github.com/twelsh-aw/go/src@v0.0.0-20230516233729-a56fe86a7c81/runtime/alg.go (about) 1 // Copyright 2014 The Go Authors. All rights reserved. 2 // Use of this source code is governed by a BSD-style 3 // license that can be found in the LICENSE file. 4 5 package runtime 6 7 import ( 8 "internal/abi" 9 "internal/cpu" 10 "internal/goarch" 11 "unsafe" 12 ) 13 14 const ( 15 c0 = uintptr((8-goarch.PtrSize)/4*2860486313 + (goarch.PtrSize-4)/4*33054211828000289) 16 c1 = uintptr((8-goarch.PtrSize)/4*3267000013 + (goarch.PtrSize-4)/4*23344194077549503) 17 ) 18 19 func memhash0(p unsafe.Pointer, h uintptr) uintptr { 20 return h 21 } 22 23 func memhash8(p unsafe.Pointer, h uintptr) uintptr { 24 return memhash(p, h, 1) 25 } 26 27 func memhash16(p unsafe.Pointer, h uintptr) uintptr { 28 return memhash(p, h, 2) 29 } 30 31 func memhash128(p unsafe.Pointer, h uintptr) uintptr { 32 return memhash(p, h, 16) 33 } 34 35 //go:nosplit 36 func memhash_varlen(p unsafe.Pointer, h uintptr) uintptr { 37 ptr := getclosureptr() 38 size := *(*uintptr)(unsafe.Pointer(ptr + unsafe.Sizeof(h))) 39 return memhash(p, h, size) 40 } 41 42 // runtime variable to check if the processor we're running on 43 // actually supports the instructions used by the AES-based 44 // hash implementation. 45 var useAeshash bool 46 47 // in asm_*.s 48 func memhash(p unsafe.Pointer, h, s uintptr) uintptr 49 func memhash32(p unsafe.Pointer, h uintptr) uintptr 50 func memhash64(p unsafe.Pointer, h uintptr) uintptr 51 func strhash(p unsafe.Pointer, h uintptr) uintptr 52 53 func strhashFallback(a unsafe.Pointer, h uintptr) uintptr { 54 x := (*stringStruct)(a) 55 return memhashFallback(x.str, h, uintptr(x.len)) 56 } 57 58 // NOTE: Because NaN != NaN, a map can contain any 59 // number of (mostly useless) entries keyed with NaNs. 60 // To avoid long hash chains, we assign a random number 61 // as the hash value for a NaN. 62 63 func f32hash(p unsafe.Pointer, h uintptr) uintptr { 64 f := *(*float32)(p) 65 switch { 66 case f == 0: 67 return c1 * (c0 ^ h) // +0, -0 68 case f != f: 69 return c1 * (c0 ^ h ^ uintptr(fastrand())) // any kind of NaN 70 default: 71 return memhash(p, h, 4) 72 } 73 } 74 75 func f64hash(p unsafe.Pointer, h uintptr) uintptr { 76 f := *(*float64)(p) 77 switch { 78 case f == 0: 79 return c1 * (c0 ^ h) // +0, -0 80 case f != f: 81 return c1 * (c0 ^ h ^ uintptr(fastrand())) // any kind of NaN 82 default: 83 return memhash(p, h, 8) 84 } 85 } 86 87 func c64hash(p unsafe.Pointer, h uintptr) uintptr { 88 x := (*[2]float32)(p) 89 return f32hash(unsafe.Pointer(&x[1]), f32hash(unsafe.Pointer(&x[0]), h)) 90 } 91 92 func c128hash(p unsafe.Pointer, h uintptr) uintptr { 93 x := (*[2]float64)(p) 94 return f64hash(unsafe.Pointer(&x[1]), f64hash(unsafe.Pointer(&x[0]), h)) 95 } 96 97 func interhash(p unsafe.Pointer, h uintptr) uintptr { 98 a := (*iface)(p) 99 tab := a.tab 100 if tab == nil { 101 return h 102 } 103 t := tab._type 104 if t.Equal == nil { 105 // Check hashability here. We could do this check inside 106 // typehash, but we want to report the topmost type in 107 // the error text (e.g. in a struct with a field of slice type 108 // we want to report the struct, not the slice). 109 panic(errorString("hash of unhashable type " + toRType(t).string())) 110 } 111 if isDirectIface(t) { 112 return c1 * typehash(t, unsafe.Pointer(&a.data), h^c0) 113 } else { 114 return c1 * typehash(t, a.data, h^c0) 115 } 116 } 117 118 func nilinterhash(p unsafe.Pointer, h uintptr) uintptr { 119 a := (*eface)(p) 120 t := a._type 121 if t == nil { 122 return h 123 } 124 if t.Equal == nil { 125 // See comment in interhash above. 