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1 ; |
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2 ; jiss2red-64.asm - reduced-size IDCT (64-bit 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 ; Copyright 2009 D. R. Commander |
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6 ; |
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7 ; Based on |
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8 ; x86 SIMD extension for IJG JPEG library |
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9 ; Copyright (C) 1999-2006, MIYASAKA Masaru. |
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10 ; For conditions of distribution and use, see copyright notice in jsimdext.inc |
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11 ; |
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12 ; This file should be assembled with NASM (Netwide Assembler), |
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13 ; can *not* be assembled with Microsoft's MASM or any compatible |
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14 ; assembler (including Borland's Turbo Assembler). |
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15 ; NASM is available from http://nasm.sourceforge.net/ or |
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16 ; http://sourceforge.net/project/showfiles.php?group_id=6208 |
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17 ; |
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18 ; This file contains inverse-DCT routines that produce reduced-size |
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19 ; output: either 4x4 or 2x2 pixels from an 8x8 DCT block. |
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20 ; The following code is based directly on the IJG's original jidctred.c; |
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21 ; see the jidctred.c for more details. |
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22 ; |
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23 ; [TAB8] |
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24 |
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25 %include "jsimdext.inc" |
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26 %include "jdct.inc" |
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27 |
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28 ; -------------------------------------------------------------------------- |
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29 |
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30 %define CONST_BITS 13 |
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31 %define PASS1_BITS 2 |
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32 |
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33 %define DESCALE_P1_4 (CONST_BITS-PASS1_BITS+1) |
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34 %define DESCALE_P2_4 (CONST_BITS+PASS1_BITS+3+1) |
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35 %define DESCALE_P1_2 (CONST_BITS-PASS1_BITS+2) |
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36 %define DESCALE_P2_2 (CONST_BITS+PASS1_BITS+3+2) |
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37 |
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38 %if CONST_BITS == 13 |
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39 F_0_211 equ 1730 ; FIX(0.211164243) |
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40 F_0_509 equ 4176 ; FIX(0.509795579) |
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41 F_0_601 equ 4926 ; FIX(0.601344887) |
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42 F_0_720 equ 5906 ; FIX(0.720959822) |
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43 F_0_765 equ 6270 ; FIX(0.765366865) |
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44 F_0_850 equ 6967 ; FIX(0.850430095) |
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45 F_0_899 equ 7373 ; FIX(0.899976223) |
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46 F_1_061 equ 8697 ; FIX(1.061594337) |
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47 F_1_272 equ 10426 ; FIX(1.272758580) |
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48 F_1_451 equ 11893 ; FIX(1.451774981) |
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49 F_1_847 equ 15137 ; FIX(1.847759065) |
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50 F_2_172 equ 17799 ; FIX(2.172734803) |
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51 F_2_562 equ 20995 ; FIX(2.562915447) |
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52 F_3_624 equ 29692 ; FIX(3.624509785) |
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53 %else |
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54 ; NASM cannot do compile-time arithmetic on floating-point constants. |
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55 %define DESCALE(x,n) (((x)+(1<<((n)-1)))>>(n)) |
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56 F_0_211 equ DESCALE( 226735879,30-CONST_BITS) ; FIX(0.211164243) |
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57 F_0_509 equ DESCALE( 547388834,30-CONST_BITS) ; FIX(0.509795579) |
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58 F_0_601 equ DESCALE( 645689155,30-CONST_BITS) ; FIX(0.601344887) |
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59 F_0_720 equ DESCALE( 774124714,30-CONST_BITS) ; FIX(0.720959822) |
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60 F_0_765 equ DESCALE( 821806413,30-CONST_BITS) ; FIX(0.765366865) |
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61 F_0_850 equ DESCALE( 913142361,30-CONST_BITS) ; FIX(0.850430095) |
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62 F_0_899 equ DESCALE( 966342111,30-CONST_BITS) ; FIX(0.899976223) |
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63 F_1_061 equ DESCALE(1139878239,30-CONST_BITS) ; FIX(1.061594337) |
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64 F_1_272 equ DESCALE(1366614119,30-CONST_BITS) ; FIX(1.272758580) |
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65 F_1_451 equ DESCALE(1558831516,30-CONST_BITS) ; FIX(1.451774981) |
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66 F_1_847 equ DESCALE(1984016188,30-CONST_BITS) ; FIX(1.847759065) |
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67 F_2_172 equ DESCALE(2332956230,30-CONST_BITS) ; FIX(2.172734803) |
