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306 lines
8.8 KiB
306 lines
8.8 KiB
#!/usr/bin/env perl
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#
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# ====================================================================
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# Written by Andy Polyakov <appro@fy.chalmers.se> for the OpenSSL
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# project. The module is, however, dual licensed under OpenSSL and
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# CRYPTOGAMS licenses depending on where you obtain it. For further
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# details see http://www.openssl.org/~appro/cryptogams/.
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# ====================================================================
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#
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# Eternal question is what's wrong with compiler generated code? The
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# trick is that it's possible to reduce the number of shifts required
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# to perform rotations by maintaining copy of 32-bit value in upper
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# bits of 64-bit register. Just follow mux2 and shrp instructions...
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# Performance under big-endian OS such as HP-UX is 179MBps*1GHz, which
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# is >50% better than HP C and >2x better than gcc.
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$code=<<___;
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.ident \"sha1-ia64.s, version 1.2\"
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.ident \"IA-64 ISA artwork by Andy Polyakov <appro\@fy.chalmers.se>\"
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.explicit
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___
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if ($^O eq "hpux") {
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$ADDP="addp4";
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for (@ARGV) { $ADDP="add" if (/[\+DD|\-mlp]64/); }
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} else { $ADDP="add"; }
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for (@ARGV) { $big_endian=1 if (/\-DB_ENDIAN/);
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$big_endian=0 if (/\-DL_ENDIAN/); }
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if (!defined($big_endian))
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{ $big_endian=(unpack('L',pack('N',1))==1); }
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#$human=1;
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if ($human) { # useful for visual code auditing...
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($A,$B,$C,$D,$E,$T) = ("A","B","C","D","E","T");
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($h0,$h1,$h2,$h3,$h4) = ("h0","h1","h2","h3","h4");
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($K_00_19, $K_20_39, $K_40_59, $K_60_79) =
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( "K_00_19","K_20_39","K_40_59","K_60_79" );
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@X= ( "X0", "X1", "X2", "X3", "X4", "X5", "X6", "X7",
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"X8", "X9","X10","X11","X12","X13","X14","X15" );
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}
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else {
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($A,$B,$C,$D,$E,$T) = ("loc0","loc1","loc2","loc3","loc4","loc5");
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($h0,$h1,$h2,$h3,$h4) = ("loc6","loc7","loc8","loc9","loc10");
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($K_00_19, $K_20_39, $K_40_59, $K_60_79) =
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( "r14", "r15", "loc11", "loc12" );
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@X= ( "r16", "r17", "r18", "r19", "r20", "r21", "r22", "r23",
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"r24", "r25", "r26", "r27", "r28", "r29", "r30", "r31" );
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}
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sub BODY_00_15 {
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local *code=shift;
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local ($i,$a,$b,$c,$d,$e,$f)=@_;
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$code.=<<___ if ($i==0);
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{ .mmi; ld1 $X[$i&0xf]=[inp],2 // MSB
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ld1 tmp2=[tmp3],2 };;
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{ .mmi; ld1 tmp0=[inp],2
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ld1 tmp4=[tmp3],2 // LSB
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dep $X[$i&0xf]=$X[$i&0xf],tmp2,8,8 };;
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___
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if ($i<15) {
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$code.=<<___;
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{ .mmi; ld1 $X[($i+1)&0xf]=[inp],2 // +1
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dep tmp1=tmp0,tmp4,8,8 };;
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{ .mmi; ld1 tmp2=[tmp3],2 // +1
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and tmp4=$c,$b
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dep $X[$i&0xf]=$X[$i&0xf],tmp1,16,16 } //;;
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{ .mmi; andcm tmp1=$d,$b
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add tmp0=$e,$K_00_19
