row_gcc.cc 220 KB
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// VERSION 2
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/*
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 *  Copyright 2011 The LibYuv Project Authors. All rights reserved.
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 *
 *  Use of this source code is governed by a BSD-style license
 *  that can be found in the LICENSE file in the root of the source
 *  tree. An additional intellectual property rights grant can be found
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 *  in the file PATENTS. All contributing project authors may
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 *  be found in the AUTHORS file in the root of the source tree.
 */

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#include "libyuv/row.h"
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#ifdef __cplusplus
namespace libyuv {
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extern "C" {
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#endif
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// This module is for GCC x86 and x64.
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#if !defined(LIBYUV_DISABLE_X86) && \
    (defined(__x86_64__) || (defined(__i386__) && !defined(_MSC_VER)))
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#if defined(HAS_ARGBTOYROW_SSSE3) || defined(HAS_ARGBGRAYROW_SSSE3)
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// Constants for ARGB
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static vec8 kARGBToY = {
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  13, 65, 33, 0, 13, 65, 33, 0, 13, 65, 33, 0, 13, 65, 33, 0
};

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// JPeg full range.
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static vec8 kARGBToYJ = {
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  15, 75, 38, 0, 15, 75, 38, 0, 15, 75, 38, 0, 15, 75, 38, 0
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};
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#endif  // defined(HAS_ARGBTOYROW_SSSE3) || defined(HAS_ARGBGRAYROW_SSSE3)

#if defined(HAS_ARGBTOYROW_SSSE3) || defined(HAS_I422TOARGBROW_SSSE3)
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static vec8 kARGBToU = {
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  112, -74, -38, 0, 112, -74, -38, 0, 112, -74, -38, 0, 112, -74, -38, 0
};

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static vec8 kARGBToUJ = {
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  127, -84, -43, 0, 127, -84, -43, 0, 127, -84, -43, 0, 127, -84, -43, 0
};

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static vec8 kARGBToV = {
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  -18, -94, 112, 0, -18, -94, 112, 0, -18, -94, 112, 0, -18, -94, 112, 0,
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};
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static vec8 kARGBToVJ = {
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  -20, -107, 127, 0, -20, -107, 127, 0, -20, -107, 127, 0, -20, -107, 127, 0
};

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// Constants for BGRA
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static vec8 kBGRAToY = {
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  0, 33, 65, 13, 0, 33, 65, 13, 0, 33, 65, 13, 0, 33, 65, 13
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};

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static vec8 kBGRAToU = {
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  0, -38, -74, 112, 0, -38, -74, 112, 0, -38, -74, 112, 0, -38, -74, 112
};
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static vec8 kBGRAToV = {
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  0, 112, -94, -18, 0, 112, -94, -18, 0, 112, -94, -18, 0, 112, -94, -18
};

// Constants for ABGR
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static vec8 kABGRToY = {
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  33, 65, 13, 0, 33, 65, 13, 0, 33, 65, 13, 0, 33, 65, 13, 0
};

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static vec8 kABGRToU = {
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  -38, -74, 112, 0, -38, -74, 112, 0, -38, -74, 112, 0, -38, -74, 112, 0
};

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static vec8 kABGRToV = {
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  112, -94, -18, 0, 112, -94, -18, 0, 112, -94, -18, 0, 112, -94, -18, 0
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};

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// Constants for RGBA.
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static vec8 kRGBAToY = {
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  0, 13, 65, 33, 0, 13, 65, 33, 0, 13, 65, 33, 0, 13, 65, 33
};

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static vec8 kRGBAToU = {
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  0, 112, -74, -38, 0, 112, -74, -38, 0, 112, -74, -38, 0, 112, -74, -38
};

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static vec8 kRGBAToV = {
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  0, -18, -94, 112, 0, -18, -94, 112, 0, -18, -94, 112, 0, -18, -94, 112
};

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static uvec8 kAddY16 = {
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  16u, 16u, 16u, 16u, 16u, 16u, 16u, 16u, 16u, 16u, 16u, 16u, 16u, 16u, 16u, 16u
};

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// 7 bit fixed point 0.5.
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static vec16 kAddYJ64 = {
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  64, 64, 64, 64, 64, 64, 64, 64
};

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static uvec8 kAddUV128 = {
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  128u, 128u, 128u, 128u, 128u, 128u, 128u, 128u,
  128u, 128u, 128u, 128u, 128u, 128u, 128u, 128u
};

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static uvec16 kAddUVJ128 = {
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  0x8080u, 0x8080u, 0x8080u, 0x8080u, 0x8080u, 0x8080u, 0x8080u, 0x8080u
};
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#endif  // defined(HAS_ARGBTOYROW_SSSE3) || defined(HAS_I422TOARGBROW_SSSE3)

#ifdef HAS_RGB24TOARGBROW_SSSE3
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// Shuffle table for converting RGB24 to ARGB.
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static uvec8 kShuffleMaskRGB24ToARGB = {
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  0u, 1u, 2u, 12u, 3u, 4u, 5u, 13u, 6u, 7u, 8u, 14u, 9u, 10u, 11u, 15u
};

// Shuffle table for converting RAW to ARGB.
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static uvec8 kShuffleMaskRAWToARGB = {
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  2u, 1u, 0u, 12u, 5u, 4u, 3u, 13u, 8u, 7u, 6u, 14u, 11u, 10u, 9u, 15u
};

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// Shuffle table for converting ARGB to RGB24.
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static uvec8 kShuffleMaskARGBToRGB24 = {
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  0u, 1u, 2u, 4u, 5u, 6u, 8u, 9u, 10u, 12u, 13u, 14u, 128u, 128u, 128u, 128u
};

// Shuffle table for converting ARGB to RAW.
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static uvec8 kShuffleMaskARGBToRAW = {
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  2u, 1u, 0u, 6u, 5u, 4u, 10u, 9u, 8u, 14u, 13u, 12u, 128u, 128u, 128u, 128u
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};

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// Shuffle table for converting ARGBToRGB24 for I422ToRGB24.  First 8 + next 4
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static uvec8 kShuffleMaskARGBToRGB24_0 = {
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  0u, 1u, 2u, 4u, 5u, 6u, 8u, 9u, 128u, 128u, 128u, 128u, 10u, 12u, 13u, 14u
};

// Shuffle table for converting ARGB to RAW.
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static uvec8 kShuffleMaskARGBToRAW_0 = {
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  2u, 1u, 0u, 6u, 5u, 4u, 10u, 9u, 128u, 128u, 128u, 128u, 8u, 14u, 13u, 12u
};
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#endif  // HAS_RGB24TOARGBROW_SSSE3
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#ifdef HAS_J400TOARGBROW_SSE2
void J400ToARGBRow_SSE2(const uint8* src_y, uint8* dst_argb, int pix) {
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  asm volatile (
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    "pcmpeqb   %%xmm5,%%xmm5                   \n"
    "pslld     $0x18,%%xmm5                    \n"
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    LABELALIGN
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  "1:                                          \n"
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    "movq      " MEMACCESS(0) ",%%xmm0         \n"
    "lea       " MEMLEA(0x8,0) ",%0            \n"
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    "punpcklbw %%xmm0,%%xmm0                   \n"
    "movdqa    %%xmm0,%%xmm1                   \n"
    "punpcklwd %%xmm0,%%xmm0                   \n"
    "punpckhwd %%xmm1,%%xmm1                   \n"
    "por       %%xmm5,%%xmm0                   \n"
    "por       %%xmm5,%%xmm1                   \n"
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    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
    "movdqu    %%xmm1," MEMACCESS2(0x10,1) "   \n"
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    "lea       " MEMLEA(0x20,1) ",%1           \n"
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    "sub       $0x8,%2                         \n"
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    "jg        1b                              \n"
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  : "+r"(src_y),     // %0
    "+r"(dst_argb),  // %1
    "+r"(pix)        // %2
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  :: "memory", "cc", "xmm0", "xmm1", "xmm5"
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  );
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}
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#endif  // HAS_J400TOARGBROW_SSE2
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#ifdef HAS_RGB24TOARGBROW_SSSE3
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void RGB24ToARGBRow_SSSE3(const uint8* src_rgb24, uint8* dst_argb, int pix) {
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  asm volatile (
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    "pcmpeqb   %%xmm5,%%xmm5                   \n"  // generate mask 0xff000000
    "pslld     $0x18,%%xmm5                    \n"
    "movdqa    %3,%%xmm4                       \n"
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    LABELALIGN
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  "1:                                          \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
    "movdqu    " MEMACCESS2(0x20,0) ",%%xmm3   \n"
    "lea       " MEMLEA(0x30,0) ",%0           \n"
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    "movdqa    %%xmm3,%%xmm2                   \n"
    "palignr   $0x8,%%xmm1,%%xmm2              \n"
    "pshufb    %%xmm4,%%xmm2                   \n"
    "por       %%xmm5,%%xmm2                   \n"
    "palignr   $0xc,%%xmm0,%%xmm1              \n"
    "pshufb    %%xmm4,%%xmm0                   \n"
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    "movdqu    %%xmm2," MEMACCESS2(0x20,1) "   \n"
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    "por       %%xmm5,%%xmm0                   \n"
    "pshufb    %%xmm4,%%xmm1                   \n"
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    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
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    "por       %%xmm5,%%xmm1                   \n"
    "palignr   $0x4,%%xmm3,%%xmm3              \n"
    "pshufb    %%xmm4,%%xmm3                   \n"
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    "movdqu    %%xmm1," MEMACCESS2(0x10,1) "   \n"
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    "por       %%xmm5,%%xmm3                   \n"
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    "movdqu    %%xmm3," MEMACCESS2(0x30,1) "   \n"
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    "lea       " MEMLEA(0x40,1) ",%1           \n"
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    "sub       $0x10,%2                        \n"
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    "jg        1b                              \n"
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  : "+r"(src_rgb24),  // %0
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    "+r"(dst_argb),  // %1
    "+r"(pix)        // %2
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  : "m"(kShuffleMaskRGB24ToARGB)  // %3
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  : "memory", "cc" , "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5"
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  );
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}

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void RAWToARGBRow_SSSE3(const uint8* src_raw, uint8* dst_argb, int pix) {
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  asm volatile (
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    "pcmpeqb   %%xmm5,%%xmm5                   \n"  // generate mask 0xff000000
    "pslld     $0x18,%%xmm5                    \n"
    "movdqa    %3,%%xmm4                       \n"
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    LABELALIGN
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  "1:                                          \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
    "movdqu    " MEMACCESS2(0x20,0) ",%%xmm3   \n"
    "lea       " MEMLEA(0x30,0) ",%0           \n"
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    "movdqa    %%xmm3,%%xmm2                   \n"
    "palignr   $0x8,%%xmm1,%%xmm2              \n"
    "pshufb    %%xmm4,%%xmm2                   \n"
    "por       %%xmm5,%%xmm2                   \n"
    "palignr   $0xc,%%xmm0,%%xmm1              \n"
    "pshufb    %%xmm4,%%xmm0                   \n"
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    "movdqu    %%xmm2," MEMACCESS2(0x20,1) "   \n"
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    "por       %%xmm5,%%xmm0                   \n"
    "pshufb    %%xmm4,%%xmm1                   \n"
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    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
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    "por       %%xmm5,%%xmm1                   \n"
    "palignr   $0x4,%%xmm3,%%xmm3              \n"
    "pshufb    %%xmm4,%%xmm3                   \n"
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    "movdqu    %%xmm1," MEMACCESS2(0x10,1) "   \n"
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    "por       %%xmm5,%%xmm3                   \n"
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    "movdqu    %%xmm3," MEMACCESS2(0x30,1) "   \n"
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    "lea       " MEMLEA(0x40,1) ",%1           \n"
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    "sub       $0x10,%2                        \n"
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    "jg        1b                              \n"
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  : "+r"(src_raw),   // %0
    "+r"(dst_argb),  // %1
    "+r"(pix)        // %2
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  : "m"(kShuffleMaskRAWToARGB)  // %3
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  : "memory", "cc", "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5"
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  );
}

void RGB565ToARGBRow_SSE2(const uint8* src, uint8* dst, int pix) {
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  asm volatile (
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    "mov       $0x1080108,%%eax                \n"
    "movd      %%eax,%%xmm5                    \n"
    "pshufd    $0x0,%%xmm5,%%xmm5              \n"
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    "mov       $0x20802080,%%eax               \n"
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    "movd      %%eax,%%xmm6                    \n"
    "pshufd    $0x0,%%xmm6,%%xmm6              \n"
    "pcmpeqb   %%xmm3,%%xmm3                   \n"
    "psllw     $0xb,%%xmm3                     \n"
    "pcmpeqb   %%xmm4,%%xmm4                   \n"
    "psllw     $0xa,%%xmm4                     \n"
    "psrlw     $0x5,%%xmm4                     \n"
    "pcmpeqb   %%xmm7,%%xmm7                   \n"
    "psllw     $0x8,%%xmm7                     \n"
    "sub       %0,%1                           \n"
    "sub       %0,%1                           \n"
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    LABELALIGN
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  "1:                                          \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
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    "movdqa    %%xmm0,%%xmm1                   \n"
    "movdqa    %%xmm0,%%xmm2                   \n"
    "pand      %%xmm3,%%xmm1                   \n"
    "psllw     $0xb,%%xmm2                     \n"
    "pmulhuw   %%xmm5,%%xmm1                   \n"
    "pmulhuw   %%xmm5,%%xmm2                   \n"
    "psllw     $0x8,%%xmm1                     \n"
    "por       %%xmm2,%%xmm1                   \n"
    "pand      %%xmm4,%%xmm0                   \n"
    "pmulhuw   %%xmm6,%%xmm0                   \n"
    "por       %%xmm7,%%xmm0                   \n"
    "movdqa    %%xmm1,%%xmm2                   \n"
    "punpcklbw %%xmm0,%%xmm1                   \n"
    "punpckhbw %%xmm0,%%xmm2                   \n"
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    MEMOPMEM(movdqu,xmm1,0x00,1,0,2)           //  movdqu  %%xmm1,(%1,%0,2)
    MEMOPMEM(movdqu,xmm2,0x10,1,0,2)           //  movdqu  %%xmm2,0x10(%1,%0,2)
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    "lea       " MEMLEA(0x10,0) ",%0           \n"
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    "sub       $0x8,%2                         \n"
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    "jg        1b                              \n"
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  : "+r"(src),  // %0
    "+r"(dst),  // %1
    "+r"(pix)   // %2
  :
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  : "memory", "cc", "eax", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5", "xmm6", "xmm7"
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  );
}

void ARGB1555ToARGBRow_SSE2(const uint8* src, uint8* dst, int pix) {
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  asm volatile (
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    "mov       $0x1080108,%%eax                \n"
    "movd      %%eax,%%xmm5                    \n"
    "pshufd    $0x0,%%xmm5,%%xmm5              \n"
    "mov       $0x42004200,%%eax               \n"
    "movd      %%eax,%%xmm6                    \n"
    "pshufd    $0x0,%%xmm6,%%xmm6              \n"
    "pcmpeqb   %%xmm3,%%xmm3                   \n"
    "psllw     $0xb,%%xmm3                     \n"
    "movdqa    %%xmm3,%%xmm4                   \n"
    "psrlw     $0x6,%%xmm4                     \n"
    "pcmpeqb   %%xmm7,%%xmm7                   \n"
    "psllw     $0x8,%%xmm7                     \n"
    "sub       %0,%1                           \n"
    "sub       %0,%1                           \n"
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    LABELALIGN
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  "1:                                          \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
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    "movdqa    %%xmm0,%%xmm1                   \n"
    "movdqa    %%xmm0,%%xmm2                   \n"
    "psllw     $0x1,%%xmm1                     \n"
    "psllw     $0xb,%%xmm2                     \n"
    "pand      %%xmm3,%%xmm1                   \n"
    "pmulhuw   %%xmm5,%%xmm2                   \n"
    "pmulhuw   %%xmm5,%%xmm1                   \n"
    "psllw     $0x8,%%xmm1                     \n"
    "por       %%xmm2,%%xmm1                   \n"
    "movdqa    %%xmm0,%%xmm2                   \n"
    "pand      %%xmm4,%%xmm0                   \n"
    "psraw     $0x8,%%xmm2                     \n"
    "pmulhuw   %%xmm6,%%xmm0                   \n"
    "pand      %%xmm7,%%xmm2                   \n"
    "por       %%xmm2,%%xmm0                   \n"
    "movdqa    %%xmm1,%%xmm2                   \n"
    "punpcklbw %%xmm0,%%xmm1                   \n"
    "punpckhbw %%xmm0,%%xmm2                   \n"
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    MEMOPMEM(movdqu,xmm1,0x00,1,0,2)           //  movdqu  %%xmm1,(%1,%0,2)
    MEMOPMEM(movdqu,xmm2,0x10,1,0,2)           //  movdqu  %%xmm2,0x10(%1,%0,2)
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    "lea       " MEMLEA(0x10,0) ",%0           \n"
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    "sub       $0x8,%2                         \n"
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    "jg        1b                              \n"
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  : "+r"(src),  // %0
    "+r"(dst),  // %1
    "+r"(pix)   // %2
  :
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  : "memory", "cc", "eax", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5", "xmm6", "xmm7"
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  );
}

void ARGB4444ToARGBRow_SSE2(const uint8* src, uint8* dst, int pix) {
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  asm volatile (
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    "mov       $0xf0f0f0f,%%eax                \n"
    "movd      %%eax,%%xmm4                    \n"
    "pshufd    $0x0,%%xmm4,%%xmm4              \n"
    "movdqa    %%xmm4,%%xmm5                   \n"
    "pslld     $0x4,%%xmm5                     \n"
    "sub       %0,%1                           \n"
    "sub       %0,%1                           \n"
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    LABELALIGN
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  "1:                                          \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
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    "movdqa    %%xmm0,%%xmm2                   \n"
    "pand      %%xmm4,%%xmm0                   \n"
    "pand      %%xmm5,%%xmm2                   \n"
    "movdqa    %%xmm0,%%xmm1                   \n"
    "movdqa    %%xmm2,%%xmm3                   \n"
    "psllw     $0x4,%%xmm1                     \n"
    "psrlw     $0x4,%%xmm3                     \n"
    "por       %%xmm1,%%xmm0                   \n"
    "por       %%xmm3,%%xmm2                   \n"
    "movdqa    %%xmm0,%%xmm1                   \n"
    "punpcklbw %%xmm2,%%xmm0                   \n"
    "punpckhbw %%xmm2,%%xmm1                   \n"
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    MEMOPMEM(movdqu,xmm0,0x00,1,0,2)           //  movdqu  %%xmm0,(%1,%0,2)
    MEMOPMEM(movdqu,xmm1,0x10,1,0,2)           //  movdqu  %%xmm1,0x10(%1,%0,2)
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    "lea       " MEMLEA(0x10,0) ",%0           \n"
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    "sub       $0x8,%2                         \n"
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    "jg        1b                              \n"
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  : "+r"(src),  // %0
    "+r"(dst),  // %1
    "+r"(pix)   // %2
  :
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  : "memory", "cc", "eax", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5"
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  );
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}

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void ARGBToRGB24Row_SSSE3(const uint8* src, uint8* dst, int pix) {
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  asm volatile (
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    "movdqa    %3,%%xmm6                       \n"
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    LABELALIGN
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  "1:                                          \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
    "movdqu    " MEMACCESS2(0x20,0) ",%%xmm2   \n"
    "movdqu    " MEMACCESS2(0x30,0) ",%%xmm3   \n"
    "lea       " MEMLEA(0x40,0) ",%0           \n"
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    "pshufb    %%xmm6,%%xmm0                   \n"
    "pshufb    %%xmm6,%%xmm1                   \n"
    "pshufb    %%xmm6,%%xmm2                   \n"
    "pshufb    %%xmm6,%%xmm3                   \n"
    "movdqa    %%xmm1,%%xmm4                   \n"
    "psrldq    $0x4,%%xmm1                     \n"
    "pslldq    $0xc,%%xmm4                     \n"
    "movdqa    %%xmm2,%%xmm5                   \n"
    "por       %%xmm4,%%xmm0                   \n"
    "pslldq    $0x8,%%xmm5                     \n"
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    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
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    "por       %%xmm5,%%xmm1                   \n"
    "psrldq    $0x8,%%xmm2                     \n"
    "pslldq    $0x4,%%xmm3                     \n"
    "por       %%xmm3,%%xmm2                   \n"
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    "movdqu    %%xmm1," MEMACCESS2(0x10,1) "   \n"
    "movdqu    %%xmm2," MEMACCESS2(0x20,1) "   \n"
    "lea       " MEMLEA(0x30,1) ",%1           \n"
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    "sub       $0x10,%2                        \n"
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    "jg        1b                              \n"
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  : "+r"(src),  // %0
    "+r"(dst),  // %1
    "+r"(pix)   // %2
  : "m"(kShuffleMaskARGBToRGB24)  // %3
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  : "memory", "cc", "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5", "xmm6"
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  );
}

void ARGBToRAWRow_SSSE3(const uint8* src, uint8* dst, int pix) {
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  asm volatile (
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    "movdqa    %3,%%xmm6                       \n"
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    LABELALIGN
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  "1:                                          \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
    "movdqu    " MEMACCESS2(0x20,0) ",%%xmm2   \n"
    "movdqu    " MEMACCESS2(0x30,0) ",%%xmm3   \n"
    "lea       " MEMLEA(0x40,0) ",%0           \n"
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    "pshufb    %%xmm6,%%xmm0                   \n"
    "pshufb    %%xmm6,%%xmm1                   \n"
    "pshufb    %%xmm6,%%xmm2                   \n"
    "pshufb    %%xmm6,%%xmm3                   \n"
    "movdqa    %%xmm1,%%xmm4                   \n"
    "psrldq    $0x4,%%xmm1                     \n"
    "pslldq    $0xc,%%xmm4                     \n"
    "movdqa    %%xmm2,%%xmm5                   \n"
    "por       %%xmm4,%%xmm0                   \n"
    "pslldq    $0x8,%%xmm5                     \n"
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    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
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    "por       %%xmm5,%%xmm1                   \n"
    "psrldq    $0x8,%%xmm2                     \n"
    "pslldq    $0x4,%%xmm3                     \n"
    "por       %%xmm3,%%xmm2                   \n"
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    "movdqu    %%xmm1," MEMACCESS2(0x10,1) "   \n"
    "movdqu    %%xmm2," MEMACCESS2(0x20,1) "   \n"
    "lea       " MEMLEA(0x30,1) ",%1           \n"
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    "sub       $0x10,%2                        \n"
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    "jg        1b                              \n"
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  : "+r"(src),  // %0
    "+r"(dst),  // %1
    "+r"(pix)   // %2
  : "m"(kShuffleMaskARGBToRAW)  // %3
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  : "memory", "cc", "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5", "xmm6"
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  );
}

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void ARGBToRGB565Row_SSE2(const uint8* src, uint8* dst, int pix) {
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  asm volatile (
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    "pcmpeqb   %%xmm3,%%xmm3                   \n"
    "psrld     $0x1b,%%xmm3                    \n"
    "pcmpeqb   %%xmm4,%%xmm4                   \n"
    "psrld     $0x1a,%%xmm4                    \n"
    "pslld     $0x5,%%xmm4                     \n"
    "pcmpeqb   %%xmm5,%%xmm5                   \n"
    "pslld     $0xb,%%xmm5                     \n"
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    LABELALIGN
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  "1:                                          \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
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    "movdqa    %%xmm0,%%xmm1                   \n"
    "movdqa    %%xmm0,%%xmm2                   \n"
    "pslld     $0x8,%%xmm0                     \n"
    "psrld     $0x3,%%xmm1                     \n"
    "psrld     $0x5,%%xmm2                     \n"
    "psrad     $0x10,%%xmm0                    \n"
    "pand      %%xmm3,%%xmm1                   \n"
    "pand      %%xmm4,%%xmm2                   \n"
    "pand      %%xmm5,%%xmm0                   \n"
    "por       %%xmm2,%%xmm1                   \n"
    "por       %%xmm1,%%xmm0                   \n"
    "packssdw  %%xmm0,%%xmm0                   \n"
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    "lea       " MEMLEA(0x10,0) ",%0           \n"
    "movq      %%xmm0," MEMACCESS(1) "         \n"
    "lea       " MEMLEA(0x8,1) ",%1            \n"
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    "sub       $0x4,%2                         \n"
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    "jg        1b                              \n"
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  : "+r"(src),  // %0
    "+r"(dst),  // %1
    "+r"(pix)   // %2
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  :: "memory", "cc", "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5"
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  );
}

void ARGBToARGB1555Row_SSE2(const uint8* src, uint8* dst, int pix) {
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  asm volatile (
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    "pcmpeqb   %%xmm4,%%xmm4                   \n"
    "psrld     $0x1b,%%xmm4                    \n"
    "movdqa    %%xmm4,%%xmm5                   \n"
    "pslld     $0x5,%%xmm5                     \n"
    "movdqa    %%xmm4,%%xmm6                   \n"
    "pslld     $0xa,%%xmm6                     \n"
    "pcmpeqb   %%xmm7,%%xmm7                   \n"
    "pslld     $0xf,%%xmm7                     \n"
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    LABELALIGN
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  "1:                                          \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
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    "movdqa    %%xmm0,%%xmm1                   \n"
    "movdqa    %%xmm0,%%xmm2                   \n"
    "movdqa    %%xmm0,%%xmm3                   \n"
    "psrad     $0x10,%%xmm0                    \n"
    "psrld     $0x3,%%xmm1                     \n"
    "psrld     $0x6,%%xmm2                     \n"
    "psrld     $0x9,%%xmm3                     \n"
    "pand      %%xmm7,%%xmm0                   \n"
    "pand      %%xmm4,%%xmm1                   \n"
    "pand      %%xmm5,%%xmm2                   \n"
    "pand      %%xmm6,%%xmm3                   \n"
    "por       %%xmm1,%%xmm0                   \n"
    "por       %%xmm3,%%xmm2                   \n"
    "por       %%xmm2,%%xmm0                   \n"
    "packssdw  %%xmm0,%%xmm0                   \n"
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    "lea       " MEMLEA(0x10,0) ",%0           \n"
    "movq      %%xmm0," MEMACCESS(1) "         \n"
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    "lea       " MEMLEA(0x8,1) ",%1            \n"
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    "sub       $0x4,%2                         \n"
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    "jg        1b                              \n"
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  : "+r"(src),  // %0
    "+r"(dst),  // %1
    "+r"(pix)   // %2
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  :: "memory", "cc",
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5", "xmm6", "xmm7"
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  );
}

void ARGBToARGB4444Row_SSE2(const uint8* src, uint8* dst, int pix) {
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  asm volatile (
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    "pcmpeqb   %%xmm4,%%xmm4                   \n"
    "psllw     $0xc,%%xmm4                     \n"
    "movdqa    %%xmm4,%%xmm3                   \n"
    "psrlw     $0x8,%%xmm3                     \n"
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    LABELALIGN
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  "1:                                          \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
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    "movdqa    %%xmm0,%%xmm1                   \n"
    "pand      %%xmm3,%%xmm0                   \n"
    "pand      %%xmm4,%%xmm1                   \n"
    "psrlq     $0x4,%%xmm0                     \n"
    "psrlq     $0x8,%%xmm1                     \n"
    "por       %%xmm1,%%xmm0                   \n"
    "packuswb  %%xmm0,%%xmm0                   \n"
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    "lea       " MEMLEA(0x10,0) ",%0           \n"
    "movq      %%xmm0," MEMACCESS(1) "         \n"
    "lea       " MEMLEA(0x8,1) ",%1            \n"
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    "sub       $0x4,%2                         \n"
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    "jg        1b                              \n"
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  : "+r"(src),  // %0
    "+r"(dst),  // %1
    "+r"(pix)   // %2
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  :: "memory", "cc", "xmm0", "xmm1", "xmm2", "xmm3", "xmm4"
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  );
}
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#endif  // HAS_RGB24TOARGBROW_SSSE3
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#ifdef HAS_ARGBTOYROW_SSSE3
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// Convert 16 ARGB pixels (64 bytes) to 16 Y values.
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void ARGBToYRow_SSSE3(const uint8* src_argb, uint8* dst_y, int pix) {
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  asm volatile (
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    "movdqa    %3,%%xmm4                       \n"
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    "movdqa    %4,%%xmm5                       \n"
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    LABELALIGN
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  "1:                                          \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
    "movdqu    " MEMACCESS2(0x20,0) ",%%xmm2   \n"
    "movdqu    " MEMACCESS2(0x30,0) ",%%xmm3   \n"
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    "pmaddubsw %%xmm4,%%xmm0                   \n"
    "pmaddubsw %%xmm4,%%xmm1                   \n"
    "pmaddubsw %%xmm4,%%xmm2                   \n"
    "pmaddubsw %%xmm4,%%xmm3                   \n"
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    "lea       " MEMLEA(0x40,0) ",%0           \n"
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    "phaddw    %%xmm1,%%xmm0                   \n"
    "phaddw    %%xmm3,%%xmm2                   \n"
    "psrlw     $0x7,%%xmm0                     \n"
    "psrlw     $0x7,%%xmm2                     \n"
    "packuswb  %%xmm2,%%xmm0                   \n"
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    "paddb     %%xmm5,%%xmm0                   \n"
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    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
    "lea       " MEMLEA(0x10,1) ",%1           \n"
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    "sub       $0x10,%2                        \n"
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    "jg        1b                              \n"
  : "+r"(src_argb),  // %0
    "+r"(dst_y),     // %1
    "+r"(pix)        // %2
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  : "m"(kARGBToY),   // %3
    "m"(kAddY16)     // %4
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  : "memory", "cc", "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5"
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  );
}
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#endif  // HAS_ARGBTOYROW_SSSE3
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#ifdef HAS_ARGBTOYJROW_SSSE3
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// Convert 16 ARGB pixels (64 bytes) to 16 YJ values.
// Same as ARGBToYRow but different coefficients, no add 16, but do rounding.
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void ARGBToYJRow_SSSE3(const uint8* src_argb, uint8* dst_y, int pix) {
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  asm volatile (
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    "movdqa    %3,%%xmm4                       \n"
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    "movdqa    %4,%%xmm5                       \n"
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    LABELALIGN
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  "1:                                          \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
    "movdqu    " MEMACCESS2(0x20,0) ",%%xmm2   \n"
    "movdqu    " MEMACCESS2(0x30,0) ",%%xmm3   \n"
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    "pmaddubsw %%xmm4,%%xmm0                   \n"
    "pmaddubsw %%xmm4,%%xmm1                   \n"
    "pmaddubsw %%xmm4,%%xmm2                   \n"
    "pmaddubsw %%xmm4,%%xmm3                   \n"
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    "lea       " MEMLEA(0x40,0) ",%0           \n"
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    "phaddw    %%xmm1,%%xmm0                   \n"
    "phaddw    %%xmm3,%%xmm2                   \n"
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    "paddw     %%xmm5,%%xmm0                   \n"
    "paddw     %%xmm5,%%xmm2                   \n"
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    "psrlw     $0x7,%%xmm0                     \n"
    "psrlw     $0x7,%%xmm2                     \n"
    "packuswb  %%xmm2,%%xmm0                   \n"
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    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
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    "lea       " MEMLEA(0x10,1) ",%1           \n"
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    "sub       $0x10,%2                        \n"
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    "jg        1b                              \n"
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  : "+r"(src_argb),  // %0
    "+r"(dst_y),     // %1
    "+r"(pix)        // %2
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  : "m"(kARGBToYJ),  // %3
    "m"(kAddYJ64)    // %4
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  : "memory", "cc", "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5"
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  );
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}
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#endif  // HAS_ARGBTOYJROW_SSSE3
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#ifdef HAS_ARGBTOYROW_AVX2
// vpermd for vphaddw + vpackuswb vpermd.
static const lvec32 kPermdARGBToY_AVX = {
  0, 4, 1, 5, 2, 6, 3, 7
};

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// Convert 32 ARGB pixels (128 bytes) to 32 Y values.
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void ARGBToYRow_AVX2(const uint8* src_argb, uint8* dst_y, int pix) {
  asm volatile (
    "vbroadcastf128 %3,%%ymm4                  \n"
    "vbroadcastf128 %4,%%ymm5                  \n"
    "vmovdqu    %5,%%ymm6                      \n"
    LABELALIGN
  "1:                                          \n"
    "vmovdqu    " MEMACCESS(0) ",%%ymm0        \n"
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    "vmovdqu    " MEMACCESS2(0x20,0) ",%%ymm1  \n"
    "vmovdqu    " MEMACCESS2(0x40,0) ",%%ymm2  \n"
    "vmovdqu    " MEMACCESS2(0x60,0) ",%%ymm3  \n"
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    "vpmaddubsw %%ymm4,%%ymm0,%%ymm0           \n"
    "vpmaddubsw %%ymm4,%%ymm1,%%ymm1           \n"
    "vpmaddubsw %%ymm4,%%ymm2,%%ymm2           \n"
    "vpmaddubsw %%ymm4,%%ymm3,%%ymm3           \n"
    "lea       " MEMLEA(0x80,0) ",%0           \n"
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    "vphaddw    %%ymm1,%%ymm0,%%ymm0           \n"  // mutates.
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    "vphaddw    %%ymm3,%%ymm2,%%ymm2           \n"
    "vpsrlw     $0x7,%%ymm0,%%ymm0             \n"
    "vpsrlw     $0x7,%%ymm2,%%ymm2             \n"
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    "vpackuswb  %%ymm2,%%ymm0,%%ymm0           \n"  // mutates.
    "vpermd     %%ymm0,%%ymm6,%%ymm0           \n"  // unmutate.
    "vpaddb     %%ymm5,%%ymm0,%%ymm0           \n"  // add 16 for Y
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    "vmovdqu    %%ymm0," MEMACCESS(1) "        \n"
    "lea       " MEMLEA(0x20,1) ",%1           \n"
    "sub       $0x20,%2                        \n"
    "jg        1b                              \n"
    "vzeroupper                                \n"
  : "+r"(src_argb),  // %0
    "+r"(dst_y),     // %1
    "+r"(pix)        // %2
  : "m"(kARGBToY),   // %3
    "m"(kAddY16),    // %4
    "m"(kPermdARGBToY_AVX)  // %5
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  : "memory", "cc", "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5", "xmm6"
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  );
}
#endif  // HAS_ARGBTOYROW_AVX2

#ifdef HAS_ARGBTOYJROW_AVX2
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// Convert 32 ARGB pixels (128 bytes) to 32 Y values.
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void ARGBToYJRow_AVX2(const uint8* src_argb, uint8* dst_y, int pix) {
  asm volatile (
    "vbroadcastf128 %3,%%ymm4                  \n"
    "vbroadcastf128 %4,%%ymm5                  \n"
    "vmovdqu    %5,%%ymm6                      \n"
    LABELALIGN
  "1:                                          \n"
    "vmovdqu    " MEMACCESS(0) ",%%ymm0        \n"
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    "vmovdqu    " MEMACCESS2(0x20,0) ",%%ymm1  \n"
    "vmovdqu    " MEMACCESS2(0x40,0) ",%%ymm2  \n"
    "vmovdqu    " MEMACCESS2(0x60,0) ",%%ymm3  \n"
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    "vpmaddubsw %%ymm4,%%ymm0,%%ymm0           \n"
    "vpmaddubsw %%ymm4,%%ymm1,%%ymm1           \n"
    "vpmaddubsw %%ymm4,%%ymm2,%%ymm2           \n"
    "vpmaddubsw %%ymm4,%%ymm3,%%ymm3           \n"
    "lea       " MEMLEA(0x80,0) ",%0           \n"
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    "vphaddw    %%ymm1,%%ymm0,%%ymm0           \n"  // mutates.
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    "vphaddw    %%ymm3,%%ymm2,%%ymm2           \n"
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    "vpaddw     %%ymm5,%%ymm0,%%ymm0           \n"  // Add .5 for rounding.
    "vpaddw     %%ymm5,%%ymm2,%%ymm2           \n"
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    "vpsrlw     $0x7,%%ymm0,%%ymm0             \n"
    "vpsrlw     $0x7,%%ymm2,%%ymm2             \n"
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    "vpackuswb  %%ymm2,%%ymm0,%%ymm0           \n"  // mutates.
    "vpermd     %%ymm0,%%ymm6,%%ymm0           \n"  // unmutate.
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    "vmovdqu    %%ymm0," MEMACCESS(1) "        \n"
    "lea       " MEMLEA(0x20,1) ",%1           \n"
    "sub       $0x20,%2                        \n"
    "jg        1b                              \n"
    "vzeroupper                                \n"
  : "+r"(src_argb),  // %0
    "+r"(dst_y),     // %1
    "+r"(pix)        // %2
  : "m"(kARGBToYJ),   // %3
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    "m"(kAddYJ64),    // %4
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    "m"(kPermdARGBToY_AVX)  // %5
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  : "memory", "cc", "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5", "xmm6"
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  );
}
#endif  // HAS_ARGBTOYJROW_AVX2

