sha1-armv8.pl 7.4 KB

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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. #
  10. # SHA1 for ARMv8.
  11. #
  12. # Performance in cycles per processed byte and improvement coefficient
  13. # over code generated with "default" compiler:
  14. #
  15. # hardware-assisted software(*)
  16. # Apple A7 2.31 4.13 (+14%)
  17. # Cortex-A53 2.19 8.73 (+108%)
  18. # Cortex-A57 2.35 7.88 (+74%)
  19. #
  20. # (*) Software results are presented mostly for reference purposes.
  21. $flavour = shift;
  22. $output = shift;
  23. $0 =~ m/(.*[\/\\])[^\/\\]+$/; $dir=$1;
  24. ( $xlate="${dir}arm-xlate.pl" and -f $xlate ) or
  25. ( $xlate="${dir}../../perlasm/arm-xlate.pl" and -f $xlate) or
  26. die "can't locate arm-xlate.pl";
  27. open OUT,"| \"$^X\" $xlate $flavour $output";
  28. *STDOUT=*OUT;
  29. ($ctx,$inp,$num)=("x0","x1","x2");
  30. @Xw=map("w$_",(3..17,19));
  31. @Xx=map("x$_",(3..17,19));
  32. @V=($A,$B,$C,$D,$E)=map("w$_",(20..24));
  33. ($t0,$t1,$t2,$K)=map("w$_",(25..28));
  34. sub BODY_00_19 {
  35. my ($i,$a,$b,$c,$d,$e)=@_;
  36. my $j=($i+2)&15;
  37. $code.=<<___ if ($i<15 && !($i&1));
  38. lsr @Xx[$i+1],@Xx[$i],#32
  39. ___
  40. $code.=<<___ if ($i<14 && !($i&1));
  41. ldr @Xx[$i+2],[$inp,#`($i+2)*4-64`]
  42. ___
  43. $code.=<<___ if ($i<14 && ($i&1));
  44. #ifdef __ARMEB__
  45. ror @Xx[$i+1],@Xx[$i+1],#32
  46. #else
  47. rev32 @Xx[$i+1],@Xx[$i+1]
  48. #endif
  49. ___
  50. $code.=<<___ if ($i<14);
  51. bic $t0,$d,$b
  52. and $t1,$c,$b
  53. ror $t2,$a,#27
  54. add $d,$d,$K // future e+=K
  55. orr $t0,$t0,$t1
  56. add $e,$e,$t2 // e+=rot(a,5)
  57. ror $b,$b,#2
  58. add $d,$d,@Xw[($i+1)&15] // future e+=X[i]
  59. add $e,$e,$t0 // e+=F(b,c,d)
  60. ___
  61. $code.=<<___ if ($i==19);
  62. movz $K,#0xeba1
  63. movk $K,#0x6ed9,lsl#16
  64. ___
  65. $code.=<<___ if ($i>=14);
  66. eor @Xw[$j],@Xw[$j],@Xw[($j+2)&15]
  67. bic $t0,$d,$b
  68. and $t1,$c,$b
  69. ror $t2,$a,#27
  70. eor @Xw[$j],@Xw[$j],@Xw[($j+8)&15]
  71. add $d,$d,$K // future e+=K
  72. orr $t0,$t0,$t1
  73. add $e,$e,$t2 // e+=rot(a,5)
  74. eor @Xw[$j],@Xw[$j],@Xw[($j+13)&15]
  75. ror $b,$b,#2
  76. add $d,$d,@Xw[($i+1)&15] // future e+=X[i]
  77. add $e,$e,$t0 // e+=F(b,c,d)
  78. ror @Xw[$j],@Xw[$j],#31
  79. ___
  80. }
  81. sub BODY_40_59 {
  82. my ($i,$a,$b,$c,$d,$e)=@_;
  83. my $j=($i+2)&15;
  84. $code.=<<___ if ($i==59);
  85. movz $K,#0xc1d6
  86. movk $K,#0xca62,lsl#16
  87. ___
  88. $code.=<<___;
  89. orr $t0,$b,$c
  90. and $t1,$b,$c
  91. eor @Xw[$j],@Xw[$j],@Xw[($j+2)&15]
  92. ror $t2,$a,#27
  93. and $t0,$t0,$d
  94. add $d,$d,$K // future e+=K
  95. eor @Xw[$j],@Xw[$j],@Xw[($j+8)&15]
  96. add $e,$e,$t2 // e+=rot(a,5)
  97. orr $t0,$t0,$t1
  98. ror $b,$b,#2
  99. eor @Xw[$j],@Xw[$j],@Xw[($j+13)&15]
  100. add $d,$d,@Xw[($i+1)&15] // future e+=X[i]
  101. add $e,$e,$t0 // e+=F(b,c,d)
  102. ror @Xw[$j],@Xw[$j],#31
  103. ___
  104. }
  105. sub BODY_20_39 {
  106. my ($i,$a,$b,$c,$d,$e)=@_;
  107. my $j=($i+2)&15;
  108. $code.=<<___ if ($i==39);
  109. movz $K,#0xbcdc
  110. movk $K,#0x8f1b,lsl#16
