Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
#include "toonzqt/tonecurvefield.h"
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#include "toonzqt/fxhistogramrender.h"
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#include "toonzqt/intpairfield.h"
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#include "toonzqt/checkbox.h"
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#include <qpainter></qpainter>
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#include <qpainterpath></qpainterpath>
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#include <qstackedwidget></qstackedwidget>
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#include <qmouseevent></qmouseevent>
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#include <qapplication></qapplication>
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#include <qhboxlayout></qhboxlayout>
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#include <qcombobox></qcombobox>
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#include <qlabel></qlabel>
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using namespace DVGui;
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//-----------------------------------------------------------------------------
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namespace {
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//-----------------------------------------------------------------------------
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double getPercentAtPoint(QPointF point, QPainterPath path) {
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  int i;
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  for (i = 1; i < 100; i++) {
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    double p          = double(i) * 0.01;
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    QPointF pathPoint = path.pointAtPercent(p);
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    if (abs(pathPoint.x() - point.x()) < 3 &&
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        abs(pathPoint.y() - point.y()) < 3)
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      return p;
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  }
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  return 0;
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}
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//-----------------------------------------------------------------------------
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QList<qpointf> getIntersectedPoint(QRectF rect, QPainterPath path) {</qpointf>
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  int y0 = rect.top();
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  int y1 = rect.bottom();
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  QList<qpointf> points;</qpointf>
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  double g      = 1.0 / 256.0;
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  QPointF prec  = path.pointAtPercent(0);
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  QPointF point = path.pointAtPercent(g);
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  int j         = 0;
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  for (j = 2; j < 256; j++) {
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    QPointF next = path.pointAtPercent(double(j) * g);
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    if (prec.y() >= y0 && prec.y() <= y1) {
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      if (point.y() < y0)
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        points.push_back(QPointF(prec.x(), y0));
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      else if (point.y() > y1)
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        points.push_back(QPointF(prec.x(), y1));
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    }
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    if (next.y() >= y0 && next.y() <= y1) {
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      if (point.y() < y0)
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        points.push_back(QPointF(next.x(), y0));
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      else if (point.y() > y1)
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        points.push_back(QPointF(next.x(), y1));
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    }
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    prec  = point;
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    point = next;
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  }
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  return points;
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}
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//-----------------------------------------------------------------------------
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double qtNorm2(const QPointF &p) { return p.x() * p.x() + p.y() * p.y(); }
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double qtNorm(const QPointF &p) { return sqrt(qtNorm2(p)); }
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QPointF qtNormalize(const QPointF &p) {
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  double n = qtNorm(p);
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  assert(n != 0.0);
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  return (1.0 / n) * p;
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}
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double qtDistance2(const QPointF &p1, const QPointF &p2) {
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  return qtNorm2(p2 - p1);
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}
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double qtDistance(const QPointF &p1, const QPointF &p2) {
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  return qtNorm(p2 - p1);
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}
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//-----------------------------------------------------------------------------
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QPointF getNewFirstHandlePoint(const QPointF &p, const QPointF &nextP,
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                               const QPointF &oldHandlePoint) {
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  bool canMove  = (nextP.x() - p.x() > 16);
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  int yDistance = nextP.y() - p.y();
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  double sign   = (yDistance != 0) ? yDistance / abs(yDistance) : 1;
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  double t      = qtDistance(p, oldHandlePoint);
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  if (!canMove) {
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    QPointF normalizedP =
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        (yDistance != 0) ? qtNormalize(nextP - p) : QPoint(1, 1);
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    return QPointF(p + QPointF(t * normalizedP));
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  } else if (abs(oldHandlePoint.x() - p.x()) < 16)
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    return QPointF(p.x() + 16, p.y() + sign * sqrt(t * t - 16 * 16));
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  return oldHandlePoint;
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}
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//-----------------------------------------------------------------------------
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QPointF getNewSecondHandlePoint(const QPointF &p, const QPointF &nextP,
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                                const QPointF &oldHandlePoint) {
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  bool canMove  = (nextP.x() - p.x() > 16);
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  int yDistance = p.y() - nextP.y();
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  double sign   = (yDistance != 0) ? yDistance / abs(yDistance) : 1;
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  double s      = qtDistance(oldHandlePoint, nextP);
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  if (!canMove) {
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    QPointF normalizedP =
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        (yDistance != 0) ? qtNormalize(nextP - p) : QPoint(1, 1);
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    return QPointF(nextP - QPointF(s * normalizedP));
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  } else if (abs(nextP.x() - oldHandlePoint.x()) < 16)
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    return QPointF(nextP.x() - 16, nextP.y() + sign * sqrt(s * s - 16 * 16));
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  return oldHandlePoint;
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}
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//-----------------------------------------------------------------------------
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}  // anonymous namespace
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//-----------------------------------------------------------------------------
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//=============================================================================
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// ChennelCurveEditor
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//=============================================================================
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ChennelCurveEditor::ChennelCurveEditor(QWidget *parent,
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                                       HistogramView *histogramView)
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    : QWidget(parent)
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    , m_histogramView(histogramView)
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    , m_currentControlPointIndex(-1)
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    , m_mouseButton(Qt::NoButton)
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    , m_curveHeight(256)
