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Janis Danisevskis78bd48c2020-07-21 12:27:13 -07001// Copyright 2020, The Android Open Source Project
2//
3// Licensed under the Apache License, Version 2.0 (the "License");
4// you may not use this file except in compliance with the License.
5// You may obtain a copy of the License at
6//
7// http://www.apache.org/licenses/LICENSE-2.0
8//
9// Unless required by applicable law or agreed to in writing, software
10// distributed under the License is distributed on an "AS IS" BASIS,
11// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12// See the License for the specific language governing permissions and
13// limitations under the License.
14
15//! This crate provides access control primitives for Keystore 2.0.
16//! It provides high level functions for checking permissions in the keystore2 and keystore2_key
17//! SELinux classes based on the keystore2_selinux backend.
18//! It also provides KeystorePerm and KeyPerm as convenience wrappers for the SELinux permission
19//! defined by keystore2 and keystore2_key respectively.
20
Janis Danisevskisc5b210b2020-09-11 13:27:37 -070021use android_system_keystore2::aidl::android::system::keystore2::{
22 Domain::Domain, KeyDescriptor::KeyDescriptor, KeyPermission::KeyPermission,
23};
Janis Danisevskis78bd48c2020-07-21 12:27:13 -070024
25use std::cmp::PartialEq;
26use std::convert::From;
Janis Danisevskis935e6c62020-08-18 12:52:27 -070027use std::ffi::CStr;
Janis Danisevskis78bd48c2020-07-21 12:27:13 -070028
29use crate::error::Error as KsError;
30use keystore2_selinux as selinux;
31
32use anyhow::Context as AnyhowContext;
33
34use selinux::Backend;
35
Janis Danisevskis4ad056f2020-08-05 19:46:46 +000036use lazy_static::lazy_static;
37
Janis Danisevskis78bd48c2020-07-21 12:27:13 -070038// Replace getcon with a mock in the test situation
39#[cfg(not(test))]
40use selinux::getcon;
41#[cfg(test)]
42use tests::test_getcon as getcon;
43
Janis Danisevskis4ad056f2020-08-05 19:46:46 +000044lazy_static! {
45 // Panicking here is allowed because keystore cannot function without this backend
46 // and it would happen early and indicate a gross misconfiguration of the device.
47 static ref KEYSTORE2_KEY_LABEL_BACKEND: selinux::KeystoreKeyBackend =
48 selinux::KeystoreKeyBackend::new().unwrap();
49}
50
51fn lookup_keystore2_key_context(namespace: i64) -> anyhow::Result<selinux::Context> {
52 KEYSTORE2_KEY_LABEL_BACKEND.lookup(&namespace.to_string())
53}
54
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -070055/// ## Background
56///
57/// AIDL enums are represented as constants of the form:
58/// ```
59/// mod EnumName {
60/// pub type EnumName = i32;
61/// pub const Variant1: EnumName = <value1>;
62/// pub const Variant2: EnumName = <value2>;
63/// ...
64/// }
65///```
66/// This macro wraps the enum in a new type, e.g., `MyPerm` and maps each variant to an SELinux
67/// permission while providing the following interface:
68/// * From<EnumName> and Into<EnumName> are implemented. Where the implementation of From maps
69/// any variant not specified to the default.
70/// * Every variant has a constructor with a name corresponding to its lower case SELinux string
71/// representation.
72/// * `MyPerm.to_selinux(&self)` returns the SELinux string representation of the
Janis Danisevskis78bd48c2020-07-21 12:27:13 -070073/// represented permission.
Janis Danisevskis78bd48c2020-07-21 12:27:13 -070074///
75/// ## Special behavior
76/// If the keyword `use` appears as an selinux name `use_` is used as identifier for the
77/// constructor function (e.g. `MePerm::use_()`) but the string returned by `to_selinux` will
78/// still be `"use"`.
79///
80/// ## Example
81/// ```
Janis Danisevskis78bd48c2020-07-21 12:27:13 -070082///
83/// implement_permission!(
84/// /// MyPerm documentation.
85/// #[derive(Clone, Copy, Debug, PartialEq)]
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -070086/// MyPerm from EnumName with default (None, none) {}
87/// Variant1, selinux name: variant1;
88/// Variant2, selinux name: variant1;
Janis Danisevskis78bd48c2020-07-21 12:27:13 -070089/// }
90/// );
91/// ```
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -070092macro_rules! implement_permission_aidl {
Janis Danisevskis78bd48c2020-07-21 12:27:13 -070093 // This rule provides the public interface of the macro. And starts the preprocessing
94 // recursion (see below).
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -070095 ($(#[$m:meta])* $name:ident from $aidl_name:ident with default ($($def:tt)*)
96 { $($element:tt)* })
Janis Danisevskis78bd48c2020-07-21 12:27:13 -070097 => {
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -070098 implement_permission_aidl!(@replace_use $($m)*, $name, $aidl_name, ($($def)*), [],
99 $($element)*);
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700100 };
101
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700102 // The following three rules recurse through the elements of the form
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700103 // `<enum variant>, selinux name: <selinux_name>;`
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700104 // preprocessing the input.
105
106 // The first rule terminates the recursion and passes the processed arguments to the final
107 // rule that spills out the implementation.
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700108 (@replace_use $($m:meta)*, $name:ident, $aidl_name:ident, ($($def:tt)*), [$($out:tt)*], ) => {
109 implement_permission_aidl!(@end $($m)*, $name, $aidl_name, ($($def)*) { $($out)* } );
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700110 };
111
112 // The second rule is triggered if the selinux name of an element is literally `use`.
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700113 // It produces the tuple `<enum variant>, use_, use;`
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700114 // and appends it to the out list.
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700115 (@replace_use $($m:meta)*, $name:ident, $aidl_name:ident, ($($def:tt)*), [$($out:tt)*],
116 $e_name:ident, selinux name: use; $($element:tt)*)
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700117 => {
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700118 implement_permission_aidl!(@replace_use $($m)*, $name, $aidl_name, ($($def)*),
119 [$($out)* $e_name, use_, use;], $($element)*);
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700120 };
121
122 // The third rule is the default rule which replaces every input tuple with
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700123 // `<enum variant>, <selinux_name>, <selinux_name>;`
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700124 // and appends the result to the out list.
