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1/////////////////////////////////////////////////////////////////////////////
2// Name: constrnt.cpp
3// Purpose: OGL Constraint classes
4// Author: Julian Smart
5// Modified by:
6// Created: 12/07/98
7// RCS-ID: $Id$
8// Copyright: (c) Julian Smart
2ba06d5a 9// Licence: wxWindows licence
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10/////////////////////////////////////////////////////////////////////////////
11
1fc25a89 12// For compilers that support precompilation, includes "wx.h".
92a19c2e 13#include "wx/wxprec.h"
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14
15#ifdef __BORLANDC__
16#pragma hdrstop
17#endif
18
19#ifndef WX_PRECOMP
6b62c9ad 20#include "wx/wx.h"
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21#endif
22
5f331691 23#if wxUSE_PROLOGIO
6b62c9ad 24#include "wx/deprecated/wxexpr.h"
fd657b8a 25#endif
1fc25a89 26
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27#include "wx/ogl/ogl.h"
28
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29
30wxList *wxOGLConstraintTypes = NULL;
31
32/*
33 * Constraint type
34 *
35 */
36
37IMPLEMENT_DYNAMIC_CLASS(wxOGLConstraintType, wxObject)
38
39wxOGLConstraintType::wxOGLConstraintType(int theType, const wxString& theName, const wxString& thePhrase)
40{
41 m_type = theType;
42 m_name = theName;
43 m_phrase = thePhrase;
44}
45
46wxOGLConstraintType::~wxOGLConstraintType()
47{
48}
49
50void OGLInitializeConstraintTypes()
51{
52 if (!wxOGLConstraintTypes)
53 return;
54
55 wxOGLConstraintTypes = new wxList(wxKEY_INTEGER);
56
57 wxOGLConstraintTypes->Append(gyCONSTRAINT_CENTRED_VERTICALLY,
9e053640 58 new wxOGLConstraintType(gyCONSTRAINT_CENTRED_VERTICALLY, wxT("Centre vertically"), wxT("centred vertically w.r.t.")));
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59
60 wxOGLConstraintTypes->Append(gyCONSTRAINT_CENTRED_HORIZONTALLY,
9e053640 61 new wxOGLConstraintType(gyCONSTRAINT_CENTRED_HORIZONTALLY, wxT("Centre horizontally"), wxT("centred horizontally w.r.t.")));
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62
63 wxOGLConstraintTypes->Append(gyCONSTRAINT_CENTRED_BOTH,
9e053640 64 new wxOGLConstraintType(gyCONSTRAINT_CENTRED_BOTH, wxT("Centre"), wxT("centred w.r.t.")));
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65
66 wxOGLConstraintTypes->Append(gyCONSTRAINT_LEFT_OF,
9e053640 67 new wxOGLConstraintType(gyCONSTRAINT_LEFT_OF, wxT("Left of"), wxT("left of")));
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68
69 wxOGLConstraintTypes->Append(gyCONSTRAINT_RIGHT_OF,
9e053640 70 new wxOGLConstraintType(gyCONSTRAINT_RIGHT_OF, wxT("Right of"), wxT("right of")));
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71
72 wxOGLConstraintTypes->Append(gyCONSTRAINT_ABOVE,
9e053640 73 new wxOGLConstraintType(gyCONSTRAINT_ABOVE, wxT("Above"), wxT("above")));
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74
75 wxOGLConstraintTypes->Append(gyCONSTRAINT_BELOW,
9e053640 76 new wxOGLConstraintType(gyCONSTRAINT_BELOW, wxT("Below"), wxT("below")));
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77
78 // Alignment
79 wxOGLConstraintTypes->Append(gyCONSTRAINT_ALIGNED_TOP,
9e053640 80 new wxOGLConstraintType(gyCONSTRAINT_ALIGNED_TOP, wxT("Top-aligned"), wxT("aligned to the top of")));
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81
82 wxOGLConstraintTypes->Append(gyCONSTRAINT_ALIGNED_BOTTOM,
9e053640 83 new wxOGLConstraintType(gyCONSTRAINT_ALIGNED_BOTTOM, wxT("Bottom-aligned"), wxT("aligned to the bottom of")));
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84
85 wxOGLConstraintTypes->Append(gyCONSTRAINT_ALIGNED_LEFT,
9e053640 86 new wxOGLConstraintType(gyCONSTRAINT_ALIGNED_LEFT, wxT("Left-aligned"), wxT("aligned to the left of")));
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87
88 wxOGLConstraintTypes->Append(gyCONSTRAINT_ALIGNED_RIGHT,
