Picking a sheet (folio) background colour in the diagram editor was lost
on every restart. Diagram::background_color is a static initialised to
white and PaletteGraphicsView's s_custom_bg a static bool, and neither
was ever written anywhere -- Diagram::toXml() carries no colour attribute
either -- so closing and reopening a project always came back on the
default and the choice had to be made again.
Store it in QSettings under diagrameditor/sheet_background_* as a pair of
values rather than one: the colour, and whether it was picked explicitly.
Both halves are needed. "#ffffff, follow the system" and "#ffffff, always
white" are the same colour and two behaviours -- the first is what the
views invert on a dark palette -- so keeping only the colour would
silently turn one into the other on the next start, which is the reported
problem one step removed.
The colour is written as HexRgb on purpose. The SVG export gives
Diagram::background_color an alpha of 0 to render a transparent
background and never puts it back, and that transient value must not be
persisted as a permanently transparent sheet.
Applied from main() after the headless export and scripting branch -- those
return before reaching it and must keep rendering on plain white, the rule
ProjectPrintWindow already enforces for printing -- and before QETApp is
constructed, since that constructor already loads the projects given on
the command line. The GUI export dialog is left alone: it renders through
drawBackground(), so what you see is what you export, as it already was
within a session.
Saved at the moment the colour is applied rather than at shutdown, so
neither the print window's temporary white nor the SVG export's alpha can
reach it. The button's constructor now mirrors the stored state instead of
always claiming "system colour", and the "recently used" list is stored
alongside it.
Covered by tst_sheetbackgroundsetting, which pins the custom flag and the
dropped alpha -- the two rules a single stored colour would lose.
A script reaches the whole project and, through the export calls, the
filesystem. That is a capability most people installing an electrical CAD
program never asked for, and leaving it on by default hands it to them
anyway. So QET_HAS_SCRIPTING builds now ship with it switched off.
QetSettings::scriptingEnabled() is the single answer, read by all three
places that need it, with QET_ENABLE_SCRIPTING=1 overriding the stored
value. The override is not decoration: a CI job or a batch run has no
dialog to tick, and a machine whose HOME is created fresh for each run has
nowhere to keep the setting either. It beats a stored "false" on purpose,
so a box unticked once cannot lock a build server out of --run for good.
Only the exact value "1" counts.
--run refuses with exit 3 and a message naming both ways in.
Projet > Exécuter un script... asks once, and turns the setting on if
the answer is yes. Asking beats grey: a disabled menu
entry says something exists and nothing about how to have
it, and this is the pattern people already know from
macro security in office software.
Configurer QElectroTech > Général > Projets has the checkbox, for
turning it back off. While the environment forces
scripting on, the box is disabled and says why, and
applyConf() then leaves the stored value alone rather
than quietly overwriting it.
runOnProject() checks as well, after both callers have. It is the one
function that actually evaluates JavaScript, so it is the one place a
future caller cannot forget to ask; the callers check first only to give a
better answer than it can.
Verified on the built binary, all four states, with an isolated HOME:
stored env result
absent - refused, exit 3
true - script runs, exit 0
false - refused, exit 3
false 1 script runs, exit 0
tst_scriptingsetting covers the same matrix hermetically, in its own
QSettings scope, and was mutation-checked: flipping the default to true
turns defaultsToOff() red.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
ConductorCreator inserts a conductor and only afterwards calls
refreshText(), which resolves the auto-numbering formula into
properties.text. The project database inserted its row while text was
still the raw formula, and refreshText() writes the resolved text
without emitting propertiesChange -- the signal the database listens
for -- so nothing corrects the row.
Measured: with a conductor auto-numbering "W%sequ_1" selected, two
wired conductors read W1 and W2 on the live objects and in the saved
file, but "W%sequ_1" and "W%sequ_1" in conductor.text and in
wiring_list_view.wire_number. A full updateDB() corrects it, so the
data was right and only the cache was stale. Anything that reads the
database between creating a conductor and the next rebuild -- the
wiring list, a BOM export, a custom query -- sees the formula, not the
number.
