1 | /****************************************************************************
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2 | **
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3 | ** Copyright (C) 2011 Nokia Corporation and/or its subsidiary(-ies).
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4 | ** All rights reserved.
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5 | ** Contact: Nokia Corporation (qt-info@nokia.com)
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6 | **
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7 | ** This file is part of the QtDeclarative module of the Qt Toolkit.
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8 | **
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9 | ** $QT_BEGIN_LICENSE:LGPL$
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10 | ** Commercial Usage
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11 | ** Licensees holding valid Qt Commercial licenses may use this file in
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12 | ** accordance with the Qt Commercial License Agreement provided with the
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13 | ** Software or, alternatively, in accordance with the terms contained in
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14 | ** a written agreement between you and Nokia.
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15 | **
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16 | ** GNU Lesser General Public License Usage
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17 | ** Alternatively, this file may be used under the terms of the GNU Lesser
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18 | ** General Public License version 2.1 as published by the Free Software
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19 | ** Foundation and appearing in the file LICENSE.LGPL included in the
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20 | ** packaging of this file. Please review the following information to
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21 | ** ensure the GNU Lesser General Public License version 2.1 requirements
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22 | ** will be met: http://www.gnu.org/licenses/old-licenses/lgpl-2.1.html.
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23 | **
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24 | ** In addition, as a special exception, Nokia gives you certain additional
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25 | ** rights. These rights are described in the Nokia Qt LGPL Exception
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26 | ** version 1.1, included in the file LGPL_EXCEPTION.txt in this package.
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27 | **
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28 | ** GNU General Public License Usage
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29 | ** Alternatively, this file may be used under the terms of the GNU
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30 | ** General Public License version 3.0 as published by the Free Software
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31 | ** Foundation and appearing in the file LICENSE.GPL included in the
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32 | ** packaging of this file. Please review the following information to
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33 | ** ensure the GNU General Public License version 3.0 requirements will be
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34 | ** met: http://www.gnu.org/copyleft/gpl.html.
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35 | **
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36 | ** If you have questions regarding the use of this file, please contact
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37 | ** Nokia at qt-info@nokia.com.
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38 | ** $QT_END_LICENSE$
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39 | **
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40 | ****************************************************************************/
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41 |
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42 | #include "private/qdeclarativetimeline_p_p.h"
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43 |
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44 | #include <QDebug>
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45 | #include <QMutex>
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46 | #include <QThread>
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47 | #include <QWaitCondition>
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48 | #include <QEvent>
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49 | #include <QCoreApplication>
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50 | #include <QEasingCurve>
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51 | #include <QTime>
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52 |
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53 | QT_BEGIN_NAMESPACE
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54 |
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55 | struct Update {
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56 | Update(QDeclarativeTimeLineValue *_g, qreal _v)
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57 | : g(_g), v(_v) {}
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58 | Update(const QDeclarativeTimeLineCallback &_e)
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59 | : g(0), v(0), e(_e) {}
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60 |
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61 | QDeclarativeTimeLineValue *g;
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62 | qreal v;
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63 | QDeclarativeTimeLineCallback e;
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64 | };
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65 |
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66 | struct QDeclarativeTimeLinePrivate
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67 | {
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68 | QDeclarativeTimeLinePrivate(QDeclarativeTimeLine *);
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69 |
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70 | struct Op {
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71 | enum Type {
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72 | Pause,
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73 | Set,
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74 | Move,
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75 | MoveBy,
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76 | Accel,
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77 | AccelDistance,
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78 | Execute
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79 | };
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80 | Op() {}
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81 | Op(Type t, int l, qreal v, qreal v2, int o,
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82 | const QDeclarativeTimeLineCallback &ev = QDeclarativeTimeLineCallback(), const QEasingCurve &es = QEasingCurve())
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83 | : type(t), length(l), value(v), value2(v2), order(o), event(ev),
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84 | easing(es) {}
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85 | Op(const Op &o)
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86 | : type(o.type), length(o.length), value(o.value), value2(o.value2),
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87 | order(o.order), event(o.event), easing(o.easing) {}
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88 | Op &operator=(const Op &o) {
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89 | type = o.type; length = o.length; value = o.value;
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90 | value2 = o.value2; order = o.order; event = o.event;
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91 | easing = o.easing;
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92 | return *this;
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93 | }
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94 |
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95 | Type type;
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96 | int length;
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97 | qreal value;
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98 | qreal value2;
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99 |
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100 | int order;
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101 | QDeclarativeTimeLineCallback event;
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102 | QEasingCurve easing;
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103 | };
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104 | struct TimeLine
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105 | {
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106 | TimeLine() : length(0), consumedOpLength(0), base(0.) {}
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107 | QList<Op> ops;
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108 | int length;
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109 | int consumedOpLength;
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110 | qreal base;
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111 | };
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112 |
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113 | int length;
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114 | int syncPoint;
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115 | typedef QHash<QDeclarativeTimeLineObject *, TimeLine> Ops;
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116 | Ops ops;
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117 | QDeclarativeTimeLine *q;
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118 |
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119 | void add(QDeclarativeTimeLineObject &, const Op &);
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120 | qreal value(const Op &op, int time, qreal base, bool *) const;
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121 |
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122 | int advance(int);
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123 |
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124 | bool clockRunning;
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125 | int prevTime;
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126 |
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127 | int order;
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128 |
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129 | QDeclarativeTimeLine::SyncMode syncMode;
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130 | int syncAdj;
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131 | QList<QPair<int, Update> > *updateQueue;
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132 | };
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133 |
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134 | QDeclarativeTimeLinePrivate::QDeclarativeTimeLinePrivate(QDeclarativeTimeLine *parent)
