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      1 //===- llvm/unittest/ADT/DenseMapMap.cpp - DenseMap unit tests --*- C++ -*-===//
      2 //
      3 //                     The LLVM Compiler Infrastructure
      4 //
      5 // This file is distributed under the University of Illinois Open Source
      6 // License. See LICENSE.TXT for details.
      7 //
      8 //===----------------------------------------------------------------------===//
      9 
     10 #include "gtest/gtest.h"
     11 #include "llvm/ADT/DenseMap.h"
     12 #include <map>
     13 #include <set>
     14 
     15 using namespace llvm;
     16 
     17 namespace {
     18 
     19 uint32_t getTestKey(int i, uint32_t *) { return i; }
     20 uint32_t getTestValue(int i, uint32_t *) { return 42 + i; }
     21 
     22 uint32_t *getTestKey(int i, uint32_t **) {
     23   static uint32_t dummy_arr1[8192];
     24   assert(i < 8192 && "Only support 8192 dummy keys.");
     25   return &dummy_arr1[i];
     26 }
     27 uint32_t *getTestValue(int i, uint32_t **) {
     28   static uint32_t dummy_arr1[8192];
     29   assert(i < 8192 && "Only support 8192 dummy keys.");
     30   return &dummy_arr1[i];
     31 }
     32 
     33 /// \brief A test class that tries to check that construction and destruction
     34 /// occur correctly.
     35 class CtorTester {
     36   static std::set<CtorTester *> Constructed;
     37   int Value;
     38 
     39 public:
     40   explicit CtorTester(int Value = 0) : Value(Value) {
     41     EXPECT_TRUE(Constructed.insert(this).second);
     42   }
     43   CtorTester(uint32_t Value) : Value(Value) {
     44     EXPECT_TRUE(Constructed.insert(this).second);
     45   }
     46   CtorTester(const CtorTester &Arg) : Value(Arg.Value) {
     47     EXPECT_TRUE(Constructed.insert(this).second);
     48   }
     49   ~CtorTester() {
     50     EXPECT_EQ(1u, Constructed.erase(this));
     51   }
     52   operator uint32_t() const { return Value; }
     53 
     54   int getValue() const { return Value; }
     55   bool operator==(const CtorTester &RHS) const { return Value == RHS.Value; }
     56 };
     57 
     58 std::set<CtorTester *> CtorTester::Constructed;
     59 
     60 struct CtorTesterMapInfo {
     61   static inline CtorTester getEmptyKey() { return CtorTester(-1); }
     62   static inline CtorTester getTombstoneKey() { return CtorTester(-2); }
     63   static unsigned getHashValue(const CtorTester &Val) {
     64     return Val.getValue() * 37u;
     65   }
     66   static bool isEqual(const CtorTester &LHS, const CtorTester &RHS) {
     67     return LHS == RHS;
     68   }
     69 };
     70 
     71 CtorTester getTestKey(int i, CtorTester *) { return CtorTester(i); }
     72 CtorTester getTestValue(int i, CtorTester *) { return CtorTester(42 + i); }
     73 
     74 // Test fixture, with helper functions implemented by forwarding to global
     75 // function overloads selected by component types of the type parameter. This
     76 // allows all of the map implementations to be tested with shared
     77 // implementations of helper routines.
     78 template <typename T>
     79 class DenseMapTest : public ::testing::Test {
     80 protected:
     81   T Map;
     82 
     83   static typename T::key_type *const dummy_key_ptr;
     84   static typename T::mapped_type *const dummy_value_ptr;
     85 
     86   typename T::key_type getKey(int i = 0) {
     87     return getTestKey(i, dummy_key_ptr);
     88   }
     89   typename T::mapped_type getValue(int i = 0) {
     90     return getTestValue(i, dummy_value_ptr);
     91   }
     92 };
     93 
     94 template <typename T>
     95 typename T::key_type *const DenseMapTest<T>::dummy_key_ptr = nullptr;
     96 template <typename T>
     97 typename T::mapped_type *const DenseMapTest<T>::dummy_value_ptr = nullptr;
     98 
     99 // Register these types for testing.
