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/openssl/crypto/chacha/asm/
H A Dchacha-c64xplus.pl127 ADD @X[$b1],@X[$a1],@X[$a1]
128 || ADD @X[$b2],@X[$a2],@X[$a2]
129 || ADD @X[$b0],@X[$a0],@X[$a0]
130 || ADD @X[$b3],@X[$a3],@X[$a3]
133 XOR @X[$a1],@X[$d1],@X[$d1]
144 ADD @X[$d1],@X[$c1],@X[$c1]
150 XOR @X[$c1],@X[$b1],@X[$b1]
177 XOR @X[$a0],@X[$d0],@X[$d0]
193 ADD @X[$d1],@X[$c1],@X[$c1]
199 ADD @X[$d0],@X[$c0],@X[$c0]
[all …]
/openssl/crypto/sha/
H A Dsha_local.h246 BODY_16_19(16, C, D, E, T, A, B, X(0), X(0), X(2), X(8), X(13)); in HASH_BLOCK_DATA_ORDER()
247 BODY_16_19(17, B, C, D, E, T, A, X(1), X(1), X(3), X(9), X(14)); in HASH_BLOCK_DATA_ORDER()
248 BODY_16_19(18, A, B, C, D, E, T, X(2), X(2), X(4), X(10), X(15)); in HASH_BLOCK_DATA_ORDER()
249 BODY_16_19(19, T, A, B, C, D, E, X(3), X(3), X(5), X(11), X(0)); in HASH_BLOCK_DATA_ORDER()
251 BODY_20_31(20, E, T, A, B, C, D, X(4), X(4), X(6), X(12), X(1)); in HASH_BLOCK_DATA_ORDER()
252 BODY_20_31(21, D, E, T, A, B, C, X(5), X(5), X(7), X(13), X(2)); in HASH_BLOCK_DATA_ORDER()
253 BODY_20_31(22, C, D, E, T, A, B, X(6), X(6), X(8), X(14), X(3)); in HASH_BLOCK_DATA_ORDER()
254 BODY_20_31(23, B, C, D, E, T, A, X(7), X(7), X(9), X(15), X(4)); in HASH_BLOCK_DATA_ORDER()
255 BODY_20_31(24, A, B, C, D, E, T, X(8), X(8), X(10), X(0), X(5)); in HASH_BLOCK_DATA_ORDER()
256 BODY_20_31(25, T, A, B, C, D, E, X(9), X(9), X(11), X(1), X(6)); in HASH_BLOCK_DATA_ORDER()
[all …]
H A Dsha256.c216 SHA_LONG X[16], l; in sha256_block_data_order() local
233 T1 = X[i] = l; in sha256_block_data_order()
252 T1 = X[i & 0xf] += s0 + s1 + X[(i + 9) & 0xf]; in sha256_block_data_order()
287 T1 = X[(i)&0x0f] += s0 + s1 + X[(i+9)&0x0f]; \
298 SHA_LONG X[16]; in sha256_block_data_order_c() local
356 T1 = X[0] = l; in sha256_block_data_order_c()
359 T1 = X[1] = l; in sha256_block_data_order_c()
362 T1 = X[2] = l; in sha256_block_data_order_c()
365 T1 = X[3] = l; in sha256_block_data_order_c()
368 T1 = X[4] = l; in sha256_block_data_order_c()
[all …]
/openssl/crypto/sha/asm/
H A Dsha1-alpha.pl116 xor @X[($j+2)%16],@X[$j%16],@X[$j%16]
121 xor @X[($j+8)%16],@X[$j%16],@X[$j%16]
126 xor @X[($j+13)%16],@X[$j%16],@X[$j%16]
134 addl @X[$j%16],@X[$j%16],@X[$j%16]
149 xor @X[($j+2)%16],@X[$j%16],@X[$j%16]
154 xor @X[($j+8)%16],@X[$j%16],@X[$j%16]
159 xor @X[($j+13)%16],@X[$j%16],@X[$j%16]
164 addl @X[$j%16],@X[$j%16],@X[$j%16]
206 xor @X[($j+2)%16],@X[$j%16],@X[$j%16]
211 xor @X[($j+8)%16],@X[$j%16],@X[$j%16]
[all …]
H A Dsha1-mips.pl114 rotr @X[$i],@X[$i],16
119 sll @X[$i],@X[$i],24
171 rotr @X[$i],@X[$i],16
176 sll @X[$i],@X[$i],24
187 xor @X[$j%16],@X[($j+2)%16]
