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sha512-mips.pl 12 KB

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  1. #!/usr/bin/env perl
  2. # ====================================================================
  3. # Written by Andy Polyakov <appro@fy.chalmers.se> for the OpenSSL
  4. # project. The module is, however, dual licensed under OpenSSL and
  5. # CRYPTOGAMS licenses depending on where you obtain it. For further
  6. # details see http://www.openssl.org/~appro/cryptogams/.
  7. # ====================================================================
  8. # SHA2 block procedures for MIPS.
  9. # October 2010.
  10. #
  11. # SHA256 performance improvement on MIPS R5000 CPU is ~27% over gcc-
  12. # generated code in o32 build and ~55% in n32/64 build. SHA512 [which
  13. # for now can only be compiled for MIPS64 ISA] improvement is modest
  14. # ~17%, but it comes for free, because it's same instruction sequence.
  15. # Improvement coefficients are for aligned input.
  16. ######################################################################
  17. # There is a number of MIPS ABI in use, O32 and N32/64 are most
  18. # widely used. Then there is a new contender: NUBI. It appears that if
  19. # one picks the latter, it's possible to arrange code in ABI neutral
  20. # manner. Therefore let's stick to NUBI register layout:
  21. #
  22. ($zero,$at,$t0,$t1,$t2)=map("\$$_",(0..2,24,25));
  23. ($a0,$a1,$a2,$a3,$a4,$a5,$a6,$a7)=map("\$$_",(4..11));
  24. ($s0,$s1,$s2,$s3,$s4,$s5,$s6,$s7,$s8,$s9,$s10,$s11)=map("\$$_",(12..23));
  25. ($gp,$tp,$sp,$fp,$ra)=map("\$$_",(3,28..31));
  26. #
  27. # The return value is placed in $a0. Following coding rules facilitate
  28. # interoperability:
  29. #
  30. # - never ever touch $tp, "thread pointer", former $gp [o32 can be
  31. # excluded from the rule, because it's specified volatile];
  32. # - copy return value to $t0, former $v0 [or to $a0 if you're adapting
  33. # old code];
  34. # - on O32 populate $a4-$a7 with 'lw $aN,4*N($sp)' if necessary;
  35. #
  36. # For reference here is register layout for N32/64 MIPS ABIs:
  37. #
  38. # ($zero,$at,$v0,$v1)=map("\$$_",(0..3));
  39. # ($a0,$a1,$a2,$a3,$a4,$a5,$a6,$a7)=map("\$$_",(4..11));
  40. # ($t0,$t1,$t2,$t3,$t8,$t9)=map("\$$_",(12..15,24,25));
  41. # ($s0,$s1,$s2,$s3,$s4,$s5,$s6,$s7)=map("\$$_",(16..23));
  42. # ($gp,$sp,$fp,$ra)=map("\$$_",(28..31));
  43. #
  44. $flavour = shift || "o32"; # supported flavours are o32,n32,64,nubi32,nubi64
  45. if ($flavour =~ /64|n32/i) {
