EgressRule generated code

pull/6/head
Christopher M. Luciano 2017-09-05 12:37:09 -04:00
parent 90b139897e
commit 84290ce35c
No known key found for this signature in database
GPG Key ID: 5148DBB31F2843F1
18 changed files with 1931 additions and 776 deletions

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@ -68587,6 +68587,25 @@
}
]
},
"io.k8s.api.extensions.v1beta1.NetworkPolicyEgressRule": {
"description": "NetworkPolicyEgressRule describes a particular set of traffic that is allowed out of pods matched by a NetworkPolicySpec's podSelector. The traffic must match both ports and to. This type is beta-level in 1.8",
"properties": {
"ports": {
"description": "List of destination ports for outgoing traffic. Each item in this list is combined using a logical OR. If this field is empty or missing, this rule matches all ports (traffic not restricted by port). If this field is present and contains at least one item, then this rule allows traffic only if the traffic matches at least one port in the list.",
"type": "array",
"items": {
"$ref": "#/definitions/io.k8s.api.extensions.v1beta1.NetworkPolicyPort"
}
},
"to": {
"description": "List of destinations for outgoing traffic of pods selected for this rule. Items in this list are combined using a logical OR operation. If this field is empty or missing, this rule matches all destinations (traffic not restricted by destination). If this field is present and contains at least one item, this rule allows traffic only if the traffic matches at least one item in the to list.",
"type": "array",
"items": {
"$ref": "#/definitions/io.k8s.api.extensions.v1beta1.NetworkPolicyPeer"
}
}
}
},
"io.k8s.api.extensions.v1beta1.NetworkPolicyIngressRule": {
"description": "This NetworkPolicyIngressRule matches traffic if and only if the traffic matches both ports AND from.",
"properties": {
@ -68673,6 +68692,13 @@
"podSelector"
],
"properties": {
"egress": {
"description": "List of egress rules to be applied to the selected pods. Outgoing traffic is allowed if there are no NetworkPolicies selecting the pod (and cluster policy otherwise allows the traffic), OR if the traffic matches at least one egress rule across all of the NetworkPolicy objects whose podSelector matches the pod. If this field is empty then this NetworkPolicy limits all outgoing traffic (and serves solely to ensure that the pods it selects are isolated by default). This field is beta-level in 1.8",
"type": "array",
"items": {
"$ref": "#/definitions/io.k8s.api.extensions.v1beta1.NetworkPolicyEgressRule"
}
},
"ingress": {
"description": "List of ingress rules to be applied to the selected pods. Traffic is allowed to a pod if there are no NetworkPolicies selecting the pod OR if the traffic source is the pod's local node, OR if the traffic matches at least one ingress rule across all of the NetworkPolicy objects whose podSelector matches the pod. If this field is empty then this NetworkPolicy does not allow any traffic (and serves solely to ensure that the pods it selects are isolated by default).",
"type": "array",
@ -68683,6 +68709,13 @@
"podSelector": {
"description": "Selects the pods to which this NetworkPolicy object applies. The array of ingress rules is applied to any pods selected by this field. Multiple network policies can select the same set of pods. In this case, the ingress rules for each are combined additively. This field is NOT optional and follows standard label selector semantics. An empty podSelector matches all pods in this namespace.",
"$ref": "#/definitions/io.k8s.apimachinery.pkg.apis.meta.v1.LabelSelector"
},
"policyTypes": {
"description": "List of rule types that the NetworkPolicy relates to. Valid options are Ingress, Egress, or Ingress,Egress. If this field is not specified, it will default based on the existence of Ingress or Egress rules; policies that contain an Egress section are assumed to affect Egress, and all policies (whether or not they contain an Ingress section) are assumed to affect Ingress. If you want to write an egress-only policy, you must explicitly specify policyTypes [ \"Egress\" ]. Likewise, if you want to write a policy that specifies that no egress is allowed, you must specify a policyTypes value that include \"Egress\" (since such a policy would not include an Egress section and would otherwise default to just [ \"Ingress\" ]). This field is beta-level in 1.8",
"type": "array",
"items": {
"type": "string"
}
}
}
},
@ -69201,6 +69234,25 @@
}
]
},
"io.k8s.api.networking.v1.NetworkPolicyEgressRule": {
"description": "NetworkPolicyEgressRule describes a particular set of traffic that is allowed out of pods matched by a NetworkPolicySpec's podSelector. The traffic must match both ports and to. This type is beta-level in 1.8",
"properties": {
"ports": {
"description": "List of destination ports for outgoing traffic. Each item in this list is combined using a logical OR. If this field is empty or missing, this rule matches all ports (traffic not restricted by port). If this field is present and contains at least one item, then this rule allows traffic only if the traffic matches at least one port in the list.",
"type": "array",
"items": {
"$ref": "#/definitions/io.k8s.api.networking.v1.NetworkPolicyPort"
}
},
"to": {
"description": "List of destinations for outgoing traffic of pods selected for this rule. Items in this list are combined using a logical OR operation. If this field is empty or missing, this rule matches all destinations (traffic not restricted by destination). If this field is present and contains at least one item, this rule allows traffic only if the traffic matches at least one item in the to list.",
"type": "array",
"items": {
"$ref": "#/definitions/io.k8s.api.networking.v1.NetworkPolicyPeer"
}
}
}
},
"io.k8s.api.networking.v1.NetworkPolicyIngressRule": {
"description": "NetworkPolicyIngressRule describes a particular set of traffic that is allowed to the pods matched by a NetworkPolicySpec's podSelector. The traffic must match both ports and from.",
"properties": {
@ -69290,6 +69342,13 @@
"podSelector"
],
"properties": {
"egress": {
"description": "List of egress rules to be applied to the selected pods. Outgoing traffic is allowed if there are no NetworkPolicies selecting the pod (and cluster policy otherwise allows the traffic), OR if the traffic matches at least one egress rule across all of the NetworkPolicy objects whose podSelector matches the pod. If this field is empty then this NetworkPolicy limits all outgoing traffic (and serves solely to ensure that the pods it selects are isolated by default). This field is beta-level in 1.8",
"type": "array",
"items": {
"$ref": "#/definitions/io.k8s.api.networking.v1.NetworkPolicyEgressRule"
}
},
"ingress": {
"description": "List of ingress rules to be applied to the selected pods. Traffic is allowed to a pod if there are no NetworkPolicies selecting the pod (and cluster policy otherwise allows the traffic), OR if the traffic source is the pod's local node, OR if the traffic matches at least one ingress rule across all of the NetworkPolicy objects whose podSelector matches the pod. If this field is empty then this NetworkPolicy does not allow any traffic (and serves solely to ensure that the pods it selects are isolated by default)",
"type": "array",
@ -69300,6 +69359,13 @@
"podSelector": {
"description": "Selects the pods to which this NetworkPolicy object applies. The array of ingress rules is applied to any pods selected by this field. Multiple network policies can select the same set of pods. In this case, the ingress rules for each are combined additively. This field is NOT optional and follows standard label selector semantics. An empty podSelector matches all pods in this namespace.",
"$ref": "#/definitions/io.k8s.apimachinery.pkg.apis.meta.v1.LabelSelector"
},
"policyTypes": {
"description": "List of rule types that the NetworkPolicy relates to. Valid options are Ingress, Egress, or Ingress,Egress. If this field is not specified, it will default based on the existence of Ingress or Egress rules; policies that contain an Egress section are assumed to affect Egress, and all policies (whether or not they contain an Ingress section) are assumed to affect Ingress. If you want to write an egress-only policy, you must explicitly specify policyTypes [ \"Egress\" ]. Likewise, if you want to write a policy that specifies that no egress is allowed, you must specify a policyTypes value that include \"Egress\" (since such a policy would not include an Egress section and would otherwise default to just [ \"Ingress\" ]). This field is beta-level in 1.8",
"type": "array",
"items": {
"type": "string"
}
}
}
},

