| ... | @@ -10,7 +10,7 @@ const primes = [_]u64{ | ... | @@ -10,7 +10,7 @@ const primes = [_]u64{ |
| 10 | }; | 10 | }; |
| 11 | | 11 | |
| 12 | fn read_bytes(comptime bytes: u8, data: []const u8) u64 { | 12 | fn read_bytes(comptime bytes: u8, data: []const u8) u64 { |
| 13 | return mem.readVarInt(u64, data[0..bytes], @import("builtin").endian); | 13 | return mem.readVarInt(u64, data[0..bytes], .Little); |
| 14 | } | 14 | } |
| 15 | | 15 | |
| 16 | fn read_8bytes_swapped(data: []const u8) u64 { | 16 | fn read_8bytes_swapped(data: []const u8) u64 { |
| ... | @@ -18,7 +18,7 @@ fn read_8bytes_swapped(data: []const u8) u64 { | ... | @@ -18,7 +18,7 @@ fn read_8bytes_swapped(data: []const u8) u64 { |
| 18 | } | 18 | } |
| 19 | | 19 | |
| 20 | fn mum(a: u64, b: u64) u64 { | 20 | fn mum(a: u64, b: u64) u64 { |
| 21 | var r: u128 = @intCast(u128, a) * @intCast(u128, b); | 21 | var r = std.math.mulWide(u64, a, b); |
| 22 | r = (r >> 64) ^ r; | 22 | r = (r >> 64) ^ r; |
| 23 | return @truncate(u64, r); | 23 | return @truncate(u64, r); |
| 24 | } | 24 | } |
| ... | @@ -31,69 +31,117 @@ fn mix1(a: u64, b: u64, seed: u64) u64 { | ... | @@ -31,69 +31,117 @@ fn mix1(a: u64, b: u64, seed: u64) u64 { |
| 31 | return mum(a ^ seed ^ primes[2], b ^ seed ^ primes[3]); | 31 | return mum(a ^ seed ^ primes[2], b ^ seed ^ primes[3]); |
| 32 | } | 32 | } |
| 33 | | 33 | |
| 34 | pub fn hash(key: []const u8, initial_seed: u64) u64 { | 34 | pub const Wyhash = struct { |
| 35 | var seed = initial_seed; | 35 | seed: u64, |
| 36 | | 36 | |
| 37 | var i: usize = 0; | 37 | buf: [32]u8, |
| 38 | while (i + 32 <= key.len) : (i += 32) { | 38 | buf_len: usize, |
| 39 | seed = mix0( | 39 | msg_len: usize, |
| 40 | read_bytes(8, key[i..]), | 40 | |
| 41 | read_bytes(8, key[i + 8 ..]), | 41 | pub fn init(seed: u64) Wyhash { |
| 42 | seed, | 42 | return Wyhash{ |
| | 43 | .seed = seed, |
| | 44 | .buf = undefined, |
| | 45 | .buf_len = 0, |
| | 46 | .msg_len = 0, |
| | 47 | }; |
| | 48 | } |
| | 49 | |
| | 50 | fn round(self: *Wyhash, b: []const u8) void { |
| | 51 | std.debug.assert(b.len == 32); |
| | 52 | |
| | 53 | self.seed = mix0( |
| | 54 | read_bytes(8, b[0..]), |
| | 55 | read_bytes(8, b[8..]), |
| | 56 | self.seed, |
| 43 | ) ^ mix1( | 57 | ) ^ mix1( |
| 44 | read_bytes(8, key[i + 16 ..]), | 58 | read_bytes(8, b[16..]), |
| 45 | read_bytes(8, key[i + 24 ..]), | 59 | read_bytes(8, b[24..]), |
| 46 | seed, | 60 | self.seed, |
| 47 | ); | 61 | ); |
| 48 | } | 62 | } |
| 49 | | 63 | |
| 50 | const rem_len = @truncate(u5, key.len); | 64 | pub fn update(self: *Wyhash, b: []const u8) void { |
| 51 | const rem_key = key[i..]; | 65 | var off: usize = 0; |
| 52 | seed = switch (rem_len) { | 66 | |
| 53 | 0 => seed, | 67 | // Partial from previous. |
| 54 | 1 => mix0(read_bytes(1, rem_key), primes[4], seed), | 68 | if (self.buf_len != 0 and self.buf_len + b.len > 32) { |
| 55 | 2 => mix0(read_bytes(2, rem_key), primes[4], seed), | 69 | off += 32 - self.buf_len; |
| 56 | 3 => mix0((read_bytes(2, rem_key) << 8) | read_bytes(1, rem_key[2..]), primes[4], seed), | 70 | mem.copy(u8, self.buf[self.buf_len..], b[0..off]); |
| 57 | 4 => mix0(read_bytes(4, rem_key), primes[4], seed), | 71 | self.round(self.buf[0..]); |