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700125 (@replace_use $($m:meta)*, $name:ident, $aidl_name:ident, ($($def:tt)*), [$($out:tt)*],
126 $e_name:ident, selinux name: $e_str:ident; $($element:tt)*)
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700127 => {
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700128 implement_permission_aidl!(@replace_use $($m)*, $name, $aidl_name, ($($def)*),
129 [$($out)* $e_name, $e_str, $e_str;], $($element)*);
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700130 };
131
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700132 (@end $($m:meta)*, $name:ident, $aidl_name:ident,
133 ($def_name:ident, $def_selinux_name:ident) {
134 $($element_name:ident, $element_identifier:ident,
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700135 $selinux_name:ident;)*
136 })
137 =>
138 {
139 $(#[$m])*
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700140 pub struct $name(pub $aidl_name);
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700141
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700142 impl From<$aidl_name> for $name {
143 fn from (p: $aidl_name) -> Self {
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700144 match p {
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700145 $aidl_name::$def_name => Self($aidl_name::$def_name),
146 $($aidl_name::$element_name => Self($aidl_name::$element_name),)*
147 _ => Self($aidl_name::$def_name),
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700148 }
149 }
150 }
151
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700152 impl Into<$aidl_name> for $name {
153 fn into(self) -> $aidl_name {
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700154 self.0
155 }
156 }
157
158 impl $name {
159 /// Returns a string representation of the permission as required by
160 /// `selinux::check_access`.
161 pub fn to_selinux(&self) -> &'static str {
162 match self {
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700163 Self($aidl_name::$def_name) => stringify!($def_selinux_name),
164 $(Self($aidl_name::$element_name) => stringify!($selinux_name),)*
165 _ => stringify!($def_selinux_name),
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700166 }
167 }
168
169 /// Creates an instance representing a permission with the same name.
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700170 pub const fn $def_selinux_name() -> Self { Self($aidl_name::$def_name) }
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700171 $(
172 /// Creates an instance representing a permission with the same name.
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700173 pub const fn $element_identifier() -> Self { Self($aidl_name::$element_name) }
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700174 )*
175 }
176 };
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700177}
178
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700179implement_permission_aidl!(
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700180 /// KeyPerm provides a convenient abstraction from the SELinux class `keystore2_key`.
181 /// At the same time it maps `KeyPermissions` from the Keystore 2.0 AIDL Grant interface to
182 /// the SELinux permissions. With the implement_permission macro, we conveniently
183 /// provide mappings between the wire type bit field values, the rust enum and the SELinux
184 /// string representation.
185 ///
186 /// ## Example
187 ///
188 /// In this access check `KeyPerm::get_info().to_selinux()` would return the SELinux representation
189 /// "info".
190 /// ```
191 /// selinux::check_access(source_context, target_context, "keystore2_key",
192 /// KeyPerm::get_info().to_selinux());
193 /// ```
194 #[derive(Clone, Copy, Debug, Eq, PartialEq)]
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700195 KeyPerm from KeyPermission with default (NONE, none) {
196 DELETE, selinux name: delete;
197 GEN_UNIQUE_ID, selinux name: gen_unique_id;
198 GET_INFO, selinux name: get_info;
199 GRANT, selinux name: grant;
200 MANAGE_BLOB, selinux name: manage_blob;
201 REBIND, selinux name: rebind;
202 REQ_FORCED_OP, selinux name: req_forced_op;
203 UPDATE, selinux name: update;
204 USE, selinux name: use;
205 USE_DEV_ID, selinux name: use_dev_id;
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700206 }
207);
208
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700209/// This macro implements an enum with values mapped to SELinux permission names.
210/// The below example wraps the enum MyPermission in the tuple struct `MyPerm` and implements
211/// * From<i32> and Into<i32> are implemented. Where the implementation of From maps
212/// any variant not specified to the default.
213/// * Every variant has a constructor with a name corresponding to its lower case SELinux string
214/// representation.
215/// * `MyPerm.to_selinux(&self)` returns the SELinux string representation of the
216/// represented permission.
217///
218/// ## Example
219/// ```
220/// implement_permission!(
221/// /// MyPerm documentation.
222/// #[derive(Clone, Copy, Debug, Eq, PartialEq)]
223/// MyPerm with default (None = 0, none) {
224/// Foo = 1, selinux name: foo;
225/// Bar = 2, selinux name: bar;
226/// }
227/// );
228/// ```
229macro_rules! implement_permission {
230 // This rule provides the public interface of the macro. And starts the preprocessing
231 // recursion (see below).
232 ($(#[$m:meta])* $name:ident with default
233 ($def_name:ident = $def_val:expr, $def_selinux_name:ident)
234 {
235 $($(#[$element_meta:meta])*
236 $element_name:ident = $element_val:expr, selinux name: $selinux_name:ident;)*
237 })
238 => {
239 $(#[$m])*
240 pub enum $name {
241 /// The default variant of an enum.
242 $def_name = $def_val,
243 $(
244 $(#[$element_meta])*
245 $element_name = $element_val,
246 )*
247 }
248
249 impl From<i32> for $name {
250 fn from (p: i32) -> Self {
251 match p {
252 $def_val => Self::$def_name,
253 $($element_val => Self::$element_name,)*
254 _ => Self::$def_name,
255 }
256 }
257 }
258
259 impl Into<i32> for $name {
260 fn into(self) -> i32 {
261 self as i32
262 }
263 }
264
265 impl $name {
266 /// Returns a string representation of the permission as required by
267 /// `selinux::check_access`.
268 pub fn to_selinux(&self) -> &'static str {
269 match self {
270 Self::$def_name => stringify!($def_selinux_name),
271 $(Self::$element_name => stringify!($selinux_name),)*
272 }
273 }
274
275 /// Creates an instance representing a permission with the same name.