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@ -9811,6 +9811,20 @@
"$ref": "v1beta1.NetworkPolicyIngressRule"
},
"description": "List of ingress rules to be applied to the selected pods. Traffic is allowed to a pod if there are no NetworkPolicies selecting the pod OR if the traffic source is the pod's local node, OR if the traffic matches at least one ingress rule across all of the NetworkPolicy objects whose podSelector matches the pod. If this field is empty then this NetworkPolicy does not allow any traffic (and serves solely to ensure that the pods it selects are isolated by default)."
},
"egress": {
"type": "array",
"items": {
"$ref": "v1beta1.NetworkPolicyEgressRule"
},
"description": "List of egress rules to be applied to the selected pods. Outgoing traffic is allowed if there are no NetworkPolicies selecting the pod (and cluster policy otherwise allows the traffic), OR if the traffic matches at least one egress rule across all of the NetworkPolicy objects whose podSelector matches the pod. If this field is empty then this NetworkPolicy limits all outgoing traffic (and serves solely to ensure that the pods it selects are isolated by default). This field is beta-level in 1.8"
},
"policyTypes": {
"type": "array",
"items": {
"$ref": "v1beta1.PolicyType"
},
"description": "List of rule types that the NetworkPolicy relates to. Valid options are Ingress, Egress, or Ingress,Egress. If this field is not specified, it will default based on the existence of Ingress or Egress rules; policies that contain an Egress section are assumed to affect Egress, and all policies (whether or not they contain an Ingress section) are assumed to affect Ingress. If you want to write an egress-only policy, you must explicitly specify policyTypes [ \"Egress\" ]. Likewise, if you want to write a policy that specifies that no egress is allowed, you must specify a policyTypes value that include \"Egress\" (since such a policy would not include an Egress section and would otherwise default to just [ \"Ingress\" ]). This field is beta-level in 1.8"
}
}
},
@ -9888,6 +9902,30 @@
}
}
},
"v1beta1.NetworkPolicyEgressRule": {
"id": "v1beta1.NetworkPolicyEgressRule",
"description": "NetworkPolicyEgressRule describes a particular set of traffic that is allowed out of pods matched by a NetworkPolicySpec's podSelector. The traffic must match both ports and to. This type is beta-level in 1.8",
"properties": {
"ports": {
"type": "array",
"items": {
"$ref": "v1beta1.NetworkPolicyPort"
},
"description": "List of destination ports for outgoing traffic. Each item in this list is combined using a logical OR. If this field is empty or missing, this rule matches all ports (traffic not restricted by port). If this field is present and contains at least one item, then this rule allows traffic only if the traffic matches at least one port in the list."
},
"to": {
"type": "array",
"items": {
"$ref": "v1beta1.NetworkPolicyPeer"
},
"description": "List of destinations for outgoing traffic of pods selected for this rule. Items in this list are combined using a logical OR operation. If this field is empty or missing, this rule matches all destinations (traffic not restricted by destination). If this field is present and contains at least one item, this rule allows traffic only if the traffic matches at least one item in the to list."
}
}
},
"v1beta1.PolicyType": {
"id": "v1beta1.PolicyType",
"properties": {}
},
"v1beta1.PodSecurityPolicyList": {
"id": "v1beta1.PodSecurityPolicyList",
"description": "Pod Security Policy List is a list of PodSecurityPolicy objects.",

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@ -1313,6 +1313,20 @@
"$ref": "v1.NetworkPolicyIngressRule"
},
"description": "List of ingress rules to be applied to the selected pods. Traffic is allowed to a pod if there are no NetworkPolicies selecting the pod (and cluster policy otherwise allows the traffic), OR if the traffic source is the pod's local node, OR if the traffic matches at least one ingress rule across all of the NetworkPolicy objects whose podSelector matches the pod. If this field is empty then this NetworkPolicy does not allow any traffic (and serves solely to ensure that the pods it selects are isolated by default)"
},
"egress": {
"type": "array",
"items": {
"$ref": "v1.NetworkPolicyEgressRule"
},
"description": "List of egress rules to be applied to the selected pods. Outgoing traffic is allowed if there are no NetworkPolicies selecting the pod (and cluster policy otherwise allows the traffic), OR if the traffic matches at least one egress rule across all of the NetworkPolicy objects whose podSelector matches the pod. If this field is empty then this NetworkPolicy limits all outgoing traffic (and serves solely to ensure that the pods it selects are isolated by default). This field is beta-level in 1.8"
},
"policyTypes": {
"type": "array",
"items": {
"$ref": "v1.PolicyType"
},
"description": "List of rule types that the NetworkPolicy relates to. Valid options are Ingress, Egress, or Ingress,Egress. If this field is not specified, it will default based on the existence of Ingress or Egress rules; policies that contain an Egress section are assumed to affect Egress, and all policies (whether or not they contain an Ingress section) are assumed to affect Ingress. If you want to write an egress-only policy, you must explicitly specify policyTypes [ \"Egress\" ]. Likewise, if you want to write a policy that specifies that no egress is allowed, you must specify a policyTypes value that include \"Egress\" (since such a policy would not include an Egress section and would otherwise default to just [ \"Ingress\" ]). This field is beta-level in 1.8"
}
}
},
@ -1434,6 +1448,30 @@
}
}
},
"v1.NetworkPolicyEgressRule": {
"id": "v1.NetworkPolicyEgressRule",
"description": "NetworkPolicyEgressRule describes a particular set of traffic that is allowed out of pods matched by a NetworkPolicySpec's podSelector. The traffic must match both ports and to. This type is beta-level in 1.8",
"properties": {
"ports": {
"type": "array",
"items": {
"$ref": "v1.NetworkPolicyPort"
},
"description": "List of destination ports for outgoing traffic. Each item in this list is combined using a logical OR. If this field is empty or missing, this rule matches all ports (traffic not restricted by port). If this field is present and contains at least one item, then this rule allows traffic only if the traffic matches at least one port in the list."
},
"to": {
"type": "array",
"items": {
"$ref": "v1.NetworkPolicyPeer"
},
"description": "List of destinations for outgoing traffic of pods selected for this rule. Items in this list are combined using a logical OR operation. If this field is empty or missing, this rule matches all destinations (traffic not restricted by destination). If this field is present and contains at least one item, this rule allows traffic only if the traffic matches at least one item in the to list."
}
}
},
"v1.PolicyType": {
"id": "v1.PolicyType",
"properties": {}
},
"v1.WatchEvent": {
"id": "v1.WatchEvent",
"required": [

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@ -5581,6 +5581,20 @@ Examples:<br>
<td class="tableblock halign-left valign-top"><p class="tableblock"><a href="#_v1beta1_networkpolicyingressrule">v1beta1.NetworkPolicyIngressRule</a> array</p></td>
<td class="tableblock halign-left valign-top"></td>
</tr>
<tr>
<td class="tableblock halign-left valign-top"><p class="tableblock">egress</p></td>
<td class="tableblock halign-left valign-top"><p class="tableblock">List of egress rules to be applied to the selected pods. Outgoing traffic is allowed if there are no NetworkPolicies selecting the pod (and cluster policy otherwise allows the traffic), OR if the traffic matches at least one egress rule across all of the NetworkPolicy objects whose podSelector matches the pod. If this field is empty then this NetworkPolicy limits all outgoing traffic (and serves solely to ensure that the pods it selects are isolated by default). This field is beta-level in 1.8</p></td>
<td class="tableblock halign-left valign-top"><p class="tableblock">false</p></td>
<td class="tableblock halign-left valign-top"><p class="tableblock"><a href="#_v1beta1_networkpolicyegressrule">v1beta1.NetworkPolicyEgressRule</a> array</p></td>
<td class="tableblock halign-left valign-top"></td>
</tr>
<tr>
<td class="tableblock halign-left valign-top"><p class="tableblock">policyTypes</p></td>
<td class="tableblock halign-left valign-top"><p class="tableblock">List of rule types that the NetworkPolicy relates to. Valid options are Ingress, Egress, or Ingress,Egress. If this field is not specified, it will default based on the existence of Ingress or Egress rules; policies that contain an Egress section are assumed to affect Egress, and all policies (whether or not they contain an Ingress section) are assumed to affect Ingress. If you want to write an egress-only policy, you must explicitly specify policyTypes [ "Egress" ]. Likewise, if you want to write a policy that specifies that no egress is allowed, you must specify a policyTypes value that include "Egress" (since such a policy would not include an Egress section and would otherwise default to just [ "Ingress" ]). This field is beta-level in 1.8</p></td>
<td class="tableblock halign-left valign-top"><p class="tableblock">false</p></td>
<td class="tableblock halign-left valign-top"><p class="tableblock"><a href="#_v1beta1_policytype">v1beta1.PolicyType</a> array</p></td>
<td class="tableblock halign-left valign-top"></td>
</tr>
</tbody>
</table>
@ -6845,6 +6859,47 @@ Both these may change in the future. Incoming requests are matched against the h
</tbody>
</table>
</div>
<div class="sect2">
<h3 id="_v1beta1_networkpolicyegressrule">v1beta1.NetworkPolicyEgressRule</h3>
<div class="paragraph">
<p>NetworkPolicyEgressRule describes a particular set of traffic that is allowed out of pods matched by a NetworkPolicySpec&#8217;s podSelector. The traffic must match both ports and to. This type is beta-level in 1.8</p>
</div>
<table class="tableblock frame-all grid-all" style="width:100%; ">
<colgroup>
<col style="width:20%;">
<col style="width:20%;">
<col style="width:20%;">
<col style="width:20%;">
<col style="width:20%;">
</colgroup>
<thead>
<tr>
<th class="tableblock halign-left valign-top">Name</th>
<th class="tableblock halign-left valign-top">Description</th>
<th class="tableblock halign-left valign-top">Required</th>
<th class="tableblock halign-left valign-top">Schema</th>
<th class="tableblock halign-left valign-top">Default</th>
</tr>
</thead>
<tbody>
<tr>
<td class="tableblock halign-left valign-top"><p class="tableblock">ports</p></td>
<td class="tableblock halign-left valign-top"><p class="tableblock">List of destination ports for outgoing traffic. Each item in this list is combined using a logical OR. If this field is empty or missing, this rule matches all ports (traffic not restricted by port). If this field is present and contains at least one item, then this rule allows traffic only if the traffic matches at least one port in the list.</p></td>
<td class="tableblock halign-left valign-top"><p class="tableblock">false</p></td>
<td class="tableblock halign-left valign-top"><p class="tableblock"><a href="#_v1beta1_networkpolicyport">v1beta1.NetworkPolicyPort</a> array</p></td>
<td class="tableblock halign-left valign-top"></td>
</tr>
<tr>
<td class="tableblock halign-left valign-top"><p class="tableblock">to</p></td>
<td class="tableblock halign-left valign-top"><p class="tableblock">List of destinations for outgoing traffic of pods selected for this rule. Items in this list are combined using a logical OR operation. If this field is empty or missing, this rule matches all destinations (traffic not restricted by destination). If this field is present and contains at least one item, this rule allows traffic only if the traffic matches at least one item in the to list.</p></td>
<td class="tableblock halign-left valign-top"><p class="tableblock">false</p></td>
<td class="tableblock halign-left valign-top"><p class="tableblock"><a href="#_v1beta1_networkpolicypeer">v1beta1.NetworkPolicyPeer</a> array</p></td>
<td class="tableblock halign-left valign-top"></td>
</tr>
</tbody>
</table>
</div>
<div class="sect2">
<h3 id="_v1_hostpathvolumesource">v1.HostPathVolumeSource</h3>
@ -8222,6 +8277,10 @@ Both these may change in the future. Incoming requests are matched against the h
</tbody>
</table>
</div>
<div class="sect2">
<h3 id="_v1beta1_policytype">v1beta1.PolicyType</h3>
</div>
<div class="sect2">
<h3 id="_v1_azuredatadiskcachingmode">v1.AzureDataDiskCachingMode</h3>

