ppc64-mont.pl 39.2 KB
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#!/usr/bin/env perl

# ====================================================================
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# Written by Andy Polyakov <appro@openssl.org> for the OpenSSL
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# project. The module is, however, dual licensed under OpenSSL and
# CRYPTOGAMS licenses depending on where you obtain it. For further
# details see http://www.openssl.org/~appro/cryptogams/.
# ====================================================================

# December 2007

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# The reason for undertaken effort is basically following. Even though
# Power 6 CPU operates at incredible 4.7GHz clock frequency, its PKI
# performance was observed to be less than impressive, essentially as
# fast as 1.8GHz PPC970, or 2.6 times(!) slower than one would hope.
# Well, it's not surprising that IBM had to make some sacrifices to
# boost the clock frequency that much, but no overall improvement?
# Having observed how much difference did switching to FPU make on
# UltraSPARC, playing same stunt on Power 6 appeared appropriate...
# Unfortunately the resulting performance improvement is not as
# impressive, ~30%, and in absolute terms is still very far from what
# one would expect from 4.7GHz CPU. There is a chance that I'm doing
# something wrong, but in the lack of assembler level micro-profiling
# data or at least decent platform guide I can't tell... Or better
# results might be achieved with VMX... Anyway, this module provides
# *worse* performance on other PowerPC implementations, ~40-15% slower
# on PPC970 depending on key length and ~40% slower on Power 5 for all
# key lengths. As it's obviously inappropriate as "best all-round"
# alternative, it has to be complemented with run-time CPU family
# detection. Oh! It should also be noted that unlike other PowerPC
# implementation IALU ppc-mont.pl module performs *suboptimaly* on
# >=1024-bit key lengths on Power 6. It should also be noted that
# *everything* said so far applies to 64-bit builds! As far as 32-bit
# application executed on 64-bit CPU goes, this module is likely to
# become preferred choice, because it's easy to adapt it for such
# case and *is* faster than 32-bit ppc-mont.pl on *all* processors.

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# February 2008
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# Micro-profiling assisted optimization results in ~15% improvement
# over original ppc64-mont.pl version, or overall ~50% improvement
# over ppc.pl module on Power 6. If compared to ppc-mont.pl on same
# Power 6 CPU, this module is 5-150% faster depending on key length,
# [hereafter] more for longer keys. But if compared to ppc-mont.pl
# on 1.8GHz PPC970, it's only 5-55% faster. Still far from impressive
# in absolute terms, but it's apparently the way Power 6 is...

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# December 2009

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# Adapted for 32-bit build this module delivers 25-120%, yes, more
# than *twice* for longer keys, performance improvement over 32-bit
# ppc-mont.pl on 1.8GHz PPC970. However! This implementation utilizes
# even 64-bit integer operations and the trouble is that most PPC
# operating systems don't preserve upper halves of general purpose
# registers upon 32-bit signal delivery. They do preserve them upon
# context switch, but not signalling:-( This means that asynchronous
# signals have to be blocked upon entry to this subroutine. Signal
# masking (and of course complementary unmasking) has quite an impact
# on performance, naturally larger for shorter keys. It's so severe
# that 512-bit key performance can be as low as 1/3 of expected one.
# This is why this routine can be engaged for longer key operations
# only on these OSes, see crypto/ppccap.c for further details. MacOS X
# is an exception from this and doesn't require signal masking, and
# that's where above improvement coefficients were collected. For
# others alternative would be to break dependence on upper halves of
# GPRs by sticking to 32-bit integer operations...
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# December 2012

# Remove above mentioned dependence on GPRs' upper halves in 32-bit
# build. No signal masking overhead, but integer instructions are
# *more* numerous... It's still "universally" faster than 32-bit
# ppc-mont.pl, but improvement coefficient is not as impressive
# for longer keys...

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$flavour = shift;

if ($flavour =~ /32/) {
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	$SIZE_T=4;
	$RZONE=	224;
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	$fname=	"bn_mul_mont_fpu64";
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	$STUX=	"stwux";	# store indexed and update
	$PUSH=	"stw";
	$POP=	"lwz";
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} elsif ($flavour =~ /64/) {
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	$SIZE_T=8;
	$RZONE=	288;
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	$fname=	"bn_mul_mont_fpu64";
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	# same as above, but 64-bit mnemonics...
	$STUX=	"stdux";	# store indexed and update
	$PUSH=	"std";
	$POP=	"ld";
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} else { die "nonsense $flavour"; }
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$LITTLE_ENDIAN = ($flavour=~/le$/) ? 4 : 0;

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$0 =~ m/(.*[\/\\])[^\/\\]+$/; $dir=$1;
( $xlate="${dir}ppc-xlate.pl" and -f $xlate ) or
( $xlate="${dir}../../perlasm/ppc-xlate.pl" and -f $xlate) or
die "can't locate ppc-xlate.pl";

open STDOUT,"| $^X $xlate $flavour ".shift || die "can't call $xlate: $!";
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$FRAME=64;	# padded frame header
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$TRANSFER=16*8;
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$carry="r0";
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$sp="r1";
$toc="r2";
$rp="r3";	$ovf="r3";
$ap="r4";
$bp="r5";
$np="r6";
$n0="r7";
$num="r8";
$rp="r9";	# $rp is reassigned
$tp="r10";
$j="r11";
$i="r12";
# non-volatile registers
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$c1="r19";
$n1="r20";
$a1="r21";
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$nap_d="r22";	# interleaved ap and np in double format
$a0="r23";	# ap[0]
$t0="r24";	# temporary registers
$t1="r25";
$t2="r26";
$t3="r27";
$t4="r28";
$t5="r29";
$t6="r30";
$t7="r31";
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# PPC offers enough register bank capacity to unroll inner loops twice
#
#     ..A3A2A1A0
#           dcba
#    -----------
#            A0a
#           A0b
#          A0c
#         A0d
#          A1a
#         A1b
#        A1c
#       A1d
#        A2a
#       A2b
#      A2c
#     A2d
#      A3a
#     A3b
#    A3c
#   A3d
#    ..a
#   ..b
#
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$ba="f0";	$bb="f1";	$bc="f2";	$bd="f3";
$na="f4";	$nb="f5";	$nc="f6";	$nd="f7";
$dota="f8";	$dotb="f9";
$A0="f10";	$A1="f11";	$A2="f12";	$A3="f13";
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$N0="f20";	$N1="f21";	$N2="f22";	$N3="f23";
$T0a="f24";	$T0b="f25";
$T1a="f26";	$T1b="f27";
$T2a="f28";	$T2b="f29";
$T3a="f30";	$T3b="f31";
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# sp----------->+-------------------------------+
#		| saved sp			|
#		+-------------------------------+
#		.				.
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#   +64		+-------------------------------+
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#		| 16 gpr<->fpr transfer zone	|
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#		.				.
#		.				.
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#   +16*8	+-------------------------------+
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#		| __int64 tmp[-1]		|
#		+-------------------------------+
#		| __int64 tmp[num]		|
#		.				.
#		.				.
#		.				.
#   +(num+1)*8	+-------------------------------+
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#		| padding to 64 byte boundary	|
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#		.				.
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#   +X		+-------------------------------+
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#		| double nap_d[4*num]		|
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#		.				.
#		.				.
#		.				.
#		+-------------------------------+
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#		.				.
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#   -13*size_t	+-------------------------------+
#		| 13 saved gpr, r19-r31		|
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#		.				.
#		.				.
#   -12*8	+-------------------------------+
#		| 12 saved fpr, f20-f31		|
#		.				.
#		.				.
#		+-------------------------------+
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$code=<<___;
.machine "any"
.text

.globl	.$fname
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.align	5
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.$fname:
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	cmpwi	$num,`3*8/$SIZE_T`
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	mr	$rp,r3		; $rp is reassigned
	li	r3,0		; possible "not handled" return code
	bltlr-
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	andi.	r0,$num,`16/$SIZE_T-1`		; $num has to be "even"
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	bnelr-

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	slwi	$num,$num,`log($SIZE_T)/log(2)`	; num*=sizeof(BN_LONG)
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	li	$i,-4096
	slwi	$tp,$num,2	; place for {an}p_{lh}[num], i.e. 4*num
	add	$tp,$tp,$num	; place for tp[num+1]
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	addi	$tp,$tp,`$FRAME+$TRANSFER+8+64+$RZONE`
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	subf	$tp,$tp,$sp	; $sp-$tp
	and	$tp,$tp,$i	; minimize TLB usage
	subf	$tp,$sp,$tp	; $tp-$sp
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	mr	$i,$sp
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	$STUX	$sp,$sp,$tp	; alloca

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	$PUSH	r19,`-12*8-13*$SIZE_T`($i)
	$PUSH	r20,`-12*8-12*$SIZE_T`($i)
	$PUSH	r21,`-12*8-11*$SIZE_T`($i)
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	$PUSH	r22,`-12*8-10*$SIZE_T`($i)
	$PUSH	r23,`-12*8-9*$SIZE_T`($i)
	$PUSH	r24,`-12*8-8*$SIZE_T`($i)
	$PUSH	r25,`-12*8-7*$SIZE_T`($i)
	$PUSH	r26,`-12*8-6*$SIZE_T`($i)
	$PUSH	r27,`-12*8-5*$SIZE_T`($i)
	$PUSH	r28,`-12*8-4*$SIZE_T`($i)
	$PUSH	r29,`-12*8-3*$SIZE_T`($i)
	$PUSH	r30,`-12*8-2*$SIZE_T`($i)
	$PUSH	r31,`-12*8-1*$SIZE_T`($i)
	stfd	f20,`-12*8`($i)
	stfd	f21,`-11*8`($i)
	stfd	f22,`-10*8`($i)
	stfd	f23,`-9*8`($i)
	stfd	f24,`-8*8`($i)
	stfd	f25,`-7*8`($i)
	stfd	f26,`-6*8`($i)
	stfd	f27,`-5*8`($i)
	stfd	f28,`-4*8`($i)
	stfd	f29,`-3*8`($i)
	stfd	f30,`-2*8`($i)
	stfd	f31,`-1*8`($i)
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	addi	$tp,$sp,`$FRAME+$TRANSFER+8+64`
	li	$i,-64
	add	$nap_d,$tp,$num
	and	$nap_d,$nap_d,$i	; align to 64 bytes
	; nap_d is off by 1, because it's used with stfdu/lfdu
	addi	$nap_d,$nap_d,-8
	srwi	$j,$num,`3+1`	; counter register, num/2
	addi	$j,$j,-1
	addi	$tp,$sp,`$FRAME+$TRANSFER-8`
	li	$carry,0
	mtctr	$j
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___

