along with this program; if not, write to the Free Software
Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
- $Id$
*/
#include <cmath>
#include <climits>
#include <vector>
+#include <fstream>
#include <pbd/stl_delete.h>
#include <pbd/memento_command.h>
+#include <pbd/stacktrace.h>
-#include <ardour/automation_event.h>
-#include <ardour/curve.h>
+#include <ardour/automation_list.h>
#include <ardour/dB.h>
+#include <evoral/Curve.hpp>
#include "simplerect.h"
#include "automation_line.h"
+#include "control_point.h"
#include "rgb_macros.h"
#include "ardour_ui.h"
#include "public_editor.h"
using namespace Editing;
using namespace Gnome; // for Canvas
-ControlPoint::ControlPoint (AutomationLine& al)
- : line (al)
-{
- model = al.the_list().end();
- view_index = 0;
- can_slide = true;
- _x = 0;
- _y = 0;
- _shape = Full;
- _size = 4.0;
- selected = false;
-
- item = new Canvas::SimpleRect (line.canvas_group());
- item->property_draw() = true;
- item->property_fill() = false;
- item->property_fill_color_rgba() = color_map[cControlPointFill];
- item->property_outline_color_rgba() = color_map[cControlPointOutline];
- item->property_outline_pixels() = 1;
- item->set_data ("control_point", this);
- item->signal_event().connect (mem_fun (this, &ControlPoint::event_handler));
-
- hide ();
- set_visible (false);
-}
-
-ControlPoint::ControlPoint (const ControlPoint& other, bool dummy_arg_to_force_special_copy_constructor)
- : line (other.line)
-{
- if (&other == this) {
- return;
- }
-
- model = other.model;
- view_index = other.view_index;
- can_slide = other.can_slide;
- _x = other._x;
- _y = other._y;
- _shape = other._shape;
- _size = other._size;
- selected = false;
-
- item = new Canvas::SimpleRect (line.canvas_group());
- item->property_fill() = false;
- item->property_outline_color_rgba() = color_map[cEnteredControlPointOutline];
- item->property_outline_pixels() = 1;
-
- /* NOTE: no event handling in copied ControlPoints */
-
- hide ();
- set_visible (false);
-}
-
-ControlPoint::~ControlPoint ()
-{
- delete item;
-}
-
-bool
-ControlPoint::event_handler (GdkEvent* event)
-{
- return PublicEditor::instance().canvas_control_point_event (event, item, this);
-}
-
-void
-ControlPoint::hide ()
-{
- item->hide();
-}
-
-void
-ControlPoint::show()
-{
- item->show();
-}
-
-void
-ControlPoint::set_visible (bool yn)
-{
- item->property_draw() = (gboolean) yn;
-}
-
-void
-ControlPoint::reset (double x, double y, AutomationList::iterator mi, uint32_t vi, ShapeType shape)
-{
- model = mi;
- view_index = vi;
- move_to (x, y, shape);
-}
-
-void
-ControlPoint::show_color (bool entered, bool hide_too)
-{
- if (entered) {
- if (selected) {
- item->property_outline_color_rgba() = color_map[cEnteredControlPointSelected];
- set_visible(true);
- } else {
- item->property_outline_color_rgba() = color_map[cEnteredControlPoint];
- if (hide_too) {
- set_visible(false);
- }
- }
-
- } else {
- if (selected) {
- item->property_outline_color_rgba() = color_map[cControlPointSelected];
- set_visible(true);
- } else {
- item->property_outline_color_rgba() = color_map[cControlPoint];
- if (hide_too) {
- set_visible(false);
- }
- }
- }
-}
-
-void
-ControlPoint::set_size (double sz)
-{
- _size = sz;
-
-#if 0
- if (_size > 6.0) {
- item->property_fill() = (gboolean) TRUE;
- } else {
- item->property_fill() = (gboolean) FALSE;
- }
-#endif
-
- move_to (_x, _y, _shape);
-}
-
-void
-ControlPoint::move_to (double x, double y, ShapeType shape)
-{
- double x1 = 0;
- double x2 = 0;
- double half_size = rint(_size/2.0);
-
- switch (shape) {
- case Full:
- x1 = x - half_size;
- x2 = x + half_size;
- break;
- case Start:
- x1 = x;
- x2 = x + half_size;
- break;
- case End:
- x1 = x - half_size;
- x2 = x;
- break;
- }
-
- item->property_x1() = x1;
- item->property_x2() = x2;
- item->property_y1() = y - half_size;