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135 | : length(0), syncPoint(0), q(parent), clockRunning(false), prevTime(0), order(0), syncMode(QDeclarativeTimeLine::LocalSync), syncAdj(0), updateQueue(0)
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136 | {
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137 | }
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138 |
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139 | void QDeclarativeTimeLinePrivate::add(QDeclarativeTimeLineObject &g, const Op &o)
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140 | {
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141 | if (g._t && g._t != q) {
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142 | qWarning() << "QDeclarativeTimeLine: Cannot modify a QDeclarativeTimeLineValue owned by"
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143 | << "another timeline.";
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144 | return;
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145 | }
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146 | g._t = q;
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147 |
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148 | Ops::Iterator iter = ops.find(&g);
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149 | if (iter == ops.end()) {
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150 | iter = ops.insert(&g, TimeLine());
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151 | if (syncPoint > 0)
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152 | q->pause(g, syncPoint);
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153 | }
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154 | if (!iter->ops.isEmpty() &&
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155 | o.type == Op::Pause &&
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156 | iter->ops.last().type == Op::Pause) {
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157 | iter->ops.last().length += o.length;
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158 | iter->length += o.length;
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159 | } else {
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160 | iter->ops.append(o);
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161 | iter->length += o.length;
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162 | }
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163 |
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164 | if (iter->length > length)
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165 | length = iter->length;
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166 |
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167 | if (!clockRunning) {
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168 | q->stop();
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169 | prevTime = 0;
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170 | clockRunning = true;
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171 |
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172 | if (syncMode == QDeclarativeTimeLine::LocalSync) {
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173 | syncAdj = -1;
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174 | } else {
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175 | syncAdj = 0;
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176 | }
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177 | q->start();
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178 | /* q->tick(0);
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179 | if (syncMode == QDeclarativeTimeLine::LocalSync) {
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180 | syncAdj = -1;
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181 | } else {
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182 | syncAdj = 0;
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183 | }
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184 | */
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185 | }
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186 | }
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187 |
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188 | qreal QDeclarativeTimeLinePrivate::value(const Op &op, int time, qreal base, bool *changed) const
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189 | {
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190 | Q_ASSERT(time >= 0);
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191 | Q_ASSERT(time <= op.length);
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192 | *changed = true;
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193 |
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194 | switch(op.type) {
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195 | case Op::Pause:
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196 | *changed = false;
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197 | return base;
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198 | case Op::Set:
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199 | return op.value;
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200 | case Op::Move:
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201 | if (time == 0) {
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202 | return base;
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203 | } else if (time == (op.length)) {
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204 | return op.value;
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205 | } else {
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206 | qreal delta = op.value - base;
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207 | qreal pTime = (qreal)(time) / (qreal)op.length;
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208 | if (op.easing.type() == QEasingCurve::Linear)
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209 | return base + delta * pTime;
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210 | else
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211 | return base + delta * op.easing.valueForProgress(pTime);
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212 | }
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213 | case Op::MoveBy:
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214 | if (time == 0) {
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215 | return base;
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216 | } else if (time == (op.length)) {
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217 | return base + op.value;
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218 | } else {
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219 | qreal delta = op.value;
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220 | qreal pTime = (qreal)(time) / (qreal)op.length;
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221 | if (op.easing.type() == QEasingCurve::Linear)
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222 | return base + delta * pTime;
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223 | else
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224 | return base + delta * op.easing.valueForProgress(pTime);
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225 | }
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226 | case Op::Accel:
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227 | if (time == 0) {
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228 | return base;
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229 | } else {
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230 | qreal t = (qreal)(time) / 1000.0f;
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231 | qreal delta = op.value * t + 0.5f * op.value2 * t * t;
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232 | return base + delta;
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233 | }
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234 | case Op::AccelDistance:
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235 | if (time == 0) {
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236 | return base;
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237 | } else if (time == (op.length)) {
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238 | return base + op.value2;
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239 | } else {
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240 | qreal t = (qreal)(time) / 1000.0f;
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241 | qreal accel = -1.0f * 1000.0f * op.value / (qreal)op.length;
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242 | qreal delta = op.value * t + 0.5f * accel * t * t;
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243 | return base + delta;
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244 |
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245 | }
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246 | case Op::Execute:
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247 | op.event.d0(op.event.d1);
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248 | *changed = false;
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249 | return -1;
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250 | }
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251 |
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252 | return base;
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253 | }
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254 |
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255 | /*!
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256 | \internal
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257 | \class QDeclarativeTimeLine
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258 | \brief The QDeclarativeTimeLine class provides a timeline for controlling animations.
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259 |
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260 | QDeclarativeTimeLine is similar to QTimeLine except:
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261 | \list
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262 | \i It updates QDeclarativeTimeLineValue instances directly, rather than maintaining a single
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263 | current value.
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264 |
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265 | For example, the following animates a simple value over 200 milliseconds:
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266 | \code
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267 | QDeclarativeTimeLineValue v(<starting value>);
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268 | QDeclarativeTimeLine tl;
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269 | tl.move(v, 100., 200);
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270 | tl.start()
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271 | \endcode
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272 |
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273 | If your program needs to know when values are changed, it can either
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274 | connect to the QDeclarativeTimeLine's updated() signal, or inherit from QDeclarativeTimeLineValue
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275 | and reimplement the QDeclarativeTimeLineValue::setValue() method.
