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  1. #!/usr/bin/env perl
  2. #
  3. # ====================================================================
  4. # Written by Andy Polyakov <appro@openssl.org> for the OpenSSL
  5. # project. The module is, however, dual licensed under OpenSSL and
  6. # CRYPTOGAMS licenses depending on where you obtain it. For further
  7. # details see http://www.openssl.org/~appro/cryptogams/.
  8. # ====================================================================
  9. # June 2011
  10. #
  11. # This is RC4+MD5 "stitch" implementation. The idea, as spelled in
  12. # http://download.intel.com/design/intarch/papers/323686.pdf, is that
  13. # since both algorithms exhibit instruction-level parallelism, ILP,
  14. # below theoretical maximum, interleaving them would allow to utilize
  15. # processor resources better and achieve better performance. RC4
  16. # instruction sequence is virtually identical to rc4-x86_64.pl, which
  17. # is heavily based on submission by Maxim Perminov, Maxim Locktyukhin
  18. # and Jim Guilford of Intel. MD5 is fresh implementation aiming to
  19. # minimize register usage, which was used as "main thread" with RC4
  20. # weaved into it, one RC4 round per one MD5 round. In addition to the
  21. # stiched subroutine the script can generate standalone replacement
  22. # md5_block_asm_data_order and RC4. Below are performance numbers in
  23. # cycles per processed byte, less is better, for these the standalone
  24. # subroutines, sum of them, and stitched one:
  25. #
  26. # RC4 MD5 RC4+MD5 stitch gain
  27. # Opteron 6.5(*) 5.4 11.9 7.0 +70%(*)
  28. # Core2 6.5 5.8 12.3 7.7 +60%
  29. # Westmere 4.3 5.2 9.5 7.0 +36%
  30. # Sandy Bridge 4.2 5.5 9.7 6.8 +43%
  31. # Atom 9.3 6.5 15.8 11.1 +42%
  32. #
  33. # (*) rc4-x86_64.pl delivers 5.3 on Opteron, so real improvement
  34. # is +53%...
  35. my ($rc4,$md5)=(1,1); # what to generate?
  36. my $D="#" if (!$md5); # if set to "#", MD5 is stitched into RC4(),
  37. # but its result is discarded. Idea here is
  38. # to be able to use 'openssl speed rc4' for
  39. # benchmarking the stitched subroutine...
  40. my $flavour = shift;
  41. my $output = shift;
  42. if ($flavour =~ /\./) { $output = $flavour; undef $flavour; }
  43. my $win64=0; $win64=1 if ($flavour =~ /[nm]asm|mingw64/ || $output =~ /\.asm$/);
  44. $0 =~ m/(.*[\/\\])[^\/\\]+$/; my $dir=$1; my $xlate;
  45. ( $xlate="${dir}x86_64-xlate.pl" and -f $xlate ) or
  46. ( $xlate="${dir}../../perlasm/x86_64-xlate.pl" and -f $xlate) or
  47. die "can't locate x86_64-xlate.pl";
  48. open OUT,"| \"$^X\" $xlate $flavour $output";
