Files
qelectrotech-source-mirror/sources/scripting/qetscriptapi.cpp
T
ispyisail 46c35d2297 Let a script query the project database
Every structural question this API could answer, it answered by walking
live objects. The project builds a SQLite database that already knows
most of them, and nothing outside the application could reach it.

  tables()      what is queryable, tables and views
  query(sql)    rows, one object per row
  queryError()  why the last one returned nothing

This is not a new door. QElectroTech already ships a "Requête SQL
personnalisée" box in the element-query dialog where a user types
arbitrary SQL, guarded by projectDataBase::isReadOnlySelect(); query()
goes through projectDataBase::newQuery(), which applies that same rule
and returns the same rejection message. A script gets what a user
already has, and neither can write: DELETE, UPDATE and a chained
"SELECT 1; DROP TABLE" are all refused before reaching SQLite.

An empty result and a failure are told apart. query() returns no rows
for both, so queryError() carries the reason -- a refusal, or SQLite's
own message for a bad column -- and is empty when the query simply
matched nothing. Conflating those is how a silent typo in a column name
becomes "there are no such elements".

No updateDB() before querying, and that is a measured decision rather
than an omission. A script that has just edited something is the
expected caller, so a stale cache was the obvious hazard; but
projectDataBase maintains itself incrementally through addElement(),
elementInfoChanged(), addConductor() and the rest, which the undo
commands behind every edit already call. Tested both ways on the cases
most likely to go stale -- an element added and labelled, a conductor
property changed -- each queried immediately afterwards through both the
table and the view. Identical counts with the rebuild and without it,
and updateDB() repopulates every table, so calling it per query would
have been real cost for no benefit. The comment says so, so it is not
added back on the assumption it must be needed.

The views are the surface to depend on: element_nomenclature_view,
project_summary_view and wiring_list_view exist to be queried. The
tables are how the cache is arranged today and a column may move --
which is why tables() lists both and the header says which is which.

Verified against examples/industrial.qet, the largest shipped project:
618 elements counted, the busiest wire numbers ranked (0VDC 93 times,
24V2 64), and duplicate element labels found by GROUP BY ... HAVING --
V6 seven times, V5 six -- which is a design-rule question no tool here
could previously ask. Qt 6.10.2, ctest matches master.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-09-21 19:14:53 +12:00

1376 lines
49 KiB
C++

/*
Copyright 2006-2026 The QElectroTech Team
This file is part of QElectroTech.
QElectroTech is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 2 of the License, or
(at your option) any later version.
QElectroTech is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with QElectroTech. If not, see <http://www.gnu.org/licenses/>.
*/
#include "qetscriptapi.h"
#include "../ElementsCollection/elementslocation.h"
#include "../QPropertyUndoCommand/qpropertyundocommand.h"
#include "../cli_export.h"
#include "../diagram.h"
#include "../diagramcontent.h"
#include "../diagramview.h"
#include "../factory/elementfactory.h"
#include "../qet.h"
#include "../qetgraphicsitem/element.h"
#include "../qetmessagebox.h"
#include "../dataBase/projectdatabase.h"
#include "../qetproject.h"
#include "../qetresult.h"
#include "../qetgraphicsitem/conductor.h"
#include "../qetgraphicsitem/independenttextitem.h"
#include "../qetgraphicsitem/qetshapeitem.h"
#include "../qetgraphicsitem/terminal.h"
#include "../qetinformation.h"
#include "../titleblockproperties.h"
#include "../undocommand/addgraphicsobjectcommand.h"
#include "../undocommand/changeelementinformationcommand.h"
#include "../undocommand/changetitleblockcommand.h"
#include "../undocommand/deleteqgraphicsitemcommand.h"
#include "../undocommand/linkelementcommand.h"
#include "../utils/conductorcreator.h"
#include <QSqlError>
#include <QSqlQuery>
#include <QSqlRecord>
#include <QTextStream>
#include <QUndoCommand>
QetScriptApi::QetScriptApi(QETProject *project, DiagramView *view, QObject *parent) :
QObject(parent),
m_project(project),
m_view(view)
{
}
QString QetScriptApi::projectTitle() const
{
return m_project ? m_project->title() : QString();
}
QString QetScriptApi::filePath() const
{
return m_project ? m_project->filePath() : QString();
}
int QetScriptApi::folioCount() const
{
return m_project ? m_project->diagrams().count() : 0;
}
QString QetScriptApi::folioTitle(int index) const
{
if (!m_project) return QString();
const QList<Diagram *> diagrams = m_project->diagrams();
if (index < 0 || index >= diagrams.count()) return QString();
return diagrams.at(index)->title();
}
int QetScriptApi::elementCount(int folioIndex) const
{
if (!m_project) return 0;
const QList<Diagram *> diagrams = m_project->diagrams();
if (folioIndex < 0 || folioIndex >= diagrams.count()) return 0;
DiagramContent content(diagrams.at(folioIndex), false);
return content.m_elements.count();
}
int QetScriptApi::conductorCount(int folioIndex) const
{
if (!m_project) return 0;
const QList<Diagram *> diagrams = m_project->diagrams();
if (folioIndex < 0 || folioIndex >= diagrams.count()) return 0;
DiagramContent content(diagrams.at(folioIndex), false);
return content.conductors(DiagramContent::AnyConductor).count();
}
/**
@brief QetScriptApi::runFlag
Build a CLIExport::run() argument list from this project's own file
path plus @p args, and run it. Reopens the project from disk -- see the
class comment for why that trade-off was made.
@param flag one of the --export-* / --resave / --set-titleblock flags
@param args the flag's own positional arguments (output path, etc.)
@return true if CLIExport::run() returned 0 (success)
*/
bool QetScriptApi::runFlag(const QString &flag, const QStringList &args)
{
if (!m_project) {
log(QStringLiteral("qet.%1: no project").arg(flag));
return false;
}
const QString path = m_project->filePath();
if (path.isEmpty()) {
log(QStringLiteral("qet.%1: project has no file path -- save it first").arg(flag));
return false;
}
QStringList full_args;
full_args << flag << path << args;
if (m_view)
{
// Interactive "Run Script...": CLIExport::run() opens a second,
// temporary QETProject on the same file the GUI already has open.
