1 | /* |
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2 | */ |
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3 | |
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4 | /* Class definition */ |
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5 | #include "aimsun_ds.h" |
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6 | #include "tools.h" |
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7 | |
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8 | // TODO: reference additional headers your program requires here |
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9 | #include <process.h> |
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10 | #include <strsafe.h> |
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11 | #include <shlwapi.h> |
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12 | #include <io.h> |
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13 | |
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14 | //#include <atlbase.h> |
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15 | |
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16 | #define MAX_PATH_BYTES (MAX_PATH*sizeof(TCHAR)) |
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17 | #define MAX_EXE_BYTES (MAX_EXE_PATH*sizeof(TCHAR)) |
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18 | |
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19 | /* Contoller list is hardwired for Aimsun scenario `zlicin_495_601.sce` */ |
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20 | #define NUM_CONTROLLERS 2 |
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21 | const TCHAR * ControllerList[NUM_CONTROLLERS] = { TEXT("K_5_495"), TEXT("K_5_601") }; |
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22 | const TCHAR * WindowStr[NUM_CONTROLLERS] = { TEXT("els3@5.495"), TEXT("els3@5.601") }; |
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23 | const int IntersectionIDs[] = { 495, 601 }; |
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24 | const int NumIntersections = sizeof ( IntersectionIDs ); |
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25 | |
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26 | /* Entrance sections are hardwired for Aimsun scenario `zlicin_495_601.sce` */ |
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27 | const int EntranceSections[] = { 1, 42, 45, 287, 26 }; |
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28 | const int NumEntranceSections = sizeof(EntranceSections)/sizeof(int); |
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29 | |
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30 | /* Identifiers of sections that Aimsun shall collect statistics for are also |
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31 | hardwired for the scenario `zlicin_495_601.sce`. */ |
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32 | const int StatIds[] = { |
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33 | 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, |
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34 | 26, 27, 35, 28, 29, 30, 31, 32, 33, 34, 39, 36, 37, 38, 21, 22, 23, 24, 25, 40, |
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35 | 42, 43, 44, 45, 49, 46, 47, 50, 51, 287, 288, 54, 55, 56, 57, 58, 59, 60, 61, |
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36 | 62, 63, 64, 65, 67, 68, 69, 70, 71, 72, 73, 74, 75, 76, 77 }; |
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37 | const int NumStatIds = sizeof(StatIds)/sizeof(int); |
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38 | |
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39 | |
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40 | const TCHAR * PatternsELS3[] = { TEXT("GetramELS3.dll"), TEXT("GetramELS3d.dll") }; |
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41 | const TCHAR * PatternsVGS[] = { TEXT("GetramVGS.dll"), TEXT("GetramVGSd.dll") }; |
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42 | |
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43 | /* Offsets of `dt` components (dt is the vector returned by AimsunDS, it contains composite |
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44 | values of all measurements for all intersections in the system). */ |
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45 | const int SignalPlanOffsets[] = { 0, 36 }; |
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46 | const int MeasurementOffsets[] = { 6, 42 }; |
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47 | |
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48 | AimsunDS::AimsunDS () : DS() |
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49 | { |
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50 | /* Description of the channels of the data vector. */ |
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51 | Drv = RV ( "{" |
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52 | "495_VA 495_VB 495_VC 495_VD 495_VE 495_VF " |
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53 | "495_DVA 495_DVB 495_DVA1 495_DVB1 495_DVC 495_DVD 495_DVE 495_DVF 495_DVF1 " |
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54 | "495_S1 495_S2 495_S3 495_S4 495_S5 495_S5a " |
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55 | "601_VA 601_VB 601_VC 601_VD 601_VE 601_SE " |
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56 | "601_DVA 601_DVAa 601_DVB 601_DVBa 601_DVB1 601_DVC 601_DVD 601_DVD1 601_DSE 601_DVE 601_DSE1 601_DVE1 " |
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57 | "601_S6 601_S6a 601_S7 601_S8 601_S9 601_S9a " |
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58 | "495_Q1 495_Q2 " |
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59 | "601_Q1 601_Q2 " |
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60 | "}", |
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61 | " 1, 1, 1, 1, 1, 1, " |
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62 | " 2, 2, 2, 2, 2, 2, 2, 2, 2," |
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63 | " 2, 2, 2, 2, 2, 2," |
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64 | " 1, 1, 1, 1, 1, 1, " |
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65 | " 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2," |
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66 | " 2, 2, 2, 2, 2, 2" |
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67 | " 1, 1" |
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68 | " 1, 1" |
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69 | ); |
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70 | /* Remember the size of the data vector. */ |
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71 | dtsize = Drv._dsize(); |
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72 | |
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73 | /* Description of the channels of the input vector. */ |
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74 | Urv = RV ( "{" |
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75 | "Tc" |
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76 | "495_offset" |
