#include "ardour/debug.h"
#include "ardour/event_type_map.h"
#include "ardour/ladspa_plugin.h"
+#include "ardour/luaproc.h"
#include "ardour/plugin.h"
#include "ardour/plugin_insert.h"
: Processor (s, (plug ? plug->name() : string ("toBeRenamed")))
, _signal_analysis_collected_nframes(0)
, _signal_analysis_collect_nframes_max(0)
+ , _configured (false)
+ , _no_inplace (false)
+ , _strict_io (false)
+ , _custom_cfg (false)
+ , _pending_no_inplace (false)
{
/* the first is the master */
}
}
+PluginInsert::~PluginInsert ()
+{
+}
+
bool
PluginInsert::set_count (uint32_t num)
{
return true;
}
-PluginInsert::~PluginInsert ()
+
+void
+PluginInsert::set_outputs (const ChanCount& c)
{
+ _custom_out = c;
}
void
ChanCount
PluginInsert::output_streams() const
+{
+ assert (_configured);
+ return _configured_out;
+}
+
+ChanCount
+PluginInsert::input_streams() const
+{
+ assert (_configured);
+ return _configured_in;
+}
+
+ChanCount
+PluginInsert::internal_output_streams() const
{
assert (!_plugins.empty());
ChanCount out = info->n_outputs;
// DEBUG_TRACE (DEBUG::Processors, string_compose ("Plugin insert, static output streams = %1 for %2 plugins\n", out, _plugins.size()));
out.set_audio (out.n_audio() * _plugins.size());
- out.set_midi (out.n_midi() * _plugins.size() + midi_bypass.n_midi());
+ out.set_midi (out.n_midi() * _plugins.size());
return out;
}
}
ChanCount
-PluginInsert::input_streams() const
+PluginInsert::internal_input_streams() const
{
assert (!_plugins.empty());
}
DEBUG_TRACE (DEBUG::Processors, string_compose ("Plugin insert, input streams = %1, match using %2\n", in, _match.method));
-
+
if (_match.method == Split) {
/* we are splitting 1 processor input to multiple plugin inputs,
return in;
} else {
-
+
for (DataType::iterator t = DataType::begin(); t != DataType::end(); ++t) {
in.set (*t, in.get (*t) * _plugins.size ());
}
set<Evoral::Parameter> a = _plugins.front()->automatable ();
- Plugin::ParameterDescriptor desc;
-
for (set<Evoral::Parameter>::iterator i = a.begin(); i != a.end(); ++i) {
if (i->type() == PluginAutomation) {
Evoral::Parameter param(*i);
+ ParameterDescriptor desc;
_plugins.front()->get_parameter_descriptor(i->id(), desc);
- /* the Parameter belonging to the actual plugin doesn't have its range set
- but we want the Controllable related to this Parameter to have those limits.
- */
-
- param.set_range (desc.lower, desc.upper, _plugins.front()->default_value(i->id()), desc.toggled);
can_automate (param);
- boost::shared_ptr<AutomationList> list(new AutomationList(param));
- add_control (boost::shared_ptr<AutomationControl> (new PluginControl(this, param, list)));
+ boost::shared_ptr<AutomationList> list(new AutomationList(param, desc));
+ boost::shared_ptr<AutomationControl> c (new PluginControl(this, param, desc, list));
+ add_control (c);
+ _plugins.front()->set_automation_control (i->id(), c);
+ } else if (i->type() == PluginPropertyAutomation) {
+ Evoral::Parameter param(*i);
+ const ParameterDescriptor& desc = _plugins.front()->get_property_descriptor(param.id());
+ if (desc.datatype != Variant::NOTHING) {
+ boost::shared_ptr<AutomationList> list;
+ if (Variant::type_is_numeric(desc.datatype)) {
+ list = boost::shared_ptr<AutomationList>(new AutomationList(param, desc));
+ }
+ add_control (boost::shared_ptr<AutomationControl> (new PluginPropertyControl(this, param, desc, list)));
+ }
}
}
}
-
+/** Called when something outside of this host has modified a plugin
+ * parameter. Responsible for propagating the change to two places:
+ *
+ * 1) anything listening to the Control itself
+ * 2) any replicated plugins that make up this PluginInsert.
+ *
+ * The PluginInsert is connected to the ParameterChangedExternally signal for
+ * the first (primary) plugin, and here broadcasts that change to any others.
+ *
+ * XXX We should probably drop this whole replication idea (Paul, October 2015)
+ * since it isn't used by sensible plugin APIs (AU, LV2).
+ */
void
-PluginInsert::parameter_changed (uint32_t which, float val)
+PluginInsert::parameter_changed_externally (uint32_t which, float val)
{
boost::shared_ptr<AutomationControl> ac = automation_control (Evoral::Parameter (PluginAutomation, 0, which));
- if (ac) {
- ac->set_value (val);
-
- Plugins::iterator i = _plugins.begin();
-
- /* don't set the first plugin, just all the slaves */
-
- if (i != _plugins.end()) {
- ++i;
- for (; i != _plugins.end(); ++i) {
- (*i)->set_parameter (which, val);
- }
- }
- }
+ /* First propagation: alter the underlying value of the control,
+ * without telling the plugin(s) that own/use it to set it.
+ */
+
+ if (!ac) {
+ return;
+ }
+
+ boost::shared_ptr<PluginControl> pc = boost::dynamic_pointer_cast<PluginControl> (ac);
+
+ if (pc) {
+ pc->catch_up_with_external_value (val);
+ }
+
+ /* Second propagation: tell all plugins except the first to
+ update the value of this parameter. For sane plugin APIs,
+ there are no other plugins, so this is a no-op in those
+ cases.
