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| #ifndef PG_LFIND_H |
| #define PG_LFIND_H |
|
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| #include "port/simd.h" |
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| |
| static inline bool |
| pg_lfind8(uint8 key, uint8 *base, uint32 nelem) |
| { |
| uint32 i; |
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| |
| uint32 tail_idx = nelem & ~(sizeof(Vector8) - 1); |
| Vector8 chunk; |
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| for (i = 0; i < tail_idx; i += sizeof(Vector8)) |
| { |
| vector8_load(&chunk, &base[i]); |
| if (vector8_has(chunk, key)) |
| return true; |
| } |
|
|
| |
| for (; i < nelem; i++) |
| { |
| if (key == base[i]) |
| return true; |
| } |
|
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| return false; |
| } |
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| |
| static inline bool |
| pg_lfind8_le(uint8 key, uint8 *base, uint32 nelem) |
| { |
| uint32 i; |
|
|
| |
| uint32 tail_idx = nelem & ~(sizeof(Vector8) - 1); |
| Vector8 chunk; |
|
|
| for (i = 0; i < tail_idx; i += sizeof(Vector8)) |
| { |
| vector8_load(&chunk, &base[i]); |
| if (vector8_has_le(chunk, key)) |
| return true; |
| } |
|
|
| |
| for (; i < nelem; i++) |
| { |
| if (base[i] <= key) |
| return true; |
| } |
|
|
| return false; |
| } |
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| |
| static inline bool |
| pg_lfind32(uint32 key, uint32 *base, uint32 nelem) |
| { |
| uint32 i = 0; |
|
|
| #ifndef USE_NO_SIMD |
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| const Vector32 keys = vector32_broadcast(key); |
| const uint32 nelem_per_vector = sizeof(Vector32) / sizeof(uint32); |
| const uint32 nelem_per_iteration = 4 * nelem_per_vector; |
|
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| |
| const uint32 tail_idx = nelem & ~(nelem_per_iteration - 1); |
|
|
| #if defined(USE_ASSERT_CHECKING) |
| bool assert_result = false; |
|
|
| |
| for (i = 0; i < nelem; i++) |
| { |
| if (key == base[i]) |
| { |
| assert_result = true; |
| break; |
| } |
| } |
| #endif |
|
|
| for (i = 0; i < tail_idx; i += nelem_per_iteration) |
| { |
| Vector32 vals1, |
| vals2, |
| vals3, |
| vals4, |
| result1, |
| result2, |
| result3, |
| result4, |
| tmp1, |
| tmp2, |
| result; |
|
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| |
| vector32_load(&vals1, &base[i]); |
| vector32_load(&vals2, &base[i + nelem_per_vector]); |
| vector32_load(&vals3, &base[i + nelem_per_vector * 2]); |
| vector32_load(&vals4, &base[i + nelem_per_vector * 3]); |
|
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| |
| result1 = vector32_eq(keys, vals1); |
| result2 = vector32_eq(keys, vals2); |
| result3 = vector32_eq(keys, vals3); |
| result4 = vector32_eq(keys, vals4); |
|
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| |
| tmp1 = vector32_or(result1, result2); |
| tmp2 = vector32_or(result3, result4); |
| result = vector32_or(tmp1, tmp2); |
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| |
| if (vector32_is_highbit_set(result)) |
| { |
| Assert(assert_result == true); |
| return true; |
| } |
| } |
| #endif |
|
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| |
| for (; i < nelem; i++) |
| { |
| if (key == base[i]) |
| { |
| #ifndef USE_NO_SIMD |
| Assert(assert_result == true); |
| #endif |
| return true; |
| } |
| } |
|
|
| #ifndef USE_NO_SIMD |
| Assert(assert_result == false); |
| #endif |
| return false; |
| } |
|
|
| #endif |
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