@@ -1,210 +1,206 | |||||
1 | #include "FuzzingOperations.h" |
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1 | #include "FuzzingOperations.h" | |
2 | #include "FuzzingUtils.h" |
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2 | #include "FuzzingUtils.h" | |
3 |
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3 | |||
4 | #include <Data/IDataProvider.h> |
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4 | #include <Data/IDataProvider.h> | |
5 |
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5 | |||
6 | #include <Variable/Variable.h> |
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6 | #include <Variable/Variable.h> | |
7 | #include <Variable/VariableController.h> |
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7 | #include <Variable/VariableController.h> | |
8 |
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8 | |||
9 | #include <QUuid> |
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9 | #include <QUuid> | |
10 |
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10 | |||
11 | #include <functional> |
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11 | #include <functional> | |
12 |
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12 | |||
13 | Q_LOGGING_CATEGORY(LOG_FuzzingOperations, "FuzzingOperations") |
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13 | Q_LOGGING_CATEGORY(LOG_FuzzingOperations, "FuzzingOperations") | |
14 |
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14 | |||
15 | namespace { |
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15 | namespace { | |
16 |
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16 | |||
17 | struct CreateOperation : public IFuzzingOperation { |
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17 | struct CreateOperation : public IFuzzingOperation { | |
18 |
bool canExecute(const |
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18 | bool canExecute(VariableId variableId, const FuzzingState &fuzzingState) const override | |
19 | { |
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19 | { | |
20 | // A variable can be created only if it doesn't exist yet |
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20 | // A variable can be created only if it doesn't exist yet | |
21 | return variableState.m_Variable == nullptr; |
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21 | return fuzzingState.variableState(variableId).m_Variable == nullptr; | |
22 | } |
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22 | } | |
23 |
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23 | |||
24 | void execute(VariableState &variableState, VariableController &variableController, |
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24 | void execute(VariableId variableId, FuzzingState &fuzzingState, | |
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25 | VariableController &variableController, | |||
25 | const Properties &properties) const override |
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26 | const Properties &properties) const override | |
26 | { |
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27 | { | |
27 | // Retrieves metadata pool from properties, and choose one of the metadata entries to |
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28 | // Retrieves metadata pool from properties, and choose one of the metadata entries to | |
28 | // associate it with the variable |
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29 | // associate it with the variable | |
29 | auto metaDataPool = properties.value(METADATA_POOL_PROPERTY).value<MetadataPool>(); |
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30 | auto metaDataPool = properties.value(METADATA_POOL_PROPERTY).value<MetadataPool>(); | |
30 | auto variableMetadata = RandomGenerator::instance().randomChoice(metaDataPool); |
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31 | auto variableMetadata = RandomGenerator::instance().randomChoice(metaDataPool); | |
31 |
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32 | |||
32 | // Retrieves provider |
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33 | // Retrieves provider | |
33 | auto variableProvider |
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34 | auto variableProvider | |
34 | = properties.value(PROVIDER_PROPERTY).value<std::shared_ptr<IDataProvider> >(); |
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35 | = properties.value(PROVIDER_PROPERTY).value<std::shared_ptr<IDataProvider> >(); | |
35 |
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36 | |||
36 | auto variableName = QString{"Var_%1"}.arg(QUuid::createUuid().toString()); |
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37 | auto variableName = QString{"Var_%1"}.arg(QUuid::createUuid().toString()); | |
37 | qCInfo(LOG_FuzzingOperations()).noquote() |
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38 | qCInfo(LOG_FuzzingOperations()).noquote() | |
38 | << "Creating variable" << variableName << "(metadata:" << variableMetadata << ")..."; |
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39 | << "Creating variable" << variableName << "(metadata:" << variableMetadata << ")..."; | |
39 |
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40 | |||
40 | auto newVariable |
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41 | auto newVariable | |
41 | = variableController.createVariable(variableName, variableMetadata, variableProvider); |
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42 | = variableController.createVariable(variableName, variableMetadata, variableProvider); | |
42 |
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43 | |||
43 | // Updates variable's state |
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44 | // Updates variable's state | |
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45 | auto &variableState = fuzzingState.variableState(variableId); | |||
44 | variableState.m_Range = properties.value(INITIAL_RANGE_PROPERTY).value<SqpRange>(); |
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46 | variableState.m_Range = properties.value(INITIAL_RANGE_PROPERTY).value<SqpRange>(); | |
45 | std::swap(variableState.m_Variable, newVariable); |
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47 | std::swap(variableState.m_Variable, newVariable); | |
46 | } |
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48 | } | |
47 | }; |
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49 | }; | |
48 |
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50 | |||
49 | struct DeleteOperation : public IFuzzingOperation { |
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51 | struct DeleteOperation : public IFuzzingOperation { | |
50 |
bool canExecute(const |
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52 | bool canExecute(VariableId variableId, const FuzzingState &fuzzingState) const override | |
51 | { |
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53 | { | |
52 | // A variable can be delete only if it exists |
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54 | // A variable can be delete only if it exists | |
53 | return variableState.m_Variable != nullptr; |
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55 | return fuzzingState.variableState(variableId).m_Variable != nullptr; | |
54 | } |
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56 | } | |
55 |
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57 | |||
56 | void execute(VariableState &variableState, VariableController &variableController, |
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58 | void execute(VariableId variableId, FuzzingState &fuzzingState, | |
57 |
const Properties & |
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59 | VariableController &variableController, const Properties &) const override | |
58 | { |
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60 | { | |
59 | Q_UNUSED(properties); |
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61 | auto &variableState = fuzzingState.variableState(variableId); | |
60 |
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62 | |||
61 | qCInfo(LOG_FuzzingOperations()).noquote() |
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63 | qCInfo(LOG_FuzzingOperations()).noquote() | |
62 | << "Deleting variable" << variableState.m_Variable->name() << "..."; |
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64 | << "Deleting variable" << variableState.m_Variable->name() << "..."; | |
63 | variableController.deleteVariable(variableState.m_Variable); |
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65 | variableController.deleteVariable(variableState.m_Variable); | |
64 |
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66 | |||
65 | // Updates variable's state |
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67 | // Updates variable's state | |
66 | variableState.m_Range = INVALID_RANGE; |
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68 | variableState.m_Range = INVALID_RANGE; | |
67 | variableState.m_Variable = nullptr; |
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69 | variableState.m_Variable = nullptr; | |
68 | } |
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70 | } | |
69 | }; |
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71 | }; | |
70 |
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72 | |||
71 | /** |
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73 | /** | |
72 | * Defines a move operation through a range. |
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74 | * Defines a move operation through a range. | |
73 | * |