- item->property_y2() = y + half_size;
-
- _x = x;
- _y = y;
- _shape = shape;
-}
-
-/*****/
-
-AutomationLine::AutomationLine (const string & name, TimeAxisView& tv, ArdourCanvas::Group& parent, AutomationList& al)
+AutomationLine::AutomationLine (const string& name, TimeAxisView& tv, ArdourCanvas::Group& parent, boost::shared_ptr<AutomationList> al)
: trackview (tv),
_name (name),
alist (al),
_parent_group (parent)
{
+ _interpolation = al->interpolation();
points_visible = false;
update_pending = false;
_vc_uses_gain_mapping = false;
line->signal_event().connect (mem_fun (*this, &AutomationLine::event_handler));
- alist.StateChanged.connect (mem_fun(*this, &AutomationLine::list_changed));
+ alist->StateChanged.connect (mem_fun(*this, &AutomationLine::list_changed));
+
+ trackview.session().register_with_memento_command_factory(alist->id(), this);
+
+ if (alist->parameter().type() == GainAutomation)
+ set_verbose_cursor_uses_gain_mapping (true);
+
+ set_interpolation(alist->interpolation());
}
AutomationLine::~AutomationLine ()
}
}
-void
-AutomationLine::set_point_size (double sz)
-{
- for (vector<ControlPoint*>::iterator i = control_points.begin(); i != control_points.end(); ++i) {
- (*i)->set_size (sz);
- }
-}
-
void
AutomationLine::show ()
{
- line->show();
+ if (_interpolation != AutomationList::Discrete)
+ line->show();
if (points_visible) {
for (vector<ControlPoint*>::iterator i = control_points.begin(); i != control_points.end(); ++i) {
_visible = false;
}
+double
+AutomationLine::control_point_box_size ()
+{
+ if (_interpolation == AutomationList::Discrete) {
+ return max((_height*4.0) / (double)(alist->parameter().max() - alist->parameter().min()),
+ 4.0);
+ }
+
+ if (_height > TimeAxisView::hLarger) {
+ return 8.0;
+ } else if (_height > (guint32) TimeAxisView::hNormal) {
+ return 6.0;
+ }
+ return 4.0;
+}
+
void
AutomationLine::set_height (guint32 h)
{
if (h != _height) {
_height = h;
- if (_height > (guint32) TimeAxisView::Larger) {
- set_point_size (8.0);
- } else if (_height > (guint32) TimeAxisView::Normal) {
- set_point_size (6.0);
- } else {
- set_point_size (4.0);
+ double bsz = control_point_box_size();
+
+ for (vector<ControlPoint*>::iterator i = control_points.begin(); i != control_points.end(); ++i) {
+ (*i)->set_size (bsz);
}
reset ();
}
}
-void
-AutomationLine::modify_view (ControlPoint& cp, double x, double y, bool with_push)
-{
- modify_view_point (cp, x, y, with_push);
- update_line ();
-}
-
void
AutomationLine::modify_view_point (ControlPoint& cp, double x, double y, bool with_push)
{
y = min (1.0, y);
y = _height - (y * _height);
- if (cp.can_slide) {
+ if (cp.can_slide()) {
/* x-coord cannot move beyond adjacent points or the start/end, and is
already in frames. it needs to be converted to canvas units.
ControlPoint *before;
ControlPoint *after;
- if (cp.view_index) {
- before = nth (cp.view_index - 1);
+ if (cp.view_index()) {
+ before = nth (cp.view_index() - 1);
x = max (x, before->get_x()+1.0);
} else {
before = &cp;
if (!with_push) {
- if (cp.view_index < control_points.size() - 1) {
+ if (cp.view_index() < control_points.size() - 1) {
- after = nth (cp.view_index + 1);
+ after = nth (cp.view_index() + 1);
/*if it is a "spike" leave the x alone */
ControlPoint* after;
/* find the first point that can't move */
-
- for (uint32_t n = cp.view_index + 1; (after = nth (n)) != 0; ++n) {
- if (!after->can_slide) {
+
+ for (uint32_t n = cp.view_index() + 1; (after = nth (n)) != 0; ++n) {
+ if (!after->can_slide()) {
x_limit = after->get_x() - 1.0;
- last_movable = after->view_index;
+ last_movable = after->view_index();
break;
}
}
/* leave the x-coordinate alone */
- x = trackview.editor.frame_to_unit ((*cp.model)->when);
+ x = trackview.editor.frame_to_unit ((*cp.model())->when);
}
/* now move all subsequent control points, to reflect the motion.
