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* scm/define-context-properties.scm
[lilypond.git] / lily / slur-scoring.cc
1 /*
2   slur-scoring.cc -- Score based slur formatting
3
4   source file of the GNU LilyPond music typesetter
5
6   (c) 1996--2005 Han-Wen Nienhuys <hanwen@cs.uu.nl>
7   Jan Nieuwenhuizen <janneke@gnu.org>
8 */
9
10
11 #include "slur-scoring.hh"
12 #include "libc-extension.hh"
13 #include "slur-configuration.hh"
14 #include "beam.hh"
15 #include "directional-element-interface.hh"
16 #include "pointer-group-interface.hh"
17 #include "slur.hh"
18 #include "note-column.hh"
19 #include "output-def.hh"
20 #include "pitch.hh"
21 #include "spanner.hh"
22 #include "staff-symbol-referencer.hh"
23 #include "staff-symbol.hh"
24 #include "stem.hh"
25 #include "warn.hh"
26 #include "paper-column.hh"
27 #include "accidental-interface.hh"
28
29 /*
30   TODO:
31
32   - curve around flag for y coordinate
33
34   - short-cut: try a smaller region first.
35
36   - handle non-visible stems better.
37
38   - try to prune number of scoring criteria
39
40   - take encompass-objects more into account when determining
41   slur shape
42
43   - calculate encompass scoring directly after determining slur shape.
44
45   - optimize.
46 */
47 struct Slur_score_state;
48
49 Slur_score_state::Slur_score_state ()
50 {
51   musical_dy_ = 0.0;
52   valid_ = false;
53   edge_has_beams_ = false;
54   has_same_beam_ = false;
55   is_broken_ = false;
56   dir_ = CENTER;
57   slur_ = 0;
58   common_[X_AXIS] = 0;
59   common_[Y_AXIS] = 0;
60 }
61
62 Slur_score_state::~Slur_score_state ()
63 {
64   junk_pointers (configurations_);
65 }
66
67 Real
68 get_detail (SCM alist, SCM sym)
69 {
70   SCM entry = scm_assq (sym, alist);
71   return robust_scm2double (scm_is_pair (entry)
72                             ? scm_cdr (entry)
73                             : SCM_EOL,
74                             0.0);
75 }
76
77 void
78 Slur_score_parameters::fill (Grob *me)
79 {
80   SCM details = me->get_property ("slur-details");
81
82   region_size_
83     = (int) get_detail (details, ly_symbol2scm ("region-size"));
84   head_encompass_penalty_
85     = get_detail (details, ly_symbol2scm ("head-encompass-penalty"));
86   stem_encompass_penalty_
87     = get_detail (details, ly_symbol2scm ("stem-encompass-penalty"));
88   closeness_factor_
89     = get_detail (details, ly_symbol2scm ("closeness-factor"));
90   edge_attraction_factor_
91     = get_detail (details, ly_symbol2scm ("edge-attraction-factor"));
92   same_slope_penalty_
93     = get_detail (details, ly_symbol2scm ("same-slope-penalty"));
94   steeper_slope_factor_
95     = get_detail (details, ly_symbol2scm ("steeper-slope-factor"));
96   non_horizontal_penalty_
97     = get_detail (details, ly_symbol2scm ("non-horizontal-penalty"));
98   max_slope_
99     = get_detail (details, ly_symbol2scm ("max-slope"));
100   max_slope_factor_
101     = get_detail (details, ly_symbol2scm ("max-slope-factor"));
102   free_head_distance_
103     = get_detail (details, ly_symbol2scm ("free-head-distance"));
104   absolute_closeness_measure_
105     = get_detail (details, ly_symbol2scm ("absolute-closeness-measure"));
106   extra_object_collision_
107     = get_detail (details, ly_symbol2scm ("extra-object-collision"));
108   accidental_collision_
109     = get_detail (details, ly_symbol2scm ("accidental-collision"));
110   extra_encompass_free_distance_
111     = get_detail (details, ly_symbol2scm ("extra-encompass-free-distance"));
112   head_slur_distance_factor_
113     = get_detail (details, ly_symbol2scm ("head-slur-distance-factor"));
114   head_slur_distance_max_ratio_
115     = get_detail (details, ly_symbol2scm ("head-slur-distance-max-ratio"));
116   free_slur_distance_
117     = get_detail (details, ly_symbol2scm ("free-slur-distance"));
118   edge_slope_exponent_
119     = get_detail (details, ly_symbol2scm ("edge-slope-exponent"));
120 }
121
122 Real
123 broken_trend_y (Slur_score_state const &state, Direction hdir)
124 {
125   /* A broken slur should maintain the same vertical trend
