mirror of
https://github.com/ceph/ceph-csi.git
synced 2024-11-22 14:20:19 +00:00
dee73e78af
Signed-off-by: Niels de Vos <ndevos@ibm.com>
381 lines
18 KiB
Protocol Buffer
381 lines
18 KiB
Protocol Buffer
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// This file was autogenerated by go-to-protobuf. Do not edit it manually!
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syntax = "proto2";
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package github.com.openshift.api.security.v1;
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import "k8s.io/api/core/v1/generated.proto";
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import "k8s.io/apimachinery/pkg/apis/meta/v1/generated.proto";
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import "k8s.io/apimachinery/pkg/runtime/schema/generated.proto";
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// Package-wide variables from generator "generated".
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option go_package = "github.com/openshift/api/security/v1";
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// AllowedFlexVolume represents a single Flexvolume that is allowed to be used.
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message AllowedFlexVolume {
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// Driver is the name of the Flexvolume driver.
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optional string driver = 1;
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}
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// FSGroupStrategyOptions defines the strategy type and options used to create the strategy.
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message FSGroupStrategyOptions {
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// Type is the strategy that will dictate what FSGroup is used in the SecurityContext.
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optional string type = 1;
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// Ranges are the allowed ranges of fs groups. If you would like to force a single
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// fs group then supply a single range with the same start and end.
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repeated IDRange ranges = 2;
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}
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// IDRange provides a min/max of an allowed range of IDs.
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// TODO: this could be reused for UIDs.
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message IDRange {
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// Min is the start of the range, inclusive.
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optional int64 min = 1;
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// Max is the end of the range, inclusive.
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optional int64 max = 2;
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}
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// PodSecurityPolicyReview checks which service accounts (not users, since that would be cluster-wide) can create the `PodTemplateSpec` in question.
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//
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// Compatibility level 2: Stable within a major release for a minimum of 9 months or 3 minor releases (whichever is longer).
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// +openshift:compatibility-gen:level=2
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message PodSecurityPolicyReview {
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// spec is the PodSecurityPolicy to check.
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optional PodSecurityPolicyReviewSpec spec = 1;
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// status represents the current information/status for the PodSecurityPolicyReview.
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optional PodSecurityPolicyReviewStatus status = 2;
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}
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// PodSecurityPolicyReviewSpec defines specification for PodSecurityPolicyReview
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message PodSecurityPolicyReviewSpec {
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// template is the PodTemplateSpec to check. The template.spec.serviceAccountName field is used
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// if serviceAccountNames is empty, unless the template.spec.serviceAccountName is empty,
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// in which case "default" is used.
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// If serviceAccountNames is specified, template.spec.serviceAccountName is ignored.
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optional k8s.io.api.core.v1.PodTemplateSpec template = 1;
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// serviceAccountNames is an optional set of ServiceAccounts to run the check with.
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// If serviceAccountNames is empty, the template.spec.serviceAccountName is used,
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// unless it's empty, in which case "default" is used instead.
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// If serviceAccountNames is specified, template.spec.serviceAccountName is ignored.
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repeated string serviceAccountNames = 2;
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}
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// PodSecurityPolicyReviewStatus represents the status of PodSecurityPolicyReview.
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message PodSecurityPolicyReviewStatus {
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// allowedServiceAccounts returns the list of service accounts in *this* namespace that have the power to create the PodTemplateSpec.
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repeated ServiceAccountPodSecurityPolicyReviewStatus allowedServiceAccounts = 1;
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}
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// PodSecurityPolicySelfSubjectReview checks whether this user/SA tuple can create the PodTemplateSpec
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//
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// Compatibility level 2: Stable within a major release for a minimum of 9 months or 3 minor releases (whichever is longer).
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// +openshift:compatibility-gen:level=2
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message PodSecurityPolicySelfSubjectReview {
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// spec defines specification the PodSecurityPolicySelfSubjectReview.
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optional PodSecurityPolicySelfSubjectReviewSpec spec = 1;
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// status represents the current information/status for the PodSecurityPolicySelfSubjectReview.
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optional PodSecurityPolicySubjectReviewStatus status = 2;
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}
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// PodSecurityPolicySelfSubjectReviewSpec contains specification for PodSecurityPolicySelfSubjectReview.
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message PodSecurityPolicySelfSubjectReviewSpec {
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// template is the PodTemplateSpec to check.
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optional k8s.io.api.core.v1.PodTemplateSpec template = 1;
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}
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// PodSecurityPolicySubjectReview checks whether a particular user/SA tuple can create the PodTemplateSpec.
