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;;;
;;; gf_4vect_dot_prod_sse(len, vec, *g_tbls, **buffs, **dests);
;;;
;;; Author: Gregory Tucker

%ifidn __OUTPUT_FORMAT__, macho64
 %define GF_4VECT_DOT_PROD_SSE _gf_4vect_dot_prod_sse
%else
 %define GF_4VECT_DOT_PROD_SSE gf_4vect_dot_prod_sse
%endif

%ifidn __OUTPUT_FORMAT__, elf64
 %define arg0  rdi
 %define arg1  rsi
 %define arg2  rdx
 %define arg3  rcx
 %define arg4  r8
 %define arg5  r9

 %define tmp   r11
 %define tmp2  r10
 %define tmp3  r13		; must be saved and restored
 %define tmp4  r12		; must be saved and restored
 %define tmp5  r14		; must be saved and restored
 %define tmp6  r15		; must be saved and restored
 %define return rax
 %define PS 8
 %define LOG_PS 3

 %define func(x) x:
 %macro FUNC_SAVE 0
	push	r12
	push	r13
	push	r14
	push	r15
 %endmacro
 %macro FUNC_RESTORE 0
	pop	r15
	pop	r14
	pop	r13
	pop	r12
 %endmacro
%endif

%ifidn __OUTPUT_FORMAT__, macho64
 %define arg0  rdi
 %define arg1  rsi
 %define arg2  rdx
 %define arg3  rcx
 %define arg4  r8
 %define arg5  r9

 %define tmp   r11
 %define tmp2  r10
 %define tmp3  r13		; must be saved and restored
 %define tmp4  r12		; must be saved and restored
 %define tmp5  r14		; must be saved and restored
 %define tmp6  r15		; must be saved and restored
 %define return rax
 %define PS 8
 %define LOG_PS 3

 %define func(x) x:
 %macro FUNC_SAVE 0
	push	r12
	push	r13
	push	r14
	push	r15
 %endmacro
 %macro FUNC_RESTORE 0
	pop	r15
	pop	r14
	pop	r13
	pop	r12
 %endmacro
%endif

%ifidn __OUTPUT_FORMAT__, win64
 %define arg0   rcx
 %define arg1   rdx
 %define arg2   r8
 %define arg3   r9

 %define arg4   r12 		; must be saved, loaded and restored
 %define arg5   r15 		; must be saved and restored
 %define tmp    r11
 %define tmp2   r10
 %define tmp3   r13		; must be saved and restored
 %define tmp4   r14		; must be saved and restored
 %define tmp5   rdi		; must be saved and restored
 %define tmp6   rsi		; must be saved and restored
 %define return rax
 %define PS     8
 %define LOG_PS 3
 %define stack_size  9*16 + 7*8		; must be an odd multiple of 8
 %define arg(x)      [rsp + stack_size + PS + PS*x]

 %define func(x) proc_frame x
 %macro FUNC_SAVE 0
	alloc_stack	stack_size
	save_xmm128	xmm6, 0*16
	save_xmm128	xmm7, 1*16
	save_xmm128	xmm8, 2*16
	save_xmm128	xmm9, 3*16
	save_xmm128	xmm10, 4*16
	save_xmm128	xmm11, 5*16
	save_xmm128	xmm12, 6*16
	save_xmm128	xmm13, 7*16
	save_xmm128	xmm14, 8*16
	save_reg	r12,  9*16 + 0*8
	save_reg	r13,  9*16 + 1*8
	save_reg	r14,  9*16 + 2*8
	save_reg	r15,  9*16 + 3*8
	save_reg	rdi,  9*16 + 4*8
	save_reg	rsi,  9*16 + 5*8
	end_prolog
	mov	arg4, arg(4)
 %endmacro

 %macro FUNC_RESTORE 0
	movdqa	xmm6, [rsp + 0*16]
	movdqa	xmm7, [rsp + 1*16]
	movdqa	xmm8, [rsp + 2*16]
	movdqa	xmm9, [rsp + 3*16]
	movdqa	xmm10, [rsp + 4*16]
	movdqa	xmm11, [rsp + 5*16]
	movdqa	xmm12, [rsp + 6*16]
	movdqa	xmm13, [rsp + 7*16]
	movdqa	xmm14, [rsp + 8*16]
	mov	r12,  [rsp + 9*16 + 0*8]
	mov	r13,  [rsp + 9*16 + 1*8]
	mov	r14,  [rsp + 9*16 + 2*8]
	mov	r15,  [rsp + 9*16 + 3*8]
	mov	rdi,  [rsp + 9*16 + 4*8]
	mov	rsi,  [rsp + 9*16 + 5*8]
	add	rsp, stack_size
 %endmacro
%endif


%define len    arg0
%define vec    arg1
%define mul_array arg2
%define	src    arg3
%define dest1  arg4
%define ptr    arg5
%define vec_i  tmp2
%define dest2  tmp3
%define dest3  tmp4
%define dest4  tmp5
%define vskip3 tmp6
%define pos   return

