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https://github.com/qelectrotech/qelectrotech-source-mirror.git
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bf9b34398d
Cables are drawn line objects (toolbar button next to the auto break/reconnect button, click-move-click, right click cancels), not components. The type comes from a CSV catalog following the material list pattern (designation, cores, core colours, editable through the entry dialog with "Nouvelle entrée" / "Modifier l'entrée"). Each core is bound to the wire its colour label stands on, and the cable reference is generated per core and written into the Conductor entry via Conductor::setCableReference(label, cable uuid, slot). The conductor entry is where it has to live because the terminal strip plan (Klemmenplan) consumes it in the next step. Numbering: "Cables" rule under Programmeinstellungen/Neues Projekt/Nummerierung auto (mirrored in project properties), literal "W" fallback without a rule, French gate dialog when no rule exists, Nummerierung menu with the renumber dialog (preferred axis, per-folio counter, rule and counter state written back, hand-typed names ask, whole-project scope). Also included: label block and under-line texts with per-text font and alignment plus the material-list cell margins, free-core placement and right-click removal, claim questions for wires of other cables, multi-selection drag as one undo step, type change with confirmation, cross-references for type "Cable" (%f-%l%c, own font, clickable links in exported PDFs), report propagation of the cable definition, Listes menu (table of contents, material list, terminal strip manager, terminal generator plugin, cable list), cable list with freely selectable columns (installation/localisation of cable, start and end, Blatt start/end, length, used cores...), CSV export dialog with column pick and preview in the Projekt menu, script API (addTable kind "cable_list", exportCableList) and a unit test for the type catalog.
469 lines
14 KiB
C++
469 lines
14 KiB
C++
/*
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Copyright 2006-2026 The QElectroTech Team
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This file is part of QElectroTech.
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QElectroTech is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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QElectroTech is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with QElectroTech. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "cablelistrows.h"
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#include "../bomexport.h"
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#include "../cable/cable.h"
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#include "../conductorproperties.h"
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#include "../diagram.h"
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#include "../qetgraphicsitem/conductor.h"
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#include "../qetgraphicsitem/element.h"
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#include "../qetgraphicsitem/terminal.h"
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#include "../qetinformation.h"
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#include "../qetproject.h"
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#include <QHash>
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#include <QLineF>
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#include <algorithm>
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#include <climits>
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#include <utility>
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namespace {
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/**
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@brief One place where the line of a cable ends.
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An end which lands on a piece carries that piece (its uuid for
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grouping and its pointer for reading the label, both valid as long
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as the plan lives); an end taken from the drawn line carries none,
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and its tie names the section instead.
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*/
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struct CableEnd
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{
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Diagram *diagram = nullptr;
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QPointF scene;
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Element *element = nullptr;
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QUuid element_uuid;
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QString tie;
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bool isLanding() const {return !element_uuid.isNull();}
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};
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/**
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@brief endBefore
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The order the ends of the cables are read in: the earlier sheet
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first, then the higher point of that sheet, then the left one, then
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a stable name so that a redraw can never swap two ends and shuffle
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the rows around.
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@param a first end
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@param b second end
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@param project the project the sheet numbers come from
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@return true when a comes before b
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*/
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bool endBefore(const CableEnd &a, const CableEnd &b, const QETProject *project)
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{
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const int folio_a = a.diagram ? project->folioIndex(a.diagram) : INT_MAX;
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const int folio_b = b.diagram ? project->folioIndex(b.diagram) : INT_MAX;
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if (folio_a != folio_b) {
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return folio_a < folio_b;
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}
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if (a.scene.y() != b.scene.y()) {
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return a.scene.y() < b.scene.y();
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}
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if (a.scene.x() != b.scene.x()) {
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return a.scene.x() < b.scene.x();
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}
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return a.tie < b.tie;
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}
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/**
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@brief folioOf
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@param end
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@return the sheet number the end lies on, empty when it lies on no
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sheet at all (a cable nothing was ever drawn for)
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*/
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QString folioOf(const CableEnd &end, const QETProject *project)
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{
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return end.diagram ? QString::number(project->folioIndex(end.diagram) + 1)
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: QString();
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}
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/**
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@brief plantOf
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@return the Installation the piece the end lands on carries -- the
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same field every other list reads for a piece. A piece without one
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leaves the cell empty: there is no second place to look for it, and
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an end of the drawn line, which lands on no piece at all, fills
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nothing either.