    100 typedef ::testing::Types<DenseMap<uint32_t, uint32_t>,
    101                          DenseMap<uint32_t *, uint32_t *>,
    102                          DenseMap<CtorTester, CtorTester, CtorTesterMapInfo>,
    103                          SmallDenseMap<uint32_t, uint32_t>,
    104                          SmallDenseMap<uint32_t *, uint32_t *>,
    105                          SmallDenseMap<CtorTester, CtorTester, 4,
    106                                        CtorTesterMapInfo>
    107                          > DenseMapTestTypes;
    108 TYPED_TEST_CASE(DenseMapTest, DenseMapTestTypes);
    109 
    110 // Empty map tests
    111 TYPED_TEST(DenseMapTest, EmptyIntMapTest) {
    112   // Size tests
    113   EXPECT_EQ(0u, this->Map.size());
    114   EXPECT_TRUE(this->Map.empty());
    115 
    116   // Iterator tests
    117   EXPECT_TRUE(this->Map.begin() == this->Map.end());
    118 
    119   // Lookup tests
    120   EXPECT_FALSE(this->Map.count(this->getKey()));
    121   EXPECT_TRUE(this->Map.find(this->getKey()) == this->Map.end());
    122 #if !defined(_MSC_VER) || defined(__clang__)
    123   EXPECT_EQ(typename TypeParam::mapped_type(),
    124             this->Map.lookup(this->getKey()));
    125 #else
    126   // MSVC, at least old versions, cannot parse the typename to disambiguate
    127   // TypeParam::mapped_type as a type. However, because MSVC doesn't implement
    128   // two-phase name lookup, it also doesn't require the typename. Deal with
    129   // this mutual incompatibility through specialized code.
    130   EXPECT_EQ(TypeParam::mapped_type(),
    131             this->Map.lookup(this->getKey()));
    132 #endif
    133 }
    134 
    135 // Constant map tests
    136 TYPED_TEST(DenseMapTest, ConstEmptyMapTest) {
    137   const TypeParam &ConstMap = this->Map;
    138   EXPECT_EQ(0u, ConstMap.size());
    139   EXPECT_TRUE(ConstMap.empty());
    140   EXPECT_TRUE(ConstMap.begin() == ConstMap.end());
    141 }
    142 
    143 // A map with a single entry
    144 TYPED_TEST(DenseMapTest, SingleEntryMapTest) {
    145   this->Map[this->getKey()] = this->getValue();
    146 
    147   // Size tests
    148   EXPECT_EQ(1u, this->Map.size());
    149   EXPECT_FALSE(this->Map.begin() == this->Map.end());
    150   EXPECT_FALSE(this->Map.empty());
    151 
    152   // Iterator tests
    153   typename TypeParam::iterator it = this->Map.begin();
    154   EXPECT_EQ(this->getKey(), it->first);
    155   EXPECT_EQ(this->getValue(), it->second);
    156   ++it;
    157   EXPECT_TRUE(it == this->Map.end());
    158 
    159   // Lookup tests
    160   EXPECT_TRUE(this->Map.count(this->getKey()));
    161   EXPECT_TRUE(this->Map.find(this->getKey()) == this->Map.begin());
    162   EXPECT_EQ(this->getValue(), this->Map.lookup(this->getKey()));
    163   EXPECT_EQ(this->getValue(), this->Map[this->getKey()]);
    164 }
    165 
    166 // Test clear() method
    167 TYPED_TEST(DenseMapTest, ClearTest) {
    168   this->Map[this->getKey()] = this->getValue();
    169   this->Map.clear();
    170 
    171   EXPECT_EQ(0u, this->Map.size());
    172   EXPECT_TRUE(this->Map.empty());
    173   EXPECT_TRUE(this->Map.begin() == this->Map.end());
    174 }
    175 
    176 // Test erase(iterator) method
    177 TYPED_TEST(DenseMapTest, EraseTest) {
    178   this->Map[this->getKey()] = this->getValue();
    179   this->Map.erase(this->Map.begin());
    180 
    181   EXPECT_EQ(0u, this->Map.size());
    182   EXPECT_TRUE(this->Map.empty());
    183   EXPECT_TRUE(this->Map.begin() == this->Map.end());
    184 }
    185 
    186 // Test erase(value) method
    187 TYPED_TEST(DenseMapTest, EraseTest2) {
    188   this->Map[this->getKey()] = this->getValue();
    189   this->Map.erase(this->getKey());
    190 
    191   EXPECT_EQ(0u, this->Map.size());
    192   EXPECT_TRUE(this->Map.empty());
    193   EXPECT_TRUE(this->Map.begin() == this->Map.end());
    194 }
    195 
    196 // Test insert() method
    197 TYPED_TEST(DenseMapTest, InsertTest) {
    198   this->Map.insert(std::make_pair(this->getKey(), this->getValue()));
    199   EXPECT_EQ(1u, this->Map.size());
    200   EXPECT_EQ(this->getValue(), this->Map[this->getKey()]);
    201 }
    202 
    203 // Test copy constructor method
    204 TYPED_TEST(DenseMapTest, CopyConstructorTest) {
    205   this->Map[this->getKey()] = this->getValue();
    206   TypeParam copyMap(this->Map);
    207 
    208   EXPECT_EQ(1u, copyMap.size());
    209   EXPECT_EQ(this->getValue(), copyMap[this->getKey()]);
    210 }
    211 
    212 // Test copy constructor method where SmallDenseMap isn't small.
