@@ -1,157 +1,157 | |||||
1 | #include "Visualization/VisualizationGraphHelper.h" |
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1 | #include "Visualization/VisualizationGraphHelper.h" | |
2 | #include "Visualization/qcustomplot.h" |
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2 | #include "Visualization/qcustomplot.h" | |
3 |
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3 | |||
4 | #include <Data/ScalarSeries.h> |
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4 | #include <Data/ScalarSeries.h> | |
5 |
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5 | |||
6 | #include <Variable/Variable.h> |
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6 | #include <Variable/Variable.h> | |
7 |
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7 | |||
8 | #include <QElapsedTimer> |
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8 | #include <QElapsedTimer> | |
9 |
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9 | |||
10 | Q_LOGGING_CATEGORY(LOG_VisualizationGraphHelper, "VisualizationGraphHelper") |
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10 | Q_LOGGING_CATEGORY(LOG_VisualizationGraphHelper, "VisualizationGraphHelper") | |
11 |
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11 | |||
12 | namespace { |
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12 | namespace { | |
13 |
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13 | |||
14 | /// Format for datetimes on a axis |
|
14 | /// Format for datetimes on a axis | |
15 | const auto DATETIME_TICKER_FORMAT = QStringLiteral("yyyy/MM/dd \nhh:mm:ss"); |
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15 | const auto DATETIME_TICKER_FORMAT = QStringLiteral("yyyy/MM/dd \nhh:mm:ss"); | |
16 |
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16 | |||
17 | /// Generates the appropriate ticker for an axis, depending on whether the axis displays time or |
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17 | /// Generates the appropriate ticker for an axis, depending on whether the axis displays time or | |
18 | /// non-time data |
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18 | /// non-time data | |
19 | QSharedPointer<QCPAxisTicker> axisTicker(bool isTimeAxis) |
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19 | QSharedPointer<QCPAxisTicker> axisTicker(bool isTimeAxis) | |
20 | { |
|
20 | { | |
21 | if (isTimeAxis) { |
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21 | if (isTimeAxis) { | |
22 | auto dateTicker = QSharedPointer<QCPAxisTickerDateTime>::create(); |
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22 | auto dateTicker = QSharedPointer<QCPAxisTickerDateTime>::create(); | |
23 | dateTicker->setDateTimeFormat(DATETIME_TICKER_FORMAT); |
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23 | dateTicker->setDateTimeFormat(DATETIME_TICKER_FORMAT); | |
24 |
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24 | |||
25 | return dateTicker; |
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25 | return dateTicker; | |
26 | } |
|
26 | } | |
27 | else { |
|
27 | else { | |
28 | // default ticker |
|
28 | // default ticker | |
29 | return QSharedPointer<QCPAxisTicker>::create(); |
|
29 | return QSharedPointer<QCPAxisTicker>::create(); | |
30 | } |
|
30 | } | |
31 | } |
|
31 | } | |
32 |
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32 | |||
33 | void updateScalarData(QCPAbstractPlottable *component, ScalarSeries &scalarSeries, |
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33 | void updateScalarData(QCPAbstractPlottable *component, ScalarSeries &scalarSeries, | |
34 | const SqpDateTime &dateTime) |
|
34 | const SqpDateTime &dateTime) | |
35 | { |
|
35 | { | |
36 | QElapsedTimer timer; |
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36 | QElapsedTimer timer; | |
37 | timer.start(); |
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37 | timer.start(); | |
38 | if (auto qcpGraph = dynamic_cast<QCPGraph *>(component)) { |
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38 | if (auto qcpGraph = dynamic_cast<QCPGraph *>(component)) { | |
39 | // Clean the graph |
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39 | // Clean the graph | |
40 | // NAIVE approch |
|
40 | // NAIVE approch | |
41 | const auto &xData = scalarSeries.xAxisData()->data(); |
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41 | const auto &xData = scalarSeries.xAxisData()->data(); | |
42 | const auto &valuesData = scalarSeries.valuesData()->data(); |
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42 | const auto &valuesData = scalarSeries.valuesData()->data(); | |
43 | const auto count = xData.count(); |
|
43 | const auto count = xData.count(); | |
44 | qCInfo(LOG_VisualizationGraphHelper()) << "TORM: Current points in cache" << xData.count(); |
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44 | qCInfo(LOG_VisualizationGraphHelper()) << "TORM: Current points in cache" << xData.count(); | |
45 |
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45 | |||
46 | auto xValue = QVector<double>(count); |
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46 | auto xValue = QVector<double>(count); | |
47 | auto vValue = QVector<double>(count); |
