Files
container/experimental/segmented_none_of_test.cpp
T

351 lines
12 KiB
C++

//////////////////////////////////////////////////////////////////////////////
//
// (C) Copyright Ion Gaztanaga 2025-2026. Distributed under the Boost
// Software License, Version 1.0. (See accompanying file
// LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)
//
// See http://www.boost.org/libs/container for documentation.
//
//////////////////////////////////////////////////////////////////////////////
#include <boost/container/experimental/segmented_none_of.hpp>
#include "../test/lightweight_test.hpp"
#include "segmented_test_helper.hpp"
#include <boost/container/vector.hpp>
using namespace boost::container;
struct is_negative
{
bool operator()(int x) const { return x < 0; }
};
struct equals_val
{
int v;
equals_val(int x) : v(x) {}
bool operator()(int x) const { return x == v; }
};
// Satisfied by several elements at once, so that the early exit has to happen
// at the first of them. The x > 0 term keeps the negative out-of-range guard
// out, whatever the modulus.
struct multiple_of
{
int m;
multiple_of(int x) : m(x) {}
bool operator()(int x) const { return x > 0 && (x % m) == 0; }
};
void test_none_of_empty()
{
test_detail::seg_vector<int> sv;
BOOST_TEST(segmented_none_of(sv.begin(), sv.end(), is_negative()));
}
void test_none_of_non_segmented()
{
boost::container::vector<int> v;
v.push_back(1);
v.push_back(2);
v.push_back(3);
BOOST_TEST(segmented_none_of(v.begin(), v.end(), is_negative()));
v.clear();
v.push_back(1);
v.push_back(-2);
v.push_back(3);
BOOST_TEST(!segmented_none_of(v.begin(), v.end(), is_negative()));
}
void test_none_of_sentinel_segmented()
{
test_detail::seg_vector<int> sv;
int a1[] = {1, 2, 3};
int a2[] = {4, 5, 6};
sv.add_segment_range(a1, a1 + 3);
sv.add_segment_range(a2, a2 + 3);
BOOST_TEST(segmented_none_of(sv.begin(), test_detail::make_sentinel(sv.end()), is_negative()));
}
void test_none_of_sentinel_non_segmented()
{
boost::container::vector<int> v;
v.push_back(1);
v.push_back(-2);
v.push_back(3);
BOOST_TEST(!segmented_none_of(v.begin(), test_detail::make_sentinel(v.end()), is_negative()));
}
// Runs segmented_none_of over a range whose segmentation shape is dictated by
// a branch spec, so that every level of the recursive dispatch is exercised on
// its single-segment, its multi-segment and its empty-segment path.
// segmented_none_of_dispatch is also what segmented_any_of and segmented_all_of
// run on, but the sense of the answer differs, so each has its own matrix.
template<class Pred>
struct none_of_shape_check
{
Pred pred;
explicit none_of_shape_check(Pred p) : pred(p) {}
template<class Cont>
void operator()(Cont& c, std::size_t n, const char* spec) const
{
typedef typename Cont::iterator iter_t;
const iter_t first = c.begin();
const iter_t last = test_detail::iter_at(c, n);
// Reference: naive scan over a flattened copy of the logical range. The
// guard past the end is deliberately not part of it.
const boost::container::vector<int> flat = test_detail::flatten_n_ints(c, n);
bool expected = true;
for(std::size_t i = 0; i != flat.size(); ++i) {
if(pred(flat[i])) { expected = false; break; }
}
BOOST_TEST_EQ(segmented_none_of(first, last, pred), expected);
BOOST_TEST(spec != 0);
}
};
// Bidirectional and forward iterators instantiate every dispatch template
// separately, so each shape is driven through both.
template<class Pred>
void run_none_of_shapes(const int* vals, std::size_t n, Pred pred)
{
test_detail::for_each_shape_all<int>(vals, n, -999, none_of_shape_check<Pred>(pred));
test_detail::for_each_shape_all_fwd<int>(vals, n, -999, none_of_shape_check<Pred>(pred));
}
void test_none_of_shape_matrix()
{
int vals[16];
for(int i = 0; i != 16; ++i)
vals[i] = i + 1;
const std::size_t sizes[] = { 0u, 1u, 2u, 5u, 12u };
for(std::size_t s = 0; s != sizeof(sizes)/sizeof(sizes[0]); ++s) {
const std::size_t n = sizes[s];
// The single hit at the first position, at every interior one and at the
// last one; then a value no element has; then the guard value, which
// lies past the end and must never turn a true answer into a false one.
