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1 /**************************************************************************** |
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2 ** |
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3 ** Copyright (C) 2009 Nokia Corporation and/or its subsidiary(-ies). |
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4 ** All rights reserved. |
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5 ** Contact: Nokia Corporation (qt-info@nokia.com) |
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6 ** |
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7 ** This file is part of the Qt Mobility Components. |
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8 ** |
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9 ** $QT_BEGIN_LICENSE:LGPL$ |
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10 ** No Commercial Usage |
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11 ** This file contains pre-release code and may not be distributed. |
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12 ** You may use this file in accordance with the terms and conditions |
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13 ** contained in the Technology Preview License Agreement accompanying |
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14 ** this package. |
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15 ** |
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16 ** GNU Lesser General Public License Usage |
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17 ** Alternatively, this file may be used under the terms of the GNU Lesser |
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18 ** General Public License version 2.1 as published by the Free Software |
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19 ** Foundation and appearing in the file LICENSE.LGPL included in the |
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20 ** packaging of this file. Please review the following information to |
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21 ** ensure the GNU Lesser General Public License version 2.1 requirements |
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22 ** will be met: http://www.gnu.org/licenses/old-licenses/lgpl-2.1.html. |
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23 ** |
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24 ** In addition, as a special exception, Nokia gives you certain additional |
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25 ** rights. These rights are described in the Nokia Qt LGPL Exception |
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26 ** version 1.1, included in the file LGPL_EXCEPTION.txt in this package. |
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27 ** |
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28 ** If you have questions regarding the use of this file, please contact |
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29 ** Nokia at qt-info@nokia.com. |
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30 ** |
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31 ** |
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32 ** |
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33 ** |
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34 ** |
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35 ** |
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36 ** |
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37 ** |
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38 ** $QT_END_LICENSE$ |
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39 ** |
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40 ****************************************************************************/ |
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41 |
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42 #include <QObject> |
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43 #include <QDateTime> |
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44 #include <limits.h> |
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45 #include "qgeopositioninfosource_s60_p.h" |
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46 #include "qgeopositioninfosource.h" |
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47 #include "qmlbackendao_s60_p.h" |
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48 |
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49 |
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50 QTM_BEGIN_NAMESPACE |
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51 |
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52 // constructor |
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53 CQGeoPositionInfoSourceS60::CQGeoPositionInfoSourceS60(QObject* aParent) : QGeoPositionInfoSource(aParent), |
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54 mCurrentModuleId(TUid::Null()), |
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55 mReqModuleId(TUid::Null()), |
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56 mDevStatusUpdateAO(NULL), |
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57 mReqUpdateAO(NULL), |
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58 mRegUpdateAO(NULL), |
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59 mSupportedMethods(PositioningMethod(0)), |
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60 mCurrentMethod(PositioningMethod(0)), |
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61 mListSize(0), |
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62 mStartUpdates(FALSE), |
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63 mRegularUpdateTimedOut(FALSE), |
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64 mModuleFlags(0) |
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65 { |
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66 memset(mList, 0 , MAX_SIZE * sizeof(CPosMethodInfo)); |
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67 } |
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68 |
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69 // destructor |
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70 CQGeoPositionInfoSourceS60::~CQGeoPositionInfoSourceS60() |
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71 { |
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72 if (mReqUpdateAO) |
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73 delete mReqUpdateAO; |
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74 |
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75 if (mRegUpdateAO) |
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76 delete mRegUpdateAO; |
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77 |
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78 if (mDevStatusUpdateAO) |
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79 delete mDevStatusUpdateAO; |
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80 |
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81 |
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82 } |
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83 |
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84 // static function NewLC |
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85 CQGeoPositionInfoSourceS60* CQGeoPositionInfoSourceS60::NewLC(QObject* aParent) |
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86 { |
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87 CQGeoPositionInfoSourceS60* self = |
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88 new(ELeave) CQGeoPositionInfoSourceS60(aParent); |
