mirror of
https://github.com/rn10950/RetroZilla.git
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569 lines
13 KiB
C
569 lines
13 KiB
C
/*
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* mpi_x86.c - MSVC inline assembly implementation of s_mpv_ functions.
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*
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* ***** BEGIN LICENSE BLOCK *****
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* Version: MPL 1.1/GPL 2.0/LGPL 2.1
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*
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* The contents of this file are subject to the Mozilla Public License Version
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* 1.1 (the "License"); you may not use this file except in compliance with
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* the License. You may obtain a copy of the License at
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* http://www.mozilla.org/MPL/
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*
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* Software distributed under the License is distributed on an "AS IS" basis,
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* WITHOUT WARRANTY OF ANY KIND, either express or implied. See the License
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* for the specific language governing rights and limitations under the
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* License.
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*
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* The Original Code is the Netscape security libraries.
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*
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* The Initial Developer of the Original Code is
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* Netscape Communications Corporation.
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* Portions created by the Initial Developer are Copyright (C) 2000
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* the Initial Developer. All Rights Reserved.
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*
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* Contributor(s):
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* Benjamin Smedberg <benjamin@smedbergs.us>
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*
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* Alternatively, the contents of this file may be used under the terms of
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* either the GNU General Public License Version 2 or later (the "GPL"), or
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* the GNU Lesser General Public License Version 2.1 or later (the "LGPL"),
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* in which case the provisions of the GPL or the LGPL are applicable instead
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* of those above. If you wish to allow use of your version of this file only
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* under the terms of either the GPL or the LGPL, and not to allow others to
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* use your version of this file under the terms of the MPL, indicate your
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* decision by deleting the provisions above and replace them with the notice
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* and other provisions required by the GPL or the LGPL. If you do not delete
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* the provisions above, a recipient may use your version of this file under
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* the terms of any one of the MPL, the GPL or the LGPL.
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*
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* ***** END LICENSE BLOCK ***** */
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#include "mpi-priv.h"
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static int is_sse = -1;
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extern unsigned long s_mpi_is_sse2();
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/*
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* ebp - 36: caller's esi
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* ebp - 32: caller's edi
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* ebp - 28:
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* ebp - 24:
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* ebp - 20:
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* ebp - 16:
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* ebp - 12:
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* ebp - 8:
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* ebp - 4:
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* ebp + 0: caller's ebp
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* ebp + 4: return address
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* ebp + 8: a argument
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* ebp + 12: a_len argument
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* ebp + 16: b argument
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* ebp + 20: c argument
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* registers:
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* eax:
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* ebx: carry
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* ecx: a_len
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* edx:
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* esi: a ptr
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* edi: c ptr
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*/
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__declspec(naked) void
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s_mpv_mul_d(const mp_digit *a, mp_size a_len, mp_digit b, mp_digit *c)
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{
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__asm {
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mov eax, is_sse
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cmp eax, 0
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je s_mpv_mul_d_x86
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jg s_mpv_mul_d_sse2
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call s_mpi_is_sse2
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mov is_sse, eax
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cmp eax, 0
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jg s_mpv_mul_d_sse2
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s_mpv_mul_d_x86:
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push ebp
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mov ebp,esp
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sub esp,28
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push edi
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push esi
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push ebx
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mov ebx,0 ; carry = 0
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mov ecx,[ebp+12] ; ecx = a_len
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mov edi,[ebp+20]
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cmp ecx,0
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je L_2 ; jmp if a_len == 0
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mov esi,[ebp+8] ; esi = a
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cld
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L_1:
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lodsd ; eax = [ds:esi]; esi += 4
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mov edx,[ebp+16] ; edx = b
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mul edx ; edx:eax = Phi:Plo = a_i * b
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add eax,ebx ; add carry (ebx) to edx:eax
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adc edx,0
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mov ebx,edx ; high half of product becomes next carry
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stosd ; [es:edi] = ax; edi += 4;
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dec ecx ; --a_len
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jnz L_1 ; jmp if a_len != 0
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L_2:
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mov [edi],ebx ; *c = carry
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pop ebx
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pop esi
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pop edi
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leave
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ret
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nop
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s_mpv_mul_d_sse2:
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push ebp
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mov ebp, esp
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push edi
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push esi
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psubq mm2, mm2 ; carry = 0
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mov ecx, [ebp+12] ; ecx = a_len
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movd mm1, [ebp+16] ; mm1 = b
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mov edi, [ebp+20]
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cmp ecx, 0
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je L_6 ; jmp if a_len == 0
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mov esi, [ebp+8] ; esi = a
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cld
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L_5:
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movd mm0, [esi] ; mm0 = *a++
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add esi, 4
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pmuludq mm0, mm1 ; mm0 = b * *a++
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paddq mm2, mm0 ; add the carry
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movd [edi], mm2 ; store the 32bit result
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add edi, 4
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psrlq mm2, 32 ; save the carry
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dec ecx ; --a_len
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jnz L_5 ; jmp if a_len != 0
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L_6:
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movd [edi], mm2 ; *c = carry
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emms
