xref: /aosp_15_r20/external/libvpx/vpx_dsp/loongarch/vpx_convolve8_avg_lsx.c (revision fb1b10ab9aebc7c7068eedab379b749d7e3900be)
1 /*
2  *  Copyright (c) 2022 The WebM project authors. All Rights Reserved.
3  *
4  *  Use of this source code is governed by a BSD-style license
5  *  that can be found in the LICENSE file in the root of the source
6  *  tree. An additional intellectual property rights grant can be found
7  *  in the file PATENTS.  All contributing project authors may
8  *  be found in the AUTHORS file in the root of the source tree.
9  */
10 
11 #include <assert.h>
12 #include "./vpx_dsp_rtcd.h"
13 #include "vpx_dsp/loongarch/vpx_convolve_lsx.h"
14 
15 static const uint8_t mc_filt_mask_arr[16 * 3] = {
16   /* 8 width cases */
17   0, 1, 1, 2, 2, 3, 3, 4, 4, 5, 5, 6, 6, 7, 7, 8,
18   /* 4 width cases */
19   0, 1, 1, 2, 2, 3, 3, 4, 16, 17, 17, 18, 18, 19, 19, 20,
20   /* 4 width cases */
21   8, 9, 9, 10, 10, 11, 11, 12, 24, 25, 25, 26, 26, 27, 27, 28
22 };
23 
common_hv_8ht_8vt_and_aver_dst_4w_lsx(const uint8_t * src,int32_t src_stride,uint8_t * dst,int32_t dst_stride,const int8_t * filter_horiz,const int8_t * filter_vert,int32_t height)24 static void common_hv_8ht_8vt_and_aver_dst_4w_lsx(
25     const uint8_t *src, int32_t src_stride, uint8_t *dst, int32_t dst_stride,
26     const int8_t *filter_horiz, const int8_t *filter_vert, int32_t height) {
27   uint32_t loop_cnt = height >> 2;
28   uint8_t *dst_tmp = dst;
29   __m128i src0, src1, src2, src3, src4, src5, src6, src7, src8, src9, src10;
30   __m128i filt_hz0, filt_hz1, filt_hz2, filt_hz3;
31   __m128i filt_vt0, filt_vt1, filt_vt2, filt_vt3;
32   __m128i mask0, mask1, mask2, mask3;
33   __m128i tmp0, tmp1, tmp2, tmp3, tmp4, tmp5;
34   __m128i out0, out1;
35   __m128i shuff = { 0x0F0E0D0C0B0A0908, 0x1716151413121110 };
36   int32_t src_stride2 = src_stride << 1;
37   int32_t src_stride3 = src_stride + src_stride2;
38   int32_t src_stride4 = src_stride2 << 1;
39   uint8_t *_src = (uint8_t *)src - 3 - src_stride3;
40 
41   mask0 = __lsx_vld(mc_filt_mask_arr, 16);
42   DUP4_ARG2(__lsx_vldrepl_h, filter_horiz, 0, filter_horiz, 2, filter_horiz, 4,
43             filter_horiz, 6, filt_hz0, filt_hz1, filt_hz2, filt_hz3);
44   DUP2_ARG2(__lsx_vaddi_bu, mask0, 2, mask0, 4, mask1, mask2);
45   mask3 = __lsx_vaddi_bu(mask0, 6);
46 
47   src0 = __lsx_vld(_src, 0);
48   DUP2_ARG2(__lsx_vldx, _src, src_stride, _src, src_stride2, src1, src2);
49   src3 = __lsx_vldx(_src, src_stride3);
50   _src += src_stride4;
51   src4 = __lsx_vld(_src, 0);
52   DUP2_ARG2(__lsx_vldx, _src, src_stride, _src, src_stride2, src5, src6);
53   _src += src_stride3;
54 
55   DUP4_ARG2(__lsx_vxori_b, src0, 128, src1, 128, src2, 128, src3, 128, src0,
56             src1, src2, src3);
57   DUP2_ARG2(__lsx_vxori_b, src4, 128, src5, 128, src4, src5);
58   src6 = __lsx_vxori_b(src6, 128);
59 
60   tmp0 = horiz_8tap_filt(src0, src1, mask0, mask1, mask2, mask3, filt_hz0,
61                          filt_hz1, filt_hz2, filt_hz3);
62   tmp2 = horiz_8tap_filt(src2, src3, mask0, mask1, mask2, mask3, filt_hz0,
63                          filt_hz1, filt_hz2, filt_hz3);
64   tmp4 = horiz_8tap_filt(src4, src5, mask0, mask1, mask2, mask3, filt_hz0,
65                          filt_hz1, filt_hz2, filt_hz3);
66   tmp5 = horiz_8tap_filt(src5, src6, mask0, mask1, mask2, mask3, filt_hz0,
67                          filt_hz1, filt_hz2, filt_hz3);
68   DUP2_ARG3(__lsx_vshuf_b, tmp2, tmp0, shuff, tmp4, tmp2, shuff, tmp1, tmp3);
69   DUP4_ARG2(__lsx_vldrepl_h, filter_vert, 0, filter_vert, 2, filter_vert, 4,
70             filter_vert, 6, filt_vt0, filt_vt1, filt_vt2, filt_vt3);
71   DUP2_ARG2(__lsx_vpackev_b, tmp1, tmp0, tmp3, tmp2, tmp0, tmp1);
72   tmp2 = __lsx_vpackev_b(tmp5, tmp4);
73   for (; loop_cnt--;) {
74     src7 = __lsx_vld(_src, 0);
75     DUP2_ARG2(__lsx_vldx, _src, src_stride, _src, src_stride2, src8, src9);
76     src10 = __lsx_vldx(_src, src_stride3);
77     _src += src_stride4;
78     src2 = __lsx_vldrepl_w(dst_tmp, 0);
79     dst_tmp += dst_stride;
80     src3 = __lsx_vldrepl_w(dst_tmp, 0);
81     dst_tmp += dst_stride;
82     src4 = __lsx_vldrepl_w(dst_tmp, 0);
83     dst_tmp += dst_stride;
84     src5 = __lsx_vldrepl_w(dst_tmp, 0);
85     dst_tmp += dst_stride;
86     DUP2_ARG2(__lsx_vilvl_w, src3, src2, src5, src4, src2, src3);
87     src2 = __lsx_vilvl_d(src3, src2);
88     DUP4_ARG2(__lsx_vxori_b, src7, 128, src8, 128, src9, 128, src10, 128, src7,
89               src8, src9, src10);