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89 CleanupStack::PushL(self); |
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90 self->ConstructL(); |
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91 return self; |
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92 } |
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93 |
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94 // static function NewL |
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95 CQGeoPositionInfoSourceS60* CQGeoPositionInfoSourceS60::NewL(QObject * aParent) |
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96 { |
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97 CQGeoPositionInfoSourceS60* self = CQGeoPositionInfoSourceS60::NewLC(aParent); |
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98 CleanupStack::Pop(); |
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99 |
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100 //check if the second phase construction is successful |
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101 if (!self->isValid()) { |
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102 delete self; |
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103 self = NULL; |
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104 } |
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105 |
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106 return self; |
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107 } |
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108 |
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109 // 2nd phase constructor |
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110 void CQGeoPositionInfoSourceS60::ConstructL() |
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111 { |
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112 TInt error = mPositionServer.Connect(); |
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113 |
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114 if (error == KErrNone) { |
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115 CleanupClosePushL(mPositionServer); |
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116 |
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117 mDevStatusUpdateAO = CQMLBackendAO::NewL(this, DeviceStatus); |
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118 |
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119 if (mDevStatusUpdateAO == NULL) { |
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120 CleanupStack::Pop(1); |
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121 |
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122 return; |
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123 } |
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124 |
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125 //update the list array with the available method initially |
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126 updateDeviceStatus(); |
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127 |
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128 // Set the PreferredPositioningMethods based on Supported methods |
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129 QGeoPositionInfoSource::setPreferredPositioningMethods( mSupportedMethods ); |
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130 |
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131 //devStatusUpdateAO->NotifyDeviceStatus(mStatusEvent); |
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132 |
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133 CleanupStack::PushL(mDevStatusUpdateAO); |
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134 |
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135 if (mCurrentModuleId != TUid::Null()) |
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136 mRegUpdateAO = CQMLBackendAO::NewL(this, RegularUpdate, mCurrentModuleId); |
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137 |
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138 CleanupStack::Pop(2); |
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139 } |
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140 |
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141 } |
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142 |
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143 QGeoPositionInfo CQGeoPositionInfoSourceS60::lastKnownPosition(bool aFromSatellitePositioningMethodsOnly) const |
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144 { |
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145 |
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146 QGeoPositionInfo posUpdate; |
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147 TPosition pos; |
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148 TInt error = KErrNone; |
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149 RPositioner iLastKnownpositioner; |
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150 TRequestStatus status; |
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151 |
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152 error = iLastKnownpositioner.Open(*const_cast<RPositionServer*>(&mPositionServer)); |
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153 //request for lastknown position update and wait for the request to complete |
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154 if (error == KErrNone) { |
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155 |
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156 TPositionInfo posInfo; |
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157 |
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158 iLastKnownpositioner.SetRequestor(CRequestor::ERequestorService , |
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159 CRequestor::EFormatApplication, _L("QTmobility_Location")); |
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160 |
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161 |
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162 iLastKnownpositioner.GetLastKnownPosition(posInfo, status); |
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163 |
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164 User::WaitForRequest(status); |
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165 |
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166 error = status.Int(); |
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167 |
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168 iLastKnownpositioner.Close(); |
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169 |
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170 if ((error == KErrNone) || (error == KPositionPartialUpdate)) { |
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171 |
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172 TPositionModuleInfo modInfo; |
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173 mPositionServer.GetModuleInfoById(posInfo.ModuleId(), modInfo); |
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174 |
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175 if(!aFromSatellitePositioningMethodsOnly || (aFromSatellitePositioningMethodsOnly && (modInfo.Capabilities() & TPositionModuleInfo::ECapabilitySatellite))){ |
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176 QGeoCoordinate coord; |
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177 |
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178 posInfo.GetPosition(pos); |
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179 |
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180 coord.setLatitude(pos.Latitude()); |