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276 |
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277 | \i Supports multiple QDeclarativeTimeLineValue, arbitrary start and end values and allows
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278 | animations to be strung together for more complex effects.
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279 |
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280 | For example, the following animation moves the x and y coordinates of
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281 | an object from wherever they are to the position (100, 100) in 50
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282 | milliseconds and then further animates them to (100, 200) in 50
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283 | milliseconds:
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284 |
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285 | \code
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286 | QDeclarativeTimeLineValue x(<starting value>);
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287 | QDeclarativeTimeLineValue y(<starting value>);
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288 |
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289 | QDeclarativeTimeLine tl;
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290 | tl.start();
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291 |
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292 | tl.move(x, 100., 50);
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293 | tl.move(y, 100., 50);
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294 | tl.move(y, 200., 50);
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295 | \endcode
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296 |
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297 | \i All QDeclarativeTimeLine instances share a single, synchronized clock.
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298 |
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299 | Actions scheduled within the same event loop tick are scheduled
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300 | synchronously against each other, regardless of the wall time between the
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301 | scheduling. Synchronized scheduling applies both to within the same
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302 | QDeclarativeTimeLine and across separate QDeclarativeTimeLine's within the same process.
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303 |
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304 | \endlist
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305 |
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306 | Currently easing functions are not supported.
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307 | */
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308 |
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309 |
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310 | /*!
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311 | Construct a new QDeclarativeTimeLine with the specified \a parent.
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312 | */
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313 | QDeclarativeTimeLine::QDeclarativeTimeLine(QObject *parent)
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314 | : QAbstractAnimation(parent)
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315 | {
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316 | d = new QDeclarativeTimeLinePrivate(this);
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317 | }
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318 |
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319 | /*!
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320 | Destroys the time line. Any inprogress animations are canceled, but not
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321 | completed.
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322 | */
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323 | QDeclarativeTimeLine::~QDeclarativeTimeLine()
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324 | {
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325 | for (QDeclarativeTimeLinePrivate::Ops::Iterator iter = d->ops.begin();
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326 | iter != d->ops.end();
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327 | ++iter)
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328 | iter.key()->_t = 0;
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329 |
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330 | delete d; d = 0;
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331 | }
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332 |
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333 | /*!
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334 | \enum QDeclarativeTimeLine::SyncMode
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335 | */
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336 |
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337 | /*!
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338 | Return the timeline's synchronization mode.
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339 | */
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340 | QDeclarativeTimeLine::SyncMode QDeclarativeTimeLine::syncMode() const
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341 | {
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342 | return d->syncMode;
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343 | }
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344 |
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345 | /*!
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346 | Set the timeline's synchronization mode to \a syncMode.
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347 | */
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348 | void QDeclarativeTimeLine::setSyncMode(SyncMode syncMode)
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349 | {
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350 | d->syncMode = syncMode;
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351 | }
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352 |
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353 | /*!
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354 | Pause \a obj for \a time milliseconds.
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355 | */
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356 | void QDeclarativeTimeLine::pause(QDeclarativeTimeLineObject &obj, int time)
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357 | {
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358 | if (time <= 0) return;
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359 | QDeclarativeTimeLinePrivate::Op op(QDeclarativeTimeLinePrivate::Op::Pause, time, 0., 0., d->order++);
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360 | d->add(obj, op);
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361 | }
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362 |
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363 | /*!
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364 | Execute the \a event.
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365 | */
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366 | void QDeclarativeTimeLine::callback(const QDeclarativeTimeLineCallback &callback)
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367 | {
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368 | QDeclarativeTimeLinePrivate::Op op(QDeclarativeTimeLinePrivate::Op::Execute, 0, 0, 0., d->order++, callback);
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369 | d->add(*callback.callbackObject(), op);
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370 | }
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371 |
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372 | /*!
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373 | Set the \a value of \a timeLineValue.
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374 | */
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375 | void QDeclarativeTimeLine::set(QDeclarativeTimeLineValue &timeLineValue, qreal value)
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376 | {
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377 | QDeclarativeTimeLinePrivate::Op op(QDeclarativeTimeLinePrivate::Op::Set, 0, value, 0., d->order++);
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378 | d->add(timeLineValue, op);
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379 | }
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380 |
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381 | /*!
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382 | Decelerate \a timeLineValue from the starting \a velocity to zero at the
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383 | given \a acceleration rate. Although the \a acceleration is technically
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384 | a deceleration, it should always be positive. The QDeclarativeTimeLine will ensure
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385 | that the deceleration is in the opposite direction to the initial velocity.
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386 | */
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387 | int QDeclarativeTimeLine::accel(QDeclarativeTimeLineValue &timeLineValue, qreal velocity, qreal acceleration)
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388 | {
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389 | if (acceleration == 0.0f)
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390 | return -1;
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391 |
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392 | if ((velocity > 0.0f) == (acceleration > 0.0f))
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393 | acceleration = acceleration * -1.0f;
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394 |
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395 | int time = static_cast<int>(-1000 * velocity / acceleration);
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396 |
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397 | QDeclarativeTimeLinePrivate::Op op(QDeclarativeTimeLinePrivate::Op::Accel, time, velocity, acceleration, d->order++);
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398 | d->add(timeLineValue, op);
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399 |
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400 | return time;
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401 | }
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402 |
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403 | /*!