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47 | auto vValue = QVector<double>(count); | |
48 |
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48 | |||
49 | int n = 0; |
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49 | int n = 0; | |
50 | for (auto i = 0; i < count; ++i) { |
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50 | for (auto i = 0; i < count; ++i) { | |
51 | const auto x = xData[i]; |
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51 | const auto x = xData[i]; | |
52 | if (x >= dateTime.m_TStart && x <= dateTime.m_TEnd) { |
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52 | if (x >= dateTime.m_TStart && x <= dateTime.m_TEnd) { | |
53 | xValue[n] = x; |
|
53 | xValue[n] = x; | |
54 | vValue[n] = valuesData[i]; |
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54 | vValue[n] = valuesData[i]; | |
55 | ++n; |
|
55 | ++n; | |
56 | } |
|
56 | } | |
57 | } |
|
57 | } | |
58 |
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58 | |||
59 | xValue.resize(n); |
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59 | xValue.resize(n); | |
60 | vValue.resize(n); |
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60 | vValue.resize(n); | |
61 |
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61 | |||
62 |
qCInfo(LOG_VisualizationGraphHelper()) << "TORM: Current points displayed" |
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62 | qCInfo(LOG_VisualizationGraphHelper()) << "TORM: Current points displayed" | |
63 |
<< |
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63 | << xValue.count(); | |
64 |
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64 | |||
65 | qcpGraph->setData(xValue, vValue); |
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65 | qcpGraph->setData(xValue, vValue); | |
66 |
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66 | |||
67 | // Display all data |
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67 | // Display all data | |
68 | // component->parentPlot()->xAxis->setRange(dateTime.m_TStart, dateTime.m_TEnd); |
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68 | // component->parentPlot()->xAxis->setRange(dateTime.m_TStart, dateTime.m_TEnd); | |
69 | component->rescaleAxes(); |
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69 | component->rescaleAxes(); | |
70 | component->parentPlot()->replot(); |
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70 | component->parentPlot()->replot(); | |
71 | } |
|
71 | } | |
72 | else { |
|
72 | else { | |
73 | /// @todo DEBUG |
|
73 | /// @todo DEBUG | |
74 | } |
|
74 | } | |
75 | } |
|
75 | } | |
76 |
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76 | |||
77 | QCPAbstractPlottable *createScalarSeriesComponent(ScalarSeries &scalarSeries, QCustomPlot &plot, |
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77 | QCPAbstractPlottable *createScalarSeriesComponent(ScalarSeries &scalarSeries, QCustomPlot &plot, | |
78 | const SqpDateTime &dateTime) |
|
78 | const SqpDateTime &dateTime) | |
79 | { |
|
79 | { | |
80 | auto component = plot.addGraph(); |
|
80 | auto component = plot.addGraph(); | |
81 |
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81 | |||
82 | if (component) { |
|
82 | if (component) { | |
83 | // // Graph data |
|
83 | // // Graph data | |
84 | component->setData(scalarSeries.xAxisData()->data(), scalarSeries.valuesData()->data(), |
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84 | component->setData(scalarSeries.xAxisData()->data(), scalarSeries.valuesData()->data(), | |
85 | true); |
|
85 | true); | |
86 |
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86 | |||
87 | updateScalarData(component, scalarSeries, dateTime); |
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87 | updateScalarData(component, scalarSeries, dateTime); | |
88 |
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88 | |||
89 | // Axes properties |
|
89 | // Axes properties | |
90 | /// @todo : for the moment, no control is performed on the axes: the units and the tickers |
|
90 | /// @todo : for the moment, no control is performed on the axes: the units and the tickers | |
91 | /// are fixed for the default x-axis and y-axis of the plot, and according to the new graph |
|
91 | /// are fixed for the default x-axis and y-axis of the plot, and according to the new graph | |
92 |
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92 | |||
93 | auto setAxisProperties = [](auto axis, const auto &unit) { |
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93 | auto setAxisProperties = [](auto axis, const auto &unit) { | |
94 | // label (unit name) |
|
94 | // label (unit name) | |
95 | axis->setLabel(unit.m_Name); |
|
95 | axis->setLabel(unit.m_Name); | |
96 |
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96 | |||
97 | // ticker (depending on the type of unit) |
|
97 | // ticker (depending on the type of unit) | |
98 | axis->setTicker(axisTicker(unit.m_TimeUnit)); |
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98 | axis->setTicker(axisTicker(unit.m_TimeUnit)); | |
99 | }; |
|
99 | }; | |
100 | setAxisProperties(plot.xAxis, scalarSeries.xAxisUnit()); |
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100 | setAxisProperties(plot.xAxis, scalarSeries.xAxisUnit()); | |
