1 /** @file
2 * @brief Helper object for transforming selected items
3 */
4 /* Authors:
5 * Lauris Kaplinski <lauris@kaplinski.com>
6 * bulia byak <buliabyak@users.sf.net>
7 * Carl Hetherington <inkscape@carlh.net>
8 * Diederik van Lierop <mail@diedenrezi.nl>
9 *
10 * Copyright (C) 1999-2002 Lauris Kaplinski
11 * Copyright (C) 1999-2008 Authors
12 *
13 * Released under GNU GPL, read the file 'COPYING' for more information
14 */
16 #ifdef HAVE_CONFIG_H
17 # include <config.h>
18 #endif
19 #include <cstring>
20 #include <string>
22 #include <2geom/transforms.h>
23 #include <gdk/gdkkeysyms.h>
24 #include "document.h"
25 #include "sp-namedview.h"
26 #include "desktop.h"
27 #include "desktop-handles.h"
28 #include "desktop-style.h"
29 #include "knot.h"
30 #include "snap.h"
31 #include "selection.h"
32 #include "select-context.h"
33 #include "sp-item.h"
34 #include "sp-item-transform.h"
35 #include "seltrans-handles.h"
36 #include "seltrans.h"
37 #include "selection-chemistry.h"
38 #include "sp-metrics.h"
39 #include "verbs.h"
40 #include <glibmm/i18n.h>
41 #include "display/sp-ctrlline.h"
42 #include "preferences.h"
43 #include "xml/repr.h"
44 #include "mod360.h"
45 #include <2geom/angle.h>
46 #include "display/snap-indicator.h"
49 static void sp_remove_handles(SPKnot *knot[], gint num);
51 static void sp_sel_trans_handle_grab(SPKnot *knot, guint state, gpointer data);
52 static void sp_sel_trans_handle_ungrab(SPKnot *knot, guint state, gpointer data);
53 static void sp_sel_trans_handle_click(SPKnot *knot, guint state, gpointer data);
54 static void sp_sel_trans_handle_new_event(SPKnot *knot, Geom::Point *position, guint32 state, gpointer data);
55 static gboolean sp_sel_trans_handle_request(SPKnot *knot, Geom::Point *p, guint state, gboolean *data);
57 extern GdkPixbuf *handles[];
59 static gboolean sp_seltrans_handle_event(SPKnot *knot, GdkEvent *event, gpointer)
60 {
61 switch (event->type) {
62 case GDK_MOTION_NOTIFY:
63 break;
64 case GDK_KEY_PRESS:
65 if (get_group0_keyval (&event->key) == GDK_space) {
66 /* stamping mode: both mode(show content and outline) operation with knot */
67 if (!SP_KNOT_IS_GRABBED(knot)) {
68 return FALSE;
69 }
70 SPDesktop *desktop = knot->desktop;
71 Inkscape::SelTrans *seltrans = SP_SELECT_CONTEXT(desktop->event_context)->_seltrans;
72 seltrans->stamp();
73 return TRUE;
74 }
75 break;
76 default:
77 break;
78 }
80 return FALSE;
81 }
83 Inkscape::SelTrans::SelTrans(SPDesktop *desktop) :
84 _desktop(desktop),
85 _selcue(desktop),
86 _state(STATE_SCALE),
87 _show(SHOW_CONTENT),
88 _grabbed(false),
89 _show_handles(true),
90 _bbox(),
91 _approximate_bbox(),
92 _absolute_affine(Geom::Scale(1,1)),
93 _opposite(Geom::Point(0,0)),
94 _opposite_for_specpoints(Geom::Point(0,0)),
95 _opposite_for_bboxpoints(Geom::Point(0,0)),
96 _origin_for_specpoints(Geom::Point(0,0)),
97 _origin_for_bboxpoints(Geom::Point(0,0)),
98 _chandle(NULL),
99 _stamp_cache(NULL),
100 _message_context(desktop->messageStack())
101 {
102 Inkscape::Preferences *prefs = Inkscape::Preferences::get();
103 int prefs_bbox = prefs->getBool("/tools/bounding_box");
104 _snap_bbox_type = !prefs_bbox ?
105 SPItem::APPROXIMATE_BBOX : SPItem::GEOMETRIC_BBOX;
107 g_return_if_fail(desktop != NULL);
109 for (int i = 0; i < 8; i++) {
110 _shandle[i] = NULL;
111 _rhandle[i] = NULL;
112 }
114 _updateVolatileState();
115 _current_relative_affine.setIdentity();
117 _center_is_set = false; // reread _center from items, or set to bbox midpoint
119 _updateHandles();
121 _selection = sp_desktop_selection(desktop);
123 _norm = sp_canvas_item_new(sp_desktop_controls(desktop),
124 SP_TYPE_CTRL,
125 "anchor", GTK_ANCHOR_CENTER,
126 "mode", SP_CTRL_MODE_COLOR,
127 "shape", SP_CTRL_SHAPE_BITMAP,
128 "size", 13.0,
129 "filled", TRUE,
130 "fill_color", 0x00000000,
131 "stroked", TRUE,
132 "stroke_color", 0x000000a0,
133 "pixbuf", handles[12],
134 NULL);
136 _grip = sp_canvas_item_new(sp_desktop_controls(desktop),
137 SP_TYPE_CTRL,
138 "anchor", GTK_ANCHOR_CENTER,
139 "mode", SP_CTRL_MODE_XOR,
140 "shape", SP_CTRL_SHAPE_CROSS,
141 "size", 7.0,
142 "filled", TRUE,
143 "fill_color", 0xffffff7f,
144 "stroked", TRUE,
145 "stroke_color", 0xffffffff,
146 "pixbuf", handles[12],
147 NULL);
149 sp_canvas_item_hide(_grip);
150 sp_canvas_item_hide(_norm);
152 for (int i = 0; i < 4; i++) {
153 _l[i] = sp_canvas_item_new(sp_desktop_controls(desktop), SP_TYPE_CTRLLINE, NULL);
154 sp_canvas_item_hide(_l[i]);
155 }
157 _sel_changed_connection = _selection->connectChanged(
158 sigc::mem_fun(*this, &Inkscape::SelTrans::_selChanged)
159 );
161 _sel_modified_connection = _selection->connectModified(
162 sigc::mem_fun(*this, &Inkscape::SelTrans::_selModified)
163 );
164 }
166 Inkscape::SelTrans::~SelTrans()
167 {
168 _sel_changed_connection.disconnect();
169 _sel_modified_connection.disconnect();
171 for (unsigned int i = 0; i < 8; i++) {
172 if (_shandle[i]) {
173 g_object_unref(G_OBJECT(_shandle[i]));
174 _shandle[i] = NULL;
175 }
176 if (_rhandle[i]) {
177 g_object_unref(G_OBJECT(_rhandle[i]));
178 _rhandle[i] = NULL;
179 }
180 }
181 if (_chandle) {
182 g_object_unref(G_OBJECT(_chandle));
183 _chandle = NULL;
184 }
186 if (_norm) {
187 gtk_object_destroy(GTK_OBJECT(_norm));
188 _norm = NULL;
189 }
190 if (_grip) {
191 gtk_object_destroy(GTK_OBJECT(_grip));
192 _grip = NULL;
193 }
194 for (int i = 0; i < 4; i++) {
195 if (_l[i]) {
196 gtk_object_destroy(GTK_OBJECT(_l[i]));
197 _l[i] = NULL;
198 }
199 }
201 for (unsigned i = 0; i < _items.size(); i++) {
202 sp_object_unref(SP_OBJECT(_items[i]), NULL);
203 }
205 _items.clear();
206 _items_const.clear();
207 _items_affines.clear();
208 _items_centers.clear();
209 }
211 void Inkscape::SelTrans::resetState()
212 {
213 _state = STATE_SCALE;
214 }
216 void Inkscape::SelTrans::increaseState()
217 {
218 if (_state == STATE_SCALE) {
219 _state = STATE_ROTATE;
220 } else {
221 _state = STATE_SCALE;
222 }
224 _center_is_set = true; // no need to reread center
226 _updateHandles();
227 }
229 void Inkscape::SelTrans::setCenter(Geom::Point const &p)
230 {
231 _center = p;
232 _center_is_set = true;
234 // Write the new center position into all selected items
235 for (GSList const *l = _desktop->selection->itemList(); l; l = l->next) {
236 SPItem *it = (SPItem*)SP_OBJECT(l->data);
237 it->setCenter(p);
238 // only set the value; updating repr and document_done will be done once, on ungrab
239 }
241 _updateHandles();
242 }
244 void Inkscape::SelTrans::grab(Geom::Point const &p, gdouble x, gdouble y, bool show_handles, bool translating)
245 {
246 // While dragging a handle, we will either scale, skew, or rotate and the "translating" parameter will be false
247 // When dragging the selected item itself however, we will translate the selection and that parameter will be true
248 Inkscape::Selection *selection = sp_desktop_selection(_desktop);
249 Inkscape::Preferences *prefs = Inkscape::Preferences::get();
251 g_return_if_fail(!_grabbed);
253 _grabbed = true;
254 _show_handles = show_handles;
255 _updateVolatileState();
256 _current_relative_affine.setIdentity();
258 _changed = false;
260 if (_empty) {
261 return;
262 }
264 for (GSList const *l = selection->itemList(); l; l = l->next) {
265 SPItem *it = (SPItem *)sp_object_ref(SP_OBJECT(l->data), NULL);
266 _items.push_back(it);
267 _items_const.push_back(it);
268 _items_affines.push_back(sp_item_i2d_affine(it));
269 _items_centers.push_back(it->getCenter()); // for content-dragging, we need to remember original centers
270 }
272 _handle_x = x;
273 _handle_y = y;
275 // The selector tool should snap the bbox, special snappoints, and path nodes
276 // (The special points are the handles, center, rotation axis, font baseline, ends of spiral, etc.)