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75 | * | |
74 | * A move operation is determined by three functions: |
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76 | * A move operation is determined by three functions: | |
75 | * - Two 'move' functions, used to indicate in which direction the beginning and the end of a range |
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77 | * - Two 'move' functions, used to indicate in which direction the beginning and the end of a range | |
76 | * are going during the operation. These functions will be: |
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78 | * are going during the operation. These functions will be: | |
77 | * -- {<- / <-} for pan left |
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79 | * -- {<- / <-} for pan left | |
78 | * -- {-> / ->} for pan right |
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80 | * -- {-> / ->} for pan right | |
79 | * -- {-> / <-} for zoom in |
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81 | * -- {-> / <-} for zoom in | |
80 | * -- {<- / ->} for zoom out |
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82 | * -- {<- / ->} for zoom out | |
81 | * - One 'max move' functions, used to compute the max delta at which the operation can move a |
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83 | * - One 'max move' functions, used to compute the max delta at which the operation can move a | |
82 | * range, according to a max range. For exemple, for a range of {1, 5} and a max range of {0, 10}, |
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84 | * range, according to a max range. For exemple, for a range of {1, 5} and a max range of {0, 10}, | |
83 | * max deltas will be: |
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85 | * max deltas will be: | |
84 | * -- {0, 4} for pan left |
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86 | * -- {0, 4} for pan left | |
85 | * -- {6, 10} for pan right |
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87 | * -- {6, 10} for pan right | |
86 | * -- {3, 3} for zoom in |
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88 | * -- {3, 3} for zoom in | |
87 | * -- {0, 6} for zoom out (same spacing left and right) |
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89 | * -- {0, 6} for zoom out (same spacing left and right) | |
88 | */ |
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90 | */ | |
89 | struct MoveOperation : public IFuzzingOperation { |
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91 | struct MoveOperation : public IFuzzingOperation { | |
90 | using MoveFunction = std::function<double(double currentValue, double maxValue)>; |
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92 | using MoveFunction = std::function<double(double currentValue, double maxValue)>; | |
91 | using MaxMoveFunction = std::function<double(const SqpRange &range, const SqpRange &maxRange)>; |
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93 | using MaxMoveFunction = std::function<double(const SqpRange &range, const SqpRange &maxRange)>; | |
92 |
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94 | |||
93 | explicit MoveOperation(MoveFunction rangeStartMoveFun, MoveFunction rangeEndMoveFun, |
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95 | explicit MoveOperation(MoveFunction rangeStartMoveFun, MoveFunction rangeEndMoveFun, | |
94 | MaxMoveFunction maxMoveFun, |
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96 | MaxMoveFunction maxMoveFun, | |
95 | const QString &label = QStringLiteral("Move operation")) |
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97 | const QString &label = QStringLiteral("Move operation")) | |
96 | : m_RangeStartMoveFun{std::move(rangeStartMoveFun)}, |
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98 | : m_RangeStartMoveFun{std::move(rangeStartMoveFun)}, | |
97 | m_RangeEndMoveFun{std::move(rangeEndMoveFun)}, |
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99 | m_RangeEndMoveFun{std::move(rangeEndMoveFun)}, | |
98 | m_MaxMoveFun{std::move(maxMoveFun)}, |
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100 | m_MaxMoveFun{std::move(maxMoveFun)}, | |
99 | m_Label{label} |
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101 | m_Label{label} | |
100 | { |
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102 | { | |
101 | } |
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103 | } | |
102 |
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104 | |||
103 |
bool canExecute(const |
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105 | bool canExecute(VariableId variableId, const FuzzingState &fuzzingState) const override | |
104 | { |
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106 | { | |
105 | return variableState.m_Variable != nullptr; |
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107 | return fuzzingState.variableState(variableId).m_Variable != nullptr; | |
106 | } |
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108 | } | |
107 |
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109 | |||
108 | void execute(VariableState &variableState, VariableController &variableController, |
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110 | void execute(VariableId variableId, FuzzingState &fuzzingState, | |
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111 | VariableController &variableController, | |||
109 | const Properties &properties) const override |
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112 | const Properties &properties) const override | |
110 | { |
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113 | { | |
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114 | auto &variableState = fuzzingState.variableState(variableId); | |||
111 | auto variable = variableState.m_Variable; |
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115 | auto variable = variableState.m_Variable; | |
112 |
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116 | |||
113 | // Gets the max range defined |
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117 | // Gets the max range defined | |
114 | auto maxRange = properties.value(MAX_RANGE_PROPERTY, QVariant::fromValue(INVALID_RANGE)) |
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118 | auto maxRange = properties.value(MAX_RANGE_PROPERTY, QVariant::fromValue(INVALID_RANGE)) | |
115 | .value<SqpRange>(); |
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119 | .value<SqpRange>(); | |
116 | auto variableRange = variable->range(); |
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120 | auto variableRange = variable->range(); | |
117 |
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121 | |||
118 | if (maxRange == INVALID_RANGE || variableRange.m_TStart < maxRange.m_TStart |
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122 | if (maxRange == INVALID_RANGE || variableRange.m_TStart < maxRange.m_TStart | |
119 | || variableRange.m_TEnd > maxRange.m_TEnd) { |
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123 | || variableRange.m_TEnd > maxRange.m_TEnd) { | |
120 | qCWarning(LOG_FuzzingOperations()) << "Can't execute operation: invalid max range"; |
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124 | qCWarning(LOG_FuzzingOperations()) << "Can't execute operation: invalid max range"; | |
121 | return; |
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125 | return; | |
122 | } |
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126 | } | |
123 |
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127 | |||
124 | // Computes the max delta at which the variable can move, up to the limits of the max range |
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128 | // Computes the max delta at which the variable can move, up to the limits of the max range | |
125 | auto deltaMax = m_MaxMoveFun(variable->range(), maxRange); |
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129 | auto deltaMax = m_MaxMoveFun(variable->range(), maxRange); | |
126 |
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130 | |||
127 | // Generates random delta that will be used to move variable |
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131 | // Generates random delta that will be used to move variable | |
128 | auto delta = RandomGenerator::instance().generateDouble(0, deltaMax); |
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132 | auto delta = RandomGenerator::instance().generateDouble(0, deltaMax); | |
129 |
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133 | |||
130 | // Moves variable to its new range |
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134 | // Moves variable to its new range | |
131 | auto newVariableRange = SqpRange{m_RangeStartMoveFun(variableRange.m_TStart, delta), |
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135 | auto newVariableRange = SqpRange{m_RangeStartMoveFun(variableRange.m_TStart, delta), | |
132 | m_RangeEndMoveFun(variableRange.m_TEnd, delta)}; |
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136 | m_RangeEndMoveFun(variableRange.m_TEnd, delta)}; | |
133 | qCInfo(LOG_FuzzingOperations()).noquote() |
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137 | qCInfo(LOG_FuzzingOperations()).noquote() | |
134 | << "Performing" << m_Label << "on" << variable->name() << "(from" << variableRange |
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138 | << "Performing" << m_Label << "on" << variable->name() << "(from" << variableRange | |
135 | << "to" << newVariableRange << ")..."; |
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139 | << "to" << newVariableRange << ")..."; | |
