514 lines
9.5 KiB
Raku
Executable file
514 lines
9.5 KiB
Raku
Executable file
#!/usr/bin/env perl
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#
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# Copyright Supranational LLC
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# Licensed under the Apache License, Version 2.0, see LICENSE for details.
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# SPDX-License-Identifier: Apache-2.0
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#
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# As for "sparse" in subroutine names, see commentary in the
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# asm/mulx_mont_256-x86_64.pl module.
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$flavour = shift;
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$output = shift;
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if ($flavour =~ /\./) { $output = $flavour; undef $flavour; }
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$win64=0; $win64=1 if ($flavour =~ /[nm]asm|mingw64/ || $output =~ /\.asm$/);
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$0 =~ m/(.*[\/\\])[^\/\\]+$/; $dir=$1;
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( $xlate="${dir}x86_64-xlate.pl" and -f $xlate ) or
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( $xlate="${dir}../../perlasm/x86_64-xlate.pl" and -f $xlate) or
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die "can't locate x86_64-xlate.pl";
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open STDOUT,"| \"$^X\" \"$xlate\" $flavour \"$output\""
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or die "can't call $xlate: $!";
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# common argument layout
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($r_ptr,$a_ptr,$b_org,$n_ptr,$n0) = ("%rdi","%rsi","%rdx","%rcx","%r8");
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$b_ptr = "%rbx";
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{ ############################################################## 256 bits
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my @acc=map("%r$_",(9..15));
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{ ############################################################## mulq
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my ($hi, $a0) = ("%rbp", $r_ptr);
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$code.=<<___;
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.text
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.globl mul_mont_sparse_256
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.hidden mul_mont_sparse_256
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.type mul_mont_sparse_256,\@function,5,"unwind"
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.align 32
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mul_mont_sparse_256:
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.cfi_startproc
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push %rbp
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.cfi_push %rbp
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push %rbx
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.cfi_push %rbx
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push %r12
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.cfi_push %r12
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push %r13
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.cfi_push %r13
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push %r14
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.cfi_push %r14
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push %r15
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.cfi_push %r15
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push $r_ptr
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.cfi_adjust_cfa_offset 8
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.cfi_end_prologue
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mov 8*0($b_org), %rax
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mov 8*0($a_ptr), @acc[4]
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mov 8*1($a_ptr), @acc[5]
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mov 8*2($a_ptr), @acc[3]
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mov 8*3($a_ptr), $hi
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mov $b_org, $b_ptr # evacuate from %rdx
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mov %rax, @acc[6]
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mulq @acc[4] # a[0]*b[0]
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mov %rax, @acc[0]
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mov @acc[6], %rax
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mov %rdx, @acc[1]
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call __mulq_mont_sparse_256
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mov 8(%rsp),%r15
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.cfi_restore %r15
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mov 16(%rsp),%r14
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.cfi_restore %r14
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mov 24(%rsp),%r13
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.cfi_restore %r13
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mov 32(%rsp),%r12
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.cfi_restore %r12
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mov 40(%rsp),%rbx
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.cfi_restore %rbx
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mov 48(%rsp),%rbp
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.cfi_restore %rbp
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lea 56(%rsp),%rsp
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.cfi_adjust_cfa_offset -56
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.cfi_epilogue
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ret
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.cfi_endproc
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.size mul_mont_sparse_256,.-mul_mont_sparse_256
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.globl sqr_mont_sparse_256
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.hidden sqr_mont_sparse_256
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.type sqr_mont_sparse_256,\@function,4,"unwind"
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.align 32
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sqr_mont_sparse_256:
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.cfi_startproc
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push %rbp
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.cfi_push %rbp
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push %rbx
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.cfi_push %rbx
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push %r12
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.cfi_push %r12
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push %r13
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.cfi_push %r13
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push %r14
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.cfi_push %r14
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push %r15
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.cfi_push %r15
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push $r_ptr
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.cfi_adjust_cfa_offset 8
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.cfi_end_prologue
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mov 8*0($a_ptr), %rax
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mov $n_ptr, $n0
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mov 8*1($a_ptr), @acc[5]
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mov $b_org, $n_ptr
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mov 8*2($a_ptr), @acc[3]
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lea ($a_ptr), $b_ptr
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mov 8*3($a_ptr), $hi
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mov %rax, @acc[6]
