xref: /aosp_15_r20/external/webp/src/dsp/rescaler_sse2.c (revision b2055c353e87c8814eb2b6b1b11112a1562253bd)
1*b2055c35SXin Li // Copyright 2015 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 // SSE2 Rescaling functions
11*b2055c35SXin Li //
12*b2055c35SXin Li // Author: Skal ([email protected])
13*b2055c35SXin Li 
14*b2055c35SXin Li #include "src/dsp/dsp.h"
15*b2055c35SXin Li 
16*b2055c35SXin Li #if defined(WEBP_USE_SSE2) && !defined(WEBP_REDUCE_SIZE)
17*b2055c35SXin Li #include <emmintrin.h>
18*b2055c35SXin Li 
19*b2055c35SXin Li #include <assert.h>
20*b2055c35SXin Li #include "src/utils/rescaler_utils.h"
21*b2055c35SXin Li #include "src/utils/utils.h"
22*b2055c35SXin Li 
23*b2055c35SXin Li //------------------------------------------------------------------------------
24*b2055c35SXin Li // Implementations of critical functions ImportRow / ExportRow
25*b2055c35SXin Li 
26*b2055c35SXin Li #define ROUNDER (WEBP_RESCALER_ONE >> 1)
27*b2055c35SXin Li #define MULT_FIX(x, y) (((uint64_t)(x) * (y) + ROUNDER) >> WEBP_RESCALER_RFIX)
28*b2055c35SXin Li #define MULT_FIX_FLOOR(x, y) (((uint64_t)(x) * (y)) >> WEBP_RESCALER_RFIX)
29*b2055c35SXin Li 
30*b2055c35SXin Li // input: 8 bytes ABCDEFGH -> output: A0E0B0F0C0G0D0H0
LoadTwoPixels_SSE2(const uint8_t * const src,__m128i * out)31*b2055c35SXin Li static void LoadTwoPixels_SSE2(const uint8_t* const src, __m128i* out) {
32*b2055c35SXin Li   const __m128i zero = _mm_setzero_si128();
33*b2055c35SXin Li   const __m128i A = _mm_loadl_epi64((const __m128i*)(src));  // ABCDEFGH
34*b2055c35SXin Li   const __m128i B = _mm_unpacklo_epi8(A, zero);              // A0B0C0D0E0F0G0H0
35*b2055c35SXin Li   const __m128i C = _mm_srli_si128(B, 8);                    // E0F0G0H0
36*b2055c35SXin Li   *out = _mm_unpacklo_epi16(B, C);
37*b2055c35SXin Li }
38*b2055c35SXin Li 
39*b2055c35SXin Li // input: 8 bytes ABCDEFGH -> output: A0B0C0D0E0F0G0H0
LoadEightPixels_SSE2(const uint8_t * const src,__m128i * out)40*b2055c35SXin Li static void LoadEightPixels_SSE2(const uint8_t* const src, __m128i* out) {
41*b2055c35SXin Li   const __m128i zero = _mm_setzero_si128();
42*b2055c35SXin Li   const __m128i A = _mm_loadl_epi64((const __m128i*)(src));  // ABCDEFGH
43*b2055c35SXin Li   *out = _mm_unpacklo_epi8(A, zero);
44*b2055c35SXin Li }
45*b2055c35SXin Li 
RescalerImportRowExpand_SSE2(WebPRescaler * const wrk,const uint8_t * src)46*b2055c35SXin Li static void RescalerImportRowExpand_SSE2(WebPRescaler* const wrk,
47*b2055c35SXin Li                                          const uint8_t* src) {
48*b2055c35SXin Li   rescaler_t* frow = wrk->frow;
49*b2055c35SXin Li   const rescaler_t* const frow_end = frow + wrk->dst_width * wrk->num_channels;
50*b2055c35SXin Li   const int x_add = wrk->x_add;
51*b2055c35SXin Li   int accum = x_add;
52*b2055c35SXin Li   __m128i cur_pixels;
53*b2055c35SXin Li 
54*b2055c35SXin Li   // SSE2 implementation only works with 16b signed arithmetic at max.
