#if !defined(phmap_utils_h_guard_) #define phmap_utils_h_guard_ // --------------------------------------------------------------------------- // Copyright (c) 2019, Gregory Popovitch - greg7mdp@gmail.com // // Licensed under the Apache License, Version 2.0 (the "License"); // you may not use this file except in compliance with the License. // You may obtain a copy of the License at // // https://www.apache.org/licenses/LICENSE-2.0 // // Unless required by applicable law or agreed to in writing, software // distributed under the License is distributed on an "AS IS" BASIS, // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. // See the License for the specific language governing permissions and // limitations under the License. // // Includes work from abseil-cpp (https://github.com/abseil/abseil-cpp) // with modifications. // // Copyright 2018 The Abseil Authors. // // Licensed under the Apache License, Version 2.0 (the "License"); // you may not use this file except in compliance with the License. // You may obtain a copy of the License at // // https://www.apache.org/licenses/LICENSE-2.0 // // Unless required by applicable law or agreed to in writing, software // distributed under the License is distributed on an "AS IS" BASIS, // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. // See the License for the specific language governing permissions and // limitations under the License. // --------------------------------------------------------------------------- //#include #include #define PHMAP_HASH_CLASS std::hash namespace phmap { template T phmap_min(T a, T b) { return a < b ? a : b; } template T phmap_max(T a, T b) { return a >= b ? a : b; } template using Allocator = typename std::allocator; template using Pair = typename std::pair; template struct EqualTo { inline size_t operator()(const T& a, const T& b) const { return std::equal_to()(a, b); } }; template struct Hash { inline size_t operator()(const T& __v) const { return PHMAP_HASH_CLASS()(__v); } }; template struct Hash { static size_t phmap_log2 (size_t val) noexcept { size_t res = 0; while (val > 1) { val >>= 1; res++; } return res; } inline size_t operator()(const T *__v) const noexcept { static const size_t shift = 3; // phmap_log2(1 + sizeof(T)); // T might be incomplete! const uintptr_t i = (const uintptr_t)__v; return static_cast(i >> shift); } }; // from http://burtleburtle.net/bob/hash/integer.html // fast and efficient for power of two table sizes where we always // consider the last bits. // --------------------------------------------------------------- inline size_t phmap_mix_32(uint32_t a) { a = a ^ (a >> 4); a = (a ^ 0xdeadbeef) + (a << 5); a = a ^ (a >> 11); return static_cast(a); } // More thorough scrambling as described in // https://gist.github.com/badboy/6267743 // ---------------------------------------- inline size_t phmap_mix_64(uint64_t a) { a = (~a) + (a << 21); // a = (a << 21) - a - 1; a = a ^ (a >> 24); a = (a + (a << 3)) + (a << 8); // a * 265 a = a ^ (a >> 14); a = (a + (a << 2)) + (a << 4); // a * 21 a = a ^ (a >> 28); a = a + (a << 31); return static_cast(a); } template struct phmap_unary_function { typedef ArgumentType argument_type; typedef ResultType result_type; }; template <> struct Hash : public phmap_unary_function { inline size_t operator()(bool __v) const noexcept { return static_cast(__v); } }; template <> struct Hash : public phmap_unary_function { inline size_t operator()(char __v) const noexcept { return static_cast(__v); } }; template <> struct Hash : public phmap_unary_function { inline size_t operator()(signed char __v) const noexcept { return static_cast(__v); } }; template <> struct Hash : public phmap_unary_function { inline size_t operator()(unsigned char __v) const noexcept { return static_cast(__v); } }; template <> struct Hash : public phmap_unary_function { inline size_t operator()(wchar_t __v) const noexcept { return static_cast(__v); } }; template <> struct Hash : public phmap_unary_function { inline size_t operator()(int16_t __v) const noexcept { return phmap_mix_32(static_cast(__v)); } }; template <> struct Hash : public phmap_unary_function { inline size_t operator()(uint16_t __v) const noexcept { return phmap_mix_32(static_cast(__v)); } }; template <> struct Hash : public phmap_unary_function { inline size_t operator()(int32_t __v) const noexcept { return phmap_mix_32(static_cast(__v)); } }; template <> struct Hash : public phmap_unary_function { inline size_t operator()(uint32_t __v) const noexcept { return phmap_mix_32(static_cast(__v)); } }; template <> struct Hash : public phmap_unary_function { inline size_t operator()(int64_t __v) const noexcept { return phmap_mix_64(static_cast(__v)); } }; template <> struct Hash : public phmap_unary_function { inline size_t operator()(uint64_t __v) const noexcept { return phmap_mix_64(static_cast(__v)); } }; template <> struct Hash : public phmap_unary_function { inline size_t operator()(float __v) const noexcept { // -0.0 and 0.0 should return same hash uint32_t *as_int = reinterpret_cast(&__v); return (__v == 0) ? static_cast(0) : phmap_mix_32(*as_int); } }; template <> struct Hash : public phmap_unary_function { inline size_t operator()(double __v) const noexcept { // -0.0 and 0.0 should return same hash uint64_t *as_int = reinterpret_cast(&__v); return (__v == 0) ? static_cast(0) : phmap_mix_64(*as_int); } }; template struct Combiner { inline void operator()(T& seed, T value); }; template struct Combiner { inline void operator()(T& seed, T value) { seed ^= value + 0x9e3779b9 + (seed << 6) + (seed >> 2); } }; template struct Combiner { inline void operator()(T& seed, T value) { seed ^= value + T(0xc6a4a7935bd1e995) + (seed << 6) + (seed >> 2); } }; template inline void hash_combine(std::size_t& seed, T const& v) { phmap::Hash hasher; Combiner combiner; combiner(seed, hasher(v)); } } #endif // phmap_utils_h_guard_