ssp/test/test_converter.cpp

417 lines
11 KiB
C++
Raw Normal View History

2021-01-10 23:51:20 +01:00
#include <iostream>
#define DOCTEST_CONFIG_IMPLEMENT_WITH_MAIN
#include "../include/ss/converter.hpp"
#include "doctest.h"
#include <algorithm>
class buffer {
constexpr static auto buff_size = 1024;
char data_[buff_size];
2021-01-10 23:51:20 +01:00
public:
char* operator()(const char* data) {
memset(data_, '\0', buff_size);
strcpy(data_, data);
return data_;
}
};
static buffer buff;
2021-01-10 23:51:20 +01:00
TEST_CASE("testing split") {
ss::converter c;
for (const auto& [s, expected, delim] :
// clang-format off
{std::tuple{"a,b,c,d", std::vector{"a", "b", "c", "d"}, ","},
{"", {}, " "},
{" x x x x | x ", {" x x x x ", " x "}, "|"},
{"a::b::c::d", {"a", "b", "c", "d"}, "::"},
{"x\t-\ty", {"x", "y"}, "\t-\t"},
{"x", {"x"}, ","}} // clang-format on
) {
auto split = c.split(buff(s), delim);
CHECK(split.size() == expected.size());
for (size_t i = 0; i < split.size(); ++i) {
auto s = std::string(split[i].first, split[i].second);
CHECK(s == expected[i]);
}
}
}
TEST_CASE("testing valid conversions") {
ss::converter c;
{
auto tup = c.convert<int>(buff("5"));
REQUIRE(c.valid());
CHECK(tup == 5);
}
{
auto tup = c.convert<int, void>(buff("5,junk"));
REQUIRE(c.valid());
CHECK(tup == 5);
}
{
auto tup = c.convert<void, int>(buff("junk,5"));
REQUIRE(c.valid());
CHECK(tup == 5);
}
{
auto tup = c.convert<int, void, void>(buff("5\njunk\njunk"), "\n");
REQUIRE(c.valid());
CHECK(tup == 5);
}
{
2021-01-10 23:51:20 +01:00
// TODO make \t -> ' '
auto tup = c.convert<void, int, void>(buff("junk\t5\tjunk"), "\t");
REQUIRE(c.valid());
CHECK(tup == 5);
}
{
auto tup = c.convert<void, void, int>(buff("junk\tjunk\t5"), "\t");
REQUIRE(c.valid());
CHECK(tup == 5);
}
{
auto tup =
c.convert<void, void, std::optional<int>>(buff("junk\tjunk\t5"),
"\t");
REQUIRE(c.valid());
REQUIRE(tup.has_value());
CHECK(tup == 5);
}
{
auto tup = c.convert<int, double, void>(buff("5,6.6,junk"));
REQUIRE(c.valid());
CHECK(tup == std::tuple{5, 6.6});
}
{
auto tup = c.convert<int, void, double>(buff("5,junk,6.6"));
REQUIRE(c.valid());
CHECK(tup == std::tuple{5, 6.6});
}
{
auto tup = c.convert<void, int, double>(buff("junk;5;6.6"), ";");
REQUIRE(c.valid());
CHECK(tup == std::tuple{5, 6.6});
}
{
auto tup =
c.convert<void, std::optional<int>, double>(buff("junk;5;6.6"),
";");
REQUIRE(c.valid());
REQUIRE(std::get<0>(tup).has_value());
CHECK(tup == std::tuple{5, 6.6});
}
{
auto tup =
c.convert<void, std::optional<int>, double>(buff("junk;5.4;6.6"),
";");
REQUIRE(c.valid());
REQUIRE(!std::get<0>(tup).has_value());
CHECK(tup == std::tuple{std::nullopt, 6.6});
}
{
auto tup = c.convert<void, std::variant<int, double>,
double>(buff("junk;5;6.6"), ";");
REQUIRE(c.valid());
REQUIRE(std::holds_alternative<int>(std::get<0>(tup)));
CHECK(tup == std::tuple{std::variant<int, double>{5}, 6.6});
}
{
auto tup = c.convert<void, std::variant<int, double>,
double>(buff("junk;5.5;6.6"), ";");
REQUIRE(c.valid());
