/[svn]/gigedit/trunk/src/gigedit/dimregionedit.cpp
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Diff of /gigedit/trunk/src/gigedit/dimregionedit.cpp

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revision 1396 by schoenebeck, Wed Oct 10 15:48:54 2007 UTC revision 3329 by schoenebeck, Sun Jul 23 18:31:53 2017 UTC
# Line 1  Line 1 
1  /*  /*
2   * Copyright (C) 2006, 2007 Andreas Persson   * Copyright (C) 2006-2017 Andreas Persson
3   *   *
4   * This program is free software; you can redistribute it and/or   * This program is free software; you can redistribute it and/or
5   * modify it under the terms of the GNU General Public License as   * modify it under the terms of the GNU General Public License as
# Line 17  Line 17 
17   * 02110-1301 USA.   * 02110-1301 USA.
18   */   */
19    
20    #include "global.h"
21  #include "dimregionedit.h"  #include "dimregionedit.h"
22    
23  #include "global.h"  #include "compat.h"
24    
25    VelocityCurve::VelocityCurve(double (gig::DimensionRegion::*getter)(uint8_t)) :
26        getter(getter), dimreg(0) {
27        set_size_request(80, 80);
28    }
29    
30    #if (GTKMM_MAJOR_VERSION == 2 && GTKMM_MINOR_VERSION < 90) || GTKMM_MAJOR_VERSION < 2
31    bool VelocityCurve::on_expose_event(GdkEventExpose* e) {
32        const Cairo::RefPtr<Cairo::Context>& cr =
33            get_window()->create_cairo_context();
34    #if 0
35    }
36    #endif
37    #else
38    bool VelocityCurve::on_draw(const Cairo::RefPtr<Cairo::Context>& cr) {
39    #endif
40        if (dimreg) {
41            int w = get_width();
42            int h = get_height();
43    
44            for (int pass = 0 ; pass < 2 ; pass++) {
45                for (double x = 0 ; x <= w ; x++) {
46                    int vel = int(x * (127 - 1e-10) / w + 1);
47                    double y = (1 - (dimreg->*getter)(vel)) * (h - 3) + 1.5;
48    
49                    if (x < 1e-10) {
50                        cr->move_to(x, y);
51                    } else {
52                        cr->line_to(x, y);
53                    }
54                }
55                if (pass == 0) {
56                    cr->line_to(w, h);
57                    cr->line_to(0, h);
58                    cr->set_source_rgba(0.5, 0.44, 1.0, is_sensitive() ? 0.2 : 0.1);
59                    cr->fill();
60                } else {
61                    cr->set_line_width(3);
62                    cr->set_source_rgba(0.5, 0.44, 1.0, is_sensitive() ? 1.0 : 0.3);
63                    cr->stroke();
64                }
65            }
66        }
67        return true;
68    }
69    
70    
71    CrossfadeCurve::CrossfadeCurve() : dimreg(0) {
72        set_size_request(280, 80);
73    }
74    
75    #if (GTKMM_MAJOR_VERSION == 2 && GTKMM_MINOR_VERSION < 90) || GTKMM_MAJOR_VERSION < 2
76    bool CrossfadeCurve::on_expose_event(GdkEventExpose* e) {
77        const Cairo::RefPtr<Cairo::Context>& cr =
78            get_window()->create_cairo_context();
79    #if 0
80    }
81    #endif
82    #else
83    bool CrossfadeCurve::on_draw(const Cairo::RefPtr<Cairo::Context>& cr) {
84    #endif
85        if (dimreg) {
86            cr->translate(1.5, 0);
87    
88            // first, draw curves for the other layers
89            gig::Region* region = dimreg->GetParent();
90            int dimregno;
91            for (dimregno = 0 ; dimregno < region->DimensionRegions ; dimregno++) {
92                if (region->pDimensionRegions[dimregno] == dimreg) {
93                    break;
94                }
95            }
96            int bitcount = 0;
97            for (int dim = 0 ; dim < region->Dimensions ; dim++) {
98                if (region->pDimensionDefinitions[dim].dimension ==
99                    gig::dimension_layer) {
100                    int mask =
101                        ~(((1 << region->pDimensionDefinitions[dim].bits) - 1) <<
102                          bitcount);
103                    int c = dimregno & mask; // mask away the layer dimension
104    
105                    for (int i = 0 ; i < region->pDimensionDefinitions[dim].zones ;
106                         i++) {
107                        gig::DimensionRegion* d =
108                            region->pDimensionRegions[c + (i << bitcount)];
109                        if (d != dimreg) {
110                            draw_one_curve(cr, d, false);
111                        }
112                    }
113                    break;
114                }
115                bitcount += region->pDimensionDefinitions[dim].bits;
116            }
117    
118            // then, draw the currently selected layer
119            draw_one_curve(cr, dimreg, is_sensitive());
120        }
121        return true;
122    }
123    
124    void CrossfadeCurve::draw_one_curve(const Cairo::RefPtr<Cairo::Context>& cr,
125                                        const gig::DimensionRegion* d,
126                                        bool sensitive) {
127        int w = get_width();
128        int h = get_height();
129    
130        if (d->Crossfade.out_end) {
131            for (int pass = 0 ; pass < 2 ; pass++) {
132                cr->move_to(d->Crossfade.in_start / 127.0 * (w - 3), h);
133                cr->line_to(d->Crossfade.in_end / 127.0 * (w - 3), 1.5);
134                cr->line_to(d->Crossfade.out_start / 127.0 * (w - 3), 1.5);
135                cr->line_to(d->Crossfade.out_end / 127.0 * (w - 3), h);
136    
137                if (pass == 0) {
138                    cr->set_source_rgba(0.5, 0.44, 1.0, sensitive ? 0.2 : 0.1);
139                    cr->fill();
140                } else {
141                    cr->set_line_width(3);
142                    cr->set_source_rgba(0.5, 0.44, 1.0, sensitive ? 1.0 : 0.3);
143                    cr->stroke();
144                }
145            }
146        }
147    }
148    
149    
150    EGStateOptions::EGStateOptions() : HBox(),
151        label(_("May be cancelled: ")),
152        checkBoxAttack(_("Attack")),
153        checkBoxAttackHold(_("Attack Hold")),
154        checkBoxDecay1(_("Decay 1")),
155        checkBoxDecay2(_("Decay 2")),
156        checkBoxRelease(_("Release"))
157    {
158        set_spacing(6);
159    
160        pack_start(label);
161        pack_start(checkBoxAttack, Gtk::PACK_SHRINK);
162        pack_start(checkBoxAttackHold, Gtk::PACK_SHRINK);
163        pack_start(checkBoxDecay1, Gtk::PACK_SHRINK);
164        pack_start(checkBoxDecay2, Gtk::PACK_SHRINK);
165        pack_start(checkBoxRelease, Gtk::PACK_SHRINK);
166    
167        checkBoxAttack.set_tooltip_text(_(
168            "If checked: a note-off aborts the 'attack' stage."
169        ));
170        checkBoxAttackHold.set_tooltip_text(_(
171            "If checked: a note-off aborts the 'attack hold' stage."
172        ));
173        checkBoxDecay1.set_tooltip_text(_(
174            "If checked: a note-off aborts the 'decay 1' stage."
175        ));
176        checkBoxDecay2.set_tooltip_text(_(
177            "If checked: a note-off aborts the 'decay 2' stage."
178        ));
179        checkBoxRelease.set_tooltip_text(_(
180            "If checked: a note-on reverts back from the 'release' stage."
181        ));
182    }
183    
184    
185  DimRegionEdit::DimRegionEdit() :  DimRegionEdit::DimRegionEdit() :
186      eEG1PreAttack("Pre-attack", 0, 100, 2),      velocity_curve(&gig::DimensionRegion::GetVelocityAttenuation),
187      eEG1Attack("Attack", 0, 60, 3),      release_curve(&gig::DimensionRegion::GetVelocityRelease),
188      eEG1Decay1("Decay 1", 0.005, 60, 3),      cutoff_curve(&gig::DimensionRegion::GetVelocityCutoff),
189      eEG1Decay2("Decay 2", 0, 60, 3),      eEG1PreAttack(_("Pre-attack Level (%)"), 0, 100, 2),
190      eEG1InfiniteSustain("Infinite sustain"),      eEG1Attack(_("Attack Time (seconds)"), 0, 60, 3),
191      eEG1Sustain("Sustain", 0, 100, 2),      eEG1Decay1(_("Decay 1 Time (seconds)"), 0.005, 60, 3),
192      eEG1Release("Release", 0, 60, 3),      eEG1Decay2(_("Decay 2 Time (seconds)"), 0, 60, 3),
193      eEG1Hold("Hold"),      eEG1InfiniteSustain(_("Infinite sustain")),
194      eEG1Controller("Controller"),      eEG1Sustain(_("Sustain Level (%)"), 0, 100, 2),
195      eEG1ControllerInvert("Controller invert"),      eEG1Release(_("Release Time (seconds)"), 0, 60, 3),
196      eEG1ControllerAttackInfluence("Controller attack influence", 0, 3),      eEG1Hold(_("Hold Attack Stage until Loop End")),
197      eEG1ControllerDecayInfluence("Controller decay influence", 0, 3),      eEG1Controller(_("Controller")),
198      eEG1ControllerReleaseInfluence("Controller release influence", 0, 3),      eEG1ControllerInvert(_("Controller invert")),
199      eLFO1Frequency("Frequency", 0.1, 10, 2),      eEG1ControllerAttackInfluence(_("Controller attack influence"), 0, 3),
200      eLFO1InternalDepth("Internal depth", 0, 1200),      eEG1ControllerDecayInfluence(_("Controller decay influence"), 0, 3),
201      eLFO1ControlDepth("Control depth", 0, 1200),      eEG1ControllerReleaseInfluence(_("Controller release influence"), 0, 3),
202      eLFO1Controller("Controller"),      eLFO1Frequency(_("Frequency"), 0.1, 10, 2),
203      eLFO1FlipPhase("Flip phase"),      eLFO1InternalDepth(_("Internal depth"), 0, 1200),
204      eLFO1Sync("Sync"),      eLFO1ControlDepth(_("Control depth"), 0, 1200),
205      eEG2PreAttack("Pre-attack", 0, 100, 2),      eLFO1Controller(_("Controller")),
206      eEG2Attack("Attack", 0, 60, 3),      eLFO1FlipPhase(_("Flip phase")),
207      eEG2Decay1("Decay 1", 0.005, 60, 3),      eLFO1Sync(_("Sync")),
208      eEG2Decay2("Decay 2", 0, 60, 3),      eEG2PreAttack(_("Pre-attack Level (%)"), 0, 100, 2),
209      eEG2InfiniteSustain("Infinite sustain"),      eEG2Attack(_("Attack Time (seconds)"), 0, 60, 3),
210      eEG2Sustain("Sustain", 0, 100, 2),      eEG2Decay1(_("Decay 1 Time (seconds)"), 0.005, 60, 3),
211      eEG2Release("Release", 0, 60, 3),      eEG2Decay2(_("Decay 2 Time (seconds)"), 0, 60, 3),
212      eEG2Controller("Controller"),      eEG2InfiniteSustain(_("Infinite sustain")),
213      eEG2ControllerInvert("Controller invert"),      eEG2Sustain(_("Sustain Level (%)"), 0, 100, 2),
214      eEG2ControllerAttackInfluence("Controller attack influence", 0, 3),      eEG2Release(_("Release Time (seconds)"), 0, 60, 3),
215      eEG2ControllerDecayInfluence("Controller decay influence", 0, 3),      eEG2Controller(_("Controller")),
216      eEG2ControllerReleaseInfluence("Controller release influence", 0, 3),      eEG2ControllerInvert(_("Controller invert")),
217      eLFO2Frequency("Frequency", 0.1, 10, 2),      eEG2ControllerAttackInfluence(_("Controller attack influence"), 0, 3),
218      eLFO2InternalDepth("Internal depth", 0, 1200),      eEG2ControllerDecayInfluence(_("Controller decay influence"), 0, 3),
219      eLFO2ControlDepth("Control depth", 0, 1200),      eEG2ControllerReleaseInfluence(_("Controller release influence"), 0, 3),
220      eLFO2Controller("Controller"),      eLFO2Frequency(_("Frequency"), 0.1, 10, 2),
221      eLFO2FlipPhase("Flip phase"),      eLFO2InternalDepth(_("Internal depth"), 0, 1200),
222      eLFO2Sync("Sync"),      eLFO2ControlDepth(_("Control depth"), 0, 1200),
223      eEG3Attack("Attack", 0, 10, 3),      eLFO2Controller(_("Controller")),
224      eEG3Depth("Depth", -1200, 1200),      eLFO2FlipPhase(_("Flip phase")),
225      eLFO3Frequency("Frequency", 0.1, 10, 2),      eLFO2Sync(_("Sync")),
226      eLFO3InternalDepth("Internal depth", 0, 1200),      eEG3Attack(_("Attack"), 0, 10, 3),
227      eLFO3ControlDepth("Control depth", 0, 1200),      eEG3Depth(_("Depth"), -1200, 1200),
228      eLFO3Controller("Controller"),      eLFO3Frequency(_("Frequency"), 0.1, 10, 2),
229      eLFO3Sync("Sync"),      eLFO3InternalDepth(_("Internal depth"), 0, 1200),
230      eVCFEnabled("Enabled"),      eLFO3ControlDepth(_("Control depth"), 0, 1200),
231      eVCFType("Type"),      eLFO3Controller(_("Controller")),
232      eVCFCutoffController("Cutoff controller"),      eLFO3Sync(_("Sync")),
233      eVCFCutoffControllerInvert("Cutoff controller invert"),      eVCFEnabled(_("Enabled")),
234      eVCFCutoff("Cutoff"),      eVCFType(_("Type")),
235      eVCFVelocityCurve("Velocity curve"),      eVCFCutoffController(_("Cutoff controller")),
236      eVCFVelocityScale("Velocity scale"),      eVCFCutoffControllerInvert(_("Cutoff controller invert")),
237      eVCFVelocityDynamicRange("Velocity dynamic range", 0, 4),      eVCFCutoff(_("Cutoff")),
238      eVCFResonance("Resonance"),      eVCFVelocityCurve(_("Velocity curve")),
239      eVCFResonanceDynamic("Resonance dynamic"),      eVCFVelocityScale(_("Velocity scale")),
240      eVCFResonanceController("Resonance controller"),      eVCFVelocityDynamicRange(_("Velocity dynamic range"), 0, 4),
241      eVCFKeyboardTracking("Keyboard tracking"),      eVCFResonance(_("Resonance")),
242      eVCFKeyboardTrackingBreakpoint("Keyboard tracking breakpoint"),      eVCFResonanceDynamic(_("Resonance dynamic")),
243      eVelocityResponseCurve("Velocity response curve"),      eVCFResonanceController(_("Resonance controller")),
244      eVelocityResponseDepth("Velocity response depth", 0, 4),      eVCFKeyboardTracking(_("Keyboard tracking")),
245      eVelocityResponseCurveScaling("Velocity response curve scaling"),      eVCFKeyboardTrackingBreakpoint(_("Keyboard tracking breakpoint")),
246      eReleaseVelocityResponseCurve("Release velocity response curve"),      eVelocityResponseCurve(_("Velocity response curve")),
247      eReleaseVelocityResponseDepth("Release velocity response depth", 0, 4),      eVelocityResponseDepth(_("Velocity response depth"), 0, 4),