| 58 | 5 => mix0((read_bytes(4, rem_key) << 8) | read_bytes(1, rem_key[4..]), primes[4], seed), | 72 | self.buf_len = 0; |
| 59 | 6 => mix0((read_bytes(4, rem_key) << 16) | read_bytes(2, rem_key[4..]), primes[4], seed), | 73 | } |
| 60 | 7 => mix0((read_bytes(4, rem_key) << 24) | (read_bytes(2, rem_key[4..]) << 8) | read_bytes(1, rem_key[6..]), primes[4], seed), | 74 | |
| 61 | 8 => mix0(read_8bytes_swapped(rem_key), primes[4], seed), | 75 | // Full middle blocks. |
| 62 | 9 => mix0(read_8bytes_swapped(rem_key), read_bytes(1, rem_key[8..]), seed), | 76 | while (off + 32 <= b.len) : (off += 32) { |
| 63 | 10 => mix0(read_8bytes_swapped(rem_key), read_bytes(2, rem_key[8..]), seed), | 77 | @inlineCall(self.round, b[off .. off + 32]); |
| 64 | 11 => mix0(read_8bytes_swapped(rem_key), (read_bytes(2, rem_key[8..]) << 8) | read_bytes(1, rem_key[10..]), seed), | 78 | } |
| 65 | 12 => mix0(read_8bytes_swapped(rem_key), read_bytes(4, rem_key[8..]), seed), | 79 | |
| 66 | 13 => mix0(read_8bytes_swapped(rem_key), (read_bytes(4, rem_key[8..]) << 8) | read_bytes(1, rem_key[12..]), seed), | 80 | // Remainder for next pass. |
| 67 | 14 => mix0(read_8bytes_swapped(rem_key), (read_bytes(4, rem_key[8..]) << 16) | read_bytes(2, rem_key[12..]), seed), | 81 | mem.copy(u8, self.buf[self.buf_len..], b[off..]); |
| 68 | 15 => mix0(read_8bytes_swapped(rem_key), (read_bytes(4, rem_key[8..]) << 24) | (read_bytes(2, rem_key[12..]) << 8) | read_bytes(1, rem_key[14..]), seed), | 82 | self.buf_len += @intCast(u8, b[off..].len); |
| 69 | 16 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed), | 83 | self.msg_len += b.len; |
| 70 | 17 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_bytes(1, rem_key[16..]), primes[4], seed), | 84 | } |
| 71 | 18 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_bytes(2, rem_key[16..]), primes[4], seed), | 85 | |
| 72 | 19 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1((read_bytes(2, rem_key[16..]) << 8) | read_bytes(1, rem_key[18..]), primes[4], seed), | 86 | pub fn final(self: *Wyhash) u64 { |
| 73 | 20 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_bytes(4, rem_key[16..]), primes[4], seed), | 87 | const seed = self.seed; |
| 74 | 21 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1((read_bytes(4, rem_key[16..]) << 8) | read_bytes(1, rem_key[20..]), primes[4], seed), | 88 | const rem_len = @intCast(u5, self.buf_len); |
| 75 | 22 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1((read_bytes(4, rem_key[16..]) << 16) | read_bytes(2, rem_key[20..]), primes[4], seed), | 89 | const rem_key = self.buf[0..self.buf_len]; |
| 76 | 23 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1((read_bytes(4, rem_key[16..]) << 24) | (read_bytes(2, rem_key[20..]) << 8) | read_bytes(1, rem_key[22..]), primes[4], seed), | 90 | |
| 77 | 24 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_8bytes_swapped(rem_key[16..]), primes[4], seed), | 91 | self.seed = switch (rem_len) { |
| 78 | 25 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_8bytes_swapped(rem_key[16..]), read_bytes(1, rem_key[24..]), seed), | 92 | 0 => seed, |
| 79 | 26 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_8bytes_swapped(rem_key[16..]), read_bytes(2, rem_key[24..]), seed), | 93 | 1 => mix0(read_bytes(1, rem_key), primes[4], seed), |