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    , m_LeftRightMargin(42)
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    , m_TopMargin(9)
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    , m_BottomMargin(48)
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    , m_isLinear(false) {
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  setFixedSize(m_curveHeight + 2 * m_LeftRightMargin + 2,
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               m_curveHeight + m_TopMargin + m_BottomMargin);
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  setAttribute(Qt::WA_KeyCompression);
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  setFocusPolicy(Qt::StrongFocus);
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  setMouseTracking(true);
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  m_histogramView->setDrawnWidget(this);
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  m_histogramView->setGraphHeight(m_curveHeight);
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  m_histogramView->setGraphAlphaMask(120);
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  m_verticalChannelBar =
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      new ChannelBar(0, m_histogramView->getChannelBarColor(), false);
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}
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//-----------------------------------------------------------------------------
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void ChennelCurveEditor::setPoints(QList<tpointd> points) {</tpointd>
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  if (!m_points.isEmpty()) m_points.clear();
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  int i;
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  for (i = 0; i < points.size(); i++) {
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    QPointF p = strokeToViewPoint(points.at(i));
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    m_points.push_back(p);
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  }
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  /*--ポイント位置に合わせてスライダも更新する--*/
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  int firstIndex = 3;
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  int lastIndex  = m_points.size() - 4;
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  emit firstLastXPostionChanged(viewToStrokePoint(m_points.at(firstIndex)).x,
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                                viewToStrokePoint(m_points.at(lastIndex)).x);
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  update();
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}
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//-----------------------------------------------------------------------------
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QList<tpointd> ChennelCurveEditor::getPoints() {</tpointd>
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  QList<tpointd> points;</tpointd>
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  if (m_points.isEmpty()) return points;
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  int i;
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  for (i = 0; i < m_points.size(); i++)
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    points.push_back(viewToStrokePoint(m_points.at(i)));
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  return points;
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}
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//-----------------------------------------------------------------------------
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void ChennelCurveEditor::setFirstLastXPosition(std::pair<int, int=""> values,</int,>
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                                               bool isDragging) {
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  if (!isDragging) {
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    emit controlPointChanged(false);
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    return;
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  }
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  QPointF newX0 = strokeToViewPoint(TPointD(values.first, 0));
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  QPointF newX1 = strokeToViewPoint(TPointD(values.second, 0));
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  int indexX0 = 3;
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  int indexX1 = m_points.size() - 4;
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  QPointF x0  = m_points.at(indexX0);
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  QPointF x1  = m_points.at(indexX1);
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  if (x0.x() != newX0.x()) {
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    QPointF delta(newX0.x() - x0.x(), 0);
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    moveCentralControlPoint(indexX0, delta);
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    update();
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  }
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  if (x1.x() != newX1.x()) {
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    QPointF delta(newX1.x() - x1.x(), 0);
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    moveCentralControlPoint(indexX1, delta);
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    update();
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  }
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  m_currentControlPointIndex = -1;
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}
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//-----------------------------------------------------------------------------
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void ChennelCurveEditor::setLinear(bool isLinear) {
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  if (m_isLinear == isLinear) return;
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  m_isLinear = isLinear;
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  update();
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}
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//-----------------------------------------------------------------------------
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QPointF ChennelCurveEditor::checkPoint(const QPointF p) {
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  QPointF checkedP         = p;
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  int y0                   = m_TopMargin + 1;
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  int y1                   = m_curveHeight + m_TopMargin;
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  if (p.y() < y0) checkedP = QPointF(checkedP.x(), y0);
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  if (p.y() > y1) checkedP = QPointF(checkedP.x(), y1);
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  int x0                   = m_LeftRightMargin + 1;
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  int x1                   = m_curveHeight + m_LeftRightMargin;
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  if (p.x() < x0) checkedP = QPointF(x0, checkedP.y());
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  if (p.x() > x1) checkedP = QPointF(x1, checkedP.y());
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  return checkedP;
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}
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//-----------------------------------------------------------------------------
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QPointF ChennelCurveEditor::strokeToViewPoint(const TPointD p) {
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  double x = p.x + m_LeftRightMargin + 1;
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  double y = height() - m_BottomMargin - p.y;
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  return QPointF(x, y);
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}
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//-----------------------------------------------------------------------------
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TPointD ChennelCurveEditor::viewToStrokePoint(const QPointF &p) {
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  double x = p.x() - m_LeftRightMargin - 1;
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  double y = m_curveHeight - (p.y() - m_TopMargin);
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  return TThickPoint(x, y);
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}
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//-----------------------------------------------------------------------------
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int ChennelCurveEditor::getClosestPointIndex(const QPointF &pos,
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                                             double &minDistance2) const {
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  int closestPointIndex = -1;
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  minDistance2          = 0;
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  int i;
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  for (i = 0; i < (int)m_points.size(); i++) {
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    double distance2 = qtDistance2(pos, m_points.at(i));
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    if (closestPointIndex < 0 || distance2 < minDistance2) {
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      minDistance2      = distance2;
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      closestPointIndex = i;
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    }
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  }
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  return closestPointIndex;
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}
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//-----------------------------------------------------------------------------
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void ChennelCurveEditor::movePoint(int index, const QPointF delta) {
