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|---|---|---|---|
| 1 | /* | ||
| 2 | * Copyright (c) 2000-2022 Inria | ||
| 3 | * All rights reserved. | ||
| 4 | * | ||
| 5 | * Redistribution and use in source and binary forms, with or without | ||
| 6 | * modification, are permitted provided that the following conditions are met: | ||
| 7 | * | ||
| 8 | * * Redistributions of source code must retain the above copyright notice, | ||
| 9 | * this list of conditions and the following disclaimer. | ||
| 10 | * * Redistributions in binary form must reproduce the above copyright notice, | ||
| 11 | * this list of conditions and the following disclaimer in the documentation | ||
| 12 | * and/or other materials provided with the distribution. | ||
| 13 | * * Neither the name of the ALICE Project-Team nor the names of its | ||
| 14 | * contributors may be used to endorse or promote products derived from this | ||
| 15 | * software without specific prior written permission. | ||
| 16 | * | ||
| 17 | * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" | ||
| 18 | * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE | ||
| 19 | * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE | ||
| 20 | * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE | ||
| 21 | * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR | ||
| 22 | * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF | ||
| 23 | * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS | ||
| 24 | * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN | ||
| 25 | * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) | ||
| 26 | * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE | ||
| 27 | * POSSIBILITY OF SUCH DAMAGE. | ||
| 28 | * | ||
| 29 | * Contact: Bruno Levy | ||
| 30 | * | ||
| 31 | * https://www.inria.fr/fr/bruno-levy | ||
| 32 | * | ||
| 33 | * Inria, | ||
| 34 | * Domaine de Voluceau, | ||
| 35 | * 78150 Le Chesnay - Rocquencourt | ||
| 36 | * FRANCE | ||
| 37 | * | ||
| 38 | */ | ||
| 39 | |||
| 40 | #ifndef GEOGRAM_DELAUNAY_PERIODIC | ||
| 41 | #define GEOGRAM_DELAUNAY_PERIODIC | ||
| 42 | |||
| 43 | #include <geogram/basic/common.h> | ||
| 44 | #include <geogram/basic/string.h> | ||
| 45 | #include <geogram/basic/assert.h> | ||
| 46 | |||
| 47 | /** | ||
| 48 | * \file geogram/delaunay/periodic.h | ||
| 49 | * \brief Manipulation of indices for 3D periodic space. | ||
| 50 | */ | ||
| 51 | |||
| 52 | namespace GEO { | ||
| 53 | |||
| 54 | /** | ||
| 55 | * \brief Utilities for managing 3D periodic space. | ||
| 56 | */ | ||
| 57 | class GEOGRAM_API Periodic { | ||
| 58 | public: | ||
| 59 | |||
| 60 | /** | ||
| 61 | * \brief Gets the number of non-periodic vertices | ||
| 62 | * \details in periodic mode, nb_vertices() returns | ||
| 63 | * the total number of vertices, real ones and | ||
| 64 | * periodic instances. This function gets the number | ||
| 65 | * of real vertices. | ||
| 66 | * \return the number of non-periodic vertices | ||
| 67 | */ | ||
| 68 | index_t nb_vertices_non_periodic() const { | ||
| 69 | return nb_vertices_non_periodic_; | ||
| 70 | } | ||
| 71 | |||
| 72 | /** | ||
| 73 | * \brief Gets the instance from a periodic vertex. | ||
| 74 | * \return the instance in 0..26 | ||
| 75 | */ | ||
| 76 | ✗ | index_t periodic_vertex_instance(index_t pv) const { | |
| 77 | ✗ | geo_debug_assert(pv < nb_vertices_non_periodic_ * 27); | |
| 78 | ✗ | return pv / nb_vertices_non_periodic_; | |
| 79 | } | ||
| 80 | |||
| 81 | /** | ||
| 82 | * \brief Gets the real vertex from a periodic vertex. | ||
| 83 | * \return the real vertex, in 0..nb_vertices_non_periodic_-1 | ||
| 84 | */ | ||
| 85 | ✗ | index_t periodic_vertex_real(index_t pv) const { | |
| 86 | ✗ | geo_debug_assert(pv < nb_vertices_non_periodic_ * 27); | |
| 87 | ✗ | return pv % nb_vertices_non_periodic_; | |
| 88 | } | ||
| 89 | |||
| 90 | /** | ||
| 91 | * \brief Makes a periodic vertex from a real vertex and instance. | ||
| 92 | * \param[in] real the real vertex, in 0..nb_vertices_non_periodic_-1 | ||