| 80 | 27 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_8bytes_swapped(rem_key[16..]), (read_bytes(2, rem_key[24..]) << 8) | read_bytes(1, rem_key[26..]), seed), | 94 | 2 => mix0(read_bytes(2, rem_key), primes[4], seed), |
| 81 | 28 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_8bytes_swapped(rem_key[16..]), read_bytes(4, rem_key[24..]), seed), | 95 | 3 => mix0((read_bytes(2, rem_key) << 8) | read_bytes(1, rem_key[2..]), primes[4], seed), |
| 82 | 29 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_8bytes_swapped(rem_key[16..]), (read_bytes(4, rem_key[24..]) << 8) | read_bytes(1, rem_key[28..]), seed), | 96 | 4 => mix0(read_bytes(4, rem_key), primes[4], seed), |
| 83 | 30 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_8bytes_swapped(rem_key[16..]), (read_bytes(4, rem_key[24..]) << 16) | read_bytes(2, rem_key[28..]), seed), | 97 | 5 => mix0((read_bytes(4, rem_key) << 8) | read_bytes(1, rem_key[4..]), primes[4], seed), |
| 84 | 31 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_8bytes_swapped(rem_key[16..]), (read_bytes(4, rem_key[24..]) << 24) | (read_bytes(2, rem_key[28..]) << 8) | read_bytes(1, rem_key[30..]), seed), | 98 | 6 => mix0((read_bytes(4, rem_key) << 16) | read_bytes(2, rem_key[4..]), primes[4], seed), |
| 85 | }; | 99 | 7 => mix0((read_bytes(4, rem_key) << 24) | (read_bytes(2, rem_key[4..]) << 8) | read_bytes(1, rem_key[6..]), primes[4], seed), |
| 86 | | 100 | 8 => mix0(read_8bytes_swapped(rem_key), primes[4], seed), |
| 87 | return mum(seed ^ key.len, primes[4]); | 101 | 9 => mix0(read_8bytes_swapped(rem_key), read_bytes(1, rem_key[8..]), seed), |
| 88 | } | 102 | 10 => mix0(read_8bytes_swapped(rem_key), read_bytes(2, rem_key[8..]), seed), |
| | 103 | 11 => mix0(read_8bytes_swapped(rem_key), (read_bytes(2, rem_key[8..]) << 8) | read_bytes(1, rem_key[10..]), seed), |
| | 104 | 12 => mix0(read_8bytes_swapped(rem_key), read_bytes(4, rem_key[8..]), seed), |
| | 105 | 13 => mix0(read_8bytes_swapped(rem_key), (read_bytes(4, rem_key[8..]) << 8) | read_bytes(1, rem_key[12..]), seed), |
| | 106 | 14 => mix0(read_8bytes_swapped(rem_key), (read_bytes(4, rem_key[8..]) << 16) | read_bytes(2, rem_key[12..]), seed), |
| | 107 | 15 => mix0(read_8bytes_swapped(rem_key), (read_bytes(4, rem_key[8..]) << 24) | (read_bytes(2, rem_key[12..]) << 8) | read_bytes(1, rem_key[14..]), seed), |
| | 108 | 16 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed), |
| | 109 | 17 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_bytes(1, rem_key[16..]), primes[4], seed), |
| | 110 | 18 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_bytes(2, rem_key[16..]), primes[4], seed), |
| | 111 | 19 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1((read_bytes(2, rem_key[16..]) << 8) | read_bytes(1, rem_key[18..]), primes[4], seed), |
| | 112 | 20 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_bytes(4, rem_key[16..]), primes[4], seed), |
| | 113 | 21 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1((read_bytes(4, rem_key[16..]) << 8) | read_bytes(1, rem_key[20..]), primes[4], seed), |
| | 114 | 22 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1((read_bytes(4, rem_key[16..]) << 16) | read_bytes(2, rem_key[20..]), primes[4], seed), |