$code.=<<___ if ($SIZE_T==8);
	ld	$a0,0($ap)		; pull ap[0] value
	ld	$t3,0($bp)		; bp[0]
	ld	$n0,0($n0)		; pull n0[0] value
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	mulld	$t7,$a0,$t3		; ap[0]*bp[0]
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	; transfer bp[0] to FPU as 4x16-bit values
	extrdi	$t0,$t3,16,48
	extrdi	$t1,$t3,16,32
	extrdi	$t2,$t3,16,16
	extrdi	$t3,$t3,16,0
	std	$t0,`$FRAME+0`($sp)
	std	$t1,`$FRAME+8`($sp)
	std	$t2,`$FRAME+16`($sp)
	std	$t3,`$FRAME+24`($sp)
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	mulld	$t7,$t7,$n0		; tp[0]*n0
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	; transfer (ap[0]*bp[0])*n0 to FPU as 4x16-bit values
	extrdi	$t4,$t7,16,48
	extrdi	$t5,$t7,16,32
	extrdi	$t6,$t7,16,16
	extrdi	$t7,$t7,16,0
	std	$t4,`$FRAME+32`($sp)
	std	$t5,`$FRAME+40`($sp)
	std	$t6,`$FRAME+48`($sp)
	std	$t7,`$FRAME+56`($sp)
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	extrdi	$t0,$a0,32,32		; lwz	$t0,4($ap)
	extrdi	$t1,$a0,32,0		; lwz	$t1,0($ap)
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	lwz	$t2,`12^$LITTLE_ENDIAN`($ap)	; load a[1] as 32-bit word pair
	lwz	$t3,`8^$LITTLE_ENDIAN`($ap)
	lwz	$t4,`4^$LITTLE_ENDIAN`($np)	; load n[0] as 32-bit word pair
	lwz	$t5,`0^$LITTLE_ENDIAN`($np)
	lwz	$t6,`12^$LITTLE_ENDIAN`($np)	; load n[1] as 32-bit word pair
	lwz	$t7,`8^$LITTLE_ENDIAN`($np)
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___
$code.=<<___ if ($SIZE_T==4);
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	lwz	$a0,0($ap)		; pull ap[0,1] value
	mr	$n1,$n0
	lwz	$a1,4($ap)
	li	$c1,0
	lwz	$t1,0($bp)		; bp[0,1]
	lwz	$t3,4($bp)
	lwz	$n0,0($n1)		; pull n0[0,1] value
	lwz	$n1,4($n1)

	mullw	$t4,$a0,$t1		; mulld ap[0]*bp[0]
	mulhwu	$t5,$a0,$t1
	mullw	$t6,$a1,$t1
	mullw	$t7,$a0,$t3
	add	$t5,$t5,$t6
	add	$t5,$t5,$t7
	; transfer bp[0] to FPU as 4x16-bit values
	extrwi	$t0,$t1,16,16
	extrwi	$t1,$t1,16,0
	extrwi	$t2,$t3,16,16
	extrwi	$t3,$t3,16,0
	std	$t0,`$FRAME+0`($sp)	; yes, std in 32-bit build
	std	$t1,`$FRAME+8`($sp)
	std	$t2,`$FRAME+16`($sp)
	std	$t3,`$FRAME+24`($sp)

	mullw	$t0,$t4,$n0		; mulld tp[0]*n0
	mulhwu	$t1,$t4,$n0
	mullw	$t2,$t5,$n0
	mullw	$t3,$t4,$n1
	add	$t1,$t1,$t2
	add	$t1,$t1,$t3
	; transfer (ap[0]*bp[0])*n0 to FPU as 4x16-bit values
	extrwi	$t4,$t0,16,16
	extrwi	$t5,$t0,16,0
	extrwi	$t6,$t1,16,16
	extrwi	$t7,$t1,16,0
	std	$t4,`$FRAME+32`($sp)	; yes, std in 32-bit build
	std	$t5,`$FRAME+40`($sp)
	std	$t6,`$FRAME+48`($sp)
	std	$t7,`$FRAME+56`($sp)

	mr	$t0,$a0			; lwz	$t0,0($ap)
	mr	$t1,$a1			; lwz	$t1,4($ap)
	lwz	$t2,8($ap)		; load a[j..j+3] as 32-bit word pairs
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	lwz	$t3,12($ap)
	lwz	$t4,0($np)		; load n[j..j+3] as 32-bit word pairs
	lwz	$t5,4($np)
	lwz	$t6,8($np)
	lwz	$t7,12($np)
___
$code.=<<___;
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	lfd	$ba,`$FRAME+0`($sp)
	lfd	$bb,`$FRAME+8`($sp)
	lfd	$bc,`$FRAME+16`($sp)
	lfd	$bd,`$FRAME+24`($sp)
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	lfd	$na,`$FRAME+32`($sp)
	lfd	$nb,`$FRAME+40`($sp)
	lfd	$nc,`$FRAME+48`($sp)
	lfd	$nd,`$FRAME+56`($sp)
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	std	$t0,`$FRAME+64`($sp)	; yes, std even in 32-bit build
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	std	$t1,`$FRAME+72`($sp)
	std	$t2,`$FRAME+80`($sp)
	std	$t3,`$FRAME+88`($sp)
	std	$t4,`$FRAME+96`($sp)
	std	$t5,`$FRAME+104`($sp)
	std	$t6,`$FRAME+112`($sp)
	std	$t7,`$FRAME+120`($sp)
	fcfid	$ba,$ba
	fcfid	$bb,$bb
	fcfid	$bc,$bc
	fcfid	$bd,$bd
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	fcfid	$na,$na
	fcfid	$nb,$nb
	fcfid	$nc,$nc
	fcfid	$nd,$nd
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	lfd	$A0,`$FRAME+64`($sp)
	lfd	$A1,`$FRAME+72`($sp)
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	lfd	$A2,`$FRAME+80`($sp)
	lfd	$A3,`$FRAME+88`($sp)
	lfd	$N0,`$FRAME+96`($sp)
	lfd	$N1,`$FRAME+104`($sp)
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	lfd	$N2,`$FRAME+112`($sp)
	lfd	$N3,`$FRAME+120`($sp)
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	fcfid	$A0,$A0
	fcfid	$A1,$A1
	fcfid	$A2,$A2
	fcfid	$A3,$A3
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	fcfid	$N0,$N0
	fcfid	$N1,$N1
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	fcfid	$N2,$N2
	fcfid	$N3,$N3
	addi	$ap,$ap,16
	addi	$np,$np,16

	fmul	$T1a,$A1,$ba
	fmul	$T1b,$A1,$bb
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	stfd	$A0,8($nap_d)		; save a[j] in double format
	stfd	$A1,16($nap_d)
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	fmul	$T2a,$A2,$ba
	fmul	$T2b,$A2,$bb
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	stfd	$A2,24($nap_d)		; save a[j+1] in double format
	stfd	$A3,32($nap_d)
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	fmul	$T3a,$A3,$ba
	fmul	$T3b,$A3,$bb
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	stfd	$N0,40($nap_d)		; save n[j] in double format
	stfd	$N1,48($nap_d)
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	fmul	$T0a,$A0,$ba
	fmul	$T0b,$A0,$bb
	stfd	$N2,56($nap_d)		; save n[j+1] in double format
	stfdu	$N3,64($nap_d)
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	fmadd	$T1a,$A0,$bc,$T1a
	fmadd	$T1b,$A0,$bd,$T1b
	fmadd	$T2a,$A1,$bc,$T2a
	fmadd	$T2b,$A1,$bd,$T2b
	fmadd	$T3a,$A2,$bc,$T3a
	fmadd	$T3b,$A2,$bd,$T3b
	fmul	$dota,$A3,$bc
	fmul	$dotb,$A3,$bd

	fmadd	$T1a,$N1,$na,$T1a
	fmadd	$T1b,$N1,$nb,$T1b
	fmadd	$T2a,$N2,$na,$T2a
	fmadd	$T2b,$N2,$nb,$T2b
	fmadd	$T3a,$N3,$na,$T3a
	fmadd	$T3b,$N3,$nb,$T3b
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	fmadd	$T0a,$N0,$na,$T0a
	fmadd	$T0b,$N0,$nb,$T0b
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	fmadd	$T1a,$N0,$nc,$T1a
	fmadd	$T1b,$N0,$nd,$T1b
	fmadd	$T2a,$N1,$nc,$T2a
	fmadd	$T2b,$N1,$nd,$T2b
	fmadd	$T3a,$N2,$nc,$T3a
	fmadd	$T3b,$N2,$nd,$T3b
	fmadd	$dota,$N3,$nc,$dota
	fmadd	$dotb,$N3,$nd,$dotb

	fctid	$T0a,$T0a
	fctid	$T0b,$T0b
	fctid	$T1a,$T1a
	fctid	$T1b,$T1b
	fctid	$T2a,$T2a
	fctid	$T2b,$T2b
	fctid	$T3a,$T3a
	fctid	$T3b,$T3b