90     tmp3 = horiz_8tap_filt(src7, src8, mask0, mask1, mask2, mask3, filt_hz0,
91                            filt_hz1, filt_hz2, filt_hz3);
92     tmp4 = __lsx_vshuf_b(tmp3, tmp5, shuff);
93     tmp4 = __lsx_vpackev_b(tmp3, tmp4);
94     out0 = filt_8tap_dpadd_s_h(tmp0, tmp1, tmp2, tmp4, filt_vt0, filt_vt1,
95                                filt_vt2, filt_vt3);
96     src1 = horiz_8tap_filt(src9, src10, mask0, mask1, mask2, mask3, filt_hz0,
97                            filt_hz1, filt_hz2, filt_hz3);
98     src0 = __lsx_vshuf_b(src1, tmp3, shuff);
99     src0 = __lsx_vpackev_b(src1, src0);
100     out1 = filt_8tap_dpadd_s_h(tmp1, tmp2, tmp4, src0, filt_vt0, filt_vt1,
101                                filt_vt2, filt_vt3);
102     out0 = __lsx_vssrarni_b_h(out1, out0, FILTER_BITS);
103     out0 = __lsx_vxori_b(out0, 128);
104     out0 = __lsx_vavgr_bu(out0, src2);
105     __lsx_vstelm_w(out0, dst, 0, 0);
106     dst += dst_stride;
107     __lsx_vstelm_w(out0, dst, 0, 1);
108     dst += dst_stride;
109     __lsx_vstelm_w(out0, dst, 0, 2);
110     dst += dst_stride;
111     __lsx_vstelm_w(out0, dst, 0, 3);
112     dst += dst_stride;
113 
114     tmp5 = src1;
115     tmp0 = tmp2;
116     tmp1 = tmp4;
117     tmp2 = src0;
118   }
119 }
120 
common_hv_8ht_8vt_and_aver_dst_8w_lsx(const uint8_t * src,int32_t src_stride,uint8_t * dst,int32_t dst_stride,const int8_t * filter_horiz,const int8_t * filter_vert,int32_t height)121 static void common_hv_8ht_8vt_and_aver_dst_8w_lsx(
122     const uint8_t *src, int32_t src_stride, uint8_t *dst, int32_t dst_stride,
123     const int8_t *filter_horiz, const int8_t *filter_vert, int32_t height) {
124   uint32_t loop_cnt = height >> 2;
125   uint8_t *dst_tmp = dst;
126   __m128i src0, src1, src2, src3, src4, src5, src6, src7, src8, src9, src10;
127   __m128i filt_hz0, filt_hz1, filt_hz2, filt_hz3;
128   __m128i filt_vt0, filt_vt1, filt_vt2, filt_vt3;
129   __m128i mask0, mask1, mask2, mask3;
130   __m128i tmp0, tmp1, tmp2, tmp3, tmp4, tmp5, tmp6;
131   __m128i out0, out1;
132   int32_t src_stride2 = src_stride << 1;
133   int32_t src_stride3 = src_stride + src_stride2;
134   int32_t src_stride4 = src_stride2 << 1;
135   uint8_t *_src = (uint8_t *)src - 3 - src_stride3;
136 
137   mask0 = __lsx_vld(mc_filt_mask_arr, 0);
138   DUP4_ARG2(__lsx_vldrepl_h, filter_horiz, 0, filter_horiz, 2, filter_horiz, 4,
139             filter_horiz, 6, filt_hz0, filt_hz1, filt_hz2, filt_hz3);
140   DUP2_ARG2(__lsx_vaddi_bu, mask0, 2, mask0, 4, mask1, mask2);
141   mask3 = __lsx_vaddi_bu(mask0, 6);
142 
143   src0 = __lsx_vld(_src, 0);
144   DUP2_ARG2(__lsx_vldx, _src, src_stride, _src, src_stride2, src1, src2);
145   src3 = __lsx_vldx(_src, src_stride3);
146   _src += src_stride4;
147   src4 = __lsx_vld(_src, 0);
148   DUP2_ARG2(__lsx_vldx, _src, src_stride, _src, src_stride2, src5, src6);
149   _src += src_stride3;
150   DUP4_ARG2(__lsx_vxori_b, src0, 128, src1, 128, src2, 128, src3, 128, src0,
151             src1, src2, src3);
152   DUP2_ARG2(__lsx_vxori_b, src4, 128, src5, 128, src4, src5);
153   src6 = __lsx_vxori_b(src6, 128);
154 
155   src0 = horiz_8tap_filt(src0, src0, mask0, mask1, mask2, mask3, filt_hz0,
156                          filt_hz1, filt_hz2, filt_hz3);
157   src1 = horiz_8tap_filt(src1, src1, mask0, mask1, mask2, mask3, filt_hz0,
158                          filt_hz1, filt_hz2, filt_hz3);
159   src2 = horiz_8tap_filt(src2, src2, mask0, mask1, mask2, mask3, filt_hz0,
160                          filt_hz1, filt_hz2, filt_hz3);
161   src3 = horiz_8tap_filt(src3, src3, mask0, mask1, mask2, mask3, filt_hz0,
162                          filt_hz1, filt_hz2, filt_hz3);
163   src4 = horiz_8tap_filt(src4, src4, mask0, mask1, mask2, mask3, filt_hz0,
164                          filt_hz1, filt_hz2, filt_hz3);
165   src5 = horiz_8tap_filt(src5, src5, mask0, mask1, mask2, mask3, filt_hz0,
166                          filt_hz1, filt_hz2, filt_hz3);
167   src6 = horiz_8tap_filt(src6, src6, mask0, mask1, mask2, mask3, filt_hz0,
168                          filt_hz1, filt_hz2, filt_hz3);
169 
170   DUP4_ARG2(__lsx_vldrepl_h, filter_vert, 0, filter_vert, 2, filter_vert, 4,
171             filter_vert, 6, filt_vt0, filt_vt1, filt_vt2, filt_vt3);
172   DUP4_ARG2(__lsx_vpackev_b, src1, src0, src3, src2, src5, src4, src2, src1,
173             tmp0, tmp1, tmp2, tmp4);
174   DUP2_ARG2(__lsx_vpackev_b, src4, src3, src6, src5, tmp5, tmp6);
175 
176   for (; loop_cnt--;) {
177     src7 = __lsx_vld(_src, 0);