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77 | "495_VA 495_VB 495_VC 495_VD 495_VE 495_VF " |
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78 | "601_offset" |
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79 | "601_VA 601_VB 601_VC 601_VD 601_VE 601_SE " |
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80 | "}" ); |
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81 | /* Remember the size of the input vector. */ |
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82 | utsize = Urv._dsize(); |
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83 | |
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84 | /* Initialise the pointer to received data. */ |
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85 | p_rsp = NULL; |
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86 | } |
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87 | |
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88 | void AimsunDS::from_setting ( const Setting &cfg ) |
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89 | { |
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90 | /* Check the `stop time` field in configuration. */ |
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91 | UI::get ( stopTime, cfg, "stop_time" ); |
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92 | |
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93 | /* Query the configuration file for the name of the file containsing |
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94 | vehicle entrances. */ |
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95 | UI::get ( entranceFileName, cfg, "entrances" ); |
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96 | } |
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97 | |
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98 | void AimsunDS::validate () |
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99 | { |
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100 | HKEY hKey; |
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101 | TCHAR szBasePath[MAX_PATH]; /**< Base path of the whole application, root of the tree. */ |
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102 | TCHAR szDllPath[MAX_PATH]; /**< Directory where all DLLs reside. Will be added to PATH. */ |
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103 | TCHAR szSceDllPath[MAX_PATH]; /**< Temporary storage for DLL path rewritten in the scenario file. */ |
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104 | TCHAR szSceDir[MAX_PATH]; /**< Directory of the simulated scenario. */ |
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105 | TCHAR szScePath[MAX_PATH]; /**< Full path to the Aimsun scenario file. The file resides in `szSceDir`. */ |
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106 | TCHAR szScePathA[MAX_PATH]; |
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107 | TCHAR szScePathB[MAX_PATH]; |
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108 | TCHAR szScePathC[MAX_PATH]; |
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109 | TCHAR szNetPath[MAX_PATH]; |
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110 | TCHAR szHomeDir[MAX_PATH]; /**< Installation directory of Aimsun 4.2.x */ |
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111 | TCHAR szELS3Path[MAX_PATH]; /**< Full path of the simulator of ELS3 controller. */ |
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112 | TCHAR szExePath[MAX_EXE_PATH]; /**< Command line when staring ELS3 controllers. */ |
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113 | TCHAR szEntrancePath[MAX_PATH]; /**< Points to the CSV file with vehicle entrances for the simulation. */ |
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114 | DWORD dwBufLen = MAX_PATH_BYTES; |
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115 | LONG res; |
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116 | |
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117 | intptr_t hPid; |
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118 | |
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119 | int verIndex = 1; //@TODO@: 0 is for release, 1 for debug build of the DLL libraries. |
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120 | |
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121 | /* The root directory of the simulator tree is defined externally |
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122 | in "CMakeLists.txt". */ |
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123 | StringCbCopy ( szBasePath, MAX_PATH_BYTES, BASE_PATH ); |
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124 | |
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125 | /* Create the path to DLL directory. The path is defined externally |
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126 | in "CMakeLists.txt". |
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127 | The path will be used to inject the appropriate location of |
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128 | Getram extensions into the selected Aimsun scenario and also |
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129 | to modify PATH variable of executed processes in order to |
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130 | provide access to API DLLs. */ |
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131 | StringCbCopy ( szDllPath, MAX_PATH_BYTES, DLL_PATH ); |
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132 | |
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133 | /* Add the DLL directory to the PATH used by this process. |
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134 | The PATH will be passed to all other processes started |
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135 | by this one and hence they will be able to find API |
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136 | DLLs. */ |
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137 | _addpath ( szDllPath ); |
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138 | |
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139 | #ifdef LATER_OR_NEVER |
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140 | GetPrivateProfileString ( |
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141 | TEXT("paths"), |
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142 | TEXT("base"), |
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143 | NULL, |
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144 | szBasePath, |
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145 | MAX_PATH, |
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146 | TEXT(".\\simulate.ini") |
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147 | ); |
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148 | #endif |
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149 | |
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150 | /* Find the location of Aimsun executable. It is stored in registry tree as |
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151 | \\HKEY_LOCAL_MACHINE\SOFTWARE\TSS-Transport Simulation Systems\GETRAM\4.2.0 */ |
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152 | res = RegOpenKeyEx ( |