	stfd	$T0a,`$FRAME+0`($sp)
	stfd	$T0b,`$FRAME+8`($sp)
	stfd	$T1a,`$FRAME+16`($sp)
	stfd	$T1b,`$FRAME+24`($sp)
	stfd	$T2a,`$FRAME+32`($sp)
	stfd	$T2b,`$FRAME+40`($sp)
	stfd	$T3a,`$FRAME+48`($sp)
	stfd	$T3b,`$FRAME+56`($sp)
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.align	5
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L1st:
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___
$code.=<<___ if ($SIZE_T==8);
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	lwz	$t0,`4^$LITTLE_ENDIAN`($ap)	; load a[j] as 32-bit word pair
	lwz	$t1,`0^$LITTLE_ENDIAN`($ap)
	lwz	$t2,`12^$LITTLE_ENDIAN`($ap)	; load a[j+1] as 32-bit word pair
	lwz	$t3,`8^$LITTLE_ENDIAN`($ap)
	lwz	$t4,`4^$LITTLE_ENDIAN`($np)	; load n[j] as 32-bit word pair
	lwz	$t5,`0^$LITTLE_ENDIAN`($np)
	lwz	$t6,`12^$LITTLE_ENDIAN`($np)	; load n[j+1] as 32-bit word pair
	lwz	$t7,`8^$LITTLE_ENDIAN`($np)
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___
$code.=<<___ if ($SIZE_T==4);
	lwz	$t0,0($ap)		; load a[j..j+3] as 32-bit word pairs
	lwz	$t1,4($ap)
	lwz	$t2,8($ap)
	lwz	$t3,12($ap)
	lwz	$t4,0($np)		; load n[j..j+3] as 32-bit word pairs
	lwz	$t5,4($np)
	lwz	$t6,8($np)
	lwz	$t7,12($np)
___
$code.=<<___;
488
	std	$t0,`$FRAME+64`($sp)	; yes, std even in 32-bit build
489 490 491 492 493 494 495
	std	$t1,`$FRAME+72`($sp)
	std	$t2,`$FRAME+80`($sp)
	std	$t3,`$FRAME+88`($sp)
	std	$t4,`$FRAME+96`($sp)
	std	$t5,`$FRAME+104`($sp)
	std	$t6,`$FRAME+112`($sp)
	std	$t7,`$FRAME+120`($sp)
496 497 498
___
if ($SIZE_T==8 or $flavour =~ /osx/) {
$code.=<<___;
499 500 501 502 503 504 505 506
	ld	$t0,`$FRAME+0`($sp)
	ld	$t1,`$FRAME+8`($sp)
	ld	$t2,`$FRAME+16`($sp)
	ld	$t3,`$FRAME+24`($sp)
	ld	$t4,`$FRAME+32`($sp)
	ld	$t5,`$FRAME+40`($sp)
	ld	$t6,`$FRAME+48`($sp)
	ld	$t7,`$FRAME+56`($sp)
507 508 509
___
} else {
$code.=<<___;
510 511 512 513 514 515 516 517
	lwz	$t1,`$FRAME+0^$LITTLE_ENDIAN`($sp)
	lwz	$t0,`$FRAME+4^$LITTLE_ENDIAN`($sp)
	lwz	$t3,`$FRAME+8^$LITTLE_ENDIAN`($sp)
	lwz	$t2,`$FRAME+12^$LITTLE_ENDIAN`($sp)
	lwz	$t5,`$FRAME+16^$LITTLE_ENDIAN`($sp)
	lwz	$t4,`$FRAME+20^$LITTLE_ENDIAN`($sp)
	lwz	$t7,`$FRAME+24^$LITTLE_ENDIAN`($sp)
	lwz	$t6,`$FRAME+28^$LITTLE_ENDIAN`($sp)
518 519 520
___
}
$code.=<<___;
521 522
	lfd	$A0,`$FRAME+64`($sp)
	lfd	$A1,`$FRAME+72`($sp)
A
Andy Polyakov 已提交
523 524 525 526
	lfd	$A2,`$FRAME+80`($sp)
	lfd	$A3,`$FRAME+88`($sp)
	lfd	$N0,`$FRAME+96`($sp)
	lfd	$N1,`$FRAME+104`($sp)
527 528
	lfd	$N2,`$FRAME+112`($sp)
	lfd	$N3,`$FRAME+120`($sp)
529 530 531 532
	fcfid	$A0,$A0
	fcfid	$A1,$A1
	fcfid	$A2,$A2
	fcfid	$A3,$A3
A
Andy Polyakov 已提交
533 534
	fcfid	$N0,$N0
	fcfid	$N1,$N1
535 536 537 538 539 540 541 542 543
	fcfid	$N2,$N2
	fcfid	$N3,$N3
	addi	$ap,$ap,16
	addi	$np,$np,16

	fmul	$T1a,$A1,$ba
	fmul	$T1b,$A1,$bb
	fmul	$T2a,$A2,$ba
	fmul	$T2b,$A2,$bb
A
Andy Polyakov 已提交
544 545
	stfd	$A0,8($nap_d)		; save a[j] in double format
	stfd	$A1,16($nap_d)
546 547
	fmul	$T3a,$A3,$ba
	fmul	$T3b,$A3,$bb
548 549
	fmadd	$T0a,$A0,$ba,$dota
	fmadd	$T0b,$A0,$bb,$dotb
A
Andy Polyakov 已提交
550 551
	stfd	$A2,24($nap_d)		; save a[j+1] in double format
	stfd	$A3,32($nap_d)
552 553 554
___
if ($SIZE_T==8 or $flavour =~ /osx/) {
$code.=<<___;
555 556 557 558
	fmadd	$T1a,$A0,$bc,$T1a
	fmadd	$T1b,$A0,$bd,$T1b
	fmadd	$T2a,$A1,$bc,$T2a
	fmadd	$T2b,$A1,$bd,$T2b
A
Andy Polyakov 已提交
559 560
	stfd	$N0,40($nap_d)		; save n[j] in double format
	stfd	$N1,48($nap_d)
561 562
	fmadd	$T3a,$A2,$bc,$T3a
	fmadd	$T3b,$A2,$bd,$T3b
A
Andy Polyakov 已提交
563
	 add	$t0,$t0,$carry		; can not overflow
564 565
	fmul	$dota,$A3,$bc
	fmul	$dotb,$A3,$bd
A
Andy Polyakov 已提交
566 567 568 569 570
	stfd	$N2,56($nap_d)		; save n[j+1] in double format
	stfdu	$N3,64($nap_d)
	 srdi	$carry,$t0,16
	 add	$t1,$t1,$carry
	 srdi	$carry,$t1,16
571 572 573

	fmadd	$T1a,$N1,$na,$T1a
	fmadd	$T1b,$N1,$nb,$T1b
A
Andy Polyakov 已提交
574
	 insrdi	$t0,$t1,16,32
575 576
	fmadd	$T2a,$N2,$na,$T2a
	fmadd	$T2b,$N2,$nb,$T2b
A
Andy Polyakov 已提交
577
	 add	$t2,$t2,$carry
578 579
	fmadd	$T3a,$N3,$na,$T3a
	fmadd	$T3b,$N3,$nb,$T3b
A
Andy Polyakov 已提交
580
	 srdi	$carry,$t2,16
581 582
	fmadd	$T0a,$N0,$na,$T0a
	fmadd	$T0b,$N0,$nb,$T0b
A
Andy Polyakov 已提交
583 584
	 insrdi	$t0,$t2,16,16
	 add	$t3,$t3,$carry
585
	 srdi	$carry,$t3,16
586 587 588

	fmadd	$T1a,$N0,$nc,$T1a
	fmadd	$T1b,$N0,$nd,$T1b
A
Andy Polyakov 已提交
589
	 insrdi	$t0,$t3,16,0		; 0..63 bits
590 591
	fmadd	$T2a,$N1,$nc,$T2a
	fmadd	$T2b,$N1,$nd,$T2b
A
Andy Polyakov 已提交
592
	 add	$t4,$t4,$carry
593 594
	fmadd	$T3a,$N2,$nc,$T3a
	fmadd	$T3b,$N2,$nd,$T3b
A
Andy Polyakov 已提交
595
	 srdi	$carry,$t4,16
596 597
	fmadd	$dota,$N3,$nc,$dota
	fmadd	$dotb,$N3,$nd,$dotb
598 599 600
	 add	$t5,$t5,$carry
	 srdi	$carry,$t5,16
	 insrdi	$t4,$t5,16,32
A
Andy Polyakov 已提交
601

602 603
	fctid	$T0a,$T0a
	fctid	$T0b,$T0b
604
	 add	$t6,$t6,$carry
605 606
	fctid	$T1a,$T1a
	fctid	$T1b,$T1b
607
	 srdi	$carry,$t6,16
608 609
	fctid	$T2a,$T2a
	fctid	$T2b,$T2b
A
Andy Polyakov 已提交
610
	 insrdi	$t4,$t6,16,16
611 612
	fctid	$T3a,$T3a
	fctid	$T3b,$T3b
A
Andy Polyakov 已提交
613
	 add	$t7,$t7,$carry
614 615
	 insrdi	$t4,$t7,16,0		; 64..127 bits
	 srdi	$carry,$t7,16		; upper 33 bits
616 617 618 619 620 621 622 623 624

	stfd	$T0a,`$FRAME+0`($sp)
	stfd	$T0b,`$FRAME+8`($sp)
	stfd	$T1a,`$FRAME+16`($sp)
	stfd	$T1b,`$FRAME+24`($sp)
	stfd	$T2a,`$FRAME+32`($sp)
	stfd	$T2b,`$FRAME+40`($sp)
	stfd	$T3a,`$FRAME+48`($sp)
	stfd	$T3b,`$FRAME+56`($sp)
625 626
	 std	$t0,8($tp)		; tp[j-1]
	 stdu	$t4,16($tp)		; tp[j]
627 628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655
___
} else {
$code.=<<___;
	fmadd	$T1a,$A0,$bc,$T1a
	fmadd	$T1b,$A0,$bd,$T1b
	 addc	$t0,$t0,$carry
	 adde	$t1,$t1,$c1
	 srwi	$carry,$t0,16
	fmadd	$T2a,$A1,$bc,$T2a
	fmadd	$T2b,$A1,$bd,$T2b
	stfd	$N0,40($nap_d)		; save n[j] in double format
	stfd	$N1,48($nap_d)
	 srwi	$c1,$t1,16
	 insrwi	$carry,$t1,16,0
	fmadd	$T3a,$A2,$bc,$T3a
	fmadd	$T3b,$A2,$bd,$T3b
	 addc	$t2,$t2,$carry
	 adde	$t3,$t3,$c1
	 srwi	$carry,$t2,16
	fmul	$dota,$A3,$bc
	fmul	$dotb,$A3,$bd
	stfd	$N2,56($nap_d)		; save n[j+1] in double format
	stfdu	$N3,64($nap_d)
	 insrwi	$t0,$t2,16,0		; 0..31 bits
	 srwi	$c1,$t3,16
	 insrwi	$carry,$t3,16,0