278 // First, determine the bounding box
279 _bbox = selection->bounds(_snap_bbox_type);
280 _approximate_bbox = selection->bounds(SPItem::APPROXIMATE_BBOX); // Used for correctly scaling the strokewidth
281 _geometric_bbox = selection->bounds(SPItem::GEOMETRIC_BBOX);
283 _point = p;
284 if (_geometric_bbox) {
285 _point_geom = _geometric_bbox->min() + _geometric_bbox->dimensions() * Geom::Scale(x, y);
286 } else {
287 _point_geom = p;
288 }
290 // Next, get all points to consider for snapping
291 SnapManager const &m = _desktop->namedview->snap_manager;
292 Inkscape::SnapPreferences local_snapprefs = m.snapprefs;
293 local_snapprefs.setSnapToItemNode(true); // We should get at least the cusp nodes here. This might
294 // have been turned off because (for example) the user only want paths as a snap target, not nodes
295 // but as a snap source we still need some nodes though!
296 _snap_points.clear();
297 _snap_points = selection->getSnapPoints(&local_snapprefs);
298 std::vector<std::pair<Geom::Point, int> > snap_points_hull = selection->getSnapPointsConvexHull(&local_snapprefs);
299 if (_snap_points.size() > 200) {
300 /* Snapping a huge number of nodes will take way too long, so limit the number of snappable nodes
301 An average user would rarely ever try to snap such a large number of nodes anyway, because
302 (s)he could hardly discern which node would be snapping */
303 if (prefs->getBool("/options/snapclosestonly/value", false)) {
304 _keepClosestPointOnly(_snap_points, p);
305 } else {
306 _snap_points = snap_points_hull;
307 }
308 // Unfortunately, by now we will have lost the font-baseline snappoints :-(
309 }
311 // Find bbox hulling all special points, which excludes stroke width. Here we need to include the
312 // path nodes, for example because a rectangle which has been converted to a path doesn't have
313 // any other special points
314 Geom::Rect snap_points_bbox;
315 if ( snap_points_hull.empty() == false ) {
316 std::vector<std::pair<Geom::Point, int> >::iterator i = snap_points_hull.begin();
317 snap_points_bbox = Geom::Rect((*i).first, (*i).first);
318 i++;
319 while (i != snap_points_hull.end()) {
320 snap_points_bbox.expandTo((*i).first);
321 i++;
322 }
323 }
325 _bbox_points.clear();
326 _bbox_points_for_translating.clear();
327 // Collect the bounding box's corners and midpoints for each selected item
328 if (m.snapprefs.getSnapModeBBox()) {
329 bool mp = m.snapprefs.getSnapBBoxMidpoints();
330 bool emp = m.snapprefs.getSnapBBoxEdgeMidpoints();
331 // Preferably we'd use the bbox of each selected item, instead of the bbox of the selection as a whole; for translations
332 // this is easy to do, but when snapping the visual bbox while scaling we will have to compensate for the scaling of the
333 // stroke width. (see get_scale_transform_with_stroke()). This however is currently only implemented for a single bbox.
334 // That's why we have both _bbox_points_for_translating and _bbox_points.
335 getBBoxPoints(selection->bounds(_snap_bbox_type), &_bbox_points, false, true, emp, mp);
336 if (((_items.size() > 0) && (_items.size() < 50)) || prefs->getBool("/options/snapclosestonly/value", false)) {
337 // More than 50 items will produce at least 200 bbox points, which might make Inkscape crawl
338 // (see the comment a few lines above). In that case we will use the bbox of the selection as a whole
339 for (unsigned i = 0; i < _items.size(); i++) {
340 getBBoxPoints(sp_item_bbox_desktop(_items[i], _snap_bbox_type), &_bbox_points_for_translating, false, true, emp, mp);
341 }
342 } else {
343 _bbox_points_for_translating = _bbox_points; // use the bbox points of the selection as a whole
344 }
345 }
347 if (_bbox) {
348 // There are two separate "opposites" (i.e. opposite w.r.t. the handle being dragged):
349 // - one for snapping the boundingbox, which can be either visual or geometric
350 // - one for snapping the special points
351 // The "opposite" in case of a geometric boundingbox always coincides with the "opposite" for the special points
352 // These distinct "opposites" are needed in the snapmanager to avoid bugs such as #sf1540195 (in which
353 // a box is caught between two guides)
354 _opposite_for_bboxpoints = _bbox->min() + _bbox->dimensions() * Geom::Scale(1-x, 1-y);
355 _opposite_for_specpoints = snap_points_bbox.min() + snap_points_bbox.dimensions() * Geom::Scale(1-x, 1-y);
356 _opposite = _opposite_for_bboxpoints;
357 }
359 // When snapping the node closest to the mouse pointer is absolutely preferred over the closest snap
360 // (i.e. when weight == 1), then we will not even try to snap to other points and discard those other
361 // points immediately.
363 if (prefs->getBool("/options/snapclosestonly/value", false)) {
364 if (m.snapprefs.getSnapModeNode()) {
365 _keepClosestPointOnly(_snap_points, p);
366 } else {
367 _snap_points.clear(); // don't keep any point
368 }
370 if (m.snapprefs.getSnapModeBBox()) {
371 _keepClosestPointOnly(_bbox_points, p);
372 _keepClosestPointOnly(_bbox_points_for_translating, p);
373 } else {
374 _bbox_points.clear(); // don't keep any point
375 _bbox_points_for_translating.clear();
376 }
378 // Each of the three vectors of snappoints now contains either one snappoint or none at all.
379 if (_snap_points.size() > 1 || _bbox_points.size() > 1 || _bbox_points_for_translating.size() > 1) {
380 g_warning("Incorrect assumption encountered while finding the snap source; nothing serious, but please report to Diederik");
381 }
383 // Now let's reduce this to a single closest snappoint
384 Geom::Coord dsp = _snap_points.size() == 1 ? Geom::L2((_snap_points.at(0)).first - p) : NR_HUGE;
385 Geom::Coord dbbp = _bbox_points.size() == 1 ? Geom::L2((_bbox_points.at(0)).first - p) : NR_HUGE;
386 Geom::Coord dbbpft = _bbox_points_for_translating.size() == 1 ? Geom::L2((_bbox_points_for_translating.at(0)).first - p) : NR_HUGE;
388 if (translating) {
389 _bbox_points.clear();
390 if (dsp > dbbpft) {
391 _snap_points.clear();
392 } else {
393 _bbox_points_for_translating.clear();
394 }
395 } else {
396 _bbox_points_for_translating.clear();
397 if (dsp > dbbp) {
398 _snap_points.clear();
399 } else {
400 _bbox_points.clear();
401 }
402 }
404 if ((_snap_points.size() + _bbox_points.size() + _bbox_points_for_translating.size()) > 1) {
405 g_warning("Checking number of snap sources failed; nothing serious, but please report to Diederik");
406 }
408 // Optionally, show the snap source
409 if (!(_state == STATE_ROTATE && x != 0.5 && y != 0.5)) { // but not when we're dragging a rotation handle, because that won't snap
410 // Now either _bbox_points or _snap_points has a single element, the other one has zero..... or both have zero elements
411 if ((_snap_points.size() + _bbox_points.size() + _bbox_points_for_translating.size()) > 1) {
412 g_warning("too many snap sources to display, please fix this");
413 } else if (m.snapprefs.getSnapEnabledGlobally()) {
414 if (_bbox_points.size() == 1) {
415 _desktop->snapindicator->set_new_snapsource(_bbox_points.at(0));
416 } else if (_bbox_points_for_translating.size() == 1) {
417 _desktop->snapindicator->set_new_snapsource(_bbox_points_for_translating.at(0));
418 } else if (_snap_points.size() == 1){
419 _desktop->snapindicator->set_new_snapsource(_snap_points.at(0));
420 }
421 }
422 }
423 }
425 if ((x != -1) && (y != -1)) {
426 sp_canvas_item_show(_norm);
427 sp_canvas_item_show(_grip);
428 }
430 if (_show == SHOW_OUTLINE) {
431 for (int i = 0; i < 4; i++)
432 sp_canvas_item_show(_l[i]);
433 }
435 _updateHandles();
436 g_return_if_fail(_stamp_cache == NULL);
437 }
439 void Inkscape::SelTrans::transform(Geom::Matrix const &rel_affine, Geom::Point const &norm)
440 {
441 g_return_if_fail(_grabbed);
442 g_return_if_fail(!_empty);
444 Geom::Matrix const affine( Geom::Translate(-norm) * rel_affine * Geom::Translate(norm) );
446 if (_show == SHOW_CONTENT) {
447 // update the content
448 for (unsigned i = 0; i < _items.size(); i++) {
449 SPItem &item = *_items[i];
450 Geom::Matrix const &prev_transform = _items_affines[i];
451 sp_item_set_i2d_affine(&item, prev_transform * affine);
452 }
453 } else {
454 if (_bbox) {
455 Geom::Point p[4];
456 /* update the outline */
457 for (unsigned i = 0 ; i < 4 ; i++) {
458 p[i] = _bbox->corner(i) * affine;
459 }
460 for (unsigned i = 0 ; i < 4 ; i++) {
461 sp_ctrlline_set_coords(SP_CTRLLINE(_l[i]), p[i], p[(i+1)%4]);
462 }
463 }
464 }
466 _current_relative_affine = affine;
467 _changed = true;
468 _updateHandles();
469 }
471 void Inkscape::SelTrans::ungrab()
472 {
473 g_return_if_fail(_grabbed);
474 _grabbed = false;
475 _show_handles = true;
477 _desktop->snapindicator->remove_snapsource();
479 Inkscape::Selection *selection = sp_desktop_selection(_desktop);
480 _updateVolatileState();
482 for (unsigned i = 0; i < _items.size(); i++) {
483 sp_object_unref(SP_OBJECT(_items[i]), NULL);
484 }
486 sp_canvas_item_hide(_norm);
487 sp_canvas_item_hide(_grip);
489 if (_show == SHOW_OUTLINE) {
490 for (int i = 0; i < 4; i++)
491 sp_canvas_item_hide(_l[i]);
492 }
494 if (_stamp_cache) {
495 g_slist_free(_stamp_cache);
496 _stamp_cache = NULL;
497 }
499 _message_context.clear();
501 if (!_empty && _changed) {
502 sp_selection_apply_affine(selection, _current_relative_affine, (_show == SHOW_OUTLINE)? true : false);
503 if (_center) {
504 *_center *= _current_relative_affine;
505 _center_is_set = true;
506 }
508 // If dragging showed content live, sp_selection_apply_affine cannot change the centers
509 // appropriately - it does not know the original positions of the centers (all objects already have
510 // the new bboxes). So we need to reset the centers from our saved array.