*/
- for (uint32_t i = cp.view_index + 1; i < limit; ++i) {
+ for (uint32_t i = cp.view_index() + 1; i < limit; ++i) {
ControlPoint *p = nth (i);
double new_x;
- if (p->can_slide) {
+ if (p->can_slide()) {
new_x = min (p->get_x() + delta, x_limit);
p->move_to (new_x, p->get_y(), ControlPoint::Full);
reset_line_coords (*p);
void
AutomationLine::reset_line_coords (ControlPoint& cp)
{
- line_points[cp.view_index].set_x (cp.get_x());
- line_points[cp.view_index].set_y (cp.get_y());
-}
-
-void
-AutomationLine::update_line ()
-{
- line->property_points() = line_points;
+ if (cp.view_index() < line_points.size()) {
+ line_points[cp.view_index()].set_x (cp.get_x());
+ line_points[cp.view_index()].set_y (cp.get_y());
+ }
}
void
for (uint32_t i = start; i <= end; ++i) {
p = nth(i);
- sync_model_with_view_point(*p);
+ sync_model_with_view_point (*p, false, 0);
}
-
-
}
void
line to convert them to something relevant.
*/
- mr.xval = (jack_nframes_t) floor (cp.get_x());
+ mr.xval = (nframes_t) floor (cp.get_x());
mr.yval = 1.0 - (cp.get_y() / _height);
+ /* if xval has not changed, set it directly from the model to avoid rounding errors */
- /* if xval has not changed, set it directly from the model to avoid rounding errors */
-
- if (mr.xval == trackview.editor.frame_to_unit((*cp.model)->when)) {
- mr.xval = (jack_nframes_t) (*cp.model)->when;
+ if (mr.xval == trackview.editor.frame_to_unit((*cp.model())->when)) {
+ mr.xval = (nframes_t) (*cp.model())->when;
} else {
mr.xval = trackview.editor.unit_to_frame (mr.xval);
}
-
/* virtual call: this will do the right thing
for whatever particular type of line we are.
*/
/* part 2: find out where the model point is now
*/
- mr.xpos = (jack_nframes_t) (*cp.model)->when;
- mr.ypos = (*cp.model)->value;
+ mr.xpos = (nframes_t) (*cp.model())->when;
+ mr.ypos = (*cp.model())->value;
/* part 3: get the position of the visual control
points before and after us.
ControlPoint* before;
ControlPoint* after;
- if (cp.view_index) {
- before = nth (cp.view_index - 1);
+ if (cp.view_index()) {
+ before = nth (cp.view_index() - 1);
} else {
before = 0;
}
- after = nth (cp.view_index + 1);
+ after = nth (cp.view_index() + 1);
if (before) {
- mr.xmin = (jack_nframes_t) (*before->model)->when;
- mr.ymin = (*before->model)->value;
- mr.start = before->model;
+ mr.xmin = (nframes_t) (*before->model())->when;
+ mr.ymin = (*before->model())->value;
+ mr.start = before->model();
++mr.start;
} else {
mr.xmin = mr.xpos;
mr.ymin = mr.ypos;
- mr.start = cp.model;
+ mr.start = cp.model();
}
if (after) {
- mr.end = after->model;
+ mr.end = after->model();
} else {
mr.xmax = mr.xpos;
mr.ymax = mr.ypos;
- mr.end = cp.model;
+ mr.end = cp.model();
++mr.end;
}
}
-void
-AutomationLine::sync_model_from (ControlPoint& cp)
-{
- ControlPoint* p;
- uint32_t lasti;
-
- sync_model_with_view_point (cp);
-
- /* we might have moved all points after `cp' by some amount
- if we pressed the with_push modifyer some of the time during the drag
- so all subsequent points have to be resynced
- */
-
- lasti = control_points.size() - 1;
- p = nth (lasti);
-
- update_pending = true;
-
- while (p != &cp && lasti) {
- sync_model_with_view_point (*p);
- --lasti;
- p = nth (lasti);
- }
-}
-
-void
-AutomationLine::sync_model_with_view_point (ControlPoint& cp)
-{
- ModelRepresentation mr;
- double ydelta;
-
- model_representation (cp, mr);
-
- /* part 4: how much are we changing the central point by */
-
- ydelta = mr.yval - mr.ypos;
-
- /* IMPORTANT: changing the model when the x-coordinate changes
- may invalidate the iterators that we are using. this means that we have
- to change the points before+after the one corresponding to the visual CP
- first (their x-coordinate doesn't change). then we change the
- "main" point.