REQUIRE(std::holds_alternative<double>(std::get<0>(tup)));
CHECK(tup == std::tuple{std::variant<int, double>{5.5}, 6.6});
}
}
TEST_CASE("testing invalid conversions") {
ss::converter c;
c.convert<int>(buff(""));
REQUIRE(!c.valid());
c.convert<int, void>(buff(""));
REQUIRE(!c.valid());
c.convert<int, void>(buff(",junk"));
REQUIRE(!c.valid());
c.convert<void, int>(buff("junk,"));
REQUIRE(!c.valid());
c.convert<int>(buff("x"));
REQUIRE(!c.valid());
c.convert<int, void>(buff("x"));
REQUIRE(!c.valid());
c.convert<int, void>(buff("x,junk"));
REQUIRE(!c.valid());
c.convert<void, int>(buff("junk,x"));
REQUIRE(!c.valid());
c.convert<void, std::variant<int, double>, double>(buff("junk;.5.5;6"),
";");
REQUIRE(!c.valid());
}
TEST_CASE("testing ss:ax restriction (all except)") {
ss::converter c;
c.convert<ss::ax<int, 0>>(buff("0"));
REQUIRE(!c.valid());
c.convert<ss::ax<int, 0, 1, 2>>(buff("1"));
REQUIRE(!c.valid());
c.convert<void, char, ss::ax<int, 0, 1, 2>>(buff("junk,c,1"));
REQUIRE(!c.valid());
c.convert<ss::ax<int, 1>, char>(buff("1,c"));
REQUIRE(!c.valid());
{
int tup = c.convert<ss::ax<int, 1>>(buff("3"));
REQUIRE(c.valid());
CHECK(tup == 3);
}
{
std::tuple<char, int> tup =
c.convert<char, ss::ax<int, 1>>(buff("c,3"));
REQUIRE(c.valid());
CHECK(tup == std::tuple{'c', 3});
}
{
std::tuple<int, char> tup =
c.convert<ss::ax<int, 1>, char>(buff("3,c"));
REQUIRE(c.valid());
CHECK(tup == std::tuple{3, 'c'});
}
}
TEST_CASE("testing ss:nx restriction (none except)") {
ss::converter c;
c.convert<ss::nx<int, 1>>(buff("3"));
REQUIRE(!c.valid());
c.convert<char, ss::nx<int, 1, 2, 69>>(buff("c,3"));
REQUIRE(!c.valid());
c.convert<ss::nx<int, 1>, char>(buff("3,c"));
REQUIRE(!c.valid());
{
auto tup = c.convert<ss::nx<int, 3>>(buff("3"));
REQUIRE(c.valid());
CHECK(tup == 3);
}
{
auto tup = c.convert<ss::nx<int, 0, 1, 2>>(buff("2"));
REQUIRE(c.valid());
CHECK(tup == 2);
}
{
auto tup =
c.convert<char, void, ss::nx<int, 0, 1, 2>>(buff("c,junk,1"));
REQUIRE(c.valid());
CHECK(tup == std::tuple{'c', 1});
}
{
auto tup = c.convert<ss::nx<int, 1>, char>(buff("1,c"));
REQUIRE(c.valid());
CHECK(tup == std::tuple{1, 'c'});
}
}
TEST_CASE("testing ss:ir restriction (in range)") {
ss::converter c;
c.convert<ss::ir<int, 0, 2>>(buff("3"));
REQUIRE(!c.valid());
c.convert<char, ss::ir<int, 4, 69>>(buff("c,3"));
REQUIRE(!c.valid());
c.convert<ss::ir<int, 1, 2>, char>(buff("3,c"));
REQUIRE(!c.valid());
{
auto tup = c.convert<ss::ir<int, 1, 5>>(buff("3"));
REQUIRE(c.valid());
CHECK(tup == 3);
}
{
auto tup = c.convert<ss::ir<int, 0, 2>>(buff("2"));
REQUIRE(c.valid());
CHECK(tup == 2);
}
{
auto tup = c.convert<char, void, ss::ir<int, 0, 1>>(buff("c,junk,1"));
REQUIRE(c.valid());
CHECK(tup == std::tuple{'c', 1});
}
{
auto tup = c.convert<ss::ir<int, 1, 20>, char>(buff("1,c"));
REQUIRE(c.valid());
CHECK(tup == std::tuple{1, 'c'});
}
}
TEST_CASE("testing ss:oor restriction (out of range)") {
ss::converter c;
c.convert<ss::oor<int, 1, 5>>(buff("3"));
REQUIRE(!c.valid());
c.convert<ss::oor<int, 0, 2>>(buff("2"));
