4 // Core drawing code for Aven.
6 // Copyright (C) 2000-2003,2005,2006 Mark R. Shinwell
7 // Copyright (C) 2001-2003,2004,2005,2006,2007,2010,2011,2012,2014,2015,2016,2017 Olly Betts
8 // Copyright (C) 2005 Martin Green
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.
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.
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
40 #include "guicontrol.h"
41 #include "moviemaker.h"
43 #include <wx/confbase.h>
44 #include <wx/wfstream.h>
46 #include <wx/zipstrm.h>
50 const unsigned long DEFAULT_HGT_DIM
= 3601;
51 const unsigned long DEFAULT_HGT_SIZE
= sqrd(DEFAULT_HGT_DIM
) * 2;
53 // Values for m_SwitchingTo
61 // Any error value higher than this is clamped to this.
62 #define MAX_ERROR 12.0
64 // Any length greater than pow(10, LOG_LEN_MAX) will be clamped to this.
65 const Double LOG_LEN_MAX
= 1.5;
67 // How many bins per letter height to use when working out non-overlapping
69 const unsigned int QUANTISE_FACTOR
= 2;
73 static const int INDICATOR_BOX_SIZE
= 60;
74 static const int INDICATOR_GAP
= 2;
75 static const int INDICATOR_MARGIN
= 5;
76 static const int INDICATOR_OFFSET_X
= 15;
77 static const int INDICATOR_OFFSET_Y
= 15;
78 static const int INDICATOR_RADIUS
= INDICATOR_BOX_SIZE
/ 2 - INDICATOR_MARGIN
;
79 static const int KEY_OFFSET_X
= 10;
80 static const int KEY_OFFSET_Y
= 10;
81 static const int KEY_EXTRA_LEFT_MARGIN
= 2;
82 static const int KEY_BLOCK_WIDTH
= 20;
83 static const int KEY_BLOCK_HEIGHT
= 16;
84 static const int TICK_LENGTH
= 4;
85 static const int SCALE_BAR_OFFSET_X
= 15;
86 static const int SCALE_BAR_OFFSET_Y
= 12;
87 static const int SCALE_BAR_HEIGHT
= 12;
89 static const gla_colour TEXT_COLOUR
= col_GREEN
;
90 static const gla_colour HERE_COLOUR
= col_WHITE
;
91 static const gla_colour NAME_COLOUR
= col_GREEN
;
92 static const gla_colour SEL_COLOUR
= col_WHITE
;
94 // Number of entries across and down the hit-test grid:
95 #define HITTEST_SIZE 20
97 // How close the pointer needs to be to a station to be considered:
98 #define MEASURE_THRESHOLD 7
100 // vector for lighting angle
101 static const Vector3
light(.577, .577, .577);
103 BEGIN_EVENT_TABLE(GfxCore
, GLACanvas
)
104 EVT_PAINT(GfxCore::OnPaint
)
105 EVT_LEFT_DOWN(GfxCore::OnLButtonDown
)
106 EVT_LEFT_UP(GfxCore::OnLButtonUp
)
107 EVT_MIDDLE_DOWN(GfxCore::OnMButtonDown
)
108 EVT_MIDDLE_UP(GfxCore::OnMButtonUp
)
109 EVT_RIGHT_DOWN(GfxCore::OnRButtonDown
)
110 EVT_RIGHT_UP(GfxCore::OnRButtonUp
)
111 EVT_MOUSEWHEEL(GfxCore::OnMouseWheel
)
112 EVT_MOTION(GfxCore::OnMouseMove
)
113 EVT_LEAVE_WINDOW(GfxCore::OnLeaveWindow
)
114 EVT_SIZE(GfxCore::OnSize
)
115 EVT_IDLE(GfxCore::OnIdle
)
116 EVT_CHAR(GfxCore::OnKeyPress
)
119 GfxCore::GfxCore(MainFrm
* parent
, wxWindow
* parent_win
, GUIControl
* control
) :
120 GLACanvas(parent_win
, 100),
127 m_DoneFirstShow(false),
135 m_Splays(SHOW_FADED
),
136 m_Dupes(SHOW_DASHED
),
140 m_OverlappingNames(false),
144 m_ColourBy(COLOUR_BY_DEPTH
),
147 m_MouseOutsideCompass(false),
148 m_MouseOutsideElev(false),
152 m_ExportedPts(false),
154 m_BoundingBox(false),
159 m_HitTestDebug(false),
160 m_RenderStats(false),
162 m_HitTestGridValid(false),
165 presentation_mode(0),
169 current_cursor(GfxCore::CURSOR_DEFAULT
),
170 sqrd_measure_threshold(sqrd(MEASURE_THRESHOLD
)),
175 AddQuad
= &GfxCore::AddQuadrilateralDepth
;
176 AddPoly
= &GfxCore::AddPolylineDepth
;
177 wxConfigBase::Get()->Read(wxT("metric"), &m_Metric
, true);
178 wxConfigBase::Get()->Read(wxT("degrees"), &m_Degrees
, true);
179 wxConfigBase::Get()->Read(wxT("percent"), &m_Percent
, false);
181 for (int pen
= 0; pen
< NUM_COLOUR_BANDS
+ 1; ++pen
) {
182 m_Pens
[pen
].SetColour(REDS
[pen
] / 255.0,
194 delete[] m_PointGrid
;
197 void GfxCore::TryToFreeArrays()
199 // Free up any memory allocated for arrays.
200 delete[] m_LabelGrid
;
205 // Initialisation methods
208 void GfxCore::Initialise(bool same_file
)
210 // Initialise the view from the parent holding the survey data.
214 m_DoneFirstShow
= false;
216 m_HitTestGridValid
= false;
220 m_MouseOutsideCompass
= m_MouseOutsideElev
= false;
223 // Apply default parameters unless reloading the same file.
229 // Clear any cached OpenGL lists which depend on the data.
230 InvalidateList(LIST_SCALE_BAR
);
231 InvalidateList(LIST_DEPTH_KEY
);
232 InvalidateList(LIST_DATE_KEY
);
233 InvalidateList(LIST_ERROR_KEY
);
234 InvalidateList(LIST_GRADIENT_KEY
);
235 InvalidateList(LIST_LENGTH_KEY
);
236 InvalidateList(LIST_UNDERGROUND_LEGS
);
237 InvalidateList(LIST_TUBES
);
238 InvalidateList(LIST_SURFACE_LEGS
);
239 InvalidateList(LIST_BLOBS
);
240 InvalidateList(LIST_CROSSES
);
241 InvalidateList(LIST_GRID
);
242 InvalidateList(LIST_SHADOW
);
243 InvalidateList(LIST_TERRAIN
);
245 // Set diameter of the viewing volume.
246 double cave_diameter
= sqrt(sqrd(m_Parent
->GetXExtent()) +
247 sqrd(m_Parent
->GetYExtent()) +
248 sqrd(m_Parent
->GetZExtent()));
250 // Allow for terrain.
251 double diameter
= max(1000.0 * 2, cave_diameter
* 2);
254 SetVolumeDiameter(diameter
);
256 // Set initial scale based on the size of the cave.
257 initial_scale
= diameter
/ cave_diameter
;
258 SetScale(initial_scale
);
260 // Adjust the position when restricting the view to a subsurvey (or
261 // expanding the view to show the whole survey).
262 AddTranslation(m_Parent
->GetOffset() - offsets
);
264 // Try to keep the same scale, allowing for the
265 // cave having grown (or shrunk).
266 double rescale
= GetVolumeDiameter() / diameter
;
267 SetVolumeDiameter(diameter
);
268 SetScale(GetScale() / rescale
); // ?
269 initial_scale
= initial_scale
* rescale
;
272 offsets
= m_Parent
->GetOffset();
277 void GfxCore::FirstShow()
279 GLACanvas::FirstShow();
281 const unsigned int quantise(GetFontSize() / QUANTISE_FACTOR
);
282 list
<LabelInfo
*>::iterator pos
= m_Parent
->GetLabelsNC();
283 while (pos
!= m_Parent
->GetLabelsNCEnd()) {
284 LabelInfo
* label
= *pos
++;
285 // Calculate and set the label width for use when plotting
286 // none-overlapping labels.
288 GLACanvas::GetTextExtent(label
->GetText(), &ext_x
, NULL
);
289 label
->set_width(unsigned(ext_x
) / quantise
+ 1);
292 m_DoneFirstShow
= true;
296 // Recalculating methods
299 void GfxCore::SetScale(Double scale
)
303 } else if (scale
> GetVolumeDiameter()) {
304 scale
= GetVolumeDiameter();
308 m_HitTestGridValid
= false;
309 if (m_here
&& m_here
== &temp_here
) SetHere();
311 GLACanvas::SetScale(scale
);
314 bool GfxCore::HasUndergroundLegs() const
316 return m_Parent
->HasUndergroundLegs();
319 bool GfxCore::HasSplays() const
321 return m_Parent
->HasSplays();
324 bool GfxCore::HasDupes() const
326 return m_Parent
->HasDupes();
329 bool GfxCore::HasSurfaceLegs() const
331 return m_Parent
->HasSurfaceLegs();
334 bool GfxCore::HasTubes() const
336 return m_Parent
->HasTubes();
339 void GfxCore::UpdateBlobs()
341 InvalidateList(LIST_BLOBS
);
348 void GfxCore::OnLeaveWindow(wxMouseEvent
&) {
353 void GfxCore::OnIdle(wxIdleEvent
& event
)
355 // Handle an idle event.
358 // If still animating, we want more idle events.
362 // If we're idle, don't show a bogus FPS next time we render.
367 void GfxCore::OnPaint(wxPaintEvent
&)
369 // Redraw the window.
371 // Get a graphics context.
375 // Make sure we're initialised.
376 bool first_time
= !m_DoneFirstShow
;
383 // Clear the background.
386 // Set up model transformation matrix.
389 if (m_Legs
|| m_Tubes
) {
391 EnableSmoothPolygons(true); // FIXME: allow false for wireframe view
392 DrawList(LIST_TUBES
);
393 DisableSmoothPolygons();
396 // Draw the underground legs. Do this last so that anti-aliasing
397 // works over polygons.
398 SetColour(col_GREEN
);
399 DrawList(LIST_UNDERGROUND_LEGS
);
403 // Draw the surface legs.
404 DrawList(LIST_SURFACE_LEGS
);
408 DrawShadowedBoundingBox();
415 DrawList(LIST_BLOBS
);
418 DrawList(LIST_CROSSES
);
422 // Disable texturing while drawing terrain.
423 bool texturing
= GetTextured();
424 if (texturing
) GLACanvas::ToggleTextured();
426 // This is needed if blobs and/or crosses are drawn using lines -
427 // otherwise the terrain doesn't appear when they are enabled.
430 // We don't want to be able to see the terrain through itself, so
431 // do a "Z-prepass" - plot the terrain once only updating the
432 // Z-buffer, then again with Z-clipping only plotting where the
433 // depth matches the value in the Z-buffer.
434 DrawListZPrepass(LIST_TERRAIN
);
436 if (texturing
) GLACanvas::ToggleTextured();
439 SetIndicatorTransform();
441 // Draw station names.
442 if (m_Names
/*&& !m_Control->MouseDown() && !Animating()*/) {
443 SetColour(NAME_COLOUR
);
445 if (m_OverlappingNames
) {
452 if (m_HitTestDebug
) {
453 // Show the hit test grid bucket sizes...
454 SetColour(m_HitTestGridValid
? col_LIGHT_GREY
: col_DARK_GREY
);
456 for (int i
= 0; i
!= HITTEST_SIZE
; ++i
) {
457 int x
= (GetXSize() + 1) * i
/ HITTEST_SIZE
+ 2;
458 for (int j
= 0; j
!= HITTEST_SIZE
; ++j
) {
459 int square
= i
+ j
* HITTEST_SIZE
;
460 unsigned long bucket_size
= m_PointGrid
[square
].size();
462 int y
= (GetYSize() + 1) * (HITTEST_SIZE
- 1 - j
) / HITTEST_SIZE
;
463 DrawIndicatorText(x
, y
, wxString::Format(wxT("%lu"), bucket_size
));
471 for (int i
= 0; i
!= HITTEST_SIZE
; ++i
) {
472 int x
= (GetXSize() + 1) * i
/ HITTEST_SIZE
;
473 PlaceIndicatorVertex(x
, 0);
474 PlaceIndicatorVertex(x
, GetYSize());
476 for (int j
= 0; j
!= HITTEST_SIZE
; ++j
) {
477 int y
= (GetYSize() + 1) * (HITTEST_SIZE
- 1 - j
) / HITTEST_SIZE
;
478 PlaceIndicatorVertex(0, y
);
479 PlaceIndicatorVertex(GetXSize(), y
);
482 DisableDashedLines();
485 long now
= timer
.Time();
487 // Show stats about rendering.
488 SetColour(col_TURQUOISE
);
489 int y
= GetYSize() - GetFontSize();
490 if (last_time
!= 0.0) {
491 // timer.Time() measure in milliseconds.
492 double fps
= 1000.0 / (now
- last_time
);
493 DrawIndicatorText(1, y
, wxString::Format(wxT("FPS:% 5.1f"), fps
));
496 DrawIndicatorText(1, y
, wxString::Format(wxT("▲:%lu"), (unsigned long)n_tris
));
502 // There's no advantage in generating an OpenGL list for the
503 // indicators since they change with almost every redraw (and
504 // sometimes several times between redraws). This way we avoid
505 // the need to track when to update the indicator OpenGL list,
506 // and also avoid indicator update bugs when we don't quite get this
510 if (zoombox
.active()) {
511 SetColour(SEL_COLOUR
);
514 glaCoord Y
= GetYSize();
515 PlaceIndicatorVertex(zoombox
.x1
, Y
- zoombox
.y1
);
516 PlaceIndicatorVertex(zoombox
.x1
, Y
- zoombox
.y2
);
517 PlaceIndicatorVertex(zoombox
.x2
, Y
- zoombox
.y2
);
518 PlaceIndicatorVertex(zoombox
.x2
, Y
- zoombox
.y1
);
519 PlaceIndicatorVertex(zoombox
.x1
, Y
- zoombox
.y1
);
521 DisableDashedLines();
522 } else if (MeasuringLineActive()) {
523 // Draw "here" and "there".
525 SetColour(HERE_COLOUR
);
528 Transform(*m_here
, &hx
, &hy
, &dummy
);
529 if (m_here
!= &temp_here
) DrawRing(hx
, hy
);
534 Transform(*m_there
, &tx
, &ty
, &dummy
);
537 PlaceIndicatorVertex(hx
, hy
);
538 PlaceIndicatorVertex(tx
, ty
);
549 dc
.SetBackground(wxSystemSettings::GetColour(wxSYS_COLOUR_WINDOWFRAME
));
554 void GfxCore::DrawBoundingBox()
556 const Vector3 v
= 0.5 * m_Parent
->GetExtent();
561 PlaceVertex(-v
.GetX(), -v
.GetY(), v
.GetZ());
562 PlaceVertex(-v
.GetX(), v
.GetY(), v
.GetZ());
563 PlaceVertex(v
.GetX(), v
.GetY(), v
.GetZ());
564 PlaceVertex(v
.GetX(), -v
.GetY(), v
.GetZ());
565 PlaceVertex(-v
.GetX(), -v
.GetY(), v
.GetZ());
568 PlaceVertex(-v
.GetX(), -v
.GetY(), -v
.GetZ());
569 PlaceVertex(-v
.GetX(), v
.GetY(), -v
.GetZ());
570 PlaceVertex(v
.GetX(), v
.GetY(), -v
.GetZ());
571 PlaceVertex(v
.GetX(), -v
.GetY(), -v
.GetZ());
572 PlaceVertex(-v
.GetX(), -v
.GetY(), -v
.GetZ());
575 PlaceVertex(-v
.GetX(), -v
.GetY(), v
.GetZ());
576 PlaceVertex(-v
.GetX(), -v
.GetY(), -v
.GetZ());
577 PlaceVertex(-v
.GetX(), v
.GetY(), v
.GetZ());
578 PlaceVertex(-v
.GetX(), v
.GetY(), -v
.GetZ());
579 PlaceVertex(v
.GetX(), v
.GetY(), v
.GetZ());
580 PlaceVertex(v
.GetX(), v
.GetY(), -v
.GetZ());
581 PlaceVertex(v
.GetX(), -v
.GetY(), v
.GetZ());
582 PlaceVertex(v
.GetX(), -v
.GetY(), -v
.GetZ());
584 DisableDashedLines();
587 void GfxCore::DrawShadowedBoundingBox()
589 const Vector3 v
= 0.5 * m_Parent
->GetExtent();
594 SetColour(col_DARK_GREY
);
595 BeginQuadrilaterals();
596 PlaceVertex(-v
.GetX(), -v
.GetY(), -v
.GetZ());
597 PlaceVertex(-v
.GetX(), v
.GetY(), -v
.GetZ());
598 PlaceVertex(v
.GetX(), v
.GetY(), -v
.GetZ());
599 PlaceVertex(v
.GetX(), -v
.GetY(), -v
.GetZ());
601 PolygonOffset(false);
603 DrawList(LIST_SHADOW
);
606 void GfxCore::DrawGrid()
611 // Calculate the extent of the survey, in metres across the screen plane.
