552 lines
25 KiB
C
552 lines
25 KiB
C
/*
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* Copyright (c) 2016, 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 <arm_neon.h>
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#include "config/aom_dsp_rtcd.h"
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#include "config/aom_config.h"
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#include "aom_ports/mem.h"
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#include "aom/aom_integer.h"
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#include "aom_dsp/variance.h"
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#include "aom_dsp/arm/mem_neon.h"
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static void var_filter_block2d_bil_w4(const uint8_t *src_ptr, uint8_t *dst_ptr,
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int src_stride, int pixel_step,
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int dst_height, int filter_offset) {
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const uint8x8_t f0 = vdup_n_u8(8 - filter_offset);
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const uint8x8_t f1 = vdup_n_u8(filter_offset);
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int i = dst_height;
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do {
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uint8x8_t s0 = load_unaligned_u8(src_ptr, src_stride);
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uint8x8_t s1 = load_unaligned_u8(src_ptr + pixel_step, src_stride);
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uint16x8_t blend = vmull_u8(s0, f0);
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blend = vmlal_u8(blend, s1, f1);
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uint8x8_t blend_u8 = vrshrn_n_u16(blend, 3);
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vst1_u8(dst_ptr, blend_u8);
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src_ptr += 2 * src_stride;
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dst_ptr += 2 * 4;
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i -= 2;
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} while (i != 0);
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}
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static void var_filter_block2d_bil_w8(const uint8_t *src_ptr, uint8_t *dst_ptr,
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int src_stride, int pixel_step,
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int dst_height, int filter_offset) {
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const uint8x8_t f0 = vdup_n_u8(8 - filter_offset);
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const uint8x8_t f1 = vdup_n_u8(filter_offset);
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int i = dst_height;
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do {
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uint8x8_t s0 = vld1_u8(src_ptr);
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uint8x8_t s1 = vld1_u8(src_ptr + pixel_step);
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uint16x8_t blend = vmull_u8(s0, f0);
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blend = vmlal_u8(blend, s1, f1);
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uint8x8_t blend_u8 = vrshrn_n_u16(blend, 3);
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vst1_u8(dst_ptr, blend_u8);
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src_ptr += src_stride;
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dst_ptr += 8;
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} while (--i != 0);
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}
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static void var_filter_block2d_bil_large(const uint8_t *src_ptr,
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uint8_t *dst_ptr, int src_stride,
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int pixel_step, int dst_width,
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int dst_height, int filter_offset) {
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const uint8x8_t f0 = vdup_n_u8(8 - filter_offset);
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const uint8x8_t f1 = vdup_n_u8(filter_offset);
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int i = dst_height;
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do {
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int j = 0;
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do {
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uint8x16_t s0 = vld1q_u8(src_ptr + j);
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uint8x16_t s1 = vld1q_u8(src_ptr + j + pixel_step);
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uint16x8_t blend_l = vmull_u8(vget_low_u8(s0), f0);
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blend_l = vmlal_u8(blend_l, vget_low_u8(s1), f1);
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uint16x8_t blend_h = vmull_u8(vget_high_u8(s0), f0);
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blend_h = vmlal_u8(blend_h, vget_high_u8(s1), f1);
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uint8x16_t blend_u8 =
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vcombine_u8(vrshrn_n_u16(blend_l, 3), vrshrn_n_u16(blend_h, 3));
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vst1q_u8(dst_ptr + j, blend_u8);
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j += 16;
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} while (j < dst_width);
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src_ptr += src_stride;
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dst_ptr += dst_width;
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} while (--i != 0);
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}
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static void var_filter_block2d_bil_w16(const uint8_t *src_ptr, uint8_t *dst_ptr,
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int src_stride, int pixel_step,
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int dst_height, int filter_offset) {
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var_filter_block2d_bil_large(src_ptr, dst_ptr, src_stride, pixel_step, 16,
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dst_height, filter_offset);
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}
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static void var_filter_block2d_bil_w32(const uint8_t *src_ptr, uint8_t *dst_ptr,
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int src_stride, int pixel_step,
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int dst_height, int filter_offset) {
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var_filter_block2d_bil_large(src_ptr, dst_ptr, src_stride, pixel_step, 32,
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dst_height, filter_offset);
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}
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static void var_filter_block2d_bil_w64(const uint8_t *src_ptr, uint8_t *dst_ptr,
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int src_stride, int pixel_step,
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int dst_height, int filter_offset) {
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var_filter_block2d_bil_large(src_ptr, dst_ptr, src_stride, pixel_step, 64,
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dst_height, filter_offset);
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}
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static void var_filter_block2d_bil_w128(const uint8_t *src_ptr,
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uint8_t *dst_ptr, int src_stride,
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int pixel_step, int dst_height,
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int filter_offset) {
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var_filter_block2d_bil_large(src_ptr, dst_ptr, src_stride, pixel_step, 128,
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dst_height, filter_offset);
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}
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static void var_filter_block2d_avg(const uint8_t *src_ptr, uint8_t *dst_ptr,
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int src_stride, int pixel_step,
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int dst_width, int dst_height) {
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// We only specialise on the filter values for large block sizes (>= 16x16.)