  111. ___
  112. $code.=<<___ if ($i<78);
  113. eor @Xw[$j],@Xw[$j],@Xw[($j+2)&15]
  114. eor $t0,$d,$b
  115. ror $t2,$a,#27
  116. add $d,$d,$K // future e+=K
  117. eor @Xw[$j],@Xw[$j],@Xw[($j+8)&15]
  118. eor $t0,$t0,$c
  119. add $e,$e,$t2 // e+=rot(a,5)
  120. ror $b,$b,#2
  121. eor @Xw[$j],@Xw[$j],@Xw[($j+13)&15]
  122. add $d,$d,@Xw[($i+1)&15] // future e+=X[i]
  123. add $e,$e,$t0 // e+=F(b,c,d)
  124. ror @Xw[$j],@Xw[$j],#31
  125. ___
  126. $code.=<<___ if ($i==78);
  127. ldp @Xw[1],@Xw[2],[$ctx]
  128. eor $t0,$d,$b
  129. ror $t2,$a,#27
  130. add $d,$d,$K // future e+=K
  131. eor $t0,$t0,$c
  132. add $e,$e,$t2 // e+=rot(a,5)
  133. ror $b,$b,#2
  134. add $d,$d,@Xw[($i+1)&15] // future e+=X[i]
  135. add $e,$e,$t0 // e+=F(b,c,d)
  136. ___
  137. $code.=<<___ if ($i==79);
  138. ldp @Xw[3],@Xw[4],[$ctx,#8]
  139. eor $t0,$d,$b
  140. ror $t2,$a,#27
  141. eor $t0,$t0,$c
  142. add $e,$e,$t2 // e+=rot(a,5)
  143. ror $b,$b,#2
  144. ldr @Xw[5],[$ctx,#16]
  145. add $e,$e,$t0 // e+=F(b,c,d)
  146. ___
  147. }
  148. $code.=<<___;
  149. #include "arm_arch.h"
  150. .text
  151. .extern OPENSSL_armcap_P
  152. .globl sha1_block_data_order
  153. .type sha1_block_data_order,%function
  154. .align 6
  155. sha1_block_data_order:
  156. ldr x16,.LOPENSSL_armcap_P
  157. adr x17,.LOPENSSL_armcap_P
  158. add x16,x16,x17
  159. ldr w16,[x16]
  160. tst w16,#ARMV8_SHA1
  161. b.ne .Lv8_entry
  162. stp x29,x30,[sp,#-96]!
  163. add x29,sp,#0
  164. stp x19,x20,[sp,#16]
  165. stp x21,x22,[sp,#32]
  166. stp x23,x24,[sp,#48]
  167. stp x25,x26,[sp,#64]
  168. stp x27,x28,[sp,#80]
  169. ldp $A,$B,[$ctx]
  170. ldp $C,$D,[$ctx,#8]
  171. ldr $E,[$ctx,#16]
  172. .Loop:
  173. ldr @Xx[0],[$inp],#64
  174. movz $K,#0x7999
  175. sub $num,$num,#1
  176. movk $K,#0x5a82,lsl#16
  177. #ifdef __ARMEB__
  178. ror $Xx[0],@Xx[0],#32
  179. #else
  180. rev32 @Xx[0],@Xx[0]
  181. #endif
  182. add $E,$E,$K // warm it up
  183. add $E,$E,@Xw[0]
  184. ___
  185. for($i=0;$i<20;$i++) { &BODY_00_19($i,@V); unshift(@V,pop(@V)); }
  186. for(;$i<40;$i++) { &BODY_20_39($i,@V); unshift(@V,pop(@V)); }
  187. for(;$i<60;$i++) { &BODY_40_59($i,@V); unshift(@V,pop(@V)); }
  188. for(;$i<80;$i++) { &BODY_20_39($i,@V); unshift(@V,pop(@V)); }
  189. $code.=<<___;
  190. add $B,$B,@Xw[2]
  191. add $C,$C,@Xw[3]
  192. add $A,$A,@Xw[1]
  193. add $D,$D,@Xw[4]
  194. add $E,$E,@Xw[5]
  195. stp $A,$B,[$ctx]
  196. stp $C,$D,[$ctx,#8]
  197. str $E,[$ctx,#16]
  198. cbnz $num,.Loop
  199. ldp x19,x20,[sp,#16]
  200. ldp x21,x22,[sp,#32]
  201. ldp x23,x24,[sp,#48]
  202. ldp x25,x26,[sp,#64]
  203. ldp x27,x28,[sp,#80]
  204. ldr x29,[sp],#96
  205. ret
  206. .size sha1_block_data_order,.-sha1_block_data_order
  207. ___
  208. {{{
  209. my ($ABCD,$E,$E0,$E1)=map("v$_.16b",(0..3));
  210. my @MSG=map("v$_.16b",(4..7));
  211. my @Kxx=map("v$_.4s",(16..19));
  212. my ($W0,$W1)=("v20.4s","v21.4s");
  213. my $ABCD_SAVE="v22.16b";
  214. $code.=<<___;
  215. .type sha1_block_armv8,%function
  216. .align 6
  217. sha1_block_armv8:
  218. .Lv8_entry:
  219. stp x29,x30,[sp,#-16]!