// Backups are only disabled on the headless --run path (main.cpp);
// here that second, short-lived project would otherwise manage its
// own KAutoSaveFile for the same path as the user's real, already
// open project, racing it and risking a stale-restore prompt next
// launch. Disable backups for just this one export and restore
// them right after -- the headless path must never see this
// change, since it depends on backups staying off for the whole
// run (see the crash note next to the other setBackupEnabled(false)
// call in main.cpp).
QETProject::setBackupEnabled(false);
const int result = CLIExport::run(full_args);
QETProject::setBackupEnabled(true);
return result == 0;
}
return CLIExport::run(full_args) == 0;
}
bool QetScriptApi::exportPdf(const QString &output, bool showTerminals)
{
QStringList args{output};
if (showTerminals) args << QStringLiteral("--show-terminals");
return runFlag(QStringLiteral("--export-pdf"), args);
}
bool QetScriptApi::exportPng(const QString &outDir, bool showTerminals)
{
QStringList args{outDir};
if (showTerminals) args << QStringLiteral("--show-terminals");
return runFlag(QStringLiteral("--export-png"), args);
}
bool QetScriptApi::exportSvg(const QString &outDir, bool showTerminals)
{
QStringList args{outDir};
if (showTerminals) args << QStringLiteral("--show-terminals");
return runFlag(QStringLiteral("--export-svg"), args);
}
bool QetScriptApi::exportCables(const QString &output)
{
return runFlag(QStringLiteral("--export-cables"), {output});
}
bool QetScriptApi::exportWires(const QString &output)
{
return runFlag(QStringLiteral("--export-wires"), {output});
}
bool QetScriptApi::exportBom(const QString &output)
{
return runFlag(QStringLiteral("--export-bom"), {output});
}
bool QetScriptApi::exportWiring(const QString &output)
{
return runFlag(QStringLiteral("--export-wiring"), {output});
}
bool QetScriptApi::exportNets(const QString &output)
{
return runFlag(QStringLiteral("--export-nets"), {output});
}
bool QetScriptApi::exportLinks(const QString &output)
{
return runFlag(QStringLiteral("--export-links"), {output});
}
bool QetScriptApi::exportInfo(const QString &output)
{
return runFlag(QStringLiteral("--info"), output.isEmpty() ? QStringList{} : QStringList{output});
}
bool QetScriptApi::setTitleBlock(const QString &output, const QStringList &assignments)
{
QStringList args{output};
args << assignments;
return runFlag(QStringLiteral("--set-titleblock"), args);
}
/**
@brief QetScriptApi::save
Write this project's own current in-memory state -- unlike every export
method above, this does NOT go through runFlag()/CLIExport::run(): that
reopens the project fresh from its file on disk, which would never see
any addElement()/setElementPosition()/moveElement()/deleteElement() this
script made, only silently rewrite the file exactly as it already was.
Caught by testing this against a script that added an element and
called save(): the element counted correctly in memory but the saved
file didn't have it, since the old implementation opened an unrelated,
unmodified second copy of the project to write.
With no output path, this goes through QETProject::write() -- the same
path "Enregistrer" uses -- so it honours read-only mode the same way,
updates saveddate/savedtime, and clears the modified flag. A plain
QFile write used to skip all of that and could tear the file on an
interruption, where write() goes through QET::writeXmlFile()'s
QSaveFile. With an explicit output path this is a save to a different
file, so it goes through QET::writeXmlFile() directly without touching
the project's own filePath() or read-only state, the same way "Save As"
targeting a writable location is allowed even for a project opened
read-only.
@param output path to write to; the project's own file path if empty
@return false if there is no output path to use, or the write failed
*/
bool QetScriptApi::save(const QString &output)
{
if (!m_project) return false;
if (output.isEmpty())
{
if (m_project->filePath().isEmpty()) {
log(QStringLiteral("qet.save: no output path given and the project has none of its own -- pass one"));
return false;
}
const QETResult result = m_project->write();
if (!result.isOk()) {
log(QStringLiteral("qet.save: %1").arg(result.errorMessage()));
return false;
}
return true;
}
QDomDocument xml_doc(m_project->toXml());
QString error_message;
if (!QET::writeXmlFile(xml_doc, output, &error_message)) {
log(QStringLiteral("qet.save: %1").arg(error_message));
return false;
}
return true;
}
void QetScriptApi::log(const QString &message)
{
QTextStream(stderr) << message << "\n";
}
/**
@brief QetScriptApi::findElement
@param folioIndex
@param elementUuid as returned by addElement(), or read from the
element's own uuid attribute
@return the matching element on that folio, or nullptr
*/
Element *QetScriptApi::findElement(int folioIndex, const QString &elementUuid) const
{
if (!m_project) return nullptr;
const QList<Diagram *> diagrams = m_project->diagrams();
if (folioIndex < 0 || folioIndex >= diagrams.count()) return nullptr;
DiagramContent content(diagrams.at(folioIndex), false);
for (Element *elmt : std::as_const(content.m_elements)) {
if (elmt->uuid().toString() == elementUuid)
return elmt;
}
return nullptr;
}
Terminal *QetScriptApi::findTerminal(int folioIndex, const QString &elementUuid,
int terminalIndex, const QString &caller)
{
Element *element = findElement(folioIndex, elementUuid);
if (!element) {
log(QStringLiteral("qet.%1: no element %2 on folio %3").arg(caller, elementUuid).arg(folioIndex));
return nullptr;
}
const QList<Terminal *> terminals = element->terminals();
if (terminalIndex < 0 || terminalIndex >= terminals.count()) {
log(QStringLiteral("qet.%1: %2 has %3 terminal(s), no index %4")
.arg(caller, element->name()).arg(terminals.count()).arg(terminalIndex));
return nullptr;
}
return terminals.at(terminalIndex);
}
/**
@brief QetScriptApi::findConductor
The single conductor attached to a terminal, or nullptr.
Conductors carry no persisted uuid, and the terminal1/terminal2 ids the
file uses for their ends are folio-scoped integers QElectroTech
renumbers on every save, so a conductor has no name that survives a
save/load cycle. Naming one by a terminal it is attached to does, and
it reads the way the question is usually asked ("the wire on A1 of
KM1"). A terminal with several conductors on it does not name one, so
refuse rather than silently take the first.