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404 | \overload
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405 |
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406 | Decelerate \a timeLineValue from the starting \a velocity to zero at the
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407 | given \a acceleration rate over a maximum distance of maxDistance.
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408 |
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409 | If necessary, QDeclarativeTimeLine will reduce the acceleration to ensure that the
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410 | entire operation does not require a move of more than \a maxDistance.
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411 | \a maxDistance should always be positive.
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412 | */
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413 | int QDeclarativeTimeLine::accel(QDeclarativeTimeLineValue &timeLineValue, qreal velocity, qreal acceleration, qreal maxDistance)
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414 | {
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415 | if (maxDistance == 0.0f || acceleration == 0.0f)
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416 | return -1;
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417 |
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418 | Q_ASSERT(acceleration > 0.0f && maxDistance > 0.0f);
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419 |
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420 | qreal maxAccel = (velocity * velocity) / (2.0f * maxDistance);
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421 | if (maxAccel > acceleration)
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422 | acceleration = maxAccel;
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423 |
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424 | if ((velocity > 0.0f) == (acceleration > 0.0f))
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425 | acceleration = acceleration * -1.0f;
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426 |
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427 | int time = static_cast<int>(-1000 * velocity / acceleration);
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428 |
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429 | QDeclarativeTimeLinePrivate::Op op(QDeclarativeTimeLinePrivate::Op::Accel, time, velocity, acceleration, d->order++);
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430 | d->add(timeLineValue, op);
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431 |
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432 | return time;
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433 | }
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434 |
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435 | /*!
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436 | Decelerate \a timeLineValue from the starting \a velocity to zero over the given
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437 | \a distance. This is like accel(), but the QDeclarativeTimeLine calculates the exact
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438 | deceleration to use.
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439 |
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440 | \a distance should be positive.
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441 | */
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442 | int QDeclarativeTimeLine::accelDistance(QDeclarativeTimeLineValue &timeLineValue, qreal velocity, qreal distance)
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443 | {
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444 | if (distance == 0.0f || velocity == 0.0f)
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445 | return -1;
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446 |
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447 | Q_ASSERT((distance >= 0.0f) == (velocity >= 0.0f));
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448 |
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449 | int time = static_cast<int>(1000 * (2.0f * distance) / velocity);
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450 |
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451 | QDeclarativeTimeLinePrivate::Op op(QDeclarativeTimeLinePrivate::Op::AccelDistance, time, velocity, distance, d->order++);
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452 | d->add(timeLineValue, op);
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453 |
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454 | return time;
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455 | }
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456 |
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457 | /*!
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458 | Linearly change the \a timeLineValue from its current value to the given
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459 | \a destination value over \a time milliseconds.
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460 | */
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461 | void QDeclarativeTimeLine::move(QDeclarativeTimeLineValue &timeLineValue, qreal destination, int time)
|
---|
462 | {
|
---|
463 | if (time <= 0) return;
|
---|
464 | QDeclarativeTimeLinePrivate::Op op(QDeclarativeTimeLinePrivate::Op::Move, time, destination, 0.0f, d->order++);
|
---|
465 | d->add(timeLineValue, op);
|
---|
466 | }
|
---|
467 |
|
---|
468 | /*!
|
---|
469 | Change the \a timeLineValue from its current value to the given \a destination
|
---|
470 | value over \a time milliseconds using the \a easing curve.
|
---|
471 | */
|
---|
472 | void QDeclarativeTimeLine::move(QDeclarativeTimeLineValue &timeLineValue, qreal destination, const QEasingCurve &easing, int time)
|
---|
473 | {
|
---|
474 | if (time <= 0) return;
|
---|
475 | QDeclarativeTimeLinePrivate::Op op(QDeclarativeTimeLinePrivate::Op::Move, time, destination, 0.0f, d->order++, QDeclarativeTimeLineCallback(), easing);
|
---|
476 | d->add(timeLineValue, op);
|
---|
477 | }
|
---|
478 |
|
---|
479 | /*!
|
---|
480 | Linearly change the \a timeLineValue from its current value by the \a change amount
|
---|
481 | over \a time milliseconds.
|
---|
482 | */
|
---|
483 | void QDeclarativeTimeLine::moveBy(QDeclarativeTimeLineValue &timeLineValue, qreal change, int time)
|
---|
484 | {
|
---|
485 | if (time <= 0) return;
|
---|
486 | QDeclarativeTimeLinePrivate::Op op(QDeclarativeTimeLinePrivate::Op::MoveBy, time, change, 0.0f, d->order++);
|
---|
487 | d->add(timeLineValue, op);
|
---|
488 | }
|
---|
489 |
|
---|
490 | /*!
|
---|
491 | Change the \a timeLineValue from its current value by the \a change amount over
|
---|
492 | \a time milliseconds using the \a easing curve.
|
---|
493 | */
|
---|
494 | void QDeclarativeTimeLine::moveBy(QDeclarativeTimeLineValue &timeLineValue, qreal change, const QEasingCurve &easing, int time)
|
---|
495 | {
|
---|
496 | if (time <= 0) return;
|
---|
497 | QDeclarativeTimeLinePrivate::Op op(QDeclarativeTimeLinePrivate::Op::MoveBy, time, change, 0.0f, d->order++, QDeclarativeTimeLineCallback(), easing);
|
---|
498 | d->add(timeLineValue, op);
|
---|
499 | }
|
---|
500 |
|
---|
501 | /*!