511 if (_show != SHOW_OUTLINE && !_current_relative_affine.isTranslation()) {
512 for (unsigned i = 0; i < _items_centers.size(); i++) {
513 SPItem *currentItem = _items[i];
514 if (currentItem->isCenterSet()) { // only if it's already set
515 currentItem->setCenter (_items_centers[i] * _current_relative_affine);
516 SP_OBJECT(currentItem)->updateRepr();
517 }
518 }
519 }
521 _items.clear();
522 _items_const.clear();
523 _items_affines.clear();
524 _items_centers.clear();
526 if (_current_relative_affine.isTranslation()) {
527 sp_document_done(sp_desktop_document(_desktop), SP_VERB_CONTEXT_SELECT,
528 _("Move"));
529 } else if (_current_relative_affine.without_translation().isScale()) {
530 sp_document_done(sp_desktop_document(_desktop), SP_VERB_CONTEXT_SELECT,
531 _("Scale"));
532 } else if (_current_relative_affine.without_translation().isRotation()) {
533 sp_document_done(sp_desktop_document(_desktop), SP_VERB_CONTEXT_SELECT,
534 _("Rotate"));
535 } else {
536 sp_document_done(sp_desktop_document(_desktop), SP_VERB_CONTEXT_SELECT,
537 _("Skew"));
538 }
540 } else {
542 if (_center_is_set) {
543 // we were dragging center; update reprs and commit undoable action
544 for (GSList const *l = _desktop->selection->itemList(); l; l = l->next) {
545 SPItem *it = (SPItem*)SP_OBJECT(l->data);
546 SP_OBJECT(it)->updateRepr();
547 }
548 sp_document_done (sp_desktop_document(_desktop), SP_VERB_CONTEXT_SELECT,
549 _("Set center"));
550 }
552 _items.clear();
553 _items_const.clear();
554 _items_affines.clear();
555 _items_centers.clear();
556 _updateHandles();
557 }
558 }
560 /* fixme: This is really bad, as we compare positions for each stamp (Lauris) */
561 /* fixme: IMHO the best way to keep sort cache would be to implement timestamping at last */
563 void Inkscape::SelTrans::stamp()
564 {
565 Inkscape::Selection *selection = sp_desktop_selection(_desktop);
567 bool fixup = !_grabbed;
568 if ( fixup && _stamp_cache ) {
569 // TODO - give a proper fix. Simple temproary work-around for the grab() issue
570 g_slist_free(_stamp_cache);
571 _stamp_cache = NULL;
572 }
574 /* stamping mode */
575 if (!_empty) {
576 GSList *l;
577 if (_stamp_cache) {
578 l = _stamp_cache;
579 } else {
580 /* Build cache */
581 l = g_slist_copy((GSList *) selection->itemList());
582 l = g_slist_sort(l, (GCompareFunc) sp_object_compare_position);
583 _stamp_cache = l;
584 }
586 while (l) {
587 SPItem *original_item = SP_ITEM(l->data);
588 Inkscape::XML::Node *original_repr = SP_OBJECT_REPR(original_item);
590 // remember the position of the item
591 gint pos = original_repr->position();
592 // remember parent
593 Inkscape::XML::Node *parent = sp_repr_parent(original_repr);
595 Inkscape::XML::Node *copy_repr = original_repr->duplicate(parent->document());
597 // add the new repr to the parent
598 parent->appendChild(copy_repr);
599 // move to the saved position
600 copy_repr->setPosition(pos > 0 ? pos : 0);
602 SPItem *copy_item = (SPItem *) sp_desktop_document(_desktop)->getObjectByRepr(copy_repr);
604 Geom::Matrix const *new_affine;
605 if (_show == SHOW_OUTLINE) {
606 Geom::Matrix const i2d(sp_item_i2d_affine(original_item));
607 Geom::Matrix const i2dnew( i2d * _current_relative_affine );
608 sp_item_set_i2d_affine(copy_item, i2dnew);
609 new_affine = ©_item->transform;
610 } else {
611 new_affine = &original_item->transform;
612 }
614 sp_item_write_transform(copy_item, copy_repr, *new_affine);
616 if ( copy_item->isCenterSet() && _center ) {
617 copy_item->setCenter(*_center * _current_relative_affine);
618 }
620 Inkscape::GC::release(copy_repr);
621 l = l->next;
622 }
623 sp_document_done(sp_desktop_document(_desktop), SP_VERB_CONTEXT_SELECT,
624 _("Stamp"));
625 }
627 if ( fixup && _stamp_cache ) {
628 // TODO - give a proper fix. Simple temproary work-around for the grab() issue
629 g_slist_free(_stamp_cache);
630 _stamp_cache = NULL;
631 }
632 }
634 void Inkscape::SelTrans::_updateHandles()
635 {
636 if ( !_show_handles || _empty )
637 {
638 sp_remove_handles(_shandle, 8);
639 sp_remove_handles(_rhandle, 8);
640 sp_remove_handles(&_chandle, 1);
641 return;
642 }
644 // center handle
645 if ( _chandle == NULL ) {
646 _chandle = sp_knot_new(_desktop, _("<b>Center</b> of rotation and skewing: drag to reposition; scaling with Shift also uses this center"));
648 _chandle->setShape (SP_CTRL_SHAPE_BITMAP);
649 _chandle->setSize (13);
650 _chandle->setAnchor (handle_center.anchor);
651 _chandle->setMode (SP_CTRL_MODE_XOR);
652 _chandle->setFill(0x00000000, 0x00000000, 0x00000000);
653 _chandle->setStroke(0x000000ff, 0xff0000b0, 0xff0000b0);
654 _chandle->setPixbuf(handles[handle_center.control]);
655 sp_knot_update_ctrl(_chandle);
657 g_signal_connect(G_OBJECT(_chandle), "request",
658 G_CALLBACK(sp_sel_trans_handle_request), (gpointer) &handle_center);
659 g_signal_connect(G_OBJECT(_chandle), "moved",
660 G_CALLBACK(sp_sel_trans_handle_new_event), (gpointer) &handle_center);
661 g_signal_connect(G_OBJECT(_chandle), "grabbed",
662 G_CALLBACK(sp_sel_trans_handle_grab), (gpointer) &handle_center);
663 g_signal_connect(G_OBJECT(_chandle), "ungrabbed",
664 G_CALLBACK(sp_sel_trans_handle_ungrab), (gpointer) &handle_center);
665 g_signal_connect(G_OBJECT(_chandle), "clicked",
666 G_CALLBACK(sp_sel_trans_handle_click), (gpointer) &handle_center);
667 }
669 sp_remove_handles(&_chandle, 1);
670 if ( _state == STATE_SCALE ) {
671 sp_remove_handles(_rhandle, 8);
672 _showHandles(_shandle, handles_scale, 8,
673 _("<b>Squeeze or stretch</b> selection; with <b>Ctrl</b> to scale uniformly; with <b>Shift</b> to scale around rotation center"),
674 _("<b>Scale</b> selection; with <b>Ctrl</b> to scale uniformly; with <b>Shift</b> to scale around rotation center"));
675 } else {
676 sp_remove_handles(_shandle, 8);
677 _showHandles(_rhandle, handles_rotate, 8,
678 _("<b>Skew</b> selection; with <b>Ctrl</b> to snap angle; with <b>Shift</b> to skew around the opposite side"),
679 _("<b>Rotate</b> selection; with <b>Ctrl</b> to snap angle; with <b>Shift</b> to rotate around the opposite corner"));
680 }
682 if (!_center_is_set) {
683 _center = _desktop->selection->center();
684 _center_is_set = true;
685 }
687 if ( _state == STATE_SCALE || !_center ) {
688 sp_knot_hide(_chandle);
689 } else {
690 sp_knot_show(_chandle);
691 sp_knot_moveto(_chandle, *_center);
692 }
693 }
695 void Inkscape::SelTrans::_updateVolatileState()
696 {
697 Inkscape::Selection *selection = sp_desktop_selection(_desktop);
