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Jungfraujoch/viewer/widgets/ToolbarIcons.cpp
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leonarski_f 84228bf8be
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v1.0.0-rc.173 (#83)
* jfjoch_broker: Optional per-dataset authentication - statistics, images and plots can require a bearer token, which jfjoch_viewer supports.
* jfjoch_viewer: Dark mode and a theme-matched colour scheme, a magnifier panel, and simpler contrast and background controls.
* Rugnux: Multiple performance improvements on GPU and CPU (CPU-only processing up to 40% faster, faster image decoding on ARM), with unchanged results.
* Rugnux: `--model` rigid-body refinement runs on the GPU, and the model-validation check is faster and more reliable.
* Rugnux: Improved scaling and merging - error model, outlier rejection, absorption correction and French-Wilson amplitudes now agree more closely with XDS and ctruncate.
* Rugnux: Improved integration - radial background on powder and ice rings, crowded rotation data keep their reflections, and CPU-only builds integrate large unit cells as GPU builds do.
* Rugnux: More robust detector geometry - measured beam centre, X-ray bandwidth and goniometer rate, and geometry refinement accepted only on significant evidence.
* Rugnux: Merged files are written in the standard setting, or in the setting of a reference MTZ, structure-factor mmCIF or model, with its free-R flags.
* Rugnux: Richer report - ice and powder rings, further lattices, superstructure candidates and mosaicity, with warnings worded as prompts to check.
* Rugnux: Clear error messages when a data set needs more GPU or host memory than is available.

Reviewed-on: #83
Co-authored-by: Filip Leonarski <filip.leonarski@psi.ch>
2026-09-29 15:57:32 +02:00

258 lines
8.9 KiB
C++

// SPDX-FileCopyrightText: 2026 Filip Leonarski, Paul Scherrer Institute <filip.leonarski@psi.ch>
// SPDX-License-Identifier: GPL-3.0-only
#include "ToolbarIcons.h"
#include "../ViewerTheme.h"
#include <QIconEngine>
#include <QPainter>
#include <QPainterPath>
#include <QPolygonF>
#include <cmath>
#include <functional>
#include <numbers>
namespace {
constexpr int S = 32;
const QColor DISABLED("#9AA6B3");
using DrawFn = std::function<void(QPainter &, const QColor &)>;
// The glyphs are drawn on an S x S canvas; the painter is scaled so they come out sharp at any size.
QPixmap render(const DrawFn &fn, const QColor &color, const QSize &size) {
QPixmap pm(size);
pm.fill(Qt::transparent);
QPainter p(&pm);
p.setRenderHint(QPainter::Antialiasing);
p.scale(size.width() / double(S), size.height() / double(S));
fn(p, color);
return pm;
}
// Draws the glyph when the icon is painted rather than when it is made, so the ink follows the
// theme: ink when off, white when on (a toggle on its navy checked background), grey when disabled.
class InkIconEngine final : public QIconEngine {
public:
InkIconEngine(DrawFn fn, bool toggle) : fn_(std::move(fn)), toggle_(toggle) {}
void paint(QPainter *painter, const QRect &rect, QIcon::Mode mode, QIcon::State state) override {
painter->drawPixmap(rect, pixmap(rect.size(), mode, state));
}
QPixmap pixmap(const QSize &size, QIcon::Mode mode, QIcon::State state) override {
QColor color = IconInkColor();
if (mode == QIcon::Disabled)
color = DISABLED;
else if (toggle_ && state == QIcon::On)
color = Qt::white;
return render(fn_, color, size);
}
QIconEngine *clone() const override { return new InkIconEngine(fn_, toggle_); }
private:
DrawFn fn_;
bool toggle_;
};
QIcon toggleIcon(const DrawFn &fn) {
return QIcon(new InkIconEngine(fn, true));
}
void fillTriangle(QPainter &p, const QColor &c, QPointF a, QPointF b, QPointF tip) {
p.setPen(Qt::NoPen);
p.setBrush(c);
p.drawPolygon(QPolygonF({a, b, tip}));
}
void bar(QPainter &p, const QColor &c, double x) {
p.setPen(Qt::NoPen);
p.setBrush(c);
p.drawRoundedRect(QRectF(x, 9, 3.2, 14), 1.2, 1.2);
}
// A pair of curved arrows forming a refresh/sync ring.