276 pub const fn $def_selinux_name() -> Self { Self::$def_name }
277 $(
278 /// Creates an instance representing a permission with the same name.
279 pub const fn $selinux_name() -> Self { Self::$element_name }
280 )*
281 }
282 };
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700283}
284
285implement_permission!(
286 /// KeystorePerm provides a convenient abstraction from the SELinux class `keystore2`.
287 /// Using the implement_permission macro we get the same features as `KeyPerm`.
288 #[derive(Clone, Copy, Debug, PartialEq)]
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700289 KeystorePerm with default (None = 0, none) {
290 /// Checked when a new auth token is installed.
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700291 AddAuth = 1, selinux name: add_auth;
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700292 /// Checked when an app is uninstalled or wiped.
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700293 ClearNs = 2, selinux name: clear_ns;
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700294 /// Checked when Keystore 2.0 gets locked.
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700295 GetState = 4, selinux name: get_state;
Janis Danisevskisee10b5f2020-09-22 16:42:35 -0700296 /// Checked when Keystore 2.0 is asked to list a namespace that the caller
297 /// does not have the get_info permission for.
298 List = 8, selinux name: list;
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700299 /// Checked when Keystore 2.0 gets locked.
Janis Danisevskisee10b5f2020-09-22 16:42:35 -0700300 Lock = 0x10, selinux name: lock;
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700301 /// Checked when Keystore 2.0 shall be reset.
Hasini Gunasinghe803c2d42021-01-27 00:48:40 +0000302 Reset = 0x20, selinux name: reset;
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700303 /// Checked when Keystore 2.0 shall be unlocked.
Hasini Gunasinghe803c2d42021-01-27 00:48:40 +0000304 Unlock = 0x40, selinux name: unlock;
305 /// Checked when user is added or removed.
306 ChangeUser = 0x80, selinux name: change_user;
307 /// Checked when password of the user is changed.
308 ChangePassword = 0x100, selinux name: change_password;
309 /// Checked when a UID is cleared.
310 ClearUID = 0x200, selinux name: clear_uid;
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700311 }
312);
313
314/// Represents a set of `KeyPerm` permissions.
315/// `IntoIterator` is implemented for this struct allowing the iteration through all the
316/// permissions in the set.
317/// It also implements a function `includes(self, other)` that checks if the permissions
318/// in `other` are included in `self`.
319///
320/// KeyPermSet can be created with the macro `key_perm_set![]`.
321///
322/// ## Example
323/// ```
324/// let perms1 = key_perm_set![KeyPerm::use_(), KeyPerm::manage_blob(), KeyPerm::grant()];
325/// let perms2 = key_perm_set![KeyPerm::use_(), KeyPerm::manage_blob()];
326///
327/// assert!(perms1.includes(perms2))
328/// assert!(!perms2.includes(perms1))
329///
330/// let i = perms1.into_iter();
331/// // iteration in ascending order of the permission's numeric representation.
332/// assert_eq(Some(KeyPerm::manage_blob()), i.next());
333/// assert_eq(Some(KeyPerm::grant()), i.next());
334/// assert_eq(Some(KeyPerm::use_()), i.next());
335/// assert_eq(None, i.next());
336/// ```
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700337#[derive(Copy, Clone, Debug, Eq, PartialEq, Ord, PartialOrd)]
338pub struct KeyPermSet(pub i32);
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700339
340mod perm {
341 use super::*;
342
343 pub struct IntoIter {
344 vec: KeyPermSet,
345 pos: u8,
346 }
347
348 impl IntoIter {
349 pub fn new(v: KeyPermSet) -> Self {
350 Self { vec: v, pos: 0 }
351 }
352 }
353
354 impl std::iter::Iterator for IntoIter {
355 type Item = KeyPerm;
356
357 fn next(&mut self) -> Option<Self::Item> {
358 loop {
359 if self.pos == 32 {
360 return None;
361 }
362 let p = self.vec.0 & (1 << self.pos);
363 self.pos += 1;
364 if p != 0 {
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700365 return Some(KeyPerm::from(KeyPermission(p)));
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700366 }
367 }
368 }
369 }
370}
371
372impl From<KeyPerm> for KeyPermSet {
373 fn from(p: KeyPerm) -> Self {
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700374 Self((p.0).0 as i32)
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700375 }
376}
377
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700378/// allow conversion from the AIDL wire type i32 to a permission set.
379impl From<i32> for KeyPermSet {
380 fn from(p: i32) -> Self {
381 Self(p)
382 }
383}
384
385impl From<KeyPermSet> for i32 {
386 fn from(p: KeyPermSet) -> i32 {
387 p.0
388 }
389}
390
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700391impl KeyPermSet {
392 /// Returns true iff this permission set has all of the permissions that are in `other`.
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700393 pub fn includes<T: Into<KeyPermSet>>(&self, other: T) -> bool {
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700394 let o: KeyPermSet = other.into();
395 (self.0 & o.0) == o.0
396 }
397}
398
399/// This macro can be used to create a `KeyPermSet` from a list of `KeyPerm` values.
400///
401/// ## Example
402/// ```
403/// let v = key_perm_set![Perm::delete(), Perm::manage_blob()];
404/// ```
405#[macro_export]
406macro_rules! key_perm_set {
407 () => { KeyPermSet(0) };
408 ($head:expr $(, $tail:expr)* $(,)?) => {
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700409 KeyPermSet(($head.0).0 $(| ($tail.0).0)*)
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700410 };
411}
412
413impl IntoIterator for KeyPermSet {
414 type Item = KeyPerm;
415 type IntoIter = perm::IntoIter;
416
417 fn into_iter(self) -> Self::IntoIter {
418 Self::IntoIter::new(self)
419 }
420}
421
422/// Uses `selinux::check_access` to check if the given caller context `caller_cxt` may access
423/// the given permision `perm` of the `keystore2` security class.