698 _empty = selection->isEmpty();
700 if (_empty) {
701 return;
702 }
704 //Update the bboxes
705 _bbox = selection->bounds(_snap_bbox_type);
706 _approximate_bbox = selection->bounds(SPItem::APPROXIMATE_BBOX);
708 if (!_bbox) {
709 _empty = true;
710 return;
711 }
713 _strokewidth = stroke_average_width (selection->itemList());
714 }
716 static void sp_remove_handles(SPKnot *knot[], gint num)
717 {
718 for (int i = 0; i < num; i++) {
719 if (knot[i] != NULL) {
720 sp_knot_hide(knot[i]);
721 }
722 }
723 }
725 void Inkscape::SelTrans::_showHandles(SPKnot *knot[], SPSelTransHandle const handle[], gint num,
726 gchar const *even_tip, gchar const *odd_tip)
727 {
728 g_return_if_fail( !_empty );
730 for (int i = 0; i < num; i++) {
731 if (knot[i] == NULL) {
732 knot[i] = sp_knot_new(_desktop, i % 2 ? even_tip : odd_tip);
734 knot[i]->setShape (SP_CTRL_SHAPE_BITMAP);
735 knot[i]->setSize (13);
736 knot[i]->setAnchor (handle[i].anchor);
737 knot[i]->setMode (SP_CTRL_MODE_XOR);
738 knot[i]->setFill(0x000000ff, 0x00ff6600, 0x00ff6600); // inversion, green, green
739 knot[i]->setStroke(0x000000ff, 0x000000ff, 0x000000ff); // inversion
740 knot[i]->setPixbuf(handles[handle[i].control]);
741 sp_knot_update_ctrl(knot[i]);
743 g_signal_connect(G_OBJECT(knot[i]), "request",
744 G_CALLBACK(sp_sel_trans_handle_request), (gpointer) &handle[i]);
745 g_signal_connect(G_OBJECT(knot[i]), "moved",
746 G_CALLBACK(sp_sel_trans_handle_new_event), (gpointer) &handle[i]);
747 g_signal_connect(G_OBJECT(knot[i]), "grabbed",
748 G_CALLBACK(sp_sel_trans_handle_grab), (gpointer) &handle[i]);
749 g_signal_connect(G_OBJECT(knot[i]), "ungrabbed",
750 G_CALLBACK(sp_sel_trans_handle_ungrab), (gpointer) &handle[i]);
751 g_signal_connect(G_OBJECT(knot[i]), "event", G_CALLBACK(sp_seltrans_handle_event), (gpointer) &handle[i]);
752 }
753 sp_knot_show(knot[i]);
755 Geom::Point const handle_pt(handle[i].x, handle[i].y);
756 // shouldn't have nullary bbox, but knots
757 g_assert(_bbox);
758 Geom::Point p( _bbox->min()
759 + ( _bbox->dimensions()
760 * Geom::Scale(handle_pt) ) );
762 sp_knot_moveto(knot[i], p);
763 }
764 }
766 static void sp_sel_trans_handle_grab(SPKnot *knot, guint state, gpointer data)
767 {
768 SP_SELECT_CONTEXT(knot->desktop->event_context)->_seltrans->handleGrab(
769 knot, state, *(SPSelTransHandle const *) data
770 );
771 }
773 static void sp_sel_trans_handle_ungrab(SPKnot *knot, guint /*state*/, gpointer /*data*/)
774 {
775 SP_SELECT_CONTEXT(knot->desktop->event_context)->_seltrans->ungrab();
776 }
778 static void sp_sel_trans_handle_new_event(SPKnot *knot, Geom::Point *position, guint state, gpointer data)
779 {
780 SP_SELECT_CONTEXT(knot->desktop->event_context)->_seltrans->handleNewEvent(
781 knot, position, state, *(SPSelTransHandle const *) data
782 );
783 }
785 static gboolean sp_sel_trans_handle_request(SPKnot *knot, Geom::Point *position, guint state, gboolean *data)
786 {
787 return SP_SELECT_CONTEXT(knot->desktop->event_context)->_seltrans->handleRequest(
788 knot, position, state, *(SPSelTransHandle const *) data
789 );
790 }
792 static void sp_sel_trans_handle_click(SPKnot *knot, guint state, gpointer data)
793 {
794 SP_SELECT_CONTEXT(knot->desktop->event_context)->_seltrans->handleClick(
795 knot, state, *(SPSelTransHandle const *) data
796 );
797 }
799 void Inkscape::SelTrans::handleClick(SPKnot */*knot*/, guint state, SPSelTransHandle const &handle)
800 {
801 switch (handle.anchor) {
802 case GTK_ANCHOR_CENTER:
803 if (state & GDK_SHIFT_MASK) {
804 // Unset the center position for all selected items
805 for (GSList const *l = _desktop->selection->itemList(); l; l = l->next) {
806 SPItem *it = (SPItem*)(SP_OBJECT(l->data));
807 it->unsetCenter();
808 SP_OBJECT(it)->updateRepr();
809 _center_is_set = false; // center has changed
810 _updateHandles();
811 }
812 sp_document_done (sp_desktop_document(_desktop), SP_VERB_CONTEXT_SELECT,
813 _("Reset center"));
814 }
815 break;
816 default:
817 break;
818 }
819 }
821 void Inkscape::SelTrans::handleGrab(SPKnot *knot, guint /*state*/, SPSelTransHandle const &handle)
822 {
823 switch (handle.anchor) {
824 case GTK_ANCHOR_CENTER:
825 g_object_set(G_OBJECT(_grip),
826 "shape", SP_CTRL_SHAPE_BITMAP,
827 "size", 13.0,
828 NULL);
829 sp_canvas_item_show(_grip);
830 break;
831 default:
832 g_object_set(G_OBJECT(_grip),
833 "shape", SP_CTRL_SHAPE_CROSS,
834 "size", 7.0,
835 NULL);
836 sp_canvas_item_show(_norm);
837 sp_canvas_item_show(_grip);
839 break;
840 }
842 grab(sp_knot_position(knot), handle.x, handle.y, FALSE, FALSE);
843 }
846 void Inkscape::SelTrans::handleNewEvent(SPKnot *knot, Geom::Point *position, guint state, SPSelTransHandle const &handle)
847 {
848 if (!SP_KNOT_IS_GRABBED(knot)) {
849 return;
850 }
852 // in case items have been unhooked from the document, don't
853 // try to continue processing events for them.
854 for (unsigned int i = 0; i < _items.size(); i++) {
855 if (!SP_OBJECT_DOCUMENT(SP_OBJECT(_items[i])) ) {
856 return;
857 }
858 }
860 handle.action(this, handle, *position, state);
861 }
864 gboolean Inkscape::SelTrans::handleRequest(SPKnot *knot, Geom::Point *position, guint state, SPSelTransHandle const &handle)
865 {
866 if (!SP_KNOT_IS_GRABBED(knot)) {
867 return TRUE;
868 }
870 knot->desktop->setPosition(*position);
872 // When holding shift while rotating or skewing, the transformation will be
873 // relative to the point opposite of the handle; otherwise it will be relative
874 // to the center as set for the selection
875 if ((!(state & GDK_SHIFT_MASK) == !(_state == STATE_ROTATE)) && (&handle != &handle_center)) {
876 _origin = _opposite;
877 _origin_for_bboxpoints = _opposite_for_bboxpoints;
878 _origin_for_specpoints = _opposite_for_specpoints;
879 } else if (_center) {
880 _origin = *_center;
881 _origin_for_bboxpoints = *_center;
882 _origin_for_specpoints = *_center;
883 } else {
884 // FIXME
885 return TRUE;
886 }
887 if (handle.request(this, handle, *position, state)) {
888 sp_knot_set_position(knot, *position, state);
889 SP_CTRL(_grip)->moveto(*position);
890 SP_CTRL(_norm)->moveto(_origin);
891 }
893 return TRUE;
894 }
897 void Inkscape::SelTrans::_selChanged(Inkscape::Selection */*selection*/)
898 {
899 if (!_grabbed) {
900 Inkscape::Preferences *prefs = Inkscape::Preferences::get();
901 // reread in case it changed on the fly:
902 int prefs_bbox = prefs->getBool("/tools/bounding_box");
903 _snap_bbox_type = !prefs_bbox ?
