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1 #define LOG_TAG "hidl_test_client"
2 
3 #include "FooCallback.h"
4 #include "hidl_test.h"
5 
6 #include <android-base/file.h>
7 #include <android-base/logging.h>
8 
9 #include <android/hidl/manager/1.0/IServiceNotification.h>
10 #include <android/hidl/manager/1.2/IServiceManager.h>
11 
12 #include <android/hidl/allocator/1.0/IAllocator.h>
13 #include <android/hidl/memory/1.0/IMemory.h>
14 #include <android/hidl/memory/token/1.0/IMemoryToken.h>
15 #include <android/hidl/token/1.0/ITokenManager.h>
16 
17 #include <android/hardware/tests/bar/1.0/BnHwBar.h>
18 #include <android/hardware/tests/bar/1.0/BpHwBar.h>
19 #include <android/hardware/tests/bar/1.0/IBar.h>
20 #include <android/hardware/tests/bar/1.0/IComplicated.h>
21 #include <android/hardware/tests/bar/1.0/IImportRules.h>
22 #include <android/hardware/tests/baz/1.0/IBaz.h>
23 #include <android/hardware/tests/expression/1.0/IExpression.h>
24 #include <android/hardware/tests/foo/1.0/BnHwSimple.h>
25 #include <android/hardware/tests/foo/1.0/BpHwSimple.h>
26 #include <android/hardware/tests/foo/1.0/BsSimple.h>
27 #include <android/hardware/tests/foo/1.0/IFoo.h>
28 #include <android/hardware/tests/hash/1.0/IHash.h>
29 #include <android/hardware/tests/inheritance/1.0/IChild.h>
30 #include <android/hardware/tests/inheritance/1.0/IFetcher.h>
31 #include <android/hardware/tests/inheritance/1.0/IGrandparent.h>
32 #include <android/hardware/tests/inheritance/1.0/IParent.h>
33 #include <android/hardware/tests/memory/1.0/IMemoryTest.h>
34 #include <android/hardware/tests/multithread/1.0/IMultithread.h>
35 #include <android/hardware/tests/pointer/1.0/IGraph.h>
36 #include <android/hardware/tests/pointer/1.0/IPointer.h>
37 #include <android/hardware/tests/safeunion/1.0/IOtherInterface.h>
38 #include <android/hardware/tests/safeunion/1.0/ISafeUnion.h>
39 #include <android/hardware/tests/safeunion/cpp/1.0/ICppSafeUnion.h>
40 #include <android/hardware/tests/trie/1.0/ITrie.h>
41 
42 #include <gtest/gtest.h>
43 #if GTEST_IS_THREADSAFE
44 #include <sys/types.h>
45 #include <sys/wait.h>
46 #include <signal.h>
47 #include <errno.h>
48 #include <pthread.h>
49 #else
50 #error "GTest did not detect pthread library."
51 #endif
52 
53 #include <getopt.h>
54 #include <inttypes.h>
55 #include <algorithm>
56 #include <condition_variable>
57 #include <fstream>
58 #include <future>
59 #include <limits>
60 #include <mutex>
61 #include <random>
62 #include <set>
63 #include <sstream>
64 #include <sys/stat.h>
65 #include <thread>
66 #include <type_traits>
67 #include <unordered_set>
68 #include <utility>
69 #include <vector>
70 
71 #include <hidl-test/FooHelper.h>
72 #include <hidl-test/PointerHelper.h>
73 #include <hidl-util/FQName.h>
74 
75 #include <hidl/ServiceManagement.h>
76 #include <hidl/Status.h>
77 #include <hidlmemory/HidlMemoryToken.h>
78 #include <hidlmemory/mapping.h>
79 
80 #include <utils/Condition.h>
81 #include <utils/Timers.h>
82 
83 #define EXPECT_OK(__ret__) EXPECT_TRUE(isOk(__ret__))
84 #define EXPECT_FAIL(__ret__) EXPECT_FALSE(isOk(__ret__))
85 #define EXPECT_ARRAYEQ(__a1__, __a2__, __size__) EXPECT_TRUE(isArrayEqual(__a1__, __a2__, __size__))
86 
87 // TODO uncomment this when kernel is patched with pointer changes.
88 //#define HIDL_RUN_POINTER_TESTS 1
89 
90 // forward declarations.
91 class HidlEnvironment;
92 
93 // static storage
94 enum TestMode {
95     BINDERIZED,
96     PASSTHROUGH
97 };
98 
99 static HidlEnvironment *gHidlEnvironment = nullptr;
100 
101 using ::android::Condition;
102 using ::android::DELAY_NS;
103 using ::android::DELAY_S;
104 using ::android::FQName;
105 using ::android::MultiDimensionalToString;
106 using ::android::Mutex;
107 using ::android::ONEWAY_TOLERANCE_NS;
108 using ::android::sp;
109 using ::android::to_string;
110 using ::android::TOLERANCE_NS;
111 using ::android::wp;
112 using ::android::hardware::GrantorDescriptor;
113 using ::android::hardware::hidl_array;
114 using ::android::hardware::hidl_death_recipient;
115 using ::android::hardware::hidl_handle;
116 using ::android::hardware::hidl_memory;
117 using ::android::hardware::hidl_string;
118 using ::android::hardware::hidl_vec;
119 using ::android::hardware::HidlMemory;
120 using ::android::hardware::MQDescriptor;
121 using ::android::hardware::MQFlavor;
122 using ::android::hardware::Return;
123 using ::android::hardware::Void;
124 using ::android::hardware::tests::bar::V1_0::IBar;
125 using ::android::hardware::tests::bar::V1_0::IComplicated;
126 using ::android::hardware::tests::baz::V1_0::IBaz;
127 using ::android::hardware::tests::expression::V1_0::IExpression;
128 using ::android::hardware::tests::foo::V1_0::Abc;
129 using ::android::hardware::tests::foo::V1_0::IFoo;
130 using ::android::hardware::tests::foo::V1_0::IFooCallback;
131 using ::android::hardware::tests::foo::V1_0::ISimple;
132 using ::android::hardware::tests::foo::V1_0::implementation::FooCallback;
133 using ::android::hardware::tests::hash::V1_0::IHash;
134 using ::android::hardware::tests::inheritance::V1_0::IChild;
135 using ::android::hardware::tests::inheritance::V1_0::IFetcher;
136 using ::android::hardware::tests::inheritance::V1_0::IGrandparent;
137 using ::android::hardware::tests::inheritance::V1_0::IParent;
138 using ::android::hardware::tests::memory::V1_0::IMemoryTest;
139 using ::android::hardware::tests::multithread::V1_0::IMultithread;
140 using ::android::hardware::tests::pointer::V1_0::IGraph;
141 using ::android::hardware::tests::pointer::V1_0::IPointer;
142 using ::android::hardware::tests::safeunion::cpp::V1_0::ICppSafeUnion;
143 using ::android::hardware::tests::safeunion::V1_0::IOtherInterface;
144 using ::android::hardware::tests::safeunion::V1_0::ISafeUnion;
145 using ::android::hardware::tests::trie::V1_0::ITrie;
146 using ::android::hardware::tests::trie::V1_0::TrieNode;
147 using ::android::hidl::allocator::V1_0::IAllocator;
148 using ::android::hidl::base::V1_0::IBase;
149 using ::android::hidl::manager::V1_0::IServiceNotification;
150 using ::android::hidl::manager::V1_2::IServiceManager;
151 using ::android::hidl::memory::block::V1_0::MemoryBlock;
152 using ::android::hidl::memory::token::V1_0::IMemoryToken;
153 using ::android::hidl::memory::V1_0::IMemory;
154 using ::android::hidl::token::V1_0::ITokenManager;
155 using std::to_string;
156 
157 using HandleTypeSafeUnion = ISafeUnion::HandleTypeSafeUnion;
158 using InterfaceTypeSafeUnion = ISafeUnion::InterfaceTypeSafeUnion;
159 using LargeSafeUnion = ISafeUnion::LargeSafeUnion;
160 using SmallSafeUnion = ISafeUnion::SmallSafeUnion;
161 
162 template <typename T>
163 using hidl_enum_range = ::android::hardware::hidl_enum_range<T>;
164 
165 template <typename T>
isOk(const::android::hardware::Return<T> & ret)166 static inline ::testing::AssertionResult isOk(const ::android::hardware::Return<T> &ret) {
167     return ret.isOk()
168         ? (::testing::AssertionSuccess() << ret.description())
169         : (::testing::AssertionFailure() << ret.description());
170 }
171 
172 template<typename T, typename S>
isArrayEqual(const T arr1,const S arr2,size_t size)173 static inline bool isArrayEqual(const T arr1, const S arr2, size_t size) {
174     for(size_t i = 0; i < size; i++)
175         if(arr1[i] != arr2[i])
176             return false;
177     return true;
178 }
179 
180 template<typename T>
to_string(std::set<T> set)181 std::string to_string(std::set<T> set) {
182     std::stringstream ss;
183     ss << "{";
184 
185     bool first = true;
186     for (const T &item : set) {
187         if (first) {
188             first = false;
189         } else {
190             ss << ", ";
191         }
192 
193         ss << to_string(item);
194     }
195 
196     ss << "}";
197 
198     return ss.str();
199 }
200 
201 // does not check for fd equality
checkNativeHandlesDataEquality(const native_handle_t * reference,const native_handle_t * result)202 static void checkNativeHandlesDataEquality(const native_handle_t* reference,
203                                            const native_handle_t* result) {
204     if (reference == nullptr || result == nullptr) {
205         EXPECT_EQ(reference, result);
206         return;
207     }
208 
209     ASSERT_EQ(reference->version, result->version);
210     EXPECT_EQ(reference->numFds, result->numFds);
211     EXPECT_EQ(reference->numInts, result->numInts);
212 
213     int offset = reference->numFds;
214     int numInts = reference->numInts;
215     EXPECT_ARRAYEQ(&(reference->data[offset]), &(result->data[offset]), numInts);
216 }
217 
218 template <typename T, MQFlavor flavor>
checkMQDescriptorEquality(const MQDescriptor<T,flavor> & expected,const MQDescriptor<T,flavor> & actual)219 static void checkMQDescriptorEquality(const MQDescriptor<T, flavor>& expected,
220                                       const MQDescriptor<T, flavor>& actual) {
221     checkNativeHandlesDataEquality(expected.handle(), actual.handle());
222     EXPECT_EQ(expected.grantors().size(), actual.grantors().size());
223     EXPECT_EQ(expected.getQuantum(), actual.getQuantum());
224     EXPECT_EQ(expected.getFlags(), actual.getFlags());
225 }
226 
227 struct Simple : public ISimple {
SimpleSimple228     Simple(int32_t cookie)
229         : mCookie(cookie) {
230     }
231 
getCookieSimple232     Return<int32_t> getCookie() override {
233         return mCookie;
234     }
235 
customVecIntSimple236     Return<void> customVecInt(customVecInt_cb _cb) override {
237         _cb(hidl_vec<int32_t>());
238         return Void();
239     }
240 
customVecStrSimple241     Return<void> customVecStr(customVecStr_cb _cb) override {
242         hidl_vec<hidl_string> vec;
243         vec.resize(2);
244         _cb(vec);
245         return Void();
246     }
247 
mystrSimple248     Return<void> mystr(mystr_cb _cb) override {
249         _cb(hidl_string());
250         return Void();
251     }
252 
myhandleSimple253     Return<void> myhandle(myhandle_cb _cb) override {
254         auto h = native_handle_create(0, 1);
255         _cb(h);
256         native_handle_delete(h);
257         return Void();
258     }
259 
260 private:
261     int32_t mCookie;
262 };
263 
264 struct SimpleParent : public IParent {
doGrandparentSimpleParent265     Return<void> doGrandparent() override {
266         return Void();
267     }
doParentSimpleParent268     Return<void> doParent() override {
269         return Void();
270     }
271 };
272 
273 struct SimpleChild : public IChild {
doGrandparentSimpleChild274     Return<void> doGrandparent() override {
275         return Void();
276     }
doParentSimpleChild277     Return <void> doParent() override {
278         return Void();
279     }
doChildSimpleChild280     Return <void> doChild() override {
281         return Void();
282     }
283 };
284 
285 struct Complicated : public IComplicated {
ComplicatedComplicated286     Complicated(int32_t cookie)
287         : mCookie(cookie) {
288     }
289 
getCookieComplicated290     Return<int32_t> getCookie() override {
291         return mCookie;
292     }
293 
customVecIntComplicated294     Return<void> customVecInt(customVecInt_cb _cb) override {
295         _cb(hidl_vec<int32_t>());
296         return Void();
297     }
customVecStrComplicated298     Return<void> customVecStr(customVecStr_cb _cb) override {
299         hidl_vec<hidl_string> vec;
300         vec.resize(2);
301         _cb(vec);
302         return Void();
303     }
304 
mystrComplicated305     Return<void> mystr(mystr_cb _cb) override {
306         _cb(hidl_string());
307         return Void();
308     }
309 
myhandleComplicated310     Return<void> myhandle(myhandle_cb _cb) override {
311         auto h = native_handle_create(0, 1);
312         _cb(h);
313         native_handle_delete(h);
314         return Void();
315     }
316 
317 private:
318     int32_t mCookie;
319 };
320 
321 struct OtherInterface : public IOtherInterface {
concatTwoStringsOtherInterface322     Return<void> concatTwoStrings(const hidl_string& a, const hidl_string& b,
323                                   concatTwoStrings_cb _hidl_cb) override {
324         hidl_string result = std::string(a) + std::string(b);
325         _hidl_cb(result);
326 
327         return Void();
328     }
329 };
330 
331 struct ServiceNotification : public IServiceNotification {
332     std::mutex mutex;
333     std::condition_variable condition;
334 
onRegistrationServiceNotification335     Return<void> onRegistration(const hidl_string &fqName,
336                                 const hidl_string &name,
337                                 bool preexisting) override {
338         if (preexisting) {
339             // not interested in things registered from previous runs of hidl_test
340             return Void();
341         }
342 
343         std::unique_lock<std::mutex> lock(mutex);
344 
345         mRegistered.push_back(std::string(fqName.c_str()) + "/" + name.c_str());
346 
347         lock.unlock();
348         condition.notify_one();
349 
350         return Void();
351     }
352 
getRegistrationsServiceNotification353     const std::vector<std::string> &getRegistrations() const {
354         return mRegistered;
355     }
356 
357 private:
358     std::vector<std::string> mRegistered{};
359 };
360 
361 class HidlEnvironment : public ::testing::Environment {
362 public:
363     sp<IServiceManager> manager;
364     sp<ITokenManager> tokenManager;
365     sp<IAllocator> ashmemAllocator;
366     sp<IMemoryTest> memoryTest;
367     sp<IFetcher> fetcher;
368     sp<IFoo> foo;
369     sp<IBaz> baz;
370     sp<IBaz> dyingBaz;
371     sp<IBar> bar;
372     sp<IGraph> graphInterface;
373     sp<IPointer> pointerInterface;
374     sp<IPointer> validationPointerInterface;
375     sp<IMultithread> multithreadInterface;
376     sp<ITrie> trieInterface;
377     sp<ICppSafeUnion> cppSafeunionInterface;
378     sp<ISafeUnion> safeunionInterface;
379     TestMode mode;
380     bool enableDelayMeasurementTests;
HidlEnvironment(TestMode mode,bool enableDelayMeasurementTests)381     HidlEnvironment(TestMode mode, bool enableDelayMeasurementTests) :
382         mode(mode), enableDelayMeasurementTests(enableDelayMeasurementTests) {};
383 
getServices()384     void getServices() {
385         manager = IServiceManager::getService();
386 
387         // alternatively:
388         // manager = defaultServiceManager()
389 
390         ASSERT_NE(manager, nullptr);
391         ASSERT_TRUE(manager->isRemote()); // manager is always remote
392 
393         tokenManager = ITokenManager::getService();
394         ASSERT_NE(tokenManager, nullptr);
395         ASSERT_TRUE(tokenManager->isRemote()); // tokenManager is always remote
396 
397         ashmemAllocator = IAllocator::getService("ashmem");
398         ASSERT_NE(ashmemAllocator, nullptr);
399         ASSERT_TRUE(ashmemAllocator->isRemote()); // allocator is always remote
400 
401         // getStub is true if we are in passthrough mode to skip checking
402         // binderized server, false for binderized mode.
403 
404         memoryTest = IMemoryTest::getService("memory", mode == PASSTHROUGH /* getStub */);
405         ASSERT_NE(memoryTest, nullptr);
406         ASSERT_EQ(memoryTest->isRemote(), mode == BINDERIZED);
407 
408         fetcher = IFetcher::getService("fetcher", mode == PASSTHROUGH /* getStub */);
409         ASSERT_NE(fetcher, nullptr);
410         ASSERT_EQ(fetcher->isRemote(), mode == BINDERIZED);
411 
412         foo = IFoo::getService("foo", mode == PASSTHROUGH /* getStub */);
413         ASSERT_NE(foo, nullptr);
414         ASSERT_EQ(foo->isRemote(), mode == BINDERIZED);
415 
416         baz = IBaz::getService("baz", mode == PASSTHROUGH /* getStub */);
417         ASSERT_NE(baz, nullptr);
418         ASSERT_EQ(baz->isRemote(), mode == BINDERIZED);
419 
420         dyingBaz = IBaz::getService("dyingBaz", mode == PASSTHROUGH /* getStub */);
421         ASSERT_NE(dyingBaz, nullptr);
422         ASSERT_EQ(dyingBaz->isRemote(), mode == BINDERIZED);
423 
424         bar = IBar::getService("foo", mode == PASSTHROUGH /* getStub */);
425         ASSERT_NE(bar, nullptr);
426         ASSERT_EQ(bar->isRemote(), mode == BINDERIZED);
427 
428         graphInterface = IGraph::getService("graph", mode == PASSTHROUGH /* getStub */);
429         ASSERT_NE(graphInterface, nullptr);
430         ASSERT_EQ(graphInterface->isRemote(), mode == BINDERIZED);
431 
432         pointerInterface = IPointer::getService("pointer", mode == PASSTHROUGH /* getStub */);
433         ASSERT_NE(pointerInterface, nullptr);
434         ASSERT_EQ(pointerInterface->isRemote(), mode == BINDERIZED);
435 
436         // use passthrough mode as the validation object.