-
- apply the full change to the central point, and interpolate
- in each direction to cover all model points represented
- by the control point.
- */
-
- /* part 5: change all points before the primary point */
-
- for (AutomationList::iterator i = mr.start; i != cp.model; ++i) {
-
- double delta;
-
- delta = ydelta * ((*i)->when - mr.xmin) / (mr.xpos - mr.xmin);
-
- /* x-coordinate (generally time) stays where it is,
- y-coordinate moves by a certain amount.
- */
-
- update_pending = true;
- change_model (i, (*i)->when, mr.yval + delta);
- }
-
- /* part 6: change later points */
-
- AutomationList::iterator i = cp.model;
-
- ++i;
-
- while (i != mr.end) {
-
- double delta;
-
- delta = ydelta * (mr.xmax - (*i)->when) / (mr.xmax - mr.xpos);
-
- /* x-coordinate (generally time) stays where it is,
- y-coordinate moves by a certain amount.
- */
-
- update_pending = true;
- change_model (i, (*i)->when, (*i)->value + delta);
-
- ++i;
- }
-
- /* part 7: change the primary point */
-
- update_pending = true;
- change_model (cp.model, mr.xval, mr.yval);
-}
-
void
AutomationLine::determine_visible_control_points (ALPoints& points)
{
uint32_t this_ry = 0;
uint32_t prev_ry = 0;
double* slope;
+ uint32_t box_size;
+ uint32_t cpsize;
/* hide all existing points, and the line */
+
+ cpsize = 0;
for (vector<ControlPoint*>::iterator i = control_points.begin(); i != control_points.end(); ++i) {
(*i)->hide();
+ ++cpsize;
}
line->hide ();
slope[n] = ydelta/xdelta;
}
+ box_size = (uint32_t) control_point_box_size ();
+
/* read all points and decide which ones to show as control points */
view_index = 0;
- for (model = alist.begin(), pi = 0; pi < npoints; ++model, ++pi) {
+ for (model = alist->begin(), pi = 0; pi < npoints; ++model, ++pi) {
double tx = points[pi].x;
double ty = points[pi].y;
+
+ if (isnan (tx) || isnan (ty)) {
+ warning << string_compose (_("Ignoring illegal points on AutomationLine \"%1\""),
+ _name) << endmsg;
+ continue;
+ }
/* now ensure that the control_points vector reflects the current curve
state, but don't plot control points too close together. also, don't
*/
this_rx = (uint32_t) rint (tx);
- this_ry = (unsigned long) rint (ty);
-
- if (view_index && pi != npoints && (this_rx == prev_rx) && (this_ry == prev_ry)) {
+ this_ry = (uint32_t) rint (ty);
+ if (view_index && pi != npoints && /* not the first, not the last */
+ (((this_rx == prev_rx) && (this_ry == prev_ry)) || /* same point */
+ (((this_rx - prev_rx) < (box_size + 2)) && /* not identical, but still too close horizontally */
+ (abs ((int)(this_ry - prev_ry)) < (int) (box_size + 2))))) { /* too close vertically */
continue;
}
/* ok, we should display this point */
- if (view_index >= control_points.size()) {
+ if (view_index >= cpsize) {
+
/* make sure we have enough control points */
ControlPoint* ncp = new ControlPoint (*this);
-
- if (_height > (guint32) TimeAxisView::Larger) {
- ncp->set_size (8.0);
- } else if (_height > (guint32) TimeAxisView::Normal) {
- ncp->set_size (6.0);
- } else {
- ncp->set_size (4.0);
