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Card-Collection-Manager-3/tests/card_sorter_tests.cpp
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Sebastian Dine 55ace147bc major: initial release
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Co-authored-by: sdine <sdine@sdine.com>
2026-05-09 11:05:47 +02:00

249 lines
10 KiB
C++

// CardSorter tests - exercises the per-column comparators ported from the
// TableTemplate.tsx::byField. Each TEST_CASE pins down a specific behavior
// the original UI relied on, so a regression here implies the C++ table no
// longer behaves like the TypeScript reference.
#include <doctest/doctest.h>
#include "ccm/domain/Enums.hpp"
#include "ccm/domain/MagicCard.hpp"
#include "ccm/domain/PokemonCard.hpp"
#include "ccm/domain/Set.hpp"
#include "ccm/services/CardSorter.hpp"
#include <algorithm>
#include <string>
#include <vector>
using namespace ccm;
namespace {
MagicCard mc(std::uint32_t id, std::string name,
std::string setName, std::string releaseDate,
std::uint8_t amount = 1,
bool foil = false, bool sgnd = false, bool altered = false,
Language lang = Language::English,
Condition cond = Condition::NearMint,
std::string note = "") {
MagicCard c;
c.id = id;
c.name = std::move(name);
c.set.name = std::move(setName);
c.set.releaseDate = std::move(releaseDate);
c.amount = amount;
c.foil = foil;
c.signed_ = sgnd;
c.altered = altered;
c.language = lang;
c.condition = cond;
c.note = std::move(note);
return c;
}
PokemonCard pc(std::uint32_t id, std::string name,
std::string setName, std::string releaseDate,
std::uint8_t amount = 1,
bool holo = false, bool firstEdition = false,
bool sgnd = false, bool altered = false) {
PokemonCard c;
c.id = id;
c.name = std::move(name);
c.set.name = std::move(setName);
c.set.releaseDate = std::move(releaseDate);
c.amount = amount;
c.holo = holo;
c.firstEdition = firstEdition;
c.signed_ = sgnd;
c.altered = altered;
return c;
}
std::vector<std::uint32_t> ids(const std::vector<MagicCard>& v) {
std::vector<std::uint32_t> out;
out.reserve(v.size());
for (const auto& c : v) out.push_back(c.id);
return out;
}
std::vector<std::uint32_t> ids(const std::vector<PokemonCard>& v) {
std::vector<std::uint32_t> out;
out.reserve(v.size());
for (const auto& c : v) out.push_back(c.id);
return out;
}
} // namespace
TEST_SUITE("CardSorter - Magic columns") {
TEST_CASE("Name sorts case-insensitively (matches String.toLowerCase())") {
// Three cards whose names only differ in casing - if sort were a
// plain `<` this would put "ABC" before "abc" and wedge "Brainstorm"
// somewhere wrong. The JS path normalizes to lowercase first.
std::vector<MagicCard> v = {
mc(1, "brainstorm", "X", "2000/01/01"),
mc(2, "ABC", "X", "2000/01/01"),
mc(3, "abc", "X", "2000/01/01"),
};
sortMagicCards(v, MagicSortColumn::Name, /*ascending=*/true);
// ABC and abc tie under case-insensitive compare; stable sort keeps
// the input order (id 2 before id 3).
CHECK(ids(v) == std::vector<std::uint32_t>{2, 3, 1});
sortMagicCards(v, MagicSortColumn::Name, /*ascending=*/false);
CHECK(ids(v) == std::vector<std::uint32_t>{1, 2, 3});
}
TEST_CASE("Set column sorts by release date (chronological), not by name") {
// The whole point of having distinct valueKey/sortKey: the
// table *displays* set.name, but ascending order is chronological.
std::vector<MagicCard> v = {
mc(1, "x", "Zendikar", "2009/10/02"),
mc(2, "y", "Alpha", "1993/08/05"),
mc(3, "z", "Modern Horizons","2019/06/14"),
};
sortMagicCards(v, MagicSortColumn::SetReleaseDate, /*ascending=*/true);
CHECK(ids(v) == std::vector<std::uint32_t>{2, 1, 3}); // 1993 < 2009 < 2019
sortMagicCards(v, MagicSortColumn::SetReleaseDate, /*ascending=*/false);
CHECK(ids(v) == std::vector<std::uint32_t>{3, 1, 2});
}
TEST_CASE("Amount sorts numerically (no string-compare 10 < 2 trap)") {
std::vector<MagicCard> v = {
mc(1, "a", "X", "2000/01/01", /*amount=*/10),
mc(2, "b", "X", "2000/01/01", /*amount=*/2),
mc(3, "c", "X", "2000/01/01", /*amount=*/4),
};
sortMagicCards(v, MagicSortColumn::Amount, /*ascending=*/true);
CHECK(ids(v) == std::vector<std::uint32_t>{2, 3, 1}); // 2 < 4 < 10
}
TEST_CASE("boolean flag column orders false < true (asc puts unset first)") {
std::vector<MagicCard> v = {
mc(1, "a", "X", "2000/01/01", 1, /*foil=*/true),
mc(2, "b", "X", "2000/01/01", 1, /*foil=*/false),
mc(3, "c", "X", "2000/01/01", 1, /*foil=*/true),
mc(4, "d", "X", "2000/01/01", 1, /*foil=*/false),
};
sortMagicCards(v, MagicSortColumn::Foil, /*ascending=*/true);
// Stable: relative order within each bucket preserved.