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68 F_2_562 equ DESCALE(2751909506,30-CONST_BITS) ; FIX(2.562915447) |
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69 F_3_624 equ DESCALE(3891787747,30-CONST_BITS) ; FIX(3.624509785) |
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70 %endif |
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71 |
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72 ; -------------------------------------------------------------------------- |
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73 SECTION SEG_CONST |
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74 |
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75 alignz 16 |
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76 global EXTN(jconst_idct_red_sse2) |
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77 |
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78 EXTN(jconst_idct_red_sse2): |
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79 |
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80 PW_F184_MF076 times 4 dw F_1_847,-F_0_765 |
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81 PW_F256_F089 times 4 dw F_2_562, F_0_899 |
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82 PW_F106_MF217 times 4 dw F_1_061,-F_2_172 |
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83 PW_MF060_MF050 times 4 dw -F_0_601,-F_0_509 |
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84 PW_F145_MF021 times 4 dw F_1_451,-F_0_211 |
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85 PW_F362_MF127 times 4 dw F_3_624,-F_1_272 |
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86 PW_F085_MF072 times 4 dw F_0_850,-F_0_720 |
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87 PD_DESCALE_P1_4 times 4 dd 1 << (DESCALE_P1_4-1) |
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88 PD_DESCALE_P2_4 times 4 dd 1 << (DESCALE_P2_4-1) |
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89 PD_DESCALE_P1_2 times 4 dd 1 << (DESCALE_P1_2-1) |
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90 PD_DESCALE_P2_2 times 4 dd 1 << (DESCALE_P2_2-1) |
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91 PB_CENTERJSAMP times 16 db CENTERJSAMPLE |
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92 |
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93 alignz 16 |
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94 |
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95 ; -------------------------------------------------------------------------- |
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96 SECTION SEG_TEXT |
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97 BITS 64 |
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98 ; |
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99 ; Perform dequantization and inverse DCT on one block of coefficients, |
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100 ; producing a reduced-size 4x4 output block. |
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101 ; |
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102 ; GLOBAL(void) |
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103 ; jsimd_idct_4x4_sse2 (void * dct_table, JCOEFPTR coef_block, |
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104 ; JSAMPARRAY output_buf, JDIMENSION output_col) |
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105 ; |
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106 |
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107 ; r10 = void * dct_table |
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108 ; r11 = JCOEFPTR coef_block |
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109 ; r12 = JSAMPARRAY output_buf |
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110 ; r13 = JDIMENSION output_col |
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111 |
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112 %define original_rbp rbp+0 |
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113 %define wk(i) rbp-(WK_NUM-(i))*SIZEOF_XMMWORD ; xmmword wk[WK_NUM] |
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114 %define WK_NUM 2 |
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115 |
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116 align 16 |
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117 global EXTN(jsimd_idct_4x4_sse2) |
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118 |
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119 EXTN(jsimd_idct_4x4_sse2): |
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120 push rbp |
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121 mov rax,rsp ; rax = original rbp |
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122 sub rsp, byte 4 |
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123 and rsp, byte (-SIZEOF_XMMWORD) ; align to 128 bits |
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124 mov [rsp],rax |
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125 mov rbp,rsp ; rbp = aligned rbp |
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126 lea rsp, [wk(0)] |
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127 collect_args |
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128 |
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129 ; ---- Pass 1: process columns from input. |
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130 |
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131 mov rdx, r10 ; quantptr |
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132 mov rsi, r11 ; inptr |
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133 |
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134 %ifndef NO_ZERO_COLUMN_TEST_4X4_SSE2 |
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135 mov eax, DWORD [DWBLOCK(1,0,rsi,SIZEOF_JCOEF)] |
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136 or eax, DWORD [DWBLOCK(2,0,rsi,SIZEOF_JCOEF)] |
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137 jnz short .columnDCT |
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138 |
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139 movdqa xmm0, XMMWORD [XMMBLOCK(1,0,rsi,SIZEOF_JCOEF)] |
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140 movdqa xmm1, XMMWORD [XMMBLOCK(2,0,rsi,SIZEOF_JCOEF)] |
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141 por xmm0, XMMWORD [XMMBLOCK(3,0,rsi,SIZEOF_JCOEF)] |
