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load_wav.cpp
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load_wav.cpp
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#include "load_wav.hpp"
#include <SDL.h>
#include <iostream>
#include <cassert>
#include <algorithm>
constexpr uint32_t AUDIO_RATE = 48000;
void load_wav(std::string const &filename, std::vector< float > *data_) {
assert(data_);
auto &data = *data_;
SDL_AudioSpec audio_spec;
Uint8 *audio_buf = nullptr;
Uint32 audio_len = 0;
SDL_AudioSpec *have = SDL_LoadWAV(filename.c_str(), &audio_spec, &audio_buf, &audio_len);
if (!have) {
throw std::runtime_error("Failed to load WAV file '" + filename + "'; SDL says \"" + std::string(SDL_GetError()) + "\"");
}
//based on the SDL_AudioCVT example in the docs: https://wiki.libsdl.org/SDL_AudioCVT
SDL_AudioCVT cvt;
SDL_BuildAudioCVT(&cvt, have->format, have->channels, have->freq, AUDIO_F32SYS, 1, AUDIO_RATE);
if (cvt.needed) {
std::cout << "WAV file '" + filename + "' didn't load as " + std::to_string(AUDIO_RATE) + " Hz, float32, mono; converting." << std::endl;
cvt.len = audio_len;
cvt.buf = (Uint8 *)SDL_malloc(cvt.len * cvt.len_mult);
SDL_memcpy(cvt.buf, audio_buf, audio_len);
SDL_ConvertAudio(&cvt);
int final_size = cvt.len_cvt;
assert(final_size >= 0 && final_size <= cvt.len * cvt.len_mult && "Converted audio should fit in buffer.");
assert(final_size % 4 == 0 && "Converted audio should consist of 4-byte elements.");
data.assign(reinterpret_cast< float * >(cvt.buf), reinterpret_cast< float * >(cvt.buf + final_size));
SDL_free(cvt.buf);
} else {
data.assign(reinterpret_cast< float * >(audio_buf), reinterpret_cast< float * >(audio_buf + audio_len));
}
SDL_FreeWAV(audio_buf);
float min = 0.0f;
float max = 0.0f;
for (auto d : data) {
min = std::min(min, d);
max = std::max(max, d);
}
std::cout << "Range: " << min << ", " << max << std::endl;
}