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#ifdef HAS_ARGBTOUVROW_SSSE3
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void ARGBToUVRow_SSSE3(const uint8* src_argb0, int src_stride_argb,
                       uint8* dst_u, uint8* dst_v, int width) {
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  asm volatile (
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    "movdqa    %5,%%xmm3                       \n"
    "movdqa    %6,%%xmm4                       \n"
    "movdqa    %7,%%xmm5                       \n"
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    "sub       %1,%2                           \n"
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    LABELALIGN
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  "1:                                          \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
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    MEMOPREG(movdqu,0x00,0,4,1,xmm7)            //  movdqu (%0,%4,1),%%xmm7
    "pavgb     %%xmm7,%%xmm0                   \n"
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    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
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    MEMOPREG(movdqu,0x10,0,4,1,xmm7)            //  movdqu 0x10(%0,%4,1),%%xmm7
    "pavgb     %%xmm7,%%xmm1                   \n"
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    "movdqu    " MEMACCESS2(0x20,0) ",%%xmm2   \n"
750 751
    MEMOPREG(movdqu,0x20,0,4,1,xmm7)            //  movdqu 0x20(%0,%4,1),%%xmm7
    "pavgb     %%xmm7,%%xmm2                   \n"
752
    "movdqu    " MEMACCESS2(0x30,0) ",%%xmm6   \n"
753 754 755
    MEMOPREG(movdqu,0x30,0,4,1,xmm7)            //  movdqu 0x30(%0,%4,1),%%xmm7
    "pavgb     %%xmm7,%%xmm6                   \n"

756
    "lea       " MEMLEA(0x40,0) ",%0           \n"
757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776
    "movdqa    %%xmm0,%%xmm7                   \n"
    "shufps    $0x88,%%xmm1,%%xmm0             \n"
    "shufps    $0xdd,%%xmm1,%%xmm7             \n"
    "pavgb     %%xmm7,%%xmm0                   \n"
    "movdqa    %%xmm2,%%xmm7                   \n"
    "shufps    $0x88,%%xmm6,%%xmm2             \n"
    "shufps    $0xdd,%%xmm6,%%xmm7             \n"
    "pavgb     %%xmm7,%%xmm2                   \n"
    "movdqa    %%xmm0,%%xmm1                   \n"
    "movdqa    %%xmm2,%%xmm6                   \n"
    "pmaddubsw %%xmm4,%%xmm0                   \n"
    "pmaddubsw %%xmm4,%%xmm2                   \n"
    "pmaddubsw %%xmm3,%%xmm1                   \n"
    "pmaddubsw %%xmm3,%%xmm6                   \n"
    "phaddw    %%xmm2,%%xmm0                   \n"
    "phaddw    %%xmm6,%%xmm1                   \n"
    "psraw     $0x8,%%xmm0                     \n"
    "psraw     $0x8,%%xmm1                     \n"
    "packsswb  %%xmm1,%%xmm0                   \n"
    "paddb     %%xmm5,%%xmm0                   \n"
777
    "movlps    %%xmm0," MEMACCESS(1) "         \n"
778
    MEMOPMEM(movhps,xmm0,0x00,1,2,1)           //  movhps    %%xmm0,(%1,%2,1)
779
    "lea       " MEMLEA(0x8,1) ",%1            \n"
780
    "sub       $0x10,%3                        \n"
781
    "jg        1b                              \n"
782 783 784 785
  : "+r"(src_argb0),       // %0
    "+r"(dst_u),           // %1
    "+r"(dst_v),           // %2
    "+rm"(width)           // %3
786 787 788 789
  : "r"((intptr_t)(src_stride_argb)), // %4
    "m"(kARGBToV),  // %5
    "m"(kARGBToU),  // %6
    "m"(kAddUV128)  // %7
790 791
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm6", "xmm7"
fbarchard@google.com's avatar
fbarchard@google.com committed
792
  );
793
}
794
#endif  // HAS_ARGBTOUVROW_SSSE3
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#ifdef HAS_ARGBTOUVROW_AVX2
// vpshufb for vphaddw + vpackuswb packed to shorts.
static const lvec8 kShufARGBToUV_AVX = {
  0, 1, 8, 9, 2, 3, 10, 11, 4, 5, 12, 13, 6, 7, 14, 15,
  0, 1, 8, 9, 2, 3, 10, 11, 4, 5, 12, 13, 6, 7, 14, 15
};
void ARGBToUVRow_AVX2(const uint8* src_argb0, int src_stride_argb,
                      uint8* dst_u, uint8* dst_v, int width) {
  asm volatile (
    "vbroadcastf128 %5,%%ymm5                  \n"
    "vbroadcastf128 %6,%%ymm6                  \n"
    "vbroadcastf128 %7,%%ymm7                  \n"
    "sub       %1,%2                           \n"
    LABELALIGN
  "1:                                          \n"
    "vmovdqu    " MEMACCESS(0) ",%%ymm0        \n"
    "vmovdqu    " MEMACCESS2(0x20,0) ",%%ymm1  \n"
    "vmovdqu    " MEMACCESS2(0x40,0) ",%%ymm2  \n"
    "vmovdqu    " MEMACCESS2(0x60,0) ",%%ymm3  \n"
    VMEMOPREG(vpavgb,0x00,0,4,1,ymm0,ymm0)     // vpavgb (%0,%4,1),%%ymm0,%%ymm0
    VMEMOPREG(vpavgb,0x20,0,4,1,ymm1,ymm1)
    VMEMOPREG(vpavgb,0x40,0,4,1,ymm2,ymm2)
    VMEMOPREG(vpavgb,0x60,0,4,1,ymm3,ymm3)
    "lea       " MEMLEA(0x80,0) ",%0           \n"
    "vshufps    $0x88,%%ymm1,%%ymm0,%%ymm4     \n"
    "vshufps    $0xdd,%%ymm1,%%ymm0,%%ymm0     \n"
    "vpavgb     %%ymm4,%%ymm0,%%ymm0           \n"
    "vshufps    $0x88,%%ymm3,%%ymm2,%%ymm4     \n"
    "vshufps    $0xdd,%%ymm3,%%ymm2,%%ymm2     \n"
    "vpavgb     %%ymm4,%%ymm2,%%ymm2           \n"
826

827 828 829 830 831 832 833 834 835 836 837 838
    "vpmaddubsw %%ymm7,%%ymm0,%%ymm1           \n"
    "vpmaddubsw %%ymm7,%%ymm2,%%ymm3           \n"
    "vpmaddubsw %%ymm6,%%ymm0,%%ymm0           \n"
    "vpmaddubsw %%ymm6,%%ymm2,%%ymm2           \n"
    "vphaddw    %%ymm3,%%ymm1,%%ymm1           \n"
    "vphaddw    %%ymm2,%%ymm0,%%ymm0           \n"
    "vpsraw     $0x8,%%ymm1,%%ymm1             \n"
    "vpsraw     $0x8,%%ymm0,%%ymm0             \n"
    "vpacksswb  %%ymm0,%%ymm1,%%ymm0           \n"
    "vpermq     $0xd8,%%ymm0,%%ymm0            \n"
    "vpshufb    %8,%%ymm0,%%ymm0               \n"
    "vpaddb     %%ymm5,%%ymm0,%%ymm0           \n"
839

840
    "vextractf128 $0x0,%%ymm0," MEMACCESS(1) " \n"
841
    VEXTOPMEM(vextractf128,1,ymm0,0x0,1,2,1) // vextractf128 $1,%%ymm0,(%1,%2,1)
842 843 844 845 846 847 848 849 850
    "lea       " MEMLEA(0x10,1) ",%1           \n"
    "sub       $0x20,%3                        \n"
    "jg        1b                              \n"
    "vzeroupper                                \n"
  : "+r"(src_argb0),       // %0
    "+r"(dst_u),           // %1
    "+r"(dst_v),           // %2
    "+rm"(width)           // %3
  : "r"((intptr_t)(src_stride_argb)), // %4
851 852 853
    "m"(kAddUV128),  // %5
    "m"(kARGBToV),   // %6
    "m"(kARGBToU),   // %7
854
    "m"(kShufARGBToUV_AVX)  // %8
855 856
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5", "xmm6", "xmm7"
857 858 859 860
  );
}
#endif  // HAS_ARGBTOUVROW_AVX2

861
#ifdef HAS_ARGBTOUVJROW_SSSE3
862 863 864
void ARGBToUVJRow_SSSE3(const uint8* src_argb0, int src_stride_argb,
                        uint8* dst_u, uint8* dst_v, int width) {
  asm volatile (
865 866 867
    "movdqa    %5,%%xmm3                       \n"
    "movdqa    %6,%%xmm4                       \n"
    "movdqa    %7,%%xmm5                       \n"
868
    "sub       %1,%2                           \n"
869
    LABELALIGN
870
  "1:                                          \n"
871
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
872 873
    MEMOPREG(movdqu,0x00,0,4,1,xmm7)            //  movdqu (%0,%4,1),%%xmm7
    "pavgb     %%xmm7,%%xmm0                   \n"
874
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
875 876
    MEMOPREG(movdqu,0x10,0,4,1,xmm7)            //  movdqu 0x10(%0,%4,1),%%xmm7
    "pavgb     %%xmm7,%%xmm1                   \n"
877
    "movdqu    " MEMACCESS2(0x20,0) ",%%xmm2   \n"
878 879
    MEMOPREG(movdqu,0x20,0,4,1,xmm7)            //  movdqu 0x20(%0,%4,1),%%xmm7
    "pavgb     %%xmm7,%%xmm2                   \n"
880
    "movdqu    " MEMACCESS2(0x30,0) ",%%xmm6   \n"
881 882 883
    MEMOPREG(movdqu,0x30,0,4,1,xmm7)            //  movdqu 0x30(%0,%4,1),%%xmm7
    "pavgb     %%xmm7,%%xmm6                   \n"

884
    "lea       " MEMLEA(0x40,0) ",%0           \n"
885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905
    "movdqa    %%xmm0,%%xmm7                   \n"
    "shufps    $0x88,%%xmm1,%%xmm0             \n"
    "shufps    $0xdd,%%xmm1,%%xmm7             \n"
    "pavgb     %%xmm7,%%xmm0                   \n"
    "movdqa    %%xmm2,%%xmm7                   \n"
    "shufps    $0x88,%%xmm6,%%xmm2             \n"
    "shufps    $0xdd,%%xmm6,%%xmm7             \n"
    "pavgb     %%xmm7,%%xmm2                   \n"
    "movdqa    %%xmm0,%%xmm1                   \n"
    "movdqa    %%xmm2,%%xmm6                   \n"
    "pmaddubsw %%xmm4,%%xmm0                   \n"
    "pmaddubsw %%xmm4,%%xmm2                   \n"
    "pmaddubsw %%xmm3,%%xmm1                   \n"
    "pmaddubsw %%xmm3,%%xmm6                   \n"
    "phaddw    %%xmm2,%%xmm0                   \n"
    "phaddw    %%xmm6,%%xmm1                   \n"
    "paddw     %%xmm5,%%xmm0                   \n"
    "paddw     %%xmm5,%%xmm1                   \n"
    "psraw     $0x8,%%xmm0                     \n"
    "psraw     $0x8,%%xmm1                     \n"
    "packsswb  %%xmm1,%%xmm0                   \n"
906
    "movlps    %%xmm0," MEMACCESS(1) "         \n"
907
    MEMOPMEM(movhps,xmm0,0x00,1,2,1)           //  movhps  %%xmm0,(%1,%2,1)
908
    "lea       " MEMLEA(0x8,1) ",%1            \n"
909
    "sub       $0x10,%3                        \n"
910 911 912 913 914
    "jg        1b                              \n"
  : "+r"(src_argb0),       // %0
    "+r"(dst_u),           // %1
    "+r"(dst_v),           // %2
    "+rm"(width)           // %3
915 916 917 918
  : "r"((intptr_t)(src_stride_argb)), // %4
    "m"(kARGBToVJ),  // %5
    "m"(kARGBToUJ),  // %6
    "m"(kAddUVJ128)  // %7
919 920
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm6", "xmm7"
921 922
  );
}
923
#endif  // HAS_ARGBTOUVJROW_SSSE3
924

925
#ifdef HAS_ARGBTOUV444ROW_SSSE3
926 927 928
void ARGBToUV444Row_SSSE3(const uint8* src_argb, uint8* dst_u, uint8* dst_v,
                          int width) {
  asm volatile (
929 930 931
    "movdqa    %4,%%xmm3                       \n"
    "movdqa    %5,%%xmm4                       \n"
    "movdqa    %6,%%xmm5                       \n"
932
    "sub       %1,%2                           \n"
933
    LABELALIGN
934
  "1:                                          \n"
935 936 937 938
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
    "movdqu    " MEMACCESS2(0x20,0) ",%%xmm2   \n"
    "movdqu    " MEMACCESS2(0x30,0) ",%%xmm6   \n"
939 940 941 942 943 944
    "pmaddubsw %%xmm4,%%xmm0                   \n"
    "pmaddubsw %%xmm4,%%xmm1                   \n"
    "pmaddubsw %%xmm4,%%xmm2                   \n"
    "pmaddubsw %%xmm4,%%xmm6                   \n"
    "phaddw    %%xmm1,%%xmm0                   \n"
    "phaddw    %%xmm6,%%xmm2                   \n"
945 946 947
    "psraw     $0x8,%%xmm0                     \n"
    "psraw     $0x8,%%xmm2                     \n"
    "packsswb  %%xmm2,%%xmm0                   \n"
948
    "paddb     %%xmm5,%%xmm0                   \n"
949 950 951 952 953
    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
    "movdqu    " MEMACCESS2(0x20,0) ",%%xmm2   \n"
    "movdqu    " MEMACCESS2(0x30,0) ",%%xmm6   \n"
954 955 956 957 958 959
    "pmaddubsw %%xmm3,%%xmm0                   \n"
    "pmaddubsw %%xmm3,%%xmm1                   \n"
    "pmaddubsw %%xmm3,%%xmm2                   \n"
    "pmaddubsw %%xmm3,%%xmm6                   \n"
    "phaddw    %%xmm1,%%xmm0                   \n"
    "phaddw    %%xmm6,%%xmm2                   \n"
960 961 962
    "psraw     $0x8,%%xmm0                     \n"
    "psraw     $0x8,%%xmm2                     \n"
    "packsswb  %%xmm2,%%xmm0                   \n"
963
    "paddb     %%xmm5,%%xmm0                   \n"
964
    "lea       " MEMLEA(0x40,0) ",%0           \n"
965
    MEMOPMEM(movdqu,xmm0,0x00,1,2,1)           //  movdqu  %%xmm0,(%1,%2,1)
966
    "lea       " MEMLEA(0x10,1) ",%1           \n"
967
    "sub       $0x10,%3                        \n"
968 969 970 971 972
    "jg        1b                              \n"
  : "+r"(src_argb),        // %0
    "+r"(dst_u),           // %1
    "+r"(dst_v),           // %2
    "+rm"(width)           // %3
973 974 975
  : "m"(kARGBToV),  // %4
    "m"(kARGBToU),  // %5
    "m"(kAddUV128)  // %6
976 977
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm6"
978 979
  );
}
980
#endif  // HAS_ARGBTOUV444ROW_SSSE3
981

982
#ifdef HAS_ARGBTOUV422ROW_SSSE3
983 984 985
void ARGBToUV422Row_SSSE3(const uint8* src_argb0,
                          uint8* dst_u, uint8* dst_v, int width) {
  asm volatile (
986 987 988
    "movdqa    %4,%%xmm3                       \n"
    "movdqa    %5,%%xmm4                       \n"
    "movdqa    %6,%%xmm5                       \n"
989
    "sub       %1,%2                           \n"
990
    LABELALIGN
991
  "1:                                          \n"
992 993 994 995
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
    "movdqu    " MEMACCESS2(0x20,0) ",%%xmm2   \n"
    "movdqu    " MEMACCESS2(0x30,0) ",%%xmm6   \n"
996
    "lea       " MEMLEA(0x40,0) ",%0           \n"
997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016
    "movdqa    %%xmm0,%%xmm7                   \n"
    "shufps    $0x88,%%xmm1,%%xmm0             \n"
    "shufps    $0xdd,%%xmm1,%%xmm7             \n"
    "pavgb     %%xmm7,%%xmm0                   \n"
    "movdqa    %%xmm2,%%xmm7                   \n"
    "shufps    $0x88,%%xmm6,%%xmm2             \n"
    "shufps    $0xdd,%%xmm6,%%xmm7             \n"
    "pavgb     %%xmm7,%%xmm2                   \n"
    "movdqa    %%xmm0,%%xmm1                   \n"
    "movdqa    %%xmm2,%%xmm6                   \n"
    "pmaddubsw %%xmm4,%%xmm0                   \n"
    "pmaddubsw %%xmm4,%%xmm2                   \n"
    "pmaddubsw %%xmm3,%%xmm1                   \n"
    "pmaddubsw %%xmm3,%%xmm6                   \n"
    "phaddw    %%xmm2,%%xmm0                   \n"
    "phaddw    %%xmm6,%%xmm1                   \n"
    "psraw     $0x8,%%xmm0                     \n"
    "psraw     $0x8,%%xmm1                     \n"
    "packsswb  %%xmm1,%%xmm0                   \n"
    "paddb     %%xmm5,%%xmm0                   \n"
1017
    "movlps    %%xmm0," MEMACCESS(1) "         \n"
1018
    MEMOPMEM(movhps,xmm0,0x00,1,2,1)           //  movhps  %%xmm0,(%1,%2,1)
1019
    "lea       " MEMLEA(0x8,1) ",%1            \n"
1020
    "sub       $0x10,%3                        \n"
1021 1022 1023 1024 1025
    "jg        1b                              \n"
  : "+r"(src_argb0),       // %0
    "+r"(dst_u),           // %1
    "+r"(dst_v),           // %2
    "+rm"(width)           // %3
1026 1027 1028
  : "m"(kARGBToV),  // %4
    "m"(kARGBToU),  // %5
    "m"(kAddUV128)  // %6
1029 1030
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm6", "xmm7"
1031 1032
  );
}
1033
#endif  // HAS_ARGBTOUV422ROW_SSSE3
1034

1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057
void BGRAToYRow_SSSE3(const uint8* src_bgra, uint8* dst_y, int pix) {
  asm volatile (
    "movdqa    %4,%%xmm5                       \n"
    "movdqa    %3,%%xmm4                       \n"
    LABELALIGN
  "1:                                          \n"
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
    "movdqu    " MEMACCESS2(0x20,0) ",%%xmm2   \n"
    "movdqu    " MEMACCESS2(0x30,0) ",%%xmm3   \n"
    "pmaddubsw %%xmm4,%%xmm0                   \n"
    "pmaddubsw %%xmm4,%%xmm1                   \n"
    "pmaddubsw %%xmm4,%%xmm2                   \n"
    "pmaddubsw %%xmm4,%%xmm3                   \n"
    "lea       " MEMLEA(0x40,0) ",%0           \n"
    "phaddw    %%xmm1,%%xmm0                   \n"
    "phaddw    %%xmm3,%%xmm2                   \n"
    "psrlw     $0x7,%%xmm0                     \n"
    "psrlw     $0x7,%%xmm2                     \n"
    "packuswb  %%xmm2,%%xmm0                   \n"
    "paddb     %%xmm5,%%xmm0                   \n"
    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
    "lea       " MEMLEA(0x10,1) ",%1           \n"
1058
    "sub       $0x10,%2                        \n"
1059 1060 1061 1062 1063 1064
    "jg        1b                              \n"
  : "+r"(src_bgra),  // %0
    "+r"(dst_y),     // %1
    "+r"(pix)        // %2
  : "m"(kBGRAToY),   // %3
    "m"(kAddY16)     // %4
1065
  : "memory", "cc", "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5"
1066 1067 1068 1069 1070
  );
}

void BGRAToUVRow_SSSE3(const uint8* src_bgra0, int src_stride_bgra,
                       uint8* dst_u, uint8* dst_v, int width) {
1071
  asm volatile (
1072 1073 1074
    "movdqa    %5,%%xmm3                       \n"
    "movdqa    %6,%%xmm4                       \n"
    "movdqa    %7,%%xmm5                       \n"
1075
    "sub       %1,%2                           \n"
1076
    LABELALIGN
1077
  "1:                                          \n"
1078
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
1079 1080
    MEMOPREG(movdqu,0x00,0,4,1,xmm7)            //  movdqu (%0,%4,1),%%xmm7
    "pavgb     %%xmm7,%%xmm0                   \n"
1081
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
1082 1083
    MEMOPREG(movdqu,0x10,0,4,1,xmm7)            //  movdqu 0x10(%0,%4,1),%%xmm7
    "pavgb     %%xmm7,%%xmm1                   \n"
1084
    "movdqu    " MEMACCESS2(0x20,0) ",%%xmm2   \n"
1085 1086
    MEMOPREG(movdqu,0x20,0,4,1,xmm7)            //  movdqu 0x20(%0,%4,1),%%xmm7
    "pavgb     %%xmm7,%%xmm2                   \n"
1087
    "movdqu    " MEMACCESS2(0x30,0) ",%%xmm6   \n"
1088 1089 1090
    MEMOPREG(movdqu,0x30,0,4,1,xmm7)            //  movdqu 0x30(%0,%4,1),%%xmm7
    "pavgb     %%xmm7,%%xmm6                   \n"

1091
    "lea       " MEMLEA(0x40,0) ",%0           \n"
1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111
    "movdqa    %%xmm0,%%xmm7                   \n"
    "shufps    $0x88,%%xmm1,%%xmm0             \n"
    "shufps    $0xdd,%%xmm1,%%xmm7             \n"
    "pavgb     %%xmm7,%%xmm0                   \n"
    "movdqa    %%xmm2,%%xmm7                   \n"
    "shufps    $0x88,%%xmm6,%%xmm2             \n"
    "shufps    $0xdd,%%xmm6,%%xmm7             \n"
    "pavgb     %%xmm7,%%xmm2                   \n"
    "movdqa    %%xmm0,%%xmm1                   \n"
    "movdqa    %%xmm2,%%xmm6                   \n"
    "pmaddubsw %%xmm4,%%xmm0                   \n"
    "pmaddubsw %%xmm4,%%xmm2                   \n"
    "pmaddubsw %%xmm3,%%xmm1                   \n"
    "pmaddubsw %%xmm3,%%xmm6                   \n"
    "phaddw    %%xmm2,%%xmm0                   \n"
    "phaddw    %%xmm6,%%xmm1                   \n"
    "psraw     $0x8,%%xmm0                     \n"
    "psraw     $0x8,%%xmm1                     \n"
    "packsswb  %%xmm1,%%xmm0                   \n"
    "paddb     %%xmm5,%%xmm0                   \n"
1112
    "movlps    %%xmm0," MEMACCESS(1) "         \n"
1113
    MEMOPMEM(movhps,xmm0,0x00,1,2,1)           //  movhps  %%xmm0,(%1,%2,1)
1114
    "lea       " MEMLEA(0x8,1) ",%1            \n"
1115
    "sub       $0x10,%3                        \n"
1116
    "jg        1b                              \n"
1117
  : "+r"(src_bgra0),       // %0
1118 1119 1120
    "+r"(dst_u),           // %1
    "+r"(dst_v),           // %2
    "+rm"(width)           // %3
1121 1122 1123 1124
  : "r"((intptr_t)(src_stride_bgra)), // %4
    "m"(kBGRAToV),  // %5
    "m"(kBGRAToU),  // %6
    "m"(kAddUV128)  // %7
1125 1126
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm6", "xmm7"
1127 1128 1129
  );
}

1130
void ABGRToYRow_SSSE3(const uint8* src_abgr, uint8* dst_y, int pix) {
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1131
  asm volatile (
1132 1133
    "movdqa    %4,%%xmm5                       \n"
    "movdqa    %3,%%xmm4                       \n"
1134
    LABELALIGN
1135
  "1:                                          \n"
1136 1137 1138 1139
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
    "movdqu    " MEMACCESS2(0x20,0) ",%%xmm2   \n"
    "movdqu    " MEMACCESS2(0x30,0) ",%%xmm3   \n"
1140 1141 1142 1143
    "pmaddubsw %%xmm4,%%xmm0                   \n"
    "pmaddubsw %%xmm4,%%xmm1                   \n"
    "pmaddubsw %%xmm4,%%xmm2                   \n"
    "pmaddubsw %%xmm4,%%xmm3                   \n"
1144
    "lea       " MEMLEA(0x40,0) ",%0           \n"
1145 1146 1147 1148 1149 1150
    "phaddw    %%xmm1,%%xmm0                   \n"
    "phaddw    %%xmm3,%%xmm2                   \n"
    "psrlw     $0x7,%%xmm0                     \n"
    "psrlw     $0x7,%%xmm2                     \n"
    "packuswb  %%xmm2,%%xmm0                   \n"
    "paddb     %%xmm5,%%xmm0                   \n"
1151
    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
1152
    "lea       " MEMLEA(0x10,1) ",%1           \n"
1153
    "sub       $0x10,%2                        \n"
1154
    "jg        1b                              \n"
1155
  : "+r"(src_abgr),  // %0
1156 1157
    "+r"(dst_y),     // %1
    "+r"(pix)        // %2
1158
  : "m"(kABGRToY),   // %3
1159
    "m"(kAddY16)     // %4
1160
  : "memory", "cc", "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5"
1161 1162 1163
  );
}

1164
void RGBAToYRow_SSSE3(const uint8* src_rgba, uint8* dst_y, int pix) {
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fbarchard@google.com committed
1165
  asm volatile (
1166 1167
    "movdqa    %4,%%xmm5                       \n"
    "movdqa    %3,%%xmm4                       \n"
1168
    LABELALIGN
1169
  "1:                                          \n"
1170 1171 1172 1173
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
    "movdqu    " MEMACCESS2(0x20,0) ",%%xmm2   \n"
    "movdqu    " MEMACCESS2(0x30,0) ",%%xmm3   \n"
1174 1175 1176 1177
    "pmaddubsw %%xmm4,%%xmm0                   \n"
    "pmaddubsw %%xmm4,%%xmm1                   \n"
    "pmaddubsw %%xmm4,%%xmm2                   \n"
    "pmaddubsw %%xmm4,%%xmm3                   \n"
1178
    "lea       " MEMLEA(0x40,0) ",%0           \n"
1179 1180 1181 1182 1183 1184
    "phaddw    %%xmm1,%%xmm0                   \n"
    "phaddw    %%xmm3,%%xmm2                   \n"
    "psrlw     $0x7,%%xmm0                     \n"
    "psrlw     $0x7,%%xmm2                     \n"
    "packuswb  %%xmm2,%%xmm0                   \n"
    "paddb     %%xmm5,%%xmm0                   \n"
1185 1186
    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
    "lea       " MEMLEA(0x10,1) ",%1           \n"
1187
    "sub       $0x10,%2                        \n"
1188
    "jg        1b                              \n"
1189 1190 1191 1192 1193
  : "+r"(src_rgba),  // %0
    "+r"(dst_y),     // %1
    "+r"(pix)        // %2
  : "m"(kRGBAToY),   // %3
    "m"(kAddY16)     // %4
1194
  : "memory", "cc", "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5"
1195 1196
  );
}
1197

1198
void ABGRToUVRow_SSSE3(const uint8* src_abgr0, int src_stride_abgr,
1199 1200
                       uint8* dst_u, uint8* dst_v, int width) {
  asm volatile (
1201 1202 1203
    "movdqa    %5,%%xmm3                       \n"
    "movdqa    %6,%%xmm4                       \n"
    "movdqa    %7,%%xmm5                       \n"
1204
    "sub       %1,%2                           \n"
1205
    LABELALIGN
1206
  "1:                                          \n"
1207
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
1208 1209
    MEMOPREG(movdqu,0x00,0,4,1,xmm7)            //  movdqu (%0,%4,1),%%xmm7
    "pavgb     %%xmm7,%%xmm0                   \n"
1210
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
1211 1212
    MEMOPREG(movdqu,0x10,0,4,1,xmm7)            //  movdqu 0x10(%0,%4,1),%%xmm7
    "pavgb     %%xmm7,%%xmm1                   \n"
1213
    "movdqu    " MEMACCESS2(0x20,0) ",%%xmm2   \n"
1214 1215
    MEMOPREG(movdqu,0x20,0,4,1,xmm7)            //  movdqu 0x20(%0,%4,1),%%xmm7
    "pavgb     %%xmm7,%%xmm2                   \n"
1216
    "movdqu    " MEMACCESS2(0x30,0) ",%%xmm6   \n"
1217 1218 1219
    MEMOPREG(movdqu,0x30,0,4,1,xmm7)            //  movdqu 0x30(%0,%4,1),%%xmm7
    "pavgb     %%xmm7,%%xmm6                   \n"

1220
    "lea       " MEMLEA(0x40,0) ",%0           \n"
1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240
    "movdqa    %%xmm0,%%xmm7                   \n"
    "shufps    $0x88,%%xmm1,%%xmm0             \n"
    "shufps    $0xdd,%%xmm1,%%xmm7             \n"
    "pavgb     %%xmm7,%%xmm0                   \n"
    "movdqa    %%xmm2,%%xmm7                   \n"
    "shufps    $0x88,%%xmm6,%%xmm2             \n"
    "shufps    $0xdd,%%xmm6,%%xmm7             \n"
    "pavgb     %%xmm7,%%xmm2                   \n"
    "movdqa    %%xmm0,%%xmm1                   \n"
    "movdqa    %%xmm2,%%xmm6                   \n"
    "pmaddubsw %%xmm4,%%xmm0                   \n"
    "pmaddubsw %%xmm4,%%xmm2                   \n"
    "pmaddubsw %%xmm3,%%xmm1                   \n"
    "pmaddubsw %%xmm3,%%xmm6                   \n"
    "phaddw    %%xmm2,%%xmm0                   \n"
    "phaddw    %%xmm6,%%xmm1                   \n"
    "psraw     $0x8,%%xmm0                     \n"
    "psraw     $0x8,%%xmm1                     \n"
    "packsswb  %%xmm1,%%xmm0                   \n"
    "paddb     %%xmm5,%%xmm0                   \n"
1241
    "movlps    %%xmm0," MEMACCESS(1) "         \n"
1242
    MEMOPMEM(movhps,xmm0,0x00,1,2,1)           //  movhps  %%xmm0,(%1,%2,1)
1243
    "lea       " MEMLEA(0x8,1) ",%1            \n"
1244
    "sub       $0x10,%3                        \n"
1245
    "jg        1b                              \n"
1246
  : "+r"(src_abgr0),       // %0
1247 1248 1249
    "+r"(dst_u),           // %1
    "+r"(dst_v),           // %2
    "+rm"(width)           // %3
1250 1251 1252 1253
  : "r"((intptr_t)(src_stride_abgr)), // %4
    "m"(kABGRToV),  // %5
    "m"(kABGRToU),  // %6
    "m"(kAddUV128)  // %7
1254 1255
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm6", "xmm7"
1256 1257 1258
  );
}

1259 1260
void RGBAToUVRow_SSSE3(const uint8* src_rgba0, int src_stride_rgba,
                       uint8* dst_u, uint8* dst_v, int width) {
1261
  asm volatile (
1262 1263 1264
    "movdqa    %5,%%xmm3                       \n"
    "movdqa    %6,%%xmm4                       \n"
    "movdqa    %7,%%xmm5                       \n"
1265
    "sub       %1,%2                           \n"
1266
    LABELALIGN
1267
  "1:                                          \n"
1268
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
1269 1270
    MEMOPREG(movdqu,0x00,0,4,1,xmm7)            //  movdqu (%0,%4,1),%%xmm7
    "pavgb     %%xmm7,%%xmm0                   \n"
1271
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
1272 1273
    MEMOPREG(movdqu,0x10,0,4,1,xmm7)            //  movdqu 0x10(%0,%4,1),%%xmm7
    "pavgb     %%xmm7,%%xmm1                   \n"
1274
    "movdqu    " MEMACCESS2(0x20,0) ",%%xmm2   \n"
1275 1276
    MEMOPREG(movdqu,0x20,0,4,1,xmm7)            //  movdqu 0x20(%0,%4,1),%%xmm7
    "pavgb     %%xmm7,%%xmm2                   \n"
1277
    "movdqu    " MEMACCESS2(0x30,0) ",%%xmm6   \n"
1278 1279 1280
    MEMOPREG(movdqu,0x30,0,4,1,xmm7)            //  movdqu 0x30(%0,%4,1),%%xmm7
    "pavgb     %%xmm7,%%xmm6                   \n"

1281
    "lea       " MEMLEA(0x40,0) ",%0           \n"
1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301
    "movdqa    %%xmm0,%%xmm7                   \n"
    "shufps    $0x88,%%xmm1,%%xmm0             \n"
    "shufps    $0xdd,%%xmm1,%%xmm7             \n"
    "pavgb     %%xmm7,%%xmm0                   \n"
    "movdqa    %%xmm2,%%xmm7                   \n"
    "shufps    $0x88,%%xmm6,%%xmm2             \n"
    "shufps    $0xdd,%%xmm6,%%xmm7             \n"
    "pavgb     %%xmm7,%%xmm2                   \n"
    "movdqa    %%xmm0,%%xmm1                   \n"
    "movdqa    %%xmm2,%%xmm6                   \n"
    "pmaddubsw %%xmm4,%%xmm0                   \n"
    "pmaddubsw %%xmm4,%%xmm2                   \n"
    "pmaddubsw %%xmm3,%%xmm1                   \n"
    "pmaddubsw %%xmm3,%%xmm6                   \n"
    "phaddw    %%xmm2,%%xmm0                   \n"
    "phaddw    %%xmm6,%%xmm1                   \n"
    "psraw     $0x8,%%xmm0                     \n"
    "psraw     $0x8,%%xmm1                     \n"
    "packsswb  %%xmm1,%%xmm0                   \n"
    "paddb     %%xmm5,%%xmm0                   \n"
1302
    "movlps    %%xmm0," MEMACCESS(1) "         \n"
1303
    MEMOPMEM(movhps,xmm0,0x00,1,2,1)           //  movhps  %%xmm0,(%1,%2,1)
1304
    "lea       " MEMLEA(0x8,1) ",%1            \n"
1305
    "sub       $0x10,%3                        \n"
1306 1307 1308 1309 1310
    "jg        1b                              \n"
  : "+r"(src_rgba0),       // %0
    "+r"(dst_u),           // %1
    "+r"(dst_v),           // %2
    "+rm"(width)           // %3
1311 1312 1313 1314
  : "r"((intptr_t)(src_stride_rgba)), // %4
    "m"(kRGBAToV),  // %5
    "m"(kRGBAToU),  // %6
    "m"(kAddUV128)  // %7
1315 1316
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm6", "xmm7"
1317 1318
  );
}
1319

1320
#if defined(HAS_I422TOARGBROW_SSSE3) || defined(HAS_I422TOARGBROW_AVX2)
1321

1322
struct YuvConstants {
1323 1324 1325 1326 1327 1328 1329
  lvec8 kUVToB;     // 0
  lvec8 kUVToG;     // 32
  lvec8 kUVToR;     // 64
  lvec16 kUVBiasB;  // 96
  lvec16 kUVBiasG;  // 128
  lvec16 kUVBiasR;  // 160
  lvec16 kYToRgb;   // 192
1330 1331
};

1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352
// BT.601 YUV to RGB reference
//  R = (Y - 16) * 1.164              - V * -1.596
//  G = (Y - 16) * 1.164 - U *  0.391 - V *  0.813
//  B = (Y - 16) * 1.164 - U * -2.018

// Y contribution to R,G,B.  Scale and bias.
// TODO(fbarchard): Consider moving constants into a common header.
#define YG 18997 /* round(1.164 * 64 * 256 * 256 / 257) */
#define YGB -1160 /* 1.164 * 64 * -16 + 64 / 2 */

// U and V contributions to R,G,B.
#define UB -128 /* max(-128, round(-2.018 * 64)) */
#define UG 25 /* round(0.391 * 64) */
#define VG 52 /* round(0.813 * 64) */
#define VR -102 /* round(-1.596 * 64) */

// Bias values to subtract 16 from Y and 128 from U and V.
#define BB (UB * 128            + YGB)
#define BG (UG * 128 + VG * 128 + YGB)
#define BR            (VR * 128 + YGB)

1353
// BT601 constants for YUV to RGB.
1354
static YuvConstants SIMD_ALIGNED(kYuvConstants) = {
1355 1356 1357 1358 1359 1360 1361 1362 1363 1364
  { UB, 0, UB, 0, UB, 0, UB, 0, UB, 0, UB, 0, UB, 0, UB, 0,
    UB, 0, UB, 0, UB, 0, UB, 0, UB, 0, UB, 0, UB, 0, UB, 0 },
  { UG, VG, UG, VG, UG, VG, UG, VG, UG, VG, UG, VG, UG, VG, UG, VG,
    UG, VG, UG, VG, UG, VG, UG, VG, UG, VG, UG, VG, UG, VG, UG, VG },
  { 0, VR, 0, VR, 0, VR, 0, VR, 0, VR, 0, VR, 0, VR, 0, VR,
    0, VR, 0, VR, 0, VR, 0, VR, 0, VR, 0, VR, 0, VR, 0, VR },
  { BB, BB, BB, BB, BB, BB, BB, BB, BB, BB, BB, BB, BB, BB, BB, BB },
  { BG, BG, BG, BG, BG, BG, BG, BG, BG, BG, BG, BG, BG, BG, BG, BG },
  { BR, BR, BR, BR, BR, BR, BR, BR, BR, BR, BR, BR, BR, BR, BR, BR },
  { YG, YG, YG, YG, YG, YG, YG, YG, YG, YG, YG, YG, YG, YG, YG, YG }
1365 1366
};

