blob: 32c789d06bd982687b7042394275d5ba9ad96774 [file] [log] [blame]
Mike Lockwood94afecf2012-10-24 10:45:23 -07001/*
2** Copyright 2008, The Android Open Source Project
3**
Dave Allisond9370732014-01-30 14:19:23 -08004** 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
Mike Lockwood94afecf2012-10-24 10:45:23 -07007**
Dave Allisond9370732014-01-30 14:19:23 -08008** http://www.apache.org/licenses/LICENSE-2.0
Mike Lockwood94afecf2012-10-24 10:45:23 -07009**
Dave Allisond9370732014-01-30 14:19:23 -080010** 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
Mike Lockwood94afecf2012-10-24 10:45:23 -070014** limitations under the License.
15*/
16
Andreas Gampe02d0de52015-11-11 20:43:16 -080017#include "utils.h"
Mike Lockwood94afecf2012-10-24 10:45:23 -070018
Andreas Gampe02d0de52015-11-11 20:43:16 -080019#include <errno.h>
20#include <fcntl.h>
Jeff Sharkey3dfae0c2016-12-12 17:32:56 -070021#include <fts.h>
Andreas Gampe02d0de52015-11-11 20:43:16 -080022#include <stdlib.h>
23#include <sys/stat.h>
24#include <sys/wait.h>
Jeff Sharkey9a998f42016-07-14 18:16:22 -060025#include <sys/xattr.h>
Andreas Gampe02d0de52015-11-11 20:43:16 -080026
27#if defined(__APPLE__)
28#include <sys/mount.h>
29#else
30#include <sys/statfs.h>
31#endif
32
Elliott Hughese4ec9eb2015-12-04 15:39:32 -080033#include <android-base/logging.h>
Andreas Gampe02d0de52015-11-11 20:43:16 -080034#include <android-base/stringprintf.h>
35#include <cutils/fs.h>
Mark Salyzyn7823e122016-09-29 08:08:05 -070036#include <log/log.h>
Andreas Gampe02d0de52015-11-11 20:43:16 -080037#include <private/android_filesystem_config.h>
Jeff Sharkeyc03de092015-04-07 18:14:05 -070038
Andreas Gampe02d0de52015-11-11 20:43:16 -080039#include "globals.h" // extern variables.
40
41#ifndef LOG_TAG
42#define LOG_TAG "installd"
43#endif
Jeff Sharkey9a998f42016-07-14 18:16:22 -060044
Mike Lockwood94afecf2012-10-24 10:45:23 -070045#define CACHE_NOISY(x) //x
Jeff Sharkey9a998f42016-07-14 18:16:22 -060046#define DEBUG_XATTRS 0
Mike Lockwood94afecf2012-10-24 10:45:23 -070047
Jeff Sharkeyc03de092015-04-07 18:14:05 -070048using android::base::StringPrintf;
Mike Lockwood94afecf2012-10-24 10:45:23 -070049
Andreas Gampe02d0de52015-11-11 20:43:16 -080050namespace android {
51namespace installd {
52
Jeff Sharkeyc03de092015-04-07 18:14:05 -070053/**
54 * Check that given string is valid filename, and that it attempts no
55 * parent or child directory traversal.
56 */
Jeff Sharkey423e7462016-12-09 18:18:43 -070057bool is_valid_filename(const std::string& name) {
Jeff Sharkeyc03de092015-04-07 18:14:05 -070058 if (name.empty() || (name == ".") || (name == "..")
59 || (name.find('/') != std::string::npos)) {
60 return false;
61 } else {
62 return true;
63 }
Mike Lockwood94afecf2012-10-24 10:45:23 -070064}
65
Calin Juravle6a1648e2016-02-01 12:12:16 +000066static void check_package_name(const char* package_name) {
67 CHECK(is_valid_filename(package_name));
Jeff Sharkey423e7462016-12-09 18:18:43 -070068 CHECK(is_valid_package_name(package_name));
Calin Juravle6a1648e2016-02-01 12:12:16 +000069}
70
Mike Lockwood94afecf2012-10-24 10:45:23 -070071/**
Jeff Sharkeyd7921182015-04-30 15:58:19 -070072 * Create the path name where package app contents should be stored for
73 * the given volume UUID and package name. An empty UUID is assumed to
74 * be internal storage.
75 */
76std::string create_data_app_package_path(const char* volume_uuid,
77 const char* package_name) {
Calin Juravle6a1648e2016-02-01 12:12:16 +000078 check_package_name(package_name);
Jeff Sharkeyd7921182015-04-30 15:58:19 -070079 return StringPrintf("%s/%s",
80 create_data_app_path(volume_uuid).c_str(), package_name);
81}
82
83/**
Jeff Sharkeyc03de092015-04-07 18:14:05 -070084 * Create the path name where package data should be stored for the given
85 * volume UUID, package name, and user ID. An empty UUID is assumed to be
86 * internal storage.
Mike Lockwood94afecf2012-10-24 10:45:23 -070087 */
Jeff Sharkey2f720f72016-04-10 20:51:40 -060088std::string create_data_user_ce_package_path(const char* volume_uuid,
Jeff Sharkeyd7921182015-04-30 15:58:19 -070089 userid_t user, const char* package_name) {
Calin Juravle6a1648e2016-02-01 12:12:16 +000090 check_package_name(package_name);
Jeff Sharkeyd7921182015-04-30 15:58:19 -070091 return StringPrintf("%s/%s",
Jeff Sharkey2f720f72016-04-10 20:51:40 -060092 create_data_user_ce_path(volume_uuid, user).c_str(), package_name);
93}
94
95std::string create_data_user_ce_package_path(const char* volume_uuid, userid_t user,
96 const char* package_name, ino_t ce_data_inode) {
97 // For testing purposes, rely on the inode when defined; this could be
98 // optimized to use access() in the future.
99 auto fallback = create_data_user_ce_package_path(volume_uuid, user, package_name);
100 if (ce_data_inode != 0) {
101 auto user_path = create_data_user_ce_path(volume_uuid, user);
102 DIR* dir = opendir(user_path.c_str());
103 if (dir == nullptr) {
104 PLOG(ERROR) << "Failed to opendir " << user_path;
105 return fallback;
106 }
107
108 struct dirent* ent;
109 while ((ent = readdir(dir))) {
110 if (ent->d_ino == ce_data_inode) {
Jeff Sharkey1d992f92016-04-13 13:45:47 -0600111 auto resolved = StringPrintf("%s/%s", user_path.c_str(), ent->d_name);
Jeff Sharkey9a998f42016-07-14 18:16:22 -0600112#if DEBUG_XATTRS
Jeff Sharkey1d992f92016-04-13 13:45:47 -0600113 if (resolved != fallback) {
114 LOG(DEBUG) << "Resolved path " << resolved << " for inode " << ce_data_inode
115 << " instead of " << fallback;
116 }
Jeff Sharkey9a998f42016-07-14 18:16:22 -0600117#endif
Jeff Sharkey2f720f72016-04-10 20:51:40 -0600118 closedir(dir);
Jeff Sharkey1d992f92016-04-13 13:45:47 -0600119 return resolved;
Jeff Sharkey2f720f72016-04-10 20:51:40 -0600120 }
121 }
Jeff Sharkey1d992f92016-04-13 13:45:47 -0600122 LOG(WARNING) << "Failed to resolve inode " << ce_data_inode << "; using " << fallback;
Jeff Sharkey2f720f72016-04-10 20:51:40 -0600123 closedir(dir);
124 return fallback;
125 } else {
126 return fallback;
127 }
Jeff Sharkeyc03de092015-04-07 18:14:05 -0700128}
Mike Lockwood94afecf2012-10-24 10:45:23 -0700129
Jeff Sharkey63ec2d62015-11-09 13:10:36 -0800130std::string create_data_user_de_package_path(const char* volume_uuid,
131 userid_t user, const char* package_name) {
Calin Juravle6a1648e2016-02-01 12:12:16 +0000132 check_package_name(package_name);
Jeff Sharkey63ec2d62015-11-09 13:10:36 -0800133 return StringPrintf("%s/%s",
134 create_data_user_de_path(volume_uuid, user).c_str(), package_name);
135}
136
Jeff Sharkeyc03de092015-04-07 18:14:05 -0700137int create_pkg_path(char path[PKG_PATH_MAX], const char *pkgname,
138 const char *postfix, userid_t userid) {
Jeff Sharkey423e7462016-12-09 18:18:43 -0700139 if (!is_valid_package_name(pkgname)) {
Jeff Sharkeyc03de092015-04-07 18:14:05 -0700140 path[0] = '\0';
Mike Lockwood94afecf2012-10-24 10:45:23 -0700141 return -1;
142 }
143
Jeff Sharkey2f720f72016-04-10 20:51:40 -0600144 std::string _tmp(create_data_user_ce_package_path(nullptr, userid, pkgname) + postfix);
Jeff Sharkeyc03de092015-04-07 18:14:05 -0700145 const char* tmp = _tmp.c_str();
146 if (strlen(tmp) >= PKG_PATH_MAX) {
147 path[0] = '\0';
148 return -1;
149 } else {
150 strcpy(path, tmp);
151 return 0;
Mike Lockwood94afecf2012-10-24 10:45:23 -0700152 }
Mike Lockwood94afecf2012-10-24 10:45:23 -0700153}
154
Jeff Sharkey41ea4242015-04-09 11:34:03 -0700155std::string create_data_path(const char* volume_uuid) {
156 if (volume_uuid == nullptr) {
157 return "/data";
158 } else {
159 CHECK(is_valid_filename(volume_uuid));
160 return StringPrintf("/mnt/expand/%s", volume_uuid);
161 }
162}
163
Mike Lockwood94afecf2012-10-24 10:45:23 -0700164/**
Jeff Sharkeyd7921182015-04-30 15:58:19 -0700165 * Create the path name for app data.