136 | variableController.onRequestDataLoading({variable}, newVariableRange, false); |
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140 | variableController.onRequestDataLoading({variable}, newVariableRange, false); | |
137 |
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141 | |||
138 | // Updates variable's state |
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142 | // Updates variable's state | |
139 | variableState.m_Range = newVariableRange; |
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143 | variableState.m_Range = newVariableRange; | |
140 | } |
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144 | } | |
141 |
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145 | |||
142 | MoveFunction m_RangeStartMoveFun; |
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146 | MoveFunction m_RangeStartMoveFun; | |
143 | MoveFunction m_RangeEndMoveFun; |
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147 | MoveFunction m_RangeEndMoveFun; | |
144 | MaxMoveFunction m_MaxMoveFun; |
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148 | MaxMoveFunction m_MaxMoveFun; | |
145 | QString m_Label; |
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149 | QString m_Label; | |
146 | }; |
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150 | }; | |
147 |
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151 | |||
148 | struct UnknownOperation : public IFuzzingOperation { |
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152 | struct UnknownOperation : public IFuzzingOperation { | |
149 |
bool canExecute(const |
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153 | bool canExecute(VariableId, const FuzzingState &) const override { return false; } | |
150 | { |
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|||
151 | Q_UNUSED(variableState); |
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|||
152 | return false; |
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|||
153 | } |
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|||
154 |
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154 | |||
155 |
void execute(VariableState & |
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155 | void execute(VariableId, FuzzingState &, VariableController &, | |
156 |
const Properties & |
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156 | const Properties &) const override | |
157 | { |
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157 | { | |
158 | Q_UNUSED(variableState); |
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|||
159 | Q_UNUSED(variableController); |
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|||
160 | Q_UNUSED(properties); |
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|||
161 | // Does nothing |
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|||
162 | } |
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158 | } | |
163 | }; |
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159 | }; | |
164 |
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160 | |||
165 | } // namespace |
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161 | } // namespace | |
166 |
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162 | |||
167 | std::unique_ptr<IFuzzingOperation> FuzzingOperationFactory::create(FuzzingOperationType type) |
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163 | std::unique_ptr<IFuzzingOperation> FuzzingOperationFactory::create(FuzzingOperationType type) | |
168 | { |
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164 | { | |
169 | switch (type) { |
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165 | switch (type) { | |
170 | case FuzzingOperationType::CREATE: |
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166 | case FuzzingOperationType::CREATE: | |
171 | return std::make_unique<CreateOperation>(); |
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167 | return std::make_unique<CreateOperation>(); | |
172 | case FuzzingOperationType::DELETE: |
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168 | case FuzzingOperationType::DELETE: | |
173 | return std::make_unique<DeleteOperation>(); |
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169 | return std::make_unique<DeleteOperation>(); | |
174 | case FuzzingOperationType::PAN_LEFT: |
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170 | case FuzzingOperationType::PAN_LEFT: | |
175 | return std::make_unique<MoveOperation>( |
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171 | return std::make_unique<MoveOperation>( | |
176 | std::minus<double>(), std::minus<double>(), |
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172 | std::minus<double>(), std::minus<double>(), | |
177 | [](const SqpRange &range, const SqpRange &maxRange) { |
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173 | [](const SqpRange &range, const SqpRange &maxRange) { | |
178 | return range.m_TStart - maxRange.m_TStart; |
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174 | return range.m_TStart - maxRange.m_TStart; | |
179 | }, |
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175 | }, | |
180 | QStringLiteral("Pan left operation")); |
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176 | QStringLiteral("Pan left operation")); | |
181 | case FuzzingOperationType::PAN_RIGHT: |
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177 | case FuzzingOperationType::PAN_RIGHT: | |
182 | return std::make_unique<MoveOperation>( |
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178 | return std::make_unique<MoveOperation>( | |
183 | std::plus<double>(), std::plus<double>(), |
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179 | std::plus<double>(), std::plus<double>(), | |
184 | [](const SqpRange &range, const SqpRange &maxRange) { |
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180 | [](const SqpRange &range, const SqpRange &maxRange) { | |
185 | return maxRange.m_TEnd - range.m_TEnd; |
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181 | return maxRange.m_TEnd - range.m_TEnd; | |
186 | }, |
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182 | }, | |
187 | QStringLiteral("Pan right operation")); |
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183 | QStringLiteral("Pan right operation")); | |
188 | case FuzzingOperationType::ZOOM_IN: |
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184 | case FuzzingOperationType::ZOOM_IN: | |
189 | return std::make_unique<MoveOperation>( |
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185 | return std::make_unique<MoveOperation>( | |
190 | std::plus<double>(), std::minus<double>(), |
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186 | std::plus<double>(), std::minus<double>(), | |
191 | [](const SqpRange &range, const SqpRange &maxRange) { |
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187 | [](const SqpRange &range, const SqpRange &maxRange) { | |
192 | Q_UNUSED(maxRange) |
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188 | Q_UNUSED(maxRange) | |
193 | return range.m_TEnd - (range.m_TStart + range.m_TEnd) / 2.; |
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189 | return range.m_TEnd - (range.m_TStart + range.m_TEnd) / 2.; | |
194 | }, |
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190 | }, | |
195 | QStringLiteral("Zoom in operation")); |
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191 | QStringLiteral("Zoom in operation")); | |
196 | case FuzzingOperationType::ZOOM_OUT: |
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192 | case FuzzingOperationType::ZOOM_OUT: | |
197 | return std::make_unique<MoveOperation>( |
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193 | return std::make_unique<MoveOperation>( | |
198 | std::minus<double>(), std::plus<double>(), |
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194 | std::minus<double>(), std::plus<double>(), | |
199 | [](const SqpRange &range, const SqpRange &maxRange) { |
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195 | [](const SqpRange &range, const SqpRange &maxRange) { | |
200 | return std::min(range.m_TStart - maxRange.m_TStart, |
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196 | return std::min(range.m_TStart - maxRange.m_TStart, | |
201 | maxRange.m_TEnd - range.m_TEnd); |
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197 | maxRange.m_TEnd - range.m_TEnd); | |
202 | }, |
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198 | }, | |
203 | QStringLiteral("Zoom out operation")); |
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199 | QStringLiteral("Zoom out operation")); | |
204 | default: |
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200 | default: | |
205 | // Default case returns unknown operation |
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201 | // Default case returns unknown operation | |
206 | break; |
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202 | break; | |
207 | } |
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203 | } | |
208 |
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204 | |||
209 | return std::make_unique<UnknownOperation>(); |
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205 | return std::make_unique<UnknownOperation>(); | |
210 | } |
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206 | } |
@@ -1,48 +1,50 | |||||
1 | #ifndef SCIQLOP_FUZZINGOPERATIONS_H |
|
1 | #ifndef SCIQLOP_FUZZINGOPERATIONS_H | |
2 | #define SCIQLOP_FUZZINGOPERATIONS_H |
|
2 | #define SCIQLOP_FUZZINGOPERATIONS_H | |
3 |
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3 | |||
4 | #include "FuzzingDefs.h" |