+ */
+
+ Plugins::iterator i = _plugins.begin();
+
+ /* don't set the first plugin, just all the slaves */
+
+ if (i != _plugins.end()) {
+ ++i;
+ for (; i != _plugins.end(); ++i) {
+ (*i)->set_parameter (which, val);
+ }
+ }
}
int
void
PluginInsert::connect_and_run (BufferSet& bufs, pframes_t nframes, framecnt_t offset, bool with_auto, framepos_t now)
{
- // Calculate if, and how many frames we need to collect for analysis
- framecnt_t collect_signal_nframes = (_signal_analysis_collect_nframes_max -
- _signal_analysis_collected_nframes);
- if (nframes < collect_signal_nframes) { // we might not get all frames now
- collect_signal_nframes = nframes;
+ PinMappings in_map (_in_map);
+ PinMappings out_map (_out_map);
+
+#if 1
+ // auto-detect if inplace processing is possible
+ // TODO: do this once. during configure_io and every time the
+ // plugin-count or mapping changes.
+ bool inplace_ok = true;
+ for (uint32_t pc = 0; pc < get_count() && inplace_ok ; ++pc) {
+ if (!in_map[pc].is_monotonic ()) {
+ inplace_ok = false;
+ }
+ if (!out_map[pc].is_monotonic ()) {
+ inplace_ok = false;
+ }
+ }
+
+ if (_pending_no_inplace != !inplace_ok) {
+#ifndef NDEBUG // this 'cerr' needs to go ASAP.
+ cerr << name () << " automatically set : " << (inplace_ok ? "Use Inplace" : "No Inplace") << "\n"; // XXX
+#endif
+ _pending_no_inplace = !inplace_ok;
}
+#endif
- ChanCount const in_streams = input_streams ();
- ChanCount const out_streams = output_streams ();
+ _no_inplace = _pending_no_inplace || _plugins.front()->inplace_broken ();
- ChanMapping in_map (in_streams);
- ChanMapping out_map (out_streams);
- bool valid;
- if (_match.method == Split) {
- /* fix the input mapping so that we have maps for each of the plugin's inputs */
- in_map = ChanMapping (natural_input_streams ());
- /* copy the first stream's buffer contents to the others */
- /* XXX: audio only */
- uint32_t first_idx = in_map.get (DataType::AUDIO, 0, &valid);
+#if 1
+ // TODO optimize special case.
+ // Currently this never triggers because the in_map for "Split" triggeres no_inplace.
+ if (_match.method == Split && !_no_inplace) {
+ assert (in_map.size () == 1);
+ in_map[0] = ChanMapping (max (natural_input_streams (), _configured_in));
+ ChanCount const in_streams = internal_input_streams ();
+ /* copy the first stream's audio buffer contents to the others */
+ bool valid;
+ uint32_t first_idx = in_map[0].get (DataType::AUDIO, 0, &valid);
if (valid) {
for (uint32_t i = in_streams.n_audio(); i < natural_input_streams().n_audio(); ++i) {
- bufs.get_audio(in_map.get (DataType::AUDIO, i, &valid)).read_from(bufs.get_audio(first_idx), nframes, offset, offset);
+ uint32_t idx = in_map[0].get (DataType::AUDIO, i, &valid);
+ if (valid) {
+ bufs.get_audio(idx).read_from(bufs.get_audio(first_idx), nframes, offset, offset);
+ }
}
}
}
+#endif
- bufs.set_count(ChanCount::max(bufs.count(), in_streams));
- bufs.set_count(ChanCount::max(bufs.count(), out_streams));
-
- /* Note that we've already required that plugins
- be able to handle in-place processing.
- */
+ bufs.set_count(ChanCount::max(bufs.count(), _configured_in));
+ bufs.set_count(ChanCount::max(bufs.count(), _configured_out));
if (with_auto) {
boost::shared_ptr<AutomationControl> c
= boost::dynamic_pointer_cast<AutomationControl>(li->second);
- if (c->parameter().type() == PluginAutomation && c->automation_playback()) {
+ if (c->list() && c->automation_playback()) {
bool valid;
const float val = c->list()->rt_safe_eval (now, valid);
if (valid) {
- c->set_value(val);
+ /* This is the ONLY place where we are
+ * allowed to call
+ * AutomationControl::set_value_unchecked(). We
+ * know that the control is in
+ * automation playback mode, so no
+ * check on writable() is required
+ * (which must be done in AutomationControl::set_value()
+ *
+ */
+ c->set_value_unchecked(val);
}
}
}
}
+ /* Calculate if, and how many frames we need to collect for analysis */
+ framecnt_t collect_signal_nframes = (_signal_analysis_collect_nframes_max -
+ _signal_analysis_collected_nframes);
+ if (nframes < collect_signal_nframes) { // we might not get all frames now
+ collect_signal_nframes = nframes;
+ }
+
if (collect_signal_nframes > 0) {
// collect input
//std::cerr << "collect input, bufs " << bufs.count().n_audio() << " count, " << bufs.available().n_audio() << " available" << std::endl;
- //std::cerr << " streams " << input_streams().n_audio() << std::endl;
+ //std::cerr << " streams " << internal_input_streams().n_audio() << std::endl;
//std::cerr << "filling buffer with " << collect_signal_nframes << " frames at " << _signal_analysis_collected_nframes << std::endl;
- _signal_analysis_inputs.set_count(input_streams());
+ _signal_analysis_inputs.set_count(internal_input_streams());
- for (uint32_t i = 0; i < input_streams().n_audio(); ++i) {
+ for (uint32_t i = 0; i < internal_input_streams().n_audio(); ++i) {
_signal_analysis_inputs.get_audio(i).read_from(
bufs.get_audio(i),
collect_signal_nframes,
}
- for (Plugins::iterator i = _plugins.begin(); i != _plugins.end(); ++i) {
- (*i)->connect_and_run(bufs, in_map, out_map, nframes, offset);
+ if (_no_inplace) {
+ BufferSet& inplace_bufs = _session.get_noinplace_buffers();
+ ARDOUR::ChanMapping used_outputs;
+
+ uint32_t pc = 0;
+ // TODO optimize this flow. prepare during configure_io()
+ for (Plugins::iterator i = _plugins.begin(); i != _plugins.end(); ++i, ++pc) {
+
+ ARDOUR::ChanMapping i_in_map (natural_input_streams());
+ ARDOUR::ChanMapping i_out_map;
+ ARDOUR::ChanCount mapped;
+ ARDOUR::ChanCount backmap;
+
+ // map inputs sequentially
+ for (DataType::iterator t = DataType::begin(); t != DataType::end(); ++t) {
+ for (uint32_t in = 0; in < natural_input_streams().get (*t); ++in) {
+ bool valid;
+ uint32_t in_idx = in_map[pc].get (*t, in, &valid);
+ uint32_t m = mapped.get (*t);
+ if (valid) {
+ inplace_bufs.get (*t, m).read_from (bufs.get (*t, in_idx), nframes, offset, offset);
+ } else {
+ inplace_bufs.get (*t, m).silence (nframes, offset);
+ }
+ mapped.set (*t, m + 1);
+ }
+ }
+
+ // TODO use map_offset_to() instead ??
