#include "ardour/debug.h"
#include "ardour/lmath.h"
#include "ardour/tempo.h"
+#include "ardour/types_convert.h"
#include "pbd/i18n.h"
#include <locale.h>
/* _default tempo is 4/4 qtr=120 */
Meter TempoMap::_default_meter (4.0, 4.0);
-Tempo TempoMap::_default_tempo (120.0, 4.0);
+Tempo TempoMap::_default_tempo (120.0, 4.0, 120.0);
framepos_t
MetricSection::frame_at_minute (const double& time) const
}
double
-MetricSection::minute_at_frame (const framepos_t& frame) const
+MetricSection::minute_at_frame (const framepos_t frame) const
{
return (frame / (double) _sample_rate) / 60.0;
}
+/***********************************************************************/
+
+bool
+ARDOUR::bbt_time_to_string (const BBT_Time& bbt, std::string& str)
+{
+ char buf[256];
+ int retval = snprintf (buf, sizeof(buf), "%" PRIu32 "|%" PRIu32 "|%" PRIu32, bbt.bars, bbt.beats,
+ bbt.ticks);
+
+ if (retval <= 0 || retval >= (int)sizeof(buf)) {
+ return false;
+ }
+
+ str = buf;
+ return true;
+}
+
+bool
+ARDOUR::string_to_bbt_time (const std::string& str, BBT_Time& bbt)
+{
+ if (sscanf (str.c_str (), "%" PRIu32 "|%" PRIu32 "|%" PRIu32, &bbt.bars, &bbt.beats,
+ &bbt.ticks) == 3) {
+ return true;
+ }
+ return false;
+}
+
+
/***********************************************************************/
double
The return value IS NOT interpretable in terms of "beats".
*/
- return (60.0 * sr) / (tempo.note_types_per_minute() * (_note_type/tempo.note_type()));
+ return (60.0 * sr) / (tempo.note_types_per_minute() * (_note_type / tempo.note_type()));
}
double
/***********************************************************************/
+void
+MetricSection::add_state_to_node(XMLNode& node) const
+{
+ node.set_property ("pulse", _pulse);
+ node.set_property ("frame", frame());
+ node.set_property ("movable", !_initial);
+ node.set_property ("lock-style", _position_lock_style);
+}
+
+int
+MetricSection::set_state (const XMLNode& node, int /*version*/)
+{
+ node.get_property ("pulse", _pulse);
+
+ framepos_t frame;
+ if (node.get_property ("frame", frame)) {
+ set_minute (minute_at_frame (frame));
+ }
+
+ bool tmp;
+ if (!node.get_property ("movable", tmp)) {
+ error << _("TempoSection XML node has no \"movable\" property") << endmsg;
+ throw failed_constructor();
+ }
+ _initial = !tmp;
+
+ if (!node.get_property ("lock-style", _position_lock_style)) {
+ if (!initial()) {
+ _position_lock_style = MusicTime;
+ } else {
+ _position_lock_style = AudioTime;
+ }
+ }
+ return 0;
+}
+
+/***********************************************************************/
+
const string TempoSection::xml_state_node_name = "Tempo";
TempoSection::TempoSection (const XMLNode& node, framecnt_t sample_rate)
, _c (0.0)
, _active (true)
, _locked_to_meter (false)
+ , _clamped (false)
{
- XMLProperty const * prop;
- LocaleGuard lg;
- BBT_Time bbt;
- double pulse;
- uint32_t frame;
-
_legacy_bbt = BBT_Time (0, 0, 0);
- if ((prop = node.property ("start")) != 0) {
- if (sscanf (prop->value().c_str(), "%" PRIu32 "|%" PRIu32 "|%" PRIu32,
- &bbt.bars,
- &bbt.beats,
- &bbt.ticks) == 3) {
+ BBT_Time bbt;
+ std::string start_bbt;
+ if (node.get_property ("start", start_bbt)) {
+ if (string_to_bbt_time (start_bbt, bbt)) {
/* legacy session - start used to be in bbt*/
_legacy_bbt = bbt;
- pulse = -1.0;
+ set_pulse(-1.0);
info << _("Legacy session detected. TempoSection XML node will be altered.") << endmsg;
}
}
- if ((prop = node.property ("pulse")) != 0) {
- if (sscanf (prop->value().c_str(), "%lf", &pulse) != 1) {
- error << _("TempoSection XML node has an illegal \"pulse\" value") << endmsg;
- }
- }
-
- set_pulse (pulse);
+ // Don't worry about return value, exception will be thrown on error
+ MetricSection::set_state (node, Stateful::loading_state_version);
- if ((prop = node.property ("frame")) != 0) {
- if (sscanf (prop->value().c_str(), "%" PRIu32, &frame) != 1) {
- error << _("TempoSection XML node has an illegal \"frame\" value") << endmsg;
+ if (node.get_property ("beats-per-minute", _note_types_per_minute)) {
+ if (_note_types_per_minute < 0.0) {
+ error << _("TempoSection XML node has an illegal \"beats_per_minute\" value") << endmsg;
throw failed_constructor();
- } else {
- set_minute (minute_at_frame (frame));
}
}
- /* XX replace old beats-per-minute name with note-types-per-minute */
- if ((prop = node.property ("beats-per-minute")) != 0) {
- if (sscanf (prop->value().c_str(), "%lf", &_note_types_per_minute) != 1 || _note_types_per_minute < 0.0) {
- error << _("TempoSection XML node has an illegal \"beats-per-minute\" value") << endmsg;
+ if (node.get_property ("note-type", _note_type)) {
+ if (_note_type < 1.0) {
+ error << _("TempoSection XML node has an illegal \"note-type\" value") << endmsg;
throw failed_constructor();
}
- }
-
- if ((prop = node.property ("note-type")) == 0) {
+ } else {
/* older session, make note type be quarter by default */
_note_type = 4.0;
- } else {
- if (sscanf (prop->value().c_str(), "%lf", &_note_type) != 1 || _note_type < 1.0) {
- error << _("TempoSection XML node has an illegal \"note-type\" value") << endmsg;
- throw failed_constructor();
}
+
+ if (!node.get_property ("clamped", _clamped)) {
+ _clamped = false;
}
- if ((prop = node.property ("movable")) == 0) {
- error << _("TempoSection XML node has no \"movable\" property") << endmsg;
- throw failed_constructor();
+ if (node.get_property ("end-beats-per-minute", _end_note_types_per_minute)) {
+ if (_end_note_types_per_minute < 0.0) {
+ info << _("TempoSection XML node has an illegal \"end-beats-per-minute\" value") << endmsg;
+ throw failed_constructor();
+ }
}
- set_initial (!string_is_affirmative (prop->value()));
+ TempoSection::Type old_type;
+ if (node.get_property ("tempo-type", old_type)) {
+ /* sessions with a tempo-type node contain no end-beats-per-minute.
+ if the legacy node indicates a constant tempo, simply fill this in with the
+ start tempo. otherwise we need the next neighbour to know what it will be.
+ */
- if ((prop = node.property ("active")) == 0) {
- warning << _("TempoSection XML node has no \"active\" property") << endmsg;
- set_active(true);
- } else {
- set_active (string_is_affirmative (prop->value()));
+ if (old_type == TempoSection::Constant) {
+ _end_note_types_per_minute = _note_types_per_minute;
+ } else {
+ _end_note_types_per_minute = -1.0;
+ }
}
- if ((prop = node.property ("tempo-type")) == 0) {
- _type = Constant;
- } else {
- _type = Type (string_2_enum (prop->value(), _type));
+ if (!node.get_property ("active", _active)) {
+ warning << _("TempoSection XML node has no \"active\" property") << endmsg;
+ _active = true;
}
- if ((prop = node.property ("lock-style")) == 0) {
- if (!initial()) {
- set_position_lock_style (MusicTime);
+ if (!node.get_property ("locked-to-meter", _locked_to_meter)) {
+ if (initial()) {
+ set_locked_to_meter (true);
} else {
- set_position_lock_style (AudioTime);
+ set_locked_to_meter (false);
}
- } else {
- set_position_lock_style (PositionLockStyle (string_2_enum (prop->value(), position_lock_style())));
}
- if ((prop = node.property ("locked-to-meter")) == 0) {
- set_locked_to_meter (false);
- } else {
- set_locked_to_meter (string_is_affirmative (prop->value()));
+ /* 5.5 marked initial tempo as not locked to meter. this should always be true anyway */
+ if (initial()) {
+ set_locked_to_meter (true);
}
}
TempoSection::get_state() const
{
XMLNode *root = new XMLNode (xml_state_node_name);
- char buf[256];
- LocaleGuard lg;
-
- snprintf (buf, sizeof (buf), "%lf", pulse());
- root->add_property ("pulse", buf);
- snprintf (buf, sizeof (buf), "%li", frame());
- root->add_property ("frame", buf);
- snprintf (buf, sizeof (buf), "%lf", _note_types_per_minute);
- root->add_property ("beats-per-minute", buf);
- snprintf (buf, sizeof (buf), "%lf", _note_type);
- root->add_property ("note-type", buf);
- snprintf (buf, sizeof (buf), "%s", !initial()?"yes":"no");
- root->add_property ("movable", buf);
- snprintf (buf, sizeof (buf), "%s", active()?"yes":"no");
- root->add_property ("active", buf);
- root->add_property ("tempo-type", enum_2_string (_type));
- root->add_property ("lock-style", enum_2_string (position_lock_style()));
- root->add_property ("locked-to-meter", locked_to_meter()?"yes":"no");
- return *root;
-}
+ MetricSection::add_state_to_node (*root);
-void
-TempoSection::set_type (Type type)
-{
- _type = type;
+ root->set_property ("beats-per-minute", _note_types_per_minute);
+ root->set_property ("note-type", _note_type);
+ root->set_property ("clamped", _clamped);
+ root->set_property ("end-beats-per-minute", _end_note_types_per_minute);
+ root->set_property ("active", _active);
+ root->set_property ("locked-to-meter", _locked_to_meter);
+
+ return *root;
}
/** returns the Tempo at the session-relative minute.