55*b2055c35SXin Li   if (wrk->src_width < 8 || accum >= (1 << 15)) {
56*b2055c35SXin Li     WebPRescalerImportRowExpand_C(wrk, src);
57*b2055c35SXin Li     return;
58*b2055c35SXin Li   }
59*b2055c35SXin Li 
60*b2055c35SXin Li   assert(!WebPRescalerInputDone(wrk));
61*b2055c35SXin Li   assert(wrk->x_expand);
62*b2055c35SXin Li   if (wrk->num_channels == 4) {
63*b2055c35SXin Li     LoadTwoPixels_SSE2(src, &cur_pixels);
64*b2055c35SXin Li     src += 4;
65*b2055c35SXin Li     while (1) {
66*b2055c35SXin Li       const __m128i mult = _mm_set1_epi32(((x_add - accum) << 16) | accum);
67*b2055c35SXin Li       const __m128i out = _mm_madd_epi16(cur_pixels, mult);
68*b2055c35SXin Li       _mm_storeu_si128((__m128i*)frow, out);
69*b2055c35SXin Li       frow += 4;
70*b2055c35SXin Li       if (frow >= frow_end) break;
71*b2055c35SXin Li       accum -= wrk->x_sub;
72*b2055c35SXin Li       if (accum < 0) {
73*b2055c35SXin Li         LoadTwoPixels_SSE2(src, &cur_pixels);
74*b2055c35SXin Li         src += 4;
75*b2055c35SXin Li         accum += x_add;
76*b2055c35SXin Li       }
77*b2055c35SXin Li     }
78*b2055c35SXin Li   } else {
79*b2055c35SXin Li     int left;
80*b2055c35SXin Li     const uint8_t* const src_limit = src + wrk->src_width - 8;
81*b2055c35SXin Li     LoadEightPixels_SSE2(src, &cur_pixels);
82*b2055c35SXin Li     src += 7;
83*b2055c35SXin Li     left = 7;
84*b2055c35SXin Li     while (1) {
85*b2055c35SXin Li       const __m128i mult = _mm_cvtsi32_si128(((x_add - accum) << 16) | accum);
86*b2055c35SXin Li       const __m128i out = _mm_madd_epi16(cur_pixels, mult);
87*b2055c35SXin Li       assert(sizeof(*frow) == sizeof(uint32_t));
88*b2055c35SXin Li       WebPInt32ToMem((uint8_t*)frow, _mm_cvtsi128_si32(out));
89*b2055c35SXin Li       frow += 1;
90*b2055c35SXin Li       if (frow >= frow_end) break;
91*b2055c35SXin Li       accum -= wrk->x_sub;
92*b2055c35SXin Li       if (accum < 0) {
93*b2055c35SXin Li         if (--left) {
94*b2055c35SXin Li           cur_pixels = _mm_srli_si128(cur_pixels, 2);
95*b2055c35SXin Li         } else if (src <= src_limit) {
96*b2055c35SXin Li           LoadEightPixels_SSE2(src, &cur_pixels);
97*b2055c35SXin Li           src += 7;
98*b2055c35SXin Li           left = 7;
99*b2055c35SXin Li         } else {   // tail
100*b2055c35SXin Li           cur_pixels = _mm_srli_si128(cur_pixels, 2);