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@ -3,6 +3,7 @@ package(default_visibility = ["//visibility:public"])
load(
"@io_bazel_rules_go//go:def.bzl",
"go_library",
"go_test",
)
go_library(
@ -39,3 +40,18 @@ filegroup(
srcs = [":package-srcs"],
tags = ["automanaged"],
)
go_test(
name = "go_default_xtest",
srcs = ["defaults_test.go"],
deps = [
":go_default_library",
"//pkg/api:go_default_library",
"//pkg/api/install:go_default_library",
"//pkg/apis/networking/install:go_default_library",
"//vendor/k8s.io/api/networking/v1:go_default_library",
"//vendor/k8s.io/apimachinery/pkg/api/equality:go_default_library",
"//vendor/k8s.io/apimachinery/pkg/apis/meta/v1:go_default_library",
"//vendor/k8s.io/apimachinery/pkg/runtime:go_default_library",
],
)

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@ -44,6 +44,8 @@ func RegisterConversions(scheme *runtime.Scheme) error {
Convert_networking_IPBlock_To_v1_IPBlock,
Convert_v1_NetworkPolicy_To_networking_NetworkPolicy,
Convert_networking_NetworkPolicy_To_v1_NetworkPolicy,
Convert_v1_NetworkPolicyEgressRule_To_networking_NetworkPolicyEgressRule,
Convert_networking_NetworkPolicyEgressRule_To_v1_NetworkPolicyEgressRule,
Convert_v1_NetworkPolicyIngressRule_To_networking_NetworkPolicyIngressRule,
Convert_networking_NetworkPolicyIngressRule_To_v1_NetworkPolicyIngressRule,
Convert_v1_NetworkPolicyList_To_networking_NetworkPolicyList,
@ -105,6 +107,28 @@ func Convert_networking_NetworkPolicy_To_v1_NetworkPolicy(in *networking.Network
return autoConvert_networking_NetworkPolicy_To_v1_NetworkPolicy(in, out, s)
}
func autoConvert_v1_NetworkPolicyEgressRule_To_networking_NetworkPolicyEgressRule(in *v1.NetworkPolicyEgressRule, out *networking.NetworkPolicyEgressRule, s conversion.Scope) error {
out.Ports = *(*[]networking.NetworkPolicyPort)(unsafe.Pointer(&in.Ports))
out.To = *(*[]networking.NetworkPolicyPeer)(unsafe.Pointer(&in.To))
return nil
}
// Convert_v1_NetworkPolicyEgressRule_To_networking_NetworkPolicyEgressRule is an autogenerated conversion function.
func Convert_v1_NetworkPolicyEgressRule_To_networking_NetworkPolicyEgressRule(in *v1.NetworkPolicyEgressRule, out *networking.NetworkPolicyEgressRule, s conversion.Scope) error {
return autoConvert_v1_NetworkPolicyEgressRule_To_networking_NetworkPolicyEgressRule(in, out, s)
}
func autoConvert_networking_NetworkPolicyEgressRule_To_v1_NetworkPolicyEgressRule(in *networking.NetworkPolicyEgressRule, out *v1.NetworkPolicyEgressRule, s conversion.Scope) error {
out.Ports = *(*[]v1.NetworkPolicyPort)(unsafe.Pointer(&in.Ports))
out.To = *(*[]v1.NetworkPolicyPeer)(unsafe.Pointer(&in.To))
return nil
}
// Convert_networking_NetworkPolicyEgressRule_To_v1_NetworkPolicyEgressRule is an autogenerated conversion function.
func Convert_networking_NetworkPolicyEgressRule_To_v1_NetworkPolicyEgressRule(in *networking.NetworkPolicyEgressRule, out *v1.NetworkPolicyEgressRule, s conversion.Scope) error {
return autoConvert_networking_NetworkPolicyEgressRule_To_v1_NetworkPolicyEgressRule(in, out, s)
}
func autoConvert_v1_NetworkPolicyIngressRule_To_networking_NetworkPolicyIngressRule(in *v1.NetworkPolicyIngressRule, out *networking.NetworkPolicyIngressRule, s conversion.Scope) error {
out.Ports = *(*[]networking.NetworkPolicyPort)(unsafe.Pointer(&in.Ports))
out.From = *(*[]networking.NetworkPolicyPeer)(unsafe.Pointer(&in.From))
@ -198,6 +222,8 @@ func Convert_networking_NetworkPolicyPort_To_v1_NetworkPolicyPort(in *networking
func autoConvert_v1_NetworkPolicySpec_To_networking_NetworkPolicySpec(in *v1.NetworkPolicySpec, out *networking.NetworkPolicySpec, s conversion.Scope) error {
out.PodSelector = in.PodSelector
out.Ingress = *(*[]networking.NetworkPolicyIngressRule)(unsafe.Pointer(&in.Ingress))
out.Egress = *(*[]networking.NetworkPolicyEgressRule)(unsafe.Pointer(&in.Egress))
out.PolicyTypes = *(*[]networking.PolicyType)(unsafe.Pointer(&in.PolicyTypes))
return nil
}
@ -209,6 +235,8 @@ func Convert_v1_NetworkPolicySpec_To_networking_NetworkPolicySpec(in *v1.Network
func autoConvert_networking_NetworkPolicySpec_To_v1_NetworkPolicySpec(in *networking.NetworkPolicySpec, out *v1.NetworkPolicySpec, s conversion.Scope) error {
out.PodSelector = in.PodSelector
out.Ingress = *(*[]v1.NetworkPolicyIngressRule)(unsafe.Pointer(&in.Ingress))
out.Egress = *(*[]v1.NetworkPolicyEgressRule)(unsafe.Pointer(&in.Egress))
out.PolicyTypes = *(*[]v1.PolicyType)(unsafe.Pointer(&in.PolicyTypes))
return nil
}

View File

@ -35,6 +35,7 @@ func RegisterDefaults(scheme *runtime.Scheme) error {
}
func SetObjectDefaults_NetworkPolicy(in *v1.NetworkPolicy) {
SetDefaults_NetworkPolicy(in)
for i := range in.Spec.Ingress {
a := &in.Spec.Ingress[i]
for j := range a.Ports {
@ -42,6 +43,13 @@ func SetObjectDefaults_NetworkPolicy(in *v1.NetworkPolicy) {
SetDefaults_NetworkPolicyPort(b)
}
}
for i := range in.Spec.Egress {
a := &in.Spec.Egress[i]
for j := range a.Ports {
b := &a.Ports[j]
SetDefaults_NetworkPolicyPort(b)
}
}
}
func SetObjectDefaults_NetworkPolicyList(in *v1.NetworkPolicyList) {

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@ -27,6 +27,7 @@ go_library(
"//pkg/apis/networking:go_default_library",
"//vendor/k8s.io/apimachinery/pkg/apis/meta/v1/validation:go_default_library",
"//vendor/k8s.io/apimachinery/pkg/util/intstr:go_default_library",
"//vendor/k8s.io/apimachinery/pkg/util/sets:go_default_library",
"//vendor/k8s.io/apimachinery/pkg/util/validation:go_default_library",
"//vendor/k8s.io/apimachinery/pkg/util/validation/field:go_default_library",
],