	fmadd	$T1a,$N1,$na,$T1a
	fmadd	$T1b,$N1,$nb,$T1b
656 657
	 lwz	$t3,`$FRAME+32^$LITTLE_ENDIAN`($sp)	; permuted $t1
	 lwz	$t2,`$FRAME+36^$LITTLE_ENDIAN`($sp)	; permuted $t0
658 659 660 661 662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677
	 addc	$t4,$t4,$carry
	 adde	$t5,$t5,$c1
	 srwi	$carry,$t4,16
	fmadd	$T2a,$N2,$na,$T2a
	fmadd	$T2b,$N2,$nb,$T2b
	 srwi	$c1,$t5,16
	 insrwi	$carry,$t5,16,0
	fmadd	$T3a,$N3,$na,$T3a
	fmadd	$T3b,$N3,$nb,$T3b
	 addc	$t6,$t6,$carry
	 adde	$t7,$t7,$c1
	 srwi	$carry,$t6,16
	fmadd	$T0a,$N0,$na,$T0a
	fmadd	$T0b,$N0,$nb,$T0b
	 insrwi	$t4,$t6,16,0		; 32..63 bits
	 srwi	$c1,$t7,16
	 insrwi	$carry,$t7,16,0

	fmadd	$T1a,$N0,$nc,$T1a
	fmadd	$T1b,$N0,$nd,$T1b
678 679
	 lwz	$t7,`$FRAME+40^$LITTLE_ENDIAN`($sp)	; permuted $t3
	 lwz	$t6,`$FRAME+44^$LITTLE_ENDIAN`($sp)	; permuted $t2
680 681 682 683 684 685 686 687 688 689 690
	 addc	$t2,$t2,$carry
	 adde	$t3,$t3,$c1
	 srwi	$carry,$t2,16
	fmadd	$T2a,$N1,$nc,$T2a
	fmadd	$T2b,$N1,$nd,$T2b
	 stw	$t0,12($tp)		; tp[j-1]
	 stw	$t4,8($tp)
	 srwi	$c1,$t3,16
	 insrwi	$carry,$t3,16,0
	fmadd	$T3a,$N2,$nc,$T3a
	fmadd	$T3b,$N2,$nd,$T3b
691 692
	 lwz	$t1,`$FRAME+48^$LITTLE_ENDIAN`($sp)	; permuted $t5
	 lwz	$t0,`$FRAME+52^$LITTLE_ENDIAN`($sp)	; permuted $t4
693 694 695 696 697 698 699 700 701 702 703
	 addc	$t6,$t6,$carry
	 adde	$t7,$t7,$c1
	 srwi	$carry,$t6,16
	fmadd	$dota,$N3,$nc,$dota
	fmadd	$dotb,$N3,$nd,$dotb
	 insrwi	$t2,$t6,16,0		; 64..95 bits
	 srwi	$c1,$t7,16
	 insrwi	$carry,$t7,16,0

	fctid	$T0a,$T0a
	fctid	$T0b,$T0b
704 705
	 lwz	$t5,`$FRAME+56^$LITTLE_ENDIAN`($sp)	; permuted $t7
	 lwz	$t4,`$FRAME+60^$LITTLE_ENDIAN`($sp)	; permuted $t6
706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736
	 addc	$t0,$t0,$carry
	 adde	$t1,$t1,$c1
	 srwi	$carry,$t0,16
	fctid	$T1a,$T1a
	fctid	$T1b,$T1b
	 srwi	$c1,$t1,16
	 insrwi	$carry,$t1,16,0
	fctid	$T2a,$T2a
	fctid	$T2b,$T2b
	 addc	$t4,$t4,$carry
	 adde	$t5,$t5,$c1
	 srwi	$carry,$t4,16
	fctid	$T3a,$T3a
	fctid	$T3b,$T3b
	 insrwi	$t0,$t4,16,0		; 96..127 bits
	 srwi	$c1,$t5,16
	 insrwi	$carry,$t5,16,0

	stfd	$T0a,`$FRAME+0`($sp)
	stfd	$T0b,`$FRAME+8`($sp)
	stfd	$T1a,`$FRAME+16`($sp)
	stfd	$T1b,`$FRAME+24`($sp)
	stfd	$T2a,`$FRAME+32`($sp)
	stfd	$T2b,`$FRAME+40`($sp)
	stfd	$T3a,`$FRAME+48`($sp)
	stfd	$T3b,`$FRAME+56`($sp)
	 stw	$t2,20($tp)		; tp[j]
	 stwu	$t0,16($tp)
___
}
$code.=<<___;
737
	bdnz-	L1st
738 739 740

	fctid	$dota,$dota
	fctid	$dotb,$dotb
741 742 743
___
if ($SIZE_T==8 or $flavour =~ /osx/) {
$code.=<<___;
744 745 746 747 748 749 750 751
	ld	$t0,`$FRAME+0`($sp)
	ld	$t1,`$FRAME+8`($sp)
	ld	$t2,`$FRAME+16`($sp)
	ld	$t3,`$FRAME+24`($sp)
	ld	$t4,`$FRAME+32`($sp)
	ld	$t5,`$FRAME+40`($sp)
	ld	$t6,`$FRAME+48`($sp)
	ld	$t7,`$FRAME+56`($sp)
752 753
	stfd	$dota,`$FRAME+64`($sp)
	stfd	$dotb,`$FRAME+72`($sp)
754 755 756 757 758

	add	$t0,$t0,$carry		; can not overflow
	srdi	$carry,$t0,16
	add	$t1,$t1,$carry
	srdi	$carry,$t1,16
759
	insrdi	$t0,$t1,16,32
760 761
	add	$t2,$t2,$carry
	srdi	$carry,$t2,16
762
	insrdi	$t0,$t2,16,16
763 764
	add	$t3,$t3,$carry
	srdi	$carry,$t3,16
765
	insrdi	$t0,$t3,16,0		; 0..63 bits
766 767 768 769
	add	$t4,$t4,$carry
	srdi	$carry,$t4,16
	add	$t5,$t5,$carry
	srdi	$carry,$t5,16
770
	insrdi	$t4,$t5,16,32
771 772 773
	add	$t6,$t6,$carry
	srdi	$carry,$t6,16
	insrdi	$t4,$t6,16,16
774
	add	$t7,$t7,$carry
775 776
	insrdi	$t4,$t7,16,0		; 64..127 bits
	srdi	$carry,$t7,16		; upper 33 bits
777 778
	ld	$t6,`$FRAME+64`($sp)
	ld	$t7,`$FRAME+72`($sp)
779 780 781

	std	$t0,8($tp)		; tp[j-1]
	stdu	$t4,16($tp)		; tp[j]
782 783 784 785 786 787 788

	add	$t6,$t6,$carry		; can not overflow
	srdi	$carry,$t6,16
	add	$t7,$t7,$carry
	insrdi	$t6,$t7,48,0
	srdi	$ovf,$t7,48
	std	$t6,8($tp)		; tp[num-1]
789 790 791
___
} else {
$code.=<<___;
792 793 794 795 796 797 798 799
	lwz	$t1,`$FRAME+0^$LITTLE_ENDIAN`($sp)
	lwz	$t0,`$FRAME+4^$LITTLE_ENDIAN`($sp)
	lwz	$t3,`$FRAME+8^$LITTLE_ENDIAN`($sp)
	lwz	$t2,`$FRAME+12^$LITTLE_ENDIAN`($sp)
	lwz	$t5,`$FRAME+16^$LITTLE_ENDIAN`($sp)
	lwz	$t4,`$FRAME+20^$LITTLE_ENDIAN`($sp)
	lwz	$t7,`$FRAME+24^$LITTLE_ENDIAN`($sp)
	lwz	$t6,`$FRAME+28^$LITTLE_ENDIAN`($sp)
800 801
	stfd	$dota,`$FRAME+64`($sp)
	stfd	$dotb,`$FRAME+72`($sp)
802

803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827
	addc	$t0,$t0,$carry
	adde	$t1,$t1,$c1
	srwi	$carry,$t0,16
	insrwi	$carry,$t1,16,0
	srwi	$c1,$t1,16
	addc	$t2,$t2,$carry
	adde	$t3,$t3,$c1
	srwi	$carry,$t2,16
	 insrwi	$t0,$t2,16,0		; 0..31 bits
	insrwi	$carry,$t3,16,0
	srwi	$c1,$t3,16
	addc	$t4,$t4,$carry
	adde	$t5,$t5,$c1
	srwi	$carry,$t4,16
	insrwi	$carry,$t5,16,0
	srwi	$c1,$t5,16
	addc	$t6,$t6,$carry
	adde	$t7,$t7,$c1
	srwi	$carry,$t6,16
	 insrwi	$t4,$t6,16,0		; 32..63 bits
	insrwi	$carry,$t7,16,0
	srwi	$c1,$t7,16
	 stw	$t0,12($tp)		; tp[j-1]
	 stw	$t4,8($tp)