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assert(dst_width >= 16 && dst_width % 16 == 0);
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int i = dst_height;
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do {
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int j = 0;
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do {
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uint8x16_t s0 = vld1q_u8(src_ptr + j);
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uint8x16_t s1 = vld1q_u8(src_ptr + j + pixel_step);
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uint8x16_t avg = vrhaddq_u8(s0, s1);
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vst1q_u8(dst_ptr + j, avg);
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j += 16;
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} while (j < dst_width);
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src_ptr += src_stride;
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dst_ptr += dst_width;
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} while (--i != 0);
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}
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#define SUBPEL_VARIANCE_WXH_NEON(w, h, padding) \
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unsigned int aom_sub_pixel_variance##w##x##h##_neon( \
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const uint8_t *src, int src_stride, int xoffset, int yoffset, \
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const uint8_t *ref, int ref_stride, uint32_t *sse) { \
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uint8_t tmp0[w * (h + padding)]; \
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uint8_t tmp1[w * h]; \
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var_filter_block2d_bil_w##w(src, tmp0, src_stride, 1, (h + padding), \
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xoffset); \
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var_filter_block2d_bil_w##w(tmp0, tmp1, w, w, h, yoffset); \
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return aom_variance##w##x##h(tmp1, w, ref, ref_stride, sse); \
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}
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#define SPECIALIZED_SUBPEL_VARIANCE_WXH_NEON(w, h, padding) \
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unsigned int aom_sub_pixel_variance##w##x##h##_neon( \
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const uint8_t *src, int src_stride, int xoffset, int yoffset, \
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const uint8_t *ref, int ref_stride, unsigned int *sse) { \
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if (xoffset == 0) { \
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if (yoffset == 0) { \
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return aom_variance##w##x##h##_neon(src, src_stride, ref, ref_stride, \
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sse); \
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} else if (yoffset == 4) { \
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uint8_t tmp[w * h]; \
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var_filter_block2d_avg(src, tmp, src_stride, src_stride, w, h); \
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return aom_variance##w##x##h##_neon(tmp, w, ref, ref_stride, sse); \
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} else { \
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uint8_t tmp[w * h]; \
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var_filter_block2d_bil_w##w(src, tmp, src_stride, src_stride, h, \
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yoffset); \
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return aom_variance##w##x##h##_neon(tmp, w, ref, ref_stride, sse); \
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} \
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} else if (xoffset == 4) { \
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uint8_t tmp0[w * (h + padding)]; \
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if (yoffset == 0) { \
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var_filter_block2d_avg(src, tmp0, src_stride, 1, w, h); \
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return aom_variance##w##x##h##_neon(tmp0, w, ref, ref_stride, sse); \
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} else if (yoffset == 4) { \
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uint8_t tmp1[w * (h + padding)]; \
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var_filter_block2d_avg(src, tmp0, src_stride, 1, w, (h + padding)); \
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var_filter_block2d_avg(tmp0, tmp1, w, w, w, h); \
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return aom_variance##w##x##h##_neon(tmp1, w, ref, ref_stride, sse); \
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} else { \