178     DUP2_ARG2(__lsx_vldx, _src, src_stride, _src, src_stride2, src8, src9);
179     src10 = __lsx_vldx(_src, src_stride3);
180     _src += src_stride4;
181 
182     DUP4_ARG2(__lsx_vxori_b, src7, 128, src8, 128, src9, 128, src10, 128, src7,
183               src8, src9, src10);
184     src7 = horiz_8tap_filt(src7, src7, mask0, mask1, mask2, mask3, filt_hz0,
185                            filt_hz1, filt_hz2, filt_hz3);
186     tmp3 = __lsx_vpackev_b(src7, src6);
187     out0 = filt_8tap_dpadd_s_h(tmp0, tmp1, tmp2, tmp3, filt_vt0, filt_vt1,
188                                filt_vt2, filt_vt3);
189     src8 = horiz_8tap_filt(src8, src8, mask0, mask1, mask2, mask3, filt_hz0,
190                            filt_hz1, filt_hz2, filt_hz3);
191     src0 = __lsx_vpackev_b(src8, src7);
192     out1 = filt_8tap_dpadd_s_h(tmp4, tmp5, tmp6, src0, filt_vt0, filt_vt1,
193                                filt_vt2, filt_vt3);
194     src9 = horiz_8tap_filt(src9, src9, mask0, mask1, mask2, mask3, filt_hz0,
195                            filt_hz1, filt_hz2, filt_hz3);
196     src1 = __lsx_vpackev_b(src9, src8);
197     src3 = filt_8tap_dpadd_s_h(tmp1, tmp2, tmp3, src1, filt_vt0, filt_vt1,
198                                filt_vt2, filt_vt3);
199     src10 = horiz_8tap_filt(src10, src10, mask0, mask1, mask2, mask3, filt_hz0,
200                             filt_hz1, filt_hz2, filt_hz3);
201     src2 = __lsx_vpackev_b(src10, src9);
202     src4 = filt_8tap_dpadd_s_h(tmp5, tmp6, src0, src2, filt_vt0, filt_vt1,
203                                filt_vt2, filt_vt3);
204     DUP2_ARG3(__lsx_vssrarni_b_h, out1, out0, FILTER_BITS, src4, src3,
205               FILTER_BITS, out0, out1);
206     DUP2_ARG2(__lsx_vxori_b, out0, 128, out1, 128, out0, out1);
207     src5 = __lsx_vldrepl_d(dst_tmp, 0);
208     dst_tmp += dst_stride;
209     src7 = __lsx_vldrepl_d(dst_tmp, 0);
210     dst_tmp += dst_stride;
211     src8 = __lsx_vldrepl_d(dst_tmp, 0);
212     dst_tmp += dst_stride;
213     src9 = __lsx_vldrepl_d(dst_tmp, 0);
214     dst_tmp += dst_stride;
215     DUP2_ARG2(__lsx_vilvl_d, src7, src5, src9, src8, src5, src7);
216     DUP2_ARG2(__lsx_vavgr_bu, out0, src5, out1, src7, out0, out1);
217     __lsx_vstelm_d(out0, dst, 0, 0);
218     dst += dst_stride;
219     __lsx_vstelm_d(out0, dst, 0, 1);
220     dst += dst_stride;
221     __lsx_vstelm_d(out1, dst, 0, 0);
222     dst += dst_stride;
223     __lsx_vstelm_d(out1, dst, 0, 1);
224     dst += dst_stride;
225 
226     src6 = src10;
227     tmp0 = tmp2;
228     tmp1 = tmp3;
229     tmp2 = src1;
230     tmp4 = tmp6;
231     tmp5 = src0;
232     tmp6 = src2;
233   }
234 }
235 
common_hv_8ht_8vt_and_aver_dst_16w_lsx(const uint8_t * src,int32_t src_stride,uint8_t * dst,int32_t dst_stride,const int8_t * filter_horiz,const int8_t * filter_vert,int32_t height)236 static void common_hv_8ht_8vt_and_aver_dst_16w_lsx(
237     const uint8_t *src, int32_t src_stride, uint8_t *dst, int32_t dst_stride,
238     const int8_t *filter_horiz, const int8_t *filter_vert, int32_t height) {
239   common_hv_8ht_8vt_and_aver_dst_8w_lsx(src, src_stride, dst, dst_stride,
240                                         filter_horiz, filter_vert, height);
241   src += 8;
242   dst += 8;
243 
244   common_hv_8ht_8vt_and_aver_dst_8w_lsx(src, src_stride, dst, dst_stride,
245                                         filter_horiz, filter_vert, height);
246 }
247 
common_hv_8ht_8vt_and_aver_dst_32w_lsx(const uint8_t * src,int32_t src_stride,uint8_t * dst,int32_t dst_stride,const int8_t * filter_horiz,const int8_t * filter_vert,int32_t height)248 static void common_hv_8ht_8vt_and_aver_dst_32w_lsx(
249     const uint8_t *src, int32_t src_stride, uint8_t *dst, int32_t dst_stride,
250     const int8_t *filter_horiz, const int8_t *filter_vert, int32_t height) {
251   int32_t multiple8_cnt;
252 
253   for (multiple8_cnt = 4; multiple8_cnt--;) {
254     common_hv_8ht_8vt_and_aver_dst_8w_lsx(src, src_stride, dst, dst_stride,
255                                           filter_horiz, filter_vert, height);
256     src += 8;
257     dst += 8;
258   }
259 }
260 
common_hv_8ht_8vt_and_aver_dst_64w_lsx(const uint8_t * src,int32_t src_stride,uint8_t * dst,int32_t dst_stride,const int8_t * filter_horiz,const int8_t * filter_vert,int32_t height)261 static void common_hv_8ht_8vt_and_aver_dst_64w_lsx(
262     const uint8_t *src, int32_t src_stride, uint8_t *dst, int32_t dst_stride,
263     const int8_t *filter_horiz, const int8_t *filter_vert, int32_t height) {
