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 # ====================================================================
12 # Performance in cycles per processed byte and improvement coefficient
13 # over code generated with "default" compiler:
15 # hardware-assisted software(*)
16 # Apple A7 2.31 4.13 (+14%)
17 # Cortex-A53 2.24 8.03 (+97%)
18 # Cortex-A57 2.35 7.88 (+74%)
20 # (*) Software results are presented mostly for reference purposes.
25 $0 =~ m/(.*[\/\\])[^\/\\]+$/; $dir=$1;
26 ( $xlate="${dir}arm-xlate.pl" and -f $xlate ) or
27 ( $xlate="${dir}../../perlasm/arm-xlate.pl" and -f $xlate) or
28 die "can't locate arm-xlate.pl";
30 open OUT,"| \"$^X\" $xlate $flavour $output";
33 ($ctx,$inp,$num)=("x0","x1","x2");
34 @Xw=map("w$_",(3..17,19));
35 @Xx=map("x$_",(3..17,19));
36 @V=($A,$B,$C,$D,$E)=map("w$_",(20..24));
37 ($t0,$t1,$t2,$K)=map("w$_",(25..28));
41 my ($i,$a,$b,$c,$d,$e)=@_;
44 $code.=<<___ if ($i<15 && !($i&1));
45 lsr @Xx[$i+1],@Xx[$i],#32
47 $code.=<<___ if ($i<14 && !($i&1));
48 ldr @Xx[$i+2],[$inp,#`($i+2)*4-64`]
50 $code.=<<___ if ($i<14 && ($i&1));
52 ror @Xx[$i+1],@Xx[$i+1],#32
54 rev32 @Xx[$i+1],@Xx[$i+1]
57 $code.=<<___ if ($i<14);
61 add $d,$d,$K // future e+=K
63 add $e,$e,$t2 // e+=rot(a,5)
65 add $d,$d,@Xw[($i+1)&15] // future e+=X[i]
66 add $e,$e,$t0 // e+=F(b,c,d)
68 $code.=<<___ if ($i==19);
70 movk $K,#0x6ed9,lsl#16
72 $code.=<<___ if ($i>=14);
73 eor @Xw[$j],@Xw[$j],@Xw[($j+2)&15]
77 eor @Xw[$j],@Xw[$j],@Xw[($j+8)&15]
78 add $d,$d,$K // future e+=K
80 add $e,$e,$t2 // e+=rot(a,5)
81 eor @Xw[$j],@Xw[$j],@Xw[($j+13)&15]
83 add $d,$d,@Xw[($i+1)&15] // future e+=X[i]
84 add $e,$e,$t0 // e+=F(b,c,d)
85 ror @Xw[$j],@Xw[$j],#31
90 my ($i,$a,$b,$c,$d,$e)=@_;
93 $code.=<<___ if ($i==59);
95 movk $K,#0xca62,lsl#16
100 eor @Xw[$j],@Xw[$j],@Xw[($j+2)&15]
103 add $d,$d,$K // future e+=K
104 eor @Xw[$j],@Xw[$j],@Xw[($j+8)&15]
105 add $e,$e,$t2 // e+=rot(a,5)
108 eor @Xw[$j],@Xw[$j],@Xw[($j+13)&15]
109 add $d,$d,@Xw[($i+1)&15] // future e+=X[i]
110 add $e,$e,$t0 // e+=F(b,c,d)
111 ror @Xw[$j],@Xw[$j],#31
116 my ($i,$a,$b,$c,$d,$e)=@_;
119 $code.=<<___ if ($i==39);
121 movk $K,#0x8f1b,lsl#16
123 $code.=<<___ if ($i<78);
124 eor @Xw[$j],@Xw[$j],@Xw[($j+2)&15]
127 add $d,$d,$K // future e+=K
128 eor @Xw[$j],@Xw[$j],@Xw[($j+8)&15]
130 add $e,$e,$t2 // e+=rot(a,5)
132 eor @Xw[$j],@Xw[$j],@Xw[($j+13)&15]
133 add $d,$d,@Xw[($i+1)&15] // future e+=X[i]
134 add $e,$e,$t0 // e+=F(b,c,d)
135 ror @Xw[$j],@Xw[$j],#31
137 $code.=<<___ if ($i==78);
138 ldp @Xw[1],@Xw[2],[$ctx]
141 add $d,$d,$K // future e+=K
143 add $e,$e,$t2 // e+=rot(a,5)
145 add $d,$d,@Xw[($i+1)&15] // future e+=X[i]
146 add $e,$e,$t0 // e+=F(b,c,d)
148 $code.=<<___ if ($i==79);
149 ldp @Xw[3],@Xw[4],[$ctx,#8]
153 add $e,$e,$t2 // e+=rot(a,5)
155 ldr @Xw[5],[$ctx,#16]
156 add $e,$e,$t0 // e+=F(b,c,d)
161 #include "arm_arch.h"
165 .extern OPENSSL_armcap_P
166 .globl sha1_block_data_order
167 .type sha1_block_data_order,%function
169 sha1_block_data_order:
170 ldr x16,.LOPENSSL_armcap_P
171 adr x17,.LOPENSSL_armcap_P
177 stp x29,x30,[sp,#-96]!