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153 | HKEY_LOCAL_MACHINE, |
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154 | TEXT("SOFTWARE\\TSS-Transport Simulation Systems\\GETRAM\\4.2.0"), |
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155 | 0, |
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156 | KEY_QUERY_VALUE, |
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157 | &hKey |
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158 | ); |
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159 | if ( res != ERROR_SUCCESS ) |
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160 | { |
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161 | perror ( "Cannot get handle to Aimsun registry entry" ); |
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162 | return; |
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163 | } |
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164 | |
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165 | /* The executable location is `HomeDir` key. */ |
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166 | res = RegQueryValueEx ( |
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167 | hKey, |
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168 | TEXT("HomeDir"), |
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169 | NULL, NULL, |
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170 | (LPBYTE) szHomeDir, |
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171 | &dwBufLen |
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172 | ); |
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173 | RegCloseKey( hKey ); |
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174 | if (( res != ERROR_SUCCESS ) || ( dwBufLen > MAX_PATH_BYTES )) |
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175 | { |
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176 | perror ( "Cannot read the Aimsun home directory from registry" ); |
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177 | return; |
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178 | } |
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179 | |
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180 | /* Concatenate the home path with the executable name. */ |
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181 | StringCbCat ( szHomeDir, MAX_PATH_BYTES, TEXT("\\aimsun42.exe") ); |
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182 | |
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183 | /* Create the version of home path including the quotation marks. */ |
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184 | StringCbCopy ( szExePath, MAX_EXE_PATH, TEXT("\"") ); |
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185 | StringCbCat ( szExePath, MAX_EXE_PATH, szHomeDir ); |
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186 | StringCbCat ( szExePath, MAX_EXE_PATH, TEXT("\"") ); |
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187 | |
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188 | /* Create the path to ELS3 executable. */ |
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189 | StringCbCopy ( szELS3Path, MAX_PATH_BYTES, TEXT("\"") ); |
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190 | StringCbCat ( szELS3Path, MAX_PATH_BYTES, szBasePath ); |
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191 | StringCbCat ( szELS3Path, MAX_PATH_BYTES, TEXT("\\els3\\els3sample.exe\"") ); |
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192 | |
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193 | /* Aimsun scenario modification. |
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194 | We have to take care of items that are specified by absolute |
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195 | paths in the scenario file. These items include: |
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196 | - network path (section #NETWORK), |
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197 | - ELS3 Getram extension DLL (section #EXTENSIONS), |
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198 | - VGS Getram extension DLL (section #EXTENSIONS). |
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199 | |
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200 | We will start with constructing the new network path.*/ |
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201 | StringCbCopy ( szSceDir, MAX_EXE_PATH, szBasePath ); |
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202 | StringCbCat ( szSceDir, MAX_EXE_PATH, TEXT("\\scenarios\\zlicin_495_601") ); |
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203 | StringCbCopy ( szNetPath, MAX_EXE_PATH, szSceDir ); |
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204 | StringCbCat ( szNetPath, MAX_EXE_PATH, TEXT("\\zlicin_495_601") ); |
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205 | |
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206 | /* Our convention is that the scenario file name corresponds |
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207 | to the network path name. */ |
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208 | StringCbCopy ( szScePath, MAX_EXE_PATH, szNetPath ); |
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209 | StringCbCat ( szScePath, MAX_EXE_PATH, TEXT(".sce") ); |
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210 | |
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211 | /* First modification step: Replace the location of ELS3 Getram |
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212 | extension. |
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213 | Start with constructing full path to the extension DLL.*/ |
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214 | StringCbCopy ( szSceDllPath, MAX_EXE_PATH, szDllPath ); |
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215 | StringCbCat ( szSceDllPath, MAX_EXE_PATH, TEXT("\\") ); |
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216 | StringCbCat ( szSceDllPath, MAX_EXE_PATH, PatternsELS3[verIndex] ); |
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217 | /* We are not allowed to modify scenario in place (it is part |
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218 | of SVN snapshot and we do not want our local changes to |
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219 | propagate to the trunk with every commit). Therefore we |
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220 | need an alternative scenario name that will be constructed |
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221 | now. */ |
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222 | StringCbCopy ( szScePathA, MAX_EXE_PATH, szScePath ); |
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223 | StringCbCat ( szScePathA, MAX_EXE_PATH, TEXT(".a") ); |
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224 | /* And do the replacements. */ |
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225 | replace_in_scenario ( |
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226 | szScePath, szScePathA, |
