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-rw-r--r--src/sample_selection.cc28
1 files changed, 14 insertions, 14 deletions
diff --git a/src/sample_selection.cc b/src/sample_selection.cc
index 92c4efc..1c35c87 100644
--- a/src/sample_selection.cc
+++ b/src/sample_selection.cc
@@ -171,14 +171,14 @@ const Sample* SampleSelection::getObjective(level_t level, std::size_t pos)
float value_opt{std::numeric_limits<float>::max()};
// the following three values are mostly for debugging
float random_opt = 0.;
- float distance_opt = 0.;
- float recent_opt = 0.;
+ float close_opt = 0.;
+ float diverse_opt = 0.;
DEBUG(rand, "level: %f, lvl: %f (mean: %.2f, stddev: %.2f,"
"power_min: %f, power_max: %f)\n", level, lvl, mean, stddev, power_min, power_max);
- const float f_distance = settings.sample_selection_f_distance.load();
- const float f_recent = settings.sample_selection_f_recent.load();
+ const float f_close = settings.sample_selection_f_close.load();
+ const float f_diverse = settings.sample_selection_f_diverse.load();
const float f_random = settings.sample_selection_f_random.load();
// start with most promising power value and then stop when reaching far values
@@ -186,8 +186,8 @@ const Sample* SampleSelection::getObjective(level_t level, std::size_t pos)
auto closest_it = std::lower_bound(samples.begin(), samples.end(), lvl);
std::size_t up_index = std::distance(samples.begin(), closest_it);
std::size_t down_index = (up_index == 0 ? 0 : up_index - 1);
- float up_value_lb = (up_index < samples.size() ? f_distance*pow2(samples[up_index].power-lvl) : std::numeric_limits<float>::max());
- float down_value_lb = (up_index != 0 ? f_distance*pow2(samples[down_index].power-lvl) : std::numeric_limits<float>::max());
+ float up_value_lb = (up_index < samples.size() ? f_close*pow2(samples[up_index].power-lvl) : std::numeric_limits<float>::max());
+ float down_value_lb = (up_index != 0 ? f_close*pow2(samples[down_index].power-lvl) : std::numeric_limits<float>::max());
std::size_t count = 0;
do
@@ -199,7 +199,7 @@ const Sample* SampleSelection::getObjective(level_t level, std::size_t pos)
if (up_index != samples.size()-1)
{
++up_index;
- up_value_lb = f_distance*pow2(samples[up_index].power-lvl);
+ up_value_lb = f_close*pow2(samples[up_index].power-lvl);
}
else
{
@@ -212,7 +212,7 @@ const Sample* SampleSelection::getObjective(level_t level, std::size_t pos)
if (down_index != 0)
{
--down_index;
- down_value_lb = f_distance*pow2(samples[down_index].power-lvl);
+ down_value_lb = f_close*pow2(samples[down_index].power-lvl);
}
else
{
@@ -221,9 +221,9 @@ const Sample* SampleSelection::getObjective(level_t level, std::size_t pos)
}
auto random = rand.floatInRange(0.,1.);
- auto distance = samples[current_index].power - lvl;
- auto recent = (float)settings.samplerate/std::max<std::size_t>(pos - last[current_index], 1);
- auto value = f_distance*pow2(distance) + f_recent*pow2(recent) + f_random*random;
+ auto close = samples[current_index].power - lvl;
+ auto diverse = (float)settings.samplerate/std::max<std::size_t>(pos - last[current_index], 1);
+ auto value = f_close*pow2(close) + f_diverse*pow2(diverse) + f_random*random;
if (value < value_opt)
{
@@ -231,14 +231,14 @@ const Sample* SampleSelection::getObjective(level_t level, std::size_t pos)
power_opt = samples[current_index].power;
value_opt = value;
random_opt = random;
- distance_opt = distance;
- recent_opt = recent;
+ close_opt = close;
+ diverse_opt = diverse;
}
++count;
}
while (up_value_lb <= value_opt || down_value_lb <= value_opt);
- DEBUG(rand, "Chose sample with index: %d, value: %f, power %f, random: %f, distance: %f, recent: %f, count: %d", (int)index_opt, value_opt, power_opt, random_opt, distance_opt, recent_opt, (int)count);
+ DEBUG(rand, "Chose sample with index: %d, value: %f, power %f, random: %f, close: %f, diverse: %f, count: %d", (int)index_opt, value_opt, power_opt, random_opt, close_opt, diverse_opt, (int)count);
last[index_opt] = pos;
return samples[index_opt].sample;