101*b2055c35SXin Li           cur_pixels = _mm_insert_epi16(cur_pixels, src[1], 1);
102*b2055c35SXin Li           src += 1;
103*b2055c35SXin Li           left = 1;
104*b2055c35SXin Li         }
105*b2055c35SXin Li         accum += x_add;
106*b2055c35SXin Li       }
107*b2055c35SXin Li     }
108*b2055c35SXin Li   }
109*b2055c35SXin Li   assert(accum == 0);
110*b2055c35SXin Li }
111*b2055c35SXin Li 
RescalerImportRowShrink_SSE2(WebPRescaler * const wrk,const uint8_t * src)112*b2055c35SXin Li static void RescalerImportRowShrink_SSE2(WebPRescaler* const wrk,
113*b2055c35SXin Li                                          const uint8_t* src) {
114*b2055c35SXin Li   const int x_sub = wrk->x_sub;
115*b2055c35SXin Li   int accum = 0;
116*b2055c35SXin Li   const __m128i zero = _mm_setzero_si128();
117*b2055c35SXin Li   const __m128i mult0 = _mm_set1_epi16(x_sub);
118*b2055c35SXin Li   const __m128i mult1 = _mm_set1_epi32(wrk->fx_scale);
119*b2055c35SXin Li   const __m128i rounder = _mm_set_epi32(0, ROUNDER, 0, ROUNDER);
120*b2055c35SXin Li   __m128i sum = zero;
121*b2055c35SXin Li   rescaler_t* frow = wrk->frow;
122*b2055c35SXin Li   const rescaler_t* const frow_end = wrk->frow + 4 * wrk->dst_width;
123*b2055c35SXin Li 
124*b2055c35SXin Li   if (wrk->num_channels != 4 || wrk->x_add > (x_sub << 7)) {
125*b2055c35SXin Li     WebPRescalerImportRowShrink_C(wrk, src);
126*b2055c35SXin Li     return;
127*b2055c35SXin Li   }
128*b2055c35SXin Li   assert(!WebPRescalerInputDone(wrk));
129*b2055c35SXin Li   assert(!wrk->x_expand);
130*b2055c35SXin Li 
131*b2055c35SXin Li   for (; frow < frow_end; frow += 4) {
132*b2055c35SXin Li     __m128i base = zero;
133*b2055c35SXin Li     accum += wrk->x_add;
134*b2055c35SXin Li     while (accum > 0) {
135*b2055c35SXin Li       const __m128i A = _mm_cvtsi32_si128(WebPMemToInt32(src));
136*b2055c35SXin Li       src += 4;
137*b2055c35SXin Li       base = _mm_unpacklo_epi8(A, zero);
138*b2055c35SXin Li       // To avoid overflow, we need: base * x_add / x_sub < 32768
139*b2055c35SXin Li       // => x_add < x_sub << 7. That's a 1/128 reduction ratio limit.
140*b2055c35SXin Li       sum = _mm_add_epi16(sum, base);
141*b2055c35SXin Li       accum -= x_sub;
142*b2055c35SXin Li     }
143*b2055c35SXin Li     {    // Emit next horizontal pixel.