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pop esi
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pop edi
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leave
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ret
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nop
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}
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}
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/*
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* ebp - 36: caller's esi
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* ebp - 32: caller's edi
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* ebp - 28:
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* ebp - 24:
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* ebp - 20:
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* ebp - 16:
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* ebp - 12:
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* ebp - 8:
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* ebp - 4:
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* ebp + 0: caller's ebp
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* ebp + 4: return address
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* ebp + 8: a argument
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* ebp + 12: a_len argument
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* ebp + 16: b argument
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* ebp + 20: c argument
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* registers:
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* eax:
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* ebx: carry
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* ecx: a_len
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* edx:
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* esi: a ptr
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* edi: c ptr
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*/
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__declspec(naked) void
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s_mpv_mul_d_add(const mp_digit *a, mp_size a_len, mp_digit b, mp_digit *c)
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{
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__asm {
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mov eax, is_sse
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cmp eax, 0
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je s_mpv_mul_d_add_x86
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jg s_mpv_mul_d_add_sse2
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call s_mpi_is_sse2
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mov is_sse, eax
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cmp eax, 0
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jg s_mpv_mul_d_add_sse2
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s_mpv_mul_d_add_x86:
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push ebp
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mov ebp,esp
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sub esp,28
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push edi
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push esi
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push ebx
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mov ebx,0 ; carry = 0
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mov ecx,[ebp+12] ; ecx = a_len
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mov edi,[ebp+20]
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cmp ecx,0
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je L_11 ; jmp if a_len == 0
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mov esi,[ebp+8] ; esi = a
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cld
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L_10:
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lodsd ; eax = [ds:esi]; esi += 4
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mov edx,[ebp+16] ; edx = b
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mul edx ; edx:eax = Phi:Plo = a_i * b
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add eax,ebx ; add carry (ebx) to edx:eax
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adc edx,0
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mov ebx,[edi] ; add in current word from *c
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add eax,ebx
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adc edx,0
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mov ebx,edx ; high half of product becomes next carry
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stosd ; [es:edi] = ax; edi += 4;
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dec ecx ; --a_len
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jnz L_10 ; jmp if a_len != 0
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L_11:
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mov [edi],ebx ; *c = carry
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pop ebx
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pop esi
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pop edi
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leave
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ret
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nop
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s_mpv_mul_d_add_sse2:
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push ebp
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mov ebp, esp
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push edi
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push esi
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psubq mm2, mm2 ; carry = 0
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mov ecx, [ebp+12] ; ecx = a_len
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movd mm1, [ebp+16] ; mm1 = b
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mov edi, [ebp+20]
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cmp ecx, 0
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je L_16 ; jmp if a_len == 0
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mov esi, [ebp+8] ; esi = a
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cld
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L_15:
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movd mm0, [esi] ; mm0 = *a++
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add esi, 4
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pmuludq mm0, mm1 ; mm0 = b * *a++
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paddq mm2, mm0 ; add the carry
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movd mm0, [edi]
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paddq mm2, mm0 ; add the carry
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movd [edi], mm2 ; store the 32bit result
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add edi, 4
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psrlq mm2, 32 ; save the carry
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dec ecx ; --a_len
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jnz L_15 ; jmp if a_len != 0
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L_16:
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movd [edi], mm2 ; *c = carry
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emms
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pop esi
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pop edi
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leave
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ret
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nop
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}
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}
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/*
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* ebp - 36: caller's esi
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* ebp - 32: caller's edi
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* ebp - 28:
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* ebp - 24:
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* ebp - 20:
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* ebp - 16:
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* ebp - 12:
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* ebp - 8:
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* ebp - 4:
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* ebp + 0: caller's ebp
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* ebp + 4: return address
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* ebp + 8: a argument
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* ebp + 12: a_len argument
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* ebp + 16: b argument
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* ebp + 20: c argument
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* registers:
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* eax:
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* ebx: carry
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* ecx: a_len
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* edx:
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* esi: a ptr
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* edi: c ptr
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*/
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__declspec(naked) void
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s_mpv_mul_d_add_prop(const mp_digit *a, mp_size a_len, mp_digit b, mp_digit *c)
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{
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__asm {
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mov eax, is_sse
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cmp eax, 0
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je s_mpv_mul_d_add_prop_x86
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jg s_mpv_mul_d_add_prop_sse2
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call s_mpi_is_sse2
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mov is_sse, eax
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cmp eax, 0
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jg s_mpv_mul_d_add_prop_sse2
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s_mpv_mul_d_add_prop_x86:
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push ebp
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mov ebp,esp
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sub esp,28
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push edi
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push esi