126      the unbroken slur would have had.  */
127   Real by = 0.0;
128   if (Spanner *mother = dynamic_cast<Spanner *> (state.slur_->original_))
129     {
130       int k = broken_spanner_index (state.slur_);
131       int j = k + hdir;
132       if (j < 0 || j >= mother->broken_intos_.size ())
133         return by;
134
135       Grob *neighbor = mother->broken_intos_[j];
136       Spanner *common_mother
137         = dynamic_cast<Spanner *> (state.common_[Y_AXIS]->original_);
138       int common_k
139         = broken_spanner_index (dynamic_cast<Spanner *> (state.common_[Y_AXIS]));
140       int common_j = common_k + hdir;
141
142       if (common_j < 0 || common_j >= common_mother->broken_intos_.size ())
143         return by;
144
145       Grob *common_next_system = common_mother->broken_intos_[common_j];
146
147       SCM last_point = scm_car (scm_last_pair (neighbor->get_property ("control-points")));
148
149       return scm_to_double (scm_cdr (last_point))
150         + neighbor->relative_coordinate (common_next_system, Y_AXIS);
151     }
152   return by;
153 }
154
155 /*
156   copy slur dir forwards across line break.
157 */
158 void
159 Slur_score_state::set_next_direction ()
160 {
161   if (extremes_[RIGHT].note_column_)
162     return;
163
164   if (Spanner *mother = dynamic_cast<Spanner *> (slur_->original_))
165     {
166       int k = broken_spanner_index (slur_);
167       int j = k + 1;
168       if (j < 0 || j >= mother->broken_intos_.size ())
169         return;
170
171       Grob *neighbor = mother->broken_intos_[j];
172       set_grob_direction (neighbor, dir_);
173     }
174 }
175
176 Encompass_info
177 Slur_score_state::get_encompass_info (Grob *col) const
178 {
179   Grob *stem = unsmob_grob (col->get_object ("stem"));
180   Encompass_info ei;
181
182   if (!stem)
183     {
184       programming_error ("no stem for note column");
185       ei.x_ = col->relative_coordinate (common_[X_AXIS], X_AXIS);
186       ei.head_ = ei.stem_ = col->extent (common_[Y_AXIS],
187                                          Y_AXIS)[dir_];
188       return ei;
189     }
190   Direction stem_dir = get_grob_direction (stem);
191
192   if (Grob *head = Note_column::first_head (col))
193     ei.x_ = head->extent (common_[X_AXIS], X_AXIS).center ();
194   else
195     ei.x_ = col->extent (common_[X_AXIS], X_AXIS).center ();
196
197   Grob *h = Stem::extremal_heads (stem)[Direction (dir_)];
198   if (!h)
199     {
200       ei.head_ = ei.stem_ = col->extent (common_[Y_AXIS], Y_AXIS)[dir_];
201       return ei;
202     }
203
204   ei.head_ = h->extent (common_[Y_AXIS], Y_AXIS)[dir_];
205
206   if ((stem_dir == dir_)
207       && !stem->extent (stem, Y_AXIS).is_empty ())
208     {
209       ei.stem_ = stem->extent (common_[Y_AXIS], Y_AXIS)[dir_];
210       if (Grob *b = Stem::get_beam (stem))
211         ei.stem_ += stem_dir * 0.5 * Beam::get_thickness (b);
212
213       Interval x = stem->extent (common_[X_AXIS], X_AXIS);
214       ei.x_ = x.is_empty ()
215         ? stem->relative_coordinate (common_[X_AXIS], X_AXIS)
216         : x.center ();
217     }
218   else
219     ei.stem_ = ei.head_;
220
221   return ei;
222 }
223
224 Drul_array<Bound_info>
225 Slur_score_state::get_bound_info () const
226 {
227   Drul_array<Bound_info> extremes;
228
229   Direction d = LEFT;
230   Direction dir = dir_;
231
232   do
233     {
234       extremes[d].bound_ = slur_->get_bound (d);
235       if (Note_column::has_interface (extremes[d].bound_))
236         {
237           extremes[d].note_column_ = extremes[d].bound_;
238           extremes[d].stem_ = Note_column::get_stem (extremes[d].note_column_);
239           extremes[d].stem_dir_ = get_grob_direction (extremes[d].stem_);
240
241           for (int a = X_AXIS; a < NO_AXES; a++)
242             {
243               Axis ax = Axis (a);
244               Interval s = extremes[d].stem_->extent (common_[ax], ax);
245               if (s.is_empty ())
246                 {
247                   /*
248                     do not issue warning. This happens for rests and
249                     whole notes.