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*/
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QString plantOf(const CableEnd &end)
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{
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if (!end.element) {
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return QString();
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}
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return end.element->elementInformations()
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.value(QETInformation::ELMT_PLANT).toString();
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}
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/**
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@brief locmachOf
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@return the Localisation the piece the end lands on carries, with
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the same rule as the Installation: what the piece carries or
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nothing at all.
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*/
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QString locmachOf(const CableEnd &end)
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{
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if (!end.element) {
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return QString();
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}
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return end.element->elementInformations()
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.value(QETInformation::ELMT_LOCATION).toString();
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}
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/**
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@brief labelOfEnd
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@return the label (the BMK) of the piece the end lands on, empty for
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an end of the drawn line -- there is no piece there to carry one
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*/
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QString labelOfEnd(const CableEnd &end)
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{
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if (!end.element) {
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return QString();
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}
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return end.element->elementInformations()
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.value(QETInformation::ELMT_LABEL).toString();
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}
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} // namespace
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/**
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@brief CableList::allColumns
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@return every column of the cable list, in the order they are
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offered, drawn and exported
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*/
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const QList<CableList::Column> &CableList::allColumns()
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{
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static const QList<Column> columns = {
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{QStringLiteral("nr"), tr("N°")},
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{QStringLiteral("installation_cable"), tr("Installation câble")},
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{QStringLiteral("location_cable"), tr("Localisation câble")},
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{QStringLiteral("bmk_cable"), tr("Label câble")},
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{QStringLiteral("installation_start"), tr("Installation début")},
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{QStringLiteral("location_start"), tr("Localisation début")},
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{QStringLiteral("bmk_start"), tr("Label début")},
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{QStringLiteral("folio_start"), tr("Folio début")},
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{QStringLiteral("installation_end"), tr("Installation fin")},
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{QStringLiteral("location_end"), tr("Localisation fin")},
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{QStringLiteral("bmk_end"), tr("Label fin")},
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{QStringLiteral("folio_end"), tr("Folio fin")},
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{QStringLiteral("type"), tr("Type de câble")},
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{QStringLiteral("length"), tr("Longueur")},
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{QStringLiteral("cores_used"), tr("Âmes utilisées")},
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};
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return columns;
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}
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/**
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@brief CableList::defaultKeys
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@return the columns a freshly drawn cable list starts with: all of
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them
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*/
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const QStringList &CableList::defaultKeys()
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{
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static const QStringList keys = []() {
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QStringList list;
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for (const Column &column : allColumns()) {
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list << column.key;
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}
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return list;
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}();
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return keys;
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}
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/**
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@brief CableList::labelOf
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@param key
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@return the header text of that column, empty when the key names no
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column of this list
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*/
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QString CableList::labelOf(const QString &key)
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{
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for (const Column &column : allColumns()) {
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if (column.key == key) {
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return column.label;
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}
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}
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return QString();
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}
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/**
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@brief CableList::rows
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Work out one row per cable, in plan order.
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@param project the project whose cables are listed
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@return the rows, sorted, the number column already filled in
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*/
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QVector<QMap<QString, QString>> CableList::rows(QETProject *project)
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{
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QVector<QMap<QString, QString>> result;
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if (!project) {
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return result;
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}
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//Every conductor of every cable is walked once, and where one
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//lands on a real piece becomes an arrival of that cable. A core
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//which ends on a folio report is skipped on that side: the
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//cable goes on over there, and the landing on the far sheet is
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//what counts as its end.