437         validationPointerInterface = IPointer::getService("pointer", true /* getStub */);
438         ASSERT_NE(validationPointerInterface, nullptr);
439 
440         multithreadInterface =
441             IMultithread::getService("multithread", mode == PASSTHROUGH /* getStub */);
442         ASSERT_NE(multithreadInterface, nullptr);
443         ASSERT_EQ(multithreadInterface->isRemote(), mode == BINDERIZED);
444 
445         trieInterface = ITrie::getService("trie", mode == PASSTHROUGH /* getStub */);
446         ASSERT_NE(trieInterface, nullptr);
447         ASSERT_EQ(trieInterface->isRemote(), mode == BINDERIZED);
448 
449         cppSafeunionInterface =
450             ICppSafeUnion::getService("default", mode == PASSTHROUGH /* getStub */);
451         ASSERT_NE(cppSafeunionInterface, nullptr);
452         ASSERT_EQ(cppSafeunionInterface->isRemote(), mode == BINDERIZED);
453 
454         safeunionInterface = ISafeUnion::getService("safeunion", mode == PASSTHROUGH /* getStub */);
455         ASSERT_NE(safeunionInterface, nullptr);
456         ASSERT_EQ(safeunionInterface->isRemote(), mode == BINDERIZED);
457     }
458 
SetUp()459     void SetUp() override {
460         ALOGI("Environment setup beginning...");
461         getServices();
462         ALOGI("Environment setup complete.");
463     }
464 };
465 
466 class HidlTest : public ::testing::Test {
467 public:
468     sp<IServiceManager> manager;
469     sp<ITokenManager> tokenManager;
470     sp<IAllocator> ashmemAllocator;
471     sp<IMemoryTest> memoryTest;
472     sp<IFetcher> fetcher;
473     sp<IFoo> foo;
474     sp<IBaz> baz;
475     sp<IBaz> dyingBaz;
476     sp<IBar> bar;
477     sp<IGraph> graphInterface;
478     sp<IPointer> pointerInterface;
479     sp<IPointer> validationPointerInterface;
480     sp<ITrie> trieInterface;
481     sp<ICppSafeUnion> cppSafeunionInterface;
482     sp<ISafeUnion> safeunionInterface;
483     TestMode mode = TestMode::PASSTHROUGH;
484 
SetUp()485     void SetUp() override {
486         ALOGI("Test setup beginning...");
487         manager = gHidlEnvironment->manager;
488         tokenManager = gHidlEnvironment->tokenManager;
489         ashmemAllocator = gHidlEnvironment->ashmemAllocator;
490         memoryTest = gHidlEnvironment->memoryTest;
491         fetcher = gHidlEnvironment->fetcher;
492         foo = gHidlEnvironment->foo;
493         baz = gHidlEnvironment->baz;
494         dyingBaz = gHidlEnvironment->dyingBaz;
495         bar = gHidlEnvironment->bar;
496         graphInterface = gHidlEnvironment->graphInterface;
497         pointerInterface = gHidlEnvironment->pointerInterface;
498         validationPointerInterface = gHidlEnvironment->validationPointerInterface;
499         trieInterface = gHidlEnvironment->trieInterface;
500         cppSafeunionInterface = gHidlEnvironment->cppSafeunionInterface;
501         safeunionInterface = gHidlEnvironment->safeunionInterface;
502         mode = gHidlEnvironment->mode;
503         ALOGI("Test setup complete");
504     }
505 };
506 
TEST_F(HidlTest,ToStringTest)507 TEST_F(HidlTest, ToStringTest) {
508     using namespace android::hardware;
509 
510     LOG(INFO) << toString(IFoo::Everything{});
511 
512     // Note that handles don't need to be deleted because MQDescriptor takes ownership
513     // and deletes them when destructed.
514     auto handle = native_handle_create(0, 1);
515     auto handle2 = native_handle_create(0, 1);
516     handle->data[0] = 5;
517     handle2->data[0] = 6;
518     IFoo::Everything e{
519         .u = {.number = 3},
520         .number = 10,
521         .h = handle,
522         .descSync = {std::vector<GrantorDescriptor>(), handle, 5},
523         .descUnsync = {std::vector<GrantorDescriptor>(), handle2, 6},
524         .mem = hidl_memory("mymem", handle, 5),
525         .p = reinterpret_cast<void*>(0x6),
526         .vs = {"hello", "world"},
527         .multidimArray = hidl_vec<hidl_string>{"hello", "great", "awesome", "nice"}.data(),
528         .sArray = hidl_vec<hidl_string>{"awesome", "thanks", "you're welcome"}.data(),
529         .anotherStruct = {.first = "first", .last = "last"},
530         .bf = IFoo::BitField::V0 | IFoo::BitField::V2};
531     LOG(INFO) << toString(e);
532     LOG(INFO) << toString(foo);
533     // toString is for debugging purposes only; no good EXPECT
534     // statement can be written here.
535 }
536 
TEST_F(HidlTest,ConstantExpressionTest)537 TEST_F(HidlTest, ConstantExpressionTest) {
538     // these tests are written so that these always evaluate to one
539 
540     for (const auto value : hidl_enum_range<IExpression::OperatorSanityCheck>()) {
541         EXPECT_EQ(1, static_cast<int32_t>(value));
542     }
543     for (const auto value : hidl_enum_range<IExpression::EnumTagTest>()) {
544         EXPECT_EQ(1, static_cast<int32_t>(value));
545     }
546 }
547 
TEST_F(HidlTest,PassthroughLookupTest)548 TEST_F(HidlTest, PassthroughLookupTest) {
549     // IFoo is special because it returns an interface no matter
550     //   what instance name is requested. In general, this is BAD!
551     EXPECT_NE(nullptr, IFoo::getService("", true /* getStub */).get());
552     EXPECT_NE(nullptr, IFoo::getService("a", true /* getStub */).get());
553     EXPECT_NE(nullptr, IFoo::getService("asdf", true /* getStub */).get());
554     EXPECT_NE(nullptr, IFoo::getService("::::::::", true /* getStub */).get());
555     EXPECT_NE(nullptr, IFoo::getService("/////", true /* getStub */).get());
556     EXPECT_NE(nullptr, IFoo::getService("\n", true /* getStub */).get());
557 }
558 
TEST_F(HidlTest,EnumIteratorTest)559 TEST_F(HidlTest, EnumIteratorTest) {
560     using Empty = ::android::hardware::tests::foo::V1_0::EnumIterators::Empty;
561     using Grandchild = ::android::hardware::tests::foo::V1_0::EnumIterators::Grandchild;
562     using SkipsValues = ::android::hardware::tests::foo::V1_0::EnumIterators::SkipsValues;
563     using MultipleValues = ::android::hardware::tests::foo::V1_0::EnumIterators::MultipleValues;
564 
565     for (const auto value : hidl_enum_range<Empty>()) {
566         (void)value;
567         ADD_FAILURE() << "Empty range should not iterate";
568     }
569 
570     EXPECT_EQ(hidl_enum_range<Grandchild>().begin(), hidl_enum_range<Grandchild>().cbegin());
571     EXPECT_EQ(hidl_enum_range<Grandchild>().end(), hidl_enum_range<Grandchild>().cend());
572     EXPECT_EQ(hidl_enum_range<Grandchild>().rbegin(), hidl_enum_range<Grandchild>().crbegin());
573     EXPECT_EQ(hidl_enum_range<Grandchild>().rend(), hidl_enum_range<Grandchild>().crend());
574 
575     auto it1 = hidl_enum_range<Grandchild>().begin();
576     EXPECT_EQ(Grandchild::A, *it1++);
577     EXPECT_EQ(Grandchild::B, *it1++);
578     EXPECT_EQ(hidl_enum_range<Grandchild>().end(), it1);
579     auto it1r = hidl_enum_range<Grandchild>().rbegin();
580     EXPECT_EQ(Grandchild::B, *it1r++);
581     EXPECT_EQ(Grandchild::A, *it1r++);
582     EXPECT_EQ(hidl_enum_range<Grandchild>().rend(), it1r);
583 
584     auto it2 = hidl_enum_range<SkipsValues>().begin();
585     EXPECT_EQ(SkipsValues::A, *it2++);
586     EXPECT_EQ(SkipsValues::B, *it2++);
587     EXPECT_EQ(SkipsValues::C, *it2++);
588     EXPECT_EQ(SkipsValues::D, *it2++);
589     EXPECT_EQ(SkipsValues::E, *it2++);
590     EXPECT_EQ(hidl_enum_range<SkipsValues>().end(), it2);
591     auto it2r = hidl_enum_range<SkipsValues>().rbegin();
592     EXPECT_EQ(SkipsValues::E, *it2r++);
593     EXPECT_EQ(SkipsValues::D, *it2r++);
594     EXPECT_EQ(SkipsValues::C, *it2r++);
595     EXPECT_EQ(SkipsValues::B, *it2r++);
596     EXPECT_EQ(SkipsValues::A, *it2r++);
597     EXPECT_EQ(hidl_enum_range<SkipsValues>().rend(), it2r);
598 
599     auto it3 = hidl_enum_range<MultipleValues>().begin();
600     EXPECT_EQ(MultipleValues::A, *it3++);
601     EXPECT_EQ(MultipleValues::B, *it3++);
602     EXPECT_EQ(MultipleValues::C, *it3++);
603     EXPECT_EQ(MultipleValues::D, *it3++);
604     EXPECT_EQ(hidl_enum_range<MultipleValues>().end(), it3);
605     auto it3r = hidl_enum_range<MultipleValues>().rbegin();
606     EXPECT_EQ(MultipleValues::D, *it3r++);
607     EXPECT_EQ(MultipleValues::C, *it3r++);
608     EXPECT_EQ(MultipleValues::B, *it3r++);
609     EXPECT_EQ(MultipleValues::A, *it3r++);
610     EXPECT_EQ(hidl_enum_range<MultipleValues>().rend(), it3r);
611 }
612 
TEST_F(HidlTest,EnumToStringTest)613 TEST_F(HidlTest, EnumToStringTest) {
614     using namespace std::string_literals;
615     using ::android::hardware::tests::foo::V1_0::toString;
616     // toString for enum
617     EXPECT_EQ(toString(IFoo::BitField::V0), "V0"s);
618     EXPECT_EQ(toString(static_cast<IFoo::BitField>(0)), "0"s)
619             << "Invalid enum isn't stringified correctly.";
620     EXPECT_EQ(toString(static_cast<IFoo::BitField>(IFoo::BitField::V0 | IFoo::BitField::V2)), "0x5"s)
621             << "Invalid enum isn't stringified correctly.";
622     // dump bitfields
623     EXPECT_EQ(toString<IFoo::BitField>((uint8_t)0 | IFoo::BitField::V0), "V0 (0x1)"s);
624     EXPECT_EQ(toString<IFoo::BitField>((uint8_t)0 | IFoo::BitField::V0 | IFoo::BitField::V2),
625               "V0 | V2 (0x5)"s);
626     EXPECT_EQ(toString<IFoo::BitField>((uint8_t)0xF), "V0 | V1 | V2 | V3 | VALL (0xf)"s);
627     EXPECT_EQ(toString<IFoo::BitField>((uint8_t)0xFF), "V0 | V1 | V2 | V3 | VALL | 0xf0 (0xff)"s);
628 
629     // inheritance
630     using Parent = ::android::hardware::tests::foo::V1_0::EnumIterators::Parent;
631     using EmptyChild = ::android::hardware::tests::foo::V1_0::EnumIterators::EmptyChild;
632     using Grandchild = ::android::hardware::tests::foo::V1_0::EnumIterators::Grandchild;
633     EXPECT_EQ(toString(Parent::A), "A"s);
634     EXPECT_EQ(toString(EmptyChild::A), "A"s);
635     EXPECT_EQ(toString(Grandchild::A), "A"s);
636     EXPECT_EQ(toString(Grandchild::B), "B"s);
637 }
638 
TEST_F(HidlTest,PingTest)639 TEST_F(HidlTest, PingTest) {
640     EXPECT_OK(manager->ping());
641 }
642 
TEST_F(HidlTest,TryGetServiceTest)643 TEST_F(HidlTest, TryGetServiceTest) {
644     sp<IServiceManager> dne = IServiceManager::tryGetService("boss");
645     ASSERT_EQ(dne, nullptr);
646 
647     sp<IServiceManager> manager = IServiceManager::tryGetService();
648     ASSERT_NE(manager, nullptr);
649 }
650 
TEST_F(HidlTest,ServiceListTest)651 TEST_F(HidlTest, ServiceListTest) {
652     static const std::set<std::string> binderizedSet = {
653         "android.hardware.tests.pointer@1.0::IPointer/pointer",
654         "android.hardware.tests.bar@1.0::IBar/foo",
655         "android.hardware.tests.inheritance@1.0::IFetcher/fetcher",
656         "android.hardware.tests.inheritance@1.0::IParent/parent",
657         "android.hardware.tests.inheritance@1.0::IParent/child",
658         "android.hardware.tests.inheritance@1.0::IChild/child",
659         "android.hardware.tests.pointer@1.0::IGraph/graph",
660         "android.hardware.tests.inheritance@1.0::IGrandparent/child",
661         "android.hardware.tests.foo@1.0::IFoo/foo",
662         "android.hidl.manager@1.0::IServiceManager/default",
663         "android.hidl.manager@1.1::IServiceManager/default",
664     };
665 
666     static const std::set<std::string> passthroughSet = {
667         "android.hidl.manager@1.0::IServiceManager/default",
668         "android.hidl.manager@1.1::IServiceManager/default",
669     };
670 
671     std::set<std::string> activeSet;
672 
673     switch(mode) {
674         case BINDERIZED: {
675             activeSet = binderizedSet;
676         } break;
677 
678         case PASSTHROUGH: {
679             activeSet = passthroughSet;
680         } break;
681         default:
682             EXPECT_TRUE(false) << "unrecognized mode";
683     }
684 
685     EXPECT_OK(manager->list([&activeSet](const hidl_vec<hidl_string> &registered){
686         std::set<std::string> registeredSet;
687 
688         for (size_t i = 0; i < registered.size(); i++) {
689             registeredSet.insert(registered[i]);
690         }
691 
692         std::set<std::string> difference;
693         std::set_difference(activeSet.begin(), activeSet.end(),
694                             registeredSet.begin(), registeredSet.end(),
695                             std::inserter(difference, difference.begin()));
696 
697         EXPECT_EQ(difference.size(), 0u) << "service(s) not registered " << to_string(difference);
698     }));
699 }
700 
TEST_F(HidlTest,ServiceListByInterfaceTest)701 TEST_F(HidlTest, ServiceListByInterfaceTest) {
702     if (mode != BINDERIZED) {
703         // passthrough service manager does not know about services
704         return;
705     }
706 
707     EXPECT_OK(
708         manager->listByInterface(IParent::descriptor, [](const hidl_vec<hidl_string>& registered) {
709             std::set<std::string> registeredSet;
710 
711             for (size_t i = 0; i < registered.size(); i++) {
712                 registeredSet.insert(registered[i]);
713             }
714 
715             std::set<std::string> activeSet = {"parent", "child"};
716             std::set<std::string> difference;
717             std::set_difference(activeSet.begin(), activeSet.end(), registeredSet.begin(),
718                                 registeredSet.end(), std::inserter(difference, difference.begin()));
719 
720             EXPECT_EQ(difference.size(), 0u)
721                 << "service(s) not registered " << to_string(difference);
722         }));
723 }
724 
TEST_F(HidlTest,ServiceListManifestByInterfaceTest)725 TEST_F(HidlTest, ServiceListManifestByInterfaceTest) {
726     // system service
727     EXPECT_OK(manager->listManifestByInterface(IServiceManager::descriptor,
728                                                [](const hidl_vec<hidl_string>& registered) {
729                                                    ASSERT_EQ(1, registered.size());
730                                                    EXPECT_EQ("default", registered[0]);
731                                                }));
732     // vendor service (this is required on all devices)
733     EXPECT_OK(
734         manager->listManifestByInterface("android.hardware.configstore@1.0::ISurfaceFlingerConfigs",
735                                          [](const hidl_vec<hidl_string>& registered) {
736                                              ASSERT_EQ(1, registered.size());
737                                              EXPECT_EQ("default", registered[0]);
738                                          }));
739     // test service that will never be in a manifest
740     EXPECT_OK(manager->listManifestByInterface(
741         IParent::descriptor,
742         [](const hidl_vec<hidl_string>& registered) { ASSERT_EQ(0, registered.size()); }));
743     // invalid service
744     EXPECT_OK(manager->listManifestByInterface(
745         "!(*#&$ASDASLKDJasdlkjfads",
746         [](const hidl_vec<hidl_string>& registered) { ASSERT_EQ(0, registered.size()); }));
747 }
748 
TEST_F(HidlTest,SubInterfaceServiceRegistrationTest)749 TEST_F(HidlTest, SubInterfaceServiceRegistrationTest) {
750     using ::android::hardware::interfacesEqual;
751 
752     const std::string kInstanceName = "no-matter-what-it-is";
753     const std::string kOtherName = "something-different";
754 
755     sp<IChild> child = new SimpleChild();
756     sp<IParent> parent = new SimpleParent();
757 
758     EXPECT_EQ(::android::OK, child->registerAsService(kInstanceName));
759     EXPECT_EQ(::android::OK, child->registerAsService(kOtherName));
760 
761     EXPECT_TRUE(interfacesEqual(child, IChild::getService(kInstanceName)));
762     EXPECT_TRUE(interfacesEqual(child, IParent::getService(kInstanceName)));
763 
764     EXPECT_EQ(::android::OK, parent->registerAsService(kInstanceName));
765 
766     // FALSE since passthrough HAL will return an instance
767     // since binderized instance is nullptr
768     EXPECT_FALSE(interfacesEqual(parent, IChild::getService(kInstanceName)));
769     EXPECT_TRUE(interfacesEqual(parent, IParent::getService(kInstanceName)));
770 
771     // other instance name is unchanged
772     EXPECT_TRUE(interfacesEqual(child, IChild::getService(kOtherName)));
773     EXPECT_TRUE(interfacesEqual(child, IParent::getService(kOtherName)));
774 }
775 
TEST_F(HidlTest,ServiceNotificationTest)776 TEST_F(HidlTest, ServiceNotificationTest) {
777     if (mode != BINDERIZED) {
778         // service notifications aren't supported in passthrough mode
779         return;
780     }
781 
782     ServiceNotification* notification = new ServiceNotification();
783 
784     std::string instanceName = "test-instance";
785     EXPECT_TRUE(IParent::registerForNotifications(instanceName, notification));
786 
787     EXPECT_EQ(::android::OK, (new SimpleChild())->registerAsService(instanceName));
788     EXPECT_EQ(::android::OK, (new SimpleParent())->registerAsService(instanceName));
789 
790     std::unique_lock<std::mutex> lock(notification->mutex);
791 
792     notification->condition.wait_for(lock, std::chrono::milliseconds(500), [&notification]() {
793         return notification->getRegistrations().size() >= 2;
794     });
795 
796     std::vector<std::string> registrations = notification->getRegistrations();
797 
798     EXPECT_EQ(registrations.size(), 2u);
799 
800     EXPECT_EQ(to_string(registrations.data(), registrations.size()),
801               std::string("['") + IParent::descriptor + "/" + instanceName + "', '" +
802                   IParent::descriptor + "/" + instanceName + "']");
803 }
804 
TEST_F(HidlTest,ServiceUnregisterTest)805 TEST_F(HidlTest, ServiceUnregisterTest) {
806     const std::string instance = "some-instance-name";
807 
808     sp<ServiceNotification> sNotification = new ServiceNotification();
809 
810     // unregister all
811     EXPECT_TRUE(IParent::registerForNotifications(instance, sNotification));
812     EXPECT_TRUE(manager->unregisterForNotifications("", "", sNotification));
813 
814     // unregister all with instance name
815     EXPECT_TRUE(IParent::registerForNotifications(instance, sNotification));
816     EXPECT_TRUE(manager->unregisterForNotifications(IParent::descriptor, "", sNotification));
817 
818     // unregister package listener
819     EXPECT_TRUE(IParent::registerForNotifications("", sNotification));
820     EXPECT_TRUE(manager->unregisterForNotifications(IParent::descriptor, "", sNotification));
821 
822     // unregister listener for specific service and name
823     EXPECT_TRUE(IParent::registerForNotifications(instance, sNotification));
824     EXPECT_TRUE(manager->unregisterForNotifications(IParent::descriptor, instance, sNotification));
825 
826     EXPECT_FALSE(manager->unregisterForNotifications("", "", sNotification));
827 
828     // TODO(b/32837397): remote destructor is lazy
829     // wp<ServiceNotification> wNotification = sNotification;
830     // sNotification = nullptr;
831     // EXPECT_EQ(nullptr, wNotification.promote().get());
832 }
833 
TEST_F(HidlTest,ServiceAllNotificationTest)834 TEST_F(HidlTest, ServiceAllNotificationTest) {
835     ServiceNotification* notification = new ServiceNotification();
836 
837     std::string instanceOne = "test-instance-one";
838     std::string instanceTwo = "test-instance-two";
839     EXPECT_TRUE(ISimple::registerForNotifications("", notification));
840 
841     Simple* instanceA = new Simple(1);
842     EXPECT_EQ(::android::OK, instanceA->registerAsService(instanceOne));
843     Simple* instanceB = new Simple(2);
844     EXPECT_EQ(::android::OK, instanceB->registerAsService(instanceTwo));
845 
846     std::unique_lock<std::mutex> lock(notification->mutex);
847 
848     notification->condition.wait_for(lock, std::chrono::milliseconds(500), [&notification]() {
849         return notification->getRegistrations().size() >= 2;
850     });
851 
852     std::vector<std::string> registrations = notification->getRegistrations();
853     std::sort(registrations.begin(), registrations.end());
854 
855     EXPECT_EQ(registrations.size(), 2u);
856 
857     std::string descriptor = ISimple::descriptor;
858 
859     EXPECT_EQ(
860         to_string(registrations.data(), registrations.size()),
861         "['" + descriptor + "/" + instanceOne + "', '" + descriptor + "/" + instanceTwo + "']");
862 }
863 
TEST_F(HidlTest,DebugDumpTest)864 TEST_F(HidlTest, DebugDumpTest) {
865     EXPECT_OK(manager->debugDump([](const auto& list) {
866         for (const auto& debugInfo : list) {
867             FQName name;
868             EXPECT_TRUE(FQName::parse(debugInfo.interfaceName, &name)) << debugInfo.interfaceName;
869             EXPECT_TRUE(debugInfo.instanceName.size() > 0);
870         }
871     }));
872 }
873 
TEST_F(HidlTest,InterfacesEqualTest)874 TEST_F(HidlTest, InterfacesEqualTest) {
875     using android::hardware::interfacesEqual;
876 
877     sp<IParent> service1 = IParent::getService("child", mode == PASSTHROUGH /* getStub */);
878     sp<IParent> service2 = service1;
879 
880     // Passthrough services are reinstantiated whenever getService is called.