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4 | #include "FuzzingDefs.h" | |
5 |
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5 | |||
6 | #include <memory> |
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6 | #include <memory> | |
7 | #include <set> |
|
7 | #include <set> | |
8 |
|
8 | |||
9 | #include <QLoggingCategory> |
|
9 | #include <QLoggingCategory> | |
10 | #include <QMetaType> |
|
10 | #include <QMetaType> | |
11 |
|
11 | |||
12 | Q_DECLARE_LOGGING_CATEGORY(LOG_FuzzingOperations) |
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12 | Q_DECLARE_LOGGING_CATEGORY(LOG_FuzzingOperations) | |
13 |
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13 | |||
14 | class VariableController; |
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14 | class VariableController; | |
15 |
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15 | |||
16 | /** |
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16 | /** | |
17 | * Enumeration of types of existing fuzzing operations |
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17 | * Enumeration of types of existing fuzzing operations | |
18 | */ |
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18 | */ | |
19 | enum class FuzzingOperationType { CREATE, DELETE, PAN_LEFT, PAN_RIGHT, ZOOM_IN, ZOOM_OUT }; |
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19 | enum class FuzzingOperationType { CREATE, DELETE, PAN_LEFT, PAN_RIGHT, ZOOM_IN, ZOOM_OUT }; | |
20 |
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20 | |||
21 | /// Interface that represents an operation that can be executed during a fuzzing test |
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21 | /// Interface that represents an operation that can be executed during a fuzzing test | |
22 | struct IFuzzingOperation { |
|
22 | struct IFuzzingOperation { | |
23 | virtual ~IFuzzingOperation() noexcept = default; |
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23 | virtual ~IFuzzingOperation() noexcept = default; | |
24 |
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24 | |||
25 |
/// Checks if the operation can be executed according to the current |
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25 | /// Checks if the operation can be executed according to the current test's state for the | |
26 | /// parameter |
|
26 | /// variable passed in parameter | |
27 |
virtual bool canExecute(const |
|
27 | virtual bool canExecute(VariableId variableId, const FuzzingState &fuzzingState) const = 0; | |
28 |
/// Executes the operation on the variable |
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28 | /// Executes the operation on the variable for which its identifier is passed in parameter | |
29 |
/// @param variable |
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29 | /// @param variableId the variable identifier | |
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30 | /// @param fuzzingState the current test's state on which to find the variable and execute the | |||
|
31 | /// operation | |||
30 | /// @param variableController the controller associated to the operation |
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32 | /// @param variableController the controller associated to the operation | |
31 | /// @param properties properties that can be used to configure the operation |
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33 | /// @param properties properties that can be used to configure the operation | |
32 |
/// @remarks |
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34 | /// @remarks fuzzingState is passed as a reference because, according to the operation, it can | |
33 | /// be |
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35 | /// be modified (in/out parameter) | |
34 | /// modified (in/out parameter) |
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36 | virtual void execute(VariableId variableId, FuzzingState &fuzzingState, | |
35 | virtual void execute(VariableState &variableState, VariableController &variableController, |
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37 | VariableController &variableController, | |
36 | const Properties &properties = {}) const = 0; |
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38 | const Properties &properties = {}) const = 0; | |
37 | }; |
|
39 | }; | |
38 |
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40 | |||
39 | /// Factory of @sa IFuzzingOperation |
|
41 | /// Factory of @sa IFuzzingOperation | |
40 | struct FuzzingOperationFactory { |
|
42 | struct FuzzingOperationFactory { | |
41 | /// Creates a fuzzing operation from a type |
|
43 | /// Creates a fuzzing operation from a type | |
42 | static std::unique_ptr<IFuzzingOperation> create(FuzzingOperationType type); |
|
44 | static std::unique_ptr<IFuzzingOperation> create(FuzzingOperationType type); | |
43 | }; |
|
45 | }; | |
44 |
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46 | |||
45 | using WeightedOperationsTypes = std::map<FuzzingOperationType, double>; |
|
47 | using WeightedOperationsTypes = std::map<FuzzingOperationType, double>; | |
46 | Q_DECLARE_METATYPE(WeightedOperationsTypes) |
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48 | Q_DECLARE_METATYPE(WeightedOperationsTypes) | |
47 |
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49 | |||
48 | #endif // SCIQLOP_FUZZINGOPERATIONS_H |
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50 | #endif // SCIQLOP_FUZZINGOPERATIONS_H |
@@ -1,332 +1,328 | |||||
1 | #include "FuzzingDefs.h" |
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1 | #include "FuzzingDefs.h" | |
2 | #include "FuzzingOperations.h" |
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2 | #include "FuzzingOperations.h" | |
3 | #include "FuzzingUtils.h" |
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3 | #include "FuzzingUtils.h" | |
4 | #include "FuzzingValidators.h" |
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4 | #include "FuzzingValidators.h" | |
5 |
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5 | |||
6 | #include "AmdaProvider.h" |
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6 | #include "AmdaProvider.h" | |
7 |
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7 | |||
8 | #include <Network/NetworkController.h> |
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8 | #include <Network/NetworkController.h> | |
9 | #include <Settings/SqpSettingsDefs.h> |
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9 | #include <Settings/SqpSettingsDefs.h> | |
10 | #include <SqpApplication.h> |
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10 | #include <SqpApplication.h> | |
11 | #include <Time/TimeController.h> |
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11 | #include <Time/TimeController.h> | |
12 | #include <Variable/Variable.h> |
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12 | #include <Variable/Variable.h> | |
13 | #include <Variable/VariableController.h> |
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13 | #include <Variable/VariableController.h> | |
14 |
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14 | |||
15 | #include <QLoggingCategory> |
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15 | #include <QLoggingCategory> | |
16 | #include <QObject> |
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16 | #include <QObject> | |
17 | #include <QtTest> |
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17 | #include <QtTest> | |
18 |
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18 | |||
19 | #include <memory> |
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19 | #include <memory> | |
20 |
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20 | |||
21 | Q_LOGGING_CATEGORY(LOG_TestAmdaFuzzing, "TestAmdaFuzzing") |
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21 | Q_LOGGING_CATEGORY(LOG_TestAmdaFuzzing, "TestAmdaFuzzing") | |
22 |
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22 | |||
23 | namespace { |
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23 | namespace { | |
24 |
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24 | |||
25 | // /////// // |
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25 | // /////// // | |
26 | // Aliases // |
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26 | // Aliases // | |
27 | // /////// // |
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27 | // /////// // | |
28 |
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28 | |||
29 | using VariableId = int; |
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30 | using Weight = double; |
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29 | using Weight = double; | |
31 | using Weights = std::vector<Weight>; |
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30 | using Weights = std::vector<Weight>; | |
32 |
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31 | |||
33 | using VariableOperation = std::pair<VariableId, std::shared_ptr<IFuzzingOperation> >; |
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32 | using VariableOperation = std::pair<VariableId, std::shared_ptr<IFuzzingOperation> >; | |
34 | using VariablesOperations = std::vector<VariableOperation>; |
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33 | using VariablesOperations = std::vector<VariableOperation>; | |
35 |
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34 | |||
36 | using WeightedOperationsPool = std::map<std::shared_ptr<IFuzzingOperation>, Weight>; |
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35 | using WeightedOperationsPool = std::map<std::shared_ptr<IFuzzingOperation>, Weight>; | |
