source: git/src/gfxcore.cc @ d10d369

RELEASE/1.2debug-cidebug-ci-sanitisersstereowalls-data
Last change on this file since d10d369 was d10d369, checked in by Olly Betts <olly@…>, 13 years ago

src/gfxcore.cc: No need to specify true to PlayPres? - that's the
default.

git-svn-id: file:///home/survex-svn/survex/trunk@3618 4b37db11-9a0c-4f06-9ece-9ab7cdaee568

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File size: 77.8 KB
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1//
2//  gfxcore.cc
3//
4//  Core drawing code for Aven.
5//
6//  Copyright (C) 2000-2003,2005,2006 Mark R. Shinwell
7//  Copyright (C) 2001-2003,2004,2005,2006,2007,2010 Olly Betts
8//  Copyright (C) 2005 Martin Green
9//
10//  This program is free software; you can redistribute it and/or modify
11//  it under the terms of the GNU General Public License as published by
12//  the Free Software Foundation; either version 2 of the License, or
13//  (at your option) any later version.
14//
15//  This program is distributed in the hope that it will be useful,
16//  but WITHOUT ANY WARRANTY; without even the implied warranty of
17//  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
18//  GNU General Public License for more details.
19//
20//  You should have received a copy of the GNU General Public License
21//  along with this program; if not, write to the Free Software
22//  Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA  02110-1301 USA
23//
24
25#ifdef HAVE_CONFIG_H
26#include <config.h>
27#endif
28
29#include <assert.h>
30#include <float.h>
31
32#include "aven.h"
33#include "date.h"
34#include "gfxcore.h"
35#include "mainfrm.h"
36#include "message.h"
37#include "useful.h"
38#include "printwx.h"
39#include "guicontrol.h"
40#include "moviemaker.h"
41
42#include <wx/confbase.h>
43#include <wx/image.h>
44
45#define MAX(a, b) ((a) > (b) ? (a) : (b))
46#define MAX3(a, b, c) ((a) > (b) ? MAX(a, c) : MAX(b, c))
47
48// Values for m_SwitchingTo
49#define PLAN 1
50#define ELEVATION 2
51#define NORTH 3
52#define EAST 4
53#define SOUTH 5
54#define WEST 6
55
56// Any error value higher than this is clamped to this.
57#define MAX_ERROR 12.0
58
59// How many bins per letter height to use when working out non-overlapping
60// labels.
61const unsigned int QUANTISE_FACTOR = 2;
62
63const int NUM_DEPTH_COLOURS = 13;
64
65#include "avenpal.h"
66
67static const int COMPASS_OFFSET_X = 60;
68static const int COMPASS_OFFSET_Y = 80;
69static const int INDICATOR_BOX_SIZE = 60;
70static const int INDICATOR_GAP = 2;
71static const int INDICATOR_MARGIN = 5;
72static const int INDICATOR_OFFSET_X = 15;
73static const int INDICATOR_OFFSET_Y = 15;
74static const int INDICATOR_RADIUS = INDICATOR_BOX_SIZE / 2 - INDICATOR_MARGIN;
75static const int CLINO_OFFSET_X = 6 + INDICATOR_OFFSET_X +
76                                  INDICATOR_BOX_SIZE + INDICATOR_GAP;
77static const int DEPTH_BAR_OFFSET_X = 16;
78static const int DEPTH_BAR_EXTRA_LEFT_MARGIN = 2;
79static const int DEPTH_BAR_BLOCK_WIDTH = 20;
80static const int DEPTH_BAR_BLOCK_HEIGHT = 15;
81static const int DEPTH_BAR_MARGIN = 6;
82static const int DEPTH_BAR_OFFSET_Y = 16 + DEPTH_BAR_MARGIN;
83static const int TICK_LENGTH = 4;
84static const int SCALE_BAR_OFFSET_X = 15;
85static const int SCALE_BAR_OFFSET_Y = 12;
86static const int SCALE_BAR_HEIGHT = 12;
87
88static const gla_colour TEXT_COLOUR = col_GREEN;
89static const gla_colour HERE_COLOUR = col_WHITE;
90static const gla_colour NAME_COLOUR = col_GREEN;
91
92#define HITTEST_SIZE 20
93
94// vector for lighting angle
95static const Vector3 light(.577, .577, .577);
96
97BEGIN_EVENT_TABLE(GfxCore, wxGLCanvas)
98    EVT_PAINT(GfxCore::OnPaint)
99    EVT_LEFT_DOWN(GfxCore::OnLButtonDown)
100    EVT_LEFT_UP(GfxCore::OnLButtonUp)
101    EVT_MIDDLE_DOWN(GfxCore::OnMButtonDown)
102    EVT_MIDDLE_UP(GfxCore::OnMButtonUp)
103    EVT_RIGHT_DOWN(GfxCore::OnRButtonDown)
104    EVT_RIGHT_UP(GfxCore::OnRButtonUp)
105    EVT_MOUSEWHEEL(GfxCore::OnMouseWheel)
106    EVT_MOTION(GfxCore::OnMouseMove)
107    EVT_LEAVE_WINDOW(GfxCore::OnLeaveWindow)
108    EVT_SIZE(GfxCore::OnSize)
109    EVT_IDLE(GfxCore::OnIdle)
110    EVT_CHAR(GfxCore::OnKeyPress)
111END_EVENT_TABLE()
112
113GfxCore::GfxCore(MainFrm* parent, wxWindow* parent_win, GUIControl* control) :
114    GLACanvas(parent_win, 100),
115    m_Scale(0.0),
116    m_ScaleBarWidth(0),
117    m_Control(control),
118    m_LabelGrid(NULL),
119    m_Parent(parent),
120    m_DoneFirstShow(false),
121    m_TiltAngle(0.0),
122    m_PanAngle(0.0),
123    m_Rotating(false),
124    m_RotationStep(0.0),
125    m_SwitchingTo(0),
126    m_Crosses(false),
127    m_Legs(true),
128    m_Names(false),
129    m_Scalebar(true),
130    m_Depthbar(true),
131    m_OverlappingNames(false),
132    m_Compass(true),
133    m_Clino(true),
134    m_Tubes(false),
135    m_XSize(0),
136    m_YSize(0),
137    m_ColourBy(COLOUR_BY_DEPTH),
138    m_HaveData(false),
139    m_MouseOutsideCompass(false),
140    m_MouseOutsideElev(false),
141    m_Surface(false),
142    m_Entrances(false),
143    m_FixedPts(false),
144    m_ExportedPts(false),
145    m_Grid(false),
146    m_BoundingBox(false),
147    m_Degrees(false),
148    m_Metric(false),
149    m_HitTestGridValid(false),
150    m_here_is_temporary(false),
151    presentation_mode(0),
152    pres_reverse(false),
153    pres_speed(0.0),
154    movie(NULL),
155    current_cursor(GfxCore::CURSOR_DEFAULT)
156{
157    AddQuad = &GfxCore::AddQuadrilateralDepth;
158    AddPoly = &GfxCore::AddPolylineDepth;
159    wxConfigBase::Get()->Read(wxT("metric"), &m_Metric, true);
160    wxConfigBase::Get()->Read(wxT("degrees"), &m_Degrees, true);
161    m_here.Invalidate();
162    m_there.Invalidate();
163
164    // Initialise grid for hit testing.
165    m_PointGrid = new list<LabelInfo*>[HITTEST_SIZE * HITTEST_SIZE];
166
167    m_Pens = new GLAPen[NUM_DEPTH_COLOURS + 1];
168    for (int pen = 0; pen < NUM_DEPTH_COLOURS + 1; ++pen) {
169        m_Pens[pen].SetColour(REDS[pen] / 255.0,
170                              GREENS[pen] / 255.0,
171                              BLUES[pen] / 255.0);
172    }
173}
174
175GfxCore::~GfxCore()
176{
177    TryToFreeArrays();
178
179    delete[] m_Pens;
180    delete[] m_PointGrid;
181}
182
183void GfxCore::TryToFreeArrays()
184{
185    // Free up any memory allocated for arrays.
186
187    if (m_LabelGrid) {
188        delete[] m_LabelGrid;
189        m_LabelGrid = NULL;
190    }
191}
192
193//
194//  Initialisation methods
195//
196
197void GfxCore::Initialise(bool same_file)
198{
199    // Initialise the view from the parent holding the survey data.
200
201    TryToFreeArrays();
202
203    m_DoneFirstShow = false;
204
205    m_HitTestGridValid = false;
206    m_here_is_temporary = true;
207    m_here.Invalidate();
208    m_there.Invalidate();
209
210    m_MouseOutsideCompass = m_MouseOutsideElev = false;
211
212    if (!same_file) {
213        // Apply default parameters unless reloading the same file.
214        DefaultParameters();
215
216        // Set the initial scale.
217        SetScale(1.0);
218    }
219
220    switch (m_ColourBy) {
221        case COLOUR_BY_DEPTH:
222            if (m_Parent->GetDepthExtent() == 0.0) {
223                SetColourBy(COLOUR_BY_NONE);
224            }
225            break;
226        case COLOUR_BY_DATE:
227            if (m_Parent->GetDateExtent() == 0) {
228                SetColourBy(COLOUR_BY_NONE);
229            }
230            break;
231        case COLOUR_BY_ERROR:
232            if (!m_Parent->HasErrorInformation()) {
233                SetColourBy(COLOUR_BY_NONE);
234            }
235            break;
236    }
237
238    m_HaveData = true;
239
240    ForceRefresh();
241}
242
243void GfxCore::FirstShow()
244{
245    GLACanvas::FirstShow();
246
247    const unsigned int quantise(GetFontSize() / QUANTISE_FACTOR);
248    list<LabelInfo*>::iterator pos = m_Parent->GetLabelsNC();
249    while (pos != m_Parent->GetLabelsNCEnd()) {
250        LabelInfo* label = *pos++;
251        // Calculate and set the label width for use when plotting
252        // none-overlapping labels.
253        int ext_x;
254        GLACanvas::GetTextExtent(label->GetText(), &ext_x, NULL);
255        label->set_width(unsigned(ext_x) / quantise + 1);
256    }
257
258    SetBackgroundColour(0.0, 0.0, 0.0);
259
260    // Set diameter of the viewing volume.
261    SetVolumeDiameter(sqrt(sqrd(m_Parent->GetXExtent()) +
262                           sqrd(m_Parent->GetYExtent()) +
263                           sqrd(m_Parent->GetZExtent())));
264
265    // Update our record of the client area size and centre.
266    GetClientSize(&m_XSize, &m_YSize);
267
268    m_DoneFirstShow = true;
269}
270
271//
272//  Recalculating methods
273//
274
275void GfxCore::SetScale(Double scale)
276{
277    // Fill the plot data arrays with screen coordinates, scaling the survey
278    // to a particular absolute scale.
279
280    if (scale < 0.05) {
281        scale = 0.05;
282    } else {
283        if (scale > 1000.0) scale = 1000.0;
284    }
285
286    m_Scale = scale;
287    m_HitTestGridValid = false;
288    if (m_here_is_temporary) SetHere();
289
290    GLACanvas::SetScale(scale);
291}
292
293bool GfxCore::HasUndergroundLegs() const
294{
295    return m_Parent->HasUndergroundLegs();
296}
297
298bool GfxCore::HasSurfaceLegs() const
299{
300    return m_Parent->HasSurfaceLegs();
301}
302
303bool GfxCore::HasTubes() const
304{
305    return m_Parent->HasTubes();
306}
307
308void GfxCore::UpdateBlobs()
309{
310    InvalidateList(LIST_BLOBS);
311}
312
313//
314//  Event handlers
315//
316
317void GfxCore::OnLeaveWindow(wxMouseEvent& event) {
318    SetHere();
319    ClearCoords();
320}
321
322void GfxCore::OnIdle(wxIdleEvent& event)
323{
324    // Handle an idle event.
325    if (Animate()) {
326        ForceRefresh();
327        event.RequestMore();
328    }
329}
330
331void GfxCore::OnPaint(wxPaintEvent&)
332{
333    // Redraw the window.
334
335    // Get a graphics context.
336    wxPaintDC dc(this);
337
338    assert(GetContext());
339
340    if (m_HaveData) {
341        // Make sure we're initialised.
342        bool first_time = !m_DoneFirstShow;
343        if (first_time) {
344            FirstShow();
345        }
346
347        StartDrawing();
348
349        // Clear the background.
350        Clear();
351
352        // Set up model transformation matrix.
353        SetDataTransform();
354
355        timer.Start(); // reset timer
356
357        if (m_Legs || m_Tubes) {
358            if (m_Tubes) {
359                EnableSmoothPolygons(true); // FIXME: allow false for wireframe view
360                DrawList(LIST_TUBES);
361                DisableSmoothPolygons();
362            }
363
364            // Draw the underground legs.  Do this last so that anti-aliasing
365            // works over polygons.
366            SetColour(col_GREEN);
367            DrawList(LIST_UNDERGROUND_LEGS);
368        }
369
370        if (m_Surface) {
371            // Draw the surface legs.
372            DrawList(LIST_SURFACE_LEGS);
373        }
374
375        DrawList(LIST_BLOBS);
376
377        if (m_BoundingBox) {
378            DrawShadowedBoundingBox();
379        }
380        if (m_Grid) {
381            // Draw the grid.
382            DrawList(LIST_GRID);
383        }
384
385        if (m_Crosses) {
386            DrawList(LIST_CROSSES);
387        }
388
389        SetIndicatorTransform();
390
391        // Draw station names.
392        if (m_Names /*&& !m_Control->MouseDown() && !Animating()*/) {
393            SetColour(NAME_COLOUR);
394
395            if (m_OverlappingNames) {
396                SimpleDrawNames();
397            } else {
398                NattyDrawNames();
399            }
400        }
401
402        if (!Animating() && (m_here.IsValid() || m_there.IsValid())) {
403            // Draw "here" and "there".
404            double hx, hy;
405            SetColour(HERE_COLOUR);
406            if (m_here.IsValid()) {
407                double dummy;
408                Transform(m_here, &hx, &hy, &dummy);
409                if (!m_here_is_temporary) DrawRing(hx, hy);
410            }
411            if (m_there.IsValid()) {
412                double tx, ty;
413                double dummy;
414                Transform(m_there, &tx, &ty, &dummy);
415                if (m_here.IsValid()) {
416                    BeginLines();
417                    PlaceIndicatorVertex(hx, hy);
418                    PlaceIndicatorVertex(tx, ty);
419                    EndLines();
420                }
421                BeginBlobs();
422                DrawBlob(tx, ty);
423                EndBlobs();
424            }
425        }
426
427        // Draw indicators.