248      eReleaseTriggerDecay("Release trigger decay", 0, 8),      eVelocityResponseCurveScaling(_("Velocity response curve scaling")),
249      eCrossfade_in_start("Crossfade-in start"),      eReleaseVelocityResponseCurve(_("Release velocity response curve")),
250      eCrossfade_in_end("Crossfade-in end"),      eReleaseVelocityResponseDepth(_("Release velocity response depth"), 0, 4),
251      eCrossfade_out_start("Crossfade-out start"),      eReleaseTriggerDecay(_("Release trigger decay"), 0, 8),
252      eCrossfade_out_end("Crossfade-out end"),      eCrossfade_in_start(_("Crossfade-in start")),
253      ePitchTrack("Pitch track"),      eCrossfade_in_end(_("Crossfade-in end")),
254      eDimensionBypass("Dimension bypass"),      eCrossfade_out_start(_("Crossfade-out start")),
255      ePan("Pan", -64, 63),      eCrossfade_out_end(_("Crossfade-out end")),
256      eSelfMask("Self mask"),      ePitchTrack(_("Pitch track")),
257      eAttenuationController("Attenuation controller"),      eDimensionBypass(_("Dimension bypass")),
258      eInvertAttenuationController("Invert attenuation controller"),      ePan(_("Pan"), -64, 63),
259      eAttenuationControllerThreshold("Attenuation controller threshold"),      eSelfMask(_("Kill lower velocity voices (a.k.a \"Self mask\")")),
260      eChannelOffset("Channel offset", 0, 9),      eAttenuationController(_("Attenuation controller")),
261      eSustainDefeat("Sustain defeat"),      eInvertAttenuationController(_("Invert attenuation controller")),
262      eMSDecode("MS decode"),      eAttenuationControllerThreshold(_("Attenuation controller threshold")),
263      eSampleStartOffset("Sample start offset", 0, 2000),      eChannelOffset(_("Channel offset"), 0, 9),
264      eUnityNote("Unity note"),      eSustainDefeat(_("Ignore Hold Pedal (a.k.a. \"Sustain defeat\")")),
265      eFineTune("Fine tune", -49, 50),      eMSDecode(_("Decode Mid/Side Recordings")),
266      eGain("Gain", -96, 0, 2, -655360),      eSampleStartOffset(_("Sample start offset"), 0, 2000),
267      eGainPlus6("Gain +6dB", eGain, 6 * -655360),      eUnityNote(_("Unity note")),
268      eSampleLoopEnabled("Enabled"),      eSampleGroup(_("Sample Group")),
269      eSampleLoopStart("Loop start positon"),      eSampleFormatInfo(_("Sample Format")),
270      eSampleLoopLength("Loop size"),      eSampleID("Sample ID"),
271      eSampleLoopType("Loop type"),      eChecksum("Wave Data CRC-32"),
272      eSampleLoopInfinite("Infinite loop"),      eFineTune(_("Fine tune"), -49, 50),
273      eSampleLoopPlayCount("Playback count")      eGain(_("Gain"), -96, 0, 2, -655360),
274  {      eGainPlus6(_("Gain +6dB"), eGain, 6 * -655360),
275        eSampleLoopEnabled(_("Enabled")),
276        eSampleLoopStart(_("Loop start positon")),
277        eSampleLoopLength(_("Loop size")),
278        eSampleLoopType(_("Loop type")),
279        eSampleLoopInfinite(_("Infinite loop")),
280        eSampleLoopPlayCount(_("Playback count"), 1),
281        buttonSelectSample(UNICODE_LEFT_ARROW + "  " + _("Select Sample")),
282        update_model(0)
283    {
284        // make synthesis parameter page tabs scrollable
285        // (workaround for GTK3: default theme uses huge tabs which breaks layout)
286        set_scrollable();
287    
288        connect(eEG1PreAttack, &gig::DimensionRegion::EG1PreAttack);
289        connect(eEG1Attack, &gig::DimensionRegion::EG1Attack);
290        connect(eEG1Decay1, &gig::DimensionRegion::EG1Decay1);
291        connect(eEG1Decay2, &gig::DimensionRegion::EG1Decay2);
292        connect(eEG1InfiniteSustain, &gig::DimensionRegion::EG1InfiniteSustain);
293        connect(eEG1Sustain, &gig::DimensionRegion::EG1Sustain);
294        connect(eEG1Release, &gig::DimensionRegion::EG1Release);
295        connect(eEG1Hold, &gig::DimensionRegion::EG1Hold);
296        connect(eEG1Controller, &gig::DimensionRegion::EG1Controller);
297        connect(eEG1ControllerInvert, &gig::DimensionRegion::EG1ControllerInvert);
298        connect(eEG1ControllerAttackInfluence,
299                &gig::DimensionRegion::EG1ControllerAttackInfluence);
300        connect(eEG1ControllerDecayInfluence,
301                &gig::DimensionRegion::EG1ControllerDecayInfluence);
302        connect(eEG1ControllerReleaseInfluence,
303                &gig::DimensionRegion::EG1ControllerReleaseInfluence);
304        {
305            ClassMemberPtr<gig::DimensionRegion, bool> mp(offsetof(gig::DimensionRegion, EG1Options.AttackCancel));
306            connect(eEG1StateOptions.checkBoxAttack, mp.pmember);
307        }
308        {
309            ClassMemberPtr<gig::DimensionRegion, bool> mp(offsetof(gig::DimensionRegion, EG1Options.AttackHoldCancel));
310            connect(eEG1StateOptions.checkBoxAttackHold, mp.pmember);
311        }
312        {
313            ClassMemberPtr<gig::DimensionRegion, bool> mp(offsetof(gig::DimensionRegion, EG1Options.Decay1Cancel));
314            connect(eEG1StateOptions.checkBoxDecay1, mp.pmember);
315        }
316        {
317            ClassMemberPtr<gig::DimensionRegion, bool> mp(offsetof(gig::DimensionRegion, EG1Options.Decay2Cancel));
318            connect(eEG1StateOptions.checkBoxDecay2, mp.pmember);
319        }
320        {
321            ClassMemberPtr<gig::DimensionRegion, bool> mp(offsetof(gig::DimensionRegion, EG1Options.ReleaseCancel));
322            connect(eEG1StateOptions.checkBoxRelease, mp.pmember);
323        }
324        connect(eLFO1Frequency, &gig::DimensionRegion::LFO1Frequency);
325        connect(eLFO1InternalDepth, &gig::DimensionRegion::LFO1InternalDepth);
326        connect(eLFO1ControlDepth, &gig::DimensionRegion::LFO1ControlDepth);
327        connect(eLFO1Controller, &gig::DimensionRegion::LFO1Controller);
328        connect(eLFO1FlipPhase, &gig::DimensionRegion::LFO1FlipPhase);
329        connect(eLFO1Sync, &gig::DimensionRegion::LFO1Sync);
330        connect(eEG2PreAttack, &gig::DimensionRegion::EG2PreAttack);
331        connect(eEG2Attack, &gig::DimensionRegion::EG2Attack);
332        connect(eEG2Decay1, &gig::DimensionRegion::EG2Decay1);
333        connect(eEG2Decay2, &gig::DimensionRegion::EG2Decay2);
334        connect(eEG2InfiniteSustain, &gig::DimensionRegion::EG2InfiniteSustain);
335        connect(eEG2Sustain, &gig::DimensionRegion::EG2Sustain);
336        connect(eEG2Release, &gig::DimensionRegion::EG2Release);
337        connect(eEG2Controller, &gig::DimensionRegion::EG2Controller);
338        connect(eEG2ControllerInvert, &gig::DimensionRegion::EG2ControllerInvert);
339        connect(eEG2ControllerAttackInfluence,
340                &gig::DimensionRegion::EG2ControllerAttackInfluence);
341        connect(eEG2ControllerDecayInfluence,
342                &gig::DimensionRegion::EG2ControllerDecayInfluence);
343        connect(eEG2ControllerReleaseInfluence,
344                &gig::DimensionRegion::EG2ControllerReleaseInfluence);
345        {
346            ClassMemberPtr<gig::DimensionRegion, bool> mp(offsetof(gig::DimensionRegion, EG2Options.AttackCancel));
347            connect(eEG2StateOptions.checkBoxAttack, mp.pmember);
348        }
349        {
350            ClassMemberPtr<gig::DimensionRegion, bool> mp(offsetof(gig::DimensionRegion, EG2Options.AttackHoldCancel));
351            connect(eEG2StateOptions.checkBoxAttackHold, mp.pmember);
352        }
353        {
354            ClassMemberPtr<gig::DimensionRegion, bool> mp(offsetof(gig::DimensionRegion, EG2Options.Decay1Cancel));
355            connect(eEG2StateOptions.checkBoxDecay1, mp.pmember);
356        }
357        {
358            ClassMemberPtr<gig::DimensionRegion, bool> mp(offsetof(gig::DimensionRegion, EG2Options.Decay2Cancel));
359            connect(eEG2StateOptions.checkBoxDecay2, mp.pmember);
360        }
361        {
362            ClassMemberPtr<gig::DimensionRegion, bool> mp(offsetof(gig::DimensionRegion, EG2Options.ReleaseCancel));
363            connect(eEG2StateOptions.checkBoxRelease, mp.pmember);
364        }
365        connect(eLFO2Frequency, &gig::DimensionRegion::LFO2Frequency);
366        connect(eLFO2InternalDepth, &gig::DimensionRegion::LFO2InternalDepth);
367        connect(eLFO2ControlDepth, &gig::DimensionRegion::LFO2ControlDepth);
368        connect(eLFO2Controller, &gig::DimensionRegion::LFO2Controller);
369        connect(eLFO2FlipPhase, &gig::DimensionRegion::LFO2FlipPhase);
370        connect(eLFO2Sync, &gig::DimensionRegion::LFO2Sync);
371        connect(eEG3Attack, &gig::DimensionRegion::EG3Attack);
372        connect(eEG3Depth, &gig::DimensionRegion::EG3Depth);
373        connect(eLFO3Frequency, &gig::DimensionRegion::LFO3Frequency);
374        connect(eLFO3InternalDepth, &gig::DimensionRegion::LFO3InternalDepth);
375        connect(eLFO3ControlDepth, &gig::DimensionRegion::LFO3ControlDepth);
376        connect(eLFO3Controller, &gig::DimensionRegion::LFO3Controller);
377        connect(eLFO3Sync, &gig::DimensionRegion::LFO3Sync);
378        connect(eVCFEnabled, &gig::DimensionRegion::VCFEnabled);
379        connect(eVCFType, &gig::DimensionRegion::VCFType);
380        connect(eVCFCutoffController,
381                &gig::DimensionRegion::SetVCFCutoffController);
382        connect(eVCFCutoffControllerInvert,
383                &gig::DimensionRegion::VCFCutoffControllerInvert);
384        connect(eVCFCutoff, &gig::DimensionRegion::VCFCutoff);
385        connect(eVCFVelocityCurve, &gig::DimensionRegion::SetVCFVelocityCurve);
386        connect(eVCFVelocityScale, &gig::DimensionRegion::SetVCFVelocityScale);
387        connect(eVCFVelocityDynamicRange,
388                &gig::DimensionRegion::SetVCFVelocityDynamicRange);
389        connect(eVCFResonance, &gig::DimensionRegion::VCFResonance);
390        connect(eVCFResonanceDynamic, &gig::DimensionRegion::VCFResonanceDynamic);
391        connect(eVCFResonanceController,
392                &gig::DimensionRegion::VCFResonanceController);
393        connect(eVCFKeyboardTracking, &gig::DimensionRegion::VCFKeyboardTracking);
394        connect(eVCFKeyboardTrackingBreakpoint,
395                &gig::DimensionRegion::VCFKeyboardTrackingBreakpoint);
396        connect(eVelocityResponseCurve,
397                &gig::DimensionRegion::SetVelocityResponseCurve);
398        connect(eVelocityResponseDepth,
399                &gig::DimensionRegion::SetVelocityResponseDepth);
400        connect(eVelocityResponseCurveScaling,
401                &gig::DimensionRegion::SetVelocityResponseCurveScaling);
402        connect(eReleaseVelocityResponseCurve,
403                &gig::DimensionRegion::SetReleaseVelocityResponseCurve);
404        connect(eReleaseVelocityResponseDepth,
405                &gig::DimensionRegion::SetReleaseVelocityResponseDepth);
406        connect(eReleaseTriggerDecay, &gig::DimensionRegion::ReleaseTriggerDecay);
407        connect(eCrossfade_in_start, &DimRegionEdit::set_Crossfade_in_start);
408        connect(eCrossfade_in_end, &DimRegionEdit::set_Crossfade_in_end);
409        connect(eCrossfade_out_start, &DimRegionEdit::set_Crossfade_out_start);
410        connect(eCrossfade_out_end, &DimRegionEdit::set_Crossfade_out_end);
411        connect(ePitchTrack, &gig::DimensionRegion::PitchTrack);
412        connect(eDimensionBypass, &gig::DimensionRegion::DimensionBypass);
413        connect(ePan, &gig::DimensionRegion::Pan);
414        connect(eSelfMask, &gig::DimensionRegion::SelfMask);
415        connect(eAttenuationController,
416                &gig::DimensionRegion::AttenuationController);
417        connect(eInvertAttenuationController,
418                &gig::DimensionRegion::InvertAttenuationController);
419        connect(eAttenuationControllerThreshold,
420                &gig::DimensionRegion::AttenuationControllerThreshold);
421        connect(eChannelOffset, &gig::DimensionRegion::ChannelOffset);
422        connect(eSustainDefeat, &gig::DimensionRegion::SustainDefeat);
423        connect(eMSDecode, &gig::DimensionRegion::MSDecode);
424        connect(eSampleStartOffset, &gig::DimensionRegion::SampleStartOffset);
425        connect(eUnityNote, &DimRegionEdit::set_UnityNote);
426        connect(eFineTune, &DimRegionEdit::set_FineTune);
427        connect(eGain, &DimRegionEdit::set_Gain);
428        connect(eGainPlus6, &DimRegionEdit::set_Gain);
429        connect(eSampleLoopEnabled, &DimRegionEdit::set_LoopEnabled);
430        connect(eSampleLoopType, &DimRegionEdit::set_LoopType);
431        connect(eSampleLoopStart, &DimRegionEdit::set_LoopStart);
432        connect(eSampleLoopLength, &DimRegionEdit::set_LoopLength);
433        connect(eSampleLoopInfinite, &DimRegionEdit::set_LoopInfinite);
434        connect(eSampleLoopPlayCount, &DimRegionEdit::set_LoopPlayCount);
435        buttonSelectSample.signal_clicked().connect(
436            sigc::mem_fun(*this, &DimRegionEdit::onButtonSelectSamplePressed)
437        );
438    
439      for (int i = 0 ; i < 7 ; i++) {      for (int i = 0 ; i < 7 ; i++) {
440          table[i] = new Gtk::Table(3, 1);          table[i] = new Gtk::Table(3, 1);
441          table[i]->set_col_spacings(7);          table[i]->set_col_spacings(7);
# Line 120  DimRegionEdit::DimRegionEdit() : Line 445  DimRegionEdit::DimRegionEdit() :
445      eUnityNote.set_tip(      eUnityNote.set_tip(
446          _("Note this sample is associated with (a.k.a. 'root note')")          _("Note this sample is associated with (a.k.a. 'root note')")
447      );      );
448        buttonSelectSample.set_tooltip_text(
449            _("Selects the sample of this dimension region on the left hand side's sample tree view.")
