#include <algorithm>
#include <string>
#include <utility>
#include <vector>
#include "../../../containers/from_range_helpers.h"
#include "../../../containers/sequences/from_range_sequence_containers.h"
#include "test_macros.h"
#include "asan_testing.h"
template <class Container, class Range, class Alloc>
concept StringHasFromRangeAllocCtr =
requires(Range&& range, const Alloc& alloc) { Container(std::from_range, std::forward<Range>(range), alloc); };
constexpr bool test_constraints() {
static_assert(HasFromRangeCtr<std::string, InputRange<char>>);
static_assert(HasFromRangeCtr<std::string, InputRange<int>>);
static_assert(!HasFromRangeCtr<std::string, InputRange<Empty>>);
static_assert(!HasFromRangeCtr<std::string, InputRangeNotDerivedFrom>);
static_assert(!HasFromRangeCtr<std::string, InputRangeNotIndirectlyReadable>);
static_assert(!HasFromRangeCtr<std::string, InputRangeNotInputOrOutputIterator>);
using Alloc = test_allocator<char>;
using StringWithAlloc = std::basic_string<char, std::char_traits<char>, Alloc>;
static_assert(StringHasFromRangeAllocCtr<StringWithAlloc, InputRange<char>, Alloc>);
static_assert(StringHasFromRangeAllocCtr<StringWithAlloc, InputRange<int>, Alloc>);
static_assert(!StringHasFromRangeAllocCtr<StringWithAlloc, InputRange<Empty>, Alloc>);
static_assert(!StringHasFromRangeAllocCtr<StringWithAlloc, InputRangeNotDerivedFrom, Alloc>);
static_assert(!StringHasFromRangeAllocCtr<StringWithAlloc, InputRangeNotIndirectlyReadable, Alloc>);
static_assert(!StringHasFromRangeAllocCtr<StringWithAlloc, InputRangeNotInputOrOutputIterator, Alloc>);
static_assert(!StringHasFromRangeAllocCtr<StringWithAlloc, InputRange<char>, Empty>);
return true;
}
template <class Iter, class Sent, class Alloc>
constexpr void test_with_input(std::vector<char> input) {
auto b = Iter(input.data());
auto e = Iter(input.data() + input.size());
std::ranges::subrange in(std::move(b), Sent(std::move(e)));
{
std::string c(std::from_range, in);
LIBCPP_ASSERT(c.__invariants());
assert(c.size() == static_cast<std::size_t>(std::distance(c.begin(), c.end())));
assert(std::ranges::equal(in, c));
LIBCPP_ASSERT(is_string_asan_correct(c));
}
{
Alloc alloc;
std::basic_string<char, std::char_traits<char>, Alloc> c(std::from_range, in, alloc);
LIBCPP_ASSERT(c.__invariants());
assert(c.get_allocator() == alloc);
assert(c.size() == static_cast<std::size_t>(std::distance(c.begin(), c.end())));
assert(std::ranges::equal(in, c));
LIBCPP_ASSERT(is_string_asan_correct(c));
}
}
void test_string_exception_safety_throwing_allocator() {
#if !defined(TEST_HAS_NO_EXCEPTIONS)
try {
ThrowingAllocator<char> alloc;
globalMemCounter.reset();
std::basic_string<char, std::char_traits<char>, ThrowingAllocator<char>> c(
std::from_range, std::vector<char>(64, 'A'), alloc);
assert(false);
} catch (int) {
assert(globalMemCounter.new_called == globalMemCounter.delete_called);
}
#endif
}
constexpr bool test_inputs() {
for_all_iterators_and_allocators<char>([]<class Iter, class Sent, class Alloc>() {
test_with_input<Iter, Sent, Alloc>({'a', 'b', 'c', 'd', 'e'});
test_with_input<Iter, Sent, Alloc>(std::vector<char>(64, 'A'));
test_with_input<Iter, Sent, Alloc>({});
test_with_input<Iter, Sent, Alloc>({'a'});
});
return true;
}
int main(int, char**) {
test_inputs();
static_assert(test_inputs());
static_assert(test_constraints());
test_string_exception_safety_throwing_allocator();
return 0;
}