264   int32_t multiple8_cnt;
265 
266   for (multiple8_cnt = 8; multiple8_cnt--;) {
267     common_hv_8ht_8vt_and_aver_dst_8w_lsx(src, src_stride, dst, dst_stride,
268                                           filter_horiz, filter_vert, height);
269 
270     src += 8;
271     dst += 8;
272   }
273 }
274 
common_hv_2ht_2vt_and_aver_dst_4x4_lsx(const uint8_t * src,int32_t src_stride,uint8_t * dst,int32_t dst_stride,int8_t * filter_horiz,int8_t * filter_vert)275 static void common_hv_2ht_2vt_and_aver_dst_4x4_lsx(
276     const uint8_t *src, int32_t src_stride, uint8_t *dst, int32_t dst_stride,
277     int8_t *filter_horiz, int8_t *filter_vert) {
278   __m128i src0, src1, src2, src3, src4, mask;
279   __m128i filt_hz, filt_vt, vec0, vec1;
280   __m128i dst0, dst1, dst2, dst3;
281   __m128i hz_out0, hz_out1, hz_out2, hz_out3, hz_out4, tmp0, tmp1;
282   __m128i shuff = { 0x0F0E0D0C0B0A0908, 0x1716151413121110 };
283 
284   int32_t src_stride2 = src_stride << 1;
285   int32_t src_stride3 = src_stride2 + src_stride;
286   int32_t src_stride4 = src_stride2 << 1;
287 
288   int32_t dst_stride2 = dst_stride << 1;
289   int32_t dst_stride3 = dst_stride2 + dst_stride;
290 
291   mask = __lsx_vld(mc_filt_mask_arr, 16);
292   /* rearranging filter */
293   DUP2_ARG2(__lsx_vldrepl_h, filter_horiz, 0, filter_vert, 0, filt_hz, filt_vt);
294 
295   src0 = __lsx_vld(src, 0);
296   DUP4_ARG2(__lsx_vldx, src, src_stride, src, src_stride2, src, src_stride3,
297             src, src_stride4, src1, src2, src3, src4);
298 
299   hz_out0 = horiz_2tap_filt_uh(src0, src1, mask, filt_hz);
300   hz_out2 = horiz_2tap_filt_uh(src2, src3, mask, filt_hz);
301   hz_out4 = horiz_2tap_filt_uh(src4, src4, mask, filt_hz);
302   hz_out1 = __lsx_vshuf_b(hz_out2, hz_out0, shuff);
303   hz_out3 = __lsx_vpickod_d(hz_out4, hz_out2);
304   DUP2_ARG2(__lsx_vpackev_b, hz_out1, hz_out0, hz_out3, hz_out2, vec0, vec1);
305 
306   dst0 = __lsx_vldrepl_w(dst, 0);
307   dst1 = __lsx_vldrepl_w(dst + dst_stride, 0);
308   dst2 = __lsx_vldrepl_w(dst + dst_stride2, 0);
309   dst3 = __lsx_vldrepl_w(dst + dst_stride3, 0);
310   dst0 = __lsx_vilvl_w(dst1, dst0);
311   dst1 = __lsx_vilvl_w(dst3, dst2);
312   dst0 = __lsx_vilvl_d(dst1, dst0);
313   DUP2_ARG2(__lsx_vdp2_h_bu, vec0, filt_vt, vec1, filt_vt, tmp0, tmp1);
314   tmp0 = __lsx_vssrarni_bu_h(tmp1, tmp0, FILTER_BITS);
315   tmp0 = __lsx_vavgr_bu(tmp0, dst0);
316   __lsx_vstelm_w(tmp0, dst, 0, 0);
317   __lsx_vstelm_w(tmp0, dst + dst_stride, 0, 1);
318   __lsx_vstelm_w(tmp0, dst + dst_stride2, 0, 2);
319   __lsx_vstelm_w(tmp0, dst + dst_stride3, 0, 3);
320 }
321 
common_hv_2ht_2vt_and_aver_dst_4x8_lsx(const uint8_t * src,int32_t src_stride,uint8_t * dst,int32_t dst_stride,int8_t * filter_horiz,int8_t * filter_vert)322 static void common_hv_2ht_2vt_and_aver_dst_4x8_lsx(
323     const uint8_t *src, int32_t src_stride, uint8_t *dst, int32_t dst_stride,
324     int8_t *filter_horiz, int8_t *filter_vert) {
325   uint8_t *dst_tmp = dst;
326   __m128i src0, src1, src2, src3, src4, src5, src6, src7, src8, mask;
327   __m128i filt_hz, filt_vt, vec0, vec1, vec2, vec3, res0, res1;
328   __m128i hz_out0, hz_out1, hz_out2, hz_out3, hz_out4, hz_out5, hz_out6;
329   __m128i hz_out7, hz_out8, tmp0, tmp1, tmp2, tmp3;
330   __m128i dst0, dst1, dst2, dst3, dst4;
331   __m128i shuff = { 0x0F0E0D0C0B0A0908, 0x1716151413121110 };
332 
333   int32_t src_stride2 = src_stride << 1;
334   int32_t src_stride3 = src_stride2 + src_stride;
335   int32_t src_stride4 = src_stride2 << 1;
336 
337   mask = __lsx_vld(mc_filt_mask_arr, 16);
338 
339   /* rearranging filter */
340   filt_hz = __lsx_vldrepl_h(filter_horiz, 0);
341   filt_vt = __lsx_vldrepl_h(filter_vert, 0);
342 
343   src0 = __lsx_vld(src, 0);
344   DUP4_ARG2(__lsx_vldx, src, src_stride, src, src_stride2, src, src_stride3,
345             src, src_stride4, src1, src2, src3, src4);
346   src += src_stride4;
347   DUP4_ARG2(__lsx_vldx, src, src_stride, src, src_stride2, src, src_stride3,
348             src, src_stride4, src5, src6, src7, src8);
349   src += src_stride4;
350 
351   hz_out0 = horiz_2tap_filt_uh(src0, src1, mask, filt_hz);
352   hz_out2 = horiz_2tap_filt_uh(src2, src3, mask, filt_hz);
353   hz_out4 = horiz_2tap_filt_uh(src4, src5, mask, filt_hz);
354   hz_out6 = horiz_2tap_filt_uh(src6, src7, mask, filt_hz);
355   hz_out8 = horiz_2tap_filt_uh(src8, src8, mask, filt_hz);
356   DUP2_ARG3(__lsx_vshuf_b, hz_out2, hz_out0, shuff, hz_out4, hz_out2, shuff,