Tempo
TempoSection::tempo_at_minute (const double& m) const
{
- const bool constant = _type == Constant || _c == 0.0 || (initial() && m < minute());
+ const bool constant = type() == Constant || _c == 0.0 || (initial() && m < minute());
if (constant) {
return Tempo (note_types_per_minute(), note_type());
}
- return Tempo (_tempo_at_time (m - minute()), _note_type);
+ return Tempo (_tempo_at_time (m - minute()), _note_type, _end_note_types_per_minute);
}
/** returns the session relative minute where the supplied tempo in note types per minute occurs.
double
TempoSection::minute_at_ntpm (const double& ntpm, const double& p) const
{
- const bool constant = _type == Constant || _c == 0.0 || (initial() && p < pulse());
+ const bool constant = type() == Constant || _c == 0.0 || (initial() && p < pulse());
if (constant) {
return ((p - pulse()) / pulses_per_minute()) + minute();
}
Tempo
TempoSection::tempo_at_pulse (const double& p) const
{
- const bool constant = _type == Constant || _c == 0.0 || (initial() && p < pulse());
+ const bool constant = type() == Constant || _c == 0.0 || (initial() && p < pulse());
if (constant) {
return Tempo (note_types_per_minute(), note_type());
}
- return Tempo (_tempo_at_pulse (p - pulse()), _note_type);
+ return Tempo (_tempo_at_pulse (p - pulse()), _note_type, _end_note_types_per_minute);
}
/** returns the whole-note pulse where a tempo in note types per minute occurs.
double
TempoSection::pulse_at_ntpm (const double& ntpm, const double& m) const
{
- const bool constant = _type == Constant || _c == 0.0 || (initial() && m < minute());
+ const bool constant = type() == Constant || _c == 0.0 || (initial() && m < minute());
if (constant) {
return ((m - minute()) * pulses_per_minute()) + pulse();
}
double
TempoSection::pulse_at_minute (const double& m) const
{
- const bool constant = _type == Constant || _c == 0.0 || (initial() && m < minute());
+ const bool constant = type() == Constant || _c == 0.0 || (initial() && m < minute());
if (constant) {
return ((m - minute()) * pulses_per_minute()) + pulse();
}
double
TempoSection::minute_at_pulse (const double& p) const
{
- const bool constant = _type == Constant || _c == 0.0 || (initial() && p < pulse());
+ const bool constant = type() == Constant || _c == 0.0 || (initial() && p < pulse());
if (constant) {
return ((p - pulse()) / pulses_per_minute()) + minute();
}
* for use with musical units whose granularity is coarser than frames (e.g. ticks)
*/
double
-TempoSection::pulse_at_frame (const framepos_t& f) const
+TempoSection::pulse_at_frame (const framepos_t f) const
{
- const bool constant = _type == Constant || _c == 0.0 || (initial() && f < frame());
+ const bool constant = type() == Constant || _c == 0.0 || (initial() && f < frame());
if (constant) {
return (minute_at_frame (f - frame()) * pulses_per_minute()) + pulse();
}
framepos_t
TempoSection::frame_at_pulse (const double& p) const
{
- const bool constant = _type == Constant || _c == 0.0 || (initial() && p < pulse());
+ const bool constant = type() == Constant || _c == 0.0 || (initial() && p < pulse());
if (constant) {
return frame_at_minute (((p - pulse()) / pulses_per_minute()) + minute());
}
double
TempoSection::compute_c_pulse (const double& end_npm, const double& end_pulse) const
{
- if (note_types_per_minute() == end_npm || _type == Constant) {
+ if (note_types_per_minute() == end_npm || type() == Constant) {
return 0.0;
}
double
TempoSection::compute_c_minute (const double& end_npm, const double& end_minute) const
{
- if (note_types_per_minute() == end_npm || _type == Constant) {
+ if (note_types_per_minute() == end_npm || type() == Constant) {
return 0.0;
}
MeterSection::MeterSection (const XMLNode& node, const framecnt_t sample_rate)
: MetricSection (0.0, 0, MusicTime, false, sample_rate), Meter (TempoMap::default_meter())
{
- XMLProperty const * prop;
- LocaleGuard lg;
- BBT_Time bbt;
- double pulse = 0.0;
- double beat = 0.0;
- framepos_t frame = 0;
pair<double, BBT_Time> start;
+ start.first = 0.0;
- if ((prop = node.property ("start")) != 0) {
- if (sscanf (prop->value().c_str(), "%" PRIu32 "|%" PRIu32 "|%" PRIu32,
- &bbt.bars,
- &bbt.beats,
- &bbt.ticks) < 3) {
- error << _("MeterSection XML node has an illegal \"start\" value") << endmsg;
- } else {
+ std::string bbt_str;
+ if (node.get_property ("start", bbt_str)) {
+ if (string_to_bbt_time (bbt_str, start.second)) {
/* legacy session - start used to be in bbt*/
info << _("Legacy session detected - MeterSection XML node will be altered.") << endmsg;
- pulse = -1.0;
- }
- }
-
- if ((prop = node.property ("pulse")) != 0) {
- if (sscanf (prop->value().c_str(), "%lf", &pulse) != 1) {
- error << _("MeterSection XML node has an illegal \"pulse\" value") << endmsg;
+ set_pulse (-1.0);
+ } else {
+ error << _("MeterSection XML node has an illegal \"start\" value") << endmsg;
}
}
- set_pulse (pulse);
- if ((prop = node.property ("beat")) != 0) {
- if (sscanf (prop->value().c_str(), "%lf", &beat) != 1) {
- error << _("MeterSection XML node has an illegal \"beat\" value") << endmsg;
- }
- }
+ MetricSection::set_state (node, Stateful::loading_state_version);
- start.first = beat;
+ node.get_property ("beat", start.first);
- if ((prop = node.property ("bbt")) == 0) {
+ if (node.get_property ("bbt", bbt_str)) {
+ if (!string_to_bbt_time (bbt_str, start.second)) {
+ error << _("MeterSection XML node has an illegal \"bbt\" value") << endmsg;
+ throw failed_constructor();
+ }
+ } else {
warning << _("MeterSection XML node has no \"bbt\" property") << endmsg;
- } else if (sscanf (prop->value().c_str(), "%" PRIu32 "|%" PRIu32 "|%" PRIu32,
- &bbt.bars,
- &bbt.beats,
- &bbt.ticks) < 3) {
- error << _("MeterSection XML node has an illegal \"bbt\" value") << endmsg;
- throw failed_constructor();
}
- start.second = bbt;
set_beat (start);
- if ((prop = node.property ("frame")) != 0) {
- if (sscanf (prop->value().c_str(), "%li", &frame) != 1) {
- error << _("MeterSection XML node has an illegal \"frame\" value") << endmsg;
- throw failed_constructor();
- } else {
- set_minute (minute_at_frame (frame));
- }
- }
-
/* beats-per-bar is old; divisions-per-bar is new */
- if ((prop = node.property ("divisions-per-bar")) == 0) {
- if ((prop = node.property ("beats-per-bar")) == 0) {
+ if (!node.get_property ("divisions-per-bar", _divisions_per_bar)) {
+ if (!node.get_property ("beats-per-bar", _divisions_per_bar)) {
error << _("MeterSection XML node has no \"beats-per-bar\" or \"divisions-per-bar\" property") << endmsg;
throw failed_constructor();
}
}
- if (sscanf (prop->value().c_str(), "%lf", &_divisions_per_bar) != 1 || _divisions_per_bar < 0.0) {
+
+ if (_divisions_per_bar < 0.0) {
error << _("MeterSection XML node has an illegal \"divisions-per-bar\" value") << endmsg;
throw failed_constructor();
}
- if ((prop = node.property ("note-type")) == 0) {
+ if (!node.get_property ("note-type", _note_type)) {
error << _("MeterSection XML node has no \"note-type\" property") << endmsg;
throw failed_constructor();
}
- if (sscanf (prop->value().c_str(), "%lf", &_note_type) != 1 || _note_type < 0.0) {
- error << _("MeterSection XML node has an illegal \"note-type\" value") << endmsg;
- throw failed_constructor();
- }
- if ((prop = node.property ("movable")) == 0) {
- error << _("MeterSection XML node has no \"movable\" property") << endmsg;
+ if (_note_type < 0.0) {
+ error << _("MeterSection XML node has an illegal \"note-type\" value") << endmsg;
throw failed_constructor();
}
-
- set_initial (!string_is_affirmative (prop->value()));
-
- if ((prop = node.property ("lock-style")) == 0) {
- warning << _("MeterSection XML node has no \"lock-style\" property") << endmsg;
- if (!initial()) {
- set_position_lock_style (MusicTime);
- } else {
- set_position_lock_style (AudioTime);
- }
- } else {
- set_position_lock_style (PositionLockStyle (string_2_enum (prop->value(), position_lock_style())));
- }
}
XMLNode&
MeterSection::get_state() const
{
XMLNode *root = new XMLNode (xml_state_node_name);
- char buf[256];
- LocaleGuard lg;
-
- snprintf (buf, sizeof (buf), "%lf", pulse());
- root->add_property ("pulse", buf);
- snprintf (buf, sizeof (buf), "%" PRIu32 "|%" PRIu32 "|%" PRIu32,
- bbt().bars,
- bbt().beats,
- bbt().ticks);
- root->add_property ("bbt", buf);
- snprintf (buf, sizeof (buf), "%lf", beat());
- root->add_property ("beat", buf);
- snprintf (buf, sizeof (buf), "%lf", _note_type);
- root->add_property ("note-type", buf);
- snprintf (buf, sizeof (buf), "%li", frame());
- root->add_property ("frame", buf);
- root->add_property ("lock-style", enum_2_string (position_lock_style()));
- snprintf (buf, sizeof (buf), "%lf", _divisions_per_bar);
- root->add_property ("divisions-per-bar", buf);
- snprintf (buf, sizeof (buf), "%s", !initial()?"yes":"no");
- root->add_property ("movable", buf);
+
+ MetricSection::add_state_to_node (*root);
+
+ std::string bbt_str;
+ bbt_time_to_string (_bbt, bbt_str);
+ root->set_property ("bbt", bbt_str);
+ root->set_property ("beat", beat());
+ root->set_property ("note-type", _note_type);
+ root->set_property ("divisions-per-bar", _divisions_per_bar);
return *root;
}
_frame_rate = fr;
BBT_Time start (1, 1, 0);
- TempoSection *t = new TempoSection (0.0, 0.0, _default_tempo.note_types_per_minute(), _default_tempo.note_type(), TempoSection::Ramp, AudioTime, fr);
+ TempoSection *t = new TempoSection (0.0, 0.0, _default_tempo, AudioTime, fr);