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142 por xmm1, XMMWORD [XMMBLOCK(5,0,rsi,SIZEOF_JCOEF)] |
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143 por xmm0, XMMWORD [XMMBLOCK(6,0,rsi,SIZEOF_JCOEF)] |
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144 por xmm1, XMMWORD [XMMBLOCK(7,0,rsi,SIZEOF_JCOEF)] |
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145 por xmm0,xmm1 |
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146 packsswb xmm0,xmm0 |
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147 packsswb xmm0,xmm0 |
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148 movd eax,xmm0 |
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149 test rax,rax |
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150 jnz short .columnDCT |
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151 |
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152 ; -- AC terms all zero |
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153 |
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154 movdqa xmm0, XMMWORD [XMMBLOCK(0,0,rsi,SIZEOF_JCOEF)] |
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155 pmullw xmm0, XMMWORD [XMMBLOCK(0,0,rdx,SIZEOF_ISLOW_MULT_TYPE)] |
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156 |
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157 psllw xmm0,PASS1_BITS |
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158 |
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159 movdqa xmm3,xmm0 ; xmm0=in0=(00 01 02 03 04 05 06 07) |
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160 punpcklwd xmm0,xmm0 ; xmm0=(00 00 01 01 02 02 03 03) |
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161 punpckhwd xmm3,xmm3 ; xmm3=(04 04 05 05 06 06 07 07) |
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162 |
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163 pshufd xmm1,xmm0,0x50 ; xmm1=[col0 col1]=(00 00 00 00 01 01 01 01) |
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164 pshufd xmm0,xmm0,0xFA ; xmm0=[col2 col3]=(02 02 02 02 03 03 03 03) |
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165 pshufd xmm6,xmm3,0x50 ; xmm6=[col4 col5]=(04 04 04 04 05 05 05 05) |
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166 pshufd xmm3,xmm3,0xFA ; xmm3=[col6 col7]=(06 06 06 06 07 07 07 07) |
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167 |
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168 jmp near .column_end |
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169 %endif |
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170 .columnDCT: |
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171 |
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172 ; -- Odd part |
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173 |
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174 movdqa xmm0, XMMWORD [XMMBLOCK(1,0,rsi,SIZEOF_JCOEF)] |
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175 movdqa xmm1, XMMWORD [XMMBLOCK(3,0,rsi,SIZEOF_JCOEF)] |
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176 pmullw xmm0, XMMWORD [XMMBLOCK(1,0,rdx,SIZEOF_ISLOW_MULT_TYPE)] |
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177 pmullw xmm1, XMMWORD [XMMBLOCK(3,0,rdx,SIZEOF_ISLOW_MULT_TYPE)] |
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178 movdqa xmm2, XMMWORD [XMMBLOCK(5,0,rsi,SIZEOF_JCOEF)] |
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179 movdqa xmm3, XMMWORD [XMMBLOCK(7,0,rsi,SIZEOF_JCOEF)] |
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180 pmullw xmm2, XMMWORD [XMMBLOCK(5,0,rdx,SIZEOF_ISLOW_MULT_TYPE)] |
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181 pmullw xmm3, XMMWORD [XMMBLOCK(7,0,rdx,SIZEOF_ISLOW_MULT_TYPE)] |
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182 |
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183 movdqa xmm4,xmm0 |
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184 movdqa xmm5,xmm0 |
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185 punpcklwd xmm4,xmm1 |
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186 punpckhwd xmm5,xmm1 |
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187 movdqa xmm0,xmm4 |
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188 movdqa xmm1,xmm5 |
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189 pmaddwd xmm4,[rel PW_F256_F089] ; xmm4=(tmp2L) |
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190 pmaddwd xmm5,[rel PW_F256_F089] ; xmm5=(tmp2H) |
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191 pmaddwd xmm0,[rel PW_F106_MF217] ; xmm0=(tmp0L) |
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192 pmaddwd xmm1,[rel PW_F106_MF217] ; xmm1=(tmp0H) |
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193 |
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194 movdqa xmm6,xmm2 |
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195 movdqa xmm7,xmm2 |
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196 punpcklwd xmm6,xmm3 |
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197 punpckhwd xmm7,xmm3 |
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198 movdqa xmm2,xmm6 |
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199 movdqa xmm3,xmm7 |
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200 pmaddwd xmm6,[rel PW_MF060_MF050] ; xmm6=(tmp2L) |
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201 pmaddwd xmm7,[rel PW_MF060_MF050] ; xmm7=(tmp2H) |
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202 pmaddwd xmm2,[rel PW_F145_MF021] ; xmm2=(tmp0L) |
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203 pmaddwd xmm3,[rel PW_F145_MF021] ; xmm3=(tmp0H) |
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204 |
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205 paddd xmm6,xmm4 ; xmm6=tmp2L |
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206 paddd xmm7,xmm5 ; xmm7=tmp2H |
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207 paddd xmm2,xmm0 ; xmm2=tmp0L |
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208 paddd xmm3,xmm1 ; xmm3=tmp0H |
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209 |
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210 movdqa XMMWORD [wk(0)], xmm2 ; wk(0)=tmp0L |
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211 movdqa XMMWORD [wk(1)], xmm3 ; wk(1)=tmp0H |
