diff options
Diffstat (limited to 'src')
| -rw-r--r-- | src/DabMod.cpp | 14 | ||||
| -rw-r--r-- | src/Resampler.cpp | 4 | 
2 files changed, 16 insertions, 2 deletions
| diff --git a/src/DabMod.cpp b/src/DabMod.cpp index 301b078..4e4cdab 100644 --- a/src/DabMod.cpp +++ b/src/DabMod.cpp @@ -81,6 +81,11 @@   */  static const float normalise_factor = 50000.0f; +//Empirical normalisation factors used to normalise the samples to amplitude 1. +static const float normalise_factor_file_fix = 81000.0f; +static const float normalise_factor_file_var = 46000.0f; +static const float normalise_factor_file_max = 46000.0f; +  typedef std::complex<float> complexf;  using namespace std; @@ -183,6 +188,15 @@ static shared_ptr<ModOutput> prepare_output(          if (s.fileOutputFormat == "complexf") {              output = make_shared<OutputFile>(s.outputName);          } +        if (s.fileOutputFormat == "complexf_normalised") { +            if (s.gainMode == GainMode::GAIN_FIX) +                s.normalise = 1.0 / normalise_factor_file_fix; +            else if (s.gainMode == GainMode::GAIN_MAX) +                s.normalise = 1.0 / normalise_factor_file_max; +            else if (s.gainMode == GainMode::GAIN_VAR) +                s.normalise = 1.0 / normalise_factor_file_var; +            output = make_shared<OutputFile>(s.outputName); +        }          else if (s.fileOutputFormat == "s8") {              // We must normalise the samples to the interval [-127.0; 127.0]              s.normalise = 127.0f / normalise_factor; diff --git a/src/Resampler.cpp b/src/Resampler.cpp index ee2b865..8786e91 100644 --- a/src/Resampler.cpp +++ b/src/Resampler.cpp @@ -76,9 +76,9 @@ Resampler::Resampler(size_t inputRate, size_t outputRate, size_t resolution) :      PDEBUG(" FFT size in: %zu, FFT size out: %zu\n", myFftSizeIn, myFftSizeOut);      if (myFftSizeIn > myFftSizeOut) { -        myFactor = 1.0f / myFftSizeIn; +        myFactor = 1.0f / myFftSizeIn * outputRate / inputRate;      } else { -        myFactor = 1.0f / myFftSizeOut; +        myFactor = 1.0f / myFftSizeOut * outputRate / inputRate;      }      myWindow = (float*)memalign(16, myFftSizeIn * sizeof(float)); | 