1367
// BT601 constants for NV21 where chroma plane is VU instead of UV.
1368
static YuvConstants SIMD_ALIGNED(kYvuConstants) = {
1369 1370 1371 1372 1373 1374 1375 1376 1377 1378
  { 0, UB, 0, UB, 0, UB, 0, UB, 0, UB, 0, UB, 0, UB, 0, UB,
    0, UB, 0, UB, 0, UB, 0, UB, 0, UB, 0, UB, 0, UB, 0, UB },
  { VG, UG, VG, UG, VG, UG, VG, UG, VG, UG, VG, UG, VG, UG, VG, UG,
    VG, UG, VG, UG, VG, UG, VG, UG, VG, UG, VG, UG, VG, UG, VG, UG },
  { VR, 0, VR, 0, VR, 0, VR, 0, VR, 0, VR, 0, VR, 0, VR, 0,
    VR, 0, VR, 0, VR, 0, VR, 0, VR, 0, VR, 0, VR, 0, VR, 0 },
  { BB, BB, BB, BB, BB, BB, BB, BB, BB, BB, BB, BB, BB, BB, BB, BB },
  { BG, BG, BG, BG, BG, BG, BG, BG, BG, BG, BG, BG, BG, BG, BG, BG },
  { BR, BR, BR, BR, BR, BR, BR, BR, BR, BR, BR, BR, BR, BR, BR, BR },
  { YG, YG, YG, YG, YG, YG, YG, YG, YG, YG, YG, YG, YG, YG, YG, YG }
1379 1380
};

1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441
#undef YG
#undef YGB
#undef UB
#undef UG
#undef VG
#undef VR
#undef BB
#undef BG
#undef BR

// JPEG YUV to RGB reference
// *  R = Y                - V * -1.40200
// *  G = Y - U *  0.34414 - V *  0.71414
// *  B = Y - U * -1.77200

// Y contribution to R,G,B.  Scale and bias.
// TODO(fbarchard): Consider moving constants into a common header.
#define YGJ 16320 /* round(1.000 * 64 * 256 * 256 / 257) */
#define YGBJ 32  /* 64 / 2 */

// U and V contributions to R,G,B.
#define UBJ -113 /* round(-1.77200 * 64) */
#define UGJ 22 /* round(0.34414 * 64) */
#define VGJ 46 /* round(0.71414  * 64) */
#define VRJ -90 /* round(-1.40200 * 64) */

// Bias values to subtract 16 from Y and 128 from U and V.
#define BBJ (UBJ * 128             + YGBJ)
#define BGJ (UGJ * 128 + VGJ * 128 + YGBJ)
#define BRJ             (VRJ * 128 + YGBJ)

// JPEG constants for YUV to RGB.
YuvConstants SIMD_ALIGNED(kYuvJConstants) = {
  { UBJ, 0, UBJ, 0, UBJ, 0, UBJ, 0, UBJ, 0, UBJ, 0, UBJ, 0, UBJ, 0,
    UBJ, 0, UBJ, 0, UBJ, 0, UBJ, 0, UBJ, 0, UBJ, 0, UBJ, 0, UBJ, 0 },
  { UGJ, VGJ, UGJ, VGJ, UGJ, VGJ, UGJ, VGJ,
    UGJ, VGJ, UGJ, VGJ, UGJ, VGJ, UGJ, VGJ,
    UGJ, VGJ, UGJ, VGJ, UGJ, VGJ, UGJ, VGJ,
    UGJ, VGJ, UGJ, VGJ, UGJ, VGJ, UGJ, VGJ },
  { 0, VRJ, 0, VRJ, 0, VRJ, 0, VRJ, 0, VRJ, 0, VRJ, 0, VRJ, 0, VRJ,
    0, VRJ, 0, VRJ, 0, VRJ, 0, VRJ, 0, VRJ, 0, VRJ, 0, VRJ, 0, VRJ },
  { BBJ, BBJ, BBJ, BBJ, BBJ, BBJ, BBJ, BBJ,
    BBJ, BBJ, BBJ, BBJ, BBJ, BBJ, BBJ, BBJ },
  { BGJ, BGJ, BGJ, BGJ, BGJ, BGJ, BGJ, BGJ,
    BGJ, BGJ, BGJ, BGJ, BGJ, BGJ, BGJ, BGJ },
  { BRJ, BRJ, BRJ, BRJ, BRJ, BRJ, BRJ, BRJ,
    BRJ, BRJ, BRJ, BRJ, BRJ, BRJ, BRJ, BRJ },
  { YGJ, YGJ, YGJ, YGJ, YGJ, YGJ, YGJ, YGJ,
    YGJ, YGJ, YGJ, YGJ, YGJ, YGJ, YGJ, YGJ }
};

#undef YGJ
#undef YGBJ
#undef UBJ
#undef UGJ
#undef VGJ
#undef VRJ
#undef BBJ
#undef BGJ
#undef BRJ

1442 1443
// Read 8 UV from 411
#define READYUV444                                                             \
1444
    "movq       " MEMACCESS([u_buf]) ",%%xmm0                   \n"            \
1445 1446 1447
    MEMOPREG(movq, 0x00, [u_buf], [v_buf], 1, xmm1)                            \
    "lea        " MEMLEA(0x8, [u_buf]) ",%[u_buf]               \n"            \
    "punpcklbw  %%xmm1,%%xmm0                                   \n"
1448

1449 1450
// Read 4 UV from 422, upsample to 8 UV
#define READYUV422                                                             \
1451
    "movd       " MEMACCESS([u_buf]) ",%%xmm0                   \n"            \
1452
    MEMOPREG(movd, 0x00, [u_buf], [v_buf], 1, xmm1)                            \
1453
    "lea        " MEMLEA(0x4, [u_buf]) ",%[u_buf]               \n"            \
1454
    "punpcklbw  %%xmm1,%%xmm0                                   \n"            \
1455
    "punpcklwd  %%xmm0,%%xmm0                                   \n"
1456

1457 1458
// Read 2 UV from 411, upsample to 8 UV
#define READYUV411                                                             \
1459
    "movd       " MEMACCESS([u_buf]) ",%%xmm0                   \n"            \
1460 1461
    MEMOPREG(movd, 0x00, [u_buf], [v_buf], 1, xmm1)                            \
    "lea        " MEMLEA(0x2, [u_buf]) ",%[u_buf]               \n"            \
1462 1463
    "punpcklbw  %%xmm1,%%xmm0                                   \n"            \
    "punpcklwd  %%xmm0,%%xmm0                                   \n"            \
1464
    "punpckldq  %%xmm0,%%xmm0                                   \n"
1465

1466 1467
// Read 4 UV from NV12, upsample to 8 UV
#define READNV12                                                               \
1468
    "movq       " MEMACCESS([uv_buf]) ",%%xmm0                  \n"            \
1469 1470
    "lea        " MEMLEA(0x8, [uv_buf]) ",%[uv_buf]             \n"            \
    "punpcklwd  %%xmm0,%%xmm0                                   \n"
1471

1472
// Convert 8 pixels: 8 UV and 8 Y
1473
#define YUVTORGB(YuvConstants)                                                 \
1474 1475
    "movdqa     %%xmm0,%%xmm1                                   \n"            \
    "movdqa     %%xmm0,%%xmm2                                   \n"            \
1476
    "movdqa     %%xmm0,%%xmm3                                   \n"            \
1477 1478
    "movdqa     " MEMACCESS2(96, [YuvConstants]) ",%%xmm0       \n"            \
    "pmaddubsw  " MEMACCESS([YuvConstants]) ",%%xmm1            \n"            \
1479
    "psubw      %%xmm1,%%xmm0                                   \n"            \
1480 1481
    "movdqa     " MEMACCESS2(128, [YuvConstants]) ",%%xmm1      \n"            \
    "pmaddubsw  " MEMACCESS2(32, [YuvConstants]) ",%%xmm2       \n"            \
1482
    "psubw      %%xmm2,%%xmm1                                   \n"            \
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    "movdqa     " MEMACCESS2(160, [YuvConstants]) ",%%xmm2      \n"            \
    "pmaddubsw  " MEMACCESS2(64, [YuvConstants]) ",%%xmm3       \n"            \
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    "psubw      %%xmm3,%%xmm2                                   \n"            \
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    "movq       " MEMACCESS([y_buf]) ",%%xmm3                   \n"            \
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    "lea        " MEMLEA(0x8, [y_buf]) ",%[y_buf]               \n"            \
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    "punpcklbw  %%xmm3,%%xmm3                                   \n"            \
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    "pmulhuw    " MEMACCESS2(192, [YuvConstants]) ",%%xmm3      \n"            \
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    "paddsw     %%xmm3,%%xmm0                                   \n"            \
    "paddsw     %%xmm3,%%xmm1                                   \n"            \
    "paddsw     %%xmm3,%%xmm2                                   \n"            \
    "psraw      $0x6,%%xmm0                                     \n"            \
    "psraw      $0x6,%%xmm1                                     \n"            \
    "psraw      $0x6,%%xmm2                                     \n"            \
    "packuswb   %%xmm0,%%xmm0                                   \n"            \
    "packuswb   %%xmm1,%%xmm1                                   \n"            \
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    "packuswb   %%xmm2,%%xmm2                                   \n"
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// Store 8 ARGB values. Assumes XMM5 is zero.
#define STOREARGB                                                              \
    "punpcklbw  %%xmm1,%%xmm0                                    \n"           \
    "punpcklbw  %%xmm5,%%xmm2                                    \n"           \
    "movdqa     %%xmm0,%%xmm1                                    \n"           \
    "punpcklwd  %%xmm2,%%xmm0                                    \n"           \
    "punpckhwd  %%xmm2,%%xmm1                                    \n"           \
    "movdqu     %%xmm0," MEMACCESS([dst_argb]) "                 \n"           \
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    "movdqu     %%xmm1," MEMACCESS2(0x10, [dst_argb]) "          \n"           \
    "lea        " MEMLEA(0x20, [dst_argb]) ", %[dst_argb]        \n"
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// Store 8 BGRA values. Assumes XMM5 is zero.
#define STOREBGRA                                                              \
    "pcmpeqb   %%xmm5,%%xmm5                                     \n"           \
    "punpcklbw %%xmm0,%%xmm1                                     \n"           \
    "punpcklbw %%xmm2,%%xmm5                                     \n"           \
    "movdqa    %%xmm5,%%xmm0                                     \n"           \
    "punpcklwd %%xmm1,%%xmm5                                     \n"           \
    "punpckhwd %%xmm1,%%xmm0                                     \n"           \
    "movdqu    %%xmm5," MEMACCESS([dst_bgra]) "                  \n"           \
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    "movdqu    %%xmm0," MEMACCESS2(0x10, [dst_bgra]) "           \n"           \
    "lea       " MEMLEA(0x20, [dst_bgra]) ", %[dst_bgra]         \n"
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// Store 8 ABGR values. Assumes XMM5 is zero.
#define STOREABGR                                                              \
    "punpcklbw %%xmm1,%%xmm2                                     \n"           \
    "punpcklbw %%xmm5,%%xmm0                                     \n"           \
    "movdqa    %%xmm2,%%xmm1                                     \n"           \
    "punpcklwd %%xmm0,%%xmm2                                     \n"           \
    "punpckhwd %%xmm0,%%xmm1                                     \n"           \
    "movdqu    %%xmm2," MEMACCESS([dst_abgr]) "                  \n"           \
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    "movdqu    %%xmm1," MEMACCESS2(0x10, [dst_abgr]) "           \n"           \
    "lea       " MEMLEA(0x20, [dst_abgr]) ", %[dst_abgr]         \n"
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// Store 8 RGBA values. Assumes XMM5 is zero.
#define STORERGBA                                                              \
    "pcmpeqb   %%xmm5,%%xmm5                                     \n"           \
    "punpcklbw %%xmm2,%%xmm1                                     \n"           \
    "punpcklbw %%xmm0,%%xmm5                                     \n"           \
    "movdqa    %%xmm5,%%xmm0                                     \n"           \
    "punpcklwd %%xmm1,%%xmm5                                     \n"           \
    "punpckhwd %%xmm1,%%xmm0                                     \n"           \
    "movdqu    %%xmm5," MEMACCESS([dst_rgba]) "                  \n"           \
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    "movdqu    %%xmm0," MEMACCESS2(0x10, [dst_rgba]) "           \n"           \
    "lea       " MEMLEA(0x20, [dst_rgba]) ",%[dst_rgba]          \n"
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void OMITFP I444ToARGBRow_SSSE3(const uint8* y_buf,
fbarchard@google.com's avatar
fbarchard@google.com committed
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                                const uint8* u_buf,
                                const uint8* v_buf,
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                                uint8* dst_argb,
fbarchard@google.com's avatar
fbarchard@google.com committed
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                                int width) {
fbarchard@google.com's avatar
fbarchard@google.com committed
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  asm volatile (
1552
    "sub       %[u_buf],%[v_buf]               \n"
1553
    "pcmpeqb   %%xmm5,%%xmm5                   \n"
1554
    LABELALIGN
1555
  "1:                                          \n"
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    READYUV444
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    YUVTORGB(kYuvConstants)
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    STOREARGB
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    "sub       $0x8,%[width]                   \n"
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    "jg        1b                              \n"
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  : [y_buf]"+r"(y_buf),    // %[y_buf]
    [u_buf]"+r"(u_buf),    // %[u_buf]
    [v_buf]"+r"(v_buf),    // %[v_buf]
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    [dst_argb]"+r"(dst_argb),  // %[dst_argb]
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    [width]"+rm"(width)    // %[width]
  : [kYuvConstants]"r"(&kYuvConstants.kUVToB) // %[kYuvConstants]
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  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
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  );
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mikhal@webrtc.org committed
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}

1572
// TODO(fbarchard): Consider putting masks into constants.
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void OMITFP I422ToRGB24Row_SSSE3(const uint8* y_buf,
                                 const uint8* u_buf,
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                                 const uint8* v_buf,
                                 uint8* dst_rgb24,
                                 int width) {
  asm volatile (
    "movdqa    %[kShuffleMaskARGBToRGB24_0],%%xmm5 \n"
    "movdqa    %[kShuffleMaskARGBToRGB24],%%xmm6   \n"
    "sub       %[u_buf],%[v_buf]               \n"
1582
    LABELALIGN
1583
  "1:                                          \n"
1584
    READYUV422
1585
    YUVTORGB(kYuvConstants)
1586
    "punpcklbw %%xmm1,%%xmm0                   \n"
1587
    "punpcklbw %%xmm2,%%xmm2                   \n"
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    "movdqa    %%xmm0,%%xmm1                   \n"
    "punpcklwd %%xmm2,%%xmm0                   \n"
    "punpckhwd %%xmm2,%%xmm1                   \n"
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    "pshufb    %%xmm5,%%xmm0                   \n"
    "pshufb    %%xmm6,%%xmm1                   \n"
    "palignr   $0xc,%%xmm0,%%xmm1              \n"
    "movq      %%xmm0," MEMACCESS([dst_rgb24]) "\n"
    "movdqu    %%xmm1," MEMACCESS2(0x8,[dst_rgb24]) "\n"
    "lea       " MEMLEA(0x18,[dst_rgb24]) ",%[dst_rgb24] \n"
1597
    "subl      $0x8,%[width]                   \n"
1598
    "jg        1b                              \n"
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  : [y_buf]"+r"(y_buf),    // %[y_buf]
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    [u_buf]"+r"(u_buf),    // %[u_buf]
    [v_buf]"+r"(v_buf),    // %[v_buf]
    [dst_rgb24]"+r"(dst_rgb24),  // %[dst_rgb24]
1603
// TODO(fbarchard): Make width a register for 32 bit.
1604
#if defined(__i386__) && defined(__pic__)
1605
    [width]"+m"(width)     // %[width]
1606
#else
1607
    [width]"+rm"(width)    // %[width]
1608
#endif
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  : [kYuvConstants]"r"(&kYuvConstants.kUVToB),
    [kShuffleMaskARGBToRGB24_0]"m"(kShuffleMaskARGBToRGB24_0),
    [kShuffleMaskARGBToRGB24]"m"(kShuffleMaskARGBToRGB24)
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  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm5", "xmm6"
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  );
}

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void OMITFP I422ToRAWRow_SSSE3(const uint8* y_buf,
                               const uint8* u_buf,
                               const uint8* v_buf,
                               uint8* dst_raw,
                               int width) {
  asm volatile (
    "movdqa    %[kShuffleMaskARGBToRAW_0],%%xmm5 \n"
    "movdqa    %[kShuffleMaskARGBToRAW],%%xmm6   \n"
1625
    "sub       %[u_buf],%[v_buf]               \n"
1626
    LABELALIGN
1627
  "1:                                          \n"
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    READYUV422
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    YUVTORGB(kYuvConstants)
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    "punpcklbw %%xmm1,%%xmm0                   \n"
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    "punpcklbw %%xmm2,%%xmm2                   \n"
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    "movdqa    %%xmm0,%%xmm1                   \n"
    "punpcklwd %%xmm2,%%xmm0                   \n"
    "punpckhwd %%xmm2,%%xmm1                   \n"
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    "pshufb    %%xmm5,%%xmm0                   \n"
    "pshufb    %%xmm6,%%xmm1                   \n"
    "palignr   $0xc,%%xmm0,%%xmm1              \n"
    "movq      %%xmm0," MEMACCESS([dst_raw]) " \n"
    "movdqu    %%xmm1," MEMACCESS2(0x8,[dst_raw]) "\n"
    "lea       " MEMLEA(0x18,[dst_raw]) ",%[dst_raw] \n"
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    "subl      $0x8,%[width]                   \n"
1642
    "jg        1b                              \n"
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  : [y_buf]"+r"(y_buf),    // %[y_buf]
    [u_buf]"+r"(u_buf),    // %[u_buf]
    [v_buf]"+r"(v_buf),    // %[v_buf]
1646
    [dst_raw]"+r"(dst_raw),  // %[dst_raw]
1647
// TODO(fbarchard): Make width a register for 32 bit.
1648
#if defined(__i386__) && defined(__pic__)
1649
    [width]"+m"(width)    // %[width]
1650
#else
1651
    [width]"+rm"(width)    // %[width]
1652
#endif
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  : [kYuvConstants]"r"(&kYuvConstants.kUVToB),
    [kShuffleMaskARGBToRAW_0]"m"(kShuffleMaskARGBToRAW_0),
    [kShuffleMaskARGBToRAW]"m"(kShuffleMaskARGBToRAW)
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  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm5", "xmm6"
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  );
}

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void OMITFP I422ToARGBRow_SSSE3(const uint8* y_buf,
                                const uint8* u_buf,
                                const uint8* v_buf,
                                uint8* dst_argb,
                                int width) {
1666
  asm volatile (
1667
    "sub       %[u_buf],%[v_buf]               \n"
1668
    "pcmpeqb   %%xmm5,%%xmm5                   \n"
1669
    LABELALIGN
1670
  "1:                                          \n"
1671
    READYUV422
1672
    YUVTORGB(kYuvConstants)
1673
    STOREARGB
1674
    "sub       $0x8,%[width]                   \n"
1675
    "jg        1b                              \n"
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  : [y_buf]"+r"(y_buf),    // %[y_buf]
    [u_buf]"+r"(u_buf),    // %[u_buf]
    [v_buf]"+r"(v_buf),    // %[v_buf]
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    [dst_argb]"+r"(dst_argb),  // %[dst_argb]
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    [width]"+rm"(width)    // %[width]
  : [kYuvConstants]"r"(&kYuvConstants.kUVToB) // %[kYuvConstants]
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  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
1684 1685 1686
  );
}

1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710 1711 1712
void OMITFP J422ToARGBRow_SSSE3(const uint8* y_buf,
                                const uint8* u_buf,
                                const uint8* v_buf,
                                uint8* dst_argb,
                                int width) {
  asm volatile (
    "sub       %[u_buf],%[v_buf]               \n"
    "pcmpeqb   %%xmm5,%%xmm5                   \n"
    LABELALIGN
  "1:                                          \n"
    READYUV422
    YUVTORGB(kYuvConstants)
    STOREARGB
    "sub       $0x8,%[width]                   \n"
    "jg        1b                              \n"
  : [y_buf]"+r"(y_buf),    // %[y_buf]
    [u_buf]"+r"(u_buf),    // %[u_buf]
    [v_buf]"+r"(v_buf),    // %[v_buf]
    [dst_argb]"+r"(dst_argb),  // %[dst_argb]
    [width]"+rm"(width)    // %[width]
  : [kYuvConstants]"r"(&kYuvJConstants.kUVToB) // %[kYuvConstants]
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
  );
}

1713 1714 1715 1716 1717
void OMITFP I411ToARGBRow_SSSE3(const uint8* y_buf,
                                const uint8* u_buf,
                                const uint8* v_buf,
                                uint8* dst_argb,
                                int width) {
1718
  asm volatile (
1719
    "sub       %[u_buf],%[v_buf]               \n"
1720
    "pcmpeqb   %%xmm5,%%xmm5                   \n"
1721
    LABELALIGN
1722
  "1:                                          \n"
1723
    READYUV411
1724
    YUVTORGB(kYuvConstants)
1725
    STOREARGB
1726 1727 1728 1729 1730
    "sub       $0x8,%[width]                   \n"
    "jg        1b                              \n"
  : [y_buf]"+r"(y_buf),    // %[y_buf]
    [u_buf]"+r"(u_buf),    // %[u_buf]
    [v_buf]"+r"(v_buf),    // %[v_buf]
1731
    [dst_argb]"+r"(dst_argb),  // %[dst_argb]
1732 1733
    [width]"+rm"(width)    // %[width]
  : [kYuvConstants]"r"(&kYuvConstants.kUVToB) // %[kYuvConstants]
1734 1735
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
1736 1737 1738
  );
}

1739 1740 1741 1742
void OMITFP NV12ToARGBRow_SSSE3(const uint8* y_buf,
                                const uint8* uv_buf,
                                uint8* dst_argb,
                                int width) {
1743 1744
  asm volatile (
    "pcmpeqb   %%xmm5,%%xmm5                   \n"
1745
    LABELALIGN
1746 1747
  "1:                                          \n"
    READNV12
1748
    YUVTORGB(kYuvConstants)
1749
    STOREARGB
1750
    "sub       $0x8,%[width]                   \n"
1751
    "jg        1b                              \n"
1752 1753
  : [y_buf]"+r"(y_buf),    // %[y_buf]
    [uv_buf]"+r"(uv_buf),    // %[uv_buf]
1754
    [dst_argb]"+r"(dst_argb),  // %[dst_argb]
1755 1756
    [width]"+rm"(width)    // %[width]
  : [kYuvConstants]"r"(&kYuvConstants.kUVToB) // %[kYuvConstants]
1757
  // Does not use r14.
1758
  : "memory", "cc", "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
1759 1760 1761
  );
}

1762 1763 1764 1765
void OMITFP NV21ToARGBRow_SSSE3(const uint8* y_buf,
                                const uint8* uv_buf,
                                uint8* dst_argb,
                                int width) {
1766 1767
  asm volatile (
    "pcmpeqb   %%xmm5,%%xmm5                   \n"
1768
    LABELALIGN
1769 1770
  "1:                                          \n"
    READNV12
1771
    YUVTORGB(kYuvConstants)
1772
    STOREARGB
1773 1774 1775
    "sub       $0x8,%[width]                   \n"
    "jg        1b                              \n"
  : [y_buf]"+r"(y_buf),    // %[y_buf]
1776 1777
    [uv_buf]"+r"(uv_buf),    // %[uv_buf]
    [dst_argb]"+r"(dst_argb),  // %[dst_argb]
1778
    [width]"+rm"(width)    // %[width]
1779
  : [kYuvConstants]"r"(&kYvuConstants.kUVToB) // %[kYuvConstants]
1780
  // Does not use r14.
1781
  : "memory", "cc", "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
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  );
}

void OMITFP I422ToBGRARow_SSSE3(const uint8* y_buf,
                                const uint8* u_buf,
                                const uint8* v_buf,
1788
                                uint8* dst_bgra,
1789 1790
                                int width) {
  asm volatile (
1791
    "sub       %[u_buf],%[v_buf]               \n"
1792
    "pcmpeqb   %%xmm5,%%xmm5                   \n"
1793
    LABELALIGN
1794
  "1:                                          \n"
1795
    READYUV422
1796
    YUVTORGB(kYuvConstants)
1797
    STOREBGRA
1798
    "sub       $0x8,%[width]                   \n"
1799
    "jg        1b                              \n"
1800 1801 1802
  : [y_buf]"+r"(y_buf),    // %[y_buf]
    [u_buf]"+r"(u_buf),    // %[u_buf]
    [v_buf]"+r"(v_buf),    // %[v_buf]
1803
    [dst_bgra]"+r"(dst_bgra),  // %[dst_bgra]
1804 1805
    [width]"+rm"(width)    // %[width]
  : [kYuvConstants]"r"(&kYuvConstants.kUVToB) // %[kYuvConstants]
1806 1807
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
1808 1809 1810
  );
}

1811 1812 1813
void OMITFP I422ToABGRRow_SSSE3(const uint8* y_buf,
                                const uint8* u_buf,
                                const uint8* v_buf,
1814
                                uint8* dst_abgr,
1815
                                int width) {
1816
  asm volatile (
1817
    "sub       %[u_buf],%[v_buf]               \n"
1818
    "pcmpeqb   %%xmm5,%%xmm5                   \n"
1819
    LABELALIGN
1820
  "1:                                          \n"
1821
    READYUV422
1822
    YUVTORGB(kYuvConstants)
1823
    STOREABGR
1824
    "sub       $0x8,%[width]                   \n"
1825
    "jg        1b                              \n"
1826 1827 1828
  : [y_buf]"+r"(y_buf),    // %[y_buf]
    [u_buf]"+r"(u_buf),    // %[u_buf]
    [v_buf]"+r"(v_buf),    // %[v_buf]
1829
    [dst_abgr]"+r"(dst_abgr),  // %[dst_abgr]
1830 1831
    [width]"+rm"(width)    // %[width]
  : [kYuvConstants]"r"(&kYuvConstants.kUVToB) // %[kYuvConstants]
1832 1833
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
1834
  );
1835 1836
}

1837 1838 1839
void OMITFP I422ToRGBARow_SSSE3(const uint8* y_buf,
                                const uint8* u_buf,
                                const uint8* v_buf,
1840
                                uint8* dst_rgba,
1841 1842 1843 1844
                                int width) {
  asm volatile (
    "sub       %[u_buf],%[v_buf]               \n"
    "pcmpeqb   %%xmm5,%%xmm5                   \n"
1845
    LABELALIGN
1846 1847
  "1:                                          \n"
    READYUV422
1848
    YUVTORGB(kYuvConstants)
1849
    STORERGBA
1850 1851 1852 1853 1854
    "sub       $0x8,%[width]                   \n"
    "jg        1b                              \n"
  : [y_buf]"+r"(y_buf),    // %[y_buf]
    [u_buf]"+r"(u_buf),    // %[u_buf]
    [v_buf]"+r"(v_buf),    // %[v_buf]
1855
    [dst_rgba]"+r"(dst_rgba),  // %[dst_rgba]
1856 1857
    [width]"+rm"(width)    // %[width]
  : [kYuvConstants]"r"(&kYuvConstants.kUVToB) // %[kYuvConstants]
1858 1859
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
1860 1861 1862
  );
}

1863
#endif  // HAS_I422TOARGBROW_SSSE3
1864

1865 1866 1867 1868 1869 1870 1871 1872 1873 1874
// Read 8 UV from 422, upsample to 16 UV.
#define READYUV422_AVX2                                                        \
    "vmovq       " MEMACCESS([u_buf]) ",%%xmm0                      \n"        \
    MEMOPREG(vmovq, 0x00, [u_buf], [v_buf], 1, xmm1)                           \
    "lea        " MEMLEA(0x8, [u_buf]) ",%[u_buf]                   \n"        \
    "vpunpcklbw %%ymm1,%%ymm0,%%ymm0                                \n"        \
    "vpermq     $0xd8,%%ymm0,%%ymm0                                 \n"        \
    "vpunpcklwd %%ymm0,%%ymm0,%%ymm0                                \n"

// Convert 16 pixels: 16 UV and 16 Y.
1875 1876 1877 1878 1879
#define YUVTORGB_AVX2(YuvConstants)                                            \
    "vpmaddubsw  " MEMACCESS2(64, [YuvConstants]) ",%%ymm0,%%ymm2   \n"        \
    "vpmaddubsw  " MEMACCESS2(32, [YuvConstants]) ",%%ymm0,%%ymm1   \n"        \
    "vpmaddubsw  " MEMACCESS([YuvConstants]) ",%%ymm0,%%ymm0        \n"        \
    "vmovdqu     " MEMACCESS2(160, [YuvConstants]) ",%%ymm3         \n"        \
1880
    "vpsubw      %%ymm2,%%ymm3,%%ymm2                               \n"        \
1881 1882 1883 1884
    "vmovdqu     " MEMACCESS2(128, [YuvConstants]) ",%%ymm3         \n"        \
    "vpsubw      %%ymm1,%%ymm3,%%ymm1                               \n"        \
    "vmovdqu     " MEMACCESS2(96, [YuvConstants]) ",%%ymm3          \n"        \
    "vpsubw      %%ymm0,%%ymm3,%%ymm0                               \n"        \
1885 1886 1887
    "vmovdqu     " MEMACCESS([y_buf]) ",%%xmm3                      \n"        \
    "lea         " MEMLEA(0x10, [y_buf]) ",%[y_buf]                 \n"        \
    "vpermq      $0xd8,%%ymm3,%%ymm3                                \n"        \
1888
    "vpunpcklbw  %%ymm3,%%ymm3,%%ymm3                               \n"        \
1889
    "vpmulhuw    " MEMACCESS2(192, [YuvConstants]) ",%%ymm3,%%ymm3  \n"        \
1890 1891 1892 1893 1894 1895 1896 1897 1898 1899
    "vpaddsw     %%ymm3,%%ymm0,%%ymm0           \n"                            \
    "vpaddsw     %%ymm3,%%ymm1,%%ymm1           \n"                            \
    "vpaddsw     %%ymm3,%%ymm2,%%ymm2           \n"                            \
    "vpsraw      $0x6,%%ymm0,%%ymm0             \n"                            \
    "vpsraw      $0x6,%%ymm1,%%ymm1             \n"                            \
    "vpsraw      $0x6,%%ymm2,%%ymm2             \n"                            \
    "vpackuswb   %%ymm0,%%ymm0,%%ymm0           \n"                            \
    "vpackuswb   %%ymm1,%%ymm1,%%ymm1           \n"                            \
    "vpackuswb   %%ymm2,%%ymm2,%%ymm2           \n"

1900 1901 1902 1903 1904 1905 1906 1907 1908 1909 1910 1911 1912 1913
#if defined(HAS_I422TOBGRAROW_AVX2)
// 16 pixels
// 8 UV values upsampled to 16 UV, mixed with 16 Y producing 16 BGRA (64 bytes).
void OMITFP I422ToBGRARow_AVX2(const uint8* y_buf,
                               const uint8* u_buf,
                               const uint8* v_buf,
                               uint8* dst_bgra,
                               int width) {
  asm volatile (
    "sub       %[u_buf],%[v_buf]               \n"
    "vpcmpeqb   %%ymm5,%%ymm5,%%ymm5           \n"
    LABELALIGN
  "1:                                          \n"
    READYUV422_AVX2
1914
    YUVTORGB_AVX2(kYuvConstants)
1915 1916 1917 1918 1919 1920 1921 1922 1923 1924 1925 1926 1927 1928 1929 1930 1931 1932 1933 1934

    // Step 3: Weave into BGRA
    "vpunpcklbw %%ymm0,%%ymm1,%%ymm1           \n"  // GB
    "vpermq     $0xd8,%%ymm1,%%ymm1            \n"
    "vpunpcklbw %%ymm2,%%ymm5,%%ymm2           \n"  // AR
    "vpermq     $0xd8,%%ymm2,%%ymm2            \n"
    "vpunpcklwd %%ymm1,%%ymm2,%%ymm0           \n"  // ARGB first 8 pixels
    "vpunpckhwd %%ymm1,%%ymm2,%%ymm2           \n"  // ARGB next 8 pixels

    "vmovdqu    %%ymm0," MEMACCESS([dst_bgra]) "\n"
    "vmovdqu    %%ymm2," MEMACCESS2(0x20,[dst_bgra]) "\n"
    "lea       " MEMLEA(0x40,[dst_bgra]) ",%[dst_bgra] \n"
    "sub       $0x10,%[width]                  \n"
    "jg        1b                              \n"
    "vzeroupper                                \n"
  : [y_buf]"+r"(y_buf),    // %[y_buf]
    [u_buf]"+r"(u_buf),    // %[u_buf]
    [v_buf]"+r"(v_buf),    // %[v_buf]
    [dst_bgra]"+r"(dst_bgra),  // %[dst_bgra]
    [width]"+rm"(width)    // %[width]
1935
  : [kYuvConstants]"r"(&kYuvConstants.kUVToB)  // %[kYuvConstants]
1936 1937
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
1938 1939 1940 1941
  );
}
#endif  // HAS_I422TOBGRAROW_AVX2

1942
#if defined(HAS_I422TOARGBROW_AVX2)
1943 1944 1945 1946 1947 1948 1949 1950 1951 1952 1953 1954 1955
// 16 pixels
// 8 UV values upsampled to 16 UV, mixed with 16 Y producing 16 ARGB (64 bytes).
void OMITFP I422ToARGBRow_AVX2(const uint8* y_buf,
                               const uint8* u_buf,
                               const uint8* v_buf,
                               uint8* dst_argb,
                               int width) {
  asm volatile (
    "sub       %[u_buf],%[v_buf]               \n"
    "vpcmpeqb   %%ymm5,%%ymm5,%%ymm5           \n"
    LABELALIGN
  "1:                                          \n"
    READYUV422_AVX2
1956
    YUVTORGB_AVX2(kYuvConstants)
1957 1958 1959 1960 1961 1962 1963 1964 1965

    // Step 3: Weave into ARGB
    "vpunpcklbw %%ymm1,%%ymm0,%%ymm0           \n"  // BG
    "vpermq     $0xd8,%%ymm0,%%ymm0            \n"
    "vpunpcklbw %%ymm5,%%ymm2,%%ymm2           \n"  // RA
    "vpermq     $0xd8,%%ymm2,%%ymm2            \n"
    "vpunpcklwd %%ymm2,%%ymm0,%%ymm1           \n"  // BGRA first 8 pixels
    "vpunpckhwd %%ymm2,%%ymm0,%%ymm0           \n"  // BGRA next 8 pixels

1966 1967
    "vmovdqu    %%ymm1," MEMACCESS([dst_argb]) "\n"
    "vmovdqu    %%ymm0," MEMACCESS2(0x20,[dst_argb]) "\n"
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    "lea       " MEMLEA(0x40,[dst_argb]) ",%[dst_argb] \n"
    "sub       $0x10,%[width]                  \n"
    "jg        1b                              \n"
1971
    "vzeroupper                                \n"
1972 1973 1974 1975 1976
  : [y_buf]"+r"(y_buf),    // %[y_buf]
    [u_buf]"+r"(u_buf),    // %[u_buf]
    [v_buf]"+r"(v_buf),    // %[v_buf]
    [dst_argb]"+r"(dst_argb),  // %[dst_argb]
    [width]"+rm"(width)    // %[width]
1977
  : [kYuvConstants]"r"(&kYuvConstants.kUVToB)  // %[kYuvConstants]
1978 1979
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
1980 1981 1982
  );
}
#endif  // HAS_I422TOARGBROW_AVX2
1983

1984 1985 1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024 2025
#if defined(HAS_J422TOARGBROW_AVX2)
// 16 pixels
// 8 UV values upsampled to 16 UV, mixed with 16 Y producing 16 ARGB (64 bytes).
void OMITFP J422ToARGBRow_AVX2(const uint8* y_buf,
                               const uint8* u_buf,
                               const uint8* v_buf,
                               uint8* dst_argb,
                               int width) {
  asm volatile (
    "sub       %[u_buf],%[v_buf]               \n"
    "vpcmpeqb   %%ymm5,%%ymm5,%%ymm5           \n"
    LABELALIGN
  "1:                                          \n"
    READYUV422_AVX2
    YUVTORGB_AVX2(kYuvConstants)

    // Step 3: Weave into ARGB
    "vpunpcklbw %%ymm1,%%ymm0,%%ymm0           \n"  // BG
    "vpermq     $0xd8,%%ymm0,%%ymm0            \n"
    "vpunpcklbw %%ymm5,%%ymm2,%%ymm2           \n"  // RA
    "vpermq     $0xd8,%%ymm2,%%ymm2            \n"
    "vpunpcklwd %%ymm2,%%ymm0,%%ymm1           \n"  // BGRA first 8 pixels
    "vpunpckhwd %%ymm2,%%ymm0,%%ymm0           \n"  // BGRA next 8 pixels