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181 coord.setLongitude(pos.Longitude()); |
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182 coord.setAltitude(pos.Altitude()); |
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183 |
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184 //store the QGeoCoordinate values |
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185 posUpdate.setCoordinate(coord); |
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186 |
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187 TDateTime datetime = pos.Time().DateTime(); |
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188 QDateTime dt(QDate(datetime.Year(), datetime.Month() + 1, datetime.Day() + 1), |
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189 QTime(datetime.Hour(), datetime.Minute(), datetime.Second(), |
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190 datetime.MicroSecond() / 1000), |
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191 Qt::UTC); |
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192 |
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193 //store the time stamp |
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194 posUpdate.setTimestamp(dt); |
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195 |
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196 //store the horizontal accuracy |
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197 posUpdate.setAttribute(QGeoPositionInfo::HorizontalAccuracy, pos.HorizontalAccuracy()); |
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198 |
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199 //store the vertical accuracy |
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200 posUpdate.setAttribute(QGeoPositionInfo::VerticalAccuracy, pos.VerticalAccuracy()); |
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201 |
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202 } |
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203 } |
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204 } |
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205 |
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206 return posUpdate; |
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207 } |
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208 |
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209 // |
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210 int CQGeoPositionInfoSourceS60::minimumUpdateInterval() const |
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211 { |
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212 if (mCurrentModuleId == TUid::Null()) |
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213 return 0; |
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214 |
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215 TInt i = checkModule(mCurrentModuleId); |
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216 if (i != -1) |
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217 return mList[i].mTimeToNextFix.Int64() / 1000; //divide by 1000, to convert microsecond to milisecond |
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218 return 0; |
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219 } |
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220 |
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221 |
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222 |
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223 //private function : to derive the supported positioning methods |
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224 void CQGeoPositionInfoSourceS60::updateAvailableTypes() |
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225 { |
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226 PositioningMethods types; |
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227 |
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228 for (TInt i = 0; i < mListSize ; i++) { |
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229 //check only for the available module without any device errors |
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230 if (mList[i].mIsAvailable && |
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231 (mList[i].mStatus != TPositionModuleStatus::EDeviceUnknown) && |
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232 (mList[i].mStatus != TPositionModuleStatus::EDeviceError)) { |
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233 types |= mList[i].mPosMethod; |
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234 |
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235 } |
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236 |
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237 //if both SatellitePositioningMethods and NonSatellitePositioningMethods return |
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238 if (types.testFlag(AllPositioningMethods)) |
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239 break; |
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240 } |
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241 |
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242 //update the supported methods based on types value, derived from the above steps |
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243 mSupportedMethods = types; |
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244 } |
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245 |
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246 //private function : to retrieve the index of the supplied module id from the mList array |
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247 TInt CQGeoPositionInfoSourceS60::checkModule(TPositionModuleId aId)const |
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248 { |
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249 TInt i; |
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250 for (i = 0; i < mListSize; i++) |
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251 if (mList[i].mUid == aId) |
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252 return i; |
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253 return -1; |
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254 } |
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255 |
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256 //private function : get the index of the mList that supports the preferred method if |
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257 //available,else returns the index of the default module |
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258 TInt CQGeoPositionInfoSourceS60::getIndexPositionModule(TUint8 aBits, PositioningMethods aPosMethods) const |
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259 { |
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260 TInt index, error; |
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261 |
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262 TPositionModuleId modID; |
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263 |
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264 //get the default module Id, whose index is returned if the preferred methods are not |
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265 //available |
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266 error = mPositionServer.GetDefaultModuleId(modID); |
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267 |
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268 if (error != KErrNone) |
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269 modID = TUid::Null(); |
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270 |
