1281 lines
36 KiB
C++
Executable File
1281 lines
36 KiB
C++
Executable File
// Copyright (c) 1998-2005,2007
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// Utrecht University (The Netherlands),
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// ETH Zurich (Switzerland),
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// INRIA Sophia-Antipolis (France),
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// Max-Planck-Institute Saarbruecken (Germany),
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// and Tel-Aviv University (Israel). All rights reserved.
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//
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// This file is part of CGAL (www.cgal.org); you can redistribute it and/or
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// modify it under the terms of the GNU Lesser General Public License as
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// published by the Free Software Foundation; either version 3 of the License,
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// or (at your option) any later version.
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//
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// Licensees holding a valid commercial license may use this file in
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// accordance with the commercial license agreement provided with the software.
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//
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// This file is provided AS IS with NO WARRANTY OF ANY KIND, INCLUDING THE
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// WARRANTY OF DESIGN, MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
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//
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// $URL$
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// $Id$
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// SPDX-License-Identifier: LGPL-3.0+
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//
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//
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// Author(s) : Sylvain Pion, Michael Hemmer
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#ifndef CGAL_INTERVAL_NT_H
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#define CGAL_INTERVAL_NT_H
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// This file contains the description of the following classes:
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// - Interval_nt<false> It's a number type that needs the FPU rounding mode
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// to be set to +inf. It is also typedef'd to
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// Interval_nt_advanced for backward compatibility.
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// - Interval_nt<true> Same but it does the rounding mode itself so you
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// don't have to worry about it. But it's slower.
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//
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// Note: When rounding is towards +infinity, to make an operation rounded
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// towards -infinity, it's enough to take the opposite of some of the operand,
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// and the opposite of the result (see operator+, operator*,...).
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// TODO :
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// - test whether stopping constant propagation only in functions taking
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// double as arguments, improves performance.
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#include <utility> // for std::pair
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#include <CGAL/number_type_config.h>
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#include <CGAL/number_utils.h>
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#include <CGAL/utils_classes.h>
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#include <CGAL/number_utils.h>
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#include <CGAL/Uncertain.h>
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#include <CGAL/Interval_traits.h>
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#include <CGAL/double.h>
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#include <CGAL/FPU.h>
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#include <CGAL/IO/io.h>
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#include <iostream>
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namespace CGAL {
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template <bool Protected = true>
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class Interval_nt
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{
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typedef Interval_nt<Protected> IA;
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typedef std::pair<double, double> Pair;
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public:
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typedef double value_type;
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typedef Uncertain_conversion_exception unsafe_comparison;
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typedef Checked_protect_FPU_rounding<Protected> Internal_protector;
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typedef Protect_FPU_rounding<!Protected> Protector;
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Interval_nt()
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#ifndef CGAL_NO_ASSERTIONS
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: _inf(1), _sup(0)
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// to early and deterministically detect use of uninitialized
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#endif
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{}
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Interval_nt(int i)
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: _inf(i), _sup(i) {}
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Interval_nt(unsigned i)
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: _inf(i), _sup(i) {}
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Interval_nt(long long i)
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: _inf(static_cast<double>(i)), _sup(static_cast<double>(i))
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{
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// gcc ignores -frounding-math when converting integers to floats.
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#ifdef __GNUC__
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long long safe = 1LL << 52; // Use numeric_limits?
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bool exact = ((long long)_inf == i) || (i <= safe && i >= -safe);
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if (!(__builtin_constant_p(exact) && exact))
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#endif
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*this += smallest();
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}
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Interval_nt(unsigned long long i)
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: _inf(static_cast<double>(i)), _sup(static_cast<double>(i))
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{
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#ifdef __GNUC__
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unsigned long long safe = 1ULL << 52; // Use numeric_limits?
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bool exact = ((unsigned long long)_inf == i) || (i <= safe);
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if (!(__builtin_constant_p(exact) && exact))
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#endif
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*this += smallest();
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}
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Interval_nt(long i)
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{
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*this = (sizeof(int)==sizeof(long)) ?
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Interval_nt((int)i) :
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Interval_nt((long long)i);
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}
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Interval_nt(unsigned long i)
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{
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*this = (sizeof(int)==sizeof(long)) ?
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Interval_nt((unsigned)i) :
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Interval_nt((unsigned long long)i);
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}
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Interval_nt(double d)
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: _inf(d), _sup(d) { CGAL_assertion(is_finite(d)); }
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// The Intel compiler on Linux is aggressive with constant propagation and
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// it seems there is no flag to stop it, so disable this check for it.
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#if !defined(CGAL_DISABLE_ROUNDING_MATH_CHECK) && \
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defined(__INTEL_COMPILER) && defined(__linux)
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# define CGAL_DISABLE_ROUNDING_MATH_CHECK
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#endif
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Interval_nt(double i, double s)
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: _inf(i), _sup(s)
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{
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// Previously it was:
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// CGAL_assertion_msg(!(i>s);
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// But MSVC++ 2012 optimizes the test "!(i>s)" to "i<=s", even with
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// /fp:strict. If 'i' or 's' is a NaN, that makes a difference.
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CGAL_assertion_msg( (!is_valid(i)) || (!is_valid(s)) || (!(i>s)),
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" Variable used before being initialized (or CGAL bug)");
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#ifndef CGAL_DISABLE_ROUNDING_MATH_CHECK
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CGAL_assertion_code((void) tester;) // Necessary to trigger a runtime test of rounding modes.
