Содержимое пина, зафиксированного в go.mod sing-box-lx, одним коммитом без истории. Полная история SagerNet/gvisor — 1.45 ГБ и клонируется в каждой CI-джобе; наша дельта — одна вставка в одну функцию, история для неё не нужна. Module path github.com/sagernet/gvisor сохранён намеренно: на него опирается replace-директива суперпроекта. Патч поверх — отдельным коммитом, чтобы дельта читалась одним git show и переносилась на новый пин копированием. SPECS/TASKS/048-GVISOR_HANDSHAKE_NIL_CRASH
464 lines
15 KiB
Go
464 lines
15 KiB
Go
// Copyright 2024 The gVisor Authors.
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//
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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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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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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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package linux
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// This file contains constants required to support nf_tables.
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const NFT_MAX_HOOKS = NF_INET_NUMHOOKS + 1
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// Name length constants for nf_table structures. These correspond to values in
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// include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFT_NAME_MAXLEN = 256
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NFT_TABLE_MAXNAMELEN = NFT_NAME_MAXLEN
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NFT_CHAIN_MAXNAMELEN = NFT_NAME_MAXLEN
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NFT_SET_MAXNAMELEN = NFT_NAME_MAXLEN
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NFT_OBJ_MAXNAMELEN = NFT_NAME_MAXLEN
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NFT_USERDATA_MAXLEN = 256
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NFT_OSF_MAXGENRELEN = 16
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)
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// 16-byte Registers that can be used to maintain state for rules.
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// These correspond to values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFT_REG_VERDICT = iota
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NFT_REG_1
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NFT_REG_2
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NFT_REG_3
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NFT_REG_4
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__NFT_REG_MAX
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)
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// 4-byte Registers that can be used to maintain state for rules.
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// Note that these overlap with the 16-byte registers in memory.
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// These correspond to values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFT_REG32_00 = 8 + iota
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NFT_REG32_01
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NFT_REG32_02
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NFT_REG32_03
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NFT_REG32_04
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NFT_REG32_05
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NFT_REG32_06
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NFT_REG32_07
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NFT_REG32_08
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NFT_REG32_09
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NFT_REG32_10
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NFT_REG32_11
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NFT_REG32_12
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NFT_REG32_13
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NFT_REG32_14
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NFT_REG32_15
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)
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// Other register constants, corresponding to values in
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// include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFT_REG_MAX = __NFT_REG_MAX - 1 // Maximum register value
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NFT_REG_SIZE = 16 // Size of NFT_REG
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NFT_REG32_SIZE = 4 // Size of NFT_REG32
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NFT_REG32_COUNT = NFT_REG32_15 - NFT_REG32_00 + 1 // Count of 4-byte registers
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)
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// Internal nf table verdicts. These are used for ruleset evaluation and
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// are not returned to userspace.
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//
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// These also share their numeric name space with the netfilter verdicts. When
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// used these values are converted to uint32 (purposefully overflowing the int).
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// These correspond to values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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// Continue evaluation of the current rule.
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NFT_CONTINUE int32 = -1
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// Terminate evaluation of the current rule.
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NFT_BREAK int32 = -2
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// Push the current chain on the jump stack and jump to a chain.
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NFT_JUMP int32 = -3
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// Jump to a chain without pushing the current chain on the jump stack.
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NFT_GOTO int32 = -4
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// Return to the topmost chain on the jump stack.
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NFT_RETURN int32 = -5
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)
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// NfTableMsgType values map to operations within the nftables api.
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// These correspond to values in include/uapi/linux/netfilter/nf_tables.h.
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type NfTableMsgType uint16
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// Netlink Netfilter table message types.