450        );
451      eSampleStartOffset.set_tip(_("Sample position at which playback should be started"));      eSampleStartOffset.set_tip(_("Sample position at which playback should be started"));
452      ePan.set_tip(_("Stereo balance (left/right)"));      ePan.set_tip(_("Stereo balance (left/right)"));
453      eChannelOffset.set_tip(      eChannelOffset.set_tip(
# Line 150  DimRegionEdit::DimRegionEdit() : Line 478  DimRegionEdit::DimRegionEdit() :
478            "Caution: this setting is stored on Sample side, thus is shared "            "Caution: this setting is stored on Sample side, thus is shared "
479            "among all dimension regions that use this sample!")            "among all dimension regions that use this sample!")
480      );      );
481        
482        eEG1PreAttack.set_tip(
483            "Very first level this EG starts with. It rises then in Attack Time "
484            "seconds from this initial level to 100%."
485        );
486        eEG1Attack.set_tip(
487            "Duration of the EG's Attack stage, which raises its level from "
488            "Pre-Attack Level to 100%."
489        );
490        eEG1Hold.set_tip(
491           "On looped sounds, enabling this will cause the Decay 1 stage not to "
492           "enter before the loop has been passed one time."
493        );
494        eAttenuationController.set_tip(_(
495            "If you are not using the 'Layer' dimension, then this controller "
496            "simply alters the volume. If you are using the 'Layer' dimension, "
497            "then this controller is controlling the crossfade between Layers in "
498            "real-time."
499        ));
500    
501        eLFO1Sync.set_tip(
502            "If not checked, every voice will use its own LFO instance, which "
503            "causes voices triggered at different points in time to have different "
504            "LFO levels. By enabling 'Sync' here the voices will instead use and "
505            "share one single LFO, causing all voices to have the same LFO level, "
506            "no matter when the individual notes have been triggered."
507        );
508        eLFO2Sync.set_tip(
509            "If not checked, every voice will use its own LFO instance, which "
510            "causes voices triggered at different points in time to have different "
511            "LFO levels. By enabling 'Sync' here the voices will instead use and "
512            "share one single LFO, causing all voices to have the same LFO level, "
513            "no matter when the individual notes have been triggered."
514        );
515        eLFO3Sync.set_tip(
516            "If not checked, every voice will use its own LFO instance, which "
517            "causes voices triggered at different points in time to have different "
518            "LFO levels. By enabling 'Sync' here the voices will instead use and "
519            "share one single LFO, causing all voices to have the same LFO level, "
520            "no matter when the individual notes have been triggered."
521        );
522        eLFO1FlipPhase.set_tip(
523           "Inverts the LFO's generated wave vertically."
524        );
525        eLFO2FlipPhase.set_tip(
526           "Inverts the LFO's generated wave vertically."
527        );
528    
529      pageno = 0;      pageno = 0;
530      rowno = 0;      rowno = 0;
531      firstRowInBlock = 0;      firstRowInBlock = 0;
532    
533      addHeader(_("Mandatory Settings"));      addHeader(_("Mandatory Settings"));
534      addString("Sample", lSample, wSample);      addString(_("Sample"), lSample, wSample, buttonNullSampleReference);
535        buttonNullSampleReference->set_label("X");
536        buttonNullSampleReference->set_tooltip_text(_("Remove current sample reference (NULL reference). This can be used to define a \"silent\" case where no sample shall be played."));
537        buttonNullSampleReference->signal_clicked().connect(
538            sigc::mem_fun(*this, &DimRegionEdit::nullOutSampleReference)
539        );
540      //TODO: the following would break drag&drop:   wSample->property_editable().set_value(false);  or this:    wSample->set_editable(false);      //TODO: the following would break drag&drop:   wSample->property_editable().set_value(false);  or this:    wSample->set_editable(false);
541      tooltips.set_tip(*wSample, _("Drop a sample here"));  #ifdef OLD_TOOLTIPS
542        tooltips.set_tip(*wSample, _("Drag & drop a sample here"));
543    #else
544        wSample->set_tooltip_text(_("Drag & drop a sample here"));
545    #endif
546      addProp(eUnityNote);      addProp(eUnityNote);
547        addProp(eSampleGroup);
548        addProp(eSampleFormatInfo);
549        addProp(eSampleID);
550        addProp(eChecksum);
551        addRightHandSide(buttonSelectSample);
552      addHeader(_("Optional Settings"));      addHeader(_("Optional Settings"));
553      addProp(eSampleStartOffset);      addProp(eSampleStartOffset);
554      addProp(eChannelOffset);      addProp(eChannelOffset);
555      addHeader("Loops");      addHeader(_("Loops"));
556      addProp(eSampleLoopEnabled);      addProp(eSampleLoopEnabled);
557      addProp(eSampleLoopStart);      addProp(eSampleLoopStart);
558      addProp(eSampleLoopLength);      addProp(eSampleLoopLength);
559      {      {
560          const char* choices[] = { "normal", "bidirectional", "backward", 0 };          const char* choices[] = { _("normal"), _("bidirectional"), _("backward"), 0 };
561          static const uint32_t values[] = {          static const uint32_t values[] = {
562              gig::loop_type_normal,              gig::loop_type_normal,
563              gig::loop_type_bidirectional,              gig::loop_type_bidirectional,
# Line 189  DimRegionEdit::DimRegionEdit() : Line 578  DimRegionEdit::DimRegionEdit() :
578      addHeader(_("Amplitude Envelope (EG1)"));      addHeader(_("Amplitude Envelope (EG1)"));
579      addProp(eEG1PreAttack);      addProp(eEG1PreAttack);
580      addProp(eEG1Attack);      addProp(eEG1Attack);
581        addProp(eEG1Hold);
582      addProp(eEG1Decay1);      addProp(eEG1Decay1);
583      addProp(eEG1Decay2);      addProp(eEG1Decay2);
584      addProp(eEG1InfiniteSustain);      addProp(eEG1InfiniteSustain);
585      addProp(eEG1Sustain);      addProp(eEG1Sustain);
586      addProp(eEG1Release);      addProp(eEG1Release);
     addProp(eEG1Hold);  
587      addProp(eEG1Controller);      addProp(eEG1Controller);
588      addProp(eEG1ControllerInvert);      addProp(eEG1ControllerInvert);
589      addProp(eEG1ControllerAttackInfluence);      addProp(eEG1ControllerAttackInfluence);
590      addProp(eEG1ControllerDecayInfluence);      addProp(eEG1ControllerDecayInfluence);
591      addProp(eEG1ControllerReleaseInfluence);      addProp(eEG1ControllerReleaseInfluence);
592        addLine(eEG1StateOptions);
593    
594      nextPage();      nextPage();
595    
# Line 208  DimRegionEdit::DimRegionEdit() : Line 598  DimRegionEdit::DimRegionEdit() :
598      addProp(eLFO1InternalDepth);      addProp(eLFO1InternalDepth);
599      addProp(eLFO1ControlDepth);      addProp(eLFO1ControlDepth);
600      {      {
601          const char* choices[] = { "internal", "modwheel", "breath",          const char* choices[] = { _("internal"), _("modwheel"), _("breath"),
602                                    "internal+modwheel", "internal+breath", 0 };                                    _("internal+modwheel"), _("internal+breath"), 0 };
603          static const gig::lfo1_ctrl_t values[] = {          static const gig::lfo1_ctrl_t values[] = {
604              gig::lfo1_ctrl_internal,              gig::lfo1_ctrl_internal,
605              gig::lfo1_ctrl_modwheel,              gig::lfo1_ctrl_modwheel,
# Line 222  DimRegionEdit::DimRegionEdit() : Line 612  DimRegionEdit::DimRegionEdit() :
612      addProp(eLFO1Controller);      addProp(eLFO1Controller);
613      addProp(eLFO1FlipPhase);      addProp(eLFO1FlipPhase);
614      addProp(eLFO1Sync);      addProp(eLFO1Sync);
615      addHeader("Crossfade");      addHeader(_("Crossfade"));
616      addProp(eAttenuationController);      addProp(eAttenuationController);
617      addProp(eInvertAttenuationController);      addProp(eInvertAttenuationController);
618      addProp(eAttenuationControllerThreshold);      addProp(eAttenuationControllerThreshold);
# Line 231  DimRegionEdit::DimRegionEdit() : Line 621  DimRegionEdit::DimRegionEdit() :
621      addProp(eCrossfade_out_start);      addProp(eCrossfade_out_start);
622      addProp(eCrossfade_out_end);      addProp(eCrossfade_out_end);
623    
624        Gtk::Frame* frame = new Gtk::Frame;
625        frame->add(crossfade_curve);
626        table[pageno]->attach(*frame, 1, 3, rowno, rowno + 1,
627                              Gtk::SHRINK, Gtk::SHRINK);
628        rowno++;
629    
630        eCrossfade_in_start.signal_value_changed().connect(
631            sigc::mem_fun(crossfade_curve, &CrossfadeCurve::queue_draw));
632        eCrossfade_in_end.signal_value_changed().connect(
633            sigc::mem_fun(crossfade_curve, &CrossfadeCurve::queue_draw));
634        eCrossfade_out_start.signal_value_changed().connect(
635            sigc::mem_fun(crossfade_curve, &CrossfadeCurve::queue_draw));
636        eCrossfade_out_end.signal_value_changed().connect(
637            sigc::mem_fun(crossfade_curve, &CrossfadeCurve::queue_draw));
638    
639      nextPage();      nextPage();
640    
641      addHeader(_("General Filter Settings"));      addHeader(_("General Filter Settings"));
642      addProp(eVCFEnabled);      addProp(eVCFEnabled);
643      {      {
644          const char* choices[] = { "lowpass", "lowpassturbo", "bandpass",          const char* choices[] = { _("lowpass"), _("lowpassturbo"), _("bandpass"),
645                                    "highpass", "bandreject", 0 };                                    _("highpass"), _("bandreject"), 0 };
646          static const gig::vcf_type_t values[] = {          static const gig::vcf_type_t values[] = {
647              gig::vcf_type_lowpass,              gig::vcf_type_lowpass,
648              gig::vcf_type_lowpassturbo,              gig::vcf_type_lowpassturbo,
# Line 249  DimRegionEdit::DimRegionEdit() : Line 654  DimRegionEdit::DimRegionEdit() :
654      }      }
655      addProp(eVCFType);      addProp(eVCFType);
656      {      {
657          const char* choices[] = { "none", "none2", "modwheel", "effect1", "effect2",          const char* choices[] = { _("none"), _("none2"), _("modwheel"), _("effect1"), _("effect2"),
658                                    "breath", "foot", "sustainpedal", "softpedal",                                    _("breath"), _("foot"), _("sustainpedal"), _("softpedal"),
659                                    "genpurpose7", "genpurpose8", "aftertouch", 0 };                                    _("genpurpose7"), _("genpurpose8"), _("aftertouch"), 0 };
660          static const gig::vcf_cutoff_ctrl_t values[] = {          static const gig::vcf_cutoff_ctrl_t values[] = {
661              gig::vcf_cutoff_ctrl_none,              gig::vcf_cutoff_ctrl_none,
662              gig::vcf_cutoff_ctrl_none2,              gig::vcf_cutoff_ctrl_none2,
# Line 271  DimRegionEdit::DimRegionEdit() : Line 676  DimRegionEdit::DimRegionEdit() :
676      addProp(eVCFCutoffController);      addProp(eVCFCutoffController);
677      addProp(eVCFCutoffControllerInvert);      addProp(eVCFCutoffControllerInvert);
678      addProp(eVCFCutoff);      addProp(eVCFCutoff);
679      const char* curve_type_texts[] = { "nonlinear", "linear", "special", 0 };      const char* curve_type_texts[] = { _("nonlinear"), _("linear"), _("special"), 0 };
680      static const gig::curve_type_t curve_type_values[] = {      static const gig::curve_type_t curve_type_values[] = {
681          gig::curve_type_nonlinear,          gig::curve_type_nonlinear,
682          gig::curve_type_linear,          gig::curve_type_linear,
# Line 281  DimRegionEdit::DimRegionEdit() : Line 686  DimRegionEdit::DimRegionEdit() :
686      addProp(eVCFVelocityCurve);      addProp(eVCFVelocityCurve);
687      addProp(eVCFVelocityScale);      addProp(eVCFVelocityScale);
688      addProp(eVCFVelocityDynamicRange);      addProp(eVCFVelocityDynamicRange);
689    
690        eVCFCutoffController.signal_value_changed().connect(