144*b2055c35SXin Li       const __m128i mult = _mm_set1_epi16(-accum);
145*b2055c35SXin Li       const __m128i frac0 = _mm_mullo_epi16(base, mult);  // 16b x 16b -> 32b
146*b2055c35SXin Li       const __m128i frac1 = _mm_mulhi_epu16(base, mult);
147*b2055c35SXin Li       const __m128i frac = _mm_unpacklo_epi16(frac0, frac1);  // frac is 32b
148*b2055c35SXin Li       const __m128i A0 = _mm_mullo_epi16(sum, mult0);
149*b2055c35SXin Li       const __m128i A1 = _mm_mulhi_epu16(sum, mult0);
150*b2055c35SXin Li       const __m128i B0 = _mm_unpacklo_epi16(A0, A1);      // sum * x_sub
151*b2055c35SXin Li       const __m128i frow_out = _mm_sub_epi32(B0, frac);   // sum * x_sub - frac
152*b2055c35SXin Li       const __m128i D0 = _mm_srli_epi64(frac, 32);
153*b2055c35SXin Li       const __m128i D1 = _mm_mul_epu32(frac, mult1);      // 32b x 16b -> 64b
154*b2055c35SXin Li       const __m128i D2 = _mm_mul_epu32(D0, mult1);
155*b2055c35SXin Li       const __m128i E1 = _mm_add_epi64(D1, rounder);
156*b2055c35SXin Li       const __m128i E2 = _mm_add_epi64(D2, rounder);
157*b2055c35SXin Li       const __m128i F1 = _mm_shuffle_epi32(E1, 1 | (3 << 2));
158*b2055c35SXin Li       const __m128i F2 = _mm_shuffle_epi32(E2, 1 | (3 << 2));
159*b2055c35SXin Li       const __m128i G = _mm_unpacklo_epi32(F1, F2);
160*b2055c35SXin Li       sum = _mm_packs_epi32(G, zero);
161*b2055c35SXin Li       _mm_storeu_si128((__m128i*)frow, frow_out);
162*b2055c35SXin Li     }
163*b2055c35SXin Li   }
164*b2055c35SXin Li   assert(accum == 0);
165*b2055c35SXin Li }
166*b2055c35SXin Li 
167*b2055c35SXin Li //------------------------------------------------------------------------------
168*b2055c35SXin Li // Row export
169*b2055c35SXin Li 
170*b2055c35SXin Li // load *src as epi64, multiply by mult and store result in [out0 ... out3]
LoadDispatchAndMult_SSE2(const rescaler_t * const src,const __m128i * const mult,__m128i * const out0,__m128i * const out1,__m128i * const out2,__m128i * const out3)171*b2055c35SXin Li static WEBP_INLINE void LoadDispatchAndMult_SSE2(const rescaler_t* const src,
172*b2055c35SXin Li                                                  const __m128i* const mult,
173*b2055c35SXin Li                                                  __m128i* const out0,
174*b2055c35SXin Li                                                  __m128i* const out1,
175*b2055c35SXin Li                                                  __m128i* const out2,
176*b2055c35SXin Li                                                  __m128i* const out3) {
177*b2055c35SXin Li   const __m128i A0 = _mm_loadu_si128((const __m128i*)(src + 0));
178*b2055c35SXin Li   const __m128i A1 = _mm_loadu_si128((const __m128i*)(src + 4));
179*b2055c35SXin Li   const __m128i A2 = _mm_srli_epi64(A0, 32);
180*b2055c35SXin Li   const __m128i A3 = _mm_srli_epi64(A1, 32);
181*b2055c35SXin Li   if (mult != NULL) {
182*b2055c35SXin Li     *out0 = _mm_mul_epu32(A0, *mult);