612 Double m_across_screen
= SurveyUnitsAcrossViewport();
613 // Calculate the length of the scale bar in metres.
614 //--move this elsewhere
615 Double size_snap
= pow(10.0, floor(log10(0.75 * m_across_screen
)));
616 Double t
= m_across_screen
* 0.75 / size_snap
;
624 Double grid_size
= size_snap
* 0.1;
625 Double edge
= grid_size
* 2.0;
626 Double grid_z
= -m_Parent
->GetZExtent() * 0.5 - grid_size
;
627 Double left
= -m_Parent
->GetXExtent() * 0.5 - edge
;
628 Double right
= m_Parent
->GetXExtent() * 0.5 + edge
;
629 Double bottom
= -m_Parent
->GetYExtent() * 0.5 - edge
;
630 Double top
= m_Parent
->GetYExtent() * 0.5 + edge
;
631 int count_x
= (int) ceil((right
- left
) / grid_size
);
632 int count_y
= (int) ceil((top
- bottom
) / grid_size
);
633 Double actual_right
= left
+ count_x
*grid_size
;
634 Double actual_top
= bottom
+ count_y
*grid_size
;
638 for (int xc
= 0; xc
<= count_x
; xc
++) {
639 Double x
= left
+ xc
*grid_size
;
641 PlaceVertex(x
, bottom
, grid_z
);
642 PlaceVertex(x
, actual_top
, grid_z
);
645 for (int yc
= 0; yc
<= count_y
; yc
++) {
646 Double y
= bottom
+ yc
*grid_size
;
647 PlaceVertex(left
, y
, grid_z
);
648 PlaceVertex(actual_right
, y
, grid_z
);
654 int GfxCore::GetClinoOffset() const
656 int result
= INDICATOR_OFFSET_X
;
658 result
+= 6 + GetCompassWidth() + INDICATOR_GAP
;
663 void GfxCore::DrawTick(int angle_cw
)
665 const Double theta
= rad(angle_cw
);
666 const wxCoord length1
= INDICATOR_RADIUS
;
667 const wxCoord length0
= length1
+ TICK_LENGTH
;
668 wxCoord x0
= wxCoord(length0
* sin(theta
));
669 wxCoord y0
= wxCoord(length0
* cos(theta
));
670 wxCoord x1
= wxCoord(length1
* sin(theta
));
671 wxCoord y1
= wxCoord(length1
* cos(theta
));
673 PlaceIndicatorVertex(x0
, y0
);
674 PlaceIndicatorVertex(x1
, y1
);
677 void GfxCore::DrawArrow(gla_colour col1
, gla_colour col2
) {
678 Vector3
p1(0, INDICATOR_RADIUS
, 0);
679 Vector3
p2(INDICATOR_RADIUS
/2, INDICATOR_RADIUS
*-.866025404, 0); // 150deg
680 Vector3
p3(-INDICATOR_RADIUS
/2, INDICATOR_RADIUS
*-.866025404, 0); // 210deg
683 DrawTriangle(col_LIGHT_GREY
, col1
, p2
, p1
, pc
);
684 DrawTriangle(col_LIGHT_GREY
, col2
, p3
, p1
, pc
);
687 void GfxCore::DrawCompass() {
690 for (int angle
= 315; angle
> 0; angle
-= 45) {
693 SetColour(col_GREEN
);
697 // Compass background.
698 DrawCircle(col_LIGHT_GREY_2
, col_GREY
, 0, 0, INDICATOR_RADIUS
);
701 DrawArrow(col_INDICATOR_1
, col_INDICATOR_2
);
704 // Draw the non-rotating background to the clino.
705 void GfxCore::DrawClinoBack() {
707 for (int angle
= 0; angle
<= 180; angle
+= 90) {
712 PlaceIndicatorVertex(0, INDICATOR_RADIUS
);
713 PlaceIndicatorVertex(0, -INDICATOR_RADIUS
);
714 PlaceIndicatorVertex(0, 0);
715 PlaceIndicatorVertex(INDICATOR_RADIUS
, 0);
720 void GfxCore::DrawClino() {
722 SetColour(col_GREEN
);
728 DrawSemicircle(col_LIGHT_GREY_2
, col_GREY
, 0, 0, INDICATOR_RADIUS
, 0);
731 DrawArrow(col_INDICATOR_2
, col_INDICATOR_1
);
734 void GfxCore::Draw2dIndicators()
736 // Draw the compass and elevation indicators.
738 const int centre_y
= INDICATOR_BOX_SIZE
/ 2 + INDICATOR_OFFSET_Y
;
740 const int comp_centre_x
= GetCompassXPosition();
742 if (m_Compass
&& !m_Parent
->IsExtendedElevation()) {
743 // If the user is dragging the compass with the pointer outside the
744 // compass, we snap to 45 degree multiples, and the ticks go white.
745 SetColour(m_MouseOutsideCompass
? col_WHITE
: col_LIGHT_GREY_2
);
746 DrawList2D(LIST_COMPASS
, comp_centre_x
, centre_y
, -m_PanAngle
);
749 const int elev_centre_x
= GetClinoXPosition();
752 // If the user is dragging the clino with the pointer outside the
753 // clino, we snap to 90 degree multiples, and the ticks go white.
754 SetColour(m_MouseOutsideElev
? col_WHITE
: col_LIGHT_GREY_2
);
755 DrawList2D(LIST_CLINO_BACK
, elev_centre_x
, centre_y
, 0);
756 DrawList2D(LIST_CLINO
, elev_centre_x
, centre_y
, 90 - m_TiltAngle
);
759 SetColour(TEXT_COLOUR
);
761 static int triple_zero_width
= 0;
762 static int height
= 0;
763 if (!triple_zero_width
) {
764 GetTextExtent(wxT("000"), &triple_zero_width
, &height
);
766 const int y_off
= INDICATOR_OFFSET_Y
+ INDICATOR_BOX_SIZE
+ height
/ 2;
768 if (m_Compass
&& !m_Parent
->IsExtendedElevation()) {
773 value
= int(m_PanAngle
);
774 /* TRANSLATORS: degree symbol - probably should be translated to
778 value
= int(m_PanAngle
* 200.0 / 180.0);
779 /* TRANSLATORS: symbol for grad (400 grad = 360 degrees = full
783 str
.Printf(wxT("%03d"), value
);
784 str
+= wmsg(brg_unit
);
785 DrawIndicatorText(comp_centre_x
- triple_zero_width
/ 2, y_off
, str
);
787 // TRANSLATORS: Used in aven above the compass indicator at the lower
788 // right of the display, with a bearing below "Facing". This indicates the
789 // direction the viewer is "facing" in.
791 // Try to keep this translation short - ideally at most 10 characters -
792 // as otherwise the compass and clino will be moved further apart to
794 str
= wmsg(/*Facing*/203);
796 GetTextExtent(str
, &w
, NULL
);
797 DrawIndicatorText(comp_centre_x
- w
/ 2, y_off
+ height
, str
);
801 if (m_TiltAngle
== -90.0) {
802 // TRANSLATORS: Label used for "clino" in Aven when the view is
803 // from directly above.
805 // Try to keep this translation short - ideally at most 10
806 // characters - as otherwise the compass and clino will be moved
807 // further apart to make room. */
808 wxString str
= wmsg(/*Plan*/432);
809 static int width
= 0;
811 GetTextExtent(str
, &width
, NULL
);
813 int x
= elev_centre_x
- width
/ 2;
814 DrawIndicatorText(x
, y_off
+ height
/ 2, str
);
815 } else if (m_TiltAngle
== 90.0) {
816 // TRANSLATORS: Label used for "clino" in Aven when the view is
817 // from directly below.
819 // Try to keep this translation short - ideally at most 10
820 // characters - as otherwise the compass and clino will be moved
821 // further apart to make room. */
822 wxString str
= wmsg(/*Kiwi Plan*/433);
823 static int width
= 0;
825 GetTextExtent(str
, &width
, NULL
);
827 int x
= elev_centre_x
- width
/ 2;
828 DrawIndicatorText(x
, y_off
+ height
/ 2, str
);
835 static int zero_width
= 0;
837 GetTextExtent(wxT("0"), &zero_width
, NULL
);
840 if (m_TiltAngle
> 89.99) {
842 } else if (m_TiltAngle
< -89.99) {
845 angle
= int(100 * tan(rad(m_TiltAngle
)));
847 if (angle
> 99999 || angle
< -99999) {
848 str
= angle
> 0 ? wxT("+") : wxT("-");
849 /* TRANSLATORS: infinity symbol - used for the percentage gradient on
850 * vertical angles. */
851 str
+= wmsg(/*∞*/431);
853 str
= angle
? wxString::Format(wxT("%+03d"), angle
) : wxT("0");
855 /* TRANSLATORS: symbol for percentage gradient (100% = 45
856 * degrees = 50 grad). */
858 } else if (m_Degrees
) {
859 static int zero_zero_width
= 0;
860 if (!zero_zero_width
) {
861 GetTextExtent(wxT("00"), &zero_zero_width
, NULL
);
863 width
= zero_zero_width
;
864 angle
= int(m_TiltAngle
);
865 str
= angle
? wxString::Format(wxT("%+03d"), angle
) : wxT("00");
868 width
= triple_zero_width
;
869 angle
= int(m_TiltAngle
* 200.0 / 180.0);
870 str
= angle
? wxString::Format(wxT("%+04d"), angle
) : wxT("000");
875 if (unit
== /*%*/96) {
876 // Right align % since the width changes so much.
877 GetTextExtent(str
, &sign_offset
, NULL
);
878 sign_offset
-= width
;
879 } else if (angle
< 0) {
880 // Adjust horizontal position so the left of the first digit is
881 // always in the same place.
882 static int minus_width
= 0;
884 GetTextExtent(wxT("-"), &minus_width
, NULL
);
886 sign_offset
= minus_width
;
887 } else if (angle
> 0) {
888 // Adjust horizontal position so the left of the first digit is
889 // always in the same place.
890 static int plus_width
= 0;
892 GetTextExtent(wxT("+"), &plus_width
, NULL
);
894 sign_offset
= plus_width
;
898 DrawIndicatorText(elev_centre_x
- sign_offset
- width
/ 2, y_off
, str
);
900 // TRANSLATORS: Label used for "clino" in Aven when the view is
901 // neither from directly above nor from directly below. It is
902 // also used in the dialog for editing a marked position in a
905 // Try to keep this translation short - ideally at most 10
906 // characters - as otherwise the compass and clino will be moved
907 // further apart to make room. */
908 str
= wmsg(/*Elevation*/118);
909 static int elevation_width
= 0;
910 if (!elevation_width
) {
911 GetTextExtent(str
, &elevation_width
, NULL
);
913 int x
= elev_centre_x
- elevation_width
/ 2;
914 DrawIndicatorText(x
, y_off
+ height
, str
);
919 void GfxCore::NattyDrawNames()
921 // Draw station names, without overlapping.
923 const unsigned int quantise(GetFontSize() / QUANTISE_FACTOR
);
924 const unsigned int quantised_x
= GetXSize() / quantise
;
925 const unsigned int quantised_y
= GetYSize() / quantise
;
926 const size_t buffer_size
= quantised_x
* quantised_y
;
928 if (!m_LabelGrid
) m_LabelGrid
= new char[buffer_size
];
930 memset((void*) m_LabelGrid
, 0, buffer_size
);
932 list
<LabelInfo
*>::const_iterator label
= m_Parent
->GetLabels();
933 for ( ; label
!= m_Parent
->GetLabelsEnd(); ++label
) {
934 if (!((m_Surface
&& (*label
)->IsSurface()) ||
935 (m_Legs
&& (*label
)->IsUnderground()) ||
936 (!(*label
)->IsSurface() && !(*label
)->IsUnderground()))) {
937 // if this station isn't to be displayed, skip to the next
938 // (last case is for stns with no legs attached)
944 Transform(**label
, &x
, &y
, &z
);
945 // Check if the label is behind us (in perspective view).
946 if (z
<= 0.0 || z
>= 1.0) continue;
948 // Apply a small shift so that translating the view doesn't make which
949 // labels are displayed change as the resulting twinkling effect is
952 Transform(Vector3(), &tx
, &ty
, &tz
);
953 tx
-= floor(tx
/ quantise
) * quantise
;
954 ty
-= floor(ty
/ quantise
) * quantise
;
957 if (tx
< 0) continue;
960 if (ty
< 0) continue;
962 unsigned int iy
= unsigned(ty
) / quantise
;
963 if (iy
>= quantised_y
) continue;
964 unsigned int width
= (*label
)->get_width();
965 unsigned int ix
= unsigned(tx
) / quantise
;
966 if (ix
+ width
>= quantised_x
) continue;
968 char * test
= m_LabelGrid
+ ix
+ iy
* quantised_x
;
969 if (memchr(test
, 1, width
)) continue;
972 y
-= GetFontSize() / 2;
973 DrawIndicatorText((int)x
, (int)y
, (*label
)->GetText());
975 if (iy
> QUANTISE_FACTOR
) iy
= QUANTISE_FACTOR
;
976 test
-= quantised_x
* iy
;
978 while (--iy
&& test
< m_LabelGrid
+ buffer_size
) {
979 memset(test
, 1, width
);
985 void GfxCore::SimpleDrawNames()
987 // Draw all station names, without worrying about overlaps
988 list
<LabelInfo
*>::const_iterator label
= m_Parent
->GetLabels();
989 for ( ; label
!= m_Parent
->GetLabelsEnd(); ++label
) {
990 if (!((m_Surface
&& (*label
)->IsSurface()) ||
991 (m_Legs
&& (*label
)->IsUnderground()) ||
992 (!(*label
)->IsSurface() && !(*label
)->IsUnderground()))) {
993 // if this station isn't to be displayed, skip to the next
994 // (last case is for stns with no legs attached)
999 Transform(**label
, &x
, &y
, &z
);
1001 // Check if the label is behind us (in perspective view).
