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simdjson-simdjson/include/simdjson/ppc64/bitmanipulation.h
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Danila Kutenin f46a0f64f2 PPC64 support (#1254)
* Initial PPC64 support

* Add travis CI

* Fix outdated cmake version for travis

* Fix indendtation

* Try another workaround for outdated cmake in travis

* Try beta cmake

* Add dash before beta

* Use builtin snaps

* Use cmake as rocksdb

* Test cmake on bionic

* Remove unnecessary things from travis

* Remove unnecessary things from travis

* Another try of compiler install

* Add all major compilers

* Add all major compilers

* Add all major compilers

* Tweak travis a bit

* Typo

* More robust travis

* Typos typos typos

* Add fewer compilers, add non specific build for clang and gcc, should be the final config

* CMAKE_FLAGS is in incorrect place

* Remove default implementation

* Limit build thread number

* Fall back prefix_xor to a usual implementation, no performance boost is noticed

* Test for power9 as it is the main architecture for OpenPOWER right now

* Add to documentation to build with power9 as the implementation is compatible but compiler optimizations is not

* Replace ARM with PPC in the comment
2020-10-27 18:43:39 -04:00

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2.2 KiB
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#ifndef SIMDJSON_PPC64_BITMANIPULATION_H
#define SIMDJSON_PPC64_BITMANIPULATION_H
namespace simdjson {
namespace SIMDJSON_IMPLEMENTATION {
namespace {
// We sometimes call trailing_zero on inputs that are zero,
// but the algorithms do not end up using the returned value.
// Sadly, sanitizers are not smart enough to figure it out.
NO_SANITIZE_UNDEFINED
simdjson_really_inline int trailing_zeroes(uint64_t input_num) {
#ifdef SIMDJSON_REGULAR_VISUAL_STUDIO
unsigned long ret;
// Search the mask data from least significant bit (LSB)
// to the most significant bit (MSB) for a set bit (1).
_BitScanForward64(&ret, input_num);
return (int)ret;
#else // SIMDJSON_REGULAR_VISUAL_STUDIO
return __builtin_ctzll(input_num);
#endif // SIMDJSON_REGULAR_VISUAL_STUDIO
}
/* result might be undefined when input_num is zero */
simdjson_really_inline uint64_t clear_lowest_bit(uint64_t input_num) {
return input_num & (input_num - 1);
}
/* result might be undefined when input_num is zero */
simdjson_really_inline int leading_zeroes(uint64_t input_num) {
#ifdef SIMDJSON_REGULAR_VISUAL_STUDIO
unsigned long leading_zero = 0;
// Search the mask data from most significant bit (MSB)
// to least significant bit (LSB) for a set bit (1).
if (_BitScanReverse64(&leading_zero, input_num))
return (int)(63 - leading_zero);
else
return 64;
#else
return __builtin_clzll(input_num);
#endif // SIMDJSON_REGULAR_VISUAL_STUDIO
}
#ifdef SIMDJSON_REGULAR_VISUAL_STUDIO
simdjson_really_inline int count_ones(uint64_t input_num) {
// note: we do not support legacy 32-bit Windows
return __popcnt64(input_num); // Visual Studio wants two underscores
}
#else
simdjson_really_inline int count_ones(uint64_t input_num) {
return __builtin_popcountll(input_num);
}
#endif
simdjson_really_inline bool add_overflow(uint64_t value1, uint64_t value2,
uint64_t *result) {
#ifdef SIMDJSON_REGULAR_VISUAL_STUDIO
*result = value1 + value2;
return *result < value1;
#else
return __builtin_uaddll_overflow(value1, value2,
(unsigned long long *)result);
#endif
}
} // unnamed namespace
} // namespace SIMDJSON_IMPLEMENTATION
} // namespace simdjson
#endif // SIMDJSON_PPC64_BITMANIPULATION_H