357             hz_out1, hz_out3);
358   hz_out5 = __lsx_vshuf_b(hz_out6, hz_out4, shuff);
359   hz_out7 = __lsx_vpickod_d(hz_out8, hz_out6);
360 
361   dst0 = __lsx_vldrepl_w(dst_tmp, 0);
362   dst_tmp += dst_stride;
363   dst1 = __lsx_vldrepl_w(dst_tmp, 0);
364   dst_tmp += dst_stride;
365   dst2 = __lsx_vldrepl_w(dst_tmp, 0);
366   dst_tmp += dst_stride;
367   dst3 = __lsx_vldrepl_w(dst_tmp, 0);
368   dst_tmp += dst_stride;
369   dst0 = __lsx_vilvl_w(dst1, dst0);
370   dst1 = __lsx_vilvl_w(dst3, dst2);
371   dst0 = __lsx_vilvl_d(dst1, dst0);
372 
373   dst1 = __lsx_vldrepl_w(dst_tmp, 0);
374   dst_tmp += dst_stride;
375   dst2 = __lsx_vldrepl_w(dst_tmp, 0);
376   dst_tmp += dst_stride;
377   dst3 = __lsx_vldrepl_w(dst_tmp, 0);
378   dst_tmp += dst_stride;
379   dst4 = __lsx_vldrepl_w(dst_tmp, 0);
380   dst1 = __lsx_vilvl_w(dst2, dst1);
381   dst2 = __lsx_vilvl_w(dst4, dst3);
382   dst1 = __lsx_vilvl_d(dst2, dst1);
383 
384   DUP4_ARG2(__lsx_vpackev_b, hz_out1, hz_out0, hz_out3, hz_out2, hz_out5,
385             hz_out4, hz_out7, hz_out6, vec0, vec1, vec2, vec3);
386   DUP4_ARG2(__lsx_vdp2_h_bu, vec0, filt_vt, vec1, filt_vt, vec2, filt_vt, vec3,
387             filt_vt, tmp0, tmp1, tmp2, tmp3);
388   DUP2_ARG3(__lsx_vssrarni_bu_h, tmp1, tmp0, FILTER_BITS, tmp3, tmp2,
389             FILTER_BITS, res0, res1);
390   DUP2_ARG2(__lsx_vavgr_bu, res0, dst0, res1, dst1, res0, res1);
391 
392   __lsx_vstelm_w(res0, dst, 0, 0);
393   dst += dst_stride;
394   __lsx_vstelm_w(res0, dst, 0, 1);
395   dst += dst_stride;
396   __lsx_vstelm_w(res0, dst, 0, 2);
397   dst += dst_stride;
398   __lsx_vstelm_w(res0, dst, 0, 3);
399   dst += dst_stride;
400 
401   __lsx_vstelm_w(res1, dst, 0, 0);
402   dst += dst_stride;
403   __lsx_vstelm_w(res1, dst, 0, 1);
404   dst += dst_stride;
405   __lsx_vstelm_w(res1, dst, 0, 2);
406   dst += dst_stride;
407   __lsx_vstelm_w(res1, dst, 0, 3);
408 }
409 
common_hv_2ht_2vt_and_aver_dst_4w_lsx(const uint8_t * src,int32_t src_stride,uint8_t * dst,int32_t dst_stride,int8_t * filter_horiz,int8_t * filter_vert,int32_t height)410 static void common_hv_2ht_2vt_and_aver_dst_4w_lsx(
411     const uint8_t *src, int32_t src_stride, uint8_t *dst, int32_t dst_stride,
412     int8_t *filter_horiz, int8_t *filter_vert, int32_t height) {
413   if (height == 4) {
414     common_hv_2ht_2vt_and_aver_dst_4x4_lsx(src, src_stride, dst, dst_stride,
415                                            filter_horiz, filter_vert);
416   } else if (height == 8) {
417     common_hv_2ht_2vt_and_aver_dst_4x8_lsx(src, src_stride, dst, dst_stride,
418                                            filter_horiz, filter_vert);
419   }
420 }
421 
common_hv_2ht_2vt_and_aver_dst_8x4_lsx(const uint8_t * src,int32_t src_stride,uint8_t * dst,int32_t dst_stride,int8_t * filter_horiz,int8_t * filter_vert)422 static void common_hv_2ht_2vt_and_aver_dst_8x4_lsx(
423     const uint8_t *src, int32_t src_stride, uint8_t *dst, int32_t dst_stride,
424     int8_t *filter_horiz, int8_t *filter_vert) {
425   __m128i src0, src1, src2, src3, src4, mask;
426   __m128i filt_hz, filt_vt, vec0, vec1, vec2, vec3;
427   __m128i hz_out0, hz_out1, tmp0, tmp1, tmp2, tmp3;
428   __m128i dst0, dst1, dst2, dst3;
429 
430   int32_t src_stride2 = src_stride << 1;
431   int32_t src_stride3 = src_stride2 + src_stride;
432   int32_t src_stride4 = src_stride2 << 1;
433 
434   uint8_t *dst_tmp = dst;
435   mask = __lsx_vld(mc_filt_mask_arr, 0);
436   /* rearranging filter */
437   filt_hz = __lsx_vldrepl_h(filter_horiz, 0);
438   filt_vt = __lsx_vldrepl_h(filter_vert, 0);
439 
440   src0 = __lsx_vld(src, 0);
441   DUP4_ARG2(__lsx_vldx, src, src_stride, src, src_stride2, src, src_stride3,
442             src, src_stride4, src1, src2, src3, src4);
443 
444   dst0 = __lsx_vldrepl_d(dst_tmp, 0);
445   dst_tmp += dst_stride;
446   dst1 = __lsx_vldrepl_d(dst_tmp, 0);
447   dst_tmp += dst_stride;
448   dst2 = __lsx_vldrepl_d(dst_tmp, 0);
449   dst_tmp += dst_stride;
450   dst3 = __lsx_vldrepl_d(dst_tmp, 0);
451   DUP2_ARG2(__lsx_vilvl_d, dst1, dst0, dst3, dst2, dst0, dst1);
452   hz_out0 = horiz_2tap_filt_uh(src0, src0, mask, filt_hz);
453   hz_out1 = horiz_2tap_filt_uh(src1, src1, mask, filt_hz);
454   vec0 = __lsx_vpackev_b(hz_out1, hz_out0);
455   tmp0 = __lsx_vdp2_h_bu(vec0, filt_vt);
456 
457   hz_out0 = horiz_2tap_filt_uh(src2, src2, mask, filt_hz);
458   vec1 = __lsx_vpackev_b(hz_out0, hz_out1);
459   tmp1 = __lsx_vdp2_h_bu(vec1, filt_vt);
460 
