//------------------------------------------------------------------------------ // // This code was generated by a tool. // // Changes to this file may cause incorrect behavior and will be lost if // the code is regenerated. // //------------------------------------------------------------------------------ using System; using System.Runtime.CompilerServices; #pragma warning disable 0660, 0661 namespace Unity.Mathematics { [System.Serializable] public partial struct uint3x3 : System.IEquatable, IFormattable { public uint3 c0; public uint3 c1; public uint3 c2; /// uint3x3 identity transform. public static readonly uint3x3 identity = new uint3x3(1u, 0u, 0u, 0u, 1u, 0u, 0u, 0u, 1u); /// uint3x3 zero value. public static readonly uint3x3 zero; /// Constructs a uint3x3 matrix from three uint3 vectors. [MethodImpl(MethodImplOptions.AggressiveInlining)] public uint3x3(uint3 c0, uint3 c1, uint3 c2) { this.c0 = c0; this.c1 = c1; this.c2 = c2; } /// Constructs a uint3x3 matrix from 9 uint values given in row-major order. [MethodImpl(MethodImplOptions.AggressiveInlining)] public uint3x3(uint m00, uint m01, uint m02, uint m10, uint m11, uint m12, uint m20, uint m21, uint m22) { this.c0 = new uint3(m00, m10, m20); this.c1 = new uint3(m01, m11, m21); this.c2 = new uint3(m02, m12, m22); } /// Constructs a uint3x3 matrix from a single uint value by assigning it to every component. [MethodImpl(MethodImplOptions.AggressiveInlining)] public uint3x3(uint v) { this.c0 = v; this.c1 = v; this.c2 = v; } /// Constructs a uint3x3 matrix from a single bool value by converting it to uint and assigning it to every component. [MethodImpl(MethodImplOptions.AggressiveInlining)] public uint3x3(bool v) { this.c0 = math.select(new uint3(0u), new uint3(1u), v); this.c1 = math.select(new uint3(0u), new uint3(1u), v); this.c2 = math.select(new uint3(0u), new uint3(1u), v); } /// Constructs a uint3x3 matrix from a bool3x3 matrix by componentwise conversion. [MethodImpl(MethodImplOptions.AggressiveInlining)] public uint3x3(bool3x3 v) { this.c0 = math.select(new uint3(0u), new uint3(1u), v.c0); this.c1 = math.select(new uint3(0u), new uint3(1u), v.c1); this.c2 = math.select(new uint3(0u), new uint3(1u), v.c2); } /// Constructs a uint3x3 matrix from a single int value by converting it to uint and assigning it to every component. [MethodImpl(MethodImplOptions.AggressiveInlining)] public uint3x3(int v) { this.c0 = (uint3)v; this.c1 = (uint3)v; this.c2 = (uint3)v; } /// Constructs a uint3x3 matrix from a int3x3 matrix by componentwise conversion. [MethodImpl(MethodImplOptions.AggressiveInlining)] public uint3x3(int3x3 v) { this.c0 = (uint3)v.c0; this.c1 = (uint3)v.c1; this.c2 = (uint3)v.c2; } /// Constructs a uint3x3 matrix from a single float value by converting it to uint and assigning it to every component. [MethodImpl(MethodImplOptions.AggressiveInlining)] public uint3x3(float v) { this.c0 = (uint3)v; this.c1 = (uint3)v; this.c2 = (uint3)v; } /// Constructs a uint3x3 matrix from a float3x3 matrix by componentwise conversion. [MethodImpl(MethodImplOptions.AggressiveInlining)] public uint3x3(float3x3 v) { this.c0 = (uint3)v.c0; this.c1 = (uint3)v.c1; this.c2 = (uint3)v.c2; } /// Constructs a uint3x3 matrix from a single double value by converting it to uint and assigning it to every component. [MethodImpl(MethodImplOptions.AggressiveInlining)] public uint3x3(double v) { this.c0 = (uint3)v; this.c1 = (uint3)v; this.c2 = (uint3)v; } /// Constructs a uint3x3 matrix from a double3x3 matrix by componentwise conversion. [MethodImpl(MethodImplOptions.AggressiveInlining)] public uint3x3(double3x3 v) { this.c0 = (uint3)v.c0; this.c1 = (uint3)v.c1; this.c2 = (uint3)v.c2; } /// Implicitly converts a single uint value to a uint3x3 matrix by assigning it to every component. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static implicit operator uint3x3(uint v) { return new uint3x3(v); } /// Explicitly converts a single bool value to a uint3x3 matrix by converting it to uint and assigning it to every component. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static explicit operator uint3x3(bool v) { return new uint3x3(v); } /// Explicitly converts a bool3x3 matrix to a uint3x3 matrix by componentwise conversion. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static explicit operator uint3x3(bool3x3 v) { return new uint3x3(v); } /// Explicitly converts a single int value to a uint3x3 matrix by converting it to uint and assigning it to every component. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static explicit operator uint3x3(int v) { return new uint3x3(v); } /// Explicitly converts a int3x3 matrix to a uint3x3 matrix by componentwise conversion. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static explicit operator uint3x3(int3x3 v) { return new uint3x3(v); } /// Explicitly converts a single float value to a uint3x3 matrix by converting it to uint and assigning it to every component. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static explicit operator uint3x3(float v) { return new uint3x3(v); } /// Explicitly converts a float3x3 matrix to a uint3x3 matrix by componentwise conversion. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static explicit operator uint3x3(float3x3 v) { return new uint3x3(v); } /// Explicitly converts a single double value to a uint3x3 matrix by converting it to uint and assigning it to every component. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static explicit operator uint3x3(double v) { return new uint3x3(v); } /// Explicitly converts a double3x3 matrix to a uint3x3 matrix by componentwise conversion. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static explicit operator uint3x3(double3x3 v) { return new uint3x3(v); } /// Returns the result of a componentwise multiplication operation on two uint3x3 matrices. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator * (uint3x3 lhs, uint3x3 rhs) { return new uint3x3 (lhs.c0 * rhs.c0, lhs.c1 * rhs.c1, lhs.c2 * rhs.c2); } /// Returns the result of a componentwise multiplication operation on a uint3x3 matrix and a uint value. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator * (uint3x3 lhs, uint rhs) { return new uint3x3 (lhs.c0 * rhs, lhs.c1 * rhs, lhs.c2 * rhs); } /// Returns the result of a componentwise multiplication operation on a uint value and a uint3x3 matrix. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator * (uint lhs, uint3x3 rhs) { return new uint3x3 (lhs * rhs.c0, lhs * rhs.c1, lhs * rhs.c2); } /// Returns the result of a componentwise addition operation on two uint3x3 matrices. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator + (uint3x3 lhs, uint3x3 rhs) { return new uint3x3 (lhs.c0 + rhs.c0, lhs.c1 + rhs.c1, lhs.c2 + rhs.c2); } /// Returns the result of a componentwise addition operation on a uint3x3 matrix and a uint value. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator + (uint3x3 lhs, uint rhs) { return new uint3x3 (lhs.c0 + rhs, lhs.c1 + rhs, lhs.c2 + rhs); } /// Returns the result of a componentwise addition operation on a uint value and a uint3x3 matrix. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator + (uint lhs, uint3x3 rhs) { return new uint3x3 (lhs + rhs.c0, lhs + rhs.c1, lhs + rhs.c2); } /// Returns the result of a componentwise subtraction operation on two uint3x3 matrices. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator - (uint3x3 lhs, uint3x3 rhs) { return new uint3x3 (lhs.c0 - rhs.c0, lhs.c1 - rhs.c1, lhs.c2 - rhs.c2); } /// Returns the result of a componentwise subtraction operation on a uint3x3 matrix and a uint value. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator - (uint3x3 lhs, uint rhs) { return new uint3x3 (lhs.c0 - rhs, lhs.c1 - rhs, lhs.c2 - rhs); } /// Returns the result of a componentwise subtraction operation on a uint value and a uint3x3 matrix. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator - (uint lhs, uint3x3 rhs) { return new uint3x3 (lhs - rhs.c0, lhs - rhs.c1, lhs - rhs.c2); } /// Returns the result of a componentwise division operation on two uint3x3 matrices. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator / (uint3x3 lhs, uint3x3 rhs) { return new uint3x3 (lhs.c0 / rhs.c0, lhs.c1 / rhs.c1, lhs.c2 / rhs.c2); } /// Returns the result of a componentwise division operation on a uint3x3 matrix and a uint value. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator / (uint3x3 lhs, uint rhs) { return new uint3x3 (lhs.c0 / rhs, lhs.c1 / rhs, lhs.c2 / rhs); } /// Returns the result of a componentwise division operation on a uint value and a uint3x3 matrix. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator / (uint lhs, uint3x3 rhs) { return new uint3x3 (lhs / rhs.c0, lhs / rhs.c1, lhs / rhs.c2); } /// Returns the result of a componentwise modulus operation on two uint3x3 matrices. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator % (uint3x3 lhs, uint3x3 rhs) { return new uint3x3 (lhs.c0 % rhs.c0, lhs.c1 % rhs.c1, lhs.c2 % rhs.c2); } /// Returns the result of a componentwise modulus operation on a uint3x3 matrix and a uint value. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator % (uint3x3 lhs, uint rhs) { return new uint3x3 (lhs.c0 % rhs, lhs.c1 % rhs, lhs.c2 % rhs); } /// Returns the result of a componentwise modulus operation on a uint value and a uint3x3 matrix. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator % (uint lhs, uint3x3 rhs) { return new uint3x3 (lhs % rhs.c0, lhs % rhs.c1, lhs % rhs.c2); } /// Returns the result of a componentwise increment operation on a uint3x3 matrix. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator ++ (uint3x3 val) { return new uint3x3 (++val.c0, ++val.c1, ++val.c2); } /// Returns the result of a componentwise decrement operation on a uint3x3 matrix. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator -- (uint3x3 val) { return new uint3x3 (--val.c0, --val.c1, --val.c2); } /// Returns the result of a componentwise less than operation on two uint3x3 matrices. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static bool3x3 operator < (uint3x3 lhs, uint3x3 rhs) { return new bool3x3 (lhs.c0 < rhs.c0, lhs.c1 < rhs.c1, lhs.c2 < rhs.c2); } /// Returns the result of a componentwise less than operation on a uint3x3 matrix and a uint value. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static bool3x3 operator < (uint3x3 lhs, uint rhs) { return new bool3x3 (lhs.c0 < rhs, lhs.c1 < rhs, lhs.c2 < rhs); } /// Returns the result of a componentwise less than operation on a uint value and a uint3x3 matrix. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static bool3x3 operator < (uint lhs, uint3x3 rhs) { return new bool3x3 (lhs < rhs.c0, lhs < rhs.c1, lhs < rhs.c2); } /// Returns the result of a componentwise less or equal operation on two uint3x3 matrices. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static bool3x3 operator <= (uint3x3 lhs, uint3x3 rhs) { return new bool3x3 (lhs.c0 <= rhs.c0, lhs.c1 <= rhs.c1, lhs.c2 <= rhs.c2); } /// Returns the result of a componentwise less or equal operation on a uint3x3 matrix and a uint value. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static bool3x3 operator <= (uint3x3 lhs, uint rhs) { return new bool3x3 (lhs.c0 <= rhs, lhs.c1 <= rhs, lhs.c2 <= rhs); } /// Returns the result of a componentwise less or equal operation on a uint value and a uint3x3 matrix. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static bool3x3 operator <= (uint lhs, uint3x3 rhs) { return new bool3x3 (lhs <= rhs.c0, lhs <= rhs.c1, lhs <= rhs.c2); } /// Returns the result of a componentwise greater than operation on two uint3x3 matrices. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static bool3x3 operator > (uint3x3 lhs, uint3x3 rhs) { return new bool3x3 (lhs.c0 > rhs.c0, lhs.c1 > rhs.c1, lhs.c2 > rhs.c2); } /// Returns the result of a componentwise greater than operation on a uint3x3 matrix and a uint value. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static bool3x3 operator > (uint3x3 lhs, uint rhs) { return new bool3x3 (lhs.c0 > rhs, lhs.c1 > rhs, lhs.c2 > rhs); } /// Returns the result of a componentwise greater than operation on a uint value and a uint3x3 matrix. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static bool3x3 operator > (uint lhs, uint3x3 rhs) { return new bool3x3 (lhs > rhs.c0, lhs > rhs.c1, lhs > rhs.c2); } /// Returns the result of a componentwise greater or equal operation on two uint3x3 matrices. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static bool3x3 operator >= (uint3x3 lhs, uint3x3 rhs) { return new bool3x3 (lhs.c0 >= rhs.c0, lhs.c1 >= rhs.c1, lhs.c2 >= rhs.c2); } /// Returns the result of a componentwise greater or equal operation on a uint3x3 matrix and a uint value. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static bool3x3 operator >= (uint3x3 lhs, uint rhs) { return new bool3x3 (lhs.c0 >= rhs, lhs.c1 >= rhs, lhs.c2 >= rhs); } /// Returns the result of a componentwise greater or equal operation on a uint value and a uint3x3 matrix. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static bool3x3 operator >= (uint lhs, uint3x3 rhs) { return new bool3x3 (lhs >= rhs.c0, lhs >= rhs.c1, lhs >= rhs.c2); } /// Returns the result of a componentwise unary minus operation on a uint3x3 matrix. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator - (uint3x3 val) { return new uint3x3 (-val.c0, -val.c1, -val.c2); } /// Returns the result of a componentwise unary plus operation on a uint3x3 matrix. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator + (uint3x3 val) { return new uint3x3 (+val.c0, +val.c1, +val.c2); } /// Returns the result of a componentwise left shift operation on a uint3x3 matrix by a number of bits specified by a single int. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator << (uint3x3 x, int n) { return new uint3x3 (x.c0 << n, x.c1 << n, x.c2 << n); } /// Returns the result of a componentwise right shift operation on a uint3x3 matrix by a number of bits specified by a single int. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator >> (uint3x3 x, int n) { return new uint3x3 (x.c0 >> n, x.c1 >> n, x.c2 >> n); } /// Returns the result of a componentwise equality operation on two uint3x3 matrices. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static bool3x3 operator == (uint3x3 lhs, uint3x3 rhs) { return new bool3x3 (lhs.c0 == rhs.c0, lhs.c1 == rhs.c1, lhs.c2 == rhs.c2); } /// Returns the result of a componentwise equality operation on a uint3x3 matrix and a uint value. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static bool3x3 operator == (uint3x3 lhs, uint rhs) { return new bool3x3 (lhs.c0 == rhs, lhs.c1 == rhs, lhs.c2 == rhs); } /// Returns the result of a componentwise equality operation on a uint value and a uint3x3 matrix. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static bool3x3 operator == (uint lhs, uint3x3 rhs) { return new bool3x3 (lhs == rhs.c0, lhs == rhs.c1, lhs == rhs.c2); } /// Returns the result of a componentwise not equal operation on two uint3x3 matrices. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static bool3x3 operator != (uint3x3 lhs, uint3x3 rhs) { return new bool3x3 (lhs.c0 != rhs.c0, lhs.c1 != rhs.c1, lhs.c2 != rhs.c2); } /// Returns the result of a componentwise not equal operation on a uint3x3 matrix and a uint value. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static bool3x3 operator != (uint3x3 lhs, uint rhs) { return new bool3x3 (lhs.c0 != rhs, lhs.c1 != rhs, lhs.c2 != rhs); } /// Returns the result of a componentwise not equal operation on a uint value and a uint3x3 matrix. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static bool3x3 operator != (uint lhs, uint3x3 rhs) { return new bool3x3 (lhs != rhs.c0, lhs != rhs.c1, lhs != rhs.c2); } /// Returns the result of a componentwise bitwise not operation on a uint3x3 matrix. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator ~ (uint3x3 val) { return new uint3x3 (~val.c0, ~val.c1, ~val.c2); } /// Returns the result of a componentwise bitwise and operation on two uint3x3 matrices. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator & (uint3x3 lhs, uint3x3 rhs) { return new uint3x3 (lhs.c0 & rhs.c0, lhs.c1 & rhs.c1, lhs.c2 & rhs.c2); } /// Returns the result of a componentwise bitwise and operation on a uint3x3 matrix and a uint value. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator & (uint3x3 lhs, uint rhs) { return new uint3x3 (lhs.c0 & rhs, lhs.c1 & rhs, lhs.c2 & rhs); } /// Returns the result of a componentwise bitwise and operation on a uint value and a uint3x3 matrix. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator & (uint lhs, uint3x3 rhs) { return new uint3x3 (lhs & rhs.c0, lhs & rhs.c1, lhs & rhs.c2); } /// Returns the result of a componentwise bitwise or operation on two uint3x3 matrices. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator | (uint3x3 lhs, uint3x3 rhs) { return new uint3x3 (lhs.c0 | rhs.c0, lhs.c1 | rhs.c1, lhs.c2 | rhs.c2); } /// Returns the result of a componentwise bitwise or operation on a uint3x3 matrix and a uint value. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator | (uint3x3 lhs, uint rhs) { return new uint3x3 (lhs.c0 | rhs, lhs.c1 | rhs, lhs.c2 | rhs); } /// Returns the result of a componentwise bitwise or operation on a uint value and a uint3x3 matrix. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator | (uint lhs, uint3x3 rhs) { return new uint3x3 (lhs | rhs.c0, lhs | rhs.c1, lhs | rhs.c2); } /// Returns the result of a componentwise bitwise exclusive or operation on two uint3x3 matrices. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator ^ (uint3x3 lhs, uint3x3 rhs) { return new uint3x3 (lhs.c0 ^ rhs.c0, lhs.c1 ^ rhs.c1, lhs.c2 ^ rhs.c2); } /// Returns the result of a componentwise bitwise exclusive or operation on a uint3x3 matrix and a uint value. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator ^ (uint3x3 lhs, uint rhs) { return new uint3x3 (lhs.c0 ^ rhs, lhs.c1 ^ rhs, lhs.c2 ^ rhs); } /// Returns the result of a componentwise bitwise exclusive or operation on a uint value and a uint3x3 matrix. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 operator ^ (uint lhs, uint3x3 rhs) { return new uint3x3 (lhs ^ rhs.c0, lhs ^ rhs.c1, lhs ^ rhs.c2); } /// Returns the uint3 element at a specified index. unsafe public ref uint3 this[int index] { get { #if ENABLE_UNITY_COLLECTIONS_CHECKS if ((uint)index >= 3) throw new System.ArgumentException("index must be between[0...2]"); #endif fixed (uint3x3* array = &this) { return ref ((uint3*)array)[index]; } } } /// Returns true if the uint3x3 is equal to a given uint3x3, false otherwise. [MethodImpl(MethodImplOptions.AggressiveInlining)] public bool Equals(uint3x3 rhs) { return c0.Equals(rhs.c0) && c1.Equals(rhs.c1) && c2.Equals(rhs.c2); } /// Returns true if the uint3x3 is equal to a given uint3x3, false otherwise. public override bool Equals(object o) { return Equals((uint3x3)o); } /// Returns a hash code for the uint3x3. [MethodImpl(MethodImplOptions.AggressiveInlining)] public override int GetHashCode() { return (int)math.hash(this); } /// Returns a string representation of the uint3x3. [MethodImpl(MethodImplOptions.AggressiveInlining)] public override string ToString() { return string.Format("uint3x3({0}, {1}, {2}, {3}, {4}, {5}, {6}, {7}, {8})", c0.x, c1.x, c2.x, c0.y, c1.y, c2.y, c0.z, c1.z, c2.z); } /// Returns a string representation of the uint3x3 using a specified format and culture-specific format information. [MethodImpl(MethodImplOptions.AggressiveInlining)] public string ToString(string format, IFormatProvider formatProvider) { return string.Format("uint3x3({0}, {1}, {2}, {3}, {4}, {5}, {6}, {7}, {8})", c0.x.ToString(format, formatProvider), c1.x.ToString(format, formatProvider), c2.x.ToString(format, formatProvider), c0.y.ToString(format, formatProvider), c1.y.ToString(format, formatProvider), c2.y.ToString(format, formatProvider), c0.z.ToString(format, formatProvider), c1.z.ToString(format, formatProvider), c2.z.ToString(format, formatProvider)); } } public static partial class math { /// Returns a uint3x3 matrix constructed from three uint3 vectors. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 uint3x3(uint3 c0, uint3 c1, uint3 c2) { return new uint3x3(c0, c1, c2); } /// Returns a uint3x3 matrix constructed from from 9 uint values given in row-major order. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 uint3x3(uint m00, uint m01, uint m02, uint m10, uint m11, uint m12, uint m20, uint m21, uint m22) { return new uint3x3(m00, m01, m02, m10, m11, m12, m20, m21, m22); } /// Returns a uint3x3 matrix constructed from a single uint value by assigning it to every component. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 uint3x3(uint v) { return new uint3x3(v); } /// Returns a uint3x3 matrix constructed from a single bool value by converting it to uint and assigning it to every component. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 uint3x3(bool v) { return new uint3x3(v); } /// Return a uint3x3 matrix constructed from a bool3x3 matrix by componentwise conversion. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 uint3x3(bool3x3 v) { return new uint3x3(v); } /// Returns a uint3x3 matrix constructed from a single int value by converting it to uint and assigning it to every component. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 uint3x3(int v) { return new uint3x3(v); } /// Return a uint3x3 matrix constructed from a int3x3 matrix by componentwise conversion. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 uint3x3(int3x3 v) { return new uint3x3(v); } /// Returns a uint3x3 matrix constructed from a single float value by converting it to uint and assigning it to every component. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 uint3x3(float v) { return new uint3x3(v); } /// Return a uint3x3 matrix constructed from a float3x3 matrix by componentwise conversion. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 uint3x3(float3x3 v) { return new uint3x3(v); } /// Returns a uint3x3 matrix constructed from a single double value by converting it to uint and assigning it to every component. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 uint3x3(double v) { return new uint3x3(v); } /// Return a uint3x3 matrix constructed from a double3x3 matrix by componentwise conversion. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 uint3x3(double3x3 v) { return new uint3x3(v); } /// Return the uint3x3 transpose of a uint3x3 matrix. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3x3 transpose(uint3x3 v) { return uint3x3( v.c0.x, v.c0.y, v.c0.z, v.c1.x, v.c1.y, v.c1.z, v.c2.x, v.c2.y, v.c2.z); } /// Returns a uint hash code of a uint3x3 vector. [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint hash(uint3x3 v) { return csum(v.c0 * uint3(0xAC60D0C3u, 0x9263662Fu, 0xE69626FFu) + v.c1 * uint3(0xBD010EEBu, 0x9CEDE1D1u, 0x43BE0B51u) + v.c2 * uint3(0xAF836EE1u, 0xB130C137u, 0x54834775u)) + 0x7C022221u; } /// /// Returns a uint3 vector hash code of a uint3x3 vector. /// When multiple elements are to be hashes together, it can more efficient to calculate and combine wide hash /// that are only reduced to a narrow uint hash at the very end instead of at every step. /// [MethodImpl(MethodImplOptions.AggressiveInlining)] public static uint3 hashwide(uint3x3 v) { return (v.c0 * uint3(0xA2D00EDFu, 0xA8977779u, 0x9F1C739Bu) + v.c1 * uint3(0x4B1BD187u, 0x9DF50593u, 0xF18EEB85u) + v.c2 * uint3(0x9E19BFC3u, 0x8196B06Fu, 0xD24EFA19u)) + 0x7D8048BBu; } } }