101 | setAxisProperties(plot.yAxis, scalarSeries.valuesUnit()); |
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101 | setAxisProperties(plot.yAxis, scalarSeries.valuesUnit()); | |
102 |
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102 | |||
103 | // Display all data |
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103 | // Display all data | |
104 | component->rescaleAxes(); |
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104 | component->rescaleAxes(); | |
105 | plot.replot(); |
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105 | plot.replot(); | |
106 | } |
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106 | } | |
107 | else { |
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107 | else { | |
108 | qCDebug(LOG_VisualizationGraphHelper()) |
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108 | qCDebug(LOG_VisualizationGraphHelper()) | |
109 | << QObject::tr("Can't create graph for the scalar series"); |
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109 | << QObject::tr("Can't create graph for the scalar series"); | |
110 | } |
|
110 | } | |
111 |
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111 | |||
112 | return component; |
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112 | return component; | |
113 | } |
|
113 | } | |
114 |
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114 | |||
115 | } // namespace |
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115 | } // namespace | |
116 |
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116 | |||
117 | QVector<QCPAbstractPlottable *> VisualizationGraphHelper::create(std::shared_ptr<Variable> variable, |
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117 | QVector<QCPAbstractPlottable *> VisualizationGraphHelper::create(std::shared_ptr<Variable> variable, | |
118 | QCustomPlot &plot) noexcept |
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118 | QCustomPlot &plot) noexcept | |
119 | { |
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119 | { | |
120 | auto result = QVector<QCPAbstractPlottable *>{}; |
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120 | auto result = QVector<QCPAbstractPlottable *>{}; | |
121 |
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121 | |||
122 | if (variable) { |
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122 | if (variable) { | |
123 | // Gets the data series of the variable to call the creation of the right components |
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123 | // Gets the data series of the variable to call the creation of the right components | |
124 | // according to its type |
|
124 | // according to its type | |
125 | if (auto scalarSeries = dynamic_cast<ScalarSeries *>(variable->dataSeries())) { |
|
125 | if (auto scalarSeries = dynamic_cast<ScalarSeries *>(variable->dataSeries())) { | |
126 | result.append(createScalarSeriesComponent(*scalarSeries, plot, variable->dateTime())); |
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126 | result.append(createScalarSeriesComponent(*scalarSeries, plot, variable->dateTime())); | |
127 | } |
|
127 | } | |
128 | else { |
|
128 | else { | |
129 | qCDebug(LOG_VisualizationGraphHelper()) |
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129 | qCDebug(LOG_VisualizationGraphHelper()) | |
130 | << QObject::tr("Can't create graph plottables : unmanaged data series type"); |
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130 | << QObject::tr("Can't create graph plottables : unmanaged data series type"); | |
131 | } |
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131 | } | |
132 | } |
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132 | } | |
133 | else { |
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133 | else { | |
134 | qCDebug(LOG_VisualizationGraphHelper()) |
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134 | qCDebug(LOG_VisualizationGraphHelper()) | |
135 | << QObject::tr("Can't create graph plottables : the variable is null"); |
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135 | << QObject::tr("Can't create graph plottables : the variable is null"); | |
136 | } |
|
136 | } | |
137 |
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137 | |||
138 | return result; |
|
138 | return result; | |
139 | } |
|
139 | } | |
140 |
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140 | |||
141 | void VisualizationGraphHelper::updateData(QVector<QCPAbstractPlottable *> plotableVect, |
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141 | void VisualizationGraphHelper::updateData(QVector<QCPAbstractPlottable *> plotableVect, | |
142 | IDataSeries *dataSeries, const SqpDateTime &dateTime) |
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142 | IDataSeries *dataSeries, const SqpDateTime &dateTime) | |
143 | { |
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143 | { | |
144 | if (auto scalarSeries = dynamic_cast<ScalarSeries *>(dataSeries)) { |
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144 | if (auto scalarSeries = dynamic_cast<ScalarSeries *>(dataSeries)) { | |
145 | if (plotableVect.size() == 1) { |
|
145 | if (plotableVect.size() == 1) { | |
146 | updateScalarData(plotableVect.at(0), *scalarSeries, dateTime); |