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uint8_t tmp1[w * (h + padding)]; \
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var_filter_block2d_avg(src, tmp0, src_stride, 1, w, (h + padding)); \
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var_filter_block2d_bil_w##w(tmp0, tmp1, w, w, h, yoffset); \
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return aom_variance##w##x##h##_neon(tmp1, w, ref, ref_stride, sse); \
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} \
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} else { \
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uint8_t tmp0[w * (h + padding)]; \
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if (yoffset == 0) { \
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var_filter_block2d_bil_w##w(src, tmp0, src_stride, 1, h, xoffset); \
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return aom_variance##w##x##h##_neon(tmp0, w, ref, ref_stride, sse); \
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} else if (yoffset == 4) { \
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uint8_t tmp1[w * h]; \
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var_filter_block2d_bil_w##w(src, tmp0, src_stride, 1, (h + padding), \
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xoffset); \
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var_filter_block2d_avg(tmp0, tmp1, w, w, w, h); \
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return aom_variance##w##x##h##_neon(tmp1, w, ref, ref_stride, sse); \
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} else { \
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uint8_t tmp1[w * h]; \
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var_filter_block2d_bil_w##w(src, tmp0, src_stride, 1, (h + padding), \
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xoffset); \
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var_filter_block2d_bil_w##w(tmp0, tmp1, w, w, h, yoffset); \
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return aom_variance##w##x##h##_neon(tmp1, w, ref, ref_stride, sse); \
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} \
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} \
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}
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SUBPEL_VARIANCE_WXH_NEON(4, 4, 2)
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SUBPEL_VARIANCE_WXH_NEON(4, 8, 2)
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SUBPEL_VARIANCE_WXH_NEON(8, 4, 1)
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SUBPEL_VARIANCE_WXH_NEON(8, 8, 1)
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SUBPEL_VARIANCE_WXH_NEON(8, 16, 1)
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SUBPEL_VARIANCE_WXH_NEON(16, 8, 1)
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SPECIALIZED_SUBPEL_VARIANCE_WXH_NEON(16, 16, 1)
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SPECIALIZED_SUBPEL_VARIANCE_WXH_NEON(16, 32, 1)
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SPECIALIZED_SUBPEL_VARIANCE_WXH_NEON(32, 16, 1)
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SPECIALIZED_SUBPEL_VARIANCE_WXH_NEON(32, 32, 1)
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SPECIALIZED_SUBPEL_VARIANCE_WXH_NEON(32, 64, 1)
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SPECIALIZED_SUBPEL_VARIANCE_WXH_NEON(64, 32, 1)
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SPECIALIZED_SUBPEL_VARIANCE_WXH_NEON(64, 64, 1)
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SPECIALIZED_SUBPEL_VARIANCE_WXH_NEON(64, 128, 1)
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SPECIALIZED_SUBPEL_VARIANCE_WXH_NEON(128, 64, 1)
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SPECIALIZED_SUBPEL_VARIANCE_WXH_NEON(128, 128, 1)
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// Realtime mode doesn't use 4x rectangular blocks.
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#if !CONFIG_REALTIME_ONLY
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SUBPEL_VARIANCE_WXH_NEON(4, 16, 2)
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SUBPEL_VARIANCE_WXH_NEON(8, 32, 1)
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SUBPEL_VARIANCE_WXH_NEON(16, 4, 1)
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SPECIALIZED_SUBPEL_VARIANCE_WXH_NEON(16, 64, 1)
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SPECIALIZED_SUBPEL_VARIANCE_WXH_NEON(32, 8, 1)
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SPECIALIZED_SUBPEL_VARIANCE_WXH_NEON(64, 16, 1)
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#endif // !CONFIG_REALTIME_ONLY
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#undef SUBPEL_VARIANCE_WXH_NEON
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#undef SPECIALIZED_SUBPEL_VARIANCE_WXH_NEON
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// Combine bilinear filter with aom_comp_avg_pred for blocks having width 4.
