Reusable C++ DSP code library
  • C++ 99.7%
  • Makefile 0.3%
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2018-09-20 08:45:26 +02:00
tests moved crc and xorshift from DSP to CODE repository 2018-09-20 08:45:26 +02:00
.gitignore Initial commit 2018-03-02 14:04:46 +01:00
complex.hh overwrite members directly here 2018-08-27 14:04:39 +02:00
const.hh constexpr implies inline on functions 2018-08-30 08:40:20 +02:00
fft.hh added mixed-radix fast Fourier transform 2018-08-25 12:22:58 +02:00
kahan.hh added same() method to Kahan summation 2018-03-03 12:14:22 +01:00
LICENSE Initial commit 2018-03-02 14:04:46 +01:00
pcm.hh added rate() and channels() to pcm writer interface 2018-09-12 14:43:22 +02:00
README.md moved crc and xorshift from DSP to CODE repository 2018-09-20 08:45:26 +02:00
regression.hh add default constructor 2018-08-19 15:45:00 +02:00
resampler.hh added an resampler for arbitrary rate differences 2018-09-13 11:33:10 +02:00
spline.hh give it a default constructor 2018-08-27 22:53:11 +02:00
utils.hh added lerp function 2018-09-11 08:09:29 +02:00
wav.hh added rate() and channels() to pcm writer interface 2018-09-12 14:43:22 +02:00
window.hh added a divisor argument with default 1 to normalize() 2018-04-11 14:48:02 +02:00

This is a work in progress and a long overdue attempt to bring all our DSP code together and make it reusable for our future projects.

Before using any of this you should enter the tests directory and execute "make". This will check if your compiler is able to create binaries that are able to produce correct results when executed.

What we have included so far:

kahan.hh

When working with Floating-point arithmetic we soon realize, that addition is not necessarily associative. For example, whenever we need to add values with an ever decreasing magnitude to a running sum with an ever increasing magnitude, the Kahan summation algorithm comes in handy and helps keeping the error growth small.

window.hh

Implemented are the follwing Window functions:

const.hh

Some constants we need

pcm.hh

Interface for reading and writing PCM data

wav.hh

Read and write WAV files

spline.hh

Algorithm for computing uniform and natural cubic splines Very useful for data interpolation.

regression.hh

Implemented Simple linear regression for Regression analysis of data.

complex.hh

Faster alternative (no Inf/NaN handling) to the std::complex implementation.

fft.hh

Mixed-radix decimation-in-time fast Fourier transform

utils.hh

Some everyday helpers, like the signum function or the lerp function.

resampler.hh

When working with Analog-to-digital and Digital-to-analog converters, we often face the ugly truth, that we can't always have a precise Sampling rate. But if we can estimate the Sampling frequency offset, we can correct it by Resampling the sampled data.