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const (
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NFT_MSG_NEWTABLE NfTableMsgType = iota
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NFT_MSG_GETTABLE
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NFT_MSG_DELTABLE
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NFT_MSG_NEWCHAIN
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NFT_MSG_GETCHAIN
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NFT_MSG_DELCHAIN
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NFT_MSG_NEWRULE
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NFT_MSG_GETRULE
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NFT_MSG_DELRULE
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NFT_MSG_NEWSET
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NFT_MSG_GETSET
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NFT_MSG_DELSET
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NFT_MSG_NEWSETELEM
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NFT_MSG_GETSETELEM
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NFT_MSG_DELSETELEM
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NFT_MSG_NEWGEN
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NFT_MSG_GETGEN
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NFT_MSG_TRACE
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NFT_MSG_NEWOBJ
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NFT_MSG_GETOBJ
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NFT_MSG_DELOBJ
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NFT_MSG_GETOBJ_RESET
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NFT_MSG_NEWFLOWTABLE
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NFT_MSG_GETFLOWTABLE
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NFT_MSG_DELFLOWTABLE
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NFT_MSG_GETRULE_RESET
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NFT_MSG_DESTROYTABLE
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NFT_MSG_DESTROYCHAIN
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NFT_MSG_DESTROYRULE
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NFT_MSG_DESTROYSET
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NFT_MSG_DESTROYSETELEM
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NFT_MSG_DESTROYOBJ
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NFT_MSG_DESTROYFLOWTABLE
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NFT_MSG_GETSETELEM_RESET
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NFT_MSG_MAX
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)
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var nfTableMsgTypeStrings = [...]string{
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NFT_MSG_NEWTABLE: "NFT_MSG_NEWTABLE",
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NFT_MSG_GETTABLE: "NFT_MSG_GETTABLE",
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NFT_MSG_DELTABLE: "NFT_MSG_DELTABLE",
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NFT_MSG_NEWCHAIN: "NFT_MSG_NEWCHAIN",
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NFT_MSG_GETCHAIN: "NFT_MSG_GETCHAIN",
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NFT_MSG_DELCHAIN: "NFT_MSG_DELCHAIN",
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NFT_MSG_NEWRULE: "NFT_MSG_NEWRULE",
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NFT_MSG_GETRULE: "NFT_MSG_GETRULE",
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NFT_MSG_DELRULE: "NFT_MSG_DELRULE",
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NFT_MSG_NEWSET: "NFT_MSG_NEWSET",
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NFT_MSG_GETSET: "NFT_MSG_GETSET",
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NFT_MSG_DELSET: "NFT_MSG_DELSET",
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NFT_MSG_NEWSETELEM: "NFT_MSG_NEWSETELEM",
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NFT_MSG_GETSETELEM: "NFT_MSG_GETSETELEM",
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NFT_MSG_DELSETELEM: "NFT_MSG_DELSETELEM",
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NFT_MSG_NEWGEN: "NFT_MSG_NEWGEN",
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NFT_MSG_GETGEN: "NFT_MSG_GETGEN",
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NFT_MSG_TRACE: "NFT_MSG_TRACE",
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NFT_MSG_NEWOBJ: "NFT_MSG_NEWOBJ",
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NFT_MSG_GETOBJ: "NFT_MSG_GETOBJ",
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NFT_MSG_DELOBJ: "NFT_MSG_DELOBJ",
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NFT_MSG_GETOBJ_RESET: "NFT_MSG_GETOBJ_RESET",
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NFT_MSG_NEWFLOWTABLE: "NFT_MSG_NEWFLOWTABLE",
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NFT_MSG_GETFLOWTABLE: "NFT_MSG_GETFLOWTABLE",
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NFT_MSG_DELFLOWTABLE: "NFT_MSG_DELFLOWTABLE",
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NFT_MSG_GETRULE_RESET: "NFT_MSG_GETRULE_RESET",
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NFT_MSG_DESTROYTABLE: "NFT_MSG_DESTROYTABLE",
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NFT_MSG_DESTROYCHAIN: "NFT_MSG_DESTROYCHAIN",
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NFT_MSG_DESTROYRULE: "NFT_MSG_DESTROYRULE",
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NFT_MSG_DESTROYSET: "NFT_MSG_DESTROYSET",
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NFT_MSG_DESTROYSETELEM: "NFT_MSG_DESTROYSETELEM",
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NFT_MSG_DESTROYOBJ: "NFT_MSG_DESTROYOBJ",
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NFT_MSG_DESTROYFLOWTABLE: "NFT_MSG_DESTROYFLOWTABLE",
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NFT_MSG_GETSETELEM_RESET: "NFT_MSG_GETSETELEM_RESET",
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NFT_MSG_MAX: "NFT_MSG_MAX",
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}
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// String returns the string representation of the NfTableMsgType.