166 */
167std::string create_data_app_path(const char* volume_uuid) {
168 return StringPrintf("%s/app", create_data_path(volume_uuid).c_str());
169}
170
171/**
Jeff Sharkeyabe4fe52013-07-10 16:55:46 -0700172 * Create the path name for user data for a certain userid.
Mike Lockwood94afecf2012-10-24 10:45:23 -0700173 */
Jeff Sharkey2f720f72016-04-10 20:51:40 -0600174std::string create_data_user_ce_path(const char* volume_uuid, userid_t userid) {
Jeff Sharkey41ea4242015-04-09 11:34:03 -0700175 std::string data(create_data_path(volume_uuid));
176 if (volume_uuid == nullptr) {
177 if (userid == 0) {
178 return StringPrintf("%s/data", data.c_str());
179 } else {
180 return StringPrintf("%s/user/%u", data.c_str(), userid);
181 }
Mike Lockwood94afecf2012-10-24 10:45:23 -0700182 } else {
Jeff Sharkey41ea4242015-04-09 11:34:03 -0700183 return StringPrintf("%s/user/%u", data.c_str(), userid);
Mike Lockwood94afecf2012-10-24 10:45:23 -0700184 }
Mike Lockwood94afecf2012-10-24 10:45:23 -0700185}
186
187/**
Jeff Sharkey63ec2d62015-11-09 13:10:36 -0800188 * Create the path name for device encrypted user data for a certain userid.
189 */
190std::string create_data_user_de_path(const char* volume_uuid, userid_t userid) {
191 std::string data(create_data_path(volume_uuid));
192 return StringPrintf("%s/user_de/%u", data.c_str(), userid);
193}
194
195/**
Jeff Sharkeyabe4fe52013-07-10 16:55:46 -0700196 * Create the path name for media for a certain userid.
Mike Lockwood94afecf2012-10-24 10:45:23 -0700197 */
Jeff Sharkey41ea4242015-04-09 11:34:03 -0700198std::string create_data_media_path(const char* volume_uuid, userid_t userid) {
199 return StringPrintf("%s/media/%u", create_data_path(volume_uuid).c_str(), userid);
Mike Lockwood94afecf2012-10-24 10:45:23 -0700200}
201
Jeff Sharkeydf2d7542017-01-07 09:19:35 -0700202std::string create_data_media_obb_path(const char* volume_uuid, const char* package_name) {
203 return StringPrintf("%s/media/obb/%s", create_data_path(volume_uuid).c_str(), package_name);
204}
205
Jeff Sharkey3dfae0c2016-12-12 17:32:56 -0700206std::string create_data_media_package_path(const char* volume_uuid, userid_t userid,
207 const char* data_type, const char* package_name) {
208 return StringPrintf("%s/Android/%s/%s", create_data_media_path(volume_uuid, userid).c_str(),
209 data_type, package_name);
210}
211
Jeff Sharkey379a12b2016-04-14 20:45:06 -0600212std::string create_data_misc_legacy_path(userid_t userid) {
213 return StringPrintf("%s/misc/user/%u", create_data_path(nullptr).c_str(), userid);
214}
215
Jeff Sharkeydf2d7542017-01-07 09:19:35 -0700216std::string create_data_user_profile_path(userid_t userid) {
Calin Juravle6a1648e2016-02-01 12:12:16 +0000217 return StringPrintf("%s/cur/%u", android_profiles_dir.path, userid);
218}
219
220std::string create_data_user_profile_package_path(userid_t user, const char* package_name) {
221 check_package_name(package_name);
Jeff Sharkeydf2d7542017-01-07 09:19:35 -0700222 return StringPrintf("%s/%s",create_data_user_profile_path(user).c_str(), package_name);
223}
224
225std::string create_data_ref_profile_path() {
226 return StringPrintf("%s/ref", android_profiles_dir.path);
Calin Juravle6a1648e2016-02-01 12:12:16 +0000227}
228
229std::string create_data_ref_profile_package_path(const char* package_name) {
230 check_package_name(package_name);
231 return StringPrintf("%s/ref/%s", android_profiles_dir.path, package_name);
232}
233
Jeff Sharkey3dfae0c2016-12-12 17:32:56 -0700234std::string create_data_dalvik_cache_path() {
235 return "/data/dalvik-cache";
236}
237
238std::string create_data_misc_foreign_dex_path(userid_t userid) {
239 return StringPrintf("/data/misc/profiles/cur/%d/foreign-dex", userid);
240}
241
Jeff Sharkey90aff262016-12-12 14:28:24 -0700242// Keep profile paths in sync with ActivityThread.
