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1 /*
2  * Copyright (C) 2016 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 #define LOG_TAG "HidlServiceManagement"
18 
19 #ifdef __ANDROID__
20 #include <android/dlext.h>
21 #endif  // __ANDROID__
22 
23 #include <condition_variable>
24 #include <dlfcn.h>
25 #include <dirent.h>
26 #include <fstream>
27 #include <pthread.h>
28 #include <unistd.h>
29 
30 #include <mutex>
31 #include <regex>
32 #include <set>
33 
34 #include <hidl/HidlBinderSupport.h>
35 #include <hidl/HidlInternal.h>
36 #include <hidl/HidlTransportUtils.h>
37 #include <hidl/ServiceManagement.h>
38 #include <hidl/Status.h>
39 #include <utils/SystemClock.h>
40 
41 #include <android-base/file.h>
42 #include <android-base/logging.h>
43 #include <android-base/parseint.h>
44 #include <android-base/properties.h>
45 #include <android-base/stringprintf.h>
46 #include <android-base/strings.h>
47 #include <hwbinder/IPCThreadState.h>
48 #include <hwbinder/Parcel.h>
49 #if !defined(__ANDROID_RECOVERY__) && defined(__ANDROID__)
50 #include <vndksupport/linker.h>
51 #endif
52 
53 #include <android/hidl/manager/1.2/BnHwServiceManager.h>
54 #include <android/hidl/manager/1.2/BpHwServiceManager.h>
55 #include <android/hidl/manager/1.2/IServiceManager.h>
56 
57 using ::android::hidl::base::V1_0::IBase;
58 using IServiceManager1_0 = android::hidl::manager::V1_0::IServiceManager;
59 using IServiceManager1_1 = android::hidl::manager::V1_1::IServiceManager;
60 using IServiceManager1_2 = android::hidl::manager::V1_2::IServiceManager;
61 using ::android::hidl::manager::V1_0::IServiceNotification;
62 using ::android::hidl::manager::V1_2::IClientCallback;
63 
64 namespace android {
65 namespace hardware {
66 
67 #if defined(__ANDROID_RECOVERY__)
68 static constexpr bool kIsRecovery = true;
69 #else
70 static constexpr bool kIsRecovery = false;
71 #endif
72 
waitForHwServiceManager()73 static void waitForHwServiceManager() {
74     // TODO(b/31559095): need bionic host so that we can use 'prop_info' returned
75     // from WaitForProperty
76 #ifdef __ANDROID__
77     static const char* kHwServicemanagerReadyProperty = "hwservicemanager.ready";
78 
79     using std::literals::chrono_literals::operator""s;
80 
81     using android::base::WaitForProperty;
82     while (!WaitForProperty(kHwServicemanagerReadyProperty, "true", 1s)) {
83         LOG(WARNING) << "Waited for hwservicemanager.ready for a second, waiting another...";
84     }
85 #endif  // __ANDROID__
86 }
87 
binaryName()88 static std::string binaryName() {
89     std::ifstream ifs("/proc/self/cmdline");
90     std::string cmdline;
91     if (!ifs) {
92         return "";
93     }
94     ifs >> cmdline;
95 
96     size_t idx = cmdline.rfind('/');
97     if (idx != std::string::npos) {
98         cmdline = cmdline.substr(idx + 1);
99     }
100 
101     return cmdline;
102 }
103 
packageWithoutVersion(const std::string & packageAndVersion)104 static std::string packageWithoutVersion(const std::string& packageAndVersion) {
105     size_t at = packageAndVersion.find('@');
106     if (at == std::string::npos) return packageAndVersion;
107     return packageAndVersion.substr(0, at);
108 }
109 
tryShortenProcessName(const std::string & descriptor)110 __attribute__((noinline)) static void tryShortenProcessName(const std::string& descriptor) {
111     const static std::string kTasks = "/proc/self/task/";
112 
113     // make sure that this binary name is in the same package
114     std::string processName = binaryName();
115 
116     // e.x. android.hardware.foo is this package
117     if (!base::StartsWith(packageWithoutVersion(processName), packageWithoutVersion(descriptor))) {
118         return;
119     }
120 
121     // e.x. android.hardware.module.foo@1.2::IFoo -> foo@1.2
122     size_t lastDot = descriptor.rfind('.');
123     if (lastDot == std::string::npos) return;
124     size_t secondDot = descriptor.rfind('.', lastDot - 1);
125     if (secondDot == std::string::npos) return;
126 
127     std::string newName = processName.substr(secondDot + 1, std::string::npos);
128     ALOGI("Removing namespace from process name %s to %s.", processName.c_str(), newName.c_str());
129 
130     std::unique_ptr<DIR, decltype(&closedir)> dir(opendir(kTasks.c_str()), closedir);
131     if (dir == nullptr) return;
132 
133     dirent* dp;
134     while ((dp = readdir(dir.get())) != nullptr) {
135         if (dp->d_type != DT_DIR) continue;
136         if (dp->d_name[0] == '.') continue;
137 
138         std::fstream fs(kTasks + dp->d_name + "/comm");
139         if (!fs) {
140             ALOGI("Could not rename process, failed read comm for %s.", dp->d_name);
141             continue;
142         }
143 
144         std::string oldComm;
145         if (!(fs >> oldComm)) continue;
146 
147         // don't rename if it already has an explicit name
148         if (base::StartsWith(descriptor, oldComm)) {
149             if (!fs.seekg(0, fs.beg)) continue;
150             fs << newName;
151         }
152     }
153 }
154 
155 namespace details {
156 
157 #ifdef ENFORCE_VINTF_MANIFEST
158 static constexpr bool kEnforceVintfManifest = true;
159 #else
160 static constexpr bool kEnforceVintfManifest = false;
161 #endif
162 
getTrebleTestingOverridePtr()163 static bool* getTrebleTestingOverridePtr() {
164     static bool gTrebleTestingOverride = false;
165     return &gTrebleTestingOverride;