MeterSection *m = new MeterSection (0.0, 0.0, 0.0, start, _default_meter.divisions_per_bar(), _default_meter.note_divisor(), AudioTime, fr);
t->set_initial (true);
}
-TempoMap::TempoMap (TempoMap const & other)
-{
- _frame_rate = other._frame_rate;
- for (Metrics::const_iterator m = other._metrics.begin(); m != other._metrics.end(); ++m) {
- TempoSection* ts = dynamic_cast<TempoSection*> (*m);
- MeterSection* ms = dynamic_cast<MeterSection*> (*m);
-
- if (ts) {
- TempoSection* new_section = new TempoSection (*ts);
- _metrics.push_back (new_section);
- } else {
- MeterSection* new_section = new MeterSection (*ms);
- _metrics.push_back (new_section);
- }
- }
-}
-
TempoMap&
TempoMap::operator= (TempoMap const & other)
{
if (&other != this) {
+ Glib::Threads::RWLock::ReaderLock lr (other.lock);
+ Glib::Threads::RWLock::WriterLock lm (lock);
_frame_rate = other._frame_rate;
Metrics::const_iterator d = _metrics.begin();
_metrics.clear();
for (Metrics::const_iterator m = other._metrics.begin(); m != other._metrics.end(); ++m) {
- TempoSection* ts = dynamic_cast<TempoSection*> (*m);
- MeterSection* ms = dynamic_cast<MeterSection*> (*m);
+ TempoSection const * const ts = dynamic_cast<TempoSection const * const> (*m);
+ MeterSection const * const ms = dynamic_cast<MeterSection const * const> (*m);
if (ts) {
TempoSection* new_section = new TempoSection (*ts);
*(dynamic_cast<Tempo*>(*i)) = *(dynamic_cast<Tempo*>(insert_tempo));
(*i)->set_position_lock_style (AudioTime);
- TempoSection* t;
- if ((t = dynamic_cast<TempoSection*>(*i)) != 0) {
- t->set_type (insert_tempo->type());
- }
need_add = false;
} else {
delete (*i);
}
/* user supplies the exact pulse if pls == MusicTime */
TempoSection*
-TempoMap::add_tempo (const Tempo& tempo, const double& pulse, const framepos_t& frame, ARDOUR::TempoSection::Type type, PositionLockStyle pls)
+TempoMap::add_tempo (const Tempo& tempo, const double& pulse, const framepos_t frame, PositionLockStyle pls)
{
if (tempo.note_types_per_minute() <= 0.0) {
warning << "Cannot add tempo. note types per minute must be greater than zero." << endmsg;
TempoSection* ts = 0;
{
Glib::Threads::RWLock::WriterLock lm (lock);
- ts = add_tempo_locked (tempo, pulse, minute_at_frame (frame), type, pls, true);
- }
+ /* here we default to not clamped for a new tempo section. preference? */
+ ts = add_tempo_locked (tempo, pulse, minute_at_frame (frame), pls, true, false, false);
+ recompute_map (_metrics);
+ }
PropertyChanged (PropertyChange ());
}
void
-TempoMap::replace_tempo (TempoSection& ts, const Tempo& tempo, const double& pulse, const framepos_t& frame, TempoSection::Type type, PositionLockStyle pls)
+TempoMap::replace_tempo (TempoSection& ts, const Tempo& tempo, const double& pulse, const framepos_t frame, PositionLockStyle pls)
{
if (tempo.note_types_per_minute() <= 0.0) {
warning << "Cannot replace tempo. note types per minute must be greater than zero." << endmsg;
return;
}
- const bool locked_to_meter = ts.locked_to_meter();
+ bool const locked_to_meter = ts.locked_to_meter();
+ bool const ts_clamped = ts.clamped();
+ TempoSection* new_ts = 0;
{
Glib::Threads::RWLock::WriterLock lm (lock);
TempoSection& first (first_tempo());
if (!ts.initial()) {
- if (ts.locked_to_meter()) {
- ts.set_type (type);
+ if (locked_to_meter) {
{
/* cannot move a meter-locked tempo section */
*static_cast<Tempo*>(&ts) = tempo;
}
} else {
remove_tempo_locked (ts);
- add_tempo_locked (tempo, pulse, minute_at_frame (frame), type, pls, true, locked_to_meter);
+ new_ts = add_tempo_locked (tempo, pulse, minute_at_frame (frame), pls, true, locked_to_meter, ts_clamped);
+ /* enforce clampedness of next tempo section */
+ TempoSection* next_t = next_tempo_section_locked (_metrics, new_ts);
+ if (next_t && next_t->clamped()) {
+ next_t->set_note_types_per_minute (new_ts->end_note_types_per_minute());
+ }
}
+
} else {
- first.set_type (type);
first.set_pulse (0.0);
first.set_minute (minute_at_frame (frame));
first.set_position_lock_style (AudioTime);
+ first.set_locked_to_meter (true);
+ first.set_clamped (ts_clamped);
{
/* cannot move the first tempo section */
*static_cast<Tempo*>(&first) = tempo;
- recompute_map (_metrics);
}
}
+ recompute_map (_metrics);
}
PropertyChanged (PropertyChange ());
TempoSection*
TempoMap::add_tempo_locked (const Tempo& tempo, double pulse, double minute
- , TempoSection::Type type, PositionLockStyle pls, bool recompute, bool locked_to_meter)
+ , PositionLockStyle pls, bool recompute, bool locked_to_meter, bool clamped)
{
- TempoSection* t = new TempoSection (pulse, minute, tempo.note_types_per_minute(), tempo.note_type(), type, pls, _frame_rate);
+ TempoSection* t = new TempoSection (pulse, minute, tempo, pls, _frame_rate);
t->set_locked_to_meter (locked_to_meter);
- bool solved = false;
+ t->set_clamped (clamped);
do_insert (t);
+ TempoSection* prev_tempo = 0;
+ for (Metrics::iterator i = _metrics.begin(); i != _metrics.end(); ++i) {
+ TempoSection* const this_t = dynamic_cast<TempoSection*>(*i);
+ if (this_t) {
+ if (this_t == t) {
+ if (prev_tempo && prev_tempo->type() == TempoSection::Ramp) {
+ prev_tempo->set_end_note_types_per_minute (t->note_types_per_minute());
+ }
+ break;
+ }
+ prev_tempo = this_t;
+ }
+ }
+
if (recompute) {
if (pls == AudioTime) {
- solved = solve_map_minute (_metrics, t, t->minute());
+ solve_map_minute (_metrics, t, t->minute());
} else {
- solved = solve_map_pulse (_metrics, t, t->pulse());
+ solve_map_pulse (_metrics, t, t->pulse());
}
recompute_meters (_metrics);
}
- if (!solved && recompute) {
- recompute_map (_metrics);
- }
-
return t;
}
MeterSection*
-TempoMap::add_meter (const Meter& meter, const double& beat, const Timecode::BBT_Time& where, framepos_t frame, PositionLockStyle pls)
+TempoMap::add_meter (const Meter& meter, const Timecode::BBT_Time& where, framepos_t frame, PositionLockStyle pls)
{
MeterSection* m = 0;
{
Glib::Threads::RWLock::WriterLock lm (lock);
- m = add_meter_locked (meter, beat, where, frame, pls, true);
+ m = add_meter_locked (meter, where, frame, pls, true);
}
{
{
Glib::Threads::RWLock::WriterLock lm (lock);
- const double beat = beat_at_bbt_locked (_metrics, where);
if (!ms.initial()) {
remove_meter_locked (ms);
- add_meter_locked (meter, beat, where, frame, pls, true);
+ add_meter_locked (meter, where, frame, pls, true);
} else {
MeterSection& first (first_meter());
TempoSection& first_t (first_tempo());
pair<double, BBT_Time> beat = make_pair (0.0, BBT_Time (1, 1, 0));
first.set_beat (beat);
first_t.set_minute (first.minute());
+ first_t.set_locked_to_meter (true);
first_t.set_pulse (0.0);
first_t.set_position_lock_style (AudioTime);
recompute_map (_metrics);
}
MeterSection*
-TempoMap::add_meter_locked (const Meter& meter, double beat, const BBT_Time& where, framepos_t frame, PositionLockStyle pls, bool recompute)
+TempoMap::add_meter_locked (const Meter& meter, const BBT_Time& bbt, framepos_t frame, PositionLockStyle pls, bool recompute)
{
- const MeterSection& prev_m = meter_section_at_minute_locked (_metrics, minute_at_beat_locked (_metrics, beat) - minute_at_frame (1));
- const double pulse = ((where.bars - prev_m.bbt().bars) * (prev_m.divisions_per_bar() / prev_m.note_divisor())) + prev_m.pulse();
- const double time_minutes = minute_at_pulse_locked (_metrics, pulse);
- TempoSection* mlt = 0;
+ double const minute_at_bbt = minute_at_bbt_locked (_metrics, bbt);
+ const MeterSection& prev_m = meter_section_at_minute_locked (_metrics, minute_at_bbt - minute_at_frame (1));
+ double const pulse = ((bbt.bars - prev_m.bbt().bars) * (prev_m.divisions_per_bar() / prev_m.note_divisor())) + prev_m.pulse();
+ /* the natural time of the BBT position */
+ double const time_minutes = minute_at_pulse_locked (_metrics, pulse);
if (pls == AudioTime) {
- /* add meter-locked tempo */
- mlt = add_tempo_locked (tempo_at_minute_locked (_metrics, time_minutes), pulse, minute_at_frame (frame), TempoSection::Ramp, AudioTime, true, true);
+ /* add meter-locked tempo at the natural time in the current map (frame may differ). */
+ Tempo const tempo_at_time = tempo_at_minute_locked (_metrics, time_minutes);
+ TempoSection* mlt = add_tempo_locked (tempo_at_time, pulse, time_minutes, AudioTime, true, true, false);
if (!mlt) {
return 0;
}
-
}
-
- MeterSection* new_meter = new MeterSection (pulse, minute_at_frame (frame), beat, where, meter.divisions_per_bar(), meter.note_divisor(), pls, _frame_rate);
+ /* still using natural time for the position, ignoring lock style. */
+ MeterSection* new_meter = new MeterSection (pulse, time_minutes, beat_at_bbt_locked (_metrics, bbt), bbt, meter.divisions_per_bar(), meter.note_divisor(), pls, _frame_rate);
bool solved = false;
if (recompute) {
if (pls == AudioTime) {
+ /* now set the audio locked meter's position to frame */
solved = solve_map_minute (_metrics, new_meter, minute_at_frame (frame));
/* we failed, most likely due to some impossible frame requirement wrt audio-locked tempi.
fudge frame so that the meter ends up at its BBT position instead.
solved = solve_map_minute (_metrics, new_meter, minute_at_frame (prev_m.frame() + 1));
}
} else {
- solved = solve_map_bbt (_metrics, new_meter, where);
+ solved = solve_map_bbt (_metrics, new_meter, bbt);
/* required due to resetting the pulse of meter-locked tempi above.
Arguably solve_map_bbt() should use solve_map_pulse (_metrics, TempoSection) instead,
but afaict this cannot cause the map to be left unsolved (these tempi are all audio locked).