243constexpr const char* PRIMARY_PROFILE_NAME = "primary.prof";
244
245std::string create_primary_profile(const std::string& profile_dir) {
246 return StringPrintf("%s/%s", profile_dir.c_str(), PRIMARY_PROFILE_NAME);
247}
248
Jeff Sharkeye3637242015-04-08 20:56:42 -0700249std::vector<userid_t> get_known_users(const char* volume_uuid) {
250 std::vector<userid_t> users;
251
252 // We always have an owner
253 users.push_back(0);
254
255 std::string path(create_data_path(volume_uuid) + "/" + SECONDARY_USER_PREFIX);
256 DIR* dir = opendir(path.c_str());
257 if (dir == NULL) {
258 // Unable to discover other users, but at least return owner
259 PLOG(ERROR) << "Failed to opendir " << path;
260 return users;
261 }
262
263 struct dirent* ent;
264 while ((ent = readdir(dir))) {
265 if (ent->d_type != DT_DIR) {
266 continue;
267 }
268
269 char* end;
270 userid_t user = strtol(ent->d_name, &end, 10);
271 if (*end == '\0' && user != 0) {
272 LOG(DEBUG) << "Found valid user " << user;
273 users.push_back(user);
274 }
275 }
276 closedir(dir);
277
278 return users;
279}
280
Jeff Sharkey3dfae0c2016-12-12 17:32:56 -0700281int calculate_tree_size(const std::string& path, int64_t* size,
Jeff Sharkeydf2d7542017-01-07 09:19:35 -0700282 int32_t include_gid, int32_t exclude_gid, bool exclude_apps) {
Jeff Sharkey3dfae0c2016-12-12 17:32:56 -0700283 FTS *fts;
284 FTSENT *p;
Jeff Sharkeydf2d7542017-01-07 09:19:35 -0700285 int64_t matchedSize = 0;
Jeff Sharkey3dfae0c2016-12-12 17:32:56 -0700286 char *argv[] = { (char*) path.c_str(), nullptr };
287 if (!(fts = fts_open(argv, FTS_PHYSICAL | FTS_XDEV, NULL))) {
288 if (errno != ENOENT) {
289 PLOG(ERROR) << "Failed to fts_open " << path;
290 }
291 return -1;
292 }
293 while ((p = fts_read(fts)) != NULL) {
294 switch (p->fts_info) {
295 case FTS_D:
296 case FTS_DEFAULT:
297 case FTS_F:
298 case FTS_SL:
299 case FTS_SLNONE:
Jeff Sharkeydf2d7542017-01-07 09:19:35 -0700300 int32_t uid = p->fts_statp->st_uid;
301 int32_t gid = p->fts_statp->st_gid;
302 int32_t user_uid = multiuser_get_app_id(uid);
303 int32_t user_gid = multiuser_get_app_id(gid);
304 if (exclude_apps && ((user_uid >= AID_APP_START && user_uid <= AID_APP_END)
305 || (user_gid >= AID_CACHE_GID_START && user_gid <= AID_CACHE_GID_END)
306 || (user_gid >= AID_SHARED_GID_START && user_gid <= AID_SHARED_GID_END))) {
307 // Don't traverse inside or measure
308 fts_set(fts, p, FTS_SKIP);
Jeff Sharkey3dfae0c2016-12-12 17:32:56 -0700309 break;
310 }
Jeff Sharkeydf2d7542017-01-07 09:19:35 -0700311 if (include_gid != -1 && gid != include_gid) {
Jeff Sharkey3dfae0c2016-12-12 17:32:56 -0700312 break;
313 }
Jeff Sharkeydf2d7542017-01-07 09:19:35 -0700314 if (exclude_gid != -1 && gid == exclude_gid) {
315 break;
316 }
317 matchedSize += (p->fts_statp->st_blocks * 512);
Jeff Sharkey3dfae0c2016-12-12 17:32:56 -0700318 break;
319 }
320 }
321 fts_close(fts);
Jeff Sharkeydf2d7542017-01-07 09:19:35 -0700322#if MEASURE_DEBUG
323 if ((include_gid == -1) && (exclude_gid == -1)) {
324 LOG(DEBUG) << "Measured " << path << " size " << matchedSize;
325 } else {
326 LOG(DEBUG) << "Measured " << path << " size " << matchedSize << "; include " << include_gid
327 << " exclude " << exclude_gid;
328 }
329#endif
330 *size += matchedSize;
Jeff Sharkey3dfae0c2016-12-12 17:32:56 -0700331 return 0;
332}
333
Mike Lockwood94afecf2012-10-24 10:45:23 -0700334int create_move_path(char path[PKG_PATH_MAX],
335 const char* pkgname,
336 const char* leaf,
Andreas Gampe02d0de52015-11-11 20:43:16 -0800337 userid_t userid ATTRIBUTE_UNUSED)
Mike Lockwood94afecf2012-10-24 10:45:23 -0700338{
339 if ((android_data_dir.len + strlen(PRIMARY_USER_PREFIX) + strlen(pkgname) + strlen(leaf) + 1)
340 >= PKG_PATH_MAX) {
341 return -1;
342 }
343
344 sprintf(path, "%s%s%s/%s", android_data_dir.path, PRIMARY_USER_PREFIX, pkgname, leaf);
345 return 0;
346}
347
348/**
349 * Checks whether the package name is valid. Returns -1 on error and
350 * 0 on success.
351 */
Jeff Sharkey423e7462016-12-09 18:18:43 -0700352bool is_valid_package_name(const std::string& packageName) {
353 const char* pkgname = packageName.c_str();
Mike Lockwood94afecf2012-10-24 10:45:23 -0700354 const char *x = pkgname;
355 int alpha = -1;
356
Jeff Sharkeyc03de092015-04-07 18:14:05 -0700357 if (strlen(pkgname) > PKG_NAME_MAX) {
Jeff Sharkey423e7462016-12-09 18:18:43 -0700358 return false;
Jeff Sharkeyc03de092015-04-07 18:14:05 -0700359 }
360
Mike Lockwood94afecf2012-10-24 10:45:23 -0700361 while (*x) {
362 if (isalnum(*x) || (*x == '_')) {
363 /* alphanumeric or underscore are fine */
364 } else if (*x == '.') {
365 if ((x == pkgname) || (x[1] == '.') || (x[1] == 0)) {
366 /* periods must not be first, last, or doubled */
367 ALOGE("invalid package name '%s'\n", pkgname);
Jeff Sharkey423e7462016-12-09 18:18:43 -0700368 return false;
Mike Lockwood94afecf2012-10-24 10:45:23 -0700369 }
370 } else if (*x == '-') {
371 /* Suffix -X is fine to let versioning of packages.
372 But whatever follows should be alphanumeric.*/
373 alpha = 1;
374 } else {
375 /* anything not A-Z, a-z, 0-9, _, or . is invalid */
376 ALOGE("invalid package name '%s'\n", pkgname);
Jeff Sharkey423e7462016-12-09 18:18:43 -0700377 return false;
Mike Lockwood94afecf2012-10-24 10:45:23 -0700378 }
379
380 x++;
381 }
382
383 if (alpha == 1) {
384 // Skip current character
385 x++;
386 while (*x) {
387 if (!isalnum(*x)) {
388 ALOGE("invalid package name '%s' should include only numbers after -\n", pkgname);
Jeff Sharkey423e7462016-12-09 18:18:43 -0700389 return false;
Mike Lockwood94afecf2012-10-24 10:45:23 -0700390 }
391 x++;
392 }
393 }
394
Jeff Sharkey423e7462016-12-09 18:18:43 -0700395 return true;
Mike Lockwood94afecf2012-10-24 10:45:23 -0700396}
397
Narayan Kamath3aee2c52014-06-10 13:16:47 +0100398static int _delete_dir_contents(DIR *d,
399 int (*exclusion_predicate)(const char *name, const int is_dir))
Mike Lockwood94afecf2012-10-24 10:45:23 -0700400{
401 int result = 0;
402 struct dirent *de;
403 int dfd;
404
405 dfd = dirfd(d);
406
407 if (dfd < 0) return -1;
408
409 while ((de = readdir(d))) {
410 const char *name = de->d_name;
411
Narayan Kamath3aee2c52014-06-10 13:16:47 +0100412 /* check using the exclusion predicate, if provided */
413 if (exclusion_predicate && exclusion_predicate(name, (de->d_type == DT_DIR))) {
414 continue;
415 }
Mike Lockwood94afecf2012-10-24 10:45:23 -0700416
417 if (de->d_type == DT_DIR) {
Chih-Hung Hsieh99d9fb12014-09-11 14:44:46 -0700418 int subfd;
Mike Lockwood94afecf2012-10-24 10:45:23 -0700419 DIR *subdir;
420
421 /* always skip "." and ".." */
422 if (name[0] == '.') {
423 if (name[1] == 0) continue;
424 if ((name[1] == '.') && (name[2] == 0)) continue;
425 }
426