  46. $PTR_ADD="dadd"; # incidentally works even on n32
  47. $PTR_SUB="dsub"; # incidentally works even on n32
  48. $REG_S="sd";
  49. $REG_L="ld";
  50. $PTR_SLL="dsll"; # incidentally works even on n32
  51. $SZREG=8;
  52. } else {
  53. $PTR_ADD="add";
  54. $PTR_SUB="sub";
  55. $REG_S="sw";
  56. $REG_L="lw";
  57. $PTR_SLL="sll";
  58. $SZREG=4;
  59. }
  60. $pf = ($flavour =~ /nubi/i) ? $t0 : $t2;
  61. #
  62. # <appro@openssl.org>
  63. #
  64. ######################################################################
  65. $big_endian=(`echo MIPSEL | $ENV{CC} -E -`=~/MIPSEL/)?1:0;
  66. for (@ARGV) { $output=$_ if (/^\w[\w\-]*\.\w+$/); }
  67. open STDOUT,">$output";
  68. if (!defined($big_endian)) { $big_endian=(unpack('L',pack('N',1))==1); }
  69. if ($output =~ /512/) {
  70. $label="512";
  71. $SZ=8;
  72. $LD="ld"; # load from memory
  73. $ST="sd"; # store to memory
  74. $SLL="dsll"; # shift left logical
  75. $SRL="dsrl"; # shift right logical
  76. $ADDU="daddu";
  77. @Sigma0=(28,34,39);
  78. @Sigma1=(14,18,41);
  79. @sigma0=( 7, 1, 8); # right shift first
  80. @sigma1=( 6,19,61); # right shift first
  81. $lastK=0x817;
  82. $rounds=80;
  83. } else {
  84. $label="256";
  85. $SZ=4;
  86. $LD="lw"; # load from memory
  87. $ST="sw"; # store to memory
  88. $SLL="sll"; # shift left logical
  89. $SRL="srl"; # shift right logical
  90. $ADDU="addu";
  91. @Sigma0=( 2,13,22);
  92. @Sigma1=( 6,11,25);
  93. @sigma0=( 3, 7,18); # right shift first
  94. @sigma1=(10,17,19); # right shift first
  95. $lastK=0x8f2;
  96. $rounds=64;
  97. }
  98. $MSB = $big_endian ? 0 : ($SZ-1);
  99. $LSB = ($SZ-1)&~$MSB;
  100. @V=($A,$B,$C,$D,$E,$F,$G,$H)=map("\$$_",(1,2,3,7,24,25,30,31));
  101. @X=map("\$$_",(8..23));
  102. $ctx=$a0;
  103. $inp=$a1;
  104. $len=$a2; $Ktbl=$len;
  105. sub BODY_00_15 {
  106. my ($i,$a,$b,$c,$d,$e,$f,$g,$h)=@_;
  107. my ($T1,$tmp0,$tmp1,$tmp2)=(@X[4],@X[5],@X[6],@X[7]);
  108. $code.=<<___ if ($i<15);
  109. ${LD}l @X[1],`($i+1)*$SZ+$MSB`($inp)
  110. ${LD}r @X[1],`($i+1)*$SZ+$LSB`($inp)
  111. ___
  112. $code.=<<___ if (!$big_endian && $i<16 && $SZ==4);
  113. srl $tmp0,@X[0],24 # byte swap($i)
  114. srl $tmp1,@X[0],8
  115. andi $tmp2,@X[0],0xFF00
  116. sll @X[0],@X[0],24
  117. andi $tmp1,0xFF00
  118. sll $tmp2,$tmp2,8
  119. or @X[0],$tmp0
  120. or $tmp1,$tmp2
  121. or @X[0],$tmp1
  122. ___
  123. $code.=<<___ if (!$big_endian && $i<16 && $SZ==8);
  124. ori $tmp0,$zero,0xFF
  125. dsll $tmp2,$tmp0,32
  126. or $tmp0,$tmp2 # 0x000000FF000000FF
  127. and $tmp1,@X[0],$tmp0 # byte swap($i)