%ifndef EC_ALIGNED_ADDR
;;; Use Un-aligned load/store
 %define XLDR movdqu
 %define XSTR movdqu
%else
;;; Use Non-temporal load/stor
 %ifdef NO_NT_LDST
  %define XLDR movdqa
  %define XSTR movdqa
 %else
  %define XLDR movntdqa
  %define XSTR movntdq
 %endif
%endif


default rel

[bits 64]
section .text

%define xmask0f   xmm14
%define xgft1_lo  xmm13
%define xgft1_hi  xmm12
%define xgft2_lo  xmm11
%define xgft2_hi  xmm10
%define xgft3_lo  xmm9
%define xgft3_hi  xmm8
%define xgft4_lo  xmm7
%define xgft4_hi  xmm6


%define x0     xmm0
%define xtmpa  xmm1
%define xp1    xmm2
%define xp2    xmm3
%define xp3    xmm4
%define xp4    xmm5

align 16
global GF_4VECT_DOT_PROD_SSE:function
func(GF_4VECT_DOT_PROD_SSE)
	FUNC_SAVE
	sub	len, 16
	jl	.return_fail
	xor	pos, pos
	movdqa	xmask0f, [mask0f]	;Load mask of lower nibble in each byte
	mov	vskip3, vec
	imul	vskip3, 96
	sal	vec, LOG_PS		;vec *= PS. Make vec_i count by PS
	mov	dest2, [dest1+PS]
	mov	dest3, [dest1+2*PS]
	mov	dest4, [dest1+3*PS]
	mov	dest1, [dest1]


.loop16:
	pxor	xp1, xp1
	pxor	xp2, xp2
	pxor	xp3, xp3
	pxor	xp4, xp4
	mov	tmp, mul_array
	xor	vec_i, vec_i

.next_vect:
	mov	ptr, [src+vec_i]

	movdqu	xgft1_lo, [tmp]			;Load array Ax{00}, Ax{01}, ..., Ax{0f}
	movdqu	xgft1_hi, [tmp+16]		;     "     Ax{00}, Ax{10}, ..., Ax{f0}
	movdqu	xgft2_lo, [tmp+vec*(32/PS)]	;Load array Bx{00}, Bx{01}, ..., Bx{0f}
	movdqu	xgft2_hi, [tmp+vec*(32/PS)+16]	;     "     Bx{00}, Bx{10}, ..., Bx{f0}
	movdqu	xgft3_lo, [tmp+vec*(64/PS)]	;Load array Cx{00}, Cx{01}, ..., Cx{0f}
	movdqu	xgft3_hi, [tmp+vec*(64/PS)+16]	;     "     Cx{00}, Cx{10}, ..., Cx{f0}
	movdqu	xgft4_lo, [tmp+vskip3]		;Load array Cx{00}, Cx{01}, ..., Cx{0f}
	movdqu	xgft4_hi, [tmp+vskip3+16]	;     "     Cx{00}, Cx{10}, ..., Cx{f0}

	XLDR	x0, [ptr+pos]		;Get next source vector
	add	tmp, 32
	add	vec_i, PS

	movdqa	xtmpa, x0		;Keep unshifted copy of src
	psraw	x0, 4			;Shift to put high nibble into bits 4-0
	pand	x0, xmask0f		;Mask high src nibble in bits 4-0
	pand	xtmpa, xmask0f		;Mask low src nibble in bits 4-0

	pshufb	xgft1_hi, x0		;Lookup mul table of high nibble
	pshufb	xgft1_lo, xtmpa		;Lookup mul table of low nibble
	pxor	xgft1_hi, xgft1_lo	;GF add high and low partials
	pxor	xp1, xgft1_hi		;xp1 += partial

	pshufb	xgft2_hi, x0		;Lookup mul table of high nibble
	pshufb	xgft2_lo, xtmpa		;Lookup mul table of low nibble
	pxor	xgft2_hi, xgft2_lo	;GF add high and low partials
	pxor	xp2, xgft2_hi		;xp2 += partial

	pshufb	xgft3_hi, x0		;Lookup mul table of high nibble
	pshufb	xgft3_lo, xtmpa		;Lookup mul table of low nibble
	pxor	xgft3_hi, xgft3_lo	;GF add high and low partials
	pxor	xp3, xgft3_hi		;xp3 += partial

	pshufb	xgft4_hi, x0		;Lookup mul table of high nibble
	pshufb	xgft4_lo, xtmpa		;Lookup mul table of low nibble
	pxor	xgft4_hi, xgft4_lo	;GF add high and low partials
	pxor	xp4, xgft4_hi		;xp4 += partial

	cmp	vec_i, vec
	jl	.next_vect

	XSTR	[dest1+pos], xp1
	XSTR	[dest2+pos], xp2
	XSTR	[dest3+pos], xp3
	XSTR	[dest4+pos], xp4

	add	pos, 16			;Loop on 16 bytes at a time
	cmp	pos, len
	jle	.loop16

	lea	tmp, [len + 16]
	cmp	pos, tmp
	je	.return_pass

	;; Tail len
	mov	pos, len	;Overlapped offset length-16
	jmp	.loop16		;Do one more overlap pass

.return_pass:
	mov	return, 0
	FUNC_RESTORE
	ret

.return_fail:
	mov	return, 1
	FUNC_RESTORE
	ret

endproc_frame

section .data

align 16
mask0f:	ddq 0x0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f0f

%macro slversion 4
global %1_slver_%2%3%4
global %1_slver
%1_slver:
%1_slver_%2%3%4:
	dw 0x%4
	db 0x%3, 0x%2
%endmacro
;;;       func                  core, ver, snum
slversion GF_4VECT_DOT_PROD_SSE, 00,  03,  0064