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func (msg NfTableMsgType) String() string {
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if int(msg) < len(nfTableMsgTypeStrings) {
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return nfTableMsgTypeStrings[msg]
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}
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return "UNKNOWN"
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}
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// NfTableListAttributes represents the netfilter attributes for lists of data.
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// These correspond to values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFTA_LIST_UNSPEC uint16 = iota
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NFTA_LIST_ELEM
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__NFTA_LIST_MAX
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NFTA_LIST_MAX = __NFTA_LIST_MAX - 1
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)
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// NfTableHookAttributes represents the netfilter hook attributes.
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// These correspond to values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFTA_HOOK_UNSPEC uint16 = iota
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NFTA_HOOK_HOOKNUM
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NFTA_HOOK_PRIORITY
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NFTA_HOOK_DEV
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NFTA_HOOK_DEVS
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__NFTA_HOOK_MAX
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NFTA_HOOK_MAX = __NFTA_HOOK_MAX - 1
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)
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// NfTableFlags represents table flags that can be set for a table, namely dormant.
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// These correspond to values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFT_TABLE_F_DORMANT uint32 = 0x1
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NFT_TABLE_F_OWNER = 0x2
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NFT_TABLE_F_PERSIST = 0x4
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NFT_TABLE_F_MASK = NFT_TABLE_F_DORMANT | NFT_TABLE_F_OWNER | NFT_TABLE_F_PERSIST
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)
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// NfTableAttributes represents the netfilter table attributes.
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// These correspond to values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFTA_TABLE_UNSPEC uint16 = iota
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NFTA_TABLE_NAME
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NFTA_TABLE_FLAGS
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NFTA_TABLE_USE
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NFTA_TABLE_HANDLE
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NFTA_TABLE_PAD
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NFTA_TABLE_USERDATA
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NFTA_TABLE_OWNER
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__NFTA_TABLE_MAX
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)
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// NFTA_TABLE_MAX is the maximum netfilter table attribute.
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const NFTA_TABLE_MAX = __NFTA_TABLE_MAX - 1
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// NfTableChainFlags represents chain flags that can be set for a chain.
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// These correspond to values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFT_CHAIN_BASE uint32 = (1 << 0)
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NFT_CHAIN_HW_OFFLOAD = (1 << 1)
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NFT_CHAIN_BINDING = (1 << 2)
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NFT_CHAIN_FLAGS = (NFT_CHAIN_BASE | NFT_CHAIN_HW_OFFLOAD | NFT_CHAIN_BINDING)
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)
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// NfTableChainAttributes represents the netfilter chain attributes.
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// These correspond to values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFTA_CHAIN_UNSPEC uint16 = iota
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NFTA_CHAIN_TABLE
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NFTA_CHAIN_HANDLE
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NFTA_CHAIN_NAME
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NFTA_CHAIN_HOOK
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NFTA_CHAIN_POLICY
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NFTA_CHAIN_USE
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NFTA_CHAIN_TYPE
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NFTA_CHAIN_COUNTERS
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NFTA_CHAIN_PAD
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NFTA_CHAIN_FLAGS
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NFTA_CHAIN_ID
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NFTA_CHAIN_USERDATA
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__NFTA_CHAIN_MAX
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NFTA_CHAIN_MAX = __NFTA_CHAIN_MAX - 1
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)
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// NfTableRuleAttributes represents the netfilter rule attributes.