904 SPItem::APPROXIMATE_BBOX : SPItem::GEOMETRIC_BBOX;
905 //SPItem::APPROXIMATE_BBOX will be replaced by SPItem::VISUAL_BBOX, as soon as the latter is implemented properly
907 _updateVolatileState();
908 _current_relative_affine.setIdentity();
909 _center_is_set = false; // center(s) may have changed
910 _updateHandles();
911 }
912 }
914 void Inkscape::SelTrans::_selModified(Inkscape::Selection */*selection*/, guint /*flags*/)
915 {
916 if (!_grabbed) {
917 _updateVolatileState();
918 _current_relative_affine.setIdentity();
920 // reset internal flag
921 _changed = false;
923 _center_is_set = false; // center(s) may have changed
925 _updateHandles();
926 }
927 }
929 /*
930 * handlers for handle move-request
931 */
933 /** Returns -1 or 1 according to the sign of x. Returns 1 for 0 and NaN. */
934 static double sign(double const x)
935 {
936 return ( x < 0
937 ? -1
938 : 1 );
939 }
941 gboolean sp_sel_trans_scale_request(Inkscape::SelTrans *seltrans,
942 SPSelTransHandle const &, Geom::Point &pt, guint state)
943 {
944 return seltrans->scaleRequest(pt, state);
945 }
947 gboolean sp_sel_trans_stretch_request(Inkscape::SelTrans *seltrans,
948 SPSelTransHandle const &handle, Geom::Point &pt, guint state)
949 {
950 return seltrans->stretchRequest(handle, pt, state);
951 }
953 gboolean sp_sel_trans_skew_request(Inkscape::SelTrans *seltrans,
954 SPSelTransHandle const &handle, Geom::Point &pt, guint state)
955 {
956 return seltrans->skewRequest(handle, pt, state);
957 }
959 gboolean sp_sel_trans_rotate_request(Inkscape::SelTrans *seltrans,
960 SPSelTransHandle const &, Geom::Point &pt, guint state)
961 {
962 return seltrans->rotateRequest(pt, state);
963 }
965 gboolean sp_sel_trans_center_request(Inkscape::SelTrans *seltrans,
966 SPSelTransHandle const &, Geom::Point &pt, guint state)
967 {
968 return seltrans->centerRequest(pt, state);
969 }
971 gboolean Inkscape::SelTrans::scaleRequest(Geom::Point &pt, guint state)
972 {
974 // Calculate the scale factors, which can be either visual or geometric
975 // depending on which type of bbox is currently being used (see preferences -> selector tool)
976 Geom::Scale default_scale = calcScaleFactors(_point, pt, _origin);
978 // Find the scale factors for the geometric bbox
979 Geom::Point pt_geom = _getGeomHandlePos(pt);
980 Geom::Scale geom_scale = calcScaleFactors(_point_geom, pt_geom, _origin_for_specpoints);
982 _absolute_affine = Geom::identity(); //Initialize the scaler
984 if (state & GDK_MOD1_MASK) { // scale by an integer multiplier/divider
985 // We're scaling either the visual or the geometric bbox here (see the comment above)
986 for ( unsigned int i = 0 ; i < 2 ; i++ ) {
987 if (fabs(default_scale[i]) > 1) {
988 default_scale[i] = round(default_scale[i]);
989 } else if (default_scale[i] != 0) {
990 default_scale[i] = 1/round(1/(MIN(default_scale[i], 10)));
991 }
992 }
993 // Update the knot position
994 pt = _calcAbsAffineDefault(default_scale);
995 // When scaling by an integer, snapping is not needed
996 } else {
997 // In all other cases we should try to snap now
998 SnapManager &m = _desktop->namedview->snap_manager;
999 m.setup(_desktop, false, _items_const);
1001 Inkscape::SnappedPoint bb, sn;
1002 Geom::Coord bd(NR_HUGE);
1003 Geom::Coord sd(NR_HUGE);
1005 if ((state & GDK_CONTROL_MASK) || _desktop->isToolboxButtonActive ("lock")) {
1006 // Scale is locked to a 1:1 aspect ratio, so that s[X] must be made to equal s[Y].
1007 //
1008 // The aspect-ratio must be locked before snapping
1009 if (fabs(default_scale[Geom::X]) > fabs(default_scale[Geom::Y])) {
1010 default_scale[Geom::X] = fabs(default_scale[Geom::Y]) * sign(default_scale[Geom::X]);
1011 geom_scale[Geom::X] = fabs(geom_scale[Geom::Y]) * sign(geom_scale[Geom::X]);
1012 } else {
1013 default_scale[Geom::Y] = fabs(default_scale[Geom::X]) * sign(default_scale[Geom::Y]);
1014 geom_scale[Geom::Y] = fabs(geom_scale[Geom::X]) * sign(geom_scale[Geom::Y]);
1015 }
1017 // Snap along a suitable constraint vector from the origin.
1018 bb = m.constrainedSnapScale(SnapPreferences::SNAPPOINT_BBOX, _bbox_points, _point, default_scale, _origin_for_bboxpoints);
1019 sn = m.constrainedSnapScale(SnapPreferences::SNAPPOINT_NODE, _snap_points, _point, geom_scale, _origin_for_specpoints);
1021 /* Choose the smaller difference in scale. Since s[X] == s[Y] we can
1022 ** just compare difference in s[X].
1023 */
1024 bd = bb.getSnapped() ? fabs(bb.getTransformation()[Geom::X] - default_scale[Geom::X]) : NR_HUGE;
1025 sd = sn.getSnapped() ? fabs(sn.getTransformation()[Geom::X] - geom_scale[Geom::X]) : NR_HUGE;
1026 } else {
1027 /* Scale aspect ratio is unlocked */
1028 bb = m.freeSnapScale(SnapPreferences::SNAPPOINT_BBOX, _bbox_points, _point, default_scale, _origin_for_bboxpoints);
1029 sn = m.freeSnapScale(SnapPreferences::SNAPPOINT_NODE, _snap_points, _point, geom_scale, _origin_for_specpoints);
1031 /* Pick the snap that puts us closest to the original scale */
1032 bd = bb.getSnapped() ? fabs(Geom::L2(bb.getTransformation()) - Geom::L2(Geom::Point(default_scale[Geom::X], default_scale[Geom::Y]))) : NR_HUGE;
1033 sd = sn.getSnapped() ? fabs(Geom::L2(sn.getTransformation()) - Geom::L2(Geom::Point(geom_scale[Geom::X], geom_scale[Geom::Y]))) : NR_HUGE;
1034 }
1036 if (!(bb.getSnapped() || sn.getSnapped())) {
1037 // We didn't snap at all! Don't update the handle position, just calculate the new transformation
1038 _calcAbsAffineDefault(default_scale);
1039 _desktop->snapindicator->remove_snaptarget();
1040 } else if (bd < sd) {
1041 // We snapped the bbox (which is either visual or geometric)
1042 _desktop->snapindicator->set_new_snaptarget(bb);
1043 default_scale = Geom::Scale(bb.getTransformation());
1044 // Calculate the new transformation and update the handle position
1045 pt = _calcAbsAffineDefault(default_scale);
1046 } else {
1047 _desktop->snapindicator->set_new_snaptarget(sn);
1048 // We snapped the special points (e.g. nodes), which are not at the visual bbox
1049 // The handle location however (pt) might however be at the visual bbox, so we
1050 // will have to calculate pt taking the stroke width into account
1051 geom_scale = Geom::Scale(sn.getTransformation());
1052 pt = _calcAbsAffineGeom(geom_scale);
1053 }
1054 }
1056 /* Status text */
1057 _message_context.setF(Inkscape::IMMEDIATE_MESSAGE,
1058 _("<b>Scale</b>: %0.2f%% x %0.2f%%; with <b>Ctrl</b> to lock ratio"),
1059 100 * _absolute_affine[0], 100 * _absolute_affine[3]);
1061 return TRUE;
1062 }
1064 gboolean Inkscape::SelTrans::stretchRequest(SPSelTransHandle const &handle, Geom::Point &pt, guint state)
1065 {
1066 Geom::Dim2 axis, perp;
1067 switch (handle.cursor) {
1068 case GDK_TOP_SIDE:
1069 case GDK_BOTTOM_SIDE:
1070 axis = Geom::Y;
1071 perp = Geom::X;
1072 break;
1073 case GDK_LEFT_SIDE:
1074 case GDK_RIGHT_SIDE:
1075 axis = Geom::X;
1076 perp = Geom::Y;
1077 break;
1078 default:
1079 g_assert_not_reached();
1080 return TRUE;
1081 };
1083 // Calculate the scale factors, which can be either visual or geometric
1084 // depending on which type of bbox is currently being used (see preferences -> selector tool)
1085 Geom::Scale default_scale = calcScaleFactors(_point, pt, _origin);
1086 default_scale[perp] = 1;
1088 // Find the scale factors for the geometric bbox
1089 Geom::Point pt_geom = _getGeomHandlePos(pt);
1090 Geom::Scale geom_scale = calcScaleFactors(_point_geom, pt_geom, _origin_for_specpoints);
1091 geom_scale[perp] = 1;
1093 _absolute_affine = Geom::identity(); //Initialize the scaler