    213 TYPED_TEST(DenseMapTest, CopyConstructorNotSmallTest) {
    214   for (int Key = 0; Key < 5; ++Key)
    215     this->Map[this->getKey(Key)] = this->getValue(Key);
    216   TypeParam copyMap(this->Map);
    217 
    218   EXPECT_EQ(5u, copyMap.size());
    219   for (int Key = 0; Key < 5; ++Key)
    220     EXPECT_EQ(this->getValue(Key), copyMap[this->getKey(Key)]);
    221 }
    222 
    223 // Test copying from a default-constructed map.
    224 TYPED_TEST(DenseMapTest, CopyConstructorFromDefaultTest) {
    225   TypeParam copyMap(this->Map);
    226 
    227   EXPECT_TRUE(copyMap.empty());
    228 }
    229 
    230 // Test copying from an empty map where SmallDenseMap isn't small.
    231 TYPED_TEST(DenseMapTest, CopyConstructorFromEmptyTest) {
    232   for (int Key = 0; Key < 5; ++Key)
    233     this->Map[this->getKey(Key)] = this->getValue(Key);
    234   this->Map.clear();
    235   TypeParam copyMap(this->Map);
    236 
    237   EXPECT_TRUE(copyMap.empty());
    238 }
    239 
    240 // Test assignment operator method
    241 TYPED_TEST(DenseMapTest, AssignmentTest) {
    242   this->Map[this->getKey()] = this->getValue();
    243   TypeParam copyMap = this->Map;
    244 
    245   EXPECT_EQ(1u, copyMap.size());
    246   EXPECT_EQ(this->getValue(), copyMap[this->getKey()]);
    247 }
    248 
    249 // Test swap method
    250 TYPED_TEST(DenseMapTest, SwapTest) {
    251   this->Map[this->getKey()] = this->getValue();
    252   TypeParam otherMap;
    253 
    254   this->Map.swap(otherMap);
    255   EXPECT_EQ(0u, this->Map.size());
    256   EXPECT_TRUE(this->Map.empty());
    257   EXPECT_EQ(1u, otherMap.size());
    258   EXPECT_EQ(this->getValue(), otherMap[this->getKey()]);
    259 
    260   this->Map.swap(otherMap);
    261   EXPECT_EQ(0u, otherMap.size());
    262   EXPECT_TRUE(otherMap.empty());
    263   EXPECT_EQ(1u, this->Map.size());
    264   EXPECT_EQ(this->getValue(), this->Map[this->getKey()]);
    265 
    266   // Make this more interesting by inserting 100 numbers into the map.
    267   for (int i = 0; i < 100; ++i)
    268     this->Map[this->getKey(i)] = this->getValue(i);
    269 
    270   this->Map.swap(otherMap);
    271   EXPECT_EQ(0u, this->Map.size());
    272   EXPECT_TRUE(this->Map.empty());
    273   EXPECT_EQ(100u, otherMap.size());
    274   for (int i = 0; i < 100; ++i)
    275     EXPECT_EQ(this->getValue(i), otherMap[this->getKey(i)]);
    276 
    277   this->Map.swap(otherMap);
    278   EXPECT_EQ(0u, otherMap.size());
    279   EXPECT_TRUE(otherMap.empty());
    280   EXPECT_EQ(100u, this->Map.size());
    281   for (int i = 0; i < 100; ++i)
    282     EXPECT_EQ(this->getValue(i), this->Map[this->getKey(i)]);
    283 }
    284 
    285 // A more complex iteration test
    286 TYPED_TEST(DenseMapTest, IterationTest) {
    287   bool visited[100];
    288   std::map<typename TypeParam::key_type, unsigned> visitedIndex;
    289 
    290   // Insert 100 numbers into the map
    291   for (int i = 0; i < 100; ++i) {
    292     visited[i] = false;
    293     visitedIndex[this->getKey(i)] = i;
    294 
    295     this->Map[this->getKey(i)] = this->getValue(i);
    296   }
    297 
    298   // Iterate over all numbers and mark each one found.