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mulq %rax # a[0]*a[0]
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mov %rax, @acc[0]
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mov @acc[6], %rax
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mov %rdx, @acc[1]
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call __mulq_mont_sparse_256
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mov 8(%rsp),%r15
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.cfi_restore %r15
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mov 16(%rsp),%r14
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.cfi_restore %r14
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mov 24(%rsp),%r13
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.cfi_restore %r13
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mov 32(%rsp),%r12
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.cfi_restore %r12
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mov 40(%rsp),%rbx
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.cfi_restore %rbx
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mov 48(%rsp),%rbp
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.cfi_restore %rbp
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lea 56(%rsp),%rsp
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.cfi_adjust_cfa_offset -56
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.cfi_epilogue
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ret
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.cfi_endproc
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.size sqr_mont_sparse_256,.-sqr_mont_sparse_256
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___
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{
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my @acc=@acc;
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$code.=<<___;
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.type __mulq_mont_sparse_256,\@abi-omnipotent
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.align 32
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__mulq_mont_sparse_256:
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mulq @acc[5] # a[1]*b[0]
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add %rax, @acc[1]
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mov @acc[6], %rax
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adc \$0, %rdx
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mov %rdx, @acc[2]
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mulq @acc[3] # a[2]*b[0]
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add %rax, @acc[2]
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mov @acc[6], %rax
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adc \$0, %rdx
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mov %rdx, @acc[3]
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mulq $hi # a[3]*b[0]
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add %rax, @acc[3]
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mov 8($b_ptr), %rax
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adc \$0, %rdx
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xor @acc[5], @acc[5]
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mov %rdx, @acc[4]
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___
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for (my $i=1; $i<4; $i++) {
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my $b_next = $i<3 ? 8*($i+1)."($b_ptr)" : @acc[1];
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$code.=<<___;
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mov @acc[0], $a0
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imulq $n0, @acc[0]
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################################# Multiply by b[$i]
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mov %rax, @acc[6]
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mulq 8*0($a_ptr)
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add %rax, @acc[1]
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mov @acc[6], %rax
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adc \$0, %rdx
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mov %rdx, $hi
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mulq 8*1($a_ptr)
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add %rax, @acc[2]
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mov @acc[6], %rax
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adc \$0, %rdx
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add $hi, @acc[2]
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adc \$0, %rdx
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mov %rdx, $hi
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mulq 8*2($a_ptr)
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add %rax, @acc[3]
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mov @acc[6], %rax
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adc \$0, %rdx
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add $hi, @acc[3]
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adc \$0, %rdx
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mov %rdx, $hi
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mulq 8*3($a_ptr)
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add %rax, @acc[4]
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mov @acc[0], %rax
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adc \$0, %rdx
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add $hi, @acc[4]
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adc %rdx, @acc[5] # can't overflow
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xor @acc[6], @acc[6]
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################################# reduction
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mulq 8*0($n_ptr)
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add %rax, $a0 # guaranteed to be zero
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mov @acc[0], %rax
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adc %rdx, $a0
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mulq 8*1($n_ptr)
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add %rax, @acc[1]
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mov @acc[0], %rax
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adc \$0, %rdx
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add $a0, @acc[1]
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adc \$0, %rdx
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mov %rdx, $hi
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mulq 8*2($n_ptr)
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add %rax, @acc[2]
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mov @acc[0], %rax
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adc \$0, %rdx
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add $hi, @acc[2]
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adc \$0, %rdx
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mov %rdx, $hi
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mulq 8*3($n_ptr)
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add %rax, @acc[3]
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mov $b_next, %rax
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adc \$0, %rdx
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add $hi, @acc[3]
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adc \$0, %rdx
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add %rdx, @acc[4]
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adc \$0, @acc[5]
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adc \$0, @acc[6]
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___
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push(@acc,shift(@acc));
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}
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$code.=<<___;
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imulq $n0, %rax
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mov 8(%rsp), $a_ptr # restore $r_ptr
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################################# last reduction