691            sigc::mem_fun(cutoff_curve, &VelocityCurve::queue_draw));
692        eVCFVelocityCurve.signal_value_changed().connect(
693            sigc::mem_fun(cutoff_curve, &VelocityCurve::queue_draw));
694        eVCFVelocityScale.signal_value_changed().connect(
695            sigc::mem_fun(cutoff_curve, &VelocityCurve::queue_draw));
696        eVCFVelocityDynamicRange.signal_value_changed().connect(
697            sigc::mem_fun(cutoff_curve, &VelocityCurve::queue_draw));
698    
699        frame = new Gtk::Frame;
700        frame->add(cutoff_curve);
701        table[pageno]->attach(*frame, 1, 3, rowno, rowno + 1,
702                              Gtk::SHRINK, Gtk::SHRINK);
703        rowno++;
704    
705      addProp(eVCFResonance);      addProp(eVCFResonance);
706      addProp(eVCFResonanceDynamic);      addProp(eVCFResonanceDynamic);
707      {      {
708          const char* choices[] = { "none", "genpurpose3", "genpurpose4",          const char* choices[] = { _("none"), _("genpurpose3"), _("genpurpose4"),
709                                    "genpurpose5", "genpurpose6", 0 };                                    _("genpurpose5"), _("genpurpose6"), 0 };
710          static const gig::vcf_res_ctrl_t values[] = {          static const gig::vcf_res_ctrl_t values[] = {
711              gig::vcf_res_ctrl_none,              gig::vcf_res_ctrl_none,
712              gig::vcf_res_ctrl_genpurpose3,              gig::vcf_res_ctrl_genpurpose3,
# Line 301  DimRegionEdit::DimRegionEdit() : Line 722  DimRegionEdit::DimRegionEdit() :
722    
723      nextPage();      nextPage();
724    
725      addHeader(_("Filter Cutoff Envelope (EG2)"));      lEG2 = addHeader(_("Filter Cutoff Envelope (EG2)"));
726      addProp(eEG2PreAttack);      addProp(eEG2PreAttack);
727      addProp(eEG2Attack);      addProp(eEG2Attack);
728      addProp(eEG2Decay1);      addProp(eEG2Decay1);
# Line 314  DimRegionEdit::DimRegionEdit() : Line 735  DimRegionEdit::DimRegionEdit() :
735      addProp(eEG2ControllerAttackInfluence);      addProp(eEG2ControllerAttackInfluence);
736      addProp(eEG2ControllerDecayInfluence);      addProp(eEG2ControllerDecayInfluence);
737      addProp(eEG2ControllerReleaseInfluence);      addProp(eEG2ControllerReleaseInfluence);
738      addHeader(_("Filter Cutoff Oscillator (LFO2)"));      addLine(eEG2StateOptions);
739        lLFO2 = addHeader(_("Filter Cutoff Oscillator (LFO2)"));
740      addProp(eLFO2Frequency);      addProp(eLFO2Frequency);
741      addProp(eLFO2InternalDepth);      addProp(eLFO2InternalDepth);
742      addProp(eLFO2ControlDepth);      addProp(eLFO2ControlDepth);
743      {      {
744          const char* choices[] = { "internal", "modwheel", "foot",          const char* choices[] = { _("internal"), _("modwheel"), _("foot"),
745                                    "internal+modwheel", "internal+foot", 0 };                                    _("internal+modwheel"), _("internal+foot"), 0 };
746          static const gig::lfo2_ctrl_t values[] = {          static const gig::lfo2_ctrl_t values[] = {
747              gig::lfo2_ctrl_internal,              gig::lfo2_ctrl_internal,
748              gig::lfo2_ctrl_modwheel,              gig::lfo2_ctrl_modwheel,
# Line 347  DimRegionEdit::DimRegionEdit() : Line 769  DimRegionEdit::DimRegionEdit() :
769      addProp(eLFO3InternalDepth);      addProp(eLFO3InternalDepth);
770      addProp(eLFO3ControlDepth);      addProp(eLFO3ControlDepth);
771      {      {
772          const char* choices[] = { "internal", "modwheel", "aftertouch",          const char* choices[] = { _("internal"), _("modwheel"), _("aftertouch"),
773                                    "internal+modwheel", "internal+aftertouch", 0 };                                    _("internal+modwheel"), _("internal+aftertouch"), 0 };
774          static const gig::lfo3_ctrl_t values[] = {          static const gig::lfo3_ctrl_t values[] = {
775              gig::lfo3_ctrl_internal,              gig::lfo3_ctrl_internal,
776              gig::lfo3_ctrl_modwheel,              gig::lfo3_ctrl_modwheel,
# Line 363  DimRegionEdit::DimRegionEdit() : Line 785  DimRegionEdit::DimRegionEdit() :
785    
786      nextPage();      nextPage();
787    
788        addHeader(_("Velocity Response"));
789      eVelocityResponseCurve.set_choices(curve_type_texts, curve_type_values);      eVelocityResponseCurve.set_choices(curve_type_texts, curve_type_values);
790      addProp(eVelocityResponseCurve);      addProp(eVelocityResponseCurve);
791      addProp(eVelocityResponseDepth);      addProp(eVelocityResponseDepth);
792      addProp(eVelocityResponseCurveScaling);      addProp(eVelocityResponseCurveScaling);
793    
794        eVelocityResponseCurve.signal_value_changed().connect(
795            sigc::mem_fun(velocity_curve, &VelocityCurve::queue_draw));
796        eVelocityResponseDepth.signal_value_changed().connect(
797            sigc::mem_fun(velocity_curve, &VelocityCurve::queue_draw));
798        eVelocityResponseCurveScaling.signal_value_changed().connect(
799            sigc::mem_fun(velocity_curve, &VelocityCurve::queue_draw));
800    
801        frame = new Gtk::Frame;
802        frame->add(velocity_curve);
803        table[pageno]->attach(*frame, 1, 3, rowno, rowno + 1,
804                              Gtk::SHRINK, Gtk::SHRINK);
805        rowno++;
806    
807        addHeader(_("Release Velocity Response"));
808      eReleaseVelocityResponseCurve.set_choices(curve_type_texts,      eReleaseVelocityResponseCurve.set_choices(curve_type_texts,
809                                                curve_type_values);                                                curve_type_values);
810      addProp(eReleaseVelocityResponseCurve);      addProp(eReleaseVelocityResponseCurve);
811      addProp(eReleaseVelocityResponseDepth);      addProp(eReleaseVelocityResponseDepth);
812    
813        eReleaseVelocityResponseCurve.signal_value_changed().connect(
814            sigc::mem_fun(release_curve, &VelocityCurve::queue_draw));
815        eReleaseVelocityResponseDepth.signal_value_changed().connect(
816            sigc::mem_fun(release_curve, &VelocityCurve::queue_draw));
817        frame = new Gtk::Frame;
818        frame->add(release_curve);
819        table[pageno]->attach(*frame, 1, 3, rowno, rowno + 1,
820                              Gtk::SHRINK, Gtk::SHRINK);
821        rowno++;
822    
823      addProp(eReleaseTriggerDecay);      addProp(eReleaseTriggerDecay);
824      {      {
825          const char* choices[] = { "none", "effect4depth", "effect5depth", 0 };          const char* choices[] = { _("none"), _("effect4depth"), _("effect5depth"), 0 };
826          static const gig::dim_bypass_ctrl_t values[] = {          static const gig::dim_bypass_ctrl_t values[] = {
827              gig::dim_bypass_ctrl_none,              gig::dim_bypass_ctrl_none,
828              gig::dim_bypass_ctrl_94,              gig::dim_bypass_ctrl_94,
# Line 382  DimRegionEdit::DimRegionEdit() : Line 831  DimRegionEdit::DimRegionEdit() :
831          eDimensionBypass.set_choices(choices, values);          eDimensionBypass.set_choices(choices, values);
832      }      }
833      addProp(eDimensionBypass);      addProp(eDimensionBypass);
834        eSelfMask.widget.set_tooltip_text(_(
835            "If enabled: new notes with higher velocity value will stop older "
836            "notes with lower velocity values, that way you can save voices that "
837            "would barely be audible. This is also useful for certain drum sounds."
838        ));
839      addProp(eSelfMask);      addProp(eSelfMask);
840        eSustainDefeat.widget.set_tooltip_text(_(
841            "If enabled: sustain pedal will not hold a note. This way you can use "
842            "the sustain pedal for other purposes, for example to switch among "
843            "dimension regions."
844        ));
845      addProp(eSustainDefeat);      addProp(eSustainDefeat);
846        eMSDecode.widget.set_tooltip_text(_(
847            "Defines if Mid/Side Recordings should be decoded. Mid/Side Recordings "
848            "are an alternative way to record sounds in stereo. The sampler needs "
849            "to decode such samples to actually make use of them. Note: this "
850            "feature is currently not supported by LinuxSampler."
851        ));
852      addProp(eMSDecode);      addProp(eMSDecode);
853    
854      nextPage();      nextPage();
855    
856    
857      eEG1InfiniteSustain.signal_toggled().connect(      eEG1InfiniteSustain.signal_value_changed().connect(
858          sigc::mem_fun(*this, &DimRegionEdit::EG1InfiniteSustain_toggled) );          sigc::mem_fun(*this, &DimRegionEdit::EG1InfiniteSustain_toggled));
859      eEG2InfiniteSustain.signal_toggled().connect(      eEG2InfiniteSustain.signal_value_changed().connect(
860          sigc::mem_fun(*this, &DimRegionEdit::EG2InfiniteSustain_toggled) );          sigc::mem_fun(*this, &DimRegionEdit::EG2InfiniteSustain_toggled));
861      eEG1Controller.signal_changed().connect(      eEG1Controller.signal_value_changed().connect(
862          sigc::mem_fun(*this, &DimRegionEdit::EG1Controller_changed) );          sigc::mem_fun(*this, &DimRegionEdit::EG1Controller_changed));
863      eEG2Controller.signal_changed().connect(      eEG2Controller.signal_value_changed().connect(
864          sigc::mem_fun(*this, &DimRegionEdit::EG2Controller_changed) );          sigc::mem_fun(*this, &DimRegionEdit::EG2Controller_changed));
865      eLFO1Controller.signal_changed().connect(      eLFO1Controller.signal_value_changed().connect(
866          sigc::mem_fun(*this, &DimRegionEdit::LFO1Controller_changed) );          sigc::mem_fun(*this, &DimRegionEdit::LFO1Controller_changed));
867      eLFO2Controller.signal_changed().connect(      eLFO2Controller.signal_value_changed().connect(
868          sigc::mem_fun(*this, &DimRegionEdit::LFO2Controller_changed) );          sigc::mem_fun(*this, &DimRegionEdit::LFO2Controller_changed));
869      eLFO3Controller.signal_changed().connect(      eLFO3Controller.signal_value_changed().connect(
870          sigc::mem_fun(*this, &DimRegionEdit::LFO3Controller_changed) );          sigc::mem_fun(*this, &DimRegionEdit::LFO3Controller_changed));
871      eAttenuationController.signal_changed().connect(      eAttenuationController.signal_value_changed().connect(
872          sigc::mem_fun(*this, &DimRegionEdit::AttenuationController_changed) );          sigc::mem_fun(*this, &DimRegionEdit::AttenuationController_changed));
873      eVCFEnabled.signal_toggled().connect(      eVCFEnabled.signal_value_changed().connect(
874          sigc::mem_fun(*this, &DimRegionEdit::VCFEnabled_toggled) );          sigc::mem_fun(*this, &DimRegionEdit::VCFEnabled_toggled));
875      eVCFCutoffController.signal_changed().connect(      eVCFCutoffController.signal_value_changed().connect(
876          sigc::mem_fun(*this, &DimRegionEdit::VCFCutoffController_changed) );          sigc::mem_fun(*this, &DimRegionEdit::VCFCutoffController_changed));
877      eVCFResonanceController.signal_changed().connect(      eVCFResonanceController.signal_value_changed().connect(
878          sigc::mem_fun(*this, &DimRegionEdit::VCFResonanceController_changed) );          sigc::mem_fun(*this, &DimRegionEdit::VCFResonanceController_changed));
879    
880      eCrossfade_in_start.signal_changed_by_user().connect(      eCrossfade_in_start.signal_value_changed().connect(
881          sigc::mem_fun(*this, &DimRegionEdit::crossfade1_changed));          sigc::mem_fun(*this, &DimRegionEdit::crossfade1_changed));
882      eCrossfade_in_end.signal_changed_by_user().connect(      eCrossfade_in_end.signal_value_changed().connect(
883          sigc::mem_fun(*this, &DimRegionEdit::crossfade2_changed));          sigc::mem_fun(*this, &DimRegionEdit::crossfade2_changed));
884      eCrossfade_out_start.signal_changed_by_user().connect(      eCrossfade_out_start.signal_value_changed().connect(
885          sigc::mem_fun(*this, &DimRegionEdit::crossfade3_changed));          sigc::mem_fun(*this, &DimRegionEdit::crossfade3_changed));
886      eCrossfade_out_end.signal_changed_by_user().connect(      eCrossfade_out_end.signal_value_changed().connect(
887          sigc::mem_fun(*this, &DimRegionEdit::crossfade4_changed));          sigc::mem_fun(*this, &DimRegionEdit::crossfade4_changed));