void syncArrows(QPainter &p, const QColor &c) {
QPen pen(c, 2.4, Qt::SolidLine, Qt::RoundCap);
p.setPen(pen);
p.setBrush(Qt::NoBrush);
const QRectF r(9, 9, 14, 14);
p.drawArc(r, 40 * 16, 230 * 16);
p.drawArc(r, (40 + 180) * 16, 230 * 16);
// arrowheads at the two open ends
p.setPen(Qt::NoPen);
p.setBrush(c);
p.drawPolygon(QPolygonF({QPointF(22, 7.5), QPointF(22, 13.5), QPointF(17.5, 11)}));
p.drawPolygon(QPolygonF({QPointF(10, 24.5), QPointF(10, 18.5), QPointF(14.5, 21)}));
}
}
namespace ToolbarIcons {
QIcon first() {
return toggleIcon([](QPainter &p, const QColor &c) {
bar(p, c, 9);
fillTriangle(p, c, {24, 9}, {24, 23}, {14, 16});
});
}
QIcon prev() {
return toggleIcon([](QPainter &p, const QColor &c) {
fillTriangle(p, c, {22, 8}, {22, 24}, {11, 16});
});
}
QIcon next() {
return toggleIcon([](QPainter &p, const QColor &c) {
fillTriangle(p, c, {10, 8}, {10, 24}, {21, 16});
});
}
QIcon last() {
return toggleIcon([](QPainter &p, const QColor &c) {
fillTriangle(p, c, {8, 9}, {8, 23}, {18, 16});
bar(p, c, 19.8);
});
}
QIcon movie() {
return toggleIcon([](QPainter &p, const QColor &c) {
// Two reels on top of a camera body with a lens barrel — an old-fashioned movie camera.
p.setBrush(Qt::NoBrush);
p.setPen(QPen(c, 1.8));
p.drawEllipse(QPointF(10, 11.5), 3.0, 3.0);
p.drawEllipse(QPointF(16.5, 11.5), 3.0, 3.0);
p.setPen(Qt::NoPen);
p.setBrush(c);
p.drawRoundedRect(QRectF(5, 15, 16, 10), 2, 2);
p.drawRoundedRect(QRectF(21, 17, 5, 6), 1, 1); // lens barrel
});
}
QIcon openFile() {
return toggleIcon([](QPainter &p, const QColor &c) {
// 3.5" diskette ("save" floppy): square jacket with a cut top-right corner, the metal
// shutter across the top, and a label panel below.
p.setPen(QPen(c, 1.8));
p.setBrush(Qt::NoBrush);
QPolygonF body({{6, 6}, {20, 6}, {26, 12}, {26, 26}, {6, 26}});
p.drawPolygon(body); // jacket
p.setPen(Qt::NoPen);
p.setBrush(c);
p.drawRect(QRectF(10, 6, 8, 5.5)); // metal shutter (top)
p.setBrush(Qt::NoBrush);
p.setPen(QPen(c, 1.6));
p.drawRect(QRectF(9.5, 15.5, 13, 8.5)); // label panel
});
}
QIcon reanalyzeImage() {
return toggleIcon([](QPainter &p, const QColor &c) {
p.setPen(QPen(c, 2.0));
p.setBrush(Qt::NoBrush);
p.drawRoundedRect(QRectF(8, 8, 16, 16), 2.5, 2.5);
p.setBrush(c);
p.drawEllipse(QPointF(16, 16), 2.2, 2.2);
});
}
QIcon reanalyzeDataset() {
return toggleIcon([](QPainter &p, const QColor &c) {
p.setPen(QPen(c, 2.0));
p.setBrush(Qt::NoBrush);
for (int i = 2; i >= 0; --i)
p.drawRoundedRect(QRectF(5 + i * 4.0, 5 + i * 4.0, 14, 14), 2.0, 2.0);
p.setBrush(c);
p.drawEllipse(QPointF(12, 12), 2.0, 2.0);
});
}
QIcon linePlot() {
return toggleIcon([](QPainter &p, const QColor &c) {
// L-shaped axes + a rising zig-zag data line (a line plot, not bars).