828 829 830 831 832 833 834 835
	lwz	$t3,`$FRAME+32^$LITTLE_ENDIAN`($sp)	; permuted $t1
	lwz	$t2,`$FRAME+36^$LITTLE_ENDIAN`($sp)	; permuted $t0
	lwz	$t7,`$FRAME+40^$LITTLE_ENDIAN`($sp)	; permuted $t3
	lwz	$t6,`$FRAME+44^$LITTLE_ENDIAN`($sp)	; permuted $t2
	lwz	$t1,`$FRAME+48^$LITTLE_ENDIAN`($sp)	; permuted $t5
	lwz	$t0,`$FRAME+52^$LITTLE_ENDIAN`($sp)	; permuted $t4
	lwz	$t5,`$FRAME+56^$LITTLE_ENDIAN`($sp)	; permuted $t7
	lwz	$t4,`$FRAME+60^$LITTLE_ENDIAN`($sp)	; permuted $t6
836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853 854 855 856 857 858 859 860 861

	addc	$t2,$t2,$carry
	adde	$t3,$t3,$c1
	srwi	$carry,$t2,16
	insrwi	$carry,$t3,16,0
	srwi	$c1,$t3,16
	addc	$t6,$t6,$carry
	adde	$t7,$t7,$c1
	srwi	$carry,$t6,16
	 insrwi	$t2,$t6,16,0		; 64..95 bits
	insrwi	$carry,$t7,16,0
	srwi	$c1,$t7,16
	addc	$t0,$t0,$carry
	adde	$t1,$t1,$c1
	srwi	$carry,$t0,16
	insrwi	$carry,$t1,16,0
	srwi	$c1,$t1,16
	addc	$t4,$t4,$carry
	adde	$t5,$t5,$c1
	srwi	$carry,$t4,16
	 insrwi	$t0,$t4,16,0		; 96..127 bits
	insrwi	$carry,$t5,16,0
	srwi	$c1,$t5,16
	 stw	$t2,20($tp)		; tp[j]
	 stwu	$t0,16($tp)

862 863 864 865
	lwz	$t7,`$FRAME+64^$LITTLE_ENDIAN`($sp)
	lwz	$t6,`$FRAME+68^$LITTLE_ENDIAN`($sp)
	lwz	$t5,`$FRAME+72^$LITTLE_ENDIAN`($sp)
	lwz	$t4,`$FRAME+76^$LITTLE_ENDIAN`($sp)
866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883

	addc	$t6,$t6,$carry
	adde	$t7,$t7,$c1
	srwi	$carry,$t6,16
	insrwi	$carry,$t7,16,0
	srwi	$c1,$t7,16
	addc	$t4,$t4,$carry
	adde	$t5,$t5,$c1

	insrwi	$t6,$t4,16,0
	srwi	$t4,$t4,16
	insrwi	$t4,$t5,16,0
	srwi	$ovf,$t5,16
	stw	$t6,12($tp)		; tp[num-1]
	stw	$t4,8($tp)
___
}
$code.=<<___;
884 885
	slwi	$t7,$num,2
	subf	$nap_d,$t7,$nap_d	; rewind pointer
886 887

	li	$i,8			; i=1
888
.align	5
889
Louter:
890 891 892
	addi	$tp,$sp,`$FRAME+$TRANSFER`
	li	$carry,0
	mtctr	$j
893 894 895
___
$code.=<<___ if ($SIZE_T==8);
	ldx	$t3,$bp,$i		; bp[i]
896

897 898 899
	ld	$t6,`$FRAME+$TRANSFER+8`($sp)	; tp[0]
	mulld	$t7,$a0,$t3		; ap[0]*bp[i]
	add	$t7,$t7,$t6		; ap[0]*bp[i]+tp[0]
900
	; transfer bp[i] to FPU as 4x16-bit values
901 902 903 904 905 906 907 908
	extrdi	$t0,$t3,16,48
	extrdi	$t1,$t3,16,32
	extrdi	$t2,$t3,16,16
	extrdi	$t3,$t3,16,0
	std	$t0,`$FRAME+0`($sp)
	std	$t1,`$FRAME+8`($sp)
	std	$t2,`$FRAME+16`($sp)
	std	$t3,`$FRAME+24`($sp)
909 910

	mulld	$t7,$t7,$n0		; tp[0]*n0
911
	; transfer (ap[0]*bp[i]+tp[0])*n0 to FPU as 4x16-bit values
912 913 914 915 916 917 918 919
	extrdi	$t4,$t7,16,48
	extrdi	$t5,$t7,16,32
	extrdi	$t6,$t7,16,16
	extrdi	$t7,$t7,16,0
	std	$t4,`$FRAME+32`($sp)
	std	$t5,`$FRAME+40`($sp)
	std	$t6,`$FRAME+48`($sp)
	std	$t7,`$FRAME+56`($sp)
920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945
___
$code.=<<___ if ($SIZE_T==4);
	add	$t0,$bp,$i
	li	$c1,0
	lwz	$t1,0($t0)		; bp[i,i+1]
	lwz	$t3,4($t0)

	mullw	$t4,$a0,$t1		; ap[0]*bp[i]
	lwz	$t0,`$FRAME+$TRANSFER+8+4`($sp)	; tp[0]
	mulhwu	$t5,$a0,$t1
	lwz	$t2,`$FRAME+$TRANSFER+8`($sp)	; tp[0]
	mullw	$t6,$a1,$t1
	mullw	$t7,$a0,$t3
	add	$t5,$t5,$t6
	add	$t5,$t5,$t7
	addc	$t4,$t4,$t0		; ap[0]*bp[i]+tp[0]
	adde	$t5,$t5,$t2
	; transfer bp[i] to FPU as 4x16-bit values
	extrwi	$t0,$t1,16,16
	extrwi	$t1,$t1,16,0
	extrwi	$t2,$t3,16,16
	extrwi	$t3,$t3,16,0
	std	$t0,`$FRAME+0`($sp)	; yes, std in 32-bit build
	std	$t1,`$FRAME+8`($sp)
	std	$t2,`$FRAME+16`($sp)
	std	$t3,`$FRAME+24`($sp)
946

947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963
	mullw	$t0,$t4,$n0		; mulld tp[0]*n0
	mulhwu	$t1,$t4,$n0
	mullw	$t2,$t5,$n0
	mullw	$t3,$t4,$n1
	add	$t1,$t1,$t2
	add	$t1,$t1,$t3
	; transfer (ap[0]*bp[i]+tp[0])*n0 to FPU as 4x16-bit values
	extrwi	$t4,$t0,16,16
	extrwi	$t5,$t0,16,0
	extrwi	$t6,$t1,16,16
	extrwi	$t7,$t1,16,0
	std	$t4,`$FRAME+32`($sp)	; yes, std in 32-bit build
	std	$t5,`$FRAME+40`($sp)
	std	$t6,`$FRAME+48`($sp)
	std	$t7,`$FRAME+56`($sp)
___
$code.=<<___;
964 965
	lfd	$A0,8($nap_d)		; load a[j] in double format
	lfd	$A1,16($nap_d)
A
Andy Polyakov 已提交
966 967 968 969
	lfd	$A2,24($nap_d)		; load a[j+1] in double format
	lfd	$A3,32($nap_d)
	lfd	$N0,40($nap_d)		; load n[j] in double format
	lfd	$N1,48($nap_d)
970 971 972 973 974 975 976
	lfd	$N2,56($nap_d)		; load n[j+1] in double format
	lfdu	$N3,64($nap_d)

	lfd	$ba,`$FRAME+0`($sp)
	lfd	$bb,`$FRAME+8`($sp)
	lfd	$bc,`$FRAME+16`($sp)
	lfd	$bd,`$FRAME+24`($sp)
977 978 979 980
	lfd	$na,`$FRAME+32`($sp)
	lfd	$nb,`$FRAME+40`($sp)
	lfd	$nc,`$FRAME+48`($sp)
	lfd	$nd,`$FRAME+56`($sp)
981 982 983 984 985

	fcfid	$ba,$ba
	fcfid	$bb,$bb
	fcfid	$bc,$bc
	fcfid	$bd,$bd
986 987 988 989
	fcfid	$na,$na
	fcfid	$nb,$nb
	fcfid	$nc,$nc
	fcfid	$nd,$nd
990 991 992 993 994 995 996

	fmul	$T1a,$A1,$ba
	fmul	$T1b,$A1,$bb
	fmul	$T2a,$A2,$ba
	fmul	$T2b,$A2,$bb
	fmul	$T3a,$A3,$ba
	fmul	$T3b,$A3,$bb
997 998
	fmul	$T0a,$A0,$ba
	fmul	$T0b,$A0,$bb
999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010

	fmadd	$T1a,$A0,$bc,$T1a
	fmadd	$T1b,$A0,$bd,$T1b
	fmadd	$T2a,$A1,$bc,$T2a
	fmadd	$T2b,$A1,$bd,$T2b
	fmadd	$T3a,$A2,$bc,$T3a
	fmadd	$T3b,$A2,$bd,$T3b
	fmul	$dota,$A3,$bc
	fmul	$dotb,$A3,$bd

	fmadd	$T1a,$N1,$na,$T1a
	fmadd	$T1b,$N1,$nb,$T1b
A
Andy Polyakov 已提交
1011 1012
	 lfd	$A0,8($nap_d)		; load a[j] in double format
	 lfd	$A1,16($nap_d)
1013 1014
	fmadd	$T2a,$N2,$na,$T2a
	fmadd	$T2b,$N2,$nb,$T2b
A
Andy Polyakov 已提交
1015 1016
	 lfd	$A2,24($nap_d)		; load a[j+1] in double format
	 lfd	$A3,32($nap_d)
1017 1018
	fmadd	$T3a,$N3,$na,$T3a
	fmadd	$T3b,$N3,$nb,$T3b
1019 1020
	fmadd	$T0a,$N0,$na,$T0a
	fmadd	$T0b,$N0,$nb,$T0b
1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047

	fmadd	$T1a,$N0,$nc,$T1a
	fmadd	$T1b,$N0,$nd,$T1b
	fmadd	$T2a,$N1,$nc,$T2a
	fmadd	$T2b,$N1,$nd,$T2b
	fmadd	$T3a,$N2,$nc,$T3a
	fmadd	$T3b,$N2,$nd,$T3b
	fmadd	$dota,$N3,$nc,$dota
	fmadd	$dotb,$N3,$nd,$dotb

	fctid	$T0a,$T0a
	fctid	$T0b,$T0b
	fctid	$T1a,$T1a
	fctid	$T1b,$T1b
	fctid	$T2a,$T2a
	fctid	$T2b,$T2b
	fctid	$T3a,$T3a
	fctid	$T3b,$T3b

	stfd	$T0a,`$FRAME+0`($sp)
	stfd	$T0b,`$FRAME+8`($sp)
	stfd	$T1a,`$FRAME+16`($sp)
	stfd	$T1b,`$FRAME+24`($sp)
	stfd	$T2a,`$FRAME+32`($sp)
	stfd	$T2b,`$FRAME+40`($sp)
	stfd	$T3a,`$FRAME+48`($sp)
	stfd	$T3b,`$FRAME+56`($sp)
1048 1049

