mirror of
https://github.com/ceph/ceph-csi.git
synced 2024-11-15 19:00:19 +00:00
e727bd351e
updating kubernetes to 1.30 release Signed-off-by: Madhu Rajanna <madhupr007@gmail.com>
330 lines
9.8 KiB
Go
330 lines
9.8 KiB
Go
/*
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Copyright 2023 The Kubernetes Authors.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package library
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import (
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"fmt"
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"net/netip"
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"github.com/google/cel-go/cel"
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"github.com/google/cel-go/common/types"
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"github.com/google/cel-go/common/types/ref"
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apiservercel "k8s.io/apiserver/pkg/cel"
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)
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// IP provides a CEL function library extension of IP address parsing functions.
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//
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// ip
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//
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// Converts a string to an IP address or results in an error if the string is not a valid IP address.
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// The IP address must be an IPv4 or IPv6 address.
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// IPv4-mapped IPv6 addresses (e.g. ::ffff:1.2.3.4) are not allowed.
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// IP addresses with zones (e.g. fe80::1%eth0) are not allowed.
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// Leading zeros in IPv4 address octets are not allowed.
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//
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// ip(<string>) <IPAddr>
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//
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// Examples:
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//
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// ip('127.0.0.1') // returns an IPv4 address
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// ip('::1') // returns an IPv6 address
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// ip('127.0.0.256') // error
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// ip(':::1') // error
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//
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// isIP
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//
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// Returns true if a string is a valid IP address.
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// The IP address must be an IPv4 or IPv6 address.
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// IPv4-mapped IPv6 addresses (e.g. ::ffff:1.2.3.4) are not allowed.
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// IP addresses with zones (e.g. fe80::1%eth0) are not allowed.
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// Leading zeros in IPv4 address octets are not allowed.
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//
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// isIP(<string>) <bool>
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//
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// Examples:
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//
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// isIP('127.0.0.1') // returns true
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// isIP('::1') // returns true
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// isIP('127.0.0.256') // returns false
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// isIP(':::1') // returns false
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//
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// ip.isCanonical
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//
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// Returns true if the IP address is in its canonical form.
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// There is exactly one canonical form for every IP address, so fields containing
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// IPs in canonical form can just be treated as strings when checking for equality or uniqueness.
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//
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// ip.isCanonical(<string>) <bool>
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//
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// Examples:
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//
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// ip.isCanonical('127.0.0.1') // returns true; all valid IPv4 addresses are canonical
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// ip.isCanonical('2001:db8::abcd') // returns true
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// ip.isCanonical('2001:DB8::ABCD') // returns false
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// ip.isCanonical('2001:db8::0:0:0:abcd') // returns false
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//
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// family / isUnspecified / isLoopback / isLinkLocalMulticast / isLinkLocalUnicast / isGlobalUnicast
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//
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// - family: returns the IP addresses' family (IPv4 or IPv6) as an integer, either '4' or '6'.
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//
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// - isUnspecified: returns true if the IP address is the unspecified address.
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// Either the IPv4 address "0.0.0.0" or the IPv6 address "::".
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//
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// - isLoopback: returns true if the IP address is the loopback address.
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// Either an IPv4 address with a value of 127.x.x.x or an IPv6 address with a value of ::1.
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//
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// - isLinkLocalMulticast: returns true if the IP address is a link-local multicast address.
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// Either an IPv4 address with a value of 224.0.0.x or an IPv6 address in the network ff00::/8.
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//
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// - isLinkLocalUnicast: returns true if the IP address is a link-local unicast address.
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// Either an IPv4 address with a value of 169.254.x.x or an IPv6 address in the network fe80::/10.
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//
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// - isGlobalUnicast: returns true if the IP address is a global unicast address.
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// Either an IPv4 address that is not zero or 255.255.255.255 or an IPv6 address that is not a link-local unicast, loopback or multicast address.
