1 /*
2  * Copyright (C) 2007 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 "property_service.h"
18 
19 #include <android/api-level.h>
20 #include <ctype.h>
21 #include <errno.h>
22 #include <fcntl.h>
23 #include <inttypes.h>
24 #include <limits.h>
25 #include <netinet/in.h>
26 #include <stdarg.h>
27 #include <stddef.h>
28 #include <stdio.h>
29 #include <stdlib.h>
30 #include <string.h>
31 #include <sys/mman.h>
32 #include <sys/poll.h>
33 #include <sys/select.h>
34 #include <sys/types.h>
35 #include <sys/un.h>
36 #include <unistd.h>
37 #include <wchar.h>
38 
39 #define _REALLY_INCLUDE_SYS__SYSTEM_PROPERTIES_H_
40 #include <sys/_system_properties.h>
41 
42 #include <map>
43 #include <memory>
44 #include <mutex>
45 #include <optional>
46 #include <queue>
47 #include <string_view>
48 #include <thread>
49 #include <vector>
50 
51 #include <InitProperties.sysprop.h>
52 #include <android-base/chrono_utils.h>
53 #include <android-base/file.h>
54 #include <android-base/logging.h>
55 #include <android-base/parseint.h>
56 #include <android-base/properties.h>
57 #include <android-base/stringprintf.h>
58 #include <android-base/strings.h>
59 #include <property_info_parser/property_info_parser.h>
60 #include <property_info_serializer/property_info_serializer.h>
61 #include <selinux/android.h>
62 #include <selinux/label.h>
63 #include <selinux/selinux.h>
64 
65 #include "debug_ramdisk.h"
66 #include "epoll.h"
67 #include "init.h"
68 #include "persistent_properties.h"
69 #include "property_type.h"
70 #include "proto_utils.h"
71 #include "second_stage_resources.h"
72 #include "selinux.h"
73 #include "subcontext.h"
74 #include "system/core/init/property_service.pb.h"
75 #include "util.h"
76 
77 using namespace std::literals;
78 
79 using android::base::GetProperty;
80 using android::base::ParseInt;
81 using android::base::ReadFileToString;
82 using android::base::Split;
83 using android::base::StartsWith;
84 using android::base::StringPrintf;
85 using android::base::Timer;
86 using android::base::Trim;
87 using android::base::unique_fd;
88 using android::base::WriteStringToFile;
89 using android::properties::BuildTrie;
90 using android::properties::ParsePropertyInfoFile;
91 using android::properties::PropertyInfoAreaFile;
92 using android::properties::PropertyInfoEntry;
93 using android::sysprop::InitProperties::is_userspace_reboot_supported;
94 
95 namespace android {
96 namespace init {
97 constexpr auto FINGERPRINT_PROP = "ro.build.fingerprint";
98 constexpr auto LEGACY_FINGERPRINT_PROP = "ro.build.legacy.fingerprint";
99 constexpr auto ID_PROP = "ro.build.id";
100 constexpr auto LEGACY_ID_PROP = "ro.build.legacy.id";
101 constexpr auto VBMETA_DIGEST_PROP = "ro.boot.vbmeta.digest";
102 constexpr auto DIGEST_SIZE_USED = 8;
103 
104 static bool persistent_properties_loaded = false;
105 
106 static int property_set_fd = -1;
107 static int from_init_socket = -1;
108 static int init_socket = -1;
109 static bool accept_messages = false;
110 static std::mutex accept_messages_lock;
111 static std::thread property_service_thread;
112 
113 static PropertyInfoAreaFile property_info_area;
114 
115 struct PropertyAuditData {
116     const ucred* cr;
117     const char* name;
118 };
119 
PropertyAuditCallback(void * data,security_class_t,char * buf,size_t len)120 static int PropertyAuditCallback(void* data, security_class_t /*cls*/, char* buf, size_t len) {
121     auto* d = reinterpret_cast<PropertyAuditData*>(data);
122 
123     if (!d || !d->name || !d->cr) {
124         LOG(ERROR) << "AuditCallback invoked with null data arguments!";
125         return 0;
126     }
127 
128     snprintf(buf, len, "property=%s pid=%d uid=%d gid=%d", d->name, d->cr->pid, d->cr->uid,
129              d->cr->gid);
130     return 0;
131 }
132 
StartSendingMessages()133 void StartSendingMessages() {
134     auto lock = std::lock_guard{accept_messages_lock};
135     accept_messages = true;
136 }
137 
StopSendingMessages()138 void StopSendingMessages() {
139     auto lock = std::lock_guard{accept_messages_lock};
140     accept_messages = false;
141 }
142 
CanReadProperty(const std::string & source_context,const std::string & name)143 bool CanReadProperty(const std::string& source_context, const std::string& name) {
144     const char* target_context = nullptr;
145     property_info_area->GetPropertyInfo(name.c_str(), &target_context, nullptr);
146 
147     PropertyAuditData audit_data;
148 
149     audit_data.name = name.c_str();
150 
151     ucred cr = {.pid = 0, .uid = 0, .gid = 0};
152     audit_data.cr = &cr;
153 
154     return selinux_check_access(source_context.c_str(), target_context, "file", "read",
155                                 &audit_data) == 0;
156 }
157 
CheckMacPerms(const std::string & name,const char * target_context,const char * source_context,const ucred & cr)158 static bool CheckMacPerms(const std::string& name, const char* target_context,
159                           const char* source_context, const ucred& cr) {
160     if (!target_context || !source_context) {
161         return false;
162     }
163 
164     PropertyAuditData audit_data;
165 
166     audit_data.name = name.c_str();
167     audit_data.cr = &cr;
168 
169     bool has_access = (selinux_check_access(source_context, target_context, "property_service",
170                                             "set", &audit_data) == 0);
171 
172     return has_access;
173 }
174 
PropertySet(const std::string & name,const std::string & value,std::string * error)175 static uint32_t PropertySet(const std::string& name, const std::string& value, std::string* error) {
176     size_t valuelen = value.size();
177 
178     if (!IsLegalPropertyName(name)) {
179         *error = "Illegal property name";
180         return PROP_ERROR_INVALID_NAME;
181     }
182 
183     if (auto result = IsLegalPropertyValue(name, value); !result.ok()) {
184         *error = result.error().message();
185         return PROP_ERROR_INVALID_VALUE;
186     }
187 
188     prop_info* pi = (prop_info*) __system_property_find(name.c_str());
189     if (pi != nullptr) {
190         // ro.* properties are actually "write-once".
191         if (StartsWith(name, "ro.")) {
192             *error = "Read-only property was already set";
193             return PROP_ERROR_READ_ONLY_PROPERTY;
194         }
195 
196         __system_property_update(pi, value.c_str(), valuelen);
197     } else {
198         int rc = __system_property_add(name.c_str(), name.size(), value.c_str(), valuelen);
199         if (rc < 0) {
200             *error = "__system_property_add failed";
201             return PROP_ERROR_SET_FAILED;
202         }
203     }
204 
205     // Don't write properties to disk until after we have read all default
206     // properties to prevent them from being overwritten by default values.
207     if (persistent_properties_loaded && StartsWith(name, "persist.")) {
208         WritePersistentProperty(name, value);
209     }
210     // If init hasn't started its main loop, then it won't be handling property changed messages
211     // anyway, so there's no need to try to send them.
