xref: /aosp_15_r20/external/webp/src/dsp/yuv_sse41.c (revision b2055c353e87c8814eb2b6b1b11112a1562253bd)
1*b2055c35SXin Li // Copyright 2014 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 // YUV->RGB conversion functions
11*b2055c35SXin Li //
12*b2055c35SXin Li // Author: Skal ([email protected])
13*b2055c35SXin Li 
14*b2055c35SXin Li #include "src/dsp/yuv.h"
15*b2055c35SXin Li 
16*b2055c35SXin Li #if defined(WEBP_USE_SSE41)
17*b2055c35SXin Li 
18*b2055c35SXin Li #include <stdlib.h>
19*b2055c35SXin Li #include <smmintrin.h>
20*b2055c35SXin Li 
21*b2055c35SXin Li #include "src/dsp/common_sse41.h"
22*b2055c35SXin Li #include "src/utils/utils.h"
23*b2055c35SXin Li 
24*b2055c35SXin Li //-----------------------------------------------------------------------------
25*b2055c35SXin Li // Convert spans of 32 pixels to various RGB formats for the fancy upsampler.
26*b2055c35SXin Li 
27*b2055c35SXin Li // These constants are 14b fixed-point version of ITU-R BT.601 constants.
28*b2055c35SXin Li // R = (19077 * y             + 26149 * v - 14234) >> 6
29*b2055c35SXin Li // G = (19077 * y -  6419 * u - 13320 * v +  8708) >> 6
30*b2055c35SXin Li // B = (19077 * y + 33050 * u             - 17685) >> 6
ConvertYUV444ToRGB_SSE41(const __m128i * const Y0,const __m128i * const U0,const __m128i * const V0,__m128i * const R,__m128i * const G,__m128i * const B)31*b2055c35SXin Li static void ConvertYUV444ToRGB_SSE41(const __m128i* const Y0,
32*b2055c35SXin Li                                      const __m128i* const U0,
33*b2055c35SXin Li                                      const __m128i* const V0,
34*b2055c35SXin Li                                      __m128i* const R,
35*b2055c35SXin Li                                      __m128i* const G,
36*b2055c35SXin Li                                      __m128i* const B) {
37*b2055c35SXin Li   const __m128i k19077 = _mm_set1_epi16(19077);
38*b2055c35SXin Li   const __m128i k26149 = _mm_set1_epi16(26149);
39*b2055c35SXin Li   const __m128i k14234 = _mm_set1_epi16(14234);
40*b2055c35SXin Li   // 33050 doesn't fit in a signed short: only use this with unsigned arithmetic
41*b2055c35SXin Li   const __m128i k33050 = _mm_set1_epi16((short)33050);
42*b2055c35SXin Li   const __m128i k17685 = _mm_set1_epi16(17685);
43*b2055c35SXin Li   const __m128i k6419  = _mm_set1_epi16(6419);
44*b2055c35SXin Li   const __m128i k13320 = _mm_set1_epi16(13320);
45*b2055c35SXin Li   const __m128i k8708  = _mm_set1_epi16(8708);
46*b2055c35SXin Li 
47*b2055c35SXin Li   const __m128i Y1 = _mm_mulhi_epu16(*Y0, k19077);
48*b2055c35SXin Li 
49*b2055c35SXin Li   const __m128i R0 = _mm_mulhi_epu16(*V0, k26149);
50*b2055c35SXin Li   const __m128i R1 = _mm_sub_epi16(Y1, k14234);
51*b2055c35SXin Li   const __m128i R2 = _mm_add_epi16(R1, R0);
52*b2055c35SXin Li 
53*b2055c35SXin Li   const __m128i G0 = _mm_mulhi_epu16(*U0, k6419);
54*b2055c35SXin Li   const __m128i G1 = _mm_mulhi_epu16(*V0, k13320);
55*b2055c35SXin Li   const __m128i G2 = _mm_add_epi16(Y1, k8708);
56*b2055c35SXin Li   const __m128i G3 = _mm_add_epi16(G0, G1);
57*b2055c35SXin Li   const __m128i G4 = _mm_sub_epi16(G2, G3);
58*b2055c35SXin Li 
59*b2055c35SXin Li   // be careful with the saturated *unsigned* arithmetic here!
60*b2055c35SXin Li   const __m128i B0 = _mm_mulhi_epu16(*U0, k33050);
61*b2055c35SXin Li   const __m128i B1 = _mm_adds_epu16(B0, Y1);
62*b2055c35SXin Li   const __m128i B2 = _mm_subs_epu16(B1, k17685);
63*b2055c35SXin Li 
64*b2055c35SXin Li   // use logical shift for B2, which can be larger than 32767
65*b2055c35SXin Li   *R = _mm_srai_epi16(R2, 6);   // range: [-14234, 30815]
66*b2055c35SXin Li   *G = _mm_srai_epi16(G4, 6);   // range: [-10953, 27710]
67*b2055c35SXin Li   *B = _mm_srli_epi16(B2, 6);   // range: [0, 34238]
68*b2055c35SXin Li }
69*b2055c35SXin Li 
70*b2055c35SXin Li // Load the bytes into the *upper* part of 16b words. That's "<< 8", basically.
