1 /*
2 * Copyright (C) 2015 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 "Utils.h"
18
19 #include "Process.h"
20 #include "sehandle.h"
21
22 #include <android-base/chrono_utils.h>
23 #include <android-base/file.h>
24 #include <android-base/logging.h>
25 #include <android-base/properties.h>
26 #include <android-base/scopeguard.h>
27 #include <android-base/stringprintf.h>
28 #include <android-base/strings.h>
29 #include <android-base/unique_fd.h>
30 #include <cutils/fs.h>
31 #include <logwrap/logwrap.h>
32 #include <private/android_filesystem_config.h>
33 #include <private/android_projectid_config.h>
34
35 #include <dirent.h>
36 #include <fcntl.h>
37 #include <linux/fs.h>
38 #include <linux/posix_acl.h>
39 #include <linux/posix_acl_xattr.h>
40 #include <mntent.h>
41 #include <stdio.h>
42 #include <stdlib.h>
43 #include <sys/mount.h>
44 #include <sys/stat.h>
45 #include <sys/statvfs.h>
46 #include <sys/sysmacros.h>
47 #include <sys/types.h>
48 #include <sys/wait.h>
49 #include <sys/xattr.h>
50 #include <unistd.h>
51
52 #include <filesystem>
53 #include <list>
54 #include <mutex>
55 #include <regex>
56 #include <thread>
57
58 #ifndef UMOUNT_NOFOLLOW
59 #define UMOUNT_NOFOLLOW 0x00000008 /* Don't follow symlink on umount */
60 #endif
61
62 using namespace std::chrono_literals;
63 using android::base::EndsWith;
64 using android::base::ReadFileToString;
65 using android::base::StartsWith;
66 using android::base::StringPrintf;
67 using android::base::unique_fd;
68
69 namespace android {
70 namespace vold {
71
72 char* sBlkidContext = nullptr;
73 char* sBlkidUntrustedContext = nullptr;
74 char* sFsckContext = nullptr;
75 char* sFsckUntrustedContext = nullptr;
76
77 bool sSleepOnUnmount = true;
78
79 static const char* kBlkidPath = "/system/bin/blkid";
80 static const char* kKeyPath = "/data/misc/vold";
81
82 static const char* kProcDevices = "/proc/devices";
83 static const char* kProcFilesystems = "/proc/filesystems";
84
85 static const char* kAndroidDir = "/Android/";
86 static const char* kAppDataDir = "/Android/data/";
87 static const char* kAppMediaDir = "/Android/media/";
88 static const char* kAppObbDir = "/Android/obb/";
89
90 static const char* kMediaProviderCtx = "u:r:mediaprovider:";
91 static const char* kMediaProviderAppCtx = "u:r:mediaprovider_app:";
92
93 // Lock used to protect process-level SELinux changes from racing with each
94 // other between multiple threads.
95 static std::mutex kSecurityLock;
96
GetFuseMountPathForUser(userid_t user_id,const std::string & relative_upper_path)97 std::string GetFuseMountPathForUser(userid_t user_id, const std::string& relative_upper_path) {
98 return StringPrintf("/mnt/user/%d/%s", user_id, relative_upper_path.c_str());
99 }
100
CreateDeviceNode(const std::string & path,dev_t dev)101 status_t CreateDeviceNode(const std::string& path, dev_t dev) {
102 std::lock_guard<std::mutex> lock(kSecurityLock);
103 const char* cpath = path.c_str();
104 auto clearfscreatecon = android::base::make_scope_guard([] { setfscreatecon(nullptr); });
105 auto secontext = std::unique_ptr<char, void (*)(char*)>(nullptr, freecon);
106 char* tmp_secontext;
107
108 if (selabel_lookup(sehandle, &tmp_secontext, cpath, S_IFBLK) == 0) {
109 secontext.reset(tmp_secontext);
110 if (setfscreatecon(secontext.get()) != 0) {
111 LOG(ERROR) << "Failed to setfscreatecon for device node " << path;
112 return -EINVAL;
113 }
114 } else if (errno == ENOENT) {
115 LOG(DEBUG) << "No selabel defined for device node " << path;
116 } else {
117 PLOG(ERROR) << "Failed to look up selabel for device node " << path;
118 return -errno;
119 }
120
121 mode_t mode = 0660 | S_IFBLK;
122 if (mknod(cpath, mode, dev) < 0) {
123 if (errno != EEXIST) {
124 PLOG(ERROR) << "Failed to create device node for " << major(dev) << ":" << minor(dev)
125 << " at " << path;
126 return -errno;
127 }
128 }
129 return OK;
130 }
131
DestroyDeviceNode(const std::string & path)132 status_t DestroyDeviceNode(const std::string& path) {
133 const char* cpath = path.c_str();
134 if (TEMP_FAILURE_RETRY(unlink(cpath))) {
135 return -errno;
136 } else {
137 return OK;
138 }
139 }
140
141 // Sets a default ACL on the directory.
SetDefaultAcl(const std::string & path,mode_t mode,uid_t uid,gid_t gid,std::vector<gid_t> additionalGids)142 status_t SetDefaultAcl(const std::string& path, mode_t mode, uid_t uid, gid_t gid,
143 std::vector<gid_t> additionalGids) {
144 if (IsSdcardfsUsed()) {
145 // sdcardfs magically takes care of this
146 return OK;
147 }
148
149 size_t num_entries = 3 + (additionalGids.size() > 0 ? additionalGids.size() + 1 : 0);
150 size_t size = sizeof(posix_acl_xattr_header) + num_entries * sizeof(posix_acl_xattr_entry);
151 auto buf = std::make_unique<uint8_t[]>(size);
152
153 posix_acl_xattr_header* acl_header = reinterpret_cast<posix_acl_xattr_header*>(buf.get());
154 acl_header->a_version = POSIX_ACL_XATTR_VERSION;
155
156 posix_acl_xattr_entry* entry =
157 reinterpret_cast<posix_acl_xattr_entry*>(buf.get() + sizeof(posix_acl_xattr_header));
158
159 int tag_index = 0;
160
161 entry[tag_index].e_tag = ACL_USER_OBJ;
162 // The existing mode_t mask has the ACL in the lower 9 bits:
163 // the lowest 3 for "other", the next 3 the group, the next 3 for the owner
164 // Use the mode_t masks to get these bits out, and shift them to get the
165 // correct value per entity.
166 //
167 // Eg if mode_t = 0700, rwx for the owner, then & S_IRWXU >> 6 results in 7
168 entry[tag_index].e_perm = (mode & S_IRWXU) >> 6;
169 entry[tag_index].e_id = uid;
170 tag_index++;
171
172 entry[tag_index].e_tag = ACL_GROUP_OBJ;
173 entry[tag_index].e_perm = (mode & S_IRWXG) >> 3;
174 entry[tag_index].e_id = gid;
175 tag_index++;
176
177 if (additionalGids.size() > 0) {
178 for (gid_t additional_gid : additionalGids) {
179 entry[tag_index].e_tag = ACL_GROUP;
180 entry[tag_index].e_perm = (mode & S_IRWXG) >> 3;
181 entry[tag_index].e_id = additional_gid;
182 tag_index++;
183 }
184
185 entry[tag_index].e_tag = ACL_MASK;
186 entry[tag_index].e_perm = (mode & S_IRWXG) >> 3;
187 entry[tag_index].e_id = 0;
188 tag_index++;
189 }
190
191 entry[tag_index].e_tag = ACL_OTHER;
192 entry[tag_index].e_perm = mode & S_IRWXO;
193 entry[tag_index].e_id = 0;
194
195 int ret = setxattr(path.c_str(), XATTR_NAME_POSIX_ACL_DEFAULT, acl_header, size, 0);
196
197 if (ret != 0) {
198 PLOG(ERROR) << "Failed to set default ACL on " << path;
199 }
200
201 return ret;
202 }
203
SetQuotaInherit(const std::string & path)204 int SetQuotaInherit(const std::string& path) {
205 unsigned int flags;
206
207 android::base::unique_fd fd(TEMP_FAILURE_RETRY(open(path.c_str(), O_RDONLY | O_CLOEXEC)));
208 if (fd == -1) {
209 PLOG(ERROR) << "Failed to open " << path << " to set project id inheritance.";
210 return -1;
211 }
212
213 int ret = ioctl(fd, FS_IOC_GETFLAGS, &flags);
214 if (ret == -1) {
215 PLOG(ERROR) << "Failed to get flags for " << path << " to set project id inheritance.";
216 return ret;
217 }
218
219 flags |= FS_PROJINHERIT_FL;
220
221 ret = ioctl(fd, FS_IOC_SETFLAGS, &flags);
222 if (ret == -1) {
223 PLOG(ERROR) << "Failed to set flags for " << path << " to set project id inheritance.";
224 return ret;
225 }
226
227 return 0;
228 }
229
SetQuotaProjectId(const std::string & path,long projectId)230 int SetQuotaProjectId(const std::string& path, long projectId) {
231 struct fsxattr fsx;
232
233 android::base::unique_fd fd(TEMP_FAILURE_RETRY(open(path.c_str(), O_RDONLY | O_CLOEXEC)));
234 if (fd == -1) {
235 PLOG(ERROR) << "Failed to open " << path << " to set project id.";
236 return -1;
237 }
238
239 int ret = ioctl(fd, FS_IOC_FSGETXATTR, &fsx);
240 if (ret == -1) {
241 PLOG(ERROR) << "Failed to get extended attributes for " << path << " to get project id.";
242 return ret;
243 }
244
245 fsx.fsx_projid = projectId;
246 ret = ioctl(fd, FS_IOC_FSSETXATTR, &fsx);
247 if (ret == -1) {
248 PLOG(ERROR) << "Failed to set project id on " << path;
249 return ret;
250 }
251 return 0;
252 }
253
PrepareDirWithProjectId(const std::string & path,mode_t mode,uid_t uid,gid_t gid,long projectId)254 int PrepareDirWithProjectId(const std::string& path, mode_t mode, uid_t uid, gid_t gid,
255 long projectId) {
256 int ret = fs_prepare_dir(path.c_str(), mode, uid, gid);
257
258 if (ret != 0) {
259 return ret;
260 }
261
262 if (!IsSdcardfsUsed()) {
263 ret = SetQuotaProjectId(path, projectId);
264 }
265
266 return ret;
267 }
268
FixupAppDir(const std::string & path,mode_t mode,uid_t uid,gid_t gid,long projectId)269 static int FixupAppDir(const std::string& path, mode_t mode, uid_t uid, gid_t gid, long projectId) {