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//
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// Examples:
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//
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// ip('127.0.0.1').family() // returns '4”
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// ip('::1').family() // returns '6'
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// ip('127.0.0.1').family() == 4 // returns true
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// ip('::1').family() == 6 // returns true
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// ip('0.0.0.0').isUnspecified() // returns true
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// ip('127.0.0.1').isUnspecified() // returns false
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// ip('::').isUnspecified() // returns true
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// ip('::1').isUnspecified() // returns false
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// ip('127.0.0.1').isLoopback() // returns true
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// ip('192.168.0.1').isLoopback() // returns false
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// ip('::1').isLoopback() // returns true
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// ip('2001:db8::abcd').isLoopback() // returns false
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// ip('224.0.0.1').isLinkLocalMulticast() // returns true
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// ip('224.0.1.1').isLinkLocalMulticast() // returns false
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// ip('ff02::1').isLinkLocalMulticast() // returns true
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// ip('fd00::1').isLinkLocalMulticast() // returns false
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// ip('169.254.169.254').isLinkLocalUnicast() // returns true
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// ip('192.168.0.1').isLinkLocalUnicast() // returns false
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// ip('fe80::1').isLinkLocalUnicast() // returns true
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// ip('fd80::1').isLinkLocalUnicast() // returns false
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// ip('192.168.0.1').isGlobalUnicast() // returns true
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// ip('255.255.255.255').isGlobalUnicast() // returns false
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// ip('2001:db8::abcd').isGlobalUnicast() // returns true
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// ip('ff00::1').isGlobalUnicast() // returns false
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func IP() cel.EnvOption {
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return cel.Lib(ipLib)
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}
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var ipLib = &ip{}
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type ip struct{}
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func (*ip) LibraryName() string {
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return "net.ip"
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}
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var ipLibraryDecls = map[string][]cel.FunctionOpt{
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"ip": {
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cel.Overload("string_to_ip", []*cel.Type{cel.StringType}, apiservercel.IPType,
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cel.UnaryBinding(stringToIP)),
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},
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"family": {
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cel.MemberOverload("ip_family", []*cel.Type{apiservercel.IPType}, cel.IntType,
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cel.UnaryBinding(family)),
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},
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"ip.isCanonical": {
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cel.Overload("ip_is_canonical", []*cel.Type{cel.StringType}, cel.BoolType,
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cel.UnaryBinding(ipIsCanonical)),
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},
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"isUnspecified": {
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cel.MemberOverload("ip_is_unspecified", []*cel.Type{apiservercel.IPType}, cel.BoolType,
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cel.UnaryBinding(isUnspecified)),
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},
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"isLoopback": {
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cel.MemberOverload("ip_is_loopback", []*cel.Type{apiservercel.IPType}, cel.BoolType,
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cel.UnaryBinding(isLoopback)),
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},
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"isLinkLocalMulticast": {
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cel.MemberOverload("ip_is_link_local_multicast", []*cel.Type{apiservercel.IPType}, cel.BoolType,
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cel.UnaryBinding(isLinkLocalMulticast)),
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},
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"isLinkLocalUnicast": {
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cel.MemberOverload("ip_is_link_local_unicast", []*cel.Type{apiservercel.IPType}, cel.BoolType,
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cel.UnaryBinding(isLinkLocalUnicast)),
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},
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"isGlobalUnicast": {
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cel.MemberOverload("ip_is_global_unicast", []*cel.Type{apiservercel.IPType}, cel.BoolType,
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cel.UnaryBinding(isGlobalUnicast)),
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},
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"isIP": {
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cel.Overload("is_ip", []*cel.Type{cel.StringType}, cel.BoolType,
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cel.UnaryBinding(isIP)),
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},
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"string": {
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cel.Overload("ip_to_string", []*cel.Type{apiservercel.IPType}, cel.StringType,
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cel.UnaryBinding(ipToString)),
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},
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}
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func (*ip) CompileOptions() []cel.EnvOption {
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options := []cel.EnvOption{cel.Types(apiservercel.IPType),
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cel.Variable(apiservercel.IPType.TypeName(), types.NewTypeTypeWithParam(apiservercel.IPType)),
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}
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for name, overloads := range ipLibraryDecls {
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options = append(options, cel.Function(name, overloads...))