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#endif
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}
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Interval_nt(const Pair & p)
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: _inf(p.first), _sup(p.second) {}
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IA operator-() const { return IA (-sup(), -inf()); }
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IA & operator+= (const IA &d) { return *this = *this + d; }
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IA & operator-= (const IA &d) { return *this = *this - d; }
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IA & operator*= (const IA &d) { return *this = *this * d; }
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IA & operator/= (const IA &d) { return *this = *this / d; }
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bool is_point() const
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{
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return sup() == inf();
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}
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bool is_same (const IA & d) const
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{
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return inf() == d.inf() && sup() == d.sup();
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}
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bool do_overlap (const IA & d) const
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{
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return !(d.inf() > sup() || d.sup() < inf());
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}
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const double & inf() const { return _inf; }
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const double & sup() const { return _sup; }
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std::pair<double, double> pair() const
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{
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return std::pair<double, double>(inf(), sup());
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}
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static IA largest()
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{
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return IA(-std::numeric_limits<double>::infinity(), std::numeric_limits<double>::infinity());
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}
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static IA smallest()
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{
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return IA(-CGAL_IA_MIN_DOUBLE, CGAL_IA_MIN_DOUBLE);
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}
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#if 0 // def CGAL_HISTOGRAM_PROFILER // not yet ready
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~Interval_nt()
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{
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CGAL_HISTOGRAM_PROFILER("[Interval_nt relative precision in log2 scale]",
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(unsigned) ( ::log(relative_precision(*this))) / ::log(2.0) ) );
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}
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#endif
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private:
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// Pair inf_sup;
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double _inf, _sup;
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struct Test_runtime_rounding_modes {
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Test_runtime_rounding_modes()
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{
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// We test whether GCC's -frounding-math option has been forgotten.
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// The macros CGAL_IA_MUL and CGAL_IA_DIV stop constant propagation only
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// on the second argument, so if -fno-rounding-math, the compiler optimizes
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// the 2 negations and we get wrong rounding.
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typename Interval_nt<>::Internal_protector P;
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CGAL_assertion_msg(-CGAL_IA_MUL(-1.1, 10.1) != CGAL_IA_MUL(1.1, 10.1),
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"Wrong rounding: did you forget the -frounding-math option if you use GCC (or -fp-model strict for Intel)?");
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CGAL_assertion_msg(-CGAL_IA_DIV(-1., 10) != CGAL_IA_DIV(1., 10),
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"Wrong rounding: did you forget the -frounding-math option if you use GCC (or -fp-model strict for Intel)?");
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}
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};
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#ifndef CGAL_DISABLE_ROUNDING_MATH_CHECK
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static const Test_runtime_rounding_modes tester;
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#endif
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};
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#ifndef CGAL_DISABLE_ROUNDING_MATH_CHECK
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template <bool Protected>
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const typename Interval_nt<Protected>::Test_runtime_rounding_modes
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Interval_nt<Protected>::tester;
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#endif
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template <bool Protected>
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inline
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Uncertain<bool>
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operator<(const Interval_nt<Protected> &a, const Interval_nt<Protected> &b)
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{
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if (a.sup() < b.inf()) return true;
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if (a.inf() >= b.sup()) return false;
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return Uncertain<bool>::indeterminate();
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}
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template <bool Protected>
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inline
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Uncertain<bool>
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operator>(const Interval_nt<Protected> &a, const Interval_nt<Protected> &b)
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{ return b < a; }
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template <bool Protected>
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inline
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Uncertain<bool>
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operator<=(const Interval_nt<Protected> &a, const Interval_nt<Protected> &b)
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{
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if (a.sup() <= b.inf()) return true;
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if (a.inf() > b.sup()) return false;
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return Uncertain<bool>::indeterminate();
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}
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template <bool Protected>
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inline
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Uncertain<bool>
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operator>=(const Interval_nt<Protected> &a, const Interval_nt<Protected> &b)
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{ return b <= a; }
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template <bool Protected>
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inline
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Uncertain<bool>
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operator==(const Interval_nt<Protected> &a, const Interval_nt<Protected> &b)
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{
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if (b.inf() > a.sup() || b.sup() < a.inf()) return false;
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if (b.inf() == a.sup() && b.sup() == a.inf()) return true;
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return Uncertain<bool>::indeterminate();
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}
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template <bool Protected>
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inline
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Uncertain<bool>
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operator!=(const Interval_nt<Protected> &a, const Interval_nt<Protected> &b)
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{ return ! (a == b); }
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// Mixed operators with double.
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template <bool Protected>
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inline
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Uncertain<bool>
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operator<(double a, const Interval_nt<Protected> &b)
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{
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if (a < b.inf()) return true;
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if (a >= b.sup()) return false;
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return Uncertain<bool>::indeterminate();
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}
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template <bool Protected>
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inline
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Uncertain<bool>
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operator>(double a, const Interval_nt<Protected> &b)
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{ return b < a; }
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template <bool Protected>
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inline
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Uncertain<bool>
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operator<=(double a, const Interval_nt<Protected> &b)
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{
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if (a <= b.inf()) return true;
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if (a > b.sup()) return false;
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return Uncertain<bool>::indeterminate();
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}
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template <bool Protected>
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inline
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Uncertain<bool>
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operator>=(double a, const Interval_nt<Protected> &b)
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{ return b <= a; }
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template <bool Protected>
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inline
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Uncertain<bool>
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operator==(double a, const Interval_nt<Protected> &b)
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{
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if (b.inf() > a || b.sup() < a) return false;
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if (b.inf() == a && b.sup() == a) return true;
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return Uncertain<bool>::indeterminate();
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}
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template <bool Protected>
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inline
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Uncertain<bool>
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operator!=(double a, const Interval_nt<Protected> &b)
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{ return ! (a == b); }
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template <bool Protected>
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inline
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Uncertain<bool>
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operator<(const Interval_nt<Protected> &a, double b)
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{
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if (a.sup() < b) return true;
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if (a.inf() >= b) return false;
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return Uncertain<bool>::indeterminate();
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}
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template <bool Protected>
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inline
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Uncertain<bool>
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operator>(const Interval_nt<Protected> &a, double b)
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{ return b < a; }
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template <bool Protected>
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inline
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Uncertain<bool>
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operator<=(const Interval_nt<Protected> &a, double b)
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{
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if (a.sup() <= b) return true;
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if (a.inf() > b) return false;
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return Uncertain<bool>::indeterminate();
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}
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template <bool Protected>
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inline
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Uncertain<bool>
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operator>=(const Interval_nt<Protected> &a, double b)
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{ return b <= a; }
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template <bool Protected>
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inline
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Uncertain<bool>
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operator==(const Interval_nt<Protected> &a, double b)
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{
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if (b > a.sup() || b < a.inf()) return false;
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if (b == a.sup() && b == a.inf()) return true;
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return Uncertain<bool>::indeterminate();
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}
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template <bool Protected>
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inline
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Uncertain<bool>
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operator!=(const Interval_nt<Protected> &a, double b)
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{ return ! (a == b); }
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// Non-documented
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// Returns true if the interval is a unique representable double.
