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1 ; |
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2 ; jiss2flt.asm - floating-point IDCT (SSE & SSE2) |
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3 ; |
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4 ; Copyright 2009 Pierre Ossman <ossman@cendio.se> for Cendio AB |
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5 ; |
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6 ; Based on |
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7 ; x86 SIMD extension for IJG JPEG library |
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8 ; Copyright (C) 1999-2006, MIYASAKA Masaru. |
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9 ; For conditions of distribution and use, see copyright notice in jsimdext.inc |
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10 ; |
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11 ; This file should be assembled with NASM (Netwide Assembler), |
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12 ; can *not* be assembled with Microsoft's MASM or any compatible |
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13 ; assembler (including Borland's Turbo Assembler). |
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14 ; NASM is available from http://nasm.sourceforge.net/ or |
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15 ; http://sourceforge.net/project/showfiles.php?group_id=6208 |
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16 ; |
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17 ; This file contains a floating-point implementation of the inverse DCT |
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18 ; (Discrete Cosine Transform). The following code is based directly on |
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19 ; the IJG's original jidctflt.c; see the jidctflt.c for more details. |
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20 ; |
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21 ; [TAB8] |
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22 |
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23 %include "jsimdext.inc" |
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24 %include "jdct.inc" |
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25 |
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26 ; -------------------------------------------------------------------------- |
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27 |
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28 %macro unpcklps2 2 ; %1=(0 1 2 3) / %2=(4 5 6 7) => %1=(0 1 4 5) |
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29 shufps %1,%2,0x44 |
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30 %endmacro |
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31 |
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32 %macro unpckhps2 2 ; %1=(0 1 2 3) / %2=(4 5 6 7) => %1=(2 3 6 7) |
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33 shufps %1,%2,0xEE |
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34 %endmacro |
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35 |
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36 ; -------------------------------------------------------------------------- |
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37 SECTION SEG_CONST |
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38 |
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39 alignz 16 |
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40 global EXTN(jconst_idct_float_sse2) |
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41 |
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42 EXTN(jconst_idct_float_sse2): |
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43 |
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44 PD_1_414 times 4 dd 1.414213562373095048801689 |
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45 PD_1_847 times 4 dd 1.847759065022573512256366 |
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46 PD_1_082 times 4 dd 1.082392200292393968799446 |
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47 PD_M2_613 times 4 dd -2.613125929752753055713286 |
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48 PD_RNDINT_MAGIC times 4 dd 100663296.0 ; (float)(0x00C00000 << 3) |
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49 PB_CENTERJSAMP times 16 db CENTERJSAMPLE |
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50 |
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51 alignz 16 |
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52 |
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53 ; -------------------------------------------------------------------------- |
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54 SECTION SEG_TEXT |
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55 BITS 32 |
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56 ; |
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57 ; Perform dequantization and inverse DCT on one block of coefficients. |
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58 ; |
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59 ; GLOBAL(void) |
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60 ; jsimd_idct_float_sse2 (void * dct_table, JCOEFPTR coef_block, |
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61 ; JSAMPARRAY output_buf, JDIMENSION output_col) |
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62 ; |
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63 |
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64 %define dct_table(b) (b)+8 ; void * dct_table |