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@ -47,6 +47,10 @@ func RegisterDeepCopies(scheme *runtime.Scheme) error {
in.(*NetworkPolicy).DeepCopyInto(out.(*NetworkPolicy))
return nil
}, InType: reflect.TypeOf(&NetworkPolicy{})},
conversion.GeneratedDeepCopyFunc{Fn: func(in interface{}, out interface{}, c *conversion.Cloner) error {
in.(*NetworkPolicyEgressRule).DeepCopyInto(out.(*NetworkPolicyEgressRule))
return nil
}, InType: reflect.TypeOf(&NetworkPolicyEgressRule{})},
conversion.GeneratedDeepCopyFunc{Fn: func(in interface{}, out interface{}, c *conversion.Cloner) error {
in.(*NetworkPolicyIngressRule).DeepCopyInto(out.(*NetworkPolicyIngressRule))
return nil
@ -119,6 +123,36 @@ func (in *NetworkPolicy) DeepCopyObject() runtime.Object {
}
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *NetworkPolicyEgressRule) DeepCopyInto(out *NetworkPolicyEgressRule) {
*out = *in
if in.Ports != nil {
in, out := &in.Ports, &out.Ports
*out = make([]NetworkPolicyPort, len(*in))
for i := range *in {
(*in)[i].DeepCopyInto(&(*out)[i])
}
}
if in.To != nil {
in, out := &in.To, &out.To
*out = make([]NetworkPolicyPeer, len(*in))
for i := range *in {
(*in)[i].DeepCopyInto(&(*out)[i])
}
}
return
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new NetworkPolicyEgressRule.
func (in *NetworkPolicyEgressRule) DeepCopy() *NetworkPolicyEgressRule {
if in == nil {
return nil
}
out := new(NetworkPolicyEgressRule)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *NetworkPolicyIngressRule) DeepCopyInto(out *NetworkPolicyIngressRule) {
*out = *in
@ -271,6 +305,18 @@ func (in *NetworkPolicySpec) DeepCopyInto(out *NetworkPolicySpec) {
(*in)[i].DeepCopyInto(&(*out)[i])
}
}
if in.Egress != nil {
in, out := &in.Egress, &out.Egress
*out = make([]NetworkPolicyEgressRule, len(*in))
for i := range *in {
(*in)[i].DeepCopyInto(&(*out)[i])
}
}
if in.PolicyTypes != nil {
in, out := &in.PolicyTypes, &out.PolicyTypes
*out = make([]PolicyType, len(*in))
copy(*out, *in)
}
return
}

