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ext/bcmath: In the arm processor environment, NEON is used to use SIMD. (#18130)
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3 changed files with 88 additions and 33 deletions
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@ -17,24 +17,22 @@
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#include "bcmath.h"
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#include "convert.h"
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#include "private.h"
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#ifdef __SSE2__
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# include <emmintrin.h>
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#endif
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#include "simd.h"
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char *bc_copy_and_toggle_bcd(char *restrict dest, const char *source, const char *source_end)
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{
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const size_t bulk_shift = SWAR_REPEAT('0');
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#ifdef __SSE2__
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/* SIMD SSE2 bulk shift + copy */
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__m128i shift_vector = _mm_set1_epi8('0');
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while (source + sizeof(__m128i) <= source_end) {
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__m128i bytes = _mm_loadu_si128((const __m128i *) source);
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bytes = _mm_xor_si128(bytes, shift_vector);
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_mm_storeu_si128((__m128i *) dest, bytes);
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#ifdef HAVE_BC_SIMD_128
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/* SIMD SSE2 or NEON bulk shift + copy */
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bc_simd_128_t shift_vector = bc_simd_set_8x16('0');
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while (source + sizeof(bc_simd_128_t) <= source_end) {
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bc_simd_128_t bytes = bc_simd_load_8x16((const bc_simd_128_t *) source);
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bytes = bc_simd_xor_8x16(bytes, shift_vector);
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bc_simd_store_8x16((bc_simd_128_t *) dest, bytes);
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source += sizeof(__m128i);
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dest += sizeof(__m128i);
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source += sizeof(bc_simd_128_t);
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dest += sizeof(bc_simd_128_t);
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}
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#endif
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59
ext/bcmath/libbcmath/src/simd.h
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59
ext/bcmath/libbcmath/src/simd.h
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@ -0,0 +1,59 @@
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/*
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+----------------------------------------------------------------------+
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| Copyright (c) The PHP Group |
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+----------------------------------------------------------------------+
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| This source file is subject to version 3.01 of the PHP license, |
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| that is bundled with this package in the file LICENSE, and is |
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| available through the world-wide-web at the following url: |
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| https://www.php.net/license/3_01.txt |
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| If you did not receive a copy of the PHP license and are unable to |
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| obtain it through the world-wide-web, please send a note to |
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| license@php.net so we can mail you a copy immediately. |
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+----------------------------------------------------------------------+
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| Authors: Saki Takamachi <saki@php.net> |
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+----------------------------------------------------------------------+
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*/
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#ifndef _BCMATH_SIMD_H_
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#define _BCMATH_SIMD_H_
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#ifdef __SSE2__
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# include <emmintrin.h>
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typedef __m128i bc_simd_128_t;
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# define HAVE_BC_SIMD_128
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# define bc_simd_set_8x16(x) _mm_set1_epi8(x)
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# define bc_simd_load_8x16(ptr) _mm_loadu_si128((const __m128i *) (ptr))
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# define bc_simd_xor_8x16(a, b) _mm_xor_si128(a, b)
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# define bc_simd_store_8x16(ptr, val) _mm_storeu_si128((__m128i *) (ptr), val)
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# define bc_simd_add_8x16(a, b) _mm_add_epi8(a, b)
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# define bc_simd_cmpeq_8x16(a, b) _mm_cmpeq_epi8(a, b)
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# define bc_simd_cmplt_8x16(a, b) _mm_cmplt_epi8(a, b)
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# define bc_simd_movemask_8x16(a) _mm_movemask_epi8(a)
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#elif defined(__aarch64__) || defined(_M_ARM64)
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# include <arm_neon.h>
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typedef int8x16_t bc_simd_128_t;
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# define HAVE_BC_SIMD_128
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# define bc_simd_set_8x16(x) vdupq_n_s8(x)
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# define bc_simd_load_8x16(ptr) vld1q_s8((const int8_t *) (ptr))
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# define bc_simd_xor_8x16(a, b) veorq_s8(a, b)
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# define bc_simd_store_8x16(ptr, val) vst1q_s8((int8_t *) (ptr), val)
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# define bc_simd_add_8x16(a, b) vaddq_s8(a, b)
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# define bc_simd_cmpeq_8x16(a, b) (vreinterpretq_s8_u8(vceqq_s8(a, b)))
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# define bc_simd_cmplt_8x16(a, b) (vreinterpretq_s8_u8(vcltq_s8(a, b)))
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static inline int bc_simd_movemask_8x16(int8x16_t vec)
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{
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/**
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* based on code from
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* https://community.arm.com/arm-community-blogs/b/servers-and-cloud-computing-blog/posts/porting-x86-vector-bitmask-optimizations-to-arm-neon