9e053640 89 new wxOGLConstraintType(gyCONSTRAINT_ALIGNED_RIGHT, wxT("Right-aligned"), wxT("aligned to the right of")));
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90
91 // Mid-alignment
92 wxOGLConstraintTypes->Append(gyCONSTRAINT_MIDALIGNED_TOP,
9e053640 93 new wxOGLConstraintType(gyCONSTRAINT_MIDALIGNED_TOP, wxT("Top-midaligned"), wxT("centred on the top of")));
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94
95 wxOGLConstraintTypes->Append(gyCONSTRAINT_MIDALIGNED_BOTTOM,
9e053640 96 new wxOGLConstraintType(gyCONSTRAINT_MIDALIGNED_BOTTOM, wxT("Bottom-midaligned"), wxT("centred on the bottom of")));
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97
98 wxOGLConstraintTypes->Append(gyCONSTRAINT_MIDALIGNED_LEFT,
9e053640 99 new wxOGLConstraintType(gyCONSTRAINT_MIDALIGNED_LEFT, wxT("Left-midaligned"), wxT("centred on the left of")));
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100
101 wxOGLConstraintTypes->Append(gyCONSTRAINT_MIDALIGNED_RIGHT,
9e053640 102 new wxOGLConstraintType(gyCONSTRAINT_MIDALIGNED_RIGHT, wxT("Right-midaligned"), wxT("centred on the right of")));
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103}
104
105void OGLCleanUpConstraintTypes()
106{
107 if (!wxOGLConstraintTypes)
108 return;
109
b9ac87bc 110 wxNode* node = wxOGLConstraintTypes->GetFirst();
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111 while (node)
112 {
b9ac87bc 113 wxOGLConstraintType* ct = (wxOGLConstraintType*) node->GetData();
1fc25a89 114 delete ct;
b9ac87bc 115 node = node->GetNext();
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116 }
117 delete wxOGLConstraintTypes;
118 wxOGLConstraintTypes = NULL;
119}
120
121/*
122 * Constraint Stuff
123 *
124 */
125
126IMPLEMENT_DYNAMIC_CLASS(wxOGLConstraint, wxObject)
127
128wxOGLConstraint::wxOGLConstraint(int type, wxShape *constraining, wxList& constrained)
129{
130 m_xSpacing = 0.0;
131 m_ySpacing = 0.0;
132
133 m_constraintType = type;
134 m_constrainingObject = constraining;
135
136 m_constraintId = 0;
9e053640 137 m_constraintName = wxT("noname");
1fc25a89 138
b9ac87bc 139 wxNode *node = constrained.GetFirst();
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140 while (node)
141 {
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142 m_constrainedObjects.Append(node->GetData());
143 node = node->GetNext();
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144 }
145}
146
147wxOGLConstraint::~wxOGLConstraint()
148{
149}
150
151bool wxOGLConstraint::Equals(double a, double b)
152{
153 double marg = 0.5;
154
155 bool eq = ((b <= a + marg) && (b >= a - marg));
156 return eq;
157}
158
2ba06d5a 159// Return true if anything changed
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160bool wxOGLConstraint::Evaluate()
161{
162 double maxWidth, maxHeight, minWidth, minHeight, x, y;
163 m_constrainingObject->GetBoundingBoxMax(&maxWidth, &maxHeight);
164 m_constrainingObject->GetBoundingBoxMin(&minWidth, &minHeight);
165 x = m_constrainingObject->GetX();
166 y = m_constrainingObject->GetY();
167
168 wxClientDC dc(m_constrainingObject->GetCanvas());
169 m_constrainingObject->GetCanvas()->PrepareDC(dc);
170
171 switch (m_constraintType)
172 {
173 case gyCONSTRAINT_CENTRED_VERTICALLY:
174 {
b9ac87bc 175 int n = m_constrainedObjects.GetCount();
1fc25a89 176 double totalObjectHeight = 0.0;
b9ac87bc 177 wxNode *node = m_constrainedObjects.GetFirst();
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178 while (node)
179 {
b9ac87bc 180 wxShape *constrainedObject = (wxShape *)node->GetData();
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181
182 double width2, height2;
183 constrainedObject->GetBoundingBoxMax(&width2, &height2);
184 totalObjectHeight += height2;
b9ac87bc 185 node = node->GetNext();
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186 }
187 double startY;
188 double spacingY;
189 // Check if within the constraining object...