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212 |
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213 ; -- Even part |
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214 |
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215 movdqa xmm4, XMMWORD [XMMBLOCK(0,0,rsi,SIZEOF_JCOEF)] |
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216 movdqa xmm5, XMMWORD [XMMBLOCK(2,0,rsi,SIZEOF_JCOEF)] |
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217 movdqa xmm0, XMMWORD [XMMBLOCK(6,0,rsi,SIZEOF_JCOEF)] |
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218 pmullw xmm4, XMMWORD [XMMBLOCK(0,0,rdx,SIZEOF_ISLOW_MULT_TYPE)] |
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219 pmullw xmm5, XMMWORD [XMMBLOCK(2,0,rdx,SIZEOF_ISLOW_MULT_TYPE)] |
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220 pmullw xmm0, XMMWORD [XMMBLOCK(6,0,rdx,SIZEOF_ISLOW_MULT_TYPE)] |
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221 |
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222 pxor xmm1,xmm1 |
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223 pxor xmm2,xmm2 |
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224 punpcklwd xmm1,xmm4 ; xmm1=tmp0L |
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225 punpckhwd xmm2,xmm4 ; xmm2=tmp0H |
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226 psrad xmm1,(16-CONST_BITS-1) ; psrad xmm1,16 & pslld xmm1,CONST_BITS+1 |
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227 psrad xmm2,(16-CONST_BITS-1) ; psrad xmm2,16 & pslld xmm2,CONST_BITS+1 |
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228 |
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229 movdqa xmm3,xmm5 ; xmm5=in2=z2 |
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230 punpcklwd xmm5,xmm0 ; xmm0=in6=z3 |
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231 punpckhwd xmm3,xmm0 |
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232 pmaddwd xmm5,[rel PW_F184_MF076] ; xmm5=tmp2L |
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233 pmaddwd xmm3,[rel PW_F184_MF076] ; xmm3=tmp2H |
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234 |
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235 movdqa xmm4,xmm1 |
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236 movdqa xmm0,xmm2 |
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237 paddd xmm1,xmm5 ; xmm1=tmp10L |
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238 paddd xmm2,xmm3 ; xmm2=tmp10H |
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239 psubd xmm4,xmm5 ; xmm4=tmp12L |
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240 psubd xmm0,xmm3 ; xmm0=tmp12H |
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241 |
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242 ; -- Final output stage |
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243 |
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244 movdqa xmm5,xmm1 |
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245 movdqa xmm3,xmm2 |
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246 paddd xmm1,xmm6 ; xmm1=data0L |
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247 paddd xmm2,xmm7 ; xmm2=data0H |
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248 psubd xmm5,xmm6 ; xmm5=data3L |
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249 psubd xmm3,xmm7 ; xmm3=data3H |
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250 |
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251 movdqa xmm6,[rel PD_DESCALE_P1_4] ; xmm6=[rel PD_DESCALE_P1_4] |
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252 |
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253 paddd xmm1,xmm6 |
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254 paddd xmm2,xmm6 |
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255 psrad xmm1,DESCALE_P1_4 |
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256 psrad xmm2,DESCALE_P1_4 |
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257 paddd xmm5,xmm6 |
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258 paddd xmm3,xmm6 |
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259 psrad xmm5,DESCALE_P1_4 |
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260 psrad xmm3,DESCALE_P1_4 |
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261 |
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262 packssdw xmm1,xmm2 ; xmm1=data0=(00 01 02 03 04 05 06 07) |
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263 packssdw xmm5,xmm3 ; xmm5=data3=(30 31 32 33 34 35 36 37) |
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264 |
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265 movdqa xmm7, XMMWORD [wk(0)] ; xmm7=tmp0L |
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266 movdqa xmm6, XMMWORD [wk(1)] ; xmm6=tmp0H |
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267 |
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268 movdqa xmm2,xmm4 |
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269 movdqa xmm3,xmm0 |
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270 paddd xmm4,xmm7 ; xmm4=data1L |
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271 paddd xmm0,xmm6 ; xmm0=data1H |
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272 psubd xmm2,xmm7 ; xmm2=data2L |
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273 psubd xmm3,xmm6 ; xmm3=data2H |
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274 |
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275 movdqa xmm7,[rel PD_DESCALE_P1_4] ; xmm7=[rel PD_DESCALE_P1_4] |
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276 |
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277 paddd xmm4,xmm7 |
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278 paddd xmm0,xmm7 |
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279 psrad xmm4,DESCALE_P1_4 |
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280 psrad xmm0,DESCALE_P1_4 |
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281 paddd xmm2,xmm7 |
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282 paddd xmm3,xmm7 |
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283 psrad xmm2,DESCALE_P1_4 |
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284 psrad xmm3,DESCALE_P1_4 |
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285 |
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286 packssdw xmm4,xmm0 ; xmm4=data1=(10 11 12 13 14 15 16 17) |