| | 115 | 23 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1((read_bytes(4, rem_key[16..]) << 24) | (read_bytes(2, rem_key[20..]) << 8) | read_bytes(1, rem_key[22..]), primes[4], seed), |
| | 116 | 24 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_8bytes_swapped(rem_key[16..]), primes[4], seed), |
| | 117 | 25 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_8bytes_swapped(rem_key[16..]), read_bytes(1, rem_key[24..]), seed), |
| | 118 | 26 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_8bytes_swapped(rem_key[16..]), read_bytes(2, rem_key[24..]), seed), |
| | 119 | 27 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_8bytes_swapped(rem_key[16..]), (read_bytes(2, rem_key[24..]) << 8) | read_bytes(1, rem_key[26..]), seed), |
| | 120 | 28 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_8bytes_swapped(rem_key[16..]), read_bytes(4, rem_key[24..]), seed), |
| | 121 | 29 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_8bytes_swapped(rem_key[16..]), (read_bytes(4, rem_key[24..]) << 8) | read_bytes(1, rem_key[28..]), seed), |
| | 122 | 30 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_8bytes_swapped(rem_key[16..]), (read_bytes(4, rem_key[24..]) << 16) | read_bytes(2, rem_key[28..]), seed), |
| | 123 | 31 => mix0(read_8bytes_swapped(rem_key), read_8bytes_swapped(rem_key[8..]), seed) ^ mix1(read_8bytes_swapped(rem_key[16..]), (read_bytes(4, rem_key[24..]) << 24) | (read_bytes(2, rem_key[28..]) << 8) | read_bytes(1, rem_key[30..]), seed), |
| | 124 | }; |
| | 125 | |
| | 126 | return mum(self.seed ^ self.msg_len, primes[4]); |
| | 127 | } |
| | 128 | |
| | 129 | pub fn hash(seed: u64, input: []const u8) u64 { |
| | 130 | var c = Wyhash.init(seed); |
| | 131 | c.update(input); |
| | 132 | return c.final(); |
| | 133 | } |
| | 134 | }; |
| 89 | | 135 | |
| 90 | test "test vectors" { | 136 | test "test vectors" { |
| 91 | const expectEqual = std.testing.expectEqual; | 137 | const expectEqual = std.testing.expectEqual; |
| 92 | expectEqual(hash("", 0), 0x0); | 138 | const hash = Wyhash.hash; |
| 93 | expectEqual(hash("a", 1), 0xbed235177f41d328); | 139 | |
| 94 | expectEqual(hash("abc", 2), 0xbe348debe59b27c3); | 140 | expectEqual(hash(0, ""), 0x0); |
| 95 | expectEqual(hash("message digest", 3), 0x37320f657213a290); | 141 | expectEqual(hash(1, "a"), 0xbed235177f41d328); |
| 96 | expectEqual(hash("abcdefghijklmnopqrstuvwxyz", 4), 0xd0b270e1d8a7019c); | 142 | expectEqual(hash(2, "abc"), 0xbe348debe59b27c3); |
| 97 | expectEqual(hash("ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789", 5), 0x602a1894d3bbfe7f); | 143 | expectEqual(hash(3, "message digest"), 0x37320f657213a290); |
| 98 | expectEqual(hash("12345678901234567890123456789012345678901234567890123456789012345678901234567890", 6), 0x829e9c148b75970e); | 144 | expectEqual(hash(4, "abcdefghijklmnopqrstuvwxyz"), 0xd0b270e1d8a7019c); |
| | 145 | expectEqual(hash(5, "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789"), 0x602a1894d3bbfe7f); |
| | 146 | expectEqual(hash(6, "12345678901234567890123456789012345678901234567890123456789012345678901234567890"), 0x829e9c148b75970e); |
| 99 | } | 147 | } |