|
---|
502 | Cancel (but don't complete) all scheduled actions for \a timeLineValue.
|
---|
503 | */
|
---|
504 | void QDeclarativeTimeLine::reset(QDeclarativeTimeLineValue &timeLineValue)
|
---|
505 | {
|
---|
506 | if (!timeLineValue._t)
|
---|
507 | return;
|
---|
508 | if (timeLineValue._t != this) {
|
---|
509 | qWarning() << "QDeclarativeTimeLine: Cannot reset a QDeclarativeTimeLineValue owned by another timeline.";
|
---|
510 | return;
|
---|
511 | }
|
---|
512 | remove(&timeLineValue);
|
---|
513 | timeLineValue._t = 0;
|
---|
514 | }
|
---|
515 |
|
---|
516 | int QDeclarativeTimeLine::duration() const
|
---|
517 | {
|
---|
518 | return -1;
|
---|
519 | }
|
---|
520 |
|
---|
521 | /*!
|
---|
522 | Synchronize the end point of \a timeLineValue to the endpoint of \a syncTo
|
---|
523 | within this timeline.
|
---|
524 |
|
---|
525 | Following operations on \a timeLineValue in this timeline will be scheduled after
|
---|
526 | all the currently scheduled actions on \a syncTo are complete. In
|
---|
527 | pseudo-code this is equivalent to:
|
---|
528 | \code
|
---|
529 | QDeclarativeTimeLine::pause(timeLineValue, min(0, length_of(syncTo) - length_of(timeLineValue)))
|
---|
530 | \endcode
|
---|
531 | */
|
---|
532 | void QDeclarativeTimeLine::sync(QDeclarativeTimeLineValue &timeLineValue, QDeclarativeTimeLineValue &syncTo)
|
---|
533 | {
|
---|
534 | QDeclarativeTimeLinePrivate::Ops::Iterator iter = d->ops.find(&syncTo);
|
---|
535 | if (iter == d->ops.end())
|
---|
536 | return;
|
---|
537 | int length = iter->length;
|
---|
538 |
|
---|
539 | iter = d->ops.find(&timeLineValue);
|
---|
540 | if (iter == d->ops.end()) {
|
---|
541 | pause(timeLineValue, length);
|
---|
542 | } else {
|
---|
543 | int glength = iter->length;
|
---|
544 | pause(timeLineValue, length - glength);
|
---|
545 | }
|
---|
546 | }
|
---|
547 |
|
---|
548 | /*!
|
---|
549 | Synchronize the end point of \a timeLineValue to the endpoint of the longest
|
---|
550 | action cursrently scheduled in the timeline.
|
---|
551 |
|
---|
552 | In pseudo-code, this is equivalent to:
|
---|
553 | \code
|
---|
554 | QDeclarativeTimeLine::pause(timeLineValue, length_of(timeline) - length_of(timeLineValue))
|
---|
555 | \endcode
|
---|
556 | */
|
---|
557 | void QDeclarativeTimeLine::sync(QDeclarativeTimeLineValue &timeLineValue)
|
---|
558 | {
|
---|
559 | QDeclarativeTimeLinePrivate::Ops::Iterator iter = d->ops.find(&timeLineValue);
|
---|
560 | if (iter == d->ops.end()) {
|
---|
561 | pause(timeLineValue, d->length);
|
---|
562 | } else {
|
---|
563 | pause(timeLineValue, d->length - iter->length);
|
---|
564 | }
|
---|
565 | }
|
---|
566 |
|
---|
567 | /*
|
---|
568 | Synchronize all currently and future scheduled values in this timeline to
|
---|
569 | the longest action currently scheduled.
|
---|
570 |
|
---|
571 | For example:
|
---|
572 | \code
|
---|
573 | value1->setValue(0.);
|
---|
574 | value2->setValue(0.);
|
---|
575 | value3->setValue(0.);
|
---|
576 | QDeclarativeTimeLine tl;
|
---|
577 | ...
|
---|
578 | tl.move(value1, 10, 200);
|
---|
579 | tl.move(value2, 10, 100);
|
---|
580 | tl.sync();
|
---|
581 | tl.move(value2, 20, 100);
|
---|
582 | tl.move(value3, 20, 100);
|
---|
583 | \endcode
|
---|
584 |
|
---|
585 | will result in:
|
---|
586 |
|
---|
587 | \table
|
---|
588 | \header \o \o 0ms \o 50ms \o 100ms \o 150ms \o 200ms \o 250ms \o 300ms
|
---|
589 | \row \o value1 \o 0 \o 2.5 \o 5.0 \o 7.5 \o 10 \o 10 \o 10
|
---|
590 | \row \o value2 \o 0 \o 5.0 \o 10.0 \o 10.0 \o 10.0 \o 15.0 \o 20.0
|
---|
591 | \row \o value2 \o 0 \o 0 \o 0 \o 0 \o 0 \o 10.0 \o 20.0
|
---|
592 | \endtable
|
---|
593 | */
|
---|
594 |
|
---|
595 | /*void QDeclarativeTimeLine::sync()
|
---|
596 | {
|
---|
597 | for (QDeclarativeTimeLinePrivate::Ops::Iterator iter = d->ops.begin();
|
---|
598 | iter != d->ops.end();
|
---|
599 | ++iter)
|
---|
600 | pause(*iter.key(), d->length - iter->length);
|
---|
601 | d->syncPoint = d->length;
|
---|
602 | }*/
|
---|
603 |
|
---|
604 | /*!