  220. add x29,sp,#0
  221. adr x4,.Lconst
  222. eor $E,$E,$E
  223. ld1.32 {$ABCD},[$ctx],#16
  224. ld1.32 {$E}[0],[$ctx]
  225. sub $ctx,$ctx,#16
  226. ld1.32 {@Kxx[0]-@Kxx[3]},[x4]
  227. .Loop_hw:
  228. ld1 {@MSG[0]-@MSG[3]},[$inp],#64
  229. sub $num,$num,#1
  230. rev32 @MSG[0],@MSG[0]
  231. rev32 @MSG[1],@MSG[1]
  232. add.i32 $W0,@Kxx[0],@MSG[0]
  233. rev32 @MSG[2],@MSG[2]
  234. orr $ABCD_SAVE,$ABCD,$ABCD // offload
  235. add.i32 $W1,@Kxx[0],@MSG[1]
  236. rev32 @MSG[3],@MSG[3]
  237. sha1h $E1,$ABCD
  238. sha1c $ABCD,$E,$W0 // 0
  239. add.i32 $W0,@Kxx[$j],@MSG[2]
  240. sha1su0 @MSG[0],@MSG[1],@MSG[2]
  241. ___
  242. for ($j=0,$i=1;$i<20-3;$i++) {
  243. my $f=("c","p","m","p")[$i/5];
  244. $code.=<<___;
  245. sha1h $E0,$ABCD // $i
  246. sha1$f $ABCD,$E1,$W1
  247. add.i32 $W1,@Kxx[$j],@MSG[3]
  248. sha1su1 @MSG[0],@MSG[3]
  249. ___
  250. $code.=<<___ if ($i<20-4);
  251. sha1su0 @MSG[1],@MSG[2],@MSG[3]
  252. ___
  253. ($E0,$E1)=($E1,$E0); ($W0,$W1)=($W1,$W0);
  254. push(@MSG,shift(@MSG)); $j++ if ((($i+3)%5)==0);
  255. }
  256. $code.=<<___;
  257. sha1h $E0,$ABCD // $i
  258. sha1p $ABCD,$E1,$W1
  259. add.i32 $W1,@Kxx[$j],@MSG[3]
  260. sha1h $E1,$ABCD // 18
  261. sha1p $ABCD,$E0,$W0
  262. sha1h $E0,$ABCD // 19
  263. sha1p $ABCD,$E1,$W1
  264. add.i32 $E,$E,$E0
  265. add.i32 $ABCD,$ABCD,$ABCD_SAVE
  266. cbnz $num,.Loop_hw
  267. st1.32 {$ABCD},[$ctx],#16
  268. st1.32 {$E}[0],[$ctx]
  269. ldr x29,[sp],#16
  270. ret
  271. .size sha1_block_armv8,.-sha1_block_armv8
  272. .align 6
  273. .Lconst:
  274. .long 0x5a827999,0x5a827999,0x5a827999,0x5a827999 //K_00_19
  275. .long 0x6ed9eba1,0x6ed9eba1,0x6ed9eba1,0x6ed9eba1 //K_20_39
  276. .long 0x8f1bbcdc,0x8f1bbcdc,0x8f1bbcdc,0x8f1bbcdc //K_40_59
  277. .long 0xca62c1d6,0xca62c1d6,0xca62c1d6,0xca62c1d6 //K_60_79
  278. .LOPENSSL_armcap_P:
  279. .quad OPENSSL_armcap_P-.
  280. .asciz "SHA1 block transform for ARMv8, CRYPTOGAMS by <appro\@openssl.org>"
  281. .align 2
  282. .comm OPENSSL_armcap_P,4,4
  283. ___
  284. }}}
  285. { my %opcode = (
  286. "sha1c" => 0x5e000000, "sha1p" => 0x5e001000,
  287. "sha1m" => 0x5e002000, "sha1su0" => 0x5e003000,
  288. "sha1h" => 0x5e280800, "sha1su1" => 0x5e281800 );
  289. sub unsha1 {
  290. my ($mnemonic,$arg)=@_;
  291. $arg =~ m/[qv]([0-9]+)[^,]*,\s*[qv]([0-9]+)[^,]*(?:,\s*[qv]([0-9]+))?/o
  292. &&
  293. sprintf ".inst\t0x%08x\t//%s %s",
  294. $opcode{$mnemonic}|$1|($2<<5)|($3<<16),
  295. $mnemonic,$arg;
  296. }
  297. }
  298. foreach(split("\n",$code)) {
  299. s/\`([^\`]*)\`/eval($1)/geo;
  300. s/\b(sha1\w+)\s+([qv].*)/unsha1($1,$2)/geo;
  301. s/\.\w?32\b//o and s/\.16b/\.4s/go;
  302. m/(ld|st)1[^\[]+\[0\]/o and s/\.4s/\.s/go;
  303. print $_,"\n";
  304. }
  305. close STDOUT;