881     if (mode == BINDERIZED) {
882         service2 = IParent::getService("child");
883     }
884 
885     EXPECT_NE(nullptr, service1.get());
886     EXPECT_NE(nullptr, service2.get());
887     EXPECT_TRUE(interfacesEqual(service1, service2));
888 
889     sp<IChild> child = IChild::castFrom(service1);
890     EXPECT_NE(nullptr, child.get());  // it is actually a child
891 
892     EXPECT_TRUE(interfacesEqual(service1, child));
893     EXPECT_TRUE(interfacesEqual(service2, child));
894 }
895 
TEST_F(HidlTest,TestToken)896 TEST_F(HidlTest, TestToken) {
897     using android::hardware::interfacesEqual;
898 
899     Return<void> ret = tokenManager->createToken(manager, [&] (const hidl_vec<uint8_t> &token) {
900         Return<sp<IBase>> retService = tokenManager->get(token);
901         EXPECT_OK(retService);
902         if (retService.isOk()) {
903             sp<IBase> service = retService;
904             EXPECT_NE(nullptr, service.get());
905             sp<IServiceManager> retManager = IServiceManager::castFrom(service);
906 
907             EXPECT_TRUE(interfacesEqual(manager, retManager));
908         }
909 
910         Return<bool> unregisterRet = tokenManager->unregister(token);
911 
912         EXPECT_OK(unregisterRet);
913         if (unregisterRet.isOk()) {
914             EXPECT_TRUE(unregisterRet);
915         }
916     });
917     EXPECT_OK(ret);
918 }
919 
TEST_F(HidlTest,TestSharedMemory)920 TEST_F(HidlTest, TestSharedMemory) {
921     const uint8_t kValue = 0xCA;
922     hidl_memory mem_copy;
923     EXPECT_OK(ashmemAllocator->allocate(1024, [&](bool success, const hidl_memory& mem) {
924         EXPECT_EQ(success, true);
925 
926         sp<IMemory> memory = mapMemory(mem);
927 
928         EXPECT_NE(memory, nullptr);
929 
930         uint8_t* data = static_cast<uint8_t*>(static_cast<void*>(memory->getPointer()));
931         EXPECT_NE(data, nullptr);
932 
933         EXPECT_EQ(memory->getSize(), mem.size());
934 
935         memory->update();
936         memset(data, 0, memory->getSize());
937         memory->commit();
938 
939         mem_copy = mem;
940         memoryTest->fillMemory(mem, kValue);
941 
942         memory->read();
943         for (size_t i = 0; i < mem.size(); i++) {
944             EXPECT_EQ(kValue, data[i]);
945         }
946         memory->commit();
947     }));
948 
949     // Test the memory persists after the call
950     sp<IMemory> memory = mapMemory(mem_copy);
951 
952     EXPECT_NE(memory, nullptr);
953 
954     uint8_t* data = static_cast<uint8_t*>(static_cast<void*>(memory->getPointer()));
955     EXPECT_NE(data, nullptr);
956 
957     memory->read();
958     for (size_t i = 0; i < mem_copy.size(); i++) {
959         EXPECT_EQ(kValue, data[i]);
960     }
961     memory->commit();
962 
963     hidl_memory mem_move(std::move(mem_copy));
964     ASSERT_EQ(nullptr, mem_copy.handle());
965     ASSERT_EQ(0UL, mem_copy.size());
966     ASSERT_EQ("", mem_copy.name());
967 
968     memory.clear();
969     memory = mapMemory(mem_move);
970 
971     EXPECT_NE(memory, nullptr);
972 
973     data = static_cast<uint8_t*>(static_cast<void*>(memory->getPointer()));
974     EXPECT_NE(data, nullptr);
975 
976     memory->read();
977     for (size_t i = 0; i < mem_move.size(); i++) {
978         EXPECT_EQ(kValue, data[i]);
979     }
980     memory->commit();
981 }
982 
TEST_F(HidlTest,BatchSharedMemory)983 TEST_F(HidlTest, BatchSharedMemory) {
984     const uint8_t kValue = 0xCA;
985     const uint64_t kBatchSize = 2;
986     hidl_vec<hidl_memory> batchCopy;
987 
988     EXPECT_OK(ashmemAllocator->batchAllocate(1024, kBatchSize,
989         [&](bool success, const hidl_vec<hidl_memory>& batch) {
990             ASSERT_TRUE(success);
991             EXPECT_EQ(kBatchSize, batch.size());
992 
993             for (uint64_t i = 0; i < batch.size(); i++) {
994                 sp<IMemory> memory = mapMemory(batch[i]);
995 
996                 EXPECT_NE(nullptr, memory.get());
997 
998                 uint8_t* data = static_cast<uint8_t*>(static_cast<void*>(memory->getPointer()));
999                 EXPECT_NE(nullptr, data);
1000 
1001                 EXPECT_EQ(memory->getSize(), batch[i].size());
1002 
1003                 memory->update();
1004                 memset(data, kValue, memory->getSize());
1005                 memory->commit();
1006             }
1007 
1008             batchCopy = batch;
1009         }));
1010 
1011     for (uint64_t i = 0; i < batchCopy.size(); i++) {
1012         // Test the memory persists after the call
1013         sp<IMemory> memory = mapMemory(batchCopy[i]);
1014 
1015         EXPECT_NE(memory, nullptr);
1016 
1017         uint8_t* data = static_cast<uint8_t*>(static_cast<void*>(memory->getPointer()));
1018         EXPECT_NE(data, nullptr);
1019 
1020         memory->read();
1021         for (size_t i = 0; i < batchCopy[i].size(); i++) {
1022             EXPECT_EQ(kValue, data[i]);
1023         }
1024         memory->commit();
1025     }
1026 }
1027 
TEST_F(HidlTest,MemoryBlock)1028 TEST_F(HidlTest, MemoryBlock) {
1029     const uint8_t kValue = 0xCA;
1030     using ::android::hardware::IBinder;
1031     using ::android::hardware::interfacesEqual;
1032     using ::android::hardware::toBinder;
1033 
1034     sp<HidlMemory> mem;
1035     EXPECT_OK(ashmemAllocator->allocate(1024, [&](bool success, const hidl_memory& _mem) {
1036         ASSERT_TRUE(success);
1037         mem = HidlMemory::getInstance(_mem);
1038     }));
1039     memoryTest->set(*mem);
1040     Return<sp<IMemoryToken>> tokenRet = memoryTest->get();
1041     EXPECT_OK(tokenRet);
1042     sp<IMemoryToken> token = tokenRet;
1043     EXPECT_NE(nullptr, token.get());
1044     EXPECT_OK(token->get([&](const hidl_memory& mem) {
1045         sp<IMemory> memory = mapMemory(mem);
1046 
1047         EXPECT_NE(nullptr, memory.get());
1048 
1049         uint8_t* data = static_cast<uint8_t*>(static_cast<void*>(memory->getPointer()));
1050         EXPECT_NE(data, nullptr);
1051 
1052         EXPECT_EQ(memory->getSize(), mem.size());
1053 
1054         memory->update();
1055         memset(data, 0, memory->getSize());
1056         memory->commit();
1057 
1058         memoryTest->fillMemory(mem, kValue);
1059         memory->commit();
1060     }));
1061     MemoryBlock blk = {token, 0x200 /* size */, 0x100 /* offset */};
1062     EXPECT_OK(memoryTest->haveSomeMemoryBlock(blk, [&](const MemoryBlock& blkBack) {
1063         sp<IMemoryToken> tokenBack = blkBack.token;
1064         EXPECT_TRUE(interfacesEqual(token, tokenBack));
1065         EXPECT_EQ(blkBack.size, 0x200ULL);
1066         EXPECT_EQ(blkBack.offset, 0x100ULL);
1067         blk = blkBack;
1068     }));
1069 
1070     sp<IMemoryToken> mtoken = blk.token;
1071     mtoken->get([&](const hidl_memory& mem) {
1072         sp<IMemory> memory = mapMemory(mem);
1073         uint8_t* data = static_cast<uint8_t*>(static_cast<void*>(memory->getPointer()));
1074         EXPECT_NE(data, nullptr);
1075         for (size_t i = 0; i < mem.size(); i++) {
1076             EXPECT_EQ(kValue, data[i]);
1077         }
1078     });
1079 }
1080 
TEST_F(HidlTest,NullSharedMemory)1081 TEST_F(HidlTest, NullSharedMemory) {
1082     hidl_memory memory{};
1083 
1084     EXPECT_EQ(nullptr, memory.handle());
1085 
1086     EXPECT_OK(memoryTest->haveSomeMemory(memory, [&](const hidl_memory &mem) {
1087         EXPECT_EQ(nullptr, mem.handle());
1088     }));
1089 }
1090 
TEST_F(HidlTest,FooGetDescriptorTest)1091 TEST_F(HidlTest, FooGetDescriptorTest) {
1092     EXPECT_OK(foo->interfaceDescriptor([&] (const auto &desc) {
1093         EXPECT_EQ(desc, mode == BINDERIZED
1094                 ? IBar::descriptor // service is actually IBar in binderized mode
1095                 : IFoo::descriptor); // dlopened, so service is IFoo
1096     }));
1097 }
1098 
TEST_F(HidlTest,FooConvertToBoolIfSmallTest)1099 TEST_F(HidlTest, FooConvertToBoolIfSmallTest) {
1100     hidl_vec<IFoo::Union> u = {
1101         {.intValue = 7}, {.intValue = 0}, {.intValue = 1}, {.intValue = 8},
1102     };
1103     EXPECT_OK(foo->convertToBoolIfSmall(IFoo::Discriminator::INT, u, [&](const auto& res) {
1104         ASSERT_EQ(4u, res.size());
1105         EXPECT_EQ(IFoo::Discriminator::INT, res[0].discriminator);
1106         EXPECT_EQ(u[0].intValue, res[0].value.intValue);
1107         EXPECT_EQ(IFoo::Discriminator::BOOL, res[1].discriminator);
1108         EXPECT_EQ(static_cast<bool>(u[1].intValue), res[1].value.boolValue);
1109         EXPECT_EQ(IFoo::Discriminator::BOOL, res[2].discriminator);
1110         EXPECT_EQ(static_cast<bool>(u[2].intValue), res[2].value.boolValue);
1111         EXPECT_EQ(IFoo::Discriminator::INT, res[3].discriminator);
1112         EXPECT_EQ(u[3].intValue, res[3].value.intValue);
1113     }));
1114 }
1115 
TEST_F(HidlTest,FooDoThisTest)1116 TEST_F(HidlTest, FooDoThisTest) {
1117     ALOGI("CLIENT call doThis.");
1118     EXPECT_OK(foo->doThis(1.0f));
1119     ALOGI("CLIENT doThis returned.");
1120 }
1121 
TEST_F(HidlTest,FooDoThatAndReturnSomethingTest)1122 TEST_F(HidlTest, FooDoThatAndReturnSomethingTest) {
1123     ALOGI("CLIENT call doThatAndReturnSomething.");
1124     int32_t result = foo->doThatAndReturnSomething(2.0f);
1125     ALOGI("CLIENT doThatAndReturnSomething returned %d.", result);
1126     EXPECT_EQ(result, 666);
1127 }
1128 
TEST_F(HidlTest,FooDoQuiteABitTest)1129 TEST_F(HidlTest, FooDoQuiteABitTest) {
1130     ALOGI("CLIENT call doQuiteABit");
1131     double something = foo->doQuiteABit(1, 2, 3.0f, 4.0);
1132     ALOGI("CLIENT doQuiteABit returned %f.", something);
1133     EXPECT_DOUBLE_EQ(something, 666.5);
1134 }
1135 
TEST_F(HidlTest,FooDoSomethingElseTest)1136 TEST_F(HidlTest, FooDoSomethingElseTest) {
1137 
1138     ALOGI("CLIENT call doSomethingElse");
1139     hidl_array<int32_t, 15> param;
1140     for (size_t i = 0; i < sizeof(param) / sizeof(param[0]); ++i) {
1141         param[i] = i;
1142     }
1143     EXPECT_OK(foo->doSomethingElse(param, [&](const auto &something) {
1144             ALOGI("CLIENT doSomethingElse returned %s.",
1145                   to_string(something).c_str());
1146             int32_t expect[] = {0, 2, 4, 6, 8, 10, 12, 14, 16, 18, 20, 22, 24,
1147                 26, 28, 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 1, 2};
1148             EXPECT_TRUE(isArrayEqual(something, expect, 32));
1149         }));
1150 }
1151 
TEST_F(HidlTest,FooDoStuffAndReturnAStringTest)1152 TEST_F(HidlTest, FooDoStuffAndReturnAStringTest) {
1153     ALOGI("CLIENT call doStuffAndReturnAString");
1154     EXPECT_OK(foo->doStuffAndReturnAString([&](const auto &something) {
1155             ALOGI("CLIENT doStuffAndReturnAString returned '%s'.",
1156                   something.c_str());
1157             EXPECT_STREQ(something.c_str(), "Hello, world");
1158             EXPECT_EQ(strlen("Hello, world"), something.size());
1159         }));
1160 }
1161 
TEST_F(HidlTest,FooMapThisVectorTest)1162 TEST_F(HidlTest, FooMapThisVectorTest) {
1163     hidl_vec<int32_t> vecParam;
1164     vecParam.resize(10);
1165     for (size_t i = 0; i < 10; ++i) {
1166         vecParam[i] = i;
1167     }
1168     EXPECT_OK(foo->mapThisVector(vecParam, [&](const auto &something) {
1169             ALOGI("CLIENT mapThisVector returned %s.",
1170                   to_string(something).c_str());
1171             int32_t expect[] = {0, 2, 4, 6, 8, 10, 12, 14, 16, 18};
1172             EXPECT_TRUE(isArrayEqual(something, expect, something.size()));
1173         }));
1174 }
1175 
TEST_F(HidlTest,WrapTest)1176 TEST_F(HidlTest, WrapTest) {
1177     if (!gHidlEnvironment->enableDelayMeasurementTests) {
1178         return;
1179     }
1180 
1181     using ::android::hardware::tests::foo::V1_0::BnHwSimple;
1182     using ::android::hardware::tests::foo::V1_0::BsSimple;
1183     using ::android::hardware::tests::foo::V1_0::BpHwSimple;
1184     using ::android::hardware::details::HidlInstrumentor;
1185     nsecs_t now;
1186     int i = 0;
1187 
1188     now = systemTime();
1189     new BnHwSimple(new Simple(1));
1190     EXPECT_LT(systemTime() - now, 2000000) << "    for BnHwSimple(nonnull)";
1191 
1192     now = systemTime();
1193     new BnHwSimple(nullptr);
1194     EXPECT_LT(systemTime() - now, 2000000) << "    for BnHwSimple(null)";
1195 
1196     now = systemTime();
1197     new BsSimple(new Simple(1));
1198     EXPECT_LT(systemTime() - now, 2000000) << "    for BsSimple(nonnull)";
1199 
1200     now = systemTime();
1201     new BsSimple(nullptr);
1202     EXPECT_LT(systemTime() - now, 2000000) << "    for BsSimple(null)";
1203 
1204     now = systemTime();
1205     new BpHwSimple(nullptr);
1206     EXPECT_LT(systemTime() - now, 2000000) << "    for BpHwSimple(null)";
1207 
1208     now = systemTime();
1209     new ::android::hardware::details::HidlInstrumentor("", "");
1210     EXPECT_LT(systemTime() - now, 2000000) << "    for HidlInstrumentor";
1211 
1212     now = systemTime();
1213     i++;
1214     EXPECT_LT(systemTime() - now,    1000) << "    for nothing";
1215 }
1216 
TEST_F(HidlTest,FooCallMeTest)1217 TEST_F(HidlTest, FooCallMeTest) {
1218     if (!gHidlEnvironment->enableDelayMeasurementTests) {
1219         return;
1220     }
1221     sp<IFooCallback> fooCb = new FooCallback();
1222     ALOGI("CLIENT call callMe.");
1223     // callMe is oneway, should return instantly.