250                   */
251                   s = Interval (0, 0)
252                     + extremes[d].stem_->relative_coordinate (common_[ax], ax);
253                 }
254               extremes[d].stem_extent_[ax] = s;
255             }
256
257           extremes[d].slur_head_
258             = Stem::extremal_heads (extremes[d].stem_)[dir];
259           if (!extremes[d].slur_head_
260               && Note_column::has_rests (extremes[d].bound_))
261             extremes[d].slur_head_ = Note_column::get_rest (extremes[d].bound_);
262
263           if (extremes[d].slur_head_)
264             extremes[d].slur_head_extent_
265               = extremes[d].slur_head_->extent (common_[X_AXIS], X_AXIS);
266
267           extremes[d].staff_ = Staff_symbol_referencer
268             ::get_staff_symbol (extremes[d].stem_);
269           extremes[d].staff_space_ = Staff_symbol_referencer
270             ::staff_space (extremes[d].stem_);
271         }
272     }
273   while (flip (&d) != LEFT);
274
275   return extremes;
276 }
277
278 void
279 Slur_score_state::fill (Grob *me)
280 {
281   slur_ = dynamic_cast<Spanner *> (me);
282   columns_
283     = internal_extract_grob_array (me, ly_symbol2scm ("note-columns"));
284
285   if (columns_.is_empty ())
286     {
287       me->suicide ();
288       return;
289     }
290
291   staff_space_ = Staff_symbol_referencer::staff_space (me);
292   Real lt = me->get_layout ()->get_dimension (ly_symbol2scm ("linethickness"));
293   thickness_ = robust_scm2double (me->get_property ("thickness"), 1.0) * lt;
294
295   dir_ = get_grob_direction (me);
296   parameters_.fill (me);
297
298   extract_grob_set (me, "note-columns", columns);
299   extract_grob_set (me, "encompass-objects", extra_objects);
300
301   Spanner *sp = dynamic_cast<Spanner *> (me);
302
303   for (int i = X_AXIS; i < NO_AXES; i++)
304     {
305       Axis a = (Axis)i;
306       common_[a] = common_refpoint_of_array (columns, me, a);
307       common_[a] = common_refpoint_of_array (extra_objects, common_[a], a);
308
309       Direction d = LEFT;
310       do
311         {
312           /*
313             If bound is not in note-columns, we don't want to know about
314             its Y-position
315           */
316           if (a != Y_AXIS)
317             common_[a] = common_[a]->common_refpoint (sp->get_bound (d), a);
318         }
319       while (flip (&d) != LEFT);
320     }
321
322   extremes_ = get_bound_info ();
323   is_broken_ = (!extremes_[LEFT].note_column_
324                 || !extremes_[RIGHT].note_column_);
325
326   has_same_beam_
327     = (extremes_[LEFT].stem_ && extremes_[RIGHT].stem_
328        && Stem::get_beam (extremes_[LEFT].stem_) == Stem::get_beam (extremes_[RIGHT].stem_));
329
330   base_attachments_ = get_base_attachments ();
331
332   Drul_array<Real> end_ys
333     = get_y_attachment_range ();
334
335   configurations_ = enumerate_attachments (end_ys);
336   for (int i = 0; i < columns_.size (); i++)
337     encompass_infos_.push (get_encompass_info (columns_[i]));
338
339   extra_encompass_infos_ = get_extra_encompass_infos ();
340   valid_ = true;
341
342   musical_dy_ = 0.0;
343   Direction d = LEFT;
344   do
345     {
346       if (!is_broken_)
347         musical_dy_ += d
348           * extremes_[d].slur_head_->relative_coordinate (common_[Y_AXIS], Y_AXIS);
349     }