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271 //index = -1 : no methods available in the mList that supports preferred methods |
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272 index = -1; |
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273 |
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274 |
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275 for (TInt i = 0; i < mListSize ; i++) { |
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276 //check the module properties to select the preferred method,search should not |
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277 //not select an unavailable method,error device or index matching aLastIndex |
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278 if (mList[i].mIsAvailable && aPosMethods.testFlag(mList[i].mPosMethod) |
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279 && (mList[i].mStatus != TPositionModuleStatus::EDeviceUnknown) |
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280 && (mList[i].mStatus != TPositionModuleStatus::EDeviceError) |
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281 && (((aBits >> i) & 1))) { |
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282 return i; |
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283 } |
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284 |
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285 //store the index of the default module |
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286 if ((modID == mList[i].mUid) && ((aBits >> i) & 1)) |
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287 index = i; |
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288 } |
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289 |
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290 |
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291 return index; |
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292 } |
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293 |
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294 //private function : to get the index of the positioning method with time to first fix |
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295 //lesser than timeout |
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296 TInt CQGeoPositionInfoSourceS60::getMoreAccurateMethod(TInt aTimeout, TUint8 aBits) |
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297 { |
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298 TInt index = -1; |
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299 double temp = -1.0; |
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300 PositioningMethods posMethods; |
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301 TTimeIntervalMicroSeconds microSeconds; |
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302 |
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303 posMethods = preferredPositioningMethods(); |
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304 |
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305 //convert the timeout --> micro seconds |
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306 microSeconds = aTimeout * 1000; |
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307 |
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308 for (TInt i = 0 ; i < mListSize; i++) { |
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309 if (mList[i].mIsAvailable |
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310 //&& posMethods.testFlag(mList[i].mPosMethod) |
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311 && (mList[i].mStatus != TPositionModuleStatus::EDeviceUnknown) |
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312 && (mList[i].mStatus != TPositionModuleStatus::EDeviceError) |
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313 && (((aBits >> i) & 1)) |
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314 && (mList[i].mTimeToFirstFix < microSeconds)) { |
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315 if ((temp == -1.0) || (mList[i].mHorizontalAccuracy < temp)) { |
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316 index = i; |
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317 temp = mList[i].mHorizontalAccuracy; |
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318 } |
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319 } |
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320 } |
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321 |
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322 if (index != -1) { |
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323 return index; |
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324 } |
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325 |
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326 bool minSet = false; |
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327 microSeconds = 0; |
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328 |
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329 for (TInt i = 0 ; i < mListSize; i++) { |
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330 if (mList[i].mIsAvailable |
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331 //&& posMethods.testFlag(mList[i].mPosMethod) |
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332 && (mList[i].mStatus != TPositionModuleStatus::EDeviceUnknown) |
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333 && (mList[i].mStatus != TPositionModuleStatus::EDeviceError) |
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334 && (((aBits >> i) & 1))) { |
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335 if (!minSet || (mList[i].mTimeToFirstFix < microSeconds)) { |
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336 index = i; |
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337 minSet = true; |
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338 microSeconds = mList[i].mTimeToFirstFix; |
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339 } |
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340 } |
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341 } |
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342 |
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343 return index; |
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344 } |
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345 |
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346 //private function : to update the mList array |
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347 void CQGeoPositionInfoSourceS60::updateStatus(TPositionModuleInfo aModInfo, TInt aStatus) |
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348 { |
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349 |
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350 TInt i, index; |
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351 TPositionModuleId id; |
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352 PositioningMethod method; |
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353 TBool available; |
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354 TReal32 accuracy; |
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355 TTimeIntervalMicroSeconds time_to_first_fix, time_to_next_fix; |
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356 TPositionQuality quality; |
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357 CQMLBackendAO *temp = NULL; |
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358 |
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359 //query for the following parameters |
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360 id = aModInfo.ModuleId(); |
