Files
Look4Sat-mckero/feature/cw/src/main/java/H2/c.java
T
mckero 5dc7ce6a22 feat(cw): port Morse Expert 1.15 CW decoder engine (feature:cw compiles)
Full port of the CW/Morse decoder from Morse Expert 1.15
(com.ve3nea.morse_expert), preserving obfuscated class names and logic.
Ads (gms.ads), billing (BillingClient), and library code were removed per
user; SettingsActivity deferred to Compose integration.

Ported modules:
- pas.*: decoder engine interface + JNI (libnativedecoderjni.so, armeabi-v7a)
- k3.*: FFT library (pseudo-enum q rewritten from smali; sun.misc stubs
  for Unsafe/Cleaner since Android lacks them; FFT path uses float[] branch)
- i3.*, g3.*, j3.*, s.*, d1.AbstractC1518b: DSP/sin-cos tables (long[] tables
  f/f11589g restored from smali)
- H2.a/b: audio capture + decode control core (jadx catch-block illusions
  cleaned per smali; recording try/catch restored around write block)
- J2.a/b: waterfall OpenGL renderer + palette (r10 = anchor color per smali)
- E2.g: waterfall touch frequency picker (height = ScaleView per smali)
- B0.b/B.RunnableC0001b: status-bar + decoded-text UI runnables (real
  constructors recovered from smali)
- MainActivity → controller class (Activity injected; immersive status bar
  inlined); C1646n trimmed to view holder; D.n keeps waterfall texture case
- F2.a: text selection menu (Save/Share)

Verified: :feature:cw:compileDebugJavaWithJavac BUILD SUCCESSFUL.
2026-08-04 03:57:25 +00:00

90 lines
2.4 KiB
Java

package H2;
/* loaded from: classes.dex */
public final class c {
/* renamed from: a, reason: collision with root package name */
public final int f630a;
/* renamed from: b, reason: collision with root package name */
public float[] f631b;
public int c;
/* renamed from: d, reason: collision with root package name */
public float f632d;
/* renamed from: e, reason: collision with root package name */
public float f633e;
public final /* synthetic */ int f;
public c(int i4, int i5) {
this.f = i5;
this.f630a = i4 - 1;
}
public final void a(float[] fArr) {
int i4 = this.f630a / 2;
int length = fArr.length;
if (length > i4) {
this.f631b = null;
for (int i5 = 0; i5 < i4; i5++) {
c(fArr[i5]);
}
for (int i6 = i4; i6 < length; i6++) {
fArr[i6 - i4] = c(fArr[i6]);
}
for (int i7 = length; i7 < length + i4; i7++) {
fArr[i7 - i4] = c(fArr[length - 1]);
}
return;
}
throw new IllegalArgumentException("Sliding Filter error: input too short");
}
public final float b(float f, float f4) {
switch (this.f) {
case 0:
return Math.max(f, f4);
default:
return Math.min(f, f4);
}
}
public final float c(float f) {
float[] fArr = this.f631b;
int i4 = this.f630a;
if (fArr == null) {
this.f631b = new float[i4];
for (int i5 = 0; i5 < i4; i5++) {
this.f631b[i5] = f;
}
this.f632d = f;
return f;
}
float b4 = b(this.f632d, f);
this.f632d = b4;
this.f633e = b(this.f631b[this.c], b4);
float[] fArr2 = this.f631b;
int i6 = this.c;
int i7 = i6 + 1;
this.c = i7;
fArr2[i6] = f;
if (i7 == i4) {
int length = fArr2.length;
while (true) {
this.c = length - 1;
int i8 = this.c;
if (i8 <= 0) {
break;
}
float[] fArr3 = this.f631b;
fArr3[i8 - 1] = b(fArr3[i8 - 1], fArr3[i8]);
length = this.c;
}
this.c = 0;
this.f632d = f;
}
return this.f633e;
}
}