37 | using VariablesPool = std::map<VariableId, VariableState>; |
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38 | using Validators = std::vector<std::shared_ptr<IFuzzingValidator> >; |
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36 | using Validators = std::vector<std::shared_ptr<IFuzzingValidator> >; | |
39 |
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37 | |||
40 | // ///////// // |
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38 | // ///////// // | |
41 | // Constants // |
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39 | // Constants // | |
42 | // ///////// // |
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40 | // ///////// // | |
43 |
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41 | |||
44 | // Defaults values used when the associated properties have not been set for the test |
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42 | // Defaults values used when the associated properties have not been set for the test | |
45 | const auto NB_MAX_OPERATIONS_DEFAULT_VALUE = 100; |
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43 | const auto NB_MAX_OPERATIONS_DEFAULT_VALUE = 100; | |
46 | const auto NB_MAX_VARIABLES_DEFAULT_VALUE = 1; |
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44 | const auto NB_MAX_VARIABLES_DEFAULT_VALUE = 1; | |
47 | const auto AVAILABLE_OPERATIONS_DEFAULT_VALUE = QVariant::fromValue(WeightedOperationsTypes{ |
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45 | const auto AVAILABLE_OPERATIONS_DEFAULT_VALUE = QVariant::fromValue(WeightedOperationsTypes{ | |
48 | {FuzzingOperationType::CREATE, 1.}, |
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46 | {FuzzingOperationType::CREATE, 1.}, | |
49 | {FuzzingOperationType::DELETE, 0.1}, // Delete operation is less frequent |
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47 | {FuzzingOperationType::DELETE, 0.1}, // Delete operation is less frequent | |
50 | {FuzzingOperationType::PAN_LEFT, 1.}, |
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48 | {FuzzingOperationType::PAN_LEFT, 1.}, | |
51 | {FuzzingOperationType::PAN_RIGHT, 1.}, |
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49 | {FuzzingOperationType::PAN_RIGHT, 1.}, | |
52 | {FuzzingOperationType::ZOOM_IN, 1.}, |
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50 | {FuzzingOperationType::ZOOM_IN, 1.}, | |
53 | {FuzzingOperationType::ZOOM_OUT, 1.}}); |
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51 | {FuzzingOperationType::ZOOM_OUT, 1.}}); | |
54 | const auto CACHE_TOLERANCE_DEFAULT_VALUE = 0.2; |
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52 | const auto CACHE_TOLERANCE_DEFAULT_VALUE = 0.2; | |
55 |
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53 | |||
56 | /// Delay between each operation (in ms) |
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54 | /// Delay between each operation (in ms) | |
57 | const auto OPERATION_DELAY_DEFAULT_VALUE = 3000; |
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55 | const auto OPERATION_DELAY_DEFAULT_VALUE = 3000; | |
58 |
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56 | |||
59 | /// Validators for the tests (executed in the order in which they're defined) |
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57 | /// Validators for the tests (executed in the order in which they're defined) | |
60 | const auto VALIDATORS_DEFAULT_VALUE = QVariant::fromValue( |
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58 | const auto VALIDATORS_DEFAULT_VALUE = QVariant::fromValue( | |
61 | ValidatorsTypes{{FuzzingValidatorType::RANGE, FuzzingValidatorType::DATA}}); |
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59 | ValidatorsTypes{{FuzzingValidatorType::RANGE, FuzzingValidatorType::DATA}}); | |
62 |
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60 | |||
63 | // /////// // |
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61 | // /////// // | |
64 | // Methods // |
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62 | // Methods // | |
65 | // /////// // |
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63 | // /////// // | |
66 |
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64 | |||
67 | /// Goes through the variables pool and operations pool to determine the set of {variable/operation} |
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65 | /// Goes through the variables pool and operations pool to determine the set of {variable/operation} | |
68 | /// pairs that are valid (i.e. operation that can be executed on variable) |
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66 | /// pairs that are valid (i.e. operation that can be executed on variable) | |
69 | std::pair<VariablesOperations, Weights> |
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67 | std::pair<VariablesOperations, Weights> | |
70 | availableOperations(const VariablesPool &variablesPool, |
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68 | availableOperations(const FuzzingState &fuzzingState, const WeightedOperationsPool &operationsPool) | |
71 | const WeightedOperationsPool &operationsPool) |
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72 | { |
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69 | { | |
73 | VariablesOperations result{}; |
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70 | VariablesOperations result{}; | |
74 | Weights weights{}; |
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71 | Weights weights{}; | |
75 |
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72 | |||
76 |
for (const auto &variablesPoolEntry : |
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73 | for (const auto &variablesPoolEntry : fuzzingState.m_VariablesPool) { | |
77 | auto variableId = variablesPoolEntry.first; |
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74 | auto variableId = variablesPoolEntry.first; | |
78 | const auto &variableState = variablesPoolEntry.second; |
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79 |
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75 | |||
80 | for (const auto &operationsPoolEntry : operationsPool) { |
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76 | for (const auto &operationsPoolEntry : operationsPool) { | |
81 | auto operation = operationsPoolEntry.first; |
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77 | auto operation = operationsPoolEntry.first; | |
82 | auto weight = operationsPoolEntry.second; |
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78 | auto weight = operationsPoolEntry.second; | |
83 |
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79 | |||
84 | // A pair is valid if the current operation can be executed on the current variable |
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80 | // A pair is valid if the current operation can be executed on the current variable | |
85 | if (operation->canExecute(variableState)) { |
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81 | if (operation->canExecute(variableId, fuzzingState)) { | |
86 | result.push_back({variableId, operation}); |
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82 | result.push_back({variableId, operation}); | |
87 | weights.push_back(weight); |
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83 | weights.push_back(weight); | |
88 | } |
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84 | } | |
89 | } |
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85 | } | |
90 | } |
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86 | } | |
91 |
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87 | |||
92 | return {result, weights}; |
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88 | return {result, weights}; | |
93 | } |
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89 | } | |
94 |
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90 | |||
95 | WeightedOperationsPool createOperationsPool(const WeightedOperationsTypes &types) |
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91 | WeightedOperationsPool createOperationsPool(const WeightedOperationsTypes &types) | |
96 | { |
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92 | { | |
97 | WeightedOperationsPool result{}; |
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93 | WeightedOperationsPool result{}; | |
98 |
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94 | |||
99 | std::transform( |
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95 | std::transform( | |
100 | types.cbegin(), types.cend(), std::inserter(result, result.end()), [](const auto &type) { |
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96 | types.cbegin(), types.cend(), std::inserter(result, result.end()), [](const auto &type) { | |
101 | return std::make_pair(FuzzingOperationFactory::create(type.first), type.second); |
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97 | return std::make_pair(FuzzingOperationFactory::create(type.first), type.second); | |
102 | }); |
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98 | }); | |
103 |
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99 | |||
104 | return result; |
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100 | return result; | |
105 | } |
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101 | } | |
106 |
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102 | |||
107 | Validators createValidators(const ValidatorsTypes &types) |
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103 | Validators createValidators(const ValidatorsTypes &types) | |
108 | { |
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104 | { | |
109 | Validators result{}; |