+ backmap = mapped;
+
+ // map outputs
+ for (DataType::iterator t = DataType::begin(); t != DataType::end(); ++t) {
+ for (uint32_t out = 0; out < natural_output_streams().get (*t); ++out) {
+ uint32_t m = mapped.get (*t);
+ inplace_bufs.get (*t, m).silence (nframes, offset);
+ i_out_map.set (*t, out, m);
+ mapped.set (*t, m + 1);
+ }
+ }
+
+ if ((*i)->connect_and_run(inplace_bufs, i_in_map, i_out_map, nframes, offset)) {
+ deactivate ();
+ }
+
+ // copy back outputs
+ for (DataType::iterator t = DataType::begin(); t != DataType::end(); ++t) {
+ for (uint32_t out = 0; out < natural_output_streams().get (*t); ++out) {
+ uint32_t m = backmap.get (*t);
+ bool valid;
+ uint32_t out_idx = out_map[pc].get (*t, out, &valid);
+ if (valid) {
+ bufs.get (*t, out_idx).read_from (inplace_bufs.get (*t, m), nframes, offset, offset);
+ used_outputs.set (*t, out_idx, 1); // mark as used
+ }
+ backmap.set (*t, m + 1);
+ }
+ }
+ }
+ /* all instances have completed, now clear outputs that have not been written to.
+ * (except midi bypass)
+ */
+ if (bufs.count().n_midi() == 1 && natural_output_streams().get(DataType::MIDI) == 0) {
+ used_outputs.set (DataType::MIDI, 0, 1); // Midi bypass.
+ }
for (DataType::iterator t = DataType::begin(); t != DataType::end(); ++t) {
- in_map.offset_to(*t, natural_input_streams().get(*t));
- out_map.offset_to(*t, natural_output_streams().get(*t));
+ for (uint32_t out = 0; out < bufs.count().get (*t); ++out) {
+ bool valid;
+ used_outputs.get (*t, out, &valid);
+ if (valid) { continue; }
+ bufs.get (*t, out).silence (nframes, offset);
+ }
+ }
+
+ } else {
+ uint32_t pc = 0;
+ for (Plugins::iterator i = _plugins.begin(); i != _plugins.end(); ++i, ++pc) {
+ if ((*i)->connect_and_run(bufs, in_map[pc], out_map[pc], nframes, offset)) {
+ deactivate ();
+ }
+ }
+
+ // TODO optimize: store "unconnected" in a fixed set.
+ // it only changes on reconfiguration.
+ for (DataType::iterator t = DataType::begin(); t != DataType::end(); ++t) {
+ for (uint32_t out = 0; out < bufs.count().get (*t); ++out) {
+ bool mapped = false;
+ for (uint32_t pc = 0; pc < get_count() && !mapped; ++pc) {
+ for (uint32_t o = 0; o < natural_output_streams().get (*t); ++o) {
+ bool valid;
+ uint32_t idx = out_map[pc].get (*t, o, &valid);
+ if (valid && idx == out) {
+ mapped = true;
+ break;
+ }
+ }
+ }
+ if (!mapped) {
+ bufs.get (*t, out).silence (nframes, offset);
+ }
+ }
}
}
if (collect_signal_nframes > 0) {
// collect output
//std::cerr << " output, bufs " << bufs.count().n_audio() << " count, " << bufs.available().n_audio() << " available" << std::endl;
- //std::cerr << " streams " << output_streams().n_audio() << std::endl;
+ //std::cerr << " streams " << internal_output_streams().n_audio() << std::endl;
- _signal_analysis_outputs.set_count(output_streams());
+ _signal_analysis_outputs.set_count(internal_output_streams());
- for (uint32_t i = 0; i < output_streams().n_audio(); ++i) {
+ for (uint32_t i = 0; i < internal_output_streams().n_audio(); ++i) {
_signal_analysis_outputs.get_audio(i).read_from(
bufs.get_audio(i),
collect_signal_nframes,
&_signal_analysis_outputs);
}
}
- /* leave remaining channel buffers alone */
}
void
return;
}
- ChanMapping in_map(input_streams());
- ChanMapping out_map(output_streams());
-
- if (_match.method == Split) {
- /* fix the input mapping so that we have maps for each of the plugin's inputs */
- in_map = ChanMapping (natural_input_streams ());
- }
+ ChanMapping in_map (natural_input_streams ());
+ ChanMapping out_map (natural_output_streams ());
for (Plugins::iterator i = _plugins.begin(); i != _plugins.end(); ++i) {
(*i)->connect_and_run (_session.get_scratch_buffers ((*i)->get_info()->n_inputs, true), in_map, out_map, nframes, 0);
}
} else {
+ // TODO use mapping in bypassed mode ?!
+ // -> do we bypass the processor or the plugin
+
uint32_t in = input_streams ().n_audio ();
uint32_t out = output_streams().n_audio ();
} else if (out > in) {
- /* not active, but something has make up for any channel count increase */
-
- // TODO: option round-robin (n % in) or silence additional buffers ??
- // for now , simply replicate last buffer
+ /* not active, but something has make up for any channel count increase
+ * for now , simply replicate last buffer
+ */
for (uint32_t n = in; n < out; ++n) {
bufs.get_audio(n).read_from(bufs.get_audio(in - 1), nframes);
}
/* we have no idea whether the plugin generated silence or not, so mark
* all buffers appropriately.