212     auto lock = std::lock_guard{accept_messages_lock};
213     if (accept_messages) {
214         PropertyChanged(name, value);
215     }
216     return PROP_SUCCESS;
217 }
218 
219 class AsyncRestorecon {
220   public:
TriggerRestorecon(const std::string & path)221     void TriggerRestorecon(const std::string& path) {
222         auto guard = std::lock_guard{mutex_};
223         paths_.emplace(path);
224 
225         if (!thread_started_) {
226             thread_started_ = true;
227             std::thread{&AsyncRestorecon::ThreadFunction, this}.detach();
228         }
229     }
230 
231   private:
ThreadFunction()232     void ThreadFunction() {
233         auto lock = std::unique_lock{mutex_};
234 
235         while (!paths_.empty()) {
236             auto path = paths_.front();
237             paths_.pop();
238 
239             lock.unlock();
240             if (selinux_android_restorecon(path.c_str(), SELINUX_ANDROID_RESTORECON_RECURSE) != 0) {
241                 LOG(ERROR) << "Asynchronous restorecon of '" << path << "' failed'";
242             }
243             android::base::SetProperty(kRestoreconProperty, path);
244             lock.lock();
245         }
246 
247         thread_started_ = false;
248     }
249 
250     std::mutex mutex_;
251     std::queue<std::string> paths_;
252     bool thread_started_ = false;
253 };
254 
255 class SocketConnection {
256   public:
SocketConnection(int socket,const ucred & cred)257     SocketConnection(int socket, const ucred& cred) : socket_(socket), cred_(cred) {}
258 
RecvUint32(uint32_t * value,uint32_t * timeout_ms)259     bool RecvUint32(uint32_t* value, uint32_t* timeout_ms) {
260         return RecvFully(value, sizeof(*value), timeout_ms);
261     }
262 
RecvChars(char * chars,size_t size,uint32_t * timeout_ms)263     bool RecvChars(char* chars, size_t size, uint32_t* timeout_ms) {
264         return RecvFully(chars, size, timeout_ms);
265     }
266 
RecvString(std::string * value,uint32_t * timeout_ms)267     bool RecvString(std::string* value, uint32_t* timeout_ms) {
268         uint32_t len = 0;
269         if (!RecvUint32(&len, timeout_ms)) {
270             return false;
271         }
272 
273         if (len == 0) {
274             *value = "";
275             return true;
276         }
277 
278         // http://b/35166374: don't allow init to make arbitrarily large allocations.
279         if (len > 0xffff) {
280             LOG(ERROR) << "sys_prop: RecvString asked to read huge string: " << len;
281             errno = ENOMEM;
282             return false;
283         }
284 
285         std::vector<char> chars(len);
286         if (!RecvChars(&chars[0], len, timeout_ms)) {
287             return false;
288         }
289 
290         *value = std::string(&chars[0], len);
291         return true;
292     }
293 
SendUint32(uint32_t value)294     bool SendUint32(uint32_t value) {
295         if (!socket_.ok()) {
296             return true;
297         }
298         int result = TEMP_FAILURE_RETRY(send(socket_, &value, sizeof(value), 0));
299         return result == sizeof(value);
300     }
301 
GetSourceContext(std::string * source_context) const302     bool GetSourceContext(std::string* source_context) const {
303         char* c_source_context = nullptr;
304         if (getpeercon(socket_, &c_source_context) != 0) {
305             return false;
306         }
307         *source_context = c_source_context;
308         freecon(c_source_context);
309         return true;
310     }
311 
Release()312     [[nodiscard]] int Release() { return socket_.release(); }
313 
cred()314     const ucred& cred() { return cred_; }
315 
316   private:
PollIn(uint32_t * timeout_ms)317     bool PollIn(uint32_t* timeout_ms) {
318         struct pollfd ufds[1];
319         ufds[0].fd = socket_;
320         ufds[0].events = POLLIN;
321         ufds[0].revents = 0;
322         while (*timeout_ms > 0) {
323             auto start_time = std::chrono::steady_clock::now();
324             int nr = poll(ufds, 1, *timeout_ms);
325             auto now = std::chrono::steady_clock::now();
326             auto time_elapsed =
327                 std::chrono::duration_cast<std::chrono::milliseconds>(now - start_time);
328             uint64_t millis = time_elapsed.count();
329             *timeout_ms = (millis > *timeout_ms) ? 0 : *timeout_ms - millis;
330 
331             if (nr > 0) {
332                 return true;
333             }
334 
335             if (nr == 0) {
336                 // Timeout
337                 break;
338             }
339 
340             if (nr < 0 && errno != EINTR) {
341                 PLOG(ERROR) << "sys_prop: error waiting for uid " << cred_.uid
342                             << " to send property message";
343                 return false;
344             } else {  // errno == EINTR
345                 // Timer rounds milliseconds down in case of EINTR we want it to be rounded up
346                 // to avoid slowing init down by causing EINTR with under millisecond timeout.
347                 if (*timeout_ms > 0) {
348                     --(*timeout_ms);
349                 }
350             }
351         }
352 
353         LOG(ERROR) << "sys_prop: timeout waiting for uid " << cred_.uid
354                    << " to send property message.";
355         return false;
356     }
357 
RecvFully(void * data_ptr,size_t size,uint32_t * timeout_ms)358     bool RecvFully(void* data_ptr, size_t size, uint32_t* timeout_ms) {
359         size_t bytes_left = size;
360         char* data = static_cast<char*>(data_ptr);
361         while (*timeout_ms > 0 && bytes_left > 0) {
362             if (!PollIn(timeout_ms)) {
363                 return false;
364             }
365 
366             int result = TEMP_FAILURE_RETRY(recv(socket_, data, bytes_left, MSG_DONTWAIT));
367             if (result <= 0) {
368                 PLOG(ERROR) << "sys_prop: recv error";
369                 return false;
370             }
371 
372             bytes_left -= result;
373             data += result;
374         }
375 
376         if (bytes_left != 0) {
377             LOG(ERROR) << "sys_prop: recv data is not properly obtained.";
378         }
379 
380         return bytes_left == 0;
381     }
382 
383     unique_fd socket_;
384     ucred cred_;
385 
386     DISALLOW_IMPLICIT_CONSTRUCTORS(SocketConnection);
387 };
388 
SendControlMessage(const std::string & msg,const std::string & name,pid_t pid,SocketConnection * socket,std::string * error)389 static uint32_t SendControlMessage(const std::string& msg, const std::string& name, pid_t pid,
390                                    SocketConnection* socket, std::string* error) {
391     auto lock = std::lock_guard{accept_messages_lock};
392     if (!accept_messages) {
393         *error = "Received control message after shutdown, ignoring";
394         return PROP_ERROR_HANDLE_CONTROL_MESSAGE;
395     }
396 
397     // We must release the fd before sending it to init, otherwise there will be a race with init.
398     // If init calls close() before Release(), then fdsan will see the wrong tag and abort().