Nick Kralevich8b7acac2015-08-10 13:43:00 -0700427 subfd = openat(dfd, name, O_RDONLY | O_DIRECTORY | O_NOFOLLOW | O_CLOEXEC);
Mike Lockwood94afecf2012-10-24 10:45:23 -0700428 if (subfd < 0) {
429 ALOGE("Couldn't openat %s: %s\n", name, strerror(errno));
430 result = -1;
431 continue;
432 }
433 subdir = fdopendir(subfd);
434 if (subdir == NULL) {
435 ALOGE("Couldn't fdopendir %s: %s\n", name, strerror(errno));
436 close(subfd);
437 result = -1;
438 continue;
439 }
Narayan Kamath3aee2c52014-06-10 13:16:47 +0100440 if (_delete_dir_contents(subdir, exclusion_predicate)) {
Mike Lockwood94afecf2012-10-24 10:45:23 -0700441 result = -1;
442 }
443 closedir(subdir);
444 if (unlinkat(dfd, name, AT_REMOVEDIR) < 0) {
445 ALOGE("Couldn't unlinkat %s: %s\n", name, strerror(errno));
446 result = -1;
447 }
448 } else {
449 if (unlinkat(dfd, name, 0) < 0) {
450 ALOGE("Couldn't unlinkat %s: %s\n", name, strerror(errno));
451 result = -1;
452 }
453 }
454 }
455
456 return result;
457}
458
Calin Juravleb06f98a2016-03-28 15:11:01 +0100459int delete_dir_contents(const std::string& pathname, bool ignore_if_missing) {
460 return delete_dir_contents(pathname.c_str(), 0, NULL, ignore_if_missing);
Jeff Sharkeyebf728f2015-11-18 14:15:17 -0700461}
462
Calin Juravleb06f98a2016-03-28 15:11:01 +0100463int delete_dir_contents_and_dir(const std::string& pathname, bool ignore_if_missing) {
464 return delete_dir_contents(pathname.c_str(), 1, NULL, ignore_if_missing);
Jeff Sharkeyebf728f2015-11-18 14:15:17 -0700465}
466
Mike Lockwood94afecf2012-10-24 10:45:23 -0700467int delete_dir_contents(const char *pathname,
468 int also_delete_dir,
Calin Juravleb06f98a2016-03-28 15:11:01 +0100469 int (*exclusion_predicate)(const char*, const int),
470 bool ignore_if_missing)
Mike Lockwood94afecf2012-10-24 10:45:23 -0700471{
472 int res = 0;
473 DIR *d;
474
475 d = opendir(pathname);
476 if (d == NULL) {
Calin Juravleb06f98a2016-03-28 15:11:01 +0100477 if (ignore_if_missing && (errno == ENOENT)) {
478 return 0;
479 }
Mike Lockwood94afecf2012-10-24 10:45:23 -0700480 ALOGE("Couldn't opendir %s: %s\n", pathname, strerror(errno));
481 return -errno;
482 }
Narayan Kamath3aee2c52014-06-10 13:16:47 +0100483 res = _delete_dir_contents(d, exclusion_predicate);
Mike Lockwood94afecf2012-10-24 10:45:23 -0700484 closedir(d);
485 if (also_delete_dir) {
486 if (rmdir(pathname)) {
487 ALOGE("Couldn't rmdir %s: %s\n", pathname, strerror(errno));
488 res = -1;
489 }
490 }
491 return res;
492}
493
494int delete_dir_contents_fd(int dfd, const char *name)
495{
496 int fd, res;
497 DIR *d;
498
Nick Kralevich8b7acac2015-08-10 13:43:00 -0700499 fd = openat(dfd, name, O_RDONLY | O_DIRECTORY | O_NOFOLLOW | O_CLOEXEC);
Mike Lockwood94afecf2012-10-24 10:45:23 -0700500 if (fd < 0) {
501 ALOGE("Couldn't openat %s: %s\n", name, strerror(errno));
502 return -1;
503 }
504 d = fdopendir(fd);
505 if (d == NULL) {
506 ALOGE("Couldn't fdopendir %s: %s\n", name, strerror(errno));
507 close(fd);
508 return -1;
509 }
510 res = _delete_dir_contents(d, 0);
511 closedir(d);
512 return res;
513}
514
Robin Lee60fd3fe2014-10-07 16:55:02 +0100515static int _copy_owner_permissions(int srcfd, int dstfd)
516{
517 struct stat st;
518 if (fstat(srcfd, &st) != 0) {
519 return -1;
520 }
521 if (fchmod(dstfd, st.st_mode) != 0) {
522 return -1;
523 }
524 return 0;
525}
526
527static int _copy_dir_files(int sdfd, int ddfd, uid_t owner, gid_t group)
528{
529 int result = 0;
530 if (_copy_owner_permissions(sdfd, ddfd) != 0) {
531 ALOGE("_copy_dir_files failed to copy dir permissions\n");
532 }
533 if (fchown(ddfd, owner, group) != 0) {
534 ALOGE("_copy_dir_files failed to change dir owner\n");
535 }
536
537 DIR *ds = fdopendir(sdfd);
538 if (ds == NULL) {
539 ALOGE("Couldn't fdopendir: %s\n", strerror(errno));
540 return -1;
541 }
542 struct dirent *de;
543 while ((de = readdir(ds))) {
544 if (de->d_type != DT_REG) {
545 continue;
546 }
547
548 const char *name = de->d_name;
549 int fsfd = openat(sdfd, name, O_RDONLY | O_NOFOLLOW | O_CLOEXEC);
550 int fdfd = openat(ddfd, name, O_WRONLY | O_NOFOLLOW | O_CLOEXEC | O_CREAT, 0600);
551 if (fsfd == -1 || fdfd == -1) {
552 ALOGW("Couldn't copy %s: %s\n", name, strerror(errno));
553 } else {
554 if (_copy_owner_permissions(fsfd, fdfd) != 0) {
555 ALOGE("Failed to change file permissions\n");
556 }
557 if (fchown(fdfd, owner, group) != 0) {
558 ALOGE("Failed to change file owner\n");
559 }
560
561 char buf[8192];
562 ssize_t size;
563 while ((size = read(fsfd, buf, sizeof(buf))) > 0) {
564 write(fdfd, buf, size);
565 }
566 if (size < 0) {
567 ALOGW("Couldn't copy %s: %s\n", name, strerror(errno));
568 result = -1;
569 }
570 }
571 close(fdfd);
572 close(fsfd);
573 }
574
575 return result;
576}
577
578int copy_dir_files(const char *srcname,
579 const char *dstname,
580 uid_t owner,
581 uid_t group)
582{
583 int res = 0;
584 DIR *ds = NULL;
585 DIR *dd = NULL;
586
587 ds = opendir(srcname);
588 if (ds == NULL) {
589 ALOGE("Couldn't opendir %s: %s\n", srcname, strerror(errno));
590 return -errno;
591 }
592
593 mkdir(dstname, 0600);
594 dd = opendir(dstname);
595 if (dd == NULL) {
596 ALOGE("Couldn't opendir %s: %s\n", dstname, strerror(errno));
597 closedir(ds);
598 return -errno;
599 }
600
601 int sdfd = dirfd(ds);
602 int ddfd = dirfd(dd);
603 if (sdfd != -1 && ddfd != -1) {
604 res = _copy_dir_files(sdfd, ddfd, owner, group);
605 } else {
606 res = -errno;
607 }
608 closedir(dd);
609 closedir(ds);
610 return res;
611}
612
Jeff Sharkey41ea4242015-04-09 11:34:03 -0700613int64_t data_disk_free(const std::string& data_path)
Mike Lockwood94afecf2012-10-24 10:45:23 -0700614{
615 struct statfs sfs;
Jeff Sharkey41ea4242015-04-09 11:34:03 -0700616 if (statfs(data_path.c_str(), &sfs) == 0) {
Mike Lockwood94afecf2012-10-24 10:45:23 -0700617 return sfs.f_bavail * sfs.f_bsize;
618 } else {
Jeff Sharkey41ea4242015-04-09 11:34:03 -0700619 PLOG(ERROR) << "Couldn't statfs " << data_path;
Mike Lockwood94afecf2012-10-24 10:45:23 -0700620 return -1;
621 }
622}
623
624cache_t* start_cache_collection()
625{
626 cache_t* cache = (cache_t*)calloc(1, sizeof(cache_t));
627 return cache;
628}
629
630#define CACHE_BLOCK_SIZE (512*1024)
631
632static void* _cache_malloc(cache_t* cache, size_t len)
633{
634 len = (len+3)&~3;
635 if (len > (CACHE_BLOCK_SIZE/2)) {
636 // It doesn't make sense to try to put this allocation into one
637 // of our blocks, because it is so big. Instead, make a new dedicated
638 // block for it.
639 int8_t* res = (int8_t*)malloc(len+sizeof(void*));
640 if (res == NULL) {
641 return NULL;
642 }
Jeff Sharkey9a998f42016-07-14 18:16:22 -0600643 CACHE_NOISY(ALOGI("Allocated large cache mem block: %p size %zu", res, len));
Mike Lockwood94afecf2012-10-24 10:45:23 -0700644 // Link it into our list of blocks, not disrupting the current one.
