1 | #ifndef STRUCTURE_TELEMETRE_H
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2 | #define STRUCTURE_TELEMETRE_H
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3 |
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4 | #include "kernel/cstdint.h"
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5 | #include "kernel/road_time.h"
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6 |
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7 | ////////////////////////////////////////////////////////////////////////////////
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8 | // some constants defined for the Alasca component
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9 | static const uint32_t MAX_SCAN_POINT = 8648;
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10 | static const uint32_t MAX_SCAN_POINT_PER_LAYER = 2162;
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11 | static const int32_t UTC_MAGIC_WORD = 0x55544300;
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12 |
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13 | // Data recorded in the DBITE file
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14 | // Alasca XT laserscanner
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15 | typedef struct
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16 | {
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17 | int8_t scannertype;
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18 | uint32_t timeStart; // time start of the scan
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19 | float startAngle; // the start angle of the measurement (in [rad*e4])
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20 | float endAngle; // the stop angle of the measurement (in [rad*e4])
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21 | uint32_t nbPoint; // number of points
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22 | int32_t dataPos; // the position of the data in the binary file associated to the dbt file
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23 | } AlascaXT;
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24 |
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25 | // An Alasca point
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26 | // see Manual_Alasca.pdf page 27
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27 | // Orientation of the frame regarding the car:
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28 | // X ahead, Y on the left and Z upside
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29 | struct ScanPoint
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30 | {
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31 | uint8_t scannerId; // ID of the scanner that has detected the point - Alasca has type 2
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32 | uint8_t layerNumber; // channel (0 = bottom channel ...)
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33 | uint8_t echoNumber; // subChannel (0 = A, 1 = B ...)
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34 | uint8_t pointStatus; // ground, rain, dirt ...
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35 | int16_t x; // X coordinate in centimeters
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36 | int16_t y; // Y coordinate in centimeters
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37 | int16_t z; // Z coordinate in centimeters
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38 | uint16_t width; // the echo width
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39 | };
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40 |
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41 | // Data obtained after decoding
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42 | // The complete structure is written in shared memory
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43 | // Only the point[MAX_SCAN_POINT] array is recorded in the binary file
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44 | // associated to the DBT file (see struct AlascaXT)
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45 | struct ScanAlascaData
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46 | {
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47 | uint8_t scannertype; // Alasca has type 2
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48 | uint32_t timeStart; // time start of the scan
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49 | float startAngle; // the start angle of the measurement (in [rad*e4])
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50 | float endAngle; // the stop angle of the measurement (in [rad*e4])
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51 | uint32_t nbPoint; // number of points
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52 | road_time_t time; // DBT timestamp
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53 | road_timerange_t timerange; // DBT timerange
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54 | ScanPoint point[MAX_SCAN_POINT]; // the data, see struct ScanPoint
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55 | };
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56 |
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57 | struct SortedScanAlascaData
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58 | {
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59 | double xYellow[MAX_SCAN_POINT_PER_LAYER];
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60 | double yYellow[MAX_SCAN_POINT_PER_LAYER];
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61 | double xGreen[MAX_SCAN_POINT_PER_LAYER];
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62 | double yGreen[MAX_SCAN_POINT_PER_LAYER];
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63 | double xBlue[MAX_SCAN_POINT_PER_LAYER];
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64 | double yBlue[MAX_SCAN_POINT_PER_LAYER];
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65 | double xRed[MAX_SCAN_POINT_PER_LAYER];
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66 | double yRed[MAX_SCAN_POINT_PER_LAYER];
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67 |
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68 | int32_t totalSize;
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69 | int32_t yellowSize;
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70 | int32_t greenSize;
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71 | int32_t blueSize;
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72 | int32_t redSize;
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73 | };
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74 |
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75 | /// Sick LMS 221 laserscanner
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76 | typedef struct
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77 | {
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78 | static const std::size_t DATA_COUNT = 101;
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79 | float data[DATA_COUNT];
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80 | } TELEMETRE_100;
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81 |
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82 | /// Sick LMS 291 laserscanner
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83 | typedef struct
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84 | {
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85 | static const std::size_t DATA_COUNT = 181;
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86 | float data[DATA_COUNT];
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87 | } TELEMETRE_180;
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88 |
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89 | // cf. page 23
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90 | // faire une structure avec le nb de secteurs
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91 |
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92 | // pour chaque secteur :
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93 | // donnees statiques : timestamp debut et fin - angles debut et fin - pas de l'angle nb de pts dans le secteur
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94 | // tableaux => donnees de base : distance direction et echo amplitude
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95 | typedef struct
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96 | {
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97 | // TODO
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98 | } SickLdoemData;
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99 |
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100 | #endif // STRUCTURE_TELEMETRE_H
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