350   while (flip (&d) != LEFT);
351
352   edge_has_beams_
353     = (extremes_[LEFT].stem_ && Stem::get_beam (extremes_[LEFT].stem_))
354     || (extremes_[RIGHT].stem_ && Stem::get_beam (extremes_[RIGHT].stem_));
355
356   set_next_direction ();
357
358   if (is_broken_)
359     musical_dy_ = 0.0;
360 }
361
362
363 MAKE_SCHEME_CALLBACK(Slur, calc_control_points, 1)
364 SCM
365 Slur::calc_control_points (SCM smob)
366 {
367   Spanner *me = unsmob_spanner (smob);
368
369   Slur_score_state state;
370   state.fill (me);
371
372   if (!state.valid_)
373     return SCM_EOL;
374
375   state.generate_curves ();
376
377   SCM end_ys = me->get_property ("positions");
378   Bezier best;
379
380   if (is_number_pair (end_ys))
381     best = state.configurations_[state.get_closest_index (end_ys)]->curve_;
382   else
383     best = state.get_best_curve ();
384
385   SCM controls = SCM_EOL;
386   for (int i = 4; i--;)
387     {
388       Offset o = best.control_[i]
389         - Offset (me->relative_coordinate (state.common_[X_AXIS], X_AXIS),
390                   me->relative_coordinate (state.common_[Y_AXIS], Y_AXIS));
391       controls = scm_cons (ly_offset2scm (o), controls);
392     }
393
394   return controls;
395 }
396
397 Bezier
398 Slur_score_state::get_best_curve ()
399 {
400   int opt_idx = -1;
401   Real opt = 1e6;
402
403 #if DEBUG_SLUR_SCORING
404   SCM inspect_quants = slur_->get_property ("inspect-quants");
405   if (to_boolean (slur_->get_layout ()
406                   ->lookup_variable (ly_symbol2scm ("debug-slur-scoring")))
407       && scm_is_pair (inspect_quants))
408     {
409       opt_idx = get_closest_index (inspect_quants);
410       configurations_[opt_idx]->score (*this);
411       opt = configurations_[opt_idx]->score_;
412     }
413   else
414 #endif
415     {
416       for (int i = 0; i < configurations_.size (); i++)
417         configurations_[i]->score (*this);
418       for (int i = 0; i < configurations_.size (); i++)
419         {
420           if (configurations_[i]->score_ < opt)
421             {
422               opt = configurations_[i]->score_;
423               opt_idx = i;
424             }
425         }
426     }
427
428 #if DEBUG_SLUR_SCORING
429   configurations_[opt_idx]->score_card_ += to_string ("=%.2f", opt);
430   configurations_[opt_idx]->score_card_ += to_string ("i%d", opt_idx);
431
432   // debug quanting
433   slur_->set_property ("quant-score",
434                        scm_makfrom0str (configurations_[opt_idx]->score_card_.to_str0 ()));
435
436 #endif
437
438   return configurations_[opt_idx]->curve_;
439 }
440
441 int
442 Slur_score_state::get_closest_index (SCM inspect_quants) const
443 {
444   Drul_array<Real> ins = ly_scm2interval (inspect_quants);
445
446   int opt_idx = -1;
447   Real mindist = 1e6;
448   for (int i = 0; i < configurations_.size (); i++)
449     {
450       Real d = fabs (configurations_[i]->attachment_[LEFT][Y_AXIS] - ins[LEFT])
451         + fabs (configurations_[i]->attachment_[RIGHT][Y_AXIS] - ins[RIGHT]);
452       if (d < mindist)
453         {
454           opt_idx = i;
455           mindist = d;
456         }
457     }
458   if (mindist > 1e5)
459     programming_error ("can't not find quant");
460   return opt_idx;
461 }
462
463 /*
464   TODO: should analyse encompasses to determine sensible region, and
465   should limit slopes available.
