rawTherapee/rtgui/defringe.cc

191 lines
6.1 KiB
C++

/*
* This file is part of RawTherapee.
*
* Copyright (c) 2004-2010 Gabor Horvath <hgabor@rawtherapee.com>
*
* RawTherapee 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 3 of the License, or
* (at your option) any later version.
*
* RawTherapee 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 RawTherapee. If not, see <http://www.gnu.org/licenses/>.
*/
#include "defringe.h"
#include <iomanip>
#include <cmath>
using namespace rtengine;
using namespace rtengine::procparams;
Defringe::Defringe () : FoldableToolPanel(this) {
std::vector<GradientMilestone> bottomMilestones;
float R, G, B;
for (int i=0; i<7; i++) {
float x = float(i)*(1.0f/6.0);
Color::hsv2rgb01(x, 0.5f, 0.5f, R, G, B);
bottomMilestones.push_back( GradientMilestone(double(x), double(R), double(G), double(B)) );
}
enabled = Gtk::manage (new Gtk::CheckButton (M("GENERAL_ENABLED")));
enabled->set_active (false);
enabled->set_tooltip_markup (M("TP_SHARPENING_TOOLTIP"));
enabled->show ();
pack_start (*enabled);
Gtk::HSeparator *hsep1 = Gtk::manage (new Gtk::HSeparator());
hsep1->show ();
pack_start (*hsep1);
curveEditorPF = new CurveEditorGroup (options.lastPFCurvesDir);
curveEditorPF->setCurveListener (this);
chshape = static_cast<FlatCurveEditor*>(curveEditorPF->addCurve(CT_Flat, M("TP_PFCURVE_CURVEEDITOR_CH")));
chshape->setTooltip(M("TP_PFCURVE_CURVEEDITOR_CH_TOOLTIP"));
chshape->setIdentityValue(0.);
chshape->setBottomBarBgGradient(bottomMilestones);
chshape->setCurveColorProvider(this, 1);
enaConn = enabled->signal_toggled().connect( sigc::mem_fun(*this, &Defringe::enabledChanged) );
//edgConn = enabled->signal_toggled().connect( sigc::mem_fun(*this, &Defringe::edgeChanged) );
radius = Gtk::manage (new Adjuster (M("TP_DEFRINGE_RADIUS"), 0.5, 5.0, 0.1, 2.0));
threshold = Gtk::manage (new Adjuster (M("TP_DEFRINGE_THRESHOLD"), 0, 100, 1, 13));
radius->setAdjusterListener (this);
threshold->setAdjusterListener (this);
radius->show();
threshold->show();
pack_start (*radius);
pack_start (*threshold);
curveEditorPF->curveListComplete();
pack_start (*curveEditorPF, Gtk::PACK_SHRINK, 4);
}
Defringe::~Defringe () {
delete curveEditorPF;
}
void Defringe::colorForValue (double valX, double valY, int callerId, ColorCaller *caller) {
float R, G, B;
if (callerId == 1) { // ch
Color::hsv2rgb01(float(valX), float(valY), 0.5f, R, G, B);
}
caller->ccRed = double(R);
caller->ccGreen = double(G);
caller->ccBlue = double(B);
}
void Defringe::read (const ProcParams* pp, const ParamsEdited* pedited) {
disableListener ();
if (pedited) {
radius->setEditedState ( pedited->defringe.radius ? Edited : UnEdited);
threshold->setEditedState ( pedited->defringe.threshold ? Edited : UnEdited);
enabled->set_inconsistent (!pedited->defringe.enabled);
chshape->setUnChanged (!pedited->defringe.huecurve);
}
enaConn.block (true);
enabled->set_active (pp->defringe.enabled);
enaConn.block (false);
lastEnabled = pp->defringe.enabled;
radius->setValue (pp->defringe.radius);
threshold->setValue (pp->defringe.threshold);
chshape->setCurve (pp->defringe.huecurve);
enableListener ();
}
void Defringe::autoOpenCurve () {
// WARNING: The following line won't work, since linear is a flat curve at 0.
chshape->openIfNonlinear();
}
void Defringe::write (ProcParams* pp, ParamsEdited* pedited) {
pp->defringe.radius = radius->getValue ();
pp->defringe.threshold = (int)threshold->getValue ();
pp->defringe.enabled = enabled->get_active();
pp->defringe.huecurve = chshape->getCurve ();
if (pedited) {
pedited->defringe.radius = radius->getEditedState ();
pedited->defringe.threshold = threshold->getEditedState ();
pedited->defringe.enabled = !enabled->get_inconsistent();
pedited->defringe.huecurve = !chshape->isUnChanged ();
}
}
void Defringe::setDefaults (const ProcParams* defParams, const ParamsEdited* pedited) {
radius->setDefault (defParams->defringe.radius);
threshold->setDefault (defParams->defringe.threshold);
if (pedited) {
radius->setDefaultEditedState (pedited->defringe.radius ? Edited : UnEdited);
threshold->setDefaultEditedState (pedited->defringe.threshold ? Edited : UnEdited);
}
else {
radius->setDefaultEditedState (Irrelevant);
threshold->setDefaultEditedState (Irrelevant);
}
}
void Defringe::curveChanged () {
if (listener && enabled->get_active()) listener->panelChanged (EvPFCurve, M("HISTORY_CUSTOMCURVE"));
}
void Defringe::adjusterChanged (Adjuster* a, double newval) {
if (listener && enabled->get_active()) {
if (a==radius)
listener->panelChanged (EvDefringeRadius, Glib::ustring::format (std::setw(2), std::fixed, std::setprecision(1), a->getValue()));
else if (a==threshold)
listener->panelChanged (EvDefringeThreshold, Glib::ustring::format ((int)a->getValue()));
}
}
void Defringe::enabledChanged () {
if (batchMode) {
if (enabled->get_inconsistent()) {
enabled->set_inconsistent (false);
enaConn.block (true);
enabled->set_active (false);
enaConn.block (false);
}
else if (lastEnabled)
enabled->set_inconsistent (true);
lastEnabled = enabled->get_active ();
}
if (listener) {
if (enabled->get_active ())
listener->panelChanged (EvDefringeEnabled, M("GENERAL_ENABLED"));
else
listener->panelChanged (EvDefringeEnabled, M("GENERAL_DISABLED"));
}
}
void Defringe::setBatchMode (bool batchMode) {
ToolPanel::setBatchMode (batchMode);
radius->showEditedCB ();
threshold->showEditedCB ();
}