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330 lines
11 KiB
C
330 lines
11 KiB
C
/*
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* Copyright (c) 2017, Alliance for Open Media. All rights reserved
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*
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* This source code is subject to the terms of the BSD 2 Clause License and
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* the Alliance for Open Media Patent License 1.0. If the BSD 2 Clause License
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* was not distributed with this source code in the LICENSE file, you can
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* obtain it at www.aomedia.org/license/software. If the Alliance for Open
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* Media Patent License 1.0 was not distributed with this source code in the
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* PATENTS file, you can obtain it at www.aomedia.org/license/patent.
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*/
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#include <immintrin.h>
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#include "config/av1_rtcd.h"
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#include "aom/aom_integer.h"
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#include "aom_dsp/aom_dsp_common.h"
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static INLINE void read_coeff(const tran_low_t *coeff, __m256i *c) {
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if (sizeof(tran_low_t) == 4) {
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const __m256i x0 = _mm256_loadu_si256((const __m256i *)coeff);
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const __m256i x1 = _mm256_loadu_si256((const __m256i *)coeff + 1);
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*c = _mm256_packs_epi32(x0, x1);
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*c = _mm256_permute4x64_epi64(*c, 0xD8);
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} else {
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*c = _mm256_loadu_si256((const __m256i *)coeff);
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}
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}
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static INLINE void write_zero(tran_low_t *qcoeff) {
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const __m256i zero = _mm256_setzero_si256();
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if (sizeof(tran_low_t) == 4) {
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_mm256_storeu_si256((__m256i *)qcoeff, zero);
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_mm256_storeu_si256((__m256i *)qcoeff + 1, zero);
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} else {
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_mm256_storeu_si256((__m256i *)qcoeff, zero);
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}
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}
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static INLINE void init_one_qp(const __m128i *p, __m256i *qp) {
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const __m128i ac = _mm_unpackhi_epi64(*p, *p);
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*qp = _mm256_insertf128_si256(_mm256_castsi128_si256(*p), ac, 1);
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}
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static INLINE void init_qp(const int16_t *round_ptr, const int16_t *quant_ptr,
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const int16_t *dequant_ptr, int log_scale,
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__m256i *thr, __m256i *qp) {
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__m128i round = _mm_loadu_si128((const __m128i *)round_ptr);
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const __m128i quant = _mm_loadu_si128((const __m128i *)quant_ptr);
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const __m128i dequant = _mm_loadu_si128((const __m128i *)dequant_ptr);
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if (log_scale > 0) {
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const __m128i rnd = _mm_set1_epi16((int16_t)1 << (log_scale - 1));
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round = _mm_add_epi16(round, rnd);
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round = _mm_srai_epi16(round, log_scale);
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}
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init_one_qp(&round, &qp[0]);
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init_one_qp(&quant, &qp[1]);
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if (log_scale == 1) {
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qp[1] = _mm256_slli_epi16(qp[1], log_scale);
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}
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init_one_qp(&dequant, &qp[2]);
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*thr = _mm256_srai_epi16(qp[2], 1 + log_scale);
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}
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static INLINE void update_qp(int log_scale, __m256i *thr, __m256i *qp) {
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qp[0] = _mm256_permute2x128_si256(qp[0], qp[0], 0x11);
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qp[1] = _mm256_permute2x128_si256(qp[1], qp[1], 0x11);
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qp[2] = _mm256_permute2x128_si256(qp[2], qp[2], 0x11);
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*thr = _mm256_srai_epi16(qp[2], 1 + log_scale);
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}
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#define store_quan(q, addr) \
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do { \
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__m256i sign_bits = _mm256_srai_epi16(q, 15); \
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__m256i y0 = _mm256_unpacklo_epi16(q, sign_bits); \
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__m256i y1 = _mm256_unpackhi_epi16(q, sign_bits); \
