uint128.h 3.5 KB

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  1. // SPDX-FileCopyrightText: Copyright 2019 yuzu Emulator Project
  2. // SPDX-License-Identifier: GPL-2.0-or-later
  3. #pragma once
  4. #include <utility>
  5. #ifdef _MSC_VER
  6. #include <intrin.h>
  7. #pragma intrinsic(__umulh)
  8. #pragma intrinsic(_umul128)
  9. #pragma intrinsic(_udiv128)
  10. #else
  11. #include <cstring>
  12. #include <x86intrin.h>
  13. #endif
  14. #include "common/common_types.h"
  15. namespace Common {
  16. // This function multiplies 2 u64 values and divides it by a u64 value.
  17. [[nodiscard]] static inline u64 MultiplyAndDivide64(u64 a, u64 b, u64 d) {
  18. #ifdef _MSC_VER
  19. u128 r{};
  20. r[0] = _umul128(a, b, &r[1]);
  21. u64 remainder;
  22. #if _MSC_VER < 1923
  23. return udiv128(r[1], r[0], d, &remainder);
  24. #else
  25. return _udiv128(r[1], r[0], d, &remainder);
  26. #endif
  27. #else
  28. const u64 diva = a / d;
  29. const u64 moda = a % d;
  30. const u64 divb = b / d;
  31. const u64 modb = b % d;
  32. return diva * b + moda * divb + moda * modb / d;
  33. #endif
  34. }
  35. // This function multiplies 2 u64 values and produces a u128 value;
  36. [[nodiscard]] static inline u128 Multiply64Into128(u64 a, u64 b) {
  37. u128 result;
  38. #ifdef _MSC_VER
  39. result[0] = _umul128(a, b, &result[1]);
  40. #else
  41. unsigned __int128 tmp = a;
  42. tmp *= b;
  43. std::memcpy(&result, &tmp, sizeof(u128));
  44. #endif
  45. return result;
  46. }
  47. [[nodiscard]] static inline u64 GetFixedPoint64Factor(u64 numerator, u64 divisor) {
  48. #ifdef __SIZEOF_INT128__
  49. const auto base = static_cast<unsigned __int128>(numerator) << 64ULL;
  50. return static_cast<u64>(base / divisor);
  51. #elif defined(_M_X64) || defined(_M_ARM64)
  52. std::array<u64, 2> r = {0, numerator};
  53. u64 remainder;
  54. #if _MSC_VER < 1923
  55. return udiv128(r[1], r[0], divisor, &remainder);
  56. #else
  57. return _udiv128(r[1], r[0], divisor, &remainder);
  58. #endif
  59. #else
  60. // This one is bit more inaccurate.
  61. return MultiplyAndDivide64(std::numeric_limits<u64>::max(), numerator, divisor);
  62. #endif
  63. }
  64. [[nodiscard]] static inline u64 MultiplyHigh(u64 a, u64 b) {
  65. #ifdef __SIZEOF_INT128__
  66. return (static_cast<unsigned __int128>(a) * static_cast<unsigned __int128>(b)) >> 64;
  67. #elif defined(_M_X64) || defined(_M_ARM64)
  68. return __umulh(a, b); // MSVC
  69. #else
  70. // Generic fallback
  71. const u64 a_lo = u32(a);
  72. const u64 a_hi = a >> 32;
  73. const u64 b_lo = u32(b);
  74. const u64 b_hi = b >> 32;
  75. const u64 a_x_b_hi = a_hi * b_hi;
  76. const u64 a_x_b_mid = a_hi * b_lo;
  77. const u64 b_x_a_mid = b_hi * a_lo;
  78. const u64 a_x_b_lo = a_lo * b_lo;
  79. const u64 carry_bit = (static_cast<u64>(static_cast<u32>(a_x_b_mid)) +
  80. static_cast<u64>(static_cast<u32>(b_x_a_mid)) + (a_x_b_lo >> 32)) >>
  81. 32;
  82. const u64 multhi = a_x_b_hi + (a_x_b_mid >> 32) + (b_x_a_mid >> 32) + carry_bit;
  83. return multhi;
  84. #endif
  85. }
  86. // This function divides a u128 by a u32 value and produces two u64 values:
  87. // the result of division and the remainder
  88. [[nodiscard]] static inline std::pair<u64, u64> Divide128On32(u128 dividend, u32 divisor) {
  89. u64 remainder = dividend[0] % divisor;
  90. u64 accum = dividend[0] / divisor;
  91. if (dividend[1] == 0)
  92. return {accum, remainder};
  93. // We ignore dividend[1] / divisor as that overflows
  94. const u64 first_segment = (dividend[1] % divisor) << 32;
  95. accum += (first_segment / divisor) << 32;
  96. const u64 second_segment = (first_segment % divisor) << 32;
  97. accum += (second_segment / divisor);
  98. remainder += second_segment % divisor;
  99. if (remainder >= divisor) {
  100. accum++;
  101. remainder -= divisor;
  102. }
  103. return {accum, remainder};
  104. }
  105. } // namespace Common