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push ebx
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mov ebx,0 ; carry = 0
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mov ecx,[ebp+12] ; ecx = a_len
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mov edi,[ebp+20]
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cmp ecx,0
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je L_21 ; jmp if a_len == 0
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cld
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mov esi,[ebp+8] ; esi = a
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L_20:
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lodsd ; eax = [ds:esi]; esi += 4
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mov edx,[ebp+16] ; edx = b
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mul edx ; edx:eax = Phi:Plo = a_i * b
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add eax,ebx ; add carry (ebx) to edx:eax
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adc edx,0
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mov ebx,[edi] ; add in current word from *c
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add eax,ebx
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adc edx,0
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mov ebx,edx ; high half of product becomes next carry
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stosd ; [es:edi] = ax; edi += 4;
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dec ecx ; --a_len
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jnz L_20 ; jmp if a_len != 0
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L_21:
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cmp ebx,0 ; is carry zero?
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jz L_23
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mov eax,[edi] ; add in current word from *c
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add eax,ebx
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stosd ; [es:edi] = ax; edi += 4;
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jnc L_23
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L_22:
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mov eax,[edi] ; add in current word from *c
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adc eax,0
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stosd ; [es:edi] = ax; edi += 4;
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jc L_22
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L_23:
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pop ebx
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pop esi
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pop edi
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leave
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ret
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nop
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s_mpv_mul_d_add_prop_sse2:
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push ebp
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mov ebp, esp
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push edi
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push esi
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push ebx
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psubq mm2, mm2 ; carry = 0
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mov ecx, [ebp+12] ; ecx = a_len
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movd mm1, [ebp+16] ; mm1 = b
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mov edi, [ebp+20]
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cmp ecx, 0
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je L_26 ; jmp if a_len == 0
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mov esi, [ebp+8] ; esi = a
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cld
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L_25:
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movd mm0, [esi] ; mm0 = *a++
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movd mm3, [edi] ; fetch the sum
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add esi, 4
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pmuludq mm0, mm1 ; mm0 = b * *a++
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paddq mm2, mm0 ; add the carry
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paddq mm2, mm3 ; add *c++
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movd [edi], mm2 ; store the 32bit result
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add edi, 4
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psrlq mm2, 32 ; save the carry
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dec ecx ; --a_len
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jnz L_25 ; jmp if a_len != 0
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L_26:
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movd ebx, mm2
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cmp ebx, 0 ; is carry zero?
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jz L_28
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mov eax, [edi]
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add eax, ebx
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stosd
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jnc L_28
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L_27:
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mov eax, [edi] ; add in current word from *c
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adc eax, 0
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stosd ; [es:edi] = ax; edi += 4;
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jc L_27
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L_28:
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emms
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pop ebx
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pop esi
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pop edi
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leave
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ret
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nop
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}
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}
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/*
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* ebp - 20: caller's esi
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* ebp - 16: caller's edi
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* ebp - 12:
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* ebp - 8: carry
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* ebp - 4: a_len local
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* ebp + 0: caller's ebp
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* ebp + 4: return address
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* ebp + 8: pa argument
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* ebp + 12: a_len argument
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* ebp + 16: ps argument
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* ebp + 20:
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* registers:
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* eax:
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* ebx: carry
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* ecx: a_len
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* edx:
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* esi: a ptr
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* edi: c ptr
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*/
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__declspec(naked) void
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s_mpv_sqr_add_prop(const mp_digit *a, mp_size a_len, mp_digit *sqrs)
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{
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__asm {
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mov eax, is_sse
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cmp eax, 0
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je s_mpv_sqr_add_prop_x86
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jg s_mpv_sqr_add_prop_sse2
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call s_mpi_is_sse2
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mov is_sse, eax
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cmp eax, 0
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jg s_mpv_sqr_add_prop_sse2
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s_mpv_sqr_add_prop_x86:
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push ebp
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mov ebp,esp
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sub esp,12
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push edi
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push esi
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push ebx
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mov ebx,0 ; carry = 0
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mov ecx,[ebp+12] ; a_len
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mov edi,[ebp+16] ; edi = ps
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cmp ecx,0
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je L_31 ; jump if a_len == 0
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cld
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mov esi,[ebp+8] ; esi = pa
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L_30:
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lodsd ; eax = [ds:si]; si += 4;
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mul eax
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add eax,ebx ; add "carry"
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adc edx,0
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mov ebx,[edi]
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add eax,ebx ; add low word from result
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mov ebx,[edi+4]
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stosd ; [es:di] = eax; di += 4;
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adc edx,ebx ; add high word from result
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mov ebx,0
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mov eax,edx
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adc ebx,0
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stosd ; [es:di] = eax; di += 4;
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dec ecx ; --a_len
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jnz L_30 ; jmp if a_len != 0
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L_31:
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cmp ebx,0 ; is carry zero?