888    
889      eSampleLoopEnabled.signal_toggled().connect(      eSampleLoopEnabled.signal_value_changed().connect(
890          sigc::mem_fun(*this, &DimRegionEdit::loop_enabled_toggled));          sigc::mem_fun(*this, &DimRegionEdit::update_loop_elements));
891      eSampleLoopStart.signal_changed_by_user().connect(      eSampleLoopStart.signal_value_changed().connect(
892          sigc::mem_fun(*this, &DimRegionEdit::updateLoopElements));          sigc::mem_fun(*this, &DimRegionEdit::loop_start_changed));
893      eSampleLoopLength.signal_changed_by_user().connect(      eSampleLoopLength.signal_value_changed().connect(
894          sigc::mem_fun(*this, &DimRegionEdit::updateLoopElements));          sigc::mem_fun(*this, &DimRegionEdit::loop_length_changed));
895      eSampleLoopInfinite.signal_toggled().connect(      eSampleLoopInfinite.signal_value_changed().connect(
896          sigc::mem_fun(*this, &DimRegionEdit::loop_infinite_toggled));          sigc::mem_fun(*this, &DimRegionEdit::loop_infinite_toggled));
897    
898      append_page(*table[0], "Sample");      append_page(*table[0], _("Sample"));
899      append_page(*table[1], "Amplitude (1)");      append_page(*table[1], _("Amplitude (1)"));
900      append_page(*table[2], "Amplitude (2)");      append_page(*table[2], _("Amplitude (2)"));
901      append_page(*table[3], "Filter (1)");      append_page(*table[3], _("Filter (1)"));
902      append_page(*table[4], "Filter (2)");      append_page(*table[4], _("Filter (2)"));
903      append_page(*table[5], "Pitch");      append_page(*table[5], _("Pitch"));
904      append_page(*table[6], "Misc");      append_page(*table[6], _("Misc"));
905  }  }
906    
907  DimRegionEdit::~DimRegionEdit()  DimRegionEdit::~DimRegionEdit()
# Line 447  void DimRegionEdit::addString(const char Line 912  void DimRegionEdit::addString(const char
912                                Gtk::Entry*& widget)                                Gtk::Entry*& widget)
913  {  {
914      label = new Gtk::Label(Glib::ustring(labelText) + ":");      label = new Gtk::Label(Glib::ustring(labelText) + ":");
915      label->set_alignment(Gtk::ALIGN_LEFT);      label->set_alignment(Gtk::ALIGN_START);
916    
917      table[pageno]->attach(*label, 1, 2, rowno, rowno + 1,      table[pageno]->attach(*label, 1, 2, rowno, rowno + 1,
918                            Gtk::FILL, Gtk::SHRINK);                            Gtk::FILL, Gtk::SHRINK);
# Line 460  void DimRegionEdit::addString(const char Line 925  void DimRegionEdit::addString(const char
925      rowno++;      rowno++;
926  }  }
927    
928  void DimRegionEdit::addHeader(const char* text)  void DimRegionEdit::addString(const char* labelText, Gtk::Label*& label,
929                                  Gtk::Entry*& widget, Gtk::Button*& button)
930    {
931        label = new Gtk::Label(Glib::ustring(labelText) + ":");
932        label->set_alignment(Gtk::ALIGN_START);
933    
934        table[pageno]->attach(*label, 1, 2, rowno, rowno + 1,
935                              Gtk::FILL, Gtk::SHRINK);
936    
937        widget = new Gtk::Entry();
938        button = new Gtk::Button();
939    
940        Gtk::HBox* hbox = new Gtk::HBox;
941        hbox->pack_start(*widget);
942        hbox->pack_start(*button, Gtk::PACK_SHRINK);
943    
944        table[pageno]->attach(*hbox, 2, 3, rowno, rowno + 1,
945                              Gtk::EXPAND | Gtk::FILL, Gtk::SHRINK);
946    
947        rowno++;
948    }
949    
950    Gtk::Label* DimRegionEdit::addHeader(const char* text)
951  {  {
952      if (firstRowInBlock < rowno - 1)      if (firstRowInBlock < rowno - 1)
953      {      {
# Line 473  void DimRegionEdit::addHeader(const char Line 960  void DimRegionEdit::addHeader(const char
960      str += "</b>";      str += "</b>";
961      Gtk::Label* label = new Gtk::Label(str);      Gtk::Label* label = new Gtk::Label(str);
962      label->set_use_markup();      label->set_use_markup();
963      label->set_alignment(Gtk::ALIGN_LEFT);      label->set_alignment(Gtk::ALIGN_START);
964      table[pageno]->attach(*label, 0, 3, rowno, rowno + 1,      table[pageno]->attach(*label, 0, 3, rowno, rowno + 1,
965                            Gtk::FILL, Gtk::SHRINK);                            Gtk::FILL, Gtk::SHRINK);
966      rowno++;      rowno++;
967      firstRowInBlock = rowno;      firstRowInBlock = rowno;
968        return label;
969  }  }
970    
971  void DimRegionEdit::nextPage()  void DimRegionEdit::nextPage()
# Line 498  void DimRegionEdit::addProp(BoolEntry& b Line 986  void DimRegionEdit::addProp(BoolEntry& b
986      table[pageno]->attach(boolentry.widget, 1, 3, rowno, rowno + 1,      table[pageno]->attach(boolentry.widget, 1, 3, rowno, rowno + 1,
987                            Gtk::FILL, Gtk::SHRINK);                            Gtk::FILL, Gtk::SHRINK);
988      rowno++;      rowno++;
     boolentry.signal_changed_by_user().connect(  
         sigc::bind(dimreg_changed_signal.make_slot(), sigc::ref(this->dimregion))  
     );  
989  }  }
990    
991  void DimRegionEdit::addProp(BoolEntryPlus6& boolentry)  void DimRegionEdit::addProp(BoolEntryPlus6& boolentry)
# Line 508  void DimRegionEdit::addProp(BoolEntryPlu Line 993  void DimRegionEdit::addProp(BoolEntryPlu
993      table[pageno]->attach(boolentry.widget, 1, 3, rowno, rowno + 1,      table[pageno]->attach(boolentry.widget, 1, 3, rowno, rowno + 1,
994                            Gtk::FILL, Gtk::SHRINK);                            Gtk::FILL, Gtk::SHRINK);
995      rowno++;      rowno++;
     boolentry.signal_changed_by_user().connect(  
         sigc::bind(dimreg_changed_signal.make_slot(), sigc::ref(this->dimregion))  
     );  
996  }  }
997    
998  void DimRegionEdit::addProp(LabelWidget& prop)  void DimRegionEdit::addProp(LabelWidget& prop)
# Line 520  void DimRegionEdit::addProp(LabelWidget& Line 1002  void DimRegionEdit::addProp(LabelWidget&
1002      table[pageno]->attach(prop.widget, 2, 3, rowno, rowno + 1,      table[pageno]->attach(prop.widget, 2, 3, rowno, rowno + 1,
1003                            Gtk::EXPAND | Gtk::FILL, Gtk::SHRINK);                            Gtk::EXPAND | Gtk::FILL, Gtk::SHRINK);
1004      rowno++;      rowno++;
     prop.signal_changed_by_user().connect(  
         sigc::bind(dimreg_changed_signal.make_slot(), sigc::ref(this->dimregion))  
     );  
1005  }  }
1006    
1007    void DimRegionEdit::addLine(Gtk::HBox& line)
1008    {
1009        table[pageno]->attach(line, 1, 3, rowno, rowno + 1,
1010                              Gtk::FILL, Gtk::SHRINK);
1011        rowno++;
1012    }
1013    
1014    void DimRegionEdit::addRightHandSide(Gtk::Widget& widget)
1015    {
1016        table[pageno]->attach(widget, 2, 3, rowno, rowno + 1,
1017                              Gtk::EXPAND | Gtk::FILL, Gtk::SHRINK);
1018        rowno++;
1019    }
1020    
1021  void DimRegionEdit::set_dim_region(gig::DimensionRegion* d)  void DimRegionEdit::set_dim_region(gig::DimensionRegion* d)
1022  {  {
1023      dimregion = d;      dimregion = d;
1024        velocity_curve.set_dim_region(d);
1025      // disconnect connections to old dimregion, to avoid segfaults      release_curve.set_dim_region(d);
1026      connection_eVCFCutoffController.disconnect();      cutoff_curve.set_dim_region(d);
1027      connection_eVCFVelocityCurve.disconnect();      crossfade_curve.set_dim_region(d);
     connection_eVCFVelocityScale.disconnect();  
     connection_eVCFVelocityDynamicRange.disconnect();  
     connection_eVelocityResponseCurve.disconnect();  
     connection_eVelocityResponseDepth.disconnect();  
     connection_eVelocityResponseCurveScaling.disconnect();  
     connection_eReleaseVelocityResponseCurve.disconnect();  
     connection_eReleaseVelocityResponseDepth.disconnect();  
     connection_eGain.disconnect();  
1028    
1029      set_sensitive(d);      set_sensitive(d);
1030      if (!d) return;      if (!d) return;
1031    
1032      wSample->set_text(d->pSample ? d->pSample->pInfo->Name.c_str() : "NULL");      update_model++;
1033      eEG1PreAttack.set_ptr(&d->EG1PreAttack);      eEG1PreAttack.set_value(d->EG1PreAttack);
1034      eEG1Attack.set_ptr(&d->EG1Attack);      eEG1Attack.set_value(d->EG1Attack);
1035      eEG1Decay1.set_ptr(&d->EG1Decay1);      eEG1Decay1.set_value(d->EG1Decay1);
1036      eEG1Decay2.set_ptr(&d->EG1Decay2);      eEG1Decay2.set_value(d->EG1Decay2);
1037      eEG1InfiniteSustain.set_ptr(&d->EG1InfiniteSustain);      eEG1InfiniteSustain.set_value(d->EG1InfiniteSustain);
1038      eEG1Sustain.set_ptr(&d->EG1Sustain);      eEG1Sustain.set_value(d->EG1Sustain);
1039      eEG1Release.set_ptr(&d->EG1Release);      eEG1Release.set_value(d->EG1Release);
1040      eEG1Hold.set_ptr(&d->EG1Hold);      eEG1Hold.set_value(d->EG1Hold);
1041      eEG1Controller.set_ptr(&d->EG1Controller);      eEG1Controller.set_value(d->EG1Controller);
1042      eEG1ControllerInvert.set_ptr(&d->EG1ControllerInvert);      eEG1ControllerInvert.set_value(d->EG1ControllerInvert);
1043      eEG1ControllerAttackInfluence.set_ptr(&d->EG1ControllerAttackInfluence);      eEG1ControllerAttackInfluence.set_value(d->EG1ControllerAttackInfluence);
1044      eEG1ControllerDecayInfluence.set_ptr(&d->EG1ControllerDecayInfluence);      eEG1ControllerDecayInfluence.set_value(d->EG1ControllerDecayInfluence);
1045      eEG1ControllerReleaseInfluence.set_ptr(&d->EG1ControllerReleaseInfluence);      eEG1ControllerReleaseInfluence.set_value(d->EG1ControllerReleaseInfluence);
1046      eLFO1Frequency.set_ptr(&d->LFO1Frequency);      eEG1StateOptions.checkBoxAttack.set_value(d->EG1Options.AttackCancel);
1047      eLFO1InternalDepth.set_ptr(&d->LFO1InternalDepth);      eEG1StateOptions.checkBoxAttackHold.set_value(d->EG1Options.AttackHoldCancel);
1048      eLFO1ControlDepth.set_ptr(&d->LFO1ControlDepth);      eEG1StateOptions.checkBoxDecay1.set_value(d->EG1Options.Decay1Cancel);
1049      eLFO1Controller.set_ptr(&d->LFO1Controller);      eEG1StateOptions.checkBoxDecay2.set_value(d->EG1Options.Decay2Cancel);
1050      eLFO1FlipPhase.set_ptr(&d->LFO1FlipPhase);      eEG1StateOptions.checkBoxRelease.set_value(d->EG1Options.ReleaseCancel);
1051      eLFO1Sync.set_ptr(&d->LFO1Sync);      eLFO1Frequency.set_value(d->LFO1Frequency);
1052      eEG2PreAttack.set_ptr(&d->EG2PreAttack);      eLFO1InternalDepth.set_value(d->LFO1InternalDepth);
1053      eEG2Attack.set_ptr(&d->EG2Attack);      eLFO1ControlDepth.set_value(d->LFO1ControlDepth);
1054      eEG2Decay1.set_ptr(&d->EG2Decay1);      eLFO1Controller.set_value(d->LFO1Controller);
1055      eEG2Decay2.set_ptr(&d->EG2Decay2);      eLFO1FlipPhase.set_value(d->LFO1FlipPhase);
1056      eEG2InfiniteSustain.set_ptr(&d->EG2InfiniteSustain);      eLFO1Sync.set_value(d->LFO1Sync);
1057      eEG2Sustain.set_ptr(&d->EG2Sustain);      eEG2PreAttack.set_value(d->EG2PreAttack);
1058      eEG2Release.set_ptr(&d->EG2Release);      eEG2Attack.set_value(d->EG2Attack);
1059      eEG2Controller.set_ptr(&d->EG2Controller);      eEG2Decay1.set_value(d->EG2Decay1);
1060      eEG2ControllerInvert.set_ptr(&d->EG2ControllerInvert);      eEG2Decay2.set_value(d->EG2Decay2);
1061      eEG2ControllerAttackInfluence.set_ptr(&d->EG2ControllerAttackInfluence);      eEG2InfiniteSustain.set_value(d->EG2InfiniteSustain);
1062      eEG2ControllerDecayInfluence.set_ptr(&d->EG2ControllerDecayInfluence);      eEG2Sustain.set_value(d->EG2Sustain);
1063      eEG2ControllerReleaseInfluence.set_ptr(&d->EG2ControllerReleaseInfluence);      eEG2Release.set_value(d->EG2Release);
1064      eLFO2Frequency.set_ptr(&d->LFO2Frequency);      eEG2Controller.set_value(d->EG2Controller);
1065      eLFO2InternalDepth.set_ptr(&d->LFO2InternalDepth);      eEG2ControllerInvert.set_value(d->EG2ControllerInvert);
1066      eLFO2ControlDepth.set_ptr(&d->LFO2ControlDepth);      eEG2ControllerAttackInfluence.set_value(d->EG2ControllerAttackInfluence);
1067      eLFO2Controller.set_ptr(&d->LFO2Controller);      eEG2ControllerDecayInfluence.set_value(d->EG2ControllerDecayInfluence);
1068      eLFO2FlipPhase.set_ptr(&d->LFO2FlipPhase);      eEG2ControllerReleaseInfluence.set_value(d->EG2ControllerReleaseInfluence);
1069      eLFO2Sync.set_ptr(&d->LFO2Sync);      eEG2StateOptions.checkBoxAttack.set_value(d->EG2Options.AttackCancel);
1070      eEG3Attack.set_ptr(&d->EG3Attack);      eEG2StateOptions.checkBoxAttackHold.set_value(d->EG2Options.AttackHoldCancel);
