| ... | ... | @@ -121,14 +121,8 @@ pub const Random = struct { |
| 121 | 121 | /// The results of this function may be biased. |
| 122 | 122 | pub fn uintLessThanBiased(r: Random, comptime T: type, less_than: T) T { |
| 123 | 123 | comptime assert(@typeInfo(T).Int.signedness == .unsigned); |
| 124 | | const bits = @typeInfo(T).Int.bits; |
| 125 | | comptime assert(bits <= 64); // TODO: workaround: LLVM ERROR: Unsupported library call operation! |
| 126 | 124 | assert(0 < less_than); |
| 127 | | if (bits <= 32) { |
| 128 | | return @as(T, @intCast(limitRangeBiased(u32, r.int(u32), less_than))); |
| 129 | | } else { |
| 130 | | return @as(T, @intCast(limitRangeBiased(u64, r.int(u64), less_than))); |
| 131 | | } |
| 125 | return limitRangeBiased(T, r.int(T), less_than); |
| 132 | 126 | } |
| 133 | 127 | |
| 134 | 128 | /// Returns an evenly distributed random unsigned integer `0 <= i < less_than`. |
| ... | ... | @@ -438,13 +432,12 @@ pub const Random = struct { |
| 438 | 432 | pub fn limitRangeBiased(comptime T: type, random_int: T, less_than: T) T { |
| 439 | 433 | comptime assert(@typeInfo(T).Int.signedness == .unsigned); |
| 440 | 434 | const bits = @typeInfo(T).Int.bits; |
| 441 | | const T2 = std.meta.Int(.unsigned, bits * 2); |
| 442 | 435 | |
| 443 | 436 | // adapted from: |
| 444 | 437 | // http://www.pcg-random.org/posts/bounded-rands.html |
| 445 | 438 | // "Integer Multiplication (Biased)" |
| 446 | | var m: T2 = @as(T2, random_int) * @as(T2, less_than); |
| 447 | | return @as(T, @intCast(m >> bits)); |
| 439 | const m = math.mulWide(T, random_int, less_than); |
| 440 | return @intCast(m >> bits); |
| 448 | 441 | } |
| 449 | 442 | |
| 450 | 443 | // Generator to extend 64-bit seed values into longer sequences. |