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//
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// Compatibility level 2: Stable within a major release for a minimum of 9 months or 3 minor releases (whichever is longer).
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// +openshift:compatibility-gen:level=2
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message PodSecurityPolicySubjectReview {
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// spec defines specification for the PodSecurityPolicySubjectReview.
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optional PodSecurityPolicySubjectReviewSpec spec = 1;
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// status represents the current information/status for the PodSecurityPolicySubjectReview.
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optional PodSecurityPolicySubjectReviewStatus status = 2;
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}
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// PodSecurityPolicySubjectReviewSpec defines specification for PodSecurityPolicySubjectReview
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message PodSecurityPolicySubjectReviewSpec {
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// template is the PodTemplateSpec to check. If template.spec.serviceAccountName is empty it will not be defaulted.
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// If its non-empty, it will be checked.
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optional k8s.io.api.core.v1.PodTemplateSpec template = 1;
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// user is the user you're testing for.
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// If you specify "user" but not "group", then is it interpreted as "What if user were not a member of any groups.
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// If user and groups are empty, then the check is performed using *only* the serviceAccountName in the template.
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optional string user = 2;
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// groups is the groups you're testing for.
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repeated string groups = 3;
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}
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// PodSecurityPolicySubjectReviewStatus contains information/status for PodSecurityPolicySubjectReview.
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message PodSecurityPolicySubjectReviewStatus {
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// allowedBy is a reference to the rule that allows the PodTemplateSpec.
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// A rule can be a SecurityContextConstraint or a PodSecurityPolicy
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// A `nil`, indicates that it was denied.
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optional k8s.io.api.core.v1.ObjectReference allowedBy = 1;
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// A machine-readable description of why this operation is in the
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// "Failure" status. If this value is empty there
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// is no information available.
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optional string reason = 2;
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// template is the PodTemplateSpec after the defaulting is applied.
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optional k8s.io.api.core.v1.PodTemplateSpec template = 3;
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}
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// RangeAllocation is used so we can easily expose a RangeAllocation typed for security group
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//
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// Compatibility level 4: No compatibility is provided, the API can change at any point for any reason. These capabilities should not be used by applications needing long term support.
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// +openshift:compatibility-gen:level=4
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message RangeAllocation {
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// metadata is the standard object's metadata.
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// More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata
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optional k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1;
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// range is a string representing a unique label for a range of uids, "1000000000-2000000000/10000".
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optional string range = 2;
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// data is a byte array representing the serialized state of a range allocation. It is a bitmap
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// with each bit set to one to represent a range is taken.
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optional bytes data = 3;
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}
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// RangeAllocationList is a list of RangeAllocations objects
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//
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// Compatibility level 1: Stable within a major release for a minimum of 12 months or 3 minor releases (whichever is longer).
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// +openshift:compatibility-gen:level=1
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message RangeAllocationList {
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// metadata is the standard list's metadata.
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// More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata
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optional k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1;
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// List of RangeAllocations.
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repeated RangeAllocation items = 2;
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}
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// RunAsUserStrategyOptions defines the strategy type and any options used to create the strategy.
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message RunAsUserStrategyOptions {
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// Type is the strategy that will dictate what RunAsUser is used in the SecurityContext.
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optional string type = 1;
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// UID is the user id that containers must run as. Required for the MustRunAs strategy if not using
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// namespace/service account allocated uids.
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optional int64 uid = 2;
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// UIDRangeMin defines the min value for a strategy that allocates by range.
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optional int64 uidRangeMin = 3;
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// UIDRangeMax defines the max value for a strategy that allocates by range.
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optional int64 uidRangeMax = 4;
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}
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// SELinuxContextStrategyOptions defines the strategy type and any options used to create the strategy.
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message SELinuxContextStrategyOptions {
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// Type is the strategy that will dictate what SELinux context is used in the SecurityContext.
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optional string type = 1;
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// seLinuxOptions required to run as; required for MustRunAs
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optional k8s.io.api.core.v1.SELinuxOptions seLinuxOptions = 2;
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}
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// SecurityContextConstraints governs the ability to make requests that affect the SecurityContext
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// that will be applied to a container.
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// For historical reasons SCC was exposed under the core Kubernetes API group.
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// That exposure is deprecated and will be removed in a future release - users
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// should instead use the security.openshift.io group to manage
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// SecurityContextConstraints.