}
void
-TempoMap::change_initial_tempo (double note_types_per_minute, double note_type)
+TempoMap::change_initial_tempo (double note_types_per_minute, double note_type, double end_note_types_per_minute)
{
- Tempo newtempo (note_types_per_minute, note_type);
+ Tempo newtempo (note_types_per_minute, note_type, end_note_types_per_minute);
TempoSection* t;
for (Metrics::iterator i = _metrics.begin(); i != _metrics.end(); ++i) {
}
void
-TempoMap::change_existing_tempo_at (framepos_t where, double note_types_per_minute, double note_type)
+TempoMap::change_existing_tempo_at (framepos_t where, double note_types_per_minute, double note_type, double end_ntpm)
{
- Tempo newtempo (note_types_per_minute, note_type);
+ Tempo newtempo (note_types_per_minute, note_type, end_ntpm);
TempoSection* prev;
TempoSection* first;
continue;
}
}
+
if (prev_t) {
if (t->position_lock_style() == AudioTime) {
- prev_t->set_c (prev_t->compute_c_minute (t->note_types_per_minute(), t->minute()));
+ prev_t->set_c (prev_t->compute_c_minute (prev_t->end_note_types_per_minute(), t->minute()));
if (!t->locked_to_meter()) {
- t->set_pulse (prev_t->pulse_at_ntpm (t->note_types_per_minute(), t->minute()));
+ t->set_pulse (prev_t->pulse_at_ntpm (prev_t->end_note_types_per_minute(), t->minute()));
}
} else {
- prev_t->set_c (prev_t->compute_c_pulse (t->note_types_per_minute(), t->pulse()));
- t->set_minute (prev_t->minute_at_ntpm (t->note_types_per_minute(), t->pulse()));
+ prev_t->set_c (prev_t->compute_c_pulse (prev_t->end_note_types_per_minute(), t->pulse()));
+ t->set_minute (prev_t->minute_at_ntpm (prev_t->end_note_types_per_minute(), t->pulse()));
}
}
Glib::Threads::RWLock::ReaderLock lm (lock);
TempoMetric m (first_meter(), first_tempo());
+ if (last) {
+ *last = ++_metrics.begin();
+ }
+
/* at this point, we are *guaranteed* to have m.meter and m.tempo pointing
at something, because we insert the default tempo and meter during
TempoMap construction.
* This function uses both tempo and meter.
*/
double
-TempoMap::beat_at_frame (const framecnt_t& frame) const
+TempoMap::beat_at_frame (const framecnt_t frame) const
{
Glib::Threads::RWLock::ReaderLock lm (lock);
*
*/
Tempo
-TempoMap::tempo_at_frame (const framepos_t& frame) const
+TempoMap::tempo_at_frame (const framepos_t frame) const
{
Glib::Threads::RWLock::ReaderLock lm (lock);
}
}
- return Tempo (prev_t->note_types_per_minute(), prev_t->note_type());
+ return Tempo (prev_t->note_types_per_minute(), prev_t->note_type(), prev_t->end_note_types_per_minute());
}
/** returns the frame at which the supplied tempo occurs, or
continue;
}
- const double t_bpm = t->note_types_per_minute();
- if (t_bpm == tempo_bpm) {
+
+ if (t->note_types_per_minute() == tempo_bpm) {
return t->minute();
}
if (prev_t) {
const double prev_t_bpm = prev_t->note_types_per_minute();
+ const double prev_t_end_bpm = prev_t->end_note_types_per_minute();
+ if ((prev_t_bpm > tempo_bpm && prev_t_end_bpm < tempo_bpm)
+ || (prev_t_bpm < tempo_bpm && prev_t_end_bpm > tempo_bpm)
+ || (prev_t_end_bpm == tempo_bpm)) {
- if ((t_bpm > tempo_bpm && prev_t_bpm < tempo_bpm) || (t_bpm < tempo_bpm && prev_t_bpm > tempo_bpm)) {
- return prev_t->minute_at_ntpm (prev_t->note_types_per_minute(), prev_t->pulse());
+ return prev_t->minute_at_ntpm (tempo_bpm, t->pulse());
}
}
prev_t = t;
}
}
- return Tempo (prev_t->note_types_per_minute(), prev_t->note_type());
+ return Tempo (prev_t->note_types_per_minute(), prev_t->note_type(), prev_t->end_note_types_per_minute());
}
double
{
Glib::Threads::RWLock::ReaderLock lm (lock);
- return pulse_at_tempo_locked (_metrics, tempo) * 4.0;;
+ return pulse_at_tempo_locked (_metrics, tempo) * 4.0;
}
/** Returns the whole-note pulse corresponding to the supplied BBT (meter-based) beat.
bbt.bars = 1;
bbt.beats = 1;
bbt.ticks = 0;
+#ifndef NDEBUG
warning << string_compose (_("tempo map was asked for BBT time at frame %1\n"), frame) << endmsg;
+#endif
return bbt;
}
TempoMap::frame_at_bbt (const BBT_Time& bbt)
{
if (bbt.bars < 1) {
+#ifndef NDEBUG
warning << string_compose (_("tempo map asked for frame time at bar < 1 (%1)\n"), bbt) << endmsg;
+#endif
return 0;
}
}
/* precision check ensures tempo and frames align.*/
- if (t->frame() != frame_at_minute (prev_t->minute_at_ntpm (t->note_types_per_minute(), t->pulse()))) {
+ if (t->frame() != frame_at_minute (prev_t->minute_at_ntpm (prev_t->end_note_types_per_minute(), t->pulse()))) {
if (!t->locked_to_meter()) {
return false;
}
}
bool
-TempoMap::set_active_tempi (const Metrics& metrics, const framepos_t& frame)
+TempoMap::set_active_tempi (const Metrics& metrics, const framepos_t frame)
{
for (Metrics::const_iterator i = metrics.begin(); i != metrics.end(); ++i) {
TempoSection* t;
if (prev_t && !section_prev && ((sml && tlm && t->pulse() > section->pulse()) || (!tlm && t->minute() > minute))) {
section_prev = prev_t;
- section_prev->set_c (section_prev->compute_c_minute (section->note_types_per_minute(), minute));
+ section_prev->set_c (section_prev->compute_c_minute (section_prev->end_note_types_per_minute(), minute));
if (!section->locked_to_meter()) {
- section->set_pulse (section_prev->pulse_at_ntpm (section->note_types_per_minute(), minute));
+ section->set_pulse (section_prev->pulse_at_ntpm (section_prev->end_note_types_per_minute(), minute));
}
prev_t = section;
}
if (t->position_lock_style() == MusicTime) {
- prev_t->set_c (prev_t->compute_c_pulse (t->note_types_per_minute(), t->pulse()));
- t->set_minute (prev_t->minute_at_ntpm (t->note_types_per_minute(), t->pulse()));
+ prev_t->set_c (prev_t->compute_c_pulse (prev_t->end_note_types_per_minute(), t->pulse()));
+ t->set_minute (prev_t->minute_at_ntpm (prev_t->end_note_types_per_minute(), t->pulse()));
} else {
- prev_t->set_c (prev_t->compute_c_minute (t->note_types_per_minute(), t->minute()));
+ prev_t->set_c (prev_t->compute_c_minute (prev_t->end_note_types_per_minute(), t->minute()));
if (!t->locked_to_meter()) {
- t->set_pulse (prev_t->pulse_at_ntpm (t->note_types_per_minute(), t->minute()));
+ t->set_pulse (prev_t->pulse_at_ntpm (prev_t->end_note_types_per_minute(), t->minute()));
}
}
}
}
}
-#if (0)
- recompute_tempi (imaginary);
-
- if (check_solved (imaginary)) {
- return true;
- } else {
- dunp (imaginary, std::cout);
- }
-#endif
-
MetricSectionFrameSorter fcmp;
imaginary.sort (fcmp);
}
if (t->position_lock_style() == MusicTime) {
- prev_t->set_c (prev_t->compute_c_pulse (t->note_types_per_minute(), t->pulse()));
- t->set_minute (prev_t->minute_at_ntpm (t->note_types_per_minute(), t->pulse()));
+ prev_t->set_c (prev_t->compute_c_pulse (prev_t->end_note_types_per_minute(), t->pulse()));
+ t->set_minute (prev_t->minute_at_ntpm (prev_t->end_note_types_per_minute(), t->pulse()));
} else {
- prev_t->set_c (prev_t->compute_c_minute (t->note_types_per_minute(), t->minute()));
+ prev_t->set_c (prev_t->compute_c_minute (prev_t->end_note_types_per_minute(), t->minute()));
if (!t->locked_to_meter()) {
- t->set_pulse (prev_t->pulse_at_ntpm (t->note_types_per_minute(), t->minute()));
+ t->set_pulse (prev_t->pulse_at_ntpm (prev_t->end_note_types_per_minute(), t->minute()));
}
}
}
}
if (section_prev) {
- section_prev->set_c (section_prev->compute_c_pulse (section->note_types_per_minute(), pulse));
- section->set_minute (section_prev->minute_at_ntpm (section->note_types_per_minute(), pulse));
- }
-
-#if (0)
- recompute_tempi (imaginary);
-
- if (check_solved (imaginary)) {
- return true;
- } else {
- dunp (imaginary, std::cout);
+ section_prev->set_c (section_prev->compute_c_pulse (section_prev->end_note_types_per_minute(), pulse));
+ section->set_minute (section_prev->minute_at_ntpm (section_prev->end_note_types_per_minute(), pulse));
}
-#endif
MetricSectionSorter cmp;
imaginary.sort (cmp);
* to section's equivalent in copy.
*/
TempoSection*
-TempoMap::copy_metrics_and_point (const Metrics& metrics, Metrics& copy, TempoSection* section)
+TempoMap::copy_metrics_and_point (const Metrics& metrics, Metrics& copy, TempoSection* section) const
{
TempoSection* ret = 0;
for (Metrics::const_iterator i = metrics.begin(); i != metrics.end(); ++i) {
- TempoSection* t;
- MeterSection* m;
if ((*i)->is_tempo()) {
- t = static_cast<TempoSection*> (*i);
+ TempoSection const * const t = dynamic_cast<TempoSection const * const> (*i);
if (t == section) {
ret = new TempoSection (*t);
copy.push_back (ret);
TempoSection* cp = new TempoSection (*t);
copy.push_back (cp);
- }
- if (!(*i)->is_tempo()) {
- m = static_cast<MeterSection *> (*i);
+ } else {
+ MeterSection const * const m = dynamic_cast<MeterSection const * const> (*i);
MeterSection* cp = new MeterSection (*m);
copy.push_back (cp);
}
}
MeterSection*
-TempoMap::copy_metrics_and_point (const Metrics& metrics, Metrics& copy, MeterSection* section)
+TempoMap::copy_metrics_and_point (const Metrics& metrics, Metrics& copy, MeterSection* section) const
{
MeterSection* ret = 0;
for (Metrics::const_iterator i = metrics.begin(); i != metrics.end(); ++i) {
- TempoSection* t;
- MeterSection* m;
if ((*i)->is_tempo()) {
- t = static_cast<TempoSection*> (*i);
+ TempoSection const * const t = dynamic_cast<TempoSection const * const> (*i);
TempoSection* cp = new TempoSection (*t);
copy.push_back (cp);
- }
-
- if (!(*i)->is_tempo()) {
- m = static_cast<MeterSection *> (*i);
+ } else {
+ MeterSection const * const m = dynamic_cast<MeterSection const * const> (*i);
if (m == section) {
ret = new MeterSection (*m);
copy.push_back (ret);
* if sub_num is zero, the musical position will be taken from the supplied frame.