183*b2055c35SXin Li     *out1 = _mm_mul_epu32(A1, *mult);
184*b2055c35SXin Li     *out2 = _mm_mul_epu32(A2, *mult);
185*b2055c35SXin Li     *out3 = _mm_mul_epu32(A3, *mult);
186*b2055c35SXin Li   } else {
187*b2055c35SXin Li     *out0 = A0;
188*b2055c35SXin Li     *out1 = A1;
189*b2055c35SXin Li     *out2 = A2;
190*b2055c35SXin Li     *out3 = A3;
191*b2055c35SXin Li   }
192*b2055c35SXin Li }
193*b2055c35SXin Li 
ProcessRow_SSE2(const __m128i * const A0,const __m128i * const A1,const __m128i * const A2,const __m128i * const A3,const __m128i * const mult,uint8_t * const dst)194*b2055c35SXin Li static WEBP_INLINE void ProcessRow_SSE2(const __m128i* const A0,
195*b2055c35SXin Li                                         const __m128i* const A1,
196*b2055c35SXin Li                                         const __m128i* const A2,
197*b2055c35SXin Li                                         const __m128i* const A3,
198*b2055c35SXin Li                                         const __m128i* const mult,
199*b2055c35SXin Li                                         uint8_t* const dst) {
200*b2055c35SXin Li   const __m128i rounder = _mm_set_epi32(0, ROUNDER, 0, ROUNDER);
201*b2055c35SXin Li   const __m128i mask = _mm_set_epi32(~0, 0, ~0, 0);
202*b2055c35SXin Li   const __m128i B0 = _mm_mul_epu32(*A0, *mult);
203*b2055c35SXin Li   const __m128i B1 = _mm_mul_epu32(*A1, *mult);
204*b2055c35SXin Li   const __m128i B2 = _mm_mul_epu32(*A2, *mult);
205*b2055c35SXin Li   const __m128i B3 = _mm_mul_epu32(*A3, *mult);
206*b2055c35SXin Li   const __m128i C0 = _mm_add_epi64(B0, rounder);
207*b2055c35SXin Li   const __m128i C1 = _mm_add_epi64(B1, rounder);
208*b2055c35SXin Li   const __m128i C2 = _mm_add_epi64(B2, rounder);
209*b2055c35SXin Li   const __m128i C3 = _mm_add_epi64(B3, rounder);
210*b2055c35SXin Li   const __m128i D0 = _mm_srli_epi64(C0, WEBP_RESCALER_RFIX);
211*b2055c35SXin Li   const __m128i D1 = _mm_srli_epi64(C1, WEBP_RESCALER_RFIX);
212*b2055c35SXin Li #if (WEBP_RESCALER_RFIX < 32)
213*b2055c35SXin Li   const __m128i D2 =
214*b2055c35SXin Li       _mm_and_si128(_mm_slli_epi64(C2, 32 - WEBP_RESCALER_RFIX), mask);
215*b2055c35SXin Li   const __m128i D3 =
216*b2055c35SXin Li       _mm_and_si128(_mm_slli_epi64(C3, 32 - WEBP_RESCALER_RFIX), mask);
217*b2055c35SXin Li #else
218*b2055c35SXin Li   const __m128i D2 = _mm_and_si128(C2, mask);
219*b2055c35SXin Li   const __m128i D3 = _mm_and_si128(C3, mask);
220*b2055c35SXin Li #endif
221*b2055c35SXin Li   const __m128i E0 = _mm_or_si128(D0, D2);
222*b2055c35SXin Li   const __m128i E1 = _mm_or_si128(D1, D3);
223*b2055c35SXin Li   const __m128i F = _mm_packs_epi32(E0, E1);
224*b2055c35SXin Li   const __m128i G = _mm_packus_epi16(F, F);
225*b2055c35SXin Li   _mm_storel_epi64((__m128i*)dst, G);
226*b2055c35SXin Li }
227*b2055c35SXin Li 
RescalerExportRowExpand_SSE2(WebPRescaler * const wrk)228*b2055c35SXin Li static void RescalerExportRowExpand_SSE2(WebPRescaler* const wrk) {
