/*
- tuplet-bracket.cc -- implement Tuplet_bracket
+ This file is part of LilyPond, the GNU music typesetter.
- source file of the GNU LilyPond music typesetter
-
- (c) 1997--2009 Jan Nieuwenhuizen <janneke@gnu.org>
+ Copyright (C) 1997--2010 Jan Nieuwenhuizen <janneke@gnu.org>
Han-Wen Nienhuys <hanwen@xs4all.nl>
+
+ LilyPond is free software: you can redistribute it and/or modify
+ it under the terms of the GNU General Public License as published by
+ the Free Software Foundation, either version 3 of the License, or
+ (at your option) any later version.
+
+ LilyPond is distributed in the hope that it will be useful,
+ but WITHOUT ANY WARRANTY; without even the implied warranty of
+ MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
+ GNU General Public License for more details.
+
+ You should have received a copy of the GNU General Public License
+ along with LilyPond. If not, see <http://www.gnu.org/licenses/>.
*/
/*
void
-flatten_number_pair_property (Grob *me,
- Direction xdir, SCM sym)
+flatten_number_pair_property (Grob *me, Direction xdir, SCM sym)
{
Drul_array<Real> zero (0, 0);
Drul_array<Real> pair
= robust_scm2drul (me->internal_get_property (sym), zero);
pair[xdir] = 0.0;
-
+
me->set_property (sym, ly_interval2scm (pair));
}
|| me->get_bound (RIGHT)->break_status_dir ())
return 0;
- Drul_array<Grob*> stems (Note_column::get_stem (cols[0]),
+ Drul_array<Grob *> stems (Note_column::get_stem (cols[0]),
Note_column::get_stem (cols.back ()));
if (!stems[RIGHT]
!= me->get_bound (RIGHT)->get_column ()))
return 0;
- Drul_array<Grob*> beams;
+ Drul_array<Grob *> beams;
Direction d = LEFT;
do {
beams[d] = stems[d] ? Stem::get_beam (stems[d]) : 0;
} while (flip (&d) != LEFT);
-
+
*equally_long = false;
- if (! (beams[LEFT] && (beams[LEFT] == beams[RIGHT]) && !me->is_broken ()))
+ if (!(beams[LEFT] && (beams[LEFT] == beams[RIGHT]) && !me->is_broken ()))
return 0;
extract_grob_set (beams[LEFT], "stems", beam_stems);
}
-MAKE_SCHEME_CALLBACK (Tuplet_bracket, calc_connect_to_neighbors,1);
+MAKE_SCHEME_CALLBACK (Tuplet_bracket, calc_connect_to_neighbors, 1);
SCM
Tuplet_bracket::calc_connect_to_neighbors (SCM smob)
{
do
{
Direction break_dir = bounds[d]->break_status_dir ();
- Spanner *orig_spanner = dynamic_cast<Spanner*> (me->original ());
+ Spanner *orig_spanner = dynamic_cast<Spanner *> (me->original ());
vsize neighbor_idx = me->get_break_index () - break_dir;
if (break_dir
&& d == RIGHT
return SCM_EOL;
}
-Grob*
+Grob *
Tuplet_bracket::get_common_x (Spanner *me)
{
extract_grob_set (me, "note-columns", columns);
- Grob * commonx = common_refpoint_of_array (columns, me, X_AXIS);
+ Grob *commonx = common_refpoint_of_array (columns, me, X_AXIS);
commonx = commonx->common_refpoint (me->get_bound (LEFT), X_AXIS);
commonx = commonx->common_refpoint (me->get_bound (RIGHT), X_AXIS);
return commonx;
}
-
-MAKE_SCHEME_CALLBACK (Tuplet_bracket, calc_control_points,1)
+
+MAKE_SCHEME_CALLBACK (Tuplet_bracket, calc_control_points, 1)
SCM
Tuplet_bracket::calc_control_points (SCM smob)
{
