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-rw-r--r--src/gui/graphicsview/qgraphicsanchorlayout_p.cpp49
-rw-r--r--src/gui/graphicsview/qgraphicsanchorlayout_p.h6
2 files changed, 26 insertions, 29 deletions
diff --git a/src/gui/graphicsview/qgraphicsanchorlayout_p.cpp b/src/gui/graphicsview/qgraphicsanchorlayout_p.cpp
index 95922ca..318ce20 100644
--- a/src/gui/graphicsview/qgraphicsanchorlayout_p.cpp
+++ b/src/gui/graphicsview/qgraphicsanchorlayout_p.cpp
@@ -2443,17 +2443,13 @@ void QGraphicsAnchorLayoutPrivate::interpolateEdge(AnchorVertex *base,
// Process child anchors
if (edge->type == AnchorData::Sequential)
- interpolateSequentialEdges(edge->from,
- static_cast<SequentialAnchorData *>(edge),
- orientation);
+ interpolateSequentialEdges(static_cast<SequentialAnchorData *>(edge), orientation);
else if (edge->type == AnchorData::Parallel)
- interpolateParallelEdges(edge->from,
- static_cast<ParallelAnchorData *>(edge),
- orientation);
+ interpolateParallelEdges(static_cast<ParallelAnchorData *>(edge), orientation);
}
void QGraphicsAnchorLayoutPrivate::interpolateParallelEdges(
- AnchorVertex *base, ParallelAnchorData *data, Orientation orientation)
+ ParallelAnchorData *data, Orientation orientation)
{
// In parallels the boundary vertices are already calculate, we
// just need to look for sequential groups inside, because only
@@ -2461,40 +2457,43 @@ void QGraphicsAnchorLayoutPrivate::interpolateParallelEdges(
// First edge
if (data->firstEdge->type == AnchorData::Sequential)
- interpolateSequentialEdges(base,
- static_cast<SequentialAnchorData *>(data->firstEdge),
+ interpolateSequentialEdges(static_cast<SequentialAnchorData *>(data->firstEdge),
orientation);
else if (data->firstEdge->type == AnchorData::Parallel)
- interpolateParallelEdges(base,
- static_cast<ParallelAnchorData *>(data->firstEdge),
+ interpolateParallelEdges(static_cast<ParallelAnchorData *>(data->firstEdge),
orientation);
// Second edge
if (data->secondEdge->type == AnchorData::Sequential)
- interpolateSequentialEdges(base,
- static_cast<SequentialAnchorData *>(data->secondEdge),
+ interpolateSequentialEdges(static_cast<SequentialAnchorData *>(data->secondEdge),
orientation);
else if (data->secondEdge->type == AnchorData::Parallel)
- interpolateParallelEdges(base,
- static_cast<ParallelAnchorData *>(data->secondEdge),
+ interpolateParallelEdges(static_cast<ParallelAnchorData *>(data->secondEdge),
orientation);
}
void QGraphicsAnchorLayoutPrivate::interpolateSequentialEdges(
- AnchorVertex *base, SequentialAnchorData *data, Orientation orientation)
+ SequentialAnchorData *data, Orientation orientation)
{
- AnchorVertex *prev = base;
+ // This method is supposed to handle any sequential anchor, even out-of-order
+ // ones. However, in the current QGAL implementation we should get only the
+ // well behaved ones.
+ Q_ASSERT(data->m_edges.first()->from == data->from);
+ Q_ASSERT(data->m_edges.last()->to == data->to);
- // ### I'm not sure whether this assumption is safe. If not,
- // consider that m_edges.last() could be used instead (so
- // at(0) would be the one to be treated specially).
- Q_ASSERT(base == data->m_edges.at(0)->to || base == data->m_edges.at(0)->from);
+ // At this point, the two outter vertices already have their distance
+ // calculated.
+ // We use the first as the base to calculate the internal ones
+
+ AnchorVertex *prev = data->from;
- // Skip the last
for (int i = 0; i < data->m_edges.count() - 1; ++i) {
- AnchorData *child = data->m_edges.at(i);
- interpolateEdge(prev, child, orientation);
- prev = child->to;
+ AnchorData *edge = data->m_edges.at(i);
+ interpolateEdge(prev, edge, orientation);
+
+ // Use the recently calculated vertex as the base for the next one
+ const bool edgeIsForward = (edge->from == prev);
+ prev = edgeIsForward ? edge->to : edge->from;
}
// Treat the last specially, since we already calculated it's end
diff --git a/src/gui/graphicsview/qgraphicsanchorlayout_p.h b/src/gui/graphicsview/qgraphicsanchorlayout_p.h
index 8d77b1a..d8e62b4 100644
--- a/src/gui/graphicsview/qgraphicsanchorlayout_p.h
+++ b/src/gui/graphicsview/qgraphicsanchorlayout_p.h
@@ -475,10 +475,8 @@ public:
void calculateVertexPositions(Orientation orientation);
void setupEdgesInterpolation(Orientation orientation);
void interpolateEdge(AnchorVertex *base, AnchorData *edge, Orientation orientation);
- void interpolateSequentialEdges(AnchorVertex *base, SequentialAnchorData *edge,
- Orientation orientation);
- void interpolateParallelEdges(AnchorVertex *base, ParallelAnchorData *edge,
- Orientation orientation);
+ void interpolateSequentialEdges(SequentialAnchorData *edge, Orientation orientation);
+ void interpolateParallelEdges(ParallelAnchorData *edge, Orientation orientation);
// Linear Programming solver methods
bool solveMinMax(const QList<QSimplexConstraint *> &constraints,