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65 %define coef_block(b) (b)+12 ; JCOEFPTR coef_block |
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66 %define output_buf(b) (b)+16 ; JSAMPARRAY output_buf |
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67 %define output_col(b) (b)+20 ; JDIMENSION output_col |
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68 |
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69 %define original_ebp ebp+0 |
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70 %define wk(i) ebp-(WK_NUM-(i))*SIZEOF_XMMWORD ; xmmword wk[WK_NUM] |
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71 %define WK_NUM 2 |
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72 %define workspace wk(0)-DCTSIZE2*SIZEOF_FAST_FLOAT |
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73 ; FAST_FLOAT workspace[DCTSIZE2] |
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74 |
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75 align 16 |
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76 global EXTN(jsimd_idct_float_sse2) |
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77 |
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78 EXTN(jsimd_idct_float_sse2): |
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79 push ebp |
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80 mov eax,esp ; eax = original ebp |
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81 sub esp, byte 4 |
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82 and esp, byte (-SIZEOF_XMMWORD) ; align to 128 bits |
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83 mov [esp],eax |
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84 mov ebp,esp ; ebp = aligned ebp |
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85 lea esp, [workspace] |
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86 push ebx |
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87 ; push ecx ; need not be preserved |
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88 ; push edx ; need not be preserved |
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89 push esi |
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90 push edi |
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91 |
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92 get_GOT ebx ; get GOT address |
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93 |
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94 ; ---- Pass 1: process columns from input, store into work array. |
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95 |
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96 ; mov eax, [original_ebp] |
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97 mov edx, POINTER [dct_table(eax)] ; quantptr |
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98 mov esi, JCOEFPTR [coef_block(eax)] ; inptr |
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99 lea edi, [workspace] ; FAST_FLOAT * wsptr |
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100 mov ecx, DCTSIZE/4 ; ctr |
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101 alignx 16,7 |
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102 .columnloop: |
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103 %ifndef NO_ZERO_COLUMN_TEST_FLOAT_SSE |
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104 mov eax, DWORD [DWBLOCK(1,0,esi,SIZEOF_JCOEF)] |
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105 or eax, DWORD [DWBLOCK(2,0,esi,SIZEOF_JCOEF)] |
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106 jnz near .columnDCT |
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107 |
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108 movq xmm1, XMM_MMWORD [MMBLOCK(1,0,esi,SIZEOF_JCOEF)] |
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109 movq xmm2, XMM_MMWORD [MMBLOCK(2,0,esi,SIZEOF_JCOEF)] |
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110 movq xmm3, XMM_MMWORD [MMBLOCK(3,0,esi,SIZEOF_JCOEF)] |
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111 movq xmm4, XMM_MMWORD [MMBLOCK(4,0,esi,SIZEOF_JCOEF)] |
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112 movq xmm5, XMM_MMWORD [MMBLOCK(5,0,esi,SIZEOF_JCOEF)] |
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113 movq xmm6, XMM_MMWORD [MMBLOCK(6,0,esi,SIZEOF_JCOEF)] |
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114 movq xmm7, XMM_MMWORD [MMBLOCK(7,0,esi,SIZEOF_JCOEF)] |
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115 por xmm1,xmm2 |
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116 por xmm3,xmm4 |
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117 por xmm5,xmm6 |
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118 por xmm1,xmm3 |
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119 por xmm5,xmm7 |
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120 por xmm1,xmm5 |
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121 packsswb xmm1,xmm1 |
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122 movd eax,xmm1 |
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123 test eax,eax |
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124 jnz short .columnDCT |
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125 |
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126 ; -- AC terms all zero |
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127 |
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128 movq xmm0, XMM_MMWORD [MMBLOCK(0,0,esi,SIZEOF_JCOEF)] |
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129 |
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130 punpcklwd xmm0,xmm0 ; xmm0=(00 00 01 01 02 02 03 03) |
