Merge "mips msa vp9 filter by weight optimization"
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ecbbef6b67
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@ -244,6 +244,22 @@
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out3 = LW((psrc) + 3 * stride); \
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}
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/* Description : Load double words with stride
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Arguments : Inputs - psrc (source pointer to load from)
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- stride
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Outputs - out0, out1
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Details : Loads double word in 'out0' from (psrc)
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Loads double word in 'out1' from (psrc + stride)
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*/
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#define LD2(psrc, stride, out0, out1) { \
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out0 = LD((psrc)); \
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out1 = LD((psrc) + stride); \
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}
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#define LD4(psrc, stride, out0, out1, out2, out3) { \
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LD2((psrc), stride, out0, out1); \
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LD2((psrc) + 2 * stride, stride, out2, out3); \
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}
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/* Description : Store 4 words with stride
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Arguments : Inputs - in0, in1, in2, in3, pdst, stride
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Details : Stores word from 'in0' to (pdst)
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@ -482,6 +498,24 @@
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SD(out0_m, pdst); \
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}
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/* Description : Store as 8x2 byte block to destination memory from input vector
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Arguments : Inputs - in, pdst, stride
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Details : Index 0 double word element from input vector 'in' is copied
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and stored to destination memory at (pdst)
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Index 1 double word element from input vector 'in' is copied
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and stored to destination memory at (pdst + stride)
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*/
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#define ST8x2_UB(in, pdst, stride) { \
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uint64_t out0_m, out1_m; \
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uint8_t *pblk_8x2_m = (uint8_t *)(pdst); \
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\
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out0_m = __msa_copy_u_d((v2i64)in, 0); \
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out1_m = __msa_copy_u_d((v2i64)in, 1); \
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\
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SD(out0_m, pblk_8x2_m); \
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SD(out1_m, pblk_8x2_m + stride); \
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}
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/* Description : Store as 8x4 byte block to destination memory from input
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vectors
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Arguments : Inputs - in0, in1, pdst, stride
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@ -0,0 +1,137 @@
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/*
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* Copyright (c) 2015 The WebM project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#include "./vp9_rtcd.h"
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#include "vp9/common/vp9_onyxc_int.h"
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#include "vp9/common/mips/msa/vp9_macros_msa.h"
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static void filter_by_weight8x8_msa(const uint8_t *src_ptr, int32_t src_stride,
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uint8_t *dst_ptr, int32_t dst_stride,
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int32_t src_weight) {
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int32_t dst_weight = (1 << MFQE_PRECISION) - src_weight;
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int32_t row;
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uint64_t src0_d, src1_d, dst0_d, dst1_d;
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v16i8 src0 = { 0 };
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v16i8 src1 = { 0 };
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v16i8 dst0 = { 0 };
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v16i8 dst1 = { 0 };
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v8i16 src_wt, dst_wt, res_h_r, res_h_l, src_r, src_l, dst_r, dst_l;
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src_wt = __msa_fill_h(src_weight);
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dst_wt = __msa_fill_h(dst_weight);
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for (row = 2; row--;) {
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LD2(src_ptr, src_stride, src0_d, src1_d);
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src_ptr += (2 * src_stride);
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LD2(dst_ptr, dst_stride, dst0_d, dst1_d);
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INSERT_D2_SB(src0_d, src1_d, src0);
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INSERT_D2_SB(dst0_d, dst1_d, dst0);
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LD2(src_ptr, src_stride, src0_d, src1_d);
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src_ptr += (2 * src_stride);
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LD2((dst_ptr + 2 * dst_stride), dst_stride, dst0_d, dst1_d);
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INSERT_D2_SB(src0_d, src1_d, src1);
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INSERT_D2_SB(dst0_d, dst1_d, dst1);
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UNPCK_UB_SH(src0, src_r, src_l);
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UNPCK_UB_SH(dst0, dst_r, dst_l);
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res_h_r = (src_r * src_wt);
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res_h_r += (dst_r * dst_wt);
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res_h_l = (src_l * src_wt);
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res_h_l += (dst_l * dst_wt);
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SRARI_H2_SH(res_h_r, res_h_l, MFQE_PRECISION);
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dst0 = (v16i8)__msa_pckev_b((v16i8)res_h_l, (v16i8)res_h_r);
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ST8x2_UB(dst0, dst_ptr, dst_stride);
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dst_ptr += (2 * dst_stride);
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UNPCK_UB_SH(src1, src_r, src_l);
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UNPCK_UB_SH(dst1, dst_r, dst_l);
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res_h_r = (src_r * src_wt);
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res_h_r += (dst_r * dst_wt);
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res_h_l = (src_l * src_wt);
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res_h_l += (dst_l * dst_wt);
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SRARI_H2_SH(res_h_r, res_h_l, MFQE_PRECISION);