399     int fd = -1;
400     if (socket != nullptr && SelinuxGetVendorAndroidVersion() > __ANDROID_API_Q__) {
401         fd = socket->Release();
402     }
403 
404     bool queue_success = QueueControlMessage(msg, name, pid, fd);
405     if (!queue_success && fd != -1) {
406         uint32_t response = PROP_ERROR_HANDLE_CONTROL_MESSAGE;
407         TEMP_FAILURE_RETRY(send(fd, &response, sizeof(response), 0));
408         close(fd);
409     }
410 
411     return PROP_SUCCESS;
412 }
413 
CheckControlPropertyPerms(const std::string & name,const std::string & value,const std::string & source_context,const ucred & cr)414 bool CheckControlPropertyPerms(const std::string& name, const std::string& value,
415                                const std::string& source_context, const ucred& cr) {
416     // We check the legacy method first but these properties are dontaudit, so we only log an audit
417     // if the newer method fails as well.  We only do this with the legacy ctl. properties.
418     if (name == "ctl.start" || name == "ctl.stop" || name == "ctl.restart") {
419         // The legacy permissions model is that ctl. properties have their name ctl.<action> and
420         // their value is the name of the service to apply that action to.  Permissions for these
421         // actions are based on the service, so we must create a fake name of ctl.<service> to
422         // check permissions.
423         auto control_string_legacy = "ctl." + value;
424         const char* target_context_legacy = nullptr;
425         const char* type_legacy = nullptr;
426         property_info_area->GetPropertyInfo(control_string_legacy.c_str(), &target_context_legacy,
427                                             &type_legacy);
428 
429         if (CheckMacPerms(control_string_legacy, target_context_legacy, source_context.c_str(), cr)) {
430             return true;
431         }
432     }
433 
434     auto control_string_full = name + "$" + value;
435     const char* target_context_full = nullptr;
436     const char* type_full = nullptr;
437     property_info_area->GetPropertyInfo(control_string_full.c_str(), &target_context_full,
438                                         &type_full);
439 
440     return CheckMacPerms(control_string_full, target_context_full, source_context.c_str(), cr);
441 }
442 
443 // This returns one of the enum of PROP_SUCCESS or PROP_ERROR*.
CheckPermissions(const std::string & name,const std::string & value,const std::string & source_context,const ucred & cr,std::string * error)444 uint32_t CheckPermissions(const std::string& name, const std::string& value,
445                           const std::string& source_context, const ucred& cr, std::string* error) {
446     if (!IsLegalPropertyName(name)) {
447         *error = "Illegal property name";
448         return PROP_ERROR_INVALID_NAME;
449     }
450 
451     if (StartsWith(name, "ctl.")) {
452         if (!CheckControlPropertyPerms(name, value, source_context, cr)) {
453             *error = StringPrintf("Invalid permissions to perform '%s' on '%s'", name.c_str() + 4,
454                                   value.c_str());
455             return PROP_ERROR_HANDLE_CONTROL_MESSAGE;
456         }
457 
458         return PROP_SUCCESS;
459     }
460 
461     const char* target_context = nullptr;
462     const char* type = nullptr;
463     property_info_area->GetPropertyInfo(name.c_str(), &target_context, &type);
464 
465     if (!CheckMacPerms(name, target_context, source_context.c_str(), cr)) {
466         *error = "SELinux permission check failed";
467         return PROP_ERROR_PERMISSION_DENIED;
468     }
469 
470     if (!CheckType(type, value)) {
471         *error = StringPrintf("Property type check failed, value doesn't match expected type '%s'",
472                               (type ?: "(null)"));
473         return PROP_ERROR_INVALID_VALUE;
474     }
475 
476     return PROP_SUCCESS;
477 }
478 
479 // This returns one of the enum of PROP_SUCCESS or PROP_ERROR*.
HandlePropertySet(const std::string & name,const std::string & value,const std::string & source_context,const ucred & cr,SocketConnection * socket,std::string * error)480 uint32_t HandlePropertySet(const std::string& name, const std::string& value,
481                            const std::string& source_context, const ucred& cr,
482                            SocketConnection* socket, std::string* error) {
483     if (auto ret = CheckPermissions(name, value, source_context, cr, error); ret != PROP_SUCCESS) {
484         return ret;
485     }
486 
487     if (StartsWith(name, "ctl.")) {
488         return SendControlMessage(name.c_str() + 4, value, cr.pid, socket, error);
489     }
490 
491     // sys.powerctl is a special property that is used to make the device reboot.  We want to log
492     // any process that sets this property to be able to accurately blame the cause of a shutdown.
493     if (name == "sys.powerctl") {
494         std::string cmdline_path = StringPrintf("proc/%d/cmdline", cr.pid);
495         std::string process_cmdline;
496         std::string process_log_string;
497         if (ReadFileToString(cmdline_path, &process_cmdline)) {
498             // Since cmdline is null deliminated, .c_str() conveniently gives us just the process
499             // path.
500             process_log_string = StringPrintf(" (%s)", process_cmdline.c_str());
501         }
502         LOG(INFO) << "Received sys.powerctl='" << value << "' from pid: " << cr.pid
503                   << process_log_string;
504         if (!value.empty()) {
505             DebugRebootLogging();
506         }
507         if (value == "reboot,userspace" && !is_userspace_reboot_supported().value_or(false)) {
508             *error = "Userspace reboot is not supported by this device";
509             return PROP_ERROR_INVALID_VALUE;
510         }
511     }
512 
513     // If a process other than init is writing a non-empty value, it means that process is
514     // requesting that init performs a restorecon operation on the path specified by 'value'.
515     // We use a thread to do this restorecon operation to prevent holding up init, as it may take
516     // a long time to complete.