190 if ((totalObjectHeight + (n + 1)*m_ySpacing) <= minHeight)
191 {
192 spacingY = (double)((minHeight - totalObjectHeight)/(n + 1));
193 startY = (double)(y - (minHeight/2.0));
194 }
195 // Otherwise, use default spacing
196 else
197 {
198 spacingY = m_ySpacing;
199 startY = (double)(y - ((totalObjectHeight + (n+1)*spacingY)/2.0));
200 }
201
202 // Now position the objects
2ba06d5a 203 bool changed = false;
b9ac87bc 204 node = m_constrainedObjects.GetFirst();
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205 while (node)
206 {
b9ac87bc 207 wxShape *constrainedObject = (wxShape *)node->GetData();
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208 double width2, height2;
209 constrainedObject->GetBoundingBoxMax(&width2, &height2);
210 startY += (double)(spacingY + (height2/2.0));
211 if (!Equals(startY, constrainedObject->GetY()))
212 {
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213 constrainedObject->Move(dc, constrainedObject->GetX(), startY, false);
214 changed = true;
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215 }
216 startY += (double)(height2/2.0);
b9ac87bc 217 node = node->GetNext();
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218 }
219 return changed;
220 }
221 case gyCONSTRAINT_CENTRED_HORIZONTALLY:
222 {
b9ac87bc 223 int n = m_constrainedObjects.GetCount();
1fc25a89 224 double totalObjectWidth = 0.0;
b9ac87bc 225 wxNode *node = m_constrainedObjects.GetFirst();
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226 while (node)
227 {
b9ac87bc 228 wxShape *constrainedObject = (wxShape *)node->GetData();
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229
230 double width2, height2;
231 constrainedObject->GetBoundingBoxMax(&width2, &height2);
232 totalObjectWidth += width2;
b9ac87bc 233 node = node->GetNext();
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234 }
235 double startX;
236 double spacingX;
237 // Check if within the constraining object...
238 if ((totalObjectWidth + (n + 1)*m_xSpacing) <= minWidth)
239 {
240 spacingX = (double)((minWidth - totalObjectWidth)/(n + 1));
241 startX = (double)(x - (minWidth/2.0));
242 }
243 // Otherwise, use default spacing
244 else
245 {
246 spacingX = m_xSpacing;
247 startX = (double)(x - ((totalObjectWidth + (n+1)*spacingX)/2.0));
248 }
249
250 // Now position the objects
2ba06d5a 251 bool changed = false;
b9ac87bc 252 node = m_constrainedObjects.GetFirst();
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253 while (node)
254 {
b9ac87bc 255 wxShape *constrainedObject = (wxShape *)node->GetData();
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256 double width2, height2;
257 constrainedObject->GetBoundingBoxMax(&width2, &height2);
258 startX += (double)(spacingX + (width2/2.0));
259 if (!Equals(startX, constrainedObject->GetX()))
260 {
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261 constrainedObject->Move(dc, startX, constrainedObject->GetY(), false);
262 changed = true;
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263 }
264 startX += (double)(width2/2.0);
b9ac87bc 265 node = node->GetNext();
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266 }
267 return changed;
268 }
269 case gyCONSTRAINT_CENTRED_BOTH:
270 {
b9ac87bc 271 int n = m_constrainedObjects.GetCount();
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272 double totalObjectWidth = 0.0;
273 double totalObjectHeight = 0.0;
b9ac87bc 274 wxNode *node = m_constrainedObjects.GetFirst();
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275 while (node)
276 {
b9ac87bc 277 wxShape *constrainedObject = (wxShape *)node->GetData();
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278
279 double width2, height2;
280 constrainedObject->GetBoundingBoxMax(&width2, &height2);
281 totalObjectWidth += width2;
282 totalObjectHeight += height2;
b9ac87bc 283 node = node->GetNext();
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284 }
285 double startX;
286 double spacingX;
287 double startY;
288 double spacingY;
289
290 // Check if within the constraining object...
