The earlier commit changed MasterElement::isFull() to compare the
contacts in use against max_slaves. That was wrong, and this restores
the original comparison against the number of linked elements.
max_slaves is a number of slots, not of contacts:
- it sizes the contact group table in the element editor, one row per
slot (ElementPropertiesEditorWidget::populateSlaveGroupsTable)
- a group must match the slave's own contact count before it can be
chosen, so a 4 pole slave needs a group declaring 4 and occupies
that single group (ContactGroupSelectionDialog)
- each slave stores exactly one group index
(Element::setGroupIndexForElement)
So a coil declaring 4 slots accepts 4 slaves, whatever their pole
count. Counting contacts made one 4 pole slave fill a 4 slot coil on
its own and refuse three further links that should have been allowed.
ContactUsage stays, and its per-type tally is still what the General
tab needs: how many contacts an auxiliary block must provide is a
different question from how many slots are occupied, and only the
former wants the pole multiplier. The header now says so.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
MasterElement::isFull() decided whether a coil had room left with
connected_elements.size() >= max_slaves
which counts linked *elements*. A slave stands for as many contacts as
its "number" kind information declares, so a 4 pole contact consumed a
single contact from the coil's budget instead of four. 36 elements in
the standard collection declare a number between 2 and 4, so this is
reachable, not theoretical.
Add ContactUsage, a header-only tally holding the two rules that are
easy to get wrong:
- a slave counts once per contact it declares, not once per element
- a changeover is counted once, as sw, and never as one NO plus one
NC. CrossRefItem::NOElements() and NCElements() both return
changeovers, so a count built by adding those two lists together
reports one changeover as two contacts.
The upcoming per-type displays (the used count in the element's General
tab, and the per-type budget on the cross reference) need exactly this
count, so it lives in one place rather than being written out three
times, and isFull() now reads it too.
The header carries no graphics dependency, so the counting rules are
unit tested on their own in tests/qttest/tst_contactusage.cpp,
following the same pattern as diagramsortkeys.h.
Verified: all 9 unit tests pass, and both rules were mutation checked
(counting elements instead of contacts fails 2 tests, counting a
changeover as both NO and NC fails 3). The 23 example projects still
load and export without crash or hang, and qet-lint reports no
regressions against its baseline.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
ClickableImageLabel::mousePressEvent() calls pixmap().isNull() and
pixmap().width(). That is the Qt6 signature; in Qt5 QLabel::pixmap()
returns const QPixmap * and the code does not compile:
error: request for member 'isNull' in '...QLabel::pixmap()',
which is of pointer type 'const QPixmap*'
CMakeLists.txt defaults QT_VERSION_MAJOR to 5 when it is not specified,
so a default configuration of master has not built since 6b577ee75.
Read the pixmap once into a local, guarded the way the rest of the
codebase handles this split, which also drops four repeated pixmap()
calls in the same expression.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Follow-up to the positionKey() fix merged directly in #779
(b2f4ef5d2): per review request, add a small regression test so this
class of bug (fixed-precision "%.4f" formatting compares out of
numeric order once the integer part's digit count differs) can't
silently reappear.
positionKey()/coordinateKey() move out of diagram.cpp's anonymous
namespace into a small header-only diagramsortkeys.h so the test can
link against the exact same code Diagram::toXml() uses, instead of
duplicating the algorithm. Behavior is unchanged.
tst_diagramsortkeys covers: single- vs double-digit, double- vs
triple-digit, negative-vs-negative, negative-vs-positive, and
negative-vs-zero coordinate pairs, plus sub-precision deltas.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
update instead of the image a placeholder box is drawn and a warning is given during export.
Current dxf version is extremely old and does not support any image embedding. Future possible
update is the introduction of a newer dxf version export option which would allow to embed a link to an external
image file.
Plain fixed-precision formatting ("%.4f") produces strings that don't
compare in numeric order once the integer part has a different digit
count -- e.g. "15.0000" sorts before "5.0000" as text, even though
15 > 5. That silently broke the determinism goal of this branch for
any diagram with coordinates spanning more than one digit width.
Shift into a non-negative range and zero-pad to a fixed width instead,
so the formatted string sorts the same way the number does, including
negative values.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Each cascade delete (element_info/terminal/conductor/element) only
logged its error and fell through to the next query regardless, so a
mid-cascade failure (e.g. a locked DB) still let the diagram row get
deleted while its child rows survived -- the same inconsistency this
branch set out to fix, just via a different failure path. Wrap the
cascade in a transaction and roll back + bail on the first failed
exec(), matching the existing transaction pattern in updateDB().
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Mirror (M) and Flip (F) in the element editor reflected the selected
parts across the element origin: every part's mirror() and flip()
negated the scene x or y coordinate. A part drawn to the right of the
origin landed the same distance to the left, so the selection jumped
to the other side of the canvas instead of turning around.
MirrorElementsCommand and FlipElementsCommand now compute the united
scene bounding rectangle of the selected items and reflect across the
vertical or horizontal line through its center. The center is snapped
to the nearest half of the diagram grid, so points that were on the
grid stay on the grid after the reflection. Terminals in particular
keep their grid alignment.