*/
-
-}
-
-void
-PluginInsert::set_parameter (Evoral::Parameter param, float val)
-{
- if (param.type() != PluginAutomation) {
- return;
- }
-
- /* the others will be set from the event triggered by this */
-
- _plugins[0]->set_parameter (param.id(), val);
-
- boost::shared_ptr<AutomationControl> ac
- = boost::dynamic_pointer_cast<AutomationControl>(control(param));
-
- if (ac) {
- ac->set_value(val);
- } else {
- warning << "set_parameter called for nonexistant parameter "
- << EventTypeMap::instance().to_symbol(param) << endmsg;
- }
-
- _session.set_dirty();
-}
-
-float
-PluginInsert::get_parameter (Evoral::Parameter param)
-{
- if (param.type() != PluginAutomation) {
- return 0.0;
- } else {
- assert (!_plugins.empty ());
- return _plugins[0]->get_parameter (param.id());
- }
}
void
return;
}
- if (!find_next_event (now, end, next_event) || requires_fixed_sized_buffers()) {
+ if (!find_next_event (now, end, next_event) || _plugins.front()->requires_fixed_sized_buffers()) {
/* no events have a time within the relevant range */
if (_plugins.empty()) {
fatal << _("programming error: ") << X_("PluginInsert::default_parameter_value() called with no plugin")
<< endmsg;
- /*NOTREACHED*/
+ abort(); /*NOTREACHED*/
}
return _plugins[0]->default_value (param.id());
}
+
+bool
+PluginInsert::can_reset_all_parameters ()
+{
+ bool all = true;
+ uint32_t params = 0;
+ for (uint32_t par = 0; par < _plugins[0]->parameter_count(); ++par) {
+ bool ok=false;
+ const uint32_t cid = _plugins[0]->nth_parameter (par, ok);
+
+ if (!ok || !_plugins[0]->parameter_is_input(cid)) {
+ continue;
+ }
+
+ boost::shared_ptr<AutomationControl> ac = automation_control (Evoral::Parameter(PluginAutomation, 0, cid));
+ if (!ac) {
+ continue;
+ }
+
+ ++params;
+ if (ac->automation_state() & Play) {
+ all = false;
+ break;
+ }
+ }
+ return all && (params > 0);
+}
+
+bool
+PluginInsert::reset_parameters_to_default ()
+{
+ bool all = true;
+
+ for (uint32_t par = 0; par < _plugins[0]->parameter_count(); ++par) {
+ bool ok=false;
+ const uint32_t cid = _plugins[0]->nth_parameter (par, ok);
+
+ if (!ok || !_plugins[0]->parameter_is_input(cid)) {
+ continue;
+ }
+
+ const float dflt = _plugins[0]->default_value (cid);
+ const float curr = _plugins[0]->get_parameter (cid);
+
+ if (dflt == curr) {
+ continue;
+ }
+
+ boost::shared_ptr<AutomationControl> ac = automation_control (Evoral::Parameter(PluginAutomation, 0, cid));
+ if (!ac) {
+ continue;
+ }
+
+ if (ac->automation_state() & Play) {
+ all = false;
+ continue;
+ }
+
+ ac->set_value (dflt, Controllable::NoGroup);
+ }
+ return all;
+}
+
boost::shared_ptr<Plugin>
PluginInsert::plugin_factory (boost::shared_ptr<Plugin> other)
{
boost::shared_ptr<LadspaPlugin> lp;
+ boost::shared_ptr<LuaProc> lua;
#ifdef LV2_SUPPORT
boost::shared_ptr<LV2Plugin> lv2p;
#endif
if ((lp = boost::dynamic_pointer_cast<LadspaPlugin> (other)) != 0) {
return boost::shared_ptr<Plugin> (new LadspaPlugin (*lp));
+ } else if ((lua = boost::dynamic_pointer_cast<LuaProc> (other)) != 0) {
+ return boost::shared_ptr<Plugin> (new LuaProc (*lua));
#ifdef LV2_SUPPORT
} else if ((lv2p = boost::dynamic_pointer_cast<LV2Plugin> (other)) != 0) {
return boost::shared_ptr<Plugin> (new LV2Plugin (*lv2p));
fatal << string_compose (_("programming error: %1"),
X_("unknown plugin type in PluginInsert::plugin_factory"))
<< endmsg;
- /*NOTREACHED*/
+ abort(); /*NOTREACHED*/
return boost::shared_ptr<Plugin> ((Plugin*) 0);
}
+void
+PluginInsert::set_input_map (uint32_t num, ChanMapping m) {
+ if (num < _in_map.size()) {
+ bool changed = _in_map[num] != m;
+ _in_map[num] = m;
+ if (changed) {
+ PluginMapChanged (); /* EMIT SIGNAL */
+ }
+ }
+}
+
+void
+PluginInsert::set_output_map (uint32_t num, ChanMapping m) {
+ if (num < _out_map.size()) {
+ bool changed = _out_map[num] != m;
+ _out_map[num] = m;
+ if (changed) {
+ PluginMapChanged (); /* EMIT SIGNAL */
+ }
+ }
+}
+
bool
PluginInsert::configure_io (ChanCount in, ChanCount out)
{
Match old_match = _match;
- ChanCount old_in = input_streams ();
- ChanCount old_out = output_streams ();
+ ChanCount old_in;
+ ChanCount old_out;
- /* set the matching method and number of plugins that we will use to meet this configuration */
- _match = private_can_support_io_configuration (in, out);
- if (set_count (_match.plugins) == false) {
- return false;
+ if (_configured) {
+ old_in = _configured_in;
+ old_out = _configured_out;
}
- if ( (old_match.method != _match.method && (old_match.method == Split || _match.method == Split))
- || old_in != in
- || old_out != out
- )
- {
+ _configured_in = in;
+ _configured_out = out;
+
+ /* get plugin configuration */
+ _match = private_can_support_io_configuration (in, out);
+
+ /* set the matching method and number of plugins that we will use to meet this configuration */
+ if (set_count (_match.plugins) == false) {
PluginIoReConfigure (); /* EMIT SIGNAL */
+ _configured = false;
+ return false;
}
/* configure plugins */
switch (_match.method) {
case Split:
case Hide:
- if (_plugins.front()->configure_io (_plugins.front()->get_info()->n_inputs, out)) {