466 */
467
468 Drul_array<Real>
469 Slur_score_state::get_y_attachment_range () const
470 {
471   Drul_array<Real> end_ys;
472   Direction d = LEFT;
473   do
474     {
475       if (extremes_[d].note_column_)
476         {
477           end_ys[d] = dir_
478             * max (max (dir_ * (base_attachments_[d][Y_AXIS]
479                                           + parameters_.region_size_ * dir_),
480                         dir_ * (dir_ + extremes_[d].note_column_->extent (common_[Y_AXIS], Y_AXIS)[dir_])),
481                    dir_ * base_attachments_[-d][Y_AXIS]);
482         }
483       else
484         end_ys[d] = base_attachments_[d][Y_AXIS] + parameters_.region_size_ * dir_;
485     }
486   while (flip (&d) != LEFT);
487
488   return end_ys;
489 }
490
491 bool
492 spanner_less (Spanner *s1, Spanner *s2)
493 {
494   Slice b1, b2;
495   Direction d = LEFT;
496   do
497     {
498       b1[d] = s1->get_bound (d)->get_column ()->get_rank ();
499       b2[d] = s2->get_bound (d)->get_column ()->get_rank ();
500     }
501   while (flip (&d) != LEFT);
502
503   return b2[LEFT] <= b1[LEFT] && b2[RIGHT] >= b1[RIGHT]
504     && (b2[LEFT] != b1[LEFT] || b2[RIGHT] != b1[RIGHT]);
505 }
506
507 Drul_array<Offset>
508 Slur_score_state::get_base_attachments () const
509 {
510   Drul_array<Offset> base_attachment;
511   Direction d = LEFT;
512   do
513     {
514       Grob *stem = extremes_[d].stem_;
515       Grob *head = extremes_[d].slur_head_;
516
517       Real x = 0.0;
518       Real y = 0.0;
519       if (extremes_[d].note_column_)
520         {
521
522           /*
523             fixme: X coord should also be set in this case.
524           */
525           if (stem
526               && !Stem::is_invisible (stem)
527               && extremes_[d].stem_dir_ == dir_
528               && Stem::get_beaming (stem, -d)
529               && (!spanner_less (slur_, Stem::get_beam (stem))
530                   || has_same_beam_))
531             y = extremes_[d].stem_extent_[Y_AXIS][dir_];
532           else if (head)
533             y = head->extent (common_[Y_AXIS], Y_AXIS)[dir_];
534           y += dir_ * 0.5 * staff_space_;
535
536           y = move_away_from_staffline (y, head);
537
538           Grob *fh = Note_column::first_head (extremes_[d].note_column_);
539           x
540             = (fh ? fh->extent (common_[X_AXIS], X_AXIS)
541                : extremes_[d].bound_->extent (common_[X_AXIS], X_AXIS))
542             .linear_combination (CENTER);
543         }
544       base_attachment[d] = Offset (x, y);
545     }
546   while (flip (&d) != LEFT);
547
548   do
549     {
550       if (!extremes_[d].note_column_)
551         {
552           Real x, y;
553           if (d == RIGHT)
554             x = extremes_[d].bound_->extent (common_[X_AXIS], X_AXIS)[d];
555           else
556             x = slur_->get_broken_left_end_align ();
557           Grob *col = (d == LEFT) ? columns_[0] : columns_.top ();
558
559           if (extremes_[-d].bound_ != col)
560             {
561               y = robust_relative_extent (col, common_[Y_AXIS], Y_AXIS)[dir_];
562               y += dir_ * 0.5 * staff_space_;
563
564               if (get_grob_direction (col) == dir_
565                   && Note_column::get_stem (col)
566                   && !Stem::is_invisible (Note_column::get_stem (col)))
567                 y -= dir_ * 1.5 * staff_space_;
568             }
569           else
570             y = base_attachment[-d][Y_AXIS];
571
572           y = move_away_from_staffline (y, col);
573
574           base_attachment[d] = Offset (x, y);
575         }
576     }
577   while (flip (&d) != LEFT);
578
579   do
580     {
581       for (int a = X_AXIS; a < NO_AXES; a++)
582         {
583           Real &b = base_attachment[d][Axis (a)];
584
585           if (isinf (b) || isnan (b))
586             {
587               programming_error ("slur attachment is inf/nan");
588               b = 0.0;
589             }
590         }
591     }
592   while (flip (&d) != LEFT);
593
594   return base_attachment;
595 }
596
597 Real
598 Slur_score_state::move_away_from_staffline (Real y,
599                                             Grob *on_staff) const
600 {
601   Grob *staff_symbol = Staff_symbol_referencer::get_staff_symbol (on_staff);
602   if (!staff_symbol)
603     return y;
604
605   Real pos
606     = (y - staff_symbol->relative_coordinate (common_[Y_AXIS],
607                                               Y_AXIS))
608     * 2.0 / staff_space_;
609
610   if (fabs (pos - my_round (pos)) < 0.2