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105 | Validators result{}; | |
110 |
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106 | |||
111 | std::transform(types.cbegin(), types.cend(), std::inserter(result, result.end()), |
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107 | std::transform(types.cbegin(), types.cend(), std::inserter(result, result.end()), | |
112 | [](const auto &type) { return FuzzingValidatorFactory::create(type); }); |
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108 | [](const auto &type) { return FuzzingValidatorFactory::create(type); }); | |
113 |
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109 | |||
114 | return result; |
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110 | return result; | |
115 | } |
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111 | } | |
116 |
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112 | |||
117 | /** |
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113 | /** | |
118 | * Validates all the variables' states passed in parameter, according to a set of validators |
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114 | * Validates all the variables' states passed in parameter, according to a set of validators | |
119 | * @param variablesPool the variables' states |
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115 | * @param variablesPool the variables' states | |
120 | * @param validators the validators used for validation |
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116 | * @param validators the validators used for validation | |
121 | */ |
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117 | */ | |
122 | void validate(const VariablesPool &variablesPool, const Validators &validators) |
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118 | void validate(const VariablesPool &variablesPool, const Validators &validators) | |
123 | { |
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119 | { | |
124 | for (const auto &variablesPoolEntry : variablesPool) { |
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120 | for (const auto &variablesPoolEntry : variablesPool) { | |
125 | auto variableId = variablesPoolEntry.first; |
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121 | auto variableId = variablesPoolEntry.first; | |
126 | const auto &variableState = variablesPoolEntry.second; |
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122 | const auto &variableState = variablesPoolEntry.second; | |
127 |
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123 | |||
128 | auto variableMessage = variableState.m_Variable ? variableState.m_Variable->name() |
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124 | auto variableMessage = variableState.m_Variable ? variableState.m_Variable->name() | |
129 | : QStringLiteral("null variable"); |
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125 | : QStringLiteral("null variable"); | |
130 | qCInfo(LOG_TestAmdaFuzzing()).noquote() << "Validating state of variable at index" |
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126 | qCInfo(LOG_TestAmdaFuzzing()).noquote() << "Validating state of variable at index" | |
131 | << variableId << "(" << variableMessage << ")..."; |
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127 | << variableId << "(" << variableMessage << ")..."; | |
132 |
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128 | |||
133 | for (const auto &validator : validators) { |
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129 | for (const auto &validator : validators) { | |
134 | validator->validate(VariableState{variableState}); |
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130 | validator->validate(VariableState{variableState}); | |
135 | } |
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131 | } | |
136 |
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132 | |||
137 | qCInfo(LOG_TestAmdaFuzzing()).noquote() << "Validation completed."; |
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133 | qCInfo(LOG_TestAmdaFuzzing()).noquote() << "Validation completed."; | |
138 | } |
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134 | } | |
139 | } |
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135 | } | |
140 |
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136 | |||
141 | /** |
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137 | /** | |
142 | * Class to run random tests |
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138 | * Class to run random tests | |
143 | */ |
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139 | */ | |
144 | class FuzzingTest { |
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140 | class FuzzingTest { | |
145 | public: |
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141 | public: | |
146 | explicit FuzzingTest(VariableController &variableController, Properties properties) |
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142 | explicit FuzzingTest(VariableController &variableController, Properties properties) | |
147 | : m_VariableController{variableController}, |
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143 | : m_VariableController{variableController}, | |
148 | m_Properties{std::move(properties)}, |
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144 | m_Properties{std::move(properties)}, | |
149 |
m_ |
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145 | m_FuzzingState{} | |
150 | { |
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146 | { | |
151 | // Inits variables pool: at init, all variables are null |
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147 | // Inits variables pool: at init, all variables are null | |
152 | for (auto variableId = 0; variableId < nbMaxVariables(); ++variableId) { |
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148 | for (auto variableId = 0; variableId < nbMaxVariables(); ++variableId) { | |
153 | m_VariablesPool[variableId] = VariableState{}; |
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149 | m_FuzzingState.m_VariablesPool[variableId] = VariableState{}; | |
154 | } |
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150 | } | |
155 | } |
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151 | } | |
156 |
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152 | |||
157 | void execute() |
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153 | void execute() | |
158 | { |
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154 | { | |
159 | qCInfo(LOG_TestAmdaFuzzing()).noquote() << "Running" << nbMaxOperations() << "operations on" |
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155 | qCInfo(LOG_TestAmdaFuzzing()).noquote() << "Running" << nbMaxOperations() << "operations on" | |
160 | << nbMaxVariables() << "variable(s)..."; |
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156 | << nbMaxVariables() << "variable(s)..."; | |
161 |
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157 | |||
162 | auto canExecute = true; |
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158 | auto canExecute = true; | |
163 | for (auto i = 0; i < nbMaxOperations() && canExecute; ++i) { |
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159 | for (auto i = 0; i < nbMaxOperations() && canExecute; ++i) { | |
164 | // Retrieves all operations that can be executed in the current context |
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160 | // Retrieves all operations that can be executed in the current context | |
165 | VariablesOperations variableOperations{}; |
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161 | VariablesOperations variableOperations{}; | |
166 | Weights weights{}; |
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162 | Weights weights{}; | |
167 | std::tie(variableOperations, weights) |
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163 | std::tie(variableOperations, weights) | |
168 |
= availableOperations(m_ |
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164 | = availableOperations(m_FuzzingState, operationsPool()); | |
169 |
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165 | |||
170 | canExecute = !variableOperations.empty(); |
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166 | canExecute = !variableOperations.empty(); | |
171 | if (canExecute) { |
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167 | if (canExecute) { | |
172 | // Of the operations available, chooses a random operation and executes it |
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168 | // Of the operations available, chooses a random operation and executes it | |
173 | auto variableOperation |
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169 | auto variableOperation | |
174 | = RandomGenerator::instance().randomChoice(variableOperations, weights); |
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170 | = RandomGenerator::instance().randomChoice(variableOperations, weights); | |
175 |
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171 | |||
176 | auto variableId = variableOperation.first; |
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172 | auto variableId = variableOperation.first; | |
177 | auto &variableState = m_VariablesPool.at(variableId); |
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178 | auto fuzzingOperation = variableOperation.second; |
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173 | auto fuzzingOperation = variableOperation.second; | |
179 |
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174 | |||
180 |
fuzzingOperation->execute(variableState, m_VariableController, |