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// These correspond to values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFTA_RULE_UNSPEC uint16 = iota
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NFTA_RULE_TABLE
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NFTA_RULE_CHAIN
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NFTA_RULE_HANDLE
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NFTA_RULE_EXPRESSIONS
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NFTA_RULE_COMPAT
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NFTA_RULE_POSITION
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NFTA_RULE_USERDATA
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NFTA_RULE_PAD
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NFTA_RULE_ID
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NFTA_RULE_POSITION_ID
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NFTA_RULE_CHAIN_ID
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__NFTA_RULE_MAX
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NFTA_RULE_MAX = __NFTA_RULE_MAX - 1
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)
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// NfTableDataTypes represents the netfilter data types.
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// These correspond to values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFT_DATA_VALUE = iota
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NFT_DATA_VERDICT = 0xffffff00
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)
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// NfTableDataReservedMask represents the netfilter data reserved mask for internally used types.
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// These correspond to values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFT_DATA_RESERVED_MASK = 0xffffff00
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)
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// NfTableDataAttributes represents the netfilter data attributes.
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// These correspond to values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFTA_DATA_UNSPEC uint16 = iota
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NFTA_DATA_VALUE
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NFTA_DATA_VERDICT
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__NFTA_DATA_MAX
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NFTA_DATA_MAX = __NFTA_DATA_MAX - 1
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)
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// NFT_DATA_VALUE_MAXLEN is the maximum length of a netfilter data value.
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const NFT_DATA_VALUE_MAXLEN = 64
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// NfTableVerdictAttributes represents the netfilter verdict attributes.
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// These correspond to values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFTA_VERDICT_UNSPEC uint16 = iota
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NFTA_VERDICT_CODE
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NFTA_VERDICT_CHAIN
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NFTA_VERDICT_CHAIN_ID
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__NFTA_VERDICT_MAX
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NFTA_VERDICT_MAX = __NFTA_VERDICT_MAX - 1
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)
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// NfTableExprAttributes represents the netfilter expression attributes.
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// These correspond to values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFTA_EXPR_UNSPEC uint16 = iota
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NFTA_EXPR_NAME
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NFTA_EXPR_DATA
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__NFTA_EXPR_MAX
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NFTA_EXPR_MAX = __NFTA_EXPR_MAX - 1
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)
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// NfTableImmediateAttributes represents the netfilter immediate attributes.
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// These correspond to values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFTA_IMMEDIATE_UNSPEC uint16 = iota
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NFTA_IMMEDIATE_DREG
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NFTA_IMMEDIATE_DATA
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__NFTA_IMMEDIATE_MAX
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NFTA_IMMEDIATE_MAX = __NFTA_IMMEDIATE_MAX - 1
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)
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// Nf table relational operators.
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// Used by the nft comparison operation to compare values in registers.
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// These correspond to enum values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFT_CMP_EQ = iota // equal
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NFT_CMP_NEQ // not equal
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NFT_CMP_LT // less than
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NFT_CMP_LTE // less than or equal to
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NFT_CMP_GT // greater than
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NFT_CMP_GTE // greater than or equal to
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)
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// Nf table range operators.
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// Used by the nft range operation to compare values in registers.
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// These correspond to enum values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFT_RANGE_EQ = iota
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NFT_RANGE_NEQ
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)
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// Nf table payload expression offset bases.
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// Used by the nft payload operations to access appropriate data in the packet.
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// These correspond to enum values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFT_PAYLOAD_LL_HEADER = iota // link layer header
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NFT_PAYLOAD_NETWORK_HEADER // network header
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NFT_PAYLOAD_TRANSPORT_HEADER // transport header
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NFT_PAYLOAD_INNER_HEADER // inner header / payload
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NFT_PAYLOAD_TUN_HEADER // tunneling protocol header
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)
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// Nf table payload expression checksum types.
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// Used by the nft payload set operation to mark the type of checksum to use.
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// These correspond to enum values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFT_PAYLOAD_CSUM_NONE = iota // no checksumming
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NFT_PAYLOAD_CSUM_INET // internet checksum (RFC 791)
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NFT_PAYLOAD_CSUM_SCTP // CRC-32c, for use in SCTP header (RFC 3309)
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)
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// Nf table payload expression checksum flags.
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// Used by the nft payload set operation to mark the flags for checksumming.