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QHash<QUuid, QVector<CableEnd>> arrivals;
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for (Diagram *diagram : project->diagrams())
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{
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for (Conductor *conductor : diagram->conductors())
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{
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const ConductorProperties properties = conductor->properties();
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if (properties.m_cable_uuid.isNull()) {
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continue;
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}
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if (!conductor->terminal1 || !conductor->terminal2) {
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continue;
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}
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Terminal *terminals[2] = {conductor->terminal1, conductor->terminal2};
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for (Terminal *terminal : terminals)
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{
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Element *element = terminal->parentElement();
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if (!element) {
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//a free end is not an arrival
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continue;
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}
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if (element->linkType() & Element::AllReport) {
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//the cable continues on the linked sheet
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continue;
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}
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CableEnd end;
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end.diagram = element->diagram();
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end.scene = terminal->scenePos();
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end.element = element;
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end.element_uuid = element->uuid();
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end.tie = conductor->uuid().toString();
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arrivals[properties.m_cable_uuid].append(end);
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}
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}
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}
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struct Entry
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{
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Cable *cable = nullptr;
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CableEnd start;
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CableEnd target;
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};
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auto byPlan = [project](const CableEnd &a, const CableEnd &b) {
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return endBefore(a, b, project);
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};
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QVector<Entry> entries;
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entries.reserve(project->cables().count());
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for (Cable *cable : project->cables())
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{
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//Several cores landing on one piece are one end: the highest
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//of their landings speaks for it.
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QHash<QUuid, CableEnd> grouped;
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for (const CableEnd &end : arrivals.value(cable->uuid()))
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{
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auto it = grouped.find(end.element_uuid);
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if (it == grouped.end() || byPlan(end, it.value())) {
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grouped.insert(end.element_uuid, end);
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}
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}
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QList<CableEnd> landings = grouped.values();
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std::sort(landings.begin(), landings.end(), byPlan);
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//The free ends of the drawn line, for the sides no core ever
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//landed on
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QList<CableEnd> line_ends;
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for (const CablePartData &part : cable->parts())
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{
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Diagram *diagram = project->diagramByUuid(part.diagram);
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if (!diagram) {
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continue;
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}
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for (int i = 0; i < 2; ++i)
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{
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CableEnd end;
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end.diagram = diagram;
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end.scene = i ? part.p2 : part.p1;
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end.tie = part.uuid.toString() + (i ? QStringLiteral("2")
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: QStringLiteral("1"));
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line_ends.append(end);
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}
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}
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std::sort(line_ends.begin(), line_ends.end(), byPlan);
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Entry entry;
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entry.cable = cable;
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if (landings.size() >= 2)
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{
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//The rule as asked for: the first finding counts for
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//both ends. First landing in plan order is the start,
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//the very next finding is the target -- not the last
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//one. A sheet further along finds the same cable again
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//but start and target are already taken by then, so it
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//adds nothing: on the first sheet, the upper piece is
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//the start and the lower one the target.
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entry.start = landings.first();
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entry.target = landings.at(1);
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}
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else if (landings.size() == 1)
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{
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//One side is wired: that side carries the label, the
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//other side falls back to the drawn line, farthest end
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//first so a tie goes to the later point of the plan.
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entry.start = landings.first();
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entry.target = landings.first();
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qreal farthest = -1.0;
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for (const CableEnd &candidate : std::as_const(line_ends))
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{
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const qreal distance = QLineF(entry.start.scene, candidate.scene).length();
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if (distance >= farthest) {
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farthest = distance;
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entry.target = candidate;
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}
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}
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}
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else if (line_ends.size() >= 2)
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{
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entry.start = line_ends.first();
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entry.target = line_ends.last();
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}
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else if (line_ends.size() == 1)
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{
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entry.start = line_ends.first();
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entry.target = line_ends.first();
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}
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//A cable with neither a core nor a line draws no ends at all;
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//its own fields still fill the row.
