1 /*
2  * Copyright (C) 2019 The Android Open Source Project
3  *
4  * Licensed under the Apache License, Version 2.0 (the "License");
5  * you may not use this file except in compliance with the License.
6  * You may obtain a copy of the License at
7  *
8  *      http://www.apache.org/licenses/LICENSE-2.0
9  *
10  * Unless required by applicable law or agreed to in writing, software
11  * distributed under the License is distributed on an "AS IS" BASIS,
12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13  * See the License for the specific language governing permissions and
14  * limitations under the License.
15  */
16 
17 #include "mount_namespace.h"
18 
19 #include <sys/mount.h>
20 
21 #include <string>
22 #include <vector>
23 
24 #include <ApexProperties.sysprop.h>
25 #include <android-base/file.h>
26 #include <android-base/logging.h>
27 #include <android-base/properties.h>
28 #include <android-base/result.h>
29 #include <android-base/unique_fd.h>
30 
31 #include "util.h"
32 
33 #ifndef RECOVERY
34 #define ACTIVATE_FLATTENED_APEX 1
35 #endif
36 
37 #ifdef ACTIVATE_FLATTENED_APEX
38 #include <apex_manifest.pb.h>
39 #include <com_android_apex.h>
40 #include <selinux/android.h>
41 #endif  // ACTIVATE_FLATTENED_APEX
42 
43 namespace android {
44 namespace init {
45 namespace {
46 
BindMount(const std::string & source,const std::string & mount_point)47 static bool BindMount(const std::string& source, const std::string& mount_point) {
48     if (mount(source.c_str(), mount_point.c_str(), nullptr, MS_BIND | MS_REC, nullptr) == -1) {
49         PLOG(ERROR) << "Failed to bind mount " << source;
50         return false;
51     }
52     return true;
53 }
54 
ChangeMount(const std::string & mount_point,unsigned long mountflags)55 static bool ChangeMount(const std::string& mount_point, unsigned long mountflags) {
56     if (mount(nullptr, mount_point.c_str(), nullptr, mountflags, nullptr) == -1) {
57         PLOG(ERROR) << "Failed to remount " << mount_point << " as " << std::hex << mountflags;
58         return false;
59     }
60     return true;
61 }
62 
OpenMountNamespace()63 static int OpenMountNamespace() {
64     int fd = open("/proc/self/ns/mnt", O_RDONLY | O_CLOEXEC);
65     if (fd < 0) {
66         PLOG(ERROR) << "Cannot open fd for current mount namespace";
67     }
68     return fd;
69 }
70 
GetMountNamespaceId()71 static std::string GetMountNamespaceId() {
72     std::string ret;
73     if (!android::base::Readlink("/proc/self/ns/mnt", &ret)) {
74         PLOG(ERROR) << "Failed to read namespace ID";
75         return "";
76     }
77     return ret;
78 }
79 
IsApexUpdatable()80 static bool IsApexUpdatable() {
81     static bool updatable = android::sysprop::ApexProperties::updatable().value_or(false);
82     return updatable;
83 }
84 
85 #ifdef ACTIVATE_FLATTENED_APEX
86 
MountDir(const std::string & path,const std::string & mount_path)87 static Result<void> MountDir(const std::string& path, const std::string& mount_path) {
88     if (int ret = mkdir(mount_path.c_str(), 0755); ret != 0 && errno != EEXIST) {
89         return ErrnoError() << "Could not create mount point " << mount_path;
90     }
91     if (mount(path.c_str(), mount_path.c_str(), nullptr, MS_BIND, nullptr) != 0) {
92         return ErrnoError() << "Could not bind mount " << path << " to " << mount_path;
93     }
94     return {};
95 }
96 
GetApexManifest(const std::string & apex_dir)97 static Result<apex::proto::ApexManifest> GetApexManifest(const std::string& apex_dir) {
98     const std::string manifest_path = apex_dir + "/apex_manifest.pb";
99     std::string content;
100     if (!android::base::ReadFileToString(manifest_path, &content)) {
101         return Error() << "Failed to read manifest file: " << manifest_path;
102     }
103     apex::proto::ApexManifest manifest;
104     if (!manifest.ParseFromString(content)) {
105         return Error() << "Can't parse manifest file: " << manifest_path;
106     }
107     return manifest;
108 }
109 
110 template <typename Fn>
ActivateFlattenedApexesFrom(const std::string & from_dir,const std::string & to_dir,Fn on_activate)111 static Result<void> ActivateFlattenedApexesFrom(const std::string& from_dir,
112                                                 const std::string& to_dir, Fn on_activate) {
113     std::unique_ptr<DIR, decltype(&closedir)> dir(opendir(from_dir.c_str()), closedir);
114     if (!dir) {
115         return {};
116     }
117     dirent* entry;
118     while ((entry = readdir(dir.get())) != nullptr) {
119         if (entry->d_name[0] == '.') continue;
120         if (entry->d_type == DT_DIR) {
121             const std::string apex_path = from_dir + "/" + entry->d_name;
122             const auto apex_manifest = GetApexManifest(apex_path);
123             if (!apex_manifest.ok()) {
124                 LOG(ERROR) << apex_path << " is not an APEX directory: " << apex_manifest.error();
