return pip->n_inputs.n_midi() != 0 && pip->n_outputs.n_audio() != 0;
}
+bool
+PluginInsert::has_output_presets (ChanCount in, ChanCount out)
+{
+ if (!_configured && _plugins[0]->get_info ()->reconfigurable_io ()) {
+ // collect possible configurations, prefer given in/out
+ _plugins[0]->can_support_io_configuration (in, out);
+ }
+
+ PluginOutputConfiguration ppc (_plugins[0]->possible_output ());
+
+ if (ppc.size () == 0) {
+ return false;
+ }
+ if (!strict_io () && ppc.size () == 1) {
+ return false;
+ }
+
+ if (strict_io () && ppc.size () == 1) {
+ // "stereo" is currently preferred default for instruments
+ if (ppc.find (2) != ppc.end ()) {
+ return false;
+ }
+ }
+ if (!needs_midi_input ()) {
+ return false;
+ }
+ return true;
+}
+
void
PluginInsert::create_automatable_parameters ()
{
}
}
+void
+PluginInsert::inplace_silence_unconnected (BufferSet& bufs, const PinMappings& out_map, framecnt_t nframes, framecnt_t offset) const
+{
+ // 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;
+ if (*t == DataType::MIDI && out == 0 && has_midi_bypass ()) {
+ mapped = true; // in-place Midi bypass
+ }
+ for (uint32_t pc = 0; pc < get_count() && !mapped; ++pc) {
+ PinMappings::const_iterator i = out_map.find (pc);
+ if (i == out_map.end ()) {
+ continue;
+ }
+ const ChanMapping& outmap (i->second);
+ for (uint32_t o = 0; o < natural_output_streams().get (*t); ++o) {
+ bool valid;
+ uint32_t idx = outmap.get (*t, o, &valid);
+ if (valid && idx == out) {
+ mapped = true;
+ break;
+ }
+ }
+ }
+ if (!mapped) {
+ bufs.get (*t, out).silence (nframes, offset);
+ }
+ }
+ }
+}
+
void
PluginInsert::connect_and_run (BufferSet& bufs, pframes_t nframes, framecnt_t offset, bool with_auto, framepos_t now)
{
//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(internal_input_streams());
+ _signal_analysis_inputs.set_count(input_streams());
- for (uint32_t i = 0; i < internal_input_streams().n_audio(); ++i) {
- _signal_analysis_inputs.get_audio(i).read_from(
+ for (uint32_t i = 0; i < input_streams().n_audio(); ++i) {
+ _signal_analysis_inputs.get_audio(i).read_from (
bufs.get_audio(i),
collect_signal_nframes,
_signal_analysis_collected_nframes); // offset is for target buffer
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;
- if (*t == DataType::MIDI && out == 0 && has_midi_bypass ()) {
- mapped = true; // in-place Midi bypass
- }
- 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);
- }
- }
- }
+ // now silence unconnected outputs
+ inplace_silence_unconnected (bufs, _out_map, nframes, offset);
}
if (collect_signal_nframes > 0) {
//std::cerr << " output, bufs " << bufs.count().n_audio() << " count, " << bufs.available().n_audio() << " available" << std::endl;
//std::cerr << " streams " << internal_output_streams().n_audio() << std::endl;
- _signal_analysis_outputs.set_count(internal_output_streams());
+ _signal_analysis_outputs.set_count(output_streams());
- for (uint32_t i = 0; i < internal_output_streams().n_audio(); ++i) {
+ for (uint32_t i = 0; i < output_streams().n_audio(); ++i) {
_signal_analysis_outputs.get_audio(i).read_from(
bufs.get_audio(i),
collect_signal_nframes,
}
}
+void
+PluginInsert::bypass (BufferSet& bufs, pframes_t nframes)
+{
+ /* bypass the plugin(s) not the whole processor.
