#include #include "ScanArchitect.hh" #include "ScanArchitectConfig.hh" #include "gtest/gtest.h" namespace dft { namespace { bool operator!=(const ScanArchitect::HashDomainLimits& lhs, const ScanArchitect::HashDomainLimits& rhs) { return lhs.chain_count != rhs.chain_count || lhs.max_length != rhs.max_length; } template bool CompareUnordered(const T& u1, const T& u2) { for (const auto& [key, value] : u1) { auto it = u2.find(key); if (it == u2.end()) { return false; } if (it->second != value) { return false; } } return true; } ScanArchitect::HashDomainLimits CreateTestHashDomainLimits(uint64_t chain_count, uint64_t max_length) { ScanArchitect::HashDomainLimits limits; limits.chain_count = chain_count; limits.max_length = max_length; return limits; } // Check if we are correctly calculating the limits of the hash domains TEST(TestScanArchitect, CalculatesChainCountAndMaxLength) { // For 1 hash domain (1) with 10 bits and a max length of 5, we need to have a // chain count of 2 in that hash domain (1) EXPECT_TRUE(CompareUnordered( ScanArchitect::inferChainCountFromMaxLength({{1, 10}}, 5, {}), {{1, CreateTestHashDomainLimits(2, 5)}})); // Unbalance cases // We create 2 chains with max_length of 4 EXPECT_TRUE(CompareUnordered( ScanArchitect::inferChainCountFromMaxLength({{1, 9}}, 5, {}), {{1, CreateTestHashDomainLimits(2, 5)}})); // We create 2 chains with max_length of 3 EXPECT_TRUE(CompareUnordered( ScanArchitect::inferChainCountFromMaxLength({{1, 6}}, 5, {}), {{1, CreateTestHashDomainLimits(2, 3)}})); // Two hash domains, balance case EXPECT_TRUE(CompareUnordered( ScanArchitect::inferChainCountFromMaxLength({{1, 10}, {2, 10}}, 5, {}), {{1, CreateTestHashDomainLimits(2, 5)}, {2, CreateTestHashDomainLimits(2, 5)}})); // Unbalance EXPECT_TRUE(CompareUnordered( ScanArchitect::inferChainCountFromMaxLength({{1, 10}, {2, 9}}, 5, {}), {{1, CreateTestHashDomainLimits(2, 5)}, {2, CreateTestHashDomainLimits(2, 5)}})); //// Two hash domains with different number of cells EXPECT_TRUE(CompareUnordered( ScanArchitect::inferChainCountFromMaxLength({{1, 10}, {2, 15}}, 5, {}), {{1, CreateTestHashDomainLimits(2, 5)}, {2, CreateTestHashDomainLimits(3, 5)}})); // Constrained max chain count EXPECT_TRUE(CompareUnordered( ScanArchitect::inferChainCountFromMaxLength({{1, 10}}, 5, {1}), {{1, CreateTestHashDomainLimits(1, 10)}})); } } // namespace } // namespace dft