    "vmovdqu    %%ymm1," MEMACCESS([dst_argb]) "\n"
    "vmovdqu    %%ymm0," MEMACCESS2(0x20,[dst_argb]) "\n"
    "lea       " MEMLEA(0x40,[dst_argb]) ",%[dst_argb] \n"
    "sub       $0x10,%[width]                  \n"
    "jg        1b                              \n"
    "vzeroupper                                \n"
  : [y_buf]"+r"(y_buf),    // %[y_buf]
    [u_buf]"+r"(u_buf),    // %[u_buf]
    [v_buf]"+r"(v_buf),    // %[v_buf]
    [dst_argb]"+r"(dst_argb),  // %[dst_argb]
    [width]"+rm"(width)    // %[width]
  : [kYuvConstants]"r"(&kYuvJConstants.kUVToB)  // %[kYuvConstants]
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
  );
}
#endif  // HAS_J422TOARGBROW_AVX2

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#if defined(HAS_I422TOABGRROW_AVX2)
// 16 pixels
2028
// 8 UV values upsampled to 16 UV, mixed with 16 Y producing 16 ABGR (64 bytes).
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void OMITFP I422ToABGRRow_AVX2(const uint8* y_buf,
                               const uint8* u_buf,
                               const uint8* v_buf,
                               uint8* dst_argb,
                               int width) {
  asm volatile (
    "sub       %[u_buf],%[v_buf]               \n"
    "vpcmpeqb   %%ymm5,%%ymm5,%%ymm5           \n"
    LABELALIGN
  "1:                                          \n"
    READYUV422_AVX2
2040
    YUVTORGB_AVX2(kYuvConstants)
2041 2042 2043 2044 2045 2046 2047 2048 2049 2050 2051 2052 2053

    // Step 3: Weave into ABGR
    "vpunpcklbw %%ymm1,%%ymm2,%%ymm1           \n"  // RG
    "vpermq     $0xd8,%%ymm1,%%ymm1            \n"
    "vpunpcklbw %%ymm5,%%ymm0,%%ymm2           \n"  // BA
    "vpermq     $0xd8,%%ymm2,%%ymm2            \n"
    "vpunpcklwd %%ymm2,%%ymm1,%%ymm0           \n"  // RGBA first 8 pixels
    "vpunpckhwd %%ymm2,%%ymm1,%%ymm1           \n"  // RGBA next 8 pixels
    "vmovdqu    %%ymm0," MEMACCESS([dst_argb]) "\n"
    "vmovdqu    %%ymm1," MEMACCESS2(0x20,[dst_argb]) "\n"
    "lea       " MEMLEA(0x40,[dst_argb]) ",%[dst_argb] \n"
    "sub       $0x10,%[width]                  \n"
    "jg        1b                              \n"
2054
    "vzeroupper                                \n"
2055 2056 2057 2058 2059
  : [y_buf]"+r"(y_buf),    // %[y_buf]
    [u_buf]"+r"(u_buf),    // %[u_buf]
    [v_buf]"+r"(v_buf),    // %[v_buf]
    [dst_argb]"+r"(dst_argb),  // %[dst_argb]
    [width]"+rm"(width)    // %[width]
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  : [kYuvConstants]"r"(&kYuvConstants.kUVToB)  // %[kYuvConstants]
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  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
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  );
}
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#endif  // HAS_I422TOABGRROW_AVX2

#if defined(HAS_I422TORGBAROW_AVX2)
// 16 pixels
// 8 UV values upsampled to 16 UV, mixed with 16 Y producing 16 RGBA (64 bytes).
void OMITFP I422ToRGBARow_AVX2(const uint8* y_buf,
                               const uint8* u_buf,
                               const uint8* v_buf,
                               uint8* dst_argb,
                               int width) {
  asm volatile (
    "sub       %[u_buf],%[v_buf]               \n"
    "vpcmpeqb   %%ymm5,%%ymm5,%%ymm5           \n"
    LABELALIGN
  "1:                                          \n"
    READYUV422_AVX2
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    YUVTORGB_AVX2(kYuvConstants)
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    // Step 3: Weave into RGBA
    "vpunpcklbw %%ymm2,%%ymm1,%%ymm1           \n"
    "vpermq     $0xd8,%%ymm1,%%ymm1            \n"
    "vpunpcklbw %%ymm0,%%ymm5,%%ymm2           \n"
    "vpermq     $0xd8,%%ymm2,%%ymm2            \n"
    "vpunpcklwd %%ymm1,%%ymm2,%%ymm0           \n"
    "vpunpckhwd %%ymm1,%%ymm2,%%ymm1           \n"
    "vmovdqu    %%ymm0," MEMACCESS([dst_argb]) "\n"
    "vmovdqu    %%ymm1," MEMACCESS2(0x20,[dst_argb]) "\n"
    "lea       " MEMLEA(0x40,[dst_argb]) ",%[dst_argb] \n"
    "sub       $0x10,%[width]                  \n"
    "jg        1b                              \n"
    "vzeroupper                                \n"
  : [y_buf]"+r"(y_buf),    // %[y_buf]
    [u_buf]"+r"(u_buf),    // %[u_buf]
    [v_buf]"+r"(v_buf),    // %[v_buf]
    [dst_argb]"+r"(dst_argb),  // %[dst_argb]
    [width]"+rm"(width)    // %[width]
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  : [kYuvConstants]"r"(&kYuvConstants.kUVToB)  // %[kYuvConstants]
2102 2103
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
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  );
}
#endif  // HAS_I422TORGBAROW_AVX2
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#ifdef HAS_I400TOARGBROW_SSE2
void I400ToARGBRow_SSE2(const uint8* y_buf, uint8* dst_argb, int width) {
fbarchard@google.com's avatar
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2110
  asm volatile (
2111
    "mov       $0x4a354a35,%%eax               \n"  // 4a35 = 18997 = 1.164
2112 2113
    "movd      %%eax,%%xmm2                    \n"
    "pshufd    $0x0,%%xmm2,%%xmm2              \n"
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    "mov       $0x04880488,%%eax               \n"  // 0488 = 1160 = 1.164 * 16
    "movd      %%eax,%%xmm3                    \n"
    "pshufd    $0x0,%%xmm3,%%xmm3              \n"
    "pcmpeqb   %%xmm4,%%xmm4                   \n"
    "pslld     $0x18,%%xmm4                    \n"
2119
    LABELALIGN
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  "1:                                          \n"
2121
    // Step 1: Scale Y contribution to 8 G values. G = (y - 16) * 1.164
2122 2123
    "movq      " MEMACCESS(0) ",%%xmm0         \n"
    "lea       " MEMLEA(0x8,0) ",%0            \n"
2124 2125
    "punpcklbw %%xmm0,%%xmm0                   \n"
    "pmulhuw   %%xmm2,%%xmm0                   \n"
2126
    "psubusw   %%xmm3,%%xmm0                   \n"
2127
    "psrlw     $6, %%xmm0                      \n"
2128
    "packuswb  %%xmm0,%%xmm0                   \n"
2129 2130

    // Step 2: Weave into ARGB
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    "punpcklbw %%xmm0,%%xmm0                   \n"
    "movdqa    %%xmm0,%%xmm1                   \n"
    "punpcklwd %%xmm0,%%xmm0                   \n"
    "punpckhwd %%xmm1,%%xmm1                   \n"
    "por       %%xmm4,%%xmm0                   \n"
    "por       %%xmm4,%%xmm1                   \n"
2137 2138
    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
    "movdqu    %%xmm1," MEMACCESS2(0x10,1) "   \n"
2139
    "lea       " MEMLEA(0x20,1) ",%1           \n"
2140 2141

    "sub       $0x8,%2                         \n"
2142
    "jg        1b                              \n"
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  : "+r"(y_buf),     // %0
    "+r"(dst_argb),  // %1
    "+rm"(width)     // %2
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  :
  : "memory", "cc", "eax"
    , "xmm0", "xmm1", "xmm2", "xmm3", "xmm4"
2149
  );
2150
}
2151
#endif  // HAS_I400TOARGBROW_SSE2
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2152

2153
#ifdef HAS_I400TOARGBROW_AVX2
2154 2155
// 16 pixels of Y converted to 16 pixels of ARGB (64 bytes).
// note: vpunpcklbw mutates and vpackuswb unmutates.
2156
void I400ToARGBRow_AVX2(const uint8* y_buf, uint8* dst_argb, int width) {
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  asm volatile (
    "mov        $0x4a354a35,%%eax              \n" // 0488 = 1160 = 1.164 * 16
    "vmovd      %%eax,%%xmm2                   \n"
    "vbroadcastss %%xmm2,%%ymm2                \n"
    "mov        $0x4880488,%%eax               \n" // 4a35 = 18997 = 1.164
    "vmovd      %%eax,%%xmm3                   \n"
    "vbroadcastss %%xmm3,%%ymm3                \n"
    "vpcmpeqb   %%ymm4,%%ymm4,%%ymm4           \n"
    "vpslld     $0x18,%%ymm4,%%ymm4            \n"
2166

2167 2168 2169
    LABELALIGN
  "1:                                          \n"
    // Step 1: Scale Y contribution to 16 G values. G = (y - 16) * 1.164
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    "vmovdqu    " MEMACCESS(0) ",%%xmm0        \n"
    "lea        " MEMLEA(0x10,0) ",%0          \n"
2172 2173 2174 2175 2176 2177 2178 2179 2180 2181 2182 2183
    "vpermq     $0xd8,%%ymm0,%%ymm0            \n"
    "vpunpcklbw %%ymm0,%%ymm0,%%ymm0           \n"
    "vpmulhuw   %%ymm2,%%ymm0,%%ymm0           \n"
    "vpsubusw   %%ymm3,%%ymm0,%%ymm0           \n"
    "vpsrlw     $0x6,%%ymm0,%%ymm0             \n"
    "vpackuswb  %%ymm0,%%ymm0,%%ymm0           \n"
    "vpunpcklbw %%ymm0,%%ymm0,%%ymm1           \n"
    "vpermq     $0xd8,%%ymm1,%%ymm1            \n"
    "vpunpcklwd %%ymm1,%%ymm1,%%ymm0           \n"
    "vpunpckhwd %%ymm1,%%ymm1,%%ymm1           \n"
    "vpor       %%ymm4,%%ymm0,%%ymm0           \n"
    "vpor       %%ymm4,%%ymm1,%%ymm1           \n"
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    "vmovdqu    %%ymm0," MEMACCESS(1) "        \n"
    "vmovdqu    %%ymm1," MEMACCESS2(0x20,1) "  \n"
    "lea       " MEMLEA(0x40,1) ",%1           \n"
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    "sub        $0x10,%2                       \n"
    "jg        1b                              \n"
    "vzeroupper                                \n"
  : "+r"(y_buf),     // %0
    "+r"(dst_argb),  // %1
    "+rm"(width)     // %2
  :
  : "memory", "cc", "eax"
    , "xmm0", "xmm1", "xmm2", "xmm3", "xmm4"
  );
}
2198
#endif  // HAS_I400TOARGBROW_AVX2
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2200
#ifdef HAS_MIRRORROW_SSSE3
2201
// Shuffle table for reversing the bytes.
2202
static uvec8 kShuffleMirror = {
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  15u, 14u, 13u, 12u, 11u, 10u, 9u, 8u, 7u, 6u, 5u, 4u, 3u, 2u, 1u, 0u
};

2206
void MirrorRow_SSSE3(const uint8* src, uint8* dst, int width) {
2207
  intptr_t temp_width = (intptr_t)(width);
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  asm volatile (
2209
    "movdqa    %3,%%xmm5                       \n"
2210
    LABELALIGN
2211
  "1:                                          \n"
2212
    MEMOPREG(movdqu,-0x10,0,2,1,xmm0)          //  movdqu -0x10(%0,%2),%%xmm0
2213
    "pshufb    %%xmm5,%%xmm0                   \n"
2214
    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
2215
    "lea       " MEMLEA(0x10,1) ",%1           \n"
2216
    "sub       $0x10,%2                        \n"
2217
    "jg        1b                              \n"
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  : "+r"(src),  // %0
    "+r"(dst),  // %1
    "+r"(temp_width)  // %2
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  : "m"(kShuffleMirror) // %3
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  : "memory", "cc", NACL_R14
    "xmm0", "xmm5"
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  );
}
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#endif  // HAS_MIRRORROW_SSSE3
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#ifdef HAS_MIRRORROW_AVX2
void MirrorRow_AVX2(const uint8* src, uint8* dst, int width) {
  intptr_t temp_width = (intptr_t)(width);
  asm volatile (
    "vbroadcastf128 %3,%%ymm5                  \n"
    LABELALIGN
  "1:                                          \n"
2235
    MEMOPREG(vmovdqu,-0x20,0,2,1,ymm0)         //  vmovdqu -0x20(%0,%2),%%ymm0
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    "vpshufb    %%ymm5,%%ymm0,%%ymm0           \n"
    "vpermq     $0x4e,%%ymm0,%%ymm0            \n"
    "vmovdqu    %%ymm0," MEMACCESS(1) "        \n"
    "lea       " MEMLEA(0x20,1) ",%1           \n"
2240
    "sub       $0x20,%2                        \n"
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    "jg        1b                              \n"
    "vzeroupper                                \n"
  : "+r"(src),  // %0
    "+r"(dst),  // %1
    "+r"(temp_width)  // %2
  : "m"(kShuffleMirror) // %3
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  : "memory", "cc", NACL_R14
    "xmm0", "xmm5"
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  );
}
#endif  // HAS_MIRRORROW_AVX2

2253 2254
#ifdef HAS_MIRRORROW_SSE2
void MirrorRow_SSE2(const uint8* src, uint8* dst, int width) {
2255
  intptr_t temp_width = (intptr_t)(width);
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2256
  asm volatile (
2257
    LABELALIGN
2258
  "1:                                          \n"
2259
    MEMOPREG(movdqu,-0x10,0,2,1,xmm0)          //  movdqu -0x10(%0,%2),%%xmm0
2260
    "movdqa    %%xmm0,%%xmm1                   \n"
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    "psllw     $0x8,%%xmm0                     \n"
    "psrlw     $0x8,%%xmm1                     \n"
    "por       %%xmm1,%%xmm0                   \n"
    "pshuflw   $0x1b,%%xmm0,%%xmm0             \n"
    "pshufhw   $0x1b,%%xmm0,%%xmm0             \n"
    "pshufd    $0x4e,%%xmm0,%%xmm0             \n"
2267 2268
    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
    "lea       " MEMLEA(0x10,1)",%1            \n"
2269
    "sub       $0x10,%2                        \n"
2270
    "jg        1b                              \n"
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  : "+r"(src),  // %0
    "+r"(dst),  // %1
    "+r"(temp_width)  // %2
  :
2275 2276
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1"
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  );
}
2279
#endif  // HAS_MIRRORROW_SSE2
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2281 2282
#ifdef HAS_MIRRORROW_UV_SSSE3
// Shuffle table for reversing the bytes of UV channels.
2283
static uvec8 kShuffleMirrorUV = {
2284 2285
  14u, 12u, 10u, 8u, 6u, 4u, 2u, 0u, 15u, 13u, 11u, 9u, 7u, 5u, 3u, 1u
};
2286
void MirrorUVRow_SSSE3(const uint8* src, uint8* dst_u, uint8* dst_v,
2287
                       int width) {
2288
  intptr_t temp_width = (intptr_t)(width);
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2289
  asm volatile (
2290
    "movdqa    %4,%%xmm1                       \n"
2291
    "lea       " MEMLEA4(-0x10,0,3,2) ",%0     \n"
2292
    "sub       %1,%2                           \n"
2293
    LABELALIGN
2294
  "1:                                          \n"
2295
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
2296
    "lea       " MEMLEA(-0x10,0) ",%0          \n"
2297
    "pshufb    %%xmm1,%%xmm0                   \n"
2298 2299 2300
    "movlpd    %%xmm0," MEMACCESS(1) "         \n"
    MEMOPMEM(movhpd,xmm0,0x00,1,2,1)           //  movhpd    %%xmm0,(%1,%2)
    "lea       " MEMLEA(0x8,1) ",%1            \n"
2301
    "sub       $8,%3                           \n"
2302
    "jg        1b                              \n"
2303 2304 2305 2306
  : "+r"(src),      // %0
    "+r"(dst_u),    // %1
    "+r"(dst_v),    // %2
    "+r"(temp_width)  // %3
2307
  : "m"(kShuffleMirrorUV)  // %4
2308 2309
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1"
2310 2311
  );
}
2312
#endif  // HAS_MIRRORROW_UV_SSSE3
2313

2314
#ifdef HAS_ARGBMIRRORROW_SSE2
2315

2316
void ARGBMirrorRow_SSE2(const uint8* src, uint8* dst, int width) {
2317
  intptr_t temp_width = (intptr_t)(width);
2318
  asm volatile (
2319
    "lea       " MEMLEA4(-0x10,0,2,4) ",%0     \n"
2320
    LABELALIGN
2321
  "1:                                          \n"
2322
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
2323
    "pshufd    $0x1b,%%xmm0,%%xmm0             \n"
2324
    "lea       " MEMLEA(-0x10,0) ",%0          \n"
2325
    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
2326
    "lea       " MEMLEA(0x10,1) ",%1           \n"
2327
    "sub       $0x4,%2                         \n"
2328 2329 2330 2331
    "jg        1b                              \n"
  : "+r"(src),  // %0
    "+r"(dst),  // %1
    "+r"(temp_width)  // %2
2332
  :
2333
  : "memory", "cc"
2334
    , "xmm0"
2335 2336
  );
}
2337
#endif  // HAS_ARGBMIRRORROW_SSE2
2338

2339 2340 2341 2342 2343 2344 2345 2346
#ifdef HAS_ARGBMIRRORROW_AVX2
// Shuffle table for reversing the bytes.
static const ulvec32 kARGBShuffleMirror_AVX2 = {
  7u, 6u, 5u, 4u, 3u, 2u, 1u, 0u
};
void ARGBMirrorRow_AVX2(const uint8* src, uint8* dst, int width) {
  intptr_t temp_width = (intptr_t)(width);
  asm volatile (
2347
    "vmovdqu    %3,%%ymm5                      \n"
2348 2349 2350 2351
    LABELALIGN
  "1:                                          \n"
    VMEMOPREG(vpermd,-0x20,0,2,4,ymm5,ymm0) // vpermd -0x20(%0,%2,4),ymm5,ymm0
    "vmovdqu    %%ymm0," MEMACCESS(1) "        \n"
2352
    "lea        " MEMLEA(0x20,1) ",%1          \n"
2353
    "sub        $0x8,%2                        \n"
2354
    "jg         1b                             \n"
2355 2356 2357 2358 2359
    "vzeroupper                                \n"
  : "+r"(src),  // %0
    "+r"(dst),  // %1
    "+r"(temp_width)  // %2
  : "m"(kARGBShuffleMirror_AVX2) // %3
2360 2361
  : "memory", "cc", NACL_R14
    "xmm0", "xmm5"
2362 2363 2364 2365
  );
}
#endif  // HAS_ARGBMIRRORROW_AVX2

2366 2367 2368
#ifdef HAS_SPLITUVROW_AVX2
void SplitUVRow_AVX2(const uint8* src_uv, uint8* dst_u, uint8* dst_v, int pix) {
  asm volatile (
2369 2370
    "vpcmpeqb   %%ymm5,%%ymm5,%%ymm5             \n"
    "vpsrlw     $0x8,%%ymm5,%%ymm5               \n"
2371 2372 2373 2374 2375 2376
    "sub        %1,%2                            \n"
    LABELALIGN
  "1:                                            \n"
    "vmovdqu    " MEMACCESS(0) ",%%ymm0          \n"
    "vmovdqu    " MEMACCESS2(0x20,0) ",%%ymm1    \n"
    "lea        " MEMLEA(0x40,0) ",%0            \n"
2377 2378 2379 2380 2381 2382 2383 2384
    "vpsrlw     $0x8,%%ymm0,%%ymm2               \n"
    "vpsrlw     $0x8,%%ymm1,%%ymm3               \n"
    "vpand      %%ymm5,%%ymm0,%%ymm0             \n"
    "vpand      %%ymm5,%%ymm1,%%ymm1             \n"
    "vpackuswb  %%ymm1,%%ymm0,%%ymm0             \n"
    "vpackuswb  %%ymm3,%%ymm2,%%ymm2             \n"
    "vpermq     $0xd8,%%ymm0,%%ymm0              \n"
    "vpermq     $0xd8,%%ymm2,%%ymm2              \n"
2385 2386 2387 2388 2389
    "vmovdqu    %%ymm0," MEMACCESS(1) "          \n"
    MEMOPMEM(vmovdqu,ymm2,0x00,1,2,1)             //  vmovdqu %%ymm2,(%1,%2)
    "lea        " MEMLEA(0x20,1) ",%1            \n"
    "sub        $0x20,%3                         \n"
    "jg         1b                               \n"
2390
    "vzeroupper                                  \n"
2391 2392 2393 2394 2395
  : "+r"(src_uv),     // %0
    "+r"(dst_u),      // %1
    "+r"(dst_v),      // %2
    "+r"(pix)         // %3
  :
2396 2397
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
2398 2399 2400 2401
  );
}
#endif  // HAS_SPLITUVROW_AVX2

2402 2403
#ifdef HAS_SPLITUVROW_SSE2
void SplitUVRow_SSE2(const uint8* src_uv, uint8* dst_u, uint8* dst_v, int pix) {
2404 2405 2406 2407
  asm volatile (
    "pcmpeqb    %%xmm5,%%xmm5                    \n"
    "psrlw      $0x8,%%xmm5                      \n"
    "sub        %1,%2                            \n"
2408
    LABELALIGN
2409
  "1:                                            \n"
2410 2411 2412
    "movdqu     " MEMACCESS(0) ",%%xmm0          \n"
    "movdqu     " MEMACCESS2(0x10,0) ",%%xmm1    \n"
    "lea        " MEMLEA(0x20,0) ",%0            \n"
2413 2414 2415 2416 2417 2418 2419 2420
    "movdqa     %%xmm0,%%xmm2                    \n"
    "movdqa     %%xmm1,%%xmm3                    \n"
    "pand       %%xmm5,%%xmm0                    \n"
    "pand       %%xmm5,%%xmm1                    \n"
    "packuswb   %%xmm1,%%xmm0                    \n"
    "psrlw      $0x8,%%xmm2                      \n"
    "psrlw      $0x8,%%xmm3                      \n"
    "packuswb   %%xmm3,%%xmm2                    \n"
2421 2422 2423
    "movdqu     %%xmm0," MEMACCESS(1) "          \n"
    MEMOPMEM(movdqu,xmm2,0x00,1,2,1)             //  movdqu     %%xmm2,(%1,%2)
    "lea        " MEMLEA(0x10,1) ",%1            \n"
2424 2425 2426 2427 2428 2429
    "sub        $0x10,%3                         \n"
    "jg         1b                               \n"
  : "+r"(src_uv),     // %0
    "+r"(dst_u),      // %1
    "+r"(dst_v),      // %2
    "+r"(pix)         // %3
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2430
  :
2431 2432
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
2433 2434
  );
}
2435
#endif  // HAS_SPLITUVROW_SSE2
2436

2437 2438 2439 2440 2441 2442 2443 2444 2445 2446 2447 2448
#ifdef HAS_MERGEUVROW_AVX2
void MergeUVRow_AVX2(const uint8* src_u, const uint8* src_v, uint8* dst_uv,
                     int width) {
  asm volatile (
    "sub       %0,%1                             \n"
    LABELALIGN
  "1:                                            \n"
    "vmovdqu   " MEMACCESS(0) ",%%ymm0           \n"
    MEMOPREG(vmovdqu,0x00,0,1,1,ymm1)             //  vmovdqu (%0,%1,1),%%ymm1
    "lea       " MEMLEA(0x20,0) ",%0             \n"
    "vpunpcklbw %%ymm1,%%ymm0,%%ymm2             \n"
    "vpunpckhbw %%ymm1,%%ymm0,%%ymm0             \n"
2449 2450 2451 2452
    "vextractf128 $0x0,%%ymm2," MEMACCESS(2) "   \n"
    "vextractf128 $0x0,%%ymm0," MEMACCESS2(0x10,2) "\n"
    "vextractf128 $0x1,%%ymm2," MEMACCESS2(0x20,2) "\n"
    "vextractf128 $0x1,%%ymm0," MEMACCESS2(0x30,2) "\n"
2453 2454 2455 2456 2457 2458 2459 2460 2461
    "lea       " MEMLEA(0x40,2) ",%2             \n"
    "sub       $0x20,%3                          \n"
    "jg        1b                                \n"
    "vzeroupper                                  \n"
  : "+r"(src_u),     // %0
    "+r"(src_v),     // %1
    "+r"(dst_uv),    // %2
    "+r"(width)      // %3
  :
2462 2463
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2"
2464 2465 2466 2467
  );
}
#endif  // HAS_MERGEUVROW_AVX2

2468 2469 2470
#ifdef HAS_MERGEUVROW_SSE2
void MergeUVRow_SSE2(const uint8* src_u, const uint8* src_v, uint8* dst_uv,
                     int width) {
2471 2472
  asm volatile (
    "sub       %0,%1                             \n"
2473
    LABELALIGN
2474
  "1:                                            \n"
2475
    "movdqu    " MEMACCESS(0) ",%%xmm0           \n"
2476
    MEMOPREG(movdqu,0x00,0,1,1,xmm1)             //  movdqu    (%0,%1,1),%%xmm1
2477
    "lea       " MEMLEA(0x10,0) ",%0             \n"
2478 2479 2480
    "movdqa    %%xmm0,%%xmm2                     \n"
    "punpcklbw %%xmm1,%%xmm0                     \n"
    "punpckhbw %%xmm1,%%xmm2                     \n"
2481 2482
    "movdqu    %%xmm0," MEMACCESS(2) "           \n"
    "movdqu    %%xmm2," MEMACCESS2(0x10,2) "     \n"
2483
    "lea       " MEMLEA(0x20,2) ",%2             \n"
2484 2485 2486 2487 2488 2489
    "sub       $0x10,%3                          \n"
    "jg        1b                                \n"
  : "+r"(src_u),     // %0
    "+r"(src_v),     // %1
    "+r"(dst_uv),    // %2
    "+r"(width)      // %3
2490
  :
2491 2492
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2"
2493 2494
  );
}
2495
#endif  // HAS_MERGEUVROW_SSE2
2496

2497 2498
#ifdef HAS_COPYROW_SSE2
void CopyRow_SSE2(const uint8* src, uint8* dst, int count) {
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2499
  asm volatile (
2500
    LABELALIGN
2501
  "1:                                          \n"
2502 2503
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
2504
    "lea       " MEMLEA(0x20,0) ",%0           \n"
2505 2506
    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
    "movdqu    %%xmm1," MEMACCESS2(0x10,1) "   \n"
2507
    "lea       " MEMLEA(0x20,1) ",%1           \n"
2508
    "sub       $0x20,%2                        \n"
2509
    "jg        1b                              \n"
2510 2511 2512 2513 2514 2515 2516 2517 2518 2519
  : "+r"(src),   // %0
    "+r"(dst),   // %1
    "+r"(count)  // %2
  :
  : "memory", "cc"
    , "xmm0", "xmm1"
  );
}
#endif  // HAS_COPYROW_SSE2

2520 2521 2522 2523 2524
#ifdef HAS_COPYROW_AVX
void CopyRow_AVX(const uint8* src, uint8* dst, int count) {
  asm volatile (
    LABELALIGN
  "1:                                          \n"
2525 2526
    "vmovdqu   " MEMACCESS(0) ",%%ymm0         \n"
    "vmovdqu   " MEMACCESS2(0x20,0) ",%%ymm1   \n"
2527
    "lea       " MEMLEA(0x40,0) ",%0           \n"
2528 2529
    "vmovdqu   %%ymm0," MEMACCESS(1) "         \n"
    "vmovdqu   %%ymm1," MEMACCESS2(0x20,1) "   \n"
2530 2531 2532 2533 2534 2535 2536 2537
    "lea       " MEMLEA(0x40,1) ",%1           \n"
    "sub       $0x40,%2                        \n"
    "jg        1b                              \n"
  : "+r"(src),   // %0
    "+r"(dst),   // %1
    "+r"(count)  // %2
  :
  : "memory", "cc"
2538
    , "xmm0", "xmm1"
2539 2540 2541 2542
  );
}
#endif  // HAS_COPYROW_AVX

2543
#ifdef HAS_COPYROW_ERMS
2544
// Multiple of 1.
2545
void CopyRow_ERMS(const uint8* src, uint8* dst, int width) {
2546
  size_t width_tmp = (size_t)(width);
2547
  asm volatile (
2548
    "rep movsb " MEMMOVESTRING(0,1) "          \n"
2549 2550 2551 2552 2553 2554 2555
  : "+S"(src),  // %0
    "+D"(dst),  // %1
    "+c"(width_tmp) // %2
  :
  : "memory", "cc"
  );
}
2556
#endif  // HAS_COPYROW_ERMS
2557

2558 2559 2560 2561 2562 2563 2564 2565
#ifdef HAS_ARGBCOPYALPHAROW_SSE2
// width in pixels
void ARGBCopyAlphaRow_SSE2(const uint8* src, uint8* dst, int width) {
  asm volatile (
    "pcmpeqb   %%xmm0,%%xmm0                   \n"
    "pslld     $0x18,%%xmm0                    \n"
    "pcmpeqb   %%xmm1,%%xmm1                   \n"
    "psrld     $0x8,%%xmm1                     \n"
2566
    LABELALIGN
2567
  "1:                                          \n"
2568 2569
    "movdqu    " MEMACCESS(0) ",%%xmm2         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm3   \n"
2570
    "lea       " MEMLEA(0x20,0) ",%0           \n"
2571 2572
    "movdqu    " MEMACCESS(1) ",%%xmm4         \n"
    "movdqu    " MEMACCESS2(0x10,1) ",%%xmm5   \n"
2573 2574 2575 2576 2577 2578
    "pand      %%xmm0,%%xmm2                   \n"
    "pand      %%xmm0,%%xmm3                   \n"
    "pand      %%xmm1,%%xmm4                   \n"
    "pand      %%xmm1,%%xmm5                   \n"
    "por       %%xmm4,%%xmm2                   \n"
    "por       %%xmm5,%%xmm3                   \n"
2579 2580
    "movdqu    %%xmm2," MEMACCESS(1) "         \n"
    "movdqu    %%xmm3," MEMACCESS2(0x10,1) "   \n"
2581 2582 2583 2584 2585 2586 2587 2588 2589 2590 2591 2592 2593 2594 2595 2596 2597 2598 2599
    "lea       " MEMLEA(0x20,1) ",%1           \n"
    "sub       $0x8,%2                         \n"
    "jg        1b                              \n"
  : "+r"(src),   // %0
    "+r"(dst),   // %1
    "+r"(width)  // %2
  :
  : "memory", "cc"
    , "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5"
  );
}
#endif  // HAS_ARGBCOPYALPHAROW_SSE2

#ifdef HAS_ARGBCOPYALPHAROW_AVX2
// width in pixels
void ARGBCopyAlphaRow_AVX2(const uint8* src, uint8* dst, int width) {
  asm volatile (
    "vpcmpeqb  %%ymm0,%%ymm0,%%ymm0            \n"
    "vpsrld    $0x8,%%ymm0,%%ymm0              \n"
2600
    LABELALIGN
2601 2602 2603 2604 2605 2606 2607 2608 2609 2610 2611 2612 2613 2614 2615 2616 2617 2618 2619 2620 2621 2622 2623 2624 2625 2626 2627 2628 2629 2630
  "1:                                          \n"
    "vmovdqu   " MEMACCESS(0) ",%%ymm1         \n"
    "vmovdqu   " MEMACCESS2(0x20,0) ",%%ymm2   \n"
    "lea       " MEMLEA(0x40,0) ",%0           \n"
    "vpblendvb %%ymm0," MEMACCESS(1) ",%%ymm1,%%ymm1        \n"
    "vpblendvb %%ymm0," MEMACCESS2(0x20,1) ",%%ymm2,%%ymm2  \n"
    "vmovdqu   %%ymm1," MEMACCESS(1) "         \n"
    "vmovdqu   %%ymm2," MEMACCESS2(0x20,1) "   \n"
    "lea       " MEMLEA(0x40,1) ",%1           \n"
    "sub       $0x10,%2                        \n"
    "jg        1b                              \n"
    "vzeroupper                                \n"
  : "+r"(src),   // %0
    "+r"(dst),   // %1
    "+r"(width)  // %2
  :
  : "memory", "cc"
    , "xmm0", "xmm1", "xmm2"
  );
}
#endif  // HAS_ARGBCOPYALPHAROW_AVX2

#ifdef HAS_ARGBCOPYYTOALPHAROW_SSE2
// width in pixels
void ARGBCopyYToAlphaRow_SSE2(const uint8* src, uint8* dst, int width) {
  asm volatile (
    "pcmpeqb   %%xmm0,%%xmm0                   \n"
    "pslld     $0x18,%%xmm0                    \n"
    "pcmpeqb   %%xmm1,%%xmm1                   \n"
    "psrld     $0x8,%%xmm1                     \n"
2631
    LABELALIGN
2632 2633 2634 2635 2636 2637
  "1:                                          \n"
    "movq      " MEMACCESS(0) ",%%xmm2         \n"
    "lea       " MEMLEA(0x8,0) ",%0            \n"
    "punpcklbw %%xmm2,%%xmm2                   \n"
    "punpckhwd %%xmm2,%%xmm3                   \n"
    "punpcklwd %%xmm2,%%xmm2                   \n"
2638 2639
    "movdqu    " MEMACCESS(1) ",%%xmm4         \n"
    "movdqu    " MEMACCESS2(0x10,1) ",%%xmm5   \n"
2640 2641 2642 2643 2644 2645
    "pand      %%xmm0,%%xmm2                   \n"
    "pand      %%xmm0,%%xmm3                   \n"
    "pand      %%xmm1,%%xmm4                   \n"
    "pand      %%xmm1,%%xmm5                   \n"
    "por       %%xmm4,%%xmm2                   \n"
    "por       %%xmm5,%%xmm3                   \n"
2646 2647
    "movdqu    %%xmm2," MEMACCESS(1) "         \n"
    "movdqu    %%xmm3," MEMACCESS2(0x10,1) "   \n"
2648 2649 2650 2651 2652 2653 2654 2655 2656 2657 2658 2659 2660 2661 2662 2663 2664 2665 2666
    "lea       " MEMLEA(0x20,1) ",%1           \n"
    "sub       $0x8,%2                         \n"
    "jg        1b                              \n"
  : "+r"(src),   // %0
    "+r"(dst),   // %1
    "+r"(width)  // %2
  :
  : "memory", "cc"
    , "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5"
  );
}
#endif  // HAS_ARGBCOPYYTOALPHAROW_SSE2

#ifdef HAS_ARGBCOPYYTOALPHAROW_AVX2
// width in pixels
void ARGBCopyYToAlphaRow_AVX2(const uint8* src, uint8* dst, int width) {
  asm volatile (
    "vpcmpeqb  %%ymm0,%%ymm0,%%ymm0            \n"
    "vpsrld    $0x8,%%ymm0,%%ymm0              \n"
2667
    LABELALIGN
2668 2669 2670 2671 2672 2673 2674 2675 2676 2677 2678 2679 2680 2681 2682 2683 2684 2685 2686 2687 2688 2689 2690 2691
  "1:                                          \n"
    "vpmovzxbd " MEMACCESS(0) ",%%ymm1         \n"
    "vpmovzxbd " MEMACCESS2(0x8,0) ",%%ymm2    \n"
    "lea       " MEMLEA(0x10,0) ",%0           \n"
    "vpslld    $0x18,%%ymm1,%%ymm1             \n"
    "vpslld    $0x18,%%ymm2,%%ymm2             \n"
    "vpblendvb %%ymm0," MEMACCESS(1) ",%%ymm1,%%ymm1        \n"
    "vpblendvb %%ymm0," MEMACCESS2(0x20,1) ",%%ymm2,%%ymm2  \n"
    "vmovdqu   %%ymm1," MEMACCESS(1) "         \n"
    "vmovdqu   %%ymm2," MEMACCESS2(0x20,1) "   \n"
    "lea       " MEMLEA(0x40,1) ",%1           \n"
    "sub       $0x10,%2                        \n"
    "jg        1b                              \n"
    "vzeroupper                                \n"
  : "+r"(src),   // %0
    "+r"(dst),   // %1
    "+r"(width)  // %2
  :
  : "memory", "cc"
    , "xmm0", "xmm1", "xmm2"
  );
}
#endif  // HAS_ARGBCOPYYTOALPHAROW_AVX2

2692
#ifdef HAS_SETROW_X86
2693 2694 2695
void SetRow_X86(uint8* dst, uint8 v8, int width) {
  size_t width_tmp = (size_t)(width >> 2);
  const uint32 v32 = v8 * 0x01010101;  // Duplicate byte to all bytes.
2696
  asm volatile (
2697
    "rep stosl " MEMSTORESTRING(eax,0) "       \n"
2698 2699 2700 2701 2702 2703
    : "+D"(dst),       // %0
      "+c"(width_tmp)  // %1
    : "a"(v32)         // %2
    : "memory", "cc");
}