+ * -> use mappings just like connect_and_run
+ */
+
+ // TODO: atomically copy maps & _no_inplace
+ ChanMapping in_map (input_map ());
+ ChanMapping out_map (output_map ());
+ if (_mapping_changed) {
+ _no_inplace = check_inplace ();
+ _mapping_changed = false;
+ }
+
+ bufs.set_count(ChanCount::max(bufs.count(), _configured_internal));
+ bufs.set_count(ChanCount::max(bufs.count(), _configured_out));
+
+ if (_no_inplace) {
+ ChanMapping thru_map (_thru_map);
+
+ BufferSet& inplace_bufs = _session.get_noinplace_buffers();
+ // copy all inputs
+ for (DataType::iterator t = DataType::begin(); t != DataType::end(); ++t) {
+ for (uint32_t in = 0; in < _configured_internal.get (*t); ++in) {
+ inplace_bufs.get (*t, in).read_from (bufs.get (*t, in), nframes, 0, 0);
+ }
+ }
+ ARDOUR::ChanMapping used_outputs;
+ // copy thru
+ for (DataType::iterator t = DataType::begin(); t != DataType::end(); ++t) {
+ for (uint32_t out = 0; out < _configured_out.get (*t); ++out) {
+ bool valid;
+ uint32_t in_idx = thru_map.get (*t, out, &valid);
+ if (valid) {
+ bufs.get (*t, out).read_from (inplace_bufs.get (*t, in_idx), nframes, 0, 0);
+ used_outputs.set (*t, out, 1); // mark as used
+ }
+ }
+ }
+ // plugin no-op: assume every plugin has an internal identity map
+ for (DataType::iterator t = DataType::begin(); t != DataType::end(); ++t) {
+ for (uint32_t out = 0; out < _configured_out.get (*t); ++out) {
+ bool valid;
+ uint32_t src_idx = out_map.get_src (*t, out, &valid);
+ if (!valid) {
+ continue;
+ }
+ uint32_t in_idx = in_map.get (*t, src_idx, &valid);
+ if (!valid) {
+ continue;
+ }
+ bufs.get (*t, out).read_from (inplace_bufs.get (*t, in_idx), nframes, 0, 0);
+ used_outputs.set (*t, out, 1); // mark as used
+ }
+ }
+ // now silence all unused outputs
+ if (has_midi_bypass ()) {
+ used_outputs.set (DataType::MIDI, 0, 1); // Midi bypass.
+ }
+ for (DataType::iterator t = DataType::begin(); t != DataType::end(); ++t) {
+ for (uint32_t out = 0; out < _configured_out.get (*t); ++out) {
+ bool valid;
+ used_outputs.get (*t, out, &valid);
+ if (!valid) {
+ bufs.get (*t, out).silence (nframes, 0);
+ }
+ }
+ }
+ } else {
+ if (_match.method == Split) {
+ for (DataType::iterator t = DataType::begin(); t != DataType::end(); ++t) {
+ if (_configured_internal.get (*t) == 0) {
+ continue;
+ }
+ // copy/feeds _all_ *connected* inputs, copy the first buffer
+ bool valid;
+ uint32_t first_idx = in_map.get (*t, 0, &valid);
+ assert (valid && first_idx == 0); // check_inplace ensures this
+ for (uint32_t i = 1; i < natural_input_streams ().get (*t); ++i) {
+ uint32_t idx = in_map.get (*t, i, &valid);
+ if (valid) {
+ assert (idx == 0);
+ bufs.get (*t, i).read_from (bufs.get (*t, first_idx), nframes, 0, 0);
+ }
+ }
+ }
+ }
+
+ // apply output map and/or monotonic but not identity i/o mappings
+ for (DataType::iterator t = DataType::begin(); t != DataType::end(); ++t) {
+ for (uint32_t out = 0; out < _configured_out.get (*t); ++out) {
+ bool valid;
+ uint32_t src_idx = out_map.get_src (*t, out, &valid);
+ if (!valid) {
+ bufs.get (*t, out).silence (nframes, 0);
+ continue;
+ }
+ uint32_t in_idx = in_map.get (*t, src_idx, &valid);
+ if (!valid) {
+ bufs.get (*t, out).silence (nframes, 0);
+ continue;
+ }
+ if (in_idx != src_idx) {
+ bufs.get (*t, out).read_from (bufs.get (*t, in_idx), nframes, 0, 0);
+ }
+ }
+ }
+ }
+}
+
void
PluginInsert::silence (framecnt_t nframes)
{
}
} else {
- // TODO use mapping in bypassed mode ?!