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//
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// Compatibility level 1: Stable within a major release for a minimum of 12 months or 3 minor releases (whichever is longer).
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// +kubebuilder:printcolumn:name="Priv",type=string,JSONPath=`.allowPrivilegedContainer`,description="Determines if a container can request to be run as privileged"
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// +kubebuilder:printcolumn:name="Caps",type=string,JSONPath=`.allowedCapabilities`,description="A list of capabilities that can be requested to add to the container"
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// +kubebuilder:printcolumn:name="SELinux",type=string,JSONPath=`.seLinuxContext.type`,description="Strategy that will dictate what labels will be set in the SecurityContext"
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// +kubebuilder:printcolumn:name="RunAsUser",type=string,JSONPath=`.runAsUser.type`,description="Strategy that will dictate what RunAsUser is used in the SecurityContext"
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// +kubebuilder:printcolumn:name="FSGroup",type=string,JSONPath=`.fsGroup.type`,description="Strategy that will dictate what fs group is used by the SecurityContext"
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// +kubebuilder:printcolumn:name="SupGroup",type=string,JSONPath=`.supplementalGroups.type`,description="Strategy that will dictate what supplemental groups are used by the SecurityContext"
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// +kubebuilder:printcolumn:name="Priority",type=string,JSONPath=`.priority`,description="Sort order of SCCs"
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// +kubebuilder:printcolumn:name="ReadOnlyRootFS",type=string,JSONPath=`.readOnlyRootFilesystem`,description="Force containers to run with a read only root file system"
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// +kubebuilder:printcolumn:name="Volumes",type=string,JSONPath=`.volumes`,description="White list of allowed volume plugins"
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// +kubebuilder:singular=securitycontextconstraint
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// +openshift:compatibility-gen:level=1
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message SecurityContextConstraints {
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// metadata is the standard object's metadata.
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// More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata
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optional k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1;
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// Priority influences the sort order of SCCs when evaluating which SCCs to try first for
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// a given pod request based on access in the Users and Groups fields. The higher the int, the
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// higher priority. An unset value is considered a 0 priority. If scores
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// for multiple SCCs are equal they will be sorted from most restrictive to
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// least restrictive. If both priorities and restrictions are equal the
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// SCCs will be sorted by name.
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// +nullable
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optional int32 priority = 2;
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// AllowPrivilegedContainer determines if a container can request to be run as privileged.
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optional bool allowPrivilegedContainer = 3;
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// DefaultAddCapabilities is the default set of capabilities that will be added to the container
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// unless the pod spec specifically drops the capability. You may not list a capabiility in both
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// DefaultAddCapabilities and RequiredDropCapabilities.
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// +nullable
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repeated string defaultAddCapabilities = 4;
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// RequiredDropCapabilities are the capabilities that will be dropped from the container. These
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// are required to be dropped and cannot be added.
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// +nullable
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repeated string requiredDropCapabilities = 5;
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// AllowedCapabilities is a list of capabilities that can be requested to add to the container.
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// Capabilities in this field maybe added at the pod author's discretion.
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// You must not list a capability in both AllowedCapabilities and RequiredDropCapabilities.
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// To allow all capabilities you may use '*'.
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// +nullable
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repeated string allowedCapabilities = 6;
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// AllowHostDirVolumePlugin determines if the policy allow containers to use the HostDir volume plugin
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// +k8s:conversion-gen=false
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optional bool allowHostDirVolumePlugin = 7;
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// Volumes is a white list of allowed volume plugins. FSType corresponds directly with the field names
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// of a VolumeSource (azureFile, configMap, emptyDir). To allow all volumes you may use "*".
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// To allow no volumes, set to ["none"].
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// +nullable
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repeated string volumes = 8;
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// AllowedFlexVolumes is a whitelist of allowed Flexvolumes. Empty or nil indicates that all
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// Flexvolumes may be used. This parameter is effective only when the usage of the Flexvolumes
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// is allowed in the "Volumes" field.
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// +optional
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// +nullable
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repeated AllowedFlexVolume allowedFlexVolumes = 21;
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// AllowHostNetwork determines if the policy allows the use of HostNetwork in the pod spec.
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optional bool allowHostNetwork = 9;
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// AllowHostPorts determines if the policy allows host ports in the containers.
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optional bool allowHostPorts = 10;
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// AllowHostPID determines if the policy allows host pid in the containers.
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optional bool allowHostPID = 11;
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// AllowHostIPC determines if the policy allows host ipc in the containers.