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static void avg_pred_var_filter_block2d_bil_w4(const uint8_t *src_ptr,
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uint8_t *dst_ptr, int src_stride,
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int pixel_step, int dst_height,
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int filter_offset,
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const uint8_t *second_pred) {
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const uint8x8_t f0 = vdup_n_u8(8 - filter_offset);
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const uint8x8_t f1 = vdup_n_u8(filter_offset);
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int i = dst_height;
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do {
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uint8x8_t s0 = load_unaligned_u8(src_ptr, src_stride);
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uint8x8_t s1 = load_unaligned_u8(src_ptr + pixel_step, src_stride);
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uint16x8_t blend = vmull_u8(s0, f0);
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blend = vmlal_u8(blend, s1, f1);
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uint8x8_t blend_u8 = vrshrn_n_u16(blend, 3);
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uint8x8_t p = vld1_u8(second_pred);
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uint8x8_t avg = vrhadd_u8(blend_u8, p);
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vst1_u8(dst_ptr, avg);
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src_ptr += 2 * src_stride;
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dst_ptr += 2 * 4;
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second_pred += 2 * 4;
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i -= 2;
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} while (i != 0);
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}
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// Combine bilinear filter with aom_comp_avg_pred for blocks having width 8.
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static void avg_pred_var_filter_block2d_bil_w8(const uint8_t *src_ptr,
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uint8_t *dst_ptr, int src_stride,
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int pixel_step, int dst_height,
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int filter_offset,
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const uint8_t *second_pred) {
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const uint8x8_t f0 = vdup_n_u8(8 - filter_offset);
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const uint8x8_t f1 = vdup_n_u8(filter_offset);
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int i = dst_height;
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do {
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uint8x8_t s0 = vld1_u8(src_ptr);
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uint8x8_t s1 = vld1_u8(src_ptr + pixel_step);
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uint16x8_t blend = vmull_u8(s0, f0);
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blend = vmlal_u8(blend, s1, f1);
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uint8x8_t blend_u8 = vrshrn_n_u16(blend, 3);
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uint8x8_t p = vld1_u8(second_pred);
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uint8x8_t avg = vrhadd_u8(blend_u8, p);
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vst1_u8(dst_ptr, avg);
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src_ptr += src_stride;
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dst_ptr += 8;
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second_pred += 8;
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} while (--i > 0);
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}
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// Combine bilinear filter with aom_comp_avg_pred for large blocks.
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static void avg_pred_var_filter_block2d_bil_large(
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const uint8_t *src_ptr, uint8_t *dst_ptr, int src_stride, int pixel_step,
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int dst_width, int dst_height, int filter_offset,
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const uint8_t *second_pred) {
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const uint8x8_t f0 = vdup_n_u8(8 - filter_offset);
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const uint8x8_t f1 = vdup_n_u8(filter_offset);
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int i = dst_height;
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do {
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int j = 0;
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do {
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uint8x16_t s0 = vld1q_u8(src_ptr + j);
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uint8x16_t s1 = vld1q_u8(src_ptr + j + pixel_step);
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uint16x8_t blend_l = vmull_u8(vget_low_u8(s0), f0);
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blend_l = vmlal_u8(blend_l, vget_low_u8(s1), f1);
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uint16x8_t blend_h = vmull_u8(vget_high_u8(s0), f0);
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blend_h = vmlal_u8(blend_h, vget_high_u8(s1), f1);
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uint8x16_t blend_u8 =
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vcombine_u8(vrshrn_n_u16(blend_l, 3), vrshrn_n_u16(blend_h, 3));
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uint8x16_t p = vld1q_u8(second_pred);
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uint8x16_t avg = vrhaddq_u8(blend_u8, p);
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vst1q_u8(dst_ptr + j, avg);
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j += 16;
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second_pred += 16;
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} while (j < dst_width);
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src_ptr += src_stride;
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dst_ptr += dst_width;
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} while (--i != 0);
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}
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// Combine bilinear filter with aom_comp_avg_pred for blocks having width 16.
