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			360 lines
		
	
	
		
			9.9 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			360 lines
		
	
	
		
			9.9 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| //===- llvm/unittest/ADT/StringMapMap.cpp - StringMap unit tests ----------===//
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| //
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| //                     The LLVM Compiler Infrastructure
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| //
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| // This file is distributed under the University of Illinois Open Source
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| // License. See LICENSE.TXT for details.
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| //
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| //===----------------------------------------------------------------------===//
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| 
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| #include "gtest/gtest.h"
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| #include "llvm/ADT/StringMap.h"
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| #include "llvm/Support/DataTypes.h"
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| #include <tuple>
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| using namespace llvm;
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| 
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| namespace {
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| 
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| // Test fixture
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| class StringMapTest : public testing::Test {
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| protected:
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|   StringMap<uint32_t> testMap;
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| 
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|   static const char testKey[];
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|   static const uint32_t testValue;
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|   static const char* testKeyFirst;
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|   static size_t testKeyLength;
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|   static const std::string testKeyStr;
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| 
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|   void assertEmptyMap() {
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|     // Size tests
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|     EXPECT_EQ(0u, testMap.size());
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|     EXPECT_TRUE(testMap.empty());
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| 
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|     // Iterator tests
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|     EXPECT_TRUE(testMap.begin() == testMap.end());
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| 
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|     // Lookup tests
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|     EXPECT_EQ(0u, testMap.count(testKey));
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|     EXPECT_EQ(0u, testMap.count(StringRef(testKeyFirst, testKeyLength)));
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|     EXPECT_EQ(0u, testMap.count(testKeyStr));
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|     EXPECT_TRUE(testMap.find(testKey) == testMap.end());
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|     EXPECT_TRUE(testMap.find(StringRef(testKeyFirst, testKeyLength)) == 
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|                 testMap.end());
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|     EXPECT_TRUE(testMap.find(testKeyStr) == testMap.end());
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|   }
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| 
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|   void assertSingleItemMap() {
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|     // Size tests
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|     EXPECT_EQ(1u, testMap.size());
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|     EXPECT_FALSE(testMap.begin() == testMap.end());
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|     EXPECT_FALSE(testMap.empty());
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| 
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|     // Iterator tests
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|     StringMap<uint32_t>::iterator it = testMap.begin();
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|     EXPECT_STREQ(testKey, it->first().data());
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|     EXPECT_EQ(testValue, it->second);
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|     ++it;
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|     EXPECT_TRUE(it == testMap.end());
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| 
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|     // Lookup tests
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|     EXPECT_EQ(1u, testMap.count(testKey));
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|     EXPECT_EQ(1u, testMap.count(StringRef(testKeyFirst, testKeyLength)));
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|     EXPECT_EQ(1u, testMap.count(testKeyStr));
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|     EXPECT_TRUE(testMap.find(testKey) == testMap.begin());
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|     EXPECT_TRUE(testMap.find(StringRef(testKeyFirst, testKeyLength)) == 
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|                 testMap.begin());
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|     EXPECT_TRUE(testMap.find(testKeyStr) == testMap.begin());
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|   }
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| };
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| 
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| const char StringMapTest::testKey[] = "key";
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| const uint32_t StringMapTest::testValue = 1u;
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| const char* StringMapTest::testKeyFirst = testKey;
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| size_t StringMapTest::testKeyLength = sizeof(testKey) - 1;
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| const std::string StringMapTest::testKeyStr(testKey);
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| 
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| // Empty map tests.
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| TEST_F(StringMapTest, EmptyMapTest) {
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|   assertEmptyMap();
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| }
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| 
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| // Constant map tests.
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| TEST_F(StringMapTest, ConstEmptyMapTest) {
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|   const StringMap<uint32_t>& constTestMap = testMap;
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| 
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|   // Size tests
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|   EXPECT_EQ(0u, constTestMap.size());
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|   EXPECT_TRUE(constTestMap.empty());
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| 
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|   // Iterator tests
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|   EXPECT_TRUE(constTestMap.begin() == constTestMap.end());
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| 
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|   // Lookup tests
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|   EXPECT_EQ(0u, constTestMap.count(testKey));
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|   EXPECT_EQ(0u, constTestMap.count(StringRef(testKeyFirst, testKeyLength)));
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|   EXPECT_EQ(0u, constTestMap.count(testKeyStr));
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|   EXPECT_TRUE(constTestMap.find(testKey) == constTestMap.end());
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|   EXPECT_TRUE(constTestMap.find(StringRef(testKeyFirst, testKeyLength)) ==
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|               constTestMap.end());
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|   EXPECT_TRUE(constTestMap.find(testKeyStr) == constTestMap.end());
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| }
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| 
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| // A map with a single entry.
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| TEST_F(StringMapTest, SingleEntryMapTest) {
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|   testMap[testKey] = testValue;
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|   assertSingleItemMap();
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| }
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| 
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| // Test clear() method.
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| TEST_F(StringMapTest, ClearTest) {
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|   testMap[testKey] = testValue;
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|   testMap.clear();
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|   assertEmptyMap();
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| }
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| 
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| // Test erase(iterator) method.