*/
Conductor *QetScriptApi::findConductor(int folioIndex, const QString &elementUuid,
int terminalIndex, const QString &caller)
{
Terminal *terminal = findTerminal(folioIndex, elementUuid, terminalIndex, caller);
if (!terminal) return nullptr;
const QList<Conductor *> conductors = terminal->conductors();
if (conductors.isEmpty()) {
log(QStringLiteral("qet.%1: terminal %2 of %3 has no conductor on it")
.arg(caller).arg(terminalIndex).arg(elementUuid));
return nullptr;
}
if (conductors.count() > 1) {
log(QStringLiteral("qet.%1: terminal %2 of %3 carries %4 conductors, so it does "
"not name one -- use a terminal with a single conductor")
.arg(caller).arg(terminalIndex).arg(elementUuid).arg(conductors.count()));
return nullptr;
}
return conductors.first();
}
namespace {
/**
Read or write one named conductor property. The names are the ones the
project file uses for the same fields (ConductorProperties::toXml), so
that what a script sets is what a reader of the .qet sees, rather than
a third spelling invented here.
*/
QString conductorPropertyValue(const ConductorProperties &p, const QString &name)
{
if (name == QLatin1String("num")) return p.text;
if (name == QLatin1String("formula")) return p.m_formula;
if (name == QLatin1String("function")) return p.m_function;
if (name == QLatin1String("bus")) return p.m_bus;
if (name == QLatin1String("cable")) return p.m_cable;
if (name == QLatin1String("tension_protocol")) return p.m_tension_protocol;
if (name == QLatin1String("conductor_color")) return p.m_wire_color;
if (name == QLatin1String("conductor_section")) return p.m_wire_section;
if (name == QLatin1String("color")) return p.color.name();
if (name == QLatin1String("text_color")) return p.text_color.name();
return QString();
}
bool setConductorPropertyValue(ConductorProperties &p, const QString &name, const QString &value)
{
if (name == QLatin1String("num")) { p.text = value; return true; }
if (name == QLatin1String("formula")) { p.m_formula = value; return true; }
if (name == QLatin1String("function")) { p.m_function = value; return true; }
if (name == QLatin1String("bus")) { p.m_bus = value; return true; }
if (name == QLatin1String("cable")) { p.m_cable = value; return true; }
if (name == QLatin1String("tension_protocol")) { p.m_tension_protocol = value; return true; }
if (name == QLatin1String("conductor_color")) { p.m_wire_color = value; return true; }
if (name == QLatin1String("conductor_section")) { p.m_wire_section = value; return true; }
// The two real colours are QColor, not free text: an unparseable name
// would otherwise be stored as an invalid colour and drawn as black.
if (name == QLatin1String("color") || name == QLatin1String("text_color"))
{
const QColor c(value);
if (!c.isValid()) return false;
if (name == QLatin1String("color")) p.color = c; else p.text_color = c;
return true;
}
return false;
}
const QStringList &conductorPropertyNames()
{
static const QStringList names {
QStringLiteral("num"), QStringLiteral("formula"), QStringLiteral("function"),
QStringLiteral("bus"), QStringLiteral("cable"), QStringLiteral("tension_protocol"),
QStringLiteral("conductor_color"), QStringLiteral("conductor_section"),
QStringLiteral("color"), QStringLiteral("text_color")};
return names;
}
} // namespace
bool QetScriptApi::setInfoKey(int folioIndex, const QString &elementUuid,
const QString &key, const QString &value, const QString &caller)
{
if (!m_project) return false;
if (m_project->isReadOnly()) {
log(QStringLiteral("qet.%1: project is read-only").arg(caller));
return false;
}
if (key.isEmpty()) {
log(QStringLiteral("qet.%1: empty information key").arg(caller));
return false;
}
Element *element = findElement(folioIndex, elementUuid);
if (!element) return false;
const DiagramContext old_info = element->elementInformations();
if (old_info.value(key).toString() == value) return true; // nothing to push
DiagramContext new_info = old_info;
new_info.addValue(key, value);
auto *cmd = new ChangeElementInformationCommand(element, old_info, new_info);
m_project->undoStack()->push(cmd);
return true;
}
/**
@brief QetScriptApi::addElement
Place a new element on a folio, through the same AddGraphicsObjectCommand
the interactive drag-from-collection-panel path uses (see
DiagramEventAddElement::addElement()) -- so Ctrl+Z undoes it exactly as
it would a manually dropped element.
Like that path, the element is first imported into the project's own
embedded collection (QETProject::importElement()): building straight
from a common://custom:// location without embedding it left the saved
.qet referencing a definition outside the project, missing on any
machine that doesn't have that same collection installed.
importElement() can, on a name collision with a different, already
embedded element, pop a modal dialog asking the user to choose -- with
nobody there to answer it in a script, headless or interactive, that is
exactly the hang class this whole API is built to avoid (see the class
comment). Detected and refused before it can happen, rather than risked.
@param folioIndex
@param locationPath an element collection path, e.g.
"embed://some/path.elmt" or "common://10_electric/...elmt"
@param x @param y target position, in the diagram's own coordinates
@return the new element's uuid (empty string on failure -- read-only
project, bad folio index, an import collision, or the location could
not be resolved/built)
*/
QString QetScriptApi::addElement(int folioIndex, const QString &locationPath, double x, double y)
{
if (!m_project) return QString();
if (m_project->isReadOnly()) {
log(QStringLiteral("qet.addElement: project is read-only"));
return QString();
}
const QList<Diagram *> diagrams = m_project->diagrams();
if (folioIndex < 0 || folioIndex >= diagrams.count()) return QString();
Diagram *diagram = diagrams.at(folioIndex);
// ElementsLocation::setPath() forces ANY path to embed:// as soon as a
// non-null project is given, common://custom:// included -- passing
// m_project unconditionally here (as the pre-fix code did) silently
// turned every non-embed:: locationPath into a lookup for an embedded
// element that was never there. Caught by actually running this
// against a common:// path: "does not resolve to an element" even
// though the file plainly exists.