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optional bool allowHostIPC = 12;
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// DefaultAllowPrivilegeEscalation controls the default setting for whether a
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// process can gain more privileges than its parent process.
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// +optional
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// +nullable
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optional bool defaultAllowPrivilegeEscalation = 22;
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// AllowPrivilegeEscalation determines if a pod can request to allow
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// privilege escalation. If unspecified, defaults to true.
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// +optional
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// +nullable
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optional bool allowPrivilegeEscalation = 23;
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// SELinuxContext is the strategy that will dictate what labels will be set in the SecurityContext.
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// +nullable
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optional SELinuxContextStrategyOptions seLinuxContext = 13;
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// RunAsUser is the strategy that will dictate what RunAsUser is used in the SecurityContext.
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// +nullable
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optional RunAsUserStrategyOptions runAsUser = 14;
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// SupplementalGroups is the strategy that will dictate what supplemental groups are used by the SecurityContext.
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// +nullable
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optional SupplementalGroupsStrategyOptions supplementalGroups = 15;
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// FSGroup is the strategy that will dictate what fs group is used by the SecurityContext.
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// +nullable
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optional FSGroupStrategyOptions fsGroup = 16;
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// ReadOnlyRootFilesystem when set to true will force containers to run with a read only root file
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// system. If the container specifically requests to run with a non-read only root file system
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// the SCC should deny the pod.
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// If set to false the container may run with a read only root file system if it wishes but it
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// will not be forced to.
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optional bool readOnlyRootFilesystem = 17;
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// The users who have permissions to use this security context constraints
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// +optional
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// +nullable
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repeated string users = 18;
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// The groups that have permission to use this security context constraints
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// +optional
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// +nullable
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repeated string groups = 19;
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// SeccompProfiles lists the allowed profiles that may be set for the pod or
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// container's seccomp annotations. An unset (nil) or empty value means that no profiles may
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// be specifid by the pod or container. The wildcard '*' may be used to allow all profiles. When
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// used to generate a value for a pod the first non-wildcard profile will be used as
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// the default.
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// +nullable
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repeated string seccompProfiles = 20;
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// AllowedUnsafeSysctls is a list of explicitly allowed unsafe sysctls, defaults to none.
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// Each entry is either a plain sysctl name or ends in "*" in which case it is considered
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// as a prefix of allowed sysctls. Single * means all unsafe sysctls are allowed.
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// Kubelet has to whitelist all allowed unsafe sysctls explicitly to avoid rejection.
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//
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// Examples:
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// e.g. "foo/*" allows "foo/bar", "foo/baz", etc.
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// e.g. "foo.*" allows "foo.bar", "foo.baz", etc.
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// +optional
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// +nullable
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repeated string allowedUnsafeSysctls = 24;
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// ForbiddenSysctls is a list of explicitly forbidden sysctls, defaults to none.
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// Each entry is either a plain sysctl name or ends in "*" in which case it is considered
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// as a prefix of forbidden sysctls. Single * means all sysctls are forbidden.
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//
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// Examples:
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// e.g. "foo/*" forbids "foo/bar", "foo/baz", etc.
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// e.g. "foo.*" forbids "foo.bar", "foo.baz", etc.
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// +optional
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// +nullable
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repeated string forbiddenSysctls = 25;
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}
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// SecurityContextConstraintsList is a list of SecurityContextConstraints objects
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//
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// Compatibility level 1: Stable within a major release for a minimum of 12 months or 3 minor releases (whichever is longer).
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// +openshift:compatibility-gen:level=1
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message SecurityContextConstraintsList {
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// metadata is the standard list's metadata.
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// More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata
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optional k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1;
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// List of security context constraints.
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repeated SecurityContextConstraints items = 2;
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}
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// ServiceAccountPodSecurityPolicyReviewStatus represents ServiceAccount name and related review status
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message ServiceAccountPodSecurityPolicyReviewStatus {
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optional PodSecurityPolicySubjectReviewStatus podSecurityPolicySubjectReviewStatus = 1;
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// name contains the allowed and the denied ServiceAccount name
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optional string name = 2;
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}
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// SupplementalGroupsStrategyOptions defines the strategy type and options used to create the strategy.
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message SupplementalGroupsStrategyOptions {
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// Type is the strategy that will dictate what supplemental groups is used in the SecurityContext.
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optional string type = 1;
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// Ranges are the allowed ranges of supplemental groups. If you would like to force a single
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// supplemental group then supply a single range with the same start and end.
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repeated IDRange ranges = 2;
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}
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