291 if ((totalObjectWidth + (n + 1)*m_xSpacing) <= minWidth)
292 {
293 spacingX = (double)((minWidth - totalObjectWidth)/(n + 1));
294 startX = (double)(x - (minWidth/2.0));
295 }
296 // Otherwise, use default spacing
297 else
298 {
299 spacingX = m_xSpacing;
300 startX = (double)(x - ((totalObjectWidth + (n+1)*spacingX)/2.0));
301 }
302
303 // Check if within the constraining object...
304 if ((totalObjectHeight + (n + 1)*m_ySpacing) <= minHeight)
305 {
306 spacingY = (double)((minHeight - totalObjectHeight)/(n + 1));
307 startY = (double)(y - (minHeight/2.0));
308 }
309 // Otherwise, use default spacing
310 else
311 {
312 spacingY = m_ySpacing;
313 startY = (double)(y - ((totalObjectHeight + (n+1)*spacingY)/2.0));
314 }
315
316 // Now position the objects
2ba06d5a 317 bool changed = false;
b9ac87bc 318 node = m_constrainedObjects.GetFirst();
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319 while (node)
320 {
b9ac87bc 321 wxShape *constrainedObject = (wxShape *)node->GetData();
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322 double width2, height2;
323 constrainedObject->GetBoundingBoxMax(&width2, &height2);
324 startX += (double)(spacingX + (width2/2.0));
325 startY += (double)(spacingY + (height2/2.0));
326
327 if ((!Equals(startX, constrainedObject->GetX())) || (!Equals(startY, constrainedObject->GetY())))
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328 {
329 constrainedObject->Move(dc, startX, startY, false);
330 changed = true;
331 }
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332
333 startX += (double)(width2/2.0);
334 startY += (double)(height2/2.0);
335
b9ac87bc 336 node = node->GetNext();
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337 }
338 return changed;
339 }
340 case gyCONSTRAINT_LEFT_OF:
341 {
2ba06d5a 342 bool changed = false;
1fc25a89 343
b9ac87bc 344 wxNode *node = m_constrainedObjects.GetFirst();
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345 while (node)
346 {
b9ac87bc 347 wxShape *constrainedObject = (wxShape *)node->GetData();
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348
349 double width2, height2;
350 constrainedObject->GetBoundingBoxMax(&width2, &height2);
351
352 double x3 = (double)(x - (minWidth/2.0) - (width2/2.0) - m_xSpacing);
353 if (!Equals(x3, constrainedObject->GetX()))
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354 {
355 changed = true;
356 constrainedObject->Move(dc, x3, constrainedObject->GetY(), false);
357 }
1fc25a89 358
b9ac87bc 359 node = node->GetNext();
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360 }
361 return changed;
362 }
363 case gyCONSTRAINT_RIGHT_OF:
364 {
2ba06d5a 365 bool changed = false;
1fc25a89 366
b9ac87bc 367 wxNode *node = m_constrainedObjects.GetFirst();
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368 while (node)
369 {
b9ac87bc 370 wxShape *constrainedObject = (wxShape *)node->GetData();
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371
372 double width2, height2;
373 constrainedObject->GetBoundingBoxMax(&width2, &height2);
374
375 double x3 = (double)(x + (minWidth/2.0) + (width2/2.0) + m_xSpacing);
376 if (!Equals(x3, constrainedObject->GetX()))
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377 {
378 changed = true;
379 constrainedObject->Move(dc, x3, constrainedObject->GetY(), false);
380 }
1fc25a89 381
b9ac87bc 382 node = node->GetNext();
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383 }
384 return changed;
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385 }
