annotate garage-resampler/Resampler.h @ 4:1c3ab56ee9b5

More resampler fixes (particularly to latency calculation) and tests
author Chris Cannam
date Mon, 14 Oct 2013 16:15:32 +0100
parents bda8d2e803ee
children 94c1cadc6caf
rev   line source
Chris@0 1 /* -*- c-basic-offset: 4 indent-tabs-mode: nil -*- vi:set ts=8 sts=4 sw=4: */
Chris@0 2
Chris@0 3 #ifndef RESAMPLER_H
Chris@0 4 #define RESAMPLER_H
Chris@0 5
Chris@0 6 #include <vector>
Chris@0 7
Chris@0 8 class Resampler
Chris@0 9 {
Chris@0 10 public:
Chris@0 11 /**
Chris@0 12 * Construct a Resampler to resample from sourceRate to
Chris@0 13 * targetRate.
Chris@0 14 */
Chris@0 15 Resampler(int sourceRate, int targetRate);
Chris@0 16 virtual ~Resampler();
Chris@0 17
Chris@0 18 /**
Chris@0 19 * Read n input samples from src and write resampled data to
Chris@0 20 * dst. The return value is the number of samples written, which
Chris@0 21 * will be no more than ceil((n * targetRate) / sourceRate). The
Chris@0 22 * caller must ensure the dst buffer has enough space for the
Chris@0 23 * samples returned.
Chris@0 24 */
Chris@0 25 int process(const double *src, double *dst, int n);
Chris@0 26
Chris@0 27 /**
Chris@0 28 * Return the number of samples of latency at the output due by
Chris@0 29 * the filter. (That is, the output will be delayed by this number
Chris@0 30 * of samples relative to the input.)
Chris@0 31 */
Chris@0 32 int getLatency() const { return m_latency; }
Chris@0 33
Chris@1 34 /**
Chris@1 35 * Carry out a one-off resample of a single block of n
Chris@1 36 * samples. The output is latency-compensated.
Chris@1 37 */
Chris@1 38 static std::vector<double> resample
Chris@1 39 (int sourceRate, int targetRate, const double *data, int n);
Chris@1 40
Chris@0 41 private:
Chris@0 42 int m_sourceRate;
Chris@0 43 int m_targetRate;
Chris@0 44 int m_gcd;
Chris@0 45 int m_filterLength;
Chris@0 46 int m_bufferLength;
Chris@0 47 int m_latency;
Chris@0 48
Chris@0 49 struct Phase {
Chris@0 50 int nextPhase;
Chris@0 51 std::vector<double> filter;
Chris@0 52 int drop;
Chris@0 53 };
Chris@0 54
Chris@0 55 Phase *m_phaseData;
Chris@0 56 int m_phase;
Chris@2 57 std::vector<double> m_buffer;
Chris@0 58
Chris@0 59 void initialise();
Chris@4 60 double reconstructOne();
Chris@0 61 };
Chris@0 62
Chris@0 63 #endif
Chris@0 64