  49. *STDOUT=*OUT;
  50. my ($dat,$in0,$out,$ctx,$inp,$len, $func,$nargs);
  51. if ($rc4 && !$md5) {
  52. ($dat,$len,$in0,$out) = ("%rdi","%rsi","%rdx","%rcx");
  53. $func="RC4"; $nargs=4;
  54. } elsif ($md5 && !$rc4) {
  55. ($ctx,$inp,$len) = ("%rdi","%rsi","%rdx");
  56. $func="md5_block_asm_data_order"; $nargs=3;
  57. } else {
  58. ($dat,$in0,$out,$ctx,$inp,$len) = ("%rdi","%rsi","%rdx","%rcx","%r8","%r9");
  59. $func="rc4_md5_enc"; $nargs=6;
  60. # void rc4_md5_enc(
  61. # RC4_KEY *key, #
  62. # const void *in0, # RC4 input
  63. # void *out, # RC4 output
  64. # MD5_CTX *ctx, #
  65. # const void *inp, # MD5 input
  66. # size_t len); # number of 64-byte blocks
  67. }
  68. my @K=( 0xd76aa478,0xe8c7b756,0x242070db,0xc1bdceee,
  69. 0xf57c0faf,0x4787c62a,0xa8304613,0xfd469501,
  70. 0x698098d8,0x8b44f7af,0xffff5bb1,0x895cd7be,
  71. 0x6b901122,0xfd987193,0xa679438e,0x49b40821,
  72. 0xf61e2562,0xc040b340,0x265e5a51,0xe9b6c7aa,
  73. 0xd62f105d,0x02441453,0xd8a1e681,0xe7d3fbc8,
  74. 0x21e1cde6,0xc33707d6,0xf4d50d87,0x455a14ed,
  75. 0xa9e3e905,0xfcefa3f8,0x676f02d9,0x8d2a4c8a,
  76. 0xfffa3942,0x8771f681,0x6d9d6122,0xfde5380c,
  77. 0xa4beea44,0x4bdecfa9,0xf6bb4b60,0xbebfbc70,
  78. 0x289b7ec6,0xeaa127fa,0xd4ef3085,0x04881d05,
  79. 0xd9d4d039,0xe6db99e5,0x1fa27cf8,0xc4ac5665,
  80. 0xf4292244,0x432aff97,0xab9423a7,0xfc93a039,
  81. 0x655b59c3,0x8f0ccc92,0xffeff47d,0x85845dd1,
  82. 0x6fa87e4f,0xfe2ce6e0,0xa3014314,0x4e0811a1,
  83. 0xf7537e82,0xbd3af235,0x2ad7d2bb,0xeb86d391 );
  84. my @V=("%r8d","%r9d","%r10d","%r11d"); # MD5 registers
  85. my $tmp="%r12d";
  86. my @XX=("%rbp","%rsi"); # RC4 registers
  87. my @TX=("%rax","%rbx");
  88. my $YY="%rcx";
  89. my $TY="%rdx";
  90. my $MOD=32; # 16, 32 or 64
  91. $code.=<<___;
  92. .text
  93. .align 16
  94. .globl $func
  95. .type $func,\@function,$nargs
  96. $func:
  97. cmp \$0,$len
  98. je .Labort
  99. push %rbx
  100. push %rbp
  101. push %r12
  102. push %r13
  103. push %r14
  104. push %r15
  105. sub \$40,%rsp
  106. .Lbody:
  107. ___
  108. if ($rc4) {
  109. $code.=<<___;
  110. $D#md5# mov $ctx,%r11 # reassign arguments
  111. mov $len,%r12
  112. mov $in0,%r13
  113. mov $out,%r14
  114. $D#md5# mov $inp,%r15
  115. ___
  116. $ctx="%r11" if ($md5); # reassign arguments
  117. $len="%r12";
  118. $in0="%r13";
  119. $out="%r14";
  120. $inp="%r15" if ($md5);
  121. $inp=$in0 if (!$md5);
  122. $code.=<<___;
  123. xor $XX[0],$XX[0]
  124. xor $YY,$YY
  125. lea 8($dat),$dat
  126. mov -8($dat),$XX[0]#b
  127. mov -4($dat),$YY#b
  128. inc $XX[0]#b
  129. sub $in0,$out
