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-rw-r--r--src/sample_selection.cc104
1 files changed, 5 insertions, 99 deletions
diff --git a/src/sample_selection.cc b/src/sample_selection.cc
index 1c35c87..ce50cfa 100644
--- a/src/sample_selection.cc
+++ b/src/sample_selection.cc
@@ -37,12 +37,6 @@
namespace
{
-// Minimum sample set size.
-// Smaller means wider 'velocity groups'.
-// Limited by sample set size, ie. only kicks in if sample set size is smaller
-// than this number.
-std::size_t const MIN_SAMPLE_SET_SIZE = 26u;
-
float pow2(float f)
{
return f*f;
@@ -51,13 +45,8 @@ float pow2(float f)
} // end anonymous namespace
SampleSelection::SampleSelection(Settings& settings, Random& rand, const PowerList& powerlist)
- : settings(settings), rand(rand), powerlist(powerlist), alg(SelectionAlg::Objective)
-{
-}
-
-void SampleSelection::setSelectionAlg(SelectionAlg alg)
+ : settings(settings), rand(rand), powerlist(powerlist)
{
- this->alg = alg;
}
void SampleSelection::finalise()
@@ -67,90 +56,6 @@ void SampleSelection::finalise()
const Sample* SampleSelection::get(level_t level, std::size_t pos)
{
- // TODO: switch objective to default at some point
- switch (alg)
- {
- case SelectionAlg::Objective:
- return getObjective(level, pos);
- break;
- case SelectionAlg::Old:
- default:
- return getOld(level, pos);
- }
-}
-
-// FIXME: remove before release and adapt everything
-const Sample* SampleSelection::getOld(level_t level, std::size_t pos)
-{
- auto velocity_stddev = settings.velocity_stddev.load();
-
- const auto& samples = powerlist.getPowerListItems();
- if(!samples.size())
- {
- return nullptr; // No samples to choose from.
- }
-
- int retry = settings.sample_selection_retry_count.load();
-
- Sample* sample{nullptr};
-
- auto power_max = powerlist.getMaxPower();
- auto power_min = powerlist.getMinPower();
- float power_span = power_max - power_min;
-
- // Width is limited to at least 10. Fixes problem with instrument with a
- // sample set smaller than MIN_SAMPLE_SET_SIZE.
- float width = std::max(samples.size(), MIN_SAMPLE_SET_SIZE);
-
- // Spread out at most ~2 samples away from center if all samples have a
- // uniform distribution over the power spectrum (which they probably don't).
- float mean_stepwidth = power_span / width;
-
- // Cut off mean value with stddev/2 in both ends in order to make room for
- // downwards expansion on velocity 0 and upwards expansion on velocity 1.
- float mean = level * (power_span - mean_stepwidth) + (mean_stepwidth / 2.0);
- float stddev = velocity_stddev * mean_stepwidth;
-
- std::size_t index{0};
- float power{0.f};
-
- // note: loop is executed once + #retry
- do
- {
- --retry;
-
- // Select normal distributed value between
- // (stddev/2) and (power_span-stddev/2)
- float lvl = rand.normalDistribution(mean, stddev);
-
- // Adjust this value to be in range
- // (power_min+stddev/2) and (power_max-stddev/2)
- lvl += power_min;
-
- DEBUG(rand,
- "level: %f, lvl: %f (mean: %.2f, stddev: %.2f, mean_stepwidth: %f, power_min: %f, power_max: %f)\n",
- level, lvl, mean, stddev, mean_stepwidth, power_min, power_max);
-
- for (std::size_t i = 0; i < samples.size(); ++i)
- {
- auto const& item = samples[i];
- if (sample == nullptr || std::fabs(item.power - lvl) < std::fabs(power - lvl))
- {
- sample = item.sample;
- index = i;
- power = item.power;
- }
- }
- } while (lastsample == sample && retry >= 0);
-
- DEBUG(rand, "Chose sample with index: %d, power %f", (int)index, power);
-
- lastsample = sample;
- return sample;
-}
-
-const Sample* SampleSelection::getObjective(level_t level, std::size_t pos)
-{
const auto& samples = powerlist.getPowerListItems();
if(!samples.size())
{
@@ -162,9 +67,9 @@ const Sample* SampleSelection::getObjective(level_t level, std::size_t pos)
float power_span = power_max - power_min;
float mean = level - .5f/127.f; // XXX: this should actually be done when reading the events
- float stddev = settings.enable_velocity_modifier.load() ?
- settings.velocity_stddev.load()/127.0f : 0.;
- float lvl = power_min + rand.normalDistribution(mean, stddev)*power_span;
+ float stddev = settings.velocity_stddev.load();
+ // the 20.0f we determined empirically
+ float lvl = power_min + rand.normalDistribution(mean, stddev / 20.0f) * power_span;
std::size_t index_opt = 0;
float power_opt{0.f};
@@ -242,4 +147,5 @@ const Sample* SampleSelection::getObjective(level_t level, std::size_t pos)
last[index_opt] = pos;
return samples[index_opt].sample;
+
}