SCM scm_positions = me->get_property ("positions");
if (!me->is_live ())
return SCM_EOL;
-
+
if (!scm_is_pair (scm_positions))
programming_error ("Positions should be number pair");
-
+
Drul_array<Real> positions
- = robust_scm2drul (scm_positions, Drul_array<Real> (0,0));
+ = robust_scm2drul (scm_positions, Drul_array<Real> (0, 0));
Grob *commonx = get_common_x (me);
Direction dir = get_grob_direction (me);
Drul_array<bool> connect_to_other =
robust_scm2booldrul (me->get_property ("connect-to-neighbor"),
Drul_array<bool> (false, false));
-
-
+
Interval x_span;
Direction d = LEFT;
do
if (d == RIGHT)
x_span[d] += d * overshoot[d];
else
- x_span[d] = robust_relative_extent (bounds[d], commonx, X_AXIS)[RIGHT]
+ x_span[d] = robust_relative_extent (bounds[d],
+ commonx, X_AXIS)[RIGHT]
- overshoot[LEFT];
}
-
+
else if (d == RIGHT
&& (columns.empty ()
|| (bounds[d]->get_column ()
}
while (flip (&d) != LEFT);
-
-
+
x_span -= me->get_bound (LEFT)->relative_coordinate (commonx, X_AXIS);
return scm_list_2 (ly_offset2scm (Offset (x_span[LEFT], positions[LEFT])),
ly_offset2scm (Offset (x_span[RIGHT], positions[RIGHT])));
extract_grob_set (me, "note-columns", columns);
bool equally_long = false;
Grob *par_beam = parallel_beam (me, columns, &equally_long);
-
+
bool bracket_visibility = !(par_beam && equally_long);
/*
Fixme: the type of this prop is sucky.
else if (bracket == ly_symbol2scm ("if-no-beam"))
bracket_visibility = !par_beam;
- /* Don't print a tuplet bracket and number if no control-points were calculated */
- SCM cpoints = me->get_property ("control-points");
+ /*
+ Don't print a tuplet bracket and number if
+ no control-points were calculated
+ */
+ SCM cpoints = me->get_property ("control-points");
if (scm_ilength (cpoints) < 2)
{
me->suicide ();
{
bracket_visibility = false;
}
-
+
Drul_array<Offset> points;
points[LEFT] = ly_scm2offset (scm_car (cpoints));
points[RIGHT] = ly_scm2offset (scm_cadr (cpoints));
-
+
Interval x_span (points[LEFT][X_AXIS], points[RIGHT][X_AXIS]);
Drul_array<Real> positions (points[LEFT][Y_AXIS], points[RIGHT][Y_AXIS]);
Output_def *pap = me->layout ();
Grob *number_grob = unsmob_grob (me->get_object ("tuplet-number"));
-
+
/*
No bracket when it would be smaller than the number.
*/
if (!ext.is_empty ())
{
gap = ext.length () + 1.0;
-
+
if (0.75 * x_span.length () < gap)
bracket_visibility = false;
}
Drul_array<Stencil> edge_stencils;
Direction dir = get_grob_direction (me);
-
+
scale_drul (&height, -ss * dir);
scale_drul (&flare, ss);
scale_drul (&shorten, ss);
SCM text = index_get_cell (edge_text, d);
if (Text_interface::is_markup (text))
{
- SCM t = Text_interface::interpret_markup (pap->self_scm (),
- properties, text);
+ SCM t
+ = Text_interface::interpret_markup (pap->self_scm (),
+ properties, text);
Stencil *edge_text = unsmob_stencil (t);
- edge_text->translate_axis (x_span[d] - x_span[LEFT], X_AXIS);
+ edge_text->translate_axis (x_span[d] - x_span[LEFT],
+ X_AXIS);
edge_stencils[d] = *edge_text;
}
}
*/
Stencil
Tuplet_bracket::make_bracket (Grob *me, // for line properties.