+ if (_plugins.front()->configure_io (natural_input_streams(), out) == false) {
+ PluginIoReConfigure (); /* EMIT SIGNAL */
+ _configured = false;
return false;
}
break;
-
+ case Delegate:
+ if (_match.strict_io) {
+ ChanCount dout;
+ bool const r = _plugins.front()->can_support_io_configuration (in, dout);
+ assert (r);
+ if (_plugins.front()->configure_io (in, dout) == false) {
+ PluginIoReConfigure (); /* EMIT SIGNAL */
+ _configured = false;
+ return false;
+ }
+ break;
+ }
+ // no break -- fall through
default:
if (_plugins.front()->configure_io (in, out) == false) {
+ PluginIoReConfigure (); /* EMIT SIGNAL */
+ _configured = false;
return false;
}
break;
}
+ bool mapping_changed = false;
+ if (old_in == in && old_out == out && _configured
+ && old_match.method == _match.method
+ && _in_map.size() == _out_map.size()
+ && _in_map.size() == get_count ()
+ ) {
+ /* If the configuraton has not changed, keep the mapping */
+ } else if (_match.custom_cfg && _configured) {
+ /* strip dead wood */
+ for (uint32_t pc = 0; pc < get_count(); ++pc) {
+ ChanMapping new_in;
+ ChanMapping new_out;
+ for (DataType::iterator t = DataType::begin(); t != DataType::end(); ++t) {
+ for (uint32_t i = 0; i < natural_input_streams().get (*t); ++i) {
+ bool valid;
+ uint32_t idx = _in_map[pc].get (*t, i, &valid);
+ if (valid && idx <= in.get (*t)) {
+ new_in.set (*t, i, idx);
+ }
+ }
+ for (uint32_t o = 0; o < natural_output_streams().get (*t); ++o) {
+ bool valid;
+ uint32_t idx = _out_map[pc].get (*t, o, &valid);
+ if (valid && idx <= out.get (*t)) {
+ new_out.set (*t, o, idx);
+ }
+ }
+ }
+ if (_in_map[pc] != new_in || _out_map[pc] != new_out) {
+ mapping_changed = true;
+ }
+ _in_map[pc] = new_in;
+ _out_map[pc] = new_out;
+ }
+ } else {
+ /* generate a new mapping */
+ uint32_t pc = 0;
+ _in_map.clear ();
+ _out_map.clear ();
+ for (Plugins::iterator i = _plugins.begin(); i != _plugins.end(); ++i, ++pc) {
+ if (_match.method == Split) {
+ _in_map[pc] = ChanMapping ();
+ /* connect inputs in round-robin fashion */
+ for (DataType::iterator t = DataType::begin(); t != DataType::end(); ++t) {
+ const uint32_t cend = _configured_in.get (*t);
+ if (cend == 0) { continue; }
+ uint32_t c = 0;
+ for (uint32_t in = 0; in < natural_input_streams().get (*t); ++in) {
+ _in_map[pc].set (*t, in, c);
+ c = c + 1 % cend;
+ }
+ }
+ } else {
+ _in_map[pc] = ChanMapping (min (natural_input_streams (), in));
+ }
+ _out_map[pc] = ChanMapping (min (natural_output_streams(), out));
+
+ for (DataType::iterator t = DataType::begin(); t != DataType::end(); ++t) {
+ _in_map[pc].offset_to(*t, pc * natural_input_streams().get(*t));
+ _out_map[pc].offset_to(*t, pc * natural_output_streams().get(*t));
+ }
+ mapping_changed = true;
+ }
+ }
+
+ if (mapping_changed) {
+ PluginMapChanged (); /* EMIT SIGNAL */
+#if 1
+ uint32_t pc = 0;
+ cout << "----<<----\n";
+ for (Plugins::iterator i = _plugins.begin(); i != _plugins.end(); ++i, ++pc) {
+ cout << "Channel Map for " << name() << " plugin " << pc << "\n";
+ cout << " * Inputs:\n" << _in_map[pc];
+ cout << " * Outputs:\n" << _out_map[pc];
+ }
+ cout << "---->>----\n";
+#endif
+ }
+
+ if (old_in != in || old_out != out
+ || (old_match.method != _match.method && (old_match.method == Split || _match.method == Split))
+ ) {
+ PluginIoReConfigure (); /* EMIT SIGNAL */
+ }
+
// we don't know the analysis window size, so we must work with the
// current buffer size here. each request for data fills in these
// buffers and the analyser makes sure it gets enough data for the
// std::cerr << "set counts to i" << in.n_audio() << "/o" << out.n_audio() << std::endl;
+ _configured = true;
return Processor::configure_io (in, out);
}
* it can be.
*/
PluginInsert::Match
-PluginInsert::private_can_support_io_configuration (ChanCount const & inx, ChanCount& out)
+PluginInsert::private_can_support_io_configuration (ChanCount const & inx, ChanCount& out) const
+{
+ if (_plugins.empty()) {
+ return Match();
+ }
+
+ /* if a user specified a custom cfg, so be it. */
+ if (_custom_cfg) {
+ out = _custom_out;
+ return Match (ExactMatch, get_count(), false, true); // XXX
+ }
+
+ /* try automatic configuration next */
+ Match m = PluginInsert::automatic_can_support_io_configuration (inx, out);
+
+
+ PluginInfoPtr info = _plugins.front()->get_info();
+ ChanCount inputs = info->n_inputs;
+ ChanCount outputs = info->n_outputs;
+ ChanCount midi_bypass;
+
+ /* handle case strict-i/o */
+ if (_strict_io && m.method != Impossible) {
+ m.strict_io = true;
+
+ /* special case MIDI instruments */
+ if (is_midi_instrument()) {
+ // output = midi-bypass + at most master-out channels.
+ ChanCount max_out (DataType::AUDIO, 2); // TODO use master-out
+ max_out.set (DataType::MIDI, out.get(DataType::MIDI));
+ out = min (out, max_out);
+ return m;
+ }
+
+ switch (m.method) {
+ case NoInputs:
+ if (inx != out) {
+ /* replicate processor to match output count (generators and such)
+ * at least enough to feed every output port. */
+ uint32_t f = 1; // at least one. e.g. control data filters, no in, no out.