190 xor @X[$j%16],@X[($j+8)%16]
196 rotr @X[$j%16],@X[$j%16],31
200 xor @X[$j%16],@X[($j+2)%16]
212 addu @X[$j%16],@X[$j%16]
253 addu @X[$j%16],@X[$j%16]
[all …]
H A Dsha1-586.pl1186 &vpshufb(@X[-3&7],@X[-3&7],@X[2]);
1187 &vpshufb(@X[-2&7],@X[-2&7],@X[2]);
1189 &vpshufb(@X[-1&7],@X[-1&7],@X[2]);
1191 &vpaddd (@X[1],@X[-3&7],@X[3]);
1192 &vpaddd (@X[2],@X[-2&7],@X[3]);
1213 &vpaddd (@X[3],@X[3],@X[-1&7]);
1244 &vpaddd (@X[0],@X[0],@X[0]);
1261 &vpxor (@X[0],@X[0],@X[3]);
1301 &vpaddd (@X[3],@X[3],@X[-1&7]);
1328 &vpor (@X[0],@X[0],@X[2]); # "X[0]"<<<=2
[all …]
H A Dsha1-sparcv9a.pl376 faligndata @X[$m],@X[$m+2],@X[$m]
459 faligndata @X[0],@X[2],@X[0]
460 faligndata @X[2],@X[4],@X[2]
461 faligndata @X[4],@X[6],@X[4]
462 faligndata @X[6],@X[8],@X[6]
463 faligndata @X[8],@X[10],@X[8]
464 faligndata @X[10],@X[12],@X[10]
465 faligndata @X[12],@X[14],@X[12]
466 faligndata @X[14],@X[16],@X[14]
491 fxors @X[13],@X[0],@X[0]
[all …]
H A Dsha1-x86_64.pl1036 vpshufb @X[2],@X[-3&7],@X[-3&7]
1037 vpshufb @X[2],@X[-2&7],@X[-2&7]
1038 vpshufb @X[2],@X[-1&7],@X[-1&7]
1090 &vpaddd (@X[0],@X[0],@X[0]);
1415 vpshufb @X[2],@X[-4&7],@X[-4&7]
1417 vpshufb @X[2],@X[-3&7],@X[-3&7]
1419 vpshufb @X[2],@X[-2&7],@X[-2&7]
1421 vpshufb @X[2],@X[-1&7],@X[-1&7]
1443 &vpaddd (@X[0],@X[0],@X[0]);
1567 &vpaddd (@X[0],@X[0],@X[0]);
[all …]
H A Dsha512-mips.pl141 my ($T1,$tmp0,$tmp1,$tmp2)=(@X[4],@X[5],@X[6],@X[7]);
153 wsbh @X[0],@X[0] # byte swap($i)
154 rotr @X[0],@X[0],16
159 sll @X[0],@X[0],24
169 dsbh @X[0],@X[0] # byte swap($i)
170 dshd @X[0],@X[0]
182 dsrl @X[0],8
263 my ($tmp0,$tmp1,$tmp2,$tmp3)=(@X[4],@X[5],@X[6],@X[7]);
269 $ADDU @X[0],@X[9] # +=X[i+9]
281 $ADDU @X[0],@X[9] # +=X[i+9]
[all …]
H A Dsha1-parisc.pl88 xor @X[($j+2)%16],@X[$j%16],@X[$j%16]
91 xor @X[($j+8)%16],@X[$j%16],@X[$j%16]
96 xor @X[($j+13)%16],@X[$j%16],@X[$j%16]
98 shd @X[$j%16],@X[$j%16],31,@X[$j%16]
109 xor @X[($j+8)%16],@X[$j%16],@X[$j%16]
112 xor @X[($j+13)%16],@X[$j%16],@X[$j%16]
116 shd @X[$j%16],@X[$j%16],31,@X[$j%16]
142 xor @X[($j+2)%16],@X[$j%16],@X[$j%16]
145 xor @X[($j+8)%16],@X[$j%16],@X[$j%16]
149 xor @X[($j+13)%16],@X[$j%16],@X[$j%16]
[all …]
H A Dsha512-x86_64.pl1215 vpshufb $t3,@X[0],@X[0]
1217 vpshufb $t3,@X[1],@X[1]
1218 vpshufb $t3,@X[2],@X[2]
1220 vpshufb $t3,@X[3],@X[3]
1361 vpshufb $t3,@X[0],@X[0]
1363 vpshufb $t3,@X[1],@X[1]
1365 vpshufb $t3,@X[2],@X[2]
1367 vpshufb $t3,@X[3],@X[3]
1369 vpshufb $t3,@X[4],@X[4]
1371 vpshufb $t3,@X[5],@X[5]
[all …]
H A Dsha512-armv8.pl106 my ($T0,$T1,$T2)=(@X[($i-8)&15],@X[($i-9)&15],@X[($i-10)&15]);
111 rev @X[$i],@X[$i] // $i
118 ldp @X[14],@X[15],[$inp]
181 add @X[$j],@X[$j],@X[($j+9)&15]
185 add @X[$j],@X[$j],$T1