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template <bool Protected>
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inline
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bool
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fit_in_double (const Interval_nt<Protected> & d, double &r)
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{
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bool b = d.is_point();
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if (b)
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r = d.inf();
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return b;
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}
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// Non-documented
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template <bool Protected>
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inline
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bool
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is_singleton (const Interval_nt<Protected> & d)
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{
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return d.is_point();
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}
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// Non-documented
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template <bool Protected>
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inline
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double
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magnitude (const Interval_nt<Protected> & d)
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{
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return (std::max)(CGAL::abs(d.inf()), CGAL::abs(d.sup()));
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}
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// Non-documented
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template <bool Protected>
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inline
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double
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width (const Interval_nt<Protected> & d)
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{
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return d.sup() - d.inf();
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}
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// Non-documented
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template <bool Protected>
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inline
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double
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radius (const Interval_nt<Protected> & d)
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{
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return width(d)/2; // This could be improved to avoid overflow.
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}
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// Non-documented
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// This is the relative precision of to_double() (the center of the interval),
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// hence we use radius() instead of width().
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template <bool Protected>
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inline
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bool
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has_smaller_relative_precision(const Interval_nt<Protected> & d, double prec)
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{
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return magnitude(d) == 0 || radius(d) < prec * magnitude(d);
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}
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// Non-documented
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template <bool Protected>
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double
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relative_precision(const Interval_nt<Protected> & d)
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{
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if (magnitude(d) == 0.0)
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return 0.0;
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return radius(d) / magnitude(d);
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}
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template< bool Protected >
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class Is_valid< Interval_nt<Protected> >
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: public CGAL::cpp98::unary_function< Interval_nt<Protected>, bool > {
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public :
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bool operator()( const Interval_nt<Protected>& x ) const {
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return is_valid(x.inf()) &&
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is_valid(x.sup()) &&
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x.inf() <= x.sup();
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}
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};
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template <bool Protected>
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std::ostream & operator<< (std::ostream &os, const Interval_nt<Protected> & I )
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{
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return os << "[" << I.inf() << ";" << I.sup() << "]";
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}
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#define CGAL_SWALLOW(IS,CHAR) \
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{ \
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char c; \
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do is.get(c); while (isspace(c)); \
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if (c != CHAR) { \
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is.setstate(std::ios_base::failbit); \
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} \
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} \
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template <bool Protected>
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std::istream & operator>> (std::istream &is, Interval_nt<Protected> & I)
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{
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char c;
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do is.get(c); while (isspace(c));
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is.putback(c);
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if(c == '['){ // read original output from operator <<
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double inf,sup;
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CGAL_SWALLOW(is, '[');// read the "["
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is >> iformat(inf);
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CGAL_SWALLOW(is, ';');// read the ";"