  128. dsrl $tmp2,@X[0],24
  129. dsll $tmp1,24
  130. and $tmp2,$tmp0
  131. dsll $tmp0,8 # 0x0000FF000000FF00
  132. or $tmp1,$tmp2
  133. and $tmp2,@X[0],$tmp0
  134. dsrl @X[0],8
  135. dsll $tmp2,8
  136. and @X[0],$tmp0
  137. or $tmp1,$tmp2
  138. or @X[0],$tmp1
  139. dsrl $tmp1,@X[0],32
  140. dsll @X[0],32
  141. or @X[0],$tmp1
  142. ___
  143. $code.=<<___;
  144. $ADDU $T1,$X[0],$h # $i
  145. $SRL $h,$e,@Sigma1[0]
  146. xor $tmp2,$f,$g
  147. $SLL $tmp1,$e,`$SZ*8-@Sigma1[2]`
  148. and $tmp2,$e
  149. $SRL $tmp0,$e,@Sigma1[1]
  150. xor $h,$tmp1
  151. $SLL $tmp1,$e,`$SZ*8-@Sigma1[1]`
  152. xor $h,$tmp0
  153. $SRL $tmp0,$e,@Sigma1[2]
  154. xor $h,$tmp1
  155. $SLL $tmp1,$e,`$SZ*8-@Sigma1[0]`
  156. xor $h,$tmp0
  157. xor $tmp2,$g # Ch(e,f,g)
  158. xor $tmp0,$tmp1,$h # Sigma1(e)
  159. $SRL $h,$a,@Sigma0[0]
  160. $ADDU $T1,$tmp2
  161. $LD $tmp2,`$i*$SZ`($Ktbl) # K[$i]
  162. $SLL $tmp1,$a,`$SZ*8-@Sigma0[2]`
  163. $ADDU $T1,$tmp0
  164. $SRL $tmp0,$a,@Sigma0[1]
  165. xor $h,$tmp1
  166. $SLL $tmp1,$a,`$SZ*8-@Sigma0[1]`
  167. xor $h,$tmp0
  168. $SRL $tmp0,$a,@Sigma0[2]
  169. xor $h,$tmp1
  170. $SLL $tmp1,$a,`$SZ*8-@Sigma0[0]`
  171. xor $h,$tmp0
  172. $ST @X[0],`($i%16)*$SZ`($sp) # offload to ring buffer
  173. xor $h,$tmp1 # Sigma0(a)
  174. or $tmp0,$a,$b
  175. and $tmp1,$a,$b
  176. and $tmp0,$c
  177. or $tmp1,$tmp0 # Maj(a,b,c)
  178. $ADDU $T1,$tmp2 # +=K[$i]
  179. $ADDU $h,$tmp1
  180. $ADDU $d,$T1
  181. $ADDU $h,$T1
  182. ___
  183. $code.=<<___ if ($i>=13);
  184. $LD @X[3],`(($i+3)%16)*$SZ`($sp) # prefetch from ring buffer
  185. ___
  186. }
  187. sub BODY_16_XX {
  188. my $i=@_[0];
  189. my ($tmp0,$tmp1,$tmp2,$tmp3)=(@X[4],@X[5],@X[6],@X[7]);
  190. $code.=<<___;
  191. $SRL $tmp2,@X[1],@sigma0[0] # Xupdate($i)
  192. $ADDU @X[0],@X[9] # +=X[i+9]
  193. $SLL $tmp1,@X[1],`$SZ*8-@sigma0[2]`
  194. $SRL $tmp0,@X[1],@sigma0[1]
  195. xor $tmp2,$tmp1
  196. $SLL $tmp1,`@sigma0[2]-@sigma0[1]`
  197. xor $tmp2,$tmp0
  198. $SRL $tmp0,@X[1],@sigma0[2]
  199. xor $tmp2,$tmp1
  200. $SRL $tmp3,@X[14],@sigma1[0]
  201. xor $tmp2,$tmp0 # sigma0(X[i+1])
  202. $SLL $tmp1,@X[14],`$SZ*8-@sigma1[2]`
  203. $ADDU @X[0],$tmp2
  204. $SRL $tmp0,@X[14],@sigma1[1]
  205. xor $tmp3,$tmp1
  206. $SLL $tmp1,`@sigma1[2]-@sigma1[1]`
  207. xor $tmp3,$tmp0
  208. $SRL $tmp0,@X[14],@sigma1[2]
  209. xor $tmp3,$tmp1
  210. xor $tmp3,$tmp0 # sigma1(X[i+14])
  211. $ADDU @X[0],$tmp3
  212. ___
  213. &BODY_00_15(@_);
  214. }
  215. $FRAMESIZE=16*$SZ+16*$SZREG;
  216. $SAVED_REGS_MASK = ($flavour =~ /nubi/i) ? 0xc0fff008 : 0xc0ff0000;
