[dsp] housekeeping and out_frame
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1970b5c624
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2b807fd789
2 changed files with 33 additions and 15 deletions
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@ -6,28 +6,44 @@ namespace Ottobit
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{
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{
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void Senior::operator()(tick t)
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void Senior::operator()(tick t)
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{
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{
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// Only compute skipped_frames when the control changes
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// Only compute skipped_frames when control changes
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if (inputs.s_rate != previous_rate)
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if (inputs.s_rate != previous_rate)
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{
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{
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step_size = (1. - inputs.s_rate) * RATE;
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step_size = (1. - inputs.s_rate) * RATE;
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previous_rate = inputs.s_rate;
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previous_rate = inputs.s_rate;
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}
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}
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// Only compute bit_factor when the control changes
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if (inputs.bits != previous_bits)
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if (inputs.bits != previous_bits)
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{
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{
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set_bit_factor();
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set_bit_factor();
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previous_bits = inputs.bits;
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previous_bits = inputs.bits;
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}
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}
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if (inputs.depth != previous_depth ||
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inputs.am_fm != previous_am_fm)
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{
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if (inputs.am_fm < 1.f)
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am_amp = (inputs.am_fm * 0.5) + (inputs.depth * 0.5);
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else
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{
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am_amp = 2 - inputs.am_fm;
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fm_amp = inputs.am_fm - 1;
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}
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previous_depth = inputs.depth;
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previous_am_fm = inputs.am_fm;
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}
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// Process the input buffer
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// Process the input buffer
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for(int i{0}; i < inputs.audio.channels; i++)
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for(int i{0}; i < inputs.audio.channels; i++)
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{
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{
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auto* in = inputs.audio[i];
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auto* in = inputs.audio[i];
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auto* out = outputs.audio[i % outputs.audio.channels];
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auto* out = outputs.audio[i % outputs.audio.channels];
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// Init current_frame for each channel
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// Init current_frame and out_frame for each channel
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double current_frame{crush(in[i])};
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double current_frame{crush(in[0])};
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double out_frame{current_frame};
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for(int j{0}; j < t.frames; j++)
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for(int j{0}; j < t.frames; j++)
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{
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{
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@ -39,28 +55,25 @@ void Senior::operator()(tick t)
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current_frame = crush(in[j]);
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current_frame = crush(in[j]);
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}
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}
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if (!inputs.depth)
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if (inputs.depth)
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out[j] = current_frame;
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else
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{
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{
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lfo.set(inputs.freq, phases[i], 0);
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lfo.set(inputs.freq, phases[i], 0);
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if (inputs.am_fm < 1.f)
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if (inputs.am_fm < 1.f)
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{
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out_frame = current_frame * (lfo.cos() * am_amp + (1 - am_amp));
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double amp = (inputs.am_fm * 0.5) + (inputs.depth * 0.5);
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out[j] = current_frame * ((lfo.cos() * amp) + (1 - amp));
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}
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else
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else
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{
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{
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double amp = lfo.cos() * inputs.depth;
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double amp = lfo.cos() * inputs.depth;
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fms[i].delay(amp * .0025 + 1);
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fms[i].delay(amp * .0025 + 1);
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double am = current_frame * (amp + (1 - inputs.depth));
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double am = current_frame * (amp + 1 - inputs.depth);
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double fm = fms[i](current_frame);
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double fm = fms[i](current_frame);
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out[j] = (am * (2 - inputs.am_fm)) + (fm * (inputs.am_fm - 1));
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out_frame = am * am_amp + fm * fm_amp;
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}
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}
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phases[i] = lfo.phase();
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phases[i] = lfo.phase();
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}
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}
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out[j] = out_frame;
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}
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}
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}
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}
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}
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}
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@ -91,8 +91,13 @@ private:
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int bit_factor, step_size{0};
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int bit_factor, step_size{0};
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double previous_bits{BITS},
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double
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previous_rate{1};
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previous_bits{BITS},
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previous_rate{1},
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previous_depth{0},
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previous_am_fm{0},
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am_amp{0},
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fm_amp{0};
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std::vector<float> phases;
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std::vector<float> phases;
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std::vector<int> skipped_frames;
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std::vector<int> skipped_frames;
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