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is >> iformat(sup);
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CGAL_SWALLOW(is, ']');// read the "]"
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I = Interval_nt<Protected>(inf,sup);
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}else{ //read double (backward compatibility)
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double d;
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is >> d;
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I = d;
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}
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return is;
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}
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#undef CGAL_SWALLOW
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typedef Interval_nt<false> Interval_nt_advanced; // for backward-compatibility
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template <bool Protected>
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inline
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Interval_nt<Protected>
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operator+ (const Interval_nt<Protected> &a, const Interval_nt<Protected> & b)
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{
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typename Interval_nt<Protected>::Internal_protector P;
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return Interval_nt<Protected> (-CGAL_IA_SUB(-a.inf(), b.inf()),
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CGAL_IA_ADD(a.sup(), b.sup()));
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}
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template <bool Protected>
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inline
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Interval_nt<Protected>
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operator+ (double a, const Interval_nt<Protected> & b)
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{
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return Interval_nt<Protected>(a)+b;
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}
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template <bool Protected>
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inline
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Interval_nt<Protected>
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operator+ (const Interval_nt<Protected> & a, double b)
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{
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return a+Interval_nt<Protected>(b);
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}
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template< bool Protected >
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inline
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Interval_nt<Protected>
|
|
operator+( const Interval_nt<Protected>& a ) {
|
|
return a;
|
|
}
|
|
|
|
template <bool Protected>
|
|
inline
|
|
Interval_nt<Protected>
|
|
operator- (const Interval_nt<Protected> &a, const Interval_nt<Protected> & b)
|
|
{
|
|
typename Interval_nt<Protected>::Internal_protector P;
|
|
return Interval_nt<Protected>(-CGAL_IA_SUB(b.sup(), a.inf()),
|
|
CGAL_IA_SUB(a.sup(), b.inf()));
|
|
}
|
|
|
|
template <bool Protected>
|
|
inline
|
|
Interval_nt<Protected>
|
|
operator- (double a, const Interval_nt<Protected> & b)
|
|
{
|
|
return Interval_nt<Protected>(a)-b;
|
|
}
|
|
|
|
template <bool Protected>
|
|
inline
|
|
Interval_nt<Protected>
|
|
operator- (const Interval_nt<Protected> & a, double b)
|
|
{
|
|
return a-Interval_nt<Protected>(b);
|
|
}
|
|
|
|
template <bool Protected>
|
|
inline
|
|
Interval_nt<Protected>
|
|
operator* (const Interval_nt<Protected> &a, const Interval_nt<Protected> & b)
|
|
{
|
|
typedef Interval_nt<Protected> IA;
|
|
typename Interval_nt<Protected>::Internal_protector P;
|
|
if (a.inf() >= 0.0) // a>=0
|
|
{
|
|
// b>=0 [a.inf()*b.inf(); a.sup()*b.sup()]
|
|
// b<=0 [a.sup()*b.inf(); a.inf()*b.sup()]
|
|
// b~=0 [a.sup()*b.inf(); a.sup()*b.sup()]
|
|
double aa = a.inf(), bb = a.sup();
|
|
if (b.inf() < 0.0)
|
|
{
|
|
aa = bb;
|
|
if (b.sup() < 0.0)
|
|
bb = a.inf();
|
|
}
|
|
return IA(-CGAL_IA_MUL(aa, -b.inf()), CGAL_IA_MUL(bb, b.sup()));
|
|
}
|
|
else if (a.sup()<=0.0) // a<=0
|
|
{
|
|
// b>=0 [a.inf()*b.sup(); a.sup()*b.inf()]
|
|
// b<=0 [a.sup()*b.sup(); a.inf()*b.inf()]
|
|
// b~=0 [a.inf()*b.sup(); a.inf()*b.inf()]
|
|
double aa = a.sup(), bb = a.inf();
|
|
if (b.inf() < 0.0)
|
|
{
|
|
aa=bb;
|
|
if (b.sup() < 0.0)
|
|
bb=a.sup();
|
|
}
|
|
return IA(-CGAL_IA_MUL(bb, -b.sup()), CGAL_IA_MUL(aa, b.inf()));
|
|
}
|
|
else // 0 \in a
|
|
{
|
|
if (b.inf()>=0.0) // b>=0
|
|
return IA(-CGAL_IA_MUL(a.inf(), -b.sup()),
|
|
CGAL_IA_MUL(a.sup(), b.sup()));
|
|
if (b.sup()<=0.0) // b<=0
|
|
return IA(-CGAL_IA_MUL(a.sup(), -b.inf()),
|
|
CGAL_IA_MUL(a.inf(), b.inf()));
|
|
// 0 \in b
|
|
double tmp1 = CGAL_IA_MUL(a.inf(), -b.sup());
|
|
double tmp2 = CGAL_IA_MUL(a.sup(), -b.inf());
|
|
double tmp3 = CGAL_IA_MUL(a.inf(), b.inf());
|
|
double tmp4 = CGAL_IA_MUL(a.sup(), b.sup());
|
|
return IA(-(std::max)(tmp1,tmp2), (std::max)(tmp3,tmp4));
|
|
}
|
|
}
|
|
|
|
template <bool Protected>
|
|
inline
|
|
Interval_nt<Protected>
|
|
operator* (double a, const Interval_nt<Protected> & b)
|
|
{
|
|
return Interval_nt<Protected>(a)*b;
|
|
}
|
|
|
|
template <bool Protected>
|
|
inline
|
|
Interval_nt<Protected>
|
|
operator* (const Interval_nt<Protected> & a, double b)
|
|
{
|
|
return a*Interval_nt<Protected>(b);
|
|
}
|
|
|
|
template <bool Protected>
|
|
inline
|
|
Interval_nt<Protected>
|
|
operator/ (const Interval_nt<Protected> &a, const Interval_nt<Protected> & b)
|
|
{
|
|
typedef Interval_nt<Protected> IA;
|
|
typename Interval_nt<Protected>::Internal_protector P;
|
|
if (b.inf() > 0.0) // b>0
|
|
{
|
|
// e>=0 [a.inf()/b.sup(); a.sup()/b.inf()]
|
|
// e<=0 [a.inf()/b.inf(); a.sup()/b.sup()]
|
|
// e~=0 [a.inf()/b.inf(); a.sup()/b.inf()]
|
|
double aa = b.sup(), bb = b.inf();
|
|
if (a.inf() < 0.0)
|
|
{
|
|
aa = bb;
|
|
if (a.sup() < 0.0)
|
|
bb = b.sup();
|
|
}
|
|
return IA(-CGAL_IA_DIV(a.inf(), -aa), CGAL_IA_DIV(a.sup(), bb));
|
|
}
|
|
else if (b.sup()<0.0) // b<0
|
|
{
|
|
// e>=0 [a.sup()/b.sup(); a.inf()/b.inf()]
|
|
// e<=0 [a.sup()/b.inf(); a.inf()/b.sup()]
|
|
// e~=0 [a.sup()/b.sup(); a.inf()/b.sup()]
|
|
double aa = b.sup(), bb = b.inf();
|
|
if (a.inf() < 0.0)
|
|
{
|
|
bb = aa;
|
|
if (a.sup() < 0.0)
|
|
aa = b.inf();
|
|
}
|
|
return IA(-CGAL_IA_DIV(a.sup(), -aa), CGAL_IA_DIV(a.inf(), bb));
|
|
}
|
|
else // b~0
|
|
return IA::largest();
|
|
// We could do slightly better -> [0;infinity] when b.sup()==0,
|
|
// but is this worth ?
|
|
}
|
|
|
|
template <bool Protected>
|
|
inline
|
|
Interval_nt<Protected>
|
|
operator/ (double a, const Interval_nt<Protected> & b)
|
|
{
|
|
return Interval_nt<Protected>(a)/b;
|
|
}
|
|
|
|
template <bool Protected>
|
|
inline
|
|
Interval_nt<Protected>
|
|
operator/ (const Interval_nt<Protected> & a, double b)
|
|
{
|
|
return a/Interval_nt<Protected>(b);
|
|
}
|
|
|
|
// TODO: What about these two guys? Where do they belong to?