+ for (DataType::iterator t = DataType::begin(); t != DataType::end(); ++t) {
+ uint32_t nin = inputs.get (*t);
+ if (nin == 0 || inx.get(*t) == 0) { continue; }
+ f = max (f, (uint32_t) ceil (inx.get(*t) / (float)nin));
+ }
+ out = inx;
+ return Match (Replicate, f);
+ }
+ break;
+ case Split:
+ break;
+ default:
+ break;
+ }
+ if (inx == out) { return m; }
+
+ out = inx;
+ if (inx.get(DataType::MIDI) == 1
+ && out.get (DataType::MIDI) == 0
+ && outputs.get(DataType::MIDI) == 0) {
+ out += ChanCount (DataType::MIDI, 1);
+ }
+ return m;
+ }
+
+ if (m.method != Impossible) {
+ return m;
+ }
+
+ if (info->reconfigurable_io()) {
+ // houston, we have a problem.
+ // TODO: match closest closes available config.
+ // also handle strict_io
+ return Match (Impossible, 0);
+ }
+
+ // add at least as many plugins so that output count matches input count
+ uint32_t f = 0;
+ for (DataType::iterator t = DataType::begin(); t != DataType::end(); ++t) {
+ uint32_t nin = inputs.get (*t);
+ uint32_t nout = outputs.get (*t);
+ if (nin == 0 || inx.get(*t) == 0) { continue; }
+ // prefer floor() so the count won't overly increase IFF (nin < nout)
+ f = max (f, (uint32_t) floor (inx.get(*t) / (float)nout));
+ }
+ if (f > 0 && outputs * f >= _configured_out) {
+ out = outputs * f;
+ return Match (Replicate, f);
+ }
+
+ // add at least as many plugins needed to connect all inputs
+ f = 1;
+ for (DataType::iterator t = DataType::begin(); t != DataType::end(); ++t) {
+ uint32_t nin = inputs.get (*t);
+ if (nin == 0 || inx.get(*t) == 0) { continue; }
+ f = max (f, (uint32_t) ceil (inx.get(*t) / (float)nin));
+ }
+ out = outputs * f;
+ return Match (Replicate, f);
+}
+
+/* this is the original Ardour 3/4 behavior, mainly for backwards compatibility */
+PluginInsert::Match
+PluginInsert::automatic_can_support_io_configuration (ChanCount const & inx, ChanCount& out) const
{
if (_plugins.empty()) {
return Match();
PluginInfoPtr info = _plugins.front()->get_info();
ChanCount in; in += inx;
- midi_bypass.reset();
+ ChanCount midi_bypass;
if (info->reconfigurable_io()) {
/* Plugin has flexible I/O, so delegate to it */
We allow replication only for plugins with either zero or 1 inputs and outputs
for every valid data type.
*/
-
+
uint32_t f = 0;
bool can_replicate = true;
for (DataType::iterator t = DataType::begin(); t != DataType::end(); ++t) {
bool could_hide = false;
bool cannot_hide = false;
ChanCount hide_channels;
-
+
for (DataType::iterator t = DataType::begin(); t != DataType::end(); ++t) {
if (inputs.get(*t) > in.get(*t)) {
/* there is potential to hide, since the plugin has more inputs of type t than the insert */
if (could_hide && !cannot_hide) {
out = outputs + midi_bypass;
- return Match (Hide, 1, hide_channels);
+ return Match (Hide, 1, false, false, hide_channels);
}
midi_bypass.reset();
return Match (Impossible, 0);
}
+
XMLNode&
PluginInsert::get_state ()
{
node.add_property("type", _plugins[0]->state_node_name());
node.add_property("unique-id", _plugins[0]->unique_id());
node.add_property("count", string_compose("%1", _plugins.size()));
+
+ /* remember actual i/o configuration (for later placeholder
+ * in case the plugin goes missing) */
+ node.add_child_nocopy (* _configured_in.state (X_("ConfiguredInput")));
+ node.add_child_nocopy (* _configured_out.state (X_("ConfiguredOutput")));
+
+ /* save custom i/o config */
+ node.add_property("custom", _custom_cfg ? "yes" : "no");
+ if (_custom_cfg) {
+ assert (_custom_out == _configured_out); // redundant
+ for (uint32_t pc = 0; pc < get_count(); ++pc) {
+ // TODO save _in_map[pc], _out_map[pc]
+ }
+ }
+
+ _plugins[0]->set_insert_id(this->id());
node.add_child_nocopy (_plugins[0]->get_state());
for (Controls::iterator c = controls().begin(); c != controls().end(); ++c) {
if ((*iter)->name() == Controllable::xml_node_name) {
const XMLProperty* prop;
- if ((prop = (*iter)->property (X_("parameter"))) != 0) {
- uint32_t p = atoi (prop->value());
+ uint32_t p = (uint32_t)-1;
+#ifdef LV2_SUPPORT
+ if ((prop = (*iter)->property (X_("symbol"))) != 0) {
+ boost::shared_ptr<LV2Plugin> lv2plugin = boost::dynamic_pointer_cast<LV2Plugin> (_plugins[0]);
+ if (lv2plugin) {
+ p = lv2plugin->port_index(prop->value().c_str());
+ }
+ }
+#endif
+ if (p == (uint32_t)-1 && (prop = (*iter)->property (X_("parameter"))) != 0) {
+ p = atoi (prop->value());
+ }
+
+ if (p != (uint32_t)-1) {
/* this may create the new controllable */
type = ARDOUR::LXVST;
} else if (prop->value() == X_("audiounit")) {
type = ARDOUR::AudioUnit;
+ } else if (prop->value() == X_("luaproc")) {
+ type = ARDOUR::Lua;
} else {
error << string_compose (_("unknown plugin type %1 in plugin insert state"),
prop->value())
return -1;
}
+ if (type == ARDOUR::Lua) {
+ XMLNode *ls = node.child (plugin->state_node_name().c_str());
+ // we need to load the script to set the name and parameters.