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131 psrad xmm0,(DWORD_BIT-WORD_BIT) ; xmm0=in0=(00 01 02 03) |
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132 cvtdq2ps xmm0,xmm0 ; xmm0=in0=(00 01 02 03) |
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133 |
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134 mulps xmm0, XMMWORD [XMMBLOCK(0,0,edx,SIZEOF_FLOAT_MULT_TYPE)] |
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135 |
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136 movaps xmm1,xmm0 |
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137 movaps xmm2,xmm0 |
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138 movaps xmm3,xmm0 |
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139 |
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140 shufps xmm0,xmm0,0x00 ; xmm0=(00 00 00 00) |
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141 shufps xmm1,xmm1,0x55 ; xmm1=(01 01 01 01) |
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142 shufps xmm2,xmm2,0xAA ; xmm2=(02 02 02 02) |
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143 shufps xmm3,xmm3,0xFF ; xmm3=(03 03 03 03) |
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144 |
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145 movaps XMMWORD [XMMBLOCK(0,0,edi,SIZEOF_FAST_FLOAT)], xmm0 |
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146 movaps XMMWORD [XMMBLOCK(0,1,edi,SIZEOF_FAST_FLOAT)], xmm0 |
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147 movaps XMMWORD [XMMBLOCK(1,0,edi,SIZEOF_FAST_FLOAT)], xmm1 |
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148 movaps XMMWORD [XMMBLOCK(1,1,edi,SIZEOF_FAST_FLOAT)], xmm1 |
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149 movaps XMMWORD [XMMBLOCK(2,0,edi,SIZEOF_FAST_FLOAT)], xmm2 |
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150 movaps XMMWORD [XMMBLOCK(2,1,edi,SIZEOF_FAST_FLOAT)], xmm2 |
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151 movaps XMMWORD [XMMBLOCK(3,0,edi,SIZEOF_FAST_FLOAT)], xmm3 |
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152 movaps XMMWORD [XMMBLOCK(3,1,edi,SIZEOF_FAST_FLOAT)], xmm3 |
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153 jmp near .nextcolumn |
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154 alignx 16,7 |
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155 %endif |
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156 .columnDCT: |
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157 |
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158 ; -- Even part |
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159 |
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160 movq xmm0, XMM_MMWORD [MMBLOCK(0,0,esi,SIZEOF_JCOEF)] |
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161 movq xmm1, XMM_MMWORD [MMBLOCK(2,0,esi,SIZEOF_JCOEF)] |
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162 movq xmm2, XMM_MMWORD [MMBLOCK(4,0,esi,SIZEOF_JCOEF)] |
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163 movq xmm3, XMM_MMWORD [MMBLOCK(6,0,esi,SIZEOF_JCOEF)] |
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164 |
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165 punpcklwd xmm0,xmm0 ; xmm0=(00 00 01 01 02 02 03 03) |
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166 punpcklwd xmm1,xmm1 ; xmm1=(20 20 21 21 22 22 23 23) |
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167 psrad xmm0,(DWORD_BIT-WORD_BIT) ; xmm0=in0=(00 01 02 03) |
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168 psrad xmm1,(DWORD_BIT-WORD_BIT) ; xmm1=in2=(20 21 22 23) |
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169 cvtdq2ps xmm0,xmm0 ; xmm0=in0=(00 01 02 03) |
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170 cvtdq2ps xmm1,xmm1 ; xmm1=in2=(20 21 22 23) |
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171 |
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172 punpcklwd xmm2,xmm2 ; xmm2=(40 40 41 41 42 42 43 43) |
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173 punpcklwd xmm3,xmm3 ; xmm3=(60 60 61 61 62 62 63 63) |
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174 psrad xmm2,(DWORD_BIT-WORD_BIT) ; xmm2=in4=(40 41 42 43) |
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175 psrad xmm3,(DWORD_BIT-WORD_BIT) ; xmm3=in6=(60 61 62 63) |
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176 cvtdq2ps xmm2,xmm2 ; xmm2=in4=(40 41 42 43) |
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177 cvtdq2ps xmm3,xmm3 ; xmm3=in6=(60 61 62 63) |
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178 |
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179 mulps xmm0, XMMWORD [XMMBLOCK(0,0,edx,SIZEOF_FLOAT_MULT_TYPE)] |
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180 mulps xmm1, XMMWORD [XMMBLOCK(2,0,edx,SIZEOF_FLOAT_MULT_TYPE)] |
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181 mulps xmm2, XMMWORD [XMMBLOCK(4,0,edx,SIZEOF_FLOAT_MULT_TYPE)] |
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182 mulps xmm3, XMMWORD [XMMBLOCK(6,0,edx,SIZEOF_FLOAT_MULT_TYPE)] |
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183 |
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184 movaps xmm4,xmm0 |
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185 movaps xmm5,xmm1 |
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186 subps xmm0,xmm2 ; xmm0=tmp11 |
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187 subps xmm1,xmm3 |
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188 addps xmm4,xmm2 ; xmm4=tmp10 |
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189 addps xmm5,xmm3 ; xmm5=tmp13 |