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}
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return options
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}
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func (*ip) ProgramOptions() []cel.ProgramOption {
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return []cel.ProgramOption{}
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}
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func stringToIP(arg ref.Val) ref.Val {
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s, ok := arg.Value().(string)
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if !ok {
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return types.MaybeNoSuchOverloadErr(arg)
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}
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addr, err := parseIPAddr(s)
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if err != nil {
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// Don't add context, we control the error message already.
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return types.NewErr("%v", err)
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}
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return apiservercel.IP{
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Addr: addr,
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}
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}
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func ipToString(arg ref.Val) ref.Val {
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ip, ok := arg.(apiservercel.IP)
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if !ok {
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return types.MaybeNoSuchOverloadErr(arg)
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}
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return types.String(ip.Addr.String())
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}
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func family(arg ref.Val) ref.Val {
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ip, ok := arg.(apiservercel.IP)
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if !ok {
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return types.MaybeNoSuchOverloadErr(arg)
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}
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switch {
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case ip.Addr.Is4():
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return types.Int(4)
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case ip.Addr.Is6():
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return types.Int(6)
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default:
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return types.NewErr("IP address %q is not an IPv4 or IPv6 address", ip.Addr.String())
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}
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}
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func ipIsCanonical(arg ref.Val) ref.Val {
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s, ok := arg.Value().(string)
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if !ok {
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return types.MaybeNoSuchOverloadErr(arg)
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}
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addr, err := parseIPAddr(s)
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if err != nil {
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// Don't add context, we control the error message already.
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return types.NewErr("%v", err)
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}
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// Addr.String() always returns the canonical form of the IP address.
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// Therefore comparing this with the original string representation
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// will tell us if the IP address is in its canonical form.
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return types.Bool(addr.String() == s)
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}
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func isIP(arg ref.Val) ref.Val {
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s, ok := arg.Value().(string)
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if !ok {
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return types.MaybeNoSuchOverloadErr(arg)
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}
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_, err := parseIPAddr(s)
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return types.Bool(err == nil)
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}
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func isUnspecified(arg ref.Val) ref.Val {
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ip, ok := arg.(apiservercel.IP)
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if !ok {
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return types.MaybeNoSuchOverloadErr(arg)
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}
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return types.Bool(ip.Addr.IsUnspecified())
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}
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func isLoopback(arg ref.Val) ref.Val {
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ip, ok := arg.(apiservercel.IP)
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if !ok {
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return types.MaybeNoSuchOverloadErr(arg)
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}
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return types.Bool(ip.Addr.IsLoopback())
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}
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func isLinkLocalMulticast(arg ref.Val) ref.Val {
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ip, ok := arg.(apiservercel.IP)
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if !ok {
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return types.MaybeNoSuchOverloadErr(arg)
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}
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return types.Bool(ip.Addr.IsLinkLocalMulticast())
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}
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func isLinkLocalUnicast(arg ref.Val) ref.Val {
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ip, ok := arg.(apiservercel.IP)
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if !ok {
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return types.MaybeNoSuchOverloadErr(arg)
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}
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return types.Bool(ip.Addr.IsLinkLocalUnicast())
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}
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func isGlobalUnicast(arg ref.Val) ref.Val {
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ip, ok := arg.(apiservercel.IP)
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if !ok {
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return types.MaybeNoSuchOverloadErr(arg)
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}
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return types.Bool(ip.Addr.IsGlobalUnicast())
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}
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// parseIPAddr parses a string into an IP address.
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// We use this function to parse IP addresses in the CEL library
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// so that we can share the common logic of rejecting IP addresses
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// that contain zones or are IPv4-mapped IPv6 addresses.
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func parseIPAddr(raw string) (netip.Addr, error) {
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addr, err := netip.ParseAddr(raw)
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if err != nil {
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return netip.Addr{}, fmt.Errorf("IP Address %q parse error during conversion from string: %v", raw, err)
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}
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if addr.Zone() != "" {
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return netip.Addr{}, fmt.Errorf("IP address %q with zone value is not allowed", raw)
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}
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if addr.Is4In6() {
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return netip.Addr{}, fmt.Errorf("IPv4-mapped IPv6 address %q is not allowed", raw)
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}
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return addr, nil
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}
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