for(std::size_t v = 0; v <= n + 1u; ++v)
run_none_of_shapes(vals, n, equals_val((v <= n) ? int(v) : -999));
// Predicates hit by many elements: all of them, every second one and
// every third one, so a hit in an earlier segment coexists with hits in
// later ones and the walk must stop at the first.
run_none_of_shapes(vals, n, multiple_of(1));
run_none_of_shapes(vals, n, multiple_of(2));
run_none_of_shapes(vals, n, multiple_of(3));
// Hit by nothing at all, guard included.
run_none_of_shapes(vals, n, is_negative());
}
}
//----------------------------------------------------------------------------
// Single-segment cases with data before the start of the range. The shape
// matrix always starts its range at the container's first element, so the
// lower bound is only exercised here: each range below leaves an element that
// would be a hit just before its start, and a negative guard just past its
// end.
//----------------------------------------------------------------------------
void test_none_of_single_segment_interior()
{
test_detail::seg_vector<int> sv;
int a[] = {10, 20, 30, 40, 50, -60};
sv.add_segment_range(a, a + 6);
typedef test_detail::seg_vector<int>::iterator iter_t;
const iter_t first = test_detail::iter_at(sv, 1);
const iter_t last = test_detail::iter_at(sv, 5);
BOOST_TEST(!segmented_none_of(first, last, equals_val(20)));
BOOST_TEST(!segmented_none_of(first, last, equals_val(50)));
BOOST_TEST(segmented_none_of(first, last, equals_val(35)));
BOOST_TEST(segmented_none_of(first, last, equals_val(10)));
BOOST_TEST(segmented_none_of(first, last, is_negative()));
}
void test_none_of_single_segment_sentinel()
{
test_detail::seg_vector<int> sv;
int a[] = {10, 20, 30, 40, 50, -60};
sv.add_segment_range(a, a + 6);
typedef test_detail::seg_vector<int>::iterator iter_t;
const iter_t first = test_detail::iter_at(sv, 1);
const iter_t last = test_detail::iter_at(sv, 5);
BOOST_TEST(!segmented_none_of(first, test_detail::make_sentinel(last), equals_val(20)));
BOOST_TEST(!segmented_none_of(first, test_detail::make_sentinel(last), equals_val(50)));
BOOST_TEST(segmented_none_of(first, test_detail::make_sentinel(last), is_negative()));
}
void test_none_of_single_segment_seg2_inner_multi()
{
test_detail::seg_vector<int> inner;
int a1[] = {10, 20, 30};
int a2[] = {40, 50, 60, -99};
inner.add_segment_range(a1, a1 + 3);
inner.add_segment_range(a2, a2 + 4);
test_detail::seg2_vector<int> sv2;
sv2.add_segment(inner);
typedef test_detail::seg2_vector<int>::iterator iter_t;
const iter_t first = test_detail::iter_at(sv2, 1);
const iter_t last = test_detail::iter_at(sv2, 6);
BOOST_TEST(!segmented_none_of(first, last, equals_val(20)));
BOOST_TEST(!segmented_none_of(first, last, equals_val(40)));
BOOST_TEST(!segmented_none_of(first, last, equals_val(60)));
BOOST_TEST(segmented_none_of(first, last, equals_val(10)));
BOOST_TEST(segmented_none_of(first, last, is_negative()));
}
void test_none_of_single_segment_seg2_single_inner()
{
test_detail::seg_vector<int> inner;
int a[] = {10, 20, 30, 40, 50, 60, -99};
inner.add_segment_range(a, a + 7);
test_detail::seg2_vector<int> sv2;
sv2.add_segment(inner);
typedef test_detail::seg2_vector<int>::iterator iter_t;
const iter_t first = test_detail::iter_at(sv2, 1);
const iter_t last = test_detail::iter_at(sv2, 5);
BOOST_TEST(!segmented_none_of(first, last, equals_val(20)));
BOOST_TEST(!segmented_none_of(first, last, equals_val(50)));
BOOST_TEST(segmented_none_of(first, last, equals_val(35)));
BOOST_TEST(segmented_none_of(first, last, equals_val(10)));
BOOST_TEST(segmented_none_of(first, last, is_negative()));
}
// The whole suite instantiates the bidirectional category only; the forward
// one is a different instantiation of every dispatch template.