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287 packssdw xmm2,xmm3 ; xmm2=data2=(20 21 22 23 24 25 26 27) |
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288 |
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289 movdqa xmm6,xmm1 ; transpose coefficients(phase 1) |
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290 punpcklwd xmm1,xmm4 ; xmm1=(00 10 01 11 02 12 03 13) |
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291 punpckhwd xmm6,xmm4 ; xmm6=(04 14 05 15 06 16 07 17) |
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292 movdqa xmm7,xmm2 ; transpose coefficients(phase 1) |
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293 punpcklwd xmm2,xmm5 ; xmm2=(20 30 21 31 22 32 23 33) |
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294 punpckhwd xmm7,xmm5 ; xmm7=(24 34 25 35 26 36 27 37) |
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295 |
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296 movdqa xmm0,xmm1 ; transpose coefficients(phase 2) |
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297 punpckldq xmm1,xmm2 ; xmm1=[col0 col1]=(00 10 20 30 01 11 21 31) |
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298 punpckhdq xmm0,xmm2 ; xmm0=[col2 col3]=(02 12 22 32 03 13 23 33) |
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299 movdqa xmm3,xmm6 ; transpose coefficients(phase 2) |
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300 punpckldq xmm6,xmm7 ; xmm6=[col4 col5]=(04 14 24 34 05 15 25 35) |
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301 punpckhdq xmm3,xmm7 ; xmm3=[col6 col7]=(06 16 26 36 07 17 27 37) |
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302 .column_end: |
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303 |
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304 ; -- Prefetch the next coefficient block |
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305 |
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306 prefetchnta [rsi + DCTSIZE2*SIZEOF_JCOEF + 0*32] |
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307 prefetchnta [rsi + DCTSIZE2*SIZEOF_JCOEF + 1*32] |
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308 prefetchnta [rsi + DCTSIZE2*SIZEOF_JCOEF + 2*32] |
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309 prefetchnta [rsi + DCTSIZE2*SIZEOF_JCOEF + 3*32] |
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310 |
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311 ; ---- Pass 2: process rows, store into output array. |
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312 |
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313 mov rax, [original_rbp] |
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314 mov rdi, r12 ; (JSAMPROW *) |
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315 mov rax, r13 |
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316 |
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317 ; -- Even part |
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318 |
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319 pxor xmm4,xmm4 |
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320 punpcklwd xmm4,xmm1 ; xmm4=tmp0 |
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321 psrad xmm4,(16-CONST_BITS-1) ; psrad xmm4,16 & pslld xmm4,CONST_BITS+1 |
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322 |
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323 ; -- Odd part |
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324 |
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325 punpckhwd xmm1,xmm0 |
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326 punpckhwd xmm6,xmm3 |
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327 movdqa xmm5,xmm1 |
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328 movdqa xmm2,xmm6 |
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329 pmaddwd xmm1,[rel PW_F256_F089] ; xmm1=(tmp2) |
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330 pmaddwd xmm6,[rel PW_MF060_MF050] ; xmm6=(tmp2) |
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331 pmaddwd xmm5,[rel PW_F106_MF217] ; xmm5=(tmp0) |
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332 pmaddwd xmm2,[rel PW_F145_MF021] ; xmm2=(tmp0) |
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333 |
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334 paddd xmm6,xmm1 ; xmm6=tmp2 |
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335 paddd xmm2,xmm5 ; xmm2=tmp0 |
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336 |
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337 ; -- Even part |
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338 |
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339 punpcklwd xmm0,xmm3 |
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340 pmaddwd xmm0,[rel PW_F184_MF076] ; xmm0=tmp2 |
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341 |
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342 movdqa xmm7,xmm4 |
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343 paddd xmm4,xmm0 ; xmm4=tmp10 |
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344 psubd xmm7,xmm0 ; xmm7=tmp12 |
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345 |
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346 ; -- Final output stage |
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347 |
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348 movdqa xmm1,[rel PD_DESCALE_P2_4] ; xmm1=[rel PD_DESCALE_P2_4] |
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349 |
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350 movdqa xmm5,xmm4 |
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351 movdqa xmm3,xmm7 |
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352 paddd xmm4,xmm6 ; xmm4=data0=(00 10 20 30) |
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353 paddd xmm7,xmm2 ; xmm7=data1=(01 11 21 31) |
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354 psubd xmm5,xmm6 ; xmm5=data3=(03 13 23 33) |
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355 psubd xmm3,xmm2 ; xmm3=data2=(02 12 22 32) |
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356 |
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357 paddd xmm4,xmm1 |
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358 paddd xmm7,xmm1 |
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359 psrad xmm4,DESCALE_P2_4 |