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175 | fuzzingOperation->execute(variableId, m_FuzzingState, m_VariableController, | |
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176 | m_Properties); | |||
181 | QTest::qWait(operationDelay()); |
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177 | QTest::qWait(operationDelay()); | |
182 |
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178 | |||
183 | // Validates variables |
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179 | // Validates variables | |
184 | validate(m_VariablesPool, validators()); |
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180 | validate(m_FuzzingState.m_VariablesPool, validators()); | |
185 | } |
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181 | } | |
186 | else { |
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182 | else { | |
187 | qCInfo(LOG_TestAmdaFuzzing()).noquote() |
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183 | qCInfo(LOG_TestAmdaFuzzing()).noquote() | |
188 | << "No more operations are available, the execution of the test will stop..."; |
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184 | << "No more operations are available, the execution of the test will stop..."; | |
189 | } |
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185 | } | |
190 | } |
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186 | } | |
191 |
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187 | |||
192 | qCInfo(LOG_TestAmdaFuzzing()).noquote() << "Execution of the test completed."; |
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188 | qCInfo(LOG_TestAmdaFuzzing()).noquote() << "Execution of the test completed."; | |
193 | } |
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189 | } | |
194 |
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190 | |||
195 | private: |
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191 | private: | |
196 | int nbMaxOperations() const |
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192 | int nbMaxOperations() const | |
197 | { |
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193 | { | |
198 | static auto result |
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194 | static auto result | |
199 | = m_Properties.value(NB_MAX_OPERATIONS_PROPERTY, NB_MAX_OPERATIONS_DEFAULT_VALUE) |
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195 | = m_Properties.value(NB_MAX_OPERATIONS_PROPERTY, NB_MAX_OPERATIONS_DEFAULT_VALUE) | |
200 | .toInt(); |
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196 | .toInt(); | |
201 | return result; |
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197 | return result; | |
202 | } |
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198 | } | |
203 |
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199 | |||
204 | int nbMaxVariables() const |
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200 | int nbMaxVariables() const | |
205 | { |
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201 | { | |
206 | static auto result |
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202 | static auto result | |
207 | = m_Properties.value(NB_MAX_VARIABLES_PROPERTY, NB_MAX_VARIABLES_DEFAULT_VALUE).toInt(); |
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203 | = m_Properties.value(NB_MAX_VARIABLES_PROPERTY, NB_MAX_VARIABLES_DEFAULT_VALUE).toInt(); | |
208 | return result; |
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204 | return result; | |
209 | } |
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205 | } | |
210 |
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206 | |||
211 | int operationDelay() const |
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207 | int operationDelay() const | |
212 | { |
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208 | { | |
213 | static auto result |
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209 | static auto result | |
214 | = m_Properties.value(OPERATION_DELAY_PROPERTY, OPERATION_DELAY_DEFAULT_VALUE).toInt(); |
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210 | = m_Properties.value(OPERATION_DELAY_PROPERTY, OPERATION_DELAY_DEFAULT_VALUE).toInt(); | |
215 | return result; |
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211 | return result; | |
216 | } |
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212 | } | |
217 |
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213 | |||
218 | WeightedOperationsPool operationsPool() const |
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214 | WeightedOperationsPool operationsPool() const | |
219 | { |
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215 | { | |
220 | static auto result = createOperationsPool( |
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216 | static auto result = createOperationsPool( | |
221 | m_Properties.value(AVAILABLE_OPERATIONS_PROPERTY, AVAILABLE_OPERATIONS_DEFAULT_VALUE) |
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217 | m_Properties.value(AVAILABLE_OPERATIONS_PROPERTY, AVAILABLE_OPERATIONS_DEFAULT_VALUE) | |
222 | .value<WeightedOperationsTypes>()); |
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218 | .value<WeightedOperationsTypes>()); | |
223 | return result; |
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219 | return result; | |
224 | } |
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220 | } | |
225 |
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221 | |||
226 | Validators validators() const |
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222 | Validators validators() const | |
227 | { |
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223 | { | |
228 | static auto result |
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224 | static auto result | |
229 | = createValidators(m_Properties.value(VALIDATORS_PROPERTY, VALIDATORS_DEFAULT_VALUE) |
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225 | = createValidators(m_Properties.value(VALIDATORS_PROPERTY, VALIDATORS_DEFAULT_VALUE) | |
230 | .value<ValidatorsTypes>()); |
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226 | .value<ValidatorsTypes>()); | |
231 | return result; |
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227 | return result; | |
232 | } |
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228 | } | |
233 |
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229 | |||
234 | VariableController &m_VariableController; |
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230 | VariableController &m_VariableController; | |
235 | Properties m_Properties; |
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231 | Properties m_Properties; | |
236 | VariablesPool m_VariablesPool; |
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232 | FuzzingState m_FuzzingState; | |
237 | }; |
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233 | }; | |
238 |
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234 | |||
239 | } // namespace |
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235 | } // namespace | |
240 |
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236 | |||
241 | class TestAmdaFuzzing : public QObject { |
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237 | class TestAmdaFuzzing : public QObject { | |
242 | Q_OBJECT |
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238 | Q_OBJECT | |
243 |
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239 | |||
244 | private slots: |
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240 | private slots: | |
245 | /// Input data for @sa testFuzzing() |
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241 | /// Input data for @sa testFuzzing() | |
246 | void testFuzzing_data(); |
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242 | void testFuzzing_data(); | |
247 | void testFuzzing(); |
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243 | void testFuzzing(); | |
248 | }; |
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244 | }; | |
249 |
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245 | |||
250 | void TestAmdaFuzzing::testFuzzing_data() |
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246 | void TestAmdaFuzzing::testFuzzing_data() | |
251 | { |
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247 | { | |
252 | // ////////////// // |
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248 | // ////////////// // | |
253 | // Test structure // |
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249 | // Test structure // | |
254 | // ////////////// // |
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250 | // ////////////// // | |
255 |
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251 | |||
256 | QTest::addColumn<Properties>("properties"); // Properties for random test |
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252 | QTest::addColumn<Properties>("properties"); // Properties for random test | |
257 |
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253 | |||
258 | // ////////// // |
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254 | // ////////// // | |
259 | // Test cases // |
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255 | // Test cases // | |
260 | // ////////// // |
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256 | // ////////// // | |
261 |
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257 | |||
262 | auto maxRange = SqpRange::fromDateTime({2017, 1, 1}, {0, 0}, {2017, 1, 5}, {0, 0}); |
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258 | auto maxRange = SqpRange::fromDateTime({2017, 1, 1}, {0, 0}, {2017, 1, 5}, {0, 0}); | |
263 | MetadataPool metadataPool{{{"dataType", "vector"}, {"xml:id", "imf"}}}; |
