// Copyright (C) 2011 Red Hat, Inc. All rights reserved.
//
// This file is part of the thin-provisioning-tools source.
//
// thin-provisioning-tools is free software: you can redistribute it
// and/or modify it under the terms of the GNU General Public License
// as published by the Free Software Foundation, either version 3 of
// the License, or (at your option) any later version.
//
// thin-provisioning-tools is distributed in the hope that it will be
// useful, but WITHOUT ANY WARRANTY; without even the implied warranty
// of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
// GNU General Public License for more details.
//
// You should have received a copy of the GNU General Public License along
// with thin-provisioning-tools.  If not, see
// .
#include 		// FIXME: remove
#include 
//----------------------------------------------------------------
namespace {
	using namespace base;
	using namespace boost;
	using namespace std;
	template 
	bool overlaps_ordered(run const &lhs, run const &rhs) {
		return rhs.b_ < lhs.e_;
	}
	template 
	bool overlaps(run const &lhs, run const &rhs) {
		if (lhs.b_ <= rhs.b_)
			return overlaps_ordered(lhs, rhs);
		else
			return overlaps_ordered(rhs, lhs);
	}
	template 
	boost::optional >
	merge_ordered_runs_if_overlapping(run const &lhs, run const &rhs) {
		typedef optional > result;
		if (lhs.e_ < rhs.e_)
			return result(run(lhs.b_, rhs.e_));
		if (lhs.e_ <= rhs.e_)
			return result(lhs);
		return result();
	}
	template 
	boost::optional >
	merge_if_overlapping(run const &lhs, run const &rhs) {
		if (lhs.b_ <= rhs.b_)
			return merge_ordered_runs_if_overlapping(lhs, rhs);
		else
			return merge_ordered_runs_if_overlapping(rhs, lhs);
	}
	template 
	pair >::const_iterator,
	     typename set >::const_iterator>
	overlapping_range(set > const &runs, run const &r) {
		// FIXME: slow, but correct implementation first
		typedef typename set >::const_iterator cit;
		for (cit b = runs.begin(); b != runs.end(); ++b) {
			if (overlaps(*b, r)) {
				cit e = b;
				++e;
				while (overlaps(*e, r))
					++e;
				return make_pair(b, e);
			}
		}
		return make_pair(runs.end(), runs.end());
	}
}
//----------------------------------------------------------------
template 
void
run_list::add_run(T const &b, T const &e)
{
	using namespace std;
	typedef typename set >::const_iterator cit;
	run r(b, e);
	pair range = overlapping_range(runs_, r);
	for (cit it = range.first; it != range.second; ++it) {
		optional > mr = merge_if_overlapping(r, *it);
		if (mr)
			r = *mr;
	}
	runs_.erase(range.first, range.second);
	runs_.insert(r);
}
template 
void
run_list::sub_run(T const &b, T const &e)
{
	// FIXME: finish
}
template 
bool
run_list::in_run_(T const &key) const
{
	using namespace std;
	run r(key, key + 1);
	typename set >::const_iterator it = runs_.lower_bound(r);
	if (it != runs_.end() && it->b_ == key)
		return true;
	--it;
	if (it == runs_.end())
		return false;
	return it->b_ <= key && it->e_ > key;
}
template 
bool
run_list::in_run(T const &key) const
{
	if (invert_)
		return !in_run_(key);
	else
		return in_run_(key);
}
template 
void
run_list::invert()
{
	invert_ = !invert_;
}
template 
void
run_list::add(run_list const &rl)
{
	// FIXME: finish
}
template 
void
run_list::sub(run_list const &rl)
{
	// FIXME: finish
}
template 
const_iterator
run_list::begin() const
{
	return runs_.begin();
}
const_iterator
run_list::end() const
{
	return runs_.end();
}
//----------------------------------------------------------------