- // -> do we bypass the processor or the plugin
-
- // TODO include sidechain??
-
- uint32_t in = input_streams ().n_audio ();
- uint32_t out = output_streams().n_audio ();
-
- if (has_no_audio_inputs() || in == 0) {
-
- /* silence all (audio) outputs. Should really declick
- * at the transitions of "active"
- */
-
- for (uint32_t n = 0; n < out; ++n) {
- bufs.get_audio (n).silence (nframes);
- }
-
- } else if (out > in) {
-
- /* 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);
- }
- }
-
- bufs.count().set_audio (out);
+ bypass (bufs, nframes);
+ _delaybuffers.flush ();
}
_active = _pending_active;
}
}
+bool
+PluginInsert::pre_seed (const ChanCount& in, const ChanCount& out,
+ const ChanMapping& im, const ChanMapping& om, const ChanMapping& tm)
+{
+ if (_configured) { return false; }
+ _configured_in = in;
+ _configured_out = out;
+ _in_map[0] = im;
+ _out_map[0] = om;
+ _thru_map = tm;
+ _maps_from_state = in.n_total () > 0 && out.n_total () > 0;
+ return true;
+}
+
ChanMapping
PluginInsert::input_map () const
{
inplace_ok = false;
}
}
+
+ if (inplace_ok) {
+ /* check if every output is fed by the corresponding input
+ *
+ * this prevents in-port 1 -> sink-pin 2 || source-pin 1 -> out port 1, source-pin 2 -> out port 2
+ * (with in-place, source-pin 1 -> out port 1 overwrites in-port 1)
+ *
+ * but allows in-port 1 -> sink-pin 2 || source-pin 2 -> out port 1
+ */
+ ChanMapping in_map (input_map ());
+ const ChanMapping::Mappings out_m (output_map ().mappings ());
+ for (ChanMapping::Mappings::const_iterator t = out_m.begin (); t != out_m.end () && inplace_ok; ++t) {
+ for (ChanMapping::TypeMapping::const_iterator c = (*t).second.begin (); c != (*t).second.end () ; ++c) {
+ /* src-pin: c->first, out-port: c->second */
+ bool valid;
+ uint32_t in_port = in_map.get (t->first, c->first, &valid);
+ if (valid && in_port != c->second) {
+ inplace_ok = false;
+ break;
+ }
+ }
+ }
+ }
+
DEBUG_TRACE (DEBUG::ChanMapping, string_compose ("%1: %2\n", name(), inplace_ok ? "In-Place" : "No Inplace Processing"));
return !inplace_ok; // no-inplace
}
// buffers and the analyser makes sure it gets enough data for the
// analysis window
session().ensure_buffer_set (_signal_analysis_inputs, in);
- //_signal_analysis_inputs.set_count (in);
+ _signal_analysis_inputs.set_count (in);
session().ensure_buffer_set (_signal_analysis_outputs, out);
- //_signal_analysis_outputs.set_count (out);
+ _signal_analysis_outputs.set_count (out);
// std::cerr << "set counts to i" << in.n_audio() << "/o" << out.n_audio() << std::endl;
// houston, we have a problem.
return Match (Impossible, 0);
}
+ // midi bypass
+ if (inx.n_midi () > 0 && out.n_midi () == 0) { out.set (DataType::MIDI, 1); }
return Match (Delegate, 1, _strict_io);
}
if (!r) {
return Match (Impossible, 0);
}
+ // midi bypass
+ if (in.n_midi () > 0 && out.n_midi () == 0) { out.set (DataType::MIDI, 1); }
return Match (Delegate, 1);
}
{
// 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, internal_input_streams().n_audio(), nframes);
- _signal_analysis_outputs.ensure_buffers( DataType::AUDIO, internal_output_streams().n_audio(), nframes);
+ _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_collected_nframes = 0;
_signal_analysis_collect_nframes_max = nframes;