Load_HI_16_SSE41(const uint8_t * src)71*b2055c35SXin Li static WEBP_INLINE __m128i Load_HI_16_SSE41(const uint8_t* src) {
72*b2055c35SXin Li   const __m128i zero = _mm_setzero_si128();
73*b2055c35SXin Li   return _mm_unpacklo_epi8(zero, _mm_loadl_epi64((const __m128i*)src));
74*b2055c35SXin Li }
75*b2055c35SXin Li 
76*b2055c35SXin Li // Load and replicate the U/V samples
Load_UV_HI_8_SSE41(const uint8_t * src)77*b2055c35SXin Li static WEBP_INLINE __m128i Load_UV_HI_8_SSE41(const uint8_t* src) {
78*b2055c35SXin Li   const __m128i zero = _mm_setzero_si128();
79*b2055c35SXin Li   const __m128i tmp0 = _mm_cvtsi32_si128(WebPMemToInt32(src));
80*b2055c35SXin Li   const __m128i tmp1 = _mm_unpacklo_epi8(zero, tmp0);
81*b2055c35SXin Li   return _mm_unpacklo_epi16(tmp1, tmp1);   // replicate samples
82*b2055c35SXin Li }
83*b2055c35SXin Li 
84*b2055c35SXin Li // Convert 32 samples of YUV444 to R/G/B
YUV444ToRGB_SSE41(const uint8_t * const y,const uint8_t * const u,const uint8_t * const v,__m128i * const R,__m128i * const G,__m128i * const B)85*b2055c35SXin Li static void YUV444ToRGB_SSE41(const uint8_t* const y,
86*b2055c35SXin Li                               const uint8_t* const u,
87*b2055c35SXin Li                               const uint8_t* const v,
88*b2055c35SXin Li                               __m128i* const R, __m128i* const G,
89*b2055c35SXin Li                               __m128i* const B) {
90*b2055c35SXin Li   const __m128i Y0 = Load_HI_16_SSE41(y), U0 = Load_HI_16_SSE41(u),
91*b2055c35SXin Li                 V0 = Load_HI_16_SSE41(v);
92*b2055c35SXin Li   ConvertYUV444ToRGB_SSE41(&Y0, &U0, &V0, R, G, B);
93*b2055c35SXin Li }
94*b2055c35SXin Li 
95*b2055c35SXin Li // Convert 32 samples of YUV420 to R/G/B
YUV420ToRGB_SSE41(const uint8_t * const y,const uint8_t * const u,const uint8_t * const v,__m128i * const R,__m128i * const G,__m128i * const B)96*b2055c35SXin Li static void YUV420ToRGB_SSE41(const uint8_t* const y,
97*b2055c35SXin Li                               const uint8_t* const u,
98*b2055c35SXin Li                               const uint8_t* const v,
99*b2055c35SXin Li                               __m128i* const R, __m128i* const G,
100*b2055c35SXin Li                               __m128i* const B) {
101*b2055c35SXin Li   const __m128i Y0 = Load_HI_16_SSE41(y), U0 = Load_UV_HI_8_SSE41(u),
102*b2055c35SXin Li                 V0 = Load_UV_HI_8_SSE41(v);
103*b2055c35SXin Li   ConvertYUV444ToRGB_SSE41(&Y0, &U0, &V0, R, G, B);
104*b2055c35SXin Li }
105*b2055c35SXin Li 
106*b2055c35SXin Li // Pack the planar buffers
107*b2055c35SXin Li // rrrr... rrrr... gggg... gggg... bbbb... bbbb....
108*b2055c35SXin Li // triplet by triplet in the output buffer rgb as rgbrgbrgbrgb ...
PlanarTo24b_SSE41(__m128i * const in0,__m128i * const in1,__m128i * const in2,__m128i * const in3,__m128i * const in4,__m128i * const in5,uint8_t * const rgb)109*b2055c35SXin Li static WEBP_INLINE void PlanarTo24b_SSE41(
110*b2055c35SXin Li     __m128i* const in0, __m128i* const in1, __m128i* const in2,
111*b2055c35SXin Li     __m128i* const in3, __m128i* const in4, __m128i* const in5,
112*b2055c35SXin Li     uint8_t* const rgb) {
113*b2055c35SXin Li   // The input is 6 registers of sixteen 8b but for the sake of explanation,
114*b2055c35SXin Li   // let's take 6 registers of four 8b values.
115*b2055c35SXin Li   // To pack, we will keep taking one every two 8b integer and move it
116*b2055c35SXin Li   // around as follows:
117*b2055c35SXin Li   // Input:
118*b2055c35SXin Li   //   r0r1r2r3 | r4r5r6r7 | g0g1g2g3 | g4g5g6g7 | b0b1b2b3 | b4b5b6b7
119*b2055c35SXin Li   // Split the 6 registers in two sets of 3 registers: the first set as the even
120*b2055c35SXin Li   // 8b bytes, the second the odd ones:
121*b2055c35SXin Li   //   r0r2r4r6 | g0g2g4g6 | b0b2b4b6 | r1r3r5r7 | g1g3g5g7 | b1b3b5b7
122*b2055c35SXin Li   // Repeat the same permutations twice more:
123*b2055c35SXin Li   //   r0r4g0g4 | b0b4r1r5 | g1g5b1b5 | r2r6g2g6 | b2b6r3r7 | g3g7b3b7
124*b2055c35SXin Li   //   r0g0b0r1 | g1b1r2g2 | b2r3g3b3 | r4g4b4r5 | g5b5r6g6 | b6r7g7b7
125*b2055c35SXin Li   VP8PlanarTo24b_SSE41(in0, in1, in2, in3, in4, in5);
126*b2055c35SXin Li 
127*b2055c35SXin Li   _mm_storeu_si128((__m128i*)(rgb +  0), *in0);
128*b2055c35SXin Li   _mm_storeu_si128((__m128i*)(rgb + 16), *in1);
129*b2055c35SXin Li   _mm_storeu_si128((__m128i*)(rgb + 32), *in2);
130*b2055c35SXin Li   _mm_storeu_si128((__m128i*)(rgb + 48), *in3);
131*b2055c35SXin Li   _mm_storeu_si128((__m128i*)(rgb + 64), *in4);
132*b2055c35SXin Li   _mm_storeu_si128((__m128i*)(rgb + 80), *in5);
133*b2055c35SXin Li }
134*b2055c35SXin Li 
VP8YuvToRgb32_SSE41(const uint8_t * y,const uint8_t * u,const uint8_t * v,uint8_t * dst)135*b2055c35SXin Li void VP8YuvToRgb32_SSE41(const uint8_t* y, const uint8_t* u, const uint8_t* v,
136*b2055c35SXin Li                          uint8_t* dst) {
137*b2055c35SXin Li   __m128i R0, R1, R2, R3, G0, G1, G2, G3, B0, B1, B2, B3;
138*b2055c35SXin Li   __m128i rgb0, rgb1, rgb2, rgb3, rgb4, rgb5;
139*b2055c35SXin Li 
140*b2055c35SXin Li   YUV444ToRGB_SSE41(y + 0, u + 0, v + 0, &R0, &G0, &B0);
141*b2055c35SXin Li   YUV444ToRGB_SSE41(y + 8, u + 8, v + 8, &R1, &G1, &B1);
142*b2055c35SXin Li   YUV444ToRGB_SSE41(y + 16, u + 16, v + 16, &R2, &G2, &B2);
143*b2055c35SXin Li   YUV444ToRGB_SSE41(y + 24, u + 24, v + 24, &R3, &G3, &B3);
144*b2055c35SXin Li 
145*b2055c35SXin Li   // Cast to 8b and store as RRRRGGGGBBBB.
146*b2055c35SXin Li   rgb0 = _mm_packus_epi16(R0, R1);
147*b2055c35SXin Li   rgb1 = _mm_packus_epi16(R2, R3);
148*b2055c35SXin Li   rgb2 = _mm_packus_epi16(G0, G1);
149*b2055c35SXin Li   rgb3 = _mm_packus_epi16(G2, G3);
150*b2055c35SXin Li   rgb4 = _mm_packus_epi16(B0, B1);
151*b2055c35SXin Li   rgb5 = _mm_packus_epi16(B2, B3);
152*b2055c35SXin Li 
153*b2055c35SXin Li   // Pack as RGBRGBRGBRGB.