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227 | TEXT("#EXTENSIONS"), |
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228 | PatternsELS3, |
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229 | 2, |
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230 | szSceDllPath |
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231 | ); |
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232 | |
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233 | /* Second modification step. |
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234 | Replace the location of VGS Getram extension. */ |
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235 | StringCbCopy ( szSceDllPath, MAX_EXE_PATH, szDllPath ); |
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236 | StringCbCat ( szSceDllPath, MAX_EXE_PATH, TEXT("\\") ); |
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237 | StringCbCat ( szSceDllPath, MAX_EXE_PATH, PatternsVGS[verIndex] ); |
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238 | StringCbCopy ( szScePathB, MAX_EXE_PATH, szScePath ); |
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239 | StringCbCat ( szScePathB, MAX_EXE_PATH, TEXT(".b") ); |
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240 | replace_in_scenario ( |
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241 | szScePathA, szScePathB, |
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242 | TEXT("#EXTENSIONS"), |
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243 | PatternsVGS, |
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244 | 2, |
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245 | szSceDllPath |
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246 | ); |
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247 | |
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248 | const TCHAR * pattern_net[] = { TEXT("zlicin_495_601") }; |
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249 | |
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250 | /* Third modification step. |
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251 | Replace the network path. */ |
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252 | StringCbCopy ( szScePathC, MAX_EXE_PATH, szScePath ); |
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253 | StringCbCat ( szScePathC, MAX_EXE_PATH, TEXT(".c") ); |
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254 | replace_in_scenario ( |
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255 | szScePathB, szScePathC, |
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256 | TEXT("#NETWORK"), |
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257 | pattern_net, |
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258 | 1, |
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259 | szNetPath |
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260 | ); |
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261 | |
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262 | /* Fourth modification step. |
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263 | Replace the `stop time` field of RunTime information. */ |
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264 | replace_stoptime ( |
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265 | szNetPath, |
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266 | stopTime.c_str() |
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267 | ); |
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268 | |
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269 | //??? |
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270 | //StringCbCat ( szScePath, MAX_EXE_PATH, TEXT("\"") ); |
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271 | //StringCbCat ( szScePath, MAX_EXE_PATH, TEXT("\"") ); |
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272 | |
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273 | /* Spawn the process. */ |
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274 | hPid = _tspawnl ( |
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275 | _P_NOWAIT, |
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276 | szHomeDir, |
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277 | szExePath, |
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278 | TEXT("-run"), |
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279 | szScePathC, |
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280 | NULL |
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281 | ); |
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282 | |
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283 | if ( hPid < 0 ) |
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284 | { |
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285 | perror ( "Cannot start Aimsun by _spawnl()" ); |
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286 | return; |
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287 | } |
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288 | |
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289 | /* Now that Aimsun is running, we need to start also the controllers. */ |
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290 | for ( int c = 0 ; c < NUM_CONTROLLERS ; c++ ) |
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291 | { |
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292 | TCHAR szELS3Config[MAX_PATH]; |
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293 | szELS3Config[0] = 0; |
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294 | StringCbCat ( szELS3Config, MAX_PATH_BYTES, TEXT("\"") ); |
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295 | StringCbCat ( szELS3Config, MAX_PATH_BYTES, szBasePath ); |
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296 | StringCbCat ( szELS3Config, MAX_PATH_BYTES, TEXT("\\els3\\configs\\") ); |
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297 | StringCbCat ( szELS3Config, MAX_PATH_BYTES, ControllerList[c] ); |
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298 | StringCbCat ( szELS3Config, MAX_PATH_BYTES, TEXT(".ini\"") ); |
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299 | |
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300 | /* Create the command line for the controller. */ |
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301 | szExePath[0] = 0; |
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302 | StringCbCat ( szExePath, MAX_EXE_PATH, TEXT("start \"") ); |
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303 | StringCbCat ( szExePath, MAX_EXE_PATH, WindowStr[c] ); |
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304 | StringCbCat ( szExePath, MAX_EXE_PATH, TEXT("\" ") ); |
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305 | StringCbCat ( szExePath, MAX_EXE_PATH, szELS3Path ); |
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306 | StringCbCat ( szExePath, MAX_EXE_PATH, TEXT(" -l frm,det,spl") ); |
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307 | StringCbCat ( szExePath, MAX_EXE_PATH, TEXT(" -c 12.12.2007 00:00:00") ); |
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308 | StringCbCat ( szExePath, MAX_EXE_PATH, TEXT(" -f ") ); |