|
---|
605 | \internal
|
---|
606 |
|
---|
607 | Temporary hack.
|
---|
608 | */
|
---|
609 | void QDeclarativeTimeLine::setSyncPoint(int sp)
|
---|
610 | {
|
---|
611 | d->syncPoint = sp;
|
---|
612 | }
|
---|
613 |
|
---|
614 | /*!
|
---|
615 | \internal
|
---|
616 |
|
---|
617 | Temporary hack.
|
---|
618 | */
|
---|
619 | int QDeclarativeTimeLine::syncPoint() const
|
---|
620 | {
|
---|
621 | return d->syncPoint;
|
---|
622 | }
|
---|
623 |
|
---|
624 | /*!
|
---|
625 | Returns true if the timeline is active. An active timeline is one where
|
---|
626 | QDeclarativeTimeLineValue actions are still pending.
|
---|
627 | */
|
---|
628 | bool QDeclarativeTimeLine::isActive() const
|
---|
629 | {
|
---|
630 | return !d->ops.isEmpty();
|
---|
631 | }
|
---|
632 |
|
---|
633 | /*!
|
---|
634 | Completes the timeline. All queued actions are played to completion, and then discarded. For example,
|
---|
635 | \code
|
---|
636 | QDeclarativeTimeLineValue v(0.);
|
---|
637 | QDeclarativeTimeLine tl;
|
---|
638 | tl.move(v, 100., 1000.);
|
---|
639 | // 500 ms passes
|
---|
640 | // v.value() == 50.
|
---|
641 | tl.complete();
|
---|
642 | // v.value() == 100.
|
---|
643 | \endcode
|
---|
644 | */
|
---|
645 | void QDeclarativeTimeLine::complete()
|
---|
646 | {
|
---|
647 | d->advance(d->length);
|
---|
648 | }
|
---|
649 |
|
---|
650 | /*!
|
---|
651 | Resets the timeline. All queued actions are discarded and QDeclarativeTimeLineValue's retain their current value. For example,
|
---|
652 | \code
|
---|
653 | QDeclarativeTimeLineValue v(0.);
|
---|
654 | QDeclarativeTimeLine tl;
|
---|
655 | tl.move(v, 100., 1000.);
|
---|
656 | // 500 ms passes
|
---|
657 | // v.value() == 50.
|
---|
658 | tl.clear();
|
---|
659 | // v.value() == 50.
|
---|
660 | \endcode
|
---|
661 | */
|
---|
662 | void QDeclarativeTimeLine::clear()
|
---|
663 | {
|
---|
664 | for (QDeclarativeTimeLinePrivate::Ops::ConstIterator iter = d->ops.begin(); iter != d->ops.end(); ++iter)
|
---|
665 | iter.key()->_t = 0;
|
---|
666 | d->ops.clear();
|
---|
667 | d->length = 0;
|
---|
668 | d->syncPoint = 0;
|
---|
669 | //XXX need stop here?
|
---|
670 | }
|
---|
671 |
|
---|
672 | int QDeclarativeTimeLine::time() const
|
---|
673 | {
|
---|
674 | return d->prevTime;
|
---|
675 | }
|
---|
676 |
|
---|
677 | /*!
|
---|
678 | \fn void QDeclarativeTimeLine::updated()
|
---|
679 |
|
---|
680 | Emitted each time the timeline modifies QDeclarativeTimeLineValues. Even if multiple
|
---|
681 | QDeclarativeTimeLineValues are changed, this signal is only emitted once for each clock tick.
|
---|
682 | */
|
---|
683 |
|
---|
684 | void QDeclarativeTimeLine::updateCurrentTime(int v)
|
---|
685 | {
|
---|
686 | if (d->syncAdj == -1)
|
---|
687 | d->syncAdj = v;
|
---|
688 | v -= d->syncAdj;
|
---|
689 |
|
---|
690 | int timeChanged = v - d->prevTime;
|
---|
691 | #if 0
|
---|
692 | if (!timeChanged)
|
---|
693 | return;
|
---|
694 | #endif
|
---|
695 | d->prevTime = v;
|
---|
696 | d->advance(timeChanged);
|
---|
697 | emit updated();
|
---|
698 |
|
---|
699 | // Do we need to stop the clock?
|
---|
700 | if (d->ops.isEmpty()) {
|
---|
701 | stop();
|
---|
702 | d->prevTime = 0;
|
---|
703 | d->clockRunning = false;
|
---|
704 | emit completed();
|
---|
705 | } /*else if (pauseTime > 0) {
|
---|
706 | GfxClock::cancelClock();
|
---|
707 | d->prevTime = 0;
|
---|
708 | GfxClock::pauseFor(pauseTime);
|
---|
709 | d->syncAdj = 0;
|
---|
710 | d->clockRunning = false;
|
---|
711 | }*/ else if (/*!GfxClock::isActive()*/ state() != Running) {
|
---|
712 | stop();
|
---|
713 | d->prevTime = 0;
|
---|
714 | d->clockRunning = true;
|
---|
715 | d->syncAdj = 0;
|
---|
716 | start();
|
---|
717 | }
|
---|
718 | }
|
---|
719 |
|
---|
720 | bool operator<(const QPair<int, Update> &lhs,
|
---|
721 | const QPair<int, Update> &rhs)
|
---|
722 | {
|
---|
723 | return lhs.first < rhs.first;
|
---|
724 | }
|
---|
725 |
|
---|
726 | int QDeclarativeTimeLinePrivate::advance(int t)
|
---|
727 | {
|
---|
728 | int pauseTime = -1;
|
---|
729 |
|
---|
730 | // XXX - surely there is a more efficient way?