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static void avg_pred_var_filter_block2d_bil_w16(
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const uint8_t *src_ptr, uint8_t *dst_ptr, int src_stride, int pixel_step,
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int dst_height, int filter_offset, const uint8_t *second_pred) {
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avg_pred_var_filter_block2d_bil_large(src_ptr, dst_ptr, src_stride,
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pixel_step, 16, dst_height,
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filter_offset, second_pred);
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}
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// Combine bilinear filter with aom_comp_avg_pred for blocks having width 32.
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static void avg_pred_var_filter_block2d_bil_w32(
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const uint8_t *src_ptr, uint8_t *dst_ptr, int src_stride, int pixel_step,
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int dst_height, int filter_offset, const uint8_t *second_pred) {
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avg_pred_var_filter_block2d_bil_large(src_ptr, dst_ptr, src_stride,
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pixel_step, 32, dst_height,
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filter_offset, second_pred);
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}
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// Combine bilinear filter with aom_comp_avg_pred for blocks having width 64.
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static void avg_pred_var_filter_block2d_bil_w64(
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const uint8_t *src_ptr, uint8_t *dst_ptr, int src_stride, int pixel_step,
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int dst_height, int filter_offset, const uint8_t *second_pred) {
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avg_pred_var_filter_block2d_bil_large(src_ptr, dst_ptr, src_stride,
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pixel_step, 64, dst_height,
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filter_offset, second_pred);
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}
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// Combine bilinear filter with aom_comp_avg_pred for blocks having width 128.
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static void avg_pred_var_filter_block2d_bil_w128(
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const uint8_t *src_ptr, uint8_t *dst_ptr, int src_stride, int pixel_step,
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int dst_height, int filter_offset, const uint8_t *second_pred) {
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avg_pred_var_filter_block2d_bil_large(src_ptr, dst_ptr, src_stride,
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pixel_step, 128, dst_height,
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filter_offset, second_pred);
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}
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// Combine averaging subpel filter with aom_comp_avg_pred.
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static void avg_pred_var_filter_block2d_avg(const uint8_t *src_ptr,
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uint8_t *dst_ptr, int src_stride,
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int pixel_step, int dst_width,
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int dst_height,
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const uint8_t *second_pred) {
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// We only specialise on the filter values for large block sizes (>= 16x16.)
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assert(dst_width >= 16 && dst_width % 16 == 0);
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int i = dst_height;
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do {
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int j = 0;
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do {
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uint8x16_t s0 = vld1q_u8(src_ptr + j);
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uint8x16_t s1 = vld1q_u8(src_ptr + j + pixel_step);
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uint8x16_t avg = vrhaddq_u8(s0, s1);
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uint8x16_t p = vld1q_u8(second_pred);
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avg = vrhaddq_u8(avg, p);
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vst1q_u8(dst_ptr + j, avg);
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j += 16;
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second_pred += 16;
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} while (j < dst_width);
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src_ptr += src_stride;
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dst_ptr += dst_width;
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} while (--i != 0);
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}
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// Implementation of aom_comp_avg_pred for blocks having width >= 16.
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static void avg_pred(const uint8_t *src_ptr, uint8_t *dst_ptr, int src_stride,
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int dst_width, int dst_height,
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const uint8_t *second_pred) {
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// We only specialise on the filter values for large block sizes (>= 16x16.)