166 }
167 
setTrebleTestingOverride(bool testingOverride)168 void setTrebleTestingOverride(bool testingOverride) {
169     *getTrebleTestingOverridePtr() = testingOverride;
170 }
171 
isDebuggable()172 static bool isDebuggable() {
173     static bool debuggable = base::GetBoolProperty("ro.debuggable", false);
174     return debuggable;
175 }
176 
isTrebleTestingOverride()177 static inline bool isTrebleTestingOverride() {
178     // return false early so we don't need to check the debuggable property
179     if (!*getTrebleTestingOverridePtr()) return false;
180 
181     if (kEnforceVintfManifest && !isDebuggable()) {
182         // don't allow testing override in production
183         return false;
184     }
185 
186     return true;
187 }
188 
onRegistrationImpl(const std::string & descriptor,const std::string & instanceName)189 static void onRegistrationImpl(const std::string& descriptor, const std::string& instanceName) {
190     LOG(INFO) << "Registered " << descriptor << "/" << instanceName;
191     tryShortenProcessName(descriptor);
192 }
193 
194 // only used by prebuilts - should be able to remove
onRegistration(const std::string & packageName,const std::string & interfaceName,const std::string & instanceName)195 void onRegistration(const std::string& packageName, const std::string& interfaceName,
196                     const std::string& instanceName) {
197     return onRegistrationImpl(packageName + "::" + interfaceName, instanceName);
198 }
199 
200 }  // details
201 
defaultServiceManager()202 sp<IServiceManager1_0> defaultServiceManager() {
203     return defaultServiceManager1_2();
204 }
defaultServiceManager1_1()205 sp<IServiceManager1_1> defaultServiceManager1_1() {
206     return defaultServiceManager1_2();
207 }
isServiceManager(const hidl_string & fqName)208 static bool isServiceManager(const hidl_string& fqName) {
209     return fqName == IServiceManager1_0::descriptor || fqName == IServiceManager1_1::descriptor ||
210            fqName == IServiceManager1_2::descriptor;
211 }
isHwServiceManagerInstalled()212 static bool isHwServiceManagerInstalled() {
213     return access("/system/bin/hwservicemanager", F_OK) == 0;
214 }
215 
216 /*
217  * A replacement for hwservicemanager when it is not installed on a device.
218  *
219  * Clients in the framework need to continue supporting HIDL services through
220  * hwservicemanager for upgrading devices. Being unable to get an instance of
221  * hardware service manager is a hard error, so this implementation is returned
222  * to be able service the requests and tell clients there are no services
223  * registered.
224  */
225 struct NoHwServiceManager : public IServiceManager1_2 {
getandroid::hardware::NoHwServiceManager226     Return<sp<IBase>> get(const hidl_string& fqName, const hidl_string&) override {
227         sp<IBase> ret = nullptr;
228 
229         if (isServiceManager(fqName)) {
230             ret = defaultServiceManager1_2();
231         }
232         return ret;
233     }
234 
addandroid::hardware::NoHwServiceManager235     Return<bool> add(const hidl_string& name, const sp<IBase>& /* service */) override {
236         LOG(INFO) << "Cannot add " << name << " without hwservicemanager";
237         return false;
238     }
239 
getTransportandroid::hardware::NoHwServiceManager240     Return<Transport> getTransport(const hidl_string& fqName, const hidl_string& name) {
241         LOG(INFO) << "Trying to get transport of " << fqName << "/" << name
242                   << " without hwservicemanager";
243         return Transport::PASSTHROUGH;
244     }
245 
listandroid::hardware::NoHwServiceManager246     Return<void> list(list_cb _hidl_cb) override {
247         _hidl_cb({});
248         LOG(INFO) << "Cannot list all services without hwservicemanager";
249         return Void();
250     }
listByInterfaceandroid::hardware::NoHwServiceManager251     Return<void> listByInterface(const hidl_string& fqName, listByInterface_cb _hidl_cb) override {
252         _hidl_cb({});
253         LOG(INFO) << "Cannot list service " << fqName << " without hwservicemanager";
254         return Void();
255     }
256 
registerForNotificationsandroid::hardware::NoHwServiceManager257     Return<bool> registerForNotifications(const hidl_string& fqName, const hidl_string& name,
258                                           const sp<IServiceNotification>& /* callback */) override {
259         LOG(INFO) << "Cannot register for notifications for " << fqName << "/" << name
260                   << " without hwservicemanager";
261         return false;
262     }
263 
debugDumpandroid::hardware::NoHwServiceManager264     Return<void> debugDump(debugDump_cb _hidl_cb) override {
265         _hidl_cb({});
266         return Void();
267     }
268 
registerPassthroughClientandroid::hardware::NoHwServiceManager269     Return<void> registerPassthroughClient(const hidl_string& fqName,
270                                            const hidl_string& name) override {
271         LOG(INFO) << "This process is a client of " << fqName << "/" << name
272                   << " passthrough HAL, but it won't show up in lshal because hwservicemanager is "
273                      "not installed";
274         return Void();
275     }
276 
unregisterForNotificationsandroid::hardware::NoHwServiceManager277     Return<bool> unregisterForNotifications(