*/
void
-TempoMap::gui_set_tempo_position (TempoSection* ts, const framepos_t& frame, const int& sub_num)
+TempoMap::gui_set_tempo_position (TempoSection* ts, const framepos_t frame, const int& sub_num)
{
Metrics future_map;
Glib::Threads::RWLock::WriterLock lm (lock);
TempoSection* tempo_copy = copy_metrics_and_point (_metrics, future_map, ts);
- if (solve_map_minute (future_map, tempo_copy, minute_at_frame (frame))) {
- if (sub_num != 0) {
- /* We're moving the object that defines the grid while snapping to it...
- * Placing the ts at the beat corresponding to the requested frame may shift the
- * grid in such a way that the mouse is left hovering over a completerly different division,
- * causing jittering when the mouse next moves (esp. large tempo deltas).
- *
- * This alters the snap behaviour slightly in that we snap to beat divisions
- * in the future map rather than the existing one.
- */
- const double qn = exact_qn_at_frame_locked (future_map, frame, sub_num);
- const framepos_t snapped_frame = frame_at_minute (minute_at_pulse_locked (future_map, qn / 4.0));
- if (solve_map_minute (future_map, tempo_copy, minute_at_frame (snapped_frame))) {
- solve_map_minute (_metrics, ts, minute_at_frame (snapped_frame));
- ts->set_pulse (qn / 4.0);
- recompute_meters (_metrics);
- }
- } else {
+ if (sub_num != 0) {
+ /* We're moving the object that defines the grid while snapping to it...
+ * Placing the ts at the beat corresponding to the requested frame may shift the
+ * grid in such a way that the mouse is left hovering over a completerly different division,
+ * causing jittering when the mouse next moves (esp. large tempo deltas).
+ * We fudge around this by doing this in the musical domain and then swapping back for the recompute.
+ */
+ const double qn = exact_qn_at_frame_locked (_metrics, frame, sub_num);
+ tempo_copy->set_position_lock_style (MusicTime);
+ if (solve_map_pulse (future_map, tempo_copy, qn / 4.0)) {
+ ts->set_position_lock_style (MusicTime);
+ solve_map_pulse (_metrics, ts, qn / 4.0);
+ ts->set_position_lock_style (AudioTime);
+ recompute_meters (_metrics);
+ }
+ } else {
+ if (solve_map_minute (future_map, tempo_copy, minute_at_frame (frame))) {
solve_map_minute (_metrics, ts, minute_at_frame (frame));
recompute_meters (_metrics);
}
++d;
}
- MetricPositionChanged (); // Emit Signal
+ MetricPositionChanged (PropertyChange ()); // Emit Signal
}
/** moves a MeterSection to a specified position.
* leaving the meter position unchanged.
*/
void
-TempoMap::gui_set_meter_position (MeterSection* ms, const framepos_t& frame)
+TempoMap::gui_set_meter_position (MeterSection* ms, const framepos_t frame)
{
Metrics future_map;
++d;
}
- MetricPositionChanged (); // Emit Signal
+ MetricPositionChanged (PropertyChange ()); // Emit Signal
}
bool
{
Glib::Threads::RWLock::WriterLock lm (lock);
TempoSection* tempo_copy = copy_metrics_and_point (_metrics, future_map, ts);
- tempo_copy->set_note_types_per_minute (bpm.note_types_per_minute());
+
+ if (tempo_copy->type() == TempoSection::Constant) {
+ tempo_copy->set_end_note_types_per_minute (bpm.note_types_per_minute());
+ tempo_copy->set_note_types_per_minute (bpm.note_types_per_minute());
+ } else {
+ tempo_copy->set_note_types_per_minute (bpm.note_types_per_minute());
+ tempo_copy->set_end_note_types_per_minute (bpm.end_note_types_per_minute());
+ }
+
+ if (ts->clamped()) {
+ TempoSection* prev = 0;
+ if ((prev = previous_tempo_section_locked (future_map, tempo_copy)) != 0) {
+ prev->set_end_note_types_per_minute (tempo_copy->note_types_per_minute());
+ }
+ }
+
recompute_tempi (future_map);
if (check_solved (future_map)) {
- ts->set_note_types_per_minute (bpm.note_types_per_minute());
+ if (ts->type() == TempoSection::Constant) {
+ ts->set_end_note_types_per_minute (bpm.note_types_per_minute());
+ ts->set_note_types_per_minute (bpm.note_types_per_minute());
+ } else {
+ ts->set_end_note_types_per_minute (bpm.end_note_types_per_minute());
+ ts->set_note_types_per_minute (bpm.note_types_per_minute());
+ }
+
+ if (ts->clamped()) {
+ TempoSection* prev = 0;
+ if ((prev = previous_tempo_section_locked (_metrics, ts)) != 0) {
+ prev->set_end_note_types_per_minute (ts->note_types_per_minute());
+ }
+ }
+
recompute_map (_metrics);
can_solve = true;
}
++d;
}
if (can_solve) {
- MetricPositionChanged (); // Emit Signal
+ MetricPositionChanged (PropertyChange ()); // Emit Signal
}
+
return can_solve;
}
void
-TempoMap::gui_stretch_tempo (TempoSection* ts, const framepos_t& frame, const framepos_t& end_frame)
+TempoMap::gui_stretch_tempo (TempoSection* ts, const framepos_t frame, const framepos_t end_frame, const double start_qnote, const double end_qnote)
{
/*
Ts (future prev_t) Tnext
return;
}
- TempoSection* prev_t = copy_metrics_and_point (_metrics, future_map, ts);
- TempoSection* prev_to_prev_t = 0;
- const frameoffset_t fr_off = end_frame - frame;
-
- assert (prev_t);
+ TempoSection* ts_copy = copy_metrics_and_point (_metrics, future_map, ts);
- if (prev_t->pulse() > 0.0) {
- prev_to_prev_t = const_cast<TempoSection*>(&tempo_section_at_minute_locked (future_map, minute_at_frame (prev_t->frame() - 1)));
+ if (!ts_copy) {
+ return;
}
- TempoSection* next_t = 0;
- for (Metrics::iterator i = future_map.begin(); i != future_map.end(); ++i) {
- TempoSection* t = 0;
- if ((*i)->is_tempo()) {
- t = static_cast<TempoSection*> (*i);
- if (t->frame() > ts->frame()) {
- next_t = t;
- break;
- }
- }
- }
/* minimum allowed measurement distance in frames */
- const framepos_t min_dframe = 2;
-
- /* the change in frames is the result of changing the slope of at most 2 previous tempo sections.
- constant to constant is straightforward, as the tempo prev to prev_t has constant slope.
- */
- double contribution = 0.0;
-
- if (next_t && prev_to_prev_t && prev_to_prev_t->type() == TempoSection::Ramp) {
- contribution = (prev_t->frame() - prev_to_prev_t->frame()) / (double) (next_t->frame() - prev_to_prev_t->frame());
- }
-
- const frameoffset_t prev_t_frame_contribution = fr_off - (contribution * (double) fr_off);
-
- const double start_pulse = prev_t->pulse_at_minute (minute_at_frame (frame));
- const double end_pulse = prev_t->pulse_at_minute (minute_at_frame (end_frame));
+ framepos_t const min_dframe = 2;
double new_bpm;
+ if (ts_copy->clamped()) {
+ TempoSection* next_t = next_tempo_section_locked (future_map, ts_copy);
+ TempoSection* prev_to_ts_copy = previous_tempo_section_locked (future_map, ts_copy);
+ /* the change in frames is the result of changing the slope of at most 2 previous tempo sections.
+ constant to constant is straightforward, as the tempo prev to ts_copy has constant slope.
+ */ double contribution = 0.0;
+ if (next_t && prev_to_ts_copy && prev_to_ts_copy->type() == TempoSection::Ramp) {
+ contribution = (ts_copy->pulse() - prev_to_ts_copy->pulse()) / (double) (next_t->pulse() - prev_to_ts_copy->pulse());
+ }
+ framepos_t const fr_off = end_frame - frame;
+ frameoffset_t const ts_copy_frame_contribution = fr_off - (contribution * (double) fr_off);
- if (prev_t->type() == TempoSection::Constant || prev_t->c() == 0.0) {
-
- if (prev_t->position_lock_style() == MusicTime) {
- if (prev_to_prev_t && prev_to_prev_t->type() == TempoSection::Ramp) {
- if (frame > prev_to_prev_t->frame() + min_dframe && (frame + prev_t_frame_contribution) > prev_to_prev_t->frame() + min_dframe) {
-
- new_bpm = prev_t->note_types_per_minute() * ((frame - prev_to_prev_t->frame())
- / (double) ((frame + prev_t_frame_contribution) - prev_to_prev_t->frame()));
- } else {
- new_bpm = prev_t->note_types_per_minute();
- }
- } else {
- /* prev to prev is irrelevant */
-
- if (start_pulse > prev_t->pulse() && end_pulse > prev_t->pulse()) {
- new_bpm = prev_t->note_types_per_minute() * ((start_pulse - prev_t->pulse()) / (end_pulse - prev_t->pulse()));
- } else {
- new_bpm = prev_t->note_types_per_minute();
- }
- }
+ if (frame > prev_to_ts_copy->frame() + min_dframe && (frame + ts_copy_frame_contribution) > prev_to_ts_copy->frame() + min_dframe) {
+ new_bpm = ts_copy->note_types_per_minute() * ((start_qnote - (prev_to_ts_copy->pulse() * 4.0))
+ / (end_qnote - (prev_to_ts_copy->pulse() * 4.0)));
} else {
- /* AudioTime */
- if (prev_to_prev_t && prev_to_prev_t->type() == TempoSection::Ramp) {
- if (frame > prev_to_prev_t->frame() + min_dframe && end_frame > prev_to_prev_t->frame() + min_dframe) {
-
- new_bpm = prev_t->note_types_per_minute() * ((frame - prev_to_prev_t->frame())
- / (double) ((end_frame) - prev_to_prev_t->frame()));
- } else {
- new_bpm = prev_t->note_types_per_minute();
- }
- } else {
- /* prev_to_prev_t is irrelevant */
-
- if (frame > prev_t->frame() + min_dframe && end_frame > prev_t->frame() + min_dframe) {
- new_bpm = prev_t->note_types_per_minute() * ((frame - prev_t->frame()) / (double) (end_frame - prev_t->frame()));
- } else {
- new_bpm = prev_t->note_types_per_minute();
- }
- }
+ new_bpm = ts_copy->note_types_per_minute();
}
} else {
+ if (frame > ts_copy->frame() + min_dframe && end_frame > ts_copy->frame() + min_dframe) {
- double frame_ratio = 1.0;
- double pulse_ratio = 1.0;
- const double pulse_pos = frame;
-
- if (prev_to_prev_t) {
- if (pulse_pos > prev_to_prev_t->frame() + min_dframe && (pulse_pos - fr_off) > prev_to_prev_t->frame() + min_dframe) {
- frame_ratio = (((pulse_pos - fr_off) - prev_to_prev_t->frame()) / (double) ((pulse_pos) - prev_to_prev_t->frame()));
- }
- if (end_pulse > prev_to_prev_t->pulse() && start_pulse > prev_to_prev_t->pulse()) {
- pulse_ratio = ((start_pulse - prev_to_prev_t->pulse()) / (end_pulse - prev_to_prev_t->pulse()));
- }
+ new_bpm = ts_copy->note_types_per_minute() * ((frame - ts_copy->frame())
+ / (double) (end_frame - ts_copy->frame()));
} else {
- if (pulse_pos > prev_t->frame() + min_dframe && (pulse_pos - fr_off) > prev_t->frame() + min_dframe) {
- frame_ratio = (((pulse_pos - fr_off) - prev_t->frame()) / (double) ((pulse_pos) - prev_t->frame()));
- }
- pulse_ratio = (start_pulse / end_pulse);
+ new_bpm = ts_copy->note_types_per_minute();
}
- new_bpm = prev_t->note_types_per_minute() * (pulse_ratio * frame_ratio);
- }
+ new_bpm = min (new_bpm, (double) 1000.0);
+ }
/* don't clamp and proceed here.