190 ldr @Xx[0],[$inp],#64
193 movk $K,#0x5a82,lsl#16
195 ror $Xx[0],@Xx[0],#32
199 add $E,$E,$K // warm it up
202 for($i=0;$i<20;$i++) { &BODY_00_19($i,@V); unshift(@V,pop(@V)); }
203 for(;$i<40;$i++) { &BODY_20_39($i,@V); unshift(@V,pop(@V)); }
204 for(;$i<60;$i++) { &BODY_40_59($i,@V); unshift(@V,pop(@V)); }
205 for(;$i<80;$i++) { &BODY_20_39($i,@V); unshift(@V,pop(@V)); }
224 .size sha1_block_data_order,.-sha1_block_data_order
227 my ($ABCD,$E,$E0,$E1)=map("v$_.16b",(0..3));
228 my @MSG=map("v$_.16b",(4..7));
229 my @Kxx=map("v$_.4s",(16..19));
230 my ($W0,$W1)=("v20.4s","v21.4s");
231 my $ABCD_SAVE="v22.16b";
234 .type sha1_block_armv8,%function
238 stp x29,x30,[sp,#-16]!
243 ld1.32 {$ABCD},[$ctx],#16
244 ld1.32 {$E}[0],[$ctx]
246 ld1.32 {@Kxx[0]-@Kxx[3]},[x4]
249 ld1 {@MSG[0]-@MSG[3]},[$inp],#64
251 rev32 @MSG[0],@MSG[0]
252 rev32 @MSG[1],@MSG[1]
254 add.i32 $W0,@Kxx[0],@MSG[0]
255 rev32 @MSG[2],@MSG[2]
256 orr $ABCD_SAVE,$ABCD,$ABCD // offload
258 add.i32 $W1,@Kxx[0],@MSG[1]
259 rev32 @MSG[3],@MSG[3]
261 sha1c $ABCD,$E,$W0 // 0
262 add.i32 $W0,@Kxx[$j],@MSG[2]
263 sha1su0 @MSG[0],@MSG[1],@MSG[2]
265 for ($j=0,$i=1;$i<20-3;$i++) {
266 my $f=("c","p","m","p")[$i/5];
268 sha1h $E0,$ABCD // $i
270 add.i32 $W1,@Kxx[$j],@MSG[3]
271 sha1su1 @MSG[0],@MSG[3]
273 $code.=<<___ if ($i<20-4);
274 sha1su0 @MSG[1],@MSG[2],@MSG[3]
276 ($E0,$E1)=($E1,$E0); ($W0,$W1)=($W1,$W0);
277 push(@MSG,shift(@MSG)); $j++ if ((($i+3)%5)==0);
280 sha1h $E0,$ABCD // $i
282 add.i32 $W1,@Kxx[$j],@MSG[3]
284 sha1h $E1,$ABCD // 18
287 sha1h $E0,$ABCD // 19
291 add.i32 $ABCD,$ABCD,$ABCD_SAVE
295 st1.32 {$ABCD},[$ctx],#16
296 st1.32 {$E}[0],[$ctx]
300 .size sha1_block_armv8,.-sha1_block_armv8
303 .long 0x5a827999,0x5a827999,0x5a827999,0x5a827999 //K_00_19
304 .long 0x6ed9eba1,0x6ed9eba1,0x6ed9eba1,0x6ed9eba1 //K_20_39
305 .long 0x8f1bbcdc,0x8f1bbcdc,0x8f1bbcdc,0x8f1bbcdc //K_40_59
306 .long 0xca62c1d6,0xca62c1d6,0xca62c1d6,0xca62c1d6 //K_60_79
308 .quad OPENSSL_armcap_P-.
309 .asciz "SHA1 block transform for ARMv8, CRYPTOGAMS by <appro\@openssl.org>"
311 .comm OPENSSL_armcap_P,4,4
316 "sha1c" => 0x5e000000, "sha1p" => 0x5e001000,
317 "sha1m" => 0x5e002000, "sha1su0" => 0x5e003000,
318 "sha1h" => 0x5e280800, "sha1su1" => 0x5e281800 );
321 my ($mnemonic,$arg)=@_;
323 $arg =~ m/[qv]([0-9]+)[^,]*,\s*[qv]([0-9]+)[^,]*(?:,\s*[qv]([0-9]+))?/o
325 sprintf ".inst\t0x%08x\t//%s %s",
326 $opcode{$mnemonic}|$1|($2<<5)|($3<<16),
331 foreach(split("\n",$code)) {
333 s/\`([^\`]*)\`/eval($1)/geo;
335 s/\b(sha1\w+)\s+([qv].*)/unsha1($1,$2)/geo;
337 s/\.\w?32\b//o and s/\.16b/\.4s/go;
338 m/(ld|st)1[^\[]+\[0\]/o and s/\.4s/\.s/go;