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  QPointF p = m_points.at(index);
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  p += delta;
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  setPoint(index, p);
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  int firstIndex = 3;
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  int lastIndex  = m_points.size() - 4;
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  if (index == firstIndex)
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    emit firstLastXPostionChanged(viewToStrokePoint(p).x,
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                                  viewToStrokePoint(m_points.at(lastIndex)).x);
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  if (index == lastIndex)
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    emit firstLastXPostionChanged(viewToStrokePoint(m_points.at(firstIndex)).x,
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                                  viewToStrokePoint(p).x);
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}
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//-----------------------------------------------------------------------------
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void ChennelCurveEditor::setPoint(int index, const QPointF p) {
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  m_points.removeAt(index);
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  m_points.insert(index, p);
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  int firstIndex = 3;
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  int lastIndex  = m_points.size() - 4;
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  if (index == firstIndex)
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    emit firstLastXPostionChanged(viewToStrokePoint(p).x,
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                                  viewToStrokePoint(m_points.at(lastIndex)).x);
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  if (index == lastIndex)
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    emit firstLastXPostionChanged(viewToStrokePoint(m_points.at(firstIndex)).x,
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                                  viewToStrokePoint(p).x);
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}
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//-----------------------------------------------------------------------------
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void ChennelCurveEditor::moveCurrentControlPoint(const QPointF delta) {
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  assert(m_currentControlPointIndex != -1);
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  int pointCount = m_points.size();
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  /*- セグメントを動かした場合 -*/
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  if (isCentralControlPoint(m_currentControlPointIndex))
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    moveCentralControlPoint(m_currentControlPointIndex, delta);
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  /*- 左のハンドルを動かした場合 -*/
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  else if (isLeftControlPoint(m_currentControlPointIndex)) {
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    QPointF p0 =
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        m_points.at(m_currentControlPointIndex) + QPointF(0, delta.y());
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    setPoint(m_currentControlPointIndex, p0);
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    if (m_currentControlPointIndex < pointCount - 5) {
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      QPointF p2 =
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          m_points.at(m_currentControlPointIndex + 2) - QPointF(0, delta.y());
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      setPoint(m_currentControlPointIndex + 2, p2);
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    }
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    emit controlPointChanged(true);
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  }
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  /*- 右のハンドルを動かした場合 -*/
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  else {
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    assert(isRightControlPoint(m_currentControlPointIndex));
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    QPointF p0 =
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        m_points.at(m_currentControlPointIndex) + QPointF(0, delta.y());
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    setPoint(m_currentControlPointIndex, p0);
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    if (m_currentControlPointIndex > 4) {
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      QPointF p2 =
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          m_points.at(m_currentControlPointIndex - 2) - QPointF(0, delta.y());
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      setPoint(m_currentControlPointIndex - 2, p2);
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    }
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    emit controlPointChanged(true);
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  }
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  update();
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}
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//-----------------------------------------------------------------------------
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void ChennelCurveEditor::moveCentralControlPoint(int index,
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                                                 const QPointF delta) {
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  int pointCount = m_points.size();
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  assert(index < pointCount - 3 && index > 2);
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  QPointF p = m_points.at(index);
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  QPointF d = delta;
Shinya Kitaoka 120a6e
  // Trovo il valore di delta im modo tale che il punto di controllo non sia
Shinya Kitaoka 120a6e
  // trascinato fuori dal range consentito
Shinya Kitaoka 120a6e
  int newX         = p.x() + delta.x();
Shinya Kitaoka 120a6e
  int newY         = p.y() + delta.y();
Shinya Kitaoka 120a6e
  QPointF newPoint = checkPoint(QPoint(newX, newY));
Shinya Kitaoka 120a6e
  d                = newPoint - p;
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  QPointF nextP       = m_points.at(index + 3);
Shinya Kitaoka 120a6e
  QPointF precP       = m_points.at(index - 3);
Shinya Kitaoka 120a6e
  double nextDistance = nextP.x() - (p.x() + d.x());
Shinya Kitaoka 120a6e
  double precDistance = (p.x() + d.x()) - precP.x();
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  // Caso particolare: Punto di controllo corrente == primo visibile,
Shinya Kitaoka 120a6e
  //								  Punto di controllo successivo == l'ultimo
Shinya Kitaoka 120a6e
  //visibile
Shinya Kitaoka 120a6e
  if (index == 3 && index + 3 == pointCount - 4) {
Shinya Kitaoka 120a6e
    setPoint(index + 1,
Shinya Kitaoka 120a6e
             getNewFirstHandlePoint(p, nextP, m_points.at(index + 1)));
Shinya Kitaoka 120a6e
    setPoint(index + 2,
Shinya Kitaoka 120a6e
             getNewSecondHandlePoint(p, nextP, m_points.at(index + 2)));
Shinya Kitaoka 120a6e
    if (nextDistance < 0) d = QPointF(nextP.x() - p.x(), d.y());
Shinya Kitaoka 120a6e
  }
Shinya Kitaoka 120a6e
  // Caso particolare: Punto di controllo corrente == ultimo visibile,
Shinya Kitaoka 120a6e
  //								  Punto di controllo precedente == primo
Shinya Kitaoka 120a6e
  //visibile
Shinya Kitaoka 120a6e
  else if (index - 3 == 3 && index == pointCount - 4) {
Shinya Kitaoka 120a6e
    setPoint(index - 2,
Shinya Kitaoka 120a6e
             getNewFirstHandlePoint(precP, p, m_points.at(index - 2)));
Shinya Kitaoka 120a6e
    setPoint(index - 1,
Shinya Kitaoka 120a6e
             getNewSecondHandlePoint(precP, p, m_points.at(index - 1)));
Shinya Kitaoka 120a6e
    if (precDistance < 0) d = QPointF(precP.x() - p.x(), d.y());
Shinya Kitaoka 120a6e
  }
Shinya Kitaoka 120a6e
  // Altrimenti calcolo il nuovo delta
Shinya Kitaoka 120a6e
  else if (nextDistance < 16)
Shinya Kitaoka 120a6e
    d = QPointF(nextP.x() - p.x() - 16, d.y());
Shinya Kitaoka 120a6e
  else if (precDistance < 16)
Shinya Kitaoka 120a6e
    d = QPointF(precP.x() - p.x() + 16, d.y());
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  // Punto di controllo speciale: il primo visualizzato.
Shinya Kitaoka 120a6e
  if (index == 3) {
Shinya Kitaoka 120a6e
    QPointF dY = QPointF(0, d.y());
Shinya Kitaoka 120a6e
    movePoint(index - 1, dY);
Shinya Kitaoka 120a6e
    movePoint(index - 2, dY);
Shinya Kitaoka 120a6e
    movePoint(index - 3, dY);
Shinya Kitaoka 120a6e
  }
Shinya Kitaoka 120a6e
  // Punto di controllo speciale: l'ultimo visualizzato.
Shinya Kitaoka 120a6e
  if (index == pointCount - 4) {
Shinya Kitaoka 120a6e
    QPointF dY = QPointF(0, d.y());
Shinya Kitaoka 120a6e
    movePoint(index + 1, dY);
Shinya Kitaoka 120a6e
    movePoint(index + 2, dY);
Shinya Kitaoka 120a6e
    movePoint(index + 3, dY);
Shinya Kitaoka 120a6e
  }
Shinya Kitaoka 120a6e
  if (index > 3) movePoint(index - 1, d);
Shinya Kitaoka 120a6e
  if (index < pointCount - 4) movePoint(index + 1, d);
Shinya Kitaoka 120a6e
  movePoint(index, d);
Shinya Kitaoka 120a6e
  emit controlPointChanged(true);
Toshihiro Shimizu 890ddd
}
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
//-----------------------------------------------------------------------------
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
/* Se due punti di controllo sono troppo vicini uno dei due viene eliminato.
Shinya Kitaoka 120a6e
         Ritorna vero se un punto viene eliminato.
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
Prima di richiamare il metodo nel move andava fatto questo controllo!!!
Shinya Kitaoka 120a6e
//Se il punto di controllo successivo, o precente, e' l'utlimo, o il primo,
Shinya Kitaoka 120a6e
blocco il
Shinya Kitaoka 120a6e
// movimento altrimenti elimino il punto di controllo successivo e richiamo il
Shinya Kitaoka 120a6e
move.