.align	5
1050 1051 1052 1053 1054
Linner:
	fmul	$T1a,$A1,$ba
	fmul	$T1b,$A1,$bb
	fmul	$T2a,$A2,$ba
	fmul	$T2b,$A2,$bb
A
Andy Polyakov 已提交
1055 1056
	lfd	$N0,40($nap_d)		; load n[j] in double format
	lfd	$N1,48($nap_d)
1057 1058
	fmul	$T3a,$A3,$ba
	fmul	$T3b,$A3,$bb
1059 1060
	fmadd	$T0a,$A0,$ba,$dota
	fmadd	$T0b,$A0,$bb,$dotb
A
Andy Polyakov 已提交
1061 1062 1063
	lfd	$N2,56($nap_d)		; load n[j+1] in double format
	lfdu	$N3,64($nap_d)

1064 1065 1066 1067
	fmadd	$T1a,$A0,$bc,$T1a
	fmadd	$T1b,$A0,$bd,$T1b
	fmadd	$T2a,$A1,$bc,$T2a
	fmadd	$T2b,$A1,$bd,$T2b
A
Andy Polyakov 已提交
1068 1069
	 lfd	$A0,8($nap_d)		; load a[j] in double format
	 lfd	$A1,16($nap_d)
1070 1071 1072 1073
	fmadd	$T3a,$A2,$bc,$T3a
	fmadd	$T3b,$A2,$bd,$T3b
	fmul	$dota,$A3,$bc
	fmul	$dotb,$A3,$bd
A
Andy Polyakov 已提交
1074 1075
	 lfd	$A2,24($nap_d)		; load a[j+1] in double format
	 lfd	$A3,32($nap_d)
1076 1077 1078
___
if ($SIZE_T==8 or $flavour =~ /osx/) {
$code.=<<___;
1079 1080
	fmadd	$T1a,$N1,$na,$T1a
	fmadd	$T1b,$N1,$nb,$T1b
A
Andy Polyakov 已提交
1081 1082
	 ld	$t0,`$FRAME+0`($sp)
	 ld	$t1,`$FRAME+8`($sp)
1083 1084
	fmadd	$T2a,$N2,$na,$T2a
	fmadd	$T2b,$N2,$nb,$T2b
A
Andy Polyakov 已提交
1085 1086
	 ld	$t2,`$FRAME+16`($sp)
	 ld	$t3,`$FRAME+24`($sp)
1087 1088
	fmadd	$T3a,$N3,$na,$T3a
	fmadd	$T3b,$N3,$nb,$T3b
A
Andy Polyakov 已提交
1089 1090 1091
	 add	$t0,$t0,$carry		; can not overflow
	 ld	$t4,`$FRAME+32`($sp)
	 ld	$t5,`$FRAME+40`($sp)
1092 1093
	fmadd	$T0a,$N0,$na,$T0a
	fmadd	$T0b,$N0,$nb,$T0b
A
Andy Polyakov 已提交
1094 1095 1096 1097 1098 1099
	 srdi	$carry,$t0,16
	 add	$t1,$t1,$carry
	 srdi	$carry,$t1,16
	 ld	$t6,`$FRAME+48`($sp)
	 ld	$t7,`$FRAME+56`($sp)

1100 1101
	fmadd	$T1a,$N0,$nc,$T1a
	fmadd	$T1b,$N0,$nd,$T1b
A
Andy Polyakov 已提交
1102 1103
	 insrdi	$t0,$t1,16,32
	 ld	$t1,8($tp)		; tp[j]
1104 1105
	fmadd	$T2a,$N1,$nc,$T2a
	fmadd	$T2b,$N1,$nd,$T2b
A
Andy Polyakov 已提交
1106
	 add	$t2,$t2,$carry
1107 1108
	fmadd	$T3a,$N2,$nc,$T3a
	fmadd	$T3b,$N2,$nd,$T3b
A
Andy Polyakov 已提交
1109 1110
	 srdi	$carry,$t2,16
	 insrdi	$t0,$t2,16,16
1111 1112
	fmadd	$dota,$N3,$nc,$dota
	fmadd	$dotb,$N3,$nd,$dotb
A
Andy Polyakov 已提交
1113 1114 1115 1116 1117 1118
	 add	$t3,$t3,$carry
	 ldu	$t2,16($tp)		; tp[j+1]
	 srdi	$carry,$t3,16
	 insrdi	$t0,$t3,16,0		; 0..63 bits
	 add	$t4,$t4,$carry

1119 1120
	fctid	$T0a,$T0a
	fctid	$T0b,$T0b
A
Andy Polyakov 已提交
1121
	 srdi	$carry,$t4,16
1122 1123
	fctid	$T1a,$T1a
	fctid	$T1b,$T1b
A
Andy Polyakov 已提交
1124
	 add	$t5,$t5,$carry
1125 1126
	fctid	$T2a,$T2a
	fctid	$T2b,$T2b
A
Andy Polyakov 已提交
1127 1128
	 srdi	$carry,$t5,16
	 insrdi	$t4,$t5,16,32
1129 1130
	fctid	$T3a,$T3a
	fctid	$T3b,$T3b
A
Andy Polyakov 已提交
1131 1132 1133
	 add	$t6,$t6,$carry
	 srdi	$carry,$t6,16
	 insrdi	$t4,$t6,16,16
1134 1135 1136

	stfd	$T0a,`$FRAME+0`($sp)
	stfd	$T0b,`$FRAME+8`($sp)
1137 1138
	 add	$t7,$t7,$carry
	 addc	$t3,$t0,$t1
1139 1140 1141 1142 1143 1144 1145
___
$code.=<<___ if ($SIZE_T==4);		# adjust XER[CA]
	extrdi	$t0,$t0,32,0
	extrdi	$t1,$t1,32,0
	adde	$t0,$t0,$t1
___
$code.=<<___;
1146 1147
	stfd	$T1a,`$FRAME+16`($sp)
	stfd	$T1b,`$FRAME+24`($sp)
1148 1149
	 insrdi	$t4,$t7,16,0		; 64..127 bits
	 srdi	$carry,$t7,16		; upper 33 bits
1150 1151
	stfd	$T2a,`$FRAME+32`($sp)
	stfd	$T2b,`$FRAME+40`($sp)
1152
	 adde	$t5,$t4,$t2
1153 1154 1155 1156 1157 1158 1159
___
$code.=<<___ if ($SIZE_T==4);		# adjust XER[CA]
	extrdi	$t4,$t4,32,0
	extrdi	$t2,$t2,32,0
	adde	$t4,$t4,$t2
___
$code.=<<___;
1160 1161
	stfd	$T3a,`$FRAME+48`($sp)
	stfd	$T3b,`$FRAME+56`($sp)
1162 1163 1164
	 addze	$carry,$carry
	 std	$t3,-16($tp)		; tp[j-1]
	 std	$t5,-8($tp)		; tp[j]
1165 1166 1167 1168 1169
___
} else {
$code.=<<___;
	fmadd	$T1a,$N1,$na,$T1a
	fmadd	$T1b,$N1,$nb,$T1b
1170 1171
	 lwz	$t1,`$FRAME+0^$LITTLE_ENDIAN`($sp)
	 lwz	$t0,`$FRAME+4^$LITTLE_ENDIAN`($sp)
1172 1173
	fmadd	$T2a,$N2,$na,$T2a
	fmadd	$T2b,$N2,$nb,$T2b
1174 1175
	 lwz	$t3,`$FRAME+8^$LITTLE_ENDIAN`($sp)
	 lwz	$t2,`$FRAME+12^$LITTLE_ENDIAN`($sp)
1176 1177
	fmadd	$T3a,$N3,$na,$T3a
	fmadd	$T3b,$N3,$nb,$T3b
1178 1179
	 lwz	$t5,`$FRAME+16^$LITTLE_ENDIAN`($sp)
	 lwz	$t4,`$FRAME+20^$LITTLE_ENDIAN`($sp)
1180 1181 1182 1183 1184
	 addc	$t0,$t0,$carry
	 adde	$t1,$t1,$c1
	 srwi	$carry,$t0,16
	fmadd	$T0a,$N0,$na,$T0a
	fmadd	$T0b,$N0,$nb,$T0b
1185 1186
	 lwz	$t7,`$FRAME+24^$LITTLE_ENDIAN`($sp)
	 lwz	$t6,`$FRAME+28^$LITTLE_ENDIAN`($sp)
1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222
	 srwi	$c1,$t1,16
	 insrwi	$carry,$t1,16,0

	fmadd	$T1a,$N0,$nc,$T1a
	fmadd	$T1b,$N0,$nd,$T1b
	 addc	$t2,$t2,$carry
	 adde	$t3,$t3,$c1
	 srwi	$carry,$t2,16
	fmadd	$T2a,$N1,$nc,$T2a
	fmadd	$T2b,$N1,$nd,$T2b
	 insrwi	$t0,$t2,16,0		; 0..31 bits
	 srwi	$c1,$t3,16
	 insrwi	$carry,$t3,16,0
	fmadd	$T3a,$N2,$nc,$T3a
	fmadd	$T3b,$N2,$nd,$T3b
	 lwz	$t2,12($tp)		; tp[j]
	 lwz	$t3,8($tp)
	 addc	$t4,$t4,$carry
	 adde	$t5,$t5,$c1
	 srwi	$carry,$t4,16
	fmadd	$dota,$N3,$nc,$dota
	fmadd	$dotb,$N3,$nd,$dotb
	 srwi	$c1,$t5,16
	 insrwi	$carry,$t5,16,0