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259 | MetadataPool metadataPool{{{"dataType", "vector"}, {"xml:id", "imf"}}}; | |
264 |
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260 | |||
265 | // Note: we don't use auto here as we want to pass std::shared_ptr<IDataProvider> as is in the |
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261 | // Note: we don't use auto here as we want to pass std::shared_ptr<IDataProvider> as is in the | |
266 | // QVariant |
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262 | // QVariant | |
267 | std::shared_ptr<IDataProvider> provider = std::make_shared<AmdaProvider>(); |
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263 | std::shared_ptr<IDataProvider> provider = std::make_shared<AmdaProvider>(); | |
268 |
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264 | |||
269 | QTest::newRow("fuzzingTest") << Properties{ |
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265 | QTest::newRow("fuzzingTest") << Properties{ | |
270 | {MAX_RANGE_PROPERTY, QVariant::fromValue(maxRange)}, |
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266 | {MAX_RANGE_PROPERTY, QVariant::fromValue(maxRange)}, | |
271 | {METADATA_POOL_PROPERTY, QVariant::fromValue(metadataPool)}, |
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267 | {METADATA_POOL_PROPERTY, QVariant::fromValue(metadataPool)}, | |
272 | {PROVIDER_PROPERTY, QVariant::fromValue(provider)}}; |
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268 | {PROVIDER_PROPERTY, QVariant::fromValue(provider)}}; | |
273 | } |
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269 | } | |
274 |
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270 | |||
275 | void TestAmdaFuzzing::testFuzzing() |
|
271 | void TestAmdaFuzzing::testFuzzing() | |
276 | { |
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272 | { | |
277 | QFETCH(Properties, properties); |
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273 | QFETCH(Properties, properties); | |
278 |
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274 | |||
279 | // Sets cache property |
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275 | // Sets cache property | |
280 | QSettings settings{}; |
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276 | QSettings settings{}; | |
281 | auto cacheTolerance = properties.value(CACHE_TOLERANCE_PROPERTY, CACHE_TOLERANCE_DEFAULT_VALUE); |
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277 | auto cacheTolerance = properties.value(CACHE_TOLERANCE_PROPERTY, CACHE_TOLERANCE_DEFAULT_VALUE); | |
282 | settings.setValue(GENERAL_TOLERANCE_AT_INIT_KEY, cacheTolerance); |
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278 | settings.setValue(GENERAL_TOLERANCE_AT_INIT_KEY, cacheTolerance); | |
283 | settings.setValue(GENERAL_TOLERANCE_AT_UPDATE_KEY, cacheTolerance); |
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279 | settings.setValue(GENERAL_TOLERANCE_AT_UPDATE_KEY, cacheTolerance); | |
284 |
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280 | |||
285 | auto &variableController = sqpApp->variableController(); |
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281 | auto &variableController = sqpApp->variableController(); | |
286 | auto &timeController = sqpApp->timeController(); |
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282 | auto &timeController = sqpApp->timeController(); | |
287 |
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283 | |||
288 | // Generates random initial range (bounded to max range) |
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284 | // Generates random initial range (bounded to max range) | |
289 | auto maxRange = properties.value(MAX_RANGE_PROPERTY, QVariant::fromValue(INVALID_RANGE)) |
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285 | auto maxRange = properties.value(MAX_RANGE_PROPERTY, QVariant::fromValue(INVALID_RANGE)) | |
290 | .value<SqpRange>(); |
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286 | .value<SqpRange>(); | |
291 |
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287 | |||
292 | QVERIFY(maxRange != INVALID_RANGE); |
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288 | QVERIFY(maxRange != INVALID_RANGE); | |
293 |
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289 | |||
294 | auto initialRangeStart |
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290 | auto initialRangeStart | |
295 | = RandomGenerator::instance().generateDouble(maxRange.m_TStart, maxRange.m_TEnd); |
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291 | = RandomGenerator::instance().generateDouble(maxRange.m_TStart, maxRange.m_TEnd); | |
296 | auto initialRangeEnd |
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292 | auto initialRangeEnd | |
297 | = RandomGenerator::instance().generateDouble(maxRange.m_TStart, maxRange.m_TEnd); |
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293 | = RandomGenerator::instance().generateDouble(maxRange.m_TStart, maxRange.m_TEnd); | |
298 | if (initialRangeStart > initialRangeEnd) { |
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294 | if (initialRangeStart > initialRangeEnd) { | |
299 | std::swap(initialRangeStart, initialRangeEnd); |
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295 | std::swap(initialRangeStart, initialRangeEnd); | |
300 | } |
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296 | } | |
301 |
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297 | |||
302 | // Sets initial range on time controller |
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298 | // Sets initial range on time controller | |
303 | SqpRange initialRange{initialRangeStart, initialRangeEnd}; |
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299 | SqpRange initialRange{initialRangeStart, initialRangeEnd}; | |
304 | qCInfo(LOG_TestAmdaFuzzing()).noquote() << "Setting initial range to" << initialRange << "..."; |
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300 | qCInfo(LOG_TestAmdaFuzzing()).noquote() << "Setting initial range to" << initialRange << "..."; | |
305 | timeController.onTimeToUpdate(initialRange); |
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301 | timeController.onTimeToUpdate(initialRange); | |
306 | properties.insert(INITIAL_RANGE_PROPERTY, QVariant::fromValue(initialRange)); |
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302 | properties.insert(INITIAL_RANGE_PROPERTY, QVariant::fromValue(initialRange)); | |
307 |
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303 | |||
308 | FuzzingTest test{variableController, properties}; |
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304 | FuzzingTest test{variableController, properties}; | |
309 | test.execute(); |
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305 | test.execute(); | |
310 | } |
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306 | } | |
311 |
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307 | |||
312 | int main(int argc, char *argv[]) |
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308 | int main(int argc, char *argv[]) | |
313 | { |
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309 | { | |
314 | QLoggingCategory::setFilterRules( |
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310 | QLoggingCategory::setFilterRules( | |
315 | "*.warning=false\n" |
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311 | "*.warning=false\n" | |
316 | "*.info=false\n" |
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312 | "*.info=false\n" | |
317 | "*.debug=false\n" |
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313 | "*.debug=false\n" | |
318 | "FuzzingOperations.info=true\n" |
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314 | "FuzzingOperations.info=true\n" | |
319 | "FuzzingValidators.info=true\n" |
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315 | "FuzzingValidators.info=true\n" | |
320 | "TestAmdaFuzzing.info=true\n"); |
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316 | "TestAmdaFuzzing.info=true\n"); | |
321 |
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317 | |||
322 | SqpApplication app{argc, argv}; |
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318 | SqpApplication app{argc, argv}; | |
323 | SqpApplication::setOrganizationName("LPP"); |
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319 | SqpApplication::setOrganizationName("LPP"); | |
324 | SqpApplication::setOrganizationDomain("lpp.fr"); |
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320 | SqpApplication::setOrganizationDomain("lpp.fr"); | |
325 | SqpApplication::setApplicationName("SciQLop-TestFuzzing"); |
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321 | SqpApplication::setApplicationName("SciQLop-TestFuzzing"); | |
326 | app.setAttribute(Qt::AA_Use96Dpi, true); |
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322 | app.setAttribute(Qt::AA_Use96Dpi, true); | |
327 | TestAmdaFuzzing testObject{}; |
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323 | TestAmdaFuzzing testObject{}; | |
328 | QTEST_SET_MAIN_SOURCE_PATH |
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324 | QTEST_SET_MAIN_SOURCE_PATH | |
329 | return QTest::qExec(&testObject, argc, argv); |
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325 | return QTest::qExec(&testObject, argc, argv); | |
330 | } |
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326 | } | |
331 |
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327 | |||
332 | #include "TestAmdaFuzzing.moc" |
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328 | #include "TestAmdaFuzzing.moc" |
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