REQUIRE(!c.valid());
c.convert<char, ss::oor<int, 0, 1>, void>(buff("c,1,junk"));
REQUIRE(!c.valid());
c.convert<ss::oor<int, 1, 20>, char>(buff("1,c"));
REQUIRE(!c.valid());
{
auto tup = c.convert<ss::oor<int, 0, 2>>(buff("3"));
REQUIRE(c.valid());
CHECK(tup == 3);
}
{
auto tup = c.convert<char, void, ss::oor<int, 4, 69>>(buff("c,junk,3"));
REQUIRE(c.valid());
CHECK(tup == std::tuple{'c', 3});
}
{
auto tup = c.convert<ss::oor<int, 1, 2>, char>(buff("3,c"));
REQUIRE(c.valid());
CHECK(tup == std::tuple{3, 'c'});
}
}
const std::vector<int> extracted_vector = {1, 2, 3};
// custom extract
template <>
inline bool ss::extract(const char* begin, const char* end,
std::vector<int>& value) {
if (begin == end) {
return false;
}
value = extracted_vector;
return true;
}
TEST_CASE("testing ss:ne restriction (not empty)") {
ss::converter c;
c.convert<ss::ne<std::string>>(buff(""));
REQUIRE(!c.valid());
c.convert<int, ss::ne<std::string>>(buff("3,"));
REQUIRE(!c.valid());
c.convert<ss::ne<std::string>, int>(buff(",3"));
REQUIRE(!c.valid());
c.convert<void, ss::ne<std::string>, int>(buff("junk,,3"));
REQUIRE(!c.valid());
c.convert<ss::ne<std::vector<int>>>(buff(""));
REQUIRE(!c.valid());
{
auto tup = c.convert<ss::ne<std::string>>(buff("s"));
REQUIRE(c.valid());
CHECK(tup == "s");
}
{
auto tup =
c.convert<std::optional<int>, ss::ne<std::string>>(buff("1,s"));
REQUIRE(c.valid());
CHECK(tup == std::tuple{1, "s"});
}
{
auto tup = c.convert<ss::ne<std::vector<int>>>(buff("{1 2 3}"));
REQUIRE(c.valid());
CHECK(tup == extracted_vector);
}
}
2020-12-27 16:51:59 +01:00
TEST_CASE("testing ss:lt ss::lte ss::gt ss::gte restriction (in range)") {
ss::converter c;
c.convert<ss::lt<int, 3>>(buff("3"));
REQUIRE(!c.valid());
c.convert<ss::lt<int, 2>>(buff("3"));
REQUIRE(!c.valid());
c.convert<ss::gt<int, 3>>(buff("3"));
REQUIRE(!c.valid());
c.convert<ss::gt<int, 4>>(buff("3"));
REQUIRE(!c.valid());
c.convert<ss::lte<int, 2>>(buff("3"));
REQUIRE(!c.valid());
c.convert<ss::gte<int, 4>>(buff("3"));
REQUIRE(!c.valid());
{
auto tup = c.convert<ss::lt<int, 4>>(buff("3"));
REQUIRE(c.valid());
CHECK(tup == 3);
}
{
auto tup = c.convert<ss::gt<int, 2>>(buff("3"));
REQUIRE(c.valid());
CHECK(tup == 3);
}
{
auto tup = c.convert<ss::lte<int, 4>>(buff("3"));
REQUIRE(c.valid());
CHECK(tup == 3);
}
{
auto tup = c.convert<ss::lte<int, 3>>(buff("3"));
REQUIRE(c.valid());
CHECK(tup == 3);
}
{
auto tup = c.convert<ss::gte<int, 2>>(buff("3"));
REQUIRE(c.valid());
CHECK(tup == 3);
}
{
auto tup = c.convert<ss::gte<int, 3>>(buff("3"));
REQUIRE(c.valid());
CHECK(tup == 3);
}
}
2020-12-27 16:51:59 +01:00
TEST_CASE("testing error mode") {
ss::converter c;
c.convert<int>(buff("junk"));
2020-12-27 16:51:59 +01:00
CHECK(!c.valid());
2020-12-27 17:00:06 +01:00
CHECK(c.error_msg().empty());
2020-12-27 16:51:59 +01:00
c.set_error_mode(ss::error_mode::error_string);
c.convert<int>(buff("junk"));
2020-12-27 16:51:59 +01:00
CHECK(!c.valid());
2020-12-27 17:00:06 +01:00
CHECK(!c.error_msg().empty());
2020-12-27 16:51:59 +01:00
}