+ boost::shared_ptr<LuaProc> lp = boost::dynamic_pointer_cast<LuaProc>(plugin);
+ if (ls && lp) {
+ lp->set_script_from_state (*ls);
+ }
+ }
+
// The name of the PluginInsert comes from the plugin, nothing else
_name = plugin->get_info()->name;
Processor::set_state (node, version);
+ PBD::ID new_id = this->id();
+ PBD::ID old_id = this->id();
+
+ if ((prop = node.property ("id")) != 0) {
+ old_id = prop->value ();
+ }
+
for (niter = nlist.begin(); niter != nlist.end(); ++niter) {
/* find the node with the type-specific node name ("lv2", "ladspa", etc)
if ((*niter)->name() == plugin->state_node_name()) {
- plugin->set_state (**niter, version);
-
for (Plugins::iterator i = _plugins.begin(); i != _plugins.end(); ++i) {
+ /* Plugin state can include external files which are named after the ID.
+ *
+ * If regenerate_xml_or_string_ids() is set, the ID will already have
+ * been changed, so we need to use the old ID from the XML to load the
+ * state and then update the ID.
+ *
+ * When copying a plugin-state, route_ui takes care of of updating the ID,
+ * but we need to call set_insert_id() to clear the cached plugin-state
+ * and force a change.
+ */
+ if (!regenerate_xml_or_string_ids ()) {
+ (*i)->set_insert_id (new_id);
+ } else {
+ (*i)->set_insert_id (old_id);
+ }
+
(*i)->set_state (**niter, version);
+
+ if (regenerate_xml_or_string_ids ()) {
+ (*i)->set_insert_id (new_id);
+ }
}
break;
set_parameter_state_2X (node, version);
}
+ if ((prop = node.property (X_("custom"))) != 0) {
+ _custom_cfg = string_is_affirmative (prop->value());
+ }
+
+ XMLNodeList kids = node.children ();
+ for (XMLNodeIterator i = kids.begin(); i != kids.end(); ++i) {
+ if ((*i)->name() == X_("ConfiguredOutput")) {
+ _custom_out = ChanCount(**i);
+ }
+ // TODO restore mappings for all 0 .. count.
+ }
+
+
+
for (Plugins::iterator i = _plugins.begin(); i != _plugins.end(); ++i) {
if (active()) {
(*i)->activate ();
return 0;
}
+void
+PluginInsert::update_id (PBD::ID id)
+{
+ set_id (id.to_s());
+ for (Plugins::iterator i = _plugins.begin(); i != _plugins.end(); ++i) {
+ (*i)->set_insert_id (id);
+ }
+}
+
+void
+PluginInsert::set_state_dir (const std::string& d)
+{
+ // state() only saves the state of the first plugin
+ _plugins[0]->set_state_dir (d);
+}
+
void
PluginInsert::set_parameter_state_2X (const XMLNode& node, int version)
{
boost::shared_ptr<AutomationControl> c = boost::dynamic_pointer_cast<AutomationControl>(
control(Evoral::Parameter(PluginAutomation, 0, port_id), true));
- if (c) {
+ if (c && c->alist()) {
if (!child->children().empty()) {
c->alist()->set_state (*child->children().front(), version);
float min_y = c->alist()->get_min_y ();
float max_y = c->alist()->get_max_y ();
- Plugin::ParameterDescriptor desc;
+ ParameterDescriptor desc;
_plugins.front()->get_parameter_descriptor (port_id, desc);
if (min_y == FLT_MIN) {
string
PluginInsert::describe_parameter (Evoral::Parameter param)
{
- if (param.type() != PluginAutomation) {
- return Automatable::describe_parameter(param);
+ if (param.type() == PluginAutomation) {
+ return _plugins[0]->describe_parameter (param);
+ } else if (param.type() == PluginPropertyAutomation) {
+ boost::shared_ptr<AutomationControl> c(automation_control(param));
+ if (c && !c->desc().label.empty()) {
+ return c->desc().label;
+ }
}
-
- return _plugins[0]->describe_parameter (param);
+ return Automatable::describe_parameter(param);
}
ARDOUR::framecnt_t
return plugin()->get_info()->type;
}
-PluginInsert::PluginControl::PluginControl (PluginInsert* p, const Evoral::Parameter ¶m, boost::shared_ptr<AutomationList> list)
- : AutomationControl (p->session(), param, list, p->describe_parameter(param))
+PluginInsert::PluginControl::PluginControl (PluginInsert* p,
+ const Evoral::Parameter& param,
+ const ParameterDescriptor& desc,
+ boost::shared_ptr<AutomationList> list)
+ : AutomationControl (p->session(), param, desc, list, p->describe_parameter(param))
, _plugin (p)
{
- Plugin::ParameterDescriptor desc;
- boost::shared_ptr<Plugin> plugin = p->plugin (0);
-
- alist()->reset_default (plugin->default_value (param.id()));
+ if (alist()) {
+ alist()->reset_default (desc.normal);
+ if (desc.toggled) {
+ list->set_interpolation(Evoral::ControlList::Discrete);
+ }
+ }
- plugin->get_parameter_descriptor (param.id(), desc);
- _logarithmic = desc.logarithmic;
- _sr_dependent = desc.sr_dependent;
- _toggled = desc.toggled;
+ if (desc.toggled) {
+ set_flags(Controllable::Toggle);
+ }
}
/** @param val `user' value */
void
-PluginInsert::PluginControl::set_value (double user_val)
+PluginInsert::PluginControl::set_value (double user_val, PBD::Controllable::GroupControlDisposition group_override)
+{
+ if (writable()) {
+ _set_value (user_val, group_override);
+ }
+}
+void
+PluginInsert::PluginControl::set_value_unchecked (double user_val)
+{
+ /* used only by automation playback */
+ _set_value (user_val, Controllable::NoGroup);
+}
+
+void
+PluginInsert::PluginControl::_set_value (double user_val, PBD::Controllable::GroupControlDisposition group_override)
{
/* FIXME: probably should be taking out some lock here.. */
iasp->set_parameter (_list->parameter().id(), user_val);
}
- AutomationControl::set_value (user_val);
+ AutomationControl::set_value (user_val, group_override);
}
-double
-PluginInsert::PluginControl::internal_to_interface (double val) const
+void
+PluginInsert::PluginControl::catch_up_with_external_value (double user_val)
{
- if (_logarithmic) {
- /* some plugins have a log-scale range "0.."