ElementsLocation location = locationPath.startsWith(QStringLiteral("embed://"))
? ElementsLocation(locationPath, m_project)
: ElementsLocation(locationPath);
if (!location.isElement() || !location.exist()) {
log(QStringLiteral("qet.addElement: '%1' does not resolve to an element").arg(locationPath));
return QString();
}
ElementsLocation import_location = location;
if (!(location.isProject() && location.project() == m_project))
{
const QString import_path = location.isFileSystem()
? QStringLiteral("import/") + location.collectionPath(false)
: location.collectionPath(false);
const ElementsLocation existing(import_path, m_project);
if (existing.exist() && existing.uuid() != location.uuid()) {
log(QStringLiteral("qet.addElement: '%1' would collide with a different element "
"already embedded under the same name -- refusing rather than "
"risk the interactive import-conflict dialog").arg(locationPath));
return QString();
}
import_location = m_project->importElement(location);
if (!import_location.exist()) {
log(QStringLiteral("qet.addElement: could not import '%1' into the project").arg(locationPath));
return QString();
}
}
int state = 0;
Element *element = ElementFactory::Instance()->createElement(import_location, nullptr, &state);
if (state) {
delete element;
log(QStringLiteral("qet.addElement: could not build element from '%1'").arg(locationPath));
return QString();
}
const QPointF pos(x, y);
element->setPos(pos);
diagram->addItem(element);
auto *undo_group = new QUndoCommand(QObject::tr("Ajouter %1").arg(element->name()));
new AddGraphicsObjectCommand(element, diagram, pos, undo_group);
diagram->undoStack().push(undo_group);
return element->uuid().toString();
}
bool QetScriptApi::setElementPosition(int folioIndex, const QString &elementUuid, double x, double y)
{
if (m_project && m_project->isReadOnly()) {
log(QStringLiteral("qet.setElementPosition: project is read-only"));
return false;
}
Element *element = findElement(folioIndex, elementUuid);
if (!element) return false;
const QVariant old_value = element->pos();
const QVariant new_value = QPointF(x, y);
if (old_value == new_value) return true; // already there; nothing to push
auto *cmd = new QPropertyUndoCommand(element, "pos", old_value, new_value);
cmd->setText(QObject::tr("Déplacer %1").arg(element->name()));
m_project->undoStack()->push(cmd);
return true;
}
bool QetScriptApi::moveElement(int folioIndex, const QString &elementUuid, double dx, double dy)
{
Element *element = findElement(folioIndex, elementUuid);
if (!element) return false;
const QPointF p = element->pos();
return setElementPosition(folioIndex, elementUuid, p.x() + dx, p.y() + dy);
}
/**
@brief QetScriptApi::deleteElement
Through DeleteQGraphicsItemCommand -- the same command the Delete key
uses -- so any conductors attached to the element's terminals are
cleaned up the same way, not left dangling.
*/
bool QetScriptApi::deleteElement(int folioIndex, const QString &elementUuid)
{
if (!m_project) return false;
if (m_project->isReadOnly()) {
log(QStringLiteral("qet.deleteElement: project is read-only"));
return false;
}
Element *element = findElement(folioIndex, elementUuid);
if (!element) return false;
Diagram *diagram = m_project->diagrams().at(folioIndex);
DiagramContent content;
content.m_elements << element;
if (DeleteQGraphicsItemCommand::hasNonDeletableTerminal(content)) {
log(QStringLiteral("qet.deleteElement: %1 has a non-deletable terminal (linked master/slave?), refusing").arg(elementUuid));
return false;
}
auto *cmd = new DeleteQGraphicsItemCommand(diagram, content);
diagram->undoStack().push(cmd);
return true;
}
bool QetScriptApi::rotateElement(int folioIndex, const QString &elementUuid, double angle)
{
if (m_project && m_project->isReadOnly()) {
log(QStringLiteral("qet.rotateElement: project is read-only"));
return false;
}
Element *element = findElement(folioIndex, elementUuid);
if (!element) return false;
// The same property command RotateSelectionCommand pushes for an
// Element -- deliberately not RotateSelectionCommand itself, which
// works on diagram->selectedItems() and would mean quietly rewriting
// the user's selection to rotate one element by uuid. For a single
// element the two are mechanically identical: that class special-cases
// Element::Type to exactly this one command, and only adds a second,
// positional one when rotating a multi-item selection as a group.
auto *cmd = new QPropertyUndoCommand(element, "rotation",
QVariant(element->rotation()),
QVariant(element->rotation() + angle));
cmd->setText(QObject::tr("Pivoter %1").arg(element->name()));
m_project->undoStack()->push(cmd);
return true;
}
QStringList QetScriptApi::elementUuids(int folioIndex) const
{
QStringList uuids;
if (!m_project) return uuids;
const QList<Diagram *> diagrams = m_project->diagrams();
if (folioIndex < 0 || folioIndex >= diagrams.count()) return uuids;
DiagramContent content(diagrams.at(folioIndex), false);
for (Element *elmt : std::as_const(content.m_elements)) {
uuids << elmt->uuid().toString();
}
return uuids;
}
QString QetScriptApi::elementName(int folioIndex, const QString &elementUuid) const
{
Element *element = findElement(folioIndex, elementUuid);
return element ? element->name() : QString();
}
/**
@brief QetScriptApi::elementTerminals
The element's terminals, in the order addConductor() indexes them: one
entry per terminal, "<index>: <name> (<n> conductor(s))". Descriptive
rather than structured because its only job is to let a script -- or a
human reading a script's output -- see which index is which before
wiring anything to it.
Indexes, not uuids, because a terminal uuid does not address a terminal
on a folio. Terminal::uuid() comes from the catalog .elmt definition
(see Terminal::stableUuid()), so it is empty for most of the installed
base, and where it is not, every instance of that same element carries
the same one -- two coils of one type placed side by side have
byte-identical terminal uuids, which is plainly visible in the saved
file of any project written through this API. The order of
Element::terminals() also comes from the definition, but it is at least
unambiguous within the element the caller has already named by uuid.
