120 lines
4.9 KiB
C++
120 lines
4.9 KiB
C++
// Standalone tests for reasampler::vst::master_gain — no VST3, no REAPER, no framework. Same
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// fast assert loop as the sibling pure tests. Assert the FB1 post-mixer gain taper HARD:
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//
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// * -inf bottom — norm 0 maps to -infinity dB and TRUE ZERO linear (silence, not an epsilon);
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// linear <= 0 maps back to norm 0.
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// * endpoints — norm 1 = +24 dB = masterGainMaxLinear() (~15.849); the finite floor at -60 dB.
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// * unity — 0 dB round-trips exactly through norm<->dB<->linear (the knob's unity detent
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// position 60/84 of the travel).
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// * monotonicity — more norm never means less gain.
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// * label — "-inf" at the bottom, signed one-decimal dB elsewhere.
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#include "../src/vst/master_gain.h"
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#include <cmath>
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#include <cstdio>
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#include <cstring>
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using namespace reasampler::vst;
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static int g_fail = 0;
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#define CHECK(cond) do { if(!(cond)) { \
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std::printf("FAIL line %d: %s\n", __LINE__, #cond); ++g_fail; } } while(0)
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static bool near(double a, double b, double eps = 1e-9) { return std::fabs(a - b) <= eps; }
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static void testBottomIsTrueSilence() {
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CHECK(std::isinf(masterGainDbFromNorm(0.0)) && masterGainDbFromNorm(0.0) < 0.0);
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CHECK(masterGainLinearFromNorm(0.0) == 0.0); // exactly zero — the -inf contract
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CHECK(masterGainNormFromLinear(0.0) == 0.0);
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CHECK(masterGainNormFromLinear(-1.0) == 0.0);
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CHECK(masterGainNormFromDb(-1e9) == 0.0);
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}
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static void testEndpoints() {
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CHECK(near(masterGainDbFromNorm(1.0), kMasterGainMaxDb));
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CHECK(near(masterGainLinearFromNorm(1.0), masterGainMaxLinear()));
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CHECK(near(masterGainMaxLinear(), std::pow(10.0, 24.0 / 20.0)));
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CHECK(near(masterGainNormFromDb(kMasterGainMaxDb), 1.0));
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CHECK(near(masterGainNormFromLinear(masterGainMaxLinear()), 1.0));
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// Out-of-range norms clamp.
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CHECK(near(masterGainDbFromNorm(2.0), kMasterGainMaxDb));
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CHECK(masterGainLinearFromNorm(-0.5) == 0.0);
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}
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static void testUnityRoundTrip() {
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// 0 dB sits at norm -minDb/(maxDb-minDb) = 60/84 of the travel.
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const double unityNorm = masterGainNormFromDb(0.0);
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CHECK(near(unityNorm, 60.0 / 84.0, 1e-12));
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CHECK(near(masterGainDbFromNorm(unityNorm), 0.0, 1e-9));
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CHECK(near(masterGainLinearFromNorm(unityNorm), 1.0, 1e-9));
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CHECK(near(masterGainNormFromLinear(1.0), unityNorm, 1e-9));
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}
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static void testNormLinearRoundTripAcrossTravel() {
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for (int i = 1; i <= 20; ++i) {
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const double norm = i / 20.0;
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const double lin = masterGainLinearFromNorm(norm);
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CHECK(lin > 0.0);
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CHECK(near(masterGainNormFromLinear(lin), norm, 1e-9));
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}
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}
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static void testMonotonic() {
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double prev = -1.0;
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for (int i = 0; i <= 100; ++i) {
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const double lin = masterGainLinearFromNorm(i / 100.0);
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CHECK(lin > prev); // strictly increasing over the whole travel (0 at the bottom)
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prev = lin;
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}
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}
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static void testNonFiniteLinearClamps() {
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CHECK(masterGainNormFromLinear(std::nan("")) == 0.0);
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CHECK(near(masterGainNormFromLinear(1e9), 1.0)); // above the cap clamps to 1
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}
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static void testBelowFloorCollapsesToBottom() {
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// Any linear gain at or below the kMasterGainMinDb floor collapses to norm 0 (the -inf
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// bottom detent). The floor IS the bottom of the finite sweep, so -61 dB, -80 dB, and
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// a vanishingly small positive linear all map to the same place as true zero.
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const double floorLinear = std::pow(10.0, kMasterGainMinDb / 20.0); // 10^(-60/20) = 0.001
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CHECK(masterGainNormFromLinear(floorLinear) == 0.0); // exactly at the floor -> bottom
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CHECK(masterGainNormFromLinear(floorLinear * 0.5) == 0.0); // below the floor -> bottom
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CHECK(masterGainNormFromLinear(1e-9) == 0.0); // tiny positive -> bottom
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// The dB path agrees: anything at or below kMasterGainMinDb maps to norm 0.
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CHECK(masterGainNormFromDb(kMasterGainMinDb) == 0.0);
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CHECK(masterGainNormFromDb(kMasterGainMinDb - 20.0) == 0.0); // -80 dB -> bottom
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// Just ABOVE the floor (by epsilon) returns a non-zero norm.
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CHECK(masterGainNormFromDb(kMasterGainMinDb + 1e-9) > 0.0);
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}
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static void testLabels() {
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char buf[24];
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formatMasterGainLabel(0.0, buf, sizeof(buf));
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CHECK(std::strcmp(buf, "-inf") == 0);
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formatMasterGainLabel(1.0, buf, sizeof(buf));
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CHECK(std::strcmp(buf, "+24.0dB") == 0);
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formatMasterGainLabel(masterGainNormFromDb(0.0), buf, sizeof(buf));
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CHECK(std::strcmp(buf, "+0.0dB") == 0);
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formatMasterGainLabel(masterGainNormFromDb(-12.0), buf, sizeof(buf));
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CHECK(std::strcmp(buf, "-12.0dB") == 0);
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}
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int main() {
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testBottomIsTrueSilence();
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testEndpoints();
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testUnityRoundTrip();
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testNormLinearRoundTripAcrossTravel();
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testMonotonic();
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testNonFiniteLinearClamps();
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testBelowFloorCollapsesToBottom();
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testLabels();
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if (g_fail) {
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std::printf("%d FAILURE(S)\n", g_fail);
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return 1;
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}
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std::printf("master_gain tests passed\n");
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return 0;
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}
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