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146 | updateScalarData(plotableVect.at(0), *scalarSeries, dateTime); | |
147 | } |
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147 | } | |
148 | else { |
|
148 | else { | |
149 | qCCritical(LOG_VisualizationGraphHelper()) << QObject::tr( |
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149 | qCCritical(LOG_VisualizationGraphHelper()) << QObject::tr( | |
150 | "Can't update Data of a scalarSeries because there is not only one component " |
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150 | "Can't update Data of a scalarSeries because there is not only one component " | |
151 | "associated"); |
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151 | "associated"); | |
152 | } |
|
152 | } | |
153 | } |
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153 | } | |
154 | else { |
|
154 | else { | |
155 | /// @todo DEBUG |
|
155 | /// @todo DEBUG | |
156 | } |
|
156 | } | |
157 | } |
|
157 | } |
@@ -1,269 +1,263 | |||||
1 | #include "Visualization/VisualizationGraphWidget.h" |
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1 | #include "Visualization/VisualizationGraphWidget.h" | |
2 | #include "Visualization/IVisualizationWidgetVisitor.h" |
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2 | #include "Visualization/IVisualizationWidgetVisitor.h" | |
3 | #include "Visualization/VisualizationGraphHelper.h" |
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3 | #include "Visualization/VisualizationGraphHelper.h" | |
4 | #include "ui_VisualizationGraphWidget.h" |
|
4 | #include "ui_VisualizationGraphWidget.h" | |
5 |
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5 | |||
6 | #include <Data/ArrayData.h> |
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6 | #include <Data/ArrayData.h> | |
7 | #include <Data/IDataSeries.h> |
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7 | #include <Data/IDataSeries.h> | |
8 | #include <SqpApplication.h> |
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8 | #include <SqpApplication.h> | |
9 | #include <Variable/Variable.h> |
|
9 | #include <Variable/Variable.h> | |
10 | #include <Variable/VariableController.h> |
|
10 | #include <Variable/VariableController.h> | |
11 |
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11 | |||
12 | #include <unordered_map> |
|
12 | #include <unordered_map> | |
13 |
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13 | |||
14 | Q_LOGGING_CATEGORY(LOG_VisualizationGraphWidget, "VisualizationGraphWidget") |
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14 | Q_LOGGING_CATEGORY(LOG_VisualizationGraphWidget, "VisualizationGraphWidget") | |
15 |
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15 | |||
16 | namespace { |
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16 | namespace { | |
17 |
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17 | |||
18 | /// Key pressed to enable zoom on horizontal axis |
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18 | /// Key pressed to enable zoom on horizontal axis | |
19 | const auto HORIZONTAL_ZOOM_MODIFIER = Qt::NoModifier; |
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19 | const auto HORIZONTAL_ZOOM_MODIFIER = Qt::NoModifier; | |
20 |
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20 | |||
21 | /// Key pressed to enable zoom on vertical axis |
|
21 | /// Key pressed to enable zoom on vertical axis | |
22 | const auto VERTICAL_ZOOM_MODIFIER = Qt::ControlModifier; |
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22 | const auto VERTICAL_ZOOM_MODIFIER = Qt::ControlModifier; | |
23 |
|
23 | |||
24 | } // namespace |
|
24 | } // namespace | |
25 |
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25 | |||
26 | struct VisualizationGraphWidget::VisualizationGraphWidgetPrivate { |
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26 | struct VisualizationGraphWidget::VisualizationGraphWidgetPrivate { | |
27 |
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27 | |||
28 | // 1 variable -> n qcpplot |
|
28 | // 1 variable -> n qcpplot | |
29 | std::multimap<std::shared_ptr<Variable>, QCPAbstractPlottable *> m_VariableToPlotMultiMap; |
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29 | std::multimap<std::shared_ptr<Variable>, QCPAbstractPlottable *> m_VariableToPlotMultiMap; | |
30 | }; |
|
30 | }; | |
31 |
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31 | |||
32 | VisualizationGraphWidget::VisualizationGraphWidget(const QString &name, QWidget *parent) |
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32 | VisualizationGraphWidget::VisualizationGraphWidget(const QString &name, QWidget *parent) | |
33 | : QWidget{parent}, |
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33 | : QWidget{parent}, | |
34 | ui{new Ui::VisualizationGraphWidget}, |
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34 | ui{new Ui::VisualizationGraphWidget}, | |
35 | impl{spimpl::make_unique_impl<VisualizationGraphWidgetPrivate>()} |
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35 | impl{spimpl::make_unique_impl<VisualizationGraphWidgetPrivate>()} | |
36 | { |
|
36 | { | |
37 | ui->setupUi(this); |
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37 | ui->setupUi(this); | |
38 |