1071      eEG3Depth.set_ptr(&d->EG3Depth);      eEG2StateOptions.checkBoxDecay1.set_value(d->EG2Options.Decay1Cancel);
1072      eLFO3Frequency.set_ptr(&d->LFO3Frequency);      eEG2StateOptions.checkBoxDecay2.set_value(d->EG2Options.Decay2Cancel);
1073      eLFO3InternalDepth.set_ptr(&d->LFO3InternalDepth);      eEG2StateOptions.checkBoxRelease.set_value(d->EG2Options.ReleaseCancel);
1074      eLFO3ControlDepth.set_ptr(&d->LFO3ControlDepth);      eLFO2Frequency.set_value(d->LFO2Frequency);
1075      eLFO3Controller.set_ptr(&d->LFO3Controller);      eLFO2InternalDepth.set_value(d->LFO2InternalDepth);
1076      eLFO3Sync.set_ptr(&d->LFO3Sync);      eLFO2ControlDepth.set_value(d->LFO2ControlDepth);
1077      eVCFEnabled.set_ptr(&d->VCFEnabled);      eLFO2Controller.set_value(d->LFO2Controller);
1078      eVCFType.set_ptr(&d->VCFType);      eLFO2FlipPhase.set_value(d->LFO2FlipPhase);
1079      eVCFCutoffController.set_ptr(&d->VCFCutoffController);      eLFO2Sync.set_value(d->LFO2Sync);
1080      connection_eVCFCutoffController =      eEG3Attack.set_value(d->EG3Attack);
1081          eVCFCutoffController.signal_value_changed().connect(      eEG3Depth.set_value(d->EG3Depth);
1082              sigc::mem_fun(d, &gig::DimensionRegion::SetVCFCutoffController)      eLFO3Frequency.set_value(d->LFO3Frequency);
1083          );      eLFO3InternalDepth.set_value(d->LFO3InternalDepth);
1084      eVCFCutoffControllerInvert.set_ptr(&d->VCFCutoffControllerInvert);      eLFO3ControlDepth.set_value(d->LFO3ControlDepth);
1085      eVCFCutoff.set_ptr(&d->VCFCutoff);      eLFO3Controller.set_value(d->LFO3Controller);
1086      eVCFVelocityCurve.set_ptr(&d->VCFVelocityCurve);      eLFO3Sync.set_value(d->LFO3Sync);
1087      connection_eVCFVelocityCurve =      eVCFEnabled.set_value(d->VCFEnabled);
1088          eVCFVelocityCurve.signal_value_changed().connect(      eVCFType.set_value(d->VCFType);
1089              sigc::mem_fun(d, &gig::DimensionRegion::SetVCFVelocityCurve)      eVCFCutoffController.set_value(d->VCFCutoffController);
1090          );      eVCFCutoffControllerInvert.set_value(d->VCFCutoffControllerInvert);
1091      eVCFVelocityScale.set_ptr(&d->VCFVelocityScale);      eVCFCutoff.set_value(d->VCFCutoff);
1092      connection_eVCFVelocityScale =      eVCFVelocityCurve.set_value(d->VCFVelocityCurve);
1093          eVCFVelocityScale.signal_value_changed().connect(      eVCFVelocityScale.set_value(d->VCFVelocityScale);
1094              sigc::mem_fun(d, &gig::DimensionRegion::SetVCFVelocityScale)      eVCFVelocityDynamicRange.set_value(d->VCFVelocityDynamicRange);
1095          );      eVCFResonance.set_value(d->VCFResonance);
1096      eVCFVelocityDynamicRange.set_ptr(&d->VCFVelocityDynamicRange);      eVCFResonanceDynamic.set_value(d->VCFResonanceDynamic);
1097      connection_eVCFVelocityDynamicRange =      eVCFResonanceController.set_value(d->VCFResonanceController);
1098          eVCFVelocityDynamicRange.signal_value_changed().connect(      eVCFKeyboardTracking.set_value(d->VCFKeyboardTracking);
1099              sigc::mem_fun(d, &gig::DimensionRegion::SetVCFVelocityDynamicRange)      eVCFKeyboardTrackingBreakpoint.set_value(d->VCFKeyboardTrackingBreakpoint);
1100          );      eVelocityResponseCurve.set_value(d->VelocityResponseCurve);
1101      eVCFResonance.set_ptr(&d->VCFResonance);      eVelocityResponseDepth.set_value(d->VelocityResponseDepth);
1102      eVCFResonanceDynamic.set_ptr(&d->VCFResonanceDynamic);      eVelocityResponseCurveScaling.set_value(d->VelocityResponseCurveScaling);
1103      eVCFResonanceController.set_ptr(&d->VCFResonanceController);      eReleaseVelocityResponseCurve.set_value(d->ReleaseVelocityResponseCurve);
1104      eVCFKeyboardTracking.set_ptr(&d->VCFKeyboardTracking);      eReleaseVelocityResponseDepth.set_value(d->ReleaseVelocityResponseDepth);
1105      eVCFKeyboardTrackingBreakpoint.set_ptr(&d->VCFKeyboardTrackingBreakpoint);      eReleaseTriggerDecay.set_value(d->ReleaseTriggerDecay);
1106      eVelocityResponseCurve.set_ptr(&d->VelocityResponseCurve);      eCrossfade_in_start.set_value(d->Crossfade.in_start);
1107      connection_eVelocityResponseCurve =      eCrossfade_in_end.set_value(d->Crossfade.in_end);
1108          eVelocityResponseCurve.signal_value_changed().connect(      eCrossfade_out_start.set_value(d->Crossfade.out_start);
1109              sigc::mem_fun(d, &gig::DimensionRegion::SetVelocityResponseCurve)      eCrossfade_out_end.set_value(d->Crossfade.out_end);
1110          );      ePitchTrack.set_value(d->PitchTrack);
1111      eVelocityResponseDepth.set_ptr(&d->VelocityResponseDepth);      eDimensionBypass.set_value(d->DimensionBypass);
1112      connection_eVelocityResponseDepth =      ePan.set_value(d->Pan);
1113          eVelocityResponseDepth.signal_value_changed().connect(      eSelfMask.set_value(d->SelfMask);
1114              sigc::mem_fun(d, &gig::DimensionRegion::SetVelocityResponseDepth)      eAttenuationController.set_value(d->AttenuationController);
1115          );      eInvertAttenuationController.set_value(d->InvertAttenuationController);
1116      eVelocityResponseCurveScaling.set_ptr(&d->VelocityResponseCurveScaling);      eAttenuationControllerThreshold.set_value(d->AttenuationControllerThreshold);
1117      connection_eVelocityResponseCurveScaling =      eChannelOffset.set_value(d->ChannelOffset);
1118          eVelocityResponseCurveScaling.signal_value_changed().connect(      eSustainDefeat.set_value(d->SustainDefeat);
1119              sigc::mem_fun(d, &gig::DimensionRegion::SetVelocityResponseCurveScaling)      eMSDecode.set_value(d->MSDecode);
1120          );      eSampleStartOffset.set_value(d->SampleStartOffset);
1121      eReleaseVelocityResponseCurve.set_ptr(&d->ReleaseVelocityResponseCurve);      eUnityNote.set_value(d->UnityNote);
1122      connection_eReleaseVelocityResponseCurve =      // show sample group name
1123          eReleaseVelocityResponseCurve.signal_value_changed().connect(      {
1124              sigc::mem_fun(d, &gig::DimensionRegion::SetReleaseVelocityResponseCurve)          Glib::ustring s = "---";
1125          );          if (d->pSample && d->pSample->GetGroup())
1126      eReleaseVelocityResponseDepth.set_ptr(&d->ReleaseVelocityResponseDepth);              s = d->pSample->GetGroup()->Name;
1127      connection_eReleaseVelocityResponseDepth =          eSampleGroup.text.set_text(s);
1128          eReleaseVelocityResponseDepth.signal_value_changed().connect(      }
1129              sigc::mem_fun(d, &gig::DimensionRegion::SetReleaseVelocityResponseDepth)      // assemble sample format info string
1130          );      {
1131      eReleaseTriggerDecay.set_ptr(&d->ReleaseTriggerDecay);          Glib::ustring s;
1132            if (d->pSample) {
1133      eCrossfade_in_start.set_ptr(0);              switch (d->pSample->Channels) {
1134      eCrossfade_in_end.set_ptr(0);                  case 1: s = _("Mono"); break;
1135      eCrossfade_out_start.set_ptr(0);                  case 2: s = _("Stereo"); break;
1136      eCrossfade_out_end.set_ptr(0);                  default:
1137      eCrossfade_in_start.set_ptr(&d->Crossfade.in_start);                      s = ToString(d->pSample->Channels) + _(" audio channels");
1138      eCrossfade_in_end.set_ptr(&d->Crossfade.in_end);                      break;
1139      eCrossfade_out_start.set_ptr(&d->Crossfade.out_start);              }
1140      eCrossfade_out_end.set_ptr(&d->Crossfade.out_end);              s += " " + ToString(d->pSample->BitDepth) + " Bits";
1141                s += " " + ToString(d->pSample->SamplesPerSecond/1000) + "."
1142      ePitchTrack.set_ptr(&d->PitchTrack);                        + ToString((d->pSample->SamplesPerSecond%1000)/100) + " kHz";
1143      eDimensionBypass.set_ptr(&d->DimensionBypass);          } else {
1144      ePan.set_ptr(&d->Pan);              s = _("No sample assigned to this dimension region.");
1145      eSelfMask.set_ptr(&d->SelfMask);          }
1146      eAttenuationController.set_ptr(&d->AttenuationController);          eSampleFormatInfo.text.set_text(s);
1147      eInvertAttenuationController.set_ptr(&d->InvertAttenuationController);      }
1148      eAttenuationControllerThreshold.set_ptr(&d->AttenuationControllerThreshold);      // generate sample's memory address pointer string
1149      eChannelOffset.set_ptr(&d->ChannelOffset);      {
1150      eSustainDefeat.set_ptr(&d->SustainDefeat);          Glib::ustring s;
1151      eMSDecode.set_ptr(&d->MSDecode);          if (d->pSample) {
1152      eSampleStartOffset.set_ptr(&d->SampleStartOffset);              char buf[64] = {};
1153      eUnityNote.set_ptr(&d->UnityNote);              snprintf(buf, sizeof(buf), "%p", d->pSample);
1154      eFineTune.set_ptr(&d->FineTune);              s = buf;
1155      eGain.set_ptr(&d->Gain);          } else {
1156      connection_eGain =              s = "---";
1157          eGain.signal_value_changed().connect(          }
1158              sigc::mem_fun(d, &gig::DimensionRegion::SetGain)          eSampleID.text.set_text(s);
1159          );      }
1160      eGainPlus6.set_ptr(&d->Gain);      // generate raw wave form data CRC-32 checksum string
1161        {
1162            Glib::ustring s = "---";
1163            if (d->pSample) {
1164                char buf[64] = {};
1165                snprintf(buf, sizeof(buf), "%x", d->pSample->GetWaveDataCRC32Checksum());
1166                s = buf;
1167            }
1168            eChecksum.text.set_text(s);
1169        }
1170        buttonSelectSample.set_sensitive(d && d->pSample);
1171        eFineTune.set_value(d->FineTune);
1172        eGain.set_value(d->Gain);
1173        eGainPlus6.set_value(d->Gain);
1174        eSampleLoopEnabled.set_value(d->SampleLoops);
1175        eSampleLoopType.set_value(
1176            d->SampleLoops ? d->pSampleLoops[0].LoopType : 0);
1177        eSampleLoopStart.set_value(
1178            d->SampleLoops ? d->pSampleLoops[0].LoopStart : 0);
1179        eSampleLoopLength.set_value(
1180            d->SampleLoops ? d->pSampleLoops[0].LoopLength : 0);
1181        eSampleLoopInfinite.set_value(
1182            d->pSample && d->pSample->LoopPlayCount == 0);
1183        eSampleLoopPlayCount.set_value(
1184            d->pSample ? d->pSample->LoopPlayCount : 0);
1185        update_model--;
1186    
1187      eSampleLoopEnabled.set_active(d->SampleLoops);      wSample->set_text(d->pSample ? gig_to_utf8(d->pSample->pInfo->Name) :
1188      updateLoopElements();                        _("NULL"));
1189    
1190        update_loop_elements();
1191      VCFEnabled_toggled();      VCFEnabled_toggled();
1192  }  }
1193    
1194    
1195  void DimRegionEdit::VCFEnabled_toggled()  void DimRegionEdit::VCFEnabled_toggled()
1196  {  {
1197      bool sensitive = eVCFEnabled.get_active();      bool sensitive = eVCFEnabled.get_value();
1198      eVCFType.set_sensitive(sensitive);      eVCFType.set_sensitive(sensitive);
1199      eVCFCutoffController.set_sensitive(sensitive);      eVCFCutoffController.set_sensitive(sensitive);
1200      eVCFVelocityCurve.set_sensitive(sensitive);      eVCFVelocityCurve.set_sensitive(sensitive);
1201      eVCFVelocityScale.set_sensitive(sensitive);      eVCFVelocityScale.set_sensitive(sensitive);
1202      eVCFVelocityDynamicRange.set_sensitive(sensitive);      eVCFVelocityDynamicRange.set_sensitive(sensitive);
1203        cutoff_curve.set_sensitive(sensitive);
1204      eVCFResonance.set_sensitive(sensitive);      eVCFResonance.set_sensitive(sensitive);
1205      eVCFResonanceController.set_sensitive(sensitive);      eVCFResonanceController.set_sensitive(sensitive);
1206      eVCFKeyboardTracking.set_sensitive(sensitive);      eVCFKeyboardTracking.set_sensitive(sensitive);
1207      eVCFKeyboardTrackingBreakpoint.set_sensitive(sensitive);      eVCFKeyboardTrackingBreakpoint.set_sensitive(sensitive);
1208        lEG2->set_sensitive(sensitive);
1209      eEG2PreAttack.set_sensitive(sensitive);      eEG2PreAttack.set_sensitive(sensitive);
1210      eEG2Attack.set_sensitive(sensitive);      eEG2Attack.set_sensitive(sensitive);
1211      eEG2Decay1.set_sensitive(sensitive);      eEG2Decay1.set_sensitive(sensitive);