CHECK(ids(v) == std::vector<std::uint32_t>{2, 4, 1, 3});
sortMagicCards(v, MagicSortColumn::Foil, /*ascending=*/false);
CHECK(ids(v) == std::vector<std::uint32_t>{1, 3, 2, 4});
}
TEST_CASE("Signed and Altered booleans sort independently") {
std::vector<MagicCard> v = {
mc(1, "a", "X", "2000/01/01", 1, false, /*sgnd=*/false, /*alt=*/true),
mc(2, "b", "X", "2000/01/01", 1, false, /*sgnd=*/true, /*alt=*/false),
};
sortMagicCards(v, MagicSortColumn::Signed, /*ascending=*/true);
CHECK(ids(v) == std::vector<std::uint32_t>{1, 2});
sortMagicCards(v, MagicSortColumn::Altered, /*ascending=*/true);
CHECK(ids(v) == std::vector<std::uint32_t>{2, 1});
}
TEST_CASE("Language and Condition sort by their string label, lowercased") {
std::vector<MagicCard> v = {
mc(1, "a", "X", "2000/01/01", 1, false, false, false,
Language::Japanese, Condition::Mint),
mc(2, "b", "X", "2000/01/01", 1, false, false, false,
Language::English, Condition::Played),
mc(3, "c", "X", "2000/01/01", 1, false, false, false,
Language::German, Condition::NearMint),
};
sortMagicCards(v, MagicSortColumn::Language, /*ascending=*/true);
// english < german < japanese (lowercased compare)
CHECK(ids(v) == std::vector<std::uint32_t>{2, 3, 1});
sortMagicCards(v, MagicSortColumn::Condition, /*ascending=*/true);
// mint < nearmint < played (lowercased compare)
CHECK(ids(v) == std::vector<std::uint32_t>{1, 3, 2});
}
TEST_CASE("Note sorts case-insensitively") {
std::vector<MagicCard> v = {
mc(1, "a", "X", "2000/01/01", 1, false, false, false,
Language::English, Condition::NearMint, "Zeta"),
mc(2, "b", "X", "2000/01/01", 1, false, false, false,
Language::English, Condition::NearMint, "alpha"),
mc(3, "c", "X", "2000/01/01", 1, false, false, false,
Language::English, Condition::NearMint, "Beta"),
};
sortMagicCards(v, MagicSortColumn::Note, /*ascending=*/true);
CHECK(ids(v) == std::vector<std::uint32_t>{2, 3, 1}); // alpha, beta, zeta
}
TEST_CASE("stable: sort by name then by set keeps name order within each set") {
// Mirrors the UX expectation: a user clicks Name, then Set, and
// sees rows grouped by set with names alphabetical inside each group.
std::vector<MagicCard> v = {
mc(1, "Counterspell", "Beta", "1993/10/04"),
mc(2, "Brainstorm", "Alpha", "1993/08/05"),
mc(3, "Lightning Bolt","Beta", "1993/10/04"),
mc(4, "Ancestral Recall","Alpha","1993/08/05"),
};
sortMagicCards(v, MagicSortColumn::Name, /*asc=*/true);
sortMagicCards(v, MagicSortColumn::SetReleaseDate, /*asc=*/true);
// Alpha (1993/08/05) first: ancestral, brainstorm
// Beta (1993/10/04) next: counterspell, lightning bolt
CHECK(ids(v) == std::vector<std::uint32_t>{4, 2, 1, 3});
}
}
TEST_SUITE("CardSorter - Pokemon-specific columns") {
TEST_CASE("Holo and FirstEdition each sort their own bool field") {
std::vector<PokemonCard> v = {
pc(1, "a", "X", "2000/01/01", 1, /*holo=*/true, /*1st=*/false),
pc(2, "b", "X", "2000/01/01", 1, /*holo=*/false, /*1st=*/true),
pc(3, "c", "X", "2000/01/01", 1, /*holo=*/false, /*1st=*/false),
};
sortPokemonCards(v, PokemonSortColumn::Holo, /*ascending=*/true);
CHECK(ids(v) == std::vector<std::uint32_t>{2, 3, 1});
sortPokemonCards(v, PokemonSortColumn::FirstEdition, /*ascending=*/true);
// After previous sort: 2,3,1 (false=2, false=1 actually... let me think
// -- with v in order {2,3,1} their firstEdition = {true,false,false}.
// Stable asc on firstEdition keeps 3 before 1 in the false bucket.)
CHECK(ids(v) == std::vector<std::uint32_t>{3, 1, 2});
}
TEST_CASE("Set column sorts by release date for Pokemon too") {
std::vector<PokemonCard> v = {
pc(1, "x", "Sun & Moon", "2017/02/03"),
pc(2, "y", "Base Set", "1999/01/09"),
pc(3, "z", "Sword & Shield","2020/02/07"),
};
sortPokemonCards(v, PokemonSortColumn::SetReleaseDate, /*ascending=*/true);
CHECK(ids(v) == std::vector<std::uint32_t>{2, 1, 3});
}
TEST_CASE("Amount sorts numerically") {
std::vector<PokemonCard> v = {
pc(1, "a", "X", "2000/01/01", 9),
pc(2, "b", "X", "2000/01/01", 11),
pc(3, "c", "X", "2000/01/01", 1),
};
sortPokemonCards(v, PokemonSortColumn::Amount, /*ascending=*/true);
CHECK(ids(v) == std::vector<std::uint32_t>{3, 1, 2});
}
}
TEST_SUITE("CardSorter - empty / single-element inputs are no-ops") {
TEST_CASE("empty vector stays empty") {
std::vector<MagicCard> v;
sortMagicCards(v, MagicSortColumn::Name, true);
CHECK(v.empty());
}
TEST_CASE("single element preserved") {
std::vector<MagicCard> v = { mc(42, "Solo", "X", "2000/01/01") };
sortMagicCards(v, MagicSortColumn::Amount, false);
CHECK(v.size() == 1);
CHECK(v.front().id == 42);
}
}