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__m256i x0 = _mm256_permute2x128_si256(y0, y1, 0x20); \
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__m256i x1 = _mm256_permute2x128_si256(y0, y1, 0x31); \
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_mm256_storeu_si256((__m256i *)addr, x0); \
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_mm256_storeu_si256((__m256i *)addr + 1, x1); \
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} while (0)
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#define store_two_quan(q, addr1, dq, addr2) \
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do { \
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if (sizeof(tran_low_t) == 4) { \
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store_quan(q, addr1); \
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store_quan(dq, addr2); \
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} else { \
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_mm256_storeu_si256((__m256i *)addr1, q); \
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_mm256_storeu_si256((__m256i *)addr2, dq); \
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} \
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} while (0)
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static INLINE uint16_t quant_gather_eob(__m256i eob) {
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const __m128i eob_lo = _mm256_castsi256_si128(eob);
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const __m128i eob_hi = _mm256_extractf128_si256(eob, 1);
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__m128i eob_s = _mm_max_epi16(eob_lo, eob_hi);
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eob_s = _mm_subs_epu16(_mm_set1_epi16(INT16_MAX), eob_s);
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eob_s = _mm_minpos_epu16(eob_s);
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return INT16_MAX - _mm_extract_epi16(eob_s, 0);
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}
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static INLINE void quantize(const __m256i *thr, const __m256i *qp, __m256i *c,
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const int16_t *iscan_ptr, tran_low_t *qcoeff,
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tran_low_t *dqcoeff, __m256i *eob) {
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const __m256i abs_coeff = _mm256_abs_epi16(*c);
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__m256i mask = _mm256_cmpgt_epi16(abs_coeff, *thr);
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mask = _mm256_or_si256(mask, _mm256_cmpeq_epi16(abs_coeff, *thr));
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const int nzflag = _mm256_movemask_epi8(mask);
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if (nzflag) {
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__m256i q = _mm256_adds_epi16(abs_coeff, qp[0]);
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q = _mm256_mulhi_epi16(q, qp[1]);
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q = _mm256_sign_epi16(q, *c);
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const __m256i dq = _mm256_mullo_epi16(q, qp[2]);
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store_two_quan(q, qcoeff, dq, dqcoeff);
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const __m256i zero = _mm256_setzero_si256();
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const __m256i iscan = _mm256_loadu_si256((const __m256i *)iscan_ptr);
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const __m256i zero_coeff = _mm256_cmpeq_epi16(dq, zero);
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const __m256i nzero_coeff = _mm256_cmpeq_epi16(zero_coeff, zero);
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__m256i cur_eob = _mm256_sub_epi16(iscan, nzero_coeff);
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cur_eob = _mm256_and_si256(cur_eob, nzero_coeff);
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*eob = _mm256_max_epi16(*eob, cur_eob);
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} else {
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write_zero(qcoeff);
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write_zero(dqcoeff);
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}
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}
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void av1_quantize_fp_avx2(const tran_low_t *coeff_ptr, intptr_t n_coeffs,
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const int16_t *zbin_ptr, const int16_t *round_ptr,
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const int16_t *quant_ptr,
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const int16_t *quant_shift_ptr,
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tran_low_t *qcoeff_ptr, tran_low_t *dqcoeff_ptr,
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const int16_t *dequant_ptr, uint16_t *eob_ptr,
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const int16_t *scan_ptr, const int16_t *iscan_ptr) {
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(void)scan_ptr;
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(void)zbin_ptr;
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(void)quant_shift_ptr;
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const unsigned int step = 16;
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__m256i qp[3];
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__m256i coeff, thr;
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const int log_scale = 0;
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init_qp(round_ptr, quant_ptr, dequant_ptr, log_scale, &thr, qp);
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read_coeff(coeff_ptr, &coeff);
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__m256i eob = _mm256_setzero_si256();
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quantize(&thr, qp, &coeff, iscan_ptr, qcoeff_ptr, dqcoeff_ptr, &eob);
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coeff_ptr += step;
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qcoeff_ptr += step;
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dqcoeff_ptr += step;
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iscan_ptr += step;