# Line 703  void DimRegionEdit::VCFEnabled_toggled() Line 1216  void DimRegionEdit::VCFEnabled_toggled()
1216      eEG2ControllerAttackInfluence.set_sensitive(sensitive);      eEG2ControllerAttackInfluence.set_sensitive(sensitive);
1217      eEG2ControllerDecayInfluence.set_sensitive(sensitive);      eEG2ControllerDecayInfluence.set_sensitive(sensitive);
1218      eEG2ControllerReleaseInfluence.set_sensitive(sensitive);      eEG2ControllerReleaseInfluence.set_sensitive(sensitive);
1219        eEG2StateOptions.set_sensitive(sensitive);
1220        lLFO2->set_sensitive(sensitive);
1221      eLFO2Frequency.set_sensitive(sensitive);      eLFO2Frequency.set_sensitive(sensitive);
1222      eLFO2InternalDepth.set_sensitive(sensitive);      eLFO2InternalDepth.set_sensitive(sensitive);
1223      eLFO2ControlDepth.set_sensitive(sensitive);      eLFO2ControlDepth.set_sensitive(sensitive);
# Line 729  void DimRegionEdit::VCFEnabled_toggled() Line 1244  void DimRegionEdit::VCFEnabled_toggled()
1244    
1245  void DimRegionEdit::VCFCutoffController_changed()  void DimRegionEdit::VCFCutoffController_changed()
1246  {  {
1247      int rowno = eVCFCutoffController.get_active_row_number();      gig::vcf_cutoff_ctrl_t ctrl = eVCFCutoffController.get_value();
1248      bool hasController = rowno != 0 && rowno != 1;      bool hasController = ctrl != gig::vcf_cutoff_ctrl_none && ctrl != gig::vcf_cutoff_ctrl_none2;
1249    
1250      eVCFCutoffControllerInvert.set_sensitive(hasController);      eVCFCutoffControllerInvert.set_sensitive(hasController);
1251      eVCFCutoff.set_sensitive(!hasController);      eVCFCutoff.set_sensitive(!hasController);
1252      eVCFResonanceDynamic.set_sensitive(!hasController);      eVCFResonanceDynamic.set_sensitive(!hasController);
1253      eVCFVelocityScale.label.set_text(hasController ? "Minimum cutoff:" :      eVCFVelocityScale.label.set_text(hasController ? _("Minimum cutoff:") :
1254                                       "Velocity scale:");                                       _("Velocity scale:"));
1255  }  }
1256    
1257  void DimRegionEdit::VCFResonanceController_changed()  void DimRegionEdit::VCFResonanceController_changed()
1258  {  {
1259      bool hasController = eVCFResonanceController.get_active_row_number() != 0;      bool hasController = eVCFResonanceController.get_value() != gig::vcf_res_ctrl_none;
1260      eVCFResonance.set_sensitive(!hasController);      eVCFResonance.set_sensitive(!hasController);
1261  }  }
1262    
1263  void DimRegionEdit::EG1InfiniteSustain_toggled()  void DimRegionEdit::EG1InfiniteSustain_toggled()
1264  {  {
1265      bool infSus = eEG1InfiniteSustain.get_active();      bool infSus = eEG1InfiniteSustain.get_value();
1266      eEG1Decay2.set_sensitive(!infSus);      eEG1Decay2.set_sensitive(!infSus);
1267  }  }
1268    
1269  void DimRegionEdit::EG2InfiniteSustain_toggled()  void DimRegionEdit::EG2InfiniteSustain_toggled()
1270  {  {
1271      bool infSus = eEG2InfiniteSustain.get_active();      bool infSus = eEG2InfiniteSustain.get_value();
1272      eEG2Decay2.set_sensitive(!infSus);      eEG2Decay2.set_sensitive(!infSus);
1273  }  }
1274    
1275  void DimRegionEdit::EG1Controller_changed()  void DimRegionEdit::EG1Controller_changed()
1276  {  {
1277      bool hasController = eEG1Controller.get_active_row_number() != 0;      bool hasController = eEG1Controller.get_value().type != gig::leverage_ctrl_t::type_none;
1278      eEG1ControllerInvert.set_sensitive(hasController);      eEG1ControllerInvert.set_sensitive(hasController);
1279  }  }
1280    
1281  void DimRegionEdit::EG2Controller_changed()  void DimRegionEdit::EG2Controller_changed()
1282  {  {
1283      bool hasController = eEG2Controller.get_active_row_number() != 0;      bool hasController = eEG2Controller.get_value().type != gig::leverage_ctrl_t::type_none;
1284      eEG2ControllerInvert.set_sensitive(hasController);      eEG2ControllerInvert.set_sensitive(hasController);
1285  }  }
1286    
1287  void DimRegionEdit::AttenuationController_changed()  void DimRegionEdit::AttenuationController_changed()
1288  {  {
1289      bool hasController = eAttenuationController.get_active_row_number() != 0;      bool hasController =
1290            eAttenuationController.get_value().type != gig::leverage_ctrl_t::type_none;
1291      eInvertAttenuationController.set_sensitive(hasController);      eInvertAttenuationController.set_sensitive(hasController);
1292      eAttenuationControllerThreshold.set_sensitive(hasController);      eAttenuationControllerThreshold.set_sensitive(hasController);
1293      eCrossfade_in_start.set_sensitive(hasController);      eCrossfade_in_start.set_sensitive(hasController);
1294      eCrossfade_in_end.set_sensitive(hasController);      eCrossfade_in_end.set_sensitive(hasController);
1295      eCrossfade_out_start.set_sensitive(hasController);      eCrossfade_out_start.set_sensitive(hasController);
1296      eCrossfade_out_end.set_sensitive(hasController);      eCrossfade_out_end.set_sensitive(hasController);
1297        crossfade_curve.set_sensitive(hasController);
1298  }  }
1299    
1300  void DimRegionEdit::LFO1Controller_changed()  void DimRegionEdit::LFO1Controller_changed()
1301  {  {
1302      int rowno = eLFO1Controller.get_active_row_number();      gig::lfo1_ctrl_t ctrl = eLFO1Controller.get_value();
1303      eLFO1ControlDepth.set_sensitive(rowno != 0);      eLFO1ControlDepth.set_sensitive(ctrl != gig::lfo1_ctrl_internal);
1304      eLFO1InternalDepth.set_sensitive(rowno != 1 && rowno != 2);      eLFO1InternalDepth.set_sensitive(ctrl != gig::lfo1_ctrl_modwheel &&
1305                                         ctrl != gig::lfo1_ctrl_breath);
1306  }  }
1307    
1308  void DimRegionEdit::LFO2Controller_changed()  void DimRegionEdit::LFO2Controller_changed()
1309  {  {
1310      int rowno = eLFO2Controller.get_active_row_number();      gig::lfo2_ctrl_t ctrl = eLFO2Controller.get_value();
1311      eLFO2ControlDepth.set_sensitive(rowno != 0);      eLFO2ControlDepth.set_sensitive(ctrl != gig::lfo2_ctrl_internal);
1312      eLFO2InternalDepth.set_sensitive(rowno != 1 && rowno != 2);      eLFO2InternalDepth.set_sensitive(ctrl != gig::lfo2_ctrl_modwheel &&
1313                                         ctrl != gig::lfo2_ctrl_foot);
1314  }  }
1315    
1316  void DimRegionEdit::LFO3Controller_changed()  void DimRegionEdit::LFO3Controller_changed()
1317  {  {
1318      int rowno = eLFO3Controller.get_active_row_number();      gig::lfo3_ctrl_t ctrl = eLFO3Controller.get_value();
1319      eLFO3ControlDepth.set_sensitive(rowno != 0);      eLFO3ControlDepth.set_sensitive(ctrl != gig::lfo3_ctrl_internal);
1320      eLFO3InternalDepth.set_sensitive(rowno != 1 && rowno != 2);      eLFO3InternalDepth.set_sensitive(ctrl != gig::lfo3_ctrl_modwheel &&
1321                                         ctrl != gig::lfo3_ctrl_aftertouch);
1322  }  }
1323    
1324  void DimRegionEdit::crossfade1_changed()  void DimRegionEdit::crossfade1_changed()
1325  {  {
1326      double c1 = eCrossfade_in_start.get_value();      update_model++;
1327      double c2 = eCrossfade_in_end.get_value();      eCrossfade_in_end.set_value(dimregion->Crossfade.in_end);
1328      if (c1 > c2) eCrossfade_in_end.set_value(c1);      eCrossfade_out_start.set_value(dimregion->Crossfade.out_start);
1329        eCrossfade_out_end.set_value(dimregion->Crossfade.out_end);
1330        update_model--;
1331  }  }
1332    
1333  void DimRegionEdit::crossfade2_changed()  void DimRegionEdit::crossfade2_changed()
1334  {  {
1335      double c1 = eCrossfade_in_start.get_value();      update_model++;
1336      double c2 = eCrossfade_in_end.get_value();      eCrossfade_in_start.set_value(dimregion->Crossfade.in_start);
1337      double c3 = eCrossfade_out_start.get_value();      eCrossfade_out_start.set_value(dimregion->Crossfade.out_start);
1338        eCrossfade_out_end.set_value(dimregion->Crossfade.out_end);
1339      if (c2 < c1) eCrossfade_in_start.set_value(c2);      update_model--;
     if (c2 > c3) eCrossfade_out_start.set_value(c2);  
1340  }  }
1341    
1342  void DimRegionEdit::crossfade3_changed()  void DimRegionEdit::crossfade3_changed()
1343  {  {
1344      double c2 = eCrossfade_in_end.get_value();      update_model++;
1345      double c3 = eCrossfade_out_start.get_value();      eCrossfade_in_start.set_value(dimregion->Crossfade.in_start);
1346      double c4 = eCrossfade_out_end.get_value();      eCrossfade_in_end.set_value(dimregion->Crossfade.in_end);
1347        eCrossfade_out_end.set_value(dimregion->Crossfade.out_end);
1348      if (c3 < c2) eCrossfade_in_end.set_value(c3);      update_model--;
     if (c3 > c4) eCrossfade_out_end.set_value(c3);  
1349  }  }
1350    
1351  void DimRegionEdit::crossfade4_changed()  void DimRegionEdit::crossfade4_changed()
1352  {  {
1353      double c3 = eCrossfade_out_start.get_value();      update_model++;
1354      double c4 = eCrossfade_out_end.get_value();      eCrossfade_in_start.set_value(dimregion->Crossfade.in_start);
1355        eCrossfade_in_end.set_value(dimregion->Crossfade.in_end);
1356      if (c4 < c3) eCrossfade_out_start.set_value(c4);      eCrossfade_out_start.set_value(dimregion->Crossfade.out_start);
1357        update_model--;
1358  }  }
1359    
1360  void DimRegionEdit::loop_enabled_toggled()  void DimRegionEdit::update_loop_elements()
1361  {  {
1362      const bool active = eSampleLoopEnabled.get_active();      update_model++;
1363      if (active) {      const bool active = eSampleLoopEnabled.get_value();
         // create a new sample loop in case there is none yet  
         if (!dimregion->SampleLoops) {  
             DLS::sample_loop_t loop;  
             loop.LoopType   = gig::loop_type_normal;  
             // loop the whole sample by default  
             loop.LoopStart  = 0;  
             loop.LoopLength =  
                 (dimregion->pSample) ? dimregion->pSample->GetSize() : 0;  
             dimreg_to_be_changed_signal.emit(dimregion);  
             dimregion->AddSampleLoop(&loop);  
             dimreg_changed_signal.emit(dimregion);  
         }  
     } else {  
         if (dimregion->SampleLoops) {  
             dimreg_to_be_changed_signal.emit(dimregion);  
             // delete ALL existing sample loops  
             while (dimregion->SampleLoops) {  
                 dimregion->DeleteSampleLoop(&dimregion->pSampleLoops[0]);  
             }  
             dimreg_changed_signal.emit(dimregion);  
         }  
     }  
     updateLoopElements();  
 }  
   
 void DimRegionEdit::updateLoopElements()  
 {  
     const bool active = eSampleLoopEnabled.get_active();  
1364      eSampleLoopStart.set_sensitive(active);      eSampleLoopStart.set_sensitive(active);
1365      eSampleLoopLength.set_sensitive(active);      eSampleLoopLength.set_sensitive(active);
1366      eSampleLoopType.set_sensitive(active);      eSampleLoopType.set_sensitive(active);
1367      eSampleLoopInfinite.set_sensitive(active && dimregion && dimregion->pSample);      eSampleLoopInfinite.set_sensitive(active && dimregion && dimregion->pSample);
1368      eSampleLoopStart.set_ptr(0);      // sample loop shall never be longer than the actual sample size
1369      eSampleLoopLength.set_ptr(0);      loop_start_changed();
1370      eSampleLoopPlayCount.set_ptr(0);      loop_length_changed();
1371        eSampleLoopStart.set_value(
1372            dimregion->SampleLoops ? dimregion->pSampleLoops[0].LoopStart : 0);
1373        eSampleLoopLength.set_value(
1374            dimregion->SampleLoops ? dimregion->pSampleLoops[0].LoopLength : 0);
1375    
1376        eSampleLoopInfinite.set_value(
1377            dimregion->pSample && dimregion->pSample->LoopPlayCount == 0);
1378    
1379        loop_infinite_toggled();
1380        update_model--;
1381    }
1382    
1383    void DimRegionEdit::loop_start_changed() {
1384        if (dimregion && dimregion->SampleLoops) {
1385            eSampleLoopLength.set_upper(dimregion->pSample ?
1386                                        dimregion->pSample->SamplesTotal -
1387                                        dimregion->pSampleLoops[0].LoopStart : 0);
1388        }
1389    }
1390    
1391    void DimRegionEdit::loop_length_changed() {
1392      if (dimregion && dimregion->SampleLoops) {      if (dimregion && dimregion->SampleLoops) {
1393          eSampleLoopStart.set_ptr(&dimregion->pSampleLoops[0].LoopStart);          eSampleLoopStart.set_upper(dimregion->pSample ?