187 add @X[$j],@X[$j],$T2
242 ldp @X[0],@X[1],[$inp],#2*$SZ
257 ldp @X[0],@X[1],[$ctx]
591 &rev32 (@X[0],@X[0]);
657 rev32 @X[2],@X[2]
[all …]
H A Dsha1-sparcv9.pl100 xor @X[($j+1)%8],@X[$j%8],@X[$j%8]
102 xor @X[($j+4)%8],@X[$j%8],@X[$j%8]
106 xor $Xi,@X[$j%8],@X[$j%8]
108 add @X[$j%8],@X[$j%8],@X[$j%8]
110 andn @X[$j%8],$rot1m,@X[$j%8]
112 or $Xi,@X[$j%8],@X[$j%8]
325 sllx @X[0],$tmp1,@X[0]
331 sllx @X[$i+1],$tmp1,@X[$i+1]
332 or $Xi,@X[$i],@X[$i]
337 or $tmp64,@X[7],@X[7]
[all …]
H A Dsha1-armv4-large.pl396 &vext_8 (@X[0],@X[-4&7],@X[-3&7],8); # compose "X[-14]" in "X[0]"
408 &veor (@X[0],@X[0],@X[-4&7]); # "X[0]"^="X[-16]"
437 &veor (@X[0],@X[0],@Tx[0]);
457 &veor (@X[0],@X[0],@X[-4&7]); # "X[0]"="X[-32]"^"X[-16]"
460 &veor (@X[0],@X[0],@X[-7&7]); # "X[0]"^="X[-28]"
509 &vrev32_8 (@X[-4&7],@X[-4&7]);
562 vrev32.8 @X[-2&7],@X[-2&7]
563 vadd.i32 @X[0],@X[-4&7],$K
564 vrev32.8 @X[-1&7],@X[-1&7]
565 vadd.i32 @X[1],@X[-3&7],$K
[all …]
H A Dsha1-ia64.pl62 my $Xn=@X[$j%16];
69 dep $X[$i]=$X[$i],tmp2,8,8 };;
78 dep $X[$i]=$X[$i],tmp1,16,16} //;;
93 mux2 $X[$i]=$X[$i],0x44 } //;;
101 dep $X[$i]=$X[$i],tmp1,16,16} //;;
109 xor tmp3=$X[($j+8)%16],$X[($j+13)%16] // forward Xupdate
118 mux2 $X[$i]=$X[$i],0x44 };;
128 my $Xn=@X[$j%16];
139 xor tmp3=$X[($j+8)%16],$X[($j+13)%16] // forward Xupdate
158 my $Xn=@X[$j%16];
[all …]
H A Dsha1-ppc.pl120 xor @X[$j%16],@X[$j%16],@X[($j+2)%16]
123 xor @X[$j%16],@X[$j%16],@X[($j+8)%16]
128 xor @X[$j%16],@X[$j%16],@X[($j+13)%16]
130 rotlwi @X[$j%16],@X[$j%16],1
141 xor @X[$j%16],@X[$j%16],@X[($j+2)%16]
144 xor @X[$j%16],@X[$j%16],@X[($j+8)%16]
147 xor @X[$j%16],@X[$j%16],@X[($j+13)%16]
149 rotlwi @X[$j%16],@X[$j%16],1
174 xor @X[$j%16],@X[$j%16],@X[($j+2)%16]
177 xor @X[$j%16],@X[$j%16],@X[($j+8)%16]
[all …]
H A Dsha512p8-ppc.pl114 vsldoi @X[$i],@X[$i-1],@X[$i-1],$SZ
117 vperm @X[$i],@X[$i],@X[$i],$lemask
121 vaddu${sz}m @X[$j],@X[$j],$Sigma
123 vaddu${sz}m @X[$j],@X[$j],$Sigma
124 vaddu${sz}m @X[$j],@X[$j],@X[($j+9)%16]
225 lvx_u @X[0],0,$inp
270 lvx @X[0],$x20,$idx
272 lvx @X[1],$x30,$idx
274 vperm $A,$A,$C,@X[0]
275 vperm $E,$E,$G,@X[0]
[all …]
H A Dsha1-s390x.pl82 lr $X[0],$X[2]
87 rllg $X[1],$X[0],32
94 rll $X[0],$X[0],1
95 rllg $X[1],$X[0],32
96 rll $X[1],$X[1],1
97 rllg $X[0],$X[1],32
98 lr $X[2],$X[1] # feedback
103 unshift(@X,pop(@X));
108 my $xi=$X[1];
127 my $xi=$X[1];
[all …]
H A Dsha256-armv4.pl332 &vext_8 ($T0,@X[0],@X[1],4); # X[1..4]
336 &vext_8 ($T1,@X[2],@X[3],4); # X[9..12]
343 &vadd_i32 (@X[0],@X[0],$T1); # X[0..3] += X[9..12]
373 &vadd_i32 (@X[0],@X[0],$T1); # X[0..3] += sigma0(X[1..4])
424 push(@X,shift(@X)); # "rotate" X[]
442 &vrev32_8 (@X[0],@X[0]);