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309 | StringCbCat ( szExePath, MAX_EXE_PATH, szELS3Config ); |
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310 | |
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311 | /* Spawn the process. */ |
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312 | _tsystem ( szExePath ); |
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313 | } |
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314 | |
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315 | /* Aaaaggggrrrrrhhhh! |
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316 | C++ is much much faster than Matlab and we have a synchronisation |
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317 | issue with els3 controllers starting too late. */ |
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318 | Sleep ( 5000 ); |
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319 | |
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320 | |
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321 | /* Prepare full path for vehicle input data. */ |
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322 | StringCbCopy ( szEntrancePath, MAX_EXE_PATH, szSceDir ); |
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323 | StringCbCat ( szEntrancePath, MAX_EXE_PATH, TEXT("\\") ); |
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324 | StringCbCat ( szEntrancePath, MAX_EXE_PATH, entranceFileName.c_str() ); |
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325 | |
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326 | /* Initialise and start the vehicle input. |
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327 | The function call refers to delay-loaded DLL, so expect possible |
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328 | complainst in case that the DLL canot be found in PATH. */ |
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329 | initVGS ( |
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330 | HEADWAY_UNIFORM, |
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331 | szEntrancePath, |
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332 | TEXT("sect_stats.csv"), |
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333 | TEXT("glob_stats.csv") |
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334 | ); |
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335 | |
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336 | } |
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337 | |
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338 | void AimsunDS::initVGS ( |
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339 | const vgs_headway_mode headway, |
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340 | const string &entrancePath, |
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341 | const string §ionStatsPath, |
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342 | const string &globalStatsPath |
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343 | ) |
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344 | { |
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345 | int res; |
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346 | |
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347 | /* Pass information about entrance sections to VGS API (and so to the |
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348 | GetramVGS extension that will be generating vehicles for these |
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349 | entrances). */ |
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350 | vgs_set_entrance_sections ( EntranceSections, NumEntranceSections ); |
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351 | |
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352 | /* Check the validity of the headway mode. */ |
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353 | res = vgs_is_valid_headway_mode ( headway ); |
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354 | if ( !res ) |
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355 | { |
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356 | fprintf ( stderr, "Invalid headway mode '%d'\n", headway ); |
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357 | exit ( -1 ); |
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358 | } |
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359 | |
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360 | /* Specify where to find the CSV with vehicle entrances and which |
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361 | headway mode to use for generating vehicle flows. */ |
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362 | vgs_generate_vehicles ( entrancePath.c_str(), headway ); |
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363 | |
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364 | /* Pass to VGS API information about section identifiers we want to |
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365 | collect statistics for (and VGS will pass it to the GetramVGS |
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366 | extension). */ |
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367 | vgs_set_stats_sections ( StatIds, NumStatIds ); |
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368 | |
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369 | /* Specify where to store CSV files with statistical data. */ |
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370 | vgs_set_stats_file_names ( sectionStatsPath.c_str(), globalStatsPath.c_str() ); |
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371 | |
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372 | /* Specify the maximum queuing speed in kmph. */ |
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373 | vgs_set_max_qspeed ( 3.6f ); |
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374 | |
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375 | /* Unlock the semaphore blocking Aimsun from execution. */ |
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376 | vgs_unlock_aimsun(); |
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377 | } |
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378 | |
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379 | void AimsunDS::getdata ( vec &dt ) const |
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380 | { |
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381 | /* Return the last data. */ |
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382 | printf ( "\n\tAimsunDS::getdata() starting\n" ); |
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383 | |
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384 | if ( p_rsp == NULL ) |
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385 | { |
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386 | fprintf ( stderr, "ERROR: AimsunDS::getdata() - no data available yet!\n" ); |
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387 | return; |
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388 | } |
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389 | |
