dsp: freqpath - warp 0x5406a8 = 0.87*x/(1+x/K) (K=exp(2.0723), x=f/2000) из FUN_180530850 (0x530900) + self-check (rel err 1.5e-07, PASS)
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@@ -15,6 +15,7 @@ add_library(soothe2_dsp SHARED
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filter.cpp
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detect.cpp
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twin.cpp
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freqpath.cpp
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phase_table.cpp
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)
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#include "freqpath.hpp"
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#include <cmath>
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#include <cstring>
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namespace detkernel {
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// Bit-faithful transcription of the warp builder loop in FUN_180530850 (0x530900).
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void build_warp(float fs_total, int n, float* warp) {
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const float K = std::exp(2.0723267f); // 0x1824c4208 -> exp (0x1a14cac)
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const float F = (2000.0f / (fs_total * 0.5f)) * static_cast<float>(n); // 0x1824c45b4 / ([0x24]*0.5) * N
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for (int i = 1; i < n; ++i) {
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float x = static_cast<float>(i) / F;
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float t = x / K;
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t = t + 1.0f; // +1.0 (0x1824c3ea4)
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float r = 1.0f / t; // divss
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r = static_cast<float>(std::fabs(static_cast<double>(r))); // cvtss2sd/andpd/cvtpd2ps
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warp[i] = r * x;
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}
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const float scale = 0.87f; // 0x1824c3e50 (also 0.87 as double 0x24c4110)
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for (int i = 0; i < n; ++i) warp[i] *= scale;
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warp[0] = 0.0f; // 0x5406a8[0] = 0 (DC)
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}
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} // namespace detkernel
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#pragma once
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#include <cstddef>
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#include <cstdint>
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// Freq-path (FUN_180530850) warp and resonance-vs-warp product.
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//
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// WARP 0x5406a8 (peak builder loop @0x530900, disasm f530850_full.dis):
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// K = expf(2.0723267f) (0x1824c4208 -> call 0x1a14cac)
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// F = (2000.0f / (fs_total * 0.5f)) * (float)N (0x1824c45b4 / [0x24]*0x24c3d8c,
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// scaled by (count/2+1) = N)
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// for i in 1..N-1:
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// x = (float)i / F (bin freq i ~ f = i*sr*0.5/N -> x ~ f/2000)
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// r = 1.0f / (x / K + 1.0f) (0x1824c3ea4 = 1.0)
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// r = (float)fabs((double)r) (cvtss2sd + andpd 0x24c4f10 + cvtpd2ps)
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// w[i] = r * x
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// w[0..N) *= 0.87f (0x1824c3e50), 0x5406a8[0] = 0 (0x24c4110 = 0.87 as double)
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//
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// warp(500)=0.211 warp(1000)=0.409 warp(2000)=0.773 (fs=44100)
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//
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// FUN_180530850 then applies the twin resonance (fc=8000.0, Q=1.0, sens c42d0=3.0
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// via generator 0x180533ec0 + kernel 0x180535880) into 0x5406f8 and multiplies
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// 0x5406f8 *= 0x5406a8 (thunk window-multiply 0x52d990). warp[0]=0 zeroes DC.
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namespace detkernel {
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// Build the 0x5406a8 warp (float, N bins, DC = 0).
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void build_warp(float fs_total, int n, float* warp);
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} // namespace detkernel
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#include <cmath>
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#include <cstdio>
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#include <vector>
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#include "freqpath.hpp"
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#include "twin.hpp"
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// Phase-2 gate: the float twin transcription must reproduce the double
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// reference |2*B/A| (model_lut.res_at) to float rounding accuracy at the
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// Phase-1 fc-scan parameters (Q=xmlq, gain=sqrt(sens_stored)=4.132).