278             const hidl_string& fqName, const hidl_string& name,
279             const sp<IServiceNotification>& /* callback */) override {
280         LOG(INFO) << "Cannot unregister for notifications for " << fqName << "/" << name
281                   << " without hwservicemanager";
282         return false;
283     }
registerClientCallbackandroid::hardware::NoHwServiceManager284     Return<bool> registerClientCallback(const hidl_string& fqName, const hidl_string& name,
285                                         const sp<IBase>&, const sp<IClientCallback>&) {
286         LOG(INFO) << "Cannot add client callback for " << fqName << "/" << name
287                   << " without hwservicemanager";
288         return false;
289     }
unregisterClientCallbackandroid::hardware::NoHwServiceManager290     Return<bool> unregisterClientCallback(const sp<IBase>&, const sp<IClientCallback>&) {
291         LOG(INFO) << "Cannot unregister client callbacks without hwservicemanager";
292         return false;
293     }
addWithChainandroid::hardware::NoHwServiceManager294     Return<bool> addWithChain(const hidl_string& fqName, const sp<IBase>&,
295                               const hidl_vec<hidl_string>&) {
296         LOG(INFO) << "Cannot add " << fqName << " with chain without hwservicemanager";
297         return false;
298     }
listManifestByInterfaceandroid::hardware::NoHwServiceManager299     Return<void> listManifestByInterface(const hidl_string& fqName, listManifestByInterface_cb) {
300         LOG(INFO) << "Cannot list manifest for " << fqName << " without hwservicemanager";
301         return Void();
302     }
tryUnregisterandroid::hardware::NoHwServiceManager303     Return<bool> tryUnregister(const hidl_string& fqName, const hidl_string& name,
304                                const sp<IBase>&) {
305         LOG(INFO) << "Cannot unregister service " << fqName << "/" << name
306                   << " without hwservicemanager";
307         return false;
308     }
309 };
310 
defaultServiceManager1_2()311 sp<IServiceManager1_2> defaultServiceManager1_2() {
312     using android::hidl::manager::V1_2::BnHwServiceManager;
313     using android::hidl::manager::V1_2::BpHwServiceManager;
314 
315     static std::mutex& gDefaultServiceManagerLock = *new std::mutex;
316     static sp<IServiceManager1_2>& gDefaultServiceManager = *new sp<IServiceManager1_2>;
317 
318     {
319         std::lock_guard<std::mutex> _l(gDefaultServiceManagerLock);
320         if (gDefaultServiceManager != nullptr) {
321             return gDefaultServiceManager;
322         }
323 
324         if (!isHwServiceManagerInstalled()) {
325             // hwservicemanager is not available on this device.
326             gDefaultServiceManager = sp<NoHwServiceManager>::make();
327             return gDefaultServiceManager;
328         }
329 
330         if (access("/dev/hwbinder", F_OK|R_OK|W_OK) != 0) {
331             // HwBinder not available on this device or not accessible to
332             // this process.
333             return nullptr;
334         }
335 
336         waitForHwServiceManager();
337 
338         while (gDefaultServiceManager == nullptr) {
339             gDefaultServiceManager =
340                 fromBinder<IServiceManager1_2, BpHwServiceManager, BnHwServiceManager>(
341                     ProcessState::self()->getContextObject(nullptr));
342             if (gDefaultServiceManager == nullptr) {
343                 LOG(ERROR) << "Waited for hwservicemanager, but got nullptr.";
344                 sleep(1);
345             }
346         }
347     }
348 
349     return gDefaultServiceManager;
350 }
351 
findFiles(const std::string & path,const std::string & prefix,const std::string & suffix)352 static std::vector<std::string> findFiles(const std::string& path, const std::string& prefix,
353                                           const std::string& suffix) {
354     std::unique_ptr<DIR, decltype(&closedir)> dir(opendir(path.c_str()), closedir);
355     if (!dir) return {};
356 
357     std::vector<std::string> results{};
358 
359     dirent* dp;
360     while ((dp = readdir(dir.get())) != nullptr) {
361         std::string name = dp->d_name;
362 
363         if (base::StartsWith(name, prefix) && base::EndsWith(name, suffix)) {
364             results.push_back(name);
365         }
366     }
367 
368     return results;
369 }
370 
matchPackageName(const std::string & lib,std::string * matchedName,std::string * implName)371 static bool matchPackageName(const std::string& lib, std::string* matchedName,
372                              std::string* implName) {
373 #define RE_COMPONENT "[a-zA-Z_][a-zA-Z_0-9]*"
374 #define RE_PATH RE_COMPONENT "(?:[.]" RE_COMPONENT ")*"
375     static const std::regex gLibraryFileNamePattern("(" RE_PATH "@[0-9]+[.][0-9]+)-impl(.*?).so");
376 #undef RE_PATH
377 #undef RE_COMPONENT
378 
379     std::smatch match;
380     if (std::regex_match(lib, match, gLibraryFileNamePattern)) {
381         *matchedName = match.str(1) + "::I*";
382         *implName = match.str(2);
383         return true;
384     }
385     return false;
386 }
387 
registerReference(const hidl_string & interfaceName,const hidl_string & instanceName)388 static void registerReference(const hidl_string &interfaceName, const hidl_string &instanceName) {
389     if (kIsRecovery) {
390         // No hwservicemanager in recovery.