645 if (cache->memBlocks == NULL) {
646 *(void**)res = NULL;
647 cache->memBlocks = res;
648 } else {
649 *(void**)res = *(void**)cache->memBlocks;
650 *(void**)cache->memBlocks = res;
651 }
652 return res + sizeof(void*);
653 }
654 int8_t* res = cache->curMemBlockAvail;
655 int8_t* nextPos = res + len;
656 if (cache->memBlocks == NULL || nextPos > cache->curMemBlockEnd) {
Jeff Sharkey19803802015-04-07 12:44:51 -0700657 int8_t* newBlock = (int8_t*) malloc(CACHE_BLOCK_SIZE);
Mike Lockwood94afecf2012-10-24 10:45:23 -0700658 if (newBlock == NULL) {
659 return NULL;
660 }
661 CACHE_NOISY(ALOGI("Allocated new cache mem block: %p", newBlock));
662 *(void**)newBlock = cache->memBlocks;
663 cache->memBlocks = newBlock;
664 res = cache->curMemBlockAvail = newBlock + sizeof(void*);
665 cache->curMemBlockEnd = newBlock + CACHE_BLOCK_SIZE;
666 nextPos = res + len;
667 }
Jeff Sharkey9a998f42016-07-14 18:16:22 -0600668 CACHE_NOISY(ALOGI("cache_malloc: ret %p size %zu, block=%p, nextPos=%p",
Mike Lockwood94afecf2012-10-24 10:45:23 -0700669 res, len, cache->memBlocks, nextPos));
670 cache->curMemBlockAvail = nextPos;
671 return res;
672}
673
674static void* _cache_realloc(cache_t* cache, void* cur, size_t origLen, size_t len)
675{
676 // This isn't really a realloc, but it is good enough for our purposes here.
677 void* alloc = _cache_malloc(cache, len);
678 if (alloc != NULL && cur != NULL) {
679 memcpy(alloc, cur, origLen < len ? origLen : len);
680 }
681 return alloc;
682}
683
684static void _inc_num_cache_collected(cache_t* cache)
685{
686 cache->numCollected++;
687 if ((cache->numCollected%20000) == 0) {
Mark Salyzyn92dc3fc2014-03-12 13:12:44 -0700688 ALOGI("Collected cache so far: %zd directories, %zd files",
Mike Lockwood94afecf2012-10-24 10:45:23 -0700689 cache->numDirs, cache->numFiles);
690 }
691}
692
693static cache_dir_t* _add_cache_dir_t(cache_t* cache, cache_dir_t* parent, const char *name)
694{
695 size_t nameLen = strlen(name);
696 cache_dir_t* dir = (cache_dir_t*)_cache_malloc(cache, sizeof(cache_dir_t)+nameLen+1);
697 if (dir != NULL) {
698 dir->parent = parent;
699 dir->childCount = 0;
700 dir->hiddenCount = 0;
701 dir->deleted = 0;
702 strcpy(dir->name, name);
703 if (cache->numDirs >= cache->availDirs) {
704 size_t newAvail = cache->availDirs < 1000 ? 1000 : cache->availDirs*2;
705 cache_dir_t** newDirs = (cache_dir_t**)_cache_realloc(cache, cache->dirs,
706 cache->availDirs*sizeof(cache_dir_t*), newAvail*sizeof(cache_dir_t*));
707 if (newDirs == NULL) {
708 ALOGE("Failure growing cache dirs array for %s\n", name);
709 return NULL;
710 }
711 cache->availDirs = newAvail;
712 cache->dirs = newDirs;
713 }
714 cache->dirs[cache->numDirs] = dir;
715 cache->numDirs++;
716 if (parent != NULL) {
717 parent->childCount++;
718 }
719 _inc_num_cache_collected(cache);
720 } else {
721 ALOGE("Failure allocating cache_dir_t for %s\n", name);
722 }
723 return dir;
724}
725
726static cache_file_t* _add_cache_file_t(cache_t* cache, cache_dir_t* dir, time_t modTime,
727 const char *name)
728{
729 size_t nameLen = strlen(name);
730 cache_file_t* file = (cache_file_t*)_cache_malloc(cache, sizeof(cache_file_t)+nameLen+1);
731 if (file != NULL) {
732 file->dir = dir;
733 file->modTime = modTime;
734 strcpy(file->name, name);
735 if (cache->numFiles >= cache->availFiles) {
736 size_t newAvail = cache->availFiles < 1000 ? 1000 : cache->availFiles*2;
737 cache_file_t** newFiles = (cache_file_t**)_cache_realloc(cache, cache->files,
738 cache->availFiles*sizeof(cache_file_t*), newAvail*sizeof(cache_file_t*));
739 if (newFiles == NULL) {
740 ALOGE("Failure growing cache file array for %s\n", name);
741 return NULL;
742 }
743 cache->availFiles = newAvail;
744 cache->files = newFiles;
745 }
Jeff Sharkey9a998f42016-07-14 18:16:22 -0600746 CACHE_NOISY(ALOGI("Setting file %p at position %zd in array %p", file,
Mike Lockwood94afecf2012-10-24 10:45:23 -0700747 cache->numFiles, cache->files));
748 cache->files[cache->numFiles] = file;
749 cache->numFiles++;
750 dir->childCount++;
751 _inc_num_cache_collected(cache);
752 } else {
753 ALOGE("Failure allocating cache_file_t for %s\n", name);
754 }
755 return file;
756}
757
758static int _add_cache_files(cache_t *cache, cache_dir_t *parentDir, const char *dirName,
759 DIR* dir, char *pathBase, char *pathPos, size_t pathAvailLen)
760{
761 struct dirent *de;
762 cache_dir_t* cacheDir = NULL;
763 int dfd;
764
765 CACHE_NOISY(ALOGI("_add_cache_files: parent=%p dirName=%s dir=%p pathBase=%s",
766 parentDir, dirName, dir, pathBase));
767
768 dfd = dirfd(dir);
769
770 if (dfd < 0) return 0;
771
772 // Sub-directories always get added to the data structure, so if they
773 // are empty we will know about them to delete them later.
774 cacheDir = _add_cache_dir_t(cache, parentDir, dirName);
775
776 while ((de = readdir(dir))) {
777 const char *name = de->d_name;
778
779 if (de->d_type == DT_DIR) {
780 int subfd;
781 DIR *subdir;
782
783 /* always skip "." and ".." */
784 if (name[0] == '.') {
785 if (name[1] == 0) continue;
786 if ((name[1] == '.') && (name[2] == 0)) continue;
787 }
788
Nick Kralevich8b7acac2015-08-10 13:43:00 -0700789 subfd = openat(dfd, name, O_RDONLY | O_DIRECTORY | O_NOFOLLOW | O_CLOEXEC);
Mike Lockwood94afecf2012-10-24 10:45:23 -0700790 if (subfd < 0) {
791 ALOGE("Couldn't openat %s: %s\n", name, strerror(errno));
792 continue;
793 }
794 subdir = fdopendir(subfd);
795 if (subdir == NULL) {
796 ALOGE("Couldn't fdopendir %s: %s\n", name, strerror(errno));
797 close(subfd);
798 continue;
799 }
800 if (cacheDir == NULL) {
801 cacheDir = _add_cache_dir_t(cache, parentDir, dirName);
802 }
803 if (cacheDir != NULL) {
804 // Update pathBase for the new path... this may change dirName
805 // if that is also pointing to the path, but we are done with it
806 // now.
807 size_t finallen = snprintf(pathPos, pathAvailLen, "/%s", name);
808 CACHE_NOISY(ALOGI("Collecting dir %s\n", pathBase));
809 if (finallen < pathAvailLen) {
810 _add_cache_files(cache, cacheDir, name, subdir, pathBase,
811 pathPos+finallen, pathAvailLen-finallen);
812 } else {
813 // Whoops, the final path is too long! We'll just delete
814 // this directory.
815 ALOGW("Cache dir %s truncated in path %s; deleting dir\n",
816 name, pathBase);
817 _delete_dir_contents(subdir, NULL);
818 if (unlinkat(dfd, name, AT_REMOVEDIR) < 0) {
819 ALOGE("Couldn't unlinkat %s: %s\n", name, strerror(errno));
820 }
821 }
822 }
823 closedir(subdir);
824 } else if (de->d_type == DT_REG) {
825 // Skip files that start with '.'; they will be deleted if
826 // their entire directory is deleted. This allows for metadata
827 // like ".nomedia" to remain in the directory until the entire
828 // directory is deleted.
829 if (cacheDir == NULL) {
830 cacheDir = _add_cache_dir_t(cache, parentDir, dirName);
831 }
832 if (name[0] == '.') {
833 cacheDir->hiddenCount++;
834 continue;
835 }
836 if (cacheDir != NULL) {
837 // Build final full path for file... this may change dirName
838 // if that is also pointing to the path, but we are done with it
839 // now.