1002 if (z
<= 0) continue;
1005 y
-= GetFontSize() / 2;
1006 DrawIndicatorText((int)x
, (int)y
, (*label
)->GetText());
1010 void GfxCore::DrawColourKey(int num_bands
, const wxString
& other
, const wxString
& units
)
1012 int total_block_height
=
1013 KEY_BLOCK_HEIGHT
* (num_bands
== 1 ? num_bands
: num_bands
- 1);
1014 if (!other
.empty()) total_block_height
+= KEY_BLOCK_HEIGHT
* 2;
1015 if (!units
.empty()) total_block_height
+= KEY_BLOCK_HEIGHT
;
1017 const int bottom
= -total_block_height
;
1020 if (!other
.empty()) GetTextExtent(other
, &size
, NULL
);
1022 for (band
= 0; band
< num_bands
; ++band
) {
1024 GetTextExtent(key_legends
[band
], &x
, NULL
);
1025 if (x
> size
) size
= x
;
1028 int left
= -KEY_BLOCK_WIDTH
- size
;
1030 key_lowerleft
[m_ColourBy
].x
= left
- KEY_EXTRA_LEFT_MARGIN
;
1031 key_lowerleft
[m_ColourBy
].y
= bottom
;
1034 if (!units
.empty()) y
+= KEY_BLOCK_HEIGHT
;
1036 if (!other
.empty()) {
1037 DrawShadedRectangle(GetSurfacePen(), GetSurfacePen(), left
, y
,
1038 KEY_BLOCK_WIDTH
, KEY_BLOCK_HEIGHT
);
1039 SetColour(col_BLACK
);
1041 PlaceIndicatorVertex(left
, y
);
1042 PlaceIndicatorVertex(left
+ KEY_BLOCK_WIDTH
, y
);
1043 PlaceIndicatorVertex(left
+ KEY_BLOCK_WIDTH
, y
+ KEY_BLOCK_HEIGHT
);
1044 PlaceIndicatorVertex(left
, y
+ KEY_BLOCK_HEIGHT
);
1045 PlaceIndicatorVertex(left
, y
);
1047 y
+= KEY_BLOCK_HEIGHT
* 2;
1051 if (num_bands
== 1) {
1052 DrawShadedRectangle(GetPen(0), GetPen(0), left
, y
,
1053 KEY_BLOCK_WIDTH
, KEY_BLOCK_HEIGHT
);
1054 y
+= KEY_BLOCK_HEIGHT
;
1056 for (band
= 0; band
< num_bands
- 1; ++band
) {
1057 DrawShadedRectangle(GetPen(band
), GetPen(band
+ 1), left
, y
,
1058 KEY_BLOCK_WIDTH
, KEY_BLOCK_HEIGHT
);
1059 y
+= KEY_BLOCK_HEIGHT
;
1063 SetColour(col_BLACK
);
1065 PlaceIndicatorVertex(left
, y
);
1066 PlaceIndicatorVertex(left
+ KEY_BLOCK_WIDTH
, y
);
1067 PlaceIndicatorVertex(left
+ KEY_BLOCK_WIDTH
, start
);
1068 PlaceIndicatorVertex(left
, start
);
1069 PlaceIndicatorVertex(left
, y
);
1072 SetColour(TEXT_COLOUR
);
1075 if (!units
.empty()) {
1076 GetTextExtent(units
, &size
, NULL
);
1077 DrawIndicatorText(left
+ (KEY_BLOCK_WIDTH
- size
) / 2, y
, units
);
1078 y
+= KEY_BLOCK_HEIGHT
;
1080 y
-= GetFontSize() / 2;
1081 left
+= KEY_BLOCK_WIDTH
+ 5;
1083 if (!other
.empty()) {
1084 y
+= KEY_BLOCK_HEIGHT
/ 2;
1085 DrawIndicatorText(left
, y
, other
);
1086 y
+= KEY_BLOCK_HEIGHT
* 2 - KEY_BLOCK_HEIGHT
/ 2;
1089 if (num_bands
== 1) {
1090 y
+= KEY_BLOCK_HEIGHT
/ 2;
1091 DrawIndicatorText(left
, y
, key_legends
[0]);
1093 for (band
= 0; band
< num_bands
; ++band
) {
1094 DrawIndicatorText(left
, y
, key_legends
[band
]);
1095 y
+= KEY_BLOCK_HEIGHT
;
1100 void GfxCore::DrawDepthKey()
1102 Double z_ext
= m_Parent
->GetDepthExtent();
1106 num_bands
= GetNumColourBands();
1107 Double z_range
= z_ext
;
1108 if (!m_Metric
) z_range
/= METRES_PER_FOOT
;
1109 sf
= max(0, 1 - (int)floor(log10(z_range
)));
1112 Double z_min
= m_Parent
->GetDepthMin() + m_Parent
->GetOffset().GetZ();
1113 for (int band
= 0; band
< num_bands
; ++band
) {
1116 z
+= z_ext
* band
/ (num_bands
- 1);
1119 z
/= METRES_PER_FOOT
;
1121 key_legends
[band
].Printf(wxT("%.*f"), sf
, z
);
1124 DrawColourKey(num_bands
, wxString(), wmsg(m_Metric
? /*m*/424: /*ft*/428));
1127 void GfxCore::DrawDateKey()
1130 if (!HasDateInformation()) {
1133 int date_ext
= m_Parent
->GetDateExtent();
1134 if (date_ext
== 0) {
1137 num_bands
= GetNumColourBands();
1139 for (int band
= 0; band
< num_bands
; ++band
) {
1141 int days
= m_Parent
->GetDateMin();
1143 days
+= date_ext
* band
/ (num_bands
- 1);
1144 ymd_from_days_since_1900(days
, &y
, &m
, &d
);
1145 key_legends
[band
].Printf(wxT("%04d-%02d-%02d"), y
, m
, d
);
1150 if (!m_Parent
->HasCompleteDateInfo()) {
1151 /* TRANSLATORS: Used in the "colour key" for "colour by date" if there
1152 * are surveys without date information. Try to keep this fairly short.
1154 other
= wmsg(/*Undated*/221);
1157 DrawColourKey(num_bands
, other
, wxString());
1160 void GfxCore::DrawErrorKey()
1163 if (HasErrorInformation()) {
1164 // Use fixed colours for each error factor so it's directly visually
1165 // comparable between surveys.
1166 num_bands
= GetNumColourBands();
1167 for (int band
= 0; band
< num_bands
; ++band
) {
1168 double E
= MAX_ERROR
* band
/ (num_bands
- 1);
1169 key_legends
[band
].Printf(wxT("%.2f"), E
);
1175 // Always show the "Not in loop" legend for now (FIXME).
1176 /* TRANSLATORS: Used in the "colour key" for "colour by error" for surveys
1177 * which aren’t part of a loop and so have no error information. Try to keep
1178 * this fairly short. */
1179 DrawColourKey(num_bands
, wmsg(/*Not in loop*/290), wxString());
1182 void GfxCore::DrawGradientKey()
1185 // Use fixed colours for each gradient so it's directly visually comparable
1187 num_bands
= GetNumColourBands();
1188 wxString units
= wmsg(m_Degrees
? /*°*/344 : /*ᵍ*/345);
1189 for (int band
= 0; band
< num_bands
; ++band
) {
1190 double gradient
= double(band
) / (num_bands
- 1);
1196 key_legends
[band
].Printf(wxT("%.f%s"), gradient
, units
);
1199 DrawColourKey(num_bands
, wxString(), wxString());
1202 void GfxCore::DrawLengthKey()
1205 // Use fixed colours for each length so it's directly visually comparable
1207 num_bands
= GetNumColourBands();
1208 for (int band
= 0; band
< num_bands
; ++band
) {
1209 double len
= pow(10, LOG_LEN_MAX
* band
/ (num_bands
- 1));
1211 len
/= METRES_PER_FOOT
;
1213 key_legends
[band
].Printf(wxT("%.1f"), len
);
1216 DrawColourKey(num_bands
, wxString(), wmsg(m_Metric
? /*m*/424: /*ft*/428));
1219 void GfxCore::DrawScaleBar()
1221 // Draw the scalebar.
1222 if (GetPerspective()) return;
1224 // Calculate how many metres of survey are currently displayed across the
1226 Double across_screen
= SurveyUnitsAcrossViewport();
1228 double f
= double(GetClinoXPosition() - INDICATOR_BOX_SIZE
/ 2 - SCALE_BAR_OFFSET_X
) / GetXSize();
1231 } else if (f
< 0.5) {
1232 // Stop it getting squeezed to nothing.
1233 // FIXME: In this case we should probably move the compass and clino up
1234 // to make room rather than letting stuff overlap.
1238 // Convert to imperial measurements if required.
1239 Double multiplier
= 1.0;
1241 across_screen
/= METRES_PER_FOOT
;
1242 multiplier
= METRES_PER_FOOT
;
1243 if (across_screen
>= 5280.0 / f
) {
1244 across_screen
/= 5280.0;
1245 multiplier
*= 5280.0;
1249 // Calculate the length of the scale bar.
1250 Double size_snap
= pow(10.0, floor(log10(f
* across_screen
)));
1251 Double t
= across_screen
* f
/ size_snap
;
1254 } else if (t
>= 2.0) {
1258 if (!m_Metric
) size_snap
*= multiplier
;
1260 // Actual size of the thing in pixels:
1261 int size
= int((size_snap
/ SurveyUnitsAcrossViewport()) * GetXSize());
1262 m_ScaleBarWidth
= size
;
1265 const int end_y
= SCALE_BAR_OFFSET_Y
+ SCALE_BAR_HEIGHT
;
1266 int interval
= size
/ 10;
1268 gla_colour col
= col_WHITE
;
1269 for (int ix
= 0; ix
< 10; ix
++) {
1270 int x
= SCALE_BAR_OFFSET_X
+ int(ix
* ((Double
) size
/ 10.0));
1272 DrawRectangle(col
, col
, x
, end_y
, interval
+ 2, SCALE_BAR_HEIGHT
);
1274 col
= (col
== col_WHITE
) ? col_GREY
: col_WHITE
;
1281 Double km
= size_snap
* 1e-3;
1284 /* TRANSLATORS: abbreviation for "kilometres" (unit of length),
1287 * If there should be a space between the number and this, include
1288 * one in the translation. */
1290 } else if (size_snap
>= 1.0) {
1291 /* TRANSLATORS: abbreviation for "metres" (unit of length), used
1294 * If there should be a space between the number and this, include
1295 * one in the translation. */
1299 /* TRANSLATORS: abbreviation for "centimetres" (unit of length),
1302 * If there should be a space between the number and this, include
1303 * one in the translation. */
1307 size_snap
/= METRES_PER_FOOT
;
1308 Double miles
= size_snap
/ 5280.0;
1311 if (size_snap
>= 2.0) {
1312 /* TRANSLATORS: abbreviation for "miles" (unit of length,
1313 * plural), used e.g. "2 miles".
1315 * If there should be a space between the number and this,
1316 * include one in the translation. */
1317 units
= /* miles*/426;
1319 /* TRANSLATORS: abbreviation for "mile" (unit of length,
1320 * singular), used e.g. "1 mile".
1322 * If there should be a space between the number and this,
1323 * include one in the translation. */
1324 units
= /* mile*/427;
1326 } else if (size_snap
>= 1.0) {
1327 /* TRANSLATORS: abbreviation for "feet" (unit of length), used e.g.
1330 * If there should be a space between the number and this, include
1331 * one in the translation. */
1335 /* TRANSLATORS: abbreviation for "inches" (unit of length), used
1338 * If there should be a space between the number and this, include
1339 * one in the translation. */
1343 if (size_snap
>= 1.0) {
1344 str
.Printf(wxT("%.f%s"), size_snap
, wmsg(units
).c_str());
1346 int sf
= -(int)floor(log10(size_snap
));
1347 str
.Printf(wxT("%.*f%s"), sf
, size_snap
, wmsg(units
).c_str());
1350 int text_width
, text_height
;
1351 GetTextExtent(str
, &text_width
, &text_height
);
1352 const int text_y
= end_y
- text_height
+ 1;
1353 SetColour(TEXT_COLOUR
);
1354 DrawIndicatorText(SCALE_BAR_OFFSET_X
, text_y
, wxT("0"));
1355 DrawIndicatorText(SCALE_BAR_OFFSET_X
+ size
- text_width
, text_y
, str
);
1358 bool GfxCore::CheckHitTestGrid(const wxPoint
& point
, bool centre
)
1360 if (Animating()) return false;
1362 if (point
.x
< 0 || point
.x
>= GetXSize() ||
1363 point
.y
< 0 || point
.y
>= GetYSize()) {
1369 if (!m_HitTestGridValid
) CreateHitTestGrid();
1371 int grid_x
= point
.x
* HITTEST_SIZE
/ (GetXSize() + 1);
1372 int grid_y
= point
.y
* HITTEST_SIZE
/ (GetYSize() + 1);
1374 LabelInfo
*best
= NULL
;
1375 int dist_sqrd
= sqrd_measure_threshold
;
1376 int square
= grid_x
+ grid_y
* HITTEST_SIZE
;
1377 list
<LabelInfo
*>::iterator iter
= m_PointGrid
[square
].begin();
1379 while (iter
!= m_PointGrid
[square
].end()) {
1380 LabelInfo
*pt
= *iter
++;
1384 Transform(*pt
, &cx
, &cy
, &cz
);
1386 cy
= GetYSize() - cy
;
1388 int dx
= point
.x
- int(cx
);
1390 if (ds
>= dist_sqrd
) continue;
1391 int dy
= point
.y
- int(cy
);
1394 if (ds
>= dist_sqrd
) continue;
1403 m_Parent
->ShowInfo(best
, m_there
);
1405 // FIXME: allow Ctrl-Click to not set there or something?
1407 WarpPointer(GetXSize() / 2, GetYSize() / 2);
1409 m_Parent
->SelectTreeItem(best
);
1412 // Left-clicking not on a survey cancels the measuring line.
1414 ClearTreeSelection();
1416 m_Parent
->ShowInfo(best
, m_there
);
1418 ReverseTransform(point
.x
, GetYSize() - point
.y
, &x
, &y
, &z
);
1419 temp_here
.assign(Vector3(x
, y
, z
));
1420 SetHere(&temp_here
);
1427 void GfxCore::OnSize(wxSizeEvent
& event
)
1429 // Handle a change in window size.
1430 wxSize size
= event
.GetSize();
1432 if (size
.GetWidth() <= 0 || size
.GetHeight() <= 0) {
1433 // Before things are fully initialised, we sometimes get a bogus
1434 // resize message...
1435 // FIXME have changes in MainFrm cured this? It still happens with
1436 // 1.0.32 and wxGTK 2.5.2 (load a file from the command line).
1437 // With 1.1.6 and wxGTK 2.4.2 we only get negative sizes if MainFrm
1438 // is resized such that the GfxCore window isn't visible.
1439 //printf("OnSize(%d,%d)\n", size.GetWidth(), size.GetHeight());
1445 if (m_DoneFirstShow
) {
1448 m_HitTestGridValid
= false;
1454 void GfxCore::DefaultParameters()
1456 // Set default viewing parameters.
1459 if (!m_Parent
->HasUndergroundLegs()) {
1460 if (m_Parent
->HasSurfaceLegs()) {
1461 // If there are surface legs, but no underground legs, turn
1462 // surface surveys on.
1465 // If there are no legs (e.g. after loading a .pos file), turn
1472 if (m_Parent
->IsExtendedElevation()) {
1475 m_TiltAngle
= -90.0;
1478 SetRotation(m_PanAngle
, m_TiltAngle
);
1479 SetTranslation(Vector3());
1481 m_RotationStep
= 30.0;
1484 m_Entrances
= false;
1486 m_ExportedPts
= false;
1488 m_BoundingBox
= false;
1490 if (GetPerspective()) TogglePerspective();
1492 // Set the initial scale.
1493 SetScale(initial_scale
);
1496 void GfxCore::Defaults()
1498 // Restore default scale, rotation and translation parameters.
1499 DefaultParameters();
1501 // Invalidate all the cached lists.
1502 GLACanvas::FirstShow();
1507 void GfxCore::Animate()
1509 // Don't show pointer coordinates while animating.
1510 // FIXME : only do this when we *START* animating! Use a static copy
1511 // of the value of "Animating()" last time we were here to track this?
1512 // MainFrm now checks if we're trying to clear already cleared labels
1513 // and just returns, but it might be simpler to check here!
1515 m_Parent
->ShowInfo();
1519 ReadPixels(movie
->GetWidth(), movie
->GetHeight(), movie
->GetBuffer());
1520 if (!movie
->AddFrame()) {
1521 wxGetApp().ReportError(wxString(movie
->get_error_string(), wxConvUTF8
));
1524 presentation_mode
= 0;
1527 t
= 1000 / 25; // 25 frames per second
1529 static long t_prev
= 0;
1531 // Avoid redrawing twice in the same frame.
1532 long delta_t
= (t_prev
== 0 ? 1000 / MAX_FRAMERATE
: t
- t_prev
);
1533 if (delta_t
< 1000 / MAX_FRAMERATE
)
1536 if (presentation_mode
== PLAYING
&& pres_speed
!= 0.0)
1540 if (presentation_mode
== PLAYING
&& pres_speed
!= 0.0) {
1541 // FIXME: It would probably be better to work relative to the time we
1542 // passed the last mark, but that's complicated by the speed
1543 // potentially changing (or even the direction of playback reversing)
1544 // at any point during playback.
1545 Double tick
= t
* 0.001 * fabs(pres_speed
);
1546 while (tick
>= next_mark_time
) {
1547 tick
-= next_mark_time
;
1548 this_mark_total
= 0;
1549 PresentationMark prev_mark
= next_mark
;
1550 if (prev_mark
.angle
< 0) prev_mark
.angle
+= 360.0;
1551 else if (prev_mark
.angle
>= 360.0) prev_mark
.angle
-= 360.0;
1553 next_mark
= m_Parent
->GetPresMark(MARK_PREV
);
1555 next_mark
= m_Parent
->GetPresMark(MARK_NEXT
);
1556 if (!next_mark
.is_valid()) {
1558 presentation_mode
= 0;
1559 if (movie
&& !movie
->Close()) {
1560 wxGetApp().ReportError(wxString(movie
->get_error_string(), wxConvUTF8
));
1567 double tmp
= (pres_reverse
? prev_mark
.time
: next_mark
.time
);
1569 next_mark_time
= tmp
;
1571 double d
= (next_mark
- prev_mark
).magnitude();
1572 // FIXME: should ignore component of d which is unseen in
1573 // non-perspective mode?