Janis Danisevskis935e6c62020-08-18 12:52:27 -0700424pub fn check_keystore_permission(caller_ctx: &CStr, perm: KeystorePerm) -> anyhow::Result<()> {
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700425 let target_context = getcon().context("check_keystore_permission: getcon failed.")?;
426 selinux::check_access(caller_ctx, &target_context, "keystore2", perm.to_selinux())
427}
428
429/// Uses `selinux::check_access` to check if the given caller context `caller_cxt` has
430/// all the permissions indicated in `access_vec` for the target domain indicated by the key
431/// descriptor `key` in the security class `keystore2_key`.
432///
433/// Also checks if the caller has the grant permission for the given target domain.
434///
435/// Attempts to grant the grant permission are always denied.
436///
437/// The only viable target domains are
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700438/// * `Domain::APP` in which case u:r:keystore:s0 is used as target context and
439/// * `Domain::SELINUX` in which case the `key.nspace` parameter is looked up in
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700440/// SELinux keystore key backend, and the result is used
441/// as target context.
442pub fn check_grant_permission(
Janis Danisevskis935e6c62020-08-18 12:52:27 -0700443 caller_ctx: &CStr,
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700444 access_vec: KeyPermSet,
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700445 key: &KeyDescriptor,
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700446) -> anyhow::Result<()> {
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700447 let target_context = match key.domain {
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700448 Domain::APP => getcon().context("check_grant_permission: getcon failed.")?,
449 Domain::SELINUX => lookup_keystore2_key_context(key.nspace)
450 .context("check_grant_permission: Domain::SELINUX: Failed to lookup namespace.")?,
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700451 _ => return Err(KsError::sys()).context(format!("Cannot grant {:?}.", key.domain)),
452 };
453
454 selinux::check_access(caller_ctx, &target_context, "keystore2_key", "grant")
455 .context("Grant permission is required when granting.")?;
456
457 if access_vec.includes(KeyPerm::grant()) {
458 return Err(selinux::Error::perm()).context("Grant permission cannot be granted.");
459 }
460
461 for p in access_vec.into_iter() {
462 selinux::check_access(caller_ctx, &target_context, "keystore2_key", p.to_selinux())
Janis Danisevskisa31dd9e2021-01-30 00:13:17 -0800463 .context(format!(
464 concat!(
465 "check_grant_permission: check_access failed. ",
466 "The caller may have tried to grant a permission that they don't possess. {:?}"
467 ),
468 p
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700469 ))?
470 }
471 Ok(())
472}
473
474/// Uses `selinux::check_access` to check if the given caller context `caller_cxt`
475/// has the permissions indicated by `perm` for the target domain indicated by the key
476/// descriptor `key` in the security class `keystore2_key`.
477///
478/// The behavior differs slightly depending on the selected target domain:
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700479/// * `Domain::APP` u:r:keystore:s0 is used as target context.
480/// * `Domain::SELINUX` `key.nspace` parameter is looked up in the SELinux keystore key
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700481/// backend, and the result is used as target context.
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700482/// * `Domain::BLOB` Same as SELinux but the "manage_blob" permission is always checked additionally
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700483/// to the one supplied in `perm`.
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700484/// * `Domain::GRANT` Does not use selinux::check_access. Instead the `access_vector`
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700485/// parameter is queried for permission, which must be supplied in this case.
486///
487/// ## Return values.
488/// * Ok(()) If the requested permissions were granted.
489/// * Err(selinux::Error::perm()) If the requested permissions were denied.
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700490/// * Err(KsError::sys()) This error is produced if `Domain::GRANT` is selected but no `access_vec`
491/// was supplied. It is also produced if `Domain::KEY_ID` was selected, and
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700492/// on various unexpected backend failures.
493pub fn check_key_permission(
Janis Danisevskis45760022021-01-19 16:34:10 -0800494 caller_uid: u32,
Janis Danisevskis935e6c62020-08-18 12:52:27 -0700495 caller_ctx: &CStr,
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700496 perm: KeyPerm,
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700497 key: &KeyDescriptor,
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700498 access_vector: &Option<KeyPermSet>,
499) -> anyhow::Result<()> {
Janis Danisevskis45760022021-01-19 16:34:10 -0800500 // If an access vector was supplied, the key is either accessed by GRANT or by KEY_ID.
501 // In the former case, key.domain was set to GRANT and we check the failure cases
502 // further below. If the access is requested by KEY_ID, key.domain would have been
503 // resolved to APP or SELINUX depending on where the key actually resides.
504 // Either way we can return here immediately if the access vector covers the requested
505 // permission. If it does not, we can still check if the caller has access by means of
506 // ownership.
507 if let Some(access_vector) = access_vector {
508 if access_vector.includes(perm) {
509 return Ok(());
510 }
511 }
512
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700513 let target_context = match key.domain {
514 // apps get the default keystore context
Janis Danisevskis45760022021-01-19 16:34:10 -0800515 Domain::APP => {
516 if caller_uid as i64 != key.nspace {
517 return Err(selinux::Error::perm())
518 .context("Trying to access key without ownership.");
519 }
520 getcon().context("check_key_permission: getcon failed.")?
521 }
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700522 Domain::SELINUX => lookup_keystore2_key_context(key.nspace)
523 .context("check_key_permission: Domain::SELINUX: Failed to lookup namespace.")?,
524 Domain::GRANT => {
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700525 match access_vector {
Janis Danisevskis45760022021-01-19 16:34:10 -0800526 Some(_) => {
527 return Err(selinux::Error::perm())
528 .context(format!("\"{}\" not granted", perm.to_selinux()));
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700529 }
530 None => {
531 // If DOMAIN_GRANT was selected an access vector must be supplied.
532 return Err(KsError::sys()).context(
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700533 "Cannot check permission for Domain::GRANT without access vector.",
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700534 );
535 }
536 }
537 }
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700538 Domain::KEY_ID => {
539 // We should never be called with `Domain::KEY_ID. The database
540 // lookup should have converted this into one of `Domain::APP`
541 // or `Domain::SELINUX`.