Each part's mirror() and flip() takes the axis coordinate as a
parameter with a default of 0, so the previous behavior remains
available to any other caller. The command stores the axis when it is
created and undo reapplies the same reflection, which is its own
inverse, so the existing undo path is unchanged.
Parts covered: PartArc, PartDynamicTextField, PartEllipse, PartLine,
PartPolygon, PartRectangle, PartTerminal, PartText.
Fixes#812
Shapes and images can now be resized, rotated, and skewed directly
on the canvas, not just moved. Both share one small transform
struct (rotation, then skew, then scale, anchored on a movable
pivot) and one handle widget, so a corner drag, an edge skew, or
grabbing the rotate handle behaves the same way and runs through
the same matrix math everywhere, instead of every item type
reinventing its own.
Shapes also gained a proper pen tool (bezier paths, corner/smooth/
symmetric nodes), arc support, and mirroring. Images gained
non-destructive cropping and colour-keyed transparency, both
remember their own settings, so reopening the dialog picks up
where you left off instead of starting over.
Properties dialogs for both were extended to match (position,
size, angle, skew), with undo/redo wired through for every handle
drag.
Old XML files can read easily as the transformation is only added
if needed and the old syntax is still used and understood if it is
not needed.
1. Drop dead prepareGeometryChange()/update() calls in
setPotential(), split unrelated terminaleditor.h re-indent into its
own change
2. Removed: setPotential() had prepareGeometryChange()/update() left over from
the label-display mechanism that was dropped before this PR
New QLineEdit (m_potential_le) between Type and Nom: an optional,
symbol-author-chosen grouping identifier shared by terminals that
belong to the same physical terminal within a multi-terminal block.
Stored as TerminalData::m_potential (new field, persisted as the
"potential" XML attribute, empty by default).
Used by relatedPotentialTerminal() in terminal.cpp: when
potential_isolating is enabled on a Terminal-type element, terminals
sharing a non-empty, matching potential value now stay electrically
linked to each other instead of every terminal in the block being
isolated from every other one.
Tooltip on the field for explanation
Elements already inherited QetGraphicsItem::isMovable()/setMovable() --
the same mechanism images and drawn shapes use for their "lock position"
checkbox -- but nothing exposed it in the element properties panel, and
Element::toXml()/fromXml() never persisted it.
- ElementPropertiesWidget::generalWidget(): add a "Verrouiller la
position" checkbox mirroring ShapeGraphicsItemPropertiesWidget's
m_lock_pos_cb, toggling the element's inherited setMovable().
- Element::toXml()/fromXml(): persist is_movable, same attribute name
and default-true behavior as DiagramImageItem/QetShapeItem.
Verified via headless --resave round-trip: is_movable="0" survives
load -> save unchanged, existing elements without the attribute default
to movable.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01HdWpDp3TrPKbHnv7YUcNJj
DiagramView::zoom() had the same unbounded scale() as the element editor:
a held scroll-wheel zoom could overflow the view transform. Clamp the
resulting scale to [m_min_zoom, m_max_zoom] before applying it.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01HdWpDp3TrPKbHnv7YUcNJj
ElementView applied scale() on every wheel notch with no bound on the
resulting view transform. Held down, the scroll-wheel zoom drives the
transform scale (m11) to floating-point overflow; the transform becomes
non-invertible, mapToScene() returns NaN and the next background paint
aborts the editor ("program closes completely" as reported on Windows).
Route zoomIn/zoomOut/zoomInSlowly/zoomOutSlowly through a new
scaleClamped() helper that only applies the scale while the result stays
within [m_min_zoom, m_max_zoom] (0.1 .. 200). Behaviour within that range
is unchanged.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01HdWpDp3TrPKbHnv7YUcNJj
Qt6's QFont::setWeight() now takes a QFont::Weight enum instead of
a raw int, so uic-generated code from the old <weight>75/50</weight>
XML properties fails to compile (worked on GCC via -fpermissive,
but hard error on Apple Clang for the macOS build).
<bold> is already set on all affected widgets, so <weight> was
redundant and can be dropped without any visual change.
QETProject::removeDiagram() detaches a diagram from m_diagrams_list and
schedules it via deleteLater(), but that deferred delete only runs on
a future event-loop iteration. If ~QETProject() runs first (e.g. a
CLI/headless caller with no event loop, or a project closed
immediately after removeDiagram()), the diagram is still a QObject
child of the project and gets destroyed later by QObject's own
automatic child cleanup -- which runs after m_data_base has already
been torn down as a plain C++ member. Diagram::~Diagram() calls back
into dataBase()->removeElement() for each of its elements, so that
ordering is a use-after-free (SIGSEGV in QSqlResult::exec()).
Delete any such still-parented diagrams synchronously in ~QETProject()
while m_data_base is still alive, before the base QObject destructor
runs. Any deleteLater() event that does eventually fire afterward is a
safe no-op on an already-deleted QObject.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>