154*b2055c35SXin Li   PlanarTo24b_SSE41(&rgb0, &rgb1, &rgb2, &rgb3, &rgb4, &rgb5, dst);
155*b2055c35SXin Li }
156*b2055c35SXin Li 
VP8YuvToBgr32_SSE41(const uint8_t * y,const uint8_t * u,const uint8_t * v,uint8_t * dst)157*b2055c35SXin Li void VP8YuvToBgr32_SSE41(const uint8_t* y, const uint8_t* u, const uint8_t* v,
158*b2055c35SXin Li                          uint8_t* dst) {
159*b2055c35SXin Li   __m128i R0, R1, R2, R3, G0, G1, G2, G3, B0, B1, B2, B3;
160*b2055c35SXin Li   __m128i bgr0, bgr1, bgr2, bgr3, bgr4, bgr5;
161*b2055c35SXin Li 
162*b2055c35SXin Li   YUV444ToRGB_SSE41(y +  0, u +  0, v +  0, &R0, &G0, &B0);
163*b2055c35SXin Li   YUV444ToRGB_SSE41(y +  8, u +  8, v +  8, &R1, &G1, &B1);
164*b2055c35SXin Li   YUV444ToRGB_SSE41(y + 16, u + 16, v + 16, &R2, &G2, &B2);
165*b2055c35SXin Li   YUV444ToRGB_SSE41(y + 24, u + 24, v + 24, &R3, &G3, &B3);
166*b2055c35SXin Li 
167*b2055c35SXin Li   // Cast to 8b and store as BBBBGGGGRRRR.
168*b2055c35SXin Li   bgr0 = _mm_packus_epi16(B0, B1);
169*b2055c35SXin Li   bgr1 = _mm_packus_epi16(B2, B3);
170*b2055c35SXin Li   bgr2 = _mm_packus_epi16(G0, G1);
171*b2055c35SXin Li   bgr3 = _mm_packus_epi16(G2, G3);
172*b2055c35SXin Li   bgr4 = _mm_packus_epi16(R0, R1);
173*b2055c35SXin Li   bgr5= _mm_packus_epi16(R2, R3);
174*b2055c35SXin Li 
175*b2055c35SXin Li   // Pack as BGRBGRBGRBGR.
176*b2055c35SXin Li   PlanarTo24b_SSE41(&bgr0, &bgr1, &bgr2, &bgr3, &bgr4, &bgr5, dst);
177*b2055c35SXin Li }
178*b2055c35SXin Li 
179*b2055c35SXin Li //-----------------------------------------------------------------------------
180*b2055c35SXin Li // Arbitrary-length row conversion functions
181*b2055c35SXin Li 
YuvToRgbRow_SSE41(const uint8_t * y,const uint8_t * u,const uint8_t * v,uint8_t * dst,int len)182*b2055c35SXin Li static void YuvToRgbRow_SSE41(const uint8_t* y,
183*b2055c35SXin Li                               const uint8_t* u, const uint8_t* v,
184*b2055c35SXin Li                               uint8_t* dst, int len) {
185*b2055c35SXin Li   int n;
186*b2055c35SXin Li   for (n = 0; n + 32 <= len; n += 32, dst += 32 * 3) {
187*b2055c35SXin Li     __m128i R0, R1, R2, R3, G0, G1, G2, G3, B0, B1, B2, B3;
188*b2055c35SXin Li     __m128i rgb0, rgb1, rgb2, rgb3, rgb4, rgb5;
189*b2055c35SXin Li 
190*b2055c35SXin Li     YUV420ToRGB_SSE41(y +  0, u +  0, v +  0, &R0, &G0, &B0);
191*b2055c35SXin Li     YUV420ToRGB_SSE41(y +  8, u +  4, v +  4, &R1, &G1, &B1);
192*b2055c35SXin Li     YUV420ToRGB_SSE41(y + 16, u +  8, v +  8, &R2, &G2, &B2);
193*b2055c35SXin Li     YUV420ToRGB_SSE41(y + 24, u + 12, v + 12, &R3, &G3, &B3);
194*b2055c35SXin Li 
195*b2055c35SXin Li     // Cast to 8b and store as RRRRGGGGBBBB.
196*b2055c35SXin Li     rgb0 = _mm_packus_epi16(R0, R1);
197*b2055c35SXin Li     rgb1 = _mm_packus_epi16(R2, R3);
198*b2055c35SXin Li     rgb2 = _mm_packus_epi16(G0, G1);
199*b2055c35SXin Li     rgb3 = _mm_packus_epi16(G2, G3);
200*b2055c35SXin Li     rgb4 = _mm_packus_epi16(B0, B1);
201*b2055c35SXin Li     rgb5 = _mm_packus_epi16(B2, B3);
202*b2055c35SXin Li 
203*b2055c35SXin Li     // Pack as RGBRGBRGBRGB.
204*b2055c35SXin Li     PlanarTo24b_SSE41(&rgb0, &rgb1, &rgb2, &rgb3, &rgb4, &rgb5, dst);
205*b2055c35SXin Li 
206*b2055c35SXin Li     y += 32;
207*b2055c35SXin Li     u += 16;
208*b2055c35SXin Li     v += 16;
209*b2055c35SXin Li   }
210*b2055c35SXin Li   for (; n < len; ++n) {   // Finish off
211*b2055c35SXin Li     VP8YuvToRgb(y[0], u[0], v[0], dst);
212*b2055c35SXin Li     dst += 3;
213*b2055c35SXin Li     y += 1;
214*b2055c35SXin Li     u += (n & 1);
215*b2055c35SXin Li     v += (n & 1);
216*b2055c35SXin Li   }
217*b2055c35SXin Li }
218*b2055c35SXin Li 
YuvToBgrRow_SSE41(const uint8_t * y,const uint8_t * u,const uint8_t * v,uint8_t * dst,int len)219*b2055c35SXin Li static void YuvToBgrRow_SSE41(const uint8_t* y,
220*b2055c35SXin Li                               const uint8_t* u, const uint8_t* v,
221*b2055c35SXin Li                               uint8_t* dst, int len) {
222*b2055c35SXin Li   int n;
223*b2055c35SXin Li   for (n = 0; n + 32 <= len; n += 32, dst += 32 * 3) {
224*b2055c35SXin Li     __m128i R0, R1, R2, R3, G0, G1, G2, G3, B0, B1, B2, B3;
225*b2055c35SXin Li     __m128i bgr0, bgr1, bgr2, bgr3, bgr4, bgr5;
226*b2055c35SXin Li 
227*b2055c35SXin Li     YUV420ToRGB_SSE41(y +  0, u +  0, v +  0, &R0, &G0, &B0);
228*b2055c35SXin Li     YUV420ToRGB_SSE41(y +  8, u +  4, v +  4, &R1, &G1, &B1);
229*b2055c35SXin Li     YUV420ToRGB_SSE41(y + 16, u +  8, v +  8, &R2, &G2, &B2);
230*b2055c35SXin Li     YUV420ToRGB_SSE41(y + 24, u + 12, v + 12, &R3, &G3, &B3);
231*b2055c35SXin Li 
232*b2055c35SXin Li     // Cast to 8b and store as BBBBGGGGRRRR.