126 panic(errorString("hash of unhashable type " + toRType(t).string())) 127 } 128 if isDirectIface(t) { 129 return c1 * typehash(t, unsafe.Pointer(&a.data), h^c0) 130 } else { 131 return c1 * typehash(t, a.data, h^c0) 132 } 133 } 134 135 // typehash computes the hash of the object of type t at address p. 136 // h is the seed. 137 // This function is seldom used. Most maps use for hashing either 138 // fixed functions (e.g. f32hash) or compiler-generated functions 139 // (e.g. for a type like struct { x, y string }). This implementation 140 // is slower but more general and is used for hashing interface types 141 // (called from interhash or nilinterhash, above) or for hashing in 142 // maps generated by reflect.MapOf (reflect_typehash, below). 143 // Note: this function must match the compiler generated 144 // functions exactly. See issue 37716. 145 func typehash(t *_type, p unsafe.Pointer, h uintptr) uintptr { 146 if t.TFlag&abi.TFlagRegularMemory != 0 { 147 // Handle ptr sizes specially, see issue 37086. 148 switch t.Size_ { 149 case 4: 150 return memhash32(p, h) 151 case 8: 152 return memhash64(p, h) 153 default: 154 return memhash(p, h, t.Size_) 155 } 156 } 157 switch t.Kind_ & kindMask { 158 case kindFloat32: 159 return f32hash(p, h) 160 case kindFloat64: 161 return f64hash(p, h) 162 case kindComplex64: 163 return c64hash(p, h) 164 case kindComplex128: 165 return c128hash(p, h) 166 case kindString: 167 return strhash(p, h) 168 case kindInterface: 169 i := (*interfacetype)(unsafe.Pointer(t)) 170 if len(i.Methods) == 0 { 171 return nilinterhash(p, h) 172 } 173 return interhash(p, h) 174 case kindArray: 175 a := (*arraytype)(unsafe.Pointer(t)) 176 for i := uintptr(0); i < a.Len; i++ { 177 h = typehash(a.Elem, add(p, i*a.Elem.Size_), h) 178 } 179 return h 180 case kindStruct: 181 s := (*structtype)(unsafe.Pointer(t)) 182 for _, f := range s.Fields { 183 if f.Name.IsBlank() { 184 continue 185 } 186 h = typehash(f.Typ, add(p, f.Offset), h) 187 } 188 return h 189 default: 190 // Should never happen, as typehash should only be called 191 // with comparable types. 192 panic(errorString("hash of unhashable type " + toRType(t).string())) 193 } 194 } 195 196 //go:linkname reflect_typehash reflect.typehash 197 func reflect_typehash(t *_type, p unsafe.Pointer, h uintptr) uintptr { 198 return typehash(t, p, h) 199 } 200 201 func memequal0(p, q unsafe.Pointer) bool { 202 return true 203 } 204 func memequal8(p, q unsafe.Pointer) bool { 205 return *(*int8)(p) == *(*int8)(q) 206 } 207 func memequal16(p, q unsafe.Pointer) bool { 208 return *(*int16)(p) == *(*int16)(q) 209 } 210 func memequal32(p, q unsafe.Pointer) bool { 211 return *(*int32)(p) == *(*int32)(q) 212 } 213 func memequal64(p, q unsafe.Pointer) bool { 214 return *(*int64)(p) == *(*int64)(q) 215 } 216 func memequal128(p, q unsafe.Pointer) bool { 217 return *(*[2]int64)(p) == *(*[2]int64)(q) 218 } 219 func f32equal(p, q unsafe.Pointer) bool { 220 return *(*float32)(p) == *(*float32)(q) 221 } 222 func f64equal(p, q unsafe.Pointer) bool { 223 return *(*float64)(p) == *(*float64)(q) 224 } 225 func c64equal(p, q unsafe.Pointer) bool { 226 return *(*complex64)(p) == *(*complex64)(q) 227 } 228 func c128equal(p, q unsafe.Pointer) bool { 229 return *(*complex128)(p) == *(*complex128)(q) 230 } 231 func strequal(p, q unsafe.Pointer) bool { 232 return *(*string)(p) == *(*string)(q) 233 } 234 func interequal(p, q unsafe.Pointer) bool { 235 x := *(*iface)(p) 236 y := *(*iface)(q) 237 return x.tab == y.tab && ifaceeq(x.tab, x.data, y.data) 238 } 239 func nilinterequal(p, q unsafe.Pointer) bool { 240 x := *(*eface)(p) 241 y := *(*eface)(q) 242 return x._type == y._type && efaceeq(x._type, x.data, y.data) 243 } 244 func efaceeq(t *_type, x, y unsafe.Pointer) bool { 245 if t == nil { 246 return true 247 } 248 eq := t.Equal 249 if eq == nil { 250 panic(errorString("comparing uncomparable type " + toRType(t).string())) 251 } 252 if isDirectIface(t) { 253 // Direct interface types are ptr, chan, map, func, and single-element structs/arrays thereof. 