517     if (name == kRestoreconProperty && cr.pid != 1 && !value.empty()) {
518         static AsyncRestorecon async_restorecon;
519         async_restorecon.TriggerRestorecon(value);
520         return PROP_SUCCESS;
521     }
522 
523     return PropertySet(name, value, error);
524 }
525 
handle_property_set_fd()526 static void handle_property_set_fd() {
527     static constexpr uint32_t kDefaultSocketTimeout = 2000; /* ms */
528 
529     int s = accept4(property_set_fd, nullptr, nullptr, SOCK_CLOEXEC);
530     if (s == -1) {
531         return;
532     }
533 
534     ucred cr;
535     socklen_t cr_size = sizeof(cr);
536     if (getsockopt(s, SOL_SOCKET, SO_PEERCRED, &cr, &cr_size) < 0) {
537         close(s);
538         PLOG(ERROR) << "sys_prop: unable to get SO_PEERCRED";
539         return;
540     }
541 
542     SocketConnection socket(s, cr);
543     uint32_t timeout_ms = kDefaultSocketTimeout;
544 
545     uint32_t cmd = 0;
546     if (!socket.RecvUint32(&cmd, &timeout_ms)) {
547         PLOG(ERROR) << "sys_prop: error while reading command from the socket";
548         socket.SendUint32(PROP_ERROR_READ_CMD);
549         return;
550     }
551 
552     switch (cmd) {
553     case PROP_MSG_SETPROP: {
554         char prop_name[PROP_NAME_MAX];
555         char prop_value[PROP_VALUE_MAX];
556 
557         if (!socket.RecvChars(prop_name, PROP_NAME_MAX, &timeout_ms) ||
558             !socket.RecvChars(prop_value, PROP_VALUE_MAX, &timeout_ms)) {
559           PLOG(ERROR) << "sys_prop(PROP_MSG_SETPROP): error while reading name/value from the socket";
560           return;
561         }
562 
563         prop_name[PROP_NAME_MAX-1] = 0;
564         prop_value[PROP_VALUE_MAX-1] = 0;
565 
566         std::string source_context;
567         if (!socket.GetSourceContext(&source_context)) {
568             PLOG(ERROR) << "Unable to set property '" << prop_name << "': getpeercon() failed";
569             return;
570         }
571 
572         const auto& cr = socket.cred();
573         std::string error;
574         uint32_t result =
575                 HandlePropertySet(prop_name, prop_value, source_context, cr, nullptr, &error);
576         if (result != PROP_SUCCESS) {
577             LOG(ERROR) << "Unable to set property '" << prop_name << "' from uid:" << cr.uid
578                        << " gid:" << cr.gid << " pid:" << cr.pid << ": " << error;
579         }
580 
581         break;
582       }
583 
584     case PROP_MSG_SETPROP2: {
585         std::string name;
586         std::string value;
587         if (!socket.RecvString(&name, &timeout_ms) ||
588             !socket.RecvString(&value, &timeout_ms)) {
589           PLOG(ERROR) << "sys_prop(PROP_MSG_SETPROP2): error while reading name/value from the socket";
590           socket.SendUint32(PROP_ERROR_READ_DATA);
591           return;
592         }
593 
594         std::string source_context;
595         if (!socket.GetSourceContext(&source_context)) {
596             PLOG(ERROR) << "Unable to set property '" << name << "': getpeercon() failed";
597             socket.SendUint32(PROP_ERROR_PERMISSION_DENIED);
598             return;
599         }
600 
601         const auto& cr = socket.cred();
602         std::string error;
603         uint32_t result = HandlePropertySet(name, value, source_context, cr, &socket, &error);
604         if (result != PROP_SUCCESS) {
605             LOG(ERROR) << "Unable to set property '" << name << "' from uid:" << cr.uid
606                        << " gid:" << cr.gid << " pid:" << cr.pid << ": " << error;
607         }
608         socket.SendUint32(result);
609         break;
610       }
611 
612     default:
613         LOG(ERROR) << "sys_prop: invalid command " << cmd;
614         socket.SendUint32(PROP_ERROR_INVALID_CMD);
615         break;
616     }
617 }
618 
InitPropertySet(const std::string & name,const std::string & value)619 uint32_t InitPropertySet(const std::string& name, const std::string& value) {
620     uint32_t result = 0;
621     ucred cr = {.pid = 1, .uid = 0, .gid = 0};
622     std::string error;
623     result = HandlePropertySet(name, value, kInitContext, cr, nullptr, &error);
624     if (result != PROP_SUCCESS) {
625         LOG(ERROR) << "Init cannot set '" << name << "' to '" << value << "': " << error;
626     }
627 
628     return result;
629 }
630 
631 static bool load_properties_from_file(const char*, const char*,
632                                       std::map<std::string, std::string>*);
633 
634 /*
635  * Filter is used to decide which properties to load: NULL loads all keys,
636  * "ro.foo.*" is a prefix match, and "ro.foo.bar" is an exact match.
637  */
LoadProperties(char * data,const char * filter,const char * filename,std::map<std::string,std::string> * properties)638 static void LoadProperties(char* data, const char* filter, const char* filename,
639                            std::map<std::string, std::string>* properties) {
640     char *key, *value, *eol, *sol, *tmp, *fn;
641     size_t flen = 0;
642 
643     static constexpr const char* const kVendorPathPrefixes[4] = {
644             "/vendor",
645             "/odm",
646             "/vendor_dlkm",
647             "/odm_dlkm",
648     };
649 
650     const char* context = kInitContext;
651     if (SelinuxGetVendorAndroidVersion() >= __ANDROID_API_P__) {
652         for (const auto& vendor_path_prefix : kVendorPathPrefixes) {
653             if (StartsWith(filename, vendor_path_prefix)) {
654                 context = kVendorContext;
655             }
656         }
657     }
658 
659     if (filter) {
660         flen = strlen(filter);
661     }
662 
663     sol = data;
664     while ((eol = strchr(sol, '\n'))) {
665         key = sol;
666         *eol++ = 0;
667         sol = eol;
668 
669         while (isspace(*key)) key++;
670         if (*key == '#') continue;
671 
672         tmp = eol - 2;
673         while ((tmp > key) && isspace(*tmp)) *tmp-- = 0;
674 
675         if (!strncmp(key, "import ", 7) && flen == 0) {
676             fn = key + 7;
677             while (isspace(*fn)) fn++;
678 
679             key = strchr(fn, ' ');
680             if (key) {
681                 *key++ = 0;
682                 while (isspace(*key)) key++;
683             }
684 
685             std::string raw_filename(fn);
686             auto expanded_filename = ExpandProps(raw_filename);
687 
688             if (!expanded_filename.ok()) {
689                 LOG(ERROR) << "Could not expand filename ': " << expanded_filename.error();
690                 continue;
691             }
692 
693             load_properties_from_file(expanded_filename->c_str(), key, properties);
694         } else {
695             value = strchr(key, '=');
696             if (!value) continue;
697             *value++ = 0;
698 
699             tmp = value - 2;
700             while ((tmp > key) && isspace(*tmp)) *tmp-- = 0;
701 
702             while (isspace(*value)) value++;
703 
704             if (flen > 0) {
705                 if (filter[flen - 1] == '*') {
706                     if (strncmp(key, filter, flen - 1) != 0) continue;
707                 } else {
708                     if (strcmp(key, filter) != 0) continue;
709                 }
710             }
711 
712             if (StartsWith(key, "ctl.") || key == "sys.powerctl"s ||
713                 std::string{key} == kRestoreconProperty) {
714                 LOG(ERROR) << "Ignoring disallowed property '" << key
715                            << "' with special meaning in prop file '" << filename << "'";
716                 continue;
717             }
718 
719             ucred cr = {.pid = 1, .uid = 0, .gid = 0};
720             std::string error;
721             if (CheckPermissions(key, value, context, cr, &error) == PROP_SUCCESS) {
722                 auto it = properties->find(key);
723                 if (it == properties->end()) {
724                     (*properties)[key] = value;
725                 } else if (it->second != value) {
726                     LOG(WARNING) << "Overriding previous property '" << key << "':'" << it->second
727                                  << "' with new value '" << value << "'";
728                     it->second = value;
729                 }
730             } else {
731                 LOG(ERROR) << "Do not have permissions to set '" << key << "' to '" << value
732                            << "' in property file '" << filename << "': " << error;
733             }
734         }
735     }
736 }
737 
738 // Filter is used to decide which properties to load: NULL loads all keys,
739 // "ro.foo.*" is a prefix match, and "ro.foo.bar" is an exact match.
load_properties_from_file(const char * filename,const char * filter,std::map<std::string,std::string> * properties)740 static bool load_properties_from_file(const char* filename, const char* filter,
741                                       std::map<std::string, std::string>* properties) {
742     Timer t;
743     auto file_contents = ReadFile(filename);
744     if (!file_contents.ok()) {
745         PLOG(WARNING) << "Couldn't load property file '" << filename
746                       << "': " << file_contents.error();
747         return false;
748     }
749     file_contents->push_back('\n');
750 
751     LoadProperties(file_contents->data(), filter, filename, properties);
752     LOG(VERBOSE) << "(Loading properties from " << filename << " took " << t << ".)";
753     return true;
754 }
755 
LoadPropertiesFromSecondStageRes(std::map<std::string,std::string> * properties)756 static void LoadPropertiesFromSecondStageRes(std::map<std::string, std::string>* properties) {
757     std::string prop = GetRamdiskPropForSecondStage();
758     if (access(prop.c_str(), R_OK) != 0) {
759         CHECK(errno == ENOENT) << "Cannot access " << prop << ": " << strerror(errno);
760         return;
761     }
762     load_properties_from_file(prop.c_str(), nullptr, properties);
763 }
764 
765 // persist.sys.usb.config values can't be combined on build-time when property
766 // files are split into each partition.