125                 continue;
126             }
127             const std::string mount_path = to_dir + "/" + apex_manifest->name();
128             if (auto result = MountDir(apex_path, mount_path); !result.ok()) {
129                 return result;
130             }
131             on_activate(apex_path, *apex_manifest);
132         }
133     }
134     return {};
135 }
136 
ActivateFlattenedApexesIfPossible()137 static bool ActivateFlattenedApexesIfPossible() {
138     if (IsRecoveryMode() || IsApexUpdatable()) {
139         return true;
140     }
141 
142     const std::string kApexTop = "/apex";
143     const std::vector<std::string> kBuiltinDirsForApexes = {
144             "/system/apex",
145             "/system_ext/apex",
146             "/product/apex",
147             "/vendor/apex",
148     };
149 
150     std::vector<com::android::apex::ApexInfo> apex_infos;
151     auto on_activate = [&](const std::string& apex_path,
152                            const apex::proto::ApexManifest& apex_manifest) {
153         apex_infos.emplace_back(apex_manifest.name(), apex_path, apex_path, apex_manifest.version(),
154                                 apex_manifest.versionname(), /*isFactory=*/true, /*isActive=*/true);
155     };
156 
157     for (const auto& dir : kBuiltinDirsForApexes) {
158         if (auto result = ActivateFlattenedApexesFrom(dir, kApexTop, on_activate); !result.ok()) {
159             LOG(ERROR) << result.error();
160             return false;
161         }
162     }
163 
164     std::ostringstream oss;
165     com::android::apex::ApexInfoList apex_info_list(apex_infos);
166     com::android::apex::write(oss, apex_info_list);
167     const std::string kApexInfoList = kApexTop + "/apex-info-list.xml";
168     if (!android::base::WriteStringToFile(oss.str(), kApexInfoList)) {
169         PLOG(ERROR) << "Failed to write " << kApexInfoList;
170         return false;
171     }
172     if (selinux_android_restorecon(kApexInfoList.c_str(), 0) != 0) {
173         PLOG(ERROR) << "selinux_android_restorecon(" << kApexInfoList << ") failed";
174     }
175 
176     return true;
177 }
178 
179 #endif  // ACTIVATE_FLATTENED_APEX
180 
181 static android::base::unique_fd bootstrap_ns_fd;
182 static android::base::unique_fd default_ns_fd;
183 
184 static std::string bootstrap_ns_id;
185 static std::string default_ns_id;
186 
187 }  // namespace
188 
SetupMountNamespaces()189 bool SetupMountNamespaces() {
190     // Set the propagation type of / as shared so that any mounting event (e.g.
191     // /data) is by default visible to all processes. When private mounting is
192     // needed for /foo/bar, then we will make /foo/bar as a mount point (by
193     // bind-mounting by to itself) and set the propagation type of the mount
194     // point to private.
195     if (!ChangeMount("/", MS_SHARED | MS_REC)) return false;
196 
197     // /apex is a private mountpoint to give different sets of APEXes for
198     // the bootstrap and default mount namespaces. The processes running with
199     // the bootstrap namespace get APEXes from the read-only partition.
200     if (!(ChangeMount("/apex", MS_PRIVATE))) return false;
201 
202     // /linkerconfig is a private mountpoint to give a different linker configuration
203     // based on the mount namespace. Subdirectory will be bind-mounted based on current mount
204     // namespace
205     if (!(ChangeMount("/linkerconfig", MS_PRIVATE))) return false;
206 
207     // The two mount namespaces present challenges for scoped storage, because
208     // vold, which is responsible for most of the mounting, lives in the
209     // bootstrap mount namespace, whereas most other daemons and all apps live
210     // in the default namespace.  Scoped storage has a need for a
211     // /mnt/installer view that is a slave bind mount of /mnt/user - in other
212     // words, all mounts under /mnt/user should automatically show up under
213     // /mnt/installer. However, additional mounts done under /mnt/installer
214     // should not propagate back to /mnt/user. In a single mount namespace
215     // this is easy to achieve, by simply marking the /mnt/installer a slave
216     // bind mount. Unfortunately, if /mnt/installer is only created and
217     // bind mounted after the two namespaces are created below, we end up
218     // with the following situation:
219     // /mnt/user and /mnt/installer share the same peer group in both the
220     // bootstrap and default namespaces. Marking /mnt/installer slave in either
221     // namespace means that it won't propagate events to the /mnt/installer in
222     // the other namespace, which is still something we require - vold is the
223     // one doing the mounting under /mnt/installer, and those mounts should
224     // show up in the default namespace as well.