1224     nsecs_t now;
1225     now = systemTime();
1226     EXPECT_OK(foo->callMe(fooCb));
1227     EXPECT_LT(systemTime() - now, ONEWAY_TOLERANCE_NS);
1228     ALOGI("CLIENT callMe returned.");
1229 
1230     // Bar::callMe will invoke three methods on FooCallback; one will return
1231     // right away (even though it is a two-way method); the second one will
1232     // block Bar for DELAY_S seconds, and the third one will return
1233     // to Bar right away (is oneway) but will itself block for DELAY_S seconds.
1234     // We need a way to make sure that these three things have happened within
1235     // 2*DELAY_S seconds plus some small tolerance.
1236     //
1237     // Method FooCallback::reportResults() takes a timeout parameter.  It blocks for
1238     // that length of time, while waiting for the three methods above to
1239     // complete.  It returns the information of whether each method was invoked,
1240     // as well as how long the body of the method took to execute.  We verify
1241     // the information returned by reportResults() against the timeout we pass (which
1242     // is long enough for the method bodies to execute, plus tolerance), and
1243     // verify that eachof them executed, as expected, and took the length of
1244     // time to execute that we also expect.
1245 
1246     const nsecs_t waitNs =
1247         3 * DELAY_NS + TOLERANCE_NS;
1248     const nsecs_t reportResultsNs =
1249         2 * DELAY_NS + TOLERANCE_NS;
1250 
1251     ALOGI("CLIENT: Waiting for up to %" PRId64 " seconds.",
1252           nanoseconds_to_seconds(waitNs));
1253 
1254     fooCb->reportResults(waitNs,
1255                 [&](int64_t timeLeftNs,
1256                     const hidl_array<IFooCallback::InvokeInfo, 3> &invokeResults) {
1257         ALOGI("CLIENT: FooCallback::reportResults() is returning data.");
1258         ALOGI("CLIENT: Waited for %" PRId64 " milliseconds.",
1259               nanoseconds_to_milliseconds(waitNs - timeLeftNs));
1260 
1261         EXPECT_LE(waitNs - timeLeftNs, reportResultsNs)
1262                 << "waited for "
1263                 << (timeLeftNs >= 0 ? "" : "more than ")
1264                 << (timeLeftNs >= 0 ? (waitNs - timeLeftNs) : waitNs)
1265                 << "ns, expect to finish in "
1266                 << reportResultsNs << " ns";
1267 
1268         // two-way method, was supposed to return right away
1269         EXPECT_TRUE(invokeResults[0].invoked);
1270         EXPECT_LE(invokeResults[0].timeNs, invokeResults[0].callerBlockedNs);
1271         EXPECT_LE(invokeResults[0].callerBlockedNs, TOLERANCE_NS);
1272         // two-way method, was supposed to block caller for DELAY_NS
1273         EXPECT_TRUE(invokeResults[1].invoked);
1274         EXPECT_LE(invokeResults[1].timeNs, invokeResults[1].callerBlockedNs);
1275         EXPECT_LE(invokeResults[1].callerBlockedNs,
1276                     DELAY_NS + TOLERANCE_NS);
1277         // one-way method, do not block caller, but body was supposed to block for DELAY_NS
1278         EXPECT_TRUE(invokeResults[2].invoked);
1279         EXPECT_LE(invokeResults[2].callerBlockedNs, ONEWAY_TOLERANCE_NS);
1280         EXPECT_LE(invokeResults[2].timeNs, DELAY_NS + TOLERANCE_NS);
1281     });
1282 }
1283 
1284 
1285 
TEST_F(HidlTest,FooUseAnEnumTest)1286 TEST_F(HidlTest, FooUseAnEnumTest) {
1287     ALOGI("CLIENT call useAnEnum.");
1288     IFoo::SomeEnum sleepy = foo->useAnEnum(IFoo::SomeEnum::quux);
1289     ALOGI("CLIENT useAnEnum returned %u", (unsigned)sleepy);
1290     EXPECT_EQ(sleepy, IFoo::SomeEnum::goober);
1291 }
1292 
TEST_F(HidlTest,FooHaveAGooberTest)1293 TEST_F(HidlTest, FooHaveAGooberTest) {
1294     hidl_vec<IFoo::Goober> gooberVecParam;
1295     gooberVecParam.resize(2);
1296     gooberVecParam[0].name = "Hello";
1297     gooberVecParam[1].name = "World";
1298 
1299     ALOGI("CLIENT call haveAGooberVec.");
1300     EXPECT_OK(foo->haveAGooberVec(gooberVecParam));
1301     ALOGI("CLIENT haveAGooberVec returned.");
1302 
1303     ALOGI("CLIENT call haveaGoober.");
1304     EXPECT_OK(foo->haveAGoober(gooberVecParam[0]));
1305     ALOGI("CLIENT haveaGoober returned.");
1306 
1307     ALOGI("CLIENT call haveAGooberArray.");
1308     hidl_array<IFoo::Goober, 20> gooberArrayParam;
1309     EXPECT_OK(foo->haveAGooberArray(gooberArrayParam));
1310     ALOGI("CLIENT haveAGooberArray returned.");
1311 }
1312 
TEST_F(HidlTest,FooHaveATypeFromAnotherFileTest)1313 TEST_F(HidlTest, FooHaveATypeFromAnotherFileTest) {
1314     ALOGI("CLIENT call haveATypeFromAnotherFile.");
1315     Abc abcParam{};
1316     abcParam.x = "alphabet";
1317     abcParam.y = 3.14f;
1318     native_handle_t *handle = native_handle_create(0, 0);
1319     abcParam.z = handle;
1320     EXPECT_OK(foo->haveATypeFromAnotherFile(abcParam));
1321     ALOGI("CLIENT haveATypeFromAnotherFile returned.");
1322     native_handle_delete(handle);
1323     abcParam.z = nullptr;
1324 }
1325 
TEST_F(HidlTest,FooHaveSomeStringsTest)1326 TEST_F(HidlTest, FooHaveSomeStringsTest) {
1327     ALOGI("CLIENT call haveSomeStrings.");
1328     hidl_array<hidl_string, 3> stringArrayParam;
1329     stringArrayParam[0] = "What";
1330     stringArrayParam[1] = "a";
1331     stringArrayParam[2] = "disaster";
1332     EXPECT_OK(foo->haveSomeStrings(
1333                 stringArrayParam,
1334                 [&](const auto &out) {
1335                     ALOGI("CLIENT haveSomeStrings returned %s.",
1336                           to_string(out).c_str());
1337 
1338                     EXPECT_EQ(to_string(out), "['Hello', 'World']");
1339                 }));
1340     ALOGI("CLIENT haveSomeStrings returned.");
1341 }
1342 
TEST_F(HidlTest,FooHaveAStringVecTest)1343 TEST_F(HidlTest, FooHaveAStringVecTest) {
1344     ALOGI("CLIENT call haveAStringVec.");
1345     hidl_vec<hidl_string> stringVecParam;
1346     stringVecParam.resize(3);
1347     stringVecParam[0] = "What";
1348     stringVecParam[1] = "a";
1349     stringVecParam[2] = "disaster";
1350     EXPECT_OK(foo->haveAStringVec(
1351                 stringVecParam,
1352                 [&](const auto &out) {
1353                     ALOGI("CLIENT haveAStringVec returned %s.",
1354                           to_string(out).c_str());
1355 
1356                     EXPECT_EQ(to_string(out), "['Hello', 'World']");
1357                 }));
1358     ALOGI("CLIENT haveAStringVec returned.");
1359 }
1360 
TEST_F(HidlTest,FooTransposeMeTest)1361 TEST_F(HidlTest, FooTransposeMeTest) {
1362     hidl_array<float, 3, 5> in;
1363     float k = 1.0f;
1364     for (size_t i = 0; i < 3; ++i) {
1365         for (size_t j = 0; j < 5; ++j, ++k) {
1366             in[i][j] = k;
1367         }
1368     }
1369 
1370     ALOGI("CLIENT call transposeMe(%s).", to_string(in).c_str());
1371 
1372     EXPECT_OK(foo->transposeMe(
1373                 in,
1374                 [&](const auto &out) {
1375                     ALOGI("CLIENT transposeMe returned %s.",
1376                           to_string(out).c_str());
1377 
1378                     for (size_t i = 0; i < 3; ++i) {
1379                         for (size_t j = 0; j < 5; ++j) {
1380                             EXPECT_EQ(out[j][i], in[i][j]);
1381                         }
1382                     }
1383                 }));
1384 }
1385 
TEST_F(HidlTest,FooCallingDrWhoTest)1386 TEST_F(HidlTest, FooCallingDrWhoTest) {
1387     IFoo::MultiDimensional in;
1388 
1389     size_t k = 0;
1390     for (size_t i = 0; i < 5; ++i) {
1391         for (size_t j = 0; j < 3; ++j, ++k) {
1392             in.quuxMatrix[i][j].first = ("First " + std::to_string(k)).c_str();
1393             in.quuxMatrix[i][j].last = ("Last " + std::to_string(15-k)).c_str();
1394         }
1395     }
1396 
1397     ALOGI("CLIENT call callingDrWho(%s).",
1398           MultiDimensionalToString(in).c_str());
1399 
1400     EXPECT_OK(foo->callingDrWho(
1401                 in,
1402                 [&](const auto &out) {
1403                     ALOGI("CLIENT callingDrWho returned %s.",
1404                           MultiDimensionalToString(out).c_str());
1405 
1406                     size_t k = 0;
1407                     for (size_t i = 0; i < 5; ++i) {
1408                         for (size_t j = 0; j < 3; ++j, ++k) {
1409                             EXPECT_STREQ(
1410                                 out.quuxMatrix[i][j].first.c_str(),
1411                                 in.quuxMatrix[4 - i][2 - j].last.c_str());
1412 
1413                             EXPECT_STREQ(
1414                                 out.quuxMatrix[i][j].last.c_str(),
1415                                 in.quuxMatrix[4 - i][2 - j].first.c_str());
1416                         }
1417                     }
1418                 }));
1419 }
1420 
numberToEnglish(int x)1421 static std::string numberToEnglish(int x) {
1422     static const char *const kDigits[] = {
1423         "zero",
1424         "one",
1425         "two",
1426         "three",
1427         "four",
1428         "five",
1429         "six",
1430         "seven",
1431         "eight",
1432         "nine",
1433     };
1434 
1435     if (x < 0) {
1436         return "negative " + numberToEnglish(-x);
1437     }
1438 
1439     if (x < 10) {
1440         return kDigits[x];
1441     }
1442 
1443     if (x <= 15) {
1444         static const char *const kSpecialTens[] = {
1445             "ten", "eleven", "twelve", "thirteen", "fourteen", "fifteen",
1446         };
1447 
1448         return kSpecialTens[x - 10];
1449     }
1450 
1451     if (x < 20) {
1452         return std::string(kDigits[x % 10]) + "teen";
1453     }
1454 
1455     if (x < 100) {
1456         static const char *const kDecades[] = {
1457             "twenty", "thirty", "forty", "fifty", "sixty", "seventy",
1458             "eighty", "ninety",
1459         };
1460 
1461         return std::string(kDecades[x / 10 - 2]) + kDigits[x % 10];
1462     }
1463 
1464     return "positively huge!";
1465 }
1466 
TEST_F(HidlTest,FooTransposeTest)1467 TEST_F(HidlTest, FooTransposeTest) {
1468     IFoo::StringMatrix5x3 in;
1469 
1470     for (int i = 0; i < 5; ++i) {
1471         for (int j = 0; j < 3; ++j) {
1472             in.s[i][j] = numberToEnglish(3 * i + j + 1).c_str();
1473         }
1474     }
1475 
1476     EXPECT_OK(foo->transpose(
1477                 in,
1478                 [&](const auto &out) {
1479                     EXPECT_EQ(
1480                         to_string(out),
1481                         "[['one', 'four', 'seven', 'ten', 'thirteen'], "
1482                          "['two', 'five', 'eight', 'eleven', 'fourteen'], "
1483                          "['three', 'six', 'nine', 'twelve', 'fifteen']]");
1484                 }));
1485 }
1486 
TEST_F(HidlTest,FooTranspose2Test)1487 TEST_F(HidlTest, FooTranspose2Test) {
1488     hidl_array<hidl_string, 5, 3> in;
1489 
1490     for (int i = 0; i < 5; ++i) {
1491         for (int j = 0; j < 3; ++j) {
1492             in[i][j] = numberToEnglish(3 * i + j + 1).c_str();
1493         }
1494     }
1495 
1496     EXPECT_OK(foo->transpose2(
1497                 in,
1498                 [&](const auto &out) {
1499                     EXPECT_EQ(
1500                         to_string(out),
1501                         "[['one', 'four', 'seven', 'ten', 'thirteen'], "
1502                          "['two', 'five', 'eight', 'eleven', 'fourteen'], "
1503                          "['three', 'six', 'nine', 'twelve', 'fifteen']]");
1504                 }));
1505 }
1506 
TEST_F(HidlTest,FooNullNativeHandleTest)1507 TEST_F(HidlTest, FooNullNativeHandleTest) {
1508     Abc xyz;
1509     xyz.z = nullptr;
1510     EXPECT_OK(bar->expectNullHandle(nullptr, xyz, [](bool hIsNull, bool xyzHasNull) {
1511         EXPECT_TRUE(hIsNull);
1512         EXPECT_TRUE(xyzHasNull);
1513     }));
1514 }
1515 
TEST_F(HidlTest,FooNullSynchronousCallbackTest)1516 TEST_F(HidlTest, FooNullSynchronousCallbackTest) {
1517     Return<void> ret = foo->echoNullInterface(nullptr, nullptr /* synchronous callback */);
1518 
1519     EXPECT_FAIL(ret);
1520     EXPECT_TRUE(ret.description().find("Null synchronous callback passed") != std::string::npos);
1521 }
1522 
TEST_F(HidlTest,FooNullCallbackTest)1523 TEST_F(HidlTest, FooNullCallbackTest) {
1524     EXPECT_OK(foo->echoNullInterface(nullptr,
1525                 [](const auto receivedNull, const auto &intf) {
1526                    EXPECT_TRUE(receivedNull);
1527                    EXPECT_EQ(intf, nullptr);
1528                 }));
1529 }
1530 
TEST_F(HidlTest,StructWithFmq)1531 TEST_F(HidlTest, StructWithFmq) {
1532     IFoo::WithFmq w = {
1533         .scatterGathered =
1534             {
1535                 .descSync = {std::vector<GrantorDescriptor>(), native_handle_create(0, 1), 5},
1536             },
1537         .containsPointer =
1538             {
1539                 .descSync = {std::vector<GrantorDescriptor>(), native_handle_create(0, 1), 5},
1540                 .foo = nullptr,
1541             },
1542     };
1543     EXPECT_OK(foo->repeatWithFmq(w, [&](const IFoo::WithFmq& returned) {
1544         checkMQDescriptorEquality(w.scatterGathered.descSync, returned.scatterGathered.descSync);
1545         checkMQDescriptorEquality(w.containsPointer.descSync, returned.containsPointer.descSync);
1546 
1547         EXPECT_EQ(w.containsPointer.foo, returned.containsPointer.foo);
1548     }));
1549 }
1550 
TEST_F(HidlTest,FooNonNullCallbackTest)1551 TEST_F(HidlTest, FooNonNullCallbackTest) {
1552     hidl_array<hidl_string, 5, 3> in;
1553 
1554     EXPECT_FAIL(foo->transpose2(in, nullptr /* _hidl_cb */));
1555 }
1556 
TEST_F(HidlTest,FooSendVecTest)1557 TEST_F(HidlTest, FooSendVecTest) {
1558     hidl_vec<uint8_t> in;
1559     in.resize(16);
1560     for (size_t i = 0; i < in.size(); ++i) {
1561         in[i] = i;
1562     }
1563 
1564     EXPECT_OK(foo->sendVec(
1565                 in,
1566                 [&](const auto &out) {
1567                     EXPECT_EQ(to_string(in), to_string(out));
1568                 }));
1569 }
1570 
TEST_F(HidlTest,FooSendEmptyVecTest)1571 TEST_F(HidlTest, FooSendEmptyVecTest) {
1572     hidl_vec<uint8_t> in;
1573     EXPECT_OK(foo->sendVec(
1574                 in,
1575                 [&](const auto &out) {
1576                     EXPECT_EQ(out.size(), 0u);
1577                     EXPECT_EQ(to_string(in), to_string(out));
1578                 }));
1579 }
1580 
TEST_F(HidlTest,FooHaveAVectorOfInterfacesTest)1581 TEST_F(HidlTest, FooHaveAVectorOfInterfacesTest) {
1582     hidl_vec<sp<ISimple> > in;
1583     in.resize(16);
1584     for (size_t i = 0; i < in.size(); ++i) {
1585         in[i] = new Simple(i);
1586     }
1587 
1588     EXPECT_OK(foo->haveAVectorOfInterfaces(
1589                 in,
1590                 [&](const auto &out) {
1591                     EXPECT_EQ(in.size(), out.size());
1592                     for (size_t i = 0; i < in.size(); ++i) {
1593                         int32_t inCookie = in[i]->getCookie();
1594                         int32_t outCookie = out[i]->getCookie();
1595                         EXPECT_EQ(inCookie, outCookie);
1596                     }
1597                 }));
1598 }
1599 
TEST_F(HidlTest,FooHaveAVectorOfGenericInterfacesTest)1600 TEST_F(HidlTest, FooHaveAVectorOfGenericInterfacesTest) {
1601 
1602     hidl_vec<sp<::android::hidl::base::V1_0::IBase> > in;
1603     in.resize(16);
1604     for (size_t i = 0; i < in.size(); ++i) {
1605         sp<ISimple> s = new Simple(i);
1606         in[i] = s;
1607     }
1608 
1609     EXPECT_OK(foo->haveAVectorOfGenericInterfaces(
1610                 in,
1611                 [&](const auto &out) {
1612                     EXPECT_EQ(in.size(), out.size());
1613 
1614                     EXPECT_OK(out[0]->interfaceDescriptor([](const auto &name) {
1615                         ASSERT_STREQ(name.c_str(), ISimple::descriptor);
1616                     }));
1617                     for (size_t i = 0; i < in.size(); ++i) {
1618                         sp<ISimple> inSimple = ISimple::castFrom(in[i]);
1619                         sp<ISimple> outSimple = ISimple::castFrom(out[i]);