*/
QStringList QetScriptApi::elementTerminals(int folioIndex, const QString &elementUuid) const
{
QStringList list;
Element *element = findElement(folioIndex, elementUuid);
if (!element) return list;
const QList<Terminal *> terminals = element->terminals();
for (int i = 0 ; i < terminals.count() ; ++i)
{
Terminal *t = terminals.at(i);
list << QStringLiteral("%1: %2 (%3 conductor(s))")
.arg(i)
.arg(t->name().isEmpty() ? QStringLiteral("-") : t->name())
.arg(t->conductorsCount());
}
return list;
}
QString QetScriptApi::elementInfo(int folioIndex, const QString &elementUuid, const QString &key) const
{
Element *element = findElement(folioIndex, elementUuid);
if (!element) return QString();
return element->elementInformations().value(key).toString();
}
bool QetScriptApi::setElementInfo(int folioIndex, const QString &elementUuid,
const QString &key, const QString &value)
{
return setInfoKey(folioIndex, elementUuid, key, value, QStringLiteral("setElementInfo"));
}
QString QetScriptApi::elementLabel(int folioIndex, const QString &elementUuid) const
{
return elementInfo(folioIndex, elementUuid, QETInformation::ELMT_LABEL);
}
bool QetScriptApi::setElementLabel(int folioIndex, const QString &elementUuid, const QString &label)
{
return setInfoKey(folioIndex, elementUuid, QETInformation::ELMT_LABEL, label,
QStringLiteral("setElementLabel"));
}
/**
@brief QetScriptApi::addConductor
Wire terminal terminalIndexA of one element to terminalIndexB of
another, on the same folio, through ConductorCreator -- the same class
the "draw a selection rectangle over terminals" GUI path uses. Going
through it rather than constructing a Conductor directly is what makes
the new conductor inherit an existing potential's properties and take
part in conductor auto-numbering; a hand-built one would be silently
outside both.
Refuses, rather than creating anything, when the two terminals sit on
two different existing potentials: ConductorCreator then has to ask
which one's properties the new conductor should inherit, and it asks
with a plain modal QDialog that QET::QetMessageBox's non-interactive
mode does not cover -- so under headless --run there would be nobody to
answer it and the script would hang forever. Same reasoning, and the
same choice, as addElement() makes about the import-conflict dialog.
@return true if a conductor was created
*/
bool QetScriptApi::addConductor(int folioIndex,
const QString &elementUuidA, int terminalIndexA,
const QString &elementUuidB, int terminalIndexB)
{
if (!m_project) return false;
if (m_project->isReadOnly()) {
log(QStringLiteral("qet.addConductor: project is read-only"));
return false;
}
const QString caller = QStringLiteral("addConductor");
Terminal *t1 = findTerminal(folioIndex, elementUuidA, terminalIndexA, caller);
Terminal *t2 = findTerminal(folioIndex, elementUuidB, terminalIndexB, caller);
if (!t1 || !t2) return false;
if (t1 == t2) {
log(QStringLiteral("qet.addConductor: both ends are the same terminal"));
return false;
}
if (t1->isLinkedTo(t2)) {
log(QStringLiteral("qet.addConductor: those two terminals are already wired together"));
return false;
}
if (!t1->canBeLinkedTo(t2)) {
log(QStringLiteral("qet.addConductor: those two terminals cannot be linked"));
return false;
}
const QList<Terminal *> terminals {t1, t2};
if (ConductorCreator::needsPotentialChoice(terminals)) {
log(QStringLiteral("qet.addConductor: those terminals are on two different existing "
"potentials, so creating a conductor would ask which one to inherit "
"-- refusing rather than open a dialog no script can answer"));
return false;
}
Diagram *diagram = m_project->diagrams().at(folioIndex);
ConductorCreator creator(diagram, terminals);
Q_UNUSED(creator)
// ConductorCreator has no return value and several ways to decline
// quietly, so report what actually happened rather than that it ran.
return t1->isLinkedTo(t2);
}
/**
@brief QetScriptApi::conductors
One line per conductor on the folio: which terminals it joins and its
number, in the form setConductorProperty() addresses them. Descriptive
rather than structured for the same reason elementTerminals() is -- it
exists so a script, or a person reading its output, can see what is
there before changing it.
*/
QStringList QetScriptApi::conductors(int folioIndex) const
{
QStringList list;
if (!m_project) return list;
const QList<Diagram *> diagrams = m_project->diagrams();
if (folioIndex < 0 || folioIndex >= diagrams.count()) return list;
auto describe = [](Terminal *t) -> QString {
if (!t || !t->parentElement()) return QStringLiteral("?");
return QStringLiteral("%1 terminal %2")
.arg(t->parentElement()->uuid().toString())
.arg(t->parentElement()->terminals().indexOf(t));
};
DiagramContent content(diagrams.at(folioIndex), false);
const QList<Conductor *> all = content.conductors(DiagramContent::AnyConductor);
for (Conductor *c : all)
{
list << QStringLiteral("%1 -- %2 : num='%3'")
.arg(describe(c->terminal1), describe(c->terminal2), c->properties().text);
}
return list;
}
QString QetScriptApi::conductorProperty(int folioIndex, const QString &elementUuid,
int terminalIndex, const QString &property) const
{
// const_cast: findConductor logs, and log() writes to stderr, which is
// not a const operation on this object. The lookup itself changes
// nothing.
auto *self = const_cast<QetScriptApi *>(this);
Conductor *conductor = self->findConductor(folioIndex, elementUuid, terminalIndex,
QStringLiteral("conductorProperty"));
if (!conductor) return QString();
return conductorPropertyValue(conductor->properties(), property);
}
/**
@brief QetScriptApi::setConductorProperty
Set one property on the conductor attached to a terminal -- and on
every other conductor of the same electrical potential.
That is not a convenience, it is the rule the application already
follows: SearchAndReplaceWorker does exactly this, pushing one
QPropertyUndoCommand per conductor of relatedPotentialConductors()
inside a single macro, because a wire number, colour or section
describes a potential and not one drawn segment. Setting it on one
conductor and leaving the rest of the potential disagreeing would
produce a file no GUI action could have produced.