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jz L_34
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mov eax,[edi] ; add in current word from *c
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add eax,ebx
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stosd ; [es:edi] = ax; edi += 4;
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jnc L_34
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L_32:
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mov eax,[edi] ; add in current word from *c
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adc eax,0
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stosd ; [es:edi] = ax; edi += 4;
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jc L_32
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L_34:
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pop ebx
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pop esi
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pop edi
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leave
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ret
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nop
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s_mpv_sqr_add_prop_sse2:
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push ebp
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mov ebp, esp
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push edi
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push esi
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push ebx
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psubq mm2, mm2 ; carry = 0
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mov ecx, [ebp+12] ; ecx = a_len
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mov edi, [ebp+16]
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cmp ecx, 0
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je L_36 ; jmp if a_len == 0
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mov esi, [ebp+8] ; esi = a
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cld
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L_35:
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movd mm0, [esi] ; mm0 = *a
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movd mm3, [edi] ; fetch the sum
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add esi, 4
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pmuludq mm0, mm0 ; mm0 = sqr(a)
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paddq mm2, mm0 ; add the carry
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paddq mm2, mm3 ; add the low word
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movd mm3, [edi+4]
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movd [edi], mm2 ; store the 32bit result
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psrlq mm2, 32
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paddq mm2, mm3 ; add the high word
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movd [edi+4], mm2 ; store the 32bit result
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psrlq mm2, 32 ; save the carry.
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add edi, 8
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dec ecx ; --a_len
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jnz L_35 ; jmp if a_len != 0
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L_36:
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movd ebx, mm2
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cmp ebx, 0 ; is carry zero?
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jz L_38
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mov eax, [edi]
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add eax, ebx
|
|
stosd
|
|
jnc L_38
|
|
L_37:
|
|
mov eax, [edi] ; add in current word from *c
|
|
adc eax, 0
|
|
stosd ; [es:edi] = ax; edi += 4;
|
|
jc L_37
|
|
L_38:
|
|
emms
|
|
pop ebx
|
|
pop esi
|
|
pop edi
|
|
leave
|
|
ret
|
|
nop
|
|
}
|
|
}
|
|
|
|
/*
|
|
* Divide 64-bit (Nhi,Nlo) by 32-bit divisor, which must be normalized
|
|
* so its high bit is 1. This code is from NSPR.
|
|
*
|
|
* Dump of assembler code for function s_mpv_div_2dx1d:
|
|
*
|
|
* esp + 0: Caller's ebx
|
|
* esp + 4: return address
|
|
* esp + 8: Nhi argument
|
|
* esp + 12: Nlo argument
|
|
* esp + 16: divisor argument
|
|
* esp + 20: qp argument
|
|
* esp + 24: rp argument
|
|
* registers:
|
|
* eax:
|
|
* ebx: carry
|
|
* ecx: a_len
|
|
* edx:
|
|
* esi: a ptr
|
|
* edi: c ptr
|
|
*/
|
|
__declspec(naked) mp_err
|
|
s_mpv_div_2dx1d(mp_digit Nhi, mp_digit Nlo, mp_digit divisor,
|
|
mp_digit *qp, mp_digit *rp)
|
|
{
|
|
__asm {
|
|
push ebx
|
|
mov edx,[esp+8]
|
|
mov eax,[esp+12]
|
|
mov ebx,[esp+16]
|
|
div ebx
|
|
mov ebx,[esp+20]
|
|
mov [ebx],eax
|
|
mov ebx,[esp+24]
|
|
mov [ebx],edx
|
|
xor eax,eax ; return zero
|
|
pop ebx
|
|
ret
|
|
nop
|
|
}
|
|
}
|