1*b2055c35SXin Li // Copyright 2022 Google Inc. All Rights Reserved.
2*b2055c35SXin Li //
3*b2055c35SXin Li // Use of this source code is governed by a BSD-style license
4*b2055c35SXin Li // that can be found in the COPYING file in the root of the source
5*b2055c35SXin Li // tree. An additional intellectual property rights grant can be found
6*b2055c35SXin Li // in the file PATENTS. All contributing project authors may
7*b2055c35SXin Li // be found in the AUTHORS file in the root of the source tree.
8*b2055c35SXin Li // -----------------------------------------------------------------------------
9*b2055c35SXin Li //
10*b2055c35SXin Li // Speed-critical functions for Sharp YUV.
11*b2055c35SXin Li //
12*b2055c35SXin Li // Author: Skal ([email protected])
13*b2055c35SXin Li
14*b2055c35SXin Li #include "sharpyuv/sharpyuv_dsp.h"
15*b2055c35SXin Li
16*b2055c35SXin Li #if defined(WEBP_USE_SSE2)
17*b2055c35SXin Li #include <stdlib.h>
18*b2055c35SXin Li #include <emmintrin.h>
19*b2055c35SXin Li
clip_SSE2(int v,int max)20*b2055c35SXin Li static uint16_t clip_SSE2(int v, int max) {
21*b2055c35SXin Li return (v < 0) ? 0 : (v > max) ? max : (uint16_t)v;
22*b2055c35SXin Li }
23*b2055c35SXin Li
SharpYuvUpdateY_SSE2(const uint16_t * ref,const uint16_t * src,uint16_t * dst,int len,int bit_depth)24*b2055c35SXin Li static uint64_t SharpYuvUpdateY_SSE2(const uint16_t* ref, const uint16_t* src,
25*b2055c35SXin Li uint16_t* dst, int len, int bit_depth) {
26*b2055c35SXin Li const int max_y = (1 << bit_depth) - 1;
27*b2055c35SXin Li uint64_t diff = 0;
28*b2055c35SXin Li uint32_t tmp[4];
29*b2055c35SXin Li int i;
30*b2055c35SXin Li const __m128i zero = _mm_setzero_si128();
31*b2055c35SXin Li const __m128i max = _mm_set1_epi16(max_y);
32*b2055c35SXin Li const __m128i one = _mm_set1_epi16(1);
33*b2055c35SXin Li __m128i sum = zero;
34*b2055c35SXin Li
35*b2055c35SXin Li for (i = 0; i + 8 <= len; i += 8) {
36*b2055c35SXin Li const __m128i A = _mm_loadu_si128((const __m128i*)(ref + i));
37*b2055c35SXin Li const __m128i B = _mm_loadu_si128((const __m128i*)(src + i));
38*b2055c35SXin Li const __m128i C = _mm_loadu_si128((const __m128i*)(dst + i));
39*b2055c35SXin Li const __m128i D = _mm_sub_epi16(A, B); // diff_y
40*b2055c35SXin Li const __m128i E = _mm_cmpgt_epi16(zero, D); // sign (-1 or 0)
41*b2055c35SXin Li const __m128i F = _mm_add_epi16(C, D); // new_y
42*b2055c35SXin Li const __m128i G = _mm_or_si128(E, one); // -1 or 1
43*b2055c35SXin Li const __m128i H = _mm_max_epi16(_mm_min_epi16(F, max), zero);
44*b2055c35SXin Li const __m128i I = _mm_madd_epi16(D, G); // sum(abs(...))