    299   for (typename TypeParam::iterator it = this->Map.begin();
    300        it != this->Map.end(); ++it)
    301     visited[visitedIndex[it->first]] = true;
    302 
    303   // Ensure every number was visited.
    304   for (int i = 0; i < 100; ++i)
    305     ASSERT_TRUE(visited[i]) << "Entry #" << i << " was never visited";
    306 }
    307 
    308 // const_iterator test
    309 TYPED_TEST(DenseMapTest, ConstIteratorTest) {
    310   // Check conversion from iterator to const_iterator.
    311   typename TypeParam::iterator it = this->Map.begin();
    312   typename TypeParam::const_iterator cit(it);
    313   EXPECT_TRUE(it == cit);
    314 
    315   // Check copying of const_iterators.
    316   typename TypeParam::const_iterator cit2(cit);
    317   EXPECT_TRUE(cit == cit2);
    318 }
    319 
    320 // Key traits that allows lookup with either an unsigned or char* key;
    321 // In the latter case, "a" == 0, "b" == 1 and so on.
    322 struct TestDenseMapInfo {
    323   static inline unsigned getEmptyKey() { return ~0; }
    324   static inline unsigned getTombstoneKey() { return ~0U - 1; }
    325   static unsigned getHashValue(const unsigned& Val) { return Val * 37U; }
    326   static unsigned getHashValue(const char* Val) {
    327     return (unsigned)(Val[0] - 'a') * 37U;
    328   }
    329   static bool isEqual(const unsigned& LHS, const unsigned& RHS) {
    330     return LHS == RHS;
    331   }
    332   static bool isEqual(const char* LHS, const unsigned& RHS) {
    333     return (unsigned)(LHS[0] - 'a') == RHS;
    334   }
    335 };
    336 
    337 // find_as() tests
    338 TEST(DenseMapCustomTest, FindAsTest) {
    339   DenseMap<unsigned, unsigned, TestDenseMapInfo> map;
    340   map[0] = 1;
    341   map[1] = 2;
    342   map[2] = 3;
    343 
    344   // Size tests
    345   EXPECT_EQ(3u, map.size());
    346 
    347   // Normal lookup tests
    348   EXPECT_EQ(1u, map.count(1));
    349   EXPECT_EQ(1u, map.find(0)->second);
    350   EXPECT_EQ(2u, map.find(1)->second);
    351   EXPECT_EQ(3u, map.find(2)->second);
    352   EXPECT_TRUE(map.find(3) == map.end());
    353 
    354   // find_as() tests
    355   EXPECT_EQ(1u, map.find_as("a")->second);
    356   EXPECT_EQ(2u, map.find_as("b")->second);
    357   EXPECT_EQ(3u, map.find_as("c")->second);
    358   EXPECT_TRUE(map.find_as("d") == map.end());
    359 }
    360 
    361 struct ContiguousDenseMapInfo {
    362   static inline unsigned getEmptyKey() { return ~0; }
    363   static inline unsigned getTombstoneKey() { return ~0U - 1; }
    364   static unsigned getHashValue(const unsigned& Val) { return Val; }
    365   static bool isEqual(const unsigned& LHS, const unsigned& RHS) {
    366     return LHS == RHS;
    367   }
    368 };
    369 
    370 // Test that filling a small dense map with exactly the number of elements in
    371 // the map grows to have enough space for an empty bucket.
    372 TEST(DenseMapCustomTest, SmallDenseMapGrowTest) {
    373   SmallDenseMap<unsigned, unsigned, 32, ContiguousDenseMapInfo> map;
    374   // Add some number of elements, then delete a few to leave us some tombstones.
    375   // If we just filled the map with 32 elements we'd grow because of not enough
    376   // tombstones which masks the issue here.
    377   for (unsigned i = 0; i < 20; ++i)
    378     map[i] = i + 1;
    379   for (unsigned i = 0; i < 10; ++i)
    380     map.erase(i);
    381   for (unsigned i = 20; i < 32; ++i)
    382     map[i] = i + 1;
    383 
    384   // Size tests
    385   EXPECT_EQ(22u, map.size());
    386 
    387   // Try to find an element which doesn't exist.  There was a bug in
    388   // SmallDenseMap which led to a map with num elements == small capacity not
    389   // having an empty bucket any more.  Finding an element not in the map would
    390   // therefore never terminate.
    391   EXPECT_TRUE(map.find(32) == map.end());
    392 }
    393 
    394 }
    395