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360 psrad xmm7,DESCALE_P2_4 |
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361 paddd xmm5,xmm1 |
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362 paddd xmm3,xmm1 |
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363 psrad xmm5,DESCALE_P2_4 |
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364 psrad xmm3,DESCALE_P2_4 |
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365 |
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366 packssdw xmm4,xmm3 ; xmm4=(00 10 20 30 02 12 22 32) |
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367 packssdw xmm7,xmm5 ; xmm7=(01 11 21 31 03 13 23 33) |
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368 |
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369 movdqa xmm0,xmm4 ; transpose coefficients(phase 1) |
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370 punpcklwd xmm4,xmm7 ; xmm4=(00 01 10 11 20 21 30 31) |
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371 punpckhwd xmm0,xmm7 ; xmm0=(02 03 12 13 22 23 32 33) |
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372 |
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373 movdqa xmm6,xmm4 ; transpose coefficients(phase 2) |
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374 punpckldq xmm4,xmm0 ; xmm4=(00 01 02 03 10 11 12 13) |
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375 punpckhdq xmm6,xmm0 ; xmm6=(20 21 22 23 30 31 32 33) |
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376 |
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377 packsswb xmm4,xmm6 ; xmm4=(00 01 02 03 10 11 12 13 20 ..) |
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378 paddb xmm4,[rel PB_CENTERJSAMP] |
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379 |
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380 pshufd xmm2,xmm4,0x39 ; xmm2=(10 11 12 13 20 21 22 23 30 ..) |
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381 pshufd xmm1,xmm4,0x4E ; xmm1=(20 21 22 23 30 31 32 33 00 ..) |
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382 pshufd xmm3,xmm4,0x93 ; xmm3=(30 31 32 33 00 01 02 03 10 ..) |
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383 |
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384 mov rdx, JSAMPROW [rdi+0*SIZEOF_JSAMPROW] |
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385 mov rsi, JSAMPROW [rdi+1*SIZEOF_JSAMPROW] |
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386 movd XMM_DWORD [rdx+rax*SIZEOF_JSAMPLE], xmm4 |
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387 movd XMM_DWORD [rsi+rax*SIZEOF_JSAMPLE], xmm2 |
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388 mov rdx, JSAMPROW [rdi+2*SIZEOF_JSAMPROW] |
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389 mov rsi, JSAMPROW [rdi+3*SIZEOF_JSAMPROW] |
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390 movd XMM_DWORD [rdx+rax*SIZEOF_JSAMPLE], xmm1 |
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391 movd XMM_DWORD [rsi+rax*SIZEOF_JSAMPLE], xmm3 |
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392 |
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393 uncollect_args |
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394 mov rsp,rbp ; rsp <- aligned rbp |
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395 pop rsp ; rsp <- original rbp |
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396 pop rbp |
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397 ret |
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398 |
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399 |
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400 ; -------------------------------------------------------------------------- |
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401 ; |
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402 ; Perform dequantization and inverse DCT on one block of coefficients, |
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403 ; producing a reduced-size 2x2 output block. |
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404 ; |
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405 ; GLOBAL(void) |
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406 ; jsimd_idct_2x2_sse2 (void * dct_table, JCOEFPTR coef_block, |
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407 ; JSAMPARRAY output_buf, JDIMENSION output_col) |
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408 ; |
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409 |
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410 ; r10 = void * dct_table |
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411 ; r11 = JCOEFPTR coef_block |
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412 ; r12 = JSAMPARRAY output_buf |
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413 ; r13 = JDIMENSION output_col |
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414 |
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415 align 16 |
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416 global EXTN(jsimd_idct_2x2_sse2) |
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417 |
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418 EXTN(jsimd_idct_2x2_sse2): |
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419 push rbp |
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420 mov rax,rsp |
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421 mov rbp,rsp |
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422 collect_args |
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423 push rbx |
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424 |
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425 ; ---- Pass 1: process columns from input. |
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426 |
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427 mov rdx, r10 ; quantptr |
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428 mov rsi, r11 ; inptr |
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429 |
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430 ; | input: | result: | |
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431 ; | 00 01 ** 03 ** 05 ** 07 | | |
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432 ; | 10 11 ** 13 ** 15 ** 17 | | |
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433 ; | ** ** ** ** ** ** ** ** | | |