391         return;
392     }
393 
394     sp<IServiceManager1_0> binderizedManager = defaultServiceManager();
395     if (binderizedManager == nullptr) {
396         LOG(WARNING) << "Could not registerReference for "
397                      << interfaceName << "/" << instanceName
398                      << ": null binderized manager.";
399         return;
400     }
401     auto ret = binderizedManager->registerPassthroughClient(interfaceName, instanceName);
402     if (!ret.isOk()) {
403         LOG(WARNING) << "Could not registerReference for "
404                      << interfaceName << "/" << instanceName
405                      << ": " << ret.description();
406         return;
407     }
408     LOG(VERBOSE) << "Successfully registerReference for "
409                  << interfaceName << "/" << instanceName;
410 }
411 
412 using InstanceDebugInfo = hidl::manager::V1_0::IServiceManager::InstanceDebugInfo;
fetchPidsForPassthroughLibraries(std::map<std::string,InstanceDebugInfo> * infos)413 static inline void fetchPidsForPassthroughLibraries(
414     std::map<std::string, InstanceDebugInfo>* infos) {
415     static const std::string proc = "/proc/";
416 
417     std::map<std::string, std::set<pid_t>> pids;
418     std::unique_ptr<DIR, decltype(&closedir)> dir(opendir(proc.c_str()), closedir);
419     if (!dir) return;
420     dirent* dp;
421     while ((dp = readdir(dir.get())) != nullptr) {
422         pid_t pid = strtoll(dp->d_name, nullptr, 0);
423         if (pid == 0) continue;
424         std::string mapsPath = proc + dp->d_name + "/maps";
425         std::ifstream ifs{mapsPath};
426         if (!ifs.is_open()) continue;
427 
428         for (std::string line; std::getline(ifs, line);) {
429             // The last token of line should look like
430             // vendor/lib64/hw/android.hardware.foo@1.0-impl-extra.so
431             // Use some simple filters to ignore bad lines before extracting libFileName
432             // and checking the key in info to make parsing faster.
433             if (line.back() != 'o') continue;
434             if (line.rfind('@') == std::string::npos) continue;
435 
436             auto spacePos = line.rfind(' ');
437             if (spacePos == std::string::npos) continue;
438             auto libFileName = line.substr(spacePos + 1);
439             auto it = infos->find(libFileName);
440             if (it == infos->end()) continue;
441             pids[libFileName].insert(pid);
442         }
443     }
444     for (auto& pair : *infos) {
445         pair.second.clientPids =
446             std::vector<pid_t>{pids[pair.first].begin(), pids[pair.first].end()};
447     }
448 }
449 
450 struct PassthroughServiceManager : IServiceManager1_1 {
openLibsandroid::hardware::PassthroughServiceManager451     static void openLibs(
452         const std::string& fqName,
453         const std::function<bool /* continue */ (void* /* handle */, const std::string& /* lib */,
454                                                  const std::string& /* sym */)>& eachLib) {
455         //fqName looks like android.hardware.foo@1.0::IFoo
456         size_t idx = fqName.find("::");
457 
458         if (idx == std::string::npos ||
459                 idx + strlen("::") + 1 >= fqName.size()) {
460             LOG(ERROR) << "Invalid interface name passthrough lookup: " << fqName;
461             return;
462         }
463 
464         std::string packageAndVersion = fqName.substr(0, idx);
465         std::string ifaceName = fqName.substr(idx + strlen("::"));
466 
467         const std::string prefix = packageAndVersion + "-impl";
468         const std::string sym = "HIDL_FETCH_" + ifaceName;
469 
470         constexpr int dlMode = RTLD_LAZY;
471         void* handle = nullptr;
472 
473         dlerror(); // clear
474 
475         static std::string halLibPathVndkSp = details::getVndkSpHwPath();
476         std::vector<std::string> paths = {
477             HAL_LIBRARY_PATH_ODM, HAL_LIBRARY_PATH_VENDOR, halLibPathVndkSp,
478 #ifndef __ANDROID_VNDK__
479             HAL_LIBRARY_PATH_SYSTEM,
480 #endif
481         };
482 
483         if (details::isTrebleTestingOverride()) {
484             // Load HAL implementations that are statically linked
485             handle = dlopen(nullptr, dlMode);
486             if (handle == nullptr) {
487                 const char* error = dlerror();
488                 LOG(ERROR) << "Failed to dlopen self: "
489                            << (error == nullptr ? "unknown error" : error);
490             } else if (!eachLib(handle, "SELF", sym)) {
491                 return;
492             }
493         }
494 
495         for (const std::string& path : paths) {
496             std::vector<std::string> libs = findFiles(path, prefix, ".so");
497 
498             for (const std::string &lib : libs) {
499                 const std::string fullPath = path + lib;
500 
501                 if (kIsRecovery || path == HAL_LIBRARY_PATH_SYSTEM) {
502                     handle = dlopen(fullPath.c_str(), dlMode);
503                 } else {
504 #if !defined(__ANDROID_RECOVERY__) && defined(__ANDROID__)
505                     handle = android_load_sphal_library(fullPath.c_str(), dlMode);
506 #endif
507                 }
508 
509                 if (handle == nullptr) {
510                     const char* error = dlerror();
511                     LOG(ERROR) << "Failed to dlopen " << lib << ": "
512                                << (error == nullptr ? "unknown error" : error);
513                     continue;
514                 }
515 
516                 if (!eachLib(handle, lib, sym)) {
517                     return;
518                 }
519             }
520         }
521     }
522 
getandroid::hardware::PassthroughServiceManager523     Return<sp<IBase>> get(const hidl_string& fqName,
524                           const hidl_string& name) override {
525         sp<IBase> ret = nullptr;
526         // This is required to run without hwservicemanager while we have
527         // passthrough HIDL services. Once the passthrough HIDL services have
528         // been removed, the PassthroughServiceManager will no longer be needed.