767 // So we need to apply the same rule of build/make/tools/post_process_props.py
768 // on runtime.
update_sys_usb_config()769 static void update_sys_usb_config() {
770     bool is_debuggable = android::base::GetBoolProperty("ro.debuggable", false);
771     std::string config = android::base::GetProperty("persist.sys.usb.config", "");
772     // b/150130503, add (config == "none") condition here to prevent appending
773     // ",adb" if "none" is explicitly defined in default prop.
774     if (config.empty() || config == "none") {
775         InitPropertySet("persist.sys.usb.config", is_debuggable ? "adb" : "none");
776     } else if (is_debuggable && config.find("adb") == std::string::npos &&
777                config.length() + 4 < PROP_VALUE_MAX) {
778         config.append(",adb");
779         InitPropertySet("persist.sys.usb.config", config);
780     }
781 }
782 
load_override_properties()783 static void load_override_properties() {
784     if (ALLOW_LOCAL_PROP_OVERRIDE) {
785         std::map<std::string, std::string> properties;
786         load_properties_from_file("/data/local.prop", nullptr, &properties);
787         for (const auto& [name, value] : properties) {
788             std::string error;
789             if (PropertySet(name, value, &error) != PROP_SUCCESS) {
790                 LOG(ERROR) << "Could not set '" << name << "' to '" << value
791                            << "' in /data/local.prop: " << error;
792             }
793         }
794     }
795 }
796 
797 // If the ro.product.[brand|device|manufacturer|model|name] properties have not been explicitly
798 // set, derive them from ro.product.${partition}.* properties
property_initialize_ro_product_props()799 static void property_initialize_ro_product_props() {
800     const char* RO_PRODUCT_PROPS_PREFIX = "ro.product.";
801     const char* RO_PRODUCT_PROPS[] = {
802             "brand", "device", "manufacturer", "model", "name",
803     };
804     const char* RO_PRODUCT_PROPS_ALLOWED_SOURCES[] = {
805             "odm", "product", "system_ext", "system", "vendor",
806     };
807     const char* RO_PRODUCT_PROPS_DEFAULT_SOURCE_ORDER = "product,odm,vendor,system_ext,system";
808     const std::string EMPTY = "";
809 
810     std::string ro_product_props_source_order =
811             GetProperty("ro.product.property_source_order", EMPTY);
812 
813     if (!ro_product_props_source_order.empty()) {
814         // Verify that all specified sources are valid
815         for (const auto& source : Split(ro_product_props_source_order, ",")) {
816             // Verify that the specified source is valid
817             bool is_allowed_source = false;
818             for (const auto& allowed_source : RO_PRODUCT_PROPS_ALLOWED_SOURCES) {
819                 if (source == allowed_source) {
820                     is_allowed_source = true;
821                     break;
822                 }
823             }
824             if (!is_allowed_source) {
825                 LOG(ERROR) << "Found unexpected source in ro.product.property_source_order; "
826                               "using the default property source order";
827                 ro_product_props_source_order = RO_PRODUCT_PROPS_DEFAULT_SOURCE_ORDER;
828                 break;
829             }
830         }
831     } else {
832         ro_product_props_source_order = RO_PRODUCT_PROPS_DEFAULT_SOURCE_ORDER;
833     }
834 
835     for (const auto& ro_product_prop : RO_PRODUCT_PROPS) {
836         std::string base_prop(RO_PRODUCT_PROPS_PREFIX);
837         base_prop += ro_product_prop;
838 
839         std::string base_prop_val = GetProperty(base_prop, EMPTY);
840         if (!base_prop_val.empty()) {
841             continue;
842         }
843 
844         for (const auto& source : Split(ro_product_props_source_order, ",")) {
845             std::string target_prop(RO_PRODUCT_PROPS_PREFIX);
846             target_prop += source;
847             target_prop += '.';
848             target_prop += ro_product_prop;
849 
850             std::string target_prop_val = GetProperty(target_prop, EMPTY);
851             if (!target_prop_val.empty()) {
852                 LOG(INFO) << "Setting product property " << base_prop << " to '" << target_prop_val
853                           << "' (from " << target_prop << ")";
854                 std::string error;
855                 uint32_t res = PropertySet(base_prop, target_prop_val, &error);
856                 if (res != PROP_SUCCESS) {
857                     LOG(ERROR) << "Error setting product property " << base_prop << ": err=" << res
858                                << " (" << error << ")";
859                 }
860                 break;
861             }
862         }
863     }
864 }
865 
property_initialize_build_id()866 static void property_initialize_build_id() {
867     std::string build_id = GetProperty(ID_PROP, "");
868     if (!build_id.empty()) {
869         return;
870     }
871 
872     std::string legacy_build_id = GetProperty(LEGACY_ID_PROP, "");
873     std::string vbmeta_digest = GetProperty(VBMETA_DIGEST_PROP, "");
874     if (vbmeta_digest.size() < DIGEST_SIZE_USED) {
875         LOG(ERROR) << "vbmeta digest size too small " << vbmeta_digest;
876         // Still try to set the id field in the unexpected case.
877         build_id = legacy_build_id;
878     } else {
879         // Derive the ro.build.id by appending the vbmeta digest to the base value.
880         build_id = legacy_build_id + "." + vbmeta_digest.substr(0, DIGEST_SIZE_USED);
881     }
882 
883     std::string error;
884     auto res = PropertySet(ID_PROP, build_id, &error);
885     if (res != PROP_SUCCESS) {
886         LOG(ERROR) << "Failed to set " << ID_PROP << " to " << build_id;
887     }
888 }
889 
ConstructBuildFingerprint(bool legacy)890 static std::string ConstructBuildFingerprint(bool legacy) {
891     const std::string UNKNOWN = "unknown";
892     std::string build_fingerprint = GetProperty("ro.product.brand", UNKNOWN);
893     build_fingerprint += '/';
894     build_fingerprint += GetProperty("ro.product.name", UNKNOWN);
895     build_fingerprint += '/';
896     build_fingerprint += GetProperty("ro.product.device", UNKNOWN);
897     build_fingerprint += ':';
898     build_fingerprint += GetProperty("ro.build.version.release_or_codename", UNKNOWN);
899     build_fingerprint += '/';
900 
901     std::string build_id =
902             legacy ? GetProperty(LEGACY_ID_PROP, UNKNOWN) : GetProperty(ID_PROP, UNKNOWN);
903     build_fingerprint += build_id;
904     build_fingerprint += '/';
905     build_fingerprint += GetProperty("ro.build.version.incremental", UNKNOWN);
906     build_fingerprint += ':';
907     build_fingerprint += GetProperty("ro.build.type", UNKNOWN);
908     build_fingerprint += '/';
909     build_fingerprint += GetProperty("ro.build.tags", UNKNOWN);
910 
911     return build_fingerprint;
912 }
913 
914 // Derive the legacy build fingerprint if we overwrite the build id at runtime.
property_derive_legacy_build_fingerprint()915 static void property_derive_legacy_build_fingerprint() {
916     std::string legacy_build_fingerprint = GetProperty(LEGACY_FINGERPRINT_PROP, "");
917     if (!legacy_build_fingerprint.empty()) {
918         return;
919     }
920 
921     // The device doesn't have a legacy build id, skipping the legacy fingerprint.