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434 ; | 30 31 ** 33 ** 35 ** 37 | A0 A1 A3 A5 A7 | |
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435 ; | ** ** ** ** ** ** ** ** | B0 B1 B3 B5 B7 | |
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436 ; | 50 51 ** 53 ** 55 ** 57 | | |
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437 ; | ** ** ** ** ** ** ** ** | | |
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438 ; | 70 71 ** 73 ** 75 ** 77 | | |
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439 |
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440 ; -- Odd part |
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441 |
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442 movdqa xmm0, XMMWORD [XMMBLOCK(1,0,rsi,SIZEOF_JCOEF)] |
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443 movdqa xmm1, XMMWORD [XMMBLOCK(3,0,rsi,SIZEOF_JCOEF)] |
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444 pmullw xmm0, XMMWORD [XMMBLOCK(1,0,rdx,SIZEOF_ISLOW_MULT_TYPE)] |
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445 pmullw xmm1, XMMWORD [XMMBLOCK(3,0,rdx,SIZEOF_ISLOW_MULT_TYPE)] |
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446 movdqa xmm2, XMMWORD [XMMBLOCK(5,0,rsi,SIZEOF_JCOEF)] |
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447 movdqa xmm3, XMMWORD [XMMBLOCK(7,0,rsi,SIZEOF_JCOEF)] |
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448 pmullw xmm2, XMMWORD [XMMBLOCK(5,0,rdx,SIZEOF_ISLOW_MULT_TYPE)] |
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449 pmullw xmm3, XMMWORD [XMMBLOCK(7,0,rdx,SIZEOF_ISLOW_MULT_TYPE)] |
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450 |
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451 ; xmm0=(10 11 ** 13 ** 15 ** 17), xmm1=(30 31 ** 33 ** 35 ** 37) |
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452 ; xmm2=(50 51 ** 53 ** 55 ** 57), xmm3=(70 71 ** 73 ** 75 ** 77) |
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453 |
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454 pcmpeqd xmm7,xmm7 |
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455 pslld xmm7,WORD_BIT ; xmm7={0x0000 0xFFFF 0x0000 0xFFFF ..} |
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456 |
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457 movdqa xmm4,xmm0 ; xmm4=(10 11 ** 13 ** 15 ** 17) |
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458 movdqa xmm5,xmm2 ; xmm5=(50 51 ** 53 ** 55 ** 57) |
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459 punpcklwd xmm4,xmm1 ; xmm4=(10 30 11 31 ** ** 13 33) |
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460 punpcklwd xmm5,xmm3 ; xmm5=(50 70 51 71 ** ** 53 73) |
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461 pmaddwd xmm4,[rel PW_F362_MF127] |
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462 pmaddwd xmm5,[rel PW_F085_MF072] |
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463 |
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464 psrld xmm0,WORD_BIT ; xmm0=(11 -- 13 -- 15 -- 17 --) |
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465 pand xmm1,xmm7 ; xmm1=(-- 31 -- 33 -- 35 -- 37) |
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466 psrld xmm2,WORD_BIT ; xmm2=(51 -- 53 -- 55 -- 57 --) |
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467 pand xmm3,xmm7 ; xmm3=(-- 71 -- 73 -- 75 -- 77) |
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468 por xmm0,xmm1 ; xmm0=(11 31 13 33 15 35 17 37) |
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469 por xmm2,xmm3 ; xmm2=(51 71 53 73 55 75 57 77) |
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470 pmaddwd xmm0,[rel PW_F362_MF127] |
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471 pmaddwd xmm2,[rel PW_F085_MF072] |
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472 |
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473 paddd xmm4,xmm5 ; xmm4=tmp0[col0 col1 **** col3] |
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474 paddd xmm0,xmm2 ; xmm0=tmp0[col1 col3 col5 col7] |
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475 |
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476 ; -- Even part |
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477 |
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478 movdqa xmm6, XMMWORD [XMMBLOCK(0,0,rsi,SIZEOF_JCOEF)] |
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479 pmullw xmm6, XMMWORD [XMMBLOCK(0,0,rdx,SIZEOF_ISLOW_MULT_TYPE)] |
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480 |
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481 ; xmm6=(00 01 ** 03 ** 05 ** 07) |
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482 |
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483 movdqa xmm1,xmm6 ; xmm1=(00 01 ** 03 ** 05 ** 07) |
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484 pslld xmm6,WORD_BIT ; xmm6=(-- 00 -- ** -- ** -- **) |
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485 pand xmm1,xmm7 ; xmm1=(-- 01 -- 03 -- 05 -- 07) |
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486 psrad xmm6,(WORD_BIT-CONST_BITS-2) ; xmm6=tmp10[col0 **** **** ****] |
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487 psrad xmm1,(WORD_BIT-CONST_BITS-2) ; xmm1=tmp10[col1 col3 col5 col7] |
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488 |
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489 ; -- Final output stage |
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490 |
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491 movdqa xmm3,xmm6 |
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492 movdqa xmm5,xmm1 |
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493 paddd xmm6,xmm4 ; xmm6=data0[col0 **** **** ****]=(A0 ** ** **) |
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494 paddd xmm1,xmm0 ; xmm1=data0[col1 col3 col5 col7]=(A1 A3 A5 A7) |
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495 psubd xmm3,xmm4 ; xmm3=data1[col0 **** **** ****]=(B0 ** ** **) |
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496 psubd xmm5,xmm0 ; xmm5=data1[col1 col3 col5 col7]=(B1 B3 B5 B7) |
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497 |
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498 movdqa xmm2,[rel PD_DESCALE_P1_2] ; xmm2=[rel PD_DESCALE_P1_2] |
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499 |