461   hz_out1 = horiz_2tap_filt_uh(src3, src3, mask, filt_hz);
462   vec2 = __lsx_vpackev_b(hz_out1, hz_out0);
463   tmp2 = __lsx_vdp2_h_bu(vec2, filt_vt);
464 
465   hz_out0 = horiz_2tap_filt_uh(src4, src4, mask, filt_hz);
466   vec3 = __lsx_vpackev_b(hz_out0, hz_out1);
467   tmp3 = __lsx_vdp2_h_bu(vec3, filt_vt);
468   DUP2_ARG3(__lsx_vssrarni_bu_h, tmp1, tmp0, FILTER_BITS, tmp3, tmp2,
469             FILTER_BITS, tmp0, tmp1);
470   AVG_ST4_D(tmp0, tmp1, dst0, dst1, dst, dst_stride);
471 }
472 
common_hv_2ht_2vt_and_aver_dst_8x8mult_lsx(const uint8_t * src,int32_t src_stride,uint8_t * dst,int32_t dst_stride,int8_t * filter_horiz,int8_t * filter_vert,int32_t height)473 static void common_hv_2ht_2vt_and_aver_dst_8x8mult_lsx(
474     const uint8_t *src, int32_t src_stride, uint8_t *dst, int32_t dst_stride,
475     int8_t *filter_horiz, int8_t *filter_vert, int32_t height) {
476   uint32_t loop_cnt = (height >> 2);
477   __m128i src0, src1, src2, src3, src4, mask;
478   __m128i filt_hz, filt_vt, vec0;
479   __m128i hz_out0, hz_out1, tmp0, tmp1, tmp2, tmp3;
480   __m128i dst0, dst1, dst2, dst3;
481 
482   int32_t src_stride2 = src_stride << 1;
483   int32_t src_stride3 = src_stride2 + src_stride;
484   int32_t src_stride4 = src_stride2 << 1;
485 
486   uint8_t *dst_tmp = dst;
487 
488   /* rearranging filter */
489   mask = __lsx_vld(mc_filt_mask_arr, 0);
490 
491   filt_hz = __lsx_vldrepl_h(filter_horiz, 0);
492   filt_vt = __lsx_vldrepl_h(filter_vert, 0);
493 
494   src0 = __lsx_vld(src, 0);
495   src += src_stride;
496 
497   hz_out0 = horiz_2tap_filt_uh(src0, src0, mask, filt_hz);
498 
499   for (; loop_cnt--;) {
500     src1 = __lsx_vld(src, 0);
501     DUP2_ARG2(__lsx_vldx, src, src_stride, src, src_stride2, src2, src3);
502     src4 = __lsx_vldx(src, src_stride3);
503     src += src_stride4;
504 
505     hz_out1 = horiz_2tap_filt_uh(src1, src1, mask, filt_hz);
506     vec0 = __lsx_vpackev_b(hz_out1, hz_out0);
507     tmp0 = __lsx_vdp2_h_bu(vec0, filt_vt);
508 
509     hz_out0 = horiz_2tap_filt_uh(src2, src2, mask, filt_hz);
510     vec0 = __lsx_vpackev_b(hz_out0, hz_out1);
511     tmp1 = __lsx_vdp2_h_bu(vec0, filt_vt);
512 
513     hz_out1 = horiz_2tap_filt_uh(src3, src3, mask, filt_hz);
514     vec0 = __lsx_vpackev_b(hz_out1, hz_out0);
515     tmp2 = __lsx_vdp2_h_bu(vec0, filt_vt);
516 
517     hz_out0 = horiz_2tap_filt_uh(src4, src4, mask, filt_hz);
518     vec0 = __lsx_vpackev_b(hz_out0, hz_out1);
519     tmp3 = __lsx_vdp2_h_bu(vec0, filt_vt);
520     DUP2_ARG3(__lsx_vssrarni_bu_h, tmp1, tmp0, FILTER_BITS, tmp3, tmp2,
521               FILTER_BITS, tmp0, tmp1);
522 
523     dst0 = __lsx_vldrepl_d(dst_tmp, 0);
524     dst_tmp += dst_stride;
525     dst1 = __lsx_vldrepl_d(dst_tmp, 0);
526     dst_tmp += dst_stride;
527     dst2 = __lsx_vldrepl_d(dst_tmp, 0);
528     dst_tmp += dst_stride;
529     dst3 = __lsx_vldrepl_d(dst_tmp, 0);
530     dst_tmp += dst_stride;
531     DUP2_ARG2(__lsx_vilvl_d, dst1, dst0, dst3, dst2, dst0, dst1);
532     AVG_ST4_D(tmp0, tmp1, dst0, dst1, dst, dst_stride);
533     dst += dst_stride;
534   }
535 }
536 
common_hv_2ht_2vt_and_aver_dst_8w_lsx(const uint8_t * src,int32_t src_stride,uint8_t * dst,int32_t dst_stride,int8_t * filter_horiz,int8_t * filter_vert,int32_t height)537 static void common_hv_2ht_2vt_and_aver_dst_8w_lsx(
538     const uint8_t *src, int32_t src_stride, uint8_t *dst, int32_t dst_stride,
539     int8_t *filter_horiz, int8_t *filter_vert, int32_t height) {
540   if (height == 4) {
541     common_hv_2ht_2vt_and_aver_dst_8x4_lsx(src, src_stride, dst, dst_stride,
542                                            filter_horiz, filter_vert);
543   } else {
544     common_hv_2ht_2vt_and_aver_dst_8x8mult_lsx(
545         src, src_stride, dst, dst_stride, filter_horiz, filter_vert, height);
546   }
547 }
548 
common_hv_2ht_2vt_and_aver_dst_16w_lsx(const uint8_t * src,int32_t src_stride,uint8_t * dst,int32_t dst_stride,int8_t * filter_horiz,int8_t * filter_vert,int32_t height)549 static void common_hv_2ht_2vt_and_aver_dst_16w_lsx(
550     const uint8_t *src, int32_t src_stride, uint8_t *dst, int32_t dst_stride,
551     int8_t *filter_horiz, int8_t *filter_vert, int32_t height) {
552   uint8_t *src_tmp1;
553   uint32_t loop_cnt = (height >> 2);
554   __m128i src0, src1, src2, src3, src4, src5, src6, src7, mask;
555   __m128i filt_hz, filt_vt, vec0, vec1, dst0, dst1, dst2, dst3;
556   __m128i hz_out0, hz_out1, hz_out2, hz_out3, tmp0, tmp1, tmp3;
557 