840 size_t finallen = snprintf(pathPos, pathAvailLen, "/%s", name);
841 CACHE_NOISY(ALOGI("Collecting file %s\n", pathBase));
842 if (finallen < pathAvailLen) {
843 struct stat s;
844 if (stat(pathBase, &s) >= 0) {
845 _add_cache_file_t(cache, cacheDir, s.st_mtime, name);
846 } else {
847 ALOGW("Unable to stat cache file %s; deleting\n", pathBase);
848 if (unlink(pathBase) < 0) {
849 ALOGE("Couldn't unlink %s: %s\n", pathBase, strerror(errno));
850 }
851 }
852 } else {
853 // Whoops, the final path is too long! We'll just delete
854 // this file.
855 ALOGW("Cache file %s truncated in path %s; deleting\n",
856 name, pathBase);
857 if (unlinkat(dfd, name, 0) < 0) {
858 *pathPos = 0;
859 ALOGE("Couldn't unlinkat %s in %s: %s\n", name, pathBase,
860 strerror(errno));
861 }
862 }
863 }
864 } else {
865 cacheDir->hiddenCount++;
866 }
867 }
868 return 0;
869}
870
Jeff Sharkey9a998f42016-07-14 18:16:22 -0600871int get_path_inode(const std::string& path, ino_t *inode) {
872 struct stat buf;
873 memset(&buf, 0, sizeof(buf));
874 if (stat(path.c_str(), &buf) != 0) {
875 PLOG(WARNING) << "Failed to stat " << path;
876 return -1;
877 } else {
878 *inode = buf.st_ino;
879 return 0;
880 }
881}
882
883/**
884 * Write the inode of a specific child file into the given xattr on the
885 * parent directory. This allows you to find the child later, even if its
886 * name is encrypted.
887 */
888int write_path_inode(const std::string& parent, const char* name, const char* inode_xattr) {
889 ino_t inode = 0;
890 uint64_t inode_raw = 0;
891 auto path = StringPrintf("%s/%s", parent.c_str(), name);
892
893 if (get_path_inode(path, &inode) != 0) {
894 // Path probably doesn't exist yet; ignore
895 return 0;
896 }
897
898 // Check to see if already set correctly
899 if (getxattr(parent.c_str(), inode_xattr, &inode_raw, sizeof(inode_raw)) == sizeof(inode_raw)) {
900 if (inode_raw == inode) {
901 // Already set correctly; skip writing
902 return 0;
903 } else {
904 PLOG(WARNING) << "Mismatched inode value; found " << inode
905 << " on disk but marked value was " << inode_raw << "; overwriting";
906 }
907 }
908
909 inode_raw = inode;
Jeff Sharkey4ed65072016-07-22 11:38:54 -0600910 if (setxattr(parent.c_str(), inode_xattr, &inode_raw, sizeof(inode_raw), 0) != 0 && errno != EOPNOTSUPP) {
Jeff Sharkey9a998f42016-07-14 18:16:22 -0600911 PLOG(ERROR) << "Failed to write xattr " << inode_xattr << " at " << parent;
912 return -1;
913 } else {
914 return 0;
915 }
916}
917
918/**
919 * Read the inode of a specific child file from the given xattr on the
920 * parent directory. Returns a currently valid path for that child, which
921 * might have an encrypted name.
922 */
923std::string read_path_inode(const std::string& parent, const char* name, const char* inode_xattr) {
924 ino_t inode = 0;
925 uint64_t inode_raw = 0;
926 auto fallback = StringPrintf("%s/%s", parent.c_str(), name);
927
928 // Lookup the inode value written earlier
929 if (getxattr(parent.c_str(), inode_xattr, &inode_raw, sizeof(inode_raw)) == sizeof(inode_raw)) {
930 inode = inode_raw;
931 }
932
933 // For testing purposes, rely on the inode when defined; this could be
934 // optimized to use access() in the future.
935 if (inode != 0) {
936 DIR* dir = opendir(parent.c_str());
937 if (dir == nullptr) {
938 PLOG(ERROR) << "Failed to opendir " << parent;
939 return fallback;
940 }
941
942 struct dirent* ent;
943 while ((ent = readdir(dir))) {
944 if (ent->d_ino == inode) {
945 auto resolved = StringPrintf("%s/%s", parent.c_str(), ent->d_name);
946#if DEBUG_XATTRS
947 if (resolved != fallback) {
948 LOG(DEBUG) << "Resolved path " << resolved << " for inode " << inode
949 << " instead of " << fallback;
950 }
951#endif
952 closedir(dir);
953 return resolved;
954 }
955 }
956 LOG(WARNING) << "Failed to resolve inode " << inode << "; using " << fallback;
957 closedir(dir);
958 return fallback;
959 } else {
960 return fallback;
961 }
962}
963
Jeff Sharkey54e292e2016-05-10 17:21:13 -0600964void add_cache_files(cache_t* cache, const std::string& data_path) {
Mike Lockwood94afecf2012-10-24 10:45:23 -0700965 DIR *d;
966 struct dirent *de;
967 char dirname[PATH_MAX];
968
Jeff Sharkey54e292e2016-05-10 17:21:13 -0600969 const char* basepath = data_path.c_str();
970 CACHE_NOISY(ALOGI("add_cache_files: basepath=%s\n", basepath));
Mike Lockwood94afecf2012-10-24 10:45:23 -0700971
972 d = opendir(basepath);
973 if (d == NULL) {
974 return;
975 }
976
977 while ((de = readdir(d))) {
978 if (de->d_type == DT_DIR) {
979 DIR* subdir;
980 const char *name = de->d_name;
Mike Lockwood94afecf2012-10-24 10:45:23 -0700981
982 /* always skip "." and ".." */
983 if (name[0] == '.') {
984 if (name[1] == 0) continue;
985 if ((name[1] == '.') && (name[2] == 0)) continue;
986 }
987
Jeff Sharkey9a998f42016-07-14 18:16:22 -0600988 auto parent = StringPrintf("%s/%s", basepath, name);
989 auto resolved = read_path_inode(parent, "cache", kXattrInodeCache);
990 strcpy(dirname, resolved.c_str());
Mike Lockwood94afecf2012-10-24 10:45:23 -0700991 CACHE_NOISY(ALOGI("Adding cache files from dir: %s\n", dirname));
Jeff Sharkey54e292e2016-05-10 17:21:13 -0600992
Mike Lockwood94afecf2012-10-24 10:45:23 -0700993 subdir = opendir(dirname);
994 if (subdir != NULL) {
995 size_t dirnameLen = strlen(dirname);
996 _add_cache_files(cache, NULL, dirname, subdir, dirname, dirname+dirnameLen,
997 PATH_MAX - dirnameLen);
998 closedir(subdir);
999 }
1000 }
1001 }
1002
1003 closedir(d);
1004}
1005
Fyodor Kupolovf3124d82016-09-07 13:07:45 -07001006void add_preloads_file_cache(cache_t* cache, const char* volume_uuid) {
1007 char dirname[PATH_MAX];
1008 DIR* subdir;
1009 auto cache_path = StringPrintf("%s/preloads/file_cache", create_data_path(volume_uuid).c_str());
1010 strcpy(dirname, cache_path.c_str());
1011 CACHE_NOISY(ALOGI("add_preloads_file_cache: dirname=%s\n", dirname));
1012 subdir = opendir(dirname);
1013 if (subdir != NULL) {
1014 size_t dirnameLen = strlen(dirname);
1015 _add_cache_files(cache, NULL, dirname, subdir, dirname, dirname + dirnameLen,
1016 PATH_MAX - dirnameLen);
1017 closedir(subdir);
1018 }
1019}
1020
Mike Lockwood94afecf2012-10-24 10:45:23 -07001021static char *create_dir_path(char path[PATH_MAX], cache_dir_t* dir)
1022{
1023 char *pos = path;
1024 if (dir->parent != NULL) {
1025 pos = create_dir_path(path, dir->parent);
1026 }
1027 // Note that we don't need to worry about going beyond the buffer,
1028 // since when we were constructing the cache entries our maximum
1029 // buffer size for full paths was PATH_MAX.
1030 strcpy(pos, dir->name);
1031 pos += strlen(pos);
1032 *pos = '/';
1033 pos++;
1034 *pos = 0;
1035 return pos;
1036}
1037
1038static void delete_cache_dir(char path[PATH_MAX], cache_dir_t* dir)
1039{
1040 if (dir->parent != NULL) {
1041 create_dir_path(path, dir);
1042 ALOGI("DEL DIR %s\n", path);
1043 if (dir->hiddenCount <= 0) {
1044 if (rmdir(path)) {
1045 ALOGE("Couldn't rmdir %s: %s\n", path, strerror(errno));
1046 return;
1047 }
1048 } else {
1049 // The directory contains hidden files so we need to delete
1050 // them along with the directory itself.