529         if (!isHwServiceManagerInstalled() && isServiceManager(fqName)) {
530             return defaultServiceManager1_2();
531         }
532 
533         openLibs(fqName, [&](void* handle, const std::string &lib, const std::string &sym) {
534             IBase* (*generator)(const char* name);
535             *(void **)(&generator) = dlsym(handle, sym.c_str());
536             if(!generator) {
537                 const char* error = dlerror();
538                 LOG(ERROR) << "Passthrough lookup opened " << lib << " but could not find symbol "
539                            << sym << ": " << (error == nullptr ? "unknown error" : error)
540                            << ". Keeping library open.";
541 
542                 // dlclose too problematic in multi-threaded environment
543                 // dlclose(handle);
544 
545                 return true;  // continue
546             }
547 
548             ret = (*generator)(name.c_str());
549 
550             if (ret == nullptr) {
551                 LOG(ERROR) << "Could not find instance '" << name.c_str() << "' in library " << lib
552                            << ". Keeping library open.";
553 
554                 // dlclose too problematic in multi-threaded environment
555                 // dlclose(handle);
556 
557                 // this module doesn't provide this particular instance
558                 return true;  // continue
559             }
560 
561             // Actual fqname might be a subclass.
562             // This assumption is tested in vts_treble_vintf_test
563             using ::android::hardware::details::getDescriptor;
564             std::string actualFqName = getDescriptor(ret.get());
565             CHECK(actualFqName.size() > 0);
566             registerReference(actualFqName, name);
567             return false;
568         });
569 
570         return ret;
571     }
572 
addandroid::hardware::PassthroughServiceManager573     Return<bool> add(const hidl_string& /* name */,
574                      const sp<IBase>& /* service */) override {
575         LOG(FATAL) << "Cannot register services with passthrough service manager.";
576         return false;
577     }
578 
getTransportandroid::hardware::PassthroughServiceManager579     Return<Transport> getTransport(const hidl_string& /* fqName */,
580                                    const hidl_string& /* name */) {
581         LOG(FATAL) << "Cannot getTransport with passthrough service manager.";
582         return Transport::EMPTY;
583     }
584 
listandroid::hardware::PassthroughServiceManager585     Return<void> list(list_cb /* _hidl_cb */) override {
586         LOG(FATAL) << "Cannot list services with passthrough service manager.";
587         return Void();
588     }
listByInterfaceandroid::hardware::PassthroughServiceManager589     Return<void> listByInterface(const hidl_string& /* fqInstanceName */,
590                                  listByInterface_cb /* _hidl_cb */) override {
591         // TODO: add this functionality
592         LOG(FATAL) << "Cannot list services with passthrough service manager.";
593         return Void();
594     }
595 
registerForNotificationsandroid::hardware::PassthroughServiceManager596     Return<bool> registerForNotifications(const hidl_string& /* fqName */,
597                                           const hidl_string& /* name */,
598                                           const sp<IServiceNotification>& /* callback */) override {
599         // This makes no sense.