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190 |
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191 mulps xmm1,[GOTOFF(ebx,PD_1_414)] |
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192 subps xmm1,xmm5 ; xmm1=tmp12 |
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193 |
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194 movaps xmm6,xmm4 |
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195 movaps xmm7,xmm0 |
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196 subps xmm4,xmm5 ; xmm4=tmp3 |
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197 subps xmm0,xmm1 ; xmm0=tmp2 |
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198 addps xmm6,xmm5 ; xmm6=tmp0 |
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199 addps xmm7,xmm1 ; xmm7=tmp1 |
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200 |
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201 movaps XMMWORD [wk(1)], xmm4 ; tmp3 |
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202 movaps XMMWORD [wk(0)], xmm0 ; tmp2 |
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203 |
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204 ; -- Odd part |
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205 |
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206 movq xmm2, XMM_MMWORD [MMBLOCK(1,0,esi,SIZEOF_JCOEF)] |
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207 movq xmm3, XMM_MMWORD [MMBLOCK(3,0,esi,SIZEOF_JCOEF)] |
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208 movq xmm5, XMM_MMWORD [MMBLOCK(5,0,esi,SIZEOF_JCOEF)] |
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209 movq xmm1, XMM_MMWORD [MMBLOCK(7,0,esi,SIZEOF_JCOEF)] |
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210 |
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211 punpcklwd xmm2,xmm2 ; xmm2=(10 10 11 11 12 12 13 13) |
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212 punpcklwd xmm3,xmm3 ; xmm3=(30 30 31 31 32 32 33 33) |
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213 psrad xmm2,(DWORD_BIT-WORD_BIT) ; xmm2=in1=(10 11 12 13) |
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214 psrad xmm3,(DWORD_BIT-WORD_BIT) ; xmm3=in3=(30 31 32 33) |
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215 cvtdq2ps xmm2,xmm2 ; xmm2=in1=(10 11 12 13) |
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216 cvtdq2ps xmm3,xmm3 ; xmm3=in3=(30 31 32 33) |
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217 |
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218 punpcklwd xmm5,xmm5 ; xmm5=(50 50 51 51 52 52 53 53) |
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219 punpcklwd xmm1,xmm1 ; xmm1=(70 70 71 71 72 72 73 73) |
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220 psrad xmm5,(DWORD_BIT-WORD_BIT) ; xmm5=in5=(50 51 52 53) |
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221 psrad xmm1,(DWORD_BIT-WORD_BIT) ; xmm1=in7=(70 71 72 73) |
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222 cvtdq2ps xmm5,xmm5 ; xmm5=in5=(50 51 52 53) |
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223 cvtdq2ps xmm1,xmm1 ; xmm1=in7=(70 71 72 73) |
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224 |
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225 mulps xmm2, XMMWORD [XMMBLOCK(1,0,edx,SIZEOF_FLOAT_MULT_TYPE)] |
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226 mulps xmm3, XMMWORD [XMMBLOCK(3,0,edx,SIZEOF_FLOAT_MULT_TYPE)] |
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227 mulps xmm5, XMMWORD [XMMBLOCK(5,0,edx,SIZEOF_FLOAT_MULT_TYPE)] |
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228 mulps xmm1, XMMWORD [XMMBLOCK(7,0,edx,SIZEOF_FLOAT_MULT_TYPE)] |
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229 |
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230 movaps xmm4,xmm2 |
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231 movaps xmm0,xmm5 |
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232 addps xmm2,xmm1 ; xmm2=z11 |
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233 addps xmm5,xmm3 ; xmm5=z13 |
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234 subps xmm4,xmm1 ; xmm4=z12 |
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235 subps xmm0,xmm3 ; xmm0=z10 |
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236 |
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237 movaps xmm1,xmm2 |
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238 subps xmm2,xmm5 |
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239 addps xmm1,xmm5 ; xmm1=tmp7 |
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240 |
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241 mulps xmm2,[GOTOFF(ebx,PD_1_414)] ; xmm2=tmp11 |
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242 |
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243 movaps xmm3,xmm0 |
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244 addps xmm0,xmm4 |
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245 mulps xmm0,[GOTOFF(ebx,PD_1_847)] ; xmm0=z5 |
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246 mulps xmm3,[GOTOFF(ebx,PD_M2_613)] ; xmm3=(z10 * -2.613125930) |
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247 mulps xmm4,[GOTOFF(ebx,PD_1_082)] ; xmm4=(z12 * 1.082392200) |
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248 addps xmm3,xmm0 ; xmm3=tmp12 |
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249 subps xmm4,xmm0 ; xmm4=tmp10 |
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250 |
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251 ; -- Final output stage |
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252 |