270 namespace fs = std::filesystem;
271
272 // Setup the directory itself correctly
273 int ret = PrepareDirWithProjectId(path, mode, uid, gid, projectId);
274 if (ret != OK) {
275 return ret;
276 }
277
278 // Fixup all of its file entries
279 for (const auto& itEntry : fs::directory_iterator(path)) {
280 ret = lchown(itEntry.path().c_str(), uid, gid);
281 if (ret != 0) {
282 return ret;
283 }
284
285 ret = chmod(itEntry.path().c_str(), mode);
286 if (ret != 0) {
287 return ret;
288 }
289
290 if (!IsSdcardfsUsed()) {
291 ret = SetQuotaProjectId(itEntry.path(), projectId);
292 if (ret != 0) {
293 return ret;
294 }
295 }
296 }
297
298 return OK;
299 }
300
PrepareAppDirFromRoot(const std::string & path,const std::string & root,int appUid,bool fixupExisting)301 int PrepareAppDirFromRoot(const std::string& path, const std::string& root, int appUid,
302 bool fixupExisting) {
303 long projectId;
304 size_t pos;
305 int ret = 0;
306 bool sdcardfsSupport = IsSdcardfsUsed();
307
308 // Make sure the Android/ directories exist and are setup correctly
309 ret = PrepareAndroidDirs(root);
310 if (ret != 0) {
311 LOG(ERROR) << "Failed to prepare Android/ directories.";
312 return ret;
313 }
314
315 // Now create the application-specific subdir(s)
316 // path is something like /data/media/0/Android/data/com.foo/files
317 // First, chop off the volume root, eg /data/media/0
318 std::string pathFromRoot = path.substr(root.length());
319
320 uid_t uid = appUid;
321 gid_t gid = AID_MEDIA_RW;
322 std::vector<gid_t> additionalGids;
323 std::string appDir;
324
325 // Check that the next part matches one of the allowed Android/ dirs
326 if (StartsWith(pathFromRoot, kAppDataDir)) {
327 appDir = kAppDataDir;
328 if (!sdcardfsSupport) {
329 gid = AID_EXT_DATA_RW;
330 // Also add the app's own UID as a group; since apps belong to a group
331 // that matches their UID, this ensures that they will always have access to
332 // the files created in these dirs, even if they are created by other processes
333 additionalGids.push_back(uid);
334 }
335 } else if (StartsWith(pathFromRoot, kAppMediaDir)) {
336 appDir = kAppMediaDir;
337 if (!sdcardfsSupport) {
338 gid = AID_MEDIA_RW;
339 }
340 } else if (StartsWith(pathFromRoot, kAppObbDir)) {
341 appDir = kAppObbDir;
342 if (!sdcardfsSupport) {
343 gid = AID_EXT_OBB_RW;
344 // See comments for kAppDataDir above
345 additionalGids.push_back(uid);
346 }
347 } else {
348 LOG(ERROR) << "Invalid application directory: " << path;
349 return -EINVAL;
350 }
351
352 // mode = 770, plus sticky bit on directory to inherit GID when apps
353 // create subdirs
354 mode_t mode = S_IRWXU | S_IRWXG | S_ISGID;
355 // the project ID for application-specific directories is directly
356 // derived from their uid
357
358 // Chop off the generic application-specific part, eg /Android/data/
359 // this leaves us with something like com.foo/files/
360 std::string leftToCreate = pathFromRoot.substr(appDir.length());
361 if (!EndsWith(leftToCreate, "/")) {
362 leftToCreate += "/";
363 }
364 std::string pathToCreate = root + appDir;
365 int depth = 0;
366 // Derive initial project ID
367 if (appDir == kAppDataDir || appDir == kAppMediaDir) {
368 projectId = uid - AID_APP_START + PROJECT_ID_EXT_DATA_START;
369 } else if (appDir == kAppObbDir) {
370 projectId = uid - AID_APP_START + PROJECT_ID_EXT_OBB_START;
371 }
372
373 while ((pos = leftToCreate.find('/')) != std::string::npos) {
374 std::string component = leftToCreate.substr(0, pos + 1);
375 leftToCreate = leftToCreate.erase(0, pos + 1);
376 pathToCreate = pathToCreate + component;
377
378 if (appDir == kAppDataDir && depth == 1 && component == "cache/") {
379 // All dirs use the "app" project ID, except for the cache dirs in
380 // Android/data, eg Android/data/com.foo/cache
381 // Note that this "sticks" - eg subdirs of this dir need the same
382 // project ID.
383 projectId = uid - AID_APP_START + PROJECT_ID_EXT_CACHE_START;
384 }
385
386 if (fixupExisting && access(pathToCreate.c_str(), F_OK) == 0) {
387 // Fixup all files in this existing directory with the correct UID/GID
388 // and project ID.
389 ret = FixupAppDir(pathToCreate, mode, uid, gid, projectId);
390 } else {
391 ret = PrepareDirWithProjectId(pathToCreate, mode, uid, gid, projectId);
392 }
393
394 if (ret != 0) {
395 return ret;
396 }
397
398 if (depth == 0) {
399 // Set the default ACL on the top-level application-specific directories,
400 // to ensure that even if applications run with a umask of 0077,
401 // new directories within these directories will allow the GID
402 // specified here to write; this is necessary for apps like
403 // installers and MTP, that require access here.
404 //
405 // See man (5) acl for more details.
406 ret = SetDefaultAcl(pathToCreate, mode, uid, gid, additionalGids);
407 if (ret != 0) {
408 return ret;
409 }
410
411 if (!sdcardfsSupport) {
412 // Set project ID inheritance, so that future subdirectories inherit the
413 // same project ID
414 ret = SetQuotaInherit(pathToCreate);
415 if (ret != 0) {
416 return ret;
417 }
418 }
419 }
420
421 depth++;
422 }
423
424 return OK;
425 }
426
SetAttrs(const std::string & path,unsigned int attrs)427 int SetAttrs(const std::string& path, unsigned int attrs) {
428 unsigned int flags;
429 android::base::unique_fd fd(
430 TEMP_FAILURE_RETRY(open(path.c_str(), O_RDONLY | O_NONBLOCK | O_CLOEXEC)));
431
432 if (fd == -1) {
433 PLOG(ERROR) << "Failed to open " << path;
434 return -1;
435 }
436
437 if (ioctl(fd, FS_IOC_GETFLAGS, &flags)) {
438 PLOG(ERROR) << "Failed to get flags for " << path;
439 return -1;
440 }
441
442 if ((flags & attrs) == attrs) return 0;
443 flags |= attrs;
444 if (ioctl(fd, FS_IOC_SETFLAGS, &flags)) {
445 PLOG(ERROR) << "Failed to set flags for " << path << "(0x" << std::hex << attrs << ")";
446 return -1;
447 }
448 return 0;
449 }
450
PrepareDir(const std::string & path,mode_t mode,uid_t uid,gid_t gid,unsigned int attrs)451 status_t PrepareDir(const std::string& path, mode_t mode, uid_t uid, gid_t gid,
452 unsigned int attrs) {
453 std::lock_guard<std::mutex> lock(kSecurityLock);
454 const char* cpath = path.c_str();
455 auto clearfscreatecon = android::base::make_scope_guard([] { setfscreatecon(nullptr); });
456 auto secontext = std::unique_ptr<char, void (*)(char*)>(nullptr, freecon);
457 char* tmp_secontext;
458
459 if (selabel_lookup(sehandle, &tmp_secontext, cpath, S_IFDIR) == 0) {
460 secontext.reset(tmp_secontext);
461 if (setfscreatecon(secontext.get()) != 0) {
462 LOG(ERROR) << "Failed to setfscreatecon for directory " << path;
463 return -EINVAL;
464 }
465 } else if (errno == ENOENT) {
466 LOG(DEBUG) << "No selabel defined for directory " << path;
467 } else {
468 PLOG(ERROR) << "Failed to look up selabel for directory " << path;
469 return -errno;
470 }
471
472 if (fs_prepare_dir(cpath, mode, uid, gid) != 0) return -errno;
473 if (attrs && SetAttrs(path, attrs) != 0) return -errno;
474 return OK;
475 }
476
ForceUnmount(const std::string & path)477 status_t ForceUnmount(const std::string& path) {
478 const char* cpath = path.c_str();
479 if (!umount2(cpath, UMOUNT_NOFOLLOW) || errno == EINVAL || errno == ENOENT) {
480 return OK;
481 }
482 // Apps might still be handling eject request, so wait before
483 // we start sending signals
484 if (sSleepOnUnmount) sleep(5);
485
486 KillProcessesWithOpenFiles(path, SIGINT);
487 if (sSleepOnUnmount) sleep(5);
488 if (!umount2(cpath, UMOUNT_NOFOLLOW) || errno == EINVAL || errno == ENOENT) {
489 return OK;
490 }
491
492 KillProcessesWithOpenFiles(path, SIGTERM);
493 if (sSleepOnUnmount) sleep(5);
494 if (!umount2(cpath, UMOUNT_NOFOLLOW) || errno == EINVAL || errno == ENOENT) {
495 return OK;
496 }
497
498 KillProcessesWithOpenFiles(path, SIGKILL);
499 if (sSleepOnUnmount) sleep(5);
500 if (!umount2(cpath, UMOUNT_NOFOLLOW) || errno == EINVAL || errno == ENOENT) {
501 return OK;
502 }
503 PLOG(INFO) << "ForceUnmount failed";
504 return -errno;
505 }
506
KillProcessesWithTmpfsMountPrefix(const std::string & path)507 status_t KillProcessesWithTmpfsMountPrefix(const std::string& path) {
508 if (KillProcessesWithTmpfsMounts(path, SIGINT) == 0) {
509 return OK;
510 }
511 if (sSleepOnUnmount) sleep(5);
512
513 if (KillProcessesWithTmpfsMounts(path, SIGTERM) == 0) {
514 return OK;
515 }
516 if (sSleepOnUnmount) sleep(5);
517
518 if (KillProcessesWithTmpfsMounts(path, SIGKILL) == 0) {
519 return OK;
520 }
521 if (sSleepOnUnmount) sleep(5);
522
523 // Send SIGKILL a second time to determine if we've
524 // actually killed everyone mount
525 if (KillProcessesWithTmpfsMounts(path, SIGKILL) == 0) {