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mov %rax, @acc[6]
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mulq 8*0($n_ptr)
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add %rax, @acc[0] # guaranteed to be zero
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mov @acc[6], %rax
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adc %rdx, @acc[0]
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mulq 8*1($n_ptr)
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add %rax, @acc[1]
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mov @acc[6], %rax
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adc \$0, %rdx
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add @acc[0], @acc[1]
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adc \$0, %rdx
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mov %rdx, $hi
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mulq 8*2($n_ptr)
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add %rax, @acc[2]
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mov @acc[6], %rax
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adc \$0, %rdx
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add $hi, @acc[2]
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adc \$0, %rdx
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mov %rdx, $hi
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mulq 8*3($n_ptr)
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mov @acc[2], $b_ptr
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add $hi, @acc[3]
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adc \$0, %rdx
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add %rax, @acc[3]
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mov @acc[1], %rax
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adc \$0, %rdx
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add %rdx, @acc[4]
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adc \$0, @acc[5]
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#################################
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# Branch-less conditional subtraction of modulus
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mov @acc[3], @acc[0]
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sub 8*0($n_ptr), @acc[1]
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sbb 8*1($n_ptr), @acc[2]
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sbb 8*2($n_ptr), @acc[3]
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mov @acc[4], $hi
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sbb 8*3($n_ptr), @acc[4]
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sbb \$0, @acc[5]
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cmovc %rax, @acc[1]
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cmovc $b_ptr, @acc[2]
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cmovc @acc[0], @acc[3]
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mov @acc[1], 8*0($a_ptr)
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cmovc $hi, @acc[4]
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mov @acc[2], 8*1($a_ptr)
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mov @acc[3], 8*2($a_ptr)
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mov @acc[4], 8*3($a_ptr)
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ret
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.cfi_endproc
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.size __mulq_mont_sparse_256,.-__mulq_mont_sparse_256
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___
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} }
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{ my ($n_ptr, $n0)=($b_ptr, $n_ptr); # arguments are "shifted"
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$code.=<<___;
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.globl from_mont_256
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.hidden from_mont_256
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.type from_mont_256,\@function,4,"unwind"
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.align 32
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from_mont_256:
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.cfi_startproc
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push %rbp
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.cfi_push %rbp
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push %rbx
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.cfi_push %rbx
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push %r12
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.cfi_push %r12
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push %r13
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.cfi_push %r13
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push %r14
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.cfi_push %r14
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push %r15
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.cfi_push %r15
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sub \$8, %rsp
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.cfi_adjust_cfa_offset 8
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.cfi_end_prologue
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mov $b_org, $n_ptr
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call __mulq_by_1_mont_256
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#################################
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# Branch-less conditional acc[0:3] - modulus
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#mov @acc[4], %rax # __mulq_by_1_mont_256 does it
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mov @acc[5], @acc[1]
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mov @acc[6], @acc[2]
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mov @acc[0], @acc[3]
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sub 8*0($n_ptr), @acc[4]
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sbb 8*1($n_ptr), @acc[5]
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sbb 8*2($n_ptr), @acc[6]
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sbb 8*3($n_ptr), @acc[0]
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cmovnc @acc[4], %rax
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cmovnc @acc[5], @acc[1]
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cmovnc @acc[6], @acc[2]
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mov %rax, 8*0($r_ptr)
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cmovnc @acc[0], @acc[3]
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mov @acc[1], 8*1($r_ptr)
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mov @acc[2], 8*2($r_ptr)
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mov @acc[3], 8*3($r_ptr)
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mov 8(%rsp),%r15
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.cfi_restore %r15
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mov 16(%rsp),%r14
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.cfi_restore %r14
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mov 24(%rsp),%r13
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.cfi_restore %r13
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mov 32(%rsp),%r12
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.cfi_restore %r12
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mov 40(%rsp),%rbx
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.cfi_restore %rbx
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mov 48(%rsp),%rbp
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.cfi_restore %rbp
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lea 56(%rsp),%rsp
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.cfi_adjust_cfa_offset -56
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.cfi_epilogue
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ret
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.cfi_endproc
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.size from_mont_256,.-from_mont_256
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.globl redc_mont_256
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.hidden redc_mont_256