- * ideally we'd map the range down to infinity somehow :)
- *
- * one solution could be to use
- * val = exp(lower + log(range) * value);
- * (log(val) - lower) / range)
- * This approach would require access to the actual range (ie
- * Plugin::ParameterDescriptor) and also require handling
- * of unbound ranges..
- *
- * currently an arbitrarly low number is assumed to represnt
- * log(0) as hot-fix solution.
- */
- if (val > 0) {
- val = log (val);
- } else {
- val = -8; // ~ -70dB = 20 * log10(exp(-8))
- }
+ AutomationControl::set_value (user_val, Controllable::NoGroup);
+}
+
+XMLNode&
+PluginInsert::PluginControl::get_state ()
+{
+ stringstream ss;
+
+ XMLNode& node (AutomationControl::get_state());
+ ss << parameter().id();
+ node.add_property (X_("parameter"), ss.str());
+#ifdef LV2_SUPPORT
+ boost::shared_ptr<LV2Plugin> lv2plugin = boost::dynamic_pointer_cast<LV2Plugin> (_plugin->_plugins[0]);
+ if (lv2plugin) {
+ node.add_property (X_("symbol"), lv2plugin->port_symbol (parameter().id()));
}
+#endif
- return val;
+ return node;
}
+/** @return `user' val */
double
-PluginInsert::PluginControl::interface_to_internal (double val) const
+PluginInsert::PluginControl::get_value () const
{
- if (_logarithmic) {
- if (val <= -8) {
- /* see note in PluginInsert::PluginControl::internal_to_interface() */
- val= 0;
- } else {
- val = exp (val);
- }
+ boost::shared_ptr<Plugin> plugin = _plugin->plugin (0);
+
+ if (!plugin) {
+ return 0.0;
+ }
+
+ return plugin->get_parameter (_list->parameter().id());
+}
+
+PluginInsert::PluginPropertyControl::PluginPropertyControl (PluginInsert* p,
+ const Evoral::Parameter& param,
+ const ParameterDescriptor& desc,
+ boost::shared_ptr<AutomationList> list)
+ : AutomationControl (p->session(), param, desc, list)
+ , _plugin (p)
+{
+ if (alist()) {
+ alist()->set_yrange (desc.lower, desc.upper);
+ alist()->reset_default (desc.normal);
}
- return val;
+ if (desc.toggled) {
+ set_flags(Controllable::Toggle);
+ }
+}
+
+void
+PluginInsert::PluginPropertyControl::set_value (double user_val, PBD::Controllable::GroupControlDisposition /* group_override*/)
+{
+ if (writable()) {
+ set_value_unchecked (user_val);
+ }
+}
+
+void
+PluginInsert::PluginPropertyControl::set_value_unchecked (double user_val)
+{
+ /* Old numeric set_value(), coerce to appropriate datatype if possible.
+ This is lossy, but better than nothing until Ardour's automation system
+ can handle various datatypes all the way down. */
+ const Variant value(_desc.datatype, user_val);
+ if (value.type() == Variant::NOTHING) {
+ error << "set_value(double) called for non-numeric property" << endmsg;
+ return;
+ }
+
+ for (Plugins::iterator i = _plugin->_plugins.begin(); i != _plugin->_plugins.end(); ++i) {
+ (*i)->set_property(_list->parameter().id(), value);
+ }
+
+ _value = value;
+ AutomationControl::set_value (user_val, Controllable::NoGroup);
}
XMLNode&
-PluginInsert::PluginControl::get_state ()
+PluginInsert::PluginPropertyControl::get_state ()
{
stringstream ss;
XMLNode& node (AutomationControl::get_state());
ss << parameter().id();
- node.add_property (X_("parameter"), ss.str());
+ node.add_property (X_("property"), ss.str());
+ node.remove_property (X_("value"));
return node;
}
-/** @return `user' val */
double
-PluginInsert::PluginControl::get_value () const
+PluginInsert::PluginPropertyControl::get_value () const
{
- /* FIXME: probably should be taking out some lock here.. */
- return _plugin->get_parameter (_list->parameter());
+ return _value.to_double();
}
boost::shared_ptr<Plugin>
boost::shared_ptr<Plugin> ret;
if (_impulseAnalysisPlugin.expired()) {
ret = plugin_factory(_plugins[0]);
+ ret->configure_io (internal_input_streams (), internal_output_streams ());
_impulseAnalysisPlugin = ret;
} else {
ret = _impulseAnalysisPlugin.lock();
{
// called from outside the audio thread, so this should be safe
// only do audio as analysis is (currently) only for audio plugins
- _signal_analysis_inputs.ensure_buffers( DataType::AUDIO, input_streams().n_audio(), nframes);
- _signal_analysis_outputs.ensure_buffers( DataType::AUDIO, output_streams().n_audio(), nframes);
+ _signal_analysis_inputs.ensure_buffers( DataType::AUDIO, internal_input_streams().n_audio(), nframes);
+ _signal_analysis_outputs.ensure_buffers( DataType::AUDIO, internal_output_streams().n_audio(), nframes);
_signal_analysis_collected_nframes = 0;
_signal_analysis_collect_nframes_max = nframes;
void
PluginInsert::add_plugin (boost::shared_ptr<Plugin> plugin)
{
- plugin->set_insert_info (this);
-
+ plugin->set_insert_id (this->id());
+
if (_plugins.empty()) {
- /* first (and probably only) plugin instance - connect to relevant signals
+ /* first (and probably only) plugin instance - connect to relevant signals
*/
- plugin->ParameterChanged.connect_same_thread (*this, boost::bind (&PluginInsert::parameter_changed, this, _1, _2));
+ plugin->ParameterChangedExternally.connect_same_thread (*this, boost::bind (&PluginInsert::parameter_changed_externally, this, _1, _2));
plugin->StartTouch.connect_same_thread (*this, boost::bind (&PluginInsert::start_touch, this, _1));
plugin->EndTouch.connect_same_thread (*this, boost::bind (&PluginInsert::end_touch, this, _1));
}