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| #ifndef PG_BITUTILS_H |
| #define PG_BITUTILS_H |
|
|
| #ifdef _MSC_VER |
| #include <intrin.h> |
| #define HAVE_BITSCAN_FORWARD |
| #define HAVE_BITSCAN_REVERSE |
|
|
| #else |
| #if defined(HAVE__BUILTIN_CTZ) |
| #define HAVE_BITSCAN_FORWARD |
| #endif |
|
|
| #if defined(HAVE__BUILTIN_CLZ) |
| #define HAVE_BITSCAN_REVERSE |
| #endif |
| #endif |
|
|
| extern PGDLLIMPORT const uint8 pg_leftmost_one_pos[256]; |
| extern PGDLLIMPORT const uint8 pg_rightmost_one_pos[256]; |
| extern PGDLLIMPORT const uint8 pg_number_of_ones[256]; |
|
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| |
| static inline int |
| pg_leftmost_one_pos32(uint32 word) |
| { |
| #ifdef HAVE__BUILTIN_CLZ |
| Assert(word != 0); |
|
|
| return 31 - __builtin_clz(word); |
| #elif defined(_MSC_VER) |
| unsigned long result; |
| bool non_zero; |
|
|
| non_zero = _BitScanReverse(&result, word); |
| Assert(non_zero); |
| return (int) result; |
| #else |
| int shift = 32 - 8; |
|
|
| Assert(word != 0); |
|
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| while ((word >> shift) == 0) |
| shift -= 8; |
|
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| return shift + pg_leftmost_one_pos[(word >> shift) & 255]; |
| #endif |
| } |
|
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| |
| static inline int |
| pg_leftmost_one_pos64(uint64 word) |
| { |
| #ifdef HAVE__BUILTIN_CLZ |
| Assert(word != 0); |
|
|
| #if defined(HAVE_LONG_INT_64) |
| return 63 - __builtin_clzl(word); |
| #elif defined(HAVE_LONG_LONG_INT_64) |
| return 63 - __builtin_clzll(word); |
| #else |
| #error must have a working 64-bit integer datatype |
| #endif |
|
|
| #elif defined(_MSC_VER) && (defined(_M_AMD64) || defined(_M_ARM64)) |
| unsigned long result; |
| bool non_zero; |
|
|
| non_zero = _BitScanReverse64(&result, word); |
| Assert(non_zero); |
| return (int) result; |
| #else |
| int shift = 64 - 8; |
|
|
| Assert(word != 0); |
|
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| while ((word >> shift) == 0) |
| shift -= 8; |
|
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| return shift + pg_leftmost_one_pos[(word >> shift) & 255]; |
| #endif |
| } |
|
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| static inline int |
| pg_rightmost_one_pos32(uint32 word) |
| { |
| #ifdef HAVE__BUILTIN_CTZ |
| Assert(word != 0); |
|
|
| return __builtin_ctz(word); |
| #elif defined(_MSC_VER) |
| unsigned long result; |
| bool non_zero; |
|
|
| non_zero = _BitScanForward(&result, word); |
| Assert(non_zero); |
| return (int) result; |
| #else |
| int result = 0; |
|
|
| Assert(word != 0); |
|
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| while ((word & 255) == 0) |
| { |
| word >>= 8; |
| result += 8; |
| } |
| result += pg_rightmost_one_pos[word & 255]; |
| return result; |
| #endif |
| } |
|
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| |
| static inline int |
| pg_rightmost_one_pos64(uint64 word) |
| { |
| #ifdef HAVE__BUILTIN_CTZ |
| Assert(word != 0); |
|
|
| #if defined(HAVE_LONG_INT_64) |
| return __builtin_ctzl(word); |
| #elif defined(HAVE_LONG_LONG_INT_64) |
| return __builtin_ctzll(word); |
| #else |
| #error must have a working 64-bit integer datatype |
| #endif |
|
|
| #elif defined(_MSC_VER) && (defined(_M_AMD64) || defined(_M_ARM64)) |
| unsigned long result; |
| bool non_zero; |