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500 punpckldq xmm6,xmm3 ; xmm6=(A0 B0 ** **) |
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501 |
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502 movdqa xmm7,xmm1 |
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503 punpcklqdq xmm1,xmm5 ; xmm1=(A1 A3 B1 B3) |
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504 punpckhqdq xmm7,xmm5 ; xmm7=(A5 A7 B5 B7) |
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505 |
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506 paddd xmm6,xmm2 |
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507 psrad xmm6,DESCALE_P1_2 |
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508 |
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509 paddd xmm1,xmm2 |
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510 paddd xmm7,xmm2 |
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511 psrad xmm1,DESCALE_P1_2 |
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512 psrad xmm7,DESCALE_P1_2 |
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513 |
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514 ; -- Prefetch the next coefficient block |
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515 |
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516 prefetchnta [rsi + DCTSIZE2*SIZEOF_JCOEF + 0*32] |
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517 prefetchnta [rsi + DCTSIZE2*SIZEOF_JCOEF + 1*32] |
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518 prefetchnta [rsi + DCTSIZE2*SIZEOF_JCOEF + 2*32] |
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519 prefetchnta [rsi + DCTSIZE2*SIZEOF_JCOEF + 3*32] |
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520 |
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521 ; ---- Pass 2: process rows, store into output array. |
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522 |
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523 mov rdi, r12 ; (JSAMPROW *) |
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524 mov rax, r13 |
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525 |
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526 ; | input:| result:| |
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527 ; | A0 B0 | | |
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528 ; | A1 B1 | C0 C1 | |
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529 ; | A3 B3 | D0 D1 | |
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530 ; | A5 B5 | | |
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531 ; | A7 B7 | | |
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532 |
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533 ; -- Odd part |
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534 |
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535 packssdw xmm1,xmm1 ; xmm1=(A1 A3 B1 B3 A1 A3 B1 B3) |
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536 packssdw xmm7,xmm7 ; xmm7=(A5 A7 B5 B7 A5 A7 B5 B7) |
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537 pmaddwd xmm1,[rel PW_F362_MF127] |
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538 pmaddwd xmm7,[rel PW_F085_MF072] |
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539 |
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540 paddd xmm1,xmm7 ; xmm1=tmp0[row0 row1 row0 row1] |
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541 |
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542 ; -- Even part |
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543 |
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544 pslld xmm6,(CONST_BITS+2) ; xmm6=tmp10[row0 row1 **** ****] |
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545 |
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546 ; -- Final output stage |
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547 |
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548 movdqa xmm4,xmm6 |
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549 paddd xmm6,xmm1 ; xmm6=data0[row0 row1 **** ****]=(C0 C1 ** **) |
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550 psubd xmm4,xmm1 ; xmm4=data1[row0 row1 **** ****]=(D0 D1 ** **) |
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551 |
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552 punpckldq xmm6,xmm4 ; xmm6=(C0 D0 C1 D1) |
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553 |
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554 paddd xmm6,[rel PD_DESCALE_P2_2] |
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555 psrad xmm6,DESCALE_P2_2 |
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556 |
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557 packssdw xmm6,xmm6 ; xmm6=(C0 D0 C1 D1 C0 D0 C1 D1) |
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558 packsswb xmm6,xmm6 ; xmm6=(C0 D0 C1 D1 C0 D0 C1 D1 ..) |
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559 paddb xmm6,[rel PB_CENTERJSAMP] |
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560 |
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561 pextrw ebx,xmm6,0x00 ; ebx=(C0 D0 -- --) |
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562 pextrw ecx,xmm6,0x01 ; ecx=(C1 D1 -- --) |
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563 |
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564 mov rdx, JSAMPROW [rdi+0*SIZEOF_JSAMPROW] |
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565 mov rsi, JSAMPROW [rdi+1*SIZEOF_JSAMPROW] |
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566 mov WORD [rdx+rax*SIZEOF_JSAMPLE], bx |
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567 mov WORD [rsi+rax*SIZEOF_JSAMPLE], cx |
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568 |
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569 pop rbx |
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570 uncollect_args |
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571 pop rbp |
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572 ret |
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573 |
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574 ; For some reason, the OS X linker does not honor the request to align the |
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575 ; segment unless we do this. |
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576 align 16 |