Update the row after refreshText(). The row change deliberately emits no
dataBaseUpdated(), as updateConductor() already documents, so this adds
no model re-queries.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
The scripting API (bugtracker #162) could place an element and move it,
and could count conductors but not make one. So a script could put a
coil and a motor on a folio and had no way to connect them, which is
most of what drawing is. This adds the missing verbs:
addConductor() wire terminal i of one element to terminal j of another
rotateElement()
setElementInfo() any information key
setElementLabel() the label key, by name, since it is the one people want
addFolio()
setFolioTitle()
elementUuids() what is on this folio
elementName()
elementTerminals() which terminal index is which, before wiring it
Each goes through the command the GUI already uses, so a script's edits
undo like manual ones and reach the project database the same way:
ConductorCreator (the drag-a-rectangle-over-terminals path, which is
what makes a new conductor inherit an existing potential's properties
and join auto-numbering), ChangeElementInformationCommand,
QETProject::addNewDiagram(), ChangeTitleBlockCommand. rotateElement()
pushes the same QPropertyUndoCommand on "rotation" that
RotateSelectionCommand pushes for an Element, rather than
RotateSelectionCommand itself, which works on the diagram's selection
and would mean rewriting the user's selection to rotate one element.
Terminals are addressed by index, not uuid. Terminal::uuid() is a
property of the catalog .elmt definition: empty for most of the
installed base, and where present, identical across every instance of
that element -- two coils of the same type placed side by side have
byte-identical terminal uuids, so a uuid cannot say which coil's A1 is
meant. elementTerminals() exists so a script can see the indexing
instead of guessing it.
The one real hazard is that ConductorCreator asks the user which
potential to inherit from when the two terminals sit on two different
existing ones, and it asks with a plain modal QDialog that
QET::QetMessageBox's non-interactive mode does not cover -- so under
headless --run there is nobody to answer and the call never returns.
Measured: with the check removed, that one call hangs until killed;
with it, it declines in 0.4 s. addConductor() therefore refuses that
case, the same way and for the same reason addElement() already refuses
the import-conflict dialog.
To make that check without duplicating the condition, existingPotential()
becomes static over an explicit terminal list and ConductorCreator gains
a public needsPotentialChoice() predicate. Behaviour of the GUI path is
unchanged; setUpPropertieToUse() passes m_terminals_list to the same code
it called before.
Verified headlessly against a copy of examples/ArduinoLCD.qet: new folio
titled, two coils placed, wired, labelled, an info key set and the
element rotated; saved, reloaded, and the conductor, label, title and
rotation (persisted as orientation="1") all read back. Re-saving the
result is byte-identical. qet-lint clean on the generated project;
qet-coherence-check clean on it and on the 24-project example corpus,
and shown to report 9 findings on a deliberately broken copy of the same
file, so the clean result discriminates. Qt 6.10.2, ctest identical to
master (the 61 failures are the vendored KDE ECM suite, present on both).
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Another exception: one non-converted code path in projectprintwindow.cpp to be followed-up.
One issue found in the Qt6 code path of diagramview.cpp which has been fixed.
DialogWaiting pumps the event loop while the folios of a project are
built, so a second openAndAddProject() can run to completion nested
inside the first one (drop on another editor window, queued open) and
the plain reset/read counters would then report the wrong numbers.
Replace them with a RAII counting window (FontRestorationScope): the
constructor keeps the enclosing counts aside, the destructor restores
them. The nesting is strictly LIFO - the nested load completes inside
the pump of the outer one - so each load reports exactly its own
numbers, and the early-return paths of openAndAddProject() restore the
outer window automatically.
Suggested by ispyisail in the review of the reporting change.
Until now a font description that could not be parsed only produced
console warnings most users never see, so nobody learned that their
texts silently lost their formatting (see the reports in issue #553).
Count in QETUtils::fontFromString() how many descriptions were salvaged
from a foreign or corrupt format and how many stayed unreadable, and
show a message box after opening a project when either happened:
salvaged descriptions are rewritten in the stable format on the next
save, unreadable ones fall back to the default font. Projects without
font issues open exactly as before, and non-interactive opens only log
the counters.
Verified with a Qt 5.15 build on a project carrying 52 19-field and
one 21-field description: the dialog reports 53 restored descriptions;
the same file on a Qt 6.11 build (which parses those formats natively)
shows no dialog.
See issue #553.
PotentialSelectorDialog::chosenProperties() built an OK-only dialog
and discarded exec()'s return value entirely:
dialog.exec();
for (QRadioButton *b : H.keys()) {
if (b->isChecked()) return H.value(b);
}
return ConductorProperties();
Escape and the window close button already trigger QDialog::reject()
on a plain QDialog, but since the result was never checked, dismissing
the dialog without picking anything just silently returned blank
ConductorProperties() -- the same value returned when a real potential
was chosen but happened to produce empty properties. There was no way
to distinguish "the user cancelled" from "the user chose an empty
potential", so the caller always proceeded as if a choice had been
made.
