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; } }