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dep.z tmp5=$a,5,27 };; // a<<5
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{ .mmi; or tmp4=tmp4,tmp1 // F_00_19(b,c,d)=(b&c)|(~b&d)
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add $f=tmp0,$X[$i&0xf] // f=xi+e+K_00_19
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extr.u tmp1=$a,27,5 };; // a>>27
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{ .mmi; ld1 tmp0=[inp],2 // +1
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add $f=$f,tmp4 // f+=F_00_19(b,c,d)
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shrp $b=tmp6,tmp6,2 } // b=ROTATE(b,30)
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{ .mmi; ld1 tmp4=[tmp3],2 // +1
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or tmp5=tmp1,tmp5 // ROTATE(a,5)
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mux2 tmp6=$a,0x44 };; // see b in next iteration
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{ .mii; add $f=$f,tmp5 // f+=ROTATE(a,5)
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dep $X[($i+1)&0xf]=$X[($i+1)&0xf],tmp2,8,8 // +1
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mux2 $X[$i&0xf]=$X[$i&0xf],0x44 } //;;
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___
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}
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else {
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$code.=<<___;
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{ .mii; and tmp3=$c,$b
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dep tmp1=tmp0,tmp4,8,8;;
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dep $X[$i&0xf]=$X[$i&0xf],tmp1,16,16 } //;;
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{ .mmi; andcm tmp1=$d,$b
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add tmp0=$e,$K_00_19
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dep.z tmp5=$a,5,27 };; // a<<5
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{ .mmi; or tmp4=tmp3,tmp1 // F_00_19(b,c,d)=(b&c)|(~b&d)
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add $f=tmp0,$X[$i&0xf] // f=xi+e+K_00_19
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extr.u tmp1=$a,27,5 } // a>>27
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{ .mmi; xor tmp2=$X[($i+0+1)&0xf],$X[($i+2+1)&0xf] // +1
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xor tmp3=$X[($i+8+1)&0xf],$X[($i+13+1)&0xf] // +1
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nop.i 0 };;
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{ .mmi; add $f=$f,tmp4 // f+=F_00_19(b,c,d)
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xor tmp2=tmp2,tmp3 // +1
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shrp $b=tmp6,tmp6,2 } // b=ROTATE(b,30)
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{ .mmi; or tmp1=tmp1,tmp5 // ROTATE(a,5)
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mux2 tmp6=$a,0x44 };; // see b in next iteration
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{ .mii; add $f=$f,tmp1 // f+=ROTATE(a,5)
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shrp $e=tmp2,tmp2,31 // f+1=ROTATE(x[0]^x[2]^x[8]^x[13],1)
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mux2 $X[$i&0xf]=$X[$i&0xf],0x44 };;
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___
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}
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}
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sub BODY_16_19 {
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local *code=shift;
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local ($i,$a,$b,$c,$d,$e,$f)=@_;
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$code.=<<___;
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{ .mmi; mov $X[$i&0xf]=$f // Xupdate
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and tmp0=$c,$b
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dep.z tmp5=$a,5,27 } // a<<5
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{ .mmi; andcm tmp1=$d,$b
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add tmp4=$e,$K_00_19 };;
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{ .mmi; or tmp0=tmp0,tmp1 // F_00_19(b,c,d)=(b&c)|(~b&d)
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add $f=$f,tmp4 // f+=e+K_00_19
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extr.u tmp1=$a,27,5 } // a>>27
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{ .mmi; xor tmp2=$X[($i+0+1)&0xf],$X[($i+2+1)&0xf] // +1
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xor tmp3=$X[($i+8+1)&0xf],$X[($i+13+1)&0xf] // +1
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nop.i 0 };;
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{ .mmi; add $f=$f,tmp0 // f+=F_00_19(b,c,d)
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xor tmp2=tmp2,tmp3 // +1
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shrp $b=tmp6,tmp6,2 } // b=ROTATE(b,30)
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{ .mmi; or tmp1=tmp1,tmp5 // ROTATE(a,5)
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mux2 tmp6=$a,0x44 };; // see b in next iteration
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{ .mii; add $f=$f,tmp1 // f+=ROTATE(a,5)
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shrp $e=tmp2,tmp2,31 // f+1=ROTATE(x[0]^x[2]^x[8]^x[13],1)
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nop.i 0 };;
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___
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}
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sub BODY_20_39 {
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local *code=shift;
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local ($i,$a,$b,$c,$d,$e,$f,$Konst)=@_;
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$Konst = $K_20_39 if (!defined($Konst));
