Reduce CPU usage of the frequency spectrum visualizer
This commit is contained in:
@@ -7,6 +7,7 @@
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* Draw a separator between albums with the same name, but a different artist.
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* Suppress output of all external commands.
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* Consider mouse support when pausing and unpausing curses interface.
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* Reduce CPU usage of the frequency spectrum visualizer.
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# ncmpcpp-0.9 (2020-12-20)
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* Fix various Mopidy specific bugs.
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24
configure.ac
24
configure.ac
@@ -26,6 +26,30 @@ if test "$clock" = "yes"; then
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AC_DEFINE([ENABLE_CLOCK], [1], [enables clock screen])
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fi
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# -ftree-vectorize
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AC_MSG_CHECKING([whether compiler supports -ftree-vectorize])
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old_CXXFLAGS="$CXXFLAGS"
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CXXFLAGS="-ftree-vectorize"
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AC_COMPILE_IFELSE([AC_LANG_PROGRAM([[ ]])],
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AC_MSG_RESULT([yes])
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tree_vectorize="-ftree-vectorize",
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AC_MSG_RESULT([no])
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tree_vectorize=""
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)
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CXXFLAGS="$old_CXXFLAGS $tree_vectorize"
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# -ffast-math
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AC_MSG_CHECKING([whether compiler supports -ffast-math])
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old_CXXFLAGS="$CXXFLAGS"
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CXXFLAGS="-ffast-math"
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AC_COMPILE_IFELSE([AC_LANG_PROGRAM([[ ]])],
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AC_MSG_RESULT([yes])
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fast_math="-ffast-math",
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AC_MSG_RESULT([no])
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fast_math=""
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)
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CXXFLAGS="$old_CXXFLAGS $fast_math"
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# -std=c++14
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AC_MSG_CHECKING([whether compiler supports -std=c++14])
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old_CXXFLAGS="$CXXFLAGS"
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@@ -127,7 +127,7 @@
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## visualizer look at a larger slice of time, which results in less jumpy
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## visualizer output.
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#
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#visualizer_spectrum_dft_size = 3
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#visualizer_spectrum_dft_size = 2
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#
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#visualizer_spectrum_gain = 10
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#
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@@ -77,8 +77,8 @@ Visualizer::Visualizer()
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, m_sample_consumption_rate_dn_ctr(0)
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# ifdef HAVE_FFTW3_H
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,
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DFT_NONZERO_SIZE(1 << Config.visualizer_spectrum_dft_size),
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DFT_TOTAL_SIZE(1 << (Config.visualizer_spectrum_dft_size + 2)),
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DFT_NONZERO_SIZE(2048 * (2*Config.visualizer_spectrum_dft_size + 4)),
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DFT_TOTAL_SIZE(1 << 15),
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DYNAMIC_RANGE(100-Config.visualizer_spectrum_gain),
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HZ_MIN(Config.visualizer_spectrum_hz_min),
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HZ_MAX(Config.visualizer_spectrum_hz_max),
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@@ -206,7 +206,7 @@ void Visualizer::update()
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}
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else if (m_sample_consumption_rate > 0)
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{
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if (++m_sample_consumption_rate_dn_ctr > 2)
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if (++m_sample_consumption_rate_dn_ctr > 4)
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{
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m_sample_consumption_rate_dn_ctr = 0;
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--m_sample_consumption_rate;
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@@ -489,7 +489,7 @@ void Visualizer::DrawFrequencySpectrum(const int16_t *buf, ssize_t samples, size
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for (size_t x = 0; x < win_width; ++x)
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{
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const size_t &i = m_bar_heights[h_idx].first;
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const double &bar_height = m_bar_heights[h_idx].second;
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const double bar_height = m_bar_heights[h_idx].second;
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double h = 0;
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if (x == i) {
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@@ -547,33 +547,33 @@ void Visualizer::DrawFrequencySpectrumStereo(const int16_t *buf_left, const int1
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double Visualizer::Interpolate(size_t x, size_t h_idx)
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{
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const double &x_next = m_bar_heights[h_idx].first;
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const double &h_next = m_bar_heights[h_idx].second;
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const double x_next = m_bar_heights[h_idx].first;
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const double h_next = m_bar_heights[h_idx].second;
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double dh = 0;
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if (h_idx == 0) {
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// no data points on left, linear extrap
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if (h_idx < m_bar_heights.size()-1) {
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const double &x_next2 = m_bar_heights[h_idx+1].first;
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const double &h_next2 = m_bar_heights[h_idx+1].second;
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const double x_next2 = m_bar_heights[h_idx+1].first;
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const double h_next2 = m_bar_heights[h_idx+1].second;
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dh = (h_next2 - h_next) / (x_next2 - x_next);
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}
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return h_next - dh*(x_next-x);
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} else if (h_idx == 1) {
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// one data point on left, linear interp
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const double &x_prev = m_bar_heights[h_idx-1].first;
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const double &h_prev = m_bar_heights[h_idx-1].second;
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const double x_prev = m_bar_heights[h_idx-1].first;
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const double h_prev = m_bar_heights[h_idx-1].second;
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dh = (h_next - h_prev) / (x_next - x_prev);
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return h_next - dh*(x_next-x);
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} else if (h_idx < m_bar_heights.size()-1) {
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// two data points on both sides, cubic interp
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// see https://en.wikipedia.org/wiki/Cubic_Hermite_spline#Interpolation_on_an_arbitrary_interval
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const double &x_prev2 = m_bar_heights[h_idx-2].first;
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const double &h_prev2 = m_bar_heights[h_idx-2].second;
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const double &x_prev = m_bar_heights[h_idx-1].first;
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const double &h_prev = m_bar_heights[h_idx-1].second;
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const double &x_next2 = m_bar_heights[h_idx+1].first;
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const double &h_next2 = m_bar_heights[h_idx+1].second;
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const double x_prev2 = m_bar_heights[h_idx-2].first;
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const double h_prev2 = m_bar_heights[h_idx-2].second;
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const double x_prev = m_bar_heights[h_idx-1].first;
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const double h_prev = m_bar_heights[h_idx-1].second;
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const double x_next2 = m_bar_heights[h_idx+1].first;
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const double h_next2 = m_bar_heights[h_idx+1].second;
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const double m0 = (h_prev - h_prev2) / (x_prev - x_prev2);
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const double m1 = (h_next2 - h_next) / (x_next2 - x_next);
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@@ -272,10 +272,10 @@ bool Configuration::read(const std::vector<std::string> &config_paths, bool igno
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p.add("visualizer_autoscale", &visualizer_autoscale, "no", yes_no);
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p.add("visualizer_spectrum_smooth_look", &visualizer_spectrum_smooth_look, "yes", yes_no);
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p.add("visualizer_spectrum_dft_size", &visualizer_spectrum_dft_size,
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"3", [](std::string v) {
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"2", [](std::string v) {
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auto result = verbose_lexical_cast<size_t>(v);
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boundsCheck<size_t>(result, 1, 5);
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return result + 11;
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return result;
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});
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p.add("visualizer_spectrum_gain", &visualizer_spectrum_gain,
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"10", [](std::string v) {
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