45*b2055c35SXin Li _mm_storeu_si128((__m128i*)(dst + i), H);
46*b2055c35SXin Li sum = _mm_add_epi32(sum, I);
47*b2055c35SXin Li }
48*b2055c35SXin Li _mm_storeu_si128((__m128i*)tmp, sum);
49*b2055c35SXin Li diff = tmp[3] + tmp[2] + tmp[1] + tmp[0];
50*b2055c35SXin Li for (; i < len; ++i) {
51*b2055c35SXin Li const int diff_y = ref[i] - src[i];
52*b2055c35SXin Li const int new_y = (int)dst[i] + diff_y;
53*b2055c35SXin Li dst[i] = clip_SSE2(new_y, max_y);
54*b2055c35SXin Li diff += (uint64_t)abs(diff_y);
55*b2055c35SXin Li }
56*b2055c35SXin Li return diff;
57*b2055c35SXin Li }
58*b2055c35SXin Li
SharpYuvUpdateRGB_SSE2(const int16_t * ref,const int16_t * src,int16_t * dst,int len)59*b2055c35SXin Li static void SharpYuvUpdateRGB_SSE2(const int16_t* ref, const int16_t* src,
60*b2055c35SXin Li int16_t* dst, int len) {
61*b2055c35SXin Li int i = 0;
62*b2055c35SXin Li for (i = 0; i + 8 <= len; i += 8) {
63*b2055c35SXin Li const __m128i A = _mm_loadu_si128((const __m128i*)(ref + i));
64*b2055c35SXin Li const __m128i B = _mm_loadu_si128((const __m128i*)(src + i));
65*b2055c35SXin Li const __m128i C = _mm_loadu_si128((const __m128i*)(dst + i));
66*b2055c35SXin Li const __m128i D = _mm_sub_epi16(A, B); // diff_uv
67*b2055c35SXin Li const __m128i E = _mm_add_epi16(C, D); // new_uv
68*b2055c35SXin Li _mm_storeu_si128((__m128i*)(dst + i), E);
69*b2055c35SXin Li }
70*b2055c35SXin Li for (; i < len; ++i) {
71*b2055c35SXin Li const int diff_uv = ref[i] - src[i];
72*b2055c35SXin Li dst[i] += diff_uv;
73*b2055c35SXin Li }
74*b2055c35SXin Li }
75*b2055c35SXin Li
SharpYuvFilterRow16_SSE2(const int16_t * A,const int16_t * B,int len,const uint16_t * best_y,uint16_t * out,int bit_depth)76*b2055c35SXin Li static void SharpYuvFilterRow16_SSE2(const int16_t* A, const int16_t* B,
77*b2055c35SXin Li int len, const uint16_t* best_y,
78*b2055c35SXin Li uint16_t* out, int bit_depth) {
79*b2055c35SXin Li const int max_y = (1 << bit_depth) - 1;
80*b2055c35SXin Li int i;
81*b2055c35SXin Li const __m128i kCst8 = _mm_set1_epi16(8);
82*b2055c35SXin Li const __m128i max = _mm_set1_epi16(max_y);
83*b2055c35SXin Li const __m128i zero = _mm_setzero_si128();
84*b2055c35SXin Li for (i = 0; i + 8 <= len; i += 8) {
85*b2055c35SXin Li const __m128i a0 = _mm_loadu_si128((const __m128i*)(A + i + 0));
86*b2055c35SXin Li const __m128i a1 = _mm_loadu_si128((const __m128i*)(A + i + 1));
87*b2055c35SXin Li const __m128i b0 = _mm_loadu_si128((const __m128i*)(B + i + 0));
88*b2055c35SXin Li const __m128i b1 = _mm_loadu_si128((const __m128i*)(B + i + 1));
89*b2055c35SXin Li const __m128i a0b1 = _mm_add_epi16(a0, b1);
90*b2055c35SXin Li const __m128i a1b0 = _mm_add_epi16(a1, b0);
91*b2055c35SXin Li const __m128i a0a1b0b1 = _mm_add_epi16(a0b1, a1b0); // A0+A1+B0+B1
92*b2055c35SXin Li const __m128i a0a1b0b1_8 = _mm_add_epi16(a0a1b0b1, kCst8);
93*b2055c35SXin Li const __m128i a0b1_2 = _mm_add_epi16(a0b1, a0b1); // 2*(A0+B1)
94*b2055c35SXin Li const __m128i a1b0_2 = _mm_add_epi16(a1b0, a1b0); // 2*(A1+B0)
95*b2055c35SXin Li const __m128i c0 = _mm_srai_epi16(_mm_add_epi16(a0b1_2, a0a1b0b1_8), 3);
96*b2055c35SXin Li const __m128i c1 = _mm_srai_epi16(_mm_add_epi16(a1b0_2, a0a1b0b1_8), 3);
97*b2055c35SXin Li const __m128i d0 = _mm_add_epi16(c1, a0);
98*b2055c35SXin Li const __m128i d1 = _mm_add_epi16(c0, a1);
99*b2055c35SXin Li const __m128i e0 = _mm_srai_epi16(d0, 1);
100*b2055c35SXin Li const __m128i e1 = _mm_srai_epi16(d1, 1);
101*b2055c35SXin Li const __m128i f0 = _mm_unpacklo_epi16(e0, e1);
102*b2055c35SXin Li const __m128i f1 = _mm_unpackhi_epi16(e0, e1);
103*b2055c35SXin Li const __m128i g0 = _mm_loadu_si128((const __m128i*)(best_y + 2 * i + 0));
104*b2055c35SXin Li const __m128i g1 = _mm_loadu_si128((const __m128i*)(best_y + 2 * i + 8));
105*b2055c35SXin Li const __m128i h0 = _mm_add_epi16(g0, f0);
106*b2055c35SXin Li const __m128i h1 = _mm_add_epi16(g1, f1);
107*b2055c35SXin Li const __m128i i0 = _mm_max_epi16(_mm_min_epi16(h0, max), zero);
108*b2055c35SXin Li const __m128i i1 = _mm_max_epi16(_mm_min_epi16(h1, max), zero);
109*b2055c35SXin Li _mm_storeu_si128((__m128i*)(out + 2 * i + 0), i0);
110*b2055c35SXin Li _mm_storeu_si128((__m128i*)(out + 2 * i + 8), i1);
111*b2055c35SXin Li }
112*b2055c35SXin Li for (; i < len; ++i) {
113*b2055c35SXin Li // (9 * A0 + 3 * A1 + 3 * B0 + B1 + 8) >> 4 =
114*b2055c35SXin Li // = (8 * A0 + 2 * (A1 + B0) + (A0 + A1 + B0 + B1 + 8)) >> 4
115*b2055c35SXin Li // We reuse the common sub-expressions.