void test_none_of_single_segment_forward()
{
typedef test_detail::seg_vector<int, std::forward_iterator_tag> cont_t;
typedef cont_t::iterator iter_t;
cont_t sv;
int a[] = {10, 20, 30, 40, 50, 60, -99};
sv.add_segment_range(a, a + 7);
const iter_t whole_last = test_detail::iter_at(sv, 6);
BOOST_TEST(!segmented_none_of(sv.begin(), whole_last, equals_val(10)));
BOOST_TEST(!segmented_none_of(sv.begin(), whole_last, equals_val(60)));
BOOST_TEST(segmented_none_of(sv.begin(), whole_last, is_negative()));
const iter_t first = test_detail::iter_at(sv, 1);
const iter_t last = test_detail::iter_at(sv, 5);
BOOST_TEST(!segmented_none_of(first, last, equals_val(20)));
BOOST_TEST(!segmented_none_of(first, last, equals_val(50)));
BOOST_TEST(segmented_none_of(first, last, equals_val(10)));
BOOST_TEST(segmented_none_of(first, last, equals_val(60)));
}
// Forward category, multi-segment, with the hit in an earlier segment and no
// hit in the last one: the last-segment call must not discard it.
void test_none_of_forward_hit_before_last_segment()
{
typedef test_detail::seg_vector<int, std::forward_iterator_tag> cont_t;
typedef cont_t::iterator iter_t;
cont_t sv;
int a1[] = {10, 20, 30};
int a2[] = {40, 50};
int a3[] = {60, 70, 80};
sv.add_segment_range(a1, a1 + 3);
sv.add_segment_range(a2, a2 + 2);
sv.add_segment_range(a3, a3 + 3);
const iter_t last = test_detail::iter_at(sv, 7);
BOOST_TEST(!segmented_none_of(sv.begin(), last, equals_val(20)));
BOOST_TEST(!segmented_none_of(sv.begin(), last, equals_val(40)));
BOOST_TEST(segmented_none_of(sv.begin(), last, equals_val(80)));
}
//////////////////////////////////////////////////////////////////////////////
// Predicate application count.
//
// [alg.none.of] mandates "At most last - first applications of the predicate".
// The lower bound is not in the standard but follows from the answer: false
// cannot be returned without having applied pred to every element up to and
// including the first hit, and true cannot be returned without having applied
// it to all of them. Bracketing the count catches an element retested when
// the scan crosses a segment boundary.
//////////////////////////////////////////////////////////////////////////////
template<class Pred>
struct none_of_count_check
{
Pred pred;
explicit none_of_count_check(Pred p) : pred(p) {}
template<class Cont>
void operator()(Cont& c, std::size_t n, const char* spec) const
{
const boost::container::vector<int> flat = test_detail::flatten_n_ints(c, n);
std::size_t needed = n;
for(std::size_t i = 0; i != n; ++i)
if(pred(flat[i])) { needed = i + 1u; break; }
test_detail::op_counter calls;
segmented_none_of(c.begin(), test_detail::iter_at(c, n),
test_detail::counting_pred(calls, pred));
BOOST_TEST(calls.n <= n);
BOOST_TEST(calls.n >= needed);
BOOST_TEST(spec != 0);
}
};
template<class Pred>
void run_none_of_count_shapes(const int* vals, std::size_t n, Pred pred)
{
test_detail::for_each_shape_all<int>(vals, n, -999, none_of_count_check<Pred>(pred));
test_detail::for_each_shape_all_fwd<int>(vals, n, -999, none_of_count_check<Pred>(pred));
}
void test_none_of_predicate_count()
{
int vals[16];
for(int i = 0; i != 16; ++i)
vals[i] = i + 1;
const std::size_t sizes[] = { 0u, 1u, 2u, 5u, 12u };
for(std::size_t s = 0; s != sizeof(sizes)/sizeof(sizes[0]); ++s) {
const std::size_t n = sizes[s];
for(std::size_t v = 0; v <= n + 1u; ++v)
run_none_of_count_shapes(vals, n, equals_val((v <= n) ? int(v) : -999));
run_none_of_count_shapes(vals, n, multiple_of(1));
run_none_of_count_shapes(vals, n, multiple_of(3));
run_none_of_count_shapes(vals, n, is_negative());
}
}
int main()
{
test_none_of_shape_matrix();
test_none_of_empty();
test_none_of_non_segmented();
test_none_of_sentinel_segmented();
test_none_of_sentinel_non_segmented();
test_none_of_single_segment_interior();
test_none_of_single_segment_sentinel();
test_none_of_single_segment_seg2_inner_multi();
test_none_of_single_segment_seg2_single_inner();
test_none_of_single_segment_forward();
test_none_of_forward_hit_before_last_segment();
test_none_of_predicate_count();
return boost::report_errors();
}