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253 subps xmm3,xmm1 ; xmm3=tmp6 |
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254 movaps xmm5,xmm6 |
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255 movaps xmm0,xmm7 |
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256 addps xmm6,xmm1 ; xmm6=data0=(00 01 02 03) |
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257 addps xmm7,xmm3 ; xmm7=data1=(10 11 12 13) |
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258 subps xmm5,xmm1 ; xmm5=data7=(70 71 72 73) |
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259 subps xmm0,xmm3 ; xmm0=data6=(60 61 62 63) |
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260 subps xmm2,xmm3 ; xmm2=tmp5 |
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261 |
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262 movaps xmm1,xmm6 ; transpose coefficients(phase 1) |
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263 unpcklps xmm6,xmm7 ; xmm6=(00 10 01 11) |
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264 unpckhps xmm1,xmm7 ; xmm1=(02 12 03 13) |
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265 movaps xmm3,xmm0 ; transpose coefficients(phase 1) |
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266 unpcklps xmm0,xmm5 ; xmm0=(60 70 61 71) |
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267 unpckhps xmm3,xmm5 ; xmm3=(62 72 63 73) |
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268 |
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269 movaps xmm7, XMMWORD [wk(0)] ; xmm7=tmp2 |
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270 movaps xmm5, XMMWORD [wk(1)] ; xmm5=tmp3 |
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271 |
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272 movaps XMMWORD [wk(0)], xmm0 ; wk(0)=(60 70 61 71) |
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273 movaps XMMWORD [wk(1)], xmm3 ; wk(1)=(62 72 63 73) |
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274 |
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275 addps xmm4,xmm2 ; xmm4=tmp4 |
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276 movaps xmm0,xmm7 |
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277 movaps xmm3,xmm5 |
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278 addps xmm7,xmm2 ; xmm7=data2=(20 21 22 23) |
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279 addps xmm5,xmm4 ; xmm5=data4=(40 41 42 43) |
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280 subps xmm0,xmm2 ; xmm0=data5=(50 51 52 53) |
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281 subps xmm3,xmm4 ; xmm3=data3=(30 31 32 33) |
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282 |
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283 movaps xmm2,xmm7 ; transpose coefficients(phase 1) |
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284 unpcklps xmm7,xmm3 ; xmm7=(20 30 21 31) |
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285 unpckhps xmm2,xmm3 ; xmm2=(22 32 23 33) |
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286 movaps xmm4,xmm5 ; transpose coefficients(phase 1) |
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287 unpcklps xmm5,xmm0 ; xmm5=(40 50 41 51) |
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288 unpckhps xmm4,xmm0 ; xmm4=(42 52 43 53) |
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289 |
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290 movaps xmm3,xmm6 ; transpose coefficients(phase 2) |
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291 unpcklps2 xmm6,xmm7 ; xmm6=(00 10 20 30) |
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292 unpckhps2 xmm3,xmm7 ; xmm3=(01 11 21 31) |
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293 movaps xmm0,xmm1 ; transpose coefficients(phase 2) |
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294 unpcklps2 xmm1,xmm2 ; xmm1=(02 12 22 32) |
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295 unpckhps2 xmm0,xmm2 ; xmm0=(03 13 23 33) |
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296 |
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297 movaps xmm7, XMMWORD [wk(0)] ; xmm7=(60 70 61 71) |
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298 movaps xmm2, XMMWORD [wk(1)] ; xmm2=(62 72 63 73) |
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299 |
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300 movaps XMMWORD [XMMBLOCK(0,0,edi,SIZEOF_FAST_FLOAT)], xmm6 |
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301 movaps XMMWORD [XMMBLOCK(1,0,edi,SIZEOF_FAST_FLOAT)], xmm3 |
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302 movaps XMMWORD [XMMBLOCK(2,0,edi,SIZEOF_FAST_FLOAT)], xmm1 |
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303 movaps XMMWORD [XMMBLOCK(3,0,edi,SIZEOF_FAST_FLOAT)], xmm0 |
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304 |
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305 movaps xmm6,xmm5 ; transpose coefficients(phase 2) |
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306 unpcklps2 xmm5,xmm7 ; xmm5=(40 50 60 70) |
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307 unpckhps2 xmm6,xmm7 ; xmm6=(41 51 61 71) |
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308 movaps xmm3,xmm4 ; transpose coefficients(phase 2) |
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309 unpcklps2 xmm4,xmm2 ; xmm4=(42 52 62 72) |
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310 unpckhps2 xmm3,xmm2 ; xmm3=(43 53 63 73) |
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311 |
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312 movaps XMMWORD [XMMBLOCK(0,1,edi,SIZEOF_FAST_FLOAT)], xmm5 |