922     std::string legacy_build_id = GetProperty(LEGACY_ID_PROP, "");
923     if (legacy_build_id.empty()) {
924         return;
925     }
926 
927     legacy_build_fingerprint = ConstructBuildFingerprint(true /* legacy fingerprint */);
928     LOG(INFO) << "Setting property '" << LEGACY_FINGERPRINT_PROP << "' to '"
929               << legacy_build_fingerprint << "'";
930 
931     std::string error;
932     uint32_t res = PropertySet(LEGACY_FINGERPRINT_PROP, legacy_build_fingerprint, &error);
933     if (res != PROP_SUCCESS) {
934         LOG(ERROR) << "Error setting property '" << LEGACY_FINGERPRINT_PROP << "': err=" << res
935                    << " (" << error << ")";
936     }
937 }
938 
939 // If the ro.build.fingerprint property has not been set, derive it from constituent pieces
property_derive_build_fingerprint()940 static void property_derive_build_fingerprint() {
941     std::string build_fingerprint = GetProperty("ro.build.fingerprint", "");
942     if (!build_fingerprint.empty()) {
943         return;
944     }
945 
946     build_fingerprint = ConstructBuildFingerprint(false /* legacy fingerprint */);
947     LOG(INFO) << "Setting property '" << FINGERPRINT_PROP << "' to '" << build_fingerprint << "'";
948 
949     std::string error;
950     uint32_t res = PropertySet(FINGERPRINT_PROP, build_fingerprint, &error);
951     if (res != PROP_SUCCESS) {
952         LOG(ERROR) << "Error setting property '" << FINGERPRINT_PROP << "': err=" << res << " ("
953                    << error << ")";
954     }
955 }
956 
957 // If the ro.product.cpu.abilist* properties have not been explicitly
958 // set, derive them from ro.${partition}.product.cpu.abilist* properties.
property_initialize_ro_cpu_abilist()959 static void property_initialize_ro_cpu_abilist() {
960     // From high to low priority.
961     const char* kAbilistSources[] = {
962             "product",
963             "odm",
964             "vendor",
965             "system",
966     };
967     const std::string EMPTY = "";
968     const char* kAbilistProp = "ro.product.cpu.abilist";
969     const char* kAbilist32Prop = "ro.product.cpu.abilist32";
970     const char* kAbilist64Prop = "ro.product.cpu.abilist64";
971 
972     // If the properties are defined explicitly, just use them.
973     if (GetProperty(kAbilistProp, EMPTY) != EMPTY) {
974         return;
975     }
976 
977     // Find the first source defining these properties by order.
978     std::string abilist32_prop_val;
979     std::string abilist64_prop_val;
980     for (const auto& source : kAbilistSources) {
981         const auto abilist32_prop = std::string("ro.") + source + ".product.cpu.abilist32";
982         const auto abilist64_prop = std::string("ro.") + source + ".product.cpu.abilist64";
983         abilist32_prop_val = GetProperty(abilist32_prop, EMPTY);
984         abilist64_prop_val = GetProperty(abilist64_prop, EMPTY);
985         // The properties could be empty on 32-bit-only or 64-bit-only devices,
986         // but we cannot identify a property is empty or undefined by GetProperty().
987         // So, we assume both of these 2 properties are empty as undefined.
988         if (abilist32_prop_val != EMPTY || abilist64_prop_val != EMPTY) {
989             break;
990         }
991     }
992 
993     // Merge ABI lists for ro.product.cpu.abilist
994     auto abilist_prop_val = abilist64_prop_val;
995     if (abilist32_prop_val != EMPTY) {
996         if (abilist_prop_val != EMPTY) {
997             abilist_prop_val += ",";
998         }
999         abilist_prop_val += abilist32_prop_val;
1000     }
1001 
1002     // Set these properties
1003     const std::pair<const char*, const std::string&> set_prop_list[] = {
1004             {kAbilistProp, abilist_prop_val},
1005             {kAbilist32Prop, abilist32_prop_val},
1006             {kAbilist64Prop, abilist64_prop_val},
1007     };
1008     for (const auto& [prop, prop_val] : set_prop_list) {
1009         LOG(INFO) << "Setting property '" << prop << "' to '" << prop_val << "'";
1010 
1011         std::string error;
1012         uint32_t res = PropertySet(prop, prop_val, &error);
1013         if (res != PROP_SUCCESS) {
1014             LOG(ERROR) << "Error setting property '" << prop << "': err=" << res << " (" << error
1015                        << ")";
1016         }
1017     }
1018 }
1019 
PropertyLoadBootDefaults()1020 void PropertyLoadBootDefaults() {
1021     // We read the properties and their values into a map, in order to always allow properties
1022     // loaded in the later property files to override the properties in loaded in the earlier
1023     // property files, regardless of if they are "ro." properties or not.
1024     std::map<std::string, std::string> properties;
1025 
1026     if (IsRecoveryMode()) {
1027         load_properties_from_file("/prop.default", nullptr, &properties);
1028     }
1029 
1030     // /<part>/etc/build.prop is the canonical location of the build-time properties since S.
1031     // Falling back to /<part>/defalt.prop and /<part>/build.prop only when legacy path has to
1032     // be supported, which is controlled by the support_legacy_path_until argument.
1033     const auto load_properties_from_partition = [&properties](const std::string& partition,
1034                                                               int support_legacy_path_until) {
1035         auto path = "/" + partition + "/etc/build.prop";
1036         if (load_properties_from_file(path.c_str(), nullptr, &properties)) {
1037             return;
1038         }
1039         // To read ro.<partition>.build.version.sdk, temporarily load the legacy paths into a
1040         // separate map. Then by comparing its value with legacy_version, we know that if the
1041         // partition is old enough so that we need to respect the legacy paths.
1042         std::map<std::string, std::string> temp;
1043         auto legacy_path1 = "/" + partition + "/default.prop";
1044         auto legacy_path2 = "/" + partition + "/build.prop";
1045         load_properties_from_file(legacy_path1.c_str(), nullptr, &temp);
1046         load_properties_from_file(legacy_path2.c_str(), nullptr, &temp);
1047         bool support_legacy_path = false;
1048         auto version_prop_name = "ro." + partition + ".build.version.sdk";
1049         auto it = temp.find(version_prop_name);
1050         if (it == temp.end()) {
1051             // This is embarassing. Without the prop, we can't determine how old the partition is.