  217. $code.=<<___;
  218. #ifdef OPENSSL_FIPSCANISTER
  219. # include <openssl/fipssyms.h>
  220. #endif
  221. .text
  222. .set noat
  223. #if !defined(__mips_eabi) && (!defined(__vxworks) || defined(__pic__))
  224. .option pic2
  225. #endif
  226. .align 5
  227. .globl sha${label}_block_data_order
  228. .ent sha${label}_block_data_order
  229. sha${label}_block_data_order:
  230. .frame $sp,$FRAMESIZE,$ra
  231. .mask $SAVED_REGS_MASK,-$SZREG
  232. .set noreorder
  233. ___
  234. $code.=<<___ if ($flavour =~ /o32/i); # o32 PIC-ification
  235. .cpload $pf
  236. ___
  237. $code.=<<___;
  238. $PTR_SUB $sp,$FRAMESIZE
  239. $REG_S $ra,$FRAMESIZE-1*$SZREG($sp)
  240. $REG_S $fp,$FRAMESIZE-2*$SZREG($sp)
  241. $REG_S $s11,$FRAMESIZE-3*$SZREG($sp)
  242. $REG_S $s10,$FRAMESIZE-4*$SZREG($sp)
  243. $REG_S $s9,$FRAMESIZE-5*$SZREG($sp)
  244. $REG_S $s8,$FRAMESIZE-6*$SZREG($sp)
  245. $REG_S $s7,$FRAMESIZE-7*$SZREG($sp)
  246. $REG_S $s6,$FRAMESIZE-8*$SZREG($sp)
  247. $REG_S $s5,$FRAMESIZE-9*$SZREG($sp)
  248. $REG_S $s4,$FRAMESIZE-10*$SZREG($sp)
  249. ___
  250. $code.=<<___ if ($flavour =~ /nubi/i); # optimize non-nubi prologue
  251. $REG_S $s3,$FRAMESIZE-11*$SZREG($sp)
  252. $REG_S $s2,$FRAMESIZE-12*$SZREG($sp)
  253. $REG_S $s1,$FRAMESIZE-13*$SZREG($sp)
  254. $REG_S $s0,$FRAMESIZE-14*$SZREG($sp)
  255. $REG_S $gp,$FRAMESIZE-15*$SZREG($sp)
  256. ___
  257. $code.=<<___;
  258. $PTR_SLL @X[15],$len,`log(16*$SZ)/log(2)`
  259. ___
  260. $code.=<<___ if ($flavour !~ /o32/i); # non-o32 PIC-ification
  261. .cplocal $Ktbl
  262. .cpsetup $pf,$zero,sha${label}_block_data_order
  263. ___
  264. $code.=<<___;
  265. .set reorder
  266. la $Ktbl,K${label} # PIC-ified 'load address'
  267. $LD $A,0*$SZ($ctx) # load context
  268. $LD $B,1*$SZ($ctx)
  269. $LD $C,2*$SZ($ctx)
  270. $LD $D,3*$SZ($ctx)
  271. $LD $E,4*$SZ($ctx)
  272. $LD $F,5*$SZ($ctx)
  273. $LD $G,6*$SZ($ctx)
  274. $LD $H,7*$SZ($ctx)
  275. $PTR_ADD @X[15],$inp # pointer to the end of input
  276. $REG_S @X[15],16*$SZ($sp)
  277. b .Loop
  278. .align 5
  279. .Loop:
  280. ${LD}l @X[0],$MSB($inp)
  281. ${LD}r @X[0],$LSB($inp)
  282. ___
  283. for ($i=0;$i<16;$i++)
  284. { &BODY_00_15($i,@V); unshift(@V,pop(@V)); push(@X,shift(@X)); }
  285. $code.=<<___;
  286. b .L16_xx
  287. .align 4
  288. .L16_xx:
  289. ___
  290. for (;$i<32;$i++)
  291. { &BODY_16_XX($i,@V); unshift(@V,pop(@V)); push(@X,shift(@X)); }
  292. $code.=<<___;
  293. and @X[6],0xfff
  294. li @X[7],$lastK
  295. .set noreorder
  296. bne @X[6],@X[7],.L16_xx
