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Replace get_raw_handled_fs_accesses() with a generic landlock_union_access_masks(), and replace get_fs_domain() with a generic landlock_get_applicable_domain(). These helpers will also be useful for other types of access. Cc: Mikhail Ivanov <ivanov.mikhail1@huawei-partners.com> Reviewed-by: Günther Noack <gnoack@google.com> Link: https://lore.kernel.org/r/20241109110856.222842-2-mic@digikod.net [mic: Slightly improve doc as suggested by Günther] Signed-off-by: Mickaël Salaün <mic@digikod.net>
398 lines
11 KiB
C
398 lines
11 KiB
C
/* SPDX-License-Identifier: GPL-2.0-only */
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/*
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* Landlock LSM - Ruleset management
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*
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* Copyright © 2016-2020 Mickaël Salaün <mic@digikod.net>
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* Copyright © 2018-2020 ANSSI
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*/
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#ifndef _SECURITY_LANDLOCK_RULESET_H
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#define _SECURITY_LANDLOCK_RULESET_H
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#include <linux/bitops.h>
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#include <linux/build_bug.h>
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#include <linux/kernel.h>
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#include <linux/mutex.h>
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#include <linux/rbtree.h>
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#include <linux/refcount.h>
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#include <linux/workqueue.h>
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#include <uapi/linux/landlock.h>
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#include "limits.h"
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#include "object.h"
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/*
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* All access rights that are denied by default whether they are handled or not
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* by a ruleset/layer. This must be ORed with all ruleset->access_masks[]
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* entries when we need to get the absolute handled access masks.
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*/
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/* clang-format off */
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#define LANDLOCK_ACCESS_FS_INITIALLY_DENIED ( \
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LANDLOCK_ACCESS_FS_REFER)
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/* clang-format on */
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typedef u16 access_mask_t;
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/* Makes sure all filesystem access rights can be stored. */
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static_assert(BITS_PER_TYPE(access_mask_t) >= LANDLOCK_NUM_ACCESS_FS);
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/* Makes sure all network access rights can be stored. */
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static_assert(BITS_PER_TYPE(access_mask_t) >= LANDLOCK_NUM_ACCESS_NET);
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/* Makes sure all scoped rights can be stored. */
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static_assert(BITS_PER_TYPE(access_mask_t) >= LANDLOCK_NUM_SCOPE);
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/* Makes sure for_each_set_bit() and for_each_clear_bit() calls are OK. */
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static_assert(sizeof(unsigned long) >= sizeof(access_mask_t));
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/* Ruleset access masks. */
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struct access_masks {
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access_mask_t fs : LANDLOCK_NUM_ACCESS_FS;
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access_mask_t net : LANDLOCK_NUM_ACCESS_NET;
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access_mask_t scope : LANDLOCK_NUM_SCOPE;
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};
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union access_masks_all {
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struct access_masks masks;
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u32 all;
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};
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/* Makes sure all fields are covered. */
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static_assert(sizeof(typeof_member(union access_masks_all, masks)) ==
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sizeof(typeof_member(union access_masks_all, all)));
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typedef u16 layer_mask_t;
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/* Makes sure all layers can be checked. */
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static_assert(BITS_PER_TYPE(layer_mask_t) >= LANDLOCK_MAX_NUM_LAYERS);
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/**
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* struct landlock_layer - Access rights for a given layer
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*/
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struct landlock_layer {
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/**
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* @level: Position of this layer in the layer stack.
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*/
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u16 level;
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/**
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* @access: Bitfield of allowed actions on the kernel object. They are
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* relative to the object type (e.g. %LANDLOCK_ACTION_FS_READ).
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*/
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access_mask_t access;
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};
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/**
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* union landlock_key - Key of a ruleset's red-black tree
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*/
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union landlock_key {
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/**
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* @object: Pointer to identify a kernel object (e.g. an inode).
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*/
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struct landlock_object *object;
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/**
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* @data: Raw data to identify an arbitrary 32-bit value
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* (e.g. a TCP port).
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*/
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uintptr_t data;
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};
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/**
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* enum landlock_key_type - Type of &union landlock_key
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*/
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enum landlock_key_type {
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/**
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* @LANDLOCK_KEY_INODE: Type of &landlock_ruleset.root_inode's node
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* keys.
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*/
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LANDLOCK_KEY_INODE = 1,
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/**
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* @LANDLOCK_KEY_NET_PORT: Type of &landlock_ruleset.root_net_port's
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* node keys.