1052             // Let's be conservative by assuming it is very very old.
1053             support_legacy_path = true;
1054         } else if (int value;
1055                    ParseInt(it->second.c_str(), &value) && value <= support_legacy_path_until) {
1056             support_legacy_path = true;
1057         }
1058         if (support_legacy_path) {
1059             // We don't update temp into properties directly as it might skip any (future) logic
1060             // for resolving duplicates implemented in load_properties_from_file.  Instead, read
1061             // the files again into the properties map.
1062             load_properties_from_file(legacy_path1.c_str(), nullptr, &properties);
1063             load_properties_from_file(legacy_path2.c_str(), nullptr, &properties);
1064         } else {
1065             LOG(FATAL) << legacy_path1 << " and " << legacy_path2 << " were not loaded "
1066                        << "because " << version_prop_name << "(" << it->second << ") is newer "
1067                        << "than " << support_legacy_path_until;
1068         }
1069     };
1070 
1071     // Order matters here. The more the partition is specific to a product, the higher its
1072     // precedence is.
1073     LoadPropertiesFromSecondStageRes(&properties);
1074     load_properties_from_file("/system/build.prop", nullptr, &properties);
1075     load_properties_from_partition("system_ext", /* support_legacy_path_until */ 30);
1076     // TODO(b/117892318): uncomment the following condition when vendor.imgs for aosp_* targets are
1077     // all updated.
1078     // if (SelinuxGetVendorAndroidVersion() <= __ANDROID_API_R__) {
1079     load_properties_from_file("/vendor/default.prop", nullptr, &properties);
1080     // }
1081     load_properties_from_file("/vendor/build.prop", nullptr, &properties);
1082     load_properties_from_file("/vendor_dlkm/etc/build.prop", nullptr, &properties);
1083     load_properties_from_file("/odm_dlkm/etc/build.prop", nullptr, &properties);
1084     load_properties_from_partition("odm", /* support_legacy_path_until */ 28);
1085     load_properties_from_partition("product", /* support_legacy_path_until */ 30);
1086 
1087     if (access(kDebugRamdiskProp, R_OK) == 0) {
1088         LOG(INFO) << "Loading " << kDebugRamdiskProp;
1089         load_properties_from_file(kDebugRamdiskProp, nullptr, &properties);
1090     }
1091 
1092     for (const auto& [name, value] : properties) {
1093         std::string error;
1094         if (PropertySet(name, value, &error) != PROP_SUCCESS) {
1095             LOG(ERROR) << "Could not set '" << name << "' to '" << value
1096                        << "' while loading .prop files" << error;
1097         }
1098     }
1099 
1100     property_initialize_ro_product_props();
1101     property_initialize_build_id();
1102     property_derive_build_fingerprint();
1103     property_derive_legacy_build_fingerprint();
1104     property_initialize_ro_cpu_abilist();
1105 
1106     update_sys_usb_config();
1107 }
1108 
LoadPropertyInfoFromFile(const std::string & filename,std::vector<PropertyInfoEntry> * property_infos)1109 bool LoadPropertyInfoFromFile(const std::string& filename,
1110                               std::vector<PropertyInfoEntry>* property_infos) {
1111     auto file_contents = std::string();
1112     if (!ReadFileToString(filename, &file_contents)) {
1113         PLOG(ERROR) << "Could not read properties from '" << filename << "'";
1114         return false;
1115     }
1116 
1117     auto errors = std::vector<std::string>{};
1118     bool require_prefix_or_exact = SelinuxGetVendorAndroidVersion() >= __ANDROID_API_R__;
1119     ParsePropertyInfoFile(file_contents, require_prefix_or_exact, property_infos, &errors);
1120     // Individual parsing errors are reported but do not cause a failed boot, which is what
1121     // returning false would do here.
1122     for (const auto& error : errors) {
1123         LOG(ERROR) << "Could not read line from '" << filename << "': " << error;
1124     }
1125 
1126     return true;
1127 }
1128 
CreateSerializedPropertyInfo()1129 void CreateSerializedPropertyInfo() {
1130     auto property_infos = std::vector<PropertyInfoEntry>();
1131     if (access("/system/etc/selinux/plat_property_contexts", R_OK) != -1) {
1132         if (!LoadPropertyInfoFromFile("/system/etc/selinux/plat_property_contexts",
1133                                       &property_infos)) {
1134             return;
1135         }
1136         // Don't check for failure here, since we don't always have all of these partitions.
1137         // E.g. In case of recovery, the vendor partition will not have mounted and we
1138         // still need the system / platform properties to function.
1139         if (access("/system_ext/etc/selinux/system_ext_property_contexts", R_OK) != -1) {
1140             LoadPropertyInfoFromFile("/system_ext/etc/selinux/system_ext_property_contexts",
1141                                      &property_infos);
1142         }
1143         if (!LoadPropertyInfoFromFile("/vendor/etc/selinux/vendor_property_contexts",
1144                                       &property_infos)) {
1145             // Fallback to nonplat_* if vendor_* doesn't exist.
1146             LoadPropertyInfoFromFile("/vendor/etc/selinux/nonplat_property_contexts",
1147                                      &property_infos);
1148         }
1149         if (access("/product/etc/selinux/product_property_contexts", R_OK) != -1) {
1150             LoadPropertyInfoFromFile("/product/etc/selinux/product_property_contexts",
1151                                      &property_infos);
1152         }
1153         if (access("/odm/etc/selinux/odm_property_contexts", R_OK) != -1) {
1154             LoadPropertyInfoFromFile("/odm/etc/selinux/odm_property_contexts", &property_infos);
1155         }
1156     } else {
1157         if (!LoadPropertyInfoFromFile("/plat_property_contexts", &property_infos)) {
1158             return;
1159         }
1160         LoadPropertyInfoFromFile("/system_ext_property_contexts", &property_infos);
1161         if (!LoadPropertyInfoFromFile("/vendor_property_contexts", &property_infos)) {
1162             // Fallback to nonplat_* if vendor_* doesn't exist.