558   int32_t src_stride2 = src_stride << 1;
559   int32_t src_stride3 = src_stride2 + src_stride;
560   int32_t src_stride4 = src_stride2 << 1;
561 
562   int32_t dst_stride2 = dst_stride << 1;
563   int32_t dst_stride3 = dst_stride2 + dst_stride;
564   int32_t dst_stride4 = dst_stride << 2;
565 
566   mask = __lsx_vld(mc_filt_mask_arr, 0);
567   /* rearranging filter */
568   filt_hz = __lsx_vldrepl_h(filter_horiz, 0);
569   filt_vt = __lsx_vldrepl_h(filter_vert, 0);
570 
571   DUP2_ARG2(__lsx_vld, src, 0, src, 8, src0, src1);
572   src += src_stride;
573 
574   hz_out0 = horiz_2tap_filt_uh(src0, src0, mask, filt_hz);
575   hz_out2 = horiz_2tap_filt_uh(src1, src1, mask, filt_hz);
576 
577   for (; loop_cnt--;) {
578     src0 = __lsx_vld(src, 0);
579     DUP2_ARG2(__lsx_vldx, src, src_stride, src, src_stride2, src2, src4);
580     src6 = __lsx_vldx(src, src_stride3);
581     src_tmp1 = (uint8_t *)(src + 8);
582     src1 = __lsx_vld(src_tmp1, 0);
583     DUP2_ARG2(__lsx_vldx, src_tmp1, src_stride, src_tmp1, src_stride2, src3,
584               src5);
585     src7 = __lsx_vldx(src_tmp1, src_stride3);
586     src += src_stride4;
587     dst0 = __lsx_vld(dst, 0);
588     DUP2_ARG2(__lsx_vldx, dst, dst_stride, dst, dst_stride2, dst1, dst2);
589     dst3 = __lsx_vldx(dst, dst_stride3);
590 
591     hz_out1 = horiz_2tap_filt_uh(src0, src0, mask, filt_hz);
592     hz_out3 = horiz_2tap_filt_uh(src1, src1, mask, filt_hz);
593     DUP2_ARG2(__lsx_vpackev_b, hz_out1, hz_out0, hz_out3, hz_out2, vec0, vec1);
594     DUP2_ARG2(__lsx_vdp2_h_bu, vec0, filt_vt, vec1, filt_vt, tmp0, tmp1);
595     tmp3 = __lsx_vssrarni_bu_h(tmp1, tmp0, FILTER_BITS);
596     tmp3 = __lsx_vavgr_bu(tmp3, dst0);
597     __lsx_vst(tmp3, dst, 0);
598 
599     hz_out0 = horiz_2tap_filt_uh(src2, src2, mask, filt_hz);
600     hz_out2 = horiz_2tap_filt_uh(src3, src3, mask, filt_hz);
601     DUP2_ARG2(__lsx_vpackev_b, hz_out0, hz_out1, hz_out2, hz_out3, vec0, vec1);
602     DUP2_ARG2(__lsx_vdp2_h_bu, vec0, filt_vt, vec1, filt_vt, tmp0, tmp1);
603     tmp3 = __lsx_vssrarni_bu_h(tmp1, tmp0, FILTER_BITS);
604     tmp3 = __lsx_vavgr_bu(tmp3, dst1);
605     __lsx_vstx(tmp3, dst, dst_stride);
606 
607     hz_out1 = horiz_2tap_filt_uh(src4, src4, mask, filt_hz);
608     hz_out3 = horiz_2tap_filt_uh(src5, src5, mask, filt_hz);
609     DUP2_ARG2(__lsx_vpackev_b, hz_out1, hz_out0, hz_out3, hz_out2, vec0, vec1);
610     DUP2_ARG2(__lsx_vdp2_h_bu, vec0, filt_vt, vec1, filt_vt, tmp0, tmp1);
611     tmp3 = __lsx_vssrarni_bu_h(tmp1, tmp0, FILTER_BITS);
612     tmp3 = __lsx_vavgr_bu(tmp3, dst2);
613     __lsx_vstx(tmp3, dst, dst_stride2);
614 
615     hz_out0 = horiz_2tap_filt_uh(src6, src6, mask, filt_hz);
616     hz_out2 = horiz_2tap_filt_uh(src7, src7, mask, filt_hz);
617     DUP2_ARG2(__lsx_vpackev_b, hz_out0, hz_out1, hz_out2, hz_out3, vec0, vec1);
618     DUP2_ARG2(__lsx_vdp2_h_bu, vec0, filt_vt, vec1, filt_vt, tmp0, tmp1);
619     tmp3 = __lsx_vssrarni_bu_h(tmp1, tmp0, FILTER_BITS);
620     tmp3 = __lsx_vavgr_bu(tmp3, dst3);
621     __lsx_vstx(tmp3, dst, dst_stride3);
622     dst += dst_stride4;
623   }
624 }
625 
common_hv_2ht_2vt_and_aver_dst_32w_lsx(const uint8_t * src,int32_t src_stride,uint8_t * dst,int32_t dst_stride,int8_t * filter_horiz,int8_t * filter_vert,int32_t height)626 static void common_hv_2ht_2vt_and_aver_dst_32w_lsx(
627     const uint8_t *src, int32_t src_stride, uint8_t *dst, int32_t dst_stride,
628     int8_t *filter_horiz, int8_t *filter_vert, int32_t height) {
629   common_hv_2ht_2vt_and_aver_dst_16w_lsx(src, src_stride, dst, dst_stride,
630                                          filter_horiz, filter_vert, height);
631   src += 16;
632   dst += 16;
633 
634   common_hv_2ht_2vt_and_aver_dst_16w_lsx(src, src_stride, dst, dst_stride,
635                                          filter_horiz, filter_vert, height);
636 }
637 
common_hv_2ht_2vt_and_aver_dst_64w_lsx(const uint8_t * src,int32_t src_stride,uint8_t * dst,int32_t dst_stride,int8_t * filter_horiz,int8_t * filter_vert,int32_t height)638 static void common_hv_2ht_2vt_and_aver_dst_64w_lsx(
639     const uint8_t *src, int32_t src_stride, uint8_t *dst, int32_t dst_stride,
640     int8_t *filter_horiz, int8_t *filter_vert, int32_t height) {
641   int32_t multiple8_cnt;
642   for (multiple8_cnt = 4; multiple8_cnt--;) {
643     common_hv_2ht_2vt_and_aver_dst_16w_lsx(src, src_stride, dst, dst_stride,
644                                            filter_horiz, filter_vert, height);
645     src += 16;