225     //
226     // The simplest solution is to do the bind mount before the two namespaces
227     // are created: the effect is that in both namespaces, /mnt/installer is a
228     // slave to the /mnt/user mount, and at the same time /mnt/installer in the
229     // bootstrap namespace shares a peer group with /mnt/installer in the
230     // default namespace.
231     // /mnt/androidwritable is similar to /mnt/installer but serves for
232     // MOUNT_EXTERNAL_ANDROID_WRITABLE apps.
233     if (!mkdir_recursive("/mnt/user", 0755)) return false;
234     if (!mkdir_recursive("/mnt/installer", 0755)) return false;
235     if (!mkdir_recursive("/mnt/androidwritable", 0755)) return false;
236     if (!(BindMount("/mnt/user", "/mnt/installer"))) return false;
237     if (!(BindMount("/mnt/user", "/mnt/androidwritable"))) return false;
238     // First, make /mnt/installer and /mnt/androidwritable a slave bind mount
239     if (!(ChangeMount("/mnt/installer", MS_SLAVE))) return false;
240     if (!(ChangeMount("/mnt/androidwritable", MS_SLAVE))) return false;
241     // Then, make it shared again - effectively creating a new peer group, that
242     // will be inherited by new mount namespaces.
243     if (!(ChangeMount("/mnt/installer", MS_SHARED))) return false;
244     if (!(ChangeMount("/mnt/androidwritable", MS_SHARED))) return false;
245 
246     bootstrap_ns_fd.reset(OpenMountNamespace());
247     bootstrap_ns_id = GetMountNamespaceId();
248 
249     // When APEXes are updatable (e.g. not-flattened), we create separate mount
250     // namespaces for processes that are started before and after the APEX is
251     // activated by apexd. In the namespace for pre-apexd processes, small
252     // number of essential APEXes (e.g. com.android.runtime) are activated.
253     // In the namespace for post-apexd processes, all APEXes are activated.
254     bool success = true;
255     if (IsApexUpdatable() && !IsRecoveryMode()) {
256         // Creating a new namespace by cloning, saving, and switching back to
257         // the original namespace.
258         if (unshare(CLONE_NEWNS) == -1) {
259             PLOG(ERROR) << "Cannot create mount namespace";
260             return false;
261         }
262         default_ns_fd.reset(OpenMountNamespace());
263         default_ns_id = GetMountNamespaceId();
264 
265         if (setns(bootstrap_ns_fd.get(), CLONE_NEWNS) == -1) {
266             PLOG(ERROR) << "Cannot switch back to bootstrap mount namespace";
267             return false;
268         }
269     } else {
270         // Otherwise, default == bootstrap
271         default_ns_fd.reset(OpenMountNamespace());
272         default_ns_id = GetMountNamespaceId();
273     }
274 #ifdef ACTIVATE_FLATTENED_APEX
275     success &= ActivateFlattenedApexesIfPossible();
276 #endif
277     LOG(INFO) << "SetupMountNamespaces done";
278     return success;
279 }
280 
SwitchToMountNamespaceIfNeeded(MountNamespace target_mount_namespace)281 Result<void> SwitchToMountNamespaceIfNeeded(MountNamespace target_mount_namespace) {
282     if (IsRecoveryMode() || !IsApexUpdatable()) {
283         // we don't have multiple namespaces in recovery mode or if apex is not updatable
284         return {};
285     }
286     const auto& ns_id = target_mount_namespace == NS_BOOTSTRAP ? bootstrap_ns_id : default_ns_id;
287     const auto& ns_fd = target_mount_namespace == NS_BOOTSTRAP ? bootstrap_ns_fd : default_ns_fd;
288     const auto& ns_name = target_mount_namespace == NS_BOOTSTRAP ? "bootstrap" : "default";
289     if (ns_id != GetMountNamespaceId() && ns_fd.get() != -1) {
290         if (setns(ns_fd.get(), CLONE_NEWNS) == -1) {
291             return ErrnoError() << "Failed to switch to " << ns_name << " mount namespace.";
292         }
293     }
294     return {};
295 }
296 
297 }  // namespace init
298 }  // namespace android
299