\n counter.\n\nOld jobs might not be tracked using this field, in which case the field remains null.",
"failedIndexes": "FailedIndexes holds the failed indexes when spec.backoffLimitPerIndex is set. The indexes are represented in the text format analogous as for the `completedIndexes` field, ie. they are kept as decimal integers separated by commas. The numbers are listed in increasing order. Three or more consecutive numbers are compressed and represented by the first and last element of the series, separated by a hyphen. For example, if the failed indexes are 1, 3, 4, 5 and 7, they are represented as \"1,3-5,7\". The set of failed indexes cannot overlap with the set of completed indexes.\n\nThis field is beta-level. It can be used when the `JobBackoffLimitPerIndex` feature gate is enabled (enabled by default).",
"uncountedTerminatedPods": "uncountedTerminatedPods holds the UIDs of Pods that have terminated but the job controller hasn't yet accounted for in the status counters.\n\nThe job controller creates pods with a finalizer. When a pod terminates (succeeded or failed), the controller does three steps to account for it in the job status:\n\n1. Add the pod UID to the arrays in this field. 2. Remove the pod finalizer. 3. Remove the pod UID from the arrays while increasing the corresponding\n counter.\n\nOld jobs might not be tracked using this field, in which case the field remains null. The structure is empty for finished jobs.",
"ready": "The number of pods which have a Ready condition.",
}
@ -202,6 +204,25 @@ func (PodFailurePolicyRule) SwaggerDoc() map[string]string {
return map_PodFailurePolicyRule
}
var map_SuccessPolicy = map[string]string{
"": "SuccessPolicy describes when a Job can be declared as succeeded based on the success of some indexes.",
"rules": "rules represents the list of alternative rules for the declaring the Jobs as successful before `.status.succeeded >= .spec.completions`. Once any of the rules are met, the \"SucceededCriteriaMet\" condition is added, and the lingering pods are removed. The terminal state for such a Job has the \"Complete\" condition. Additionally, these rules are evaluated in order; Once the Job meets one of the rules, other rules are ignored. At most 20 elements are allowed.",
}
func (SuccessPolicy) SwaggerDoc() map[string]string {
return map_SuccessPolicy
}
var map_SuccessPolicyRule = map[string]string{
"": "SuccessPolicyRule describes rule for declaring a Job as succeeded. Each rule must have at least one of the \"succeededIndexes\" or \"succeededCount\" specified.",
"succeededIndexes": "succeededIndexes specifies the set of indexes which need to be contained in the actual set of the succeeded indexes for the Job. The list of indexes must be within 0 to \".spec.completions-1\" and must not contain duplicates. At least one element is required. The indexes are represented as intervals separated by commas. The intervals can be a decimal integer or a pair of decimal integers separated by a hyphen. The number are listed in represented by the first and last element of the series, separated by a hyphen. For example, if the completed indexes are 1, 3, 4, 5 and 7, they are represented as \"1,3-5,7\". When this field is null, this field doesn't default to any value and is never evaluated at any time.",
"succeededCount": "succeededCount specifies the minimal required size of the actual set of the succeeded indexes for the Job. When succeededCount is used along with succeededIndexes, the check is constrained only to the set of indexes specified by succeededIndexes. For example, given that succeededIndexes is \"1-4\", succeededCount is \"3\", and completed indexes are \"1\", \"3\", and \"5\", the Job isn't declared as succeeded because only \"1\" and \"3\" indexes are considered in that rules. When this field is null, this doesn't default to any value and is never evaluated at any time. When specified it needs to be a positive integer.",
}
func (SuccessPolicyRule) SwaggerDoc() map[string]string {
return map_SuccessPolicyRule
}
var map_UncountedTerminatedPods = map[string]string{
"": "UncountedTerminatedPods holds UIDs of Pods that have terminated but haven't been accounted in Job status counters.",
"succeeded": "succeeded holds UIDs of succeeded Pods.",