428        //
429        // There's no advantage in generating an OpenGL list for the
430        // indicators since they change with almost every redraw (and
431        // sometimes several times between redraws).  This way we avoid
432        // the need to track when to update the indicator OpenGL list,
433        // and also avoid indicator update bugs when we don't quite get this
434        // right...
435        DrawIndicators();
436
437        FinishDrawing();
438
439        drawtime = timer.Time();
440    } else {
441        dc.SetBackground(wxSystemSettings::GetColour(wxSYS_COLOUR_WINDOWFRAME));
442        dc.Clear();
443    }
444}
445
446void GfxCore::DrawBoundingBox()
447{
448    const Vector3 v = 0.5 * m_Parent->GetExtent();
449
450    SetColour(col_BLUE);
451    EnableDashedLines();
452    BeginPolyline();
453    PlaceVertex(-v.GetX(), -v.GetY(), v.GetZ());
454    PlaceVertex(-v.GetX(), v.GetY(), v.GetZ());
455    PlaceVertex(v.GetX(), v.GetY(), v.GetZ());
456    PlaceVertex(v.GetX(), -v.GetY(), v.GetZ());
457    PlaceVertex(-v.GetX(), -v.GetY(), v.GetZ());
458    EndPolyline();
459    BeginPolyline();
460    PlaceVertex(-v.GetX(), -v.GetY(), -v.GetZ());
461    PlaceVertex(-v.GetX(), v.GetY(), -v.GetZ());
462    PlaceVertex(v.GetX(), v.GetY(), -v.GetZ());
463    PlaceVertex(v.GetX(), -v.GetY(), -v.GetZ());
464    PlaceVertex(-v.GetX(), -v.GetY(), -v.GetZ());
465    EndPolyline();
466    BeginLines();
467    PlaceVertex(-v.GetX(), -v.GetY(), v.GetZ());
468    PlaceVertex(-v.GetX(), -v.GetY(), -v.GetZ());
469    PlaceVertex(-v.GetX(), v.GetY(), v.GetZ());
470    PlaceVertex(-v.GetX(), v.GetY(), -v.GetZ());
471    PlaceVertex(v.GetX(), v.GetY(), v.GetZ());
472    PlaceVertex(v.GetX(), v.GetY(), -v.GetZ());
473    PlaceVertex(v.GetX(), -v.GetY(), v.GetZ());
474    PlaceVertex(v.GetX(), -v.GetY(), -v.GetZ());
475    EndLines();
476    DisableDashedLines();
477}
478
479void GfxCore::DrawShadowedBoundingBox()
480{
481    const Vector3 v = 0.5 * m_Parent->GetExtent();
482
483    DrawBoundingBox();
484
485    // FIXME: these gl* calls should be in gla-gl.cc
486    glPolygonOffset(1.0, 1.0);
487    glEnable(GL_POLYGON_OFFSET_FILL);
488
489    SetColour(col_DARK_GREY);
490    BeginQuadrilaterals();
491    PlaceVertex(-v.GetX(), -v.GetY(), -v.GetZ());
492    PlaceVertex(-v.GetX(), v.GetY(), -v.GetZ());
493    PlaceVertex(v.GetX(), v.GetY(), -v.GetZ());
494    PlaceVertex(v.GetX(), -v.GetY(), -v.GetZ());
495    EndQuadrilaterals();
496
497    glDisable(GL_POLYGON_OFFSET_FILL);
498
499    DrawList(LIST_SHADOW);
500}
501
502void GfxCore::DrawGrid()
503{
504    // Draw the grid.
505    SetColour(col_RED);
506
507    // Calculate the extent of the survey, in metres across the screen plane.
508    Double m_across_screen = SurveyUnitsAcrossViewport();
509    // Calculate the length of the scale bar in metres.
510    //--move this elsewhere
511    Double size_snap = pow(10.0, floor(log10(0.75 * m_across_screen)));
512    Double t = m_across_screen * 0.75 / size_snap;
513    if (t >= 5.0) {
514        size_snap *= 5.0;
515    }
516    else if (t >= 2.0) {
517        size_snap *= 2.0;
518    }
519
520    Double grid_size = size_snap * 0.1;
521    Double edge = grid_size * 2.0;
522    Double grid_z = -m_Parent->GetZExtent() * 0.5 - grid_size;
523    Double left = -m_Parent->GetXExtent() * 0.5 - edge;
524    Double right = m_Parent->GetXExtent() * 0.5 + edge;
525    Double bottom = -m_Parent->GetYExtent() * 0.5 - edge;
526    Double top = m_Parent->GetYExtent() * 0.5 + edge;
527    int count_x = (int) ceil((right - left) / grid_size);
528    int count_y = (int) ceil((top - bottom) / grid_size);
529    Double actual_right = left + count_x*grid_size;
530    Double actual_top = bottom + count_y*grid_size;
531
532    BeginLines();
533
534    for (int xc = 0; xc <= count_x; xc++) {
535        Double x = left + xc*grid_size;
536
537        PlaceVertex(x, bottom, grid_z);
538        PlaceVertex(x, actual_top, grid_z);
539    }
540
541    for (int yc = 0; yc <= count_y; yc++) {
542        Double y = bottom + yc*grid_size;
543        PlaceVertex(left, y, grid_z);
544        PlaceVertex(actual_right, y, grid_z);
545    }
546
547    EndLines();
548}
549
550int GfxCore::GetClinoOffset() const
551{
552    return m_Compass ? CLINO_OFFSET_X : INDICATOR_OFFSET_X;
553}
554
555void GfxCore::DrawTick(int angle_cw)
556{
557    const Double theta = rad(angle_cw);
558    const wxCoord length1 = INDICATOR_RADIUS;
559    const wxCoord length0 = length1 + TICK_LENGTH;
560    wxCoord x0 = wxCoord(length0 * sin(theta));
561    wxCoord y0 = wxCoord(length0 * cos(theta));
562    wxCoord x1 = wxCoord(length1 * sin(theta));
563    wxCoord y1 = wxCoord(length1 * cos(theta));
564
565    PlaceIndicatorVertex(x0, y0);
566    PlaceIndicatorVertex(x1, y1);
567}
568
569void GfxCore::DrawArrow(gla_colour col1, gla_colour col2) {
570    Vector3 p1(0, INDICATOR_RADIUS, 0);
571    Vector3 p2(INDICATOR_RADIUS/2, INDICATOR_RADIUS*-.866025404, 0); // 150deg
572    Vector3 p3(-INDICATOR_RADIUS/2, INDICATOR_RADIUS*-.866025404, 0); // 210deg
573    Vector3 pc(0, 0, 0);
574
575    DrawTriangle(col_LIGHT_GREY, col1, p2, p1, pc);
576    DrawTriangle(col_LIGHT_GREY, col2, p3, p1, pc);
577}
578
579void GfxCore::DrawCompass() {
580    // Ticks.
581    BeginLines();
582    for (int angle = 315; angle > 0; angle -= 45) {
583        DrawTick(angle);
584    }
585    SetColour(col_GREEN);
586    DrawTick(0);
587    EndLines();
588
589    // Compass background.
590    DrawCircle(col_LIGHT_GREY_2, col_GREY, 0, 0, INDICATOR_RADIUS);
591
592    // Compass arrow.
593    DrawArrow(col_INDICATOR_1, col_INDICATOR_2);
594}
595
596// Draw the non-rotating background to the clino.
597void GfxCore::DrawClinoBack() {
598    BeginLines();
599    for (int angle = 0; angle <= 180; angle += 90) {
600        DrawTick(angle);
601    }
602
603    SetColour(col_GREY);
604    PlaceIndicatorVertex(0, INDICATOR_RADIUS);
605    PlaceIndicatorVertex(0, -INDICATOR_RADIUS);
606    PlaceIndicatorVertex(0, 0);
607    PlaceIndicatorVertex(INDICATOR_RADIUS, 0);
608
609    EndLines();
610}
611
612void GfxCore::DrawClino() {
613    // Ticks.
614    SetColour(col_GREEN);
615    BeginLines();
616    DrawTick(0);
617    EndLines();
618
619    // Clino background.
620    DrawSemicircle(col_LIGHT_GREY_2, col_GREY, 0, 0, INDICATOR_RADIUS, 0);
621
622    // Elevation arrow.
623    DrawArrow(col_INDICATOR_2, col_INDICATOR_1);
624}
625
626void GfxCore::Draw2dIndicators()
627{
628    // Draw the compass and elevation indicators.
629
630    const int centre_y = INDICATOR_BOX_SIZE / 2 + INDICATOR_OFFSET_Y;
631
632    const int comp_centre_x = GetCompassXPosition();
633
634    if (m_Compass && !m_Parent->IsExtendedElevation()) {
635        // If the user is dragging the compass with the pointer outside the
636        // compass, we snap to 45 degree multiples, and the ticks go white.
637        SetColour(m_MouseOutsideCompass ? col_WHITE : col_LIGHT_GREY_2);
638        DrawList2D(LIST_COMPASS, comp_centre_x, centre_y, -m_PanAngle);
639    }
640
641    const int elev_centre_x = GetClinoXPosition();
642
643    if (m_Clino) {
644        // If the user is dragging the clino with the pointer outside the
645        // clino, we snap to 90 degree multiples, and the ticks go white.
646        SetColour(m_MouseOutsideElev ? col_WHITE : col_LIGHT_GREY_2);
647        DrawList2D(LIST_CLINO_BACK, elev_centre_x, centre_y, 0);
648        DrawList2D(LIST_CLINO, elev_centre_x, centre_y, 90 + m_TiltAngle);
649    }
650
651    SetColour(TEXT_COLOUR);
652
653    static int triple_zero_width = 0;
654    static int height = 0;
655    if (!triple_zero_width) {
656        GetTextExtent(wxT("000"), &triple_zero_width, &height);
657    }
658    const int y_off = INDICATOR_OFFSET_Y + INDICATOR_BOX_SIZE + height / 2;
659
660    if (m_Compass && !m_Parent->IsExtendedElevation()) {
661        wxString str;
662        int value;
663        if (m_Degrees) {
664            value = int(m_PanAngle);
665        } else {
666            value = int(m_PanAngle * 200.0 / 180.0);
667        }
668        str.Printf(wxT("%03d"), value);
669        DrawIndicatorText(comp_centre_x - triple_zero_width / 2, y_off, str);
670
671        str = wmsg(/*Facing*/203);
672        int w;
673        GetTextExtent(str, &w, NULL);
674        DrawIndicatorText(comp_centre_x - w / 2, y_off + height, str);
675    }
676
677    if (m_Clino) {
678        int angle;
679        wxString str;
680        int width;
681        if (m_Degrees) {
682            static int zero_zero_width = 0;
683            if (!zero_zero_width) {
684                GetTextExtent(wxT("00"), &zero_zero_width, NULL);
685            }
686            width = zero_zero_width;
687            angle = int(-m_TiltAngle);
688            str = angle ? wxString::Format(wxT("%+03d"), angle) : wxT("00");
689        } else {
690            width = triple_zero_width;
691            angle = int(-m_TiltAngle * 200.0 / 180.0);
692            str = angle ? wxString::Format(wxT("%+04d"), angle) : wxT("000");
693        }
694
695        // Adjust horizontal position so the left of the first digit is
696        // always in the same place.
697        int sign_offset = 0;
698        if (angle < 0) {
699            static int minus_width = 0;
700            if (!minus_width) {
701                GetTextExtent(wxT("-"), &minus_width, NULL);
702            }
703            sign_offset = minus_width + 1;
704        } else if (angle > 0) {
705            static int plus_width = 0;
706            if (!plus_width) {
707                GetTextExtent(wxT("+"), &plus_width, NULL);
708            }
709            sign_offset = plus_width + 1;
710        }
711        DrawIndicatorText(elev_centre_x - sign_offset - width / 2, y_off, str);
712
713        str = wmsg(/*Elevation*/118);
714        int w;
715        GetTextExtent(str, &w, NULL);
716        DrawIndicatorText(elev_centre_x - w / 2, y_off + height, str);
717    }
718}
719
720void GfxCore::NattyDrawNames()
721{
722    // Draw station names, without overlapping.
723
724    const unsigned int quantise(GetFontSize() / QUANTISE_FACTOR);
725    const unsigned int quantised_x = m_XSize / quantise;
726    const unsigned int quantised_y = m_YSize / quantise;
727    const size_t buffer_size = quantised_x * quantised_y;
728
729    if (!m_LabelGrid) m_LabelGrid = new char[buffer_size];
730
731    memset((void*) m_LabelGrid, 0, buffer_size);
732
733    list<LabelInfo*>::const_iterator label = m_Parent->GetLabels();
734    for ( ; label != m_Parent->GetLabelsEnd(); ++label) {
735        if (!((m_Surface && (*label)->IsSurface()) ||
736              (m_Legs && (*label)->IsUnderground()) ||
737              (!(*label)->IsSurface() && !(*label)->IsUnderground()))) {
738            // if this station isn't to be displayed, skip to the next
739            // (last case is for stns with no legs attached)
740            continue;
741        }
742
743        double x, y, z;
744
745        Transform(**label, &x, &y, &z);
746        // Check if the label is behind us (in perspective view).
747        if (z <= 0.0 || z >= 1.0) continue;
748
749        // Apply a small shift so that translating the view doesn't make which
750        // labels are displayed change as the resulting twinkling effect is
751        // distracting.