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361 |
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362 //module with a satellite capability is assumed to be provided satellite based positioning |
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363 //method |
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364 method = (aModInfo.Capabilities() & TPositionModuleInfo::ECapabilitySatellite) ? |
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365 SatellitePositioningMethods : NonSatellitePositioningMethods; |
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366 |
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367 //gets the device availability based on the user settings |
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368 available = aModInfo.IsAvailable(); |
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369 |
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370 //quality : holds the required metrics |
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371 aModInfo.GetPositionQuality(quality); |
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372 |
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373 //Accuracy |
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374 accuracy = quality.HorizontalAccuracy(); |
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375 |
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376 //time taken for the first fix |
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377 time_to_first_fix = quality.TimeToFirstFix(); |
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378 |
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379 //time taken for the subsequent fix |
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380 time_to_next_fix = quality.TimeToNextFix(); |
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381 |
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382 |
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383 if ((i = checkModule(id)) == -1) { |
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384 //update the properties of the module |
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385 |
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386 //TPositionModuleId of the module |
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387 mList[mListSize].mUid = id; |
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388 |
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389 //positioning method method type |
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390 mList[mListSize].mPosMethod = method; |
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391 |
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392 //status of the device |
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393 mList[mListSize].mStatus = aStatus; |
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394 |
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395 //availablility of the module |
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396 mList[mListSize].mIsAvailable = available; |
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397 |
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398 //horizontal accuracy of the module |
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399 mList[mListSize].mHorizontalAccuracy = accuracy; |
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400 |
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401 //time required to get the first fix |
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402 mList[mListSize].mTimeToFirstFix = time_to_first_fix; |
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403 |
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404 //time required for subsequent fix |
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405 mList[mListSize].mTimeToNextFix = time_to_next_fix; |
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406 |
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407 //count on the mList array size |
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408 mListSize++; |
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409 |
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410 //update the supported source types based on the device status |
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411 updateAvailableTypes(); |
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412 |
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413 //store the correct method in use from the mCurrentModuleId retireved earlier |
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414 if (id == mCurrentModuleId) { |
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415 mCurrentMethod = method; |
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416 } |
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417 } else { |
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418 //module's status has changed |
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419 if (mList[i].mStatus != aStatus) |
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420 mList[i].mStatus = aStatus; |
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421 |
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422 //module's availability has changed |
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423 if (mList[i].mIsAvailable != available) |
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424 mList[i].mIsAvailable = available; |
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425 |
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426 //module's horizontal accuracy has changed |
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427 if (mList[i].mHorizontalAccuracy != accuracy) |
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428 mList[i].mHorizontalAccuracy = accuracy; |
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429 |
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430 //module's time to first fix has changed |
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431 if (mList[i].mTimeToFirstFix != time_to_first_fix) |
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432 mList[i].mTimeToFirstFix = time_to_first_fix; |
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433 |
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434 //module's time to subsequent fix has changed |
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435 if (mList[i].mTimeToNextFix != time_to_next_fix) |
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436 mList[i].mTimeToFirstFix = time_to_next_fix; |
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437 |
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438 //update the supported source types based on the device status |
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439 updateAvailableTypes(); |
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440 |
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441 //if the mCurrentModuleId is NULL, try updating the reg update with the available |
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442 //positioning method |
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443 if (mCurrentModuleId == TUid::Null() && (available == TRUE) && |
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444 (aStatus != TPositionModuleStatus::EDeviceUnknown) && |
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445 (aStatus != TPositionModuleStatus::EDeviceError)) { |
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446 TInt interval; |
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447 |
