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00035 #include <nav_grid_pub_sub/cost_interpretation_tables.h>
00036 #include <vector>
00037
00038 namespace nav_grid_pub_sub
00039 {
00040
00041 std::vector<unsigned char> pixelColoringInterpretation(const double free_threshold, const double occupied_threshold)
00042 {
00043 std::vector<unsigned char> cost_interpretation_table(256);
00044 for (unsigned int i = 0; i < cost_interpretation_table.size(); i++)
00045 {
00046 double intensity = static_cast<double>(i) / 255.0;
00047 if (intensity > occupied_threshold)
00048 {
00049 cost_interpretation_table[i] = +100;
00050 }
00051 else if (intensity < free_threshold)
00052 {
00053 cost_interpretation_table[i] = 0;
00054 }
00055 else
00056 {
00057 cost_interpretation_table[i] = -1;
00058 }
00059 }
00060 return cost_interpretation_table;
00061 }
00062
00063 std::vector<unsigned char> grayScaleInterpretation(const double free_threshold, const double occupied_threshold)
00064 {
00065 std::vector<unsigned char> cost_interpretation_table(256);
00066 for (unsigned int i = 0; i < cost_interpretation_table.size(); i++)
00067 {
00068 double intensity = static_cast<double>(i) / 255.0;
00069 if (intensity > occupied_threshold)
00070 {
00071 cost_interpretation_table[i] = +100;
00072 }
00073 else if (intensity < free_threshold)
00074 {
00075 cost_interpretation_table[i] = 0;
00076 }
00077 else
00078 {
00079
00080 cost_interpretation_table[i] = 99 * (intensity - free_threshold) / (occupied_threshold - free_threshold);
00081 }
00082 }
00083 return cost_interpretation_table;
00084 }
00085
00086 std::vector<unsigned char> getOccupancyInput(bool trinary, bool use_unknown_value)
00087 {
00088 std::vector<unsigned char> cost_interpretation_table(256);
00089 for (unsigned int i = 0; i < cost_interpretation_table.size(); i++)
00090 {
00091 unsigned char value;
00092 if (use_unknown_value && i == 255)
00093 value = 255;
00094 else if (!use_unknown_value && i == 255)
00095 value = 0;
00096 else if (i >= 100)
00097 value = 254;
00098 else if (trinary)
00099 value = 0;
00100 else
00101 {
00102 double scale = static_cast<double>(i) / 100.0;
00103 value = static_cast<unsigned char>(scale * 254);
00104 }
00105 cost_interpretation_table[i] = value;
00106 }
00107 return cost_interpretation_table;
00108 }
00109
00110 }