752        double tx, ty, tz;
753        Transform(Vector3(), &tx, &ty, &tz);
754        tx -= floor(tx / quantise) * quantise;
755        ty -= floor(ty / quantise) * quantise;
756
757        tx = x - tx;
758        if (tx < 0) continue;
759
760        ty = y - ty;
761        if (ty < 0) continue;
762
763        unsigned int iy = unsigned(ty) / quantise;
764        if (iy >= quantised_y) continue;
765        unsigned int width = (*label)->get_width();
766        unsigned int ix = unsigned(tx) / quantise;
767        if (ix + width >= quantised_x) continue;
768
769        char * test = m_LabelGrid + ix + iy * quantised_x;
770        if (memchr(test, 1, width)) continue;
771
772        x += 3;
773        y -= GetFontSize() / 2;
774        DrawIndicatorText((int)x, (int)y, (*label)->GetText());
775
776        if (iy > QUANTISE_FACTOR) iy = QUANTISE_FACTOR;
777        test -= quantised_x * iy;
778        iy += 4;
779        while (--iy && test < m_LabelGrid + buffer_size) {
780            memset(test, 1, width);
781            test += quantised_x;
782        }
783    }
784}
785
786void GfxCore::SimpleDrawNames()
787{
788    // Draw all station names, without worrying about overlaps
789    list<LabelInfo*>::const_iterator label = m_Parent->GetLabels();
790    for ( ; label != m_Parent->GetLabelsEnd(); ++label) {
791        if (!((m_Surface && (*label)->IsSurface()) ||
792              (m_Legs && (*label)->IsUnderground()) ||
793              (!(*label)->IsSurface() && !(*label)->IsUnderground()))) {
794            // if this station isn't to be displayed, skip to the next
795            // (last case is for stns with no legs attached)
796            continue;
797        }
798
799        double x, y, z;
800        Transform(**label, &x, &y, &z);
801
802        // Check if the label is behind us (in perspective view).
803        if (z <= 0) continue;
804
805        x += 3;
806        y -= GetFontSize() / 2;
807        DrawIndicatorText((int)x, (int)y, (*label)->GetText());
808    }
809}
810
811void GfxCore::DrawDepthbar()
812{
813    const int total_block_height =
814        DEPTH_BAR_BLOCK_HEIGHT * (GetNumDepthBands() - 1);
815    const int top = -(total_block_height + DEPTH_BAR_OFFSET_Y);
816    int size = 0;
817
818    wxString* strs = new wxString[GetNumDepthBands()];
819    int band;
820    for (band = 0; band < GetNumDepthBands(); band++) {
821        Double z = m_Parent->GetDepthMin() + m_Parent->GetOffset().GetZ() +
822                   m_Parent->GetDepthExtent() * band / (GetNumDepthBands() - 1);
823        strs[band] = FormatLength(z, false);
824
825        int x;
826        GetTextExtent(strs[band], &x, NULL);
827        if (x > size) size = x;
828    }
829
830    int left = -DEPTH_BAR_OFFSET_X - DEPTH_BAR_BLOCK_WIDTH
831                - DEPTH_BAR_MARGIN - size;
832
833    DrawRectangle(col_BLACK, col_DARK_GREY,
834                  left - DEPTH_BAR_MARGIN - DEPTH_BAR_EXTRA_LEFT_MARGIN,
835                  top - DEPTH_BAR_MARGIN * 2,
836                  DEPTH_BAR_BLOCK_WIDTH + size + DEPTH_BAR_MARGIN * 3 +
837                      DEPTH_BAR_EXTRA_LEFT_MARGIN,
838                  total_block_height + DEPTH_BAR_MARGIN*4);
839
840    int y = top;
841    for (band = 0; band < GetNumDepthBands() - 1; band++) {
842        DrawShadedRectangle(GetPen(band), GetPen(band + 1), left, y,
843                            DEPTH_BAR_BLOCK_WIDTH, DEPTH_BAR_BLOCK_HEIGHT);
844        y += DEPTH_BAR_BLOCK_HEIGHT;
845    }
846
847    y = top - GetFontSize() / 2;
848    left += DEPTH_BAR_BLOCK_WIDTH + 5;
849
850    SetColour(TEXT_COLOUR);
851    for (band = 0; band < GetNumDepthBands(); band++) {
852        DrawIndicatorText(left, y, strs[band]);
853        y += DEPTH_BAR_BLOCK_HEIGHT;
854    }
855
856    delete[] strs;
857}
858
859void GfxCore::DrawDatebar()
860{
861    int total_block_height = DEPTH_BAR_BLOCK_HEIGHT * (GetNumDepthBands() - 1);
862    if (!m_Parent->HasCompleteDateInfo())
863        total_block_height += DEPTH_BAR_BLOCK_HEIGHT + DEPTH_BAR_MARGIN;
864    const int top = -(total_block_height + DEPTH_BAR_OFFSET_Y);
865
866    int size = 0;
867    if (!m_Parent->HasCompleteDateInfo()) {
868        GetTextExtent(wxT("No info"), &size, NULL);
869    }
870
871    wxString* strs = new wxString[GetNumDepthBands()];
872    int band;
873    for (band = 0; band < GetNumDepthBands(); band++) {
874        int y, m, d;
875        int days = m_Parent->GetDateMin();
876        days += m_Parent->GetDateExtent() * band / (GetNumDepthBands() - 1);
877        ymd_from_days_since_1900(days, &y, &m, &d);
878        strs[band] = wxString::Format(wxT("%04d-%02d-%02d"), y, m, d);
879
880        int x;
881        GetTextExtent(strs[band], &x, NULL);
882        if (x > size) size = x;
883    }
884
885    int left = -DEPTH_BAR_OFFSET_X - DEPTH_BAR_BLOCK_WIDTH
886                - DEPTH_BAR_MARGIN - size;
887
888    DrawRectangle(col_BLACK, col_DARK_GREY,
889                  left - DEPTH_BAR_MARGIN - DEPTH_BAR_EXTRA_LEFT_MARGIN,
890                  top - DEPTH_BAR_MARGIN * 2,
891                  DEPTH_BAR_BLOCK_WIDTH + size + DEPTH_BAR_MARGIN * 3 +
892                      DEPTH_BAR_EXTRA_LEFT_MARGIN,
893                  total_block_height + DEPTH_BAR_MARGIN*4);
894
895    int y = top;
896
897    if (!m_Parent->HasCompleteDateInfo()) {
898        DrawShadedRectangle(GetSurfacePen(), GetSurfacePen(), left, y,
899                DEPTH_BAR_BLOCK_WIDTH, DEPTH_BAR_BLOCK_HEIGHT);
900        y += DEPTH_BAR_BLOCK_HEIGHT + DEPTH_BAR_MARGIN;
901    }
902
903    for (band = 0; band < GetNumDepthBands() - 1; band++) {
904        DrawShadedRectangle(GetPen(band), GetPen(band + 1), left, y,
905                            DEPTH_BAR_BLOCK_WIDTH, DEPTH_BAR_BLOCK_HEIGHT);
906        y += DEPTH_BAR_BLOCK_HEIGHT;
907    }
908
909    y = top - GetFontSize() / 2;
910    left += DEPTH_BAR_BLOCK_WIDTH + 5;
911
912    SetColour(TEXT_COLOUR);
913
914    if (!m_Parent->HasCompleteDateInfo()) {
915        y += DEPTH_BAR_MARGIN;
916        DrawIndicatorText(left, y, wxT("No info"));
917        y += DEPTH_BAR_BLOCK_HEIGHT;
918    }
919
920    for (band = 0; band < GetNumDepthBands(); band++) {
921        DrawIndicatorText(left, y, strs[band]);
922        y += DEPTH_BAR_BLOCK_HEIGHT;
923    }
924
925    delete[] strs;
926}
927
928void GfxCore::DrawErrorbar()
929{
930    int total_block_height = DEPTH_BAR_BLOCK_HEIGHT * (GetNumDepthBands() - 1);
931    // Always show the "Not a loop" legend for now (FIXME).
932    total_block_height += DEPTH_BAR_BLOCK_HEIGHT + DEPTH_BAR_MARGIN;
933    const int top = -(total_block_height + DEPTH_BAR_OFFSET_Y);
934
935    int size = 0;
936    GetTextExtent(wxT("Not a loop"), &size, NULL);
937
938    wxString* strs = new wxString[GetNumDepthBands()];
939    int band;
940    for (band = 0; band < GetNumDepthBands(); band++) {
941        double E = MAX_ERROR * band / (GetNumDepthBands() - 1);
942        strs[band].Printf(wxT("%.2f"), E);
943
944        int x;
945        GetTextExtent(strs[band], &x, NULL);
946        if (x > size) size = x;
947    }
948
949    int left = -DEPTH_BAR_OFFSET_X - DEPTH_BAR_BLOCK_WIDTH
950                - DEPTH_BAR_MARGIN - size;
951
952    DrawRectangle(col_BLACK, col_DARK_GREY,
953                  left - DEPTH_BAR_MARGIN - DEPTH_BAR_EXTRA_LEFT_MARGIN,
954                  top - DEPTH_BAR_MARGIN * 2,
955                  DEPTH_BAR_BLOCK_WIDTH + size + DEPTH_BAR_MARGIN * 3 +
956                      DEPTH_BAR_EXTRA_LEFT_MARGIN,
957                  total_block_height + DEPTH_BAR_MARGIN*4);
958
959    int y = top;
960
961    DrawShadedRectangle(GetSurfacePen(), GetSurfacePen(), left, y,
962            DEPTH_BAR_BLOCK_WIDTH, DEPTH_BAR_BLOCK_HEIGHT);
963    y += DEPTH_BAR_BLOCK_HEIGHT + DEPTH_BAR_MARGIN;
964
965    for (band = 0; band < GetNumDepthBands() - 1; band++) {
966        DrawShadedRectangle(GetPen(band), GetPen(band + 1), left, y,
967                            DEPTH_BAR_BLOCK_WIDTH, DEPTH_BAR_BLOCK_HEIGHT);
968        y += DEPTH_BAR_BLOCK_HEIGHT;
969    }
970
971    y = top - GetFontSize() / 2;
972    left += DEPTH_BAR_BLOCK_WIDTH + 5;
973
974    SetColour(TEXT_COLOUR);
975
976    y += DEPTH_BAR_MARGIN;
977    DrawIndicatorText(left, y, wxT("Not in loop"));
978    y += DEPTH_BAR_BLOCK_HEIGHT;
979
980    for (band = 0; band < GetNumDepthBands(); band++) {
981        DrawIndicatorText(left, y, strs[band]);
982        y += DEPTH_BAR_BLOCK_HEIGHT;
983    }
984
985    delete[] strs;
986}
987
988wxString GfxCore::FormatLength(Double size_snap, bool scalebar)
989{
990    wxString str;
991    bool negative = (size_snap < 0.0);
992
993    if (negative) {
994        size_snap = -size_snap;
995    }
996
997    if (size_snap == 0.0) {
998        str = wxT("0");
999    } else if (m_Metric) {
1000#ifdef SILLY_UNITS
1001        if (size_snap < 1e-12) {
1002            str.Printf(wxT("%.3gpm"), size_snap * 1e12);
1003        } else if (size_snap < 1e-9) {
1004            str.Printf(wxT("%.fpm"), size_snap * 1e12);
1005        } else if (size_snap < 1e-6) {
1006            str.Printf(wxT("%.fnm"), size_snap * 1e9);
1007        } else if (size_snap < 1e-3) {
1008            str.Printf(wxT("%.fum"), size_snap * 1e6);
1009#else
1010        if (size_snap < 1e-3) {
1011            str.Printf(wxT("%.3gmm"), size_snap * 1e3);
1012#endif
1013        } else if (size_snap < 1e-2) {
1014            str.Printf(wxT("%.fmm"), size_snap * 1e3);
1015        } else if (size_snap < 1.0) {
1016            str.Printf(wxT("%.fcm"), size_snap * 100.0);
1017        } else if (size_snap < 1e3) {
1018            str.Printf(wxT("%.fm"), size_snap);
1019#ifdef SILLY_UNITS
1020        } else if (size_snap < 1e6) {
1021            str.Printf(wxT("%.fkm"), size_snap * 1e-3);
1022        } else if (size_snap < 1e9) {
1023            str.Printf(wxT("%.fMm"), size_snap * 1e-6);
1024        } else {
1025            str.Printf(wxT("%.fGm"), size_snap * 1e-9);
1026#else
1027        } else {
1028            str.Printf(scalebar ? wxT("%.fkm") : wxT("%.2fkm"), size_snap * 1e-3);
1029#endif
1030        }
1031    } else {
1032        size_snap /= METRES_PER_FOOT;
1033        if (scalebar) {
1034            Double inches = size_snap * 12;
1035            if (inches < 1.0) {
1036                str.Printf(wxT("%.3gin"), inches);
1037            } else if (size_snap < 1.0) {
1038                str.Printf(wxT("%.fin"), inches);
1039            } else if (size_snap < 5279.5) {
1040                str.Printf(wxT("%.fft"), size_snap);
1041            } else {
1042                str.Printf(wxT("%.f miles"), size_snap / 5280.0);
1043            }
1044        } else {
1045            str.Printf(wxT("%.fft"), size_snap);
1046        }
1047    }
1048
1049    return negative ? wxString(wxT("-")) + str : str;
1050}
1051
1052void GfxCore::DrawScalebar()
1053{
1054    // Draw the scalebar.
1055    if (GetPerspective()) return;
1056
1057    // Calculate how many metres of survey are currently displayed across the
1058    // screen.
1059    Double across_screen = SurveyUnitsAcrossViewport();
1060
1061    // Convert to imperial measurements if required.
1062    Double multiplier = 1.0;
1063    if (!m_Metric) {
1064        across_screen /= METRES_PER_FOOT;
1065        multiplier = METRES_PER_FOOT;
1066        if (across_screen >= 5280.0 / 0.75) {
1067            across_screen /= 5280.0;
1068            multiplier *= 5280.0;
1069        }
1070    }
1071
1072    // Calculate the length of the scale bar.
1073    Double size_snap = pow(10.0, floor(log10(0.65 * across_screen)));
1074    Double t = across_screen * 0.65 / size_snap;
1075    if (t >= 5.0) {
1076        size_snap *= 5.0;
1077    } else if (t >= 2.0) {
1078        size_snap *= 2.0;
1079    }
1080
1081    if (!m_Metric) size_snap *= multiplier;
1082
1083    // Actual size of the thing in pixels:
1084    int size = int((size_snap / SurveyUnitsAcrossViewport()) * m_XSize);
1085    m_ScaleBarWidth = size;
1086
1087    // Draw it...