Toshihiro Shimizu 890ddd
int nextPX = m_points.at(index+3).x();
Toshihiro Shimizu 890ddd
if(nextPX>m_margin && nextPX<=w && newX>nextPX)
Toshihiro Shimizu 890ddd
{
Shinya Kitaoka 120a6e
        if(index+3 == pointCount-4) d = QPointF(0, d.y());
Shinya Kitaoka 120a6e
        else
Shinya Kitaoka 120a6e
        {
Shinya Kitaoka 120a6e
                moveCentralControlPoint(index, d);
Shinya Kitaoka 120a6e
                return;
Shinya Kitaoka 120a6e
        }
Toshihiro Shimizu 890ddd
}
Toshihiro Shimizu 890ddd
int precPX = m_points.at(index-3).x();
Toshihiro Shimizu 890ddd
if(precPX>=m_margin && precPX<=w && newX
Toshihiro Shimizu 890ddd
{
Shinya Kitaoka 120a6e
        if(index-3 == 3) d = QPointF(0, d.y());
Shinya Kitaoka 120a6e
        else
Shinya Kitaoka 120a6e
        {
Shinya Kitaoka 120a6e
                moveCentralControlPoint(index, d);
Shinya Kitaoka 120a6e
                return;
Shinya Kitaoka 120a6e
        }
Shinya Kitaoka 120a6e
}
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
bool ChennelCurveEditor::eraseControlPointWhileMove(int index, const QPointF
Shinya Kitaoka 120a6e
delta)
Shinya Kitaoka 120a6e
{
Shinya Kitaoka 120a6e
        int pointCount = m_points.size();
Shinya Kitaoka 120a6e
        QPointF p = m_points.at(index);
Shinya Kitaoka 120a6e
        QPointF nextP = m_points.at(index+3);
Shinya Kitaoka 120a6e
        QPointF precP = m_points.at(index-3);
Shinya Kitaoka 120a6e
        double nextDistance = abs((p.x()+delta.x())-nextP.x());
Shinya Kitaoka 120a6e
        double precDistance = abs((p.x()+delta.x())-precP.x());
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
        if(nextDistance>16 && precDistance>16) return false;
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
        //Se vado troppo vicino al punto di controllo precedente, o successivo,
Shinya Kitaoka 120a6e
lo elimino.
Shinya Kitaoka 120a6e
        if(nextDistance<=16)
Shinya Kitaoka 120a6e
        {
Shinya Kitaoka 120a6e
                //Caso particolare: il successivo e' l'ultimo visibile; non
Shinya Kitaoka 120a6e
posso eliminare l'ultimo punto di controllo visibile.
Shinya Kitaoka 120a6e
                if(index+3 == pointCount-4)
Shinya Kitaoka 120a6e
                {
Shinya Kitaoka 120a6e
                        //Se il punto di controllo in index e' il primo visibile
Shinya Kitaoka 120a6e
sto gestendo il
Shinya Kitaoka 120a6e
                        // primo e l'ultimo punto, entrambi non possono essere
Shinya Kitaoka 120a6e
eliminati.
Shinya Kitaoka 120a6e
                        if(index == 3)
Shinya Kitaoka 120a6e
                        {
Shinya Kitaoka 120a6e
                                setPoint(index+1,nextP);
Shinya Kitaoka 120a6e
                                setPoint(index+2,p+delta);
Shinya Kitaoka 120a6e
                                return false;
Shinya Kitaoka 120a6e
                        }
Shinya Kitaoka 120a6e
                        else	//Altrimenti elimino il penultimo.
Shinya Kitaoka 120a6e
                        {
Shinya Kitaoka 120a6e
                                removeControlPoint(index);
Shinya Kitaoka 120a6e
                                m_currentControlPointIndex += 3;
Shinya Kitaoka 120a6e
                                return true;
Shinya Kitaoka 120a6e
                        }
Shinya Kitaoka 120a6e
                }
Shinya Kitaoka 120a6e
                removeControlPoint(index+3);
Shinya Kitaoka 120a6e
                return true;
Shinya Kitaoka 120a6e
        }
Shinya Kitaoka 120a6e
        if(precDistance<=16)
Shinya Kitaoka 120a6e
        {
Shinya Kitaoka 120a6e
                //Caso particolare: il precedente e' il primo visibile; non
Shinya Kitaoka 120a6e
posso eliminare il primo punto di controllo visibile.
Shinya Kitaoka 120a6e
                if(index-3 == 3)
Shinya Kitaoka 120a6e
                {
Shinya Kitaoka 120a6e
                        //Se il punto di controllo in index e' l'ultimo visibile
Shinya Kitaoka 120a6e
sto gestendo il
Shinya Kitaoka 120a6e
                        // primo e l'ultimo punto, entrambi non possono essere
Shinya Kitaoka 120a6e
eliminati.
Shinya Kitaoka 120a6e
                        if(index == pointCount-4)
Shinya Kitaoka 120a6e
                        {
Shinya Kitaoka 120a6e
                                setPoint(index-1,precP);
Shinya Kitaoka 120a6e
                                setPoint(index-2,p+delta);
Shinya Kitaoka 120a6e
                                return false;
Shinya Kitaoka 120a6e
                        }
Shinya Kitaoka 120a6e
                        else	//Altrimenti elimino il secondo.
Shinya Kitaoka 120a6e
                        {
Shinya Kitaoka 120a6e
                                removeControlPoint(index);
Shinya Kitaoka 120a6e
                                return true;
Shinya Kitaoka 120a6e
                        }
Shinya Kitaoka 120a6e
                }
Shinya Kitaoka 120a6e
                removeControlPoint(index-3);
Shinya Kitaoka 120a6e
                m_currentControlPointIndex += 3;
Shinya Kitaoka 120a6e
                return true;
Shinya Kitaoka 120a6e
        }
Shinya Kitaoka 120a6e
        return false;
Toshihiro Shimizu 890ddd
}
Toshihiro Shimizu 890ddd
*/
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
//-----------------------------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
void ChennelCurveEditor::addControlPoint(double percent) {
Shinya Kitaoka 120a6e
  QPainterPath path = getPainterPath();
Shinya Kitaoka 120a6e
  QPointF p         = path.pointAtPercent(percent);
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  // Cerco il punto di controllo precedente
Shinya Kitaoka 120a6e
  int pointCount = m_points.size();
Shinya Kitaoka 120a6e
  int beforeControlPointIndex;
Shinya Kitaoka 120a6e
  for (beforeControlPointIndex = pointCount - 1; beforeControlPointIndex >= 0;
Shinya Kitaoka 120a6e
       beforeControlPointIndex--) {
Shinya Kitaoka 120a6e
    QPointF point = m_points.at(beforeControlPointIndex);
Shinya Kitaoka 120a6e
    if (isCentralControlPoint(beforeControlPointIndex) && point.x() < p.x())
Shinya Kitaoka 120a6e
      break;
Shinya Kitaoka 120a6e
  }
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  if (beforeControlPointIndex == 0 || beforeControlPointIndex == pointCount - 4)
Shinya Kitaoka 120a6e
    return;
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  QPointF p0 = checkPoint(m_points.at(beforeControlPointIndex));
Shinya Kitaoka 120a6e
  // Se sono troppo vicino al punto di controllo precedente ritorno
Shinya Kitaoka 120a6e
  if (abs(p.x() - p0.x()) <= 16) return;
Shinya Kitaoka 120a6e
  double beforeControlPointPercent = getPercentAtPoint(p0, path);
Shinya Kitaoka 120a6e
  QPointF p1 = checkPoint(m_points.at(beforeControlPointIndex + 1));
Shinya Kitaoka 120a6e
  QPointF p2 = checkPoint(m_points.at(beforeControlPointIndex + 2));
Shinya Kitaoka 120a6e
  QPointF p3 = checkPoint(m_points.at(beforeControlPointIndex + 3));
Shinya Kitaoka 120a6e
  // Se sono troppo vicino al punto di controllo successivo ritorno
Shinya Kitaoka 120a6e
  if (abs(p3.x() - p.x()) <= 16) return;
Shinya Kitaoka 120a6e
  double nextControlPointPercent = getPercentAtPoint(p3, path);
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  // Calcolo la velocita' e quindi il coiffciente angolare.