1095 if (state & GDK_MOD1_MASK) { // stretch by an integer multiplier/divider
1096 if (fabs(default_scale[axis]) > 1) {
1097 default_scale[axis] = round(default_scale[axis]);
1098 } else if (default_scale[axis] != 0) {
1099 default_scale[axis] = 1/round(1/(MIN(default_scale[axis], 10)));
1100 }
1101 // Calculate the new transformation and update the handle position
1102 pt = _calcAbsAffineDefault(default_scale);
1103 // When stretching by an integer, snapping is not needed
1104 } else {
1105 // In all other cases we should try to snap now
1107 SnapManager &m = _desktop->namedview->snap_manager;
1108 m.setup(_desktop, false, _items_const);
1110 Inkscape::SnappedPoint bb, sn;
1111 g_assert(bb.getSnapped() == false); // Check initialization to catch any regression
1112 Geom::Coord bd(NR_HUGE);
1113 Geom::Coord sd(NR_HUGE);
1115 bool symmetrical = state & GDK_CONTROL_MASK;
1117 bb = m.constrainedSnapStretch(SnapPreferences::SNAPPOINT_BBOX, _bbox_points, _point, Geom::Coord(default_scale[axis]), _origin_for_bboxpoints, Geom::Dim2(axis), symmetrical);
1118 sn = m.constrainedSnapStretch(SnapPreferences::SNAPPOINT_NODE, _snap_points, _point, Geom::Coord(geom_scale[axis]), _origin_for_specpoints, Geom::Dim2(axis), symmetrical);
1120 if (bb.getSnapped()) {
1121 // We snapped the bbox (which is either visual or geometric)
1122 bd = fabs(bb.getTransformation()[axis] - default_scale[axis]);
1123 default_scale[axis] = bb.getTransformation()[axis];
1124 }
1126 if (sn.getSnapped()) {
1127 sd = fabs(sn.getTransformation()[axis] - geom_scale[axis]);
1128 geom_scale[axis] = sn.getTransformation()[axis];
1129 }
1131 if (symmetrical) {
1132 // on ctrl, apply symmetrical scaling instead of stretching
1133 // Preserve aspect ratio, but never flip in the dimension not being edited (by using fabs())
1134 default_scale[perp] = fabs(default_scale[axis]);
1135 geom_scale[perp] = fabs(geom_scale[axis]);
1136 }
1138 if (!(bb.getSnapped() || sn.getSnapped())) {
1139 // We didn't snap at all! Don't update the handle position, just calculate the new transformation
1140 _calcAbsAffineDefault(default_scale);
1141 _desktop->snapindicator->remove_snaptarget();
1142 } else if (bd < sd) {
1143 _desktop->snapindicator->set_new_snaptarget(bb);
1144 // Calculate the new transformation and update the handle position
1145 pt = _calcAbsAffineDefault(default_scale);
1146 } else {
1147 _desktop->snapindicator->set_new_snaptarget(sn);
1148 // We snapped the special points (e.g. nodes), which are not at the visual bbox
1149 // The handle location however (pt) might however be at the visual bbox, so we
1150 // will have to calculate pt taking the stroke width into account
1151 pt = _calcAbsAffineGeom(geom_scale);
1152 }
1153 }
1155 // status text
1156 _message_context.setF(Inkscape::IMMEDIATE_MESSAGE,
1157 _("<b>Scale</b>: %0.2f%% x %0.2f%%; with <b>Ctrl</b> to lock ratio"),
1158 100 * _absolute_affine[0], 100 * _absolute_affine[3]);
1160 return TRUE;
1161 }
1163 gboolean Inkscape::SelTrans::skewRequest(SPSelTransHandle const &handle, Geom::Point &pt, guint state)
1164 {
1165 /* When skewing (or rotating):
1166 * 1) the stroke width will not change. This makes life much easier because we don't have to
1167 * account for that (like for scaling or stretching). As a consequence, all points will
1168 * have the same origin for the transformation and for the snapping.
1169 * 2) When holding shift, the transformation will be relative to the point opposite of
1170 * the handle; otherwise it will be relative to the center as set for the selection
1171 */
1173 Geom::Dim2 dim_a;
1174 Geom::Dim2 dim_b;
1176 switch (handle.cursor) {
1177 case GDK_SB_H_DOUBLE_ARROW:
1178 dim_a = Geom::Y;
1179 dim_b = Geom::X;
1180 break;
1181 case GDK_SB_V_DOUBLE_ARROW:
1182 dim_a = Geom::X;
1183 dim_b = Geom::Y;
1184 break;
1185 default:
1186 g_assert_not_reached();
1187 abort();
1188 break;
1189 }
1191 Geom::Point const initial_delta = _point - _origin;
1193 if (fabs(initial_delta[dim_a]) < 1e-15) {
1194 return false;
1195 }
1197 // Calculate the scale factors, which can be either visual or geometric
1198 // depending on which type of bbox is currently being used (see preferences -> selector tool)
1199 Geom::Scale scale = calcScaleFactors(_point, pt, _origin, false);
1200 Geom::Scale skew = calcScaleFactors(_point, pt, _origin, true);
1201 scale[dim_b] = 1;
1202 skew[dim_b] = 1;
1204 if (fabs(scale[dim_a]) < 1) {
1205 // Prevent shrinking of the selected object, while allowing mirroring
1206 scale[dim_a] = sign(scale[dim_a]);
1207 } else {
1208 // Allow expanding of the selected object by integer multiples
1209 scale[dim_a] = floor(scale[dim_a] + 0.5);
1210 }
1212 double radians = atan(skew[dim_a] / scale[dim_a]);
1214 if (state & GDK_CONTROL_MASK) {
1215 Inkscape::Preferences *prefs = Inkscape::Preferences::get();
1216 // Snap to defined angle increments
1217 int snaps = prefs->getInt("/options/rotationsnapsperpi/value", 12);
1218 if (snaps) {
1219 double sections = floor(radians * snaps / M_PI + .5);
1220 if (fabs(sections) >= snaps / 2) {
1221 sections = sign(sections) * (snaps / 2 - 1);
1222 }
1223 radians = (M_PI / snaps) * sections;
1224 }
1225 skew[dim_a] = tan(radians) * scale[dim_a];
1226 } else {
1227 // Snap to objects, grids, guides
1229 SnapManager &m = _desktop->namedview->snap_manager;
1230 m.setup(_desktop, false, _items_const);
1232 Inkscape::Snapper::ConstraintLine const constraint(component_vectors[dim_b]);
1233 // When skewing, we cannot snap the corners of the bounding box, see the comment in "constrainedSnapSkew" for details
1234 Geom::Point const s(skew[dim_a], scale[dim_a]);
1235 Inkscape::SnappedPoint sn = m.constrainedSnapSkew(Inkscape::SnapPreferences::SNAPPOINT_NODE, _snap_points, _point, constraint, s, _origin, Geom::Dim2(dim_b));
1237 if (sn.getSnapped()) {
1238 // We snapped something, so change the skew to reflect it
1239 Geom::Coord const sd = sn.getSnapped() ? sn.getTransformation()[0] : NR_HUGE;
1240 _desktop->snapindicator->set_new_snaptarget(sn);
1241 skew[dim_a] = sd;
1242 } else {
1243 _desktop->snapindicator->remove_snaptarget();
1244 }
1245 }
1247 // Update the handle position
1248 pt[dim_b] = initial_delta[dim_a] * skew[dim_a] + _point[dim_b];
1249 pt[dim_a] = initial_delta[dim_a] * scale[dim_a] + _origin[dim_a];
1251 // Calculate the relative affine
1252 _relative_affine = Geom::identity();
1253 _relative_affine[2*dim_a + dim_a] = (pt[dim_a] - _origin[dim_a]) / initial_delta[dim_a];
1254 _relative_affine[2*dim_a + (dim_b)] = (pt[dim_b] - _point[dim_b]) / initial_delta[dim_a];
1255 _relative_affine[2*(dim_b) + (dim_a)] = 0;
1256 _relative_affine[2*(dim_b) + (dim_b)] = 1;
1258 for (int i = 0; i < 2; i++) {
1259 if (fabs(_relative_affine[3*i]) < 1e-15) {
1260 _relative_affine[3*i] = 1e-15;
1261 }
1262 }
1264 // Update the status text
1265 double degrees = mod360symm(Geom::rad_to_deg(radians));
1266 _message_context.setF(Inkscape::IMMEDIATE_MESSAGE,
1267 // TRANSLATORS: don't modify the first ";"
1268 // (it will NOT be displayed as ";" - only the second one will be)
1269 _("<b>Skew</b>: %0.2f°; with <b>Ctrl</b> to snap angle"),
1270 degrees);
1272 return TRUE;
1273 }
1275 gboolean Inkscape::SelTrans::rotateRequest(Geom::Point &pt, guint state)
1276 {
1277 /* When rotating (or skewing):
1278 * 1) the stroke width will not change. This makes life much easier because we don't have to
1279 * account for that (like for scaling or stretching). As a consequence, all points will
1280 * have the same origin for the transformation and for the snapping.