1163             LoadPropertyInfoFromFile("/nonplat_property_contexts", &property_infos);
1164         }
1165         LoadPropertyInfoFromFile("/product_property_contexts", &property_infos);
1166         LoadPropertyInfoFromFile("/odm_property_contexts", &property_infos);
1167     }
1168 
1169     auto serialized_contexts = std::string();
1170     auto error = std::string();
1171     if (!BuildTrie(property_infos, "u:object_r:default_prop:s0", "string", &serialized_contexts,
1172                    &error)) {
1173         LOG(ERROR) << "Unable to serialize property contexts: " << error;
1174         return;
1175     }
1176 
1177     constexpr static const char kPropertyInfosPath[] = "/dev/__properties__/property_info";
1178     if (!WriteStringToFile(serialized_contexts, kPropertyInfosPath, 0444, 0, 0, false)) {
1179         PLOG(ERROR) << "Unable to write serialized property infos to file";
1180     }
1181     selinux_android_restorecon(kPropertyInfosPath, 0);
1182 }
1183 
ExportKernelBootProps()1184 static void ExportKernelBootProps() {
1185     constexpr const char* UNSET = "";
1186     struct {
1187         const char* src_prop;
1188         const char* dst_prop;
1189         const char* default_value;
1190     } prop_map[] = {
1191             // clang-format off
1192         { "ro.boot.serialno",   "ro.serialno",   UNSET, },
1193         { "ro.boot.mode",       "ro.bootmode",   "unknown", },
1194         { "ro.boot.baseband",   "ro.baseband",   "unknown", },
1195         { "ro.boot.bootloader", "ro.bootloader", "unknown", },
1196         { "ro.boot.hardware",   "ro.hardware",   "unknown", },
1197         { "ro.boot.revision",   "ro.revision",   "0", },
1198             // clang-format on
1199     };
1200     for (const auto& prop : prop_map) {
1201         std::string value = GetProperty(prop.src_prop, prop.default_value);
1202         if (value != UNSET) InitPropertySet(prop.dst_prop, value);
1203     }
1204 }
1205 
ProcessKernelDt()1206 static void ProcessKernelDt() {
1207     if (!is_android_dt_value_expected("compatible", "android,firmware")) {
1208         return;
1209     }
1210 
1211     std::unique_ptr<DIR, int (*)(DIR*)> dir(opendir(get_android_dt_dir().c_str()), closedir);
1212     if (!dir) return;
1213 
1214     std::string dt_file;
1215     struct dirent* dp;
1216     while ((dp = readdir(dir.get())) != NULL) {
1217         if (dp->d_type != DT_REG || !strcmp(dp->d_name, "compatible") ||
1218             !strcmp(dp->d_name, "name")) {
1219             continue;
1220         }
1221 
1222         std::string file_name = get_android_dt_dir() + dp->d_name;
1223 
1224         android::base::ReadFileToString(file_name, &dt_file);
1225         std::replace(dt_file.begin(), dt_file.end(), ',', '.');
1226 
1227         InitPropertySet("ro.boot."s + dp->d_name, dt_file);
1228     }
1229 }
1230 
1231 constexpr auto ANDROIDBOOT_PREFIX = "androidboot."sv;
1232 
ProcessKernelCmdline()1233 static void ProcessKernelCmdline() {
1234     ImportKernelCmdline([&](const std::string& key, const std::string& value) {
1235         if (StartsWith(key, ANDROIDBOOT_PREFIX)) {
1236             InitPropertySet("ro.boot." + key.substr(ANDROIDBOOT_PREFIX.size()), value);
1237         }
1238     });
1239 }
1240 
1241 
ProcessBootconfig()1242 static void ProcessBootconfig() {
1243     ImportBootconfig([&](const std::string& key, const std::string& value) {
1244         if (StartsWith(key, ANDROIDBOOT_PREFIX)) {
1245             InitPropertySet("ro.boot." + key.substr(ANDROIDBOOT_PREFIX.size()), value);
1246         }
1247     });
1248 }
1249 
PropertyInit()1250 void PropertyInit() {
1251     selinux_callback cb;
1252     cb.func_audit = PropertyAuditCallback;
1253     selinux_set_callback(SELINUX_CB_AUDIT, cb);
1254 
1255     mkdir("/dev/__properties__", S_IRWXU | S_IXGRP | S_IXOTH);
1256     CreateSerializedPropertyInfo();
1257     if (__system_property_area_init()) {
1258         LOG(FATAL) << "Failed to initialize property area";
1259     }
1260     if (!property_info_area.LoadDefaultPath()) {
1261         LOG(FATAL) << "Failed to load serialized property info file";
1262     }
1263 
1264     // If arguments are passed both on the command line and in DT,
1265     // properties set in DT always have priority over the command-line ones.
1266     ProcessKernelDt();
1267     ProcessKernelCmdline();
1268     ProcessBootconfig();
1269 
1270     // Propagate the kernel variables to internal variables
1271     // used by init as well as the current required properties.
1272     ExportKernelBootProps();
1273 
1274     PropertyLoadBootDefaults();
1275 }
1276 
HandleInitSocket()1277 static void HandleInitSocket() {
1278     auto message = ReadMessage(init_socket);
1279     if (!message.ok()) {
1280         LOG(ERROR) << "Could not read message from init_dedicated_recv_socket: " << message.error();
1281         return;
1282     }
1283 
1284     auto init_message = InitMessage{};
1285     if (!init_message.ParseFromString(*message)) {
1286         LOG(ERROR) << "Could not parse message from init";
1287         return;
1288     }
1289 
1290     switch (init_message.msg_case()) {
1291         case InitMessage::kLoadPersistentProperties: {
1292             load_override_properties();
1293             // Read persistent properties after all default values have been loaded.
1294             auto persistent_properties = LoadPersistentProperties();
1295             for (const auto& persistent_property_record : persistent_properties.properties()) {
1296                 InitPropertySet(persistent_property_record.name(),
1297                                 persistent_property_record.value());
1298             }
1299             InitPropertySet("ro.persistent_properties.ready", "true");
1300             persistent_properties_loaded = true;
1301             break;
1302         }
1303         default:
1304             LOG(ERROR) << "Unknown message type from init: " << init_message.msg_case();
1305     }
1306 }
1307 
PropertyServiceThread()1308 static void PropertyServiceThread() {
1309     Epoll epoll;
1310     if (auto result = epoll.Open(); !result.ok()) {
1311         LOG(FATAL) << result.error();
1312     }
1313 
1314     if (auto result = epoll.RegisterHandler(property_set_fd, handle_property_set_fd);
1315         !result.ok()) {
1316         LOG(FATAL) << result.error();
1317     }
1318 
1319     if (auto result = epoll.RegisterHandler(init_socket, HandleInitSocket); !result.ok()) {
1320         LOG(FATAL) << result.error();
1321     }
1322 
1323     while (true) {
1324         auto pending_functions = epoll.Wait(std::nullopt);
1325         if (!pending_functions.ok()) {
1326             LOG(ERROR) << pending_functions.error();
1327         } else {
1328             for (const auto& function : *pending_functions) {
1329                 (*function)();
1330             }
1331         }
1332     }
1333 }
1334 
StartPropertyService(int * epoll_socket)1335 void StartPropertyService(int* epoll_socket) {
1336     InitPropertySet("ro.property_service.version", "2");
1337 
1338     int sockets[2];
1339     if (socketpair(AF_UNIX, SOCK_SEQPACKET | SOCK_CLOEXEC, 0, sockets) != 0) {
1340         PLOG(FATAL) << "Failed to socketpair() between property_service and init";
1341     }
1342     *epoll_socket = from_init_socket = sockets[0];
1343     init_socket = sockets[1];
1344     StartSendingMessages();
1345 
1346     if (auto result = CreateSocket(PROP_SERVICE_NAME, SOCK_STREAM | SOCK_CLOEXEC | SOCK_NONBLOCK,
1347                                    false, 0666, 0, 0, {});
1348         result.ok()) {
1349         property_set_fd = *result;
1350     } else {
1351         LOG(FATAL) << "start_property_service socket creation failed: " << result.error();
1352     }
1353 
1354     listen(property_set_fd, 8);
1355 
1356     auto new_thread = std::thread{PropertyServiceThread};
1357     property_service_thread.swap(new_thread);
1358 }
1359 
1360 }  // namespace init
1361 }  // namespace android
1362