229*b2055c35SXin Li   int x_out;
230*b2055c35SXin Li   uint8_t* const dst = wrk->dst;
231*b2055c35SXin Li   rescaler_t* const irow = wrk->irow;
232*b2055c35SXin Li   const int x_out_max = wrk->dst_width * wrk->num_channels;
233*b2055c35SXin Li   const rescaler_t* const frow = wrk->frow;
234*b2055c35SXin Li   const __m128i mult = _mm_set_epi32(0, wrk->fy_scale, 0, wrk->fy_scale);
235*b2055c35SXin Li 
236*b2055c35SXin Li   assert(!WebPRescalerOutputDone(wrk));
237*b2055c35SXin Li   assert(wrk->y_accum <= 0 && wrk->y_sub + wrk->y_accum >= 0);
238*b2055c35SXin Li   assert(wrk->y_expand);
239*b2055c35SXin Li   if (wrk->y_accum == 0) {
240*b2055c35SXin Li     for (x_out = 0; x_out + 8 <= x_out_max; x_out += 8) {
241*b2055c35SXin Li       __m128i A0, A1, A2, A3;
242*b2055c35SXin Li       LoadDispatchAndMult_SSE2(frow + x_out, NULL, &A0, &A1, &A2, &A3);
243*b2055c35SXin Li       ProcessRow_SSE2(&A0, &A1, &A2, &A3, &mult, dst + x_out);
244*b2055c35SXin Li     }
245*b2055c35SXin Li     for (; x_out < x_out_max; ++x_out) {
246*b2055c35SXin Li       const uint32_t J = frow[x_out];
247*b2055c35SXin Li       const int v = (int)MULT_FIX(J, wrk->fy_scale);
248*b2055c35SXin Li       dst[x_out] = (v > 255) ? 255u : (uint8_t)v;
249*b2055c35SXin Li     }
250*b2055c35SXin Li   } else {
251*b2055c35SXin Li     const uint32_t B = WEBP_RESCALER_FRAC(-wrk->y_accum, wrk->y_sub);
252*b2055c35SXin Li     const uint32_t A = (uint32_t)(WEBP_RESCALER_ONE - B);
253*b2055c35SXin Li     const __m128i mA = _mm_set_epi32(0, A, 0, A);
254*b2055c35SXin Li     const __m128i mB = _mm_set_epi32(0, B, 0, B);
255*b2055c35SXin Li     const __m128i rounder = _mm_set_epi32(0, ROUNDER, 0, ROUNDER);
256*b2055c35SXin Li     for (x_out = 0; x_out + 8 <= x_out_max; x_out += 8) {
257*b2055c35SXin Li       __m128i A0, A1, A2, A3, B0, B1, B2, B3;
258*b2055c35SXin Li       LoadDispatchAndMult_SSE2(frow + x_out, &mA, &A0, &A1, &A2, &A3);
259*b2055c35SXin Li       LoadDispatchAndMult_SSE2(irow + x_out, &mB, &B0, &B1, &B2, &B3);
260*b2055c35SXin Li       {
261*b2055c35SXin Li         const __m128i C0 = _mm_add_epi64(A0, B0);
262*b2055c35SXin Li         const __m128i C1 = _mm_add_epi64(A1, B1);
263*b2055c35SXin Li         const __m128i C2 = _mm_add_epi64(A2, B2);
264*b2055c35SXin Li         const __m128i C3 = _mm_add_epi64(A3, B3);
265*b2055c35SXin Li         const __m128i D0 = _mm_add_epi64(C0, rounder);
266*b2055c35SXin Li         const __m128i D1 = _mm_add_epi64(C1, rounder);
267*b2055c35SXin Li         const __m128i D2 = _mm_add_epi64(C2, rounder);
268*b2055c35SXin Li         const __m128i D3 = _mm_add_epi64(C3, rounder);
269*b2055c35SXin Li         const __m128i E0 = _mm_srli_epi64(D0, WEBP_RESCALER_RFIX);
270*b2055c35SXin Li         const __m128i E1 = _mm_srli_epi64(D1, WEBP_RESCALER_RFIX);
271*b2055c35SXin Li         const __m128i E2 = _mm_srli_epi64(D2, WEBP_RESCALER_RFIX);