|
---|
731 | do {
|
---|
732 | pauseTime = -1;
|
---|
733 | // Minimal advance time
|
---|
734 | int advanceTime = t;
|
---|
735 | for (Ops::Iterator iter = ops.begin(); iter != ops.end(); ++iter) {
|
---|
736 | TimeLine &tl = *iter;
|
---|
737 | Op &op = tl.ops.first();
|
---|
738 | int length = op.length - tl.consumedOpLength;
|
---|
739 |
|
---|
740 | if (length < advanceTime) {
|
---|
741 | advanceTime = length;
|
---|
742 | if (advanceTime == 0)
|
---|
743 | break;
|
---|
744 | }
|
---|
745 | }
|
---|
746 | t -= advanceTime;
|
---|
747 |
|
---|
748 | // Process until then. A zero length advance time will only process
|
---|
749 | // sets.
|
---|
750 | QList<QPair<int, Update> > updates;
|
---|
751 |
|
---|
752 | for (Ops::Iterator iter = ops.begin(); iter != ops.end(); ) {
|
---|
753 | QDeclarativeTimeLineValue *v = static_cast<QDeclarativeTimeLineValue *>(iter.key());
|
---|
754 | TimeLine &tl = *iter;
|
---|
755 | Q_ASSERT(!tl.ops.isEmpty());
|
---|
756 |
|
---|
757 | do {
|
---|
758 | Op &op = tl.ops.first();
|
---|
759 | if (advanceTime == 0 && op.length != 0)
|
---|
760 | continue;
|
---|
761 |
|
---|
762 | if (tl.consumedOpLength == 0 &&
|
---|
763 | op.type != Op::Pause &&
|
---|
764 | op.type != Op::Execute)
|
---|
765 | tl.base = v->value();
|
---|
766 |
|
---|
767 | if ((tl.consumedOpLength + advanceTime) == op.length) {
|
---|
768 | if (op.type == Op::Execute) {
|
---|
769 | updates << qMakePair(op.order, Update(op.event));
|
---|
770 | } else {
|
---|
771 | bool changed = false;
|
---|
772 | qreal val = value(op, op.length, tl.base, &changed);
|
---|
773 | if (changed)
|
---|
774 | updates << qMakePair(op.order, Update(v, val));
|
---|
775 | }
|
---|
776 | tl.length -= qMin(advanceTime, tl.length);
|
---|
777 | tl.consumedOpLength = 0;
|
---|
778 | tl.ops.removeFirst();
|
---|
779 | } else {
|
---|
780 | tl.consumedOpLength += advanceTime;
|
---|
781 | bool changed = false;
|
---|
782 | qreal val = value(op, tl.consumedOpLength, tl.base, &changed);
|
---|
783 | if (changed)
|
---|
784 | updates << qMakePair(op.order, Update(v, val));
|
---|
785 | tl.length -= qMin(advanceTime, tl.length);
|
---|
786 | break;
|
---|
787 | }
|
---|
788 |
|
---|
789 | } while(!tl.ops.isEmpty() && advanceTime == 0 && tl.ops.first().length == 0);
|
---|
790 |
|
---|
791 |
|
---|
792 | if (tl.ops.isEmpty()) {
|
---|
793 | iter = ops.erase(iter);
|
---|
794 | v->_t = 0;
|
---|
795 | } else {
|
---|
796 | if (tl.ops.first().type == Op::Pause && pauseTime != 0) {
|
---|
797 | int opPauseTime = tl.ops.first().length - tl.consumedOpLength;
|
---|
798 | if (pauseTime == -1 || opPauseTime < pauseTime)
|
---|
799 | pauseTime = opPauseTime;
|
---|
800 | } else {
|
---|
801 | pauseTime = 0;
|
---|
802 | }
|
---|
803 | ++iter;
|
---|
804 | }
|
---|
805 | }
|
---|
806 |
|
---|
807 | length -= qMin(length, advanceTime);
|
---|
808 | syncPoint -= advanceTime;
|
---|
809 |
|
---|
810 | qSort(updates.begin(), updates.end());
|
---|
811 | updateQueue = &updates;
|
---|
812 | for (int ii = 0; ii < updates.count(); ++ii) {
|
---|
813 | const Update &v = updates.at(ii).second;
|
---|
814 | if (v.g) {
|
---|
815 | v.g->setValue(v.v);
|
---|
816 | } else {
|
---|
817 | v.e.d0(v.e.d1);
|
---|
818 | }
|
---|
819 | }
|
---|
820 | updateQueue = 0;
|
---|
821 | } while(t);
|
---|
822 |
|
---|
823 | return pauseTime;
|
---|
824 | }
|
---|
825 |
|
---|
826 | void QDeclarativeTimeLine::remove(QDeclarativeTimeLineObject *v)
|
---|
827 | {
|
---|
828 | QDeclarativeTimeLinePrivate::Ops::Iterator iter = d->ops.find(v);
|
---|
829 | Q_ASSERT(iter != d->ops.end());
|
---|
830 |
|
---|
831 | int len = iter->length;
|
---|
832 | d->ops.erase(iter);
|
---|