386 case gyCONSTRAINT_ABOVE:
387 {
2ba06d5a 388 bool changed = false;
1fc25a89 389
b9ac87bc 390 wxNode *node = m_constrainedObjects.GetFirst();
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391 while (node)
392 {
b9ac87bc 393 wxShape *constrainedObject = (wxShape *)node->GetData();
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394
395 double width2, height2;
396 constrainedObject->GetBoundingBoxMax(&width2, &height2);
397
398 double y3 = (double)(y - (minHeight/2.0) - (height2/2.0) - m_ySpacing);
399 if (!Equals(y3, constrainedObject->GetY()))
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400 {
401 changed = true;
402 constrainedObject->Move(dc, constrainedObject->GetX(), y3, false);
403 }
1fc25a89 404
b9ac87bc 405 node = node->GetNext();
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406 }
407 return changed;
408 }
409 case gyCONSTRAINT_BELOW:
410 {
2ba06d5a 411 bool changed = false;
1fc25a89 412
b9ac87bc 413 wxNode *node = m_constrainedObjects.GetFirst();
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414 while (node)
415 {
b9ac87bc 416 wxShape *constrainedObject = (wxShape *)node->GetData();
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417
418 double width2, height2;
419 constrainedObject->GetBoundingBoxMax(&width2, &height2);
420
421 double y3 = (double)(y + (minHeight/2.0) + (height2/2.0) + m_ySpacing);
422 if (!Equals(y3, constrainedObject->GetY()))
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423 {
424 changed = true;
425 constrainedObject->Move(dc, constrainedObject->GetX(), y3, false);
426 }
1fc25a89 427
b9ac87bc 428 node = node->GetNext();
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429 }
430 return changed;
431 }
432 case gyCONSTRAINT_ALIGNED_LEFT:
433 {
2ba06d5a 434 bool changed = false;
1fc25a89 435
b9ac87bc 436 wxNode *node = m_constrainedObjects.GetFirst();
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437 while (node)
438 {
b9ac87bc 439 wxShape *constrainedObject = (wxShape *)node->GetData();
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440
441 double width2, height2;
442 constrainedObject->GetBoundingBoxMax(&width2, &height2);
443
444 double x3 = (double)(x - (minWidth/2.0) + (width2/2.0) + m_xSpacing);
445 if (!Equals(x3, constrainedObject->GetX()))
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446 {
447 changed = true;
448 constrainedObject->Move(dc, x3, constrainedObject->GetY(), false);
449 }
1fc25a89 450
b9ac87bc 451 node = node->GetNext();
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452 }
453 return changed;
454 }
455 case gyCONSTRAINT_ALIGNED_RIGHT:
456 {
2ba06d5a 457 bool changed = false;
1fc25a89 458
b9ac87bc 459 wxNode *node = m_constrainedObjects.GetFirst();
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460 while (node)
461 {
b9ac87bc 462 wxShape *constrainedObject = (wxShape *)node->GetData();
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463
464 double width2, height2;
465 constrainedObject->GetBoundingBoxMax(&width2, &height2);
466
467 double x3 = (double)(x + (minWidth/2.0) - (width2/2.0) - m_xSpacing);
468 if (!Equals(x3, constrainedObject->GetX()))
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469 {
470 changed = true;
471 constrainedObject->Move(dc, x3, constrainedObject->GetY(), false);
472 }
1fc25a89 473
b9ac87bc 474 node = node->GetNext();
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475 }
476 return changed;
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477 #if 0
478 // two returned values ?