272*b2055c35SXin Li         const __m128i E3 = _mm_srli_epi64(D3, WEBP_RESCALER_RFIX);
273*b2055c35SXin Li         ProcessRow_SSE2(&E0, &E1, &E2, &E3, &mult, dst + x_out);
274*b2055c35SXin Li       }
275*b2055c35SXin Li     }
276*b2055c35SXin Li     for (; x_out < x_out_max; ++x_out) {
277*b2055c35SXin Li       const uint64_t I = (uint64_t)A * frow[x_out]
278*b2055c35SXin Li                        + (uint64_t)B * irow[x_out];
279*b2055c35SXin Li       const uint32_t J = (uint32_t)((I + ROUNDER) >> WEBP_RESCALER_RFIX);
280*b2055c35SXin Li       const int v = (int)MULT_FIX(J, wrk->fy_scale);
281*b2055c35SXin Li       dst[x_out] = (v > 255) ? 255u : (uint8_t)v;
282*b2055c35SXin Li     }
283*b2055c35SXin Li   }
284*b2055c35SXin Li }
285*b2055c35SXin Li 
RescalerExportRowShrink_SSE2(WebPRescaler * const wrk)286*b2055c35SXin Li static void RescalerExportRowShrink_SSE2(WebPRescaler* const wrk) {
287*b2055c35SXin Li   int x_out;
288*b2055c35SXin Li   uint8_t* const dst = wrk->dst;
289*b2055c35SXin Li   rescaler_t* const irow = wrk->irow;
290*b2055c35SXin Li   const int x_out_max = wrk->dst_width * wrk->num_channels;
291*b2055c35SXin Li   const rescaler_t* const frow = wrk->frow;
292*b2055c35SXin Li   const uint32_t yscale = wrk->fy_scale * (-wrk->y_accum);
293*b2055c35SXin Li   assert(!WebPRescalerOutputDone(wrk));
294*b2055c35SXin Li   assert(wrk->y_accum <= 0);
295*b2055c35SXin Li   assert(!wrk->y_expand);
296*b2055c35SXin Li   if (yscale) {
297*b2055c35SXin Li     const int scale_xy = wrk->fxy_scale;
298*b2055c35SXin Li     const __m128i mult_xy = _mm_set_epi32(0, scale_xy, 0, scale_xy);
299*b2055c35SXin Li     const __m128i mult_y = _mm_set_epi32(0, yscale, 0, yscale);
300*b2055c35SXin Li     for (x_out = 0; x_out + 8 <= x_out_max; x_out += 8) {
301*b2055c35SXin Li       __m128i A0, A1, A2, A3, B0, B1, B2, B3;
302*b2055c35SXin Li       LoadDispatchAndMult_SSE2(irow + x_out, NULL, &A0, &A1, &A2, &A3);
303*b2055c35SXin Li       LoadDispatchAndMult_SSE2(frow + x_out, &mult_y, &B0, &B1, &B2, &B3);
304*b2055c35SXin Li       {
305*b2055c35SXin Li         const __m128i D0 = _mm_srli_epi64(B0, WEBP_RESCALER_RFIX);   // = frac
306*b2055c35SXin Li         const __m128i D1 = _mm_srli_epi64(B1, WEBP_RESCALER_RFIX);
307*b2055c35SXin Li         const __m128i D2 = _mm_srli_epi64(B2, WEBP_RESCALER_RFIX);
308*b2055c35SXin Li         const __m128i D3 = _mm_srli_epi64(B3, WEBP_RESCALER_RFIX);
309*b2055c35SXin Li         const __m128i E0 = _mm_sub_epi64(A0, D0);   // irow[x] - frac
310*b2055c35SXin Li         const __m128i E1 = _mm_sub_epi64(A1, D1);
311*b2055c35SXin Li         const __m128i E2 = _mm_sub_epi64(A2, D2);
312*b2055c35SXin Li         const __m128i E3 = _mm_sub_epi64(A3, D3);
313*b2055c35SXin Li         const __m128i F2 = _mm_slli_epi64(D2, 32);
314*b2055c35SXin Li         const __m128i F3 = _mm_slli_epi64(D3, 32);