- }
+
+ ncp->set_size (box_size);
control_points.push_back (ncp);
+ ++cpsize;
}
ControlPoint::ShapeType shape;
if (!terminal_points_can_slide) {
if (pi == 0) {
- control_points[view_index]->can_slide = false;
+ control_points[view_index]->set_can_slide(false);
if (tx == 0) {
shape = ControlPoint::Start;
} else {
shape = ControlPoint::Full;
}
} else if (pi == npoints - 1) {
- control_points[view_index]->can_slide = false;
+ control_points[view_index]->set_can_slide(false);
shape = ControlPoint::End;
} else {
- control_points[view_index]->can_slide = true;
+ control_points[view_index]->set_can_slide(true);
shape = ControlPoint::Full;
}
} else {
- control_points[view_index]->can_slide = true;
+ control_points[view_index]->set_can_slide(true);
shape = ControlPoint::Full;
}
view_index++;
}
-
+
/* discard extra CP's to avoid confusing ourselves */
while (control_points.size() > view_index) {
}
if (!terminal_points_can_slide) {
- control_points.back()->can_slide = false;
+ control_points.back()->set_can_slide(false);
}
delete [] slope;
line_points.push_back (Art::Point (0,0));
}
+ while (line_points.size() > npoints) {
+ line_points.pop_back ();
+ }
+
for (view_index = 0; view_index < npoints; ++view_index) {
line_points[view_index].set_x (control_points[view_index]->get_x());
line_points[view_index].set_y (control_points[view_index]->get_y());
line->property_points() = line_points;
- if (_visible) {
- line->show ();
- }
+ if (_visible && _interpolation != AutomationList::Discrete)
+ line->show();
+
}
set_selected_points (trackview.editor.get_selection().points);
+
}
string
-AutomationLine::get_verbose_cursor_string (float fraction)
+AutomationLine::get_verbose_cursor_string (double fraction)
{
char buf[32];
snprintf (buf, sizeof (buf), "%.1fdB", coefficient_to_dB (slider_position_to_gain (fraction)));
}
} else {
- snprintf (buf, sizeof (buf), "%.2f", fraction);
+ view_to_model_y(fraction);
+ if (EventTypeMap::instance().is_integer(alist->parameter())) {
+ snprintf (buf, sizeof (buf), "%d", (int)fraction);
+ } else {
+ snprintf (buf, sizeof (buf), "%.2f", fraction);
+ }
}
return buf;
}
void
-AutomationLine::start_drag (ControlPoint* cp, float fraction)
+AutomationLine::start_drag (ControlPoint* cp, nframes_t x, float fraction)
{
if (trackview.editor.current_session() == 0) { /* how? */
return;
}
trackview.editor.current_session()->begin_reversible_command (str);
- trackview.editor.current_session()->add_command (new MementoUndoCommand<AutomationLine>(*this, get_state()));
+ trackview.editor.current_session()->add_command (new MementoCommand<AutomationList>(*alist.get(), &get_state(), 0));
+ drag_x = x;
+ drag_distance = 0;
first_drag_fraction = fraction;
last_drag_fraction = fraction;
drags = 0;
+ did_push = false;
}
void
-AutomationLine::point_drag (ControlPoint& cp, jack_nframes_t x, float fraction, bool with_push)
+AutomationLine::point_drag (ControlPoint& cp, nframes_t x, float fraction, bool with_push)
{
- modify_view (cp, x, fraction, with_push);
+ if (x > drag_x) {