233*b2055c35SXin Li     bgr0 = _mm_packus_epi16(B0, B1);
234*b2055c35SXin Li     bgr1 = _mm_packus_epi16(B2, B3);
235*b2055c35SXin Li     bgr2 = _mm_packus_epi16(G0, G1);
236*b2055c35SXin Li     bgr3 = _mm_packus_epi16(G2, G3);
237*b2055c35SXin Li     bgr4 = _mm_packus_epi16(R0, R1);
238*b2055c35SXin Li     bgr5 = _mm_packus_epi16(R2, R3);
239*b2055c35SXin Li 
240*b2055c35SXin Li     // Pack as BGRBGRBGRBGR.
241*b2055c35SXin Li     PlanarTo24b_SSE41(&bgr0, &bgr1, &bgr2, &bgr3, &bgr4, &bgr5, dst);
242*b2055c35SXin Li 
243*b2055c35SXin Li     y += 32;
244*b2055c35SXin Li     u += 16;
245*b2055c35SXin Li     v += 16;
246*b2055c35SXin Li   }
247*b2055c35SXin Li   for (; n < len; ++n) {   // Finish off
248*b2055c35SXin Li     VP8YuvToBgr(y[0], u[0], v[0], dst);
249*b2055c35SXin Li     dst += 3;
250*b2055c35SXin Li     y += 1;
251*b2055c35SXin Li     u += (n & 1);
252*b2055c35SXin Li     v += (n & 1);
253*b2055c35SXin Li   }
254*b2055c35SXin Li }
255*b2055c35SXin Li 
256*b2055c35SXin Li //------------------------------------------------------------------------------
257*b2055c35SXin Li // Entry point
258*b2055c35SXin Li 
259*b2055c35SXin Li extern void WebPInitSamplersSSE41(void);
260*b2055c35SXin Li 
WebPInitSamplersSSE41(void)261*b2055c35SXin Li WEBP_TSAN_IGNORE_FUNCTION void WebPInitSamplersSSE41(void) {
262*b2055c35SXin Li   WebPSamplers[MODE_RGB]  = YuvToRgbRow_SSE41;
263*b2055c35SXin Li   WebPSamplers[MODE_BGR]  = YuvToBgrRow_SSE41;
264*b2055c35SXin Li }
265*b2055c35SXin Li 
266*b2055c35SXin Li //------------------------------------------------------------------------------
267*b2055c35SXin Li // RGB24/32 -> YUV converters
268*b2055c35SXin Li 
269*b2055c35SXin Li // Load eight 16b-words from *src.
270*b2055c35SXin Li #define LOAD_16(src) _mm_loadu_si128((const __m128i*)(src))
271*b2055c35SXin Li // Store either 16b-words into *dst
272*b2055c35SXin Li #define STORE_16(V, dst) _mm_storeu_si128((__m128i*)(dst), (V))
273*b2055c35SXin Li 
274*b2055c35SXin Li #define WEBP_SSE41_SHUFF(OUT)  do {                  \
275*b2055c35SXin Li   const __m128i tmp0 = _mm_shuffle_epi8(A0, shuff0); \
276*b2055c35SXin Li   const __m128i tmp1 = _mm_shuffle_epi8(A1, shuff1); \
277*b2055c35SXin Li   const __m128i tmp2 = _mm_shuffle_epi8(A2, shuff2); \
278*b2055c35SXin Li   const __m128i tmp3 = _mm_shuffle_epi8(A3, shuff0); \
279*b2055c35SXin Li   const __m128i tmp4 = _mm_shuffle_epi8(A4, shuff1); \
280*b2055c35SXin Li   const __m128i tmp5 = _mm_shuffle_epi8(A5, shuff2); \
281*b2055c35SXin Li                                                      \
282*b2055c35SXin Li   /* OR everything to get one channel */             \
283*b2055c35SXin Li   const __m128i tmp6 = _mm_or_si128(tmp0, tmp1);     \
284*b2055c35SXin Li   const __m128i tmp7 = _mm_or_si128(tmp3, tmp4);     \
285*b2055c35SXin Li   out[OUT + 0] = _mm_or_si128(tmp6, tmp2);           \
286*b2055c35SXin Li   out[OUT + 1] = _mm_or_si128(tmp7, tmp5);           \
287*b2055c35SXin Li } while (0);
288*b2055c35SXin Li 
289*b2055c35SXin Li // Unpack the 8b input rgbrgbrgbrgb ... as contiguous registers:
290*b2055c35SXin Li // rrrr... rrrr... gggg... gggg... bbbb... bbbb....
291*b2055c35SXin Li // Similar to PlanarTo24bHelper(), but in reverse order.
RGB24PackedToPlanar_SSE41(const uint8_t * const rgb,__m128i * const out)292*b2055c35SXin Li static WEBP_INLINE void RGB24PackedToPlanar_SSE41(
293*b2055c35SXin Li     const uint8_t* const rgb, __m128i* const out /*out[6]*/) {
294*b2055c35SXin Li   const __m128i A0 = _mm_loadu_si128((const __m128i*)(rgb +  0));
295*b2055c35SXin Li   const __m128i A1 = _mm_loadu_si128((const __m128i*)(rgb + 16));
296*b2055c35SXin Li   const __m128i A2 = _mm_loadu_si128((const __m128i*)(rgb + 32));
297*b2055c35SXin Li   const __m128i A3 = _mm_loadu_si128((const __m128i*)(rgb + 48));
298*b2055c35SXin Li   const __m128i A4 = _mm_loadu_si128((const __m128i*)(rgb + 64));
299*b2055c35SXin Li   const __m128i A5 = _mm_loadu_si128((const __m128i*)(rgb + 80));
300*b2055c35SXin Li 
301*b2055c35SXin Li   // Compute RR.
302*b2055c35SXin Li   {
303*b2055c35SXin Li     const __m128i shuff0 = _mm_set_epi8(
304*b2055c35SXin Li         -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, 15, 12, 9, 6, 3, 0);
305*b2055c35SXin Li     const __m128i shuff1 = _mm_set_epi8(
306*b2055c35SXin Li         -1, -1, -1, -1, -1, 14, 11, 8, 5, 2, -1, -1, -1, -1, -1, -1);
307*b2055c35SXin Li     const __m128i shuff2 = _mm_set_epi8(
308*b2055c35SXin Li         13, 10, 7, 4, 1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1);
309*b2055c35SXin Li     WEBP_SSE41_SHUFF(0)
310*b2055c35SXin Li   }
311*b2055c35SXin Li   // Compute GG.