@return true if anything was changed, or if it already held that value
*/
bool QetScriptApi::setConductorProperty(int folioIndex, const QString &elementUuid,
int terminalIndex, const QString &property,
const QString &value)
{
if (!m_project) return false;
const QString caller = QStringLiteral("setConductorProperty");
if (m_project->isReadOnly()) {
log(QStringLiteral("qet.%1: project is read-only").arg(caller));
return false;
}
if (!conductorPropertyNames().contains(property)) {
log(QStringLiteral("qet.%1: unknown property '%2'; expected one of %3")
.arg(caller, property, conductorPropertyNames().join(QStringLiteral(", "))));
return false;
}
Conductor *conductor = findConductor(folioIndex, elementUuid, terminalIndex, caller);
if (!conductor) return false;
ConductorProperties properties = conductor->properties();
if (!setConductorPropertyValue(properties, property, value)) {
log(QStringLiteral("qet.%1: '%2' is not a valid value for %3")
.arg(caller, value, property));
return false;
}
if (properties == conductor->properties()) return true; // already so
QSet<Conductor *> potential = conductor->relatedPotentialConductors(true);
potential << conductor;
m_project->undoStack()->beginMacro(QObject::tr("Modifier les propriétés du conducteur"));
for (Conductor *c : std::as_const(potential))
{
QVariant old_value, new_value;
old_value.setValue(c->properties());
new_value.setValue(properties);
m_project->undoStack()->push(new QPropertyUndoCommand(c, "properties", old_value, new_value));
}
m_project->undoStack()->endMacro();
return true;
}
QString QetScriptApi::elementLinkType(int folioIndex, const QString &elementUuid) const
{
Element *element = findElement(folioIndex, elementUuid);
if (!element) return QString();
switch (element->linkType())
{
case Element::Simple: return QStringLiteral("simple");
case Element::NextReport: return QStringLiteral("next_report");
case Element::PreviousReport: return QStringLiteral("previous_report");
case Element::Master: return QStringLiteral("master");
case Element::Slave: return QStringLiteral("slave");
case Element::Terminale: return QStringLiteral("terminal");
default: return QStringLiteral("unknown");
}
}
QStringList QetScriptApi::linkedElements(int folioIndex, const QString &elementUuid) const
{
QStringList list;
Element *element = findElement(folioIndex, elementUuid);
if (!element) return list;
const QList<Element *> linked = element->linkedElements();
for (Element *e : linked) {
list << e->uuid().toString();
}
return list;
}
/**
@brief QetScriptApi::linkElements
Link two elements -- a master to a slave, or one report to its
counterpart. Two folio indices because a master and its slave normally
sit on different folios; that is the usual case, not the exception.
Whether a given pair may be linked is not decided here.
LinkElementCommand::isLinkable() already holds those rules -- that a
master takes a slave and not another master, that a PLC master pairs
only with a PLC slave, that a next-report pairs only with a
previous-report, and that the target is free -- and asking it rather
than re-deriving them is what keeps a script from producing a link the
GUI would refuse to make.
*/
bool QetScriptApi::linkElements(int folioIndexA, const QString &elementUuidA,
int folioIndexB, const QString &elementUuidB)
{
if (!m_project) return false;
if (m_project->isReadOnly()) {
log(QStringLiteral("qet.linkElements: project is read-only"));
return false;
}
Element *a = findElement(folioIndexA, elementUuidA);
Element *b = findElement(folioIndexB, elementUuidB);
if (!a || !b) {
log(QStringLiteral("qet.linkElements: %1 does not resolve to an element")
.arg(a ? elementUuidB : elementUuidA));
return false;
}
if (a == b) {
log(QStringLiteral("qet.linkElements: an element cannot be linked to itself"));
return false;
}
if (!LinkElementCommand::isLinkable(a, b)) {
log(QStringLiteral("qet.linkElements: %1 (%2) cannot be linked to %3 (%4) -- "
"check the two link types, and that the target is still free")
.arg(elementUuidA, elementLinkType(folioIndexA, elementUuidA),
elementUuidB, elementLinkType(folioIndexB, elementUuidB)));
return false;
}
auto *cmd = new LinkElementCommand(a);
cmd->setLink(b);
m_project->undoStack()->push(cmd);
return a->linkedElements().contains(b);
}
bool QetScriptApi::unlinkElement(int folioIndex, const QString &elementUuid)
{
if (!m_project) return false;
if (m_project->isReadOnly()) {
log(QStringLiteral("qet.unlinkElement: project is read-only"));
return false;
}
Element *element = findElement(folioIndex, elementUuid);
if (!element) return false;
if (element->linkedElements().isEmpty()) return true; // nothing to undo
auto *cmd = new LinkElementCommand(element);
cmd->unlinkAll();
m_project->undoStack()->push(cmd);
return element->linkedElements().isEmpty();
}
namespace {
/**
Reading order for items that have no identity but their position:
top to bottom, then left to right.
On sceneBoundingRect(), not pos(): a QetShapeItem keeps its geometry in
its line/rect/polygon, and its pos() stays at the origin, so three
shapes drawn in different places all sort as (0, 0) and the ordering
collapses -- which is exactly what the first version of this did, and
it made every shape index refer to whichever one the set happened to
yield first. The scene bounding rect reflects where the item actually
is for both kinds.
*/
template <typename T>
QList<T *> sortedByPosition(const QSet<T *> &items)
{
QList<T *> list(items.cbegin(), items.cend());
std::sort(list.begin(), list.end(), [](T *a, T *b) {
const QPointF pa = a->sceneBoundingRect().topLeft();
const QPointF pb = b->sceneBoundingRect().topLeft();
if (pa.y() != pb.y()) return pa.y() < pb.y();
if (pa.x() != pb.x()) return pa.x() < pb.x();
// Two items genuinely at the same point still need a total order,
// or std::sort's result depends on the set's iteration order.
return a < b;
});
return list;
}
} // namespace
QList<IndependentTextItem *> QetScriptApi::sortedTexts(int folioIndex) const
{
if (!m_project) return {};
const QList<Diagram *> diagrams = m_project->diagrams();
if (folioIndex < 0 || folioIndex >= diagrams.count()) return {};
DiagramContent content(diagrams.at(folioIndex), false);
return sortedByPosition(content.m_text_fields);
}
QList<QetShapeItem *> QetScriptApi::sortedShapes(int folioIndex) const
{
if (!m_project) return {};
const QList<Diagram *> diagrams = m_project->diagrams();
if (folioIndex < 0 || folioIndex >= diagrams.count()) return {};
DiagramContent content(diagrams.at(folioIndex), false);
return sortedByPosition(content.m_shapes);
}
IndependentTextItem *QetScriptApi::findText(int folioIndex, int textIndex, const QString &caller)
{
const QList<IndependentTextItem *> list = sortedTexts(folioIndex);
if (textIndex < 0 || textIndex >= list.count()) {
log(QStringLiteral("qet.%1: folio %2 has %3 independent text(s), no index %4")
.arg(caller).arg(folioIndex).arg(list.count()).arg(textIndex));
return nullptr;
}
return list.at(textIndex);
}
QStringList QetScriptApi::texts(int folioIndex) const
{
QStringList out;
const QList<IndependentTextItem *> list = sortedTexts(folioIndex);
for (int i = 0 ; i < list.count() ; ++i)
{
IndependentTextItem *t = list.at(i);
const QPointF at = t->sceneBoundingRect().topLeft();
out << QStringLiteral("%1: '%2' at (%3, %4)")
.arg(i)
.arg(t->toPlainText())
.arg(at.x())
.arg(at.y());
}
return out;
}
/**
@brief QetScriptApi::addText
Place a free-standing text, as the "add text" tool does.