1051 if (delete_dir_contents(path, 1, NULL)) {
1052 return;
1053 }
1054 }
1055 dir->parent->childCount--;
1056 dir->deleted = 1;
1057 if (dir->parent->childCount <= 0) {
1058 delete_cache_dir(path, dir->parent);
1059 }
1060 } else if (dir->hiddenCount > 0) {
1061 // This is a root directory, but it has hidden files. Get rid of
1062 // all of those files, but not the directory itself.
1063 create_dir_path(path, dir);
1064 ALOGI("DEL CONTENTS %s\n", path);
1065 delete_dir_contents(path, 0, NULL);
1066 }
1067}
1068
1069static int cache_modtime_sort(const void *lhsP, const void *rhsP)
1070{
1071 const cache_file_t *lhs = *(const cache_file_t**)lhsP;
1072 const cache_file_t *rhs = *(const cache_file_t**)rhsP;
1073 return lhs->modTime < rhs->modTime ? -1 : (lhs->modTime > rhs->modTime ? 1 : 0);
1074}
1075
Jeff Sharkey41ea4242015-04-09 11:34:03 -07001076void clear_cache_files(const std::string& data_path, cache_t* cache, int64_t free_size)
Mike Lockwood94afecf2012-10-24 10:45:23 -07001077{
1078 size_t i;
1079 int skip = 0;
1080 char path[PATH_MAX];
1081
Mark Salyzyn92dc3fc2014-03-12 13:12:44 -07001082 ALOGI("Collected cache files: %zd directories, %zd files",
Mike Lockwood94afecf2012-10-24 10:45:23 -07001083 cache->numDirs, cache->numFiles);
1084
1085 CACHE_NOISY(ALOGI("Sorting files..."));
1086 qsort(cache->files, cache->numFiles, sizeof(cache_file_t*),
1087 cache_modtime_sort);
1088
1089 CACHE_NOISY(ALOGI("Cleaning empty directories..."));
1090 for (i=cache->numDirs; i>0; i--) {
1091 cache_dir_t* dir = cache->dirs[i-1];
1092 if (dir->childCount <= 0 && !dir->deleted) {
1093 delete_cache_dir(path, dir);
1094 }
1095 }
1096
1097 CACHE_NOISY(ALOGI("Trimming files..."));
1098 for (i=0; i<cache->numFiles; i++) {
1099 skip++;
1100 if (skip > 10) {
Jeff Sharkey41ea4242015-04-09 11:34:03 -07001101 if (data_disk_free(data_path) > free_size) {
Mike Lockwood94afecf2012-10-24 10:45:23 -07001102 return;
1103 }
1104 skip = 0;
1105 }
1106 cache_file_t* file = cache->files[i];
1107 strcpy(create_dir_path(path, file->dir), file->name);
1108 ALOGI("DEL (mod %d) %s\n", (int)file->modTime, path);
1109 if (unlink(path) < 0) {
1110 ALOGE("Couldn't unlink %s: %s\n", path, strerror(errno));
1111 }
1112 file->dir->childCount--;
1113 if (file->dir->childCount <= 0) {
1114 delete_cache_dir(path, file->dir);
1115 }
1116 }
1117}
1118
1119void finish_cache_collection(cache_t* cache)
1120{
Chih-Hung Hsieh99d9fb12014-09-11 14:44:46 -07001121 CACHE_NOISY(size_t i;)
Mike Lockwood94afecf2012-10-24 10:45:23 -07001122
Jeff Sharkey9a998f42016-07-14 18:16:22 -06001123 CACHE_NOISY(ALOGI("clear_cache_files: %zu dirs, %zu files\n", cache->numDirs, cache->numFiles));
Mike Lockwood94afecf2012-10-24 10:45:23 -07001124 CACHE_NOISY(
1125 for (i=0; i<cache->numDirs; i++) {
1126 cache_dir_t* dir = cache->dirs[i];
Jeff Sharkey9a998f42016-07-14 18:16:22 -06001127 ALOGI("dir #%zu: %p %s parent=%p\n", i, dir, dir->name, dir->parent);
Mike Lockwood94afecf2012-10-24 10:45:23 -07001128 })
1129 CACHE_NOISY(
1130 for (i=0; i<cache->numFiles; i++) {
1131 cache_file_t* file = cache->files[i];
Jeff Sharkey9a998f42016-07-14 18:16:22 -06001132 ALOGI("file #%zu: %p %s time=%d dir=%p\n", i, file, file->name,
Mike Lockwood94afecf2012-10-24 10:45:23 -07001133 (int)file->modTime, file->dir);
1134 })
1135 void* block = cache->memBlocks;
1136 while (block != NULL) {
1137 void* nextBlock = *(void**)block;
1138 CACHE_NOISY(ALOGI("Freeing cache mem block: %p", block));
1139 free(block);
1140 block = nextBlock;
1141 }
1142 free(cache);
1143}
1144
1145/**
Calin Juravlec597b6d2014-08-19 17:43:05 +01001146 * Validate that the path is valid in the context of the provided directory.
1147 * The path is allowed to have at most one subdirectory and no indirections
1148 * to top level directories (i.e. have "..").
1149 */
Jeff Sharkeye23a1322015-04-06 16:19:39 -07001150static int validate_path(const dir_rec_t* dir, const char* path, int maxSubdirs) {
Calin Juravlec597b6d2014-08-19 17:43:05 +01001151 size_t dir_len = dir->len;
1152 const char* subdir = strchr(path + dir_len, '/');
1153
1154 // Only allow the path to have at most one subdirectory.
1155 if (subdir != NULL) {
1156 ++subdir;
Jeff Sharkeye23a1322015-04-06 16:19:39 -07001157 if ((--maxSubdirs == 0) && strchr(subdir, '/') != NULL) {
Calin Juravlec597b6d2014-08-19 17:43:05 +01001158 ALOGE("invalid apk path '%s' (subdir?)\n", path);
1159 return -1;
1160 }
1161 }
1162
1163 // Directories can't have a period directly after the directory markers to prevent "..".
1164 if ((path[dir_len] == '.') || ((subdir != NULL) && (*subdir == '.'))) {
1165 ALOGE("invalid apk path '%s' (trickery)\n", path);
1166 return -1;
1167 }
1168
1169 return 0;
1170}
1171
1172/**
Mike Lockwood94afecf2012-10-24 10:45:23 -07001173 * Checks whether a path points to a system app (.apk file). Returns 0
1174 * if it is a system app or -1 if it is not.
1175 */
1176int validate_system_app_path(const char* path) {
1177 size_t i;
1178
1179 for (i = 0; i < android_system_dirs.count; i++) {
1180 const size_t dir_len = android_system_dirs.dirs[i].len;
1181 if (!strncmp(path, android_system_dirs.dirs[i].path, dir_len)) {
Jeff Sharkeye23a1322015-04-06 16:19:39 -07001182 return validate_path(android_system_dirs.dirs + i, path, 1);
Mike Lockwood94afecf2012-10-24 10:45:23 -07001183 }
1184 }
1185
1186 return -1;
1187}
1188
1189/**
1190 * Get the contents of a environment variable that contains a path. Caller
1191 * owns the string that is inserted into the directory record. Returns
1192 * 0 on success and -1 on error.
1193 */
1194int get_path_from_env(dir_rec_t* rec, const char* var) {
1195 const char* path = getenv(var);
1196 int ret = get_path_from_string(rec, path);
1197 if (ret < 0) {
1198 ALOGW("Problem finding value for environment variable %s\n", var);
1199 }
1200 return ret;
1201}
1202
1203/**
1204 * Puts the string into the record as a directory. Appends '/' to the end
1205 * of all paths. Caller owns the string that is inserted into the directory
1206 * record. A null value will result in an error.
1207 *
1208 * Returns 0 on success and -1 on error.
1209 */
1210int get_path_from_string(dir_rec_t* rec, const char* path) {
1211 if (path == NULL) {
1212 return -1;
1213 } else {
1214 const size_t path_len = strlen(path);
1215 if (path_len <= 0) {
1216 return -1;
1217 }
1218
1219 // Make sure path is absolute.