1088    const int end_y = SCALE_BAR_OFFSET_Y + SCALE_BAR_HEIGHT;
1089    int interval = size / 10;
1090
1091    gla_colour col = col_WHITE;
1092    for (int ix = 0; ix < 10; ix++) {
1093        int x = SCALE_BAR_OFFSET_X + int(ix * ((Double) size / 10.0));
1094
1095        DrawRectangle(col, col, x, end_y, interval + 2, SCALE_BAR_HEIGHT);
1096
1097        col = (col == col_WHITE) ? col_GREY : col_WHITE;
1098    }
1099
1100    // Add labels.
1101    wxString str = FormatLength(size_snap);
1102
1103    int text_width, text_height;
1104    GetTextExtent(str, &text_width, &text_height);
1105    const int text_y = end_y - text_height + 1;
1106    SetColour(TEXT_COLOUR);
1107    DrawIndicatorText(SCALE_BAR_OFFSET_X, text_y, wxT("0"));
1108    DrawIndicatorText(SCALE_BAR_OFFSET_X + size - text_width, text_y, str);
1109}
1110
1111bool GfxCore::CheckHitTestGrid(const wxPoint& point, bool centre)
1112{
1113    if (Animating()) return false;
1114
1115    if (point.x < 0 || point.x >= m_XSize ||
1116        point.y < 0 || point.y >= m_YSize) {
1117        return false;
1118    }
1119
1120    SetDataTransform();
1121
1122    if (!m_HitTestGridValid) CreateHitTestGrid();
1123
1124    int grid_x = (point.x * (HITTEST_SIZE - 1)) / m_XSize;
1125    int grid_y = (point.y * (HITTEST_SIZE - 1)) / m_YSize;
1126
1127    LabelInfo *best = NULL;
1128    int dist_sqrd = 25;
1129    int square = grid_x + grid_y * HITTEST_SIZE;
1130    list<LabelInfo*>::iterator iter = m_PointGrid[square].begin();
1131
1132    while (iter != m_PointGrid[square].end()) {
1133        LabelInfo *pt = *iter++;
1134
1135        double cx, cy, cz;
1136
1137        Transform(*pt, &cx, &cy, &cz);
1138
1139        cy = m_YSize - cy;
1140
1141        int dx = point.x - int(cx);
1142        int ds = dx * dx;
1143        if (ds >= dist_sqrd) continue;
1144        int dy = point.y - int(cy);
1145
1146        ds += dy * dy;
1147        if (ds >= dist_sqrd) continue;
1148
1149        dist_sqrd = ds;
1150        best = pt;
1151
1152        if (ds == 0) break;
1153    }
1154
1155    m_Parent->ShowInfo(best);
1156    if (best) {
1157        if (centre) {
1158            // FIXME: allow Ctrl-Click to not set there or something?
1159            CentreOn(*best);
1160            WarpPointer(m_XSize / 2, m_YSize / 2);
1161            SetThere(*best);
1162            m_Parent->SelectTreeItem(best);
1163        }
1164    } else {
1165        // Left-clicking not on a survey cancels the measuring line.
1166        if (centre) {
1167            ClearTreeSelection();
1168        } else {
1169            double x, y, z;
1170            ReverseTransform(point.x, m_YSize - point.y, &x, &y, &z);
1171            SetHere(Point(Vector3(x, y, z)));
1172            m_here_is_temporary = true;
1173        }
1174    }
1175
1176    return best;
1177}
1178
1179void GfxCore::OnSize(wxSizeEvent& event)
1180{
1181    // Handle a change in window size.
1182
1183    wxSize size = event.GetSize();
1184
1185    if (size.GetWidth() <= 0 || size.GetHeight() <= 0) {
1186        // Before things are fully initialised, we sometimes get a bogus
1187        // resize message...
1188        // FIXME have changes in MainFrm cured this?  It still happens with
1189        // 1.0.32 and wxGTK 2.5.2 (load a file from the command line).
1190        // With 1.1.6 and wxGTK 2.4.2 we only get negative sizes if MainFrm
1191        // is resized such that the GfxCore window isn't visible.
1192        //printf("OnSize(%d,%d)\n", size.GetWidth(), size.GetHeight());
1193        return;
1194    }
1195
1196    wxGLCanvas::OnSize(event);
1197
1198    m_XSize = size.GetWidth();
1199    m_YSize = size.GetHeight();
1200
1201    if (m_DoneFirstShow) {
1202        if (m_LabelGrid) {
1203            delete[] m_LabelGrid;
1204            m_LabelGrid = NULL;
1205        }
1206
1207        m_HitTestGridValid = false;
1208
1209        ForceRefresh();
1210    }
1211}
1212
1213void GfxCore::DefaultParameters()
1214{
1215    // Set default viewing parameters.
1216
1217    m_Surface = false;
1218    if (!m_Parent->HasUndergroundLegs()) {
1219        if (m_Parent->HasSurfaceLegs()) {
1220            // If there are surface legs, but no underground legs, turn
1221            // surface surveys on.
1222            m_Surface = true;
1223        } else {
1224            // If there are no legs (e.g. after loading a .pos file), turn
1225            // crosses on.
1226            m_Crosses = true;
1227        }
1228    }
1229
1230    m_PanAngle = 0.0;
1231    if (m_Parent->IsExtendedElevation()) {
1232        m_TiltAngle = 0.0;
1233    } else {
1234        m_TiltAngle = 90.0;
1235    }
1236
1237    SetRotation(m_PanAngle, m_TiltAngle);
1238    SetTranslation(Vector3());
1239
1240    m_RotationStep = 30.0;
1241    m_Rotating = false;
1242    m_SwitchingTo = 0;
1243    m_Entrances = false;
1244    m_FixedPts = false;
1245    m_ExportedPts = false;
1246    m_Grid = false;
1247    m_BoundingBox = false;
1248    m_Tubes = false;
1249    if (GetPerspective()) TogglePerspective();
1250}
1251
1252void GfxCore::Defaults()
1253{
1254    // Restore default scale, rotation and translation parameters.
1255    DefaultParameters();
1256    SetScale(1.0);
1257
1258    // Invalidate all the cached lists.
1259    GLACanvas::FirstShow();
1260
1261    ForceRefresh();
1262}
1263
1264// return: true if animation occured (and ForceRefresh() needs to be called)
1265bool GfxCore::Animate()
1266{
1267    if (!Animating()) return false;
1268
1269    // Don't show pointer coordinates while animating.
1270    // FIXME : only do this when we *START* animating!  Use a static copy
1271    // of the value of "Animating()" last time we were here to track this?
1272    // MainFrm now checks if we're trying to clear already cleared labels
1273    // and just returns, but it might be simpler to check here!
1274    ClearCoords();
1275    m_Parent->ShowInfo(NULL);
1276
1277    static double last_t = 0;
1278    double t;
1279    if (movie) {
1280        // FIXME: this glReadPixels call should be in gla-gl.cc
1281        glReadPixels(0, 0, movie->GetWidth(), movie->GetHeight(), GL_RGB,
1282                     GL_UNSIGNED_BYTE, (GLvoid *)movie->GetBuffer());
1283        movie->AddFrame();
1284        t = 1.0 / 25.0; // 25 frames per second
1285    } else {
1286        t = timer.Time() * 1.0e-3;
1287        if (t == 0) t = 0.001;
1288        else if (t > 1.0) t = 1.0;
1289        if (last_t > 0) t = (t + last_t) / 2;
1290        last_t = t;
1291    }
1292
1293    if (presentation_mode == PLAYING && pres_speed != 0.0) {
1294        t *= fabs(pres_speed);
1295        while (t >= next_mark_time) {
1296            t -= next_mark_time;
1297            this_mark_total = 0;
1298            PresentationMark prev_mark = next_mark;
1299            if (prev_mark.angle < 0) prev_mark.angle += 360.0;
1300            else if (prev_mark.angle >= 360.0) prev_mark.angle -= 360.0;
1301            if (pres_reverse)
1302                next_mark = m_Parent->GetPresMark(MARK_PREV);
1303            else
1304                next_mark = m_Parent->GetPresMark(MARK_NEXT);
1305            if (!next_mark.is_valid()) {
1306                SetView(prev_mark);
1307                presentation_mode = 0;
1308                if (movie) {
1309                    delete movie;
1310                    movie = 0;
1311                }
1312                break;
1313            }
1314
1315            double tmp = (pres_reverse ? prev_mark.time : next_mark.time);
1316            if (tmp > 0) {
1317                next_mark_time = tmp;
1318            } else {
1319                double d = (next_mark - prev_mark).magnitude();
1320                // FIXME: should ignore component of d which is unseen in
1321                // non-perspective mode?
1322                next_mark_time = sqrd(d / 30.0);
1323                double a = next_mark.angle - prev_mark.angle;
1324                if (a > 180.0) {
1325                    next_mark.angle -= 360.0;
1326                    a = 360.0 - a;
1327                } else if (a < -180.0) {
1328                    next_mark.angle += 360.0;
1329                    a += 360.0;
1330                } else {
1331                    a = fabs(a);
1332                }
1333                next_mark_time += sqrd(a / 60.0);
1334                double ta = fabs(next_mark.tilt_angle - prev_mark.tilt_angle);
1335                next_mark_time += sqrd(ta / 60.0);
1336                double s = fabs(log(next_mark.scale) - log(prev_mark.scale));
1337                next_mark_time += sqrd(s / 2.0);
1338                next_mark_time = sqrt(next_mark_time);
1339                // was: next_mark_time = max(max(d / 30, s / 2), max(a, ta) / 60);
1340                //printf("*** %.6f from (\nd: %.6f\ns: %.6f\na: %.6f\nt: %.6f )\n",
1341                //       next_mark_time, d/30.0, s/2.0, a/60.0, ta/60.0);
1342                if (tmp < 0) next_mark_time /= -tmp;
1343            }
1344        }
1345
1346        if (presentation_mode) {
1347            // Advance position towards next_mark
1348            double p = t / next_mark_time;
1349            double q = 1 - p;
1350            PresentationMark here = GetView();
1351            if (next_mark.angle < 0) {
1352                if (here.angle >= next_mark.angle + 360.0)
1353                    here.angle -= 360.0;
1354            } else if (next_mark.angle >= 360.0) {
1355                if (here.angle <= next_mark.angle - 360.0)
1356                    here.angle += 360.0;
1357            }
1358            here.assign(q * here + p * next_mark);
1359            here.angle = q * here.angle + p * next_mark.angle;
1360            if (here.angle < 0) here.angle += 360.0;
1361            else if (here.angle >= 360.0) here.angle -= 360.0;
1362            here.tilt_angle = q * here.tilt_angle + p * next_mark.tilt_angle;
1363            here.scale = exp(q * log(here.scale) + p * log(next_mark.scale));
1364            SetView(here);
1365            this_mark_total += t;
1366            next_mark_time -= t;
1367        }
1368    }
1369
1370    // When rotating...
1371    if (m_Rotating) {
1372        TurnCave(m_RotationStep * t);
1373    }
1374
1375    if (m_SwitchingTo == PLAN) {
1376        // When switching to plan view...
1377        TiltCave(90.0 * t);
1378        if (m_TiltAngle == 90.0) {
1379            m_SwitchingTo = 0;
1380        }
1381    } else if (m_SwitchingTo == ELEVATION) {
1382        // When switching to elevation view...
1383        if (fabs(m_TiltAngle) < 90.0 * t) {
1384            m_SwitchingTo = 0;
1385            TiltCave(-m_TiltAngle);
1386        } else if (m_TiltAngle < 0.0) {
1387            TiltCave(90.0 * t);
1388        } else {
1389            TiltCave(-90.0 * t);
1390        }
1391    } else if (m_SwitchingTo) {
1392        int angle = (m_SwitchingTo - NORTH) * 90;
1393        double diff = angle - m_PanAngle;
1394        if (diff < -180) diff += 360;
1395        if (diff > 180) diff -= 360;
1396        double move = 90.0 * t;
1397        if (move >= fabs(diff)) {
1398            TurnCave(diff);
1399            m_SwitchingTo = 0;
1400        } else if (diff < 0) {
1401            TurnCave(-move);
1402        } else {
1403            TurnCave(move);
1404        }
1405    }
1406
1407    return true;
1408}
1409
1410// How much to allow around the box - this is because of the ring shape
1411// at one end of the line.
1412static const int HIGHLIGHTED_PT_SIZE = 2; // FIXME: tie in to blob and ring size
1413#define MARGIN (HIGHLIGHTED_PT_SIZE * 2 + 1)
1414void GfxCore::RefreshLine(const Point &a, const Point &b, const Point &c)
1415{
1416    // Best of all might be to copy the window contents before we draw the
1417    // line, then replace each time we redraw.
1418
1419    // Calculate the minimum rectangle which includes the old and new
1420    // measuring lines to minimise the redraw time
1421    int l = INT_MAX, r = INT_MIN, u = INT_MIN, d = INT_MAX;
1422    double X, Y, Z;
1423    if (a.IsValid()) {
1424        if (!Transform(a, &X, &Y, &Z)) {
1425            printf("oops\n");
1426        } else {
1427            int x = int(X);
1428            int y = m_YSize - 1 - int(Y);
1429            l = x - MARGIN;
1430            r = x + MARGIN;
1431            u = y + MARGIN;
1432            d = y - MARGIN;
1433        }
1434    }
1435    if (b.IsValid()) {
1436        if (!Transform(b, &X, &Y, &Z)) {
1437            printf("oops\n");
1438        } else {
1439            int x = int(X);
1440            int y = m_YSize - 1 - int(Y);
1441            l = min(l, x - MARGIN);
1442            r = max(r, x + MARGIN);
1443            u = max(u, y + MARGIN);
1444            d = min(d, y - MARGIN);
1445        }
1446    }
1447    if (c.IsValid()) {
1448        if (!Transform(c, &X, &Y, &Z)) {
1449            printf("oops\n");
1450        } else {
1451            int x = int(X);
1452            int y = m_YSize - 1 - int(Y);
1453            l = min(l, x - MARGIN);
1454            r = max(r, x + MARGIN);
1455            u = max(u, y + MARGIN);
1456            d = min(d, y - MARGIN);
1457        }
1458    }
1459    const wxRect R(l, d, r - l, u - d);
1460    Refresh(false, &R);
1461}
1462
1463void GfxCore::SetHere()
1464{
1465    if (!m_here.IsValid()) return;
1466    Point old = m_here;
1467    m_here.Invalidate();
1468    RefreshLine(old, m_there, m_here);
1469}
1470
1471void GfxCore::SetHere(const Point &p)
1472{
1473    Point old = m_here;
1474    m_here = p;
1475    RefreshLine(old, m_there, m_here);
1476    m_here_is_temporary = false;
1477}
1478
1479void GfxCore::SetThere()
1480{
1481    if (!m_there.IsValid()) return;
1482    Point old = m_there;
1483    m_there.Invalidate();
1484    RefreshLine(m_here, old, m_there);
1485}
1486
1487void GfxCore::SetThere(const Point &p)
1488{
1489    Point old = m_there;
1490    m_there = p;
1491    RefreshLine(m_here, old, m_there);
1492}
1493
1494void GfxCore::CreateHitTestGrid()
1495{
1496    // Clear hit-test grid.