312*b2055c35SXin Li   {
313*b2055c35SXin Li     const __m128i shuff0 = _mm_set_epi8(
314*b2055c35SXin Li         -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, 13, 10, 7, 4, 1);
315*b2055c35SXin Li     const __m128i shuff1 = _mm_set_epi8(
316*b2055c35SXin Li         -1, -1, -1, -1, -1, 15, 12, 9, 6, 3, 0, -1, -1, -1, -1, -1);
317*b2055c35SXin Li     const __m128i shuff2 = _mm_set_epi8(
318*b2055c35SXin Li         14, 11, 8, 5, 2, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1);
319*b2055c35SXin Li     WEBP_SSE41_SHUFF(2)
320*b2055c35SXin Li   }
321*b2055c35SXin Li   // Compute BB.
322*b2055c35SXin Li   {
323*b2055c35SXin Li     const __m128i shuff0 = _mm_set_epi8(
324*b2055c35SXin Li         -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1, 14, 11, 8, 5, 2);
325*b2055c35SXin Li     const __m128i shuff1 = _mm_set_epi8(
326*b2055c35SXin Li         -1, -1, -1, -1, -1, -1, 13, 10, 7, 4, 1, -1, -1, -1, -1, -1);
327*b2055c35SXin Li     const __m128i shuff2 = _mm_set_epi8(
328*b2055c35SXin Li         15, 12, 9, 6, 3, 0, -1, -1, -1, -1, -1, -1, -1, -1, -1, -1);
329*b2055c35SXin Li     WEBP_SSE41_SHUFF(4)
330*b2055c35SXin Li   }
331*b2055c35SXin Li }
332*b2055c35SXin Li 
333*b2055c35SXin Li #undef WEBP_SSE41_SHUFF
334*b2055c35SXin Li 
335*b2055c35SXin Li // Convert 8 packed ARGB to r[], g[], b[]
RGB32PackedToPlanar_SSE41(const uint32_t * const argb,__m128i * const rgb)336*b2055c35SXin Li static WEBP_INLINE void RGB32PackedToPlanar_SSE41(
337*b2055c35SXin Li     const uint32_t* const argb, __m128i* const rgb /*in[6]*/) {
338*b2055c35SXin Li   const __m128i zero = _mm_setzero_si128();
339*b2055c35SXin Li   __m128i a0 = LOAD_16(argb + 0);
340*b2055c35SXin Li   __m128i a1 = LOAD_16(argb + 4);
341*b2055c35SXin Li   __m128i a2 = LOAD_16(argb + 8);
342*b2055c35SXin Li   __m128i a3 = LOAD_16(argb + 12);
343*b2055c35SXin Li   VP8L32bToPlanar_SSE41(&a0, &a1, &a2, &a3);
344*b2055c35SXin Li   rgb[0] = _mm_unpacklo_epi8(a1, zero);
345*b2055c35SXin Li   rgb[1] = _mm_unpackhi_epi8(a1, zero);
346*b2055c35SXin Li   rgb[2] = _mm_unpacklo_epi8(a2, zero);
347*b2055c35SXin Li   rgb[3] = _mm_unpackhi_epi8(a2, zero);
348*b2055c35SXin Li   rgb[4] = _mm_unpacklo_epi8(a3, zero);
349*b2055c35SXin Li   rgb[5] = _mm_unpackhi_epi8(a3, zero);
350*b2055c35SXin Li }
351*b2055c35SXin Li 
352*b2055c35SXin Li // This macro computes (RG * MULT_RG + GB * MULT_GB + ROUNDER) >> DESCALE_FIX
353*b2055c35SXin Li // It's a macro and not a function because we need to use immediate values with
354*b2055c35SXin Li // srai_epi32, e.g.
355*b2055c35SXin Li #define TRANSFORM(RG_LO, RG_HI, GB_LO, GB_HI, MULT_RG, MULT_GB, \
356*b2055c35SXin Li                   ROUNDER, DESCALE_FIX, OUT) do {               \
357*b2055c35SXin Li   const __m128i V0_lo = _mm_madd_epi16(RG_LO, MULT_RG);         \
358*b2055c35SXin Li   const __m128i V0_hi = _mm_madd_epi16(RG_HI, MULT_RG);         \
359*b2055c35SXin Li   const __m128i V1_lo = _mm_madd_epi16(GB_LO, MULT_GB);         \
360*b2055c35SXin Li   const __m128i V1_hi = _mm_madd_epi16(GB_HI, MULT_GB);         \
361*b2055c35SXin Li   const __m128i V2_lo = _mm_add_epi32(V0_lo, V1_lo);            \
362*b2055c35SXin Li   const __m128i V2_hi = _mm_add_epi32(V0_hi, V1_hi);            \
363*b2055c35SXin Li   const __m128i V3_lo = _mm_add_epi32(V2_lo, ROUNDER);          \
364*b2055c35SXin Li   const __m128i V3_hi = _mm_add_epi32(V2_hi, ROUNDER);          \
365*b2055c35SXin Li   const __m128i V5_lo = _mm_srai_epi32(V3_lo, DESCALE_FIX);     \
366*b2055c35SXin Li   const __m128i V5_hi = _mm_srai_epi32(V3_hi, DESCALE_FIX);     \
367*b2055c35SXin Li   (OUT) = _mm_packs_epi32(V5_lo, V5_hi);                        \
368*b2055c35SXin Li } while (0)
369*b2055c35SXin Li 
370*b2055c35SXin Li #define MK_CST_16(A, B) _mm_set_epi16((B), (A), (B), (A), (B), (A), (B), (A))
ConvertRGBToY_SSE41(const __m128i * const R,const __m128i * const G,const __m128i * const B,__m128i * const Y)371*b2055c35SXin Li static WEBP_INLINE void ConvertRGBToY_SSE41(const __m128i* const R,
372*b2055c35SXin Li                                             const __m128i* const G,
373*b2055c35SXin Li                                             const __m128i* const B,
374*b2055c35SXin Li                                             __m128i* const Y) {
375*b2055c35SXin Li   const __m128i kRG_y = MK_CST_16(16839, 33059 - 16384);
376*b2055c35SXin Li   const __m128i kGB_y = MK_CST_16(16384, 6420);
377*b2055c35SXin Li   const __m128i kHALF_Y = _mm_set1_epi32((16 << YUV_FIX) + YUV_HALF);
378*b2055c35SXin Li 
379*b2055c35SXin Li   const __m128i RG_lo = _mm_unpacklo_epi16(*R, *G);
380*b2055c35SXin Li   const __m128i RG_hi = _mm_unpackhi_epi16(*R, *G);
381*b2055c35SXin Li   const __m128i GB_lo = _mm_unpacklo_epi16(*G, *B);