|
|
template <bool Protected>
|
|
struct Min <Interval_nt<Protected> >
|
|
: public CGAL::cpp98::binary_function<Interval_nt<Protected>,
|
|
Interval_nt<Protected>,
|
|
Interval_nt<Protected> >
|
|
{
|
|
Interval_nt<Protected> operator()( const Interval_nt<Protected>& d,
|
|
const Interval_nt<Protected>& e) const
|
|
{
|
|
return Interval_nt<Protected>(
|
|
(std::min)(d.inf(), e.inf()),
|
|
(std::min)(d.sup(), e.sup()));
|
|
}
|
|
};
|
|
|
|
template <bool Protected>
|
|
struct Max <Interval_nt<Protected> >
|
|
: public CGAL::cpp98::binary_function<Interval_nt<Protected>,
|
|
Interval_nt<Protected>,
|
|
Interval_nt<Protected> >
|
|
{
|
|
Interval_nt<Protected> operator()( const Interval_nt<Protected>& d,
|
|
const Interval_nt<Protected>& e) const
|
|
{
|
|
return Interval_nt<Protected>(
|
|
(std::max)(d.inf(), e.inf()),
|
|
(std::max)(d.sup(), e.sup()));
|
|
}
|
|
};
|
|
|
|
template<bool Protected> inline
|
|
Interval_nt<Protected> min BOOST_PREVENT_MACRO_SUBSTITUTION(
|
|
const Interval_nt<Protected> & x,
|
|
const Interval_nt<Protected> & y){
|
|
return CGAL::Min<Interval_nt<Protected> > ()(x,y);
|
|
}
|
|
template<bool Protected> inline
|
|
Interval_nt<Protected> max BOOST_PREVENT_MACRO_SUBSTITUTION(
|
|
const Interval_nt<Protected> & x,
|
|
const Interval_nt<Protected> & y){
|
|
return CGAL::Max<Interval_nt<Protected> > ()(x,y);
|
|
}
|
|
|
|
|
|
|
|
// TODO : document, when we are OK with the interface.
|
|
// - should it allow other number types for the exponent ?
|
|
template < bool b >
|
|
Interval_nt<b>
|
|
ldexp(const Interval_nt<b> &i, int e)
|
|
{
|
|
double scale = std::ldexp(1.0, e);
|
|
Interval_nt<b> scale_interval (
|
|
CGAL_NTS is_finite(scale) ? scale : CGAL_IA_MAX_DOUBLE,
|
|
scale == 0 ? CGAL_IA_MIN_DOUBLE : scale);
|
|
return i * scale_interval;
|
|
}
|
|
|
|
|
|
// We also specialize some corresponding functors returning Uncertain<>.
|
|
|
|
// TODO: To which concept do these functors belong? Can we remove them??
|
|
template < bool b >
|
|
struct Equal_to < Interval_nt<b>, Interval_nt<b> >
|
|
: public CGAL::cpp98::binary_function< Interval_nt<b>, Interval_nt<b>, Uncertain<bool> >
|
|
{
|
|
Uncertain<bool> operator()( const Interval_nt<b>& x,
|
|
const Interval_nt<b>& y) const
|
|
{ return x == y; }
|
|
};
|
|
|
|
template < bool b >
|
|
struct Not_equal_to < Interval_nt<b>, Interval_nt<b> >
|
|
: public CGAL::cpp98::binary_function< Interval_nt<b>, Interval_nt<b>, Uncertain<bool> >
|
|
{
|
|
Uncertain<bool> operator()( const Interval_nt<b>& x,
|
|
const Interval_nt<b>& y) const
|
|
{ return x != y; }
|
|
};
|
|
|
|
template < bool b >
|
|
struct Greater < Interval_nt<b>, Interval_nt<b> >
|
|
: public CGAL::cpp98::binary_function< Interval_nt<b>, Interval_nt<b>, Uncertain<bool> >
|
|
{
|
|
Uncertain<bool> operator()( const Interval_nt<b>& x,
|
|
const Interval_nt<b>& y) const
|
|
{ return x > y; }
|
|
};
|
|
|
|
template < bool b >
|
|
struct Less < Interval_nt<b>, Interval_nt<b> >
|
|
: public CGAL::cpp98::binary_function< Interval_nt<b>, Interval_nt<b>, Uncertain<bool> >
|
|
{
|
|
Uncertain<bool> operator()( const Interval_nt<b>& x,
|
|
const Interval_nt<b>& y) const
|
|
{ return x < y; }
|
|
};
|
|
|
|
template < bool b >
|
|
struct Greater_equal < Interval_nt<b>, Interval_nt<b> >
|
|
: public CGAL::cpp98::binary_function< Interval_nt<b>, Interval_nt<b>, Uncertain<bool> >
|
|
{
|
|
Uncertain<bool> operator()( const Interval_nt<b>& x,
|
|
const Interval_nt<b>& y) const
|
|
{ return x >= y; }
|
|
};
|
|
|
|
template < bool b >
|
|
struct Less_equal < Interval_nt<b>, Interval_nt<b> >
|
|
: public CGAL::cpp98::binary_function< Interval_nt<b>, Interval_nt<b>, Uncertain<bool> >
|
|
{
|
|
Uncertain<bool> operator()( const Interval_nt<b>& x,
|
|
const Interval_nt<b>& y) const
|
|
{ return x <= y; }
|
|
};
|
|
|
|
|
|
// As in MP_float.h, the namespace INTERN_INTERVAL_NT contains (now) global
|
|
// functions like square or sqrt which would have collided with the new
|
|
// global functions from AST/RET
|
|
//
|
|
// TODO: IMHO, a better solution would be to put the INTERN_MP_FLOAT-functions
|
|
// into the MP_Float-class... But there is surely a reason why this is not
|
|
// the case..?
|
|
|
|
|
|
namespace INTERN_INTERVAL_NT {
|
|
|
|
template <bool Protected>
|
|
inline
|
|
double
|
|
to_double (const Interval_nt<Protected> & d)
|
|
{
|
|
return (d.sup() + d.inf()) * 0.5;
|
|
// This may overflow...
|
|
}
|
|
|
|
template <bool Protected>
|
|
inline
|
|
std::pair<double, double>
|
|
to_interval (const Interval_nt<Protected> & d)
|
|
{
|
|
return d.pair();
|
|
}
|
|
|
|
template <bool Protected>
|
|
inline
|
|
Interval_nt<Protected>
|
|
sqrt (const Interval_nt<Protected> & d)
|
|
{
|
|
typename Interval_nt<Protected>::Internal_protector P; // not optimal here.
|
|
// sqrt([+a,+b]) => [sqrt(+a);sqrt(+b)]
|
|
// sqrt([-a,+b]) => [0;sqrt(+b)] => assumes roundoff error.