testing has revealed that this can go negative,
which is an entirely different thing to just being too low.
*/
+
if (new_bpm < 0.5) {
- return;
+ goto out;
}
- new_bpm = min (new_bpm, (double) 1000.0);
- prev_t->set_note_types_per_minute (new_bpm);
+
+ ts_copy->set_note_types_per_minute (new_bpm);
+
+ if (ts_copy->clamped()) {
+ TempoSection* prev = 0;
+ if ((prev = previous_tempo_section_locked (future_map, ts_copy)) != 0) {
+ prev->set_end_note_types_per_minute (ts_copy->note_types_per_minute());
+ }
+ }
+
recompute_tempi (future_map);
recompute_meters (future_map);
if (check_solved (future_map)) {
ts->set_note_types_per_minute (new_bpm);
- recompute_tempi (_metrics);
- recompute_meters (_metrics);
- }
+
+ if (ts->clamped()) {
+ TempoSection* prev = 0;
+ if ((prev = previous_tempo_section_locked (_metrics, ts)) != 0) {
+ prev->set_end_note_types_per_minute (ts->note_types_per_minute());
+ }
+ }
+
+ recompute_tempi (_metrics);
+ recompute_meters (_metrics);
+ }
+ }
+
+
+out:
+ Metrics::const_iterator d = future_map.begin();
+ while (d != future_map.end()) {
+ delete (*d);
+ ++d;
+ }
+ MetricPositionChanged (PropertyChange ()); // Emit Signal
+
+
+}
+void
+TempoMap::gui_stretch_tempo_end (TempoSection* ts, const framepos_t frame, const framepos_t end_frame)
+{
+ /*
+ Ts (future prev_t) Tnext
+ | |
+ | [drag^] |
+ |----------|----------
+ e_f qn_beats(frame)
+ */
+
+ Metrics future_map;
+
+ {
+ Glib::Threads::RWLock::WriterLock lm (lock);
+
+ if (!ts) {
+ return;
+ }
+
+ TempoSection* prev_t = copy_metrics_and_point (_metrics, future_map, ts);
+
+ if (!prev_t) {
+ return;
+ }
+
+ /* minimum allowed measurement distance in frames */
+ framepos_t const min_dframe = 2;
+ double new_bpm;
+
+ if (frame > prev_t->frame() + min_dframe && end_frame > prev_t->frame() + min_dframe) {
+ new_bpm = prev_t->end_note_types_per_minute() * ((prev_t->frame() - frame)
+ / (double) (prev_t->frame() - end_frame));
+ } else {
+ new_bpm = prev_t->end_note_types_per_minute();
+ }
+
+ new_bpm = min (new_bpm, (double) 1000.0);
+
+ if (new_bpm < 0.5) {
+ goto out;
+ }
+
+ prev_t->set_end_note_types_per_minute (new_bpm);
+
+ TempoSection* next = 0;
+ if ((next = next_tempo_section_locked (future_map, prev_t)) != 0) {
+ if (next->clamped()) {
+ next->set_note_types_per_minute (prev_t->end_note_types_per_minute());
+ }
+ }
+
+ recompute_tempi (future_map);
+ recompute_meters (future_map);
+
+ if (check_solved (future_map)) {
+ ts->set_end_note_types_per_minute (new_bpm);
+
+ TempoSection* true_next = 0;
+ if ((true_next = next_tempo_section_locked (_metrics, ts)) != 0) {
+ if (true_next->clamped()) {
+ true_next->set_note_types_per_minute (ts->end_note_types_per_minute());
+ }
+ }
+
+ recompute_tempi (_metrics);
+ recompute_meters (_metrics);
+ }
}
+
+out:
Metrics::const_iterator d = future_map.begin();
while (d != future_map.end()) {
delete (*d);
++d;
}
- MetricPositionChanged (); // Emit Signal
+ MetricPositionChanged (PropertyChange ()); // Emit Signal
+}
+
+bool
+TempoMap::gui_twist_tempi (TempoSection* ts, const Tempo& bpm, const framepos_t frame, const framepos_t end_frame)
+{
+ TempoSection* next_t = 0;
+ TempoSection* next_to_next_t = 0;
+ Metrics future_map;
+ bool can_solve = false;
+
+ /* minimum allowed measurement distance in frames */
+ framepos_t const min_dframe = 2;
+
+ {
+ Glib::Threads::RWLock::WriterLock lm (lock);
+ if (!ts) {
+ return false;
+ }
+
+ TempoSection* tempo_copy = copy_metrics_and_point (_metrics, future_map, ts);
+ TempoSection* prev_to_prev_t = 0;
+ const frameoffset_t fr_off = end_frame - frame;
+
+ if (!tempo_copy) {
+ return false;
+ }
+
+ if (tempo_copy->pulse() > 0.0) {
+ prev_to_prev_t = const_cast<TempoSection*>(&tempo_section_at_minute_locked (future_map, minute_at_frame (tempo_copy->frame() - 1)));
+ }
+
+ for (Metrics::const_iterator i = future_map.begin(); i != future_map.end(); ++i) {
+ if ((*i)->is_tempo() && (*i)->minute() > tempo_copy->minute()) {
+ next_t = static_cast<TempoSection*> (*i);
+ break;
+ }
+ }
+
+ if (!next_t) {
+ return false;
+ }
+
+ for (Metrics::const_iterator i = future_map.begin(); i != future_map.end(); ++i) {
+ if ((*i)->is_tempo() && (*i)->minute() > next_t->minute()) {
+ next_to_next_t = static_cast<TempoSection*> (*i);
+ break;
+ }
+ }
+
+ if (!next_to_next_t) {
+ return false;
+ }
+
+ double prev_contribution = 0.0;
+
+ if (next_t && prev_to_prev_t && prev_to_prev_t->type() == TempoSection::Ramp) {
+ prev_contribution = (tempo_copy->frame() - prev_to_prev_t->frame()) / (double) (next_t->frame() - prev_to_prev_t->frame());
+ }
+
+ const frameoffset_t tempo_copy_frame_contribution = fr_off - (prev_contribution * (double) fr_off);
+
+
+ framepos_t old_tc_minute = tempo_copy->minute();
+ double old_next_minute = next_t->minute();
+ double old_next_to_next_minute = next_to_next_t->minute();
+
+ double new_bpm;
+ double new_next_bpm;
+ double new_copy_end_bpm;
+
+ if (frame > tempo_copy->frame() + min_dframe && (frame + tempo_copy_frame_contribution) > tempo_copy->frame() + min_dframe) {
+ new_bpm = tempo_copy->note_types_per_minute() * ((frame - tempo_copy->frame())
+ / (double) (end_frame - tempo_copy->frame()));
+ } else {
+ new_bpm = tempo_copy->note_types_per_minute();
+ }
+
+ /* don't clamp and proceed here.
+ testing has revealed that this can go negative,
+ which is an entirely different thing to just being too low.
+ */
+ if (new_bpm < 0.5) {
+ return false;
+ }
+
+ new_bpm = min (new_bpm, (double) 1000.0);
+
+ tempo_copy->set_note_types_per_minute (new_bpm);
+ if (tempo_copy->type() == TempoSection::Constant) {
+ tempo_copy->set_end_note_types_per_minute (new_bpm);
+ }
+
+ recompute_tempi (future_map);
+
+ if (check_solved (future_map)) {
+
+ if (!next_t) {
+ return false;
+ }
+
+ ts->set_note_types_per_minute (new_bpm);
+ if (ts->type() == TempoSection::Constant) {
+ ts->set_end_note_types_per_minute (new_bpm);
+ }
+
+ recompute_map (_metrics);
+
+ can_solve = true;
+ }
+
+ if (next_t->type() == TempoSection::Constant || next_t->c() == 0.0) {
+ if (frame > tempo_copy->frame() + min_dframe && end_frame > tempo_copy->frame() + min_dframe) {
+
+ new_next_bpm = next_t->note_types_per_minute() * ((next_to_next_t->minute() - old_next_minute)
+ / (double) ((old_next_to_next_minute) - old_next_minute));
+
+ } else {
+ new_next_bpm = next_t->note_types_per_minute();
+ }
+
+ next_t->set_note_types_per_minute (new_next_bpm);
+ recompute_tempi (future_map);
+
+ if (check_solved (future_map)) {
+ for (Metrics::const_iterator i = _metrics.begin(); i != _metrics.end(); ++i) {
+ if ((*i)->is_tempo() && (*i)->minute() > ts->minute()) {
+ next_t = static_cast<TempoSection*> (*i);
+ break;
+ }
+ }
+
+ if (!next_t) {
+ return false;
+ }
+ next_t->set_note_types_per_minute (new_next_bpm);
+ recompute_map (_metrics);
+ can_solve = true;
+ }
+ } else {
+ double next_frame_ratio = 1.0;
+ double copy_frame_ratio = 1.0;
+
+ if (next_to_next_t) {
+ next_frame_ratio = (next_to_next_t->minute() - old_next_minute) / (old_next_to_next_minute - old_next_minute);
+
+ copy_frame_ratio = ((old_tc_minute - next_t->minute()) / (double) (old_tc_minute - old_next_minute));
+ }
+
+ new_next_bpm = next_t->note_types_per_minute() * next_frame_ratio;
+ new_copy_end_bpm = tempo_copy->end_note_types_per_minute() * copy_frame_ratio;
+
+ tempo_copy->set_end_note_types_per_minute (new_copy_end_bpm);
+
+ if (next_t->clamped()) {
+ next_t->set_note_types_per_minute (new_copy_end_bpm);
+ } else {
+ next_t->set_note_types_per_minute (new_next_bpm);
+ }
+
+ recompute_tempi (future_map);
+
+ if (check_solved (future_map)) {
+ for (Metrics::const_iterator i = _metrics.begin(); i != _metrics.end(); ++i) {
+ if ((*i)->is_tempo() && (*i)->minute() > ts->minute()) {
+ next_t = static_cast<TempoSection*> (*i);
+ break;
+ }
+ }
+
+ if (!next_t) {
+ return false;
+ }
+
+ if (next_t->clamped()) {
+ next_t->set_note_types_per_minute (new_copy_end_bpm);
+ } else {
+ next_t->set_note_types_per_minute (new_next_bpm);
+ }
+
+ ts->set_end_note_types_per_minute (new_copy_end_bpm);
+ recompute_map (_metrics);
+ can_solve = true;
+ }
+ }
+ }
+
+ Metrics::const_iterator d = future_map.begin();
+ while (d != future_map.end()) {
+ delete (*d);
+ ++d;
+ }
+
+ MetricPositionChanged (PropertyChange ()); // Emit Signal
+
+ return can_solve;
+}
+
+/** Returns the frame position of the musical position zero */
+framepos_t
+TempoMap::music_origin ()
+{
+ Glib::Threads::RWLock::ReaderLock lm (lock);
+
+ return first_tempo().frame();
}
/** Returns the exact bbt-based beat corresponding to the bar, beat or quarter note subdivision nearest to
* This function is sensitive to tempo and meter.