1220 if (path[0] != '/') {
1221 return -1;
1222 }
1223
1224 if (path[path_len - 1] == '/') {
1225 // Path ends with a forward slash. Make our own copy.
1226
1227 rec->path = strdup(path);
1228 if (rec->path == NULL) {
1229 return -1;
1230 }
1231
1232 rec->len = path_len;
1233 } else {
1234 // Path does not end with a slash. Generate a new string.
1235 char *dst;
1236
1237 // Add space for slash and terminating null.
1238 size_t dst_size = path_len + 2;
1239
Jeff Sharkey19803802015-04-07 12:44:51 -07001240 rec->path = (char*) malloc(dst_size);
Mike Lockwood94afecf2012-10-24 10:45:23 -07001241 if (rec->path == NULL) {
1242 return -1;
1243 }
1244
1245 dst = rec->path;
1246
1247 if (append_and_increment(&dst, path, &dst_size) < 0
1248 || append_and_increment(&dst, "/", &dst_size)) {
1249 ALOGE("Error canonicalizing path");
1250 return -1;
1251 }
1252
1253 rec->len = dst - rec->path;
1254 }
1255 }
1256 return 0;
1257}
1258
1259int copy_and_append(dir_rec_t* dst, const dir_rec_t* src, const char* suffix) {
1260 dst->len = src->len + strlen(suffix);
1261 const size_t dstSize = dst->len + 1;
1262 dst->path = (char*) malloc(dstSize);
1263
1264 if (dst->path == NULL
1265 || snprintf(dst->path, dstSize, "%s%s", src->path, suffix)
1266 != (ssize_t) dst->len) {
1267 ALOGE("Could not allocate memory to hold appended path; aborting\n");
1268 return -1;
1269 }
1270
1271 return 0;
1272}
1273
1274/**
Narayan Kamathd845c962015-06-04 13:20:27 +01001275 * Check whether path points to a valid path for an APK file. The path must
1276 * begin with a whitelisted prefix path and must be no deeper than |maxSubdirs| within
1277 * that path. Returns -1 when an invalid path is encountered and 0 when a valid path
1278 * is encountered.
Mike Lockwood94afecf2012-10-24 10:45:23 -07001279 */
Narayan Kamathd845c962015-06-04 13:20:27 +01001280static int validate_apk_path_internal(const char *path, int maxSubdirs) {
Calin Juravlec597b6d2014-08-19 17:43:05 +01001281 const dir_rec_t* dir = NULL;
Mike Lockwood94afecf2012-10-24 10:45:23 -07001282 if (!strncmp(path, android_app_dir.path, android_app_dir.len)) {
Calin Juravlec597b6d2014-08-19 17:43:05 +01001283 dir = &android_app_dir;
Mike Lockwood94afecf2012-10-24 10:45:23 -07001284 } else if (!strncmp(path, android_app_private_dir.path, android_app_private_dir.len)) {
Calin Juravlec597b6d2014-08-19 17:43:05 +01001285 dir = &android_app_private_dir;
Todd Kennedy5c1a9102015-11-23 15:18:10 -08001286 } else if (!strncmp(path, android_app_ephemeral_dir.path, android_app_ephemeral_dir.len)) {
1287 dir = &android_app_ephemeral_dir;
Mike Lockwood94afecf2012-10-24 10:45:23 -07001288 } else if (!strncmp(path, android_asec_dir.path, android_asec_dir.len)) {
Calin Juravlec597b6d2014-08-19 17:43:05 +01001289 dir = &android_asec_dir;
Jeff Sharkeye23a1322015-04-06 16:19:39 -07001290 } else if (!strncmp(path, android_mnt_expand_dir.path, android_mnt_expand_dir.len)) {
1291 dir = &android_mnt_expand_dir;
Narayan Kamathd845c962015-06-04 13:20:27 +01001292 if (maxSubdirs < 2) {
1293 maxSubdirs = 2;
1294 }
Mike Lockwood94afecf2012-10-24 10:45:23 -07001295 } else {
Mike Lockwood94afecf2012-10-24 10:45:23 -07001296 return -1;
1297 }
1298
Jeff Sharkeye23a1322015-04-06 16:19:39 -07001299 return validate_path(dir, path, maxSubdirs);
Mike Lockwood94afecf2012-10-24 10:45:23 -07001300}
1301
Narayan Kamathd845c962015-06-04 13:20:27 +01001302int validate_apk_path(const char* path) {
1303 return validate_apk_path_internal(path, 1 /* maxSubdirs */);
1304}
1305
1306int validate_apk_path_subdirs(const char* path) {
1307 return validate_apk_path_internal(path, 3 /* maxSubdirs */);
1308}
1309
Mike Lockwood94afecf2012-10-24 10:45:23 -07001310int append_and_increment(char** dst, const char* src, size_t* dst_size) {
1311 ssize_t ret = strlcpy(*dst, src, *dst_size);
1312 if (ret < 0 || (size_t) ret >= *dst_size) {
1313 return -1;
1314 }
1315 *dst += ret;
1316 *dst_size -= ret;
1317 return 0;
1318}
1319
Jeff Sharkey19803802015-04-07 12:44:51 -07001320char *build_string2(const char *s1, const char *s2) {
Mike Lockwood94afecf2012-10-24 10:45:23 -07001321 if (s1 == NULL || s2 == NULL) return NULL;
1322
1323 int len_s1 = strlen(s1);
1324 int len_s2 = strlen(s2);
1325 int len = len_s1 + len_s2 + 1;
Jeff Sharkey19803802015-04-07 12:44:51 -07001326 char *result = (char *) malloc(len);
Mike Lockwood94afecf2012-10-24 10:45:23 -07001327 if (result == NULL) return NULL;
1328
1329 strcpy(result, s1);
1330 strcpy(result + len_s1, s2);
1331
1332 return result;
1333}
1334
Jeff Sharkey19803802015-04-07 12:44:51 -07001335char *build_string3(const char *s1, const char *s2, const char *s3) {
Mike Lockwood94afecf2012-10-24 10:45:23 -07001336 if (s1 == NULL || s2 == NULL || s3 == NULL) return NULL;
1337
1338 int len_s1 = strlen(s1);
1339 int len_s2 = strlen(s2);
1340 int len_s3 = strlen(s3);
1341 int len = len_s1 + len_s2 + len_s3 + 1;
Jeff Sharkey19803802015-04-07 12:44:51 -07001342 char *result = (char *) malloc(len);
Mike Lockwood94afecf2012-10-24 10:45:23 -07001343 if (result == NULL) return NULL;
1344
1345 strcpy(result, s1);
1346 strcpy(result + len_s1, s2);
1347 strcpy(result + len_s1 + len_s2, s3);
1348
1349 return result;
1350}
1351
Robin Lee095c7632014-04-25 15:05:19 +01001352int ensure_config_user_dirs(userid_t userid) {
Robin Lee095c7632014-04-25 15:05:19 +01001353 // writable by system, readable by any app within the same user
Robin Lee60fd3fe2014-10-07 16:55:02 +01001354 const int uid = multiuser_get_uid(userid, AID_SYSTEM);
1355 const int gid = multiuser_get_uid(userid, AID_EVERYBODY);
Robin Lee095c7632014-04-25 15:05:19 +01001356
1357 // Ensure /data/misc/user/<userid> exists
Jeff Sharkey379a12b2016-04-14 20:45:06 -06001358 auto path = create_data_misc_legacy_path(userid);
1359 return fs_prepare_dir(path.c_str(), 0750, uid, gid);
Robin Lee095c7632014-04-25 15:05:19 +01001360}
Andreas Gampe02d0de52015-11-11 20:43:16 -08001361
1362int wait_child(pid_t pid)
1363{
1364 int status;
1365 pid_t got_pid;
1366
1367 while (1) {
1368 got_pid = waitpid(pid, &status, 0);
1369 if (got_pid == -1 && errno == EINTR) {
1370 printf("waitpid interrupted, retrying\n");
1371 } else {
1372 break;
1373 }
1374 }
1375 if (got_pid != pid) {
1376 ALOGW("waitpid failed: wanted %d, got %d: %s\n",
1377 (int) pid, (int) got_pid, strerror(errno));
1378 return 1;
1379 }
1380
1381 if (WIFEXITED(status) && WEXITSTATUS(status) == 0) {
1382 return 0;
1383 } else {
1384 return status; /* always nonzero */
1385 }
1386}
1387
1388} // namespace installd
1389} // namespace android