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38 | |||
39 | ui->graphNameLabel->setText(name); |
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39 | ui->graphNameLabel->setText(name); | |
40 |
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40 | |||
41 | // 'Close' options : widget is deleted when closed |
|
41 | // 'Close' options : widget is deleted when closed | |
42 | setAttribute(Qt::WA_DeleteOnClose); |
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42 | setAttribute(Qt::WA_DeleteOnClose); | |
43 | connect(ui->closeButton, &QToolButton::clicked, this, &VisualizationGraphWidget::close); |
|
43 | connect(ui->closeButton, &QToolButton::clicked, this, &VisualizationGraphWidget::close); | |
44 | ui->closeButton->setIcon(sqpApp->style()->standardIcon(QStyle::SP_TitleBarCloseButton)); |
|
44 | ui->closeButton->setIcon(sqpApp->style()->standardIcon(QStyle::SP_TitleBarCloseButton)); | |
45 |
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45 | |||
46 | // Set qcpplot properties : |
|
46 | // Set qcpplot properties : | |
47 | // - Drag (on x-axis) and zoom are enabled |
|
47 | // - Drag (on x-axis) and zoom are enabled | |
48 | // - Mouse wheel on qcpplot is intercepted to determine the zoom orientation |
|
48 | // - Mouse wheel on qcpplot is intercepted to determine the zoom orientation | |
49 | ui->widget->setInteractions(QCP::iRangeDrag | QCP::iRangeZoom); |
|
49 | ui->widget->setInteractions(QCP::iRangeDrag | QCP::iRangeZoom); | |
50 | ui->widget->axisRect()->setRangeDrag(Qt::Horizontal); |
|
50 | ui->widget->axisRect()->setRangeDrag(Qt::Horizontal); | |
51 | connect(ui->widget, &QCustomPlot::mouseWheel, this, &VisualizationGraphWidget::onMouseWheel); |
|
51 | connect(ui->widget, &QCustomPlot::mouseWheel, this, &VisualizationGraphWidget::onMouseWheel); | |
52 | connect(ui->widget->xAxis, |
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52 | connect(ui->widget->xAxis, | |
53 | static_cast<void (QCPAxis::*)(const QCPRange &)>(&QCPAxis::rangeChanged), this, |
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53 | static_cast<void (QCPAxis::*)(const QCPRange &)>(&QCPAxis::rangeChanged), this, | |
54 | &VisualizationGraphWidget::onRangeChanged); |
|
54 | &VisualizationGraphWidget::onRangeChanged); | |
55 |
|
55 | |||
56 | // Activates menu when right clicking on the graph |
|
56 | // Activates menu when right clicking on the graph | |
57 | ui->widget->setContextMenuPolicy(Qt::CustomContextMenu); |
|
57 | ui->widget->setContextMenuPolicy(Qt::CustomContextMenu); | |
58 | connect(ui->widget, &QCustomPlot::customContextMenuRequested, this, |
|
58 | connect(ui->widget, &QCustomPlot::customContextMenuRequested, this, | |
59 | &VisualizationGraphWidget::onGraphMenuRequested); |
|
59 | &VisualizationGraphWidget::onGraphMenuRequested); | |
60 |
|
60 | |||
61 | connect(this, &VisualizationGraphWidget::requestDataLoading, &sqpApp->variableController(), |
|
61 | connect(this, &VisualizationGraphWidget::requestDataLoading, &sqpApp->variableController(), | |
62 | &VariableController::onRequestDataLoading); |
|
62 | &VariableController::onRequestDataLoading); | |
63 | } |
|
63 | } | |
64 |
|
64 | |||
65 |
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65 | |||
66 | VisualizationGraphWidget::~VisualizationGraphWidget() |
|
66 | VisualizationGraphWidget::~VisualizationGraphWidget() | |
67 | { |
|
67 | { | |
68 | delete ui; |
|
68 | delete ui; | |
69 | } |
|
69 | } | |
70 |
|
70 | |||
71 | void VisualizationGraphWidget::addVariable(std::shared_ptr<Variable> variable) |
|
71 | void VisualizationGraphWidget::addVariable(std::shared_ptr<Variable> variable) | |
72 | { |
|
72 | { | |
73 | // Uses delegate to create the qcpplot components according to the variable |
|
73 | // Uses delegate to create the qcpplot components according to the variable | |
74 | auto createdPlottables = VisualizationGraphHelper::create(variable, *ui->widget); |
|
74 | auto createdPlottables = VisualizationGraphHelper::create(variable, *ui->widget); | |
75 |
|
75 | |||
76 | for (auto createdPlottable : qAsConst(createdPlottables)) { |
|
76 | for (auto createdPlottable : qAsConst(createdPlottables)) { | |
77 | impl->m_VariableToPlotMultiMap.insert({variable, createdPlottable}); |
|
77 | impl->m_VariableToPlotMultiMap.insert({variable, createdPlottable}); | |
78 | } |
|
78 | } | |
79 |
|
79 | |||
80 | connect(variable.get(), SIGNAL(updated()), this, SLOT(onDataCacheVariableUpdated())); |
|
80 | connect(variable.get(), SIGNAL(updated()), this, SLOT(onDataCacheVariableUpdated())); | |
81 | } |
|
81 | } | |
82 |
|
82 | |||
83 | void VisualizationGraphWidget::addVariableUsingGraph(std::shared_ptr<Variable> variable) |
|
83 | void VisualizationGraphWidget::addVariableUsingGraph(std::shared_ptr<Variable> variable) | |
84 | { |
|
84 | { | |
85 |
|
85 | |||
86 | // when adding a variable, we need to set its time range to the current graph range |
|
86 | // when adding a variable, we need to set its time range to the current graph range | |
87 | auto grapheRange = ui->widget->xAxis->range(); |
|
87 | auto grapheRange = ui->widget->xAxis->range(); | |
88 | auto dateTime = SqpDateTime{grapheRange.lower, grapheRange.upper}; |
|
88 | auto dateTime = SqpDateTime{grapheRange.lower, grapheRange.upper}; | |