View File

@ -58,6 +58,7 @@ limitations under the License.
IngressStatus
IngressTLS
NetworkPolicy
NetworkPolicyEgressRule
NetworkPolicyIngressRule
NetworkPolicyList
NetworkPolicyPeer
@ -254,125 +255,131 @@ func (m *NetworkPolicy) Reset() { *m = NetworkPolicy{} }
func (*NetworkPolicy) ProtoMessage() {}
func (*NetworkPolicy) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{32} }
func (m *NetworkPolicyEgressRule) Reset() { *m = NetworkPolicyEgressRule{} }
func (*NetworkPolicyEgressRule) ProtoMessage() {}
func (*NetworkPolicyEgressRule) Descriptor() ([]byte, []int) {
return fileDescriptorGenerated, []int{33}
}
func (m *NetworkPolicyIngressRule) Reset() { *m = NetworkPolicyIngressRule{} }
func (*NetworkPolicyIngressRule) ProtoMessage() {}
func (*NetworkPolicyIngressRule) Descriptor() ([]byte, []int) {
return fileDescriptorGenerated, []int{33}
return fileDescriptorGenerated, []int{34}
}
func (m *NetworkPolicyList) Reset() { *m = NetworkPolicyList{} }
func (*NetworkPolicyList) ProtoMessage() {}
func (*NetworkPolicyList) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{34} }
func (*NetworkPolicyList) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{35} }
func (m *NetworkPolicyPeer) Reset() { *m = NetworkPolicyPeer{} }
func (*NetworkPolicyPeer) ProtoMessage() {}
func (*NetworkPolicyPeer) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{35} }
func (*NetworkPolicyPeer) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{36} }
func (m *NetworkPolicyPort) Reset() { *m = NetworkPolicyPort{} }
func (*NetworkPolicyPort) ProtoMessage() {}
func (*NetworkPolicyPort) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{36} }
func (*NetworkPolicyPort) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{37} }
func (m *NetworkPolicySpec) Reset() { *m = NetworkPolicySpec{} }
func (*NetworkPolicySpec) ProtoMessage() {}
func (*NetworkPolicySpec) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{37} }
func (*NetworkPolicySpec) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{38} }
func (m *PodSecurityPolicy) Reset() { *m = PodSecurityPolicy{} }
func (*PodSecurityPolicy) ProtoMessage() {}
func (*PodSecurityPolicy) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{38} }
func (*PodSecurityPolicy) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{39} }
func (m *PodSecurityPolicyList) Reset() { *m = PodSecurityPolicyList{} }
func (*PodSecurityPolicyList) ProtoMessage() {}
func (*PodSecurityPolicyList) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{39} }
func (*PodSecurityPolicyList) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{40} }
func (m *PodSecurityPolicySpec) Reset() { *m = PodSecurityPolicySpec{} }
func (*PodSecurityPolicySpec) ProtoMessage() {}
func (*PodSecurityPolicySpec) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{40} }
func (*PodSecurityPolicySpec) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{41} }
func (m *ReplicaSet) Reset() { *m = ReplicaSet{} }
func (*ReplicaSet) ProtoMessage() {}
func (*ReplicaSet) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{41} }
func (*ReplicaSet) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{42} }
func (m *ReplicaSetCondition) Reset() { *m = ReplicaSetCondition{} }
func (*ReplicaSetCondition) ProtoMessage() {}
func (*ReplicaSetCondition) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{42} }
func (*ReplicaSetCondition) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{43} }
func (m *ReplicaSetList) Reset() { *m = ReplicaSetList{} }
func (*ReplicaSetList) ProtoMessage() {}
func (*ReplicaSetList) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{43} }
func (*ReplicaSetList) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{44} }
func (m *ReplicaSetSpec) Reset() { *m = ReplicaSetSpec{} }
func (*ReplicaSetSpec) ProtoMessage() {}
func (*ReplicaSetSpec) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{44} }
func (*ReplicaSetSpec) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{45} }
func (m *ReplicaSetStatus) Reset() { *m = ReplicaSetStatus{} }
func (*ReplicaSetStatus) ProtoMessage() {}
func (*ReplicaSetStatus) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{45} }
func (*ReplicaSetStatus) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{46} }
func (m *ReplicationControllerDummy) Reset() { *m = ReplicationControllerDummy{} }
func (*ReplicationControllerDummy) ProtoMessage() {}
func (*ReplicationControllerDummy) Descriptor() ([]byte, []int) {
return fileDescriptorGenerated, []int{46}
return fileDescriptorGenerated, []int{47}
}
func (m *RollbackConfig) Reset() { *m = RollbackConfig{} }
func (*RollbackConfig) ProtoMessage() {}
func (*RollbackConfig) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{47} }
func (*RollbackConfig) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{48} }
func (m *RollingUpdateDaemonSet) Reset() { *m = RollingUpdateDaemonSet{} }
func (*RollingUpdateDaemonSet) ProtoMessage() {}
func (*RollingUpdateDaemonSet) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{48} }
func (*RollingUpdateDaemonSet) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{49} }
func (m *RollingUpdateDeployment) Reset() { *m = RollingUpdateDeployment{} }
func (*RollingUpdateDeployment) ProtoMessage() {}
func (*RollingUpdateDeployment) Descriptor() ([]byte, []int) {
return fileDescriptorGenerated, []int{49}
return fileDescriptorGenerated, []int{50}
}
func (m *RunAsUserStrategyOptions) Reset() { *m = RunAsUserStrategyOptions{} }
func (*RunAsUserStrategyOptions) ProtoMessage() {}
func (*RunAsUserStrategyOptions) Descriptor() ([]byte, []int) {
return fileDescriptorGenerated, []int{50}
return fileDescriptorGenerated, []int{51}
}
func (m *SELinuxStrategyOptions) Reset() { *m = SELinuxStrategyOptions{} }
func (*SELinuxStrategyOptions) ProtoMessage() {}
func (*SELinuxStrategyOptions) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{51} }
func (*SELinuxStrategyOptions) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{52} }
func (m *Scale) Reset() { *m = Scale{} }
func (*Scale) ProtoMessage() {}
func (*Scale) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{52} }
func (*Scale) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{53} }
func (m *ScaleSpec) Reset() { *m = ScaleSpec{} }
func (*ScaleSpec) ProtoMessage() {}
func (*ScaleSpec) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{53} }
func (*ScaleSpec) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{54} }
func (m *ScaleStatus) Reset() { *m = ScaleStatus{} }
func (*ScaleStatus) ProtoMessage() {}
func (*ScaleStatus) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{54} }
func (*ScaleStatus) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{55} }
func (m *SupplementalGroupsStrategyOptions) Reset() { *m = SupplementalGroupsStrategyOptions{} }
func (*SupplementalGroupsStrategyOptions) ProtoMessage() {}
func (*SupplementalGroupsStrategyOptions) Descriptor() ([]byte, []int) {
return fileDescriptorGenerated, []int{55}
return fileDescriptorGenerated, []int{56}
}
func (m *ThirdPartyResource) Reset() { *m = ThirdPartyResource{} }
func (*ThirdPartyResource) ProtoMessage() {}
func (*ThirdPartyResource) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{56} }
func (*ThirdPartyResource) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{57} }
func (m *ThirdPartyResourceData) Reset() { *m = ThirdPartyResourceData{} }
func (*ThirdPartyResourceData) ProtoMessage() {}
func (*ThirdPartyResourceData) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{57} }
func (*ThirdPartyResourceData) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{58} }
func (m *ThirdPartyResourceDataList) Reset() { *m = ThirdPartyResourceDataList{} }
func (*ThirdPartyResourceDataList) ProtoMessage() {}
func (*ThirdPartyResourceDataList) Descriptor() ([]byte, []int) {
return fileDescriptorGenerated, []int{58}
return fileDescriptorGenerated, []int{59}
}
func (m *ThirdPartyResourceList) Reset() { *m = ThirdPartyResourceList{} }
func (*ThirdPartyResourceList) ProtoMessage() {}
func (*ThirdPartyResourceList) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{59} }
func (*ThirdPartyResourceList) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{60} }
func init() {
proto.RegisterType((*APIVersion)(nil), "k8s.io.api.extensions.v1beta1.APIVersion")
@ -408,6 +415,7 @@ func init() {
proto.RegisterType((*IngressStatus)(nil), "k8s.io.api.extensions.v1beta1.IngressStatus")
proto.RegisterType((*IngressTLS)(nil), "k8s.io.api.extensions.v1beta1.IngressTLS")
proto.RegisterType((*NetworkPolicy)(nil), "k8s.io.api.extensions.v1beta1.NetworkPolicy")
proto.RegisterType((*NetworkPolicyEgressRule)(nil), "k8s.io.api.extensions.v1beta1.NetworkPolicyEgressRule")
proto.RegisterType((*NetworkPolicyIngressRule)(nil), "k8s.io.api.extensions.v1beta1.NetworkPolicyIngressRule")
proto.RegisterType((*NetworkPolicyList)(nil), "k8s.io.api.extensions.v1beta1.NetworkPolicyList")
proto.RegisterType((*NetworkPolicyPeer)(nil), "k8s.io.api.extensions.v1beta1.NetworkPolicyPeer")
@ -1657,6 +1665,48 @@ func (m *NetworkPolicy) MarshalTo(dAtA []byte) (int, error) {
return i, nil
}
func (m *NetworkPolicyEgressRule) Marshal() (dAtA []byte, err error) {
size := m.Size()
dAtA = make([]byte, size)
n, err := m.MarshalTo(dAtA)
if err != nil {
return nil, err
}
return dAtA[:n], nil
}
func (m *NetworkPolicyEgressRule) MarshalTo(dAtA []byte) (int, error) {
var i int
_ = i
var l int
_ = l
if len(m.Ports) > 0 {
for _, msg := range m.Ports {
dAtA[i] = 0xa
i++
i = encodeVarintGenerated(dAtA, i, uint64(msg.Size()))
n, err := msg.MarshalTo(dAtA[i:])
if err != nil {
return 0, err
}
i += n
}
}
if len(m.To) > 0 {
for _, msg := range m.To {
dAtA[i] = 0x12
i++
i = encodeVarintGenerated(dAtA, i, uint64(msg.Size()))
n, err := msg.MarshalTo(dAtA[i:])
if err != nil {
return 0, err
}
i += n
}
}
return i, nil
}
func (m *NetworkPolicyIngressRule) Marshal() (dAtA []byte, err error) {
size := m.Size()
dAtA = make([]byte, size)
@ -1854,6 +1904,33 @@ func (m *NetworkPolicySpec) MarshalTo(dAtA []byte) (int, error) {
i += n
}
}
if len(m.Egress) > 0 {
for _, msg := range m.Egress {
dAtA[i] = 0x1a
i++
i = encodeVarintGenerated(dAtA, i, uint64(msg.Size()))
n, err := msg.MarshalTo(dAtA[i:])
if err != nil {
return 0, err
}
i += n
}
}
if len(m.PolicyTypes) > 0 {
for _, s := range m.PolicyTypes {
dAtA[i] = 0x22
i++
l = len(s)
for l >= 1<<7 {
dAtA[i] = uint8(uint64(l)&0x7f | 0x80)
l >>= 7
i++
}
dAtA[i] = uint8(l)
i++
i += copy(dAtA[i:], s)
}
}
return i, nil
}
@ -3262,6 +3339,24 @@ func (m *NetworkPolicy) Size() (n int) {
return n
}
func (m *NetworkPolicyEgressRule) Size() (n int) {
var l int
_ = l
if len(m.Ports) > 0 {
for _, e := range m.Ports {
l = e.Size()
n += 1 + l + sovGenerated(uint64(l))
}
}
if len(m.To) > 0 {
for _, e := range m.To {
l = e.Size()
n += 1 + l + sovGenerated(uint64(l))
}
}
return n
}
func (m *NetworkPolicyIngressRule) Size() (n int) {
var l int
_ = l
@ -3337,6 +3432,18 @@ func (m *NetworkPolicySpec) Size() (n int) {
n += 1 + l + sovGenerated(uint64(l))
}
}
if len(m.Egress) > 0 {
for _, e := range m.Egress {
l = e.Size()
n += 1 + l + sovGenerated(uint64(l))
}
}
if len(m.PolicyTypes) > 0 {
for _, s := range m.PolicyTypes {
l = len(s)
n += 1 + l + sovGenerated(uint64(l))
}
}
return n
}
@ -4079,6 +4186,17 @@ func (this *NetworkPolicy) String() string {
}, "")
return s
}
func (this *NetworkPolicyEgressRule) String() string {
if this == nil {
return "nil"
}
s := strings.Join([]string{`&NetworkPolicyEgressRule{`,
`Ports:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.Ports), "NetworkPolicyPort", "NetworkPolicyPort", 1), `&`, ``, 1) + `,`,
`To:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.To), "NetworkPolicyPeer", "NetworkPolicyPeer", 1), `&`, ``, 1) + `,`,
`}`,
}, "")
return s
}
func (this *NetworkPolicyIngressRule) String() string {
if this == nil {
return "nil"
@ -4131,6 +4249,8 @@ func (this *NetworkPolicySpec) String() string {
s := strings.Join([]string{`&NetworkPolicySpec{`,
`PodSelector:` + strings.Replace(strings.Replace(this.PodSelector.String(), "LabelSelector", "k8s_io_apimachinery_pkg_apis_meta_v1.LabelSelector", 1), `&`, ``, 1) + `,`,
`Ingress:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.Ingress), "NetworkPolicyIngressRule", "NetworkPolicyIngressRule", 1), `&`, ``, 1) + `,`,
`Egress:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.Egress), "NetworkPolicyEgressRule", "NetworkPolicyEgressRule", 1), `&`, ``, 1) + `,`,
`PolicyTypes:` + fmt.Sprintf("%v", this.PolicyTypes) + `,`,
`}`,
}, "")
return s
@ -8625,6 +8745,118 @@ func (m *NetworkPolicy) Unmarshal(dAtA []byte) error {
}
return nil
}
func (m *NetworkPolicyEgressRule) 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: NetworkPolicyEgressRule: wiretype end group for non-group")
}
if fieldNum <= 0 {
return fmt.Errorf("proto: NetworkPolicyEgressRule: illegal tag %d (wire type %d)", fieldNum, wire)
}
switch fieldNum {
case 1:
if wireType != 2 {
return fmt.Errorf("proto: wrong wireType = %d for field Ports", 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 > l {
return io.ErrUnexpectedEOF
}
m.Ports = append(m.Ports, NetworkPolicyPort{})
if err := m.Ports[len(m.Ports)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil {
return err
}
iNdEx = postIndex
case 2:
if wireType != 2 {
return fmt.Errorf("proto: wrong wireType = %d for field To", 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 > l {
return io.ErrUnexpectedEOF
}
m.To = append(m.To, NetworkPolicyPeer{})
if err := m.To[len(m.To)-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 {
return ErrInvalidLengthGenerated
}
if (iNdEx + skippy) > l {
return io.ErrUnexpectedEOF
}
iNdEx += skippy
}
}
if iNdEx > l {
return io.ErrUnexpectedEOF
}
return nil
}
func (m *NetworkPolicyIngressRule) Unmarshal(dAtA []byte) error {
l := len(dAtA)
iNdEx := 0
@ -9200,6 +9432,66 @@ func (m *NetworkPolicySpec) Unmarshal(dAtA []byte) error {
return err
}
iNdEx = postIndex
case 3:
if wireType != 2 {
return fmt.Errorf("proto: wrong wireType = %d for field Egress", 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 > l {
return io.ErrUnexpectedEOF
}
m.Egress = append(m.Egress, NetworkPolicyEgressRule{})
if err := m.Egress[len(m.Egress)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil {
return err
}
iNdEx = postIndex
case 4:
if wireType != 2 {
return fmt.Errorf("proto: wrong wireType = %d for field PolicyTypes", 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 > l {
return io.ErrUnexpectedEOF
}
m.PolicyTypes = append(m.PolicyTypes, PolicyType(dAtA[iNdEx:postIndex]))
iNdEx = postIndex
default:
iNdEx = preIndex
skippy, err := skipGenerated(dAtA[iNdEx:])
@ -12362,228 +12654,233 @@ func init() {
}
var fileDescriptorGenerated = []byte{
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}

