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| // SPDX-License-Identifier: BSD-3-Clause | |
| // Copyright (c) 2026, The OpenROAD Authors | |
| namespace odb { | |
| namespace { | |
| /// Test fixture for dbStream unit tests. | |
| /// Inherits from tst::DbFixture to get a database instance. | |
| class DbStreamTest : public tst::DbFixture | |
| { | |
| }; | |
| /// Tests serialization and deserialization of basic types. | |
| /// This verifies the C++20 template overloads for arithmetic types, | |
| /// the string_view overload for writing, and direct-buffer reading for strings. | |
| TEST_F(DbStreamTest, BasicTypes) | |
| { | |
| std::stringstream ss; | |
| dbOStream out(reinterpret_cast<_dbDatabase*>(getDb()), ss); | |
| int32_t i32 = -12345; | |
| uint32_t u32 = 12345U; | |
| double d = 3.14159; | |
| bool b1 = true; | |
| bool b2 = false; | |
| std::string s = "hello"; | |
| std::string_view sv = "world"; | |
| out << i32; | |
| out << u32; | |
| out << d; | |
| out << b1; | |
| out << b2; | |
| out << s; | |
| out << sv; | |
| out.flush(); | |
| dbIStream in(reinterpret_cast<_dbDatabase*>(getDb()), ss); | |
| int32_t i32_in; | |
| uint32_t u32_in; | |
| double d_in; | |
| bool b1_in; | |
| bool b2_in; | |
| std::string s_in; | |
| std::string sv_in; | |
| in >> i32_in; | |
| in >> u32_in; | |
| in >> d_in; | |
| in >> b1_in; | |
| in >> b2_in; | |
| in >> s_in; | |
| in >> sv_in; | |
| EXPECT_EQ(i32, i32_in); | |
| EXPECT_EQ(u32, u32_in); | |
| EXPECT_DOUBLE_EQ(d, d_in); | |
| EXPECT_EQ(b1, b1_in); | |
| EXPECT_EQ(b2, b2_in); | |
| EXPECT_EQ(s, s_in); | |
| EXPECT_EQ(std::string(sv), sv_in); | |
| } | |
| /// Tests the buffering and flushing behavior of dbOStream. | |
| /// Verifies that: | |
| /// 1. Writes are buffered and not immediately flushed. | |
| /// 2. Destructor automatically flushes the buffer. | |
| /// 3. Explicit flush() works. | |
| /// 4. Overflowing the 64KB buffer triggers an automatic flush. | |
| TEST_F(DbStreamTest, BufferFlushing) | |
| { | |
| // Test destructor flush | |
| { | |
| std::stringstream ss; | |
| { | |
| dbOStream out(reinterpret_cast<_dbDatabase*>(getDb()), ss); | |
| int32_t val = 42; | |
| out << val; | |
| // Should not have flushed yet (buffer size is 64KB, val is 4 bytes) | |
| EXPECT_EQ(ss.str().size(), 0); | |
| } | |
| // Destructor called, should have flushed. | |
| EXPECT_GT(ss.str().size(), 0); | |
| } | |
| // Test explicit flush | |
| { | |
| std::stringstream ss; | |
| dbOStream out(reinterpret_cast<_dbDatabase*>(getDb()), ss); | |
| int32_t val = 42; | |
| out << val; | |
| EXPECT_EQ(ss.str().size(), 0); | |
| out.flush(); | |
| EXPECT_GT(ss.str().size(), 0); | |
| } | |
| // Test overflow with single large block (direct write) | |
| { | |
| std::stringstream ss; | |
| dbOStream out(reinterpret_cast<_dbDatabase*>(getDb()), ss); | |
| std::vector<char> large_data(70000, 'a'); | |
| out.writeBytes(large_data); | |
| EXPECT_EQ(ss.str().size(), 70000); | |
| } | |
| // Test overflow with sequential small blocks (buffered copy after flush) | |
| { | |
| std::stringstream ss; | |
| dbOStream out(reinterpret_cast<_dbDatabase*>(getDb()), ss); | |
| std::vector<char> chunk1(60000, 'a'); | |
| std::vector<char> chunk2(10000, 'b'); | |
| out.writeBytes(chunk1); | |
| EXPECT_EQ(ss.str().size(), 0); // Still buffered | |
| out.writeBytes( | |
| chunk2); // Triggers flush of chunk1, then copies chunk2 to buffer | |
| EXPECT_EQ(ss.str().size(), 60000); // chunk1 flushed | |
| out.flush(); // Flush chunk2 | |
| EXPECT_EQ(ss.str().size(), 70000); | |
| } | |
| // Test large trivially copyable struct (>64KB) with writeValueAsBytes | |
| { | |
| struct LargeBlob | |
| { | |
| char data[70000]; | |
| }; | |
| static_assert(std::is_trivially_copyable_v<LargeBlob>); | |
| std::stringstream ss; | |
| dbOStream out(reinterpret_cast<_dbDatabase*>(getDb()), ss); | |
| LargeBlob blob; | |
| std::memset(blob.data, 'x', sizeof(blob.data)); | |
| out.writeValueAsBytes(blob); | |
| EXPECT_EQ(ss.str().size(), sizeof(LargeBlob)); | |
| } | |
| } | |
| /// Tests the pos() method of dbOStream. | |
| /// Verifies that calling pos() flushes the buffer and returns correct offset. | |
| TEST_F(DbStreamTest, Position) | |
| { | |
| std::stringstream ss; | |
| dbOStream out(reinterpret_cast<_dbDatabase*>(getDb()), ss); | |
| EXPECT_EQ(out.pos(), 0); | |
| int32_t val = 42; | |
| out << val; | |
| // out.pos() should flush and return 4 | |
| EXPECT_EQ(out.pos(), 4); | |
| EXPECT_EQ(ss.str().size(), 4); // pos() should have flushed | |
| } | |
| /// Tests serialization and deserialization of container types (vector, map, | |
| /// tuple, variant). This ensures that the modernized basic stream operators | |
| /// work correctly when nested inside standard container serializers. | |
| TEST_F(DbStreamTest, ContainerTypes) | |
| { | |
| std::stringstream ss; | |
| dbOStream out(reinterpret_cast<_dbDatabase*>(getDb()), ss); | |
| std::vector<int> vec = {1, 2, 3, 4, 5}; | |
| std::map<std::string, double> map = {{"apple", 1.23}, {"banana", 4.56}}; | |
| std::tuple<int, double, std::string> tuple = {42, 3.14, "hello"}; | |
| std::variant<int, double, std::string> variant1 = 42; | |
| std::variant<int, double, std::string> variant2 = "world"; | |
| out << vec; | |
| out << map; | |
| out << tuple; | |
| out << variant1; | |
| out << variant2; | |
| out.flush(); | |
| dbIStream in(reinterpret_cast<_dbDatabase*>(getDb()), ss); | |
| std::vector<int> vec_in; | |
| std::map<std::string, double> map_in; | |
| std::tuple<int, double, std::string> tuple_in; | |
| std::variant<int, double, std::string> variant1_in; | |
| std::variant<int, double, std::string> variant2_in; | |
| in >> vec_in; | |
| in >> map_in; | |
| in >> tuple_in; | |
| in >> variant1_in; | |
| in >> variant2_in; | |
| EXPECT_EQ(vec, vec_in); | |
| EXPECT_EQ(map, map_in); | |
| EXPECT_EQ(tuple, tuple_in); | |
| EXPECT_EQ(variant1, variant1_in); | |
| EXPECT_EQ(variant2, variant2_in); | |
| } | |
| } // namespace | |
| } // namespace odb | |