382*b2055c35SXin Li   const __m128i GB_hi = _mm_unpackhi_epi16(*G, *B);
383*b2055c35SXin Li   TRANSFORM(RG_lo, RG_hi, GB_lo, GB_hi, kRG_y, kGB_y, kHALF_Y, YUV_FIX, *Y);
384*b2055c35SXin Li }
385*b2055c35SXin Li 
ConvertRGBToUV_SSE41(const __m128i * const R,const __m128i * const G,const __m128i * const B,__m128i * const U,__m128i * const V)386*b2055c35SXin Li static WEBP_INLINE void ConvertRGBToUV_SSE41(const __m128i* const R,
387*b2055c35SXin Li                                              const __m128i* const G,
388*b2055c35SXin Li                                              const __m128i* const B,
389*b2055c35SXin Li                                              __m128i* const U,
390*b2055c35SXin Li                                              __m128i* const V) {
391*b2055c35SXin Li   const __m128i kRG_u = MK_CST_16(-9719, -19081);
392*b2055c35SXin Li   const __m128i kGB_u = MK_CST_16(0, 28800);
393*b2055c35SXin Li   const __m128i kRG_v = MK_CST_16(28800, 0);
394*b2055c35SXin Li   const __m128i kGB_v = MK_CST_16(-24116, -4684);
395*b2055c35SXin Li   const __m128i kHALF_UV = _mm_set1_epi32(((128 << YUV_FIX) + YUV_HALF) << 2);
396*b2055c35SXin Li 
397*b2055c35SXin Li   const __m128i RG_lo = _mm_unpacklo_epi16(*R, *G);
398*b2055c35SXin Li   const __m128i RG_hi = _mm_unpackhi_epi16(*R, *G);
399*b2055c35SXin Li   const __m128i GB_lo = _mm_unpacklo_epi16(*G, *B);
400*b2055c35SXin Li   const __m128i GB_hi = _mm_unpackhi_epi16(*G, *B);
401*b2055c35SXin Li   TRANSFORM(RG_lo, RG_hi, GB_lo, GB_hi, kRG_u, kGB_u,
402*b2055c35SXin Li             kHALF_UV, YUV_FIX + 2, *U);
403*b2055c35SXin Li   TRANSFORM(RG_lo, RG_hi, GB_lo, GB_hi, kRG_v, kGB_v,
404*b2055c35SXin Li             kHALF_UV, YUV_FIX + 2, *V);
405*b2055c35SXin Li }
406*b2055c35SXin Li 
407*b2055c35SXin Li #undef MK_CST_16
408*b2055c35SXin Li #undef TRANSFORM
409*b2055c35SXin Li 
ConvertRGB24ToY_SSE41(const uint8_t * rgb,uint8_t * y,int width)410*b2055c35SXin Li static void ConvertRGB24ToY_SSE41(const uint8_t* rgb, uint8_t* y, int width) {
411*b2055c35SXin Li   const int max_width = width & ~31;
412*b2055c35SXin Li   int i;
413*b2055c35SXin Li   for (i = 0; i < max_width; rgb += 3 * 16 * 2) {
414*b2055c35SXin Li     __m128i rgb_plane[6];
415*b2055c35SXin Li     int j;
416*b2055c35SXin Li 
417*b2055c35SXin Li     RGB24PackedToPlanar_SSE41(rgb, rgb_plane);
418*b2055c35SXin Li 
419*b2055c35SXin Li     for (j = 0; j < 2; ++j, i += 16) {
420*b2055c35SXin Li       const __m128i zero = _mm_setzero_si128();
421*b2055c35SXin Li       __m128i r, g, b, Y0, Y1;
422*b2055c35SXin Li 
423*b2055c35SXin Li       // Convert to 16-bit Y.
424*b2055c35SXin Li       r = _mm_unpacklo_epi8(rgb_plane[0 + j], zero);
425*b2055c35SXin Li       g = _mm_unpacklo_epi8(rgb_plane[2 + j], zero);
426*b2055c35SXin Li       b = _mm_unpacklo_epi8(rgb_plane[4 + j], zero);
427*b2055c35SXin Li       ConvertRGBToY_SSE41(&r, &g, &b, &Y0);
428*b2055c35SXin Li 
429*b2055c35SXin Li       // Convert to 16-bit Y.
430*b2055c35SXin Li       r = _mm_unpackhi_epi8(rgb_plane[0 + j], zero);
431*b2055c35SXin Li       g = _mm_unpackhi_epi8(rgb_plane[2 + j], zero);
432*b2055c35SXin Li       b = _mm_unpackhi_epi8(rgb_plane[4 + j], zero);
433*b2055c35SXin Li       ConvertRGBToY_SSE41(&r, &g, &b, &Y1);
434*b2055c35SXin Li 
435*b2055c35SXin Li       // Cast to 8-bit and store.
436*b2055c35SXin Li       STORE_16(_mm_packus_epi16(Y0, Y1), y + i);
437*b2055c35SXin Li     }
438*b2055c35SXin Li   }
439*b2055c35SXin Li   for (; i < width; ++i, rgb += 3) {   // left-over
440*b2055c35SXin Li     y[i] = VP8RGBToY(rgb[0], rgb[1], rgb[2], YUV_HALF);
441*b2055c35SXin Li   }
442*b2055c35SXin Li }
443*b2055c35SXin Li 
ConvertBGR24ToY_SSE41(const uint8_t * bgr,uint8_t * y,int width)444*b2055c35SXin Li static void ConvertBGR24ToY_SSE41(const uint8_t* bgr, uint8_t* y, int width) {
445*b2055c35SXin Li   const int max_width = width & ~31;
446*b2055c35SXin Li   int i;
447*b2055c35SXin Li   for (i = 0; i < max_width; bgr += 3 * 16 * 2) {
448*b2055c35SXin Li     __m128i bgr_plane[6];
449*b2055c35SXin Li     int j;
450*b2055c35SXin Li 
451*b2055c35SXin Li     RGB24PackedToPlanar_SSE41(bgr, bgr_plane);
452*b2055c35SXin Li 
453*b2055c35SXin Li     for (j = 0; j < 2; ++j, i += 16) {
454*b2055c35SXin Li       const __m128i zero = _mm_setzero_si128();
455*b2055c35SXin Li       __m128i r, g, b, Y0, Y1;
456*b2055c35SXin Li 
457*b2055c35SXin Li       // Convert to 16-bit Y.
458*b2055c35SXin Li       b = _mm_unpacklo_epi8(bgr_plane[0 + j], zero);
459*b2055c35SXin Li       g = _mm_unpacklo_epi8(bgr_plane[2 + j], zero);
460*b2055c35SXin Li       r = _mm_unpacklo_epi8(bgr_plane[4 + j], zero);
461*b2055c35SXin Li       ConvertRGBToY_SSE41(&r, &g, &b, &Y0);
462*b2055c35SXin Li 
463*b2055c35SXin Li       // Convert to 16-bit Y.