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.type redc_mont_256,\@function,4,"unwind"
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.align 32
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redc_mont_256:
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.cfi_startproc
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push %rbp
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.cfi_push %rbp
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push %rbx
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.cfi_push %rbx
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push %r12
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.cfi_push %r12
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push %r13
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.cfi_push %r13
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push %r14
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.cfi_push %r14
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push %r15
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.cfi_push %r15
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sub \$8, %rsp
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.cfi_adjust_cfa_offset 8
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.cfi_end_prologue
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mov $b_org, $n_ptr
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call __mulq_by_1_mont_256
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add 8*4($a_ptr), @acc[4] # accumulate upper half
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adc 8*5($a_ptr), @acc[5]
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mov @acc[4], %rax
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adc 8*6($a_ptr), @acc[6]
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mov @acc[5], @acc[1]
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adc 8*7($a_ptr), @acc[0]
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sbb $a_ptr, $a_ptr
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#################################
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# Branch-less conditional acc[0:4] - modulus
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mov @acc[6], @acc[2]
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sub 8*0($n_ptr), @acc[4]
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sbb 8*1($n_ptr), @acc[5]
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sbb 8*2($n_ptr), @acc[6]
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mov @acc[0], @acc[3]
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sbb 8*3($n_ptr), @acc[0]
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sbb \$0, $a_ptr
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cmovnc @acc[4], %rax
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cmovnc @acc[5], @acc[1]
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cmovnc @acc[6], @acc[2]
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mov %rax, 8*0($r_ptr)
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cmovnc @acc[0], @acc[3]
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mov @acc[1], 8*1($r_ptr)
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mov @acc[2], 8*2($r_ptr)
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mov @acc[3], 8*3($r_ptr)
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mov 8(%rsp),%r15
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.cfi_restore %r15
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mov 16(%rsp),%r14
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.cfi_restore %r14
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mov 24(%rsp),%r13
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.cfi_restore %r13
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mov 32(%rsp),%r12
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.cfi_restore %r12
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mov 40(%rsp),%rbx
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.cfi_restore %rbx
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mov 48(%rsp),%rbp
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.cfi_restore %rbp
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lea 56(%rsp),%rsp
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.cfi_adjust_cfa_offset -56
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.cfi_epilogue
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ret
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.cfi_endproc
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.size redc_mont_256,.-redc_mont_256
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___
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{
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my @acc=@acc;
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$code.=<<___;
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.type __mulq_by_1_mont_256,\@abi-omnipotent
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.align 32
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__mulq_by_1_mont_256:
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mov 8*0($a_ptr), %rax
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mov 8*1($a_ptr), @acc[1]
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mov 8*2($a_ptr), @acc[2]
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mov 8*3($a_ptr), @acc[3]
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mov %rax, @acc[4]
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imulq $n0, %rax
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mov %rax, @acc[0]
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___
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for (my $i=0; $i<4; $i++) {
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my $hi = @acc[4];
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$code.=<<___;
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################################# reduction $i
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mulq 8*0($n_ptr)
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add %rax, @acc[4] # guaranteed to be zero
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mov @acc[0], %rax
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adc %rdx, @acc[4]
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mulq 8*1($n_ptr)
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add %rax, @acc[1]
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mov @acc[0], %rax
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adc \$0, %rdx
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add @acc[4], @acc[1]
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adc \$0, %rdx
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mov %rdx, $hi
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mulq 8*2($n_ptr)
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___
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$code.=<<___ if ($i<3);
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mov @acc[1], @acc[5]
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imulq $n0, @acc[1]
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___
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$code.=<<___;
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add %rax, @acc[2]
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mov @acc[0], %rax
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adc \$0, %rdx
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add $hi, @acc[2]
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adc \$0, %rdx
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mov %rdx, $hi
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mulq 8*3($n_ptr)
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add %rax, @acc[3]
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mov @acc[1], %rax
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adc \$0, %rdx
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add $hi, @acc[3]
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adc \$0, %rdx
|
|
mov %rdx, @acc[4]
|
|
___
|
|
push(@acc,shift(@acc));
|
|
}
|
|
$code.=<<___;
|
|
ret
|
|
.size __mulq_by_1_mont_256,.-__mulq_by_1_mont_256
|
|
___
|
|
} } }
|
|
|
|
print $code;
|
|
close STDOUT;
|