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      1 /*
      2  * Copyright (C) 2016 The Android Open Source Project
      3  *
      4  * Licensed under the Apache License, Version 2.0 (the "License");
      5  * you may not use this file except in compliance with the License.
      6  * You may obtain a copy of the License at
      7  *
      8  *      http://www.apache.org/licenses/LICENSE-2.0
      9  *
     10  * Unless required by applicable law or agreed to in writing, software
     11  * distributed under the License is distributed on an "AS IS" BASIS,
     12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
     13  * See the License for the specific language governing permissions and
     14  * limitations under the License.
     15  */
     16 
     17 #define LOG_TAG "memtrack_hidl_hal_test"
     18 #include <android-base/logging.h>
     19 #include <android-base/unique_fd.h>
     20 
     21 #include <android/hardware/memtrack/1.0/IMemtrack.h>
     22 
     23 #include <VtsHalHidlTargetTestBase.h>
     24 
     25 #include <fcntl.h>
     26 #include <algorithm>
     27 #include <vector>
     28 
     29 using ::android::hardware::memtrack::V1_0::IMemtrack;
     30 using ::android::hardware::memtrack::V1_0::MemtrackRecord;
     31 using ::android::hardware::memtrack::V1_0::MemtrackFlag;
     32 using ::android::hardware::memtrack::V1_0::MemtrackType;
     33 using ::android::hardware::memtrack::V1_0::MemtrackStatus;
     34 using ::android::hardware::hidl_vec;
     35 using ::android::hardware::Return;
     36 using ::android::sp;
     37 using ::android::base::unique_fd;
     38 using std::vector;
     39 using std::count_if;
     40 
     41 class MemtrackHidlTest : public ::testing::VtsHalHidlTargetTestBase {
     42  public:
     43   virtual void SetUp() override {
     44     memtrack = ::testing::VtsHalHidlTargetTestBase::getService<IMemtrack>();
     45     ASSERT_NE(memtrack, nullptr);
     46   }
     47 
     48   virtual void TearDown() override {}
     49 
     50   sp<IMemtrack> memtrack;
     51 };
     52 
     53 /* Returns true if flags contains at least min, and no more than max,
     54  * of the flags in flagSet. Returns false otherwise.
     55  */
     56 bool rightFlagCount(uint32_t flags, vector<MemtrackFlag> flagSet, uint32_t min,
     57                     uint32_t max) {
     58   uint32_t count =
     59       count_if(flagSet.begin(), flagSet.end(),
     60                [&](MemtrackFlag f) { return flags & (uint32_t)f; });
     61   return (min <= count && count <= max);
     62 }
     63 
     64 /* Returns true when passed a valid, defined status, false otherwise.
     65  */
     66 bool validStatus(MemtrackStatus s) {
     67   vector<MemtrackStatus> statusVec = {
     68       MemtrackStatus::SUCCESS, MemtrackStatus::MEMORY_TRACKING_NOT_SUPPORTED,
     69       MemtrackStatus::TYPE_NOT_SUPPORTED};
     70   return std::find(statusVec.begin(), statusVec.end(), s) != statusVec.end();
     71 }
     72 
     73 auto generate_cb(MemtrackStatus *s, hidl_vec<MemtrackRecord> *v) {
     74   return [=](MemtrackStatus status, hidl_vec<MemtrackRecord> vec) {
     75     *s = status;
     76     *v = vec;
     77   };
     78 }
     79 
     80 /* Sanity check results when getMemory() is passed a negative PID
     81  */
     82 TEST_F(MemtrackHidlTest, BadPidTest) {
     83   MemtrackStatus s;
     84   hidl_vec<MemtrackRecord> v;
     85   auto cb = generate_cb(&s, &v);
     86   for (uint32_t i = 0; i < static_cast<uint32_t>(MemtrackType::NUM_TYPES);
     87        i++) {
     88     Return<void> ret =
     89         memtrack->getMemory(-1, static_cast<MemtrackType>(i), cb);
     90     ASSERT_TRUE(ret.isOk());
     91     ASSERT_TRUE(validStatus(s));
     92   }
     93 }
     94 
     95 /* Sanity check results when getMemory() is passed a bad memory usage type
     96  */
     97 TEST_F(MemtrackHidlTest, BadTypeTest) {
     98   MemtrackStatus s;
     99   hidl_vec<MemtrackRecord> v;
    100   auto cb = generate_cb(&s, &v);
    101   Return<void> ret = memtrack->getMemory(getpid(), MemtrackType::NUM_TYPES, cb);
    102   ASSERT_TRUE(ret.isOk());
    103   ASSERT_TRUE(validStatus(s));
    104 }
    105 
    106 /* Call memtrack on this process and check that the results are reasonable
    107  * for all memory types, including valid flag combinations for every
    108  * MemtrackRecord returned.