*/
double
-TempoMap::exact_beat_at_frame (const framepos_t& frame, const int32_t sub_num) const
+TempoMap::exact_beat_at_frame (const framepos_t frame, const int32_t sub_num) const
{
Glib::Threads::RWLock::ReaderLock lm (lock);
}
double
-TempoMap::exact_beat_at_frame_locked (const Metrics& metrics, const framepos_t& frame, const int32_t divisions) const
+TempoMap::exact_beat_at_frame_locked (const Metrics& metrics, const framepos_t frame, const int32_t divisions) const
{
return beat_at_pulse_locked (_metrics, exact_qn_at_frame_locked (metrics, frame, divisions) / 4.0);
}
* This function is tempo-sensitive.
*/
double
-TempoMap::exact_qn_at_frame (const framepos_t& frame, const int32_t sub_num) const
+TempoMap::exact_qn_at_frame (const framepos_t frame, const int32_t sub_num) const
{
Glib::Threads::RWLock::ReaderLock lm (lock);
}
double
-TempoMap::exact_qn_at_frame_locked (const Metrics& metrics, const framepos_t& frame, const int32_t sub_num) const
+TempoMap::exact_qn_at_frame_locked (const Metrics& metrics, const framepos_t frame, const int32_t sub_num) const
{
double qn = pulse_at_minute_locked (metrics, minute_at_frame (frame)) * 4.0;
qn = floor (qn) + (floor (((qn - floor (qn)) * (double) sub_num) + 0.5) / sub_num);
} else if (sub_num == 1) {
/* the gui requested exact musical (BBT) beat */
- qn = pulse_at_beat_locked (metrics, (floor (beat_at_minute_locked (metrics, minute_at_frame (frame)) + 0.5)) * 4.0);
+ qn = pulse_at_beat_locked (metrics, (floor (beat_at_minute_locked (metrics, minute_at_frame (frame)) + 0.5))) * 4.0;
} else if (sub_num == -1) {
/* snap to bar */
Timecode::BBT_Time bbt = bbt_at_pulse_locked (metrics, qn / 4.0);
return 0;
}
-framepos_t
+MusicFrame
TempoMap::round_to_bar (framepos_t fr, RoundMode dir)
{
return round_to_type (fr, dir, Bar);
}
-framepos_t
+MusicFrame
TempoMap::round_to_beat (framepos_t fr, RoundMode dir)
{
return round_to_type (fr, dir, Beat);
}
-framepos_t
-TempoMap::round_to_beat_subdivision (framepos_t fr, int sub_num, RoundMode dir)
-{
- Glib::Threads::RWLock::ReaderLock lm (lock);
- uint32_t ticks = (uint32_t) floor (max (0.0, beat_at_minute_locked (_metrics, minute_at_frame (fr))) * BBT_Time::ticks_per_beat);
- uint32_t beats = (uint32_t) floor (ticks / BBT_Time::ticks_per_beat);
- uint32_t ticks_one_subdivisions_worth = (uint32_t) BBT_Time::ticks_per_beat / sub_num;
-
- ticks -= beats * BBT_Time::ticks_per_beat;
-
- if (dir > 0) {
- /* round to next (or same iff dir == RoundUpMaybe) */
-
- uint32_t mod = ticks % ticks_one_subdivisions_worth;
-
- if (mod == 0 && dir == RoundUpMaybe) {
- /* right on the subdivision, which is fine, so do nothing */
-
- } else if (mod == 0) {
- /* right on the subdivision, so the difference is just the subdivision ticks */
- ticks += ticks_one_subdivisions_worth;
-
- } else {
- /* not on subdivision, compute distance to next subdivision */
-
- ticks += ticks_one_subdivisions_worth - mod;
- }
-
- if (ticks >= BBT_Time::ticks_per_beat) {
- ticks -= BBT_Time::ticks_per_beat;
- }
- } else if (dir < 0) {
-
- /* round to previous (or same iff dir == RoundDownMaybe) */
-
- uint32_t difference = ticks % ticks_one_subdivisions_worth;
-
- if (difference == 0 && dir == RoundDownAlways) {
- /* right on the subdivision, but force-rounding down,
- so the difference is just the subdivision ticks */
- difference = ticks_one_subdivisions_worth;
- }
-
- if (ticks < difference) {
- ticks = BBT_Time::ticks_per_beat - ticks;
- } else {
- ticks -= difference;
- }
-
- } else {
- /* round to nearest */
- double rem;
-
- /* compute the distance to the previous and next subdivision */
-
- if ((rem = fmod ((double) ticks, (double) ticks_one_subdivisions_worth)) > ticks_one_subdivisions_worth/2.0) {
-
- /* closer to the next subdivision, so shift forward */
-
- ticks = lrint (ticks + (ticks_one_subdivisions_worth - rem));
-
- DEBUG_TRACE (DEBUG::SnapBBT, string_compose ("moved forward to %1\n", ticks));
-
- if (ticks > BBT_Time::ticks_per_beat) {
- ++beats;
- ticks -= BBT_Time::ticks_per_beat;
- DEBUG_TRACE (DEBUG::SnapBBT, string_compose ("fold beat to %1\n", beats));
- }
-
- } else if (rem > 0) {
-
- /* closer to previous subdivision, so shift backward */
-
- if (rem > ticks) {
- if (beats == 0) {
- /* can't go backwards past zero, so ... */
- return 0;
- }
- /* step back to previous beat */
- --beats;
- ticks = lrint (BBT_Time::ticks_per_beat - rem);
- DEBUG_TRACE (DEBUG::SnapBBT, string_compose ("step back beat to %1\n", beats));
- } else {
- ticks = lrint (ticks - rem);
- DEBUG_TRACE (DEBUG::SnapBBT, string_compose ("moved backward to %1\n", ticks));
- }
- } else {
- /* on the subdivision, do nothing */
- }
- }
-
- const framepos_t ret_frame = frame_at_minute (minute_at_beat_locked (_metrics, beats + (ticks / BBT_Time::ticks_per_beat)));
-
- return ret_frame;
-}
-
-framepos_t
+MusicFrame
TempoMap::round_to_quarter_note_subdivision (framepos_t fr, int sub_num, RoundMode dir)
{
Glib::Threads::RWLock::ReaderLock lm (lock);
if (rem > ticks) {
if (beats == 0) {
/* can't go backwards past zero, so ... */
- return 0;
+ return MusicFrame (0, 0);
}
/* step back to previous beat */
--beats;
}
}
- const framepos_t ret_frame = frame_at_minute (minute_at_pulse_locked (_metrics, (beats + (ticks / BBT_Time::ticks_per_beat)) / 4.0));
+ MusicFrame ret (0, 0);
+ ret.frame = frame_at_minute (minute_at_pulse_locked (_metrics, (beats + (ticks / BBT_Time::ticks_per_beat)) / 4.0));
+ ret.division = sub_num;
- return ret_frame;
+ return ret;
}
-framepos_t
+MusicFrame
TempoMap::round_to_type (framepos_t frame, RoundMode dir, BBTPointType type)
{
Glib::Threads::RWLock::ReaderLock lm (lock);
-
- const double beat_at_framepos = max (0.0, beat_at_minute_locked (_metrics, minute_at_frame (frame)));
+ const double minute = minute_at_frame (frame);
+ const double beat_at_framepos = max (0.0, beat_at_minute_locked (_metrics, minute));
BBT_Time bbt (bbt_at_beat_locked (_metrics, beat_at_framepos));
+ MusicFrame ret (0, 0);
switch (type) {
case Bar:
+ ret.division = -1;
+
if (dir < 0) {
/* find bar previous to 'frame' */
if (bbt.bars > 0)
--bbt.bars;
bbt.beats = 1;
bbt.ticks = 0;
- return frame_at_minute (minute_at_bbt_locked (_metrics, bbt));
+
+ ret.frame = frame_at_minute (minute_at_bbt_locked (_metrics, bbt));
+
+ return ret;
} else if (dir > 0) {
/* find bar following 'frame' */
++bbt.bars;
bbt.beats = 1;
bbt.ticks = 0;
- return frame_at_minute (minute_at_bbt_locked (_metrics, bbt));
+
+ ret.frame = frame_at_minute (minute_at_bbt_locked (_metrics, bbt));
+
+ return ret;
} else {
/* true rounding: find nearest bar */
framepos_t raw_ft = frame_at_minute (minute_at_bbt_locked (_metrics, bbt));
framepos_t next_ft = frame_at_minute (minute_at_bbt_locked (_metrics, bbt));
if ((raw_ft - prev_ft) > (next_ft - prev_ft) / 2) {
- return next_ft;
+ ret.frame = next_ft;
+
+ return ret;
} else {
- return prev_ft;
+ --bbt.bars;
+ ret.frame = prev_ft;
+
+ return ret;
}
}
break;
case Beat:
+ ret.division = 1;
+
if (dir < 0) {
- return frame_at_minute (minute_at_beat_locked (_metrics, floor (beat_at_framepos)));
+ ret.frame = frame_at_minute (minute_at_beat_locked (_metrics, floor (beat_at_framepos)));
+
+ return ret;
} else if (dir > 0) {
- return frame_at_minute (minute_at_beat_locked (_metrics, ceil (beat_at_framepos)));
+ ret.frame = frame_at_minute (minute_at_beat_locked (_metrics, ceil (beat_at_framepos)));
+
+ return ret;
} else {
- return frame_at_minute (minute_at_beat_locked (_metrics, floor (beat_at_framepos + 0.5)));
+ ret.frame = frame_at_minute (minute_at_beat_locked (_metrics, floor (beat_at_framepos + 0.5)));
+
+ return ret;
}
break;
}
- return 0;
+ return MusicFrame (0, 0);
}
void
if (bar_mod == 0) {
while (pos >= 0 && pos < upper) {