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390 | /* Loop over all controllers in the measurement set. */ |
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391 | for ( int i = 0; i < p_rsp->count; i++) |
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392 | { |
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393 | det_stats * ds_ptr = p_rsp->dets + i; |
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394 | sp_stats * sp_ptr = p_rsp->sps + i; |
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395 | |
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396 | printf ( "\tRealised signal plans:\n" ); |
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397 | |
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398 | /* Loop over all measurement sets. We will deliver just |
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399 | the last one. */ |
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400 | for ( int j = 0; j < sp_ptr->count ; j++ ) |
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401 | { |
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402 | sp_stattab * dat_ptr = sp_ptr->splans + j; |
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403 | int pos = _search_index ( IntersectionIDs, NumIntersections, dat_ptr->its_id ); |
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404 | int offset = SignalPlanOffsets[pos]; |
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405 | |
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406 | printf ( "\t[%3d] t=%6ds ", j, dat_ptr->global_time ); |
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407 | |
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408 | /* Copy particular signals. */ |
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409 | for ( int k = 0 ; k < dat_ptr->num_siggroups ; k++ ) |
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410 | { |
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411 | dt[k+offset] = dat_ptr->green_time[k]; |
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412 | printf ( "%3d ", dat_ptr->green_time[k] ); |
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413 | } |
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414 | printf ( "\n" ); |
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415 | } |
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416 | |
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417 | printf ( "\n\tDetector data:\n" ); |
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418 | |
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419 | /* Loop over all mesurement records with intensities and |
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420 | occupancies. */ |
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421 | for ( int j = 0 ; j < ds_ptr->count ; j++ ) |
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422 | { |
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423 | det_aggreg_table * dat_ptr = ds_ptr->stats + j; |
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424 | int pos = _search_index ( IntersectionIDs, NumIntersections, dat_ptr->its_id ); |
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425 | int moffset = MeasurementOffsets[pos]; |
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426 | |
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427 | printf ( "\t[%3d] t=%6ds ", j, dat_ptr->global_time ); |
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428 | |
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429 | for ( int k = 0 ; k < dat_ptr->num_det ; k++ ) |
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430 | { |
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431 | dt[2*k+moffset] = dat_ptr->dt_intensity[k]; |
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432 | dt[2*k+moffset+1] = dat_ptr->dt_occupancy[k]; |
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433 | printf ( "{%2d/%2d} ", |
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434 | dat_ptr->dt_intensity[k], dat_ptr->dt_occupancy[k] ); |
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435 | } |
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436 | printf ( "\n" ); |
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437 | } |
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438 | } |
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439 | |
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440 | printf ( "\tAimsunDS::getdata() finished\n" ); |
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441 | cout << dt ; |
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442 | } |
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443 | |
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444 | |
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445 | void AimsunDS::write ( vec &ut ) |
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446 | { |
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447 | eh_res sp_res; /* Result code from write operation. */ |
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448 | eh_hrdels3 hrdsp[2]; /* Signal plan for two intersections. */ |
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449 | |
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450 | /* Check that the length of the vector is correct. */ |
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451 | if ( ut.size() != utsize ) |
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452 | { |
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453 | fprintf ( stderr, "Incorrect length of data vector (should be %d)", utsize ); |
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454 | exit(-1); |
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455 | } |
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456 | /* Check that the phase lengths sum to correct cycle time. */ |
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457 | /* |
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458 | if ( ut[0]+ut[1]+ut[2] != 80 ) |
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459 | { |
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460 | fprintf ( stderr, "Intersection 495: F1+F2+F3 != Tc (should be 80)" ); |
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461 | exit(-1); |
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462 | } |
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463 | if ( ut[3]+ut[4]+ut[5] != 80 ) |
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464 | { |
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465 | fprintf ( stderr, "Intersection 601: F1+F2+F3 != Tc (should be 80)" ); |
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466 | exit(-1); |
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467 | }*/ |
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468 | |
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469 | hrdsp[0].id = 495; |
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470 | hrdsp[0].sp.cycle_time = int ( ut[0] ); |
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471 | hrdsp[0].sp.offset = int ( ut[1] ); |
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472 | hrdsp[0].sp.phase_len[0] = int ( ut[2] ); |