2704 2705 2706 2707 2708 2709 2710 2711 2712 2713 2714 2715 2716 2717 2718 2719 2720 2721
void SetRow_ERMS(uint8* dst, uint8 v8, int width) {
  size_t width_tmp = (size_t)(width);
  asm volatile (
    "rep stosb " MEMSTORESTRING(al,0) "        \n"
    : "+D"(dst),       // %0
      "+c"(width_tmp)  // %1
    : "a"(v8)          // %2
    : "memory", "cc");
}

void ARGBSetRow_X86(uint8* dst_argb, uint32 v32, int width) {
  size_t width_tmp = (size_t)(width);
  asm volatile (
    "rep stosl " MEMSTORESTRING(eax,0) "       \n"
    : "+D"(dst_argb),  // %0
      "+c"(width_tmp)  // %1
    : "a"(v32)         // %2
    : "memory", "cc");
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}
#endif  // HAS_SETROW_X86

2725
#ifdef HAS_YUY2TOYROW_SSE2
2726
void YUY2ToYRow_SSE2(const uint8* src_yuy2, uint8* dst_y, int pix) {
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2727
  asm volatile (
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    "pcmpeqb   %%xmm5,%%xmm5                   \n"
    "psrlw     $0x8,%%xmm5                     \n"
2730
    LABELALIGN
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  "1:                                          \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
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    "lea       " MEMLEA(0x20,0) ",%0           \n"
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    "pand      %%xmm5,%%xmm0                   \n"
    "pand      %%xmm5,%%xmm1                   \n"
    "packuswb  %%xmm1,%%xmm0                   \n"
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    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
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    "lea       " MEMLEA(0x10,1) ",%1           \n"
2740
    "sub       $0x10,%2                        \n"
2741
    "jg        1b                              \n"
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  : "+r"(src_yuy2),  // %0
    "+r"(dst_y),     // %1
    "+r"(pix)        // %2
  :
  : "memory", "cc"
    , "xmm0", "xmm1", "xmm5"
  );
}

void YUY2ToUVRow_SSE2(const uint8* src_yuy2, int stride_yuy2,
2752
                      uint8* dst_u, uint8* dst_v, int pix) {
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2753
  asm volatile (
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    "pcmpeqb   %%xmm5,%%xmm5                   \n"
    "psrlw     $0x8,%%xmm5                     \n"
    "sub       %1,%2                           \n"
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    LABELALIGN
2758
  "1:                                          \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
    MEMOPREG(movdqu,0x00,0,4,1,xmm2)           //  movdqu  (%0,%4,1),%%xmm2
    MEMOPREG(movdqu,0x10,0,4,1,xmm3)           //  movdqu  0x10(%0,%4,1),%%xmm3
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    "lea       " MEMLEA(0x20,0) ",%0           \n"
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    "pavgb     %%xmm2,%%xmm0                   \n"
    "pavgb     %%xmm3,%%xmm1                   \n"
    "psrlw     $0x8,%%xmm0                     \n"
    "psrlw     $0x8,%%xmm1                     \n"
    "packuswb  %%xmm1,%%xmm0                   \n"
    "movdqa    %%xmm0,%%xmm1                   \n"
    "pand      %%xmm5,%%xmm0                   \n"
    "packuswb  %%xmm0,%%xmm0                   \n"
    "psrlw     $0x8,%%xmm1                     \n"
    "packuswb  %%xmm1,%%xmm1                   \n"
2774
    "movq      %%xmm0," MEMACCESS(1) "         \n"
2775
    MEMOPMEM(movq,xmm1,0x00,1,2,1)             //  movq    %%xmm1,(%1,%2)
2776
    "lea       " MEMLEA(0x8,1) ",%1            \n"
2777
    "sub       $0x10,%3                        \n"
2778
    "jg        1b                              \n"
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  : "+r"(src_yuy2),    // %0
    "+r"(dst_u),       // %1
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    "+r"(dst_v),       // %2
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    "+r"(pix)          // %3
2783
  : "r"((intptr_t)(stride_yuy2))  // %4
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  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
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  );
}

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void YUY2ToUV422Row_SSE2(const uint8* src_yuy2,
                         uint8* dst_u, uint8* dst_v, int pix) {
  asm volatile (
    "pcmpeqb   %%xmm5,%%xmm5                   \n"
    "psrlw     $0x8,%%xmm5                     \n"
    "sub       %1,%2                           \n"
2795
    LABELALIGN
2796
  "1:                                          \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
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    "lea       " MEMLEA(0x20,0) ",%0           \n"
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    "psrlw     $0x8,%%xmm0                     \n"
    "psrlw     $0x8,%%xmm1                     \n"
    "packuswb  %%xmm1,%%xmm0                   \n"
    "movdqa    %%xmm0,%%xmm1                   \n"
    "pand      %%xmm5,%%xmm0                   \n"
    "packuswb  %%xmm0,%%xmm0                   \n"
    "psrlw     $0x8,%%xmm1                     \n"
    "packuswb  %%xmm1,%%xmm1                   \n"
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    "movq      %%xmm0," MEMACCESS(1) "         \n"
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    MEMOPMEM(movq,xmm1,0x00,1,2,1)             //  movq    %%xmm1,(%1,%2)
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    "lea       " MEMLEA(0x8,1) ",%1            \n"
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    "sub       $0x10,%3                        \n"
    "jg        1b                              \n"
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  : "+r"(src_yuy2),    // %0
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    "+r"(dst_u),       // %1
    "+r"(dst_v),       // %2
    "+r"(pix)          // %3
  :
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  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm5"
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  );
}

2823
void UYVYToYRow_SSE2(const uint8* src_uyvy, uint8* dst_y, int pix) {
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2824
  asm volatile (
2825
    LABELALIGN
2826
  "1:                                          \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
    "lea       " MEMLEA(0x20,0) ",%0           \n"
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    "psrlw     $0x8,%%xmm0                     \n"
    "psrlw     $0x8,%%xmm1                     \n"
    "packuswb  %%xmm1,%%xmm0                   \n"
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    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
    "lea       " MEMLEA(0x10,1) ",%1           \n"
2835
    "sub       $0x10,%2                        \n"
2836
    "jg        1b                              \n"
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  : "+r"(src_uyvy),  // %0
    "+r"(dst_y),     // %1
    "+r"(pix)        // %2
  :
  : "memory", "cc"
    , "xmm0", "xmm1"
  );
}

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void UYVYToUVRow_SSE2(const uint8* src_uyvy, int stride_uyvy,
                      uint8* dst_u, uint8* dst_v, int pix) {
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2848
  asm volatile (
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    "pcmpeqb   %%xmm5,%%xmm5                   \n"
    "psrlw     $0x8,%%xmm5                     \n"
    "sub       %1,%2                           \n"
2852
    LABELALIGN
2853
  "1:                                          \n"
2854 2855
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
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    MEMOPREG(movdqu,0x00,0,4,1,xmm2)           //  movdqu  (%0,%4,1),%%xmm2
    MEMOPREG(movdqu,0x10,0,4,1,xmm3)           //  movdqu  0x10(%0,%4,1),%%xmm3
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    "lea       " MEMLEA(0x20,0) ",%0           \n"
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    "pavgb     %%xmm2,%%xmm0                   \n"
    "pavgb     %%xmm3,%%xmm1                   \n"
    "pand      %%xmm5,%%xmm0                   \n"
    "pand      %%xmm5,%%xmm1                   \n"
    "packuswb  %%xmm1,%%xmm0                   \n"
    "movdqa    %%xmm0,%%xmm1                   \n"
    "pand      %%xmm5,%%xmm0                   \n"
    "packuswb  %%xmm0,%%xmm0                   \n"
    "psrlw     $0x8,%%xmm1                     \n"
    "packuswb  %%xmm1,%%xmm1                   \n"
2869
    "movq      %%xmm0," MEMACCESS(1) "         \n"
2870
    MEMOPMEM(movq,xmm1,0x00,1,2,1)             //  movq    %%xmm1,(%1,%2)
2871
    "lea       " MEMLEA(0x8,1) ",%1            \n"
2872
    "sub       $0x10,%3                        \n"
2873
    "jg        1b                              \n"
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  : "+r"(src_uyvy),    // %0
    "+r"(dst_u),       // %1
2876
    "+r"(dst_v),       // %2
2877
    "+r"(pix)          // %3
2878
  : "r"((intptr_t)(stride_uyvy))  // %4
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  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
2881 2882
  );
}
2883

2884 2885
void UYVYToUV422Row_SSE2(const uint8* src_uyvy,
                         uint8* dst_u, uint8* dst_v, int pix) {
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  asm volatile (
    "pcmpeqb   %%xmm5,%%xmm5                   \n"
    "psrlw     $0x8,%%xmm5                     \n"
    "sub       %1,%2                           \n"
2890
    LABELALIGN
2891
  "1:                                          \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
    "lea       " MEMLEA(0x20,0) ",%0           \n"
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    "pand      %%xmm5,%%xmm0                   \n"
    "pand      %%xmm5,%%xmm1                   \n"
    "packuswb  %%xmm1,%%xmm0                   \n"
    "movdqa    %%xmm0,%%xmm1                   \n"
    "pand      %%xmm5,%%xmm0                   \n"
    "packuswb  %%xmm0,%%xmm0                   \n"
    "psrlw     $0x8,%%xmm1                     \n"
    "packuswb  %%xmm1,%%xmm1                   \n"
2903
    "movq      %%xmm0," MEMACCESS(1) "         \n"
2904
    MEMOPMEM(movq,xmm1,0x00,1,2,1)             //  movq    %%xmm1,(%1,%2)
2905
    "lea       " MEMLEA(0x8,1) ",%1            \n"
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    "sub       $0x10,%3                        \n"
    "jg        1b                              \n"
  : "+r"(src_uyvy),    // %0
    "+r"(dst_u),       // %1
    "+r"(dst_v),       // %2
    "+r"(pix)          // %3
  :
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  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm5"
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  );
}
2917
#endif  // HAS_YUY2TOYROW_SSE2
2918

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#ifdef HAS_YUY2TOYROW_AVX2
void YUY2ToYRow_AVX2(const uint8* src_yuy2, uint8* dst_y, int pix) {
  asm volatile (
    "vpcmpeqb  %%ymm5,%%ymm5,%%ymm5            \n"
    "vpsrlw    $0x8,%%ymm5,%%ymm5              \n"
    LABELALIGN
  "1:                                          \n"
    "vmovdqu   " MEMACCESS(0) ",%%ymm0         \n"
    "vmovdqu   " MEMACCESS2(0x20,0) ",%%ymm1   \n"
    "lea       " MEMLEA(0x40,0) ",%0           \n"
    "vpand     %%ymm5,%%ymm0,%%ymm0            \n"
    "vpand     %%ymm5,%%ymm1,%%ymm1            \n"
    "vpackuswb %%ymm1,%%ymm0,%%ymm0            \n"
    "vpermq    $0xd8,%%ymm0,%%ymm0             \n"
    "vmovdqu   %%ymm0," MEMACCESS(1) "         \n"
    "lea      " MEMLEA(0x20,1) ",%1            \n"
2935
    "sub       $0x20,%2                        \n"
2936
    "jg        1b                              \n"
2937
    "vzeroupper                                \n"
2938 2939 2940 2941 2942 2943 2944 2945 2946
  : "+r"(src_yuy2),  // %0
    "+r"(dst_y),     // %1
    "+r"(pix)        // %2
  :
  : "memory", "cc"
    , "xmm0", "xmm1", "xmm5"
  );
}

2947 2948 2949 2950 2951 2952 2953 2954 2955 2956 2957 2958
void YUY2ToUVRow_AVX2(const uint8* src_yuy2, int stride_yuy2,
                      uint8* dst_u, uint8* dst_v, int pix) {
  asm volatile (
    "vpcmpeqb  %%ymm5,%%ymm5,%%ymm5            \n"
    "vpsrlw    $0x8,%%ymm5,%%ymm5              \n"
    "sub       %1,%2                           \n"
    LABELALIGN
  "1:                                          \n"
    "vmovdqu   " MEMACCESS(0) ",%%ymm0         \n"
    "vmovdqu   " MEMACCESS2(0x20,0) ",%%ymm1   \n"
    VMEMOPREG(vpavgb,0x00,0,4,1,ymm0,ymm0)     // vpavgb (%0,%4,1),%%ymm0,%%ymm0
    VMEMOPREG(vpavgb,0x20,0,4,1,ymm1,ymm1)
2959
    "lea       " MEMLEA(0x40,0) ",%0           \n"
2960 2961 2962 2963 2964 2965 2966 2967 2968 2969 2970
    "vpsrlw    $0x8,%%ymm0,%%ymm0              \n"
    "vpsrlw    $0x8,%%ymm1,%%ymm1              \n"
    "vpackuswb %%ymm1,%%ymm0,%%ymm0            \n"
    "vpermq    $0xd8,%%ymm0,%%ymm0             \n"
    "vpand     %%ymm5,%%ymm0,%%ymm1            \n"
    "vpsrlw    $0x8,%%ymm0,%%ymm0              \n"
    "vpackuswb %%ymm1,%%ymm1,%%ymm1            \n"
    "vpackuswb %%ymm0,%%ymm0,%%ymm0            \n"
    "vpermq    $0xd8,%%ymm1,%%ymm1             \n"
    "vpermq    $0xd8,%%ymm0,%%ymm0             \n"
    "vextractf128 $0x0,%%ymm1," MEMACCESS(1) " \n"
2971
    VEXTOPMEM(vextractf128,0,ymm0,0x00,1,2,1) // vextractf128 $0x0,%%ymm0,(%1,%2,1)
2972
    "lea      " MEMLEA(0x10,1) ",%1            \n"
2973 2974 2975 2976 2977 2978 2979 2980
    "sub       $0x20,%3                        \n"
    "jg        1b                              \n"
    "vzeroupper                                \n"
  : "+r"(src_yuy2),    // %0
    "+r"(dst_u),       // %1
    "+r"(dst_v),       // %2
    "+r"(pix)          // %3
  : "r"((intptr_t)(stride_yuy2))  // %4
2981 2982
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm5"
2983 2984 2985 2986 2987 2988 2989 2990 2991 2992 2993 2994 2995 2996 2997 2998 2999 3000 3001 3002 3003 3004 3005 3006 3007
  );
}

void YUY2ToUV422Row_AVX2(const uint8* src_yuy2,
                         uint8* dst_u, uint8* dst_v, int pix) {
  asm volatile (
    "vpcmpeqb  %%ymm5,%%ymm5,%%ymm5            \n"
    "vpsrlw    $0x8,%%ymm5,%%ymm5              \n"
    "sub       %1,%2                           \n"
    LABELALIGN
  "1:                                          \n"
    "vmovdqu   " MEMACCESS(0) ",%%ymm0         \n"
    "vmovdqu   " MEMACCESS2(0x20,0) ",%%ymm1   \n"
    "lea       " MEMLEA(0x40,0) ",%0           \n"
    "vpsrlw    $0x8,%%ymm0,%%ymm0              \n"
    "vpsrlw    $0x8,%%ymm1,%%ymm1              \n"
    "vpackuswb %%ymm1,%%ymm0,%%ymm0            \n"
    "vpermq    $0xd8,%%ymm0,%%ymm0             \n"
    "vpand     %%ymm5,%%ymm0,%%ymm1            \n"
    "vpsrlw    $0x8,%%ymm0,%%ymm0              \n"
    "vpackuswb %%ymm1,%%ymm1,%%ymm1            \n"
    "vpackuswb %%ymm0,%%ymm0,%%ymm0            \n"
    "vpermq    $0xd8,%%ymm1,%%ymm1             \n"
    "vpermq    $0xd8,%%ymm0,%%ymm0             \n"
    "vextractf128 $0x0,%%ymm1," MEMACCESS(1) " \n"
3008
    VEXTOPMEM(vextractf128,0,ymm0,0x00,1,2,1) // vextractf128 $0x0,%%ymm0,(%1,%2,1)
3009
    "lea      " MEMLEA(0x10,1) ",%1            \n"
3010 3011 3012 3013 3014 3015 3016 3017
    "sub       $0x20,%3                        \n"
    "jg        1b                              \n"
    "vzeroupper                                \n"
  : "+r"(src_yuy2),    // %0
    "+r"(dst_u),       // %1
    "+r"(dst_v),       // %2
    "+r"(pix)          // %3
  :
3018 3019
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm5"
3020 3021 3022
  );
}

3023 3024 3025 3026 3027 3028 3029 3030 3031 3032 3033 3034 3035
void UYVYToYRow_AVX2(const uint8* src_uyvy, uint8* dst_y, int pix) {
  asm volatile (
    LABELALIGN
  "1:                                          \n"
    "vmovdqu   " MEMACCESS(0) ",%%ymm0         \n"
    "vmovdqu   " MEMACCESS2(0x20,0) ",%%ymm1   \n"
    "lea       " MEMLEA(0x40,0) ",%0           \n"
    "vpsrlw    $0x8,%%ymm0,%%ymm0              \n"
    "vpsrlw    $0x8,%%ymm1,%%ymm1              \n"
    "vpackuswb %%ymm1,%%ymm0,%%ymm0            \n"
    "vpermq    $0xd8,%%ymm0,%%ymm0             \n"
    "vmovdqu   %%ymm0," MEMACCESS(1) "         \n"
    "lea      " MEMLEA(0x20,1) ",%1            \n"
3036
    "sub       $0x20,%2                        \n"
3037 3038 3039 3040 3041 3042 3043 3044 3045 3046
    "jg        1b                              \n"
    "vzeroupper                                \n"
  : "+r"(src_uyvy),  // %0
    "+r"(dst_y),     // %1
    "+r"(pix)        // %2
  :
  : "memory", "cc"
    , "xmm0", "xmm1", "xmm5"
  );
}
3047 3048 3049 3050 3051 3052 3053 3054 3055 3056 3057 3058 3059
void UYVYToUVRow_AVX2(const uint8* src_uyvy, int stride_uyvy,
                      uint8* dst_u, uint8* dst_v, int pix) {
  asm volatile (
    "vpcmpeqb  %%ymm5,%%ymm5,%%ymm5            \n"
    "vpsrlw    $0x8,%%ymm5,%%ymm5              \n"
    "sub       %1,%2                           \n"

    LABELALIGN
  "1:                                          \n"
    "vmovdqu   " MEMACCESS(0) ",%%ymm0         \n"
    "vmovdqu   " MEMACCESS2(0x20,0) ",%%ymm1   \n"
    VMEMOPREG(vpavgb,0x00,0,4,1,ymm0,ymm0)     // vpavgb (%0,%4,1),%%ymm0,%%ymm0
    VMEMOPREG(vpavgb,0x20,0,4,1,ymm1,ymm1)
3060
    "lea       " MEMLEA(0x40,0) ",%0           \n"
3061 3062 3063 3064 3065 3066 3067 3068 3069 3070 3071
    "vpand     %%ymm5,%%ymm0,%%ymm0            \n"
    "vpand     %%ymm5,%%ymm1,%%ymm1            \n"
    "vpackuswb %%ymm1,%%ymm0,%%ymm0            \n"
    "vpermq    $0xd8,%%ymm0,%%ymm0             \n"
    "vpand     %%ymm5,%%ymm0,%%ymm1            \n"
    "vpsrlw    $0x8,%%ymm0,%%ymm0              \n"
    "vpackuswb %%ymm1,%%ymm1,%%ymm1            \n"
    "vpackuswb %%ymm0,%%ymm0,%%ymm0            \n"
    "vpermq    $0xd8,%%ymm1,%%ymm1             \n"
    "vpermq    $0xd8,%%ymm0,%%ymm0             \n"
    "vextractf128 $0x0,%%ymm1," MEMACCESS(1) " \n"
3072
    VEXTOPMEM(vextractf128,0,ymm0,0x00,1,2,1) // vextractf128 $0x0,%%ymm0,(%1,%2,1)
3073
    "lea      " MEMLEA(0x10,1) ",%1            \n"
3074 3075 3076 3077 3078 3079 3080 3081
    "sub       $0x20,%3                        \n"
    "jg        1b                              \n"
    "vzeroupper                                \n"
  : "+r"(src_uyvy),    // %0
    "+r"(dst_u),       // %1
    "+r"(dst_v),       // %2
    "+r"(pix)          // %3
  : "r"((intptr_t)(stride_uyvy))  // %4
3082 3083
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm5"
3084 3085 3086 3087 3088 3089
  );
}

void UYVYToUV422Row_AVX2(const uint8* src_uyvy,
                         uint8* dst_u, uint8* dst_v, int pix) {
  asm volatile (
3090 3091
    "vpcmpeqb   %%ymm5,%%ymm5,%%ymm5           \n"
    "vpsrlw     $0x8,%%ymm5,%%ymm5             \n"
3092 3093 3094 3095 3096 3097 3098 3099 3100 3101 3102 3103 3104 3105 3106 3107 3108
    "sub       %1,%2                           \n"
    LABELALIGN
  "1:                                          \n"
    "vmovdqu   " MEMACCESS(0) ",%%ymm0         \n"
    "vmovdqu   " MEMACCESS2(0x20,0) ",%%ymm1   \n"
    "lea       " MEMLEA(0x40,0) ",%0           \n"
    "vpand     %%ymm5,%%ymm0,%%ymm0            \n"
    "vpand     %%ymm5,%%ymm1,%%ymm1            \n"
    "vpackuswb %%ymm1,%%ymm0,%%ymm0            \n"
    "vpermq    $0xd8,%%ymm0,%%ymm0             \n"
    "vpand     %%ymm5,%%ymm0,%%ymm1            \n"
    "vpsrlw    $0x8,%%ymm0,%%ymm0              \n"
    "vpackuswb %%ymm1,%%ymm1,%%ymm1            \n"
    "vpackuswb %%ymm0,%%ymm0,%%ymm0            \n"
    "vpermq    $0xd8,%%ymm1,%%ymm1             \n"
    "vpermq    $0xd8,%%ymm0,%%ymm0             \n"
    "vextractf128 $0x0,%%ymm1," MEMACCESS(1) " \n"
3109
    VEXTOPMEM(vextractf128,0,ymm0,0x00,1,2,1) // vextractf128 $0x0,%%ymm0,(%1,%2,1)
3110
    "lea      " MEMLEA(0x10,1) ",%1            \n"
3111 3112 3113 3114 3115 3116 3117 3118
    "sub       $0x20,%3                        \n"
    "jg        1b                              \n"
    "vzeroupper                                \n"
  : "+r"(src_uyvy),    // %0
    "+r"(dst_u),       // %1
    "+r"(dst_v),       // %2
    "+r"(pix)          // %3
  :
3119 3120
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm5"
3121 3122
  );
}
3123 3124
#endif  // HAS_YUY2TOYROW_AVX2

3125
#ifdef HAS_ARGBBLENDROW_SSE2
3126
// Blend 8 pixels at a time.
3127 3128
void ARGBBlendRow_SSE2(const uint8* src_argb0, const uint8* src_argb1,
                       uint8* dst_argb, int width) {
3129 3130 3131 3132 3133 3134 3135 3136 3137
  asm volatile (
    "pcmpeqb   %%xmm7,%%xmm7                   \n"
    "psrlw     $0xf,%%xmm7                     \n"
    "pcmpeqb   %%xmm6,%%xmm6                   \n"
    "psrlw     $0x8,%%xmm6                     \n"
    "pcmpeqb   %%xmm5,%%xmm5                   \n"
    "psllw     $0x8,%%xmm5                     \n"
    "pcmpeqb   %%xmm4,%%xmm4                   \n"
    "pslld     $0x18,%%xmm4                    \n"
3138
    "sub       $0x4,%3                         \n"
3139 3140
    "jl        49f                             \n"

3141
    // 4 pixel loop.
3142
    LABELALIGN
3143
  "41:                                         \n"
3144 3145
    "movdqu    " MEMACCESS(0) ",%%xmm3         \n"
    "lea       " MEMLEA(0x10,0) ",%0           \n"
3146 3147
    "movdqa    %%xmm3,%%xmm0                   \n"
    "pxor      %%xmm4,%%xmm3                   \n"
3148
    "movdqu    " MEMACCESS(1) ",%%xmm2         \n"
3149 3150 3151 3152 3153 3154
    "psrlw     $0x8,%%xmm3                     \n"
    "pshufhw   $0xf5,%%xmm3,%%xmm3             \n"
    "pshuflw   $0xf5,%%xmm3,%%xmm3             \n"
    "pand      %%xmm6,%%xmm2                   \n"
    "paddw     %%xmm7,%%xmm3                   \n"
    "pmullw    %%xmm3,%%xmm2                   \n"
3155 3156
    "movdqu    " MEMACCESS(1) ",%%xmm1         \n"
    "lea       " MEMLEA(0x10,1) ",%1           \n"
3157 3158 3159 3160 3161 3162 3163
    "psrlw     $0x8,%%xmm1                     \n"
    "por       %%xmm4,%%xmm0                   \n"
    "pmullw    %%xmm3,%%xmm1                   \n"
    "psrlw     $0x8,%%xmm2                     \n"
    "paddusb   %%xmm2,%%xmm0                   \n"
    "pand      %%xmm5,%%xmm1                   \n"
    "paddusb   %%xmm1,%%xmm0                   \n"
3164
    "movdqu    %%xmm0," MEMACCESS(2) "         \n"
3165
    "lea       " MEMLEA(0x10,2) ",%2           \n"
3166
    "sub       $0x4,%3                         \n"
3167
    "jge       41b                             \n"
3168

3169 3170 3171
  "49:                                         \n"
    "add       $0x3,%3                         \n"
    "jl        99f                             \n"
3172

3173
    // 1 pixel loop.
3174
  "91:                                         \n"
3175 3176
    "movd      " MEMACCESS(0) ",%%xmm3         \n"
    "lea       " MEMLEA(0x4,0) ",%0            \n"
3177 3178
    "movdqa    %%xmm3,%%xmm0                   \n"
    "pxor      %%xmm4,%%xmm3                   \n"
3179
    "movd      " MEMACCESS(1) ",%%xmm2         \n"
3180 3181 3182 3183 3184 3185
    "psrlw     $0x8,%%xmm3                     \n"
    "pshufhw   $0xf5,%%xmm3,%%xmm3             \n"
    "pshuflw   $0xf5,%%xmm3,%%xmm3             \n"
    "pand      %%xmm6,%%xmm2                   \n"
    "paddw     %%xmm7,%%xmm3                   \n"
    "pmullw    %%xmm3,%%xmm2                   \n"
3186 3187
    "movd      " MEMACCESS(1) ",%%xmm1         \n"
    "lea       " MEMLEA(0x4,1) ",%1            \n"
3188 3189 3190 3191 3192 3193 3194
    "psrlw     $0x8,%%xmm1                     \n"
    "por       %%xmm4,%%xmm0                   \n"
    "pmullw    %%xmm3,%%xmm1                   \n"
    "psrlw     $0x8,%%xmm2                     \n"
    "paddusb   %%xmm2,%%xmm0                   \n"
    "pand      %%xmm5,%%xmm1                   \n"
    "paddusb   %%xmm1,%%xmm0                   \n"
3195 3196
    "movd      %%xmm0," MEMACCESS(2) "         \n"
    "lea       " MEMLEA(0x4,2) ",%2            \n"
3197
    "sub       $0x1,%3                         \n"
3198 3199 3200 3201 3202 3203
    "jge       91b                             \n"
  "99:                                         \n"
  : "+r"(src_argb0),    // %0
    "+r"(src_argb1),    // %1
    "+r"(dst_argb),     // %2
    "+r"(width)         // %3
3204 3205 3206 3207 3208
  :
  : "memory", "cc"
    , "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5", "xmm6", "xmm7"
  );
}
3209
#endif  // HAS_ARGBBLENDROW_SSE2
3210 3211

#ifdef HAS_ARGBBLENDROW_SSSE3
3212
// Shuffle table for isolating alpha.
3213
static uvec8 kShuffleAlpha = {
3214 3215 3216
  3u, 0x80, 3u, 0x80, 7u, 0x80, 7u, 0x80,
  11u, 0x80, 11u, 0x80, 15u, 0x80, 15u, 0x80
};
3217 3218 3219 3220 3221 3222 3223 3224 3225 3226 3227 3228 3229

// Blend 8 pixels at a time
// Shuffle table for reversing the bytes.

// Same as SSE2, but replaces
//    psrlw      xmm3, 8          // alpha
//    pshufhw    xmm3, xmm3,0F5h  // 8 alpha words
//    pshuflw    xmm3, xmm3,0F5h
// with..
//    pshufb     xmm3, kShuffleAlpha // alpha

void ARGBBlendRow_SSSE3(const uint8* src_argb0, const uint8* src_argb1,
                        uint8* dst_argb, int width) {
3230 3231 3232 3233 3234 3235 3236 3237 3238
  asm volatile (
    "pcmpeqb   %%xmm7,%%xmm7                   \n"
    "psrlw     $0xf,%%xmm7                     \n"
    "pcmpeqb   %%xmm6,%%xmm6                   \n"
    "psrlw     $0x8,%%xmm6                     \n"
    "pcmpeqb   %%xmm5,%%xmm5                   \n"
    "psllw     $0x8,%%xmm5                     \n"
    "pcmpeqb   %%xmm4,%%xmm4                   \n"
    "pslld     $0x18,%%xmm4                    \n"
3239
    "sub       $0x4,%3                         \n"
3240 3241
    "jl        49f                             \n"

3242
    // 4 pixel loop.
3243
    LABELALIGN
3244
  "40:                                         \n"
3245
    "movdqu    " MEMACCESS(0) ",%%xmm3         \n"
3246
    "lea       " MEMLEA(0x10,0) ",%0           \n"
3247 3248
    "movdqa    %%xmm3,%%xmm0                   \n"
    "pxor      %%xmm4,%%xmm3                   \n"
3249
    "movdqu    " MEMACCESS(1) ",%%xmm2         \n"
3250 3251 3252 3253
    "pshufb    %4,%%xmm3                       \n"
    "pand      %%xmm6,%%xmm2                   \n"
    "paddw     %%xmm7,%%xmm3                   \n"
    "pmullw    %%xmm3,%%xmm2                   \n"
3254
    "movdqu    " MEMACCESS(1) ",%%xmm1         \n"
3255
    "lea       " MEMLEA(0x10,1) ",%1           \n"
3256 3257 3258 3259 3260 3261 3262
    "psrlw     $0x8,%%xmm1                     \n"
    "por       %%xmm4,%%xmm0                   \n"
    "pmullw    %%xmm3,%%xmm1                   \n"
    "psrlw     $0x8,%%xmm2                     \n"
    "paddusb   %%xmm2,%%xmm0                   \n"
    "pand      %%xmm5,%%xmm1                   \n"
    "paddusb   %%xmm1,%%xmm0                   \n"
3263
    "movdqu    %%xmm0," MEMACCESS(2) "         \n"
3264
    "lea       " MEMLEA(0x10,2) ",%2           \n"
3265
    "sub       $0x4,%3                         \n"
3266
    "jge       40b                             \n"
3267

3268 3269 3270
  "49:                                         \n"
    "add       $0x3,%3                         \n"
    "jl        99f                             \n"
3271

3272
    // 1 pixel loop.
3273
  "91:                                         \n"
3274 3275
    "movd      " MEMACCESS(0) ",%%xmm3         \n"
    "lea       " MEMLEA(0x4,0) ",%0            \n"
3276 3277
    "movdqa    %%xmm3,%%xmm0                   \n"
    "pxor      %%xmm4,%%xmm3                   \n"
3278
    "movd      " MEMACCESS(1) ",%%xmm2         \n"
3279 3280 3281 3282
    "pshufb    %4,%%xmm3                       \n"
    "pand      %%xmm6,%%xmm2                   \n"
    "paddw     %%xmm7,%%xmm3                   \n"
    "pmullw    %%xmm3,%%xmm2                   \n"
3283 3284
    "movd      " MEMACCESS(1) ",%%xmm1         \n"
    "lea       " MEMLEA(0x4,1) ",%1            \n"
3285 3286 3287 3288 3289 3290 3291
    "psrlw     $0x8,%%xmm1                     \n"
    "por       %%xmm4,%%xmm0                   \n"
    "pmullw    %%xmm3,%%xmm1                   \n"
    "psrlw     $0x8,%%xmm2                     \n"
    "paddusb   %%xmm2,%%xmm0                   \n"
    "pand      %%xmm5,%%xmm1                   \n"
    "paddusb   %%xmm1,%%xmm0                   \n"
3292 3293
    "movd      %%xmm0," MEMACCESS(2) "         \n"
    "lea       " MEMLEA(0x4,2) ",%2            \n"
3294
    "sub       $0x1,%3                         \n"
3295 3296
    "jge       91b                             \n"
  "99:                                         \n"
3297 3298 3299 3300 3301 3302 3303 3304 3305
  : "+r"(src_argb0),    // %0
    "+r"(src_argb1),    // %1
    "+r"(dst_argb),     // %2
    "+r"(width)         // %3
  : "m"(kShuffleAlpha)  // %4
  : "memory", "cc"
    , "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5", "xmm6", "xmm7"
  );
}
3306
#endif  // HAS_ARGBBLENDROW_SSSE3
3307

3308
#ifdef HAS_ARGBATTENUATEROW_SSE2
3309 3310 3311 3312 3313 3314 3315
// Attenuate 4 pixels at a time.
void ARGBAttenuateRow_SSE2(const uint8* src_argb, uint8* dst_argb, int width) {
  asm volatile (
    "pcmpeqb   %%xmm4,%%xmm4                   \n"
    "pslld     $0x18,%%xmm4                    \n"
    "pcmpeqb   %%xmm5,%%xmm5                   \n"
    "psrld     $0x8,%%xmm5                     \n"
3316

3317
    // 4 pixel loop.
3318
    LABELALIGN
3319
  "1:                                          \n"
3320
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
3321 3322 3323 3324
    "punpcklbw %%xmm0,%%xmm0                   \n"
    "pshufhw   $0xff,%%xmm0,%%xmm2             \n"
    "pshuflw   $0xff,%%xmm2,%%xmm2             \n"
    "pmulhuw   %%xmm2,%%xmm0                   \n"
3325
    "movdqu    " MEMACCESS(0) ",%%xmm1         \n"
3326 3327 3328 3329
    "punpckhbw %%xmm1,%%xmm1                   \n"
    "pshufhw   $0xff,%%xmm1,%%xmm2             \n"
    "pshuflw   $0xff,%%xmm2,%%xmm2             \n"
    "pmulhuw   %%xmm2,%%xmm1                   \n"
3330
    "movdqu    " MEMACCESS(0) ",%%xmm2         \n"
3331
    "lea       " MEMLEA(0x10,0) ",%0           \n"
3332
    "psrlw     $0x8,%%xmm0                     \n"
3333
    "pand      %%xmm4,%%xmm2                   \n"
3334 3335 3336
    "psrlw     $0x8,%%xmm1                     \n"
    "packuswb  %%xmm1,%%xmm0                   \n"
    "pand      %%xmm5,%%xmm0                   \n"
3337
    "por       %%xmm2,%%xmm0                   \n"
3338
    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
3339
    "lea       " MEMLEA(0x10,1) ",%1           \n"
3340
    "sub       $0x4,%2                         \n"
3341 3342 3343 3344 3345 3346 3347 3348 3349
    "jg        1b                              \n"
  : "+r"(src_argb),    // %0
    "+r"(dst_argb),    // %1
    "+r"(width)        // %2
  :
  : "memory", "cc"
    , "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5"
  );
}
3350
#endif  // HAS_ARGBATTENUATEROW_SSE2
3351

3352
#ifdef HAS_ARGBATTENUATEROW_SSSE3
3353
// Shuffle table duplicating alpha
3354
static uvec8 kShuffleAlpha0 = {
3355
  3u, 3u, 3u, 3u, 3u, 3u, 128u, 128u, 7u, 7u, 7u, 7u, 7u, 7u, 128u, 128u
3356
};
3357
static uvec8 kShuffleAlpha1 = {
3358
  11u, 11u, 11u, 11u, 11u, 11u, 128u, 128u,
3359
  15u, 15u, 15u, 15u, 15u, 15u, 128u, 128u
3360 3361 3362 3363 3364 3365 3366 3367 3368
};
// Attenuate 4 pixels at a time.
void ARGBAttenuateRow_SSSE3(const uint8* src_argb, uint8* dst_argb, int width) {
  asm volatile (
    "pcmpeqb   %%xmm3,%%xmm3                   \n"
    "pslld     $0x18,%%xmm3                    \n"
    "movdqa    %3,%%xmm4                       \n"
    "movdqa    %4,%%xmm5                       \n"

3369
    // 4 pixel loop.
3370
    LABELALIGN
3371
  "1:                                          \n"
3372
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
3373
    "pshufb    %%xmm4,%%xmm0                   \n"
3374
    "movdqu    " MEMACCESS(0) ",%%xmm1         \n"
3375 3376
    "punpcklbw %%xmm1,%%xmm1                   \n"
    "pmulhuw   %%xmm1,%%xmm0                   \n"
3377
    "movdqu    " MEMACCESS(0) ",%%xmm1         \n"
3378
    "pshufb    %%xmm5,%%xmm1                   \n"
3379
    "movdqu    " MEMACCESS(0) ",%%xmm2         \n"
3380 3381
    "punpckhbw %%xmm2,%%xmm2                   \n"
    "pmulhuw   %%xmm2,%%xmm1                   \n"
3382 3383
    "movdqu    " MEMACCESS(0) ",%%xmm2         \n"
    "lea       " MEMLEA(0x10,0) ",%0           \n"
3384 3385 3386 3387 3388
    "pand      %%xmm3,%%xmm2                   \n"
    "psrlw     $0x8,%%xmm0                     \n"
    "psrlw     $0x8,%%xmm1                     \n"
    "packuswb  %%xmm1,%%xmm0                   \n"
    "por       %%xmm2,%%xmm0                   \n"
3389 3390
    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
    "lea       " MEMLEA(0x10,1) ",%1           \n"
3391
    "sub       $0x4,%2                         \n"
3392 3393 3394 3395 3396 3397 3398 3399 3400 3401
    "jg        1b                              \n"
  : "+r"(src_argb),    // %0
    "+r"(dst_argb),    // %1
    "+r"(width)        // %2
  : "m"(kShuffleAlpha0),  // %3
    "m"(kShuffleAlpha1)  // %4
  : "memory", "cc"
    , "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5"
  );
}
3402
#endif  // HAS_ARGBATTENUATEROW_SSSE3
3403