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448 interval = QGeoPositionInfoSource::updateInterval(); |
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449 |
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450 TRAPD(ret, temp = CQMLBackendAO::NewL(this, RegularUpdate, |
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451 mList[i].mUid)); |
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452 |
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453 if ((ret == KErrNone) && (temp != NULL)) { |
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454 temp->setUpdateInterval(interval); |
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455 |
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456 if (mRegUpdateAO) |
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457 delete mRegUpdateAO; |
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458 mRegUpdateAO = temp; |
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459 |
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460 //to be uncommented when startUpdates are done |
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461 |
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462 if (mStartUpdates) |
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463 mRegUpdateAO->startUpdates(); |
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464 |
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465 mCurrentModuleId = mList[i].mUid; |
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466 |
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467 mCurrentMethod = mList[i].mPosMethod; |
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468 |
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469 } |
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470 } |
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471 |
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472 //check if the status of the currently used modules for regular update or |
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473 //request update has changed |
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474 if (((id == mCurrentModuleId) || (id == mReqModuleId)) && |
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475 ((aStatus == TPositionModuleStatus::EDeviceUnknown) || |
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476 (aStatus == TPositionModuleStatus::EDeviceError) || |
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477 (available == FALSE))) { |
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478 //if the change happened for regular update |
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479 if (id == mCurrentModuleId) { |
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480 TInt interval; |
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481 |
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482 TUint8 bits; |
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483 |
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484 interval = QGeoPositionInfoSource::updateInterval(); |
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485 |
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486 if (mRegUpdateAO) |
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487 delete mRegUpdateAO; |
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488 |
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489 bits = mModuleFlags; |
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490 |
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491 do { |
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492 //error = Get the index of the positioning module based on |
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493 //the preferred method if available , else get the default |
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494 //position module |
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495 index = getIndexPositionModule(bits); |
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496 |
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497 if (index >= 0) { |
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498 TRAPD(ret, temp = CQMLBackendAO::NewL(this, RegularUpdate, |
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499 mList[index].mUid)); |
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500 |
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501 if ((ret == KErrNone) && (temp != NULL)) |
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502 break; |
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503 |
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504 bits = bits & (0XFF ^(1 << index)); |
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505 } |
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506 } while (index >= 0); |
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507 |
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508 |
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509 if (temp != NULL) { |
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510 //successful in creating the subsession for the required |
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511 //method |
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512 mRegUpdateAO = temp; |
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513 |
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514 mCurrentModuleId = mList[index].mUid; |
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515 mCurrentMethod = mList[index].mPosMethod; |
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516 |
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517 mRegUpdateAO->setUpdateInterval(interval); |
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518 |
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519 //to be uncommented when startUpdates are done |
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520 |
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521 if (mStartUpdates) |
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522 mRegUpdateAO->startUpdates(); |
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523 |
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524 } else { |
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525 //no methods available,clean up the resources |
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526 mRegUpdateAO = NULL; |
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527 mCurrentModuleId = TUid::Null(); |
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528 mCurrentMethod = PositioningMethod(0); |
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529 |
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530 emit updateTimeout(); |
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531 } |
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532 |
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533 } |
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534 |
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535 //check if device status of the request update module changed |
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536 if (id == mReqModuleId) { |
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537 if (mRegUpdateAO) |
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538 delete mReqUpdateAO; |
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539 mReqUpdateAO = NULL; |
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540 mReqModuleId = TUid::Null(); |
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541 emit updateTimeout(); |
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542 } |
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543 |