89 | variable->setDateTime(dateTime); |
|
89 | variable->setDateTime(dateTime); | |
90 | qCInfo(LOG_VisualizationGraphWidget()) << "ADD Variable with range : " << dateTime; |
|
|||
91 |
|
90 | |||
92 | auto variableDateTimeWithTolerance = dateTime; |
|
91 | auto variableDateTimeWithTolerance = dateTime; | |
93 |
|
92 | |||
94 | // add 10% tolerance for each side |
|
93 | // add 10% tolerance for each side | |
95 | auto tolerance = 0.1 * (dateTime.m_TEnd - dateTime.m_TStart); |
|
94 | auto tolerance = 0.1 * (dateTime.m_TEnd - dateTime.m_TStart); | |
96 | variableDateTimeWithTolerance.m_TStart -= tolerance; |
|
95 | variableDateTimeWithTolerance.m_TStart -= tolerance; | |
97 | variableDateTimeWithTolerance.m_TEnd += tolerance; |
|
96 | variableDateTimeWithTolerance.m_TEnd += tolerance; | |
98 |
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97 | |||
99 | qCInfo(LOG_VisualizationGraphWidget()) << "ADD Variable with range TOL: " |
|
|||
100 | << variableDateTimeWithTolerance; |
|
|||
101 |
|
||||
102 | // Uses delegate to create the qcpplot components according to the variable |
|
98 | // Uses delegate to create the qcpplot components according to the variable | |
103 | auto createdPlottables = VisualizationGraphHelper::create(variable, *ui->widget); |
|
99 | auto createdPlottables = VisualizationGraphHelper::create(variable, *ui->widget); | |
104 |
|
100 | |||
105 | for (auto createdPlottable : qAsConst(createdPlottables)) { |
|
101 | for (auto createdPlottable : qAsConst(createdPlottables)) { | |
106 | impl->m_VariableToPlotMultiMap.insert({variable, createdPlottable}); |
|
102 | impl->m_VariableToPlotMultiMap.insert({variable, createdPlottable}); | |
107 | } |
|
103 | } | |
108 |
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104 | |||
109 | connect(variable.get(), SIGNAL(updated()), this, SLOT(onDataCacheVariableUpdated())); |
|
105 | connect(variable.get(), SIGNAL(updated()), this, SLOT(onDataCacheVariableUpdated())); | |
110 |
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106 | |||
111 | // CHangement detected, we need to ask controller to request data loading |
|
107 | // CHangement detected, we need to ask controller to request data loading | |
112 | emit requestDataLoading(variable, variableDateTimeWithTolerance); |
|
108 | emit requestDataLoading(variable, variableDateTimeWithTolerance); | |
113 | } |
|
109 | } | |
114 |
|
110 | |||
115 | void VisualizationGraphWidget::removeVariable(std::shared_ptr<Variable> variable) noexcept |
|
111 | void VisualizationGraphWidget::removeVariable(std::shared_ptr<Variable> variable) noexcept | |
116 | { |
|
112 | { | |
117 | // Each component associated to the variable : |
|
113 | // Each component associated to the variable : | |
118 | // - is removed from qcpplot (which deletes it) |
|
114 | // - is removed from qcpplot (which deletes it) | |
119 | // - is no longer referenced in the map |
|
115 | // - is no longer referenced in the map | |
120 | auto componentsIt = impl->m_VariableToPlotMultiMap.equal_range(variable); |
|
116 | auto componentsIt = impl->m_VariableToPlotMultiMap.equal_range(variable); | |
121 | for (auto it = componentsIt.first; it != componentsIt.second;) { |
|
117 | for (auto it = componentsIt.first; it != componentsIt.second;) { | |
122 | ui->widget->removePlottable(it->second); |
|
118 | ui->widget->removePlottable(it->second); | |
123 | it = impl->m_VariableToPlotMultiMap.erase(it); |
|
119 | it = impl->m_VariableToPlotMultiMap.erase(it); | |
124 | } |
|
120 | } | |
125 |
|
121 | |||
126 | // Updates graph |
|
122 | // Updates graph | |
127 | ui->widget->replot(); |
|
123 | ui->widget->replot(); | |
128 | } |
|
124 | } | |
129 |
|
125 | |||
130 | void VisualizationGraphWidget::accept(IVisualizationWidgetVisitor *visitor) |
|
126 | void VisualizationGraphWidget::accept(IVisualizationWidgetVisitor *visitor) | |
131 | { |
|
127 | { | |
132 | if (visitor) { |
|
128 | if (visitor) { | |
133 | visitor->visit(this); |
|
129 | visitor->visit(this); | |
134 | } |
|
130 | } | |
135 | else { |
|
131 | else { | |
136 | qCCritical(LOG_VisualizationGraphWidget()) |
|
132 | qCCritical(LOG_VisualizationGraphWidget()) | |
137 | << tr("Can't visit widget : the visitor is null"); |
|
133 | << tr("Can't visit widget : the visitor is null"); | |
138 | } |
|
134 | } | |
139 | } |
|
135 | } | |
140 |
|
136 | |||
141 | bool VisualizationGraphWidget::canDrop(const Variable &variable) const |
|
137 | bool VisualizationGraphWidget::canDrop(const Variable &variable) const | |
142 | { |
|
138 | { | |
143 | /// @todo : for the moment, a graph can always accomodate a variable |
|
139 | /// @todo : for the moment, a graph can always accomodate a variable | |
144 | Q_UNUSED(variable); |
|
140 | Q_UNUSED(variable); | |
145 | return true; |
|
141 | return true; | |
146 | } |
|
142 | } | |
147 |
|
143 | |||
148 | QString VisualizationGraphWidget::name() const |
|
144 | QString VisualizationGraphWidget::name() const | |
149 | { |
|
145 | { | |
150 | return ui->graphNameLabel->text(); |
|
146 | return ui->graphNameLabel->text(); | |
151 | } |
|
147 | } | |
152 |
|
148 | |||
153 | void VisualizationGraphWidget::onGraphMenuRequested(const QPoint &pos) noexcept |
|