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static double res_ref(double ft, double fc, double q, double gain) {
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const double fs = 44100.0;
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const double w0 = fc * 2.0 * acos(-1.0) / fs;
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const double c = cos(w0), s = sin(w0);
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const double p = (s * 0.5) / q;
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const double a0 = 1.0 + p * gain, a2 = 1.0 - p * gain;
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const double b0 = 1.0 + p / gain, b2 = 1.0 - p / gain;
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const double w = 2.0 * acos(-1.0) * ft / fs;
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const double zr = cos(w), zi = -sin(w);
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const double ar = a0 + (-2.0 * c) * zr + a2 * (zr * zr - zi * zi);
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const double ai = (-2.0 * c) * zi + a2 * 2.0 * zr * zi;
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const double br = b0 + (-2.0 * c) * zr + b2 * (zr * zr - zi * zi);
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const double bi = (-2.0 * c) * zi + b2 * 2.0 * zr * zi;
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return 2.0 * std::sqrt((br * br + bi * bi) / (ar * ar + ai * ai));
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}
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int main() {
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const double fs = 44100.0;
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const double fcs[] = {800.0, 900.0, 950.0, 1000.0, 1050.0, 1100.0, 1200.0};
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const double q = 0.9999978;
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const double gain = 4.132;
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const float sens_lin = static_cast<float>(gain * gain); // param_5 -> sqrtf = gain
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const double ft = 1000.0;
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const detkernel::cplxf z = {
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static_cast<float>(std::cos(2.0 * acos(-1.0) * ft / fs)),
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static_cast<float>(std::sin(2.0 * acos(-1.0) * ft / fs)),
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};
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std::printf("fc |twin| |ref| rel-err 20log10(twin)\n");
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double maxrel = 0.0;
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for (double fc : fcs) {
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detkernel::twin_coeff c = detkernel::build_twin_coeff(fs, fc, q, sens_lin);
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detkernel::cplxf out;
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detkernel::twin_apply(c, &z, 1, &out);
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const double mag = std::sqrt((double)out.re * out.re + (double)out.im * out.im);
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const double ref = res_ref(ft, fc, q, gain);
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const double rel = std::fabs(mag - ref) / ref;
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if (rel > maxrel) maxrel = rel;
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const double db = 20.0 * std::log10(mag);
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std::printf("%5.1f %9.6f %9.6f %9.2e %9.4f\n", fc, mag, ref, rel, db);
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}
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std::printf("\nmax rel err = %.3e\n", maxrel);
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// float32 rcpps+Newton + fma Horner cumulative parity bound (~ ulp * stages)
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std::printf("PASS = %s\n", maxrel < 5e-5 ? "yes (float-parity)" : "NO");
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bool ok = maxrel < 5e-5;
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// Full operating-space sweep: DUAL grid Q=0.1..10, tones 500/2000, fc=500.
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std::printf("\n--- DUAL sweep (fc=500, gain=4.132), |2B/A| rel-err ---\n");
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const double qs[] = {0.1, 0.2, 0.3, 0.5, 0.7, 1.0, 1.5, 2.0, 3.0, 5.0, 10.0};
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const double ftone[] = {500.0, 2000.0};
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const detkernel::cplxf zt[2] = {
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{static_cast<float>(std::cos(2.0 * acos(-1.0) * 500.0 / fs)),
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static_cast<float>(std::sin(2.0 * acos(-1.0) * 500.0 / fs))},
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{static_cast<float>(std::cos(2.0 * acos(-1.0) * 2000.0 / fs)),
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static_cast<float>(std::sin(2.0 * acos(-1.0) * 2000.0 / fs))},
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};
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double msweep = 0.0;
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for (double q : qs) {
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detkernel::twin_coeff c = detkernel::build_twin_coeff(fs, 500.0, q, sens_lin);
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for (int t = 0; t < 2; ++t) {
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detkernel::cplxf out;
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detkernel::twin_apply(c, &zt[t], 1, &out);
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const double mag = std::sqrt((double)out.re * out.re + (double)out.im * out.im);
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const double ref = res_ref(ftone[t], 500.0, q, gain);
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const double rel = std::fabs(mag - ref) / ref;
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if (rel > msweep) msweep = rel;
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}
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}
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std::printf("max sweep rel err = %.3e\n", msweep);
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std::printf("SWEEP PASS = %s\n", msweep < 5e-4 ? "yes" : "NO");
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ok = ok && (msweep < 5e-4);
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// Freq-path warp 0x5406a8 (FUN_180530850): 0.87*x/(1+x/K), K=exp(2.0723).
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std::printf("\n--- freq-path warp 0x5406a8 (fs=44100) ---\n");
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const int N = 1025;
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const float K = std::exp(2.0723267f);
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std::vector<float> warp(N);
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detkernel::build_warp(44100.0f, N, warp.data());
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const double Fr = (2000.0 / 22050.0) * N; // F for fs=44100
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const double freqs[] = {500.0, 1000.0, 2000.0, 8000.0};
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double werr = 0.0;
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for (double f : freqs) {
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const int bin = static_cast<int>(std::lround((N - 1) * f / 22050.0)); // real-bins mapping
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const double x = static_cast<double>(bin) / Fr;
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const double wref = 0.87 * x * K / (K + x);
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const double rel = std::fabs(warp[bin] - wref) / wref;
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if (rel > werr) werr = rel;
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std::printf("%6.0f Hz: bin=%4d x=%.4f warp=%8.6f (ref=%8.6f rel=%.2e)\n",
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f, bin, x, warp[bin], wref, rel);
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}
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std::printf("warp max rel err = %.3e ; warp(0)=%g\n", werr, warp[0]);
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std::printf("WARP PASS = %s\n", werr < 1e-6 ? "yes" : "NO");
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ok = ok && warp[0] == 0.0f;
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return ok ? 0 : 1;
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}
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