Add a real Cancel button, check dialog.exec() == QDialog::Accepted,
and report cancellation through a new optional `bool *cancelled`
out-parameter. Also pre-select the first entry, closing a related gap
where clicking OK without ever touching a radio button hit the exact
same "silently returns blank properties" failure mode.
Thread the result through ConductorCreator::setUpPropertieToUse()
(now returning bool) so the calling constructor aborts and creates no
conductors at all when the user cancels, instead of proceeding with
blank properties.
The sibling constructor-based PotentialSelectorDialog (used for
conductor/report potential linking, a separate flow) already gates its
side effects behind on_buttonBox_accepted(), so cancelling it was
already safe -- gave it a visible Cancel button too for consistency
while touching this file, no behavior change there.
Verified with real Qt event simulation (QTest::mouseClick/keyClick)
against the exact new dialog-building logic: clicking Cancel and
pressing Escape both correctly report cancellation with empty
properties; clicking OK untouched returns the pre-selected first
entry; selecting the second option then OK returns that selection.
See discussion #581.
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
QFont::fromString() of Qt 5.x and Qt <= 6.10 rejects the >= 19 field
descriptions QFont::toString() emits since Qt 6.11, silently leaving a
broken font at every read site. Add QETUtils::fontFromString(): try the
native parser first, and on failure re-compose the legacy 10/11 field
form from the known Qt 6.11 field layout (OpenType weight mapped back
to the legacy scale) so no font information stored in existing files is
lost. Also salvage the 21 field double-serialized descriptions left
behind by some historical builds (a complete legacy description
embedded as the family name of a second one) by taking the embedded
leading description, matching what the lenient parser of Qt 6.11+
resolves them to. All font read sites now go through the helper; on
failure the default font of the caller is left untouched instead of a
cleared family.
Verified end to end on a Qt 5.15 build: a project whose 53 font
attributes were rewritten into the 19 field Qt 6.11 format loads and
autosaves byte-identical to the original legacy file (family, sizes,
bold/italic/underline, style name all preserved), and a mixed file
containing the exact 21 field string from the issue comes back
normalized as "Caladea,9,-1,5,75,1,0,0,0,0,Bold Italic".
See issue #553.
QFont::toString() is not stable across Qt versions: Qt 6.11 switched to
a 19-field format carrying OpenType weights, which QFont::fromString()
of Qt 5.x and Qt <= 6.10 rejects, leaving a broken font. Projects saved
by a Qt 6.11+ build were therefore unreadable by older builds.
Add QETUtils::fontToString() composing the legacy 10/11-field
description (weight mapped back to the legacy scale with the same
closest-match table Qt uses when parsing) and use it at every site that
stores a font description in a project, element, table config or
settings file. Every Qt version from 5.15 through 6.12-beta parses this
form correctly, so files stay readable by every QET build in
circulation.
See issue #553.
Add a little function used to convert if needed the size of a font set
in dpi to pixel. Because the conversion from pdi to pixel can't
be exactly identical, the text size in the diagram can be a little
different, in the other side the switch between screens with different
dpi is no more a problem.
clazy is a compiler plugin which allows clang to understand Qt
semantics. You get more than 50 Qt related compiler warnings, ranging
from unneeded memory allocations to misusage of API, including fix-its
for automatic refactoring.
https://invent.kde.org/sdk/clazy
* master:
BugFix : default element collection path is wrong
snap: Remove framework snap prompt
Update translation and add cn chinese ts files
Danish translation updated
Danish translation
Danish translation
Add new thumbnail element
Flatpak add --share=network
Flatpak : add --socket=cups see :
https://github.com/flathub/org.libreoffice.LibreOffice/issues/90
Graphics item handler is bigger when overred
Add toolbar widget for edit size of handler in diagram editor.
Fix Multiple translation in elements
Fix Multiple translation in elements
Fix segfault.
new Analog-In - Module
cleanup and upgraded elements
modified: lang/qet_nl.qm modified: lang/qet_nl.ts
Add Russian translation, thanks "А.Разживин"
little modification in hungarian language
Fixed typo
Add a combo box in the tool bar of diagram editor
to quickly change the size of the graphics handler item.
The sarto commit :D
NOTE
only available for diagram editor, element editor will
come later.