3404 3405
#ifdef HAS_ARGBATTENUATEROW_AVX2
// Shuffle table duplicating alpha.
3406 3407
static const uvec8 kShuffleAlpha_AVX2 = {
  6u, 7u, 6u, 7u, 6u, 7u, 128u, 128u, 14u, 15u, 14u, 15u, 14u, 15u, 128u, 128u
3408 3409 3410 3411 3412 3413 3414 3415 3416 3417 3418 3419 3420 3421 3422 3423 3424 3425 3426 3427 3428 3429 3430 3431 3432 3433
};
// Attenuate 8 pixels at a time.
void ARGBAttenuateRow_AVX2(const uint8* src_argb, uint8* dst_argb, int width) {
  asm volatile (
    "vbroadcastf128 %3,%%ymm4                  \n"
    "vpcmpeqb   %%ymm5,%%ymm5,%%ymm5           \n"
    "vpslld     $0x18,%%ymm5,%%ymm5            \n"
    "sub        %0,%1                          \n"

    // 8 pixel loop.
    LABELALIGN
  "1:                                          \n"
    "vmovdqu    " MEMACCESS(0) ",%%ymm6        \n"
    "vpunpcklbw %%ymm6,%%ymm6,%%ymm0           \n"
    "vpunpckhbw %%ymm6,%%ymm6,%%ymm1           \n"
    "vpshufb    %%ymm4,%%ymm0,%%ymm2           \n"
    "vpshufb    %%ymm4,%%ymm1,%%ymm3           \n"
    "vpmulhuw   %%ymm2,%%ymm0,%%ymm0           \n"
    "vpmulhuw   %%ymm3,%%ymm1,%%ymm1           \n"
    "vpand      %%ymm5,%%ymm6,%%ymm6           \n"
    "vpsrlw     $0x8,%%ymm0,%%ymm0             \n"
    "vpsrlw     $0x8,%%ymm1,%%ymm1             \n"
    "vpackuswb  %%ymm1,%%ymm0,%%ymm0           \n"
    "vpor       %%ymm6,%%ymm0,%%ymm0           \n"
    MEMOPMEM(vmovdqu,ymm0,0x00,0,1,1)          //  vmovdqu %%ymm0,(%0,%1)
    "lea       " MEMLEA(0x20,0) ",%0           \n"
3434
    "sub        $0x8,%2                        \n"
3435 3436 3437 3438 3439 3440 3441 3442 3443 3444 3445 3446
    "jg        1b                              \n"
    "vzeroupper                                \n"
  : "+r"(src_argb),    // %0
    "+r"(dst_argb),    // %1
    "+r"(width)        // %2
  : "m"(kShuffleAlpha_AVX2)  // %3
  : "memory", "cc"
    , "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5", "xmm6"
  );
}
#endif  // HAS_ARGBATTENUATEROW_AVX2

3447
#ifdef HAS_ARGBUNATTENUATEROW_SSE2
3448 3449 3450 3451 3452
// Unattenuate 4 pixels at a time.
void ARGBUnattenuateRow_SSE2(const uint8* src_argb, uint8* dst_argb,
                             int width) {
  uintptr_t alpha = 0;
  asm volatile (
3453
    // 4 pixel loop.
3454
    LABELALIGN
3455
  "1:                                          \n"
3456 3457
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movzb     " MEMACCESS2(0x03,0) ",%3       \n"
3458
    "punpcklbw %%xmm0,%%xmm0                   \n"
3459
    MEMOPREG(movd,0x00,4,3,4,xmm2)             //  movd      0x0(%4,%3,4),%%xmm2
3460
    "movzb     " MEMACCESS2(0x07,0) ",%3       \n"
3461
    MEMOPREG(movd,0x00,4,3,4,xmm3)             //  movd      0x0(%4,%3,4),%%xmm3
3462 3463
    "pshuflw   $0x40,%%xmm2,%%xmm2             \n"
    "pshuflw   $0x40,%%xmm3,%%xmm3             \n"
3464 3465
    "movlhps   %%xmm3,%%xmm2                   \n"
    "pmulhuw   %%xmm2,%%xmm0                   \n"
3466 3467
    "movdqu    " MEMACCESS(0) ",%%xmm1         \n"
    "movzb     " MEMACCESS2(0x0b,0) ",%3       \n"
3468
    "punpckhbw %%xmm1,%%xmm1                   \n"
3469
    MEMOPREG(movd,0x00,4,3,4,xmm2)             //  movd      0x0(%4,%3,4),%%xmm2
3470
    "movzb     " MEMACCESS2(0x0f,0) ",%3       \n"
3471
    MEMOPREG(movd,0x00,4,3,4,xmm3)             //  movd      0x0(%4,%3,4),%%xmm3
3472 3473
    "pshuflw   $0x40,%%xmm2,%%xmm2             \n"
    "pshuflw   $0x40,%%xmm3,%%xmm3             \n"
3474 3475
    "movlhps   %%xmm3,%%xmm2                   \n"
    "pmulhuw   %%xmm2,%%xmm1                   \n"
3476
    "lea       " MEMLEA(0x10,0) ",%0           \n"
3477
    "packuswb  %%xmm1,%%xmm0                   \n"
3478 3479
    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
    "lea       " MEMLEA(0x10,1) ",%1           \n"
3480
    "sub       $0x4,%2                         \n"
3481 3482 3483 3484 3485 3486
    "jg        1b                              \n"
  : "+r"(src_argb),    // %0
    "+r"(dst_argb),    // %1
    "+r"(width),       // %2
    "+r"(alpha)        // %3
  : "r"(fixed_invtbl8)  // %4
3487 3488
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5"
3489 3490
  );
}
3491
#endif  // HAS_ARGBUNATTENUATEROW_SSE2
3492

3493 3494 3495 3496 3497 3498 3499 3500 3501 3502 3503 3504 3505 3506 3507 3508 3509 3510 3511 3512 3513 3514 3515 3516 3517 3518 3519 3520 3521 3522 3523 3524 3525 3526 3527 3528 3529 3530 3531 3532 3533 3534 3535 3536 3537 3538 3539 3540 3541 3542 3543 3544 3545 3546
#ifdef HAS_ARGBUNATTENUATEROW_AVX2
// Shuffle table duplicating alpha.
static const uvec8 kUnattenShuffleAlpha_AVX2 = {
  0u, 1u, 0u, 1u, 0u, 1u, 6u, 7u, 8u, 9u, 8u, 9u, 8u, 9u, 14u, 15u
};
// Unattenuate 8 pixels at a time.
void ARGBUnattenuateRow_AVX2(const uint8* src_argb, uint8* dst_argb,
                             int width) {
  uintptr_t alpha = 0;
  asm volatile (
    "sub        %0,%1                          \n"
    "vbroadcastf128 %5,%%ymm5                  \n"

    // 8 pixel loop.
    LABELALIGN
  "1:                                          \n"
    // replace VPGATHER
    "movzb     " MEMACCESS2(0x03,0) ",%3       \n"
    MEMOPREG(vmovd,0x00,4,3,4,xmm0)             //  vmovd 0x0(%4,%3,4),%%xmm0
    "movzb     " MEMACCESS2(0x07,0) ",%3       \n"
    MEMOPREG(vmovd,0x00,4,3,4,xmm1)             //  vmovd 0x0(%4,%3,4),%%xmm1
    "movzb     " MEMACCESS2(0x0b,0) ",%3       \n"
    "vpunpckldq %%xmm1,%%xmm0,%%xmm6           \n"
    MEMOPREG(vmovd,0x00,4,3,4,xmm2)             //  vmovd 0x0(%4,%3,4),%%xmm2
    "movzb     " MEMACCESS2(0x0f,0) ",%3       \n"
    MEMOPREG(vmovd,0x00,4,3,4,xmm3)             //  vmovd 0x0(%4,%3,4),%%xmm3
    "movzb     " MEMACCESS2(0x13,0) ",%3       \n"
    "vpunpckldq %%xmm3,%%xmm2,%%xmm7           \n"
    MEMOPREG(vmovd,0x00,4,3,4,xmm0)             //  vmovd 0x0(%4,%3,4),%%xmm0
    "movzb     " MEMACCESS2(0x17,0) ",%3       \n"
    MEMOPREG(vmovd,0x00,4,3,4,xmm1)             //  vmovd 0x0(%4,%3,4),%%xmm1
    "movzb     " MEMACCESS2(0x1b,0) ",%3       \n"
    "vpunpckldq %%xmm1,%%xmm0,%%xmm0           \n"
    MEMOPREG(vmovd,0x00,4,3,4,xmm2)             //  vmovd 0x0(%4,%3,4),%%xmm2
    "movzb     " MEMACCESS2(0x1f,0) ",%3       \n"
    MEMOPREG(vmovd,0x00,4,3,4,xmm3)             //  vmovd 0x0(%4,%3,4),%%xmm3
    "vpunpckldq %%xmm3,%%xmm2,%%xmm2           \n"
    "vpunpcklqdq %%xmm7,%%xmm6,%%xmm3          \n"
    "vpunpcklqdq %%xmm2,%%xmm0,%%xmm0          \n"
    "vinserti128 $0x1,%%xmm0,%%ymm3,%%ymm3     \n"
    // end of VPGATHER

    "vmovdqu    " MEMACCESS(0) ",%%ymm6        \n"
    "vpunpcklbw %%ymm6,%%ymm6,%%ymm0           \n"
    "vpunpckhbw %%ymm6,%%ymm6,%%ymm1           \n"
    "vpunpcklwd %%ymm3,%%ymm3,%%ymm2           \n"
    "vpunpckhwd %%ymm3,%%ymm3,%%ymm3           \n"
    "vpshufb    %%ymm5,%%ymm2,%%ymm2           \n"
    "vpshufb    %%ymm5,%%ymm3,%%ymm3           \n"
    "vpmulhuw   %%ymm2,%%ymm0,%%ymm0           \n"
    "vpmulhuw   %%ymm3,%%ymm1,%%ymm1           \n"
    "vpackuswb  %%ymm1,%%ymm0,%%ymm0           \n"
    MEMOPMEM(vmovdqu,ymm0,0x00,0,1,1)          //  vmovdqu %%ymm0,(%0,%1)
    "lea       " MEMLEA(0x20,0) ",%0           \n"
3547
    "sub        $0x8,%2                        \n"
3548 3549 3550 3551 3552 3553 3554 3555
    "jg        1b                              \n"
    "vzeroupper                                \n"
  : "+r"(src_argb),    // %0
    "+r"(dst_argb),    // %1
    "+r"(width),       // %2
    "+r"(alpha)        // %3
  : "r"(fixed_invtbl8),  // %4
    "m"(kUnattenShuffleAlpha_AVX2)  // %5
3556 3557
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5", "xmm6", "xmm7"
3558 3559 3560 3561
  );
}
#endif  // HAS_ARGBUNATTENUATEROW_AVX2

3562 3563
#ifdef HAS_ARGBGRAYROW_SSSE3
// Convert 8 ARGB pixels (64 bytes) to 8 Gray ARGB pixels
3564
void ARGBGrayRow_SSSE3(const uint8* src_argb, uint8* dst_argb, int width) {
3565
  asm volatile (
3566
    "movdqa    %3,%%xmm4                       \n"
3567
    "movdqa    %4,%%xmm5                       \n"
3568 3569

    // 8 pixel loop.
3570
    LABELALIGN
3571
  "1:                                          \n"
3572 3573
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
3574 3575 3576
    "pmaddubsw %%xmm4,%%xmm0                   \n"
    "pmaddubsw %%xmm4,%%xmm1                   \n"
    "phaddw    %%xmm1,%%xmm0                   \n"
3577
    "paddw     %%xmm5,%%xmm0                   \n"
3578 3579
    "psrlw     $0x7,%%xmm0                     \n"
    "packuswb  %%xmm0,%%xmm0                   \n"
3580 3581
    "movdqu    " MEMACCESS(0) ",%%xmm2         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm3   \n"
3582
    "lea       " MEMLEA(0x20,0) ",%0           \n"
3583 3584 3585 3586 3587
    "psrld     $0x18,%%xmm2                    \n"
    "psrld     $0x18,%%xmm3                    \n"
    "packuswb  %%xmm3,%%xmm2                   \n"
    "packuswb  %%xmm2,%%xmm2                   \n"
    "movdqa    %%xmm0,%%xmm3                   \n"
3588
    "punpcklbw %%xmm0,%%xmm0                   \n"
3589
    "punpcklbw %%xmm2,%%xmm3                   \n"
3590
    "movdqa    %%xmm0,%%xmm1                   \n"
3591 3592
    "punpcklwd %%xmm3,%%xmm0                   \n"
    "punpckhwd %%xmm3,%%xmm1                   \n"
3593 3594
    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
    "movdqu    %%xmm1," MEMACCESS2(0x10,1) "   \n"
3595
    "lea       " MEMLEA(0x20,1) ",%1           \n"
3596
    "sub       $0x8,%2                         \n"
3597
    "jg        1b                              \n"
3598 3599 3600
  : "+r"(src_argb),   // %0
    "+r"(dst_argb),   // %1
    "+r"(width)       // %2
3601 3602
  : "m"(kARGBToYJ),   // %3
    "m"(kAddYJ64)     // %4
3603
  : "memory", "cc"
3604
    , "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5"
3605 3606 3607
  );
}
#endif  // HAS_ARGBGRAYROW_SSSE3
3608 3609 3610 3611 3612 3613

#ifdef HAS_ARGBSEPIAROW_SSSE3
//    b = (r * 35 + g * 68 + b * 17) >> 7
//    g = (r * 45 + g * 88 + b * 22) >> 7
//    r = (r * 50 + g * 98 + b * 24) >> 7
// Constant for ARGB color to sepia tone
3614
static vec8 kARGBToSepiaB = {
3615 3616 3617
  17, 68, 35, 0, 17, 68, 35, 0, 17, 68, 35, 0, 17, 68, 35, 0
};

3618
static vec8 kARGBToSepiaG = {
3619 3620 3621
  22, 88, 45, 0, 22, 88, 45, 0, 22, 88, 45, 0, 22, 88, 45, 0
};

3622
static vec8 kARGBToSepiaR = {
3623 3624 3625
  24, 98, 50, 0, 24, 98, 50, 0, 24, 98, 50, 0, 24, 98, 50, 0
};

3626
// Convert 8 ARGB pixels (32 bytes) to 8 Sepia ARGB pixels.
3627 3628 3629 3630 3631
void ARGBSepiaRow_SSSE3(uint8* dst_argb, int width) {
  asm volatile (
    "movdqa    %2,%%xmm2                       \n"
    "movdqa    %3,%%xmm3                       \n"
    "movdqa    %4,%%xmm4                       \n"
3632 3633

    // 8 pixel loop.
3634
    LABELALIGN
3635
  "1:                                          \n"
3636 3637
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm6   \n"
3638 3639 3640 3641 3642
    "pmaddubsw %%xmm2,%%xmm0                   \n"
    "pmaddubsw %%xmm2,%%xmm6                   \n"
    "phaddw    %%xmm6,%%xmm0                   \n"
    "psrlw     $0x7,%%xmm0                     \n"
    "packuswb  %%xmm0,%%xmm0                   \n"
3643 3644
    "movdqu    " MEMACCESS(0) ",%%xmm5         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
3645 3646 3647 3648 3649 3650
    "pmaddubsw %%xmm3,%%xmm5                   \n"
    "pmaddubsw %%xmm3,%%xmm1                   \n"
    "phaddw    %%xmm1,%%xmm5                   \n"
    "psrlw     $0x7,%%xmm5                     \n"
    "packuswb  %%xmm5,%%xmm5                   \n"
    "punpcklbw %%xmm5,%%xmm0                   \n"
3651 3652
    "movdqu    " MEMACCESS(0) ",%%xmm5         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
3653 3654 3655 3656 3657
    "pmaddubsw %%xmm4,%%xmm5                   \n"
    "pmaddubsw %%xmm4,%%xmm1                   \n"
    "phaddw    %%xmm1,%%xmm5                   \n"
    "psrlw     $0x7,%%xmm5                     \n"
    "packuswb  %%xmm5,%%xmm5                   \n"
3658 3659
    "movdqu    " MEMACCESS(0) ",%%xmm6         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
3660 3661 3662 3663 3664 3665 3666 3667
    "psrld     $0x18,%%xmm6                    \n"
    "psrld     $0x18,%%xmm1                    \n"
    "packuswb  %%xmm1,%%xmm6                   \n"
    "packuswb  %%xmm6,%%xmm6                   \n"
    "punpcklbw %%xmm6,%%xmm5                   \n"
    "movdqa    %%xmm0,%%xmm1                   \n"
    "punpcklwd %%xmm5,%%xmm0                   \n"
    "punpckhwd %%xmm5,%%xmm1                   \n"
3668 3669
    "movdqu    %%xmm0," MEMACCESS(0) "         \n"
    "movdqu    %%xmm1," MEMACCESS2(0x10,0) "   \n"
3670
    "lea       " MEMLEA(0x20,0) ",%0           \n"
3671
    "sub       $0x8,%1                         \n"
3672 3673 3674 3675 3676 3677 3678 3679 3680 3681 3682 3683
    "jg        1b                              \n"
  : "+r"(dst_argb),      // %0
    "+r"(width)          // %1
  : "m"(kARGBToSepiaB),  // %2
    "m"(kARGBToSepiaG),  // %3
    "m"(kARGBToSepiaR)   // %4
  : "memory", "cc"
    , "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5", "xmm6"
  );
}
#endif  // HAS_ARGBSEPIAROW_SSSE3

3684 3685 3686
#ifdef HAS_ARGBCOLORMATRIXROW_SSSE3
// Tranform 8 ARGB pixels (32 bytes) with color matrix.
// Same as Sepia except matrix is provided.
3687 3688
void ARGBColorMatrixRow_SSSE3(const uint8* src_argb, uint8* dst_argb,
                              const int8* matrix_argb, int width) {
3689
  asm volatile (
3690 3691 3692 3693 3694
    "movdqu    " MEMACCESS(3) ",%%xmm5         \n"
    "pshufd    $0x00,%%xmm5,%%xmm2             \n"
    "pshufd    $0x55,%%xmm5,%%xmm3             \n"
    "pshufd    $0xaa,%%xmm5,%%xmm4             \n"
    "pshufd    $0xff,%%xmm5,%%xmm5             \n"
3695 3696

    // 8 pixel loop.
3697
    LABELALIGN
3698
  "1:                                          \n"
3699 3700
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm7   \n"
3701
    "pmaddubsw %%xmm2,%%xmm0                   \n"
3702
    "pmaddubsw %%xmm2,%%xmm7                   \n"
3703 3704
    "movdqu    " MEMACCESS(0) ",%%xmm6         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
3705
    "pmaddubsw %%xmm3,%%xmm6                   \n"
3706
    "pmaddubsw %%xmm3,%%xmm1                   \n"
3707 3708 3709 3710
    "phaddsw   %%xmm7,%%xmm0                   \n"
    "phaddsw   %%xmm1,%%xmm6                   \n"
    "psraw     $0x6,%%xmm0                     \n"
    "psraw     $0x6,%%xmm6                     \n"
3711
    "packuswb  %%xmm0,%%xmm0                   \n"
3712 3713
    "packuswb  %%xmm6,%%xmm6                   \n"
    "punpcklbw %%xmm6,%%xmm0                   \n"
3714 3715
    "movdqu    " MEMACCESS(0) ",%%xmm1         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm7   \n"
3716
    "pmaddubsw %%xmm4,%%xmm1                   \n"
3717 3718
    "pmaddubsw %%xmm4,%%xmm7                   \n"
    "phaddsw   %%xmm7,%%xmm1                   \n"
3719 3720
    "movdqu    " MEMACCESS(0) ",%%xmm6         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm7   \n"
3721 3722 3723 3724 3725 3726
    "pmaddubsw %%xmm5,%%xmm6                   \n"
    "pmaddubsw %%xmm5,%%xmm7                   \n"
    "phaddsw   %%xmm7,%%xmm6                   \n"
    "psraw     $0x6,%%xmm1                     \n"
    "psraw     $0x6,%%xmm6                     \n"
    "packuswb  %%xmm1,%%xmm1                   \n"
3727
    "packuswb  %%xmm6,%%xmm6                   \n"
3728 3729 3730 3731
    "punpcklbw %%xmm6,%%xmm1                   \n"
    "movdqa    %%xmm0,%%xmm6                   \n"
    "punpcklwd %%xmm1,%%xmm0                   \n"
    "punpckhwd %%xmm1,%%xmm6                   \n"
3732 3733
    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
    "movdqu    %%xmm6," MEMACCESS2(0x10,1) "   \n"
3734 3735
    "lea       " MEMLEA(0x20,0) ",%0           \n"
    "lea       " MEMLEA(0x20,1) ",%1           \n"
3736
    "sub       $0x8,%2                         \n"
3737
    "jg        1b                              \n"
3738 3739 3740 3741
  : "+r"(src_argb),      // %0
    "+r"(dst_argb),      // %1
    "+r"(width)          // %2
  : "r"(matrix_argb)     // %3
3742
  : "memory", "cc"
3743
    , "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5", "xmm6", "xmm7"
3744 3745 3746 3747
  );
}
#endif  // HAS_ARGBCOLORMATRIXROW_SSSE3

3748 3749 3750 3751 3752 3753 3754 3755 3756 3757 3758 3759 3760 3761 3762 3763 3764 3765 3766
#ifdef HAS_ARGBQUANTIZEROW_SSE2
// Quantize 4 ARGB pixels (16 bytes).
void ARGBQuantizeRow_SSE2(uint8* dst_argb, int scale, int interval_size,
                          int interval_offset, int width) {
  asm volatile (
    "movd      %2,%%xmm2                       \n"
    "movd      %3,%%xmm3                       \n"
    "movd      %4,%%xmm4                       \n"
    "pshuflw   $0x40,%%xmm2,%%xmm2             \n"
    "pshufd    $0x44,%%xmm2,%%xmm2             \n"
    "pshuflw   $0x40,%%xmm3,%%xmm3             \n"
    "pshufd    $0x44,%%xmm3,%%xmm3             \n"
    "pshuflw   $0x40,%%xmm4,%%xmm4             \n"
    "pshufd    $0x44,%%xmm4,%%xmm4             \n"
    "pxor      %%xmm5,%%xmm5                   \n"
    "pcmpeqb   %%xmm6,%%xmm6                   \n"
    "pslld     $0x18,%%xmm6                    \n"

    // 4 pixel loop.
3767
    LABELALIGN
3768
  "1:                                          \n"
3769
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
3770 3771
    "punpcklbw %%xmm5,%%xmm0                   \n"
    "pmulhuw   %%xmm2,%%xmm0                   \n"
3772
    "movdqu    " MEMACCESS(0) ",%%xmm1         \n"
3773 3774 3775
    "punpckhbw %%xmm5,%%xmm1                   \n"
    "pmulhuw   %%xmm2,%%xmm1                   \n"
    "pmullw    %%xmm3,%%xmm0                   \n"
3776
    "movdqu    " MEMACCESS(0) ",%%xmm7         \n"
3777 3778 3779 3780 3781 3782
    "pmullw    %%xmm3,%%xmm1                   \n"
    "pand      %%xmm6,%%xmm7                   \n"
    "paddw     %%xmm4,%%xmm0                   \n"
    "paddw     %%xmm4,%%xmm1                   \n"
    "packuswb  %%xmm1,%%xmm0                   \n"
    "por       %%xmm7,%%xmm0                   \n"
3783
    "movdqu    %%xmm0," MEMACCESS(0) "         \n"
3784
    "lea       " MEMLEA(0x10,0) ",%0           \n"
3785
    "sub       $0x4,%1                         \n"
3786 3787 3788 3789 3790 3791 3792 3793 3794 3795 3796 3797
    "jg        1b                              \n"
  : "+r"(dst_argb),       // %0
    "+r"(width)           // %1
  : "r"(scale),           // %2
    "r"(interval_size),   // %3
    "r"(interval_offset)  // %4
  : "memory", "cc"
    , "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5", "xmm6", "xmm7"
  );
}
#endif  // HAS_ARGBQUANTIZEROW_SSE2

3798 3799 3800 3801 3802 3803 3804 3805 3806 3807
#ifdef HAS_ARGBSHADEROW_SSE2
// Shade 4 pixels at a time by specified value.
void ARGBShadeRow_SSE2(const uint8* src_argb, uint8* dst_argb, int width,
                       uint32 value) {
  asm volatile (
    "movd      %3,%%xmm2                       \n"
    "punpcklbw %%xmm2,%%xmm2                   \n"
    "punpcklqdq %%xmm2,%%xmm2                  \n"

    // 4 pixel loop.
3808
    LABELALIGN
3809
  "1:                                          \n"
3810
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
3811
    "lea       " MEMLEA(0x10,0) ",%0           \n"
3812 3813 3814 3815 3816 3817 3818 3819
    "movdqa    %%xmm0,%%xmm1                   \n"
    "punpcklbw %%xmm0,%%xmm0                   \n"
    "punpckhbw %%xmm1,%%xmm1                   \n"
    "pmulhuw   %%xmm2,%%xmm0                   \n"
    "pmulhuw   %%xmm2,%%xmm1                   \n"
    "psrlw     $0x8,%%xmm0                     \n"
    "psrlw     $0x8,%%xmm1                     \n"
    "packuswb  %%xmm1,%%xmm0                   \n"
3820
    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
3821
    "lea       " MEMLEA(0x10,1) ",%1           \n"
3822
    "sub       $0x4,%2                         \n"
3823
    "jg        1b                              \n"
3824 3825 3826 3827
  : "+r"(src_argb),  // %0
    "+r"(dst_argb),  // %1
    "+r"(width)      // %2
  : "r"(value)       // %3
3828 3829 3830 3831 3832 3833
  : "memory", "cc"
    , "xmm0", "xmm1", "xmm2"
  );
}
#endif  // HAS_ARGBSHADEROW_SSE2

3834
#ifdef HAS_ARGBMULTIPLYROW_SSE2
3835
// Multiply 2 rows of ARGB pixels together, 4 pixels at a time.
3836 3837
void ARGBMultiplyRow_SSE2(const uint8* src_argb0, const uint8* src_argb1,
                          uint8* dst_argb, int width) {
3838
  asm volatile (
3839
    "pxor      %%xmm5,%%xmm5                  \n"
3840 3841

    // 4 pixel loop.
3842
    LABELALIGN
3843
  "1:                                          \n"
3844 3845 3846 3847
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "lea       " MEMLEA(0x10,0) ",%0           \n"
    "movdqu    " MEMACCESS(1) ",%%xmm2         \n"
    "lea       " MEMLEA(0x10,1) ",%1           \n"
3848 3849
    "movdqu    %%xmm0,%%xmm1                   \n"
    "movdqu    %%xmm2,%%xmm3                   \n"
3850 3851 3852 3853 3854 3855 3856
    "punpcklbw %%xmm0,%%xmm0                   \n"
    "punpckhbw %%xmm1,%%xmm1                   \n"
    "punpcklbw %%xmm5,%%xmm2                   \n"
    "punpckhbw %%xmm5,%%xmm3                   \n"
    "pmulhuw   %%xmm2,%%xmm0                   \n"
    "pmulhuw   %%xmm3,%%xmm1                   \n"
    "packuswb  %%xmm1,%%xmm0                   \n"
3857 3858
    "movdqu    %%xmm0," MEMACCESS(2) "         \n"
    "lea       " MEMLEA(0x10,2) ",%2           \n"
3859
    "sub       $0x4,%3                         \n"
3860
    "jg        1b                              \n"
3861 3862
  : "+r"(src_argb0),  // %0
    "+r"(src_argb1),  // %1
3863 3864
    "+r"(dst_argb),   // %2
    "+r"(width)       // %3
3865 3866 3867 3868 3869 3870 3871
  :
  : "memory", "cc"
    , "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
  );
}
#endif  // HAS_ARGBMULTIPLYROW_SSE2

3872 3873 3874 3875 3876 3877 3878 3879 3880 3881 3882 3883 3884 3885 3886 3887 3888 3889 3890 3891 3892 3893 3894 3895 3896 3897 3898 3899 3900 3901 3902 3903 3904 3905 3906 3907 3908 3909 3910
#ifdef HAS_ARGBMULTIPLYROW_AVX2
// Multiply 2 rows of ARGB pixels together, 8 pixels at a time.
void ARGBMultiplyRow_AVX2(const uint8* src_argb0, const uint8* src_argb1,
                          uint8* dst_argb, int width) {
  asm volatile (
    "vpxor      %%ymm5,%%ymm5,%%ymm5           \n"

    // 4 pixel loop.
    LABELALIGN
  "1:                                          \n"
    "vmovdqu    " MEMACCESS(0) ",%%ymm1        \n"
    "lea        " MEMLEA(0x20,0) ",%0          \n"
    "vmovdqu    " MEMACCESS(1) ",%%ymm3        \n"
    "lea        " MEMLEA(0x20,1) ",%1          \n"
    "vpunpcklbw %%ymm1,%%ymm1,%%ymm0           \n"
    "vpunpckhbw %%ymm1,%%ymm1,%%ymm1           \n"
    "vpunpcklbw %%ymm5,%%ymm3,%%ymm2           \n"
    "vpunpckhbw %%ymm5,%%ymm3,%%ymm3           \n"
    "vpmulhuw   %%ymm2,%%ymm0,%%ymm0           \n"
    "vpmulhuw   %%ymm3,%%ymm1,%%ymm1           \n"
    "vpackuswb  %%ymm1,%%ymm0,%%ymm0           \n"
    "vmovdqu    %%ymm0," MEMACCESS(2) "        \n"
    "lea       " MEMLEA(0x20,2) ",%2           \n"
    "sub        $0x8,%3                        \n"
    "jg        1b                              \n"
    "vzeroupper                                \n"
  : "+r"(src_argb0),  // %0
    "+r"(src_argb1),  // %1
    "+r"(dst_argb),   // %2
    "+r"(width)       // %3
  :
  : "memory", "cc"
#if defined(__AVX2__)
    , "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
#endif
  );
}
#endif  // HAS_ARGBMULTIPLYROW_AVX2

3911 3912 3913 3914 3915 3916
#ifdef HAS_ARGBADDROW_SSE2
// Add 2 rows of ARGB pixels together, 4 pixels at a time.
void ARGBAddRow_SSE2(const uint8* src_argb0, const uint8* src_argb1,
                     uint8* dst_argb, int width) {
  asm volatile (
    // 4 pixel loop.
3917
    LABELALIGN
3918
  "1:                                          \n"
3919 3920 3921 3922
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "lea       " MEMLEA(0x10,0) ",%0           \n"
    "movdqu    " MEMACCESS(1) ",%%xmm1         \n"
    "lea       " MEMLEA(0x10,1) ",%1           \n"
3923
    "paddusb   %%xmm1,%%xmm0                   \n"
3924 3925
    "movdqu    %%xmm0," MEMACCESS(2) "         \n"
    "lea       " MEMLEA(0x10,2) ",%2           \n"
3926
    "sub       $0x4,%3                         \n"
3927 3928 3929 3930 3931 3932 3933
    "jg        1b                              \n"
  : "+r"(src_argb0),  // %0
    "+r"(src_argb1),  // %1
    "+r"(dst_argb),   // %2
    "+r"(width)       // %3
  :
  : "memory", "cc"
3934
    , "xmm0", "xmm1"
3935 3936 3937 3938
  );
}
#endif  // HAS_ARGBADDROW_SSE2

3939 3940 3941 3942 3943 3944 3945 3946 3947 3948 3949 3950 3951 3952 3953 3954 3955 3956 3957 3958 3959 3960 3961 3962 3963 3964 3965 3966
#ifdef HAS_ARGBADDROW_AVX2
// Add 2 rows of ARGB pixels together, 4 pixels at a time.
void ARGBAddRow_AVX2(const uint8* src_argb0, const uint8* src_argb1,
                     uint8* dst_argb, int width) {
  asm volatile (
    // 4 pixel loop.
    LABELALIGN
  "1:                                          \n"
    "vmovdqu    " MEMACCESS(0) ",%%ymm0        \n"
    "lea        " MEMLEA(0x20,0) ",%0          \n"
    "vpaddusb   " MEMACCESS(1) ",%%ymm0,%%ymm0 \n"
    "lea        " MEMLEA(0x20,1) ",%1          \n"
    "vmovdqu    %%ymm0," MEMACCESS(2) "        \n"
    "lea        " MEMLEA(0x20,2) ",%2          \n"
    "sub        $0x8,%3                        \n"
    "jg        1b                              \n"
    "vzeroupper                                \n"
  : "+r"(src_argb0),  // %0
    "+r"(src_argb1),  // %1
    "+r"(dst_argb),   // %2
    "+r"(width)       // %3
  :
  : "memory", "cc"
    , "xmm0"
  );
}
#endif  // HAS_ARGBADDROW_AVX2

3967 3968 3969 3970 3971 3972
#ifdef HAS_ARGBSUBTRACTROW_SSE2
// Subtract 2 rows of ARGB pixels, 4 pixels at a time.
void ARGBSubtractRow_SSE2(const uint8* src_argb0, const uint8* src_argb1,
                          uint8* dst_argb, int width) {
  asm volatile (
    // 4 pixel loop.
3973
    LABELALIGN
3974
  "1:                                          \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "lea       " MEMLEA(0x10,0) ",%0           \n"
    "movdqu    " MEMACCESS(1) ",%%xmm1         \n"
    "lea       " MEMLEA(0x10,1) ",%1           \n"
3979
    "psubusb   %%xmm1,%%xmm0                   \n"
3980 3981
    "movdqu    %%xmm0," MEMACCESS(2) "         \n"
    "lea       " MEMLEA(0x10,2) ",%2           \n"
3982
    "sub       $0x4,%3                         \n"
3983 3984 3985 3986 3987 3988 3989 3990 3991 3992 3993 3994
    "jg        1b                              \n"
  : "+r"(src_argb0),  // %0
    "+r"(src_argb1),  // %1
    "+r"(dst_argb),   // %2
    "+r"(width)       // %3
  :
  : "memory", "cc"
    , "xmm0", "xmm1"
  );
}
#endif  // HAS_ARGBSUBTRACTROW_SSE2

3995 3996 3997 3998 3999 4000 4001 4002 4003 4004 4005 4006 4007 4008 4009 4010 4011 4012 4013 4014 4015 4016 4017 4018 4019 4020 4021 4022
#ifdef HAS_ARGBSUBTRACTROW_AVX2
// Subtract 2 rows of ARGB pixels, 8 pixels at a time.
void ARGBSubtractRow_AVX2(const uint8* src_argb0, const uint8* src_argb1,
                          uint8* dst_argb, int width) {
  asm volatile (
    // 4 pixel loop.
    LABELALIGN
  "1:                                          \n"
    "vmovdqu    " MEMACCESS(0) ",%%ymm0        \n"
    "lea        " MEMLEA(0x20,0) ",%0          \n"
    "vpsubusb   " MEMACCESS(1) ",%%ymm0,%%ymm0 \n"
    "lea        " MEMLEA(0x20,1) ",%1          \n"
    "vmovdqu    %%ymm0," MEMACCESS(2) "        \n"
    "lea        " MEMLEA(0x20,2) ",%2          \n"
    "sub        $0x8,%3                        \n"
    "jg        1b                              \n"
    "vzeroupper                                \n"
  : "+r"(src_argb0),  // %0
    "+r"(src_argb1),  // %1
    "+r"(dst_argb),   // %2
    "+r"(width)       // %3
  :
  : "memory", "cc"
    , "xmm0"
  );
}
#endif  // HAS_ARGBSUBTRACTROW_AVX2

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#ifdef HAS_SOBELXROW_SSE2
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// SobelX as a matrix is
// -1  0  1
// -2  0  2
// -1  0  1
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void SobelXRow_SSE2(const uint8* src_y0, const uint8* src_y1,
                    const uint8* src_y2, uint8* dst_sobelx, int width) {
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  asm volatile (
    "sub       %0,%1                           \n"
    "sub       %0,%2                           \n"
    "sub       %0,%3                           \n"
    "pxor      %%xmm5,%%xmm5                   \n"