1497    for (int i = 0; i < HITTEST_SIZE * HITTEST_SIZE; i++) {
1498        m_PointGrid[i].clear();
1499    }
1500
1501    // Fill the grid.
1502    list<LabelInfo*>::const_iterator pos = m_Parent->GetLabels();
1503    list<LabelInfo*>::const_iterator end = m_Parent->GetLabelsEnd();
1504    while (pos != end) {
1505        LabelInfo* label = *pos++;
1506
1507        if (!((m_Surface && label->IsSurface()) ||
1508              (m_Legs && label->IsUnderground()) ||
1509              (!label->IsSurface() && !label->IsUnderground()))) {
1510            // if this station isn't to be displayed, skip to the next
1511            // (last case is for stns with no legs attached)
1512            continue;
1513        }
1514
1515        // Calculate screen coordinates.
1516        double cx, cy, cz;
1517        Transform(*label, &cx, &cy, &cz);
1518        if (cx < 0 || cx >= m_XSize) continue;
1519        if (cy < 0 || cy >= m_YSize) continue;
1520
1521        cy = m_YSize - cy;
1522
1523        // On-screen, so add to hit-test grid...
1524        int grid_x = int((cx * (HITTEST_SIZE - 1)) / m_XSize);
1525        int grid_y = int((cy * (HITTEST_SIZE - 1)) / m_YSize);
1526
1527        m_PointGrid[grid_x + grid_y * HITTEST_SIZE].push_back(label);
1528    }
1529
1530    m_HitTestGridValid = true;
1531}
1532
1533//
1534//  Methods for controlling the orientation of the survey
1535//
1536
1537void GfxCore::TurnCave(Double angle)
1538{
1539    // Turn the cave around its z-axis by a given angle.
1540
1541    m_PanAngle += angle;
1542    if (m_PanAngle >= 360.0) {
1543        m_PanAngle -= 360.0;
1544    } else if (m_PanAngle < 0.0) {
1545        m_PanAngle += 360.0;
1546    }
1547
1548    m_HitTestGridValid = false;
1549    if (m_here_is_temporary) SetHere();
1550
1551    SetRotation(m_PanAngle, m_TiltAngle);
1552}
1553
1554void GfxCore::TurnCaveTo(Double angle)
1555{
1556    timer.Start(drawtime);
1557    int new_switching_to = ((int)angle) / 90 + NORTH;
1558    if (new_switching_to == m_SwitchingTo) {
1559        // A second order to switch takes us there right away
1560        TurnCave(angle - m_PanAngle);
1561        m_SwitchingTo = 0;
1562        ForceRefresh();
1563    } else {
1564        m_SwitchingTo = new_switching_to;
1565    }
1566}
1567
1568void GfxCore::TiltCave(Double tilt_angle)
1569{
1570    // Tilt the cave by a given angle.
1571    if (m_TiltAngle + tilt_angle > 90.0) {
1572        m_TiltAngle = 90.0;
1573    } else if (m_TiltAngle + tilt_angle < -90.0) {
1574        m_TiltAngle = -90.0;
1575    } else {
1576        m_TiltAngle += tilt_angle;
1577    }
1578
1579    m_HitTestGridValid = false;
1580    if (m_here_is_temporary) SetHere();
1581
1582    SetRotation(m_PanAngle, m_TiltAngle);
1583}
1584
1585void GfxCore::TranslateCave(int dx, int dy)
1586{
1587    AddTranslationScreenCoordinates(dx, dy);
1588    m_HitTestGridValid = false;
1589
1590    if (m_here_is_temporary) SetHere();
1591
1592    ForceRefresh();
1593}
1594
1595void GfxCore::DragFinished()
1596{
1597    m_MouseOutsideCompass = m_MouseOutsideElev = false;
1598    ForceRefresh();
1599}
1600
1601void GfxCore::ClearCoords()
1602{
1603    m_Parent->ClearCoords();
1604}
1605
1606void GfxCore::SetCoords(wxPoint point)
1607{
1608    // We can't work out 2D coordinates from a perspective view, and it
1609    // doesn't really make sense to show coordinates while we're animating.
1610    if (GetPerspective() || Animating()) return;
1611
1612    // Update the coordinate or altitude display, given the (x, y) position in
1613    // window coordinates.  The relevant display is updated depending on
1614    // whether we're in plan or elevation view.
1615
1616    double cx, cy, cz;
1617
1618    SetDataTransform();
1619    ReverseTransform(point.x, m_YSize - 1 - point.y, &cx, &cy, &cz);
1620
1621    if (ShowingPlan()) {
1622        m_Parent->SetCoords(cx + m_Parent->GetOffset().GetX(),
1623                            cy + m_Parent->GetOffset().GetY());
1624    } else if (ShowingElevation()) {
1625        m_Parent->SetAltitude(cz + m_Parent->GetOffset().GetZ());
1626    } else {
1627        m_Parent->ClearCoords();
1628    }
1629}
1630
1631int GfxCore::GetCompassXPosition() const
1632{
1633    // Return the x-coordinate of the centre of the compass in window
1634    // coordinates.
1635    return m_XSize - INDICATOR_OFFSET_X - INDICATOR_BOX_SIZE / 2;
1636}
1637
1638int GfxCore::GetClinoXPosition() const
1639{
1640    // Return the x-coordinate of the centre of the compass in window
1641    // coordinates.
1642    return m_XSize - GetClinoOffset() - INDICATOR_BOX_SIZE / 2;
1643}
1644
1645int GfxCore::GetIndicatorYPosition() const
1646{
1647    // Return the y-coordinate of the centre of the indicators in window
1648    // coordinates.
1649    return m_YSize - INDICATOR_OFFSET_Y - INDICATOR_BOX_SIZE / 2;
1650}
1651
1652int GfxCore::GetIndicatorRadius() const
1653{
1654    // Return the radius of each indicator.
1655    return (INDICATOR_BOX_SIZE - INDICATOR_MARGIN * 2) / 2;
1656}
1657
1658bool GfxCore::PointWithinCompass(wxPoint point) const
1659{
1660    // Determine whether a point (in window coordinates) lies within the
1661    // compass.
1662    if (!ShowingCompass()) return false;
1663
1664    glaCoord dx = point.x - GetCompassXPosition();
1665    glaCoord dy = point.y - GetIndicatorYPosition();
1666    glaCoord radius = GetIndicatorRadius();
1667
1668    return (dx * dx + dy * dy <= radius * radius);
1669}
1670
1671bool GfxCore::PointWithinClino(wxPoint point) const
1672{
1673    // Determine whether a point (in window coordinates) lies within the clino.
1674    if (!ShowingClino()) return false;
1675
1676    glaCoord dx = point.x - GetClinoXPosition();
1677    glaCoord dy = point.y - GetIndicatorYPosition();
1678    glaCoord radius = GetIndicatorRadius();
1679
1680    return (dx * dx + dy * dy <= radius * radius);
1681}
1682
1683bool GfxCore::PointWithinScaleBar(wxPoint point) const
1684{
1685    // Determine whether a point (in window coordinates) lies within the scale
1686    // bar.
1687    if (!ShowingScaleBar()) return false;
1688
1689    return (point.x >= SCALE_BAR_OFFSET_X &&
1690            point.x <= SCALE_BAR_OFFSET_X + m_ScaleBarWidth &&
1691            point.y <= m_YSize - SCALE_BAR_OFFSET_Y - SCALE_BAR_HEIGHT &&
1692            point.y >= m_YSize - SCALE_BAR_OFFSET_Y - SCALE_BAR_HEIGHT*2);
1693}
1694
1695void GfxCore::SetCompassFromPoint(wxPoint point)
1696{
1697    // Given a point in window coordinates, set the heading of the survey.  If
1698    // the point is outside the compass, it snaps to 45 degree intervals;
1699    // otherwise it operates as normal.
1700
1701    wxCoord dx = point.x - GetCompassXPosition();
1702    wxCoord dy = point.y - GetIndicatorYPosition();
1703    wxCoord radius = GetIndicatorRadius();
1704
1705    double angle = deg(atan2(double(dx), double(dy))) - 180.0;
1706    if (dx * dx + dy * dy <= radius * radius) {
1707        TurnCave(angle - m_PanAngle);
1708        m_MouseOutsideCompass = false;
1709    } else {
1710        TurnCave(int(angle / 45.0) * 45.0 - m_PanAngle);
1711        m_MouseOutsideCompass = true;
1712    }
1713
1714    ForceRefresh();
1715}
1716
1717void GfxCore::SetClinoFromPoint(wxPoint point)
1718{
1719    // Given a point in window coordinates, set the elevation of the survey.
1720    // If the point is outside the clino, it snaps to 90 degree intervals;
1721    // otherwise it operates as normal.
1722
1723    glaCoord dx = point.x - GetClinoXPosition();
1724    glaCoord dy = point.y - GetIndicatorYPosition();
1725    glaCoord radius = GetIndicatorRadius();
1726
1727    if (dx >= 0 && dx * dx + dy * dy <= radius * radius) {
1728        TiltCave(deg(atan2(double(dy), double(dx))) - m_TiltAngle);
1729        m_MouseOutsideElev = false;
1730    } else if (dy >= INDICATOR_MARGIN) {
1731        TiltCave(90.0 - m_TiltAngle);
1732        m_MouseOutsideElev = true;
1733    } else if (dy <= -INDICATOR_MARGIN) {
1734        TiltCave(-90.0 - m_TiltAngle);
1735        m_MouseOutsideElev = true;
1736    } else {
1737        TiltCave(-m_TiltAngle);
1738        m_MouseOutsideElev = true;
1739    }
1740
1741    ForceRefresh();
1742}
1743
1744void GfxCore::SetScaleBarFromOffset(wxCoord dx)
1745{
1746    // Set the scale of the survey, given an offset as to how much the mouse has
1747    // been dragged over the scalebar since the last scale change.
1748
1749    SetScale((m_ScaleBarWidth + dx) * m_Scale / m_ScaleBarWidth);
1750    ForceRefresh();
1751}
1752
1753void GfxCore::RedrawIndicators()
1754{
1755    // Redraw the compass and clino indicators.
1756
1757    const wxRect r(m_XSize - INDICATOR_OFFSET_X - INDICATOR_BOX_SIZE*2 -
1758                     INDICATOR_GAP,
1759                   m_YSize - INDICATOR_OFFSET_Y - INDICATOR_BOX_SIZE,
1760                   INDICATOR_BOX_SIZE*2 + INDICATOR_GAP,
1761                   INDICATOR_BOX_SIZE);
1762
1763    Refresh(false, &r);
1764}
1765
1766void GfxCore::StartRotation()
1767{
1768    // Start the survey rotating.
1769
1770    m_Rotating = true;
1771    timer.Start(drawtime);
1772}
1773
1774void GfxCore::ToggleRotation()
1775{
1776    // Toggle the survey rotation on/off.
1777
1778    if (m_Rotating) {
1779        StopRotation();
1780    } else {
1781        StartRotation();
1782    }
1783}
1784
1785void GfxCore::StopRotation()
1786{
1787    // Stop the survey rotating.
1788
1789    m_Rotating = false;
1790    ForceRefresh();
1791}
1792
1793bool GfxCore::IsExtendedElevation() const
1794{
1795    return m_Parent->IsExtendedElevation();
1796}
1797
1798void GfxCore::ReverseRotation()
1799{
1800    // Reverse the direction of rotation.
1801
1802    m_RotationStep = -m_RotationStep;
1803}
1804
1805void GfxCore::RotateSlower(bool accel)
1806{
1807    // Decrease the speed of rotation, optionally by an increased amount.
1808
1809    m_RotationStep /= accel ? 1.44 : 1.2;
1810    if (m_RotationStep < 1.0) {
1811        m_RotationStep = 1.0;
1812    }
1813}
1814
1815void GfxCore::RotateFaster(bool accel)
1816{
1817    // Increase the speed of rotation, optionally by an increased amount.
1818
1819    m_RotationStep *= accel ? 1.44 : 1.2;
1820    if (m_RotationStep > 450.0) {
1821        m_RotationStep = 450.0;
1822    }
1823}
1824
1825void GfxCore::SwitchToElevation()
1826{
1827    // Perform an animated switch to elevation view.
1828
1829    switch (m_SwitchingTo) {
1830        case 0:
1831            timer.Start(drawtime);
1832            m_SwitchingTo = ELEVATION;
1833            break;
1834
1835        case PLAN:
1836            m_SwitchingTo = ELEVATION;
1837            break;
1838
1839        case ELEVATION:
1840            // a second order to switch takes us there right away
1841            TiltCave(-m_TiltAngle);
1842            m_SwitchingTo = 0;
1843            ForceRefresh();
1844    }
1845}
1846
1847void GfxCore::SwitchToPlan()
1848{
1849    // Perform an animated switch to plan view.