526 return OK;
527 }
528 PLOG(ERROR) << "Failed to kill processes using " << path;
529 return -EBUSY;
530 }
531
KillProcessesUsingPath(const std::string & path)532 status_t KillProcessesUsingPath(const std::string& path) {
533 if (KillProcessesWithOpenFiles(path, SIGINT, false /* killFuseDaemon */) == 0) {
534 return OK;
535 }
536 if (sSleepOnUnmount) sleep(5);
537
538 if (KillProcessesWithOpenFiles(path, SIGTERM, false /* killFuseDaemon */) == 0) {
539 return OK;
540 }
541 if (sSleepOnUnmount) sleep(5);
542
543 if (KillProcessesWithOpenFiles(path, SIGKILL, false /* killFuseDaemon */) == 0) {
544 return OK;
545 }
546 if (sSleepOnUnmount) sleep(5);
547
548 // Send SIGKILL a second time to determine if we've
549 // actually killed everyone with open files
550 // This time, we also kill the FUSE daemon if found
551 if (KillProcessesWithOpenFiles(path, SIGKILL, true /* killFuseDaemon */) == 0) {
552 return OK;
553 }
554 PLOG(ERROR) << "Failed to kill processes using " << path;
555 return -EBUSY;
556 }
557
BindMount(const std::string & source,const std::string & target)558 status_t BindMount(const std::string& source, const std::string& target) {
559 if (UnmountTree(target) < 0) {
560 return -errno;
561 }
562 if (TEMP_FAILURE_RETRY(mount(source.c_str(), target.c_str(), nullptr, MS_BIND, nullptr)) < 0) {
563 PLOG(ERROR) << "Failed to bind mount " << source << " to " << target;
564 return -errno;
565 }
566 return OK;
567 }
568
Symlink(const std::string & target,const std::string & linkpath)569 status_t Symlink(const std::string& target, const std::string& linkpath) {
570 if (Unlink(linkpath) < 0) {
571 return -errno;
572 }
573 if (TEMP_FAILURE_RETRY(symlink(target.c_str(), linkpath.c_str())) < 0) {
574 PLOG(ERROR) << "Failed to create symlink " << linkpath << " to " << target;
575 return -errno;
576 }
577 return OK;
578 }
579
Unlink(const std::string & linkpath)580 status_t Unlink(const std::string& linkpath) {
581 if (TEMP_FAILURE_RETRY(unlink(linkpath.c_str())) < 0 && errno != EINVAL && errno != ENOENT) {
582 PLOG(ERROR) << "Failed to unlink " << linkpath;
583 return -errno;
584 }
585 return OK;
586 }
587
CreateDir(const std::string & dir,mode_t mode)588 status_t CreateDir(const std::string& dir, mode_t mode) {
589 struct stat sb;
590 if (TEMP_FAILURE_RETRY(stat(dir.c_str(), &sb)) == 0) {
591 if (S_ISDIR(sb.st_mode)) {
592 return OK;
593 } else if (TEMP_FAILURE_RETRY(unlink(dir.c_str())) == -1) {
594 PLOG(ERROR) << "Failed to unlink " << dir;
595 return -errno;
596 }
597 } else if (errno != ENOENT) {
598 PLOG(ERROR) << "Failed to stat " << dir;
599 return -errno;
600 }
601 if (TEMP_FAILURE_RETRY(mkdir(dir.c_str(), mode)) == -1 && errno != EEXIST) {
602 PLOG(ERROR) << "Failed to mkdir " << dir;
603 return -errno;
604 }
605 return OK;
606 }
607
FindValue(const std::string & raw,const std::string & key,std::string * value)608 bool FindValue(const std::string& raw, const std::string& key, std::string* value) {
609 auto qual = key + "=\"";
610 size_t start = 0;
611 while (true) {
612 start = raw.find(qual, start);
613 if (start == std::string::npos) return false;
614 if (start == 0 || raw[start - 1] == ' ') {
615 break;
616 }
617 start += 1;
618 }
619 start += qual.length();
620
621 auto end = raw.find("\"", start);
622 if (end == std::string::npos) return false;
623
624 *value = raw.substr(start, end - start);
625 return true;
626 }
627
readMetadata(const std::string & path,std::string * fsType,std::string * fsUuid,std::string * fsLabel,bool untrusted)628 static status_t readMetadata(const std::string& path, std::string* fsType, std::string* fsUuid,
629 std::string* fsLabel, bool untrusted) {
630 fsType->clear();
631 fsUuid->clear();
632 fsLabel->clear();
633
634 std::vector<std::string> cmd;
635 cmd.push_back(kBlkidPath);
636 cmd.push_back("-c");
637 cmd.push_back("/dev/null");
638 cmd.push_back("-s");
639 cmd.push_back("TYPE");
640 cmd.push_back("-s");
641 cmd.push_back("UUID");
642 cmd.push_back("-s");
643 cmd.push_back("LABEL");
644 cmd.push_back(path);
645
646 std::vector<std::string> output;
647 status_t res = ForkExecvp(cmd, &output, untrusted ? sBlkidUntrustedContext : sBlkidContext);
648 if (res != OK) {
649 LOG(WARNING) << "blkid failed to identify " << path;
650 return res;
651 }
652
653 for (const auto& line : output) {
654 // Extract values from blkid output, if defined
655 FindValue(line, "TYPE", fsType);
656 FindValue(line, "UUID", fsUuid);
657 FindValue(line, "LABEL", fsLabel);
658 }
659
660 return OK;
661 }
662
ReadMetadata(const std::string & path,std::string * fsType,std::string * fsUuid,std::string * fsLabel)663 status_t ReadMetadata(const std::string& path, std::string* fsType, std::string* fsUuid,
664 std::string* fsLabel) {
665 return readMetadata(path, fsType, fsUuid, fsLabel, false);
666 }
667
ReadMetadataUntrusted(const std::string & path,std::string * fsType,std::string * fsUuid,std::string * fsLabel)668 status_t ReadMetadataUntrusted(const std::string& path, std::string* fsType, std::string* fsUuid,
669 std::string* fsLabel) {
670 return readMetadata(path, fsType, fsUuid, fsLabel, true);
671 }
672
ConvertToArgv(const std::vector<std::string> & args)673 static std::vector<const char*> ConvertToArgv(const std::vector<std::string>& args) {
674 std::vector<const char*> argv;
675 argv.reserve(args.size() + 1);
676 for (const auto& arg : args) {
677 if (argv.empty()) {
678 LOG(DEBUG) << arg;
679 } else {
680 LOG(DEBUG) << " " << arg;
681 }
682 argv.emplace_back(arg.data());
683 }
684 argv.emplace_back(nullptr);
685 return argv;
686 }
687
ReadLinesFromFdAndLog(std::vector<std::string> * output,android::base::unique_fd ufd)688 static status_t ReadLinesFromFdAndLog(std::vector<std::string>* output,
689 android::base::unique_fd ufd) {
690 std::unique_ptr<FILE, int (*)(FILE*)> fp(android::base::Fdopen(std::move(ufd), "r"), fclose);
691 if (!fp) {
692 PLOG(ERROR) << "fdopen in ReadLinesFromFdAndLog";
693 return -errno;
694 }
695 if (output) output->clear();
696 char line[1024];
697 while (fgets(line, sizeof(line), fp.get()) != nullptr) {
698 LOG(DEBUG) << line;
699 if (output) output->emplace_back(line);
700 }
701 return OK;
702 }
703
ForkExecvp(const std::vector<std::string> & args,std::vector<std::string> * output,char * context)704 status_t ForkExecvp(const std::vector<std::string>& args, std::vector<std::string>* output,
705 char* context) {
706 auto argv = ConvertToArgv(args);
707
708 android::base::unique_fd pipe_read, pipe_write;
709 if (!android::base::Pipe(&pipe_read, &pipe_write)) {
710 PLOG(ERROR) << "Pipe in ForkExecvp";
711 return -errno;
712 }
713
714 pid_t pid = fork();
715 if (pid == 0) {
716 if (context) {
717 if (setexeccon(context)) {
718 LOG(ERROR) << "Failed to setexeccon in ForkExecvp";
719 abort();
720 }
721 }
722 pipe_read.reset();
723 if (dup2(pipe_write.get(), STDOUT_FILENO) == -1) {
724 PLOG(ERROR) << "dup2 in ForkExecvp";
725 _exit(EXIT_FAILURE);
726 }
727 pipe_write.reset();
728 execvp(argv[0], const_cast<char**>(argv.data()));
729 PLOG(ERROR) << "exec in ForkExecvp";
730 _exit(EXIT_FAILURE);
731 }
732 if (pid == -1) {
733 PLOG(ERROR) << "fork in ForkExecvp";
734 return -errno;
735 }
736
737 pipe_write.reset();
738 auto st = ReadLinesFromFdAndLog(output, std::move(pipe_read));
739 if (st != 0) return st;
740
741 int status;
742 if (waitpid(pid, &status, 0) == -1) {
743 PLOG(ERROR) << "waitpid in ForkExecvp";
744 return -errno;
745 }
746 if (!WIFEXITED(status)) {
747 LOG(ERROR) << "Process did not exit normally, status: " << status;
748 return -ECHILD;
749 }
750 if (WEXITSTATUS(status)) {
751 LOG(ERROR) << "Process exited with code: " << WEXITSTATUS(status);
752 return WEXITSTATUS(status);
753 }
754 return OK;
755 }
756
ForkTimeout(int (* func)(void *),void * args,std::chrono::seconds timeout)757 status_t ForkTimeout(int (*func)(void*), void* args, std::chrono::seconds timeout) {
758 int status;
759
760 // We're waiting on either the timeout or workload process to finish, so we're
761 // initially forking to get away from any other vold children
762 pid_t wait_timeout_pid = fork();
763 if (wait_timeout_pid == 0) {
764 pid_t pid = fork();
765 if (pid == 0) {
766 _exit(func(args));
767 }
768 if (pid == -1) {
769 _exit(EXIT_FAILURE);
770 }
771 pid_t timer_pid = fork();
772 if (timer_pid == 0) {
773 std::this_thread::sleep_for(timeout);
774 _exit(ETIMEDOUT);
775 }
776 if (timer_pid == -1) {
777 PLOG(ERROR) << "fork in ForkTimeout failed";
778 kill(pid, SIGTERM);
779 _exit(EXIT_FAILURE);
780 }
781 // Preserve the exit code of the first process to finish, and end the other