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assert(dst_width >= 16 && dst_width % 16 == 0);
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|
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int i = dst_height;
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do {
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int j = 0;
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do {
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uint8x16_t s = vld1q_u8(src_ptr + j);
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uint8x16_t p = vld1q_u8(second_pred);
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|
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uint8x16_t avg = vrhaddq_u8(s, p);
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vst1q_u8(dst_ptr + j, avg);
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j += 16;
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second_pred += 16;
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} while (j < dst_width);
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src_ptr += src_stride;
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dst_ptr += dst_width;
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} while (--i != 0);
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}
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#define SUBPEL_AVG_VARIANCE_WXH_NEON(w, h, padding) \
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unsigned int aom_sub_pixel_avg_variance##w##x##h##_neon( \
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const uint8_t *src, int source_stride, int xoffset, int yoffset, \
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const uint8_t *ref, int ref_stride, uint32_t *sse, \
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const uint8_t *second_pred) { \
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uint8_t tmp0[w * (h + padding)]; \
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uint8_t tmp1[w * h]; \
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var_filter_block2d_bil_w##w(src, tmp0, source_stride, 1, (h + padding), \
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xoffset); \
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avg_pred_var_filter_block2d_bil_w##w(tmp0, tmp1, w, w, h, yoffset, \
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|
second_pred); \
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return aom_variance##w##x##h(tmp1, w, ref, ref_stride, sse); \
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}
|
|
|
|
#define SPECIALIZED_SUBPEL_AVG_VARIANCE_WXH_NEON(w, h, padding) \
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|
unsigned int aom_sub_pixel_avg_variance##w##x##h##_neon( \
|
|
const uint8_t *src, int source_stride, int xoffset, int yoffset, \
|
|
const uint8_t *ref, int ref_stride, unsigned int *sse, \
|
|
const uint8_t *second_pred) { \
|
|
if (xoffset == 0) { \
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|
uint8_t tmp[w * h]; \
|
|
if (yoffset == 0) { \
|
|
avg_pred(src, tmp, source_stride, w, h, second_pred); \
|
|
return aom_variance##w##x##h##_neon(tmp, w, ref, ref_stride, sse); \
|
|
} else if (yoffset == 4) { \
|
|
avg_pred_var_filter_block2d_avg(src, tmp, source_stride, \
|
|
source_stride, w, h, second_pred); \
|
|