1281 * 2) When holding shift, the transformation will be relative to the point opposite of
1282 * the handle; otherwise it will be relative to the center as set for the selection
1283 */
1285 Inkscape::Preferences *prefs = Inkscape::Preferences::get();
1286 int snaps = prefs->getInt("/options/rotationsnapsperpi/value", 12);
1288 // rotate affine in rotate
1289 Geom::Point const d1 = _point - _origin;
1290 Geom::Point const d2 = pt - _origin;
1292 Geom::Coord const h1 = Geom::L2(d1); // initial radius
1293 if (h1 < 1e-15) return FALSE;
1294 Geom::Point q1 = d1 / h1; // normalized initial vector to handle
1295 Geom::Coord const h2 = Geom::L2(d2); // new radius
1296 if (fabs(h2) < 1e-15) return FALSE;
1297 Geom::Point q2 = d2 / h2; // normalized new vector to handle
1299 double radians;
1300 if (state & GDK_CONTROL_MASK) {
1301 // Snap to defined angle increments
1302 double cos_t = Geom::dot(q1, q2);
1303 double sin_t = Geom::dot(Geom::rot90(q1), q2);
1304 radians = atan2(sin_t, cos_t);
1305 if (snaps) {
1306 radians = ( M_PI / snaps ) * floor( radians * snaps / M_PI + .5 );
1307 }
1308 q1 = Geom::Point(1, 0);
1309 q2 = Geom::Point(cos(radians), sin(radians));
1310 } else {
1311 radians = atan2(Geom::dot(Geom::rot90(d1), d2),
1312 Geom::dot(d1, d2));
1313 }
1315 Geom::Rotate const r1(q1);
1316 Geom::Rotate const r2(q2);
1318 // Calculate the relative affine
1319 _relative_affine = r2 * r1.inverse();
1321 // Update the handle position
1322 pt = _point * Geom::Translate(-_origin) * _relative_affine * Geom::Translate(_origin);
1324 // Update the status text
1325 double degrees = mod360symm(Geom::rad_to_deg(radians));
1326 _message_context.setF(Inkscape::IMMEDIATE_MESSAGE,
1327 // TRANSLATORS: don't modify the first ";"
1328 // (it will NOT be displayed as ";" - only the second one will be)
1329 _("<b>Rotate</b>: %0.2f°; with <b>Ctrl</b> to snap angle"), degrees);
1331 return TRUE;
1332 }
1334 // Move the item's transformation center
1335 gboolean Inkscape::SelTrans::centerRequest(Geom::Point &pt, guint state)
1336 {
1337 SnapManager &m = _desktop->namedview->snap_manager;
1338 m.setup(_desktop);
1339 m.freeSnapReturnByRef(SnapPreferences::SNAPPOINT_NODE, pt, Inkscape::SNAPSOURCE_HANDLE);
1341 if (state & GDK_CONTROL_MASK) {
1342 if ( fabs(_point[Geom::X] - pt[Geom::X]) > fabs(_point[Geom::Y] - pt[Geom::Y]) ) {
1343 pt[Geom::Y] = _point[Geom::Y];
1344 } else {
1345 pt[Geom::X] = _point[Geom::X];
1346 }
1347 }
1349 if ( !(state & GDK_SHIFT_MASK) && _bbox ) {
1350 // screen pixels to snap center to bbox
1351 #define SNAP_DIST 5
1352 // FIXME: take from prefs
1353 double snap_dist = SNAP_DIST / _desktop->current_zoom();
1355 for (int i = 0; i < 2; i++) {
1356 if (fabs(pt[i] - _bbox->min()[i]) < snap_dist) {
1357 pt[i] = _bbox->min()[i];
1358 }
1359 if (fabs(pt[i] - _bbox->midpoint()[i]) < snap_dist) {
1360 pt[i] = _bbox->midpoint()[i];
1361 }
1362 if (fabs(pt[i] - _bbox->max()[i]) < snap_dist) {
1363 pt[i] = _bbox->max()[i];
1364 }
1365 }
1366 }
1368 // status text
1369 GString *xs = SP_PX_TO_METRIC_STRING(pt[Geom::X], _desktop->namedview->getDefaultMetric());
1370 GString *ys = SP_PX_TO_METRIC_STRING(pt[Geom::Y], _desktop->namedview->getDefaultMetric());
1371 _message_context.setF(Inkscape::NORMAL_MESSAGE, _("Move <b>center</b> to %s, %s"), xs->str, ys->str);
1372 g_string_free(xs, FALSE);
1373 g_string_free(ys, FALSE);
1375 return TRUE;
1376 }
1378 /*
1379 * handlers for handle movement
1380 *
1381 */
1383 void sp_sel_trans_stretch(Inkscape::SelTrans *seltrans, SPSelTransHandle const &handle, Geom::Point &pt, guint state)
1384 {
1385 seltrans->stretch(handle, pt, state);
1386 }
1388 void sp_sel_trans_scale(Inkscape::SelTrans *seltrans, SPSelTransHandle const &, Geom::Point &pt, guint state)
1389 {
1390 seltrans->scale(pt, state);
1391 }
1393 void sp_sel_trans_skew(Inkscape::SelTrans *seltrans, SPSelTransHandle const &handle, Geom::Point &pt, guint state)
1394 {
1395 seltrans->skew(handle, pt, state);
1396 }
1398 void sp_sel_trans_rotate(Inkscape::SelTrans *seltrans, SPSelTransHandle const &, Geom::Point &pt, guint state)
1399 {
1400 seltrans->rotate(pt, state);
1401 }
1403 void Inkscape::SelTrans::stretch(SPSelTransHandle const &/*handle*/, Geom::Point &/*pt*/, guint /*state*/)
1404 {
1405 transform(_absolute_affine, Geom::Point(0, 0)); // we have already accounted for origin, so pass 0,0
1406 }
1408 void Inkscape::SelTrans::scale(Geom::Point &/*pt*/, guint /*state*/)
1409 {
1410 transform(_absolute_affine, Geom::Point(0, 0)); // we have already accounted for origin, so pass 0,0
1411 }
1413 void Inkscape::SelTrans::skew(SPSelTransHandle const &/*handle*/, Geom::Point &/*pt*/, guint /*state*/)
1414 {
1415 transform(_relative_affine, _origin);
1416 }
1418 void Inkscape::SelTrans::rotate(Geom::Point &/*pt*/, guint /*state*/)
1419 {
1420 transform(_relative_affine, _origin);
1421 }
1423 void sp_sel_trans_center(Inkscape::SelTrans *seltrans, SPSelTransHandle const &, Geom::Point &pt, guint /*state*/)
1424 {
1425 seltrans->setCenter(pt);
1426 }
1429 void Inkscape::SelTrans::moveTo(Geom::Point const &xy, guint state)
1430 {
1431 SnapManager &m = _desktop->namedview->snap_manager;
1433 /* The amount that we've moved by during this drag */
1434 Geom::Point dxy = xy - _point;
1436 bool const alt = (state & GDK_MOD1_MASK);
1437 bool const control = (state & GDK_CONTROL_MASK);
1438 bool const shift = (state & GDK_SHIFT_MASK);
1440 if (alt) {
1442 /* Alt pressed means keep offset: snap the moved distance to the grid.
1443 ** FIXME: this will snap to more than just the grid, nowadays.
1444 */
1446 m.setup(_desktop, true, _items_const);
1447 m.freeSnapReturnByRef(SnapPreferences::SNAPPOINT_NODE, dxy, Inkscape::SNAPSOURCE_UNDEFINED);
1449 } else if (shift) {
1450 if (control) { // shift & control: constrained movement without snapping
1451 if (fabs(dxy[Geom::X]) > fabs(dxy[Geom::Y])) {
1452 dxy[Geom::Y] = 0;
1453 } else {
1454 dxy[Geom::X] = 0;
1455 }
1456 }
1457 } else { //!shift: with snapping
1459 /* We're snapping to things, possibly with a constraint to horizontal or
1460 ** vertical movement. Obtain a list of possible translations and then
1461 ** pick the smallest.
1462 */
1464 m.setup(_desktop, false, _items_const);
1466 /* This will be our list of possible translations */
1467 std::list<Inkscape::SnappedPoint> s;
1469 if (control) { // constrained movement with snapping
1471 /* Snap to things, and also constrain to horizontal or vertical movement */
1473 unsigned int dim = fabs(dxy[Geom::X]) > fabs(dxy[Geom::Y]) ? Geom::X : Geom::Y;
1474 // When doing a constrained translation, all points will move in the same direction, i.e.
1475 // either horizontally or vertically. Therefore we only have to specify the direction of
1476 // the constraint-line once. The constraint lines are parallel, but might not be colinear.