782 pid_t finished = wait(&status);
783 if (finished == pid) {
784 kill(timer_pid, SIGTERM);
785 } else {
786 kill(pid, SIGTERM);
787 }
788 if (!WIFEXITED(status)) {
789 _exit(ECHILD);
790 }
791 _exit(WEXITSTATUS(status));
792 }
793 if (waitpid(wait_timeout_pid, &status, 0) == -1) {
794 PLOG(ERROR) << "waitpid in ForkTimeout failed";
795 return -errno;
796 }
797 if (!WIFEXITED(status)) {
798 LOG(ERROR) << "Process did not exit normally, status: " << status;
799 return -ECHILD;
800 }
801 if (WEXITSTATUS(status)) {
802 LOG(ERROR) << "Process exited with code: " << WEXITSTATUS(status);
803 return WEXITSTATUS(status);
804 }
805 return OK;
806 }
807
ForkExecvpTimeout(const std::vector<std::string> & args,std::chrono::seconds timeout,char * context)808 status_t ForkExecvpTimeout(const std::vector<std::string>& args, std::chrono::seconds timeout,
809 char* context) {
810 int status;
811
812 pid_t wait_timeout_pid = fork();
813 if (wait_timeout_pid == 0) {
814 pid_t pid = ForkExecvpAsync(args, context);
815 if (pid == -1) {
816 _exit(EXIT_FAILURE);
817 }
818 pid_t timer_pid = fork();
819 if (timer_pid == 0) {
820 std::this_thread::sleep_for(timeout);
821 _exit(ETIMEDOUT);
822 }
823 if (timer_pid == -1) {
824 PLOG(ERROR) << "fork in ForkExecvpAsync_timeout";
825 kill(pid, SIGTERM);
826 _exit(EXIT_FAILURE);
827 }
828 pid_t finished = wait(&status);
829 if (finished == pid) {
830 kill(timer_pid, SIGTERM);
831 } else {
832 kill(pid, SIGTERM);
833 }
834 if (!WIFEXITED(status)) {
835 _exit(ECHILD);
836 }
837 _exit(WEXITSTATUS(status));
838 }
839 if (waitpid(wait_timeout_pid, &status, 0) == -1) {
840 PLOG(ERROR) << "waitpid in ForkExecvpAsync_timeout";
841 return -errno;
842 }
843 if (!WIFEXITED(status)) {
844 LOG(ERROR) << "Process did not exit normally, status: " << status;
845 return -ECHILD;
846 }
847 if (WEXITSTATUS(status)) {
848 LOG(ERROR) << "Process exited with code: " << WEXITSTATUS(status);
849 return WEXITSTATUS(status);
850 }
851 return OK;
852 }
853
ForkExecvpAsync(const std::vector<std::string> & args,char * context)854 pid_t ForkExecvpAsync(const std::vector<std::string>& args, char* context) {
855 auto argv = ConvertToArgv(args);
856
857 pid_t pid = fork();
858 if (pid == 0) {
859 close(STDIN_FILENO);
860 close(STDOUT_FILENO);
861 close(STDERR_FILENO);
862 if (context) {
863 if (setexeccon(context)) {
864 LOG(ERROR) << "Failed to setexeccon in ForkExecvpAsync";
865 abort();
866 }
867 }
868
869 execvp(argv[0], const_cast<char**>(argv.data()));
870 PLOG(ERROR) << "exec in ForkExecvpAsync";
871 _exit(EXIT_FAILURE);
872 }
873 if (pid == -1) {
874 PLOG(ERROR) << "fork in ForkExecvpAsync";
875 return -1;
876 }
877 return pid;
878 }
879
ReadRandomBytes(size_t bytes,std::string & out)880 status_t ReadRandomBytes(size_t bytes, std::string& out) {
881 out.resize(bytes);
882 return ReadRandomBytes(bytes, &out[0]);
883 }
884
ReadRandomBytes(size_t bytes,char * buf)885 status_t ReadRandomBytes(size_t bytes, char* buf) {
886 int fd = TEMP_FAILURE_RETRY(open("/dev/urandom", O_RDONLY | O_CLOEXEC | O_NOFOLLOW));
887 if (fd == -1) {
888 return -errno;
889 }
890
891 ssize_t n;
892 while ((n = TEMP_FAILURE_RETRY(read(fd, &buf[0], bytes))) > 0) {
893 bytes -= n;
894 buf += n;
895 }
896 close(fd);
897
898 if (bytes == 0) {
899 return OK;
900 } else {
901 return -EIO;
902 }
903 }
904
GenerateRandomUuid(std::string & out)905 status_t GenerateRandomUuid(std::string& out) {
906 status_t res = ReadRandomBytes(16, out);
907 if (res == OK) {
908 out[6] &= 0x0f; /* clear version */
909 out[6] |= 0x40; /* set to version 4 */
910 out[8] &= 0x3f; /* clear variant */
911 out[8] |= 0x80; /* set to IETF variant */
912 }
913 return res;
914 }
915
HexToStr(const std::string & hex,std::string & str)916 status_t HexToStr(const std::string& hex, std::string& str) {
917 str.clear();
918 bool even = true;
919 char cur = 0;
920 for (size_t i = 0; i < hex.size(); i++) {
921 int val = 0;
922 switch (hex[i]) {
923 // clang-format off
924 case ' ': case '-': case ':': continue;
925 case 'f': case 'F': val = 15; break;
926 case 'e': case 'E': val = 14; break;
927 case 'd': case 'D': val = 13; break;
928 case 'c': case 'C': val = 12; break;
929 case 'b': case 'B': val = 11; break;
930 case 'a': case 'A': val = 10; break;
931 case '9': val = 9; break;
932 case '8': val = 8; break;
933 case '7': val = 7; break;
934 case '6': val = 6; break;
935 case '5': val = 5; break;
936 case '4': val = 4; break;
937 case '3': val = 3; break;
938 case '2': val = 2; break;
939 case '1': val = 1; break;
940 case '0': val = 0; break;
941 default: return -EINVAL;
942 // clang-format on
943 }
944
945 if (even) {
946 cur = val << 4;
947 } else {
948 cur += val;
949 str.push_back(cur);
950 cur = 0;
951 }
952 even = !even;
953 }
954 return even ? OK : -EINVAL;
955 }
956
957 static const char* kLookup = "0123456789abcdef";
958
StrToHex(const std::string & str,std::string & hex)959 status_t StrToHex(const std::string& str, std::string& hex) {
960 hex.clear();
961 for (size_t i = 0; i < str.size(); i++) {
962 hex.push_back(kLookup[(str[i] & 0xF0) >> 4]);
963 hex.push_back(kLookup[str[i] & 0x0F]);
964 }
965 return OK;
966 }
967
StrToHex(const KeyBuffer & str,KeyBuffer & hex)968 status_t StrToHex(const KeyBuffer& str, KeyBuffer& hex) {
969 hex.clear();
970 for (size_t i = 0; i < str.size(); i++) {
971 hex.push_back(kLookup[(str.data()[i] & 0xF0) >> 4]);
972 hex.push_back(kLookup[str.data()[i] & 0x0F]);
973 }
974 return OK;
975 }
976
NormalizeHex(const std::string & in,std::string & out)977 status_t NormalizeHex(const std::string& in, std::string& out) {
978 std::string tmp;
979 if (HexToStr(in, tmp)) {
980 return -EINVAL;
981 }
982 return StrToHex(tmp, out);
983 }
984
GetBlockDevSize(int fd,uint64_t * size)985 status_t GetBlockDevSize(int fd, uint64_t* size) {
986 if (ioctl(fd, BLKGETSIZE64, size)) {
987 return -errno;
988 }
989
990 return OK;
991 }
992
GetBlockDevSize(const std::string & path,uint64_t * size)993 status_t GetBlockDevSize(const std::string& path, uint64_t* size) {
994 int fd = open(path.c_str(), O_RDONLY | O_CLOEXEC);
995 status_t res = OK;
996
997 if (fd < 0) {
998 return -errno;
999 }
1000
1001 res = GetBlockDevSize(fd, size);
1002
1003 close(fd);
1004
1005 return res;
1006 }
1007
GetBlockDev512Sectors(const std::string & path,uint64_t * nr_sec)1008 status_t GetBlockDev512Sectors(const std::string& path, uint64_t* nr_sec) {
1009 uint64_t size;
1010 status_t res = GetBlockDevSize(path, &size);
1011
1012 if (res != OK) {
1013 return res;
1014 }
1015
1016 *nr_sec = size / 512;
1017
1018 return OK;
1019 }
1020
GetFreeBytes(const std::string & path)1021 uint64_t GetFreeBytes(const std::string& path) {
1022 struct statvfs sb;
1023 if (statvfs(path.c_str(), &sb) == 0) {
1024 return (uint64_t)sb.f_bavail * sb.f_frsize;
1025 } else {
1026 return -1;
1027 }
1028 }
1029
1030 // TODO: borrowed from frameworks/native/libs/diskusage/ which should
1031 // eventually be migrated into system/
stat_size(struct stat * s)1032 static int64_t stat_size(struct stat* s) {
1033 int64_t blksize = s->st_blksize;
1034 // count actual blocks used instead of nominal file size
1035 int64_t size = s->st_blocks * 512;
1036
1037 if (blksize) {
1038 /* round up to filesystem block size */
1039 size = (size + blksize - 1) & (~(blksize - 1));
1040 }
1041
1042 return size;
1043 }
1044
1045 // TODO: borrowed from frameworks/native/libs/diskusage/ which should
1046 // eventually be migrated into system/
calculate_dir_size(int dfd)1047 int64_t calculate_dir_size(int dfd) {
1048 int64_t size = 0;
1049 struct stat s;
1050 DIR* d;
1051 struct dirent* de;
1052
1053 d = fdopendir(dfd);
1054 if (d == NULL) {
1055 close(dfd);
1056 return 0;
1057 }
1058
1059 while ((de = readdir(d))) {
1060 const char* name = de->d_name;
1061 if (fstatat(dfd, name, &s, AT_SYMLINK_NOFOLLOW) == 0) {
1062 size += stat_size(&s);
1063 }
1064 if (de->d_type == DT_DIR) {
1065 int subfd;
1066
1067 /* always skip "." and ".." */
1068 if (IsDotOrDotDot(*de)) continue;
1069
1070 subfd = openat(dfd, name, O_RDONLY | O_DIRECTORY | O_CLOEXEC);
1071 if (subfd >= 0) {
1072 size += calculate_dir_size(subfd);
1073 }
1074 }
1075 }
1076 closedir(d);
1077 return size;
1078 }
1079
GetTreeBytes(const std::string & path)1080 uint64_t GetTreeBytes(const std::string& path) {
1081 int dirfd = open(path.c_str(), O_RDONLY | O_DIRECTORY | O_CLOEXEC);
1082 if (dirfd < 0) {
1083 PLOG(WARNING) << "Failed to open " << path;
1084 return -1;
1085 } else {
1086 return calculate_dir_size(dirfd);
1087 }
1088 }
1089
1090 // TODO: Use a better way to determine if it's media provider app.