  130. movl ($dat,$XX[0],4),$TX[0]#d
  131. ___
  132. $code.=<<___ if (!$md5);
  133. xor $TX[1],$TX[1]
  134. test \$-128,$len
  135. jz .Loop1
  136. sub $XX[0],$TX[1]
  137. and \$`$MOD-1`,$TX[1]
  138. jz .Loop${MOD}_is_hot
  139. sub $TX[1],$len
  140. .Loop${MOD}_warmup:
  141. add $TX[0]#b,$YY#b
  142. movl ($dat,$YY,4),$TY#d
  143. movl $TX[0]#d,($dat,$YY,4)
  144. movl $TY#d,($dat,$XX[0],4)
  145. add $TY#b,$TX[0]#b
  146. inc $XX[0]#b
  147. movl ($dat,$TX[0],4),$TY#d
  148. movl ($dat,$XX[0],4),$TX[0]#d
  149. xorb ($in0),$TY#b
  150. movb $TY#b,($out,$in0)
  151. lea 1($in0),$in0
  152. dec $TX[1]
  153. jnz .Loop${MOD}_warmup
  154. mov $YY,$TX[1]
  155. xor $YY,$YY
  156. mov $TX[1]#b,$YY#b
  157. .Loop${MOD}_is_hot:
  158. mov $len,32(%rsp) # save original $len
  159. shr \$6,$len # number of 64-byte blocks
  160. ___
  161. if ($D && !$md5) { # stitch in dummy MD5
  162. $md5=1;
  163. $ctx="%r11";
  164. $inp="%r15";
  165. $code.=<<___;
  166. mov %rsp,$ctx
  167. mov $in0,$inp
  168. ___
  169. }
  170. }
  171. $code.=<<___;
  172. #rc4# add $TX[0]#b,$YY#b
  173. #rc4# lea ($dat,$XX[0],4),$XX[1]
  174. shl \$6,$len
  175. add $inp,$len # pointer to the end of input
  176. mov $len,16(%rsp)
  177. #md5# mov $ctx,24(%rsp) # save pointer to MD5_CTX
  178. #md5# mov 0*4($ctx),$V[0] # load current hash value from MD5_CTX
  179. #md5# mov 1*4($ctx),$V[1]
  180. #md5# mov 2*4($ctx),$V[2]
  181. #md5# mov 3*4($ctx),$V[3]
  182. jmp .Loop
  183. .align 16
  184. .Loop:
  185. #md5# mov $V[0],0*4(%rsp) # put aside current hash value
  186. #md5# mov $V[1],1*4(%rsp)
  187. #md5# mov $V[2],2*4(%rsp)
  188. #md5# mov $V[3],$tmp # forward reference
  189. #md5# mov $V[3],3*4(%rsp)
  190. ___
  191. sub R0 {
  192. my ($i,$a,$b,$c,$d)=@_;
  193. my @rot0=(7,12,17,22);
  194. my $j=$i%16;
  195. my $k=$i%$MOD;
  196. my $xmm="%xmm".($j&1);
  197. $code.=" movdqu ($in0),%xmm2\n" if ($rc4 && $j==15);
  198. $code.=" add \$$MOD,$XX[0]#b\n" if ($rc4 && $j==15 && $k==$MOD-1);
  199. $code.=" pxor $xmm,$xmm\n" if ($rc4 && $j<=1);
  200. $code.=<<___;
  201. #rc4# movl ($dat,$YY,4),$TY#d
  202. #md5# xor $c,$tmp
  203. #rc4# movl $TX[0]#d,($dat,$YY,4)
  204. #md5# and $b,$tmp
  205. #md5# add 4*`$j`($inp),$a
  206. #rc4# add $TY#b,$TX[0]#b
  207. #rc4# movl `4*(($k+1)%$MOD)`(`$k==$MOD-1?"$dat,$XX[0],4":"$XX[1]"`),$TX[1]#d
  208. #md5# add \$$K[$i],$a
  209. #md5# xor $d,$tmp
  210. #rc4# movz $TX[0]#b,$TX[0]#d
  211. #rc4# movl $TY#d,4*$k($XX[1])
  212. #md5# add $tmp,$a
  213. #rc4# add $TX[1]#b,$YY#b
  214. #md5# rol \$$rot0[$j%4],$a
  215. #md5# mov `$j==15?"$b":"$c"`,$tmp # forward reference