|
|
// sqrt([-a,-b]) => [0;sqrt(-b)] => assumes user bug (unspecified result).
|
|
FPU_set_cw(CGAL_FE_DOWNWARD);
|
|
double i = (d.inf() > 0.0) ? CGAL_IA_SQRT(d.inf()) : 0.0;
|
|
FPU_set_cw(CGAL_FE_UPWARD);
|
|
return Interval_nt<Protected>(i, CGAL_IA_SQRT(d.sup()));
|
|
}
|
|
|
|
template <bool Protected>
|
|
inline
|
|
Interval_nt<Protected>
|
|
square (const Interval_nt<Protected> & d)
|
|
{
|
|
typename Interval_nt<Protected>::Internal_protector P;
|
|
if (d.inf()>=0.0)
|
|
return Interval_nt<Protected>(-CGAL_IA_MUL(d.inf(), -d.inf()),
|
|
CGAL_IA_MUL(d.sup(), d.sup()));
|
|
if (d.sup()<=0.0)
|
|
return Interval_nt<Protected>(-CGAL_IA_MUL(d.sup(), -d.sup()),
|
|
CGAL_IA_MUL(d.inf(), d.inf()));
|
|
return Interval_nt<Protected>(0.0, CGAL_IA_SQUARE((std::max)(-d.inf(),
|
|
d.sup())));
|
|
}
|
|
|
|
template <bool Protected>
|
|
inline
|
|
Interval_nt<Protected>
|
|
abs (const Interval_nt<Protected> & d)
|
|
{
|
|
if (d.inf() >= 0.0) return d;
|
|
if (d.sup() <= 0.0) return -d;
|
|
return Interval_nt<Protected>(0.0, (std::max)(-d.inf(), d.sup()));
|
|
}
|
|
|
|
template <bool Protected>
|
|
inline
|
|
Uncertain<Sign>
|
|
sign (const Interval_nt<Protected> & d)
|
|
{
|
|
if (d.inf() > 0.0) return POSITIVE;
|
|
if (d.sup() < 0.0) return NEGATIVE;
|
|
if (d.inf() == d.sup()) return ZERO;
|
|
return Uncertain<Sign>::indeterminate();
|
|
}
|
|
|
|
template <bool Protected>
|
|
inline
|
|
Uncertain<Comparison_result>
|
|
compare (const Interval_nt<Protected> & d, const Interval_nt<Protected> & e)
|
|
{
|
|
if (d.inf() > e.sup()) return LARGER;
|
|
if (e.inf() > d.sup()) return SMALLER;
|
|
if (e.inf() == d.sup() && d.inf() == e.sup()) return EQUAL;
|
|
return Uncertain<Comparison_result>::indeterminate();
|
|
}
|
|
|
|
template <bool Protected>
|
|
inline
|
|
Uncertain<bool>
|
|
is_zero (const Interval_nt<Protected> & d)
|
|
{
|
|
if (d.inf() > 0.0) return false;
|
|
if (d.sup() < 0.0) return false;
|
|
if (d.inf() == d.sup()) return true;
|
|
return Uncertain<bool>::indeterminate();
|
|
}
|
|
|
|
template <bool Protected>
|
|
inline
|
|
Uncertain<bool>
|
|
is_one (const Interval_nt<Protected> & d)
|
|
{
|
|
if (d.inf() > 1) return false;
|
|
if (d.sup() < 1) return false;
|
|
if (d.inf() == d.sup()) return true;
|
|
return Uncertain<bool>::indeterminate();
|
|
}
|
|
|
|
template <bool Protected>
|
|
inline
|
|
Uncertain<bool>
|
|
is_positive (const Interval_nt<Protected> & d)
|
|
{
|
|
if (d.inf() > 0.0) return true;
|
|
if (d.sup() <= 0.0) return false;
|
|
return Uncertain<bool>::indeterminate();
|
|
}
|
|
|
|
template <bool Protected>
|
|
inline
|
|
Uncertain<bool>
|
|
is_negative (const Interval_nt<Protected> & d)
|
|
{
|
|
if (d.inf() >= 0.0) return false;
|
|
if (d.sup() < 0.0) return true;
|
|
return Uncertain<bool>::indeterminate();
|
|
}
|
|
|
|
} // namespace INTERN_INTERVAL_NT
|
|
|
|
|
|
template< bool B > class Real_embeddable_traits< Interval_nt<B> >
|
|
: public INTERN_RET::Real_embeddable_traits_base< Interval_nt<B> , CGAL::Tag_true> {
|
|
public:
|
|
typedef Interval_nt<B> Type;
|
|
typedef Uncertain<CGAL::Sign> Sign;
|
|
typedef Uncertain<bool> Boolean;
|
|
typedef Uncertain<CGAL::Comparison_result> Comparison_result;
|
|
|
|
class Abs
|
|
: public CGAL::cpp98::unary_function< Type, Type > {
|
|
public:
|
|
Type operator()( const Type& x ) const {
|
|
return INTERN_INTERVAL_NT::abs( x );
|
|
}
|
|
};
|
|
|
|
class Sgn
|
|
: public CGAL::cpp98::unary_function< Type, Uncertain< ::CGAL::Sign > > {
|
|
public:
|
|
Uncertain< ::CGAL::Sign > operator()( const Type& x ) const {
|
|
return INTERN_INTERVAL_NT::sign( x );
|
|
}
|
|
};
|
|
|
|
class Is_positive
|
|
: public CGAL::cpp98::unary_function< Type, Uncertain<bool> > {
|
|
public:
|
|
Uncertain<bool> operator()( const Type& x ) const {
|
|
return INTERN_INTERVAL_NT::is_positive( x );
|
|
}
|
|
};
|
|
|
|
class Is_negative
|
|
: public CGAL::cpp98::unary_function< Type, Uncertain<bool> > {
|
|
public:
|
|
Uncertain<bool> operator()( const Type& x ) const {
|
|
return INTERN_INTERVAL_NT::is_negative( x );
|
|
}
|
|
};
|
|
|
|
class Compare
|
|
: public CGAL::cpp98::binary_function< Type, Type, Comparison_result > {
|
|
public:
|
|
Comparison_result operator()( const Type& x, const Type& y ) const {
|
|
return INTERN_INTERVAL_NT::compare( x, y );
|
|
}
|
|
CGAL_IMPLICIT_INTEROPERABLE_BINARY_OPERATOR_WITH_RT( Type,
|
|
Comparison_result )
|
|
};
|
|
|
|
class To_double
|
|
: public CGAL::cpp98::unary_function< Type, double > {
|
|
public:
|
|
double operator()( const Type& x ) const {
|
|
return INTERN_INTERVAL_NT::to_double( x );
|
|
}
|
|
};
|
|
|
|
class To_interval
|
|
: public CGAL::cpp98::unary_function< Type, std::pair< double, double > > {
|
|
public:
|
|
std::pair<double, double> operator()( const Type& x ) const {
|
|
return INTERN_INTERVAL_NT::to_interval( x );
|
|
}
|
|
};
|
|
|
|
class Is_finite
|
|
: public CGAL::cpp98::unary_function< Type, Boolean > {
|
|
public :
|
|
Boolean operator()( const Type& x ) const {
|
|
return CGAL_NTS is_finite( x.inf() ) && CGAL_NTS is_finite( x.sup() );
|
|
}
|
|
};
|
|
|
|
};
|
|
|
|
// Algebraic structure traits
|
|
template< bool B >
|
|
class Algebraic_structure_traits< Interval_nt<B> >
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: public Algebraic_structure_traits_base< Interval_nt<B>,
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Field_with_sqrt_tag > {
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public:
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typedef Interval_nt<B> Type;
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typedef Tag_false Is_exact;
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typedef Tag_true Is_numerical_sensitive;
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typedef Uncertain<bool> Boolean;
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class Is_zero
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: public CGAL::cpp98::unary_function< Type, Boolean > {