464*b2055c35SXin Li       b = _mm_unpackhi_epi8(bgr_plane[0 + j], zero);
465*b2055c35SXin Li       g = _mm_unpackhi_epi8(bgr_plane[2 + j], zero);
466*b2055c35SXin Li       r = _mm_unpackhi_epi8(bgr_plane[4 + j], zero);
467*b2055c35SXin Li       ConvertRGBToY_SSE41(&r, &g, &b, &Y1);
468*b2055c35SXin Li 
469*b2055c35SXin Li       // Cast to 8-bit and store.
470*b2055c35SXin Li       STORE_16(_mm_packus_epi16(Y0, Y1), y + i);
471*b2055c35SXin Li     }
472*b2055c35SXin Li   }
473*b2055c35SXin Li   for (; i < width; ++i, bgr += 3) {  // left-over
474*b2055c35SXin Li     y[i] = VP8RGBToY(bgr[2], bgr[1], bgr[0], YUV_HALF);
475*b2055c35SXin Li   }
476*b2055c35SXin Li }
477*b2055c35SXin Li 
ConvertARGBToY_SSE41(const uint32_t * argb,uint8_t * y,int width)478*b2055c35SXin Li static void ConvertARGBToY_SSE41(const uint32_t* argb, uint8_t* y, int width) {
479*b2055c35SXin Li   const int max_width = width & ~15;
480*b2055c35SXin Li   int i;
481*b2055c35SXin Li   for (i = 0; i < max_width; i += 16) {
482*b2055c35SXin Li     __m128i Y0, Y1, rgb[6];
483*b2055c35SXin Li     RGB32PackedToPlanar_SSE41(&argb[i], rgb);
484*b2055c35SXin Li     ConvertRGBToY_SSE41(&rgb[0], &rgb[2], &rgb[4], &Y0);
485*b2055c35SXin Li     ConvertRGBToY_SSE41(&rgb[1], &rgb[3], &rgb[5], &Y1);
486*b2055c35SXin Li     STORE_16(_mm_packus_epi16(Y0, Y1), y + i);
487*b2055c35SXin Li   }
488*b2055c35SXin Li   for (; i < width; ++i) {   // left-over
489*b2055c35SXin Li     const uint32_t p = argb[i];
490*b2055c35SXin Li     y[i] = VP8RGBToY((p >> 16) & 0xff, (p >> 8) & 0xff, (p >>  0) & 0xff,
491*b2055c35SXin Li                      YUV_HALF);
492*b2055c35SXin Li   }
493*b2055c35SXin Li }
494*b2055c35SXin Li 
495*b2055c35SXin Li // Horizontal add (doubled) of two 16b values, result is 16b.
496*b2055c35SXin Li // in: A | B | C | D | ... -> out: 2*(A+B) | 2*(C+D) | ...
HorizontalAddPack_SSE41(const __m128i * const A,const __m128i * const B,__m128i * const out)497*b2055c35SXin Li static void HorizontalAddPack_SSE41(const __m128i* const A,
498*b2055c35SXin Li                                     const __m128i* const B,
499*b2055c35SXin Li                                     __m128i* const out) {
500*b2055c35SXin Li   const __m128i k2 = _mm_set1_epi16(2);
501*b2055c35SXin Li   const __m128i C = _mm_madd_epi16(*A, k2);
502*b2055c35SXin Li   const __m128i D = _mm_madd_epi16(*B, k2);
503*b2055c35SXin Li   *out = _mm_packs_epi32(C, D);
504*b2055c35SXin Li }
505*b2055c35SXin Li 
ConvertARGBToUV_SSE41(const uint32_t * argb,uint8_t * u,uint8_t * v,int src_width,int do_store)506*b2055c35SXin Li static void ConvertARGBToUV_SSE41(const uint32_t* argb,
507*b2055c35SXin Li                                   uint8_t* u, uint8_t* v,
508*b2055c35SXin Li                                   int src_width, int do_store) {
509*b2055c35SXin Li   const int max_width = src_width & ~31;
510*b2055c35SXin Li   int i;
511*b2055c35SXin Li   for (i = 0; i < max_width; i += 32, u += 16, v += 16) {
512*b2055c35SXin Li     __m128i rgb[6], U0, V0, U1, V1;
513*b2055c35SXin Li     RGB32PackedToPlanar_SSE41(&argb[i], rgb);
514*b2055c35SXin Li     HorizontalAddPack_SSE41(&rgb[0], &rgb[1], &rgb[0]);
515*b2055c35SXin Li     HorizontalAddPack_SSE41(&rgb[2], &rgb[3], &rgb[2]);
516*b2055c35SXin Li     HorizontalAddPack_SSE41(&rgb[4], &rgb[5], &rgb[4]);
517*b2055c35SXin Li     ConvertRGBToUV_SSE41(&rgb[0], &rgb[2], &rgb[4], &U0, &V0);
518*b2055c35SXin Li 
519*b2055c35SXin Li     RGB32PackedToPlanar_SSE41(&argb[i + 16], rgb);
520*b2055c35SXin Li     HorizontalAddPack_SSE41(&rgb[0], &rgb[1], &rgb[0]);
521*b2055c35SXin Li     HorizontalAddPack_SSE41(&rgb[2], &rgb[3], &rgb[2]);
522*b2055c35SXin Li     HorizontalAddPack_SSE41(&rgb[4], &rgb[5], &rgb[4]);
523*b2055c35SXin Li     ConvertRGBToUV_SSE41(&rgb[0], &rgb[2], &rgb[4], &U1, &V1);
524*b2055c35SXin Li 
525*b2055c35SXin Li     U0 = _mm_packus_epi16(U0, U1);
526*b2055c35SXin Li     V0 = _mm_packus_epi16(V0, V1);
527*b2055c35SXin Li     if (!do_store) {
528*b2055c35SXin Li       const __m128i prev_u = LOAD_16(u);
529*b2055c35SXin Li       const __m128i prev_v = LOAD_16(v);
530*b2055c35SXin Li       U0 = _mm_avg_epu8(U0, prev_u);
531*b2055c35SXin Li       V0 = _mm_avg_epu8(V0, prev_v);
532*b2055c35SXin Li     }
533*b2055c35SXin Li     STORE_16(U0, u);
534*b2055c35SXin Li     STORE_16(V0, v);
535*b2055c35SXin Li   }
536*b2055c35SXin Li   if (i < src_width) {  // left-over
537*b2055c35SXin Li     WebPConvertARGBToUV_C(argb + i, u, v, src_width - i, do_store);
538*b2055c35SXin Li   }
539*b2055c35SXin Li }
540*b2055c35SXin Li 
541*b2055c35SXin Li // Convert 16 packed ARGB 16b-values to r[], g[], b[]
RGBA32PackedToPlanar_16b_SSE41(const uint16_t * const rgbx,__m128i * const r,__m128i * const g,__m128i * const b)542*b2055c35SXin Li static WEBP_INLINE void RGBA32PackedToPlanar_16b_SSE41(
543*b2055c35SXin Li     const uint16_t* const rgbx,
544*b2055c35SXin Li     __m128i* const r, __m128i* const g, __m128i* const b) {
545*b2055c35SXin Li   const __m128i in0 = LOAD_16(rgbx +  0);  // r0 | g0 | b0 |x| r1 | g1 | b1 |x
546*b2055c35SXin Li   const __m128i in1 = LOAD_16(rgbx +  8);  // r2 | g2 | b2 |x| r3 | g3 | b3 |x
547*b2055c35SXin Li   const __m128i in2 = LOAD_16(rgbx + 16);  // r4 | ...