1620 
1621                         ASSERT_NE(inSimple.get(), nullptr);
1622                         ASSERT_NE(outSimple.get(), nullptr);
1623                         EXPECT_EQ(in[i], inSimple.get()); // pointers must be equal!
1624                         int32_t inCookie = inSimple->getCookie();
1625                         int32_t outCookie = outSimple->getCookie();
1626                         EXPECT_EQ(inCookie, outCookie);
1627                     }
1628                 }));
1629 }
1630 
TEST_F(HidlTest,FooStructEmbeddedHandleTest)1631 TEST_F(HidlTest, FooStructEmbeddedHandleTest) {
1632     EXPECT_OK(foo->createMyHandle([&](const auto &myHandle) {
1633         EXPECT_EQ(myHandle.guard, 666);
1634         const native_handle_t* handle = myHandle.h.getNativeHandle();
1635         EXPECT_EQ(handle->numInts, 10);
1636         EXPECT_EQ(handle->numFds, 0);
1637         int data[] = {2,3,5,7,11,13,17,19,21,23};
1638         EXPECT_ARRAYEQ(handle->data, data, 10);
1639     }));
1640 
1641     EXPECT_OK(foo->closeHandles());
1642 }
1643 
TEST_F(HidlTest,FooHandleVecTest)1644 TEST_F(HidlTest, FooHandleVecTest) {
1645     EXPECT_OK(foo->createHandles(3, [&](const auto &handles) {
1646         EXPECT_EQ(handles.size(), 3ull);
1647         int data[] = {2,3,5,7,11,13,17,19,21,23};
1648         for (size_t i = 0; i < 3; i++) {
1649             const native_handle_t *h = handles[i];
1650             EXPECT_EQ(h->numInts, 10) << " for element " << i;
1651             EXPECT_EQ(h->numFds, 0) << " for element " << i;
1652             EXPECT_ARRAYEQ(h->data, data, 10);
1653         }
1654     }));
1655 
1656     EXPECT_OK(foo->closeHandles());
1657 }
1658 
TEST_F(HidlTest,BazStructWithInterfaceTest)1659 TEST_F(HidlTest, BazStructWithInterfaceTest) {
1660     using ::android::hardware::interfacesEqual;
1661 
1662     const std::string testString = "Hello, World!";
1663     const std::array<int8_t, 7> testArray{-1, -2, -3, 0, 1, 2, 3};
1664     const hidl_vec<hidl_string> testStrings{"So", "Many", "Words"};
1665     const hidl_vec<bool> testVector{false, true, false, true, true, true};
1666 
1667     hidl_vec<bool> goldenResult(testVector.size());
1668     for (size_t i = 0; i < testVector.size(); i++) {
1669         goldenResult[i] = !testVector[i];
1670     }
1671 
1672     IBaz::StructWithInterface swi;
1673     swi.number = 42;
1674     swi.array = testArray;
1675     swi.oneString = testString;
1676     swi.vectorOfStrings = testStrings;
1677     swi.dummy = baz;
1678 
1679     EXPECT_OK(baz->haveSomeStructWithInterface(swi, [&](const IBaz::StructWithInterface& swiBack) {
1680         EXPECT_EQ(42, swiBack.number);
1681         for (size_t i = 0; i < testArray.size(); i++) {
1682             EXPECT_EQ(testArray[i], swiBack.array[i]);
1683         }
1684 
1685         EXPECT_EQ(testString, std::string(swiBack.oneString));
1686         EXPECT_EQ(testStrings, swiBack.vectorOfStrings);
1687 
1688         EXPECT_TRUE(interfacesEqual(swi.dummy, swiBack.dummy));
1689         EXPECT_OK(swiBack.dummy->someBoolVectorMethod(
1690             testVector, [&](const hidl_vec<bool>& result) { EXPECT_EQ(goldenResult, result); }));
1691     }));
1692 }
1693 
1694 struct HidlDeathRecipient : hidl_death_recipient {
1695     std::mutex mutex;
1696     std::condition_variable condition;
1697     wp<IBase> who;
1698     bool fired = false;
1699     uint64_t cookie = 0;
1700 
serviceDiedHidlDeathRecipient1701     void serviceDied(uint64_t cookie, const wp<IBase>& who) override {
1702         std::unique_lock<std::mutex> lock(mutex);
1703         fired = true;
1704         this->cookie = cookie;
1705         this->who = who;
1706         condition.notify_one();
1707     };
1708 };
1709 
TEST_F(HidlTest,DeathRecipientTest)1710 TEST_F(HidlTest, DeathRecipientTest) {
1711     sp<HidlDeathRecipient> recipient = new HidlDeathRecipient();
1712     sp<HidlDeathRecipient> recipient2 = new HidlDeathRecipient();
1713 
1714     EXPECT_TRUE(dyingBaz->linkToDeath(recipient, 0x1481));
1715 
1716     EXPECT_TRUE(dyingBaz->linkToDeath(recipient, 0x1482));
1717     EXPECT_TRUE(dyingBaz->unlinkToDeath(recipient));
1718 
1719     EXPECT_TRUE(dyingBaz->linkToDeath(recipient2, 0x2592));
1720     EXPECT_TRUE(dyingBaz->unlinkToDeath(recipient2));
1721 
1722     if (mode != BINDERIZED) {
1723         // Passthrough doesn't fire, nor does it keep state of
1724         // registered death recipients (so it won't fail unlinking
1725         // the same recipient twice).
1726         return;
1727     }
1728 
1729     EXPECT_FALSE(dyingBaz->unlinkToDeath(recipient2));
1730     auto ret = dyingBaz->dieNow();
1731     if (!ret.isOk()) {
1732         //do nothing, this is expected
1733     }
1734 
1735     // further calls fail
1736     EXPECT_FAIL(dyingBaz->ping());
1737 
1738     std::unique_lock<std::mutex> lock(recipient->mutex);
1739     recipient->condition.wait_for(lock, std::chrono::milliseconds(100), [&recipient]() {
1740             return recipient->fired;
1741     });
1742     EXPECT_TRUE(recipient->fired);
1743     EXPECT_EQ(recipient->cookie, 0x1481u);
1744     EXPECT_EQ(recipient->who, dyingBaz);
1745     std::unique_lock<std::mutex> lock2(recipient2->mutex);
1746     recipient2->condition.wait_for(lock2, std::chrono::milliseconds(100), [&recipient2]() {
1747             return recipient2->fired;
1748     });
1749     EXPECT_FALSE(recipient2->fired);
1750 
1751     // Verify servicemanager dropped its reference too
1752     sp<IBaz> deadBaz = IBaz::getService("dyingBaz", false);
1753     if (deadBaz != nullptr) {
1754         // Got a passthrough
1755         EXPECT_FALSE(deadBaz->isRemote());
1756     }
1757 }
1758 
TEST_F(HidlTest,BarThisIsNewTest)1759 TEST_F(HidlTest, BarThisIsNewTest) {
1760     // Now the tricky part, get access to the derived interface.
1761     ALOGI("CLIENT call thisIsNew.");
1762     EXPECT_OK(bar->thisIsNew());
1763     ALOGI("CLIENT thisIsNew returned.");
1764 }
1765 
expectGoodChild(sp<IChild> child)1766 static void expectGoodChild(sp<IChild> child) {
1767     ASSERT_NE(child.get(), nullptr);
1768     child = IChild::castFrom(child);
1769     ASSERT_NE(child.get(), nullptr);
1770     EXPECT_OK(child->doGrandparent());
1771     EXPECT_OK(child->doParent());
1772     EXPECT_OK(child->doChild());
1773 }
1774 
expectGoodParent(sp<IParent> parent)1775 static void expectGoodParent(sp<IParent> parent) {
1776     ASSERT_NE(parent.get(), nullptr);
1777     parent = IParent::castFrom(parent);
1778     ASSERT_NE(parent.get(), nullptr);
1779     EXPECT_OK(parent->doGrandparent());
1780     EXPECT_OK(parent->doParent());
1781     sp<IChild> child = IChild::castFrom(parent);
1782     expectGoodChild(child);
1783 }
1784 
expectGoodGrandparent(sp<IGrandparent> grandparent)1785 static void expectGoodGrandparent(sp<IGrandparent> grandparent) {
1786     ASSERT_NE(grandparent.get(), nullptr);
1787     grandparent = IGrandparent::castFrom(grandparent);
1788     ASSERT_NE(grandparent.get(), nullptr);
1789     EXPECT_OK(grandparent->doGrandparent());
1790     sp<IParent> parent = IParent::castFrom(grandparent);
1791     expectGoodParent(parent);
1792 }
1793 
TEST_F(HidlTest,FooHaveAnInterfaceTest)1794 TEST_F(HidlTest, FooHaveAnInterfaceTest) {
1795     sp<ISimple> in = new Complicated(42);
1796     Return<sp<ISimple>> ret = bar->haveAInterface(in);
1797     EXPECT_OK(ret);
1798     sp<ISimple> out = ret;
1799     ASSERT_NE(out.get(), nullptr);
1800     EXPECT_EQ(out->getCookie(), 42);
1801     EXPECT_OK(out->customVecInt([](const auto &) { }));
1802     EXPECT_OK(out->customVecStr([](const auto &) { }));
1803     EXPECT_OK(out->ping());
1804     EXPECT_OK(out->mystr([](const auto &) { }));
1805     EXPECT_OK(out->myhandle([](const auto &) { }));
1806 }
1807 
TEST_F(HidlTest,InheritRemoteGrandparentTest)1808 TEST_F(HidlTest, InheritRemoteGrandparentTest) {
1809     Return<sp<IGrandparent>> ret = fetcher->getGrandparent(true);
1810     EXPECT_OK(ret);
1811     expectGoodGrandparent(ret);
1812 }
1813 
TEST_F(HidlTest,InheritLocalGrandparentTest)1814 TEST_F(HidlTest, InheritLocalGrandparentTest) {
1815     Return<sp<IGrandparent>> ret = fetcher->getGrandparent(false);
1816     EXPECT_OK(ret);
1817     expectGoodGrandparent(ret);
1818 }
1819 
TEST_F(HidlTest,InheritRemoteParentTest)1820 TEST_F(HidlTest, InheritRemoteParentTest) {
1821     Return<sp<IParent>> ret = fetcher->getParent(true);
1822     EXPECT_OK(ret);
1823     expectGoodParent(ret);
1824 }
1825 
TEST_F(HidlTest,InheritLocalParentTest)1826 TEST_F(HidlTest, InheritLocalParentTest) {
1827     Return<sp<IParent>> ret = fetcher->getParent(false);
1828     EXPECT_OK(ret);
1829     expectGoodParent(ret);
1830 }
1831 
TEST_F(HidlTest,InheritRemoteChildTest)1832 TEST_F(HidlTest, InheritRemoteChildTest) {
1833     Return<sp<IChild>> ret = fetcher->getChild(true);
1834     EXPECT_OK(ret);
1835     expectGoodChild(ret);
1836 }
1837 
TEST_F(HidlTest,InheritLocalChildTest)1838 TEST_F(HidlTest, InheritLocalChildTest) {
1839     Return<sp<IChild>> ret = fetcher->getChild(false);
1840     EXPECT_OK(ret);
1841     expectGoodChild(ret);
1842 }
1843 
TEST_F(HidlTest,TestArrayDimensionality)1844 TEST_F(HidlTest, TestArrayDimensionality) {
1845     hidl_array<int, 2> oneDim;
1846     hidl_array<int, 2, 3> twoDim;
1847     hidl_array<int, 2, 3, 4> threeDim;
1848 
1849     EXPECT_EQ(oneDim.size(), 2u);
1850     EXPECT_EQ(twoDim.size(), std::make_tuple(2u, 3u));
1851     EXPECT_EQ(threeDim.size(), std::make_tuple(2u, 3u, 4u));
1852 }
1853 
TEST_F(HidlTest,StructEqualTest)1854 TEST_F(HidlTest, StructEqualTest) {
1855     using G = IFoo::Goober;
1856     using F = IFoo::Fumble;
1857     G g1{
1858         .q = 42,
1859         .name = "The Ultimate Question of Life, the Universe, and Everything",
1860         .address = "North Pole",
1861         .numbers = std::array<double, 10>{ {1, 2, 3, 4, 5, 6, 7, 8, 9, 10} },
1862         .fumble = F{.data = {.data = 50}},
1863         .gumble = F{.data = {.data = 60}}
1864     };
1865     G g2{
1866         .q = 42,
1867         .name = "The Ultimate Question of Life, the Universe, and Everything",
1868         .address = "North Pole",
1869         .numbers = std::array<double, 10>{ {1, 2, 3, 4, 5, 6, 7, 8, 9, 10} },
1870         .fumble = F{.data = {.data = 50}},
1871         .gumble = F{.data = {.data = 60}}
1872     };
1873     G g3{
1874         .q = 42,
1875         .name = "The Ultimate Question of Life, the Universe, and Everything",
1876         .address = "North Pole",
1877         .numbers = std::array<double, 10>{ {1, 2, 3, 4, 5, 6, 7, 8, 9, 10} },
1878         .fumble = F{.data = {.data = 50}},
1879         .gumble = F{.data = {.data = 61}}
1880     };
1881     // explicitly invoke operator== here.
1882     EXPECT_TRUE(g1 == g2);
1883     EXPECT_TRUE(g1 != g3);
1884 }
1885 
TEST_F(HidlTest,EnumEqualTest)1886 TEST_F(HidlTest, EnumEqualTest) {
1887     using E = IFoo::SomeEnum;
1888     E e1 = E::quux;
1889     E e2 = E::quux;
1890     E e3 = E::goober;
1891     // explicitly invoke operator== here.