  216. #rc4# pinsrw \$`($j>>1)&7`,($dat,$TX[0],4),$xmm\n
  217. #md5# add $b,$a
  218. ___
  219. $code.=<<___ if ($rc4 && $j==15 && $k==$MOD-1);
  220. mov $YY,$XX[1]
  221. xor $YY,$YY # keyword to partial register
  222. mov $XX[1]#b,$YY#b
  223. lea ($dat,$XX[0],4),$XX[1]
  224. ___
  225. $code.=<<___ if ($rc4 && $j==15);
  226. psllq \$8,%xmm1
  227. pxor %xmm0,%xmm2
  228. pxor %xmm1,%xmm2
  229. ___
  230. }
  231. sub R1 {
  232. my ($i,$a,$b,$c,$d)=@_;
  233. my @rot1=(5,9,14,20);
  234. my $j=$i%16;
  235. my $k=$i%$MOD;
  236. my $xmm="%xmm".($j&1);
  237. $code.=" movdqu 16($in0),%xmm3\n" if ($rc4 && $j==15);
  238. $code.=" add \$$MOD,$XX[0]#b\n" if ($rc4 && $j==15 && $k==$MOD-1);
  239. $code.=" pxor $xmm,$xmm\n" if ($rc4 && $j<=1);
  240. $code.=<<___;
  241. #rc4# movl ($dat,$YY,4),$TY#d
  242. #md5# xor $b,$tmp
  243. #rc4# movl $TX[0]#d,($dat,$YY,4)
  244. #md5# and $d,$tmp
  245. #md5# add 4*`((1+5*$j)%16)`($inp),$a
  246. #rc4# add $TY#b,$TX[0]#b
  247. #rc4# movl `4*(($k+1)%$MOD)`(`$k==$MOD-1?"$dat,$XX[0],4":"$XX[1]"`),$TX[1]#d
  248. #md5# add \$$K[$i],$a
  249. #md5# xor $c,$tmp
  250. #rc4# movz $TX[0]#b,$TX[0]#d
  251. #rc4# movl $TY#d,4*$k($XX[1])
  252. #md5# add $tmp,$a
  253. #rc4# add $TX[1]#b,$YY#b
  254. #md5# rol \$$rot1[$j%4],$a
  255. #md5# mov `$j==15?"$c":"$b"`,$tmp # forward reference
  256. #rc4# pinsrw \$`($j>>1)&7`,($dat,$TX[0],4),$xmm\n
  257. #md5# add $b,$a
  258. ___
  259. $code.=<<___ if ($rc4 && $j==15 && $k==$MOD-1);
  260. mov $YY,$XX[1]
  261. xor $YY,$YY # keyword to partial register
  262. mov $XX[1]#b,$YY#b
  263. lea ($dat,$XX[0],4),$XX[1]
  264. ___
  265. $code.=<<___ if ($rc4 && $j==15);
  266. psllq \$8,%xmm1
  267. pxor %xmm0,%xmm3
  268. pxor %xmm1,%xmm3
  269. ___
  270. }
  271. sub R2 {
  272. my ($i,$a,$b,$c,$d)=@_;
  273. my @rot2=(4,11,16,23);
  274. my $j=$i%16;
  275. my $k=$i%$MOD;
  276. my $xmm="%xmm".($j&1);
  277. $code.=" movdqu 32($in0),%xmm4\n" if ($rc4 && $j==15);
  278. $code.=" add \$$MOD,$XX[0]#b\n" if ($rc4 && $j==15 && $k==$MOD-1);
  279. $code.=" pxor $xmm,$xmm\n" if ($rc4 && $j<=1);
  280. $code.=<<___;
  281. #rc4# movl ($dat,$YY,4),$TY#d
  282. #md5# xor $c,$tmp
  283. #rc4# movl $TX[0]#d,($dat,$YY,4)
  284. #md5# xor $b,$tmp
  285. #md5# add 4*`((5+3*$j)%16)`($inp),$a
  286. #rc4# add $TY#b,$TX[0]#b
  287. #rc4# movl `4*(($k+1)%$MOD)`(`$k==$MOD-1?"$dat,$XX[0],4":"$XX[1]"`),$TX[1]#d
  288. #md5# add \$$K[$i],$a
  289. #rc4# movz $TX[0]#b,$TX[0]#d
  290. #md5# add $tmp,$a
  291. #rc4# movl $TY#d,4*$k($XX[1])
  292. #rc4# add $TX[1]#b,$YY#b
  293. #md5# rol \$$rot2[$j%4],$a