542 return Err(KsError::sys()).context("Cannot check permission for Domain::KEY_ID.");
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700543 }
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700544 Domain::BLOB => {
545 let tctx = lookup_keystore2_key_context(key.nspace)
546 .context("Domain::BLOB: Failed to lookup namespace.")?;
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700547 // If DOMAIN_KEY_BLOB was specified, we check for the "manage_blob"
548 // permission in addition to the requested permission.
549 selinux::check_access(
550 caller_ctx,
551 &tctx,
552 "keystore2_key",
553 KeyPerm::manage_blob().to_selinux(),
554 )?;
555
556 tctx
557 }
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700558 _ => {
559 return Err(KsError::sys())
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700560 .context(format!("Unknown domain value: \"{:?}\".", key.domain))
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700561 }
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700562 };
563
564 selinux::check_access(caller_ctx, &target_context, "keystore2_key", perm.to_selinux())
565}
566
567#[cfg(test)]
568mod tests {
569 use super::*;
570 use anyhow::anyhow;
571 use anyhow::Result;
572 use keystore2_selinux::*;
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700573
574 const ALL_PERMS: KeyPermSet = key_perm_set![
575 KeyPerm::manage_blob(),
576 KeyPerm::delete(),
577 KeyPerm::use_dev_id(),
578 KeyPerm::req_forced_op(),
579 KeyPerm::gen_unique_id(),
580 KeyPerm::grant(),
581 KeyPerm::get_info(),
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700582 KeyPerm::rebind(),
583 KeyPerm::update(),
584 KeyPerm::use_(),
585 ];
586
Janis Danisevskisa31dd9e2021-01-30 00:13:17 -0800587 const SYSTEM_SERVER_PERMISSIONS_NO_GRANT: KeyPermSet = key_perm_set![
588 KeyPerm::delete(),
589 KeyPerm::use_dev_id(),
590 // No KeyPerm::grant()
591 KeyPerm::get_info(),
592 KeyPerm::rebind(),
593 KeyPerm::update(),
594 KeyPerm::use_(),
595 ];
596
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700597 const NOT_GRANT_PERMS: KeyPermSet = key_perm_set![
598 KeyPerm::manage_blob(),
599 KeyPerm::delete(),
600 KeyPerm::use_dev_id(),
601 KeyPerm::req_forced_op(),
602 KeyPerm::gen_unique_id(),
603 // No KeyPerm::grant()
604 KeyPerm::get_info(),
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700605 KeyPerm::rebind(),
606 KeyPerm::update(),
607 KeyPerm::use_(),
608 ];
609
610 const UNPRIV_PERMS: KeyPermSet = key_perm_set![
611 KeyPerm::delete(),
612 KeyPerm::get_info(),
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700613 KeyPerm::rebind(),
614 KeyPerm::update(),
615 KeyPerm::use_(),
616 ];
617
618 /// The su_key namespace as defined in su.te and keystore_key_contexts of the
619 /// SePolicy (system/sepolicy).
620 const SU_KEY_NAMESPACE: i32 = 0;
621 /// The shell_key namespace as defined in shell.te and keystore_key_contexts of the
622 /// SePolicy (system/sepolicy).
623 const SHELL_KEY_NAMESPACE: i32 = 1;
624
625 pub fn test_getcon() -> Result<Context> {
626 Context::new("u:object_r:keystore:s0")
627 }
628
629 // This macro evaluates the given expression and checks that
630 // a) evaluated to Result::Err() and that
631 // b) the wrapped error is selinux::Error::perm() (permission denied).
632 // We use a macro here because a function would mask which invocation caused the failure.
633 //
634 // TODO b/164121720 Replace this macro with a function when `track_caller` is available.
635 macro_rules! assert_perm_failed {
636 ($test_function:expr) => {
637 let result = $test_function;
638 assert!(result.is_err(), "Permission check should have failed.");
639 assert_eq!(
640 Some(&selinux::Error::perm()),
641 result.err().unwrap().root_cause().downcast_ref::<selinux::Error>()
642 );
643 };
644 }
645
646 fn check_context() -> Result<(selinux::Context, i32, bool)> {
647 // Calling the non mocked selinux::getcon here intended.
648 let context = selinux::getcon()?;
649 match context.to_str().unwrap() {
650 "u:r:su:s0" => Ok((context, SU_KEY_NAMESPACE, true)),
651 "u:r:shell:s0" => Ok((context, SHELL_KEY_NAMESPACE, false)),
652 c => Err(anyhow!(format!(
653 "This test must be run as \"su\" or \"shell\". Current context: \"{}\"",
654 c
655 ))),
656 }
657 }
658
659 #[test]
660 fn check_keystore_permission_test() -> Result<()> {
661 let system_server_ctx = Context::new("u:r:system_server:s0")?;
662 assert!(check_keystore_permission(&system_server_ctx, KeystorePerm::add_auth()).is_ok());
663 assert!(check_keystore_permission(&system_server_ctx, KeystorePerm::clear_ns()).is_ok());
664 assert!(check_keystore_permission(&system_server_ctx, KeystorePerm::get_state()).is_ok());
665 assert!(check_keystore_permission(&system_server_ctx, KeystorePerm::lock()).is_ok());
666 assert!(check_keystore_permission(&system_server_ctx, KeystorePerm::reset()).is_ok());
667 assert!(check_keystore_permission(&system_server_ctx, KeystorePerm::unlock()).is_ok());
Hasini Gunasinghe803c2d42021-01-27 00:48:40 +0000668 assert!(check_keystore_permission(&system_server_ctx, KeystorePerm::change_user()).is_ok());
669 assert!(
670 check_keystore_permission(&system_server_ctx, KeystorePerm::change_password()).is_ok()
671 );
672 assert!(check_keystore_permission(&system_server_ctx, KeystorePerm::clear_uid()).is_ok());
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700673 let shell_ctx = Context::new("u:r:shell:s0")?;
674 assert_perm_failed!(check_keystore_permission(&shell_ctx, KeystorePerm::add_auth()));
675 assert_perm_failed!(check_keystore_permission(&shell_ctx, KeystorePerm::clear_ns()));
676 assert_perm_failed!(check_keystore_permission(&shell_ctx, KeystorePerm::get_state()));
Janis Danisevskisee10b5f2020-09-22 16:42:35 -0700677 assert_perm_failed!(check_keystore_permission(&shell_ctx, KeystorePerm::list()));
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700678 assert_perm_failed!(check_keystore_permission(&shell_ctx, KeystorePerm::lock()));
679 assert_perm_failed!(check_keystore_permission(&shell_ctx, KeystorePerm::reset()));
680 assert_perm_failed!(check_keystore_permission(&shell_ctx, KeystorePerm::unlock()));
Hasini Gunasinghe803c2d42021-01-27 00:48:40 +0000681 assert_perm_failed!(check_keystore_permission(&shell_ctx, KeystorePerm::change_user()));
682 assert_perm_failed!(check_keystore_permission(&shell_ctx, KeystorePerm::change_password()));
683 assert_perm_failed!(check_keystore_permission(&shell_ctx, KeystorePerm::clear_uid()));
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700684 Ok(())
685 }
686
687 #[test]
688 fn check_grant_permission_app() -> Result<()> {
689 let system_server_ctx = Context::new("u:r:system_server:s0")?;
690 let shell_ctx = Context::new("u:r:shell:s0")?;
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700691 let key = KeyDescriptor { domain: Domain::APP, nspace: 0, alias: None, blob: None };
Janis Danisevskisa31dd9e2021-01-30 00:13:17 -0800692 check_grant_permission(&system_server_ctx, SYSTEM_SERVER_PERMISSIONS_NO_GRANT, &key)
693 .expect("Grant permission check failed.");
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700694
Janis Danisevskisa31dd9e2021-01-30 00:13:17 -0800695 // attempts to grant the grant permission must always fail even when privileged.
