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voice-cat/tests/test_opus_codec.cpp

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/*
* test_opus_codec Opus encode/decode round-trip, PLC, energy check.
*
* Requires VOICECAT_HAS_OPUS (dev and release presets).
*/
#include <cmath>
#include <cstdio>
#include <cstring>
#include <vector>
#include "codec/opus_codec.h"
namespace vc_codec = voicecat::codec;
static int g_failures = 0;
#define CHECK(cond) \
do { if (!(cond)) { \
std::printf("FAIL [%s:%d]: %s\n", __FILE__, __LINE__, #cond); \
++g_failures; \
}} while (0)
#ifndef VOICECAT_HAS_OPUS
int main() {
std::printf("opus_codec: VOICECAT_HAS_OPUS not defined — skipped\n");
return 0;
}
#else
static constexpr int kSampleRate = 48000;
static constexpr int kFrameMs = 20;
static constexpr int kFrameSamples = kSampleRate / 1000 * kFrameMs; // 960
// Generate one frame of 440 Hz sine wave at 16-bit mono, 48 kHz.
static std::vector<int16_t> make_sine_frame(int samples, float freq = 440.0f) {
std::vector<int16_t> pcm(samples);
for (int i = 0; i < samples; ++i) {
float t = static_cast<float>(i) / kSampleRate;
pcm[i] = static_cast<int16_t>(std::sin(2.0f * 3.14159265f * freq * t) * 16000.0f);
}
return pcm;
}
// Compute RMS energy of a PCM buffer.
static double rms(const int16_t* pcm, int n) {
double sum = 0.0;
for (int i = 0; i < n; ++i) sum += static_cast<double>(pcm[i]) * pcm[i];
return std::sqrt(sum / n);
}
static void test_encode_decode_round_trip() {
vc_codec::OpusParams p;
p.sample_rate = kSampleRate;
p.frame_ms = kFrameMs;
p.fec = true;
vc_codec::OpusEncoder enc;
vc_codec::OpusDecoder dec;
CHECK(enc.init(p));
CHECK(dec.init(p));
auto src = make_sine_frame(kFrameSamples);
uint8_t encoded[4000];
int enc_bytes = enc.encode(src.data(), kFrameSamples, encoded, sizeof(encoded));
CHECK(enc_bytes > 0);
CHECK(enc_bytes < 1000); // Opus at 24 kbps/20 ms ≈ 60 bytes, well under 1000
std::vector<int16_t> decoded(kFrameSamples);
int dec_samples = dec.decode(encoded, enc_bytes, decoded.data(), kFrameSamples);
CHECK(dec_samples == kFrameSamples);
// Energy check: decoded RMS should be within 3 dB of original (Opus is lossy).
double rms_src = rms(src.data(), kFrameSamples);
double rms_dec = rms(decoded.data(), dec_samples);
CHECK(rms_src > 0.0);
CHECK(rms_dec > 0.0);
double ratio_db = 20.0 * std::log10(rms_dec / rms_src);
std::printf(" opus round-trip: enc_bytes=%d dec_samples=%d rms_ratio_db=%.1f\n",
enc_bytes, dec_samples, ratio_db);
CHECK(std::abs(ratio_db) < 3.0);
enc.destroy();
dec.destroy();
}
static void test_plc() {
vc_codec::OpusParams p;
p.sample_rate = kSampleRate;
p.frame_ms = kFrameMs;
vc_codec::OpusDecoder dec;
CHECK(dec.init(p));
// First send a real packet so the decoder has state for PLC.
vc_codec::OpusEncoder enc;
CHECK(enc.init(p));
auto src = make_sine_frame(kFrameSamples);
uint8_t encoded[4000];
int enc_bytes = enc.encode(src.data(), kFrameSamples, encoded, sizeof(encoded));
CHECK(enc_bytes > 0);
std::vector<int16_t> real_out(kFrameSamples);
int r = dec.decode(encoded, enc_bytes, real_out.data(), kFrameSamples);
CHECK(r == kFrameSamples);
// Now simulate packet loss with PLC (nullptr, len=0).
std::vector<int16_t> plc_out(kFrameSamples, 0);
int plc_samples = dec.decode(nullptr, 0, plc_out.data(), kFrameSamples);
CHECK(plc_samples == kFrameSamples);
// PLC output should not be silent (Opus extrapolates from previous frame).
double plc_rms = rms(plc_out.data(), kFrameSamples);
std::printf(" plc_rms=%.1f (should be > 0)\n", plc_rms);
CHECK(plc_rms > 0.0);
enc.destroy();
dec.destroy();
}
static void test_frame_samples_helper() {
vc_codec::OpusParams p;
p.sample_rate = 48000;
p.frame_ms = 20;
CHECK(vc_codec::opus_frame_samples(p) == 960);
p.frame_ms = 10;
CHECK(vc_codec::opus_frame_samples(p) == 480);
p.frame_ms = 40;
CHECK(vc_codec::opus_frame_samples(p) == 1920);
}
int main() {
test_frame_samples_helper();
test_encode_decode_round_trip();
test_plc();
if (g_failures == 0) {
std::printf("opus_codec: all tests passed\n");
return 0;
}
std::printf("opus_codec: %d test(s) FAILED\n", g_failures);
return 1;
}
#endif // VOICECAT_HAS_OPUS