  297. $PTR_ADD $Ktbl,16*$SZ # Ktbl+=16
  298. $REG_L @X[15],16*$SZ($sp) # restore pointer to the end of input
  299. $LD @X[0],0*$SZ($ctx)
  300. $LD @X[1],1*$SZ($ctx)
  301. $LD @X[2],2*$SZ($ctx)
  302. $PTR_ADD $inp,16*$SZ
  303. $LD @X[3],3*$SZ($ctx)
  304. $ADDU $A,@X[0]
  305. $LD @X[4],4*$SZ($ctx)
  306. $ADDU $B,@X[1]
  307. $LD @X[5],5*$SZ($ctx)
  308. $ADDU $C,@X[2]
  309. $LD @X[6],6*$SZ($ctx)
  310. $ADDU $D,@X[3]
  311. $LD @X[7],7*$SZ($ctx)
  312. $ADDU $E,@X[4]
  313. $ST $A,0*$SZ($ctx)
  314. $ADDU $F,@X[5]
  315. $ST $B,1*$SZ($ctx)
  316. $ADDU $G,@X[6]
  317. $ST $C,2*$SZ($ctx)
  318. $ADDU $H,@X[7]
  319. $ST $D,3*$SZ($ctx)
  320. $ST $E,4*$SZ($ctx)
  321. $ST $F,5*$SZ($ctx)
  322. $ST $G,6*$SZ($ctx)
  323. $ST $H,7*$SZ($ctx)
  324. bne $inp,@X[15],.Loop
  325. $PTR_SUB $Ktbl,`($rounds-16)*$SZ` # rewind $Ktbl
  326. $REG_L $ra,$FRAMESIZE-1*$SZREG($sp)
  327. $REG_L $fp,$FRAMESIZE-2*$SZREG($sp)
  328. $REG_L $s11,$FRAMESIZE-3*$SZREG($sp)
  329. $REG_L $s10,$FRAMESIZE-4*$SZREG($sp)
  330. $REG_L $s9,$FRAMESIZE-5*$SZREG($sp)
  331. $REG_L $s8,$FRAMESIZE-6*$SZREG($sp)
  332. $REG_L $s7,$FRAMESIZE-7*$SZREG($sp)
  333. $REG_L $s6,$FRAMESIZE-8*$SZREG($sp)
  334. $REG_L $s5,$FRAMESIZE-9*$SZREG($sp)
  335. $REG_L $s4,$FRAMESIZE-10*$SZREG($sp)
  336. ___
  337. $code.=<<___ if ($flavour =~ /nubi/i);
  338. $REG_L $s3,$FRAMESIZE-11*$SZREG($sp)
  339. $REG_L $s2,$FRAMESIZE-12*$SZREG($sp)
  340. $REG_L $s1,$FRAMESIZE-13*$SZREG($sp)
  341. $REG_L $s0,$FRAMESIZE-14*$SZREG($sp)
  342. $REG_L $gp,$FRAMESIZE-15*$SZREG($sp)
  343. ___
  344. $code.=<<___;
  345. jr $ra
  346. $PTR_ADD $sp,$FRAMESIZE
  347. .end sha${label}_block_data_order
  348. .rdata
  349. .align 5
  350. K${label}:
  351. ___
  352. if ($SZ==4) {
  353. $code.=<<___;
  354. .word 0x428a2f98, 0x71374491, 0xb5c0fbcf, 0xe9b5dba5
  355. .word 0x3956c25b, 0x59f111f1, 0x923f82a4, 0xab1c5ed5
  356. .word 0xd807aa98, 0x12835b01, 0x243185be, 0x550c7dc3
  357. .word 0x72be5d74, 0x80deb1fe, 0x9bdc06a7, 0xc19bf174
  358. .word 0xe49b69c1, 0xefbe4786, 0x0fc19dc6, 0x240ca1cc
  359. .word 0x2de92c6f, 0x4a7484aa, 0x5cb0a9dc, 0x76f988da
  360. .word 0x983e5152, 0xa831c66d, 0xb00327c8, 0xbf597fc7
  361. .word 0xc6e00bf3, 0xd5a79147, 0x06ca6351, 0x14292967
  362. .word 0x27b70a85, 0x2e1b2138, 0x4d2c6dfc, 0x53380d13
  363. .word 0x650a7354, 0x766a0abb, 0x81c2c92e, 0x92722c85
  364. .word 0xa2bfe8a1, 0xa81a664b, 0xc24b8b70, 0xc76c51a3
  365. .word 0xd192e819, 0xd6990624, 0xf40e3585, 0x106aa070
  366. .word 0x19a4c116, 0x1e376c08, 0x2748774c, 0x34b0bcb5