611       && Staff_symbol_referencer::on_staffline (on_staff, (int) rint (pos))
612       && Staff_symbol_referencer::line_count (on_staff) - 1 >= rint (pos))
613     y += 1.5 * staff_space_ * dir_ / 10;
614
615   return y;
616 }
617
618 Array<Offset>
619 Slur_score_state::generate_avoid_offsets () const
620 {
621   Array<Offset> avoid;
622   Link_array<Grob> encompasses = columns_;
623
624   for (int i = 0; i < encompasses.size (); i++)
625     {
626       if (extremes_[LEFT].note_column_ == encompasses[i]
627           || extremes_[RIGHT].note_column_ == encompasses[i])
628         continue;
629
630       Encompass_info inf (get_encompass_info (encompasses[i]));
631       Real y = dir_ * (max (dir_ * inf.head_, dir_ * inf.stem_));
632
633       avoid.push (Offset (inf.x_, y + dir_ * parameters_.free_head_distance_));
634     }
635
636   extract_grob_set (slur_, "encompass-objects", extra_encompasses);
637   for (int i = 0; i < extra_encompasses.size (); i++)
638     if (Slur::has_interface (extra_encompasses[i]))
639       {
640         Grob *small_slur = extra_encompasses[i];
641         Bezier b = Slur::get_curve (small_slur);
642
643         Offset z = b.curve_point (0.5);
644         z += Offset (small_slur->relative_coordinate (common_[X_AXIS], X_AXIS),
645                      small_slur->relative_coordinate (common_[Y_AXIS], Y_AXIS));
646
647         z[Y_AXIS] += dir_ * parameters_.free_slur_distance_;
648         avoid.push (z);
649       }
650
651   return avoid;
652 }
653
654 void
655 Slur_score_state::generate_curves () const
656 {
657   Real r_0 = robust_scm2double (slur_->get_property ("ratio"), 0.33);
658   Real h_inf = staff_space_ * scm_to_double (slur_->get_property ("height-limit"));
659
660   Array<Offset> avoid = generate_avoid_offsets ();
661   for (int i = 0; i < configurations_.size (); i++)
662     configurations_[i]->generate_curve (*this, r_0, h_inf, avoid);
663 }
664
665 Link_array<Slur_configuration>
666 Slur_score_state::enumerate_attachments (Drul_array<Real> end_ys) const
667 {
668   Link_array<Slur_configuration> scores;
669
670   Drul_array<Offset> os;
671   os[LEFT] = base_attachments_[LEFT];
672   Real minimum_length = staff_space_
673     * robust_scm2double (slur_->get_property ("minimum-length"), 2.0);
674
675   for (int i = 0; dir_ * os[LEFT][Y_AXIS] <= dir_ * end_ys[LEFT]; i++)
676     {
677       os[RIGHT] = base_attachments_[RIGHT];
678       for (int j = 0; dir_ * os[RIGHT][Y_AXIS] <= dir_ * end_ys[RIGHT]; j++)
679         {
680           Slur_configuration s;
681           Direction d = LEFT;
682           Drul_array<bool> attach_to_stem (false, false);
683           do
684             {
685               os[d][X_AXIS] = base_attachments_[d][X_AXIS];
686               if (extremes_[d].stem_
687                   && !Stem::is_invisible (extremes_[d].stem_)
688                   && extremes_[d].stem_dir_ == dir_)
689                 {
690                   Interval stem_y = extremes_[d].stem_extent_[Y_AXIS];
691                   stem_y.widen (0.25 * staff_space_);
692                   if (stem_y.contains (os[d][Y_AXIS]))
693                     {
694                       os[d][X_AXIS] = extremes_[d].stem_extent_[X_AXIS][-d]
695                         - d * 0.3;
696                       attach_to_stem[d] = true;
697                     }
698                   else if (dir_ * extremes_[d].stem_extent_[Y_AXIS][dir_]
699                            < dir_ * os[d][Y_AXIS]
700                            && !extremes_[d].stem_extent_[X_AXIS].is_empty ())
701
702                     os[d][X_AXIS] = extremes_[d].stem_extent_[X_AXIS].center ();
703                 }
704             }
705           while (flip (&d) != LEFT);
706
707           Offset dz;
708           dz = os[RIGHT] - os[LEFT];
709           if (dz[X_AXIS] < minimum_length
710               || fabs (dz[Y_AXIS] / dz[X_AXIS]) > parameters_.max_slope_)
711             {
712               do
713                 {
714                   if (extremes_[d].slur_head_)
715                     {
716                       os[d][X_AXIS] = extremes_[d].slur_head_extent_.center ();
717                       attach_to_stem[d] = false;
718                     }
719                 }
720               while (flip (&d) != LEFT);
721             }
722
723           dz = os[RIGHT] - os[LEFT];
724           do
725             {
726               if (extremes_[d].slur_head_
727                   && !attach_to_stem[d])
728                 {
729                   /* Horizontally move tilted slurs a little.  Move
730                      more for bigger tilts.