1850
1851    switch (m_SwitchingTo) {
1852        case 0:
1853            timer.Start(drawtime);
1854            m_SwitchingTo = PLAN;
1855            break;
1856
1857        case ELEVATION:
1858            m_SwitchingTo = PLAN;
1859            break;
1860
1861        case PLAN:
1862            // A second order to switch takes us there right away
1863            TiltCave(90.0 - m_TiltAngle);
1864            m_SwitchingTo = 0;
1865            ForceRefresh();
1866    }
1867}
1868
1869void GfxCore::SetViewTo(Double xmin, Double xmax, Double ymin, Double ymax, Double zmin, Double zmax)
1870{
1871
1872    SetTranslation(-Vector3((xmin + xmax) / 2, (ymin + ymax) / 2, (zmin + zmax) / 2));
1873    Double scale = HUGE_VAL;
1874    const Vector3 ext = m_Parent->GetExtent();
1875    if (xmax > xmin) {
1876        Double s = ext.GetX() / (xmax - xmin);
1877        if (s < scale) scale = s;
1878    }
1879    if (ymax > ymin) {
1880        Double s = ext.GetY() / (ymax - ymin);
1881        if (s < scale) scale = s;
1882    }
1883    if (!ShowingPlan() && zmax > zmin) {
1884        Double s = ext.GetZ() / (zmax - zmin);
1885        if (s < scale) scale = s;
1886    }
1887    if (scale != HUGE_VAL) SetScale(scale);
1888    ForceRefresh();
1889}
1890
1891bool GfxCore::CanRaiseViewpoint() const
1892{
1893    // Determine if the survey can be viewed from a higher angle of elevation.
1894
1895    return GetPerspective() ? (m_TiltAngle > -90.0) : (m_TiltAngle < 90.0);
1896}
1897
1898bool GfxCore::CanLowerViewpoint() const
1899{
1900    // Determine if the survey can be viewed from a lower angle of elevation.
1901
1902    return GetPerspective() ? (m_TiltAngle < 90.0) : (m_TiltAngle > -90.0);
1903}
1904
1905bool GfxCore::HasDepth() const
1906{
1907    return m_Parent->GetDepthExtent() == 0.0;
1908}
1909
1910bool GfxCore::HasRangeOfDates() const
1911{
1912    return m_Parent->GetDateExtent() > 0;
1913}
1914
1915bool GfxCore::HasErrorInformation() const
1916{
1917    return m_Parent->HasErrorInformation();
1918}
1919
1920bool GfxCore::ShowingPlan() const
1921{
1922    // Determine if the survey is in plan view.
1923
1924    return (m_TiltAngle == 90.0);
1925}
1926
1927bool GfxCore::ShowingElevation() const
1928{
1929    // Determine if the survey is in elevation view.
1930
1931    return (m_TiltAngle == 0.0);
1932}
1933
1934bool GfxCore::ShowingMeasuringLine() const
1935{
1936    // Determine if the measuring line is being shown.
1937
1938    return (m_there.IsValid() && m_here.IsValid());
1939}
1940
1941void GfxCore::ToggleFlag(bool* flag, int update)
1942{
1943    *flag = !*flag;
1944    if (update == UPDATE_BLOBS) {
1945        UpdateBlobs();
1946    } else if (update == UPDATE_BLOBS_AND_CROSSES) {
1947        UpdateBlobs();
1948        InvalidateList(LIST_CROSSES);
1949    }
1950    ForceRefresh();
1951}
1952
1953int GfxCore::GetNumEntrances() const
1954{
1955    return m_Parent->GetNumEntrances();
1956}
1957
1958int GfxCore::GetNumFixedPts() const
1959{
1960    return m_Parent->GetNumFixedPts();
1961}
1962
1963int GfxCore::GetNumExportedPts() const
1964{
1965    return m_Parent->GetNumExportedPts();
1966}
1967
1968void GfxCore::ClearTreeSelection()
1969{
1970    m_Parent->ClearTreeSelection();
1971}
1972
1973void GfxCore::CentreOn(const Point &p)
1974{
1975    SetTranslation(-p);
1976    m_HitTestGridValid = false;
1977
1978    ForceRefresh();
1979}
1980
1981void GfxCore::ForceRefresh()
1982{
1983    Refresh(false);
1984}
1985
1986void GfxCore::GenerateList(unsigned int l)
1987{
1988    assert(m_HaveData);
1989
1990    switch (l) {
1991        case LIST_COMPASS:
1992            DrawCompass();
1993            break;
1994        case LIST_CLINO:
1995            DrawClino();
1996            break;
1997        case LIST_CLINO_BACK:
1998            DrawClinoBack();
1999            break;
2000        case LIST_DEPTHBAR:
2001            DrawDepthbar();
2002            break;
2003        case LIST_DATEBAR:
2004            DrawDatebar();
2005            break;
2006        case LIST_ERRORBAR:
2007            DrawErrorbar();
2008            break;
2009        case LIST_UNDERGROUND_LEGS:
2010            GenerateDisplayList();
2011            break;
2012        case LIST_TUBES:
2013            GenerateDisplayListTubes();
2014            break;
2015        case LIST_SURFACE_LEGS:
2016            GenerateDisplayListSurface();
2017            break;
2018        case LIST_BLOBS:
2019            GenerateBlobsDisplayList();
2020            break;
2021        case LIST_CROSSES: {
2022            BeginCrosses();
2023            SetColour(col_LIGHT_GREY);
2024            list<LabelInfo*>::const_iterator pos = m_Parent->GetLabels();
2025            while (pos != m_Parent->GetLabelsEnd()) {
2026                const LabelInfo* label = *pos++;
2027
2028                if ((m_Surface && label->IsSurface()) ||
2029                    (m_Legs && label->IsUnderground()) ||
2030                    (!label->IsSurface() && !label->IsUnderground())) {
2031                    // Check if this station should be displayed
2032                    // (last case is for stns with no legs attached)
2033                    DrawCross(label->GetX(), label->GetY(), label->GetZ());
2034                }
2035            }
2036            EndCrosses();
2037            break;
2038        }
2039        case LIST_GRID:
2040            DrawGrid();
2041            break;
2042        case LIST_SHADOW:
2043            GenerateDisplayListShadow();
2044            break;
2045        default:
2046            assert(false);
2047            break;
2048    }
2049}
2050
2051void GfxCore::ToggleSmoothShading()
2052{
2053    GLACanvas::ToggleSmoothShading();
2054    InvalidateList(LIST_TUBES);
2055    ForceRefresh();
2056}
2057
2058void GfxCore::GenerateDisplayList()
2059{
2060    // Generate the display list for the underground legs.
2061    list<traverse>::const_iterator trav = m_Parent->traverses_begin();
2062    list<traverse>::const_iterator tend = m_Parent->traverses_end();
2063    while (trav != tend) {
2064        (this->*AddPoly)(*trav);
2065        ++trav;
2066    }
2067}
2068
2069void GfxCore::GenerateDisplayListTubes()
2070{
2071    // Generate the display list for the tubes.
2072    list<vector<XSect> >::const_iterator trav = m_Parent->tubes_begin();
2073    list<vector<XSect> >::const_iterator tend = m_Parent->tubes_end();
2074    while (trav != tend) {
2075        SkinPassage(*trav);
2076        ++trav;
2077    }
2078}
2079
2080void GfxCore::GenerateDisplayListSurface()
2081{
2082    // Generate the display list for the surface legs.
2083    EnableDashedLines();
2084    list<traverse>::const_iterator trav = m_Parent->surface_traverses_begin();
2085    list<traverse>::const_iterator tend = m_Parent->surface_traverses_end();
2086    while (trav != tend) {
2087        if (m_ColourBy == COLOUR_BY_ERROR) {
2088            AddPolylineError(*trav);
2089        } else {
2090            AddPolyline(*trav);
2091        }
2092        ++trav;
2093    }
2094    DisableDashedLines();
2095}
2096
2097void GfxCore::GenerateDisplayListShadow()
2098{
2099    SetColour(col_BLACK);
2100    list<traverse>::const_iterator trav = m_Parent->traverses_begin();
2101    list<traverse>::const_iterator tend = m_Parent->traverses_end();
2102    while (trav != tend) {
2103        AddPolylineShadow(*trav);
2104        ++trav;
2105    }
2106}
2107
2108// Plot blobs.
2109void GfxCore::GenerateBlobsDisplayList()
2110{
2111    if (!(m_Entrances || m_FixedPts || m_ExportedPts ||
2112          m_Parent->GetNumHighlightedPts()))
2113        return;
2114
2115    // Plot blobs.
2116    gla_colour prev_col = col_BLACK; // not a colour used for blobs
2117    list<LabelInfo*>::const_iterator pos = m_Parent->GetLabels();
2118    BeginBlobs();
2119    while (pos != m_Parent->GetLabelsEnd()) {
2120        const LabelInfo* label = *pos++;
2121
2122        // When more than one flag is set on a point:
2123        // search results take priority over entrance highlighting
2124        // which takes priority over fixed point
2125        // highlighting, which in turn takes priority over exported
2126        // point highlighting.
2127
2128        if (!((m_Surface && label->IsSurface()) ||
2129              (m_Legs && label->IsUnderground()) ||
2130              (!label->IsSurface() && !label->IsUnderground()))) {
2131            // if this station isn't to be displayed, skip to the next
2132            // (last case is for stns with no legs attached)
2133            continue;
2134        }
2135
2136        gla_colour col;
2137
2138        if (label->IsHighLighted()) {
2139            col = col_YELLOW;
2140        } else if (m_Entrances && label->IsEntrance()) {
2141            col = col_GREEN;
2142        } else if (m_FixedPts && label->IsFixedPt()) {
2143            col = col_RED;
2144        } else if (m_ExportedPts && label->IsExportedPt()) {
2145            col = col_TURQUOISE;
2146        } else {
2147            continue;
2148        }
2149
2150        // Stations are sorted by blob type, so colour changes are infrequent.
2151        if (col != prev_col) {
2152            SetColour(col);
2153            prev_col = col;
2154        }
2155        DrawBlob(label->GetX(), label->GetY(), label->GetZ());
2156    }
2157    EndBlobs();
2158}
2159
2160void GfxCore::DrawIndicators()
2161{
2162    // Draw depthbar.
2163    if (m_Depthbar) {
2164       if (m_ColourBy == COLOUR_BY_DEPTH && m_Parent->GetDepthExtent() != 0.0) {
2165           DrawList2D(LIST_DEPTHBAR, m_XSize, m_YSize, 0);
2166       } else if (m_ColourBy == COLOUR_BY_DATE && m_Parent->GetDateExtent()) {
2167           DrawList2D(LIST_DATEBAR, m_XSize, m_YSize, 0);
2168       } else if (m_ColourBy == COLOUR_BY_ERROR && m_Parent->HasErrorInformation()) {
2169           DrawList2D(LIST_ERRORBAR, m_XSize, m_YSize, 0);
2170       }
2171    }
2172
2173    // Draw compass or elevation/heading indicators.
2174    if (m_Compass || m_Clino) {
2175        if (!m_Parent->IsExtendedElevation()) Draw2dIndicators();
2176    }
2177
2178    // Draw scalebar.
2179    if (m_Scalebar) {
2180        DrawScalebar();
2181    }
2182}
2183
2184void GfxCore::PlaceVertexWithColour(const Vector3 & v, Double factor)
2185{
2186    SetColour(GetSurfacePen(), factor); // FIXME : assumes surface pen is white!
2187    PlaceVertex(v);
2188}
2189
2190void GfxCore::PlaceVertexWithDepthColour(const Vector3 &v, Double factor)
2191{
2192    // Set the drawing colour based on the altitude.
2193    Double z_ext = m_Parent->GetDepthExtent();
2194    assert(z_ext > 0);
2195
2196    Double z = v.GetZ() - m_Parent->GetDepthMin();
2197    // points arising from tubes may be slightly outside the limits...
2198    if (z < 0) z = 0;
2199    if (z > z_ext) z = z_ext;
2200
2201    Double how_far = z / z_ext;
2202    assert(how_far >= 0.0);
2203    assert(how_far <= 1.0);
2204
2205    int band = int(floor(how_far * (GetNumDepthBands() - 1)));
2206    GLAPen pen1 = GetPen(band);
2207    if (band < GetNumDepthBands() - 1) {
2208        const GLAPen& pen2 = GetPen(band + 1);
2209
2210        Double interval = z_ext / (GetNumDepthBands() - 1);
2211        Double into_band = z / interval - band;
2212
2213//      printf("%g z_offset=%g interval=%g band=%d\n", into_band,
2214//             z_offset, interval, band);
2215        // FIXME: why do we need to clamp here?  Is it because the walls can
2216        // extend further up/down than the centre-line?
2217        if (into_band < 0.0) into_band = 0.0;
2218        if (into_band > 1.0) into_band = 1.0;
2219        assert(into_band >= 0.0);
2220        assert(into_band <= 1.0);
2221
2222        pen1.Interpolate(pen2, into_band);
2223    }
2224    SetColour(pen1, factor);
2225
2226    PlaceVertex(v);
2227}
2228
2229void GfxCore::SplitLineAcrossBands(int band, int band2,
2230                                   const Vector3 &p, const Vector3 &q,
2231                                   Double factor)
2232{
2233    const int step = (band < band2) ? 1 : -1;
2234    for (int i = band; i != band2; i += step) {
2235        const Double z = GetDepthBoundaryBetweenBands(i, i + step);
2236
2237        // Find the intersection point of the line p -> q
2238        // with the plane parallel to the xy-plane with z-axis intersection z.
2239        assert(q.GetZ() - p.GetZ() != 0.0);
2240
2241        const Double t = (z - p.GetZ()) / (q.GetZ() - p.GetZ());
2242//      assert(0.0 <= t && t <= 1.0);           FIXME: rounding problems!
2243
2244        const Double x = p.GetX() + t * (q.GetX() - p.GetX());
2245        const Double y = p.GetY() + t * (q.GetY() - p.GetY());
2246
2247        PlaceVertexWithDepthColour(Vector3(x, y, z), factor);
2248    }
2249}
2250
2251int GfxCore::GetDepthColour(Double z) const
2252{
2253    // Return the (0-based) depth colour band index for a z-coordinate.
2254    Double z_ext = m_Parent->GetDepthExtent();
2255    assert(z_ext > 0);
2256    z -= m_Parent->GetDepthMin();
2257    z += z_ext / 2;
2258    return int(z / z_ext * (GetNumDepthBands() - 1));
2259}
2260
2261Double GfxCore::GetDepthBoundaryBetweenBands(int a, int b) const
2262{
2263    // Return the z-coordinate of the depth colour boundary between
2264    // two adjacent depth colour bands (specified by 0-based indices).
2265
2266    assert((a == b - 1) || (a == b + 1));
2267    if (GetNumDepthBands() == 1) return 0;
2268
2269    int band = (a > b) ? a : b; // boundary N lies on the bottom of band N.