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n_coeffs -= step;
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update_qp(log_scale, &thr, qp);
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while (n_coeffs > 0) {
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read_coeff(coeff_ptr, &coeff);
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quantize(&thr, qp, &coeff, iscan_ptr, qcoeff_ptr, dqcoeff_ptr, &eob);
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coeff_ptr += step;
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qcoeff_ptr += step;
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dqcoeff_ptr += step;
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iscan_ptr += step;
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n_coeffs -= step;
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}
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*eob_ptr = quant_gather_eob(eob);
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}
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static INLINE void quantize_32x32(const __m256i *thr, const __m256i *qp,
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__m256i *c, const int16_t *iscan_ptr,
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tran_low_t *qcoeff, tran_low_t *dqcoeff,
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__m256i *eob) {
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const __m256i abs_coeff = _mm256_abs_epi16(*c);
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__m256i mask = _mm256_cmpgt_epi16(abs_coeff, *thr);
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mask = _mm256_or_si256(mask, _mm256_cmpeq_epi16(abs_coeff, *thr));
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const int nzflag = _mm256_movemask_epi8(mask);
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if (nzflag) {
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__m256i q = _mm256_adds_epi16(abs_coeff, qp[0]);
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q = _mm256_mulhi_epu16(q, qp[1]);
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__m256i dq = _mm256_mullo_epi16(q, qp[2]);
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dq = _mm256_srli_epi16(dq, 1);
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q = _mm256_sign_epi16(q, *c);
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dq = _mm256_sign_epi16(dq, *c);
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store_two_quan(q, qcoeff, dq, dqcoeff);
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const __m256i zero = _mm256_setzero_si256();
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const __m256i iscan = _mm256_loadu_si256((const __m256i *)iscan_ptr);
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const __m256i zero_coeff = _mm256_cmpeq_epi16(dq, zero);
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const __m256i nzero_coeff = _mm256_cmpeq_epi16(zero_coeff, zero);
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__m256i cur_eob = _mm256_sub_epi16(iscan, nzero_coeff);
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cur_eob = _mm256_and_si256(cur_eob, nzero_coeff);
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*eob = _mm256_max_epi16(*eob, cur_eob);
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} else {
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write_zero(qcoeff);
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write_zero(dqcoeff);
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}
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}
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void av1_quantize_fp_32x32_avx2(
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const tran_low_t *coeff_ptr, intptr_t n_coeffs, const int16_t *zbin_ptr,
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const int16_t *round_ptr, const int16_t *quant_ptr,
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const int16_t *quant_shift_ptr, tran_low_t *qcoeff_ptr,
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tran_low_t *dqcoeff_ptr, const int16_t *dequant_ptr, uint16_t *eob_ptr,
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const int16_t *scan_ptr, const int16_t *iscan_ptr) {
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(void)scan_ptr;
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(void)zbin_ptr;
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(void)quant_shift_ptr;
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const unsigned int step = 16;
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__m256i qp[3];
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__m256i coeff, thr;
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const int log_scale = 1;
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init_qp(round_ptr, quant_ptr, dequant_ptr, log_scale, &thr, qp);
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read_coeff(coeff_ptr, &coeff);
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__m256i eob = _mm256_setzero_si256();
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quantize_32x32(&thr, qp, &coeff, iscan_ptr, qcoeff_ptr, dqcoeff_ptr, &eob);
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coeff_ptr += step;
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qcoeff_ptr += step;
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dqcoeff_ptr += step;
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iscan_ptr += step;
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n_coeffs -= step;
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update_qp(log_scale, &thr, qp);
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while (n_coeffs > 0) {
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read_coeff(coeff_ptr, &coeff);
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quantize_32x32(&thr, qp, &coeff, iscan_ptr, qcoeff_ptr, dqcoeff_ptr, &eob);
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coeff_ptr += step;
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qcoeff_ptr += step;
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dqcoeff_ptr += step;
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iscan_ptr += step;
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n_coeffs -= step;