254 // Maps and funcs are not comparable, so they can't reach here. 255 // Ptrs, chans, and single-element items can be compared directly using ==. 256 return x == y 257 } 258 return eq(x, y) 259 } 260 func ifaceeq(tab *itab, x, y unsafe.Pointer) bool { 261 if tab == nil { 262 return true 263 } 264 t := tab._type 265 eq := t.Equal 266 if eq == nil { 267 panic(errorString("comparing uncomparable type " + toRType(t).string())) 268 } 269 if isDirectIface(t) { 270 // See comment in efaceeq. 271 return x == y 272 } 273 return eq(x, y) 274 } 275 276 // Testing adapters for hash quality tests (see hash_test.go) 277 func stringHash(s string, seed uintptr) uintptr { 278 return strhash(noescape(unsafe.Pointer(&s)), seed) 279 } 280 281 func bytesHash(b []byte, seed uintptr) uintptr { 282 s := (*slice)(unsafe.Pointer(&b)) 283 return memhash(s.array, seed, uintptr(s.len)) 284 } 285 286 func int32Hash(i uint32, seed uintptr) uintptr { 287 return memhash32(noescape(unsafe.Pointer(&i)), seed) 288 } 289 290 func int64Hash(i uint64, seed uintptr) uintptr { 291 return memhash64(noescape(unsafe.Pointer(&i)), seed) 292 } 293 294 func efaceHash(i any, seed uintptr) uintptr { 295 return nilinterhash(noescape(unsafe.Pointer(&i)), seed) 296 } 297 298 func ifaceHash(i interface { 299 F() 300 }, seed uintptr) uintptr { 301 return interhash(noescape(unsafe.Pointer(&i)), seed) 302 } 303 304 const hashRandomBytes = goarch.PtrSize / 4 * 64 305 306 // used in asm_{386,amd64,arm64}.s to seed the hash function 307 var aeskeysched [hashRandomBytes]byte 308 309 // used in hash{32,64}.go to seed the hash function 310 var hashkey [4]uintptr 311 312 func alginit() { 313 // Install AES hash algorithms if the instructions needed are present. 314 if (GOARCH == "386" || GOARCH == "amd64") && 315 cpu.X86.HasAES && // AESENC 316 cpu.X86.HasSSSE3 && // PSHUFB 317 cpu.X86.HasSSE41 { // PINSR{D,Q} 318 initAlgAES() 319 return 320 } 321 if GOARCH == "arm64" && cpu.ARM64.HasAES { 322 initAlgAES() 323 return 324 } 325 getRandomData((*[len(hashkey) * goarch.PtrSize]byte)(unsafe.Pointer(&hashkey))[:]) 326 hashkey[0] |= 1 // make sure these numbers are odd 327 hashkey[1] |= 1 328 hashkey[2] |= 1 329 hashkey[3] |= 1 330 } 331 332 func initAlgAES() { 333 useAeshash = true 334 // Initialize with random data so hash collisions will be hard to engineer. 335 getRandomData(aeskeysched[:]) 336 } 337 338 // Note: These routines perform the read with a native endianness. 339 func readUnaligned32(p unsafe.Pointer) uint32 { 340 q := (*[4]byte)(p) 341 if goarch.BigEndian { 342 return uint32(q[3]) | uint32(q[2])<<8 | uint32(q[1])<<16 | uint32(q[0])<<24 343 } 344 return uint32(q[0]) | uint32(q[1])<<8 | uint32(q[2])<<16 | uint32(q[3])<<24 345 } 346 347 func readUnaligned64(p unsafe.Pointer) uint64 { 348 q := (*[8]byte)(p) 349 if goarch.BigEndian { 350 return uint64(q[7]) | uint64(q[6])<<8 | uint64(q[5])<<16 | uint64(q[4])<<24 | 351 uint64(q[3])<<32 | uint64(q[2])<<40 | uint64(q[1])<<48 | uint64(q[0])<<56 352 } 353 return uint64(q[0]) | uint64(q[1])<<8 | uint64(q[2])<<16 | uint64(q[3])<<24 | uint64(q[4])<<32 | uint64(q[5])<<40 | uint64(q[6])<<48 | uint64(q[7])<<56 354 }