1892     EXPECT_TRUE(e1 == e2);
1893     EXPECT_TRUE(e1 != e3);
1894 }
1895 
TEST_F(HidlTest,InvalidTransactionTest)1896 TEST_F(HidlTest, InvalidTransactionTest) {
1897     using ::android::hardware::tests::bar::V1_0::BnHwBar;
1898     using ::android::hardware::IBinder;
1899     using ::android::hardware::Parcel;
1900 
1901     sp<IBinder> binder = ::android::hardware::toBinder(bar);
1902 
1903     Parcel request, reply;
1904     EXPECT_EQ(::android::OK, request.writeInterfaceToken(IBar::descriptor));
1905     EXPECT_EQ(::android::UNKNOWN_TRANSACTION, binder->transact(1234, request, &reply));
1906 
1907     EXPECT_OK(bar->ping());  // still works
1908 }
1909 
TEST_F(HidlTest,EmptyTransactionTest)1910 TEST_F(HidlTest, EmptyTransactionTest) {
1911     using ::android::hardware::IBinder;
1912     using ::android::hardware::Parcel;
1913     using ::android::hardware::tests::bar::V1_0::BnHwBar;
1914 
1915     sp<IBinder> binder = ::android::hardware::toBinder(bar);
1916 
1917     Parcel request, reply;
1918     EXPECT_EQ(::android::BAD_TYPE, binder->transact(2 /*someBoolMethod*/, request, &reply));
1919 
1920     EXPECT_OK(bar->ping());  // still works
1921 }
1922 
TEST_F(HidlTest,WrongDescriptorTest)1923 TEST_F(HidlTest, WrongDescriptorTest) {
1924     using ::android::hardware::IBinder;
1925     using ::android::hardware::Parcel;
1926     using ::android::hardware::tests::bar::V1_0::BnHwBar;
1927 
1928     sp<IBinder> binder = ::android::hardware::toBinder(bar);
1929 
1930     Parcel request, reply;
1931     // wrong descriptor
1932     EXPECT_EQ(::android::OK, request.writeInterfaceToken("not a real descriptor"));
1933     EXPECT_EQ(::android::BAD_TYPE, binder->transact(2 /*someBoolMethod*/, request, &reply));
1934 
1935     EXPECT_OK(bar->ping());  // still works
1936 }
1937 
TEST_F(HidlTest,TrieSimpleTest)1938 TEST_F(HidlTest, TrieSimpleTest) {
1939     trieInterface->newTrie([&](const TrieNode& trie) {
1940         trieInterface->addStrings(trie, {"a", "ba"}, [&](const TrieNode& trie) {
1941             trieInterface->containsStrings(
1942                 trie, {"", "a", "b", "ab", "ba", "c"}, [](const hidl_vec<bool>& response) {
1943                     EXPECT_EQ(response,
1944                               std::vector<bool>({false, true, false, false, true, false}));
1945                 });
1946 
1947             trieInterface->addStrings(trie, {"", "ab", "bab"}, [&](const TrieNode& trie) {
1948                 trieInterface->containsStrings(
1949                     trie, {"", "a", "b", "ab", "ba", "c"}, [](const hidl_vec<bool>& response) {
1950                         EXPECT_EQ(response,
1951                                   std::vector<bool>({true, true, false, true, true, false}));
1952                     });
1953             });
1954         });
1955     });
1956 }
1957 
1958 struct RandomString {
nextRandomString1959     std::string next() {
1960         std::string ret(lengthDist(rng), 0);
1961         std::generate(ret.begin(), ret.end(), [&]() { return charDist(rng); });
1962         return ret;
1963     }
1964 
RandomStringRandomString1965     RandomString() : rng(std::random_device{}()), lengthDist(5, 10), charDist('a', 'a' + 10) {}
1966 
1967    private:
1968     std::default_random_engine rng;
1969     std::uniform_int_distribution<> lengthDist;
1970     std::uniform_int_distribution<> charDist;
1971 };
1972 
TEST_F(HidlTest,TrieStressTest)1973 TEST_F(HidlTest, TrieStressTest) {
1974     const size_t REQUEST_NUM = 1000;
1975     RandomString stringGenerator;
1976 
1977     trieInterface->newTrie([&](const TrieNode& trie) {
1978         std::vector<std::string> strings(REQUEST_NUM);
1979         for (auto& str : strings) {
1980             str = stringGenerator.next();
1981         }
1982 
1983         trieInterface->addStrings(
1984             trie, hidl_vec<hidl_string>(strings.begin(), strings.end()), [&](const TrieNode& trie) {
1985                 std::unordered_set<std::string> addedStrings(strings.begin(), strings.end());
1986 
1987                 for (size_t i = 0; i != REQUEST_NUM; ++i) {
1988                     strings.push_back(stringGenerator.next());
1989                 }
1990 
1991                 std::vector<bool> trueResponse(strings.size());
1992                 std::transform(strings.begin(), strings.end(), trueResponse.begin(),
1993                                [&](const std::string& str) {
1994                                    return addedStrings.find(str) != addedStrings.end();
1995                                });
1996 
1997                 trieInterface->containsStrings(
1998                     trie, hidl_vec<hidl_string>(strings.begin(), strings.end()),
1999                     [&](const hidl_vec<bool>& response) { EXPECT_EQ(response, trueResponse); });
2000             });
2001     });
2002 }
2003 
TEST_F(HidlTest,SafeUnionNoInitTest)2004 TEST_F(HidlTest, SafeUnionNoInitTest) {
2005     EXPECT_OK(safeunionInterface->newLargeSafeUnion([&](const LargeSafeUnion& safeUnion) {
2006         EXPECT_EQ(LargeSafeUnion::hidl_discriminator::noinit, safeUnion.getDiscriminator());
2007     }));
2008 }
2009 
TEST_F(HidlTest,SafeUnionSimpleTest)2010 TEST_F(HidlTest, SafeUnionSimpleTest) {
2011     EXPECT_OK(safeunionInterface->newLargeSafeUnion([&](const LargeSafeUnion& safeUnion) {
2012         EXPECT_OK(safeunionInterface->setA(safeUnion, -5, [&](const LargeSafeUnion& safeUnion) {
2013             EXPECT_EQ(LargeSafeUnion::hidl_discriminator::a, safeUnion.getDiscriminator());
2014             EXPECT_EQ(-5, safeUnion.a());
2015 
2016             uint64_t max = std::numeric_limits<uint64_t>::max();
2017             EXPECT_OK(
2018                 safeunionInterface->setD(safeUnion, max, [&](const LargeSafeUnion& safeUnion) {
2019                     EXPECT_EQ(LargeSafeUnion::hidl_discriminator::d, safeUnion.getDiscriminator());
2020                     EXPECT_EQ(max, safeUnion.d());
2021                 }));
2022         }));
2023     }));
2024 }
2025 
TEST_F(HidlTest,SafeUnionArrayLikeTypesTest)2026 TEST_F(HidlTest, SafeUnionArrayLikeTypesTest) {
2027     const std::array<int64_t, 5> testArray{1, -2, 3, -4, 5};
2028     const hidl_vec<uint64_t> testVector{std::numeric_limits<uint64_t>::max()};
2029 
2030     EXPECT_OK(safeunionInterface->newLargeSafeUnion([&](const LargeSafeUnion& safeUnion) {
2031         EXPECT_OK(
2032             safeunionInterface->setF(safeUnion, testArray, [&](const LargeSafeUnion& safeUnion) {
2033                 EXPECT_EQ(LargeSafeUnion::hidl_discriminator::f, safeUnion.getDiscriminator());
2034 
2035                 for (size_t i = 0; i < testArray.size(); i++) {
2036                     EXPECT_EQ(testArray[i], safeUnion.f()[i]);
2037                 }
2038             }));
2039 
2040         EXPECT_OK(
2041             safeunionInterface->setI(safeUnion, testVector, [&](const LargeSafeUnion& safeUnion) {
2042                 EXPECT_EQ(LargeSafeUnion::hidl_discriminator::i, safeUnion.getDiscriminator());
2043                 EXPECT_EQ(testVector, safeUnion.i());
2044             }));
2045     }));
2046 }
2047 
TEST_F(HidlTest,SafeUnionStringTypeTest)2048 TEST_F(HidlTest, SafeUnionStringTypeTest) {
2049     const std::string testString =
2050         "This is an inordinately long test string to exercise hidl_string types in safe unions.";
2051 
2052     EXPECT_OK(safeunionInterface->newLargeSafeUnion([&](const LargeSafeUnion& safeUnion) {
2053         EXPECT_OK(safeunionInterface->setG(
2054             safeUnion, hidl_string(testString), [&](const LargeSafeUnion& safeUnion) {
2055                 EXPECT_EQ(LargeSafeUnion::hidl_discriminator::g, safeUnion.getDiscriminator());
2056                 EXPECT_EQ(testString, std::string(safeUnion.g()));
2057             }));
2058     }));
2059 }
2060 
TEST_F(HidlTest,SafeUnionCopyConstructorTest)2061 TEST_F(HidlTest, SafeUnionCopyConstructorTest) {
2062     const hidl_vec<bool> testVector{true, false, true, false, false, false, true,  false,
2063                                     true, true,  true, false, false, true,  false, true};
2064 
2065     EXPECT_OK(safeunionInterface->newLargeSafeUnion([&](const LargeSafeUnion& safeUnion) {
2066         EXPECT_OK(
2067             safeunionInterface->setH(safeUnion, testVector, [&](const LargeSafeUnion& safeUnion) {
2068                 LargeSafeUnion safeUnionCopy(safeUnion);
2069 
2070                 EXPECT_EQ(LargeSafeUnion::hidl_discriminator::h, safeUnionCopy.getDiscriminator());
2071                 EXPECT_EQ(testVector, safeUnionCopy.h());
2072             }));
2073     }));
2074 }
2075 
2076 template <typename T>
testZeroInit(const std::string & header)2077 void testZeroInit(const std::string& header) {
2078     uint8_t buf[sizeof(T)];
2079     memset(buf, 0xFF, sizeof(buf));
2080 
2081     T* t = new (buf) T;
2082 
2083     for (size_t i = 0; i < sizeof(T); i++) {
2084         EXPECT_EQ(0, buf[i]) << header << " at offset: " << i;
2085     }
2086 
2087     t->~T();
2088     t = nullptr;
2089 
2090     memset(buf, 0xFF, sizeof(buf));
2091     t = new (buf) T(T());  // copy constructor
2092 
2093     for (size_t i = 0; i < sizeof(T); i++) {
2094         EXPECT_EQ(0, buf[i]) << header << " at offset: " << i;
2095     }
2096 
2097     t->~T();
2098     t = nullptr;
2099 
2100     memset(buf, 0xFF, sizeof(buf));
2101     const T aT = T();
2102     t = new (buf) T(std::move(aT));  // move constructor
2103 
2104     for (size_t i = 0; i < sizeof(T); i++) {
2105         EXPECT_EQ(0, buf[i]) << header << " at offset: " << i;
2106     }
2107 
2108     t->~T();
2109     t = nullptr;
2110 }
2111 
TEST_F(HidlTest,SafeUnionUninit)2112 TEST_F(HidlTest, SafeUnionUninit) {
2113     testZeroInit<SmallSafeUnion>("SmallSafeUnion");
2114     testZeroInit<LargeSafeUnion>("LargeSafeUnion");
2115     testZeroInit<InterfaceTypeSafeUnion>("InterfaceTypeSafeUnion");
2116     testZeroInit<HandleTypeSafeUnion>("HandleTypeSafeUnion");
2117 }
2118 
TEST_F(HidlTest,SafeUnionMoveConstructorTest)2119 TEST_F(HidlTest, SafeUnionMoveConstructorTest) {
2120     sp<IOtherInterface> otherInterface = new OtherInterface();
2121     ASSERT_EQ(1, otherInterface->getStrongCount());
2122 
2123     InterfaceTypeSafeUnion safeUnion;
2124     safeUnion.c(otherInterface);
2125     EXPECT_EQ(2, otherInterface->getStrongCount());
2126 
2127     InterfaceTypeSafeUnion anotherSafeUnion(std::move(safeUnion));
2128     EXPECT_EQ(InterfaceTypeSafeUnion::hidl_discriminator::c,
2129               anotherSafeUnion.getDiscriminator());
2130     EXPECT_EQ(2, otherInterface->getStrongCount());
2131 }
2132 
TEST_F(HidlTest,SafeUnionCopyAssignmentTest)2133 TEST_F(HidlTest, SafeUnionCopyAssignmentTest) {
2134     const hidl_vec<hidl_string> testVector{"So", "Many", "Words"};
2135     InterfaceTypeSafeUnion safeUnion;
2136     safeUnion.e(testVector);
2137 
2138     InterfaceTypeSafeUnion anotherSafeUnion;
2139     anotherSafeUnion = safeUnion;
2140 
2141     EXPECT_EQ(InterfaceTypeSafeUnion::hidl_discriminator::e, anotherSafeUnion.getDiscriminator());
2142     EXPECT_EQ(InterfaceTypeSafeUnion::hidl_discriminator::e, safeUnion.getDiscriminator());
2143     EXPECT_NE(&(safeUnion.e()), &(anotherSafeUnion.e()));
2144     EXPECT_EQ(testVector, anotherSafeUnion.e());
2145     EXPECT_EQ(testVector, safeUnion.e());
2146 }
2147 
TEST_F(HidlTest,SafeUnionMoveAssignmentTest)2148 TEST_F(HidlTest, SafeUnionMoveAssignmentTest) {
2149     sp<IOtherInterface> otherInterface = new OtherInterface();
2150     ASSERT_EQ(1, otherInterface->getStrongCount());
2151 
2152     InterfaceTypeSafeUnion safeUnion;
2153     safeUnion.c(otherInterface);
2154     EXPECT_EQ(2, otherInterface->getStrongCount());
2155 
2156     InterfaceTypeSafeUnion anotherSafeUnion;
2157     anotherSafeUnion.a(255);
2158     anotherSafeUnion = std::move(safeUnion);
2159 
2160     EXPECT_EQ(InterfaceTypeSafeUnion::hidl_discriminator::c,
2161               anotherSafeUnion.getDiscriminator());
2162     EXPECT_EQ(2, otherInterface->getStrongCount());
2163 }
2164 
TEST_F(HidlTest,SafeUnionMutateTest)2165 TEST_F(HidlTest, SafeUnionMutateTest) {
2166     const std::array<int64_t, 5> testArray{-1, -2, -3, -4, -5};
2167     const std::string testString = "Test string";
2168     LargeSafeUnion safeUnion;
2169 
2170     safeUnion.f(testArray);
2171     safeUnion.f()[0] += 10;
2172     EXPECT_EQ(testArray[0] + 10, safeUnion.f()[0]);
2173 
2174     safeUnion.j(ISafeUnion::J());
2175     safeUnion.j().j3 = testString;
2176     EXPECT_EQ(testString, std::string(safeUnion.j().j3));
2177 }
2178 
TEST_F(HidlTest,SafeUnionNestedTest)2179 TEST_F(HidlTest, SafeUnionNestedTest) {
2180     SmallSafeUnion smallSafeUnion;
2181     smallSafeUnion.a(1);
2182 
2183     EXPECT_OK(safeunionInterface->newLargeSafeUnion([&](const LargeSafeUnion& safeUnion) {
2184         EXPECT_OK(safeunionInterface->setL(
2185             safeUnion, smallSafeUnion, [&](const LargeSafeUnion& safeUnion) {
2186                 EXPECT_EQ(LargeSafeUnion::hidl_discriminator::l, safeUnion.getDiscriminator());
2187 
2188                 EXPECT_EQ(SmallSafeUnion::hidl_discriminator::a, safeUnion.l().getDiscriminator());
2189                 EXPECT_EQ(1, safeUnion.l().a());
2190             }));
2191     }));
2192 }
2193 
TEST_F(HidlTest,SafeUnionEnumTest)2194 TEST_F(HidlTest, SafeUnionEnumTest) {
2195     EXPECT_OK(safeunionInterface->newLargeSafeUnion([&](const LargeSafeUnion& safeUnion) {
2196         EXPECT_OK(safeunionInterface->setM(
2197             safeUnion, ISafeUnion::BitField::V1, [&](const LargeSafeUnion& safeUnion) {
2198                 EXPECT_EQ(LargeSafeUnion::hidl_discriminator::m, safeUnion.getDiscriminator());
2199                 EXPECT_EQ(ISafeUnion::BitField::V1, safeUnion.m());
2200             }));
2201     }));
2202 }
2203 
TEST_F(HidlTest,SafeUnionBitFieldTest)2204 TEST_F(HidlTest, SafeUnionBitFieldTest) {
2205     EXPECT_OK(safeunionInterface->newLargeSafeUnion([&](const LargeSafeUnion& safeUnion) {
2206         EXPECT_OK(safeunionInterface->setN(
2207             safeUnion, 0 | ISafeUnion::BitField::V1, [&](const LargeSafeUnion& safeUnion) {
2208                 EXPECT_EQ(LargeSafeUnion::hidl_discriminator::n, safeUnion.getDiscriminator());
2209                 EXPECT_EQ(0 | ISafeUnion::BitField::V1, safeUnion.n());
2210             }));
2211     }));
2212 }
2213 
TEST_F(HidlTest,SafeUnionInterfaceTest)2214 TEST_F(HidlTest, SafeUnionInterfaceTest) {
2215     const std::array<int8_t, 7> testArray{-1, -2, -3, 0, 1, 2, 3};
2216     const hidl_vec<hidl_string> testVector{"So", "Many", "Words"};
2217     const std::string testStringA = "Hello";
2218     const std::string testStringB = "World";
2219 
2220     const std::string serviceName = "otherinterface";
2221     sp<IOtherInterface> otherInterface = new OtherInterface();
2222     EXPECT_EQ(::android::OK, otherInterface->registerAsService(serviceName));
2223 
2224     EXPECT_OK(
2225         safeunionInterface->newInterfaceTypeSafeUnion([&](const InterfaceTypeSafeUnion& safeUnion) {
2226             EXPECT_EQ(InterfaceTypeSafeUnion::hidl_discriminator::noinit,
2227                       safeUnion.getDiscriminator());
2228 
2229             isOk(safeunionInterface->setInterfaceB(
2230                 safeUnion, testArray, [&](const InterfaceTypeSafeUnion& safeUnion) {
2231                     EXPECT_EQ(InterfaceTypeSafeUnion::hidl_discriminator::b,
2232                               safeUnion.getDiscriminator());
2233 
2234                     for (size_t i = 0; i < testArray.size(); i++) {
2235                         EXPECT_EQ(testArray[i], safeUnion.b()[i]);
2236                     }
2237 
2238                     EXPECT_OK(safeunionInterface->setInterfaceC(
2239                         safeUnion, otherInterface, [&](const InterfaceTypeSafeUnion& safeUnion) {
2240                             EXPECT_EQ(InterfaceTypeSafeUnion::hidl_discriminator::c,
2241                                       safeUnion.getDiscriminator());
2242 
2243                             EXPECT_OK(safeUnion.c()->concatTwoStrings(
2244                                 testStringA, testStringB, [&](const hidl_string& result) {
2245                                     EXPECT_EQ(testStringA + testStringB, std::string(result));
2246                                 }));
2247                         }));
2248                 }));
2249 
2250             EXPECT_OK(safeunionInterface->setInterfaceD(
2251                 safeUnion, testStringA, [&](const InterfaceTypeSafeUnion& safeUnion) {
2252                     EXPECT_EQ(InterfaceTypeSafeUnion::hidl_discriminator::d,
2253                               safeUnion.getDiscriminator());
2254                     EXPECT_EQ(testStringA, safeUnion.d());
2255                 }));
2256 