Shinya Kitaoka 120a6e
  double t =
Shinya Kitaoka 120a6e
      percent * 100 / (nextControlPointPercent - beforeControlPointPercent);
Shinya Kitaoka 120a6e
  double s = t - 1;
Shinya Kitaoka 120a6e
  QPointF speed =
Shinya Kitaoka 120a6e
      3.0 * ((p1 - p0) * s * s + 2 * (p2 - p0) * s * t + (p3 - p2) * t * t);
Shinya Kitaoka 120a6e
  double m = speed.y() / speed.x();
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  int newControlPointIndex = beforeControlPointIndex + 3;
Shinya Kitaoka 120a6e
  m_points.insert(newControlPointIndex - 1,
Shinya Kitaoka 120a6e
                  QPointF(p.x() - 16, p.y() - 16 * m));
Shinya Kitaoka 120a6e
  m_points.insert(newControlPointIndex, p);
Shinya Kitaoka 120a6e
  m_points.insert(newControlPointIndex + 1,
Shinya Kitaoka 120a6e
                  QPointF(p.x() + 16, p.y() + 16 * m));
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  m_currentControlPointIndex = newControlPointIndex;
Shinya Kitaoka 120a6e
  emit controlPointAdded(newControlPointIndex);
Shinya Kitaoka 120a6e
  update();
Shinya Kitaoka 120a6e
}
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
//-----------------------------------------------------------------------------
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
void ChennelCurveEditor::removeCurrentControlPoint() {
Shinya Kitaoka 120a6e
  removeControlPoint(m_currentControlPointIndex);
Shinya Kitaoka 120a6e
}
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
//-----------------------------------------------------------------------------
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
void ChennelCurveEditor::removeControlPoint(int index) {
Shinya Kitaoka 120a6e
  // Non posso eliminare il primo punto di controllo visibile quindi lo rimetto
Shinya Kitaoka 120a6e
  // in condizione iniziale
Shinya Kitaoka 120a6e
  if (index <= 4) {
Shinya Kitaoka 120a6e
    setPoint(0, strokeToViewPoint(TPointD(-40, 0)));
Shinya Kitaoka 120a6e
    setPoint(1, strokeToViewPoint(TPointD(-20, 0)));
Shinya Kitaoka 120a6e
    setPoint(2, strokeToViewPoint(TPointD(-20, 0)));
Shinya Kitaoka 120a6e
    setPoint(3, strokeToViewPoint(TPointD(0, 0)));
Shinya Kitaoka 120a6e
    setPoint(4, strokeToViewPoint(TPointD(16, 16)));
Shinya Kitaoka 120a6e
    update();
Shinya Kitaoka 120a6e
    emit controlPointChanged(false);
Shinya Kitaoka 120a6e
    return;
Shinya Kitaoka 120a6e
  }
Shinya Kitaoka 120a6e
  // Non posso eliminare il l'ultimo punto di controllo visibile quindi lo
Shinya Kitaoka 120a6e
  // rimetto in condizione iniziale
Shinya Kitaoka 120a6e
  if (index >= m_points.size() - 5) {
Shinya Kitaoka 120a6e
    int i = m_points.size() - 5;
Shinya Kitaoka 120a6e
    setPoint(i, strokeToViewPoint(TPointD(239, 239)));
Shinya Kitaoka 120a6e
    setPoint(i + 1, strokeToViewPoint(TPointD(255, 255)));
Shinya Kitaoka 120a6e
    setPoint(i + 2, strokeToViewPoint(TPointD(275, 255)));
Shinya Kitaoka 120a6e
    setPoint(i + 3, strokeToViewPoint(TPointD(275, 255)));
Shinya Kitaoka 120a6e
    setPoint(i + 4, strokeToViewPoint(TPointD(295, 255)));
Shinya Kitaoka 120a6e
    update();
Shinya Kitaoka 120a6e
    emit controlPointChanged(false);
Shinya Kitaoka 120a6e
    return;
Shinya Kitaoka 120a6e
  }
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  int firstIndex = 0;
Shinya Kitaoka 120a6e
  if (isCentralControlPoint(index))
Shinya Kitaoka 120a6e
    firstIndex = index - 1;
Shinya Kitaoka 120a6e
  else if (isLeftControlPoint(index))
Shinya Kitaoka 120a6e
    firstIndex = index;
Shinya Kitaoka 120a6e
  else
Shinya Kitaoka 120a6e
    firstIndex = index - 2;
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  m_points.removeAt(firstIndex);
Shinya Kitaoka 120a6e
  m_points.removeAt(firstIndex);
Shinya Kitaoka 120a6e
  m_points.removeAt(firstIndex);
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  emit controlPointRemoved(firstIndex + 1);
Shinya Kitaoka 120a6e
  m_currentControlPointIndex = firstIndex - 2;
Shinya Kitaoka 120a6e
  update();
Shinya Kitaoka 120a6e
}
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
//-----------------------------------------------------------------------------
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
QPainterPath ChennelCurveEditor::getPainterPath() {
Shinya Kitaoka 120a6e
  int pointCount = m_points.size();
Shinya Kitaoka 120a6e
  if (pointCount == 0) return QPainterPath();
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  QPointF p0 = m_points.at(0);
Shinya Kitaoka 120a6e
  QPainterPath path(p0);
Shinya Kitaoka 120a6e
  int i;
Shinya Kitaoka 120a6e
  for (i = 1; i < pointCount; i++) {
Shinya Kitaoka 120a6e
    QPointF p1 = m_points.at(i);
Shinya Kitaoka 120a6e
    QPointF p2 = m_points.at(++i);
Shinya Kitaoka 120a6e
    QPointF p3 = m_points.at(++i);
Shinya Kitaoka 120a6e
    path.moveTo(p0);
Shinya Kitaoka 120a6e
    if (!m_isLinear)
Shinya Kitaoka 120a6e
      path.cubicTo(p1, p2, p3);
Shinya Kitaoka 120a6e
    else
Shinya Kitaoka 120a6e
      path.lineTo(p3);
Shinya Kitaoka 120a6e
    p0 = p3;
Shinya Kitaoka 120a6e
  }
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  // Cerco le eventuali intersezioni con il bordo.