116*b2055c35SXin Li const int a0b1 = A[i + 0] + B[i + 1];
117*b2055c35SXin Li const int a1b0 = A[i + 1] + B[i + 0];
118*b2055c35SXin Li const int a0a1b0b1 = a0b1 + a1b0 + 8;
119*b2055c35SXin Li const int v0 = (8 * A[i + 0] + 2 * a1b0 + a0a1b0b1) >> 4;
120*b2055c35SXin Li const int v1 = (8 * A[i + 1] + 2 * a0b1 + a0a1b0b1) >> 4;
121*b2055c35SXin Li out[2 * i + 0] = clip_SSE2(best_y[2 * i + 0] + v0, max_y);
122*b2055c35SXin Li out[2 * i + 1] = clip_SSE2(best_y[2 * i + 1] + v1, max_y);
123*b2055c35SXin Li }
124*b2055c35SXin Li }
125*b2055c35SXin Li
s16_to_s32(__m128i in)126*b2055c35SXin Li static WEBP_INLINE __m128i s16_to_s32(__m128i in) {
127*b2055c35SXin Li return _mm_srai_epi32(_mm_unpacklo_epi16(in, in), 16);
128*b2055c35SXin Li }
129*b2055c35SXin Li
SharpYuvFilterRow32_SSE2(const int16_t * A,const int16_t * B,int len,const uint16_t * best_y,uint16_t * out,int bit_depth)130*b2055c35SXin Li static void SharpYuvFilterRow32_SSE2(const int16_t* A, const int16_t* B,
131*b2055c35SXin Li int len, const uint16_t* best_y,
132*b2055c35SXin Li uint16_t* out, int bit_depth) {
133*b2055c35SXin Li const int max_y = (1 << bit_depth) - 1;
134*b2055c35SXin Li int i;
135*b2055c35SXin Li const __m128i kCst8 = _mm_set1_epi32(8);
136*b2055c35SXin Li const __m128i max = _mm_set1_epi16(max_y);
137*b2055c35SXin Li const __m128i zero = _mm_setzero_si128();
138*b2055c35SXin Li for (i = 0; i + 4 <= len; i += 4) {
139*b2055c35SXin Li const __m128i a0 = s16_to_s32(_mm_loadl_epi64((const __m128i*)(A + i + 0)));
140*b2055c35SXin Li const __m128i a1 = s16_to_s32(_mm_loadl_epi64((const __m128i*)(A + i + 1)));
141*b2055c35SXin Li const __m128i b0 = s16_to_s32(_mm_loadl_epi64((const __m128i*)(B + i + 0)));
142*b2055c35SXin Li const __m128i b1 = s16_to_s32(_mm_loadl_epi64((const __m128i*)(B + i + 1)));
143*b2055c35SXin Li const __m128i a0b1 = _mm_add_epi32(a0, b1);
144*b2055c35SXin Li const __m128i a1b0 = _mm_add_epi32(a1, b0);
145*b2055c35SXin Li const __m128i a0a1b0b1 = _mm_add_epi32(a0b1, a1b0); // A0+A1+B0+B1
146*b2055c35SXin Li const __m128i a0a1b0b1_8 = _mm_add_epi32(a0a1b0b1, kCst8);
147*b2055c35SXin Li const __m128i a0b1_2 = _mm_add_epi32(a0b1, a0b1); // 2*(A0+B1)
148*b2055c35SXin Li const __m128i a1b0_2 = _mm_add_epi32(a1b0, a1b0); // 2*(A1+B0)
149*b2055c35SXin Li const __m128i c0 = _mm_srai_epi32(_mm_add_epi32(a0b1_2, a0a1b0b1_8), 3);
150*b2055c35SXin Li const __m128i c1 = _mm_srai_epi32(_mm_add_epi32(a1b0_2, a0a1b0b1_8), 3);
151*b2055c35SXin Li const __m128i d0 = _mm_add_epi32(c1, a0);
152*b2055c35SXin Li const __m128i d1 = _mm_add_epi32(c0, a1);
153*b2055c35SXin Li const __m128i e0 = _mm_srai_epi32(d0, 1);
154*b2055c35SXin Li const __m128i e1 = _mm_srai_epi32(d1, 1);