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dst1 = (v16i8)__msa_pckev_b((v16i8)res_h_l, (v16i8)res_h_r);
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ST8x2_UB(dst1, dst_ptr, dst_stride);
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dst_ptr += (2 * dst_stride);
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}
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}
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static void filter_by_weight16x16_msa(const uint8_t *src_ptr,
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int32_t src_stride,
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uint8_t *dst_ptr,
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int32_t dst_stride,
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int32_t src_weight) {
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int32_t dst_weight = (1 << MFQE_PRECISION) - src_weight;
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int32_t row;
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v16i8 src0, src1, src2, src3, dst0, dst1, dst2, dst3;
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v8i16 src_wt, dst_wt, res_h_r, res_h_l, src_r, src_l, dst_r, dst_l;
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src_wt = __msa_fill_h(src_weight);
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dst_wt = __msa_fill_h(dst_weight);
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for (row = 4; row--;) {
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LD_SB4(src_ptr, src_stride, src0, src1, src2, src3);
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src_ptr += (4 * src_stride);
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LD_SB4(dst_ptr, dst_stride, dst0, dst1, dst2, dst3);
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UNPCK_UB_SH(src0, src_r, src_l);
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UNPCK_UB_SH(dst0, dst_r, dst_l);
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res_h_r = (src_r * src_wt);
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res_h_r += (dst_r * dst_wt);
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res_h_l = (src_l * src_wt);
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res_h_l += (dst_l * dst_wt);
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SRARI_H2_SH(res_h_r, res_h_l, MFQE_PRECISION);
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PCKEV_ST_SB(res_h_r, res_h_l, dst_ptr);
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dst_ptr += dst_stride;
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UNPCK_UB_SH(src1, src_r, src_l);
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UNPCK_UB_SH(dst1, dst_r, dst_l);
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res_h_r = (src_r * src_wt);
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res_h_r += (dst_r * dst_wt);
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res_h_l = (src_l * src_wt);
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res_h_l += (dst_l * dst_wt);
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SRARI_H2_SH(res_h_r, res_h_l, MFQE_PRECISION);
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PCKEV_ST_SB(res_h_r, res_h_l, dst_ptr);
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dst_ptr += dst_stride;
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UNPCK_UB_SH(src2, src_r, src_l);
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UNPCK_UB_SH(dst2, dst_r, dst_l);
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res_h_r = (src_r * src_wt);
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res_h_r += (dst_r * dst_wt);
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res_h_l = (src_l * src_wt);
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res_h_l += (dst_l * dst_wt);
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SRARI_H2_SH(res_h_r, res_h_l, MFQE_PRECISION);
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PCKEV_ST_SB(res_h_r, res_h_l, dst_ptr);
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dst_ptr += dst_stride;
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UNPCK_UB_SH(src3, src_r, src_l);
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UNPCK_UB_SH(dst3, dst_r, dst_l);
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res_h_r = (src_r * src_wt);
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res_h_r += (dst_r * dst_wt);
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res_h_l = (src_l * src_wt);
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res_h_l += (dst_l * dst_wt);
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SRARI_H2_SH(res_h_r, res_h_l, MFQE_PRECISION);
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PCKEV_ST_SB(res_h_r, res_h_l, dst_ptr);
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dst_ptr += dst_stride;
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}
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}
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void vp9_filter_by_weight8x8_msa(const uint8_t *src, int src_stride,
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uint8_t *dst, int dst_stride,
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int src_weight) {
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filter_by_weight8x8_msa(src, src_stride, dst, dst_stride, src_weight);
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}
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void vp9_filter_by_weight16x16_msa(const uint8_t *src, int src_stride,
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uint8_t *dst, int dst_stride,
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int src_weight) {
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filter_by_weight16x16_msa(src, src_stride, dst, dst_stride, src_weight);
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}
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@ -276,10 +276,10 @@ specialize qw/vp9_plane_add_noise sse2/;
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$vp9_plane_add_noise_sse2=vp9_plane_add_noise_wmt;
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add_proto qw/void vp9_filter_by_weight16x16/, "const uint8_t *src, int src_stride, uint8_t *dst, int dst_stride, int src_weight";
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specialize qw/vp9_filter_by_weight16x16 sse2/;
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specialize qw/vp9_filter_by_weight16x16 sse2 msa/;
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add_proto qw/void vp9_filter_by_weight8x8/, "const uint8_t *src, int src_stride, uint8_t *dst, int dst_stride, int src_weight";
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specialize qw/vp9_filter_by_weight8x8 sse2/;
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specialize qw/vp9_filter_by_weight8x8 sse2 msa/;
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}
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#
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@ -152,6 +152,10 @@ VP9_COMMON_SRCS-$(HAVE_MSA) += common/mips/msa/vp9_loopfilter_8_msa.c
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VP9_COMMON_SRCS-$(HAVE_MSA) += common/mips/msa/vp9_loopfilter_16_msa.c
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VP9_COMMON_SRCS-$(HAVE_MSA) += common/mips/msa/vp9_loopfilter_msa.h
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ifeq ($(CONFIG_VP9_POSTPROC),yes)
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VP9_COMMON_SRCS-$(HAVE_MSA) += common/mips/msa/vp9_mfqe_msa.c
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endif
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VP9_COMMON_SRCS-$(HAVE_SSE2) += common/x86/vp9_idct_intrin_sse2.c
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VP9_COMMON_SRCS-$(HAVE_SSE2) += common/x86/vp9_idct_intrin_sse2.h
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ifeq ($(ARCH_X86_64), yes)
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