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473 | hrdsp[0].sp.phase_len[1] = int ( ut[3] ); |
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474 | hrdsp[0].sp.phase_len[2] = int ( ut[4] ); |
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475 | hrdsp[0].sp.phase_len[3] = -1; |
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476 | |
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477 | hrdsp[1].id = 601; |
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478 | hrdsp[1].sp.cycle_time = int ( ut[ 0] ); |
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479 | hrdsp[1].sp.offset = int ( ut[ 8] ); |
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480 | hrdsp[1].sp.phase_len[0] = int ( ut[ 9] ); |
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481 | hrdsp[1].sp.phase_len[1] = int ( ut[10] ); |
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482 | hrdsp[1].sp.phase_len[2] = int ( ut[11] ); |
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483 | hrdsp[1].sp.phase_len[3] = -1; |
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484 | |
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485 | /* Write new signal plan to the shared memory of active controllers. */ |
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486 | sp_res = eh_write_hrd_data( hrdsp, 2 ); |
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487 | |
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488 | if ( sp_res != EH_RES_OK ) |
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489 | { |
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490 | printf ( "eh_write_hrd_data(): " ); |
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491 | if ( sp_res == EH_RES_WCNT ) |
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492 | { |
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493 | printf ( "Wrong count of ELS3...\n" ); |
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494 | } |
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495 | else if ( sp_res == EH_RES_WRID ) |
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496 | { |
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497 | printf ( "Wrong intersection ID...\n" ); |
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498 | } |
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499 | else |
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500 | { |
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501 | printf ( "Unknown error [%d] ...\n", sp_res ); |
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502 | } |
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503 | } |
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504 | } |
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505 | |
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506 | |
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507 | void AimsunDS::step() |
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508 | { |
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509 | eh_wres wsp_res; /* Result code of the wait operation. */ |
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510 | int count; /* Count of measurement sets. */ |
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511 | |
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512 | /* Wait for 100 seconds until data from all ELS3 controllers arrive. */ |
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513 | wsp_res = eh_wait_on_rsp_complete( 100000 ); |
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514 | |
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515 | if ( wsp_res != EH_WRES_OK ) |
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516 | { |
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517 | printf ( "eh_wait_on_rsp_complete(): " ); |
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518 | |
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519 | if ( wsp_res == EH_WRES_TIMEOUT ) |
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520 | { |
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521 | printf ( "Timeout elapsed ...\n" ); |
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522 | } |
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523 | else if ( wsp_res == EH_WRES_EXIT ) |
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524 | { |
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525 | printf ( "Some ELS3 has exited ...\n" ); |
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526 | } |
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527 | else |
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528 | { |
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529 | printf ( "Unknown error [%d] ...\n", wsp_res ); |
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530 | } |
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531 | exit(-1); |
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532 | } |
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533 | |
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534 | /* This will copy the detector data out. It is needed by the |
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535 | Matlab HRDS version due to its internal structure - realised |
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536 | signal plans are read asynchronously and later. The value |
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537 | of `count` reports the number of data sets that will be |
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538 | returned by the call to `eh_read_realised_sp()`. This coount |
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539 | will be at least 1 but it may be higher in cases where the |
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540 | controller reports measurements in short intervals but we are |
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541 | reading them less frequently. */ |
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542 | count = eh_copy_out_measurements (); |
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543 | |
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544 | printf ( "got %d measurements from controllers ...", count ); |
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545 | |
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546 | /* Read realised signal plan from shared memory. */ |
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547 | if ( eh_read_realised_sp( &p_rsp ) == EH_RES_OK ) |
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548 | { |
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549 | printf("\nsuccesfully read data from controllers\n" ); |
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550 | } |
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551 | else |
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552 | { |
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553 | printf(" but got no data ???\n"); |
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554 | } |
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555 | } |
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