| 93 | * \param[in] instance the instance, in 0..26 | ||
| 94 | */ | ||
| 95 | ✗ | index_t make_periodic_vertex(index_t real, index_t instance) const { | |
| 96 | ✗ | geo_debug_assert(real < nb_vertices_non_periodic_); | |
| 97 | ✗ | geo_debug_assert(instance < 27); | |
| 98 | ✗ | return real + nb_vertices_non_periodic_*instance; | |
| 99 | } | ||
| 100 | |||
| 101 | /** | ||
| 102 | * \brief Gets the instance from a translation. | ||
| 103 | * \param[in] Tx , Ty , Tz the translation coordinates, in {-1, 0, 1} | ||
| 104 | * \return the instance, in 0..26 | ||
| 105 | */ | ||
| 106 | ✗ | static index_t T_to_instance(int Tx, int Ty, int Tz) { | |
| 107 | ✗ | geo_debug_assert(Tx >= -1 && Tx <= 1); | |
| 108 | ✗ | geo_debug_assert(Ty >= -1 && Ty <= 1); | |
| 109 | ✗ | geo_debug_assert(Tz >= -1 && Tz <= 1); | |
| 110 | ✗ | int i = (Tz+1) + 3*(Ty+1) + 9*(Tx+1); | |
| 111 | ✗ | geo_debug_assert(i >= 0 && i < 27); | |
| 112 | ✗ | return index_t(reorder_instances[i]); | |
| 113 | } | ||
| 114 | |||
| 115 | /** | ||
| 116 | * \brief Gets the translation from a periodic vertex. | ||
| 117 | * \param[in] pv the periodic vertex | ||
| 118 | * \param[out] Tx , Ty , Tz the translation coordinates, in {-1, 0, 1} | ||
| 119 | */ | ||
| 120 | void periodic_vertex_get_T(index_t pv, int& Tx, int& Ty, int& Tz) const { | ||
| 121 | geo_debug_assert(pv < nb_vertices_non_periodic_ * 27); | ||
| 122 | index_t instance = periodic_vertex_instance(pv); | ||
| 123 | Tx = translation[instance][0]; | ||
| 124 | Ty = translation[instance][1]; | ||
| 125 | Tz = translation[instance][2]; | ||
| 126 | } | ||
| 127 | |||
| 128 | /** | ||
| 129 | * \brief Sets the translation in a periodic vertex. | ||
| 130 | * \param[in,out] pv the periodic vertex | ||
| 131 | * \param[in] Tx , Ty , Tz the translation coordinates, in {-1, 0, 1} | ||
| 132 | */ | ||
| 133 | void periodic_vertex_set_T(index_t& pv, int Tx, int Ty, int Tz) const { | ||
| 134 | geo_debug_assert(pv < nb_vertices_non_periodic_ * 27); | ||
| 135 | geo_debug_assert(Tx >= -1 && Tx <= 1); | ||
| 136 | geo_debug_assert(Ty >= -1 && Ty <= 1); | ||
| 137 | geo_debug_assert(Tz >= -1 && Tz <= 1); | ||
| 138 | pv = make_periodic_vertex( | ||
| 139 | periodic_vertex_real(pv), T_to_instance(Tx, Ty, Tz) | ||
| 140 | ); | ||
| 141 | } | ||
| 142 | |||
| 143 | std::string periodic_vertex_to_string(index_t v) const { | ||
| 144 | return | ||
| 145 | String::to_string(periodic_vertex_real(v)) + ":" + | ||
| 146 | String::to_string(periodic_vertex_instance(v)) ; | ||
| 147 | } | ||
| 148 | |||
| 149 | std::string binary_to_string(Numeric::uint32 m) const { | ||
| 150 | std::string s(32,' '); | ||
| 151 | for(index_t i=0; i<32; ++i) { | ||
| 152 | s[i] = ((m & (1u << (31u-i))) != 0) ? '1' : '0'; | ||
| 153 | } | ||
| 154 | return s; | ||
| 155 | } | ||
| 156 | |||
| 157 | /** | ||
| 158 | * \brief Gives for each instance the integer translation coordinates | ||
| 159 | * in {-1,0,1}. | ||
| 160 | * \details The zero translation is the first one (instance 0). | ||
| 161 | */ | ||
| 162 | static int translation[27][3]; | ||
| 163 | |||
| 164 | /** | ||
| 165 | * \brief Used to back-map an integer translation to an instance. | ||
| 166 | * \details This maps (Tx+1) + 3*(Ty+1) + 9*(Tz+1) to the associated | ||
| 167 | * instance id. This indirection is required because we wanted | ||
| 168 | * instance 0 to correspond to the 0 translation | ||
| 169 | * (rather than (-1,-1,-1) that would require no indirection). | ||
| 170 | */ | ||
| 171 | static int reorder_instances[27]; | ||
| 172 | |||
| 173 | /** | ||
| 174 | * \brief Tests whether all the coordinates of the translation vector | ||
| 175 | * associated with an instance are 0 or 1. | ||
| 176 | */ | ||
| 177 | static bool instance_is_positive[27]; | ||
| 178 | |||
| 179 | /** | ||
| 180 | * \brief Number of real vertices. | ||
| 181 | */ | ||
| 182 | index_t nb_vertices_non_periodic_; | ||
| 183 | }; | ||
| 184 | |||
| 185 | } | ||
| 186 | |||
| 187 | #endif | ||
| 188 |