- Axis protusion_axis,
+ Axis protrusion_axis,
Offset dz,
Drul_array<Real> height,
Interval gap,
Real length = dz.length ();
Drul_array<Offset> gap_corners;
- Axis bracket_axis = other_axis (protusion_axis);
+ Axis bracket_axis = other_axis (protrusion_axis);
Drul_array<Offset> straight_corners = corners;
do
{
flare_corners[d][bracket_axis] = straight_corners[d][bracket_axis];
- flare_corners[d][protusion_axis] += height[d];
+ flare_corners[d][protrusion_axis] += height[d];
straight_corners[d][bracket_axis] += -d * flare[d];
}
while (flip (&d) != LEFT);
if (gap.is_empty ())
m.add_stencil (Line_interface::line (me, straight_corners[LEFT],
straight_corners[RIGHT]));
-
+
return m;
}
staff.widen (pad);
}
}
-
+
Direction dir = get_grob_direction (me);
bool equally_long = false;
Grob *par_beam = parallel_beam (me, columns, &equally_long);
-
+
Item *lgr = get_x_bound_item (me, LEFT, dir);
Item *rgr = get_x_bound_item (me, RIGHT, dir);
Real x0 = robust_relative_extent (lgr, commonx, X_AXIS)[LEFT];
for (vsize i = 0; i < columns.size (); i++)
{
- Interval note_ext = Note_column::cross_staff_extent (columns[i], commony);
+ Interval note_ext = Note_column::cross_staff_extent (columns[i],
+ commony);
Real x = columns[i]->relative_coordinate (commonx, X_AXIS) - x0;
points.push_back (Offset (x, note_ext[dir]));
if (!tuplets[i]->is_live ())
continue;
-
+
Direction d = LEFT;
- Drul_array<Real> positions = robust_scm2interval (tuplets[i]->get_property ("positions"),
- Interval (0,0));
+ Drul_array<Real> positions
+ = robust_scm2interval (tuplets[i]->get_property ("positions"),
+ Interval (0,0));
-
Real other_dy = positions[RIGHT] - positions[LEFT];
do
}
}
-
MAKE_SCHEME_CALLBACK (Tuplet_bracket, calc_direction, 1);
SCM
Tuplet_bracket::calc_direction (SCM smob)
Real dy = 0.0;
Real offset = 0.0;
calc_position_and_height (me, &offset, &dy);
-
+
SCM x = scm_cons (scm_from_double (offset),
scm_from_double (offset + dy));
-
+
return x;
}
Tuplet_bracket::calc_cross_staff (SCM smob)
{
Grob *me = unsmob_grob (smob);
- Grob *staff_symbol = 0;
extract_grob_set (me, "note-columns", cols);
+ extract_grob_set (me, "tuplets", tuplets);
+
+ Grob *commony = common_refpoint_of_array (cols, me, Y_AXIS);
+ commony = common_refpoint_of_array (tuplets, commony, Y_AXIS);
+ if (Grob *st = Staff_symbol_referencer::get_staff_symbol (me))
+ commony = st->common_refpoint (commony, Y_AXIS);
+ if (me->check_cross_staff (commony))
+ return SCM_BOOL_T;
+
bool equally_long = false;
Grob *par_beam = parallel_beam (me, cols, &equally_long);
- if (par_beam)
- return par_beam->get_property ("cross-staff");
+ if (par_beam && to_boolean (par_beam->get_property ("cross-staff")))
+ return SCM_BOOL_T;
for (vsize i = 0; i < cols.size (); i++)
{
Grob *stem = unsmob_grob (cols[i]->get_object ("stem"));
- if (!stem)
- continue;
-
- if (to_boolean (stem->get_property ("cross-staff")))
+ if (stem && to_boolean (stem->get_property ("cross-staff")))
return SCM_BOOL_T;
-
- Grob *stem_staff = Staff_symbol_referencer::get_staff_symbol (stem);
- if (staff_symbol && (stem_staff != staff_symbol))
- return SCM_BOOL_T;
- staff_symbol = stem_staff;
}
+
return SCM_BOOL_F;
}
"thickness "
"tuplets "
);
-
-