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}
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*eob_ptr = quant_gather_eob(eob);
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}
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static INLINE void quantize_64x64(const __m256i *thr, const __m256i *qp,
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__m256i *c, const int16_t *iscan_ptr,
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tran_low_t *qcoeff, tran_low_t *dqcoeff,
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__m256i *eob) {
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const __m256i abs_coeff = _mm256_abs_epi16(*c);
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__m256i mask = _mm256_cmpgt_epi16(abs_coeff, *thr);
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mask = _mm256_or_si256(mask, _mm256_cmpeq_epi16(abs_coeff, *thr));
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const int nzflag = _mm256_movemask_epi8(mask);
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if (nzflag) {
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__m256i q = _mm256_adds_epi16(abs_coeff, qp[0]);
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__m256i qh = _mm256_mulhi_epi16(q, qp[1]);
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__m256i ql = _mm256_mullo_epi16(q, qp[1]);
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qh = _mm256_slli_epi16(qh, 2);
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ql = _mm256_srli_epi16(ql, 14);
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q = _mm256_or_si256(qh, ql);
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const __m256i dqh = _mm256_slli_epi16(_mm256_mulhi_epi16(q, qp[2]), 14);
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const __m256i dql = _mm256_srli_epi16(_mm256_mullo_epi16(q, qp[2]), 2);
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__m256i dq = _mm256_or_si256(dqh, dql);
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q = _mm256_sign_epi16(q, *c);
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dq = _mm256_sign_epi16(dq, *c);
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store_two_quan(q, qcoeff, dq, dqcoeff);
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const __m256i zero = _mm256_setzero_si256();
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const __m256i iscan = _mm256_loadu_si256((const __m256i *)iscan_ptr);
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const __m256i zero_coeff = _mm256_cmpeq_epi16(dq, zero);
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const __m256i nzero_coeff = _mm256_cmpeq_epi16(zero_coeff, zero);
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__m256i cur_eob = _mm256_sub_epi16(iscan, nzero_coeff);
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cur_eob = _mm256_and_si256(cur_eob, nzero_coeff);
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*eob = _mm256_max_epi16(*eob, cur_eob);
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} else {
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write_zero(qcoeff);
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write_zero(dqcoeff);
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}
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}
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void av1_quantize_fp_64x64_avx2(
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const tran_low_t *coeff_ptr, intptr_t n_coeffs, const int16_t *zbin_ptr,
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const int16_t *round_ptr, const int16_t *quant_ptr,
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const int16_t *quant_shift_ptr, tran_low_t *qcoeff_ptr,
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tran_low_t *dqcoeff_ptr, const int16_t *dequant_ptr, uint16_t *eob_ptr,
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const int16_t *scan_ptr, const int16_t *iscan_ptr) {
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(void)scan_ptr;
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(void)zbin_ptr;
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(void)quant_shift_ptr;
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const unsigned int step = 16;
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__m256i qp[3];
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__m256i coeff, thr;
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const int log_scale = 2;
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init_qp(round_ptr, quant_ptr, dequant_ptr, log_scale, &thr, qp);
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read_coeff(coeff_ptr, &coeff);
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__m256i eob = _mm256_setzero_si256();
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quantize_64x64(&thr, qp, &coeff, iscan_ptr, qcoeff_ptr, dqcoeff_ptr, &eob);
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coeff_ptr += step;
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qcoeff_ptr += step;
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dqcoeff_ptr += step;
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iscan_ptr += step;
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n_coeffs -= step;
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update_qp(log_scale, &thr, qp);
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while (n_coeffs > 0) {
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read_coeff(coeff_ptr, &coeff);
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quantize_64x64(&thr, qp, &coeff, iscan_ptr, qcoeff_ptr, dqcoeff_ptr, &eob);
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coeff_ptr += step;
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qcoeff_ptr += step;
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dqcoeff_ptr += step;
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iscan_ptr += step;
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n_coeffs -= step;
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}
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*eob_ptr = quant_gather_eob(eob);
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}
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