    // 8 pixel loop.
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    LABELALIGN
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  "1:                                          \n"
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    "movq      " MEMACCESS(0) ",%%xmm0         \n"
    "movq      " MEMACCESS2(0x2,0) ",%%xmm1    \n"
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    "punpcklbw %%xmm5,%%xmm0                   \n"
    "punpcklbw %%xmm5,%%xmm1                   \n"
    "psubw     %%xmm1,%%xmm0                   \n"
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    MEMOPREG(movq,0x00,0,1,1,xmm1)             //  movq      (%0,%1,1),%%xmm1
    MEMOPREG(movq,0x02,0,1,1,xmm2)             //  movq      0x2(%0,%1,1),%%xmm2
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    "punpcklbw %%xmm5,%%xmm1                   \n"
    "punpcklbw %%xmm5,%%xmm2                   \n"
    "psubw     %%xmm2,%%xmm1                   \n"
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    MEMOPREG(movq,0x00,0,2,1,xmm2)             //  movq      (%0,%2,1),%%xmm2
    MEMOPREG(movq,0x02,0,2,1,xmm3)             //  movq      0x2(%0,%2,1),%%xmm3
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    "punpcklbw %%xmm5,%%xmm2                   \n"
    "punpcklbw %%xmm5,%%xmm3                   \n"
    "psubw     %%xmm3,%%xmm2                   \n"
    "paddw     %%xmm2,%%xmm0                   \n"
    "paddw     %%xmm1,%%xmm0                   \n"
    "paddw     %%xmm1,%%xmm0                   \n"
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    "pxor      %%xmm1,%%xmm1                   \n"
    "psubw     %%xmm0,%%xmm1                   \n"
    "pmaxsw    %%xmm1,%%xmm0                   \n"
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    "packuswb  %%xmm0,%%xmm0                   \n"
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    MEMOPMEM(movq,xmm0,0x00,0,3,1)             //  movq      %%xmm0,(%0,%3,1)
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    "lea       " MEMLEA(0x8,0) ",%0            \n"
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    "sub       $0x8,%4                         \n"
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    "jg        1b                              \n"
  : "+r"(src_y0),      // %0
    "+r"(src_y1),      // %1
    "+r"(src_y2),      // %2
    "+r"(dst_sobelx),  // %3
    "+r"(width)        // %4
  :
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  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
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  );
}
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#endif  // HAS_SOBELXROW_SSE2
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#ifdef HAS_SOBELYROW_SSE2
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// SobelY as a matrix is
// -1 -2 -1
//  0  0  0
//  1  2  1
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void SobelYRow_SSE2(const uint8* src_y0, const uint8* src_y1,
                    uint8* dst_sobely, int width) {
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  asm volatile (
    "sub       %0,%1                           \n"
    "sub       %0,%2                           \n"
    "pxor      %%xmm5,%%xmm5                   \n"

    // 8 pixel loop.
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    LABELALIGN
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  "1:                                          \n"
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    "movq      " MEMACCESS(0) ",%%xmm0         \n"
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    MEMOPREG(movq,0x00,0,1,1,xmm1)             //  movq      (%0,%1,1),%%xmm1
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    "punpcklbw %%xmm5,%%xmm0                   \n"
    "punpcklbw %%xmm5,%%xmm1                   \n"
    "psubw     %%xmm1,%%xmm0                   \n"
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    "movq      " MEMACCESS2(0x1,0) ",%%xmm1    \n"
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    MEMOPREG(movq,0x01,0,1,1,xmm2)             //  movq      0x1(%0,%1,1),%%xmm2
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    "punpcklbw %%xmm5,%%xmm1                   \n"
    "punpcklbw %%xmm5,%%xmm2                   \n"
    "psubw     %%xmm2,%%xmm1                   \n"
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    "movq      " MEMACCESS2(0x2,0) ",%%xmm2    \n"
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    MEMOPREG(movq,0x02,0,1,1,xmm3)             //  movq      0x2(%0,%1,1),%%xmm3
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    "punpcklbw %%xmm5,%%xmm2                   \n"
    "punpcklbw %%xmm5,%%xmm3                   \n"
    "psubw     %%xmm3,%%xmm2                   \n"
    "paddw     %%xmm2,%%xmm0                   \n"
    "paddw     %%xmm1,%%xmm0                   \n"
    "paddw     %%xmm1,%%xmm0                   \n"
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    "pxor      %%xmm1,%%xmm1                   \n"
    "psubw     %%xmm0,%%xmm1                   \n"
    "pmaxsw    %%xmm1,%%xmm0                   \n"
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    "packuswb  %%xmm0,%%xmm0                   \n"
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    MEMOPMEM(movq,xmm0,0x00,0,2,1)             //  movq      %%xmm0,(%0,%2,1)
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    "lea       " MEMLEA(0x8,0) ",%0            \n"
4116
    "sub       $0x8,%3                         \n"
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    "jg        1b                              \n"
  : "+r"(src_y0),      // %0
    "+r"(src_y1),      // %1
    "+r"(dst_sobely),  // %2
    "+r"(width)        // %3
  :
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  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
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  );
}
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#endif  // HAS_SOBELYROW_SSE2
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#ifdef HAS_SOBELROW_SSE2
// Adds Sobel X and Sobel Y and stores Sobel into ARGB.
// A = 255
// R = Sobel
// G = Sobel
// B = Sobel
void SobelRow_SSE2(const uint8* src_sobelx, const uint8* src_sobely,
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                   uint8* dst_argb, int width) {
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  asm volatile (
    "sub       %0,%1                           \n"
    "pcmpeqb   %%xmm5,%%xmm5                   \n"
    "pslld     $0x18,%%xmm5                    \n"

    // 8 pixel loop.
4143
    LABELALIGN
4144
  "1:                                          \n"
4145 4146
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    MEMOPREG(movdqu,0x00,0,1,1,xmm1)           //  movdqu    (%0,%1,1),%%xmm1
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    "lea       " MEMLEA(0x10,0) ",%0           \n"
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    "paddusb   %%xmm1,%%xmm0                   \n"
    "movdqa    %%xmm0,%%xmm2                   \n"
    "punpcklbw %%xmm0,%%xmm2                   \n"
    "punpckhbw %%xmm0,%%xmm0                   \n"
    "movdqa    %%xmm2,%%xmm1                   \n"
    "punpcklwd %%xmm2,%%xmm1                   \n"
    "punpckhwd %%xmm2,%%xmm2                   \n"
    "por       %%xmm5,%%xmm1                   \n"
    "por       %%xmm5,%%xmm2                   \n"
    "movdqa    %%xmm0,%%xmm3                   \n"
    "punpcklwd %%xmm0,%%xmm3                   \n"
    "punpckhwd %%xmm0,%%xmm0                   \n"
    "por       %%xmm5,%%xmm3                   \n"
    "por       %%xmm5,%%xmm0                   \n"
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    "movdqu    %%xmm1," MEMACCESS(2) "         \n"
    "movdqu    %%xmm2," MEMACCESS2(0x10,2) "   \n"
    "movdqu    %%xmm3," MEMACCESS2(0x20,2) "   \n"
    "movdqu    %%xmm0," MEMACCESS2(0x30,2) "   \n"
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    "lea       " MEMLEA(0x40,2) ",%2           \n"
4167
    "sub       $0x10,%3                        \n"
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    "jg        1b                              \n"
  : "+r"(src_sobelx),  // %0
    "+r"(src_sobely),  // %1
    "+r"(dst_argb),    // %2
    "+r"(width)        // %3
  :
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  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm5"
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  );
}
#endif  // HAS_SOBELROW_SSE2

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#ifdef HAS_SOBELTOPLANEROW_SSE2
// Adds Sobel X and Sobel Y and stores Sobel into a plane.
void SobelToPlaneRow_SSE2(const uint8* src_sobelx, const uint8* src_sobely,
                          uint8* dst_y, int width) {
  asm volatile (
    "sub       %0,%1                           \n"
    "pcmpeqb   %%xmm5,%%xmm5                   \n"
    "pslld     $0x18,%%xmm5                    \n"

    // 8 pixel loop.
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    LABELALIGN
4191
  "1:                                          \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    MEMOPREG(movdqu,0x00,0,1,1,xmm1)           //  movdqu    (%0,%1,1),%%xmm1
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    "lea       " MEMLEA(0x10,0) ",%0           \n"
4195
    "paddusb   %%xmm1,%%xmm0                   \n"
4196
    "movdqu    %%xmm0," MEMACCESS(2) "         \n"
4197
    "lea       " MEMLEA(0x10,2) ",%2           \n"
4198
    "sub       $0x10,%3                        \n"
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    "jg        1b                              \n"
  : "+r"(src_sobelx),  // %0
    "+r"(src_sobely),  // %1
    "+r"(dst_y),       // %2
    "+r"(width)        // %3
  :
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  : "memory", "cc", NACL_R14
    "xmm0", "xmm1"
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  );
}
#endif  // HAS_SOBELTOPLANEROW_SSE2

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#ifdef HAS_SOBELXYROW_SSE2
// Mixes Sobel X, Sobel Y and Sobel into ARGB.
// A = 255
// R = Sobel X
// G = Sobel
// B = Sobel Y
void SobelXYRow_SSE2(const uint8* src_sobelx, const uint8* src_sobely,
                     uint8* dst_argb, int width) {
  asm volatile (
    "sub       %0,%1                           \n"
    "pcmpeqb   %%xmm5,%%xmm5                   \n"

    // 8 pixel loop.
4224
    LABELALIGN
4225
  "1:                                          \n"
4226 4227
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    MEMOPREG(movdqu,0x00,0,1,1,xmm1)           //  movdqu    (%0,%1,1),%%xmm1
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    "lea       " MEMLEA(0x10,0) ",%0           \n"
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    "movdqa    %%xmm0,%%xmm2                   \n"
    "paddusb   %%xmm1,%%xmm2                   \n"
    "movdqa    %%xmm0,%%xmm3                   \n"
    "punpcklbw %%xmm5,%%xmm3                   \n"
    "punpckhbw %%xmm5,%%xmm0                   \n"
    "movdqa    %%xmm1,%%xmm4                   \n"
    "punpcklbw %%xmm2,%%xmm4                   \n"
    "punpckhbw %%xmm2,%%xmm1                   \n"
    "movdqa    %%xmm4,%%xmm6                   \n"
    "punpcklwd %%xmm3,%%xmm6                   \n"
    "punpckhwd %%xmm3,%%xmm4                   \n"
    "movdqa    %%xmm1,%%xmm7                   \n"
    "punpcklwd %%xmm0,%%xmm7                   \n"
    "punpckhwd %%xmm0,%%xmm1                   \n"
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    "movdqu    %%xmm6," MEMACCESS(2) "         \n"
    "movdqu    %%xmm4," MEMACCESS2(0x10,2) "   \n"
    "movdqu    %%xmm7," MEMACCESS2(0x20,2) "   \n"
    "movdqu    %%xmm1," MEMACCESS2(0x30,2) "   \n"
4247
    "lea       " MEMLEA(0x40,2) ",%2           \n"
4248
    "sub       $0x10,%3                        \n"
4249 4250 4251 4252 4253 4254
    "jg        1b                              \n"
  : "+r"(src_sobelx),  // %0
    "+r"(src_sobely),  // %1
    "+r"(dst_argb),    // %2
    "+r"(width)        // %3
  :
4255 4256
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5", "xmm6", "xmm7"
4257 4258 4259 4260
  );
}
#endif  // HAS_SOBELXYROW_SSE2

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#ifdef HAS_COMPUTECUMULATIVESUMROW_SSE2
// Creates a table of cumulative sums where each value is a sum of all values
// above and to the left of the value, inclusive of the value.
void ComputeCumulativeSumRow_SSE2(const uint8* row, int32* cumsum,
4265
                                  const int32* previous_cumsum, int width) {
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  asm volatile (
    "pxor      %%xmm0,%%xmm0                   \n"
    "pxor      %%xmm1,%%xmm1                   \n"
    "sub       $0x4,%3                         \n"
    "jl        49f                             \n"
    "test      $0xf,%1                         \n"
    "jne       49f                             \n"

  // 4 pixel loop                              \n"
4275
    LABELALIGN
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  "40:                                         \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm2         \n"
    "lea       " MEMLEA(0x10,0) ",%0           \n"
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    "movdqa    %%xmm2,%%xmm4                   \n"
    "punpcklbw %%xmm1,%%xmm2                   \n"
    "movdqa    %%xmm2,%%xmm3                   \n"
    "punpcklwd %%xmm1,%%xmm2                   \n"
    "punpckhwd %%xmm1,%%xmm3                   \n"
    "punpckhbw %%xmm1,%%xmm4                   \n"
    "movdqa    %%xmm4,%%xmm5                   \n"
    "punpcklwd %%xmm1,%%xmm4                   \n"
    "punpckhwd %%xmm1,%%xmm5                   \n"
    "paddd     %%xmm2,%%xmm0                   \n"
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    "movdqu    " MEMACCESS(2) ",%%xmm2         \n"
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    "paddd     %%xmm0,%%xmm2                   \n"
    "paddd     %%xmm3,%%xmm0                   \n"
4292
    "movdqu    " MEMACCESS2(0x10,2) ",%%xmm3   \n"
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    "paddd     %%xmm0,%%xmm3                   \n"
    "paddd     %%xmm4,%%xmm0                   \n"
4295
    "movdqu    " MEMACCESS2(0x20,2) ",%%xmm4   \n"
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    "paddd     %%xmm0,%%xmm4                   \n"
    "paddd     %%xmm5,%%xmm0                   \n"
4298
    "movdqu    " MEMACCESS2(0x30,2) ",%%xmm5   \n"
4299
    "lea       " MEMLEA(0x40,2) ",%2           \n"
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    "paddd     %%xmm0,%%xmm5                   \n"
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    "movdqu    %%xmm2," MEMACCESS(1) "         \n"
    "movdqu    %%xmm3," MEMACCESS2(0x10,1) "   \n"
    "movdqu    %%xmm4," MEMACCESS2(0x20,1) "   \n"
    "movdqu    %%xmm5," MEMACCESS2(0x30,1) "   \n"
4305
    "lea       " MEMLEA(0x40,1) ",%1           \n"
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    "sub       $0x4,%3                         \n"
    "jge       40b                             \n"

  "49:                                         \n"
    "add       $0x3,%3                         \n"
    "jl        19f                             \n"

  // 1 pixel loop                              \n"
4314
    LABELALIGN
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  "10:                                         \n"
4316 4317
    "movd      " MEMACCESS(0) ",%%xmm2         \n"
    "lea       " MEMLEA(0x4,0) ",%0            \n"
4318 4319
    "punpcklbw %%xmm1,%%xmm2                   \n"
    "punpcklwd %%xmm1,%%xmm2                   \n"
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    "paddd     %%xmm2,%%xmm0                   \n"
4321 4322
    "movdqu    " MEMACCESS(2) ",%%xmm2         \n"
    "lea       " MEMLEA(0x10,2) ",%2           \n"
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    "paddd     %%xmm0,%%xmm2                   \n"
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    "movdqu    %%xmm2," MEMACCESS(1) "         \n"
    "lea       " MEMLEA(0x10,1) ",%1           \n"
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    "sub       $0x1,%3                         \n"
    "jge       10b                             \n"

  "19:                                         \n"
  : "+r"(row),  // %0
    "+r"(cumsum),  // %1
    "+r"(previous_cumsum),  // %2
    "+r"(width)  // %3
  :
  : "memory", "cc"
    , "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5"
  );
}
#endif  // HAS_COMPUTECUMULATIVESUMROW_SSE2

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#ifdef HAS_CUMULATIVESUMTOAVERAGEROW_SSE2
void CumulativeSumToAverageRow_SSE2(const int32* topleft, const int32* botleft,
                                    int width, int area, uint8* dst,
                                    int count) {
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  asm volatile (
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    "movd      %5,%%xmm5                       \n"
    "cvtdq2ps  %%xmm5,%%xmm5                   \n"
    "rcpss     %%xmm5,%%xmm4                   \n"
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    "pshufd    $0x0,%%xmm4,%%xmm4              \n"
    "sub       $0x4,%3                         \n"
    "jl        49f                             \n"
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    "cmpl      $0x80,%5                        \n"
    "ja        40f                             \n"

4355 4356 4357 4358 4359
    "pshufd    $0x0,%%xmm5,%%xmm5              \n"
    "pcmpeqb   %%xmm6,%%xmm6                   \n"
    "psrld     $0x10,%%xmm6                    \n"
    "cvtdq2ps  %%xmm6,%%xmm6                   \n"
    "addps     %%xmm6,%%xmm5                   \n"
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    "mulps     %%xmm4,%%xmm5                   \n"
    "cvtps2dq  %%xmm5,%%xmm5                   \n"
    "packssdw  %%xmm5,%%xmm5                   \n"

  // 4 pixel small loop                        \n"
4365
    LABELALIGN
4366
  "4:                                         \n"
4367 4368 4369 4370
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
    "movdqu    " MEMACCESS2(0x20,0) ",%%xmm2   \n"
    "movdqu    " MEMACCESS2(0x30,0) ",%%xmm3   \n"
4371 4372 4373 4374 4375 4376 4377 4378 4379 4380 4381 4382 4383 4384 4385 4386 4387 4388 4389 4390 4391 4392 4393 4394
    MEMOPREG(psubd,0x00,0,4,4,xmm0)            // psubd    0x00(%0,%4,4),%%xmm0
    MEMOPREG(psubd,0x10,0,4,4,xmm1)            // psubd    0x10(%0,%4,4),%%xmm1
    MEMOPREG(psubd,0x20,0,4,4,xmm2)            // psubd    0x20(%0,%4,4),%%xmm2
    MEMOPREG(psubd,0x30,0,4,4,xmm3)            // psubd    0x30(%0,%4,4),%%xmm3
    "lea       " MEMLEA(0x40,0) ",%0           \n"
    "psubd     " MEMACCESS(1) ",%%xmm0         \n"
    "psubd     " MEMACCESS2(0x10,1) ",%%xmm1   \n"
    "psubd     " MEMACCESS2(0x20,1) ",%%xmm2   \n"
    "psubd     " MEMACCESS2(0x30,1) ",%%xmm3   \n"
    MEMOPREG(paddd,0x00,1,4,4,xmm0)            // paddd    0x00(%1,%4,4),%%xmm0
    MEMOPREG(paddd,0x10,1,4,4,xmm1)            // paddd    0x10(%1,%4,4),%%xmm1
    MEMOPREG(paddd,0x20,1,4,4,xmm2)            // paddd    0x20(%1,%4,4),%%xmm2
    MEMOPREG(paddd,0x30,1,4,4,xmm3)            // paddd    0x30(%1,%4,4),%%xmm3
    "lea       " MEMLEA(0x40,1) ",%1           \n"
    "packssdw  %%xmm1,%%xmm0                   \n"
    "packssdw  %%xmm3,%%xmm2                   \n"
    "pmulhuw   %%xmm5,%%xmm0                   \n"
    "pmulhuw   %%xmm5,%%xmm2                   \n"
    "packuswb  %%xmm2,%%xmm0                   \n"
    "movdqu    %%xmm0," MEMACCESS(2) "         \n"
    "lea       " MEMLEA(0x10,2) ",%2           \n"
    "sub       $0x4,%3                         \n"
    "jge       4b                              \n"
    "jmp       49f                             \n"
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4395 4396

  // 4 pixel loop                              \n"
4397
    LABELALIGN
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  "40:                                         \n"
4399 4400 4401 4402
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
    "movdqu    " MEMACCESS2(0x20,0) ",%%xmm2   \n"
    "movdqu    " MEMACCESS2(0x30,0) ",%%xmm3   \n"
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    MEMOPREG(psubd,0x00,0,4,4,xmm0)            // psubd    0x00(%0,%4,4),%%xmm0
    MEMOPREG(psubd,0x10,0,4,4,xmm1)            // psubd    0x10(%0,%4,4),%%xmm1
    MEMOPREG(psubd,0x20,0,4,4,xmm2)            // psubd    0x20(%0,%4,4),%%xmm2
    MEMOPREG(psubd,0x30,0,4,4,xmm3)            // psubd    0x30(%0,%4,4),%%xmm3
4407 4408 4409 4410 4411
    "lea       " MEMLEA(0x40,0) ",%0           \n"
    "psubd     " MEMACCESS(1) ",%%xmm0         \n"
    "psubd     " MEMACCESS2(0x10,1) ",%%xmm1   \n"
    "psubd     " MEMACCESS2(0x20,1) ",%%xmm2   \n"
    "psubd     " MEMACCESS2(0x30,1) ",%%xmm3   \n"
4412 4413 4414 4415
    MEMOPREG(paddd,0x00,1,4,4,xmm0)            // paddd    0x00(%1,%4,4),%%xmm0
    MEMOPREG(paddd,0x10,1,4,4,xmm1)            // paddd    0x10(%1,%4,4),%%xmm1
    MEMOPREG(paddd,0x20,1,4,4,xmm2)            // paddd    0x20(%1,%4,4),%%xmm2
    MEMOPREG(paddd,0x30,1,4,4,xmm3)            // paddd    0x30(%1,%4,4),%%xmm3
4416
    "lea       " MEMLEA(0x40,1) ",%1           \n"
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    "cvtdq2ps  %%xmm0,%%xmm0                   \n"
    "cvtdq2ps  %%xmm1,%%xmm1                   \n"
    "mulps     %%xmm4,%%xmm0                   \n"
    "mulps     %%xmm4,%%xmm1                   \n"
    "cvtdq2ps  %%xmm2,%%xmm2                   \n"
    "cvtdq2ps  %%xmm3,%%xmm3                   \n"
    "mulps     %%xmm4,%%xmm2                   \n"
    "mulps     %%xmm4,%%xmm3                   \n"
    "cvtps2dq  %%xmm0,%%xmm0                   \n"
    "cvtps2dq  %%xmm1,%%xmm1                   \n"
    "cvtps2dq  %%xmm2,%%xmm2                   \n"
    "cvtps2dq  %%xmm3,%%xmm3                   \n"
    "packssdw  %%xmm1,%%xmm0                   \n"
    "packssdw  %%xmm3,%%xmm2                   \n"
    "packuswb  %%xmm2,%%xmm0                   \n"
4432 4433
    "movdqu    %%xmm0," MEMACCESS(2) "         \n"
    "lea       " MEMLEA(0x10,2) ",%2           \n"
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    "sub       $0x4,%3                         \n"
    "jge       40b                             \n"

  "49:                                         \n"
    "add       $0x3,%3                         \n"
    "jl        19f                             \n"

  // 1 pixel loop                              \n"
4442
    LABELALIGN
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4443
  "10:                                         \n"
4444
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
4445
    MEMOPREG(psubd,0x00,0,4,4,xmm0)            // psubd    0x00(%0,%4,4),%%xmm0
4446 4447
    "lea       " MEMLEA(0x10,0) ",%0           \n"
    "psubd     " MEMACCESS(1) ",%%xmm0         \n"
4448
    MEMOPREG(paddd,0x00,1,4,4,xmm0)            // paddd    0x00(%1,%4,4),%%xmm0
4449
    "lea       " MEMLEA(0x10,1) ",%1           \n"
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    "cvtdq2ps  %%xmm0,%%xmm0                   \n"
    "mulps     %%xmm4,%%xmm0                   \n"
    "cvtps2dq  %%xmm0,%%xmm0                   \n"
    "packssdw  %%xmm0,%%xmm0                   \n"
    "packuswb  %%xmm0,%%xmm0                   \n"
4455 4456
    "movd      %%xmm0," MEMACCESS(2) "         \n"
    "lea       " MEMLEA(0x4,2) ",%2            \n"
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    "sub       $0x1,%3                         \n"
    "jge       10b                             \n"
  "19:                                         \n"
  : "+r"(topleft),  // %0
    "+r"(botleft),  // %1
    "+r"(dst),      // %2
    "+rm"(count)    // %3
4464
  : "r"((intptr_t)(width)),  // %4
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    "rm"(area)     // %5
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  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5", "xmm6"
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  );
}
4470
#endif  // HAS_CUMULATIVESUMTOAVERAGEROW_SSE2
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4471

4472 4473
#ifdef HAS_ARGBAFFINEROW_SSE2
// Copy ARGB pixels from source image with slope to a row of destination.
4474
LIBYUV_API
4475
void ARGBAffineRow_SSE2(const uint8* src_argb, int src_argb_stride,
4476
                        uint8* dst_argb, const float* src_dudv, int width) {
4477
  intptr_t src_argb_stride_temp = src_argb_stride;
4478
  intptr_t temp = 0;
4479
  asm volatile (
4480 4481
    "movq      " MEMACCESS(3) ",%%xmm2         \n"
    "movq      " MEMACCESS2(0x08,3) ",%%xmm7   \n"
4482 4483
    "shl       $0x10,%1                        \n"
    "add       $0x4,%1                         \n"
4484 4485 4486 4487 4488 4489
    "movd      %1,%%xmm5                       \n"
    "sub       $0x4,%4                         \n"
    "jl        49f                             \n"

    "pshufd    $0x44,%%xmm7,%%xmm7             \n"
    "pshufd    $0x0,%%xmm5,%%xmm5              \n"
4490
    "movdqa    %%xmm2,%%xmm0                   \n"
4491
    "addps     %%xmm7,%%xmm0                   \n"
4492
    "movlhps   %%xmm0,%%xmm2                   \n"
4493 4494 4495 4496 4497
    "movdqa    %%xmm7,%%xmm4                   \n"
    "addps     %%xmm4,%%xmm4                   \n"
    "movdqa    %%xmm2,%%xmm3                   \n"
    "addps     %%xmm4,%%xmm3                   \n"
    "addps     %%xmm4,%%xmm4                   \n"
4498

4499
  // 4 pixel loop                              \n"
4500
    LABELALIGN
4501
  "40:                                         \n"
4502 4503 4504 4505 4506
    "cvttps2dq %%xmm2,%%xmm0                   \n"  // x, y float to int first 2
    "cvttps2dq %%xmm3,%%xmm1                   \n"  // x, y float to int next 2
    "packssdw  %%xmm1,%%xmm0                   \n"  // x, y as 8 shorts
    "pmaddwd   %%xmm5,%%xmm0                   \n"  // off = x * 4 + y * stride
    "movd      %%xmm0,%k1                      \n"
4507
    "pshufd    $0x39,%%xmm0,%%xmm0             \n"
4508
    "movd      %%xmm0,%k5                      \n"
4509
    "pshufd    $0x39,%%xmm0,%%xmm0             \n"
4510 4511
    MEMOPREG(movd,0x00,0,1,1,xmm1)             //  movd      (%0,%1,1),%%xmm1
    MEMOPREG(movd,0x00,0,5,1,xmm6)             //  movd      (%0,%5,1),%%xmm6
4512 4513
    "punpckldq %%xmm6,%%xmm1                   \n"
    "addps     %%xmm4,%%xmm2                   \n"
4514
    "movq      %%xmm1," MEMACCESS(2) "         \n"
4515
    "movd      %%xmm0,%k1                      \n"
4516
    "pshufd    $0x39,%%xmm0,%%xmm0             \n"
4517 4518 4519
    "movd      %%xmm0,%k5                      \n"
    MEMOPREG(movd,0x00,0,1,1,xmm0)             //  movd      (%0,%1,1),%%xmm0
    MEMOPREG(movd,0x00,0,5,1,xmm6)             //  movd      (%0,%5,1),%%xmm6
4520 4521
    "punpckldq %%xmm6,%%xmm0                   \n"
    "addps     %%xmm4,%%xmm3                   \n"
4522 4523
    "movq      %%xmm0," MEMACCESS2(0x08,2) "   \n"
    "lea       " MEMLEA(0x10,2) ",%2           \n"
4524
    "sub       $0x4,%4                         \n"
4525 4526 4527 4528
    "jge       40b                             \n"

  "49:                                         \n"
    "add       $0x3,%4                         \n"
4529 4530 4531
    "jl        19f                             \n"

  // 1 pixel loop                              \n"
4532
    LABELALIGN
4533
  "10:                                         \n"
4534 4535 4536 4537
    "cvttps2dq %%xmm2,%%xmm0                   \n"
    "packssdw  %%xmm0,%%xmm0                   \n"
    "pmaddwd   %%xmm5,%%xmm0                   \n"
    "addps     %%xmm7,%%xmm2                   \n"
4538 4539
    "movd      %%xmm0,%k1                      \n"
    MEMOPREG(movd,0x00,0,1,1,xmm0)             //  movd      (%0,%1,1),%%xmm0
4540 4541
    "movd      %%xmm0," MEMACCESS(2) "         \n"
    "lea       " MEMLEA(0x04,2) ",%2           \n"
4542
    "sub       $0x1,%4                         \n"
4543 4544 4545 4546 4547
    "jge       10b                             \n"
  "19:                                         \n"
  : "+r"(src_argb),  // %0
    "+r"(src_argb_stride_temp),  // %1
    "+r"(dst_argb),  // %2
4548
    "+r"(src_dudv),  // %3
4549 4550
    "+rm"(width),    // %4
    "+r"(temp)   // %5
4551
  :
4552 4553
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5", "xmm6", "xmm7"
4554 4555 4556 4557
  );
}
#endif  // HAS_ARGBAFFINEROW_SSE2

4558
#ifdef HAS_INTERPOLATEROW_SSSE3
4559 4560 4561 4562
// Bilinear filter 16x2 -> 16x1
void InterpolateRow_SSSE3(uint8* dst_ptr, const uint8* src_ptr,
                          ptrdiff_t src_stride, int dst_width,
                          int source_y_fraction) {
4563 4564 4565 4566
  asm volatile (
    "sub       %1,%0                           \n"
    "shr       %3                              \n"
    "cmp       $0x0,%3                         \n"
4567 4568 4569
    "je        100f                            \n"
    "cmp       $0x20,%3                        \n"
    "je        75f                             \n"
4570
    "cmp       $0x40,%3                        \n"
4571 4572 4573 4574
    "je        50f                             \n"
    "cmp       $0x60,%3                        \n"
    "je        25f                             \n"

4575 4576 4577 4578 4579 4580 4581
    "movd      %3,%%xmm0                       \n"
    "neg       %3                              \n"
    "add       $0x80,%3                        \n"
    "movd      %3,%%xmm5                       \n"
    "punpcklbw %%xmm0,%%xmm5                   \n"
    "punpcklwd %%xmm5,%%xmm5                   \n"
    "pshufd    $0x0,%%xmm5,%%xmm5              \n"
4582 4583

    // General purpose row blend.
4584
    LABELALIGN
4585
  "1:                                          \n"
4586 4587
    "movdqu    " MEMACCESS(1) ",%%xmm0         \n"
    MEMOPREG(movdqu,0x00,1,4,1,xmm2)
4588 4589 4590 4591 4592 4593 4594 4595
    "movdqa    %%xmm0,%%xmm1                   \n"
    "punpcklbw %%xmm2,%%xmm0                   \n"
    "punpckhbw %%xmm2,%%xmm1                   \n"
    "pmaddubsw %%xmm5,%%xmm0                   \n"
    "pmaddubsw %%xmm5,%%xmm1                   \n"
    "psrlw     $0x7,%%xmm0                     \n"
    "psrlw     $0x7,%%xmm1                     \n"
    "packuswb  %%xmm1,%%xmm0                   \n"
4596
    MEMOPMEM(movdqu,xmm0,0x00,1,0,1)
4597
    "lea       " MEMLEA(0x10,1) ",%1           \n"
4598
    "sub       $0x10,%2                        \n"
4599
    "jg        1b                              \n"
4600 4601 4602
    "jmp       99f                             \n"

    // Blend 25 / 75.
4603
    LABELALIGN
4604
  "25:                                         \n"
4605 4606
    "movdqu    " MEMACCESS(1) ",%%xmm0         \n"
    MEMOPREG(movdqu,0x00,1,4,1,xmm1)
4607 4608
    "pavgb     %%xmm1,%%xmm0                   \n"
    "pavgb     %%xmm1,%%xmm0                   \n"
4609
    MEMOPMEM(movdqu,xmm0,0x00,1,0,1)
4610
    "lea       " MEMLEA(0x10,1) ",%1           \n"
4611
    "sub       $0x10,%2                        \n"
4612 4613 4614 4615
    "jg        25b                             \n"
    "jmp       99f                             \n"

    // Blend 50 / 50.
4616
    LABELALIGN
4617
  "50:                                         \n"
4618 4619
    "movdqu    " MEMACCESS(1) ",%%xmm0         \n"
    MEMOPREG(movdqu,0x00,1,4,1,xmm1)
4620
    "pavgb     %%xmm1,%%xmm0                   \n"
4621
    MEMOPMEM(movdqu,xmm0,0x00,1,0,1)
4622
    "lea       " MEMLEA(0x10,1) ",%1           \n"
4623
    "sub       $0x10,%2                        \n"
4624 4625 4626 4627
    "jg        50b                             \n"
    "jmp       99f                             \n"

    // Blend 75 / 25.
4628
    LABELALIGN
4629
  "75:                                         \n"
4630 4631
    "movdqu    " MEMACCESS(1) ",%%xmm1         \n"
    MEMOPREG(movdqu,0x00,1,4,1,xmm0)
4632 4633
    "pavgb     %%xmm1,%%xmm0                   \n"
    "pavgb     %%xmm1,%%xmm0                   \n"
4634
    MEMOPMEM(movdqu,xmm0,0x00,1,0,1)
4635
    "lea       " MEMLEA(0x10,1) ",%1           \n"
4636
    "sub       $0x10,%2                        \n"
4637 4638 4639 4640
    "jg        75b                             \n"
    "jmp       99f                             \n"

    // Blend 100 / 0 - Copy row unchanged.
4641
    LABELALIGN
4642
  "100:                                        \n"
4643 4644
    "movdqu    " MEMACCESS(1) ",%%xmm0         \n"
    MEMOPMEM(movdqu,xmm0,0x00,1,0,1)
4645
    "lea       " MEMLEA(0x10,1) ",%1           \n"
4646
    "sub       $0x10,%2                        \n"
4647 4648 4649
    "jg        100b                            \n"

  "99:                                         \n"
4650 4651
  : "+r"(dst_ptr),    // %0
    "+r"(src_ptr),    // %1
4652
    "+r"(dst_width),  // %2
4653
    "+r"(source_y_fraction)  // %3
4654
  : "r"((intptr_t)(src_stride))  // %4
4655 4656
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm5"
4657 4658
  );
}
4659
#endif  // HAS_INTERPOLATEROW_SSSE3
4660

4661 4662 4663 4664 4665 4666 4667 4668 4669 4670 4671 4672 4673 4674 4675 4676 4677 4678 4679 4680 4681 4682 4683 4684 4685 4686 4687 4688 4689 4690 4691 4692 4693 4694 4695 4696 4697 4698 4699 4700 4701 4702 4703 4704 4705 4706 4707 4708 4709 4710 4711 4712 4713 4714 4715 4716 4717 4718 4719 4720 4721 4722 4723 4724 4725 4726 4727 4728 4729 4730 4731 4732 4733 4734 4735 4736 4737 4738 4739 4740 4741 4742 4743 4744 4745 4746 4747 4748 4749 4750 4751 4752 4753 4754 4755
#ifdef HAS_INTERPOLATEROW_AVX2
// Bilinear filter 32x2 -> 32x1
void InterpolateRow_AVX2(uint8* dst_ptr, const uint8* src_ptr,
                         ptrdiff_t src_stride, int dst_width,
                         int source_y_fraction) {
  asm volatile (
    "shr       %3                              \n"
    "cmp       $0x0,%3                         \n"
    "je        100f                            \n"
    "sub       %1,%0                           \n"
    "cmp       $0x20,%3                        \n"
    "je        75f                             \n"
    "cmp       $0x40,%3                        \n"
    "je        50f                             \n"
    "cmp       $0x60,%3                        \n"
    "je        25f                             \n"

    "vmovd      %3,%%xmm0                      \n"
    "neg        %3                             \n"
    "add        $0x80,%3                       \n"
    "vmovd      %3,%%xmm5                      \n"
    "vpunpcklbw %%xmm0,%%xmm5,%%xmm5           \n"
    "vpunpcklwd %%xmm5,%%xmm5,%%xmm5           \n"
    "vpxor      %%ymm0,%%ymm0,%%ymm0           \n"
    "vpermd     %%ymm5,%%ymm0,%%ymm5           \n"

    // General purpose row blend.
    LABELALIGN
  "1:                                          \n"
    "vmovdqu    " MEMACCESS(1) ",%%ymm0        \n"
    MEMOPREG(vmovdqu,0x00,1,4,1,ymm2)
    "vpunpckhbw %%ymm2,%%ymm0,%%ymm1           \n"
    "vpunpcklbw %%ymm2,%%ymm0,%%ymm0           \n"
    "vpmaddubsw %%ymm5,%%ymm0,%%ymm0           \n"
    "vpmaddubsw %%ymm5,%%ymm1,%%ymm1           \n"
    "vpsrlw     $0x7,%%ymm0,%%ymm0             \n"
    "vpsrlw     $0x7,%%ymm1,%%ymm1             \n"
    "vpackuswb  %%ymm1,%%ymm0,%%ymm0           \n"
    MEMOPMEM(vmovdqu,ymm0,0x00,1,0,1)
    "lea       " MEMLEA(0x20,1) ",%1           \n"
    "sub       $0x20,%2                        \n"
    "jg        1b                              \n"
    "jmp       99f                             \n"