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if ($i<79) {
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$code.=<<___;
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{ .mib; mov $X[$i&0xf]=$f // Xupdate
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dep.z tmp5=$a,5,27 } // a<<5
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{ .mib; xor tmp0=$c,$b
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add tmp4=$e,$Konst };;
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{ .mmi; xor tmp0=tmp0,$d // F_20_39(b,c,d)=b^c^d
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add $f=$f,tmp4 // f+=e+K_20_39
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extr.u tmp1=$a,27,5 } // a>>27
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{ .mmi; xor tmp2=$X[($i+0+1)&0xf],$X[($i+2+1)&0xf] // +1
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xor tmp3=$X[($i+8+1)&0xf],$X[($i+13+1)&0xf] // +1
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nop.i 0 };;
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{ .mmi; add $f=$f,tmp0 // f+=F_20_39(b,c,d)
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xor tmp2=tmp2,tmp3 // +1
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shrp $b=tmp6,tmp6,2 } // b=ROTATE(b,30)
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{ .mmi; or tmp1=tmp1,tmp5 // ROTATE(a,5)
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mux2 tmp6=$a,0x44 };; // see b in next iteration
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{ .mii; add $f=$f,tmp1 // f+=ROTATE(a,5)
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shrp $e=tmp2,tmp2,31 // f+1=ROTATE(x[0]^x[2]^x[8]^x[13],1)
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nop.i 0 };;
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___
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}
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else {
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$code.=<<___;
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{ .mib; mov $X[$i&0xf]=$f // Xupdate
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dep.z tmp5=$a,5,27 } // a<<5
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{ .mib; xor tmp0=$c,$b
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add tmp4=$e,$Konst };;
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{ .mib; xor tmp0=tmp0,$d // F_20_39(b,c,d)=b^c^d
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extr.u tmp1=$a,27,5 } // a>>27
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{ .mib; add $f=$f,tmp4 // f+=e+K_20_39
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add $h1=$h1,$a };; // wrap up
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{ .mmi; add $f=$f,tmp0 // f+=F_20_39(b,c,d)
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shrp $b=tmp6,tmp6,2 } // b=ROTATE(b,30) ;;?
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{ .mmi; or tmp1=tmp1,tmp5 // ROTATE(a,5)
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add $h3=$h3,$c };; // wrap up
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{ .mib; add tmp3=1,inp // used in unaligned codepath
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add $f=$f,tmp1 } // f+=ROTATE(a,5)
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{ .mib; add $h2=$h2,$b // wrap up
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add $h4=$h4,$d };; // wrap up
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___
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}
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}
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sub BODY_40_59 {
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local *code=shift;
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local ($i,$a,$b,$c,$d,$e,$f)=@_;
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$code.=<<___;
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{ .mmi; mov $X[$i&0xf]=$f // Xupdate
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and tmp0=$c,$b
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dep.z tmp5=$a,5,27 } // a<<5
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{ .mmi; and tmp1=$d,$b
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add tmp4=$e,$K_40_59 };;
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{ .mmi; or tmp0=tmp0,tmp1 // (b&c)|(b&d)
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add $f=$f,tmp4 // f+=e+K_40_59
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extr.u tmp1=$a,27,5 } // a>>27
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{ .mmi; and tmp4=$c,$d
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xor tmp2=$X[($i+0+1)&0xf],$X[($i+2+1)&0xf] // +1
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xor tmp3=$X[($i+8+1)&0xf],$X[($i+13+1)&0xf] // +1
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};;
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{ .mmi; or tmp1=tmp1,tmp5 // ROTATE(a,5)
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xor tmp2=tmp2,tmp3 // +1
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shrp $b=tmp6,tmp6,2 } // b=ROTATE(b,30)
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{ .mmi; or tmp0=tmp0,tmp4 // F_40_59(b,c,d)=(b&c)|(b&d)|(c&d)
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mux2 tmp6=$a,0x44 };; // see b in next iteration
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{ .mii; add $f=$f,tmp0 // f+=F_40_59(b,c,d)
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shrp $e=tmp2,tmp2,31;; // f+1=ROTATE(x[0]^x[2]^x[8]^x[13],1)
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add $f=$f,tmp1 };; // f+=ROTATE(a,5)
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___
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}