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700696 assert_perm_failed!(check_grant_permission(
697 &system_server_ctx,
698 KeyPerm::grant().into(),
699 &key
700 ));
701 // unprivileged grant attempts always fail. shell does not have the grant permission.
702 assert_perm_failed!(check_grant_permission(&shell_ctx, UNPRIV_PERMS, &key));
703 Ok(())
704 }
705
706 #[test]
707 fn check_grant_permission_selinux() -> Result<()> {
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700708 let (sctx, namespace, is_su) = check_context()?;
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700709 let key = KeyDescriptor {
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700710 domain: Domain::SELINUX,
711 nspace: namespace as i64,
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700712 alias: None,
713 blob: None,
714 };
715 if is_su {
716 assert!(check_grant_permission(&sctx, NOT_GRANT_PERMS, &key).is_ok());
717 // attempts to grant the grant permission must always fail even when privileged.
718 assert_perm_failed!(check_grant_permission(&sctx, KeyPerm::grant().into(), &key));
719 } else {
720 // unprivileged grant attempts always fail. shell does not have the grant permission.
721 assert_perm_failed!(check_grant_permission(&sctx, UNPRIV_PERMS, &key));
722 }
723 Ok(())
724 }
725
726 #[test]
727 fn check_key_permission_domain_grant() -> Result<()> {
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700728 let key = KeyDescriptor { domain: Domain::GRANT, nspace: 0, alias: None, blob: None };
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700729
730 assert_perm_failed!(check_key_permission(
Janis Danisevskis45760022021-01-19 16:34:10 -0800731 0,
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700732 &selinux::Context::new("ignored").unwrap(),
733 KeyPerm::grant(),
734 &key,
735 &Some(UNPRIV_PERMS)
736 ));
737
738 check_key_permission(
Janis Danisevskis45760022021-01-19 16:34:10 -0800739 0,
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700740 &selinux::Context::new("ignored").unwrap(),
741 KeyPerm::use_(),
742 &key,
743 &Some(ALL_PERMS),
744 )
745 }
746
747 #[test]
748 fn check_key_permission_domain_app() -> Result<()> {
749 let system_server_ctx = Context::new("u:r:system_server:s0")?;
750 let shell_ctx = Context::new("u:r:shell:s0")?;
751 let gmscore_app = Context::new("u:r:gmscore_app:s0")?;
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700752
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700753 let key = KeyDescriptor { domain: Domain::APP, nspace: 0, alias: None, blob: None };
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700754
Janis Danisevskis45760022021-01-19 16:34:10 -0800755 assert!(check_key_permission(0, &system_server_ctx, KeyPerm::use_(), &key, &None).is_ok());
756 assert!(check_key_permission(0, &system_server_ctx, KeyPerm::delete(), &key, &None).is_ok());
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700757 assert!(
Janis Danisevskis45760022021-01-19 16:34:10 -0800758 check_key_permission(0, &system_server_ctx, KeyPerm::get_info(), &key, &None).is_ok()
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700759 );
Janis Danisevskis45760022021-01-19 16:34:10 -0800760 assert!(check_key_permission(0, &system_server_ctx, KeyPerm::rebind(), &key, &None).is_ok());
761 assert!(check_key_permission(0, &system_server_ctx, KeyPerm::update(), &key, &None).is_ok());
762 assert!(check_key_permission(0, &system_server_ctx, KeyPerm::grant(), &key, &None).is_ok());
763 assert!(
764 check_key_permission(0, &system_server_ctx, KeyPerm::use_dev_id(), &key, &None).is_ok()
765 );
766 assert!(
767 check_key_permission(0, &gmscore_app, KeyPerm::gen_unique_id(), &key, &None).is_ok()
768 );
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700769
Janis Danisevskis45760022021-01-19 16:34:10 -0800770 assert!(check_key_permission(0, &shell_ctx, KeyPerm::use_(), &key, &None).is_ok());
771 assert!(check_key_permission(0, &shell_ctx, KeyPerm::delete(), &key, &None).is_ok());
772 assert!(check_key_permission(0, &shell_ctx, KeyPerm::get_info(), &key, &None).is_ok());
773 assert!(check_key_permission(0, &shell_ctx, KeyPerm::rebind(), &key, &None).is_ok());
774 assert!(check_key_permission(0, &shell_ctx, KeyPerm::update(), &key, &None).is_ok());
775 assert_perm_failed!(check_key_permission(0, &shell_ctx, KeyPerm::grant(), &key, &None));
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700776 assert_perm_failed!(check_key_permission(
Janis Danisevskis45760022021-01-19 16:34:10 -0800777 0,
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700778 &shell_ctx,
779 KeyPerm::req_forced_op(),
780 &key,
781 &None
782 ));
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700783 assert_perm_failed!(check_key_permission(
Janis Danisevskis45760022021-01-19 16:34:10 -0800784 0,
785 &shell_ctx,
786 KeyPerm::manage_blob(),
787 &key,
788 &None
789 ));
790 assert_perm_failed!(check_key_permission(
791 0,
792 &shell_ctx,
793 KeyPerm::use_dev_id(),
794 &key,
795 &None
796 ));
797 assert_perm_failed!(check_key_permission(
798 0,
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700799 &shell_ctx,
800 KeyPerm::gen_unique_id(),
801 &key,
802 &None
803 ));
804
Janis Danisevskis45760022021-01-19 16:34:10 -0800805 // Also make sure that the permission fails if the caller is not the owner.