1574 next_mark_time
= sqrd(d
/ 30.0);
1575 double a
= next_mark
.angle
- prev_mark
.angle
;
1577 next_mark
.angle
-= 360.0;
1579 } else if (a
< -180.0) {
1580 next_mark
.angle
+= 360.0;
1585 next_mark_time
+= sqrd(a
/ 60.0);
1586 double ta
= fabs(next_mark
.tilt_angle
- prev_mark
.tilt_angle
);
1587 next_mark_time
+= sqrd(ta
/ 60.0);
1588 double s
= fabs(log(next_mark
.scale
) - log(prev_mark
.scale
));
1589 next_mark_time
+= sqrd(s
/ 2.0);
1590 next_mark_time
= sqrt(next_mark_time
);
1591 // was: next_mark_time = max(max(d / 30, s / 2), max(a, ta) / 60);
1592 //printf("*** %.6f from (\nd: %.6f\ns: %.6f\na: %.6f\nt: %.6f )\n",
1593 // next_mark_time, d/30.0, s/2.0, a/60.0, ta/60.0);
1594 if (tmp
< 0) next_mark_time
/= -tmp
;
1598 if (presentation_mode
) {
1599 // Advance position towards next_mark
1600 double p
= tick
/ next_mark_time
;
1602 PresentationMark here
= GetView();
1603 if (next_mark
.angle
< 0) {
1604 if (here
.angle
>= next_mark
.angle
+ 360.0)
1605 here
.angle
-= 360.0;
1606 } else if (next_mark
.angle
>= 360.0) {
1607 if (here
.angle
<= next_mark
.angle
- 360.0)
1608 here
.angle
+= 360.0;
1610 here
.assign(q
* here
+ p
* next_mark
);
1611 here
.angle
= q
* here
.angle
+ p
* next_mark
.angle
;
1612 if (here
.angle
< 0) here
.angle
+= 360.0;
1613 else if (here
.angle
>= 360.0) here
.angle
-= 360.0;
1614 here
.tilt_angle
= q
* here
.tilt_angle
+ p
* next_mark
.tilt_angle
;
1615 here
.scale
= exp(q
* log(here
.scale
) + p
* log(next_mark
.scale
));
1617 this_mark_total
+= tick
;
1618 next_mark_time
-= tick
;
1627 Double step
= base_pan
+ (t
- base_pan_time
) * 1e-3 * m_RotationStep
- m_PanAngle
;
1631 if (m_SwitchingTo
== PLAN
) {
1632 // When switching to plan view...
1633 Double step
= base_tilt
- (t
- base_tilt_time
) * 1e-3 * 90.0 - m_TiltAngle
;
1635 if (m_TiltAngle
== -90.0) {
1638 } else if (m_SwitchingTo
== ELEVATION
) {
1639 // When switching to elevation view...
1641 if (m_TiltAngle
> 0.0) {
1642 step
= base_tilt
- (t
- base_tilt_time
) * 1e-3 * 90.0 - m_TiltAngle
;
1644 step
= base_tilt
+ (t
- base_tilt_time
) * 1e-3 * 90.0 - m_TiltAngle
;
1646 if (fabs(step
) >= fabs(m_TiltAngle
)) {
1648 step
= -m_TiltAngle
;
1651 } else if (m_SwitchingTo
) {
1652 // Rotate the shortest way around to the destination angle. If we're
1653 // 180 off, we favour turning anticlockwise, as auto-rotation does by
1655 Double target
= (m_SwitchingTo
- NORTH
) * 90;
1656 Double diff
= target
- m_PanAngle
;
1657 diff
= fmod(diff
, 360);
1660 else if (diff
> 180)
1662 if (m_RotationStep
< 0 && diff
== 180.0)
1664 Double step
= base_pan
- m_PanAngle
;
1665 Double delta
= (t
- base_pan_time
) * 1e-3 * fabs(m_RotationStep
);
1671 step
= fmod(step
, 360);
1674 else if (step
> 180)
1676 if (fabs(step
) >= fabs(diff
)) {
1686 // How much to allow around the box - this is because of the ring shape
1687 // at one end of the line.
1688 static const int HIGHLIGHTED_PT_SIZE
= 2; // FIXME: tie in to blob and ring size
1689 #define MARGIN (HIGHLIGHTED_PT_SIZE * 2 + 1)
1690 void GfxCore::RefreshLine(const Point
*a
, const Point
*b
, const Point
*c
)
1696 // FIXME: We get odd redraw artifacts if we just update the line, and
1697 // redrawing the whole scene doesn't actually seem to be measurably
1698 // slower. That may not be true with software rendering though...
1701 // Best of all might be to copy the window contents before we draw the
1702 // line, then replace each time we redraw.
1704 // Calculate the minimum rectangle which includes the old and new
1705 // measuring lines to minimise the redraw time
1706 int l
= INT_MAX
, r
= INT_MIN
, u
= INT_MIN
, d
= INT_MAX
;
1709 if (!Transform(*a
, &X
, &Y
, &Z
)) {
1713 int y
= GetYSize() - 1 - int(Y
);
1721 if (!Transform(*b
, &X
, &Y
, &Z
)) {
1725 int y
= GetYSize() - 1 - int(Y
);
1733 if (!Transform(*c
, &X
, &Y
, &Z
)) {
1737 int y
= GetYSize() - 1 - int(Y
);
1748 RefreshRect(wxRect(l
, d
, r
- l
, u
- d
), false);
1752 void GfxCore::SetHereFromTree(const LabelInfo
* p
)
1755 m_Parent
->ShowInfo(m_here
, m_there
);
1758 void GfxCore::SetHere(const LabelInfo
*p
)
1760 if (p
== m_here
) return;
1761 bool line_active
= MeasuringLineActive();
1762 const LabelInfo
* old
= m_here
;
1764 if (line_active
|| MeasuringLineActive())
1765 RefreshLine(old
, m_there
, m_here
);
1768 void GfxCore::SetThere(const LabelInfo
* p
)
1770 if (p
== m_there
) return;
1771 const LabelInfo
* old
= m_there
;
1773 RefreshLine(m_here
, old
, m_there
);
1776 void GfxCore::CreateHitTestGrid()
1779 // Initialise hit-test grid.
1780 m_PointGrid
= new list
<LabelInfo
*>[HITTEST_SIZE
* HITTEST_SIZE
];
1782 // Clear hit-test grid.
1783 for (int i
= 0; i
< HITTEST_SIZE
* HITTEST_SIZE
; i
++) {
1784 m_PointGrid
[i
].clear();
1789 list
<LabelInfo
*>::const_iterator pos
= m_Parent
->GetLabels();
1790 list
<LabelInfo
*>::const_iterator end
= m_Parent
->GetLabelsEnd();
1791 while (pos
!= end
) {
1792 LabelInfo
* label
= *pos
++;
1794 if (!((m_Surface
&& label
->IsSurface()) ||
1795 (m_Legs
&& label
->IsUnderground()) ||
1796 (!label
->IsSurface() && !label
->IsUnderground()))) {
1797 // if this station isn't to be displayed, skip to the next
1798 // (last case is for stns with no legs attached)
1802 // Calculate screen coordinates.
1804 Transform(*label
, &cx
, &cy
, &cz
);
1805 if (cx
< 0 || cx
>= GetXSize()) continue;
1806 if (cy
< 0 || cy
>= GetYSize()) continue;
1808 cy
= GetYSize() - cy
;
1810 // On-screen, so add to hit-test grid...
1811 int grid_x
= int(cx
* HITTEST_SIZE
/ (GetXSize() + 1));
1812 int grid_y
= int(cy
* HITTEST_SIZE
/ (GetYSize() + 1));
1814 m_PointGrid
[grid_x
+ grid_y
* HITTEST_SIZE
].push_back(label
);
1817 m_HitTestGridValid
= true;
1821 // Methods for controlling the orientation of the survey
1824 void GfxCore::TurnCave(Double angle
)
1826 // Turn the cave around its z-axis by a given angle.
1828 m_PanAngle
+= angle
;
1829 // Wrap to range [0, 360):
1830 m_PanAngle
= fmod(m_PanAngle
, 360.0);
1831 if (m_PanAngle
< 0.0) {
1832 m_PanAngle
+= 360.0;
1835 m_HitTestGridValid
= false;
1836 if (m_here
&& m_here
== &temp_here
) SetHere();
1838 SetRotation(m_PanAngle
, m_TiltAngle
);
1841 void GfxCore::TurnCaveTo(Double angle
)
1844 // If we're rotating, jump to the specified angle.
1845 TurnCave(angle
- m_PanAngle
);
1850 int new_switching_to
= ((int)angle
) / 90 + NORTH
;
1851 if (new_switching_to
== m_SwitchingTo
) {
1852 // A second order to switch takes us there right away
1853 TurnCave(angle
- m_PanAngle
);
1858 m_SwitchingTo
= new_switching_to
;
1862 void GfxCore::TiltCave(Double tilt_angle
)
1864 // Tilt the cave by a given angle.
1865 if (m_TiltAngle
+ tilt_angle
> 90.0) {
1867 } else if (m_TiltAngle
+ tilt_angle
< -90.0) {
1868 m_TiltAngle
= -90.0;
1870 m_TiltAngle
+= tilt_angle
;
1873 m_HitTestGridValid
= false;
1874 if (m_here
&& m_here
== &temp_here
) SetHere();
1876 SetRotation(m_PanAngle
, m_TiltAngle
);
1879 void GfxCore::TranslateCave(int dx
, int dy
)
1881 AddTranslationScreenCoordinates(dx
, dy
);
1882 m_HitTestGridValid
= false;
1884 if (m_here
&& m_here
== &temp_here
) SetHere();
1889 void GfxCore::DragFinished()
1891 m_MouseOutsideCompass
= m_MouseOutsideElev
= false;
1895 void GfxCore::ClearCoords()
1897 m_Parent
->ClearCoords();
1900 void GfxCore::SetCoords(wxPoint point
)
1902 // We can't work out 2D coordinates from a perspective view, and it
1903 // doesn't really make sense to show coordinates while we're animating.
1904 if (GetPerspective() || Animating()) return;
1906 // Update the coordinate or altitude display, given the (x, y) position in
1907 // window coordinates. The relevant display is updated depending on
1908 // whether we're in plan or elevation view.
1913 ReverseTransform(point
.x
, GetYSize() - 1 - point
.y
, &cx
, &cy
, &cz
);
1915 if (ShowingPlan()) {
1916 m_Parent
->SetCoords(cx
+ m_Parent
->GetOffset().GetX(),
1917 cy
+ m_Parent
->GetOffset().GetY(),
1919 } else if (ShowingElevation()) {
1920 m_Parent
->SetAltitude(cz
+ m_Parent
->GetOffset().GetZ(),
1923 m_Parent
->ClearCoords();
1927 int GfxCore::GetCompassWidth() const
1929 static int result
= 0;
1931 result
= INDICATOR_BOX_SIZE
;
1933 const wxString
& msg
= wmsg(/*Facing*/203);
1934 GetTextExtent(msg
, &width
, NULL
);
1935 if (width
> result
) result
= width
;
1940 int GfxCore::GetClinoWidth() const
1942 static int result
= 0;
1944 result
= INDICATOR_BOX_SIZE
;
1946 const wxString
& msg1
= wmsg(/*Plan*/432);
1947 GetTextExtent(msg1
, &width
, NULL
);
1948 if (width
> result
) result
= width
;
1949 const wxString
& msg2
= wmsg(/*Kiwi Plan*/433);
1950 GetTextExtent(msg2
, &width
, NULL
);
1951 if (width
> result
) result
= width
;
1952 const wxString
& msg3
= wmsg(/*Elevation*/118);
1953 GetTextExtent(msg3
, &width
, NULL
);
1954 if (width
> result
) result
= width
;
1959 int GfxCore::GetCompassXPosition() const
1961 // Return the x-coordinate of the centre of the compass in window
1963 return GetXSize() - INDICATOR_OFFSET_X
- GetCompassWidth() / 2;
1966 int GfxCore::GetClinoXPosition() const
1968 // Return the x-coordinate of the centre of the compass in window
1970 return GetXSize() - GetClinoOffset() - GetClinoWidth() / 2;
1973 int GfxCore::GetIndicatorYPosition() const
1975 // Return the y-coordinate of the centre of the indicators in window
1977 return GetYSize() - INDICATOR_OFFSET_Y
- INDICATOR_BOX_SIZE
/ 2;
1980 int GfxCore::GetIndicatorRadius() const
1982 // Return the radius of each indicator.
1983 return (INDICATOR_BOX_SIZE
- INDICATOR_MARGIN
* 2) / 2;
1986 bool GfxCore::PointWithinCompass(wxPoint point
) const
1988 // Determine whether a point (in window coordinates) lies within the
1990 if (!ShowingCompass()) return false;
1992 glaCoord dx
= point
.x
- GetCompassXPosition();
1993 glaCoord dy
= point
.y
- GetIndicatorYPosition();
1994 glaCoord radius
= GetIndicatorRadius();
1996 return (dx
* dx
+ dy
* dy
<= radius
* radius
);
1999 bool GfxCore::PointWithinClino(wxPoint point
) const
2001 // Determine whether a point (in window coordinates) lies within the clino.
2002 if (!ShowingClino()) return false;
2004 glaCoord dx
= point
.x
- GetClinoXPosition();
2005 glaCoord dy
= point
.y
- GetIndicatorYPosition();
2006 glaCoord radius
= GetIndicatorRadius();
2008 return (dx
* dx
+ dy
* dy
<= radius
* radius
);
2011 bool GfxCore::PointWithinScaleBar(wxPoint point
) const
2013 // Determine whether a point (in window coordinates) lies within the scale
2015 if (!ShowingScaleBar()) return false;
2017 return (point
.x
>= SCALE_BAR_OFFSET_X
&&
2018 point
.x
<= SCALE_BAR_OFFSET_X
+ m_ScaleBarWidth
&&
2019 point
.y
<= GetYSize() - SCALE_BAR_OFFSET_Y
- SCALE_BAR_HEIGHT
&&
2020 point
.y
>= GetYSize() - SCALE_BAR_OFFSET_Y
- SCALE_BAR_HEIGHT
*2);
2023 bool GfxCore::PointWithinColourKey(wxPoint point
) const
2025 // Determine whether a point (in window coordinates) lies within the key.
2026 point
.x
-= GetXSize() - KEY_OFFSET_X
;
2027 point
.y
= KEY_OFFSET_Y
- point
.y
;
2028 return (point
.x
>= key_lowerleft
[m_ColourBy
].x
&& point
.x
<= 0 &&
2029 point
.y
>= key_lowerleft
[m_ColourBy
].y
&& point
.y
<= 0);
2032 void GfxCore::SetCompassFromPoint(wxPoint point
)
2034 // Given a point in window coordinates, set the heading of the survey. If
2035 // the point is outside the compass, it snaps to 45 degree intervals;
2036 // otherwise it operates as normal.
2038 wxCoord dx
= point
.x
- GetCompassXPosition();
2039 wxCoord dy
= point
.y
- GetIndicatorYPosition();
2040 wxCoord radius
= GetIndicatorRadius();
2042 double angle
= deg(atan2(double(dx
), double(dy
))) - 180.0;
2043 if (dx
* dx
+ dy
* dy
<= radius
* radius
) {
2044 TurnCave(angle
- m_PanAngle
);
2045 m_MouseOutsideCompass
= false;
2047 TurnCave(int(angle
/ 45.0) * 45.0 - m_PanAngle
);
2048 m_MouseOutsideCompass
= true;
2054 void GfxCore::SetClinoFromPoint(wxPoint point
)
2056 // Given a point in window coordinates, set the elevation of the survey.
2057 // If the point is outside the clino, it snaps to 90 degree intervals;
2058 // otherwise it operates as normal.
2060 glaCoord dx
= point
.x
- GetClinoXPosition();
2061 glaCoord dy
= point
.y
- GetIndicatorYPosition();
2062 glaCoord radius
= GetIndicatorRadius();
2064 if (dx
>= 0 && dx
* dx
+ dy
* dy
<= radius
* radius
) {
2065 TiltCave(-deg(atan2(double(dy
), double(dx
))) - m_TiltAngle
);
2066 m_MouseOutsideElev
= false;
2067 } else if (dy
>= INDICATOR_MARGIN
) {
2068 TiltCave(-90.0 - m_TiltAngle
);
2069 m_MouseOutsideElev
= true;
2070 } else if (dy
<= -INDICATOR_MARGIN
) {
2071 TiltCave(90.0 - m_TiltAngle
);
2072 m_MouseOutsideElev
= true;
2074 TiltCave(-m_TiltAngle
);
2075 m_MouseOutsideElev
= true;
2081 void GfxCore::SetScaleBarFromOffset(wxCoord dx
)
2083 // Set the scale of the survey, given an offset as to how much the mouse has
2084 // been dragged over the scalebar since the last scale change.
2086 SetScale((m_ScaleBarWidth
+ dx
) * m_Scale
/ m_ScaleBarWidth
);
2090 void GfxCore::RedrawIndicators()
2092 // Redraw the compass and clino indicators.
2094 int total_width
= GetCompassWidth() + INDICATOR_GAP
+ GetClinoWidth();
2095 RefreshRect(wxRect(GetXSize() - INDICATOR_OFFSET_X
- total_width
,
2096 GetYSize() - INDICATOR_OFFSET_Y
- INDICATOR_BOX_SIZE
,
2098 INDICATOR_BOX_SIZE
), false);
2101 void GfxCore::StartRotation()
2103 // Start the survey rotating.
2105 if (m_SwitchingTo
>= NORTH
)
2111 void GfxCore::ToggleRotation()
2113 // Toggle the survey rotation on/off.
2122 void GfxCore::StopRotation()
2124 // Stop the survey rotating.
2130 bool GfxCore::IsExtendedElevation() const
2132 return m_Parent
->IsExtendedElevation();
2135 void GfxCore::ReverseRotation()
2137 // Reverse the direction of rotation.