149 | void VisualizationGraphWidget::onGraphMenuRequested(const QPoint &pos) noexcept | |
154 | { |
|
150 | { | |
155 | QMenu graphMenu{}; |
|
151 | QMenu graphMenu{}; | |
156 |
|
152 | |||
157 | // Iterates on variables (unique keys) |
|
153 | // Iterates on variables (unique keys) | |
158 | for (auto it = impl->m_VariableToPlotMultiMap.cbegin(), |
|
154 | for (auto it = impl->m_VariableToPlotMultiMap.cbegin(), | |
159 | end = impl->m_VariableToPlotMultiMap.cend(); |
|
155 | end = impl->m_VariableToPlotMultiMap.cend(); | |
160 | it != end; it = impl->m_VariableToPlotMultiMap.upper_bound(it->first)) { |
|
156 | it != end; it = impl->m_VariableToPlotMultiMap.upper_bound(it->first)) { | |
161 | // 'Remove variable' action |
|
157 | // 'Remove variable' action | |
162 | graphMenu.addAction(tr("Remove variable %1").arg(it->first->name()), |
|
158 | graphMenu.addAction(tr("Remove variable %1").arg(it->first->name()), | |
163 | [ this, var = it->first ]() { removeVariable(var); }); |
|
159 | [ this, var = it->first ]() { removeVariable(var); }); | |
164 | } |
|
160 | } | |
165 |
|
161 | |||
166 | if (!graphMenu.isEmpty()) { |
|
162 | if (!graphMenu.isEmpty()) { | |
167 | graphMenu.exec(mapToGlobal(pos)); |
|
163 | graphMenu.exec(mapToGlobal(pos)); | |
168 | } |
|
164 | } | |
169 | } |
|
165 | } | |
170 |
|
166 | |||
171 | void VisualizationGraphWidget::onRangeChanged(const QCPRange &t1) |
|
167 | void VisualizationGraphWidget::onRangeChanged(const QCPRange &t1) | |
172 | { |
|
168 | { | |
173 |
|
169 | qCDebug(LOG_VisualizationGraphWidget()) << tr("VisualizationGraphWidget::onRangeChanged"); | ||
174 | qCInfo(LOG_VisualizationGraphWidget()) << tr("VisualizationGraphWidget::onRangeChanged"); |
|
|||
175 |
|
170 | |||
176 | for (auto it = impl->m_VariableToPlotMultiMap.cbegin(); |
|
171 | for (auto it = impl->m_VariableToPlotMultiMap.cbegin(); | |
177 | it != impl->m_VariableToPlotMultiMap.cend(); ++it) { |
|
172 | it != impl->m_VariableToPlotMultiMap.cend(); ++it) { | |
178 |
|
173 | |||
179 | auto variable = it->first; |
|
174 | auto variable = it->first; | |
180 | auto dateTime = SqpDateTime{t1.lower, t1.upper}; |
|
175 | auto dateTime = SqpDateTime{t1.lower, t1.upper}; | |
181 |
|
176 | |||
182 | if (!variable->contains(dateTime)) { |
|
177 | if (!variable->contains(dateTime)) { | |
183 | qCInfo(LOG_VisualizationGraphWidget()) << dateTime << variable->dateTime(); |
|
|||
184 |
|
178 | |||
185 | auto variableDateTimeWithTolerance = dateTime; |
|
179 | auto variableDateTimeWithTolerance = dateTime; | |
186 | if (variable->intersect(dateTime)) { |
|
180 | if (variable->intersect(dateTime)) { | |
187 | auto variableDateTime = variable->dateTime(); |
|
181 | auto variableDateTime = variable->dateTime(); | |
188 | if (variableDateTime.m_TStart < dateTime.m_TStart) { |
|
182 | if (variableDateTime.m_TStart < dateTime.m_TStart) { | |
189 |
|
183 | |||
190 | auto diffEndToKeepDelta = dateTime.m_TEnd - variableDateTime.m_TEnd; |
|
184 | auto diffEndToKeepDelta = dateTime.m_TEnd - variableDateTime.m_TEnd; | |
191 | dateTime.m_TStart = variableDateTime.m_TStart + diffEndToKeepDelta; |
|
185 | dateTime.m_TStart = variableDateTime.m_TStart + diffEndToKeepDelta; | |
192 | // Tolerance have to be added to the right |
|
186 | // Tolerance have to be added to the right | |
193 | // add 10% tolerance for right (end) side |
|
187 | // add 10% tolerance for right (end) side | |
194 | auto tolerance = 0.1 * (dateTime.m_TEnd - dateTime.m_TStart); |
|
188 | auto tolerance = 0.1 * (dateTime.m_TEnd - dateTime.m_TStart); | |
195 | variableDateTimeWithTolerance.m_TEnd += tolerance; |
|
189 | variableDateTimeWithTolerance.m_TEnd += tolerance; | |
196 | } |
|
190 | } | |
197 | if (variableDateTime.m_TEnd > dateTime.m_TEnd) { |
|
191 | if (variableDateTime.m_TEnd > dateTime.m_TEnd) { | |
198 | auto diffStartToKeepDelta = variableDateTime.m_TStart - dateTime.m_TStart; |
|
192 | auto diffStartToKeepDelta = variableDateTime.m_TStart - dateTime.m_TStart; | |
199 | dateTime.m_TEnd = variableDateTime.m_TEnd - diffStartToKeepDelta; |
|
193 | dateTime.m_TEnd = variableDateTime.m_TEnd - diffStartToKeepDelta; | |
200 | // Tolerance have to be added to the left |
|
194 | // Tolerance have to be added to the left | |
201 | // add 10% tolerance for left (start) side |
|
195 | // add 10% tolerance for left (start) side | |
202 | auto tolerance = 0.1 * (dateTime.m_TEnd - dateTime.m_TStart); |
|
196 | auto tolerance = 0.1 * (dateTime.m_TEnd - dateTime.m_TStart); | |
203 | variableDateTimeWithTolerance.m_TStart -= tolerance; |
|
197 | variableDateTimeWithTolerance.m_TStart -= tolerance; | |
204 | } |
|
198 | } | |
205 | } |
|
199 | } | |
206 | else { |
|
200 | else { | |
207 | // add 10% tolerance for each side |
|
201 | // add 10% tolerance for each side | |
208 | auto tolerance = 0.1 * (dateTime.m_TEnd - dateTime.m_TStart); |
|
202 | auto tolerance = 0.1 * (dateTime.m_TEnd - dateTime.m_TStart); | |
209 | variableDateTimeWithTolerance.m_TStart -= tolerance; |
|
203 | variableDateTimeWithTolerance.m_TStart -= tolerance; | |
210 | variableDateTimeWithTolerance.m_TEnd += tolerance; |
|
204 | variableDateTimeWithTolerance.m_TEnd += tolerance; | |
211 | } |
|
205 | } | |
212 | variable->setDateTime(dateTime); |
|