806 assert_perm_failed!(check_key_permission(
807 1, // the owner is 0
808 &system_server_ctx,
809 KeyPerm::use_(),
810 &key,
811 &None
812 ));
813 // Unless there was a grant.
814 assert!(check_key_permission(
815 1,
816 &system_server_ctx,
817 KeyPerm::use_(),
818 &key,
819 &Some(key_perm_set![KeyPerm::use_()])
820 )
821 .is_ok());
822 // But fail if the grant did not cover the requested permission.
823 assert_perm_failed!(check_key_permission(
824 1,
825 &system_server_ctx,
826 KeyPerm::use_(),
827 &key,
828 &Some(key_perm_set![KeyPerm::get_info()])
829 ));
830
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700831 Ok(())
832 }
833
834 #[test]
835 fn check_key_permission_domain_selinux() -> Result<()> {
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700836 let (sctx, namespace, is_su) = check_context()?;
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700837 let key = KeyDescriptor {
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700838 domain: Domain::SELINUX,
839 nspace: namespace as i64,
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700840 alias: None,
841 blob: None,
842 };
843
844 if is_su {
Janis Danisevskis45760022021-01-19 16:34:10 -0800845 assert!(check_key_permission(0, &sctx, KeyPerm::use_(), &key, &None).is_ok());
846 assert!(check_key_permission(0, &sctx, KeyPerm::delete(), &key, &None).is_ok());
847 assert!(check_key_permission(0, &sctx, KeyPerm::get_info(), &key, &None).is_ok());
848 assert!(check_key_permission(0, &sctx, KeyPerm::rebind(), &key, &None).is_ok());
849 assert!(check_key_permission(0, &sctx, KeyPerm::update(), &key, &None).is_ok());
850 assert!(check_key_permission(0, &sctx, KeyPerm::grant(), &key, &None).is_ok());
851 assert!(check_key_permission(0, &sctx, KeyPerm::manage_blob(), &key, &None).is_ok());
852 assert!(check_key_permission(0, &sctx, KeyPerm::use_dev_id(), &key, &None).is_ok());
853 assert!(check_key_permission(0, &sctx, KeyPerm::gen_unique_id(), &key, &None).is_ok());
854 assert!(check_key_permission(0, &sctx, KeyPerm::req_forced_op(), &key, &None).is_ok());
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700855 } else {
Janis Danisevskis45760022021-01-19 16:34:10 -0800856 assert!(check_key_permission(0, &sctx, KeyPerm::use_(), &key, &None).is_ok());
857 assert!(check_key_permission(0, &sctx, KeyPerm::delete(), &key, &None).is_ok());
858 assert!(check_key_permission(0, &sctx, KeyPerm::get_info(), &key, &None).is_ok());
859 assert!(check_key_permission(0, &sctx, KeyPerm::rebind(), &key, &None).is_ok());
860 assert!(check_key_permission(0, &sctx, KeyPerm::update(), &key, &None).is_ok());
861 assert_perm_failed!(check_key_permission(0, &sctx, KeyPerm::grant(), &key, &None));
862 assert_perm_failed!(check_key_permission(
863 0,
864 &sctx,
865 KeyPerm::req_forced_op(),
866 &key,
867 &None
868 ));
869 assert_perm_failed!(check_key_permission(
870 0,
871 &sctx,
872 KeyPerm::manage_blob(),
873 &key,
874 &None
875 ));
876 assert_perm_failed!(check_key_permission(0, &sctx, KeyPerm::use_dev_id(), &key, &None));
877 assert_perm_failed!(check_key_permission(
878 0,
879 &sctx,
880 KeyPerm::gen_unique_id(),
881 &key,
882 &None
883 ));
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700884 }
885 Ok(())
886 }
887
888 #[test]
889 fn check_key_permission_domain_blob() -> Result<()> {
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700890 let (sctx, namespace, is_su) = check_context()?;
Janis Danisevskis1b3a6e22020-08-07 12:39:56 -0700891 let key = KeyDescriptor {
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700892 domain: Domain::BLOB,
893 nspace: namespace as i64,
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700894 alias: None,
895 blob: None,
896 };
897
898 if is_su {
Janis Danisevskis45760022021-01-19 16:34:10 -0800899 check_key_permission(0, &sctx, KeyPerm::use_(), &key, &None)
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700900 } else {
Janis Danisevskis45760022021-01-19 16:34:10 -0800901 assert_perm_failed!(check_key_permission(0, &sctx, KeyPerm::use_(), &key, &None));
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700902 Ok(())
903 }
904 }
905
906 #[test]
907 fn check_key_permission_domain_key_id() -> Result<()> {
Janis Danisevskisc5b210b2020-09-11 13:27:37 -0700908 let key = KeyDescriptor { domain: Domain::KEY_ID, nspace: 0, alias: None, blob: None };
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700909
910 assert_eq!(
911 Some(&KsError::sys()),
912 check_key_permission(
Janis Danisevskis45760022021-01-19 16:34:10 -0800913 0,
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700914 &selinux::Context::new("ignored").unwrap(),
915 KeyPerm::use_(),
916 &key,
917 &None
918 )
919 .err()
920 .unwrap()
921 .root_cause()
922 .downcast_ref::<KsError>()
923 );
924 Ok(())
925 }
926
927 #[test]