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| TEST_F(StringMapTest, EraseIteratorTest) {
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|   testMap[testKey] = testValue;
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|   testMap.erase(testMap.begin());
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|   assertEmptyMap();
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| }
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| 
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| // Test erase(value) method.
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| TEST_F(StringMapTest, EraseValueTest) {
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|   testMap[testKey] = testValue;
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|   testMap.erase(testKey);
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|   assertEmptyMap();
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| }
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| 
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| // Test inserting two values and erasing one.
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| TEST_F(StringMapTest, InsertAndEraseTest) {
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|   testMap[testKey] = testValue;
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|   testMap["otherKey"] = 2;
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|   testMap.erase("otherKey");
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|   assertSingleItemMap();
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| }
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| 
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| TEST_F(StringMapTest, SmallFullMapTest) {
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|   // StringMap has a tricky corner case when the map is small (<8 buckets) and
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|   // it fills up through a balanced pattern of inserts and erases. This can
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|   // lead to inf-loops in some cases (PR13148) so we test it explicitly here.
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|   llvm::StringMap<int> Map(2);
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| 
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|   Map["eins"] = 1;
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|   Map["zwei"] = 2;
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|   Map["drei"] = 3;
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|   Map.erase("drei");
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|   Map.erase("eins");
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|   Map["veir"] = 4;
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|   Map["funf"] = 5;
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| 
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|   EXPECT_EQ(3u, Map.size());
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|   EXPECT_EQ(0, Map.lookup("eins"));
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|   EXPECT_EQ(2, Map.lookup("zwei"));
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|   EXPECT_EQ(0, Map.lookup("drei"));
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|   EXPECT_EQ(4, Map.lookup("veir"));
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|   EXPECT_EQ(5, Map.lookup("funf"));
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| }
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| 
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| // A more complex iteration test.
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| TEST_F(StringMapTest, IterationTest) {
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|   bool visited[100];
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| 
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|   // Insert 100 numbers into the map
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|   for (int i = 0; i < 100; ++i) {
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|     std::stringstream ss;
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|     ss << "key_" << i;
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|     testMap[ss.str()] = i;
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|     visited[i] = false;
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|   }
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| 
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|   // Iterate over all numbers and mark each one found.
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|   for (StringMap<uint32_t>::iterator it = testMap.begin();
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|       it != testMap.end(); ++it) {
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|     std::stringstream ss;
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|     ss << "key_" << it->second;
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|     ASSERT_STREQ(ss.str().c_str(), it->first().data());
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|     visited[it->second] = true;
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|   }
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| 
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|   // Ensure every number was visited.
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|   for (int i = 0; i < 100; ++i) {
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|     ASSERT_TRUE(visited[i]) << "Entry #" << i << " was never visited";
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|   }
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| }
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| 
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| // Test StringMapEntry::Create() method.
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| TEST_F(StringMapTest, StringMapEntryTest) {
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|   StringMap<uint32_t>::value_type* entry =
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|       StringMap<uint32_t>::value_type::Create(
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|           StringRef(testKeyFirst, testKeyLength), 1u);
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|   EXPECT_STREQ(testKey, entry->first().data());
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|   EXPECT_EQ(1u, entry->second);
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|   free(entry);
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| }
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| 
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| // Test insert() method.
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| TEST_F(StringMapTest, InsertTest) {
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|   SCOPED_TRACE("InsertTest");
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|   testMap.insert(
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|       StringMap<uint32_t>::value_type::Create(
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|           StringRef(testKeyFirst, testKeyLength),
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|           testMap.getAllocator(), 1u));
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|   assertSingleItemMap();
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| }
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| 
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| // Test insert(pair<K, V>) method
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| TEST_F(StringMapTest, InsertPairTest) {
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|   bool Inserted;
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|   StringMap<uint32_t>::iterator NewIt;
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|   std::tie(NewIt, Inserted) =
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|       testMap.insert(std::make_pair(testKeyFirst, testValue));
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|   EXPECT_EQ(1u, testMap.size());
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|   EXPECT_EQ(testValue, testMap[testKeyFirst]);
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|   EXPECT_EQ(testKeyFirst, NewIt->first());
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|   EXPECT_EQ(testValue, NewIt->second);
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|   EXPECT_TRUE(Inserted);
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| 
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|   StringMap<uint32_t>::iterator ExistingIt;
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|   std::tie(ExistingIt, Inserted) =
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|       testMap.insert(std::make_pair(testKeyFirst, testValue + 1));
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|   EXPECT_EQ(1u, testMap.size());
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|   EXPECT_EQ(testValue, testMap[testKeyFirst]);
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|   EXPECT_FALSE(Inserted);
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|   EXPECT_EQ(NewIt, ExistingIt);
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| }
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| 
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| // Test insert(pair<K, V>) method when rehashing occurs
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| TEST_F(StringMapTest, InsertRehashingPairTest) {
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|   // Check that the correct iterator is returned when the inserted element is
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|   // moved to a different bucket during internal rehashing. This depends on
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|   // the particular key, and the implementation of StringMap and HashString.