600         LOG(FATAL) << "Cannot register for notifications with passthrough service manager.";
601         return false;
602     }
603 
debugDumpandroid::hardware::PassthroughServiceManager604     Return<void> debugDump(debugDump_cb _hidl_cb) override {
605         using Arch = ::android::hidl::base::V1_0::DebugInfo::Architecture;
606         using std::literals::string_literals::operator""s;
607         static std::string halLibPathVndkSp64 = details::getVndkSpHwPath("lib64");
608         static std::string halLibPathVndkSp32 = details::getVndkSpHwPath("lib");
609         static std::vector<std::pair<Arch, std::vector<const char*>>> sAllPaths{
610             {Arch::IS_64BIT,
611              {
612                  HAL_LIBRARY_PATH_ODM_64BIT, HAL_LIBRARY_PATH_VENDOR_64BIT,
613                  halLibPathVndkSp64.c_str(),
614 #ifndef __ANDROID_VNDK__
615                  HAL_LIBRARY_PATH_SYSTEM_64BIT,
616 #endif
617              }},
618             {Arch::IS_32BIT,
619              {
620                  HAL_LIBRARY_PATH_ODM_32BIT, HAL_LIBRARY_PATH_VENDOR_32BIT,
621                  halLibPathVndkSp32.c_str(),
622 #ifndef __ANDROID_VNDK__
623                  HAL_LIBRARY_PATH_SYSTEM_32BIT,
624 #endif
625              }}};
626         std::map<std::string, InstanceDebugInfo> map;
627         for (const auto &pair : sAllPaths) {
628             Arch arch = pair.first;
629             for (const auto &path : pair.second) {
630                 std::vector<std::string> libs = findFiles(path, "", ".so");
631                 for (const std::string &lib : libs) {
632                     std::string matchedName;
633                     std::string implName;
634                     if (matchPackageName(lib, &matchedName, &implName)) {
635                         std::string instanceName{"* ("s + path + ")"s};
636                         if (!implName.empty()) instanceName += " ("s + implName + ")"s;
637                         map.emplace(path + lib, InstanceDebugInfo{.interfaceName = matchedName,
638                                                                   .instanceName = instanceName,
639                                                                   .clientPids = {},
640                                                                   .arch = arch});
641                     }
642                 }
643             }
644         }
645         fetchPidsForPassthroughLibraries(&map);
646         hidl_vec<InstanceDebugInfo> vec;
647         vec.resize(map.size());
648         size_t idx = 0;
649         for (auto&& pair : map) {
650             vec[idx++] = std::move(pair.second);
651         }
652         _hidl_cb(vec);
653         return Void();
654     }
655 
registerPassthroughClientandroid::hardware::PassthroughServiceManager656     Return<void> registerPassthroughClient(const hidl_string &, const hidl_string &) override {
657         // This makes no sense.
658         LOG(FATAL) << "Cannot call registerPassthroughClient on passthrough service manager. "
659                    << "Call it on defaultServiceManager() instead.";
660         return Void();
661     }
662 
unregisterForNotificationsandroid::hardware::PassthroughServiceManager663     Return<bool> unregisterForNotifications(const hidl_string& /* fqName */,
664                                             const hidl_string& /* name */,
665                                             const sp<IServiceNotification>& /* callback */) override {
666         // This makes no sense.
667         LOG(FATAL) << "Cannot unregister for notifications with passthrough service manager.";
668         return false;
669     }
670 
671 };
672 
getPassthroughServiceManager()673 sp<IServiceManager1_0> getPassthroughServiceManager() {
674     return getPassthroughServiceManager1_1();
675 }
getPassthroughServiceManager1_1()676 sp<IServiceManager1_1> getPassthroughServiceManager1_1() {
677     static sp<PassthroughServiceManager> manager(new PassthroughServiceManager());
678     return manager;
679 }
680 
getAllHalInstanceNames(const std::string & descriptor)681 std::vector<std::string> getAllHalInstanceNames(const std::string& descriptor) {
682     std::vector<std::string> ret;
683     auto sm = defaultServiceManager1_2();
684     sm->listManifestByInterface(descriptor, [&](const auto& instances) {
685         ret.reserve(instances.size());
686         for (const auto& i : instances) {
687             ret.push_back(i);
688         }
689     });
690     return ret;
691 }
692 
693 namespace details {
694 
preloadPassthroughService(const std::string & descriptor)695 void preloadPassthroughService(const std::string &descriptor) {
696     PassthroughServiceManager::openLibs(descriptor,
697         [&](void* /* handle */, const std::string& /* lib */, const std::string& /* sym */) {
698             // do nothing
699             return true; // open all libs
700         });
701 }
702 
703 struct Waiter : IServiceNotification {
Waiterandroid::hardware::details::Waiter704     Waiter(const std::string& interface, const std::string& instanceName,
705            const sp<IServiceManager1_1>& sm) : mInterfaceName(interface),
706                                                mInstanceName(instanceName), mSm(sm) {
707     }
708 
onFirstRefandroid::hardware::details::Waiter709     void onFirstRef() override {
710         // If this process only has one binder thread, and we're calling wait() from
711         // that thread, it will block forever because we hung up the one and only
712         // binder thread on a condition variable that can only be notified by an
713         // incoming binder call.