View File

@ -594,6 +594,27 @@ message NetworkPolicy {
optional NetworkPolicySpec spec = 2;
}
// NetworkPolicyEgressRule describes a particular set of traffic that is allowed out of pods
// matched by a NetworkPolicySpec's podSelector. The traffic must match both ports and to.
// This type is beta-level in 1.8
message NetworkPolicyEgressRule {
// List of destination ports for outgoing traffic.
// Each item in this list is combined using a logical OR. If this field is
// empty or missing, this rule matches all ports (traffic not restricted by port).
// If this field is present and contains at least one item, then this rule allows
// traffic only if the traffic matches at least one port in the list.
// +optional
repeated NetworkPolicyPort ports = 1;
// List of destinations for outgoing traffic of pods selected for this rule.
// Items in this list are combined using a logical OR operation. If this field is
// empty or missing, this rule matches all destinations (traffic not restricted by
// destination). If this field is present and contains at least one item, this rule
// allows traffic only if the traffic matches at least one item in the to list.
// +optional
repeated NetworkPolicyPeer to = 2;
}
// This NetworkPolicyIngressRule matches traffic if and only if the traffic matches both ports AND from.
message NetworkPolicyIngressRule {
// List of ports which should be made accessible on the pods selected for this rule.
@ -675,6 +696,29 @@ message NetworkPolicySpec {
// (and serves solely to ensure that the pods it selects are isolated by default).
// +optional
repeated NetworkPolicyIngressRule ingress = 2;
// List of egress rules to be applied to the selected pods. Outgoing traffic is
// allowed if there are no NetworkPolicies selecting the pod (and cluster policy
// otherwise allows the traffic), OR if the traffic matches at least one egress rule
// across all of the NetworkPolicy objects whose podSelector matches the pod. If
// this field is empty then this NetworkPolicy limits all outgoing traffic (and serves
// solely to ensure that the pods it selects are isolated by default).
// This field is beta-level in 1.8
// +optional
repeated NetworkPolicyEgressRule egress = 3;
// List of rule types that the NetworkPolicy relates to.
// Valid options are Ingress, Egress, or Ingress,Egress.
// If this field is not specified, it will default based on the existence of Ingress or Egress rules;
// policies that contain an Egress section are assumed to affect Egress, and all policies
// (whether or not they contain an Ingress section) are assumed to affect Ingress.
// If you want to write an egress-only policy, you must explicitly specify policyTypes [ "Egress" ].
// Likewise, if you want to write a policy that specifies that no egress is allowed,
// you must specify a policyTypes value that include "Egress" (since such a policy would not include
// an Egress section and would otherwise default to just [ "Ingress" ]).
// This field is beta-level in 1.8
// +optional
repeated string policyTypes = 4;
}
// Pod Security Policy governs the ability to make requests that affect the Security Context

View File

@ -361,6 +361,16 @@ func (NetworkPolicy) SwaggerDoc() map[string]string {
return map_NetworkPolicy
}
var map_NetworkPolicyEgressRule = map[string]string{
"": "NetworkPolicyEgressRule describes a particular set of traffic that is allowed out of pods matched by a NetworkPolicySpec's podSelector. The traffic must match both ports and to. This type is beta-level in 1.8",
"ports": "List of destination ports for outgoing traffic. Each item in this list is combined using a logical OR. If this field is empty or missing, this rule matches all ports (traffic not restricted by port). If this field is present and contains at least one item, then this rule allows traffic only if the traffic matches at least one port in the list.",
"to": "List of destinations for outgoing traffic of pods selected for this rule. Items in this list are combined using a logical OR operation. If this field is empty or missing, this rule matches all destinations (traffic not restricted by destination). If this field is present and contains at least one item, this rule allows traffic only if the traffic matches at least one item in the to list.",
}
func (NetworkPolicyEgressRule) SwaggerDoc() map[string]string {
return map_NetworkPolicyEgressRule
}
var map_NetworkPolicyIngressRule = map[string]string{
"": "This NetworkPolicyIngressRule matches traffic if and only if the traffic matches both ports AND from.",
"ports": "List of ports which should be made accessible on the pods selected for this rule. Each item in this list is combined using a logical OR. If this field is empty or missing, this rule matches all ports (traffic not restricted by port). If this field is present and contains at least one item, then this rule allows traffic only if the traffic matches at least one port in the list.",
@ -403,6 +413,8 @@ func (NetworkPolicyPort) SwaggerDoc() map[string]string {
var map_NetworkPolicySpec = map[string]string{
"podSelector": "Selects the pods to which this NetworkPolicy object applies. The array of ingress rules is applied to any pods selected by this field. Multiple network policies can select the same set of pods. In this case, the ingress rules for each are combined additively. This field is NOT optional and follows standard label selector semantics. An empty podSelector matches all pods in this namespace.",
"ingress": "List of ingress rules to be applied to the selected pods. Traffic is allowed to a pod if there are no NetworkPolicies selecting the pod OR if the traffic source is the pod's local node, OR if the traffic matches at least one ingress rule across all of the NetworkPolicy objects whose podSelector matches the pod. If this field is empty then this NetworkPolicy does not allow any traffic (and serves solely to ensure that the pods it selects are isolated by default).",
"egress": "List of egress rules to be applied to the selected pods. Outgoing traffic is allowed if there are no NetworkPolicies selecting the pod (and cluster policy otherwise allows the traffic), OR if the traffic matches at least one egress rule across all of the NetworkPolicy objects whose podSelector matches the pod. If this field is empty then this NetworkPolicy limits all outgoing traffic (and serves solely to ensure that the pods it selects are isolated by default). This field is beta-level in 1.8",
"policyTypes": "List of rule types that the NetworkPolicy relates to. Valid options are Ingress, Egress, or Ingress,Egress. If this field is not specified, it will default based on the existence of Ingress or Egress rules; policies that contain an Egress section are assumed to affect Egress, and all policies (whether or not they contain an Ingress section) are assumed to affect Ingress. If you want to write an egress-only policy, you must explicitly specify policyTypes [ \"Egress\" ]. Likewise, if you want to write a policy that specifies that no egress is allowed, you must specify a policyTypes value that include \"Egress\" (since such a policy would not include an Egress section and would otherwise default to just [ \"Ingress\" ]). This field is beta-level in 1.8",
}
func (NetworkPolicySpec) SwaggerDoc() map[string]string {

View File

@ -171,6 +171,10 @@ func RegisterDeepCopies(scheme *runtime.Scheme) error {
in.(*NetworkPolicy).DeepCopyInto(out.(*NetworkPolicy))
return nil
}, InType: reflect.TypeOf(&NetworkPolicy{})},
conversion.GeneratedDeepCopyFunc{Fn: func(in interface{}, out interface{}, c *conversion.Cloner) error {
in.(*NetworkPolicyEgressRule).DeepCopyInto(out.(*NetworkPolicyEgressRule))
return nil
}, InType: reflect.TypeOf(&NetworkPolicyEgressRule{})},
conversion.GeneratedDeepCopyFunc{Fn: func(in interface{}, out interface{}, c *conversion.Cloner) error {
in.(*NetworkPolicyIngressRule).DeepCopyInto(out.(*NetworkPolicyIngressRule))
return nil
@ -1117,6 +1121,36 @@ func (in *NetworkPolicy) DeepCopyObject() runtime.Object {
}
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *NetworkPolicyEgressRule) DeepCopyInto(out *NetworkPolicyEgressRule) {
*out = *in
if in.Ports != nil {
in, out := &in.Ports, &out.Ports
*out = make([]NetworkPolicyPort, len(*in))
for i := range *in {
(*in)[i].DeepCopyInto(&(*out)[i])
}
}
if in.To != nil {
in, out := &in.To, &out.To
*out = make([]NetworkPolicyPeer, len(*in))
for i := range *in {
(*in)[i].DeepCopyInto(&(*out)[i])
}
}
return
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new NetworkPolicyEgressRule.
func (in *NetworkPolicyEgressRule) DeepCopy() *NetworkPolicyEgressRule {
if in == nil {
return nil
}
out := new(NetworkPolicyEgressRule)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *NetworkPolicyIngressRule) DeepCopyInto(out *NetworkPolicyIngressRule) {
*out = *in
@ -1269,6 +1303,18 @@ func (in *NetworkPolicySpec) DeepCopyInto(out *NetworkPolicySpec) {
(*in)[i].DeepCopyInto(&(*out)[i])
}
}
if in.Egress != nil {
in, out := &in.Egress, &out.Egress
*out = make([]NetworkPolicyEgressRule, len(*in))
for i := range *in {
(*in)[i].DeepCopyInto(&(*out)[i])
}
}
if in.PolicyTypes != nil {
in, out := &in.PolicyTypes, &out.PolicyTypes
*out = make([]PolicyType, len(*in))
copy(*out, *in)
}
return
}