2ba06d5a 479 return false;
1484b5cc 480 #endif
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481 }
482 case gyCONSTRAINT_ALIGNED_TOP:
483 {
2ba06d5a 484 bool changed = false;
1fc25a89 485
b9ac87bc 486 wxNode *node = m_constrainedObjects.GetFirst();
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487 while (node)
488 {
b9ac87bc 489 wxShape *constrainedObject = (wxShape *)node->GetData();
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490
491 double width2, height2;
492 constrainedObject->GetBoundingBoxMax(&width2, &height2);
493
494 double y3 = (double)(y - (minHeight/2.0) + (height2/2.0) + m_ySpacing);
495 if (!Equals(y3, constrainedObject->GetY()))
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496 {
497 changed = true;
498 constrainedObject->Move(dc, constrainedObject->GetX(), y3, false);
499 }
1fc25a89 500
b9ac87bc 501 node = node->GetNext();
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502 }
503 return changed;
504 }
505 case gyCONSTRAINT_ALIGNED_BOTTOM:
506 {
2ba06d5a 507 bool changed = false;
1fc25a89 508
b9ac87bc 509 wxNode *node = m_constrainedObjects.GetFirst();
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510 while (node)
511 {
b9ac87bc 512 wxShape *constrainedObject = (wxShape *)node->GetData();
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513
514 double width2, height2;
515 constrainedObject->GetBoundingBoxMax(&width2, &height2);
516
517 double y3 = (double)(y + (minHeight/2.0) - (height2/2.0) - m_ySpacing);
518 if (!Equals(y3, constrainedObject->GetY()))
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519 {
520 changed = true;
521 constrainedObject->Move(dc, constrainedObject->GetX(), y3, false);
522 }
1fc25a89 523
b9ac87bc 524 node = node->GetNext();
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525 }
526 return changed;
527 }
528 case gyCONSTRAINT_MIDALIGNED_LEFT:
529 {
2ba06d5a 530 bool changed = false;
1fc25a89 531
b9ac87bc 532 wxNode *node = m_constrainedObjects.GetFirst();
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533 while (node)
534 {
b9ac87bc 535 wxShape *constrainedObject = (wxShape *)node->GetData();
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536
537 double x3 = (double)(x - (minWidth/2.0));
538 if (!Equals(x3, constrainedObject->GetX()))
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539 {
540 changed = true;
541 constrainedObject->Move(dc, x3, constrainedObject->GetY(), false);
542 }
1fc25a89 543
b9ac87bc 544 node = node->GetNext();
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545 }
546 return changed;
547 }
548 case gyCONSTRAINT_MIDALIGNED_RIGHT:
549 {
2ba06d5a 550 bool changed = false;
1fc25a89 551
b9ac87bc 552 wxNode *node = m_constrainedObjects.GetFirst();
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553 while (node)
554 {
b9ac87bc 555 wxShape *constrainedObject = (wxShape *)node->GetData();
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556
557 double x3 = (double)(x + (minWidth/2.0));
558 if (!Equals(x3, constrainedObject->GetX()))
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559 {
560 changed = true;
561 constrainedObject->Move(dc, x3, constrainedObject->GetY(), false);
562 }
1fc25a89 563
b9ac87bc 564 node = node->GetNext();
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565 }
566 return changed;
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567 #if 0
568 // two returned values ?
2ba06d5a 569 return false;
1484b5cc 570 #endif
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571 }
572 case gyCONSTRAINT_MIDALIGNED_TOP:
573 {
2ba06d5a 574 bool changed = false;
1fc25a89 575
b9ac87bc 576 wxNode *node = m_constrainedObjects.GetFirst();
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577 while (node)
578 {
b9ac87bc 579 wxShape *constrainedObject = (wxShape *)node->GetData();
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580
581 double y3 = (double)(y - (minHeight/2.0));
582 if (!Equals(y3, constrainedObject->GetY()))
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583 {
584 changed = true;
585 constrainedObject->Move(dc, constrainedObject->GetX(), y3, false);
586 }
1fc25a89 587
b9ac87bc 588 node = node->GetNext();
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589 }
590 return changed;
591 }
592 case gyCONSTRAINT_MIDALIGNED_BOTTOM:
593 {
2ba06d5a 594 bool changed = false;
1fc25a89 595
b9ac87bc 596 wxNode *node = m_constrainedObjects.GetFirst();
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597 while (node)
598 {
b9ac87bc 599 wxShape *constrainedObject = (wxShape *)node->GetData();
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600
601 double y3 = (double)(y + (minHeight/2.0));
602 if (!Equals(y3, constrainedObject->GetY()))
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603 {
604 changed = true;
605 constrainedObject->Move(dc, constrainedObject->GetX(), y3, false);
606 }
1fc25a89 607
b9ac87bc 608 node = node->GetNext();
1fc25a89
JS
609 }
610 return changed;
611 }
1484b5cc
VS
612 #if 0
613 // default value handled in main function body
1fc25a89 614 default:
2ba06d5a 615 return false;
1484b5cc 616 #endif
1fc25a89 617 }
2ba06d5a 618 return false;
1fc25a89
JS
619}
620