return aom_variance##w##x##h##_neon(tmp, w, ref, ref_stride, sse); \
|
|
} else { \
|
|
avg_pred_var_filter_block2d_bil_w##w( \
|
|
src, tmp, source_stride, source_stride, h, yoffset, second_pred); \
|
|
return aom_variance##w##x##h##_neon(tmp, w, ref, ref_stride, sse); \
|
|
} \
|
|
} else if (xoffset == 4) { \
|
|
uint8_t tmp0[w * (h + padding)]; \
|
|
if (yoffset == 0) { \
|
|
avg_pred_var_filter_block2d_avg(src, tmp0, source_stride, 1, w, h, \
|
|
second_pred); \
|
|
return aom_variance##w##x##h##_neon(tmp0, w, ref, ref_stride, sse); \
|
|
} else if (yoffset == 4) { \
|
|
uint8_t tmp1[w * (h + padding)]; \
|
|
var_filter_block2d_avg(src, tmp0, source_stride, 1, w, (h + padding)); \
|
|
avg_pred_var_filter_block2d_avg(tmp0, tmp1, w, w, w, h, second_pred); \
|
|
return aom_variance##w##x##h##_neon(tmp1, w, ref, ref_stride, sse); \
|
|
} else { \
|
|
uint8_t tmp1[w * (h + padding)]; \
|
|
var_filter_block2d_avg(src, tmp0, source_stride, 1, w, (h + padding)); \
|
|
avg_pred_var_filter_block2d_bil_w##w(tmp0, tmp1, w, w, h, yoffset, \
|
|
second_pred); \
|
|
return aom_variance##w##x##h##_neon(tmp1, w, ref, ref_stride, sse); \
|
|
} \
|
|
} else { \
|
|
uint8_t tmp0[w * (h + padding)]; \
|
|
if (yoffset == 0) { \
|
|
avg_pred_var_filter_block2d_bil_w##w(src, tmp0, source_stride, 1, h, \
|
|
xoffset, second_pred); \
|
|
return aom_variance##w##x##h##_neon(tmp0, w, ref, ref_stride, sse); \
|
|
} else if (yoffset == 4) { \
|
|
uint8_t tmp1[w * h]; \
|
|
var_filter_block2d_bil_w##w(src, tmp0, source_stride, 1, \
|
|
(h + padding), xoffset); \
|
|
avg_pred_var_filter_block2d_avg(tmp0, tmp1, w, w, w, h, second_pred); \
|
|
return aom_variance##w##x##h##_neon(tmp1, w, ref, ref_stride, sse); \
|
|
} else { \
|
|
uint8_t tmp1[w * h]; \
|
|
var_filter_block2d_bil_w##w(src, tmp0, source_stride, 1, \
|
|
(h + padding), xoffset); \
|
|
avg_pred_var_filter_block2d_bil_w##w(tmp0, tmp1, w, w, h, yoffset, \
|
|
second_pred); \
|
|
return aom_variance##w##x##h##_neon(tmp1, w, ref, ref_stride, sse); \
|
|
} \
|
|
} \
|
|
}
|
|
|
|
SUBPEL_AVG_VARIANCE_WXH_NEON(4, 4, 2)
|
|
SUBPEL_AVG_VARIANCE_WXH_NEON(4, 8, 2)
|
|
|
|
SUBPEL_AVG_VARIANCE_WXH_NEON(8, 4, 1)
|
|
SUBPEL_AVG_VARIANCE_WXH_NEON(8, 8, 1)
|
|
SUBPEL_AVG_VARIANCE_WXH_NEON(8, 16, 1)
|
|
|
|
SUBPEL_AVG_VARIANCE_WXH_NEON(16, 8, 1)
|
|
SPECIALIZED_SUBPEL_AVG_VARIANCE_WXH_NEON(16, 16, 1)
|
|
SPECIALIZED_SUBPEL_AVG_VARIANCE_WXH_NEON(16, 32, 1)
|
|
|
|
SPECIALIZED_SUBPEL_AVG_VARIANCE_WXH_NEON(32, 16, 1)
|
|
SPECIALIZED_SUBPEL_AVG_VARIANCE_WXH_NEON(32, 32, 1)
|
|
SPECIALIZED_SUBPEL_AVG_VARIANCE_WXH_NEON(32, 64, 1)
|
|
|
|
SPECIALIZED_SUBPEL_AVG_VARIANCE_WXH_NEON(64, 32, 1)
|
|
SPECIALIZED_SUBPEL_AVG_VARIANCE_WXH_NEON(64, 64, 1)
|
|
SPECIALIZED_SUBPEL_AVG_VARIANCE_WXH_NEON(64, 128, 1)
|
|
|
|
SPECIALIZED_SUBPEL_AVG_VARIANCE_WXH_NEON(128, 64, 1)
|
|
SPECIALIZED_SUBPEL_AVG_VARIANCE_WXH_NEON(128, 128, 1)
|
|
|
|
#if !CONFIG_REALTIME_ONLY
|
|
|
|
SUBPEL_AVG_VARIANCE_WXH_NEON(4, 16, 2)
|
|
|
|
SUBPEL_AVG_VARIANCE_WXH_NEON(8, 32, 1)
|
|
|
|
SUBPEL_AVG_VARIANCE_WXH_NEON(16, 4, 1)
|
|
SPECIALIZED_SUBPEL_AVG_VARIANCE_WXH_NEON(16, 64, 1)
|
|
|
|
SPECIALIZED_SUBPEL_AVG_VARIANCE_WXH_NEON(32, 8, 1)
|
|
|
|
SPECIALIZED_SUBPEL_AVG_VARIANCE_WXH_NEON(64, 16, 1)
|
|
|
|
#endif // !CONFIG_REALTIME_ONLY
|
|
|
|
#undef SUBPEL_AVG_VARIANCE_WXH_NEON
|
|
#undef SPECIALIZED_SUBPEL_AVG_VARIANCE_WXH_NEON
|