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313 movaps XMMWORD [XMMBLOCK(1,1,edi,SIZEOF_FAST_FLOAT)], xmm6 |
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314 movaps XMMWORD [XMMBLOCK(2,1,edi,SIZEOF_FAST_FLOAT)], xmm4 |
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315 movaps XMMWORD [XMMBLOCK(3,1,edi,SIZEOF_FAST_FLOAT)], xmm3 |
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316 |
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317 .nextcolumn: |
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318 add esi, byte 4*SIZEOF_JCOEF ; coef_block |
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319 add edx, byte 4*SIZEOF_FLOAT_MULT_TYPE ; quantptr |
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320 add edi, 4*DCTSIZE*SIZEOF_FAST_FLOAT ; wsptr |
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321 dec ecx ; ctr |
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322 jnz near .columnloop |
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323 |
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324 ; -- Prefetch the next coefficient block |
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325 |
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326 prefetchnta [esi + (DCTSIZE2-8)*SIZEOF_JCOEF + 0*32] |
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327 prefetchnta [esi + (DCTSIZE2-8)*SIZEOF_JCOEF + 1*32] |
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328 prefetchnta [esi + (DCTSIZE2-8)*SIZEOF_JCOEF + 2*32] |
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329 prefetchnta [esi + (DCTSIZE2-8)*SIZEOF_JCOEF + 3*32] |
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330 |
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331 ; ---- Pass 2: process rows from work array, store into output array. |
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332 |
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333 mov eax, [original_ebp] |
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334 lea esi, [workspace] ; FAST_FLOAT * wsptr |
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335 mov edi, JSAMPARRAY [output_buf(eax)] ; (JSAMPROW *) |
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336 mov eax, JDIMENSION [output_col(eax)] |
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337 mov ecx, DCTSIZE/4 ; ctr |
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338 alignx 16,7 |
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339 .rowloop: |
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340 |
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341 ; -- Even part |
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342 |
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343 movaps xmm0, XMMWORD [XMMBLOCK(0,0,esi,SIZEOF_FAST_FLOAT)] |
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344 movaps xmm1, XMMWORD [XMMBLOCK(2,0,esi,SIZEOF_FAST_FLOAT)] |
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345 movaps xmm2, XMMWORD [XMMBLOCK(4,0,esi,SIZEOF_FAST_FLOAT)] |
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346 movaps xmm3, XMMWORD [XMMBLOCK(6,0,esi,SIZEOF_FAST_FLOAT)] |
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347 |
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348 movaps xmm4,xmm0 |
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349 movaps xmm5,xmm1 |
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350 subps xmm0,xmm2 ; xmm0=tmp11 |
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351 subps xmm1,xmm3 |
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352 addps xmm4,xmm2 ; xmm4=tmp10 |
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353 addps xmm5,xmm3 ; xmm5=tmp13 |
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354 |
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355 mulps xmm1,[GOTOFF(ebx,PD_1_414)] |
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356 subps xmm1,xmm5 ; xmm1=tmp12 |
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357 |
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358 movaps xmm6,xmm4 |
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359 movaps xmm7,xmm0 |
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360 subps xmm4,xmm5 ; xmm4=tmp3 |
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361 subps xmm0,xmm1 ; xmm0=tmp2 |
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362 addps xmm6,xmm5 ; xmm6=tmp0 |
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363 addps xmm7,xmm1 ; xmm7=tmp1 |
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364 |
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365 movaps XMMWORD [wk(1)], xmm4 ; tmp3 |
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366 movaps XMMWORD [wk(0)], xmm0 ; tmp2 |
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367 |
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368 ; -- Odd part |
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369 |
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370 movaps xmm2, XMMWORD [XMMBLOCK(1,0,esi,SIZEOF_FAST_FLOAT)] |
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371 movaps xmm3, XMMWORD [XMMBLOCK(3,0,esi,SIZEOF_FAST_FLOAT)] |
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372 movaps xmm5, XMMWORD [XMMBLOCK(5,0,esi,SIZEOF_FAST_FLOAT)] |
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373 movaps xmm1, XMMWORD [XMMBLOCK(7,0,esi,SIZEOF_FAST_FLOAT)] |
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374 |
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375 movaps xmm4,xmm2 |
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376 movaps xmm0,xmm5 |