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entries.append(entry);
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}
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//Plan order again for the rows themselves: by the sheet the start
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//lies on, then from the top of that sheet down. The name and the
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//uuid only ever break ties, so the numbering is stable between
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//two openings of the same project.
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std::sort(entries.begin(), entries.end(), [project](const Entry &a, const Entry &b) {
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if (endBefore(a.start, b.start, project)) return true;
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if (endBefore(b.start, a.start, project)) return false;
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if (endBefore(a.target, b.target, project)) return true;
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if (endBefore(b.target, a.target, project)) return false;
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if (a.cable->designation() != b.cable->designation()) {
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return a.cable->designation() < b.cable->designation();
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}
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return a.cable->uuid().toString() < b.cable->uuid().toString();
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});
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int number = 0;
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for (const Entry &entry : std::as_const(entries))
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{
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Cable *cable = entry.cable;
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QMap<QString, QString> row;
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row.insert(QStringLiteral("nr"), QString::number(++number));
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row.insert(QStringLiteral("installation_cable"), cable->installation());
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row.insert(QStringLiteral("location_cable"), cable->location());
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row.insert(QStringLiteral("bmk_cable"), cable->designation());
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row.insert(QStringLiteral("installation_start"), plantOf(entry.start));
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row.insert(QStringLiteral("location_start"), locmachOf(entry.start));
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row.insert(QStringLiteral("bmk_start"), labelOfEnd(entry.start));
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row.insert(QStringLiteral("folio_start"), folioOf(entry.start, project));
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row.insert(QStringLiteral("installation_end"), plantOf(entry.target));
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row.insert(QStringLiteral("location_end"), locmachOf(entry.target));
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row.insert(QStringLiteral("bmk_end"), labelOfEnd(entry.target));
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row.insert(QStringLiteral("folio_end"), folioOf(entry.target, project));
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row.insert(QStringLiteral("type"), cable->type());
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row.insert(QStringLiteral("length"), cable->length());
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row.insert(QStringLiteral("cores_used"),
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QStringLiteral("%1/%2")
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.arg(cable->usedCoreCount())
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.arg(cable->coreCount()));
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result.append(row);
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}
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return result;
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}
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/**
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@brief CableList::toCsv
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The whole list as CSV bytes: every column of the list, every cable
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of the project, in the format every CSV export of this program
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writes.
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@param project the project whose cables are listed
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@return the bytes to write
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*/
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/**
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@brief CableList::toCsv
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@param project the project whose cables are listed
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@param keys the columns to write, in that order; unknown keys are
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dropped, and a list without a single usable one falls back to the
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default columns rather than writing a blank file
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@param include_headers whether the line of column names is written
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as the first line
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@return the CSV bytes in the format every CSV export of this
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program writes (UTF-8 BOM, ';', every field quoted)
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*/
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QByteArray CableList::toCsv(QETProject *project, const QStringList &keys,
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bool include_headers)
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{
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QStringList kept;
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for (const QString &key : keys)
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{
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if (kept.contains(key) || labelOf(key).isEmpty()) {
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continue;
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}
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kept << key;
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}
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if (kept.isEmpty()) {
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kept = defaultKeys();
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}
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QByteArray csv("\xEF\xBB\xBF");
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if (include_headers) {
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QStringList headers;
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for (const QString &key : std::as_const(kept)) {
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headers << labelOf(key);
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}
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csv += BomExport::csvRecord(headers);
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}
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const QVector<QMap<QString, QString>> rows_ = rows(project);
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for (const QMap<QString, QString> &row : rows_)
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{
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QStringList values;
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for (const QString &key : std::as_const(kept)) {
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values << row.value(key);
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}
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csv += BomExport::csvRecord(values);
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}
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return csv;
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}
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/**
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@brief CableList::toCsv
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The whole list as it has always been written: every column, every
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cable, the line of column names included
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@param project the project whose cables are listed
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@return the CSV bytes
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*/
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QByteArray CableList::toCsv(QETProject *project)
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{
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return toCsv(project, defaultKeys(), true);
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}
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