View File

@ -27,6 +27,7 @@ limitations under the License.
It has these top-level messages:
IPBlock
NetworkPolicy
NetworkPolicyEgressRule
NetworkPolicyIngressRule
NetworkPolicyList
NetworkPolicyPeer
@ -69,31 +70,36 @@ func (m *NetworkPolicy) Reset() { *m = NetworkPolicy{} }
func (*NetworkPolicy) ProtoMessage() {}
func (*NetworkPolicy) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{1} }
func (m *NetworkPolicyEgressRule) Reset() { *m = NetworkPolicyEgressRule{} }
func (*NetworkPolicyEgressRule) ProtoMessage() {}
func (*NetworkPolicyEgressRule) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{2} }
func (m *NetworkPolicyIngressRule) Reset() { *m = NetworkPolicyIngressRule{} }
func (*NetworkPolicyIngressRule) ProtoMessage() {}
func (*NetworkPolicyIngressRule) Descriptor() ([]byte, []int) {
return fileDescriptorGenerated, []int{2}
return fileDescriptorGenerated, []int{3}
}
func (m *NetworkPolicyList) Reset() { *m = NetworkPolicyList{} }
func (*NetworkPolicyList) ProtoMessage() {}
func (*NetworkPolicyList) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{3} }
func (*NetworkPolicyList) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{4} }
func (m *NetworkPolicyPeer) Reset() { *m = NetworkPolicyPeer{} }
func (*NetworkPolicyPeer) ProtoMessage() {}
func (*NetworkPolicyPeer) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{4} }
func (*NetworkPolicyPeer) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{5} }
func (m *NetworkPolicyPort) Reset() { *m = NetworkPolicyPort{} }
func (*NetworkPolicyPort) ProtoMessage() {}
func (*NetworkPolicyPort) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{5} }
func (*NetworkPolicyPort) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{6} }
func (m *NetworkPolicySpec) Reset() { *m = NetworkPolicySpec{} }
func (*NetworkPolicySpec) ProtoMessage() {}
func (*NetworkPolicySpec) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{6} }
func (*NetworkPolicySpec) Descriptor() ([]byte, []int) { return fileDescriptorGenerated, []int{7} }
func init() {
proto.RegisterType((*IPBlock)(nil), "k8s.io.api.networking.v1.IPBlock")
proto.RegisterType((*NetworkPolicy)(nil), "k8s.io.api.networking.v1.NetworkPolicy")
proto.RegisterType((*NetworkPolicyEgressRule)(nil), "k8s.io.api.networking.v1.NetworkPolicyEgressRule")
proto.RegisterType((*NetworkPolicyIngressRule)(nil), "k8s.io.api.networking.v1.NetworkPolicyIngressRule")
proto.RegisterType((*NetworkPolicyList)(nil), "k8s.io.api.networking.v1.NetworkPolicyList")
proto.RegisterType((*NetworkPolicyPeer)(nil), "k8s.io.api.networking.v1.NetworkPolicyPeer")
@ -171,6 +177,48 @@ func (m *NetworkPolicy) MarshalTo(dAtA []byte) (int, error) {
return i, nil
}
func (m *NetworkPolicyEgressRule) Marshal() (dAtA []byte, err error) {
size := m.Size()
dAtA = make([]byte, size)
n, err := m.MarshalTo(dAtA)
if err != nil {
return nil, err
}
return dAtA[:n], nil
}
func (m *NetworkPolicyEgressRule) MarshalTo(dAtA []byte) (int, error) {
var i int
_ = i
var l int
_ = l
if len(m.Ports) > 0 {
for _, msg := range m.Ports {
dAtA[i] = 0xa
i++
i = encodeVarintGenerated(dAtA, i, uint64(msg.Size()))
n, err := msg.MarshalTo(dAtA[i:])
if err != nil {
return 0, err
}
i += n
}
}
if len(m.To) > 0 {
for _, msg := range m.To {
dAtA[i] = 0x12
i++
i = encodeVarintGenerated(dAtA, i, uint64(msg.Size()))
n, err := msg.MarshalTo(dAtA[i:])
if err != nil {
return 0, err
}
i += n
}
}
return i, nil
}
func (m *NetworkPolicyIngressRule) Marshal() (dAtA []byte, err error) {
size := m.Size()
dAtA = make([]byte, size)
@ -368,6 +416,33 @@ func (m *NetworkPolicySpec) MarshalTo(dAtA []byte) (int, error) {
i += n
}
}
if len(m.Egress) > 0 {
for _, msg := range m.Egress {
dAtA[i] = 0x1a
i++
i = encodeVarintGenerated(dAtA, i, uint64(msg.Size()))
n, err := msg.MarshalTo(dAtA[i:])
if err != nil {
return 0, err
}
i += n
}
}
if len(m.PolicyTypes) > 0 {
for _, s := range m.PolicyTypes {
dAtA[i] = 0x22
i++
l = len(s)
for l >= 1<<7 {
dAtA[i] = uint8(uint64(l)&0x7f | 0x80)
l >>= 7
i++
}
dAtA[i] = uint8(l)
i++
i += copy(dAtA[i:], s)
}
}
return i, nil
}
@ -422,6 +497,24 @@ func (m *NetworkPolicy) Size() (n int) {
return n
}
func (m *NetworkPolicyEgressRule) Size() (n int) {
var l int
_ = l
if len(m.Ports) > 0 {
for _, e := range m.Ports {
l = e.Size()
n += 1 + l + sovGenerated(uint64(l))
}
}
if len(m.To) > 0 {
for _, e := range m.To {
l = e.Size()
n += 1 + l + sovGenerated(uint64(l))
}
}
return n
}
func (m *NetworkPolicyIngressRule) Size() (n int) {
var l int
_ = l
@ -497,6 +590,18 @@ func (m *NetworkPolicySpec) Size() (n int) {
n += 1 + l + sovGenerated(uint64(l))
}
}
if len(m.Egress) > 0 {
for _, e := range m.Egress {
l = e.Size()
n += 1 + l + sovGenerated(uint64(l))
}
}
if len(m.PolicyTypes) > 0 {
for _, s := range m.PolicyTypes {
l = len(s)
n += 1 + l + sovGenerated(uint64(l))
}
}
return n
}
@ -535,6 +640,17 @@ func (this *NetworkPolicy) String() string {
}, "")
return s
}
func (this *NetworkPolicyEgressRule) String() string {
if this == nil {
return "nil"
}
s := strings.Join([]string{`&NetworkPolicyEgressRule{`,
`Ports:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.Ports), "NetworkPolicyPort", "NetworkPolicyPort", 1), `&`, ``, 1) + `,`,
`To:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.To), "NetworkPolicyPeer", "NetworkPolicyPeer", 1), `&`, ``, 1) + `,`,
`}`,
}, "")
return s
}
func (this *NetworkPolicyIngressRule) String() string {
if this == nil {
return "nil"
@ -587,6 +703,8 @@ func (this *NetworkPolicySpec) String() string {
s := strings.Join([]string{`&NetworkPolicySpec{`,
`PodSelector:` + strings.Replace(strings.Replace(this.PodSelector.String(), "LabelSelector", "k8s_io_apimachinery_pkg_apis_meta_v1.LabelSelector", 1), `&`, ``, 1) + `,`,
`Ingress:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.Ingress), "NetworkPolicyIngressRule", "NetworkPolicyIngressRule", 1), `&`, ``, 1) + `,`,
`Egress:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.Egress), "NetworkPolicyEgressRule", "NetworkPolicyEgressRule", 1), `&`, ``, 1) + `,`,
`PolicyTypes:` + fmt.Sprintf("%v", this.PolicyTypes) + `,`,
`}`,
}, "")
return s
@ -817,6 +935,118 @@ func (m *NetworkPolicy) Unmarshal(dAtA []byte) error {
}
return nil
}
func (m *NetworkPolicyEgressRule) 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: NetworkPolicyEgressRule: wiretype end group for non-group")
}
if fieldNum <= 0 {
return fmt.Errorf("proto: NetworkPolicyEgressRule: illegal tag %d (wire type %d)", fieldNum, wire)
}
switch fieldNum {
case 1:
if wireType != 2 {
return fmt.Errorf("proto: wrong wireType = %d for field Ports", 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 > l {
return io.ErrUnexpectedEOF
}
m.Ports = append(m.Ports, NetworkPolicyPort{})
if err := m.Ports[len(m.Ports)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil {
return err
}
iNdEx = postIndex
case 2:
if wireType != 2 {
return fmt.Errorf("proto: wrong wireType = %d for field To", 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 > l {
return io.ErrUnexpectedEOF
}
m.To = append(m.To, NetworkPolicyPeer{})
if err := m.To[len(m.To)-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 {
return ErrInvalidLengthGenerated
}
if (iNdEx + skippy) > l {
return io.ErrUnexpectedEOF
}
iNdEx += skippy
}
}
if iNdEx > l {
return io.ErrUnexpectedEOF
}
return nil
}
func (m *NetworkPolicyIngressRule) Unmarshal(dAtA []byte) error {
l := len(dAtA)
iNdEx := 0
@ -1392,6 +1622,66 @@ func (m *NetworkPolicySpec) Unmarshal(dAtA []byte) error {
return err
}
iNdEx = postIndex
case 3:
if wireType != 2 {
return fmt.Errorf("proto: wrong wireType = %d for field Egress", 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 > l {
return io.ErrUnexpectedEOF
}
m.Egress = append(m.Egress, NetworkPolicyEgressRule{})
if err := m.Egress[len(m.Egress)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil {
return err
}
iNdEx = postIndex
case 4:
if wireType != 2 {
return fmt.Errorf("proto: wrong wireType = %d for field PolicyTypes", 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 > l {
return io.ErrUnexpectedEOF
}
m.PolicyTypes = append(m.PolicyTypes, PolicyType(dAtA[iNdEx:postIndex]))
iNdEx = postIndex
default:
iNdEx = preIndex
skippy, err := skipGenerated(dAtA[iNdEx:])
@ -1523,52 +1813,57 @@ func init() {
}
var fileDescriptorGenerated = []byte{
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}