Shinya Kitaoka 120a6e
  QRectF rect(m_LeftRightMargin, m_TopMargin, m_curveHeight, m_curveHeight);
Shinya Kitaoka 120a6e
  QRectF r = path.boundingRect();
Shinya Kitaoka 120a6e
  if (!rect.contains(QRect(rect.left(), r.top(), rect.width(), r.height()))) {
Shinya Kitaoka 120a6e
    QList<qpointf> points = getIntersectedPoint(rect, path);</qpointf>
Shinya Kitaoka 120a6e
    // Se trovo punti di intersezione (per come e' definita la curva devono
Shinya Kitaoka 120a6e
    // essere pari)
Shinya Kitaoka 120a6e
    // faccio l'unione del path calcolato e di nuovi path lineari.
Shinya Kitaoka 120a6e
    int j = 0;
Shinya Kitaoka 120a6e
    for (j = 0; j < points.size(); j++) {
Shinya Kitaoka 120a6e
      QPointF p0 = points.at(j);
Shinya Kitaoka 120a6e
      QPointF p1 = points.at(++j);
Shinya Kitaoka 120a6e
      QPainterPath line(p0);
Shinya Kitaoka 120a6e
      line.lineTo(p1);
Shinya Kitaoka 120a6e
      path.addPath(line);
Shinya Kitaoka 120a6e
    }
Shinya Kitaoka 120a6e
  }
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  return path;
Shinya Kitaoka 120a6e
}
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
//-----------------------------------------------------------------------------
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
void ChennelCurveEditor::paintEvent(QPaintEvent *e) {
Shinya Kitaoka 120a6e
  QPainter painter(this);
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  // Disegno il reticolato
Shinya Kitaoka 120a6e
  painter.setRenderHint(QPainter::Antialiasing, false);
Shinya Kitaoka 120a6e
  painter.setPen(QColor(250, 250, 250));
Shinya Kitaoka 120a6e
  int i;
Shinya Kitaoka 120a6e
  int d = m_curveHeight * 0.25;
Shinya Kitaoka 120a6e
  for (i = 1; i < 16; i++) {
Shinya Kitaoka 120a6e
    // linee orizzontali
Shinya Kitaoka 120a6e
    int delta = m_TopMargin + 16 * i;
Shinya Kitaoka 120a6e
    int j;
Shinya Kitaoka 120a6e
    for (j = 1; j < 4; j++)
Shinya Kitaoka 120a6e
      painter.drawLine(QPoint((j - 1) * d + m_LeftRightMargin + 1, delta),
Shinya Kitaoka 120a6e
                       QPoint(j * d + m_LeftRightMargin - 1, delta));
Shinya Kitaoka 120a6e
    painter.drawLine(QPoint((4 - 1) * d + m_LeftRightMargin + 1, delta),
Shinya Kitaoka 120a6e
                     QPoint(4 * d + m_LeftRightMargin, delta));
Shinya Kitaoka 120a6e
    // linee verticali
Shinya Kitaoka 120a6e
    delta = m_LeftRightMargin + 1 + 16 * i;
Shinya Kitaoka 120a6e
    if (i % 4 == 0) continue;
Shinya Kitaoka 120a6e
    for (j = 1; j < 5; j++)
Shinya Kitaoka 120a6e
      painter.drawLine(QPoint(delta, (j - 1) * d + m_TopMargin),
Shinya Kitaoka 120a6e
                       QPoint(delta, j * d + m_TopMargin - 1));
Shinya Kitaoka 120a6e
  }
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  // Disegno l'histogram.
Shinya Kitaoka 120a6e
  m_histogramView->draw(&painter, QPoint(m_LeftRightMargin - 10, 0));
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  // Disegno la barra verticale a sinistra.
Shinya Kitaoka 120a6e
  m_verticalChannelBar->draw(
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      &painter,
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      QPoint(0, -2));  //-1 == m_topMargin- il margine della barra(=10+1).
Shinya Kitaoka 120a6e
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  QRectF r = rect().adjusted(m_LeftRightMargin, m_TopMargin, -m_LeftRightMargin,
Shinya Kitaoka 120a6e
                             -m_BottomMargin);
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  // Disegno la curva entro i limiti del grafo
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  painter.setClipRect(r, Qt::IntersectClip);
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  QPainterPath path = getPainterPath();
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  if (path.isEmpty()) return;
Shinya Kitaoka 120a6e
  painter.setRenderHint(QPainter::Antialiasing, true);
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  painter.setPen(Qt::black);
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  painter.setBrush(Qt::NoBrush);
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  painter.drawPath(path);
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  // Disegno i punti di controllo (esclusi i primi tre e gli ultimi tre)
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  r         = r.adjusted(-5, -5, 5, 5);
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  int n     = m_points.size();
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  QPointF p = m_points.at(3);
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  for (i = 3; i < n - 3; i++) {
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    QBrush brush(Qt::white);
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    int rad       = 3;
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    QPointF nextP = m_points.at(i + 1);
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    if (isCentralControlPoint(i))
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      rad = 4;
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    else if (m_isLinear) {
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      p = nextP;
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      continue;
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    }
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    if (m_currentControlPointIndex == i) brush = QBrush(Qt::black);
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    painter.setBrush(brush);
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    painter.setPen(Qt::black);
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    if (!m_isLinear) {
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      if (isLeftControlPoint(i))
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        painter.drawLine(p, nextP);
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      else if (isCentralControlPoint(i) && i < n - 4)
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        painter.drawLine(p, nextP);
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    }
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    QPainterPath circle;
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    QRectF pointRect(p.x() - rad, p.y() - rad, 2 * rad, 2 * rad);
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    if (r.contains(pointRect))
Toshihiro Shimizu 890ddd
#if QT_VERSION >= 0x050000
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      painter.setClipRect(pointRect.adjusted(-1, -1, 1, 1));
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#else
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      painter.setClipRect(pointRect.adjusted(-1, -1, 1, 1), Qt::UniteClip);
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#endif
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    circle.addEllipse(pointRect);
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    painter.fillPath(circle, brush);
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    painter.drawPath(circle);
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    p = nextP;
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  }
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}
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//-----------------------------------------------------------------------------
Toshihiro Shimizu 890ddd
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void ChennelCurveEditor::mouseMoveEvent(QMouseEvent *e) {
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  if (m_mouseButton == Qt::LeftButton && m_currentControlPointIndex != -1) {
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    QPoint pos   = e->pos();
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    QPointF posF = QPointF(pos.x(), pos.y());
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    moveCurrentControlPoint(posF - m_points.at(m_currentControlPointIndex));