2257             EXPECT_OK(safeunionInterface->setInterfaceE(
2258                 safeUnion, testVector, [&](const InterfaceTypeSafeUnion& safeUnion) {
2259                     EXPECT_EQ(InterfaceTypeSafeUnion::hidl_discriminator::e,
2260                               safeUnion.getDiscriminator());
2261                     EXPECT_EQ(testVector, safeUnion.e());
2262                 }));
2263         }));
2264 }
2265 
TEST_F(HidlTest,SafeUnionNullHandleTest)2266 TEST_F(HidlTest, SafeUnionNullHandleTest) {
2267     HandleTypeSafeUnion safeUnion;
2268 
2269     EXPECT_OK(safeunionInterface->setHandleA(
2270         safeUnion, hidl_handle(nullptr), [&](const HandleTypeSafeUnion& safeUnion) {
2271             EXPECT_EQ(HandleTypeSafeUnion::hidl_discriminator::a,
2272                       safeUnion.getDiscriminator());
2273 
2274             checkNativeHandlesDataEquality(nullptr, safeUnion.a().getNativeHandle());
2275         }));
2276 }
2277 
TEST_F(HidlTest,SafeUnionSimpleHandleTest)2278 TEST_F(HidlTest, SafeUnionSimpleHandleTest) {
2279     const std::array<int, 6> testData{2, -32, 10, -4329454, 11, 24};
2280     native_handle_t* h = native_handle_create(0, testData.size());
2281     ASSERT_EQ(sizeof(testData), testData.size() * sizeof(int));
2282     std::memcpy(h->data, testData.data(), sizeof(testData));
2283 
2284     std::array<hidl_handle, 5> testArray;
2285     for (size_t i = 0; i < testArray.size(); i++) {
2286         testArray[i].setTo(native_handle_clone(h), true /* shouldOwn */);
2287     }
2288 
2289     std::vector<hidl_handle> testVector(256);
2290     for (size_t i = 0; i < testVector.size(); i++) {
2291         testVector[i].setTo(native_handle_clone(h), true /* shouldOwn */);
2292     }
2293 
2294     EXPECT_OK(
2295         safeunionInterface->newHandleTypeSafeUnion([&](const HandleTypeSafeUnion& safeUnion) {
2296             EXPECT_OK(safeunionInterface->setHandleA(
2297                 safeUnion, hidl_handle(h), [&](const HandleTypeSafeUnion& safeUnion) {
2298                     EXPECT_EQ(HandleTypeSafeUnion::hidl_discriminator::a,
2299                               safeUnion.getDiscriminator());
2300 
2301                     checkNativeHandlesDataEquality(h, safeUnion.a().getNativeHandle());
2302                 }));
2303 
2304             EXPECT_OK(safeunionInterface->setHandleB(
2305                 safeUnion, testArray, [&](const HandleTypeSafeUnion& safeUnion) {
2306                     EXPECT_EQ(HandleTypeSafeUnion::hidl_discriminator::b,
2307                               safeUnion.getDiscriminator());
2308 
2309                     for (size_t i = 0; i < testArray.size(); i++) {
2310                         checkNativeHandlesDataEquality(h, safeUnion.b()[i].getNativeHandle());
2311                     }
2312                 }));
2313 
2314             EXPECT_OK(safeunionInterface->setHandleC(
2315                 safeUnion, testVector, [&](const HandleTypeSafeUnion& safeUnion) {
2316                     EXPECT_EQ(HandleTypeSafeUnion::hidl_discriminator::c,
2317                               safeUnion.getDiscriminator());
2318 
2319                     for (size_t i = 0; i < testVector.size(); i++) {
2320                         checkNativeHandlesDataEquality(h, safeUnion.c()[i].getNativeHandle());
2321                     }
2322                 }));
2323         }));
2324 
2325     native_handle_delete(h);
2326 }
2327 
TEST_F(HidlTest,SafeUnionVecOfHandlesWithOneFdTest)2328 TEST_F(HidlTest, SafeUnionVecOfHandlesWithOneFdTest) {
2329     const std::vector<std::string> testStrings{"This ", "is ", "so ", "much ", "data!\n"};
2330     const std::string testFileName = "/data/local/tmp/SafeUnionVecOfHandlesWithOneFdTest";
2331     const std::array<int, 6> testData{2, -32, 10, -4329454, 11, 24};
2332     ASSERT_EQ(sizeof(testData), testData.size() * sizeof(int));
2333 
2334     const std::string goldenResult = std::accumulate(testStrings.begin(),
2335                                                      testStrings.end(),
2336                                                      std::string());
2337 
2338     int fd = open(testFileName.c_str(), (O_RDWR | O_TRUNC | O_CREAT), (S_IRUSR | S_IWUSR));
2339     ASSERT_TRUE(fd >= 0);
2340 
2341     native_handle* h = native_handle_create(1 /* numFds */, testData.size() /* numInts */);
2342     std::memcpy(&(h->data[1]), testData.data(), sizeof(testData));
2343     h->data[0] = fd;
2344 
2345     hidl_vec<hidl_handle> testHandles(testStrings.size());
2346     for (size_t i = 0; i < testHandles.size(); i++) {
2347         testHandles[i].setTo(native_handle_clone(h), true /* shouldOwn */);
2348     }
2349 
2350     EXPECT_OK(
2351         safeunionInterface->newHandleTypeSafeUnion([&](const HandleTypeSafeUnion& safeUnion) {
2352             EXPECT_OK(safeunionInterface->setHandleC(
2353                 safeUnion, testHandles, [&](const HandleTypeSafeUnion& safeUnion) {
2354                     EXPECT_EQ(HandleTypeSafeUnion::hidl_discriminator::c,
2355                               safeUnion.getDiscriminator());
2356 
2357                     for (size_t i = 0; i < safeUnion.c().size(); i++) {
2358                         const native_handle_t* reference = testHandles[i].getNativeHandle();
2359                         const native_handle_t* result = safeUnion.c()[i].getNativeHandle();
2360                         checkNativeHandlesDataEquality(reference, result);
2361 
2362                         // Original FDs should be dup'd
2363                         int resultFd = result->data[0];
2364                         EXPECT_NE(reference->data[0], resultFd);
2365 
2366                         EXPECT_TRUE(android::base::WriteStringToFd(testStrings[i], resultFd));
2367                         EXPECT_EQ(0, fsync(resultFd));
2368                     }
2369                 }));
2370         }));
2371 
2372     std::string result;
2373     lseek(fd, 0, SEEK_SET);
2374 
2375     EXPECT_TRUE(android::base::ReadFdToString(fd, &result));
2376     EXPECT_EQ(goldenResult, result);
2377 
2378     native_handle_delete(h);
2379     EXPECT_EQ(0, close(fd));
2380     EXPECT_EQ(0, remove(testFileName.c_str()));
2381 }
2382 
TEST_F(HidlTest,SafeUnionHandleWithMultipleFdsTest)2383 TEST_F(HidlTest, SafeUnionHandleWithMultipleFdsTest) {
2384     const std::vector<std::string> testStrings{"This ", "is ", "so ", "much ", "data!\n"};
2385     const std::string testFileName = "/data/local/tmp/SafeUnionHandleWithMultipleFdsTest";
2386     const std::array<int, 6> testData{2, -32, 10, -4329454, 11, 24};
2387     ASSERT_EQ(sizeof(testData), testData.size() * sizeof(int));
2388 
2389     const std::string goldenResult = std::accumulate(testStrings.begin(),
2390                                                      testStrings.end(),
2391                                                      std::string());
2392 
2393     int fd = open(testFileName.c_str(), (O_RDWR | O_TRUNC | O_CREAT), (S_IRUSR | S_IWUSR));
2394     ASSERT_TRUE(fd >= 0);
2395 
2396     const int numFds = testStrings.size();
2397     native_handle* h = native_handle_create(numFds, testData.size() /* numInts */);
2398     std::memcpy(&(h->data[numFds]), testData.data(), sizeof(testData));
2399     for (size_t i = 0; i < numFds; i++) {
2400         h->data[i] = fd;
2401     }
2402 
2403     hidl_handle testHandle;
2404     testHandle.setTo(h, false /* shouldOwn */);
2405 
2406     EXPECT_OK(
2407         safeunionInterface->newHandleTypeSafeUnion([&](const HandleTypeSafeUnion& safeUnion) {
2408             EXPECT_OK(safeunionInterface->setHandleA(
2409                 safeUnion, testHandle, [&](const HandleTypeSafeUnion& safeUnion) {
2410                     EXPECT_EQ(HandleTypeSafeUnion::hidl_discriminator::a,
2411                               safeUnion.getDiscriminator());
2412 
2413                     const native_handle_t* result = safeUnion.a().getNativeHandle();
2414                     checkNativeHandlesDataEquality(h, result);
2415 
2416                     for (size_t i = 0; i < result->numFds; i++) {
2417                         // Original FDs should be dup'd
2418                         int resultFd = result->data[i];
2419                         EXPECT_NE(h->data[i], resultFd);
2420 
2421                         EXPECT_TRUE(android::base::WriteStringToFd(testStrings[i], resultFd));
2422                         EXPECT_EQ(0, fsync(resultFd));
2423                     }
2424                 }));
2425         }));
2426 
2427     std::string result;
2428     lseek(fd, 0, SEEK_SET);
2429 
2430     EXPECT_TRUE(android::base::ReadFdToString(fd, &result));
2431     EXPECT_EQ(goldenResult, result);
2432 
2433     native_handle_delete(h);
2434     EXPECT_EQ(0, close(fd));
2435     EXPECT_EQ(0, remove(testFileName.c_str()));
2436 }
2437 
TEST_F(HidlTest,SafeUnionEqualityTest)2438 TEST_F(HidlTest, SafeUnionEqualityTest) {
2439     EXPECT_OK(safeunionInterface->newLargeSafeUnion([&](const LargeSafeUnion& one) {
2440         EXPECT_OK(safeunionInterface->newLargeSafeUnion([&](const LargeSafeUnion& two) {
2441             EXPECT_TRUE(one == two);
2442             EXPECT_FALSE(one != two);
2443         }));
2444 
2445         EXPECT_OK(safeunionInterface->setA(one, 1, [&](const LargeSafeUnion& one) {
2446             EXPECT_OK(safeunionInterface->newLargeSafeUnion([&](const LargeSafeUnion& two) {
2447                 EXPECT_FALSE(one == two);
2448                 EXPECT_TRUE(one != two);
2449             }));
2450 
2451             EXPECT_OK(safeunionInterface->newLargeSafeUnion([&](const LargeSafeUnion& two) {
2452                 EXPECT_OK(safeunionInterface->setB(two, 1, [&](const LargeSafeUnion& two) {
2453                     EXPECT_FALSE(one == two);
2454                     EXPECT_TRUE(one != two);
2455                 }));
2456             }));
2457 
2458             EXPECT_OK(safeunionInterface->newLargeSafeUnion([&](const LargeSafeUnion& two) {
2459                 EXPECT_OK(safeunionInterface->setA(two, 2, [&](const LargeSafeUnion& two) {
2460                     EXPECT_FALSE(one == two);
2461                     EXPECT_TRUE(one != two);
2462                 }));
2463             }));
2464 
2465             EXPECT_OK(safeunionInterface->newLargeSafeUnion([&](const LargeSafeUnion& two) {
2466                 EXPECT_OK(safeunionInterface->setA(two, 1, [&](const LargeSafeUnion& two) {
2467                     EXPECT_TRUE(one == two);
2468                     EXPECT_FALSE(one != two);
2469                 }));
2470             }));
2471         }));
2472     }));
2473 }
2474 
TEST_F(HidlTest,SafeUnionSimpleDestructorTest)2475 TEST_F(HidlTest, SafeUnionSimpleDestructorTest) {
2476     sp<IOtherInterface> otherInterface = new OtherInterface();
2477     ASSERT_EQ(1, otherInterface->getStrongCount());
2478 
2479     {
2480         InterfaceTypeSafeUnion safeUnion;
2481         safeUnion.c(otherInterface);
2482         EXPECT_EQ(2, otherInterface->getStrongCount());
2483     }
2484 
2485     EXPECT_EQ(1, otherInterface->getStrongCount());
2486 }
2487 
TEST_F(HidlTest,SafeUnionSwitchActiveComponentsDestructorTest)2488 TEST_F(HidlTest, SafeUnionSwitchActiveComponentsDestructorTest) {
2489     sp<IOtherInterface> otherInterface = new OtherInterface();
2490     ASSERT_EQ(1, otherInterface->getStrongCount());
2491 
2492     InterfaceTypeSafeUnion safeUnion;
2493     safeUnion.c(otherInterface);
2494     EXPECT_EQ(2, otherInterface->getStrongCount());
2495 
2496     safeUnion.a(1);
2497     EXPECT_EQ(1, otherInterface->getStrongCount());
2498 }
2499 
TEST_F(HidlTest,SafeUnionCppSpecificTest)2500 TEST_F(HidlTest, SafeUnionCppSpecificTest) {
2501     ICppSafeUnion::PointerFmqSafeUnion pointerFmqSafeUnion;
2502     pointerFmqSafeUnion.fmqSync({std::vector<GrantorDescriptor>(), native_handle_create(0, 1), 5});
2503 
2504     EXPECT_OK(cppSafeunionInterface->repeatPointerFmqSafeUnion(
2505         pointerFmqSafeUnion, [&](const ICppSafeUnion::PointerFmqSafeUnion& fmq) {
2506             ASSERT_EQ(pointerFmqSafeUnion.getDiscriminator(), fmq.getDiscriminator());
2507             checkMQDescriptorEquality(pointerFmqSafeUnion.fmqSync(), fmq.fmqSync());
2508         }));
2509 
2510     ICppSafeUnion::FmqSafeUnion fmqSafeUnion;
2511     fmqSafeUnion.fmqUnsync({std::vector<GrantorDescriptor>(), native_handle_create(0, 1), 5});
2512 
2513     EXPECT_OK(cppSafeunionInterface->repeatFmqSafeUnion(
2514         fmqSafeUnion, [&](const ICppSafeUnion::FmqSafeUnion& fmq) {
2515             ASSERT_EQ(fmqSafeUnion.getDiscriminator(), fmq.getDiscriminator());
2516             checkMQDescriptorEquality(fmqSafeUnion.fmqUnsync(), fmq.fmqUnsync());
2517         }));
2518 }
2519 
2520 class HidlMultithreadTest : public ::testing::Test {
2521    public:
2522     sp<IMultithread> multithreadInterface;
2523     TestMode mode = TestMode::PASSTHROUGH;
2524 
SetUp()2525     void SetUp() override {
2526         ALOGI("Test setup beginning...");
2527         multithreadInterface = gHidlEnvironment->multithreadInterface;
2528         mode = gHidlEnvironment->mode;
2529         ALOGI("Test setup complete");
2530     }
2531 
test_multithread(int maxThreads,int numThreads)2532     void test_multithread(int maxThreads, int numThreads) {
2533         LOG(INFO) << "CLIENT call setNumThreads("
2534                   << maxThreads << ", " << numThreads << ")";
2535         EXPECT_OK(multithreadInterface->setNumThreads(maxThreads, numThreads));
2536 
2537         std::vector<std::future<bool>> threads;
2538 
2539         for (int i = 0; i != numThreads; ++i) {
2540             LOG(INFO) << "CLIENT call runNewThread";
2541             threads.emplace_back(std::async(
2542                 std::launch::async, [&]() { return (bool)multithreadInterface->runNewThread(); }));
2543         }
2544 
2545         bool noTimeout = std::all_of(threads.begin(), threads.end(),
2546                                      [](std::future<bool>& thread) { return thread.get(); });
2547         EXPECT_EQ(noTimeout, maxThreads >= numThreads || mode == PASSTHROUGH);
2548     }
2549 };
2550 
2551 // If it fails first try to increment timeout duration at
2552 // hardware/interfaces/tests/multithread/1.0/default
TEST_F(HidlMultithreadTest,MultithreadTest)2553 TEST_F(HidlMultithreadTest, MultithreadTest) {
2554     // configureRpcThreadpool doesn't stop threads,
2555     // so maxThreads should not decrease
2556     test_multithread(1, 1);
2557     test_multithread(2, 1);
2558     test_multithread(2, 2);
2559     test_multithread(2, 3);
2560     test_multithread(10, 5);
2561     test_multithread(10, 10);
2562     test_multithread(10, 15);
2563     test_multithread(20, 30);
2564     test_multithread(20, 20);
2565     test_multithread(20, 10);
2566 }
2567 
2568 #if HIDL_RUN_POINTER_TESTS
2569 
TEST_F(HidlTest,PassAGraphTest)2570 TEST_F(HidlTest, PassAGraphTest) {
2571     IGraph::Graph g;
2572     ::android::simpleGraph(g);
2573     ::android::logSimpleGraph("CLIENT", g);
2574     ALOGI("CLIENT call passAGraph");
2575     EXPECT_OK(graphInterface->passAGraph(g));
2576 }
2577 
TEST_F(HidlTest,GiveAGraphTest)2578 TEST_F(HidlTest, GiveAGraphTest) {
2579     EXPECT_OK(graphInterface->giveAGraph([&](const auto &newGraph) {
2580         ::android::logSimpleGraph("CLIENT", newGraph);
2581         EXPECT_TRUE(::android::isSimpleGraph(newGraph));
2582     }));
2583 }
TEST_F(HidlTest,PassANodeTest)2584 TEST_F(HidlTest, PassANodeTest) {
2585     IGraph::Node node; node.data = 10;
2586     EXPECT_OK(graphInterface->passANode(node));
2587 }
TEST_F(HidlTest,PassTwoGraphsTest)2588 TEST_F(HidlTest, PassTwoGraphsTest) {
2589     IGraph::Graph g;
2590     ::android::simpleGraph(g);
2591     EXPECT_OK(graphInterface->passTwoGraphs(&g, &g));
2592 }
TEST_F(HidlTest,PassAGammaTest)2593 TEST_F(HidlTest, PassAGammaTest) {
2594     IGraph::Theta s; s.data = 500;
2595     IGraph::Alpha a; a.s_ptr = &s;
2596     IGraph::Beta  b; b.s_ptr = &s;
2597     IGraph::Gamma c; c.a_ptr = &a; c.b_ptr = &b;
2598     ALOGI("CLIENT calling passAGamma: c.a = %p, c.b = %p, c.a->s = %p, c.b->s = %p",
2599         c.a_ptr, c.b_ptr, c.a_ptr->s_ptr, c.b_ptr->s_ptr);
2600     EXPECT_OK(graphInterface->passAGamma(c));
2601 }
TEST_F(HidlTest,PassNullTest)2602 TEST_F(HidlTest, PassNullTest) {
2603     IGraph::Gamma c;
2604     c.a_ptr = nullptr;
2605     c.b_ptr = nullptr;
2606     EXPECT_OK(graphInterface->passAGamma(c));
2607 }
TEST_F(HidlTest,PassASimpleRefTest)2608 TEST_F(HidlTest, PassASimpleRefTest) {
2609     IGraph::Theta s;
2610     s.data = 500;
2611     IGraph::Alpha a;
2612     a.s_ptr = &s;
2613     EXPECT_OK(graphInterface->passASimpleRef(&a));
2614 }
TEST_F(HidlTest,PassASimpleRefSTest)2615 TEST_F(HidlTest, PassASimpleRefSTest) {
2616     IGraph::Theta s;
2617     s.data = 500;