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544 } |
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545 |
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546 } //end else |
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547 |
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548 } |
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549 |
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550 |
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551 // Notification methods from active object. Notifies device status changes |
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552 void CQGeoPositionInfoSourceS60::updateDeviceStatus(void) |
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553 { |
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554 TPositionModuleStatus moduleStatus; |
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555 TPositionModuleInfo moduleInfo; |
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556 TInt error; |
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557 |
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558 //mListSize = 0 : called updateDeviceStatus() first time to initialise the array |
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559 if (mListSize == 0) { |
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560 TUint modCount; |
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561 |
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562 //count on the modules currently supported by the device |
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563 mPositionServer.GetNumModules(modCount); |
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564 |
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565 //module ID of the default module |
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566 error = mPositionServer.GetDefaultModuleId(mCurrentModuleId); |
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567 |
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568 if (error != KErrNone) |
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569 mCurrentModuleId = TUid::Null(); |
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570 |
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571 for (TUint i = 0; i < modCount; i++) { |
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572 //get module information |
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573 mPositionServer.GetModuleInfoByIndex(i, moduleInfo); |
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574 |
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575 //get module status |
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576 mPositionServer.GetModuleStatus(moduleStatus, moduleInfo.ModuleId()); |
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577 |
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578 //update the properties of the module in the mList array |
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579 updateStatus(moduleInfo, moduleStatus.DeviceStatus()); |
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580 |
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581 mModuleFlags |= (1 << i); |
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582 } |
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583 } else { |
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584 //UpdateDeviceStatus() called after registering for NotifyModuleStatusEvent |
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585 |
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586 //get the module id from the status event |
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587 TPositionModuleId id = mStatusEvent.ModuleId(); |
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588 |
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589 //get module information |
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590 mPositionServer.GetModuleInfoById(id, moduleInfo); |
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591 |
|
592 //get current status of the module |
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593 mStatusEvent.GetModuleStatus(moduleStatus); |
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594 |
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595 //update the properties of the module in the mList array |
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596 updateStatus(moduleInfo, moduleStatus.DeviceStatus()); |
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597 |
|
598 |
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599 } |
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600 |
|
601 //register for next NotifyModuleStatusEvent |
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602 mDevStatusUpdateAO->notifyDeviceStatus(mStatusEvent); |
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603 |
|
604 } |
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605 |
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606 // |
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607 void CQGeoPositionInfoSourceS60::TPositionInfo2QGeoPositionInfo( |
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608 HPositionGenericInfo *aPosInfo1, QGeoPositionInfo& aPosInfo2) |
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609 { |
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610 TPosition pos; |
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611 QGeoCoordinate coord; |
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612 float val; |
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613 |
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614 aPosInfo1->GetPosition(pos); |
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615 |
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616 |
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617 coord.setLatitude(pos.Latitude()); |
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618 coord.setLongitude(pos.Longitude()); |
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619 coord.setAltitude(pos.Altitude()); |
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620 |
|
621 //store the QGeoCoordinate values |
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622 aPosInfo2.setCoordinate(coord); |
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623 |
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624 TDateTime datetime = pos.Time().DateTime(); |
|
625 QDateTime dt(QDate(datetime.Year() , datetime.Month() + 1, datetime.Day() + 1), |
|
626 QTime(datetime.Hour() , datetime.Minute(), datetime.Second(), |
|
627 datetime.MicroSecond() / 1000), |
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628 Qt::UTC); |
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629 |
|
630 //store the time stamp |
|
631 aPosInfo2.setTimestamp(dt); |
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632 |
|
633 //store the horizontal accuracy |
|
634 aPosInfo2.setAttribute(QGeoPositionInfo::HorizontalAccuracy, pos.HorizontalAccuracy()); |
|
635 |
|
636 //store the vertical accuracy |
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637 aPosInfo2.setAttribute(QGeoPositionInfo::VerticalAccuracy, pos.VerticalAccuracy()); |
|
638 |
|
639 //check for the horizontal speed |
|
640 if (aPosInfo1->IsFieldAvailable(EPositionFieldHorizontalSpeed)) { |
|
641 aPosInfo1->GetValue(EPositionFieldHorizontalSpeed, val); |
|
642 aPosInfo2.setAttribute(QGeoPositionInfo::GroundSpeed, val); |
|
643 } |
|
644 |
|
645 //check for the vertcal speed |
|
646 if (aPosInfo1->IsFieldAvailable(EPositionFieldVerticalSpeed)) { |
|
647 aPosInfo1->GetValue(EPositionFieldVerticalSpeed, val); |