pos = frame_at_minute (minute_at_beat_locked (_metrics, cnt));
- const TempoSection tempo = tempo_section_at_minute_locked (_metrics, minute_at_frame (pos));
const MeterSection meter = meter_section_at_minute_locked (_metrics, minute_at_frame (pos));
const BBT_Time bbt = bbt_at_beat_locked (_metrics, cnt);
+ const double qn = pulse_at_beat_locked (_metrics, cnt) * 4.0;
- points.push_back (BBTPoint (meter, tempo_at_minute_locked (_metrics, minute_at_frame (pos)), pos, bbt.bars, bbt.beats, tempo.c()));
+ points.push_back (BBTPoint (meter, tempo_at_minute_locked (_metrics, minute_at_frame (pos)), pos, bbt.bars, bbt.beats, qn));
++cnt;
}
} else {
while (pos >= 0 && pos < upper) {
pos = frame_at_minute (minute_at_bbt_locked (_metrics, bbt));
- const TempoSection tempo = tempo_section_at_minute_locked (_metrics, minute_at_frame (pos));
const MeterSection meter = meter_section_at_minute_locked (_metrics, minute_at_frame (pos));
- points.push_back (BBTPoint (meter, tempo_at_minute_locked (_metrics, minute_at_frame (pos)), pos, bbt.bars, bbt.beats, tempo.c()));
+ const double qn = pulse_at_bbt_locked (_metrics, bbt) * 4.0;
+
+ points.push_back (BBTPoint (meter, tempo_at_minute_locked (_metrics, minute_at_frame (pos)), pos, bbt.bars, bbt.beats, qn));
bbt.bars += bar_mod;
}
}
return *prev_t;
}
+TempoSection*
+TempoMap::previous_tempo_section (TempoSection* ts) const
+{
+ Glib::Threads::RWLock::ReaderLock lm (lock);
+
+ return previous_tempo_section_locked (_metrics, ts);
+
+}
+
+TempoSection*
+TempoMap::previous_tempo_section_locked (const Metrics& metrics, TempoSection* ts) const
+{
+ if (!ts) {
+ return 0;
+ }
+
+ TempoSection* prev = 0;
+
+ for (Metrics::const_iterator i = metrics.begin(); i != metrics.end(); ++i) {
+
+ if ((*i)->is_tempo()) {
+ TempoSection* t = static_cast<TempoSection*> (*i);
+
+ if (!t->active()) {
+ continue;
+ }
+
+ if (prev && t == ts) {
+
+ return prev;
+ }
+
+ prev = t;
+ }
+ }
+
+ if (prev == 0) {
+ fatal << endmsg;
+ abort(); /*NOTREACHED*/
+ }
+
+ return 0;
+}
+
+TempoSection*
+TempoMap::next_tempo_section (TempoSection* ts) const
+{
+ Glib::Threads::RWLock::ReaderLock lm (lock);
+
+ return next_tempo_section_locked (_metrics, ts);
+}
+
+TempoSection*
+TempoMap::next_tempo_section_locked (const Metrics& metrics, TempoSection* ts) const
+{
+ if (!ts) {
+ return 0;
+ }
+
+ TempoSection* prev = 0;
+
+ for (Metrics::const_iterator i = metrics.begin(); i != metrics.end(); ++i) {
+
+ if ((*i)->is_tempo()) {
+ TempoSection* t = static_cast<TempoSection*> (*i);
+
+ if (!t->active()) {
+ continue;
+ }
+
+ if (prev && prev == ts) {
+
+ return t;
+ }
+
+ prev = t;
+ }
+ }
+
+ if (prev == 0) {
+ fatal << endmsg;
+ abort(); /*NOTREACHED*/
+ }
+
+ return 0;
+}
/* don't use this to calculate length (the tempo is only correct for this frame).
do that stuff based on the beat_at_frame and frame_at_beat api
*/
double
-TempoMap::frames_per_quarter_note_at (const framepos_t& frame, const framecnt_t& sr) const
+TempoMap::frames_per_quarter_note_at (const framepos_t frame, const framecnt_t sr) const
{
Glib::Threads::RWLock::ReaderLock lm (lock);
{
MeterSection* prev_m = 0;
TempoSection* prev_t = 0;
+ bool have_initial_t = false;
for (Metrics::iterator i = _metrics.begin(); i != _metrics.end(); ++i) {
MeterSection* m;
if (!t->active()) {
continue;
}
+ /* Ramp type never existed in the era of this tempo section */
+ t->set_end_note_types_per_minute (t->note_types_per_minute());
if (t->initial()) {
t->set_pulse (0.0);
t->set_minute (0.0);
t->set_position_lock_style (AudioTime);
prev_t = t;
+ have_initial_t = true;
continue;
}
if (prev_t) {
+ /* some 4.x sessions have no initial (non-movable) tempo. */
+ if (!have_initial_t) {
+ prev_t->set_pulse (0.0);
+ prev_t->set_minute (0.0);
+ prev_t->set_position_lock_style (AudioTime);
+ prev_t->set_initial (true);
+ prev_t->set_locked_to_meter (true);
+ have_initial_t = true;
+ }
+
const double beat = ((t->legacy_bbt().bars - 1) * ((prev_m) ? prev_m->note_divisor() : 4.0))
+ (t->legacy_bbt().beats - 1)
+ (t->legacy_bbt().ticks / BBT_Time::ticks_per_beat);
}
}
}
+void
+TempoMap::fix_legacy_end_session ()
+{
+ TempoSection* prev_t = 0;
+
+ for (Metrics::iterator i = _metrics.begin(); i != _metrics.end(); ++i) {
+ TempoSection* t;
+
+ if ((t = dynamic_cast<TempoSection*>(*i)) != 0) {
+
+ if (!t->active()) {
+ continue;
+ }
+
+ if (prev_t) {
+ if (prev_t->end_note_types_per_minute() < 0.0) {
+ prev_t->set_end_note_types_per_minute (t->note_types_per_minute());
+ }
+ }
+
+ prev_t = t;
+ }
+ }
+
+ if (prev_t) {
+ prev_t->set_end_note_types_per_minute (prev_t->note_types_per_minute());
+ }
+}
XMLNode&
TempoMap::get_state ()
}
}
- if (niter == nlist.end()) {
- MetricSectionSorter cmp;
- _metrics.sort (cmp);
- }
-
/* check for legacy sessions where bbt was the base musical unit for tempo */
for (Metrics::const_iterator i = _metrics.begin(); i != _metrics.end(); ++i) {
TempoSection* t;
fix_legacy_session();
break;
}
- break;
+
+ if (t->end_note_types_per_minute() < 0.0) {
+ fix_legacy_end_session();
+ break;
+ }
}
}
+ if (niter == nlist.end()) {
+ MetricSectionSorter cmp;
+ _metrics.sort (cmp);
+ }
+
/* check for multiple tempo/meters at the same location, which
ardour2 somehow allowed.
*/
TempoSection* ts;
TempoSection* prev_t;
if ((prev_m = dynamic_cast<MeterSection*>(*prev)) != 0 && (ms = dynamic_cast<MeterSection*>(*i)) != 0) {
- if (prev_m->pulse() == ms->pulse()) {
- cerr << string_compose (_("Multiple meter definitions found at %1"), prev_m->pulse()) << endmsg;
- error << string_compose (_("Multiple meter definitions found at %1"), prev_m->pulse()) << endmsg;
+ if (prev_m->beat() == ms->beat()) {
+ cerr << string_compose (_("Multiple meter definitions found at %1"), prev_m->beat()) << endmsg;
+ error << string_compose (_("Multiple meter definitions found at %1"), prev_m->beat()) << endmsg;
return -1;
}
} else if ((prev_t = dynamic_cast<TempoSection*>(*prev)) != 0 && (ts = dynamic_cast<TempoSection*>(*i)) != 0) {
for (Metrics::const_iterator i = _metrics.begin(); i != _metrics.end(); ++i) {
if ((t = dynamic_cast<const TempoSection*>(*i)) != 0) {
- o << "Tempo @ " << *i << t->note_types_per_minute() << " BPM (pulse = 1/" << t->note_type()
+ o << "Tempo @ " << *i << " start : " << t->note_types_per_minute() << " end : " << t->end_note_types_per_minute() << " BPM (pulse = 1/" << t->note_type()
<< " type= " << enum_2_string (t->type()) << ") " << " at pulse= " << t->pulse()
<< " minute= " << t->minute() << " frame= " << t->frame() << " (initial? " << t->initial() << ')'
<< " pos lock: " << enum_2_string (t->position_lock_style()) << std::endl;
if (prev_t) {
- o << " current : " << t->note_types_per_minute()
+ o << " current start : " << t->note_types_per_minute()
+ << " current end : " << t->end_note_types_per_minute()
<< " | " << t->pulse() << " | " << t->frame() << " | " << t->minute() << std::endl;
o << " previous : " << prev_t->note_types_per_minute()
<< " | " << prev_t->pulse() << " | " << prev_t->frame() << " | " << prev_t->minute() << std::endl;
o << " calculated : " << prev_t->tempo_at_pulse (t->pulse())
- << " | " << prev_t->pulse_at_ntpm (t->note_types_per_minute(), t->minute())
- << " | " << frame_at_minute (prev_t->minute_at_ntpm (t->note_types_per_minute(), t->pulse()))
- << " | " << prev_t->minute_at_ntpm (t->note_types_per_minute(), t->pulse()) << std::endl;
+ << " | " << prev_t->pulse_at_ntpm (prev_t->end_note_types_per_minute(), t->minute())
+ << " | " << frame_at_minute (prev_t->minute_at_ntpm (prev_t->end_note_types_per_minute(), t->pulse()))
+ << " | " << prev_t->minute_at_ntpm (prev_t->end_note_types_per_minute(), t->pulse()) << std::endl;
}
prev_t = t;
} else if ((m = dynamic_cast<const MeterSection*>(*i)) != 0) {