  294. #md5# mov `$j==15?"\\\$-1":"$c"`,$tmp # forward reference
  295. #rc4# pinsrw \$`($j>>1)&7`,($dat,$TX[0],4),$xmm\n
  296. #md5# add $b,$a
  297. ___
  298. $code.=<<___ if ($rc4 && $j==15 && $k==$MOD-1);
  299. mov $YY,$XX[1]
  300. xor $YY,$YY # keyword to partial register
  301. mov $XX[1]#b,$YY#b
  302. lea ($dat,$XX[0],4),$XX[1]
  303. ___
  304. $code.=<<___ if ($rc4 && $j==15);
  305. psllq \$8,%xmm1
  306. pxor %xmm0,%xmm4
  307. pxor %xmm1,%xmm4
  308. ___
  309. }
  310. sub R3 {
  311. my ($i,$a,$b,$c,$d)=@_;
  312. my @rot3=(6,10,15,21);
  313. my $j=$i%16;
  314. my $k=$i%$MOD;
  315. my $xmm="%xmm".($j&1);
  316. $code.=" movdqu 48($in0),%xmm5\n" if ($rc4 && $j==15);
  317. $code.=" add \$$MOD,$XX[0]#b\n" if ($rc4 && $j==15 && $k==$MOD-1);
  318. $code.=" pxor $xmm,$xmm\n" if ($rc4 && $j<=1);
  319. $code.=<<___;
  320. #rc4# movl ($dat,$YY,4),$TY#d
  321. #md5# xor $d,$tmp
  322. #rc4# movl $TX[0]#d,($dat,$YY,4)
  323. #md5# or $b,$tmp
  324. #md5# add 4*`((7*$j)%16)`($inp),$a
  325. #rc4# add $TY#b,$TX[0]#b
  326. #rc4# movl `4*(($k+1)%$MOD)`(`$k==$MOD-1?"$dat,$XX[0],4":"$XX[1]"`),$TX[1]#d
  327. #md5# add \$$K[$i],$a
  328. #rc4# movz $TX[0]#b,$TX[0]#d
  329. #md5# xor $c,$tmp
  330. #rc4# movl $TY#d,4*$k($XX[1])
  331. #md5# add $tmp,$a
  332. #rc4# add $TX[1]#b,$YY#b
  333. #md5# rol \$$rot3[$j%4],$a
  334. #md5# mov \$-1,$tmp # forward reference
  335. #rc4# pinsrw \$`($j>>1)&7`,($dat,$TX[0],4),$xmm\n
  336. #md5# add $b,$a
  337. ___
  338. $code.=<<___ if ($rc4 && $j==15);
  339. mov $XX[0],$XX[1]
  340. xor $XX[0],$XX[0] # keyword to partial register
  341. mov $XX[1]#b,$XX[0]#b
  342. mov $YY,$XX[1]
  343. xor $YY,$YY # keyword to partial register
  344. mov $XX[1]#b,$YY#b
  345. lea ($dat,$XX[0],4),$XX[1]
  346. psllq \$8,%xmm1
  347. pxor %xmm0,%xmm5
  348. pxor %xmm1,%xmm5
  349. ___
  350. }
  351. my $i=0;
  352. for(;$i<16;$i++) { R0($i,@V); unshift(@V,pop(@V)); push(@TX,shift(@TX)); }
  353. for(;$i<32;$i++) { R1($i,@V); unshift(@V,pop(@V)); push(@TX,shift(@TX)); }
  354. for(;$i<48;$i++) { R2($i,@V); unshift(@V,pop(@V)); push(@TX,shift(@TX)); }
  355. for(;$i<64;$i++) { R3($i,@V); unshift(@V,pop(@V)); push(@TX,shift(@TX)); }
  356. $code.=<<___;
  357. #md5# add 0*4(%rsp),$V[0] # accumulate hash value
  358. #md5# add 1*4(%rsp),$V[1]
  359. #md5# add 2*4(%rsp),$V[2]
  360. #md5# add 3*4(%rsp),$V[3]
  361. #rc4# movdqu %xmm2,($out,$in0) # write RC4 output
  362. #rc4# movdqu %xmm3,16($out,$in0)
  363. #rc4# movdqu %xmm4,32($out,$in0)
  364. #rc4# movdqu %xmm5,48($out,$in0)
  365. #md5# lea 64($inp),$inp
  366. #rc4# lea 64($in0),$in0
  367. cmp 16(%rsp),$inp # are we done?