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  }
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}
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//-----------------------------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
void ChennelCurveEditor::mousePressEvent(QMouseEvent *e) {
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  m_mouseButton = e->button();
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  setFocus();
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  if (m_mouseButton == Qt::LeftButton) {
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    QPoint pos   = e->pos();
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    QPointF posF = QPointF(pos.x(), pos.y());
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    double minDistance;
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    int controlPointIndex = getClosestPointIndex(posF, minDistance);
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    // Se la distanza e' piccola seleziono il control point corrente
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    if (minDistance < 20)
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      m_currentControlPointIndex = controlPointIndex;
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    else {
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      m_currentControlPointIndex = -1;
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      // Se sono sufficentemente lontano da un punto di controllo, ma abbastanza
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      // vicino alla curva
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      // aggiungo un punto di controllo
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      double percent = getPercentAtPoint(posF, getPainterPath());
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      if (percent != 0 && minDistance > 20) addControlPoint(percent);
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    }
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    update();
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  }
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}
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//-----------------------------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
void ChennelCurveEditor::mouseReleaseEvent(QMouseEvent *e) {
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  /*-- マウスドラッグ中はプレビューを更新しない。ここで初めて更新 --*/
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  if (m_mouseButton == Qt::LeftButton && m_currentControlPointIndex != -1 &&
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      e->button() == Qt::LeftButton)
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    emit controlPointChanged(false);
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  m_mouseButton = Qt::NoButton;
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}
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//-----------------------------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
void ChennelCurveEditor::keyPressEvent(QKeyEvent *e) {
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  if (e->key() == Qt::Key_Delete) removeCurrentControlPoint();
Toshihiro Shimizu 890ddd
}
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
//-----------------------------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
void ChennelCurveEditor::enterEvent(QEvent *) { m_mouseButton = Qt::NoButton; }
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
//-----------------------------------------------------------------------------
Shinya Kitaoka 120a6e
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void ChennelCurveEditor::leaveEvent(QEvent *) { m_mouseButton = Qt::NoButton; }
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//--------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
bool ChennelCurveEditor::eventFilter(QObject *object, QEvent *event) {
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  if (event->type() == QEvent::Shortcut ||
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      event->type() == QEvent::ShortcutOverride) {
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    if (!object->inherits("FxSettings")) {
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      event->accept();
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      return true;
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    }
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  }
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  return false;
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}
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
//--------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
void ChennelCurveEditor::focusInEvent(QFocusEvent *fe) {
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  QWidget::focusInEvent(fe);
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  qApp->installEventFilter(this);
Toshihiro Shimizu 890ddd
}
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
//--------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
void ChennelCurveEditor::focusOutEvent(QFocusEvent *fe) {
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  m_currentControlPointIndex = -1;
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  emit focusOut();
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  QWidget::focusOutEvent(fe);
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  qApp->removeEventFilter(this);
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  update();
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}
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
//=============================================================================
Toshihiro Shimizu 890ddd
// ToneCurveField
Toshihiro Shimizu 890ddd
//=============================================================================
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
ToneCurveField::ToneCurveField(QWidget *parent,
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                               FxHistogramRender *fxHistogramRender)
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    : QWidget(parent), m_toneCurveStackedWidget(0) {
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  setFixedWidth(368);
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  int currentChannelIndex = 0;
Shinya Kitaoka 120a6e
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  QVBoxLayout *mainLayout = new QVBoxLayout(this);
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  mainLayout->setMargin(0);
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  mainLayout->setSpacing(0);
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Shinya Kitaoka 120a6e
  QStringList channels;
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  channels << "RGBA"
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           << "RGB"
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           << "Red"
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           << "Green"
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           << "Blue"
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           << "Alpha";
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  int channelCount = channels.size();
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  // lista canali: label+comboBox
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  QWidget *channelListWidget     = new QWidget(this);
Shinya Kitaoka 120a6e
  QHBoxLayout *channelListLayout = new QHBoxLayout(channelListWidget);
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  channelListLayout->setMargin(0);
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  channelListLayout->setSpacing(0);
Shinya Kitaoka 120a6e
  QLabel *channelLabel = new QLabel(tr("Channel:"), channelListWidget);