    // Blend 25 / 75.
    LABELALIGN
  "25:                                         \n"
    "vmovdqu    " MEMACCESS(1) ",%%ymm0        \n"
    MEMOPREG(vmovdqu,0x00,1,4,1,ymm1)
    "vpavgb     %%ymm1,%%ymm0,%%ymm0           \n"
    "vpavgb     %%ymm1,%%ymm0,%%ymm0           \n"
    MEMOPMEM(vmovdqu,ymm0,0x00,1,0,1)
    "lea       " MEMLEA(0x20,1) ",%1           \n"
    "sub       $0x20,%2                        \n"
    "jg        25b                             \n"
    "jmp       99f                             \n"

    // Blend 50 / 50.
    LABELALIGN
  "50:                                         \n"
    "vmovdqu    " MEMACCESS(1) ",%%ymm0        \n"
    VMEMOPREG(vpavgb,0x00,1,4,1,ymm0,ymm0)     // vpavgb (%1,%4,1),%%ymm0,%%ymm0
    MEMOPMEM(vmovdqu,ymm0,0x00,1,0,1)
    "lea       " MEMLEA(0x20,1) ",%1           \n"
    "sub       $0x20,%2                        \n"
    "jg        50b                             \n"
    "jmp       99f                             \n"

    // Blend 75 / 25.
    LABELALIGN
  "75:                                         \n"
    "vmovdqu    " MEMACCESS(1) ",%%ymm1        \n"
    MEMOPREG(vmovdqu,0x00,1,4,1,ymm0)
    "vpavgb     %%ymm1,%%ymm0,%%ymm0           \n"
    "vpavgb     %%ymm1,%%ymm0,%%ymm0           \n"
    MEMOPMEM(vmovdqu,ymm0,0x00,1,0,1)
    "lea       " MEMLEA(0x20,1) ",%1           \n"
    "sub       $0x20,%2                        \n"
    "jg        75b                             \n"
    "jmp       99f                             \n"

    // Blend 100 / 0 - Copy row unchanged.
    LABELALIGN
  "100:                                        \n"
    "rep movsb " MEMMOVESTRING(1,0) "          \n"
    "jmp       999f                            \n"

  "99:                                         \n"
    "vzeroupper                                \n"
  "999:                                        \n"
  : "+D"(dst_ptr),    // %0
    "+S"(src_ptr),    // %1
    "+c"(dst_width),  // %2
    "+r"(source_y_fraction)  // %3
  : "r"((intptr_t)(src_stride))  // %4
4756 4757
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm5"
4758 4759 4760 4761
  );
}
#endif  // HAS_INTERPOLATEROW_AVX2

4762
#ifdef HAS_INTERPOLATEROW_SSE2
4763 4764 4765 4766
// Bilinear filter 16x2 -> 16x1
void InterpolateRow_SSE2(uint8* dst_ptr, const uint8* src_ptr,
                         ptrdiff_t src_stride, int dst_width,
                         int source_y_fraction) {
4767 4768 4769 4770 4771 4772 4773 4774 4775 4776 4777 4778 4779 4780 4781 4782 4783 4784 4785 4786 4787 4788
  asm volatile (
    "sub       %1,%0                           \n"
    "shr       %3                              \n"
    "cmp       $0x0,%3                         \n"
    "je        100f                            \n"
    "cmp       $0x20,%3                        \n"
    "je        75f                             \n"
    "cmp       $0x40,%3                        \n"
    "je        50f                             \n"
    "cmp       $0x60,%3                        \n"
    "je        25f                             \n"

    "movd      %3,%%xmm0                       \n"
    "neg       %3                              \n"
    "add       $0x80,%3                        \n"
    "movd      %3,%%xmm5                       \n"
    "punpcklbw %%xmm0,%%xmm5                   \n"
    "punpcklwd %%xmm5,%%xmm5                   \n"
    "pshufd    $0x0,%%xmm5,%%xmm5              \n"
    "pxor      %%xmm4,%%xmm4                   \n"

    // General purpose row blend.
4789
    LABELALIGN
4790
  "1:                                          \n"
4791 4792
    "movdqu    " MEMACCESS(1) ",%%xmm0         \n"
    MEMOPREG(movdqu,0x00,1,4,1,xmm2)           //  movdqu    (%1,%4,1),%%xmm2
4793 4794 4795 4796 4797 4798 4799 4800 4801 4802 4803 4804 4805 4806 4807
    "movdqa    %%xmm0,%%xmm1                   \n"
    "movdqa    %%xmm2,%%xmm3                   \n"
    "punpcklbw %%xmm4,%%xmm2                   \n"
    "punpckhbw %%xmm4,%%xmm3                   \n"
    "punpcklbw %%xmm4,%%xmm0                   \n"
    "punpckhbw %%xmm4,%%xmm1                   \n"
    "psubw     %%xmm0,%%xmm2                   \n"
    "psubw     %%xmm1,%%xmm3                   \n"
    "paddw     %%xmm2,%%xmm2                   \n"
    "paddw     %%xmm3,%%xmm3                   \n"
    "pmulhw    %%xmm5,%%xmm2                   \n"
    "pmulhw    %%xmm5,%%xmm3                   \n"
    "paddw     %%xmm2,%%xmm0                   \n"
    "paddw     %%xmm3,%%xmm1                   \n"
    "packuswb  %%xmm1,%%xmm0                   \n"
4808
    MEMOPMEM(movdqu,xmm0,0x00,1,0,1)           //  movdqu    %%xmm0,(%1,%0,1)
4809
    "lea       " MEMLEA(0x10,1) ",%1           \n"
4810
    "sub       $0x10,%2                        \n"
4811 4812 4813 4814
    "jg        1b                              \n"
    "jmp       99f                             \n"

    // Blend 25 / 75.
4815
    LABELALIGN
4816
  "25:                                         \n"
4817 4818
    "movdqu    " MEMACCESS(1) ",%%xmm0         \n"
    MEMOPREG(movdqu,0x00,1,4,1,xmm1)           //  movdqu    (%1,%4,1),%%xmm1
4819 4820
    "pavgb     %%xmm1,%%xmm0                   \n"
    "pavgb     %%xmm1,%%xmm0                   \n"
4821
    MEMOPMEM(movdqu,xmm0,0x00,1,0,1)           //  movdqu    %%xmm0,(%1,%0,1)
4822
    "lea       " MEMLEA(0x10,1) ",%1           \n"
4823
    "sub       $0x10,%2                        \n"
4824 4825 4826 4827
    "jg        25b                             \n"
    "jmp       99f                             \n"

    // Blend 50 / 50.
4828
    LABELALIGN
4829
  "50:                                         \n"
4830 4831
    "movdqu    " MEMACCESS(1) ",%%xmm0         \n"
    MEMOPREG(movdqu,0x00,1,4,1,xmm1)           //  movdqu    (%1,%4,1),%%xmm1
4832
    "pavgb     %%xmm1,%%xmm0                   \n"
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    MEMOPMEM(movdqu,xmm0,0x00,1,0,1)           //  movdqu    %%xmm0,(%1,%0,1)
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    "lea       " MEMLEA(0x10,1) ",%1           \n"
4835
    "sub       $0x10,%2                        \n"
4836 4837 4838 4839
    "jg        50b                             \n"
    "jmp       99f                             \n"

    // Blend 75 / 25.
4840
    LABELALIGN
4841
  "75:                                         \n"
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    "movdqu    " MEMACCESS(1) ",%%xmm1         \n"
    MEMOPREG(movdqu,0x00,1,4,1,xmm0)           //  movdqu    (%1,%4,1),%%xmm0
4844 4845
    "pavgb     %%xmm1,%%xmm0                   \n"
    "pavgb     %%xmm1,%%xmm0                   \n"
4846
    MEMOPMEM(movdqu,xmm0,0x00,1,0,1)           //  movdqu    %%xmm0,(%1,%0,1)
4847
    "lea       " MEMLEA(0x10,1) ",%1           \n"
4848
    "sub       $0x10,%2                        \n"
4849 4850 4851 4852
    "jg        75b                             \n"
    "jmp       99f                             \n"

    // Blend 100 / 0 - Copy row unchanged.
4853
    LABELALIGN
4854
  "100:                                        \n"
4855 4856
    "movdqu    " MEMACCESS(1) ",%%xmm0         \n"
    MEMOPMEM(movdqu,xmm0,0x00,1,0,1)           //  movdqu    %%xmm0,(%1,%0,1)
4857
    "lea       " MEMLEA(0x10,1) ",%1           \n"
4858
    "sub       $0x10,%2                        \n"
4859 4860 4861
    "jg        100b                            \n"

  "99:                                         \n"
4862 4863
  : "+r"(dst_ptr),    // %0
    "+r"(src_ptr),    // %1
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    "+r"(dst_width),  // %2
    "+r"(source_y_fraction)  // %3
4866
  : "r"((intptr_t)(src_stride))  // %4
4867 4868
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5"
4869 4870
  );
}
4871
#endif  // HAS_INTERPOLATEROW_SSE2
4872

4873
#ifdef HAS_ARGBSHUFFLEROW_SSSE3
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// For BGRAToARGB, ABGRToARGB, RGBAToARGB, and ARGBToRGBA.
void ARGBShuffleRow_SSSE3(const uint8* src_argb, uint8* dst_argb,
                          const uint8* shuffler, int pix) {
  asm volatile (
4878
    "movdqu    " MEMACCESS(3) ",%%xmm5         \n"
4879
    LABELALIGN
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  "1:                                          \n"
4881 4882
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "movdqu    " MEMACCESS2(0x10,0) ",%%xmm1   \n"
4883
    "lea       " MEMLEA(0x20,0) ",%0           \n"
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    "pshufb    %%xmm5,%%xmm0                   \n"
    "pshufb    %%xmm5,%%xmm1                   \n"
4886
    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
4887 4888
    "movdqu    %%xmm1," MEMACCESS2(0x10,1) "   \n"
    "lea       " MEMLEA(0x20,1) ",%1           \n"
4889
    "sub       $0x8,%2                         \n"
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    "jg        1b                              \n"
  : "+r"(src_argb),  // %0
    "+r"(dst_argb),  // %1
    "+r"(pix)        // %2
  : "r"(shuffler)    // %3
  : "memory", "cc"
    , "xmm0", "xmm1", "xmm5"
  );
}
4899
#endif  // HAS_ARGBSHUFFLEROW_SSSE3
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#ifdef HAS_ARGBSHUFFLEROW_AVX2
// For BGRAToARGB, ABGRToARGB, RGBAToARGB, and ARGBToRGBA.
void ARGBShuffleRow_AVX2(const uint8* src_argb, uint8* dst_argb,
                         const uint8* shuffler, int pix) {
  asm volatile (
4906
    "vbroadcastf128 " MEMACCESS(3) ",%%ymm5    \n"
4907
    LABELALIGN
4908
  "1:                                          \n"
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    "vmovdqu   " MEMACCESS(0) ",%%ymm0         \n"
    "vmovdqu   " MEMACCESS2(0x20,0) ",%%ymm1   \n"
    "lea       " MEMLEA(0x40,0) ",%0           \n"
4912 4913
    "vpshufb   %%ymm5,%%ymm0,%%ymm0            \n"
    "vpshufb   %%ymm5,%%ymm1,%%ymm1            \n"
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    "vmovdqu   %%ymm0," MEMACCESS(1) "         \n"
    "vmovdqu   %%ymm1," MEMACCESS2(0x20,1) "   \n"
    "lea       " MEMLEA(0x40,1) ",%1           \n"
4917
    "sub       $0x10,%2                        \n"
4918
    "jg        1b                              \n"
4919
    "vzeroupper                                \n"
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  : "+r"(src_argb),  // %0
    "+r"(dst_argb),  // %1
    "+r"(pix)        // %2
  : "r"(shuffler)    // %3
  : "memory", "cc"
    , "xmm0", "xmm1", "xmm5"
  );
}
#endif  // HAS_ARGBSHUFFLEROW_AVX2

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#ifdef HAS_ARGBSHUFFLEROW_SSE2
// For BGRAToARGB, ABGRToARGB, RGBAToARGB, and ARGBToRGBA.
void ARGBShuffleRow_SSE2(const uint8* src_argb, uint8* dst_argb,
                         const uint8* shuffler, int pix) {
  uintptr_t pixel_temp = 0u;
  asm volatile (
    "pxor      %%xmm5,%%xmm5                   \n"
4937
    "mov       " MEMACCESS(4) ",%k2            \n"
4938 4939 4940 4941 4942 4943 4944 4945 4946
    "cmp       $0x3000102,%k2                  \n"
    "je        3012f                           \n"
    "cmp       $0x10203,%k2                    \n"
    "je        123f                            \n"
    "cmp       $0x30201,%k2                    \n"
    "je        321f                            \n"
    "cmp       $0x2010003,%k2                  \n"
    "je        2103f                           \n"

4947
    LABELALIGN
4948
  "1:                                          \n"
4949
    "movzb     " MEMACCESS(4) ",%2             \n"
4950
    MEMOPARG(movzb,0x00,0,2,1,2) "             \n"  //  movzb     (%0,%2,1),%2
4951 4952
    "mov       %b2," MEMACCESS(1) "            \n"
    "movzb     " MEMACCESS2(0x1,4) ",%2        \n"
4953
    MEMOPARG(movzb,0x00,0,2,1,2) "             \n"  //  movzb     (%0,%2,1),%2
4954 4955
    "mov       %b2," MEMACCESS2(0x1,1) "       \n"
    "movzb     " MEMACCESS2(0x2,4) ",%2        \n"
4956
    MEMOPARG(movzb,0x00,0,2,1,2) "             \n"  //  movzb     (%0,%2,1),%2
4957 4958
    "mov       %b2," MEMACCESS2(0x2,1) "       \n"
    "movzb     " MEMACCESS2(0x3,4) ",%2        \n"
4959
    MEMOPARG(movzb,0x00,0,2,1,2) "             \n"  //  movzb     (%0,%2,1),%2
4960 4961 4962
    "mov       %b2," MEMACCESS2(0x3,1) "       \n"
    "lea       " MEMLEA(0x4,0) ",%0            \n"
    "lea       " MEMLEA(0x4,1) ",%1            \n"
4963 4964 4965 4966
    "sub       $0x1,%3                         \n"
    "jg        1b                              \n"
    "jmp       99f                             \n"

4967
    LABELALIGN
4968
  "123:                                        \n"
4969 4970
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "lea       " MEMLEA(0x10,0) ",%0           \n"
4971 4972 4973 4974 4975 4976 4977 4978
    "movdqa    %%xmm0,%%xmm1                   \n"
    "punpcklbw %%xmm5,%%xmm0                   \n"
    "punpckhbw %%xmm5,%%xmm1                   \n"
    "pshufhw   $0x1b,%%xmm0,%%xmm0             \n"
    "pshuflw   $0x1b,%%xmm0,%%xmm0             \n"
    "pshufhw   $0x1b,%%xmm1,%%xmm1             \n"
    "pshuflw   $0x1b,%%xmm1,%%xmm1             \n"
    "packuswb  %%xmm1,%%xmm0                   \n"
4979 4980
    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
    "lea       " MEMLEA(0x10,1) ",%1           \n"
4981
    "sub       $0x4,%3                         \n"
4982 4983 4984
    "jg        123b                            \n"
    "jmp       99f                             \n"

4985
    LABELALIGN
4986
  "321:                                        \n"
4987 4988
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "lea       " MEMLEA(0x10,0) ",%0           \n"
4989 4990 4991 4992 4993 4994 4995 4996
    "movdqa    %%xmm0,%%xmm1                   \n"
    "punpcklbw %%xmm5,%%xmm0                   \n"
    "punpckhbw %%xmm5,%%xmm1                   \n"
    "pshufhw   $0x39,%%xmm0,%%xmm0             \n"
    "pshuflw   $0x39,%%xmm0,%%xmm0             \n"
    "pshufhw   $0x39,%%xmm1,%%xmm1             \n"
    "pshuflw   $0x39,%%xmm1,%%xmm1             \n"
    "packuswb  %%xmm1,%%xmm0                   \n"
4997 4998
    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
    "lea       " MEMLEA(0x10,1) ",%1           \n"
4999
    "sub       $0x4,%3                         \n"
5000 5001 5002
    "jg        321b                            \n"
    "jmp       99f                             \n"

5003
    LABELALIGN
5004
  "2103:                                       \n"
5005 5006
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "lea       " MEMLEA(0x10,0) ",%0           \n"
5007 5008 5009 5010 5011 5012 5013 5014
    "movdqa    %%xmm0,%%xmm1                   \n"
    "punpcklbw %%xmm5,%%xmm0                   \n"
    "punpckhbw %%xmm5,%%xmm1                   \n"
    "pshufhw   $0x93,%%xmm0,%%xmm0             \n"
    "pshuflw   $0x93,%%xmm0,%%xmm0             \n"
    "pshufhw   $0x93,%%xmm1,%%xmm1             \n"
    "pshuflw   $0x93,%%xmm1,%%xmm1             \n"
    "packuswb  %%xmm1,%%xmm0                   \n"
5015 5016
    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
    "lea       " MEMLEA(0x10,1) ",%1           \n"
5017
    "sub       $0x4,%3                         \n"
5018 5019 5020
    "jg        2103b                           \n"
    "jmp       99f                             \n"

5021
    LABELALIGN
5022
  "3012:                                       \n"
5023 5024
    "movdqu    " MEMACCESS(0) ",%%xmm0         \n"
    "lea       " MEMLEA(0x10,0) ",%0           \n"
5025 5026 5027 5028 5029 5030 5031 5032
    "movdqa    %%xmm0,%%xmm1                   \n"
    "punpcklbw %%xmm5,%%xmm0                   \n"
    "punpckhbw %%xmm5,%%xmm1                   \n"
    "pshufhw   $0xc6,%%xmm0,%%xmm0             \n"
    "pshuflw   $0xc6,%%xmm0,%%xmm0             \n"
    "pshufhw   $0xc6,%%xmm1,%%xmm1             \n"
    "pshuflw   $0xc6,%%xmm1,%%xmm1             \n"
    "packuswb  %%xmm1,%%xmm0                   \n"
5033 5034
    "movdqu    %%xmm0," MEMACCESS(1) "         \n"
    "lea       " MEMLEA(0x10,1) ",%1           \n"
5035
    "sub       $0x4,%3                         \n"
5036 5037 5038 5039 5040 5041 5042 5043
    "jg        3012b                           \n"

  "99:                                         \n"
  : "+r"(src_argb),    // %0
    "+r"(dst_argb),    // %1
    "+d"(pixel_temp),  // %2
    "+r"(pix)         // %3
  : "r"(shuffler)      // %4
5044 5045
  : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm5"
5046 5047 5048 5049
  );
}
#endif  // HAS_ARGBSHUFFLEROW_SSE2

5050
#ifdef HAS_I422TOYUY2ROW_SSE2
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void I422ToYUY2Row_SSE2(const uint8* src_y,
                        const uint8* src_u,
                        const uint8* src_v,
                        uint8* dst_frame, int width) {
 asm volatile (
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    "sub       %1,%2                             \n"
5057
    LABELALIGN
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  "1:                                            \n"
5059 5060 5061
    "movq      " MEMACCESS(1) ",%%xmm2           \n"
    MEMOPREG(movq,0x00,1,2,1,xmm3)               //  movq    (%1,%2,1),%%xmm3
    "lea       " MEMLEA(0x8,1) ",%1              \n"
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    "punpcklbw %%xmm3,%%xmm2                     \n"
5063 5064
    "movdqu    " MEMACCESS(0) ",%%xmm0           \n"
    "lea       " MEMLEA(0x10,0) ",%0             \n"
5065
    "movdqa    %%xmm0,%%xmm1                     \n"
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    "punpcklbw %%xmm2,%%xmm0                     \n"
    "punpckhbw %%xmm2,%%xmm1                     \n"
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    "movdqu    %%xmm0," MEMACCESS(3) "           \n"
    "movdqu    %%xmm1," MEMACCESS2(0x10,3) "     \n"
    "lea       " MEMLEA(0x20,3) ",%3             \n"
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    "sub       $0x10,%4                          \n"
    "jg         1b                               \n"
    : "+r"(src_y),  // %0
      "+r"(src_u),  // %1
      "+r"(src_v),  // %2
      "+r"(dst_frame),  // %3
      "+rm"(width)  // %4
    :
5079 5080
    : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3"
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  );
}
5083
#endif  // HAS_I422TOYUY2ROW_SSE2
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5084

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#ifdef HAS_I422TOUYVYROW_SSE2
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void I422ToUYVYRow_SSE2(const uint8* src_y,
                        const uint8* src_u,
                        const uint8* src_v,
                        uint8* dst_frame, int width) {
 asm volatile (
    "sub        %1,%2                            \n"
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    LABELALIGN
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  "1:                                            \n"
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    "movq      " MEMACCESS(1) ",%%xmm2           \n"
    MEMOPREG(movq,0x00,1,2,1,xmm3)               //  movq    (%1,%2,1),%%xmm3
    "lea       " MEMLEA(0x8,1) ",%1              \n"
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    "punpcklbw %%xmm3,%%xmm2                     \n"
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    "movdqu    " MEMACCESS(0) ",%%xmm0           \n"
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    "movdqa    %%xmm2,%%xmm1                     \n"
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    "lea       " MEMLEA(0x10,0) ",%0             \n"
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    "punpcklbw %%xmm0,%%xmm1                     \n"
    "punpckhbw %%xmm0,%%xmm2                     \n"
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    "movdqu    %%xmm1," MEMACCESS(3) "           \n"
    "movdqu    %%xmm2," MEMACCESS2(0x10,3) "     \n"
    "lea       " MEMLEA(0x20,3) ",%3             \n"
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    "sub       $0x10,%4                          \n"
    "jg         1b                               \n"
    : "+r"(src_y),  // %0
      "+r"(src_u),  // %1
      "+r"(src_v),  // %2
      "+r"(dst_frame),  // %3
      "+rm"(width)  // %4
    :
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    : "memory", "cc", NACL_R14
    "xmm0", "xmm1", "xmm2", "xmm3"
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  );
}
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#endif  // HAS_I422TOUYVYROW_SSE2
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#ifdef HAS_ARGBPOLYNOMIALROW_SSE2
void ARGBPolynomialRow_SSE2(const uint8* src_argb,
                            uint8* dst_argb, const float* poly,
                            int width) {
  asm volatile (
    "pxor      %%xmm3,%%xmm3                   \n"

    // 2 pixel loop.
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    LABELALIGN
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  "1:                                          \n"
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    "movq      " MEMACCESS(0) ",%%xmm0         \n"
    "lea       " MEMLEA(0x8,0) ",%0            \n"
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    "punpcklbw %%xmm3,%%xmm0                   \n"
    "movdqa    %%xmm0,%%xmm4                   \n"
    "punpcklwd %%xmm3,%%xmm0                   \n"
    "punpckhwd %%xmm3,%%xmm4                   \n"
    "cvtdq2ps  %%xmm0,%%xmm0                   \n"
    "cvtdq2ps  %%xmm4,%%xmm4                   \n"
    "movdqa    %%xmm0,%%xmm1                   \n"
    "movdqa    %%xmm4,%%xmm5                   \n"
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    "mulps     " MEMACCESS2(0x10,3) ",%%xmm0   \n"
    "mulps     " MEMACCESS2(0x10,3) ",%%xmm4   \n"
    "addps     " MEMACCESS(3) ",%%xmm0         \n"
    "addps     " MEMACCESS(3) ",%%xmm4         \n"
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    "movdqa    %%xmm1,%%xmm2                   \n"
    "movdqa    %%xmm5,%%xmm6                   \n"
    "mulps     %%xmm1,%%xmm2                   \n"
    "mulps     %%xmm5,%%xmm6                   \n"
    "mulps     %%xmm2,%%xmm1                   \n"
    "mulps     %%xmm6,%%xmm5                   \n"
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    "mulps     " MEMACCESS2(0x20,3) ",%%xmm2   \n"
    "mulps     " MEMACCESS2(0x20,3) ",%%xmm6   \n"
    "mulps     " MEMACCESS2(0x30,3) ",%%xmm1   \n"
    "mulps     " MEMACCESS2(0x30,3) ",%%xmm5   \n"
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    "addps     %%xmm2,%%xmm0                   \n"
    "addps     %%xmm6,%%xmm4                   \n"
    "addps     %%xmm1,%%xmm0                   \n"
    "addps     %%xmm5,%%xmm4                   \n"
    "cvttps2dq %%xmm0,%%xmm0                   \n"
    "cvttps2dq %%xmm4,%%xmm4                   \n"
    "packuswb  %%xmm4,%%xmm0                   \n"
    "packuswb  %%xmm0,%%xmm0                   \n"
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    "movq      %%xmm0," MEMACCESS(1) "         \n"
    "lea       " MEMLEA(0x8,1) ",%1            \n"
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    "sub       $0x2,%2                         \n"
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    "jg        1b                              \n"
  : "+r"(src_argb),  // %0
    "+r"(dst_argb),  // %1
    "+r"(width)      // %2
  : "r"(poly)        // %3
  : "memory", "cc"
    , "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5", "xmm6"
  );
}
#endif  // HAS_ARGBPOLYNOMIALROW_SSE2

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#ifdef HAS_ARGBPOLYNOMIALROW_AVX2
void ARGBPolynomialRow_AVX2(const uint8* src_argb,
                            uint8* dst_argb, const float* poly,
                            int width) {
  asm volatile (
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    "vbroadcastf128 " MEMACCESS(3) ",%%ymm4     \n"
    "vbroadcastf128 " MEMACCESS2(0x10,3) ",%%ymm5 \n"
    "vbroadcastf128 " MEMACCESS2(0x20,3) ",%%ymm6 \n"
    "vbroadcastf128 " MEMACCESS2(0x30,3) ",%%ymm7 \n"
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    // 2 pixel loop.
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    LABELALIGN
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  "1:                                          \n"
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    "vpmovzxbd   " MEMACCESS(0) ",%%ymm0       \n"  // 2 ARGB pixels
    "lea         " MEMLEA(0x8,0) ",%0          \n"
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    "vcvtdq2ps   %%ymm0,%%ymm0                 \n"  // X 8 floats
    "vmulps      %%ymm0,%%ymm0,%%ymm2          \n"  // X * X
    "vmulps      %%ymm7,%%ymm0,%%ymm3          \n"  // C3 * X
    "vfmadd132ps %%ymm5,%%ymm4,%%ymm0          \n"  // result = C0 + C1 * X
    "vfmadd231ps %%ymm6,%%ymm2,%%ymm0          \n"  // result += C2 * X * X
    "vfmadd231ps %%ymm3,%%ymm2,%%ymm0          \n"  // result += C3 * X * X * X
    "vcvttps2dq  %%ymm0,%%ymm0                 \n"
    "vpackusdw   %%ymm0,%%ymm0,%%ymm0          \n"
    "vpermq      $0xd8,%%ymm0,%%ymm0           \n"
    "vpackuswb   %%xmm0,%%xmm0,%%xmm0          \n"
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    "vmovq       %%xmm0," MEMACCESS(1) "       \n"
    "lea         " MEMLEA(0x8,1) ",%1          \n"
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    "sub         $0x2,%2                       \n"
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    "jg          1b                            \n"
    "vzeroupper                                \n"
  : "+r"(src_argb),  // %0
    "+r"(dst_argb),  // %1
    "+r"(width)      // %2
  : "r"(poly)        // %3
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  : "memory", "cc",
    "xmm0", "xmm1", "xmm2", "xmm3", "xmm4", "xmm5", "xmm6", "xmm7"
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  );
}
#endif  // HAS_ARGBPOLYNOMIALROW_AVX2

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#ifdef HAS_ARGBCOLORTABLEROW_X86
// Tranform ARGB pixels with color table.
void ARGBColorTableRow_X86(uint8* dst_argb, const uint8* table_argb,
                           int width) {
  uintptr_t pixel_temp = 0u;
  asm volatile (
    // 1 pixel loop.
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    LABELALIGN
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  "1:                                          \n"
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    "movzb     " MEMACCESS(0) ",%1             \n"
    "lea       " MEMLEA(0x4,0) ",%0            \n"
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    MEMOPARG(movzb,0x00,3,1,4,1) "             \n"  // movzb (%3,%1,4),%1
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    "mov       %b1," MEMACCESS2(-0x4,0) "      \n"
    "movzb     " MEMACCESS2(-0x3,0) ",%1       \n"
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    MEMOPARG(movzb,0x01,3,1,4,1) "             \n"  // movzb 0x1(%3,%1,4),%1
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    "mov       %b1," MEMACCESS2(-0x3,0) "      \n"
    "movzb     " MEMACCESS2(-0x2,0) ",%1       \n"
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    MEMOPARG(movzb,0x02,3,1,4,1) "             \n"  // movzb 0x2(%3,%1,4),%1
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    "mov       %b1," MEMACCESS2(-0x2,0) "      \n"
    "movzb     " MEMACCESS2(-0x1,0) ",%1       \n"
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    MEMOPARG(movzb,0x03,3,1,4,1) "             \n"  // movzb 0x3(%3,%1,4),%1
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    "mov       %b1," MEMACCESS2(-0x1,0) "      \n"
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    "dec       %2                              \n"
    "jg        1b                              \n"
  : "+r"(dst_argb),   // %0
    "+d"(pixel_temp), // %1
    "+r"(width)       // %2
  : "r"(table_argb)   // %3
  : "memory", "cc");
}
#endif  // HAS_ARGBCOLORTABLEROW_X86

#ifdef HAS_RGBCOLORTABLEROW_X86
// Tranform RGB pixels with color table.
void RGBColorTableRow_X86(uint8* dst_argb, const uint8* table_argb, int width) {
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  uintptr_t pixel_temp = 0u;
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  asm volatile (
    // 1 pixel loop.
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    LABELALIGN
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  "1:                                          \n"
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    "movzb     " MEMACCESS(0) ",%1             \n"
    "lea       " MEMLEA(0x4,0) ",%0            \n"
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    MEMOPARG(movzb,0x00,3,1,4,1) "             \n"  // movzb (%3,%1,4),%1
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    "mov       %b1," MEMACCESS2(-0x4,0) "      \n"
    "movzb     " MEMACCESS2(-0x3,0) ",%1       \n"
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    MEMOPARG(movzb,0x01,3,1,4,1) "             \n"  // movzb 0x1(%3,%1,4),%1
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    "mov       %b1," MEMACCESS2(-0x3,0) "      \n"
    "movzb     " MEMACCESS2(-0x2,0) ",%1       \n"
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    MEMOPARG(movzb,0x02,3,1,4,1) "             \n"  // movzb 0x2(%3,%1,4),%1
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    "mov       %b1," MEMACCESS2(-0x2,0) "      \n"
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    "dec       %2                              \n"
    "jg        1b                              \n"
  : "+r"(dst_argb),   // %0
    "+d"(pixel_temp), // %1
    "+r"(width)       // %2
  : "r"(table_argb)   // %3
  : "memory", "cc");
}
#endif  // HAS_RGBCOLORTABLEROW_X86

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#ifdef HAS_ARGBLUMACOLORTABLEROW_SSSE3
// Tranform RGB pixels with luma table.
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void ARGBLumaColorTableRow_SSSE3(const uint8* src_argb, uint8* dst_argb,
                                 int width,
                                 const uint8* luma, uint32 lumacoeff) {
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  uintptr_t pixel_temp = 0u;
  uintptr_t table_temp = 0u;
  asm volatile (
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    "movd      %6,%%xmm3                       \n"
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    "pshufd    $0x0,%%xmm3,%%xmm3              \n"
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    "pcmpeqb   %%xmm4,%%xmm4                   \n"
    "psllw     $0x8,%%xmm4                     \n"
    "pxor      %%xmm5,%%xmm5                   \n"

    // 4 pixel loop.
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    LABELALIGN
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  "1:                                          \n"
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    "movdqu    " MEMACCESS(2) ",%%xmm0         \n"
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    "pmaddubsw %%xmm3,%%xmm0                   \n"
    "phaddw    %%xmm0,%%xmm0                   \n"
    "pand      %%xmm4,%%xmm0                   \n"
    "punpcklwd %%xmm5,%%xmm0                   \n"
    "movd      %%xmm0,%k1                      \n"  // 32 bit offset
    "add       %5,%1                           \n"
    "pshufd    $0x39,%%xmm0,%%xmm0             \n"

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    "movzb     " MEMACCESS(2) ",%0             \n"
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    MEMOPARG(movzb,0x00,1,0,1,0) "             \n"  // movzb     (%1,%0,1),%0
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    "mov       %b0," MEMACCESS(3) "            \n"
    "movzb     " MEMACCESS2(0x1,2) ",%0        \n"
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    MEMOPARG(movzb,0x00,1,0,1,0) "             \n"  // movzb     (%1,%0,1),%0
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    "mov       %b0," MEMACCESS2(0x1,3) "       \n"
    "movzb     " MEMACCESS2(0x2,2) ",%0        \n"
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    MEMOPARG(movzb,0x00,1,0,1,0) "             \n"  // movzb     (%1,%0,1),%0
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    "mov       %b0," MEMACCESS2(0x2,3) "       \n"
    "movzb     " MEMACCESS2(0x3,2) ",%0        \n"
    "mov       %b0," MEMACCESS2(0x3,3) "       \n"
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    "movd      %%xmm0,%k1                      \n"  // 32 bit offset
    "add       %5,%1                           \n"
    "pshufd    $0x39,%%xmm0,%%xmm0             \n"

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    "movzb     " MEMACCESS2(0x4,2) ",%0        \n"
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    MEMOPARG(movzb,0x00,1,0,1,0) "             \n"  // movzb     (%1,%0,1),%0
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    "mov       %b0," MEMACCESS2(0x4,3) "       \n"
    "movzb     " MEMACCESS2(0x5,2) ",%0        \n"
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    MEMOPARG(movzb,0x00,1,0,1,0) "             \n"  // movzb     (%1,%0,1),%0
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    "mov       %b0," MEMACCESS2(0x5,3) "       \n"
    "movzb     " MEMACCESS2(0x6,2) ",%0        \n"
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    MEMOPARG(movzb,0x00,1,0,1,0) "             \n"  // movzb     (%1,%0,1),%0
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    "mov       %b0," MEMACCESS2(0x6,3) "       \n"
    "movzb     " MEMACCESS2(0x7,2) ",%0        \n"
    "mov       %b0," MEMACCESS2(0x7,3) "       \n"
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    "movd      %%xmm0,%k1                      \n"  // 32 bit offset
    "add       %5,%1                           \n"
    "pshufd    $0x39,%%xmm0,%%xmm0             \n"

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    "movzb     " MEMACCESS2(0x8,2) ",%0        \n"
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    MEMOPARG(movzb,0x00,1,0,1,0) "             \n"  // movzb     (%1,%0,1),%0
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    "mov       %b0," MEMACCESS2(0x8,3) "       \n"
    "movzb     " MEMACCESS2(0x9,2) ",%0        \n"
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    MEMOPARG(movzb,0x00,1,0,1,0) "             \n"  // movzb     (%1,%0,1),%0
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    "mov       %b0," MEMACCESS2(0x9,3) "       \n"
    "movzb     " MEMACCESS2(0xa,2) ",%0        \n"
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    MEMOPARG(movzb,0x00,1,0,1,0) "             \n"  // movzb     (%1,%0,1),%0
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    "mov       %b0," MEMACCESS2(0xa,3) "       \n"
    "movzb     " MEMACCESS2(0xb,2) ",%0        \n"
    "mov       %b0," MEMACCESS2(0xb,3) "       \n"
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    "movd      %%xmm0,%k1                      \n"  // 32 bit offset
    "add       %5,%1                           \n"

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    "movzb     " MEMACCESS2(0xc,2) ",%0        \n"
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    MEMOPARG(movzb,0x00,1,0,1,0) "             \n"  // movzb     (%1,%0,1),%0
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    "mov       %b0," MEMACCESS2(0xc,3) "       \n"
    "movzb     " MEMACCESS2(0xd,2) ",%0        \n"
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    MEMOPARG(movzb,0x00,1,0,1,0) "             \n"  // movzb     (%1,%0,1),%0
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    "mov       %b0," MEMACCESS2(0xd,3) "       \n"
    "movzb     " MEMACCESS2(0xe,2) ",%0        \n"
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    MEMOPARG(movzb,0x00,1,0,1,0) "             \n"  // movzb     (%1,%0,1),%0
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    "mov       %b0," MEMACCESS2(0xe,3) "       \n"
    "movzb     " MEMACCESS2(0xf,2) ",%0        \n"
    "mov       %b0," MEMACCESS2(0xf,3) "       \n"
    "lea       " MEMLEA(0x10,2) ",%2           \n"
    "lea       " MEMLEA(0x10,3) ",%3           \n"
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    "sub       $0x4,%4                         \n"
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    "jg        1b                              \n"
  : "+d"(pixel_temp),  // %0
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    "+a"(table_temp),  // %1
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    "+r"(src_argb),    // %2
    "+r"(dst_argb),    // %3
    "+rm"(width)       // %4
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  : "r"(luma),         // %5
    "rm"(lumacoeff)    // %6
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  : "memory", "cc", "xmm0", "xmm3", "xmm4", "xmm5"
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  );
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}
#endif  // HAS_ARGBLUMACOLORTABLEROW_SSSE3

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#endif  // defined(__x86_64__) || defined(__i386__)

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#ifdef __cplusplus
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}  // extern "C"
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}  // namespace libyuv
#endif