714         if (IPCThreadState::self()->isOnlyBinderThread()) {
715             LOG(WARNING) << "Can't efficiently wait for " << mInterfaceName << "/"
716                          << mInstanceName << ", because we are called from "
717                          << "the only binder thread in this process.";
718             return;
719         }
720 
721         Return<bool> ret = mSm->registerForNotifications(mInterfaceName, mInstanceName, this);
722 
723         if (!ret.isOk()) {
724             LOG(ERROR) << "Transport error, " << ret.description()
725                        << ", during notification registration for " << mInterfaceName << "/"
726                        << mInstanceName << ".";
727             return;
728         }
729 
730         if (!ret) {
731             LOG(ERROR) << "Could not register for notifications for " << mInterfaceName << "/"
732                        << mInstanceName << ".";
733             return;
734         }
735 
736         mRegisteredForNotifications = true;
737     }
738 
~Waiterandroid::hardware::details::Waiter739     ~Waiter() {
740         if (!mDoneCalled) {
741             LOG(FATAL)
742                 << "Waiter still registered for notifications, call done() before dropping ref!";
743         }
744     }
745 
onRegistrationandroid::hardware::details::Waiter746     Return<void> onRegistration(const hidl_string& /* fqName */,
747                                 const hidl_string& /* name */,
748                                 bool /* preexisting */) override {
749         std::unique_lock<std::mutex> lock(mMutex);
750         if (mRegistered) {
751             return Void();
752         }
753         mRegistered = true;
754         lock.unlock();
755 
756         mCondition.notify_one();
757         return Void();
758     }
759 
waitandroid::hardware::details::Waiter760     void wait(bool timeout) {
761         using std::literals::chrono_literals::operator""s;
762 
763         if (!mRegisteredForNotifications) {
764             // As an alternative, just sleep for a second and return
765             LOG(WARNING) << "Waiting one second for " << mInterfaceName << "/" << mInstanceName;
766             sleep(1);
767             return;
768         }
769 
770         std::unique_lock<std::mutex> lock(mMutex);
771         do {
772             mCondition.wait_for(lock, 1s, [this]{
773                 return mRegistered;
774             });
775 
776             if (mRegistered) {
777                 break;
778             }
779 
780             LOG(WARNING) << "Waited one second for " << mInterfaceName << "/" << mInstanceName;
781         } while (!timeout);
782     }
783 
784     // Be careful when using this; after calling reset(), you must always try to retrieve
785     // the corresponding service before blocking on the waiter; otherwise, you might run
786     // into a race-condition where the service has just (re-)registered, you clear the state
787     // here, and subsequently calling waiter->wait() will block forever.
resetandroid::hardware::details::Waiter788     void reset() {
789         std::unique_lock<std::mutex> lock(mMutex);
790         mRegistered = false;
791     }
792 
793     // done() must be called before dropping the last strong ref to the Waiter, to make
794     // sure we can properly unregister with hwservicemanager.
doneandroid::hardware::details::Waiter795     void done() {
796         if (mRegisteredForNotifications) {
797             if (!mSm->unregisterForNotifications(mInterfaceName, mInstanceName, this)
798                      .withDefault(false)) {
799                 LOG(ERROR) << "Could not unregister service notification for " << mInterfaceName
800                            << "/" << mInstanceName << ".";
801             } else {
802                 mRegisteredForNotifications = false;
803             }
804         }
805         mDoneCalled = true;
806     }
807 
808    private:
809     const std::string mInterfaceName;
810     const std::string mInstanceName;
811     sp<IServiceManager1_1> mSm;
812     std::mutex mMutex;
813     std::condition_variable mCondition;
814     bool mRegistered = false;
815     bool mRegisteredForNotifications = false;
816     bool mDoneCalled = false;
817 };
818 
waitForHwService(const std::string & interface,const std::string & instanceName)819 void waitForHwService(
820         const std::string &interface, const std::string &instanceName) {
821     sp<Waiter> waiter = new Waiter(interface, instanceName, defaultServiceManager1_1());
822     waiter->wait(false /* timeout */);
823     waiter->done();
824 }
825 
826 // Prints relevant error/warning messages for error return values from
827 // details::canCastInterface(), both transaction errors (!castReturn.isOk())
828 // as well as actual cast failures (castReturn.isOk() && castReturn = false).
829 // Returns 'true' if the error is non-fatal and it's useful to retry
handleCastError(const Return<bool> & castReturn,const std::string & descriptor,const std::string & instance)830 bool handleCastError(const Return<bool>& castReturn, const std::string& descriptor,
831                      const std::string& instance) {
832     if (castReturn.isOk()) {
833         if (castReturn) {
834             details::logAlwaysFatal("Successful cast value passed into handleCastError.");
835         }
836         // This should never happen, and there's not really a point in retrying.
837         ALOGE("getService: received incompatible service (bug in hwservicemanager?) for "
838             "%s/%s.", descriptor.c_str(), instance.c_str());
839         return false;
840     }
841     if (castReturn.isDeadObject()) {
842         ALOGW("getService: found dead hwbinder service for %s/%s.", descriptor.c_str(),
843               instance.c_str());
844         return true;
845     }
846     // This can happen due to:
847     // 1) No SELinux permissions
848     // 2) Other transaction failure (no buffer space, kernel error)
849     // The first isn't recoverable, but the second is.
850     // Since we can't yet differentiate between the two, and clients depend
851     // on us not blocking in case 1), treat this as a fatal error for now.