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  channelListLayout->addWidget(channelLabel);
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  m_channelListChooser = new QComboBox(channelListWidget);
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  m_channelListChooser->setFixedSize(100, 20);
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  m_channelListChooser->addItems(channels);
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  m_channelListChooser->setCurrentIndex(currentChannelIndex);
Shinya Kitaoka 120a6e
  channelListLayout->addWidget(m_channelListChooser);
Shinya Kitaoka 120a6e
  channelListWidget->setLayout(channelListLayout);
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  mainLayout->addWidget(channelListWidget, 0, Qt::AlignCenter);
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  // stack widget dei grafi
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  m_toneCurveStackedWidget = new QStackedWidget(this);
Shinya Kitaoka 120a6e
  Histograms *histograms   = new Histograms(0, true);
Shinya Kitaoka 120a6e
  fxHistogramRender->setHistograms(histograms);
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  int i;
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  for (i = 0; i < channelCount; i++) {
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    ChennelCurveEditor *c =
Shinya Kitaoka 120a6e
        new ChennelCurveEditor(this, histograms->getHistogramView(i));
Shinya Kitaoka 120a6e
    m_toneCurveStackedWidget->addWidget(c);
Shinya Kitaoka 120a6e
    connect(c, SIGNAL(firstLastXPostionChanged(int, int)), this,
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            SLOT(onFirstLastXPostionChanged(int, int)));
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  }
Shinya Kitaoka 120a6e
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  QWidget *w          = new QWidget(this);
Shinya Kitaoka 120a6e
  QHBoxLayout *layout = new QHBoxLayout(w);
Shinya Kitaoka 120a6e
  layout->setMargin(0);
Shinya Kitaoka 120a6e
  layout->setSpacing(0);
Shinya Kitaoka 120a6e
  layout->addWidget(m_toneCurveStackedWidget);
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  w->setLayout(layout);
Shinya Kitaoka 120a6e
  mainLayout->addWidget(w, 0, Qt::AlignHCenter);
Shinya Kitaoka 120a6e
  m_toneCurveStackedWidget->setCurrentIndex(currentChannelIndex);
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  // stack widget degli slider
Shinya Kitaoka 120a6e
  m_sliderStackedWidget = new QStackedWidget(this);
Shinya Kitaoka 120a6e
  for (i = 0; i < channelCount; i++) {
Shinya Kitaoka 120a6e
    IntPairField *intPairSlider = new IntPairField(this);
Shinya Kitaoka 120a6e
    intPairSlider->setFixedHeight(20);
Shinya Kitaoka 120a6e
    intPairSlider->setLabelsEnabled(false);
Shinya Kitaoka 120a6e
    intPairSlider->setRange(0, 255);
Shinya Kitaoka 120a6e
    intPairSlider->setValues(std::make_pair(0, 255));
Shinya Kitaoka 120a6e
    m_sliderStackedWidget->addWidget(intPairSlider);
Shinya Kitaoka 120a6e
    connect(intPairSlider, SIGNAL(valuesChanged(bool)), this,
Shinya Kitaoka 120a6e
            SLOT(sliderValueChanged(bool)));
Shinya Kitaoka 120a6e
  }
Shinya Kitaoka 120a6e
  mainLayout->addWidget(m_sliderStackedWidget);
Shinya Kitaoka 120a6e
  m_sliderStackedWidget->setCurrentIndex(currentChannelIndex);
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  mainLayout->addSpacing(10);
Shinya Kitaoka 120a6e
  m_isLinearCheckBox = new CheckBox(QString("Linear"), this);
Shinya Kitaoka 120a6e
  mainLayout->addWidget(m_isLinearCheckBox, 0, Qt::AlignHCenter);
Shinya Kitaoka 120a6e
  connect(m_isLinearCheckBox, SIGNAL(clicked(bool)),
Shinya Kitaoka 120a6e
          SLOT(setLinearManually(bool)));
Shinya Kitaoka 120a6e
  connect(m_isLinearCheckBox, SIGNAL(toggled(bool)), SLOT(setLinear(bool)));
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  connect(m_channelListChooser, SIGNAL(currentIndexChanged(int)),
Shinya Kitaoka 120a6e
          m_toneCurveStackedWidget, SLOT(setCurrentIndex(int)));
Shinya Kitaoka 120a6e
  connect(m_channelListChooser, SIGNAL(currentIndexChanged(int)),
Shinya Kitaoka 120a6e
          m_sliderStackedWidget, SLOT(setCurrentIndex(int)));
Shinya Kitaoka 120a6e
  connect(m_channelListChooser, SIGNAL(currentIndexChanged(int)), this,
Shinya Kitaoka 120a6e
          SIGNAL(currentChannelIndexChanged(int)));
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
  setLayout(mainLayout);
Toshihiro Shimizu 890ddd
}
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
//-----------------------------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
void ToneCurveField::setCurrentChannel(int currentChannel) {
Shinya Kitaoka 120a6e
  m_channelListChooser->setCurrentIndex(currentChannel);
Toshihiro Shimizu 890ddd
}
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
//-----------------------------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
ChennelCurveEditor *ToneCurveField::getChannelEditor(int channel) const {
Shinya Kitaoka 120a6e
  ChennelCurveEditor *c = dynamic_cast<chennelcurveeditor *="">(</chennelcurveeditor>
Shinya Kitaoka 120a6e
      m_toneCurveStackedWidget->widget(channel));
Shinya Kitaoka 120a6e
  assert(c);
Shinya Kitaoka 120a6e
  return c;
Toshihiro Shimizu 890ddd
}
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
//-----------------------------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
ChennelCurveEditor *ToneCurveField::getCurrentChannelEditor() const {
Shinya Kitaoka 120a6e
  return getChannelEditor(m_toneCurveStackedWidget->currentIndex());
Toshihiro Shimizu 890ddd
}
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
//-----------------------------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
IntPairField *ToneCurveField::getCurrentSlider() const {
Shinya Kitaoka 120a6e
  return dynamic_cast<intpairfield *="">(m_sliderStackedWidget->currentWidget());</intpairfield>
Toshihiro Shimizu 890ddd
}
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
//-----------------------------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
void ToneCurveField::sliderValueChanged(bool isDragging) {
Shinya Kitaoka 120a6e
  std::pair<int, int=""> values = getCurrentSlider()->getValues();</int,>
Shinya Kitaoka 120a6e
  getCurrentChannelEditor()->setFirstLastXPosition(values, isDragging);
Toshihiro Shimizu 890ddd
}
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
//-----------------------------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
void ToneCurveField::onFirstLastXPostionChanged(int x0, int x1) {
Shinya Kitaoka 120a6e
  std::pair<int, int=""> values = getCurrentSlider()->getValues();</int,>
Shinya Kitaoka 120a6e
  if (values.first != x0 || values.second != x1)
Shinya Kitaoka 120a6e
    getCurrentSlider()->setValues(std::make_pair(x0, x1));
Toshihiro Shimizu 890ddd
}
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
//-----------------------------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
void ToneCurveField::setIsLinearCheckBox(bool isChecked) {
Shinya Kitaoka 120a6e
  if (m_isLinearCheckBox->isChecked() == isChecked) return;
Shinya Kitaoka 120a6e
  m_isLinearCheckBox->setChecked(isChecked);
Toshihiro Shimizu 890ddd
}
Toshihiro Shimizu 890ddd
Toshihiro Shimizu 890ddd
//-----------------------------------------------------------------------------
Toshihiro Shimizu 890ddd
Shinya Kitaoka 120a6e
void ToneCurveField::setLinear(bool isLinear) {
Shinya Kitaoka 120a6e
  int i;
Shinya Kitaoka 120a6e
  for (i = 0; i < m_sliderStackedWidget->count(); i++)
Shinya Kitaoka 120a6e
    getChannelEditor(i)->setLinear(isLinear);
Shinya Kitaoka 120a6e
}
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
//-----------------------------------------------------------------------------
Shinya Kitaoka 120a6e
Shinya Kitaoka 120a6e
void ToneCurveField::setLinearManually(bool isLinear) {
Shinya Kitaoka 120a6e
  emit isLinearChanged(isLinear);
Toshihiro Shimizu 890ddd
}