2139 m_RotationStep
= -m_RotationStep
;
2144 void GfxCore::RotateSlower(bool accel
)
2146 // Decrease the speed of rotation, optionally by an increased amount.
2147 if (fabs(m_RotationStep
) == 1.0)
2150 m_RotationStep
*= accel
? (1 / 1.44) : (1 / 1.2);
2152 if (fabs(m_RotationStep
) < 1.0) {
2153 m_RotationStep
= (m_RotationStep
> 0 ? 1.0 : -1.0);
2159 void GfxCore::RotateFaster(bool accel
)
2161 // Increase the speed of rotation, optionally by an increased amount.
2162 if (fabs(m_RotationStep
) == 180.0)
2165 m_RotationStep
*= accel
? 1.44 : 1.2;
2166 if (fabs(m_RotationStep
) > 180.0) {
2167 m_RotationStep
= (m_RotationStep
> 0 ? 180.0 : -180.0);
2173 void GfxCore::SwitchToElevation()
2175 // Perform an animated switch to elevation view.
2177 if (m_SwitchingTo
!= ELEVATION
) {
2179 m_SwitchingTo
= ELEVATION
;
2181 // A second order to switch takes us there right away
2182 TiltCave(-m_TiltAngle
);
2188 void GfxCore::SwitchToPlan()
2190 // Perform an animated switch to plan view.
2192 if (m_SwitchingTo
!= PLAN
) {
2194 m_SwitchingTo
= PLAN
;
2196 // A second order to switch takes us there right away
2197 TiltCave(-90.0 - m_TiltAngle
);
2203 void GfxCore::SetViewTo(Double xmin
, Double xmax
, Double ymin
, Double ymax
, Double zmin
, Double zmax
)
2206 SetTranslation(-Vector3((xmin
+ xmax
) / 2, (ymin
+ ymax
) / 2, (zmin
+ zmax
) / 2));
2207 Double scale
= HUGE_VAL
;
2208 const Vector3 ext
= m_Parent
->GetExtent();
2210 Double s
= ext
.GetX() / (xmax
- xmin
);
2211 if (s
< scale
) scale
= s
;
2214 Double s
= ext
.GetY() / (ymax
- ymin
);
2215 if (s
< scale
) scale
= s
;
2217 if (!ShowingPlan() && zmax
> zmin
) {
2218 Double s
= ext
.GetZ() / (zmax
- zmin
);
2219 if (s
< scale
) scale
= s
;
2221 if (scale
!= HUGE_VAL
) SetScale(scale
);
2225 bool GfxCore::CanRaiseViewpoint() const
2227 // Determine if the survey can be viewed from a higher angle of elevation.
2229 return GetPerspective() ? (m_TiltAngle
< 90.0) : (m_TiltAngle
> -90.0);
2232 bool GfxCore::CanLowerViewpoint() const
2234 // Determine if the survey can be viewed from a lower angle of elevation.
2236 return GetPerspective() ? (m_TiltAngle
> -90.0) : (m_TiltAngle
< 90.0);
2239 bool GfxCore::HasDepth() const
2241 return m_Parent
->GetDepthExtent() == 0.0;
2244 bool GfxCore::HasErrorInformation() const
2246 return m_Parent
->HasErrorInformation();
2249 bool GfxCore::HasDateInformation() const
2251 return m_Parent
->GetDateMin() >= 0;
2254 bool GfxCore::ShowingPlan() const
2256 // Determine if the survey is in plan view.
2258 return (m_TiltAngle
== -90.0);
2261 bool GfxCore::ShowingElevation() const
2263 // Determine if the survey is in elevation view.
2265 return (m_TiltAngle
== 0.0);
2268 bool GfxCore::ShowingMeasuringLine() const
2270 // Determine if the measuring line is being shown. Only check if "there"
2271 // is valid, since that means the measuring line anchor is out.
2276 void GfxCore::ToggleFlag(bool* flag
, int update
)
2279 if (update
== UPDATE_BLOBS
) {
2281 } else if (update
== UPDATE_BLOBS_AND_CROSSES
) {
2283 InvalidateList(LIST_CROSSES
);
2284 m_HitTestGridValid
= false;
2289 int GfxCore::GetNumEntrances() const
2291 return m_Parent
->GetNumEntrances();
2294 int GfxCore::GetNumFixedPts() const
2296 return m_Parent
->GetNumFixedPts();
2299 int GfxCore::GetNumExportedPts() const
2301 return m_Parent
->GetNumExportedPts();
2304 void GfxCore::ToggleTerrain()
2306 if (!m_Terrain
&& !dem
) {
2307 // OnOpenTerrain() calls us if a file is selected.
2308 wxCommandEvent dummy
;
2309 m_Parent
->OnOpenTerrain(dummy
);
2312 ToggleFlag(&m_Terrain
);
2315 void GfxCore::ToggleFatFinger()
2317 if (sqrd_measure_threshold
== sqrd(MEASURE_THRESHOLD
)) {
2318 sqrd_measure_threshold
= sqrd(5 * MEASURE_THRESHOLD
);
2319 wxMessageBox(wxT("Fat finger enabled"), wxT("Aven Debug"), wxOK
| wxICON_INFORMATION
);
2321 sqrd_measure_threshold
= sqrd(MEASURE_THRESHOLD
);
2322 wxMessageBox(wxT("Fat finger disabled"), wxT("Aven Debug"), wxOK
| wxICON_INFORMATION
);
2326 void GfxCore::ClearTreeSelection()
2328 m_Parent
->ClearTreeSelection();
2331 void GfxCore::CentreOn(const Point
&p
)
2334 m_HitTestGridValid
= false;
2339 void GfxCore::ForceRefresh()
2344 void GfxCore::GenerateList(unsigned int l
)
2355 case LIST_CLINO_BACK
:
2358 case LIST_SCALE_BAR
:
2361 case LIST_DEPTH_KEY
:
2367 case LIST_ERROR_KEY
:
2370 case LIST_GRADIENT_KEY
:
2373 case LIST_LENGTH_KEY
:
2376 case LIST_UNDERGROUND_LEGS
:
2377 GenerateDisplayList(false);
2380 GenerateDisplayListTubes();
2382 case LIST_SURFACE_LEGS
:
2383 GenerateDisplayList(true);
2386 GenerateBlobsDisplayList();
2388 case LIST_CROSSES
: {
2390 SetColour(col_LIGHT_GREY
);
2391 list
<LabelInfo
*>::const_iterator pos
= m_Parent
->GetLabels();
2392 while (pos
!= m_Parent
->GetLabelsEnd()) {
2393 const LabelInfo
* label
= *pos
++;
2395 if ((m_Surface
&& label
->IsSurface()) ||
2396 (m_Legs
&& label
->IsUnderground()) ||
2397 (!label
->IsSurface() && !label
->IsUnderground())) {
2398 // Check if this station should be displayed
2399 // (last case is for stns with no legs attached)
2400 DrawCross(label
->GetX(), label
->GetY(), label
->GetZ());
2410 GenerateDisplayListShadow();
2421 void GfxCore::ToggleSmoothShading()
2423 GLACanvas::ToggleSmoothShading();
2424 InvalidateList(LIST_TUBES
);
2428 void GfxCore::GenerateDisplayList(bool surface
)
2430 unsigned surf_or_not
= surface
? img_FLAG_SURFACE
: 0;
2431 // Generate the display list for the surface or underground legs.
2432 for (int f
= 0; f
!= 8; ++f
) {
2433 if ((f
& img_FLAG_SURFACE
) != surf_or_not
) continue;
2434 const unsigned SHOW_DASHED_AND_FADED
= unsigned(-1);
2435 unsigned style
= SHOW_NORMAL
;
2436 if ((f
& img_FLAG_SPLAY
) && m_Splays
!= SHOW_NORMAL
) {
2438 } else if (f
& img_FLAG_DUPLICATE
) {
2441 if (f
& img_FLAG_SURFACE
) {
2442 if (style
== SHOW_FADED
) {
2443 style
= SHOW_DASHED_AND_FADED
;
2445 style
= SHOW_DASHED
;
2456 EnableDashedLines();
2458 case SHOW_DASHED_AND_FADED
:
2460 EnableDashedLines();
2464 void (GfxCore::* add_poly
)(const traverse
&);
2466 if (m_ColourBy
== COLOUR_BY_ERROR
) {
2467 add_poly
= &GfxCore::AddPolylineError
;
2469 add_poly
= &GfxCore::AddPolyline
;
2475 list
<traverse
>::const_iterator trav
= m_Parent
->traverses_begin(f
);
2476 list
<traverse
>::const_iterator tend
= m_Parent
->traverses_end(f
);
2477 while (trav
!= tend
) {
2478 (this->*add_poly
)(*trav
);
2487 DisableDashedLines();
2489 case SHOW_DASHED_AND_FADED
:
2490 DisableDashedLines();
2497 void GfxCore::GenerateDisplayListTubes()
2499 // Generate the display list for the tubes.
2500 list
<vector
<XSect
> >::iterator trav
= m_Parent
->tubes_begin();
2501 list
<vector
<XSect
> >::iterator tend
= m_Parent
->tubes_end();
2502 while (trav
!= tend
) {
2508 void GfxCore::GenerateDisplayListShadow()
2510 SetColour(col_BLACK
);
2511 for (int f
= 0; f
!= 8; ++f
) {
2512 // Only include underground legs in the shadow.
2513 if ((f
& img_FLAG_SURFACE
) != 0) continue;
2514 list
<traverse
>::const_iterator trav
= m_Parent
->traverses_begin(f
);
2515 list
<traverse
>::const_iterator tend
= m_Parent
->traverses_end(f
);
2516 while (trav
!= tend
) {
2517 AddPolylineShadow(*trav
);
2524 GfxCore::parse_hgt_filename(const wxString
& lc_name
)
2526 char * leaf
= leaf_from_fnm(lc_name
.utf8_str());
2527 const char * p
= leaf
;
2530 o_y
= strtoul(p
, &q
, 10);
2536 o_x
= strtoul(p
, &q
, 10);
2540 nodata_value
= -32768;
2545 GfxCore::parse_hdr(wxInputStream
& is
, unsigned long & skipbytes
)
2547 // ESRI docs say NBITS defaults to 8.
2548 unsigned long nbits
= 8;
2549 // ESRI docs say NBANDS defaults to 1.
2550 unsigned long nbands
= 1;
2551 unsigned long bandrowbytes
= 0;
2552 unsigned long totalrowbytes
= 0;
2553 // ESRI docs say ULXMAP defaults to 0.
2555 // ESRI docs say ULYMAP defaults to NROWS - 1.
2557 // ESRI docs say XDIM and YDIM default to 1.
2558 step_x
= step_y
= 1.0;
2562 while ((ch
= is
.GetC()) != wxEOF
) {
2563 if (ch
== '\n' || ch
== '\r') break;
2566 #define CHECK(X, COND) \
2567 } else if (line.StartsWith(wxT(X " "))) { \
2568 size_t v = line.find_first_not_of(wxT(' '), sizeof(X)); \
2569 if (v == line.npos || !(COND)) { \
2570 err += wxT("Unexpected value for " X); \
2574 // I = little-endian; M = big-endian
2575 CHECK("BYTEORDER", (bigendian
= (line
[v
] == 'M')) || line
[v
] == 'I')
2576 // ESRI docs say LAYOUT defaults to BIL if not specified.
2577 CHECK("LAYOUT", line
.substr(v
) == wxT("BIL"))
2578 CHECK("NROWS", line
.substr(v
).ToCULong(&dem_height
))
2579 CHECK("NCOLS", line
.substr(v
).ToCULong(&dem_width
))
2580 // ESRI docs say NBANDS defaults to 1 if not specified.
2581 CHECK("NBANDS", line
.substr(v
).ToCULong(&nbands
) && nbands
== 1)
2582 CHECK("NBITS", line
.substr(v
).ToCULong(&nbits
) && nbits
== 16)
2583 CHECK("BANDROWBYTES", line
.substr(v
).ToCULong(&bandrowbytes
))
2584 CHECK("TOTALROWBYTES", line
.substr(v
).ToCULong(&totalrowbytes
))
2585 // PIXELTYPE is a GDAL extension, so may not be present.
2586 CHECK("PIXELTYPE", line
.substr(v
) == wxT("SIGNEDINT"))
2587 CHECK("ULXMAP", line
.substr(v
).ToCDouble(&o_x
))
2588 CHECK("ULYMAP", line
.substr(v
).ToCDouble(&o_y
))
2589 CHECK("XDIM", line
.substr(v
).ToCDouble(&step_x
))
2590 CHECK("YDIM", line
.substr(v
).ToCDouble(&step_y
))
2591 CHECK("NODATA", line
.substr(v
).ToCLong(&nodata_value
))
2592 CHECK("SKIPBYTES", line
.substr(v
).ToCULong(&skipbytes
))
2598 if (o_y
== HUGE_VAL
) {
2599 o_y
= dem_height
- 1;
2601 if (bandrowbytes
!= 0) {
2602 if (nbits
* dem_width
!= bandrowbytes
* 8) {
2603 wxMessageBox("BANDROWBYTES setting indicates unused bits after each band - not currently supported");
2606 if (totalrowbytes
!= 0) {
2607 // This is the ESRI default for BIL, for BIP it would be
2608 // nbands * bandrowbytes.
2609 if (nbands
* nbits
* dem_width
!= totalrowbytes
* 8) {
2610 wxMessageBox("TOTALROWBYTES setting indicates unused bits after "
2611 "each row - not currently supported");
2614 return ((nbits
* dem_width
+ 7) / 8) * dem_height
;
2618 GfxCore::read_bil(wxInputStream
& is
, size_t size
, unsigned long skipbytes
)
2620 bool know_size
= true;
2622 // If the stream doesn't know its size, GetSize() returns 0.
2623 size
= is
.GetSize();
2625 size
= DEFAULT_HGT_SIZE
;
2629 dem
= new unsigned short[size
/ 2];
2631 if (is
.SeekI(skipbytes
, wxFromStart
) == ::wxInvalidOffset
) {
2633 unsigned long to_read
= skipbytes
;
2634 if (size
< to_read
) to_read
= size
;
2635 is
.Read(reinterpret_cast<char *>(dem
), to_read
);
2636 size_t c
= is
.LastRead();
2638 wxMessageBox(wxT("Failed to skip terrain data header"));
2646 #if wxCHECK_VERSION(2,9,5)
2647 if (!is
.ReadAll(dem
, size
)) {
2649 // FIXME: On __WXMSW__ currently we fail to
2650 // read any data from files in zips.
2653 wxMessageBox(wxT("Failed to read terrain data"));
2656 size
= is
.LastRead();
2659 char * p
= reinterpret_cast<char *>(dem
);
2662 size_t c
= is
.LastRead();
2665 size
= DEFAULT_HGT_SIZE
- size
;
2671 wxMessageBox(wxT("Failed to read terrain data"));
2679 if (dem_width
== 0 && dem_height
== 0) {
2680 dem_width
= dem_height
= sqrt(size
/ 2);
2681 if (dem_width
* dem_height
* 2 != size
) {
2684 wxMessageBox(wxT("HGT format data doesn't form a square"));
2687 step_x
= step_y
= 1.0 / dem_width
;
2693 bool GfxCore::LoadDEM(const wxString
& file
)
2695 if (m_Parent
->m_cs_proj
.empty()) {
2696 wxMessageBox(wxT("No coordinate system specified in survey data"));
2704 // Default is to not skip any bytes.
2705 unsigned long skipbytes
= 0;
2706 // For .hgt files, default to using filesize to determine.
2707 dem_width
= dem_height
= 0;
2708 // ESRI say "The default byte order is the same as that of the host machine
2709 // executing the software", but that's stupid so we default to
2713 wxFileInputStream
fs(file
);
2715 wxMessageBox(wxT("Failed to open DEM file"));
2719 const wxString
& lc_file
= file
.Lower();
2720 if (lc_file
.EndsWith(wxT(".hgt"))) {
2721 parse_hgt_filename(lc_file
);
2722 read_bil(fs
, size
, skipbytes
);
2723 } else if (lc_file
.EndsWith(wxT(".bil"))) {
2724 wxString hdr_file
= file
;
2725 hdr_file
.replace(file
.size() - 4, 4, wxT(".hdr"));
2726 wxFileInputStream
hdr_is(hdr_file
);
2727 if (!hdr_is
.IsOk()) {
2728 wxMessageBox(wxT("Failed to open HDR file '") + hdr_file
+ wxT("'"));
2731 size
= parse_hdr(hdr_is
, skipbytes
);
2732 read_bil(fs
, size
, skipbytes
);
2733 } else if (lc_file
.EndsWith(wxT(".zip"))) {
2734 wxZipEntry
* ze_data
= NULL
;
2735 wxZipInputStream
zs(fs
);
2737 while ((ze
= zs
.GetNextEntry()) != NULL
) {
2739 const wxString
& lc_name
= ze
->GetName().Lower();
2740 if (!ze_data
&& lc_name
.EndsWith(wxT(".hgt"))) {
2741 // SRTM .hgt files are raw binary data, with the filename
2742 // encoding the coordinates.