928 fn key_perm_set_all_test() {
929 let v = key_perm_set![
930 KeyPerm::manage_blob(),
931 KeyPerm::delete(),
932 KeyPerm::use_dev_id(),
933 KeyPerm::req_forced_op(),
934 KeyPerm::gen_unique_id(),
935 KeyPerm::grant(),
936 KeyPerm::get_info(),
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700937 KeyPerm::rebind(),
938 KeyPerm::update(),
939 KeyPerm::use_() // Test if the macro accepts missing comma at the end of the list.
940 ];
941 let mut i = v.into_iter();
942 assert_eq!(i.next().unwrap().to_selinux(), "delete");
943 assert_eq!(i.next().unwrap().to_selinux(), "gen_unique_id");
944 assert_eq!(i.next().unwrap().to_selinux(), "get_info");
945 assert_eq!(i.next().unwrap().to_selinux(), "grant");
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700946 assert_eq!(i.next().unwrap().to_selinux(), "manage_blob");
947 assert_eq!(i.next().unwrap().to_selinux(), "rebind");
948 assert_eq!(i.next().unwrap().to_selinux(), "req_forced_op");
949 assert_eq!(i.next().unwrap().to_selinux(), "update");
950 assert_eq!(i.next().unwrap().to_selinux(), "use");
951 assert_eq!(i.next().unwrap().to_selinux(), "use_dev_id");
952 assert_eq!(None, i.next());
953 }
954 #[test]
955 fn key_perm_set_sparse_test() {
956 let v = key_perm_set![
957 KeyPerm::manage_blob(),
958 KeyPerm::req_forced_op(),
959 KeyPerm::gen_unique_id(),
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700960 KeyPerm::update(),
961 KeyPerm::use_(), // Test if macro accepts the comma at the end of the list.
962 ];
963 let mut i = v.into_iter();
964 assert_eq!(i.next().unwrap().to_selinux(), "gen_unique_id");
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700965 assert_eq!(i.next().unwrap().to_selinux(), "manage_blob");
966 assert_eq!(i.next().unwrap().to_selinux(), "req_forced_op");
967 assert_eq!(i.next().unwrap().to_selinux(), "update");
968 assert_eq!(i.next().unwrap().to_selinux(), "use");
969 assert_eq!(None, i.next());
970 }
971 #[test]
972 fn key_perm_set_empty_test() {
973 let v = key_perm_set![];
974 let mut i = v.into_iter();
975 assert_eq!(None, i.next());
976 }
977 #[test]
978 fn key_perm_set_include_subset_test() {
979 let v1 = key_perm_set![
980 KeyPerm::manage_blob(),
981 KeyPerm::delete(),
982 KeyPerm::use_dev_id(),
983 KeyPerm::req_forced_op(),
984 KeyPerm::gen_unique_id(),
985 KeyPerm::grant(),
986 KeyPerm::get_info(),
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700987 KeyPerm::rebind(),
988 KeyPerm::update(),
989 KeyPerm::use_(),
990 ];
991 let v2 = key_perm_set![
992 KeyPerm::manage_blob(),
993 KeyPerm::delete(),
Janis Danisevskis78bd48c2020-07-21 12:27:13 -0700994 KeyPerm::rebind(),
995 KeyPerm::update(),
996 KeyPerm::use_(),
997 ];
998 assert!(v1.includes(v2));
999 assert!(!v2.includes(v1));
1000 }
1001 #[test]
1002 fn key_perm_set_include_equal_test() {
1003 let v1 = key_perm_set![
1004 KeyPerm::manage_blob(),
1005 KeyPerm::delete(),
Janis Danisevskis78bd48c2020-07-21 12:27:13 -07001006 KeyPerm::rebind(),
1007 KeyPerm::update(),
1008 KeyPerm::use_(),
1009 ];
1010 let v2 = key_perm_set![
1011 KeyPerm::manage_blob(),
1012 KeyPerm::delete(),
Janis Danisevskis78bd48c2020-07-21 12:27:13 -07001013 KeyPerm::rebind(),
1014 KeyPerm::update(),
1015 KeyPerm::use_(),
1016 ];
1017 assert!(v1.includes(v2));
1018 assert!(v2.includes(v1));
1019 }
1020 #[test]
1021 fn key_perm_set_include_overlap_test() {
1022 let v1 = key_perm_set![
1023 KeyPerm::manage_blob(),
1024 KeyPerm::delete(),
1025 KeyPerm::grant(), // only in v1
Janis Danisevskis78bd48c2020-07-21 12:27:13 -07001026 KeyPerm::rebind(),
1027 KeyPerm::update(),
1028 KeyPerm::use_(),
1029 ];
1030 let v2 = key_perm_set![
1031 KeyPerm::manage_blob(),
1032 KeyPerm::delete(),
1033 KeyPerm::req_forced_op(), // only in v2
Janis Danisevskis78bd48c2020-07-21 12:27:13 -07001034 KeyPerm::rebind(),
1035 KeyPerm::update(),
1036 KeyPerm::use_(),
1037 ];
1038 assert!(!v1.includes(v2));
1039 assert!(!v2.includes(v1));
1040 }
1041 #[test]
1042 fn key_perm_set_include_no_overlap_test() {
1043 let v1 = key_perm_set![KeyPerm::manage_blob(), KeyPerm::delete(), KeyPerm::grant(),];
1044 let v2 = key_perm_set![
1045 KeyPerm::req_forced_op(),
Janis Danisevskis78bd48c2020-07-21 12:27:13 -07001046 KeyPerm::rebind(),
1047 KeyPerm::update(),
1048 KeyPerm::use_(),
1049 ];
1050 assert!(!v1.includes(v2));
1051 assert!(!v2.includes(v1));
1052 }
1053}