833 | if (len == d->length) {
|
---|
834 | // We need to recalculate the length
|
---|
835 | d->length = 0;
|
---|
836 | for (QDeclarativeTimeLinePrivate::Ops::Iterator iter = d->ops.begin();
|
---|
837 | iter != d->ops.end();
|
---|
838 | ++iter) {
|
---|
839 |
|
---|
840 | if (iter->length > d->length)
|
---|
841 | d->length = iter->length;
|
---|
842 |
|
---|
843 | }
|
---|
844 | }
|
---|
845 | if (d->ops.isEmpty()) {
|
---|
846 | stop();
|
---|
847 | d->clockRunning = false;
|
---|
848 | } else if (/*!GfxClock::isActive()*/ state() != Running) {
|
---|
849 | stop();
|
---|
850 | d->prevTime = 0;
|
---|
851 | d->clockRunning = true;
|
---|
852 |
|
---|
853 | if (d->syncMode == QDeclarativeTimeLine::LocalSync) {
|
---|
854 | d->syncAdj = -1;
|
---|
855 | } else {
|
---|
856 | d->syncAdj = 0;
|
---|
857 | }
|
---|
858 | start();
|
---|
859 | }
|
---|
860 |
|
---|
861 | if (d->updateQueue) {
|
---|
862 | for (int ii = 0; ii < d->updateQueue->count(); ++ii) {
|
---|
863 | if (d->updateQueue->at(ii).second.g == v ||
|
---|
864 | d->updateQueue->at(ii).second.e.callbackObject() == v) {
|
---|
865 | d->updateQueue->removeAt(ii);
|
---|
866 | --ii;
|
---|
867 | }
|
---|
868 | }
|
---|
869 | }
|
---|
870 |
|
---|
871 |
|
---|
872 | }
|
---|
873 |
|
---|
874 | /*!
|
---|
875 | \internal
|
---|
876 | \class QDeclarativeTimeLineValue
|
---|
877 | \brief The QDeclarativeTimeLineValue class provides a value that can be modified by QDeclarativeTimeLine.
|
---|
878 | */
|
---|
879 |
|
---|
880 | /*!
|
---|
881 | \fn QDeclarativeTimeLineValue::QDeclarativeTimeLineValue(qreal value = 0)
|
---|
882 |
|
---|
883 | Construct a new QDeclarativeTimeLineValue with an initial \a value.
|
---|
884 | */
|
---|
885 |
|
---|
886 | /*!
|
---|
887 | \fn qreal QDeclarativeTimeLineValue::value() const
|
---|
888 |
|
---|
889 | Return the current value.
|
---|
890 | */
|
---|
891 |
|
---|
892 | /*!
|
---|
893 | \fn void QDeclarativeTimeLineValue::setValue(qreal value)
|
---|
894 |
|
---|
895 | Set the current \a value.
|
---|
896 | */
|
---|
897 |
|
---|
898 | /*!
|
---|
899 | \fn QDeclarativeTimeLine *QDeclarativeTimeLineValue::timeLine() const
|
---|
900 |
|
---|
901 | If a QDeclarativeTimeLine is operating on this value, return a pointer to it,
|
---|
902 | otherwise return null.
|
---|
903 | */
|
---|
904 |
|
---|
905 |
|
---|
906 | QDeclarativeTimeLineObject::QDeclarativeTimeLineObject()
|
---|
907 | : _t(0)
|
---|
908 | {
|
---|
909 | }
|
---|
910 |
|
---|
911 | QDeclarativeTimeLineObject::~QDeclarativeTimeLineObject()
|
---|
912 | {
|
---|
913 | if (_t) {
|
---|
914 | _t->remove(this);
|
---|
915 | _t = 0;
|
---|
916 | }
|
---|
917 | }
|
---|
918 |
|
---|
919 | QDeclarativeTimeLineCallback::QDeclarativeTimeLineCallback()
|
---|
920 | : d0(0), d1(0), d2(0)
|
---|
921 | {
|
---|
922 | }
|
---|
923 |
|
---|
924 | QDeclarativeTimeLineCallback::QDeclarativeTimeLineCallback(QDeclarativeTimeLineObject *b, Callback f, void *d)
|
---|
925 | : d0(f), d1(d), d2(b)
|
---|
926 | {
|
---|
927 | }
|
---|
928 |
|
---|
929 | QDeclarativeTimeLineCallback::QDeclarativeTimeLineCallback(const QDeclarativeTimeLineCallback &o)
|
---|
930 | : d0(o.d0), d1(o.d1), d2(o.d2)
|
---|
931 | {
|
---|
932 | }
|
---|
933 |
|
---|
934 | QDeclarativeTimeLineCallback &QDeclarativeTimeLineCallback::operator=(const QDeclarativeTimeLineCallback &o)
|
---|
935 | {
|
---|
936 | d0 = o.d0;
|
---|
937 | d1 = o.d1;
|
---|
938 | d2 = o.d2;
|
---|
939 | return *this;
|
---|
940 | }
|
---|
941 |
|
---|
942 | QDeclarativeTimeLineObject *QDeclarativeTimeLineCallback::callbackObject() const
|
---|
943 | {
|
---|
944 | return d2;
|
---|
945 | }
|
---|
946 |
|
---|
947 | QT_END_NAMESPACE
|
---|