IsFuseDaemon(const pid_t pid)1091 bool IsFuseDaemon(const pid_t pid) {
1092 auto path = StringPrintf("/proc/%d/mounts", pid);
1093 char* tmp;
1094 if (lgetfilecon(path.c_str(), &tmp) < 0) {
1095 return false;
1096 }
1097 bool result = android::base::StartsWith(tmp, kMediaProviderAppCtx)
1098 || android::base::StartsWith(tmp, kMediaProviderCtx);
1099 freecon(tmp);
1100 return result;
1101 }
1102
IsFilesystemSupported(const std::string & fsType)1103 bool IsFilesystemSupported(const std::string& fsType) {
1104 std::string supported;
1105 if (!ReadFileToString(kProcFilesystems, &supported)) {
1106 PLOG(ERROR) << "Failed to read supported filesystems";
1107 return false;
1108 }
1109 return supported.find(fsType + "\n") != std::string::npos;
1110 }
1111
IsSdcardfsUsed()1112 bool IsSdcardfsUsed() {
1113 return IsFilesystemSupported("sdcardfs") &&
1114 base::GetBoolProperty(kExternalStorageSdcardfs, true);
1115 }
1116
WipeBlockDevice(const std::string & path)1117 status_t WipeBlockDevice(const std::string& path) {
1118 status_t res = -1;
1119 const char* c_path = path.c_str();
1120 uint64_t range[2] = {0, 0};
1121
1122 int fd = TEMP_FAILURE_RETRY(open(c_path, O_RDWR | O_CLOEXEC));
1123 if (fd == -1) {
1124 PLOG(ERROR) << "Failed to open " << path;
1125 goto done;
1126 }
1127
1128 if (GetBlockDevSize(fd, &range[1]) != OK) {
1129 PLOG(ERROR) << "Failed to determine size of " << path;
1130 goto done;
1131 }
1132
1133 LOG(INFO) << "About to discard " << range[1] << " on " << path;
1134 if (ioctl(fd, BLKDISCARD, &range) == 0) {
1135 LOG(INFO) << "Discard success on " << path;
1136 res = 0;
1137 } else {
1138 PLOG(ERROR) << "Discard failure on " << path;
1139 }
1140
1141 done:
1142 close(fd);
1143 return res;
1144 }
1145
isValidFilename(const std::string & name)1146 static bool isValidFilename(const std::string& name) {
1147 if (name.empty() || (name == ".") || (name == "..") || (name.find('/') != std::string::npos)) {
1148 return false;
1149 } else {
1150 return true;
1151 }
1152 }
1153
BuildKeyPath(const std::string & partGuid)1154 std::string BuildKeyPath(const std::string& partGuid) {
1155 return StringPrintf("%s/expand_%s.key", kKeyPath, partGuid.c_str());
1156 }
1157
BuildDataSystemLegacyPath(userid_t userId)1158 std::string BuildDataSystemLegacyPath(userid_t userId) {
1159 return StringPrintf("%s/system/users/%u", BuildDataPath("").c_str(), userId);
1160 }
1161
BuildDataSystemCePath(userid_t userId)1162 std::string BuildDataSystemCePath(userid_t userId) {
1163 return StringPrintf("%s/system_ce/%u", BuildDataPath("").c_str(), userId);
1164 }
1165
BuildDataSystemDePath(userid_t userId)1166 std::string BuildDataSystemDePath(userid_t userId) {
1167 return StringPrintf("%s/system_de/%u", BuildDataPath("").c_str(), userId);
1168 }
1169
1170 // Keep in sync with installd (frameworks/native/cmds/installd/utils.h)
BuildDataProfilesDePath(userid_t userId)1171 std::string BuildDataProfilesDePath(userid_t userId) {
1172 return StringPrintf("%s/misc/profiles/cur/%u", BuildDataPath("").c_str(), userId);
1173 }
1174
BuildDataVendorCePath(userid_t userId)1175 std::string BuildDataVendorCePath(userid_t userId) {
1176 return StringPrintf("%s/vendor_ce/%u", BuildDataPath("").c_str(), userId);
1177 }
1178
BuildDataVendorDePath(userid_t userId)1179 std::string BuildDataVendorDePath(userid_t userId) {
1180 return StringPrintf("%s/vendor_de/%u", BuildDataPath("").c_str(), userId);
1181 }
1182
BuildDataPath(const std::string & volumeUuid)1183 std::string BuildDataPath(const std::string& volumeUuid) {
1184 // TODO: unify with installd path generation logic
1185 if (volumeUuid.empty()) {
1186 return "/data";
1187 } else {
1188 CHECK(isValidFilename(volumeUuid));
1189 return StringPrintf("/mnt/expand/%s", volumeUuid.c_str());
1190 }
1191 }
1192
BuildDataMediaCePath(const std::string & volumeUuid,userid_t userId)1193 std::string BuildDataMediaCePath(const std::string& volumeUuid, userid_t userId) {
1194 // TODO: unify with installd path generation logic
1195 std::string data(BuildDataPath(volumeUuid));
1196 return StringPrintf("%s/media/%u", data.c_str(), userId);
1197 }
1198
BuildDataMiscCePath(const std::string & volumeUuid,userid_t userId)1199 std::string BuildDataMiscCePath(const std::string& volumeUuid, userid_t userId) {
1200 return StringPrintf("%s/misc_ce/%u", BuildDataPath(volumeUuid).c_str(), userId);
1201 }
1202
BuildDataMiscDePath(const std::string & volumeUuid,userid_t userId)1203 std::string BuildDataMiscDePath(const std::string& volumeUuid, userid_t userId) {
1204 return StringPrintf("%s/misc_de/%u", BuildDataPath(volumeUuid).c_str(), userId);
1205 }
1206
BuildDataUserCePath(const std::string & volumeUuid,userid_t userId)1207 std::string BuildDataUserCePath(const std::string& volumeUuid, userid_t userId) {
1208 // TODO: unify with installd path generation logic
1209 std::string data(BuildDataPath(volumeUuid));
1210 return StringPrintf("%s/user/%u", data.c_str(), userId);
1211 }
1212
BuildDataUserDePath(const std::string & volumeUuid,userid_t userId)1213 std::string BuildDataUserDePath(const std::string& volumeUuid, userid_t userId) {
1214 // TODO: unify with installd path generation logic
1215 std::string data(BuildDataPath(volumeUuid));
1216 return StringPrintf("%s/user_de/%u", data.c_str(), userId);
1217 }
1218
GetDevice(const std::string & path)1219 dev_t GetDevice(const std::string& path) {
1220 struct stat sb;
1221 if (stat(path.c_str(), &sb)) {
1222 PLOG(WARNING) << "Failed to stat " << path;
1223 return 0;
1224 } else {
1225 return sb.st_dev;
1226 }
1227 }
1228
1229 // Returns true if |path| exists and is a symlink.
IsSymlink(const std::string & path)1230 bool IsSymlink(const std::string& path) {
1231 struct stat stbuf;
1232 return lstat(path.c_str(), &stbuf) == 0 && S_ISLNK(stbuf.st_mode);
1233 }
1234
1235 // Returns true if |path1| names the same existing file or directory as |path2|.
IsSameFile(const std::string & path1,const std::string & path2)1236 bool IsSameFile(const std::string& path1, const std::string& path2) {
1237 struct stat stbuf1, stbuf2;
1238 if (stat(path1.c_str(), &stbuf1) != 0 || stat(path2.c_str(), &stbuf2) != 0) return false;
1239 return stbuf1.st_ino == stbuf2.st_ino && stbuf1.st_dev == stbuf2.st_dev;
1240 }
1241
RestoreconRecursive(const std::string & path)1242 status_t RestoreconRecursive(const std::string& path) {
1243 LOG(DEBUG) << "Starting restorecon of " << path;
1244
1245 static constexpr const char* kRestoreconString = "selinux.restorecon_recursive";
1246
1247 android::base::SetProperty(kRestoreconString, "");
1248 android::base::SetProperty(kRestoreconString, path);
1249
1250 android::base::WaitForProperty(kRestoreconString, path);
1251
1252 LOG(DEBUG) << "Finished restorecon of " << path;
1253 return OK;
1254 }
1255
Readlinkat(int dirfd,const std::string & path,std::string * result)1256 bool Readlinkat(int dirfd, const std::string& path, std::string* result) {
1257 // Shamelessly borrowed from android::base::Readlink()
1258 result->clear();
1259
1260 // Most Linux file systems (ext2 and ext4, say) limit symbolic links to
1261 // 4095 bytes. Since we'll copy out into the string anyway, it doesn't
1262 // waste memory to just start there. We add 1 so that we can recognize
1263 // whether it actually fit (rather than being truncated to 4095).