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377 addps xmm2,xmm1 ; xmm2=z11 |
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378 addps xmm5,xmm3 ; xmm5=z13 |
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379 subps xmm4,xmm1 ; xmm4=z12 |
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380 subps xmm0,xmm3 ; xmm0=z10 |
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381 |
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382 movaps xmm1,xmm2 |
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383 subps xmm2,xmm5 |
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384 addps xmm1,xmm5 ; xmm1=tmp7 |
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385 |
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386 mulps xmm2,[GOTOFF(ebx,PD_1_414)] ; xmm2=tmp11 |
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387 |
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388 movaps xmm3,xmm0 |
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389 addps xmm0,xmm4 |
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390 mulps xmm0,[GOTOFF(ebx,PD_1_847)] ; xmm0=z5 |
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391 mulps xmm3,[GOTOFF(ebx,PD_M2_613)] ; xmm3=(z10 * -2.613125930) |
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392 mulps xmm4,[GOTOFF(ebx,PD_1_082)] ; xmm4=(z12 * 1.082392200) |
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393 addps xmm3,xmm0 ; xmm3=tmp12 |
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394 subps xmm4,xmm0 ; xmm4=tmp10 |
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395 |
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396 ; -- Final output stage |
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397 |
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398 subps xmm3,xmm1 ; xmm3=tmp6 |
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399 movaps xmm5,xmm6 |
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400 movaps xmm0,xmm7 |
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401 addps xmm6,xmm1 ; xmm6=data0=(00 10 20 30) |
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402 addps xmm7,xmm3 ; xmm7=data1=(01 11 21 31) |
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403 subps xmm5,xmm1 ; xmm5=data7=(07 17 27 37) |
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404 subps xmm0,xmm3 ; xmm0=data6=(06 16 26 36) |
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405 subps xmm2,xmm3 ; xmm2=tmp5 |
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406 |
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407 movaps xmm1,[GOTOFF(ebx,PD_RNDINT_MAGIC)] ; xmm1=[PD_RNDINT_MAGIC] |
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408 pcmpeqd xmm3,xmm3 |
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409 psrld xmm3,WORD_BIT ; xmm3={0xFFFF 0x0000 0xFFFF 0x0000 ..} |
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410 |
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411 addps xmm6,xmm1 ; xmm6=roundint(data0/8)=(00 ** 10 ** 20 ** 30 **) |
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412 addps xmm7,xmm1 ; xmm7=roundint(data1/8)=(01 ** 11 ** 21 ** 31 **) |
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413 addps xmm0,xmm1 ; xmm0=roundint(data6/8)=(06 ** 16 ** 26 ** 36 **) |
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414 addps xmm5,xmm1 ; xmm5=roundint(data7/8)=(07 ** 17 ** 27 ** 37 **) |
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415 |
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416 pand xmm6,xmm3 ; xmm6=(00 -- 10 -- 20 -- 30 --) |
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417 pslld xmm7,WORD_BIT ; xmm7=(-- 01 -- 11 -- 21 -- 31) |
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418 pand xmm0,xmm3 ; xmm0=(06 -- 16 -- 26 -- 36 --) |
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419 pslld xmm5,WORD_BIT ; xmm5=(-- 07 -- 17 -- 27 -- 37) |
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420 por xmm6,xmm7 ; xmm6=(00 01 10 11 20 21 30 31) |
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421 por xmm0,xmm5 ; xmm0=(06 07 16 17 26 27 36 37) |
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422 |
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423 movaps xmm1, XMMWORD [wk(0)] ; xmm1=tmp2 |
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424 movaps xmm3, XMMWORD [wk(1)] ; xmm3=tmp3 |
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425 |
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426 addps xmm4,xmm2 ; xmm4=tmp4 |
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427 movaps xmm7,xmm1 |
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428 movaps xmm5,xmm3 |
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429 addps xmm1,xmm2 ; xmm1=data2=(02 12 22 32) |
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430 addps xmm3,xmm4 ; xmm3=data4=(04 14 24 34) |
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431 subps xmm7,xmm2 ; xmm7=data5=(05 15 25 35) |
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432 subps xmm5,xmm4 ; xmm5=data3=(03 13 23 33) |
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433 |
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434 movaps xmm2,[GOTOFF(ebx,PD_RNDINT_MAGIC)] ; xmm2=[PD_RNDINT_MAGIC] |
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435 pcmpeqd xmm4,xmm4 |
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436 psrld xmm4,WORD_BIT ; xmm4={0xFFFF 0x0000 0xFFFF 0x0000 ..} |
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437 |
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438 addps xmm3,xmm2 ; xmm3=roundint(data4/8)=(04 ** 14 ** 24 ** 34 **) |