731
732                      TODO: parameter */
733                   os[d][X_AXIS]
734                     -= dir_ * extremes_[d].slur_head_extent_.length ()
735                     * sin (dz.arg ()) / 3;
736                 }
737             }
738           while (flip (&d) != LEFT);
739
740           s.attachment_ = os;
741           s.index_ = scores.size ();
742
743           scores.push (new Slur_configuration (s));
744
745           os[RIGHT][Y_AXIS] += dir_ * staff_space_ / 2;
746         }
747
748       os[LEFT][Y_AXIS] += dir_ * staff_space_ / 2;
749     }
750
751   assert (scores.size () > 0);
752   return scores;
753 }
754
755 Array<Extra_collision_info>
756 Slur_score_state::get_extra_encompass_infos () const
757 {
758   extract_grob_set (slur_, "encompass-objects", encompasses);
759   Array<Extra_collision_info> collision_infos;
760   for (int i = encompasses.size (); i--;)
761     {
762       if (Slur::has_interface (encompasses[i]))
763         {
764           Spanner *small_slur = dynamic_cast<Spanner *> (encompasses[i]);
765           Bezier b = Slur::get_curve (small_slur);
766
767           Offset relative (small_slur->relative_coordinate (common_[X_AXIS], X_AXIS),
768                            small_slur->relative_coordinate (common_[Y_AXIS], Y_AXIS));
769
770           for (int k = 0; k < 3; k++)
771             {
772               Direction hdir = Direction (k / 2 - 1);
773
774               /*
775                 Only take bound into account if small slur starts
776                 together with big slur.
777               */
778               if (hdir && small_slur->get_bound (hdir) != slur_->get_bound (hdir))
779                 continue;
780
781               Offset z = b.curve_point (k / 2.0);
782               z += relative;
783
784               Interval yext;
785               yext.set_full ();
786               yext[dir_] = z[Y_AXIS] + dir_ * thickness_ * 1.0;
787
788               Interval xext (-1, 1);
789               xext = xext * (thickness_ * 2) + z[X_AXIS];
790               Extra_collision_info info (small_slur,
791                                          k - 1.0,
792                                          xext,
793                                          yext,
794                                          parameters_.extra_object_collision_);
795               collision_infos.push (info);
796             }
797         }
798       else
799         {
800           Grob *g = encompasses [i];
801           Interval xe = g->extent (common_[X_AXIS], X_AXIS);
802           Interval ye = g->extent (common_[Y_AXIS], Y_AXIS);
803
804           Real xp = 0.0;
805           Real penalty = parameters_.extra_object_collision_;
806           if (Accidental_interface::has_interface (g))
807             {
808               penalty = parameters_.accidental_collision_;
809               /* Begin copy accidental.cc */
810               bool parens = false;
811               if (to_boolean (g->get_property ("cautionary")))
812                 {
813                   SCM cstyle = g->get_property ("cautionary-style");
814                   parens = ly_is_equal (cstyle, ly_symbol2scm ("parentheses"));
815                 }
816
817               SCM accs = g->get_property ("accidentals");
818               SCM scm_style = g->get_property ("style");
819               if (!scm_is_symbol (scm_style)
820                   && !parens
821                   && scm_ilength (accs) == 1)
822                 {
823                   /* End copy accidental.cc */
824                   switch (scm_to_int (scm_car (accs)))
825                     {
826                     case FLAT:
827                     case DOUBLE_FLAT:
828                       xp = LEFT;
829                       break;
830                     case SHARP:
831                       xp = 0.5 * dir_;
832                       break;
833                     case NATURAL:
834                       xp = -dir_;
835                       break;
836                     }
837                 }
838             }
839
840           ye.widen (thickness_ * 0.5);
841           xe.widen (thickness_ * 1.0);
842           Extra_collision_info info (g, xp, xe, ye, penalty);
843           collision_infos.push (info);
844         }
845     }
846
847   return collision_infos;
848 }
849