+ drag_distance += (x - drag_x);
+ } else {
+ drag_distance -= (drag_x - x);
+ }
+
+ drag_x = x;
+
+ modify_view_point (cp, x, fraction, with_push);
+
+ if (line_points.size() > 1) {
+ line->property_points() = line_points;
+ }
+
drags++;
+ did_push = with_push;
}
void
AutomationLine::line_drag (uint32_t i1, uint32_t i2, float fraction, bool with_push)
{
double ydelta = fraction - last_drag_fraction;
+
+ did_push = with_push;
last_drag_fraction = fraction;
modify_view_point (*cp, trackview.editor.unit_to_frame (cp->get_x()), ((_height - cp->get_y()) /_height) + ydelta, with_push);
}
- update_line ();
+ if (line_points.size() > 1) {
+ line->property_points() = line_points;
+ }
drags++;
}
void
AutomationLine::end_drag (ControlPoint* cp)
{
- if (drags) {
+ if (!drags) {
+ return;
+ }
- if (cp) {
- sync_model_from (*cp);
- } else {
- sync_model_with_view_line (line_drag_cp1, line_drag_cp2);
+ alist->freeze ();
+
+ if (cp) {
+ sync_model_with_view_point (*cp, did_push, drag_distance);
+ } else {
+ sync_model_with_view_line (line_drag_cp1, line_drag_cp2);
+ }
+
+ alist->thaw ();
+
+ update_pending = false;
+
+ trackview.editor.current_session()->add_command (new MementoCommand<AutomationList>(*alist.get(), 0, &alist->get_state()));
+ trackview.editor.current_session()->commit_reversible_command ();
+ trackview.editor.current_session()->set_dirty ();
+}
+
+
+void
+AutomationLine::sync_model_with_view_point (ControlPoint& cp, bool did_push, int64_t distance)
+{
+ ModelRepresentation mr;
+ double ydelta;
+
+ model_representation (cp, mr);
+
+ /* how much are we changing the central point by */
+
+ ydelta = mr.yval - mr.ypos;
+
+ /*
+ apply the full change to the central point, and interpolate
+ on both axes to cover all model points represented
+ by the control point.
+ */
+
+ /* change all points before the primary point */
+
+ for (AutomationList::iterator i = mr.start; i != cp.model(); ++i) {
+
+ double fract = ((*i)->when - mr.xmin) / (mr.xpos - mr.xmin);
+ double y_delta = ydelta * fract;
+ double x_delta = distance * fract;
+
+ /* interpolate */
+
+ if (y_delta || x_delta) {
+ alist->modify (i, (*i)->when + x_delta, mr.ymin + y_delta);
}
+ }
- update_pending = false;
+ /* change the primary point */
+
+ update_pending = true;
+ alist->modify (cp.model(), mr.xval, mr.yval);
- trackview.editor.current_session()->add_command (new MementoRedoCommand<AutomationLine>(*this, get_state()));
- trackview.editor.current_session()->commit_reversible_command ();
- trackview.editor.current_session()->set_dirty ();
+
+ /* change later points */
+
+ AutomationList::iterator i = cp.model();
+
+ ++i;
+
+ while (i != mr.end) {
+
+ double delta = ydelta * (mr.xmax - (*i)->when) / (mr.xmax - mr.xpos);
+
+ /* all later points move by the same distance along the x-axis as the main point */
+
+ if (delta) {
+ alist->modify (i, (*i)->when + distance, (*i)->value + delta);
+ }
+
+ ++i;
}
+
+ if (did_push) {
+
+ /* move all points after the range represented by the view by the same distance
+ as the main point moved.
