ardour/libs/ardour/quantize.cc

203 lines
5.8 KiB
C++

/*
* Copyright (C) 2007-2015 David Robillard <d@drobilla.net>
* Copyright (C) 2008-2017 Paul Davis <paul@linuxaudiosystems.com>
* Copyright (C) 2010-2012 Carl Hetherington <carl@carlh.net>
* Copyright (C) 2013-2015 Robin Gareus <robin@gareus.org>
*
* This program 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 2 of the License, or
* (at your option) any later version.
*
* This program 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 this program; if not, write to the Free Software Foundation, Inc.,
* 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
*/
#include <cassert>
#include <cmath>
#include "pbd/basename.h"
#include "ardour/quantize.h"
#include "ardour/midi_model.h"
#include "pbd/i18n.h"
using namespace std;
using namespace PBD;
using namespace ARDOUR;
/** Quantize notes
*
* grid parameters are the quantize value in beats, ie 1.0 = quantize to beats,
* 0.25 = quantize to beats/4, etc.
*/
Quantize::Quantize (bool snap_start, bool snap_end,
Temporal::Beats start_grid, Temporal::Beats end_grid,
float strength, float swing, Temporal::Beats const & threshold)
: _snap_start (snap_start)
, _snap_end (snap_end)
, _start_grid(start_grid)
, _end_grid(end_grid)
, _strength (strength/100.0)
, _swing (swing)
, _threshold (threshold)
{
}
Quantize::~Quantize ()
{
}
static Temporal::Beats
swing_position (Temporal::Beats pos, Temporal::Beats grid, double swing_strength, Temporal::Beats offset)
{
/* beats start out numbered at zero.
*
* every other position on the start-quantize-grid is
* optionally swung, meaning that its position is moved
* somewhere between its natural position and 2/3 of
* the way to the next start-quantize-grid position.
*
* so, if the _start grid is 0.5, the beat at 0 isn't
* swung, but something at 0.5 is, the beat at 1 isn't
* swung, but something at 1.5 is.
*
* if the start grid is 1.0, the beat at 0 isn't swung,
* but the beat at 1.0 is. the beat at 2.0 isn't swung,
* but the beat at 3.0 is. and so on.
*
* so the criterion for a position being swung is
* whether or not ((possible_grid_position / grid) % 2) != 0
*/
using namespace Temporal;
const bool swing_quantize_grid_position = pos > Beats() && ((pos/grid) % Beats (0, 2)) != Beats();
const bool swing_previous_grid_position = pos > grid && (((pos-grid)/grid) % Beats (0, 2)) != Beats();
/* one of these will not be subject to swing */
Beats swung_pos = pos;
Beats swung_previous_grid_position;
if (pos > grid) {
swung_previous_grid_position = pos - grid;
} else {
swung_previous_grid_position = Beats();
}
const ratio_t r (swing_strength, 300);
if (swing_previous_grid_position) {
swung_previous_grid_position = swung_previous_grid_position + (grid * r);
}
if (swing_quantize_grid_position) {
swung_pos = swung_pos + (grid * r);
}
if ((pos - swung_pos).abs() > (pos - swung_previous_grid_position).abs()) {
pos = swung_previous_grid_position;
} else {
pos = swung_pos;
}
/* now correct for start-of-model offset */
pos += offset;
return pos;
}
PBD::Command*
Quantize::operator () (std::shared_ptr<MidiModel> model,
Temporal::Beats position,
std::vector<Evoral::Sequence<Temporal::Beats>::Notes>& seqs)
{
/* Calculate offset from start of model to next closest quantize step,
to quantize relative to actual session beats (etc.) rather than from the
start of the model.
*/
const Temporal::Beats round_pos = (position / _start_grid) * _start_grid;
const Temporal::Beats offset = round_pos - position;
MidiModel::NoteDiffCommand* cmd = new MidiModel::NoteDiffCommand (model, "quantize");
for (std::vector<Evoral::Sequence<Temporal::Beats>::Notes>::iterator s = seqs.begin(); s != seqs.end(); ++s) {
for (Evoral::Sequence<MidiModel::TimeType>::Notes::iterator i = (*s).begin(); i != (*s).end(); ++i) {
/* compute new start + end points WITHOUT the offset
* caused by the start of the model (see above).
*
* these versions of new_start and new_end are
* guaranteed to precisely align with the quantize grid(s).
*/
Temporal::Beats new_start = (((*i)->time() - offset) / _start_grid) * _start_grid;
Temporal::Beats new_end = (((*i)->end_time() - offset) / _end_grid) * _end_grid;
if (_swing) {
new_start = swing_position (new_start, _start_grid, _swing, offset);
new_end = swing_position (new_end, _end_grid, _swing, offset);
} else {
/* now correct for start-of-model offset */
new_start += offset;
new_end += offset;
}
Temporal::Beats delta = new_start - (*i)->time();
if (delta.abs() >= _threshold) {
if (_snap_start) {
/* this is here because Beats intentionally does not have operator* (double) */
delta = Temporal::Beats::ticks (llrintf (delta.to_ticks()) * _strength);
std::cerr << "new start " << (*i)->time() + delta << " shift was " << delta << std::endl;
cmd->change ((*i), MidiModel::NoteDiffCommand::StartTime, (*i)->time() + delta);
}
}
if (_snap_end) {
delta = new_end - (*i)->end_time();
if (delta.abs() >= _threshold) {
Temporal::Beats new_dur (new_end - new_start);
if (!new_dur) {
new_dur = Temporal::Beats (_end_grid);
}
cmd->change ((*i), MidiModel::NoteDiffCommand::Length, new_dur);
}
}
}
}
return cmd;
}
void
Quantize::set_start_grid (Temporal::Beats const & sg)
{
_start_grid = sg;
}
void
Quantize::set_end_grid (Temporal::Beats const & eg)
{
_end_grid = eg;
}