2743 parse_hgt_filename(lc_name
);
2744 read_bil(zs
, size
, skipbytes
);
2749 if (!ze_data
&& lc_name
.EndsWith(wxT(".bil"))) {
2751 read_bil(zs
, size
, skipbytes
);
2758 if (lc_name
.EndsWith(wxT(".hdr"))) {
2759 size
= parse_hdr(zs
, skipbytes
);
2761 if (!zs
.OpenEntry(*ze_data
)) {
2762 wxMessageBox(wxT("Couldn't read DEM data from .zip file"));
2765 read_bil(zs
, size
, skipbytes
);
2767 } else if (lc_name
.EndsWith(wxT(".prj"))) {
2768 //FIXME: check this matches the datum string we use
2769 //Projection GEOGRAPHIC
2774 //Xshift 0.0000000000
2775 //Yshift 0.0000000000
2788 InvalidateList(LIST_TERRAIN
);
2793 void GfxCore::DrawTerrainTriangle(const Vector3
& a
, const Vector3
& b
, const Vector3
& c
)
2795 Vector3 n
= (b
- a
) * (c
- a
);
2797 Double factor
= dot(n
, light
) * .95 + .05;
2798 SetColour(col_WHITE
, factor
);
2805 // Like wxBusyCursor, but you can cancel it early.
2806 class AvenBusyCursor
{
2810 AvenBusyCursor() : active(true) {
2811 wxBeginBusyCursor();
2826 void GfxCore::DrawTerrain()
2830 AvenBusyCursor hourglass
;
2832 // Draw terrain to twice the extent, or at least 1km.
2833 double r_sqrd
= sqrd(max(m_Parent
->GetExtent().magnitude(), 1000.0));
2834 #define WGS84_DATUM_STRING "+proj=longlat +ellps=WGS84 +datum=WGS84"
2835 static projPJ pj_in
= pj_init_plus(WGS84_DATUM_STRING
);
2841 error(/*Failed to initialise input coordinate system “%s”*/287, WGS84_DATUM_STRING
);
2844 static projPJ pj_out
= pj_init_plus(m_Parent
->m_cs_proj
.c_str());
2850 error(/*Failed to initialise output coordinate system “%s”*/288, (const char *)m_Parent
->m_cs_proj
.c_str());
2856 const Vector3
& off
= m_Parent
->GetOffset();
2857 vector
<Vector3
> prevcol(dem_height
+ 1);
2858 for (size_t x
= 0; x
< dem_width
; ++x
) {
2859 double X_
= (o_x
+ x
* step_x
) * DEG_TO_RAD
;
2861 for (size_t y
= 0; y
< dem_height
; ++y
) {
2862 unsigned short elev
= dem
[x
+ y
* dem_width
];
2863 #ifdef WORDS_BIGENDIAN
2864 const bool MACHINE_BIGENDIAN
= true;
2866 const bool MACHINE_BIGENDIAN
= false;
2868 if (bigendian
!= MACHINE_BIGENDIAN
) {
2869 #if defined __GNUC__ && (__GNUC__ * 100 + __GNUC_MINOR__ >= 408)
2870 elev
= __builtin_bswap16(elev
);
2872 elev
= (elev
>> 8) | (elev
<< 8);
2875 double Z
= (short)elev
;
2877 if (Z
== nodata_value
) {
2878 pt
= Vector3(DBL_MAX
, DBL_MAX
, DBL_MAX
);
2881 double Y
= (o_y
- y
* step_y
) * DEG_TO_RAD
;
2882 pj_transform(pj_in
, pj_out
, 1, 1, &X
, &Y
, &Z
);
2883 pt
= Vector3(X
, Y
, Z
) - off
;
2884 double dist_2
= sqrd(pt
.GetX()) + sqrd(pt
.GetY());
2885 if (dist_2
> r_sqrd
) {
2886 pt
= Vector3(DBL_MAX
, DBL_MAX
, DBL_MAX
);
2889 if (x
> 0 && y
> 0) {
2890 const Vector3
& a
= prevcol
[y
- 1];
2891 const Vector3
& b
= prevcol
[y
];
2892 // If all points are valid, split the quadrilateral into
2893 // triangles along the shorter 3D diagonal, which typically
2897 // prev---a x prev---a
2899 // y | | / | or | \ |
2905 enum { NONE
= 0, P
= 1, Q
= 2, R
= 4, S
= 8, ALL
= P
|Q
|R
|S
};
2907 ((prev
.GetZ() != DBL_MAX
)) |
2908 ((a
.GetZ() != DBL_MAX
) << 1) |
2909 ((b
.GetZ() != DBL_MAX
) << 2) |
2910 ((pt
.GetZ() != DBL_MAX
) << 3);
2911 static const int tris_map
[16] = {
2912 NONE
, // nothing valid
2927 ALL
, // pt, b, a, prev
2929 int tris
= tris_map
[valid
];
2931 // All points valid.
2932 if ((a
- b
).magnitude() < (prev
- pt
).magnitude()) {
2939 DrawTerrainTriangle(a
, prev
, b
);
2941 DrawTerrainTriangle(a
, b
, pt
);
2943 DrawTerrainTriangle(pt
, prev
, b
);
2945 DrawTerrainTriangle(a
, prev
, pt
);
2948 prevcol
[y
].assign(pt
);
2958 /* TRANSLATORS: Aven shows a circle of terrain covering the area
2959 * of the survey plus a bit, but the terrain data file didn't
2960 * contain any data inside that circle.
2962 error(/*No terrain data near area of survey*/161);
2967 void GfxCore::GenerateBlobsDisplayList()
2969 if (!(m_Entrances
|| m_FixedPts
|| m_ExportedPts
||
2970 m_Parent
->GetNumHighlightedPts()))
2974 gla_colour prev_col
= col_BLACK
; // not a colour used for blobs
2975 list
<LabelInfo
*>::const_iterator pos
= m_Parent
->GetLabels();
2977 while (pos
!= m_Parent
->GetLabelsEnd()) {
2978 const LabelInfo
* label
= *pos
++;
2980 // When more than one flag is set on a point:
2981 // search results take priority over entrance highlighting
2982 // which takes priority over fixed point
2983 // highlighting, which in turn takes priority over exported
2984 // point highlighting.
2986 if (!((m_Surface
&& label
->IsSurface()) ||
2987 (m_Legs
&& label
->IsUnderground()) ||
2988 (!label
->IsSurface() && !label
->IsUnderground()))) {
2989 // if this station isn't to be displayed, skip to the next
2990 // (last case is for stns with no legs attached)
2996 if (label
->IsHighLighted()) {
2998 } else if (m_Entrances
&& label
->IsEntrance()) {
3000 } else if (m_FixedPts
&& label
->IsFixedPt()) {
3002 } else if (m_ExportedPts
&& label
->IsExportedPt()) {
3003 col
= col_TURQUOISE
;
3008 // Stations are sorted by blob type, so colour changes are infrequent.
3009 if (col
!= prev_col
) {
3013 DrawBlob(label
->GetX(), label
->GetY(), label
->GetZ());
3018 void GfxCore::DrawIndicators()
3022 drawing_list key_list
= LIST_LIMIT_
;
3023 switch (m_ColourBy
) {
3024 case COLOUR_BY_DEPTH
:
3025 key_list
= LIST_DEPTH_KEY
; break;
3026 case COLOUR_BY_DATE
:
3027 key_list
= LIST_DATE_KEY
; break;
3028 case COLOUR_BY_ERROR
:
3029 key_list
= LIST_ERROR_KEY
; break;
3030 case COLOUR_BY_GRADIENT
:
3031 key_list
= LIST_GRADIENT_KEY
; break;
3032 case COLOUR_BY_LENGTH
:
3033 key_list
= LIST_LENGTH_KEY
; break;
3035 if (key_list
!= LIST_LIMIT_
) {
3036 DrawList2D(key_list
, GetXSize() - KEY_OFFSET_X
,
3037 GetYSize() - KEY_OFFSET_Y
, 0);
3041 // Draw compass or elevation/heading indicators.
3042 if (m_Compass
|| m_Clino
) {
3043 if (!m_Parent
->IsExtendedElevation()) Draw2dIndicators();
3048 DrawList2D(LIST_SCALE_BAR
, 0, 0, 0);
3052 void GfxCore::PlaceVertexWithColour(const Vector3
& v
,
3053 glaTexCoord tex_x
, glaTexCoord tex_y
,
3056 SetColour(col_WHITE
, factor
);
3057 PlaceVertex(v
, tex_x
, tex_y
);
3060 void GfxCore::SetDepthColour(Double z
, Double factor
) {
3061 // Set the drawing colour based on the altitude.
3062 Double z_ext
= m_Parent
->GetDepthExtent();
3064 z
-= m_Parent
->GetDepthMin();
3065 // points arising from tubes may be slightly outside the limits...
3067 if (z
> z_ext
) z
= z_ext
;
3070 SetColour(GetPen(0), factor
);
3074 assert(z_ext
> 0.0);
3075 Double how_far
= z
/ z_ext
;
3076 assert(how_far
>= 0.0);
3077 assert(how_far
<= 1.0);
3079 int band
= int(floor(how_far
* (GetNumColourBands() - 1)));
3080 GLAPen pen1
= GetPen(band
);
3081 if (band
< GetNumColourBands() - 1) {
3082 const GLAPen
& pen2
= GetPen(band
+ 1);
3084 Double interval
= z_ext
/ (GetNumColourBands() - 1);
3085 Double into_band
= z
/ interval
- band
;
3087 // printf("%g z_offset=%g interval=%g band=%d\n", into_band,
3088 // z_offset, interval, band);
3089 // FIXME: why do we need to clamp here? Is it because the walls can
3090 // extend further up/down than the centre-line?
3091 if (into_band
< 0.0) into_band
= 0.0;
3092 if (into_band
> 1.0) into_band
= 1.0;
3093 assert(into_band
>= 0.0);
3094 assert(into_band
<= 1.0);
3096 pen1
.Interpolate(pen2
, into_band
);
3098 SetColour(pen1
, factor
);
3101 void GfxCore::PlaceVertexWithDepthColour(const Vector3
&v
, Double factor
)
3103 SetDepthColour(v
.GetZ(), factor
);
3107 void GfxCore::PlaceVertexWithDepthColour(const Vector3
&v
,
3108 glaTexCoord tex_x
, glaTexCoord tex_y
,
3111 SetDepthColour(v
.GetZ(), factor
);
3112 PlaceVertex(v
, tex_x
, tex_y
);
3115 void GfxCore::SplitLineAcrossBands(int band
, int band2
,
3116 const Vector3
&p
, const Vector3
&q
,
3119 const int step
= (band
< band2
) ? 1 : -1;
3120 for (int i
= band
; i
!= band2
; i
+= step
) {
3121 const Double z
= GetDepthBoundaryBetweenBands(i
, i
+ step
);
3123 // Find the intersection point of the line p -> q
3124 // with the plane parallel to the xy-plane with z-axis intersection z.
3125 assert(q
.GetZ() - p
.GetZ() != 0.0);
3127 const Double t
= (z
- p
.GetZ()) / (q
.GetZ() - p
.GetZ());
3128 // assert(0.0 <= t && t <= 1.0); FIXME: rounding problems!
3130 const Double x
= p
.GetX() + t
* (q
.GetX() - p
.GetX());
3131 const Double y
= p
.GetY() + t
* (q
.GetY() - p
.GetY());
3133 PlaceVertexWithDepthColour(Vector3(x
, y
, z
), factor
);
3137 void GfxCore::SplitPolyAcrossBands(vector
<vector
<Split
> >& splits
,
3138 int band
, int band2
,
3139 const Vector3
&p
, const Vector3
&q
,
3140 glaTexCoord ptx
, glaTexCoord pty
,
3141 glaTexCoord w
, glaTexCoord h
)
3143 const int step
= (band
< band2
) ? 1 : -1;
3144 for (int i
= band
; i
!= band2
; i
+= step
) {
3145 const Double z
= GetDepthBoundaryBetweenBands(i
, i
+ step
);
3147 // Find the intersection point of the line p -> q
3148 // with the plane parallel to the xy-plane with z-axis intersection z.
3149 assert(q
.GetZ() - p
.GetZ() != 0.0);
3151 const Double t
= (z
- p
.GetZ()) / (q
.GetZ() - p
.GetZ());
3152 // assert(0.0 <= t && t <= 1.0); FIXME: rounding problems!
3154 const Double x
= p
.GetX() + t
* (q
.GetX() - p
.GetX());
3155 const Double y
= p
.GetY() + t
* (q
.GetY() - p
.GetY());
3156 glaTexCoord tx
= ptx
, ty
= pty
;
3160 splits
[i
].push_back(Split(Vector3(x
, y
, z
), tx
, ty
));
3161 splits
[i
+ step
].push_back(Split(Vector3(x
, y
, z
), tx
, ty
));
3165 int GfxCore::GetDepthColour(Double z
) const
3167 // Return the (0-based) depth colour band index for a z-coordinate.
3168 Double z_ext
= m_Parent
->GetDepthExtent();
3169 z
-= m_Parent
->GetDepthMin();
3170 // We seem to get rounding differences causing z to sometimes be slightly
3171 // less than GetDepthMin() here, and it can certainly be true for passage
3172 // tubes, so just clamp the value to 0.
3173 if (z
<= 0) return 0;
3174 // We seem to get rounding differences causing z to sometimes exceed z_ext
3175 // by a small amount here (see: https://trac.survex.com/ticket/26) and it
3176 // can certainly be true for passage tubes, so just clamp the value.
3177 if (z
>= z_ext
) return GetNumColourBands() - 1;
3178 return int(z
/ z_ext
* (GetNumColourBands() - 1));
3181 Double
GfxCore::GetDepthBoundaryBetweenBands(int a
, int b
) const
3183 // Return the z-coordinate of the depth colour boundary between
3184 // two adjacent depth colour bands (specified by 0-based indices).
3186 assert((a
== b
- 1) || (a
== b
+ 1));
3187 if (GetNumColourBands() == 1) return 0;
3189 int band
= (a
> b
) ? a
: b
; // boundary N lies on the bottom of band N.
3190 Double z_ext
= m_Parent
->GetDepthExtent();
3191 return (z_ext
* band
/ (GetNumColourBands() - 1)) + m_Parent
->GetDepthMin();
3194 void GfxCore::AddPolyline(const traverse
& centreline
)
3197 SetColour(col_WHITE
);
3198 vector
<PointInfo
>::const_iterator i
= centreline
.begin();
3201 while (i
!= centreline
.end()) {
3208 void GfxCore::AddPolylineShadow(const traverse
& centreline
)
3211 const double z
= -0.5 * m_Parent
->GetZExtent();
3212 vector
<PointInfo
>::const_iterator i
= centreline
.begin();
3213 PlaceVertex(i
->GetX(), i
->GetY(), z
);
3215 while (i
!= centreline
.end()) {
3216 PlaceVertex(i
->GetX(), i
->GetY(), z
);
3222 void GfxCore::AddPolylineDepth(const traverse
& centreline
)
3225 vector
<PointInfo
>::const_iterator i
, prev_i
;
3226 i
= centreline
.begin();
3227 int band0
= GetDepthColour(i
->GetZ());
3228 PlaceVertexWithDepthColour(*i
);
3231 while (i
!= centreline
.end()) {
3232 int band
= GetDepthColour(i
->GetZ());
3233 if (band
!= band0
) {
3234 SplitLineAcrossBands(band0
, band
, *prev_i
, *i
);
3237 PlaceVertexWithDepthColour(*i
);
3244 void GfxCore::AddQuadrilateral(const Vector3
&a
, const Vector3
&b
,
3245 const Vector3
&c
, const Vector3
&d
)
3247 Vector3 normal
= (a
- c
) * (d
- b
);
3249 Double factor
= dot(normal
, light
) * .3 + .7;
3250 glaTexCoord
w(((b
- a
).magnitude() + (d
- c
).magnitude()) * .5);
3251 glaTexCoord
h(((b
- c
).magnitude() + (d
- a
).magnitude()) * .5);
3252 // FIXME: should plot triangles instead to avoid rendering glitches.