646     dst += 16;
647   }
648 }
649 
vpx_convolve8_avg_lsx(const uint8_t * src,ptrdiff_t src_stride,uint8_t * dst,ptrdiff_t dst_stride,const InterpKernel * filter,int x0_q4,int x_step_q4,int y0_q4,int y_step_q4,int w,int h)650 void vpx_convolve8_avg_lsx(const uint8_t *src, ptrdiff_t src_stride,
651                            uint8_t *dst, ptrdiff_t dst_stride,
652                            const InterpKernel *filter, int x0_q4, int x_step_q4,
653                            int y0_q4, int y_step_q4, int w, int h) {
654   const int16_t *const filter_x = filter[x0_q4];
655   const int16_t *const filter_y = filter[y0_q4];
656   int8_t cnt, filt_hor[8], filt_ver[8];
657 
658   assert(x_step_q4 == 16);
659   assert(y_step_q4 == 16);
660   assert(((const int32_t *)filter_x)[1] != 0x800000);
661   assert(((const int32_t *)filter_y)[1] != 0x800000);
662 
663   for (cnt = 0; cnt < 8; ++cnt) {
664     filt_hor[cnt] = filter_x[cnt];
665     filt_ver[cnt] = filter_y[cnt];
666   }
667   if (vpx_get_filter_taps(filter_x) == 2 &&
668       vpx_get_filter_taps(filter_y) == 2) {
669     switch (w) {
670       case 4:
671         common_hv_2ht_2vt_and_aver_dst_4w_lsx(src, (int32_t)src_stride, dst,
672                                               (int32_t)dst_stride, &filt_hor[3],
673                                               &filt_ver[3], h);
674         break;
675       case 8:
676         common_hv_2ht_2vt_and_aver_dst_8w_lsx(src, (int32_t)src_stride, dst,
677                                               (int32_t)dst_stride, &filt_hor[3],
678                                               &filt_ver[3], h);
679         break;
680       case 16:
681         common_hv_2ht_2vt_and_aver_dst_16w_lsx(src, (int32_t)src_stride, dst,
682                                                (int32_t)dst_stride,
683                                                &filt_hor[3], &filt_ver[3], h);
684         break;
685       case 32:
686         common_hv_2ht_2vt_and_aver_dst_32w_lsx(src, (int32_t)src_stride, dst,
687                                                (int32_t)dst_stride,
688                                                &filt_hor[3], &filt_ver[3], h);
689         break;
690       case 64:
691         common_hv_2ht_2vt_and_aver_dst_64w_lsx(src, (int32_t)src_stride, dst,
692                                                (int32_t)dst_stride,
693                                                &filt_hor[3], &filt_ver[3], h);
694         break;
695       default:
696         vpx_convolve8_avg_c(src, src_stride, dst, dst_stride, filter, x0_q4,
697                             x_step_q4, y0_q4, y_step_q4, w, h);
698         break;
699     }
700   } else if (vpx_get_filter_taps(filter_x) == 2 ||
701              vpx_get_filter_taps(filter_y) == 2) {
702     vpx_convolve8_avg_c(src, src_stride, dst, dst_stride, filter, x0_q4,
703                         x_step_q4, y0_q4, y_step_q4, w, h);
704   } else {
705     switch (w) {
706       case 4:
707         common_hv_8ht_8vt_and_aver_dst_4w_lsx(src, (int32_t)src_stride, dst,
708                                               (int32_t)dst_stride, filt_hor,
709                                               filt_ver, h);
710         break;
711       case 8:
712         common_hv_8ht_8vt_and_aver_dst_8w_lsx(src, (int32_t)src_stride, dst,
713                                               (int32_t)dst_stride, filt_hor,
714                                               filt_ver, h);
715         break;
716       case 16:
717         common_hv_8ht_8vt_and_aver_dst_16w_lsx(src, (int32_t)src_stride, dst,
718                                                (int32_t)dst_stride, filt_hor,
719                                                filt_ver, h);
720         break;
721       case 32:
722         common_hv_8ht_8vt_and_aver_dst_32w_lsx(src, (int32_t)src_stride, dst,
723                                                (int32_t)dst_stride, filt_hor,
724                                                filt_ver, h);
725         break;
726       case 64:
727         common_hv_8ht_8vt_and_aver_dst_64w_lsx(src, (int32_t)src_stride, dst,
728                                                (int32_t)dst_stride, filt_hor,
729                                                filt_ver, h);
730         break;
731       default:
732         vpx_convolve8_avg_c(src, src_stride, dst, dst_stride, filter, x0_q4,
733                             x_step_q4, y0_q4, y_step_q4, w, h);
734         break;
735     }
736   }
737 }
738