2270    Double z_ext = m_Parent->GetDepthExtent();
2271    return (z_ext * band / (GetNumDepthBands() - 1)) - z_ext / 2
2272        + m_Parent->GetDepthMin();
2273}
2274
2275void GfxCore::AddPolyline(const traverse & centreline)
2276{
2277    BeginPolyline();
2278    SetColour(GetSurfacePen());
2279    vector<PointInfo>::const_iterator i = centreline.begin();
2280    PlaceVertex(*i);
2281    ++i;
2282    while (i != centreline.end()) {
2283        PlaceVertex(*i);
2284        ++i;
2285    }
2286    EndPolyline();
2287}
2288
2289void GfxCore::AddPolylineShadow(const traverse & centreline)
2290{
2291    BeginPolyline();
2292    const double z = -0.5 * m_Parent->GetZExtent();
2293    vector<PointInfo>::const_iterator i = centreline.begin();
2294    PlaceVertex(i->GetX(), i->GetY(), z);
2295    ++i;
2296    while (i != centreline.end()) {
2297        PlaceVertex(i->GetX(), i->GetY(), z);
2298        ++i;
2299    }
2300    EndPolyline();
2301}
2302
2303void GfxCore::AddPolylineDepth(const traverse & centreline)
2304{
2305    BeginPolyline();
2306    vector<PointInfo>::const_iterator i, prev_i;
2307    i = centreline.begin();
2308    int band0 = GetDepthColour(i->GetZ());
2309    PlaceVertexWithDepthColour(*i);
2310    prev_i = i;
2311    ++i;
2312    while (i != centreline.end()) {
2313        int band = GetDepthColour(i->GetZ());
2314        if (band != band0) {
2315            SplitLineAcrossBands(band0, band, *prev_i, *i);
2316            band0 = band;
2317        }
2318        PlaceVertexWithDepthColour(*i);
2319        prev_i = i;
2320        ++i;
2321    }
2322    EndPolyline();
2323}
2324
2325void GfxCore::AddQuadrilateral(const Vector3 &a, const Vector3 &b,
2326                               const Vector3 &c, const Vector3 &d)
2327{
2328    Vector3 normal = (a - c) * (d - b);
2329    normal.normalise();
2330    Double factor = dot(normal, light) * .3 + .7;
2331    int w = int(ceil(((b - a).magnitude() + (d - c).magnitude()) / 2));
2332    int h = int(ceil(((b - c).magnitude() + (d - a).magnitude()) / 2));
2333    // FIXME: should plot triangles instead to avoid rendering glitches.
2334    BeginQuadrilaterals();
2335    // FIXME: these glTexCoord2i calls should be in gla-gl.cc
2336    glTexCoord2i(0, 0);
2337    PlaceVertexWithColour(a, factor);
2338    glTexCoord2i(w, 0);
2339    PlaceVertexWithColour(b, factor);
2340    glTexCoord2i(w, h);
2341    PlaceVertexWithColour(c, factor);
2342    glTexCoord2i(0, h);
2343    PlaceVertexWithColour(d, factor);
2344    EndQuadrilaterals();
2345}
2346
2347void GfxCore::AddQuadrilateralDepth(const Vector3 &a, const Vector3 &b,
2348                                    const Vector3 &c, const Vector3 &d)
2349{
2350    Vector3 normal = (a - c) * (d - b);
2351    normal.normalise();
2352    Double factor = dot(normal, light) * .3 + .7;
2353    int a_band, b_band, c_band, d_band;
2354    a_band = GetDepthColour(a.GetZ());
2355    a_band = min(max(a_band, 0), GetNumDepthBands());
2356    b_band = GetDepthColour(b.GetZ());
2357    b_band = min(max(b_band, 0), GetNumDepthBands());
2358    c_band = GetDepthColour(c.GetZ());
2359    c_band = min(max(c_band, 0), GetNumDepthBands());
2360    d_band = GetDepthColour(d.GetZ());
2361    d_band = min(max(d_band, 0), GetNumDepthBands());
2362    // All this splitting is incorrect - we need to make a separate polygon
2363    // for each depth band...
2364    int w = int(ceil(((b - a).magnitude() + (d - c).magnitude()) / 2));
2365    int h = int(ceil(((b - c).magnitude() + (d - a).magnitude()) / 2));
2366    // FIXME: should plot triangles instead to avoid rendering glitches.
2367    BeginPolygon();
2368////    PlaceNormal(normal);
2369    // FIXME: these glTexCoord2i calls should be in gla-gl.cc
2370    glTexCoord2i(0, 0);
2371    PlaceVertexWithDepthColour(a, factor);
2372    if (a_band != b_band) {
2373        SplitLineAcrossBands(a_band, b_band, a, b, factor);
2374    }
2375    glTexCoord2i(w, 0);
2376    PlaceVertexWithDepthColour(b, factor);
2377    if (b_band != c_band) {
2378        SplitLineAcrossBands(b_band, c_band, b, c, factor);
2379    }
2380    glTexCoord2i(w, h);
2381    PlaceVertexWithDepthColour(c, factor);
2382    if (c_band != d_band) {
2383        SplitLineAcrossBands(c_band, d_band, c, d, factor);
2384    }
2385    glTexCoord2i(0, h);
2386    PlaceVertexWithDepthColour(d, factor);
2387    if (d_band != a_band) {
2388        SplitLineAcrossBands(d_band, a_band, d, a, factor);
2389    }
2390    EndPolygon();
2391}
2392
2393void GfxCore::SetColourFromDate(int date, Double factor)
2394{
2395    // Set the drawing colour based on a date.
2396
2397    if (date == -1) {
2398        SetColour(GetSurfacePen(), factor);
2399        return;
2400    }
2401
2402    int date_ext = m_Parent->GetDateExtent();
2403    assert(date_ext > 0);
2404    int date_offset = date - m_Parent->GetDateMin();
2405
2406    Double how_far = (Double)date_offset / date_ext;
2407    assert(how_far >= 0.0);
2408    assert(how_far <= 1.0);
2409
2410    int band = int(floor(how_far * (GetNumDepthBands() - 1)));
2411    GLAPen pen1 = GetPen(band);
2412    if (band < GetNumDepthBands() - 1) {
2413        const GLAPen& pen2 = GetPen(band + 1);
2414
2415        Double interval = date_ext / (GetNumDepthBands() - 1);
2416        Double into_band = date_offset / interval - band;
2417
2418//      printf("%g z_offset=%g interval=%g band=%d\n", into_band,
2419//             z_offset, interval, band);
2420        // FIXME: why do we need to clamp here?  Is it because the walls can
2421        // extend further up/down than the centre-line?
2422        if (into_band < 0.0) into_band = 0.0;
2423        if (into_band > 1.0) into_band = 1.0;
2424        assert(into_band >= 0.0);
2425        assert(into_band <= 1.0);
2426
2427        pen1.Interpolate(pen2, into_band);
2428    }
2429    SetColour(pen1, factor);
2430}
2431
2432void GfxCore::AddPolylineDate(const traverse & centreline)
2433{
2434    BeginPolyline();
2435    vector<PointInfo>::const_iterator i, prev_i;
2436    i = centreline.begin();
2437    int date = i->GetDate();
2438    SetColourFromDate(date, 1.0);
2439    PlaceVertex(*i);
2440    prev_i = i;
2441    while (++i != centreline.end()) {
2442        int newdate = i->GetDate();
2443        if (newdate != date) {
2444            EndPolyline();
2445            BeginPolyline();
2446            date = newdate;
2447            SetColourFromDate(date, 1.0);
2448            PlaceVertex(*prev_i);
2449        }
2450        PlaceVertex(*i);
2451        prev_i = i;
2452    }
2453    EndPolyline();
2454}
2455
2456static int static_date_hack; // FIXME
2457
2458void GfxCore::AddQuadrilateralDate(const Vector3 &a, const Vector3 &b,
2459                                   const Vector3 &c, const Vector3 &d)
2460{
2461    Vector3 normal = (a - c) * (d - b);
2462    normal.normalise();
2463    Double factor = dot(normal, light) * .3 + .7;
2464    int w = int(ceil(((b - a).magnitude() + (d - c).magnitude()) / 2));
2465    int h = int(ceil(((b - c).magnitude() + (d - a).magnitude()) / 2));
2466    // FIXME: should plot triangles instead to avoid rendering glitches.
2467    BeginPolygon();
2468////    PlaceNormal(normal);
2469    SetColourFromDate(static_date_hack, factor);
2470    // FIXME: these glTexCoord2i calls should be in gla-gl.cc
2471    glTexCoord2i(0, 0);
2472    PlaceVertex(a);
2473    glTexCoord2i(w, 0);
2474    PlaceVertex(b);
2475    glTexCoord2i(w, h);
2476    PlaceVertex(c);
2477    glTexCoord2i(0, h);
2478    PlaceVertex(d);
2479    EndPolygon();
2480}
2481
2482static double static_E_hack; // FIXME
2483
2484void GfxCore::SetColourFromError(double E, Double factor)
2485{
2486    // Set the drawing colour based on an error value.
2487
2488    if (E < 0) {
2489        SetColour(GetSurfacePen(), factor);
2490        return;
2491    }
2492
2493    Double how_far = E / MAX_ERROR;
2494    assert(how_far >= 0.0);
2495    if (how_far > 1.0) how_far = 1.0;
2496
2497    int band = int(floor(how_far * (GetNumDepthBands() - 1)));
2498    GLAPen pen1 = GetPen(band);
2499    if (band < GetNumDepthBands() - 1) {
2500        const GLAPen& pen2 = GetPen(band + 1);
2501
2502        Double interval = MAX_ERROR / (GetNumDepthBands() - 1);
2503        Double into_band = E / interval - band;
2504
2505//      printf("%g z_offset=%g interval=%g band=%d\n", into_band,
2506//             z_offset, interval, band);
2507        // FIXME: why do we need to clamp here?  Is it because the walls can
2508        // extend further up/down than the centre-line?
2509        if (into_band < 0.0) into_band = 0.0;
2510        if (into_band > 1.0) into_band = 1.0;
2511        assert(into_band >= 0.0);
2512        assert(into_band <= 1.0);
2513
2514        pen1.Interpolate(pen2, into_band);
2515    }
2516    SetColour(pen1, factor);
2517}
2518
2519void GfxCore::AddQuadrilateralError(const Vector3 &a, const Vector3 &b,
2520                                    const Vector3 &c, const Vector3 &d)
2521{
2522    Vector3 normal = (a - c) * (d - b);
2523    normal.normalise();
2524    Double factor = dot(normal, light) * .3 + .7;
2525    int w = int(ceil(((b - a).magnitude() + (d - c).magnitude()) / 2));
2526    int h = int(ceil(((b - c).magnitude() + (d - a).magnitude()) / 2));
2527    // FIXME: should plot triangles instead to avoid rendering glitches.
2528    BeginPolygon();
2529////    PlaceNormal(normal);
2530    SetColourFromError(static_E_hack, factor);
2531    // FIXME: these glTexCoord2i calls should be in gla-gl.cc
2532    glTexCoord2i(0, 0);
2533    PlaceVertex(a);
2534    glTexCoord2i(w, 0);
2535    PlaceVertex(b);
2536    glTexCoord2i(w, h);
2537    PlaceVertex(c);
2538    glTexCoord2i(0, h);
2539    PlaceVertex(d);
2540    EndPolygon();
2541}
2542
2543void GfxCore::AddPolylineError(const traverse & centreline)
2544{
2545    BeginPolyline();
2546    SetColourFromError(centreline.E, 1.0);
2547    vector<PointInfo>::const_iterator i;
2548    for(i = centreline.begin(); i != centreline.end(); ++i) {
2549        PlaceVertex(*i);
2550    }
2551    EndPolyline();
2552}
2553
2554void
2555GfxCore::SkinPassage(const vector<XSect> & centreline)
2556{
2557    assert(centreline.size() > 1);
2558    Vector3 U[4];
2559    XSect prev_pt_v;
2560    Vector3 last_right(1.0, 0.0, 0.0);
2561
2562//  FIXME: it's not simple to set the colour of a tube based on error...
2563//    static_E_hack = something...
2564    vector<XSect>::const_iterator i = centreline.begin();
2565    vector<XSect>::size_type segment = 0;
2566    while (i != centreline.end()) {
2567        // get the coordinates of this vertex
2568        const XSect & pt_v = *i++;
2569
2570        double z_pitch_adjust = 0.0;
2571        bool cover_end = false;
2572
2573        Vector3 right, up;
2574
2575        const Vector3 up_v(0.0, 0.0, 1.0);
2576
2577        if (segment == 0) {
2578            assert(i != centreline.end());
2579            // first segment
2580
2581            // get the coordinates of the next vertex
2582            const XSect & next_pt_v = *i;
2583
2584            // calculate vector from this pt to the next one
2585            Vector3 leg_v = next_pt_v - pt_v;
2586
2587            // obtain a vector in the LRUD plane
2588            right = leg_v * up_v;
2589            if (right.magnitude() == 0) {
2590                right = last_right;
2591                // Obtain a second vector in the LRUD plane,
2592                // perpendicular to the first.
2593                //up = right * leg_v;
2594                up = up_v;
2595            } else {
2596                last_right = right;
2597                up = up_v;
2598            }
2599
2600            cover_end = true;
2601            static_date_hack = next_pt_v.GetDate();
2602        } else if (segment + 1 == centreline.size()) {
2603            // last segment
2604
2605            // Calculate vector from the previous pt to this one.
2606            Vector3 leg_v = pt_v - prev_pt_v;
2607
2608            // Obtain a horizontal vector in the LRUD plane.
2609            right = leg_v * up_v;
2610            if (right.magnitude() == 0) {
2611                right = Vector3(last_right.GetX(), last_right.GetY(), 0.0);
2612                // Obtain a second vector in the LRUD plane,
2613                // perpendicular to the first.
2614                //up = right * leg_v;
2615                up = up_v;
2616            } else {
2617                last_right = right;
2618                up = up_v;
2619            }
2620
2621            cover_end = true;
2622            static_date_hack = pt_v.GetDate();
2623        } else {
2624            assert(i != centreline.end());
2625            // Intermediate segment.
2626
2627            // Get the coordinates of the next vertex.
2628            const XSect & next_pt_v = *i;
2629
2630            // Calculate vectors from this vertex to the
2631            // next vertex, and from the previous vertex to
2632            // this one.