View File

@ -262,6 +262,11 @@ func (in *JobSpec) DeepCopyInto(out *JobSpec) {
*out = new(PodFailurePolicy)
(*in).DeepCopyInto(*out)
}
if in.SuccessPolicy != nil {
in, out := &in.SuccessPolicy, &out.SuccessPolicy
*out = new(SuccessPolicy)
(*in).DeepCopyInto(*out)
}
if in.BackoffLimit != nil {
in, out := &in.BackoffLimit, &out.BackoffLimit
*out = new(int32)
@ -308,6 +313,11 @@ func (in *JobSpec) DeepCopyInto(out *JobSpec) {
*out = new(PodReplacementPolicy)
**out = **in
}
if in.ManagedBy != nil {
in, out := &in.ManagedBy, &out.ManagedBy
*out = new(string)
**out = **in
}
return
}
@ -481,6 +491,55 @@ func (in *PodFailurePolicyRule) DeepCopy() *PodFailurePolicyRule {
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *SuccessPolicy) DeepCopyInto(out *SuccessPolicy) {
*out = *in
if in.Rules != nil {
in, out := &in.Rules, &out.Rules
*out = make([]SuccessPolicyRule, len(*in))
for i := range *in {
(*in)[i].DeepCopyInto(&(*out)[i])
}
}
return
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new SuccessPolicy.
func (in *SuccessPolicy) DeepCopy() *SuccessPolicy {
if in == nil {
return nil
}
out := new(SuccessPolicy)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *SuccessPolicyRule) DeepCopyInto(out *SuccessPolicyRule) {
*out = *in
if in.SucceededIndexes != nil {
in, out := &in.SucceededIndexes, &out.SucceededIndexes
*out = new(string)
**out = **in
}
if in.SucceededCount != nil {
in, out := &in.SucceededCount, &out.SucceededCount
*out = new(int32)
**out = **in
}
return
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new SuccessPolicyRule.
func (in *SuccessPolicyRule) DeepCopy() *SuccessPolicyRule {
if in == nil {
return nil
}
out := new(SuccessPolicyRule)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *UncountedTerminatedPods) DeepCopyInto(out *UncountedTerminatedPods) {
*out = *in

View File

@ -15,7 +15,7 @@ limitations under the License.
*/
// Code generated by protoc-gen-gogo. DO NOT EDIT.
// source: k8s.io/kubernetes/vendor/k8s.io/api/batch/v1beta1/generated.proto
// source: k8s.io/api/batch/v1beta1/generated.proto
package v1beta1
@ -48,7 +48,7 @@ const _ = proto.GoGoProtoPackageIsVersion3 // please upgrade the proto package
func (m *CronJob) Reset() { *m = CronJob{} }
func (*CronJob) ProtoMessage() {}
func (*CronJob) Descriptor() ([]byte, []int) {
return fileDescriptor_e57b277b05179ae7, []int{0}
return fileDescriptor_ed95843ae7b4086b, []int{0}
}
func (m *CronJob) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
@ -76,7 +76,7 @@ var xxx_messageInfo_CronJob proto.InternalMessageInfo
func (m *CronJobList) Reset() { *m = CronJobList{} }
func (*CronJobList) ProtoMessage() {}
func (*CronJobList) Descriptor() ([]byte, []int) {
return fileDescriptor_e57b277b05179ae7, []int{1}
return fileDescriptor_ed95843ae7b4086b, []int{1}
}
func (m *CronJobList) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
@ -104,7 +104,7 @@ var xxx_messageInfo_CronJobList proto.InternalMessageInfo
func (m *CronJobSpec) Reset() { *m = CronJobSpec{} }
func (*CronJobSpec) ProtoMessage() {}
func (*CronJobSpec) Descriptor() ([]byte, []int) {
return fileDescriptor_e57b277b05179ae7, []int{2}
return fileDescriptor_ed95843ae7b4086b, []int{2}
}
func (m *CronJobSpec) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
@ -132,7 +132,7 @@ var xxx_messageInfo_CronJobSpec proto.InternalMessageInfo
func (m *CronJobStatus) Reset() { *m = CronJobStatus{} }
func (*CronJobStatus) ProtoMessage() {}
func (*CronJobStatus) Descriptor() ([]byte, []int) {
return fileDescriptor_e57b277b05179ae7, []int{3}
return fileDescriptor_ed95843ae7b4086b, []int{3}
}
func (m *CronJobStatus) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
@ -160,7 +160,7 @@ var xxx_messageInfo_CronJobStatus proto.InternalMessageInfo
func (m *JobTemplateSpec) Reset() { *m = JobTemplateSpec{} }
func (*JobTemplateSpec) ProtoMessage() {}
func (*JobTemplateSpec) Descriptor() ([]byte, []int) {
return fileDescriptor_e57b277b05179ae7, []int{4}
return fileDescriptor_ed95843ae7b4086b, []int{4}
}
func (m *JobTemplateSpec) XXX_Unmarshal(b []byte) error {
return m.Unmarshal(b)
@ -194,60 +194,59 @@ func init() {
}
func init() {
proto.RegisterFile("k8s.io/kubernetes/vendor/k8s.io/api/batch/v1beta1/generated.proto", fileDescriptor_e57b277b05179ae7)
proto.RegisterFile("k8s.io/api/batch/v1beta1/generated.proto", fileDescriptor_ed95843ae7b4086b)
}
var fileDescriptor_e57b277b05179ae7 = []byte{
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}