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public:
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Boolean operator()( const Type& x ) const {
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return INTERN_INTERVAL_NT::is_zero( x );
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}
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};
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class Is_one
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: public CGAL::cpp98::unary_function< Type, Boolean > {
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public:
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Boolean operator()( const Type& x ) const {
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return INTERN_INTERVAL_NT::is_one( x );
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}
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};
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class Square
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: public CGAL::cpp98::unary_function< Type, Type > {
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public:
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Type operator()( const Type& x ) const {
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return INTERN_INTERVAL_NT::square( x );
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}
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};
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class Sqrt
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: public CGAL::cpp98::unary_function< Type, Type > {
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public:
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Type operator()( const Type& x ) const {
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return INTERN_INTERVAL_NT::sqrt( x );
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}
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};
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struct Is_square
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:public CGAL::cpp98::binary_function<Interval_nt<B>,Interval_nt<B>&,Boolean >
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{
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Boolean operator()(const Interval_nt<B>& x) const {
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return INTERN_INTERVAL_NT::is_positive( x );
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}
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Boolean operator()(
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const Interval_nt<B>& x,
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Interval_nt<B> & result) const {
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Boolean is_positive = INTERN_INTERVAL_NT::is_positive( x );
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if ( is_positive.inf() == true ){
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typename Algebraic_structure_traits<Interval_nt<B> >::Sqrt sqrt;
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result = sqrt(x);
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}else{
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typename Real_embeddable_traits<Interval_nt<B> >::Abs abs;
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typename Algebraic_structure_traits<Interval_nt<B> >::Sqrt sqrt;
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result = sqrt(abs(x));
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}
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return is_positive;
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}
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};
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class Divides
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: public CGAL::cpp98::binary_function< Type, Type, Boolean > {
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public:
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Boolean operator()( const Type& x, const Type&) const {
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return ! Is_zero()(x);
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}
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// second operator computing q
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Boolean operator()( const Type& x, const Type& y, Type& q) const {
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if (! Is_zero()(x) )
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q = y/x ;
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return Boolean(true);
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}
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};
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};
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// COERCION_TRAITS BEGIN
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template < class A, class B , int > struct Coercion_traits_for_level;
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template < class A, class B, class C> struct Coercion_traits_interval_nt;
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|
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template<class A ,bool P >
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struct Coercion_traits_for_level<A,Interval_nt<P>,CTL_INTERVAL>
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:public Coercion_traits_interval_nt<A,Interval_nt<P>,
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typename Real_embeddable_traits<A>::Is_real_embeddable>{};
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|
|
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template<class A , bool P>
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struct Coercion_traits_for_level<Interval_nt<P>,A,CTL_INTERVAL>
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:public Coercion_traits_for_level<A,Interval_nt<P>, CTL_INTERVAL>{};
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|