	fctid	$T0a,$T0a
	 addc	$t6,$t6,$carry
	 adde	$t7,$t7,$c1
	 srwi	$carry,$t6,16
	fctid	$T0b,$T0b
	 insrwi	$t4,$t6,16,0		; 32..63 bits
	 srwi	$c1,$t7,16
	 insrwi	$carry,$t7,16,0
	fctid	$T1a,$T1a
	 addc	$t0,$t0,$t2
	 adde	$t4,$t4,$t3
1223 1224
	 lwz	$t3,`$FRAME+32^$LITTLE_ENDIAN`($sp)	; permuted $t1
	 lwz	$t2,`$FRAME+36^$LITTLE_ENDIAN`($sp)	; permuted $t0
1225 1226 1227 1228 1229 1230 1231 1232 1233
	fctid	$T1b,$T1b
	 addze	$carry,$carry
	 addze	$c1,$c1
	 stw	$t0,4($tp)		; tp[j-1]
	 stw	$t4,0($tp)
	fctid	$T2a,$T2a
	 addc	$t2,$t2,$carry
	 adde	$t3,$t3,$c1
	 srwi	$carry,$t2,16
1234 1235
	 lwz	$t7,`$FRAME+40^$LITTLE_ENDIAN`($sp)	; permuted $t3
	 lwz	$t6,`$FRAME+44^$LITTLE_ENDIAN`($sp)	; permuted $t2
1236 1237 1238
	fctid	$T2b,$T2b
	 srwi	$c1,$t3,16
	 insrwi	$carry,$t3,16,0
1239 1240
	 lwz	$t1,`$FRAME+48^$LITTLE_ENDIAN`($sp)	; permuted $t5
	 lwz	$t0,`$FRAME+52^$LITTLE_ENDIAN`($sp)	; permuted $t4
1241 1242 1243 1244
	fctid	$T3a,$T3a
	 addc	$t6,$t6,$carry
	 adde	$t7,$t7,$c1
	 srwi	$carry,$t6,16
1245 1246
	 lwz	$t5,`$FRAME+56^$LITTLE_ENDIAN`($sp)	; permuted $t7
	 lwz	$t4,`$FRAME+60^$LITTLE_ENDIAN`($sp)	; permuted $t6
1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282
	fctid	$T3b,$T3b

	 insrwi	$t2,$t6,16,0		; 64..95 bits
	insrwi	$carry,$t7,16,0
	srwi	$c1,$t7,16
	 lwz	$t6,20($tp)
	 lwzu	$t7,16($tp)
	addc	$t0,$t0,$carry
	 stfd	$T0a,`$FRAME+0`($sp)
	adde	$t1,$t1,$c1
	srwi	$carry,$t0,16
	 stfd	$T0b,`$FRAME+8`($sp)
	insrwi	$carry,$t1,16,0
	srwi	$c1,$t1,16
	addc	$t4,$t4,$carry
	 stfd	$T1a,`$FRAME+16`($sp)
	adde	$t5,$t5,$c1
	srwi	$carry,$t4,16
	 insrwi	$t0,$t4,16,0		; 96..127 bits
	 stfd	$T1b,`$FRAME+24`($sp)
	insrwi	$carry,$t5,16,0
	srwi	$c1,$t5,16

	addc	$t2,$t2,$t6
	 stfd	$T2a,`$FRAME+32`($sp)
	adde	$t0,$t0,$t7
	 stfd	$T2b,`$FRAME+40`($sp)
	addze	$carry,$carry
	 stfd	$T3a,`$FRAME+48`($sp)
	addze	$c1,$c1
	 stfd	$T3b,`$FRAME+56`($sp)
	 stw	$t2,-4($tp)		; tp[j]
	 stw	$t0,-8($tp)
___
}
$code.=<<___;
1283
	bdnz-	Linner
1284 1285 1286

	fctid	$dota,$dota
	fctid	$dotb,$dotb
1287 1288 1289
___
if ($SIZE_T==8 or $flavour =~ /osx/) {
$code.=<<___;
1290 1291 1292 1293 1294 1295 1296 1297
	ld	$t0,`$FRAME+0`($sp)
	ld	$t1,`$FRAME+8`($sp)
	ld	$t2,`$FRAME+16`($sp)
	ld	$t3,`$FRAME+24`($sp)
	ld	$t4,`$FRAME+32`($sp)
	ld	$t5,`$FRAME+40`($sp)
	ld	$t6,`$FRAME+48`($sp)
	ld	$t7,`$FRAME+56`($sp)
1298 1299
	stfd	$dota,`$FRAME+64`($sp)
	stfd	$dotb,`$FRAME+72`($sp)
1300 1301 1302 1303 1304

	add	$t0,$t0,$carry		; can not overflow
	srdi	$carry,$t0,16
	add	$t1,$t1,$carry
	srdi	$carry,$t1,16
1305
	insrdi	$t0,$t1,16,32
1306
	add	$t2,$t2,$carry
1307
	ld	$t1,8($tp)		; tp[j]
1308
	srdi	$carry,$t2,16
1309
	insrdi	$t0,$t2,16,16
1310
	add	$t3,$t3,$carry
1311
	ldu	$t2,16($tp)		; tp[j+1]
1312
	srdi	$carry,$t3,16
1313
	insrdi	$t0,$t3,16,0		; 0..63 bits
1314 1315 1316 1317
	add	$t4,$t4,$carry
	srdi	$carry,$t4,16
	add	$t5,$t5,$carry
	srdi	$carry,$t5,16
1318
	insrdi	$t4,$t5,16,32
1319 1320 1321
	add	$t6,$t6,$carry
	srdi	$carry,$t6,16
	insrdi	$t4,$t6,16,16
1322
	add	$t7,$t7,$carry
1323 1324
	insrdi	$t4,$t7,16,0		; 64..127 bits
	srdi	$carry,$t7,16		; upper 33 bits
1325 1326
	ld	$t6,`$FRAME+64`($sp)
	ld	$t7,`$FRAME+72`($sp)
1327 1328

	addc	$t3,$t0,$t1
1329 1330 1331 1332 1333 1334 1335
___
$code.=<<___ if ($SIZE_T==4);		# adjust XER[CA]
	extrdi	$t0,$t0,32,0
	extrdi	$t1,$t1,32,0
	adde	$t0,$t0,$t1
___
$code.=<<___;
1336
	adde	$t5,$t4,$t2
1337 1338 1339 1340 1341 1342 1343
___
$code.=<<___ if ($SIZE_T==4);		# adjust XER[CA]
	extrdi	$t4,$t4,32,0
	extrdi	$t2,$t2,32,0
	adde	$t4,$t4,$t2
___
$code.=<<___;
1344 1345 1346 1347
	addze	$carry,$carry

	std	$t3,-16($tp)		; tp[j-1]
	std	$t5,-8($tp)		; tp[j]
1348

1349
	add	$carry,$carry,$ovf	; comsume upmost overflow
1350 1351 1352 1353 1354 1355
	add	$t6,$t6,$carry		; can not overflow
	srdi	$carry,$t6,16
	add	$t7,$t7,$carry
	insrdi	$t6,$t7,48,0
	srdi	$ovf,$t7,48
	std	$t6,0($tp)		; tp[num-1]
1356 1357 1358
___
} else {
$code.=<<___;
1359 1360 1361 1362 1363 1364 1365 1366
	lwz	$t1,`$FRAME+0^$LITTLE_ENDIAN`($sp)
	lwz	$t0,`$FRAME+4^$LITTLE_ENDIAN`($sp)
	lwz	$t3,`$FRAME+8^$LITTLE_ENDIAN`($sp)
	lwz	$t2,`$FRAME+12^$LITTLE_ENDIAN`($sp)
	lwz	$t5,`$FRAME+16^$LITTLE_ENDIAN`($sp)
	lwz	$t4,`$FRAME+20^$LITTLE_ENDIAN`($sp)
	lwz	$t7,`$FRAME+24^$LITTLE_ENDIAN`($sp)
	lwz	$t6,`$FRAME+28^$LITTLE_ENDIAN`($sp)
1367 1368
	stfd	$dota,`$FRAME+64`($sp)
	stfd	$dotb,`$FRAME+72`($sp)
1369

1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401
	addc	$t0,$t0,$carry
	adde	$t1,$t1,$c1
	srwi	$carry,$t0,16
	insrwi	$carry,$t1,16,0
	srwi	$c1,$t1,16
	addc	$t2,$t2,$carry
	adde	$t3,$t3,$c1
	srwi	$carry,$t2,16
	 insrwi	$t0,$t2,16,0		; 0..31 bits
	 lwz	$t2,12($tp)		; tp[j]
	insrwi	$carry,$t3,16,0
	srwi	$c1,$t3,16
	 lwz	$t3,8($tp)
	addc	$t4,$t4,$carry
	adde	$t5,$t5,$c1
	srwi	$carry,$t4,16
	insrwi	$carry,$t5,16,0
	srwi	$c1,$t5,16
	addc	$t6,$t6,$carry
	adde	$t7,$t7,$c1
	srwi	$carry,$t6,16
	 insrwi	$t4,$t6,16,0		; 32..63 bits
	insrwi	$carry,$t7,16,0
	srwi	$c1,$t7,16

	addc	$t0,$t0,$t2
	adde	$t4,$t4,$t3
	addze	$carry,$carry
	addze	$c1,$c1
	 stw	$t0,4($tp)		; tp[j-1]
	 stw	$t4,0($tp)