|
648 aPosInfo2.setAttribute(QGeoPositionInfo::VerticalSpeed, val); |
|
649 } |
|
650 |
|
651 //check for the magnetic variation |
|
652 if (aPosInfo1->IsFieldAvailable(EPositionFieldMagneticCourseError)) { |
|
653 aPosInfo1->GetValue(EPositionFieldMagneticCourseError, val); |
|
654 aPosInfo2.setAttribute(QGeoPositionInfo::MagneticVariation, val); |
|
655 } |
|
656 |
|
657 //check for the heading |
|
658 if (aPosInfo1->IsFieldAvailable(EPositionFieldHeading)) { |
|
659 aPosInfo1->GetValue(EPositionFieldHeading, val); |
|
660 aPosInfo2.setAttribute(QGeoPositionInfo::Direction, val); |
|
661 } |
|
662 } |
|
663 // |
|
664 void CQGeoPositionInfoSourceS60::updatePosition(HPositionGenericInfo *aPosInfo, int aError) |
|
665 { |
|
666 QGeoPositionInfo posInfo; |
|
667 |
|
668 if (aError == KErrNone) { |
|
669 //fill posUpdate |
|
670 TPositionInfo2QGeoPositionInfo(aPosInfo, posInfo); |
|
671 |
|
672 mRegularUpdateTimedOut = false; |
|
673 |
|
674 //emit posUpdate |
|
675 emit positionUpdated(posInfo); |
|
676 } else if (aError == KErrTimedOut) { |
|
677 //request has timed out |
|
678 if (mStartUpdates) { |
|
679 if (!mRegularUpdateTimedOut) { |
|
680 mRegularUpdateTimedOut = true; |
|
681 emit updateTimeout(); |
|
682 } |
|
683 } else { |
|
684 emit updateTimeout(); |
|
685 } |
|
686 } else { |
|
687 //posiitoning module is unable to return any position information |
|
688 if (mStartUpdates) { |
|
689 if (!mRegularUpdateTimedOut) { |
|
690 mRegularUpdateTimedOut = true; |
|
691 emit updateTimeout(); |
|
692 } |
|
693 } else { |
|
694 emit positionUpdated(posInfo); |
|
695 } |
|
696 } |
|
697 } |
|
698 |
|
699 // Returns the PositionServer handle |
|
700 RPositionServer& CQGeoPositionInfoSourceS60:: getPositionServer() |
|
701 { |
|
702 return mPositionServer; |
|
703 } |
|
704 |
|
705 |
|
706 // for request update |
|
707 void CQGeoPositionInfoSourceS60::requestUpdate(int aTimeout) |
|
708 { |
|
709 TInt index = -1; |
|
710 TUint8 bits; |
|
711 |
|
712 CQMLBackendAO *temp= NULL; |
|
713 |
|
714 //return if already a request update is pending |
|
715 if (mReqUpdateAO && mReqUpdateAO->isRequestPending()) |
|
716 return; |
|
717 |
|
718 if (aTimeout < 0 || (aTimeout != 0 && aTimeout < minimumUpdateInterval())) { |
|
719 emit updateTimeout(); |
|
720 return; |
|
721 } |
|
722 |
|
723 if (aTimeout == 0) |
|
724 aTimeout = 20000; |
|
725 |
|
726 bits = mModuleFlags; |
|
727 |
|
728 do { |
|
729 |
|
730 //index of the more accurate method in the array |
|
731 index = getMoreAccurateMethod(aTimeout, bits); |
|
732 |
|
733 //no positioning method method available : emit updateTimeout |
|
734 if (index < 0) { |
|
735 emit updateTimeout(); |
|
736 break; |
|
737 } |
|
738 //if the selected module for request update is same as the previous one reuse the request |
|
739 if (mList[index].mUid == mReqModuleId) { |
|
740 mReqUpdateAO->requestUpdate(aTimeout); |
|
741 return; |
|
742 } |
|
743 |
|
744 TRAPD(ret, temp = CQMLBackendAO::NewL(this, OnceUpdate, mList[index].mUid)); |
|
745 |
|
746 if ((ret == KErrNone) && (temp != NULL)) { |
|
747 //delete the old reqest update |
|
748 if (mReqUpdateAO) |
|
749 delete mReqUpdateAO; |
|
750 |
|
751 //set the requestAO to the newly created AO |
|
752 mReqUpdateAO = temp; |
|
753 |
|
754 //set the request module ID |
|
755 mReqModuleId = mList[index].mUid; |
|
756 |
|
757 //start the update |
|
758 mReqUpdateAO->requestUpdate(aTimeout); |
|
759 |
|
760 return; |
|
761 } |
|
762 |
|
763 bits = bits & (0XFF ^(1 << index)); |
|
764 |
|
765 } while (index >= 0); |
|
766 |
|
767 //cleanup resources if the invalid requpdate is still stored |
|
768 if (mReqUpdateAO) { |
|
769 delete mReqUpdateAO; |
|
770 mReqUpdateAO = NULL; |
|
771 mReqModuleId = TUid::Null(); |
|
772 } |
|
773 |
|
774 } |
|
775 |
|
776 // starts the regular updates |
|
777 void CQGeoPositionInfoSourceS60::startUpdates() |
|
778 { |
|
779 if (receivers(SIGNAL(positionUpdated(QGeoPositionInfo))) > 0 && !mStartUpdates) |
|
780 mRegUpdateAO->startUpdates(); |
|
781 mRegularUpdateTimedOut = false; |
|
782 mStartUpdates = true; |
|
783 } |
|
784 |
|
785 // stops the regular updates |
|
786 void CQGeoPositionInfoSourceS60::stopUpdates() |
|
787 { |
|
788 mStartUpdates = false; |
|
789 mRegUpdateAO->cancelUpdate(); |
|
790 } |
|
791 |
|
792 void CQGeoPositionInfoSourceS60::setPreferredPositioningMethods(PositioningMethods aMethods) |
|
793 { |
|
794 QGeoPositionInfoSource::setPreferredPositioningMethods(aMethods); |
|
795 |
|
796 PositioningMethods preferredMethod(PositioningMethods(0)); |
|
797 TInt index = -1; |
|
798 // the poistioning methods are not supported |
|
799 // if the preferred positioning method is the current poistioning |
|
800 |
|
801 if (!(mSupportedMethods & aMethods) || (aMethods == PositioningMethods(AllPositioningMethods)) || |
|
802 (aMethods == PositioningMethods(mCurrentMethod))) |
|
803 |
|
804 return; |
|
805 |
|
806 //TPositionModuleId moduleId = getPreferredPoistionModuleId(methods); |
|
807 |
|
808 //if(moduleId == TUid::Null()) |
|
809 //return; |
|
810 CQMLBackendAO *temp = NULL; |
|
811 TUint8 bits; |
|
812 bits = mModuleFlags; |
|
813 do { |
|
814 //index = Get the index of the positioning module based on |
|
815 //the preferred method if available , else get the default |
|
816 //position module |
|
817 index = getIndexPositionModule(bits, aMethods); |
|
818 |
|
819 if (index == -1) |
|
820 return; |
|
821 |
|
822 if (index >= 0) { |
|
823 |
|
824 TRAPD(error, temp = CQMLBackendAO::NewL(this, RegularUpdate, |
|
825 mList[index].mUid)); |
|
826 if ((temp != NULL) && (error == KErrNone)) |
|
827 break; |
|
828 |
|
829 bits = bits & (0XFF ^(1 << index)); |
|
830 } |
|
831 } while (index >= 0); |
|
832 |
|
833 |
|
834 if (temp != NULL) { |
|
835 // this is needed as the previous setupdateinterval value should not be lost |
|
836 int updateInterval = QGeoPositionInfoSource::updateInterval(); |
|
837 if (mRegUpdateAO) |
|
838 delete mRegUpdateAO; |
|
839 mRegUpdateAO = temp; |
|
840 mCurrentModuleId = mList[index].mUid ; |
|
841 |
|
842 index = checkModule(mCurrentModuleId); |
|
843 |
|
844 mCurrentMethod = mList[index].mPosMethod ; |
|
845 |
|
846 |
|
847 if (updateInterval) { |
|
848 int value = mRegUpdateAO->setUpdateInterval(updateInterval); |
|
849 //as the poistioning module has changed |
|
850 //possibility of the minimumupdateinterval being changed |
|
851 if (value != updateInterval) |
|
852 QGeoPositionInfoSource::setUpdateInterval(value); |
|
853 |
|
854 } |
|
855 } |
|
856 |
|
857 } |
|
858 |
|
859 void CQGeoPositionInfoSourceS60::setUpdateInterval(int aMilliSec) |
|
860 { |
|
861 if (mRegUpdateAO) { |
|
862 int interval = mRegUpdateAO->setUpdateInterval(aMilliSec); |
|
863 // as the above set value can be minimum value so |
|
864 // assigning to the base class data member |
|
865 QGeoPositionInfoSource::setUpdateInterval(interval); |
|
866 } |
|
867 } |
|
868 |
|
869 void CQGeoPositionInfoSourceS60::connectNotify(const char *aSignal) |
|
870 { |
|
871 // start update if it already connected |
|
872 if (mStartUpdates && mRegUpdateAO && QLatin1String(aSignal) == SIGNAL(positionUpdated(QGeoPositionInfo))) |
|
873 mRegUpdateAO->startUpdates(); |
|
874 |
|
875 } |
|
876 |
|
877 void CQGeoPositionInfoSourceS60::disconnectNotify(const char *aSignal) |
|
878 { |
|
879 // Cancel updates if slot is disconnected for the positionUpdate() signal. |
|
880 |
|
881 if ((mRegUpdateAO) && (QLatin1String(aSignal) == SIGNAL(positionUpdated(QGeoPositionInfo))) && receivers(SIGNAL(positionUpdated(QGeoPositionInfo))) == 0) |
|
882 mRegUpdateAO->cancelUpdate(); |
|
883 |
|
884 } |
|
885 |
|
886 QTM_END_NAMESPACE |