  368. jb .Loop
  369. #md5# mov 24(%rsp),$len # restore pointer to MD5_CTX
  370. #rc4# sub $TX[0]#b,$YY#b # correct $YY
  371. #md5# mov $V[0],0*4($len) # write MD5_CTX
  372. #md5# mov $V[1],1*4($len)
  373. #md5# mov $V[2],2*4($len)
  374. #md5# mov $V[3],3*4($len)
  375. ___
  376. $code.=<<___ if ($rc4 && (!$md5 || $D));
  377. mov 32(%rsp),$len # restore original $len
  378. and \$63,$len # remaining bytes
  379. jnz .Loop1
  380. jmp .Ldone
  381. .align 16
  382. .Loop1:
  383. add $TX[0]#b,$YY#b
  384. movl ($dat,$YY,4),$TY#d
  385. movl $TX[0]#d,($dat,$YY,4)
  386. movl $TY#d,($dat,$XX[0],4)
  387. add $TY#b,$TX[0]#b
  388. inc $XX[0]#b
  389. movl ($dat,$TX[0],4),$TY#d
  390. movl ($dat,$XX[0],4),$TX[0]#d
  391. xorb ($in0),$TY#b
  392. movb $TY#b,($out,$in0)
  393. lea 1($in0),$in0
  394. dec $len
  395. jnz .Loop1
  396. .Ldone:
  397. ___
  398. $code.=<<___;
  399. #rc4# sub \$1,$XX[0]#b
  400. #rc4# movl $XX[0]#d,-8($dat)
  401. #rc4# movl $YY#d,-4($dat)
  402. mov 40(%rsp),%r15
  403. mov 48(%rsp),%r14
  404. mov 56(%rsp),%r13
  405. mov 64(%rsp),%r12
  406. mov 72(%rsp),%rbp
  407. mov 80(%rsp),%rbx
  408. lea 88(%rsp),%rsp
  409. .Lepilogue:
  410. .Labort:
  411. ret
  412. .size $func,.-$func
  413. ___
  414. if ($rc4 && $D) { # sole purpose of this section is to provide
  415. # option to use the generated module as drop-in
  416. # replacement for rc4-x86_64.pl for debugging
  417. # and testing purposes...
  418. my ($idx,$ido)=("%r8","%r9");
  419. my ($dat,$len,$inp)=("%rdi","%rsi","%rdx");
  420. $code.=<<___;
  421. .globl RC4_set_key
  422. .type RC4_set_key,\@function,3
  423. .align 16
  424. RC4_set_key:
  425. lea 8($dat),$dat
  426. lea ($inp,$len),$inp
  427. neg $len
  428. mov $len,%rcx
  429. xor %eax,%eax
  430. xor $ido,$ido
  431. xor %r10,%r10
  432. xor %r11,%r11
  433. jmp .Lw1stloop
  434. .align 16
  435. .Lw1stloop:
  436. mov %eax,($dat,%rax,4)
  437. add \$1,%al
  438. jnc .Lw1stloop
  439. xor $ido,$ido
  440. xor $idx,$idx
  441. .align 16
  442. .Lw2ndloop:
  443. mov ($dat,$ido,4),%r10d
  444. add ($inp,$len,1),$idx#b
  445. add %r10b,$idx#b
  446. add \$1,$len
  447. mov ($dat,$idx,4),%r11d
  448. cmovz %rcx,$len
  449. mov %r10d,($dat,$idx,4)
  450. mov %r11d,($dat,$ido,4)
  451. add \$1,$ido#b
  452. jnc .Lw2ndloop
  453. xor %eax,%eax
  454. mov %eax,-8($dat)
  455. mov %eax,-4($dat)
  456. ret
  457. .size RC4_set_key,.-RC4_set_key
  458. .globl RC4_options
  459. .type RC4_options,\@abi-omnipotent
  460. .align 16
  461. RC4_options:
  462. lea .Lopts(%rip),%rax
  463. ret
  464. .align 64
  465. .Lopts:
  466. .asciz "rc4(64x,int)"
  467. .align 64
  468. .size RC4_options,.-RC4_options
  469. ___
  470. }
  471. # EXCEPTION_DISPOSITION handler (EXCEPTION_RECORD *rec,ULONG64 frame,
  472. # CONTEXT *context,DISPATCHER_CONTEXT *disp)
  473. if ($win64) {
  474. my $rec="%rcx";
  475. my $frame="%rdx";
  476. my $context="%r8";
  477. my $disp="%r9";
  478. $code.=<<___;
  479. .extern __imp_RtlVirtualUnwind
  480. .type se_handler,\@abi-omnipotent
