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range2d.cpp
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range2d.cpp
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//
// Copyright 2016 Pixar
//
// Licensed under the Apache License, Version 2.0 (the "Apache License")
// with the following modification; you may not use this file except in
// compliance with the Apache License and the following modification to it:
// Section 6. Trademarks. is deleted and replaced with:
//
// 6. Trademarks. This License does not grant permission to use the trade
// names, trademarks, service marks, or product names of the Licensor
// and its affiliates, except as required to comply with Section 4(c) of
// the License and to reproduce the content of the NOTICE file.
//
// You may obtain a copy of the Apache License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the Apache License with the above modification is
// distributed on an "AS IS" BASIS, WITHOUT WARRANTIES OR CONDITIONS OF ANY
// KIND, either express or implied. See the Apache License for the specific
// language governing permissions and limitations under the Apache License.
//
////////////////////////////////////////////////////////////////////////
// This file is generated by a script. Do not edit directly. Edit the
// range.template.cpp file to make changes.
#include "pxr/base/gf/range2d.h"
#include "pxr/base/gf/range2f.h"
#include "pxr/base/gf/math.h"
#include "pxr/base/gf/ostreamHelpers.h"
#include "pxr/base/tf/type.h"
#include <cfloat>
#include <iostream>
TF_REGISTRY_FUNCTION(TfType) {
TfType::Define<GfRange2d>();
}
std::ostream&
operator<<(std::ostream &out, GfRange2d const &r)
{
return out << '['
<< Gf_OstreamHelperP(r.GetMin()) << "..."
<< Gf_OstreamHelperP(r.GetMax())
<< ']';
}
double
GfRange2d::GetDistanceSquared(const GfVec2d &p) const
{
double dist = 0.0;
if (p[0] < _min[0]) {
// p is left of box
dist += GfSqr(_min[0] - p[0]);
}
else if (p[0] > _max[0]) {
// p is right of box
dist += GfSqr(p[0] - _max[0]);
}
if (p[1] < _min[1]) {
// p is front of box
dist += GfSqr(_min[1] - p[1]);
}
else if (p[1] > _max[1]) {
// p is back of box
dist += GfSqr(p[1] - _max[1]);
}
return dist;
}
GfVec2d
GfRange2d::GetCorner(size_t i) const
{
if (i > 3) {
TF_CODING_ERROR("Invalid corner %zu > 3.", i);
return _min;
}
return GfVec2d((i & 1 ? _max : _min)[0], (i & 2 ? _max : _min)[1]);
}
GfRange2d
GfRange2d::GetQuadrant(size_t i) const
{
if (i > 3) {
TF_CODING_ERROR("Invalid quadrant %zu > 3.", i);
return GfRange2d();
}
GfVec2d a = GetCorner(i);
GfVec2d b = .5 * (_min + _max);
return GfRange2d(
GfVec2d(GfMin(a[0], b[0]), GfMin(a[1], b[1])),
GfVec2d(GfMax(a[0], b[0]), GfMax(a[1], b[1])));
}
const GfRange2d GfRange2d::UnitSquare(GfVec2d(0,0), GfVec2d(1,1));