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*/
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uint16x8_t high_bits = vreinterpretq_u16_u8(vshrq_n_u8(vreinterpretq_u8_s8(vec), 7));
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uint32x4_t paired16 = vreinterpretq_u32_u16(vsraq_n_u16(high_bits, high_bits, 7));
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uint64x2_t paired32 = vreinterpretq_u64_u32(vsraq_n_u32(paired16, paired16, 14));
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uint8x16_t paired64 = vreinterpretq_u8_u64(vsraq_n_u64(paired32, paired32, 28));
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return vgetq_lane_u8(paired64, 0) | ((int) vgetq_lane_u8(paired64, 8) << 8);
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}
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#endif
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#endif
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@ -32,30 +32,28 @@
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#include "bcmath.h"
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#include "convert.h"
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#include "private.h"
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#include "simd.h"
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#include <stdbool.h>
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#include <stddef.h>
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#ifdef __SSE2__
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# include <emmintrin.h>
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#endif
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/* Convert strings to bc numbers. Base 10 only.*/
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static const char *bc_count_digits(const char *str, const char *end)
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static inline const char *bc_count_digits(const char *str, const char *end)
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{
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/* Process in bulk */
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#ifdef __SSE2__
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const __m128i offset = _mm_set1_epi8((signed char) (SCHAR_MIN - '0'));
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#ifdef HAVE_BC_SIMD_128
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const bc_simd_128_t offset = bc_simd_set_8x16((signed char) (SCHAR_MIN - '0'));
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/* we use the less than comparator, so add 1 */
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const __m128i threshold = _mm_set1_epi8(SCHAR_MIN + ('9' + 1 - '0'));
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const bc_simd_128_t threshold = bc_simd_set_8x16(SCHAR_MIN + ('9' + 1 - '0'));
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while (str + sizeof(__m128i) <= end) {
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__m128i bytes = _mm_loadu_si128((const __m128i *) str);
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while (str + sizeof(bc_simd_128_t) <= end) {
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bc_simd_128_t bytes = bc_simd_load_8x16((const bc_simd_128_t *) str);
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/* Wrapping-add the offset to the bytes, such that all bytes below '0' are positive and others are negative.
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* More specifically, '0' will be -128 and '9' will be -119. */
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bytes = _mm_add_epi8(bytes, offset);
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bytes = bc_simd_add_8x16(bytes, offset);
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/* Now mark all bytes that are <= '9', i.e. <= -119, i.e. < -118, i.e. the threshold. */
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bytes = _mm_cmplt_epi8(bytes, threshold);
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bytes = bc_simd_cmplt_8x16(bytes, threshold);
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int mask = _mm_movemask_epi8(bytes);
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int mask = bc_simd_movemask_8x16(bytes);
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if (mask != 0xffff) {
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/* At least one of the bytes is not within range. Move to the first offending byte. */
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#ifdef PHP_HAVE_BUILTIN_CTZL
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@ -65,7 +63,7 @@ static const char *bc_count_digits(const char *str, const char *end)
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#endif
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}
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str += sizeof(__m128i);
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str += sizeof(bc_simd_128_t);
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}
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#endif
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@ -79,19 +77,19 @@ static const char *bc_count_digits(const char *str, const char *end)
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static inline const char *bc_skip_zero_reverse(const char *scanner, const char *stop)
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{
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/* Check in bulk */
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#ifdef __SSE2__
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const __m128i c_zero_repeat = _mm_set1_epi8('0');
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while (scanner - sizeof(__m128i) >= stop) {
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scanner -= sizeof(__m128i);
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__m128i bytes = _mm_loadu_si128((const __m128i *) scanner);
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#ifdef HAVE_BC_SIMD_128
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const bc_simd_128_t c_zero_repeat = bc_simd_set_8x16('0');
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while (scanner - sizeof(bc_simd_128_t) >= stop) {
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scanner -= sizeof(bc_simd_128_t);
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bc_simd_128_t bytes = bc_simd_load_8x16((const bc_simd_128_t *) scanner);
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/* Checks if all numeric strings are equal to '0'. */
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bytes = _mm_cmpeq_epi8(bytes, c_zero_repeat);
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bytes = bc_simd_cmpeq_8x16(bytes, c_zero_repeat);
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int mask = _mm_movemask_epi8(bytes);
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int mask = bc_simd_movemask_8x16(bytes);
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/* The probability of having 16 trailing 0s in a row is very low, so we use EXPECTED. */
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if (EXPECTED(mask != 0xffff)) {
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/* Move the pointer back and check each character in loop. */
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scanner += sizeof(__m128i);
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scanner += sizeof(bc_simd_128_t);
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break;
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}
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}
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