1477 // Therefore we will have to set the point through which the constraint-line runs
1478 // individually for each point to be snapped; this will be handled however by _snapTransformed()
1479 s.push_back(m.constrainedSnapTranslation(Inkscape::SnapPreferences::SNAPPOINT_BBOX,
1480 _bbox_points_for_translating,
1481 _point,
1482 Inkscape::Snapper::ConstraintLine(component_vectors[dim]),
1483 dxy));
1485 s.push_back(m.constrainedSnapTranslation(Inkscape::SnapPreferences::SNAPPOINT_NODE,
1486 _snap_points,
1487 _point,
1488 Inkscape::Snapper::ConstraintLine(component_vectors[dim]),
1489 dxy));
1490 } else { // !control
1492 // Let's leave this timer code here for a while. I'll probably need it in the near future (Diederik van Lierop)
1493 /* GTimeVal starttime;
1494 GTimeVal endtime;
1495 g_get_current_time(&starttime); */
1497 /* Snap to things with no constraint */
1498 s.push_back(m.freeSnapTranslation(Inkscape::SnapPreferences::SNAPPOINT_BBOX, _bbox_points_for_translating, _point, dxy));
1499 s.push_back(m.freeSnapTranslation(Inkscape::SnapPreferences::SNAPPOINT_NODE, _snap_points, _point, dxy));
1501 /*g_get_current_time(&endtime);
1502 double elapsed = ((((double)endtime.tv_sec - starttime.tv_sec) * G_USEC_PER_SEC + (endtime.tv_usec - starttime.tv_usec))) / 1000.0;
1503 std::cout << "Time spent snapping: " << elapsed << std::endl; */
1504 }
1506 /* Pick one */
1507 Inkscape::SnappedPoint best_snapped_point;
1508 for (std::list<Inkscape::SnappedPoint>::const_iterator i = s.begin(); i != s.end(); i++) {
1509 if (i->getSnapped()) {
1510 if (best_snapped_point.isOtherSnapBetter(*i, true)) {
1511 best_snapped_point = *i;
1512 dxy = i->getTransformation();
1513 }
1514 }
1515 }
1516 if (best_snapped_point.getSnapped()) {
1517 _desktop->snapindicator->set_new_snaptarget(best_snapped_point);
1518 } else {
1519 // We didn't snap, so remove any previous snap indicator
1520 _desktop->snapindicator->remove_snaptarget();
1521 if (control) {
1522 // If we didn't snap, then we should still constrain horizontally or vertically
1523 // (When we did snap, then this constraint has already been enforced by
1524 // calling constrainedSnapTranslation() above)
1525 if (fabs(dxy[Geom::X]) > fabs(dxy[Geom::Y])) {
1526 dxy[Geom::Y] = 0;
1527 } else {
1528 dxy[Geom::X] = 0;
1529 }
1530 }
1531 }
1532 }
1534 Geom::Matrix const move((Geom::Translate(dxy)));
1535 Geom::Point const norm(0, 0);
1536 transform(move, norm);
1538 // status text
1539 GString *xs = SP_PX_TO_METRIC_STRING(dxy[Geom::X], _desktop->namedview->getDefaultMetric());
1540 GString *ys = SP_PX_TO_METRIC_STRING(dxy[Geom::Y], _desktop->namedview->getDefaultMetric());
1541 _message_context.setF(Inkscape::NORMAL_MESSAGE, _("<b>Move</b> by %s, %s; with <b>Ctrl</b> to restrict to horizontal/vertical; with <b>Shift</b> to disable snapping"), xs->str, ys->str);
1542 g_string_free(xs, TRUE);
1543 g_string_free(ys, TRUE);
1544 }
1546 // Given a location of a handle at the visual bounding box, find the corresponding location at the
1547 // geometrical bounding box
1548 Geom::Point Inkscape::SelTrans::_getGeomHandlePos(Geom::Point const &visual_handle_pos)
1549 {
1550 if ( _snap_bbox_type == SPItem::GEOMETRIC_BBOX) {
1551 // When the selector tool is using geometric bboxes, then the handle is already
1552 // located at one of the geometric bbox corners
1553 return visual_handle_pos;
1554 }
1556 if (!_geometric_bbox) {
1557 //_getGeomHandlePos() can only be used after _geometric_bbox has been defined!
1558 return visual_handle_pos;
1559 }
1561 // Using the Geom::Rect constructor below ensures that "min() < max()", which is important
1562 // because this will also hold for _bbox, and which is required for get_scale_transform_with_stroke()
1563 Geom::Rect new_bbox = Geom::Rect(_origin_for_bboxpoints, visual_handle_pos); // new visual bounding box
1564 // Please note that the new_bbox might in fact be just a single line, for example when stretching (in
1565 // which case the handle and origin will be aligned vertically or horizontally)
1566 Geom::Point normalized_handle_pos = (visual_handle_pos - new_bbox.min()) * Geom::Scale(new_bbox.dimensions()).inverse();
1568 // Calculate the absolute affine while taking into account the scaling of the stroke width
1569 Inkscape::Preferences *prefs = Inkscape::Preferences::get();
1570 bool transform_stroke = prefs->getBool("/options/transform/stroke", true);
1571 Geom::Matrix abs_affine = get_scale_transform_with_stroke (*_bbox, _strokewidth, transform_stroke,
1572 new_bbox.min()[Geom::X], new_bbox.min()[Geom::Y], new_bbox.max()[Geom::X], new_bbox.max()[Geom::Y]);
1574 // Calculate the scaled geometrical bbox
1575 Geom::Rect new_geom_bbox = Geom::Rect(_geometric_bbox->min() * abs_affine, _geometric_bbox->max() * abs_affine);
1576 // Find the location of the handle on this new geometrical bbox
1577 return normalized_handle_pos * Geom::Scale(new_geom_bbox.dimensions()) + new_geom_bbox.min(); //new position of the geometric handle
1578 }
1580 Geom::Scale Inkscape::calcScaleFactors(Geom::Point const &initial_point, Geom::Point const &new_point, Geom::Point const &origin, bool const skew)
1581 {
1582 // Work out the new scale factors for the bbox
1584 Geom::Point const initial_delta = initial_point - origin;
1585 Geom::Point const new_delta = new_point - origin;
1586 Geom::Point const offset = new_point - initial_point;
1587 Geom::Scale scale(1, 1);
1589 for ( unsigned int i = 0 ; i < 2 ; i++ ) {
1590 if ( fabs(initial_delta[i]) > 1e-6 ) {
1591 if (skew) {
1592 scale[i] = offset[1-i] / initial_delta[i];
1593 } else {
1594 scale[i] = new_delta[i] / initial_delta[i];
1595 }
1596 }
1597 }
1599 return scale;
1600 }
1602 // Only for scaling/stretching
1603 Geom::Point Inkscape::SelTrans::_calcAbsAffineDefault(Geom::Scale const default_scale)
1604 {
1605 Geom::Matrix abs_affine = Geom::Translate(-_origin) * Geom::Matrix(default_scale) * Geom::Translate(_origin);
1606 Geom::Point new_bbox_min = _approximate_bbox->min() * abs_affine;
1607 Geom::Point new_bbox_max = _approximate_bbox->max() * abs_affine;
1609 bool transform_stroke = false;
1610 gdouble strokewidth = 0;
1612 if ( _snap_bbox_type != SPItem::GEOMETRIC_BBOX) {
1613 Inkscape::Preferences *prefs = Inkscape::Preferences::get();
1614 transform_stroke = prefs->getBool("/options/transform/stroke", true);
1615 strokewidth = _strokewidth;
1616 }
1618 _absolute_affine = get_scale_transform_with_stroke (*_approximate_bbox, strokewidth, transform_stroke,
1619 new_bbox_min[Geom::X], new_bbox_min[Geom::Y], new_bbox_max[Geom::X], new_bbox_max[Geom::Y]);
1621 // return the new handle position
1622 return ( _point - _origin ) * default_scale + _origin;
1623 }
1625 // Only for scaling/stretching
1626 Geom::Point Inkscape::SelTrans::_calcAbsAffineGeom(Geom::Scale const geom_scale)
1627 {
1628 _relative_affine = Geom::Matrix(geom_scale);
1629 _absolute_affine = Geom::Translate(-_origin_for_specpoints) * _relative_affine * Geom::Translate(_origin_for_specpoints);
1631 Inkscape::Preferences *prefs = Inkscape::Preferences::get();
1632 bool const transform_stroke = prefs->getBool("/options/transform/stroke", true);
1633 if (_geometric_bbox) {
1634 Geom::Rect visual_bbox = get_visual_bbox(_geometric_bbox, _absolute_affine, _strokewidth, transform_stroke);
1635 // return the new handle position
1636 return visual_bbox.min() + visual_bbox.dimensions() * Geom::Scale(_handle_x, _handle_y);
1637 }
1639 // Fall back scenario, in case we don't have a geometric bounding box at hand;
1640 // (Due to some bugs related to bounding boxes having at least one zero dimension; For more details
1641 // see https://bugs.launchpad.net/inkscape/+bug/318726)
1642 g_warning("No geometric bounding box has been calculated; this is a bug that needs fixing!");
1643 return _calcAbsAffineDefault(geom_scale); // this is bogus, but we must return _something_
1644 }
1646 void Inkscape::SelTrans::_keepClosestPointOnly(std::vector<std::pair<Geom::Point, int> > &points, const Geom::Point &reference)
1647 {
1648 if (points.size() < 2) return;
1650 std::pair<Geom::Point, int> closest_point = std::make_pair(Geom::Point(NR_HUGE, NR_HUGE), SNAPSOURCE_UNDEFINED);
1651 Geom::Coord closest_dist = NR_HUGE;
1653 for(std::vector<std::pair<Geom::Point, int> >::const_iterator i = points.begin(); i != points.end(); i++) {
1654 Geom::Coord dist = Geom::L2((*i).first - reference);
1655 if (i == points.begin() || dist < closest_dist) {
1656 closest_point = *i;
1657 closest_dist = dist;
1658 }
1659 }
1661 points.clear();
1662 points.push_back(closest_point);
1663 }
1665 /*
1666 Local Variables:
1667 mode:c++
1668 c-file-style:"stroustrup"
1669 c-file-offsets:((innamespace . 0)(inline-open . 0)(case-label . +))
1670 indent-tabs-mode:nil
1671 fill-column:99
1672 End:
1673 */
1674 // vim: filetype=cpp:expandtab:shiftwidth=4:tabstop=8:softtabstop=4:encoding=utf-8:textwidth=99 :