155*b2055c35SXin Li const __m128i f0 = _mm_unpacklo_epi32(e0, e1);
156*b2055c35SXin Li const __m128i f1 = _mm_unpackhi_epi32(e0, e1);
157*b2055c35SXin Li const __m128i g = _mm_loadu_si128((const __m128i*)(best_y + 2 * i + 0));
158*b2055c35SXin Li const __m128i h_16 = _mm_add_epi16(g, _mm_packs_epi32(f0, f1));
159*b2055c35SXin Li const __m128i final = _mm_max_epi16(_mm_min_epi16(h_16, max), zero);
160*b2055c35SXin Li _mm_storeu_si128((__m128i*)(out + 2 * i + 0), final);
161*b2055c35SXin Li }
162*b2055c35SXin Li for (; i < len; ++i) {
163*b2055c35SXin Li // (9 * A0 + 3 * A1 + 3 * B0 + B1 + 8) >> 4 =
164*b2055c35SXin Li // = (8 * A0 + 2 * (A1 + B0) + (A0 + A1 + B0 + B1 + 8)) >> 4
165*b2055c35SXin Li // We reuse the common sub-expressions.
166*b2055c35SXin Li const int a0b1 = A[i + 0] + B[i + 1];
167*b2055c35SXin Li const int a1b0 = A[i + 1] + B[i + 0];
168*b2055c35SXin Li const int a0a1b0b1 = a0b1 + a1b0 + 8;
169*b2055c35SXin Li const int v0 = (8 * A[i + 0] + 2 * a1b0 + a0a1b0b1) >> 4;
170*b2055c35SXin Li const int v1 = (8 * A[i + 1] + 2 * a0b1 + a0a1b0b1) >> 4;
171*b2055c35SXin Li out[2 * i + 0] = clip_SSE2(best_y[2 * i + 0] + v0, max_y);
172*b2055c35SXin Li out[2 * i + 1] = clip_SSE2(best_y[2 * i + 1] + v1, max_y);
173*b2055c35SXin Li }
174*b2055c35SXin Li }
175*b2055c35SXin Li
SharpYuvFilterRow_SSE2(const int16_t * A,const int16_t * B,int len,const uint16_t * best_y,uint16_t * out,int bit_depth)176*b2055c35SXin Li static void SharpYuvFilterRow_SSE2(const int16_t* A, const int16_t* B, int len,
177*b2055c35SXin Li const uint16_t* best_y, uint16_t* out,
178*b2055c35SXin Li int bit_depth) {
179*b2055c35SXin Li if (bit_depth <= 10) {
180*b2055c35SXin Li SharpYuvFilterRow16_SSE2(A, B, len, best_y, out, bit_depth);
181*b2055c35SXin Li } else {
182*b2055c35SXin Li SharpYuvFilterRow32_SSE2(A, B, len, best_y, out, bit_depth);
183*b2055c35SXin Li }
184*b2055c35SXin Li }
185*b2055c35SXin Li
186*b2055c35SXin Li //------------------------------------------------------------------------------
187*b2055c35SXin Li
188*b2055c35SXin Li extern void InitSharpYuvSSE2(void);
189*b2055c35SXin Li
InitSharpYuvSSE2(void)190*b2055c35SXin Li WEBP_TSAN_IGNORE_FUNCTION void InitSharpYuvSSE2(void) {
191*b2055c35SXin Li SharpYuvUpdateY = SharpYuvUpdateY_SSE2;
192*b2055c35SXin Li SharpYuvUpdateRGB = SharpYuvUpdateRGB_SSE2;
193*b2055c35SXin Li SharpYuvFilterRow = SharpYuvFilterRow_SSE2;
194*b2055c35SXin Li }
195*b2055c35SXin Li #else // !WEBP_USE_SSE2
196*b2055c35SXin Li
197*b2055c35SXin Li extern void InitSharpYuvSSE2(void);
198*b2055c35SXin Li
InitSharpYuvSSE2(void)199*b2055c35SXin Li void InitSharpYuvSSE2(void) {}
200*b2055c35SXin Li
201*b2055c35SXin Li #endif // WEBP_USE_SSE2
202