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*/
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LANDLOCK_KEY_NET_PORT,
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};
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/**
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* struct landlock_id - Unique rule identifier for a ruleset
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*/
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struct landlock_id {
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/**
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* @key: Identifies either a kernel object (e.g. an inode) or
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* a raw value (e.g. a TCP port).
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*/
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union landlock_key key;
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/**
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* @type: Type of a landlock_ruleset's root tree.
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*/
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const enum landlock_key_type type;
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};
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/**
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* struct landlock_rule - Access rights tied to an object
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*/
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struct landlock_rule {
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/**
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* @node: Node in the ruleset's red-black tree.
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*/
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struct rb_node node;
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/**
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* @key: A union to identify either a kernel object (e.g. an inode) or
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* a raw data value (e.g. a network socket port). This is used as a key
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* for this ruleset element. The pointer is set once and never
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* modified. It always points to an allocated object because each rule
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* increments the refcount of its object.
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*/
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union landlock_key key;
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/**
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* @num_layers: Number of entries in @layers.
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*/
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u32 num_layers;
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/**
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* @layers: Stack of layers, from the latest to the newest, implemented
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* as a flexible array member (FAM).
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*/
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struct landlock_layer layers[] __counted_by(num_layers);
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};
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/**
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* struct landlock_hierarchy - Node in a ruleset hierarchy
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*/
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struct landlock_hierarchy {
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/**
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* @parent: Pointer to the parent node, or NULL if it is a root
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* Landlock domain.
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*/
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struct landlock_hierarchy *parent;
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/**
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* @usage: Number of potential children domains plus their parent
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* domain.
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*/
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refcount_t usage;
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};
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/**
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* struct landlock_ruleset - Landlock ruleset
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*
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* This data structure must contain unique entries, be updatable, and quick to
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* match an object.
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*/
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struct landlock_ruleset {
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/**
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* @root_inode: Root of a red-black tree containing &struct
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* landlock_rule nodes with inode object. Once a ruleset is tied to a
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* process (i.e. as a domain), this tree is immutable until @usage
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* reaches zero.
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*/
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struct rb_root root_inode;
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#if IS_ENABLED(CONFIG_INET)
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/**
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* @root_net_port: Root of a red-black tree containing &struct
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* landlock_rule nodes with network port. Once a ruleset is tied to a
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* process (i.e. as a domain), this tree is immutable until @usage
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* reaches zero.
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*/
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struct rb_root root_net_port;
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#endif /* IS_ENABLED(CONFIG_INET) */
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/**
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* @hierarchy: Enables hierarchy identification even when a parent
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* domain vanishes. This is needed for the ptrace protection.
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*/
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struct landlock_hierarchy *hierarchy;
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union {
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/**
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* @work_free: Enables to free a ruleset within a lockless
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* section. This is only used by
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* landlock_put_ruleset_deferred() when @usage reaches zero.
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* The fields @lock, @usage, @num_rules, @num_layers and
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* @access_masks are then unused.
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*/
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struct work_struct work_free;
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struct {
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/**
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* @lock: Protects against concurrent modifications of
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* @root, if @usage is greater than zero.
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*/
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struct mutex lock;
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/**
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* @usage: Number of processes (i.e. domains) or file
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* descriptors referencing this ruleset.
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*/
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refcount_t usage;
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/**
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* @num_rules: Number of non-overlapping (i.e. not for
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* the same object) rules in this ruleset.
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*/
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u32 num_rules;
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/**
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* @num_layers: Number of layers that are used in this
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* ruleset. This enables to check that all the layers
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* allow an access request. A value of 0 identifies a
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* non-merged ruleset (i.e. not a domain).
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*/
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u32 num_layers;
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/**
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* @access_masks: Contains the subset of filesystem and
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* network actions that are restricted by a ruleset.
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* A domain saves all layers of merged rulesets in a
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* stack (FAM), starting from the first layer to the
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* last one. These layers are used when merging
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* rulesets, for user space backward compatibility
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* (i.e. future-proof), and to properly handle merged
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* rulesets without overlapping access rights. These
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* layers are set once and never changed for the
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* lifetime of the ruleset.