    109  */
    110 TEST_F(MemtrackHidlTest, GetMemoryTest) {
    111   /* Opening this device causes the kernel to provide memtrack with memory
    112    * info for this process.
    113    */
    114   unique_fd fd(open("/dev/kgsl-3d0", O_RDWR));
    115 
    116   MemtrackStatus s;
    117   hidl_vec<MemtrackRecord> v;
    118   auto cb = generate_cb(&s, &v);
    119   uint32_t unsupportedCount = 0;
    120   for (uint32_t i = 0; i < static_cast<uint32_t>(MemtrackType::NUM_TYPES);
    121        i++) {
    122     Return<void> ret =
    123         memtrack->getMemory(getpid(), static_cast<MemtrackType>(i), cb);
    124     ASSERT_TRUE(ret.isOk());
    125 
    126     switch (s) {
    127       case MemtrackStatus::MEMORY_TRACKING_NOT_SUPPORTED:
    128         unsupportedCount++;
    129         break;
    130       case MemtrackStatus::TYPE_NOT_SUPPORTED:
    131         break;
    132       case MemtrackStatus::SUCCESS: {
    133         for (uint32_t j = 0; j < v.size(); j++) {
    134           // Enforce flag constraints
    135           vector<MemtrackFlag> smapFlags = {MemtrackFlag::SMAPS_ACCOUNTED,
    136                                             MemtrackFlag::SMAPS_UNACCOUNTED};
    137           EXPECT_TRUE(rightFlagCount(v[j].flags, smapFlags, 1, 1));
    138           vector<MemtrackFlag> shareFlags = {MemtrackFlag::SHARED,
    139                                              MemtrackFlag::SHARED_PSS,
    140                                              MemtrackFlag::PRIVATE};
    141           EXPECT_TRUE(rightFlagCount(v[j].flags, shareFlags, 0, 1));
    142           vector<MemtrackFlag> systemFlags = {MemtrackFlag::SYSTEM,
    143                                               MemtrackFlag::DEDICATED};
    144           EXPECT_TRUE(rightFlagCount(v[j].flags, systemFlags, 0, 1));
    145           vector<MemtrackFlag> secureFlags = {MemtrackFlag::SECURE,
    146                                               MemtrackFlag::NONSECURE};
    147           EXPECT_TRUE(rightFlagCount(v[j].flags, secureFlags, 0, 1));
    148         }
    149         break;
    150       }
    151       default:
    152         FAIL();
    153     }
    154   }
    155   // If tracking is not supported this should be returned for all types.
    156   ASSERT_TRUE(unsupportedCount == 0 ||
    157               unsupportedCount ==
    158                   static_cast<uint32_t>(MemtrackType::NUM_TYPES));
    159 }
    160 
    161 int main(int argc, char **argv) {
    162   ::testing::InitGoogleTest(&argc, argv);
    163   int status = RUN_ALL_TESTS();
    164   LOG(INFO) << "Test result = " << status;
    165   return status;
    166 }
    167