1264 std::vector<char> buf(4095 + 1);
1265 while (true) {
1266 ssize_t size = readlinkat(dirfd, path.c_str(), &buf[0], buf.size());
1267 // Unrecoverable error?
1268 if (size == -1) return false;
1269 // It fit! (If size == buf.size(), it may have been truncated.)
1270 if (static_cast<size_t>(size) < buf.size()) {
1271 result->assign(&buf[0], size);
1272 return true;
1273 }
1274 // Double our buffer and try again.
1275 buf.resize(buf.size() * 2);
1276 }
1277 }
1278
GetMajorBlockVirtioBlk()1279 static unsigned int GetMajorBlockVirtioBlk() {
1280 std::string devices;
1281 if (!ReadFileToString(kProcDevices, &devices)) {
1282 PLOG(ERROR) << "Unable to open /proc/devices";
1283 return 0;
1284 }
1285
1286 bool blockSection = false;
1287 for (auto line : android::base::Split(devices, "\n")) {
1288 if (line == "Block devices:") {
1289 blockSection = true;
1290 } else if (line == "Character devices:") {
1291 blockSection = false;
1292 } else if (blockSection) {
1293 auto tokens = android::base::Split(line, " ");
1294 if (tokens.size() == 2 && tokens[1] == "virtblk") {
1295 return std::stoul(tokens[0]);
1296 }
1297 }
1298 }
1299
1300 return 0;
1301 }
1302
IsVirtioBlkDevice(unsigned int major)1303 bool IsVirtioBlkDevice(unsigned int major) {
1304 // Most virtualized platforms expose block devices with the virtio-blk
1305 // block device driver. Unfortunately, this driver does not use a fixed
1306 // major number, but relies on the kernel to assign one from a specific
1307 // range of block majors, which are allocated for "LOCAL/EXPERIMENAL USE"
1308 // per Documentation/devices.txt. This is true even for the latest Linux
1309 // kernel (4.4; see init() in drivers/block/virtio_blk.c).
1310 static unsigned int kMajorBlockVirtioBlk = GetMajorBlockVirtioBlk();
1311 return kMajorBlockVirtioBlk && major == kMajorBlockVirtioBlk;
1312 }
1313
UnmountTree(const std::string & mountPoint)1314 status_t UnmountTree(const std::string& mountPoint) {
1315 if (TEMP_FAILURE_RETRY(umount2(mountPoint.c_str(), MNT_DETACH)) < 0 && errno != EINVAL &&
1316 errno != ENOENT) {
1317 PLOG(ERROR) << "Failed to unmount " << mountPoint;
1318 return -errno;
1319 }
1320 return OK;
1321 }
1322
IsDotOrDotDot(const struct dirent & ent)1323 bool IsDotOrDotDot(const struct dirent& ent) {
1324 return strcmp(ent.d_name, ".") == 0 || strcmp(ent.d_name, "..") == 0;
1325 }
1326
delete_dir_contents(DIR * dir)1327 static status_t delete_dir_contents(DIR* dir) {
1328 // Shamelessly borrowed from android::installd
1329 int dfd = dirfd(dir);
1330 if (dfd < 0) {
1331 return -errno;
1332 }
1333
1334 status_t result = OK;
1335 struct dirent* de;
1336 while ((de = readdir(dir))) {
1337 const char* name = de->d_name;
1338 if (de->d_type == DT_DIR) {
1339 /* always skip "." and ".." */
1340 if (IsDotOrDotDot(*de)) continue;
1341
1342 android::base::unique_fd subfd(
1343 openat(dfd, name, O_RDONLY | O_DIRECTORY | O_NOFOLLOW | O_CLOEXEC));
1344 if (subfd.get() == -1) {
1345 PLOG(ERROR) << "Couldn't openat " << name;
1346 result = -errno;
1347 continue;
1348 }
1349 std::unique_ptr<DIR, decltype(&closedir)> subdirp(
1350 android::base::Fdopendir(std::move(subfd)), closedir);
1351 if (!subdirp) {
1352 PLOG(ERROR) << "Couldn't fdopendir " << name;
1353 result = -errno;
1354 continue;
1355 }
1356 result = delete_dir_contents(subdirp.get());
1357 if (unlinkat(dfd, name, AT_REMOVEDIR) < 0) {
1358 PLOG(ERROR) << "Couldn't unlinkat " << name;
1359 result = -errno;
1360 }
1361 } else {
1362 if (unlinkat(dfd, name, 0) < 0) {
1363 PLOG(ERROR) << "Couldn't unlinkat " << name;
1364 result = -errno;
1365 }
1366 }
1367 }
1368 return result;
1369 }
1370
DeleteDirContentsAndDir(const std::string & pathname)1371 status_t DeleteDirContentsAndDir(const std::string& pathname) {
1372 status_t res = DeleteDirContents(pathname);
1373 if (res < 0) {
1374 return res;
1375 }
1376 if (TEMP_FAILURE_RETRY(rmdir(pathname.c_str())) < 0 && errno != ENOENT) {
1377 PLOG(ERROR) << "rmdir failed on " << pathname;
1378 return -errno;
1379 }
1380 LOG(VERBOSE) << "Success: rmdir on " << pathname;
1381 return OK;
1382 }
1383
DeleteDirContents(const std::string & pathname)1384 status_t DeleteDirContents(const std::string& pathname) {
1385 // Shamelessly borrowed from android::installd
1386 std::unique_ptr<DIR, decltype(&closedir)> dirp(opendir(pathname.c_str()), closedir);
1387 if (!dirp) {
1388 if (errno == ENOENT) {
1389 return OK;
1390 }
1391 PLOG(ERROR) << "Failed to opendir " << pathname;
1392 return -errno;
1393 }
1394 return delete_dir_contents(dirp.get());
1395 }
1396
1397 // TODO(118708649): fix duplication with init/util.h
WaitForFile(const char * filename,std::chrono::nanoseconds timeout)1398 status_t WaitForFile(const char* filename, std::chrono::nanoseconds timeout) {
1399 android::base::Timer t;
1400 while (t.duration() < timeout) {
1401 struct stat sb;
1402 if (stat(filename, &sb) != -1) {
1403 LOG(INFO) << "wait for '" << filename << "' took " << t;
1404 return 0;
1405 }
1406 std::this_thread::sleep_for(10ms);
1407 }
1408 LOG(WARNING) << "wait for '" << filename << "' timed out and took " << t;
1409 return -1;
1410 }
1411
pathExists(const std::string & path)1412 bool pathExists(const std::string& path) {
1413 return access(path.c_str(), F_OK) == 0;
1414 }
1415
FsyncDirectory(const std::string & dirname)1416 bool FsyncDirectory(const std::string& dirname) {
1417 android::base::unique_fd fd(TEMP_FAILURE_RETRY(open(dirname.c_str(), O_RDONLY | O_CLOEXEC)));
1418 if (fd == -1) {
1419 PLOG(ERROR) << "Failed to open " << dirname;
1420 return false;
1421 }
1422 if (fsync(fd) == -1) {
1423 if (errno == EROFS || errno == EINVAL) {
1424 PLOG(WARNING) << "Skip fsync " << dirname
1425 << " on a file system does not support synchronization";
1426 } else {
1427 PLOG(ERROR) << "Failed to fsync " << dirname;
1428 return false;
1429 }
1430 }
1431 return true;
1432 }
1433
FsyncParentDirectory(const std::string & path)1434 bool FsyncParentDirectory(const std::string& path) {
1435 return FsyncDirectory(android::base::Dirname(path));
1436 }
1437
1438 // Creates all parent directories of |path| that don't already exist. Assigns
1439 // the specified |mode| to any new directories, and also fsync()s their parent
1440 // directories so that the new directories get written to disk right away.
MkdirsSync(const std::string & path,mode_t mode)1441 bool MkdirsSync(const std::string& path, mode_t mode) {
1442 if (path[0] != '/') {
1443 LOG(ERROR) << "MkdirsSync() needs an absolute path, but got " << path;
1444 return false;
1445 }
1446 std::vector<std::string> components = android::base::Split(android::base::Dirname(path), "/");
1447
1448 std::string current_dir = "/";
1449 for (const std::string& component : components) {
1450 if (component.empty()) continue;
1451
1452 std::string parent_dir = current_dir;
1453 if (current_dir != "/") current_dir += "/";
1454 current_dir += component;
1455
1456 if (!pathExists(current_dir)) {
1457 if (mkdir(current_dir.c_str(), mode) != 0) {
1458 PLOG(ERROR) << "Failed to create " << current_dir;
1459 return false;
1460 }
1461 if (!FsyncDirectory(parent_dir)) return false;
1462 LOG(DEBUG) << "Created directory " << current_dir;
1463 }
1464 }
1465 return true;
1466 }
1467
writeStringToFile(const std::string & payload,const std::string & filename)1468 bool writeStringToFile(const std::string& payload, const std::string& filename) {
1469 android::base::unique_fd fd(TEMP_FAILURE_RETRY(
1470 open(filename.c_str(), O_WRONLY | O_CREAT | O_NOFOLLOW | O_TRUNC | O_CLOEXEC, 0666)));
1471 if (fd == -1) {
1472 PLOG(ERROR) << "Failed to open " << filename;
1473 return false;
1474 }
1475 if (!android::base::WriteStringToFd(payload, fd)) {
1476 PLOG(ERROR) << "Failed to write to " << filename;
1477 unlink(filename.c_str());
1478 return false;
1479 }
1480 // fsync as close won't guarantee flush data
1481 // see close(2), fsync(2) and b/68901441
1482 if (fsync(fd) == -1) {
1483 if (errno == EROFS || errno == EINVAL) {
1484 PLOG(WARNING) << "Skip fsync " << filename
1485 << " on a file system does not support synchronization";
1486 } else {
1487 PLOG(ERROR) << "Failed to fsync " << filename;
1488 unlink(filename.c_str());
1489 return false;
1490 }
1491 }
1492 return true;
1493 }
1494
AbortFuseConnections()1495 status_t AbortFuseConnections() {
1496 namespace fs = std::filesystem;
1497
1498 static constexpr const char* kFuseConnections = "/sys/fs/fuse/connections";
1499
1500 std::error_code ec;
1501 for (const auto& itEntry : fs::directory_iterator(kFuseConnections, ec)) {
1502 std::string fsPath = itEntry.path().string() + "/filesystem";
1503 std::string fs;
1504
1505 // Virtiofs is on top of fuse and there isn't any user space daemon.