2633            Vector3 leg1_v = pt_v - prev_pt_v;
2634            Vector3 leg2_v = next_pt_v - pt_v;
2635
2636            // Obtain horizontal vectors perpendicular to
2637            // both legs, then normalise and average to get
2638            // a horizontal bisector.
2639            Vector3 r1 = leg1_v * up_v;
2640            Vector3 r2 = leg2_v * up_v;
2641            r1.normalise();
2642            r2.normalise();
2643            right = r1 + r2;
2644            if (right.magnitude() == 0) {
2645                // This is the "mid-pitch" case...
2646                right = last_right;
2647            }
2648            if (r1.magnitude() == 0) {
2649                Vector3 n = leg1_v;
2650                n.normalise();
2651                z_pitch_adjust = n.GetZ();
2652                //up = Vector3(0, 0, leg1_v.GetZ());
2653                //up = right * up;
2654                up = up_v;
2655
2656                // Rotate pitch section to minimise the
2657                // "tortional stress" - FIXME: use
2658                // triangles instead of rectangles?
2659                int shift = 0;
2660                Double maxdotp = 0;
2661
2662                // Scale to unit vectors in the LRUD plane.
2663                right.normalise();
2664                up.normalise();
2665                Vector3 vec = up - right;
2666                for (int orient = 0; orient <= 3; ++orient) {
2667                    Vector3 tmp = U[orient] - prev_pt_v;
2668                    tmp.normalise();
2669                    Double dotp = dot(vec, tmp);
2670                    if (dotp > maxdotp) {
2671                        maxdotp = dotp;
2672                        shift = orient;
2673                    }
2674                }
2675                if (shift) {
2676                    if (shift != 2) {
2677                        Vector3 temp(U[0]);
2678                        U[0] = U[shift];
2679                        U[shift] = U[2];
2680                        U[2] = U[shift ^ 2];
2681                        U[shift ^ 2] = temp;
2682                    } else {
2683                        swap(U[0], U[2]);
2684                        swap(U[1], U[3]);
2685                    }
2686                }
2687#if 0
2688                // Check that the above code actually permuted
2689                // the vertices correctly.
2690                shift = 0;
2691                maxdotp = 0;
2692                for (int j = 0; j <= 3; ++j) {
2693                    Vector3 tmp = U[j] - prev_pt_v;
2694                    tmp.normalise();
2695                    Double dotp = dot(vec, tmp);
2696                    if (dotp > maxdotp) {
2697                        maxdotp = dotp + 1e-6; // Add small tolerance to stop 45 degree offset cases being flagged...
2698                        shift = j;
2699                    }
2700                }
2701                if (shift) {
2702                    printf("New shift = %d!\n", shift);
2703                    shift = 0;
2704                    maxdotp = 0;
2705                    for (int j = 0; j <= 3; ++j) {
2706                        Vector3 tmp = U[j] - prev_pt_v;
2707                        tmp.normalise();
2708                        Double dotp = dot(vec, tmp);
2709                        printf("    %d : %.8f\n", j, dotp);
2710                    }
2711                }
2712#endif
2713            } else if (r2.magnitude() == 0) {
2714                Vector3 n = leg2_v;
2715                n.normalise();
2716                z_pitch_adjust = n.GetZ();
2717                //up = Vector3(0, 0, leg2_v.GetZ());
2718                //up = right * up;
2719                up = up_v;
2720            } else {
2721                up = up_v;
2722            }
2723            last_right = right;
2724            static_date_hack = pt_v.GetDate();
2725        }
2726
2727        // Scale to unit vectors in the LRUD plane.
2728        right.normalise();
2729        up.normalise();
2730
2731        if (z_pitch_adjust != 0) up += Vector3(0, 0, fabs(z_pitch_adjust));
2732
2733        Double l = fabs(pt_v.GetL());
2734        Double r = fabs(pt_v.GetR());
2735        Double u = fabs(pt_v.GetU());
2736        Double d = fabs(pt_v.GetD());
2737
2738        // Produce coordinates of the corners of the LRUD "plane".
2739        Vector3 v[4];
2740        v[0] = pt_v - right * l + up * u;
2741        v[1] = pt_v + right * r + up * u;
2742        v[2] = pt_v + right * r - up * d;
2743        v[3] = pt_v - right * l - up * d;
2744
2745        if (segment > 0) {
2746            (this->*AddQuad)(v[0], v[1], U[1], U[0]);
2747            (this->*AddQuad)(v[2], v[3], U[3], U[2]);
2748            (this->*AddQuad)(v[1], v[2], U[2], U[1]);
2749            (this->*AddQuad)(v[3], v[0], U[0], U[3]);
2750        }
2751
2752        if (cover_end) {
2753            (this->*AddQuad)(v[3], v[2], v[1], v[0]);
2754        }
2755
2756        prev_pt_v = pt_v;
2757        U[0] = v[0];
2758        U[1] = v[1];
2759        U[2] = v[2];
2760        U[3] = v[3];
2761
2762        ++segment;
2763    }
2764}
2765
2766void GfxCore::FullScreenMode()
2767{
2768    m_Parent->ViewFullScreen();
2769}
2770
2771bool GfxCore::IsFullScreen() const
2772{
2773    return m_Parent->IsFullScreen();
2774}
2775
2776void
2777GfxCore::MoveViewer(double forward, double up, double right)
2778{
2779    double cT = cos(rad(m_TiltAngle));
2780    double sT = sin(rad(m_TiltAngle));
2781    double cP = cos(rad(m_PanAngle));
2782    double sP = sin(rad(m_PanAngle));
2783    Vector3 v_forward(cT * sP, cT * cP, -sT);
2784    Vector3 v_up(-sT * sP, -sT * cP, -cT);
2785    Vector3 v_right(-cP, sP, 0);
2786    assert(fabs(dot(v_forward, v_up)) < 1e-6);
2787    assert(fabs(dot(v_forward, v_right)) < 1e-6);
2788    assert(fabs(dot(v_right, v_up)) < 1e-6);
2789    Vector3 move = v_forward * forward + v_up * up + v_right * right;
2790    AddTranslation(-move);
2791    // Show current position.
2792    m_Parent->SetCoords(m_Parent->GetOffset() - GetTranslation());
2793    ForceRefresh();
2794}
2795
2796PresentationMark GfxCore::GetView() const
2797{
2798    return PresentationMark(GetTranslation() + m_Parent->GetOffset(),
2799                            m_PanAngle, m_TiltAngle, m_Scale);
2800}
2801
2802void GfxCore::SetView(const PresentationMark & p)
2803{
2804    m_SwitchingTo = 0;
2805    SetTranslation(p - m_Parent->GetOffset());
2806    m_PanAngle = p.angle;
2807    m_TiltAngle = p.tilt_angle;
2808    SetRotation(m_PanAngle, m_TiltAngle);
2809    SetScale(p.scale);
2810    ForceRefresh();
2811}
2812
2813void GfxCore::PlayPres(double speed, bool change_speed) {
2814    if (!change_speed || presentation_mode == 0) {
2815        if (speed == 0.0) {
2816            presentation_mode = 0;
2817            return;
2818        }
2819        presentation_mode = PLAYING;
2820        next_mark = m_Parent->GetPresMark(MARK_FIRST);
2821        SetView(next_mark);
2822        next_mark_time = 0; // There already!
2823        this_mark_total = 0;
2824        pres_reverse = (speed < 0);
2825    }
2826
2827    if (change_speed) pres_speed = speed;
2828
2829    if (speed != 0.0) {
2830        bool new_pres_reverse = (speed < 0);
2831        if (new_pres_reverse != pres_reverse) {
2832            pres_reverse = new_pres_reverse;
2833            if (pres_reverse) {
2834                next_mark = m_Parent->GetPresMark(MARK_PREV);
2835            } else {
2836                next_mark = m_Parent->GetPresMark(MARK_NEXT);
2837            }
2838            swap(this_mark_total, next_mark_time);
2839        }
2840    }
2841}
2842
2843void GfxCore::SetColourBy(int colour_by) {
2844    m_ColourBy = colour_by;
2845    switch (colour_by) {
2846        case COLOUR_BY_DEPTH:
2847            AddQuad = &GfxCore::AddQuadrilateralDepth;
2848            AddPoly = &GfxCore::AddPolylineDepth;
2849            break;
2850        case COLOUR_BY_DATE:
2851            AddQuad = &GfxCore::AddQuadrilateralDate;
2852            AddPoly = &GfxCore::AddPolylineDate;
2853            break;
2854        case COLOUR_BY_ERROR:
2855            AddQuad = &GfxCore::AddQuadrilateralError;
2856            AddPoly = &GfxCore::AddPolylineError;
2857            break;
2858        default: // case COLOUR_BY_NONE:
2859            AddQuad = &GfxCore::AddQuadrilateral;
2860            AddPoly = &GfxCore::AddPolyline;
2861            break;
2862    }
2863
2864    InvalidateList(LIST_UNDERGROUND_LEGS);
2865    InvalidateList(LIST_SURFACE_LEGS);
2866    InvalidateList(LIST_TUBES);
2867
2868    ForceRefresh();
2869}
2870
2871bool GfxCore::ExportMovie(const wxString & fnm)
2872{
2873    int width;
2874    int height;
2875    GetSize(&width, &height);
2876    // Round up to next multiple of 2 (required by ffmpeg).
2877    width += (width & 1);
2878    height += (height & 1);
2879
2880    movie = new MovieMaker();
2881
2882    // FIXME: This should really use fn_str() - currently we probably can't
2883    // save to a Unicode path on wxmsw.
2884    if (!movie->Open(fnm.mb_str(), width, height)) {
2885        // FIXME : sort out reporting actual errors from ffmpeg library
2886        wxGetApp().ReportError(wxString::Format(wmsg(/*Error writing to file `%s'*/110), fnm.c_str()));
2887        delete movie;
2888        movie = 0;
2889        return false;
2890    }
2891
2892    PlayPres(1);
2893    return true;
2894}
2895
2896void
2897GfxCore::OnPrint(const wxString &filename, const wxString &title,
2898                 const wxString &datestamp)
2899{
2900    svxPrintDlg * p;
2901    p = new svxPrintDlg(m_Parent, filename, title, datestamp,
2902                        m_PanAngle, m_TiltAngle,
2903                        m_Names, m_Crosses, m_Legs, m_Surface,
2904                        true);
2905    p->Show(TRUE);
2906}
2907
2908void
2909GfxCore::OnExport(const wxString &filename, const wxString &title)
2910{
2911    svxPrintDlg * p;
2912    p = new svxPrintDlg(m_Parent, filename, title, wxString(),
2913                        m_PanAngle, m_TiltAngle,
2914                        m_Names, m_Crosses, m_Legs, m_Surface,
2915                        false);
2916    p->Show(TRUE);
2917}
2918
2919static wxCursor
2920make_cursor(const unsigned char * bits, const unsigned char * mask,
2921            int hotx, int hoty)
2922{
2923#if defined __WXMSW__ || defined __WXMAC__
2924    wxBitmap cursor_bitmap(reinterpret_cast<const char *>(bits), 32, 32);
2925    wxBitmap mask_bitmap(reinterpret_cast<const char *>(mask), 32, 32);
2926    cursor_bitmap.SetMask(new wxMask(mask_bitmap));
2927    wxImage cursor_image = cursor_bitmap.ConvertToImage();
2928    cursor_image.SetOption(wxIMAGE_OPTION_CUR_HOTSPOT_X, hotx);
2929    cursor_image.SetOption(wxIMAGE_OPTION_CUR_HOTSPOT_Y, hoty);
2930    return wxCursor(cursor_image);
2931#else
2932    return wxCursor((const char *)bits, 32, 32, hotx, hoty,
2933                    (const char *)mask, wxWHITE, wxBLACK);
2934#endif
2935}
2936
2937const
2938#include "hand.xbm"
2939const
2940#include "handmask.xbm"
2941
2942const
2943#include "brotate.xbm"
2944const
2945#include "brotatemask.xbm"
2946
2947const
2948#include "vrotate.xbm"
2949const
2950#include "vrotatemask.xbm"
2951
2952const
2953#include "rotate.xbm"
2954const
2955#include "rotatemask.xbm"
2956
2957const
2958#include "rotatezoom.xbm"
2959const
2960#include "rotatezoommask.xbm"
2961
2962void
2963GfxCore::SetCursor(GfxCore::cursor new_cursor)
2964{
2965    // Check if we're already showing that cursor.
2966    if (current_cursor == new_cursor) return;
2967
2968    current_cursor = new_cursor;
2969    switch (current_cursor) {
2970        case GfxCore::CURSOR_DEFAULT:
2971            GLACanvas::SetCursor(wxNullCursor);
2972            break;
2973        case GfxCore::CURSOR_POINTING_HAND:
2974            GLACanvas::SetCursor(wxCursor(wxCURSOR_HAND));
2975            break;
2976        case GfxCore::CURSOR_DRAGGING_HAND:
2977            GLACanvas::SetCursor(make_cursor(hand_bits, handmask_bits, 12, 18));
2978            break;
2979        case GfxCore::CURSOR_HORIZONTAL_RESIZE:
2980            GLACanvas::SetCursor(wxCursor(wxCURSOR_SIZEWE));
2981            break;
2982        case GfxCore::CURSOR_ROTATE_HORIZONTALLY:
2983            GLACanvas::SetCursor(make_cursor(rotate_bits, rotatemask_bits, 15, 15));
2984            break;
2985        case GfxCore::CURSOR_ROTATE_VERTICALLY:
2986            GLACanvas::SetCursor(make_cursor(vrotate_bits, vrotatemask_bits, 15, 15));
2987            break;
2988        case GfxCore::CURSOR_ROTATE_EITHER_WAY:
2989            GLACanvas::SetCursor(make_cursor(brotate_bits, brotatemask_bits, 15, 15));
2990            break;
2991        case GfxCore::CURSOR_ZOOM:
2992            GLACanvas::SetCursor(wxCursor(wxCURSOR_MAGNIFIER));
2993            break;
2994        case GfxCore::CURSOR_ZOOM_ROTATE:
2995            GLACanvas::SetCursor(make_cursor(rotatezoom_bits, rotatezoommask_bits, 15, 15));
2996            break;
2997    }
2998}
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