  367. .word 0x391c0cb3, 0x4ed8aa4a, 0x5b9cca4f, 0x682e6ff3
  368. .word 0x748f82ee, 0x78a5636f, 0x84c87814, 0x8cc70208
  369. .word 0x90befffa, 0xa4506ceb, 0xbef9a3f7, 0xc67178f2
  370. ___
  371. } else {
  372. $code.=<<___;
  373. .dword 0x428a2f98d728ae22, 0x7137449123ef65cd
  374. .dword 0xb5c0fbcfec4d3b2f, 0xe9b5dba58189dbbc
  375. .dword 0x3956c25bf348b538, 0x59f111f1b605d019
  376. .dword 0x923f82a4af194f9b, 0xab1c5ed5da6d8118
  377. .dword 0xd807aa98a3030242, 0x12835b0145706fbe
  378. .dword 0x243185be4ee4b28c, 0x550c7dc3d5ffb4e2
  379. .dword 0x72be5d74f27b896f, 0x80deb1fe3b1696b1
  380. .dword 0x9bdc06a725c71235, 0xc19bf174cf692694
  381. .dword 0xe49b69c19ef14ad2, 0xefbe4786384f25e3
  382. .dword 0x0fc19dc68b8cd5b5, 0x240ca1cc77ac9c65
  383. .dword 0x2de92c6f592b0275, 0x4a7484aa6ea6e483
  384. .dword 0x5cb0a9dcbd41fbd4, 0x76f988da831153b5
  385. .dword 0x983e5152ee66dfab, 0xa831c66d2db43210
  386. .dword 0xb00327c898fb213f, 0xbf597fc7beef0ee4
  387. .dword 0xc6e00bf33da88fc2, 0xd5a79147930aa725
  388. .dword 0x06ca6351e003826f, 0x142929670a0e6e70
  389. .dword 0x27b70a8546d22ffc, 0x2e1b21385c26c926
  390. .dword 0x4d2c6dfc5ac42aed, 0x53380d139d95b3df
  391. .dword 0x650a73548baf63de, 0x766a0abb3c77b2a8
  392. .dword 0x81c2c92e47edaee6, 0x92722c851482353b
  393. .dword 0xa2bfe8a14cf10364, 0xa81a664bbc423001
  394. .dword 0xc24b8b70d0f89791, 0xc76c51a30654be30
  395. .dword 0xd192e819d6ef5218, 0xd69906245565a910
  396. .dword 0xf40e35855771202a, 0x106aa07032bbd1b8
  397. .dword 0x19a4c116b8d2d0c8, 0x1e376c085141ab53
  398. .dword 0x2748774cdf8eeb99, 0x34b0bcb5e19b48a8
  399. .dword 0x391c0cb3c5c95a63, 0x4ed8aa4ae3418acb
  400. .dword 0x5b9cca4f7763e373, 0x682e6ff3d6b2b8a3
  401. .dword 0x748f82ee5defb2fc, 0x78a5636f43172f60
  402. .dword 0x84c87814a1f0ab72, 0x8cc702081a6439ec
  403. .dword 0x90befffa23631e28, 0xa4506cebde82bde9
  404. .dword 0xbef9a3f7b2c67915, 0xc67178f2e372532b
  405. .dword 0xca273eceea26619c, 0xd186b8c721c0c207
  406. .dword 0xeada7dd6cde0eb1e, 0xf57d4f7fee6ed178
  407. .dword 0x06f067aa72176fba, 0x0a637dc5a2c898a6
  408. .dword 0x113f9804bef90dae, 0x1b710b35131c471b
  409. .dword 0x28db77f523047d84, 0x32caab7b40c72493
  410. .dword 0x3c9ebe0a15c9bebc, 0x431d67c49c100d4c
  411. .dword 0x4cc5d4becb3e42b6, 0x597f299cfc657e2a
  412. .dword 0x5fcb6fab3ad6faec, 0x6c44198c4a475817
  413. ___
  414. }
  415. $code.=<<___;
  416. .asciiz "SHA${label} for MIPS, CRYPTOGAMS by <appro\@openssl.org>"
  417. .align 5
  418. ___
  419. $code =~ s/\`([^\`]*)\`/eval $1/gem;
  420. print $code;
  421. close STDOUT;