1506 // Android user space doesn't manage it.
1507 if (android::base::ReadFileToString(fsPath, &fs, false) &&
1508 android::base::Trim(fs) == "virtiofs") {
1509 LOG(INFO) << "Ignore virtiofs connection entry " << itEntry.path().string();
1510 continue;
1511 }
1512
1513 std::string abortPath = itEntry.path().string() + "/abort";
1514 LOG(DEBUG) << "Aborting fuse connection entry " << abortPath;
1515 bool ret = writeStringToFile("1", abortPath);
1516 if (!ret) {
1517 LOG(WARNING) << "Failed to write to " << abortPath;
1518 }
1519 }
1520
1521 if (ec) {
1522 LOG(WARNING) << "Failed to iterate through " << kFuseConnections << ": " << ec.message();
1523 return -ec.value();
1524 }
1525
1526 return OK;
1527 }
1528
EnsureDirExists(const std::string & path,mode_t mode,uid_t uid,gid_t gid)1529 status_t EnsureDirExists(const std::string& path, mode_t mode, uid_t uid, gid_t gid) {
1530 if (access(path.c_str(), F_OK) != 0) {
1531 PLOG(WARNING) << "Dir does not exist: " << path;
1532 if (fs_prepare_dir(path.c_str(), mode, uid, gid) != 0) {
1533 return -errno;
1534 }
1535 }
1536 return OK;
1537 }
1538
1539 // Gets the sysfs path for parameters of the backing device info (bdi)
getBdiPathForMount(const std::string & mount)1540 static std::string getBdiPathForMount(const std::string& mount) {
1541 // First figure out MAJOR:MINOR of mount. Simplest way is to stat the path.
1542 struct stat info;
1543 if (stat(mount.c_str(), &info) != 0) {
1544 PLOG(ERROR) << "Failed to stat " << mount;
1545 return "";
1546 }
1547 unsigned int maj = major(info.st_dev);
1548 unsigned int min = minor(info.st_dev);
1549
1550 return StringPrintf("/sys/class/bdi/%u:%u", maj, min);
1551 }
1552
1553 // Configures max_ratio for the FUSE filesystem.
ConfigureMaxDirtyRatioForFuse(const std::string & fuse_mount,unsigned int max_ratio)1554 void ConfigureMaxDirtyRatioForFuse(const std::string& fuse_mount, unsigned int max_ratio) {
1555 LOG(INFO) << "Configuring max_ratio of " << fuse_mount << " fuse filesystem to " << max_ratio;
1556 if (max_ratio > 100) {
1557 LOG(ERROR) << "Invalid max_ratio: " << max_ratio;
1558 return;
1559 }
1560 std::string fuseBdiPath = getBdiPathForMount(fuse_mount);
1561 if (fuseBdiPath == "") {
1562 return;
1563 }
1564 std::string max_ratio_file = StringPrintf("%s/max_ratio", fuseBdiPath.c_str());
1565 unique_fd fd(TEMP_FAILURE_RETRY(open(max_ratio_file.c_str(), O_WRONLY | O_CLOEXEC)));
1566 if (fd.get() == -1) {
1567 PLOG(ERROR) << "Failed to open " << max_ratio_file;
1568 return;
1569 }
1570 LOG(INFO) << "Writing " << max_ratio << " to " << max_ratio_file;
1571 if (!WriteStringToFd(std::to_string(max_ratio), fd)) {
1572 PLOG(ERROR) << "Failed to write to " << max_ratio_file;
1573 }
1574 }
1575
1576 // Configures read ahead property of the fuse filesystem with the mount point |fuse_mount| by
1577 // writing |read_ahead_kb| to the /sys/class/bdi/MAJOR:MINOR/read_ahead_kb.
ConfigureReadAheadForFuse(const std::string & fuse_mount,size_t read_ahead_kb)1578 void ConfigureReadAheadForFuse(const std::string& fuse_mount, size_t read_ahead_kb) {
1579 LOG(INFO) << "Configuring read_ahead of " << fuse_mount << " fuse filesystem to "
1580 << read_ahead_kb << "kb";
1581 std::string fuseBdiPath = getBdiPathForMount(fuse_mount);
1582 if (fuseBdiPath == "") {
1583 return;
1584 }
1585 // We found the bdi path for our filesystem, time to configure read ahead!
1586 std::string read_ahead_file = StringPrintf("%s/read_ahead_kb", fuseBdiPath.c_str());
1587 unique_fd fd(TEMP_FAILURE_RETRY(open(read_ahead_file.c_str(), O_WRONLY | O_CLOEXEC)));
1588 if (fd.get() == -1) {
1589 PLOG(ERROR) << "Failed to open " << read_ahead_file;
1590 return;
1591 }
1592 LOG(INFO) << "Writing " << read_ahead_kb << " to " << read_ahead_file;
1593 if (!WriteStringToFd(std::to_string(read_ahead_kb), fd)) {
1594 PLOG(ERROR) << "Failed to write to " << read_ahead_file;
1595 }
1596 }
1597
MountUserFuse(userid_t user_id,const std::string & absolute_lower_path,const std::string & relative_upper_path,android::base::unique_fd * fuse_fd)1598 status_t MountUserFuse(userid_t user_id, const std::string& absolute_lower_path,
1599 const std::string& relative_upper_path, android::base::unique_fd* fuse_fd) {
1600 std::string pre_fuse_path(StringPrintf("/mnt/user/%d", user_id));
1601 std::string fuse_path(
1602 StringPrintf("%s/%s", pre_fuse_path.c_str(), relative_upper_path.c_str()));
1603
1604 std::string pre_pass_through_path(StringPrintf("/mnt/pass_through/%d", user_id));
1605 std::string pass_through_path(
1606 StringPrintf("%s/%s", pre_pass_through_path.c_str(), relative_upper_path.c_str()));
1607
1608 // Ensure that /mnt/user is 0700. With FUSE, apps don't need access to /mnt/user paths directly.
1609 // Without FUSE however, apps need /mnt/user access so /mnt/user in init.rc is 0755 until here
1610 auto result = PrepareDir("/mnt/user", 0750, AID_ROOT, AID_MEDIA_RW);
1611 if (result != android::OK) {
1612 PLOG(ERROR) << "Failed to prepare directory /mnt/user";
1613 return -1;
1614 }
1615
1616 result = PrepareMountDirForUser(user_id);
1617 if (result != android::OK) {
1618 PLOG(ERROR) << "Failed to create Mount Directory for user " << user_id;
1619 return -1;
1620 }
1621
1622 result = PrepareDir(fuse_path, 0700, AID_ROOT, AID_ROOT);
1623 if (result != android::OK) {
1624 PLOG(ERROR) << "Failed to prepare directory " << fuse_path;
1625 return -1;
1626 }
1627
1628 result = PrepareDir(pre_pass_through_path, 0710, AID_ROOT, AID_MEDIA_RW);
1629 if (result != android::OK) {
1630 PLOG(ERROR) << "Failed to prepare directory " << pre_pass_through_path;
1631 return -1;
1632 }
1633
1634 result = PrepareDir(pass_through_path, 0710, AID_ROOT, AID_MEDIA_RW);
1635 if (result != android::OK) {
1636 PLOG(ERROR) << "Failed to prepare directory " << pass_through_path;
1637 return -1;
1638 }
1639
1640 if (relative_upper_path == "emulated") {
1641 std::string linkpath(StringPrintf("/mnt/user/%d/self", user_id));
1642 result = PrepareDir(linkpath, 0755, AID_ROOT, AID_ROOT);
1643 if (result != android::OK) {
1644 PLOG(ERROR) << "Failed to prepare directory " << linkpath;
1645 return -1;
1646 }
1647 linkpath += "/primary";
1648 Symlink("/storage/emulated/" + std::to_string(user_id), linkpath);
1649
1650 std::string pass_through_linkpath(StringPrintf("/mnt/pass_through/%d/self", user_id));
1651 result = PrepareDir(pass_through_linkpath, 0710, AID_ROOT, AID_MEDIA_RW);
1652 if (result != android::OK) {
1653 PLOG(ERROR) << "Failed to prepare directory " << pass_through_linkpath;
1654 return -1;
1655 }
1656 pass_through_linkpath += "/primary";
1657 Symlink("/storage/emulated/" + std::to_string(user_id), pass_through_linkpath);
1658 }
1659
1660 // Open fuse fd.
1661 fuse_fd->reset(open("/dev/fuse", O_RDWR | O_CLOEXEC));
1662 if (fuse_fd->get() == -1) {
1663 PLOG(ERROR) << "Failed to open /dev/fuse";
1664 return -1;
1665 }
1666
1667 // Note: leaving out default_permissions since we don't want kernel to do lower filesystem
1668 // permission checks before routing to FUSE daemon.