3253 BeginQuadrilaterals();
3254 PlaceVertexWithColour(a
, 0, 0, factor
);
3255 PlaceVertexWithColour(b
, w
, 0, factor
);
3256 PlaceVertexWithColour(c
, w
, h
, factor
);
3257 PlaceVertexWithColour(d
, 0, h
, factor
);
3258 EndQuadrilaterals();
3261 void GfxCore::AddQuadrilateralDepth(const Vector3
&a
, const Vector3
&b
,
3262 const Vector3
&c
, const Vector3
&d
)
3264 Vector3 normal
= (a
- c
) * (d
- b
);
3266 Double factor
= dot(normal
, light
) * .3 + .7;
3267 int a_band
, b_band
, c_band
, d_band
;
3268 a_band
= GetDepthColour(a
.GetZ());
3269 a_band
= min(max(a_band
, 0), GetNumColourBands());
3270 b_band
= GetDepthColour(b
.GetZ());
3271 b_band
= min(max(b_band
, 0), GetNumColourBands());
3272 c_band
= GetDepthColour(c
.GetZ());
3273 c_band
= min(max(c_band
, 0), GetNumColourBands());
3274 d_band
= GetDepthColour(d
.GetZ());
3275 d_band
= min(max(d_band
, 0), GetNumColourBands());
3276 glaTexCoord
w(((b
- a
).magnitude() + (d
- c
).magnitude()) * .5);
3277 glaTexCoord
h(((b
- c
).magnitude() + (d
- a
).magnitude()) * .5);
3278 int min_band
= min(min(a_band
, b_band
), min(c_band
, d_band
));
3279 int max_band
= max(max(a_band
, b_band
), max(c_band
, d_band
));
3280 if (min_band
== max_band
) {
3281 // Simple case - the polygon is entirely within one band.
3283 //// PlaceNormal(normal);
3284 PlaceVertexWithDepthColour(a
, 0, 0, factor
);
3285 PlaceVertexWithDepthColour(b
, w
, 0, factor
);
3286 PlaceVertexWithDepthColour(c
, w
, h
, factor
);
3287 PlaceVertexWithDepthColour(d
, 0, h
, factor
);
3290 // We need to make a separate polygon for each depth band...
3291 vector
<vector
<Split
> > splits
;
3292 splits
.resize(max_band
+ 1);
3293 splits
[a_band
].push_back(Split(a
, 0, 0));
3294 if (a_band
!= b_band
) {
3295 SplitPolyAcrossBands(splits
, a_band
, b_band
, a
, b
, 0, 0, w
, 0);
3297 splits
[b_band
].push_back(Split(b
, w
, 0));
3298 if (b_band
!= c_band
) {
3299 SplitPolyAcrossBands(splits
, b_band
, c_band
, b
, c
, w
, 0, 0, h
);
3301 splits
[c_band
].push_back(Split(c
, w
, h
));
3302 if (c_band
!= d_band
) {
3303 SplitPolyAcrossBands(splits
, c_band
, d_band
, c
, d
, w
, h
, -w
, 0);
3305 splits
[d_band
].push_back(Split(d
, 0, h
));
3306 if (d_band
!= a_band
) {
3307 SplitPolyAcrossBands(splits
, d_band
, a_band
, d
, a
, 0, h
, 0, -h
);
3309 for (int band
= min_band
; band
<= max_band
; ++band
) {
3311 for (auto&& item
: splits
[band
]) {
3312 PlaceVertexWithDepthColour(item
.vec
, item
.tx
, item
.ty
, factor
);
3319 void GfxCore::SetColourFromDate(int date
, Double factor
)
3321 // Set the drawing colour based on a date.
3325 SetColour(col_WHITE
, factor
);
3329 int date_offset
= date
- m_Parent
->GetDateMin();
3330 if (date_offset
== 0) {
3331 // Earliest date - handle as a special case for the single date case.
3332 SetColour(GetPen(0), factor
);
3336 int date_ext
= m_Parent
->GetDateExtent();
3337 Double how_far
= (Double
)date_offset
/ date_ext
;
3338 assert(how_far
>= 0.0);
3339 assert(how_far
<= 1.0);
3340 SetColourFrom01(how_far
, factor
);
3343 void GfxCore::AddPolylineDate(const traverse
& centreline
)
3346 vector
<PointInfo
>::const_iterator i
, prev_i
;
3347 i
= centreline
.begin();
3348 int date
= i
->GetDate();
3349 SetColourFromDate(date
, 1.0);
3352 while (++i
!= centreline
.end()) {
3353 int newdate
= i
->GetDate();
3354 if (newdate
!= date
) {
3358 SetColourFromDate(date
, 1.0);
3359 PlaceVertex(*prev_i
);
3367 static int static_date_hack
; // FIXME
3369 void GfxCore::AddQuadrilateralDate(const Vector3
&a
, const Vector3
&b
,
3370 const Vector3
&c
, const Vector3
&d
)
3372 Vector3 normal
= (a
- c
) * (d
- b
);
3374 Double factor
= dot(normal
, light
) * .3 + .7;
3375 glaTexCoord
w(((b
- a
).magnitude() + (d
- c
).magnitude()) * .5);
3376 glaTexCoord
h(((b
- c
).magnitude() + (d
- a
).magnitude()) * .5);
3377 // FIXME: should plot triangles instead to avoid rendering glitches.
3378 BeginQuadrilaterals();
3379 //// PlaceNormal(normal);
3380 SetColourFromDate(static_date_hack
, factor
);
3381 PlaceVertex(a
, 0, 0);
3382 PlaceVertex(b
, w
, 0);
3383 PlaceVertex(c
, w
, h
);
3384 PlaceVertex(d
, 0, h
);
3385 EndQuadrilaterals();
3388 static double static_E_hack
; // FIXME
3390 void GfxCore::SetColourFromError(double E
, Double factor
)
3392 // Set the drawing colour based on an error value.
3395 SetColour(col_WHITE
, factor
);
3399 Double how_far
= E
/ MAX_ERROR
;
3400 assert(how_far
>= 0.0);
3401 if (how_far
> 1.0) how_far
= 1.0;
3402 SetColourFrom01(how_far
, factor
);
3405 void GfxCore::AddQuadrilateralError(const Vector3
&a
, const Vector3
&b
,
3406 const Vector3
&c
, const Vector3
&d
)
3408 Vector3 normal
= (a
- c
) * (d
- b
);
3410 Double factor
= dot(normal
, light
) * .3 + .7;
3411 glaTexCoord
w(((b
- a
).magnitude() + (d
- c
).magnitude()) * .5);
3412 glaTexCoord
h(((b
- c
).magnitude() + (d
- a
).magnitude()) * .5);
3413 // FIXME: should plot triangles instead to avoid rendering glitches.
3414 BeginQuadrilaterals();
3415 //// PlaceNormal(normal);
3416 SetColourFromError(static_E_hack
, factor
);
3417 PlaceVertex(a
, 0, 0);
3418 PlaceVertex(b
, w
, 0);
3419 PlaceVertex(c
, w
, h
);
3420 PlaceVertex(d
, 0, h
);
3421 EndQuadrilaterals();
3424 void GfxCore::AddPolylineError(const traverse
& centreline
)
3427 SetColourFromError(centreline
.E
, 1.0);
3428 vector
<PointInfo
>::const_iterator i
;
3429 for(i
= centreline
.begin(); i
!= centreline
.end(); ++i
) {
3435 // gradient is in *radians*.
3436 void GfxCore::SetColourFromGradient(double gradient
, Double factor
)
3438 // Set the drawing colour based on the gradient of the leg.
3440 const Double GRADIENT_MAX
= M_PI_2
;
3441 gradient
= fabs(gradient
);
3442 Double how_far
= gradient
/ GRADIENT_MAX
;
3443 SetColourFrom01(how_far
, factor
);
3446 void GfxCore::AddPolylineGradient(const traverse
& centreline
)
3448 vector
<PointInfo
>::const_iterator i
, prev_i
;
3449 i
= centreline
.begin();
3451 while (++i
!= centreline
.end()) {
3453 SetColourFromGradient((*i
- *prev_i
).gradient(), 1.0);
3454 PlaceVertex(*prev_i
);
3461 static double static_gradient_hack
; // FIXME
3463 void GfxCore::AddQuadrilateralGradient(const Vector3
&a
, const Vector3
&b
,
3464 const Vector3
&c
, const Vector3
&d
)
3466 Vector3 normal
= (a
- c
) * (d
- b
);
3468 Double factor
= dot(normal
, light
) * .3 + .7;
3469 glaTexCoord
w(((b
- a
).magnitude() + (d
- c
).magnitude()) * .5);
3470 glaTexCoord
h(((b
- c
).magnitude() + (d
- a
).magnitude()) * .5);
3471 // FIXME: should plot triangles instead to avoid rendering glitches.
3472 BeginQuadrilaterals();
3473 //// PlaceNormal(normal);
3474 SetColourFromGradient(static_gradient_hack
, factor
);
3475 PlaceVertex(a
, 0, 0);
3476 PlaceVertex(b
, w
, 0);
3477 PlaceVertex(c
, w
, h
);
3478 PlaceVertex(d
, 0, h
);
3479 EndQuadrilaterals();
3482 void GfxCore::SetColourFromLength(double length
, Double factor
)
3484 // Set the drawing colour based on log(length_of_leg).
3486 Double log_len
= log10(length
);
3487 Double how_far
= log_len
/ LOG_LEN_MAX
;
3488 how_far
= max(how_far
, 0.0);
3489 how_far
= min(how_far
, 1.0);
3490 SetColourFrom01(how_far
, factor
);
3493 void GfxCore::SetColourFrom01(double how_far
, Double factor
)
3496 double into_band
= modf(how_far
* (GetNumColourBands() - 1), &b
);
3498 GLAPen pen1
= GetPen(band
);
3499 // With 24bit colour, interpolating by less than this can have no effect.
3500 if (into_band
>= 1.0 / 512.0) {
3501 const GLAPen
& pen2
= GetPen(band
+ 1);
3502 pen1
.Interpolate(pen2
, into_band
);
3504 SetColour(pen1
, factor
);
3507 void GfxCore::AddPolylineLength(const traverse
& centreline
)
3509 vector
<PointInfo
>::const_iterator i
, prev_i
;
3510 i
= centreline
.begin();
3512 while (++i
!= centreline
.end()) {
3514 SetColourFromLength((*i
- *prev_i
).magnitude(), 1.0);
3515 PlaceVertex(*prev_i
);
3522 static double static_length_hack
; // FIXME
3524 void GfxCore::AddQuadrilateralLength(const Vector3
&a
, const Vector3
&b
,
3525 const Vector3
&c
, const Vector3
&d
)
3527 Vector3 normal
= (a
- c
) * (d
- b
);
3529 Double factor
= dot(normal
, light
) * .3 + .7;
3530 glaTexCoord
w(((b
- a
).magnitude() + (d
- c
).magnitude()) * .5);
3531 glaTexCoord
h(((b
- c
).magnitude() + (d
- a
).magnitude()) * .5);
3532 // FIXME: should plot triangles instead to avoid rendering glitches.
3533 BeginQuadrilaterals();
3534 //// PlaceNormal(normal);
3535 SetColourFromLength(static_length_hack
, factor
);
3536 PlaceVertex(a
, 0, 0);
3537 PlaceVertex(b
, w
, 0);
3538 PlaceVertex(c
, w
, h
);
3539 PlaceVertex(d
, 0, h
);
3540 EndQuadrilaterals();
3544 GfxCore::SkinPassage(vector
<XSect
> & centreline
, bool draw
)
3546 assert(centreline
.size() > 1);
3549 Vector3
last_right(1.0, 0.0, 0.0);
3551 // FIXME: it's not simple to set the colour of a tube based on error...
3552 // static_E_hack = something...
3553 vector
<XSect
>::iterator i
= centreline
.begin();
3554 vector
<XSect
>::size_type segment
= 0;
3555 while (i
!= centreline
.end()) {
3556 // get the coordinates of this vertex
3557 XSect
& pt_v
= *i
++;
3559 bool cover_end
= false;
3563 const Vector3
up_v(0.0, 0.0, 1.0);
3566 assert(i
!= centreline
.end());
3569 // get the coordinates of the next vertex
3570 const XSect
& next_pt_v
= *i
;
3572 // calculate vector from this pt to the next one
3573 Vector3 leg_v
= next_pt_v
- pt_v
;
3575 // obtain a vector in the LRUD plane
3576 right
= leg_v
* up_v
;
3577 if (right
.magnitude() == 0) {
3579 // Obtain a second vector in the LRUD plane,
3580 // perpendicular to the first.
3581 //up = right * leg_v;
3589 static_date_hack
= next_pt_v
.GetDate();
3590 } else if (segment
+ 1 == centreline
.size()) {
3593 // Calculate vector from the previous pt to this one.
3594 Vector3 leg_v
= pt_v
- prev_pt_v
;
3596 // Obtain a horizontal vector in the LRUD plane.
3597 right
= leg_v
* up_v
;
3598 if (right
.magnitude() == 0) {
3599 right
= Vector3(last_right
.GetX(), last_right
.GetY(), 0.0);
3600 // Obtain a second vector in the LRUD plane,
3601 // perpendicular to the first.
3602 //up = right * leg_v;
3610 static_date_hack
= pt_v
.GetDate();
3612 assert(i
!= centreline
.end());
3613 // Intermediate segment.
3615 // Get the coordinates of the next vertex.
3616 const XSect
& next_pt_v
= *i
;
3618 // Calculate vectors from this vertex to the
3619 // next vertex, and from the previous vertex to
3621 Vector3 leg1_v
= pt_v
- prev_pt_v
;
3622 Vector3 leg2_v
= next_pt_v
- pt_v
;
3624 // Obtain horizontal vectors perpendicular to
3625 // both legs, then normalise and average to get
3626 // a horizontal bisector.
3627 Vector3 r1
= leg1_v
* up_v
;
3628 Vector3 r2
= leg2_v
* up_v
;
3632 if (right
.magnitude() == 0) {
3633 // This is the "mid-pitch" case...
3636 if (r1
.magnitude() == 0) {
3639 // Rotate pitch section to minimise the
3640 // "tortional stress" - FIXME: use
3641 // triangles instead of rectangles?
3645 // Scale to unit vectors in the LRUD plane.
3648 Vector3 vec
= up
- right
;
3649 for (int orient
= 0; orient
<= 3; ++orient
) {
3650 Vector3 tmp
= U
[orient
] - prev_pt_v
;
3652 Double dotp
= dot(vec
, tmp
);
3653 if (dotp
> maxdotp
) {
3663 U
[2] = U
[shift
^ 2];
3664 U
[shift
^ 2] = temp
;
3671 // Check that the above code actually permuted
3672 // the vertices correctly.
3675 for (int j
= 0; j
<= 3; ++j
) {
3676 Vector3 tmp
= U
[j
] - prev_pt_v
;
3678 Double dotp
= dot(vec
, tmp
);
3679 if (dotp
> maxdotp
) {
3680 maxdotp
= dotp
+ 1e-6; // Add small tolerance to stop 45 degree offset cases being flagged...
3685 printf("New shift = %d!\n", shift
);
3688 for (int j
= 0; j
<= 3; ++j
) {
3689 Vector3 tmp
= U
[j
] - prev_pt_v
;
3691 Double dotp
= dot(vec
, tmp
);
3692 printf(" %d : %.8f\n", j
, dotp
);
3700 static_date_hack
= pt_v
.GetDate();
3703 // Scale to unit vectors in the LRUD plane.
3707 Double l
= fabs(pt_v
.GetL());
3708 Double r
= fabs(pt_v
.GetR());
3709 Double u
= fabs(pt_v
.GetU());
3710 Double d
= fabs(pt_v
.GetD());
3712 // Produce coordinates of the corners of the LRUD "plane".
3714 v
[0] = pt_v
- right
* l
+ up
* u
;
3715 v
[1] = pt_v
+ right
* r
+ up
* u
;
3716 v
[2] = pt_v
+ right
* r
- up
* d
;
3717 v
[3] = pt_v
- right
* l
- up
* d
;
3720 const Vector3
& delta
= pt_v
- prev_pt_v
;
3721 static_length_hack
= delta
.magnitude();
3722 static_gradient_hack
= delta
.gradient();
3724 (this->*AddQuad
)(v
[0], v
[1], U
[1], U
[0]);
3725 (this->*AddQuad
)(v
[2], v
[3], U
[3], U
[2]);
3726 (this->*AddQuad
)(v
[1], v
[2], U
[2], U
[1]);
3727 (this->*AddQuad
)(v
[3], v
[0], U
[0], U
[3]);
3732 (this->*AddQuad
)(v
[0], v
[1], v
[2], v
[3]);
3734 (this->*AddQuad
)(v
[3], v
[2], v
[1], v
[0]);
3745 pt_v
.set_right_bearing(deg(atan2(right
.GetY(), right
.GetX())));
3751 void GfxCore::FullScreenMode()
3753 m_Parent
->ViewFullScreen();
3756 bool GfxCore::IsFullScreen() const
3758 return m_Parent
->IsFullScreen();
3761 bool GfxCore::FullScreenModeShowingMenus() const
3763 return m_Parent
->FullScreenModeShowingMenus();
3766 void GfxCore::FullScreenModeShowMenus(bool show
)
3768 m_Parent
->FullScreenModeShowMenus(show
);
3772 GfxCore::MoveViewer(double forward
, double up
, double right
)
3774 double cT
= cos(rad(m_TiltAngle
));
3775 double sT
= sin(rad(m_TiltAngle
));
3776 double cP
= cos(rad(m_PanAngle
));
3777 double sP
= sin(rad(m_PanAngle
));
3778 Vector3
v_forward(cT
* sP
, cT
* cP
, sT
);
3779 Vector3
v_up(sT
* sP
, sT
* cP
, -cT
);
3780 Vector3
v_right(-cP
, sP
, 0);
3781 assert(fabs(dot(v_forward
, v_up
)) < 1e-6);
3782 assert(fabs(dot(v_forward
, v_right
)) < 1e-6);
3783 assert(fabs(dot(v_right
, v_up
)) < 1e-6);
3784 Vector3 move
= v_forward
* forward
+ v_up
* up
+ v_right
* right
;
3785 AddTranslation(-move
);
3786 // Show current position.