+ */
+
+ alist->slide (mr.end, drag_distance);
+ }
+
}
bool
if (!bcp || (*i)->get_x() > bcp->get_x()) {
bcp = *i;
- before = bcp->view_index;
+ before = bcp->view_index();
}
} else if ((*i)->get_x() > unit_xval) {
acp = *i;
- after = acp->view_index;
+ after = acp->view_index();
break;
}
}
// If the list is not empty, and the point is the last point in the list
- if (!alist.empty() && mr.end == alist.end()) {
+ if (!alist->empty() && mr.end == alist->end()) {
return true;
}
// If the list is not empty, and the point is the first point in the list
- if (!alist.empty() && mr.start == alist.begin()) {
+ if (!alist->empty() && mr.start == alist->begin()) {
return true;
}
model_representation (cp, mr);
trackview.editor.current_session()->begin_reversible_command (_("remove control point"));
- XMLNode &before = get_state();
+ XMLNode &before = alist->get_state();
- alist.erase (mr.start, mr.end);
+ alist->erase (mr.start, mr.end);
- trackview.editor.current_session()->add_command(new MementoCommand<AutomationLine>(*this, before, get_state()));
+ trackview.editor.current_session()->add_command(new MementoCommand<AutomationList>(
+ *alist.get(), &before, &alist->get_state()));
trackview.editor.current_session()->commit_reversible_command ();
trackview.editor.current_session()->set_dirty ();
}
void
-AutomationLine::get_selectables (jack_nframes_t& start, jack_nframes_t& end,
+AutomationLine::get_selectables (nframes_t& start, nframes_t& end,
double botfrac, double topfrac, list<Selectable*>& results)
{
double top;
double bot;
- jack_nframes_t nstart;
- jack_nframes_t nend;
+ nframes_t nstart;
+ nframes_t nend;
bool collecting = false;
/* Curse X11 and its inverted coordinate system! */
for (vector<ControlPoint*>::iterator i = control_points.begin(); i != control_points.end(); ++i) {
- jack_nframes_t when = (jack_nframes_t) (*(*i)->model)->when;
+ nframes_t when = (nframes_t) (*(*i)->model())->when;
if (when >= start && when <= end) {
double bot;
for (vector<ControlPoint*>::iterator i = control_points.begin(); i != control_points.end(); ++i) {
- (*i)->selected = false;
+ (*i)->set_selected(false);
}
if (points.empty()) {
if ((*i)->get_y() >= bot && (*i)->get_y() <= top) {
- (*i)->selected = true;
+ (*i)->set_selected(true);
}
}
}
+void AutomationLine::set_colors() {
+ set_line_color( ARDOUR_UI::config()->canvasvar_AutomationLine.get() );
+ for (vector<ControlPoint*>::iterator i = control_points.begin(); i != control_points.end(); ++i) {
+ (*i)->show_color (false, !points_visible);
+ }
+}
+
void
AutomationLine::show_selection ()
{
TimeSelection& time (trackview.editor.get_selection().time);
- // cerr << "show selection\n";
-
for (vector<ControlPoint*>::iterator i = control_points.begin(); i != control_points.end(); ++i) {
- (*i)->selected = false;
+ (*i)->set_selected(false);
for (list<AudioRange>::iterator r = time.begin(); r != time.end(); ++r) {
double rstart, rend;
rend = trackview.editor.frame_to_unit ((*r).end);
if ((*i)->get_x() >= rstart && (*i)->get_x() <= rend) {
- (*i)->selected = true;
+ (*i)->set_selected(true);
break;
}
}
void
AutomationLine::hide_selection ()
{
- // cerr << "hide selection\n";
// show_selection ();
}
-
-// This is copied into AudioRegionGainLine
-UndoAction
-AutomationLine::get_memento ()
-{
- return alist.get_memento();
-}
-
void
-AutomationLine::list_changed (Change ignored)
+AutomationLine::list_changed ()
{
queue_reset ();
}
void
-AutomationLine::reset_callback (const AutomationList& events)
+AutomationLine::reset_callback (const Evoral::ControlList& events)
{
- ALPoints tmp_points;
+ ALPoints tmp_points;
uint32_t npoints = events.size();
if (npoints == 0) {
AutomationList::const_iterator ai;
- for (ai = events.const_begin(); ai != events.const_end(); ++ai) {
-
- double translated_y;
+ for (ai = events.begin(); ai != events.end(); ++ai) {
- translated_y = (*ai)->value;
+ double translated_y = (*ai)->value;
model_to_view_y (translated_y);
- tmp_points.push_back (ALPoint (trackview.editor.frame_to_unit ((*ai)->when),
- _height - (translated_y * _height)));
+ add_model_point (tmp_points, (*ai)->when, translated_y);
}
determine_visible_control_points (tmp_points);