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|   // Changes to those might result in this test not actually checking that.
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|   StringMap<uint32_t> t(1);
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|   EXPECT_EQ(1u, t.getNumBuckets());
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| 
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|   StringMap<uint32_t>::iterator It =
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|     t.insert(std::make_pair("abcdef", 42)).first;
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|   EXPECT_EQ(2u, t.getNumBuckets());
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|   EXPECT_EQ("abcdef", It->first());
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|   EXPECT_EQ(42u, It->second);
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| }
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| 
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| // Create a non-default constructable value
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| struct StringMapTestStruct {
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|   StringMapTestStruct(int i) : i(i) {}
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|   StringMapTestStruct() = delete;
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|   int i;
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| };
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| 
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| TEST_F(StringMapTest, NonDefaultConstructable) {
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|   StringMap<StringMapTestStruct> t;
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|   t.insert(std::make_pair("Test", StringMapTestStruct(123)));
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|   StringMap<StringMapTestStruct>::iterator iter = t.find("Test");
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|   ASSERT_NE(iter, t.end());
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|   ASSERT_EQ(iter->second.i, 123);
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| }
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| 
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| struct Immovable {
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|   Immovable() {}
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|   Immovable(Immovable&&) = delete; // will disable the other special members
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| };
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| 
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| struct MoveOnly {
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|   int i;
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|   MoveOnly(int i) : i(i) {}
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|   MoveOnly(const Immovable&) : i(0) {}
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|   MoveOnly(MoveOnly &&RHS) : i(RHS.i) {}
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|   MoveOnly &operator=(MoveOnly &&RHS) {
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|     i = RHS.i;
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|     return *this;
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|   }
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| 
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| private:
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|   MoveOnly(const MoveOnly &) = delete;
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|   MoveOnly &operator=(const MoveOnly &) = delete;
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| };
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| 
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| TEST_F(StringMapTest, MoveOnly) {
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|   StringMap<MoveOnly> t;
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|   t.insert(std::make_pair("Test", MoveOnly(42)));
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|   StringRef Key = "Test";
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|   StringMapEntry<MoveOnly>::Create(Key, MoveOnly(42))
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|       ->Destroy();
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| }
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| 
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| TEST_F(StringMapTest, CtorArg) {
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|   StringRef Key = "Test";
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|   StringMapEntry<MoveOnly>::Create(Key, Immovable())
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|       ->Destroy();
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| }
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| 
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| TEST_F(StringMapTest, MoveConstruct) {
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|   StringMap<int> A;
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|   A["x"] = 42;
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|   StringMap<int> B = std::move(A);
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|   ASSERT_EQ(A.size(), 0u);
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|   ASSERT_EQ(B.size(), 1u);
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|   ASSERT_EQ(B["x"], 42);
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|   ASSERT_EQ(B.count("y"), 0u);
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| }
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| 
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| TEST_F(StringMapTest, MoveAssignment) {
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|   StringMap<int> A;
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|   A["x"] = 42;
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|   StringMap<int> B;
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|   B["y"] = 117;
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|   A = std::move(B);
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|   ASSERT_EQ(A.size(), 1u);
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|   ASSERT_EQ(B.size(), 0u);
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|   ASSERT_EQ(A["y"], 117);
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|   ASSERT_EQ(B.count("x"), 0u);
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| }
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| 
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| struct Countable {
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|   int &InstanceCount;
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|   int Number;
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|   Countable(int Number, int &InstanceCount)
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|       : InstanceCount(InstanceCount), Number(Number) {
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|     ++InstanceCount;
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|   }
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|   Countable(Countable &&C) : InstanceCount(C.InstanceCount), Number(C.Number) {
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|     ++InstanceCount;
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|     C.Number = -1;
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|   }
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|   Countable(const Countable &C)
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|       : InstanceCount(C.InstanceCount), Number(C.Number) {
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|     ++InstanceCount;
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|   }
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|   Countable &operator=(Countable C) {
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|     Number = C.Number;
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|     return *this;
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|   }
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|   ~Countable() { --InstanceCount; }
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| };
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| 
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| TEST_F(StringMapTest, MoveDtor) {
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|   int InstanceCount = 0;
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|   StringMap<Countable> A;
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|   A.insert(std::make_pair("x", Countable(42, InstanceCount)));
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|   ASSERT_EQ(InstanceCount, 1);
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|   auto I = A.find("x");
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|   ASSERT_NE(I, A.end());
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|   ASSERT_EQ(I->second.Number, 42);
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| 
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|   StringMap<Countable> B;
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|   B = std::move(A);
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|   ASSERT_EQ(InstanceCount, 1);
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|   ASSERT_TRUE(A.empty());
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|   I = B.find("x");
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|   ASSERT_NE(I, B.end());
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|   ASSERT_EQ(I->second.Number, 42);
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| 
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|   B = StringMap<Countable>();
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|   ASSERT_EQ(InstanceCount, 0);
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|   ASSERT_TRUE(B.empty());
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| }
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| 
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| } // end anonymous namespace
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