@return its index in texts(), or -1
*/
int QetScriptApi::addText(int folioIndex, const QString &text, double x, double y)
{
if (!m_project) return -1;
if (m_project->isReadOnly()) {
log(QStringLiteral("qet.addText: project is read-only"));
return -1;
}
const QList<Diagram *> diagrams = m_project->diagrams();
if (folioIndex < 0 || folioIndex >= diagrams.count()) return -1;
Diagram *diagram = diagrams.at(folioIndex);
auto *item = new IndependentTextItem();
item->setPlainText(text);
diagram->undoStack().push(new AddGraphicsObjectCommand(item, diagram, QPointF(x, y)));
return sortedTexts(folioIndex).indexOf(item);
}
bool QetScriptApi::setTextContent(int folioIndex, int textIndex, const QString &text)
{
if (!m_project) return false;
if (m_project->isReadOnly()) {
log(QStringLiteral("qet.setTextContent: project is read-only"));
return false;
}
IndependentTextItem *item = findText(folioIndex, textIndex, QStringLiteral("setTextContent"));
if (!item) return false;
if (item->toPlainText() == text) return true;
auto *cmd = new QPropertyUndoCommand(item, "plainText",
QVariant(item->toPlainText()), QVariant(text));
cmd->setText(QObject::tr("Modifier un texte"));
m_project->undoStack()->push(cmd);
return true;
}
bool QetScriptApi::setTextColor(int folioIndex, int textIndex, const QString &color)
{
if (!m_project) return false;
if (m_project->isReadOnly()) {
log(QStringLiteral("qet.setTextColor: project is read-only"));
return false;
}
const QColor new_color(color);
if (!new_color.isValid()) {
log(QStringLiteral("qet.setTextColor: '%1' is not a valid colour").arg(color));
return false;
}
IndependentTextItem *item = findText(folioIndex, textIndex, QStringLiteral("setTextColor"));
if (!item) return false;
if (item->color() == new_color) return true;
auto *cmd = new QPropertyUndoCommand(item, "color",
QVariant(item->color()), QVariant(new_color));
cmd->setText(QObject::tr("Modifier la couleur d'un texte"));
m_project->undoStack()->push(cmd);
return true;
}
bool QetScriptApi::setTextRotation(int folioIndex, int textIndex, double angle)
{
if (!m_project) return false;
if (m_project->isReadOnly()) {
log(QStringLiteral("qet.setTextRotation: project is read-only"));
return false;
}
IndependentTextItem *item = findText(folioIndex, textIndex, QStringLiteral("setTextRotation"));
if (!item) return false;
auto *cmd = new QPropertyUndoCommand(item, "rotation",
QVariant(item->rotation()),
QVariant(item->rotation() + angle));
cmd->setText(QObject::tr("Pivoter un texte"));
m_project->undoStack()->push(cmd);
return true;
}
bool QetScriptApi::deleteText(int folioIndex, int textIndex)
{
if (!m_project) return false;
if (m_project->isReadOnly()) {
log(QStringLiteral("qet.deleteText: project is read-only"));
return false;
}
IndependentTextItem *item = findText(folioIndex, textIndex, QStringLiteral("deleteText"));
if (!item) return false;
Diagram *diagram = m_project->diagrams().at(folioIndex);
DiagramContent content;
content.m_text_fields << item;
diagram->undoStack().push(new DeleteQGraphicsItemCommand(diagram, content));
return true;
}
QStringList QetScriptApi::shapes(int folioIndex) const
{
QStringList out;
const QList<QetShapeItem *> list = sortedShapes(folioIndex);
for (int i = 0 ; i < list.count() ; ++i)
{
QetShapeItem *shape = list.at(i);
const QRectF r = shape->sceneBoundingRect();
out << QStringLiteral("%1: %2 (%3, %4) to (%5, %6)")
.arg(i)
.arg(shape->name())
.arg(r.left()).arg(r.top()).arg(r.right()).arg(r.bottom());
}
return out;
}
/**
@brief QetScriptApi::addShape
Draw a line, rectangle, ellipse or polygon, as the shape tools do.
Path is deliberately absent: it is built by successive clicks and has
no two-point form to give here.
@return the shape's index in shapes(), or -1
*/
int QetScriptApi::addShape(int folioIndex, const QString &type,
double x1, double y1, double x2, double y2)
{
if (!m_project) return -1;
if (m_project->isReadOnly()) {
log(QStringLiteral("qet.addShape: project is read-only"));
return -1;
}
const QList<Diagram *> diagrams = m_project->diagrams();
if (folioIndex < 0 || folioIndex >= diagrams.count()) return -1;
QetShapeItem::ShapeType shape_type;
const QString t = type.toLower();
if (t == QLatin1String("line")) shape_type = QetShapeItem::Line;
else if (t == QLatin1String("rectangle")) shape_type = QetShapeItem::Rectangle;
else if (t == QLatin1String("ellipse")) shape_type = QetShapeItem::Ellipse;
else if (t == QLatin1String("polygon")) shape_type = QetShapeItem::Polygon;
else {
log(QStringLiteral("qet.addShape: unknown shape '%1'; expected line, "
"rectangle, ellipse or polygon").arg(type));
return -1;
}
Diagram *diagram = diagrams.at(folioIndex);
auto *shape = new QetShapeItem(QPointF(x1, y1), QPointF(x2, y2), shape_type);
diagram->undoStack().push(new AddGraphicsObjectCommand(shape, diagram, QPointF(0, 0)));
return sortedShapes(folioIndex).indexOf(shape);
}
bool QetScriptApi::deleteShape(int folioIndex, int shapeIndex)
{
if (!m_project) return false;
if (m_project->isReadOnly()) {
log(QStringLiteral("qet.deleteShape: project is read-only"));
return false;
}
const QList<QetShapeItem *> list = sortedShapes(folioIndex);
if (shapeIndex < 0 || shapeIndex >= list.count()) {
log(QStringLiteral("qet.deleteShape: folio %1 has %2 shape(s), no index %3")
.arg(folioIndex).arg(list.count()).arg(shapeIndex));
return false;
}
Diagram *diagram = m_project->diagrams().at(folioIndex);
DiagramContent content;
content.m_shapes << list.at(shapeIndex);
diagram->undoStack().push(new DeleteQGraphicsItemCommand(diagram, content));
return true;
}
/**
@brief QetScriptApi::tables
The tables and views the project database holds, as "name (type)".