}
+
+void
+AutomationLine::add_model_point (ALPoints& tmp_points, double frame, double yfract)
+{
+ tmp_points.push_back (ALPoint (trackview.editor.frame_to_unit (frame),
+ _height - (yfract * _height)));
+}
+
void
AutomationLine::reset ()
{
return;
}
- alist.apply_to_points (*this, &AutomationLine::reset_callback);
+ alist->apply_to_points (*this, &AutomationLine::reset_callback);
}
void
AutomationLine::clear ()
{
/* parent must create command */
- XMLNode &before = get_state();
- alist.clear();
- trackview.editor.current_session()->add_command (new MementoCommand<AutomationLine>(*this, before, get_state()));
+ XMLNode &before = get_state();
+ alist->clear();
+ trackview.editor.current_session()->add_command (new MementoCommand<AutomationLine>(*this, &before, &get_state()));
trackview.editor.current_session()->commit_reversible_command ();
trackview.editor.current_session()->set_dirty ();
}
void
AutomationLine::change_model (AutomationList::iterator i, double x, double y)
{
- alist.modify (i, (jack_nframes_t) x, y);
}
void
AutomationLine::change_model_range (AutomationList::iterator start, AutomationList::iterator end, double xdelta, float ydelta)
{
- alist.move_range (start, end, xdelta, ydelta);
+ alist->move_range (start, end, xdelta, ydelta);
+}
+
+void
+AutomationLine::set_list(boost::shared_ptr<ARDOUR::AutomationList> list)
+{
+ alist = list;
+ queue_reset();
}
void
points_visible = true;
for (vector<ControlPoint*>::iterator i = control_points.begin(); i != control_points.end(); ++i) {
+ (*i)->show_color((_interpolation != AutomationList::Discrete), false);
(*i)->show ();
(*i)->set_visible (true);
}
void
AutomationLine::hide_all_but_selected_control_points ()
{
+ if (alist->interpolation() == AutomationList::Discrete)
+ return;
+
points_visible = false;
for (vector<ControlPoint*>::iterator i = control_points.begin(); i != control_points.end(); ++i) {
- if (!(*i)->selected) {
+ if (!(*i)->selected()) {
(*i)->set_visible (false);
}
}
}
+
+void
+AutomationLine::track_entered()
+{
+ if (alist->interpolation() != AutomationList::Discrete)
+ show_all_control_points();
+}
+
+void
+AutomationLine::track_exited()
+{
+ if (alist->interpolation() != AutomationList::Discrete) {
+ hide_all_but_selected_control_points();
+ }
+}
+
+XMLNode &
+AutomationLine::get_state (void)
+{
+ /* function as a proxy for the model */
+ return alist->get_state();
+}
+
+int
+AutomationLine::set_state (const XMLNode &node)
+{
+ /* function as a proxy for the model */
+ return alist->set_state (node);
+}
+
+void
+AutomationLine::view_to_model_y (double& y)
+{
+ /* TODO: This should be more generic ... */
+ if (alist->parameter().type() == GainAutomation) {
+ y = slider_position_to_gain (y);
+ y = max (0.0, y);
+ y = min (2.0, y);
+ } else if (alist->parameter().type() == PanAutomation) {
+ // vertical coordinate axis reversal
+ y = 1.0 - y;
+ } else if (alist->parameter().type() == PluginAutomation) {
+ y = y * (double)(alist->get_max_y()- alist->get_min_y()) + alist->get_min_y();
+ } else {
+ y = (int)(y * alist->parameter().max());
+ }
+}
-XMLNode &AutomationLine::get_state(void)
+void
+AutomationLine::model_to_view_y (double& y)
{
- XMLNode *node = new XMLNode("AutomationLine");
- node->add_child_nocopy(alist.get_state());
- return *node;
+ /* TODO: This should be more generic ... */
+ if (alist->parameter().type() == GainAutomation) {
+ y = gain_to_slider_position (y);
+ } else if (alist->parameter().type() == PanAutomation) {
+ // vertical coordinate axis reversal
+ y = 1.0 - y;
+ } else if (alist->parameter().type() == PluginAutomation) {
+ y = (y - alist->get_min_y()) / (double)(alist->get_max_y()- alist->get_min_y());
+ } else {
+ y = y / (double)alist->parameter().max(); /* ... like this */
+ }
}
-int AutomationLine::set_state(const XMLNode &node)
+
+void
+AutomationLine::set_interpolation(AutomationList::InterpolationStyle style)
{
- // TODO
- //alist.set_state(node);
- return 0;
+ _interpolation = style;
+
+ if (style == AutomationList::Discrete) {
+ show_all_control_points();
+ line->hide();
+ } else {
+ hide_all_but_selected_control_points();
+ line->show();
+ }
}
+