1402 1403 1404 1405 1406 1407 1408 1409
	lwz	$t3,`$FRAME+32^$LITTLE_ENDIAN`($sp)	; permuted $t1
	lwz	$t2,`$FRAME+36^$LITTLE_ENDIAN`($sp)	; permuted $t0
	lwz	$t7,`$FRAME+40^$LITTLE_ENDIAN`($sp)	; permuted $t3
	lwz	$t6,`$FRAME+44^$LITTLE_ENDIAN`($sp)	; permuted $t2
	lwz	$t1,`$FRAME+48^$LITTLE_ENDIAN`($sp)	; permuted $t5
	lwz	$t0,`$FRAME+52^$LITTLE_ENDIAN`($sp)	; permuted $t4
	lwz	$t5,`$FRAME+56^$LITTLE_ENDIAN`($sp)	; permuted $t7
	lwz	$t4,`$FRAME+60^$LITTLE_ENDIAN`($sp)	; permuted $t6
1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437

	addc	$t2,$t2,$carry
	adde	$t3,$t3,$c1
	srwi	$carry,$t2,16
	insrwi	$carry,$t3,16,0
	srwi	$c1,$t3,16
	addc	$t6,$t6,$carry
	adde	$t7,$t7,$c1
	srwi	$carry,$t6,16
	 insrwi	$t2,$t6,16,0		; 64..95 bits
	 lwz	$t6,20($tp)
	insrwi	$carry,$t7,16,0
	srwi	$c1,$t7,16
	 lwzu	$t7,16($tp)
	addc	$t0,$t0,$carry
	adde	$t1,$t1,$c1
	srwi	$carry,$t0,16
	insrwi	$carry,$t1,16,0
	srwi	$c1,$t1,16
	addc	$t4,$t4,$carry
	adde	$t5,$t5,$c1
	srwi	$carry,$t4,16
	 insrwi	$t0,$t4,16,0		; 96..127 bits
	insrwi	$carry,$t5,16,0
	srwi	$c1,$t5,16

	addc	$t2,$t2,$t6
	adde	$t0,$t0,$t7
1438 1439
	 lwz	$t7,`$FRAME+64^$LITTLE_ENDIAN`($sp)
	 lwz	$t6,`$FRAME+68^$LITTLE_ENDIAN`($sp)
1440 1441
	addze	$carry,$carry
	addze	$c1,$c1
1442 1443
	 lwz	$t5,`$FRAME+72^$LITTLE_ENDIAN`($sp)
	 lwz	$t4,`$FRAME+76^$LITTLE_ENDIAN`($sp)
1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465

	addc	$t6,$t6,$carry
	adde	$t7,$t7,$c1
	 stw	$t2,-4($tp)		; tp[j]
	 stw	$t0,-8($tp)
	addc	$t6,$t6,$ovf
	addze	$t7,$t7
	srwi	$carry,$t6,16
	insrwi	$carry,$t7,16,0
	srwi	$c1,$t7,16
	addc	$t4,$t4,$carry
	adde	$t5,$t5,$c1

	insrwi	$t6,$t4,16,0
	srwi	$t4,$t4,16
	insrwi	$t4,$t5,16,0
	srwi	$ovf,$t5,16
	stw	$t6,4($tp)		; tp[num-1]
	stw	$t4,0($tp)
___
}
$code.=<<___;
1466
	slwi	$t7,$num,2
1467
	addi	$i,$i,8
1468
	subf	$nap_d,$t7,$nap_d	; rewind pointer
1469 1470
	cmpw	$i,$num
	blt-	Louter
1471
___
1472

1473
$code.=<<___ if ($SIZE_T==8);
1474
	subf	$np,$num,$np	; rewind np
1475
	addi	$j,$j,1		; restore counter
1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506
	subfc	$i,$i,$i	; j=0 and "clear" XER[CA]
	addi	$tp,$sp,`$FRAME+$TRANSFER+8`
	addi	$t4,$sp,`$FRAME+$TRANSFER+16`
	addi	$t5,$np,8
	addi	$t6,$rp,8
	mtctr	$j

.align	4
Lsub:	ldx	$t0,$tp,$i
	ldx	$t1,$np,$i
	ldx	$t2,$t4,$i
	ldx	$t3,$t5,$i
	subfe	$t0,$t1,$t0	; tp[j]-np[j]
	subfe	$t2,$t3,$t2	; tp[j+1]-np[j+1]
	stdx	$t0,$rp,$i
	stdx	$t2,$t6,$i
	addi	$i,$i,16
	bdnz-	Lsub

	li	$i,0
	subfe	$ovf,$i,$ovf	; handle upmost overflow bit
	and	$ap,$tp,$ovf
	andc	$np,$rp,$ovf
	or	$ap,$ap,$np	; ap=borrow?tp:rp
	addi	$t7,$ap,8
	mtctr	$j

.align	4
Lcopy:				; copy or in-place refresh
	ldx	$t0,$ap,$i
	ldx	$t1,$t7,$i
1507 1508 1509 1510 1511 1512 1513 1514
	std	$i,8($nap_d)	; zap nap_d
	std	$i,16($nap_d)
	std	$i,24($nap_d)
	std	$i,32($nap_d)
	std	$i,40($nap_d)
	std	$i,48($nap_d)
	std	$i,56($nap_d)
	stdu	$i,64($nap_d)
1515 1516 1517 1518 1519 1520
	stdx	$t0,$rp,$i
	stdx	$t1,$t6,$i
	stdx	$i,$tp,$i	; zap tp at once
	stdx	$i,$t4,$i
	addi	$i,$i,16
	bdnz-	Lcopy
1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532
___
$code.=<<___ if ($SIZE_T==4);
	subf	$np,$num,$np	; rewind np
	addi	$j,$j,1		; restore counter
	subfc	$i,$i,$i	; j=0 and "clear" XER[CA]
	addi	$tp,$sp,`$FRAME+$TRANSFER`
	addi	$np,$np,-4
	addi	$rp,$rp,-4
	addi	$ap,$sp,`$FRAME+$TRANSFER+4`
	mtctr	$j

.align	4
1533 1534 1535 1536
Lsub:	lwz	$t0,12($tp)	; load tp[j..j+3] in 64-bit word order
	lwz	$t1,8($tp)
	lwz	$t2,20($tp)
	lwzu	$t3,16($tp)
1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586
	lwz	$t4,4($np)	; load np[j..j+3] in 32-bit word order
	lwz	$t5,8($np)
	lwz	$t6,12($np)
	lwzu	$t7,16($np)
	subfe	$t4,$t4,$t0	; tp[j]-np[j]
	 stw	$t0,4($ap)	; save tp[j..j+3] in 32-bit word order
	subfe	$t5,$t5,$t1	; tp[j+1]-np[j+1]
	 stw	$t1,8($ap)
	subfe	$t6,$t6,$t2	; tp[j+2]-np[j+2]
	 stw	$t2,12($ap)
	subfe	$t7,$t7,$t3	; tp[j+3]-np[j+3]
	 stwu	$t3,16($ap)
	stw	$t4,4($rp)
	stw	$t5,8($rp)
	stw	$t6,12($rp)
	stwu	$t7,16($rp)
	bdnz-	Lsub

	li	$i,0
	subfe	$ovf,$i,$ovf	; handle upmost overflow bit
	addi	$tp,$sp,`$FRAME+$TRANSFER+4`
	subf	$rp,$num,$rp	; rewind rp
	and	$ap,$tp,$ovf
	andc	$np,$rp,$ovf
	or	$ap,$ap,$np	; ap=borrow?tp:rp
	addi	$tp,$sp,`$FRAME+$TRANSFER`
	mtctr	$j

.align	4
Lcopy:				; copy or in-place refresh
	lwz	$t0,4($ap)
	lwz	$t1,8($ap)
	lwz	$t2,12($ap)
	lwzu	$t3,16($ap)
	std	$i,8($nap_d)	; zap nap_d
	std	$i,16($nap_d)
	std	$i,24($nap_d)
	std	$i,32($nap_d)
	std	$i,40($nap_d)
	std	$i,48($nap_d)
	std	$i,56($nap_d)
	stdu	$i,64($nap_d)
	stw	$t0,4($rp)
	stw	$t1,8($rp)
	stw	$t2,12($rp)
	stwu	$t3,16($rp)
	std	$i,8($tp)	; zap tp at once
	stdu	$i,16($tp)
	bdnz-	Lcopy
___
A
Andy Polyakov 已提交
1587

1588
$code.=<<___;
1589
	$POP	$i,0($sp)
1590
	li	r3,1	; signal "handled"
1591 1592 1593
	$POP	r19,`-12*8-13*$SIZE_T`($i)
	$POP	r20,`-12*8-12*$SIZE_T`($i)
	$POP	r21,`-12*8-11*$SIZE_T`($i)
1594 1595 1596 1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616
	$POP	r22,`-12*8-10*$SIZE_T`($i)
	$POP	r23,`-12*8-9*$SIZE_T`($i)
	$POP	r24,`-12*8-8*$SIZE_T`($i)
	$POP	r25,`-12*8-7*$SIZE_T`($i)
	$POP	r26,`-12*8-6*$SIZE_T`($i)
	$POP	r27,`-12*8-5*$SIZE_T`($i)
	$POP	r28,`-12*8-4*$SIZE_T`($i)
	$POP	r29,`-12*8-3*$SIZE_T`($i)
	$POP	r30,`-12*8-2*$SIZE_T`($i)
	$POP	r31,`-12*8-1*$SIZE_T`($i)
	lfd	f20,`-12*8`($i)
	lfd	f21,`-11*8`($i)
	lfd	f22,`-10*8`($i)
	lfd	f23,`-9*8`($i)
	lfd	f24,`-8*8`($i)
	lfd	f25,`-7*8`($i)
	lfd	f26,`-6*8`($i)
	lfd	f27,`-5*8`($i)
	lfd	f28,`-4*8`($i)
	lfd	f29,`-3*8`($i)
	lfd	f30,`-2*8`($i)
	lfd	f31,`-1*8`($i)
	mr	$sp,$i
1617 1618
	blr
	.long	0
1619
	.byte	0,12,4,0,0x8c,13,6,0
1620
	.long	0
1621
.size	.$fname,.-.$fname
1622 1623

.asciz  "Montgomery Multiplication for PPC64, CRYPTOGAMS by <appro\@openssl.org>"
1624 1625 1626 1627 1628
___

$code =~ s/\`([^\`]*)\`/eval $1/gem;
print $code;
close STDOUT;