1394          eSampleLoopLength.set_ptr(&dimregion->pSampleLoops[0].LoopLength);                                     dimregion->pSample->SamplesTotal -
1395          eSampleLoopType.set_ptr(&dimregion->pSampleLoops[0].LoopType);                                     dimregion->pSampleLoops[0].LoopLength : 0);
         eSampleLoopInfinite.set_active(  
             dimregion->pSample && !dimregion->pSample->LoopPlayCount  
         );  
         // updated enabled state of loop play count widget  
         loop_infinite_toggled();  
   
         eSampleLoopPlayCount.set_ptr(  
             (dimregion->pSample) ? &dimregion->pSample->LoopPlayCount : 0  
         );  
   
         // sample loop shall never be longer than the actual sample size  
         eSampleLoopStart.set_upper(  
             (dimregion->pSample)  
                 ? dimregion->pSample->SamplesTotal -  
                   dimregion->pSampleLoops[0].LoopLength  
                 : 0  
         );  
         eSampleLoopLength.set_upper(  
             (dimregion->pSample)  
                 ? dimregion->pSample->SamplesTotal -  
                   dimregion->pSampleLoops[0].LoopStart  
                 : 0  
         );  
     } else { // no sample loop(s)  
         eSampleLoopType.set_ptr(0);  
         // updated enabled state of loop play count widget  
         loop_infinite_toggled();  
1396      }      }
1397  }  }
1398    
1399  void DimRegionEdit::loop_infinite_toggled() {  void DimRegionEdit::loop_infinite_toggled() {
1400      eSampleLoopPlayCount.set_sensitive(      eSampleLoopPlayCount.set_sensitive(
1401          dimregion && dimregion->pSample &&          dimregion && dimregion->pSample &&
1402          !eSampleLoopInfinite.get_active() &&          !eSampleLoopInfinite.get_value() &&
1403           eSampleLoopEnabled.get_active()          eSampleLoopEnabled.get_value()
1404      );      );
1405      if (eSampleLoopInfinite.get_active())      update_model++;
1406          eSampleLoopPlayCount.set_value(0);      eSampleLoopPlayCount.set_value(
1407      else if (!eSampleLoopPlayCount.get_value())          dimregion->pSample ? dimregion->pSample->LoopPlayCount : 0);
1408          eSampleLoopPlayCount.set_value(1);      update_model--;
1409  }  }
1410    
1411  bool DimRegionEdit::set_sample(gig::Sample* sample)  bool DimRegionEdit::set_sample(gig::Sample* sample, bool copy_sample_unity, bool copy_sample_tune, bool copy_sample_loop)
1412  {  {
1413      if (dimregion) {      bool result = false;
1414        for (std::set<gig::DimensionRegion*>::iterator itDimReg = dimregs.begin();
1415             itDimReg != dimregs.end(); ++itDimReg)
1416        {
1417            result |= set_sample(*itDimReg, sample, copy_sample_unity, copy_sample_tune, copy_sample_loop);
1418        }
1419        return result;
1420    }
1421    
1422    bool DimRegionEdit::set_sample(gig::DimensionRegion* dimreg, gig::Sample* sample, bool copy_sample_unity, bool copy_sample_tune, bool copy_sample_loop)
1423    {
1424        if (dimreg) {
1425          //TODO: we should better move the code from MainWindow::on_sample_label_drop_drag_data_received() here          //TODO: we should better move the code from MainWindow::on_sample_label_drop_drag_data_received() here
1426    
1427          // currently commented because we're sending a similar signal in MainWindow::on_sample_label_drop_drag_data_received()          // currently commented because we're sending a similar signal in MainWindow::on_sample_label_drop_drag_data_received()
1428          //dimreg_to_be_changed_signal.emit(dimregion);          //DimRegionChangeGuard(this, dimregion);
1429    
1430            // make sure stereo samples always are the same in both
1431            // dimregs in the samplechannel dimension
1432            int nbDimregs = 1;
1433            gig::DimensionRegion* d[2] = { dimreg, 0 };
1434            if (sample->Channels == 2) {
1435                gig::Region* region = dimreg->GetParent();
1436    
1437                int bitcount = 0;
1438                int stereo_bit = 0;
1439                for (int dim = 0 ; dim < region->Dimensions ; dim++) {
1440                    if (region->pDimensionDefinitions[dim].dimension == gig::dimension_samplechannel) {
1441                        stereo_bit = 1 << bitcount;
1442                        break;
1443                    }
1444                    bitcount += region->pDimensionDefinitions[dim].bits;
1445                }
1446    
1447          gig::Sample* oldref = dimregion->pSample;              if (stereo_bit) {
1448          dimregion->pSample = sample;                  int dimregno;
1449                    for (dimregno = 0 ; dimregno < region->DimensionRegions ; dimregno++) {
1450                        if (region->pDimensionRegions[dimregno] == dimreg) {
1451                            break;
1452                        }
1453                    }
1454                    d[0] = region->pDimensionRegions[dimregno & ~stereo_bit];
1455                    d[1] = region->pDimensionRegions[dimregno | stereo_bit];
1456                    nbDimregs = 2;
1457                }
1458            }
1459    
1460          // copy sample information from Sample to DimensionRegion          gig::Sample* oldref = dimreg->pSample;
1461    
1462          dimregion->UnityNote = sample->MIDIUnityNote;          for (int i = 0 ; i < nbDimregs ; i++) {
1463          dimregion->FineTune = sample->FineTune;              d[i]->pSample = sample;
1464    
1465          int loops = sample->Loops ? 1 : 0;              // copy sample information from Sample to DimensionRegion
1466          while (dimregion->SampleLoops > loops) {              if (copy_sample_unity)
1467              dimregion->DeleteSampleLoop(&dimregion->pSampleLoops[0]);                  d[i]->UnityNote = sample->MIDIUnityNote;
1468          }              if (copy_sample_tune)
1469          while (dimregion->SampleLoops < sample->Loops) {                  d[i]->FineTune = sample->FineTune;
1470              DLS::sample_loop_t loop;              if (copy_sample_loop) {
1471              dimregion->AddSampleLoop(&loop);                  int loops = sample->Loops ? 1 : 0;
1472          }                  while (d[i]->SampleLoops > loops) {
1473          if (loops) {                      d[i]->DeleteSampleLoop(&d[i]->pSampleLoops[0]);
1474              dimregion->pSampleLoops[0].Size = sizeof(DLS::sample_loop_t);                  }
1475              dimregion->pSampleLoops[0].LoopType = sample->LoopType;                  while (d[i]->SampleLoops < sample->Loops) {
1476              dimregion->pSampleLoops[0].LoopStart = sample->LoopStart;                      DLS::sample_loop_t loop;
1477              dimregion->pSampleLoops[0].LoopLength = sample->LoopEnd - sample->LoopStart + 1;                      d[i]->AddSampleLoop(&loop);
1478                    }
1479                    if (loops) {
1480                        d[i]->pSampleLoops[0].Size = sizeof(DLS::sample_loop_t);
1481                        d[i]->pSampleLoops[0].LoopType = sample->LoopType;
1482                        d[i]->pSampleLoops[0].LoopStart = sample->LoopStart;
1483                        d[i]->pSampleLoops[0].LoopLength = sample->LoopEnd - sample->LoopStart + 1;
1484                    }
1485                }
1486          }          }
1487    
1488          // update ui          // update ui
1489          wSample->set_text(dimregion->pSample->pInfo->Name);          update_model++;
1490          eUnityNote.set_ptr(&dimregion->UnityNote);          wSample->set_text(gig_to_utf8(dimreg->pSample->pInfo->Name));
1491          eFineTune.set_ptr(&dimregion->FineTune);          eUnityNote.set_value(dimreg->UnityNote);
1492          eSampleLoopEnabled.set_active(dimregion->SampleLoops);          eFineTune.set_value(dimreg->FineTune);
1493          updateLoopElements();          eSampleLoopEnabled.set_value(dimreg->SampleLoops);
1494            update_loop_elements();
1495            update_model--;
1496    
1497          sample_ref_changed_signal.emit(oldref, sample);          sample_ref_changed_signal.emit(oldref, sample);
         // currently commented because we're sending a similar signal in MainWindow::on_sample_label_drop_drag_data_received()  
         //dimreg_changed_signal.emit(dimregion);  
1498          return true;          return true;
1499      }      }
1500      return false;      return false;
# Line 979  sigc::signal<void, gig::DimensionRegion* Line 1511  sigc::signal<void, gig::DimensionRegion*
1511  sigc::signal<void, gig::Sample*/*old*/, gig::Sample*/*new*/>& DimRegionEdit::signal_sample_ref_changed() {  sigc::signal<void, gig::Sample*/*old*/, gig::Sample*/*new*/>& DimRegionEdit::signal_sample_ref_changed() {
1512      return sample_ref_changed_signal;      return sample_ref_changed_signal;
1513  }  }
1514    
1515    
1516    void DimRegionEdit::set_UnityNote(gig::DimensionRegion* d, uint8_t value)
1517    {
1518        d->UnityNote = value;
1519    }
1520    
1521    void DimRegionEdit::set_FineTune(gig::DimensionRegion* d, int16_t value)
1522    {
1523        d->FineTune = value;
1524    }
1525    
1526    void DimRegionEdit::set_Crossfade_in_start(gig::DimensionRegion* d,
1527                                               uint8_t value)
1528    {
1529        d->Crossfade.in_start = value;
1530        if (d->Crossfade.in_end < value) set_Crossfade_in_end(d, value);
1531    }
1532    
1533    void DimRegionEdit::set_Crossfade_in_end(gig::DimensionRegion* d,
1534                                             uint8_t value)
1535    {
1536        d->Crossfade.in_end = value;
1537        if (value < d->Crossfade.in_start) set_Crossfade_in_start(d, value);
1538        if (value > d->Crossfade.out_start) set_Crossfade_out_start(d, value);
1539    }
1540    
1541    void DimRegionEdit::set_Crossfade_out_start(gig::DimensionRegion* d,
1542                                                uint8_t value)
1543    {
1544        d->Crossfade.out_start = value;
1545        if (value < d->Crossfade.in_end) set_Crossfade_in_end(d, value);
1546        if (value > d->Crossfade.out_end) set_Crossfade_out_end(d, value);
1547    }
1548    
1549    void DimRegionEdit::set_Crossfade_out_end(gig::DimensionRegion* d,
1550                                              uint8_t value)
1551    {
1552        d->Crossfade.out_end = value;
1553        if (value < d->Crossfade.out_start) set_Crossfade_out_start(d, value);
1554    }
1555    
1556    void DimRegionEdit::set_Gain(gig::DimensionRegion* d, int32_t value)
1557    {
1558        d->SetGain(value);
1559    }
1560    
1561    void DimRegionEdit::set_LoopEnabled(gig::DimensionRegion* d, bool value)
1562    {
1563        if (value) {
1564            // create a new sample loop in case there is none yet
1565            if (!d->SampleLoops) {
1566                DimRegionChangeGuard(this, d);
1567    
1568                DLS::sample_loop_t loop;
1569                loop.LoopType = gig::loop_type_normal;
1570                // loop the whole sample by default
1571                loop.LoopStart  = 0;
1572                loop.LoopLength =
1573                    (d->pSample) ? d->pSample->SamplesTotal : 0;
1574                d->AddSampleLoop(&loop);
1575            }
1576        } else {
1577            if (d->SampleLoops) {
1578                DimRegionChangeGuard(this, d);
1579    
1580                // delete ALL existing sample loops
1581                while (d->SampleLoops) {
1582                    d->DeleteSampleLoop(&d->pSampleLoops[0]);
1583                }
1584            }
1585        }
1586    }
1587    
1588    void DimRegionEdit::set_LoopType(gig::DimensionRegion* d, uint32_t value)
1589    {
1590        if (d->SampleLoops) d->pSampleLoops[0].LoopType = value;
1591    }
1592    
1593    void DimRegionEdit::set_LoopStart(gig::DimensionRegion* d, uint32_t value)
1594    {
1595        if (d->SampleLoops) {
1596            d->pSampleLoops[0].LoopStart =
1597                d->pSample ?
1598                std::min(value, uint32_t(d->pSample->SamplesTotal -
1599                                         d->pSampleLoops[0].LoopLength)) :
1600                0;
1601        }
1602    }
1603    
1604    void DimRegionEdit::set_LoopLength(gig::DimensionRegion* d, uint32_t value)
1605    {
1606        if (d->SampleLoops) {
1607            d->pSampleLoops[0].LoopLength =
1608                d->pSample ?
1609                std::min(value, uint32_t(d->pSample->SamplesTotal -
1610                                         d->pSampleLoops[0].LoopStart)) :
1611                0;
1612        }
1613    }
1614    
1615    void DimRegionEdit::set_LoopInfinite(gig::DimensionRegion* d, bool value)
1616    {
1617        if (d->pSample) {
1618            if (value) d->pSample->LoopPlayCount = 0;
1619            else if (d->pSample->LoopPlayCount == 0) d->pSample->LoopPlayCount = 1;
1620        }
1621    }
1622    
1623    void DimRegionEdit::set_LoopPlayCount(gig::DimensionRegion* d, uint32_t value)
1624    {
1625        if (d->pSample) d->pSample->LoopPlayCount = value;
1626    }
1627    
1628    void DimRegionEdit::nullOutSampleReference() {
1629        if (!dimregion) return;
1630        gig::Sample* oldref = dimregion->pSample;
1631        if (!oldref) return;
1632    
1633        DimRegionChangeGuard(this, dimregion);
1634    
1635        // in case currently assigned sample is a stereo one, then remove both
1636        // references (expected to be due to a "stereo dimension")
1637        gig::DimensionRegion* d[2] = { dimregion, NULL };
1638        if (oldref->Channels == 2) {
1639            gig::Region* region = dimregion->GetParent();
1640            {
1641                int stereo_bit = 0;
1642                int bitcount = 0;
1643                for (int dim = 0 ; dim < region->Dimensions ; dim++) {
1644                    if (region->pDimensionDefinitions[dim].dimension == gig::dimension_samplechannel) {
1645                        stereo_bit = 1 << bitcount;
1646                        break;
1647                    }
1648                    bitcount += region->pDimensionDefinitions[dim].bits;
1649                }
1650    
1651                if (stereo_bit) {
1652                    int dimregno;
1653                    for (dimregno = 0 ; dimregno < region->DimensionRegions ; dimregno++) {
1654                        if (region->pDimensionRegions[dimregno] == dimregion) {
1655                            break;
1656                        }
1657                    }
1658                    d[0] = region->pDimensionRegions[dimregno & ~stereo_bit];
1659                    d[1] = region->pDimensionRegions[dimregno | stereo_bit];
1660                }
1661            }
1662        }
1663    
1664        if (d[0]) d[0]->pSample = NULL;
1665        if (d[1]) d[1]->pSample = NULL;
1666    
1667        // update UI elements
1668        set_dim_region(dimregion);
1669    
1670        sample_ref_changed_signal.emit(oldref, NULL);
1671    }
1672    
1673    void DimRegionEdit::onButtonSelectSamplePressed() {
1674        if (!dimregion) return;
1675        if (!dimregion->pSample) return;
1676        select_sample_signal.emit(dimregion->pSample);
1677    }
1678    
1679    sigc::signal<void, gig::Sample*>& DimRegionEdit::signal_select_sample() {
1680        return select_sample_signal;
1681    }

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