451 push(@X,shift(@X)); # "rotate" X[]
508 vrev32.8 @X[0],@X[0] @ yes, even on
510 vrev32.8 @X[1],@X[1] @ big-endian
513 vrev32.8 @X[2],@X[2]
[all …]
H A Dsha512-586.pl484 &pshufb (@X[0],@X[1]);
488 &movdqa (@X[2],@X[1]) if ($j<7); # perpetuate byte swap mask
491 &paddq (@X[3],@X[0]);
492 &pshufb (@X[1],@X[2]) if ($j<7);
495 push(@X,shift(@X)); # rotate(@X)
627 push(@X,shift(@X)); # rotate(@X)
636 &pshufb (@X[0],@X[1]);
643 &movdqa (@X[2],@X[1]) if ($j<7); # perpetuate byte swap mask
646 &paddq (@X[3],@X[0]);
647 &pshufb (@X[1],@X[2]) if ($j<7);
[all …]
/openssl/crypto/md5/
H A Dmd5_dgst.c40 # ifdef X
41 # undef X
64 X(0) = l; in md5_block_data_order()
66 X(1) = l; in md5_block_data_order()
70 X(2) = l; in md5_block_data_order()
73 X(3) = l; in md5_block_data_order()
76 X(4) = l; in md5_block_data_order()
79 X(5) = l; in md5_block_data_order()
82 X(6) = l; in md5_block_data_order()
85 X(7) = l; in md5_block_data_order()
[all …]
/openssl/crypto/md4/
H A Dmd4_dgst.c40 # ifdef X
41 # undef X
64 X(0) = l; in md4_block_data_order()
66 X(1) = l; in md4_block_data_order()
70 X(2) = l; in md4_block_data_order()
73 X(3) = l; in md4_block_data_order()
76 X(4) = l; in md4_block_data_order()
79 X(5) = l; in md4_block_data_order()
82 X(6) = l; in md4_block_data_order()
85 X(7) = l; in md4_block_data_order()
[all …]
/openssl/crypto/md5/asm/
H A Dmd5-586.pl34 $X="esi";
197 &mov($X, &wparam(1)); # esi
202 &add($C, $X); # offset we end at
214 &R0(-2,$A,$B,$C,$D,$X, 0, 7,0xd76aa478);
215 &R0( 0,$D,$A,$B,$C,$X, 1,12,0xe8c7b756);
216 &R0( 0,$C,$D,$A,$B,$X, 2,17,0x242070db);
217 &R0( 0,$B,$C,$D,$A,$X, 3,22,0xc1bdceee);
218 &R0( 0,$A,$B,$C,$D,$X, 4, 7,0xf57c0faf);
219 &R0( 0,$D,$A,$B,$C,$X, 5,12,0x4787c62a);
220 &R0( 0,$C,$D,$A,$B,$X, 6,17,0xa8304613);
[all …]
/openssl/crypto/aes/asm/
H A Daesni-sha1-x86_64.pl372 &paddd (@X[0],@X[0]);
1142 vpshufb @X[2],@X[-4&7],@X[-4&7] # byte swap
1144 vpshufb @X[2],@X[-3&7],@X[-3&7]
1145 vpshufb @X[2],@X[-2&7],@X[-2&7]
1146 vpshufb @X[2],@X[-1&7],@X[-1&7]
1220 &vpxor (@X[0],@X[0],@X[-4&7]); # "X[0]"^="X[-16]"
1244 &vpaddd (@X[0],@X[0],@X[0]);
1617 vpshufb @X[2],@X[-4&7],@X[-4&7] # byte swap
1619 vpshufb @X[2],@X[-3&7],@X[-3&7]
1620 vpshufb @X[2],@X[-2&7],@X[-2&7]
[all …]
/openssl/crypto/sm3/
H A Dsm3_local.h78 # define P0(X) (X ^ ROTATE(X, 9) ^ ROTATE(X, 17)) argument
81 # define P1(X) (X ^ ROTATE(X, 15) ^ ROTATE(X, 23)) argument
84 #define FF0(X,Y,Z) (X ^ Y ^ Z) argument
85 #define GG0(X,Y,Z) (X ^ Y ^ Z) argument
87 #define FF1(X,Y,Z) ((X & Y) | ((X | Y) & Z)) argument
88 #define GG1(X,Y,Z) ((Z ^ (X & (Y ^ Z)))) argument

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