3787 m_Parent
->SetCoords(m_Parent
->GetOffset() - GetTranslation());
3791 PresentationMark
GfxCore::GetView() const
3793 return PresentationMark(GetTranslation() + m_Parent
->GetOffset(),
3794 m_PanAngle
, -m_TiltAngle
, m_Scale
);
3797 void GfxCore::SetView(const PresentationMark
& p
)
3800 SetTranslation(p
- m_Parent
->GetOffset());
3801 m_PanAngle
= p
.angle
;
3802 m_TiltAngle
= -p
.tilt_angle
; // FIXME: nasty reversed sense (and above)
3803 SetRotation(m_PanAngle
, m_TiltAngle
);
3808 void GfxCore::PlayPres(double speed
, bool change_speed
) {
3809 if (!change_speed
|| presentation_mode
== 0) {
3811 presentation_mode
= 0;
3814 presentation_mode
= PLAYING
;
3815 next_mark
= m_Parent
->GetPresMark(MARK_FIRST
);
3817 next_mark_time
= 0; // There already!
3818 this_mark_total
= 0;
3819 pres_reverse
= (speed
< 0);
3822 if (change_speed
) pres_speed
= speed
;
3825 bool new_pres_reverse
= (speed
< 0);
3826 if (new_pres_reverse
!= pres_reverse
) {
3827 pres_reverse
= new_pres_reverse
;
3829 next_mark
= m_Parent
->GetPresMark(MARK_PREV
);
3831 next_mark
= m_Parent
->GetPresMark(MARK_NEXT
);
3833 swap(this_mark_total
, next_mark_time
);
3838 void GfxCore::SetColourBy(int colour_by
) {
3839 m_ColourBy
= colour_by
;
3840 switch (colour_by
) {
3841 case COLOUR_BY_DEPTH
:
3842 AddQuad
= &GfxCore::AddQuadrilateralDepth
;
3843 AddPoly
= &GfxCore::AddPolylineDepth
;
3845 case COLOUR_BY_DATE
:
3846 AddQuad
= &GfxCore::AddQuadrilateralDate
;
3847 AddPoly
= &GfxCore::AddPolylineDate
;
3849 case COLOUR_BY_ERROR
:
3850 AddQuad
= &GfxCore::AddQuadrilateralError
;
3851 AddPoly
= &GfxCore::AddPolylineError
;
3853 case COLOUR_BY_GRADIENT
:
3854 AddQuad
= &GfxCore::AddQuadrilateralGradient
;
3855 AddPoly
= &GfxCore::AddPolylineGradient
;
3857 case COLOUR_BY_LENGTH
:
3858 AddQuad
= &GfxCore::AddQuadrilateralLength
;
3859 AddPoly
= &GfxCore::AddPolylineLength
;
3861 default: // case COLOUR_BY_NONE:
3862 AddQuad
= &GfxCore::AddQuadrilateral
;
3863 AddPoly
= &GfxCore::AddPolyline
;
3867 InvalidateList(LIST_UNDERGROUND_LEGS
);
3868 InvalidateList(LIST_SURFACE_LEGS
);
3869 InvalidateList(LIST_TUBES
);
3874 bool GfxCore::ExportMovie(const wxString
& fnm
)
3876 FILE* fh
= wxFopen(fnm
.fn_str(), wxT("wb"));
3878 wxGetApp().ReportError(wxString::Format(wmsg(/*Failed to open output file “%s”*/47), fnm
.c_str()));
3883 wxFileName::SplitPath(fnm
, NULL
, NULL
, NULL
, &ext
, wxPATH_NATIVE
);
3887 GetSize(&width
, &height
);
3888 // Round up to next multiple of 2 (required by ffmpeg).
3889 width
+= (width
& 1);
3890 height
+= (height
& 1);
3892 movie
= new MovieMaker();
3894 // movie takes ownership of fh.
3895 if (!movie
->Open(fh
, ext
.utf8_str(), width
, height
)) {
3896 wxGetApp().ReportError(wxString(movie
->get_error_string(), wxConvUTF8
));
3907 GfxCore::OnPrint(const wxString
&filename
, const wxString
&title
,
3908 const wxString
&datestamp
, time_t datestamp_numeric
,
3909 const wxString
&cs_proj
,
3910 bool close_after_print
)
3913 p
= new svxPrintDlg(m_Parent
, filename
, title
, cs_proj
,
3914 datestamp
, datestamp_numeric
,
3915 m_PanAngle
, m_TiltAngle
,
3916 m_Names
, m_Crosses
, m_Legs
, m_Surface
, m_Splays
,
3917 m_Tubes
, m_Entrances
, m_FixedPts
, m_ExportedPts
,
3918 true, close_after_print
);
3923 GfxCore::OnExport(const wxString
&filename
, const wxString
&title
,
3924 const wxString
&datestamp
, time_t datestamp_numeric
,
3925 const wxString
&cs_proj
)
3927 // Fill in "right_bearing" for each cross-section.
3928 list
<vector
<XSect
> >::iterator trav
= m_Parent
->tubes_begin();
3929 list
<vector
<XSect
> >::iterator tend
= m_Parent
->tubes_end();
3930 while (trav
!= tend
) {
3931 SkinPassage(*trav
, false);
3936 p
= new svxPrintDlg(m_Parent
, filename
, title
, cs_proj
,
3937 datestamp
, datestamp_numeric
,
3938 m_PanAngle
, m_TiltAngle
,
3939 m_Names
, m_Crosses
, m_Legs
, m_Surface
, m_Splays
,
3940 m_Tubes
, m_Entrances
, m_FixedPts
, m_ExportedPts
,
3946 make_cursor(const unsigned char * bits
, const unsigned char * mask
,
3949 #if defined __WXGTK__ && !defined __WXGTK3__
3950 // Use this code for GTK < 3 only - it doesn't work properly with GTK3
3951 // (reported and should be fixed in wxWidgets 3.0.4 and 3.1.1, see:
3952 // https://trac.wxwidgets.org/ticket/17916)
3953 return wxCursor((const char *)bits
, 32, 32, hotx
, hoty
,
3954 (const char *)mask
, wxBLACK
, wxWHITE
);
3957 // The default Mac cursor is black with a white edge, so
3958 // invert our custom cursors to match.
3960 for (int i
= 0; i
< 128; ++i
)
3961 b
[i
] = bits
[i
] ^ 0xff;
3963 const char * b
= reinterpret_cast<const char *>(bits
);
3965 wxBitmap
cursor_bitmap(b
, 32, 32);
3966 wxBitmap
mask_bitmap(reinterpret_cast<const char *>(mask
), 32, 32);
3967 cursor_bitmap
.SetMask(new wxMask(mask_bitmap
, *wxWHITE
));
3968 wxImage cursor_image
= cursor_bitmap
.ConvertToImage();
3969 cursor_image
.SetOption(wxIMAGE_OPTION_CUR_HOTSPOT_X
, hotx
);
3970 cursor_image
.SetOption(wxIMAGE_OPTION_CUR_HOTSPOT_Y
, hoty
);
3971 return wxCursor(cursor_image
);
3978 #include "handmask.xbm"
3981 #include "brotate.xbm"
3983 #include "brotatemask.xbm"
3986 #include "vrotate.xbm"
3988 #include "vrotatemask.xbm"
3991 #include "rotate.xbm"
3993 #include "rotatemask.xbm"
3996 #include "rotatezoom.xbm"
3998 #include "rotatezoommask.xbm"
4001 GfxCore::UpdateCursor(GfxCore::cursor new_cursor
)
4003 // Check if we're already showing that cursor.
4004 if (current_cursor
== new_cursor
) return;
4006 current_cursor
= new_cursor
;
4007 switch (current_cursor
) {
4008 case GfxCore::CURSOR_DEFAULT
:
4009 GLACanvas::SetCursor(wxNullCursor
);
4011 case GfxCore::CURSOR_POINTING_HAND
:
4012 GLACanvas::SetCursor(wxCursor(wxCURSOR_HAND
));
4014 case GfxCore::CURSOR_DRAGGING_HAND
:
4015 GLACanvas::SetCursor(make_cursor(hand_bits
, handmask_bits
, 12, 18));
4017 case GfxCore::CURSOR_HORIZONTAL_RESIZE
:
4018 GLACanvas::SetCursor(wxCursor(wxCURSOR_SIZEWE
));
4020 case GfxCore::CURSOR_ROTATE_HORIZONTALLY
:
4021 GLACanvas::SetCursor(make_cursor(rotate_bits
, rotatemask_bits
, 15, 15));
4023 case GfxCore::CURSOR_ROTATE_VERTICALLY
:
4024 GLACanvas::SetCursor(make_cursor(vrotate_bits
, vrotatemask_bits
, 15, 15));
4026 case GfxCore::CURSOR_ROTATE_EITHER_WAY
:
4027 GLACanvas::SetCursor(make_cursor(brotate_bits
, brotatemask_bits
, 15, 15));
4029 case GfxCore::CURSOR_ZOOM
:
4030 GLACanvas::SetCursor(wxCursor(wxCURSOR_MAGNIFIER
));
4032 case GfxCore::CURSOR_ZOOM_ROTATE
:
4033 GLACanvas::SetCursor(make_cursor(rotatezoom_bits
, rotatezoommask_bits
, 15, 15));
4038 bool GfxCore::MeasuringLineActive() const
4040 if (Animating()) return false;
4041 return HereIsReal() || m_there
;
4044 bool GfxCore::HandleRClick(wxPoint point
)
4046 if (PointWithinCompass(point
)) {
4049 /* TRANSLATORS: View *looking* North */
4050 menu
.Append(menu_ORIENT_MOVE_NORTH
, wmsg(/*View &North*/240));
4051 /* TRANSLATORS: View *looking* East */
4052 menu
.Append(menu_ORIENT_MOVE_EAST
, wmsg(/*View &East*/241));
4053 /* TRANSLATORS: View *looking* South */
4054 menu
.Append(menu_ORIENT_MOVE_SOUTH
, wmsg(/*View &South*/242));
4055 /* TRANSLATORS: View *looking* West */
4056 menu
.Append(menu_ORIENT_MOVE_WEST
, wmsg(/*View &West*/243));
4057 menu
.AppendSeparator();
4058 /* TRANSLATORS: Menu item which turns off the "north arrow" in aven. */
4059 menu
.AppendCheckItem(menu_IND_COMPASS
, wmsg(/*&Hide Compass*/387));
4060 /* TRANSLATORS: tickable menu item in View menu.
4062 * Degrees are the angular measurement where there are 360 in a full
4064 menu
.AppendCheckItem(menu_CTL_DEGREES
, wmsg(/*&Degrees*/343));
4065 menu
.Connect(wxEVT_COMMAND_MENU_SELECTED
, (wxObjectEventFunction
)&wxEvtHandler::ProcessEvent
, NULL
, m_Parent
->GetEventHandler());
4070 if (PointWithinClino(point
)) {
4073 menu
.Append(menu_ORIENT_PLAN
, wmsg(/*&Plan View*/248));
4074 menu
.Append(menu_ORIENT_ELEVATION
, wmsg(/*Ele&vation*/249));
4075 menu
.AppendSeparator();
4076 /* TRANSLATORS: Menu item which turns off the tilt indicator in aven. */
4077 menu
.AppendCheckItem(menu_IND_CLINO
, wmsg(/*&Hide Clino*/384));
4078 /* TRANSLATORS: tickable menu item in View menu.
4080 * Degrees are the angular measurement where there are 360 in a full
4082 menu
.AppendCheckItem(menu_CTL_DEGREES
, wmsg(/*&Degrees*/343));
4083 /* TRANSLATORS: tickable menu item in View menu.
4085 * Show the tilt of the survey as a percentage gradient (100% = 45
4086 * degrees = 50 grad). */
4087 menu
.AppendCheckItem(menu_CTL_PERCENT
, wmsg(/*&Percent*/430));
4088 menu
.Connect(wxEVT_COMMAND_MENU_SELECTED
, (wxObjectEventFunction
)&wxEvtHandler::ProcessEvent
, NULL
, m_Parent
->GetEventHandler());
4093 if (PointWithinScaleBar(point
)) {
4096 /* TRANSLATORS: Menu item which turns off the scale bar in aven. */
4097 menu
.AppendCheckItem(menu_IND_SCALE_BAR
, wmsg(/*&Hide scale bar*/385));
4098 /* TRANSLATORS: tickable menu item in View menu.
4100 * "Metric" here means metres, km, etc (rather than feet, miles, etc)
4102 menu
.AppendCheckItem(menu_CTL_METRIC
, wmsg(/*&Metric*/342));
4103 menu
.Connect(wxEVT_COMMAND_MENU_SELECTED
, (wxObjectEventFunction
)&wxEvtHandler::ProcessEvent
, NULL
, m_Parent
->GetEventHandler());
4108 if (PointWithinColourKey(point
)) {
4111 menu
.AppendCheckItem(menu_COLOUR_BY_DEPTH
, wmsg(/*Colour by &Depth*/292));
4112 menu
.AppendCheckItem(menu_COLOUR_BY_DATE
, wmsg(/*Colour by D&ate*/293));
4113 menu
.AppendCheckItem(menu_COLOUR_BY_ERROR
, wmsg(/*Colour by &Error*/289));
4114 menu
.AppendCheckItem(menu_COLOUR_BY_GRADIENT
, wmsg(/*Colour by &Gradient*/85));
4115 menu
.AppendCheckItem(menu_COLOUR_BY_LENGTH
, wmsg(/*Colour by &Length*/82));
4116 menu
.AppendSeparator();
4117 /* TRANSLATORS: Menu item which turns off the colour key.
4118 * The "Colour Key" is the thing in aven showing which colour
4119 * corresponds to which depth, date, survey closure error, etc. */
4120 menu
.AppendCheckItem(menu_IND_COLOUR_KEY
, wmsg(/*&Hide colour key*/386));
4121 if (m_ColourBy
== COLOUR_BY_DEPTH
|| m_ColourBy
== COLOUR_BY_LENGTH
)
4122 menu
.AppendCheckItem(menu_CTL_METRIC
, wmsg(/*&Metric*/342));
4123 else if (m_ColourBy
== COLOUR_BY_GRADIENT
)
4124 menu
.AppendCheckItem(menu_CTL_DEGREES
, wmsg(/*&Degrees*/343));
4125 menu
.Connect(wxEVT_COMMAND_MENU_SELECTED
, (wxObjectEventFunction
)&wxEvtHandler::ProcessEvent
, NULL
, m_Parent
->GetEventHandler());
4133 void GfxCore::SetZoomBox(wxPoint p1
, wxPoint p2
, bool centred
, bool aspect
)
4136 p1
.x
= p2
.x
+ (p1
.x
- p2
.x
) * 2;
4137 p1
.y
= p2
.y
+ (p1
.y
- p2
.y
) * 2;
4140 #if 0 // FIXME: This needs more work.
4141 int sx
= GetXSize();
4142 int sy
= GetYSize();
4143 int dx
= p1
.x
- p2
.x
;
4144 int dy
= p1
.y
- p2
.y
;
4145 int dy_new
= dx
* sy
/ sx
;
4146 if (abs(dy_new
) >= abs(dy
)) {
4147 p1
.y
+= (dy_new
- dy
) / 2;
4148 p2
.y
-= (dy_new
- dy
) / 2;
4150 int dx_new
= dy
* sx
/ sy
;
4151 p1
.x
+= (dx_new
- dx
) / 2;
4152 p2
.x
-= (dx_new
- dx
) / 2;
4156 zoombox
.set(p1
, p2
);
4160 void GfxCore::ZoomBoxGo()
4162 if (!zoombox
.active()) return;
4164 int width
= GetXSize();
4165 int height
= GetYSize();
4167 TranslateCave(-0.5 * (zoombox
.x1
+ zoombox
.x2
- width
),
4168 -0.5 * (zoombox
.y1
+ zoombox
.y2
- height
));
4169 int box_w
= abs(zoombox
.x1
- zoombox
.x2
);
4170 int box_h
= abs(zoombox
.y1
- zoombox
.y2
);
4172 double factor
= min(double(width
) / box_w
, double(height
) / box_h
);
4176 SetScale(GetScale() * factor
);