#include <iostream>
#include <stdexcept>
#include <catch2/catch.hpp>
#include <tuple_union.hpp>
#include <theta_sketch.hpp>
namespace datasketches {
TEST_CASE("tuple_union float: empty", "[tuple union]") {
auto update_sketch = update_tuple_sketch<float>::builder().build();
auto u = tuple_union<float>::builder().build();
u.update(update_sketch);
auto result = u.get_result();
REQUIRE(result.is_empty());
REQUIRE(result.get_num_retained() == 0);
REQUIRE(!result.is_estimation_mode());
REQUIRE(result.get_estimate() == 0);
}
TEST_CASE("tupe_union float: empty theta sketch", "[tuple union]") {
auto update_sketch = update_theta_sketch::builder().build();
auto u = tuple_union<float>::builder().build();
u.update(compact_tuple_sketch<float>(update_sketch, 0));
auto result = u.get_result();
REQUIRE(result.is_empty());
REQUIRE(result.get_num_retained() == 0);
REQUIRE(!result.is_estimation_mode());
REQUIRE(result.get_estimate() == 0);
}
TEST_CASE("tuple_union float: non-empty no retained entries", "[tuple union]") {
auto update_sketch = update_tuple_sketch<float>::builder().set_p(0.001f).build();
update_sketch.update(1, 1.0f);
REQUIRE(!update_sketch.is_empty());
REQUIRE(update_sketch.get_num_retained() == 0);
auto u = tuple_union<float>::builder().build();
u.update(update_sketch);
auto result = u.get_result();
REQUIRE(!result.is_empty());
REQUIRE(result.get_num_retained() == 0);
REQUIRE(result.is_estimation_mode());
REQUIRE(result.get_estimate() == 0);
REQUIRE(result.get_theta() == Approx(0.001).margin(1e-10));
}
TEST_CASE("tuple_union float: simple case", "[tuple union]") {
auto update_sketch1 = update_tuple_sketch<float>::builder().build();
update_sketch1.update(1, 1.0f);
update_sketch1.update(2, 1.0f);
auto update_sketch2 = update_tuple_sketch<float>::builder().build();
update_sketch2.update(1, 1.0f);
update_sketch2.update(3, 1.0f);
auto u = tuple_union<float>::builder().build();
u.update(update_sketch1);
u.update(update_sketch2);
auto result = u.get_result();
REQUIRE(result.get_num_retained() == 3);
u.reset();
result = u.get_result();
REQUIRE(result.is_empty());
REQUIRE(result.get_num_retained() == 0);
REQUIRE(!result.is_estimation_mode());
REQUIRE(result.get_estimate() == 0);
}
TEST_CASE("tuple_union float: exact mode half overlap", "[tuple union]") {
auto update_sketch1 = update_tuple_sketch<float>::builder().build();
int value = 0;
for (int i = 0; i < 1000; ++i) update_sketch1.update(value++, 1.0f);
auto update_sketch2 = update_tuple_sketch<float>::builder().build();
value = 500;
for (int i = 0; i < 1000; ++i) update_sketch2.update(value++, 1.0f);
{ auto u = tuple_union<float>::builder().build();
u.update(update_sketch1);
u.update(update_sketch2);
auto result = u.get_result();
REQUIRE(!result.is_empty());
REQUIRE(!result.is_estimation_mode());
REQUIRE(result.get_estimate() == Approx(1500).margin(1500 * 0.01));
}
{ auto u = tuple_union<float>::builder().build();
u.update(update_sketch1.compact());
u.update(update_sketch2.compact());
auto result = u.get_result();
REQUIRE(!result.is_empty());
REQUIRE(!result.is_estimation_mode());
REQUIRE(result.get_estimate() == Approx(1500).margin(1500 * 0.01));
}
}
TEST_CASE("tuple_union float: estimation mode half overlap", "[tuple union]") {
auto update_sketch1 = update_tuple_sketch<float>::builder().build();
int value = 0;
for (int i = 0; i < 10000; ++i) update_sketch1.update(value++, 1.0f);
auto update_sketch2 = update_tuple_sketch<float>::builder().build();
value = 5000;
for (int i = 0; i < 10000; ++i) update_sketch2.update(value++, 1.0f);
{ auto u = tuple_union<float>::builder().build();
u.update(update_sketch1);
u.update(update_sketch2);
auto result = u.get_result();
REQUIRE(!result.is_empty());
REQUIRE(result.is_estimation_mode());
REQUIRE(result.get_estimate() == Approx(15000).margin(15000 * 0.01));
}
{ auto u = tuple_union<float>::builder().build();
u.update(update_sketch1.compact());
u.update(update_sketch2.compact());
auto result = u.get_result();
REQUIRE(!result.is_empty());
REQUIRE(result.is_estimation_mode());
REQUIRE(result.get_estimate() == Approx(15000).margin(15000 * 0.01));
}
}
TEST_CASE("tuple_union float: seed mismatch", "[tuple union]") {
auto update_sketch = update_tuple_sketch<float>::builder().build();
update_sketch.update(1, 1.0f);
auto u = tuple_union<float>::builder().set_seed(123).build();
REQUIRE_THROWS_AS(u.update(update_sketch), std::invalid_argument);
}
TEST_CASE("tuple_union float: full overlap with theta sketch", "[tuple union]") {
auto u = tuple_union<float>::builder().build();
auto update_tuple = update_tuple_sketch<float>::builder().build();
for (unsigned i = 0; i < 10; ++i) update_tuple.update(i, 1.0f);
u.update(update_tuple);
auto compact_tuple = update_tuple.compact();
u.update(compact_tuple);
auto update_theta = update_theta_sketch::builder().build();
for (unsigned i = 0; i < 10; ++i) update_theta.update(i);
u.update(compact_tuple_sketch<float>(update_theta, 1));
auto compact_theta = update_theta.compact();
u.update(compact_tuple_sketch<float>(compact_theta, 1));
auto result = u.get_result();
REQUIRE_FALSE(result.is_empty());
REQUIRE(result.get_num_retained() == 10);
REQUIRE(!result.is_estimation_mode());
REQUIRE(result.get_estimate() == 10);
for (const auto& entry: result) {
REQUIRE(entry.second == 4);
}
}
}