View File

@ -59,6 +59,27 @@ message NetworkPolicy {
optional NetworkPolicySpec spec = 2;
}
// NetworkPolicyEgressRule describes a particular set of traffic that is allowed out of pods
// matched by a NetworkPolicySpec's podSelector. The traffic must match both ports and to.
// This type is beta-level in 1.8
message NetworkPolicyEgressRule {
// List of destination ports for outgoing traffic.
// Each item in this list is combined using a logical OR. If this field is
// empty or missing, this rule matches all ports (traffic not restricted by port).
// If this field is present and contains at least one item, then this rule allows
// traffic only if the traffic matches at least one port in the list.
// +optional
repeated NetworkPolicyPort ports = 1;
// List of destinations for outgoing traffic of pods selected for this rule.
// Items in this list are combined using a logical OR operation. If this field is
// empty or missing, this rule matches all destinations (traffic not restricted by
// destination). If this field is present and contains at least one item, this rule
// allows traffic only if the traffic matches at least one item in the to list.
// +optional
repeated NetworkPolicyPeer to = 2;
}
// NetworkPolicyIngressRule describes a particular set of traffic that is allowed to the pods
// matched by a NetworkPolicySpec's podSelector. The traffic must match both ports and from.
message NetworkPolicyIngressRule {
@ -142,5 +163,28 @@ message NetworkPolicySpec {
// solely to ensure that the pods it selects are isolated by default)
// +optional
repeated NetworkPolicyIngressRule ingress = 2;
// List of egress rules to be applied to the selected pods. Outgoing traffic is
// allowed if there are no NetworkPolicies selecting the pod (and cluster policy
// otherwise allows the traffic), OR if the traffic matches at least one egress rule
// across all of the NetworkPolicy objects whose podSelector matches the pod. If
// this field is empty then this NetworkPolicy limits all outgoing traffic (and serves
// solely to ensure that the pods it selects are isolated by default).
// This field is beta-level in 1.8
// +optional
repeated NetworkPolicyEgressRule egress = 3;
// List of rule types that the NetworkPolicy relates to.
// Valid options are Ingress, Egress, or Ingress,Egress.
// If this field is not specified, it will default based on the existence of Ingress or Egress rules;
// policies that contain an Egress section are assumed to affect Egress, and all policies
// (whether or not they contain an Ingress section) are assumed to affect Ingress.
// If you want to write an egress-only policy, you must explicitly specify policyTypes [ "Egress" ].
// Likewise, if you want to write a policy that specifies that no egress is allowed,
// you must specify a policyTypes value that include "Egress" (since such a policy would not include
// an Egress section and would otherwise default to just [ "Ingress" ]).
// This field is beta-level in 1.8
// +optional
repeated string policyTypes = 4;
}

View File

@ -47,6 +47,16 @@ func (NetworkPolicy) SwaggerDoc() map[string]string {
return map_NetworkPolicy
}
var map_NetworkPolicyEgressRule = map[string]string{
"": "NetworkPolicyEgressRule describes a particular set of traffic that is allowed out of pods matched by a NetworkPolicySpec's podSelector. The traffic must match both ports and to. This type is beta-level in 1.8",
"ports": "List of destination ports for outgoing traffic. Each item in this list is combined using a logical OR. If this field is empty or missing, this rule matches all ports (traffic not restricted by port). If this field is present and contains at least one item, then this rule allows traffic only if the traffic matches at least one port in the list.",
"to": "List of destinations for outgoing traffic of pods selected for this rule. Items in this list are combined using a logical OR operation. If this field is empty or missing, this rule matches all destinations (traffic not restricted by destination). If this field is present and contains at least one item, this rule allows traffic only if the traffic matches at least one item in the to list.",
}
func (NetworkPolicyEgressRule) SwaggerDoc() map[string]string {
return map_NetworkPolicyEgressRule
}
var map_NetworkPolicyIngressRule = map[string]string{
"": "NetworkPolicyIngressRule describes a particular set of traffic that is allowed to the pods matched by a NetworkPolicySpec's podSelector. The traffic must match both ports and from.",
"ports": "List of ports which should be made accessible on the pods selected for this rule. Each item in this list is combined using a logical OR. If this field is empty or missing, this rule matches all ports (traffic not restricted by port). If this field is present and contains at least one item, then this rule allows traffic only if the traffic matches at least one port in the list.",
@ -92,6 +102,8 @@ var map_NetworkPolicySpec = map[string]string{
"": "NetworkPolicySpec provides the specification of a NetworkPolicy",
"podSelector": "Selects the pods to which this NetworkPolicy object applies. The array of ingress rules is applied to any pods selected by this field. Multiple network policies can select the same set of pods. In this case, the ingress rules for each are combined additively. This field is NOT optional and follows standard label selector semantics. An empty podSelector matches all pods in this namespace.",
"ingress": "List of ingress rules to be applied to the selected pods. Traffic is allowed to a pod if there are no NetworkPolicies selecting the pod (and cluster policy otherwise allows the traffic), OR if the traffic source is the pod's local node, OR if the traffic matches at least one ingress rule across all of the NetworkPolicy objects whose podSelector matches the pod. If this field is empty then this NetworkPolicy does not allow any traffic (and serves solely to ensure that the pods it selects are isolated by default)",
"egress": "List of egress rules to be applied to the selected pods. Outgoing traffic is allowed if there are no NetworkPolicies selecting the pod (and cluster policy otherwise allows the traffic), OR if the traffic matches at least one egress rule across all of the NetworkPolicy objects whose podSelector matches the pod. If this field is empty then this NetworkPolicy limits all outgoing traffic (and serves solely to ensure that the pods it selects are isolated by default). This field is beta-level in 1.8",
"policyTypes": "List of rule types that the NetworkPolicy relates to. Valid options are Ingress, Egress, or Ingress,Egress. If this field is not specified, it will default based on the existence of Ingress or Egress rules; policies that contain an Egress section are assumed to affect Egress, and all policies (whether or not they contain an Ingress section) are assumed to affect Ingress. If you want to write an egress-only policy, you must explicitly specify policyTypes [ \"Egress\" ]. Likewise, if you want to write a policy that specifies that no egress is allowed, you must specify a policyTypes value that include \"Egress\" (since such a policy would not include an Egress section and would otherwise default to just [ \"Ingress\" ]). This field is beta-level in 1.8",
}
func (NetworkPolicySpec) SwaggerDoc() map[string]string {

View File

@ -47,6 +47,10 @@ func RegisterDeepCopies(scheme *runtime.Scheme) error {
in.(*NetworkPolicy).DeepCopyInto(out.(*NetworkPolicy))
return nil
}, InType: reflect.TypeOf(&NetworkPolicy{})},
conversion.GeneratedDeepCopyFunc{Fn: func(in interface{}, out interface{}, c *conversion.Cloner) error {
in.(*NetworkPolicyEgressRule).DeepCopyInto(out.(*NetworkPolicyEgressRule))
return nil
}, InType: reflect.TypeOf(&NetworkPolicyEgressRule{})},
conversion.GeneratedDeepCopyFunc{Fn: func(in interface{}, out interface{}, c *conversion.Cloner) error {
in.(*NetworkPolicyIngressRule).DeepCopyInto(out.(*NetworkPolicyIngressRule))
return nil
@ -119,6 +123,36 @@ func (in *NetworkPolicy) DeepCopyObject() runtime.Object {
}
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *NetworkPolicyEgressRule) DeepCopyInto(out *NetworkPolicyEgressRule) {
*out = *in
if in.Ports != nil {
in, out := &in.Ports, &out.Ports
*out = make([]NetworkPolicyPort, len(*in))
for i := range *in {
(*in)[i].DeepCopyInto(&(*out)[i])
}
}
if in.To != nil {
in, out := &in.To, &out.To
*out = make([]NetworkPolicyPeer, len(*in))
for i := range *in {
(*in)[i].DeepCopyInto(&(*out)[i])
}
}
return
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new NetworkPolicyEgressRule.
func (in *NetworkPolicyEgressRule) DeepCopy() *NetworkPolicyEgressRule {
if in == nil {
return nil
}
out := new(NetworkPolicyEgressRule)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *NetworkPolicyIngressRule) DeepCopyInto(out *NetworkPolicyIngressRule) {
*out = *in
@ -271,6 +305,18 @@ func (in *NetworkPolicySpec) DeepCopyInto(out *NetworkPolicySpec) {
(*in)[i].DeepCopyInto(&(*out)[i])
}
}
if in.Egress != nil {
in, out := &in.Egress, &out.Egress
*out = make([]NetworkPolicyEgressRule, len(*in))
for i := range *in {
(*in)[i].DeepCopyInto(&(*out)[i])
}
}
if in.PolicyTypes != nil {
in, out := &in.PolicyTypes, &out.PolicyTypes
*out = make([]PolicyType, len(*in))
copy(*out, *in)
}
return
}