  481. .align 16
  482. se_handler:
  483. push %rsi
  484. push %rdi
  485. push %rbx
  486. push %rbp
  487. push %r12
  488. push %r13
  489. push %r14
  490. push %r15
  491. pushfq
  492. sub \$64,%rsp
  493. mov 120($context),%rax # pull context->Rax
  494. mov 248($context),%rbx # pull context->Rip
  495. lea .Lbody(%rip),%r10
  496. cmp %r10,%rbx # context->Rip<.Lbody
  497. jb .Lin_prologue
  498. mov 152($context),%rax # pull context->Rsp
  499. lea .Lepilogue(%rip),%r10
  500. cmp %r10,%rbx # context->Rip>=.Lepilogue
  501. jae .Lin_prologue
  502. mov 40(%rax),%r15
  503. mov 48(%rax),%r14
  504. mov 56(%rax),%r13
  505. mov 64(%rax),%r12
  506. mov 72(%rax),%rbp
  507. mov 80(%rax),%rbx
  508. lea 88(%rax),%rax
  509. mov %rbx,144($context) # restore context->Rbx
  510. mov %rbp,160($context) # restore context->Rbp
  511. mov %r12,216($context) # restore context->R12
  512. mov %r13,224($context) # restore context->R12
  513. mov %r14,232($context) # restore context->R14
  514. mov %r15,240($context) # restore context->R15
  515. .Lin_prologue:
  516. mov 8(%rax),%rdi
  517. mov 16(%rax),%rsi
  518. mov %rax,152($context) # restore context->Rsp
  519. mov %rsi,168($context) # restore context->Rsi
  520. mov %rdi,176($context) # restore context->Rdi
  521. mov 40($disp),%rdi # disp->ContextRecord
  522. mov $context,%rsi # context
  523. mov \$154,%ecx # sizeof(CONTEXT)
  524. .long 0xa548f3fc # cld; rep movsq
  525. mov $disp,%rsi
  526. xor %rcx,%rcx # arg1, UNW_FLAG_NHANDLER
  527. mov 8(%rsi),%rdx # arg2, disp->ImageBase
  528. mov 0(%rsi),%r8 # arg3, disp->ControlPc
  529. mov 16(%rsi),%r9 # arg4, disp->FunctionEntry
  530. mov 40(%rsi),%r10 # disp->ContextRecord
  531. lea 56(%rsi),%r11 # &disp->HandlerData
  532. lea 24(%rsi),%r12 # &disp->EstablisherFrame
  533. mov %r10,32(%rsp) # arg5
  534. mov %r11,40(%rsp) # arg6
  535. mov %r12,48(%rsp) # arg7
  536. mov %rcx,56(%rsp) # arg8, (NULL)
  537. call *__imp_RtlVirtualUnwind(%rip)
  538. mov \$1,%eax # ExceptionContinueSearch
  539. add \$64,%rsp
  540. popfq
  541. pop %r15
  542. pop %r14
  543. pop %r13
  544. pop %r12
  545. pop %rbp
  546. pop %rbx
  547. pop %rdi
  548. pop %rsi
  549. ret
  550. .size se_handler,.-se_handler
  551. .section .pdata
  552. .align 4
  553. .rva .LSEH_begin_$func
  554. .rva .LSEH_end_$func
  555. .rva .LSEH_info_$func
  556. .section .xdata
  557. .align 8
  558. .LSEH_info_$func:
  559. .byte 9,0,0,0
  560. .rva se_handler
  561. ___
  562. }
  563. sub reg_part {
  564. my ($reg,$conv)=@_;
  565. if ($reg =~ /%r[0-9]+/) { $reg .= $conv; }
  566. elsif ($conv eq "b") { $reg =~ s/%[er]([^x]+)x?/%$1l/; }
  567. elsif ($conv eq "w") { $reg =~ s/%[er](.+)/%$1/; }
  568. elsif ($conv eq "d") { $reg =~ s/%[er](.+)/%e$1/; }
  569. return $reg;
  570. }
  571. $code =~ s/(%[a-z0-9]+)#([bwd])/reg_part($1,$2)/gem;
  572. $code =~ s/\`([^\`]*)\`/eval $1/gem;
  573. $code =~ s/pinsrw\s+\$0,/movd /gm;
  574. $code =~ s/#md5#//gm if ($md5);
  575. $code =~ s/#rc4#//gm if ($rc4);
  576. print $code;
  577. close STDOUT;