2618     ALOGI("CLIENT call passASimpleRefS with %p", &s);
2619     EXPECT_OK(graphInterface->passASimpleRefS(&s));
2620 }
TEST_F(HidlTest,GiveASimpleRefTest)2621 TEST_F(HidlTest, GiveASimpleRefTest) {
2622     EXPECT_OK(graphInterface->giveASimpleRef([&](const auto & a_ptr) {
2623         EXPECT_EQ(a_ptr->s_ptr->data, 500);
2624     }));
2625 }
TEST_F(HidlTest,GraphReportErrorsTest)2626 TEST_F(HidlTest, GraphReportErrorsTest) {
2627     Return<int32_t> ret = graphInterface->getErrors();
2628     EXPECT_OK(ret);
2629     EXPECT_EQ(int32_t(ret), 0);
2630 }
2631 
TEST_F(HidlTest,PointerPassOldBufferTest)2632 TEST_F(HidlTest, PointerPassOldBufferTest) {
2633     EXPECT_OK(validationPointerInterface->bar1([&](const auto& sptr, const auto& s) {
2634         EXPECT_OK(pointerInterface->foo1(sptr, s));
2635     }));
2636 }
TEST_F(HidlTest,PointerPassOldBufferTest2)2637 TEST_F(HidlTest, PointerPassOldBufferTest2) {
2638     EXPECT_OK(validationPointerInterface->bar2([&](const auto& s, const auto& a) {
2639         EXPECT_OK(pointerInterface->foo2(s, a));
2640     }));
2641 }
TEST_F(HidlTest,PointerPassSameOldBufferPointerTest)2642 TEST_F(HidlTest, PointerPassSameOldBufferPointerTest) {
2643     EXPECT_OK(validationPointerInterface->bar3([&](const auto& s, const auto& a, const auto& b) {
2644         EXPECT_OK(pointerInterface->foo3(s, a, b));
2645     }));
2646 }
TEST_F(HidlTest,PointerPassOnlyTest)2647 TEST_F(HidlTest, PointerPassOnlyTest) {
2648     EXPECT_OK(validationPointerInterface->bar4([&](const auto& s) {
2649         EXPECT_OK(pointerInterface->foo4(s));
2650     }));
2651 }
TEST_F(HidlTest,PointerPassTwoEmbeddedTest)2652 TEST_F(HidlTest, PointerPassTwoEmbeddedTest) {
2653     EXPECT_OK(validationPointerInterface->bar5([&](const auto& a, const auto& b) {
2654         EXPECT_OK(pointerInterface->foo5(a, b));
2655     }));
2656 }
TEST_F(HidlTest,PointerPassIndirectBufferHasDataTest)2657 TEST_F(HidlTest, PointerPassIndirectBufferHasDataTest) {
2658     EXPECT_OK(validationPointerInterface->bar6([&](const auto& a) {
2659         EXPECT_OK(pointerInterface->foo6(a));
2660     }));
2661 }
TEST_F(HidlTest,PointerPassTwoIndirectBufferTest)2662 TEST_F(HidlTest, PointerPassTwoIndirectBufferTest) {
2663     EXPECT_OK(validationPointerInterface->bar7([&](const auto& a, const auto& b) {
2664         EXPECT_OK(pointerInterface->foo7(a, b));
2665     }));
2666 }
TEST_F(HidlTest,PointerPassDeeplyIndirectTest)2667 TEST_F(HidlTest, PointerPassDeeplyIndirectTest) {
2668     EXPECT_OK(validationPointerInterface->bar8([&](const auto& d) {
2669         EXPECT_OK(pointerInterface->foo8(d));
2670     }));
2671 }
TEST_F(HidlTest,PointerPassStringRefTest)2672 TEST_F(HidlTest, PointerPassStringRefTest) {
2673     EXPECT_OK(validationPointerInterface->bar9([&](const auto& str) {
2674         EXPECT_OK(pointerInterface->foo9(str));
2675     }));
2676 }
TEST_F(HidlTest,PointerPassRefVecTest)2677 TEST_F(HidlTest, PointerPassRefVecTest) {
2678     EXPECT_OK(validationPointerInterface->bar10([&](const auto& v) {
2679         EXPECT_OK(pointerInterface->foo10(v));
2680     }));
2681 }
TEST_F(HidlTest,PointerPassVecRefTest)2682 TEST_F(HidlTest, PointerPassVecRefTest) {
2683     EXPECT_OK(validationPointerInterface->bar11([&](const auto& v) {
2684         EXPECT_OK(pointerInterface->foo11(v));
2685     }));
2686 }
TEST_F(HidlTest,PointerPassArrayRefTest)2687 TEST_F(HidlTest, PointerPassArrayRefTest) {
2688     EXPECT_OK(validationPointerInterface->bar12([&](const auto& array) {
2689         EXPECT_OK(pointerInterface->foo12(array));
2690     }));
2691 }
TEST_F(HidlTest,PointerPassRefArrayTest)2692 TEST_F(HidlTest, PointerPassRefArrayTest) {
2693     EXPECT_OK(validationPointerInterface->bar13([&](const auto& array) {
2694         EXPECT_OK(pointerInterface->foo13(array));
2695     }));
2696 }
TEST_F(HidlTest,PointerPass3RefTest)2697 TEST_F(HidlTest, PointerPass3RefTest) {
2698     EXPECT_OK(validationPointerInterface->bar14([&](const auto& p3) {
2699         EXPECT_OK(pointerInterface->foo14(p3));
2700     }));
2701 }
TEST_F(HidlTest,PointerPassInt3RefTest)2702 TEST_F(HidlTest, PointerPassInt3RefTest) {
2703     EXPECT_OK(validationPointerInterface->bar15([&](const auto& p3) {
2704         EXPECT_OK(pointerInterface->foo15(p3));
2705     }));
2706 }
TEST_F(HidlTest,PointerPassEmbeddedPointersTest)2707 TEST_F(HidlTest, PointerPassEmbeddedPointersTest) {
2708     EXPECT_OK(validationPointerInterface->bar16([&](const auto& p) {
2709         EXPECT_OK(pointerInterface->foo16(p));
2710     }));
2711 }
TEST_F(HidlTest,PointerPassEmbeddedPointers2Test)2712 TEST_F(HidlTest, PointerPassEmbeddedPointers2Test) {
2713     EXPECT_OK(validationPointerInterface->bar17([&](const auto& p) {
2714         EXPECT_OK(pointerInterface->foo17(p));
2715     }));
2716 }
TEST_F(HidlTest,PointerPassCopiedStringTest)2717 TEST_F(HidlTest, PointerPassCopiedStringTest) {
2718     EXPECT_OK(validationPointerInterface->bar18([&](const auto& str_ref, const auto& str_ref2, const auto& str) {
2719         EXPECT_OK(pointerInterface->foo18(str_ref, str_ref2, str));
2720     }));
2721 }
TEST_F(HidlTest,PointerPassCopiedVecTest)2722 TEST_F(HidlTest, PointerPassCopiedVecTest) {
2723     EXPECT_OK(validationPointerInterface->bar19([&](const auto& a_vec_ref, const auto& a_vec, const auto& a_vec_ref2) {
2724         EXPECT_OK(pointerInterface->foo19(a_vec_ref, a_vec, a_vec_ref2));
2725     }));
2726 }
TEST_F(HidlTest,PointerPassBigRefVecTest)2727 TEST_F(HidlTest, PointerPassBigRefVecTest) {
2728     EXPECT_OK(validationPointerInterface->bar20([&](const auto& v) {
2729         EXPECT_FAIL(pointerInterface->foo20(v));
2730     }));
2731 }
TEST_F(HidlTest,PointerPassMultidimArrayRefTest)2732 TEST_F(HidlTest, PointerPassMultidimArrayRefTest) {
2733     EXPECT_OK(validationPointerInterface->bar21([&](const auto& v) {
2734         EXPECT_OK(pointerInterface->foo21(v));
2735     }));
2736 }
TEST_F(HidlTest,PointerPassRefMultidimArrayTest)2737 TEST_F(HidlTest, PointerPassRefMultidimArrayTest) {
2738     EXPECT_OK(validationPointerInterface->bar22([&](const auto& v) {
2739         EXPECT_OK(pointerInterface->foo22(v));
2740     }));
2741 }
TEST_F(HidlTest,PointerGiveOldBufferTest)2742 TEST_F(HidlTest, PointerGiveOldBufferTest) {
2743     EXPECT_OK(pointerInterface->bar1([&](const auto& sptr, const auto& s) {
2744         EXPECT_OK(validationPointerInterface->foo1(sptr, s));
2745     }));
2746 }
TEST_F(HidlTest,PointerGiveOldBufferTest2)2747 TEST_F(HidlTest, PointerGiveOldBufferTest2) {
2748     EXPECT_OK(pointerInterface->bar2([&](const auto& s, const auto& a) {
2749         EXPECT_OK(validationPointerInterface->foo2(s, a));
2750     }));
2751 }
TEST_F(HidlTest,PointerGiveSameOldBufferPointerTest)2752 TEST_F(HidlTest, PointerGiveSameOldBufferPointerTest) {
2753     EXPECT_OK(pointerInterface->bar3([&](const auto& s, const auto& a, const auto& b) {
2754         EXPECT_OK(validationPointerInterface->foo3(s, a, b));
2755     }));
2756 }
TEST_F(HidlTest,PointerGiveOnlyTest)2757 TEST_F(HidlTest, PointerGiveOnlyTest) {
2758     EXPECT_OK(pointerInterface->bar4([&](const auto& s) {
2759         EXPECT_OK(validationPointerInterface->foo4(s));
2760     }));
2761 }
TEST_F(HidlTest,PointerGiveTwoEmbeddedTest)2762 TEST_F(HidlTest, PointerGiveTwoEmbeddedTest) {
2763     EXPECT_OK(pointerInterface->bar5([&](const auto& a, const auto& b) {
2764         EXPECT_OK(validationPointerInterface->foo5(a, b));
2765     }));
2766 }
TEST_F(HidlTest,PointerGiveIndirectBufferHasDataTest)2767 TEST_F(HidlTest, PointerGiveIndirectBufferHasDataTest) {
2768     EXPECT_OK(pointerInterface->bar6([&](const auto& a) {
2769         EXPECT_OK(validationPointerInterface->foo6(a));
2770     }));
2771 }
TEST_F(HidlTest,PointerGiveTwoIndirectBufferTest)2772 TEST_F(HidlTest, PointerGiveTwoIndirectBufferTest) {
2773     EXPECT_OK(pointerInterface->bar7([&](const auto& a, const auto& b) {
2774         EXPECT_OK(validationPointerInterface->foo7(a, b));
2775     }));
2776 }
TEST_F(HidlTest,PointerGiveDeeplyIndirectTest)2777 TEST_F(HidlTest, PointerGiveDeeplyIndirectTest) {
2778     EXPECT_OK(pointerInterface->bar8([&](const auto& d) {
2779         EXPECT_OK(validationPointerInterface->foo8(d));
2780     }));
2781 }
TEST_F(HidlTest,PointerGiveStringRefTest)2782 TEST_F(HidlTest, PointerGiveStringRefTest) {
2783     EXPECT_OK(pointerInterface->bar9([&](const auto& str) {
2784         EXPECT_OK(validationPointerInterface->foo9(str));
2785     }));
2786 }
TEST_F(HidlTest,PointerGiveRefVecTest)2787 TEST_F(HidlTest, PointerGiveRefVecTest) {
2788     EXPECT_OK(pointerInterface->bar10([&](const auto& v) {
2789         EXPECT_OK(validationPointerInterface->foo10(v));
2790     }));
2791 }
TEST_F(HidlTest,PointerGiveVecRefTest)2792 TEST_F(HidlTest, PointerGiveVecRefTest) {
2793     EXPECT_OK(pointerInterface->bar11([&](const auto& v) {
2794         EXPECT_OK(validationPointerInterface->foo11(v));
2795     }));
2796 }
TEST_F(HidlTest,PointerGiveArrayRefTest)2797 TEST_F(HidlTest, PointerGiveArrayRefTest) {
2798     EXPECT_OK(pointerInterface->bar12([&](const auto& array) {
2799         EXPECT_OK(validationPointerInterface->foo12(array));
2800     }));
2801 }
TEST_F(HidlTest,PointerGiveRefArrayTest)2802 TEST_F(HidlTest, PointerGiveRefArrayTest) {
2803     EXPECT_OK(pointerInterface->bar13([&](const auto& array) {
2804         EXPECT_OK(validationPointerInterface->foo13(array));
2805     }));
2806 }
TEST_F(HidlTest,PointerGive3RefTest)2807 TEST_F(HidlTest, PointerGive3RefTest) {
2808     EXPECT_OK(pointerInterface->bar14([&](const auto& p3) {
2809         EXPECT_OK(validationPointerInterface->foo14(p3));
2810     }));
2811 }
TEST_F(HidlTest,PointerGiveInt3RefTest)2812 TEST_F(HidlTest, PointerGiveInt3RefTest) {
2813     EXPECT_OK(pointerInterface->bar15([&](const auto& p3) {
2814         EXPECT_OK(validationPointerInterface->foo15(p3));
2815     }));
2816 }
TEST_F(HidlTest,PointerGiveEmbeddedPointersTest)2817 TEST_F(HidlTest, PointerGiveEmbeddedPointersTest) {
2818     EXPECT_OK(pointerInterface->bar16([&](const auto& p) {
2819         EXPECT_OK(validationPointerInterface->foo16(p));
2820     }));
2821 }
TEST_F(HidlTest,PointerGiveEmbeddedPointers2Test)2822 TEST_F(HidlTest, PointerGiveEmbeddedPointers2Test) {
2823     EXPECT_OK(pointerInterface->bar17([&](const auto& p) {
2824         EXPECT_OK(validationPointerInterface->foo17(p));
2825     }));
2826 }
TEST_F(HidlTest,PointerGiveCopiedStringTest)2827 TEST_F(HidlTest, PointerGiveCopiedStringTest) {
2828     EXPECT_OK(pointerInterface->bar18([&](const auto& str_ref, const auto& str_ref2, const auto& str) {
2829         EXPECT_OK(validationPointerInterface->foo18(str_ref, str_ref2, str));
2830     }));
2831 }
TEST_F(HidlTest,PointerGiveCopiedVecTest)2832 TEST_F(HidlTest, PointerGiveCopiedVecTest) {
2833     EXPECT_OK(pointerInterface->bar19([&](const auto& a_vec_ref, const auto& a_vec, const auto& a_vec_ref2) {
2834         EXPECT_OK(validationPointerInterface->foo19(a_vec_ref, a_vec, a_vec_ref2));
2835     }));
2836 }
2837 // This cannot be enabled until _hidl_error is not ignored when
2838 // the remote writeEmbeddedReferencesToParcel.
2839 // TEST_F(HidlTest, PointerGiveBigRefVecTest) {
2840 //     EXPECT_FAIL(pointerInterface->bar20([&](const auto& v) {
2841 //     }));
2842 // }
TEST_F(HidlTest,PointerGiveMultidimArrayRefTest)2843 TEST_F(HidlTest, PointerGiveMultidimArrayRefTest) {
2844     EXPECT_OK(pointerInterface->bar21([&](const auto& v) {
2845         EXPECT_OK(validationPointerInterface->foo21(v));
2846     }));
2847 }
TEST_F(HidlTest,PointerGiveRefMultidimArrayTest)2848 TEST_F(HidlTest, PointerGiveRefMultidimArrayTest) {
2849     EXPECT_OK(pointerInterface->bar22([&](const auto& v) {
2850         EXPECT_OK(validationPointerInterface->foo22(v));
2851     }));
2852 }
TEST_F(HidlTest,PointerReportErrorsTest)2853 TEST_F(HidlTest, PointerReportErrorsTest) {
2854     Return<int32_t> ret = pointerInterface->getErrors();
2855     EXPECT_OK(ret);
2856     EXPECT_EQ(int32_t(ret), 0);
2857 }
2858 #endif
2859 
2860 template <class T>
2861 struct WaitForServer {
runWaitForServer2862     static void run(const std::string& serviceName) {
2863         ::android::hardware::details::waitForHwService(T::descriptor, serviceName);
2864     }
2865 };
2866 
forkAndRunTests(TestMode mode,bool enableDelayMeasurementTests)2867 int forkAndRunTests(TestMode mode, bool enableDelayMeasurementTests) {
2868     pid_t child;
2869     int status;
2870 
2871     const char* modeText = (mode == BINDERIZED) ? "BINDERIZED" : "PASSTHROUGH";
2872     ALOGI("Start running tests in %s mode...", modeText);
2873     fprintf(stdout, "Start running tests in %s mode...\n", modeText);
2874     fflush(stdout);
2875 
2876     if ((child = fork()) == 0) {
2877         gHidlEnvironment = static_cast<HidlEnvironment *>(
2878                 ::testing::AddGlobalTestEnvironment(new HidlEnvironment(
2879                         mode, enableDelayMeasurementTests)));
2880         int testStatus = RUN_ALL_TESTS();
2881         if(testStatus == 0) {
2882             exit(0);
2883         }
2884         int failed = ::testing::UnitTest::GetInstance()->failed_test_count();
2885         if (failed == 0) {
2886             exit(-testStatus);
2887         }
2888         exit(failed);
2889     }
2890     waitpid(child, &status, 0 /* options */);
2891     ALOGI("All tests finished in %s mode.", modeText);
2892     fprintf(stdout, "All tests finished in %s mode.\n", modeText);
2893     fflush(stdout);
2894     return status;
2895 }
2896 
handleStatus(int status,const char * mode)2897 void handleStatus(int status, const char *mode) {
2898     if (status != 0) {
2899         if (WIFEXITED(status)) {
2900             status = WEXITSTATUS(status);
2901             if (status < 0) {
2902                 fprintf(stdout, "    RUN_ALL_TESTS returns %d for %s mode.\n", -status, mode);
2903             } else {
2904                 fprintf(stdout, "    %d test(s) failed for %s mode.\n", status, mode);
2905             }
2906         } else {
2907             fprintf(stdout, "    ERROR: %s child process exited abnormally with %d\n", mode, status);
2908         }
2909     }
2910 }
2911 
usage(const char * me)2912 static void usage(const char *me) {
2913     fprintf(stderr,
2914             "usage: %s [-b] [-p] [-d] [GTEST_OPTIONS]\n",
2915             me);
2916 
2917     fprintf(stderr, "         -b binderized mode only\n");
2918     fprintf(stderr, "         -p passthrough mode only\n");
2919     fprintf(stderr, "            (if -b and -p are both missing or both present, "
2920                                  "both modes are tested.)\n");
2921     fprintf(stderr, "         -d Enable delay measurement tests\n");
2922 }
2923 
main(int argc,char ** argv)2924 int main(int argc, char **argv) {
2925     setenv("TREBLE_TESTING_OVERRIDE", "true", true);
2926 
2927     const char *me = argv[0];
2928     bool b = false;
2929     bool p = false;
2930     bool d = false;
2931     struct option longopts[] = {{nullptr,0,nullptr,0}};
2932     int res;
2933     while ((res = getopt_long(argc, argv, "hbpd", longopts, nullptr)) >= 0) {
2934         switch (res) {
2935             case 'h': {
2936                 usage(me);
2937                 exit(1);
2938             } break;
2939 
2940             case 'b': {
2941                 b = true;
2942             } break;
2943 
2944             case 'p': {
2945                 p = true;
2946             } break;
2947 
2948             case 'd': {
2949                 d = true;
2950             } break;
2951 
2952             case '?':
2953             default: {
2954                 // ignore. pass to gTest.
2955             } break;
2956         }
2957     }
2958     if (!b && !p) {
2959         b = p = true;
2960     }
2961 
2962     ::testing::InitGoogleTest(&argc, argv);
2963     // put test in child process because RUN_ALL_TESTS
2964     // should not be run twice.
2965     int pStatus = p ? forkAndRunTests(PASSTHROUGH, d) : 0;
2966     int bStatus = b ? forkAndRunTests(BINDERIZED, d)  : 0;
2967 
2968     fprintf(stdout, "\n=========================================================\n\n"
2969                     "    Summary:\n\n");
2970     if (p) {
2971         ALOGI("PASSTHROUGH Test result = %d", pStatus);
2972         handleStatus(pStatus, "PASSTHROUGH");
2973     }
2974     if (b) {
2975         runOnEachServer<WaitForServer>();
2976         ALOGI("BINDERIZED Test result = %d", bStatus);
2977         handleStatus(bStatus, "BINDERIZED ");
2978     }
2979 
2980     if (pStatus == 0 && bStatus == 0) {
2981         fprintf(stdout, "    Hooray! All tests passed.\n");
2982     }
2983     fprintf(stdout, "\n=========================================================\n\n");
2984 
2985     return pStatus + bStatus != 0;
2986 }
2987