|
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template<class A , bool P >
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struct Coercion_traits_interval_nt<A, Interval_nt<P>,Tag_false>
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:public Coercion_traits_for_level<A,Interval_nt<P>,0>{};
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|
|
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template<class A , bool P>
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struct Coercion_traits_interval_nt<A, Interval_nt<P>, Tag_true>{
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typedef Tag_true Are_explicit_interoperable;
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typedef Tag_false Are_implicit_interoperable;
|
|
typedef Interval_nt<P> Type;
|
|
struct Cast {
|
|
typedef Interval_nt<P> result_type;
|
|
Interval_nt<P> inline operator()(const Interval_nt<P>& x ) const {
|
|
return x;
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|
}
|
|
Interval_nt<P> inline operator()(const A& x ) const {
|
|
return typename Real_embeddable_traits<A>::To_interval()(x);
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|
}
|
|
};
|
|
};
|
|
|
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// COERCION_TRAITS END
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|
|
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template< bool B >
|
|
class Interval_traits< Interval_nt<B> >
|
|
: public internal::Interval_traits_base< Interval_nt<B> > {
|
|
public:
|
|
typedef Interval_traits<Interval_nt<B> > Self;
|
|
typedef Interval_nt<B> Interval;
|
|
typedef double Bound;
|
|
typedef CGAL::Tag_false With_empty_interval;
|
|
typedef CGAL::Tag_true Is_interval;
|
|
|
|
struct Construct :public CGAL::cpp98::binary_function<Bound,Bound,Interval>{
|
|
Interval operator()( const Bound& l,const Bound& r) const {
|
|
CGAL_precondition( l < r );
|
|
return Interval(l,r);
|
|
}
|
|
};
|
|
|
|
struct Lower :public CGAL::cpp98::unary_function<Interval,Bound>{
|
|
Bound operator()( const Interval& a ) const {
|
|
return a.inf();
|
|
}
|
|
};
|
|
|
|
struct Upper :public CGAL::cpp98::unary_function<Interval,Bound>{
|
|
Bound operator()( const Interval& a ) const {
|
|
return a.sup();
|
|
}
|
|
};
|
|
|
|
struct Width :public CGAL::cpp98::unary_function<Interval,Bound>{
|
|
Bound operator()( const Interval& a ) const {
|
|
return width(a);
|
|
}
|
|
};
|
|
|
|
struct Median :public CGAL::cpp98::unary_function<Interval,Bound>{
|
|
Bound operator()( const Interval& a ) const {
|
|
return (Lower()(a)+Upper()(a))/2.0;
|
|
}
|
|
};
|
|
|
|
struct Norm :public CGAL::cpp98::unary_function<Interval,Bound>{
|
|
Bound operator()( const Interval& a ) const {
|
|
return magnitude(a);
|
|
}
|
|
};
|
|
|
|
struct Singleton :public CGAL::cpp98::unary_function<Interval,bool>{
|
|
bool operator()( const Interval& a ) const {
|
|
return Lower()(a) == Upper()(a);
|
|
}
|
|
};
|
|
|
|
struct Zero_in :public CGAL::cpp98::unary_function<Interval,bool>{
|
|
bool operator()( const Interval& a ) const {
|
|
return Lower()(a) <= 0 && 0 <= Upper()(a);
|
|
}
|
|
};
|
|
|
|
struct In :public CGAL::cpp98::binary_function<Bound,Interval,bool>{
|
|
bool operator()( Bound x, const Interval& a ) const {
|
|
return Lower()(a) <= x && x <= Upper()(a);
|
|
}
|
|
};
|
|
|
|
struct Equal :public CGAL::cpp98::binary_function<Interval,Interval,bool>{
|
|
bool operator()( const Interval& a, const Interval& b ) const {
|
|
return a.is_same(b);
|
|
}
|
|
};
|
|
|
|
struct Overlap :public CGAL::cpp98::binary_function<Interval,Interval,bool>{
|
|
bool operator()( const Interval& a, const Interval& b ) const {
|
|
return a.do_overlap(b);
|
|
}
|
|
};
|
|
|
|
struct Subset :public CGAL::cpp98::binary_function<Interval,Interval,bool>{
|
|
bool operator()( const Interval& a, const Interval& b ) const {
|
|
return Lower()(b) <= Lower()(a) && Upper()(a) <= Upper()(b) ;
|
|
}
|
|
};
|
|
|
|
struct Proper_subset :public CGAL::cpp98::binary_function<Interval,Interval,bool>{
|
|
bool operator()( const Interval& a, const Interval& b ) const {
|
|
return Subset()(a,b) && ! Equal()(a,b);
|
|
}
|
|
};
|
|
|
|
struct Hull :public CGAL::cpp98::binary_function<Interval,Interval,Interval>{
|
|
Interval operator()( const Interval& a, const Interval& b ) const {
|
|
BOOST_USING_STD_MAX();
|
|
BOOST_USING_STD_MIN();
|
|
return Interval(
|
|
std::make_pair(
|
|
min BOOST_PREVENT_MACRO_SUBSTITUTION (Lower()(a),b.inf()),
|
|
max BOOST_PREVENT_MACRO_SUBSTITUTION (Upper()(a),b.sup())));
|
|
}
|
|
};
|
|
|
|
|
|
// struct Empty is Null_functor
|
|
|
|
struct Intersection :public CGAL::cpp98::binary_function<Interval,Interval,Interval>{
|
|
Interval operator()( const Interval& a, const Interval& b ) const {
|
|
BOOST_USING_STD_MAX();
|
|
BOOST_USING_STD_MIN();
|
|
Bound l(max BOOST_PREVENT_MACRO_SUBSTITUTION (Lower()(a),Lower()(b)));
|
|
Bound u(min BOOST_PREVENT_MACRO_SUBSTITUTION (Upper()(a),Upper()(b)));
|
|
if(u < l ) throw Exception_intersection_is_empty();
|
|
return Construct()(l,u);
|
|
}
|
|
};
|
|
};
|
|
|
|
} //namespace CGAL
|
|
|
|
namespace Eigen {
|
|
template<class> struct NumTraits;
|
|
template<bool b> struct NumTraits<CGAL::Interval_nt<b> >
|
|
{
|
|
typedef CGAL::Interval_nt<b> Real;
|
|
typedef CGAL::Interval_nt<b> NonInteger;
|
|
typedef CGAL::Interval_nt<b> Nested;
|
|
typedef double Literal;
|
|
|
|
static inline Real epsilon() { return 0; }
|
|
static inline Real dummy_precision() { return 0; }
|
|
|
|
// Costs could depend on b.
|
|
enum {
|
|
IsInteger = 0,
|
|
IsSigned = 1,
|
|
IsComplex = 0,
|
|
RequireInitialization = 0,
|
|
ReadCost = 2,
|
|
AddCost = 2,
|
|
MulCost = 10
|
|
};
|
|
};
|
|
|
|
namespace internal {
|
|
template<class> struct significant_decimals_impl;
|
|
template<bool b>
|
|
struct significant_decimals_impl<CGAL::Interval_nt<b> >
|
|
: significant_decimals_impl<typename CGAL::Interval_nt<b>::value_type> { };
|
|
}
|
|
}
|
|
|
|
#endif // CGAL_INTERVAL_NT_H
|