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*/
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struct access_masks access_masks[];
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};
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};
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};
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struct landlock_ruleset *
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landlock_create_ruleset(const access_mask_t access_mask_fs,
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const access_mask_t access_mask_net,
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const access_mask_t scope_mask);
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void landlock_put_ruleset(struct landlock_ruleset *const ruleset);
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void landlock_put_ruleset_deferred(struct landlock_ruleset *const ruleset);
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int landlock_insert_rule(struct landlock_ruleset *const ruleset,
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const struct landlock_id id,
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const access_mask_t access);
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struct landlock_ruleset *
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landlock_merge_ruleset(struct landlock_ruleset *const parent,
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struct landlock_ruleset *const ruleset);
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const struct landlock_rule *
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landlock_find_rule(const struct landlock_ruleset *const ruleset,
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const struct landlock_id id);
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static inline void landlock_get_ruleset(struct landlock_ruleset *const ruleset)
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{
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if (ruleset)
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refcount_inc(&ruleset->usage);
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}
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/**
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* landlock_union_access_masks - Return all access rights handled in the
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* domain
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*
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* @domain: Landlock ruleset (used as a domain)
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*
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* Returns: an access_masks result of the OR of all the domain's access masks.
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*/
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static inline struct access_masks
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landlock_union_access_masks(const struct landlock_ruleset *const domain)
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{
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union access_masks_all matches = {};
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size_t layer_level;
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for (layer_level = 0; layer_level < domain->num_layers; layer_level++) {
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union access_masks_all layer = {
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.masks = domain->access_masks[layer_level],
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};
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matches.all |= layer.all;
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}
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return matches.masks;
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}
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/**
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* landlock_get_applicable_domain - Return @domain if it applies to (handles)
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* at least one of the access rights specified
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* in @masks
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*
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* @domain: Landlock ruleset (used as a domain)
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* @masks: access masks
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*
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* Returns: @domain if any access rights specified in @masks is handled, or
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* NULL otherwise.
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*/
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static inline const struct landlock_ruleset *
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landlock_get_applicable_domain(const struct landlock_ruleset *const domain,
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const struct access_masks masks)
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{
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const union access_masks_all masks_all = {
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.masks = masks,
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};
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union access_masks_all merge = {};
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if (!domain)
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return NULL;
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merge.masks = landlock_union_access_masks(domain);
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if (merge.all & masks_all.all)
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return domain;
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return NULL;
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}
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static inline void
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landlock_add_fs_access_mask(struct landlock_ruleset *const ruleset,
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const access_mask_t fs_access_mask,
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const u16 layer_level)
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{
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access_mask_t fs_mask = fs_access_mask & LANDLOCK_MASK_ACCESS_FS;
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/* Should already be checked in sys_landlock_create_ruleset(). */
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WARN_ON_ONCE(fs_access_mask != fs_mask);
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ruleset->access_masks[layer_level].fs |= fs_mask;
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}
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static inline void
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landlock_add_net_access_mask(struct landlock_ruleset *const ruleset,
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const access_mask_t net_access_mask,
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const u16 layer_level)
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{
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access_mask_t net_mask = net_access_mask & LANDLOCK_MASK_ACCESS_NET;
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/* Should already be checked in sys_landlock_create_ruleset(). */
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WARN_ON_ONCE(net_access_mask != net_mask);
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ruleset->access_masks[layer_level].net |= net_mask;
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}
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static inline void
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landlock_add_scope_mask(struct landlock_ruleset *const ruleset,
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const access_mask_t scope_mask, const u16 layer_level)
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{
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access_mask_t mask = scope_mask & LANDLOCK_MASK_SCOPE;
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/* Should already be checked in sys_landlock_create_ruleset(). */
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WARN_ON_ONCE(scope_mask != mask);
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ruleset->access_masks[layer_level].scope |= mask;
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}
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static inline access_mask_t
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landlock_get_fs_access_mask(const struct landlock_ruleset *const ruleset,
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const u16 layer_level)
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{
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/* Handles all initially denied by default access rights. */
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return ruleset->access_masks[layer_level].fs |
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LANDLOCK_ACCESS_FS_INITIALLY_DENIED;
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}
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static inline access_mask_t
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landlock_get_net_access_mask(const struct landlock_ruleset *const ruleset,
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const u16 layer_level)
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{
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return ruleset->access_masks[layer_level].net;
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}
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static inline access_mask_t
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landlock_get_scope_mask(const struct landlock_ruleset *const ruleset,
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const u16 layer_level)
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{
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return ruleset->access_masks[layer_level].scope;
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}
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bool landlock_unmask_layers(const struct landlock_rule *const rule,
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const access_mask_t access_request,
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layer_mask_t (*const layer_masks)[],
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const size_t masks_array_size);
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access_mask_t
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landlock_init_layer_masks(const struct landlock_ruleset *const domain,
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const access_mask_t access_request,
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layer_mask_t (*const layer_masks)[],
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const enum landlock_key_type key_type);
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#endif /* _SECURITY_LANDLOCK_RULESET_H */
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