852     ALOGW("getService: unable to call into hwbinder service for %s/%s.",
853           descriptor.c_str(), instance.c_str());
854     return false;
855 }
856 
getRawServiceInternal(const std::string & descriptor,const std::string & instance,bool retry,bool getStub)857 sp<::android::hidl::base::V1_0::IBase> getRawServiceInternal(const std::string& descriptor,
858                                                              const std::string& instance,
859                                                              bool retry, bool getStub) {
860     using Transport = IServiceManager1_0::Transport;
861     sp<Waiter> waiter;
862 
863     sp<IServiceManager1_1> sm;
864     Transport transport = Transport::EMPTY;
865     if (kIsRecovery) {
866         transport = Transport::PASSTHROUGH;
867     } else {
868         sm = defaultServiceManager1_1();
869         if (sm == nullptr) {
870             ALOGE("getService: defaultServiceManager() is null");
871             return nullptr;
872         }
873 
874         Return<Transport> transportRet = sm->getTransport(descriptor, instance);
875 
876         if (!transportRet.isOk()) {
877             ALOGE("getService: defaultServiceManager()->getTransport returns %s",
878                   transportRet.description().c_str());
879             return nullptr;
880         }
881         transport = transportRet;
882     }
883 
884     const bool vintfHwbinder = (transport == Transport::HWBINDER);
885     const bool vintfPassthru = (transport == Transport::PASSTHROUGH);
886     const bool trebleTestingOverride = isTrebleTestingOverride();
887     const bool allowLegacy = !kEnforceVintfManifest || (trebleTestingOverride && isDebuggable());
888     const bool vintfLegacy = (transport == Transport::EMPTY) && allowLegacy;
889 
890     if (!kEnforceVintfManifest) {
891         ALOGE("getService: Potential race detected. The VINTF manifest is not being enforced. If "
892               "a HAL server has a delay in starting and it is not in the manifest, it will not be "
893               "retrieved. Please make sure all HALs on this device are in the VINTF manifest and "
894               "enable PRODUCT_ENFORCE_VINTF_MANIFEST on this device (this is also enabled by "
895               "PRODUCT_FULL_TREBLE). PRODUCT_ENFORCE_VINTF_MANIFEST will ensure that no race "
896               "condition is possible here.");
897         sleep(1);
898     }
899 
900     for (int tries = 0; !getStub && (vintfHwbinder || vintfLegacy); tries++) {
901         if (waiter == nullptr && tries > 0) {
902             waiter = new Waiter(descriptor, instance, sm);
903         }
904         if (waiter != nullptr) {
905             waiter->reset();  // don't reorder this -- see comments on reset()
906         }
907         Return<sp<IBase>> ret = sm->get(descriptor, instance);
908         if (!ret.isOk()) {
909             ALOGE("getService: defaultServiceManager()->get returns %s for %s/%s.",
910                   ret.description().c_str(), descriptor.c_str(), instance.c_str());
911             break;
912         }
913         sp<IBase> base = ret;
914         if (base != nullptr) {
915             Return<bool> canCastRet =
916                 details::canCastInterface(base.get(), descriptor.c_str(), true /* emitError */);
917 
918             if (canCastRet.isOk() && canCastRet) {
919                 if (waiter != nullptr) {
920                     waiter->done();
921                 }
922                 return base; // still needs to be wrapped by Bp class.
923             }
924 
925             if (!handleCastError(canCastRet, descriptor, instance)) break;
926         }
927 
928         // In case of legacy or we were not asked to retry, don't.
929         if (vintfLegacy || !retry) break;
930 
931         if (waiter != nullptr) {
932             ALOGI("getService: Trying again for %s/%s...", descriptor.c_str(), instance.c_str());
933             waiter->wait(true /* timeout */);
934         }
935     }
936 
937     if (waiter != nullptr) {
938         waiter->done();
939     }
940 
941     if (getStub || vintfPassthru || vintfLegacy) {
942         const sp<IServiceManager1_0> pm = getPassthroughServiceManager();
943         if (pm != nullptr) {
944             sp<IBase> base = pm->get(descriptor, instance).withDefault(nullptr);
945             if (!getStub || trebleTestingOverride) {
946                 base = wrapPassthrough(base);
947             }
948             return base;
949         }
950     }
951 
952     return nullptr;
953 }
954 
registerAsServiceInternal(const sp<IBase> & service,const std::string & name)955 status_t registerAsServiceInternal(const sp<IBase>& service, const std::string& name) {
956     if (service == nullptr) {
957         return UNEXPECTED_NULL;
958     }
959 
960     sp<IServiceManager1_2> sm = defaultServiceManager1_2();
961     if (sm == nullptr) {
962         return INVALID_OPERATION;
963     }
964 
965     const std::string descriptor = getDescriptor(service.get());
966 
967     if (kEnforceVintfManifest && !isTrebleTestingOverride()) {
968         using Transport = IServiceManager1_0::Transport;
969         Return<Transport> transport = sm->getTransport(descriptor, name);
970 
971         if (!transport.isOk()) {
972             LOG(ERROR) << "Could not get transport for " << descriptor << "/" << name << ": "
973                        << transport.description();
974             return UNKNOWN_ERROR;
975         }
976 
977         if (transport != Transport::HWBINDER) {
978             LOG(ERROR) << "Service " << descriptor << "/" << name
979                        << " must be in VINTF manifest in order to register/get.";
980             return UNKNOWN_ERROR;
981         }
982     }
983 
984     bool registered = false;
985     Return<void> ret = service->interfaceChain([&](const auto& chain) {
986         registered = sm->addWithChain(name.c_str(), service, chain).withDefault(false);
987     });
988 
989     if (!ret.isOk()) {
990         LOG(ERROR) << "Could not retrieve interface chain: " << ret.description();
991     }
992 
993     if (registered) {
994         onRegistrationImpl(descriptor, name);
995     }
996 
997     return registered ? OK : UNKNOWN_ERROR;
998 }
999 
1000 } // namespace details
1001 
1002 } // namespace hardware
1003 } // namespace android
1004