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// These correspond to enum values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFT_PAYLOAD_L4CSUM_PSEUDOHDR = (1 << 0) // use pseudoheader for L4 checksum
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)
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// Nf table bitwise operators.
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// Used by the nft bitwise operation to perform bitwise math over register data.
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// These correspond to enum values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFT_BITWISE_BOOL = iota // mask-and-xor operation for NOT, AND, OR, & XOR
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NFT_BITWISE_LSHIFT // left-shift operation
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NFT_BITWISE_RSHIFT // right-shift operation
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)
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// Nf table route expression keys.
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// Used by the nft route operation to determine the routing data to retrieve.
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// These correspond to enum values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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// Traffic Class Identifier (Realm) associated with route
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NFT_RT_CLASSID = iota
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// Routing nexthop for IPv4 (next IPv4 address to jump to)
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NFT_RT_NEXTHOP4
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// Routing nexthop for IPv6 (next IPv6 address to jump to)
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NFT_RT_NEXTHOP6
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// Maximum Segment Size for TCP connections (largest size for a single packet)
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NFT_RT_TCPMSS
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// Bool for whether packet route involves a IPsec transform st xfrm is applied
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NFT_RT_XFRM
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)
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// Nf table byteorder operators.
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// Used by the nft byteorder operation to convert data in a register to a
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// specific byte order.
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// These correspond to enum values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFT_BYTEORDER_NTOH = iota // network to host operator
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NFT_BYTEORDER_HTON // host to network operator
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)
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// Nf tables meta expression keys.
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// Used by the nft meta operation to retrieve meta data from the packet.
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// These correspond to enum values in include/uapi/linux/netfilter/nf_tables.h.
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const (
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NFT_META_LEN = iota // Packet length
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NFT_META_PROTOCOL // Packet ethertype protocol, invalid in OUTPUT
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NFT_META_PRIORITY // Packet priority
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NFT_META_MARK // Packet mark
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NFT_META_IIF // Packet input interface index
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NFT_META_OIF // Packet output interface index
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NFT_META_IIFNAME // Packet input interface name
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NFT_META_OIFNAME // Packet output interface name
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NFT_META_IIFTYPE // Packet input interface type
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NFT_META_OIFTYPE // Packet output interface type
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NFT_META_SKUID // Originating socket UID
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NFT_META_SKGID // Originating socket GID
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NFT_META_NFTRACE // Packet nftrace bit
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NFT_META_RTCLASSID // Realm value of packet's route
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NFT_META_SECMARK // Packet secmark
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NFT_META_NFPROTO // Netfilter protocol
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NFT_META_L4PROTO // Layer 4 protocol number
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NFT_META_BRI_IIFNAME // Packet input bridge interface name
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NFT_META_BRI_OIFNAME // Packet output bridge interface name
|
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NFT_META_PKTTYPE // Packet type, special handling for loopback
|
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NFT_META_CPU // CPU id through smp_processor_id()
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NFT_META_IIFGROUP // Packet input interface group
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NFT_META_OIFGROUP // Packet output interface group
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NFT_META_CGROUP // Socket control group
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NFT_META_PRANDOM // A 32bit pseudo-random number
|
|
NFT_META_SECPATH // Boolean, secpath_exists
|
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NFT_META_IIFKIND // Packet input interface kind name
|
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NFT_META_OIFKIND // Packet output interface kind name
|
|
NFT_META_BRI_IIFPVID // Packet input bridge port pvid
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NFT_META_BRI_IIFVPROTO // Packet input bridge vlan proto
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NFT_META_TIME_NS // Time since epoch (in nanoseconds)
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NFT_META_TIME_DAY // Day of week (from 0 = Sunday to 6 = Saturday)
|
|
NFT_META_TIME_HOUR // Hour of day (in sec), secs since start of day
|
|
NFT_META_SDIF // Slave device interface index
|
|
NFT_META_SDIFNAME // Slave device interface name
|
|
NFT_META_BRI_BROUTE // Packet br_netfilter_broute bit
|
|
)
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