|
|
| non_zero = _BitScanForward64(&result, word); |
| Assert(non_zero); |
| return (int) result; |
| #else |
| int result = 0; |
|
|
| Assert(word != 0); |
|
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| while ((word & 255) == 0) |
| { |
| word >>= 8; |
| result += 8; |
| } |
| result += pg_rightmost_one_pos[word & 255]; |
| return result; |
| #endif |
| } |
|
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| static inline uint32 |
| pg_nextpower2_32(uint32 num) |
| { |
| Assert(num > 0 && num <= PG_UINT32_MAX / 2 + 1); |
|
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| if ((num & (num - 1)) == 0) |
| return num; |
|
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| return ((uint32) 1) << (pg_leftmost_one_pos32(num) + 1); |
| } |
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| static inline uint64 |
| pg_nextpower2_64(uint64 num) |
| { |
| Assert(num > 0 && num <= PG_UINT64_MAX / 2 + 1); |
|
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| |
| if ((num & (num - 1)) == 0) |
| return num; |
|
|
| return ((uint64) 1) << (pg_leftmost_one_pos64(num) + 1); |
| } |
|
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| static inline uint32 |
| pg_prevpower2_32(uint32 num) |
| { |
| return ((uint32) 1) << pg_leftmost_one_pos32(num); |
| } |
|
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| static inline uint64 |
| pg_prevpower2_64(uint64 num) |
| { |
| return ((uint64) 1) << pg_leftmost_one_pos64(num); |
| } |
|
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| |
| static inline uint32 |
| pg_ceil_log2_32(uint32 num) |
| { |
| if (num < 2) |
| return 0; |
| else |
| return pg_leftmost_one_pos32(num - 1) + 1; |
| } |
|
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| |
| static inline uint64 |
| pg_ceil_log2_64(uint64 num) |
| { |
| if (num < 2) |
| return 0; |
| else |
| return pg_leftmost_one_pos64(num - 1) + 1; |
| } |
|
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| |
| #if defined(_MSC_VER) && defined(_M_AMD64) |
| #define HAVE_X86_64_POPCNTQ |
| #endif |
|
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| #ifdef HAVE_X86_64_POPCNTQ |
| #if defined(HAVE__GET_CPUID) || defined(HAVE__CPUID) |
| #define TRY_POPCNT_FAST 1 |
| #endif |
| #endif |
|
|
| #ifdef TRY_POPCNT_FAST |
| |
| extern int (*pg_popcount32) (uint32 word); |
| extern int (*pg_popcount64) (uint64 word); |
|
|
| #else |
| |
| extern int pg_popcount32(uint32 word); |
| extern int pg_popcount64(uint64 word); |
|
|
| #endif |
|
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| |
| extern uint64 pg_popcount(const char *buf, int bytes); |
|
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| |
| static inline uint32 |
| pg_rotate_right32(uint32 word, int n) |
| { |
| return (word >> n) | (word << (32 - n)); |
| } |
|
|
| static inline uint32 |
| pg_rotate_left32(uint32 word, int n) |
| { |
| return (word << n) | (word >> (32 - n)); |
| } |
|
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| |
|
|
| #if SIZEOF_SIZE_T == 4 |
| #define pg_leftmost_one_pos_size_t pg_leftmost_one_pos32 |
| #define pg_nextpower2_size_t pg_nextpower2_32 |
| #define pg_prevpower2_size_t pg_prevpower2_32 |
| #else |
| #define pg_leftmost_one_pos_size_t pg_leftmost_one_pos64 |
| #define pg_nextpower2_size_t pg_nextpower2_64 |
| #define pg_prevpower2_size_t pg_prevpower2_64 |
| #endif |
|
|
| #endif |
|
|