p.setBrush(Qt::NoBrush);
p.setPen(QPen(c, 1.6, Qt::SolidLine, Qt::RoundCap, Qt::RoundJoin));
p.drawPolyline(QPolygonF({{7, 6}, {7, 25}, {26, 25}}));
p.setPen(QPen(c, 2.0, Qt::SolidLine, Qt::RoundCap, Qt::RoundJoin));
p.drawPolyline(QPolygonF({{9, 21}, {14, 13}, {18, 17}, {25, 8}}));
});
}
QIcon table() {
return toggleIcon([](QPainter &p, const QColor &c) {
// Rounded outer frame with two inner row lines and two inner column lines.
p.setBrush(Qt::NoBrush);
p.setPen(QPen(c, 1.8));
p.drawRoundedRect(QRectF(6, 7, 20, 18), 2, 2);
p.setPen(QPen(c, 1.4));
p.drawLine(QPointF(6, 13), QPointF(26, 13));
p.drawLine(QPointF(6, 19), QPointF(26, 19));
p.drawLine(QPointF(12.7, 7), QPointF(12.7, 25));
p.drawLine(QPointF(19.3, 7), QPointF(19.3, 25));
});
}
QIcon halfSun() {
return toggleIcon([](QPainter &p, const QColor &c) {
// A sun whose disc is half filled, split along the diagonal: light and dark in one glyph.
p.setPen(QPen(c, 2.0));
p.setBrush(Qt::NoBrush);
p.drawEllipse(QPointF(16, 16), 7, 7);
QPainterPath disc, half;
disc.addEllipse(QPointF(16, 16), 7, 7);
half.addPolygon(QPolygonF({QPointF(32, 0), QPointF(32, 32), QPointF(0, 32)}));
p.setPen(Qt::NoPen);
p.setBrush(c);
p.drawPath(disc.intersected(half));
p.setPen(QPen(c, 2.2, Qt::SolidLine, Qt::RoundCap));
for (int i = 0; i < 8; i++) {
const double a = i * std::numbers::pi / 4.0;
p.drawLine(QPointF(16 + 10.5 * std::cos(a), 16 + 10.5 * std::sin(a)),
QPointF(16 + 13.5 * std::cos(a), 16 + 13.5 * std::sin(a)));
}
});
}
QIcon letterA(int size_step) {
return toggleIcon([size_step](QPainter &p, const QColor &c) {
// A bold "A" at 16, 21 or 26 units; all three stand on the same baseline, so side by side
// they read as a ladder of sizes.
QFont font;
font.setBold(true);
font.setPixelSize(16 + 5 * size_step);
QPainterPath path;
path.addText(0, 0, font, "A");
const QRectF r = path.boundingRect();
p.setPen(Qt::NoPen);
p.setBrush(c);
p.drawPath(path.translated(16 - r.center().x(), 28 - r.bottom()));
});
}
QIcon httpSync(HttpState state) {
QColor dot;
switch (state) {
case HttpState::Disconnected: dot = QColor("#9AA6B3"); break; // grey
case HttpState::Live: dot = QColor("#5CB85C"); break; // green
case HttpState::Frozen: dot = QColor("#E9A23B"); break; // amber
}
auto draw = [dot](QPainter &p, const QColor &c) {
syncArrows(p, c);
p.setPen(QPen(Qt::white, 1.2));
p.setBrush(dot);
p.drawEllipse(QPointF(24, 24), 4.2, 4.2); // status dot
};
return QIcon(new InkIconEngine(draw, false));
}
QString buttonStyle() {
return QString(
"QToolButton { border:none; border-radius:4px; padding:4px 6px; color:%1;"
" background:transparent; }"
" QToolButton:hover { background:rgba(250,114,104,0.20); }"
" QToolButton:checked { background:%2; color:white; }"
" QToolButton:disabled { color:#9AA6B3; }").arg(IconInkColor().name(), AccentFillColor().name());
}
} // namespace ToolbarIcons