Worth reading before writing a query against them: the three *_view
entries are the queryable surface and are named for it; the tables are
how the cache is arranged today.
*/
QStringList QetScriptApi::tables() const
{
QStringList list;
if (!m_project || !m_project->dataBase()) return list;
QSqlQuery q = m_project->dataBase()->newQuery(QStringLiteral(
"SELECT name, type FROM sqlite_master WHERE type IN ('table','view') "
"ORDER BY type, name"));
while (q.next()) {
list << QStringLiteral("%1 (%2)").arg(q.value(0).toString(), q.value(1).toString());
}
return list;
}
/**
@brief QetScriptApi::query
Run a read-only SELECT against the project database and return its rows
as objects, one property per column.
Goes through projectDataBase::newQuery(), which applies
isReadOnlySelect() itself -- the same rule, and the same rejection
message, that the "Requête SQL personnalisée" box in the element-query
dialog shows a user. Nothing here can write: a statement that is not a
single SELECT or WITH...SELECT is refused before it reaches SQLite.
No updateDB() first, deliberately. A script that has just edited
something is the expected caller, so querying a stale cache was the
obvious hazard -- but projectDataBase maintains itself incrementally
through addElement()/elementInfoChanged()/addConductor() and the rest,
which the undo commands behind every edit here already call. Tested
both ways on the cases most likely to be stale: an element added and
labelled, and a conductor property changed, each queried immediately
afterwards through both the table and the view. The counts are the
same with the rebuild and without it. Since updateDB() is a full
repopulation of every table, calling it per query would have been a
real cost for no observable benefit -- so it is not called, and this
note exists so it is not added back on the assumption that it must be
needed.
@return the rows; empty on refusal or SQL error, with queryError()
saying which. An empty result and a failure are not the same thing.
*/
QVariantList QetScriptApi::query(const QString &sql)
{
m_query_error.clear();
QVariantList rows;
if (!m_project || !m_project->dataBase()) {
m_query_error = QStringLiteral("no project database");
return rows;
}
QString rejection;
QSqlQuery q = m_project->dataBase()->newQuery(sql, &rejection);
if (!rejection.isEmpty()) {
m_query_error = rejection;
log(QStringLiteral("qet.query: %1").arg(rejection));
return rows;
}
if (q.lastError().isValid()) {
m_query_error = q.lastError().text();
log(QStringLiteral("qet.query: %1").arg(m_query_error));
return rows;
}
const QSqlRecord record = q.record();
while (q.next())
{
QVariantMap row;
for (int i = 0 ; i < record.count() ; ++i) {
row.insert(record.fieldName(i), q.value(i));
}
rows << row;
}
return rows;
}
QString QetScriptApi::queryError() const
{
return m_query_error;
}
int QetScriptApi::addFolio()
{
if (!m_project) return -1;
if (m_project->isReadOnly()) {
log(QStringLiteral("qet.addFolio: project is read-only"));
return -1;
}
Diagram *diagram = m_project->addNewDiagram();
if (!diagram) return -1;
return m_project->diagrams().indexOf(diagram);
}
bool QetScriptApi::setFolioTitle(int folioIndex, const QString &title)
{
if (!m_project) return false;
if (m_project->isReadOnly()) {
log(QStringLiteral("qet.setFolioTitle: project is read-only"));
return false;
}
const QList<Diagram *> diagrams = m_project->diagrams();
if (folioIndex < 0 || folioIndex >= diagrams.count()) return false;
Diagram *diagram = diagrams.at(folioIndex);
// The folio title is one field of the title block properties, so it
// changes the way the title block dialog changes it: read the whole
// struct, set one member, push the command with both versions.
const TitleBlockProperties old_properties = diagram->border_and_titleblock.exportTitleBlock();
if (old_properties.title == title) return true;
TitleBlockProperties new_properties = old_properties;
new_properties.title = title;
auto *cmd = new ChangeTitleBlockCommand(diagram, old_properties, new_properties);
m_project->undoStack()->push(cmd);
return true;
}
bool QetScriptApi::undo()
{
if (!m_project || !m_project->undoStack()->canUndo()) return false;
m_project->undoStack()->undo();
return true;
}
bool QetScriptApi::redo()
{
if (!m_project || !m_project->undoStack()->canRedo()) return false;
m_project->undoStack()->redo();
return true;
}
bool QetScriptApi::canUndo() const
{
return m_project && m_project->undoStack()->canUndo();
}
bool QetScriptApi::canRedo() const
{
return m_project && m_project->undoStack()->canRedo();
}
bool QetScriptApi::selectElement(const QString &elementUuid)
{
if (!m_project) return false;
for (Diagram *diagram : m_project->diagrams()) {
DiagramContent content(diagram, false);
for (Element *elmt : std::as_const(content.m_elements)) {
if (elmt->uuid().toString() == elementUuid) {
elmt->setSelected(true);
return true;
}
}
}
return false;
}
void QetScriptApi::deselectAll(int folioIndex)
{
if (!m_project) return;
const QList<Diagram *> diagrams = m_project->diagrams();
if (folioIndex < 0 || folioIndex >= diagrams.count()) return;
diagrams.at(folioIndex)->clearSelection();
}
bool QetScriptApi::zoomFit()
{
if (!m_view) return false;
m_view->zoomFit();
return true;
}
bool QetScriptApi::zoomToContent()
{
if (!m_view) return false;
m_view->zoomContent();
return true;
}
bool QetScriptApi::zoomReset()
{
if (!m_view) return false;
m_view->zoomReset();
return true;
}
/**
@brief QetScriptApi::showMessage
A modal QET::QetMessageBox::information() -- safe to call headless
because non-interactive mode is already set for the whole process
before any script runs (main.cpp), which is exactly the mechanism
that keeps --export-* and --resave from hanging on a warning dialog.
Interactively, a real person is there to see and dismiss it.
*/
void QetScriptApi::showMessage(const QString &text)
{
QET::QetMessageBox::information(nullptr, QObject::tr("Script"), text);
}