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Copy pathtest_imap.cpp
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214 lines (180 loc) · 5.21 KB
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#include <imap.hpp>
#include "helpers.hpp"
#include <cctype>
#include <iterator>
#include <string>
#include <vector>
#include "catch.hpp"
using iter::imap;
using Vec = const std::vector<int>;
namespace {
int plusone(int i) {
return i + 1;
}
class PlusOner {
public:
int operator()(int i) {
return i + 1;
}
};
int power(int b, int e) {
int acc = 1;
for (int i = 0; i < e; ++i) {
acc *= b;
}
return acc;
}
}
TEST_CASE("imap: works with lambda, callable, and function", "[imap]") {
Vec ns = {10, 20, 30};
std::vector<int> v;
SECTION("with lambda") {
auto im = imap([](int i) { return i + 1; }, ns);
v.assign(std::begin(im), std::end(im));
}
SECTION("with callable") {
SECTION("Normal call") {
auto im = imap(PlusOner{}, ns);
v.assign(std::begin(im), std::end(im));
}
SECTION("Pipe") {
auto im = ns | imap(PlusOner{});
v.assign(std::begin(im), std::end(im));
}
}
SECTION("with function") {
auto im = imap(PlusOner{}, ns);
v.assign(std::begin(im), std::end(im));
}
Vec vc = {11, 21, 31};
REQUIRE(v == vc);
}
TEST_CASE("imap: works with pointer to member", "[imap]") {
using itertest::Point;
std::vector<Point> ps = {{3, 6}, {20, 25}};
std::vector<int> v;
SECTION("with pointer to member function") {
auto im = imap(&Point::get_y, ps);
v.assign(std::begin(im), std::end(im));
}
SECTION("with pointer to data member") {
auto im = imap(&Point::y, ps);
v.assign(std::begin(im), std::end(im));
}
Vec vc = {6, 25};
REQUIRE(v == vc);
}
TEST_CASE("imap: works with pointer to member function taking argument") {
using itertest::Point;
std::vector<Point> ps = {{10, 20}, {6, 8}, {3, 15}};
std::vector<std::string> strs = {"a", "point", "pos"};
auto im = imap(&Point::prefix, ps, strs);
std::vector<std::string> v(std::begin(im), std::end(im));
const std::vector<std::string> vc = {
"a(10, 20)", "point(6, 8)", "pos(3, 15)"};
REQUIRE(v == vc);
}
// TODO enable once zip supports const
#if 0
TEST_CASE("imap: supports const iteration", "[imap][const]") {
Vec ns = {10, 20, 30};
const auto m = imap(PlusOner{}, ns);
Vec v(std::begin(m), std::end(m));
Vec vc = {11, 21, 31};
REQUIRE(v == vc);
}
TEST_CASE("imap: const iterators can be compared to non-const iterators", "[imap][const]") {
auto m = imap(PlusOner{}, Vec{});
const auto& cm = m;
(void)(std::begin(m) == std::end(cm));
}
#endif
TEST_CASE("imap: Works with different begin and end types", "[imap]") {
CharRange cr{'d'};
auto m = imap([](char c) { return std::toupper(c); }, cr);
Vec v(m.begin(), m.end());
Vec vc{'A', 'B', 'C'};
REQUIRE(v == vc);
}
TEST_CASE("imap: works with multiple sequences", "[imap]") {
Vec bases = {0, 1, 2, 3};
Vec exps = {1, 2, 3, 4};
auto im = imap(power, bases, exps);
Vec v(std::begin(im), std::end(im));
Vec vc = {0, 1, 8, 81};
REQUIRE(v == vc);
}
TEST_CASE("imap: terminates on shortest squence", "[imap]") {
Vec ns1 = {1, 2, 3, 4};
Vec ns2 = {2, 4, 6, 8, 10};
Vec vc = {3, 6, 9, 12};
SECTION("shortest sequence first") {
auto im = imap([](int a, int b) { return a + b; }, ns1, ns2);
Vec v(std::begin(im), std::end(im));
REQUIRE(v == vc);
}
SECTION("shortest sequence second") {
auto im = imap([](int a, int b) { return a + b; }, ns2, ns1);
Vec v(std::begin(im), std::end(im));
REQUIRE(v == vc);
}
}
TEST_CASE("imap: operator->", "[imap]") {
std::vector<std::string> vs = {"ab", "abcd", "abcdefg"};
{
auto m = imap([](std::string& s) { return s; }, vs);
auto it = std::begin(m);
REQUIRE(it->size() == 2);
}
{
auto m = imap([](std::string& s) -> std::string& { return s; }, vs);
auto it = std::begin(m);
REQUIRE(it->size() == 2);
}
}
TEST_CASE("imap: empty sequence gives nothing", "[imap]") {
Vec v{};
auto im = imap(plusone, v);
REQUIRE(std::begin(im) == std::end(im));
}
TEST_CASE("imap: binds to lvalues, moves rvalues", "[imap]") {
itertest::BasicIterable<int> bi{1, 2};
SECTION("binds to lvalues") {
imap(plusone, bi);
REQUIRE_FALSE(bi.was_moved_from());
}
SECTION("moves rvalues") {
imap(plusone, std::move(bi));
REQUIRE(bi.was_moved_from());
}
}
TEST_CASE("imap: doesn't move or copy elements of iterable", "[imap]") {
constexpr itertest::SolidInt arr[] = {{1}, {0}, {2}};
for (auto&& i :
imap([](const itertest::SolidInt& si) { return si.getint(); }, arr)) {
(void)i;
}
}
TEST_CASE("imap: postfix ++", "[imap]") {
Vec ns = {10, 20};
auto im = imap(plusone, ns);
auto it = std::begin(im);
it++;
REQUIRE((*it) == 21);
it++;
REQUIRE(it == std::end(im));
}
TEST_CASE("imap: iterator meets requirements", "[imap]") {
std::string s{};
auto c = imap([](char) { return 1; }, s);
REQUIRE(itertest::IsIterator<decltype(std::begin(c))>::value);
}
template <typename T, typename U>
using ImpT = decltype(imap(std::declval<T>(), std::declval<U>()));
TEST_CASE("imap: has correct ctor and assign ops", "[imap]") {
using T1 = ImpT<bool (*)(char c), std::string&>;
auto lam = [](char) { return false; };
using T2 = ImpT<decltype(lam), std::string>;
REQUIRE(itertest::IsMoveConstructibleOnly<T1>::value);
REQUIRE(itertest::IsMoveConstructibleOnly<T2>::value);
}