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sub BODY_60_79 { &BODY_20_39(@_,$K_60_79); }
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$code.=<<___;
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.text
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tmp0=r8;
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tmp1=r9;
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tmp2=r10;
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tmp3=r11;
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ctx=r32; // in0
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inp=r33; // in1
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// void sha1_block_data_order(SHA_CTX *c,const void *p,size_t num);
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.global sha1_block_data_order#
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.proc sha1_block_data_order#
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.align 32
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sha1_block_data_order:
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.prologue
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{ .mmi; alloc tmp1=ar.pfs,3,15,0,0
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$ADDP tmp0=4,ctx
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.save ar.lc,r3
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mov r3=ar.lc }
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{ .mmi; $ADDP ctx=0,ctx
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$ADDP inp=0,inp
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mov r2=pr };;
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tmp4=in2;
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tmp5=loc13;
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tmp6=loc14;
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.body
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{ .mlx; ld4 $h0=[ctx],8
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movl $K_00_19=0x5a827999 }
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{ .mlx; ld4 $h1=[tmp0],8
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movl $K_20_39=0x6ed9eba1 };;
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{ .mlx; ld4 $h2=[ctx],8
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movl $K_40_59=0x8f1bbcdc }
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{ .mlx; ld4 $h3=[tmp0]
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movl $K_60_79=0xca62c1d6 };;
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{ .mmi; ld4 $h4=[ctx],-16
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add in2=-1,in2 // adjust num for ar.lc
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mov ar.ec=1 };;
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{ .mmi; nop.m 0
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add tmp3=1,inp
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mov ar.lc=in2 };; // brp.loop.imp: too far
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.Ldtop:
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{ .mmi; mov $A=$h0
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mov $B=$h1
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mux2 tmp6=$h1,0x44 }
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{ .mmi; mov $C=$h2
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mov $D=$h3
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mov $E=$h4 };;
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___
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{ my $i,@V=($A,$B,$C,$D,$E,$T);
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for($i=0;$i<16;$i++) { &BODY_00_15(\$code,$i,@V); unshift(@V,pop(@V)); }
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for(;$i<20;$i++) { &BODY_16_19(\$code,$i,@V); unshift(@V,pop(@V)); }
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for(;$i<40;$i++) { &BODY_20_39(\$code,$i,@V); unshift(@V,pop(@V)); }
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for(;$i<60;$i++) { &BODY_40_59(\$code,$i,@V); unshift(@V,pop(@V)); }
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for(;$i<80;$i++) { &BODY_60_79(\$code,$i,@V); unshift(@V,pop(@V)); }
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(($V[5] eq $D) and ($V[0] eq $E)) or die; # double-check
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}
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$code.=<<___;
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{ .mmb; add $h0=$h0,$E
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nop.m 0
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br.ctop.dptk.many .Ldtop };;
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.Ldend:
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{ .mmi; add tmp0=4,ctx
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mov ar.lc=r3 };;
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{ .mmi; st4 [ctx]=$h0,8
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st4 [tmp0]=$h1,8 };;
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{ .mmi; st4 [ctx]=$h2,8
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st4 [tmp0]=$h3 };;
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{ .mib; st4 [ctx]=$h4,-16
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mov pr=r2,0x1ffff
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br.ret.sptk.many b0 };;
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.endp sha1_block_data_order#
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stringz "SHA1 block transform for IA64, CRYPTOGAMS by <appro\@openssl.org>"
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___
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$output=shift and open STDOUT,">$output";
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print $code;
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