1669 const auto opts = StringPrintf(
1670 "fd=%i,"
1671 "rootmode=40000,"
1672 "allow_other,"
1673 "user_id=0,group_id=0,",
1674 fuse_fd->get());
1675
1676 result = TEMP_FAILURE_RETRY(mount("/dev/fuse", fuse_path.c_str(), "fuse",
1677 MS_NOSUID | MS_NODEV | MS_NOEXEC | MS_NOATIME | MS_LAZYTIME,
1678 opts.c_str()));
1679 if (result != 0) {
1680 PLOG(ERROR) << "Failed to mount " << fuse_path;
1681 return -errno;
1682 }
1683
1684 if (IsSdcardfsUsed()) {
1685 std::string sdcardfs_path(
1686 StringPrintf("/mnt/runtime/full/%s", relative_upper_path.c_str()));
1687
1688 LOG(INFO) << "Bind mounting " << sdcardfs_path << " to " << pass_through_path;
1689 return BindMount(sdcardfs_path, pass_through_path);
1690 } else {
1691 LOG(INFO) << "Bind mounting " << absolute_lower_path << " to " << pass_through_path;
1692 return BindMount(absolute_lower_path, pass_through_path);
1693 }
1694 }
1695
UnmountUserFuse(userid_t user_id,const std::string & absolute_lower_path,const std::string & relative_upper_path)1696 status_t UnmountUserFuse(userid_t user_id, const std::string& absolute_lower_path,
1697 const std::string& relative_upper_path) {
1698 std::string fuse_path(StringPrintf("/mnt/user/%d/%s", user_id, relative_upper_path.c_str()));
1699 std::string pass_through_path(
1700 StringPrintf("/mnt/pass_through/%d/%s", user_id, relative_upper_path.c_str()));
1701
1702 LOG(INFO) << "Unmounting fuse path " << fuse_path;
1703 android::status_t result = ForceUnmount(fuse_path);
1704 if (result != android::OK) {
1705 // TODO(b/135341433): MNT_DETACH is needed for fuse because umount2 can fail with EBUSY.
1706 // Figure out why we get EBUSY and remove this special casing if possible.
1707 PLOG(ERROR) << "Failed to unmount. Trying MNT_DETACH " << fuse_path << " ...";
1708 if (umount2(fuse_path.c_str(), UMOUNT_NOFOLLOW | MNT_DETACH) && errno != EINVAL &&
1709 errno != ENOENT) {
1710 PLOG(ERROR) << "Failed to unmount with MNT_DETACH " << fuse_path;
1711 return -errno;
1712 }
1713 result = android::OK;
1714 }
1715 rmdir(fuse_path.c_str());
1716
1717 LOG(INFO) << "Unmounting pass_through_path " << pass_through_path;
1718 auto status = ForceUnmount(pass_through_path);
1719 if (status != android::OK) {
1720 LOG(ERROR) << "Failed to unmount " << pass_through_path;
1721 }
1722 rmdir(pass_through_path.c_str());
1723
1724 return result;
1725 }
1726
PrepareAndroidDirs(const std::string & volumeRoot)1727 status_t PrepareAndroidDirs(const std::string& volumeRoot) {
1728 std::string androidDir = volumeRoot + kAndroidDir;
1729 std::string androidDataDir = volumeRoot + kAppDataDir;
1730 std::string androidObbDir = volumeRoot + kAppObbDir;
1731 std::string androidMediaDir = volumeRoot + kAppMediaDir;
1732
1733 bool useSdcardFs = IsSdcardfsUsed();
1734
1735 // mode 0771 + sticky bit for inheriting GIDs
1736 mode_t mode = S_IRWXU | S_IRWXG | S_IXOTH | S_ISGID;
1737 if (fs_prepare_dir(androidDir.c_str(), mode, AID_MEDIA_RW, AID_MEDIA_RW) != 0) {
1738 PLOG(ERROR) << "Failed to create " << androidDir;
1739 return -errno;
1740 }
1741
1742 gid_t dataGid = useSdcardFs ? AID_MEDIA_RW : AID_EXT_DATA_RW;
1743 if (fs_prepare_dir(androidDataDir.c_str(), mode, AID_MEDIA_RW, dataGid) != 0) {
1744 PLOG(ERROR) << "Failed to create " << androidDataDir;
1745 return -errno;
1746 }
1747
1748 gid_t obbGid = useSdcardFs ? AID_MEDIA_RW : AID_EXT_OBB_RW;
1749 if (fs_prepare_dir(androidObbDir.c_str(), mode, AID_MEDIA_RW, obbGid) != 0) {
1750 PLOG(ERROR) << "Failed to create " << androidObbDir;
1751 return -errno;
1752 }
1753 // Some other apps, like installers, have write access to the OBB directory
1754 // to pre-download them. To make sure newly created folders in this directory
1755 // have the right permissions, set a default ACL.
1756 SetDefaultAcl(androidObbDir, mode, AID_MEDIA_RW, obbGid, {});
1757
1758 if (fs_prepare_dir(androidMediaDir.c_str(), mode, AID_MEDIA_RW, AID_MEDIA_RW) != 0) {
1759 PLOG(ERROR) << "Failed to create " << androidMediaDir;
1760 return -errno;
1761 }
1762
1763 return OK;
1764 }
1765
1766 namespace ab = android::base;
1767
openDirFd(int parentFd,const char * name)1768 static ab::unique_fd openDirFd(int parentFd, const char* name) {
1769 return ab::unique_fd{::openat(parentFd, name, O_CLOEXEC | O_DIRECTORY | O_PATH | O_NOFOLLOW)};
1770 }
1771
openAbsolutePathFd(std::string_view path)1772 static ab::unique_fd openAbsolutePathFd(std::string_view path) {
1773 if (path.empty() || path[0] != '/') {
1774 errno = EINVAL;
1775 return {};
1776 }
1777 if (path == "/") {
1778 return openDirFd(-1, "/");
1779 }
1780
1781 // first component is special - it includes the leading slash
1782 auto next = path.find('/', 1);
1783 auto component = std::string(path.substr(0, next));
1784 if (component == "..") {
1785 errno = EINVAL;
1786 return {};
1787 }
1788 auto fd = openDirFd(-1, component.c_str());
1789 if (!fd.ok()) {
1790 return fd;
1791 }
1792 path.remove_prefix(std::min(next + 1, path.size()));
1793 while (next != path.npos && !path.empty()) {
1794 next = path.find('/');
1795 component.assign(path.substr(0, next));
1796 fd = openDirFd(fd, component.c_str());
1797 if (!fd.ok()) {
1798 return fd;
1799 }
1800 path.remove_prefix(std::min(next + 1, path.size()));
1801 }
1802 return fd;
1803 }
1804
OpenDirInProcfs(std::string_view path)1805 std::pair<android::base::unique_fd, std::string> OpenDirInProcfs(std::string_view path) {
1806 auto fd = openAbsolutePathFd(path);
1807 if (!fd.ok()) {
1808 return {};
1809 }
1810
1811 auto linkPath = std::string("/proc/self/fd/") += std::to_string(fd.get());
1812 return {std::move(fd), std::move(linkPath)};
1813 }
1814
IsPropertySet(const char * name,bool & value)1815 static bool IsPropertySet(const char* name, bool& value) {
1816 if (base::GetProperty(name, "") == "") return false;
1817
1818 value = base::GetBoolProperty(name, false);
1819 LOG(INFO) << "fuse-bpf is " << (value ? "enabled" : "disabled") << " because of property "
1820 << name;
1821 return true;
1822 }
1823
IsFuseBpfEnabled()1824 bool IsFuseBpfEnabled() {
1825 // This logic is reproduced in packages/providers/MediaProvider/jni/FuseDaemon.cpp
1826 // so changes made here must be reflected there
1827 bool enabled = false;
1828
1829 if (IsPropertySet("ro.fuse.bpf.is_running", enabled)) return enabled;
1830
1831 if (!IsPropertySet("persist.sys.fuse.bpf.override", enabled) &&
1832 !IsPropertySet("ro.fuse.bpf.enabled", enabled)) {
1833 // If the kernel has fuse-bpf, /sys/fs/fuse/features/fuse_bpf will exist and have the
1834 // contents 'supported\n' - see fs/fuse/inode.c in the kernel source
1835 std::string contents;
1836 const char* filename = "/sys/fs/fuse/features/fuse_bpf";
1837 if (!base::ReadFileToString(filename, &contents)) {
1838 LOG(INFO) << "fuse-bpf is disabled because " << filename << " cannot be read";
1839 enabled = false;
1840 } else if (contents == "supported\n") {
1841 LOG(INFO) << "fuse-bpf is enabled because " << filename << " reads 'supported'";
1842 enabled = true;
1843 } else {
1844 LOG(INFO) << "fuse-bpf is disabled because " << filename
1845 << " does not read 'supported'";
1846 enabled = false;
1847 }
1848 }
1849
1850 std::string value = enabled ? "true" : "false";
1851 LOG(INFO) << "Setting ro.fuse.bpf.is_running to " << value;
1852 base::SetProperty("ro.fuse.bpf.is_running", value);
1853 return enabled;
1854 }
1855
PrepareMountDirForUser(userid_t user_id)1856 status_t PrepareMountDirForUser(userid_t user_id) {
1857 std::string pre_fuse_path(StringPrintf("/mnt/user/%d", user_id));
1858 LOG(INFO) << "Creating mount directory " << pre_fuse_path;
1859 // Shell is neither AID_ROOT nor AID_EVERYBODY. Since it equally needs 'execute' access to
1860 // /mnt/user/0 to 'adb shell ls /sdcard' for instance, we set the uid bit of /mnt/user/0 to
1861 // AID_SHELL. This gives shell access along with apps running as group everybody (user 0 apps)
1862 // These bits should be consistent with what is set in zygote in
1863 // com_android_internal_os_Zygote#MountEmulatedStorage on volume bind mount during app fork
1864 auto result = PrepareDir(pre_fuse_path, 0710, user_id ? AID_ROOT : AID_SHELL,
1865 multiuser_get_uid(user_id, AID_EVERYBODY));
1866 if (result != android::OK) {
1867 PLOG(ERROR) << "Failed to prepare directory " << pre_fuse_path;
1868 return -1;
1869 }
1870 return result;
1871 }
1872
1873 } // namespace vold
1874 } // namespace android
1875