206 | variable->setDateTime(dateTime); | |
213 |
|
207 | |||
214 | // CHangement detected, we need to ask controller to request data loading |
|
208 | // CHangement detected, we need to ask controller to request data loading | |
215 | emit requestDataLoading(variable, variableDateTimeWithTolerance); |
|
209 | emit requestDataLoading(variable, variableDateTimeWithTolerance); | |
216 | } |
|
210 | } | |
217 | } |
|
211 | } | |
218 | } |
|
212 | } | |
219 |
|
213 | |||
220 | void VisualizationGraphWidget::onMouseWheel(QWheelEvent *event) noexcept |
|
214 | void VisualizationGraphWidget::onMouseWheel(QWheelEvent *event) noexcept | |
221 | { |
|
215 | { | |
222 | auto zoomOrientations = QFlags<Qt::Orientation>{}; |
|
216 | auto zoomOrientations = QFlags<Qt::Orientation>{}; | |
223 |
|
217 | |||
224 | // Lambda that enables a zoom orientation if the key modifier related to this orientation |
|
218 | // Lambda that enables a zoom orientation if the key modifier related to this orientation | |
225 | // has |
|
219 | // has | |
226 | // been pressed |
|
220 | // been pressed | |
227 | auto enableOrientation |
|
221 | auto enableOrientation | |
228 | = [&zoomOrientations, event](const auto &orientation, const auto &modifier) { |
|
222 | = [&zoomOrientations, event](const auto &orientation, const auto &modifier) { | |
229 | auto orientationEnabled = event->modifiers().testFlag(modifier); |
|
223 | auto orientationEnabled = event->modifiers().testFlag(modifier); | |
230 | zoomOrientations.setFlag(orientation, orientationEnabled); |
|
224 | zoomOrientations.setFlag(orientation, orientationEnabled); | |
231 | }; |
|
225 | }; | |
232 | enableOrientation(Qt::Vertical, VERTICAL_ZOOM_MODIFIER); |
|
226 | enableOrientation(Qt::Vertical, VERTICAL_ZOOM_MODIFIER); | |
233 | enableOrientation(Qt::Horizontal, HORIZONTAL_ZOOM_MODIFIER); |
|
227 | enableOrientation(Qt::Horizontal, HORIZONTAL_ZOOM_MODIFIER); | |
234 |
|
228 | |||
235 | ui->widget->axisRect()->setRangeZoom(zoomOrientations); |
|
229 | ui->widget->axisRect()->setRangeZoom(zoomOrientations); | |
236 | } |
|
230 | } | |
237 |
|
231 | |||
238 | void VisualizationGraphWidget::onDataCacheVariableUpdated() |
|
232 | void VisualizationGraphWidget::onDataCacheVariableUpdated() | |
239 | { |
|
233 | { | |
240 | // NOTE: |
|
234 | // NOTE: | |
241 | // We don't want to call the method for each component of a variable unitarily, but for |
|
235 | // We don't want to call the method for each component of a variable unitarily, but for | |
242 | // all |
|
236 | // all | |
243 | // its components at once (eg its three components in the case of a vector). |
|
237 | // its components at once (eg its three components in the case of a vector). | |
244 |
|
238 | |||
245 | // The unordered_multimap does not do this easily, so the question is whether to: |
|
239 | // The unordered_multimap does not do this easily, so the question is whether to: | |
246 | // - use an ordered_multimap and the algos of std to group the values by key |
|
240 | // - use an ordered_multimap and the algos of std to group the values by key | |
247 | // - use a map (unique keys) and store as values directly the list of components |
|
241 | // - use a map (unique keys) and store as values directly the list of components | |
248 |
|
242 | |||
249 | for (auto it = impl->m_VariableToPlotMultiMap.cbegin(); |
|
243 | for (auto it = impl->m_VariableToPlotMultiMap.cbegin(); | |
250 | it != impl->m_VariableToPlotMultiMap.cend(); ++it) { |
|
244 | it != impl->m_VariableToPlotMultiMap.cend(); ++it) { | |
251 | auto variable = it->first; |
|
245 | auto variable = it->first; | |
252 | VisualizationGraphHelper::updateData(QVector<QCPAbstractPlottable *>{} << it->second, |
|
246 | VisualizationGraphHelper::updateData(QVector<QCPAbstractPlottable *>{} << it->second, | |
253 | variable->dataSeries(), variable->dateTime()); |
|
247 | variable->dataSeries(), variable->dateTime()); | |
254 | } |
|
248 | } | |
255 | } |
|
249 | } | |
256 |
|
250 | |||
257 | void VisualizationGraphWidget::updateDisplay(std::shared_ptr<Variable> variable) |
|
251 | void VisualizationGraphWidget::updateDisplay(std::shared_ptr<Variable> variable) | |
258 | { |
|
252 | { | |
259 | auto abstractPlotableItPair = impl->m_VariableToPlotMultiMap.equal_range(variable); |
|
253 | auto abstractPlotableItPair = impl->m_VariableToPlotMultiMap.equal_range(variable); | |
260 |
|
254 | |||
261 | auto abstractPlotableVect = QVector<QCPAbstractPlottable *>{}; |
|
255 | auto abstractPlotableVect = QVector<QCPAbstractPlottable *>{}; | |
262 |
|
256 | |||
263 | for (auto it = abstractPlotableItPair.first; it != abstractPlotableItPair.second; ++it) { |
|
257 | for (auto it = abstractPlotableItPair.first; it != abstractPlotableItPair.second; ++it) { | |
264 | abstractPlotableVect.push_back(it->second); |
|
258 | abstractPlotableVect.push_back(it->second); | |
265 | } |
|
259 | } | |
266 |
|
260 | |||
267 | VisualizationGraphHelper::updateData(abstractPlotableVect, variable->dataSeries(), |
|
261 | VisualizationGraphHelper::updateData(abstractPlotableVect, variable->dataSeries(), | |
268 | variable->dateTime()); |
|
262 | variable->dateTime()); | |
269 | } |
|
263 | } |
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