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439 addps xmm7,xmm2 ; xmm7=roundint(data5/8)=(05 ** 15 ** 25 ** 35 **) |
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440 addps xmm1,xmm2 ; xmm1=roundint(data2/8)=(02 ** 12 ** 22 ** 32 **) |
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441 addps xmm5,xmm2 ; xmm5=roundint(data3/8)=(03 ** 13 ** 23 ** 33 **) |
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442 |
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443 pand xmm3,xmm4 ; xmm3=(04 -- 14 -- 24 -- 34 --) |
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444 pslld xmm7,WORD_BIT ; xmm7=(-- 05 -- 15 -- 25 -- 35) |
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445 pand xmm1,xmm4 ; xmm1=(02 -- 12 -- 22 -- 32 --) |
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446 pslld xmm5,WORD_BIT ; xmm5=(-- 03 -- 13 -- 23 -- 33) |
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447 por xmm3,xmm7 ; xmm3=(04 05 14 15 24 25 34 35) |
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448 por xmm1,xmm5 ; xmm1=(02 03 12 13 22 23 32 33) |
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449 |
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450 movdqa xmm2,[GOTOFF(ebx,PB_CENTERJSAMP)] ; xmm2=[PB_CENTERJSAMP] |
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451 |
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452 packsswb xmm6,xmm3 ; xmm6=(00 01 10 11 20 21 30 31 04 05 14 15 24 25 34 35) |
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453 packsswb xmm1,xmm0 ; xmm1=(02 03 12 13 22 23 32 33 06 07 16 17 26 27 36 37) |
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454 paddb xmm6,xmm2 |
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455 paddb xmm1,xmm2 |
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456 |
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457 movdqa xmm4,xmm6 ; transpose coefficients(phase 2) |
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458 punpcklwd xmm6,xmm1 ; xmm6=(00 01 02 03 10 11 12 13 20 21 22 23 30 31 32 33) |
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459 punpckhwd xmm4,xmm1 ; xmm4=(04 05 06 07 14 15 16 17 24 25 26 27 34 35 36 37) |
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460 |
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461 movdqa xmm7,xmm6 ; transpose coefficients(phase 3) |
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462 punpckldq xmm6,xmm4 ; xmm6=(00 01 02 03 04 05 06 07 10 11 12 13 14 15 16 17) |
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463 punpckhdq xmm7,xmm4 ; xmm7=(20 21 22 23 24 25 26 27 30 31 32 33 34 35 36 37) |
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464 |
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465 pshufd xmm5,xmm6,0x4E ; xmm5=(10 11 12 13 14 15 16 17 00 01 02 03 04 05 06 07) |
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466 pshufd xmm3,xmm7,0x4E ; xmm3=(30 31 32 33 34 35 36 37 20 21 22 23 24 25 26 27) |
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467 |
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468 pushpic ebx ; save GOT address |
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469 |
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470 mov edx, JSAMPROW [edi+0*SIZEOF_JSAMPROW] |
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471 mov ebx, JSAMPROW [edi+2*SIZEOF_JSAMPROW] |
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472 movq XMM_MMWORD [edx+eax*SIZEOF_JSAMPLE], xmm6 |
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473 movq XMM_MMWORD [ebx+eax*SIZEOF_JSAMPLE], xmm7 |
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474 mov edx, JSAMPROW [edi+1*SIZEOF_JSAMPROW] |
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475 mov ebx, JSAMPROW [edi+3*SIZEOF_JSAMPROW] |
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476 movq XMM_MMWORD [edx+eax*SIZEOF_JSAMPLE], xmm5 |
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477 movq XMM_MMWORD [ebx+eax*SIZEOF_JSAMPLE], xmm3 |
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478 |
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479 poppic ebx ; restore GOT address |
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480 |
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481 add esi, byte 4*SIZEOF_FAST_FLOAT ; wsptr |
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482 add edi, byte 4*SIZEOF_JSAMPROW |
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483 dec ecx ; ctr |
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484 jnz near .rowloop |
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485 |
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486 pop edi |
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487 pop esi |
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488 ; pop edx ; need not be preserved |
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489 ; pop ecx ; need not be preserved |
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490 pop ebx |
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491 mov esp,ebp ; esp <- aligned ebp |
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492 pop esp ; esp <- original ebp |
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493 pop ebp |
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494 ret |
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495 |
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496 ; For some reason, the OS X linker does not honor the request to align the |
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497 ; segment unless we do this. |
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498 align 16 |