315*b2055c35SXin Li         const __m128i G0 = _mm_or_si128(D0, F2);
316*b2055c35SXin Li         const __m128i G1 = _mm_or_si128(D1, F3);
317*b2055c35SXin Li         _mm_storeu_si128((__m128i*)(irow + x_out + 0), G0);
318*b2055c35SXin Li         _mm_storeu_si128((__m128i*)(irow + x_out + 4), G1);
319*b2055c35SXin Li         ProcessRow_SSE2(&E0, &E1, &E2, &E3, &mult_xy, dst + x_out);
320*b2055c35SXin Li       }
321*b2055c35SXin Li     }
322*b2055c35SXin Li     for (; x_out < x_out_max; ++x_out) {
323*b2055c35SXin Li       const uint32_t frac = (int)MULT_FIX_FLOOR(frow[x_out], yscale);
324*b2055c35SXin Li       const int v = (int)MULT_FIX(irow[x_out] - frac, wrk->fxy_scale);
325*b2055c35SXin Li       dst[x_out] = (v > 255) ? 255u : (uint8_t)v;
326*b2055c35SXin Li       irow[x_out] = frac;   // new fractional start
327*b2055c35SXin Li     }
328*b2055c35SXin Li   } else {
329*b2055c35SXin Li     const uint32_t scale = wrk->fxy_scale;
330*b2055c35SXin Li     const __m128i mult = _mm_set_epi32(0, scale, 0, scale);
331*b2055c35SXin Li     const __m128i zero = _mm_setzero_si128();
332*b2055c35SXin Li     for (x_out = 0; x_out + 8 <= x_out_max; x_out += 8) {
333*b2055c35SXin Li       __m128i A0, A1, A2, A3;
334*b2055c35SXin Li       LoadDispatchAndMult_SSE2(irow + x_out, NULL, &A0, &A1, &A2, &A3);
335*b2055c35SXin Li       _mm_storeu_si128((__m128i*)(irow + x_out + 0), zero);
336*b2055c35SXin Li       _mm_storeu_si128((__m128i*)(irow + x_out + 4), zero);
337*b2055c35SXin Li       ProcessRow_SSE2(&A0, &A1, &A2, &A3, &mult, dst + x_out);
338*b2055c35SXin Li     }
339*b2055c35SXin Li     for (; x_out < x_out_max; ++x_out) {
340*b2055c35SXin Li       const int v = (int)MULT_FIX(irow[x_out], scale);
341*b2055c35SXin Li       dst[x_out] = (v > 255) ? 255u : (uint8_t)v;
342*b2055c35SXin Li       irow[x_out] = 0;
343*b2055c35SXin Li     }
344*b2055c35SXin Li   }
345*b2055c35SXin Li }
346*b2055c35SXin Li 
347*b2055c35SXin Li #undef MULT_FIX_FLOOR
348*b2055c35SXin Li #undef MULT_FIX
349*b2055c35SXin Li #undef ROUNDER
350*b2055c35SXin Li 
351*b2055c35SXin Li //------------------------------------------------------------------------------
352*b2055c35SXin Li 
353*b2055c35SXin Li extern void WebPRescalerDspInitSSE2(void);
354*b2055c35SXin Li 
WebPRescalerDspInitSSE2(void)355*b2055c35SXin Li WEBP_TSAN_IGNORE_FUNCTION void WebPRescalerDspInitSSE2(void) {
356*b2055c35SXin Li   WebPRescalerImportRowExpand = RescalerImportRowExpand_SSE2;
357*b2055c35SXin Li   WebPRescalerImportRowShrink = RescalerImportRowShrink_SSE2;
358*b2055c35SXin Li   WebPRescalerExportRowExpand = RescalerExportRowExpand_SSE2;
359*b2055c35SXin Li   WebPRescalerExportRowShrink = RescalerExportRowShrink_SSE2;
360*b2055c35SXin Li }
361*b2055c35SXin Li 
362*b2055c35SXin Li #else  // !WEBP_USE_SSE2
363*b2055c35SXin Li 
364*b2055c35SXin Li WEBP_DSP_INIT_STUB(WebPRescalerDspInitSSE2)
365*b2055c35SXin Li 
366*b2055c35SXin Li #endif  // WEBP_USE_SSE2
367