548*b2055c35SXin Li   const __m128i in3 = LOAD_16(rgbx + 24);  // r6 | ...
549*b2055c35SXin Li   // aarrggbb as 16-bit.
550*b2055c35SXin Li   const __m128i shuff0 =
551*b2055c35SXin Li       _mm_set_epi8(-1, -1, -1, -1, 13, 12, 5, 4, 11, 10, 3, 2, 9, 8, 1, 0);
552*b2055c35SXin Li   const __m128i shuff1 =
553*b2055c35SXin Li       _mm_set_epi8(13, 12, 5, 4, -1, -1, -1, -1, 11, 10, 3, 2, 9, 8, 1, 0);
554*b2055c35SXin Li   const __m128i A0 = _mm_shuffle_epi8(in0, shuff0);
555*b2055c35SXin Li   const __m128i A1 = _mm_shuffle_epi8(in1, shuff1);
556*b2055c35SXin Li   const __m128i A2 = _mm_shuffle_epi8(in2, shuff0);
557*b2055c35SXin Li   const __m128i A3 = _mm_shuffle_epi8(in3, shuff1);
558*b2055c35SXin Li   // R0R1G0G1
559*b2055c35SXin Li   // B0B1****
560*b2055c35SXin Li   // R2R3G2G3
561*b2055c35SXin Li   // B2B3****
562*b2055c35SXin Li   // (OR is used to free port 5 for the unpack)
563*b2055c35SXin Li   const __m128i B0 = _mm_unpacklo_epi32(A0, A1);
564*b2055c35SXin Li   const __m128i B1 = _mm_or_si128(A0, A1);
565*b2055c35SXin Li   const __m128i B2 = _mm_unpacklo_epi32(A2, A3);
566*b2055c35SXin Li   const __m128i B3 = _mm_or_si128(A2, A3);
567*b2055c35SXin Li   // Gather the channels.
568*b2055c35SXin Li   *r = _mm_unpacklo_epi64(B0, B2);
569*b2055c35SXin Li   *g = _mm_unpackhi_epi64(B0, B2);
570*b2055c35SXin Li   *b = _mm_unpackhi_epi64(B1, B3);
571*b2055c35SXin Li }
572*b2055c35SXin Li 
ConvertRGBA32ToUV_SSE41(const uint16_t * rgb,uint8_t * u,uint8_t * v,int width)573*b2055c35SXin Li static void ConvertRGBA32ToUV_SSE41(const uint16_t* rgb,
574*b2055c35SXin Li                                     uint8_t* u, uint8_t* v, int width) {
575*b2055c35SXin Li   const int max_width = width & ~15;
576*b2055c35SXin Li   const uint16_t* const last_rgb = rgb + 4 * max_width;
577*b2055c35SXin Li   while (rgb < last_rgb) {
578*b2055c35SXin Li     __m128i r, g, b, U0, V0, U1, V1;
579*b2055c35SXin Li     RGBA32PackedToPlanar_16b_SSE41(rgb +  0, &r, &g, &b);
580*b2055c35SXin Li     ConvertRGBToUV_SSE41(&r, &g, &b, &U0, &V0);
581*b2055c35SXin Li     RGBA32PackedToPlanar_16b_SSE41(rgb + 32, &r, &g, &b);
582*b2055c35SXin Li     ConvertRGBToUV_SSE41(&r, &g, &b, &U1, &V1);
583*b2055c35SXin Li     STORE_16(_mm_packus_epi16(U0, U1), u);
584*b2055c35SXin Li     STORE_16(_mm_packus_epi16(V0, V1), v);
585*b2055c35SXin Li     u += 16;
586*b2055c35SXin Li     v += 16;
587*b2055c35SXin Li     rgb += 2 * 32;
588*b2055c35SXin Li   }
589*b2055c35SXin Li   if (max_width < width) {  // left-over
590*b2055c35SXin Li     WebPConvertRGBA32ToUV_C(rgb, u, v, width - max_width);
591*b2055c35SXin Li   }
592*b2055c35SXin Li }
593*b2055c35SXin Li 
594*b2055c35SXin Li //------------------------------------------------------------------------------
595*b2055c35SXin Li 
596*b2055c35SXin Li extern void WebPInitConvertARGBToYUVSSE41(void);
597*b2055c35SXin Li 
WebPInitConvertARGBToYUVSSE41(void)598*b2055c35SXin Li WEBP_TSAN_IGNORE_FUNCTION void WebPInitConvertARGBToYUVSSE41(void) {
599*b2055c35SXin Li   WebPConvertARGBToY = ConvertARGBToY_SSE41;
600*b2055c35SXin Li   WebPConvertARGBToUV = ConvertARGBToUV_SSE41;
601*b2055c35SXin Li 
602*b2055c35SXin Li   WebPConvertRGB24ToY = ConvertRGB24ToY_SSE41;
603*b2055c35SXin Li   WebPConvertBGR24ToY = ConvertBGR24ToY_SSE41;
604*b2055c35SXin Li 
605*b2055c35SXin Li   WebPConvertRGBA32ToUV = ConvertRGBA32ToUV_SSE41;
606*b2055c35SXin Li }
607*b2055c35SXin Li 
608*b2055c35SXin Li //------------------------------------------------------------------------------
609*b2055c35SXin Li 
610*b2055c35SXin Li #else  // !WEBP_USE_SSE41
611*b2055c35SXin Li 
612*b2055c35SXin Li WEBP_DSP_INIT_STUB(WebPInitSamplersSSE41)
613*b2055c35SXin Li WEBP_DSP_INIT_STUB(WebPInitConvertARGBToYUVSSE41)
614*b2055c35SXin Li 
615*b2055c35SXin Li #endif  // WEBP_USE_SSE41
616